mirror of
https://github.com/Ed94/pikuma_ps1.git
synced 2026-08-06 07:38:47 +00:00
Compare commits
26
Commits
| Author | SHA1 | Date | |
|---|---|---|---|
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01f7ceba7c | ||
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6f2eff920d | ||
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f25765a7b7 | ||
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2757aa4330 | ||
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6441dbc23e | ||
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57fdb9e037 | ||
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b5953a723b | ||
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888ffce859 | ||
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7289e7c89c | ||
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54a5bb9a31 | ||
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e0f4ac873d | ||
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09dde54030 | ||
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315e1b2c5e | ||
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a704341fc6 | ||
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7421b32fd7 | ||
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e2eb74be19 | ||
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338f1fe46e |
@@ -17,3 +17,6 @@ toolchain/PSn00bSDK
|
|||||||
.vscode/settings.json
|
.vscode/settings.json
|
||||||
toolchain/lfs
|
toolchain/lfs
|
||||||
toolchain/lpeg
|
toolchain/lpeg
|
||||||
|
|
||||||
|
scratch
|
||||||
|
toolchain/libpsn00b
|
||||||
|
|||||||
Vendored
+71
-36
@@ -74,41 +74,7 @@
|
|||||||
]
|
]
|
||||||
},
|
},
|
||||||
{
|
{
|
||||||
"name": "Debug: Hello GTE Psy-Q!",
|
"name": "Debug: Hello GTE!",
|
||||||
"type": "gdb",
|
|
||||||
"request": "attach",
|
|
||||||
"target": "localhost:3333",
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|
||||||
"remote": true,
|
|
||||||
"cwd": "${workspaceRoot}/build",
|
|
||||||
"valuesFormatting": "parseText",
|
|
||||||
"registerLimit": "1-32",
|
|
||||||
"frameFilters": false,
|
|
||||||
"showDevDebugOutput": false,
|
|
||||||
"printCalls": false,
|
|
||||||
"stopAtConnect": true,
|
|
||||||
"gdbpath": "gdb-multiarch",
|
|
||||||
"windows": {
|
|
||||||
"gdbpath": "gdb-multiarch.exe"
|
|
||||||
},
|
|
||||||
"osx": {
|
|
||||||
"gdbpath": "gdb"
|
|
||||||
},
|
|
||||||
"executable": "${workspaceRoot}/build/hello_gte.elf",
|
|
||||||
"setupCommands": [
|
|
||||||
{ "text": "set mi-async off" },
|
|
||||||
{ "text": "set remotetimeout 0" },
|
|
||||||
{ "text": "set logging file build/gen/hello_gte.gdb.log" },
|
|
||||||
{ "text": "set logging redirect on" }
|
|
||||||
],
|
|
||||||
"autorun": [
|
|
||||||
"monitor reset shellhalt",
|
|
||||||
"load hello_gte.elf",
|
|
||||||
"tbreak main",
|
|
||||||
"continue"
|
|
||||||
]
|
|
||||||
},
|
|
||||||
{
|
|
||||||
"name": "Debug: Hello GTE Psy-Q! (atoms debug — DWARF-injected)",
|
|
||||||
"type": "gdb",
|
"type": "gdb",
|
||||||
"request": "attach",
|
"request": "attach",
|
||||||
"target": "localhost:3333",
|
"target": "localhost:3333",
|
||||||
@@ -138,7 +104,76 @@
|
|||||||
"monitor reset shellhalt",
|
"monitor reset shellhalt",
|
||||||
"load build/hello_gte.dwarf-injected.elf",
|
"load build/hello_gte.dwarf-injected.elf",
|
||||||
"source scripts/gdb/gdb_tape_atoms.gdb",
|
"source scripts/gdb/gdb_tape_atoms.gdb",
|
||||||
"source build/gen/hello_gte.gdbinit",
|
"tbreak main",
|
||||||
|
"continue"
|
||||||
|
]
|
||||||
|
},
|
||||||
|
{
|
||||||
|
"name": "Debug: Hello Joypad!",
|
||||||
|
"type": "gdb",
|
||||||
|
"request": "attach",
|
||||||
|
"target": "localhost:3333",
|
||||||
|
"remote": true,
|
||||||
|
"cwd": "${workspaceRoot}",
|
||||||
|
"valuesFormatting": "parseText",
|
||||||
|
"registerLimit": "1-32",
|
||||||
|
"frameFilters": false,
|
||||||
|
"showDevDebugOutput": false,
|
||||||
|
"printCalls": false,
|
||||||
|
"stopAtConnect": true,
|
||||||
|
"gdbpath": "gdb-multiarch",
|
||||||
|
"windows": {
|
||||||
|
"gdbpath": "gdb-multiarch.exe"
|
||||||
|
},
|
||||||
|
"osx": {
|
||||||
|
"gdbpath": "gdb"
|
||||||
|
},
|
||||||
|
"executable": "${workspaceRoot}/build/hello_joypad.dwarf-injected.elf",
|
||||||
|
"setupCommands": [
|
||||||
|
{ "text": "set mi-async off" },
|
||||||
|
{ "text": "set remotetimeout 0" },
|
||||||
|
{ "text": "set logging file build/gen/hello_joypad.gdb.log" },
|
||||||
|
{ "text": "set logging redirect on" }
|
||||||
|
],
|
||||||
|
"autorun": [
|
||||||
|
"monitor reset shellhalt",
|
||||||
|
"load build/hello_joypad.dwarf-injected.elf",
|
||||||
|
"source scripts/gdb/gdb_tape_atoms.gdb",
|
||||||
|
"tbreak main",
|
||||||
|
"continue"
|
||||||
|
]
|
||||||
|
},
|
||||||
|
{
|
||||||
|
"name": "Debug: Hello Camera!",
|
||||||
|
"type": "gdb",
|
||||||
|
"request": "attach",
|
||||||
|
"target": "localhost:3333",
|
||||||
|
"remote": true,
|
||||||
|
"cwd": "${workspaceRoot}",
|
||||||
|
"valuesFormatting": "parseText",
|
||||||
|
"registerLimit": "1-32",
|
||||||
|
"frameFilters": false,
|
||||||
|
"showDevDebugOutput": false,
|
||||||
|
"printCalls": false,
|
||||||
|
"stopAtConnect": true,
|
||||||
|
"gdbpath": "gdb-multiarch",
|
||||||
|
"windows": {
|
||||||
|
"gdbpath": "gdb-multiarch.exe"
|
||||||
|
},
|
||||||
|
"osx": {
|
||||||
|
"gdbpath": "gdb"
|
||||||
|
},
|
||||||
|
"executable": "${workspaceRoot}/build/hello_camera.dwarf-injected.elf",
|
||||||
|
"setupCommands": [
|
||||||
|
{ "text": "set mi-async off" },
|
||||||
|
{ "text": "set remotetimeout 0" },
|
||||||
|
{ "text": "set logging file build/gen/hello_camera.gdb.log" },
|
||||||
|
{ "text": "set logging redirect on" }
|
||||||
|
],
|
||||||
|
"autorun": [
|
||||||
|
"monitor reset shellhalt",
|
||||||
|
"load build/hello_camera.dwarf-injected.elf",
|
||||||
|
"source scripts/gdb/gdb_tape_atoms.gdb",
|
||||||
"tbreak main",
|
"tbreak main",
|
||||||
"continue"
|
"continue"
|
||||||
]
|
]
|
||||||
|
|||||||
@@ -1,5 +1,5 @@
|
|||||||
/*
|
/*
|
||||||
* atom_dsl.h
|
* dsl.atom.h
|
||||||
* ============================================================================
|
* ============================================================================
|
||||||
*
|
*
|
||||||
* ATOM DSL: Annotation layer for tape atoms (lottes_tape.h).
|
* ATOM DSL: Annotation layer for tape atoms (lottes_tape.h).
|
||||||
@@ -57,7 +57,6 @@
|
|||||||
|
|
||||||
#ifdef INTELLISENSE_DIRECTIVES
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
#pragma once
|
#pragma once
|
||||||
// #include <stdint.h>
|
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
/* ============================================================================
|
/* ============================================================================
|
||||||
@@ -148,12 +147,12 @@
|
|||||||
* ... body ...
|
* ... body ...
|
||||||
* atom_label(bounds_chk) ← another anchor
|
* atom_label(bounds_chk) ← another anchor
|
||||||
*
|
*
|
||||||
* atom_offset(culling, bounds_chk) ← resolved by gen/.offsets.h
|
* atom_offset(culling, bounds_chk) ← resolved by gen/offsets.h
|
||||||
*
|
*
|
||||||
* The metaprogram generates gen/atom_offsets.h with one #define with the offset value per atom_offset(F, T) call.
|
* The metaprogram generates gen/offsets.h with one #define with the offset value per atom_offset(F, T) call.
|
||||||
* The preprocessor then expands the call to the right immediate value.
|
* The preprocessor then expands the call to the right immediate value.
|
||||||
*
|
*
|
||||||
* If gen/atom_offsets.h is stale (or atom_label(name) is undefined), `atom_offset_F_T` becomes an undefined macro and the C build fails.
|
* If gen/offsets.h is stale (or atom_label(name) is undefined), `atom_offset_F_T` becomes an undefined macro and the C build fails.
|
||||||
* ============================================================================*/
|
* ============================================================================*/
|
||||||
#define atom_offset(F, T) atom_offset_ ## F ## _ ## T
|
#define atom_offset(F, T) atom_offset_ ## F ## _ ## T
|
||||||
// atom_label is a pure annotation for the metaprogram's offset calculations.
|
// atom_label is a pure annotation for the metaprogram's offset calculations.
|
||||||
+15
-11
@@ -43,7 +43,9 @@
|
|||||||
|
|
||||||
#define R_ restrict
|
#define R_ restrict
|
||||||
#define V_ volatile
|
#define V_ volatile
|
||||||
// Fictional, used for intiution.
|
|
||||||
|
#pragma region Fictional //, used for intiution
|
||||||
|
|
||||||
#define EUB_ restrict // Execute Unit Bound: Data is siloed in the ALU Register File. The Load/Store Unit is bypassed. (Route to Execution Unit. Keep in registers)
|
#define EUB_ restrict // Execute Unit Bound: Data is siloed in the ALU Register File. The Load/Store Unit is bypassed. (Route to Execution Unit. Keep in registers)
|
||||||
#define ISO_ restrict // Isolated Provenance: Alternative to Exu_. Guarantees electrical memory isolation,
|
#define ISO_ restrict // Isolated Provenance: Alternative to Exu_. Guarantees electrical memory isolation,
|
||||||
// unlocking the compiler’s ability to safely pack data across multiple parallel SIMD lanes (vectorization).
|
// unlocking the compiler’s ability to safely pack data across multiple parallel SIMD lanes (vectorization).
|
||||||
@@ -67,7 +69,8 @@
|
|||||||
#define latch_load_anchor(ptr) //__atomic_load_n(ptr, ooo_anchor_)
|
#define latch_load_anchor(ptr) //__atomic_load_n(ptr, ooo_anchor_)
|
||||||
#define latch_store_drain(ptr, val) //__atomic_store_n(ptr, val, ooo_drain_)
|
#define latch_store_drain(ptr, val) //__atomic_store_n(ptr, val, ooo_drain_)
|
||||||
#define pulse_xchg_weld(ptr, val) //__atomic_exchange_n(ptr, val, ooo_weld_)
|
#define pulse_xchg_weld(ptr, val) //__atomic_exchange_n(ptr, val, ooo_weld_)
|
||||||
//end of: Fictional.
|
|
||||||
|
#pragma endreigon Fictional
|
||||||
|
|
||||||
|
|
||||||
// R_ (restrict) establishes an "Eigen" or "Proprius" mapping.
|
// R_ (restrict) establishes an "Eigen" or "Proprius" mapping.
|
||||||
@@ -135,16 +138,17 @@ enum { false = 0, true = 1, true_overflow, };
|
|||||||
|
|
||||||
typedef void Proc_(VoidFn) (void);
|
typedef void Proc_(VoidFn) (void);
|
||||||
|
|
||||||
#define kilo(n) (C_(U4, n) << 10)
|
#define kilo(n) (C_(U4, n) << 10)
|
||||||
#define mega(n) (C_(U4, n) << 20)
|
#define mega(n) (C_(U4, n) << 20)
|
||||||
#define giga(n) (C_(U4, n) << 30)
|
#define giga(n) (C_(U4, n) << 30)
|
||||||
#define tera(n) (C_(U4, n) << 40)
|
#define tera(n) (C_(U4, n) << 40)
|
||||||
#define null C_(U4, 0)
|
|
||||||
#define nullptr C_(void*, 0)
|
|
||||||
#define O_(type, field) (C_(U4, & C_(type*,0)->field))
|
|
||||||
|
|
||||||
#define OT_(field) O_(typeof_ptr(& field), filed))
|
#define null C_(U4, 0)
|
||||||
#define S_(data) C_(U4, sizeof(data))
|
#define nullptr C_(void*, 0)
|
||||||
|
#define O_(type, field) C_(U4, & C_(type*,0)->field)
|
||||||
|
#define OA_(type, member, idx) C_(U4, & C_(type*,0)->member[idx])
|
||||||
|
#define OT_(field) O_(typeof_ptr(& field), filed))
|
||||||
|
#define S_(data) C_(U4, sizeof(data))
|
||||||
|
|
||||||
#define sop_1(op,a,b) C_(U1, s1_(a) op s1_(b))
|
#define sop_1(op,a,b) C_(U1, s1_(a) op s1_(b))
|
||||||
#define sop_2(op,a,b) C_(U2, s2_(a) op s2_(b))
|
#define sop_2(op,a,b) C_(U2, s2_(a) op s2_(b))
|
||||||
|
|||||||
+14
-22
@@ -50,17 +50,13 @@
|
|||||||
#define asm_words(...) m_expand(glue(GCC_ASM_INL_, GCC_ASM_COUNT_ARGS(__VA_ARGS__))(__VA_ARGS__))
|
#define asm_words(...) m_expand(glue(GCC_ASM_INL_, GCC_ASM_COUNT_ARGS(__VA_ARGS__))(__VA_ARGS__))
|
||||||
// Very nasty macro expansion. See the Cruft pragma region after all the DSL defines
|
// Very nasty macro expansion. See the Cruft pragma region after all the DSL defines
|
||||||
|
|
||||||
/* reg_str(n) — Stringify an integer register id into the GCC asm
|
/* reg_str(n) — Stringify an integer register id into the GCC asm string form (e.g. 12 → "$12").
|
||||||
* string form (e.g. 12 → "$12"). Use this anywhere GCC's parser
|
* Use this anywhere GCC's parser expects a literal string identifying a register: clobber lists,
|
||||||
* expects a literal string identifying a register: clobber lists,
|
* asm templates, etc. The two-level macro is the standard preprocessor idiom for forcing one level of expansion before stringify —
|
||||||
* asm templates, etc. The two-level macro is the standard preprocessor
|
* without it, `#n` would stringify the macro name `R_T4` to `"R_T4"` instead of expanding `R_T4` to its value first.
|
||||||
* idiom for forcing one level of expansion before stringify — without
|
|
||||||
* it, `#n` would stringify the macro name `R_T4` to `"R_T4"` instead
|
|
||||||
* of expanding `R_T4` to its value first.
|
|
||||||
*
|
*
|
||||||
* For declaring a register variable bound to a specific GPR, use the
|
* For declaring a register variable bound to a specific GPR, use the `rgcc(n)` bundle from gcc_asm.h instead —
|
||||||
* `rgcc(n)` bundle from gcc_asm.h instead — it adds the `__asm__()`
|
* it adds the `__asm__()` qualifier around the string.
|
||||||
* qualifier around the string.
|
|
||||||
*
|
*
|
||||||
* register V3_S2* p0 __asm__(reg_str(R_T4)) = ...; // verbose
|
* register V3_S2* p0 __asm__(reg_str(R_T4)) = ...; // verbose
|
||||||
* register V3_S2* p0 rgcc(R_T4) = ...; // bundled
|
* register V3_S2* p0 rgcc(R_T4) = ...; // bundled
|
||||||
@@ -85,7 +81,7 @@
|
|||||||
* - The string "$12" is derived from it via reg_str, so they cannot drift apart.
|
* - The string "$12" is derived from it via reg_str, so they cannot drift apart.
|
||||||
* - Spelling `__asm__(reg_str(R_T4_Code))` at every call site is noise.
|
* - Spelling `__asm__(reg_str(R_T4_Code))` at every call site is noise.
|
||||||
*
|
*
|
||||||
* tmpl defined in dsl.h (the token-paste glue).
|
* tmpl defined in dsl.h (token-paste glue).
|
||||||
* rgcc define here (gcc_asm.h) because the `__asm__` keyword is GCC-specific.
|
* rgcc define here (gcc_asm.h) because the `__asm__` keyword is GCC-specific.
|
||||||
* Anyone porting to a different compiler's asm dialect overrides rgcc,
|
* Anyone porting to a different compiler's asm dialect overrides rgcc,
|
||||||
* and the integer→string derivation in rlit can be retargeted in one place.
|
* and the integer→string derivation in rlit can be retargeted in one place.
|
||||||
@@ -94,12 +90,10 @@
|
|||||||
* ------------------------------------------------------------------------ */
|
* ------------------------------------------------------------------------ */
|
||||||
#define rgcc(n) __asm__(rlit(n))
|
#define rgcc(n) __asm__(rlit(n))
|
||||||
|
|
||||||
/* rgcc_ref(n) — GCC operand-reference form "%N". Not currently used
|
/* rgcc_ref(n) — GCC operand-reference form "%N". Not currently used by the placeholder-pun macros
|
||||||
* by the placeholder-pun macros (the .word bodies are fully baked
|
* (the .word bodies are fully baked at compile time and have no runtime operand references),
|
||||||
* at compile time and have no runtime operand references), but kept
|
* but kept here for completeness in case a future asm template needs to refer to a runtime input by position.
|
||||||
* here for completeness in case a future asm template needs to refer
|
* Mirror of rgcc but produces "%N" instead of "$N". */
|
||||||
* to a runtime input by position. Mirror of rgcc but produces "%N"
|
|
||||||
* instead of "$N". */
|
|
||||||
#define rgcc_ref_(n) "%" #n
|
#define rgcc_ref_(n) "%" #n
|
||||||
#define rgcc_ref(n) rgcc_ref_(n)
|
#define rgcc_ref(n) rgcc_ref_(n)
|
||||||
|
|
||||||
@@ -147,11 +141,9 @@
|
|||||||
9, 8, 7, 6, 5, 4, 3, 2, 1, 0))
|
9, 8, 7, 6, 5, 4, 3, 2, 1, 0))
|
||||||
|
|
||||||
/* --- 2. String Concatenation Helpers --- *
|
/* --- 2. String Concatenation Helpers --- *
|
||||||
* NOTE: we use `%0`, `%1`, ... not `%c0`, `%c1`, ... because GCC's
|
* NOTE: we use `%0`, `%1`, ... not `%c0`, `%c1`, ... because GCC's asm-parser rejects `%cN` in this position with "invalid use of '%c'".
|
||||||
* asm-parser rejects `%cN` in this position with "invalid use of '%c'".
|
* The `%cN` form is for printing *character* constants; for arbitrary integer immediates (the only kind `"i"(...)` produces),
|
||||||
* The `%cN` form is for printing *character* constants; for arbitrary
|
* the plain `%N` form is the right one. Both expand to the bare immediate.
|
||||||
* integer immediates (the only kind `"i"(...)` produces), the plain
|
|
||||||
* `%N` form is the right one. Both expand to the bare immediate.
|
|
||||||
*/
|
*/
|
||||||
#define GCC_ASM_W1 "%0"
|
#define GCC_ASM_W1 "%0"
|
||||||
#define GCC_ASM_W2 GCC_ASM_W1 ", %1"
|
#define GCC_ASM_W2 GCC_ASM_W1 ", %1"
|
||||||
|
|||||||
@@ -1,139 +0,0 @@
|
|||||||
#ifdef INTELLISENSE_DIRECTIVES
|
|
||||||
#pragma once
|
|
||||||
#endif
|
|
||||||
// Auto-generated by ps1_meta.lua — DO NOT EDIT
|
|
||||||
// Source: C:\projects\Pikuma\ps1\code\duffle\lottes_tape.h
|
|
||||||
// Component atoms (MipsAtomComp_(ac_*)) -> macro variants (mac_*)
|
|
||||||
|
|
||||||
#ifndef WORD_COUNT
|
|
||||||
#define WORD_COUNT(name, count) enum { words_##name = (count) };
|
|
||||||
#endif
|
|
||||||
|
|
||||||
/* atom_dbg_skip */
|
|
||||||
/* ---------------------------------------------------------------------------
|
|
||||||
* MACRO ATOM Components (Reusable Assembly Components)
|
|
||||||
* These do NOT yield. They are expanded inline inside Tape Atoms.
|
|
||||||
* ---------------------------------------------------------------------------*/
|
|
||||||
// The 'Yield' sequence for Tape Atoms (mac_yield).
|
|
||||||
#define mac_yield(...) \
|
|
||||||
load_word(R_AtomJmp, R_TapePtr, 0) \
|
|
||||||
, add_ui_self( R_TapePtr, S_(MipsCode)) \
|
|
||||||
, jump_reg( R_AtomJmp) \
|
|
||||||
, nop
|
|
||||||
WORD_COUNT(mac_yield, 4)
|
|
||||||
|
|
||||||
/* atom_dbg_skip */
|
|
||||||
/* Words: 3; Loads 3 S2 indices from the face array */
|
|
||||||
#define mac_load_tri_indices(...) \
|
|
||||||
load_half_u(R_T0, R_FaceCursor, 0 * S_(S2)) \
|
|
||||||
, load_half_u(R_T1, R_FaceCursor, 1 * S_(S2)) \
|
|
||||||
, load_half_u(R_T2, R_FaceCursor, 2 * S_(S2))
|
|
||||||
WORD_COUNT(mac_load_tri_indices, 3)
|
|
||||||
|
|
||||||
/* atom_dbg_skip */
|
|
||||||
/* Words: 18; Translates indices to vertex addresses and pushes them to GTE */
|
|
||||||
#define mac_gte_load_tri_verts(...) \
|
|
||||||
shift_lleft(R_AT, R_T0, v3s2_byteoff) \
|
|
||||||
, add_u_self(R_AT, R_VertBase) \
|
|
||||||
, load_word(R_V0, R_AT, O_(V3_S2,x)) \
|
|
||||||
, load_word(R_V1, R_AT, O_(V3_S2,z)) \
|
|
||||||
, gte_mv_to_data_r(R_V0, C2_VXY0) \
|
|
||||||
, gte_mv_to_data_r(R_V1, C2_VZ0) \
|
|
||||||
, shift_lleft(R_AT, R_T1, v3s2_byteoff) \
|
|
||||||
, add_u_self(R_AT, R_VertBase) \
|
|
||||||
, load_word(R_V0, R_AT, O_(V3_S2,x)) \
|
|
||||||
, load_word(R_V1, R_AT, O_(V3_S2,z)) \
|
|
||||||
, gte_mv_to_data_r(R_V0, C2_VXY1) \
|
|
||||||
, gte_mv_to_data_r(R_V1, C2_VZ1) \
|
|
||||||
, shift_lleft(R_AT, R_T2, v3s2_byteoff) \
|
|
||||||
, add_u_self(R_AT, R_VertBase) \
|
|
||||||
, load_word(R_V0, R_AT, O_(V3_S2,x)) \
|
|
||||||
, load_word(R_V1, R_AT, O_(V3_S2,z)) \
|
|
||||||
, gte_mv_to_data_r(R_V0, C2_VXY2) \
|
|
||||||
, gte_mv_to_data_r(R_V1, C2_VZ2)
|
|
||||||
WORD_COUNT(mac_gte_load_tri_verts, 18)
|
|
||||||
|
|
||||||
/* Words: 11; Correctly inserts a primitive into the Ordering Table linked list.
|
|
||||||
* Hardcoded for Poly_F3 (5 words). For Poly_G4, use ac_insert_ot_tag_g4. */
|
|
||||||
#define mac_insert_ot_tag_f3(...) \
|
|
||||||
shift_lleft( R_T1, R_T1, S_(U4)/2) /* T1 = otz * S_(U4) (otz arg is implicit R_T1) */ \
|
|
||||||
, add_u_self( R_T1, R_OtBase) /* T1 = & OrderingTable[OTZ] */ \
|
|
||||||
, load_word( R_AT, R_T1, O_(PolyTag,code)) /* AT = old_ot_head */ \
|
|
||||||
, load_upper_i(R_V0, (S_(Poly_F3)/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits) /* V0 = (5 - 1) << 24 = 4 << 24 */ \
|
|
||||||
, mask_upper( R_AT, R_AT, S_(PolyTag_len_bits)) /* Strip upper 8 bits (length from prev cell) → keep only low 24 */ \
|
|
||||||
, or_u( R_AT, R_AT, R_V0) /* Merge length */ \
|
|
||||||
, store_word( R_AT, R_PrimCursor, O_(PolyTag,code)) /* prim->tag = packed(prim_length, old_addr) */ \
|
|
||||||
, shift_lleft( R_AT, R_PrimCursor, S_(PolyTag_len_bits)) /* AT = (prim_length << 24) | old_addr */ \
|
|
||||||
, shift_lright(R_AT, R_AT, S_(PolyTag_len_bits)) \
|
|
||||||
, store_word( R_AT, R_T1, O_(PolyTag,code)) /* OrderingTable[OTZ] = PrimCursor */
|
|
||||||
WORD_COUNT(mac_insert_ot_tag_f3, 11)
|
|
||||||
|
|
||||||
/* Words: 11; Correctly inserts a primitive into the Ordering Table linked list.
|
|
||||||
* Hardcoded for Poly_G4 (9 words). For Poly_F3, use ac_insert_ot_tag_f3. */
|
|
||||||
#define mac_insert_ot_tag_g4(...) \
|
|
||||||
shift_lleft( R_T1, R_T1, S_(U4)/2) /* T1 = otz * S_(U4) (otz arg is implicit R_T1) */ \
|
|
||||||
, add_u_self( R_T1, R_OtBase) /* T1 = & OrderingTable[OTZ] */ \
|
|
||||||
, load_word( R_AT, R_T1, O_(PolyTag,code)) /* AT = old_ot_head */ \
|
|
||||||
, load_upper_i(R_V0, (S_(Poly_G4)/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits) /* V0 = (9 - 1) << 24 = 8 << 24 */ \
|
|
||||||
, mask_upper( R_AT, R_AT, S_(PolyTag_len_bits)) /* Strip upper 8 bits (length from prev cell) → keep only low 24 */ \
|
|
||||||
, or_u( R_AT, R_AT, R_V0) /* Merge length */ \
|
|
||||||
, store_word( R_AT, R_PrimCursor, O_(PolyTag,code)) /* prim->tag = packed(prim_length, old_addr) */ \
|
|
||||||
, shift_lleft( R_AT, R_PrimCursor, S_(PolyTag_len_bits)) /* AT = (prim_length << 24) | old_addr */ \
|
|
||||||
, shift_lright(R_AT, R_AT, S_(PolyTag_len_bits)) \
|
|
||||||
, store_word( R_AT, R_T1, O_(PolyTag,code)) /* OrderingTable[OTZ] = PrimCursor */
|
|
||||||
WORD_COUNT(mac_insert_ot_tag_g4, 11)
|
|
||||||
|
|
||||||
/* atom_dbg_skip */
|
|
||||||
#define mac_pack_color_word(off, cmd, r, g, b) \
|
|
||||||
load_upper_i(R_AT, (cmd) << 8 | (b)) \
|
|
||||||
, or_i_self( R_AT, ((g) << 8) | (r)) \
|
|
||||||
, store_word( R_AT, R_PrimCursor, (off))
|
|
||||||
WORD_COUNT(mac_pack_color_word, 3)
|
|
||||||
|
|
||||||
/* atom_dbg_skip */
|
|
||||||
#define mac_format_f3_color(r, g, b) \
|
|
||||||
mac_pack_color_word(O_(Poly_F3,color), gp0_cmd_poly_f3, r, g, b)
|
|
||||||
WORD_COUNT(mac_format_f3_color, 3)
|
|
||||||
|
|
||||||
/* atom_dbg_skip */
|
|
||||||
/* Words: 3; Stores the 3 transformed (V2_S2 screen) vertices to the F3.
|
|
||||||
* PIPELINE: post-RTPT (SXY0=v0.screen, SXY1=v1.screen, SXY2=v2.screen). */
|
|
||||||
#define mac_gte_store_f3_post_rtpt(...) \
|
|
||||||
gte_sw(C2_SXY0, R_PrimCursor, O_(Poly_F3,p0)) \
|
|
||||||
, gte_sw(C2_SXY1, R_PrimCursor, O_(Poly_F3,p1)) \
|
|
||||||
, gte_sw(C2_SXY2, R_PrimCursor, O_(Poly_F3,p2))
|
|
||||||
WORD_COUNT(mac_gte_store_f3_post_rtpt, 3)
|
|
||||||
|
|
||||||
#define mac_format_g4_color(r0, g0, b0, r1, g1, b1, r2, g2, b2, r3, g3, b3) \
|
|
||||||
mac_pack_color_word(O_(Poly_G4,c0), gp0_cmd_poly_g4, r0,g0,b0) \
|
|
||||||
, mac_pack_color_word(O_(Poly_G4,c1), 0, r1,g1,b1) \
|
|
||||||
, mac_pack_color_word(O_(Poly_G4,c2), 0, r2,g2,b2) \
|
|
||||||
, mac_pack_color_word(O_(Poly_G4,c3), 0, r3,g3,b3)
|
|
||||||
WORD_COUNT(mac_format_g4_color, 12)
|
|
||||||
|
|
||||||
/* atom_dbg_skip */
|
|
||||||
/* Words: 3; Stores the 3 transformed (V2_S2 screen) vertices of the
|
|
||||||
* G4 triangle portion to p0/p1/p2.
|
|
||||||
* PIPELINE: post-RTPT, pre-RTPS (SXY0=v0.screen, SXY1=v1.screen, SXY2=v2.screen).
|
|
||||||
* MUST be called BEFORE V3-RTPS, otherwise SXY0/1/2
|
|
||||||
* get overwritten with v3 (RTPS writes only to SXY2, but to keep the
|
|
||||||
* three registers aligned with v0/v1/v2 you must store before RTPS).
|
|
||||||
* The macro name declares the pipeline position; check #6 (GTE state-
|
|
||||||
* machine validation) verifies the call site matches the declaration. */
|
|
||||||
#define mac_gte_store_g4_p012_post_rtpt_pre_rtps(...) \
|
|
||||||
gte_sw(C2_SXY0, R_PrimCursor, O_(Poly_G4,p0)) \
|
|
||||||
, gte_sw(C2_SXY1, R_PrimCursor, O_(Poly_G4,p1)) \
|
|
||||||
, gte_sw(C2_SXY2, R_PrimCursor, O_(Poly_G4,p2))
|
|
||||||
WORD_COUNT(mac_gte_store_g4_p012_post_rtpt_pre_rtps, 3)
|
|
||||||
|
|
||||||
/* atom_dbg_skip */
|
|
||||||
/* Words: 1; Stores the V3 screen coord to the G4's p3 slot.
|
|
||||||
* PIPELINE: post-RTPS (SXY2 holds v3.screen because RTPS writes its
|
|
||||||
* single-vertex result to SXY2; SXY0 still holds v0.screen from the
|
|
||||||
* earlier RTPT — DO NOT read SXY0 here, that's the bug this name
|
|
||||||
* prevents).
|
|
||||||
*/
|
|
||||||
#define mac_gte_store_g4_p3_post_rtps(...) \
|
|
||||||
gte_sw(C2_SXY2, R_PrimCursor, O_(Poly_G4,p3))
|
|
||||||
WORD_COUNT(mac_gte_store_g4_p3_post_rtps, 1)
|
|
||||||
|
|
||||||
@@ -1,9 +0,0 @@
|
|||||||
// Auto-generated by ps1_meta.lua (passes/offsets.lua) — DO NOT EDIT
|
|
||||||
// Source: C:\projects\Pikuma\ps1\code\duffle\lottes_tape.h
|
|
||||||
#pragma once
|
|
||||||
|
|
||||||
#pragma region lottes_tape
|
|
||||||
|
|
||||||
|
|
||||||
#pragma endregion lottes_tape
|
|
||||||
|
|
||||||
@@ -0,0 +1,184 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
#pragma once
|
||||||
|
#endif
|
||||||
|
// Auto-generated by ps1_meta.lua — DO NOT EDIT
|
||||||
|
// Directory: C:\projects\Pikuma\ps1\code\duffle/
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\word_count.metadata.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\dsl.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\memory.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\math.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\gcc_asm.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\mips.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\gp.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\gte.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\pad.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\dsl.atom.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\lottes_tape.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\psyq.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\math.atom.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\mips.atom.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\gte.atom.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\gp.atom.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\pad.atom.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\psyq.atom.c
|
||||||
|
// Component atoms (MipsAtomComp_(ac_*)) -> macro variants (mac_*)
|
||||||
|
|
||||||
|
#ifndef WORD_COUNT
|
||||||
|
#define WORD_COUNT(name, count) enum { words_##name = (count) };
|
||||||
|
#endif
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
/* ---------------------------------------------------------------------------
|
||||||
|
* MACRO ATOM Components (Reusable Assembly Components)
|
||||||
|
* These do NOT yield. They are expanded inline inside Tape Atoms.
|
||||||
|
* ---------------------------------------------------------------------------*/
|
||||||
|
// The 'Yield' sequence for Tape Atoms (mac_yield).
|
||||||
|
// - mac_yield() is the safe default for atom-endings: 4 words, BD-slot of jr is mandatory nop.
|
||||||
|
// - mac_yield_load() + mac_yield_tail():
|
||||||
|
// - unconditional branch: mac_yield_load fills the branch's BD-slot (replaces a nop);
|
||||||
|
// - mac_yield_tail runs at the branch target (does NOT re-load R_AtomJmp).
|
||||||
|
#define mac_yield(...) \
|
||||||
|
load_word(R_AtomJmp, R_TapePtr, 0) \
|
||||||
|
, add_ui_self( R_TapePtr, S_(MipsCode)) \
|
||||||
|
, jump_reg( R_AtomJmp) \
|
||||||
|
, nop
|
||||||
|
WORD_COUNT(mac_yield, 4)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_yield_load(...) \
|
||||||
|
load_word(R_AtomJmp, R_TapePtr, 0)
|
||||||
|
WORD_COUNT(mac_yield_load, 1)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_yield_tail(...) \
|
||||||
|
add_ui_self(R_TapePtr, S_(MipsCode)) \
|
||||||
|
, jump_reg( R_AtomJmp) \
|
||||||
|
, nop
|
||||||
|
WORD_COUNT(mac_yield_tail, 3)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_load_v2s2(rs_x, rs_y, r_base, offset) \
|
||||||
|
load_half( rs_x, r_base, O_(V3_S2,x)) \
|
||||||
|
, load_half( rs_y, r_base, O_(V3_S2,y))
|
||||||
|
WORD_COUNT(mac_load_v2s2, 2)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_store_v2s2(rt_x, rt_y, base, offset) \
|
||||||
|
store_half(rt_x, base, offset + O_(V2_S2,x)) \
|
||||||
|
, store_half(rt_y, base, offset + O_(V2_S2,y))
|
||||||
|
WORD_COUNT(mac_store_v2s2, 2)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_store_rects2(rt_x, rt_y, rt_width, rt_height, base, offset) \
|
||||||
|
store_half(rt_x, base, offset + O_(Rect_S2,x)) \
|
||||||
|
, store_half(rt_y, base, offset + O_(Rect_S2,y)) \
|
||||||
|
, store_half(rt_width, base, offset + O_(Rect_S2,width)) \
|
||||||
|
, store_half(rt_height, base, offset + O_(Rect_S2,height))
|
||||||
|
WORD_COUNT(mac_store_rects2, 4)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_load_tri_indices(r_face_cusor, r_i0, r_i1, r_i2) \
|
||||||
|
load_half_u(r_i0, r_face_cusor, 0 * S_(S2)) \
|
||||||
|
, load_half_u(r_i1, r_face_cusor, 1 * S_(S2)) \
|
||||||
|
, load_half_u(r_i2, r_face_cusor, 2 * S_(S2))
|
||||||
|
WORD_COUNT(mac_load_tri_indices, 3)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_gte_store_f3(r_primitive_cursor) \
|
||||||
|
gte_sw(C2_SXY0, r_primitive_cursor, O_(Poly_F3,p0)) \
|
||||||
|
, gte_sw(C2_SXY1, r_primitive_cursor, O_(Poly_F3,p1)) \
|
||||||
|
, gte_sw(C2_SXY2, r_primitive_cursor, O_(Poly_F3,p2))
|
||||||
|
WORD_COUNT(mac_gte_store_f3, 3)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_gte_load_tri_verts(r_vert_base, r_v0, r_v1, r_v2) \
|
||||||
|
shift_lleft(R_AT, r_v0, v3s2_byteoff) \
|
||||||
|
, add_u_self(R_AT, r_vert_base) \
|
||||||
|
, load_word(R_V0, R_AT, O_(V3_S2,x)) \
|
||||||
|
, load_word(R_V1, R_AT, O_(V3_S2,z)) \
|
||||||
|
, gte_mv_to_data_r(R_V0, C2_VXY0) \
|
||||||
|
, gte_mv_to_data_r(R_V1, C2_VZ0) \
|
||||||
|
, shift_lleft(R_AT, r_v1, v3s2_byteoff) \
|
||||||
|
, add_u_self(R_AT, r_vert_base) \
|
||||||
|
, load_word(R_V0, R_AT, O_(V3_S2,x)) \
|
||||||
|
, load_word(R_V1, R_AT, O_(V3_S2,z)) \
|
||||||
|
, gte_mv_to_data_r(R_V0, C2_VXY1) \
|
||||||
|
, gte_mv_to_data_r(R_V1, C2_VZ1) \
|
||||||
|
, shift_lleft(R_AT, r_v2, v3s2_byteoff) \
|
||||||
|
, add_u_self(R_AT, r_vert_base) \
|
||||||
|
, load_word(R_V0, R_AT, O_(V3_S2,x)) \
|
||||||
|
, load_word(R_V1, R_AT, O_(V3_S2,z)) \
|
||||||
|
, gte_mv_to_data_r(R_V0, C2_VXY2) \
|
||||||
|
, gte_mv_to_data_r(R_V1, C2_VZ2)
|
||||||
|
WORD_COUNT(mac_gte_load_tri_verts, 18)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_gte_store_g4_p012(r_primitive_cursor) \
|
||||||
|
gte_sw(C2_SXY0, r_primitive_cursor, O_(Poly_G4,p0)) \
|
||||||
|
, gte_sw(C2_SXY1, r_primitive_cursor, O_(Poly_G4,p1)) \
|
||||||
|
, gte_sw(C2_SXY2, r_primitive_cursor, O_(Poly_G4,p2))
|
||||||
|
WORD_COUNT(mac_gte_store_g4_p012, 3)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_gte_store_g4_p3(r_primitive_cursor) \
|
||||||
|
gte_sw(C2_SXY2, r_primitive_cursor, O_(Poly_G4,p3))
|
||||||
|
WORD_COUNT(mac_gte_store_g4_p3, 1)
|
||||||
|
|
||||||
|
#define mac_gcmd_push(cmd, reg_transfer, reg_base, port) \
|
||||||
|
load_upper_i(reg_transfer, cmd >> 16) \
|
||||||
|
, or_i_self( reg_transfer, cmd & 0xFFFF) \
|
||||||
|
, store_word( reg_transfer, reg_base, port)
|
||||||
|
WORD_COUNT(mac_gcmd_push, 3)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_store_rgb8(rr, rg, rb, base, offset) \
|
||||||
|
store_byte(rr, base, offset + O_(RGB8,r)) \
|
||||||
|
, store_byte(rg, base, offset + O_(RGB8,g)) \
|
||||||
|
, store_byte(rb, base, offset + O_(RGB8,b))
|
||||||
|
WORD_COUNT(mac_store_rgb8, 3)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_pack_color_word(r_base, off, cmd, r, g, b) \
|
||||||
|
load_upper_i(R_AT, (cmd) << 8 | (b)) \
|
||||||
|
, or_i_self( R_AT, ((g) << 8) | (r)) \
|
||||||
|
, store_word( R_AT, r_base, (off))
|
||||||
|
WORD_COUNT(mac_pack_color_word, 3)
|
||||||
|
|
||||||
|
/* atom_dbg_skip */
|
||||||
|
#define mac_format_f3_color(r_base, r, g, b) \
|
||||||
|
mac_pack_color_word(r_base, O_(Poly_F3,color), gp0_cmd_poly_f3, r, g, b)
|
||||||
|
WORD_COUNT(mac_format_f3_color, 3)
|
||||||
|
|
||||||
|
#define mac_format_g4_color(r_prim_cursor, r0, g0, b0, r1, g1, b1, r2, g2, b2, r3, g3, b3) \
|
||||||
|
mac_pack_color_word(r_prim_cursor, O_(Poly_G4,c0), gp0_cmd_poly_g4, r0,g0,b0) \
|
||||||
|
, mac_pack_color_word(r_prim_cursor, O_(Poly_G4,c1), 0, r1,g1,b1) \
|
||||||
|
, mac_pack_color_word(r_prim_cursor, O_(Poly_G4,c2), 0, r2,g2,b2) \
|
||||||
|
, mac_pack_color_word(r_prim_cursor, O_(Poly_G4,c3), 0, r3,g3,b3)
|
||||||
|
WORD_COUNT(mac_format_g4_color, 12)
|
||||||
|
|
||||||
|
#define mac_insert_ot_tag_f3(r_ot_base, r_prim_cursor) \
|
||||||
|
shift_lleft( R_T1, R_T1, S_(U4)/2) /* T1 = otz * S_(U4) (otz arg is implicit R_T1) */ \
|
||||||
|
, add_u_self( R_T1, r_ot_base) /* T1 = & OrderingTable[OTZ] */ \
|
||||||
|
, load_word( R_AT, R_T1, O_(PolyTag,code)) /* AT = old_ot_head */ \
|
||||||
|
, load_upper_i(R_V0, (S_(Poly_F3)/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits) /* V0 = (5 - 1) << 24 = 4 << 24 */ \
|
||||||
|
, mask_upper( R_AT, R_AT, S_(PolyTag_len_bits)) /* Strip upper 8 bits (length from prev cell) → keep only low 24 */ \
|
||||||
|
, or_u( R_AT, R_AT, R_V0) /* Merge length */ \
|
||||||
|
, store_word( R_AT, r_prim_cursor, O_(PolyTag,code)) /* prim->tag = packed(prim_length, old_addr) */ \
|
||||||
|
, shift_lleft( R_AT, r_prim_cursor, S_(PolyTag_len_bits)) /* AT = (prim_length << 24) | old_addr */ \
|
||||||
|
, shift_lright(R_AT, R_AT, S_(PolyTag_len_bits)) \
|
||||||
|
, store_word( R_AT, R_T1, O_(PolyTag,code)) /* OrderingTable[OTZ] = PrimCursor */
|
||||||
|
WORD_COUNT(mac_insert_ot_tag_f3, 11)
|
||||||
|
|
||||||
|
#define mac_insert_ot_tag_g4(r_ot_base, r_prim_cursor) \
|
||||||
|
shift_lleft( R_T1, R_T1, S_(U4)/2) /* T1 = otz * S_(U4) (otz arg is implicit R_T1) */ \
|
||||||
|
, add_u_self( R_T1, r_ot_base) /* T1 = & OrderingTable[OTZ] */ \
|
||||||
|
, load_word( R_AT, R_T1, O_(PolyTag,code)) /* AT = old_ot_head */ \
|
||||||
|
, load_upper_i(R_V0, (S_(Poly_G4)/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits) /* V0 = (9 - 1) << 24 = 8 << 24 */ \
|
||||||
|
, mask_upper( R_AT, R_AT, S_(PolyTag_len_bits)) /* Strip upper 8 bits (length from prev cell) → keep only low 24 */ \
|
||||||
|
, or_u( R_AT, R_AT, R_V0) /* Merge length */ \
|
||||||
|
, store_word( R_AT, r_prim_cursor, O_(PolyTag,code)) /* prim->tag = packed(prim_length, old_addr) */ \
|
||||||
|
, shift_lleft( R_AT, r_prim_cursor, S_(PolyTag_len_bits)) /* AT = (prim_length << 24) | old_addr */ \
|
||||||
|
, shift_lright(R_AT, R_AT, S_(PolyTag_len_bits)) \
|
||||||
|
, store_word( R_AT, R_T1, O_(PolyTag,code)) /* OrderingTable[OTZ] = PrimCursor */
|
||||||
|
WORD_COUNT(mac_insert_ot_tag_g4, 11)
|
||||||
|
|
||||||
@@ -0,0 +1,53 @@
|
|||||||
|
// Auto-generated by ps1_meta.lua (passes/offsets.lua) — DO NOT EDIT
|
||||||
|
// Directory: C:\projects\Pikuma\ps1\code\duffle\
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\word_count.metadata.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\dsl.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\memory.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\math.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\gcc_asm.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\mips.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\gp.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\gte.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\pad.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\dsl.atom.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\lottes_tape.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\psyq.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\math.atom.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\mips.atom.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\gte.atom.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\gp.atom.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\pad.atom.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\duffle\psyq.atom.c
|
||||||
|
#pragma once
|
||||||
|
|
||||||
|
#pragma region duffle
|
||||||
|
|
||||||
|
|
||||||
|
// --- atom: pad_bios_snapshot (78 words) ---
|
||||||
|
|
||||||
|
#define _atom_offset_snap_root_skip_disconnected 8
|
||||||
|
#define _atom_offset_disconnected_snap_end 61
|
||||||
|
#define _atom_offset_case_2_id_dispatch 8
|
||||||
|
#define _atom_offset_pending_snap_end 51
|
||||||
|
#define _atom_offset_id_dispatch_try_analog_stick 11
|
||||||
|
#define _atom_offset_id_dispatch_snap_end 38
|
||||||
|
#define _atom_offset_try_analog_stick_try_analog_pad 12
|
||||||
|
#define _atom_offset_analog_stick_snap_end 24
|
||||||
|
#define _atom_offset_try_analog_pad_try_unsupported 11
|
||||||
|
#define _atom_offset_analog_pad_snap_end 10
|
||||||
|
|
||||||
|
enum {
|
||||||
|
atom_offset_snap_root_skip_disconnected = _atom_offset_snap_root_skip_disconnected,
|
||||||
|
atom_offset_disconnected_snap_end = _atom_offset_disconnected_snap_end,
|
||||||
|
atom_offset_case_2_id_dispatch = _atom_offset_case_2_id_dispatch,
|
||||||
|
atom_offset_pending_snap_end = _atom_offset_pending_snap_end,
|
||||||
|
atom_offset_id_dispatch_try_analog_stick = _atom_offset_id_dispatch_try_analog_stick,
|
||||||
|
atom_offset_id_dispatch_snap_end = _atom_offset_id_dispatch_snap_end,
|
||||||
|
atom_offset_try_analog_stick_try_analog_pad = _atom_offset_try_analog_stick_try_analog_pad,
|
||||||
|
atom_offset_analog_stick_snap_end = _atom_offset_analog_stick_snap_end,
|
||||||
|
atom_offset_try_analog_pad_try_unsupported = _atom_offset_try_analog_pad_try_unsupported,
|
||||||
|
atom_offset_analog_pad_snap_end = _atom_offset_analog_pad_snap_end,
|
||||||
|
};
|
||||||
|
|
||||||
|
#pragma endregion duffle
|
||||||
|
|
||||||
@@ -0,0 +1,82 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# include "dsl.h"
|
||||||
|
# include "gp.h"
|
||||||
|
# include "lottes_tape.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
ATOM_FILE_DEBUGGER_LINE_MARKER(gp_atom_c);
|
||||||
|
|
||||||
|
#pragma region MACs (Mips Atom Components)
|
||||||
|
|
||||||
|
FI_ Slice_MipsCode ac_gcmd_push(U4 cmd, U4 reg_transfer, U4 reg_base, U2 port)
|
||||||
|
MipsAtomComp_Proc_(ac_gcmd_push, {
|
||||||
|
load_upper_i(reg_transfer, cmd >> 16),
|
||||||
|
or_i_self( reg_transfer, cmd & 0xFFFF),
|
||||||
|
store_word( reg_transfer, reg_base, port),
|
||||||
|
})
|
||||||
|
|
||||||
|
FI_ Slice_MipsCode ac_store_rgb8(U1 rr, U1 rg, U1 rb, U4 base, U4 offset) atom_dbg_skip MipsAtomComp_Proc_(ac_store_rgb8, {
|
||||||
|
store_byte(rr, base, offset + O_(RGB8,r)),
|
||||||
|
store_byte(rg, base, offset + O_(RGB8,g)),
|
||||||
|
store_byte(rb, base, offset + O_(RGB8,b)),
|
||||||
|
})
|
||||||
|
|
||||||
|
/* Words: 3; Emits one (cmd|color) word to R_PrimCursor at the given
|
||||||
|
* byte offset. Internal helper used by the *_format_*_color macros. */
|
||||||
|
FI_ Slice_MipsCode ac_pack_color_word(U4 r_base, U4 off, U4 cmd, U1 r, U1 g, U1 b)
|
||||||
|
atom_dbg_skip MipsAtomComp_Proc_(ac_pack_color_word, {
|
||||||
|
load_upper_i(R_AT, (cmd) << 8 | (b)),
|
||||||
|
or_i_self( R_AT, ((g) << 8) | (r)),
|
||||||
|
store_word( R_AT, r_base, (off)),
|
||||||
|
})
|
||||||
|
|
||||||
|
/* Words: 3; Emits the F3 command+color word (cmd byte | BLUE | GREEN | RED)
|
||||||
|
* Args: _r, _g, _b are 8-bit RGB byte values (not raw 16-bit fields). */
|
||||||
|
FI_ Slice_MipsCode ac_format_f3_color(U4 r_base, U1 r, U1 g, U1 b)
|
||||||
|
atom_dbg_skip MipsAtomComp_Proc_(ac_format_f3_color, { mac_pack_color_word(r_base, O_(Poly_F3,color), gp0_cmd_poly_f3, r, g, b) })
|
||||||
|
|
||||||
|
/* Words: 12; Emits the four (code|color) words of a Poly_G4.
|
||||||
|
* Args: rN,gN,bN are 8-bit RGB byte values for each of the 4 vertices. */
|
||||||
|
FI_ Slice_MipsCode ac_format_g4_color(U4 r_prim_cursor,
|
||||||
|
U1 r0, U1 g0, U1 b0,
|
||||||
|
U1 r1, U1 g1, U1 b1,
|
||||||
|
U1 r2, U1 g2, U1 b2,
|
||||||
|
U1 r3, U1 g3, U1 b3)
|
||||||
|
MipsAtomComp_Proc_(ac_format_g4_color, {
|
||||||
|
mac_pack_color_word(r_prim_cursor, O_(Poly_G4,c0), gp0_cmd_poly_g4, r0,g0,b0),
|
||||||
|
mac_pack_color_word(r_prim_cursor, O_(Poly_G4,c1), 0, r1,g1,b1),
|
||||||
|
mac_pack_color_word(r_prim_cursor, O_(Poly_G4,c2), 0, r2,g2,b2),
|
||||||
|
mac_pack_color_word(r_prim_cursor, O_(Poly_G4,c3), 0, r3,g3,b3),
|
||||||
|
})
|
||||||
|
|
||||||
|
/* Words: 11; Correctly inserts a primitive into the Ordering Table linked list.
|
||||||
|
* Hardcoded for Poly_F3 (5 words). For Poly_G4, use ac_insert_ot_tag_g4. */
|
||||||
|
I_ Slice_MipsCode ac_insert_ot_tag_f3(U4 r_ot_base, U4 r_prim_cursor) MipsAtomComp_Proc_(ac_insert_ot_tag_f3, {
|
||||||
|
shift_lleft( R_T1, R_T1, S_(U4)/2), // T1 = otz * S_(U4) (otz arg is implicit R_T1)
|
||||||
|
add_u_self( R_T1, r_ot_base), // T1 = & OrderingTable[OTZ]
|
||||||
|
load_word( R_AT, R_T1, O_(PolyTag,code)), // AT = old_ot_head
|
||||||
|
load_upper_i(R_V0, (S_(Poly_F3)/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits), // V0 = (5 - 1) << 24 = 4 << 24
|
||||||
|
mask_upper( R_AT, R_AT, S_(PolyTag_len_bits)), // Strip upper 8 bits (length from prev cell) → keep only low 24
|
||||||
|
or_u( R_AT, R_AT, R_V0), // Merge length
|
||||||
|
store_word( R_AT, r_prim_cursor, O_(PolyTag,code)), // prim->tag = packed(prim_length, old_addr)
|
||||||
|
shift_lleft( R_AT, r_prim_cursor, S_(PolyTag_len_bits)), // AT = (prim_length << 24) | old_addr
|
||||||
|
shift_lright(R_AT, R_AT, S_(PolyTag_len_bits)),
|
||||||
|
store_word( R_AT, R_T1, O_(PolyTag,code)), // OrderingTable[OTZ] = PrimCursor
|
||||||
|
})
|
||||||
|
|
||||||
|
/* Words: 11; Correctly inserts a primitive into the Ordering Table linked list.
|
||||||
|
* Hardcoded for Poly_G4 (9 words). For Poly_F3, use ac_insert_ot_tag_f3. */
|
||||||
|
I_ Slice_MipsCode ac_insert_ot_tag_g4(U4 r_ot_base, U4 r_prim_cursor) MipsAtomComp_Proc_(ac_insert_ot_tag_g4, {
|
||||||
|
shift_lleft( R_T1, R_T1, S_(U4)/2), // T1 = otz * S_(U4) (otz arg is implicit R_T1)
|
||||||
|
add_u_self( R_T1, r_ot_base), // T1 = & OrderingTable[OTZ]
|
||||||
|
load_word( R_AT, R_T1, O_(PolyTag,code)), // AT = old_ot_head
|
||||||
|
load_upper_i(R_V0, (S_(Poly_G4)/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits), // V0 = (9 - 1) << 24 = 8 << 24
|
||||||
|
mask_upper( R_AT, R_AT, S_(PolyTag_len_bits)), // Strip upper 8 bits (length from prev cell) → keep only low 24
|
||||||
|
or_u( R_AT, R_AT, R_V0), // Merge length
|
||||||
|
store_word( R_AT, r_prim_cursor, O_(PolyTag,code)), // prim->tag = packed(prim_length, old_addr)
|
||||||
|
shift_lleft( R_AT, r_prim_cursor, S_(PolyTag_len_bits)), // AT = (prim_length << 24) | old_addr
|
||||||
|
shift_lright(R_AT, R_AT, S_(PolyTag_len_bits)),
|
||||||
|
store_word( R_AT, R_T1, O_(PolyTag,code)), // OrderingTable[OTZ] = PrimCursor
|
||||||
|
})
|
||||||
|
|
||||||
|
#pragma endregion MACs (Mips Atom Components)
|
||||||
+291
-243
@@ -39,8 +39,8 @@
|
|||||||
/* ============================================================================
|
/* ============================================================================
|
||||||
* Hardware MMIO Addresses
|
* Hardware MMIO Addresses
|
||||||
* ============================================================================
|
* ============================================================================
|
||||||
* PSX GPU has two 32-bit ports in the I/O register region at KSEG2
|
* PSX GPU has two 32-bit ports in the I/O register region at KSEG2 0x1F800000+.
|
||||||
* 0x1F800000+. GP0 (offset 0x10) is the data port (commands + params).
|
* GP0 (offset 0x10) is the data port (commands + params).
|
||||||
* GP1 (offset 0x14) is the control port (status, ctrl writes).
|
* GP1 (offset 0x14) is the control port (status, ctrl writes).
|
||||||
* ============================================================================ */
|
* ============================================================================ */
|
||||||
/* IO base address (KSEG2 0x1F800000+ for the I/O register region).
|
/* IO base address (KSEG2 0x1F800000+ for the I/O register region).
|
||||||
@@ -49,18 +49,18 @@
|
|||||||
* `lui $reg, 0x1F80` (1 word) then `sw $data, GPIO_PORT*_OFFSET($reg)` (1 word).
|
* `lui $reg, 0x1F80` (1 word) then `sw $data, GPIO_PORT*_OFFSET($reg)` (1 word).
|
||||||
* Mirrors the `IO_BASE_ADDR equ 0x1F80` + `gpio_port0 equ 0x1810` pattern from graphics_hello/gp.s. */
|
* Mirrors the `IO_BASE_ADDR equ 0x1F80` + `gpio_port0 equ 0x1810` pattern from graphics_hello/gp.s. */
|
||||||
enum {
|
enum {
|
||||||
IO_BASE_ADDR = 0x1F800000, /* full 32-bit I/O region base */
|
IO_BASE_ADDR = 0x1F800000, /* full 32-bit I/O region base */
|
||||||
IO_BASE_ADDR_HI16 = 0x1F80, /* fits in a single `lui $reg, 0x1F80` */
|
IO_BASE_ADDR_HI16 = 0x1F80, /* fits in a single `lui $reg, 0x1F80` */
|
||||||
|
|
||||||
/* Offsets from IO_BASE_ADDR to each port. Used by tape-side macros
|
/* Offsets from IO_BASE_ADDR to each port. Used by tape-side macros
|
||||||
* that pin a register to IO_BASE_ADDR and access ports via offsets:
|
* that pin a register to IO_BASE_ADDR and access ports via offsets:
|
||||||
* sw $data, GPIO_PORT0_OFFSET($io_base) ; write GP0
|
* sw $data, GPIO_PORT0_OFFSET($io_base) ; write GP0
|
||||||
* sw $data, GPIO_PORT1_OFFSET($io_base) ; write GP1 */
|
* sw $data, GPIO_PORT1_OFFSET($io_base) ; write GP1 */
|
||||||
GPIO_PORT0_OFFSET = 0x1810,
|
GPIO_PORT0_OFFSET = 0x1810,
|
||||||
GPIO_PORT1_OFFSET = 0x1814,
|
GPIO_PORT1_OFFSET = 0x1814,
|
||||||
|
|
||||||
HW_GP0_ADDR = (IO_BASE_ADDR_HI16 << 16) | GPIO_PORT0_OFFSET,
|
HW_GP0_ADDR = (IO_BASE_ADDR_HI16 << 16) | GPIO_PORT0_OFFSET,
|
||||||
HW_GP1_ADDR = (IO_BASE_ADDR_HI16 << 16) | GPIO_PORT1_OFFSET,
|
HW_GP1_ADDR = (IO_BASE_ADDR_HI16 << 16) | GPIO_PORT1_OFFSET,
|
||||||
};
|
};
|
||||||
|
|
||||||
#define HW_GP0 C_(U4 V_*, HW_GP0_ADDR)
|
#define HW_GP0 C_(U4 V_*, HW_GP0_ADDR)
|
||||||
@@ -73,66 +73,64 @@ enum {
|
|||||||
* GP0 command byte constants + Layer 1 (GPU bitfield shifts)
|
* GP0 command byte constants + Layer 1 (GPU bitfield shifts)
|
||||||
* ============================================================================
|
* ============================================================================
|
||||||
* 8-bit GP0 opcodes (the upper byte of a primitive's first word). These are the BYTE only.
|
* 8-bit GP0 opcodes (the upper byte of a primitive's first word). These are the BYTE only.
|
||||||
* The layer-1 bitfield-layout constants live in the same enum block so the encoder can reference them by name.
|
|
||||||
* NO macro body past this point uses a raw shift or raw mask.
|
* NO macro body past this point uses a raw shift or raw mask.
|
||||||
* Every shift/width/mask is named here, named once.
|
|
||||||
* Mirrors the OPCODE_SHIFT / RS_SHIFT / REG_MASK convention from mips.h.
|
* Mirrors the OPCODE_SHIFT / RS_SHIFT / REG_MASK convention from mips.h.
|
||||||
* ============================================================================ */
|
* ============================================================================ */
|
||||||
enum {
|
enum {
|
||||||
gp0_cmd_Nop = 0x00,
|
gp0_cmd_Nop = 0x00,
|
||||||
|
|
||||||
/* Cache management */
|
/* Cache management */
|
||||||
gp0_cmd_ClearCache = 0x01,
|
gp0_cmd_ClearCache = 0x01,
|
||||||
gp0_cmd_FillVram = 0x02,
|
gp0_cmd_FillVram = 0x02,
|
||||||
gp0_cmd_CopyVram = 0x80,
|
gp0_cmd_CopyVram = 0x80,
|
||||||
gp0_cmd_CopyVramChained = 0x81,
|
gp0_cmd_CopyVramChained = 0x81,
|
||||||
gp0_cmd_ReadVram = 0xC0,
|
gp0_cmd_ReadVram = 0xC0,
|
||||||
|
|
||||||
/* Polygons */
|
/* Polygons */
|
||||||
gp0_cmd_poly_f3 = 0x20, /* Flat Triangle */
|
gp0_cmd_poly_f3 = 0x20, /* Flat Triangle */
|
||||||
gp0_cmd_poly_ft3 = 0x24, /* Flat Textured Triangle */
|
gp0_cmd_poly_ft3 = 0x24, /* Flat Textured Triangle */
|
||||||
gp0_cmd_poly_g3 = 0x30, /* Gouraud Triangle */
|
gp0_cmd_poly_g3 = 0x30, /* Gouraud Triangle */
|
||||||
gp0_cmd_poly_gt3 = 0x34, /* Gouraud Textured Tri */
|
gp0_cmd_poly_gt3 = 0x34, /* Gouraud Textured Tri */
|
||||||
gp0_cmd_poly_f4 = 0x28, /* Flat Quad */
|
gp0_cmd_poly_f4 = 0x28, /* Flat Quad */
|
||||||
gp0_cmd_poly_ft4 = 0x2C, /* Flat Textured Quad */
|
gp0_cmd_poly_ft4 = 0x2C, /* Flat Textured Quad */
|
||||||
gp0_cmd_poly_g4 = 0x38, /* Gouraud Quad */
|
gp0_cmd_poly_g4 = 0x38, /* Gouraud Quad */
|
||||||
gp0_cmd_poly_gt4 = 0x3C, /* Gouraud Textured Quad */
|
gp0_cmd_poly_gt4 = 0x3C, /* Gouraud Textured Quad */
|
||||||
|
|
||||||
/* Lines */
|
/* Lines */
|
||||||
gp0_cmd_line_f2 = 0x40,
|
gp0_cmd_line_f2 = 0x40,
|
||||||
gp0_cmd_line_g2 = 0x50,
|
gp0_cmd_line_g2 = 0x50,
|
||||||
|
|
||||||
/* Sprites + Tiles + Rects */
|
/* Sprites + Tiles + Rects */
|
||||||
gp0_cmd_sprt_1 = 0x64,
|
gp0_cmd_sprt_1 = 0x64,
|
||||||
gp0_cmd_sprt_8 = 0x74,
|
gp0_cmd_sprt_8 = 0x74,
|
||||||
gp0_cmd_sprt_16 = 0x7C,
|
gp0_cmd_sprt_16 = 0x7C,
|
||||||
gp0_cmd_tile_1 = 0x60,
|
gp0_cmd_tile_1 = 0x60,
|
||||||
gp0_cmd_tile_8 = 0x68,
|
gp0_cmd_tile_8 = 0x68,
|
||||||
gp0_cmd_tile_16 = 0x70,
|
gp0_cmd_tile_16 = 0x70,
|
||||||
|
|
||||||
/* State setters (not drawing primitives; set render context). */
|
/* State setters (not drawing primitives; set render context). */
|
||||||
gp0_cmd_DrawModeSetting = 0xE1, /* TPage / draw-mode (semi-trans, dither, etc.) */
|
gp0_cmd_DrawModeSetting = 0xE1, /* TPage / draw-mode (semi-trans, dither, etc.) */
|
||||||
gp0_cmd_SetTextureWindow = 0xE2,
|
gp0_cmd_SetTextureWindow = 0xE2,
|
||||||
gp0_cmd_SetDrawArea_TopLeft = 0xE3,
|
gp0_cmd_SetDrawArea_TopLeft = 0xE3,
|
||||||
gp0_cmd_SetDrawArea_BotRight = 0xE4,
|
gp0_cmd_SetDrawArea_BotRight = 0xE4,
|
||||||
gp0_cmd_SetDrawOffset = 0xE5,
|
gp0_cmd_SetDrawOffset = 0xE5,
|
||||||
gp0_cmd_SetMaskBit = 0xE6,
|
gp0_cmd_SetMaskBit = 0xE6,
|
||||||
|
|
||||||
/* bitfield shifts / widths / masks ----
|
/* bitfield shifts / widths / masks ----
|
||||||
* Generic GP0/GP1 command byte (upper 8 bits of every word sent to either port). */
|
* Generic GP0/GP1 command byte (upper 8 bits of every word sent to either port). */
|
||||||
gp0_cmd_shift = 24,
|
gp0_cmd_shift = 24,
|
||||||
gp0_cmd_width = 8,
|
gp0_cmd_width = 8,
|
||||||
gp0_cmd_mask = 0xFF,
|
gp0_cmd_mask = 0xFF,
|
||||||
|
|
||||||
/* Color word layout (lives in Poly_F3.color, Poly_G4.c0..c3, etc.):
|
/* Color word layout (lives in Poly_F3.color, Poly_G4.c0..c3, etc.):
|
||||||
* bits 31..24 = command byte
|
* bits 31..24 = command byte
|
||||||
* bits 23..16 = BLUE
|
* bits 23..16 = BLUE
|
||||||
* bits 15..08 = GREEN
|
* bits 15..08 = GREEN
|
||||||
* bits 07..00 = RED (PSX GPU is BGR, NOT RGB) */
|
* bits 07..00 = RED (PSX GPU is BGR, NOT RGB) */
|
||||||
gp0_color_cmd_shift = 24, gp0_color_cmd_width = 8, gp0_color_cmd_mask = 0xFF,
|
gp0_color_cmd_shift = 24, gp0_color_cmd_width = 8, gp0_color_cmd_mask = 0xFF,
|
||||||
gp0_color_blue_shift = 16, gp0_color_blue_width = 8, gp0_color_blue_mask = 0xFF,
|
gp0_color_blue_shift = 16, gp0_color_blue_width = 8, gp0_color_blue_mask = 0xFF,
|
||||||
gp0_color_green_shift = 8, gp0_color_green_width = 8, gp0_color_green_mask = 0xFF,
|
gp0_color_green_shift = 8, gp0_color_green_width = 8, gp0_color_green_mask = 0xFF,
|
||||||
gp0_color_red_shift = 0, gp0_color_red_width = 8, gp0_color_red_mask = 0xFF,
|
gp0_color_red_shift = 0, gp0_color_red_width = 8, gp0_color_red_mask = 0xFF,
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ============================================================================
|
/* ============================================================================
|
||||||
@@ -171,10 +169,13 @@ enum {
|
|||||||
#define gp0_word_poly_gt4(r,g,b) enc_color_word(gp0_cmd_poly_gt4, (r),(g),(b))
|
#define gp0_word_poly_gt4(r,g,b) enc_color_word(gp0_cmd_poly_gt4, (r),(g),(b))
|
||||||
|
|
||||||
/* Cache management — bare-cmd words (no color/range payload). */
|
/* Cache management — bare-cmd words (no color/range payload). */
|
||||||
#define gp0_word_clear_cache() enc_gp0_cmd_word(gp0_cmd_ClearCache)
|
#define gp0_word_clear_cache() enc_gp0_cmd_word(gp0_cmd_ClearCache)
|
||||||
#define gp0_word_fill_vram() enc_gp0_cmd_word(gp0_cmd_FillVram)
|
#define gp0_word_fill_vram() enc_gp0_cmd_word(gp0_cmd_FillVram)
|
||||||
#define gp0_word_copy_vram() enc_gp0_cmd_word(gp0_cmd_CopyVram)
|
#define gp0_word_copy_vram() enc_gp0_cmd_word(gp0_cmd_CopyVram)
|
||||||
#define gp0_word_read_vram() enc_gp0_cmd_word(gp0_cmd_ReadVram)
|
#define gp0_word_read_vram() enc_gp0_cmd_word(gp0_cmd_ReadVram)
|
||||||
|
|
||||||
|
/* NOP — bare-cmd word (no effect; used as DR_ENV padding). */
|
||||||
|
#define gp0_word_nop() enc_gp0_cmd_word(gp0_cmd_Nop)
|
||||||
|
|
||||||
/* ============================================================================
|
/* ============================================================================
|
||||||
* GP1 command byte constants + Layer 1 (display-mode + range + draw-area bitfield shifts)
|
* GP1 command byte constants + Layer 1 (display-mode + range + draw-area bitfield shifts)
|
||||||
@@ -184,58 +185,57 @@ enum {
|
|||||||
* (cmd byte in the upper 8 bits via `enc_gp0_cmd(cmd)`).
|
* (cmd byte in the upper 8 bits via `enc_gp0_cmd(cmd)`).
|
||||||
* ============================================================================ */
|
* ============================================================================ */
|
||||||
enum {
|
enum {
|
||||||
gp1_cmd_Reset = 0x00,
|
gp1_cmd_Reset = 0x00,
|
||||||
gp1_cmd_ResetCmdBuffer = 0x01,
|
gp1_cmd_ResetCmdBuffer = 0x01,
|
||||||
gp1_cmd_AcknowledgeIRQ = 0x02,
|
gp1_cmd_AcknowledgeIRQ = 0x02,
|
||||||
gp1_cmd_DisplayEnable = 0x03,
|
gp1_cmd_DisplayEnable = 0x03,
|
||||||
gp1_cmd_DMADirection = 0x04,
|
gp1_cmd_DMADirection = 0x04,
|
||||||
gp1_cmd_StartDisplayArea = 0x05,
|
gp1_cmd_StartDisplayArea = 0x05,
|
||||||
gp1_cmd_HorizontalDisplayRange = 0x06,
|
gp1_cmd_HorizontalDisplayRange = 0x06,
|
||||||
gp1_cmd_VerticalDisplayRange = 0x07,
|
gp1_cmd_VerticalDisplayRange = 0x07,
|
||||||
gp1_cmd_DisplayMode = 0x08,
|
gp1_cmd_DisplayMode = 0x08,
|
||||||
/* Note: GP1 only has commands 0x00..0x08.
|
/* Note: GP1 only has commands 0x00..0x08.
|
||||||
* The state-setter commands (SetTextureWindow, * SetDrawArea*, SetDrawOffset, SetMaskBit)
|
* The state-setter commands (SetTextureWindow, * SetDrawArea*, SetDrawOffset, SetMaskBit)
|
||||||
* live in the GP0 enum as * 0xE1..0xE6.
|
* live in the GP0 enum as * 0xE1..0xE6.
|
||||||
* DrawArea word builders are below as GP0s * macros (since they emit GP0 commands). */
|
* DrawArea word builders are below as GP0s * macros (since they emit GP0 commands). */
|
||||||
|
|
||||||
/* ---- Display-mode payload flags (per PSX-SPX §"GP1 Display Mode").
|
/* ---- Display-mode payload flags (per PSX-SPX §"GP1 Display Mode").
|
||||||
* Bit positions match the encoder shifts below; values are the
|
* Bit positions match the encoder shifts below; values are the *payload* bits only (cmd byte is OR'd in by enc_gp1_disp_mode_word). */
|
||||||
* *payload* bits only (the cmd byte is OR'd in by enc_gp1_disp_mode_word). */
|
gp1_disp_HRes_256 = 0x0,
|
||||||
gp1_disp_HRes_256 = 0x0,
|
gp1_disp_HRes_320 = 0x1,
|
||||||
gp1_disp_HRes_320 = 0x1,
|
gp1_disp_HRes_512 = 0x2,
|
||||||
gp1_disp_HRes_512 = 0x2,
|
gp1_disp_HRes_640 = 0x3,
|
||||||
gp1_disp_HRes_640 = 0x3,
|
gp1_disp_VRes_240 = 0x0,
|
||||||
gp1_disp_VRes_240 = 0x0,
|
gp1_disp_VRes_480 = 0x1,
|
||||||
gp1_disp_VRes_480 = 0x1,
|
gp1_disp_Color15 = 0x0,
|
||||||
gp1_disp_Color15 = 0x0,
|
gp1_disp_Color24 = 0x1,
|
||||||
gp1_disp_Color24 = 0x1,
|
gp1_disp_VInterlace = 0x1,
|
||||||
gp1_disp_VInterlace = 0x1,
|
|
||||||
|
|
||||||
/* ---- Layer 1: GP1 display-mode + range + draw-area shifts/masks ---- */
|
/* ---- Layer 1: GP1 display-mode + range + draw-area shifts/masks ---- */
|
||||||
gp1_disp_hres_shift = 0, gp1_disp_hres_width = 2, gp1_disp_hres_mask = 0x3,
|
gp1_disp_hres_shift = 0, gp1_disp_hres_width = 2, gp1_disp_hres_mask = 0x3,
|
||||||
gp1_disp_vres_shift = 2, gp1_disp_vres_width = 1, gp1_disp_vres_mask = 0x1,
|
gp1_disp_vres_shift = 2, gp1_disp_vres_width = 1, gp1_disp_vres_mask = 0x1,
|
||||||
gp1_disp_color_shift = 4, gp1_disp_color_width = 1, gp1_disp_color_mask = 0x1,
|
gp1_disp_color_shift = 4, gp1_disp_color_width = 1, gp1_disp_color_mask = 0x1,
|
||||||
gp1_disp_interlace_shift = 5, gp1_disp_interlace_width = 1, gp1_disp_interlace_mask = 0x1,
|
gp1_disp_interlace_shift = 5, gp1_disp_interlace_width = 1, gp1_disp_interlace_mask = 0x1,
|
||||||
|
|
||||||
/* GP1 horizontal display range: bits 0..11 = X2, bits 12..23 = X1 */
|
/* GP1 horizontal display range: bits 0..11 = X2, bits 12..23 = X1 */
|
||||||
gp1_hrange_x1_shift = 12, gp1_hrange_x1_width = 12, gp1_hrange_x1_mask = 0xFFF,
|
gp1_hrange_x1_shift = 12, gp1_hrange_x1_width = 12, gp1_hrange_x1_mask = 0xFFF,
|
||||||
gp1_hrange_x2_shift = 0, gp1_hrange_x2_width = 12, gp1_hrange_x2_mask = 0xFFF,
|
gp1_hrange_x2_shift = 0, gp1_hrange_x2_width = 12, gp1_hrange_x2_mask = 0xFFF,
|
||||||
|
|
||||||
/* GP1 vertical display range: bits 0..9 = Y2, bits 10..19 = Y1 */
|
/* GP1 vertical display range: bits 0..9 = Y2, bits 10..19 = Y1 */
|
||||||
gp1_vrange_y1_shift = 10, gp1_vrange_y1_width = 10, gp1_vrange_y1_mask = 0x3FF,
|
gp1_vrange_y1_shift = 10, gp1_vrange_y1_width = 10, gp1_vrange_y1_mask = 0x3FF,
|
||||||
gp1_vrange_y2_shift = 0, gp1_vrange_y2_width = 10, gp1_vrange_y2_mask = 0x3FF,
|
gp1_vrange_y2_shift = 0, gp1_vrange_y2_width = 10, gp1_vrange_y2_mask = 0x3FF,
|
||||||
|
|
||||||
/* GP1 draw area (top-left or bottom-right): bits 0..9 = X, bits 10..19 = Y
|
/* GP1 draw area (top-left or bottom-right): bits 0..9 = X, bits 10..19 = Y
|
||||||
* (10-bit signed — caller pre-signs and masks with the named mask) */
|
* (10-bit signed — caller pre-signs and masks with the named mask) */
|
||||||
gp1_draw_x_shift = 0, gp1_draw_x_width = 10, gp1_draw_x_mask = 0x3FF,
|
gp1_draw_x_shift = 0, gp1_draw_x_width = 10, gp1_draw_x_mask = 0x3FF,
|
||||||
gp1_draw_y_shift = 10, gp1_draw_y_width = 10, gp1_draw_y_mask = 0x3FF,
|
gp1_draw_y_shift = 10, gp1_draw_y_width = 10, gp1_draw_y_mask = 0x3FF,
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---- Layer 1.5: GP1 per-field encoders ---- */
|
/* ---- Layer 1.5: GP1 per-field encoders ---- */
|
||||||
#define enc_gp1_disp_hres(h) (((h) & gp1_disp_hres_mask) << gp1_disp_hres_shift)
|
#define enc_gp1_disp_hres(h) (((h) & gp1_disp_hres_mask) << gp1_disp_hres_shift)
|
||||||
#define enc_gp1_disp_vres(v) (((v) & gp1_disp_vres_mask) << gp1_disp_vres_shift)
|
#define enc_gp1_disp_vres(v) (((v) & gp1_disp_vres_mask) << gp1_disp_vres_shift)
|
||||||
#define enc_gp1_disp_color(c) (((c) & gp1_disp_color_mask) << gp1_disp_color_shift)
|
#define enc_gp1_disp_color(c) (((c) & gp1_disp_color_mask) << gp1_disp_color_shift)
|
||||||
#define enc_gp1_disp_interlace(i) (((i) & gp1_disp_interlace_mask << gp1_disp_interlace_shift)
|
#define enc_gp1_disp_interlace(i) (((i) & gp1_disp_interlace_mask) << gp1_disp_interlace_shift)
|
||||||
|
|
||||||
#define enc_gp1_hrange_x1(x1) (((x1) & gp1_hrange_x1_mask) << gp1_hrange_x1_shift)
|
#define enc_gp1_hrange_x1(x1) (((x1) & gp1_hrange_x1_mask) << gp1_hrange_x1_shift)
|
||||||
#define enc_gp1_hrange_x2(x2) (((x2) & gp1_hrange_x2_mask) << gp1_hrange_x2_shift)
|
#define enc_gp1_hrange_x2(x2) (((x2) & gp1_hrange_x2_mask) << gp1_hrange_x2_shift)
|
||||||
@@ -255,6 +255,11 @@ enum {
|
|||||||
#define enc_gp0_draw_area_br_word(x, y) (enc_gp0_cmd(gp0_cmd_SetDrawArea_BotRight) | enc_gp1_draw_x(x) | enc_gp1_draw_y(y))
|
#define enc_gp0_draw_area_br_word(x, y) (enc_gp0_cmd(gp0_cmd_SetDrawArea_BotRight) | enc_gp1_draw_x(x) | enc_gp1_draw_y(y))
|
||||||
|
|
||||||
/* ---- Layer 3: GP1 semantic word builders ---- */
|
/* ---- Layer 3: GP1 semantic word builders ---- */
|
||||||
|
#define gp1_word_Reset() enc_gp0_cmd_word(gp1_cmd_Reset)
|
||||||
|
#define gp1_word_ResetCmdBuffer() enc_gp0_cmd_word(gp1_cmd_ResetCmdBuffer)
|
||||||
|
#define gp1_word_AcknowledgeIRQ() enc_gp0_cmd_word(gp1_cmd_AcknowledgeIRQ)
|
||||||
|
#define gp1_word_StartDisplayArea() enc_gp0_cmd_word(gp1_cmd_StartDisplayArea)
|
||||||
|
|
||||||
#define gp1_word_display_enable(on) (enc_gp0_cmd(gp1_cmd_DisplayEnable) | ((on) & 1))
|
#define gp1_word_display_enable(on) (enc_gp0_cmd(gp1_cmd_DisplayEnable) | ((on) & 1))
|
||||||
#define gp1_word_display_disable() gp1_word_display_enable(0)
|
#define gp1_word_display_disable() gp1_word_display_enable(0)
|
||||||
#define gp1_word_display_mode_320x240_15bit_ntsc enc_gp1_disp_mode_word(gp1_disp_HRes_320, gp1_disp_VRes_240, gp1_disp_Color15, 0)
|
#define gp1_word_display_mode_320x240_15bit_ntsc enc_gp1_disp_mode_word(gp1_disp_HRes_320, gp1_disp_VRes_240, gp1_disp_Color15, 0)
|
||||||
@@ -279,31 +284,36 @@ enum {
|
|||||||
#define gp1_word_display_enabled enc_gp0_cmd_word(gp1_cmd_DisplayEnable)
|
#define gp1_word_display_enabled enc_gp0_cmd_word(gp1_cmd_DisplayEnable)
|
||||||
#define gp1_word_display_disabled (enc_gp0_cmd_word(gp1_cmd_DisplayEnable) | 1)
|
#define gp1_word_display_disabled (enc_gp0_cmd_word(gp1_cmd_DisplayEnable) | 1)
|
||||||
|
|
||||||
|
#define gp1_word_DisplayOn() gp1_word_display_enable(0)
|
||||||
|
#define gp1_word_DisplayOff() gp1_word_display_enable(1)
|
||||||
|
|
||||||
/* ---- DMA direction (2-bit payload on DMADirection cmd 0x04) ---- */
|
/* ---- DMA direction (2-bit payload on DMADirection cmd 0x04) ---- */
|
||||||
enum {
|
enum {
|
||||||
gp1_dma_dir_Off = 0,
|
gp1_dma_dir_Off = 0,
|
||||||
gp1_dma_dir_FIFO = 1,
|
gp1_dma_dir_FIFO = 1,
|
||||||
gp1_dma_dir_CPU_to_GPU = 2,
|
gp1_dma_dir_CPU_to_GPU = 2,
|
||||||
gp1_dma_dir_GPUREAD_to_CPU = 3,
|
gp1_dma_dir_GPUREAD_to_CPU = 3,
|
||||||
};
|
};
|
||||||
#define gp1_word_dma_direction(dir) (enc_gp0_cmd(gp1_cmd_DMADirection) | ((dir) & 0x3))
|
#define gp1_word_dma_direction(dir) (enc_gp0_cmd(gp1_cmd_DMADirection) | ((dir) & 0x3))
|
||||||
|
#define gp1_word_dma_to_gpu() gp1_word_dma_direction(gp1_dma_dir_CPU_to_GPU)
|
||||||
|
#define gp1_word_dma_read_cpu() gp1_word_dma_direction(gp1_dma_dir_GPUREAD_to_CPU)
|
||||||
|
|
||||||
/* ---- Standard display ranges (NTSC + PAL pre-baked) ---- */
|
/* ---- Standard display ranges (NTSC + PAL pre-baked) ---- */
|
||||||
/* Horizontal range values are in video clock units (8 units/pixel); vertical range values are scanline numbers. */
|
/* Horizontal range values are in video clock units (8 units/pixel); vertical range values are scanline numbers. */
|
||||||
enum {
|
enum {
|
||||||
/* NTSC horizontal range: X1=608, X2=3168 */
|
/* NTSC horizontal range: X1=608, X2=3168 */
|
||||||
gp1_hrange_NTSC_x1 = 0x260,
|
gp1_hrange_NTSC_x1 = 0x260,
|
||||||
gp1_hrange_NTSC_x2 = 0xC60,
|
gp1_hrange_NTSC_x2 = 0xC60,
|
||||||
/* PAL horizontal range (same as NTSC for most CRTs) */
|
/* PAL horizontal range (same as NTSC for most CRTs) */
|
||||||
gp1_hrange_PAL_x1 = 0x260,
|
gp1_hrange_PAL_x1 = 0x260,
|
||||||
gp1_hrange_PAL_x2 = 0xC60,
|
gp1_hrange_PAL_x2 = 0xC60,
|
||||||
|
|
||||||
/* NTSC vertical range: Y1=24, Y2=264 */
|
/* NTSC vertical range: Y1=24, Y2=264 */
|
||||||
gp1_vrange_NTSC_y1 = 24,
|
gp1_vrange_NTSC_y1 = 24,
|
||||||
gp1_vrange_NTSC_y2 = 264,
|
gp1_vrange_NTSC_y2 = 264,
|
||||||
/* PAL vertical range: Y1=24, Y2=504 */
|
/* PAL vertical range: Y1=24, Y2=504 */
|
||||||
gp1_vrange_PAL_y1 = 24,
|
gp1_vrange_PAL_y1 = 24,
|
||||||
gp1_vrange_PAL_y2 = 504,
|
gp1_vrange_PAL_y2 = 504,
|
||||||
};
|
};
|
||||||
|
|
||||||
#define gp1_word_horizontal_range_ntsc enc_gp1_hrange_word(gp1_hrange_NTSC_x1, gp1_hrange_NTSC_x2)
|
#define gp1_word_horizontal_range_ntsc enc_gp1_hrange_word(gp1_hrange_NTSC_x1, gp1_hrange_NTSC_x2)
|
||||||
@@ -314,14 +324,49 @@ enum {
|
|||||||
/* ---- Draw-mode setting (TPage / draw-area allowance) ---- */
|
/* ---- Draw-mode setting (TPage / draw-area allowance) ---- */
|
||||||
/* The "drawing enabled" word is the standard post-init state. */
|
/* The "drawing enabled" word is the standard post-init state. */
|
||||||
enum {
|
enum {
|
||||||
gp0_DrawMode_DrawToDispBit = 10,
|
/* Per psx-spx, the standard 0xE1 layout has dfe at bit 10. But libpsyx's PutDrawEnv
|
||||||
|
* uses bit 19 (in the "unused" 14-23 range) for dfe in the DR_ENV code[0] — and the
|
||||||
|
* PSX hardware honors bit 19 in the DR_ENV context (not bit 10). So we need a
|
||||||
|
* separate bit definition for the DR_ENV-specific DrawMode. */
|
||||||
|
gp0_DrawMode_DrawToDispBit = 10, // standard psx-spx bit 10 (dfe)
|
||||||
|
gp0_DrawMode_DR_ENV_DrawToDispBit = 19, // libpsyx DR_ENV code[0] (dfe in DR_ENV context)
|
||||||
|
gp0_DrawMode_DR_ENV_isbgBit = 19, // libpsyx uses bit 19 for isbg too
|
||||||
};
|
};
|
||||||
#define gp0_word_draw_mode_drawing_allowed (enc_gp0_cmd(gp0_cmd_DrawModeSetting) | (1 << gp0_DrawMode_DrawToDispBit))
|
#define gp0_word_draw_mode_drawing_allowed (enc_gp0_cmd(gp0_cmd_DrawModeSetting) | (1 << gp0_DrawMode_DrawToDispBit))
|
||||||
|
|
||||||
/* ---- DrawArea pre-baked at origin (0,0) and full screen (320x240) ---- */
|
/* DR_ENV-specific DrawMode variants (libpsyx SetDrawEnv layout).
|
||||||
|
* The DR_ENV is a 16-word packet emitted at boot by gp_screen_init's ac_put_draw_env_demo
|
||||||
|
* atom component. Within the DR_ENV, the 0xE1 command is reused in three different bit
|
||||||
|
* configurations:
|
||||||
|
* code[0] = `gp0_word_draw_mode_drawing_allowed` (dfe=1; standard post-init state)
|
||||||
|
* code[6] = `gp0_word_dr_env_bg_color_cmd(isbg, r, g, b)` (initial-bg-color path)
|
||||||
|
* code[7] = `gp0_word_dr_env_draw_mode(isbg)` (isbg-flag path)
|
||||||
|
* Bits 0-23 of the 0xE1 word are the payload; bits 24-31 are the cmd byte (0xE1). */
|
||||||
|
#define gp0_word_dr_env_bg_color_cmd(isbg, r, g, b) (enc_gp0_cmd(gp0_cmd_DrawModeSetting) | (1 << gp0_DrawMode_DrawToDispBit) | ((isbg) ? gp0_dr_env_isbg_bit : 0) | enc_gp0_color_r(r) | enc_gp0_color_g(g) | enc_gp0_color_b(b))
|
||||||
|
#define gp0_word_dr_env_draw_mode(isbg) (enc_gp0_cmd(gp0_cmd_DrawModeSetting) | (1 << gp0_DrawMode_DrawToDispBit) | ((isbg) ? gp0_dr_env_isbg_bit : 0))
|
||||||
|
|
||||||
|
/* State-setter bare-cmd words (no immediate payload; the GPU uses the current state machine already programmed). */
|
||||||
|
#define gp0_word_set_texture_window() enc_gp0_cmd_word(gp0_cmd_SetTextureWindow)
|
||||||
|
#define gp0_word_set_draw_offset() enc_gp0_cmd_word(gp0_cmd_SetDrawOffset)
|
||||||
|
#define gp0_word_set_mask_bit() enc_gp0_cmd_word(gp0_cmd_SetMaskBit)
|
||||||
|
|
||||||
|
/* DR_ENV code[5] Mask (0xE6 cmd + isbg bit). The isbg bit is set so the GPU knows the auto-clear path is active (paired with code[6] + code[7]). */
|
||||||
|
#define gp0_word_dr_env_mask() (gp0_word_set_mask_bit() | gp0_dr_env_isbg_bit)
|
||||||
|
|
||||||
|
/* DR_ENV pre-baked constants (libpsyx PutDrawEnv layout).
|
||||||
|
* DR_ENV is a 16-word packet: tag = (length << 24) | addr, where length = 15 (15 code words follow) and addr = 0 (chain to nothing). */
|
||||||
|
enum {
|
||||||
|
PolyTag_len_bits = 8,
|
||||||
|
PolyTag_addr_bits = 24,
|
||||||
|
|
||||||
|
gp0_dr_env_tag = (15 << 24) | 0x00FFFFFF,
|
||||||
|
gp0_dr_env_isbg_bit = (1 << gp0_DrawMode_DR_ENV_isbgBit),
|
||||||
|
};
|
||||||
|
|
||||||
|
/* ---- DrawArea at origin (0,0) and full screen (320x240) ---- */
|
||||||
#define gp0_word_draw_area_top_left_origin enc_gp0_draw_area_tl_word(0, 0)
|
#define gp0_word_draw_area_top_left_origin enc_gp0_draw_area_tl_word(0, 0)
|
||||||
#define gp0_word_draw_area_bottom_right_320x240 enc_gp0_draw_area_br_word(320, 240)
|
#define gp0_word_draw_area_bottom_right_320x240 enc_gp0_draw_area_br_word(319, 239)
|
||||||
#define gp0_word_draw_area_bottom_right_640x480 enc_gp0_draw_area_br_word(640, 480)
|
#define gp0_word_draw_area_bottom_right_640x480 enc_gp0_draw_area_br_word(639, 479)
|
||||||
|
|
||||||
#pragma endregion GPU Ports & Commands
|
#pragma endregion GPU Ports & Commands
|
||||||
|
|
||||||
@@ -332,9 +377,9 @@ enum {
|
|||||||
* Read from HW_GP1; the lower bits are DMA-block-size (variable-width).
|
* Read from HW_GP1; the lower bits are DMA-block-size (variable-width).
|
||||||
* ============================================================================ */
|
* ============================================================================ */
|
||||||
enum {
|
enum {
|
||||||
gp1_Status_BitReady = 31,
|
gp1_Status_BitReady = 31,
|
||||||
gp1_Status_BitSendingDMA = 25,
|
gp1_Status_BitSendingDMA = 25,
|
||||||
gp1_Status_DMABlockSizeShift = 0,
|
gp1_Status_DMABlockSizeShift = 0,
|
||||||
};
|
};
|
||||||
|
|
||||||
#define gp1_status_is_ready() ((HW_GP1[0] >> gp1_Status_BitReady) & 1)
|
#define gp1_status_is_ready() ((HW_GP1[0] >> gp1_Status_BitReady) & 1)
|
||||||
@@ -360,10 +405,10 @@ typedef Struct_(RGB8) { B1 r; B1 g; B1 b; };
|
|||||||
#define rgb8(r,g,b) ((RGB8){r,g,b})
|
#define rgb8(r,g,b) ((RGB8){r,g,b})
|
||||||
|
|
||||||
/* ---------- PolyTag (the OT-link header; 1 word) ---------- */
|
/* ---------- PolyTag (the OT-link header; 1 word) ---------- */
|
||||||
enum {
|
// enum {
|
||||||
PolyTag_len_bits = 8,
|
// PolyTag_len_bits = 8,
|
||||||
PolyTag_addr_bits = 24,
|
// PolyTag_addr_bits = 24,
|
||||||
};
|
// };
|
||||||
typedef Struct_(PolyTag) {
|
typedef Struct_(PolyTag) {
|
||||||
union {
|
union {
|
||||||
U4 code;
|
U4 code;
|
||||||
@@ -387,95 +432,95 @@ typedef Struct_(PolyTag) {
|
|||||||
|
|
||||||
/* ---------- Poly_F3 (Flat Triangle; 5 words) ---------- */
|
/* ---------- Poly_F3 (Flat Triangle; 5 words) ---------- */
|
||||||
typedef Struct_(Poly_F3) {
|
typedef Struct_(Poly_F3) {
|
||||||
U4 tag;
|
U4 tag;
|
||||||
RGB8 color;
|
RGB8 color;
|
||||||
B1 code;
|
B1 code;
|
||||||
union {
|
union {
|
||||||
struct { V2_S2 p0; V2_S2 p1; V2_S2 p2; };
|
struct { V2_S2 p0; V2_S2 p1; V2_S2 p2; };
|
||||||
A3_V2_S2 points;
|
A3_V2_S2 points;
|
||||||
};
|
};
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---------- Poly_F4 (Flat Quad; 6 words) ---------- */
|
/* ---------- Poly_F4 (Flat Quad; 6 words) ---------- */
|
||||||
typedef Struct_(Poly_F4) {
|
typedef Struct_(Poly_F4) {
|
||||||
U4 tag;
|
U4 tag;
|
||||||
RGB8 color;
|
RGB8 color;
|
||||||
B1 code;
|
B1 code;
|
||||||
union {
|
union {
|
||||||
struct { V2_S2 p0; V2_S2 p1; V2_S2 p2; V2_S2 p3; };
|
struct { V2_S2 p0; V2_S2 p1; V2_S2 p2; V2_S2 p3; };
|
||||||
A4_V2_S2 points;
|
A4_V2_S2 points;
|
||||||
};
|
};
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---------- Poly_G3 (Gouraud Triangle; 7 words) ---------- */
|
/* ---------- Poly_G3 (Gouraud Triangle; 7 words) ---------- */
|
||||||
typedef Struct_(Poly_G3) {
|
typedef Struct_(Poly_G3) {
|
||||||
U4 tag; RGB8 c0; B1 code;
|
U4 tag; RGB8 c0; B1 code;
|
||||||
V2_S2 p0; RGB8 c1; B1 pad1;
|
V2_S2 p0; RGB8 c1; B1 pad1;
|
||||||
V2_S2 p1; RGB8 c2; B1 pad2;
|
V2_S2 p1; RGB8 c2; B1 pad2;
|
||||||
V2_S2 p2;
|
V2_S2 p2;
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---------- Poly_G4 (Gouraud Quad; 9 words) ---------- */
|
/* ---------- Poly_G4 (Gouraud Quad; 9 words) ---------- */
|
||||||
typedef Struct_(Poly_G4) {
|
typedef Struct_(Poly_G4) {
|
||||||
U4 tag; RGB8 c0; B1 code;
|
U4 tag; RGB8 c0; B1 code;
|
||||||
V2_S2 p0; RGB8 c1; B1 pad1;
|
V2_S2 p0; RGB8 c1; B1 pad1;
|
||||||
V2_S2 p1; RGB8 c2; B1 pad2;
|
V2_S2 p1; RGB8 c2; B1 pad2;
|
||||||
V2_S2 p2; RGB8 c3; B1 pad3;
|
V2_S2 p2; RGB8 c3; B1 pad3;
|
||||||
V2_S2 p3;
|
V2_S2 p3;
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---------- Poly_FT3 (Flat Textured Triangle; placeholder layout) ---------- */
|
/* ---------- Poly_FT3 (Flat Textured Triangle; placeholder layout) ---------- */
|
||||||
/* TODO(Ed): verify the textured-variant layout against PSX-SPX when needed. */
|
/* TODO(Ed): verify the textured-variant layout against PSX-SPX when needed. */
|
||||||
typedef Struct_(Poly_FT3) {
|
typedef Struct_(Poly_FT3) {
|
||||||
U4 tag;
|
U4 tag;
|
||||||
RGB8 color;
|
RGB8 color;
|
||||||
B1 code;
|
B1 code;
|
||||||
U4 tpage;
|
U4 tpage;
|
||||||
U4 clut;
|
U4 clut;
|
||||||
V2_S2 p0; U1 u0; U1 v0;
|
V2_S2 p0; U1 u0; U1 v0;
|
||||||
V2_S2 p1; U1 u1; U1 v1;
|
V2_S2 p1; U1 u1; U1 v1;
|
||||||
V2_S2 p2; U1 u2; U1 v2;
|
V2_S2 p2; U1 u2; U1 v2;
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---------- Poly_FT4 (Flat Textured Quad) ---------- */
|
/* ---------- Poly_FT4 (Flat Textured Quad) ---------- */
|
||||||
typedef Struct_(Poly_FT4) {
|
typedef Struct_(Poly_FT4) {
|
||||||
U4 tag;
|
U4 tag;
|
||||||
RGB8 color;
|
RGB8 color;
|
||||||
B1 code;
|
B1 code;
|
||||||
U4 tpage;
|
U4 tpage;
|
||||||
U4 clut;
|
U4 clut;
|
||||||
V2_S2 p0; U1 u0; U1 v0;
|
V2_S2 p0; U1 u0; U1 v0;
|
||||||
V2_S2 p1; U1 u1; U1 v1;
|
V2_S2 p1; U1 u1; U1 v1;
|
||||||
V2_S2 p2; U1 u2; U1 v2;
|
V2_S2 p2; U1 u2; U1 v2;
|
||||||
V2_S2 p3; U1 u3; U1 v3;
|
V2_S2 p3; U1 u3; U1 v3;
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---------- Poly_GT3 (Gouraud Textured Triangle) ---------- */
|
/* ---------- Poly_GT3 (Gouraud Textured Triangle) ---------- */
|
||||||
typedef Struct_(Poly_GT3) {
|
typedef Struct_(Poly_GT3) {
|
||||||
U4 tag; RGB8 c0; B1 code;
|
U4 tag; RGB8 c0; B1 code;
|
||||||
V2_S2 p0; RGB8 c1; B1 pad1;
|
V2_S2 p0; RGB8 c1; B1 pad1;
|
||||||
V2_S2 p1; RGB8 c2; B1 pad2;
|
V2_S2 p1; RGB8 c2; B1 pad2;
|
||||||
V2_S2 p2;
|
V2_S2 p2;
|
||||||
U4 tpage;
|
U4 tpage;
|
||||||
U4 clut;
|
U4 clut;
|
||||||
V2_S2 tp0; U1 u0; U1 v0;
|
V2_S2 tp0; U1 u0; U1 v0;
|
||||||
V2_S2 tp1; U1 u1; U1 v1;
|
V2_S2 tp1; U1 u1; U1 v1;
|
||||||
V2_S2 tp2; U1 u2; U1 v2;
|
V2_S2 tp2; U1 u2; U1 v2;
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---------- Poly_GT4 (Gouraud Textured Quad) ---------- */
|
/* ---------- Poly_GT4 (Gouraud Textured Quad) ---------- */
|
||||||
typedef Struct_(Poly_GT4) {
|
typedef Struct_(Poly_GT4) {
|
||||||
U4 tag; RGB8 c0; B1 code;
|
U4 tag; RGB8 c0; B1 code;
|
||||||
V2_S2 p0; RGB8 c1; B1 pad1;
|
V2_S2 p0; RGB8 c1; B1 pad1;
|
||||||
V2_S2 p1; RGB8 c2; B1 pad2;
|
V2_S2 p1; RGB8 c2; B1 pad2;
|
||||||
V2_S2 p2; RGB8 c3; B1 pad3;
|
V2_S2 p2; RGB8 c3; B1 pad3;
|
||||||
V2_S2 p3;
|
V2_S2 p3;
|
||||||
U4 tpage;
|
U4 tpage;
|
||||||
U4 clut;
|
U4 clut;
|
||||||
V2_S2 tp0; U1 u0; U1 v0;
|
V2_S2 tp0; U1 u0; U1 v0;
|
||||||
V2_S2 tp1; U1 u1; U1 v1;
|
V2_S2 tp1; U1 u1; U1 v1;
|
||||||
V2_S2 tp2; U1 u2; U1 v2;
|
V2_S2 tp2; U1 u2; U1 v2;
|
||||||
V2_S2 tp3; U1 u3; U1 v3;
|
V2_S2 tp3; U1 u3; U1 v3;
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---------- Primitive setters (C-level) ----------
|
/* ---------- Primitive setters (C-level) ----------
|
||||||
@@ -510,26 +555,29 @@ typedef Struct_(Poly_GT4) {
|
|||||||
* bits 12..31 = reserved (zero)
|
* bits 12..31 = reserved (zero)
|
||||||
* ============================================================================ */
|
* ============================================================================ */
|
||||||
enum {
|
enum {
|
||||||
/* ---- Layer 1: TPage bitfield shifts / widths / masks ---- */
|
/* ---- Layer 1: TPage bitfield shifts / widths / masks ---- */
|
||||||
gp0_tpage_x_shift = 0, gp0_tpage_x_width = 4, gp0_tpage_x_mask = 0xF,
|
gp0_tpage_x_shift = 0, gp0_tpage_x_width = 4, gp0_tpage_x_mask = 0xF,
|
||||||
gp0_tpage_y_shift = 4, gp0_tpage_y_width = 1, gp0_tpage_y_mask = 0x1,
|
gp0_tpage_y_shift = 4, gp0_tpage_y_width = 1, gp0_tpage_y_mask = 0x1,
|
||||||
gp0_tpage_semi_trans_shift = 5, gp0_tpage_semi_trans_width = 2, gp0_tpage_semi_trans_mask = 0x3,
|
gp0_tpage_semi_trans_shift = 5, gp0_tpage_semi_trans_width = 2, gp0_tpage_semi_trans_mask = 0x3,
|
||||||
gp0_tpage_color_depth_shift = 7, gp0_tpage_color_depth_width = 2, gp0_tpage_color_depth_mask = 0x3,
|
gp0_tpage_color_depth_shift = 7, gp0_tpage_color_depth_width = 2, gp0_tpage_color_depth_mask = 0x3,
|
||||||
gp0_tpage_dither_shift = 9, gp0_tpage_dither_width = 1, gp0_tpage_dither_mask = 0x1,
|
gp0_tpage_dither_shift = 9, gp0_tpage_dither_width = 1, gp0_tpage_dither_mask = 0x1,
|
||||||
gp0_tpage_draw_to_disp_shift = 10, gp0_tpage_draw_to_disp_width = 1, gp0_tpage_draw_to_disp_mask = 0x1,
|
gp0_tpage_draw_to_disp_shift = 10, gp0_tpage_draw_to_disp_width = 1, gp0_tpage_draw_to_disp_mask = 0x1,
|
||||||
gp0_tpage_tex_disable_shift = 11, gp0_tpage_tex_disable_width = 1, gp0_tpage_tex_disable_mask = 0x1,
|
gp0_tpage_tex_disable_shift = 11, gp0_tpage_tex_disable_width = 1, gp0_tpage_tex_disable_mask = 0x1,
|
||||||
|
|
||||||
/* TPage color-depth payload values (NOT bit positions — these go in
|
/* TPage color-depth payload values (NOT bit positions — these go in
|
||||||
* the 2-bit field at gp0_tpage_color_depth_shift). */
|
* the 2-bit field at gp0_tpage_color_depth_shift). */
|
||||||
gp0_tpage_color_4bpp = 0x0,
|
gp0_tpage_color_4bpp = 0x0,
|
||||||
gp0_tpage_color_8bpp = 0x1,
|
gp0_tpage_color_8bpp = 0x1,
|
||||||
gp0_tpage_color_16bpp = 0x2,
|
gp0_tpage_color_16bpp = 0x2,
|
||||||
|
|
||||||
/* TPage semi-transparency mode payload values (NOT bit positions). */
|
/* Default TPage value libpsyx's SetDefDrawEnv writes (matches the `li v1, 10; sh v1, 20(v0)` sequence at C11_only.elf:0x8001273C). */
|
||||||
gp0_tpage_semi_trans_none = 0x0,
|
gp0_tpage_default = 10,
|
||||||
gp0_tpage_semi_trans_alpha = 0x1,
|
|
||||||
gp0_tpage_semi_trans_add = 0x2,
|
/* TPage semi-transparency mode payload values (NOT bit positions). */
|
||||||
gp0_tpage_semi_trans_sub = 0x3,
|
gp0_tpage_semi_trans_none = 0x0,
|
||||||
|
gp0_tpage_semi_trans_alpha = 0x1,
|
||||||
|
gp0_tpage_semi_trans_add = 0x2,
|
||||||
|
gp0_tpage_semi_trans_sub = 0x3,
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---- Layer 1.5: TPage per-field encoders. Mirrors enc_gte_sf/mx/v in gte.h. ---- */
|
/* ---- Layer 1.5: TPage per-field encoders. Mirrors enc_gte_sf/mx/v in gte.h. ---- */
|
||||||
@@ -543,19 +591,19 @@ enum {
|
|||||||
|
|
||||||
/* ---- Layer 2: TPage composite encoder. Mirrors enc_gte_cmdw in gte.h ---- */
|
/* ---- Layer 2: TPage composite encoder. Mirrors enc_gte_cmdw in gte.h ---- */
|
||||||
#define enc_gp0_tpage_word(x, y, semi_trans, color_depth, dither, draw_to_disp, tex_disable) \
|
#define enc_gp0_tpage_word(x, y, semi_trans, color_depth, dither, draw_to_disp, tex_disable) \
|
||||||
(enc_gp0_tpage_x(x) \
|
(enc_gp0_tpage_x(x) \
|
||||||
| enc_gp0_tpage_y(y) \
|
| enc_gp0_tpage_y(y) \
|
||||||
| enc_gp0_tpage_semi_trans(semi_trans) \
|
| enc_gp0_tpage_semi_trans(semi_trans) \
|
||||||
| enc_gp0_tpage_color_depth(color_depth) \
|
| enc_gp0_tpage_color_depth(color_depth) \
|
||||||
| enc_gp0_tpage_dither(dither) \
|
| enc_gp0_tpage_dither(dither) \
|
||||||
| enc_gp0_tpage_draw_to_disp(draw_to_disp) \
|
| enc_gp0_tpage_draw_to_disp(draw_to_disp) \
|
||||||
| enc_gp0_tpage_tex_disable(tex_disable))
|
| enc_gp0_tpage_tex_disable(tex_disable))
|
||||||
|
|
||||||
typedef Struct_(TexturePage) { U4 raw; };
|
typedef Struct_(TexturePage) { U4 raw; };
|
||||||
|
|
||||||
/* ---- Layer 3: TPage semantic word builder ---- */
|
/* ---- Layer 3: TPage semantic word builder ---- */
|
||||||
#define gp0_word_tpage(x, y, semi_trans, color_depth, dither, draw_to_disp, tex_disable) \
|
#define gp0_word_tpage(x, y, semi_trans, color_depth, dither, draw_to_disp, tex_disable) \
|
||||||
enc_gp0_tpage_word((x), (y), (semi_trans), (color_depth), (dither), (draw_to_disp), (tex_disable))
|
enc_gp0_tpage_word((x), (y), (semi_trans), (color_depth), (dither), (draw_to_disp), (tex_disable))
|
||||||
#pragma endregion TPage
|
#pragma endregion TPage
|
||||||
|
|
||||||
#pragma region CLUT
|
#pragma region CLUT
|
||||||
@@ -569,12 +617,12 @@ typedef Struct_(TexturePage) { U4 raw; };
|
|||||||
* bits 24..31 = command byte — 0x20 (4bpp load) or 0x25 (8bpp load)
|
* bits 24..31 = command byte — 0x20 (4bpp load) or 0x25 (8bpp load)
|
||||||
* ============================================================================ */
|
* ============================================================================ */
|
||||||
enum {
|
enum {
|
||||||
/* ---- Layer 1: CLUT bitfield shifts / widths / masks ---- */
|
/* ---- Layer 1: CLUT bitfield shifts / widths / masks ---- */
|
||||||
gp0_clut_y_shift = 0, gp0_clut_y_width = 6, gp0_clut_y_mask = 0x3F,
|
gp0_clut_y_shift = 0, gp0_clut_y_width = 6, gp0_clut_y_mask = 0x3F,
|
||||||
gp0_clut_x_shift = 6, gp0_clut_x_width = 9, gp0_clut_x_mask = 0x1FF,
|
gp0_clut_x_shift = 6, gp0_clut_x_width = 9, gp0_clut_x_mask = 0x1FF,
|
||||||
/* CLUT-load cmd-byte variants — the upper byte of the GP0 word. */
|
/* CLUT-load cmd-byte variants — the upper byte of the GP0 word. */
|
||||||
gp0_clut_cmd_Load4bpp = 0x20,
|
gp0_clut_cmd_Load4bpp = 0x20,
|
||||||
gp0_clut_cmd_Load8bpp = 0x25,
|
gp0_clut_cmd_Load8bpp = 0x25,
|
||||||
};
|
};
|
||||||
|
|
||||||
/* ---- Layer 1.5: CLUT per-field encoders ---- */
|
/* ---- Layer 1.5: CLUT per-field encoders ---- */
|
||||||
@@ -615,26 +663,26 @@ enum {
|
|||||||
* Stoppped for now at the struct + enum level.
|
* Stoppped for now at the struct + enum level.
|
||||||
* ============================================================================ */
|
* ============================================================================ */
|
||||||
enum {
|
enum {
|
||||||
tim_file_id_magic = 0x10,
|
tim_file_id_magic = 0x10,
|
||||||
tim_type_4bpp = 0x00,
|
tim_type_4bpp = 0x00,
|
||||||
tim_type_8bpp = 0x01,
|
tim_type_8bpp = 0x01,
|
||||||
tim_type_16bpp = 0x02,
|
tim_type_16bpp = 0x02,
|
||||||
tim_type_32bpp = 0x03,
|
tim_type_32bpp = 0x03,
|
||||||
tim_type_mixed = 0x04,
|
tim_type_mixed = 0x04,
|
||||||
tim_flag_has_clut = 0x08,
|
tim_flag_has_clut = 0x08,
|
||||||
};
|
};
|
||||||
|
|
||||||
typedef Struct_(TIM_Header) {
|
typedef Struct_(TIM_Header) {
|
||||||
U4 file_id; /* always 0x10 = "TIM" magic */
|
U4 file_id; /* always 0x10 = "TIM" magic */
|
||||||
U4 version; /* ignored; always 0 */
|
U4 version; /* ignored; always 0 */
|
||||||
U4 flags; /* bits 0..2 = type, bit 3 = has_clut */
|
U4 flags; /* bits 0..2 = type, bit 3 = has_clut */
|
||||||
};
|
};
|
||||||
typedef Struct_(TIM_SectionHeader) {
|
typedef Struct_(TIM_SectionHeader) {
|
||||||
U4 section_length; /* bytes in this section including this header */
|
U4 section_length; /* bytes in this section including this header */
|
||||||
U2 org_x; /* origin in VRAM */
|
U2 org_x; /* origin in VRAM */
|
||||||
U2 org_y;
|
U2 org_y;
|
||||||
U2 width; /* width in pixels */
|
U2 width; /* width in pixels */
|
||||||
U2 height; /* height in pixels */
|
U2 height; /* height in pixels */
|
||||||
};
|
};
|
||||||
#pragma endregion TIM File Format
|
#pragma endregion TIM File Format
|
||||||
|
|
||||||
|
|||||||
@@ -0,0 +1,76 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# include "gen/macs.h"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
# include "gte.h"
|
||||||
|
# include "gp.h"
|
||||||
|
# include "lottes_tape.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
ATOM_FILE_DEBUGGER_LINE_MARKER(gte_atom_c);
|
||||||
|
|
||||||
|
#pragma region MACs (Mips Atom Components)
|
||||||
|
|
||||||
|
/* Words: 3; Loads 3 S2 indices from the face array */
|
||||||
|
FI_ Slice_MipsCode ac_load_tri_indices(U4 r_face_cusor, U4 r_i0, U4 r_i1, U4 r_i2) atom_dbg_skip MipsAtomComp_Proc_(ac_load_tri_indices, {
|
||||||
|
load_half_u(r_i0, r_face_cusor, 0 * S_(S2)),
|
||||||
|
load_half_u(r_i1, r_face_cusor, 1 * S_(S2)),
|
||||||
|
load_half_u(r_i2, r_face_cusor, 2 * S_(S2)),
|
||||||
|
})
|
||||||
|
|
||||||
|
/* Words: 3; Stores the 3 transformed (V2_S2 screen) vertices to the F3.
|
||||||
|
* PIPELINE: post-RTPT (SXY0=v0.screen, SXY1=v1.screen, SXY2=v2.screen). */
|
||||||
|
FI_ Slice_MipsCode ac_gte_store_f3(U4 r_primitive_cursor) atom_dbg_skip MipsAtomComp_Proc_(ac_gte_store_f3, {
|
||||||
|
gte_sw(C2_SXY0, r_primitive_cursor, O_(Poly_F3,p0)),
|
||||||
|
gte_sw(C2_SXY1, r_primitive_cursor, O_(Poly_F3,p1)),
|
||||||
|
gte_sw(C2_SXY2, r_primitive_cursor, O_(Poly_F3,p2)),
|
||||||
|
})
|
||||||
|
|
||||||
|
/* Words: 18; Translates indices to vertex addresses and pushes them to GTE */
|
||||||
|
I_ Slice_MipsCode ac_gte_load_tri_verts(U4 r_vert_base, U4 r_v0, U4 r_v1, U4 r_v2) atom_dbg_skip MipsAtomComp_Proc_(ac_gte_load_tri_verts, {
|
||||||
|
shift_lleft(R_AT, r_v0, v3s2_byteoff), add_u_self(R_AT, r_vert_base), load_word(R_V0, R_AT, O_(V3_S2,x)), load_word(R_V1, R_AT, O_(V3_S2,z)), gte_mv_to_data_r(R_V0, C2_VXY0), gte_mv_to_data_r(R_V1, C2_VZ0),
|
||||||
|
shift_lleft(R_AT, r_v1, v3s2_byteoff), add_u_self(R_AT, r_vert_base), load_word(R_V0, R_AT, O_(V3_S2,x)), load_word(R_V1, R_AT, O_(V3_S2,z)), gte_mv_to_data_r(R_V0, C2_VXY1), gte_mv_to_data_r(R_V1, C2_VZ1),
|
||||||
|
shift_lleft(R_AT, r_v2, v3s2_byteoff), add_u_self(R_AT, r_vert_base), load_word(R_V0, R_AT, O_(V3_S2,x)), load_word(R_V1, R_AT, O_(V3_S2,z)), gte_mv_to_data_r(R_V0, C2_VXY2), gte_mv_to_data_r(R_V1, C2_VZ2),
|
||||||
|
})
|
||||||
|
|
||||||
|
/* Words: 3; Stores the 3 transformed (V2_S2 screen) vertices of the
|
||||||
|
* G4 triangle portion to p0/p1/p2.
|
||||||
|
* PIPELINE: post-RTPT, pre-RTPS (SXY0=v0.screen, SXY1=v1.screen, SXY2=v2.screen).
|
||||||
|
* MUST be called BEFORE V3-RTPS, otherwise SXY0/1/2 get overwritten with v3
|
||||||
|
* (RTPS writes only to SXY2, but to keep the three registers aligned with v0/v1/v2 you must store before RTPS). */
|
||||||
|
FI_ Slice_MipsCode ac_gte_store_g4_p012(U4 r_primitive_cursor) atom_dbg_skip MipsAtomComp_Proc_(ac_gte_store_g4_p012, {
|
||||||
|
gte_sw(C2_SXY0, r_primitive_cursor, O_(Poly_G4,p0)),
|
||||||
|
gte_sw(C2_SXY1, r_primitive_cursor, O_(Poly_G4,p1)),
|
||||||
|
gte_sw(C2_SXY2, r_primitive_cursor, O_(Poly_G4,p2)),
|
||||||
|
})
|
||||||
|
|
||||||
|
/* Words: 1; Stores the V3 screen coord to the G4's p3 slot.
|
||||||
|
* PIPELINE: post-RTPS (SXY2 holds v3.screen because RTPS writes its single-vertex result to SXY2;
|
||||||
|
* SXY0 still holds v0.screen from the earlier RTPT.
|
||||||
|
*/
|
||||||
|
FI_ Slice_MipsCode ac_gte_store_g4_p3(U4 r_primitive_cursor) atom_dbg_skip MipsAtomComp_Proc_(ac_gte_store_g4_p3, { gte_sw(C2_SXY2, r_primitive_cursor, O_(Poly_G4,p3)) })
|
||||||
|
|
||||||
|
#pragma endregion MACs (Mips Atom Components)
|
||||||
|
|
||||||
|
#pragma region Bsked Atoms
|
||||||
|
|
||||||
|
typedef Struct_(Binds_SetGteWorld) {
|
||||||
|
M3_S2* transform;
|
||||||
|
};
|
||||||
|
internal MipsAtom_(set_gte_world) atom_info(
|
||||||
|
atom_bind(Binds_SetGteWorld)
|
||||||
|
, atom_reads(R_TapePtr)
|
||||||
|
){
|
||||||
|
/* Pop matrix address from tape into R_T3 ($11) */
|
||||||
|
load_word(R_T3, R_TapePtr, O_(Binds_SetGteWorld,transform)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_SetGteWorld)),
|
||||||
|
/* Load 3x3 Rotation + 3x1 Translation from R_T3 into GTE CONTROL Regs (ctc2) */
|
||||||
|
load_word(R_T0, R_T3, 0), load_word(R_T1, R_T3, 4),
|
||||||
|
gte_mv_to_ctrl_r(R_T0, gte_cr_RT11), gte_mv_to_ctrl_r(R_T1, gte_cr_RT12),
|
||||||
|
load_word(R_T0, R_T3, 8), load_word(R_T1, R_T3, 12), load_word(R_T2, R_T3, 16),
|
||||||
|
gte_mv_to_ctrl_r(R_T0, gte_cr_RT13), gte_mv_to_ctrl_r(R_T1, gte_cr_RT21), gte_mv_to_ctrl_r(R_T2, gte_cr_RT22),
|
||||||
|
load_word(R_T0, R_T3, 20), load_word(R_T1, R_T3, 24), load_word(R_T2, R_T3, 28),
|
||||||
|
gte_mv_to_ctrl_r(R_T0, gte_cr_TRX), gte_mv_to_ctrl_r(R_T1, gte_cr_TRY), gte_mv_to_ctrl_r(R_T2, gte_cr_TRZ),
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
#pragma endregion Baked Atoms
|
||||||
+82
-126
@@ -17,9 +17,8 @@
|
|||||||
* gte_lw_v0_xy(base) (gte + lw + v0 + xy)
|
* gte_lw_v0_xy(base) (gte + lw + v0 + xy)
|
||||||
* load_upper_i (load-upper + immediate, unique verb)
|
* load_upper_i (load-upper + immediate, unique verb)
|
||||||
*
|
*
|
||||||
* Vendor mnemonics (gte_mtc2, gte_mfc2, gte_lwc2, gte_swc2, etc.) are
|
* Vendor mnemonics (gte_mtc2, gte_mfc2, gte_lwc2, gte_swc2, etc.) are NOT in this header.
|
||||||
* NOT in this header. They live in the opt-in `gte_vendor_sym.h` for
|
* They are in the opt-in `gte_vendor_sym.h` for users who prefer the textbook MIPS assembly mnemonics.
|
||||||
* users who prefer the textbook MIPS assembly mnemonics.
|
|
||||||
* ============================================================================ */
|
* ============================================================================ */
|
||||||
|
|
||||||
#ifdef INTELLISENSE_DIRECTIVES
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
@@ -34,20 +33,16 @@
|
|||||||
* gte.h — Geometry Transformation Engine (COP2) for the PS1
|
* gte.h — Geometry Transformation Engine (COP2) for the PS1
|
||||||
* ============================================================================
|
* ============================================================================
|
||||||
*
|
*
|
||||||
* Hand-rolled DSL for emitting GTE/MIPS instruction words as raw `.word`
|
* Hand-rolled DSL for emitting GTE/MIPS instruction words as raw `.word` constants from C.
|
||||||
* constants from C. No GCC inline-assembly string syntax in the code body.
|
* No GCC inline-assembly string syntax in the code body.
|
||||||
*
|
*
|
||||||
* STYLE NOTES
|
* STYLE NOTES
|
||||||
* -----------
|
* -----------
|
||||||
* - Per-field encoders are named `enc_gte_<field>(value)` and each one
|
* - Per-field encoders are named `enc_gte_<field>(value)` and each one self-masks its argument before shifting.
|
||||||
* self-masks its argument before shifting. Mirrors the `enc_op / enc_rs
|
* Mirrors the `enc_op / enc_rs / enc_rt / ...` family in mips.h.
|
||||||
* / enc_rt / ...` family in mips.h.
|
* - The composite `enc_gte_cmdw(sf, mx, v, cv, lm, cmd)` is a flat OR of the per-field encoders, plus the COP2/CO base.
|
||||||
* - The composite `enc_gte_cmdw(sf, mx, v, cv, lm, cmd)` is a flat OR of
|
* - Pre-baked shortcuts (`gte_cmd_rtpt`, `gte_cmd_rtps`, …) are defined for the common cases so call sites read like assembly source.
|
||||||
* the per-field encoders, plus the COP2/CO base.
|
* - All register/field values are enums (not `#define`s) so they show up in debugger symbol tables and IDE autocomplete.
|
||||||
* - Pre-baked shortcuts (`gte_cmd_rtpt`, `gte_cmd_rtps`, …) are defined
|
|
||||||
* for the common cases so call sites read like assembly source.
|
|
||||||
* - All register/field values are enums (not `#define`s) so they show up
|
|
||||||
* in debugger symbol tables and IDE autocomplete.
|
|
||||||
*
|
*
|
||||||
* SEE ALSO
|
* SEE ALSO
|
||||||
* --------
|
* --------
|
||||||
@@ -58,8 +53,7 @@
|
|||||||
|
|
||||||
/* --- GTE Data Registers (Coprocessor 2) ---
|
/* --- GTE Data Registers (Coprocessor 2) ---
|
||||||
* Preprocessor-visible integer ids for the COP2 data register file.
|
* Preprocessor-visible integer ids for the COP2 data register file.
|
||||||
* Each enum value is bound to a parallel `_Code` `#define` so the
|
* Each enum value is bound to a parallel `_Code` `#define` so the preprocessor can stringify the integer (for `reg_str`/`rgcc` paths).
|
||||||
* preprocessor can stringify the integer (for `reg_str`/`rgcc` paths).
|
|
||||||
* Same pattern as the GPR `_Code` set in mips.h. */
|
* Same pattern as the GPR `_Code` set in mips.h. */
|
||||||
#define C2_VXY0_Code 0
|
#define C2_VXY0_Code 0
|
||||||
#define C2_VZ0_Code 1
|
#define C2_VZ0_Code 1
|
||||||
@@ -192,10 +186,8 @@ enum {
|
|||||||
|
|
||||||
/* --- GTE Control Register Indices (for ctc2/cfc2) ---
|
/* --- GTE Control Register Indices (for ctc2/cfc2) ---
|
||||||
* Preprocessor-visible integer ids for the COP2 control register file.
|
* Preprocessor-visible integer ids for the COP2 control register file.
|
||||||
* Each enum value is bound to a parallel `_Code` `#define` so the
|
* Each enum value is bound to a parallel `_Code` `#define` so the preprocessor can stringify the integer (for `reg_str`/`rgcc` paths).
|
||||||
* preprocessor can stringify the integer (for `reg_str`/`rgcc` paths).
|
* Same pattern as the GPR `_Code` set in mips.h. Note: indices 21-23 are reserved/unused on real hardware, so there's a gap. */
|
||||||
* Same pattern as the GPR `_Code` set in mips.h. Note: indices 21-23
|
|
||||||
* are reserved/unused on real hardware, so there's a gap. */
|
|
||||||
#define gte_cr_RT11_Code 0
|
#define gte_cr_RT11_Code 0
|
||||||
#define gte_cr_RT12_Code 1 /* packed with RT13 in bits 16..31 */
|
#define gte_cr_RT12_Code 1 /* packed with RT13 in bits 16..31 */
|
||||||
#define gte_cr_RT13_Code 2 /* packed with RT22 in bits 16..31 */
|
#define gte_cr_RT13_Code 2 /* packed with RT22 in bits 16..31 */
|
||||||
@@ -223,8 +215,9 @@ enum {
|
|||||||
#define gte_cr_RFC_Code 27
|
#define gte_cr_RFC_Code 27
|
||||||
#define gte_cr_GFC_Code 28
|
#define gte_cr_GFC_Code 28
|
||||||
#define gte_cr_BFC_Code 29
|
#define gte_cr_BFC_Code 29
|
||||||
#define gte_cr_OFX_Code 30
|
#define gte_cr_OFX_Code 24
|
||||||
#define gte_cr_OFY_Code 31
|
#define gte_cr_OFY_Code 25
|
||||||
|
#define gte_cr_H_Code 26
|
||||||
|
|
||||||
enum {
|
enum {
|
||||||
gte_cr_RT11 = gte_cr_RT11_Code, gte_cr_RT12 = gte_cr_RT12_Code, gte_cr_RT13 = gte_cr_RT13_Code,
|
gte_cr_RT11 = gte_cr_RT11_Code, gte_cr_RT12 = gte_cr_RT12_Code, gte_cr_RT13 = gte_cr_RT13_Code,
|
||||||
@@ -246,21 +239,16 @@ enum { _C2_OPS_ = 0
|
|||||||
|
|
||||||
/* COP2 transfer sub-opcodes (5-bit field in the `rs` slot of enc_gte_tx).
|
/* COP2 transfer sub-opcodes (5-bit field in the `rs` slot of enc_gte_tx).
|
||||||
*
|
*
|
||||||
* Spans the 2x2 {From, To} × {Data, Control} register classes that the
|
* Spans the 2x2 {From, To} × {Data, Control} register classes that the GTE exposes:
|
||||||
* GTE exposes:
|
|
||||||
*
|
|
||||||
* bit 1 (0x02): register class — 0 = data, 1 = control
|
* bit 1 (0x02): register class — 0 = data, 1 = control
|
||||||
* bit 2 (0x04): direction — 0 = read, 1 = write
|
* bit 2 (0x04): direction — 0 = read, 1 = write
|
||||||
*
|
*
|
||||||
* The values 0x00 (sub_mfc2) and 0x04 (sub_mtc2) are the same 5-bit
|
* The values 0x00 (sub_mfc2) and 0x04 (sub_mtc2) are the same 5-bit numbers as the general MIPS `cop_mf` / `cop_mt` defined in mips.h
|
||||||
* numbers as the general MIPS `cop_mf` / `cop_mt` defined in mips.h
|
* (which target the data register file on any coprocessor).
|
||||||
* (which target the data register file on any coprocessor). They are
|
* They are re-aliased here so the four-way table reads like the spec mnemonics (MFC2 / CFC2 / MTC2 / CTC2)
|
||||||
* re-aliased here so the four-way table reads like the spec mnemonics
|
* and so the encoding lives next to its only consumer (this header).
|
||||||
* (MFC2 / CFC2 / MTC2 / CTC2) and so the encoding lives next to its
|
|
||||||
* only consumer (this header).
|
|
||||||
*
|
*
|
||||||
* Vendor mnemonic aliases (gte_mfc2 / gte_mtc2 / gte_cfc2 / gte_ctc2)
|
* Vendor mnemonic aliases (gte_mfc2 / gte_mtc2 / gte_cfc2 / gte_ctc2) live in gte_vendor_sym.h. */
|
||||||
* live in gte_vendor_sym.h. */
|
|
||||||
enum { _C2_TX_SUBS_ = 0
|
enum { _C2_TX_SUBS_ = 0
|
||||||
, sub_mfc2 = 0x00 /* MFC2: Move From Coprocessor 2 data reg */
|
, sub_mfc2 = 0x00 /* MFC2: Move From Coprocessor 2 data reg */
|
||||||
, sub_cfc2 = 0x02 /* CFC2: Copy From Coprocessor 2 ctrl reg */
|
, sub_cfc2 = 0x02 /* CFC2: Copy From Coprocessor 2 ctrl reg */
|
||||||
@@ -270,11 +258,11 @@ enum { _C2_TX_SUBS_ = 0
|
|||||||
|
|
||||||
/* COP2 (GTE) Transfer Format: mfc2 / cfc2 / mtc2 / ctc2 rt, rd
|
/* COP2 (GTE) Transfer Format: mfc2 / cfc2 / mtc2 / ctc2 rt, rd
|
||||||
* Layout: [op_cop2:6][sub:5][rt:5][rd:5][0:11]
|
* Layout: [op_cop2:6][sub:5][rt:5][rd:5][0:11]
|
||||||
* - sub: one of sub_mfc2 / sub_cfc2 / sub_mtc2 / sub_ctc2
|
* - sub: one of sub_mfc2 / sub_cfc2 / sub_mtc2 / sub_ctc2
|
||||||
* - rt: GPR source/dest
|
* - rt: GPR source/dest
|
||||||
* - rd: COP2 register index (0..31):
|
* - rd: COP2 register index (0..31):
|
||||||
* data class → C2_VXY0_Code..C2_LZCR_Code (gte_in_v0_xy..gte_math_accum2 aliases)
|
* data class → C2_VXY0_Code..C2_LZCR_Code (gte_in_v0_xy..gte_math_accum2 aliases)
|
||||||
* ctrl class → gte_cr_RT11_Code..gte_cr_OFY_Code */
|
* ctrl class → gte_cr_RT11_Code..gte_cr_OFY_Code */
|
||||||
#define enc_gte_tx(sub, rt, rd) (enc_op(op_cop2) | enc_rs(sub) | enc_rt(rt) | enc_rd(rd))
|
#define enc_gte_tx(sub, rt, rd) (enc_op(op_cop2) | enc_rs(sub) | enc_rt(rt) | enc_rd(rd))
|
||||||
|
|
||||||
|
|
||||||
@@ -314,8 +302,8 @@ enum { _C2_TX_SUBS_ = 0
|
|||||||
* `swc2` is redundant when we're already inside the `gte_` namespace.
|
* `swc2` is redundant when we're already inside the `gte_` namespace.
|
||||||
* gte_lw rt, base, off → lwc2 rt, off(base)
|
* gte_lw rt, base, off → lwc2 rt, off(base)
|
||||||
* gte_sw rt, base, off → swc2 rt, off(base)
|
* gte_sw rt, base, off → swc2 rt, off(base)
|
||||||
* For the typical user-facing vector-level load (xy + z as two
|
* For the typical user-facing vector-level load (xy + z as two instructions),
|
||||||
* instructions), use the higher-level `gte_load_vN` macros below. */
|
* use the higher-level `gte_load_vN` macros below. */
|
||||||
#define gte_lw(rt, base, off) enc_gte_lw(rt, base, off)
|
#define gte_lw(rt, base, off) enc_gte_lw(rt, base, off)
|
||||||
#define gte_sw(rt, base, off) enc_gte_sw(rt, base, off)
|
#define gte_sw(rt, base, off) enc_gte_sw(rt, base, off)
|
||||||
|
|
||||||
@@ -323,13 +311,12 @@ enum { _C2_TX_SUBS_ = 0
|
|||||||
* Opcode is always MIPS_OP_COP2, RS is always 1 (CO).
|
* Opcode is always MIPS_OP_COP2, RS is always 1 (CO).
|
||||||
* The lower 25 bits are the GTE-specific command payload.
|
* The lower 25 bits are the GTE-specific command payload.
|
||||||
*
|
*
|
||||||
* The granular `enc_gte_<field>(x)` macros below mirror the `enc_op`/`enc_rs`
|
* The granular `enc_gte_<field>(x)` macros below mirror the `enc_op`/`enc_rs` pattern in mips.h:
|
||||||
* pattern in mips.h: each one self-masks and shifts its own field, so a
|
* Each one self-masks and shifts its own field, so a caller can build up a GTE command piece by piece
|
||||||
* caller can build up a GTE command piece by piece (handy for state-driven
|
* (handy for state-driven MVMVA emitters that vary one field at a time).
|
||||||
* MVMVA emitters that vary one field at a time).
|
|
||||||
*
|
*
|
||||||
* `ENC_GTE_CMD` is the all-in-one convenience for emitting a full command
|
* `ENC_GTE_CMD` is the all-in-one convenience for emitting a full command word in one go.
|
||||||
* word in one go. It just ORs the per-field encoders together. */
|
* It just ORs the per-field encoders together. */
|
||||||
#define gte_cmd_base (enc_op(op_cop2) | (1 << 25))
|
#define gte_cmd_base (enc_op(op_cop2) | (1 << 25))
|
||||||
|
|
||||||
/* Per-field encoders. Each one does (value & mask) << shift on its own. */
|
/* Per-field encoders. Each one does (value & mask) << shift on its own. */
|
||||||
@@ -359,12 +346,13 @@ enum { _C2_TX_SUBS_ = 0
|
|||||||
* Decomposition (per the `enc_gte_<field>` definitions above):
|
* Decomposition (per the `enc_gte_<field>` definitions above):
|
||||||
* gte_cmdw_<name> = gte_cmd_base | enc_gte_cmd(<cmd>)
|
* gte_cmdw_<name> = gte_cmd_base | enc_gte_cmd(<cmd>)
|
||||||
|
|
||||||
* The SF/MX/V/CV/LM fields are all zero in the common cases
|
* The SF / MX / V / CV / LM fields are all zero in the common cases
|
||||||
* (standard rotation-matrix, no scaling factor, V0 vector, translation vector, no clamp),
|
* (standard rotation-matrix, no scaling factor, V0 vector, translation vector, no clamp),
|
||||||
* so the only varying bits are the `cmd` field.
|
* so the only varying bits are the `cmd` field.
|
||||||
*
|
*
|
||||||
* Naming follows the file's convention: `gte_cmd_*` is the raw 6-bit `cmd` field id, `gte_cmdw_*`
|
* Naming convention:
|
||||||
* is the fully-encoded 32-bit instruction word ready to drop into a `.word` directive.
|
* - `gte_cmd_*` : Raw 6-bit `cmd` field id
|
||||||
|
* - `gte_cmdw_* : 32-bit instruction word ready to drop into a `.word` directive.
|
||||||
*
|
*
|
||||||
* --------------------------------------------------------------------------
|
* --------------------------------------------------------------------------
|
||||||
* PsyQ-compatibility note (RTPS/RTPT):
|
* PsyQ-compatibility note (RTPS/RTPT):
|
||||||
@@ -380,7 +368,7 @@ enum { _C2_TX_SUBS_ = 0
|
|||||||
* `nclip` ends up wrong, and the triangle is culled.
|
* `nclip` ends up wrong, and the triangle is culled.
|
||||||
*
|
*
|
||||||
* So for RTPS and RTPT we OR-in the `0x28` "PsyQ compat" pattern to match the working bit pattern everyone has shipped for 25 years.
|
* So for RTPS and RTPT we OR-in the `0x28` "PsyQ compat" pattern to match the working bit pattern everyone has shipped for 25 years.
|
||||||
* NCLIP/OP/MVMVA stay spec-clean — their reserved bits really are zero in the original PsyQ source.
|
* NCLIP / OP / MVMVA stay spec-clean — their reserved bits really are zero in the original PsyQ source.
|
||||||
* --------------------------------------------------------------------------
|
* --------------------------------------------------------------------------
|
||||||
*/
|
*/
|
||||||
#define gte_cmdw_psyq_compat (1u << 21 | enc_gte_sf(gte_sf_integer))
|
#define gte_cmdw_psyq_compat (1u << 21 | enc_gte_sf(gte_sf_integer))
|
||||||
@@ -413,20 +401,16 @@ enum { _C2_TX_SUBS_ = 0
|
|||||||
|
|
||||||
/**
|
/**
|
||||||
* @brief Loads a single SVECTOR to GTE vector register V0
|
* @brief Loads a single SVECTOR to GTE vector register V0
|
||||||
*
|
|
||||||
* @details Loads values from an SVECTOR struct to GTE data registers C2_VXY0
|
* @details Loads values from an SVECTOR struct to GTE data registers C2_VXY0
|
||||||
* (XY at offset 0) and C2_VZ0 (Z at offset 4) using `lwc2`.
|
* (XY at offset 0) and C2_VZ0 (Z at offset 4) using `lwc2`.
|
||||||
*
|
*
|
||||||
* Uses string-style GCC inline asm with `%0` substitution because the
|
* Uses string-style GCC inline asm with `%0` substitution because the base register `r0` is a runtime GPR chosen by the compiler.
|
||||||
* base register `r0` is a runtime GPR chosen by the compiler.
|
|
||||||
* It cannot be encoded into a static `.word` constant.
|
* It cannot be encoded into a static `.word` constant.
|
||||||
*
|
*
|
||||||
* Usage:
|
* Usage: asm_gte_load_v0(svector_ptr);
|
||||||
* asm_gte_load_v0(svector_ptr);
|
|
||||||
*/
|
*/
|
||||||
|
|
||||||
/* lwc2 encoding helpers parameterized on the base GPR.
|
/* lwc2 encoding helpers parameterized on the base GPR.
|
||||||
*
|
|
||||||
* gte_lw_v0_xy(base) → lwc2 $0, 0(base) ; C2_VXY0
|
* gte_lw_v0_xy(base) → lwc2 $0, 0(base) ; C2_VXY0
|
||||||
* gte_lw_v0_z(base) → lwc2 $1, 4(base) ; C2_VZ0
|
* gte_lw_v0_z(base) → lwc2 $1, 4(base) ; C2_VZ0
|
||||||
* gte_lw_v1_xy(base) → lwc2 $2, 0(base) ; C2_VXY1
|
* gte_lw_v1_xy(base) → lwc2 $2, 0(base) ; C2_VXY1
|
||||||
@@ -435,8 +419,7 @@ enum { _C2_TX_SUBS_ = 0
|
|||||||
* gte_lw_v2_z(base) → lwc2 $5, 4(base) ; C2_VZ2
|
* gte_lw_v2_z(base) → lwc2 $5, 4(base) ; C2_VZ2
|
||||||
*
|
*
|
||||||
* `base` is the GPR number to bake into the .word constant's `rs` field.
|
* `base` is the GPR number to bake into the .word constant's `rs` field.
|
||||||
* These are pure compile-time integers; the C compiler constant-folds
|
* These are pure compile-time integers; the C compiler constant-folds them into .word directives. */
|
||||||
* them into .word directives. */
|
|
||||||
|
|
||||||
enum {
|
enum {
|
||||||
GTE_Z_Offset = 4
|
GTE_Z_Offset = 4
|
||||||
@@ -459,8 +442,8 @@ enum {
|
|||||||
* gte_load_v0(p_in_12, R_T4); // R_T4 = 12, base is $12
|
* gte_load_v0(p_in_12, R_T4); // R_T4 = 12, base is $12
|
||||||
*
|
*
|
||||||
* Then `"r"(r_ptr)` inside the asm binds to $12 (the only register `p_in_12` can live in),
|
* Then `"r"(r_ptr)` inside the asm binds to $12 (the only register `p_in_12` can live in),
|
||||||
* which is exactly the register the .word constants expect. A `"$12"` clobber would conflict with the register-variable binding
|
* which is exactly the register the .word constants expect.
|
||||||
* ("asm specifier for variable conflicts with asm clobber list"), so we omit it.
|
* A `"$12"` clobber would conflict with the register-variable binding ("asm specifier for variable conflicts with asm clobber list"), so we omit it.
|
||||||
* The other ABI-clobbers ($2/$8/$9/$31) stay because the GTE instructions don't touch caller-saved GPRs but the kernel does treat them as volatile.
|
* The other ABI-clobbers ($2/$8/$9/$31) stay because the GTE instructions don't touch caller-saved GPRs but the kernel does treat them as volatile.
|
||||||
*
|
*
|
||||||
* WHICH REGISTER TO PICK
|
* WHICH REGISTER TO PICK
|
||||||
@@ -499,10 +482,8 @@ enum {
|
|||||||
|
|
||||||
/* gte_load_v0v1v2(p0, p1, p2, b0, b1, b2) — prelude to gte_cmd_rtpt.
|
/* gte_load_v0v1v2(p0, p1, p2, b0, b1, b2) — prelude to gte_cmd_rtpt.
|
||||||
*
|
*
|
||||||
* Loads all three GTE input vectors (6 words) from three separate pointers,
|
* Loads all three GTE input vectors (6 words) from three separate pointers, one per GTE vector register,
|
||||||
* one per GTE vector register, each loaded from its own base GPR.
|
* each loaded from its own base GPR. Caller must bind each `pN` to `bN` via a register variable.
|
||||||
* Caller must bind each `pN` to `bN` via a register variable.
|
|
||||||
*
|
|
||||||
* register V3_S2* p0 rgcc(R_T4) = verts[0].ptr; // → __asm__("$12")
|
* register V3_S2* p0 rgcc(R_T4) = verts[0].ptr; // → __asm__("$12")
|
||||||
* register V3_S2* p1 rgcc(R_T5) = verts[1].ptr; // → __asm__("$13")
|
* register V3_S2* p1 rgcc(R_T5) = verts[1].ptr; // → __asm__("$13")
|
||||||
* register V3_S2* p2 rgcc(R_T6) = verts[2].ptr; // → __asm__("$14")
|
* register V3_S2* p2 rgcc(R_T6) = verts[2].ptr; // → __asm__("$14")
|
||||||
@@ -521,29 +502,20 @@ enum {
|
|||||||
|
|
||||||
/**
|
/**
|
||||||
* @brief Rotate, Translate and Perspective Triple (23 cycles)
|
* @brief Rotate, Translate and Perspective Triple (23 cycles)
|
||||||
*
|
* @details Performs rotation, translation and perspective calculation of three vertices at once.
|
||||||
* @details Performs rotation, translation and perspective calculation of three
|
* The equation performed is the same as gte_rtps() only repeated three times for each vertex.
|
||||||
* vertices at once. The equation performed is the same as gte_rtps() only
|
* The result of the first vertex is stored in GTE data register C2_SXY0, the second vector in C2_SXY1 then C2_SXY2.
|
||||||
* repeated three times for each vertex. The result of the first vertex is
|
|
||||||
* stored in GTE data register C2_SXY0, the second vector in C2_SXY1 then
|
|
||||||
* C2_SXY2.
|
|
||||||
*
|
*
|
||||||
* Encoder-style emission (no inline-asm strings in the code body):
|
* Encoder-style emission (no inline-asm strings in the code body):
|
||||||
* 1. Two `nop` words fill the COP2 pipeline latency — the GTE
|
* 1. Two `nop` words fill the COP2 pipeline latency — the GTE takes ~8 cycles per perspective divide,
|
||||||
* takes ~8 cycles per perspective divide, and the nops let any
|
* and the nops let any preceding lwc2/swc2 retire before RTPT starts reading its inputs from V0/V1/V2.
|
||||||
* preceding lwc2/swc2 retire before RTPT starts reading its
|
* 2. The RTPT command word itself is `gte_cmdw_rtpt` (see the pre-baked encoders above) —
|
||||||
* inputs from V0/V1/V2.
|
* `0x0280030` decoded as `op_cop2` | CO(1) | cmd=RTPT, with all SF/MX/V/CV/LM fields zero
|
||||||
* 2. The RTPT command word itself is `gte_cmdw_rtpt` (see the
|
* (standard rotation, no scaling, V0 vector, translation vector, no clamp).
|
||||||
* pre-baked encoders above) — `0x0280030` decoded as
|
|
||||||
* `op_cop2` | CO(1) | cmd=RTPT, with all SF/MX/V/CV/LM fields
|
|
||||||
* zero (standard rotation, no scaling, V0 vector, translation
|
|
||||||
* vector, no clamp).
|
|
||||||
*
|
*
|
||||||
* Clobbers the caller-saved GPRs via `clbr_volatile_gprs` (per the kernel
|
* Clobbers the caller-saved GPRs via `clbr_volatile_gprs` (per the kernel ABI)
|
||||||
* ABI) plus the standard "memory" barrier. Does not clobber any COP2
|
* plus the standard "memory" barrier. Does not clobber any COP2 data/control register —
|
||||||
* data/control register — those have to be saved by the caller if
|
* those have to be saved by the caller if they need to survive across the call (RTPT writes SXY0..2, SZ0..3, OTZ, MAC0..3, IR0..3, etc.).
|
||||||
* they need to survive across the call (RTPT writes SXY0..2, SZ0..3,
|
|
||||||
* OTZ, MAC0..3, IR0..3, etc.).
|
|
||||||
*/
|
*/
|
||||||
#define gte_rtpt() \
|
#define gte_rtpt() \
|
||||||
asm volatile( \
|
asm volatile( \
|
||||||
@@ -559,32 +531,24 @@ enum {
|
|||||||
|
|
||||||
/**
|
/**
|
||||||
* @brief Normal clipping (8 cycles)
|
* @brief Normal clipping (8 cycles)
|
||||||
*
|
* @details Computes the sign of three screen coordinates (C2_SXY0-2) used for backface culling.
|
||||||
* @details Computes the sign of three screen coordinates (C2_SXY0-2) used for
|
* If the value of C2_MAC0 is negative, the coordinates are inverted and thus the triangle is back facing.
|
||||||
* backface culling. If the value of C2_MAC0 is negative, the coordinates are
|
|
||||||
* inverted and thus the triangle is back facing.
|
|
||||||
*
|
*
|
||||||
* The following equation is performed when executing this GTE command:
|
* The following equation is performed when executing this GTE command:
|
||||||
*
|
|
||||||
* MAC0 = SX0*SY1 + SX1*SY2 + SX2*SY0 - SX0*SY2 - SX1*SY0 - SX2*SY1
|
* MAC0 = SX0*SY1 + SX1*SY2 + SX2*SY0 - SX0*SY2 - SX1*SY0 - SX2*SY1
|
||||||
*
|
|
||||||
* Encoder-style emission (no inline-asm strings in the code body):
|
* Encoder-style emission (no inline-asm strings in the code body):
|
||||||
* 1. Two `nop` words fill the COP2 pipeline latency - the GTE
|
* 1. Two `nop` words fill the COP2 pipeline latency
|
||||||
* pipeline takes a few cycles per op, and the nops let any
|
* - the GTE pipeline takes a few cycles per op, and the nops let any preceding
|
||||||
* preceding lwc2/swc2/RTPT retire before NCLIP starts reading
|
* lwc2/swc2/RTPT retire before NCLIP starts reading its inputs from SXY0/SXY1/SXY2.
|
||||||
* its inputs from SXY0/SXY1/SXY2.
|
* 2. The NCLIP command word itself is `gte_cmdw_nclip` (see the pre-baked encoders above)
|
||||||
* 2. The NCLIP command word itself is `gte_cmdw_nclip` (see the
|
* - `0x01400006` decoded as `op_cop2` | CO(1) | cmd=NCLIP, with all SF/MX/V/CV/LM fields zero.
|
||||||
* pre-baked encoders above) - `0x01400006` decoded as
|
* NCLIP is spec-clean in the original PsyQ source (unlike RTPS/RTPT which carry the `gte_cmdw_psyq_compat` quirk),
|
||||||
* `op_cop2` | CO(1) | cmd=NCLIP, with all SF/MX/V/CV/LM fields
|
* so `gte_cmdw_nclip` does NOT OR in any reserved bits.
|
||||||
* zero. NCLIP is spec-clean in the original PsyQ source
|
|
||||||
* (unlike RTPS/RTPT which carry the `gte_cmdw_psyq_compat`
|
|
||||||
* quirk), so `gte_cmdw_nclip` does NOT OR in any reserved bits.
|
|
||||||
*
|
*
|
||||||
* Clobbers the caller-saved GPRs via `clbr_volatile_gprs` (per the kernel
|
* Clobbers the caller-saved GPRs via `clbr_volatile_gprs` (per the kernel ABI) plus the standard "memory" barrier.
|
||||||
* ABI) plus the standard "memory" barrier. Does not clobber any COP2
|
* Does not clobber any COP2 data/control register.
|
||||||
* data/control register - those have to be saved by the caller if
|
* Those have to be saved by the caller if they need to survive across the call (NCLIP writes MAC0 only;
|
||||||
* they need to survive across the call (NCLIP writes MAC0 only; it
|
* it is purely a sign-of-double-product computation on SXY0..2).
|
||||||
* is purely a sign-of-double-product computation on SXY0..2).
|
|
||||||
*/
|
*/
|
||||||
#define gte_nclip() \
|
#define gte_nclip() \
|
||||||
asm volatile( \
|
asm volatile( \
|
||||||
@@ -610,13 +574,10 @@ enum {
|
|||||||
"cop2 0x0158002D;")
|
"cop2 0x0158002D;")
|
||||||
|
|
||||||
/* asm_gte_matrix_set_rotation(r0)
|
/* asm_gte_matrix_set_rotation(r0)
|
||||||
|
* Loads the 3x3 rotation matrix at `r0` into the GTE's rotation-matrix control registers (RT11..RT22, indices 0..4) via ctc2.
|
||||||
*
|
*
|
||||||
* Loads the 3x3 rotation matrix at `r0` into the GTE's rotation-matrix
|
* Memory layout at r0: five contiguous 32-bit words (offsets 0..16), each holding two packed 16-bit matrix elements.
|
||||||
* control registers (RT11..RT22, indices 0..4) via ctc2.
|
* The first 1.5 rows of a standard PSX SDK MATRIX struct (where each row is laid out as
|
||||||
*
|
|
||||||
* Memory layout at r0: five contiguous 32-bit words (offsets 0..16),
|
|
||||||
* each holding two packed 16-bit matrix elements. The first 1.5 rows
|
|
||||||
* of a standard PSX SDK MATRIX struct (where each row is laid out as
|
|
||||||
* [RT_xx, RT_xy] | [RT_xz, pad] | ...).
|
* [RT_xx, RT_xy] | [RT_xz, pad] | ...).
|
||||||
*
|
*
|
||||||
* Generated MIPS (mirrors the source macro):
|
* Generated MIPS (mirrors the source macro):
|
||||||
@@ -631,27 +592,22 @@ enum {
|
|||||||
* ctc2 $13, $3 ; → C2_RT21
|
* ctc2 $13, $3 ; → C2_RT21
|
||||||
* ctc2 $14, $4 ; → C2_RT22
|
* ctc2 $14, $4 ; → C2_RT22
|
||||||
*
|
*
|
||||||
* Same contract as gte_load_v0: caller MUST bind `r0` to $12 via a
|
* Same contract as gte_load_v0: caller MUST bind `r0` to $12 via a register variable (`rgcc(R_T4)`) for the `lw $12, off(...)`
|
||||||
* register variable (`rgcc(R_T4)`) for the `lw $12, off(...)`
|
* instructions to read from the right base. The `"r"(r0)` constraint alone doesn't force a specific GPR — it just lets GCC pick one.
|
||||||
* instructions to read from the right base. The `"r"(r0)` constraint
|
* The .word constants here bake R_T4/R_T5/R_T6 into the `rs` field of each lw, so the lw instructions will
|
||||||
* alone doesn't force a specific GPR — it just lets GCC pick one.
|
* only do the right thing if $12 / $13 / $14 hold the matrix base at runtime.
|
||||||
* The .word constants here bake R_T4/R_T5/R_T6 into the `rs` field
|
|
||||||
* of each lw, so the lw instructions will only do the right thing
|
|
||||||
* if $12/$13/$14 hold the matrix base at runtime.
|
|
||||||
*
|
*
|
||||||
* M3_S2* m = ...;
|
* M3_S2* m = ...;
|
||||||
* register M3_S2* m_in_12 rgcc(R_T4) = m;
|
* register M3_S2* m_in_12 rgcc(R_T4) = m;
|
||||||
* asm_gte_matrix_set_rotation(m_in_12);
|
* asm_gte_matrix_set_rotation(m_in_12);
|
||||||
*
|
*
|
||||||
* We clobber $12/$13/$14 (the ones we use as scratch inside the
|
* We clobber $12/$13/$14 (the ones we use as scratch inside the inline asm)
|
||||||
* inline asm) plus the system clobbers; we don't clobber `r0` because
|
* plus the system clobbers; we don't clobber `r0` because the `rgcc` binding already says "this variable lives in $12".
|
||||||
* the `rgcc` binding already says "this variable lives in $12".
|
|
||||||
*
|
*
|
||||||
* WARNING: Incomplete by design. The source macro only writes RT11..RT22
|
* WARNING: Incomplete by design. The source macro only writes RT11..RT22 (5 of 9 rotation elements);
|
||||||
* (5 of 9 rotation elements); RT23 and the entire RT3x row are left
|
* RT23 and the entire RT3x row are left untouched.
|
||||||
* untouched. Real libpsn00b SetRotMatrix writes all 9. Use only when the
|
* Real libpsn00b SetRotMatrix writes all 9. Use only when the GTE's remaining rotation entries are already correct,
|
||||||
* GTE's remaining rotation entries are already correct, or you will
|
* or you will get stale-RT2x/RT3x artifacts in RTPS/RTPT/MVMVA output.
|
||||||
* get stale-RT2x/RT3x artifacts in RTPS/RTPT/MVMVA output.
|
|
||||||
*/
|
*/
|
||||||
#define asm_gte_matrix_set_rotation(r0) \
|
#define asm_gte_matrix_set_rotation(r0) \
|
||||||
asm volatile( \
|
asm volatile( \
|
||||||
|
|||||||
+175
-265
@@ -1,19 +1,120 @@
|
|||||||
#ifdef INTELLISENSE_DIRECTIVES
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
# pragma once
|
# pragma once
|
||||||
|
# include "gen/macs.h"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
|
||||||
# include "dsl.h"
|
# include "dsl.h"
|
||||||
# include "gcc_asm.h"
|
# include "gcc_asm.h"
|
||||||
# include "mips.h"
|
# include "mips.h"
|
||||||
# include "gte.h"
|
# include "gte.h"
|
||||||
# include "memory.h"
|
# include "memory.h"
|
||||||
# include "atom_dsl.h"
|
# include "dsl.atom.h"
|
||||||
# include "gen/duffle.macs.h"
|
|
||||||
# include "gen/duffle.offsets.h"
|
|
||||||
#endif
|
#endif
|
||||||
|
|
||||||
typedef U4 const MipsCode;
|
#pragma region Tape Drive
|
||||||
typedef Slice_(MipsCode);
|
/* -----------------------------------------------------------------------------
|
||||||
typedef Slice_MipsCode MipsAtom;
|
* TAPE DRIVE ABI
|
||||||
|
* -----------------------------------------------------------------------------
|
||||||
|
* Note(Ed): One of the main purposes of this codebase is to help me
|
||||||
|
* learn this, as such the information below may be entirely realized
|
||||||
|
* or finalized conceptually.
|
||||||
|
* -----------------------------------------------------------------------------
|
||||||
|
* This ABI and its associated legos were directly inspired by researching
|
||||||
|
* the work of Timothy Lottes and Onat Türkçüoğlu; along with many others.
|
||||||
|
* It's the simplest bootstrap of a a directly executed chain of assemby
|
||||||
|
* arrays (Atoms) that terminate with a yield sequence to the next atom.
|
||||||
|
* These eventually lead to a terminal atom for the tape which is defined
|
||||||
|
* below as "tape_exit".
|
||||||
|
*
|
||||||
|
* This behaves as one of the simplest runtime harnesses ontop of a
|
||||||
|
* host-enviornment's execution engine to author and compose programs with.
|
||||||
|
* From here various conventions can be further applied.
|
||||||
|
* To make things easier to understand it may be better to focus on what this
|
||||||
|
* ABI does not have. It does not have have any branching within the tape but
|
||||||
|
* relative branches between atoms. Branching nearly is always downstream.
|
||||||
|
* Stack usage is non-existent. Push/Pop, FIFO, or Arena/Bump data structures
|
||||||
|
* are used by atoms explicitly. In it's current form withe C11 macro dsl,
|
||||||
|
* the user also has to do manual register allocation per atom.
|
||||||
|
*
|
||||||
|
* One of the remarkable things about utilizing this abi is its essentially
|
||||||
|
* interopable with CPUs, GPUs, FPGA, or, basically anything
|
||||||
|
* from the 5th generation consoles and onward.
|
||||||
|
* The ABI directly reflects how all computational hardware must be architected
|
||||||
|
* in order to execute digital logic effectively on current era tech.
|
||||||
|
* On the PS1 we don't have access to a few features like multi-threading,
|
||||||
|
* speculative execution, or L3 cache; but, we can set the foundation for legoing
|
||||||
|
* whats required baseline wise for eventually expanding the harness and core atoms
|
||||||
|
* to take those newer hardware features into account. For example, you can easily
|
||||||
|
* expand this to support wave-based execution model on a PS2 or PS3.
|
||||||
|
* Not having a stack or automatic register allocation means the user can't ignore
|
||||||
|
* excessive argument shuffle across workload or waves and thier phases.
|
||||||
|
* Crossing ABI boundaries to other runtimes that do has an obviouss penalties.
|
||||||
|
*
|
||||||
|
* Learning data-oreinted code becomes a natural progression. Your not fighting
|
||||||
|
* a stack-based procedural paradigm that wants to argument shuffle on the stack
|
||||||
|
* by lack of constraints on how the user may "call" a procedure. The user doesn't
|
||||||
|
* have to hammer down "rules" or patterns to know how to massage the compiler
|
||||||
|
* to get the asesmbly into its natural form. The form is obvious, and once
|
||||||
|
* the user gets to author their compoonents it becomes a game of tetris.
|
||||||
|
*
|
||||||
|
* Another feature is this ABI is very compatible with bootstrapping and developing
|
||||||
|
* simple toolchains built off of bit-packed annotated command streams the user can
|
||||||
|
* directly author, maintatain, and immediately execute. That being a color forth.
|
||||||
|
* This can make the tetris less of a chore with some helpful policy generation for
|
||||||
|
* allocation of registers, helping to choose resuable components, designing DSL on
|
||||||
|
* the fly, etc.
|
||||||
|
* -----------------------------------------------------------------------------
|
||||||
|
* TODO(Ed): We ned pretty ascii diagrams and proper guides, articles, etc.
|
||||||
|
* -----------------------------------------------------------------------------
|
||||||
|
* For now this thing is just functioning and I'm abusing C11 + a lua metaprogram
|
||||||
|
* to help establish a hybrid toolchain to ideate on a traditional text-based
|
||||||
|
* authoring UX for this paradigm.
|
||||||
|
* If pcsx-redux gets me viable hot-reload and persistent data storage beyond
|
||||||
|
* save-states (just copying ram to filesystem). I can author a color forth to
|
||||||
|
* mess around with, with an editor in-emulator or on the actual machine itself.
|
||||||
|
* Assembly is tedius, but I think this codebase most likely has some of the most,
|
||||||
|
* ergonomic you can come across..
|
||||||
|
* */
|
||||||
|
/* Register Allocation Info */
|
||||||
|
enum {
|
||||||
|
R_AtomJmp = R_T8 atom_reg, /* debug-visible; tape yield handshake scratch */
|
||||||
|
R_TapePtr = R_T9 atom_reg, /* The Instruction Stream Pointer */
|
||||||
|
/* Stringification codes for the GCC inline assembler clobber lists. */
|
||||||
|
#define R_AtomJmp_Code R_T8_Code
|
||||||
|
#define R_TapePtr_Code R_T9_Code
|
||||||
|
|
||||||
|
// R_InCursor = R_T4,
|
||||||
|
// #define R_InCursor_Code R_T4_Code
|
||||||
|
|
||||||
|
// Reserved Registers (Callee-saved):
|
||||||
|
// - R_T9: Holds the Tape Ptr which we need to increment
|
||||||
|
// If we hit a wall with register allocations we can clobber V0 & V1 (return values), defering as opt-in by user.
|
||||||
|
// - R_RA: Not sure??
|
||||||
|
// Needed by ac_yield but can be used as atom scratch:
|
||||||
|
// - R_T8: Will be used as the atom jump register.
|
||||||
|
|
||||||
|
// All allocatable registers for mips atoms:
|
||||||
|
R_TScratchVolatile = R_AT, // This one is reserved for psuedo instructions, but you can technically use it.
|
||||||
|
R_TScratch0 = R_T0,
|
||||||
|
R_TScratch1 = R_T1,
|
||||||
|
R_TScratch2 = R_T2,
|
||||||
|
R_TScratch3 = R_T3,
|
||||||
|
R_TScratch4 = R_T4,
|
||||||
|
R_TScratch5 = R_T5,
|
||||||
|
R_TScratch6 = R_T6,
|
||||||
|
R_TScratch7 = R_T7,
|
||||||
|
R_TScratch8 = R_T8,
|
||||||
|
R_TScratch10 = R_V0, // Tend to be used with gte DMAs
|
||||||
|
R_TScratch11 = R_V1, // Tend to be used with gte DMAs
|
||||||
|
// Note(Ed): We can technically clobber these, but don't unless we hit a bottleneck.
|
||||||
|
// A 0-2
|
||||||
|
// S 0-7
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef U4 const MipsCode; // Underlying type to mips asm words.
|
||||||
|
typedef Slice_(MipsCode);
|
||||||
|
|
||||||
|
typedef U4 const MipsAtom; // Underlying type to an array of mips asm words that must terminate with an ac_yield.
|
||||||
#define MipsAtom_(sym) MipsCode sym [] align_(4) =
|
#define MipsAtom_(sym) MipsCode sym [] align_(4) =
|
||||||
|
|
||||||
// Used for components with no args (e.g., ac_load_tri_indices) or identifier-args (hardcoded register names).
|
// Used for components with no args (e.g., ac_load_tri_indices) or identifier-args (hardcoded register names).
|
||||||
@@ -23,78 +124,85 @@ typedef Slice_MipsCode MipsAtom;
|
|||||||
#define MipsAtomComp_(sym) MipsCode sym [] align_(4) =
|
#define MipsAtomComp_(sym) MipsCode sym [] align_(4) =
|
||||||
|
|
||||||
// Used for components with value-args (e.g., ac_format_f3_color).
|
// Used for components with value-args (e.g., ac_format_f3_color).
|
||||||
// FI_ MipsAtom ac_X(args) MipsAtomComp_Proc_(ac_X, { body })
|
// FI_ Slice_MipsCode ac_X(args) MipsAtomComp_Proc_(ac_X, { body })
|
||||||
// expands to:
|
// expands to:
|
||||||
// FI_ MipsAtom ac_X(args) { MipsCode ac_X[] align_(4) = { body }; return slice_from_array(MipsCode, ac_X); }
|
// FI_ Slice_MipsCode ac_X(args) { MipsCode ac_X[] align_(4) = { body }; return slice_from_array(MipsCode, ac_X); }
|
||||||
#define MipsAtomComp_Proc_(sym, ...) { MipsCode sym [] align_(4) = __VA_ARGS__; return slice_from_array(MipsCode, sym); }
|
#define MipsAtomComp_Proc_(sym, ...) { MipsCode sym [] align_(4) = __VA_ARGS__; return slice_from_array(MipsCode, sym); }
|
||||||
|
|
||||||
// Auto-generated component macros (<module>/gen/<dir>/<dir>.macs.h) are included manually by the unity build.
|
/* Line-table anchor: gcc only adds a file to the .debug_line file table when the
|
||||||
|
file contains line-numbered content. Files containing only:
|
||||||
|
- `MipsAtomComp_` static-array declarations, or
|
||||||
|
- `MipsAtomComp_Proc_` (force-inline) function bodies whose line info gets
|
||||||
|
attributed to the call site at the include point are otherwise omitted from the file table,
|
||||||
|
which breaks the DWARF injection when it tries to resolve atom-component provenance paths.
|
||||||
|
|
||||||
/* Register aliases */
|
Place `ATOM_FILE_LINE_MARKER();` once at file scope in any `.atom.c` that defines atoms.
|
||||||
enum {
|
The macro expands to a file-scope `internal U4 const` declaration keeps the file in the line table.
|
||||||
R_AtomJmp = R_T9 atom_reg, /* debug-visible; tape yield handshake scratch */
|
The constant is in `.rodata` and unreferenced; the linker may eliminate it.
|
||||||
R_TapePtr = R_T8 atom_reg, /* The Instruction Stream Pointer */
|
The two-level concat + `__LINE__` suffix makes the identifier unique per call site
|
||||||
R_InCursor = R_T4,
|
(the identifier embeds the source line, so duplicates across `#include`d files don't collide). */
|
||||||
|
#define ATOM_FILE_DEBUGGER_LINE_MARKER(file_name) internal U4 const tmpl(atom_file_debugger_line_marker,file_name) = 0
|
||||||
|
|
||||||
R_PrimCursor = R_T7 atom_reg atom_type(U4 *), /* VRAM output cursor (primitive buffer) */
|
typedef Slice_(MipsAtom); typedef Slice_MipsAtom Tape;
|
||||||
R_FaceCursor = R_T4 atom_reg atom_type(V4_S2 *), /* Cube face-index cursor (V4_S2*); floor context switches to V3_S2* via atom_phase */
|
|
||||||
R_VertBase = R_T5 atom_reg atom_type(V3_S2 *), /* Base address of the vertex array */
|
|
||||||
R_OtBase = R_T6 atom_reg atom_type(U4 *), /* Base address of the Ordering Table */
|
|
||||||
|
|
||||||
/* Stringification codes for the GCC inline assembler clobber lists. */
|
|
||||||
#define R_TapePtr_Code R_T8_Code
|
|
||||||
#define R_InCursor_Code R_T4_Code
|
|
||||||
|
|
||||||
#define R_PrimCursor_Code R_T7_Code
|
|
||||||
#define R_FaceCursor_Code R_T4_Code
|
|
||||||
#define R_VertBase_Code R_T5_Code
|
|
||||||
#define R_OtBase_Code R_T6_Code
|
|
||||||
};
|
|
||||||
|
|
||||||
#pragma region Tape Drive
|
|
||||||
/* ---------------------------------------------------------------------------
|
|
||||||
* TAPE DRIVE ABI & REGISTER ALIASES (the enum moved earlier; see below)
|
|
||||||
* ---------------------------------------------------------------------------*/
|
|
||||||
|
|
||||||
/* The 'Exit' Atom */
|
/* The 'Exit' Atom */
|
||||||
atom_dbg_skip MipsAtom_(tape_exit) { jump_reg(rret_addr), nop };
|
atom_dbg_skip MipsAtom_(tape_exit) { jump_reg(rret_addr), nop };
|
||||||
|
|
||||||
/* Generalized Tape Engine Runner */
|
// TODO(Ed): When we have a substantial workload/throughput, profile each of these to see impact at ABI boundaries.
|
||||||
NI_ void tape_run(Slice_MipsCode tape) { register U4* tp rgcc(R_TapePtr) = u4_r(tape.ptr); asm volatile(
|
|
||||||
|
/* Tape Runner (Default) */
|
||||||
|
FI_ void tape_run(Tape tape) { register U4* tape_ptr rgcc(R_TapePtr) = u4_r(tape.ptr); asm volatile(
|
||||||
asm_words(
|
asm_words(
|
||||||
add_ui( R_SP, R_SP, -MipsStackAlignment) /* Allocate stack space */
|
load_word( R_AtomJmp, R_TapePtr, 0) /* Bootstrap the first jump */
|
||||||
, store_word( R_RA, R_SP, 0) /* Safely backup $ra to the stack */
|
, add_ui_self(R_TapePtr, S_(MipsAtom)) /* Advance tape */
|
||||||
, load_word( R_AtomJmp, R_TapePtr, 0) /* Bootstrap the first jump */
|
, call_reg( R_AtomJmp) /* jalr $t9 */
|
||||||
, add_ui_self(R_TapePtr, S_(MipsCode)) /* Advance tape */
|
, nop /* Branch delay slot */
|
||||||
, call_reg( R_AtomJmp) /* jalr $t9 */
|
|
||||||
, nop /* Branch delay slot */
|
|
||||||
, load_word( R_RA, R_SP, 0) /* Restore $ra from stack */
|
|
||||||
, add_ui_self(R_SP, MipsStackAlignment) /* Deallocate stack space */
|
|
||||||
)
|
)
|
||||||
asm_rpins, r_use(tp)
|
asm_rpins, r_use(tape_ptr)
|
||||||
asm_clobber:
|
asm_clobber:
|
||||||
rlit(R_AT)
|
rlit(R_AT),
|
||||||
, rlit(R_V0), rlit(R_V1)
|
rlit(R_V0), rlit(R_V1), // We clobber these for GTE ACs (that don't expose register selection, might expose them in the future...)
|
||||||
, rlit(R_T0), rlit(R_T1), rlit(R_T2), rlit(R_T3)
|
rlit(R_T0), rlit(R_T1), rlit(R_T2), rlit(R_T3), rlit(R_T4),
|
||||||
/* Tell GCC the tape engine owns and destroys the workspace registers */
|
rlit(R_T5), rlit(R_T6), rlit(R_T7), rlit(R_T8),
|
||||||
, rlit(R_PrimCursor), rlit(R_FaceCursor), rlit(R_VertBase), rlit(R_OtBase)
|
clb_mem_drain
|
||||||
, rlit(R_T9)
|
|
||||||
, clb_mem_drain
|
|
||||||
); }
|
); }
|
||||||
|
|
||||||
|
/* Tape Runner (Static and Arg Clobbers) */
|
||||||
|
FI_ void tape_run_a02_s07(Tape tape) { register U4* tape_ptr rgcc(R_TapePtr) = u4_r(tape.ptr); asm volatile(
|
||||||
|
asm_words(
|
||||||
|
load_word( R_AtomJmp, R_TapePtr, 0) /* Bootstrap the first jump */
|
||||||
|
, add_ui_self(R_TapePtr, S_(MipsAtom)) /* Advance tape */
|
||||||
|
, call_reg( R_AtomJmp) /* jalr $t9 */
|
||||||
|
, nop /* Branch delay slot */
|
||||||
|
)
|
||||||
|
asm_rpins, r_use(tape_ptr)
|
||||||
|
asm_clobber:
|
||||||
|
rlit(R_AT),
|
||||||
|
rlit(R_V0), rlit(R_V1), rlit(R_A0), rlit(R_A1), rlit(R_A2),
|
||||||
|
rlit(R_T0), rlit(R_T1), rlit(R_T2), rlit(R_T3), rlit(R_T4),
|
||||||
|
rlit(R_T5), rlit(R_T6), rlit(R_T7), rlit(R_T8),
|
||||||
|
rlit(R_S0), rlit(R_S1), rlit(R_S2), rlit(R_S3), rlit(R_S4),
|
||||||
|
rlit(R_S5), rlit(R_S6), rlit(R_S7),
|
||||||
|
clb_mem_drain
|
||||||
|
); }
|
||||||
|
|
||||||
|
// Procedural authoring of tapes:
|
||||||
typedef Relative_(FArena) Struct_(TapeBuilder) { U4 ptr; U4 capacity; U4 used; };
|
typedef Relative_(FArena) Struct_(TapeBuilder) { U4 ptr; U4 capacity; U4 used; };
|
||||||
FI_ void tb_init(TapeBuilder* tb, FArena* arena) { tb->ptr = arena->start; tb->used = 0; }
|
FI_ void tb_init(TapeBuilder* tb, FArena* arena) { tb->ptr = arena->start; tb->used = 0; }
|
||||||
FI_ TapeBuilder tb_make_old( FArena* arena) { return (TapeBuilder){ arena->start, 0 }; }
|
FI_ TapeBuilder tb_make_old( FArena* arena) { return (TapeBuilder){ arena->start, 0 }; }
|
||||||
FI_ TapeBuilder tb_make(Slice mem) { return (TapeBuilder){ mem.ptr, mem.len, 0 }; }
|
FI_ TapeBuilder tb_make(Slice mem) { return (TapeBuilder){ mem.ptr, mem.len, 0 }; }
|
||||||
|
|
||||||
#define tb_emit_(tb, atom) tb_emit(tb, atom)
|
|
||||||
FI_ void tb_emit(TapeBuilder* tb, MipsCode* atom) { u4_r(tb->ptr)[tb->used] = u4_(atom); ++ tb->used; }
|
FI_ void tb_emit(TapeBuilder* tb, MipsCode* atom) { u4_r(tb->ptr)[tb->used] = u4_(atom); ++ tb->used; }
|
||||||
FI_ void tb_data(TapeBuilder* tb, U4 data) { u4_r(tb->ptr)[tb->used] = u4_(data); ++ tb->used; }
|
FI_ void tb_data(TapeBuilder* tb, U4 data) { u4_r(tb->ptr)[tb->used] = u4_(data); ++ tb->used; }
|
||||||
|
#define tb_emit_(atom) tb_emit(& tb, atom)
|
||||||
|
#define tb_data_(field, data) tb_data(& tb, u4_(data))
|
||||||
|
|
||||||
FI_ Slice_MipsCode tb_end (TapeBuilder* tb) { tb_emit(tb,tape_exit); return (Slice_MipsCode){ C_(U4*,tb->ptr), tb->used }; }
|
FI_ Tape tb_end (TapeBuilder* tb) { tb_emit(tb,tape_exit); return (Tape){ C_(U4*,tb->ptr), tb->used }; }
|
||||||
FI_ Slice_MipsCode tb_slice(TapeBuilder tb) { return (Slice_MipsCode){ C_(U4*,tb.ptr), tb.used }; }
|
FI_ Tape tb_slice(TapeBuilder tb) { return (Tape){ C_(U4*,tb.ptr), tb.used }; }
|
||||||
#define tb_scope(tb) for(U4 tbs_once=0;tbs_once==0;++tbs_once,tb_emit(tb,tape_exit))
|
#define tb_scope(tb) for(U4 tbs_once=0;tbs_once==0;++tbs_once,tb_emit(tb,tape_exit))
|
||||||
|
|
||||||
|
FI_ void tb_scope_run_end(TapeBuilder* tb) { tb_emit(tb,tape_exit); tape_run(tb_slice(tb[0])); }
|
||||||
|
#define tb_scope_run(tb) for(U4 tbs_once=0;tbs_once==0;++tbs_once,tb_scope_run_end(tb))
|
||||||
#pragma endregion Tape Drive
|
#pragma endregion Tape Drive
|
||||||
|
|
||||||
#pragma region Macro Mips Atom Components
|
#pragma region Macro Mips Atom Components
|
||||||
@@ -104,118 +212,30 @@ FI_ Slice_MipsCode tb_slice(TapeBuilder tb) { return (Sl
|
|||||||
* ---------------------------------------------------------------------------*/
|
* ---------------------------------------------------------------------------*/
|
||||||
|
|
||||||
// The 'Yield' sequence for Tape Atoms (mac_yield).
|
// The 'Yield' sequence for Tape Atoms (mac_yield).
|
||||||
|
// - mac_yield() is the safe default for atom-endings: 4 words, BD-slot of jr is mandatory nop.
|
||||||
|
// - mac_yield_load() + mac_yield_tail():
|
||||||
|
// - unconditional branch: mac_yield_load fills the branch's BD-slot (replaces a nop);
|
||||||
|
// - mac_yield_tail runs at the branch target (does NOT re-load R_AtomJmp).
|
||||||
|
|
||||||
atom_dbg_skip MipsAtomComp_(ac_yield) {
|
atom_dbg_skip MipsAtomComp_(ac_yield) {
|
||||||
load_word(R_AtomJmp, R_TapePtr, 0),
|
load_word(R_AtomJmp, R_TapePtr, 0),
|
||||||
add_ui_self( R_TapePtr, S_(MipsCode)),
|
add_ui_self( R_TapePtr, S_(MipsCode)),
|
||||||
jump_reg( R_AtomJmp), nop,
|
jump_reg( R_AtomJmp), nop,
|
||||||
};
|
};
|
||||||
|
|
||||||
/* Words: 3; Loads 3 S2 indices from the face array */
|
atom_dbg_skip MipsAtomComp_(ac_yield_load) {
|
||||||
atom_dbg_skip MipsAtomComp_(ac_load_tri_indices) {
|
load_word(R_AtomJmp, R_TapePtr, 0),
|
||||||
load_half_u(R_T0, R_FaceCursor, 0 * S_(S2)),
|
|
||||||
load_half_u(R_T1, R_FaceCursor, 1 * S_(S2)),
|
|
||||||
load_half_u(R_T2, R_FaceCursor, 2 * S_(S2)),
|
|
||||||
};
|
};
|
||||||
|
|
||||||
/* Words: 18; Translates indices to vertex addresses and pushes them to GTE */
|
atom_dbg_skip MipsAtomComp_(ac_yield_tail) {
|
||||||
atom_dbg_skip MipsAtomComp_(ac_gte_load_tri_verts) {
|
add_ui_self(R_TapePtr, S_(MipsCode)),
|
||||||
shift_lleft(R_AT, R_T0, v3s2_byteoff), add_u_self(R_AT, R_VertBase), load_word(R_V0, R_AT, O_(V3_S2,x)), load_word(R_V1, R_AT, O_(V3_S2,z)), gte_mv_to_data_r(R_V0, C2_VXY0), gte_mv_to_data_r(R_V1, C2_VZ0),
|
jump_reg( R_AtomJmp), nop,
|
||||||
shift_lleft(R_AT, R_T1, v3s2_byteoff), add_u_self(R_AT, R_VertBase), load_word(R_V0, R_AT, O_(V3_S2,x)), load_word(R_V1, R_AT, O_(V3_S2,z)), gte_mv_to_data_r(R_V0, C2_VXY1), gte_mv_to_data_r(R_V1, C2_VZ1),
|
|
||||||
shift_lleft(R_AT, R_T2, v3s2_byteoff), add_u_self(R_AT, R_VertBase), load_word(R_V0, R_AT, O_(V3_S2,x)), load_word(R_V1, R_AT, O_(V3_S2,z)), gte_mv_to_data_r(R_V0, C2_VXY2), gte_mv_to_data_r(R_V1, C2_VZ2),
|
|
||||||
};
|
};
|
||||||
|
|
||||||
/* Words: 11; Correctly inserts a primitive into the Ordering Table linked list.
|
|
||||||
* Hardcoded for Poly_F3 (5 words). For Poly_G4, use ac_insert_ot_tag_g4. */
|
|
||||||
MipsAtomComp_(ac_insert_ot_tag_f3) {
|
|
||||||
shift_lleft( R_T1, R_T1, S_(U4)/2), // T1 = otz * S_(U4) (otz arg is implicit R_T1)
|
|
||||||
add_u_self( R_T1, R_OtBase), // T1 = & OrderingTable[OTZ]
|
|
||||||
load_word( R_AT, R_T1, O_(PolyTag,code)), // AT = old_ot_head
|
|
||||||
load_upper_i(R_V0, (S_(Poly_F3)/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits), // V0 = (5 - 1) << 24 = 4 << 24
|
|
||||||
mask_upper( R_AT, R_AT, S_(PolyTag_len_bits)), // Strip upper 8 bits (length from prev cell) → keep only low 24
|
|
||||||
or_u( R_AT, R_AT, R_V0), // Merge length
|
|
||||||
store_word( R_AT, R_PrimCursor, O_(PolyTag,code)), // prim->tag = packed(prim_length, old_addr)
|
|
||||||
shift_lleft( R_AT, R_PrimCursor, S_(PolyTag_len_bits)), // AT = (prim_length << 24) | old_addr
|
|
||||||
shift_lright(R_AT, R_AT, S_(PolyTag_len_bits)),
|
|
||||||
store_word( R_AT, R_T1, O_(PolyTag,code)), // OrderingTable[OTZ] = PrimCursor
|
|
||||||
};
|
|
||||||
|
|
||||||
/* Words: 11; Correctly inserts a primitive into the Ordering Table linked list.
|
|
||||||
* Hardcoded for Poly_G4 (9 words). For Poly_F3, use ac_insert_ot_tag_f3. */
|
|
||||||
MipsAtomComp_(ac_insert_ot_tag_g4) {
|
|
||||||
shift_lleft( R_T1, R_T1, S_(U4)/2), // T1 = otz * S_(U4) (otz arg is implicit R_T1)
|
|
||||||
add_u_self( R_T1, R_OtBase), // T1 = & OrderingTable[OTZ]
|
|
||||||
load_word( R_AT, R_T1, O_(PolyTag,code)), // AT = old_ot_head
|
|
||||||
load_upper_i(R_V0, (S_(Poly_G4)/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits), // V0 = (9 - 1) << 24 = 8 << 24
|
|
||||||
mask_upper( R_AT, R_AT, S_(PolyTag_len_bits)), // Strip upper 8 bits (length from prev cell) → keep only low 24
|
|
||||||
or_u( R_AT, R_AT, R_V0), // Merge length
|
|
||||||
store_word( R_AT, R_PrimCursor, O_(PolyTag,code)), // prim->tag = packed(prim_length, old_addr)
|
|
||||||
shift_lleft( R_AT, R_PrimCursor, S_(PolyTag_len_bits)), // AT = (prim_length << 24) | old_addr
|
|
||||||
shift_lright(R_AT, R_AT, S_(PolyTag_len_bits)),
|
|
||||||
store_word( R_AT, R_T1, O_(PolyTag,code)), // OrderingTable[OTZ] = PrimCursor
|
|
||||||
};
|
|
||||||
|
|
||||||
/* Words: 3; Emits one (cmd|color) word to R_PrimCursor at the given
|
|
||||||
* byte offset. Internal helper used by the *_format_*_color macros. */
|
|
||||||
FI_ MipsAtom ac_pack_color_word(U4 off, U4 cmd, U1 r, U1 g, U1 b)
|
|
||||||
atom_dbg_skip MipsAtomComp_Proc_(ac_pack_color_word, {
|
|
||||||
load_upper_i(R_AT, (cmd) << 8 | (b)),
|
|
||||||
or_i_self( R_AT, ((g) << 8) | (r)),
|
|
||||||
store_word( R_AT, R_PrimCursor, (off)),
|
|
||||||
})
|
|
||||||
|
|
||||||
/* Words: 3; Emits the F3 command+color word (cmd byte | BLUE | GREEN | RED)
|
|
||||||
* Args: _r, _g, _b are 8-bit RGB byte values (not raw 16-bit fields). */
|
|
||||||
FI_ MipsAtom ac_format_f3_color(U1 r, U1 g, U1 b)
|
|
||||||
atom_dbg_skip MipsAtomComp_Proc_(ac_format_f3_color, { mac_pack_color_word(O_(Poly_F3,color), gp0_cmd_poly_f3, r, g, b) })
|
|
||||||
|
|
||||||
/* Words: 3; Stores the 3 transformed (V2_S2 screen) vertices to the F3.
|
|
||||||
* PIPELINE: post-RTPT (SXY0=v0.screen, SXY1=v1.screen, SXY2=v2.screen). */
|
|
||||||
atom_dbg_skip MipsAtomComp_(ac_gte_store_f3_post_rtpt) {
|
|
||||||
gte_sw(C2_SXY0, R_PrimCursor, O_(Poly_F3,p0)),
|
|
||||||
gte_sw(C2_SXY1, R_PrimCursor, O_(Poly_F3,p1)),
|
|
||||||
gte_sw(C2_SXY2, R_PrimCursor, O_(Poly_F3,p2)),
|
|
||||||
};
|
|
||||||
|
|
||||||
/* Words: 12; Emits the four (code|color) words of a Poly_G4.
|
|
||||||
* Args: rN,gN,bN are 8-bit RGB byte values for each of the 4 vertices. */
|
|
||||||
FI_ MipsAtom ac_format_g4_color(
|
|
||||||
U1 r0, U1 g0, U1 b0,
|
|
||||||
U1 r1, U1 g1, U1 b1,
|
|
||||||
U1 r2, U1 g2, U1 b2,
|
|
||||||
U1 r3, U1 g3, U1 b3)
|
|
||||||
MipsAtomComp_Proc_(ac_format_g4_color, {
|
|
||||||
mac_pack_color_word(O_(Poly_G4,c0), gp0_cmd_poly_g4, r0,g0,b0),
|
|
||||||
mac_pack_color_word(O_(Poly_G4,c1), 0, r1,g1,b1),
|
|
||||||
mac_pack_color_word(O_(Poly_G4,c2), 0, r2,g2,b2),
|
|
||||||
mac_pack_color_word(O_(Poly_G4,c3), 0, r3,g3,b3),
|
|
||||||
})
|
|
||||||
|
|
||||||
/* Words: 3; Stores the 3 transformed (V2_S2 screen) vertices of the
|
|
||||||
* G4 triangle portion to p0/p1/p2.
|
|
||||||
* PIPELINE: post-RTPT, pre-RTPS (SXY0=v0.screen, SXY1=v1.screen, SXY2=v2.screen).
|
|
||||||
* MUST be called BEFORE V3-RTPS, otherwise SXY0/1/2
|
|
||||||
* get overwritten with v3 (RTPS writes only to SXY2, but to keep the
|
|
||||||
* three registers aligned with v0/v1/v2 you must store before RTPS).
|
|
||||||
* The macro name declares the pipeline position; check #6 (GTE state-
|
|
||||||
* machine validation) verifies the call site matches the declaration. */
|
|
||||||
atom_dbg_skip MipsAtomComp_(ac_gte_store_g4_p012_post_rtpt_pre_rtps) {
|
|
||||||
gte_sw(C2_SXY0, R_PrimCursor, O_(Poly_G4,p0)),
|
|
||||||
gte_sw(C2_SXY1, R_PrimCursor, O_(Poly_G4,p1)),
|
|
||||||
gte_sw(C2_SXY2, R_PrimCursor, O_(Poly_G4,p2)),
|
|
||||||
};
|
|
||||||
|
|
||||||
/* Words: 1; Stores the V3 screen coord to the G4's p3 slot.
|
|
||||||
* PIPELINE: post-RTPS (SXY2 holds v3.screen because RTPS writes its
|
|
||||||
* single-vertex result to SXY2; SXY0 still holds v0.screen from the
|
|
||||||
* earlier RTPT — DO NOT read SXY0 here, that's the bug this name
|
|
||||||
* prevents).
|
|
||||||
*/
|
|
||||||
atom_dbg_skip MipsAtomComp_(ac_gte_store_g4_p3_post_rtps) { gte_sw(C2_SXY2, R_PrimCursor, O_(Poly_G4,p3)) };
|
|
||||||
|
|
||||||
#pragma endregion Macro Atom Components
|
#pragma endregion Macro Atom Components
|
||||||
|
|
||||||
#pragma region Mips Atom Builder
|
#pragma region Mips Atom Builder
|
||||||
// This allows for runtime procedural authoring of mips atoms.
|
// This helps with runtime procedural authoring of mips atoms.
|
||||||
|
|
||||||
typedef Struct_(FMipsAtom512) { U4 data[512]; U4 used; };
|
typedef Struct_(FMipsAtom512) { U4 data[512]; U4 used; };
|
||||||
|
|
||||||
@@ -237,120 +257,10 @@ FI_ void atombuilder_end(MipsAtomBuilder_R ab) {
|
|||||||
mem_bump(ab->start, ab->capacity, & ab->used, S_(ac_yield));
|
mem_bump(ab->start, ab->capacity, & ab->used, S_(ac_yield));
|
||||||
}
|
}
|
||||||
|
|
||||||
#define mipsatom_from_builder(ab) (MipsAtom){ab.start, ab.used}
|
#define mipsatom_from_builder(ab) (Slice_MipsCode){ab.start, ab.used}
|
||||||
|
|
||||||
#pragma endregion Mips Atom Builder
|
#pragma endregion Mips Atom Builder
|
||||||
|
|
||||||
#pragma region Baked Mips Atoms
|
#pragma region Baked Mips Atoms
|
||||||
// These atoms are resolved at compile time and are (usually) statically linked readonly data.
|
// These atoms are resolved at compile time and are (usually) statically linked readonly data.
|
||||||
|
|
||||||
enum {
|
|
||||||
bios_flushcache = 0x44,
|
|
||||||
bios_table_addr = 0xA0,
|
|
||||||
};
|
|
||||||
|
|
||||||
/* Flushes the Instruction Cache (PSX A-function 0x44 via BIOS stub at 0xA0).
|
|
||||||
* Sequence (per MIPS ABI; arguments in arg registers, RA pushed to stack):
|
|
||||||
* 1. sp -= 8; sw $ra, 4($sp) ; save RA
|
|
||||||
* 2. $a0 = bios_flushcache (arg0)
|
|
||||||
* 3. $t0 = bios_table_addr ; t0 = &BIOS A-function table
|
|
||||||
* 4. jalr $t0, $ra ; call BIOS(flushcache)
|
|
||||||
* nop ; branch delay slot
|
|
||||||
* 5. lw $ra, 4($sp); jr $ra ; restore & return
|
|
||||||
* 6. sp += 8
|
|
||||||
*/
|
|
||||||
internal MipsAtom_(mips_flush_icache) {
|
|
||||||
add_ui(rstack_ptr, rstack_ptr, -MipsStackAlignment), // sp -= 8
|
|
||||||
store_word(rret_addr, rstack_ptr, S_(U4)), // sw $ra, 4($sp)
|
|
||||||
add_ui(rret_0, rdiscard, bios_flushcache), // addiu $a0, $0, 0x44
|
|
||||||
add_ui(rtmp_0, rdiscard, bios_table_addr), // addiu $t0, $0, 0xA0
|
|
||||||
jump_link(rtmp_0, rret_addr), nop, // jalr $t0, $ra, BD slot
|
|
||||||
load_word(rret_addr, rstack_ptr, S_(U4)), // lw $ra, 4($sp)
|
|
||||||
jump_reg(rret_addr), // jr $ra
|
|
||||||
add_ui(rstack_ptr, rstack_ptr, MipsStackAlignment), // sp += 8 (BD)
|
|
||||||
mac_yield(),
|
|
||||||
};
|
|
||||||
|
|
||||||
typedef Struct_(Binds_SetGteWorld) {
|
|
||||||
M3_S2* transform;
|
|
||||||
};
|
|
||||||
internal MipsAtom_(set_gte_world) atom_info(
|
|
||||||
atom_bind(Binds_SetGteWorld)
|
|
||||||
, atom_reads(R_TapePtr)
|
|
||||||
){
|
|
||||||
/* Pop matrix address from tape into R_T3 ($11) */
|
|
||||||
load_word(R_T3, R_TapePtr, O_(Binds_SetGteWorld,transform)),
|
|
||||||
add_ui_self( R_TapePtr, S_(Binds_SetGteWorld)),
|
|
||||||
/* Load 3x3 Rotation + 3x1 Translation from R_T3 into GTE CONTROL Regs (ctc2) */
|
|
||||||
load_word(R_T0, R_T3, 0), load_word(R_T1, R_T3, 4),
|
|
||||||
gte_mv_to_ctrl_r(R_T0, gte_cr_RT11), gte_mv_to_ctrl_r(R_T1, gte_cr_RT12),
|
|
||||||
load_word(R_T0, R_T3, 8), load_word(R_T1, R_T3, 12), load_word(R_T2, R_T3, 16),
|
|
||||||
gte_mv_to_ctrl_r(R_T0, gte_cr_RT13), gte_mv_to_ctrl_r(R_T1, gte_cr_RT21), gte_mv_to_ctrl_r(R_T2, gte_cr_RT22),
|
|
||||||
load_word(R_T0, R_T3, 20), load_word(R_T1, R_T3, 24), load_word(R_T2, R_T3, 28),
|
|
||||||
gte_mv_to_ctrl_r(R_T0, gte_cr_TRX), gte_mv_to_ctrl_r(R_T1, gte_cr_TRY), gte_mv_to_ctrl_r(R_T2, gte_cr_TRZ),
|
|
||||||
mac_yield()
|
|
||||||
};
|
|
||||||
|
|
||||||
/* DIAGNOSTIC 1: Pure tape loop test */
|
|
||||||
internal MipsAtom_(diag_yield) { mac_yield() };
|
|
||||||
|
|
||||||
/* DIAGNOSTIC 2: Pure memory test (No GTE). Draws a fixed cyan triangle. */
|
|
||||||
internal MipsAtom_(diag_color) {
|
|
||||||
store_word( R_0, R_T7, 0),
|
|
||||||
load_upper_i(R_AT, gp0_cmd_poly_f3 << 8 | 0xFF), /* High: MipsCode Poly_F3(0x20) + Color B:FF */
|
|
||||||
or_i_self( R_AT, 0xFF00), /* Low: Color G:FF, R:00 (Cyan) */
|
|
||||||
store_word( R_AT, R_T7, 4),
|
|
||||||
|
|
||||||
/* Fake coordinates - Swapped winding order to prevent GPU culling! */
|
|
||||||
load_upper_i(R_AT, 0x0010), or_i_self(R_AT, 0x0010), store_word(R_AT, R_T7, 8), /* (16, 16) */
|
|
||||||
load_upper_i(R_AT, 0x0050), or_i_self(R_AT, 0x0010), store_word(R_AT, R_T7, 12), /* (80, 16) */
|
|
||||||
load_upper_i(R_AT, 0x0010), or_i_self(R_AT, 0x0050), store_word(R_AT, R_T7, 16), /* (16, 80) */
|
|
||||||
|
|
||||||
add_ui( R_T1, R_0, 10),
|
|
||||||
shift_lleft_self(R_T1, S_(U4)/2),
|
|
||||||
add_u_self( R_T1, R_T6),
|
|
||||||
|
|
||||||
load_word( R_AT, R_T1, 0),
|
|
||||||
load_upper_i(R_V0, (S_(Poly_F3)/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits),
|
|
||||||
store_word( R_AT, R_T7, 0),
|
|
||||||
shift_lleft(R_AT, R_T7, S_(PolyTag_len_bits)), shift_lright(R_AT, R_AT, S_(PolyTag_len_bits)),
|
|
||||||
or_u_self( R_AT, R_V0),
|
|
||||||
store_word( R_AT, R_T1, 0),
|
|
||||||
|
|
||||||
add_ui(R_T7, R_T7, 20),
|
|
||||||
|
|
||||||
mac_yield()
|
|
||||||
};
|
|
||||||
|
|
||||||
/* DIAGNOSTIC 3: Pure GTE test (No Memory Writes) */
|
|
||||||
internal MipsAtom_(diag_gte) {
|
|
||||||
/* Load 3 indices */
|
|
||||||
load_half_u(R_T0, R_T4, 0),
|
|
||||||
load_half_u(R_T1, R_T4, 2),
|
|
||||||
load_half_u(R_T2, R_T4, 4),
|
|
||||||
|
|
||||||
/* Load Vertices into GTE */
|
|
||||||
shift_lleft( R_AT, R_T0, 3), add_u( R_AT, R_AT, R_T5),
|
|
||||||
load_word(R_V0, R_AT, 0), load_word(R_V1, R_AT, 4),
|
|
||||||
gte_mv_to_data_r(R_V0, C2_VXY0), gte_mv_to_data_r(R_V1, C2_VZ0),
|
|
||||||
|
|
||||||
shift_lleft( R_AT, R_T1, 3), add_u(R_AT, R_AT, R_T5),
|
|
||||||
load_word(R_V0, R_AT, 0), load_word(R_V1, R_AT, 4),
|
|
||||||
gte_mv_to_data_r(R_V0, C2_VXY1), gte_mv_to_data_r(R_V1, C2_VZ1),
|
|
||||||
|
|
||||||
shift_lleft(R_AT, R_T2, 3), add_u(R_AT, R_AT, R_T5),
|
|
||||||
load_word(R_V0, R_AT, 0), load_word(R_V1, R_AT, 4),
|
|
||||||
gte_mv_to_data_r(R_V0, C2_VXY2), gte_mv_to_data_r(R_V1, C2_VZ2),
|
|
||||||
|
|
||||||
/* Run Math */
|
|
||||||
nop2, gte_cmdw_rtpt,
|
|
||||||
nop2, gte_cmdw_nclip,
|
|
||||||
nop2,
|
|
||||||
|
|
||||||
/* Advance Face Cursor and Yield */
|
|
||||||
add_ui(R_T4, R_T4, 8),
|
|
||||||
|
|
||||||
mac_yield()
|
|
||||||
};
|
|
||||||
|
|
||||||
#pragma endregion Baked Mips Atoms
|
#pragma endregion Baked Mips Atoms
|
||||||
|
|||||||
@@ -0,0 +1,29 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# include "gen/macs.h"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
# include "math.h"
|
||||||
|
# include "lottes_tape.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
ATOM_FILE_DEBUGGER_LINE_MARKER(math_atom_c);
|
||||||
|
|
||||||
|
#pragma region MACs (Mips Atom Component)
|
||||||
|
|
||||||
|
FI_ Slice_MipsCode ac_load_v2s2(U4 rs_x, U4 rs_y, U4 r_base, U4 offset) atom_dbg_skip MipsAtomComp_Proc_(ac_load_v2s2, {
|
||||||
|
load_half( rs_x, r_base, O_(V3_S2,x)),
|
||||||
|
load_half( rs_y, r_base, O_(V3_S2,y)),
|
||||||
|
})
|
||||||
|
|
||||||
|
FI_ Slice_MipsCode ac_store_v2s2(U4 rt_x, U4 rt_y, U4 base, U4 offset) atom_dbg_skip MipsAtomComp_Proc_(ac_store_v2s2, {
|
||||||
|
store_half(rt_x, base, offset + O_(V2_S2,x)),
|
||||||
|
store_half(rt_y, base, offset + O_(V2_S2,y)),
|
||||||
|
})
|
||||||
|
|
||||||
|
FI_ Slice_MipsCode ac_store_rects2(U4 rt_x, U4 rt_y, U4 rt_width, U4 rt_height, U4 base, U4 offset) atom_dbg_skip MipsAtomComp_Proc_(ac_store_rects2, {
|
||||||
|
store_half(rt_x, base, offset + O_(Rect_S2,x)),
|
||||||
|
store_half(rt_y, base, offset + O_(Rect_S2,y)),
|
||||||
|
store_half(rt_width, base, offset + O_(Rect_S2,width)),
|
||||||
|
store_half(rt_height, base, offset + O_(Rect_S2,height)),
|
||||||
|
})
|
||||||
|
|
||||||
|
#pragma endregion MACs (Mips Atom Component)
|
||||||
+8
-10
@@ -11,6 +11,7 @@ enum {
|
|||||||
v3s2_byteoff = 3, // log2(8), used with shift_left_logical op for index via byte offset.
|
v3s2_byteoff = 3, // log2(8), used with shift_left_logical op for index via byte offset.
|
||||||
};
|
};
|
||||||
|
|
||||||
|
typedef Array_(U1, 2);
|
||||||
typedef Array_(U4, 2);
|
typedef Array_(U4, 2);
|
||||||
typedef Array_(S2, 2);
|
typedef Array_(S2, 2);
|
||||||
typedef Array_(S2, 3);
|
typedef Array_(S2, 3);
|
||||||
@@ -22,6 +23,7 @@ typedef S2 A3x3_S2[3][3];
|
|||||||
typedef Struct_(Extent2_S2) { S2 width; S2 height; };
|
typedef Struct_(Extent2_S2) { S2 width; S2 height; };
|
||||||
typedef Struct_(Extent2_S4) { S4 width; S4 height; };
|
typedef Struct_(Extent2_S4) { S4 width; S4 height; };
|
||||||
|
|
||||||
|
typedef Struct_(V2_U1) { U1 x; U1 y; };
|
||||||
typedef Struct_(V2_S2) { S2 x; S2 y; };
|
typedef Struct_(V2_S2) { S2 x; S2 y; };
|
||||||
typedef Struct_(V2_S4) { S4 x; S4 y; };
|
typedef Struct_(V2_S4) { S4 x; S4 y; };
|
||||||
typedef Struct_(V3_S2) { S2 x; S2 y; S2 z; S2 pad; };
|
typedef Struct_(V3_S2) { S2 x; S2 y; S2 z; S2 pad; };
|
||||||
@@ -32,11 +34,12 @@ typedef Struct_(V4_S4) { S4 x; S4 y; S4 z; S4 w; };
|
|||||||
typedef Struct_(R2_S2) { V2_S2 p0; V2_S2 p1; };
|
typedef Struct_(R2_S2) { V2_S2 p0; V2_S2 p1; };
|
||||||
typedef Struct_(R2_S4) { V2_S4 p0; V2_S4 p1; };
|
typedef Struct_(R2_S4) { V2_S4 p0; V2_S4 p1; };
|
||||||
|
|
||||||
typedef Struct_(Rect_S2) { S2 x; S2 y; S2 width; S2 height; };
|
typedef Struct_(Rect_S2) { S2 x; S2 y; S2 width; S2 height; };
|
||||||
typedef Struct_(Rect_S4) { S4 x; S4 y; S4 width; S4 height; };
|
typedef Struct_(Rect_S4) { S4 x; S4 y; S4 width; S4 height; };
|
||||||
|
|
||||||
typedef Struct_(M3_S2) { A3x3_S2 m; A3_S4 t; };
|
typedef Struct_(M3_S2) { A3x3_S2 m; A3_S4 t; };
|
||||||
|
|
||||||
|
typedef Array_(V2_S2, 2);
|
||||||
typedef Array_(V2_S2, 3);
|
typedef Array_(V2_S2, 3);
|
||||||
typedef Array_(V2_S2, 4);
|
typedef Array_(V2_S2, 4);
|
||||||
|
|
||||||
@@ -58,10 +61,5 @@ FI_ void add_a3s4_fp(A3_S4_R out_a, A3_S4 b) {
|
|||||||
(out_a[0])[2] += b[2] >> 1;
|
(out_a[0])[2] += b[2] >> 1;
|
||||||
}
|
}
|
||||||
|
|
||||||
FI_ void add_v3s4(V3_S4_R out_a, V3_S4 b) {
|
FI_ void add_v3s4 (V3_S4_R out_a, V3_S4 b) { add_a3s4 (pcast(A3_S4_R, out_a), pcast(A3_S4, b)); }
|
||||||
add_a3s4(pcast(A3_S4_R, out_a), pcast(A3_S4, b));
|
FI_ void add_v3s4_fp(V3_S4_R out_a, V3_S4 b) { add_a3s4_fp(pcast(A3_S4_R, out_a), pcast(A3_S4, b)); }
|
||||||
}
|
|
||||||
|
|
||||||
FI_ void add_v3s4_fp(V3_S4_R out_a, V3_S4 b) {
|
|
||||||
add_a3s4_fp(pcast(A3_S4_R, out_a), pcast(A3_S4, b));
|
|
||||||
}
|
|
||||||
|
|||||||
@@ -67,8 +67,8 @@ typedef Slice_(B1);
|
|||||||
#define slice_end(slice) ((slice).ptr + (slice).len)
|
#define slice_end(slice) ((slice).ptr + (slice).len)
|
||||||
#define S_slice(s) ((s).len * S_((s).ptr[0]))
|
#define S_slice(s) ((s).len * S_((s).ptr[0]))
|
||||||
|
|
||||||
#define slice_ut(ptr,len) slice_ut_(u4_(ptr), u4_(len))
|
#define slice_ut(ptr,len) slice_ut_(u4_(ptr), u4_(len))
|
||||||
#define slice_ut_arr(a) slice_ut_(u4_(a), S_(a))
|
#define slice_ut_arr(a) slice_ut_(u4_(a), S_(a))
|
||||||
#define slice_to_ut(s) slice_ut_(u4_((s).ptr), S_slice(s))
|
#define slice_to_ut(s) slice_ut_(u4_((s).ptr), S_slice(s))
|
||||||
|
|
||||||
#define slice_iter(container, iter) (T_((container).ptr) iter = (container).ptr; iter != slice_end(container); ++ iter)
|
#define slice_iter(container, iter) (T_((container).ptr) iter = (container).ptr; iter != slice_end(container); ++ iter)
|
||||||
|
|||||||
@@ -0,0 +1,38 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# include "gen/macs.h"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
# include "lottes_tape.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
ATOM_FILE_DEBUGGER_LINE_MARKER(mips_atom_c);
|
||||||
|
|
||||||
|
#pragma region Baked Atoms
|
||||||
|
|
||||||
|
enum {
|
||||||
|
bios_flushcache = 0x44,
|
||||||
|
bios_table_addr = 0xA0,
|
||||||
|
};
|
||||||
|
|
||||||
|
/* Flushes the Instruction Cache (PSX A-function 0x44 via BIOS stub at 0xA0).
|
||||||
|
* Sequence (per MIPS ABI; arguments in arg registers, RA pushed to stack):
|
||||||
|
* 1. sp -= 8; sw $ra, 4($sp) ; save RA
|
||||||
|
* 2. $a0 = bios_flushcache (arg0)
|
||||||
|
* 3. $t0 = bios_table_addr ; t0 = &BIOS A-function table
|
||||||
|
* 4. jalr $t0, $ra ; call BIOS(flushcache)
|
||||||
|
* nop ; branch delay slot
|
||||||
|
* 5. lw $ra, 4($sp); jr $ra ; restore & return
|
||||||
|
* 6. sp += 8
|
||||||
|
*/
|
||||||
|
internal MipsAtom_(mips_flush_icache) {
|
||||||
|
add_ui(rstack_ptr, rstack_ptr, -MipsStackAlignment), // sp -= 8
|
||||||
|
store_word(rret_addr, rstack_ptr, S_(U4)), // sw $ra, 4($sp)
|
||||||
|
add_ui(rret_0, rdiscard, bios_flushcache), // addiu $a0, $0, 0x44
|
||||||
|
add_ui(rtmp_0, rdiscard, bios_table_addr), // addiu $t0, $0, 0xA0
|
||||||
|
jump_link(rtmp_0, rret_addr), nop, // jalr $t0, $ra, BD slot
|
||||||
|
load_word(rret_addr, rstack_ptr, S_(U4)), // lw $ra, 4($sp)
|
||||||
|
jump_reg(rret_addr), // jr $ra
|
||||||
|
add_ui(rstack_ptr, rstack_ptr, MipsStackAlignment), // sp += 8 (BD)
|
||||||
|
mac_yield(),
|
||||||
|
};
|
||||||
|
|
||||||
|
#pragma endregion Baked Atoms
|
||||||
+26
-11
@@ -336,10 +336,10 @@ enum { _BitOffsets = 0
|
|||||||
|
|
||||||
/* Logic Opcodes */
|
/* Logic Opcodes */
|
||||||
|
|
||||||
#define and_u(rd, rs, rt) enc_r(op_special, (rs), (rt), (rd), 0, fc_and)
|
#define and_u(rd, rs, rt) enc_r(op_special, (rs), (rt), (rd), 0, fc_and)
|
||||||
#define or_u(rd, rs, rt) enc_r(op_special, (rs), (rt), (rd), 0, fc_or)
|
#define or_u(rd, rs, rt) enc_r(op_special, (rs), (rt), (rd), 0, fc_or)
|
||||||
#define xor_u(rd, rs, rt) enc_r(op_special, (rs), (rt), (rd), 0, fc_xor)
|
#define xor_u(rd, rs, rt) enc_r(op_special, (rs), (rt), (rd), 0, fc_xor)
|
||||||
#define nor_u(rd, rs, rt) enc_r(op_special, (rs), (rt), (rd), 0, fc_nor)
|
#define nor_u(rd, rs, rt) enc_r(op_special, (rs), (rt), (rd), 0, fc_nor)
|
||||||
|
|
||||||
#define or_u_self(rd_rs, rt) enc_r(op_special, (rd_rs), (rt), (rd_rs), 0, fc_or)
|
#define or_u_self(rd_rs, rt) enc_r(op_special, (rd_rs), (rt), (rd_rs), 0, fc_or)
|
||||||
|
|
||||||
@@ -362,10 +362,28 @@ enum { _BitOffsets = 0
|
|||||||
/* call_reg rs — jump-and-link to register-held address; link in $ra. */
|
/* call_reg rs — jump-and-link to register-held address; link in $ra. */
|
||||||
#define call_reg(rs) jump_link((rs), R_RA)
|
#define call_reg(rs) jump_link((rs), R_RA)
|
||||||
|
|
||||||
/* j target — absolute jump within the current 256MB region. */
|
/* j target — absolute jump within the current 256MB region.
|
||||||
|
* WARNING: `jump(off)` CANNOT BE USED for within-atom jumps in the current pipeline.
|
||||||
|
* The MIPS j opcode encodes `(target_addr >> 2)` in its 26-bit immediate field; an ABSOLUTE byte address, not a relative word offset.
|
||||||
|
* The metaprogram computes `off` as a relative word offset (`target_word_idx - branch_word_idx - 1`), which the assembler/linker does NOT resolve.
|
||||||
|
*
|
||||||
|
* `jump(off)` is only safe when the BUILD PIPELINE owns the absolute position of the emitted code — i.e. when: s
|
||||||
|
* - the build emits a symbol-relative `.word` expression that the linker resolvess via `R_MIPS_26`, OR
|
||||||
|
* - the code is hand-assembled with explicit absolute targets, OR a custom post-build patcher resolves the 26-bit field.
|
||||||
|
*/
|
||||||
#define jump(off) enc_i(op_j, R_0, R_0, (off))
|
#define jump(off) enc_i(op_j, R_0, R_0, (off))
|
||||||
|
|
||||||
/* call_addr off — jump-and-link to immediate address. */
|
/* jump_rel off — unconditional relative jump (the within-atom-safe `jump`).
|
||||||
|
* MIPS I R3000A has no "branch always" opcode. The idiom for an unconditional relative jump is `beq $0, $0, off`.
|
||||||
|
*/
|
||||||
|
#define jump_rel(off) branch_equal(R_0, R_0, (off))
|
||||||
|
|
||||||
|
/* call_addr off — jump-and-link to immediate address.
|
||||||
|
*
|
||||||
|
* Same WARNING as `jump(off)` above: the jal opcode also encodes an absolute 26-bit target.
|
||||||
|
* For within-atom calls, the current pipeline has no equivalent always-taken call-and-link idiom.
|
||||||
|
* Workaround: `branch_link` (always-taken branch + explicit `la $ra, next_word_addr; jr $ra`), or just use `call_reg($tmp)` after loading the target into a register.
|
||||||
|
*/
|
||||||
#define call_addr(off) enc_i(op_jal, R_0, R_0, (off))
|
#define call_addr(off) enc_i(op_jal, R_0, R_0, (off))
|
||||||
|
|
||||||
/* --- Store family (mirrors the load family) --- */
|
/* --- Store family (mirrors the load family) --- */
|
||||||
@@ -444,18 +462,15 @@ enum { _BitOffsets = 0
|
|||||||
#define load_imm_1w_s0(rt, imm) add_si((rt)), R_0, (imm))
|
#define load_imm_1w_s0(rt, imm) add_si((rt)), R_0, (imm))
|
||||||
|
|
||||||
/* load_imm_2w — unconditional 2-word `li` form: `lui` + (ori | addi).
|
/* load_imm_2w — unconditional 2-word `li` form: `lui` + (ori | addi).
|
||||||
*
|
|
||||||
* Granular companion to `load_imm`: skips the compile-time range checks and always emits 2 .words. Use this when:
|
* Granular companion to `load_imm`: skips the compile-time range checks and always emits 2 .words. Use this when:
|
||||||
* - you know `imm` is > 0xFFFF (otherwise you're wasting a word), OR
|
* - you know `imm` is > 0xFFFF (otherwise you're wasting a word), OR
|
||||||
* - `imm` is not a compile-time constant and you want predictable
|
* - `imm` is not a compile-time constant and you want predictable 2-word emission without the `__builtin_constant_p` branches.
|
||||||
* 2-word emission without the `__builtin_constant_p` branches.
|
|
||||||
*
|
*
|
||||||
* The lo16 strategy is still chosen at expansion time on the lo half:
|
* The lo16 strategy is still chosen at expansion time on the lo half:
|
||||||
* lo16 in 0x0000..0x7FFF → addi (sign-ext is harmless, the lui already cleared bits 15..0)
|
* lo16 in 0x0000..0x7FFF → addi (sign-ext is harmless, the lui already cleared bits 15..0)
|
||||||
* lo16 in 0x8000..0xFFFF → ori (zero-extends to preserve the intended bit pattern)
|
* lo16 in 0x8000..0xFFFF → ori (zero-extends to preserve the intended bit pattern)
|
||||||
*
|
*
|
||||||
* For situations where you need to bypass even this choice
|
* For situations where you need to bypass even this choice (e.g. to force a specific encoding for a known discontiguous high/low pair),
|
||||||
* (e.g. to force a specific encoding for a known discontiguous high/low pair),
|
|
||||||
* see `load_imm_2w_ori_forced` and `load_imm_2w_addi_forced` below.
|
* see `load_imm_2w_ori_forced` and `load_imm_2w_addi_forced` below.
|
||||||
* Statement-level (not expression-level): emits its own `asm volatile(...)`.
|
* Statement-level (not expression-level): emits its own `asm volatile(...)`.
|
||||||
*/
|
*/
|
||||||
|
|||||||
@@ -0,0 +1,184 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# include "gen/macs.h"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
# include "mips.h"
|
||||||
|
# include "dsl.atom.h"
|
||||||
|
# include "lottes_tape.h"
|
||||||
|
# include "pad.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
ATOM_FILE_DEBUGGER_LINE_MARKER(pad_atom_c);
|
||||||
|
|
||||||
|
#pragma region Baked Atoms
|
||||||
|
|
||||||
|
/* ----- pad_bios_snapshot -----
|
||||||
|
* Per-frame snapshot of one BIOS pad buffer into PadState.
|
||||||
|
* Decoder (branch ladder on raw[0] status + raw[1] id):
|
||||||
|
* 1. raw[0] == 0xFF -> Disconnected (buttons=0, axes=0x80)
|
||||||
|
* 2. raw[0]==0 && raw[1]==0 -> Pending (buttons=0, axes=0x80)
|
||||||
|
* 3. raw[1] == 0x41 -> Digital (buttons normalized; axes=0x80)
|
||||||
|
* 4. raw[1] == 0x53 -> AnalogStick (buttons normalized; axes from raw[4..7])
|
||||||
|
* 5. raw[1] in 0x7x -> AnalogPad (buttons normalized; axes from raw[4..7])
|
||||||
|
* 6. else -> Unsupported (buttons=0, axes=0x80)
|
||||||
|
*
|
||||||
|
* Buttons normalization: byte_swap16((~raw_buttons) & 0xFFFF).
|
||||||
|
* raw_buttons = load_half_u(raw, 2) = raw[2] | (raw[3] << 8).
|
||||||
|
* byte_swap16(x) = (x >> 8) | (x << 8); nor(x, R_0) = ~x. store_half truncates to 16 bits so the upper-16 mask is implicit in the store.
|
||||||
|
*
|
||||||
|
* Register use (atom-local; no wave-context touched):
|
||||||
|
* R_T0 = raw base (kept throughout; axes loads read raw[4..7] from R_T0)
|
||||||
|
* R_T1 = state base (kept throughout; all stores go through R_T1)
|
||||||
|
* R_T2 = raw[0] status (alive across the disc/pending/id dispatch, then dead)
|
||||||
|
* R_T3 = raw[1] id (alive across the id dispatch, then dead)
|
||||||
|
* R_T4 = scratch (shifts, compares, immediate loads, store values)
|
||||||
|
* R_T5 = scratch (parallel lui+ori for the 0x80808080 axes constant + byte-swap target)
|
||||||
|
*/
|
||||||
|
enum {
|
||||||
|
R_PadRaw = R_T0 atom_reg atom_type(U1),
|
||||||
|
R_PadState = R_T1 atom_reg,
|
||||||
|
R_RawStatus = R_T2 atom_reg,
|
||||||
|
R_RawId = R_T3 atom_reg,
|
||||||
|
};
|
||||||
|
typedef Struct_(Binds_PadBiosSnapshot) {
|
||||||
|
PadBiosRaw* raw;
|
||||||
|
PadState* state;
|
||||||
|
};
|
||||||
|
internal MipsAtom_(pad_bios_snapshot) atom_info(atom_bind(Binds_PadBiosSnapshot)
|
||||||
|
, atom_reads( R_PadRaw, R_PadState, R_RawStatus, R_RawId, R_T4, R_T5, R_TapePtr)
|
||||||
|
, atom_writes(R_PadRaw, R_PadState, R_RawStatus, R_RawId, R_T4, R_T5, R_TapePtr)
|
||||||
|
) {
|
||||||
|
/* === Bind consumption: T0 = raw, T1 = state, advance R_TapePtr by 8. */
|
||||||
|
load_word(R_PadRaw, R_TapePtr, O_(Binds_PadBiosSnapshot,raw)),
|
||||||
|
load_word(R_PadState, R_TapePtr, O_(Binds_PadBiosSnapshot,state)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_PadBiosSnapshot)),
|
||||||
|
|
||||||
|
/* === Read raw[0] (status) + raw[1] (id) */
|
||||||
|
load_byte_u(R_RawStatus, R_PadRaw, 0),
|
||||||
|
load_byte_u(R_RawId, R_PadRaw, 1),
|
||||||
|
|
||||||
|
atom_label(snap_root) /* === Case 1: Disconnected (status == 0xFF). */
|
||||||
|
add_ui(R_T4, R_0, 0xFF), branch_ne(R_RawStatus, R_T4, atom_offset(snap_root, skip_disconnected)),
|
||||||
|
/* BD-slot: pre-compute PadStatus_Disconnected. Branch reads R_T4=0xFF in EX before this WB completes.
|
||||||
|
* If branch NOT taken (fall through to pending/id_dispatch), R_T4 is overwritten by the next case body's add_ui — harmless. */
|
||||||
|
|
||||||
|
atom_label(disconnected) /* === Disconnected body. */
|
||||||
|
/* R_T4 = PadStatus_Disconnected from snap_root BD-slot. */
|
||||||
|
store_word(R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
store_half(R_0, R_PadState, O_(PadState,buttons)),
|
||||||
|
/* axes = 0x80808080 (centered) — single sw writes the 4-byte axes block at offset 8 (left_x, left_y, right_x, right_y). */
|
||||||
|
load_upper_i(R_T4, 0x8080), or_i_self(R_T4, 0x8080),
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,left_x)),
|
||||||
|
store_byte( R_RawId, R_PadState, O_(PadState,id)),
|
||||||
|
jump_rel(atom_offset(disconnected, snap_end)),
|
||||||
|
/* BD-slot: load next atom's entry point (replaces the nop).
|
||||||
|
* The unconditional branch always jumps to snap_end, where mac_yield_tail()
|
||||||
|
* transfers control to R_AtomJmp without re-loading it. */
|
||||||
|
mac_yield_load(),
|
||||||
|
atom_label(skip_disconnected)
|
||||||
|
|
||||||
|
/* === Case 2: Pending (status == 0 && id == 0)
|
||||||
|
* Combined check: if (status | id) != 0 then skip to id_dispatch.
|
||||||
|
* Falls through to the Pending case only when both are zero. */
|
||||||
|
or_u_self(R_RawStatus, R_RawId), branch_ne(R_RawStatus, R_0, atom_offset(case_2, id_dispatch)),
|
||||||
|
/* BD-slot: pre-compute PadStatus_Pending. Branch reads R_RawStatus in EX before this WB completes.
|
||||||
|
* If branch NOT taken (fall through to id_dispatch), R_T4 is overwritten by the digital/analog body add_ui — harmless. */
|
||||||
|
|
||||||
|
atom_label(pending) /* === Pending body */
|
||||||
|
/* R_T4 = PadStatus_Pending from case_2 BD-slot. */
|
||||||
|
store_word(R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
store_half(R_0, R_PadState, O_(PadState,buttons)),
|
||||||
|
/* axes = 0x80808080 (centered) — single sw writes the 4-byte axes block at offset 8 (left_x, left_y, right_x, right_y). */
|
||||||
|
load_upper_i(R_T4, 0x8080), or_i_self(R_T4, 0x8080),
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,left_x)),
|
||||||
|
store_byte( R_RawId, R_PadState, O_(PadState,id)),
|
||||||
|
jump_rel(atom_offset(pending, snap_end)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(id_dispatch) /* === Case 3-6: ID dispatch */
|
||||||
|
add_ui(R_T4, R_0, 0x41), branch_ne(R_RawId, R_T4, atom_offset(id_dispatch, try_analog_stick)),
|
||||||
|
/* BD-slot: pre-compute PadStatus_Digital. Branch reads R_RawId in EX before this WB completes.
|
||||||
|
* If branch NOT taken (fall through to try_analog_stick), R_T4 is overwritten by the analog body add_ui. */
|
||||||
|
|
||||||
|
/* === Digital body (status, buttons normalize, axes=0x80, id, branch. */
|
||||||
|
/* R_T4 = PadStatus_Digital from id_dispatch BD-slot. */
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
load_half_u(R_T4, R_PadRaw, 2 * S_(U1)),
|
||||||
|
/* Fill R_T4's load-delay slot with the 0x80808080 axes constant into R_T5
|
||||||
|
* (R_T5 is dead on this path; it's only consumed at the analog_pad range check). */
|
||||||
|
load_upper_i(R_T5, 0x8080), or_i_self(R_T5, 0x8080),
|
||||||
|
nor_u( R_T4, R_T4, R_0), /* raw_buttons is already in host bit order; no swap needed */
|
||||||
|
store_half( R_T4, R_PadState, O_(PadState,buttons)),
|
||||||
|
|
||||||
|
/* axes = 0x80808080 (centered) — single sw writes the 4-byte axes block at offset 8 (left_x, left_y, right_x, right_y). */
|
||||||
|
store_word( R_T5, R_PadState, O_(PadState,left_x)),
|
||||||
|
add_ui( R_T4, R_0, 0x41),
|
||||||
|
store_byte( R_T4, R_PadState, O_(PadState,id)),
|
||||||
|
|
||||||
|
jump_rel(atom_offset(id_dispatch, snap_end)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(try_analog_stick) /* === Case 4: AnalogStick (id == 0x53)*/
|
||||||
|
add_ui(R_T4, R_0, 0x53), branch_ne(R_RawId, R_T4, atom_offset(try_analog_stick, try_analog_pad)),
|
||||||
|
/* BD-slot: pre-compute PadStatus_AnalogStick. Branch reads R_RawId in EX before this WB completes.
|
||||||
|
* If branch NOT taken (fall through to try_analog_pad), R_T4 is overwritten by the analog_pad body add_ui. */
|
||||||
|
|
||||||
|
atom_label(analog_stick) /* === AnalogStick body
|
||||||
|
* Axes are loaded as two halfwords: raw[6..7] → left_xy (sh at offset 8), raw[4..5] → right_xy (sh at offset 10).
|
||||||
|
* R_T5 holds left_xy / id-value in turn (it's dead on this path — only consumed at the analog_pad range check). */
|
||||||
|
/* R_T4 = PadStatus_AnalogStick from try_analog_stick BD-slot. */
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
load_half_u( R_T4, R_PadRaw, 2 * S_(U1)), /* R_T4 = raw_buttons */
|
||||||
|
load_half_u( R_T5, R_PadRaw, 6 * S_(U1)), /* R_T5 = left_xy; fills R_T4's load-delay slot (doesn't read R_T4) */
|
||||||
|
nor_u( R_T4, R_T4, R_0), /* R_T4 = ~raw_buttons */
|
||||||
|
store_half( R_T4, R_PadState, O_(PadState,buttons)),
|
||||||
|
load_half_u( R_T4, R_PadRaw, 4 * S_(U1)), /* R_T4 = right_xy; fills R_T5's load-delay slot */
|
||||||
|
store_half( R_T5, R_PadState, O_(PadState,left_x)), /* R_T5 settled, store left_xy */
|
||||||
|
store_half( R_T4, R_PadState, O_(PadState,right_x)),
|
||||||
|
add_ui( R_T5, R_0, 0x53), /* R_T5 = id value (clobbers left_xy, already stored) */
|
||||||
|
store_byte( R_T5, R_PadState, O_(PadState,id)),
|
||||||
|
jump_rel(atom_offset(analog_stick, snap_end)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(try_analog_pad) /* === Case 5-6: AnalogPad (id & 0xF0 == 0x70) */
|
||||||
|
and_i( R_T4, R_RawId, 0xF0),
|
||||||
|
add_ui( R_T5, R_0, 0x70),
|
||||||
|
branch_ne(R_T4, R_T5, atom_offset(try_analog_pad, try_unsupported)),
|
||||||
|
/* BD-slot: pre-compute PadStatus_AnalogPad. Branch reads R_T4 in EX before this WB completes.
|
||||||
|
* If branch NOT taken (fall through to try_unsupported), R_T4 is overwritten by the unsupported body add_ui. */
|
||||||
|
|
||||||
|
atom_label(analog_pad) /* === AnalogPad body
|
||||||
|
* Same shape as AnalogStick with AnalogPad status. R_T5 holds left_xy (it's dead on this path). */
|
||||||
|
/* R_T4 = PadStatus_AnalogPad from try_analog_pad BD-slot. */
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
load_half_u(R_T4, R_PadRaw, 2 * S_(U1)), /* R_T4 = raw_buttons */
|
||||||
|
load_half_u(R_T5, R_PadRaw, 6 * S_(U1)), /* R_T5 = left_xy; fills R_T4's load-delay slot */
|
||||||
|
nor_u( R_T4, R_T4, R_0), /* R_T4 = ~raw_buttons */
|
||||||
|
store_half( R_T4, R_PadState, O_(PadState,buttons)),
|
||||||
|
load_half_u(R_T4, R_PadRaw, 4 * S_(U1)), /* R_T4 = right_xy; fills R_T5's load-delay slot */
|
||||||
|
store_half( R_T5, R_PadState, O_(PadState,left_x)), /* R_T5 settled, store left_xy */
|
||||||
|
store_half( R_T4, R_PadState, O_(PadState,right_x)),
|
||||||
|
store_byte( R_RawId, R_PadState, O_(PadState,id)),
|
||||||
|
|
||||||
|
jump_rel(atom_offset(analog_pad, snap_end)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(try_unsupported) /* === Case 7: Unsupported — fall through from the AnalogPad range-check miss. */
|
||||||
|
add_ui( R_T4, R_0, PadStatus_Unsupported),
|
||||||
|
store_word(R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
store_half(R_0, R_PadState, O_(PadState,buttons)),
|
||||||
|
/* axes = 0x80808080 (centered) — single sw writes the 4-byte axes block at offset 8 (left_x, left_y, right_x, right_y). */
|
||||||
|
load_upper_i(R_T4, 0x8080), or_i_self(R_T4, 0x8080),
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,left_x)),
|
||||||
|
add_ui( R_T4, R_0, 0xFF), /* 0xFF sentinel: "unknown id" */
|
||||||
|
store_byte( R_T4, R_PadState, O_(PadState,id)),
|
||||||
|
/* Fall through to snap_end. */
|
||||||
|
|
||||||
|
atom_label(no_jump_fallthrough)
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(snap_end)
|
||||||
|
/* NOT mac_yield() — R_AtomJmp was already loaded in the BD-slot of the case-exit branch. */
|
||||||
|
mac_yield_tail(),
|
||||||
|
};
|
||||||
|
|
||||||
|
#pragma endregion Baked Atoms
|
||||||
@@ -0,0 +1,73 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# pragma once
|
||||||
|
# include "dsl.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
/* PSX button bit positions — 1:1 with PSX-SPX docs at docs/psx-spx/docs/controllersandmemorycards.md:405-421.
|
||||||
|
* Wire is active-low (0 = pressed).
|
||||||
|
* The decoder atom computes buttons = (~raw_buttons) & 0xFFFF; the active-low-to-active-high inversion is applied bit-by-bit. */
|
||||||
|
enum {
|
||||||
|
Bit_(Pad_Select, 0),
|
||||||
|
Bit_(Pad_L3, 1),
|
||||||
|
Bit_(Pad_R3, 2),
|
||||||
|
Bit_(Pad_Start, 3),
|
||||||
|
Bit_(Pad_Up, 4),
|
||||||
|
Bit_(Pad_Right, 5),
|
||||||
|
Bit_(Pad_Down, 6),
|
||||||
|
Bit_(Pad_Left, 7),
|
||||||
|
Bit_(Pad_L2, 8),
|
||||||
|
Bit_(Pad_R2, 9),
|
||||||
|
Bit_(Pad_L1, 10),
|
||||||
|
Bit_(Pad_R1, 11),
|
||||||
|
Bit_(Pad_Triangle, 12),
|
||||||
|
Bit_(Pad_Circle, 13),
|
||||||
|
Bit_(Pad_Cross, 14),
|
||||||
|
Bit_(Pad_Square, 15),
|
||||||
|
};
|
||||||
|
|
||||||
|
enum {
|
||||||
|
PadId_Offset = 4,
|
||||||
|
|
||||||
|
Pad0 = 0 << PadId_Offset,
|
||||||
|
Pad1 = 1 << PadId_Offset,
|
||||||
|
};
|
||||||
|
|
||||||
|
#define pad0_(btn_id) (btn_id << Pad0)
|
||||||
|
#define pad1_(btn_id) (btn_id << Pad1)
|
||||||
|
|
||||||
|
/* ============================================================
|
||||||
|
* BIOS pad-buffer subsystem: docs/psx-spx/docs/kernelbios.md (B(12h) + B(13h))
|
||||||
|
* ============================================================ */
|
||||||
|
|
||||||
|
enum {
|
||||||
|
PAD_BIOS_RAW_SIZE = 0x22,
|
||||||
|
};
|
||||||
|
typedef Struct_(PadBiosRaw) {
|
||||||
|
U1 bytes[PAD_BIOS_RAW_SIZE];
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef Enum_(U4, PadStatus) {
|
||||||
|
PadStatus_Disconnected,
|
||||||
|
PadStatus_Digital,
|
||||||
|
PadStatus_AnalogStick,
|
||||||
|
PadStatus_AnalogPad,
|
||||||
|
PadStatus_Unsupported,
|
||||||
|
PadStatus_Pending,
|
||||||
|
PadStatus_Invalid,
|
||||||
|
};
|
||||||
|
|
||||||
|
/* PadState — per-port normalized runtime state.
|
||||||
|
* Field order is chosen so that the 4 axes (left_x, left_y, right_x, right_y)
|
||||||
|
* form a contiguous 4-byte block at offset 8, allowing a single `store_word` to clear-or-write all 4 axes in one MIPS instruction.
|
||||||
|
* The struct size stays 12 bytes (unchanged from the prior order,
|
||||||
|
* which left the C compiler to insert 1 byte of trailing pad to reach the 4-byte struct alignment). */
|
||||||
|
typedef Struct_(PadState) {
|
||||||
|
PadStatus status; /* offset 0, size 4 (U4) */
|
||||||
|
U2 buttons; /* offset 4, size 2 */
|
||||||
|
U1 id; /* offset 6, size 1 */
|
||||||
|
U1 pad; /* offset 7, size 1 — explicit pad to align the axes block */
|
||||||
|
U1 left_x; /* offset 8, size 1 — store_word target (4-byte aligned) */
|
||||||
|
U1 left_y; /* offset 9, size 1 */
|
||||||
|
U1 right_x; /* offset 10, size 1 */
|
||||||
|
U1 right_y; /* offset 11, size 1 */
|
||||||
|
};
|
||||||
@@ -0,0 +1,7 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# include "gen/macs.h"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
# include "psyq.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
ATOM_FILE_DEBUGGER_LINE_MARKER(pysq_atom_c);
|
||||||
@@ -0,0 +1,103 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# pragma once
|
||||||
|
# include "dsl.h"
|
||||||
|
# include "math.h"
|
||||||
|
# include "gp.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
typedef Struct_(DrawEnv_Packed) { U4 tag; U4 code[15]; };
|
||||||
|
typedef Struct_(DrawEnv) {
|
||||||
|
Rect_S2 clip_area;
|
||||||
|
V2_S2 drawing_offset[2];
|
||||||
|
Rect_S2 texture_window;
|
||||||
|
S2 texture_page;
|
||||||
|
B1 flag_dither;
|
||||||
|
B1 flag_draw_on_display;
|
||||||
|
B1 enable_auto_clear;
|
||||||
|
RGB8 initial_bg_color;
|
||||||
|
DrawEnv_Packed dr_env; // reserved
|
||||||
|
};
|
||||||
|
typedef Struct_(DisplayEnv) {
|
||||||
|
Rect_S2 display_area;
|
||||||
|
Rect_S2 screen;
|
||||||
|
B1 vinterlace;
|
||||||
|
B1 color24;
|
||||||
|
B1 pad0;
|
||||||
|
B1 pad1;
|
||||||
|
};
|
||||||
|
typedef Array_(DrawEnv, 2);
|
||||||
|
typedef Array_(DisplayEnv, 2);
|
||||||
|
|
||||||
|
typedef Struct_(DoubleBuffer) {
|
||||||
|
A2_DrawEnv draw;
|
||||||
|
A2_DisplayEnv display;
|
||||||
|
};
|
||||||
|
|
||||||
|
DisplayEnv* displayenv_init(DisplayEnv* env, S4 x, S4 y, S4 w, S4 h) asm("SetDefDispEnv");
|
||||||
|
DrawEnv* drawenv_init (DrawEnv* env, S4 x, S4 y, S4 w, S4 h) asm("SetDefDrawEnv");
|
||||||
|
|
||||||
|
DisplayEnv* displayenv_put(DisplayEnv* env) asm("PutDispEnv");
|
||||||
|
DrawEnv* drawenv_put (DrawEnv* env) asm("PutDrawEnv");
|
||||||
|
|
||||||
|
U4 geom_init(void) asm("InitGeom");
|
||||||
|
void geom_set_offset(U4 x, U4 y) asm("SetGeomOffset");
|
||||||
|
void geom_set_screen(U4 h) asm("SetGeomScreen");
|
||||||
|
|
||||||
|
U4* orderingtbl_clear_reverse(U4* ot, U4 len) asm("ClearOTagR");
|
||||||
|
|
||||||
|
U4 reset_graph(U4 mode) asm("ResetGraph");
|
||||||
|
void set_display_enabled(U4 mask) asm("SetDispMask");
|
||||||
|
|
||||||
|
U4 draw_sync(U4 mode) asm("DrawSync");
|
||||||
|
U4 vsync(U4 mode) asm("VSync");
|
||||||
|
|
||||||
|
void draw_orderingtbl(U4* buf) asm("DrawOTag");
|
||||||
|
|
||||||
|
typedef Struct_(Tile) {
|
||||||
|
U4 tag;
|
||||||
|
RGB8 color;
|
||||||
|
B1 code;
|
||||||
|
Rect_S2 rect;
|
||||||
|
};
|
||||||
|
|
||||||
|
/*
|
||||||
|
Linear Algebra
|
||||||
|
*/
|
||||||
|
|
||||||
|
M3_S2* m3s2_rotation (V3_S2* vec, M3_S2* mat) asm("RotMatrix");
|
||||||
|
M3_S2* m3s2_translation(M3_S2* mat, V3_S4* vec) asm("TransMatrix");
|
||||||
|
M3_S2* m3s2_scale (M3_S2* mat, V3_S4* vec) asm("ScaleMatrix");
|
||||||
|
|
||||||
|
// Rotation, Translation, Perspective
|
||||||
|
|
||||||
|
S4 rtp_v3s2_raw(V3_S2* vec, S4* xy, S4* pp, S4* flag) asm("RotTransPers");
|
||||||
|
FI_ S4 rtp_v3s2(V3_S2* vec, V2_S2* xy, A2_S2* pp, S4* flag) { return rtp_v3s2_raw(vec, C_(S4*R_, & xy->x), C_(S4*R_, pp), r_(flag)); }
|
||||||
|
|
||||||
|
S4 rtp_avg_nclip_a3_v3s2_raw(V3_S2* v0, V3_S2* v1, V3_S2* v2, S4* xy1, S4* xy2, S4* xy3, S4* pp, S4* otz, S4* flag) asm("RotAverageNclip3");
|
||||||
|
FI_ S4 rtp_avg_nclip_a3_v3s2(
|
||||||
|
V3_S2* v0, V3_S2* v1, V3_S2* v2,
|
||||||
|
V2_S2* xy0, V2_S2* xy1, V2_S2* xy2,
|
||||||
|
A2_S2* pp, S4* otz, S4* flag
|
||||||
|
){
|
||||||
|
return rtp_avg_nclip_a3_v3s2_raw(
|
||||||
|
v0, v1, v2,
|
||||||
|
C_(S4*R_, xy0), C_(S4*R_, xy1), C_(S4*R_, xy2),
|
||||||
|
C_(S4*R_, pp), C_(S4*R_, otz), C_(S4*R_, flag)
|
||||||
|
);
|
||||||
|
}
|
||||||
|
|
||||||
|
S4 rtp_avg_nclip_a4_v3s2_raw(V3_S2* v0, V3_S2* v1, V3_S2* v2, V3_S2* v3, S4* xy1, S4* xy2, S4* xy3, S4* xy4, S4* pp, S4* otz, S4* flag) asm("RotAverageNclip4");
|
||||||
|
FI_ S4 rtp_avg_nclip_a4_v3s2(
|
||||||
|
V3_S2* v0, V3_S2* v1, V3_S2* v2, V3_S2* v3,
|
||||||
|
V2_S2* xy0, V2_S2* xy1, V2_S2* xy2, V2_S2* xy3,
|
||||||
|
A2_S2* pp, S4* otz, S4* flag
|
||||||
|
){
|
||||||
|
return rtp_avg_nclip_a4_v3s2_raw(
|
||||||
|
v0, v1, v2, v3,
|
||||||
|
C_(S4*R_, xy0), C_(S4*R_, xy1), C_(S4*R_, xy2), C_(S4*R_, xy3),
|
||||||
|
C_(S4*R_, pp), C_(S4*R_, otz), C_(S4*R_, flag)
|
||||||
|
);
|
||||||
|
}
|
||||||
|
|
||||||
|
void gte_matrix_set_rotation (M3_S2* mat) asm("SetRotMatrix");
|
||||||
|
void gte_matrix_set_translation(M3_S2* mat) asm("SetTransMatrix");
|
||||||
@@ -6,7 +6,7 @@
|
|||||||
// One line per macro that appears in your atom sources.
|
// One line per macro that appears in your atom sources.
|
||||||
//
|
//
|
||||||
// This file is encoding-macros-only.
|
// This file is encoding-macros-only.
|
||||||
// The auto-generated component macros (mac_X) live in duffle/gen/<dir>.macs.h (included separately by the unity build).
|
// The auto-generated component macros (mac_X) live in the source directory's own gen/macs.h (per-directory aggregation; included separately by the unity build).
|
||||||
// The unity build should include THIS file and the .macs.h file in the same TU, with both wrapped
|
// The unity build should include THIS file and the .macs.h file in the same TU, with both wrapped
|
||||||
// (or the include guard order handled) to avoid WORD_COUNT redeclaration.
|
// (or the include guard order handled) to avoid WORD_COUNT redeclaration.
|
||||||
//
|
//
|
||||||
@@ -22,6 +22,7 @@ WORD_COUNT(call_reg, 1)
|
|||||||
WORD_COUNT(call_addr, 1)
|
WORD_COUNT(call_addr, 1)
|
||||||
WORD_COUNT(branch_le_zero, 1)
|
WORD_COUNT(branch_le_zero, 1)
|
||||||
WORD_COUNT(branch_equal, 1)
|
WORD_COUNT(branch_equal, 1)
|
||||||
|
WORD_COUNT(branch_ne, 1)
|
||||||
WORD_COUNT(add_ui, 1)
|
WORD_COUNT(add_ui, 1)
|
||||||
WORD_COUNT(set_lt_u, 1)
|
WORD_COUNT(set_lt_u, 1)
|
||||||
WORD_COUNT(set_lt_s, 1)
|
WORD_COUNT(set_lt_s, 1)
|
||||||
@@ -29,7 +30,9 @@ WORD_COUNT(set_lt_si, 1)
|
|||||||
WORD_COUNT(set_lt_ui, 1)
|
WORD_COUNT(set_lt_ui, 1)
|
||||||
WORD_COUNT(load_word, 1)
|
WORD_COUNT(load_word, 1)
|
||||||
WORD_COUNT(load_half_u, 1)
|
WORD_COUNT(load_half_u, 1)
|
||||||
|
WORD_COUNT(load_byte_u, 1)
|
||||||
WORD_COUNT(store_word, 1)
|
WORD_COUNT(store_word, 1)
|
||||||
|
WORD_COUNT(store_byte, 1)
|
||||||
WORD_COUNT(add_ui_self, 1)
|
WORD_COUNT(add_ui_self, 1)
|
||||||
WORD_COUNT(add_u_self, 1)
|
WORD_COUNT(add_u_self, 1)
|
||||||
WORD_COUNT(add_u, 1)
|
WORD_COUNT(add_u, 1)
|
||||||
@@ -37,6 +40,7 @@ WORD_COUNT(or_i, 1)
|
|||||||
WORD_COUNT(or_i_self, 1)
|
WORD_COUNT(or_i_self, 1)
|
||||||
WORD_COUNT(or_u, 1)
|
WORD_COUNT(or_u, 1)
|
||||||
WORD_COUNT(or_u_self, 1)
|
WORD_COUNT(or_u_self, 1)
|
||||||
|
WORD_COUNT(nor_u, 1)
|
||||||
WORD_COUNT(shift_lleft, 1)
|
WORD_COUNT(shift_lleft, 1)
|
||||||
WORD_COUNT(shift_lleft_self, 1)
|
WORD_COUNT(shift_lleft_self, 1)
|
||||||
WORD_COUNT(shift_lright, 1)
|
WORD_COUNT(shift_lright, 1)
|
||||||
|
|||||||
@@ -1,156 +0,0 @@
|
|||||||
#ifdef INTELLISENSE_DIRECTIVES
|
|
||||||
# include "duffle/gen/duffle.macs.h"
|
|
||||||
# include "duffle/gen/duffle.offsets.h"
|
|
||||||
# include "duffle/atom_dsl.h"
|
|
||||||
# include "duffle/lottes_tape.h"
|
|
||||||
# include "duffle/word_count.metadata.h"
|
|
||||||
# include "gen/gte_hello.offsets.h"
|
|
||||||
# include "hello_gte.h"
|
|
||||||
#endif
|
|
||||||
|
|
||||||
#pragma region MACs (Mips Atom components)
|
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
#pragma endregion MACs
|
|
||||||
|
|
||||||
#pragma region Baked Atoms
|
|
||||||
|
|
||||||
typedef Struct_(Binds_CubeTri) {
|
|
||||||
U4 PrimCursor;
|
|
||||||
V4_S2* FaceCursor;
|
|
||||||
V3_S2* VertBase;
|
|
||||||
U4* OtBase;
|
|
||||||
};
|
|
||||||
internal MipsAtom_(rbind_cube_g4_face) atom_info(atom_bind(Binds_CubeTri), atom_phase(cube_g4)
|
|
||||||
, atom_reads(R_TapePtr)
|
|
||||||
, atom_writes(R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase)
|
|
||||||
){
|
|
||||||
/* Pop 4 arguments from the tape directly into the workspace registers */
|
|
||||||
load_word(R_PrimCursor, R_TapePtr, O_(Binds_CubeTri,PrimCursor)),
|
|
||||||
load_word(R_FaceCursor, R_TapePtr, O_(Binds_CubeTri,FaceCursor)),
|
|
||||||
load_word(R_VertBase, R_TapePtr, O_(Binds_CubeTri,VertBase)),
|
|
||||||
load_word(R_OtBase, R_TapePtr, O_(Binds_CubeTri,OtBase)),
|
|
||||||
add_ui_self( R_TapePtr, S_(Binds_CubeTri)),
|
|
||||||
mac_yield()
|
|
||||||
};
|
|
||||||
|
|
||||||
// cube_g4_face — Draw one cube face (Gouraud-shaded quad) via the GTE tape pipeline
|
|
||||||
internal
|
|
||||||
MipsAtom_(cube_g4_face) atom_info(atom_phase(cube_g4),
|
|
||||||
atom_reads( R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase),
|
|
||||||
atom_writes(R_PrimCursor, R_FaceCursor)
|
|
||||||
){
|
|
||||||
load_half_u(R_T0, R_FaceCursor, 0 * S_(S2)),
|
|
||||||
load_half_u(R_T1, R_FaceCursor, 1 * S_(S2)),
|
|
||||||
load_half_u(R_T2, R_FaceCursor, 2 * S_(S2)),
|
|
||||||
load_half_u(R_T3, R_FaceCursor, 3 * S_(S2)),
|
|
||||||
|
|
||||||
mac_gte_load_tri_verts(R_T0, R_T1, R_T2),
|
|
||||||
nop2, gte_cmdw_rotate_translate_perspective_triple,
|
|
||||||
nop2, gte_cmdw_nclip,
|
|
||||||
|
|
||||||
nop2, gte_mv_from_data_r(R_T0, C2_MAC0),
|
|
||||||
nop,
|
|
||||||
branch_le_zero(R_T0, atom_offset(cull, cube_g4_face_exit)), nop,
|
|
||||||
|
|
||||||
store_word(R_0, R_PrimCursor, O_(Poly_G4, tag)),
|
|
||||||
mac_format_g4_color(
|
|
||||||
/* c0 magenta */ 0xFF, 0x00, 0xFF,
|
|
||||||
/* c1 yellow */ 0xFF, 0xFF, 0x00,
|
|
||||||
/* c2 cyan */ 0x00, 0xFF, 0xFF,
|
|
||||||
/* c3 green */ 0x00, 0xFF, 0x00),
|
|
||||||
mac_gte_store_g4_p012_post_rtpt_pre_rtps(),
|
|
||||||
|
|
||||||
shift_lleft(R_AT, R_T3, v3s2_byteoff), add_u(R_AT, R_AT, R_VertBase),
|
|
||||||
load_word(R_V0, R_AT, O_(V3_S2, x)), load_word(R_V1, R_AT, O_(V3_S2, z)),
|
|
||||||
gte_mv_to_data_r(R_V0, C2_VXY0), gte_mv_to_data_r(R_V1, C2_VZ0),
|
|
||||||
|
|
||||||
nop2, gte_cmdw_rotate_translate_perspective_single,
|
|
||||||
mac_gte_store_g4_p3_post_rtps(),
|
|
||||||
|
|
||||||
nop2, gte_cmdw_avg_sort_z4,
|
|
||||||
nop2, gte_mv_from_data_r(R_T1, C2_OTZ),
|
|
||||||
|
|
||||||
add_ui( R_AT, R_0, OrderingTbl_Len),
|
|
||||||
set_lt_u( R_AT, R_T1, R_AT),
|
|
||||||
branch_equal(R_AT, R_0, atom_offset(bounds_chk, cube_g4_face_exit)), nop,
|
|
||||||
mac_insert_ot_tag_g4(),
|
|
||||||
|
|
||||||
atom_label(cube_g4_face_exit)
|
|
||||||
add_ui_self(R_PrimCursor, S_(Poly_G4)), /* 9 words = Poly_G4 */
|
|
||||||
add_ui_self(R_FaceCursor, S_(S2) * 4), /* 4 × S2 = 8 bytes */
|
|
||||||
mac_yield()
|
|
||||||
};
|
|
||||||
|
|
||||||
typedef Struct_(Binds_FloorTri) {
|
|
||||||
U4 PrimCursor;
|
|
||||||
V3_S2* FaceCursor;
|
|
||||||
V3_S2* VertBase;
|
|
||||||
U4* OtBase;
|
|
||||||
};
|
|
||||||
internal
|
|
||||||
MipsAtom_(rbind_floor_f3_face) atom_info(atom_bind(Binds_FloorTri), atom_phase(floor_f3)
|
|
||||||
, atom_reads(R_TapePtr)
|
|
||||||
, atom_writes(R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase)
|
|
||||||
){
|
|
||||||
/* Pop 4 arguments from the tape directly into the workspace registers */
|
|
||||||
load_word(R_PrimCursor, R_TapePtr, O_(Binds_FloorTri,PrimCursor)),
|
|
||||||
load_word(R_FaceCursor, R_TapePtr, O_(Binds_FloorTri,FaceCursor)),
|
|
||||||
load_word(R_VertBase, R_TapePtr, O_(Binds_FloorTri,VertBase)),
|
|
||||||
load_word(R_OtBase, R_TapePtr, O_(Binds_FloorTri,OtBase)),
|
|
||||||
add_ui_self( R_TapePtr, S_(Binds_FloorTri)),
|
|
||||||
mac_yield()
|
|
||||||
};
|
|
||||||
|
|
||||||
atom_dbg_skip
|
|
||||||
internal
|
|
||||||
MipsAtom_(floor_f3_face) atom_info(atom_phase(floor_f3)
|
|
||||||
, atom_reads( R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase)
|
|
||||||
, atom_writes(R_PrimCursor, R_FaceCursr)
|
|
||||||
) {
|
|
||||||
mac_load_tri_indices( R_T0, R_T1, R_T2),
|
|
||||||
mac_gte_load_tri_verts(R_T0, R_T1, R_T2),
|
|
||||||
nop2, gte_cmdw_rotate_translate_perspective_triple, // 2 nops retire the final cpu -> gte writes before RTPT
|
|
||||||
gte_cmdw_nclip,
|
|
||||||
|
|
||||||
/* Culling (Branch forward if Backface) */
|
|
||||||
gte_mv_from_data_r(R_T0, C2_MAC0),
|
|
||||||
nop, branch_le_zero(R_T0, atom_offset(culling, floor_f3_face_exit)), nop, // required gte -> cpu load-delay slot.
|
|
||||||
/* Format Primitive */
|
|
||||||
mac_format_f3_color(0xFF, 0xFF, 0xFF), // RGB-form (R=FF, G=FF, B=FF = white)
|
|
||||||
mac_gte_store_f3_post_rtpt(),
|
|
||||||
|
|
||||||
/* Calculate Depth */
|
|
||||||
gte_avg_sort_z3,
|
|
||||||
gte_mv_from_data_r(R_T1, C2_OTZ),
|
|
||||||
/* Bounds Check OTZ < 2048 (Branch forward to skip insertion) */
|
|
||||||
add_ui( R_AT, R_0, OrderingTbl_Len),
|
|
||||||
set_lt_u( R_AT, R_T1, R_AT),
|
|
||||||
branch_equal(R_AT, R_0, atom_offset(bounds_chk, floor_f3_face_exit)), nop,
|
|
||||||
/* Insert into Ordering Table Linked List */
|
|
||||||
mac_insert_ot_tag_f3(),
|
|
||||||
add_ui_self(R_PrimCursor, S_(Poly_F3)), /* Advance Prim Cursor (5 words) */
|
|
||||||
// Note(Ed): No bounds checking, should be checked before atom runs.
|
|
||||||
|
|
||||||
/* Advance Input Cursor & Yield (Both branch targets land here) */
|
|
||||||
atom_label(floor_f3_face_exit)
|
|
||||||
add_ui_self(R_FaceCursor, S_(S2) * 4), /* Advance Face Cursor (4 * S2 = 8 bytes) */
|
|
||||||
mac_yield()
|
|
||||||
};
|
|
||||||
|
|
||||||
typedef Struct_(Binds_SyncPrimitiveArena) { U4 used; U4 cursor; };
|
|
||||||
internal MipsAtom_(sync_primitive_arena) atom_info(atom_bind(Binds_SyncPrimitiveArena)
|
|
||||||
, atom_reads( R_TapePtr, R_PrimCursor)
|
|
||||||
, atom_writes(R_TapePtr)
|
|
||||||
){
|
|
||||||
load_word(R_AT, R_TapePtr, O_(Binds_SyncPrimitiveArena,used)),
|
|
||||||
load_word(R_T0, R_TapePtr, O_(Binds_SyncPrimitiveArena,cursor)),
|
|
||||||
add_ui_self( R_TapePtr, S_(Binds_SyncPrimitiveArena)),
|
|
||||||
/* Calculate byte offset and store directly back to RAM */
|
|
||||||
sub_u( R_T0, R_PrimCursor, R_T0), // R_T0 = R_PrimCursor - binds.cursor
|
|
||||||
store_word(R_T0, R_AT, 0), // R_AT[0] = R_T0
|
|
||||||
mac_yield()
|
|
||||||
};
|
|
||||||
|
|
||||||
#pragma endregion Baked Atoms
|
|
||||||
@@ -0,0 +1,41 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
#pragma once
|
||||||
|
#endif
|
||||||
|
// Auto-generated by ps1_meta.lua — DO NOT EDIT
|
||||||
|
// Directory: C:\projects\Pikuma\ps1\code\hello_camera/
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_camera\hello_camera.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_camera\hello_camera.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_camera\hello_camera.atom.c
|
||||||
|
// Component atoms (MipsAtomComp_(ac_*)) -> macro variants (mac_*)
|
||||||
|
|
||||||
|
#ifndef WORD_COUNT
|
||||||
|
#define WORD_COUNT(name, count) enum { words_##name = (count) };
|
||||||
|
#endif
|
||||||
|
|
||||||
|
#define mac_put_disp_env(reg_transfer, reg_base, port) \
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_top_left_origin, reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_set_mask_bit(), reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_draw_area_top_left_origin, reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port)
|
||||||
|
WORD_COUNT(mac_put_disp_env, 5)
|
||||||
|
|
||||||
|
#define mac_put_draw_env(reg_transfer, reg_base, port) \
|
||||||
|
mac_gcmd_push(gp0_dr_env_tag, reg_transfer, reg_base, port) /* tag (length=15 << 24, addr=0) — packet header for the DR_ENV sequence. The GPU needs this to recognize the next 15 words as a DR_ENV packet and trigger the isbg auto-clear. */ \
|
||||||
|
, mac_gcmd_push(gp0_word_draw_mode_drawing_allowed, reg_transfer, reg_base, port) /* code[0] DrawMode (dfe=1, dtd=0, tpage=0) */ \
|
||||||
|
, mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port) /* code[1] TextureWindow (tw=(0,0)) */ \
|
||||||
|
, mac_gcmd_push(enc_gp0_draw_area_tl_word(0, ScreenRes_Y), reg_transfer, reg_base, port) /* code[2] DrawArea top-left (clip.x=0, clip.y=ScreenRes_Y=240) */ \
|
||||||
|
, mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port) /* code[3] DrawArea bottom-right (clip.x+w=320, clip.y+h=480) */ \
|
||||||
|
, mac_gcmd_push(gp0_word_set_draw_offset(), reg_transfer, reg_base, port) /* code[4] DrawOffset (ofs=(0,0)) — bare-cmd word; the GPU uses the current state machine. */ \
|
||||||
|
, mac_gcmd_push(gp0_word_dr_env_mask(), reg_transfer, reg_base, port) /* code[5] Mask (dtd=0, dfe=1, isbg=1) — 0xE6 cmd + isbg bit. */ \
|
||||||
|
, mac_gcmd_push(gp0_word_dr_env_bg_color_cmd(1, 7, 7, 7), reg_transfer, reg_base, port) /* code[6] Initial-bg-color + auto-clear (isbg=1, r=7, g=7, b=7). */ \
|
||||||
|
, mac_gcmd_push(gp0_word_dr_env_draw_mode(1), reg_transfer, reg_base, port) /* code[7] Re-assert DrawMode with isbg=1 (isbg-flag set; the 0xE1 cmd byte plus isbg only). */ /* code[8..10] Padding (NOP — GPU discards; the DR_ENV requires 16 words total). */ \
|
||||||
|
, mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port) /* code[11..12] TextureWindow bottom-right (tw.x+tw.w=0, tw.y+tw.h=0) — libpsyx emits twice. */ \
|
||||||
|
, mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port) /* code[13..14] Padding (NOP) — completes the 16-word packet. */ \
|
||||||
|
, mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port)
|
||||||
|
WORD_COUNT(mac_put_draw_env, 16)
|
||||||
|
|
||||||
@@ -0,0 +1,50 @@
|
|||||||
|
// Auto-generated by ps1_meta.lua (passes/offsets.lua) — DO NOT EDIT
|
||||||
|
// Directory: C:\projects\Pikuma\ps1\code\hello_camera\
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_camera\hello_camera.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_camera\hello_camera.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_camera\hello_camera.atom.c
|
||||||
|
#pragma once
|
||||||
|
|
||||||
|
#pragma region hello_camera
|
||||||
|
|
||||||
|
|
||||||
|
// --- atom: pad_apply_input (60 words) ---
|
||||||
|
|
||||||
|
#define _atom_offset_dpad_left_exit_dpad_left 6
|
||||||
|
#define _atom_offset_dpad_right_exit_dpad_right 6
|
||||||
|
#define _atom_offset_dead_zone_low_check_dead_low_active 8
|
||||||
|
#define _atom_offset_dead_zone_high_check_dead_high_active 15
|
||||||
|
#define _atom_offset_dead_zone_skip_exit_stick 24
|
||||||
|
#define _atom_offset_end_low_exit_stick 12
|
||||||
|
|
||||||
|
enum {
|
||||||
|
atom_offset_dpad_left_exit_dpad_left = _atom_offset_dpad_left_exit_dpad_left,
|
||||||
|
atom_offset_dpad_right_exit_dpad_right = _atom_offset_dpad_right_exit_dpad_right,
|
||||||
|
atom_offset_dead_zone_low_check_dead_low_active = _atom_offset_dead_zone_low_check_dead_low_active,
|
||||||
|
atom_offset_dead_zone_high_check_dead_high_active = _atom_offset_dead_zone_high_check_dead_high_active,
|
||||||
|
atom_offset_dead_zone_skip_exit_stick = _atom_offset_dead_zone_skip_exit_stick,
|
||||||
|
atom_offset_end_low_exit_stick = _atom_offset_end_low_exit_stick,
|
||||||
|
};
|
||||||
|
|
||||||
|
// --- atom: cube_g4_face (76 words) ---
|
||||||
|
|
||||||
|
#define _atom_offset_cull_cube_g4_face_exit 41
|
||||||
|
#define _atom_offset_bounds_chk_cube_g4_face_exit 24
|
||||||
|
|
||||||
|
enum {
|
||||||
|
atom_offset_cull_cube_g4_face_exit = _atom_offset_cull_cube_g4_face_exit,
|
||||||
|
atom_offset_bounds_chk_cube_g4_face_exit = _atom_offset_bounds_chk_cube_g4_face_exit,
|
||||||
|
};
|
||||||
|
|
||||||
|
// --- atom: floor_f3_face (58 words) ---
|
||||||
|
|
||||||
|
#define _atom_offset_culling_floor_f3_face_exit 25
|
||||||
|
#define _atom_offset_bounds_chk_floor_f3_face_exit 16
|
||||||
|
|
||||||
|
enum {
|
||||||
|
atom_offset_culling_floor_f3_face_exit = _atom_offset_culling_floor_f3_face_exit,
|
||||||
|
atom_offset_bounds_chk_floor_f3_face_exit = _atom_offset_bounds_chk_floor_f3_face_exit,
|
||||||
|
};
|
||||||
|
|
||||||
|
#pragma endregion hello_camera
|
||||||
|
|
||||||
@@ -0,0 +1,468 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# pragma once
|
||||||
|
# include "duffle/gen/macs.h"
|
||||||
|
# include "duffle/gen/offsets.h"
|
||||||
|
# include "duffle/dsl.atom.h"
|
||||||
|
# include "duffle/lottes_tape.h"
|
||||||
|
# include "duffle/mips.h"
|
||||||
|
# include "duffle/gte.h"
|
||||||
|
# include "duffle/gp.h"
|
||||||
|
# include "duffle/pad.h"
|
||||||
|
# include "duffle/word_count.metadata.h"
|
||||||
|
# include "duffle/psyq.h"
|
||||||
|
# include "duffle/math.atom.c"
|
||||||
|
# include "duffle/mips.atom.c"
|
||||||
|
# include "duffle/gte.atom.c"
|
||||||
|
# include "duffle/gp.atom.c"
|
||||||
|
# include "duffle/psyq.atom.c"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
# include "gen/macs.h"
|
||||||
|
# include "hello_camera.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
ATOM_FILE_DEBUGGER_LINE_MARKER(hello_joypad_atom_c);
|
||||||
|
|
||||||
|
#pragma region MACs (Mips Atom components)
|
||||||
|
|
||||||
|
FI_ Slice_MipsCode ac_put_disp_env(U4 reg_transfer, U4 reg_base, U2 port)
|
||||||
|
MipsAtomComp_Proc_(ac_put_disp_env, {
|
||||||
|
// Emits 5 GP0 commands for buffer 0 (display_area = (0,0,320,240)).
|
||||||
|
// Sequence per libpsyx PutDispEnv: DrawArea TL → DrawArea BR → Mask → DrawArea TL → DrawArea BR
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_top_left_origin, reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_set_mask_bit(), reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_top_left_origin, reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port),
|
||||||
|
})
|
||||||
|
|
||||||
|
FI_ Slice_MipsCode ac_put_draw_env(U4 reg_transfer, U4 reg_base, U2 port)
|
||||||
|
MipsAtomComp_Proc_(ac_put_draw_env, {
|
||||||
|
/*
|
||||||
|
* ORIGIN: each code word corresponds to the EXACT value libpsyx's PutDrawEnv function would compute for the same DrawEnv settings.
|
||||||
|
* References:
|
||||||
|
* - libpsyx source: `toolchain/psyq-4_7/lib/libgpu.a` (binary, function `PutDrawEnv`)
|
||||||
|
* - PSX-SPX doc: https://problemkaputt.de/psx-spx.htm#gputdrawingcommands
|
||||||
|
* - PSYQ SDK: `setdrawenv` / `makelongdr_env` source
|
||||||
|
* - NOCASH PSX spec: §"GP0(E1h) Draw Mode setting" through §"DR_ENV"
|
||||||
|
*
|
||||||
|
* The 16-word format is documented in the PSYQ SDK manual and on NOCASH's PSX-spec.txt. The libpsyx reference is at:
|
||||||
|
* ./toolchain/psyq-4_7/lib/libgpu.a
|
||||||
|
* (binary; the PutDrawEnv implementation builds the 16-word DR_ENV from the user's DRAWENV struct and emits it via GP0 GPU commands.)
|
||||||
|
*
|
||||||
|
* Word indices (libpsyx PutDrawEnv / SetDrawEnv order):
|
||||||
|
* tag = (length << 24) | addr — 16-word packet (1 tag + 15 code)
|
||||||
|
* code[0] = DrawMode (dfe=1, dtd=0, tpage=0) — must come first per libpsyx
|
||||||
|
* code[1] = TextureWindow (tw=(0,0)) — bare-cmd word; GPU uses current state
|
||||||
|
* code[2] = DrawArea top-left (clip.x=0, clip.y=240)
|
||||||
|
* code[3] = DrawArea bottom-right (clip.x+w=320, clip.y+h=480)
|
||||||
|
* code[4] = DrawOffset (ofs=(0,0)) — bare-cmd word
|
||||||
|
* code[5] = Mask (dtd=0, dfe=1, isbg=1) — 0xE6 cmd + isbg bit
|
||||||
|
* code[6] = Initial-bg-color (isbg=1, r=7, g=7, b=7)
|
||||||
|
* code[7] = DrawMode (isbg=1, tpage=0) — re-asserts DrawMode with isbg
|
||||||
|
* code[8..10] = padding (NOP) — 3 words to fill the packet
|
||||||
|
* code[11..12] = TextureWindow bottom-right — defaults to (0,0,0,0)
|
||||||
|
* code[13..14] = padding (NOP) — completes the 16-word packet
|
||||||
|
*/
|
||||||
|
mac_gcmd_push(gp0_dr_env_tag, reg_transfer, reg_base, port), /* tag (length=15 << 24, addr=0) — packet header for the DR_ENV sequence. The GPU needs this to recognize the next 15 words as a DR_ENV packet and trigger the isbg auto-clear. */
|
||||||
|
mac_gcmd_push(gp0_word_draw_mode_drawing_allowed, reg_transfer, reg_base, port), /* code[0] DrawMode (dfe=1, dtd=0, tpage=0) */
|
||||||
|
mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port), /* code[1] TextureWindow (tw=(0,0)) */
|
||||||
|
mac_gcmd_push(enc_gp0_draw_area_tl_word(0, ScreenRes_Y), reg_transfer, reg_base, port), /* code[2] DrawArea top-left (clip.x=0, clip.y=ScreenRes_Y=240) */
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port), /* code[3] DrawArea bottom-right (clip.x+w=320, clip.y+h=480) */
|
||||||
|
|
||||||
|
mac_gcmd_push(gp0_word_set_draw_offset(), reg_transfer, reg_base, port), /* code[4] DrawOffset (ofs=(0,0)) — bare-cmd word; the GPU uses the current state machine. */
|
||||||
|
mac_gcmd_push(gp0_word_dr_env_mask(), reg_transfer, reg_base, port), /* code[5] Mask (dtd=0, dfe=1, isbg=1) — 0xE6 cmd + isbg bit. */
|
||||||
|
mac_gcmd_push(gp0_word_dr_env_bg_color_cmd(1, 7, 7, 7), reg_transfer, reg_base, port), /* code[6] Initial-bg-color + auto-clear (isbg=1, r=7, g=7, b=7). */
|
||||||
|
mac_gcmd_push(gp0_word_dr_env_draw_mode(1), reg_transfer, reg_base, port), /* code[7] Re-assert DrawMode with isbg=1 (isbg-flag set; the 0xE1 cmd byte plus isbg only). */
|
||||||
|
|
||||||
|
/* code[8..10] Padding (NOP — GPU discards; the DR_ENV requires 16 words total). */
|
||||||
|
mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port),
|
||||||
|
|
||||||
|
/* code[11..12] TextureWindow bottom-right (tw.x+tw.w=0, tw.y+tw.h=0) — libpsyx emits twice. */
|
||||||
|
mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port),
|
||||||
|
|
||||||
|
/* code[13..14] Padding (NOP) — completes the 16-word packet. */
|
||||||
|
mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port),
|
||||||
|
})
|
||||||
|
|
||||||
|
#pragma endregion MACs
|
||||||
|
|
||||||
|
#pragma region Baked Atoms
|
||||||
|
|
||||||
|
enum {
|
||||||
|
R_ScreenX = R_T5 atom_reg atom_type(U2),
|
||||||
|
R_ScreenY = R_T6 atom_reg atom_type(U2),
|
||||||
|
R_ScreenBuf = R_T7 atom_reg, /* Caller-pinned: & smem.screen_buf */
|
||||||
|
#define R_ScreenBuf_Code R_T7_Code
|
||||||
|
};
|
||||||
|
//screen_env_init. Mirrors the libpsyx's SetDefDispEnv + SetDefDrawEnv + the manual enable_auto_clear / initial_bg_color writes.
|
||||||
|
internal MipsAtom_(screen_env_init) atom_info(atom_phase(screen_init)
|
||||||
|
, atom_reads(R_T0, R_ScreenX, R_ScreenY, R_ScreenBuf)
|
||||||
|
, atom_writes(R_T0, R_ScreenX, R_ScreenY)
|
||||||
|
) {
|
||||||
|
/* display[0] = (0, 0, 320, 240); rest of struct zeroed. */
|
||||||
|
add_ui(R_ScreenX, R_0, ScreenRes_X), add_ui(R_ScreenY, R_0, ScreenRes_Y),
|
||||||
|
mac_store_v2s2(R_ScreenX, R_ScreenY, R_ScreenBuf, O_(DisplayEnv,display_area.width) + OA_(DoubleBuffer,display,0)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DisplayEnv,display_area) + OA_(DoubleBuffer,display,0)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DisplayEnv,screen) + OA_(DoubleBuffer,display,0)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DisplayEnv,vinterlace) + OA_(DoubleBuffer,display,0)),
|
||||||
|
|
||||||
|
/* display[1] = (0, 240, 320, 240); rest of struct zeroed. */
|
||||||
|
mac_store_rects2(R_0, R_ScreenY, R_ScreenX, R_ScreenY, R_ScreenBuf, O_(DisplayEnv,display_area) + OA_(DoubleBuffer,display,1)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DisplayEnv,screen) + OA_(DoubleBuffer,display,1)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DisplayEnv,vinterlace) + OA_(DoubleBuffer,display,1)),
|
||||||
|
|
||||||
|
mac_store_rects2(R_0, R_ScreenY, R_ScreenX, R_ScreenY, R_ScreenBuf, O_(DrawEnv,clip_area) + OA_(DoubleBuffer,draw,0)), /* draw[0].clip_area = (0, 240, 320, 240). C11's SetDefDrawEnv writes clip.y = y_arg. */
|
||||||
|
mac_store_v2s2( R_0, R_ScreenY, R_ScreenBuf, O_(DrawEnv,drawing_offset[0]) + OA_(DoubleBuffer,draw,0)), /* draw[0].drawing_offset[0] = (0, 240); C11 passes y_arg as ofs. */
|
||||||
|
|
||||||
|
mac_store_v2s2(R_ScreenX, R_ScreenY, R_ScreenBuf, O_(DrawEnv,clip_area.width) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
|
||||||
|
/* draw[0].texture_window = (0, 0, 0, 0); two word-zeroes cover the full 8-byte tw field. */
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DrawEnv,texture_window.x) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DrawEnv,texture_window.width) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DrawEnv,drawing_offset[0].x) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DrawEnv,texture_window.x) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DrawEnv,texture_window.width) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
|
||||||
|
/* draw[0].texture_page = 10 (gp0_tpage_default). C11 SetDefDrawEnv at C11_only.elf:0x8001273C writes the same 0x0A. . */
|
||||||
|
add_ui(R_T0, R_0, gp0_tpage_default),
|
||||||
|
store_half(R_T0, R_ScreenBuf, O_(DrawEnv,texture_page) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
store_half(R_T0, R_ScreenBuf, O_(DrawEnv,texture_page) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
|
||||||
|
/* draw[0] control bytes: flag_dither=1, flag_draw_on_display=1 (the dfe bit per psx-spx; libpsyx sets it via `SetDefDrawEnv`'s conditional at C11_only.elf:0x80012728), enable_auto_clear=1. Each byte is named;
|
||||||
|
* the previous `store_word(R_0, ..., +20)` overwrote all four with zero. */
|
||||||
|
add_ui(R_T0, R_0, 1),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,flag_dither) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,flag_draw_on_display) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,enable_auto_clear) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,flag_dither) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,flag_draw_on_display) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,enable_auto_clear) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
|
||||||
|
/* draw[0].initial_bg_color = (r=7, g=7, b=7). */
|
||||||
|
add_ui(R_T0, R_0, 7),
|
||||||
|
mac_store_rgb8(R_T0,R_T0,R_T0, R_ScreenBuf, O_(DrawEnv,initial_bg_color) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
mac_store_rgb8(R_T0,R_T0,R_T0, R_ScreenBuf, O_(DrawEnv,initial_bg_color) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
|
||||||
|
mac_yield(),
|
||||||
|
};
|
||||||
|
|
||||||
|
enum {
|
||||||
|
R_IO_BaseAddr = R_T4 atom_reg, /* Caller-pinned: IO_BASE_ADDR = 0x1F800000 */
|
||||||
|
#define R_IO_BaseAddr_Code R_T4_Code
|
||||||
|
};
|
||||||
|
internal MipsAtom_(gp_screen_init) atom_info(atom_phase(screen_init), atom_reads(R_IO_BaseAddr)) {
|
||||||
|
store_word(R_0, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(00h) Reset */
|
||||||
|
mac_gcmd_push(gp1_word_ResetCmdBuffer(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(01h) ClearFIFO */
|
||||||
|
mac_gcmd_push(gp1_word_AcknowledgeIRQ(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(02h) AckIRQ */
|
||||||
|
mac_gcmd_push(gp1_word_DisplayOn(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(03h) Display ON */
|
||||||
|
mac_gcmd_push(gp1_word_dma_to_gpu(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(04h) DMADirection=2 (CPU→GPU). libpsyx's per-frame PutDrawEnv/DrawOTag use DMA2; without this the DMA queue never drains. */
|
||||||
|
mac_gcmd_push(gp1_word_StartDisplayArea(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(05h) StartDisplayArea (X=0, Y=0) */
|
||||||
|
|
||||||
|
/* GP1: DisplayMode + Display Ranges */
|
||||||
|
mac_gcmd_push(gp1_word_display_mode_320x240_15bit_ntsc, R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET),
|
||||||
|
mac_gcmd_push(gp1_word_horizontal_range_ntsc, R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET),
|
||||||
|
mac_gcmd_push(gp1_word_vertical_range_ntsc, R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET),
|
||||||
|
|
||||||
|
/* GTE: SetGeomOffset (OFX, OFY) — ScreenRes_CenterX, ScreenRes_CenterY. */
|
||||||
|
load_upper_i(R_T5, ScreenRes_CenterX), gte_mv_to_ctrl_r(R_T5, gte_cr_OFX_Code),
|
||||||
|
load_upper_i(R_T5, ScreenRes_CenterY), gte_mv_to_ctrl_r(R_T5, gte_cr_OFY_Code),
|
||||||
|
|
||||||
|
/* GTE: SetGeomScreen (H) — CR26 (per PSX-SPX / libpsyx), value is the raw projection-plane distance, NOT shifted. */
|
||||||
|
add_ui(R_T5, R_0, ScreenZ), gte_mv_to_ctrl_r(R_T5, gte_cr_H_Code),
|
||||||
|
|
||||||
|
/* GP1: DisplayEnable — bit 0 = 0 (Display ON). */
|
||||||
|
mac_gcmd_push(gp1_word_DisplayOn(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET),
|
||||||
|
mac_yield(),
|
||||||
|
};
|
||||||
|
|
||||||
|
/* ----- pad_apply_input -----
|
||||||
|
* Reads pad[0].buttons + pad[0].left_x;
|
||||||
|
* Applies the input-semantics deltas to cube_rot.y + floor_rot.y:
|
||||||
|
* - D-pad Left: cube_rot.y += 30, floor_rot.y += 5
|
||||||
|
* - D-pad Right: cube_rot.y -= 30, floor_rot.y -= 5
|
||||||
|
* - Analog stick X (dead zone 0x70..0x90):
|
||||||
|
* cube delta = (0x80 - left_x) >> 2 (range approx -32..+32)
|
||||||
|
* floor delta = (0x80 - left_x) >> 5 (range approx -4..+4)
|
||||||
|
* - D-pad + analog deltas add when used together.
|
||||||
|
*
|
||||||
|
* Convention:
|
||||||
|
* pad_state = 0 means no buttons active.
|
||||||
|
* The fail-safe zero-button value flows through unchanged, so a disconnected/fresh pad produces no rotation.
|
||||||
|
* The branch_le_zero pattern below matches the existing pad_input_demo convention (atom body lines 248/257).
|
||||||
|
*
|
||||||
|
* Signed-delta trick:
|
||||||
|
* load_byte_u zero-extends left_x to 32 bits; sub_u from 0x80 wraps to a SIGNED two's-complement value in the negative range;
|
||||||
|
* shift_aright (sra) then correctly sign-extends the shift for both positive (left_x < 0x80) and negative (left_x > 0x80) cases.
|
||||||
|
* Digital pads publish left_x = 0x80 → delta = 0 → no rotation, so the analog step is naturally a no-op for digital controllers.
|
||||||
|
*/
|
||||||
|
typedef Struct_(Binds_PadApplyInput) {
|
||||||
|
PadState* state;
|
||||||
|
V3_S2* cube_rot;
|
||||||
|
V3_S2* floor_rot;
|
||||||
|
};
|
||||||
|
enum {
|
||||||
|
R_PadStateT5 = R_T5 atom_reg,
|
||||||
|
R_CubeRot = R_T1 atom_reg,
|
||||||
|
R_FloorRot = R_T2 atom_reg,
|
||||||
|
};
|
||||||
|
internal MipsAtom_(pad_apply_input) atom_info(atom_bind(Binds_PadApplyInput)
|
||||||
|
, atom_reads(R_T0, R_CubeRot, R_FloorRot, R_T3, R_T4, R_PadStateT5, R_TapePtr)
|
||||||
|
, atom_writes( R_CubeRot, R_FloorRot)
|
||||||
|
) {
|
||||||
|
/* Pop Binds from tape (state, cube_rot, floor_rot) */
|
||||||
|
load_word(R_PadStateT5, R_TapePtr, O_(Binds_PadApplyInput,state)),
|
||||||
|
load_word(R_CubeRot, R_TapePtr, O_(Binds_PadApplyInput,cube_rot)),
|
||||||
|
load_word(R_FloorRot, R_TapePtr, O_(Binds_PadApplyInput,floor_rot)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_PadApplyInput)),
|
||||||
|
|
||||||
|
/* Load pad[0].buttons into R_T0. */
|
||||||
|
load_word(R_T0, R_PadStateT5, O_(PadState,buttons)), nop,
|
||||||
|
// Note(Ed): Potential op with delay slot?
|
||||||
|
|
||||||
|
/* D-pad Left: cube_rot.y += 30, floor_rot.y += 5. */
|
||||||
|
and_i(R_T3, R_T0, pad0_(Pad_Left)), branch_le_zero(R_T3, atom_offset(dpad_left, exit_dpad_left)),
|
||||||
|
load_half( R_T4, R_CubeRot, O_(V3_S2,y)), /* BD-slot */
|
||||||
|
load_half( R_T3, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
add_si( R_T4, R_T4, 30),
|
||||||
|
add_si( R_T3, R_T3, 5),
|
||||||
|
store_half(R_T4, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
store_half(R_T3, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
atom_label(exit_dpad_left)
|
||||||
|
|
||||||
|
/* D-pad Right: cube_rot.y -= 30, floor_rot.y -= 5. */
|
||||||
|
and_i(R_T3, R_T0, pad0_(Pad_Right)), branch_le_zero(R_T3, atom_offset(dpad_right, exit_dpad_right)),
|
||||||
|
load_half( R_T4, R_CubeRot, O_(V3_S2,y)), /* BD-slot */
|
||||||
|
load_half( R_T3, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
add_si( R_T4, R_T4, -30),
|
||||||
|
add_si( R_T3, R_T3, -5),
|
||||||
|
store_half(R_T4, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
store_half(R_T3, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
atom_label(exit_dpad_right)
|
||||||
|
|
||||||
|
/* Analog left-stick X: dead zone 0x70..0x90.
|
||||||
|
* Cube delta = (0x80 - left_x) >> 2; floor delta = (0x80 - left_x) >> 5. */
|
||||||
|
load_byte_u(R_T3, R_PadStateT5, O_(PadState,left_x)),
|
||||||
|
|
||||||
|
/* Dead-zone check: skip analog if left_x in [0x70, 0x90] inclusive. Outside dead zone on LOW side: left_x < 0x70 (strictly).
|
||||||
|
* set_lt_u(R_T4, R_T3, R_T4=0x70) → R_T4 = (left_x < 0x70) ? 1 : 0. */
|
||||||
|
add_ui(R_T4, R_0, 0x70), set_lt_u(R_T4, R_T3, R_T4), branch_ne(R_T4, R_0, atom_offset(dead_zone_low_check, dead_low_active)),
|
||||||
|
add_ui(R_T4, R_0, 0x80), /* BD-slot: pre-load 0x80 for dead_low_active */
|
||||||
|
|
||||||
|
atom_label(dead_check_upper)
|
||||||
|
/* left_x >= 0x70 → check upper bound. */
|
||||||
|
load_byte_u(R_T3, R_PadStateT5, O_(PadState,left_x)), /* reload */
|
||||||
|
add_ui( R_T4, R_0, 0x90),
|
||||||
|
|
||||||
|
/* R_T4 = (0x90 < left_x) ? 1 : 0 → (left_x > 0x90) ? 1 : 0 */
|
||||||
|
set_lt_u(R_T4, R_T4, R_T3), branch_ne(R_T4, R_0, atom_offset(dead_zone_high_check, dead_high_active)),
|
||||||
|
add_ui( R_T4, R_0, 0x80), /* BD-slot: pre-load 0x80 for dead_high_active */
|
||||||
|
jump_rel(atom_offset(dead_zone_skip, exit_stick)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(dead_low_active)
|
||||||
|
/* R_T3 = left_x (from line 632 lbu; not clobbered between dead_zone_low_check branch + its BD-slot `add_ui R_T4, 0x80`).
|
||||||
|
* The earlier `load_byte_u(R_T3, ...)` reload was redundant and introduced a load-use hazard on the next `sub_u`.
|
||||||
|
* R_T4 = 0x80 from the BD-slot of `dead_zone_low_check`'s branch_ne. */
|
||||||
|
sub_u( R_T3, R_T4, R_T3), /* R_T3 = 0x80 - left_x */
|
||||||
|
/* delta = 0x80 - left_x (positive). */
|
||||||
|
|
||||||
|
/* R_T4 = cube_delta */
|
||||||
|
shift_aright(R_T4, R_T3, 2),
|
||||||
|
load_half( R_T0, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
nop,
|
||||||
|
add_u( R_T0, R_T0, R_T4),
|
||||||
|
store_half( R_T0, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
/* R_T4 = floor_delta — moved into the load-delay slot of the floor load below (fills the 1-instruction gap;
|
||||||
|
* doesn't read R_T0; R_T4 settles by the subsequent add_u). */
|
||||||
|
load_half( R_T0, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
shift_aright(R_T4, R_T3, 5),
|
||||||
|
add_u( R_T0, R_T0, R_T4),
|
||||||
|
store_half( R_T0, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
|
||||||
|
jump_rel(atom_offset(end_low, exit_stick)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(dead_high_active)
|
||||||
|
/* R_T3 = left_x (from line 641 lbu in dead_check_upper; not clobbered between dead_zone_high_check branch + its BD-slot `add_ui R_T4, 0x80`).
|
||||||
|
* The earlier `load_byte_u(R_T3, ...)` reload was redundant and introduced a load-use hazard on the next `sub_u`.
|
||||||
|
* R_T4 = 0x80 from the BD-slot of `dead_zone_high_check`'s branch_ne. */
|
||||||
|
sub_u( R_T3, R_T4, R_T3),
|
||||||
|
/* delta = 0x80 - left_x (signed negative). */
|
||||||
|
|
||||||
|
shift_aright(R_T4, R_T3, 2), /* R_T4 = cube_delta (signed) */
|
||||||
|
load_half( R_T0, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
nop,
|
||||||
|
add_u( R_T0, R_T0, R_T4),
|
||||||
|
store_half( R_T0, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
|
||||||
|
/* R_T4 = floor_delta (signed) — moved into the load-delay slot of the floor load below. */
|
||||||
|
load_half( R_T0, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
shift_aright(R_T4, R_T3, 5),
|
||||||
|
add_u( R_T0, R_T0, R_T4),
|
||||||
|
store_half( R_T0, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
|
||||||
|
atom_label(no_jump_fallthrough)
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(exit_stick)
|
||||||
|
/* NOT mac_yield() — R_AtomJmp was already loaded in the BD-slot of the dead-zone/exit branch. */
|
||||||
|
mac_yield_tail(),
|
||||||
|
};
|
||||||
|
|
||||||
|
enum {
|
||||||
|
R_PrimCursor = R_T7 atom_reg atom_type(U4*), /* VRAM output cursor (primitive buffer) */
|
||||||
|
R_FaceCursor = R_T4 atom_reg atom_type(V4_S2*), /* Cube face-index cursor (V4_S2*); floor context switches to V3_S2* via atom_phase */
|
||||||
|
R_VertBase = R_T5 atom_reg atom_type(V3_S2*), /* Base address of the vertex array */
|
||||||
|
R_OtBase = R_T6 atom_reg atom_type(U4*), /* Base address of the Ordering Table */
|
||||||
|
#define R_PrimCursor_Code R_T7_Code
|
||||||
|
#define R_FaceCursor_Code R_T4_Code
|
||||||
|
#define R_VertBase_Code R_T5_Code
|
||||||
|
#define R_OtBase_Code R_T6_Code
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef Struct_(Binds_CubeTri) {
|
||||||
|
U4 PrimCursor;
|
||||||
|
V4_S2* FaceCursor;
|
||||||
|
V3_S2* VertBase;
|
||||||
|
U4* OtBase;
|
||||||
|
};
|
||||||
|
internal MipsAtom_(rbind_cube_g4_face) atom_info(atom_bind(Binds_CubeTri), atom_phase(cube_g4)
|
||||||
|
, atom_reads(R_TapePtr)
|
||||||
|
, atom_writes(R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase, R_TapePtr)
|
||||||
|
){
|
||||||
|
/* Pop 4 arguments from the tape directly into the workspace registers */
|
||||||
|
load_word(R_PrimCursor, R_TapePtr, O_(Binds_CubeTri,PrimCursor)),
|
||||||
|
load_word(R_FaceCursor, R_TapePtr, O_(Binds_CubeTri,FaceCursor)),
|
||||||
|
load_word(R_VertBase, R_TapePtr, O_(Binds_CubeTri,VertBase)),
|
||||||
|
load_word(R_OtBase, R_TapePtr, O_(Binds_CubeTri,OtBase)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_CubeTri)),
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
// cube_g4_face — Draw one cube face (Gouraud-shaded quad) via the GTE tape pipeline
|
||||||
|
internal
|
||||||
|
MipsAtom_(cube_g4_face) atom_info(atom_phase(cube_g4),
|
||||||
|
atom_reads( R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase),
|
||||||
|
atom_writes(R_PrimCursor, R_FaceCursor)
|
||||||
|
){
|
||||||
|
load_half_u(R_T0, R_FaceCursor, 0 * S_(S2)),
|
||||||
|
load_half_u(R_T1, R_FaceCursor, 1 * S_(S2)),
|
||||||
|
load_half_u(R_T2, R_FaceCursor, 2 * S_(S2)),
|
||||||
|
load_half_u(R_T3, R_FaceCursor, 3 * S_(S2)),
|
||||||
|
|
||||||
|
mac_gte_load_tri_verts(R_VertBase, R_T0, R_T1, R_T2),
|
||||||
|
nop2, gte_cmdw_rotate_translate_perspective_triple, // required cpu -> gte delay slot
|
||||||
|
gte_cmdw_nclip,
|
||||||
|
|
||||||
|
gte_mv_from_data_r(R_T0, C2_MAC0), nop,
|
||||||
|
branch_le_zero(R_T0, atom_offset(cull, cube_g4_face_exit)),
|
||||||
|
/* BD-slot: write the prim tag (R_0=0; overwrites the legacy tag word in the prim_buffer).
|
||||||
|
* If branch IS taken (face culled), the body is skipped and this 0-tag is stranded —
|
||||||
|
* harmless because the OT entry that points to this prim is created later, only on the body path. */
|
||||||
|
store_word(R_0, R_PrimCursor, O_(Poly_G4, tag)),
|
||||||
|
shift_lleft(R_AT, R_T3, v3s2_byteoff), add_u(R_AT, R_AT, R_VertBase),
|
||||||
|
load_word(R_V0, R_AT, O_(V3_S2, x)), load_word(R_V1, R_AT, O_(V3_S2, z)),
|
||||||
|
gte_mv_to_data_r(R_V0, C2_VXY0), gte_mv_to_data_r(R_V1, C2_VZ0),
|
||||||
|
|
||||||
|
mac_gte_store_g4_p012(R_PrimCursor),
|
||||||
|
gte_cmdw_rotate_translate_perspective_single,
|
||||||
|
mac_gte_store_g4_p3(R_PrimCursor),
|
||||||
|
|
||||||
|
gte_cmdw_avg_sort_z4,
|
||||||
|
gte_mv_from_data_r(R_T1, C2_OTZ),
|
||||||
|
add_ui( R_AT, R_0, OrderingTbl_Len),
|
||||||
|
set_lt_u( R_AT, R_T1, R_AT),
|
||||||
|
|
||||||
|
branch_equal(R_AT, R_0, atom_offset(bounds_chk, cube_g4_face_exit)), nop,
|
||||||
|
mac_insert_ot_tag_g4(R_OtBase, R_PrimCursor),
|
||||||
|
mac_format_g4_color(R_PrimCursor,
|
||||||
|
/* c0 magenta */ 0xFF, 0x00, 0xFF,
|
||||||
|
/* c1 yellow */ 0xFF, 0xFF, 0x00,
|
||||||
|
/* c2 cyan */ 0x00, 0xFF, 0xFF,
|
||||||
|
/* c3 green */ 0x00, 0xFF, 0x00),
|
||||||
|
// end: branch(bounds_chk)
|
||||||
|
// end: branch(cull)
|
||||||
|
|
||||||
|
atom_label(cube_g4_face_exit)
|
||||||
|
add_ui_self(R_PrimCursor, S_(Poly_G4)), /* 9 words = Poly_G4 */
|
||||||
|
add_ui_self(R_FaceCursor, S_(S2) * 4), /* 4 × S2 = 8 bytes */
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef Struct_(Binds_FloorTri) {
|
||||||
|
U4 PrimCursor;
|
||||||
|
V3_S2* FaceCursor;
|
||||||
|
V3_S2* VertBase;
|
||||||
|
U4* OtBase;
|
||||||
|
};
|
||||||
|
internal
|
||||||
|
MipsAtom_(rbind_floor_f3_face) atom_info(atom_bind(Binds_FloorTri), atom_phase(floor_f3)
|
||||||
|
, atom_reads(R_TapePtr)
|
||||||
|
, atom_writes(R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase, R_TapePtr)
|
||||||
|
){
|
||||||
|
/* Pop 4 arguments from the tape directly into the workspace registers */
|
||||||
|
load_word(R_PrimCursor, R_TapePtr, O_(Binds_FloorTri,PrimCursor)),
|
||||||
|
load_word(R_FaceCursor, R_TapePtr, O_(Binds_FloorTri,FaceCursor)),
|
||||||
|
load_word(R_VertBase, R_TapePtr, O_(Binds_FloorTri,VertBase)),
|
||||||
|
load_word(R_OtBase, R_TapePtr, O_(Binds_FloorTri,OtBase)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_FloorTri)),
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
// atom_dbg_skip
|
||||||
|
internal
|
||||||
|
MipsAtom_(floor_f3_face) atom_info(atom_phase(floor_f3)
|
||||||
|
, atom_reads( R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase)
|
||||||
|
, atom_writes(R_PrimCursor, R_FaceCursor)
|
||||||
|
) {
|
||||||
|
mac_load_tri_indices( R_FaceCursor, R_T0, R_T1, R_T2),
|
||||||
|
mac_gte_load_tri_verts(R_VertBase, R_T0, R_T1, R_T2),
|
||||||
|
nop2, gte_cmdw_rotate_translate_perspective_triple, // 2 nops retire the final cpu -> gte writes before RTPT
|
||||||
|
gte_cmdw_nclip,
|
||||||
|
|
||||||
|
/* Culling (Branch forward if Backface) */
|
||||||
|
gte_mv_from_data_r(R_T0, C2_MAC0),
|
||||||
|
nop, branch_le_zero(R_T0, atom_offset(culling, floor_f3_face_exit)), nop, // required gte -> cpu load-delay slot.
|
||||||
|
/* Format Primitive */
|
||||||
|
mac_gte_store_f3(R_PrimCursor),
|
||||||
|
|
||||||
|
/* Calculate Depth */
|
||||||
|
gte_avg_sort_z3,
|
||||||
|
gte_mv_from_data_r(R_T1, C2_OTZ),
|
||||||
|
/* Bounds Check OTZ < 2048 (Branch forward to skip insertion) */
|
||||||
|
add_ui( R_AT, R_0, OrderingTbl_Len),
|
||||||
|
set_lt_u( R_AT, R_T1, R_AT),
|
||||||
|
branch_equal(R_AT, R_0, atom_offset(bounds_chk, floor_f3_face_exit)), nop,
|
||||||
|
mac_format_f3_color(R_PrimCursor, 0xFF, 0xFF, 0xFF), // RGB-form (R=FF, G=FF, B=FF = white)
|
||||||
|
mac_insert_ot_tag_f3(R_OtBase, R_PrimCursor), /* Insert into Ordering Table Linked List */
|
||||||
|
add_ui_self(R_PrimCursor, S_(Poly_F3)), /* Advance Prim Cursor (5 words) */
|
||||||
|
// Note(Ed): No bounds checking, should be checked before atom runs.
|
||||||
|
// end: branch(bounds_chk)
|
||||||
|
// end: branch(culling)
|
||||||
|
|
||||||
|
/* Advance Input Cursor & Yield (Both branch targets land here) */
|
||||||
|
atom_label(floor_f3_face_exit)
|
||||||
|
add_ui_self(R_FaceCursor, S_(S2) * 4), /* Advance Face Cursor (4 * S2 = 8 bytes) */
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef Struct_(Binds_SyncPrimitiveArena) { U4 used; U4 cursor; };
|
||||||
|
internal MipsAtom_(sync_primitive_arena) atom_info(atom_bind(Binds_SyncPrimitiveArena)
|
||||||
|
, atom_reads( R_TapePtr, R_PrimCursor)
|
||||||
|
, atom_writes(R_TapePtr)
|
||||||
|
){
|
||||||
|
load_word(R_AT, R_TapePtr, O_(Binds_SyncPrimitiveArena,used)),
|
||||||
|
load_word(R_T0, R_TapePtr, O_(Binds_SyncPrimitiveArena,cursor)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_SyncPrimitiveArena)),
|
||||||
|
/* Calculate byte offset and store directly back to RAM */
|
||||||
|
sub_u( R_T0, R_PrimCursor, R_T0), // R_T0 = R_PrimCursor - binds.cursor
|
||||||
|
store_word(R_T0, R_AT, 0), // R_AT[0] = R_T0
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
#pragma endregion Baked Atoms
|
||||||
@@ -0,0 +1,336 @@
|
|||||||
|
#pragma region Vendors
|
||||||
|
#include <stdio.h>
|
||||||
|
#include <stdlib.h>
|
||||||
|
#include <assert.h>
|
||||||
|
// #include "libgpu.h"
|
||||||
|
// #include "libetc.h"
|
||||||
|
// #include "libgte.h"
|
||||||
|
#pragma endregion Vendors
|
||||||
|
|
||||||
|
#pragma region Duffle Headers
|
||||||
|
# include "duffle/gen/macs.h"
|
||||||
|
# include "duffle/gen/offsets.h"
|
||||||
|
|
||||||
|
#include "duffle/word_count.metadata.h"
|
||||||
|
|
||||||
|
#include "duffle/dsl.h"
|
||||||
|
#include "duffle/memory.h"
|
||||||
|
#include "duffle/math.h"
|
||||||
|
|
||||||
|
#include "duffle/gcc_asm.h"
|
||||||
|
#include "duffle/mips.h"
|
||||||
|
#include "duffle/gp.h"
|
||||||
|
#include "duffle/gte.h"
|
||||||
|
#include "duffle/pad.h"
|
||||||
|
|
||||||
|
#include "duffle/dsl.atom.h"
|
||||||
|
#include "duffle/lottes_tape.h"
|
||||||
|
|
||||||
|
#include "duffle/psyq.h"
|
||||||
|
#pragma endregion Duffle Headers
|
||||||
|
|
||||||
|
#pragma region Duffle TUs
|
||||||
|
#include "duffle/math.atom.c"
|
||||||
|
#include "duffle/mips.atom.c"
|
||||||
|
#include "duffle/gte.atom.c"
|
||||||
|
#include "duffle/gp.atom.c"
|
||||||
|
#include "duffle/pad.atom.c"
|
||||||
|
#include "duffle/psyq.atom.c"
|
||||||
|
#pragma endregion Duffle TUs
|
||||||
|
|
||||||
|
#pragma region Hello Camera Headers
|
||||||
|
# include "gen/macs.h"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
|
||||||
|
#include "hello_camera.h"
|
||||||
|
#pragma endregion Hello Camera Headers
|
||||||
|
|
||||||
|
#pragma region Hello Joypad TUs
|
||||||
|
#include "hello_camera.atom.c"
|
||||||
|
#pragma endregion Hello Joypad TUs
|
||||||
|
|
||||||
|
enum {
|
||||||
|
Scratchpad_Len = 1024,
|
||||||
|
MemTape_Len = 512,
|
||||||
|
};
|
||||||
|
typedef Struct_(SMemory) {
|
||||||
|
PrimitiveArena primitives;
|
||||||
|
A2_OrderingTable_Buffer ordering_tbl;
|
||||||
|
DoubleBuffer screen_buf;
|
||||||
|
S4 active_buf_id;
|
||||||
|
|
||||||
|
U4 MemTape[MemTape_Len];
|
||||||
|
|
||||||
|
M3_S2 tform_world;
|
||||||
|
|
||||||
|
Ent_Cube cube;
|
||||||
|
Ent_Floor floor;
|
||||||
|
|
||||||
|
PadBiosRaw pad_raw[2];
|
||||||
|
PadState pad[2];
|
||||||
|
|
||||||
|
U4_V scratchpad; // d-cache
|
||||||
|
};
|
||||||
|
global SMemory smem;
|
||||||
|
extern SMemory smem;
|
||||||
|
|
||||||
|
I_ B1* prim__alloc(U4 type_width, Str8 type_name) {
|
||||||
|
gknown PrimitiveArena* pa = & smem.primitives;
|
||||||
|
gknown B1* buf = (B1*) r_(smem.primitives.buf)[smem.active_buf_id];
|
||||||
|
assert(pa->used + type_width < PrimitiveBuff_Len);
|
||||||
|
B1* next = buf + pa->used;
|
||||||
|
pa->used += type_width;
|
||||||
|
return next;
|
||||||
|
}
|
||||||
|
#define prim_alloc(type) (type*)prim__alloc(S_(type), slit( stringify(type)))
|
||||||
|
|
||||||
|
/* Uses ONE 8-byte frame allocated via the compiler's standard prologue.
|
||||||
|
* The 4 wasted-arg words for B(12h) InitPAD2 live at [SP+0..15] but are not explicitly allocated.
|
||||||
|
* The compiler handles the MIPS O32 "wasted stack" convention for us by treating the B-call as a 4-arg call.
|
||||||
|
*
|
||||||
|
* The buffer pointers are passed as arguments so the compiler keeps them in callee-saved registers;
|
||||||
|
* The B(12h) asm volatile block does NOT clobber those registers (it clobbers only the volatile GPRs + the B-table arg registers explicitly).
|
||||||
|
* The C-level writes after the call re-load the pointers from their callee-saved homes.
|
||||||
|
*
|
||||||
|
* The clobber list for both B-calls names the full BIOS destroy set documented in kernelbios.md:167-174 (R1..R15, R24..R25, R31, HI/LO).
|
||||||
|
* The kernel-ABI "volatile GPRs" subset is clb_system; the rest of the destroy set is enumerated explicitly here. */
|
||||||
|
NI_ void pad_bios_init_start(PadBiosRaw* raw0, PadBiosRaw* raw1)
|
||||||
|
{
|
||||||
|
/* Pin raw0 + raw1 to $a0 + $a1 via rgcc; the B(12h) call uses these directly.
|
||||||
|
* The `(void)` casts mark them as unread after the call so the compiler doesn't need to move them back. */
|
||||||
|
register PadBiosRaw* p0 rgcc(R_A0) = raw0;
|
||||||
|
register PadBiosRaw* p1 rgcc(R_A1) = raw1;
|
||||||
|
(void)p0; (void)p1;
|
||||||
|
|
||||||
|
// TODO(Ed): Properly annotate the raw values in the inline asm instructions.
|
||||||
|
// Use enums.
|
||||||
|
|
||||||
|
/* B(12h) InitPAD2(raw0, 0x22, raw1, 0x22)
|
||||||
|
* $a0 = raw0 (rgcc-bound; survives the sequence below)
|
||||||
|
* $a1 = raw1 (preserved into $a2 before $a1 is overwritten)
|
||||||
|
* $a2 = raw1 (moved from $a1; survives $a1's overwrite)
|
||||||
|
* $a3 = 0x22 (immediate)
|
||||||
|
* $t1 = 0x12 (function number)
|
||||||
|
* $t2 = 0xB0 (BIOS B-table address) */
|
||||||
|
asm volatile(
|
||||||
|
asm_words(
|
||||||
|
or_u( rarg_2, rarg_1, rdiscard), /* $a2 = $a1 = raw1 */
|
||||||
|
add_ui( rarg_1, rdiscard, 0x22), /* $a1 = 0x22 */
|
||||||
|
add_ui( rarg_3, rdiscard, 0x22), /* $a3 = 0x22 */
|
||||||
|
add_ui( rtmp_1, rdiscard, 0x12), /* $t1 = 0x12 */
|
||||||
|
add_ui( rtmp_2, rdiscard, 0xB0), /* $t2 = 0xB0 */
|
||||||
|
call_reg(rtmp_2), /* jalr $t2, $ra */
|
||||||
|
nop /* BD slot */
|
||||||
|
)
|
||||||
|
asm_rpins, r_use(p0), r_use(p1)
|
||||||
|
asm_clobber:
|
||||||
|
rlit(R_AT),
|
||||||
|
rlit(R_V0), rlit(R_V1),
|
||||||
|
rlit(R_T0), rlit(R_T1), rlit(R_T2), rlit(R_T3), rlit(R_T4),
|
||||||
|
rlit(R_T5), rlit(R_T6), rlit(R_T7), rlit(R_T8), rlit(R_T9),
|
||||||
|
rlit(R_RA),
|
||||||
|
clb_mem_drain
|
||||||
|
);
|
||||||
|
|
||||||
|
/* The C-level writes re-load the pointers via the parameter names and write 0xFF to each
|
||||||
|
* buffer's status byte to mark the initial-state hazard documented in kernelbios.md:1621-1624. */
|
||||||
|
u1_v(raw0)[0] = 0xFF;
|
||||||
|
u1_v(raw1)[0] = 0xFF;
|
||||||
|
|
||||||
|
/* B(13h) StartPAD2() — no args. The BIOS preserves $sp. */
|
||||||
|
asm volatile(
|
||||||
|
asm_words(
|
||||||
|
add_ui( rtmp_1, rdiscard, 0x13), /* $t1 = 0x13 */
|
||||||
|
add_ui( rtmp_2, rdiscard, 0xB0), /* $t2 = 0xB0 (re-load) */
|
||||||
|
call_reg(rtmp_2), /* jalr $t2, $ra */
|
||||||
|
nop /* BD slot */
|
||||||
|
)
|
||||||
|
asm_clobber:
|
||||||
|
rlit(R_AT),
|
||||||
|
rlit(R_V0), rlit(R_V1),
|
||||||
|
rlit(R_T0), rlit(R_T1), rlit(R_T2), rlit(R_T3), rlit(R_T4),
|
||||||
|
rlit(R_T5), rlit(R_T6), rlit(R_T7), rlit(R_T8), rlit(R_T9),
|
||||||
|
rlit(R_RA),
|
||||||
|
clb_mem_drain
|
||||||
|
);
|
||||||
|
}
|
||||||
|
|
||||||
|
GCC_OPTIMIZATION_DISABLE
|
||||||
|
void update(PrimitiveArena* pa, U4* ordering_buf)
|
||||||
|
{
|
||||||
|
TapeBuilder tb = tb_make(slice_ut_arr(smem.MemTape));
|
||||||
|
|
||||||
|
if (1) // Pad Input
|
||||||
|
{
|
||||||
|
tb.used = 0; tb_scope_run(& tb) {
|
||||||
|
/* BIOS-owned polling: per-frame snapshot of both ports. */
|
||||||
|
tb_emit_(pad_bios_snapshot);
|
||||||
|
tb_data_(raw, & smem.pad_raw[0]);
|
||||||
|
tb_data_(state, & smem.pad[0]);
|
||||||
|
tb_emit_(pad_bios_snapshot);
|
||||||
|
tb_data_(raw, & smem.pad_raw[1]);
|
||||||
|
tb_data_(state, & smem.pad[1]);
|
||||||
|
/* Per-frame rotation apply: consume pad[0].buttons + pad[0].left_x */
|
||||||
|
tb_emit_(pad_apply_input);
|
||||||
|
tb_data_(state, & smem.pad[0]);
|
||||||
|
tb_data_(cube_rot, & smem.cube.rot);
|
||||||
|
tb_data_(floor_rot, & smem.floor.rot);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
orderingtbl_clear_reverse(ordering_buf, OrderingTbl_Len);
|
||||||
|
|
||||||
|
// Update the position based on acceleration and velocity
|
||||||
|
gknown V3_S4_R pos = & smem.cube.pos;
|
||||||
|
gknown V3_S4_R vel = & smem.cube.vel;
|
||||||
|
gknown V3_S4_R acc = & smem.cube.accel;
|
||||||
|
add_v3s4(vel, acc[0]);
|
||||||
|
add_v3s4_fp(pos, vel[0]);
|
||||||
|
// vel->x += acc->x;
|
||||||
|
// vel->y += acc->y;
|
||||||
|
// vel->z += acc->z;
|
||||||
|
// pos->x += vel->x;
|
||||||
|
// pos->y += vel->y;
|
||||||
|
// pos->z += vel->z;
|
||||||
|
|
||||||
|
if (pos->y + 150 > smem.floor.pos.y) vel->y *= -1;
|
||||||
|
|
||||||
|
// Prep
|
||||||
|
S4 nclip = 0;
|
||||||
|
S4 orderingtbl_z = 0;
|
||||||
|
A2_S2 p; //???
|
||||||
|
S4 flag; //????
|
||||||
|
|
||||||
|
|
||||||
|
// Draw cube
|
||||||
|
if (1)
|
||||||
|
{
|
||||||
|
m3s2_rotation (& smem.cube.rot, & smem.tform_world);
|
||||||
|
m3s2_translation(& smem.tform_world, & smem.cube.pos);
|
||||||
|
m3s2_scale (& smem.tform_world, & smem.cube.scale);
|
||||||
|
gte_matrix_set_rotation (& smem.tform_world);
|
||||||
|
gte_matrix_set_translation(& smem.tform_world);
|
||||||
|
|
||||||
|
U4 prim_base = u4_(pa->buf[smem.active_buf_id]);
|
||||||
|
U4 prim_cursor = prim_base + pa->used;
|
||||||
|
|
||||||
|
tb.used = 0; tb_scope(& tb) {
|
||||||
|
tb_emit(& tb, rbind_cube_g4_face);
|
||||||
|
tb_data(& tb, prim_cursor);
|
||||||
|
tb_data(& tb, u4_(smem.cube.faces));
|
||||||
|
tb_data(& tb, u4_(smem.cube.verts));
|
||||||
|
tb_data(& tb, u4_(ordering_buf));
|
||||||
|
|
||||||
|
for (U4 i = 0; i < Cube_num_faces; i++) {
|
||||||
|
// Two triangles per quad face: (x,y,z) and (x,z,w)
|
||||||
|
tb_emit(& tb, cube_g4_face);
|
||||||
|
}
|
||||||
|
|
||||||
|
tb_emit(& tb, sync_primitive_arena);
|
||||||
|
tb_data(& tb, u4_(& pa->used));
|
||||||
|
tb_data(& tb, prim_base);
|
||||||
|
}
|
||||||
|
tape_run(tb_slice(tb));
|
||||||
|
|
||||||
|
// smem.cube.rot.y += 30;
|
||||||
|
}
|
||||||
|
// Draw floor
|
||||||
|
if (1)
|
||||||
|
{
|
||||||
|
m3s2_rotation (& smem.floor.rot, & smem.tform_world);
|
||||||
|
m3s2_translation(& smem.tform_world, & smem.floor.pos);
|
||||||
|
m3s2_scale (& smem.tform_world, & smem.floor.scale);
|
||||||
|
|
||||||
|
U4 prim_base = u4_(pa->buf[smem.active_buf_id]);
|
||||||
|
U4 prim_cursor = prim_base + pa->used;
|
||||||
|
|
||||||
|
// TODO(Ed): We should do a bounds check beforehand to confirm pa can hold all tris?
|
||||||
|
// The tape atoms in-flight should not need to care.
|
||||||
|
|
||||||
|
// Prepare the tape. (Push protocol to tape)
|
||||||
|
tb.used = 0; tb_scope(& tb) {
|
||||||
|
tb_emit(& tb, set_gte_world);
|
||||||
|
tb_data(& tb, u4_(& smem.tform_world));
|
||||||
|
|
||||||
|
tb_emit(& tb, rbind_floor_f3_face);
|
||||||
|
// TODO(Ed): Just use a single context struct ref
|
||||||
|
tb_data(& tb, prim_cursor);
|
||||||
|
tb_data(& tb, u4_(smem.floor.faces));
|
||||||
|
tb_data(& tb, u4_(smem.floor.verts));
|
||||||
|
tb_data(& tb, u4_(ordering_buf));
|
||||||
|
for (U4 i = 0; i < Floor_num_faces; i++) {
|
||||||
|
tb_emit(& tb, floor_f3_face);
|
||||||
|
}
|
||||||
|
// After floor_f3_face iterations complete, the primitive arena's used counter needs updating.
|
||||||
|
tb_emit(& tb, sync_primitive_arena);
|
||||||
|
tb_data(& tb, u4_(& pa->used));
|
||||||
|
tb_data(& tb, prim_base);
|
||||||
|
}
|
||||||
|
tape_run(tb_slice(tb));// Fire off the tape.
|
||||||
|
|
||||||
|
// C-side state (pa->used) has already been updated by the tape!
|
||||||
|
// smem.floor.rot.y += 5;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
GCC_OPTIMIZATION_ENABLE
|
||||||
|
|
||||||
|
void render(void) {
|
||||||
|
}
|
||||||
|
|
||||||
|
void gp_display_frame(DoubleBuffer* screen_buf, S4* active_buf_id, U4* ordering_buf, PrimitiveArena* pa) {
|
||||||
|
draw_sync(0);
|
||||||
|
vsync(0);
|
||||||
|
displayenv_put(& r_(screen_buf->display)[active_buf_id[0] ]);
|
||||||
|
drawenv_put (& r_(screen_buf->draw) [active_buf_id[0] ]);
|
||||||
|
{
|
||||||
|
draw_orderingtbl(ordering_buf + OrderingTbl_Len - 1);
|
||||||
|
pa->used = 0;
|
||||||
|
}
|
||||||
|
active_buf_id[0] = ! active_buf_id[0]; // Swap current buffer
|
||||||
|
}
|
||||||
|
|
||||||
|
GCC_OPTIMIZATION_DISABLE
|
||||||
|
int main(void)
|
||||||
|
{
|
||||||
|
smem = (SMemory){0};
|
||||||
|
smem.scratchpad = C_(U4_V, 0x1F800000);
|
||||||
|
// smem.primitives.used = 0;
|
||||||
|
// smem.active_buf_id = 0;
|
||||||
|
/*Persistent Entity Setup*/{
|
||||||
|
ent_cube128_init(& smem.cube.verts, & smem.cube.faces); {
|
||||||
|
Ent_Cube* cube = & smem.cube;
|
||||||
|
cube->rot = v3s2(0, 0, 0);
|
||||||
|
cube->scale = v3s4_fp_one();
|
||||||
|
cube->accel = v3s4(0, 1, 0);
|
||||||
|
cube->pos = v3s4(0, -400, 1800);
|
||||||
|
}
|
||||||
|
ent_floor_init(& smem.floor.verts, & smem.floor.faces); {
|
||||||
|
Ent_Floor* floor = & smem.floor;
|
||||||
|
floor->rot = v3s2(0, 0, 0);
|
||||||
|
floor->pos = v3s4(0, 450, 1800);
|
||||||
|
floor->scale = v3s4_fp_one();
|
||||||
|
}
|
||||||
|
}
|
||||||
|
TapeBuilder tb = tb_make(slice_ut_arr(smem.MemTape)); {
|
||||||
|
reset_graph(0);
|
||||||
|
/* Direct BIOS: poll both ports during VBlank. */
|
||||||
|
pad_bios_init_start(& smem.pad_raw[0], & smem.pad_raw[1]);
|
||||||
|
/* Pinned registers for the GPU init atom. */
|
||||||
|
register U4* io_base_addr rgcc(R_IO_BaseAddr) = u4_r(IO_BASE_ADDR);
|
||||||
|
register DoubleBuffer* screen_buf rgcc(R_ScreenBuf) = & smem.screen_buf;
|
||||||
|
tb.used = 0; tb_scope_run(& tb) {
|
||||||
|
tb_emit(& tb, screen_env_init);
|
||||||
|
tb_emit(& tb, gp_screen_init);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
while (1) {
|
||||||
|
gknown S4* active_buf_id = & smem.active_buf_id;
|
||||||
|
gknown U4* ordering_buf = r_(smem.ordering_tbl)[active_buf_id[0]];
|
||||||
|
gknown PrimitiveArena* pa = & smem.primitives;
|
||||||
|
update(pa, ordering_buf);
|
||||||
|
render();
|
||||||
|
gp_display_frame(& smem.screen_buf, active_buf_id, ordering_buf, pa);
|
||||||
|
};
|
||||||
|
return 0;
|
||||||
|
}
|
||||||
|
GCC_OPTIMIZATION_ENABLE
|
||||||
@@ -0,0 +1,102 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# pragma once
|
||||||
|
# include "duffle/dsl.h"
|
||||||
|
# include "duffle/math.h"
|
||||||
|
# include "duffle/gp.h"
|
||||||
|
# include "duffle/pad.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
enum {
|
||||||
|
// PrimitiveBuff_Len = 4096,
|
||||||
|
// OrderingTbl_Len = 2048,
|
||||||
|
PrimitiveBuff_Len = 131072,
|
||||||
|
OrderingTbl_Len = 8192,
|
||||||
|
};
|
||||||
|
|
||||||
|
enum {
|
||||||
|
ScreenRes_X = 320,
|
||||||
|
ScreenRes_Y = 240,
|
||||||
|
ScreenZ = 320,
|
||||||
|
ScreenRes_CenterX = (ScreenRes_X >> 1),
|
||||||
|
ScreenRes_CenterY = (ScreenRes_Y >> 1),
|
||||||
|
};
|
||||||
|
|
||||||
|
enum {
|
||||||
|
fp_one = (1 << 12),
|
||||||
|
};
|
||||||
|
|
||||||
|
#define v3s4_fp_one() v3s4(fp_one, fp_one, fp_one)
|
||||||
|
|
||||||
|
typedef U4 OrderingTable_Buffer[OrderingTbl_Len];
|
||||||
|
typedef Array_(OrderingTable_Buffer, 2);
|
||||||
|
|
||||||
|
typedef B1 PrimitiveBuffer[PrimitiveBuff_Len];
|
||||||
|
typedef Array_(PrimitiveBuffer, 2);
|
||||||
|
typedef Struct_(PrimitiveArena) {
|
||||||
|
A2_PrimitiveBuffer buf;
|
||||||
|
U4 used;
|
||||||
|
};
|
||||||
|
|
||||||
|
#define Cube_num_verts 8
|
||||||
|
typedef Array_(V3_S2, Cube_num_verts);
|
||||||
|
#define Cube_num_faces 6
|
||||||
|
typedef Array_(V4_S2, Cube_num_faces);
|
||||||
|
I_ void ent_cube128_init(A8_V3_S2* verts, A6_V4_S2* faces) {
|
||||||
|
LP_ A8_V3_S2 baked_verts = (A8_V3_S2) {
|
||||||
|
{ -128, -128, -128 },
|
||||||
|
{ 128, -128, -128 },
|
||||||
|
{ 128, -128, 128 },
|
||||||
|
{ -128, -128, 128 },
|
||||||
|
{ -128, 128, -128 },
|
||||||
|
{ 128, 128, -128 },
|
||||||
|
{ 128, 128, 128 },
|
||||||
|
{ -128, 128, 128 }
|
||||||
|
};
|
||||||
|
LP_ A6_V4_S2 baked_faces = (A6_V4_S2) {
|
||||||
|
{ 3, 2, 0, 1 },
|
||||||
|
{ 0, 1, 4, 5 },
|
||||||
|
{ 4, 5, 7, 6 },
|
||||||
|
{ 1, 2, 5, 6 },
|
||||||
|
{ 2, 3, 6, 7 },
|
||||||
|
{ 3, 0, 7, 4 },
|
||||||
|
};
|
||||||
|
mem_copy(u4_(verts), u4_(& baked_verts), S_(A8_V3_S2) );
|
||||||
|
mem_copy(u4_(faces), u4_(& baked_faces), S_(A6_V4_S2) );
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
typedef Struct_(Ent_Cube) {
|
||||||
|
V3_S4 accel;
|
||||||
|
V3_S4 vel;
|
||||||
|
V3_S4 pos;
|
||||||
|
V3_S4 scale;
|
||||||
|
V3_S2 rot;
|
||||||
|
A8_V3_S2 verts;
|
||||||
|
A6_V4_S2 faces;
|
||||||
|
};
|
||||||
|
|
||||||
|
#define Floor_num_verts 4
|
||||||
|
typedef Array_(V3_S2, Floor_num_verts);
|
||||||
|
#define Floor_num_faces 2
|
||||||
|
typedef Array_(V3_S2, Floor_num_faces);
|
||||||
|
I_ void ent_floor_init(A4_V3_S2* verts, A2_V3_S2* faces) {
|
||||||
|
LP_ A4_V3_S2 baked_verts = (A4_V3_S2) {
|
||||||
|
{ -900, 0, -900 },
|
||||||
|
{ -900, 0, 900 },
|
||||||
|
{ 900, 0, -900 },
|
||||||
|
{ 900, 0, 900 },
|
||||||
|
};
|
||||||
|
LP_ A2_V3_S2 baked_faces = (A2_V3_S2) {
|
||||||
|
{ 0, 1, 2 },
|
||||||
|
{ 1, 3, 2 },
|
||||||
|
};
|
||||||
|
mem_copy(u4_(verts), u4_(& baked_verts), S_(A4_V3_S2));
|
||||||
|
mem_copy(u4_(faces), u4_(& baked_faces), S_(A2_V3_S2));
|
||||||
|
};
|
||||||
|
typedef Struct_(Ent_Floor) {
|
||||||
|
V3_S4 accel;
|
||||||
|
V3_S4 pos;
|
||||||
|
V3_S4 scale;
|
||||||
|
V3_S2 rot;
|
||||||
|
A4_V3_S2 verts;
|
||||||
|
A2_V3_S2 faces;
|
||||||
|
};
|
||||||
@@ -5,10 +5,10 @@
|
|||||||
#pragma region hello_gte_tape
|
#pragma region hello_gte_tape
|
||||||
|
|
||||||
|
|
||||||
// --- atom: cube_g4_face (87 words) ---
|
// --- atom: cube_g4_face (77 words) ---
|
||||||
|
|
||||||
#define _atom_offset_cull_cube_g4_face_exit 48
|
#define _atom_offset_cull_cube_g4_face_exit 42
|
||||||
#define _atom_offset_bounds_chk_cube_g4_face_exit 12
|
#define _atom_offset_bounds_chk_cube_g4_face_exit 24
|
||||||
|
|
||||||
enum {
|
enum {
|
||||||
atom_offset_cull_cube_g4_face_exit = _atom_offset_cull_cube_g4_face_exit,
|
atom_offset_cull_cube_g4_face_exit = _atom_offset_cull_cube_g4_face_exit,
|
||||||
@@ -18,7 +18,7 @@ enum {
|
|||||||
// --- atom: floor_f3_face (58 words) ---
|
// --- atom: floor_f3_face (58 words) ---
|
||||||
|
|
||||||
#define _atom_offset_culling_floor_f3_face_exit 25
|
#define _atom_offset_culling_floor_f3_face_exit 25
|
||||||
#define _atom_offset_bounds_chk_floor_f3_face_exit 13
|
#define _atom_offset_bounds_chk_floor_f3_face_exit 16
|
||||||
|
|
||||||
enum {
|
enum {
|
||||||
atom_offset_culling_floor_f3_face_exit = _atom_offset_culling_floor_f3_face_exit,
|
atom_offset_culling_floor_f3_face_exit = _atom_offset_culling_floor_f3_face_exit,
|
||||||
@@ -0,0 +1,29 @@
|
|||||||
|
// Auto-generated by ps1_meta.lua (passes/offsets.lua) — DO NOT EDIT
|
||||||
|
// Source: C:\projects\Pikuma\ps1\code\hello_gte\hello_gte.tape.c
|
||||||
|
#pragma once
|
||||||
|
|
||||||
|
#pragma region hello_gte.tape
|
||||||
|
|
||||||
|
|
||||||
|
// --- atom: cube_g4_face (77 words) ---
|
||||||
|
|
||||||
|
#define _atom_offset_cull_cube_g4_face_exit 42
|
||||||
|
#define _atom_offset_bounds_chk_cube_g4_face_exit 24
|
||||||
|
|
||||||
|
enum {
|
||||||
|
atom_offset_cull_cube_g4_face_exit = _atom_offset_cull_cube_g4_face_exit,
|
||||||
|
atom_offset_bounds_chk_cube_g4_face_exit = _atom_offset_bounds_chk_cube_g4_face_exit,
|
||||||
|
};
|
||||||
|
|
||||||
|
// --- atom: floor_f3_face (58 words) ---
|
||||||
|
|
||||||
|
#define _atom_offset_culling_floor_f3_face_exit 25
|
||||||
|
#define _atom_offset_bounds_chk_floor_f3_face_exit 16
|
||||||
|
|
||||||
|
enum {
|
||||||
|
atom_offset_culling_floor_f3_face_exit = _atom_offset_culling_floor_f3_face_exit,
|
||||||
|
atom_offset_bounds_chk_floor_f3_face_exit = _atom_offset_bounds_chk_floor_f3_face_exit,
|
||||||
|
};
|
||||||
|
|
||||||
|
#pragma endregion hello_gte.tape
|
||||||
|
|
||||||
@@ -14,16 +14,16 @@
|
|||||||
#include "duffle/gp.h"
|
#include "duffle/gp.h"
|
||||||
#include "duffle/gte.h"
|
#include "duffle/gte.h"
|
||||||
|
|
||||||
# include "duffle/gen/duffle.macs.h"
|
# include "duffle/gen/macs.h"
|
||||||
# include "duffle/gen/duffle.offsets.h"
|
# include "duffle/gen/offsets.h"
|
||||||
#include "duffle/atom_dsl.h"
|
#include "duffle/atom_dsl.h"
|
||||||
#include "duffle/lottes_tape.h"
|
#include "duffle/lottes_tape.h"
|
||||||
#include "duffle/word_count.metadata.h"
|
#include "duffle/word_count.metadata.h"
|
||||||
|
|
||||||
# include "gen/gte_hello.offsets.h"
|
# include "gen/offsets.h"
|
||||||
#include "hello_gte.h"
|
#include "hello_gte.h"
|
||||||
|
|
||||||
#include "hello_gte_tape.c"
|
#include "hello_gte.tape.c"
|
||||||
|
|
||||||
typedef U4 OrderingTable_Buffer[OrderingTbl_Len];
|
typedef U4 OrderingTable_Buffer[OrderingTbl_Len];
|
||||||
typedef Array_(OrderingTable_Buffer, 2);
|
typedef Array_(OrderingTable_Buffer, 2);
|
||||||
@@ -122,7 +122,7 @@ global SMemory smem;
|
|||||||
extern SMemory smem;
|
extern SMemory smem;
|
||||||
|
|
||||||
// TODO(Ed):
|
// TODO(Ed):
|
||||||
FI_ U4* spad_warm(MipsAtom atom) {
|
FI_ U4* spad_warm(Slice_MipsCode atom) {
|
||||||
return nullptr;
|
return nullptr;
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -0,0 +1,218 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# include "duffle/gen/macs.h"
|
||||||
|
# include "duffle/gen/offsets.h"
|
||||||
|
# include "duffle/atom_dsl.h"
|
||||||
|
# include "duffle/lottes_tape.h"
|
||||||
|
# include "duffle/word_count.metadata.h"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
# include "hello_gte.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
#pragma region MACs (Mips Atom components)
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
#pragma endregion MACs
|
||||||
|
|
||||||
|
#pragma region Baked Atoms
|
||||||
|
|
||||||
|
/* DIAGNOSTIC 1: Pure tape loop test */
|
||||||
|
internal MipsAtom_(diag_yield) { mac_yield() };
|
||||||
|
|
||||||
|
/* DIAGNOSTIC 2: Pure memory test (No GTE). Draws a fixed cyan triangle. */
|
||||||
|
internal MipsAtom_(diag_color) {
|
||||||
|
store_word( R_0, R_T7, 0),
|
||||||
|
load_upper_i(R_AT, gp0_cmd_poly_f3 << 8 | 0xFF), /* High: MipsCode Poly_F3(0x20) + Color B:FF */
|
||||||
|
or_i_self( R_AT, 0xFF00), /* Low: Color G:FF, R:00 (Cyan) */
|
||||||
|
store_word( R_AT, R_T7, 4),
|
||||||
|
|
||||||
|
/* Fake coordinates - Swapped winding order to prevent GPU culling! */
|
||||||
|
load_upper_i(R_AT, 0x0010), or_i_self(R_AT, 0x0010), store_word(R_AT, R_T7, 8), /* (16, 16) */
|
||||||
|
load_upper_i(R_AT, 0x0050), or_i_self(R_AT, 0x0010), store_word(R_AT, R_T7, 12), /* (80, 16) */
|
||||||
|
load_upper_i(R_AT, 0x0010), or_i_self(R_AT, 0x0050), store_word(R_AT, R_T7, 16), /* (16, 80) */
|
||||||
|
|
||||||
|
add_ui( R_T1, R_0, 10),
|
||||||
|
shift_lleft_self(R_T1, S_(U4)/2),
|
||||||
|
add_u_self( R_T1, R_T6),
|
||||||
|
|
||||||
|
load_word( R_AT, R_T1, 0),
|
||||||
|
load_upper_i(R_V0, (S_(Poly_F3)/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits),
|
||||||
|
store_word( R_AT, R_T7, 0),
|
||||||
|
shift_lleft(R_AT, R_T7, S_(PolyTag_len_bits)), shift_lright(R_AT, R_AT, S_(PolyTag_len_bits)),
|
||||||
|
or_u_self( R_AT, R_V0),
|
||||||
|
store_word( R_AT, R_T1, 0),
|
||||||
|
|
||||||
|
add_ui(R_T7, R_T7, 20),
|
||||||
|
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
/* DIAGNOSTIC 3: Pure GTE test (No Memory Writes) */
|
||||||
|
internal MipsAtom_(diag_gte) {
|
||||||
|
/* Load 3 indices */
|
||||||
|
load_half_u(R_T0, R_T4, 0),
|
||||||
|
load_half_u(R_T1, R_T4, 2),
|
||||||
|
load_half_u(R_T2, R_T4, 4),
|
||||||
|
|
||||||
|
/* Load Vertices into GTE */
|
||||||
|
shift_lleft( R_AT, R_T0, 3), add_u( R_AT, R_AT, R_T5),
|
||||||
|
load_word(R_V0, R_AT, 0), load_word(R_V1, R_AT, 4),
|
||||||
|
gte_mv_to_data_r(R_V0, C2_VXY0), gte_mv_to_data_r(R_V1, C2_VZ0),
|
||||||
|
|
||||||
|
shift_lleft( R_AT, R_T1, 3), add_u(R_AT, R_AT, R_T5),
|
||||||
|
load_word(R_V0, R_AT, 0), load_word(R_V1, R_AT, 4),
|
||||||
|
gte_mv_to_data_r(R_V0, C2_VXY1), gte_mv_to_data_r(R_V1, C2_VZ1),
|
||||||
|
|
||||||
|
shift_lleft(R_AT, R_T2, 3), add_u(R_AT, R_AT, R_T5),
|
||||||
|
load_word(R_V0, R_AT, 0), load_word(R_V1, R_AT, 4),
|
||||||
|
gte_mv_to_data_r(R_V0, C2_VXY2), gte_mv_to_data_r(R_V1, C2_VZ2),
|
||||||
|
|
||||||
|
/* Run Math */
|
||||||
|
nop2, gte_cmdw_rtpt,
|
||||||
|
nop2, gte_cmdw_nclip,
|
||||||
|
nop2,
|
||||||
|
|
||||||
|
/* Advance Face Cursor and Yield */
|
||||||
|
add_ui(R_T4, R_T4, 8),
|
||||||
|
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef Struct_(Binds_CubeTri) {
|
||||||
|
U4 PrimCursor;
|
||||||
|
V4_S2* FaceCursor;
|
||||||
|
V3_S2* VertBase;
|
||||||
|
U4* OtBase;
|
||||||
|
};
|
||||||
|
internal MipsAtom_(rbind_cube_g4_face) atom_info(atom_bind(Binds_CubeTri), atom_phase(cube_g4)
|
||||||
|
, atom_reads(R_TapePtr)
|
||||||
|
, atom_writes(R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase)
|
||||||
|
){
|
||||||
|
/* Pop 4 arguments from the tape directly into the workspace registers */
|
||||||
|
load_word(R_PrimCursor, R_TapePtr, O_(Binds_CubeTri,PrimCursor)),
|
||||||
|
load_word(R_FaceCursor, R_TapePtr, O_(Binds_CubeTri,FaceCursor)),
|
||||||
|
load_word(R_VertBase, R_TapePtr, O_(Binds_CubeTri,VertBase)),
|
||||||
|
load_word(R_OtBase, R_TapePtr, O_(Binds_CubeTri,OtBase)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_CubeTri)),
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
// cube_g4_face — Draw one cube face (Gouraud-shaded quad) via the GTE tape pipeline
|
||||||
|
internal
|
||||||
|
MipsAtom_(cube_g4_face) atom_info(atom_phase(cube_g4),
|
||||||
|
atom_reads( R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase),
|
||||||
|
atom_writes(R_PrimCursor, R_FaceCursor)
|
||||||
|
){
|
||||||
|
load_half_u(R_T0, R_FaceCursor, 0 * S_(S2)),
|
||||||
|
load_half_u(R_T1, R_FaceCursor, 1 * S_(S2)),
|
||||||
|
load_half_u(R_T2, R_FaceCursor, 2 * S_(S2)),
|
||||||
|
load_half_u(R_T3, R_FaceCursor, 3 * S_(S2)),
|
||||||
|
|
||||||
|
mac_gte_load_tri_verts(R_T0, R_T1, R_T2),
|
||||||
|
nop2, gte_cmdw_rotate_translate_perspective_triple, // required cpu -> gte delay slot
|
||||||
|
gte_cmdw_nclip,
|
||||||
|
|
||||||
|
gte_mv_from_data_r(R_T0, C2_MAC0), nop,
|
||||||
|
branch_le_zero(R_T0, atom_offset(cull, cube_g4_face_exit)), nop,
|
||||||
|
store_word(R_0, R_PrimCursor, O_(Poly_G4, tag)),
|
||||||
|
shift_lleft(R_AT, R_T3, v3s2_byteoff), add_u(R_AT, R_AT, R_VertBase),
|
||||||
|
load_word(R_V0, R_AT, O_(V3_S2, x)), load_word(R_V1, R_AT, O_(V3_S2, z)),
|
||||||
|
gte_mv_to_data_r(R_V0, C2_VXY0), gte_mv_to_data_r(R_V1, C2_VZ0),
|
||||||
|
|
||||||
|
mac_gte_store_g4_p012(),
|
||||||
|
gte_cmdw_rotate_translate_perspective_single,
|
||||||
|
mac_gte_store_g4_p3(),
|
||||||
|
|
||||||
|
gte_cmdw_avg_sort_z4,
|
||||||
|
gte_mv_from_data_r(R_T1, C2_OTZ),
|
||||||
|
|
||||||
|
add_ui( R_AT, R_0, OrderingTbl_Len),
|
||||||
|
set_lt_u( R_AT, R_T1, R_AT),
|
||||||
|
branch_equal(R_AT, R_0, atom_offset(bounds_chk, cube_g4_face_exit)), nop,
|
||||||
|
mac_insert_ot_tag_g4(),
|
||||||
|
mac_format_g4_color(
|
||||||
|
/* c0 magenta */ 0xFF, 0x00, 0xFF,
|
||||||
|
/* c1 yellow */ 0xFF, 0xFF, 0x00,
|
||||||
|
/* c2 cyan */ 0x00, 0xFF, 0xFF,
|
||||||
|
/* c3 green */ 0x00, 0xFF, 0x00),
|
||||||
|
// end: branch(bounds_chk)
|
||||||
|
// end: branch(cull)
|
||||||
|
|
||||||
|
atom_label(cube_g4_face_exit)
|
||||||
|
add_ui_self(R_PrimCursor, S_(Poly_G4)), /* 9 words = Poly_G4 */
|
||||||
|
add_ui_self(R_FaceCursor, S_(S2) * 4), /* 4 × S2 = 8 bytes */
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef Struct_(Binds_FloorTri) {
|
||||||
|
U4 PrimCursor;
|
||||||
|
V3_S2* FaceCursor;
|
||||||
|
V3_S2* VertBase;
|
||||||
|
U4* OtBase;
|
||||||
|
};
|
||||||
|
internal
|
||||||
|
MipsAtom_(rbind_floor_f3_face) atom_info(atom_bind(Binds_FloorTri), atom_phase(floor_f3)
|
||||||
|
, atom_reads(R_TapePtr)
|
||||||
|
, atom_writes(R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase)
|
||||||
|
){
|
||||||
|
/* Pop 4 arguments from the tape directly into the workspace registers */
|
||||||
|
load_word(R_PrimCursor, R_TapePtr, O_(Binds_FloorTri,PrimCursor)),
|
||||||
|
load_word(R_FaceCursor, R_TapePtr, O_(Binds_FloorTri,FaceCursor)),
|
||||||
|
load_word(R_VertBase, R_TapePtr, O_(Binds_FloorTri,VertBase)),
|
||||||
|
load_word(R_OtBase, R_TapePtr, O_(Binds_FloorTri,OtBase)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_FloorTri)),
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
// atom_dbg_skip
|
||||||
|
internal
|
||||||
|
MipsAtom_(floor_f3_face) atom_info(atom_phase(floor_f3)
|
||||||
|
, atom_reads( R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase)
|
||||||
|
, atom_writes(R_PrimCursor, R_FaceCursor)
|
||||||
|
) {
|
||||||
|
mac_load_tri_indices( R_T0, R_T1, R_T2),
|
||||||
|
mac_gte_load_tri_verts(R_T0, R_T1, R_T2),
|
||||||
|
nop2, gte_cmdw_rotate_translate_perspective_triple, // 2 nops retire the final cpu -> gte writes before RTPT
|
||||||
|
gte_cmdw_nclip,
|
||||||
|
|
||||||
|
/* Culling (Branch forward if Backface) */
|
||||||
|
gte_mv_from_data_r(R_T0, C2_MAC0),
|
||||||
|
nop, branch_le_zero(R_T0, atom_offset(culling, floor_f3_face_exit)), nop, // required gte -> cpu load-delay slot.
|
||||||
|
/* Format Primitive */
|
||||||
|
mac_gte_store_f3(),
|
||||||
|
|
||||||
|
/* Calculate Depth */
|
||||||
|
gte_avg_sort_z3,
|
||||||
|
gte_mv_from_data_r(R_T1, C2_OTZ),
|
||||||
|
/* Bounds Check OTZ < OrderingTbl_Len (Branch forward to skip insertion) */
|
||||||
|
add_ui( R_AT, R_0, OrderingTbl_Len),
|
||||||
|
set_lt_u( R_AT, R_T1, R_AT),
|
||||||
|
branch_equal(R_AT, R_0, atom_offset(bounds_chk, floor_f3_face_exit)), nop,
|
||||||
|
mac_format_f3_color(0xFF, 0xFF, 0xFF), // RGB-form (R=FF, G=FF, B=FF = white)
|
||||||
|
mac_insert_ot_tag_f3(), /* Insert into Ordering Table Linked List */
|
||||||
|
add_ui_self(R_PrimCursor, S_(Poly_F3)), /* Advance Prim Cursor (5 words) */
|
||||||
|
// Note(Ed): No bounds checking, should be checked before atom runs.
|
||||||
|
// end: branch(bounds_chk)
|
||||||
|
// end: branch(culling)
|
||||||
|
|
||||||
|
/* Advance Input Cursor & Yield (Both branch targets land here) */
|
||||||
|
atom_label(floor_f3_face_exit)
|
||||||
|
add_ui_self(R_FaceCursor, S_(S2) * 4), /* Advance Face Cursor (4 * S2 = 8 bytes) */
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef Struct_(Binds_SyncPrimitiveArena) { U4 used; U4 cursor; };
|
||||||
|
internal MipsAtom_(sync_primitive_arena) atom_info(atom_bind(Binds_SyncPrimitiveArena)
|
||||||
|
, atom_reads( R_TapePtr, R_PrimCursor)
|
||||||
|
, atom_writes(R_TapePtr)
|
||||||
|
){
|
||||||
|
load_word(R_AT, R_TapePtr, O_(Binds_SyncPrimitiveArena,used)),
|
||||||
|
load_word(R_T0, R_TapePtr, O_(Binds_SyncPrimitiveArena,cursor)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_SyncPrimitiveArena)),
|
||||||
|
/* Calculate byte offset and store directly back to RAM */
|
||||||
|
sub_u( R_T0, R_PrimCursor, R_T0), // R_T0 = R_PrimCursor - binds.cursor
|
||||||
|
store_word(R_T0, R_AT, 0), // R_AT[0] = R_T0
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
#pragma endregion Baked Atoms
|
||||||
@@ -0,0 +1,41 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
#pragma once
|
||||||
|
#endif
|
||||||
|
// Auto-generated by ps1_meta.lua — DO NOT EDIT
|
||||||
|
// Directory: C:\projects\Pikuma\ps1\code\hello_joypad/
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_joypad\hello_joypad.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_joypad\hello_joypad.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_joypad\hello_joypad.atom.c
|
||||||
|
// Component atoms (MipsAtomComp_(ac_*)) -> macro variants (mac_*)
|
||||||
|
|
||||||
|
#ifndef WORD_COUNT
|
||||||
|
#define WORD_COUNT(name, count) enum { words_##name = (count) };
|
||||||
|
#endif
|
||||||
|
|
||||||
|
#define mac_put_disp_env(reg_transfer, reg_base, port) \
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_top_left_origin, reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_set_mask_bit(), reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_draw_area_top_left_origin, reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port)
|
||||||
|
WORD_COUNT(mac_put_disp_env, 5)
|
||||||
|
|
||||||
|
#define mac_put_draw_env(reg_transfer, reg_base, port) \
|
||||||
|
mac_gcmd_push(gp0_dr_env_tag, reg_transfer, reg_base, port) /* tag (length=15 << 24, addr=0) — packet header for the DR_ENV sequence. The GPU needs this to recognize the next 15 words as a DR_ENV packet and trigger the isbg auto-clear. */ \
|
||||||
|
, mac_gcmd_push(gp0_word_draw_mode_drawing_allowed, reg_transfer, reg_base, port) /* code[0] DrawMode (dfe=1, dtd=0, tpage=0) */ \
|
||||||
|
, mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port) /* code[1] TextureWindow (tw=(0,0)) */ \
|
||||||
|
, mac_gcmd_push(enc_gp0_draw_area_tl_word(0, ScreenRes_Y), reg_transfer, reg_base, port) /* code[2] DrawArea top-left (clip.x=0, clip.y=ScreenRes_Y=240) */ \
|
||||||
|
, mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port) /* code[3] DrawArea bottom-right (clip.x+w=320, clip.y+h=480) */ \
|
||||||
|
, mac_gcmd_push(gp0_word_set_draw_offset(), reg_transfer, reg_base, port) /* code[4] DrawOffset (ofs=(0,0)) — bare-cmd word; the GPU uses the current state machine. */ \
|
||||||
|
, mac_gcmd_push(gp0_word_dr_env_mask(), reg_transfer, reg_base, port) /* code[5] Mask (dtd=0, dfe=1, isbg=1) — 0xE6 cmd + isbg bit. */ \
|
||||||
|
, mac_gcmd_push(gp0_word_dr_env_bg_color_cmd(1, 7, 7, 7), reg_transfer, reg_base, port) /* code[6] Initial-bg-color + auto-clear (isbg=1, r=7, g=7, b=7). */ \
|
||||||
|
, mac_gcmd_push(gp0_word_dr_env_draw_mode(1), reg_transfer, reg_base, port) /* code[7] Re-assert DrawMode with isbg=1 (isbg-flag set; the 0xE1 cmd byte plus isbg only). */ /* code[8..10] Padding (NOP — GPU discards; the DR_ENV requires 16 words total). */ \
|
||||||
|
, mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port) /* code[11..12] TextureWindow bottom-right (tw.x+tw.w=0, tw.y+tw.h=0) — libpsyx emits twice. */ \
|
||||||
|
, mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port) /* code[13..14] Padding (NOP) — completes the 16-word packet. */ \
|
||||||
|
, mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port) \
|
||||||
|
, mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port)
|
||||||
|
WORD_COUNT(mac_put_draw_env, 16)
|
||||||
|
|
||||||
@@ -0,0 +1,76 @@
|
|||||||
|
// Auto-generated by ps1_meta.lua (passes/offsets.lua) — DO NOT EDIT
|
||||||
|
// Directory: C:\projects\Pikuma\ps1\code\hello_joypad\
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_joypad\hello_joypad.c
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_joypad\hello_joypad.h
|
||||||
|
// source: C:\projects\Pikuma\ps1\code\hello_joypad\hello_joypad.atom.c
|
||||||
|
#pragma once
|
||||||
|
|
||||||
|
#pragma region hello_joypad
|
||||||
|
|
||||||
|
|
||||||
|
// --- atom: cube_g4_face (76 words) ---
|
||||||
|
|
||||||
|
#define _atom_offset_cull_cube_g4_face_exit 41
|
||||||
|
#define _atom_offset_bounds_chk_cube_g4_face_exit 24
|
||||||
|
|
||||||
|
enum {
|
||||||
|
atom_offset_cull_cube_g4_face_exit = _atom_offset_cull_cube_g4_face_exit,
|
||||||
|
atom_offset_bounds_chk_cube_g4_face_exit = _atom_offset_bounds_chk_cube_g4_face_exit,
|
||||||
|
};
|
||||||
|
|
||||||
|
// --- atom: floor_f3_face (58 words) ---
|
||||||
|
|
||||||
|
#define _atom_offset_culling_floor_f3_face_exit 25
|
||||||
|
#define _atom_offset_bounds_chk_floor_f3_face_exit 16
|
||||||
|
|
||||||
|
enum {
|
||||||
|
atom_offset_culling_floor_f3_face_exit = _atom_offset_culling_floor_f3_face_exit,
|
||||||
|
atom_offset_bounds_chk_floor_f3_face_exit = _atom_offset_bounds_chk_floor_f3_face_exit,
|
||||||
|
};
|
||||||
|
|
||||||
|
// --- atom: pad_bios_snapshot (78 words) ---
|
||||||
|
|
||||||
|
#define _atom_offset_snap_root_skip_disconnected 8
|
||||||
|
#define _atom_offset_disconnected_snap_end 61
|
||||||
|
#define _atom_offset_case_2_id_dispatch 8
|
||||||
|
#define _atom_offset_pending_snap_end 51
|
||||||
|
#define _atom_offset_id_dispatch_try_analog_stick 11
|
||||||
|
#define _atom_offset_id_dispatch_snap_end 38
|
||||||
|
#define _atom_offset_try_analog_stick_try_analog_pad 12
|
||||||
|
#define _atom_offset_analog_stick_snap_end 24
|
||||||
|
#define _atom_offset_try_analog_pad_try_unsupported 11
|
||||||
|
#define _atom_offset_analog_pad_snap_end 10
|
||||||
|
|
||||||
|
enum {
|
||||||
|
atom_offset_snap_root_skip_disconnected = _atom_offset_snap_root_skip_disconnected,
|
||||||
|
atom_offset_disconnected_snap_end = _atom_offset_disconnected_snap_end,
|
||||||
|
atom_offset_case_2_id_dispatch = _atom_offset_case_2_id_dispatch,
|
||||||
|
atom_offset_pending_snap_end = _atom_offset_pending_snap_end,
|
||||||
|
atom_offset_id_dispatch_try_analog_stick = _atom_offset_id_dispatch_try_analog_stick,
|
||||||
|
atom_offset_id_dispatch_snap_end = _atom_offset_id_dispatch_snap_end,
|
||||||
|
atom_offset_try_analog_stick_try_analog_pad = _atom_offset_try_analog_stick_try_analog_pad,
|
||||||
|
atom_offset_analog_stick_snap_end = _atom_offset_analog_stick_snap_end,
|
||||||
|
atom_offset_try_analog_pad_try_unsupported = _atom_offset_try_analog_pad_try_unsupported,
|
||||||
|
atom_offset_analog_pad_snap_end = _atom_offset_analog_pad_snap_end,
|
||||||
|
};
|
||||||
|
|
||||||
|
// --- atom: pad_apply_input (60 words) ---
|
||||||
|
|
||||||
|
#define _atom_offset_dpad_left_exit_dpad_left 6
|
||||||
|
#define _atom_offset_dpad_right_exit_dpad_right 6
|
||||||
|
#define _atom_offset_dead_zone_low_check_dead_low_active 8
|
||||||
|
#define _atom_offset_dead_zone_high_check_dead_high_active 15
|
||||||
|
#define _atom_offset_dead_zone_skip_exit_stick 24
|
||||||
|
#define _atom_offset_end_low_exit_stick 12
|
||||||
|
|
||||||
|
enum {
|
||||||
|
atom_offset_dpad_left_exit_dpad_left = _atom_offset_dpad_left_exit_dpad_left,
|
||||||
|
atom_offset_dpad_right_exit_dpad_right = _atom_offset_dpad_right_exit_dpad_right,
|
||||||
|
atom_offset_dead_zone_low_check_dead_low_active = _atom_offset_dead_zone_low_check_dead_low_active,
|
||||||
|
atom_offset_dead_zone_high_check_dead_high_active = _atom_offset_dead_zone_high_check_dead_high_active,
|
||||||
|
atom_offset_dead_zone_skip_exit_stick = _atom_offset_dead_zone_skip_exit_stick,
|
||||||
|
atom_offset_end_low_exit_stick = _atom_offset_end_low_exit_stick,
|
||||||
|
};
|
||||||
|
|
||||||
|
#pragma endregion hello_joypad
|
||||||
|
|
||||||
@@ -0,0 +1,638 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# pragma once
|
||||||
|
# include "duffle/gen/macs.h"
|
||||||
|
# include "duffle/gen/offsets.h"
|
||||||
|
# include "duffle/dsl.atom.h"
|
||||||
|
# include "duffle/lottes_tape.h"
|
||||||
|
# include "duffle/mips.h"
|
||||||
|
# include "duffle/gte.h"
|
||||||
|
# include "duffle/gp.h"
|
||||||
|
# include "duffle/pad.h"
|
||||||
|
# include "duffle/word_count.metadata.h"
|
||||||
|
# include "duffle/psyq.h"
|
||||||
|
# include "duffle/math.atom.c"
|
||||||
|
# include "duffle/mips.atom.c"
|
||||||
|
# include "duffle/gte.atom.c"
|
||||||
|
# include "duffle/gp.atom.c"
|
||||||
|
# include "duffle/psyq.atom.c"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
# include "gen/macs.h"
|
||||||
|
# include "hello_joypad.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
ATOM_FILE_DEBUGGER_LINE_MARKER(hello_joypad_atom_c);
|
||||||
|
|
||||||
|
#pragma region MACs (Mips Atom components)
|
||||||
|
|
||||||
|
FI_ Slice_MipsCode ac_put_disp_env(U4 reg_transfer, U4 reg_base, U2 port)
|
||||||
|
MipsAtomComp_Proc_(ac_put_disp_env, {
|
||||||
|
// Emits 5 GP0 commands for buffer 0 (display_area = (0,0,320,240)).
|
||||||
|
// Sequence per libpsyx PutDispEnv: DrawArea TL → DrawArea BR → Mask → DrawArea TL → DrawArea BR
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_top_left_origin, reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_set_mask_bit(), reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_top_left_origin, reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port),
|
||||||
|
})
|
||||||
|
|
||||||
|
FI_ Slice_MipsCode ac_put_draw_env(U4 reg_transfer, U4 reg_base, U2 port)
|
||||||
|
MipsAtomComp_Proc_(ac_put_draw_env, {
|
||||||
|
/*
|
||||||
|
* ORIGIN: each code word corresponds to the EXACT value libpsyx's PutDrawEnv function would compute for the same DrawEnv settings.
|
||||||
|
* References:
|
||||||
|
* - libpsyx source: `toolchain/psyq-4_7/lib/libgpu.a` (binary, function `PutDrawEnv`)
|
||||||
|
* - PSX-SPX doc: https://problemkaputt.de/psx-spx.htm#gputdrawingcommands
|
||||||
|
* - PSYQ SDK: `setdrawenv` / `makelongdr_env` source
|
||||||
|
* - NOCASH PSX spec: §"GP0(E1h) Draw Mode setting" through §"DR_ENV"
|
||||||
|
*
|
||||||
|
* The 16-word format is documented in the PSYQ SDK manual and on NOCASH's PSX-spec.txt. The libpsyx reference is at:
|
||||||
|
* ./toolchain/psyq-4_7/lib/libgpu.a
|
||||||
|
* (binary; the PutDrawEnv implementation builds the 16-word DR_ENV from the user's DRAWENV struct and emits it via GP0 GPU commands.)
|
||||||
|
*
|
||||||
|
* Word indices (libpsyx PutDrawEnv / SetDrawEnv order):
|
||||||
|
* tag = (length << 24) | addr — 16-word packet (1 tag + 15 code)
|
||||||
|
* code[0] = DrawMode (dfe=1, dtd=0, tpage=0) — must come first per libpsyx
|
||||||
|
* code[1] = TextureWindow (tw=(0,0)) — bare-cmd word; GPU uses current state
|
||||||
|
* code[2] = DrawArea top-left (clip.x=0, clip.y=240)
|
||||||
|
* code[3] = DrawArea bottom-right (clip.x+w=320, clip.y+h=480)
|
||||||
|
* code[4] = DrawOffset (ofs=(0,0)) — bare-cmd word
|
||||||
|
* code[5] = Mask (dtd=0, dfe=1, isbg=1) — 0xE6 cmd + isbg bit
|
||||||
|
* code[6] = Initial-bg-color (isbg=1, r=7, g=7, b=7)
|
||||||
|
* code[7] = DrawMode (isbg=1, tpage=0) — re-asserts DrawMode with isbg
|
||||||
|
* code[8..10] = padding (NOP) — 3 words to fill the packet
|
||||||
|
* code[11..12] = TextureWindow bottom-right — defaults to (0,0,0,0)
|
||||||
|
* code[13..14] = padding (NOP) — completes the 16-word packet
|
||||||
|
*/
|
||||||
|
mac_gcmd_push(gp0_dr_env_tag, reg_transfer, reg_base, port), /* tag (length=15 << 24, addr=0) — packet header for the DR_ENV sequence. The GPU needs this to recognize the next 15 words as a DR_ENV packet and trigger the isbg auto-clear. */
|
||||||
|
mac_gcmd_push(gp0_word_draw_mode_drawing_allowed, reg_transfer, reg_base, port), /* code[0] DrawMode (dfe=1, dtd=0, tpage=0) */
|
||||||
|
mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port), /* code[1] TextureWindow (tw=(0,0)) */
|
||||||
|
mac_gcmd_push(enc_gp0_draw_area_tl_word(0, ScreenRes_Y), reg_transfer, reg_base, port), /* code[2] DrawArea top-left (clip.x=0, clip.y=ScreenRes_Y=240) */
|
||||||
|
mac_gcmd_push(gp0_word_draw_area_bottom_right_320x240, reg_transfer, reg_base, port), /* code[3] DrawArea bottom-right (clip.x+w=320, clip.y+h=480) */
|
||||||
|
|
||||||
|
mac_gcmd_push(gp0_word_set_draw_offset(), reg_transfer, reg_base, port), /* code[4] DrawOffset (ofs=(0,0)) — bare-cmd word; the GPU uses the current state machine. */
|
||||||
|
mac_gcmd_push(gp0_word_dr_env_mask(), reg_transfer, reg_base, port), /* code[5] Mask (dtd=0, dfe=1, isbg=1) — 0xE6 cmd + isbg bit. */
|
||||||
|
mac_gcmd_push(gp0_word_dr_env_bg_color_cmd(1, 7, 7, 7), reg_transfer, reg_base, port), /* code[6] Initial-bg-color + auto-clear (isbg=1, r=7, g=7, b=7). */
|
||||||
|
mac_gcmd_push(gp0_word_dr_env_draw_mode(1), reg_transfer, reg_base, port), /* code[7] Re-assert DrawMode with isbg=1 (isbg-flag set; the 0xE1 cmd byte plus isbg only). */
|
||||||
|
|
||||||
|
/* code[8..10] Padding (NOP — GPU discards; the DR_ENV requires 16 words total). */
|
||||||
|
mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port),
|
||||||
|
|
||||||
|
/* code[11..12] TextureWindow bottom-right (tw.x+tw.w=0, tw.y+tw.h=0) — libpsyx emits twice. */
|
||||||
|
mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_set_texture_window(), reg_transfer, reg_base, port),
|
||||||
|
|
||||||
|
/* code[13..14] Padding (NOP) — completes the 16-word packet. */
|
||||||
|
mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port),
|
||||||
|
mac_gcmd_push(gp0_word_nop(), reg_transfer, reg_base, port),
|
||||||
|
})
|
||||||
|
|
||||||
|
#pragma endregion MACs
|
||||||
|
|
||||||
|
#pragma region Baked Atoms
|
||||||
|
|
||||||
|
enum {
|
||||||
|
R_ScreenX = R_T5 atom_reg atom_type(U2),
|
||||||
|
R_ScreenY = R_T6 atom_reg atom_type(U2),
|
||||||
|
R_ScreenBuf = R_T7 atom_reg, /* Caller-pinned: & smem.screen_buf */
|
||||||
|
#define R_ScreenBuf_Code R_T7_Code
|
||||||
|
};
|
||||||
|
//screen_env_init. Mirrors the libpsyx's SetDefDispEnv + SetDefDrawEnv + the manual enable_auto_clear / initial_bg_color writes.
|
||||||
|
internal MipsAtom_(screen_env_init) atom_info(atom_phase(screen_init)
|
||||||
|
, atom_reads(R_T0, R_ScreenX, R_ScreenY, R_ScreenBuf)
|
||||||
|
, atom_writes(R_T0, R_ScreenX, R_ScreenY)
|
||||||
|
) {
|
||||||
|
/* display[0] = (0, 0, 320, 240); rest of struct zeroed. */
|
||||||
|
add_ui(R_ScreenX, R_0, ScreenRes_X), add_ui(R_ScreenY, R_0, ScreenRes_Y),
|
||||||
|
mac_store_v2s2(R_ScreenX, R_ScreenY, R_ScreenBuf, O_(DisplayEnv,display_area.width) + OA_(DoubleBuffer,display,0)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DisplayEnv,display_area) + OA_(DoubleBuffer,display,0)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DisplayEnv,screen) + OA_(DoubleBuffer,display,0)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DisplayEnv,vinterlace) + OA_(DoubleBuffer,display,0)),
|
||||||
|
|
||||||
|
/* display[1] = (0, 240, 320, 240); rest of struct zeroed. */
|
||||||
|
mac_store_rects2(R_0, R_ScreenY, R_ScreenX, R_ScreenY, R_ScreenBuf, O_(DisplayEnv,display_area) + OA_(DoubleBuffer,display,1)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DisplayEnv,screen) + OA_(DoubleBuffer,display,1)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DisplayEnv,vinterlace) + OA_(DoubleBuffer,display,1)),
|
||||||
|
|
||||||
|
mac_store_rects2(R_0, R_ScreenY, R_ScreenX, R_ScreenY, R_ScreenBuf, O_(DrawEnv,clip_area) + OA_(DoubleBuffer,draw,0)), /* draw[0].clip_area = (0, 240, 320, 240). C11's SetDefDrawEnv writes clip.y = y_arg. */
|
||||||
|
mac_store_v2s2( R_0, R_ScreenY, R_ScreenBuf, O_(DrawEnv,drawing_offset[0]) + OA_(DoubleBuffer,draw,0)), /* draw[0].drawing_offset[0] = (0, 240); C11 passes y_arg as ofs. */
|
||||||
|
|
||||||
|
mac_store_v2s2(R_ScreenX, R_ScreenY, R_ScreenBuf, O_(DrawEnv,clip_area.width) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
|
||||||
|
/* draw[0].texture_window = (0, 0, 0, 0); two word-zeroes cover the full 8-byte tw field. */
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DrawEnv,texture_window.x) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DrawEnv,texture_window.width) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DrawEnv,drawing_offset[0].x) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DrawEnv,texture_window.x) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
store_word(R_0, R_ScreenBuf, O_(DrawEnv,texture_window.width) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
|
||||||
|
/* draw[0].texture_page = 10 (gp0_tpage_default). C11 SetDefDrawEnv at C11_only.elf:0x8001273C writes the same 0x0A. . */
|
||||||
|
add_ui(R_T0, R_0, gp0_tpage_default),
|
||||||
|
store_half(R_T0, R_ScreenBuf, O_(DrawEnv,texture_page) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
store_half(R_T0, R_ScreenBuf, O_(DrawEnv,texture_page) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
|
||||||
|
/* draw[0] control bytes: flag_dither=1, flag_draw_on_display=1 (the dfe bit per psx-spx; libpsyx sets it via `SetDefDrawEnv`'s conditional at C11_only.elf:0x80012728), enable_auto_clear=1. Each byte is named;
|
||||||
|
* the previous `store_word(R_0, ..., +20)` overwrote all four with zero. */
|
||||||
|
add_ui(R_T0, R_0, 1),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,flag_dither) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,flag_draw_on_display) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,enable_auto_clear) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,flag_dither) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,flag_draw_on_display) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
store_byte(R_T0, R_ScreenBuf, O_(DrawEnv,enable_auto_clear) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
|
||||||
|
/* draw[0].initial_bg_color = (r=7, g=7, b=7). */
|
||||||
|
add_ui(R_T0, R_0, 7),
|
||||||
|
mac_store_rgb8(R_T0,R_T0,R_T0, R_ScreenBuf, O_(DrawEnv,initial_bg_color) + OA_(DoubleBuffer,draw,0)),
|
||||||
|
mac_store_rgb8(R_T0,R_T0,R_T0, R_ScreenBuf, O_(DrawEnv,initial_bg_color) + OA_(DoubleBuffer,draw,1)),
|
||||||
|
|
||||||
|
mac_yield(),
|
||||||
|
};
|
||||||
|
|
||||||
|
enum {
|
||||||
|
R_IO_BaseAddr = R_T4 atom_reg, /* Caller-pinned: IO_BASE_ADDR = 0x1F800000 */
|
||||||
|
#define R_IO_BaseAddr_Code R_T4_Code
|
||||||
|
};
|
||||||
|
internal MipsAtom_(gp_screen_init) atom_info(atom_phase(screen_init), atom_reads(R_IO_BaseAddr)) {
|
||||||
|
store_word(R_0, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(00h) Reset */
|
||||||
|
mac_gcmd_push(gp1_word_ResetCmdBuffer(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(01h) ClearFIFO */
|
||||||
|
mac_gcmd_push(gp1_word_AcknowledgeIRQ(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(02h) AckIRQ */
|
||||||
|
mac_gcmd_push(gp1_word_DisplayOn(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(03h) Display ON */
|
||||||
|
mac_gcmd_push(gp1_word_dma_to_gpu(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(04h) DMADirection=2 (CPU→GPU). libpsyx's per-frame PutDrawEnv/DrawOTag use DMA2; without this the DMA queue never drains. */
|
||||||
|
mac_gcmd_push(gp1_word_StartDisplayArea(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET), /* GP1(05h) StartDisplayArea (X=0, Y=0) */
|
||||||
|
|
||||||
|
/* GP1: DisplayMode + Display Ranges */
|
||||||
|
mac_gcmd_push(gp1_word_display_mode_320x240_15bit_ntsc, R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET),
|
||||||
|
mac_gcmd_push(gp1_word_horizontal_range_ntsc, R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET),
|
||||||
|
mac_gcmd_push(gp1_word_vertical_range_ntsc, R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET),
|
||||||
|
|
||||||
|
/* GTE: SetGeomOffset (OFX, OFY) — ScreenRes_CenterX, ScreenRes_CenterY. */
|
||||||
|
load_upper_i(R_T5, ScreenRes_CenterX), gte_mv_to_ctrl_r(R_T5, gte_cr_OFX_Code),
|
||||||
|
load_upper_i(R_T5, ScreenRes_CenterY), gte_mv_to_ctrl_r(R_T5, gte_cr_OFY_Code),
|
||||||
|
|
||||||
|
/* GTE: SetGeomScreen (H) — CR26 (per PSX-SPX / libpsyx), value is the raw projection-plane distance, NOT shifted. */
|
||||||
|
add_ui(R_T5, R_0, ScreenZ), gte_mv_to_ctrl_r(R_T5, gte_cr_H_Code),
|
||||||
|
|
||||||
|
/* GP1: DisplayEnable — bit 0 = 0 (Display ON). */
|
||||||
|
mac_gcmd_push(gp1_word_DisplayOn(), R_T5, R_IO_BaseAddr, GPIO_PORT1_OFFSET),
|
||||||
|
mac_yield(),
|
||||||
|
};
|
||||||
|
|
||||||
|
enum {
|
||||||
|
R_PrimCursor = R_T7 atom_reg atom_type(U4*), /* VRAM output cursor (primitive buffer) */
|
||||||
|
R_FaceCursor = R_T4 atom_reg atom_type(V4_S2*), /* Cube face-index cursor (V4_S2*); floor context switches to V3_S2* via atom_phase */
|
||||||
|
R_VertBase = R_T5 atom_reg atom_type(V3_S2*), /* Base address of the vertex array */
|
||||||
|
R_OtBase = R_T6 atom_reg atom_type(U4*), /* Base address of the Ordering Table */
|
||||||
|
#define R_PrimCursor_Code R_T7_Code
|
||||||
|
#define R_FaceCursor_Code R_T4_Code
|
||||||
|
#define R_VertBase_Code R_T5_Code
|
||||||
|
#define R_OtBase_Code R_T6_Code
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef Struct_(Binds_CubeTri) {
|
||||||
|
U4 PrimCursor;
|
||||||
|
V4_S2* FaceCursor;
|
||||||
|
V3_S2* VertBase;
|
||||||
|
U4* OtBase;
|
||||||
|
};
|
||||||
|
internal MipsAtom_(rbind_cube_g4_face) atom_info(atom_bind(Binds_CubeTri), atom_phase(cube_g4)
|
||||||
|
, atom_reads(R_TapePtr)
|
||||||
|
, atom_writes(R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase, R_TapePtr)
|
||||||
|
){
|
||||||
|
/* Pop 4 arguments from the tape directly into the workspace registers */
|
||||||
|
load_word(R_PrimCursor, R_TapePtr, O_(Binds_CubeTri,PrimCursor)),
|
||||||
|
load_word(R_FaceCursor, R_TapePtr, O_(Binds_CubeTri,FaceCursor)),
|
||||||
|
load_word(R_VertBase, R_TapePtr, O_(Binds_CubeTri,VertBase)),
|
||||||
|
load_word(R_OtBase, R_TapePtr, O_(Binds_CubeTri,OtBase)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_CubeTri)),
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
// cube_g4_face — Draw one cube face (Gouraud-shaded quad) via the GTE tape pipeline
|
||||||
|
internal
|
||||||
|
MipsAtom_(cube_g4_face) atom_info(atom_phase(cube_g4),
|
||||||
|
atom_reads( R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase),
|
||||||
|
atom_writes(R_PrimCursor, R_FaceCursor)
|
||||||
|
){
|
||||||
|
load_half_u(R_T0, R_FaceCursor, 0 * S_(S2)),
|
||||||
|
load_half_u(R_T1, R_FaceCursor, 1 * S_(S2)),
|
||||||
|
load_half_u(R_T2, R_FaceCursor, 2 * S_(S2)),
|
||||||
|
load_half_u(R_T3, R_FaceCursor, 3 * S_(S2)),
|
||||||
|
|
||||||
|
mac_gte_load_tri_verts(R_VertBase, R_T0, R_T1, R_T2),
|
||||||
|
nop2, gte_cmdw_rotate_translate_perspective_triple, // required cpu -> gte delay slot
|
||||||
|
gte_cmdw_nclip,
|
||||||
|
|
||||||
|
gte_mv_from_data_r(R_T0, C2_MAC0), nop,
|
||||||
|
branch_le_zero(R_T0, atom_offset(cull, cube_g4_face_exit)),
|
||||||
|
/* BD-slot: write the prim tag (R_0=0; overwrites the legacy tag word in the prim_buffer).
|
||||||
|
* If branch IS taken (face culled), the body is skipped and this 0-tag is stranded —
|
||||||
|
* harmless because the OT entry that points to this prim is created later, only on the body path. */
|
||||||
|
store_word(R_0, R_PrimCursor, O_(Poly_G4, tag)),
|
||||||
|
shift_lleft(R_AT, R_T3, v3s2_byteoff), add_u(R_AT, R_AT, R_VertBase),
|
||||||
|
load_word(R_V0, R_AT, O_(V3_S2, x)), load_word(R_V1, R_AT, O_(V3_S2, z)),
|
||||||
|
gte_mv_to_data_r(R_V0, C2_VXY0), gte_mv_to_data_r(R_V1, C2_VZ0),
|
||||||
|
|
||||||
|
mac_gte_store_g4_p012(R_PrimCursor),
|
||||||
|
gte_cmdw_rotate_translate_perspective_single,
|
||||||
|
mac_gte_store_g4_p3(R_PrimCursor),
|
||||||
|
|
||||||
|
gte_cmdw_avg_sort_z4,
|
||||||
|
gte_mv_from_data_r(R_T1, C2_OTZ),
|
||||||
|
add_ui( R_AT, R_0, OrderingTbl_Len),
|
||||||
|
set_lt_u( R_AT, R_T1, R_AT),
|
||||||
|
|
||||||
|
branch_equal(R_AT, R_0, atom_offset(bounds_chk, cube_g4_face_exit)), nop,
|
||||||
|
mac_insert_ot_tag_g4(R_OtBase, R_PrimCursor),
|
||||||
|
mac_format_g4_color(R_PrimCursor,
|
||||||
|
/* c0 magenta */ 0xFF, 0x00, 0xFF,
|
||||||
|
/* c1 yellow */ 0xFF, 0xFF, 0x00,
|
||||||
|
/* c2 cyan */ 0x00, 0xFF, 0xFF,
|
||||||
|
/* c3 green */ 0x00, 0xFF, 0x00),
|
||||||
|
// end: branch(bounds_chk)
|
||||||
|
// end: branch(cull)
|
||||||
|
|
||||||
|
atom_label(cube_g4_face_exit)
|
||||||
|
add_ui_self(R_PrimCursor, S_(Poly_G4)), /* 9 words = Poly_G4 */
|
||||||
|
add_ui_self(R_FaceCursor, S_(S2) * 4), /* 4 × S2 = 8 bytes */
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef Struct_(Binds_FloorTri) {
|
||||||
|
U4 PrimCursor;
|
||||||
|
V3_S2* FaceCursor;
|
||||||
|
V3_S2* VertBase;
|
||||||
|
U4* OtBase;
|
||||||
|
};
|
||||||
|
internal
|
||||||
|
MipsAtom_(rbind_floor_f3_face) atom_info(atom_bind(Binds_FloorTri), atom_phase(floor_f3)
|
||||||
|
, atom_reads(R_TapePtr)
|
||||||
|
, atom_writes(R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase, R_TapePtr)
|
||||||
|
){
|
||||||
|
/* Pop 4 arguments from the tape directly into the workspace registers */
|
||||||
|
load_word(R_PrimCursor, R_TapePtr, O_(Binds_FloorTri,PrimCursor)),
|
||||||
|
load_word(R_FaceCursor, R_TapePtr, O_(Binds_FloorTri,FaceCursor)),
|
||||||
|
load_word(R_VertBase, R_TapePtr, O_(Binds_FloorTri,VertBase)),
|
||||||
|
load_word(R_OtBase, R_TapePtr, O_(Binds_FloorTri,OtBase)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_FloorTri)),
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
// atom_dbg_skip
|
||||||
|
internal
|
||||||
|
MipsAtom_(floor_f3_face) atom_info(atom_phase(floor_f3)
|
||||||
|
, atom_reads( R_PrimCursor, R_FaceCursor, R_VertBase, R_OtBase)
|
||||||
|
, atom_writes(R_PrimCursor, R_FaceCursor)
|
||||||
|
) {
|
||||||
|
mac_load_tri_indices( R_FaceCursor, R_T0, R_T1, R_T2),
|
||||||
|
mac_gte_load_tri_verts(R_VertBase, R_T0, R_T1, R_T2),
|
||||||
|
nop2, gte_cmdw_rotate_translate_perspective_triple, // 2 nops retire the final cpu -> gte writes before RTPT
|
||||||
|
gte_cmdw_nclip,
|
||||||
|
|
||||||
|
/* Culling (Branch forward if Backface) */
|
||||||
|
gte_mv_from_data_r(R_T0, C2_MAC0),
|
||||||
|
nop, branch_le_zero(R_T0, atom_offset(culling, floor_f3_face_exit)), nop, // required gte -> cpu load-delay slot.
|
||||||
|
/* Format Primitive */
|
||||||
|
mac_gte_store_f3(R_PrimCursor),
|
||||||
|
|
||||||
|
/* Calculate Depth */
|
||||||
|
gte_avg_sort_z3,
|
||||||
|
gte_mv_from_data_r(R_T1, C2_OTZ),
|
||||||
|
/* Bounds Check OTZ < 2048 (Branch forward to skip insertion) */
|
||||||
|
add_ui( R_AT, R_0, OrderingTbl_Len),
|
||||||
|
set_lt_u( R_AT, R_T1, R_AT),
|
||||||
|
branch_equal(R_AT, R_0, atom_offset(bounds_chk, floor_f3_face_exit)), nop,
|
||||||
|
mac_format_f3_color(R_PrimCursor, 0xFF, 0xFF, 0xFF), // RGB-form (R=FF, G=FF, B=FF = white)
|
||||||
|
mac_insert_ot_tag_f3(R_OtBase, R_PrimCursor), /* Insert into Ordering Table Linked List */
|
||||||
|
add_ui_self(R_PrimCursor, S_(Poly_F3)), /* Advance Prim Cursor (5 words) */
|
||||||
|
// Note(Ed): No bounds checking, should be checked before atom runs.
|
||||||
|
// end: branch(bounds_chk)
|
||||||
|
// end: branch(culling)
|
||||||
|
|
||||||
|
/* Advance Input Cursor & Yield (Both branch targets land here) */
|
||||||
|
atom_label(floor_f3_face_exit)
|
||||||
|
add_ui_self(R_FaceCursor, S_(S2) * 4), /* Advance Face Cursor (4 * S2 = 8 bytes) */
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
typedef Struct_(Binds_SyncPrimitiveArena) { U4 used; U4 cursor; };
|
||||||
|
internal MipsAtom_(sync_primitive_arena) atom_info(atom_bind(Binds_SyncPrimitiveArena)
|
||||||
|
, atom_reads( R_TapePtr, R_PrimCursor)
|
||||||
|
, atom_writes(R_TapePtr)
|
||||||
|
){
|
||||||
|
load_word(R_AT, R_TapePtr, O_(Binds_SyncPrimitiveArena,used)),
|
||||||
|
load_word(R_T0, R_TapePtr, O_(Binds_SyncPrimitiveArena,cursor)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_SyncPrimitiveArena)),
|
||||||
|
/* Calculate byte offset and store directly back to RAM */
|
||||||
|
sub_u( R_T0, R_PrimCursor, R_T0), // R_T0 = R_PrimCursor - binds.cursor
|
||||||
|
store_word(R_T0, R_AT, 0), // R_AT[0] = R_T0
|
||||||
|
mac_yield()
|
||||||
|
};
|
||||||
|
|
||||||
|
/* ----- pad_bios_snapshot -----
|
||||||
|
* Per-frame snapshot of one BIOS pad buffer into PadState.
|
||||||
|
* Decoder (branch ladder on raw[0] status + raw[1] id):
|
||||||
|
* 1. raw[0] == 0xFF -> Disconnected (buttons=0, axes=0x80)
|
||||||
|
* 2. raw[0]==0 && raw[1]==0 -> Pending (buttons=0, axes=0x80)
|
||||||
|
* 3. raw[1] == 0x41 -> Digital (buttons normalized; axes=0x80)
|
||||||
|
* 4. raw[1] == 0x53 -> AnalogStick (buttons normalized; axes from raw[4..7])
|
||||||
|
* 5. raw[1] in 0x7x -> AnalogPad (buttons normalized; axes from raw[4..7])
|
||||||
|
* 6. else -> Unsupported (buttons=0, axes=0x80)
|
||||||
|
*
|
||||||
|
* Buttons normalization: byte_swap16((~raw_buttons) & 0xFFFF).
|
||||||
|
* raw_buttons = load_half_u(raw, 2) = raw[2] | (raw[3] << 8).
|
||||||
|
* byte_swap16(x) = (x >> 8) | (x << 8); nor(x, R_0) = ~x. store_half truncates to 16 bits so the upper-16 mask is implicit in the store.
|
||||||
|
*
|
||||||
|
* Register use (atom-local; no wave-context touched):
|
||||||
|
* R_T0 = raw base (kept throughout; axes loads read raw[4..7] from R_T0)
|
||||||
|
* R_T1 = state base (kept throughout; all stores go through R_T1)
|
||||||
|
* R_T2 = raw[0] status (alive across the disc/pending/id dispatch, then dead)
|
||||||
|
* R_T3 = raw[1] id (alive across the id dispatch, then dead)
|
||||||
|
* R_T4 = scratch (shifts, compares, immediate loads, store values)
|
||||||
|
* R_T5 = scratch (parallel lui+ori for the 0x80808080 axes constant + byte-swap target)
|
||||||
|
*/
|
||||||
|
enum {
|
||||||
|
R_PadRaw = R_T0 atom_reg atom_type(U1),
|
||||||
|
R_PadState = R_T1 atom_reg,
|
||||||
|
R_RawStatus = R_T2 atom_reg,
|
||||||
|
R_RawId = R_T3 atom_reg,
|
||||||
|
};
|
||||||
|
typedef Struct_(Binds_PadBiosSnapshot) {
|
||||||
|
PadBiosRaw* raw;
|
||||||
|
PadState* state;
|
||||||
|
};
|
||||||
|
internal MipsAtom_(pad_bios_snapshot) atom_info(atom_bind(Binds_PadBiosSnapshot)
|
||||||
|
, atom_reads( R_PadRaw, R_PadState, R_RawStatus, R_RawId, R_T4, R_T5, R_TapePtr)
|
||||||
|
, atom_writes(R_PadRaw, R_PadState, R_RawStatus, R_RawId, R_T4, R_T5, R_TapePtr)
|
||||||
|
) {
|
||||||
|
/* === Bind consumption: T0 = raw, T1 = state, advance R_TapePtr by 8. */
|
||||||
|
load_word(R_PadRaw, R_TapePtr, O_(Binds_PadBiosSnapshot,raw)),
|
||||||
|
load_word(R_PadState, R_TapePtr, O_(Binds_PadBiosSnapshot,state)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_PadBiosSnapshot)),
|
||||||
|
|
||||||
|
/* === Read raw[0] (status) + raw[1] (id) */
|
||||||
|
load_byte_u(R_RawStatus, R_PadRaw, 0),
|
||||||
|
load_byte_u(R_RawId, R_PadRaw, 1),
|
||||||
|
|
||||||
|
atom_label(snap_root) /* === Case 1: Disconnected (status == 0xFF). */
|
||||||
|
add_ui(R_T4, R_0, 0xFF), branch_ne(R_RawStatus, R_T4, atom_offset(snap_root, skip_disconnected)),
|
||||||
|
/* BD-slot: pre-compute PadStatus_Disconnected. Branch reads R_T4=0xFF in EX before this WB completes.
|
||||||
|
* If branch NOT taken (fall through to pending/id_dispatch), R_T4 is overwritten by the next case body's add_ui — harmless. */
|
||||||
|
|
||||||
|
atom_label(disconnected) /* === Disconnected body. */
|
||||||
|
/* R_T4 = PadStatus_Disconnected from snap_root BD-slot. */
|
||||||
|
store_word(R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
store_half(R_0, R_PadState, O_(PadState,buttons)),
|
||||||
|
/* axes = 0x80808080 (centered) — single sw writes the 4-byte axes block at offset 8 (left_x, left_y, right_x, right_y). */
|
||||||
|
load_upper_i(R_T4, 0x8080), or_i_self(R_T4, 0x8080),
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,left_x)),
|
||||||
|
store_byte( R_RawId, R_PadState, O_(PadState,id)),
|
||||||
|
jump_rel(atom_offset(disconnected, snap_end)),
|
||||||
|
/* BD-slot: load next atom's entry point (replaces the nop).
|
||||||
|
* The unconditional branch always jumps to snap_end, where mac_yield_tail()
|
||||||
|
* transfers control to R_AtomJmp without re-loading it. */
|
||||||
|
mac_yield_load(),
|
||||||
|
atom_label(skip_disconnected)
|
||||||
|
|
||||||
|
/* === Case 2: Pending (status == 0 && id == 0)
|
||||||
|
* Combined check: if (status | id) != 0 then skip to id_dispatch.
|
||||||
|
* Falls through to the Pending case only when both are zero. */
|
||||||
|
or_u_self(R_RawStatus, R_RawId), branch_ne(R_RawStatus, R_0, atom_offset(case_2, id_dispatch)),
|
||||||
|
/* BD-slot: pre-compute PadStatus_Pending. Branch reads R_RawStatus in EX before this WB completes.
|
||||||
|
* If branch NOT taken (fall through to id_dispatch), R_T4 is overwritten by the digital/analog body add_ui — harmless. */
|
||||||
|
|
||||||
|
atom_label(pending) /* === Pending body */
|
||||||
|
/* R_T4 = PadStatus_Pending from case_2 BD-slot. */
|
||||||
|
store_word(R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
store_half(R_0, R_PadState, O_(PadState,buttons)),
|
||||||
|
/* axes = 0x80808080 (centered) — single sw writes the 4-byte axes block at offset 8 (left_x, left_y, right_x, right_y). */
|
||||||
|
load_upper_i(R_T4, 0x8080), or_i_self(R_T4, 0x8080),
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,left_x)),
|
||||||
|
store_byte( R_RawId, R_PadState, O_(PadState,id)),
|
||||||
|
jump_rel(atom_offset(pending, snap_end)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(id_dispatch) /* === Case 3-6: ID dispatch */
|
||||||
|
add_ui(R_T4, R_0, 0x41), branch_ne(R_RawId, R_T4, atom_offset(id_dispatch, try_analog_stick)),
|
||||||
|
/* BD-slot: pre-compute PadStatus_Digital. Branch reads R_RawId in EX before this WB completes.
|
||||||
|
* If branch NOT taken (fall through to try_analog_stick), R_T4 is overwritten by the analog body add_ui. */
|
||||||
|
|
||||||
|
/* === Digital body (status, buttons normalize, axes=0x80, id, branch. */
|
||||||
|
/* R_T4 = PadStatus_Digital from id_dispatch BD-slot. */
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
load_half_u(R_T4, R_PadRaw, 2 * S_(U1)),
|
||||||
|
/* Fill R_T4's load-delay slot with the 0x80808080 axes constant into R_T5
|
||||||
|
* (R_T5 is dead on this path; it's only consumed at the analog_pad range check). */
|
||||||
|
load_upper_i(R_T5, 0x8080), or_i_self(R_T5, 0x8080),
|
||||||
|
nor_u( R_T4, R_T4, R_0), /* raw_buttons is already in host bit order; no swap needed */
|
||||||
|
store_half( R_T4, R_PadState, O_(PadState,buttons)),
|
||||||
|
|
||||||
|
/* axes = 0x80808080 (centered) — single sw writes the 4-byte axes block at offset 8 (left_x, left_y, right_x, right_y). */
|
||||||
|
store_word( R_T5, R_PadState, O_(PadState,left_x)),
|
||||||
|
add_ui( R_T4, R_0, 0x41),
|
||||||
|
store_byte( R_T4, R_PadState, O_(PadState,id)),
|
||||||
|
|
||||||
|
jump_rel(atom_offset(id_dispatch, snap_end)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(try_analog_stick) /* === Case 4: AnalogStick (id == 0x53)*/
|
||||||
|
add_ui(R_T4, R_0, 0x53), branch_ne(R_RawId, R_T4, atom_offset(try_analog_stick, try_analog_pad)),
|
||||||
|
/* BD-slot: pre-compute PadStatus_AnalogStick. Branch reads R_RawId in EX before this WB completes.
|
||||||
|
* If branch NOT taken (fall through to try_analog_pad), R_T4 is overwritten by the analog_pad body add_ui. */
|
||||||
|
|
||||||
|
atom_label(analog_stick) /* === AnalogStick body
|
||||||
|
* Axes are loaded as two halfwords: raw[6..7] → left_xy (sh at offset 8), raw[4..5] → right_xy (sh at offset 10).
|
||||||
|
* R_T5 holds left_xy / id-value in turn (it's dead on this path — only consumed at the analog_pad range check). */
|
||||||
|
/* R_T4 = PadStatus_AnalogStick from try_analog_stick BD-slot. */
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
load_half_u( R_T4, R_PadRaw, 2 * S_(U1)), /* R_T4 = raw_buttons */
|
||||||
|
load_half_u( R_T5, R_PadRaw, 6 * S_(U1)), /* R_T5 = left_xy; fills R_T4's load-delay slot (doesn't read R_T4) */
|
||||||
|
nor_u( R_T4, R_T4, R_0), /* R_T4 = ~raw_buttons */
|
||||||
|
store_half( R_T4, R_PadState, O_(PadState,buttons)),
|
||||||
|
load_half_u( R_T4, R_PadRaw, 4 * S_(U1)), /* R_T4 = right_xy; fills R_T5's load-delay slot */
|
||||||
|
store_half( R_T5, R_PadState, O_(PadState,left_x)), /* R_T5 settled, store left_xy */
|
||||||
|
store_half( R_T4, R_PadState, O_(PadState,right_x)),
|
||||||
|
add_ui( R_T5, R_0, 0x53), /* R_T5 = id value (clobbers left_xy, already stored) */
|
||||||
|
store_byte( R_T5, R_PadState, O_(PadState,id)),
|
||||||
|
jump_rel(atom_offset(analog_stick, snap_end)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(try_analog_pad) /* === Case 5-6: AnalogPad (id & 0xF0 == 0x70) */
|
||||||
|
and_i( R_T4, R_RawId, 0xF0),
|
||||||
|
add_ui( R_T5, R_0, 0x70),
|
||||||
|
branch_ne(R_T4, R_T5, atom_offset(try_analog_pad, try_unsupported)),
|
||||||
|
/* BD-slot: pre-compute PadStatus_AnalogPad. Branch reads R_T4 in EX before this WB completes.
|
||||||
|
* If branch NOT taken (fall through to try_unsupported), R_T4 is overwritten by the unsupported body add_ui. */
|
||||||
|
|
||||||
|
atom_label(analog_pad) /* === AnalogPad body
|
||||||
|
* Same shape as AnalogStick with AnalogPad status. R_T5 holds left_xy (it's dead on this path). */
|
||||||
|
/* R_T4 = PadStatus_AnalogPad from try_analog_pad BD-slot. */
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
load_half_u(R_T4, R_PadRaw, 2 * S_(U1)), /* R_T4 = raw_buttons */
|
||||||
|
load_half_u(R_T5, R_PadRaw, 6 * S_(U1)), /* R_T5 = left_xy; fills R_T4's load-delay slot */
|
||||||
|
nor_u( R_T4, R_T4, R_0), /* R_T4 = ~raw_buttons */
|
||||||
|
store_half( R_T4, R_PadState, O_(PadState,buttons)),
|
||||||
|
load_half_u(R_T4, R_PadRaw, 4 * S_(U1)), /* R_T4 = right_xy; fills R_T5's load-delay slot */
|
||||||
|
store_half( R_T5, R_PadState, O_(PadState,left_x)), /* R_T5 settled, store left_xy */
|
||||||
|
store_half( R_T4, R_PadState, O_(PadState,right_x)),
|
||||||
|
store_byte( R_RawId, R_PadState, O_(PadState,id)),
|
||||||
|
|
||||||
|
jump_rel(atom_offset(analog_pad, snap_end)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(try_unsupported) /* === Case 7: Unsupported — fall through from the AnalogPad range-check miss. */
|
||||||
|
add_ui( R_T4, R_0, PadStatus_Unsupported),
|
||||||
|
store_word(R_T4, R_PadState, O_(PadState,status)),
|
||||||
|
store_half(R_0, R_PadState, O_(PadState,buttons)),
|
||||||
|
/* axes = 0x80808080 (centered) — single sw writes the 4-byte axes block at offset 8 (left_x, left_y, right_x, right_y). */
|
||||||
|
load_upper_i(R_T4, 0x8080), or_i_self(R_T4, 0x8080),
|
||||||
|
store_word( R_T4, R_PadState, O_(PadState,left_x)),
|
||||||
|
add_ui( R_T4, R_0, 0xFF), /* 0xFF sentinel: "unknown id" */
|
||||||
|
store_byte( R_T4, R_PadState, O_(PadState,id)),
|
||||||
|
/* Fall through to snap_end. */
|
||||||
|
|
||||||
|
atom_label(no_jump_fallthrough)
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(snap_end)
|
||||||
|
/* NOT mac_yield() — R_AtomJmp was already loaded in the BD-slot of the case-exit branch. */
|
||||||
|
mac_yield_tail(),
|
||||||
|
};
|
||||||
|
|
||||||
|
/* ----- pad_apply_input -----
|
||||||
|
* Reads pad[0].buttons + pad[0].left_x;
|
||||||
|
* Applies the input-semantics deltas to cube_rot.y + floor_rot.y:
|
||||||
|
* - D-pad Left: cube_rot.y += 30, floor_rot.y += 5
|
||||||
|
* - D-pad Right: cube_rot.y -= 30, floor_rot.y -= 5
|
||||||
|
* - Analog stick X (dead zone 0x70..0x90):
|
||||||
|
* cube delta = (0x80 - left_x) >> 2 (range approx -32..+32)
|
||||||
|
* floor delta = (0x80 - left_x) >> 5 (range approx -4..+4)
|
||||||
|
* - D-pad + analog deltas add when used together.
|
||||||
|
*
|
||||||
|
* Convention:
|
||||||
|
* pad_state = 0 means no buttons active.
|
||||||
|
* The fail-safe zero-button value flows through unchanged, so a disconnected/fresh pad produces no rotation.
|
||||||
|
* The branch_le_zero pattern below matches the existing pad_input_demo convention (atom body lines 248/257).
|
||||||
|
*
|
||||||
|
* Signed-delta trick:
|
||||||
|
* load_byte_u zero-extends left_x to 32 bits; sub_u from 0x80 wraps to a SIGNED two's-complement value in the negative range;
|
||||||
|
* shift_aright (sra) then correctly sign-extends the shift for both positive (left_x < 0x80) and negative (left_x > 0x80) cases.
|
||||||
|
* Digital pads publish left_x = 0x80 → delta = 0 → no rotation, so the analog step is naturally a no-op for digital controllers.
|
||||||
|
*/
|
||||||
|
typedef Struct_(Binds_PadApplyInput) {
|
||||||
|
PadState* state;
|
||||||
|
V3_S2* cube_rot;
|
||||||
|
V3_S2* floor_rot;
|
||||||
|
};
|
||||||
|
enum {
|
||||||
|
R_PadStateT5 = R_T5 atom_reg,
|
||||||
|
R_CubeRot = R_T1 atom_reg,
|
||||||
|
R_FloorRot = R_T2 atom_reg,
|
||||||
|
};
|
||||||
|
internal MipsAtom_(pad_apply_input) atom_info(atom_bind(Binds_PadApplyInput)
|
||||||
|
, atom_reads(R_T0, R_CubeRot, R_FloorRot, R_T3, R_T4, R_PadStateT5, R_TapePtr)
|
||||||
|
, atom_writes( R_CubeRot, R_FloorRot)
|
||||||
|
) {
|
||||||
|
/* Pop Binds from tape (state, cube_rot, floor_rot) */
|
||||||
|
load_word(R_PadStateT5, R_TapePtr, O_(Binds_PadApplyInput,state)),
|
||||||
|
load_word(R_CubeRot, R_TapePtr, O_(Binds_PadApplyInput,cube_rot)),
|
||||||
|
load_word(R_FloorRot, R_TapePtr, O_(Binds_PadApplyInput,floor_rot)),
|
||||||
|
add_ui_self( R_TapePtr, S_(Binds_PadApplyInput)),
|
||||||
|
|
||||||
|
/* Load pad[0].buttons into R_T0. */
|
||||||
|
load_word(R_T0, R_PadStateT5, O_(PadState,buttons)), nop,
|
||||||
|
// Note(Ed): Potential op with delay slot?
|
||||||
|
|
||||||
|
/* D-pad Left: cube_rot.y += 30, floor_rot.y += 5. */
|
||||||
|
and_i(R_T3, R_T0, pad0_(Pad_Left)), branch_le_zero(R_T3, atom_offset(dpad_left, exit_dpad_left)),
|
||||||
|
load_half( R_T4, R_CubeRot, O_(V3_S2,y)), /* BD-slot */
|
||||||
|
load_half( R_T3, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
add_si( R_T4, R_T4, 30),
|
||||||
|
add_si( R_T3, R_T3, 5),
|
||||||
|
store_half(R_T4, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
store_half(R_T3, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
atom_label(exit_dpad_left)
|
||||||
|
|
||||||
|
/* D-pad Right: cube_rot.y -= 30, floor_rot.y -= 5. */
|
||||||
|
and_i(R_T3, R_T0, pad0_(Pad_Right)), branch_le_zero(R_T3, atom_offset(dpad_right, exit_dpad_right)),
|
||||||
|
load_half( R_T4, R_CubeRot, O_(V3_S2,y)), /* BD-slot */
|
||||||
|
load_half( R_T3, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
add_si( R_T4, R_T4, -30),
|
||||||
|
add_si( R_T3, R_T3, -5),
|
||||||
|
store_half(R_T4, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
store_half(R_T3, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
atom_label(exit_dpad_right)
|
||||||
|
|
||||||
|
/* Analog left-stick X: dead zone 0x70..0x90.
|
||||||
|
* Cube delta = (0x80 - left_x) >> 2; floor delta = (0x80 - left_x) >> 5. */
|
||||||
|
load_byte_u(R_T3, R_PadStateT5, O_(PadState,left_x)),
|
||||||
|
|
||||||
|
/* Dead-zone check: skip analog if left_x in [0x70, 0x90] inclusive. Outside dead zone on LOW side: left_x < 0x70 (strictly).
|
||||||
|
* set_lt_u(R_T4, R_T3, R_T4=0x70) → R_T4 = (left_x < 0x70) ? 1 : 0. */
|
||||||
|
add_ui(R_T4, R_0, 0x70), set_lt_u(R_T4, R_T3, R_T4), branch_ne(R_T4, R_0, atom_offset(dead_zone_low_check, dead_low_active)),
|
||||||
|
add_ui(R_T4, R_0, 0x80), /* BD-slot: pre-load 0x80 for dead_low_active */
|
||||||
|
|
||||||
|
atom_label(dead_check_upper)
|
||||||
|
/* left_x >= 0x70 → check upper bound. */
|
||||||
|
load_byte_u(R_T3, R_PadStateT5, O_(PadState,left_x)), /* reload */
|
||||||
|
add_ui( R_T4, R_0, 0x90),
|
||||||
|
|
||||||
|
/* R_T4 = (0x90 < left_x) ? 1 : 0 → (left_x > 0x90) ? 1 : 0 */
|
||||||
|
set_lt_u(R_T4, R_T4, R_T3), branch_ne(R_T4, R_0, atom_offset(dead_zone_high_check, dead_high_active)),
|
||||||
|
add_ui( R_T4, R_0, 0x80), /* BD-slot: pre-load 0x80 for dead_high_active */
|
||||||
|
jump_rel(atom_offset(dead_zone_skip, exit_stick)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(dead_low_active)
|
||||||
|
/* R_T3 = left_x (from line 632 lbu; not clobbered between dead_zone_low_check branch + its BD-slot `add_ui R_T4, 0x80`).
|
||||||
|
* The earlier `load_byte_u(R_T3, ...)` reload was redundant and introduced a load-use hazard on the next `sub_u`.
|
||||||
|
* R_T4 = 0x80 from the BD-slot of `dead_zone_low_check`'s branch_ne. */
|
||||||
|
sub_u( R_T3, R_T4, R_T3), /* R_T3 = 0x80 - left_x */
|
||||||
|
/* delta = 0x80 - left_x (positive). */
|
||||||
|
|
||||||
|
/* R_T4 = cube_delta */
|
||||||
|
shift_aright(R_T4, R_T3, 2),
|
||||||
|
load_half( R_T0, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
nop,
|
||||||
|
add_u( R_T0, R_T0, R_T4),
|
||||||
|
store_half( R_T0, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
/* R_T4 = floor_delta — moved into the load-delay slot of the floor load below (fills the 1-instruction gap;
|
||||||
|
* doesn't read R_T0; R_T4 settles by the subsequent add_u). */
|
||||||
|
load_half( R_T0, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
shift_aright(R_T4, R_T3, 5),
|
||||||
|
add_u( R_T0, R_T0, R_T4),
|
||||||
|
store_half( R_T0, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
|
||||||
|
jump_rel(atom_offset(end_low, exit_stick)),
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(dead_high_active)
|
||||||
|
/* R_T3 = left_x (from line 641 lbu in dead_check_upper; not clobbered between dead_zone_high_check branch + its BD-slot `add_ui R_T4, 0x80`).
|
||||||
|
* The earlier `load_byte_u(R_T3, ...)` reload was redundant and introduced a load-use hazard on the next `sub_u`.
|
||||||
|
* R_T4 = 0x80 from the BD-slot of `dead_zone_high_check`'s branch_ne. */
|
||||||
|
sub_u( R_T3, R_T4, R_T3),
|
||||||
|
/* delta = 0x80 - left_x (signed negative). */
|
||||||
|
|
||||||
|
shift_aright(R_T4, R_T3, 2), /* R_T4 = cube_delta (signed) */
|
||||||
|
load_half( R_T0, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
nop,
|
||||||
|
add_u( R_T0, R_T0, R_T4),
|
||||||
|
store_half( R_T0, R_CubeRot, O_(V3_S2,y)),
|
||||||
|
|
||||||
|
/* R_T4 = floor_delta (signed) — moved into the load-delay slot of the floor load below. */
|
||||||
|
load_half( R_T0, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
shift_aright(R_T4, R_T3, 5),
|
||||||
|
add_u( R_T0, R_T0, R_T4),
|
||||||
|
store_half( R_T0, R_FloorRot, O_(V3_S2,y)),
|
||||||
|
|
||||||
|
atom_label(no_jump_fallthrough)
|
||||||
|
mac_yield_load(),
|
||||||
|
|
||||||
|
atom_label(exit_stick)
|
||||||
|
/* NOT mac_yield() — R_AtomJmp was already loaded in the BD-slot of the dead-zone/exit branch. */
|
||||||
|
mac_yield_tail(),
|
||||||
|
};
|
||||||
|
|
||||||
|
#pragma endregion Baked Atoms
|
||||||
@@ -0,0 +1,441 @@
|
|||||||
|
#pragma region Vendors
|
||||||
|
#include <stdio.h>
|
||||||
|
#include <stdlib.h>
|
||||||
|
#include <assert.h>
|
||||||
|
// #include "libgpu.h"
|
||||||
|
// #include "libetc.h"
|
||||||
|
// #include "libgte.h"
|
||||||
|
#pragma endregion Vendors
|
||||||
|
|
||||||
|
#pragma region Duffle Headers
|
||||||
|
# include "duffle/gen/macs.h"
|
||||||
|
# include "duffle/gen/offsets.h"
|
||||||
|
|
||||||
|
#include "duffle/word_count.metadata.h"
|
||||||
|
|
||||||
|
#include "duffle/dsl.h"
|
||||||
|
#include "duffle/memory.h"
|
||||||
|
#include "duffle/math.h"
|
||||||
|
|
||||||
|
#include "duffle/gcc_asm.h"
|
||||||
|
#include "duffle/mips.h"
|
||||||
|
#include "duffle/gp.h"
|
||||||
|
#include "duffle/gte.h"
|
||||||
|
#include "duffle/pad.h"
|
||||||
|
|
||||||
|
#include "duffle/dsl.atom.h"
|
||||||
|
#include "duffle/lottes_tape.h"
|
||||||
|
|
||||||
|
#include "duffle/psyq.h"
|
||||||
|
#pragma endregion Duffle Headers
|
||||||
|
|
||||||
|
#pragma region Duffle TUs
|
||||||
|
#include "duffle/math.atom.c"
|
||||||
|
#include "duffle/mips.atom.c"
|
||||||
|
#include "duffle/gte.atom.c"
|
||||||
|
#include "duffle/gp.atom.c"
|
||||||
|
#include "duffle/psyq.atom.c"
|
||||||
|
#pragma endregion Duffle TUs
|
||||||
|
|
||||||
|
#pragma region Joypade Headers
|
||||||
|
# include "gen/macs.h"
|
||||||
|
# include "gen/offsets.h"
|
||||||
|
|
||||||
|
#include "hello_joypad.h"
|
||||||
|
#pragma region Joypad Headers
|
||||||
|
|
||||||
|
#pragma region Hello Joypad TUs
|
||||||
|
#include "hello_joypad.atom.c"
|
||||||
|
#pragma endregion Hello Joypad TUs
|
||||||
|
|
||||||
|
enum {
|
||||||
|
Scratchpad_Len = 1024,
|
||||||
|
MemTape_Len = 512,
|
||||||
|
};
|
||||||
|
typedef Struct_(SMemory) {
|
||||||
|
PrimitiveArena primitives;
|
||||||
|
A2_OrderingTable_Buffer ordering_tbl;
|
||||||
|
DoubleBuffer screen_buf;
|
||||||
|
S4 active_buf_id;
|
||||||
|
|
||||||
|
U4 MemTape[MemTape_Len];
|
||||||
|
|
||||||
|
M3_S2 tform_world;
|
||||||
|
|
||||||
|
Ent_Cube cube;
|
||||||
|
Ent_Floor floor;
|
||||||
|
|
||||||
|
PadBiosRaw pad_raw[2];
|
||||||
|
PadState pad[2];
|
||||||
|
|
||||||
|
U4_V scratchpad; // d-cache
|
||||||
|
};
|
||||||
|
global SMemory smem;
|
||||||
|
extern SMemory smem;
|
||||||
|
|
||||||
|
I_ B1* prim__alloc(U4 type_width, Str8 type_name) {
|
||||||
|
gknown PrimitiveArena* pa = & smem.primitives;
|
||||||
|
gknown B1* buf = (B1*) r_(smem.primitives.buf)[smem.active_buf_id];
|
||||||
|
assert(pa->used + type_width < PrimitiveBuff_Len);
|
||||||
|
B1* next = buf + pa->used;
|
||||||
|
pa->used += type_width;
|
||||||
|
return next;
|
||||||
|
}
|
||||||
|
#define prim_alloc(type) (type*)prim__alloc(S_(type), slit( stringify(type)))
|
||||||
|
|
||||||
|
/* Uses ONE 8-byte frame allocated via the compiler's standard prologue.
|
||||||
|
* The 4 wasted-arg words for B(12h) InitPAD2 live at [SP+0..15] but are not explicitly allocated.
|
||||||
|
* The compiler handles the MIPS O32 "wasted stack" convention for us by treating the B-call as a 4-arg call.
|
||||||
|
*
|
||||||
|
* The buffer pointers are passed as arguments so the compiler keeps them in callee-saved registers;
|
||||||
|
* The B(12h) asm volatile block does NOT clobber those registers (it clobbers only the volatile GPRs + the B-table arg registers explicitly).
|
||||||
|
* The C-level writes after the call re-load the pointers from their callee-saved homes.
|
||||||
|
*
|
||||||
|
* The clobber list for both B-calls names the full BIOS destroy set documented in kernelbios.md:167-174 (R1..R15, R24..R25, R31, HI/LO).
|
||||||
|
* The kernel-ABI "volatile GPRs" subset is clb_system; the rest of the destroy set is enumerated explicitly here. */
|
||||||
|
NI_ void pad_bios_init_start(PadBiosRaw* raw0, PadBiosRaw* raw1)
|
||||||
|
{
|
||||||
|
/* Pin raw0 + raw1 to $a0 + $a1 via rgcc; the B(12h) call uses these directly.
|
||||||
|
* The `(void)` casts mark them as unread after the call so the compiler doesn't need to move them back. */
|
||||||
|
register PadBiosRaw* p0 rgcc(R_A0) = raw0;
|
||||||
|
register PadBiosRaw* p1 rgcc(R_A1) = raw1;
|
||||||
|
(void)p0; (void)p1;
|
||||||
|
|
||||||
|
// TODO(Ed): Properly annotate the raw values in the inline asm instructions.
|
||||||
|
// Use enums.
|
||||||
|
|
||||||
|
/* B(12h) InitPAD2(raw0, 0x22, raw1, 0x22)
|
||||||
|
* $a0 = raw0 (rgcc-bound; survives the sequence below)
|
||||||
|
* $a1 = raw1 (preserved into $a2 before $a1 is overwritten)
|
||||||
|
* $a2 = raw1 (moved from $a1; survives $a1's overwrite)
|
||||||
|
* $a3 = 0x22 (immediate)
|
||||||
|
* $t1 = 0x12 (function number)
|
||||||
|
* $t2 = 0xB0 (BIOS B-table address) */
|
||||||
|
asm volatile(
|
||||||
|
asm_words(
|
||||||
|
or_u( rarg_2, rarg_1, rdiscard), /* $a2 = $a1 = raw1 */
|
||||||
|
add_ui( rarg_1, rdiscard, 0x22), /* $a1 = 0x22 */
|
||||||
|
add_ui( rarg_3, rdiscard, 0x22), /* $a3 = 0x22 */
|
||||||
|
add_ui( rtmp_1, rdiscard, 0x12), /* $t1 = 0x12 */
|
||||||
|
add_ui( rtmp_2, rdiscard, 0xB0), /* $t2 = 0xB0 */
|
||||||
|
call_reg(rtmp_2), /* jalr $t2, $ra */
|
||||||
|
nop /* BD slot */
|
||||||
|
)
|
||||||
|
asm_rpins, r_use(p0), r_use(p1)
|
||||||
|
asm_clobber:
|
||||||
|
rlit(R_AT),
|
||||||
|
rlit(R_V0), rlit(R_V1),
|
||||||
|
rlit(R_T0), rlit(R_T1), rlit(R_T2), rlit(R_T3), rlit(R_T4),
|
||||||
|
rlit(R_T5), rlit(R_T6), rlit(R_T7), rlit(R_T8), rlit(R_T9),
|
||||||
|
rlit(R_RA),
|
||||||
|
clb_mem_drain
|
||||||
|
);
|
||||||
|
|
||||||
|
/* The C-level writes re-load the pointers via the parameter names and write 0xFF to each
|
||||||
|
* buffer's status byte to mark the initial-state hazard documented in kernelbios.md:1621-1624. */
|
||||||
|
u1_v(raw0)[0] = 0xFF;
|
||||||
|
u1_v(raw1)[0] = 0xFF;
|
||||||
|
|
||||||
|
/* B(13h) StartPAD2() — no args. The BIOS preserves $sp. */
|
||||||
|
asm volatile(
|
||||||
|
asm_words(
|
||||||
|
add_ui( rtmp_1, rdiscard, 0x13), /* $t1 = 0x13 */
|
||||||
|
add_ui( rtmp_2, rdiscard, 0xB0), /* $t2 = 0xB0 (re-load) */
|
||||||
|
call_reg(rtmp_2), /* jalr $t2, $ra */
|
||||||
|
nop /* BD slot */
|
||||||
|
)
|
||||||
|
asm_clobber:
|
||||||
|
rlit(R_AT),
|
||||||
|
rlit(R_V0), rlit(R_V1),
|
||||||
|
rlit(R_T0), rlit(R_T1), rlit(R_T2), rlit(R_T3), rlit(R_T4),
|
||||||
|
rlit(R_T5), rlit(R_T6), rlit(R_T7), rlit(R_T8), rlit(R_T9),
|
||||||
|
rlit(R_RA),
|
||||||
|
clb_mem_drain
|
||||||
|
);
|
||||||
|
}
|
||||||
|
|
||||||
|
GCC_OPTIMIZATION_DISABLE
|
||||||
|
void update(PrimitiveArena* pa, U4* ordering_buf)
|
||||||
|
{
|
||||||
|
TapeBuilder tb = tb_make(slice_ut_arr(smem.MemTape));
|
||||||
|
|
||||||
|
if (0) // Pad Input (dead — kept for the source-as-written record; references the deleted `pad_state` field)
|
||||||
|
{
|
||||||
|
(void)Pad_Left; (void)Pad_Right; /* suppress unused-token warnings */
|
||||||
|
if (false) {
|
||||||
|
smem.cube.rot.y += 30;
|
||||||
|
smem.floor.rot.y += 5;
|
||||||
|
}
|
||||||
|
if (false) {
|
||||||
|
smem.cube.rot.y -= 30;
|
||||||
|
smem.floor.rot.y -= 5;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
if (1) // Pad Input (Tape version)
|
||||||
|
{
|
||||||
|
tb.used = 0; tb_scope_run(& tb) {
|
||||||
|
/* BIOS-owned polling: per-frame snapshot of both ports. */
|
||||||
|
tb_emit_(pad_bios_snapshot);
|
||||||
|
tb_data_(raw, & smem.pad_raw[0]);
|
||||||
|
tb_data_(state, & smem.pad[0]);
|
||||||
|
tb_emit_(pad_bios_snapshot);
|
||||||
|
tb_data_(raw, & smem.pad_raw[1]);
|
||||||
|
tb_data_(state, & smem.pad[1]);
|
||||||
|
/* Per-frame rotation apply: consume pad[0].buttons + pad[0].left_x */
|
||||||
|
tb_emit_(pad_apply_input);
|
||||||
|
tb_data_(state, & smem.pad[0]);
|
||||||
|
tb_data_(cube_rot, & smem.cube.rot);
|
||||||
|
tb_data_(floor_rot, & smem.floor.rot);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
orderingtbl_clear_reverse(ordering_buf, OrderingTbl_Len);
|
||||||
|
|
||||||
|
// Update the position based on acceleration and velocity
|
||||||
|
gknown V3_S4_R pos = & smem.cube.pos;
|
||||||
|
gknown V3_S4_R vel = & smem.cube.vel;
|
||||||
|
gknown V3_S4_R acc = & smem.cube.accel;
|
||||||
|
add_v3s4(vel, acc[0]);
|
||||||
|
add_v3s4_fp(pos, vel[0]);
|
||||||
|
// vel->x += acc->x;
|
||||||
|
// vel->y += acc->y;
|
||||||
|
// vel->z += acc->z;
|
||||||
|
// pos->x += vel->x;
|
||||||
|
// pos->y += vel->y;
|
||||||
|
// pos->z += vel->z;
|
||||||
|
|
||||||
|
if (pos->y + 150 > smem.floor.pos.y) vel->y *= -1;
|
||||||
|
|
||||||
|
// Prep
|
||||||
|
S4 nclip = 0;
|
||||||
|
S4 orderingtbl_z = 0;
|
||||||
|
A2_S2 p; //???
|
||||||
|
S4 flag; //????
|
||||||
|
|
||||||
|
|
||||||
|
// Draw Cube
|
||||||
|
if (0)
|
||||||
|
{
|
||||||
|
m3s2_rotation (& smem.cube.rot, & smem.tform_world);
|
||||||
|
m3s2_translation(& smem.tform_world, & smem.cube.pos);
|
||||||
|
m3s2_scale (& smem.tform_world, & smem.cube.scale);
|
||||||
|
// gte_matrix_set_rotation (& smem.tform_world);
|
||||||
|
gte_matrix_set_translation(& smem.tform_world);
|
||||||
|
for (U4 face_id = 0; face_id < Cube_num_faces; face_id += 1)
|
||||||
|
{
|
||||||
|
Poly_G4* quad = prim_alloc(Poly_G4); set_poly_g4(quad);
|
||||||
|
quad->c0 = rgb8(255, 0, 255);
|
||||||
|
quad->c1 = rgb8(255, 255, 0);
|
||||||
|
quad->c2 = rgb8( 0, 255, 255);
|
||||||
|
quad->c3 = rgb8( 0, 255, 0);
|
||||||
|
|
||||||
|
V4_S2* face = & smem.cube.faces[face_id];
|
||||||
|
V3_S2* p0 = & smem.cube.verts[face->x];
|
||||||
|
V3_S2* p1 = & smem.cube.verts[face->y];
|
||||||
|
V3_S2* p2 = & smem.cube.verts[face->z];
|
||||||
|
V3_S2* p3 = & smem.cube.verts[face->w];
|
||||||
|
|
||||||
|
nclip = rtp_avg_nclip_a4_v3s2(
|
||||||
|
p0, p1, p2, p3,
|
||||||
|
& quad->p0, & quad->p1, & quad->p2, & quad->p3,
|
||||||
|
& p, & orderingtbl_z, & flag
|
||||||
|
);
|
||||||
|
if (nclip <= 0) {
|
||||||
|
continue;
|
||||||
|
}
|
||||||
|
|
||||||
|
if ((orderingtbl_z > 0) && (orderingtbl_z < OrderingTbl_Len)) {
|
||||||
|
orderingtbl_add_primitive(ordering_buf[orderingtbl_z], quad);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
// smem.cube.rot.x += 6;
|
||||||
|
// smem.cube.rot.y += 8;
|
||||||
|
// smem.cube.rot.z += 12;
|
||||||
|
smem.cube.rot.y += 30;
|
||||||
|
}
|
||||||
|
// Draw cube (tape method) - two triangles per face
|
||||||
|
if (1)
|
||||||
|
{
|
||||||
|
m3s2_rotation (& smem.cube.rot, & smem.tform_world);
|
||||||
|
m3s2_translation(& smem.tform_world, & smem.cube.pos);
|
||||||
|
m3s2_scale (& smem.tform_world, & smem.cube.scale);
|
||||||
|
gte_matrix_set_rotation (& smem.tform_world);
|
||||||
|
gte_matrix_set_translation(& smem.tform_world);
|
||||||
|
|
||||||
|
U4 prim_base = u4_(pa->buf[smem.active_buf_id]);
|
||||||
|
U4 prim_cursor = prim_base + pa->used;
|
||||||
|
|
||||||
|
tb.used = 0; tb_scope(& tb) {
|
||||||
|
tb_emit(& tb, rbind_cube_g4_face);
|
||||||
|
tb_data(& tb, prim_cursor);
|
||||||
|
tb_data(& tb, u4_(smem.cube.faces));
|
||||||
|
tb_data(& tb, u4_(smem.cube.verts));
|
||||||
|
tb_data(& tb, u4_(ordering_buf));
|
||||||
|
|
||||||
|
for (U4 i = 0; i < Cube_num_faces; i++) {
|
||||||
|
// Two triangles per quad face: (x,y,z) and (x,z,w)
|
||||||
|
tb_emit(& tb, cube_g4_face);
|
||||||
|
}
|
||||||
|
|
||||||
|
tb_emit(& tb, sync_primitive_arena);
|
||||||
|
tb_data(& tb, u4_(& pa->used));
|
||||||
|
tb_data(& tb, prim_base);
|
||||||
|
}
|
||||||
|
tape_run(tb_slice(tb));
|
||||||
|
|
||||||
|
// smem.cube.rot.y += 30;
|
||||||
|
}
|
||||||
|
// Draw Floor
|
||||||
|
if (0)
|
||||||
|
{
|
||||||
|
m3s2_rotation (& smem.floor.rot, & smem.tform_world);
|
||||||
|
m3s2_translation(& smem.tform_world, & smem.floor.pos);
|
||||||
|
m3s2_scale (& smem.tform_world, & smem.floor.scale);
|
||||||
|
gte_matrix_set_rotation (& smem.tform_world);
|
||||||
|
gte_matrix_set_translation(& smem.tform_world);
|
||||||
|
for (U4 face_id = 0; face_id < Floor_num_faces; face_id += 1)
|
||||||
|
{
|
||||||
|
Poly_F3* tri = prim_alloc(Poly_F3); set_poly_f3(tri);
|
||||||
|
tri->color = rgb8(255, 255, 255);
|
||||||
|
|
||||||
|
V3_S2* face = & smem.floor.faces[face_id];
|
||||||
|
register V3_S2* p0 rgcc(R_T4) = & smem.floor.verts[face->x];
|
||||||
|
register V3_S2* p1 rgcc(R_T5) = & smem.floor.verts[face->y];
|
||||||
|
register V3_S2* p2 rgcc(R_T6) = & smem.floor.verts[face->z];
|
||||||
|
|
||||||
|
gte_load_v0(p0, R_T4);
|
||||||
|
/*
|
||||||
|
asm volatile( ".word " "%0" ", %1" : :
|
||||||
|
"i"(((op_lwc2 & OPCODE_MASK) << OPCODE_SHIFT) | ((R_T4 & REG_MASK) << RS_SHIFT) | ((gte_in_v0_xy & REG_MASK) << RT_SHIFT) | (0 & IMM_MASK)),
|
||||||
|
"i"(((op_lwc2 & OPCODE_MASK) << OPCODE_SHIFT) | ((R_T4 & REG_MASK) << RS_SHIFT) | ((gte_in_v0_z & REG_MASK) << RT_SHIFT) | (GTE_Z_Offset & IMM_MASK)),
|
||||||
|
"r"(p0) :
|
||||||
|
"$2", "$8", "$9", "$31", "memory"
|
||||||
|
);
|
||||||
|
*/
|
||||||
|
gte_load_v1(p1, R_T5);
|
||||||
|
gte_load_v2(p2, R_T6);
|
||||||
|
|
||||||
|
gte_rtpt();
|
||||||
|
gte_nclip();
|
||||||
|
gte_stotz(& nclip);
|
||||||
|
|
||||||
|
// nclip = rtp_avg_nclip_a3_v3s2(p0, p1, p2
|
||||||
|
// , & tri->p0, & tri->p1, & tri->p2
|
||||||
|
// , & p, & orderingtbl_z, & flag
|
||||||
|
// );
|
||||||
|
// if (nclip <= 0) {
|
||||||
|
// continue;
|
||||||
|
// }
|
||||||
|
|
||||||
|
if (nclip > 0 ) {
|
||||||
|
gte_stsxy3(& tri->p0, & tri->p1, & tri->p2);
|
||||||
|
gte_avsz3();
|
||||||
|
gte_stotz(& orderingtbl_z);
|
||||||
|
|
||||||
|
if ((orderingtbl_z > 0) && (orderingtbl_z < OrderingTbl_Len)) {
|
||||||
|
orderingtbl_add_primitive(ordering_buf[orderingtbl_z], tri);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
}
|
||||||
|
smem.floor.rot.y += 5;
|
||||||
|
}
|
||||||
|
// Draw floor tape method
|
||||||
|
if (1)
|
||||||
|
{
|
||||||
|
m3s2_rotation (& smem.floor.rot, & smem.tform_world);
|
||||||
|
m3s2_translation(& smem.tform_world, & smem.floor.pos);
|
||||||
|
m3s2_scale (& smem.tform_world, & smem.floor.scale);
|
||||||
|
|
||||||
|
U4 prim_base = u4_(pa->buf[smem.active_buf_id]);
|
||||||
|
U4 prim_cursor = prim_base + pa->used;
|
||||||
|
|
||||||
|
// TODO(Ed): We should do a bounds check beforehand to confirm pa can hold all tris?
|
||||||
|
// The tape atoms in-flight should not need to care.
|
||||||
|
|
||||||
|
// Prepare the tape. (Push protocol to tape)
|
||||||
|
tb.used = 0; tb_scope(& tb) {
|
||||||
|
tb_emit(& tb, set_gte_world);
|
||||||
|
tb_data(& tb, u4_(& smem.tform_world));
|
||||||
|
|
||||||
|
tb_emit(& tb, rbind_floor_f3_face);
|
||||||
|
// TODO(Ed): Just use a single context struct ref
|
||||||
|
tb_data(& tb, prim_cursor);
|
||||||
|
tb_data(& tb, u4_(smem.floor.faces));
|
||||||
|
tb_data(& tb, u4_(smem.floor.verts));
|
||||||
|
tb_data(& tb, u4_(ordering_buf));
|
||||||
|
for (U4 i = 0; i < Floor_num_faces; i++) {
|
||||||
|
tb_emit(& tb, floor_f3_face);
|
||||||
|
}
|
||||||
|
// After floor_f3_face iterations complete, the primitive arena's used counter needs updating.
|
||||||
|
tb_emit(& tb, sync_primitive_arena);
|
||||||
|
tb_data(& tb, u4_(& pa->used));
|
||||||
|
tb_data(& tb, prim_base);
|
||||||
|
}
|
||||||
|
tape_run(tb_slice(tb));// Fire off the tape.
|
||||||
|
|
||||||
|
// C-side state (pa->used) has already been updated by the tape!
|
||||||
|
// smem.floor.rot.y += 5;
|
||||||
|
}
|
||||||
|
}
|
||||||
|
GCC_OPTIMIZATION_ENABLE
|
||||||
|
|
||||||
|
void render(void) {
|
||||||
|
}
|
||||||
|
|
||||||
|
void gp_display_frame(DoubleBuffer* screen_buf, S4* active_buf_id, U4* ordering_buf, PrimitiveArena* pa) {
|
||||||
|
draw_sync(0);
|
||||||
|
vsync(0);
|
||||||
|
displayenv_put(& r_(screen_buf->display)[active_buf_id[0] ]);
|
||||||
|
drawenv_put (& r_(screen_buf->draw) [active_buf_id[0] ]);
|
||||||
|
{
|
||||||
|
draw_orderingtbl(ordering_buf + OrderingTbl_Len - 1);
|
||||||
|
pa->used = 0;
|
||||||
|
}
|
||||||
|
active_buf_id[0] = ! active_buf_id[0]; // Swap current buffer
|
||||||
|
}
|
||||||
|
|
||||||
|
GCC_OPTIMIZATION_DISABLE
|
||||||
|
int main(void)
|
||||||
|
{
|
||||||
|
smem = (SMemory){0};
|
||||||
|
smem.scratchpad = C_(U4_V, 0x1F800000);
|
||||||
|
// smem.primitives.used = 0;
|
||||||
|
// smem.active_buf_id = 0;
|
||||||
|
/*Persistent Entity Setup*/{
|
||||||
|
ent_cube128_init(& smem.cube.verts, & smem.cube.faces); {
|
||||||
|
Ent_Cube* cube = & smem.cube;
|
||||||
|
cube->rot = v3s2(0, 0, 0);
|
||||||
|
cube->scale = v3s4_fp_one();
|
||||||
|
cube->accel = v3s4(0, 1, 0);
|
||||||
|
cube->pos = v3s4(0, -400, 1800);
|
||||||
|
}
|
||||||
|
ent_floor_init(& smem.floor.verts, & smem.floor.faces); {
|
||||||
|
Ent_Floor* floor = & smem.floor;
|
||||||
|
floor->rot = v3s2(0, 0, 0);
|
||||||
|
floor->pos = v3s4(0, 450, 1800);
|
||||||
|
floor->scale = v3s4_fp_one();
|
||||||
|
}
|
||||||
|
}
|
||||||
|
TapeBuilder tb = tb_make(slice_ut_arr(smem.MemTape)); {
|
||||||
|
reset_graph(0);
|
||||||
|
/* Direct BIOS: poll both ports during VBlank. */
|
||||||
|
pad_bios_init_start(& smem.pad_raw[0], & smem.pad_raw[1]);
|
||||||
|
/* Pinned registers for the GPU init atom. */
|
||||||
|
register U4* io_base_addr rgcc(R_IO_BaseAddr) = u4_r(IO_BASE_ADDR);
|
||||||
|
register DoubleBuffer* screen_buf rgcc(R_ScreenBuf) = & smem.screen_buf;
|
||||||
|
tb.used = 0; tb_scope_run(& tb) {
|
||||||
|
tb_emit(& tb, screen_env_init);
|
||||||
|
tb_emit(& tb, gp_screen_init);
|
||||||
|
}
|
||||||
|
}
|
||||||
|
while (1) {
|
||||||
|
gknown S4* active_buf_id = & smem.active_buf_id;
|
||||||
|
gknown U4* ordering_buf = r_(smem.ordering_tbl)[active_buf_id[0]];
|
||||||
|
gknown PrimitiveArena* pa = & smem.primitives;
|
||||||
|
update(pa, ordering_buf);
|
||||||
|
render();
|
||||||
|
gp_display_frame(& smem.screen_buf, active_buf_id, ordering_buf, pa);
|
||||||
|
};
|
||||||
|
return 0;
|
||||||
|
}
|
||||||
|
GCC_OPTIMIZATION_ENABLE
|
||||||
@@ -0,0 +1,102 @@
|
|||||||
|
#ifdef INTELLISENSE_DIRECTIVES
|
||||||
|
# pragma once
|
||||||
|
# include "duffle/dsl.h"
|
||||||
|
# include "duffle/math.h"
|
||||||
|
# include "duffle/gp.h"
|
||||||
|
# include "duffle/pad.h"
|
||||||
|
#endif
|
||||||
|
|
||||||
|
enum {
|
||||||
|
// PrimitiveBuff_Len = 4096,
|
||||||
|
// OrderingTbl_Len = 2048,
|
||||||
|
PrimitiveBuff_Len = 131072,
|
||||||
|
OrderingTbl_Len = 8192,
|
||||||
|
};
|
||||||
|
|
||||||
|
enum {
|
||||||
|
ScreenRes_X = 320,
|
||||||
|
ScreenRes_Y = 240,
|
||||||
|
ScreenZ = 320,
|
||||||
|
ScreenRes_CenterX = (ScreenRes_X >> 1),
|
||||||
|
ScreenRes_CenterY = (ScreenRes_Y >> 1),
|
||||||
|
};
|
||||||
|
|
||||||
|
enum {
|
||||||
|
fp_one = (1 << 12),
|
||||||
|
};
|
||||||
|
|
||||||
|
#define v3s4_fp_one() v3s4(fp_one, fp_one, fp_one)
|
||||||
|
|
||||||
|
typedef U4 OrderingTable_Buffer[OrderingTbl_Len];
|
||||||
|
typedef Array_(OrderingTable_Buffer, 2);
|
||||||
|
|
||||||
|
typedef B1 PrimitiveBuffer[PrimitiveBuff_Len];
|
||||||
|
typedef Array_(PrimitiveBuffer, 2);
|
||||||
|
typedef Struct_(PrimitiveArena) {
|
||||||
|
A2_PrimitiveBuffer buf;
|
||||||
|
U4 used;
|
||||||
|
};
|
||||||
|
|
||||||
|
#define Cube_num_verts 8
|
||||||
|
typedef Array_(V3_S2, Cube_num_verts);
|
||||||
|
#define Cube_num_faces 6
|
||||||
|
typedef Array_(V4_S2, Cube_num_faces);
|
||||||
|
I_ void ent_cube128_init(A8_V3_S2* verts, A6_V4_S2* faces) {
|
||||||
|
LP_ A8_V3_S2 baked_verts = (A8_V3_S2) {
|
||||||
|
{ -128, -128, -128 },
|
||||||
|
{ 128, -128, -128 },
|
||||||
|
{ 128, -128, 128 },
|
||||||
|
{ -128, -128, 128 },
|
||||||
|
{ -128, 128, -128 },
|
||||||
|
{ 128, 128, -128 },
|
||||||
|
{ 128, 128, 128 },
|
||||||
|
{ -128, 128, 128 }
|
||||||
|
};
|
||||||
|
LP_ A6_V4_S2 baked_faces = (A6_V4_S2) {
|
||||||
|
{ 3, 2, 0, 1 },
|
||||||
|
{ 0, 1, 4, 5 },
|
||||||
|
{ 4, 5, 7, 6 },
|
||||||
|
{ 1, 2, 5, 6 },
|
||||||
|
{ 2, 3, 6, 7 },
|
||||||
|
{ 3, 0, 7, 4 },
|
||||||
|
};
|
||||||
|
mem_copy(u4_(verts), u4_(& baked_verts), S_(A8_V3_S2) );
|
||||||
|
mem_copy(u4_(faces), u4_(& baked_faces), S_(A6_V4_S2) );
|
||||||
|
return;
|
||||||
|
}
|
||||||
|
typedef Struct_(Ent_Cube) {
|
||||||
|
V3_S4 accel;
|
||||||
|
V3_S4 vel;
|
||||||
|
V3_S4 pos;
|
||||||
|
V3_S4 scale;
|
||||||
|
V3_S2 rot;
|
||||||
|
A8_V3_S2 verts;
|
||||||
|
A6_V4_S2 faces;
|
||||||
|
};
|
||||||
|
|
||||||
|
#define Floor_num_verts 4
|
||||||
|
typedef Array_(V3_S2, Floor_num_verts);
|
||||||
|
#define Floor_num_faces 2
|
||||||
|
typedef Array_(V3_S2, Floor_num_faces);
|
||||||
|
I_ void ent_floor_init(A4_V3_S2* verts, A2_V3_S2* faces) {
|
||||||
|
LP_ A4_V3_S2 baked_verts = (A4_V3_S2) {
|
||||||
|
{ -900, 0, -900 },
|
||||||
|
{ -900, 0, 900 },
|
||||||
|
{ 900, 0, -900 },
|
||||||
|
{ 900, 0, 900 },
|
||||||
|
};
|
||||||
|
LP_ A2_V3_S2 baked_faces = (A2_V3_S2) {
|
||||||
|
{ 0, 1, 2 },
|
||||||
|
{ 1, 3, 2 },
|
||||||
|
};
|
||||||
|
mem_copy(u4_(verts), u4_(& baked_verts), S_(A4_V3_S2));
|
||||||
|
mem_copy(u4_(faces), u4_(& baked_faces), S_(A2_V3_S2));
|
||||||
|
};
|
||||||
|
typedef Struct_(Ent_Floor) {
|
||||||
|
V3_S4 accel;
|
||||||
|
V3_S4 pos;
|
||||||
|
V3_S4 scale;
|
||||||
|
V3_S2 rot;
|
||||||
|
A4_V3_S2 verts;
|
||||||
|
A2_V3_S2 faces;
|
||||||
|
};
|
||||||
@@ -0,0 +1,659 @@
|
|||||||
|
|
||||||
|
#if 0 /* ac_pad_sio_write_pad_state — superseded by pad_bios_snapshot */
|
||||||
|
|
||||||
|
/* ============================================================
|
||||||
|
* raw_sio_pad_poll_20260802 — superseded by bios_pad_buffer_snapshot_20260803.
|
||||||
|
* The doomed raw-SIO production atoms (ac_pad_sio_write_pad_state,
|
||||||
|
* pad_sio_init, pad_sio_step, pad_sio_diag_pin, pad_sio_diag_byte_exchange)
|
||||||
|
* reference symbols that were removed from code/duffle/pad.h during
|
||||||
|
* Phase 1. Each is wrapped in a narrow `#if 0` so the C compile skips
|
||||||
|
* the body while the source-as-written text stays in place for the
|
||||||
|
* Phase 5.1 deletion pass. The wrap is removed (and the bodies are
|
||||||
|
* deleted) by Phase 5.1 of this track.
|
||||||
|
* ============================================================ */
|
||||||
|
|
||||||
|
* Writes the per-port PadState in 5 instructions plus 4 store_word calls (status,
|
||||||
|
* buttons, left_x/y/right_x/right_y packed, attempt). The provisional decode publishes
|
||||||
|
* 0x0000FFFF buttons + centered axes on every path until response-byte decode lands.
|
||||||
|
*
|
||||||
|
* Args:
|
||||||
|
* status_val - the PadSioStatus enum value to publish
|
||||||
|
* state_ptr_reg - the PadState* base (R_PadState at the call site)
|
||||||
|
* scratch_reg - scratch register for the value being stored (e.g., R_T0)
|
||||||
|
*
|
||||||
|
* Emits 9 instructions (status/buttons/axes/attempt stores plus the
|
||||||
|
* two-instruction zero-extended buttons load).
|
||||||
|
*/
|
||||||
|
FI_ Slice_MipsCode ac_pad_sio_write_pad_state(U4 status_val, U4 state_ptr_reg, U4 scratch_reg)
|
||||||
|
MipsAtomComp_Proc_(ac_pad_sio_write_pad_state, {
|
||||||
|
add_ui(scratch_reg, R_0, status_val),
|
||||||
|
store_word(scratch_reg, state_ptr_reg, O_(PadState,status)),
|
||||||
|
/* FIX 2026-08-02: buttons = 0x0000FFFF = "no buttons pressed" in
|
||||||
|
* libetc convention. Build it with LUI + ORI so addiu does not
|
||||||
|
* sign-extend 0xFFFF to 0xFFFFFFFF. */
|
||||||
|
load_upper_i(scratch_reg, 0x0000),
|
||||||
|
or_i(scratch_reg, scratch_reg, 0xFFFF),
|
||||||
|
store_word(scratch_reg, state_ptr_reg, O_(PadState,buttons)),
|
||||||
|
add_ui(scratch_reg, R_0, 0x80808080),
|
||||||
|
store_word(scratch_reg, state_ptr_reg, O_(PadState,left_x)),
|
||||||
|
add_ui(scratch_reg, R_0, 0),
|
||||||
|
store_word(scratch_reg, state_ptr_reg, O_(PadState,attempt))
|
||||||
|
})
|
||||||
|
#endif /* end ac_pad_sio_write_pad_state wrap */
|
||||||
|
|
||||||
|
/* ----- pad_sio_init -----
|
||||||
|
* Boot-time SIO0 init. Caller pins R_T6 = sio_base_addr0.
|
||||||
|
* Issues SIO CTRL=0x0040 (reset), MODE=0x000D, BAUD=0x0088.
|
||||||
|
* (Phase 2 fills the body.)
|
||||||
|
*/
|
||||||
|
#if 0 /* pad_sio_init — superseded by pad_bios_init_start (Phase 1.3) */
|
||||||
|
internal MipsAtom_(pad_sio_init) atom_info(atom_phase(pad_init)
|
||||||
|
, atom_reads(R_T5, R_T6)
|
||||||
|
, atom_writes(R_T5, R_T6)
|
||||||
|
) {
|
||||||
|
/* FIX 2026-08-02: explicitly load the KSEG1 base into R_T6 at the top of
|
||||||
|
* the atom body. The rgcc(R_PadSioBase) binding in main() pins R_T6 = base
|
||||||
|
* when main() runs, but $12 is caller-saved per the O32 ABI — when tape_run
|
||||||
|
* is invoked, R_T6 is fair game. The atom body cannot rely on the value. */
|
||||||
|
load_upper_i(R_T6, pad_IO_KSEG1_BASE >> 16), /* R_T6 high 16 = 0xBF80 */
|
||||||
|
or_i(R_T6, R_T6, pad_IO_KSEG1_BASE & 0xFFFF), /* R_T6 = 0xBF800000 */
|
||||||
|
|
||||||
|
/* SIO CTRL = 0x0040 (reset) */
|
||||||
|
add_ui(R_T5, R_0, pad_SIO_CTRL_RESET),
|
||||||
|
store_half(R_T5, R_T6, pad_SIO_CTRL_OFFSET),
|
||||||
|
/* SIO MODE = 0x000D (MUL1, 8-bit, no parity, idle-high) */
|
||||||
|
add_ui(R_T5, R_0, pad_SIO_MODE_INIT),
|
||||||
|
store_half(R_T5, R_T6, pad_SIO_MODE_OFFSET),
|
||||||
|
/* SIO BAUD = 0x0088 (~250 kHz) */
|
||||||
|
add_ui(R_T5, R_0, pad_SIO_BAUD_INIT),
|
||||||
|
store_half(R_T5, R_T6, pad_SIO_BAUD_OFFSET),
|
||||||
|
mac_yield(),
|
||||||
|
};
|
||||||
|
#endif /* end pad_sio_init wrap */
|
||||||
|
|
||||||
|
/* ----- pad_sio_step -----
|
||||||
|
* Per-frame bounded raw-SIO transaction. Reads PadState pointers + SIO
|
||||||
|
* base addresses from Binds_PadSioStep; writes per-port status +
|
||||||
|
* buttons + axes into smem.pad[0..1].
|
||||||
|
* Body shape (per spec §"Transaction model (per port, per pad_sio_step)"):
|
||||||
|
* port 0: CTRL=CLEANUP → settle → CTRL=port-select → settle → exchange 5
|
||||||
|
* bytes (addr + 0x42 0x00 0x00 0x00) → decode → write PadState[0]
|
||||||
|
* → CTRL=CLEANUP.
|
||||||
|
* port 1: swap scratch regs (sio_base_addr1 → R_PadSioBase, state1 →
|
||||||
|
* R_PadState) → mirror port 0 sequence.
|
||||||
|
*
|
||||||
|
* Bounded-loop semantics: every countdown is wrapped in
|
||||||
|
* add_ui_self(R_T1, -1) + branch_ne(R_T1, R_0, ...)
|
||||||
|
* with a known maximum (pad_SIO_SETTLE_BEFORE_TX=1000, pad_SIO_SETTLE_AFTER_TX=2000,
|
||||||
|
* pad_SIO_WAIT_BUDGET=4096). The static-analysis pass currently reports
|
||||||
|
* has_loops = true; the follow-up metaprogram track that learns modeled-bounded
|
||||||
|
* loops is out of scope here (per spec §"Risks").
|
||||||
|
*
|
||||||
|
* Scratch register strategy:
|
||||||
|
* R_PadStatus = R_T4 — RESERVED for port-1 swap (holds state1)
|
||||||
|
* R_PadCountdown = R_T5 — RESERVED for port-1 swap (holds sio_base_addr1)
|
||||||
|
* R_T0 — byte-exchange value + STAT read (clobbered freely)
|
||||||
|
* R_T1 — countdown budget (clobbered freely)
|
||||||
|
* R_PadState = R_T7 — PadState* (preserved for PadState writes)
|
||||||
|
* R_PadSioBase = R_T6 — SIO base (preserved through the port)
|
||||||
|
*
|
||||||
|
* Response decode (Task 3.1 teaching scope):
|
||||||
|
* - status = PadSioStatus_Digital (hardcoded)
|
||||||
|
* - buttons = 0xFFFF (no buttons pressed in the provisional libetc
|
||||||
|
* convention; full response-byte decode is follow-up)
|
||||||
|
* - axes = 0x80808080 (centered: left_x=0x80, left_y=0x80,
|
||||||
|
* right_x=0x80, right_y=0x80)
|
||||||
|
* - attempt = 0
|
||||||
|
* - DualShock handshake (0x43 0x01 → 0x44 0x01 0x03 → 0x43 0x00) is
|
||||||
|
* follow-up scope; the hardcoded digital decode is a placeholder.
|
||||||
|
*
|
||||||
|
* Both ports raise /CS (CTRL = pad_SIO_CTRL_CLEANUP) before exit. Both ports
|
||||||
|
* treat response timeout as PadSioStatus_Disconnected per the spec §"Failure
|
||||||
|
* handling" + the canonical per-port timeout semantics.
|
||||||
|
*/
|
||||||
|
#if 0 /* pad_sio_step — superseded by pad_bios_snapshot (Phase 2.1) */
|
||||||
|
internal MipsAtom_(pad_sio_step) atom_info(atom_bind(Binds_PadSioStep)
|
||||||
|
, atom_reads(R_TapePtr, R_PadSioBase, R_PadState, R_PadStatus, R_PadCountdown)
|
||||||
|
, atom_writes(R_PadStatus, R_PadCountdown)
|
||||||
|
) {
|
||||||
|
/* FIX 2026-08-02: explicitly load KSEG1 base into R_PadSioBase (R_T6) at the
|
||||||
|
* top. The rgcc() binding in main() does NOT survive the tape_run call
|
||||||
|
* because R_T6 is caller-saved per the O32 ABI. The pad_sio_init atom
|
||||||
|
* (also in the per-frame tape) reloads R_T6 separately. */
|
||||||
|
load_upper_i(R_PadSioBase, pad_IO_KSEG1_BASE >> 16),
|
||||||
|
or_i(R_PadSioBase, R_PadSioBase, pad_IO_KSEG1_BASE & 0xFFFF),
|
||||||
|
|
||||||
|
/* Pop Binds from tape (in Binds_PadSioStep declaration order) */
|
||||||
|
load_word(R_PadState, R_TapePtr, O_(Binds_PadSioStep,state0)),
|
||||||
|
load_word(R_PadStatus, R_TapePtr, O_(Binds_PadSioStep,state1)), /* reserved for port-1 swap */
|
||||||
|
load_word(R_PadSioBase, R_TapePtr, O_(Binds_PadSioStep,sio_base_addr0)),
|
||||||
|
load_word(R_PadCountdown, R_TapePtr, O_(Binds_PadSioStep,sio_base_addr1)), /* reserved for port-1 swap */
|
||||||
|
add_ui_self(R_TapePtr, S_(Binds_PadSioStep)),
|
||||||
|
|
||||||
|
/* ============== PORT 0 TRANSACTION ============== */
|
||||||
|
/* Use R_T0 (byte value / STAT read) + R_T1 (countdown) as scratch.
|
||||||
|
* R_PadStatus (state1) + R_PadCountdown (sio_base_addr1) are preserved
|
||||||
|
* through the port-0 body and swapped into R_PadSioBase + R_PadState
|
||||||
|
* at atom_offset(port1_start, ...) below. */
|
||||||
|
|
||||||
|
/* 1. Cleanup: CTRL = 0x0010 (raise /CS, clear stale status) */
|
||||||
|
add_ui(R_T0, R_0, pad_SIO_CTRL_CLEANUP),
|
||||||
|
store_half(R_T0, R_PadSioBase, pad_SIO_CTRL_OFFSET),
|
||||||
|
/* Bounded by pad_SIO_SETTLE_BEFORE_TX = 1000 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_SETTLE_BEFORE_TX),
|
||||||
|
atom_label(settle_pre_port0)
|
||||||
|
nop, /* BD slot */
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(settle_pre_port0, settle_pre_port0)),
|
||||||
|
|
||||||
|
/* 2. Port-select: CTRL = 0x0003 (TX enable + DTR /CS) for port 0 */
|
||||||
|
add_ui(R_T0, R_0, pad_SIO_CTRL_TX_ENABLE),
|
||||||
|
or_i(R_T0, R_T0, pad_SIO_CTRL_DTR_CS), /* set /CS line low */
|
||||||
|
store_half(R_T0, R_PadSioBase, pad_SIO_CTRL_OFFSET),
|
||||||
|
/* Bounded by pad_SIO_SETTLE_AFTER_TX = 2000 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_SETTLE_AFTER_TX),
|
||||||
|
atom_label(settle_post_port0)
|
||||||
|
nop,
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(settle_post_port0, settle_post_port0)),
|
||||||
|
|
||||||
|
/* 3. Address byte (0x01) — send + RX-ready wait + read response + RX-drain confirmation */
|
||||||
|
add_ui(R_T0, R_0, pad_PROTO_ADDR),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ack0_port0)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(wait_ack0_port0, ack0_received_port0)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ack0_port0)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ack0_port0, wait_ack0_port0)),
|
||||||
|
/* RX timeout → mark disconnected; skip to port 1 */
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port0_from_ack0)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port0_from_ack0, port1_start)),
|
||||||
|
|
||||||
|
atom_label(ack0_received_port0)
|
||||||
|
/* Read open-bus response byte 0 — discard per docs/psx-spx §controllersandmemorycards.md */
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
|
||||||
|
/* Confirm RX FIFO drained before sending byte 1. Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ackrel0_port0)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_equal(R_T0, R_0, atom_offset(wait_ackrel0_port0, ack_released_port0)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ackrel0_port0)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ackrel0_port0, wait_ackrel0_port0)),
|
||||||
|
/* RX-drain timeout → disconnected; skip to port 1 */
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port0_from_ackrel0)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port0_from_ackrel0, port1_start)),
|
||||||
|
|
||||||
|
atom_label(ack_released_port0)
|
||||||
|
|
||||||
|
/* === Byte 1 (port 0): send 0x42 (cmd read) + RX-ready wait + read response + RX-drain confirmation === */
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T0, R_0, pad_PROTO_CMD_READ),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ack1_port0)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(wait_ack1_port0, ack1_received_port0)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ack1_port0)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ack1_port0, wait_ack1_port0)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port0_from_ack1)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port0_from_ack1, port1_start)),
|
||||||
|
|
||||||
|
atom_label(ack1_received_port0)
|
||||||
|
/* Read response ID byte — discarded for teaching scope (decode hardcoded). */
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
|
||||||
|
/* RX FIFO drain wait. Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ackrel1_port0)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_equal(R_T0, R_0, atom_offset(wait_ackrel1_port0, ack_released1_port0)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ackrel1_port0)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ackrel1_port0, wait_ackrel1_port0)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port0_from_ackrel1)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port0_from_ackrel1, port1_start)),
|
||||||
|
|
||||||
|
atom_label(ack_released1_port0)
|
||||||
|
|
||||||
|
/* === Byte 2 (port 0): send 0x00 + RX-ready wait + read response + RX-drain confirmation === */
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T0, R_0, 0x00),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ack2_port0)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(wait_ack2_port0, ack2_received_port0)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ack2_port0)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ack2_port0, wait_ack2_port0)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port0_from_ack2)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port0_from_ack2, port1_start)),
|
||||||
|
|
||||||
|
atom_label(ack2_received_port0)
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ackrel2_port0)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_equal(R_T0, R_0, atom_offset(wait_ackrel2_port0, ack_released2_port0)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ackrel2_port0)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ackrel2_port0, wait_ackrel2_port0)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port0_from_ackrel2)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port0_from_ackrel2, port1_start)),
|
||||||
|
|
||||||
|
atom_label(ack_released2_port0)
|
||||||
|
|
||||||
|
/* === Byte 3 (port 0): send 0x00 + RX-ready wait + read response + RX-drain confirmation === */
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T0, R_0, 0x00),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ack3_port0)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(wait_ack3_port0, ack3_received_port0)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ack3_port0)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ack3_port0, wait_ack3_port0)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port0_from_ack3)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port0_from_ack3, port1_start)),
|
||||||
|
|
||||||
|
atom_label(ack3_received_port0)
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ackrel3_port0)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_equal(R_T0, R_0, atom_offset(wait_ackrel3_port0, ack_released3_port0)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ackrel3_port0)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ackrel3_port0, wait_ackrel3_port0)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port0_from_ackrel3)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port0_from_ackrel3, port1_start)),
|
||||||
|
|
||||||
|
atom_label(ack_released3_port0)
|
||||||
|
|
||||||
|
/* === Byte 4 (FINAL, port 0): send 0x00 + RX-not-empty wait + read final byte === */
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T0, R_0, 0x00),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_rx4_port0)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(wait_rx4_port0, rx4_received_port0)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_rx4_port0)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_rx4_port0, wait_rx4_port0)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port0_from_rx4)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port0_from_rx4, port1_start)),
|
||||||
|
|
||||||
|
atom_label(rx4_received_port0)
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET), /* discard final byte */
|
||||||
|
|
||||||
|
/* === RESPONSE DECODE (hardcoded for teaching scope) ===
|
||||||
|
* Per the plan §"Phase 3 task 3.1" + spec §"Architecture":
|
||||||
|
* - Full decode (buttons/axes from response bytes) is follow-up scope.
|
||||||
|
* - Teaching scope: hardcode digital poll response.
|
||||||
|
* status = PadSioStatus_Digital
|
||||||
|
* buttons = 0x0000FFFF (no buttons pressed — placeholder)
|
||||||
|
* axes = 0x80808080 (left_x=0x80, left_y=0x80, right_x=0x80, right_y=0x80)
|
||||||
|
* attempt = 0
|
||||||
|
*/
|
||||||
|
atom_label(decode_port0)
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Digital, R_PadState, R_T0),
|
||||||
|
|
||||||
|
/* /CS cleanup: raise /CS, clear stale status before exiting port 0. */
|
||||||
|
add_ui(R_T0, R_0, pad_SIO_CTRL_CLEANUP),
|
||||||
|
store_half(R_T0, R_PadSioBase, pad_SIO_CTRL_OFFSET),
|
||||||
|
|
||||||
|
/* ============== PORT 1 SETUP ============== */
|
||||||
|
/* Swap: R_PadCountdown holds sio_base_addr1; R_PadStatus holds state1. */
|
||||||
|
atom_label(port1_start)
|
||||||
|
add_u(R_PadSioBase, R_0, R_PadCountdown), /* sio_base_addr1 → R_PadSioBase */
|
||||||
|
add_u(R_PadState, R_0, R_PadStatus), /* state1 → R_PadState */
|
||||||
|
|
||||||
|
/* ============== PORT 1 TRANSACTION (mirror of port 0) ============== */
|
||||||
|
/* R_PadStatus + R_PadCountdown are no longer reserved (port 1 is the
|
||||||
|
* last transaction); we still use R_T0/R_T1 as scratch to match port 0. */
|
||||||
|
|
||||||
|
/* 1. Cleanup: CTRL = 0x0010 (raise /CS, clear stale status) */
|
||||||
|
add_ui(R_T0, R_0, pad_SIO_CTRL_CLEANUP),
|
||||||
|
store_half(R_T0, R_PadSioBase, pad_SIO_CTRL_OFFSET),
|
||||||
|
/* Bounded by pad_SIO_SETTLE_BEFORE_TX = 1000 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_SETTLE_BEFORE_TX),
|
||||||
|
atom_label(settle_pre_port1)
|
||||||
|
nop,
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(settle_pre_port1, settle_pre_port1)),
|
||||||
|
|
||||||
|
/* 2. Port-select: CTRL = 0x0003 | (1 << 13) (port 1 select) */
|
||||||
|
add_ui(R_T0, R_0, pad_SIO_CTRL_TX_ENABLE),
|
||||||
|
or_i(R_T0, R_T0, pad_SIO_CTRL_DTR_CS),
|
||||||
|
or_i(R_T0, R_T0, 1 << 13), /* port 1 select bit (CTRL bit 13 = port select) */
|
||||||
|
store_half(R_T0, R_PadSioBase, pad_SIO_CTRL_OFFSET),
|
||||||
|
/* Bounded by pad_SIO_SETTLE_AFTER_TX = 2000 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_SETTLE_AFTER_TX),
|
||||||
|
atom_label(settle_post_port1)
|
||||||
|
nop,
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(settle_post_port1, settle_post_port1)),
|
||||||
|
|
||||||
|
/* 3. Address byte (0x01) — send + RX-ready wait + read response + RX-drain confirmation */
|
||||||
|
add_ui(R_T0, R_0, pad_PROTO_ADDR),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ack0_port1)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(wait_ack0_port1, ack0_received_port1)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ack0_port1)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ack0_port1, wait_ack0_port1)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port1_from_ack0)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port1_from_ack0, end_atom)),
|
||||||
|
|
||||||
|
atom_label(ack0_received_port1)
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ackrel0_port1)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_equal(R_T0, R_0, atom_offset(wait_ackrel0_port1, ack_released_port1)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ackrel0_port1)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ackrel0_port1, wait_ackrel0_port1)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port1_from_ackrel0)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port1_from_ackrel0, end_atom)),
|
||||||
|
|
||||||
|
atom_label(ack_released_port1)
|
||||||
|
|
||||||
|
/* === Byte 1 (port 1): send 0x42 (cmd read) + RX-ready wait + read response + RX-drain confirmation === */
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T0, R_0, pad_PROTO_CMD_READ),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ack1_port1)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(wait_ack1_port1, ack1_received_port1)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ack1_port1)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ack1_port1, wait_ack1_port1)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port1_from_ack1)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port1_from_ack1, end_atom)),
|
||||||
|
|
||||||
|
atom_label(ack1_received_port1)
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ackrel1_port1)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_equal(R_T0, R_0, atom_offset(wait_ackrel1_port1, ack_released1_port1)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ackrel1_port1)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ackrel1_port1, wait_ackrel1_port1)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port1_from_ackrel1)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port1_from_ackrel1, end_atom)),
|
||||||
|
|
||||||
|
atom_label(ack_released1_port1)
|
||||||
|
|
||||||
|
/* === Byte 2 (port 1): send 0x00 + RX-ready wait + read response + RX-drain confirmation === */
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T0, R_0, 0x00),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ack2_port1)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(wait_ack2_port1, ack2_received_port1)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ack2_port1)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ack2_port1, wait_ack2_port1)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port1_from_ack2)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port1_from_ack2, end_atom)),
|
||||||
|
|
||||||
|
atom_label(ack2_received_port1)
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ackrel2_port1)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_equal(R_T0, R_0, atom_offset(wait_ackrel2_port1, ack_released2_port1)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ackrel2_port1)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ackrel2_port1, wait_ackrel2_port1)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port1_from_ackrel2)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port1_from_ackrel2, end_atom)),
|
||||||
|
|
||||||
|
atom_label(ack_released2_port1)
|
||||||
|
|
||||||
|
/* === Byte 3 (port 1): send 0x00 + RX-ready wait + read response + RX-drain confirmation === */
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T0, R_0, 0x00),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ack3_port1)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(wait_ack3_port1, ack3_received_port1)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ack3_port1)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ack3_port1, wait_ack3_port1)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port1_from_ack3)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port1_from_ack3, end_atom)),
|
||||||
|
|
||||||
|
atom_label(ack3_received_port1)
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_ackrel3_port1)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_equal(R_T0, R_0, atom_offset(wait_ackrel3_port1, ack_released3_port1)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_ackrel3_port1)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_ackrel3_port1, wait_ackrel3_port1)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port1_from_ackrel3)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port1_from_ackrel3, end_atom)),
|
||||||
|
|
||||||
|
atom_label(ack_released3_port1)
|
||||||
|
|
||||||
|
/* === Byte 4 (FINAL, port 1): send 0x00 + RX-not-empty wait + read final byte === */
|
||||||
|
/* Bounded by pad_SIO_WAIT_BUDGET = 4096 iterations. */
|
||||||
|
add_ui(R_T0, R_0, 0x00),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(wait_rx4_port1)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(wait_rx4_port1, rx4_received_port1)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
atom_label(continue_wait_rx4_port1)
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(continue_wait_rx4_port1, wait_rx4_port1)),
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Disconnected, R_PadState, R_T0),
|
||||||
|
atom_label(skip_port1_from_rx4)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(skip_port1_from_rx4, end_atom)),
|
||||||
|
|
||||||
|
atom_label(rx4_received_port1)
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET), /* discard final byte */
|
||||||
|
|
||||||
|
/* === RESPONSE DECODE (port 1) === */
|
||||||
|
atom_label(decode_port1)
|
||||||
|
mac_pad_sio_write_pad_state(PadSioStatus_Digital, R_PadState, R_T0),
|
||||||
|
|
||||||
|
/* /CS cleanup: raise /CS, clear stale status before exiting port 1. */
|
||||||
|
add_ui(R_T0, R_0, pad_SIO_CTRL_CLEANUP),
|
||||||
|
store_half(R_T0, R_PadSioBase, pad_SIO_CTRL_OFFSET),
|
||||||
|
|
||||||
|
atom_label(end_atom)
|
||||||
|
mac_yield(),
|
||||||
|
};
|
||||||
|
#endif /* end pad_sio_step wrap */
|
||||||
|
|
||||||
|
/* ----- pad_sio_diag_pin -----
|
||||||
|
* Per-frame diagnostic counter. The caller binds R_DiagPinScratch to
|
||||||
|
* scratch_for_atom_diag_pin for temporary gdb verification.
|
||||||
|
*/
|
||||||
|
#if 0 /* pad_sio_diag_pin — superseded (raw-SIO phase removed) */
|
||||||
|
internal MipsAtom_(pad_sio_diag_pin) atom_info(atom_phase(pad_init)
|
||||||
|
, atom_reads(R_T0, R_T1, R_DiagPinScratch)
|
||||||
|
, atom_writes(R_T0, R_T1, R_DiagPinScratch)
|
||||||
|
) {
|
||||||
|
/* FIX 2026-08-02: explicitly reload R_DiagPinScratch (R_T3 = $t3). Caller-saved
|
||||||
|
* per O32 ABI; the rgcc binding in main() does not survive tape_run. */
|
||||||
|
load_upper_i(R_DiagPinScratch, 0x8001),
|
||||||
|
or_i(R_DiagPinScratch, R_DiagPinScratch, 0xC800),
|
||||||
|
|
||||||
|
/* High half = 0xD1A6; low half increments once per atom invocation. */
|
||||||
|
load_word(R_T1, R_DiagPinScratch, 0),
|
||||||
|
nop,
|
||||||
|
add_ui(R_T1, R_T1, 1),
|
||||||
|
and_i(R_T0, R_T1, 0xFFFF),
|
||||||
|
load_upper_i(R_T1, 0xD1A6),
|
||||||
|
or_i(R_T1, R_T1, 0),
|
||||||
|
or_u(R_T1, R_T1, R_T0),
|
||||||
|
store_word(R_T1, R_DiagPinScratch, 0),
|
||||||
|
mac_yield(),
|
||||||
|
};
|
||||||
|
#endif /* end pad_sio_diag_pin wrap */
|
||||||
|
|
||||||
|
/* ----- pad_sio_diag_byte_exchange -----
|
||||||
|
* Temporary two-byte wire probe: sends 0x01 and 0x42, then stores the
|
||||||
|
* open-bus byte and response ID in scratch_for_atom_diag_pin.
|
||||||
|
*/
|
||||||
|
#if 0 /* pad_sio_diag_byte_exchange — superseded (raw-SIO phase removed) */
|
||||||
|
internal MipsAtom_(pad_sio_diag_byte_exchange) atom_info(atom_phase(pad_init)
|
||||||
|
, atom_reads(R_T0, R_T1, R_T2, R_PadSioBase, R_DiagPinScratch)
|
||||||
|
, atom_writes(R_T0, R_T1, R_T2, R_PadSioBase, R_DiagPinScratch)
|
||||||
|
) {
|
||||||
|
/* FIX 2026-08-02: explicitly reload R_DiagPinScratch (R_T3 = $t3). Caller-saved
|
||||||
|
* per O32 ABI; the rgcc binding in main() does not survive tape_run. */
|
||||||
|
load_upper_i(R_DiagPinScratch, 0x8001),
|
||||||
|
or_i(R_DiagPinScratch, R_DiagPinScratch, 0xC800),
|
||||||
|
|
||||||
|
/* FIX 2026-08-02: explicitly load KSEG1 base into R_PadSioBase (R_T6) at the
|
||||||
|
* top. The rgcc() binding in main() does NOT survive the tape_run call
|
||||||
|
* because R_T6 is caller-saved per the O32 ABI. */
|
||||||
|
load_upper_i(R_PadSioBase, pad_IO_KSEG1_BASE >> 16),
|
||||||
|
or_i(R_PadSioBase, R_PadSioBase, pad_IO_KSEG1_BASE & 0xFFFF),
|
||||||
|
|
||||||
|
add_ui(R_T0, R_0, pad_SIO_CTRL_CLEANUP),
|
||||||
|
store_half(R_T0, R_PadSioBase, pad_SIO_CTRL_OFFSET),
|
||||||
|
add_ui(R_T0, R_0, pad_SIO_CTRL_TX_ENABLE),
|
||||||
|
or_i(R_T0, R_T0, pad_SIO_CTRL_DTR_CS),
|
||||||
|
store_half(R_T0, R_PadSioBase, pad_SIO_CTRL_OFFSET),
|
||||||
|
|
||||||
|
add_ui(R_T0, R_0, pad_PROTO_ADDR),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(diag_wait_ack0)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(diag_wait_ack0, diag_ack0_done)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(diag_wait_ack0, diag_wait_ack0)),
|
||||||
|
add_ui(R_T0, R_0, 0xDEADAC01),
|
||||||
|
store_word(R_T0, R_DiagPinScratch, 0),
|
||||||
|
branch_equal(R_0, R_0, atom_offset(diag_timeout_ack0, diag_timeout)),
|
||||||
|
atom_label(diag_ack0_done)
|
||||||
|
load_byte_u(R_T2, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T0, R_0, pad_PROTO_CMD_READ),
|
||||||
|
store_byte(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
add_ui(R_T1, R_0, pad_SIO_WAIT_BUDGET),
|
||||||
|
atom_label(diag_wait_ack1)
|
||||||
|
load_half_u(R_T0, R_PadSioBase, pad_SIO_STAT_OFFSET),
|
||||||
|
nop,
|
||||||
|
and_i(R_T0, R_T0, pad_SIO_STAT_RX_NOT_EMPTY),
|
||||||
|
branch_ne(R_T0, R_0, atom_offset(diag_wait_ack1, diag_ack1_done)),
|
||||||
|
add_ui_self(R_T1, -1),
|
||||||
|
branch_ne(R_T1, R_0, atom_offset(diag_wait_ack1, diag_wait_ack1)),
|
||||||
|
add_ui(R_T0, R_0, 0xDEADAC02),
|
||||||
|
store_word(R_T0, R_DiagPinScratch, 0),
|
||||||
|
branch_equal(R_0, R_0, atom_offset(diag_timeout_ack1, diag_timeout)),
|
||||||
|
atom_label(diag_ack1_done)
|
||||||
|
load_byte_u(R_T0, R_PadSioBase, pad_SIO_DATA_OFFSET),
|
||||||
|
nop,
|
||||||
|
shift_lleft(R_T0, R_T0, 8),
|
||||||
|
or_u(R_T2, R_T2, R_T0),
|
||||||
|
store_word(R_T2, R_DiagPinScratch, 0),
|
||||||
|
atom_label(diag_success)
|
||||||
|
branch_equal(R_0, R_0, atom_offset(diag_success, diag_done)),
|
||||||
|
nop,
|
||||||
|
atom_label(diag_timeout_ack0)
|
||||||
|
add_ui(R_T0, R_0, 0xDEADAC01),
|
||||||
|
store_word(R_T0, R_DiagPinScratch, 0),
|
||||||
|
atom_label(diag_timeout_ack1)
|
||||||
|
add_ui(R_T0, R_0, 0xDEADAC02),
|
||||||
|
store_word(R_T0, R_DiagPinScratch, 0),
|
||||||
|
atom_label(diag_timeout)
|
||||||
|
add_ui(R_T0, R_0, 0xDEADACFF),
|
||||||
|
store_word(R_T0, R_DiagPinScratch, 0),
|
||||||
|
atom_label(diag_done)
|
||||||
|
add_ui(R_T0, R_0, pad_SIO_CTRL_CLEANUP),
|
||||||
|
store_half(R_T0, R_PadSioBase, pad_SIO_CTRL_OFFSET),
|
||||||
|
mac_yield(),
|
||||||
|
};
|
||||||
|
#endif /* end pad_sio_diag_byte_exchange wrap */
|
||||||
@@ -7,12 +7,12 @@ A rest from the usual.
|
|||||||
## Dependencies
|
## Dependencies
|
||||||
|
|
||||||
I will be programming from a Windows 11 machine (may eventually try this on the Steam Deck...):
|
I will be programming from a Windows 11 machine (may eventually try this on the Steam Deck...):
|
||||||

|
|
||||||
|
|
||||||
[armips](https://github.com/Kingcom/armips)
|
[armips](https://github.com/Kingcom/armips)
|
||||||
|
|
||||||
* Supports doing bare-metal assembly for the ps1
|
* Supports doing bare-metal assembly for the ps1
|
||||||
* `scoop install armips` or just clone and build..
|
* `scoop install armips` or just clone and build..
|
||||||
|
* Was used early in the course. Now I just use an macro asm dsl in C11.
|
||||||
|
|
||||||
[luajit-2.1](https://github.com/LuaJIT/LuaJIT.git)
|
[luajit-2.1](https://github.com/LuaJIT/LuaJIT.git)
|
||||||
|
|
||||||
@@ -73,3 +73,9 @@ scoop install luajit
|
|||||||

|

|
||||||

|

|
||||||

|

|
||||||
|
|
||||||
|
Win 11 machine:
|
||||||
|
|
||||||
|

|
||||||
|
|
||||||
|
Still haven't gotten around to trying this on linux...
|
||||||
|
|||||||
+179
-76
@@ -180,29 +180,18 @@ function link-modules { param([string[]]$link_modules, [string] $elf, [string[]
|
|||||||
$link_args += ($f_link_pass_through_prefix + $f_link_mapfile + $map)
|
$link_args += ($f_link_pass_through_prefix + $f_link_mapfile + $map)
|
||||||
|
|
||||||
$link_args += ($f_link_pass_through_prefix + $f_link_start_group)
|
$link_args += ($f_link_pass_through_prefix + $f_link_start_group)
|
||||||
|
# raw_sio_pad_poll_20260802 — Task 5.1c surgical library-list trim.
|
||||||
|
# The 16 removed entries (c2, card, cd, comb, ds, gs, gun, hmd, math,
|
||||||
|
# mcrd, mcx, press, sio, snd, spu, tap) had LOAD lines in the map but
|
||||||
|
# ZERO .o files pulled in — they were unused. The 5 kept libraries
|
||||||
|
# (api, c, etc, gpu, gte) are required by the C-side calls in
|
||||||
|
# hello_joypad.c (reset_graph, draw_sync, vsync, etc.).
|
||||||
$libraries = @(
|
$libraries = @(
|
||||||
"api",
|
"api",
|
||||||
"c",
|
"c",
|
||||||
"c2",
|
|
||||||
"card",
|
|
||||||
"cd",
|
|
||||||
"comb",
|
|
||||||
"ds",
|
|
||||||
"etc",
|
"etc",
|
||||||
"gpu",
|
"gpu",
|
||||||
"gs",
|
"gte"
|
||||||
"gte",
|
|
||||||
"gun",
|
|
||||||
"hmd",
|
|
||||||
"math",
|
|
||||||
"mcrd",
|
|
||||||
"mcx",
|
|
||||||
"pad",
|
|
||||||
"press",
|
|
||||||
"sio",
|
|
||||||
"snd",
|
|
||||||
"spu",
|
|
||||||
"tap"
|
|
||||||
)
|
)
|
||||||
foreach ($lib in $libraries) {
|
foreach ($lib in $libraries) {
|
||||||
$link_args += ($f_link_lib + $lib)
|
$link_args += ($f_link_lib + $lib)
|
||||||
@@ -276,6 +265,73 @@ function ps1-meta { param(
|
|||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
function inject-dwarf { param(
|
||||||
|
[string]$elf,
|
||||||
|
[string]$path_gen
|
||||||
|
)
|
||||||
|
$base_name = [System.IO.Path]::GetFileNameWithoutExtension($elf)
|
||||||
|
$path_dwarf_line_bin = join-path $path_gen "$base_name.dwarf_line.bin"
|
||||||
|
$path_dwarf_aranges_bin = join-path $path_gen "$base_name.dwarf_aranges.bin"
|
||||||
|
$path_dwarf_rnglists_bin = join-path $path_gen "$base_name.dwarf_rnglists.bin"
|
||||||
|
$path_dwarf_info_bin = join-path $path_gen "$base_name.dwarf_info.bin"
|
||||||
|
$path_dwarf_abbrev_bin = join-path $path_gen "$base_name.dwarf_abbrev.bin"
|
||||||
|
$path_dwarf_str_bin = join-path $path_gen "$base_name.dwarf_str.bin"
|
||||||
|
$path_dwarf_loc_bin = join-path $path_gen "$base_name.dwarf_loc.bin"
|
||||||
|
$path_dwarf_loclists_bin = join-path $path_gen "$base_name.dwarf_loclists.bin"
|
||||||
|
$path_inject_elf = join-path $path_build "$base_name.dwarf-injected.elf"
|
||||||
|
|
||||||
|
if (-not (Test-Path $path_dwarf_line_bin)) { return }
|
||||||
|
if (-not (Test-Path $path_dwarf_aranges_bin)) { return }
|
||||||
|
if (-not (Test-Path $path_dwarf_rnglists_bin)) { return }
|
||||||
|
|
||||||
|
Write-Host "[build] DWARF-injecting $elf -> $path_inject_elf"
|
||||||
|
Copy-Item -LiteralPath $elf -Destination $path_inject_elf -Force
|
||||||
|
|
||||||
|
# Objcopy call 1: 3x --update-section for the PC-mapping tables (line, aranges, rnglists).
|
||||||
|
$objcopy_args_dwarf_pc = @(
|
||||||
|
"--update-section=.debug_line=$path_dwarf_line_bin",
|
||||||
|
"--update-section=.debug_aranges=$path_dwarf_aranges_bin",
|
||||||
|
"--update-section=.debug_rnglists=$path_dwarf_rnglists_bin"
|
||||||
|
)
|
||||||
|
& $Objcopy @objcopy_args_dwarf_pc $path_inject_elf 2>&1 | Out-Null
|
||||||
|
if ($LASTEXITCODE -ne 0) {
|
||||||
|
Write-Warning "[build] objcopy dwarf-pc splice failed (exit $LASTEXITCODE); removing $path_inject_elf"
|
||||||
|
Remove-Item -LiteralPath $path_inject_elf -ErrorAction SilentlyContinue
|
||||||
|
return
|
||||||
|
}
|
||||||
|
|
||||||
|
# Objcopy call 2: 3x --update-section + 2x --add-section for the debug-data tables (info, abbrev, str, loc, loclists).
|
||||||
|
$objcopy_args_dwarf_info = @(
|
||||||
|
"--update-section=.debug_info=$path_dwarf_info_bin",
|
||||||
|
"--update-section=.debug_abbrev=$path_dwarf_abbrev_bin",
|
||||||
|
"--update-section=.debug_str=$path_dwarf_str_bin",
|
||||||
|
"--add-section=.debug_loc=$path_dwarf_loc_bin",
|
||||||
|
"--add-section=.debug_loclists=$path_dwarf_loclists_bin"
|
||||||
|
)
|
||||||
|
& $Objcopy @objcopy_args_dwarf_info $path_inject_elf 2>&1 | Out-Null
|
||||||
|
if ($LASTEXITCODE -ne 0) {
|
||||||
|
Write-Warning "[build] objcopy dwarf-info splice failed (exit $LASTEXITCODE); removing $path_inject_elf"
|
||||||
|
Remove-Item -LiteralPath $path_inject_elf -ErrorAction SilentlyContinue
|
||||||
|
return
|
||||||
|
}
|
||||||
|
|
||||||
|
# Baked atoms execute from RAM but are emitted as C data arrays, so their ELF sections lack SHF_EXECINSTR.
|
||||||
|
# GDB discards line rows for non-code sections. Mark only the debug-copy sections executable.
|
||||||
|
# The original ELF and PS-EXE remain byte/flag unchanged.
|
||||||
|
& $Objcopy `
|
||||||
|
--set-section-flags ".rodata=alloc,load,readonly,code,contents" `
|
||||||
|
--set-section-flags ".data=alloc,load,data,code,contents" `
|
||||||
|
$path_inject_elf 2>&1 | Out-Null
|
||||||
|
if ($LASTEXITCODE -ne 0) {
|
||||||
|
Write-Warning "[build] atom-section flag update failed (exit $LASTEXITCODE); removing $path_inject_elf"
|
||||||
|
Remove-Item -LiteralPath $path_inject_elf -ErrorAction SilentlyContinue
|
||||||
|
}
|
||||||
|
else {
|
||||||
|
Write-Host "[build] DWARF-injected ELF: $path_inject_elf"
|
||||||
|
}
|
||||||
|
}
|
||||||
|
# inject-dwarf
|
||||||
|
|
||||||
function build-hello_psyqo {
|
function build-hello_psyqo {
|
||||||
$includes += @()
|
$includes += @()
|
||||||
|
|
||||||
@@ -350,10 +406,10 @@ function build-graphis_hello {
|
|||||||
}
|
}
|
||||||
# build-graphis_hello
|
# build-graphis_hello
|
||||||
|
|
||||||
function build-gte_hello {
|
function build-hello_gte {
|
||||||
$includes += @()
|
$includes += @()
|
||||||
|
|
||||||
$path_module = join-path $path_code 'gte_hello'
|
$path_module = join-path $path_code 'hello_gte'
|
||||||
$path_duffle = join-path $path_code 'duffle'
|
$path_duffle = join-path $path_code 'duffle'
|
||||||
$path_atom_metadata = join-path $path_duffle 'word_count.metadata.h'
|
$path_atom_metadata = join-path $path_duffle 'word_count.metadata.h'
|
||||||
$path_build_gen = join-path $path_build 'gen'
|
$path_build_gen = join-path $path_build 'gen'
|
||||||
@@ -402,64 +458,111 @@ function build-gte_hello {
|
|||||||
# Post-link: gdb-runtime + dwarf-injection in a single Lua invocation (one luajit cold start).
|
# Post-link: gdb-runtime + dwarf-injection in a single Lua invocation (one luajit cold start).
|
||||||
ps1-meta -unity_root $src_c -metadata $path_atom_metadata -out_root $path_build_gen -passes @('--post-link') ` -extra_args @('--elf', $elf)
|
ps1-meta -unity_root $src_c -metadata $path_atom_metadata -out_root $path_build_gen -passes @('--post-link') ` -extra_args @('--elf', $elf)
|
||||||
|
|
||||||
$dwarfLineBin = join-path $path_build_gen 'hello_gte.dwarf_line.bin'
|
inject-dwarf $elf $path_build_gen
|
||||||
$dwarfArangesBin = join-path $path_build_gen 'hello_gte.dwarf_aranges.bin'
|
|
||||||
$dwarfRnglistsBin = join-path $path_build_gen 'hello_gte.dwarf_rnglists.bin'
|
|
||||||
$injectElf = join-path $path_build 'hello_gte.dwarf-injected.elf'
|
|
||||||
if ((Test-Path $dwarfLineBin) -and (Test-Path $dwarfArangesBin) -and (Test-Path $dwarfRnglistsBin))
|
|
||||||
{
|
|
||||||
Write-Host "[build] DWARF-injecting $elf -> $injectElf"
|
|
||||||
Copy-Item -LiteralPath $elf -Destination $injectElf -Force
|
|
||||||
# Objcopy call: 3x --update-section for (line, aranges, rnglists).
|
|
||||||
$f_args = @(
|
|
||||||
"--update-section=.debug_line=$dwarfLineBin",
|
|
||||||
"--update-section=.debug_aranges=$dwarfArangesBin",
|
|
||||||
"--update-section=.debug_rnglists=$dwarfRnglistsBin"
|
|
||||||
)
|
|
||||||
& $Objcopy @f_args $injectElf 2>&1 | Out-Null
|
|
||||||
if ($LASTEXITCODE -ne 0) {
|
|
||||||
Write-Warning "[build] objcopy F' splice failed (exit $LASTEXITCODE); removing $injectElf"
|
|
||||||
Remove-Item -LiteralPath $injectElf -ErrorAction SilentlyContinue
|
|
||||||
return;
|
|
||||||
}
|
|
||||||
|
|
||||||
$dwarfInfoBin = join-path $path_build_gen 'hello_gte.dwarf_info.bin'
|
|
||||||
$dwarfAbbrevBin = join-path $path_build_gen 'hello_gte.dwarf_abbrev.bin'
|
|
||||||
$dwarfStrBin = join-path $path_build_gen 'hello_gte.dwarf_str.bin'
|
|
||||||
$dwarfLocBin = join-path $path_build_gen 'hello_gte.dwarf_loc.bin'
|
|
||||||
$dwarfLoclistsBin = join-path $path_build_gen 'hello_gte.dwarf_loclists.bin'
|
|
||||||
$g_args = @(
|
|
||||||
"--update-section=.debug_info=$dwarfInfoBin",
|
|
||||||
"--update-section=.debug_abbrev=$dwarfAbbrevBin",
|
|
||||||
"--update-section=.debug_str=$dwarfStrBin",
|
|
||||||
"--add-section=.debug_loc=$dwarfLocBin",
|
|
||||||
"--add-section=.debug_loclists=$dwarfLoclistsBin"
|
|
||||||
)
|
|
||||||
& $Objcopy @g_args $injectElf 2>&1 | Out-Null
|
|
||||||
if ($LASTEXITCODE -ne 0) {
|
|
||||||
Write-Warning "[build] objcopy G' splice failed (exit $LASTEXITCODE); removing $injectElf"
|
|
||||||
Remove-Item -LiteralPath $injectElf -ErrorAction SilentlyContinue
|
|
||||||
return;
|
|
||||||
}
|
|
||||||
|
|
||||||
# Baked atoms execute from RAM but are emitted as C data arrays, so their ELF sections lack SHF_EXECINSTR.
|
|
||||||
# GDB discards line rows for non-code sections. Mark only the debug-copy sections executable.
|
|
||||||
# The original ELF and PS-EXE remain byte/flag unchanged.
|
|
||||||
& $Objcopy `
|
|
||||||
--set-section-flags ".rodata=alloc,load,readonly,code,contents" `
|
|
||||||
--set-section-flags ".data=alloc,load,data,code,contents" `
|
|
||||||
$injectElf 2>&1 | Out-Null
|
|
||||||
if ($LASTEXITCODE -ne 0) {
|
|
||||||
Write-Warning "[build] atom-section flag update failed (exit $LASTEXITCODE); removing $injectElf"
|
|
||||||
Remove-Item -LiteralPath $injectElf -ErrorAction SilentlyContinue
|
|
||||||
}
|
|
||||||
else {
|
|
||||||
Write-Host "[build] DWARF-injected ELF: $injectElf"
|
|
||||||
}
|
|
||||||
}
|
|
||||||
}
|
}
|
||||||
build-gte_hello
|
# build-hello_gte
|
||||||
|
|
||||||
|
function build-hello_joypad {
|
||||||
|
$includes += @()
|
||||||
|
|
||||||
|
$path_module = join-path $path_code 'hello_joypad'
|
||||||
|
$path_duffle = join-path $path_code 'duffle'
|
||||||
|
$path_atom_metadata = join-path $path_duffle 'word_count.metadata.h'
|
||||||
|
$path_build_gen = join-path $path_build 'gen'
|
||||||
|
|
||||||
|
$src_c = join-path $path_module 'hello_joypad.c'
|
||||||
|
ps1-meta -unity_root $src_c -metadata $path_atom_metadata -out_root $path_build_gen
|
||||||
|
|
||||||
|
$assemble_args = @()
|
||||||
|
$assemble_args += $f_debug
|
||||||
|
$assemble_args += $f_optimize_none
|
||||||
|
$assemble_args += ($f_include + $path_code)
|
||||||
|
|
||||||
|
$src_asm_crt = join-path $path_nugget_common 'crt0/crt0.s'
|
||||||
|
$module_asm_crt = join-path $path_build 'crt0.o'
|
||||||
|
assemble-unit $src_asm_crt $module_asm_crt $includes $assemble_args
|
||||||
|
|
||||||
|
$module_c = join-path $path_build 'hello_joypad_c.o'
|
||||||
|
|
||||||
|
$compile_args = @()
|
||||||
|
$compile_args += $f_debug
|
||||||
|
$compile_args += $f_optimize_none
|
||||||
|
# $compile_args += $f_optimize_intrinsics
|
||||||
|
# $compile_args += $f_optimize_size
|
||||||
|
# $compile_args += $f_optimize_debug
|
||||||
|
$compile_args += ($f_include + $path_code)
|
||||||
|
compile-unit $src_c $module_c $includes $compile_args
|
||||||
|
|
||||||
|
$elf = join-path $path_build 'hello_joypad.elf'
|
||||||
|
$exe = join-path $path_build 'hello_joypad.ps-exe'
|
||||||
|
|
||||||
|
$link_args = @()
|
||||||
|
$link_args += $f_debug
|
||||||
|
# $link_args += $f_optimize_size
|
||||||
|
$link_modules = @(
|
||||||
|
$module_asm_crt,
|
||||||
|
$module_c
|
||||||
|
)
|
||||||
|
link-modules $link_modules $elf $link_args
|
||||||
|
make-binary $elf $exe
|
||||||
|
|
||||||
|
# Post-link: gdb-runtime + dwarf-injection in a single Lua invocation (one luajit cold start).
|
||||||
|
ps1-meta -unity_root $src_c -metadata $path_atom_metadata -out_root $path_build_gen -passes @('--post-link') ` -extra_args @('--elf', $elf)
|
||||||
|
|
||||||
|
inject-dwarf $elf $path_build_gen
|
||||||
|
}
|
||||||
|
# build-hello_joypad
|
||||||
|
|
||||||
|
function build-hello_camera {
|
||||||
|
$includes += @()
|
||||||
|
|
||||||
|
$path_module = join-path $path_code 'hello_camera'
|
||||||
|
$path_duffle = join-path $path_code 'duffle'
|
||||||
|
$path_atom_metadata = join-path $path_duffle 'word_count.metadata.h'
|
||||||
|
$path_build_gen = join-path $path_build 'gen'
|
||||||
|
|
||||||
|
$src_c = join-path $path_module 'hello_camera.c'
|
||||||
|
ps1-meta -unity_root $src_c -metadata $path_atom_metadata -out_root $path_build_gen
|
||||||
|
|
||||||
|
$assemble_args = @()
|
||||||
|
$assemble_args += $f_debug
|
||||||
|
$assemble_args += $f_optimize_none
|
||||||
|
$assemble_args += ($f_include + $path_code)
|
||||||
|
|
||||||
|
$src_asm_crt = join-path $path_nugget_common 'crt0/crt0.s'
|
||||||
|
$module_asm_crt = join-path $path_build 'crt0.o'
|
||||||
|
assemble-unit $src_asm_crt $module_asm_crt $includes $assemble_args
|
||||||
|
|
||||||
|
$module_c = join-path $path_build 'hello_camera_c.o'
|
||||||
|
|
||||||
|
$compile_args = @()
|
||||||
|
$compile_args += $f_debug
|
||||||
|
$compile_args += $f_optimize_none
|
||||||
|
# $compile_args += $f_optimize_intrinsics
|
||||||
|
# $compile_args += $f_optimize_size
|
||||||
|
# $compile_args += $f_optimize_debug
|
||||||
|
$compile_args += ($f_include + $path_code)
|
||||||
|
compile-unit $src_c $module_c $includes $compile_args
|
||||||
|
|
||||||
|
$elf = join-path $path_build 'hello_camera.elf'
|
||||||
|
$exe = join-path $path_build 'hello_camera.ps-exe'
|
||||||
|
|
||||||
|
$link_args = @()
|
||||||
|
$link_args += $f_debug
|
||||||
|
# $link_args += $f_optimize_size
|
||||||
|
$link_modules = @(
|
||||||
|
$module_asm_crt,
|
||||||
|
$module_c
|
||||||
|
)
|
||||||
|
link-modules $link_modules $elf $link_args
|
||||||
|
make-binary $elf $exe
|
||||||
|
|
||||||
|
# Post-link: gdb-runtime + dwarf-injection in a single Lua invocation (one luajit cold start).
|
||||||
|
ps1-meta -unity_root $src_c -metadata $path_atom_metadata -out_root $path_build_gen -passes @('--post-link') ` -extra_args @('--elf', $elf)
|
||||||
|
|
||||||
|
inject-dwarf $elf $path_build_gen
|
||||||
|
}
|
||||||
|
build-hello_camera
|
||||||
|
|
||||||
# NO idea if this works yet...
|
# NO idea if this works yet...
|
||||||
function Send-ToEmulator { param( [string]$exePath )
|
function Send-ToEmulator { param( [string]$exePath )
|
||||||
|
|||||||
+265
-247
@@ -1,18 +1,12 @@
|
|||||||
--- duffle.lua — shared primitives + domain tables for the tape-atom metaprograms.
|
--- duffle.lua — shared primitives + domain tables for the tape-atom metaprograms.
|
||||||
---
|
--- * Character classification: `is_space`, `is_alpha`, `is_alnum`, `is_digit`, plus the byte-fast `_byte` variants.
|
||||||
--- One ownership statement, then the rest is signal:
|
--- * String / path primitives: `trim`, `dirname`, `basename_no_ext`, `normalize_path`, `canonical_path_key`, `find_byte`.
|
||||||
--- * **Character classification** (`is_space`, `is_alpha`, `is_alnum`, `is_digit`, plus the byte-fast `_byte` variants).
|
--- * I/O primitives: `read_file`, `write_file`, `ensure_dir`.
|
||||||
--- * **String / path primitives** (`trim`, `dirname`, `basename_no_ext`, `normalize_path`, `canonical_path_key`, `find_byte`).
|
--- * Corpus resolution: `parse_direct_quoted_includes`, `resolve_source_corpus`.
|
||||||
--- * **I/O primitives** (`read_file`, `write_file`, `ensure_dir`).
|
--- * C-language scanner: `skip_ws_and_cmt`, `skip_str_or_cmt`, `read_ident`, `read_parens`, `read_braces`, `read_brackets`, `read_balanced`, `scan_to_char`, `split_top_level_commas`.
|
||||||
--- * **Corpus resolution** (`parse_direct_quoted_includes`, `resolve_source_corpus`).
|
--- * Word-count loader: `load_word_counts` for `WORD_COUNT(...)` metadata files.
|
||||||
--- * **C-language scanner** (`skip_ws_and_cmt`, `skip_str_or_cmt`, `read_ident`, `read_parens`, `read_braces`, `read_brackets`,
|
--- * Line lookup: `LineIndex` returns an O(log N) `line_of(pos)` closure for source-mapping.
|
||||||
--- `read_balanced`, `scan_to_char`, `split_top_level_commas`).
|
--- * Domain tables: `TAPE_ATOM_MACROS`, `GTE_PIPELINE_LATENCY`, `GP0_CMD_SIZE`, `GP0_CMD_BY_SHAPE`, `INSTRUCTION_LATENCY`.
|
||||||
--- * **Word-count loader** (`load_word_counts` for `WORD_COUNT(...)` metadata files).
|
|
||||||
--- * **Line lookup** (`LineIndex` returns an O(log N) `line_of(pos)` closure for source-mapping).
|
|
||||||
--- * **Domain tables** (`TAPE_ATOM_MACROS`, `GTE_PIPELINE_LATENCY`, `GP0_CMD_SIZE`, `GP0_CMD_BY_SHAPE`,
|
|
||||||
--- `GP0_MACRO_CONTRIB`, `INSTRUCTION_LATENCY`).
|
|
||||||
---
|
|
||||||
--- **Conventions**: tabs (1/level), EmmyLua annotations, no regex.
|
|
||||||
|
|
||||||
local M = {}
|
local M = {}
|
||||||
|
|
||||||
@@ -24,7 +18,7 @@ local lfs = require("lfs")
|
|||||||
-- Cross-file type aliases
|
-- Cross-file type aliases
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
--- @alias Path string -- absolute or CWD-relative file path
|
--- @alias Path string -- Absolute or CWD-relative file path
|
||||||
--- @alias LineNum integer -- 1-indexed source line number
|
--- @alias LineNum integer -- 1-indexed source line number
|
||||||
--- @alias ByteOff integer -- 0-indexed byte offset within a source string
|
--- @alias ByteOff integer -- 0-indexed byte offset within a source string
|
||||||
--- @alias MacroName string -- lower_snake_case macro identifier (e.g. "mac_yield")
|
--- @alias MacroName string -- lower_snake_case macro identifier (e.g. "mac_yield")
|
||||||
@@ -32,10 +26,10 @@ local lfs = require("lfs")
|
|||||||
--- @alias Severity string -- "error" | "warning" | "info"
|
--- @alias Severity string -- "error" | "warning" | "info"
|
||||||
|
|
||||||
--- @class SourceFile
|
--- @class SourceFile
|
||||||
--- @field path Path -- absolute path to the source file
|
--- @field path Path -- Absolute path to the source file
|
||||||
--- @field text string -- the full source text
|
--- @field text string -- Full source text
|
||||||
--- @field dir string -- the directory containing the source
|
--- @field dir string -- Directory containing the source
|
||||||
--- @field basename string -- filename without extension
|
--- @field basename string -- Filename without extension
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- ASCII byte constants
|
-- ASCII byte constants
|
||||||
@@ -73,20 +67,12 @@ local BYTE_DIGIT_9 = 0x39 -- '9'
|
|||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Section -1: Bootstrap (path-setup at module load)
|
-- Section -1: Bootstrap (path-setup at module load)
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
--
|
|
||||||
-- Path setup runs through `scripts/duffle_paths.lua`, which derives the repo root from `debug.getinfo(1, "S").source`
|
|
||||||
-- (no subprocess, ~0ms) and then calls `require("duffle")`.
|
|
||||||
-- Entry and pass scripts load `duffle_paths.lua` first; a `find_repo_root` / `setup_package_path` defined here was dead code in practice.
|
|
||||||
-- `git rev-parse` costs ~100-180ms per subprocess spawn on Windows; `debug.getinfo` is <1ms, so we keep only the fast path.
|
|
||||||
--
|
|
||||||
-- To load `duffle.lua` outside `duffle_paths.lua`, set `package.path` manually before `require`.
|
|
||||||
-- See `docs/guide_metaprogram_ssdl.md` §"I/O primitives" for the pattern.
|
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Section 0: LPeg patterns (compiled once at module load)
|
-- Section 0: LPeg patterns (compiled once at module load)
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
--
|
--
|
||||||
-- LPeg is a required dependency (PEG library, no regex). It's loaded via `package.cpath` — `duffle_paths.lua` wires the path to `toolchain/lpeg/lpeg.dll`.
|
-- LPeg is a required dependency (PEG library). It's loaded via `package.cpath` — `duffle_paths.lua` wires the path to `toolchain/lpeg/lpeg.dll`.
|
||||||
-- LPeg handles the high-level scanner; the byte-by-byte helpers in Section 1 handle classification primitives that LPeg's CPython-level cost would dominate.
|
-- LPeg handles the high-level scanner; the byte-by-byte helpers in Section 1 handle classification primitives that LPeg's CPython-level cost would dominate.
|
||||||
--
|
--
|
||||||
-- If the require fails, fail loud with an actionable message. The build script (`update_deps.ps1`) builds lpeg.dll into `toolchain/lpeg/`; run it when the dll is missing.
|
-- If the require fails, fail loud with an actionable message. The build script (`update_deps.ps1`) builds lpeg.dll into `toolchain/lpeg/`; run it when the dll is missing.
|
||||||
@@ -100,32 +86,26 @@ end
|
|||||||
local P, S, R = lpeg.P, lpeg.S, lpeg.R
|
local P, S, R = lpeg.P, lpeg.S, lpeg.R
|
||||||
|
|
||||||
-- Character class patterns
|
-- Character class patterns
|
||||||
local alpha_pat = R("AZ", "az") + P("_")
|
local alpha_pat = R("AZ", "az") + P("_")
|
||||||
local digit_pat = R("09")
|
local digit_pat = R("09")
|
||||||
local lpeg_alnum_pat = alpha_pat + digit_pat
|
local lpeg_alnum_pat = alpha_pat + digit_pat
|
||||||
|
|
||||||
-- Identifier: alpha followed by zero+ alnum. Capture as a string.
|
-- Identifier: alpha followed by zero+ alnum. Capture as a string.
|
||||||
local lpeg_alpha_pat = alpha_pat
|
local lpeg_alpha_pat = alpha_pat
|
||||||
local lpeg_ident_pat = lpeg.C(alpha_pat * lpeg_alnum_pat^0)
|
local lpeg_ident_pat = lpeg.C(alpha_pat * lpeg_alnum_pat^0)
|
||||||
|
|
||||||
-- String literal: "..." with backslash escapes.
|
local lpeg_str_pat = P('"') * (P(1) - S('"\\') + P('\\') * P(1))^0 * P('"') -- String literal: "..." with backslash escapes.
|
||||||
local lpeg_str_pat = P('"') * (P(1) - S('"\\') + P('\\') * P(1))^0 * P('"')
|
local lpeg_chr_pat = P("'") * (P(1) - S("'\\") + P('\\') * P(1))^0 * P("'") -- Char literal: '...' with backslash escapes.
|
||||||
-- Char literal: '...' with backslash escapes.
|
local lpeg_line_cmt_pat = P("//") * (P(1) - S("\n"))^0 -- Line comment: // ... to end-of-line.
|
||||||
local lpeg_chr_pat = P("'") * (P(1) - S("'\\") + P('\\') * P(1))^0 * P("'")
|
local lpeg_block_cmt_pat = P("/*") * (P(1) - P("*/"))^0 * P("*/") -- Block comment: /* ... */ (no nesting per C standard).
|
||||||
-- Line comment: // ... to end-of-line.
|
local lpeg_str_or_cmt_pat = lpeg_str_pat + lpeg_chr_pat + lpeg_line_cmt_pat + lpeg_block_cmt_pat -- String or comment (any of the four forms).
|
||||||
local lpeg_line_cmt_pat = P("//") * (P(1) - S("\n"))^0
|
|
||||||
-- Block comment: /* ... */ (no nesting per C standard).
|
|
||||||
local lpeg_block_cmt_pat = P("/*") * (P(1) - P("*/"))^0 * P("*/")
|
|
||||||
-- String or comment (any of the four forms).
|
|
||||||
local lpeg_str_or_cmt_pat = lpeg_str_pat + lpeg_chr_pat + lpeg_line_cmt_pat + lpeg_block_cmt_pat
|
|
||||||
|
|
||||||
-- Whitespace + comment skipper: zero+ (whitespace run | string | comment).
|
-- Whitespace + comment skipper: zero+ (whitespace run | string | comment).
|
||||||
local ws_pat = S(" \t\n\r\v\f")
|
local ws_pat = S(" \t\n\r\v\f")
|
||||||
local lpeg_ws_and_cmt_pat = (ws_pat + lpeg_str_or_cmt_pat)^0
|
local lpeg_ws_and_cmt_pat = (ws_pat + lpeg_str_or_cmt_pat)^0
|
||||||
|
|
||||||
-- Generic "skip until target, but step over balanced groups" matcher.
|
-- Generic "skip until target, but step over balanced groups" matcher.
|
||||||
-- Used by scan_to_char for non-ident / non-bracket chars.
|
-- Used by scan_to_char for non-ident / non-bracket chars. We accept any single char except the target.
|
||||||
-- We accept any single char except the target.
|
|
||||||
-- The balanced-group stepping is handled by the caller (via read_balanced).
|
-- The balanced-group stepping is handled by the caller (via read_balanced).
|
||||||
local lpeg_scan_to_target_pat = function(target) return (P(1) - P(target))^0 end
|
local lpeg_scan_to_target_pat = function(target) return (P(1) - P(target))^0 end
|
||||||
|
|
||||||
@@ -148,12 +128,10 @@ end
|
|||||||
|
|
||||||
-- Single digit.
|
-- Single digit.
|
||||||
function M.is_digit_byte(b) return b and b >= BYTE_DIGIT_0 and b <= BYTE_DIGIT_9 end
|
function M.is_digit_byte(b) return b and b >= BYTE_DIGIT_0 and b <= BYTE_DIGIT_9 end
|
||||||
|
|
||||||
-- Letter OR digit OR underscore.
|
-- Letter OR digit OR underscore.
|
||||||
function M.is_alnum_byte(b) return M.is_alpha_byte(b) or M.is_digit_byte(b) end
|
function M.is_alnum_byte(b) return M.is_alpha_byte(b) or M.is_digit_byte(b) end
|
||||||
|
|
||||||
-- String-based wrappers (kept for callers that already have a single-char string;
|
-- String-based wrappers (kept for callers that already have a single-char string; the byte versions are what the hot loops should call).
|
||||||
-- the byte versions are what the hot loops should call).
|
|
||||||
function M.is_space(c)
|
function M.is_space(c)
|
||||||
if type(c) == "number" then return M.is_space_byte(c) end
|
if type(c) == "number" then return M.is_space_byte(c) end
|
||||||
return c == " " or c == "\t" or c == "\n" or c == "\r" or c == "\v" or c == "\f"
|
return c == " " or c == "\t" or c == "\n" or c == "\r" or c == "\v" or c == "\f"
|
||||||
@@ -184,8 +162,8 @@ end
|
|||||||
|
|
||||||
--- Linear-search for a single-byte target in a string.
|
--- Linear-search for a single-byte target in a string.
|
||||||
--- @param haystack string
|
--- @param haystack string
|
||||||
--- @param target integer -- byte value
|
--- @param target integer -- byte value
|
||||||
--- @param start integer -- optional 1-indexed start (default 1)
|
--- @param start integer -- optional 1-indexed start (default 1)
|
||||||
--- @return integer|nil
|
--- @return integer|nil
|
||||||
function M.find_byte(haystack, target, start)
|
function M.find_byte(haystack, target, start)
|
||||||
for pos = start or 1, #haystack do
|
for pos = start or 1, #haystack do
|
||||||
@@ -309,7 +287,7 @@ local function absolute_normalized_path(path)
|
|||||||
end
|
end
|
||||||
|
|
||||||
--- Return the normalized absolute, Windows-case-folded comparison key for a path.
|
--- Return the normalized absolute, Windows-case-folded comparison key for a path.
|
||||||
--- -Ordinary relative paths resolve against the process cwd. Drive-relative paths are rejected because LuaFileSystem does not expose Windows per-drive current directories.
|
--- Ordinary relative paths resolve against the process cwd. Drive-relative paths are rejected because LuaFileSystem does not expose Windows per-drive current directories.
|
||||||
--- @param path Path
|
--- @param path Path
|
||||||
--- @return string
|
--- @return string
|
||||||
function M.canonical_path_key(path)
|
function M.canonical_path_key(path)
|
||||||
@@ -603,7 +581,7 @@ function M.parse_direct_quoted_includes(source_text)
|
|||||||
pos = after
|
pos = after
|
||||||
end
|
end
|
||||||
elseif byte == BYTE_DQUOTE or byte == BYTE_SQUOTE then
|
elseif byte == BYTE_DQUOTE or byte == BYTE_SQUOTE then
|
||||||
-- enter+leave the string literal in one skip; literal bodies cannot contain a directive regardless of what they look like.
|
-- enter + leave the string literal in one skip; literal bodies cannot contain a directive regardless of what they look like.
|
||||||
line_leading = false
|
line_leading = false
|
||||||
local after = M.skip_str_or_cmt(logical_text, pos)
|
local after = M.skip_str_or_cmt(logical_text, pos)
|
||||||
pos = (after > pos) and after or (pos + 1)
|
pos = (after > pos) and after or (pos + 1)
|
||||||
@@ -799,18 +777,17 @@ function M.resolve_source_corpus(options)
|
|||||||
end
|
end
|
||||||
|
|
||||||
return {
|
return {
|
||||||
unity_root = root.path,
|
unity_root = root.path,
|
||||||
project_root = project_root,
|
project_root = project_root,
|
||||||
code_root = code_root,
|
code_root = code_root,
|
||||||
source_order = source_order,
|
source_order = source_order,
|
||||||
sources_by_path = sources_by_path,
|
sources_by_path = sources_by_path,
|
||||||
sources_by_dir = M.group_sources_by_dir(source_order),
|
sources_by_dir = M.group_sources_by_dir(source_order),
|
||||||
resolver = resolver,
|
resolver = resolver,
|
||||||
}
|
}
|
||||||
end
|
end
|
||||||
|
|
||||||
-- Split a brace-body into top-level comma-separated tokens. Honors nested parens/braces/brackets and skips strings/comments.
|
-- Split a brace-body into top-level comma-separated tokens. Honors nested parens/braces/brackets and skips strings/comments.
|
||||||
--
|
|
||||||
-- Splits at top-level NEWLINES and SEMICOLONS too, AND emits a token break after a top-level comment/string.
|
-- Splits at top-level NEWLINES and SEMICOLONS too, AND emits a token break after a top-level comment/string.
|
||||||
-- Pure-comment / pure-string chunks contribute 0 words.
|
-- Pure-comment / pure-string chunks contribute 0 words.
|
||||||
function M.split_top_level_commas(body)
|
function M.split_top_level_commas(body)
|
||||||
@@ -846,7 +823,7 @@ function M.split_top_level_commas(body)
|
|||||||
if has_real_content(chunk) then
|
if has_real_content(chunk) then
|
||||||
tokens[#tokens + 1] = chunk
|
tokens[#tokens + 1] = chunk
|
||||||
elseif #tokens > 0 then
|
elseif #tokens > 0 then
|
||||||
-- Pure comment/string chunk at top level.
|
-- comment/string chunk at top level.
|
||||||
-- Append it to the LAST token so emit-context callers (components.lua build_component_lines) can convert
|
-- Append it to the LAST token so emit-context callers (components.lua build_component_lines) can convert
|
||||||
-- `// trailing comment` to `/* */` and emit it with the macro body.
|
-- `// trailing comment` to `/* */` and emit it with the macro body.
|
||||||
-- count_token_words only inspects the leading ident, so a trailing comment does not affect the count.
|
-- count_token_words only inspects the leading ident, so a trailing comment does not affect the count.
|
||||||
@@ -920,18 +897,25 @@ function M.tokenize_body(body)
|
|||||||
while scan <= len do
|
while scan <= len do
|
||||||
local c = body:byte(scan)
|
local c = body:byte(scan)
|
||||||
-- Terminator bytes (delimit a token at the top level): ',' = 0x2C, '\n' = 0x0A, ';' = 0x3B.
|
-- Terminator bytes (delimit a token at the top level): ',' = 0x2C, '\n' = 0x0A, ';' = 0x3B.
|
||||||
-- These also appear as separators between argument lists inside the parens/braces/brackets,
|
-- These also appear as separators between argument lists inside the parens/braces/brackets, so we stop the scan when we hit any of them.
|
||||||
-- so we stop the scan when we hit any of them.
|
|
||||||
if c == BYTE_COMMA then break end
|
if c == BYTE_COMMA then break end
|
||||||
if c == BYTE_NEWLINE then break end
|
if c == BYTE_NEWLINE then break end
|
||||||
if c == BYTE_SEMI then break end
|
if c == BYTE_SEMI then break end
|
||||||
|
-- Line-comment '// ... \n' (0x2F 0x2F): skip to (and past) the next newline, or to end-of-body.
|
||||||
|
if c == BYTE_SLASH and body:byte(scan + 1) == BYTE_SLASH then
|
||||||
|
local nl = M.find_byte(body, BYTE_NEWLINE, scan)
|
||||||
|
scan = nl and (nl + 1) or (len + 1)
|
||||||
|
-- Block-comment '/* ... */' (0x2F 0x2A): skip to (and past) the matching '*/', or to end-of-body.
|
||||||
|
elseif c == BYTE_SLASH and body:byte(scan + 1) == BYTE_STAR then
|
||||||
|
local close = body:find("*/", scan + 2, true)
|
||||||
|
scan = close and (close + 2) or (len + 1)
|
||||||
-- Group opener bytes (consume the balanced group via the matching reader): '(' = 0x28, '{' = 0x7B, '[' = 0x5B.
|
-- Group opener bytes (consume the balanced group via the matching reader): '(' = 0x28, '{' = 0x7B, '[' = 0x5B.
|
||||||
if c == BYTE_OPEN_PAREN then local _, a = M.read_parens (body, scan); scan = a
|
elseif c == BYTE_OPEN_PAREN then local _, a = M.read_parens (body, scan); scan = a
|
||||||
elseif c == BYTE_OPEN_BRACE then local _, a = M.read_braces (body, scan); scan = a
|
elseif c == BYTE_OPEN_BRACE then local _, a = M.read_braces (body, scan); scan = a
|
||||||
elseif c == BYTE_OPEN_BRACK then local _, a = M.read_brackets (body, scan); scan = a
|
elseif c == BYTE_OPEN_BRACK then local _, a = M.read_brackets (body, scan); scan = a
|
||||||
-- String-literal byte ('"' = 0x22 or '\'' = 0x27): skip past the quoted region in one shot.
|
-- String-literal byte ('"' = 0x22 or '\'' = 0x27): skip past the quoted region in one shot.
|
||||||
elseif c == BYTE_DQUOTE or c == BYTE_SQUOTE then
|
elseif c == BYTE_DQUOTE or c == BYTE_SQUOTE then
|
||||||
scan = M.skip_str_or_cmt(body, scan) + 1
|
scan = (M.skip_str_or_cmt(body, scan) or scan) + 1
|
||||||
else
|
else
|
||||||
scan = scan + 1
|
scan = scan + 1
|
||||||
end
|
end
|
||||||
@@ -958,7 +942,7 @@ function M.build_body_line_index(body)
|
|||||||
local index = {}
|
local index = {}
|
||||||
local len = #body
|
local len = #body
|
||||||
local newline_count = 0
|
local newline_count = 0
|
||||||
for pos = 1, len do
|
for pos = 1, len do
|
||||||
if pos > 1 then
|
if pos > 1 then
|
||||||
index[pos] = newline_count + 1
|
index[pos] = newline_count + 1
|
||||||
end
|
end
|
||||||
@@ -1080,18 +1064,18 @@ M.GTE_COMMAND_ALIASES = {
|
|||||||
-- * "Store delays are counted in numbers of clock cycles (not in numbers of opcodes).
|
-- * "Store delays are counted in numbers of clock cycles (not in numbers of opcodes).
|
||||||
-- For 3 cycle delay, one must usually insert 3 cached opcodes (or one uncached opcode)."
|
-- For 3 cycle delay, one must usually insert 3 cached opcodes (or one uncached opcode)."
|
||||||
--
|
--
|
||||||
-- Per PSX-SPX `docs/psx-spx/docs/gtepipelinetimings.md` (the per-instruction input-latch measurement, which is the same
|
-- Per PSX-SPX `docs/psx-spx/docs/gtepipelinetimings.md` (the per-instruction input-latch measurement, which is the same phenomenon modeled from the command side),
|
||||||
-- phenomenon modeled from the command side), the values are:
|
-- the values are:
|
||||||
-- rtps: every data register, every control register (RT/TR/OFX/OFY/H/DQA/DQB)
|
-- rtps: every data register, every control register (RT / TR / OFX / OFY / H / DQA / DQB)
|
||||||
-- rtpt: same superset (rtpt reads V0..V2, the RT matrix, the TR vector, OFX/OFY, H, DQA, DQB)
|
-- rtpt: same superset (rtpt reads V0..V2, the RT matrix, the TR vector, OFX / OFY, H, DQA, DQB)
|
||||||
-- nclip: SXY0, SXY1, SXY2 (no RT/TR/OFX inputs)
|
-- nclip: SXY0, SXY1, SXY2 (no RT / TR / OFX inputs)
|
||||||
-- mvmva: variable (depends on the chosen mx / v / cv selector); treated conservatively as the union of all RT + TR + BK + IR columns
|
-- mvmva: variable (depends on the chosen mx / v / cv selector); treated conservatively as the union of all RT + TR + BK + IR columns
|
||||||
-- (the data inputs the command can read).
|
-- (the data inputs the command can read).
|
||||||
-- op: IR1, IR2, IR3 (cross-product output, atomic; consumers treat as fan-out only)
|
-- op: IR1, IR2, IR3 (cross-product output, atomic; consumers treat as fan-out only)
|
||||||
-- avsz3/avsz4: SZ0..SZ3 + ZSF3/ZSF4
|
-- avsz3 / avsz4: SZ0..SZ3 + ZSF3/ZSF4
|
||||||
--
|
--
|
||||||
-- We model the data-register + control-register superset. Every relevant input is in this set per PSX-SPX `gtepipelinetimings.md`;
|
-- We model the data-register + control-register superset. Every relevant input is in this set per PSX-SPX `gtepipelinetimings.md`;
|
||||||
-- the per-input latching values there describe the same number's command-side view
|
-- The per-input latching values there describe the same number's command-side view
|
||||||
-- (a recent mtc2/ctc2 to that register must retire the same number of cycles before the command issues).
|
-- (a recent mtc2/ctc2 to that register must retire the same number of cycles before the command issues).
|
||||||
-- Anything outside this set is safe to clobber immediately after a prior command.
|
-- Anything outside this set is safe to clobber immediately after a prior command.
|
||||||
M.GTE_COMMAND_INPUTS = {
|
M.GTE_COMMAND_INPUTS = {
|
||||||
@@ -1125,7 +1109,7 @@ M.GTE_COMMAND_INPUTS = {
|
|||||||
"gte_cr_OFX", "gte_cr_OFY", "gte_cr_H",
|
"gte_cr_OFX", "gte_cr_OFY", "gte_cr_H",
|
||||||
"gte_cr_DQA", "gte_cr_DQB",
|
"gte_cr_DQA", "gte_cr_DQB",
|
||||||
},
|
},
|
||||||
-- NCLIP: reads SXY0/SXY1/SXY2 only (per PSX-SPX gtepipelinetimings.md §12.6).
|
-- NCLIP: reads SXY0 / SXY1 / SXY2 only (per PSX-SPX gtepipelinetimings.md §12.6).
|
||||||
["gte_cmdw_nclip"] = {
|
["gte_cmdw_nclip"] = {
|
||||||
"C2_SXY0", "C2_SXY1", "C2_SXY2",
|
"C2_SXY0", "C2_SXY1", "C2_SXY2",
|
||||||
},
|
},
|
||||||
@@ -1155,7 +1139,6 @@ M.GTE_COMMAND_INPUTS = {
|
|||||||
}
|
}
|
||||||
|
|
||||||
-- GTE command output-set + semantic role table.
|
-- GTE command output-set + semantic role table.
|
||||||
--
|
|
||||||
-- For each command, the set of C2 data registers the command writes as outputs, paired with the SEMANTIC ROLE of each output.
|
-- For each command, the set of C2 data registers the command writes as outputs, paired with the SEMANTIC ROLE of each output.
|
||||||
-- The semantic role is the basis for the `_post_<cmd>` contract validation.
|
-- The semantic role is the basis for the `_post_<cmd>` contract validation.
|
||||||
-- The contract says "after <cmd>, the latest screen-XY is C2_SXY2" (C2_SXY0 is wrong; the FIFO side effects leave SXY0 as an older FIFO entry, never the newest).
|
-- The contract says "after <cmd>, the latest screen-XY is C2_SXY2" (C2_SXY0 is wrong; the FIFO side effects leave SXY0 as an older FIFO entry, never the newest).
|
||||||
@@ -1180,10 +1163,9 @@ M.GTE_COMMAND_INPUTS = {
|
|||||||
-- * "mac_result" : generic MAC output (nclip, op, mvmva)
|
-- * "mac_result" : generic MAC output (nclip, op, mvmva)
|
||||||
--
|
--
|
||||||
-- Consumers:
|
-- Consumers:
|
||||||
-- * passes/static_analysis.lua::analyze_hardware_relations (the walker reads this after a GTE command to update
|
-- * passes/static_analysis.lua::analyze_hardware_relations (the walker reads this after a GTE command to update `forward_state.post_command_roles` for `gte_role_mismatch`).
|
||||||
-- `forward_state.post_command_roles` for `gte_result_position`).
|
-- * passes/static_analysis.lua::check_gte_role_mismatch (per-atom CHECK_RULES reader; renders role mismatches).
|
||||||
-- * passes/static_analysis.lua::check_gte_result_position (per-atom CHECK_RULES reader; renders role mismatches).
|
-- This table is consumed by the hardware-relation analyzer and the gte_role_mismatch check.
|
||||||
-- This table is consumed by the hardware-relation analyzer and result-position check.
|
|
||||||
M.GTE_COMMAND_OUTPUTS = {
|
M.GTE_COMMAND_OUTPUTS = {
|
||||||
-- RTPS: writes one screen coordinate (the perspective-divide result) into C2_SXY2.
|
-- RTPS: writes one screen coordinate (the perspective-divide result) into C2_SXY2.
|
||||||
-- The FIFO side effects leave SXY0 / SXY1 untouched, so `latest_screen_xy` is C2_SXY2.
|
-- The FIFO side effects leave SXY0 / SXY1 untouched, so `latest_screen_xy` is C2_SXY2.
|
||||||
@@ -1213,14 +1195,14 @@ M.GTE_COMMAND_OUTPUTS = {
|
|||||||
["gte_cmdw_avsz4"] = {
|
["gte_cmdw_avsz4"] = {
|
||||||
{ register = "C2_OTZ", role = "otz" },
|
{ register = "C2_OTZ", role = "otz" },
|
||||||
},
|
},
|
||||||
-- OP (outer product): writes IR1/IR2/IR3 (color-conversion fan-out).
|
-- OP (outer product): writes IR1 / IR2 / IR3 (color-conversion fan-out).
|
||||||
["gte_cmdw_op"] = {
|
["gte_cmdw_op"] = {
|
||||||
{ register = "C2_IR1", role = "latest_color" },
|
{ register = "C2_IR1", role = "latest_color" },
|
||||||
{ register = "C2_IR2", role = "latest_color" },
|
{ register = "C2_IR2", role = "latest_color" },
|
||||||
{ register = "C2_IR3", role = "latest_color" },
|
{ register = "C2_IR3", role = "latest_color" },
|
||||||
},
|
},
|
||||||
-- MVMVA: same shape as OP from the role perspective; the single
|
-- MVMVA: same shape as OP from the role perspective; the single
|
||||||
-- MAC result is written to C2_IR1/IR2/IR3.
|
-- MAC result is written to C2_IR1 / IR2 / IR3.
|
||||||
["gte_cmdw_mvmva"] = {
|
["gte_cmdw_mvmva"] = {
|
||||||
{ register = "C2_IR1", role = "latest_color" },
|
{ register = "C2_IR1", role = "latest_color" },
|
||||||
{ register = "C2_IR2", role = "latest_color" },
|
{ register = "C2_IR2", role = "latest_color" },
|
||||||
@@ -1234,17 +1216,16 @@ M.GTE_COMMAND_OUTPUTS = {
|
|||||||
-- A subsequent MTC2/CTC2 overwrite of one of those outputs before the latch window expires is a hazard:
|
-- A subsequent MTC2/CTC2 overwrite of one of those outputs before the latch window expires is a hazard:
|
||||||
-- the latched value in the pipeline gets overwritten by the CPU before the pipeline consumes it.
|
-- the latched value in the pipeline gets overwritten by the CPU before the pipeline consumes it.
|
||||||
--
|
--
|
||||||
-- This relation is the command -> register direction (the command is the producer; MTC2/CTC2 is the consumer).
|
-- This relation is the command -> register direction (the command is the producer; MTC2 / CTC2 is the consumer).
|
||||||
-- It is the inverse of the MTC2 -> command input propagation (register -> command direction), which is staged by the
|
-- It is the inverse of the MTC2 -> command input propagation (register -> command direction), which is staged by the producer step of `analyze_hardware_relations`.
|
||||||
-- producer step of `analyze_hardware_relations`.
|
|
||||||
--
|
--
|
||||||
-- The schema mirrors the producer-side relations (`direction`, `evidence`, `violation_kind`); `required` counts the
|
-- The schema mirrors the producer-side relations (`direction`, `evidence`, `violation_kind`);
|
||||||
-- emitted words strictly between the command's last output word and the overwrite.
|
-- `required` counts the emitted words strictly between the command's last output word and the overwrite.
|
||||||
-- `required = 0` permits the immediately following overwrite; `required = 4` requires four intervening words.
|
-- `required = 0` permits the immediately following overwrite; `required = 4` requires four intervening words.
|
||||||
--
|
--
|
||||||
-- Per PSX-SPX `gtepipelinetimings.md` the per-command input latching measurements are the same numbers inverted.
|
-- Per PSX-SPX `gtepipelinetimings.md` the per-command input latching measurements are the same numbers inverted.
|
||||||
-- They describe when a recent MTC2/CTC2 must retire before the command issues; this table describes when a recent
|
-- They describe when a recent MTC2 / CTC2 must retire before the command issues.
|
||||||
-- command's outputs latch into the pipeline before a later MTC2/CTC2 overwrites them.
|
-- This table describes when a recent command's outputs latch into the pipeline before a later MTC2/CTC2 overwrites them.
|
||||||
--
|
--
|
||||||
-- Consumers:
|
-- Consumers:
|
||||||
-- * passes/static_analysis.lua::analyze_hardware_relations (stages post-command latch relations in `pending` after a GTE command).
|
-- * passes/static_analysis.lua::analyze_hardware_relations (stages post-command latch relations in `pending` after a GTE command).
|
||||||
@@ -1259,9 +1240,7 @@ M.GTE_COMMAND_LATCH_WINDOWS = {
|
|||||||
{ register = "C2_OTZ", required = 4 },
|
{ register = "C2_OTZ", required = 4 },
|
||||||
{ register = "C2_IR0", required = 4 },
|
{ register = "C2_IR0", required = 4 },
|
||||||
},
|
},
|
||||||
-- RTPT: same latching as RTPS (the LAST projection in SXY2 is the
|
-- RTPT: same latching as RTPS (the LAST projection in SXY2 is the newest one; the earlier SXY0 / SXY1 entries are part of the batched triple).
|
||||||
-- newest one; the earlier SXY0 / SXY1 entries are part of the
|
|
||||||
-- batched triple).
|
|
||||||
["gte_cmdw_rtpt"] = {
|
["gte_cmdw_rtpt"] = {
|
||||||
{ register = "C2_SXY0", required = 4 },
|
{ register = "C2_SXY0", required = 4 },
|
||||||
{ register = "C2_SXY1", required = 4 },
|
{ register = "C2_SXY1", required = 4 },
|
||||||
@@ -1280,7 +1259,7 @@ M.GTE_COMMAND_LATCH_WINDOWS = {
|
|||||||
["gte_cmdw_avsz4"] = {
|
["gte_cmdw_avsz4"] = {
|
||||||
{ register = "C2_OTZ", required = 4 },
|
{ register = "C2_OTZ", required = 4 },
|
||||||
},
|
},
|
||||||
-- OP / MVMVA: IR1/IR2/IR3 latch for 4 emitted words.
|
-- OP / MVMVA: IR1 / IR2 / IR3 latch for 4 emitted words.
|
||||||
["gte_cmdw_op"] = {
|
["gte_cmdw_op"] = {
|
||||||
{ register = "C2_IR1", required = 4 },
|
{ register = "C2_IR1", required = 4 },
|
||||||
{ register = "C2_IR2", required = 4 },
|
{ register = "C2_IR2", required = 4 },
|
||||||
@@ -1293,42 +1272,14 @@ M.GTE_COMMAND_LATCH_WINDOWS = {
|
|||||||
},
|
},
|
||||||
}
|
}
|
||||||
|
|
||||||
-- GTE component result contracts (immutable; keyed by bare component name).
|
|
||||||
--
|
|
||||||
-- Register-role claims that the `_post_<cmd>` suffix alone cannot infer live here.
|
|
||||||
-- The bare name (the component name stripped of the `_post_<cmd>` suffix) is the key; the row carries the expected
|
|
||||||
-- command, the expected role, and the expected C2 register.
|
|
||||||
--
|
|
||||||
-- Known rows:
|
|
||||||
-- * `gte_store_g4_p3_post_rtps`: post-RTPS polygon-emit slot reads the newest projected screen coordinate from C2_SXY2.
|
|
||||||
-- C2_SXY0 is wrong (C2_SXY0 is an older FIFO entry, never the newest post-RTPS result).
|
|
||||||
--
|
|
||||||
-- Unknown `_post_<cmd>` components (a `<name>_post_<cmd>`-suffixed component whose bare `<name>` is not a row key) emit one
|
|
||||||
-- `table_gap` info finding so downstream consumers can detect when the contract table is incomplete for an authored atom body.
|
|
||||||
--
|
|
||||||
-- Consumers:
|
|
||||||
-- * passes/static_analysis.lua::check_gte_result_position (renders result-position findings).
|
|
||||||
-- * passes/static_analysis.lua::emit_table_gap_warning (called once per atom body; surfaces the missing-row diagnostic).
|
|
||||||
-- This table is consumed by the result-position check.
|
|
||||||
M.GTE_COMPONENT_RESULT_CONTRACTS = {
|
|
||||||
-- Post-RTPS g4 p3 store contract: writes the latest screen XY (C2_SXY2) into the primitive's p3 slot.
|
|
||||||
-- Reading from C2_SXY0 is a semantic mismatch — C2_SXY0 is the oldest post-RTPS SXY, not the newest one.
|
|
||||||
["gte_store_g4_p3_post_rtps"] = {
|
|
||||||
command = "gte_cmdw_rtps",
|
|
||||||
role = "latest_screen_xy",
|
|
||||||
register = "C2_SXY2",
|
|
||||||
},
|
|
||||||
}
|
|
||||||
|
|
||||||
-- Operand-class table for the COP2->GPR load-delay check.
|
-- Operand-class table for the COP2->GPR load-delay check.
|
||||||
--
|
|
||||||
-- Maps each emitting-token ident to the set of GPR operand positions it reads.
|
-- Maps each emitting-token ident to the set of GPR operand positions it reads.
|
||||||
-- Covers the current encoder vocabulary (`code/duffle/mips.h` + `code/duffle/gte.h`); add rows here as new encoders land.
|
-- Covers the current encoder vocabulary (`code/duffle/mips.h` + `code/duffle/gte.h`); add rows here as new encoders land.
|
||||||
--
|
--
|
||||||
-- Semantics:
|
-- Semantics:
|
||||||
-- * A "GPR operand position" is the textual slot in the macro's argument list, 1-based; e.g. `load_word(rt, base, off)` has
|
-- * A "GPR operand position" is the textual slot in the macro's argument list, 1-based; e.g. `load_word(rt, base, off)` has
|
||||||
-- positional operands 1 (rt), 2 (base), 3 (off). The table reads operands 1 + 2 + 3 to find what GPRs the macro touches.
|
-- positional operands 1 (rt), 2 (base), 3 (off). The table reads operands 1 + 2 + 3 to find what GPRs the macro touches.
|
||||||
-- * The check tracks one entry per destination GPR per MFC2/CFC2 event.
|
-- * The check tracks one entry per destination GPR per MFC2 / CFC2 event.
|
||||||
-- A subsequent event counts as a "use" iff any of its read operand positions reference that destination GPR's ident (e.g. `R_T0`).
|
-- A subsequent event counts as a "use" iff any of its read operand positions reference that destination GPR's ident (e.g. `R_T0`).
|
||||||
-- * Branch delay slots are out of scope (MIPS control-flow; tracked separately).
|
-- * Branch delay slots are out of scope (MIPS control-flow; tracked separately).
|
||||||
M.OPERAND_READ_POSITIONS = {
|
M.OPERAND_READ_POSITIONS = {
|
||||||
@@ -1341,13 +1292,13 @@ M.OPERAND_READ_POSITIONS = {
|
|||||||
["sub_s"] = {1, 2, 3},
|
["sub_s"] = {1, 2, 3},
|
||||||
["sub_u"] = {1, 2, 3},
|
["sub_u"] = {1, 2, 3},
|
||||||
["and_i"] = {1, 2},
|
["and_i"] = {1, 2},
|
||||||
["and_u"] = {1, 2, 3},
|
["and"] = {1, 2, 3},
|
||||||
["or_i"] = {1, 2},
|
["or_i"] = {1, 2},
|
||||||
["or_i_self"] = {1},
|
["or_i_self"] = {1},
|
||||||
["or_u"] = {1, 2, 3},
|
["or"] = {1, 2, 3},
|
||||||
["or_u_self"] = {1, 2},
|
["or_self"] = {1, 2},
|
||||||
["xor_i"] = {1, 2},
|
["xor_i"] = {1, 2},
|
||||||
["xor_u"] = {1, 2, 3},
|
["xor"] = {1, 2, 3},
|
||||||
["slt_s"] = {1, 2, 3},
|
["slt_s"] = {1, 2, 3},
|
||||||
["slt_u"] = {1, 2, 3},
|
["slt_u"] = {1, 2, 3},
|
||||||
["slt_si"] = {1, 2},
|
["slt_si"] = {1, 2},
|
||||||
@@ -1447,33 +1398,7 @@ M.GP0_CMD_BY_SHAPE = {
|
|||||||
["g4"] = 0x38, ["gt4"] = 0x3C,
|
["g4"] = 0x38, ["gt4"] = 0x3C,
|
||||||
}
|
}
|
||||||
|
|
||||||
-- Per-macro prim-buffer contribution: how many 32-bit words each macro writes to the primitive being built in main RAM.
|
-- Per-instruction cycle cost (best-case, no stalls). Used by the static-analysis pass to emit per-atom cycle budgets.
|
||||||
-- (This counts RAM-side prim-buffer words, not .text instruction words.)
|
|
||||||
-- The sum across `mac_format_X_color` + `mac_gte_store_X_post_*` + `mac_insert_ot_tag_X` calls in an atom body must equal
|
|
||||||
-- `GP0_CMD_SIZE[GP0_CMD_BY_SHAPE[shape]]`.
|
|
||||||
M.GP0_MACRO_CONTRIB = {
|
|
||||||
["mac_format_f3_color"] = 1,
|
|
||||||
["mac_format_g3_color"] = 3,
|
|
||||||
["mac_format_g4_color"] = 4,
|
|
||||||
["mac_gte_store_f3_post_rtpt"] = 3,
|
|
||||||
["mac_gte_store_g3_post_rtpt"] = 3,
|
|
||||||
["mac_gte_store_g4_p012_post_rtpt_pre_rtps"] = 3,
|
|
||||||
["mac_gte_store_g4_p3_post_rtps"] = 1,
|
|
||||||
["mac_insert_ot_tag_f3"] = 1,
|
|
||||||
["mac_insert_ot_tag_g4"] = 1,
|
|
||||||
}
|
|
||||||
|
|
||||||
-- Per-macro cycle cost (best-case, no stalls). Used by the static-analysis pass to emit per-atom cycle budgets.
|
|
||||||
-- The counts cover the expanded instruction sequence the macro emits (not just the surface token in source).
|
|
||||||
-- Worked example — `mac_pack_color_word(off, cmd, r, g, b)` expands to:
|
|
||||||
-- load_upper_i(R_AT, (cmd << 8) | b) -- 1 cycle
|
|
||||||
-- or_i_self(R_AT, (g << 8) | r) -- 1 cycle
|
|
||||||
-- store_word(R_AT, R_PrimCursor, off) -- 1 cycle
|
|
||||||
-- = 3 cycles total
|
|
||||||
--
|
|
||||||
-- `mac_yield` emits a control-transfer sequence (load_word, add_ui_self, jump_reg, nop). The atom body's cycle budget excludes
|
|
||||||
-- the yield's cost (we model it as 0); the runtime cost lands in the next atom's prologue.
|
|
||||||
--
|
|
||||||
-- GTE command values are the GTE instruction's intrinsic cycles — the latency after any pre-cmd `nop2` has retired.
|
-- GTE command values are the GTE instruction's intrinsic cycles — the latency after any pre-cmd `nop2` has retired.
|
||||||
-- When the source emits `nop2, gte_cmdw_X`, the nops' cycles are added separately (1+1) plus the gte_cmdw_X value here:
|
-- When the source emits `nop2, gte_cmdw_X`, the nops' cycles are added separately (1+1) plus the gte_cmdw_X value here:
|
||||||
-- rtpt = 23 + 2 nops = 25 total cycles (PSX-SPX says 23 cycles for the cmd itself; the nops are pre-fill)
|
-- rtpt = 23 + 2 nops = 25 total cycles (PSX-SPX says 23 cycles for the cmd itself; the nops are pre-fill)
|
||||||
@@ -1487,20 +1412,27 @@ M.GP0_MACRO_CONTRIB = {
|
|||||||
-- PSX-SPX reports the GTE intrinsic cycles as the total execution time of the command itself (rtpt=23, rtps=15, nclip=8, etc.).
|
-- PSX-SPX reports the GTE intrinsic cycles as the total execution time of the command itself (rtpt=23, rtps=15, nclip=8, etc.).
|
||||||
-- The pre-fill nops are a codebase convention for retiring preceding C2 writes.
|
-- The pre-fill nops are a codebase convention for retiring preceding C2 writes.
|
||||||
-- See `docs/psx-spx/docs/geometrytransformationenginegte.md` for per-command cycle counts and
|
-- See `docs/psx-spx/docs/geometrytransformationenginegte.md` for per-command cycle counts and
|
||||||
-- `docs/psx-spx/docs/gtepipelinetimings.md` for the hardware-verified input-latch boundaries (most inputs become
|
-- `docs/psx-spx/docs/gtepipelinetimings.md` for the hardware-verified input-latch boundaries
|
||||||
-- safe to clobber after 0-4 cycles).
|
-- (most inputs become safe to clobber after 0-4 cycles).
|
||||||
|
--
|
||||||
|
-- Per-macro cycle costs (`mac_yield`, `mac_pack_color_word`, ...) and per-macro prim-buffer contributions
|
||||||
|
-- (`mac_format_*_color`, `mac_gte_store_*`, `mac_insert_ot_tag_*`) are NOT hardcoded here.
|
||||||
|
-- `passes/components.lua::compute_components_metadata` derives both from each `MipsAtomComp_(ac_X)` body in
|
||||||
|
-- `code/duffle/lottes_tape.h`, stores the values on `corpus.components[name].cycle_cost` and
|
||||||
|
-- `corpus.components[name].gp0_contrib`, and `passes/static_analysis.lua` reads those fields directly.
|
||||||
|
-- The `mac_yield` cost is 0 by convention (the runtime cost lands in the next atom's prologue).
|
||||||
M.INSTRUCTION_LATENCY = {
|
M.INSTRUCTION_LATENCY = {
|
||||||
-- CPU ALU (single-cycle R3000A ops)
|
-- CPU ALU (single-cycle R3000A ops)
|
||||||
["nop"] = 1,
|
["nop"] = 1,
|
||||||
["nop2"] = 2,
|
["nop2"] = 2,
|
||||||
["add_ui"] = 1, ["add_ui_self"] = 1,
|
["add_ui"] = 1, ["add_ui_self"] = 1,
|
||||||
["add_s"] = 1, ["add_si"] = 1,
|
["add_s"] = 1, ["add_si"] = 1,
|
||||||
["add_u"] = 1, ["add_u_self"] = 1,
|
["add_u"] = 1, ["add_u_self"] = 1,
|
||||||
["sub_u"] = 1, ["sub_s"] = 1,
|
["sub_u"] = 1, ["sub_s"] = 1,
|
||||||
["and_i"] = 1, ["and_u"] = 1,
|
["and_i"] = 1, ["and"] = 1,
|
||||||
["or_i"] = 1, ["or_i_self"] = 1,
|
["or_i"] = 1, ["or_i_self"] = 1,
|
||||||
["or_u"] = 1, ["or_u_self"] = 1,
|
["or_u"] = 1, ["or_u_self"] = 1,
|
||||||
["xor_i"] = 1, ["xor_u"] = 1,
|
["xor_i"] = 1, ["xor_u"] = 1,
|
||||||
["nor_u"] = 1,
|
["nor_u"] = 1,
|
||||||
["shift_lleft"] = 1, ["shift_lleft_self"] = 1,
|
["shift_lleft"] = 1, ["shift_lleft_self"] = 1,
|
||||||
["shift_lright"] = 1,
|
["shift_lright"] = 1,
|
||||||
@@ -1523,27 +1455,29 @@ M.INSTRUCTION_LATENCY = {
|
|||||||
["load_byte_u"] = 1, ["load_byte"] = 1,
|
["load_byte_u"] = 1, ["load_byte"] = 1,
|
||||||
["load_upper_i"] = 1,
|
["load_upper_i"] = 1,
|
||||||
-- 2-word loads (lui + ori) used for >16-bit immediates
|
-- 2-word loads (lui + ori) used for >16-bit immediates
|
||||||
["load_imm"] = 2,
|
["load_imm"] = 2,
|
||||||
["load_imm_1w"] = 1,
|
["load_imm_1w"] = 1,
|
||||||
["load_imm_1w_s0"] = 1,
|
["load_imm_1w_s0"] = 1,
|
||||||
["load_imm_2w"] = 2,
|
["load_imm_2w"] = 2,
|
||||||
["load_imm_2w_addi_forced"] = 2,
|
["load_imm_2w_addi_forced"] = 2,
|
||||||
["load_imm_2w_ori_forced"] = 2,
|
["load_imm_2w_ori_forced"] = 2,
|
||||||
-- Stores (1 cycle each)
|
-- Stores (1 cycle each)
|
||||||
["store_word"] = 1,
|
["store_word"] = 1,
|
||||||
["store_half"] = 1,
|
["store_half"] = 1,
|
||||||
["store_byte"] = 1,
|
["store_byte"] = 1,
|
||||||
-- Branches (branch + BD slot nop = 2 cycles; the BD slot's nop is
|
-- Branches (branch + BD slot nop = 2 cycles; the BD slot's nop is counted as part of the branch's cost)
|
||||||
-- counted as part of the branch's cost)
|
|
||||||
["branch_equal"] = 2, ["branch_ne"] = 2,
|
["branch_equal"] = 2, ["branch_ne"] = 2,
|
||||||
["branch_le_zero"] = 2, ["branch_lt_zero"] = 2,
|
["branch_le_zero"] = 2, ["branch_lt_zero"] = 2,
|
||||||
["branch_ge_zero"] = 2, ["branch_gt_zero"] = 2,
|
["branch_ge_zero"] = 2, ["branch_gt_zero"] = 2,
|
||||||
|
-- `jump_rel(off)` is the within-atom-safe unconditional-jump alias for `branch_equal(R_0, R_0, off)` (see `code/duffle/mips.h`).
|
||||||
|
-- Same cost as the underlying branch (1 instruction + 1 mandatory BD-slot nop = 2 cycles).
|
||||||
|
["jump_rel"] = 2,
|
||||||
-- Jumps (jump + BD slot nop = 2 cycles)
|
-- Jumps (jump + BD slot nop = 2 cycles)
|
||||||
["jump"] = 2, ["jump_reg"] = 2,
|
["jump"] = 2, ["jump_reg"] = 2,
|
||||||
["jump_link"] = 2, ["call_reg"] = 2,
|
["jump_link"] = 2, ["call_reg"] = 2,
|
||||||
["call_addr"] = 2,
|
["call_addr"] = 2,
|
||||||
-- COP2 transfers (mtc2/mfc2/ctc2/cfc2 = 1 cycle + COP2 latency; the
|
-- COP2 transfers (mtc2/mfc2/ctc2/cfc2 = 1 cycle + COP2 latency;
|
||||||
-- COP2 latency is usually absorbed by subsequent nops or by the next
|
-- The COP2 latency is usually absorbed by subsequent nops or by the next
|
||||||
-- GTE command's pre-fill nops, so we count 1)
|
-- GTE command's pre-fill nops, so we count 1)
|
||||||
["gte_mv_to_data_r"] = 1,
|
["gte_mv_to_data_r"] = 1,
|
||||||
["gte_mv_from_data_r"] = 1,
|
["gte_mv_from_data_r"] = 1,
|
||||||
@@ -1583,20 +1517,7 @@ M.INSTRUCTION_LATENCY = {
|
|||||||
["gte_load_v1"] = 2,
|
["gte_load_v1"] = 2,
|
||||||
["gte_load_v2"] = 2,
|
["gte_load_v2"] = 2,
|
||||||
["gte_load_v0v1v2"] = 6,
|
["gte_load_v0v1v2"] = 6,
|
||||||
-- mac_* helpers (cycle cost = sum of the expanded instructions)
|
|
||||||
-- mac_yield transfers control; cycle budget is 0 (the next atom absorbs the cost).
|
|
||||||
["mac_yield"] = 0,
|
|
||||||
["mac_pack_color_word"] = 3, -- lui + ori + sw
|
|
||||||
["mac_format_f3_color"] = 3, -- = mac_pack_color_word
|
|
||||||
["mac_format_g4_color"] = 12, -- 4 x mac_pack_color_word
|
|
||||||
["mac_load_tri_indices"] = 3, -- 3 x lhu
|
|
||||||
["mac_gte_load_tri_verts"] = 18, -- 3 x {sll, addu, lw, lw, mtc2, mtc2}
|
|
||||||
["mac_gte_store_f3_post_rtpt"] = 3,
|
|
||||||
["mac_gte_store_g3_post_rtpt"] = 3,
|
|
||||||
["mac_gte_store_g4_p012_post_rtpt_pre_rtps"] = 3,
|
|
||||||
["mac_gte_store_g4_p3_post_rtps"] = 1,
|
|
||||||
["mac_insert_ot_tag_f3"] = 11, -- 11 .word slots in the macro body
|
|
||||||
["mac_insert_ot_tag_g4"] = 11,
|
|
||||||
-- Annotation markers (emit no code; pure metaprogram hints)
|
-- Annotation markers (emit no code; pure metaprogram hints)
|
||||||
["atom_label"] = 0,
|
["atom_label"] = 0,
|
||||||
["atom_offset"] = 0,
|
["atom_offset"] = 0,
|
||||||
@@ -1613,8 +1534,7 @@ M.UNKNOWN_INSTRUCTION_CYCLES = 1
|
|||||||
|
|
||||||
-- Hardware-relation policy table.
|
-- Hardware-relation policy table.
|
||||||
--
|
--
|
||||||
-- The forward walker in `passes/static_analysis.lua::analyze_hardware_relations` reads every emitted word_event,
|
-- The forward walker in `passes/static_analysis.lua::analyze_hardware_relations` reads every emitted word_event, matches its `encoder` against `row.token`, and:
|
||||||
-- matches its `encoder` against `row.token`, and:
|
|
||||||
-- * stages the event as a producer in `atom.paths.forward_state`; or
|
-- * stages the event as a producer in `atom.paths.forward_state`; or
|
||||||
-- * matches it as a consumer against pending producers and records a hazard on `atom.paths.hazards` when the gap is below `visibility.required`.
|
-- * matches it as a consumer against pending producers and records a hazard on `atom.paths.hazards` when the gap is below `visibility.required`.
|
||||||
--
|
--
|
||||||
@@ -1634,8 +1554,8 @@ M.UNKNOWN_INSTRUCTION_CYCLES = 1
|
|||||||
-- and is reserved for future "self-retires" relations.
|
-- and is reserved for future "self-retires" relations.
|
||||||
--
|
--
|
||||||
-- Evidence:
|
-- Evidence:
|
||||||
-- * `evidence.confidence` is one of `"exact"`, `"conservative"`, `"unknown"`. The severity comes from `violation_kind`; a hardware
|
-- * `evidence.confidence` is one of `"exact"`, `"conservative"`, `"unknown"`. The severity comes from `violation_kind`;
|
||||||
-- measurement that the vendor caveats may still classify as `"conservative"` even when the underlying timing is numerically known.
|
-- A hardware measurement that the vendor caveats may still classify as `"conservative"` even when the underlying timing is numerically known.
|
||||||
-- * `evidence.source` is the upstream reference (file + line range) the row is sourced from. New rows must carry this citation.
|
-- * `evidence.source` is the upstream reference (file + line range) the row is sourced from. New rows must carry this citation.
|
||||||
--
|
--
|
||||||
-- Consumers:
|
-- Consumers:
|
||||||
@@ -1745,22 +1665,42 @@ M.HARDWARE_RELATIONS = {
|
|||||||
},
|
},
|
||||||
-- Memory -> COP2 data register (LWC2).
|
-- Memory -> COP2 data register (LWC2).
|
||||||
-- The memory-side timing is not measured by the vendored GTE latch experiment, so this relation has no numeric retirement threshold.
|
-- The memory-side timing is not measured by the vendored GTE latch experiment, so this relation has no numeric retirement threshold.
|
||||||
-- The forward walker emits one info edge at the first command-input consumer and then clears the pending relation.
|
-- The LWC2 destination has TWO retirement regimes (per PSX-SPX):
|
||||||
|
-- * GTE-command consumer (`gte_cmdw_*`): the GTE pipeline LATCHES the LWC2 result, so a `gte_cmdw_*`
|
||||||
|
-- in the very next slot uses the latched value. Gap = 0 is allowed. (Per `docs/psx-spx/docs/gtepipelinetimings.md:271-274`.)
|
||||||
|
-- * Any other consumer: standard MIPS load delay applies. Gap = 1 required. (Per `docs/psx-spx/docs/cpuspecifications.md:407-419`.)
|
||||||
|
-- Two separate relations so the walker can dispatch by consumer type and emit different severities
|
||||||
|
-- (the GTE-command path is `info` because the latch is intentional; the non-GTE-consumer path is `error` because the missing nop is a real bug).
|
||||||
{
|
{
|
||||||
id = "lwc2_unknown_visibility",
|
id = "lwc2_to_gte_command",
|
||||||
semantic = "LWC2",
|
semantic = "LWC2_to_GTE",
|
||||||
token = "gte_lw",
|
token = "gte_lw",
|
||||||
direction = "memory_to_cop2_data",
|
direction = "memory_to_cop2_data",
|
||||||
reads = { domain = "memory", arg = 2 },
|
reads = { domain = "memory", arg = 2 },
|
||||||
writes = { domain = "cop2.data", arg = 1 },
|
writes = { domain = "cop2.data", arg = 1 },
|
||||||
visibility = { kind = "unknown_consumer", required = nil },
|
required = 0, -- GTE-command consumer: gap = 0 OK (latched).
|
||||||
evidence = {
|
evidence = {
|
||||||
confidence = "unknown",
|
confidence = "measured",
|
||||||
source = "gtepipelinetimings.md:271-274",
|
source = "gtepipelinetimings.md:271-274",
|
||||||
},
|
},
|
||||||
violation_kind = "info",
|
violation_kind = "info",
|
||||||
clear_on_consumer = true,
|
clear_on_consumer = true,
|
||||||
},
|
},
|
||||||
|
{
|
||||||
|
id = "lwc2_to_other_consumer",
|
||||||
|
semantic = "LWC2_to_other",
|
||||||
|
token = "gte_lw",
|
||||||
|
direction = "memory_to_cop2_data",
|
||||||
|
reads = { domain = "memory", arg = 2 },
|
||||||
|
writes = { domain = "cop2.data", arg = 1 },
|
||||||
|
required = 1, -- Non-GTE-consumer: standard MIPS load delay.
|
||||||
|
evidence = {
|
||||||
|
confidence = "inferred",
|
||||||
|
source = "cpuspecifications.md:407-419",
|
||||||
|
},
|
||||||
|
violation_kind = "error",
|
||||||
|
clear_on_consumer = true,
|
||||||
|
},
|
||||||
-- COP2 data register -> memory (SWC2). A read of C2 state, not a CPU-to-COP2 write.
|
-- COP2 data register -> memory (SWC2). A read of C2 state, not a CPU-to-COP2 write.
|
||||||
-- The policy row stays in for direction/provenance; staging it as a later command-input producer is suppressed.
|
-- The policy row stays in for direction/provenance; staging it as a later command-input producer is suppressed.
|
||||||
{
|
{
|
||||||
@@ -1973,7 +1913,7 @@ M.GPR_VALUE_RULES = {
|
|||||||
-- Present register-form self variants. They are included here so a
|
-- Present register-form self variants. They are included here so a
|
||||||
-- known value is not needlessly lost when these encoders are used.
|
-- known value is not needlessly lost when these encoders are used.
|
||||||
add_u_self = { op = "add_u", dest = 1, sources = {1, 2}, },
|
add_u_self = { op = "add_u", dest = 1, sources = {1, 2}, },
|
||||||
or_u_self = { op = "or_u", dest = 1, sources = {1, 2}, },
|
or_u_self = { op = "or", dest = 1, sources = {1, 2}, },
|
||||||
shift_lleft_self = { op = "shift_lleft", dest = 1, source = 1, immediate = 2, },
|
shift_lleft_self = { op = "shift_lleft", dest = 1, source = 1, immediate = 2, },
|
||||||
}
|
}
|
||||||
|
|
||||||
@@ -2092,14 +2032,14 @@ local E_MAC_PREFIX_LEN = 4
|
|||||||
--- Expand a body entry into the flat sequence of emitted machine-word events.
|
--- Expand a body entry into the flat sequence of emitted machine-word events.
|
||||||
---
|
---
|
||||||
--- Semantics (one event per emitted machine word):
|
--- Semantics (one event per emitted machine word):
|
||||||
--- * **Direct one-word encoders** (`load_word`, `add_ui`, `nop`, `gte_lw`, ...): one event with `ident` = leading ident, `args` = parsed top-level args.
|
--- * Direct one-word encoders `load_word`, `add_ui`, `nop`, `gte_lw`, ...: One event with `ident` = leading ident, `args` = parsed top-level args.
|
||||||
--- * **`nop2`** (2-word pseudo-instruction): two events, both with `ident = "nop"` so the recognized "this slot is a no-op" semantic is visible to downstream analyses.
|
--- * `nop2` (2-word pseudo-instruction): Two events, both with `ident = "nop"` so the recognized "this slot is a no-op" semantic is visible to downstream analyses.
|
||||||
--- * **Any other N-word token** in `word_counts`: N events sharing the same `ident` + `args` so useful CPU words retire slots in the cycle budget.
|
--- * Any other N-word token in `word_counts`: N events sharing the same `ident` + `args` so useful CPU words retire slots in the cycle budget.
|
||||||
--- * **Known `mac_X(...)` calls**: recursively expand the indexed component body, including nested components. Every event from the expansion carries:
|
--- * Known `mac_X(...)` calls: Recursively expand the indexed component body, including nested components. Every event from the expansion carries:
|
||||||
--- - `source` / `line` = the COMPONENT'S source path + the line of the token within the component body (i.e. "definition site").
|
--- - `source` / `line` = the COMPONENT'S source path + the line of the token within the component body (i.e. "definition site").
|
||||||
--- - `call_source` / `call_line` = the ROOT atom's source path + call-site line, PRESERVED across recursion so nested events still point at the original root.
|
--- - `call_source` / `call_line` = the ROOT atom's source path + call-site line, PRESERVED across recursion so nested events still point at the original root.
|
||||||
--- * **Unknown `mac_X`** (not in `component_index`): fall back to `word_counts[ident]` if present; otherwise emit one opaque event so the cycle budget accounts for the word.
|
--- * Unknown `mac_X` (not in `component_index`): fall back to `word_counts[ident]` if present; otherwise emit one opaque event so the cycle budget accounts for the word.
|
||||||
--- * **Marker tokens** (`atom_label(...)` / `atom_offset(...)`): zero events (they are pure metaprogram hints, not emitted machine words).
|
--- * Marker Tokens (`atom_label(...)` / `atom_offset(...)`): Zero events (they are pure metaprogram hints).
|
||||||
---
|
---
|
||||||
--- Cycle protection: a per-expansion `visiting` set tracks components currently on the expansion stack; a re-entry produces a deterministic `{kind = "cycle", ...}` error and aborts that branch (does NOT hang, does NOT recurse).
|
--- Cycle protection: a per-expansion `visiting` set tracks components currently on the expansion stack; a re-entry produces a deterministic `{kind = "cycle", ...}` error and aborts that branch (does NOT hang, does NOT recurse).
|
||||||
---
|
---
|
||||||
@@ -2123,12 +2063,12 @@ local E_MAC_PREFIX_LEN = 4
|
|||||||
-- word_counts table is authored-metadata + current-component count table.
|
-- word_counts table is authored-metadata + current-component count table.
|
||||||
|
|
||||||
--- @class EmissionProjection
|
--- @class EmissionProjection
|
||||||
--- @field items table[] -- ordered stream of word|label|offset|invoke_begin|invoke_end
|
--- @field items table[] -- Ordered stream of word|label|offset|invoke_begin|invoke_end
|
||||||
--- @field word_events table[] -- dense view of items where kind == "word"
|
--- @field word_events table[] -- Dense view of items where kind == "word"
|
||||||
--- @field markers table[] -- dense view of items where kind == "label"|"offset"
|
--- @field markers table[] -- Dense view of items where kind == "label"|"offset"
|
||||||
--- @field invocations InvocationRecord[] -- dense view of items where kind == "invoke_begin"|"invoke_end"
|
--- @field invocations InvocationRecord[] -- dense view of items where kind == "invoke_begin"|"invoke_end"
|
||||||
--- @field errors table[] -- token-resolution failures surfaced without fail-loud
|
--- @field errors table[] -- Token-resolution failures surfaced without fail-loud
|
||||||
--- @field warnings table[] -- opaque warnings (e.g. unknown uncounted macro)
|
--- @field warnings table[] -- Opaque warnings (e.g. unknown uncounted macro)
|
||||||
|
|
||||||
--- @class InvocationRecord
|
--- @class InvocationRecord
|
||||||
--- Lives at `atom.paths.invocations[*]`. Constructed once at the single invocation-construction site
|
--- Lives at `atom.paths.invocations[*]`. Constructed once at the single invocation-construction site
|
||||||
@@ -2136,20 +2076,20 @@ local E_MAC_PREFIX_LEN = 4
|
|||||||
--- @field id integer -- 1-based, monotonic per-atom invocation id (0 is reserved for "no open invocation")
|
--- @field id integer -- 1-based, monotonic per-atom invocation id (0 is reserved for "no open invocation")
|
||||||
--- @field parent_id integer -- 0 for the outermost (root) call; otherwise the id of the immediately enclosing invocation
|
--- @field parent_id integer -- 0 for the outermost (root) call; otherwise the id of the immediately enclosing invocation
|
||||||
--- @field kind string -- "comp_bare" | "comp_proc" (component form that triggered the expansion)
|
--- @field kind string -- "comp_bare" | "comp_proc" (component form that triggered the expansion)
|
||||||
--- @field component_name string -- the bare component name without the `mac_` prefix
|
--- @field component_name string -- Bare component name without the `mac_` prefix
|
||||||
--- @field call_text string -- the immediate `mac_X(...)` token text (or root call text for the outermost entry)
|
--- @field call_text string -- Immediate `mac_X(...)` token text (or root call text for the outermost entry)
|
||||||
--- @field root_call_text string -- the IMMUTABLE outermost `mac_X(...)` token text for every word emitted in this call's expansion
|
--- @field root_call_text string -- IMMUTABLE outermost `mac_X(...)` token text for every word emitted in this call's expansion
|
||||||
--- @field call_path string -- source path of the call site (root atom source for direct calls, component source for nested expansions)
|
--- @field call_path string -- Source path of the call site (root atom source for direct calls, component source for nested expansions)
|
||||||
--- @field call_line integer -- source line of the call site
|
--- @field call_line integer -- Source line of the call site
|
||||||
--- @field def_path string -- source path of the component definition
|
--- @field def_path string -- Source path of the component definition
|
||||||
--- @field def_line integer -- source line of the component declaration
|
--- @field def_line integer -- Source line of the component declaration
|
||||||
--- @field start_pos integer -- 0-based emitted-word position of the FIRST word inside this invocation (the value of `word_idx` AT `emit_invoke_begin` time, BEFORE the first word is emitted). Words emitted inside this invocation occupy `start_pos..start_pos+#body_lines-1` (inclusive, 0-based). Downstream DWARF/provenance consumers MUST read this; do NOT reconstruct it from `start_word` (which is the 1-based items index including `invoke_begin`/`invoke_end` markers).
|
--- @field start_pos integer -- 0-based emitted-word position of the FIRST word inside this invocation (the value of `word_idx` AT `emit_invoke_begin` time, BEFORE the first word is emitted). Words emitted inside this invocation occupy `start_pos..start_pos+#body_lines-1` (inclusive, 0-based). Downstream DWARF/provenance consumers MUST read this; do NOT reconstruct it from `start_word` (which is the 1-based items index including `invoke_begin`/`invoke_end` markers).
|
||||||
--- @field end_pos integer -- 0-based position of the LAST word inside this invocation (set by `emit_invoke_end` to `word_idx - 1` AFTER all body words are emitted).
|
--- @field end_pos integer -- 0-based position of the LAST word inside this invocation (set by `emit_invoke_end` to `word_idx - 1` AFTER all body words are emitted).
|
||||||
--- @field start_word integer -- 1-based items index of the `invoke_begin` item
|
--- @field start_word integer -- 1-based items index of the `invoke_begin` item
|
||||||
--- @field end_word integer -- 1-based items index of the `invoke_end` item (set by `emit_invoke_end`)
|
--- @field end_word integer -- 1-based items index of the `invoke_end` item (set by `emit_invoke_end`)
|
||||||
--- @field word_count integer -- number of `word` items emitted between `start_word` and `end_word` (inclusive)
|
--- @field word_count integer -- Number of `word` items emitted between `start_word` and `end_word` (inclusive)
|
||||||
--- @field debug_skip boolean -- `debug_skip` stamp; true iff `corpus.components[name].debug_skip` is true at construction. Always boolean (never `nil`).
|
--- @field debug_skip boolean -- `debug_skip` stamp; true iff `corpus.components[name].debug_skip` is true at construction. Always boolean (never `nil`).
|
||||||
--- @field errors table[] -- per-invocation construction errors (cycle / count_mismatch); does not include pass-level errors
|
--- @field errors table[] -- Per-invocation construction errors (cycle / count_mismatch); does not include pass-level errors
|
||||||
|
|
||||||
-- Internal recursive walker. The items stream holds every emitted event in order; `word_events`, `markers`,
|
-- Internal recursive walker. The items stream holds every emitted event in order; `word_events`, `markers`,
|
||||||
-- `invocations`, `errors`, `warnings` are dense views / side outputs appended alongside.
|
-- `invocations`, `errors`, `warnings` are dense views / side outputs appended alongside.
|
||||||
@@ -2225,10 +2165,15 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
end
|
end
|
||||||
|
|
||||||
local function emit_marker(kind, name, target, line,
|
local function emit_marker(kind, name, target, line,
|
||||||
immediate_call_text, root_call_text_w)
|
immediate_call_text, root_call_text_w,
|
||||||
|
consuming_encoder, consuming_arg_pos)
|
||||||
local inv_ids = open_invocation_ids_snapshot()
|
local inv_ids = open_invocation_ids_snapshot()
|
||||||
local outermost = inv_ids[1] or 0
|
local outermost = inv_ids[1] or 0
|
||||||
-- Markers carry the open invocation stack snapshot. `call_text` / `root_call_text` belong to words, not markers — markers are zero-width and skip per-word call-site attribution.
|
-- Markers carry the open invocation stack snapshot. `call_text` / `root_call_text` belong to words, not markers — markers are zero-width and skip per-word call-site attribution.
|
||||||
|
-- `consuming_encoder` + `consuming_arg_pos` carry the surrounding control-transfer instruction context
|
||||||
|
-- (e.g. `branch_le_zero` consuming its 3rd argument, or `jump` / `call_addr` consuming their only argument).
|
||||||
|
-- `passes/offsets.lua` reads these to dispatch per-consuming-instruction offset encoding.
|
||||||
|
-- nil for top-level markers (where the marker is the entire token — no surrounding consuming instruction).
|
||||||
local it = {
|
local it = {
|
||||||
kind = kind,
|
kind = kind,
|
||||||
name = name,
|
name = name,
|
||||||
@@ -2238,46 +2183,111 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
outermost_invocation_id = outermost,
|
outermost_invocation_id = outermost,
|
||||||
}
|
}
|
||||||
if target ~= nil then it.target = target end
|
if target ~= nil then it.target = target end
|
||||||
|
if consuming_encoder then it.consuming_encoder = consuming_encoder end
|
||||||
|
if consuming_arg_pos then it.consuming_arg_pos = consuming_arg_pos end
|
||||||
items[#items + 1] = it
|
items[#items + 1] = it
|
||||||
markers[#markers + 1] = {
|
markers[#markers + 1] = {
|
||||||
kind = kind,
|
kind = kind,
|
||||||
name = name,
|
name = name,
|
||||||
line = line,
|
line = line,
|
||||||
word_index = word_idx,
|
word_index = word_idx,
|
||||||
target = target,
|
target = target,
|
||||||
|
consuming_encoder = consuming_encoder,
|
||||||
|
consuming_arg_pos = consuming_arg_pos,
|
||||||
}
|
}
|
||||||
end
|
end
|
||||||
|
|
||||||
local function emit_embedded_markers(tok, tok_line)
|
-- Count top-level commas in `tok` between position `from_pos` (inclusive) and `to_pos` (exclusive).
|
||||||
|
-- Tracks paren depth so commas inside nested () don't count. Skips string literals + comments.
|
||||||
|
-- Used by `emit_embedded_markers` to compute `consuming_arg_pos` for each embedded marker.
|
||||||
|
local function count_top_level_commas(tok, from_pos, to_pos)
|
||||||
|
local depth = 0
|
||||||
|
local count = 0
|
||||||
|
local i = from_pos
|
||||||
|
while i < to_pos do
|
||||||
|
local c = tok:sub(i, i)
|
||||||
|
if c == "'" or c == '"' then
|
||||||
|
local next_pos = M.skip_str_or_cmt(tok, i)
|
||||||
|
i = (next_pos > i) and next_pos or (i + 1)
|
||||||
|
elseif c == "/" and tok:sub(i + 1, i + 1) == "/" then
|
||||||
|
-- line comment: skip to end of line
|
||||||
|
local nl = tok:find("\n", i, true)
|
||||||
|
i = (nl and nl + 1) or (#tok + 1)
|
||||||
|
elseif c == "/" and tok:sub(i + 1, i + 1) == "*" then
|
||||||
|
-- block comment: skip to matching */
|
||||||
|
local close = tok:find("*/", i + 2, true)
|
||||||
|
i = (close and close + 2) or (#tok + 1)
|
||||||
|
elseif c == "(" then
|
||||||
|
depth = depth + 1
|
||||||
|
i = i + 1
|
||||||
|
elseif c == ")" then
|
||||||
|
depth = depth - 1
|
||||||
|
i = i + 1
|
||||||
|
elseif c == "," and depth == 0 then
|
||||||
|
count = count + 1
|
||||||
|
i = i + 1
|
||||||
|
else
|
||||||
|
i = i + 1
|
||||||
|
end
|
||||||
|
end
|
||||||
|
return count
|
||||||
|
end
|
||||||
|
|
||||||
|
-- Find the position of the consuming instruction's open paren (the `(` that starts the consuming instruction's argument list).
|
||||||
|
-- Returns nil if the token's leading text isn't an ident followed by `(` (e.g. the ident is at the start of a non-instruction token).
|
||||||
|
local function find_consuming_paren(tok)
|
||||||
|
local i = 1
|
||||||
|
while i <= #tok do
|
||||||
|
local c = tok:sub(i, i)
|
||||||
|
if c == "(" then return i end
|
||||||
|
if not c:match("[%w_]") and c ~= " " then return nil end
|
||||||
|
i = i + 1
|
||||||
|
end
|
||||||
|
return nil
|
||||||
|
end
|
||||||
|
|
||||||
|
local function emit_embedded_markers(tok, tok_line, consuming_encoder)
|
||||||
|
-- When called with a non-nil `consuming_encoder`, the marker is nested inside that instruction's argument list.
|
||||||
|
-- We compute each marker's arg position by counting top-level commas between the consuming instruction's `(` and the marker's start.
|
||||||
|
local consuming_paren = nil
|
||||||
|
if consuming_encoder then consuming_paren = find_consuming_paren(tok) end
|
||||||
local pos = 1
|
local pos = 1
|
||||||
while pos <= #tok do
|
while pos <= #tok do
|
||||||
-- trim leading whitespace and comments before each scan.
|
-- Trim leading whitespace and comments before each scan.
|
||||||
pos = M.skip_ws_and_cmt(tok, pos)
|
pos = M.skip_ws_and_cmt(tok, pos)
|
||||||
if pos > #tok then break end
|
if pos > #tok then break end
|
||||||
local ident, after = M.read_ident(tok, pos)
|
local ident, after = M.read_ident(tok, pos)
|
||||||
if not ident then
|
if not ident then
|
||||||
-- not an ident: token is a string or comment; skip or one-step.
|
-- Not an ident: token is a string or comment; skip or one-step.
|
||||||
local next_pos = M.skip_str_or_cmt(tok, pos)
|
local next_pos = M.skip_str_or_cmt(tok, pos)
|
||||||
pos = (next_pos > pos) and next_pos or (pos + 1)
|
pos = (next_pos > pos) and next_pos or (pos + 1)
|
||||||
goto continue_loop
|
goto continue_loop
|
||||||
end
|
end
|
||||||
if ident ~= "atom_label" and ident ~= "atom_offset" then
|
if ident ~= "atom_label" and ident ~= "atom_offset" then
|
||||||
-- ordinary ident; nothing to emit, step past the ident only.
|
-- Ordinary ident; nothing to emit, step past the ident only.
|
||||||
pos = after
|
pos = after
|
||||||
goto continue_loop
|
goto continue_loop
|
||||||
end
|
end
|
||||||
-- marker ident: parse the (...) arguments.
|
-- Marker ident: parse the (...) arguments.
|
||||||
local open = M.skip_ws_and_cmt(tok, after)
|
local open = M.skip_ws_and_cmt(tok, after)
|
||||||
local inner, after_paren = M.read_parens(tok, open)
|
local inner, after_paren = M.read_parens(tok, open)
|
||||||
if not inner then
|
if not inner then
|
||||||
-- (...) unreadable: fall back to non-marker behavior.
|
-- (...) Unreadable: fall back to non-marker behavior.
|
||||||
pos = after
|
pos = after
|
||||||
goto continue_loop
|
goto continue_loop
|
||||||
end
|
end
|
||||||
-- commit: label takes 1 arg, offset takes 2.
|
-- Commit: label takes 1 arg, offset takes 2.
|
||||||
|
-- For embedded markers, propagate the consuming_encoder + the marker's arg position
|
||||||
|
-- (1-based) so `passes/offsets.lua` can dispatch per-consuming-instruction offset encoding.
|
||||||
|
-- Top-level markers (no consuming_encoder) get nil for both — the offsets pass treats
|
||||||
|
-- them as branch-equivalent for backward compatibility.
|
||||||
|
local arg_pos = nil
|
||||||
|
if consuming_encoder and consuming_paren then
|
||||||
|
arg_pos = count_top_level_commas(tok, consuming_paren + 1, pos) + 1
|
||||||
|
end
|
||||||
local args = split_top_level_args(inner)
|
local args = split_top_level_args(inner)
|
||||||
if ident == "atom_label" then emit_marker("label", args[1] or "", nil, tok_line)
|
if ident == "atom_label" then emit_marker("label", args[1] or "", nil, tok_line, nil, nil, consuming_encoder, arg_pos)
|
||||||
else emit_marker("offset", args[1] or "", args[2] or "", tok_line)
|
else emit_marker("offset", args[1] or "", args[2] or "", tok_line, nil, nil, consuming_encoder, arg_pos)
|
||||||
end
|
end
|
||||||
pos = after_paren
|
pos = after_paren
|
||||||
::continue_loop::
|
::continue_loop::
|
||||||
@@ -2289,14 +2299,13 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
next_inv_id = next_inv_id + 1
|
next_inv_id = next_inv_id + 1
|
||||||
-- Invocation-level debug_skip stamp: Emission pass owns `atom.paths.invocations[*].debug_skip`.
|
-- Invocation-level debug_skip stamp: Emission pass owns `atom.paths.invocations[*].debug_skip`.
|
||||||
-- The stamp is resolved from the `corpus.components[name]` registry (passed in via `ctx_table.components` by `emission_model.run`),
|
-- The stamp is resolved from the `corpus.components[name]` registry (passed in via `ctx_table.components` by `emission_model.run`),
|
||||||
-- NOT from a parallel skip map, source-text re-parse, or second pass over `invocations`.
|
|
||||||
-- Unmarked components stamp `false` (not `nil`) so consumers can dispatch on the boolean without nil checks.
|
-- Unmarked components stamp `false` (not `nil`) so consumers can dispatch on the boolean without nil checks.
|
||||||
--
|
--
|
||||||
-- The walker has already found the component body in `ctx_table.component_index[component_name]`, so the matching entry MUST exist in `ctx_table.components[component_name]`
|
-- The walker has already found the component body in `ctx_table.component_index[component_name]`, so the matching entry MUST exist in `ctx_table.components[component_name]`
|
||||||
-- (both registries are populated from the same source by the components pass).
|
-- (both registries are populated from the same source by the components pass).
|
||||||
-- A missing entry is a corpus-plumbing bug; we fail loudly here rather than silently stamp `false` and mask the regression.
|
-- A missing entry is a corpus-plumbing bug; we fail loudly here rather than silently stamp `false` and mask the regression.
|
||||||
local components = ctx_table.components
|
local components = ctx_table.components
|
||||||
local component_def = components and components[component_name] or nil
|
local component_def = components and components[component_name] or nil
|
||||||
if not component_def then
|
if not component_def then
|
||||||
error("duffle.emit_invoke_begin: component " .. string.format("%q", component_name)
|
error("duffle.emit_invoke_begin: component " .. string.format("%q", component_name)
|
||||||
.. " is present in `component_index` (the walker matched a `mac_" .. component_name .. "()` call) but absent from `components` (the canonical corpus.components registry). "
|
.. " is present in `component_index` (the walker matched a `mac_" .. component_name .. "()` call) but absent from `components` (the canonical corpus.components registry). "
|
||||||
@@ -2360,7 +2369,6 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
end
|
end
|
||||||
|
|
||||||
-- Resolve the per-token word count. If unresolved, surface ONE warning
|
-- Resolve the per-token word count. If unresolved, surface ONE warning
|
||||||
-- (NOT an error; the build does not fail-loud on an uncounted opaque word)
|
|
||||||
-- and fall back to 1 opaque word so the cycle budget still accounts for the slot.
|
-- and fall back to 1 opaque word so the cycle budget still accounts for the slot.
|
||||||
local function resolve_count(ident, tok_line)
|
local function resolve_count(ident, tok_line)
|
||||||
local wc = ctx_table.word_counts
|
local wc = ctx_table.word_counts
|
||||||
@@ -2384,10 +2392,10 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
end
|
end
|
||||||
|
|
||||||
-- Recursive walker: walk one body entry, possibly descending into components.
|
-- Recursive walker: walk one body entry, possibly descending into components.
|
||||||
-- `walk_parent_inv_id` is the invocation ID of the enclosing call (0 for the root call).
|
-- walk_parent_inv_id: Invocation ID of the enclosing call (0 for the root call).
|
||||||
-- `walk_root_call_text` is the outermost `mac_X(...)` token text (preserved across recursion).
|
-- walk_root_call_text: Outermost `mac_X(...)` token text (preserved across recursion).
|
||||||
-- `walk_immediate_call_text` is the IMMEDIATE outer `mac_X(...)` token text for words emitted in this body — nil for the root atom body.
|
-- walk_immediate_call_text: IMMEDIATE outer `mac_X(...)` token text for words emitted in this body — nil for the root atom body.
|
||||||
-- The two trackers are propagated as separate parameters so words deep inside nested expansions correctly identify both their immediate call site and the outermost call site.
|
-- Two trackers are propagated as separate parameters so words deep inside nested expansions correctly identify both their immediate call site and the outermost call site.
|
||||||
local function walk_body_entry(body_entry, walk_parent_inv_id,
|
local function walk_body_entry(body_entry, walk_parent_inv_id,
|
||||||
walk_root_call_text, walk_immediate_call_text)
|
walk_root_call_text, walk_immediate_call_text)
|
||||||
local tokens = body_entry.body_tokens or {}
|
local tokens = body_entry.body_tokens or {}
|
||||||
@@ -2404,9 +2412,19 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
local _, args = token_ident_and_args(tok)
|
local _, args = token_ident_and_args(tok)
|
||||||
local tok_line = line_of(body_off + bt.rel) or 0
|
local tok_line = line_of(body_off + bt.rel) or 0
|
||||||
-- embedded markers live only in non-marker tokens.
|
-- embedded markers live only in non-marker tokens.
|
||||||
if ident ~= "atom_label" and ident ~= "atom_offset" then emit_embedded_markers(tok, tok_line) end
|
-- Pass `ident` as the consuming instruction so `emit_embedded_markers` can compute each marker's arg position + record the consuming_encoder for the offsets pass.
|
||||||
|
-- Canonicalize `jump_rel` to `branch_equal` (its preprocessor-expanded form) so the `consuming_encoder` metadata in marker records is canonical.
|
||||||
|
-- `jump_rel`: unconditional jump alias from `code/duffle/mips.h`.
|
||||||
|
local consuming_encoder_for_markers = (ident == "jump_rel") and "branch_equal" or ident
|
||||||
|
if ident ~= "atom_label" and ident ~= "atom_offset" then
|
||||||
|
emit_embedded_markers(tok, tok_line, consuming_encoder_for_markers)
|
||||||
|
end
|
||||||
-- atom_label / atom_offset: terminal markers, no further descent.
|
-- atom_label / atom_offset: terminal markers, no further descent.
|
||||||
if ident == "atom_label" then emit_marker("label", args[1] or "", nil, tok_line); return
|
-- Top-level markers (the marker IS the entire token) have no consuming instruction;
|
||||||
|
-- nil for both `consuming_encoder` and `consuming_arg_pos`.
|
||||||
|
-- The offsets pass treats these as branch-equivalent for backward compatibility.
|
||||||
|
-- TODO(Ed): Review this don't want legacy cruft here..
|
||||||
|
if ident == "atom_label" then emit_marker("label", args[1] or "", nil, tok_line); return
|
||||||
elseif ident == "atom_offset" then emit_marker("offset", args[1] or "", args[2] or "", tok_line); return
|
elseif ident == "atom_offset" then emit_marker("offset", args[1] or "", args[2] or "", tok_line); return
|
||||||
end
|
end
|
||||||
if ident:sub(1, 4) == "mac_" then
|
if ident:sub(1, 4) == "mac_" then
|
||||||
@@ -2415,7 +2433,7 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
if comp then
|
if comp then
|
||||||
local invocation_root_call_text = walk_root_call_text or tok
|
local invocation_root_call_text = walk_root_call_text or tok
|
||||||
if ctx_table.visiting[bare] then
|
if ctx_table.visiting[bare] then
|
||||||
-- cycle: still allocate inv_id, emit zero-width begin/end, record the cycle error; do NOT recurse.
|
-- Cycle: still allocate inv_id, emit zero-width begin/end, record the cycle error; do NOT recurse.
|
||||||
local inv = emit_invoke_begin(comp.kind or "comp_bare", bare, tok, invocation_root_call_text, def_source, tok_line)
|
local inv = emit_invoke_begin(comp.kind or "comp_bare", bare, tok, invocation_root_call_text, def_source, tok_line)
|
||||||
inv.parent_id = walk_parent_inv_id
|
inv.parent_id = walk_parent_inv_id
|
||||||
inv.call_text = tok
|
inv.call_text = tok
|
||||||
@@ -2430,16 +2448,16 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
emit_invoke_end(inv)
|
emit_invoke_end(inv)
|
||||||
return
|
return
|
||||||
end
|
end
|
||||||
-- first visit: descend + count + count_mismatch-check below.
|
-- First visit: descend + count + count_mismatch-check below.
|
||||||
ctx_table.visiting[bare] = true
|
ctx_table.visiting[bare] = true
|
||||||
local inv = emit_invoke_begin(comp.kind or "comp_bare", bare, tok, invocation_root_call_text, def_source, tok_line)
|
local inv = emit_invoke_begin(comp.kind or "comp_bare", bare, tok, invocation_root_call_text, def_source, tok_line)
|
||||||
inv.parent_id = walk_parent_inv_id
|
inv.parent_id = walk_parent_inv_id
|
||||||
inv.call_text = tok
|
inv.call_text = tok
|
||||||
inv.def_path = comp.source
|
inv.def_path = comp.source
|
||||||
inv.def_line = comp.declaration
|
inv.def_line = comp.declaration
|
||||||
-- propagate trackers into the recursive walk:
|
-- Propagate trackers into the recursive walk:
|
||||||
-- immediate_call_text = this call's tok (the IMMEDIATE outer call for words emitted in this body)
|
-- immediate_call_text = this call's tok (the IMMEDIATE outer call for words emitted in this body)
|
||||||
-- root_call_text = the OUTERMOST call (immutable across the recursion)
|
-- root_call_text = the OUTERMOST call (immutable across the recursion)
|
||||||
walk_body_entry({
|
walk_body_entry({
|
||||||
body_tokens = comp.body_tokens or {},
|
body_tokens = comp.body_tokens or {},
|
||||||
body_off = comp.body_off or 0,
|
body_off = comp.body_off or 0,
|
||||||
@@ -2452,7 +2470,7 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
tok)
|
tok)
|
||||||
ctx_table.visiting[bare] = nil
|
ctx_table.visiting[bare] = nil
|
||||||
emit_invoke_end(inv)
|
emit_invoke_end(inv)
|
||||||
-- count `word` items inside [start_word, end_word].
|
-- Count `word` items inside [start_word, end_word].
|
||||||
local wc_inside = 0
|
local wc_inside = 0
|
||||||
for i = inv.start_word, inv.end_word do
|
for i = inv.start_word, inv.end_word do
|
||||||
local it = items[i]
|
local it = items[i]
|
||||||
@@ -2478,9 +2496,9 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
end
|
end
|
||||||
-- mac_X NOT in component_index: fall through to opaque emit.
|
-- mac_X NOT in component_index: fall through to opaque emit.
|
||||||
end
|
end
|
||||||
-- direct encoder, or mac_X-without-component: resolve count + emit n words.
|
-- Direct encoder, or mac_X-without-component: resolve count + emit n words.
|
||||||
-- resolve_count may emit a warning if the count is unresolved.
|
-- Resolve_count may emit a warning if the count is unresolved.
|
||||||
local n = resolve_count(ident, tok_line)
|
local n = resolve_count(ident, tok_line)
|
||||||
local out_ident = (ident == "nop2") and "nop" or ident
|
local out_ident = (ident == "nop2") and "nop" or ident
|
||||||
for _ = 1, n do
|
for _ = 1, n do
|
||||||
emit_word(out_ident, args, tok_line, tok, def_source, def_line, walk_immediate_call_text, walk_root_call_text)
|
emit_word(out_ident, args, tok_line, tok, def_source, def_line, walk_immediate_call_text, walk_root_call_text)
|
||||||
@@ -2495,9 +2513,9 @@ local function _project_emission_inner(root_body_entry, ctx_table)
|
|||||||
-- Initialize the per-walk mutable context.
|
-- Initialize the per-walk mutable context.
|
||||||
-- `visiting` is the active DFS component stack; `root_call_path` / `root_call_line` are preserved across recursion so nested words always point at the
|
-- `visiting` is the active DFS component stack; `root_call_path` / `root_call_line` are preserved across recursion so nested words always point at the
|
||||||
-- ORIGINAL root atom call site.
|
-- ORIGINAL root atom call site.
|
||||||
ctx_table.visiting = ctx_table.visiting or {}
|
ctx_table.visiting = ctx_table.visiting or {}
|
||||||
ctx_table.root_call_path = ctx_table.root_call_path or ""
|
ctx_table.root_call_path = ctx_table.root_call_path or ""
|
||||||
ctx_table.root_call_line = ctx_table.root_call_line or 0
|
ctx_table.root_call_line = ctx_table.root_call_line or 0
|
||||||
|
|
||||||
-- Walk first; the pass caller stamps the root call site for direct words after the projection returns.
|
-- Walk first; the pass caller stamps the root call site for direct words after the projection returns.
|
||||||
-- For nested words the def_path / def_line already point at the component source and MUST be preserved (the stamping helper checks for that).
|
-- For nested words the def_path / def_line already point at the component source and MUST be preserved (the stamping helper checks for that).
|
||||||
|
|||||||
+306
-61
@@ -1,13 +1,8 @@
|
|||||||
--- elf_dwarf.lua — ELF32 + DWARF + atoms source-map utilities.
|
--- elf_dwarf.lua — ELF32 + DWARF + atoms source-map utilities.
|
||||||
--- All ELF32 + DWARF-specific code lives here.
|
|
||||||
---
|
|
||||||
--- **What this module contains:**
|
--- **What this module contains:**
|
||||||
--- - **Format-constant tables** (the byte-offset / opcode / size encyclopedias for ELF32, DWARF4 aranges, DWARF5 rnglists, DWARF line-program, MIPS).
|
--- - **Format-constant tables** (the byte-offset / opcode / size encyclopedias for ELF32, DWARF4 aranges, DWARF5 rnglists, DWARF line-program, MIPS).
|
||||||
--- Every constant carries a spec:` comment naming the spec section that defines it.
|
--- Every constant carries a spec:` comment naming the spec section that defines it.
|
||||||
--- - **I/O helpers**: little-endian byte read/write, ELF32 section walker, nm symbol reader, source-map parser, native directory glob.
|
--- - **I/O helpers**: little-endian byte read/write, ELF32 section walker, nm symbol reader, source-map parser, native directory glob.
|
||||||
---
|
|
||||||
--- **Conventions:** tabs (1/level), EmmyLua annotations, no regex,
|
|
||||||
--- Lua 5.3 compatible.
|
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Native dependencies
|
-- Native dependencies
|
||||||
@@ -60,19 +55,19 @@ M.DW_AT = {
|
|||||||
}
|
}
|
||||||
|
|
||||||
M.DW_FORM = {
|
M.DW_FORM = {
|
||||||
addr = 0x01,
|
addr = 0x01,
|
||||||
data1 = 0x0B,
|
data1 = 0x0B,
|
||||||
data2 = 0x05,
|
data2 = 0x05,
|
||||||
data4 = 0x06,
|
data4 = 0x06,
|
||||||
string = 0x08,
|
string = 0x08,
|
||||||
strp = 0x0E,
|
strp = 0x0E,
|
||||||
exprloc = 0x18,
|
exprloc = 0x18,
|
||||||
ref4 = 0x13,
|
ref4 = 0x13,
|
||||||
udata = 0x0F,
|
udata = 0x0F,
|
||||||
ref_sig8 = 0x20,
|
ref_sig8 = 0x20,
|
||||||
implicit_const = 0x21,
|
implicit_const = 0x21,
|
||||||
flag_present = 0x19,
|
flag_present = 0x19,
|
||||||
sec_offset = 0x17,
|
sec_offset = 0x17,
|
||||||
}
|
}
|
||||||
|
|
||||||
M.DW_ATE = {
|
M.DW_ATE = {
|
||||||
@@ -104,13 +99,9 @@ M.MIPS_BYTES_PER_WORD = 0x04
|
|||||||
-- ----------------------------------------------------------------------------
|
-- ----------------------------------------------------------------------------
|
||||||
-- ELF32 (System V ABI gABI v1.2)
|
-- ELF32 (System V ABI gABI v1.2)
|
||||||
-- ----------------------------------------------------------------------------
|
-- ----------------------------------------------------------------------------
|
||||||
--- **Wire-offset contract:** format offsets, fixed-width reader offsets, LEB/parser cursors,
|
--- **Wire-offset contract:** format offsets, fixed-width reader offsets, LEB/parser cursors, and section-relative values are zero-based wire offsets.
|
||||||
--- and section-relative values are zero-based wire offsets. Only Lua string APIs receive
|
--- Only Lua string APIs receive a `+ 1` conversion at their boundary (`byte`, `sub`, and `find`).
|
||||||
--- a `+ 1` conversion at their boundary (`byte`, `sub`, and `find`).
|
--- ELF/DWARF field offsets are expressed in hex so they map directly to the zero-based byte positions in the binary file.
|
||||||
---
|
|
||||||
--- ELF/DWARF field offsets are expressed in hex so they map directly to the
|
|
||||||
--- zero-based byte positions in the binary file.
|
|
||||||
|
|
||||||
|
|
||||||
--- spec: System V ABI gABI v1.2 §"ELF Header" (Table 1) + §"Section Header Table"
|
--- spec: System V ABI gABI v1.2 §"ELF Header" (Table 1) + §"Section Header Table"
|
||||||
M.ELF32 = {
|
M.ELF32 = {
|
||||||
@@ -192,8 +183,7 @@ M.DWARF_LINE_OPS = {
|
|||||||
DW_LNE_end_sequence = 1, -- spec: §6.2.5.3
|
DW_LNE_end_sequence = 1, -- spec: §6.2.5.3
|
||||||
DW_LNE_set_address = 2, -- spec: §6.2.5.3
|
DW_LNE_set_address = 2, -- spec: §6.2.5.3
|
||||||
-- Standard opcode header (§6.2.5.1)
|
-- Standard opcode header (§6.2.5.1)
|
||||||
-- opcode_base + line_range are 1-byte header fields; hex so they map
|
-- opcode_base + line_range are 1-byte header fields; hex so they map directly to the line-program header byte sequence.
|
||||||
-- directly to their position in the line-program header byte sequence.
|
|
||||||
-- line_base stays signed decimal (=-5) since 0xFB obscures the spec semantics.
|
-- line_base stays signed decimal (=-5) since 0xFB obscures the spec semantics.
|
||||||
opcode_base = 0x0D,
|
opcode_base = 0x0D,
|
||||||
line_base = -5,
|
line_base = -5,
|
||||||
@@ -204,6 +194,44 @@ M.DWARF_LINE_OPS = {
|
|||||||
set_address_payload_size = 0x05, -- size = sub_opcode(1) + addr(4)
|
set_address_payload_size = 0x05, -- size = sub_opcode(1) + addr(4)
|
||||||
}
|
}
|
||||||
|
|
||||||
|
-- ----------------------------------------------------------------------------
|
||||||
|
-- DWARF5 .debug_line (per DWARF5 spec §6.2.4 — Line Number Program Header)
|
||||||
|
-- ----------------------------------------------------------------------------
|
||||||
|
-- All offsets are zero-based wire offsets from the start of the unit body
|
||||||
|
-- (i.e. AFTER unit_length has been read and unit_length bytes skipped past unit_length's 4 bytes).
|
||||||
|
--
|
||||||
|
-- The DWARF3/4 line-program format differs:
|
||||||
|
-- - It omits `address_size` (DWARF3 §6.2.4) + `segment_selector_size` (DWARF5 §6.2.4).
|
||||||
|
-- - It uses null-terminated string lists for `include_directories` + `file_names`
|
||||||
|
-- (vs. DWARF5's format_count + fields-list shape).
|
||||||
|
-- These are documented inline at each parse site in read_line_unit_file_table below.
|
||||||
|
|
||||||
|
--- spec: DWARF5 spec §6.2.4 (Line Number Program Header — version >= 5)
|
||||||
|
M.DWARF5_DEBUG_LINE = {
|
||||||
|
-- Header fields (zero-based, AFTER unit_length has been read).
|
||||||
|
version_offset_post_il = 0x00, -- 2-byte LE; expected = 5
|
||||||
|
addr_size_offset = 0x02, -- 1 byte; expected = 4
|
||||||
|
seg_size_offset = 0x03, -- 1 byte; expected = 0
|
||||||
|
header_length_offset = 0x04, -- 4-byte LE; length of program-header content that follows
|
||||||
|
program_header_start = 0x08, -- first byte of program-header content (after the 8 fixed bytes)
|
||||||
|
|
||||||
|
-- Per-form byte widths (used when reading directory / file-name entries).
|
||||||
|
form_addr_bytes = 0x04, -- DW_FORM_addr (32-bit) | DW_FORM_data4
|
||||||
|
form_strp_bytes = 0x04, -- DW_FORM_line_strp / DW_FORM_strp / DW_FORM_strp_sup
|
||||||
|
form_data16_bytes = 0x10, -- DW_FORM_data16 (MD5)
|
||||||
|
|
||||||
|
-- DWARF5 form codes (subset used in line-program directory + file tables).
|
||||||
|
form_line_strp = 0x1A, -- DWARF5 §7.5.6 — DW_FORM_line_strp (4-byte offset into .debug_line_str)
|
||||||
|
form_string = 0x08, -- DWARF4-compatible fallback (inline null-terminated; not in .debug_line_str)
|
||||||
|
form_udata = 0x0F, -- DW_FORM_udata (ULEB)
|
||||||
|
form_data16 = 0x18, -- DW_FORM_data16 (16-byte MD5; gcc emits this for split debug info)
|
||||||
|
|
||||||
|
-- DWARF5 content-tag codes (DW_LNCT_* from §6.2.4.1 + §6.2.4.2).
|
||||||
|
lnct_path = 0x01,
|
||||||
|
lnct_directory_index = 0x02,
|
||||||
|
lnct_md5 = 0x05, -- gcc with MD5 in file name table (rare)
|
||||||
|
}
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- I/O helpers: little-endian byte read/write
|
-- I/O helpers: little-endian byte read/write
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
@@ -211,12 +239,10 @@ M.DWARF_LINE_OPS = {
|
|||||||
--- Read a 4-byte little-endian unsigned integer from `buf` at zero-based wire offset `off`.
|
--- Read a 4-byte little-endian unsigned integer from `buf` at zero-based wire offset `off`.
|
||||||
--- Equivalent to `string.unpack("<I4", buf, off + 1)` but avoids the table-return shape + works under LuaJIT 2.1
|
--- Equivalent to `string.unpack("<I4", buf, off + 1)` but avoids the table-return shape + works under LuaJIT 2.1
|
||||||
--- (which has partial `string.unpack` coverage).
|
--- (which has partial `string.unpack` coverage).
|
||||||
---
|
|
||||||
--- **Convention:** `off` is a zero-based wire offset; `+ 1` is applied only at the `string.byte` boundary.
|
--- **Convention:** `off` is a zero-based wire offset; `+ 1` is applied only at the `string.byte` boundary.
|
||||||
---
|
---
|
||||||
--- **Byte weights** are written as `0x100`, `0x10000`, `0x1000000` (i.e. 2^8, 2^16, 2^24) so the LE byte positions are visually explicit:
|
--- **Byte weights** are written as `0x100`, `0x10000`, `0x1000000` (i.e. 2^8, 2^16, 2^24) so the LE byte positions are visually explicit:
|
||||||
--- byte 0 contributes its value directly; byte 1 is shifted left by 8
|
--- byte 0 contributes its value directly; byte 1 is shifted left by 8 (= 0x100); byte 2 by 16 (= 0x10000); byte 3 by 24 (= 0x1000000).
|
||||||
--- (= 0x100); byte 2 by 16 (= 0x10000); byte 3 by 24 (= 0x1000000).
|
|
||||||
--- @param buf string
|
--- @param buf string
|
||||||
--- @param off integer -- zero-based wire offset
|
--- @param off integer -- zero-based wire offset
|
||||||
--- @return integer
|
--- @return integer
|
||||||
@@ -240,12 +266,11 @@ end
|
|||||||
|
|
||||||
-- Pure-Lua 5.3 LEB128 readers (no `bit` library). `2^shift` arithmetic matches the existing parser.
|
-- Pure-Lua 5.3 LEB128 readers (no `bit` library). `2^shift` arithmetic matches the existing parser.
|
||||||
-- Offsets are 0-based; returns (value, next_pos).
|
-- Offsets are 0-based; returns (value, next_pos).
|
||||||
-- Promoted from `local function` to M.* exports so passes/dwarf_injection.lua
|
-- Promoted from `local function` to M.* exports so passes/dwarf_injection.lua can import them as file-scope locals per the 2nd-caller lift precedent
|
||||||
-- can import them as file-scope locals per the 2nd-caller lift precedent
|
|
||||||
-- (the uleb128 + sleb128 encoders were promoted the same way).
|
-- (the uleb128 + sleb128 encoders were promoted the same way).
|
||||||
function M.read_uleb128_at(buf, pos)
|
function M.read_uleb128_at(buf, pos)
|
||||||
local value, shift = 0, 0
|
local value, shift = 0, 0
|
||||||
local len = #buf
|
local len = #buf
|
||||||
while pos < len do
|
while pos < len do
|
||||||
local b = buf:byte(pos + 1)
|
local b = buf:byte(pos + 1)
|
||||||
value = value + (b % 0x80) * (2 ^ shift)
|
value = value + (b % 0x80) * (2 ^ shift)
|
||||||
@@ -389,13 +414,13 @@ local function read_form_value(buf, str_buf, pos, form)
|
|||||||
-- The constant is declared in the abbrev; no value bytes in the DIE.
|
-- The constant is declared in the abbrev; no value bytes in the DIE.
|
||||||
return nil, pos
|
return nil, pos
|
||||||
elseif form == M.DW_FORM.ref_sig8 then
|
elseif form == M.DW_FORM.ref_sig8 then
|
||||||
-- DW_FORM_ref_sig8 (DWARF5 §7.4.2): an 8-byte value identifying a type
|
-- DW_FORM_ref_sig8 (DWARF5 §7.4.2): An 8-byte value identifying a type by signature.
|
||||||
-- by signature. The low 4 bytes (LE) are the type signature (content hash);
|
-- The low 4 bytes (LE) are the type signature (content hash);
|
||||||
-- the high 4 bytes (LE) are a CU-relative offset into the matching type unit.
|
-- The high 4 bytes (LE) are a CU-relative offset into the matching type unit.
|
||||||
-- Consumers use the low 4 to look up the type unit (see M.find_type_unit_by_signature)
|
-- Consumers use the low 4 to look up the type unit (see M.find_type_unit_by_signature)
|
||||||
-- then the high 4 to resolve the specific type within it.
|
-- then the high 4 to resolve the specific type within it.
|
||||||
-- Return the low 4 as the primary value to preserve the (value, next_pos) shape;
|
-- Return the low 4 as the primary value to preserve the (value, next_pos) shape;
|
||||||
-- the high 4 is exposed via M.read_ref_sig8 (which returns both halves).
|
-- the high 4 is exposed via M.read_ref_sig8 (which returns both halves).
|
||||||
local _, _, next_pos = M.read_ref_sig8(buf, pos)
|
local _, _, next_pos = M.read_ref_sig8(buf, pos)
|
||||||
return M.read_u32_le(buf, pos), next_pos
|
return M.read_u32_le(buf, pos), next_pos
|
||||||
else
|
else
|
||||||
@@ -432,11 +457,11 @@ end
|
|||||||
-- @param target_sig_hi integer -- high 4 bytes (LE) of the desired signature
|
-- @param target_sig_hi integer -- high 4 bytes (LE) of the desired signature
|
||||||
-- @return integer|nil, integer|nil -- unit offset, type_offset within the unit
|
-- @return integer|nil, integer|nil -- unit offset, type_offset within the unit
|
||||||
function M.find_type_unit_by_signature(info, target_sig_lo, target_sig_hi)
|
function M.find_type_unit_by_signature(info, target_sig_lo, target_sig_hi)
|
||||||
local pos = 0
|
local pos = 0
|
||||||
local section_len = #info
|
local section_len = #info
|
||||||
while pos + 4 < section_len do
|
while pos + 4 < section_len do
|
||||||
local unit_length = M.read_u32_le(info, pos)
|
local unit_length = M.read_u32_le(info, pos)
|
||||||
if unit_length == 0xFFFFFFFF then
|
if unit_length == 0xFFFFFFFF then
|
||||||
return nil, nil -- DWARF64 not supported
|
return nil, nil -- DWARF64 not supported
|
||||||
end
|
end
|
||||||
-- unit_length is the body size, NOT including the 4-byte unit_length field itself.
|
-- unit_length is the body size, NOT including the 4-byte unit_length field itself.
|
||||||
@@ -465,9 +490,9 @@ function M.find_type_unit_by_signature(info, target_sig_lo, target_sig_hi)
|
|||||||
-- byte 8-15: type_signature (8)
|
-- byte 8-15: type_signature (8)
|
||||||
-- byte 16-19: type_offset (4)
|
-- byte 16-19: type_offset (4)
|
||||||
local unit_type = info:byte(body_start + 2 + 1) -- 0-based +2 = unit_type in 1-indexed
|
local unit_type = info:byte(body_start + 2 + 1) -- 0-based +2 = unit_type in 1-indexed
|
||||||
if unit_type == 0x02 then -- DW_UT_type
|
if unit_type == 0x02 then -- DW_UT_type
|
||||||
local sig_lo, sig_hi, _ = M.read_ref_sig8(info, body_start + 8) -- 0-based +8 = type_signature in 1-indexed
|
local sig_lo, sig_hi, _ = M.read_ref_sig8(info, body_start + 8) -- 0-based +8 = type_signature in 1-indexed
|
||||||
if sig_lo == target_sig_lo and sig_hi == target_sig_hi then
|
if sig_lo == target_sig_lo and sig_hi == target_sig_hi then
|
||||||
local type_offset = M.read_u32_le(info, body_start + 16) -- 0-based +16 = type_offset in 1-indexed
|
local type_offset = M.read_u32_le(info, body_start + 16) -- 0-based +16 = type_offset in 1-indexed
|
||||||
return pos, type_offset
|
return pos, type_offset
|
||||||
end
|
end
|
||||||
@@ -533,14 +558,14 @@ function M.read_elf_sections(elf_path, section_names)
|
|||||||
return result
|
return result
|
||||||
end
|
end
|
||||||
|
|
||||||
local f = io.open(elf_path, "rb")
|
local f = io.open(elf_path, "rb")
|
||||||
if not f then
|
if not f then
|
||||||
io.stderr:write(string.format("[elf_dwarf.read_elf_sections] io.open failed: %s\n", elf_path))
|
io.stderr:write(string.format("[elf_dwarf.read_elf_sections] io.open failed: %s\n", elf_path))
|
||||||
return result
|
return result
|
||||||
end
|
end
|
||||||
|
|
||||||
-- Read the ELF32 header.
|
-- Read the ELF32 header.
|
||||||
local header = f:read(M.ELF32.header_bytes)
|
local header = f:read(M.ELF32.header_bytes)
|
||||||
if not header or #header < M.ELF32.header_bytes then
|
if not header or #header < M.ELF32.header_bytes then
|
||||||
io.stderr:write("[elf_dwarf.read_elf_sections] ELF too small for ELF32 header\n")
|
io.stderr:write("[elf_dwarf.read_elf_sections] ELF too small for ELF32 header\n")
|
||||||
f:close()
|
f:close()
|
||||||
@@ -572,7 +597,7 @@ function M.read_elf_sections(elf_path, section_names)
|
|||||||
|
|
||||||
-- Read the section-header string table (.shstrtab) so we can resolve section names from their `sh_name` offsets.
|
-- Read the section-header string table (.shstrtab) so we can resolve section names from their `sh_name` offsets.
|
||||||
f:seek("set", e_shoff + e_shstrndx * e_shentsize)
|
f:seek("set", e_shoff + e_shstrndx * e_shentsize)
|
||||||
local strtab_hdr = f:read(e_shentsize)
|
local strtab_hdr = f:read(e_shentsize)
|
||||||
if not strtab_hdr or #strtab_hdr < e_shentsize then
|
if not strtab_hdr or #strtab_hdr < e_shentsize then
|
||||||
io.stderr:write("[elf_dwarf.read_elf_sections] could not read .shstrtab header\n")
|
io.stderr:write("[elf_dwarf.read_elf_sections] could not read .shstrtab header\n")
|
||||||
f:close()
|
f:close()
|
||||||
@@ -591,7 +616,7 @@ function M.read_elf_sections(elf_path, section_names)
|
|||||||
|
|
||||||
for sh_idx = 0, e_shnum - 1 do
|
for sh_idx = 0, e_shnum - 1 do
|
||||||
f:seek("set", e_shoff + sh_idx * e_shentsize)
|
f:seek("set", e_shoff + sh_idx * e_shentsize)
|
||||||
local sh = f:read(e_shentsize)
|
local sh = f:read(e_shentsize)
|
||||||
if not sh or #sh < e_shentsize then break end
|
if not sh or #sh < e_shentsize then break end
|
||||||
local sh_name = M.read_u32_le(sh, M.ELF32.sh_name_offset)
|
local sh_name = M.read_u32_le(sh, M.ELF32.sh_name_offset)
|
||||||
local sh_offset = M.read_u32_le(sh, M.ELF32.sh_offset_offset)
|
local sh_offset = M.read_u32_le(sh, M.ELF32.sh_offset_offset)
|
||||||
@@ -641,15 +666,14 @@ function M.read_nm(elf_path)
|
|||||||
local SYM_ST_INFO = 0x0C
|
local SYM_ST_INFO = 0x0C
|
||||||
local n_syms = #symtab / SYM_ENTRY_BYTES
|
local n_syms = #symtab / SYM_ENTRY_BYTES
|
||||||
for i = 0, n_syms - 1 do
|
for i = 0, n_syms - 1 do
|
||||||
local entry_off = i * SYM_ENTRY_BYTES
|
local entry_off = i * SYM_ENTRY_BYTES
|
||||||
local st_info = symtab:byte(entry_off + SYM_ST_INFO + 1)
|
local st_info = symtab:byte(entry_off + SYM_ST_INFO + 1)
|
||||||
-- High nibble = binding (STB_LOCAL=0, STB_GLOBAL=1, STB_WEAK=2).
|
-- High nibble = binding (STB_LOCAL=0, STB_GLOBAL=1, STB_WEAK=2).
|
||||||
-- Use math.floor(/16) instead of bit.rshift for LuaJIT 2.1 compat
|
-- Use math.floor(/16) instead of bit.rshift for LuaJIT 2.1 compat (LuaJIT's `>>` is 5.3+, but math.floor(x/16) works on all versions).
|
||||||
-- (LuaJIT's `>>` is 5.3+, but math.floor(x/16) works on all versions).
|
local binding = math.floor(st_info / 16)
|
||||||
local binding = math.floor(st_info / 16)
|
if binding == 0 or binding == 1 then -- STB_LOCAL or STB_GLOBAL
|
||||||
if binding == 0 or binding == 1 then -- STB_LOCAL or STB_GLOBAL
|
local st_size = M.read_u32_le(symtab, entry_off + SYM_ST_SIZE)
|
||||||
local st_size = M.read_u32_le(symtab, entry_off + SYM_ST_SIZE)
|
if st_size > 0 then
|
||||||
if st_size > 0 then
|
|
||||||
local st_name_off = M.read_u32_le(symtab, entry_off + SYM_ST_NAME)
|
local st_name_off = M.read_u32_le(symtab, entry_off + SYM_ST_NAME)
|
||||||
-- Extract the name from .strtab (null-terminated C string).
|
-- Extract the name from .strtab (null-terminated C string).
|
||||||
local name_end = strtab:find("\0", st_name_off + 1, true) or (st_name_off + 1)
|
local name_end = strtab:find("\0", st_name_off + 1, true) or (st_name_off + 1)
|
||||||
@@ -741,8 +765,8 @@ function M.sleb128(n)
|
|||||||
local b = n % (LEB_DATA_MASK + 1) -- extract low 7 bits
|
local b = n % (LEB_DATA_MASK + 1) -- extract low 7 bits
|
||||||
n = (n - b) / (LEB_DATA_MASK + 1) -- arithmetic shift right by 7
|
n = (n - b) / (LEB_DATA_MASK + 1) -- arithmetic shift right by 7
|
||||||
-- Termination: remaining value bits fit in the sign bit of the last byte.
|
-- Termination: remaining value bits fit in the sign bit of the last byte.
|
||||||
if n == 0 and b < SLEB_SIGN_BIT then more = false end -- positive terminator
|
if n == 0 and b < SLEB_SIGN_BIT then more = false end -- positive terminator
|
||||||
if n == -1 and b >= SLEB_SIGN_BIT then more = false end -- negative terminator
|
if n == -1 and b >= SLEB_SIGN_BIT then more = false end -- negative terminator
|
||||||
if more then b = b + LEB_CONT_BIT end
|
if more then b = b + LEB_CONT_BIT end
|
||||||
bytes[#bytes + 1] = string.char(b)
|
bytes[#bytes + 1] = string.char(b)
|
||||||
end
|
end
|
||||||
@@ -773,20 +797,241 @@ end
|
|||||||
--- @param n integer -- any integer (negative allowed)
|
--- @param n integer -- any integer (negative allowed)
|
||||||
--- @return integer
|
--- @return integer
|
||||||
function M.sleb128_size(n)
|
function M.sleb128_size(n)
|
||||||
local more = true
|
local more = true
|
||||||
local bytes = 0
|
local bytes = 0
|
||||||
local v = n
|
local v = n
|
||||||
while more do
|
while more do
|
||||||
local b = v % (LEB_DATA_MASK + 1) -- extract low 7 bits
|
local b = v % (LEB_DATA_MASK + 1) -- extract low 7 bits
|
||||||
v = (v - b) / (LEB_DATA_MASK + 1) -- arithmetic shift right by 7
|
v = (v - b) / (LEB_DATA_MASK + 1) -- arithmetic shift right by 7
|
||||||
if v == 0 and b < SLEB_SIGN_BIT then more = false end -- positive terminator
|
if v == 0 and b < SLEB_SIGN_BIT then more = false end -- positive terminator
|
||||||
if v == -1 and b >= SLEB_SIGN_BIT then more = false end -- negative terminator
|
if v == -1 and b >= SLEB_SIGN_BIT then more = false end -- negative terminator
|
||||||
if more then b = b + LEB_CONT_BIT end
|
if more then b = b + LEB_CONT_BIT end
|
||||||
bytes = bytes + 1
|
bytes = bytes + 1
|
||||||
end
|
end
|
||||||
return bytes
|
return bytes
|
||||||
end
|
end
|
||||||
|
|
||||||
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
-- DWARF5 line-program file-table reader
|
||||||
|
-- ════════════════════════════════════════════
|
||||||
|
|
||||||
|
--- Read every line-program unit in `.debug_line` and produce one entry per file across all units.
|
||||||
|
--- Returns three parallel maps keyed by 1-based file index.
|
||||||
|
---
|
||||||
|
--- Wire format notes:
|
||||||
|
--- * The `.debug_line` section may contain MULTIPLE line-program units
|
||||||
|
--- File indices are 1-based, **per unit**; we concatenate all units and the index ranges from 1..N₁ in unit 1, N₁+1..N₁+N₂ in unit 2, etc.
|
||||||
|
--- Per-unit indices (the way gcc emits them, and the way `DW_LNS_set_file` references them in the line program)
|
||||||
|
--- are returned via the `basename_to_index` map only when the unit boundary happens to align with the metaprogram's per-atom
|
||||||
|
--- `inv.call_file` (true today for hello_joypad — the C unit is the LAST unit, and atom-side file indices fit 1-based).
|
||||||
|
--- * Per spec, the `.debug_line_str` section (DWARF5 §7.5.6) holds the strings referenced by `DW_FORM_line_strp`.
|
||||||
|
--- The legacy DWARF3 format embeds strings directly with null terminators. This helper handles BOTH.
|
||||||
|
--- * File entries may have multiple forms (gcc -gdwarf-5 with `DW_LNCT_directory_index`
|
||||||
|
--- emits 2 forms: path + dir_index). The helper supports:
|
||||||
|
--- - DW_FORM_line_strp (DWARF5; offset into .debug_line_str)
|
||||||
|
--- - DW_FORM_string (DWARF4-compat; inline null-terminated in .debug_line)
|
||||||
|
--- - DW_FORM_udata (ULEB128)
|
||||||
|
--- - DW_FORM_data16 (16-byte MD5; ignored — skip the form's bytes)
|
||||||
|
--- * Symlink-canonicalisation: each path's `paths[i]` is stored verbatim from the wire
|
||||||
|
--- (mixed `/` and `\` accepted; the basename is taken via the last path separator). Caller normalises as needed.
|
||||||
|
---
|
||||||
|
--- Behavior on failure: writes to stderr and returns nil.
|
||||||
|
--- Helpers consumed by `passes/dwarf_injection.lua::init_file_index_lookup(elf_path)` calls this once at pass start to populate the module-level `basename_to_index` map;
|
||||||
|
--- downstream `resolve_provenance_file_index(path)` consumers
|
||||||
|
--- (which replaced the former hardcoded `ATOM_SOURCE_FILE_INDEX` + `PROVENANCE_BASENAME_TO_FILE_INDEX` table per `conductor/tracks/dwarf_file_index_lookup_20260731/`)
|
||||||
|
--- consult the map directly.
|
||||||
|
---
|
||||||
|
--- @param elf_path string -- absolute path to the post-link ELF (typically the gcc-emitted `.elf` BEFORE dwarf_injector's splice; both shapes work since the splice preserves `.debug_line`)
|
||||||
|
--- @return table|nil, table|nil, table|nil
|
||||||
|
--- basename_to_index: { [basename] = 1-based-per-unit-file-index, ... }
|
||||||
|
--- basenames: { [1-based-per-unit-file-index] = basename, ... }
|
||||||
|
--- paths: { [1-based-per-unit-file-index] = full path (mixed slashes), ... }
|
||||||
|
function M.read_line_unit_file_table(elf_path)
|
||||||
|
local sections = M.read_elf_sections(elf_path, { ".debug_line", ".debug_line_str" })
|
||||||
|
local line = sections[".debug_line"]
|
||||||
|
local lstr = sections[".debug_line_str"] or ""
|
||||||
|
if not line or line == "" then
|
||||||
|
io.stderr:write("[elf_dwarf.read_line_unit_file_table] no .debug_line section in: " .. tostring(elf_path) .. "\n")
|
||||||
|
return nil
|
||||||
|
end
|
||||||
|
|
||||||
|
local basenames = {}
|
||||||
|
local basename_to_index = {}
|
||||||
|
local paths = {}
|
||||||
|
|
||||||
|
--- Read one form-code's bytes from `buf` at position `p` according to `form`.
|
||||||
|
--- Returns (value, after) where `value` is:
|
||||||
|
--- * the resolved string (DW_FORM_line_strp / DW_FORM_string)
|
||||||
|
--- * the ULEB128 number (DW_FORM_udata)
|
||||||
|
--- * nil + skip-bytes (DW_FORM_data16; we don't surface the MD5)
|
||||||
|
local function read_form(buf, lstr_buf, p, form)
|
||||||
|
if form == M.DWARF5_DEBUG_LINE.form_line_strp then
|
||||||
|
local strp = M.read_u32_le(buf, p)
|
||||||
|
local end_pos = lstr_buf:find("\0", strp + 1, true) or (#lstr_buf + 1)
|
||||||
|
return lstr_buf:sub(strp + 1, end_pos - 1), p + M.DWARF5_DEBUG_LINE.form_strp_bytes
|
||||||
|
elseif form == M.DWARF5_DEBUG_LINE.form_string then
|
||||||
|
local nul = buf:find("\0", p + 1, true) or (#buf + 1)
|
||||||
|
return buf:sub(p + 1, nul - 1), nul
|
||||||
|
elseif form == M.DWARF5_DEBUG_LINE.form_udata then
|
||||||
|
local v, after = M.read_uleb128_at(buf, p)
|
||||||
|
return v, after
|
||||||
|
elseif form == M.DWARF5_DEBUG_LINE.form_data16 then
|
||||||
|
return nil, p + M.DWARF5_DEBUG_LINE.form_data16_bytes
|
||||||
|
else
|
||||||
|
-- Unsupported form in a directory/file-table entry: best-effort skip.
|
||||||
|
-- We do NOT stderr-write because the crt0.s DWARF5 line unit (gcc-as emitted) uses DW_FORM_addr (0x01) for what is effectively a path entry, which is non-standard.
|
||||||
|
-- The C-unit's DWARF3 paths are read via the parallel DWARF3 path and never see this error.
|
||||||
|
-- Callers should consult `basename_to_index` for the paths they care about and ignore this unit if it produced none.
|
||||||
|
return nil, p
|
||||||
|
end
|
||||||
|
end
|
||||||
|
|
||||||
|
--- Parse one DWARF-version-3-style unit (DWARF3/4 line program; gcc default in the PS1 toolchain still emits DWARF3 for line programs in `-g` mode).
|
||||||
|
--- Layout: null-terminated directory list, then path(null) + dir_idx(ULEB) + time(ULEB) + size(ULEB) file entries terminated by an empty null.
|
||||||
|
--- `content_start` = zero-based wire offset of the first byte of program-header content (after version + header_length fields).
|
||||||
|
--- @return unit_basenames { [idx_in_unit_1_based] = basename }
|
||||||
|
--- @return unit_paths { [idx_in_unit_1_based] = full path }
|
||||||
|
local function parse_dwarf3_unit(buf, content_start, body_end)
|
||||||
|
local up = content_start
|
||||||
|
-- 5 fixed bytes: min_insn, default_is, line_base (signed), line_range, opcode_base
|
||||||
|
up = up + 5
|
||||||
|
local opcode_base = buf:byte(content_start + 5)
|
||||||
|
up = up + (opcode_base - 1) -- std_opcode_lengths
|
||||||
|
local dirs = {}
|
||||||
|
while up < body_end do
|
||||||
|
local nul = buf:find("\0", up + 1, true) or (body_end + 1)
|
||||||
|
if nul > body_end then break end
|
||||||
|
local len = nul - up - 1
|
||||||
|
if len == 0 then up = nul break end
|
||||||
|
dirs[#dirs + 1] = buf:sub(up + 1, nul - 1)
|
||||||
|
up = nul
|
||||||
|
end
|
||||||
|
local unit_basenames = {}
|
||||||
|
local unit_paths = {}
|
||||||
|
while up < body_end do
|
||||||
|
local nul = buf:find("\0", up + 1, true) or (body_end + 1)
|
||||||
|
if nul > body_end or nul == up + 1 then up = nul break end
|
||||||
|
local path = buf:sub(up + 1, nul - 1)
|
||||||
|
up = nul
|
||||||
|
local didx, up_next = M.read_uleb128_at(buf, up); up = up_next
|
||||||
|
local _time, up_next2 = M.read_uleb128_at(buf, up); up = up_next2
|
||||||
|
local _size, up_next3 = M.read_uleb128_at(buf, up); up = up_next3
|
||||||
|
local idx = #unit_basenames + 1
|
||||||
|
local bs = path:match("[^/\\]+$") or path
|
||||||
|
unit_paths[idx] = path
|
||||||
|
unit_basenames[idx] = bs
|
||||||
|
dirs[1] = dirs[1] or "" -- safety: gcc emits "" sentinel dir at 0
|
||||||
|
if didx > 0 and dirs[didx] then
|
||||||
|
unit_paths[idx] = dirs[didx] .. "/" .. path
|
||||||
|
end
|
||||||
|
end
|
||||||
|
return unit_basenames, unit_paths
|
||||||
|
end
|
||||||
|
|
||||||
|
--- Parse one DWARF-version-5-style unit (DWARF5 line program; used by modern gcc with `-gdwarf-5`).
|
||||||
|
--- `content_start` is the first byte of program-header content (after the 8 fixed bytes version+addr_size+seg_size+header_length).
|
||||||
|
--- @return same shape as parse_dwarf3_unit
|
||||||
|
local function parse_dwarf5_unit(buf, lstr_buf, content_start, body_end)
|
||||||
|
local up = content_start
|
||||||
|
-- 6 fixed bytes: min_insn, max_ops_per_insn, default_is, line_base, line_range, opcode_base
|
||||||
|
up = up + 6
|
||||||
|
local opcode_base = buf:byte(content_start + 6)
|
||||||
|
up = up + (opcode_base - 1) -- std_opcode_lengths
|
||||||
|
-- directories
|
||||||
|
local dir_format_count, after = M.read_uleb128_at(buf, up); up = after
|
||||||
|
local dir_formats = {}
|
||||||
|
for i = 1, dir_format_count do
|
||||||
|
local f, a2 = M.read_uleb128_at(buf, up); up = a2
|
||||||
|
dir_formats[i] = f
|
||||||
|
end
|
||||||
|
local dir_count, a3 = M.read_uleb128_at(buf, up); up = a3
|
||||||
|
local dirs = {}
|
||||||
|
for i = 1, dir_count do
|
||||||
|
local combined = ""
|
||||||
|
for j = 1, dir_format_count do
|
||||||
|
local v, a4 = read_form(buf, lstr_buf, up, dir_formats[j])
|
||||||
|
up = a4
|
||||||
|
if j == 1 and type(v) == "string" then combined = v end
|
||||||
|
end
|
||||||
|
dirs[i] = combined
|
||||||
|
end
|
||||||
|
-- file names
|
||||||
|
local file_format_count, after2 = M.read_uleb128_at(buf, up); up = after2
|
||||||
|
local file_formats = {}
|
||||||
|
for i = 1, file_format_count do
|
||||||
|
local f, a2 = M.read_uleb128_at(buf, up); up = a2
|
||||||
|
file_formats[i] = f
|
||||||
|
end
|
||||||
|
local file_count, a3 = M.read_uleb128_at(buf, up); up = a3
|
||||||
|
local unit_basenames = {}
|
||||||
|
local unit_paths = {}
|
||||||
|
for i = 1, file_count do
|
||||||
|
local combined = ""
|
||||||
|
local didx = 0
|
||||||
|
for j = 1, file_format_count do
|
||||||
|
local v, a4 = read_form(buf, lstr_buf, up, file_formats[j])
|
||||||
|
up = a4
|
||||||
|
if j == 1 and type(v) == "string" then combined = v end
|
||||||
|
if j == 2 and type(v) == "number" then didx = v end
|
||||||
|
end
|
||||||
|
local idx = #unit_basenames + 1
|
||||||
|
local bs = combined:match("[^/\\]+$") or combined
|
||||||
|
unit_paths[idx] = combined
|
||||||
|
unit_basenames[idx] = bs
|
||||||
|
if didx > 0 and dirs[didx] then
|
||||||
|
unit_paths[idx] = dirs[didx] .. "/" .. combined
|
||||||
|
end
|
||||||
|
end
|
||||||
|
return unit_basenames, unit_paths
|
||||||
|
end
|
||||||
|
|
||||||
|
--- Walk every line-program unit in the section.
|
||||||
|
local p = 0
|
||||||
|
local section_end = #line
|
||||||
|
while p + 4 <= section_end do
|
||||||
|
local unit_length = M.read_u32_le(line, p)
|
||||||
|
if unit_length == 0xFFFFFFFF then
|
||||||
|
io.stderr:write("[elf_dwarf.read_line_unit_file_table] 64-bit DWARF (initial-length 0xFFFFFFFF); not supported\n")
|
||||||
|
return nil
|
||||||
|
end
|
||||||
|
local body_start = p + 4
|
||||||
|
local body_end = p + 4 + unit_length
|
||||||
|
if body_end > section_end then break end
|
||||||
|
local version = M.read_u16_le(line, body_start)
|
||||||
|
local unit_basenames, unit_paths
|
||||||
|
if version >= 5 then
|
||||||
|
-- DWARF5 header: version(2) + addr_size(1) + seg_size(1) + header_length(4) + content
|
||||||
|
local header_length_offset = body_start + 6 -- past version(2) + addr_size(1) + seg_size(1) - wait that's wrong; past hdr len is at +6
|
||||||
|
local content_start = body_start + 8 -- past version(2) + addr_size(1) + seg_size(1) + header_length(4)
|
||||||
|
unit_basenames, unit_paths = parse_dwarf5_unit(line, lstr, content_start, body_end)
|
||||||
|
elseif version >= 2 then
|
||||||
|
-- DWARF2/3/4 header: version(2) + header_length(4) + content
|
||||||
|
local content_start = body_start + 6 -- past version(2) + header_length(4)
|
||||||
|
unit_basenames, unit_paths = parse_dwarf3_unit(line, content_start, body_end)
|
||||||
|
else
|
||||||
|
io.stderr:write(string.format("[elf_dwarf.read_line_unit_file_table] unsupported DWARF version %d (offset 0x%x)\n", version, p))
|
||||||
|
p = body_end
|
||||||
|
goto continue
|
||||||
|
end
|
||||||
|
-- Per-unit 1-based file indices are aligned with `inv.call_file` values because the metaprogram emits `DW_LNS_set_file` with the per-unit index.
|
||||||
|
-- When multiple units are present (crt0.s + C unit), the per-unit index in each unit matches the metaprogram's intent (gcc always sets file in unit-local terms).
|
||||||
|
-- We therefore store directly without global re-indexing; the caller is responsible for knowing which unit the file-index applies to.
|
||||||
|
-- For DWARF3 (C unit is the unit that matters for atom line tables), this matches.
|
||||||
|
-- For DWARF5 (crt0.s + C unit), each carries its own per-unit file-table map;
|
||||||
|
-- the atom-side DW_LNS_set_file(N) refers to the C unit's indices, NOT crt0.s's.
|
||||||
|
-- Since the C unit is the one with full include_directories + 12 entries, we can use it directly.
|
||||||
|
for idx, bs in pairs(unit_basenames) do
|
||||||
|
basenames[idx] = bs
|
||||||
|
paths[idx] = unit_paths[idx]
|
||||||
|
basename_to_index[bs] = idx
|
||||||
|
end
|
||||||
|
p = body_end
|
||||||
|
::continue::
|
||||||
|
end
|
||||||
|
|
||||||
|
return basename_to_index, basenames, paths
|
||||||
|
end
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- I/O helpers: atoms source-map + native directory glob
|
-- I/O helpers: atoms source-map + native directory glob
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|||||||
@@ -3,16 +3,16 @@
|
|||||||
# Wrapper for the tape-atom step-debug helpers.
|
# Wrapper for the tape-atom step-debug helpers.
|
||||||
# The 9 user commands are defined here as STUBS (degraded-state messages).
|
# The 9 user commands are defined here as STUBS (degraded-state messages).
|
||||||
# The real implementations + the per-atom data tables are emitted by `passes/atoms_source_map.lua`
|
# The real implementations + the per-atom data tables are emitted by `passes/atoms_source_map.lua`
|
||||||
# (post-link invocation: `ps1_meta.lua --atoms-source-map --gdb-runtime --elf <elf>`) into `build/gen/gdb_tape_atoms_runtime.gdb`.
|
# (post-link invocation: `ps1_meta.lua --atoms-source-map --gdb-runtime --elf <elf>`) into `build/gdb_tape_atoms_runtime.gdb`.
|
||||||
# Sourcing that file RE-DEFINES the commands with real implementations.
|
# Sourcing that file RE-DEFINES the commands with real implementations.
|
||||||
#
|
#
|
||||||
# If `build/gen/gdb_tape_atoms_runtime.gdb` is missing or stale, the stubs remain (E1: no source map).
|
# If `build/gdb_tape_atoms_runtime.gdb` is missing or stale, the stubs remain (E1: no source map).
|
||||||
# The user just needs to re-run `build_psyq.ps1` to regenerate.
|
# The user just needs to re-run `build_psyq.ps1` to regenerate.
|
||||||
|
|
||||||
# ── Stub commands (defined here so they're always present, even if the runtime file is missing). The runtime file overrides these if sourced. ──
|
# ?? Stub commands (defined here so they're always present, even if the runtime file is missing). The runtime file overrides these if sourced. ??
|
||||||
|
|
||||||
define tape_atoms
|
define tape_atoms
|
||||||
echo "[gdb_tape_atoms] STUB: runtime file build/gen/gdb_tape_atoms_runtime.gdb not found."
|
echo "[gdb_tape_atoms] STUB: runtime file build/gdb_tape_atoms_runtime.gdb not found."
|
||||||
echo "[gdb_tape_atoms] STUB: run .\\build_psyq.ps1 to regenerate, then re-source this file."
|
echo "[gdb_tape_atoms] STUB: run .\\build_psyq.ps1 to regenerate, then re-source this file."
|
||||||
end
|
end
|
||||||
document tape_atoms
|
document tape_atoms
|
||||||
@@ -21,35 +21,35 @@ document tape_atoms
|
|||||||
end
|
end
|
||||||
|
|
||||||
define break_atom
|
define break_atom
|
||||||
echo "[gdb_tape_atoms] STUB: build/gen/gdb_tape_atoms_runtime.gdb not sourced. Run build_psyq.ps1."
|
echo "[gdb_tape_atoms] STUB: build/gdb_tape_atoms_runtime.gdb not sourced. Run build_psyq.ps1."
|
||||||
end
|
end
|
||||||
document break_atom
|
document break_atom
|
||||||
Set a breakpoint at the start of tape atom <name>. STUB state.
|
Set a breakpoint at the start of tape atom <name>. STUB state.
|
||||||
end
|
end
|
||||||
|
|
||||||
define step_atom
|
define step_atom
|
||||||
echo "[gdb_tape_atoms] STUB: build/gen/gdb_tape_atoms_runtime.gdb not sourced. Run build_psyq.ps1."
|
echo "[gdb_tape_atoms] STUB: build/gdb_tape_atoms_runtime.gdb not sourced. Run build_psyq.ps1."
|
||||||
end
|
end
|
||||||
document step_atom
|
document step_atom
|
||||||
Resume execution until the next atom boundary. STUB state.
|
Resume execution until the next atom boundary. STUB state.
|
||||||
end
|
end
|
||||||
|
|
||||||
define next_atom
|
define next_atom
|
||||||
echo "[gdb_tape_atoms] STUB: build/gen/gdb_tape_atoms_runtime.gdb not sourced. Run build_psyq.ps1."
|
echo "[gdb_tape_atoms] STUB: build/gdb_tape_atoms_runtime.gdb not sourced. Run build_psyq.ps1."
|
||||||
end
|
end
|
||||||
document next_atom
|
document next_atom
|
||||||
Alias for step_atom. STUB state.
|
Alias for step_atom. STUB state.
|
||||||
end
|
end
|
||||||
|
|
||||||
define where_in_atom
|
define where_in_atom
|
||||||
echo "[gdb_tape_atoms] STUB: build/gen/gdb_tape_atoms_runtime.gdb not sourced. Run build_psyq.ps1."
|
echo "[gdb_tape_atoms] STUB: build/gdb_tape_atoms_runtime.gdb not sourced. Run build_psyq.ps1."
|
||||||
end
|
end
|
||||||
document where_in_atom
|
document where_in_atom
|
||||||
Report current atom name, .rodata addr, word offset, and source line (if known). STUB state.
|
Report current atom name, .rodata addr, word offset, and source line (if known). STUB state.
|
||||||
end
|
end
|
||||||
|
|
||||||
define stepi_inside_atom
|
define stepi_inside_atom
|
||||||
echo "[gdb_tape_atoms] STUB: build/gen/gdb_tape_atoms_runtime.gdb not sourced. Run build_psyq.ps1."
|
echo "[gdb_tape_atoms] STUB: build/gdb_tape_atoms_runtime.gdb not sourced. Run build_psyq.ps1."
|
||||||
end
|
end
|
||||||
document stepi_inside_atom
|
document stepi_inside_atom
|
||||||
One MIPS-instruction step, then where_in_atom. STUB state.
|
One MIPS-instruction step, then where_in_atom. STUB state.
|
||||||
@@ -89,17 +89,17 @@ document wave_ctx
|
|||||||
end
|
end
|
||||||
|
|
||||||
|
|
||||||
# ── Source the runtime file (re-defines commands with real impls + data). ──
|
# ?? Source the runtime file (re-defines commands with real impls + data). ??
|
||||||
|
|
||||||
# Try to source from project-root-relative path first (the typical case).
|
# Try to source from project-root-relative path first (the typical case).
|
||||||
# If the user is in a different CWD, the source will fail and stubs remain.
|
# If the user is in a different CWD, the source will fail and stubs remain.
|
||||||
# The runtime file path is computed relative to the ELF's source map convention (build/gen/gdb_tape_atoms_runtime.gdb).
|
# The runtime file path is computed relative to the ELF's source map convention (build/gdb_tape_atoms_runtime.gdb).
|
||||||
echo [gdb_tape_atoms] Wrapper loaded. Sourcing runtime file...
|
echo [gdb_tape_atoms] Wrapper loaded. Sourcing runtime file...
|
||||||
# Suppress the "Redefine command" prompts that would otherwise appear when the runtime file overrides the 9 stub commands defined above.
|
# Suppress the "Redefine command" prompts that would otherwise appear when the runtime file overrides the 9 stub commands defined above.
|
||||||
# The runtime's `define` blocks are intended to overwrite — there's no ambiguity to confirm.
|
# The runtime's `define` blocks are intended to overwrite ? there's no ambiguity to confirm.
|
||||||
set confirm off
|
set confirm off
|
||||||
|
|
||||||
# Source the runtime file (re-defines commands with real impls + data).
|
# Source the runtime file (re-defines commands with real impls + data).
|
||||||
source build/gen/gdb_tape_atoms_runtime.gdb
|
source build/gdb_tape_atoms_runtime.gdb
|
||||||
set confirm on
|
set confirm on
|
||||||
echo [gdb_tape_atoms] Runtime sourced successfully (9 commands now have real implementations).
|
echo [gdb_tape_atoms] Runtime sourced successfully (9 commands now have real implementations).
|
||||||
|
|||||||
@@ -7,18 +7,11 @@
|
|||||||
---
|
---
|
||||||
--- Ownership: the canonical `ctx.shared.corpus` supplies cross-source registries, while each `src.scan` supplies its source's declarations and bodies.
|
--- Ownership: the canonical `ctx.shared.corpus` supplies cross-source registries, while each `src.scan` supplies its source's declarations and bodies.
|
||||||
--- A context without `ctx.shared.corpus` is rejected with an explicit canonical-corpus message.
|
--- A context without `ctx.shared.corpus` is rejected with an explicit canonical-corpus message.
|
||||||
---
|
|
||||||
--- Writes `<ctx.out_root>/<dir_basename>.errors.h` once per module, with `#error` directives for findings that the C compile surfaces.
|
|
||||||
--- `passes/report.lua` renders annotations.txt from `corpus.sources_by_dir`, re-validating each source through `M.validate()`.
|
|
||||||
---
|
|
||||||
--- **Conventions**: tabs (1/level), EmmyLua annotations, no regex, Lua 5.3 compatible.
|
|
||||||
|
|
||||||
-- Bootstrap follows the entry scripts; `scripts/duffle_paths.lua` sets package.path and package.cpath. See `ps1_meta.lua` for the rationale.
|
-- Bootstrap follows the entry scripts; `scripts/duffle_paths.lua` sets package.path and package.cpath. See `ps1_meta.lua` for the rationale.
|
||||||
-- `debug.getinfo(1, "S").source` locates this file for standalone and orchestrated runs, then `duffle_paths.lua` returns the loaded `duffle` module.
|
-- `debug.getinfo(1, "S").source` locates this file for standalone and orchestrated runs, then `duffle_paths.lua` returns the loaded `duffle` module.
|
||||||
local _bootstrap_dir = debug.getinfo(1, "S").source:match("^@?(.*[/\\])") or "./"
|
local _bootstrap_dir = debug.getinfo(1, "S").source:match("^@?(.*[/\\])") or "./"
|
||||||
local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
||||||
local write_file = duffle.write_file
|
|
||||||
local ensure_dir = duffle.ensure_dir
|
|
||||||
|
|
||||||
-- The annotation pass reads the source-derived registries from scan_source:
|
-- The annotation pass reads the source-derived registries from scan_source:
|
||||||
-- * pipe_ctx.register_alias_registry — for atom_dbg_reg_default(R_X, ...) and atom_reg_types(R_X, ...) member-identity checks
|
-- * pipe_ctx.register_alias_registry — for atom_dbg_reg_default(R_X, ...) and atom_reg_types(R_X, ...) member-identity checks
|
||||||
@@ -29,11 +22,11 @@ local ensure_dir = duffle.ensure_dir
|
|||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
--- @class SourceFile
|
--- @class SourceFile
|
||||||
--- @field path string -- absolute path to the source file
|
--- @field path string -- Absolute path to the source file
|
||||||
--- @field text string -- the full source text
|
--- @field text string -- Full source text
|
||||||
--- @field dir string -- the directory containing the source
|
--- @field dir string -- Directory containing the source
|
||||||
--- @field basename string -- filename without extension
|
--- @field basename string -- Filename without extension
|
||||||
--- @field scan table -- pre-scanned SourceScan payload (from duffle.scan_source)
|
--- @field scan table -- Pre-scanned SourceScan payload (from duffle.scan_source)
|
||||||
|
|
||||||
--- @class PassCtx
|
--- @class PassCtx
|
||||||
--- @field sources SourceFile[]
|
--- @field sources SourceFile[]
|
||||||
@@ -52,28 +45,28 @@ local ensure_dir = duffle.ensure_dir
|
|||||||
--- @field warnings table[]
|
--- @field warnings table[]
|
||||||
|
|
||||||
--- @class AtomAnnotation
|
--- @class AtomAnnotation
|
||||||
--- @field line integer -- source line of the atom_info call
|
--- @field line integer -- Source line of the atom_info call
|
||||||
--- @field macro string -- the macro name (always "atom_info" in the new shape)
|
--- @field macro string -- Macro name (always "atom_info" in the new shape)
|
||||||
--- @field name string -- the atom name
|
--- @field name string -- Atom name
|
||||||
--- @field kind string -- always "info"
|
--- @field kind string -- Always "info"
|
||||||
--- @field binds string|nil -- Binds_X name if any
|
--- @field binds string|nil -- Binds_X name if any
|
||||||
--- @field reads string[] -- R_* names (read targets)
|
--- @field reads string[] -- R_* names (read targets)
|
||||||
--- @field writes string[] -- R_* names (write targets)
|
--- @field writes string[] -- R_* names (write targets)
|
||||||
--- @field errors string[]|nil -- parse-time errors from scan_source (atom_info body malformed)
|
--- @field errors string[]|nil -- Parse-time errors from scan_source (atom_info body malformed)
|
||||||
|
|
||||||
--- @class DebugSkipMarker -- sub-shape of scan_source.lua's @class DebugSkipMarker
|
--- @class DebugSkipMarker -- Sub-shape of scan_source.lua's @class DebugSkipMarker
|
||||||
--- @field marker_kind string -- exact marker ident read from source. Only "atom_dbg_skip" (bare) is positive.
|
--- @field marker_kind string -- Exact marker ident read from source. Only "atom_dbg_skip" (bare) is positive.
|
||||||
--- @field marker_line integer
|
--- @field marker_line integer
|
||||||
--- @field args string|nil -- trimmed text inside the parens (nil when has_parens is false)
|
--- @field args string|nil -- Trimmed text inside the parens (nil when has_parens is false)
|
||||||
--- @field has_parens boolean
|
--- @field has_parens boolean
|
||||||
--- @field is_bare boolean -- true iff marker_kind == "atom_dbg_skip" AND has_parens == false (the only positive form)
|
--- @field is_bare boolean -- true iff marker_kind == "atom_dbg_skip" AND has_parens == false (the only positive form)
|
||||||
--- @field pending boolean -- true while awaiting the following declaration
|
--- @field pending boolean -- true while awaiting the following declaration
|
||||||
--- @field superseded_by_marker_line integer|nil -- set on a marker that was bumped out of the pending slot
|
--- @field superseded_by_marker_line integer|nil -- Set on a marker that was bumped out of the pending slot
|
||||||
--- @field target_kind string|nil -- "atom" | "comp_bare" | "comp_proc" | "unrelated" once observed
|
--- @field target_kind string|nil -- "atom" | "comp_bare" | "comp_proc" | "unrelated" once observed
|
||||||
|
|
||||||
--- @class Finding
|
--- @class Finding
|
||||||
--- @field line integer -- source line (or 0 for pass-level)
|
--- @field line integer -- Source line (or 0 for pass-level)
|
||||||
--- @field msg string -- finding message
|
--- @field msg string -- Finding message
|
||||||
|
|
||||||
--- @class Findings
|
--- @class Findings
|
||||||
--- @field errors Finding[]
|
--- @field errors Finding[]
|
||||||
@@ -81,14 +74,14 @@ local ensure_dir = duffle.ensure_dir
|
|||||||
--- @field info Finding[]
|
--- @field info Finding[]
|
||||||
|
|
||||||
--- @class PipeCtx
|
--- @class PipeCtx
|
||||||
--- @field atom_index table<string, AtomAnnotation> -- name -> AtomAnnotation (only kind=="atom")
|
--- @field atom_index table<string, AtomAnnotation> -- Name -> AtomAnnotation (only kind=="atom")
|
||||||
--- @field binds_index table<string, BindsStruct> -- name -> BindsStruct
|
--- @field binds_index table<string, BindsStruct> -- Name -> BindsStruct
|
||||||
--- @field annot_counts table<string, integer> -- name -> annotation count (for unique_annotation check)
|
--- @field annot_counts table<string, integer> -- Name -> annotation count (for unique_annotation check)
|
||||||
--- @field types table<string, RegTypeDefault> -- from scan_source
|
--- @field types table<string, RegTypeDefault> -- From scan_source
|
||||||
--- @field atom_views table<string, AtomViewEntry> -- from scan_source
|
--- @field atom_views table<string, AtomViewEntry> -- From scan_source
|
||||||
--- @field seen_defaults table<string, integer> -- duplicate atom_dbg_reg_default detection
|
--- @field seen_defaults table<string, integer> -- Duplicate atom_dbg_reg_default detection
|
||||||
--- @field seen_field table<string, integer> -- Binds_* -> count of fields (set/checked by check_binds_no_duplicate_fields)
|
--- @field seen_field table<string, integer> -- Binds_* -> count of fields (set/checked by check_binds_no_duplicate_fields)
|
||||||
--- @field _scan SourceScan -- full scan payload (typed-view sub-calls live here)
|
--- @field _scan SourceScan -- Full scan payload (typed-view sub-calls live here)
|
||||||
|
|
||||||
--- @class AnnotatedResult
|
--- @class AnnotatedResult
|
||||||
--- @field atoms AtomEntry[]
|
--- @field atoms AtomEntry[]
|
||||||
@@ -102,11 +95,10 @@ local ensure_dir = duffle.ensure_dir
|
|||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Per-check functions (the CHECK_RULES table's payload)
|
-- Per-check functions (the CHECK_RULES table's payload)
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
--
|
|
||||||
--- The dispatcher in `validate()` routes each result by convention: existence checks write errors[] and shape checks write warnings[].
|
--- The dispatcher in `validate()` routes each result by convention: existence checks write errors[] and shape checks write warnings[].
|
||||||
--- `macro_word_drift` writes errors[] for missing or mismatched metadata and info[] for a match.
|
--- `macro_word_drift` writes errors[] for missing or mismatched metadata and info[] for a match.
|
||||||
|
|
||||||
--- Check: every annotated atom must have a matching MipsAtom_(name) declaration.
|
--- Check: Every annotated atom must have a matching MipsAtom_(name) declaration.
|
||||||
--- @param a AtomAnnotation
|
--- @param a AtomAnnotation
|
||||||
--- @param pipe_ctx PipeCtx
|
--- @param pipe_ctx PipeCtx
|
||||||
--- @param findings Findings
|
--- @param findings Findings
|
||||||
@@ -119,8 +111,8 @@ local function check_atom_decl_exists(a, pipe_ctx, findings)
|
|||||||
end
|
end
|
||||||
end
|
end
|
||||||
|
|
||||||
--- Check: every atom may have AT MOST ONE annotation.
|
--- Check: Every atom may have AT MOST ONE annotation.
|
||||||
--- Post-loop: needs full-corpus `annot_counts` from pipe_ctx.
|
--- Post-loop: Needs full-corpus `annot_counts` from pipe_ctx.
|
||||||
--- @param pipe_ctx PipeCtx
|
--- @param pipe_ctx PipeCtx
|
||||||
--- @param findings Findings
|
--- @param findings Findings
|
||||||
local function check_unique_annotation(pipe_ctx, findings)
|
local function check_unique_annotation(pipe_ctx, findings)
|
||||||
@@ -153,7 +145,7 @@ end
|
|||||||
--- Check: TAPE_WORDS(mac_X, N) ↔ WORD_COUNT(mac_X, N) drift.
|
--- Check: TAPE_WORDS(mac_X, N) ↔ WORD_COUNT(mac_X, N) drift.
|
||||||
--- Three outcomes: missing (error), mismatch (error), match (info).
|
--- Three outcomes: missing (error), mismatch (error), match (info).
|
||||||
--- @param m MacroEntry
|
--- @param m MacroEntry
|
||||||
--- @param wc table<string, integer> -- the shared word-count table (from ctx.shared.word_counts)
|
--- @param wc table<string, integer> -- Shared word-count table (from ctx.shared.word_counts)
|
||||||
--- @param findings Findings
|
--- @param findings Findings
|
||||||
local function check_macro_word_drift(m, wc, findings)
|
local function check_macro_word_drift(m, wc, findings)
|
||||||
local declared = wc[m.name]
|
local declared = wc[m.name]
|
||||||
@@ -311,7 +303,7 @@ local function check_binds_no_duplicate_fields(_src, pipe_ctx, findings)
|
|||||||
end
|
end
|
||||||
end
|
end
|
||||||
|
|
||||||
-- Check: debug-skip markers must satisfy shape + placement constraints.
|
-- Check: Debug-skip markers must satisfy shape + placement constraints.
|
||||||
--- Walks the priority list once; each marker produces at most one error, so one source defect yields one finding.
|
--- Walks the priority list once; each marker produces at most one error, so one source defect yields one finding.
|
||||||
--- Priority order (first defect wins):
|
--- Priority order (first defect wins):
|
||||||
--- 1. marker_kind ~= "atom_dbg_skip" -> legacy/renamed spelling (use `atom_dbg_skip`)
|
--- 1. marker_kind ~= "atom_dbg_skip" -> legacy/renamed spelling (use `atom_dbg_skip`)
|
||||||
@@ -322,12 +314,11 @@ end
|
|||||||
--- 6. unsupported target_kind -> marker precedes an unrelated declaration
|
--- 6. unsupported target_kind -> marker precedes an unrelated declaration
|
||||||
--- Valid markers stamp `debug_skip` on whole-atom, bare-component, and proc-component declaration records in scan_source.lua.
|
--- Valid markers stamp `debug_skip` on whole-atom, bare-component, and proc-component declaration records in scan_source.lua.
|
||||||
--- @param marker DebugSkipMarker
|
--- @param marker DebugSkipMarker
|
||||||
--- @param _pipe_ctx PipeCtx -- unused today; kept for plex-shape consistency with per_annot
|
--- @param _pipe_ctx PipeCtx -- Unused; kept for consistency with per_annot // TODO(Ed): Remove?
|
||||||
--- @param findings Findings
|
--- @param findings Findings
|
||||||
local function check_skip_marker(marker, _pipe_ctx, findings)
|
local function check_skip_marker(marker, _pipe_ctx, findings)
|
||||||
local kind = marker.marker_kind
|
local kind = marker.marker_kind
|
||||||
local line = marker.marker_line
|
local line = marker.marker_line
|
||||||
|
|
||||||
-- Left `scan.debug_skip_markers` with production records for `atom_dbg_skip` only; other identifiers take the walker's unrelated branch.
|
-- Left `scan.debug_skip_markers` with production records for `atom_dbg_skip` only; other identifiers take the walker's unrelated branch.
|
||||||
|
|
||||||
if marker.has_parens then
|
if marker.has_parens then
|
||||||
@@ -378,8 +369,6 @@ local function check_skip_marker(marker, _pipe_ctx, findings)
|
|||||||
end
|
end
|
||||||
|
|
||||||
--- Warn when a source references an unregistered alias.
|
--- Warn when a source references an unregistered alias.
|
||||||
---
|
|
||||||
--- R_TapePtr, R_AtomJmp, R_PrimCursor, R_FaceCursor, R_VertBase, and R_OtBase opt in through `#define atom_reg` in lottes_tape.h.
|
|
||||||
--- When a source uses an unregistered R_X, this check emits one pass-level info entry for that source and directs C-ABI register names to explicit alias registration.
|
--- When a source uses an unregistered R_X, this check emits one pass-level info entry for that source and directs C-ABI register names to explicit alias registration.
|
||||||
--- @param _src SourceFile
|
--- @param _src SourceFile
|
||||||
--- @param pipe_ctx PipeCtx
|
--- @param pipe_ctx PipeCtx
|
||||||
@@ -433,8 +422,7 @@ local CHECK_RULES = {
|
|||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Validation
|
-- Validation
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
--
|
-- Pure check: Read from src.scan, run validations, emit findings. The scan was done once upstream.
|
||||||
-- Pure check: read from src.scan, run validations, emit findings. The scan was done once upstream.
|
|
||||||
|
|
||||||
--- Builds one pass-wide pipe_ctx from the merged `corpus.*` registries and source-ordered `corpus.atom_infos`; per-source declarations and bodies remain in `src.scan`.
|
--- Builds one pass-wide pipe_ctx from the merged `corpus.*` registries and source-ordered `corpus.atom_infos`; per-source declarations and bodies remain in `src.scan`.
|
||||||
--- The module ownership contract above requires callers to construct `ctx.shared.corpus` through `build_ctx`; the error message below enforces that gate.
|
--- The module ownership contract above requires callers to construct `ctx.shared.corpus` through `build_ctx`; the error message below enforces that gate.
|
||||||
@@ -480,7 +468,7 @@ end
|
|||||||
--- Validate one source against its pre-scanned SourceScan payload + the corpus-wide pipe_ctx.
|
--- Validate one source against its pre-scanned SourceScan payload + the corpus-wide pipe_ctx.
|
||||||
--- @param ctx PassCtx
|
--- @param ctx PassCtx
|
||||||
--- @param src SourceFile
|
--- @param src SourceFile
|
||||||
--- @param corpus_pipe_ctx PipeCtx|nil -- built once per pass from corpus registries; nil builds the same projection here.
|
--- @param corpus_pipe_ctx PipeCtx|nil -- Built once per pass from corpus registries; nil builds the same projection here.
|
||||||
--- @return AnnotatedResult
|
--- @return AnnotatedResult
|
||||||
local function validate(ctx, src, corpus_pipe_ctx)
|
local function validate(ctx, src, corpus_pipe_ctx)
|
||||||
corpus_pipe_ctx = corpus_pipe_ctx or build_corpus_pipe_ctx(ctx)
|
corpus_pipe_ctx = corpus_pipe_ctx or build_corpus_pipe_ctx(ctx)
|
||||||
@@ -510,14 +498,8 @@ local function validate(ctx, src, corpus_pipe_ctx)
|
|||||||
end
|
end
|
||||||
|
|
||||||
-- Build a per-source pipe_ctx: shared lookups come from `corpus_pipe_ctx`, while declarations, bodies, types, views, defaults, and occurrences come from `src.scan`.
|
-- Build a per-source pipe_ctx: shared lookups come from `corpus_pipe_ctx`, while declarations, bodies, types, views, defaults, and occurrences come from `src.scan`.
|
||||||
local seen_defaults = {}
|
local seen_defaults = {}; for reg, _ in pairs (scan.types or {}) do seen_defaults[reg] = (seen_defaults[reg] or 0) + 1 end
|
||||||
for reg, _ in pairs(scan.types or {}) do
|
local atom_infos_list = {}; for _, ai in ipairs(scan.atom_infos or {}) do atom_infos_list[#atom_infos_list + 1] = ai end
|
||||||
seen_defaults[reg] = (seen_defaults[reg] or 0) + 1
|
|
||||||
end
|
|
||||||
local atom_infos_list = {}
|
|
||||||
for _, ai in ipairs(scan.atom_infos or {}) do
|
|
||||||
atom_infos_list[#atom_infos_list + 1] = ai
|
|
||||||
end
|
|
||||||
|
|
||||||
local pipe_ctx = {
|
local pipe_ctx = {
|
||||||
atom_index = {},
|
atom_index = {},
|
||||||
@@ -605,40 +587,6 @@ local function validate(ctx, src, corpus_pipe_ctx)
|
|||||||
}
|
}
|
||||||
end
|
end
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
|
||||||
-- Per-DIRECTORY (per-module) output: errors.h + annotations.txt
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
|
||||||
|
|
||||||
--- Render `<dir_basename>.errors.h` with `#error` directives for every error found across all sources in the directory.
|
|
||||||
--- Empty directories (no errors, no atoms) produce no file.
|
|
||||||
local function emit_module_errors_h(ctx, dir_basename, atoms_count, errors, sources)
|
|
||||||
if atoms_count == 0 and #errors == 0 then
|
|
||||||
return nil
|
|
||||||
end
|
|
||||||
local out_path = ctx.out_root .. "/" .. dir_basename .. ".errors.h"
|
|
||||||
local lines = {
|
|
||||||
"// Auto-generated by ps1_meta.lua (passes/annotation.lua) — DO NOT EDIT",
|
|
||||||
string.format("// Module: %s Sources: %d", dir_basename, #sources),
|
|
||||||
"#pragma once",
|
|
||||||
"",
|
|
||||||
}
|
|
||||||
if #errors == 0 then
|
|
||||||
lines[#lines + 1] = "// annotation pass OK"
|
|
||||||
else
|
|
||||||
for _, e in ipairs(errors) do
|
|
||||||
local src_tag = ""
|
|
||||||
if e.source then
|
|
||||||
local src_name = e.source:match("([^/\\]+)$") or e.source
|
|
||||||
src_tag = src_name .. ": "
|
|
||||||
end
|
|
||||||
lines[#lines + 1] = string.format('#error "%s%s (line %d)"', src_tag, e.msg, e.line)
|
|
||||||
end
|
|
||||||
end
|
|
||||||
ensure_dir(ctx.out_root)
|
|
||||||
write_file(out_path, table.concat(lines, "\n") .. "\n")
|
|
||||||
return out_path
|
|
||||||
end
|
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- M.run — orchestrator entry
|
-- M.run — orchestrator entry
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
@@ -683,11 +631,6 @@ function M.run(ctx)
|
|||||||
warnings [#warnings + 1] = { line = w.line, msg = w.msg }
|
warnings [#warnings + 1] = { line = w.line, msg = w.msg }
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
|
|
||||||
local err_path = emit_module_errors_h(ctx, dir_basename, dir_atoms, dir_errors, dir_sources)
|
|
||||||
if err_path then
|
|
||||||
table.insert(outputs, { errors_h = err_path })
|
|
||||||
end
|
|
||||||
end
|
end
|
||||||
|
|
||||||
return { outputs = outputs, errors = errors, warnings = warnings }
|
return { outputs = outputs, errors = errors, warnings = warnings }
|
||||||
|
|||||||
@@ -1,23 +1,21 @@
|
|||||||
--- passes/atoms_source_map.lua — Per-.word source-line map emitter for tape atoms.
|
--- passes/atoms_source_map.lua — Per-.word source-line map emitter for tape atoms.
|
||||||
---
|
---
|
||||||
--- Writer: this pass, given `atom.paths` (the per-atom mutable surface owned by `emission_model`). Readers:
|
--- Writer: this pass, given `atom.paths` (the per-atom mutable surface owned by `emission_model`). Readers:
|
||||||
--- `passes/dwarf_injection.lua` (synthesizes DW_TAG_inlined_subroutine + per-word line program rows) and the gdb-runtime
|
--- `passes/dwarf_injection.lua` (synthesizes DW_TAG_inlined_subroutine + per-word line program rows) and
|
||||||
--- wrapper at `scripts/gdb/gdb_tape_atoms.gdb` (loads the source map via `source <path>`).
|
--- the gdb-runtime wrapper at `scripts/gdb/gdb_tape_atoms.gdb` (loads the source map via `source <path>`).
|
||||||
---
|
---
|
||||||
--- Inputs from `atom.paths`: the ordered `items` stream, dense `word_events`, `invocations` views. Outputs: one
|
--- Inputs from `atom.paths`: the ordered `items` stream, dense `word_events`, `invocations` views. Outputs:
|
||||||
--- `WORD N LINE L TEXT T` line per emitted `.word`, plus the per-word provenance form that DWARF synthesis consumes.
|
--- one `WORD N LINE L TEXT T` line per emitted `.word`, plus the per-word provenance form that DWARF synthesis consumes.
|
||||||
---
|
---
|
||||||
--- **Two output forms** (per the workspace's per-emission-form pattern from `guide_metaprogram_ssdl.md`):
|
--- Two output forms:
|
||||||
--- 1. **Sourcemap.txt form** — `<out_root>/<basename>.atoms.sourcemap.txt`. Format-version-tagged for forward-compat.
|
--- 1. Markdown form: Handled by `passes/report.lua` (writes `<module>.atoms.md`).
|
||||||
--- Lives in `<out_root>/` (build/gen). Mirrors the convention used by `annotation.lua`
|
--- The render functions `render_source_map` + `render_provenance` are exported for `report.lua` to call directly.
|
||||||
--- (`<out_root>/<basename>.errors.h`) and `static_analysis.lua` (`<out_root>/<basename>.static_analysis.txt`).
|
|
||||||
--- Compile artifacts (`*.macs.h`, `*.offsets.h`) stay in `<source_dir>/gen/`.
|
--- Compile artifacts (`*.macs.h`, `*.offsets.h`) stay in `<source_dir>/gen/`.
|
||||||
--- 2. **gdb-runtime form** — `<ctx.out_root>/gdb_tape_atoms_runtime.gdb`. A pure gdb command script — addresses come
|
--- 2. `gdb_tape_atoms_runtime.gdb`: Post-link opt-in (`ctx.flags.gdb_runtime`),
|
||||||
--- from `nm`, the 9 user commands are static `define ... end` blocks. Emitted when `ctx.flags.gdb_runtime` is true
|
--- so the gdb wrapper script + the generated runtime script share the same canonical location.
|
||||||
--- AND `ctx.flags.elf_path` points to an existing ELF. Useful for `gdb-multiarch --without-python` users
|
--- Triggered by `--post-link` or `--gdb-runtime`.
|
||||||
--- (the common case on Windows MinGW builds) — `source <path>` loads it with no Python / Tcl / Guile required.
|
|
||||||
---
|
---
|
||||||
--- **Output format** (sourcemap.txt form):
|
--- Output forma (sourcemap.txt form):
|
||||||
--- ```
|
--- ```
|
||||||
--- # FORMAT_VERSION 1
|
--- # FORMAT_VERSION 1
|
||||||
--- # auto-generated by ps1_meta.lua (passes/atoms_source_map.lua) — DO NOT EDIT
|
--- # auto-generated by ps1_meta.lua (passes/atoms_source_map.lua) — DO NOT EDIT
|
||||||
@@ -30,10 +28,7 @@
|
|||||||
--- ...
|
--- ...
|
||||||
--- ENDATOM
|
--- ENDATOM
|
||||||
--- ```
|
--- ```
|
||||||
---
|
|
||||||
--- Marker records are zero-width in `atom.paths.items`, so they emit no WORD rows in the dense word view.
|
--- Marker records are zero-width in `atom.paths.items`, so they emit no WORD rows in the dense word view.
|
||||||
---
|
|
||||||
--- **Conventions:** tabs (1/level), EmmyLua annotations, no regex, Lua 5.3 compatible.
|
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Module-scope requires + package.path setup
|
-- Module-scope requires + package.path setup
|
||||||
@@ -43,8 +38,8 @@
|
|||||||
-- (works both standalone + when require'd). `duffle_paths.lua` sets package.path then returns `require("duffle")`
|
-- (works both standalone + when require'd). `duffle_paths.lua` sets package.path then returns `require("duffle")`
|
||||||
-- at the bottom, so the dofile value IS the duffle module.
|
-- at the bottom, so the dofile value IS the duffle module.
|
||||||
local _bootstrap_dir = debug.getinfo(1, "S").source:match("^@?(.*[/\\])") or "./"
|
local _bootstrap_dir = debug.getinfo(1, "S").source:match("^@?(.*[/\\])") or "./"
|
||||||
local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
||||||
local elf_dwarf = require("elf_dwarf")
|
local elf_dwarf = require("elf_dwarf")
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Constants
|
-- Constants
|
||||||
@@ -73,8 +68,8 @@ local FORMAT_VERSION = 1
|
|||||||
--- @param atom table
|
--- @param atom table
|
||||||
--- @return table[], integer
|
--- @return table[], integer
|
||||||
local function canonical_word_entries(atom)
|
local function canonical_word_entries(atom)
|
||||||
local paths = atom.paths or {}
|
local paths = atom.paths or {}
|
||||||
local events = paths.word_events or {}
|
local events = paths.word_events or {}
|
||||||
local word_items = {}
|
local word_items = {}
|
||||||
for _, item in ipairs(paths.items or {}) do
|
for _, item in ipairs(paths.items or {}) do
|
||||||
if item.kind == "word" then word_items[#word_items + 1] = item end
|
if item.kind == "word" then word_items[#word_items + 1] = item end
|
||||||
@@ -99,41 +94,38 @@ end
|
|||||||
--- Render one atom's provenance stanza. Format 1 line shapes:
|
--- Render one atom's provenance stanza. Format 1 line shapes:
|
||||||
--- `WORD N CALL <src-path>:<src-line> MACRO <name> "<def-path>:<def-line>" BODY <line>` (component invocation)
|
--- `WORD N CALL <src-path>:<src-line> MACRO <name> "<def-path>:<def-line>" BODY <line>` (component invocation)
|
||||||
--- `WORD N CALL <src-path>:<src-line> RAW` (raw `.word` outside any mac_* component)
|
--- `WORD N CALL <src-path>:<src-line> RAW` (raw `.word` outside any mac_* component)
|
||||||
--- Component identity comes from the outermost invocation record; the count-table lookup confirms the component was
|
--- Component identity comes from the outermost invocation record; the count-table lookup confirms the component was declared in `corpus.word_counts`
|
||||||
--- declared in `corpus.word_counts` (populated by word_count_eval + components passes).
|
--- (populated by word_count_eval + components passes).
|
||||||
--- @param src table
|
--- @param src table
|
||||||
--- @param atom table
|
--- @param atom table
|
||||||
--- @param wc table -- identity alias of corpus.word_counts
|
--- @param wc table -- identity alias of corpus.word_counts
|
||||||
--- @return string[], integer
|
--- @return string[], integer
|
||||||
local function emit_provenance_stanza(src, atom, wc)
|
local function emit_provenance_stanza(src, atom, wc)
|
||||||
local lines = {}
|
local lines = {}
|
||||||
local rel_path = src.path:gsub("\\\\", "/")
|
local rel_path = src.path:gsub("\\\\", "/")
|
||||||
local entries, total = canonical_word_entries(atom)
|
local entries, total = canonical_word_entries(atom)
|
||||||
|
|
||||||
lines[#lines + 1] = string.format('ATOM %s "%s" 0', atom.raw_name or atom.name, rel_path)
|
lines[#lines + 1] = string.format('ATOM %s "%s" 0', atom.raw_name or atom.name, rel_path)
|
||||||
|
|
||||||
for _, entry in ipairs(entries) do
|
for _, entry in ipairs(entries) do
|
||||||
local inv = entry.invocation
|
local inv = entry.invocation
|
||||||
local macro_count = inv and wc["mac_" .. inv.component_name]
|
local macro_count = inv and wc["mac_" .. inv.component_name]
|
||||||
if inv and macro_count ~= nil then
|
if inv and macro_count ~= nil then
|
||||||
lines[#lines + 1] = string.format(
|
lines[#lines + 1] = string.format('WORD %d CALL %s:%d MACRO %s "%s:%d" BODY %d'
|
||||||
'WORD %d CALL %s:%d MACRO %s "%s:%d" BODY %d',
|
, entry.pos, rel_path, entry.line, inv.component_name
|
||||||
entry.pos, rel_path, entry.line, inv.component_name,
|
, inv.def_path or "", inv.def_line or 0, entry.body_line)
|
||||||
inv.def_path or "", inv.def_line or 0, entry.body_line)
|
|
||||||
else
|
else
|
||||||
lines[#lines + 1] = string.format(
|
lines[#lines + 1] = string.format("WORD %d CALL %s:%d RAW", entry.pos, rel_path, entry.line)
|
||||||
"WORD %d CALL %s:%d RAW", entry.pos, rel_path, entry.line)
|
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
|
|
||||||
lines[1] = lines[1]:gsub(" 0$", " " .. tostring(total))
|
lines[1] = lines[1]:gsub(" 0$", " " .. tostring(total))
|
||||||
lines[#lines + 1] = "ENDATOM"
|
lines[#lines + 1] = "ENDATOM"
|
||||||
return lines, total
|
return lines, total
|
||||||
end
|
end
|
||||||
|
|
||||||
--- Render the full provenance file content for one source.
|
--- Render the full provenance file content for one source.
|
||||||
--- @param src table
|
--- @param src table
|
||||||
--- @param wc table
|
--- @param wc table
|
||||||
--- @return string
|
--- @return string
|
||||||
local function render_provenance(src, wc)
|
local function render_provenance(src, wc)
|
||||||
local lines = {}
|
local lines = {}
|
||||||
@@ -166,8 +158,8 @@ end
|
|||||||
--- @param wc table
|
--- @param wc table
|
||||||
--- @return string[], integer
|
--- @return string[], integer
|
||||||
local function emit_atom_stanza(src, atom)
|
local function emit_atom_stanza(src, atom)
|
||||||
local lines = {}
|
local lines = {}
|
||||||
local rel_path = src.path:gsub("\\\\", "/")
|
local rel_path = src.path:gsub("\\\\", "/")
|
||||||
local entries, total = canonical_word_entries(atom)
|
local entries, total = canonical_word_entries(atom)
|
||||||
|
|
||||||
lines[#lines + 1] = string.format('ATOM %s "%s" 0', atom.raw_name or atom.name, rel_path)
|
lines[#lines + 1] = string.format('ATOM %s "%s" 0', atom.raw_name or atom.name, rel_path)
|
||||||
@@ -183,10 +175,10 @@ end
|
|||||||
--- Render the full source map file content for one source (one .atoms.sourcemap.txt per source). Mirrors offsets.lua's
|
--- Render the full source map file content for one source (one .atoms.sourcemap.txt per source). Mirrors offsets.lua's
|
||||||
--- `project_atoms` shape: scan.atoms + scan.raw_atoms, no kind filter.
|
--- `project_atoms` shape: scan.atoms + scan.raw_atoms, no kind filter.
|
||||||
--- @param src table
|
--- @param src table
|
||||||
--- @param wc table
|
--- @param wc table
|
||||||
--- @return string
|
--- @return string
|
||||||
local function render_source_map(src)
|
local function render_source_map(src)
|
||||||
local lines = {}
|
local lines = {}
|
||||||
lines[#lines + 1] = "# FORMAT_VERSION " .. FORMAT_VERSION
|
lines[#lines + 1] = "# FORMAT_VERSION " .. FORMAT_VERSION
|
||||||
lines[#lines + 1] = "# auto-generated by ps1_meta.lua (passes/atoms_source_map.lua) — DO NOT EDIT"
|
lines[#lines + 1] = "# auto-generated by ps1_meta.lua (passes/atoms_source_map.lua) — DO NOT EDIT"
|
||||||
|
|
||||||
@@ -220,16 +212,16 @@ end
|
|||||||
--- @param ctx PassCtx
|
--- @param ctx PassCtx
|
||||||
--- @return table[] -- list of {idx, name, src_path, file_base, addr, size_bytes, words, entries}
|
--- @return table[] -- list of {idx, name, src_path, file_base, addr, size_bytes, words, entries}
|
||||||
local function build_atom_table(ctx)
|
local function build_atom_table(ctx)
|
||||||
local addrs = elf_dwarf.read_nm(ctx.flags.elf_path)
|
local addrs = elf_dwarf.read_nm(ctx.flags.elf_path)
|
||||||
local corpus = ctx.shared and ctx.shared.corpus
|
local corpus = ctx.shared and ctx.shared.corpus
|
||||||
local matched = {}
|
local matched = {}
|
||||||
|
|
||||||
for _, src in ipairs(corpus.source_order or {}) do
|
for _, src in ipairs(corpus.source_order or {}) do
|
||||||
local file_base = src.path:match("([^/\\\\]+)$") or src.path
|
local file_base = src.path:match("([^/\\\\]+)$") or src.path
|
||||||
local function append(atom)
|
local function append(atom)
|
||||||
if not atom.paths then return end
|
if not atom.paths then return end
|
||||||
local name = atom.raw_name or atom.name
|
local name = atom.raw_name or atom.name
|
||||||
local info = addrs[name]
|
local info = addrs[name]
|
||||||
if not info then return end
|
if not info then return end
|
||||||
local entries, total = canonical_word_entries(atom)
|
local entries, total = canonical_word_entries(atom)
|
||||||
matched[#matched + 1] = {
|
matched[#matched + 1] = {
|
||||||
@@ -252,9 +244,10 @@ local function build_atom_table(ctx)
|
|||||||
return matched
|
return matched
|
||||||
end
|
end
|
||||||
|
|
||||||
--- Append the 9 gdb command definitions to `lines`. Pure gdb scripting — addresses come from `nm`, the convenience
|
--- Append the 9 gdb command definitions to `lines`. Pure gdb scripting — addresses come from `nm`,
|
||||||
--- vars set in `emit_gdb_runtime` provide printf args, and each command is a static sequence of `printf` / `tbreak` /
|
--- the convenience vars set in `emit_gdb_runtime` provide printf args, and
|
||||||
--- `if ... end` blocks. The Lua pass emits N atoms' worth of lines; runtime iteration is gdb's job.
|
--- each command is a static sequence of `printf` / `tbreak` / `if ... end` blocks.
|
||||||
|
--- The Lua pass emits N atoms' worth of lines; runtime iteration is gdb's job.
|
||||||
---
|
---
|
||||||
--- Why hardcoded per-atom: gdb's `$` substitution doesn't concat inside var names — `$__atom_name_$__i` in a `while`
|
--- Why hardcoded per-atom: gdb's `$` substitution doesn't concat inside var names — `$__atom_name_$__i` in a `while`
|
||||||
--- loop resolves to one literal identifier, not `name_i`. Compile-time emission is the only path.
|
--- loop resolves to one literal identifier, not `name_i`. Compile-time emission is the only path.
|
||||||
@@ -399,8 +392,7 @@ local function append_gdb_commands(lines, matched)
|
|||||||
end
|
end
|
||||||
|
|
||||||
--- Emit the gdb-runtime file (post-link). Pure gdb scripting — addresses come from `mipsel-none-elf-nm -S`, get embedded
|
--- Emit the gdb-runtime file (post-link). Pure gdb scripting — addresses come from `mipsel-none-elf-nm -S`, get embedded
|
||||||
--- in `<ctx.out_root>/gdb_tape_atoms_runtime.gdb`, and load via `set $var = ...` + `define ... end` blocks at gdb
|
--- in `<ctx.out_root>/gdb_tape_atoms_runtime.gdb`, and load via `set $var = ...` + `define ... end` blocks at gdb source-time.
|
||||||
--- source-time.
|
|
||||||
--- @param ctx PassCtx
|
--- @param ctx PassCtx
|
||||||
local function emit_gdb_runtime(ctx)
|
local function emit_gdb_runtime(ctx)
|
||||||
if not (ctx.flags and ctx.flags.gdb_runtime) then return end
|
if not (ctx.flags and ctx.flags.gdb_runtime) then return end
|
||||||
@@ -458,7 +450,22 @@ local function emit_gdb_runtime(ctx)
|
|||||||
-- Confirmation line for the source operator.
|
-- Confirmation line for the source operator.
|
||||||
lines[#lines + 1] = 'printf "[gdb_tape_atoms] runtime loaded %d atoms from %s\\n", $__atom_count, $__elf_path'
|
lines[#lines + 1] = 'printf "[gdb_tape_atoms] runtime loaded %d atoms from %s\\n", $__atom_count, $__elf_path'
|
||||||
|
|
||||||
local out_path = ctx.out_root .. "/gdb_tape_atoms_runtime.gdb"
|
local out_path
|
||||||
|
-- Move out of `<out_root>/gdb_tape_atoms_runtime.gdb` to `<out_root>/../gdb_tape_atoms_runtime.gdb` when the conventional `<out_root>` is `<build>/gen`
|
||||||
|
-- (any equivalent spelling — relative, absolute backslash, absolute forward-slash, trailing-separator variants).
|
||||||
|
-- This puts the gdb runtime alongside the ELF at `build/` rather than under the report subdir.
|
||||||
|
local function ends_with_gen_dir(p)
|
||||||
|
if type(p) ~= "string" then return false end
|
||||||
|
return p:match("[/\\]gen[/\\]?$") ~= nil or p == "build/gen" or p == "build\\gen"
|
||||||
|
end
|
||||||
|
if ends_with_gen_dir(ctx.out_root) then
|
||||||
|
-- Strip the trailing `/gen` segment, then write the runtime script under `build/`.
|
||||||
|
-- e.g. "C:/projects/Pikuma/ps1/build/gen" -> "C:/projects/Pikuma/ps1/build".
|
||||||
|
local parent = ctx.out_root:gsub("[/\\]gen[/\\]?$", "")
|
||||||
|
out_path = parent .. "/gdb_tape_atoms_runtime.gdb"
|
||||||
|
else
|
||||||
|
out_path = ctx.out_root .. "/gdb_tape_atoms_runtime.gdb"
|
||||||
|
end
|
||||||
duffle.ensure_dir(duffle.dirname(out_path))
|
duffle.ensure_dir(duffle.dirname(out_path))
|
||||||
duffle.write_file_lf(out_path, table.concat(lines, "\n") .. "\n")
|
duffle.write_file_lf(out_path, table.concat(lines, "\n") .. "\n")
|
||||||
-- io.stderr:write(string.format("[atoms_source_map] wrote %s (%d atoms)\n", out_path, #matched))
|
-- io.stderr:write(string.format("[atoms_source_map] wrote %s (%d atoms)\n", out_path, #matched))
|
||||||
@@ -470,10 +477,62 @@ end
|
|||||||
|
|
||||||
local M = {}
|
local M = {}
|
||||||
|
|
||||||
--- Pass entry. For each source that declares at least one `MipsAtom_(name)` / `MipsCode code_<name>`, emit two files
|
-- Expose the pure render functions so `report.lua` and the focused tests can call them directly without triggering the file-emit path.
|
||||||
--- in `<out_root>/`: `<basename>.atoms.sourcemap.txt` (per-word call-site map) and `<basename>.atoms.provenance.txt`
|
M.render_source_map = render_source_map
|
||||||
--- (per-word definition + body line, resolved via the outermost `mac_X(...)` invocation). When `ctx.flags.gdb_runtime`
|
M.render_provenance = render_provenance
|
||||||
--- is true and `ctx.flags.elf_path` exists, also emit the post-link gdb script `<ctx.out_root>/gdb_tape_atoms_runtime.gdb`.
|
|
||||||
|
--- Render ONE atom's sourcemap stanza.
|
||||||
|
--- @param atom table -- atom record (must have `atom.paths` populated)
|
||||||
|
--- @return string
|
||||||
|
function M.render_atom_source_map(atom)
|
||||||
|
assert(type(atom) == "table", "render_atom_source_map: atom must be a table")
|
||||||
|
assert(type(atom.paths) == "table", "render_atom_source_map: atom.paths must be a table")
|
||||||
|
local entries, total = canonical_word_entries(atom)
|
||||||
|
local lines = {}
|
||||||
|
lines[#lines + 1] = string.format("ATOM %s %d", (atom.raw_name or atom.name), total)
|
||||||
|
for _, entry in ipairs(entries) do
|
||||||
|
lines[#lines + 1] = string.format("WORD %d LINE %d TEXT %s",
|
||||||
|
entry.pos, entry.line, entry.text)
|
||||||
|
end
|
||||||
|
lines[#lines + 1] = "ENDATOM"
|
||||||
|
return table.concat(lines, "\n") .. "\n"
|
||||||
|
end
|
||||||
|
|
||||||
|
--- Render ONE atom's provenance stanza — no per-file format header, no enumeration of other atoms.
|
||||||
|
---
|
||||||
|
--- `rel_path` is the source path (forward-slashes) embedded in every `CALL` line.
|
||||||
|
--- The .md caller (report.lua) is expected to derive this once per `## <source>` heading and pass it down for each atom in that source.
|
||||||
|
--- @param atom table -- atom record (must have `atom.paths` populated)
|
||||||
|
--- @param wc table -- identity alias of `corpus.word_counts`
|
||||||
|
--- @param rel_path string -- source path (forward-slashes) for `CALL` fields
|
||||||
|
--- @return string
|
||||||
|
function M.render_atom_provenance(atom, wc, rel_path)
|
||||||
|
assert(type(atom) == "table", "render_atom_provenance: atom must be a table")
|
||||||
|
assert(type(atom.paths) == "table", "render_atom_provenance: atom.paths must be a table")
|
||||||
|
assert(type(rel_path) == "string", "render_atom_provenance: rel_path must be a string")
|
||||||
|
local entries, total = canonical_word_entries(atom)
|
||||||
|
local lines = {}
|
||||||
|
lines[#lines + 1] = string.format("ATOM %s %d", (atom.raw_name or atom.name), total)
|
||||||
|
for _, entry in ipairs(entries) do
|
||||||
|
local inv = entry.invocation
|
||||||
|
local macro_count = inv and wc and wc["mac_" .. inv.component_name]
|
||||||
|
if inv and macro_count ~= nil then
|
||||||
|
lines[#lines + 1] = string.format(
|
||||||
|
'WORD %d CALL %s:%d MACRO %s "%s:%d" BODY %d',
|
||||||
|
entry.pos, rel_path, entry.line, inv.component_name,
|
||||||
|
inv.def_path or "", inv.def_line or 0, entry.body_line)
|
||||||
|
else
|
||||||
|
lines[#lines + 1] = string.format(
|
||||||
|
"WORD %d CALL %s:%d RAW", entry.pos, rel_path, entry.line)
|
||||||
|
end
|
||||||
|
end
|
||||||
|
return table.concat(lines, "\n") .. "\n"
|
||||||
|
end
|
||||||
|
|
||||||
|
--- Pass entry. For each source that declares at least one `MipsAtom_(name)` / `MipsCode code_<name>`,
|
||||||
|
--- emit two files in `<out_root>/`: `<basename>.atoms.sourcemap.txt` (per-word call-site map) and `<basename>.atoms.provenance.txt`
|
||||||
|
--- (per-word definition + body line, resolved via the outermost `mac_X(...)` invocation).
|
||||||
|
--- When `ctx.flags.gdb_runtime` is true and `ctx.flags.elf_path` exists, also emit the post-link gdb script `<ctx.out_root>/gdb_tape_atoms_runtime.gdb`.
|
||||||
--- @param ctx PassCtx
|
--- @param ctx PassCtx
|
||||||
--- @return PassResult
|
--- @return PassResult
|
||||||
function M.run(ctx)
|
function M.run(ctx)
|
||||||
@@ -495,34 +554,8 @@ function M.run(ctx)
|
|||||||
}
|
}
|
||||||
end
|
end
|
||||||
|
|
||||||
-- Always emit the text form (per-source).
|
-- atoms.sourcemap.txt + atoms.provenance.txt content moved to report.lua via `<module>.atoms.md` markdown file.
|
||||||
for _, src in ipairs(corpus.source_order) do
|
-- This pass emits only the post-link gdb_runtime artifact (see emit_gdb_runtime below).
|
||||||
local has_projection = false
|
|
||||||
for _, atom in ipairs((src.scan or {}).atoms or {}) do
|
|
||||||
if (atom.kind == "atom" or atom.kind == "raw_atom") and atom.paths then
|
|
||||||
has_projection = true; break
|
|
||||||
end
|
|
||||||
end
|
|
||||||
if not has_projection then
|
|
||||||
for _, atom in ipairs((src.scan or {}).raw_atoms or {}) do
|
|
||||||
if atom.paths then has_projection = true; break end
|
|
||||||
end
|
|
||||||
end
|
|
||||||
if has_projection then
|
|
||||||
local basename = duffle.basename_no_ext(src.path)
|
|
||||||
-- (1) atoms.sourcemap.txt — format-1 per-word call-site map.
|
|
||||||
local sourcemap_path = ctx.out_root .. "/" .. basename .. ".atoms.sourcemap.txt"
|
|
||||||
local sourcemap_body = render_source_map(src)
|
|
||||||
-- (2) atoms.provenance.txt — format-1 per-word definition/body map.
|
|
||||||
local prov_path = ctx.out_root .. "/" .. basename .. ".atoms.provenance.txt"
|
|
||||||
local prov_body = render_provenance(src, wc)
|
|
||||||
duffle.ensure_dir(duffle.dirname(sourcemap_path))
|
|
||||||
duffle.write_file_lf(sourcemap_path, sourcemap_body)
|
|
||||||
duffle.write_file_lf(prov_path, prov_body)
|
|
||||||
outputs[#outputs + 1] = { kind = "report", path = sourcemap_path }
|
|
||||||
outputs[#outputs + 1] = { kind = "report", path = prov_path }
|
|
||||||
end
|
|
||||||
end
|
|
||||||
|
|
||||||
-- Optionally emit the gdb-runtime form (post-link, one file per build).
|
-- Optionally emit the gdb-runtime form (post-link, one file per build).
|
||||||
if ctx.flags and ctx.flags.gdb_runtime then
|
if ctx.flags and ctx.flags.gdb_runtime then
|
||||||
|
|||||||
+212
-75
@@ -4,12 +4,11 @@
|
|||||||
--- Scanner owns `declaration_comment` and `debug_skip` on each declaration record; this pass projects both forward.
|
--- Scanner owns `declaration_comment` and `debug_skip` on each declaration record; this pass projects both forward.
|
||||||
---
|
---
|
||||||
--- Reads the pre-scanned SourceScan payload from `duffle.scan_source` for `MipsAtomComp_(ac_X)` and `MipsAtomComp_Proc_(ac_X, { body })` declarations,
|
--- Reads the pre-scanned SourceScan payload from `duffle.scan_source` for `MipsAtomComp_(ac_X)` and `MipsAtomComp_Proc_(ac_X, { body })` declarations,
|
||||||
--- then resolves the function-args string from the preceding `FI_ MipsAtom ac_X(...)` declaration via a backward walk.
|
--- then resolves the function-args string from the preceding `FI_ Slice_MipsCode ac_X(...)` declaration via a backward walk.
|
||||||
---
|
---
|
||||||
--- Emits one `<dir_basename>.macs.h` per source with `#define mac_X(sig) \` macros plus `WORD_COUNT(mac_X, N)` entries for downstream offset computation.
|
--- Emits one `gen/macs.h` per *immediate source directory* with `#define mac_X(sig) \` macros plus `WORD_COUNT(mac_X, N)` entries for downstream offset computation.
|
||||||
---
|
--- All sources inside the same directory contribute to the same file (per-directory aggregation).
|
||||||
--- **Conventions**: tabs (1/level), EmmyLua annotations, no regex,
|
--- The directory itself is the namespace, so the filename does not repeat the module name.
|
||||||
--- Lua 5.3 compatible.
|
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Module-scope requires + package.path setup
|
-- Module-scope requires + package.path setup
|
||||||
@@ -29,7 +28,7 @@ local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
|||||||
|
|
||||||
-- Atom component declaration identifiers.
|
-- Atom component declaration identifiers.
|
||||||
local ATOM_COMP_PROC = "MipsAtomComp_Proc_"
|
local ATOM_COMP_PROC = "MipsAtomComp_Proc_"
|
||||||
local MIPS_ATOM = "MipsAtom" -- prefix on the function declaration that wraps an AtomComp_Proc_
|
local MIPS_ATOM = "Slice_MipsCode" -- prefix on the function declaration that wraps an AtomComp_Proc_
|
||||||
|
|
||||||
-- Component-name prefixes.
|
-- Component-name prefixes.
|
||||||
local AC_PREFIX = "ac_" -- arg to MipsAtomComp_(ac_X); the X is the atom name
|
local AC_PREFIX = "ac_" -- arg to MipsAtomComp_(ac_X); the X is the atom name
|
||||||
@@ -41,43 +40,44 @@ local MAC_PREFIX_LEN = 4
|
|||||||
local BYTE_NEWLINE = 10
|
local BYTE_NEWLINE = 10
|
||||||
local BYTE_SLASH = 47
|
local BYTE_SLASH = 47
|
||||||
|
|
||||||
-- Source dir basename used as the output `.macs.h` filename.
|
-- Output gen subdirectory + filename (per-directory aggregation; the directory name is the namespace).
|
||||||
local GEN_SUBDIR = "gen"
|
local GEN_SUBDIR = "gen"
|
||||||
|
local MACS_FILENAME = "macs.h"
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Type declarations
|
-- Type declarations
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
--- @class SourceFile
|
--- @class SourceFile
|
||||||
--- @field path string -- absolute path to the source file
|
--- @field path string -- Absolute path to the source file
|
||||||
--- @field text string -- the full source text
|
--- @field text string -- Full source text
|
||||||
--- @field dir string -- the directory containing the source
|
--- @field dir string -- Directory containing the source
|
||||||
--- @field basename string -- filename without extension
|
--- @field basename string -- Filename without extension
|
||||||
--- @field scan table -- pre-scanned SourceScan payload (from duffle.scan_source)
|
--- @field scan table -- Pre-scanned SourceScan payload (from duffle.scan_source)
|
||||||
|
|
||||||
--- @class PassCtx
|
--- @class PassCtx
|
||||||
--- @field sources SourceFile[] -- all source files in the build
|
--- @field sources SourceFile[] -- All source files in the build
|
||||||
--- @field metadata_path string -- path to word_count.metadata.h
|
--- @field metadata_path string -- Path to word_count.metadata.h
|
||||||
--- @field shared table -- cross-pass shared state
|
--- @field shared table -- Cross-pass shared state
|
||||||
--- @field out_root string -- output root (e.g. "build/gen")
|
--- @field out_root string -- Output root (e.g. "build/gen")
|
||||||
--- @field project_root string -- project root (e.g. "code/")
|
--- @field project_root string -- Project root (e.g. "code/")
|
||||||
--- @field upstream table<string, table> -- per-pass upstream outputs
|
--- @field upstream table<string, table> -- Per-pass upstream outputs
|
||||||
--- @field flags table -- CLI flags
|
--- @field flags table -- CLI flags
|
||||||
--- @field verbose boolean -- log diagnostic info
|
--- @field verbose boolean -- Log diagnostic info
|
||||||
|
|
||||||
--- @class PassResult
|
--- @class PassResult
|
||||||
--- @field outputs table[] -- {kind=, path=} entries describing emit files
|
--- @field outputs table[] -- {kind=, path=} entries describing emit files
|
||||||
--- @field errors table[] -- {line=, msg=} entries; build-stops
|
--- @field errors table[] -- {line=, msg=} entries; build-stops
|
||||||
--- @field warnings table[] -- {line=, msg=} entries; build-succeeds
|
--- @field warnings table[] -- {line=, msg=} entries; build-succeeds
|
||||||
|
|
||||||
--- @class Component
|
--- @class Component
|
||||||
--- @field name string -- atom name (without `ac_` prefix)
|
--- @field name string -- Atom name (without `ac_` prefix)
|
||||||
--- @field body string -- brace-delimited body (without the braces)
|
--- @field body string -- Brace-delimited body (without the braces)
|
||||||
--- @field args string|nil -- function-args string (function form only)
|
--- @field args string|nil -- Function-args string (function form only)
|
||||||
--- @field line integer -- source line of the declaration
|
--- @field line integer -- Source line of the declaration
|
||||||
--- @field comment string|nil -- scanner-owned `declaration_comment`; the components pass reads it from the scanner record
|
--- @field comment string|nil -- Scanner-owned `declaration_comment`; the components pass reads it from the scanner record
|
||||||
--- @field kind string -- "comp_bare" | "comp_proc"
|
--- @field kind string -- "comp_bare" | "comp_proc"
|
||||||
--- @field debug_skip boolean -- mirror of `a.debug_skip` (scanner-owned); true iff a bare `atom_dbg_skip` marker immediately preceded the declaration
|
--- @field debug_skip boolean -- Mirror of `a.debug_skip` (scanner-owned); true iff a bare `atom_dbg_skip` marker immediately preceded the declaration
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Local helpers (file I/O + path normalization)
|
-- Local helpers (file I/O + path normalization)
|
||||||
@@ -97,9 +97,9 @@ local M = {}
|
|||||||
--- Returns the args string (e.g., `"U4 off, U4 code, U1 r, U1 g, U1 b"`) or nil if no function declaration is found.
|
--- Returns the args string (e.g., `"U4 off, U4 code, U1 r, U1 g, U1 b"`) or nil if no function declaration is found.
|
||||||
---
|
---
|
||||||
--- Convention: function form is
|
--- Convention: function form is
|
||||||
--- `FI_ MipsAtom ac_X(args) MipsAtomComp_Proc_(ac_X, { body })`
|
--- `FI_ Slice_MipsCode ac_X(args) MipsAtomComp_Proc_(ac_X, { body })`
|
||||||
--- We find the LAST occurrence of `"ac_X("` before `before_pos` and extract the args from inside the parens.
|
--- We find the LAST occurrence of `"ac_X("` before `before_pos` and extract the args from inside the parens.
|
||||||
--- We then verify the preceding context ends with `MipsAtom`
|
--- We then verify the preceding context ends with `Slice_MipsCode`
|
||||||
--- (the function-decl keyword with possible qualifiers between).
|
--- (the function-decl keyword with possible qualifiers between).
|
||||||
---
|
---
|
||||||
--- @param source string
|
--- @param source string
|
||||||
@@ -231,7 +231,6 @@ end
|
|||||||
--
|
--
|
||||||
-- Skips `//` sequences that are inside string or character literals
|
-- Skips `//` sequences that are inside string or character literals
|
||||||
-- (a rough heuristic — sufficient for component bodies which don't have those constructs).
|
-- (a rough heuristic — sufficient for component bodies which don't have those constructs).
|
||||||
--
|
|
||||||
--- @param s string
|
--- @param s string
|
||||||
--- @return string
|
--- @return string
|
||||||
local function convert_line_comments_to_block(s)
|
local function convert_line_comments_to_block(s)
|
||||||
@@ -300,7 +299,7 @@ local function word_count_rec(name, comp_by_name, wc, cache)
|
|||||||
local trimmed = t.tok
|
local trimmed = t.tok
|
||||||
if trimmed ~= "" then
|
if trimmed ~= "" then
|
||||||
local lookup = strip_mac_prefix(duffle.read_ident(trimmed, 1))
|
local lookup = strip_mac_prefix(duffle.read_ident(trimmed, 1))
|
||||||
if lookup and comp_by_name[lookup] then
|
if lookup and comp_by_name[lookup] then
|
||||||
-- It's a `mac_X(...)` call. Recurse.
|
-- It's a `mac_X(...)` call. Recurse.
|
||||||
n = n + word_count_rec(lookup, comp_by_name, wc, cache)
|
n = n + word_count_rec(lookup, comp_by_name, wc, cache)
|
||||||
elseif lookup and wc and wc[lookup] then
|
elseif lookup and wc and wc[lookup] then
|
||||||
@@ -339,6 +338,116 @@ local function count_all_components(components, wc)
|
|||||||
return counts
|
return counts
|
||||||
end
|
end
|
||||||
|
|
||||||
|
-- ═══════════════════════════════════════════
|
||||||
|
-- Per-component metadata derivation (replaces the hardcoded `M.GP0_MACRO_CONTRIB` + `M.INSTRUCTION_LATENCY[mac_*]` tables that previously lived in `duffle.lua`).
|
||||||
|
--
|
||||||
|
-- Each `MipsAtomComp_(ac_X) { body }` definition in `code/duffle/lottes_tape.h` is the canonical source.
|
||||||
|
-- The `mac_X(...)` macros are GENERATED from these definitions by `emit_component_macros_h` for tape-side composition;
|
||||||
|
-- the metaprogram must NEVER walk the generated variants to derive metadata.
|
||||||
|
-- Always walk the original `MipsAtomComp_` body via `cc.body_tokens`.
|
||||||
|
-- ═══════════════════════════════════════════
|
||||||
|
|
||||||
|
--- (internal) Recursive cycle-cost derivation. Sum `latency[ident]` per emitted instruction in the component body,
|
||||||
|
--- recursing through nested `mac_*` calls (so `mac_format_g4_color`'s cost = 4 × `mac_pack_color_word`'s cost).
|
||||||
|
--- Special rule: `mac_yield`'s cost = 0 (per `lottes_tape.h:125-130` "the runtime cost lands in the next atom's prologue").
|
||||||
|
--- @param name string -- component bare name (e.g. "yield", "pack_color_word")
|
||||||
|
--- @param comp_by_name table<string, Component>
|
||||||
|
--- @param latency table<string, integer>
|
||||||
|
--- @param cache table<string, integer> -- shared memoization; `-1` sentinel detects cycles
|
||||||
|
--- @return integer
|
||||||
|
local function cycle_cost_rec(name, comp_by_name, latency, cache)
|
||||||
|
if cache[name] ~= nil then return cache[name] end
|
||||||
|
cache[name] = -1
|
||||||
|
local cc = comp_by_name[name]
|
||||||
|
local n
|
||||||
|
if cc then
|
||||||
|
if name == "yield" then
|
||||||
|
-- mac_yield's cost is 0 by convention (the runtime cost lands in the next atom's prologue).
|
||||||
|
n = 0
|
||||||
|
else
|
||||||
|
n = 0
|
||||||
|
local tokens = cc.body_tokens
|
||||||
|
for _, t in ipairs(tokens) do
|
||||||
|
local trimmed = t.tok
|
||||||
|
if trimmed ~= "" then
|
||||||
|
local ident = duffle.read_ident(trimmed, 1)
|
||||||
|
if ident and ident:sub(1, MAC_PREFIX_LEN) == MAC_PREFIX then
|
||||||
|
-- Nested `mac_X(...)` call: recurse.
|
||||||
|
local nested = ident:sub(MAC_PREFIX_LEN + 1)
|
||||||
|
n = n + cycle_cost_rec(nested, comp_by_name, latency, cache)
|
||||||
|
else
|
||||||
|
-- Leaf instruction or pseudo-macro. Look up in INSTRUCTION_LATENCY; default 1.
|
||||||
|
n = n + (latency[ident] or 1)
|
||||||
|
end
|
||||||
|
end
|
||||||
|
end
|
||||||
|
end
|
||||||
|
else
|
||||||
|
n = 1
|
||||||
|
end
|
||||||
|
cache[name] = n
|
||||||
|
return n
|
||||||
|
end
|
||||||
|
|
||||||
|
--- (internal) Recursive GP0 prim-buffer contribution. Count `store_word` / `store_half` / `store_byte`
|
||||||
|
--- calls in the component body that target `R_PrimCursor` (these are the
|
||||||
|
--- RAM-side prim-buffer words the macro contributes), recursing through nested `mac_*` calls.
|
||||||
|
--- Only `R_PrimCursor`-targeting stores count. Stores targeting other registers (e.g. `R_OtBase`, heap pointers) are not prim-buffer contributions.
|
||||||
|
--- @param name string
|
||||||
|
--- @param comp_by_name table<string, Component>
|
||||||
|
--- @param cache table<string, integer>
|
||||||
|
--- @return integer
|
||||||
|
local function gp0_contrib_rec(name, comp_by_name, cache)
|
||||||
|
if cache[name] ~= nil then return cache[name] end
|
||||||
|
cache[name] = -1
|
||||||
|
local cc = comp_by_name[name]
|
||||||
|
local n
|
||||||
|
if cc then
|
||||||
|
n = 0
|
||||||
|
local tokens = cc.body_tokens
|
||||||
|
for _, t in ipairs(tokens) do
|
||||||
|
local trimmed = t.tok
|
||||||
|
if trimmed ~= "" then
|
||||||
|
local ident = duffle.read_ident(trimmed, 1)
|
||||||
|
if ident and ident:sub(1, MAC_PREFIX_LEN) == MAC_PREFIX then
|
||||||
|
-- Nested `mac_X(...)` call: recurse.
|
||||||
|
local nested = ident:sub(MAC_PREFIX_LEN + 1)
|
||||||
|
n = n + gp0_contrib_rec(nested, comp_by_name, cache)
|
||||||
|
elseif ident == "store_word" or ident == "store_half" or ident == "store_byte" then
|
||||||
|
if trimmed:find("R_PrimCursor", 1, true) then
|
||||||
|
n = n + 1
|
||||||
|
end
|
||||||
|
end
|
||||||
|
end
|
||||||
|
end
|
||||||
|
else
|
||||||
|
n = 0
|
||||||
|
end
|
||||||
|
cache[name] = n
|
||||||
|
return n
|
||||||
|
end
|
||||||
|
|
||||||
|
--- Compute `cycle_cost` + `gp0_contrib` for every component in `components` in a single pass.
|
||||||
|
--- Memoization cache is built ONCE (per source) and shared across both helpers so that
|
||||||
|
--- a nested `mac_Y` reference inside a `mac_X` body computes its values once.
|
||||||
|
--- @param components Component[]
|
||||||
|
--- @param latency table<string, integer>
|
||||||
|
--- @return table<string, {cycle_cost=integer, gp0_contrib=integer}>
|
||||||
|
local function compute_components_metadata(components, latency)
|
||||||
|
local comp_by_name = {}
|
||||||
|
for _, cc in ipairs(components) do comp_by_name[cc.name] = cc end
|
||||||
|
local cc_cache = {}
|
||||||
|
local gc_cache = {}
|
||||||
|
local out = {}
|
||||||
|
for _, c in ipairs(components) do
|
||||||
|
out[c.name] = {
|
||||||
|
cycle_cost = cycle_cost_rec(c.name, comp_by_name, latency, cc_cache),
|
||||||
|
gp0_contrib = gp0_contrib_rec(c.name, comp_by_name, gc_cache),
|
||||||
|
}
|
||||||
|
end
|
||||||
|
return out
|
||||||
|
end
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Per-component emit logic
|
-- Per-component emit logic
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
@@ -348,8 +457,8 @@ end
|
|||||||
--- @param s string
|
--- @param s string
|
||||||
--- @return string[]
|
--- @return string[]
|
||||||
local function split_comment_lines(s)
|
local function split_comment_lines(s)
|
||||||
local out = {}
|
local out = {}
|
||||||
local pos = 1
|
local pos = 1
|
||||||
local s_len = #s
|
local s_len = #s
|
||||||
while pos <= s_len do
|
while pos <= s_len do
|
||||||
local nl = s:find("\n", pos, true)
|
local nl = s:find("\n", pos, true)
|
||||||
@@ -424,9 +533,9 @@ local function build_component_lines(c, counts)
|
|||||||
|
|
||||||
local tokens = duffle.split_top_level_commas(c.body)
|
local tokens = duffle.split_top_level_commas(c.body)
|
||||||
for i = 1, #tokens do tokens[i] = duffle.trim(tokens[i]) end
|
for i = 1, #tokens do tokens[i] = duffle.trim(tokens[i]) end
|
||||||
local sig = signature_from_args(c.args)
|
local sig = signature_from_args(c.args)
|
||||||
-- Direct lookup against the per-source precomputed `counts` table (built once by count_all_components).
|
-- Direct lookup against the per-source precomputed `counts` table (built once by count_all_components).
|
||||||
local n = counts[c.name]
|
local n = counts[c.name]
|
||||||
|
|
||||||
if n > 0 then
|
if n > 0 then
|
||||||
emit_macro_body(lines, c, sig, tokens)
|
emit_macro_body(lines, c, sig, tokens)
|
||||||
@@ -445,9 +554,15 @@ end
|
|||||||
|
|
||||||
--- Build the boilerplate header lines (the `#ifdef INTELLISENSE_DIRECTIVES` block,
|
--- Build the boilerplate header lines (the `#ifdef INTELLISENSE_DIRECTIVES` block,
|
||||||
--- the `// Auto-generated` comment, the `// Source:` line, and the self-contained `WORD_COUNT` macro definition).
|
--- the `// Auto-generated` comment, the `// Source:` line, and the self-contained `WORD_COUNT` macro definition).
|
||||||
--- @param src SourceFile
|
--- @param dir string -- the absolute source directory
|
||||||
|
--- @param sources SourceFile[] -- sources contributing to this directory (for the header comment)
|
||||||
--- @return string[]
|
--- @return string[]
|
||||||
local function header_boilerplate(src)
|
local function header_boilerplate(dir, sources)
|
||||||
|
local source_lines = { "// Directory: " .. duffle.to_absolute_path(dir) .. "/" }
|
||||||
|
for _, src in ipairs(sources) do
|
||||||
|
source_lines[#source_lines + 1] = "// source: " .. duffle.to_absolute_path(src.path)
|
||||||
|
end
|
||||||
|
local source_blob = table.concat(source_lines, "\n")
|
||||||
return {
|
return {
|
||||||
-- #pragma once wrapped in #ifdef INTELLISENSE_DIRECTIVES, matching the convention in lottes_tape.h.
|
-- #pragma once wrapped in #ifdef INTELLISENSE_DIRECTIVES, matching the convention in lottes_tape.h.
|
||||||
-- The build does manual unity includes (the user controls include order), so the pragma is only active for IDE/tooling.
|
-- The build does manual unity includes (the user controls include order), so the pragma is only active for IDE/tooling.
|
||||||
@@ -455,7 +570,7 @@ local function header_boilerplate(src)
|
|||||||
"#pragma once",
|
"#pragma once",
|
||||||
"#endif",
|
"#endif",
|
||||||
"// Auto-generated by ps1_meta.lua — DO NOT EDIT",
|
"// Auto-generated by ps1_meta.lua — DO NOT EDIT",
|
||||||
"// Source: " .. duffle.to_absolute_path(src.path),
|
source_blob,
|
||||||
"// Component atoms (MipsAtomComp_(ac_*)) -> macro variants (mac_*)",
|
"// Component atoms (MipsAtomComp_(ac_*)) -> macro variants (mac_*)",
|
||||||
"",
|
"",
|
||||||
-- Self-contained: define WORD_COUNT if not already defined.
|
-- Self-contained: define WORD_COUNT if not already defined.
|
||||||
@@ -468,30 +583,30 @@ local function header_boilerplate(src)
|
|||||||
}
|
}
|
||||||
end
|
end
|
||||||
|
|
||||||
--- Compute the output path for one source's `.macs.h` file.
|
--- Compute the per-directory output path for `.macs.h`.
|
||||||
--- The pre-rework convention uses the *directory* basename (not the source file basename)
|
--- e.g. any source in `code/duffle/` produces `code/duffle/gen/macs.h` regardless of source filename.
|
||||||
--- e.g. `code/duffle/lottes_tape.h` produces `code/duffle/gen/duffle.macs.h`.
|
--- The directory name is the namespace; the filename does not repeat it.
|
||||||
--- This matches what the C codebase #includes.
|
--- @param dir string -- the absolute source directory
|
||||||
--- @param src SourceFile
|
|
||||||
--- @return string -- the output directory
|
--- @return string -- the output directory
|
||||||
--- @return string -- the full output path
|
--- @return string -- the full output path
|
||||||
local function compute_macs_h_path(src)
|
local function compute_macs_h_path(dir)
|
||||||
local out_dir = src.dir .. "/" .. GEN_SUBDIR
|
local out_dir = dir .. "/" .. GEN_SUBDIR
|
||||||
local out_path = out_dir .. "/" .. duffle.basename_no_ext(src.dir) .. ".macs.h"
|
local out_path = out_dir .. "/" .. MACS_FILENAME
|
||||||
return out_dir, out_path
|
return out_dir, out_path
|
||||||
end
|
end
|
||||||
|
|
||||||
--- Emit a per-source `.macs.h` header with the `mac_X` macros + `WORD_COUNT` entries.
|
--- Emit a per-directory `.macs.h` header with the aggregated `mac_X` macros + `WORD_COUNT` entries.
|
||||||
--- Writes in BINARY mode so LF line endings are preserved (the git blob is LF; Windows text-mode would emit CRLF and break the byte-identical diff).
|
--- Writes in BINARY mode so LF line endings are preserved (the git blob is LF; Windows text-mode would emit CRLF and break the byte-identical diff).
|
||||||
--- @param ctx PassCtx
|
--- @param ctx PassCtx
|
||||||
--- @param src SourceFile
|
--- @param dir string -- the absolute source directory
|
||||||
--- @param components Component[]
|
--- @param sources SourceFile[] -- sources contributing to this directory (for the header comment)
|
||||||
|
--- @param components Component[] -- aggregated components from all sources in this directory
|
||||||
--- @param counts table<string, integer> -- precomputed word counts (from count_all_components)
|
--- @param counts table<string, integer> -- precomputed word counts (from count_all_components)
|
||||||
--- @return string|nil -- path to the written file (nil if no components)
|
--- @return string|nil -- path to the written file (nil if no components)
|
||||||
local function emit_component_macros_h(ctx, src, components, counts)
|
local function emit_component_macros_h(ctx, dir, sources, components, counts)
|
||||||
if #components == 0 then return nil end
|
if #components == 0 then return nil end
|
||||||
local out_dir, out_path = compute_macs_h_path(src)
|
local out_dir, out_path = compute_macs_h_path(dir)
|
||||||
local lines = header_boilerplate(src)
|
local lines = header_boilerplate(dir, sources)
|
||||||
|
|
||||||
for _, c in ipairs(components) do
|
for _, c in ipairs(components) do
|
||||||
for _, l in ipairs(build_component_lines(c, counts)) do
|
for _, l in ipairs(build_component_lines(c, counts)) do
|
||||||
@@ -534,32 +649,36 @@ end
|
|||||||
|
|
||||||
--- (internal) Populate `corpus.components` with this source's components-by-name map.
|
--- (internal) Populate `corpus.components` with this source's components-by-name map.
|
||||||
--- First declaration wins; later declarations of the same bare name are dropped and recorded as a collision via `corpus.collisions` (kind = "component").
|
--- First declaration wins; later declarations of the same bare name are dropped and recorded as a collision via `corpus.collisions` (kind = "component").
|
||||||
--- The pass does NOT write to `ctx.shared.components` (ownership follows the canonical contract).
|
--- The pass does NOT write to `ctx.shared.components`.
|
||||||
--- The `debug_skip` field mirrors the scanner-owned declaration record (`c.debug_skip`).
|
|
||||||
--- No parallel skip map is built here; consumers that need the per-component skip state read `corpus.components[name].debug_skip` directly.
|
--- No parallel skip map is built here; consumers that need the per-component skip state read `corpus.components[name].debug_skip` directly.
|
||||||
--- @param corpus table -- the corpus
|
--- The `cycle_cost` + `gp0_contrib` fields are populated from `metadata[c.name]` (computed by `compute_components_metadata` against the original `MipsAtomComp_` body).
|
||||||
|
--- @param corpus table -- the corpus
|
||||||
--- @param src SourceFile
|
--- @param src SourceFile
|
||||||
--- @param components Component[]
|
--- @param components Component[]
|
||||||
local function update_canonical_components(corpus, src, components)
|
--- @param metadata table<string, {cycle_cost=integer, gp0_contrib=integer}>
|
||||||
|
local function update_canonical_components(corpus, src, components, metadata)
|
||||||
local rel_path = src.path:gsub("\\", "/")
|
local rel_path = src.path:gsub("\\", "/")
|
||||||
for _, c in ipairs(components) do
|
for _, c in ipairs(components) do
|
||||||
-- Keyed by bare name (e.g. `yield`, `load_tri_indices`).
|
-- Keyed by bare name (e.g. `yield`, `load_tri_indices`).
|
||||||
-- The atoms_source_map pass looks up components by bare name from the corpus;
|
-- The atoms_source_map pass looks up components by bare name from the corpus;
|
||||||
-- `mac_` prefix lives at the call-site identifier and is stripped before lookup.
|
-- `mac_` prefix lives at the call-site identifier and is stripped before lookup.
|
||||||
|
local m = metadata and metadata[c.name] or nil
|
||||||
if corpus.components[c.name] == nil then
|
if corpus.components[c.name] == nil then
|
||||||
corpus.components[c.name] = {
|
corpus.components[c.name] = {
|
||||||
name = c.name,
|
name = c.name,
|
||||||
line = c.line,
|
line = c.line,
|
||||||
path = rel_path,
|
path = rel_path,
|
||||||
kind = c.kind or "comp_bare",
|
kind = c.kind or "comp_bare",
|
||||||
debug_skip = c.debug_skip == true,
|
debug_skip = c.debug_skip == true,
|
||||||
|
cycle_cost = m and m.cycle_cost or nil,
|
||||||
|
gp0_contrib = m and m.gp0_contrib or nil,
|
||||||
}
|
}
|
||||||
else
|
else
|
||||||
-- A second declaration of the same bare name: record a typed collision so static-analysis + the report can surface it.
|
-- A second declaration of the same bare name: record a typed collision so static-analysis + the report can surface it.
|
||||||
-- Identical-shape declarations (same path + line) reuse the first-wins entry without a collision record.
|
-- Identical-shape declarations (same path + line) reuse the first-wins entry without a collision record.
|
||||||
local existing = corpus.components[c.name]
|
local existing = corpus.components[c.name]
|
||||||
if existing.path ~= rel_path or existing.line ~= c.line then
|
if existing.path ~= rel_path or existing.line ~= c.line then
|
||||||
local kind = c.kind or "comp_bare"
|
local kind = c.kind or "comp_bare"
|
||||||
local first_kind = existing.kind or "comp_bare"
|
local first_kind = existing.kind or "comp_bare"
|
||||||
corpus.collisions[#corpus.collisions + 1] = {
|
corpus.collisions[#corpus.collisions + 1] = {
|
||||||
kind = "component",
|
kind = "component",
|
||||||
@@ -624,21 +743,39 @@ function M.run(ctx)
|
|||||||
-- * `corpus.component_body_index[name]` — body / line_of / source index
|
-- * `corpus.component_body_index[name]` — body / line_of / source index
|
||||||
-- The pass writes to the corpus only; consumers read from the corpus directly.
|
-- The pass writes to the corpus only; consumers read from the corpus directly.
|
||||||
|
|
||||||
for _, src in ipairs(corpus.source_order) do
|
-- Per-directory aggregation: every source in the same directory contributes to one `gen/macs.h`.
|
||||||
-- project_components reads from src.scan + does backward lookups on src.text
|
-- The directory itself is the namespace. `corpus.sources_by_dir` preserves source-order within each bucket (matches `corpus.source_order`).
|
||||||
local components = project_components(src.text, src.scan)
|
local sources_by_dir = corpus.sources_by_dir or duffle.group_sources_by_dir(corpus.source_order)
|
||||||
if #components > 0 then
|
for dir, sources in pairs(sources_by_dir) do
|
||||||
-- Compute all component word counts once per source.
|
-- Aggregate components from every source in this directory.
|
||||||
-- Use `corpus.word_counts` so the recursive lookup sees both authored-metadata entries
|
-- `project_components` returns nil for sources with no `MipsAtomComp_` declarations; we skip those.
|
||||||
-- (loaded by word_count_eval.run) AND same-source component entries (populated earlier in this loop by `update_canonical_word_counts`).
|
local aggregated_components = {}
|
||||||
local counts = count_all_components(components, corpus.word_counts)
|
local metadata_per_source = {}
|
||||||
local macs_path = emit_component_macros_h(ctx, src, components, counts)
|
for _, src in ipairs(sources) do
|
||||||
|
local per_source = project_components(src.text, src.scan) or {}
|
||||||
|
for _, c in ipairs(per_source) do
|
||||||
|
aggregated_components[#aggregated_components + 1] = c
|
||||||
|
end
|
||||||
|
if #per_source > 0 then
|
||||||
|
metadata_per_source[src] = compute_components_metadata(per_source, duffle.INSTRUCTION_LATENCY)
|
||||||
|
end
|
||||||
|
end
|
||||||
|
if #aggregated_components > 0 then
|
||||||
|
-- Compute word counts across the aggregated set. `corpus.word_counts` carries the
|
||||||
|
-- same-source + prior-directory entries so the recursive lookup sees both.
|
||||||
|
local counts = count_all_components(aggregated_components, corpus.word_counts)
|
||||||
|
local macs_path = emit_component_macros_h(ctx, dir, sources, aggregated_components, counts)
|
||||||
if macs_path then
|
if macs_path then
|
||||||
outputs[#outputs + 1] = { macs_h = macs_path }
|
outputs[#outputs + 1] = { macs_h = macs_path }
|
||||||
-- Populate the projections AFTER disk emission (so the byte-identical `.macs.h` contract is preserved before any current-count mutation).
|
-- Populate the projections AFTER disk emission (byte-identical `.macs.h` contract).
|
||||||
update_canonical_word_counts(corpus, components, counts)
|
update_canonical_word_counts(corpus, aggregated_components, counts)
|
||||||
update_canonical_components(corpus, src, components)
|
for _, src in ipairs(sources) do
|
||||||
update_canonical_component_body_index(corpus, src, components, src.scan)
|
local per_source = project_components(src.text, src.scan) or {}
|
||||||
|
if #per_source > 0 then
|
||||||
|
update_canonical_components(corpus, src, per_source, metadata_per_source[src])
|
||||||
|
update_canonical_component_body_index(corpus, src, per_source, src.scan)
|
||||||
|
end
|
||||||
|
end
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
|
|||||||
+178
-143
@@ -71,9 +71,11 @@ local DW_LNE_set_address = DWARF_LINE_OPS.DW_LNE_set_address
|
|||||||
local DW_RLE_end_of_list = DWARF5_RNGLISTS.end_of_list
|
local DW_RLE_end_of_list = DWARF5_RNGLISTS.end_of_list
|
||||||
local DW_RLE_start_length = DWARF5_RNGLISTS.start_length
|
local DW_RLE_start_length = DWARF5_RNGLISTS.start_length
|
||||||
|
|
||||||
-- File index 11 in the existing main line unit is hello_gte_tape.c.
|
-- File-index lookup for the existing main line unit (Unit 2).
|
||||||
-- The injector extends that unit rather than appending an unreferenced unit.
|
-- Populated at pass start by `init_file_index_lookup(elf_path)` from the runtime ELF (see `elf_dwarf.read_line_unit_file_table`).
|
||||||
local ATOM_SOURCE_FILE_INDEX = 11
|
local _file_index_by_basename = nil -- [basename] = 1-based line-table file index
|
||||||
|
local _file_path_by_index = nil -- [1-based index] = full source path (diagnostics / future consumers)
|
||||||
|
local _default_atom_source_index = nil -- any valid index used in opaque-row fallbacks
|
||||||
|
|
||||||
-- RR_<R_Name> debug-visible variables come from the merged register_alias_registry filtered to aliases whose code is a valid MIPS GPR 0..31
|
-- RR_<R_Name> debug-visible variables come from the merged register_alias_registry filtered to aliases whose code is a valid MIPS GPR 0..31
|
||||||
-- (see collect_per_source_registries + by_alias in build_inserted_children).
|
-- (see collect_per_source_registries + by_alias in build_inserted_children).
|
||||||
@@ -98,16 +100,15 @@ local ABBREV_INLINED_SUBROUTINE = 0x6C -- 108: DW_TAG_inlined_subroutine with
|
|||||||
-- (each field transitions from tape memory to GPR at load_pc + 8 = MIPS I load-delay slot boundary).
|
-- (each field transitions from tape memory to GPR at load_pc + 8 = MIPS I load-delay slot boundary).
|
||||||
local ABBREV_BIND_VAR_LOCLIST = 0x6D -- 109: DW_TAG_variable no children + DW_AT_type = ref4 + DW_AT_location = sec_offset
|
local ABBREV_BIND_VAR_LOCLIST = 0x6D -- 109: DW_TAG_variable no children + DW_AT_type = ref4 + DW_AT_location = sec_offset
|
||||||
-- Typed-view pointer_type (for the synthetic V4_S2* / V3_S2* / U4* / void* chains).
|
-- Typed-view pointer_type (for the synthetic V4_S2* / V3_S2* / U4* / void* chains).
|
||||||
-- MUST be a fresh abbrev code in the appended table — emitting uleb128(9) collides with GCC's
|
-- MUST be a fresh abbrev code in the appended table — emitting uleb128(9) collides with GCC's existing abbrev 9
|
||||||
-- existing abbrev 9 (a pointer_type that carries DW_AT_byte_size + DW_AT_type), so gdb misparses
|
-- (a pointer_type that carries DW_AT_byte_size + DW_AT_type), so gdb misparses our 4-byte ref4 as (byte_size, type[0..2]) and lands the cursor mid-attribute.
|
||||||
-- our 4-byte ref4 as (byte_size, type[0..2]) and lands the cursor mid-attribute.
|
|
||||||
local ABBREV_TYPED_VIEW_POINTER = 0x6E -- 110: DW_TAG_pointer_type no children + DW_AT_type = ref4 (typed-view / U4 / void chain)
|
local ABBREV_TYPED_VIEW_POINTER = 0x6E -- 110: DW_TAG_pointer_type no children + DW_AT_type = ref4 (typed-view / U4 / void chain)
|
||||||
|
|
||||||
-- DWARF5 §7.7.3 loclist opcodes.
|
-- DWARF5 §7.7.3 loclist opcodes.
|
||||||
local DW_LLE_end_of_list = 0x00
|
local DW_LLE_end_of_list = 0x00
|
||||||
local DW_LLE_start_length = 0x08
|
local DW_LLE_start_length = 0x08
|
||||||
local DW_OP_reg0 = 0x50 -- base reg op; regN = 0x50 + N
|
local DW_OP_reg0 = 0x50 -- base reg op; regN = 0x50 + N
|
||||||
local DW_OP_breg0 = 0x70 -- base breg op; bregN = 0x70 + N (SLEB offset)
|
local DW_OP_breg0 = 0x70 -- base breg op; bregN = 0x70 + N (SLEB offset)
|
||||||
local DW_OP_piece = 0x93
|
local DW_OP_piece = 0x93
|
||||||
local MIPS_LOAD_DELAY_BYTES = 0x08 -- 1 load word + 1 BD-slot word
|
local MIPS_LOAD_DELAY_BYTES = 0x08 -- 1 load word + 1 BD-slot word
|
||||||
|
|
||||||
@@ -153,44 +154,66 @@ local DW_AT_inline = 0x20 -- DWARF5 §7.7.1: DW_AT_inline (used by a
|
|||||||
local DW_AT_decl_file = 0x3A -- DWARF5 §7.7.1: DW_AT_decl_file (1-based file index into the CU's file table)
|
local DW_AT_decl_file = 0x3A -- DWARF5 §7.7.1: DW_AT_decl_file (1-based file index into the CU's file table)
|
||||||
local DW_AT_decl_line = 0x3B -- DWARF5 §7.7.1: DW_AT_decl_line
|
local DW_AT_decl_line = 0x3B -- DWARF5 §7.7.1: DW_AT_decl_line
|
||||||
|
|
||||||
-- File index lookup table for the existing main line unit (Unit 2).
|
-- Replaced the hardcoded `ATOM_SOURCE_FILE_INDEX = 11` and the `PROVENANCE_BASENAME_TO_FILE_INDEX` table below with a runtime lookup
|
||||||
-- Provenance paths come back with mixed slashes; we normalize to basename and look up against the line unit's actual file table.
|
-- (`init_file_index_lookup` + `resolve_provenance_file_index`) that reads the actual `.debug_line` file table from the post-link ELF.
|
||||||
-- Current scope has two provenance basenames: hello_gte_tape.c (the atom's call site) and lottes_tape.h (the component definition).
|
|
||||||
-- Both live in the existing gcc-generated line unit; their 1-based indices are stable across rebuilds because the include order
|
--- Populate the module-level file-index lookup table from the `.debug_line` section of the post-link ELF pointed at by `elf_path`.
|
||||||
-- in code/gte_hello/hello_gte.c determines the unit's file table.
|
--- This MUST be called exactly once at pass start (from `M.run`) before any `resolve_provenance_file_index` invocation;
|
||||||
-- gcc only adds a file to the line table when it has actual line-number entries;
|
--- downstream callers handle a nil table as "no file info available; fall back to errors".
|
||||||
-- headers that are pure macros/typedefs (dsl.h, memory.h, math.h, mips.h, gp.h, gte.h, etc.) never appear.
|
---
|
||||||
-- lottes_tape.h is the FIRST include that emits line entries (MipsAtomComp_ declarations), so it is the FIRST entry after the primary file.
|
--- The lookup uses `elf_dwarf.read_line_unit_file_table` (which parses both DWARF3 and DWARF5 line-program units —
|
||||||
local PROVENANCE_BASENAME_TO_FILE_INDEX = {
|
--- the crt0.s assembler-side DWARF5 unit may emit non-standard form codes for paths and is intentionally skipped).
|
||||||
["hello_gte_tape.c"] = ATOM_SOURCE_FILE_INDEX, -- = 11
|
--- @param elf_path string|nil
|
||||||
["lottes_tape.h"] = 2,
|
local function init_file_index_lookup(elf_path)
|
||||||
}
|
if not elf_path or elf_path == "" then return end
|
||||||
|
local b2i, _basenames, paths = elf_dwarf.read_line_unit_file_table(elf_path)
|
||||||
|
if type(b2i) ~= "table" or type(paths) ~= "table" then
|
||||||
|
io.stderr:write("[dwarf_injection] read_line_unit_file_table returned no file table for: " .. tostring(elf_path) .. "\n")
|
||||||
|
return
|
||||||
|
end
|
||||||
|
_file_index_by_basename = b2i
|
||||||
|
_file_path_by_index = paths
|
||||||
|
-- Pick any valid index for the opaque-row fallbacks at lines 466 + 570
|
||||||
|
-- (both sites legitimately want "any file index"; gdb resolves whatever index we emit to whatever that file's line happens to be).
|
||||||
|
for idx in pairs(paths) do
|
||||||
|
_default_atom_source_index = idx
|
||||||
|
break
|
||||||
|
end
|
||||||
|
end
|
||||||
|
|
||||||
--- Resolve an absolute provenance path to the line-unit file index used by the emitting line program.
|
--- Resolve an absolute provenance path to the line-unit file index used by the emitting line program.
|
||||||
--- Normalizes mixed `/` and `\` separators to a basename and looks it up against the known file table.
|
--- Normalizes mixed `/` and `\` separators to a basename and looks it up against the runtime-computed file table populated by `init_file_index_lookup`.
|
||||||
---
|
---
|
||||||
--- Fails loudly on an unknown provenance basename: adding a new component source file requires extending
|
--- Returns 0 (the DWARF `set_file(0)` "no file change" sentinel) when the basename is not in the file table.
|
||||||
--- `PROVENANCE_BASENAME_TO_FILE_INDEX` so the line-program emission contract stays explicit.
|
--- This is a normal occurrence: the compiler only adds a file to the `.debug_line` file table when the file has line-numbered content (i.e., code).
|
||||||
--- Silent fallback to ATOM_SOURCE_FILE_INDEX would mask the new-file case by misattributing component rows to the atom's source file.
|
--- Files containing only static-array data (e.g. `MipsAtomComp_` declarations in `gp.atom.c`, `psyq.atom.c`, `pad.atom.c` — the OT-tag inserts, etc.) produce no line numbers,
|
||||||
--- @param path string -- absolute provenance path (e.g. "C:/.../lottes_thttps://www.youtube.com/watch?v=ORM4yLkdKx8ape.h" or "C:\\...\\lottes_tape.h")
|
--- so gcc omits them from the file table.
|
||||||
--- @return integer -- 1-based line-unit file index
|
--- The DWARF emitter then keeps the previous line-program file state instead of pointing at a file that has no entries to walk.
|
||||||
|
--- A stderr warning is emitted per-miss so the user can audit which files the compiler dropped.
|
||||||
|
--- @param path string -- absolute provenance path (mixed slashes accepted)
|
||||||
|
--- @return integer -- 1-based line-unit file index, or 0 on miss (DWARF no-change sentinel)
|
||||||
local function resolve_provenance_file_index(path)
|
local function resolve_provenance_file_index(path)
|
||||||
|
if _file_index_by_basename == nil then
|
||||||
|
error("[dwarf_injection] resolve_provenance_file_index called before init_file_index_lookup. Is M.run being entered correctly (with --elf)?")
|
||||||
|
end
|
||||||
if path == nil or path == "" then
|
if path == nil or path == "" then
|
||||||
error("[dwarf_injection] resolve_provenance_file_index: empty path")
|
error("[dwarf_injection] resolve_provenance_file_index: empty path")
|
||||||
end
|
end
|
||||||
-- Normalize backslashes → forward slashes (paths arrive with mixed separators from the provenance file: forward slashes from Lua's io.lines;
|
-- Normalize backslashes → forward slashes (paths arrive with mixed separators from the provenance file).
|
||||||
-- backslashes if the input ever round-trips through Windows shell expansion).
|
|
||||||
local normalized = path:gsub("\\", "/")
|
local normalized = path:gsub("\\", "/")
|
||||||
-- Take the last path component (the basename).
|
-- Take the last path component (the basename).
|
||||||
local basename = normalized:match("([^/]+)$") or normalized
|
local basename = normalized:match("([^/]+)$") or normalized
|
||||||
local idx = PROVENANCE_BASENAME_TO_FILE_INDEX[basename]
|
local idx = _file_index_by_basename[basename]
|
||||||
if idx == nil then
|
if idx ~= nil then return idx end
|
||||||
error(string.format(
|
-- Last-resort exact-path match (handles paths that don't reduce to a known basename).
|
||||||
"[dwarf_injection] resolve_provenance_file_index: unknown provenance basename '%s' (from '%s'). "
|
for i, p in pairs(_file_path_by_index) do
|
||||||
.. "Extend PROVENANCE_BASENAME_TO_FILE_INDEX in passes/dwarf_injection.lua.",
|
if p and p:gsub("\\", "/") == normalized then return i end
|
||||||
basename, path))
|
|
||||||
end
|
end
|
||||||
return idx
|
-- File is in the corpus but gcc omitted it from the .debug_line file table (data-only content).
|
||||||
|
-- Return 0 = DWARF `set_file(0)` no-change sentinel so the line program keeps its prior file state.
|
||||||
|
io.stderr:write(string.format("[dwarf_injection] line-table miss: '%s' (basename '%s') not in .debug_line file table; "
|
||||||
|
.. "falling back to set_file(0)\n", path, basename))
|
||||||
|
return 0
|
||||||
end
|
end
|
||||||
|
|
||||||
local DW_FORM_addr = 0x01
|
local DW_FORM_addr = 0x01
|
||||||
@@ -205,7 +228,6 @@ local DW_FORM_sec_offset = 0x17 -- 4-byte section-relative offset (into .d
|
|||||||
|
|
||||||
-- DW_OP_reg0 + DW_OP_piece are declared above (lines 114-116) alongside the other DWARF5 §7.7.3 loclist opcodes.
|
-- DW_OP_reg0 + DW_OP_piece are declared above (lines 114-116) alongside the other DWARF5 §7.7.3 loclist opcodes.
|
||||||
|
|
||||||
|
|
||||||
local DW_ATE_unsigned = 0x07 -- DWARF5 §7.8.1: DW_ATE_unsigned (used for U4 base type)
|
local DW_ATE_unsigned = 0x07 -- DWARF5 §7.8.1: DW_ATE_unsigned (used for U4 base type)
|
||||||
|
|
||||||
-- (DW_LANG_Mips_Assembler = 0x8001 was used in the, but we want this CU to look like a C TU so VSCode's Variables pane treats it as code.)
|
-- (DW_LANG_Mips_Assembler = 0x8001 was used in the, but we want this CU to look like a C TU so VSCode's Variables pane treats it as code.)
|
||||||
@@ -425,9 +447,9 @@ end
|
|||||||
--- Statement-state rules:
|
--- Statement-state rules:
|
||||||
--- * A marked whole atom emits one opaque is_stmt=false range row and no nested component rows; its subprogram symbol/range remains available.
|
--- * A marked whole atom emits one opaque is_stmt=false range row and no nested component rows; its subprogram symbol/range remains available.
|
||||||
--- * Per-row policy at every other PC:
|
--- * Per-row policy at every other PC:
|
||||||
--- - Call-site row of any invocation's first word: is_stmt = true (unconditional; `want_call = true`).
|
--- - Call-site row of any invocation's first word: is_stmt = true (unconditional; `want_call = true`).
|
||||||
--- - Body row of any invocation (first or subsequent): is_stmt = not inv.debug_skip (`want_body = not inv.debug_skip`).
|
--- - Body row of any invocation (first or subsequent): is_stmt = not inv.debug_skip (`want_body = not inv.debug_skip`).
|
||||||
--- - RAW word (no containing invocation): is_stmt = true (unconditional).
|
--- - RAW word (no containing invocation): is_stmt = true (unconditional).
|
||||||
--- * The previous per-word `marked_idx` ancestor walk and the GDB 12 zero-instruction-prologue duplicate row at atom entry are DELETED; the new
|
--- * The previous per-word `marked_idx` ancestor walk and the GDB 12 zero-instruction-prologue duplicate row at atom entry are DELETED; the new
|
||||||
--- first-word emission IS the entry statement.
|
--- first-word emission IS the entry statement.
|
||||||
--- * Whole-atom suppression wins over component markers; no nested inversion.
|
--- * Whole-atom suppression wins over component markers; no nested inversion.
|
||||||
@@ -461,7 +483,7 @@ local function build_atom_sequence(atom)
|
|||||||
if atom.debug_skip then
|
if atom.debug_skip then
|
||||||
return table.concat({
|
return table.concat({
|
||||||
set_address(atom.addr),
|
set_address(atom.addr),
|
||||||
set_file(ATOM_SOURCE_FILE_INDEX),
|
set_file(resolve_provenance_file_index(atom.src_path)),
|
||||||
advance_line(atom.entries[1].line - 1),
|
advance_line(atom.entries[1].line - 1),
|
||||||
negate_stmt(),
|
negate_stmt(),
|
||||||
copy_op(),
|
copy_op(),
|
||||||
@@ -508,10 +530,9 @@ local function build_atom_sequence(atom)
|
|||||||
-- * If the invocation's body has any NESTED invocations (parent_id == top_inv.id), the body's
|
-- * If the invocation's body has any NESTED invocations (parent_id == top_inv.id), the body's
|
||||||
-- first content is the call_line of the earliest nested invocation (by start_pos).
|
-- first content is the call_line of the earliest nested invocation (by start_pos).
|
||||||
-- * Otherwise (only RAW words in the body), it's the line of the first raw word = body_lines[1].
|
-- * Otherwise (only RAW words in the body), it's the line of the first raw word = body_lines[1].
|
||||||
-- This is the value the multi-row PC's body_lines[1] row must reference for source-order display:
|
-- This is the value the multi-row PC's body_lines[1] row must reference for source-order display: `anc.body_lines[1]` is the line of the FIRST WORD
|
||||||
-- `anc.body_lines[1]` is the line of the FIRST WORD (which for an outer whose body starts with a
|
-- (which for an outer whose body starts with a nested expansion is inside the inner's expansion = wrong for display purposes);
|
||||||
-- nested expansion is inside the inner's expansion = wrong for display purposes); `anc.body_first_line`
|
-- `anc.body_first_line` is the body's first content line in the parent's source (= correct for display).
|
||||||
-- is the body's first content line in the parent's source (= correct for display).
|
|
||||||
local body_first_line_of = {}
|
local body_first_line_of = {}
|
||||||
for _, top_inv in ipairs(invs) do
|
for _, top_inv in ipairs(invs) do
|
||||||
local earliest_nested_call_line = nil
|
local earliest_nested_call_line = nil
|
||||||
@@ -565,7 +586,7 @@ local function build_atom_sequence(atom)
|
|||||||
parts[#parts + 1] = copy_op()
|
parts[#parts + 1] = copy_op()
|
||||||
end
|
end
|
||||||
|
|
||||||
local call_file_idx = ATOM_SOURCE_FILE_INDEX
|
local call_file_idx = resolve_provenance_file_index(atom.src_path)
|
||||||
|
|
||||||
-- --- Atom entry (idx 1) -------------------------------------------------
|
-- --- Atom entry (idx 1) -------------------------------------------------
|
||||||
local entry_1 = atom.entries[1]
|
local entry_1 = atom.entries[1]
|
||||||
@@ -574,13 +595,11 @@ local function build_atom_sequence(atom)
|
|||||||
-- If atom entry 1 starts inside an invocation, walk the ancestry and emit a call-site row + (when applicable)
|
-- If atom entry 1 starts inside an invocation, walk the ancestry and emit a call-site row + (when applicable)
|
||||||
-- a body_lines[1] row for every active ancestor. For a non-nested invocation this is just the one pair;
|
-- a body_lines[1] row for every active ancestor. For a non-nested invocation this is just the one pair;
|
||||||
-- for nested invocations this emits the outer call-site + body_lines[1] rows BEFORE the inner pair so the debugger displays
|
-- for nested invocations this emits the outer call-site + body_lines[1] rows BEFORE the inner pair so the debugger displays
|
||||||
-- the outer body line at the inner's first word
|
-- the outer body line at the inner's first word (PROBLEM B fix).
|
||||||
-- (PROBLEM B fix).
|
|
||||||
--
|
--
|
||||||
-- A marked OUTERMOST ancestor's body_lines[1] row is suppressed at this PC (the existing full-skip
|
-- A marked OUTERMOST ancestor's body_lines[1] row is suppressed at this PC (the existing full-skip contract is preserved for the marked outer range);
|
||||||
-- contract is preserved for the marked outer range); its call-site row IS still emitted as a
|
-- Its call-site row IS still emitted as a statement.
|
||||||
-- statement. Marked INNER ancestors always emit their body_lines[1] row with is_stmt=false
|
-- Marked INNER ancestors always emit their body_lines[1] row with is_stmt=false (the per-invocation `want_body = not inv.debug_skip` predicate).
|
||||||
-- (the per-invocation `want_body = not inv.debug_skip` predicate).
|
|
||||||
if #entry_1_ancestry == 0 then
|
if #entry_1_ancestry == 0 then
|
||||||
-- RAW word at atom entry: single call-site row, always a statement target.
|
-- RAW word at atom entry: single call-site row, always a statement target.
|
||||||
emit_row(call_file_idx, entry_1.line, true)
|
emit_row(call_file_idx, entry_1.line, true)
|
||||||
@@ -588,15 +607,12 @@ local function build_atom_sequence(atom)
|
|||||||
-- Atom starts in an invocation. Walk the ancestry outermost-first.
|
-- Atom starts in an invocation. Walk the ancestry outermost-first.
|
||||||
-- Each ancestor emits one call-site row (statement) and one body_lines[1] row
|
-- Each ancestor emits one call-site row (statement) and one body_lines[1] row
|
||||||
-- (statement iff unmarked; suppressed for marked outermost).
|
-- (statement iff unmarked; suppressed for marked outermost).
|
||||||
-- The body_lines[1] row references body_first_line_of[anc.id] (= the body's first content
|
-- The body_lines[1] row references body_first_line_of[anc.id] (= the body's first content line in the parent's source),
|
||||||
-- line in the parent's source), NOT anc.body_lines[1] (= the line of the first WORD,
|
-- NOT anc.body_lines[1] (= the line of the first WORD, which is wrong when the outer's body starts with a nested call).
|
||||||
-- which is wrong when the outer's body starts with a nested call).
|
|
||||||
for ai, anc in ipairs(entry_1_ancestry) do
|
for ai, anc in ipairs(entry_1_ancestry) do
|
||||||
assert(anc.body_lines, "missing body_lines: emitter did not run emission-model")
|
assert(anc.body_lines, "missing body_lines: emitter did not run emission-model")
|
||||||
assert(anc.body_lines[1] ~= nil
|
assert(anc.body_lines[1] ~= nil, "dwarf_injection: body_lines[1] missing on first-word entry for inv=" .. tostring(anc.component_name))
|
||||||
, "dwarf_injection: body_lines[1] missing on first-word entry for inv=" .. tostring(anc.component_name))
|
assert(anc.call_path and anc.call_path ~= "", "dwarf_injection: inv.call_path is missing on invocation " .. tostring(anc.component_name) .. "; emitter did not run emission-model.")
|
||||||
assert(anc.call_path and anc.call_path ~= ""
|
|
||||||
, "dwarf_injection: inv.call_path is missing on invocation " .. tostring(anc.component_name) .. "; emitter did not run emission-model.")
|
|
||||||
emit_row(resolve_provenance_file_index(anc.call_path), anc.call_line, true)
|
emit_row(resolve_provenance_file_index(anc.call_path), anc.call_line, true)
|
||||||
local is_outermost = (ai == 1)
|
local is_outermost = (ai == 1)
|
||||||
if not (is_outermost and anc.debug_skip) then
|
if not (is_outermost and anc.debug_skip) then
|
||||||
@@ -615,29 +631,23 @@ local function build_atom_sequence(atom)
|
|||||||
|
|
||||||
if inv and idx == inv.start_pos + 1 then
|
if inv and idx == inv.start_pos + 1 then
|
||||||
-- First word of the innermost active invocation (PROBLEM B fix — nested-display rule).
|
-- First word of the innermost active invocation (PROBLEM B fix — nested-display rule).
|
||||||
-- Walk the active ancestry outermost-first; for each ancestor emit a call-site row
|
-- Walk the active ancestry outermost-first; for each ancestor emit a call-site row (statement) + a body_lines[1] row.
|
||||||
-- (statement) + a body_lines[1] row. The inner-most invocation's call-site + body pair
|
-- The inner-most invocation's call-site + body pair become the LAST two rows in the sequence.
|
||||||
-- become the LAST two rows in the sequence. Marked outermost ancestors suppress their
|
-- Marked outermost ancestors suppress their body_lines[1] row at this PC (the existing full-skip contract is preserved for the marked outer range);
|
||||||
-- body_lines[1] row at this PC (the existing full-skip contract is preserved for the
|
-- all OTHER ancestors emit body_lines[1] with is_stmt = not debug_skip.
|
||||||
-- marked outer range); all OTHER ancestors emit body_lines[1] with is_stmt = not debug_skip.
|
|
||||||
--
|
--
|
||||||
-- This re-emits the outer ancestor's call-site + body rows at the inner's first word PC
|
-- This re-emits the outer ancestor's call-site + body rows at the inner's first word PC
|
||||||
-- for debugger context: source-level stepping now shows the outer body line (not the
|
-- for debugger context: source-level stepping now shows the outer body line (not the inner body line) when stepping into the inner. PROBLEM B fix.
|
||||||
-- inner body line) when stepping into the inner. PROBLEM B fix.
|
-- The body_lines[1] row references body_first_line_of[anc.id] (= the body's first content line in the parent's source),
|
||||||
-- The body_lines[1] row references body_first_line_of[anc.id] (= the body's first content
|
-- NOT anc.body_lines[1] (= the line of the first WORD, which is wrong when the outer's body starts with a nested call:
|
||||||
-- line in the parent's source), NOT anc.body_lines[1] (= the line of the first WORD,
|
-- gdb 12.1 picks the displayed line as the LAST row at the same PC in byte-stream order,
|
||||||
-- which is wrong when the outer's body starts with a nested call: gdb 12.1 picks the
|
-- so the disc=1 row's value matters for what's shown when stepping into the nested case).
|
||||||
-- displayed line as the LAST row at the same PC in byte-stream order, so the disc=1 row's
|
|
||||||
-- value matters for what's shown when stepping into the nested case).
|
|
||||||
local ancestry = ancestry_idx[idx]
|
local ancestry = ancestry_idx[idx]
|
||||||
for ai, anc in ipairs(ancestry) do
|
for ai, anc in ipairs(ancestry) do
|
||||||
assert(anc.body_lines, "missing body_lines: emitter did not run emission-model")
|
assert(anc.body_lines, "missing body_lines: emitter did not run emission-model")
|
||||||
assert(anc.body_lines[1] ~= nil
|
assert(anc.body_lines[1] ~= nil, string.format("missing body_lines[1] for inv=%s start_pos=%d len=%d", anc.component_name, anc.start_pos, #(anc.body_lines or {})))
|
||||||
, string.format("missing body_lines[1] for inv=%s start_pos=%d len=%d",
|
assert(anc.call_path and anc.call_path ~= "", "dwarf_injection: inv.call_path is missing on invocation " .. tostring(anc.component_name) .. "; emitter did not run emission-model.")
|
||||||
anc.component_name, anc.start_pos, #(anc.body_lines or {})))
|
emit_row(resolve_provenance_file_index(anc.call_path), anc.call_line, true)
|
||||||
assert(anc.call_path and anc.call_path ~= ""
|
|
||||||
, "dwarf_injection: inv.call_path is missing on invocation " .. tostring(anc.component_name) .. "; emitter did not run emission-model.")
|
|
||||||
emit_row(resolve_provenance_file_index(anc.call_path), anc.call_line, true)
|
|
||||||
local is_outermost = (ai == 1)
|
local is_outermost = (ai == 1)
|
||||||
if not (is_outermost and anc.debug_skip) then
|
if not (is_outermost and anc.debug_skip) then
|
||||||
emit_row(resolve_provenance_file_index(anc.def_path), body_first_line_of[anc.id] or anc.body_lines[1], not anc.debug_skip)
|
emit_row(resolve_provenance_file_index(anc.def_path), body_first_line_of[anc.id] or anc.body_lines[1], not anc.debug_skip)
|
||||||
@@ -647,16 +657,13 @@ local function build_atom_sequence(atom)
|
|||||||
-- Subsequent body word of the innermost active invocation: `body_lines[k]` is indexed by the 1-based offset of this word inside the invocation.
|
-- Subsequent body word of the innermost active invocation: `body_lines[k]` is indexed by the 1-based offset of this word inside the invocation.
|
||||||
-- Both `idx` (1-based DWARF entry index) and `inv.start_pos` (0-based emitted-word position stamped at `emit_invoke_begin`) come from the same
|
-- Both `idx` (1-based DWARF entry index) and `inv.start_pos` (0-based emitted-word position stamped at `emit_invoke_begin`) come from the same
|
||||||
-- monotonic counter, so `idx - inv.start_pos` is exactly the 1-based k (the first word of the invocation has `idx == inv.start_pos + 1`, hence `k == 1`).
|
-- monotonic counter, so `idx - inv.start_pos` is exactly the 1-based k (the first word of the invocation has `idx == inv.start_pos + 1`, hence `k == 1`).
|
||||||
-- atom_dbg_step_ux_20260725: `want_body = not inv.debug_skip`. The previous `want = not marked_idx[idx]`
|
-- atom_dbg_step_ux_20260725: `want_body = not inv.debug_skip`.
|
||||||
-- (which suppressed ALL body rows when any ancestor was marked) is replaced by the per-invocation
|
-- The previous `want = not marked_idx[idx]` (which suppressed ALL body rows when any ancestor was marked) is replaced by the per-invocation predicate.
|
||||||
-- predicate. Marked invocations emit non-statement body rows at every body word; unmarked
|
-- Marked invocations emit non-statement body rows at every body word; unmarked invocations emit statement body rows.
|
||||||
-- invocations emit statement body rows.
|
|
||||||
assert(inv.body_lines, "missing body_lines: emitter did not run emission-model")
|
assert(inv.body_lines, "missing body_lines: emitter did not run emission-model")
|
||||||
local words_into = idx - inv.start_pos
|
local words_into = idx - inv.start_pos
|
||||||
assert(inv.body_lines[words_into] ~= nil
|
assert(inv.body_lines[words_into] ~= nil, string.format("missing body_lines[%d] for inv=%s start_pos=%d len=%d idx=%d", words_into, inv.component_name, inv.start_pos, #(inv.body_lines or {}), idx))
|
||||||
, string.format("missing body_lines[%d] for inv=%s start_pos=%d len=%d idx=%d",
|
emit_row(resolve_provenance_file_index(inv.def_path), inv.body_lines[words_into], not inv.debug_skip)
|
||||||
words_into, inv.component_name, inv.start_pos, #(inv.body_lines or {}), idx))
|
|
||||||
emit_row(resolve_provenance_file_index(inv.def_path), inv.body_lines[words_into], not inv.debug_skip)
|
|
||||||
else
|
else
|
||||||
-- RAW word: single call-site row, always a statement target (the word itself is unmarked).
|
-- RAW word: single call-site row, always a statement target (the word itself is unmarked).
|
||||||
emit_row(call_file_idx, entry.line, true)
|
emit_row(call_file_idx, entry.line, true)
|
||||||
@@ -696,15 +703,17 @@ end
|
|||||||
--- `{comp_name, call_file, call_line, comp_file, comp_line, start_pos, end_pos, body_lines, debug_skip}`. `body_lines[k]`
|
--- `{comp_name, call_file, call_line, comp_file, comp_line, start_pos, end_pos, body_lines, debug_skip}`. `body_lines[k]`
|
||||||
--- is the k-th word's source line within the component body.
|
--- is the k-th word's source line within the component body.
|
||||||
---
|
---
|
||||||
--- @param corpus table -- the corpus from `ctx.shared.corpus`
|
--- @param corpus table -- the corpus from `ctx.shared.corpus`
|
||||||
--- @param addrs table -- ELF symbols keyed by atom name from `elf_dwarf.read_nm`
|
--- @param addrs table -- ELF symbols keyed by atom name from `elf_dwarf.read_nm`
|
||||||
--- @return table[] -- list of {name, addr, size_bytes, words, entries, invocations, debug_skip?}
|
--- @return table[] -- list of {name, addr, size_bytes, words, entries, invocations, debug_skip?}
|
||||||
local function build_atom_table(corpus, addrs)
|
local function build_atom_table(corpus, addrs)
|
||||||
-- Cross-ref: keep only atoms present in BOTH the nm symbol table AND `corpus.atoms_by_name`. Output is sorted by ascending addr.
|
-- Cross-ref: keep only atoms present in BOTH the nm symbol table AND `corpus.atoms_by_name`. Output is sorted by ascending addr.
|
||||||
local atoms_by_name = corpus.atoms_by_name or {}
|
local atoms_by_name = corpus.atoms_by_name or {}
|
||||||
|
|
||||||
-- Per-atom ingest. Returns nil if the atom is absent from the corpus; the caller skips it via the `if atom then ...` guard.
|
-- Per-atom ingest. Returns nil if the atom is absent from the corpus; the caller skips it via the `if atom then ...` guard.
|
||||||
local function ingest_atom(name, info)
|
-- `src_path` is the absolute source path that declared this atom; the build_atom_table iteration below threads `src.path` through.
|
||||||
|
-- This is consumed by `build_atom_sequence::set_file(...)` for opaque-row fallbacks + raw-word rows (atoms where no invocation ancestry exists).
|
||||||
|
local function ingest_atom(name, info, src_path)
|
||||||
local atom_record = atoms_by_name[name]
|
local atom_record = atoms_by_name[name]
|
||||||
if not atom_record then return nil end
|
if not atom_record then return nil end
|
||||||
|
|
||||||
@@ -712,8 +721,8 @@ local function build_atom_table(corpus, addrs)
|
|||||||
local word_events = paths.word_events or {}
|
local word_events = paths.word_events or {}
|
||||||
local invocations_proj = paths.invocations or {}
|
local invocations_proj = paths.invocations or {}
|
||||||
-- Build the dense entries list from `word_events`.
|
-- Build the dense entries list from `word_events`.
|
||||||
-- `word_events[i].i` = the 0-based `.word` position
|
-- `word_events[i].i` = the 0-based `.word` position
|
||||||
-- `call_line` = the root atom's physical source line for that word (stamped by emission_model)
|
-- `call_line` = the root atom's physical source line for that word (stamped by emission_model)
|
||||||
local entries = {}
|
local entries = {}
|
||||||
for idx, ev in ipairs(word_events) do
|
for idx, ev in ipairs(word_events) do
|
||||||
entries[#entries + 1] = {
|
entries[#entries + 1] = {
|
||||||
@@ -730,6 +739,7 @@ local function build_atom_table(corpus, addrs)
|
|||||||
words = #word_events,
|
words = #word_events,
|
||||||
entries = entries,
|
entries = entries,
|
||||||
debug_skip = atom_record.debug_skip == true,
|
debug_skip = atom_record.debug_skip == true,
|
||||||
|
src_path = src_path or "",
|
||||||
}
|
}
|
||||||
|
|
||||||
-- Consume invocation records from `atom.paths.invocations`. It is the single producer of per-invocation body_lines, per-invocation debug_skip,
|
-- Consume invocation records from `atom.paths.invocations`. It is the single producer of per-invocation body_lines, per-invocation debug_skip,
|
||||||
@@ -753,9 +763,25 @@ local function build_atom_table(corpus, addrs)
|
|||||||
end
|
end
|
||||||
|
|
||||||
local out = {}
|
local out = {}
|
||||||
for name, info in pairs(addrs) do
|
-- Walk every source's atom list (which preserves source order + per-source src_path).
|
||||||
local atom = ingest_atom(name, info)
|
-- Cross-ref with the nm symbol table; atoms absent from `addrs` are skipped
|
||||||
if atom then out[#out + 1] = atom end
|
-- (an atom declared in source but not emitted as a symbol is a metaprogram or atom-info bug, not a source-correlation bug — emit_no_emit would catch it upstream).
|
||||||
|
for _, src in ipairs((corpus and corpus.source_order) or {}) do
|
||||||
|
local src_path = src.path or ""
|
||||||
|
for _, atom_rec in ipairs(((src.scan or {}).atoms) or {}) do
|
||||||
|
local info = addrs[atom_rec.name or atom_rec.raw_name]
|
||||||
|
if info then
|
||||||
|
local atom = ingest_atom(atom_rec.name or atom_rec.raw_name, info, src_path)
|
||||||
|
if atom then out[#out + 1] = atom end
|
||||||
|
end
|
||||||
|
end
|
||||||
|
for _, atom_rec in ipairs(((src.scan or {}).raw_atoms) or {}) do
|
||||||
|
local info = addrs[atom_rec.name or atom_rec.raw_name]
|
||||||
|
if info then
|
||||||
|
local atom = ingest_atom(atom_rec.name or atom_rec.raw_name, info, src_path)
|
||||||
|
if atom then out[#out + 1] = atom end
|
||||||
|
end
|
||||||
|
end
|
||||||
end
|
end
|
||||||
table.sort(out, function(a, b) return a.addr < b.addr end)
|
table.sort(out, function(a, b) return a.addr < b.addr end)
|
||||||
return out
|
return out
|
||||||
@@ -800,12 +826,14 @@ end
|
|||||||
--- load_word(R_FaceCursor, R_TapePtr, O_(Binds_CubeTri,FaceCursor)),
|
--- load_word(R_FaceCursor, R_TapePtr, O_(Binds_CubeTri,FaceCursor)),
|
||||||
--- ...
|
--- ...
|
||||||
---
|
---
|
||||||
|
--- Also matches `load_half` / `load_half_u` / `load_byte` / `load_byte_u` (any MIPS load instruction with `(R_<reg>, R_<base>, O_(<Binds_X>, FieldName))` shape).
|
||||||
|
--- Every field's `byte_size` + `offset` determine which load to emit; this function only records the (reg, field) pair.
|
||||||
|
---
|
||||||
--- The GPR for each `R_<reg>` is looked up in the merged register_alias_registry; aliases absent from the registry
|
--- The GPR for each `R_<reg>` is looked up in the merged register_alias_registry; aliases absent from the registry
|
||||||
--- (no `atom_reg` opt-in) are silently skipped — the resulting rbind record will be incomplete and the atom will fail to bind a usable piece chain.
|
--- (no `atom_reg` opt-in) are silently skipped — the resulting rbind record will be incomplete and the atom will fail to bind a usable piece chain.
|
||||||
--- This is intentional: silently falling back to a hardcoded GPR would mask the missing opt-in.
|
--- This is intentional: silently falling back to a hardcoded GPR would mask the missing opt-in.
|
||||||
---
|
---
|
||||||
--- Pre-tokenized: `body_tokens` is the scan-source pass's pre-split list of top-level
|
--- Pre-tokenized: `body_tokens` is the scan-source pass's pre-split list of top-level statements (each entry is a single `load_*` call or other statement).
|
||||||
--- statements (each entry is a single `load_word(...)` call or other statement).
|
|
||||||
--- @param body_tokens table[] -- the atom's pre-tokenized body statements (from atom.body_tokens)
|
--- @param body_tokens table[] -- the atom's pre-tokenized body statements (from atom.body_tokens)
|
||||||
--- @param binds_name string -- expected Binds_X name (skip pairs with mismatching binds)
|
--- @param binds_name string -- expected Binds_X name (skip pairs with mismatching binds)
|
||||||
--- @param registries table -- merged registries from collect_per_source_registries
|
--- @param registries table -- merged registries from collect_per_source_registries
|
||||||
@@ -813,14 +841,18 @@ end
|
|||||||
local function parse_body_load_pairs(body_tokens, binds_name, registries)
|
local function parse_body_load_pairs(body_tokens, binds_name, registries)
|
||||||
local pairs = {}
|
local pairs = {}
|
||||||
local reg_index_by_name = (registries and registries.register_alias_registry) or {}
|
local reg_index_by_name = (registries and registries.register_alias_registry) or {}
|
||||||
|
-- One regex that matches any of: load_word, load_half, load_half_u, load_byte, load_byte_u, gte_lw, gte_lwc2.
|
||||||
|
-- The captured ident is `kind`; `inner` holds the parens body for arg parsing.
|
||||||
|
local load_pattern = "^(load_word|load_half|load_half_u|load_byte|load_byte_u|gte_lw|gte_lwc2)%s*%((.*)%)$"
|
||||||
for _, t in ipairs(body_tokens or {}) do
|
for _, t in ipairs(body_tokens or {}) do
|
||||||
local tok = duffle.trim(t.tok or "")
|
local tok = duffle.trim(t.tok or "")
|
||||||
-- Match "load_word(...)" — the entire call is one body_tokens entry.
|
local kind, inner = tok:match(load_pattern)
|
||||||
local inner = tok:match("^load_word%s*%((.*)%)$")
|
if kind then
|
||||||
if inner then
|
|
||||||
local args = duffle.split_top_level_commas(inner)
|
local args = duffle.split_top_level_commas(inner)
|
||||||
-- Expected shape: (R_<reg>, R_TapePtr, O_(Binds_<X>, FieldName))
|
-- Expected shape for an rbind piece-chain load: (R_<reg>, R_TapePtr, O_(Binds_<X>, FieldName))
|
||||||
if #args >= 3 then
|
-- The second arg MUST be R_TapePtr — loads from other bases (e.g. `load_byte_u(R_RawStatus, R_PadRaw, 0)`)
|
||||||
|
-- are field-derivative loads that read already-bound tape values; they're NOT a new piece-chain.
|
||||||
|
if #args >= 3 and duffle.trim(args[2]) == "R_TapePtr" then
|
||||||
local reg_name = duffle.trim(args[1])
|
local reg_name = duffle.trim(args[1])
|
||||||
local third_arg = duffle.trim(args[3])
|
local third_arg = duffle.trim(args[3])
|
||||||
-- Match O_(Binds_<X>, FieldName)
|
-- Match O_(Binds_<X>, FieldName)
|
||||||
@@ -839,9 +871,7 @@ local function parse_body_load_pairs(body_tokens, binds_name, registries)
|
|||||||
end
|
end
|
||||||
|
|
||||||
--- Collect every rbind atom + the matching Binds_X struct + (reg, field) pairs.
|
--- Collect every rbind atom + the matching Binds_X struct + (reg, field) pairs.
|
||||||
---
|
|
||||||
--- Inputs come from the dep-closed `scan-source` pass (the per-source `src.scan` payload is preserved on each `corpus.source_order` entry).
|
--- Inputs come from the dep-closed `scan-source` pass (the per-source `src.scan` payload is preserved on each `corpus.source_order` entry).
|
||||||
---
|
|
||||||
--- Returns:
|
--- Returns:
|
||||||
--- rbind_atoms = {[atom_name] = {binds, fields, regs, byte_size, info_line}}
|
--- rbind_atoms = {[atom_name] = {binds, fields, regs, byte_size, info_line}}
|
||||||
--- rbind_structs = {[binds_name] = {byte_size, fields, atom_names}}
|
--- rbind_structs = {[binds_name] = {byte_size, fields, atom_names}}
|
||||||
@@ -886,7 +916,7 @@ local function parse_rbind_atoms(corpus, atom_table, registries)
|
|||||||
local body_tokens_by_atom = {}
|
local body_tokens_by_atom = {}
|
||||||
for _, src in ipairs((corpus and corpus.source_order) or {}) do
|
for _, src in ipairs((corpus and corpus.source_order) or {}) do
|
||||||
local scan = src.scan
|
local scan = src.scan
|
||||||
if scan then
|
if scan then
|
||||||
for _, atom in ipairs(scan.atoms or {}) do
|
for _, atom in ipairs(scan.atoms or {}) do
|
||||||
body_tokens_by_atom[atom.name] = atom.body_tokens
|
body_tokens_by_atom[atom.name] = atom.body_tokens
|
||||||
end
|
end
|
||||||
@@ -905,8 +935,8 @@ local function parse_rbind_atoms(corpus, atom_table, registries)
|
|||||||
|
|
||||||
for atom_name, ai in pairs(ai_by_atom) do
|
for atom_name, ai in pairs(ai_by_atom) do
|
||||||
if ai.binds then
|
if ai.binds then
|
||||||
local struct = rbind_structs[ai.binds]
|
local struct = rbind_structs[ai.binds]
|
||||||
local body_toks = body_tokens_by_atom[atom_name]
|
local body_toks = body_tokens_by_atom[atom_name]
|
||||||
if struct and body_toks then
|
if struct and body_toks then
|
||||||
local pairs = parse_body_load_pairs(body_toks, ai.binds, registries)
|
local pairs = parse_body_load_pairs(body_toks, ai.binds, registries)
|
||||||
if #pairs > 0 then
|
if #pairs > 0 then
|
||||||
@@ -941,7 +971,8 @@ end
|
|||||||
--- (the final unit, referenced by the main CU's DW_AT_stmt_list).
|
--- (the final unit, referenced by the main CU's DW_AT_stmt_list).
|
||||||
---
|
---
|
||||||
--- This builder extends the main compilation unit.
|
--- This builder extends the main compilation unit.
|
||||||
--- A detached synthetic line unit has no DW_AT_stmt_list referencing it, so gdb ignored it (a previous experiment); byte 13 is the first special opcode, not the extended-opcode marker.
|
--- A detached synthetic line unit has no DW_AT_stmt_list referencing it, so gdb ignored it (a previous experiment);
|
||||||
|
--- byte 13 is the first special opcode, not the extended-opcode marker.
|
||||||
--- The existing final unit already contains hello_gte_tape.c as file index 11 and ends with a valid end_sequence.
|
--- The existing final unit already contains hello_gte_tape.c as file index 11 and ends with a valid end_sequence.
|
||||||
--- We preserve its bytes, append independent atom sequences, and increase only that unit's DWARF32 unit_length.
|
--- We preserve its bytes, append independent atom sequences, and increase only that unit's DWARF32 unit_length.
|
||||||
--- @param existing string -- existing section bytes, byte-for-byte
|
--- @param existing string -- existing section bytes, byte-for-byte
|
||||||
@@ -952,9 +983,7 @@ local function build_dwarf_line_section(existing, atom_table)
|
|||||||
|
|
||||||
-- Build the sequences.
|
-- Build the sequences.
|
||||||
local sequences = {}
|
local sequences = {}
|
||||||
for _, atom in ipairs(atom_table) do
|
for _, atom in ipairs(atom_table) do sequences[#sequences + 1] = build_atom_sequence(atom) end
|
||||||
sequences[#sequences + 1] = build_atom_sequence(atom)
|
|
||||||
end
|
|
||||||
local appended = table.concat(sequences)
|
local appended = table.concat(sequences)
|
||||||
|
|
||||||
-- Walk DWARF32 line units and retain the final unit's bounds.
|
-- Walk DWARF32 line units and retain the final unit's bounds.
|
||||||
@@ -962,7 +991,7 @@ local function build_dwarf_line_section(existing, atom_table)
|
|||||||
local unit_pos, last_pos, last_length, last_end = 0, nil, nil, nil
|
local unit_pos, last_pos, last_length, last_end = 0, nil, nil, nil
|
||||||
while unit_pos < #existing do
|
while unit_pos < #existing do
|
||||||
if unit_pos + 4 > #existing then return existing end
|
if unit_pos + 4 > #existing then return existing end
|
||||||
local unit_length = elf_dwarf.read_u32_le(existing, unit_pos)
|
local unit_length = elf_dwarf.read_u32_le(existing, unit_pos)
|
||||||
if unit_length == elf_dwarf.ELF32.dw_dwarf32_terminator then return existing end
|
if unit_length == elf_dwarf.ELF32.dw_dwarf32_terminator then return existing end
|
||||||
local unit_end_excl = unit_pos + 4 + unit_length
|
local unit_end_excl = unit_pos + 4 + unit_length
|
||||||
if unit_end_excl > #existing then return existing end
|
if unit_end_excl > #existing then return existing end
|
||||||
@@ -1488,13 +1517,12 @@ end
|
|||||||
--- DW_AT_location = piece-chain (DW_FORM_exprloc)
|
--- DW_AT_location = piece-chain (DW_FORM_exprloc)
|
||||||
--- DW_AT_type = ref4 → structure_type DIE
|
--- DW_AT_type = ref4 → structure_type DIE
|
||||||
---
|
---
|
||||||
--- This function does NOT emit the final 0 byte (root terminator). build_debug_info_section splices bytes ahead of the root terminator
|
--- This function does NOT emit the final 0 byte (root terminator).
|
||||||
--- and preserves existing DIE bytes exactly.
|
--- build_debug_info_section splices bytes ahead of the root terminator and preserves existing DIE bytes exactly.
|
||||||
---
|
---
|
||||||
--- ref4 basis: DW_FORM_ref4 is CU-relative (offset from the first byte of the CU header).
|
--- ref4 basis: DW_FORM_ref4 is CU-relative (offset from the first byte of the CU header).
|
||||||
--- Our inserted DIEs live in the main CU, so every ref4 = (target section offset) - main_cu_offset.
|
--- Our inserted DIEs live in the main CU, so every ref4 = (target section offset) - main_cu_offset.
|
||||||
--- Per-die section offsets are tracked via the running `next_offset` cursor (= section offset of the NEXT byte to emit).
|
--- Per-die section offsets are tracked via the running `next_offset` cursor (= section offset of the NEXT byte to emit).
|
||||||
---
|
|
||||||
--- @param main_cu_offset integer -- 0-based section offset of the main CU's unit_length field
|
--- @param main_cu_offset integer -- 0-based section offset of the main CU's unit_length field
|
||||||
--- @param main_cu_end_excl integer -- 0-based section offset of the first byte AFTER the main CU
|
--- @param main_cu_end_excl integer -- 0-based section offset of the first byte AFTER the main CU
|
||||||
--- @param atom_table table[] -- atoms (with atom.rbind set if rbind; atom.invocations set if mac_X(...) calls)
|
--- @param atom_table table[] -- atoms (with atom.rbind set if rbind; atom.invocations set if mac_X(...) calls)
|
||||||
@@ -1614,6 +1642,8 @@ local function build_inserted_children(main_cu_offset, main_cu_end_excl, atom_ta
|
|||||||
--
|
--
|
||||||
-- The table is small + explicit — the prototype principle treats the typed-view struct layout as data, not derived state.
|
-- The table is small + explicit — the prototype principle treats the typed-view struct layout as data, not derived state.
|
||||||
local STRUCT_MEMBER_TABLE = {
|
local STRUCT_MEMBER_TABLE = {
|
||||||
|
-- TODO(Ed): This hardcoding is brittle...
|
||||||
|
-- TODO(Ed): Better to just have a table for the fundamental types in duffle/dsl.h, we can derive the rest via typedef parsing...
|
||||||
-- 2-element signed short vector (rare; placeholder for future use).
|
-- 2-element signed short vector (rare; placeholder for future use).
|
||||||
V2_S2 = { byte_size = 4, members = {
|
V2_S2 = { byte_size = 4, members = {
|
||||||
{ name = "x", offset = 0, byte_size = 2 },
|
{ name = "x", offset = 0, byte_size = 2 },
|
||||||
@@ -1866,12 +1896,13 @@ local function build_inserted_children(main_cu_offset, main_cu_end_excl, atom_ta
|
|||||||
end
|
end
|
||||||
local atom_view = (registries.atom_views or {})[atom.name]
|
local atom_view = (registries.atom_views or {})[atom.name]
|
||||||
-- Build the atom-name lookup table once (cheap; O(atom_table)) so step (b) and step (d) can resolve rbind_atom names.
|
-- Build the atom-name lookup table once (cheap; O(atom_table)) so step (b) and step (d) can resolve rbind_atom names.
|
||||||
|
-- TODO(Ed): Bad assignment?
|
||||||
local atom_by_name = atom_by_name or (function() local m = {}; for _, a in ipairs(atom_table) do if a.name then m[a.name] = a end end; return m end)()
|
local atom_by_name = atom_by_name or (function() local m = {}; for _, a in ipairs(atom_table) do if a.name then m[a.name] = a end end; return m end)()
|
||||||
-- step (b) inputs: this atom's `atom_ctx(<rbind_atom>)` (resolved from the registries' atom_ctxs)
|
-- step (b) inputs: this atom's `atom_ctx(<rbind_atom>)` (resolved from the registries' atom_ctxs)
|
||||||
local this_ctx = registries.atom_ctxs and registries.atom_ctxs[atom.name]
|
local this_ctx = registries.atom_ctxs and registries.atom_ctxs[atom.name]
|
||||||
if this_ctx and this_ctx.rbind_atom then
|
if this_ctx and this_ctx.rbind_atom then
|
||||||
local rbind = atom_by_name_global[this_ctx.rbind_atom]
|
local rbind = atom_by_name_global[this_ctx.rbind_atom]
|
||||||
if rbind and rbind.rbind and rbind.rbind.fields then
|
if rbind and rbind.rbind and rbind.rbind.fields then
|
||||||
atom_view_ctx_fields = {}
|
atom_view_ctx_fields = {}
|
||||||
for _, f in ipairs(rbind.rbind.fields) do atom_view_ctx_fields[f.name] = f end
|
for _, f in ipairs(rbind.rbind.fields) do atom_view_ctx_fields[f.name] = f end
|
||||||
if rbind.rbind.regs then
|
if rbind.rbind.regs then
|
||||||
@@ -1891,11 +1922,11 @@ local function build_inserted_children(main_cu_offset, main_cu_end_excl, atom_ta
|
|||||||
end
|
end
|
||||||
if my_phase_label then
|
if my_phase_label then
|
||||||
local group = (registries.atom_phases or {})[my_phase_label]
|
local group = (registries.atom_phases or {})[my_phase_label]
|
||||||
if group and group.atoms then
|
if group and group.atoms then
|
||||||
for _, group_atom_name in ipairs(group.atoms) do
|
for _, group_atom_name in ipairs(group.atoms) do
|
||||||
if group_atom_name ~= atom.name then
|
if group_atom_name ~= atom.name then
|
||||||
local cand = atom_by_name_global[group_atom_name]
|
local cand = atom_by_name_global[group_atom_name]
|
||||||
if cand and cand.rbind and cand.rbind.fields then
|
if cand and cand.rbind and cand.rbind.fields then
|
||||||
atom_view_phase_fields = {}
|
atom_view_phase_fields = {}
|
||||||
for _, f in ipairs(cand.rbind.fields) do atom_view_phase_fields[f.name] = f end
|
for _, f in ipairs(cand.rbind.fields) do atom_view_phase_fields[f.name] = f end
|
||||||
if cand.rbind.regs then
|
if cand.rbind.regs then
|
||||||
@@ -1916,7 +1947,7 @@ local function build_inserted_children(main_cu_offset, main_cu_end_excl, atom_ta
|
|||||||
-- (a) per-atom callsite atom_type(R_X, <T>): most specific; user explicit override for THIS atom only.
|
-- (a) per-atom callsite atom_type(R_X, <T>): most specific; user explicit override for THIS atom only.
|
||||||
function(r_name, alias_code)
|
function(r_name, alias_code)
|
||||||
local override = atom_view and atom_view.reg_type_overrides and atom_view.reg_type_overrides[r_name]
|
local override = atom_view and atom_view.reg_type_overrides and atom_view.reg_type_overrides[r_name]
|
||||||
if override and override.pointer_depth and override.pointer_depth > 0 then
|
if override and override.pointer_depth and override.pointer_depth > 0 then
|
||||||
return type_chain_offsets[override.type_name .. "|" .. override.pointer_depth]
|
return type_chain_offsets[override.type_name .. "|" .. override.pointer_depth]
|
||||||
end
|
end
|
||||||
end,
|
end,
|
||||||
@@ -1924,7 +1955,7 @@ local function build_inserted_children(main_cu_offset, main_cu_end_excl, atom_ta
|
|||||||
function(r_name, alias_code)
|
function(r_name, alias_code)
|
||||||
local ctx_field_name = reg_to_field_ctx and reg_to_field_ctx[alias_code]
|
local ctx_field_name = reg_to_field_ctx and reg_to_field_ctx[alias_code]
|
||||||
local ctx_f = ctx_field_name and atom_view_ctx_fields and atom_view_ctx_fields[ctx_field_name]
|
local ctx_f = ctx_field_name and atom_view_ctx_fields and atom_view_ctx_fields[ctx_field_name]
|
||||||
if ctx_f and ctx_f.pointer_depth and ctx_f.pointer_depth > 0 then
|
if ctx_f and ctx_f.pointer_depth and ctx_f.pointer_depth > 0 then
|
||||||
return type_chain_offsets[ctx_f.type_name .. "|" .. ctx_f.pointer_depth]
|
return type_chain_offsets[ctx_f.type_name .. "|" .. ctx_f.pointer_depth]
|
||||||
end
|
end
|
||||||
end,
|
end,
|
||||||
@@ -1932,7 +1963,7 @@ local function build_inserted_children(main_cu_offset, main_cu_end_excl, atom_ta
|
|||||||
function(r_name, alias_code)
|
function(r_name, alias_code)
|
||||||
local field_name = reg_to_field[alias_code]
|
local field_name = reg_to_field[alias_code]
|
||||||
local f = field_name and field_type_by_name[field_name]
|
local f = field_name and field_type_by_name[field_name]
|
||||||
if f and f.pointer_depth and f.pointer_depth > 0 then
|
if f and f.pointer_depth and f.pointer_depth > 0 then
|
||||||
return type_chain_offsets[f.type_name .. "|" .. f.pointer_depth]
|
return type_chain_offsets[f.type_name .. "|" .. f.pointer_depth]
|
||||||
end
|
end
|
||||||
end,
|
end,
|
||||||
@@ -1940,12 +1971,13 @@ local function build_inserted_children(main_cu_offset, main_cu_end_excl, atom_ta
|
|||||||
function(r_name, alias_code)
|
function(r_name, alias_code)
|
||||||
local phase_field_name = reg_to_field_phase and reg_to_field_phase[alias_code]
|
local phase_field_name = reg_to_field_phase and reg_to_field_phase[alias_code]
|
||||||
local phase_f = phase_field_name and atom_view_phase_fields and atom_view_phase_fields[phase_field_name]
|
local phase_f = phase_field_name and atom_view_phase_fields and atom_view_phase_fields[phase_field_name]
|
||||||
if phase_f and phase_f.pointer_depth and phase_f.pointer_depth > 0 then
|
if phase_f and phase_f.pointer_depth and phase_f.pointer_depth > 0 then
|
||||||
return type_chain_offsets[phase_f.type_name .. "|" .. phase_f.pointer_depth]
|
return type_chain_offsets[phase_f.type_name .. "|" .. phase_f.pointer_depth]
|
||||||
end
|
end
|
||||||
end,
|
end,
|
||||||
-- (e) enum-site atom_type(<T>) default on the registry entry.
|
-- (e) enum-site atom_type(<T>) default on the registry entry.
|
||||||
function(r_name, alias_code)
|
function(r_name, alias_code)
|
||||||
|
-- TODO(Ed): Bad definition?
|
||||||
if alias and alias.default_type and alias.default_depth and alias.default_depth > 0 then
|
if alias and alias.default_type and alias.default_depth and alias.default_depth > 0 then
|
||||||
return type_chain_offsets[alias.default_type .. "|" .. alias.default_depth]
|
return type_chain_offsets[alias.default_type .. "|" .. alias.default_depth]
|
||||||
end
|
end
|
||||||
@@ -1954,8 +1986,8 @@ local function build_inserted_children(main_cu_offset, main_cu_end_excl, atom_ta
|
|||||||
|
|
||||||
-- Iterate `by_alias` in sorted order; Lua's pairs() is non-deterministic, so sorting ensures byte-identical DWARF output across builds.
|
-- Iterate `by_alias` in sorted order; Lua's pairs() is non-deterministic, so sorting ensures byte-identical DWARF output across builds.
|
||||||
for _, r_name in ipairs(by_alias_order) do
|
for _, r_name in ipairs(by_alias_order) do
|
||||||
local alias = by_alias[r_name]
|
local alias = by_alias[r_name]
|
||||||
local rr_name = "RR_" .. strip_r_prefix(r_name)
|
local rr_name = "RR_" .. strip_r_prefix(r_name)
|
||||||
local alias_code = alias.code
|
local alias_code = alias.code
|
||||||
emit(uleb128(ABBREV_VARIABLE))
|
emit(uleb128(ABBREV_VARIABLE))
|
||||||
emit(rr_name .. "\0") -- DW_FORM_string (DW_AT_name)
|
emit(rr_name .. "\0") -- DW_FORM_string (DW_AT_name)
|
||||||
@@ -1977,7 +2009,7 @@ local function build_inserted_children(main_cu_offset, main_cu_end_excl, atom_ta
|
|||||||
-- Two PC ranges cover every field: [atom.addr, last_load+8) describes each field as tape memory (DW_OP_bregN + offset) piece,
|
-- Two PC ranges cover every field: [atom.addr, last_load+8) describes each field as tape memory (DW_OP_bregN + offset) piece,
|
||||||
-- and [last_load+8, atom.end) describes each field as a GPR (DW_OP_regN) piece.
|
-- and [last_load+8, atom.end) describes each field as a GPR (DW_OP_regN) piece.
|
||||||
if atom.rbind then
|
if atom.rbind then
|
||||||
local binds_name = atom.rbind.binds
|
local binds_name = atom.rbind.binds
|
||||||
local loclists_offset = loclists_offsets[atom.name] or 0
|
local loclists_offset = loclists_offsets[atom.name] or 0
|
||||||
emit(uleb128(ABBREV_BIND_VAR_LOCLIST))
|
emit(uleb128(ABBREV_BIND_VAR_LOCLIST))
|
||||||
emit("bind_args\0") -- DW_FORM_string (DW_AT_name)
|
emit("bind_args\0") -- DW_FORM_string (DW_AT_name)
|
||||||
@@ -2030,7 +2062,7 @@ end
|
|||||||
---
|
---
|
||||||
--- Fails safely by returning existing sections unchanged if the table walker can't find the table terminator (malformed input).
|
--- Fails safely by returning existing sections unchanged if the table walker can't find the table terminator (malformed input).
|
||||||
---
|
---
|
||||||
--- @param existing string -- existing .debug_abbrev bytes, byte-for-byte
|
--- @param existing string -- existing .debug_abbrev bytes, byte-for-byte
|
||||||
--- @param main_abbrev_offset integer -- 0-based offset into `existing` of the main CU's abbrev table
|
--- @param main_abbrev_offset integer -- 0-based offset into `existing` of the main CU's abbrev table
|
||||||
--- @return string, integer -- (new_abbrev_bytes, offset_where_duplicate_table_starts = #existing)
|
--- @return string, integer -- (new_abbrev_bytes, offset_where_duplicate_table_starts = #existing)
|
||||||
local function build_debug_abbrev_section(existing, main_abbrev_offset)
|
local function build_debug_abbrev_section(existing, main_abbrev_offset)
|
||||||
@@ -2048,7 +2080,7 @@ local function build_debug_abbrev_section(existing, main_abbrev_offset)
|
|||||||
end
|
end
|
||||||
|
|
||||||
--- Build the new .debug_str: existing strings + new strings appended.
|
--- Build the new .debug_str: existing strings + new strings appended.
|
||||||
--- @param existing string -- existing .debug_str bytes, byte-for-byte
|
--- @param existing string -- existing .debug_str bytes, byte-for-byte
|
||||||
--- @param atom_table table[]
|
--- @param atom_table table[]
|
||||||
--- @param registries table -- merged registries from collect_per_source_registries
|
--- @param registries table -- merged registries from collect_per_source_registries
|
||||||
--- @return string -- existing bytes plus the deterministic appended strings
|
--- @return string -- existing bytes plus the deterministic appended strings
|
||||||
@@ -2058,7 +2090,6 @@ local function build_debug_str_section(existing, atom_table, registries)
|
|||||||
end
|
end
|
||||||
|
|
||||||
--- Build the new .debug_info: SPLICE inserted DIEs into the MAIN CU as children.
|
--- Build the new .debug_info: SPLICE inserted DIEs into the MAIN CU as children.
|
||||||
---
|
|
||||||
--- This implementation:
|
--- This implementation:
|
||||||
--- 1. Builds the inserted-children bytes (base_type, struct_types, subprograms with their RR_* + bind_args children) via build_inserted_children.
|
--- 1. Builds the inserted-children bytes (base_type, struct_types, subprograms with their RR_* + bind_args children) via build_inserted_children.
|
||||||
--- 2. Patches the main CU's `unit_length` field to account for the inserted bytes.
|
--- 2. Patches the main CU's `unit_length` field to account for the inserted bytes.
|
||||||
@@ -2068,14 +2099,14 @@ end
|
|||||||
---
|
---
|
||||||
--- The crt CU (everything before main_cu_start) is preserved.
|
--- The crt CU (everything before main_cu_start) is preserved.
|
||||||
|
|
||||||
--- @param existing string -- existing .debug_info section bytes
|
--- @param existing string -- existing .debug_info section bytes
|
||||||
--- @param main_cu_start integer -- 0-based offset of the main CU's unit_length field
|
--- @param main_cu_start integer -- 0-based offset of the main CU's unit_length field
|
||||||
--- @param main_cu_end_excl integer -- 0-based offset of the first byte AFTER the main CU
|
--- @param main_cu_end_excl integer -- 0-based offset of the first byte AFTER the main CU
|
||||||
--- @param new_abbrev_offset integer -- 0-based offset into the new .debug_abbrev of the duplicate main table
|
--- @param new_abbrev_offset integer -- 0-based offset into the new .debug_abbrev of the duplicate main table
|
||||||
--- @param atom_table table[]
|
--- @param atom_table table[]
|
||||||
--- @param rbind_structs table -- {[binds_name] = {bytes, fields, atom_names}}
|
--- @param rbind_structs table -- {[binds_name] = {bytes, fields, atom_names}}
|
||||||
--- @param loclists_offsets table -- {[atom_name] = section-relative offset}
|
--- @param loclists_offsets table -- {[atom_name] = section-relative offset}
|
||||||
--- @param registries table -- merged registries from collect_per_source_registries
|
--- @param registries table -- merged registries from collect_per_source_registries
|
||||||
--- @return string -- the rebuilt .debug_info bytes
|
--- @return string -- the rebuilt .debug_info bytes
|
||||||
local function build_debug_info_section(existing, main_cu_start, main_cu_end_excl, new_abbrev_offset, atom_table, rbind_structs, loclists_offsets, registries)
|
local function build_debug_info_section(existing, main_cu_start, main_cu_end_excl, new_abbrev_offset, atom_table, rbind_structs, loclists_offsets, registries)
|
||||||
-- 1) Build the inserted children bytes (just before the main CU's root terminator).
|
-- 1) Build the inserted children bytes (just before the main CU's root terminator).
|
||||||
@@ -2133,13 +2164,13 @@ local SECTION_WRITERS = {
|
|||||||
-- Write a list of `{name, data}` section records to disk via SECTION_WRITERS.
|
-- Write a list of `{name, data}` section records to disk via SECTION_WRITERS.
|
||||||
-- @param results table[] -- list of `{name=, data=}` records to write
|
-- @param results table[] -- list of `{name=, data=}` records to write
|
||||||
-- @param ctx PassCtx
|
-- @param ctx PassCtx
|
||||||
-- @param basename string -- output file basename (e.g. "hello_gte")
|
-- @param basename string -- output file basename (e.g. "hello_gte")
|
||||||
-- @return table -- list of {name_bin = path} entries to append to M.run's outputs
|
-- @return table -- list of {name_bin = path} entries to append to M.run's outputs
|
||||||
local function write_sections(results, ctx, basename)
|
local function write_sections(results, ctx, basename)
|
||||||
local outputs = {}
|
local outputs = {}
|
||||||
for _, r in ipairs(results) do
|
for _, r in ipairs(results) do
|
||||||
local path = SECTION_WRITERS[r.name](ctx.out_root, basename)
|
local path = SECTION_WRITERS[r.name](ctx.out_root, basename)
|
||||||
local f = io.open(path, "wb")
|
local f = io.open(path, "wb")
|
||||||
if not f then
|
if not f then
|
||||||
io.stderr:write(string.format("[dwarf_injection] failed to open %s for write\n", path))
|
io.stderr:write(string.format("[dwarf_injection] failed to open %s for write\n", path))
|
||||||
else
|
else
|
||||||
@@ -2166,7 +2197,7 @@ function M.run(ctx)
|
|||||||
end
|
end
|
||||||
|
|
||||||
-- Guard: --elf is required.
|
-- Guard: --elf is required.
|
||||||
local elf_path = ctx.flags and ctx.flags.elf_path
|
local elf_path = ctx.flags and ctx.flags.elf_path
|
||||||
if not elf_path or elf_path == "" then
|
if not elf_path or elf_path == "" then
|
||||||
io.stderr:write("[dwarf_injection] --elf flag missing\n")
|
io.stderr:write("[dwarf_injection] --elf flag missing\n")
|
||||||
return { outputs = {}, errors = {}, warnings = {} }
|
return { outputs = {}, errors = {}, warnings = {} }
|
||||||
@@ -2177,7 +2208,8 @@ function M.run(ctx)
|
|||||||
|
|
||||||
-- Read the existing DWARF sections directly (no subprocess; io.open + manual ELF32 section-header walk).
|
-- Read the existing DWARF sections directly (no subprocess; io.open + manual ELF32 section-header walk).
|
||||||
-- We need all 8 sections: .debug_line / .debug_aranges / .debug_rnglists get extended (additional rows appended to the existing unit),
|
-- We need all 8 sections: .debug_line / .debug_aranges / .debug_rnglists get extended (additional rows appended to the existing unit),
|
||||||
-- and .debug_info / .debug_abbrev / .debug_str / .debug_loc / .debug_loclists get spliced (the main CU's unit_length is patched; no new compile unit is appended; .debug_loc/.debug_loclists may not exist in the source ELF so we add-section them on splice).
|
-- and .debug_info / .debug_abbrev / .debug_str / .debug_loc / .debug_loclists get spliced
|
||||||
|
-- (the main CU's unit_length is patched; no new compile unit is appended; .debug_loc/.debug_loclists may not exist in the source ELF so we add-section them on splice).
|
||||||
-- The per-section dispatch is inlined in the writers loop below.
|
-- The per-section dispatch is inlined in the writers loop below.
|
||||||
local existing_sections = elf_dwarf.read_elf_sections(elf_path, {
|
local existing_sections = elf_dwarf.read_elf_sections(elf_path, {
|
||||||
".debug_line", ".debug_aranges", ".debug_rnglists",
|
".debug_line", ".debug_aranges", ".debug_rnglists",
|
||||||
@@ -2186,14 +2218,17 @@ function M.run(ctx)
|
|||||||
-- reading them just returns "" which is the "missing" case the builder handles.
|
-- reading them just returns "" which is the "missing" case the builder handles.
|
||||||
".debug_loc", ".debug_loclists",
|
".debug_loc", ".debug_loclists",
|
||||||
})
|
})
|
||||||
|
-- Resolve the per-file line-table indices from the same .debug_line bytes;
|
||||||
|
-- this MUST run before any atom sequence is emitted (build_atom_sequence below
|
||||||
|
-- calls resolve_provenance_file_index when populating call-site / body rows).
|
||||||
|
init_file_index_lookup(elf_path)
|
||||||
-- Skip state lives in `corpus.atoms_by_name[*].debug_skip` (whole-atom) and `atom.paths.invocations[*].debug_skip` (per-invocation).
|
-- Skip state lives in `corpus.atoms_by_name[*].debug_skip` (whole-atom) and `atom.paths.invocations[*].debug_skip` (per-invocation).
|
||||||
-- `corpus` is the sole canonical source projection.
|
-- `corpus` is the sole canonical source projection.
|
||||||
local corpus = (ctx.shared and ctx.shared.corpus) or {}
|
local corpus = (ctx.shared and ctx.shared.corpus) or {}
|
||||||
local registries = collect_per_source_registries(corpus)
|
local registries = collect_per_source_registries(corpus)
|
||||||
-- Read nm symbols (the ONLY disk-side input to the atom table) and join
|
-- Read nm symbols (the ONLY disk-side input to the atom table) and join them against `corpus.atoms_by_name` + `atom.paths` for word rows + invocation ancestry.
|
||||||
-- them against `corpus.atoms_by_name` + `atom.paths` for word rows + invocation ancestry.
|
|
||||||
-- Disk source-map/provenance text is not consulted (those are diagnostic artifacts; semantic inputs are in memory).
|
-- Disk source-map/provenance text is not consulted (those are diagnostic artifacts; semantic inputs are in memory).
|
||||||
local addrs = elf_dwarf.read_nm(ctx.flags.elf_path)
|
local addrs = elf_dwarf.read_nm(ctx.flags.elf_path)
|
||||||
local atom_table = build_atom_table(corpus, addrs)
|
local atom_table = build_atom_table(corpus, addrs)
|
||||||
|
|
||||||
-- Detect rbind atoms + index Binds_* struct fields from the corpus.
|
-- Detect rbind atoms + index Binds_* struct fields from the corpus.
|
||||||
@@ -2217,7 +2252,7 @@ function M.run(ctx)
|
|||||||
duffle.ensure_dir(ctx.out_root)
|
duffle.ensure_dir(ctx.out_root)
|
||||||
|
|
||||||
-- Step 0: layout validation. Bail out safely if the .debug_info layout doesn't match what we expect (crt CU + DWARF5 main CU + final 0 byte).
|
-- Step 0: layout validation. Bail out safely if the .debug_info layout doesn't match what we expect (crt CU + DWARF5 main CU + final 0 byte).
|
||||||
-- A layout mismatch means the gcc emission changed; the safest response is to leave existing sections unchanged and emit no synthetic data, so the build's debug-info step never silently produces broken DWARF.
|
-- A layout mismatch means the gcc emission changed; the safest response is to leave existing sections unchanged and emit no synthetic data, so the build's debug-info step never silently produces broken DWARF.
|
||||||
local existing_info = existing_sections[".debug_info"] or ""
|
local existing_info = existing_sections[".debug_info"] or ""
|
||||||
local existing_abbrev = existing_sections[".debug_abbrev"] or ""
|
local existing_abbrev = existing_sections[".debug_abbrev"] or ""
|
||||||
local main_cu_start, main_cu_end_excl, main_abbrev_offset = find_main_cu_layout(existing_info)
|
local main_cu_start, main_cu_end_excl, main_abbrev_offset = find_main_cu_layout(existing_info)
|
||||||
@@ -2252,7 +2287,7 @@ function M.run(ctx)
|
|||||||
local new_info = build_debug_info_section(existing_info, main_cu_start, main_cu_end_excl, new_abbrev_offset, atom_table, rbind_structs, loclists_offsets, registries)
|
local new_info = build_debug_info_section(existing_info, main_cu_start, main_cu_end_excl, new_abbrev_offset, atom_table, rbind_structs, loclists_offsets, registries)
|
||||||
|
|
||||||
-- Step 2b: rebuild .debug_str now that we know which RR_<R_Name> entries get emitted.
|
-- Step 2b: rebuild .debug_str now that we know which RR_<R_Name> entries get emitted.
|
||||||
-- This aligns with build_debug_info_section's by_alias loop.
|
-- This aligns with build_debug_info_section's by_alias loop.
|
||||||
local new_str = build_debug_str_section(existing_sections[".debug_str"] or "", atom_table, registries)
|
local new_str = build_debug_str_section(existing_sections[".debug_str"] or "", atom_table, registries)
|
||||||
|
|
||||||
-- Step 3-5: independent sections.
|
-- Step 3-5: independent sections.
|
||||||
|
|||||||
@@ -41,7 +41,6 @@ local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
|||||||
-- Convert the recursive walk's body-relative line numbers into physical source lines once.
|
-- Convert the recursive walk's body-relative line numbers into physical source lines once.
|
||||||
-- The walker builds `line_of` from `body_text` and stamps body-relative line numbers (1..N) into `item.line` and `invocation.call_line`.
|
-- The walker builds `line_of` from `body_text` and stamps body-relative line numbers (1..N) into `item.line` and `invocation.call_line`.
|
||||||
-- This function converts those values to physical source lines at the close site with the forwarded source `line_of` closure.
|
-- This function converts those values to physical source lines at the close site with the forwarded source `line_of` closure.
|
||||||
--
|
|
||||||
-- `call_line` discipline:
|
-- `call_line` discipline:
|
||||||
-- * ROOT invocations (`inv.parent_id == 0`) receive body-relative `call_line` values directly from `M.LineIndex(body_text)` in the walker.
|
-- * ROOT invocations (`inv.parent_id == 0`) receive body-relative `call_line` values directly from `M.LineIndex(body_text)` in the walker.
|
||||||
-- The source `line_of` closure supplies physical lines at the close site, so this function converts each root value exactly once.
|
-- The source `line_of` closure supplies physical lines at the close site, so this function converts each root value exactly once.
|
||||||
@@ -59,10 +58,9 @@ local function stamp_root_provenance(projection, atom_record, src, corpus)
|
|||||||
-- `root_body_line` is the physical source line of the ATOM HEADER byte containing the opening `{`; that byte is one byte BEFORE `atom_record.body_off`.
|
-- `root_body_line` is the physical source line of the ATOM HEADER byte containing the opening `{`; that byte is one byte BEFORE `atom_record.body_off`.
|
||||||
-- The walker assigns line 2 to the body's first content line because line 1 is the trailing `\n` after `{`. Body-text line k therefore maps to `root_body_line + (k - 1)`.
|
-- The walker assigns line 2 to the body's first content line because line 1 is the trailing `\n` after `{`. Body-text line k therefore maps to `root_body_line + (k - 1)`.
|
||||||
-- `body_off - 1` points at the opening `{`, whose line index identifies the header line. `body_off` points after `{` and would shift every word row forward by one line.
|
-- `body_off - 1` points at the opening `{`, whose line index identifies the header line. `body_off` points after `{` and would shift every word row forward by one line.
|
||||||
local root_body_line = root_line_of(atom_record.body_off - 1)
|
local root_body_line = root_line_of(atom_record.body_off - 1) or atom_record.line or 0
|
||||||
or atom_record.line or 0
|
|
||||||
local component_index = corpus.component_body_index or {}
|
local component_index = corpus.component_body_index or {}
|
||||||
local word_items = {}
|
local word_items = {}
|
||||||
|
|
||||||
for _, item in ipairs(projection.items) do
|
for _, item in ipairs(projection.items) do
|
||||||
if item.kind == "word" then word_items[#word_items + 1] = item end
|
if item.kind == "word" then word_items[#word_items + 1] = item end
|
||||||
@@ -102,7 +100,7 @@ local function stamp_root_provenance(projection, atom_record, src, corpus)
|
|||||||
end
|
end
|
||||||
|
|
||||||
-- Normalize `inv.call_line` to a physical source line.
|
-- Normalize `inv.call_line` to a physical source line.
|
||||||
-- * ROOT invocations (`parent_id == 0`) carry body-relative `call_line` values from `M.LineIndex(body_text)`; convert them once with `root_body_line`.
|
-- * ROOT invocations (`parent_id == 0`) carry body-relative `call_line` values from `M.LineIndex(body_text)`; convert them once with `root_body_line`.
|
||||||
-- * INNER invocations (`parent_id ~= 0`) carry physical `call_line` values from the component's `line_of`; retain them unchanged.
|
-- * INNER invocations (`parent_id ~= 0`) carry physical `call_line` values from the component's `line_of`; retain them unchanged.
|
||||||
for _, inv in ipairs(projection.invocations) do
|
for _, inv in ipairs(projection.invocations) do
|
||||||
if inv.parent_id == 0 then
|
if inv.parent_id == 0 then
|
||||||
@@ -114,14 +112,14 @@ local function stamp_root_provenance(projection, atom_record, src, corpus)
|
|||||||
-- `atoms_source_map` and `dwarf_injection` read `inv.body_lines[k]` directly from the invocation record created here.
|
-- `atoms_source_map` and `dwarf_injection` read `inv.body_lines[k]` directly from the invocation record created here.
|
||||||
-- Component words already carry physical `item.line` values from the walker's COMPONENT line index, so `body_line_for` returns them unchanged.
|
-- Component words already carry physical `item.line` values from the walker's COMPONENT line index, so `body_line_for` returns them unchanged.
|
||||||
for _, inv in ipairs(projection.invocations) do
|
for _, inv in ipairs(projection.invocations) do
|
||||||
local sw = inv.start_word
|
local sw = inv.start_word
|
||||||
local ew = inv.end_word
|
local ew = inv.end_word
|
||||||
local bls = {}
|
local bls = {}
|
||||||
for i = sw, ew do
|
for i = sw, ew do
|
||||||
local it = projection.items and projection.items[i]
|
local it = projection.items and projection.items[i]
|
||||||
if it and it.kind == "word" then
|
if it and it.kind == "word" then
|
||||||
local fake_event = { invocation_ids = { inv.id } }
|
local fake_event = { invocation_ids = { inv.id } }
|
||||||
bls[#bls + 1] = body_line_for(fake_event, it) or 0
|
bls[#bls + 1] = body_line_for(fake_event, it) or 0
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
inv.body_lines = bls
|
inv.body_lines = bls
|
||||||
|
|||||||
+96
-59
@@ -3,12 +3,11 @@
|
|||||||
--- Reads the pre-scanned SourceScan payload (produced once upstream by `duffle.scan_source`)
|
--- Reads the pre-scanned SourceScan payload (produced once upstream by `duffle.scan_source`)
|
||||||
--- for `MipsAtom_(name)` and `MipsCode code_<name>` declarations, computes the word offset
|
--- for `MipsAtom_(name)` and `MipsCode code_<name>` declarations, computes the word offset
|
||||||
--- from each `atom_offset(F, T)` marker to its target `atom_label(T)` declaration, and emits
|
--- from each `atom_offset(F, T)` marker to its target `atom_label(T)` declaration, and emits
|
||||||
--- `<dir_basename>.offsets.h` with one `#define _atom_offset_F_T = N` per branch.
|
--- `gen/offsets.h` with one `#define _atom_offset_F_T = N` per branch.
|
||||||
|
--- Per-directory aggregation: every source in the same directory contributes to the same `gen/offsets.h`.
|
||||||
|
--- The directory itself is the namespace; the filename does not repeat the module name.
|
||||||
---
|
---
|
||||||
--- The offset is `target_word - branch_word - 1` (the standard MIPS branch-immediate encoding: branch_offset = relative_pc_in_words - 1).
|
--- The offset is `target_word - branch_word - 1` (the standard MIPS branch-immediate encoding: branch_offset = relative_pc_in_words - 1).
|
||||||
---
|
|
||||||
--- **Conventions**: tabs (1/level), EmmyLua annotations, no regex,
|
|
||||||
--- Lua 5.3 compatible.
|
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Module-scope requires + package.path setup
|
-- Module-scope requires + package.path setup
|
||||||
@@ -16,12 +15,11 @@
|
|||||||
|
|
||||||
-- Bootstrap: same as entry scripts. See `ps1_meta.lua` for the rationale.
|
-- Bootstrap: same as entry scripts. See `ps1_meta.lua` for the rationale.
|
||||||
-- Bootstrap: load `scripts/duffle_paths.lua` (sets package.path + package.cpath).
|
-- Bootstrap: load `scripts/duffle_paths.lua` (sets package.path + package.cpath).
|
||||||
-- Uses `debug.getinfo` to find this file's own directory, so it works
|
-- Uses `debug.getinfo` to find this file's own directory, so it works both standalone and when require'd from the orchestrator.
|
||||||
-- both standalone and when require'd from the orchestrator.
|
|
||||||
-- Bootstrap: load `duffle_paths.lua` via `debug.getinfo(1, "S").source` (works both standalone + when require'd).
|
-- Bootstrap: load `duffle_paths.lua` via `debug.getinfo(1, "S").source` (works both standalone + when require'd).
|
||||||
-- duffle_paths.lua sets package.path then returns `require("duffle")` at the bottom, so the dofile value IS the duffle module.
|
-- duffle_paths.lua sets package.path then returns `require("duffle")` at the bottom, so the dofile value IS the duffle module.
|
||||||
local _bootstrap_dir = debug.getinfo(1, "S").source:match("^@?(.*[/\\])") or "./"
|
local _bootstrap_dir = debug.getinfo(1, "S").source:match("^@?(.*[/\\])") or "./"
|
||||||
local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Constants
|
-- Constants
|
||||||
@@ -39,40 +37,42 @@ local OFFSET_MACRO_COL = 44
|
|||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
--- @class SourceFile
|
--- @class SourceFile
|
||||||
--- @field path string -- absolute path to the source file
|
--- @field path string -- Absolute path to the source file
|
||||||
--- @field text string -- the full source text
|
--- @field text string -- Full source text
|
||||||
--- @field dir string -- the directory containing the source
|
--- @field dir string -- Directory containing the source
|
||||||
--- @field basename string -- filename without extension
|
--- @field basename string -- Filename without extension
|
||||||
--- @field scan table -- pre-scanned SourceScan payload (from duffle.scan_source)
|
--- @field scan table -- Pre-scanned SourceScan payload (from duffle.scan_source)
|
||||||
|
|
||||||
--- @class PassCtx
|
--- @class PassCtx
|
||||||
--- @field shared table -- cross-pass shared state
|
--- @field shared table -- Cross-pass shared state
|
||||||
--- @field shared.corpus table -- canonical corpus projection
|
--- @field shared.corpus table -- Corpus projection
|
||||||
--- @field shared.word_counts table
|
--- @field shared.word_counts table
|
||||||
--- @field out_root string -- output root (e.g. "build/gen")
|
--- @field out_root string -- Output root (e.g. "build/gen")
|
||||||
|
|
||||||
--- @class PassResult
|
--- @class PassResult
|
||||||
--- @field outputs table[] -- {kind=, path=} entries describing emit files
|
--- @field outputs table[] -- {kind=, path=} entries describing emit files
|
||||||
--- @field errors table[] -- {line=, msg=} entries; build-stops
|
--- @field errors table[] -- {line=, msg=} entries; build-stops
|
||||||
--- @field warnings table[] -- {line=, msg=} entries; build-succeeds
|
--- @field warnings table[] -- {line=, msg=} entries; build-succeeds
|
||||||
|
|
||||||
--- @class BranchOffset
|
--- @class BranchOffset
|
||||||
--- @field tag string -- the marker tag (e.g. "F" in `atom_offset(F, T)`)
|
--- @field tag string -- Marker tag (e.g. "F" in `atom_offset(F, T)`)
|
||||||
--- @field target string -- the target label name (e.g. "T" in `atom_offset(F, T)`)
|
--- @field target string -- Target label name (e.g. "T" in `atom_offset(F, T)`)
|
||||||
--- @field branch_word integer -- branch word position within the atom body
|
--- @field branch_word integer -- Branch word position within the atom body
|
||||||
--- @field offset integer -- computed `target_word - branch_word - 1`
|
--- @field offset integer -- Computed per consuming instruction (see `compute_offsets`)
|
||||||
|
--- @field consuming_encoder string|nil -- Instruction consuming the offset (e.g. "branch_le_zero", "jump", "call_addr")
|
||||||
|
--- @field consuming_arg_pos integer|nil -- 1-based arg position within the consuming instruction's arg list
|
||||||
|
|
||||||
--- @class AtomData
|
--- @class AtomData
|
||||||
--- @field name string -- atom name
|
--- @field name string -- Atom name
|
||||||
--- @field total_words integer -- total word count of the atom body
|
--- @field total_words integer -- Total word count of the atom body
|
||||||
--- @field offsets BranchOffset[] -- per-branch offset list
|
--- @field offsets BranchOffset[] -- Per-branch offset list
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Canonical marker projection
|
-- Canonical marker projection
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
-- MARKER_PROJECTORS is the marker-kind data table.
|
-- MARKER_PROJECTORS is the marker-kind data table.
|
||||||
-- The emission-model pass already records marker word positions;
|
-- The emission-model pass already records marker word positions + consuming-instruction context;
|
||||||
-- this pass only projects those records into the label/branch lookup shape needed by offset computation.
|
-- this pass only projects those records into the label/branch lookup shape needed by offset computation.
|
||||||
local MARKER_PROJECTORS = {
|
local MARKER_PROJECTORS = {
|
||||||
label = function(state, marker)
|
label = function(state, marker)
|
||||||
@@ -80,9 +80,11 @@ local MARKER_PROJECTORS = {
|
|||||||
end,
|
end,
|
||||||
offset = function(state, marker)
|
offset = function(state, marker)
|
||||||
state.branches[#state.branches + 1] = {
|
state.branches[#state.branches + 1] = {
|
||||||
tag = marker.name,
|
tag = marker.name,
|
||||||
target = marker.target,
|
target = marker.target,
|
||||||
branch_word = marker.word_index,
|
branch_word = marker.word_index,
|
||||||
|
consuming_encoder = marker.consuming_encoder,
|
||||||
|
consuming_arg_pos = marker.consuming_arg_pos,
|
||||||
}
|
}
|
||||||
end,
|
end,
|
||||||
}
|
}
|
||||||
@@ -95,7 +97,7 @@ local function project_markers(markers)
|
|||||||
local state = { labels = {}, branches = {} }
|
local state = { labels = {}, branches = {} }
|
||||||
for _, marker in ipairs(markers or {}) do
|
for _, marker in ipairs(markers or {}) do
|
||||||
local project = MARKER_PROJECTORS[marker.kind]
|
local project = MARKER_PROJECTORS[marker.kind]
|
||||||
if project then project(state, marker) end
|
if project then project(state, marker) end
|
||||||
end
|
end
|
||||||
return state.labels, state.branches
|
return state.labels, state.branches
|
||||||
end
|
end
|
||||||
@@ -104,8 +106,19 @@ end
|
|||||||
-- Offset computation + header generation
|
-- Offset computation + header generation
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
--- Compute branch offsets as `target_word - branch_word - 1` (the standard MIPS branch-immediate encoding).
|
--- Compute branch offsets per consuming instruction.
|
||||||
--- @param labels table<string, integer>
|
--- Disposition table:
|
||||||
|
--- `branch_*` -> relative offset: `target_word - branch_word - 1` (MIPS branch-immediate encoding).
|
||||||
|
--- `jump` / `call_addr` -> same value as `branch_*` (a relative word offset).
|
||||||
|
--- The duffle headers' `enc_i` macro truncates the value to the immediate-field width (16 bits for branches, 26 bits for jumps).
|
||||||
|
--- For tape-atom bodies within a single module, this works for `j`/`jal` because the linker's symbol resolution produces the correct 26-bit absolute target via standard `j` relocations.
|
||||||
|
--- For cross-module `j`/`jal` (atom body in one module, target in another), the linker emits a `R_MIPS_26` relocation against the lower 26 bits; the upper 4 bits come from the PC of the delay slot following the `j`.
|
||||||
|
--- The metaprogram doesn't know either at compile time, so the emitted value is the relative word offset that the duffle `enc_i` macro places in the immediate field; the toolchain handles the rest.
|
||||||
|
--- `jump_reg` / `call_reg` / `jump_link` -> ERROR. Register-form jumps have no offset field; `atom_offset` is invalid.
|
||||||
|
---
|
||||||
|
--- Top-level `atom_offset(F, T)` markers (where the marker is the entire token — `consuming_encoder` == nil) default to `branch_*` behavior (relative offset).
|
||||||
|
--- This preserves backward compatibility for any top-level marker that may exist outside a control-transfer instruction.
|
||||||
|
--- @param labels table<string, integer>
|
||||||
--- @param branches table[]
|
--- @param branches table[]
|
||||||
--- @return BranchOffset[]
|
--- @return BranchOffset[]
|
||||||
local function compute_offsets(labels, branches)
|
local function compute_offsets(labels, branches)
|
||||||
@@ -115,11 +128,23 @@ local function compute_offsets(labels, branches)
|
|||||||
if not target then
|
if not target then
|
||||||
error("Branch target '" .. br.target .. "' has no atom_label (at word " .. br.branch_word .. ")")
|
error("Branch target '" .. br.target .. "' has no atom_label (at word " .. br.branch_word .. ")")
|
||||||
end
|
end
|
||||||
|
local consuming = br.consuming_encoder
|
||||||
|
local offset
|
||||||
|
if consuming == "jump_reg" or consuming == "call_reg" or consuming == "jump_link" then
|
||||||
|
-- Register-form jumps have no offset field. `atom_offset` cannot be used here.
|
||||||
|
error("atom_offset cannot be used with " .. consuming
|
||||||
|
.. " (register-form jumps have no offset field); at word " .. br.branch_word)
|
||||||
|
end
|
||||||
|
-- All other consuming instructions (including `branch_*`, `jump`, `call_addr`, and nil for top-level markers) use the same relative offset value.
|
||||||
|
-- The MIPS encoding differs per opcode but the duffle `enc_i` macro handles the truncation to the immediate-field width.
|
||||||
|
offset = target - br.branch_word - 1
|
||||||
results[#results + 1] = {
|
results[#results + 1] = {
|
||||||
target = br.target,
|
target = br.target,
|
||||||
tag = br.tag,
|
tag = br.tag,
|
||||||
branch_word = br.branch_word,
|
branch_word = br.branch_word,
|
||||||
offset = target - br.branch_word - 1,
|
offset = offset,
|
||||||
|
consuming_encoder = br.consuming_encoder,
|
||||||
|
consuming_arg_pos = br.consuming_arg_pos,
|
||||||
}
|
}
|
||||||
end
|
end
|
||||||
return results
|
return results
|
||||||
@@ -167,44 +192,48 @@ local function emit_atom_offsets(add, atom)
|
|||||||
add("")
|
add("")
|
||||||
end
|
end
|
||||||
|
|
||||||
--- Generate the per-source .offsets.h header.
|
--- Generate the per-directory .offsets.h header.
|
||||||
--- @param source_path string
|
--- @param dir string -- the absolute source directory
|
||||||
--- @param atoms_data AtomData[]
|
--- @param sources table[] -- sources contributing to this directory (for the header comment)
|
||||||
|
--- @param atoms_data AtomData[]
|
||||||
--- @return string
|
--- @return string
|
||||||
local function generate_header(source_path, atoms_data)
|
local function generate_header(dir, sources, atoms_data)
|
||||||
local basename = duffle.basename_no_ext(source_path)
|
local dir_basename = duffle.basename_no_ext(dir)
|
||||||
|
|
||||||
local lines = {}
|
local lines = {}
|
||||||
local function add(s) lines[#lines + 1] = s end
|
local function add(s) lines[#lines + 1] = s end
|
||||||
|
|
||||||
add("// Auto-generated by ps1_meta.lua (passes/offsets.lua) — DO NOT EDIT")
|
add("// Auto-generated by ps1_meta.lua (passes/offsets.lua) — DO NOT EDIT")
|
||||||
add("// Source: " .. source_path)
|
add("// Directory: " .. dir:gsub("/", "\\") .. "\\")
|
||||||
|
for _, src in ipairs(sources) do
|
||||||
|
add("// source: " .. src.path:gsub("/", "\\"))
|
||||||
|
end
|
||||||
add("#pragma once")
|
add("#pragma once")
|
||||||
add("")
|
add("")
|
||||||
add("#pragma region " .. basename)
|
add("#pragma region " .. dir_basename)
|
||||||
add("")
|
add("")
|
||||||
add("")
|
add("")
|
||||||
for _, atom in ipairs(atoms_data) do
|
for _, atom in ipairs(atoms_data) do
|
||||||
emit_atom_offsets(add, atom)
|
emit_atom_offsets(add, atom)
|
||||||
end
|
end
|
||||||
add("#pragma endregion " .. basename)
|
add("#pragma endregion " .. dir_basename)
|
||||||
add("")
|
add("")
|
||||||
return table.concat(lines, "\n") .. "\n"
|
return table.concat(lines, "\n") .. "\n"
|
||||||
end
|
end
|
||||||
|
|
||||||
local M = {}
|
local M = {}
|
||||||
|
|
||||||
--- (internal) Process one source: render offsets from canonical atom paths.
|
--- (internal) Aggregate atoms from every source in one directory, render the per-directory `offsets.h`.
|
||||||
--- Returns the offsets_h path if a header was written, or nil.
|
--- Returns the offsets_h path if a header was written, or nil.
|
||||||
--- @param ctx PassCtx
|
--- @param ctx PassCtx
|
||||||
--- @param src SourceFile
|
--- @param dir string -- the absolute source directory
|
||||||
|
--- @param sources SourceFile[] -- sources in this directory
|
||||||
--- @return string|nil -- the offsets_h path
|
--- @return string|nil -- the offsets_h path
|
||||||
local function process_source(ctx, src)
|
local function process_directory(ctx, dir, sources)
|
||||||
local atoms_data = {}
|
local atoms_data = {}
|
||||||
local scan = src.scan or {}
|
|
||||||
|
|
||||||
local function append_atom(atom)
|
local function append_atom(atom)
|
||||||
local paths = atom and atom.paths
|
local paths = atom and atom.paths
|
||||||
if not paths then return end
|
if not paths then return end
|
||||||
local labels, branches = project_markers(paths.markers)
|
local labels, branches = project_markers(paths.markers)
|
||||||
atoms_data[#atoms_data + 1] = {
|
atoms_data[#atoms_data + 1] = {
|
||||||
@@ -214,19 +243,22 @@ local function process_source(ctx, src)
|
|||||||
}
|
}
|
||||||
end
|
end
|
||||||
|
|
||||||
for _, atom in ipairs(scan.atoms or {}) do append_atom(atom) end
|
for _, src in ipairs(sources) do
|
||||||
for _, atom in ipairs(scan.raw_atoms or {}) do append_atom(atom) end
|
local scan = src.scan or {}
|
||||||
|
for _, atom in ipairs(scan.atoms or {}) do append_atom(atom) end
|
||||||
|
for _, atom in ipairs(scan.raw_atoms or {}) do append_atom(atom) end
|
||||||
|
end
|
||||||
if #atoms_data == 0 then return nil end
|
if #atoms_data == 0 then return nil end
|
||||||
|
|
||||||
local out_path = src.dir .. "/gen/" .. duffle.basename_no_ext(src.dir) .. ".offsets.h"
|
local out_path = dir .. "/gen/offsets.h"
|
||||||
duffle.ensure_dir(duffle.dirname(out_path))
|
duffle.ensure_dir(duffle.dirname(out_path))
|
||||||
duffle.write_file(out_path, generate_header(src.path:gsub("/", "\\"), atoms_data))
|
duffle.write_file(out_path, generate_header(dir, sources, atoms_data))
|
||||||
return out_path
|
return out_path
|
||||||
end
|
end
|
||||||
|
|
||||||
--- Run the offsets pass.
|
--- Run the offsets pass.
|
||||||
--- For each canonical source, emits a per-module `<dir_basename>.offsets.h`
|
--- For each canonical source-directory, emits a per-directory `gen/offsets.h`
|
||||||
--- containing constants for every marker recorded in atom.paths.
|
--- containing constants for every marker recorded in atom.paths across every source in that directory.
|
||||||
--- @param ctx PassCtx
|
--- @param ctx PassCtx
|
||||||
--- @return PassResult
|
--- @return PassResult
|
||||||
function M.run(ctx)
|
function M.run(ctx)
|
||||||
@@ -235,12 +267,17 @@ function M.run(ctx)
|
|||||||
local warnings = {}
|
local warnings = {}
|
||||||
|
|
||||||
local corpus = ctx.shared and ctx.shared.corpus
|
local corpus = ctx.shared and ctx.shared.corpus
|
||||||
if type(corpus) ~= "table" or type(corpus.source_order) ~= "table" then
|
if type(corpus) ~= "table" then
|
||||||
error("offsets.run requires ctx.shared.corpus.source_order (canonical corpus).", 0)
|
error("offsets.run requires ctx.shared.corpus", 0)
|
||||||
|
end
|
||||||
|
if type(corpus.source_order) ~= "table" then
|
||||||
|
error("offsets.run requires ctx.shared.corpus.source_order.", 0)
|
||||||
end
|
end
|
||||||
|
|
||||||
for _, src in ipairs(corpus.source_order) do
|
-- Per-directory aggregation: every source in the same directory contributes to one `gen/offsets.h`.
|
||||||
local out_path = process_source(ctx, src)
|
local sources_by_dir = corpus.sources_by_dir or duffle.group_sources_by_dir(corpus.source_order)
|
||||||
|
for dir, sources in pairs(sources_by_dir) do
|
||||||
|
local out_path = process_directory(ctx, dir, sources)
|
||||||
if out_path then
|
if out_path then
|
||||||
outputs[#outputs + 1] = { offsets_h = out_path }
|
outputs[#outputs + 1] = { offsets_h = out_path }
|
||||||
end
|
end
|
||||||
|
|||||||
+463
-339
@@ -1,34 +1,34 @@
|
|||||||
--- passes/report.lua — Per-MODULE annotation report renderer +
|
--- passes/report.lua — Per-MODULE annotation report renderer + project-wide summary writer.
|
||||||
--- project-wide summary writer.
|
|
||||||
---
|
---
|
||||||
--- Two output files per build:
|
--- Two output files per build:
|
||||||
--- - `build/gen/<dir_basename>.annotations.txt` — one per source-directory containing atoms; aggregates across all sources in the directory.
|
--- - `build/gen/<dir_basename>.annotations.txt` — one per source-directory containing atoms; aggregates across all sources in the directory.
|
||||||
--- - `build/gen/annotation_validation.txt` — the project summary.
|
--- - `build/gen/annotation_validation.txt` — the project summary.
|
||||||
---
|
---
|
||||||
--- The annotation pass emits `errors.h` files per module and the canonical `corpus.sources_by_dir` projection groups sources by directory.
|
--- The annotation pass emits `errors.h` files per module and the canonical `corpus.sources_by_dir` projection groups sources by directory.
|
||||||
--- This pass iterates the canonical dir projection directly and re-validates each source via `annotation.validate()` to get the detailed per-source results.
|
--- This pass iterates the dir projection directly and re-validates each source via `annotation.validate()` to get the detailed per-source results.
|
||||||
---
|
|
||||||
--- **Conventions**: tabs (1/level), EmmyLua annotations, no regex,
|
|
||||||
--- Lua 5.3 compatible.
|
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Module-scope requires + package.path setup
|
-- Module-scope requires + package.path setup
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
-- Resolve `arg[0]` to an absolute-ish script directory so that `require("duffle")` resolves against `scripts/` regardless of CWD.
|
-- Resolve `arg[0]` to an absolute-ish script directory so that `require("duffle")` resolves against `scripts/` regardless of CWD.
|
||||||
-- Bootstrap: see `ps1_meta.lua` for the rationale.
|
-- Bootstrap: See `ps1_meta.lua` for the rationale.
|
||||||
-- Bootstrap: load `scripts/duffle_paths.lua` (sets package.path + package.cpath).
|
-- Bootstrap: Load `scripts/duffle_paths.lua` (sets package.path + package.cpath).
|
||||||
-- Uses `debug.getinfo` to find this file's own directory, so it works
|
-- Uses `debug.getinfo` to find this file's own directory, so it works both standalone and when require'd from the orchestrator.
|
||||||
-- both standalone and when require'd from the orchestrator.
|
-- Bootstrap: Load `duffle_paths.lua` via `debug.getinfo(1, "S").source` (works both standalone + when require'd).
|
||||||
-- Bootstrap: load `duffle_paths.lua` via `debug.getinfo(1, "S").source` (works both standalone + when require'd).
|
|
||||||
-- duffle_paths.lua sets package.path then returns `require("duffle")` at the bottom, so the dofile value IS the duffle module.
|
-- duffle_paths.lua sets package.path then returns `require("duffle")` at the bottom, so the dofile value IS the duffle module.
|
||||||
local _bootstrap_dir = debug.getinfo(1, "S").source:match("^@?(.*[/\\])") or "./"
|
local _bootstrap_dir = debug.getinfo(1, "S").source:match("^@?(.*[/\\])") or "./"
|
||||||
local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
||||||
|
|
||||||
-- Load the annotation pass so we can re-validate each source against the canonical corpus projection.
|
-- Load the annotation pass so we can re-validate each source against the canonical corpus projection.
|
||||||
-- The annotation pass exposes `M.validate`, which returns the per-source AnnotationResult (atoms / annots / macros / binds / errors / warnings)
|
-- The annotation pass exposes `M.validate`, which returns the per-source AnnotationResult (atoms / annots / macros / binds / errors / warnings)
|
||||||
-- that the report pass renders into the per-module `<dir_basename>.annotations.txt` output.
|
-- that the report pass renders into the per-module `<dir_basename>.annotations.txt` output.
|
||||||
local annotation = dofile(_bootstrap_dir .. "annotation.lua")
|
local annotation = dofile(_bootstrap_dir .. "annotation.lua")
|
||||||
|
|
||||||
|
-- Load atoms_source_map for the `render_source_map` / `render_provenance` module functions (used by `render_module_atoms_md` to produce `<module>.atoms.md` without re-walking source tokens).
|
||||||
|
-- The pass itself emits no per-source files anymore; we only consume the two pure renderers here.
|
||||||
|
-- Defined BEFORE the renderer functions below so their upvalues resolve to this local (not the global `atoms_source_map`, which is nil).
|
||||||
|
local atoms_source_map = dofile(_bootstrap_dir .. "atoms_source_map.lua")
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Constants
|
-- Constants
|
||||||
@@ -36,7 +36,7 @@ local annotation = dofile(_bootstrap_dir .. "annotation.lua")
|
|||||||
|
|
||||||
-- Section separators used in the rendered text reports.
|
-- Section separators used in the rendered text reports.
|
||||||
-- The thin rules are hand-tuned to align with the per-section content width; do not change without also checking the section renderers below.
|
-- The thin rules are hand-tuned to align with the per-section content width; do not change without also checking the section renderers below.
|
||||||
local RULE_THICK = "========================================================"
|
local RULE_THICK = "========================================================"
|
||||||
local SECTION_HEADER_ATOMS = "── Atoms ────────────────────────────────────────────────"
|
local SECTION_HEADER_ATOMS = "── Atoms ────────────────────────────────────────────────"
|
||||||
local SECTION_HEADER_ANNOTS = "── Annotations ──────────────────────────────────────────"
|
local SECTION_HEADER_ANNOTS = "── Annotations ──────────────────────────────────────────"
|
||||||
local SECTION_HEADER_BINDS = "── Binds_* structs ──────────────────────────────────────"
|
local SECTION_HEADER_BINDS = "── Binds_* structs ──────────────────────────────────────"
|
||||||
@@ -44,8 +44,7 @@ local SECTION_HEADER_MACROS = "── Macro word-count declarations ───
|
|||||||
local SECTION_HEADER_ERRORS = "── Errors ──────────────────────────────────────────────"
|
local SECTION_HEADER_ERRORS = "── Errors ──────────────────────────────────────────────"
|
||||||
local SECTION_HEADER_WARNINGS = "── Warnings ────────────────────────────────────────────"
|
local SECTION_HEADER_WARNINGS = "── Warnings ────────────────────────────────────────────"
|
||||||
|
|
||||||
-- Lua pattern that captures the basename (last path segment) of a
|
-- Lua pattern that captures the basename (last path segment) of a forward- or back-slash separated path.
|
||||||
-- forward- or back-slash separated path.
|
|
||||||
local BASENAME_PATTERN = "([^/\\]+)$"
|
local BASENAME_PATTERN = "([^/\\]+)$"
|
||||||
|
|
||||||
-- Debug flag name — set to truthy in `_G` to enable verbose logging.
|
-- Debug flag name — set to truthy in `_G` to enable verbose logging.
|
||||||
@@ -59,83 +58,83 @@ local PASS_NAME = "report"
|
|||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
--- @class SourceFile
|
--- @class SourceFile
|
||||||
--- @field path string -- absolute path to the source file
|
--- @field path string -- Absolute path to the source file
|
||||||
--- @field text string -- the full source text
|
--- @field text string -- Full source text
|
||||||
--- @field dir string -- the directory containing the source
|
--- @field dir string -- Directory containing the source
|
||||||
--- @field basename string -- filename without extension
|
--- @field basename string -- Filename without extension
|
||||||
|
|
||||||
--- @class PassCtx
|
--- @class PassCtx
|
||||||
--- @field sources SourceFile[] -- all source files in the build
|
--- @field sources SourceFile[] -- All source files in the build
|
||||||
--- @field metadata_path string -- path to word_count.metadata.h
|
--- @field metadata_path string -- Path to word_count.metadata.h
|
||||||
--- @field shared table -- cross-pass shared state
|
--- @field shared table -- Cross-pass shared state
|
||||||
--- @field out_root string -- output root (e.g. "build/gen")
|
--- @field out_root string -- Output root (e.g. "build/gen")
|
||||||
--- @field project_root string -- project root (e.g. "code/")
|
--- @field project_root string -- Project root (e.g. "code/")
|
||||||
--- @field upstream table<string, table> -- per-pass upstream outputs
|
--- @field upstream table<string, table> -- Per-pass upstream outputs
|
||||||
--- @field flags table -- CLI flags + per-pass stash
|
--- @field flags table -- CLI flags + per-pass stash
|
||||||
--- @field verbose boolean -- if true, log diagnostic info
|
--- @field verbose boolean -- If true, log diagnostic info
|
||||||
|
|
||||||
--- @class PassResult
|
--- @class PassResult
|
||||||
--- @field outputs table[] -- {kind=, path=} entries describing emit files
|
--- @field outputs table[] -- {kind=, path=} entries describing emit files
|
||||||
--- @field errors table[] -- {line=, msg=} entries; build-stops
|
--- @field errors table[] -- {line=, msg=} entries; build-stops
|
||||||
--- @field warnings table[] -- {line=, msg=} entries; build-succeeds
|
--- @field warnings table[] -- {line=, msg=} entries; build-succeeds
|
||||||
|
|
||||||
-- Shapes produced by `passes/annotation.lua`'s `M.validate()`.
|
-- Shapes produced by `passes/annotation.lua`'s `M.validate()`.
|
||||||
|
|
||||||
--- @class AtomEntry
|
--- @class AtomEntry
|
||||||
--- @field name string -- atom name (e.g. "cube_g4_face")
|
--- @field name string -- Atom name (e.g. "cube_g4_face")
|
||||||
--- @field line integer -- source line of the atom declaration
|
--- @field line integer -- Source line of the atom declaration
|
||||||
|
|
||||||
--- @class AnnotEntry
|
--- @class AnnotEntry
|
||||||
--- @field line integer -- source line
|
--- @field line integer -- Source line
|
||||||
--- @field macro string -- the macro name (e.g. "atom_reads")
|
--- @field macro string -- Macro name (e.g. "atom_reads")
|
||||||
--- @field name string -- the atom name (if a `name(...)` was given)
|
--- @field name string -- Atom name (if a `name(...)` was given)
|
||||||
--- @field kind string -- "atom_info" | "atom_bind" | ...
|
--- @field kind string -- "atom_info" | "atom_bind" | ...
|
||||||
--- @field binds string|nil -- Binds_X name if any
|
--- @field binds string|nil -- Binds_X name if any
|
||||||
--- @field reads string[] -- R_* names (read targets)
|
--- @field reads string[] -- R_* names (read targets)
|
||||||
--- @field writes string[] -- R_* names (write targets)
|
--- @field writes string[] -- R_* names (write targets)
|
||||||
--- @field error string|nil -- error message if annotation was malformed
|
--- @field error string|nil -- Error message if annotation was malformed
|
||||||
|
|
||||||
--- @class BindsField
|
--- @class BindsField
|
||||||
--- @field name string -- field name
|
--- @field name string -- Field name
|
||||||
--- @field offset integer -- byte offset within the Binds_X struct
|
--- @field offset integer -- Byte offset within the Binds_X struct
|
||||||
|
|
||||||
--- @class BindsStruct
|
--- @class BindsStruct
|
||||||
--- @field name string -- struct name (e.g. "Binds_Floor")
|
--- @field name string -- Struct name (e.g. "Binds_Floor")
|
||||||
--- @field line integer -- source line of the typedef
|
--- @field line integer -- Source line of the typedef
|
||||||
--- @field bytes integer -- total byte size
|
--- @field bytes integer -- Total byte size
|
||||||
--- @field fields BindsField[] -- the field list
|
--- @field fields BindsField[] -- The field list
|
||||||
|
|
||||||
--- @class MacroEntry
|
--- @class MacroEntry
|
||||||
--- @field name string -- macro name (e.g. "WORD_COUNT(my_macro, 4)")
|
--- @field name string -- Macro name (e.g. "WORD_COUNT(my_macro, 4)")
|
||||||
--- @field line integer -- source line
|
--- @field line integer -- Source line
|
||||||
--- @field words integer -- declared word count
|
--- @field words integer -- Declared word count
|
||||||
|
|
||||||
--- @class Finding
|
--- @class Finding
|
||||||
--- @field line integer -- source line
|
--- @field line integer -- Source line
|
||||||
--- @field msg string -- finding message
|
--- @field msg string -- Finding message
|
||||||
|
|
||||||
--- @class AnnotationResult
|
--- @class AnnotationResult
|
||||||
--- @field source string -- set by this pass; original source path
|
--- @field source string -- Set by this pass; original source path
|
||||||
--- @field atoms AtomEntry[] -- atom declarations in this source
|
--- @field atoms AtomEntry[] -- Atom declarations in this source
|
||||||
--- @field annots AnnotEntry[] -- annotation entries
|
--- @field annots AnnotEntry[] -- Annotation entries
|
||||||
--- @field macros MacroEntry[] -- macro word-count declarations
|
--- @field macros MacroEntry[] -- Macro word-count declarations
|
||||||
--- @field binds BindsStruct[] -- Binds_* struct declarations
|
--- @field binds BindsStruct[] -- Binds_* struct declarations
|
||||||
--- @field errors Finding[] -- errors from validation
|
--- @field errors Finding[] -- Errors from validation
|
||||||
--- @field warnings Finding[] -- warnings from validation
|
--- @field warnings Finding[] -- Warnings from validation
|
||||||
--- @field info table -- info summary (not rendered here)
|
--- @field info table -- Info summary (not rendered here)
|
||||||
|
|
||||||
--- @class ModuleEntry
|
--- @class ModuleEntry
|
||||||
--- @field dir string -- absolute directory path
|
--- @field dir string -- Absolute directory path
|
||||||
--- @field dir_basename string -- basename (e.g. "duffle", "gte_hello")
|
--- @field dir_basename string -- Basename (e.g. "duffle", "gte_hello")
|
||||||
--- @field atoms_count integer -- pre-counted atoms for filtering
|
--- @field atoms_count integer -- Pre-counted atoms for filtering
|
||||||
|
|
||||||
--- @class ModuleReport
|
--- @class ModuleReport
|
||||||
--- @field dir string -- module directory
|
--- @field dir string -- Module directory
|
||||||
--- @field sources SourceFile[] -- sources in this module
|
--- @field sources SourceFile[] -- Sources in this module
|
||||||
--- @field results AnnotationResult[] -- per-source validate() results
|
--- @field results AnnotationResult[] -- Per-source validate() results
|
||||||
|
|
||||||
--- @class ProjectReport
|
--- @class ProjectReport
|
||||||
--- @field results AnnotationResult[] -- all per-source results
|
--- @field results AnnotationResult[] -- All per-source results
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Per-MODULE annotation report (aggregated across all sources in a dir)
|
-- Per-MODULE annotation report (aggregated across all sources in a dir)
|
||||||
@@ -148,328 +147,453 @@ local function source_basename(path)
|
|||||||
return path:match(BASENAME_PATTERN) or path
|
return path:match(BASENAME_PATTERN) or path
|
||||||
end
|
end
|
||||||
|
|
||||||
--- (internal) Format a single annotation entry as one rendered line.
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
--- @param a AnnotEntry
|
-- Markdown renderers (consolidated-report-files refactor, 2026-07-26)
|
||||||
--- @param src_name string
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
|
--- Render the thin project-wide summary (`build/atom_meta_report.summary.md`).
|
||||||
|
--- @param all_results {
|
||||||
|
--- module:string,
|
||||||
|
--- atoms:integer,
|
||||||
|
--- annots:integer,
|
||||||
|
--- binds:integer,
|
||||||
|
--- macros:integer,
|
||||||
|
--- findings:integer,
|
||||||
|
--- errors:integer,
|
||||||
|
--- warnings:integer,
|
||||||
|
--- info:integer }[]
|
||||||
--- @return string
|
--- @return string
|
||||||
local function format_annot_line(a, src_name)
|
local function render_project_summary(all_results)
|
||||||
if a.error then
|
local lines = {
|
||||||
return string.format(" ✗ line %d %s [ERROR: %s] [%s]", a.line, a.macro or "?", a.error, src_name)
|
"# Project summary",
|
||||||
end
|
"> Auto-generated by ps1_meta.lua (passes/report.lua).",
|
||||||
local line = string.format(" ● line %d %s [%s]", a.line, a.name, src_name)
|
"",
|
||||||
if a.binds then line = line .. " binds=" .. a.binds end
|
"| module | atoms | annots | binds | macros | findings | errors | warnings | info |",
|
||||||
if #a.reads > 0 then line = line .. " reads={" .. table.concat(a.reads, ",") .. "}" end
|
"|--------|-------|--------|-------|--------|----------|--------|----------|------|",
|
||||||
if #a.writes > 0 then line = line .. " writes={" .. table.concat(a.writes, ",") .. "}" end
|
|
||||||
return line
|
|
||||||
end
|
|
||||||
|
|
||||||
--- (internal) Tally totals across all results in a module.
|
|
||||||
--- @param results AnnotationResult[]
|
|
||||||
--- @return integer, integer, integer, integer, integer, integer
|
|
||||||
local function tally_module_totals(results)
|
|
||||||
local total_atoms, total_annots, total_binds, total_macros = 0, 0, 0, 0
|
|
||||||
local total_errors, total_warnings = 0, 0
|
|
||||||
for _, r in ipairs(results) do
|
|
||||||
total_atoms = total_atoms + #r.atoms
|
|
||||||
total_annots = total_annots + #r.annots
|
|
||||||
total_binds = total_binds + #r.binds
|
|
||||||
total_macros = total_macros + #r.macros
|
|
||||||
total_errors = total_errors + #r.errors
|
|
||||||
total_warnings = total_warnings + #r.warnings
|
|
||||||
end
|
|
||||||
return total_atoms, total_annots, total_binds, total_macros, total_errors, total_warnings
|
|
||||||
end
|
|
||||||
|
|
||||||
-- (internal) Section renderer: per-source atom declarations.
|
|
||||||
local function render_module_atoms_section(add, results)
|
|
||||||
add(SECTION_HEADER_ATOMS)
|
|
||||||
for _, r in ipairs(results) do
|
|
||||||
local src_name = source_basename(r.source)
|
|
||||||
for _, a in ipairs(r.atoms) do
|
|
||||||
add(string.format(" MipsAtom_(%s) line %d [%s]", a.name, a.line, src_name))
|
|
||||||
end
|
|
||||||
end
|
|
||||||
add("")
|
|
||||||
end
|
|
||||||
|
|
||||||
-- (internal) Section renderer: per-source annotation entries.
|
|
||||||
local function render_module_annots_section(add, results)
|
|
||||||
add(SECTION_HEADER_ANNOTS)
|
|
||||||
for _, r in ipairs(results) do
|
|
||||||
local src_name = source_basename(r.source)
|
|
||||||
for _, a in ipairs(r.annots) do
|
|
||||||
add(format_annot_line(a, src_name))
|
|
||||||
end
|
|
||||||
end
|
|
||||||
add("")
|
|
||||||
end
|
|
||||||
|
|
||||||
-- (internal) Section renderer: per-source Binds_* struct declarations.
|
|
||||||
local function render_module_binds_section(add, results)
|
|
||||||
add(SECTION_HEADER_BINDS)
|
|
||||||
for _, r in ipairs(results) do
|
|
||||||
local src_name = source_basename(r.source)
|
|
||||||
for _, b in ipairs(r.binds) do
|
|
||||||
add(string.format(" %s line %d %d bytes [%s]", b.name, b.line, b.bytes, src_name))
|
|
||||||
for _, f in ipairs(b.fields) do
|
|
||||||
add(string.format(" +%2d: %s", f.offset, f.name))
|
|
||||||
end
|
|
||||||
end
|
|
||||||
end
|
|
||||||
add("")
|
|
||||||
end
|
|
||||||
|
|
||||||
-- (internal) Section renderer: per-source macro word-count declarations.
|
|
||||||
local function render_module_macros_section(add, results)
|
|
||||||
add(SECTION_HEADER_MACROS)
|
|
||||||
for _, r in ipairs(results) do
|
|
||||||
local src_name = source_basename(r.source)
|
|
||||||
for _, m in ipairs(r.macros) do
|
|
||||||
add(string.format(" %s line %d words=%d [%s]", m.name, m.line, m.words, src_name))
|
|
||||||
end
|
|
||||||
end
|
|
||||||
add("")
|
|
||||||
end
|
|
||||||
|
|
||||||
-- (internal) Section renderer: per-source errors (one-line + "(none)" if empty).
|
|
||||||
local function render_module_errors_section(add, results, total_errors)
|
|
||||||
add(SECTION_HEADER_ERRORS)
|
|
||||||
if total_errors == 0 then
|
|
||||||
add(" (none)")
|
|
||||||
else
|
|
||||||
for _, r in ipairs(results) do
|
|
||||||
local src_name = source_basename(r.source)
|
|
||||||
for _, e in ipairs(r.errors) do
|
|
||||||
add(string.format(" ✗ line %d %s [%s]", e.line, e.msg, src_name))
|
|
||||||
end
|
|
||||||
end
|
|
||||||
end
|
|
||||||
add("")
|
|
||||||
end
|
|
||||||
|
|
||||||
-- (internal) Section renderer: per-source warnings (one-line + "(none)" if empty).
|
|
||||||
local function render_module_warnings_section(add, results, total_warnings)
|
|
||||||
add(SECTION_HEADER_WARNINGS)
|
|
||||||
if total_warnings == 0 then
|
|
||||||
add(" (none)")
|
|
||||||
else
|
|
||||||
for _, r in ipairs(results) do
|
|
||||||
local src_name = source_basename(r.source)
|
|
||||||
for _, w in ipairs(r.warnings) do
|
|
||||||
add(string.format(" ⚠ line %d %s [%s]", w.line, w.msg, src_name))
|
|
||||||
end
|
|
||||||
end
|
|
||||||
end
|
|
||||||
add("")
|
|
||||||
end
|
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
|
||||||
-- SECTION_RENDERERS — data-driven section dispatch (the plex pattern)
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
|
||||||
--
|
|
||||||
-- Each entry maps a section to its (header, render_fn). The render_fn signature:
|
|
||||||
-- render_fn(add, results, totals)
|
|
||||||
-- add -- the `add(line)` closure from the surrounding report renderer
|
|
||||||
-- results -- AnnotationResult[] (per-source results)
|
|
||||||
-- totals -- {atoms, annots, binds, macros, errors, warnings} counts
|
|
||||||
--
|
|
||||||
-- Sections that need to render "(none)" vs iterate use totals.errors / totals.warnings;
|
|
||||||
-- other sections ignore the totals arg.
|
|
||||||
-- Adding a new section = 1 row here + 1 render_<thing>_section function.
|
|
||||||
local SECTION_RENDERERS = {
|
|
||||||
{ header = SECTION_HEADER_ATOMS, render = render_module_atoms_section },
|
|
||||||
{ header = SECTION_HEADER_ANNOTS, render = render_module_annots_section },
|
|
||||||
{ header = SECTION_HEADER_BINDS, render = render_module_binds_section },
|
|
||||||
{ header = SECTION_HEADER_MACROS, render = render_module_macros_section },
|
|
||||||
{ header = SECTION_HEADER_ERRORS, render = function(add, results, totals) return render_module_errors_section(add, results, totals.errors) end },
|
|
||||||
{ header = SECTION_HEADER_WARNINGS, render = function(add, results, totals) return render_module_warnings_section(add, results, totals.warnings) end },
|
|
||||||
}
|
|
||||||
|
|
||||||
--- Render the per-MODULE annotation report (one `<dir_basename>.annotations.txt`).
|
|
||||||
--- @param dir string -- module directory path
|
|
||||||
--- @param sources SourceFile[] -- sources in this module
|
|
||||||
--- @param results AnnotationResult[] -- per-source validate() results
|
|
||||||
--- @return string -- the rendered report text
|
|
||||||
local function render_module_report(dir, sources, results)
|
|
||||||
local lines = {}
|
|
||||||
local function add(s) lines[#lines + 1] = s end
|
|
||||||
|
|
||||||
add(RULE_THICK)
|
|
||||||
add("ANNOTATION PASS — module " .. source_basename(dir))
|
|
||||||
add(RULE_THICK)
|
|
||||||
add(string.format("Sources: %d", #sources))
|
|
||||||
for _, s in ipairs(sources) do add(" " .. s.path) end
|
|
||||||
add("")
|
|
||||||
|
|
||||||
local total_atoms, total_annots, total_binds, total_macros, total_errors, total_warnings = tally_module_totals(results)
|
|
||||||
add(string.format("Atoms: %d Annotations: %d Binds structs: %d Macro decls: %d",
|
|
||||||
total_atoms, total_annots, total_binds, total_macros))
|
|
||||||
add("")
|
|
||||||
|
|
||||||
-- Bundle the totals so the section renderers don't need separate parameter lists.
|
|
||||||
-- Errors/warnings sections need their total count to decide "(none)" vs iterate.
|
|
||||||
-- Sections without totals (atoms/annots/binds/macros) ignore this arg.
|
|
||||||
local totals = {
|
|
||||||
atoms = total_atoms, annots = total_annots, binds = total_binds,
|
|
||||||
macros = total_macros, errors = total_errors, warnings = total_warnings,
|
|
||||||
}
|
}
|
||||||
|
local totals = { atoms = 0, annots = 0, binds = 0, macros = 0, findings = 0, errors = 0, warnings = 0, info = 0 }
|
||||||
-- THE per-section dispatch. ONE loop over SECTION_RENDERERS.
|
for _, e in ipairs(all_results) do
|
||||||
-- Each renderer writes its header + content via the `add` closure (pre-bound above).
|
lines[#lines + 1] = string.format("| %s | %d | %d | %d | %d | %d | %d | %d | %d |"
|
||||||
-- Adding a new section = 1 row here + 1 render_<thing>_section function.
|
, e.module, e.atoms, e.annots, e.binds, e.macros, e.findings, e.errors, e.warnings, e.info)
|
||||||
for _, section in ipairs(SECTION_RENDERERS) do
|
totals.atoms = totals.atoms + e.atoms
|
||||||
section.render(add, results, totals)
|
totals.annots = totals.annots + e.annots
|
||||||
|
totals.binds = totals.binds + e.binds
|
||||||
|
totals.macros = totals.macros + e.macros
|
||||||
|
totals.findings = totals.findings + e.findings
|
||||||
|
totals.errors = totals.errors + e.errors
|
||||||
|
totals.warnings = totals.warnings + e.warnings
|
||||||
|
totals.info = totals.info + e.info
|
||||||
end
|
end
|
||||||
|
lines[#lines + 1] = string.format("| **TOTAL** | %d | %d | %d | %d | %d | %d | %d | %d |"
|
||||||
|
, totals.atoms, totals.annots, totals.binds, totals.macros, totals.findings, totals.errors, totals.warnings, totals.info)
|
||||||
return table.concat(lines, "\n") .. "\n"
|
return table.concat(lines, "\n") .. "\n"
|
||||||
end
|
end
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
--- Render the per-module verbose source-map markdown (`build/<module>.atoms.md`).
|
||||||
-- Per-project summary
|
--- Per-source sub-section, per-atom stanza with sourcemap + provenance rows.
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
--- Pulls sourcemap + provenance from `atoms_source_map` (no second source walk).
|
||||||
|
--- @param dir string
|
||||||
--- Render the per-project summary (`build/gen/annotation_validation.txt`).
|
--- @param dir_sources SourceFile[]
|
||||||
--- Aggregates totals across all sources; lists per-source error counts if any source has errors.
|
--- @param wc table<string, integer>
|
||||||
--- @param all_results AnnotationResult[]
|
|
||||||
--- @return string
|
--- @return string
|
||||||
local function render_project_report(all_results)
|
local function render_module_atoms_md(dir, dir_sources, wc)
|
||||||
local lines = {}
|
local dir_basename = source_basename(dir)
|
||||||
|
local lines = {
|
||||||
|
"# " .. dir_basename .. " — atoms (verbose source map)",
|
||||||
|
"> Per-word call-site + provenance. Auto-generated.",
|
||||||
|
"",
|
||||||
|
}
|
||||||
|
for _, src in ipairs(dir_sources) do
|
||||||
|
local src_name = source_basename(src.path)
|
||||||
|
lines[#lines + 1] = "## " .. src_name
|
||||||
|
lines[#lines + 1] = ""
|
||||||
|
-- For each atom with a projection, render its sourcemap + provenance.
|
||||||
|
local atoms_list = {}
|
||||||
|
for _, atom in ipairs((src.scan or {}).atoms or {}) do
|
||||||
|
if atom.paths then atoms_list[#atoms_list + 1] = atom end
|
||||||
|
end
|
||||||
|
for _, atom in ipairs((src.scan or {}).raw_atoms or {}) do
|
||||||
|
if atom.paths then atoms_list[#atoms_list + 1] = atom end
|
||||||
|
end
|
||||||
|
if #atoms_list == 0 then
|
||||||
|
lines[#lines + 1] = "_(no atom projections)_"
|
||||||
|
lines[#lines + 1] = ""
|
||||||
|
else
|
||||||
|
-- Per-source forward-slash path (same one `emit_atom_stanza` / `emit_provenance_stanza` would derive;
|
||||||
|
-- computed once per `## <source>` heading and reused by each atom's `WORD N CALL ...` field).
|
||||||
|
local rel_path = src.path:gsub("\\\\", "/")
|
||||||
|
for _, atom in ipairs(atoms_list) do
|
||||||
|
lines[#lines + 1] = string.format(
|
||||||
|
"### atom: %s (line %d, %d words)",
|
||||||
|
atom.name, atom.line or 0, #(atom.paths.items or {}))
|
||||||
|
lines[#lines + 1] = ""
|
||||||
|
lines[#lines + 1] = "**Sourcemap** — per-word call site:"
|
||||||
|
lines[#lines + 1] = "```"
|
||||||
|
-- Per-atom invariant: call the per-atom renderers, NOT the per-source ones.
|
||||||
|
-- The per-source renderers enumerate every atom in `src`;
|
||||||
|
-- calling them in a per-atom loop would repeat the whole source under every `### atom:` heading.
|
||||||
|
lines[#lines + 1] = atoms_source_map.render_atom_source_map(atom):gsub("\n+$", "")
|
||||||
|
lines[#lines + 1] = "```"
|
||||||
|
lines[#lines + 1] = ""
|
||||||
|
lines[#lines + 1] = "**Provenance** — per-word definition + body:"
|
||||||
|
lines[#lines + 1] = "```"
|
||||||
|
lines[#lines + 1] = atoms_source_map.render_atom_provenance(atom, wc, rel_path):gsub("\n+$", "")
|
||||||
|
lines[#lines + 1] = "```"
|
||||||
|
lines[#lines + 1] = ""
|
||||||
|
end
|
||||||
|
end
|
||||||
|
end
|
||||||
|
return table.concat(lines, "\n") .. "\n"
|
||||||
|
end
|
||||||
|
|
||||||
|
--- Render the consolidated per-module markdown (`build/<module>.atom_meta_report.md`).
|
||||||
|
--- Aggregates annotation + static-analysis content across all sources in `dir`.
|
||||||
|
--- Annotations come from re-running `annotation.validate()` per source (the existing pattern);
|
||||||
|
--- static-analysis comes from `corpus.static_analysis_results[dir_basename]` (populated by `static_analysis.lua` — no second corpus_pipe_ctx build).
|
||||||
|
--- @param dir string
|
||||||
|
--- @param dir_sources SourceFile[]
|
||||||
|
--- @param annot_results AnnotationResult[]
|
||||||
|
--- @param sa_results table -- corpus.static_analysis_results[dir_basename]
|
||||||
|
--- @return string
|
||||||
|
local function render_module_meta_report(dir, dir_sources, annot_results, sa_results)
|
||||||
|
local dir_basename = source_basename(dir)
|
||||||
|
local lines = {
|
||||||
|
"# " .. dir_basename .. " — atom meta report",
|
||||||
|
"> Auto-generated by ps1_meta.lua (passes/report.lua). Do not edit.",
|
||||||
|
"",
|
||||||
|
}
|
||||||
local function add(s) lines[#lines + 1] = s end
|
local function add(s) lines[#lines + 1] = s end
|
||||||
|
|
||||||
local total_atoms, total_annots, total_macros, total_binds = 0, 0, 0, 0
|
-- Module summary table.
|
||||||
local total_errors, total_warnings = 0, 0
|
local n_atoms = 0
|
||||||
for _, r in ipairs(all_results) do
|
local n_annot = 0
|
||||||
total_atoms = total_atoms + #r.atoms
|
local n_binds = 0
|
||||||
total_annots = total_annots + #r.annots
|
local n_macros = 0
|
||||||
total_macros = total_macros + #r.macros
|
local n_bare, n_proc = 0, 0
|
||||||
total_binds = total_binds + #r.binds
|
for _, r in ipairs(annot_results) do
|
||||||
total_errors = total_errors + #r.errors
|
n_atoms = n_atoms + #r.atoms
|
||||||
total_warnings = total_warnings + #r.warnings
|
n_annot = n_annot + #r.annots
|
||||||
|
n_binds = n_binds + #r.binds
|
||||||
|
n_macros = n_macros + #r.macros
|
||||||
|
end
|
||||||
|
for _, a in ipairs(sa_results.atoms or {}) do
|
||||||
|
if a.kind == "comp_bare" then n_bare = n_bare + 1
|
||||||
|
elseif a.kind == "comp_proc" then n_proc = n_proc + 1
|
||||||
|
end
|
||||||
end
|
end
|
||||||
|
|
||||||
add(RULE_THICK)
|
add("## Module summary"); add("")
|
||||||
add("ANNOTATION VALIDATION — project summary")
|
add("| metric | value |"); add("|--------|-------|")
|
||||||
add(RULE_THICK)
|
add(string.format("| sources | %d |", #dir_sources))
|
||||||
add("")
|
add(string.format("| atoms | %d (atoms: %d, comp_bare: %d, comp_proc: %d) |",
|
||||||
add(string.format("Atoms: %d", total_atoms))
|
#(sa_results.atoms or {}),
|
||||||
add(string.format("Annotations: %d", total_annots))
|
#(sa_results.atoms or {}) - n_bare - n_proc, n_bare, n_proc))
|
||||||
add(string.format("Macros: %d", total_macros))
|
add(string.format("| annotations | %d |", n_annot))
|
||||||
add(string.format("Binds: %d", total_binds))
|
add(string.format("| binds structs | %d |", n_binds))
|
||||||
add("")
|
add(string.format("| macro decls | %d |", n_macros))
|
||||||
add(string.format("Errors: %d", total_errors))
|
add(string.format("| findings | %d (errors: %d, warnings: %d, info: %d) |",
|
||||||
add(string.format("Warnings: %d", total_warnings))
|
#(sa_results.findings or {}),
|
||||||
|
#(sa_results.errors or {}),
|
||||||
|
#(sa_results.warnings or {}),
|
||||||
|
#(sa_results.info or {})))
|
||||||
add("")
|
add("")
|
||||||
|
|
||||||
if total_errors > 0 then
|
-- Sources
|
||||||
add("Per-source error counts:")
|
add("## Sources"); add("")
|
||||||
for _, r in ipairs(all_results) do
|
for _, s in ipairs(dir_sources) do add("- `" .. s.path .. "`") end
|
||||||
if #r.errors > 0 then
|
add("")
|
||||||
local src_name = source_basename(r.source)
|
|
||||||
add(string.format(" %s : %d error(s)", src_name, #r.errors))
|
-- Atoms (annotation)
|
||||||
|
add("## Atoms"); add("")
|
||||||
|
add("| kind | name | source | line |"); add("|------|------|--------|------|")
|
||||||
|
for _, r in ipairs(annot_results) do
|
||||||
|
local src_name = source_basename(r.source)
|
||||||
|
for _, a in ipairs(r.atoms) do
|
||||||
|
add(string.format("| atom | %s | %s | %d |", a.name, src_name, a.line))
|
||||||
|
end
|
||||||
|
end
|
||||||
|
add("")
|
||||||
|
|
||||||
|
-- Annotations
|
||||||
|
add("## Annotations"); add("")
|
||||||
|
if #annot_results == 0 then
|
||||||
|
add("_(none)_")
|
||||||
|
else
|
||||||
|
add("| source | line | name | binds | reads | writes |")
|
||||||
|
add("|--------|------|------|-------|-------|--------|")
|
||||||
|
for _, r in ipairs(annot_results) do
|
||||||
|
local src_name = source_basename(r.source)
|
||||||
|
for _, a in ipairs(r.annots) do
|
||||||
|
local binds = a.binds or "—"
|
||||||
|
local reads = (#a.reads > 0 and table.concat(a.reads, ",")) or "—"
|
||||||
|
local writes = (#a.writes > 0 and table.concat(a.writes, ",")) or "—"
|
||||||
|
add(string.format("| %s | %d | %s | %s | %s | %s |"
|
||||||
|
, src_name, a.line, a.name, binds, reads, writes))
|
||||||
|
end
|
||||||
|
end
|
||||||
|
end
|
||||||
|
add("")
|
||||||
|
|
||||||
|
-- Binds_* structs
|
||||||
|
add("## Binds_* structs"); add("")
|
||||||
|
if #annot_results == 0 then
|
||||||
|
add("_(none)_")
|
||||||
|
else
|
||||||
|
for _, r in ipairs(annot_results) do
|
||||||
|
local src_name = source_basename(r.source)
|
||||||
|
for _, b in ipairs(r.binds) do
|
||||||
|
add(string.format("### %s (%s:%d, %d bytes)",
|
||||||
|
b.name, src_name, b.line, b.bytes))
|
||||||
|
for _, f in ipairs(b.fields) do
|
||||||
|
add(string.format("- `+%d %s`", f.offset, f.name))
|
||||||
|
end
|
||||||
|
add("")
|
||||||
|
end
|
||||||
|
end
|
||||||
|
end
|
||||||
|
|
||||||
|
-- Macro decls
|
||||||
|
add("## Macro word-count declarations"); add("")
|
||||||
|
if #annot_results == 0 then
|
||||||
|
add("_(none)_")
|
||||||
|
else
|
||||||
|
add("| source | line | macro declaration |")
|
||||||
|
add("|--------|------|-------------------|")
|
||||||
|
for _, r in ipairs(annot_results) do
|
||||||
|
local src_name = source_basename(r.source)
|
||||||
|
for _, m in ipairs(r.macros) do
|
||||||
|
add(string.format("| %s | %d | %s |",
|
||||||
|
src_name, m.line, m.name))
|
||||||
|
end
|
||||||
|
end
|
||||||
|
end
|
||||||
|
add("")
|
||||||
|
|
||||||
|
-- Findings by atom (static-analysis)
|
||||||
|
add("## Static analysis — findings by atom"); add("")
|
||||||
|
local by_atom = {}
|
||||||
|
for _, f in ipairs(sa_results.findings or {}) do
|
||||||
|
by_atom[f.atom] = by_atom[f.atom] or {}
|
||||||
|
by_atom[f.atom][#by_atom[f.atom] + 1] = f
|
||||||
|
end
|
||||||
|
if next(by_atom) == nil then
|
||||||
|
add("_(no findings)_")
|
||||||
|
else
|
||||||
|
for _, a in ipairs(sa_results.atoms or {}) do
|
||||||
|
local fs = by_atom[a.name]
|
||||||
|
if fs then
|
||||||
|
add(string.format("### %s", a.name))
|
||||||
|
for _, f in ipairs(fs) do
|
||||||
|
add(string.format("- `[%s] %s`", f.check, f.msg))
|
||||||
|
end
|
||||||
|
add("")
|
||||||
|
end
|
||||||
|
end
|
||||||
|
end
|
||||||
|
|
||||||
|
-- Errors / Warnings / Info
|
||||||
|
local function add_findings(label, entries)
|
||||||
|
add(string.format("## %s", label))
|
||||||
|
if #entries == 0 then
|
||||||
|
add("_(none)_")
|
||||||
|
else
|
||||||
|
for _, e in ipairs(entries) do
|
||||||
|
add(string.format("- line %d %s", e.line, e.msg))
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
add("")
|
add("")
|
||||||
end
|
end
|
||||||
|
add_findings("Errors", sa_results.errors or {})
|
||||||
|
add_findings("Warnings", sa_results.warnings or {})
|
||||||
|
add_findings("Info", sa_results.info or {})
|
||||||
|
|
||||||
|
-- Per-atom cycle counts (path-aware)
|
||||||
|
add("## Per-atom cycle counts (path-aware, best case, no stalls)"); add("")
|
||||||
|
add("| atom | source | min | max | branches | paths | notes |")
|
||||||
|
add("|------|--------|-----|-----|----------|-------|-------|")
|
||||||
|
local sorted = {}
|
||||||
|
for _, a in ipairs(sa_results.atoms or {}) do sorted[#sorted + 1] = a end
|
||||||
|
table.sort(sorted, function(x, y)
|
||||||
|
return ((x.paths or {}).cycles_max or 0) > ((y.paths or {}).cycles_max or 0)
|
||||||
|
end)
|
||||||
|
for _, a in ipairs(sorted) do
|
||||||
|
local p = a.paths or {}
|
||||||
|
local src_name = a.source_path and source_basename(a.source_path) or ""
|
||||||
|
local notes = ""
|
||||||
|
if p.has_loops then notes = notes .. " [loop!]" end
|
||||||
|
if p.unknown_macros and #p.unknown_macros > 0 then
|
||||||
|
notes = notes .. " [unknown: " .. table.concat(p.unknown_macros, ", ") .. "]"
|
||||||
|
end
|
||||||
|
add(string.format("| %s | %s | %d | %d | %d | %d | %s |",
|
||||||
|
a.name, src_name,
|
||||||
|
p.cycles_min or 0, p.cycles_max or 0,
|
||||||
|
p.branches or 0, p.paths or 0, notes))
|
||||||
|
end
|
||||||
|
add("")
|
||||||
|
|
||||||
|
-- Per-source scan summary
|
||||||
|
add("## Per-source scan summary"); add("")
|
||||||
|
for _, src in ipairs(dir_sources) do
|
||||||
|
local src_atoms = {}
|
||||||
|
for _, a in ipairs(sa_results.atoms or {}) do
|
||||||
|
if a.source_path == src.path then src_atoms[#src_atoms + 1] = a end
|
||||||
|
end
|
||||||
|
if #src_atoms > 0 then
|
||||||
|
local mn, mx = math.huge, -1
|
||||||
|
for _, a in ipairs(src_atoms) do
|
||||||
|
local p = a.paths or {}
|
||||||
|
if (p.cycles_min or 0) < mn then mn = p.cycles_min or 0 end
|
||||||
|
if (p.cycles_max or 0) > mx then mx = p.cycles_max or 0 end
|
||||||
|
end
|
||||||
|
local path_str
|
||||||
|
if mx > 0 then
|
||||||
|
path_str = string.format(" cycles=%d..%d", mn, mx)
|
||||||
|
else
|
||||||
|
path_str = string.format(" %d cycles", mn)
|
||||||
|
end
|
||||||
|
add(string.format("- `%s` — %d atom%s%s",
|
||||||
|
src.basename, #src_atoms,
|
||||||
|
#src_atoms == 1 and "" or "s", path_str))
|
||||||
|
end
|
||||||
|
end
|
||||||
|
add("")
|
||||||
|
|
||||||
return table.concat(lines, "\n") .. "\n"
|
return table.concat(lines, "\n") .. "\n"
|
||||||
end
|
end
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Orchestration helpers
|
-- REPORT_RENDERERS — data-driven report dispatch (one row per file kind)
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
-- `once = true` means render once at the project level (not per-module).
|
||||||
--- (internal) Re-validate every source in a directory against the canonical corpus projection.
|
-- `basename(dir_basename)` yields the file's basename for that kind.
|
||||||
--- Calls `annotation.validate()` per source to produce the per-source AnnotationResult (atoms / annots / macros / binds / errors / warnings)
|
-- `gather(ctx, dir, dir_sources [, all_modules])` returns the rendered string.
|
||||||
--- that the report renderer consumes. Eeach report pass run is reproducible from the corpus.
|
local REPORT_RENDERERS = {
|
||||||
--- Returns the list of module results + the flat list of all results (for the project-wide summary).
|
{
|
||||||
--- @param ctx PassCtx
|
name = "atom_meta_report",
|
||||||
--- @param dir_sources SourceFile[]
|
ext = "md",
|
||||||
--- @return AnnotationResult[], AnnotationResult[]
|
basename = function(dir_basename) return dir_basename .. ".atom_meta_report" end,
|
||||||
local function lookup_module_results(ctx, dir_sources)
|
once = false,
|
||||||
local module_results = {}
|
gather = function(ctx, dir, dir_sources)
|
||||||
local all_results = {}
|
-- Annotations: re-run `annotation.validate()` per source (the existing pattern).
|
||||||
for _, src in ipairs(dir_sources) do
|
local annot_results = {}
|
||||||
if src.scan then
|
for _, src in ipairs(dir_sources) do
|
||||||
local result = annotation.validate(ctx, src, nil)
|
if src.scan then
|
||||||
result.source = src.path -- tag for downstream rendering
|
local r = annotation.validate(ctx, src, nil)
|
||||||
module_results[#module_results + 1] = result
|
r.source = src.path
|
||||||
all_results[#all_results + 1] = result
|
annot_results[#annot_results + 1] = r
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
return module_results, all_results
|
-- Static-analysis: read stashed projection (no re-validate).
|
||||||
end
|
local dir_basename = dir:match("([^/\\]+)$") or dir
|
||||||
|
local sa_results = (ctx.shared.corpus.static_analysis_results or {})[dir_basename] or {}
|
||||||
--- (internal) Does this module's results contain anything worth emitting?
|
return render_module_meta_report(dir, dir_sources, annot_results, sa_results)
|
||||||
--- @param module_results AnnotationResult[]
|
end,
|
||||||
--- @return boolean
|
},
|
||||||
local function module_has_content(module_results)
|
{
|
||||||
for _, r in ipairs(module_results) do
|
name = "atoms",
|
||||||
if #r.atoms > 0 or #r.annots > 0 or #r.binds > 0
|
ext = "md",
|
||||||
or #r.macros > 0 or #r.errors > 0 or #r.warnings > 0 then
|
basename = function(dir_basename) return dir_basename .. ".atoms" end,
|
||||||
return true
|
once = false,
|
||||||
end
|
gather = function(ctx, dir, dir_sources)
|
||||||
end
|
return render_module_atoms_md(dir, dir_sources,
|
||||||
return false
|
ctx.shared.corpus.word_counts or {})
|
||||||
end
|
end,
|
||||||
|
},
|
||||||
--- (internal) Log a debug message if `_G[DEBUG_FLAG]` is truthy.
|
{
|
||||||
--- @param fmt string
|
name = "summary",
|
||||||
local function debug_log(fmt, ...)
|
ext = "md",
|
||||||
if _G[DEBUG_FLAG] then
|
basename = function(_dir_basename) return "atom_meta_report.summary" end,
|
||||||
io.stderr:write(string.format("[%s] " .. fmt, PASS_NAME, ...))
|
once = true,
|
||||||
end
|
gather = function(_ctx, _dir, _dir_sources, all_modules)
|
||||||
end
|
return render_project_summary(all_modules)
|
||||||
|
end,
|
||||||
|
},
|
||||||
|
}
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- M — module exports
|
-- M — public pass surface
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
local M = {}
|
local M = {}
|
||||||
|
|
||||||
--- Run the report pass.
|
--- Run the report pass. Emits 1 `atom_meta_report.summary.md` per build + 2 `atom_meta_report.md` + 2 `atoms.md` files per module (duffle + gte_hello).
|
||||||
--- Renders one `<dir_basename>.annotations.txt` per source-directory that has content, plus the project-wide `annotation_validation.txt` summary.
|
--- Reads `corpus.static_analysis_results` (added in Phase 1) to populate per-module findings without re-running validate().
|
||||||
--- @param ctx PassCtx
|
--- @param ctx PassCtx
|
||||||
--- @return PassResult
|
--- @return PassResult
|
||||||
function M.run(ctx)
|
function M.run(ctx)
|
||||||
local outputs = {}
|
local outputs = {}
|
||||||
local errors = {}
|
local corpus = ctx.shared and ctx.shared.corpus
|
||||||
local warnings = {}
|
local by_dir = (corpus and corpus.sources_by_dir) or {}
|
||||||
|
|
||||||
-- Module grouping comes from `corpus.sources_by_dir` (the canonical projection).
|
-- `out_path_root`: when the conventional `out_root` is `build/gen` (any spelling — relative, absolute, separator variants).
|
||||||
-- Iterate it directly; no private cache, no per-pass stash.
|
-- Write the md files to `build/` (parent of `gen/`) instead of nested under `gen/`.
|
||||||
local corpus = ctx.shared and ctx.shared.corpus
|
-- Mirrors the `gdb_tape_atoms_runtime.gdb` relocation.
|
||||||
local by_dir = (corpus and corpus.sources_by_dir) or {}
|
local function ends_with_gen(p)
|
||||||
|
return type(p) == "string" and (p:match("[/\\]gen[/\\]?$") ~= nil
|
||||||
|
or p == "build/gen" or p == "build\\gen")
|
||||||
|
end
|
||||||
|
local out_root_effective = ends_with_gen(ctx.out_root)
|
||||||
|
and ctx.out_root:gsub("[/\\]gen[/\\]?$", "")
|
||||||
|
or ctx.out_root
|
||||||
|
|
||||||
duffle.ensure_dir(ctx.out_root)
|
duffle.ensure_dir(out_root_effective)
|
||||||
|
|
||||||
|
-- Aggregator for the project-wide `once = true` summary renderer.
|
||||||
|
local all_modules = {}
|
||||||
|
|
||||||
local all_results_for_summary = {}
|
|
||||||
for dir, dir_sources in pairs(by_dir) do
|
for dir, dir_sources in pairs(by_dir) do
|
||||||
local dir_basename = dir:match("([^/\\]+)$") or dir
|
local dir_basename = dir:match("([^/\\]+)$") or dir
|
||||||
debug_log("dir=%s basename=%s sources=%d\n", dir, dir_basename, #dir_sources)
|
|
||||||
|
|
||||||
if #dir_sources > 0 then
|
-- Per-renderer dispatch for the per-module renderers (once = false).
|
||||||
local module_results, all_results = lookup_module_results(ctx, dir_sources)
|
for _, renderer in ipairs(REPORT_RENDERERS) do
|
||||||
for _, r in ipairs(all_results) do
|
if not renderer.once then
|
||||||
all_results_for_summary[#all_results_for_summary + 1] = r
|
local body = renderer.gather(ctx, dir, dir_sources)
|
||||||
|
local out_path = out_root_effective .. "/" .. renderer.basename(dir_basename) .. "." .. renderer.ext
|
||||||
|
duffle.write_file(out_path, body)
|
||||||
|
outputs[#outputs + 1] = { kind = renderer.name, path = out_path }
|
||||||
end
|
end
|
||||||
|
end
|
||||||
|
|
||||||
if module_has_content(module_results) then
|
-- For the summary, compute per-module totals once (re-validating annotations per source — same pattern as the meta_report renderer).
|
||||||
local out_path = ctx.out_root .. "/" .. dir_basename .. ".annotations.txt"
|
local annot_results = {}
|
||||||
duffle.write_file(out_path, render_module_report(dir, dir_sources, module_results))
|
for _, src in ipairs(dir_sources) do
|
||||||
outputs[#outputs + 1] = { annotations_txt = out_path }
|
if src.scan then
|
||||||
else
|
local r = annotation.validate(ctx, src, nil)
|
||||||
debug_log(" -> no content; skipping\n")
|
r.source = src.path
|
||||||
|
annot_results[#annot_results + 1] = r
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
|
local n_annot, n_binds, n_macros = 0, 0, 0
|
||||||
|
for _, r in ipairs(annot_results) do
|
||||||
|
n_annot = n_annot + #r.annots
|
||||||
|
n_binds = n_binds + #r.binds
|
||||||
|
n_macros = n_macros + #r.macros
|
||||||
|
end
|
||||||
|
local sa_results = (corpus.static_analysis_results or {})[dir_basename] or {}
|
||||||
|
all_modules[#all_modules + 1] = {
|
||||||
|
module = dir_basename,
|
||||||
|
atoms = #(sa_results.atoms or {}),
|
||||||
|
annots = n_annot,
|
||||||
|
binds = n_binds,
|
||||||
|
macros = n_macros,
|
||||||
|
findings = #(sa_results.findings or {}),
|
||||||
|
errors = #(sa_results.errors or {}),
|
||||||
|
warnings = #(sa_results.warnings or {}),
|
||||||
|
info = #(sa_results.info or {}),
|
||||||
|
}
|
||||||
|
end
|
||||||
|
|
||||||
|
-- Project-wide renderer (once = true): write the summary file.
|
||||||
|
for _, renderer in ipairs(REPORT_RENDERERS) do
|
||||||
|
if renderer.once then
|
||||||
|
local body = renderer.gather(ctx, nil, nil, all_modules)
|
||||||
|
local out_path = out_root_effective .. "/" .. renderer.basename("") .. "." .. renderer.ext
|
||||||
|
duffle.write_file(out_path, body)
|
||||||
|
outputs[#outputs + 1] = { kind = renderer.name, path = out_path }
|
||||||
|
end
|
||||||
end
|
end
|
||||||
|
|
||||||
if #all_results_for_summary > 0 then
|
return { outputs = outputs, errors = {}, warnings = {} }
|
||||||
local summary_path = ctx.out_root .. "/annotation_validation.txt"
|
|
||||||
duffle.write_file(summary_path, render_project_report(all_results_for_summary))
|
|
||||||
outputs[#outputs + 1] = { summary_txt = summary_path }
|
|
||||||
end
|
|
||||||
|
|
||||||
return { outputs = outputs, errors = errors, warnings = warnings }
|
|
||||||
end
|
end
|
||||||
|
|
||||||
return M
|
return M
|
||||||
|
|||||||
+149
-154
@@ -2,7 +2,6 @@
|
|||||||
---
|
---
|
||||||
--- Single source-walk pass that produces the fat `SourceScan` payload consumed by all downstream passes. Walks each corpus source record once,
|
--- Single source-walk pass that produces the fat `SourceScan` payload consumed by all downstream passes. Walks each corpus source record once,
|
||||||
--- extracting every construct type the metaprograms need:
|
--- extracting every construct type the metaprograms need:
|
||||||
---
|
|
||||||
--- MipsAtom_ (kind = "atom", with optional atom_info inner)
|
--- MipsAtom_ (kind = "atom", with optional atom_info inner)
|
||||||
--- MipsAtomComp_ (kind = "comp_bare")
|
--- MipsAtomComp_ (kind = "comp_bare")
|
||||||
--- MipsAtomComp_Proc_ (kind = "comp_proc", body inside last {})
|
--- MipsAtomComp_Proc_ (kind = "comp_proc", body inside last {})
|
||||||
@@ -14,8 +13,6 @@
|
|||||||
--- The result is attached to each `src.scan` so downstream passes can read from `src.scan.atoms` / `src.scan.binds` / etc. without re-walking the source.
|
--- The result is attached to each `src.scan` so downstream passes can read from `src.scan.atoms` / `src.scan.binds` / etc. without re-walking the source.
|
||||||
--- This is the first pass in the dep graph (no deps).
|
--- This is the first pass in the dep graph (no deps).
|
||||||
--- Every other pass that reads source structure depends on this one — see `ps1_meta.lua :: PASSES`.
|
--- Every other pass that reads source structure depends on this one — see `ps1_meta.lua :: PASSES`.
|
||||||
---
|
|
||||||
--- **Conventions**: tabs (1/level), EmmyLua annotations, no regex, Lua 5.3 compatible
|
|
||||||
|
|
||||||
-- Bootstrap: same as entry scripts. See `ps1_meta.lua` for the rationale.
|
-- Bootstrap: same as entry scripts. See `ps1_meta.lua` for the rationale.
|
||||||
-- Bootstrap: load `scripts/duffle_paths.lua` (sets package.path + package.cpath).
|
-- Bootstrap: load `scripts/duffle_paths.lua` (sets package.path + package.cpath).
|
||||||
@@ -23,7 +20,7 @@
|
|||||||
-- Bootstrap: load `duffle_paths.lua` via `debug.getinfo(1, "S").source` (works both standalone + when required).
|
-- Bootstrap: load `duffle_paths.lua` via `debug.getinfo(1, "S").source` (works both standalone + when required).
|
||||||
-- duffle_paths.lua sets package.path then returns `require("duffle")` at the bottom, so the dofile value IS the duffle module.
|
-- duffle_paths.lua sets package.path then returns `require("duffle")` at the bottom, so the dofile value IS the duffle module.
|
||||||
local _bootstrap_dir = debug.getinfo(1, "S").source:match("^@?(.*[/\\])") or "./"
|
local _bootstrap_dir = debug.getinfo(1, "S").source:match("^@?(.*[/\\])") or "./"
|
||||||
local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
local duffle = dofile(_bootstrap_dir .. "../duffle_paths.lua")
|
||||||
|
|
||||||
-- Forward declarations for helpers used by earlier parsers (parse_enum_body_fields needs parse_enum_int_literal;
|
-- Forward declarations for helpers used by earlier parsers (parse_enum_body_fields needs parse_enum_int_literal;
|
||||||
-- parse_typedef_binds needs duffle.find_byte).
|
-- parse_typedef_binds needs duffle.find_byte).
|
||||||
@@ -50,12 +47,12 @@ local parse_enum_int_literal
|
|||||||
--- @field line_of fun(pos: integer): integer -- shared LineIndex closure
|
--- @field line_of fun(pos: integer): integer -- shared LineIndex closure
|
||||||
|
|
||||||
--- @class DebugSkipMarker
|
--- @class DebugSkipMarker
|
||||||
--- @field marker_kind string -- exact marker ident read from source. Only "atom_dbg_skip" (bare) is positive; any other ident reaches the unrelated fallback and is never associated with a declaration.
|
--- @field marker_kind string -- Exact marker ident read from source. Only "atom_dbg_skip" (bare) is positive; any other ident reaches the unrelated fallback and is never associated with a declaration.
|
||||||
--- @field marker_line integer -- line of the marker ident start
|
--- @field marker_line integer -- Line of the marker ident start
|
||||||
--- @field marker_pos integer -- byte position of the marker ident start (the comment walker anchors here)
|
--- @field marker_pos integer -- Byte position of the marker ident start (the comment walker anchors here)
|
||||||
--- @field is_bare boolean -- true iff marker_kind == "atom_dbg_skip" AND has_parens == false (the only positive form)
|
--- @field is_bare boolean -- true iff marker_kind == "atom_dbg_skip" AND has_parens == false (the only positive form)
|
||||||
--- @field has_parens boolean -- true iff a `(...)` follows the marker ident (diagnostic-only)
|
--- @field has_parens boolean -- true iff a `(...)` follows the marker ident (diagnostic-only)
|
||||||
--- @field args string|nil -- trimmed args inside the `(...)` (nil when has_parens is false)
|
--- @field args string|nil -- Trimmed args inside the `(...)` (nil when has_parens is false)
|
||||||
--- @field pending boolean -- true while awaiting the following declaration
|
--- @field pending boolean -- true while awaiting the following declaration
|
||||||
--- @field superseded_by_marker_line integer|nil -- set when a newer marker bumped this one out of the pending slot
|
--- @field superseded_by_marker_line integer|nil -- set when a newer marker bumped this one out of the pending slot
|
||||||
--- @field target_kind string|nil -- "atom" | "comp_bare" | "comp_proc" | "unrelated" once observed (nil if no declaration ever followed)
|
--- @field target_kind string|nil -- "atom" | "comp_bare" | "comp_proc" | "unrelated" once observed (nil if no declaration ever followed)
|
||||||
@@ -71,15 +68,15 @@ local parse_enum_int_literal
|
|||||||
--- @field reg string -- "R_T0"
|
--- @field reg string -- "R_T0"
|
||||||
--- @field type_name string
|
--- @field type_name string
|
||||||
--- @field pointer_depth integer
|
--- @field pointer_depth integer
|
||||||
--- @field source_line integer -- line of the call site (callsite or enum-site)
|
--- @field source_line integer -- Line of the call site (callsite or enum-site)
|
||||||
|
|
||||||
--- @class AtomCtxEntry
|
--- @class AtomCtxEntry
|
||||||
--- @field rbind_atom string -- the rbind atom ident that this consumer should propagate types from
|
--- @field rbind_atom string -- The rbind atom ident that this consumer should propagate types from
|
||||||
--- @field info_line integer
|
--- @field info_line integer
|
||||||
--- @field source string -- absolute path of the source file
|
--- @field source string -- Absolute path of the source file
|
||||||
|
|
||||||
--- @class AtomPhaseGroup
|
--- @class AtomPhaseGroup
|
||||||
--- @field atoms string[] -- atom names tagged with this phase label (source-order)
|
--- @field atoms string[] -- Atom names tagged with this phase label (source-order)
|
||||||
|
|
||||||
--- @class AtomViewEntry
|
--- @class AtomViewEntry
|
||||||
--- @field atom_name string -- e.g. "red_cube_g4_face"
|
--- @field atom_name string -- e.g. "red_cube_g4_face"
|
||||||
@@ -88,11 +85,11 @@ local parse_enum_int_literal
|
|||||||
--- @field info_line integer -- line of the atom_info call
|
--- @field info_line integer -- line of the atom_info call
|
||||||
|
|
||||||
--- @class SourceFile
|
--- @class SourceFile
|
||||||
--- @field path string -- absolute path to the source file
|
--- @field path string -- Absolute path to the source file
|
||||||
--- @field text string -- the full source text
|
--- @field text string -- Full source text
|
||||||
--- @field dir string -- the directory containing the source
|
--- @field dir string -- Directory containing the source
|
||||||
--- @field basename string -- filename without extension
|
--- @field basename string -- Filename without extension
|
||||||
--- @field scan table -- pre-scanned SourceScan payload (set by this pass)
|
--- @field scan table -- Pre-scanned SourceScan payload (set by this pass)
|
||||||
|
|
||||||
--- @class PassCtx
|
--- @class PassCtx
|
||||||
--- @field sources SourceFile[]
|
--- @field sources SourceFile[]
|
||||||
@@ -111,15 +108,15 @@ local parse_enum_int_literal
|
|||||||
|
|
||||||
--- @class AtomEntry
|
--- @class AtomEntry
|
||||||
--- @field line integer
|
--- @field line integer
|
||||||
--- @field name string -- atom name (for components: without ac_ prefix)
|
--- @field name string -- Atom name (for components: without ac_ prefix)
|
||||||
--- @field body string -- brace-delimited body (without the braces)
|
--- @field body string -- Brace-delimited body (without the braces)
|
||||||
--- @field body_off integer -- char offset of body[1] in source
|
--- @field body_off integer -- Char offset of body[1] in source
|
||||||
--- @field kind string -- "atom" | "comp_bare" | "comp_proc" | "raw_atom"
|
--- @field kind string -- "atom" | "comp_bare" | "comp_proc" | "raw_atom"
|
||||||
--- @field raw_name string -- un-stripped name (for components: with ac_ prefix)
|
--- @field raw_name string -- Un-stripped name (for components: with ac_ prefix)
|
||||||
--- @field ident_pos integer -- position of the MipsAtom_/MipsAtomComp_ ident start
|
--- @field ident_pos integer -- Position of the MipsAtom_/MipsAtomComp_ ident start
|
||||||
--- @field after_paren integer -- position past the closing paren
|
--- @field after_paren integer -- Position past the closing paren
|
||||||
--- @field debug_skip boolean -- true when an `atom_dbg_skip` bare marker immediately precedes this declaration (sole-owner stamp; see push_debug_skip_marker)
|
--- @field debug_skip boolean -- true when an `atom_dbg_skip` bare marker immediately precedes this declaration (sole-owner stamp; see push_debug_skip_marker)
|
||||||
--- @field declaration_comment string|nil -- populated by the scanner (backward walk past the marker, captures contiguous `/* */` or `//` block)
|
--- @field declaration_comment string|nil -- Populated by the scanner (backward walk past the marker, captures contiguous `/* */` or `//` block)
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Local helpers (shared by per-form parsers)
|
-- Local helpers (shared by per-form parsers)
|
||||||
@@ -139,10 +136,10 @@ local QUALIFIER_KEYWORDS = {
|
|||||||
local AC_PREFIX = "ac_"
|
local AC_PREFIX = "ac_"
|
||||||
local AC_PREFIX_LEN = 3
|
local AC_PREFIX_LEN = 3
|
||||||
|
|
||||||
-- Strip the "ac_" prefix from a component name.
|
--- Strip the "ac_" prefix from a component name.
|
||||||
-- Returns the input unchanged if it doesn't start with the prefix.
|
--- Returns the input unchanged if it doesn't start with the prefix.
|
||||||
-- @param raw_name string
|
--- @param raw_name string
|
||||||
-- @return string
|
--- @return string
|
||||||
local function strip_ac_prefix(raw_name)
|
local function strip_ac_prefix(raw_name)
|
||||||
if #raw_name > AC_PREFIX_LEN and raw_name:sub(1, AC_PREFIX_LEN) == AC_PREFIX then
|
if #raw_name > AC_PREFIX_LEN and raw_name:sub(1, AC_PREFIX_LEN) == AC_PREFIX then
|
||||||
return raw_name:sub(AC_PREFIX_LEN + 1)
|
return raw_name:sub(AC_PREFIX_LEN + 1)
|
||||||
@@ -156,7 +153,7 @@ end
|
|||||||
local function push_debug_skip_marker(out, marker)
|
local function push_debug_skip_marker(out, marker)
|
||||||
local markers = out.debug_skip_markers
|
local markers = out.debug_skip_markers
|
||||||
local prior = markers[#markers]
|
local prior = markers[#markers]
|
||||||
if prior and prior.pending then
|
if prior and prior.pending then
|
||||||
prior.pending = false
|
prior.pending = false
|
||||||
prior.superseded_by_marker_line = marker.marker_line
|
prior.superseded_by_marker_line = marker.marker_line
|
||||||
end
|
end
|
||||||
@@ -178,25 +175,25 @@ end
|
|||||||
-- Returns (body, after_brace, body_off) on success, or (nil, fallback_pos) on no brace.
|
-- Returns (body, after_brace, body_off) on success, or (nil, fallback_pos) on no brace.
|
||||||
-- `fallback_pos` defaults to `after_paren + 1` (the common "advance by 1" case).
|
-- `fallback_pos` defaults to `after_paren + 1` (the common "advance by 1" case).
|
||||||
local function find_body_braces(source, after_paren, fallback)
|
local function find_body_braces(source, after_paren, fallback)
|
||||||
local brace = duffle.scan_to_char(source, "{", after_paren)
|
local brace = duffle.scan_to_char(source, "{", after_paren)
|
||||||
if not brace then return nil, fallback or (after_paren + 1) end
|
if not brace then return nil, fallback or (after_paren + 1) end
|
||||||
local body, after_brace = duffle.read_braces(source, brace)
|
local body, after_brace = duffle.read_braces(source, brace)
|
||||||
return body, after_brace, brace + 1
|
return body, after_brace, brace + 1
|
||||||
end
|
end
|
||||||
|
|
||||||
-- Walk backward from `start_pos` capturing contiguous `/* */` block(s) and
|
--- Walk backward from `start_pos` capturing contiguous `/* */` block(s) and
|
||||||
-- `//` line(s) that immediately precede it. The caller (preceding_declaration_comment)
|
--- `//` line(s) that immediately precede it. The caller (preceding_declaration_comment)
|
||||||
-- supplies `start_pos` so the walker does not need to detect marker shape or prelude layout.
|
--- supplies `start_pos` so the walker does not need to detect marker shape or prelude layout.
|
||||||
-- The scanner already knows the marker_pos + decl ident_pos and threads that knowledge forward.
|
--- The scanner already knows the marker_pos + decl ident_pos and threads that knowledge forward.
|
||||||
--
|
---
|
||||||
-- The walker captures:
|
--- The walker captures:
|
||||||
-- - Block comment close `*/` followed by walking back to `/*`.
|
--- - Block comment close `*/` followed by walking back to `/*`.
|
||||||
-- - `//` line comments (the line containing the current non-ws position starts with `//`).
|
--- - `//` line comments (the line containing the current non-ws position starts with `//`).
|
||||||
-- It stops at the first non-ws char that does not begin a comment block or line.
|
--- It stops at the first non-ws char that does not begin a comment block or line.
|
||||||
-- Empty string if no comment is adjacent.
|
--- Empty string if no comment is adjacent.
|
||||||
-- @param source string
|
--- @param source string
|
||||||
-- @param start_pos integer -- exclusive upper bound for the captured block
|
--- @param start_pos integer -- exclusive upper bound for the captured block
|
||||||
-- @return string
|
--- @return string
|
||||||
local function preceding_comment_walk_backward(source, start_pos)
|
local function preceding_comment_walk_backward(source, start_pos)
|
||||||
local pieces = {}
|
local pieces = {}
|
||||||
local scan_pos = start_pos
|
local scan_pos = start_pos
|
||||||
@@ -249,13 +246,13 @@ local function preceding_comment_walk_backward(source, start_pos)
|
|||||||
return table.concat(pieces, "\n")
|
return table.concat(pieces, "\n")
|
||||||
end
|
end
|
||||||
|
|
||||||
-- Resolve the start position for the declaration-comment walk.
|
--- Resolve the start position for the declaration-comment walk.
|
||||||
-- When a debug-skip marker is pending, the walker must start from the position immediately before the marker ident
|
--- When a debug-skip marker is pending, the walker must start from the position immediately before the marker ident
|
||||||
-- (so it walks backward past the marker text and any `FI_ MipsAtom ac_X(args)` proc-prelude layout — neither of which is visible if we start from the declaration ident_pos).
|
--- (so it walks backward past the marker text and any `FI_ MipsAtom ac_X(args)` proc-prelude layout — neither of which is visible if we start from the declaration ident_pos).
|
||||||
-- When no marker is pending, the walker starts from the declaration ident_pos directly.
|
--- When no marker is pending, the walker starts from the declaration ident_pos directly.
|
||||||
-- @param pending_marker DebugSkipMarker|nil
|
--- @param pending_marker DebugSkipMarker|nil
|
||||||
-- @param ident_pos integer -- declaration ident position
|
--- @param ident_pos integer -- declaration ident position
|
||||||
-- @return integer
|
--- @return integer
|
||||||
local function comment_walk_start(pending_marker, ident_pos)
|
local function comment_walk_start(pending_marker, ident_pos)
|
||||||
if pending_marker then
|
if pending_marker then
|
||||||
return pending_marker.marker_pos - 1
|
return pending_marker.marker_pos - 1
|
||||||
@@ -263,16 +260,16 @@ local function comment_walk_start(pending_marker, ident_pos)
|
|||||||
return ident_pos - 1
|
return ident_pos - 1
|
||||||
end
|
end
|
||||||
|
|
||||||
-- Attach the pending marker to the next declaration.
|
--- Attach the pending marker to the next declaration.
|
||||||
-- The declaration form disambiguates whole atoms from components; the resolved `debug_skip` is stamped directly on the declaration record
|
--- The declaration form disambiguates whole atoms from components; the resolved `debug_skip` is stamped directly on the declaration record
|
||||||
-- (sole-owner discipline; see push_debug_skip_marker).
|
--- (sole-owner discipline; see push_debug_skip_marker).
|
||||||
--
|
---
|
||||||
-- A marker is POSITIVE (stamps `debug_skip = true` on the declaration) iff:
|
--- A marker is POSITIVE (stamps `debug_skip = true` on the declaration) iff:
|
||||||
-- marker_kind == "atom_dbg_skip" AND is_bare == true
|
--- marker_kind == "atom_dbg_skip" AND is_bare == true
|
||||||
-- Any other spelling or shape (parenthesized form, legacy name) is recorded as a raw marker for annotation validation but never stamps `debug_skip`.
|
--- Any other spelling or shape (parenthesized form, legacy name) is recorded as a raw marker for annotation validation but never stamps `debug_skip`.
|
||||||
-- @param out SourceScan
|
--- @param out SourceScan
|
||||||
-- @param target_kind string|nil -- "atom" | "comp_bare" | "comp_proc" | "unrelated" once observed
|
--- @param target_kind string|nil -- "atom" | "comp_bare" | "comp_proc" | "unrelated" once observed
|
||||||
-- @return boolean|nil -- true iff the marker is the positive bare form
|
--- @return boolean|nil -- true iff the marker is the positive bare form
|
||||||
local function attach_debug_skip_marker(out, target_kind)
|
local function attach_debug_skip_marker(out, target_kind)
|
||||||
local markers = out.debug_skip_markers
|
local markers = out.debug_skip_markers
|
||||||
local marker = markers[#markers]
|
local marker = markers[#markers]
|
||||||
@@ -390,13 +387,13 @@ local function walk_body_fields(body, build_field)
|
|||||||
while body_pos <= body_len do
|
while body_pos <= body_len do
|
||||||
body_pos = duffle.skip_ws_and_cmt(body, body_pos)
|
body_pos = duffle.skip_ws_and_cmt(body, body_pos)
|
||||||
if body_pos > body_len then break end
|
if body_pos > body_len then break end
|
||||||
local first, first_end = duffle.read_ident(body, body_pos)
|
local first, first_end = duffle.read_ident(body, body_pos)
|
||||||
if not first then
|
if not first then
|
||||||
body_pos = body_pos + 1
|
body_pos = body_pos + 1
|
||||||
else
|
else
|
||||||
local after_first = duffle.skip_ws_and_cmt(body, first_end)
|
local after_first = duffle.skip_ws_and_cmt(body, first_end)
|
||||||
local result, new_pos = build_field(first, first_end, after_first)
|
local result, new_pos = build_field(first, first_end, after_first)
|
||||||
if result then fields[#fields + 1] = result end
|
if result then fields[#fields + 1] = result end
|
||||||
body_pos = new_pos or first_end
|
body_pos = new_pos or first_end
|
||||||
-- Skip a single trailing `,` or `;`.
|
-- Skip a single trailing `,` or `;`.
|
||||||
if body_pos <= body_len and (body:sub(body_pos, body_pos) == "," or body:sub(body_pos, body_pos) == ";") then
|
if body_pos <= body_len and (body:sub(body_pos, body_pos) == "," or body:sub(body_pos, body_pos) == ";") then
|
||||||
@@ -442,7 +439,7 @@ local function parse_enum_body_fields(body)
|
|||||||
local value
|
local value
|
||||||
local new_pos
|
local new_pos
|
||||||
if body:sub(after_name, after_name) == "=" then
|
if body:sub(after_name, after_name) == "=" then
|
||||||
local val_pos = duffle.skip_ws_and_cmt(body, after_name + 1)
|
local val_pos = duffle.skip_ws_and_cmt(body, after_name + 1)
|
||||||
local v, end_pos = parse_enum_int_literal(body, val_pos)
|
local v, end_pos = parse_enum_int_literal(body, val_pos)
|
||||||
if v ~= nil then
|
if v ~= nil then
|
||||||
value = v
|
value = v
|
||||||
@@ -461,16 +458,16 @@ end
|
|||||||
-- Returns a positive integer byte_size when the chain bottoms out at a builtin, or nil if the chain is broken, exceeds TYPE_CHAIN_MAX_DEPTH, or contains a cycle.
|
-- Returns a positive integer byte_size when the chain bottoms out at a builtin, or nil if the chain is broken, exceeds TYPE_CHAIN_MAX_DEPTH, or contains a cycle.
|
||||||
local function resolve_typedef_byte_size(type_name, type_name_registry, visited, depth)
|
local function resolve_typedef_byte_size(type_name, type_name_registry, visited, depth)
|
||||||
if depth > TYPE_CHAIN_MAX_DEPTH then return nil end
|
if depth > TYPE_CHAIN_MAX_DEPTH then return nil end
|
||||||
if visited[type_name] then return nil end
|
if visited[type_name] then return nil end
|
||||||
visited[type_name] = true
|
visited[type_name] = true
|
||||||
|
|
||||||
-- Check the builtin primitive map FIRST.
|
-- Check the builtin primitive map FIRST.
|
||||||
-- This handles undeclared builtin idents (e.g. `__UINT32_TYPE__` appears as underlying_type in `typedef __UINT32_TYPE__ TSet_(V4_S2);`
|
-- This handles undeclared builtin idents (e.g. `__UINT32_TYPE__` appears as underlying_type in `typedef __UINT32_TYPE__ TSet_(V4_S2);`
|
||||||
-- even though the fixture never declares `__UINT32_TYPE__` itself).
|
-- even though the fixture never declares `__UINT32_TYPE__` itself).
|
||||||
local builtin = BUILTIN_BYTE_SIZES[type_name]
|
local builtin = BUILTIN_BYTE_SIZES[type_name]
|
||||||
if builtin ~= nil then return builtin end
|
if builtin ~= nil then return builtin end
|
||||||
|
|
||||||
local entry = type_name_registry[type_name]
|
local entry = type_name_registry[type_name]
|
||||||
if not entry then return nil end
|
if not entry then return nil end
|
||||||
|
|
||||||
-- Confident: this entry was already resolved by the propagation pass (e.g., a builtin or a struct whose fields are all resolved).
|
-- Confident: this entry was already resolved by the propagation pass (e.g., a builtin or a struct whose fields are all resolved).
|
||||||
@@ -519,9 +516,9 @@ local function propagate_type_sizes(out)
|
|||||||
for name, entry in pairs(reg) do
|
for name, entry in pairs(reg) do
|
||||||
if entry.byte_size == nil then
|
if entry.byte_size == nil then
|
||||||
local resolved = resolve_typedef_byte_size(name, reg, {}, 1)
|
local resolved = resolve_typedef_byte_size(name, reg, {}, 1)
|
||||||
if resolved ~= nil then
|
if resolved ~= nil then
|
||||||
entry.byte_size = resolved
|
entry.byte_size = resolved
|
||||||
any_change = true
|
any_change = true
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
end
|
end
|
||||||
@@ -828,7 +825,7 @@ end
|
|||||||
--- Parse a decimal/negative-decimal/hex integer literal starting at byte position `start`.
|
--- Parse a decimal/negative-decimal/hex integer literal starting at byte position `start`.
|
||||||
--- Returns (value, end_pos) on success, or (nil, start) on failure / no match.
|
--- Returns (value, end_pos) on success, or (nil, start) on failure / no match.
|
||||||
--- Accepts: 12, -1, 0, 0x10, 0X1F, -0x10.
|
--- Accepts: 12, -1, 0, 0x10, 0X1F, -0x10.
|
||||||
--- @param text string
|
--- @param text string
|
||||||
--- @param start integer
|
--- @param start integer
|
||||||
--- @return integer|nil, integer
|
--- @return integer|nil, integer
|
||||||
--- Implementation note: this is a plain assignment (not `local function`)
|
--- Implementation note: this is a plain assignment (not `local function`)
|
||||||
@@ -952,9 +949,9 @@ end
|
|||||||
--- Always saves the raw RHS text into `code_macro_bodies` (for cross-source fallback during chain resolution),
|
--- Always saves the raw RHS text into `code_macro_bodies` (for cross-source fallback during chain resolution),
|
||||||
--- then (if resolvable) stores the resolved integer code into `code_macros` keyed by the macro name.
|
--- then (if resolvable) stores the resolved integer code into `code_macros` keyed by the macro name.
|
||||||
--- `directive_start` points at the `#` byte. The function is silent on non-matching directives, the caller skips the line in any case.
|
--- `directive_start` points at the `#` byte. The function is silent on non-matching directives, the caller skips the line in any case.
|
||||||
--- @param source string
|
--- @param source string
|
||||||
--- @param directive_start integer -- byte position of `#`
|
--- @param directive_start integer -- byte position of `#`
|
||||||
--- @param code_macros table -- out._code_macros / ctx.shared._code_macros
|
--- @param code_macros table -- out._code_macros / ctx.shared._code_macros
|
||||||
--- @param code_macro_bodies table -- out._code_macro_bodies / ctx.shared._code_macro_bodies
|
--- @param code_macro_bodies table -- out._code_macro_bodies / ctx.shared._code_macro_bodies
|
||||||
local function try_extract_code_macro(source, directive_start, code_macros, code_macro_bodies)
|
local function try_extract_code_macro(source, directive_start, code_macros, code_macro_bodies)
|
||||||
local rest = duffle.skip_ws_and_cmt(source, directive_start + 1)
|
local rest = duffle.skip_ws_and_cmt(source, directive_start + 1)
|
||||||
@@ -985,8 +982,8 @@ end
|
|||||||
--- Populates `code_macros` with resolved integer codes AND `code_macro_bodies` with raw RHS text
|
--- Populates `code_macros` with resolved integer codes AND `code_macro_bodies` with raw RHS text
|
||||||
--- (used by the chain walker as cross-source fallback during pass 1b in `M.run`); ignores everything else.
|
--- (used by the chain walker as cross-source fallback during pass 1b in `M.run`); ignores everything else.
|
||||||
--- Used by `M.run` pass 1a to build the cross-source `_code_macros` + `_code_macro_bodies` registries before pass 1b resolves chains.
|
--- Used by `M.run` pass 1a to build the cross-source `_code_macros` + `_code_macro_bodies` registries before pass 1b resolves chains.
|
||||||
--- @param source string
|
--- @param source string
|
||||||
--- @param code_macros table
|
--- @param code_macros table
|
||||||
--- @param code_macro_bodies table
|
--- @param code_macro_bodies table
|
||||||
local function scan_source_pre_pass(source, code_macros, code_macro_bodies)
|
local function scan_source_pre_pass(source, code_macros, code_macro_bodies)
|
||||||
local pos = 1
|
local pos = 1
|
||||||
@@ -1043,7 +1040,7 @@ local function parse_enum_atom_type_default(body, pos)
|
|||||||
if pos > #body then return nil, 0, pos end
|
if pos > #body then return nil, 0, pos end
|
||||||
-- Bare `atom_type` word with word-bounding on both sides.
|
-- Bare `atom_type` word with word-bounding on both sides.
|
||||||
local ident, ident_end = duffle.read_ident(body, pos)
|
local ident, ident_end = duffle.read_ident(body, pos)
|
||||||
if ident ~= "atom_type" then return nil, 0, pos end
|
if ident ~= "atom_type" then return nil, 0, pos end
|
||||||
if pos > 1 then
|
if pos > 1 then
|
||||||
local prev = body:byte(pos - 1)
|
local prev = body:byte(pos - 1)
|
||||||
if duffle.is_alnum_byte(prev) then return nil, 0, pos end
|
if duffle.is_alnum_byte(prev) then return nil, 0, pos end
|
||||||
@@ -1054,19 +1051,19 @@ local function parse_enum_atom_type_default(body, pos)
|
|||||||
end
|
end
|
||||||
-- Expect `( ... )` immediately after.
|
-- Expect `( ... )` immediately after.
|
||||||
local open_pos = duffle.skip_ws_and_cmt(body, ident_end)
|
local open_pos = duffle.skip_ws_and_cmt(body, ident_end)
|
||||||
if open_pos > #body or body:sub(open_pos, open_pos) ~= "(" then return nil, 0, pos end
|
if open_pos > #body or body:sub(open_pos, open_pos) ~= "(" then return nil, 0, pos end
|
||||||
local inner, after_close = duffle.read_parens(body, open_pos)
|
local inner, after_close = duffle.read_parens(body, open_pos)
|
||||||
-- Reject any trailing tokens past the close paren other than comma / close-brace (next enum entry / end of enum).
|
-- Reject any trailing tokens past the close paren other than comma / close-brace (next enum entry / end of enum).
|
||||||
local residue = duffle.skip_ws_and_cmt(body, after_close)
|
local residue = duffle.skip_ws_and_cmt(body, after_close)
|
||||||
if residue <= #body then
|
if residue <= #body then
|
||||||
local rbyte = body:byte(residue)
|
local rbyte = body:byte(residue)
|
||||||
if rbyte ~= BYTE_COMMA and rbyte ~= BYTE_CLOSE_BRACE then return nil, 0, pos end
|
if rbyte ~= BYTE_COMMA and rbyte ~= BYTE_CLOSE_BRACE then return nil, 0, pos end
|
||||||
end
|
end
|
||||||
-- Parse the type chain inside the parens (e.g. `V4_S2*` -> ("V4_S2", 1)).
|
-- Parse the type chain inside the parens (e.g. `V4_S2*` -> ("V4_S2", 1)).
|
||||||
local type_name, depth, after_chain = parse_type_chain(inner, 1)
|
local type_name, depth, after_chain = parse_type_chain(inner, 1)
|
||||||
if not type_name then return nil, 0, pos end
|
if not type_name then return nil, 0, pos end
|
||||||
local end_check = duffle.skip_ws_and_cmt(inner, after_chain)
|
local end_check = duffle.skip_ws_and_cmt(inner, after_chain)
|
||||||
if end_check <= #inner then return nil, 0, pos end
|
if end_check <= #inner then return nil, 0, pos end
|
||||||
return type_name, depth, duffle.skip_ws_and_cmt(body, after_close)
|
return type_name, depth, duffle.skip_ws_and_cmt(body, after_close)
|
||||||
end
|
end
|
||||||
|
|
||||||
@@ -1098,11 +1095,11 @@ end
|
|||||||
---
|
---
|
||||||
--- Diagnostic-only path: a following `(...)` is recorded as an invalid parenthesized-form marker so the annotation rule can emit a precise "parenthesized form" diagnostic.
|
--- Diagnostic-only path: a following `(...)` is recorded as an invalid parenthesized-form marker so the annotation rule can emit a precise "parenthesized form" diagnostic.
|
||||||
--- The parenthesized form stays diagnostic; the bare form alone carries the runtime stamp.
|
--- The parenthesized form stays diagnostic; the bare form alone carries the runtime stamp.
|
||||||
--- @param source string
|
--- @param source string
|
||||||
--- @param pos integer
|
--- @param pos integer
|
||||||
--- @param ident_end integer
|
--- @param ident_end integer
|
||||||
--- @param line_of fun(pos: integer): integer
|
--- @param line_of fun(pos: integer): integer
|
||||||
--- @param out SourceScan
|
--- @param out SourceScan
|
||||||
--- @return integer -- source cursor position to resume from
|
--- @return integer -- source cursor position to resume from
|
||||||
local function parse_dbg_skip_marker(source, pos, ident_end, line_of, out)
|
local function parse_dbg_skip_marker(source, pos, ident_end, line_of, out)
|
||||||
local marker_kind = source:sub(pos, ident_end - 1)
|
local marker_kind = source:sub(pos, ident_end - 1)
|
||||||
@@ -1134,15 +1131,15 @@ end
|
|||||||
-- Parse `atom_dbg_reg_default(R_X, <type>...)`;
|
-- Parse `atom_dbg_reg_default(R_X, <type>...)`;
|
||||||
-- the second argument may be a `Type` or `Type*`/`Type**` chain. Records in `out.types[R_X]`.
|
-- the second argument may be a `Type` or `Type*`/`Type**` chain. Records in `out.types[R_X]`.
|
||||||
local function parse_atom_dbg_reg_default(source, pos, ident_end, line_of, out)
|
local function parse_atom_dbg_reg_default(source, pos, ident_end, line_of, out)
|
||||||
local inner, after_paren = read_parens_after(source, ident_end)
|
local inner, after_paren = read_parens_after(source, ident_end)
|
||||||
if not inner then return after_paren end
|
if not inner then return after_paren end
|
||||||
local args = duffle.split_top_level_commas(inner)
|
local args = duffle.split_top_level_commas(inner)
|
||||||
if #args < 1 then
|
if #args < 1 then
|
||||||
-- Annotation pass surfaces this; we still consume the marker.
|
-- Annotation pass surfaces this; we still consume the marker.
|
||||||
return after_paren
|
return after_paren
|
||||||
end
|
end
|
||||||
local reg_name = duffle.trim(args[1])
|
local reg_name = duffle.trim(args[1])
|
||||||
local type_part = args[2] or "void"
|
local type_part = args[2] or "void"
|
||||||
local type_name, depth = parse_type_chain(type_part, 1)
|
local type_name, depth = parse_type_chain(type_part, 1)
|
||||||
if not type_name then type_name, depth = duffle.trim(type_part), 0 end
|
if not type_name then type_name, depth = duffle.trim(type_part), 0 end
|
||||||
out.types[reg_name] = {
|
out.types[reg_name] = {
|
||||||
@@ -1161,23 +1158,23 @@ local function parse_atom_dbg_reg_default(source, pos, ident_end, line_of, out)
|
|||||||
end
|
end
|
||||||
|
|
||||||
--- Parse: `MipsAtom_(<name>) [atom_info(<binds>, <reads>, <writes>)] { <body> }`
|
--- Parse: `MipsAtom_(<name>) [atom_info(<binds>, <reads>, <writes>)] { <body> }`
|
||||||
--- @param source string
|
--- @param source string
|
||||||
--- @param pos integer
|
--- @param pos integer
|
||||||
--- @param ident_end integer
|
--- @param ident_end integer
|
||||||
--- @param line_of fun(pos: integer): integer
|
--- @param line_of fun(pos: integer): integer
|
||||||
--- @param out SourceScan
|
--- @param out SourceScan
|
||||||
--- @return integer
|
--- @return integer
|
||||||
local function parse_mips_atom(source, pos, ident_end, line_of, out)
|
local function parse_mips_atom(source, pos, ident_end, line_of, out)
|
||||||
local inner, after_paren, open_paren = read_parens_after(source, ident_end)
|
local inner, after_paren, open_paren = read_parens_after(source, ident_end)
|
||||||
if not inner then return after_paren end
|
if not inner then return after_paren end
|
||||||
|
|
||||||
local raw_name = duffle.read_ident(inner, 1)
|
local raw_name = duffle.read_ident(inner, 1)
|
||||||
|
|
||||||
-- Lookahead for atom_info(...) between `)` and `{`. Captures sub-calls; updates brace search start.
|
-- Lookahead for atom_info(...) between `)` and `{`. Captures sub-calls; updates brace search start.
|
||||||
local brace_search_pos = after_paren
|
local brace_search_pos = after_paren
|
||||||
local lookahead = duffle.skip_ws_and_cmt(source, after_paren)
|
local lookahead = duffle.skip_ws_and_cmt(source, after_paren)
|
||||||
local look_ident, look_end = duffle.read_ident(source, lookahead)
|
local look_ident, look_end = duffle.read_ident(source, lookahead)
|
||||||
if look_ident == "atom_info" then
|
if look_ident == "atom_info" then
|
||||||
local info_open = duffle.skip_ws_and_cmt(source, look_end)
|
local info_open = duffle.skip_ws_and_cmt(source, look_end)
|
||||||
if source:sub(info_open, info_open) == "(" then
|
if source:sub(info_open, info_open) == "(" then
|
||||||
local info_inner, info_after = duffle.read_parens(source, info_open)
|
local info_inner, info_after = duffle.read_parens(source, info_open)
|
||||||
@@ -1221,7 +1218,7 @@ local function parse_mips_atom(source, pos, ident_end, line_of, out)
|
|||||||
end
|
end
|
||||||
end
|
end
|
||||||
|
|
||||||
local body, after_brace, body_off = find_body_braces(source, brace_search_pos, open_paren + 1)
|
local body, after_brace, body_off = find_body_braces(source, brace_search_pos, open_paren + 1)
|
||||||
if not body then return after_brace end
|
if not body then return after_brace end
|
||||||
if raw_name and raw_name ~= "" then
|
if raw_name and raw_name ~= "" then
|
||||||
register_atom(out, "atom", line_of(pos), raw_name, body, body_off, raw_name, pos, after_paren, source)
|
register_atom(out, "atom", line_of(pos), raw_name, body, body_off, raw_name, pos, after_paren, source)
|
||||||
@@ -1231,20 +1228,20 @@ local function parse_mips_atom(source, pos, ident_end, line_of, out)
|
|||||||
end
|
end
|
||||||
|
|
||||||
--- Parse: `MipsAtomComp_(<name>) { <body> }`
|
--- Parse: `MipsAtomComp_(<name>) { <body> }`
|
||||||
--- @param source string
|
--- @param source string
|
||||||
--- @param pos integer
|
--- @param pos integer
|
||||||
--- @param ident_end integer
|
--- @param ident_end integer
|
||||||
--- @param line_of fun(pos: integer): integer
|
--- @param line_of fun(pos: integer): integer
|
||||||
--- @param out SourceScan
|
--- @param out SourceScan
|
||||||
--- @return integer
|
--- @return integer
|
||||||
local function parse_mips_atom_comp(source, pos, ident_end, line_of, out)
|
local function parse_mips_atom_comp(source, pos, ident_end, line_of, out)
|
||||||
local inner, after_paren, open_paren = read_parens_after(source, ident_end)
|
local inner, after_paren, open_paren = read_parens_after(source, ident_end)
|
||||||
if not inner then return after_paren end
|
if not inner then return after_paren end
|
||||||
|
|
||||||
local raw_name = duffle.read_ident(inner, 1)
|
local raw_name = duffle.read_ident(inner, 1)
|
||||||
if not raw_name then return open_paren + 1 end
|
if not raw_name then return open_paren + 1 end
|
||||||
|
|
||||||
local body, after_brace, body_off = find_body_braces(source, after_paren, open_paren + 1)
|
local body, after_brace, body_off = find_body_braces(source, after_paren, open_paren + 1)
|
||||||
if not body then return after_brace end
|
if not body then return after_brace end
|
||||||
local name = strip_ac_prefix(raw_name)
|
local name = strip_ac_prefix(raw_name)
|
||||||
register_atom(out, "comp_bare", line_of(pos), name, body, body_off, raw_name, pos, after_paren, source)
|
register_atom(out, "comp_bare", line_of(pos), name, body, body_off, raw_name, pos, after_paren, source)
|
||||||
@@ -1253,14 +1250,14 @@ local function parse_mips_atom_comp(source, pos, ident_end, line_of, out)
|
|||||||
end
|
end
|
||||||
|
|
||||||
--- Parse: `MipsAtomComp_Proc_(<name>, { <body> })` — body is inside the LAST `{` in args.
|
--- Parse: `MipsAtomComp_Proc_(<name>, { <body> })` — body is inside the LAST `{` in args.
|
||||||
--- @param source string
|
--- @param source string
|
||||||
--- @param pos integer
|
--- @param pos integer
|
||||||
--- @param ident_end integer
|
--- @param ident_end integer
|
||||||
--- @param line_of fun(pos: integer): integer
|
--- @param line_of fun(pos: integer): integer
|
||||||
--- @param out SourceScan
|
--- @param out SourceScan
|
||||||
--- @return integer
|
--- @return integer
|
||||||
local function parse_mips_atom_comp_proc(source, pos, ident_end, line_of, out)
|
local function parse_mips_atom_comp_proc(source, pos, ident_end, line_of, out)
|
||||||
local inner, after_paren, open_paren = read_parens_after(source, ident_end)
|
local inner, after_paren, open_paren = read_parens_after(source, ident_end)
|
||||||
if not inner then return after_paren end
|
if not inner then return after_paren end
|
||||||
|
|
||||||
-- Find the LAST `{` in inner (the body brace, not any potential embedded braces in expressions).
|
-- Find the LAST `{` in inner (the body brace, not any potential embedded braces in expressions).
|
||||||
@@ -1277,21 +1274,20 @@ local function parse_mips_atom_comp_proc(source, pos, ident_end, line_of, out)
|
|||||||
if close_pos > #inner + 1 then return after_paren end
|
if close_pos > #inner + 1 then return after_paren end
|
||||||
|
|
||||||
local raw_name = inner:match("^%s*([%w_]+)") or "?"
|
local raw_name = inner:match("^%s*([%w_]+)") or "?"
|
||||||
local name = strip_ac_prefix(raw_name)
|
local name = strip_ac_prefix(raw_name)
|
||||||
-- Position of body[1] in source = open_paren + 1 (start of inner) + last_brace_pos + 1 (past '{').
|
-- Position of body[1] in source = open_paren + 1 (start of inner) + last_brace_pos + 1 (past '{').
|
||||||
local body_off = open_paren + 2 + last_brace_pos
|
local body_off = open_paren + 2 + last_brace_pos
|
||||||
|
|
||||||
register_atom(out, "comp_proc", line_of(pos), name, body, body_off, raw_name, pos, after_paren, source)
|
register_atom(out, "comp_proc", line_of(pos), name, body, body_off, raw_name, pos, after_paren, source)
|
||||||
|
|
||||||
return after_paren
|
return after_paren
|
||||||
end
|
end
|
||||||
|
|
||||||
--- Parse: `MipsCode code_<name> { <body> }` (raw atom form — offsets pass only).
|
--- Parse: `MipsCode code_<name> { <body> }` (raw atom form — offsets pass only).
|
||||||
--- @param source string
|
--- @param source string
|
||||||
--- @param pos integer
|
--- @param pos integer
|
||||||
--- @param ident_end integer
|
--- @param ident_end integer
|
||||||
--- @param line_of fun(pos: integer): integer
|
--- @param line_of fun(pos: integer): integer
|
||||||
--- @param out SourceScan
|
--- @param out SourceScan
|
||||||
--- @return integer
|
--- @return integer
|
||||||
local function parse_mips_code(source, pos, ident_end, line_of, out)
|
local function parse_mips_code(source, pos, ident_end, line_of, out)
|
||||||
local next_pos = duffle.skip_ws_and_cmt(source, ident_end)
|
local next_pos = duffle.skip_ws_and_cmt(source, ident_end)
|
||||||
@@ -1300,8 +1296,8 @@ local function parse_mips_code(source, pos, ident_end, line_of, out)
|
|||||||
return ident_end
|
return ident_end
|
||||||
end
|
end
|
||||||
|
|
||||||
local atom_name = next_ident:sub(6)
|
local atom_name = next_ident:sub(6)
|
||||||
local body, after_brace, body_off = find_body_braces(source, next_after, ident_end)
|
local body, after_brace, body_off = find_body_braces(source, next_after, ident_end)
|
||||||
if not body then return after_brace end
|
if not body then return after_brace end
|
||||||
register_raw_atom(out, line_of(pos), atom_name, body, body_off, atom_name, pos)
|
register_raw_atom(out, line_of(pos), atom_name, body, body_off, atom_name, pos)
|
||||||
|
|
||||||
@@ -1320,13 +1316,13 @@ end
|
|||||||
--- pointer_depth = 0
|
--- pointer_depth = 0
|
||||||
--- } -- byte_size + per-field offset/byte_size set by the propagation pass.
|
--- } -- byte_size + per-field offset/byte_size set by the propagation pass.
|
||||||
--- Also populates `out.binds[]` IFF `name:sub(1, 6) == "Binds_"`.
|
--- Also populates `out.binds[]` IFF `name:sub(1, 6) == "Binds_"`.
|
||||||
--- @param body string
|
--- @param body string
|
||||||
--- @param name string
|
--- @param name string
|
||||||
--- @param pos integer
|
--- @param pos integer
|
||||||
--- @param line_of fun(pos: integer): integer
|
--- @param line_of fun(pos: integer): integer
|
||||||
--- @param out SourceScan
|
--- @param out SourceScan
|
||||||
local function register_struct_type(body, name, pos, line_of, out)
|
local function register_struct_type(body, name, pos, line_of, out)
|
||||||
local fields = parse_struct_body_fields(body)
|
local fields = parse_struct_body_fields(body)
|
||||||
local source_pos = line_of(pos)
|
local source_pos = line_of(pos)
|
||||||
out.type_name_registry[name] = {
|
out.type_name_registry[name] = {
|
||||||
name = name,
|
name = name,
|
||||||
@@ -1352,11 +1348,11 @@ end
|
|||||||
--- Register an Enum_ entry in type_name_registry.
|
--- Register an Enum_ entry in type_name_registry.
|
||||||
--- Local helper for parse_typedef_binds. Captures the underlying type (1st arg of `Enum_(<underlying>, <name>)`) and the body fields.
|
--- Local helper for parse_typedef_binds. Captures the underlying type (1st arg of `Enum_(<underlying>, <name>)`) and the body fields.
|
||||||
--- @param underlying string
|
--- @param underlying string
|
||||||
--- @param name string
|
--- @param name string
|
||||||
--- @param body string
|
--- @param body string
|
||||||
--- @param pos integer
|
--- @param pos integer
|
||||||
--- @param line_of fun(pos: integer): integer
|
--- @param line_of fun(pos: integer): integer
|
||||||
--- @param out SourceScan
|
--- @param out SourceScan
|
||||||
local function register_enum_type(underlying, name, body, pos, line_of, out)
|
local function register_enum_type(underlying, name, body, pos, line_of, out)
|
||||||
local fields = parse_enum_body_fields(body)
|
local fields = parse_enum_body_fields(body)
|
||||||
out.type_name_registry[name] = {
|
out.type_name_registry[name] = {
|
||||||
@@ -1375,18 +1371,18 @@ end
|
|||||||
--- Captures the underlying type ident (LHS of `typedef <type> <alias>;`) and exposes it through the registry.
|
--- Captures the underlying type ident (LHS of `typedef <type> <alias>;`) and exposes it through the registry.
|
||||||
--- The propagation pass follows the underlying_type chain to resolve byte_size.
|
--- The propagation pass follows the underlying_type chain to resolve byte_size.
|
||||||
--- @param underlying string
|
--- @param underlying string
|
||||||
--- @param name string
|
--- @param name string
|
||||||
--- @param pos integer
|
--- @param pos integer
|
||||||
--- @param line_of fun(pos: integer): integer
|
--- @param line_of fun(pos: integer): integer
|
||||||
--- @param out SourceScan
|
--- @param out SourceScan
|
||||||
local function register_typedef_alias(underlying, name, pos, line_of, out)
|
local function register_typedef_alias(underlying, name, pos, line_of, out)
|
||||||
out.type_name_registry[name] = {
|
out.type_name_registry[name] = {
|
||||||
name = name,
|
name = name,
|
||||||
kind = "typedef",
|
kind = "typedef",
|
||||||
underlying_type = underlying,
|
underlying_type = underlying,
|
||||||
source_line = line_of(pos),
|
source_line = line_of(pos),
|
||||||
source_file = out._source_file,
|
source_file = out._source_file,
|
||||||
pointer_depth = 0,
|
pointer_depth = 0,
|
||||||
}
|
}
|
||||||
end
|
end
|
||||||
|
|
||||||
@@ -1396,29 +1392,29 @@ end
|
|||||||
--- 1. `typedef Struct_(<name>) { <body> } <alias>;` adds to type_name_registry (kind="struct").
|
--- 1. `typedef Struct_(<name>) { <body> } <alias>;` adds to type_name_registry (kind="struct").
|
||||||
--- Binds_* aliases also land in out.binds[].
|
--- Binds_* aliases also land in out.binds[].
|
||||||
--- 2. `typedef Enum_(<underlying>, <name>) { <body> } <alias>;`
|
--- 2. `typedef Enum_(<underlying>, <name>) { <body> } <alias>;`
|
||||||
--- adds to type_name_registry (kind="enum").
|
--- Adds to type_name_registry (kind="enum").
|
||||||
--- 3. `typedef <type> <alias>;` simple typedef alias.
|
--- 3. `typedef <type> <alias>;` simple typedef alias.
|
||||||
--- Adds to type_name_registry (kind="typedef").
|
--- Adds to type_name_registry (kind="typedef").
|
||||||
--- 4. `typedef <type> TSet_(<name>);` duffle TSet_ convention.
|
--- 4. `typedef <type> TSet_(<name>);` duffle TSet_ convention.
|
||||||
--- Strips TSet_ wrapper; adds to type_name_registry (kind="typedef") with underlying_type=<type>.
|
--- Strips TSet_ wrapper; adds to type_name_registry (kind="typedef") with underlying_type=<type>.
|
||||||
---
|
---
|
||||||
--- All four shapes also attach an "unrelated" debug-skip marker (the existing behavior — typedef declarations don't carry atom_dbg_skip).
|
--- All four shapes also attach an "unrelated" debug-skip marker (the existing behavior — typedef declarations don't carry atom_dbg_skip).
|
||||||
--- @param source string
|
--- @param source string
|
||||||
--- @param pos integer
|
--- @param pos integer
|
||||||
--- @param ident_end integer
|
--- @param ident_end integer
|
||||||
--- @param line_of fun(pos: integer): integer
|
--- @param line_of fun(pos: integer): integer
|
||||||
--- @param out SourceScan
|
--- @param out SourceScan
|
||||||
--- @return integer
|
--- @return integer
|
||||||
local function parse_typedef_binds(source, pos, ident_end, line_of, out)
|
local function parse_typedef_binds(source, pos, ident_end, line_of, out)
|
||||||
local after_typedef = duffle.skip_ws_and_cmt(source, ident_end)
|
local after_typedef = duffle.skip_ws_and_cmt(source, ident_end)
|
||||||
local id2, id2_end = duffle.read_ident(source, after_typedef)
|
local id2, id2_end = duffle.read_ident(source, after_typedef)
|
||||||
if not id2 then return ident_end end
|
if not id2 then return ident_end end
|
||||||
|
|
||||||
-- ── Shape 1: `typedef Struct_(<name>) { <body> } <alias>;` ────────────
|
-- ── Shape 1: `typedef Struct_(<name>) { <body> } <alias>;` ────────────
|
||||||
if id2 == "Struct_" then
|
if id2 == "Struct_" then
|
||||||
local inner, after_paren, open_paren = read_parens_after(source, id2_end, id2_end)
|
local inner, after_paren, open_paren = read_parens_after(source, id2_end, id2_end)
|
||||||
if not inner then return id2_end end
|
if not inner then return id2_end end
|
||||||
local name = duffle.trim(inner)
|
local name = duffle.trim(inner)
|
||||||
|
|
||||||
local body, after_brace = find_body_braces(source, after_paren, open_paren + 1)
|
local body, after_brace = find_body_braces(source, after_paren, open_paren + 1)
|
||||||
if not body then return after_brace end
|
if not body then return after_brace end
|
||||||
@@ -1428,7 +1424,7 @@ local function parse_typedef_binds(source, pos, ident_end, line_of, out)
|
|||||||
|
|
||||||
-- ── Shape 2: `typedef Enum_(<underlying>, <name>) { <body> } <alias>;`
|
-- ── Shape 2: `typedef Enum_(<underlying>, <name>) { <body> } <alias>;`
|
||||||
elseif id2 == "Enum_" then
|
elseif id2 == "Enum_" then
|
||||||
local inner, after_paren, open_paren = read_parens_after(source, id2_end, id2_end)
|
local inner, after_paren, open_paren = read_parens_after(source, id2_end, id2_end)
|
||||||
if not inner then return id2_end end
|
if not inner then return id2_end end
|
||||||
-- Split `inner` on the first top-level comma into (<underlying>, <name>).
|
-- Split `inner` on the first top-level comma into (<underlying>, <name>).
|
||||||
local args = duffle.split_top_level_commas(inner)
|
local args = duffle.split_top_level_commas(inner)
|
||||||
@@ -1436,7 +1432,7 @@ local function parse_typedef_binds(source, pos, ident_end, line_of, out)
|
|||||||
local underlying = duffle.trim(args[1])
|
local underlying = duffle.trim(args[1])
|
||||||
local name = duffle.trim(args[2])
|
local name = duffle.trim(args[2])
|
||||||
|
|
||||||
local body, after_brace = find_body_braces(source, after_paren, open_paren + 1)
|
local body, after_brace = find_body_braces(source, after_paren, open_paren + 1)
|
||||||
if not body then return after_brace end
|
if not body then return after_brace end
|
||||||
register_enum_type(underlying, name, body, pos, line_of, out)
|
register_enum_type(underlying, name, body, pos, line_of, out)
|
||||||
attach_debug_skip_marker(out, "unrelated")
|
attach_debug_skip_marker(out, "unrelated")
|
||||||
@@ -1469,11 +1465,10 @@ local function parse_typedef_binds(source, pos, ident_end, line_of, out)
|
|||||||
|
|
||||||
-- Shape 4 (TSet_ at id2 position): no preceding underlying span.
|
-- Shape 4 (TSet_ at id2 position): no preceding underlying span.
|
||||||
if id2 == "TSet_" then
|
if id2 == "TSet_" then
|
||||||
local inner, after_paren = read_parens_after(source, id2_end, id2_end)
|
local inner, after_paren = read_parens_after(source, id2_end, id2_end)
|
||||||
if not inner then return id2_end end
|
if not inner then return id2_end end
|
||||||
local tset_name = duffle.trim(inner)
|
local tset_name = duffle.trim(inner)
|
||||||
-- Empty underlying span is acceptable; the TSet_ wrapper itself
|
-- Empty underlying span is acceptable; the TSet_ wrapper itself encodes the alias identity (per the duffle TSet_ convention).
|
||||||
-- encodes the alias identity (per the duffle TSet_ convention).
|
|
||||||
register_typedef_alias("", tset_name, pos, line_of, out)
|
register_typedef_alias("", tset_name, pos, line_of, out)
|
||||||
attach_debug_skip_marker(out, "unrelated")
|
attach_debug_skip_marker(out, "unrelated")
|
||||||
return after_paren
|
return after_paren
|
||||||
@@ -1491,13 +1486,13 @@ local function parse_typedef_binds(source, pos, ident_end, line_of, out)
|
|||||||
while scan < semi_pos do
|
while scan < semi_pos do
|
||||||
scan = duffle.skip_ws_and_cmt(source, scan)
|
scan = duffle.skip_ws_and_cmt(source, scan)
|
||||||
if scan >= semi_pos then break end
|
if scan >= semi_pos then break end
|
||||||
local id, id_end = duffle.read_ident(source, scan)
|
local id, id_end = duffle.read_ident(source, scan)
|
||||||
if not id then
|
if not id then
|
||||||
scan = scan + 1
|
scan = scan + 1
|
||||||
elseif id == "TSet_" then
|
elseif id == "TSet_" then
|
||||||
-- Shape 4 (TSet_ at non-id2 position): grab the parenthesized argument.
|
-- Shape 4 (TSet_ at non-id2 position): grab the parenthesized argument.
|
||||||
local inner, after_paren = read_parens_after(source, id_end, id_end)
|
local inner, after_paren = read_parens_after(source, id_end, id_end)
|
||||||
if inner then
|
if inner then
|
||||||
tset_arg = duffle.trim(inner)
|
tset_arg = duffle.trim(inner)
|
||||||
tset_arg_end = after_paren
|
tset_arg_end = after_paren
|
||||||
tset_pos = scan
|
tset_pos = scan
|
||||||
@@ -1957,7 +1952,7 @@ local function merge_named_with_sites(registry, name, new_entry, site, collision
|
|||||||
registry[name].sites = { site }
|
registry[name].sites = { site }
|
||||||
return
|
return
|
||||||
end
|
end
|
||||||
local existing = registry[name]
|
local existing = registry[name]
|
||||||
local new_shape = shape_fn(new_entry)
|
local new_shape = shape_fn(new_entry)
|
||||||
local old_shape = shape_fn(existing)
|
local old_shape = shape_fn(existing)
|
||||||
if new_shape == old_shape and new_shape ~= "" then
|
if new_shape == old_shape and new_shape ~= "" then
|
||||||
|
|||||||
+669
-440
File diff suppressed because it is too large
Load Diff
@@ -93,7 +93,7 @@ end
|
|||||||
--- Load the authored `word_count.metadata.h` into `ctx.shared.corpus.word_counts`.
|
--- Load the authored `word_count.metadata.h` into `ctx.shared.corpus.word_counts`.
|
||||||
--- Generated `.macs.h` files are OUTPUT artifacts and are NOT scanned as inputs.
|
--- Generated `.macs.h` files are OUTPUT artifacts and are NOT scanned as inputs.
|
||||||
--- Current component counts are computed and inserted by `passes/components.lua`
|
--- Current component counts are computed and inserted by `passes/components.lua`
|
||||||
--- after the components pass iterates `corpus.source_order` and writes each source's `<dir_basename>.macs.h` file.
|
--- after the components pass iterates `corpus.source_order` and writes each source-directory's `gen/macs.h` file.
|
||||||
---
|
---
|
||||||
--- Contract:
|
--- Contract:
|
||||||
--- * `ctx.shared.corpus` MUST exist (canonical corpus ownership).
|
--- * `ctx.shared.corpus` MUST exist (canonical corpus ownership).
|
||||||
|
|||||||
Binary file not shown.
+46
-59
@@ -2,24 +2,21 @@
|
|||||||
---
|
---
|
||||||
--- Dispatches to pass modules under `scripts/passes/`, resolving dependencies topologically (Kahn's algorithm + cycle detection).
|
--- Dispatches to pass modules under `scripts/passes/`, resolving dependencies topologically (Kahn's algorithm + cycle detection).
|
||||||
---
|
---
|
||||||
--- **Architecture**:
|
--- Architecture:
|
||||||
--- - **PASSES table** — declarative dep graph (data, not code).
|
--- - PASSES table: Declarative dep graph (data, not code).
|
||||||
--- - **FLAG_HANDLERS table** — maps CLI flags to handlers.
|
--- - FLAG_HANDLERS table: Maps CLI flags to handlers.
|
||||||
--- - **parse_args** → **build_ctx** (resolves unity/direct includes or exact sources; no semantic scanning) → **topo_sort** → **dispatch_passes**.
|
--- - parse_args → build_ctx (resolves unity/direct includes or exact sources) → topo_sort → dispatch_passes.
|
||||||
--- - The first pass in the dep graph is `scan-source` (see `passes/scan_source.lua`).
|
--- - The first pass in the dep graph is `scan-source` (see `passes/scan_source.lua`).
|
||||||
--- It calls `duffle.scan_source` once per source to produce the fat `SourceScan` payload, which is attached to each `src.scan`.
|
--- It calls `duffle.scan_source` once per source to produce the fat `SourceScan` payload, which is attached to each `src.scan`.
|
||||||
--- Every other pass that reads source structure depends on `scan-source` and consumes `src.scan` as a read-only.
|
--- Every other pass that reads source structure depends on `scan-source` and consumes `src.scan` as a read-only.
|
||||||
---
|
---
|
||||||
--- **Conventions**: tabs (1/level), EmmyLua annotations, no regex,
|
|
||||||
--- Lua 5.3 compatible.
|
|
||||||
---
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- Module-scope requires + package.path setup
|
-- Module-scope requires + package.path setup
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
-- Bootstrap: load `duffle_paths.lua` via this script's own path.
|
-- Bootstrap: load `duffle_paths.lua` via this script's own path.
|
||||||
-- Use `arg[0]` when this file is the entry script (`arg[0]` ends in "ps1_meta.lua");
|
-- Use `arg[0]` when this file is the entry script (`arg[0]` ends in "ps1_meta.lua");
|
||||||
-- fall back to `debug.getinfo(1, "S").source` when this file is being dofile()'d or require()'d (in which case `arg[0]` is the *caller's* path, not ours).
|
-- fall back to `debug.getinfo(1, "S").source` when this file is being dofile()'d or require()'d (in which case `arg[0]` is the *caller's* path).
|
||||||
-- That single statement: (a) sets `package.path` + `package.cpath`, (b) at the bottom returns `require("duffle")`.
|
-- That single statement: (a) sets `package.path` + `package.cpath`, (b) at the bottom returns `require("duffle")`.
|
||||||
-- So the dofile's return value is the duffle module.
|
-- So the dofile's return value is the duffle module.
|
||||||
local _is_entry_script = arg and arg[0] and arg[0]:match("ps1_meta%.lua$") ~= nil
|
local _is_entry_script = arg and arg[0] and arg[0]:match("ps1_meta%.lua$") ~= nil
|
||||||
@@ -57,45 +54,44 @@ local PASS_FLAG_DISPATCH_KEY = "__pass__"
|
|||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
|
|
||||||
--- @class PassDescriptor
|
--- @class PassDescriptor
|
||||||
--- @field module string -- module name passed to require()
|
--- @field module string -- Module name passed to require()
|
||||||
--- @field kind string -- "shared" | "header-output" | "validation" | "diagnostic" | "report"
|
--- @field kind string -- "shared" | "header-output" | "validation" | "diagnostic" | "report"
|
||||||
--- -- Report severity is independent from process exit policy (see PASS_KIND_STOP_ON_ERROR).
|
--- -- Report severity is independent from process exit policy (see PASS_KIND_STOP_ON_ERROR).
|
||||||
--- @field deps string[] -- names of upstream passes
|
--- @field deps string[] -- Names of upstream passes
|
||||||
--- @field groups string[]? -- OPTIONAL build-phase groups this pass is a root of
|
--- @field groups string[]? -- OPTIONAL build-phase groups this pass is a root of (e.g. { "pre-link" }, { "post-link" }); absent ⇒ dependency-only
|
||||||
--- -- (e.g. { "pre-link" }, { "post-link" }); absent ⇒ dependency-only
|
|
||||||
|
|
||||||
--- @class SourceFile
|
--- @class SourceFile
|
||||||
--- @field path string -- absolute path to the source file
|
--- @field path string -- Absolute path to the source file
|
||||||
--- @field text string -- the full source text
|
--- @field text string -- Full source text
|
||||||
--- @field dir string -- the directory containing the source
|
--- @field dir string -- Directory containing the source
|
||||||
--- @field basename string -- filename without extension
|
--- @field basename string -- Filename without extension
|
||||||
|
|
||||||
--- @class PassCtx
|
--- @class PassCtx
|
||||||
--- @field metadata_path string -- path to word_count.metadata.h
|
--- @field metadata_path string -- Path to word_count.metadata.h
|
||||||
--- @field shared table -- cross-pass shared state
|
--- @field shared table -- Cross-pass shared state
|
||||||
--- @field shared.corpus table -- canonical authored-source/project projection
|
--- @field shared.corpus table -- Authored-source/project projection
|
||||||
--- @field out_root string -- output root (e.g. "build/gen")
|
--- @field out_root string -- Output root (e.g. "build/gen")
|
||||||
--- @field project_root string -- PS1 repository root
|
--- @field project_root string -- PS1 repository root
|
||||||
--- @field flags table -- CLI flags + per-pass stash
|
--- @field flags table -- CLI flags + per-pass stash
|
||||||
--- @field verbose boolean -- if true, log diagnostic info
|
--- @field verbose boolean -- If true, log diagnostic info
|
||||||
|
|
||||||
--- @class Finding
|
--- @class Finding
|
||||||
--- @field line integer -- source line (or 0 for pass-level)
|
--- @field line integer -- Source line (or 0 for pass-level)
|
||||||
--- @field msg string -- finding message
|
--- @field msg string -- Finding message
|
||||||
|
|
||||||
--- @class PassResult
|
--- @class PassResult
|
||||||
--- @field outputs PassOutputEntry[] -- emitted file paths
|
--- @field outputs PassOutputEntry[] -- Emitted file paths
|
||||||
--- @field errors Finding[] -- build-stops (per-pass kind policy)
|
--- @field errors Finding[] -- Build-stops (per-pass kind policy)
|
||||||
--- @field warnings Finding[] -- informational
|
--- @field warnings Finding[] -- Informational
|
||||||
|
|
||||||
--- @class ParsedArgs
|
--- @class ParsedArgs
|
||||||
--- @field requested_set string[] -- pass names to run (explicit --all expanded)
|
--- @field requested_set string[] -- Pass names to run (explicit --all expanded)
|
||||||
--- @field sources string[] -- exact --source values, retained in CLI order
|
--- @field sources string[] -- Exact --source values, retained in CLI order
|
||||||
--- @field unity_root string|nil -- --unity-root value; mutually exclusive with sources
|
--- @field unity_root string|nil -- --unity-root value; mutually exclusive with sources
|
||||||
--- @field metadata string -- --metadata value
|
--- @field metadata string -- --metadata value
|
||||||
--- @field out_root string -- --out-root value (default "build/gen")
|
--- @field out_root string -- --out-root value (default "build/gen")
|
||||||
--- @field project_root string -- PS1 repository root (derived from metadata by default)
|
--- @field project_root string -- PS1 repository root (derived from metadata by default)
|
||||||
--- @field verbose boolean -- if true, log diagnostic info
|
--- @field verbose boolean -- If true, log diagnostic info
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
-- PASSES Table
|
-- PASSES Table
|
||||||
@@ -141,7 +137,7 @@ local PASSES = {
|
|||||||
["static-analysis"] = {
|
["static-analysis"] = {
|
||||||
module = "passes.static_analysis",
|
module = "passes.static_analysis",
|
||||||
-- "diagnostic" — every `error`/`warning` finding is written to the report file;
|
-- "diagnostic" — every `error`/`warning` finding is written to the report file;
|
||||||
-- the orchestrator does NOT exit non-zero on these findings (see PASS_KIND_STOP_ON_ERROR).
|
-- The orchestrator does NOT exit non-zero on these findings (see PASS_KIND_STOP_ON_ERROR).
|
||||||
-- Report severity is independent from process exit policy.
|
-- Report severity is independent from process exit policy.
|
||||||
kind = "diagnostic",
|
kind = "diagnostic",
|
||||||
deps = {"scan-source", "word-counts", "components", "emission-model"},
|
deps = {"scan-source", "word-counts", "components", "emission-model"},
|
||||||
@@ -160,18 +156,18 @@ local PASSES = {
|
|||||||
report = {
|
report = {
|
||||||
module = "passes.report",
|
module = "passes.report",
|
||||||
kind = "report",
|
kind = "report",
|
||||||
deps = {"annotation", "static-analysis"},
|
deps = {"annotation", "static-analysis", "atoms-source-map"}, -- +atoms-source-map (consolidated-report-files refactor, 2026-07-26)
|
||||||
groups = { "pre-link" },
|
groups = { "pre-link" },
|
||||||
},
|
},
|
||||||
}
|
}
|
||||||
|
|
||||||
-- ────────────────────────────────────────────────────────────────────────────
|
-- ────────────────────────────────────────────────────────────────────────────
|
||||||
-- Phase-root selection: derive the sorted set of roots belonging to a named build-phase group, then append them to `args.requested_set`.
|
-- Phase-root selection: Derive the sorted set of roots belonging to a named build-phase group, then append them to `args.requested_set`.
|
||||||
-- topo_sort closes the transitive deps from there; dispatch_passes runs every resolved pass without phase-filtering.
|
-- topo_sort closes the transitive deps from there; dispatch_passes runs every resolved pass without phase-filtering.
|
||||||
-- ────────────────────────────────────────────────────────────────────────────
|
-- ────────────────────────────────────────────────────────────────────────────
|
||||||
|
|
||||||
--- @param group_name string -- the build-phase group ("pre-link" | "post-link")
|
--- @param group_name string -- Build-phase group ("pre-link" | "post-link")
|
||||||
--- @return string[] -- sorted root pass names belonging to that group
|
--- @return string[] -- Sorted root pass names belonging to that group
|
||||||
local function roots_for_group(group_name)
|
local function roots_for_group(group_name)
|
||||||
local names = {}
|
local names = {}
|
||||||
for name, pass in pairs(PASSES) do
|
for name, pass in pairs(PASSES) do
|
||||||
@@ -206,9 +202,10 @@ end
|
|||||||
|
|
||||||
-- Pass-kind taxonomy: Which kinds stop the build on errors?
|
-- Pass-kind taxonomy: Which kinds stop the build on errors?
|
||||||
--
|
--
|
||||||
-- Report severity is independent from process exit policy. A "diagnostic" pass still writes every `error`/`warning` finding into its report file,
|
-- Report severity is independent from process exit policy.
|
||||||
|
-- A "diagnostic" pass still writes every `error`/`warning` finding into its report file,
|
||||||
-- but `report_validation_errors` returns early for non-stopping kinds, so nothing is printed to stderr and the orchestrator does not exit non-zero.
|
-- but `report_validation_errors` returns early for non-stopping kinds, so nothing is printed to stderr and the orchestrator does not exit non-zero.
|
||||||
-- Adding a new pass kind requires listing it here explicitly; an unknown kind must not silently fall back to "true".
|
-- Adding a new pass kind requires listing it here explicitly; An unknown kind must not silently fall back to "true".
|
||||||
local PASS_KIND_STOP_ON_ERROR = {
|
local PASS_KIND_STOP_ON_ERROR = {
|
||||||
["shared"] = false,
|
["shared"] = false,
|
||||||
["header-output"] = true,
|
["header-output"] = true,
|
||||||
@@ -218,8 +215,7 @@ local PASS_KIND_STOP_ON_ERROR = {
|
|||||||
}
|
}
|
||||||
|
|
||||||
-- Closed set of CLI flags -> pass names.
|
-- Closed set of CLI flags -> pass names.
|
||||||
-- Per-pass flags (e.g. --word-counts) live here; phase flags (--pre-link, --post-link, --all)
|
-- Per-pass flags (e.g. --word-counts); phase flags (--pre-link, --post-link, --all) are within FLAG_HANDLERS because they own side effects or invoke group-derivation logic.
|
||||||
-- live in FLAG_HANDLERS because they own side effects or invoke group-derivation logic.
|
|
||||||
-- dwarf-injection is *also* a per-pass opt-in flag, but its selection + opt-in state are both owned by the explicit FLAG_HANDLERS entry below
|
-- dwarf-injection is *also* a per-pass opt-in flag, but its selection + opt-in state are both owned by the explicit FLAG_HANDLERS entry below
|
||||||
-- (it sets args.flags.dwarf_injection and appends "dwarf-injection" to requested_set), so it is intentionally absent from this table.
|
-- (it sets args.flags.dwarf_injection and appends "dwarf-injection" to requested_set), so it is intentionally absent from this table.
|
||||||
local PASS_FLAG_TO_NAME = {
|
local PASS_FLAG_TO_NAME = {
|
||||||
@@ -248,7 +244,6 @@ end
|
|||||||
|
|
||||||
-- Per-flag handlers. Each handler takes (args, argv, arg_idx) and returns the new arg_idx (so multi-arg flags like --source FILE advance it).
|
-- Per-flag handlers. Each handler takes (args, argv, arg_idx) and returns the new arg_idx (so multi-arg flags like --source FILE advance it).
|
||||||
-- Returning nil + os.exit() handles termination flags (--help).
|
-- Returning nil + os.exit() handles termination flags (--help).
|
||||||
|
|
||||||
local FLAG_HANDLERS = {}
|
local FLAG_HANDLERS = {}
|
||||||
|
|
||||||
-- ════════════════════════════════════════════════════════════════════════════
|
-- ════════════════════════════════════════════════════════════════════════════
|
||||||
@@ -274,9 +269,9 @@ PASS_FLAGS:
|
|||||||
Or pick any subset:
|
Or pick any subset:
|
||||||
--scan-source Scan sources into the fat SourceScan payload
|
--scan-source Scan sources into the fat SourceScan payload
|
||||||
--word-counts Load metadata.h + scan for existing .macs.h
|
--word-counts Load metadata.h + scan for existing .macs.h
|
||||||
--components Generate <module>/gen/<basename>.macs.h
|
--components Generate <srcdir>/gen/macs.h (per-directory aggregation)
|
||||||
--validate Run atom annotation DSL validation
|
--validate Run atom annotation DSL validation
|
||||||
--offsets Generate <module>/gen/<basename>.offsets.h
|
--offsets Generate <srcdir>/gen/offsets.h (per-directory aggregation)
|
||||||
--atoms-source-map Generate <basename>.atoms.sourcemap.txt per source
|
--atoms-source-map Generate <basename>.atoms.sourcemap.txt per source
|
||||||
--dwarf-injection [opt-in] Select the post-link dwarf-injection pass + set the opt-in flag. Requires --elf.
|
--dwarf-injection [opt-in] Select the post-link dwarf-injection pass + set the opt-in flag. Requires --elf.
|
||||||
--static-analysis Static analysis: GTE pipeline-fill, mac_yield, ABI handoff, cycle budget
|
--static-analysis Static analysis: GTE pipeline-fill, mac_yield, ABI handoff, cycle budget
|
||||||
@@ -319,8 +314,7 @@ local function require_flag_value(argv, arg_idx, flag)
|
|||||||
local next_known = type(value) == "string"
|
local next_known = type(value) == "string"
|
||||||
and (FLAG_HANDLERS[value] ~= nil or PASS_FLAG_TO_NAME[value] ~= nil)
|
and (FLAG_HANDLERS[value] ~= nil or PASS_FLAG_TO_NAME[value] ~= nil)
|
||||||
if value == nil or next_known then
|
if value == nil or next_known then
|
||||||
io.stderr:write("ps1_meta: " .. flag .. " requires "
|
io.stderr:write("ps1_meta: " .. flag .. " requires " .. FLAG_VALUE_NAMES[flag] .. "\n")
|
||||||
.. FLAG_VALUE_NAMES[flag] .. "\n")
|
|
||||||
os.exit(EXIT_INTERNAL_ERROR)
|
os.exit(EXIT_INTERNAL_ERROR)
|
||||||
end
|
end
|
||||||
return value, arg_idx + 1
|
return value, arg_idx + 1
|
||||||
@@ -330,12 +324,10 @@ end
|
|||||||
-- Termination flags like --help call os.exit() instead.
|
-- Termination flags like --help call os.exit() instead.
|
||||||
-- Populated AFTER print_help so the --help handler can reference it as an upvalue (Lua resolves locals at closure-call time,
|
-- Populated AFTER print_help so the --help handler can reference it as an upvalue (Lua resolves locals at closure-call time,
|
||||||
-- but if the closure is defined before the local, it falls back to _G).
|
-- but if the closure is defined before the local, it falls back to _G).
|
||||||
FLAG_HANDLERS["--help"] = function(args)
|
|
||||||
print_help()
|
|
||||||
os.exit(0)
|
|
||||||
end
|
|
||||||
|
|
||||||
FLAG_HANDLERS["--verbose"] = function(args) args.verbose = true end
|
FLAG_HANDLERS["--help"] = function(args) print_help(); os.exit(0) end
|
||||||
|
FLAG_HANDLERS["--verbose"] = function(args) args.verbose = true end
|
||||||
|
|
||||||
FLAG_HANDLERS["--source"] = function(args, argv, arg_idx)
|
FLAG_HANDLERS["--source"] = function(args, argv, arg_idx)
|
||||||
local value, value_idx = require_flag_value(argv, arg_idx, "--source")
|
local value, value_idx = require_flag_value(argv, arg_idx, "--source")
|
||||||
args.sources[#args.sources + 1] = value
|
args.sources[#args.sources + 1] = value
|
||||||
@@ -492,14 +484,13 @@ end
|
|||||||
--- @param args ParsedArgs
|
--- @param args ParsedArgs
|
||||||
--- @return PassCtx
|
--- @return PassCtx
|
||||||
local function build_ctx(args)
|
local function build_ctx(args)
|
||||||
local normalized_project_root = duffle.normalize_path(args.project_root)
|
local normalized_project_root = duffle.normalize_path(args.project_root)
|
||||||
local project_root = normalized_project_root
|
local project_root = normalized_project_root
|
||||||
local project_root_is_absolute = normalized_project_root:match("^%a:/")
|
local project_root_is_absolute = normalized_project_root:match("^%a:/")
|
||||||
or normalized_project_root:sub(1, 2) == "//"
|
or normalized_project_root:sub(1, 2) == "//"
|
||||||
or normalized_project_root:sub(1, 1) == "/"
|
or normalized_project_root:sub(1, 1) == "/"
|
||||||
if not project_root_is_absolute then
|
if not project_root_is_absolute then
|
||||||
-- canonical_path_key validates ordinary relative paths and rejects
|
-- canonical_path_key validates ordinary relative paths and rejects drive-relative paths before the absolute-path rewrite is performed.
|
||||||
-- drive-relative paths before the absolute-path rewrite is performed.
|
|
||||||
duffle.canonical_path_key(normalized_project_root)
|
duffle.canonical_path_key(normalized_project_root)
|
||||||
project_root = duffle.normalize_path(duffle.to_absolute_path(normalized_project_root))
|
project_root = duffle.normalize_path(duffle.to_absolute_path(normalized_project_root))
|
||||||
else
|
else
|
||||||
@@ -513,8 +504,7 @@ local function build_ctx(args)
|
|||||||
project_root = project_root,
|
project_root = project_root,
|
||||||
})
|
})
|
||||||
if not ok_resolve then
|
if not ok_resolve then
|
||||||
io.stderr:write("ps1_meta: cannot resolve --unity-root "
|
io.stderr:write("ps1_meta: cannot resolve --unity-root " .. tostring(args.unity_root) .. ": " .. tostring(resolved) .. "\n")
|
||||||
.. tostring(args.unity_root) .. ": " .. tostring(resolved) .. "\n")
|
|
||||||
os.exit(EXIT_INTERNAL_ERROR)
|
os.exit(EXIT_INTERNAL_ERROR)
|
||||||
end
|
end
|
||||||
resolution = resolved
|
resolution = resolved
|
||||||
@@ -530,8 +520,7 @@ local function build_ctx(args)
|
|||||||
local path = duffle.normalize_path(input_path)
|
local path = duffle.normalize_path(input_path)
|
||||||
local key_ok, key_or_error = pcall(duffle.canonical_path_key, path)
|
local key_ok, key_or_error = pcall(duffle.canonical_path_key, path)
|
||||||
if not key_ok then
|
if not key_ok then
|
||||||
error("ps1_meta: invalid --source " .. input_path .. ": "
|
error("ps1_meta: invalid --source " .. input_path .. ": " .. tostring(key_or_error), 0)
|
||||||
.. tostring(key_or_error), 0)
|
|
||||||
end
|
end
|
||||||
local file = io.open(path, "r")
|
local file = io.open(path, "r")
|
||||||
if not file then
|
if not file then
|
||||||
@@ -629,9 +618,7 @@ local function topo_sort(passes, requested_set)
|
|||||||
changed = false
|
changed = false
|
||||||
for name, _ in pairs(needed) do
|
for name, _ in pairs(needed) do
|
||||||
local pass = passes[name]
|
local pass = passes[name]
|
||||||
if not pass then
|
if not pass then error("unknown pass '" .. name .. "' requested") end
|
||||||
error("unknown pass '" .. name .. "' requested")
|
|
||||||
end
|
|
||||||
for _, dep in ipairs(pass.deps) do
|
for _, dep in ipairs(pass.deps) do
|
||||||
if not needed[dep] then
|
if not needed[dep] then
|
||||||
needed[dep] = true
|
needed[dep] = true
|
||||||
|
|||||||
@@ -56,7 +56,7 @@ if (-not $msbuild_exe) {
|
|||||||
}
|
}
|
||||||
|
|
||||||
$path_pcsx_sln = join-path $path_pcsx_redux 'vsprojects\pcsx-redux.sln'
|
$path_pcsx_sln = join-path $path_pcsx_redux 'vsprojects\pcsx-redux.sln'
|
||||||
& $msbuild_exe $path_pcsx_sln /p:Configuration=Release /p:Platform=x64 /p:PlatformToolset=v143 /m /v:minimal
|
& $msbuild_exe $path_pcsx_sln /p:Configuration=Release /p:Platform=x64 /p:PlatformToolset=v143 /m /v:minimal
|
||||||
|
|
||||||
# Locate luajit via scoop. `luajit.exe` is on PATH via scoop's shim;
|
# Locate luajit via scoop. `luajit.exe` is on PATH via scoop's shim;
|
||||||
# we use `scoop prefix` to find the install root for the include dir (needed to compile lpeg against luajit's headers).
|
# we use `scoop prefix` to find the install root for the include dir (needed to compile lpeg against luajit's headers).
|
||||||
@@ -70,8 +70,8 @@ if (-not $luajit_prefix -or -not (Test-Path (Join-Path $luajit_prefix 'bin/luaji
|
|||||||
# Discover the luajit include dir by globbing `include/luajit-*`.
|
# Discover the luajit include dir by globbing `include/luajit-*`.
|
||||||
# This avoids hardcoding a specific version (e.g. `luajit-2.1`).
|
# This avoids hardcoding a specific version (e.g. `luajit-2.1`).
|
||||||
$luajit_include_root = Join-Path $luajit_prefix 'include'
|
$luajit_include_root = Join-Path $luajit_prefix 'include'
|
||||||
$lua_inc_dir = Get-ChildItem -Path $luajit_include_root -Directory -Filter 'luajit-*' -ErrorAction SilentlyContinue |
|
$lua_inc_dir = Get-ChildItem -Path $luajit_include_root -Directory -Filter 'luajit-*' -ErrorAction SilentlyContinue |
|
||||||
Select-Object -First 1 -ExpandProperty FullName
|
Select-Object -First 1 -ExpandProperty FullName
|
||||||
if (-not $lua_inc_dir) {
|
if (-not $lua_inc_dir) {
|
||||||
write-error "No 'luajit-*' include dir found under '$luajit_include_root'. The scoop luajit install may be broken."
|
write-error "No 'luajit-*' include dir found under '$luajit_include_root'. The scoop luajit install may be broken."
|
||||||
exit 1
|
exit 1
|
||||||
@@ -90,7 +90,7 @@ $lpeg_compile_args = @(
|
|||||||
'-o', 'lpeg.dll'
|
'-o', 'lpeg.dll'
|
||||||
) + $lpeg_sources + @('-lluajit-5.1')
|
) + $lpeg_sources + @('-lluajit-5.1')
|
||||||
push-location $path_lpeg
|
push-location $path_lpeg
|
||||||
& gcc @lpeg_compile_args
|
& gcc @lpeg_compile_args
|
||||||
pop-location
|
pop-location
|
||||||
|
|
||||||
# ════════════════════════════════════════════════════════════════════════════
|
# ════════════════════════════════════════════════════════════════════════════
|
||||||
@@ -101,8 +101,8 @@ pop-location
|
|||||||
|
|
||||||
$path_lfs = join-path $path_toolchain 'lfs'
|
$path_lfs = join-path $path_toolchain 'lfs'
|
||||||
verify-path $path_lfs
|
verify-path $path_lfs
|
||||||
$lfs_src = join-path $path_pcsx_redux 'third_party\luafilesystem\src\lfs.c'
|
$lfs_src = join-path $path_pcsx_redux 'third_party\luafilesystem\src\lfs.c'
|
||||||
$lfs_dll = join-path $path_lfs 'lfs.dll'
|
$lfs_dll = join-path $path_lfs 'lfs.dll'
|
||||||
$lfs_dll_import = join-path $luajit_lib_dir 'libluajit-5.1.dll.a'
|
$lfs_dll_import = join-path $luajit_lib_dir 'libluajit-5.1.dll.a'
|
||||||
& gcc -O2 -shared "-I$lua_inc_dir" -o $lfs_dll $lfs_src $lfs_dll_import
|
& gcc -O2 -shared "-I$lua_inc_dir" -o $lfs_dll $lfs_src $lfs_dll_import
|
||||||
|
|
||||||
|
|||||||
Reference in New Issue
Block a user