#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\bios.h // source: C:\projects\Pikuma\ps1\code\duffle\psyq.h // source: C:\projects\Pikuma\ps1\code\duffle\pad.c // 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_load_v3s4(rs_x, rs_y, rs_z, r_base, offset) \ load_word( rs_x, r_base, O_(V3_S4,x)) \ , load_word( rs_y, r_base, O_(V3_S4,y)) \ , load_word( rs_z, r_base, O_(V3_S4,z)) WORD_COUNT(mac_load_v3s4, 3) /* atom_dbg_skip */ #define mac_store_v3s4(rt_x, rt_y, rt_z, base, offset) \ store_word(rt_x, base, offset + O_(V3_S4,x)) \ , store_word(rt_y, base, offset + O_(V3_S4,y)) \ , store_word(rt_z, base, offset + O_(V3_S4,z)) WORD_COUNT(mac_store_v3s4, 3) /* atom_dbg_skip */ #define mac_sub_v3s4(rds_x, rds_y, rds_z, rt_x, rt_y, rt_z) \ sub_s(rds_x, rds_x, rt_x) \ , sub_s(rds_y, rds_y, rt_y) \ , sub_s(rds_z, rds_z, rt_z) WORD_COUNT(mac_sub_v3s4, 3) /* 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) /* atom_dbg_skip */ #define mac_gte_sqr_v3(r_sx, r_sy, r_sz, r_sq_x, r_sq_y, r_sq_z) \ gte_mv_to_data_r(r_sx, C2_IR1) \ , gte_mv_to_data_r(r_sy, C2_IR2) \ , gte_mv_to_data_r(r_sz, C2_IR3) \ , nop \ , gte_cmdw_sqr \ , gte_mv_from_data_r(r_sq_x, C2_MAC1) \ , gte_mv_from_data_r(r_sq_y, C2_MAC2) \ , gte_mv_from_data_r(r_sq_z, C2_MAC3) WORD_COUNT(mac_gte_sqr_v3, 8) /* atom_dbg_skip */ #define mac_gte_gpf_scale(r_sx, r_sy, r_sz, r_recip_est, r_shift, r_dx, r_dy, r_dz) \ gte_mv_to_data_r(r_recip_est, C2_IR0) \ , gte_mv_to_data_r(r_sx, C2_IR1) \ , gte_mv_to_data_r(r_sy, C2_IR2) \ , gte_mv_to_data_r(r_sz, C2_IR3) \ , nop2 /* retire IR0..IR3 → GPF input pre-fill (matches libgte 0x80016134..0x80016138) */ \ , gte_cmdw_gpf \ , gte_mv_from_data_r(r_dx, C2_MAC1) \ , gte_mv_from_data_r(r_dy, C2_MAC2) \ , gte_mv_from_data_r(r_dz, C2_MAC3) \ , shift_aright_var(r_dx, r_dx, r_shift) \ , shift_aright_var(r_dy, r_dy, r_shift) \ , shift_aright_var(r_dz, r_dz, r_shift) WORD_COUNT(mac_gte_gpf_scale, 13) #define mac_normalize_v3s4(...) \ load_word(r_src, R_TapePtr, O_(Binds_NormalizeV3S4,src)) /* pop src ptr (scratch addr) */ \ , load_word(r_dst, R_TapePtr, O_(Binds_NormalizeV3S4,dst)) /* pop dst ptr (scratch addr) */ \ , add_ui_self( R_TapePtr, S_(Binds_NormalizeV3S4)) \ , load_word(r_sx, r_src, O_(V3_S4,x)) \ , load_word(r_sy, r_src, O_(V3_S4,y)) \ , load_word(r_sz, r_src, O_(V3_S4,z)) \ , nop /* load-delay */ /* ── 48-word normalize body (preserved verbatim from ac_normalize_v3s4) ─────── */ /* Stage 1: mtc2 src → IR1/2/3, SQR fires (MAC1/2/3 = IR², IR ← MAC saturated) */ \ , gte_mv_to_data_r(r_sx, C2_IR1) \ , gte_mv_to_data_r(r_sy, C2_IR2) \ , gte_mv_to_data_r(r_sz, C2_IR3) \ , nop \ , gte_cmdw_sqr /* Stage 2: mfc2 MAC1/2/3, sum, mtc2 LZCS */ \ , gte_mv_from_data_r(r_sq_y, C2_MAC1) /* r_sq_y = MAC1 = sx² */ \ , gte_mv_from_data_r(r_sq_z, C2_MAC2) /* r_sq_z = MAC2 = sy² */ \ , gte_mv_from_data_r(r_recip_est, C2_MAC3) /* r_recip_est = MAC3 = sz² */ \ , nop /* MFC2→GPR load delay (1 slot) */ \ , add_u(r_recip_est, r_recip_est, r_sq_z) /* r_recip_est += sy² */ \ , add_u(r_recip_est, r_recip_est, r_sq_y) /* r_recip_est += sx² (sum = |v|²) */ \ , gte_mv_to_data_r( r_recip_est, C2_LZCS) /* LZCS = |v|² */ \ , nop2 \ , gte_mv_from_data_r(r_lzcr, C2_LZCR) /* r_lzcr = LZCR (count of leading bits) */ \ , nop /* MFC2→GPR load delay (1 slot) */ /* Stage 3: compute shift amount, align |v|² to bit 24, lookup 1/|v| */ \ , and_i( r_lzcr, r_lzcr, -2) /* r_lzcr &= ~1 (force even for halving) */ \ , li_s( r_shift, 31) /* r_shift = 31 */ \ , sub_s( r_shift, r_shift, r_lzcr) /* r_shift = 31 - LZCR */ \ , shift_aright( r_shift, r_shift, 1) /* r_shift = (31 - LZCR) / 2 */ \ , add_si( r_tmp, r_lzcr, -24) /* r_tmp = LZCR - 24 (signed, for branch) */ \ , branch_lt_zero(r_tmp, atom_offset(srav_path, aligned_done)) \ , nop \ , jump_rel( atom_offset(aligned_done, srav_path)) \ , shift_lleft_var(r_recip_est, r_recip_est, r_tmp) /* BD-slot of branch_equal: r_recip_est = |v|² << (LZCR - 24) */ \ , atom_label(srav_path) /* SRAV path: |v|² is small (top bit < bit 24) */ \ , li_s( r_tmp, 24) \ , sub_s( r_tmp, r_tmp, r_lzcr) /* r_tmp = 24 - LZCR */ \ , shift_aright_var(r_recip_est, r_recip_est, r_tmp) /* r_recip_est = |v|² >> (24 - LZCR) */ \ , atom_label(aligned_done) /* Both paths converge here with |v|² aligned to bit 24 */ /* r_recip_est now holds |v|² aligned to bit 24 — convert to byte offset, -64 to skip zero pad. */ \ , add_si( r_recip_est, r_recip_est, -64) \ , shift_lleft( r_recip_est, r_recip_est, 1) /* r_recip_est *= 2 (half-word index) */ /* Reference OUR local sqrtbl via &-address split. Compiler/linker resolves both halves. */ \ , load_upper_i( r_tmp, u4_hi(& gte_normalize_sqr_tbl)) /* lui */ \ , or_i_self( r_tmp, u4_lo(& gte_normalize_sqr_tbl)) /* ori */ \ , add_u( r_tmp, r_tmp, r_recip_est) /* r_tmp = sqrtbl base + byte offset (matches libgte 0x80016118: addu t5,t5,t4) */ \ , load_half( r_recip_est, r_tmp, 0) /* r_recip_est = sqrtbl[r_recip_est] = 1/|v| estimate */ \ , nop /* retire load_half before MTC2 (matches libgte 0x80016120: nop) */ /* Stage 4: mtc2 IR0..3, GPF (MAC = IR0*IR), mfc2 MAC, srav finalize */ \ , gte_mv_to_data_r(r_recip_est, C2_IR0) /* IR0 = 1/|v| estimate */ \ , gte_mv_to_data_r(r_sx, C2_IR1) /* IR1 = src.x */ \ , gte_mv_to_data_r(r_sy, C2_IR2) /* IR2 = src.y */ \ , gte_mv_to_data_r(r_sz, C2_IR3) /* IR3 = src.z */ \ , nop2 /* COP2 transfer latency (2 slots) */ \ , gte_cmdw_gpf \ , gte_mv_from_data_r(r_sx, C2_MAC1) /* MAC1 → r_sx (overwrites src.x with raw reciprocal-scaled) */ \ , gte_mv_from_data_r(r_sy, C2_MAC2) \ , gte_mv_from_data_r(r_sz, C2_MAC3) \ , shift_aright_var(r_sx, r_sx, r_shift) \ , shift_aright_var(r_sy, r_sy, r_shift) \ , shift_aright_var(r_sz, r_sz, r_shift) /* ── I/O wrapper tail (~3 words) ───────────────────────────────────────────── */ \ , store_word(r_sx, r_dst, O_(V3_S4,x)) \ , store_word(r_sy, r_dst, O_(V3_S4,y)) \ , store_word(r_sz, r_dst, O_(V3_S4,z)) /* ── atom_reads(R_TapePtr) atom_writes(R_TapePtr) ────────────────────────── */ \ , mac_yield() WORD_COUNT(mac_normalize_v3s4, 62) #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(r_ot_base, r_prim_cursor, poly_size) \ 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, (poly_size/S_(U4) - S_(PolyTag)/S_(U4)) << PolyTag_len_bits) \ , 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, 11) /* atom_dbg_skip */ #define mac_pad_set_centered_axes(r_state, r_scratch) \ load_upper_i(r_scratch, (PadAxis_Centered_Word >> 16) & 0xFFFF) \ , or_i_self( r_scratch, PadAxis_Centered_Word & 0xFFFF) \ , store_word( r_scratch, r_state, O_(PadState,axes)) WORD_COUNT(mac_pad_set_centered_axes, 3) /* atom_dbg_skip */ #define mac_pad_set_id_byte(r_state, r_id, id_value) \ add_ui( r_id, R_0, id_value) \ , store_byte(r_id, r_state, O_(PadState,id)) WORD_COUNT(mac_pad_set_id_byte, 2) /* atom_dbg_skip */ #define mac_pad_set_status(r_tmp, r_state, pad_status) \ add_ui( r_tmp, R_0, pad_status) \ , store_word(r_tmp, r_state, O_(PadState,status)) WORD_COUNT(mac_pad_set_status, 2) /* atom_dbg_skip */ #define mac_pad_store_inverted_buttons(r_buttons, r_pad_state) \ nor_u( r_buttons, r_buttons, R_0) \ , store_half( r_buttons, r_pad_state, O_(PadState, buttons)) WORD_COUNT(mac_pad_store_inverted_buttons, 2)