wcc: N_DOT-base address arithmetic for [N]T-field index (#135)
Strategy (a) use-site fix: new helper cg_dotbase_addr (cstage) / dotbaseaddr (wwstage) detects `base.kind == N_DOT` whose field type is TY_ARRAY and emits the field's address inline — LEAQ inner_off+ field_off(BP) for a value-struct inner, MOVQ inner_off(BP),reg + ADDQ field_off,reg for a *struct inner. The TY_ARRAY-only gate (after TY_NAMED peel) keeps the helper INERT on TY_PTR/TY_SLICE/TY_STR/ TY_TAGGED field kinds where the existing cgexpr(base) path is correct (loads pointer/header value, then adds scaled index). Wired at 6 sites: cstage cgassign N_INDEX-lhs plain ASSIGN + #133 compound arm + cgindex N_INDEX read fallback; wwstage twin × 3. Closes the silent-segfault on `(*struct).array_field[i]` reads and writes — pre-fix cgexpr on the N_DOT base auto-derefed and loaded the field's first 8 bytes as if they were a pointer, faulting on packed [N]u8 arrays (small u64 → unmapped page). Bootstrap-NEUTRAL: zero working callers in either direction pre-fix (symmetric READ + WRITE segfault evidence). All corpus + 990-997 byte-id + combined_ww_fresh stay green post-fix. 949_dotbase_arr_run: 3 rows direct runtime + cs==ww byte-id (READ u8, plain WRITE u8, compound WRITE u8). Wider element widths and value-struct base / pointer-field-control rows deferred — blocked by orthogonal pre-existing wwstage divergences (i32-return ABI MOVSXD vs MOVL, uninit-struct-let zero-init asymmetry) documented in the test body. The TY_ARRAY-gate no-over-fire is implicitly verified by 994/995 (corpus exercises thousands of struct.pointerfield[i] shapes; any over-fire would shift bytes). Chained N_DOT (`outer.inner.array[i]` depth ≥2) deferred to #137 — confirmed not in ref/hare/strconv/decimal.ha or sibling strconv/. Not a fold-3 blocker; helper bails (returns false) on chained shape, caller falls back to existing cgexpr path.
This commit is contained in:
6
Makefile
6
Makefile
@@ -331,6 +331,7 @@ TESTS = $(BIN)/test_smoke $(BIN)/test_lex $(BIN)/test_parse $(BIN)/test_check \
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$(BIN)/test_floatarr_run \
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$(BIN)/test_deref_narrow_run \
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$(BIN)/test_idx_compound_run \
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$(BIN)/test_dotbase_arr_run \
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$(BIN)/test_f64cgen_run \
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$(BIN)/test_f64crossmod_run \
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$(BIN)/test_tuprecv_run \
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@@ -1100,6 +1101,11 @@ $(BIN)/test_idx_compound_run: test/wcc/948_idx_compound_run.c $(BIN)/ww \
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$(LIB)/libwwrt.a | $(BIN)
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$(CC) $(CFLAGS) -o $@ $<
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$(BIN)/test_dotbase_arr_run: test/wcc/949_dotbase_arr_run.c $(BIN)/ww \
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$(BIN)/w6c $(BIN)/w6c_ww $(BIN)/w6a $(BIN)/w6l \
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$(LIB)/libwwrt.a | $(BIN)
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$(CC) $(CFLAGS) -o $@ $<
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$(BIN)/test_f64cgen_run: test/wcc/951_f64cgen_run.c $(BIN)/ww $(BIN)/w6c \
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$(BIN)/w6a $(BIN)/w6l $(LIB)/libwwrt.a | $(BIN)
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$(CC) $(CFLAGS) -o $@ $<
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@@ -1215,6 +1215,66 @@ static void cgstmt(Cg*, Node*, Local**, int*);
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static void cg_widen_tagged_push(Cg*, Local**, Type*, Node*, int);
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static void cg_widen_tagged_store(Cg*, Local**, Type*, Node*, int, int, int);
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static void cg_widen_tag_remap(Cg*, Type*, Type*, int);
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/* cg_dotbase_addr — compute &(inner.field) into `dst_reg` for a bare
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* N_DOT base where `inner` is an N_IDENT local (struct value OR *struct
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* pointer). Returns 1 if emitted, 0 if base shape isn't supported (the
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* caller falls back to its prior `cgexpr(base); MOVQ AX, dst_reg`).
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*
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* #135: cgexpr on an N_DOT whose .field is a `[N]T`-typed field auto-
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* derefs and loads the field's 8-byte VALUE as if it were a pointer.
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* For an LHS or index-base shape (`d.fld[i] = v` / `d.fld[i]` read /
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* `d.fld[i] OP= v`), the caller wants the field's ADDRESS — this helper
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* supplies it inline, avoiding the value-load. Mirror primitive of the
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* inverse template at cgen.c arr[i].field (the cgdot N_INDEX-lhs
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* branch). Chained N_DOT (`a.b.c.field[i]`) deferred — not in #135
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* scope.
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*
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* Caller-spill contract: the helper emits at most one MOVQ + one ADDQ
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* (or one LEAQ); it does NOT touch AX unless dst_reg == D_AX. Safe to
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* call where AX holds an unrelated live value (BX dst). */
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static int
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cg_dotbase_addr(Cg *c, Node *base, int dst_reg, Local *locals)
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{
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if (base == NULL || base->kind != N_DOT) return 0;
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Node *inner = base->lhs;
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if (inner == NULL || inner->kind != N_IDENT) return 0;
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Type *bt = inner->type;
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Type *bu = type_chase_named(bt);
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if (bu == NULL) return 0;
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int viaptr = 0;
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Type *struct_t = NULL;
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if (bu->kind == TY_PTR) {
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Type *st = type_chase_named(bu->sub);
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if (st && st->kind == TY_STRUCT) { struct_t = st; viaptr = 1; }
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} else if (bu->kind == TY_STRUCT) {
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struct_t = bu;
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}
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if (struct_t == NULL) return 0;
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Tfield *f = NULL;
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for (Tfield *fl = struct_t->fields; fl; fl = fl->next)
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if (strcmp(fl->name, base->str) == 0) { f = fl; break; }
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if (f == NULL) return 0;
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/* Only fire on `[N]T` fields — the field's storage IS the array
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* data inline, so taking the address-of-field gives `&arr[0]`.
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* For `*T` / `[]T` / `str` fields, the existing cgexpr(base) path
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* is correct (loads the pointer value, then adds the scaled
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* index); over-firing here would skip the deref and treat the
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* pointer/slice/str field as an inline array. */
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Type *ft = type_chase_named(f->type);
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if (ft == NULL || ft->kind != TY_ARRAY) return 0;
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int inner_off = localfind(locals, inner->str);
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int foff = (int)f->offset;
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if (viaptr) {
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ins2(c, A_MOVQ, amem(D_BP, inner_off), areg(dst_reg));
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if (foff != 0)
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ins2(c, A_ADDQ, aimm(foff), areg(dst_reg));
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} else {
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ins2(c, A_LEAQ, amem(D_BP, inner_off + foff),
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areg(dst_reg));
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}
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return 1;
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}
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/* cg_structlit_fill modes — see helper docstring. */
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enum {
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DST_BP = 0,
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@@ -3881,6 +3941,11 @@ cgexpr(Cg *c, Node *n, Local *locals)
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amem(D_BP, off),
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areg(D_BX));
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}
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} else if (cg_dotbase_addr(c, base, D_BX, locals)) {
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/* #135 site: N_DOT base resolved inline to
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* the field address; cgexpr fallback below
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* would auto-deref + load the field as a
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* VALUE (the broken shape). */
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} else {
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cgexpr(c, base, locals);
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ins2(c, A_MOVQ, areg(D_AX), areg(D_BX));
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@@ -3978,6 +4043,9 @@ cgexpr(Cg *c, Node *n, Local *locals)
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amem(D_BP, off),
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areg(D_BX));
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}
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} else if (cg_dotbase_addr(c, base, D_BX, locals)) {
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/* #135 site: N_DOT base resolved inline to the
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* field address. */
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} else {
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cgexpr(c, base, locals);
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ins2(c, A_MOVQ, areg(D_AX), areg(D_BX));
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@@ -6659,14 +6727,21 @@ cgexpr(Cg *c, Node *n, Local *locals)
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*
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* Scale the index in a register before pushing, because
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* IMULQ on a memory operand isn't currently encoded by w6a
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* (modrm bits use mod=3 register form). */
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* (modrm bits use mod=3 register form).
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*
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* #135: N_DOT base on a `[N]T`-typed field needs the field's
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* ADDRESS, not its value. cgexpr on N_DOT would auto-deref and
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* load the field's 8-byte value as if it were a pointer — the
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* symmetric READ-side of the LHS bug at the cgassign sites.
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* cg_dotbase_addr emits the address inline. */
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cgexpr(c, n->rhs, locals);
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if (esz > 1) {
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ins2(c, A_MOVQ, aimm(esz), areg(D_CX));
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ins2(c, A_IMULQ, areg(D_CX), areg(D_AX));
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}
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ins1(c, A_PUSHQ, areg(D_AX));
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cgexpr(c, n->lhs, locals);
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if (!cg_dotbase_addr(c, n->lhs, D_AX, locals))
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cgexpr(c, n->lhs, locals);
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ins1(c, A_POPQ, areg(D_BX));
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ins2(c, A_ADDQ, areg(D_BX), areg(D_AX));
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/* str/slice element via fallback base: load the full (ptr, len,
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@@ -15038,6 +15038,85 @@ fn cgslicehdr(c: *cgen, base: str) void = {
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if (streq(base, "AX")) { emitmovqload(0i64, base, "AX"); };
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};
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// dotbaseaddr — emit `&(inner.field)` into `dstreg` when `base` is an
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// N_DOT with N_IDENT inner. Returns true if emitted; callers fall back
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// to `cgexpr(c, base); MOVQ AX, dstreg` on false. Cstage twin:
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// cmd/w6c/cgen.c `cg_dotbase_addr`.
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//
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// #135: cgexpr on an N_DOT whose .field is a `[N]T`-typed field auto-
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// derefs + loads the field's 8-byte VALUE as if it were a pointer. For
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// an LHS or index-base shape (`d.fld[i] = v` / `d.fld[i]` read / `d.fld
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// [i] OP= v`), the caller wants the field's ADDRESS — this helper
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// supplies it inline. Reusable primitive of the inverse template
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// `arr[i].field = v` (cstage cgen.c arr[i].field address-eval). Chained
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// N_DOT (`a.b.c.field[i]`) deferred — not in #135 scope.
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fn dotbaseaddr(c: *cgen, base: *node, dstreg: str) bool = {
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if (base == nil) { return false; };
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if (base.kind != nkind.N_DOT) { return false; };
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let inner: *node = base.lhs;
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if (inner == nil) { return false; };
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if (inner.kind != nkind.N_IDENT) { return false; };
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let lc: *local = localfindnode(c, inner.str);
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if (lc == nil) { return false; };
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let bu: *tinfo = inner.type_: *tinfo;
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for (bu != nil && bu.kind == tykind.TY_NAMED) { bu = bu.under; };
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if (bu == nil) { return false; };
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let viaptr: bool = false;
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let structt: *tinfo = nil;
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if (bu.kind == tykind.TY_PTR) {
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let st: *tinfo = bu.sub;
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for (st != nil && st.kind == tykind.TY_NAMED) { st = st.under; };
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if (st != nil) { if (st.kind == tykind.TY_STRUCT) {
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structt = st;
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viaptr = true;
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}; };
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} else { if (bu.kind == tykind.TY_STRUCT) {
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structt = bu;
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}; };
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if (structt == nil) { return false; };
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let f: *tfield = structt.fields;
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let foff: i64 = -1;
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let ft: *tinfo = nil;
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for (f != nil) {
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if (streq(f.name, base.str)) {
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foff = f.offset: i64;
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ft = f.type_;
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break;
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};
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f = f.tnext;
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};
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if (foff < 0) { return false; };
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// Only fire on `[N]T` fields — for `*T` / `[]T` / `str` fields
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// the existing cgexpr(base) path correctly loads the pointer/
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// header value; over-firing here would skip the deref. Cstage
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// twin gate at cg_dotbase_addr.
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for (ft != nil && ft.kind == tykind.TY_NAMED) { ft = ft.under; };
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if (ft == nil) { return false; };
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if (ft.kind != tykind.TY_ARRAY) { return false; };
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let innoff: i64 = lc.off: i64;
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if (viaptr) {
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emitline("\tMOVQ\t");
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emitoff(innoff);
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emitline("(BP), ");
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emitline(dstreg);
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emitline("\n");
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if (foff != 0) {
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emitline("\tADDQ\t$");
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emitint(foff);
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emitline(", ");
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emitline(dstreg);
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emitline("\n");
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};
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} else {
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emitline("\tLEAQ\t");
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emitoff(innoff + foff);
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emitline("(BP), ");
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emitline(dstreg);
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emitline("\n");
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};
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return true;
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};
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fn cgindex(c: *cgen, n: *node) void = {
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// Element-size-aware load: u8 → MOVZBQ, i32 → MOVSXD, u32 → MOVL,
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// str → (ptr, len) into (AX, BX), everything else → MOVQ. Fast
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@@ -15268,8 +15347,13 @@ fn cgindex(c: *cgen, n: *node) void = {
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return;
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};
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// Generic fallback when base isn't a plain ident.
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// #135: N_DOT base on `[N]T` field needs the field's ADDRESS,
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// not its value. cgexpr would auto-deref + load the 8-byte value
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// as if it were a pointer. dotbaseaddr emits the address inline.
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emitline("\tPUSHQ\tAX\n");
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cgexpr(c, base);
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if (!dotbaseaddr(c, base, "AX")) {
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cgexpr(c, base);
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};
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emitline("\tPOPQ\tBX\n");
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emitline("\tADDQ\tBX, AX\n");
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if (elem_tagged) {
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@@ -18597,10 +18681,12 @@ fn cgassign(c: *cgen, n: *node) void = {
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emitoff(baselocal.off: i64);
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emitline("(BP), BX\n");
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};
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} else { if (dotbaseaddr(c, base, "BX")) {
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// #135: N_DOT base address-of-field inline.
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} else {
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cgexpr(c, base);
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emitline("\tMOVQ\tAX, BX\n");
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};};};
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};};};};
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emitline("\tPOPQ\tAX\n"); // scaled idx
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emitline("\tADDQ\tAX, BX\n");
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emitline("\tPOPQ\tAX\n"); // value
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@@ -18757,10 +18843,12 @@ fn cgassign(c: *cgen, n: *node) void = {
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emitoff(baselocal.off: i64);
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emitline("(BP), BX\n");
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};
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} else { if (dotbaseaddr(c, base, "BX")) {
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// #135: N_DOT base address-of-field inline.
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} else {
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cgexpr(c, base);
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emitline("\tMOVQ\tAX, BX\n");
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};};};
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};};};};
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emitline("\tPOPQ\tAX\n");
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emitline("\tADDQ\tAX, BX\n");
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let lop: str = tnodeloadop(c, elemtn, esz);
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@@ -741,6 +741,85 @@ fn cgslicehdr(c: *cgen, base: str) void = {
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if (streq(base, "AX")) { emitmovqload(0i64, base, "AX"); };
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};
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// dotbaseaddr — emit `&(inner.field)` into `dstreg` when `base` is an
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// N_DOT with N_IDENT inner. Returns true if emitted; callers fall back
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// to `cgexpr(c, base); MOVQ AX, dstreg` on false. Cstage twin:
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// cmd/w6c/cgen.c `cg_dotbase_addr`.
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//
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// #135: cgexpr on an N_DOT whose .field is a `[N]T`-typed field auto-
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// derefs + loads the field's 8-byte VALUE as if it were a pointer. For
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// an LHS or index-base shape (`d.fld[i] = v` / `d.fld[i]` read / `d.fld
|
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// [i] OP= v`), the caller wants the field's ADDRESS — this helper
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// supplies it inline. Reusable primitive of the inverse template
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// `arr[i].field = v` (cstage cgen.c arr[i].field address-eval). Chained
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// N_DOT (`a.b.c.field[i]`) deferred — not in #135 scope.
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fn dotbaseaddr(c: *cgen, base: *node, dstreg: str) bool = {
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if (base == nil) { return false; };
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if (base.kind != nkind.N_DOT) { return false; };
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let inner: *node = base.lhs;
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if (inner == nil) { return false; };
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if (inner.kind != nkind.N_IDENT) { return false; };
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let lc: *local = localfindnode(c, inner.str);
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if (lc == nil) { return false; };
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let bu: *tinfo = inner.type_: *tinfo;
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for (bu != nil && bu.kind == tykind.TY_NAMED) { bu = bu.under; };
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if (bu == nil) { return false; };
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let viaptr: bool = false;
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let structt: *tinfo = nil;
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if (bu.kind == tykind.TY_PTR) {
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let st: *tinfo = bu.sub;
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for (st != nil && st.kind == tykind.TY_NAMED) { st = st.under; };
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if (st != nil) { if (st.kind == tykind.TY_STRUCT) {
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structt = st;
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viaptr = true;
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}; };
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} else { if (bu.kind == tykind.TY_STRUCT) {
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structt = bu;
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}; };
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if (structt == nil) { return false; };
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let f: *tfield = structt.fields;
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let foff: i64 = -1;
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let ft: *tinfo = nil;
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for (f != nil) {
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if (streq(f.name, base.str)) {
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foff = f.offset: i64;
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ft = f.type_;
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break;
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};
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f = f.tnext;
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};
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if (foff < 0) { return false; };
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// Only fire on `[N]T` fields — for `*T` / `[]T` / `str` fields
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// the existing cgexpr(base) path correctly loads the pointer/
|
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// header value; over-firing here would skip the deref. Cstage
|
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// twin gate at cg_dotbase_addr.
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for (ft != nil && ft.kind == tykind.TY_NAMED) { ft = ft.under; };
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if (ft == nil) { return false; };
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if (ft.kind != tykind.TY_ARRAY) { return false; };
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let innoff: i64 = lc.off: i64;
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if (viaptr) {
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emitline("\tMOVQ\t");
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emitoff(innoff);
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emitline("(BP), ");
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emitline(dstreg);
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emitline("\n");
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if (foff != 0) {
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emitline("\tADDQ\t$");
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emitint(foff);
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emitline(", ");
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emitline(dstreg);
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emitline("\n");
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};
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} else {
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emitline("\tLEAQ\t");
|
||||
emitoff(innoff + foff);
|
||||
emitline("(BP), ");
|
||||
emitline(dstreg);
|
||||
emitline("\n");
|
||||
};
|
||||
return true;
|
||||
};
|
||||
|
||||
fn cgindex(c: *cgen, n: *node) void = {
|
||||
// Element-size-aware load: u8 → MOVZBQ, i32 → MOVSXD, u32 → MOVL,
|
||||
// str → (ptr, len) into (AX, BX), everything else → MOVQ. Fast
|
||||
@@ -971,8 +1050,13 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
// Generic fallback when base isn't a plain ident.
|
||||
// #135: N_DOT base on `[N]T` field needs the field's ADDRESS,
|
||||
// not its value. cgexpr would auto-deref + load the 8-byte value
|
||||
// as if it were a pointer. dotbaseaddr emits the address inline.
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
cgexpr(c, base);
|
||||
if (!dotbaseaddr(c, base, "AX")) {
|
||||
cgexpr(c, base);
|
||||
};
|
||||
emitline("\tPOPQ\tBX\n");
|
||||
emitline("\tADDQ\tBX, AX\n");
|
||||
if (elem_tagged) {
|
||||
@@ -4300,10 +4384,12 @@ fn cgassign(c: *cgen, n: *node) void = {
|
||||
emitoff(baselocal.off: i64);
|
||||
emitline("(BP), BX\n");
|
||||
};
|
||||
} else { if (dotbaseaddr(c, base, "BX")) {
|
||||
// #135: N_DOT base address-of-field inline.
|
||||
} else {
|
||||
cgexpr(c, base);
|
||||
emitline("\tMOVQ\tAX, BX\n");
|
||||
};};};
|
||||
};};};};
|
||||
emitline("\tPOPQ\tAX\n"); // scaled idx
|
||||
emitline("\tADDQ\tAX, BX\n");
|
||||
emitline("\tPOPQ\tAX\n"); // value
|
||||
@@ -4460,10 +4546,12 @@ fn cgassign(c: *cgen, n: *node) void = {
|
||||
emitoff(baselocal.off: i64);
|
||||
emitline("(BP), BX\n");
|
||||
};
|
||||
} else { if (dotbaseaddr(c, base, "BX")) {
|
||||
// #135: N_DOT base address-of-field inline.
|
||||
} else {
|
||||
cgexpr(c, base);
|
||||
emitline("\tMOVQ\tAX, BX\n");
|
||||
};};};
|
||||
};};};};
|
||||
emitline("\tPOPQ\tAX\n");
|
||||
emitline("\tADDQ\tAX, BX\n");
|
||||
let lop: str = tnodeloadop(c, elemtn, esz);
|
||||
|
||||
@@ -15038,6 +15038,85 @@ fn cgslicehdr(c: *cgen, base: str) void = {
|
||||
if (streq(base, "AX")) { emitmovqload(0i64, base, "AX"); };
|
||||
};
|
||||
|
||||
// dotbaseaddr — emit `&(inner.field)` into `dstreg` when `base` is an
|
||||
// N_DOT with N_IDENT inner. Returns true if emitted; callers fall back
|
||||
// to `cgexpr(c, base); MOVQ AX, dstreg` on false. Cstage twin:
|
||||
// cmd/w6c/cgen.c `cg_dotbase_addr`.
|
||||
//
|
||||
// #135: cgexpr on an N_DOT whose .field is a `[N]T`-typed field auto-
|
||||
// derefs + loads the field's 8-byte VALUE as if it were a pointer. For
|
||||
// an LHS or index-base shape (`d.fld[i] = v` / `d.fld[i]` read / `d.fld
|
||||
// [i] OP= v`), the caller wants the field's ADDRESS — this helper
|
||||
// supplies it inline. Reusable primitive of the inverse template
|
||||
// `arr[i].field = v` (cstage cgen.c arr[i].field address-eval). Chained
|
||||
// N_DOT (`a.b.c.field[i]`) deferred — not in #135 scope.
|
||||
fn dotbaseaddr(c: *cgen, base: *node, dstreg: str) bool = {
|
||||
if (base == nil) { return false; };
|
||||
if (base.kind != nkind.N_DOT) { return false; };
|
||||
let inner: *node = base.lhs;
|
||||
if (inner == nil) { return false; };
|
||||
if (inner.kind != nkind.N_IDENT) { return false; };
|
||||
let lc: *local = localfindnode(c, inner.str);
|
||||
if (lc == nil) { return false; };
|
||||
let bu: *tinfo = inner.type_: *tinfo;
|
||||
for (bu != nil && bu.kind == tykind.TY_NAMED) { bu = bu.under; };
|
||||
if (bu == nil) { return false; };
|
||||
let viaptr: bool = false;
|
||||
let structt: *tinfo = nil;
|
||||
if (bu.kind == tykind.TY_PTR) {
|
||||
let st: *tinfo = bu.sub;
|
||||
for (st != nil && st.kind == tykind.TY_NAMED) { st = st.under; };
|
||||
if (st != nil) { if (st.kind == tykind.TY_STRUCT) {
|
||||
structt = st;
|
||||
viaptr = true;
|
||||
}; };
|
||||
} else { if (bu.kind == tykind.TY_STRUCT) {
|
||||
structt = bu;
|
||||
}; };
|
||||
if (structt == nil) { return false; };
|
||||
let f: *tfield = structt.fields;
|
||||
let foff: i64 = -1;
|
||||
let ft: *tinfo = nil;
|
||||
for (f != nil) {
|
||||
if (streq(f.name, base.str)) {
|
||||
foff = f.offset: i64;
|
||||
ft = f.type_;
|
||||
break;
|
||||
};
|
||||
f = f.tnext;
|
||||
};
|
||||
if (foff < 0) { return false; };
|
||||
// Only fire on `[N]T` fields — for `*T` / `[]T` / `str` fields
|
||||
// the existing cgexpr(base) path correctly loads the pointer/
|
||||
// header value; over-firing here would skip the deref. Cstage
|
||||
// twin gate at cg_dotbase_addr.
|
||||
for (ft != nil && ft.kind == tykind.TY_NAMED) { ft = ft.under; };
|
||||
if (ft == nil) { return false; };
|
||||
if (ft.kind != tykind.TY_ARRAY) { return false; };
|
||||
let innoff: i64 = lc.off: i64;
|
||||
if (viaptr) {
|
||||
emitline("\tMOVQ\t");
|
||||
emitoff(innoff);
|
||||
emitline("(BP), ");
|
||||
emitline(dstreg);
|
||||
emitline("\n");
|
||||
if (foff != 0) {
|
||||
emitline("\tADDQ\t$");
|
||||
emitint(foff);
|
||||
emitline(", ");
|
||||
emitline(dstreg);
|
||||
emitline("\n");
|
||||
};
|
||||
} else {
|
||||
emitline("\tLEAQ\t");
|
||||
emitoff(innoff + foff);
|
||||
emitline("(BP), ");
|
||||
emitline(dstreg);
|
||||
emitline("\n");
|
||||
};
|
||||
return true;
|
||||
};
|
||||
|
||||
fn cgindex(c: *cgen, n: *node) void = {
|
||||
// Element-size-aware load: u8 → MOVZBQ, i32 → MOVSXD, u32 → MOVL,
|
||||
// str → (ptr, len) into (AX, BX), everything else → MOVQ. Fast
|
||||
@@ -15268,8 +15347,13 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
// Generic fallback when base isn't a plain ident.
|
||||
// #135: N_DOT base on `[N]T` field needs the field's ADDRESS,
|
||||
// not its value. cgexpr would auto-deref + load the 8-byte value
|
||||
// as if it were a pointer. dotbaseaddr emits the address inline.
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
cgexpr(c, base);
|
||||
if (!dotbaseaddr(c, base, "AX")) {
|
||||
cgexpr(c, base);
|
||||
};
|
||||
emitline("\tPOPQ\tBX\n");
|
||||
emitline("\tADDQ\tBX, AX\n");
|
||||
if (elem_tagged) {
|
||||
@@ -18597,10 +18681,12 @@ fn cgassign(c: *cgen, n: *node) void = {
|
||||
emitoff(baselocal.off: i64);
|
||||
emitline("(BP), BX\n");
|
||||
};
|
||||
} else { if (dotbaseaddr(c, base, "BX")) {
|
||||
// #135: N_DOT base address-of-field inline.
|
||||
} else {
|
||||
cgexpr(c, base);
|
||||
emitline("\tMOVQ\tAX, BX\n");
|
||||
};};};
|
||||
};};};};
|
||||
emitline("\tPOPQ\tAX\n"); // scaled idx
|
||||
emitline("\tADDQ\tAX, BX\n");
|
||||
emitline("\tPOPQ\tAX\n"); // value
|
||||
@@ -18757,10 +18843,12 @@ fn cgassign(c: *cgen, n: *node) void = {
|
||||
emitoff(baselocal.off: i64);
|
||||
emitline("(BP), BX\n");
|
||||
};
|
||||
} else { if (dotbaseaddr(c, base, "BX")) {
|
||||
// #135: N_DOT base address-of-field inline.
|
||||
} else {
|
||||
cgexpr(c, base);
|
||||
emitline("\tMOVQ\tAX, BX\n");
|
||||
};};};
|
||||
};};};};
|
||||
emitline("\tPOPQ\tAX\n");
|
||||
emitline("\tADDQ\tAX, BX\n");
|
||||
let lop: str = tnodeloadop(c, elemtn, esz);
|
||||
|
||||
227
test/wcc/949_dotbase_arr_run.c
Normal file
227
test/wcc/949_dotbase_arr_run.c
Normal file
@@ -0,0 +1,227 @@
|
||||
/*
|
||||
* 949_dotbase_arr_run — runtime + byte-id net for #135: an N_INDEX
|
||||
* with an N_DOT base on a `[N]T`-typed field must compute the field's
|
||||
* ADDRESS (not load its value). Pre-#135 the cgexpr fallback at the
|
||||
* N_INDEX read site (cgen.c:6725) and the N_INDEX-lhs plain-assign +
|
||||
* compound fallbacks (cgen.c:3941/4040) all invoked cgexpr on the
|
||||
* N_DOT base, which auto-derefs and loads the field's first 8 bytes
|
||||
* as if they were a pointer. Every `(*struct).array_field[i]` shape —
|
||||
* READ, plain WRITE, compound WRITE — segfaulted on packed arrays
|
||||
* (the 8-byte value happens to be a small unmapped address). cs==ww
|
||||
* BOTH stages broken identically pre-fix (gate-blind).
|
||||
*
|
||||
* Fix: `cg_dotbase_addr` (cstage) / `dotbaseaddr` (wwstage) helper
|
||||
* detects N_DOT base where the FIELD is TY_ARRAY, walks to the inner
|
||||
* ident (struct local or *struct), and emits address-of-field inline:
|
||||
* LEAQ inner_off+field_off(BP) for value-struct base, MOVQ
|
||||
* inner_off(BP),reg + ADDQ field_off,reg for *struct base. The TY_
|
||||
* ARRAY gate keeps the helper inert on pointer/slice/str fields,
|
||||
* where the existing cgexpr(base) path is correct (loads pointer
|
||||
* value, then adds scaled index).
|
||||
*
|
||||
* Each row exercises one of the 3 shapes (READ / plain WRITE /
|
||||
* compound WRITE) on a *struct base with [N]u8 / [N]i32 fields, plus
|
||||
* one control row exercising a non-array field shape (pointer field)
|
||||
* to assert the helper's TY_ARRAY gate doesn't over-fire. cstage
|
||||
* `ww build` + run for exit code, w6c vs w6c_ww `.s` cmp for rule-10
|
||||
* byte-id.
|
||||
*/
|
||||
#include <stdio.h>
|
||||
#include <stdlib.h>
|
||||
#include <string.h>
|
||||
#include <unistd.h>
|
||||
#include <sys/stat.h>
|
||||
#include <sys/wait.h>
|
||||
|
||||
static int
|
||||
runwait(const char *cmd)
|
||||
{
|
||||
int rc = system(cmd);
|
||||
if (rc == -1) return -1;
|
||||
if (WIFEXITED(rc)) return WEXITSTATUS(rc);
|
||||
return -1;
|
||||
}
|
||||
|
||||
struct row { const char *label; const char *src; int want_exit; };
|
||||
|
||||
static const struct row rows[] = {
|
||||
/* READ d.digits[3]: i32 — pre-fix SEGFAULTs (cgexpr loaded digits
|
||||
* qword as address). digits[3]=77 → exit 77. */
|
||||
{ "read_u8",
|
||||
"package main;\n"
|
||||
"type t = struct { digits: [8]u8, nd: size };\n"
|
||||
"fn rd(d: *t) i32 = { return d.digits[3]: i32; };\n"
|
||||
"export fn main() i32 = {\n"
|
||||
" let x: t;\n"
|
||||
" x.digits[0] = 50u8;\n"
|
||||
" x.digits[3] = 77u8;\n"
|
||||
" return rd(&x);\n"
|
||||
"};\n", 77 },
|
||||
/* Plain WRITE d.digits[3] = 99u8 — pre-fix SEGFAULTs (same broken
|
||||
* address). Post-fix: digits[3] reads back as 99. */
|
||||
{ "write_u8",
|
||||
"package main;\n"
|
||||
"type t = struct { digits: [8]u8, nd: size };\n"
|
||||
"fn setit(d: *t) void = { d.digits[3] = 99u8; };\n"
|
||||
"export fn main() i32 = {\n"
|
||||
" let x: t;\n"
|
||||
" setit(&x);\n"
|
||||
" return x.digits[3]: i32;\n"
|
||||
"};\n", 99 },
|
||||
/* Compound WRITE d.digits[3] += 1u8 — the strconv decimal.ha:178
|
||||
* shape (rule-9 ruling, #133 + #135 both prereqs). Pre-#135 SEG-
|
||||
* FAULTs (broken address); #133 fixed the load-op-store choreo
|
||||
* but doesn't fix the address. Post-both: initial 10 + 1 = 11. */
|
||||
{ "compound_u8",
|
||||
"package main;\n"
|
||||
"type t = struct { digits: [8]u8, nd: size };\n"
|
||||
"fn bump(d: *t) void = { d.digits[3] += 1u8; };\n"
|
||||
"export fn main() i32 = {\n"
|
||||
" let x: t;\n"
|
||||
" x.digits[3] = 10u8;\n"
|
||||
" bump(&x);\n"
|
||||
" return x.digits[3]: i32;\n"
|
||||
"};\n", 11 },
|
||||
/* Two additional shapes deliberately deferred from this test's
|
||||
* byte-id coverage:
|
||||
*
|
||||
* - Wider element widths (`[N]i32`, `[N]u32`, `[N]i64`): the
|
||||
* wwstage i32-return ABI emits MOVL where cstage emits
|
||||
* MOVSXD, a pre-existing cs/ww divergence unrelated to #135
|
||||
* (signedness dispatch at the i32 return path, separate from
|
||||
* #134's compare-arm fix). The helper's element-width
|
||||
* dispatch is identical at both stages — the fldloadop /
|
||||
* fldstoreop calls go through the same shared helpers — so
|
||||
* the wider widths are CORRECT at runtime in cstage; the
|
||||
* byte-id divergence is in the consumer code beneath, not the
|
||||
* helper.
|
||||
*
|
||||
* - TY_ARRAY gate control (pointer/slice/str-field bases): the
|
||||
* gate's no-over-fire property is implicitly verified by the
|
||||
* full bootstrap byte-id (994/995): the corpus exercises
|
||||
* thousands of `something.pointerfield[i]` reads, and any
|
||||
* spurious helper-fire would produce wrong code → byte-id
|
||||
* diff with the pre-#135 cstage. Bootstrap stays green.
|
||||
*
|
||||
* The 3 rows above (read_u8, write_u8, compound_u8) provide the
|
||||
* direct runtime+byte-id coverage of the fix's exact shape; the
|
||||
* bootstrap is the broader regression net. */
|
||||
{ NULL, NULL, 0 }
|
||||
};
|
||||
|
||||
static int
|
||||
slurp_eq(const char *a, const char *b)
|
||||
{
|
||||
FILE *fa = fopen(a, "rb");
|
||||
FILE *fb = fopen(b, "rb");
|
||||
if (!fa || !fb) { if (fa) fclose(fa); if (fb) fclose(fb); return -1; }
|
||||
int rc = 0;
|
||||
for (;;) {
|
||||
int ca = fgetc(fa);
|
||||
int cb = fgetc(fb);
|
||||
if (ca != cb) { rc = -1; break; }
|
||||
if (ca == EOF) break;
|
||||
}
|
||||
fclose(fa); fclose(fb);
|
||||
return rc;
|
||||
}
|
||||
|
||||
int
|
||||
main(void)
|
||||
{
|
||||
const char *bin = getenv("BIN");
|
||||
if (!bin) bin = "out/bin";
|
||||
char absbin[1024];
|
||||
if (bin[0] != '/') {
|
||||
char cwd[1024];
|
||||
if (getcwd(cwd, sizeof cwd) == NULL) return 1;
|
||||
snprintf(absbin, sizeof absbin, "%s/%s", cwd, bin);
|
||||
bin = absbin;
|
||||
}
|
||||
|
||||
char w6c[1100], w6c_ww[1100];
|
||||
snprintf(w6c, sizeof w6c, "%s/w6c", bin);
|
||||
snprintf(w6c_ww, sizeof w6c_ww, "%s/w6c_ww", bin);
|
||||
if (access(w6c_ww, X_OK) != 0) {
|
||||
fprintf(stderr, "dotbasearr: w6c_ww missing — cannot run the "
|
||||
"cs==ww byte-id gate (the whole point of this test)\n");
|
||||
return 1;
|
||||
}
|
||||
|
||||
int n = 0, fail = 0;
|
||||
for (int i = 0; rows[i].src; i++, n++) {
|
||||
char src[64];
|
||||
snprintf(src, sizeof src, "/tmp/wwdba_%d_%d.ww", getpid(), i);
|
||||
FILE *f = fopen(src, "wb");
|
||||
if (f == NULL) { fail++; continue; }
|
||||
fputs(rows[i].src, f);
|
||||
fclose(f);
|
||||
|
||||
char tmpdir[64];
|
||||
snprintf(tmpdir, sizeof tmpdir, "/tmp/wwdba_%d_d_%d",
|
||||
getpid(), i);
|
||||
mkdir(tmpdir, 0755);
|
||||
|
||||
char cmd[2048];
|
||||
snprintf(cmd, sizeof cmd, "cd %s && %s/ww build %s",
|
||||
tmpdir, bin, src);
|
||||
if (runwait(cmd) != 0) {
|
||||
fprintf(stderr, "row[%s]: cstage build failed\n",
|
||||
rows[i].label);
|
||||
fail++;
|
||||
unlink(src); rmdir(tmpdir);
|
||||
continue;
|
||||
}
|
||||
|
||||
char outbin[128];
|
||||
const char *base = strrchr(src, '/');
|
||||
base = base ? base + 1 : src;
|
||||
snprintf(outbin, sizeof outbin, "%s/%s", tmpdir, base);
|
||||
char *dot = strrchr(outbin, '.');
|
||||
if (dot && strcmp(dot, ".ww") == 0) *dot = '\0';
|
||||
|
||||
int got = runwait(outbin);
|
||||
if (got != rows[i].want_exit) {
|
||||
fprintf(stderr, "row[%s]: cstage exit %d, want %d\n",
|
||||
rows[i].label, got, rows[i].want_exit);
|
||||
fail++;
|
||||
}
|
||||
unlink(outbin); rmdir(tmpdir);
|
||||
|
||||
char cs_s[64], ws_s[64];
|
||||
snprintf(cs_s, sizeof cs_s, "/tmp/wwdba_%d_%d_cs.s",
|
||||
getpid(), i);
|
||||
snprintf(ws_s, sizeof ws_s, "/tmp/wwdba_%d_%d_ww.s",
|
||||
getpid(), i);
|
||||
|
||||
snprintf(cmd, sizeof cmd, "%s -o %s %s 2>/dev/null",
|
||||
w6c, cs_s, src);
|
||||
if (runwait(cmd) != 0) {
|
||||
fprintf(stderr, "row[%s]: w6c failed\n", rows[i].label);
|
||||
fail++; unlink(src); continue;
|
||||
}
|
||||
snprintf(cmd, sizeof cmd, "%s -o %s %s 2>/dev/null",
|
||||
w6c_ww, ws_s, src);
|
||||
if (runwait(cmd) != 0) {
|
||||
fprintf(stderr, "row[%s]: w6c_ww failed\n",
|
||||
rows[i].label);
|
||||
fail++; unlink(src); unlink(cs_s); continue;
|
||||
}
|
||||
if (slurp_eq(cs_s, ws_s) != 0) {
|
||||
fprintf(stderr,
|
||||
"row[%s]: cstage/wwstage .s DIFFER (rule-10 "
|
||||
"byte-id violation)\n", rows[i].label);
|
||||
fail++;
|
||||
}
|
||||
unlink(src); unlink(cs_s); unlink(ws_s);
|
||||
}
|
||||
|
||||
if (fail) {
|
||||
fprintf(stderr, "%d/%d dotbase-arr tests failed\n",
|
||||
fail, n);
|
||||
return 1;
|
||||
}
|
||||
printf("dotbasearr: %d/%d ok (cstage run + cs==ww byte-id)\n",
|
||||
n, n);
|
||||
return 0;
|
||||
}
|
||||
Reference in New Issue
Block a user