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@@ -265,7 +265,14 @@ local MACRO_EXPANSION = {
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["CADENCE_ONDEMAND"] = "ondemand",
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}
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local function valid_phase(p) return KNOWN_PHASES[p] end
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-- Phases + regions + cadences are defined further below (after TAPE_ATOM_MACROS).
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-- We expose valid_phase via upvalue once KNOWN_PHASES is defined, but for now
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-- it's a closure-resolved at call time.
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-- Table refs initialised later; valid_phase is hooked up below KNOWN_PHASES.
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local KNOWN_PHASES, KNOWN_REGIONS, KNOWN_CADENCES -- forward declarations
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local function valid_phase(p) return KNOWN_PHASES and KNOWN_PHASES[p] or false end
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local function is_wave_context_reg(name) return WAVE_CONTEXT_REGS[name] ~= nil end
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-- ============================================================
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@@ -315,9 +322,10 @@ end
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-- Extract identifier args from a parenthesized group. Returns a list
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-- of {kind, value} pairs where kind is one of:
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-- "ident" -- a bare identifier (e.g. TAPE_PHASE_WORK)
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-- "regs" -- a TAPE_REGS(...) call whose args are extracted as a list
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-- "other" -- something we can't classify (preserved as text)
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-- "ident" -- a bare identifier (e.g. phase_work)
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-- "atom_reads" -- an atom_reads(...) call: value is the register list
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-- "atom_writes"-- an atom_writes(...) call: value is the register list
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-- "other" -- something we can't classify (preserved as text)
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local function parse_atom_annot_args(inner)
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-- Split at top-level commas, respecting nested parens.
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local args = {}
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@@ -325,20 +333,37 @@ local function parse_atom_annot_args(inner)
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for _, tok in ipairs(tokens) do
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local s = trim(tok)
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if s ~= "" then
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-- TAPE_REGS(...) → extract inner identifiers
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if s:sub(1, 10) == "TAPE_REGS(" and s:sub(-1) == ")" then
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local regs_inner = s:sub(11, -2)
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-- Detect register-list calls: atom_reads(...) / atom_writes(...) / tape_regs(...)
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local regs_kind = nil
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local regs_inner = nil
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if s:sub(-1) == ")" then
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if s:sub(1, 11) == "atom_reads(" then
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regs_kind = "atom_reads"
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regs_inner = s:sub(12, -2)
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elseif s:sub(1, 12) == "atom_writes(" then
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regs_kind = "atom_writes"
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regs_inner = s:sub(13, -2)
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end
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end
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if regs_kind then
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local regs = {}
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for r in regs_inner:gmatch("[^,]+") do
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local trimmed = trim(r)
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if trimmed ~= "" then table.insert(regs, trimmed) end
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end
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table.insert(args, {kind = "regs", value = regs})
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-- Resolve any phase_* / R_* alias macros
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for i, r in ipairs(regs) do
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if MACRO_EXPANSION[r] then regs[i] = MACRO_EXPANSION[r] end
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end
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table.insert(args, {kind = regs_kind, value = regs})
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else
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-- Bare identifier (e.g. TAPE_PHASE_WORK)
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-- Bare identifier (e.g. phase_work)
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local id, _ = read_ident(s, 1)
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if id and trim(s) == id then
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table.insert(args, {kind = "ident", value = id})
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local v = id
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if MACRO_EXPANSION[v] then v = MACRO_EXPANSION[v] end
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table.insert(args, {kind = "ident", value = v})
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else
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table.insert(args, {kind = "other", value = s})
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end
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@@ -358,20 +383,20 @@ local TAPE_ATOM_MACROS = {
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}
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-- Phase token names (must match macros in tape_atom_dsl.h)
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local KNOWN_PHASES = {
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KNOWN_PHASES = {
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["init"] = true, ["bind"] = true, ["setup"] = true,
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["work"] = true, ["commit"] = true, ["terminate"] = true,
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}
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-- Region token names (must match REGION_* macros in tape_atom_dsl.h)
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local KNOWN_REGIONS = {
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KNOWN_REGIONS = {
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["prim_arena"] = true, ["face_arena"] = true, ["vertex_arena"] = true,
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["ot_arena"] = true, ["heap_3d_models"] = true, ["cdrom_stream"] = true,
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["vram_heap"] = true,
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}
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-- Cadence token names (must match CADENCE_* macros in tape_atom_dsl.h)
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local KNOWN_CADENCES = {
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KNOWN_CADENCES = {
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["frame"] = true, ["once"] = true, ["ondemand"] = true,
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}
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@@ -403,60 +428,81 @@ local function find_atom_annotations(source)
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if #args < 1 then
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table.insert(annots, {
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line = line_of(source, i),
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line = line_of(source, i),
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macro = ident,
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kind = macro_def.kind,
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error = "missing atom name (first arg)"
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error = "missing atom name (first arg)",
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})
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else
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local name = args[1].value
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-- For TAPE_ATOM_BIND: arg layout is (name, Binds_Struct, writes)
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-- For others: (name, phase, reads, writes)
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-- INIT / TERMINATE: (name)
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-- atom_bind: (name, Binds_Struct, writes)
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-- atom_annot: (name, phase, reads, writes)
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-- atom_setup / atom_commit: (name, reads)
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-- atom_init / atom_terminate: (name)
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local entry = {
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line = line_of(source, i),
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macro = ident,
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name = name,
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kind = macro_def.kind,
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binds = nil,
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phase = nil,
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reads = {},
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writes = {},
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line = line_of(source, i),
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macro = ident,
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name = name,
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kind = macro_def.kind,
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binds = nil,
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phase = nil,
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reads = {},
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writes = {},
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errors = {},
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}
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-- Is this arg a register-list call (any of the recognized forms)?
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local function is_regs(a)
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return a and (a.kind == "atom_reads" or a.kind == "atom_writes" or a.kind == "regs")
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end
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if macro_def.binds then
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-- (name, Binds_Struct, writes)
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-- atom_bind(name, Binds_Struct, writes)
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if #args >= 2 and args[2].kind == "ident" then
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entry.binds = args[2].value
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end
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if #args >= 3 and args[3].kind == "regs" then
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if #args >= 3 and is_regs(args[3]) then
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-- A bind writes the wave-context, so atom_writes(...) is the
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-- canonical form, but legacy regs(...) is also accepted.
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entry.writes = args[3].value
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end
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elseif ident == "TAPE_ATOM_INIT" or ident == "TAPE_ATOM_TERMINATE" then
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-- (name) — no phase, no reads/writes to extract
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elseif ident == "TAPE_ATOM_SETUP" then
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-- (name, reads)
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if #args >= 2 and args[2].kind == "regs" then
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elseif ident == "atom_init" or ident == "atom_terminate" then
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-- (name) only, no reads/writes to extract
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elseif ident == "atom_setup" then
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-- atom_setup(name, reads)
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if #args >= 2 and is_regs(args[2]) then
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entry.reads = args[2].value
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end
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elseif ident == "TAPE_ATOM_COMMIT" then
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-- (name, reads)
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if #args >= 2 and args[2].kind == "regs" then
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elseif ident == "atom_commit" then
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-- atom_commit(name, reads)
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if #args >= 2 and is_regs(args[2]) then
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entry.reads = args[2].value
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end
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elseif ident == "TAPE_ATOM_ANNOT" then
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-- (name, phase, reads, writes)
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elseif ident == "atom_annot" then
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-- atom_annot(name, phase, reads, writes)
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if #args >= 2 and args[2].kind == "ident" then
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-- Expand TAPE_PHASE_* macro references
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local phase_id = args[2].value
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entry.phase = MACRO_EXPANSION[phase_id] or phase_id
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entry.phase = MACRO_EXPANSION[args[2].value] or args[2].value
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end
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if #args >= 3 and args[3].kind == "regs" then
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-- reads slot: atom_reads(...) is the canonical form;
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-- atom_writes(...) in the reads slot is a likely bug.
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if #args >= 3 and is_regs(args[3]) then
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if args[3].kind == "atom_writes" then
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table.insert(entry.errors,
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"reads slot has atom_writes — swap order?")
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end
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entry.reads = args[3].value
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end
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if #args >= 4 and args[4].kind == "regs" then
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-- writes slot: atom_writes(...) is canonical;
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-- atom_reads(...) here is a likely bug.
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if #args >= 4 and is_regs(args[4]) then
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if args[4].kind == "atom_reads" then
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table.insert(entry.errors,
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"writes slot has atom_reads — swap order?")
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end
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entry.writes = args[4].value
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end
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end
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table.insert(annots, entry)
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end
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i = after_paren
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@@ -865,11 +911,11 @@ end
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local function validate(source_path, word_counts)
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local source = read_file(source_path)
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local annots = find_atom_annotations(source)
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local macros = find_macro_word_annotations(source)
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local pragmas = find_atom_pragmas(source)
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local binds = find_binds_structs(source)
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local atoms = find_atom_names(source)
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local annots = find_atom_annotations(source)
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local macros = find_macro_word_annotations(source)
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local pragmas = find_atom_pragmas(source)
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local binds = find_binds_structs(source)
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local atoms = find_atom_names(source)
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-- Index for O(1) lookup
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local atom_index = {}
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@@ -892,6 +938,12 @@ local function validate(source_path, word_counts)
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msg = string.format("annotation for '%s' has no matching MipsAtom_(%s) { ... }", a.name, a.name)
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})
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end
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-- Per-entry parser errors (e.g. reads/writes slot mix-ups)
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if a.errors then
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for _, msg in ipairs(a.errors) do
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table.insert(errors, {line = a.line, msg = string.format("'%s': %s", a.name, msg)})
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end
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end
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end
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-- 2. Every atom must have exactly one annotation (no orphans, no duplicates).
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