w6c+w6a+selfhost+lib: cgen+asm bugs surfaced by hash modules
Seven fixes across the toolchain, plus three new lib/hash modules
(adler32, crc16, crc32) that surfaced them.
1. `~x` on u8/u16/u32 left the upper bits set: NOTQ inverts the
whole 64-bit register and nothing trimmed it back to type
width, so a returned `u16` would compare 64-bit against a
typed literal and disagree. Both stages now mask after NOTQ
for narrow unsigned: AND $0xFF/0xFFFF for u8/u16, MOVL r,r for
u32 (ANDQ $0xFFFFFFFF sign-extends imm32 and is a no-op).
Signed narrows stay sign-extended and need no fix-up. See
cmd/w6c/cgen.c N_UN TK_TILDE and selfhost cgenexpr.ww cgun
TK_TILDE with new nodeprimwidth helper.
2. w6a had no D_CONST immediate path for ANDQ / ORQ. cgen would
emit `ANDQ $65535, AX` and the rr encoder silently wrote
`21 /r` with garbage reg fields — the mask never happened.
Added `81 /4` (AND) and `81 /1` (OR) imm32 paths in both
cstage and selfhost w6a. The ~width fix above depends on this.
3. `s: []u8` cast as a direct fn argument produced a 0-length
slice. cgexpr for N_CAST left (AX=ptr, BX=len) from the str
source but never set CX (cap), and the arg-push fallback only
pushed AX. cgcast now synthesises CX=BX when target is slice
and source is str; node_isslice / arg-push recognise
cast-to-slice and emit the full (cap, len, ptr) triple. Both
stages.
4. `*[N]T` element-store used 8-byte stride + MOVQ regardless of
T's width. Indexing `buf: *[4]u16` would step 8 bytes and
write 8 bytes per element. Added idx_eff (drills *[N]T → T)
in cstage and the matching pointer-array drill in selfhost
elemsizeof. Also added MOVW / MOVZWQ / MOVSWQ to w6c, w6a,
and selfhost mirrors so 2-byte element stores/loads use the
right opcode (was falling through to MOVQ and trailing 6 bytes
into the next slot).
5. Slicing a top-level fixed array (`g[0:n]` where `g: [N]T` is
a global) computed the base from BP instead of the symbol —
localfind returned 0 and the cgen treated it as a local at
offset 0. Both N_SLICE-as-expression (cgslice) and N_SLICE-
as-call-arg paths now check let_islet / letvartnode and emit
LEAQ name(SB) when the base is a global array (or MOVQ
name(SB) for a global slice/pointer base). Both stages.
6. Top-level `let arr: [N]T = [v0, v1, ...]` link-failed on
cstage — emit_lets bailed when it saw N_ARRLIT init on an
array type, and the sz==8 scalar path then misemitted any
8-byte-sized array (e.g. [4]u16, [8]u8) as a single quad.
emit_lets now walks N_ARRLIT, evaluates each element as an
int/rune/bool/nil literal, packs per-element bytes
little-endian, and honours the trailing `...` repeat marker.
Selfhost already handled the literal-init path; fixed the
parallel sz==8 duplicate-DATAW emit on its side (the array
and the scalar paths both fired, last write winning at link
but the duplicate broke cross-stage byte-identicality on user
code with this shape).
7. w6a's per-line input buffer was a 1KB stack `char buf[1024]`.
A `DATAW` for a [256]u16 emits ~2080 bytes on one line, which
truncated mid-escape; the assembler then re-parsed the
remaining tail as garbage opcodes ("unknown opcode"). Bumped
cstage w6a to a 32K static buffer (selfhost w6a already
allocated per-line via amalloc).
lib: lib/hash/adler32, lib/hash/crc16, lib/hash/crc32 — pure
buffer-subset shape (matching lib/hash/fnv), with per-module
*_test.ww runnable via `ww test lib/hash/<name>`. Adler-32 plus
CRC-16 (CCITT/CMDA2000/DECT/ANSI) and CRC-32 (IEEE/Castagnoli/
Koopman) cover Hare's reference vectors bit-for-bit. Wired into
test/wcc/900_stdlib.c. .gitignore: lib/**/*.s,*.o so `ww test`
droppings stay untracked.
`make test` (26/26), `make bootstrap` (ww2≡ww3≡ww4), and per-module
`ww test` all pass. cgen output is byte-identical across cstage and
selfhost for every repro that previously diverged.
This commit is contained in:
3
.gitignore
vendored
3
.gitignore
vendored
@@ -21,7 +21,10 @@ selfhost/test/*.combined.ww
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# `ww build` on a lib/ module leaves a .combined.ww next to the
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# source. None of these are bootstrap inputs (those are under
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# selfhost/cmd/*/main.combined.ww) — they're just transient.
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# `ww test lib/foo` also drops the .s/.o triplet for *_test.ww.
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lib/**/*.combined.ww
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lib/**/*.s
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lib/**/*.o
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# examples/ build outputs. Each example has its own Makefile that
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# leaves the .s/.o/.combined.ww plus a stripped binary behind.
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@@ -453,6 +453,57 @@ a_encode(Asm *a)
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a->errs++;
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}
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break;
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case A_MOVW:
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/* 16-bit MOV: prefix 0x66 selects 16-bit operand size.
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* MOV r/m16, r16 — 66 89 /r; MOV r16, r/m16 — 66 8B /r.
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* No REX.W (operand-size prefix beats REX.W). */
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if (p->from.type >= D_AX && p->from.type <= D_R15
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&& p->to.type == D_INDIR) {
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a_emit_byte(a, 0x66);
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emit_rex(a, rhi(p->from.type), rhi(p->to.reg), 0);
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a_emit_byte(a, 0x89);
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emit_modrm_mem(a, rcode(p->from.type),
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p->to.reg, p->to.offset);
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} else if (p->from.type == D_INDIR
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&& p->to.type >= D_AX && p->to.type <= D_R15) {
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a_emit_byte(a, 0x66);
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emit_rex(a, rhi(p->to.type), rhi(p->from.reg), 0);
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a_emit_byte(a, 0x8B);
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emit_modrm_mem(a, rcode(p->to.type),
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p->from.reg, p->from.offset);
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} else {
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fprintf(stderr, "w6a: line %d: unsupported MOVW shape\n", p->line);
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a->errs++;
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}
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break;
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case A_MOVZWQ:
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/* MOVZX r64, r/m16 — 0F B7 /r with REX.W */
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if (p->from.type == D_INDIR
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&& p->to.type >= D_AX && p->to.type <= D_R15) {
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emit_rex(a, rhi(p->to.type), rhi(p->from.reg), 1);
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a_emit_byte(a, 0x0F);
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a_emit_byte(a, 0xB7);
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emit_modrm_mem(a, rcode(p->to.type),
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p->from.reg, p->from.offset);
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} else {
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fprintf(stderr, "w6a: line %d: unsupported MOVZWQ shape\n", p->line);
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a->errs++;
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}
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break;
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case A_MOVSWQ:
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/* MOVSX r64, r/m16 — 0F BF /r with REX.W */
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if (p->from.type == D_INDIR
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&& p->to.type >= D_AX && p->to.type <= D_R15) {
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emit_rex(a, rhi(p->to.type), rhi(p->from.reg), 1);
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a_emit_byte(a, 0x0F);
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a_emit_byte(a, 0xBF);
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emit_modrm_mem(a, rcode(p->to.type),
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p->from.reg, p->from.offset);
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} else {
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fprintf(stderr, "w6a: line %d: unsupported MOVSWQ shape\n", p->line);
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a->errs++;
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}
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break;
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case A_MOVB:
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/* MOV r/m8, r8 — 88 /r. No REX.W. We always emit REX
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* to allow access to SIL/DIL/BPL/SPL. */
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@@ -638,8 +689,24 @@ a_encode(Asm *a)
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else
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encode_rr(a, 0x29, p->from.type, p->to.type);
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break;
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case A_ANDQ: encode_rr(a, 0x21, p->from.type, p->to.type); break;
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case A_ORQ: encode_rr(a, 0x09, p->from.type, p->to.type); break;
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case A_ANDQ:
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/* AND r/m64, imm32 — 81 /4 (REX.W). Without the
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* D_CONST path the rr encoder would silently emit
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* a 0x21 with garbage reg fields. */
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if (p->from.type == D_CONST
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&& p->to.type >= D_AX && p->to.type <= D_R15)
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encode_ri_imm32(a, 0x81, 4, p->to.type, (i32)p->from.offset);
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else
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encode_rr(a, 0x21, p->from.type, p->to.type);
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break;
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case A_ORQ:
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/* OR r/m64, imm32 — 81 /1 (REX.W). Mirrors ANDQ. */
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if (p->from.type == D_CONST
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&& p->to.type >= D_AX && p->to.type <= D_R15)
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encode_ri_imm32(a, 0x81, 1, p->to.type, (i32)p->from.offset);
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else
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encode_rr(a, 0x09, p->from.type, p->to.type);
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break;
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case A_XORQ:
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if (p->from.type == D_CONST
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&& p->to.type >= D_AX && p->to.type <= D_R15)
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@@ -83,8 +83,9 @@ opcode_lookup(const char *m)
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{
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struct { const char *m; int op; } tab[] = {
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{ "MOVQ", A_MOVQ }, { "MOVL", A_MOVL },
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{ "MOVB", A_MOVB }, { "MOVZBQ", A_MOVZBQ },
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{ "MOVSXD", A_MOVSXD },
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{ "MOVW", A_MOVW }, { "MOVB", A_MOVB },
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{ "MOVZBQ", A_MOVZBQ }, { "MOVZWQ", A_MOVZWQ },
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{ "MOVSXD", A_MOVSXD }, { "MOVSWQ", A_MOVSWQ },
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{ "MOVSD", A_MOVSD },
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{ "ADDSD", A_ADDSD },{ "SUBSD", A_SUBSD },
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{ "MULSD", A_MULSD },{ "DIVSD", A_DIVSD },
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@@ -263,7 +264,10 @@ parse_operand(Asm *a, const char *s, Aoperand *out)
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int
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a_parse(Asm *a)
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{
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char buf[1024];
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/* Big enough for a DATAW emitting a [256]u32 table (1024 bytes
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* → ~4100 chars of `\xNN` escapes plus directive boilerplate).
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* Selfhost w6a allocates per-line; this is the cstage equivalent. */
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static char buf[32768];
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char *line;
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size_t len;
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const char *pending_label = NULL;
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@@ -49,9 +49,12 @@ enum {
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A_MOVQ,
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A_MOVL,
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A_MOVW,
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A_MOVB,
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A_MOVZBQ, /* movzx r64, r/m8 — load byte zero-extended */
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A_MOVZWQ, /* movzx r64, r/m16 — load word zero-extended */
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A_MOVSXD, /* movsxd r64, r/m32 — load i32 sign-extended */
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A_MOVSWQ, /* movsx r64, r/m16 — load word sign-extended */
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/* SSE2 scalar double-precision float */
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A_MOVSD, /* xmm/m → xmm and xmm → m */
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201
cmd/w6c/cgen.c
201
cmd/w6c/cgen.c
@@ -521,6 +521,21 @@ type_unwrap(Type *t)
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return (t->kind == TY_NAMED) ? t->under : t;
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}
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/* Element-effective type for indexing. For `*[N]T` we drill through
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* the pointer to the underlying array so esz/esub reflect T, not the
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* whole-array pointee. For everything else returns t unchanged. */
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static Type *
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idx_eff(Type *t)
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{
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if (t == NULL) return NULL;
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Type *u = type_unwrap(t);
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if (u && u->kind == TY_PTR && u->sub) {
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Type *p = type_unwrap(u->sub);
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if (p && p->kind == TY_ARRAY) return p;
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}
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return u;
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}
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static int
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decl_has_ffisym(Node *d)
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{
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@@ -1322,7 +1337,27 @@ cgexpr(Cg *c, Node *n, Local *locals)
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ins1(c, A_NEGQ, areg(D_AX));
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}
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break;
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case TK_TILDE: ins1(c, A_NOTQ, areg(D_AX)); break;
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case TK_TILDE:
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/* NOTQ inverts the whole 64-bit register. For unsigned
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* narrow types we clamp to the type width so the
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* upper bits are 0, matching how zero-extended loads
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* leave the register. Signed narrow types already
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* end up sign-extended (NOTQ on a sign-extended
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* positive becomes sign-extended negative), so they
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* need no fix-up. u32 uses MOVL r,r (zero-extends
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* upper 32) because ANDQ $0xFFFFFFFF would sign-extend
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* the imm32 to all-ones and act as a no-op. */
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ins1(c, A_NOTQ, areg(D_AX));
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if (n->type && type_isunsigned(n->type)
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&& n->type->size < 8) {
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if (n->type->size == 4) {
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ins2(c, A_MOVL, areg(D_AX), areg(D_AX));
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} else {
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u64 mask = ((u64)1 << (n->type->size * 8)) - 1;
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ins2(c, A_ANDQ, aimm((i64)mask), areg(D_AX));
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}
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}
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break;
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case TK_NOT: {
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ins2(c, A_CMPQ, aimm(0), areg(D_AX));
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char *t = mklabel(c, "tt");
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@@ -1969,9 +2004,13 @@ cgexpr(Cg *c, Node *n, Local *locals)
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int is_arr = u && u->kind == TY_ARRAY;
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int is_sl = u && u->kind == TY_SLICE;
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int is_ptr = u && u->kind == TY_PTR;
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int esz = (u && u->sub) ? (int)u->sub->size : 1;
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int elem_is_str = u && u->sub && type_isstr(u->sub);
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Type *esub = u ? u->sub : NULL;
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/* For `*[N]T` drill through to the array so esz reflects
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* T, not sizeof(array). Base load still uses u (MOVQ
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* because is_ptr stays true). */
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Type *eff = idx_eff(bt);
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int esz = (eff && eff->sub) ? (int)eff->sub->size : 1;
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int elem_is_str = eff && eff->sub && type_isstr(eff->sub);
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Type *esub = eff ? eff->sub : NULL;
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Type *esubu = (esub && esub->kind == TY_NAMED)
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? esub->under : esub;
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int elem_tagged = esubu && esubu->kind == TY_TAGGED;
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@@ -2074,6 +2113,7 @@ cgexpr(Cg *c, Node *n, Local *locals)
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}
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int store_op = A_MOVQ;
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if (esz == 1) store_op = A_MOVB;
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else if (esz == 2) store_op = A_MOVW;
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else if (esz == 4) store_op = A_MOVL;
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ins2(c, store_op, areg(D_AX), amem(D_BX, 0));
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break;
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@@ -2755,7 +2795,17 @@ cgexpr(Cg *c, Node *n, Local *locals)
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/* base addr → push */
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if (base->kind == N_IDENT) {
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int boff = localfind(locals, base->str);
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if (bu && bu->kind == TY_ARRAY) {
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int isglobal = (boff == 0) &&
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let_islet(base->str);
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if (isglobal && bu && bu->kind == TY_ARRAY) {
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ins2(c, A_LEAQ,
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masym(c, base->str),
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areg(D_AX));
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} else if (isglobal) {
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ins2(c, A_MOVQ,
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masym(c, base->str),
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areg(D_AX));
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} else if (bu && bu->kind == TY_ARRAY) {
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ins2(c, A_LEAQ, amem(D_BP, boff), areg(D_AX));
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} else {
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ins2(c, A_MOVQ, amem(D_BP, boff), areg(D_AX));
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@@ -2771,7 +2821,17 @@ cgexpr(Cg *c, Node *n, Local *locals)
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else if (base->kind == N_IDENT && bu &&
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(bu->kind == TY_SLICE || bu->kind == TY_STR)) {
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int boff = localfind(locals, base->str);
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ins2(c, A_MOVQ, amem(D_BP, boff + 8), areg(D_AX));
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int isglobal = (boff == 0) &&
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let_islet(base->str);
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if (isglobal) {
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ins2(c, A_LEAQ,
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masym(c, base->str),
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areg(D_CX));
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ins2(c, A_MOVQ,
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amem(D_CX, 8), areg(D_AX));
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} else {
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ins2(c, A_MOVQ, amem(D_BP, boff + 8), areg(D_AX));
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}
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} else {
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cgexpr_int(c, 0);
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}
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@@ -2849,6 +2909,13 @@ cgexpr(Cg *c, Node *n, Local *locals)
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} else if (node_isstr(args[i])) {
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ins1(c, A_PUSHQ, areg(D_BX)); /* len */
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ins1(c, A_PUSHQ, areg(D_AX)); /* ptr — top */
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} else if (node_isslice(args[i])) {
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/* Slice-typed arg without a fast path above
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* (e.g. `s: []u8` cast): cgexpr left
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* (AX=ptr, BX=len, CX=cap). Push the triple. */
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ins1(c, A_PUSHQ, areg(D_CX)); /* cap */
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ins1(c, A_PUSHQ, areg(D_BX)); /* len */
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ins1(c, A_PUSHQ, areg(D_AX)); /* ptr — top */
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} else if (node_istaggedarg(args[i])) {
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/* Tagged-return ABI: AX=tag, DX=val0,
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* CX=val1, R8=val2. Push high-to-low so pop
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@@ -3391,6 +3458,22 @@ cgexpr(Cg *c, Node *n, Local *locals)
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int op = to_f32 ? A_CVTSD2SS : A_CVTSS2SD;
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ins2(c, op, areg(D_X0), areg(D_X0));
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}
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/* str → []u8 (or any []T): cgexpr left (AX=ptr, BX=len).
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* Slice register convention is (AX=ptr, BX=len, CX=cap);
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* synthesise cap = len so downstream arg-push / let-init
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* paths see the canonical triple. Without this, the cap
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* register stays whatever cgexpr happened to leave there
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* and the receiver reads a stale value. */
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{
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Type *tt = n->type;
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Type *tu = (tt && tt->kind == TY_NAMED) ? tt->under : tt;
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Type *ft = n->lhs ? n->lhs->type : NULL;
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Type *fu = (ft && ft->kind == TY_NAMED) ? ft->under : ft;
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if (tu && tu->kind == TY_SLICE
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&& fu && fu->kind == TY_STR) {
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ins2(c, A_MOVQ, areg(D_BX), areg(D_CX));
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}
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}
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break;
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}
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case N_DOT: {
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@@ -3748,13 +3831,16 @@ cgexpr(Cg *c, Node *n, Local *locals)
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}
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case N_INDEX: {
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/* Scaled indexing for slice/array/str/ptr-to-T.
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* Element size is 1 for u8/str, otherwise type's natural size. */
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* Element size is 1 for u8/str, otherwise type's natural size.
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* For `*[N]T` drill through to the array so esz/esub reflect
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* T, not sizeof(array). */
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Type *bt = n->lhs ? n->lhs->type : NULL;
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Type *u = (bt && bt->kind == TY_NAMED) ? bt->under : bt;
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Type *eff = idx_eff(bt);
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int esz = 1;
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if (u && u->sub) esz = (int)u->sub->size;
|
||||
if (eff && eff->sub) esz = (int)eff->sub->size;
|
||||
if (u && u->kind == TY_STR) esz = 1;
|
||||
Type *esub = u ? u->sub : NULL;
|
||||
Type *esub = eff ? eff->sub : NULL;
|
||||
Type *esubu = (esub && esub->kind == TY_NAMED)
|
||||
? esub->under : esub;
|
||||
int elem_tagged = esubu && esubu->kind == TY_TAGGED;
|
||||
@@ -3811,11 +3897,12 @@ cgexpr(Cg *c, Node *n, Local *locals)
|
||||
ins2(c, A_MOVQ, amem(D_BX, 0), areg(D_AX));
|
||||
break;
|
||||
}
|
||||
int signed_elem = u && u->sub && (
|
||||
u->sub->kind == TY_I8 || u->sub->kind == TY_I16 ||
|
||||
u->sub->kind == TY_I32);
|
||||
int signed_elem = esub && (
|
||||
esub->kind == TY_I8 || esub->kind == TY_I16 ||
|
||||
esub->kind == TY_I32);
|
||||
int load_op = A_MOVQ;
|
||||
if (esz == 1) load_op = A_MOVZBQ;
|
||||
else if (esz == 2) load_op = signed_elem ? A_MOVSWQ : A_MOVZWQ;
|
||||
else if (esz == 4) load_op = signed_elem ? A_MOVSXD : A_MOVL;
|
||||
ins2(c, load_op, amem(D_BX, 0), areg(D_AX));
|
||||
break;
|
||||
@@ -3858,11 +3945,12 @@ cgexpr(Cg *c, Node *n, Local *locals)
|
||||
break;
|
||||
}
|
||||
{
|
||||
int signed_elem = u && u->sub && (
|
||||
u->sub->kind == TY_I8 || u->sub->kind == TY_I16 ||
|
||||
u->sub->kind == TY_I32);
|
||||
int signed_elem = esub && (
|
||||
esub->kind == TY_I8 || esub->kind == TY_I16 ||
|
||||
esub->kind == TY_I32);
|
||||
int load_op = A_MOVQ;
|
||||
if (esz == 1) load_op = A_MOVZBQ;
|
||||
else if (esz == 2) load_op = signed_elem ? A_MOVSWQ : A_MOVZWQ;
|
||||
else if (esz == 4)
|
||||
load_op = signed_elem ? A_MOVSXD : A_MOVL;
|
||||
ins2(c, load_op, amem(D_AX, 0), areg(D_AX));
|
||||
@@ -3884,7 +3972,14 @@ cgexpr(Cg *c, Node *n, Local *locals)
|
||||
Type *bu = (bt && bt->kind == TY_NAMED) ? bt->under : bt;
|
||||
if (base && base->kind == N_IDENT) {
|
||||
int boff = localfind(locals, base->str);
|
||||
if (bu && bu->kind == TY_ARRAY) {
|
||||
int isglobal = (boff == 0) && let_islet(base->str);
|
||||
if (isglobal && bu && bu->kind == TY_ARRAY) {
|
||||
ins2(c, A_LEAQ, masym(c, base->str),
|
||||
areg(D_AX));
|
||||
} else if (isglobal) {
|
||||
ins2(c, A_MOVQ, masym(c, base->str),
|
||||
areg(D_AX));
|
||||
} else if (bu && bu->kind == TY_ARRAY) {
|
||||
ins2(c, A_LEAQ, amem(D_BP, boff), areg(D_AX));
|
||||
} else {
|
||||
ins2(c, A_MOVQ, amem(D_BP, boff), areg(D_AX));
|
||||
@@ -3903,7 +3998,15 @@ cgexpr(Cg *c, Node *n, Local *locals)
|
||||
} else if (base && base->kind == N_IDENT && bu &&
|
||||
(bu->kind == TY_SLICE || bu->kind == TY_STR)) {
|
||||
int boff = localfind(locals, base->str);
|
||||
ins2(c, A_MOVQ, amem(D_BP, boff + 8), areg(D_AX));
|
||||
int isglobal = (boff == 0) && let_islet(base->str);
|
||||
if (isglobal) {
|
||||
ins2(c, A_LEAQ, masym(c, base->str),
|
||||
areg(D_CX));
|
||||
ins2(c, A_MOVQ, amem(D_CX, 8), areg(D_AX));
|
||||
} else {
|
||||
ins2(c, A_MOVQ, amem(D_BP, boff + 8),
|
||||
areg(D_AX));
|
||||
}
|
||||
} else {
|
||||
cgexpr_int(c, 0);
|
||||
}
|
||||
@@ -4933,7 +5036,7 @@ emit_lets(Cg *c, FILE *out, Node *file)
|
||||
fputs("\"\n", out);
|
||||
continue;
|
||||
}
|
||||
if (sz == 8) {
|
||||
if (sz == 8 && !let_isarray(d->type)) {
|
||||
u64 v = 0;
|
||||
if (d->rhs != NULL) {
|
||||
Node *r = d->rhs;
|
||||
@@ -4974,9 +5077,67 @@ emit_lets(Cg *c, FILE *out, Node *file)
|
||||
fprintf(out, "DATAR %s+0(SB),%s(SB)\n", sym, lab);
|
||||
continue;
|
||||
}
|
||||
/* Array literal init: `let xs: [N]T = [v0, v1, ...];`. Walk
|
||||
* elements in declaration order; each must reduce to an
|
||||
* integer literal (casts are stripped). The trailing `...`
|
||||
* repeat marker fills remaining slots with the last value.
|
||||
* Falls through to zero-init if any element isn't a
|
||||
* constant we can evaluate at emit time. */
|
||||
if (r != NULL && r->kind == N_ARRLIT && let_isarray(d->type)) {
|
||||
Type *u = type_unwrap(d->type);
|
||||
int esz = (u && u->sub) ? (int)u->sub->size : 1;
|
||||
int alen = (u) ? (int)u->alen : 0;
|
||||
u64 *vals = amalloc(c->a, sizeof(u64) * (size_t)alen);
|
||||
int idx = 0;
|
||||
int ok = 1;
|
||||
u64 last = 0;
|
||||
int repeat = 0;
|
||||
for (Node *e = r->list; e && idx < alen; e = e->next) {
|
||||
if (e->kind == N_FIELD && e->str &&
|
||||
strcmp(e->str, "...") == 0) {
|
||||
repeat = 1;
|
||||
break;
|
||||
}
|
||||
Node *ev = e;
|
||||
while (ev && ev->kind == N_CAST) ev = ev->lhs;
|
||||
if (ev == NULL) { ok = 0; break; }
|
||||
if (ev->kind == N_INTLIT || ev->kind == N_RUNELIT) {
|
||||
last = ev->uval;
|
||||
} else if (ev->kind == N_TRUE) {
|
||||
last = 1;
|
||||
} else if (ev->kind == N_FALSE) {
|
||||
last = 0;
|
||||
} else if (ev->kind == N_NIL) {
|
||||
last = 0;
|
||||
} else {
|
||||
ok = 0;
|
||||
break;
|
||||
}
|
||||
vals[idx++] = last;
|
||||
}
|
||||
if (ok) {
|
||||
if (repeat) {
|
||||
while (idx < alen) vals[idx++] = last;
|
||||
} else {
|
||||
while (idx < alen) vals[idx++] = 0;
|
||||
}
|
||||
fprintf(out, "DATAW %s(SB),\"",
|
||||
mod_mangle(c, d->str));
|
||||
for (int i = 0; i < alen; i++) {
|
||||
u64 v = vals[i];
|
||||
for (int b = 0; b < esz; b++) {
|
||||
emit_data_byte(out,
|
||||
(u8)((v >> (b * 8)) & 0xff));
|
||||
}
|
||||
}
|
||||
fputs("\"\n", out);
|
||||
continue;
|
||||
}
|
||||
/* fall through to zero-init */
|
||||
}
|
||||
/* Otherwise: zero-init. str accepts nil / ""; struct
|
||||
* accepts no rhs at all; slice accepts nil; array accepts
|
||||
* no rhs (literal-array init isn't wired). */
|
||||
* accepts no rhs at all; slice accepts nil; array with no
|
||||
* literal init (or a non-constant one) zero-fills. */
|
||||
if (r != NULL) {
|
||||
int is_struct = let_isstruct(d->type);
|
||||
int is_array = let_isarray(d->type);
|
||||
|
||||
@@ -31,9 +31,12 @@ anames(int op)
|
||||
case A_END: return "END";
|
||||
case A_MOVQ: return "MOVQ";
|
||||
case A_MOVL: return "MOVL";
|
||||
case A_MOVW: return "MOVW";
|
||||
case A_MOVB: return "MOVB";
|
||||
case A_MOVZBQ: return "MOVZBQ";
|
||||
case A_MOVZWQ: return "MOVZWQ";
|
||||
case A_MOVSXD: return "MOVSXD";
|
||||
case A_MOVSWQ: return "MOVSWQ";
|
||||
case A_MOVSD: return "MOVSD";
|
||||
case A_ADDSD: return "ADDSD";
|
||||
case A_SUBSD: return "SUBSD";
|
||||
|
||||
20
lib/hash/adler32/adler32.ww
Normal file
20
lib/hash/adler32/adler32.ww
Normal file
@@ -0,0 +1,20 @@
|
||||
// hash/adler32 — Adler-32 checksum (RFC 1950). Pure ww.
|
||||
//
|
||||
// Hare ships a hash::hash-shaped streaming type backed by io::stream;
|
||||
// we ship the pure-buffer subset here, same shape as lib/hash/fnv.
|
||||
// `sum32(buf)` matches Hare's adler32::sum32 contract for a single
|
||||
// write-then-sum: a = 1, b = 0, fold each byte, return b<<16 | a.
|
||||
|
||||
def MOD: u32 = 65521u32;
|
||||
|
||||
export fn sum32(buf: []u8) u32 = {
|
||||
let a: u32 = 1u32;
|
||||
let b: u32 = 0u32;
|
||||
let i: i32 = 0;
|
||||
for (i < buf.len) {
|
||||
a = (a + (buf[i]: u32)) % MOD;
|
||||
b = (b + a) % MOD;
|
||||
i += 1;
|
||||
};
|
||||
return (b << 16u32) | a;
|
||||
};
|
||||
52
lib/hash/adler32/adler32_test.ww
Normal file
52
lib/hash/adler32/adler32_test.ww
Normal file
@@ -0,0 +1,52 @@
|
||||
use adler32;
|
||||
|
||||
fn putstr(s: str, into: []u8, off: i32) i32 = {
|
||||
let i: i32 = 0;
|
||||
for (i < s.len) {
|
||||
into[off + i] = s[i];
|
||||
i += 1;
|
||||
};
|
||||
return off + s.len;
|
||||
};
|
||||
|
||||
fn check(s: str, want: u32) void = {
|
||||
let arr: [256]u8;
|
||||
let n: i32 = putstr(s, arr[0:256], 0);
|
||||
let buf: []u8 = arr[0:n];
|
||||
let got: u32 = adler32.sum32(buf);
|
||||
if (got != want) { let _: i32 = 1/0; };
|
||||
};
|
||||
|
||||
@test fn vec_empty() void = {
|
||||
let arr: [1]u8;
|
||||
let buf: []u8 = arr[0:0];
|
||||
let h: u32 = adler32.sum32(buf);
|
||||
if (h != 1u32) { let _: i32 = 1/0; };
|
||||
};
|
||||
|
||||
@test fn vec_helloworld() void = {
|
||||
check("hello world", 436929629u32);
|
||||
};
|
||||
|
||||
@test fn vec_hareiscool() void = {
|
||||
check("Hare is a cool language", 1578567727u32);
|
||||
};
|
||||
|
||||
@test fn vec_bdale() void = {
|
||||
check("'Life is too short to run proprietary software' - Bdale Garbee",
|
||||
3135706652u32);
|
||||
};
|
||||
|
||||
@test fn vec_geer() void = {
|
||||
check("'The central enemy of reliability is complexity.' - Geer et al",
|
||||
3170309588u32);
|
||||
};
|
||||
|
||||
export fn main() i32 = {
|
||||
vec_empty();
|
||||
vec_helloworld();
|
||||
vec_hareiscool();
|
||||
vec_bdale();
|
||||
vec_geer();
|
||||
return 0;
|
||||
};
|
||||
42
lib/hash/crc16/crc16.ww
Normal file
42
lib/hash/crc16/crc16.ww
Normal file
@@ -0,0 +1,42 @@
|
||||
// hash/crc16 — CRC-16 checksum. Pure ww.
|
||||
//
|
||||
// Inline polynomial-shift per byte (no precomputed tables). Slower
|
||||
// than a table-driven CRC by ~8x per byte but matches the
|
||||
// table-driven answer bit-for-bit.
|
||||
//
|
||||
// Polynomials are given in reversed form, matching Hare.
|
||||
|
||||
def CCITT: u16 = 0x8408u16; // X.25, Bluetooth, XMODEM
|
||||
def CMDA2000: u16 = 0xE613u16; // CDMA2000 infra
|
||||
def DECT: u16 = 0x91A0u16; // DECT cordless
|
||||
def ANSI: u16 = 0xA001u16; // Modbus, USB, ANSI X3.28
|
||||
|
||||
// sum16 — fold `buf` under `poly` and return ~cval. Initial value is
|
||||
// ~0u16, matching the streaming CRC-16 contract for a single
|
||||
// write-then-sum. Per byte: XOR low byte of cval with msg byte to form
|
||||
// an 8-bit index, run 8 polynomial shifts on that index, XOR the
|
||||
// result with the high byte of cval shifted down.
|
||||
export fn sum16(buf: []u8, poly: u16) u16 = {
|
||||
let c: u16 = 0xFFFFu16;
|
||||
let i: i32 = 0;
|
||||
for (i < buf.len) {
|
||||
let t: u16 = (c & 0xFFu16) ^ (buf[i]: u16);
|
||||
let z: i32 = 0;
|
||||
for (z < 8) {
|
||||
if ((t & 1u16) == 1u16) {
|
||||
t = (t >> 1u16) ^ poly;
|
||||
} else {
|
||||
t = t >> 1u16;
|
||||
};
|
||||
z += 1;
|
||||
};
|
||||
c = t ^ (c >> 8u16);
|
||||
i += 1;
|
||||
};
|
||||
return ~c;
|
||||
};
|
||||
|
||||
export fn sum16ccitt(buf: []u8) u16 = { return sum16(buf, CCITT); };
|
||||
export fn sum16cmda2000(buf: []u8) u16 = { return sum16(buf, CMDA2000); };
|
||||
export fn sum16dect(buf: []u8) u16 = { return sum16(buf, DECT); };
|
||||
export fn sum16ansi(buf: []u8) u16 = { return sum16(buf, ANSI); };
|
||||
58
lib/hash/crc16/crc16_test.ww
Normal file
58
lib/hash/crc16/crc16_test.ww
Normal file
@@ -0,0 +1,58 @@
|
||||
use crc16;
|
||||
|
||||
fn putstr(s: str, into: []u8, off: i32) i32 = {
|
||||
let i: i32 = 0;
|
||||
for (i < s.len) {
|
||||
into[off + i] = s[i];
|
||||
i += 1;
|
||||
};
|
||||
return off + s.len;
|
||||
};
|
||||
|
||||
fn check(s: str, ccitt: u16, cmda: u16, dect: u16, ansi: u16) void = {
|
||||
let arr: [256]u8;
|
||||
let n: i32 = putstr(s, arr[0:256], 0);
|
||||
let buf: []u8 = arr[0:n];
|
||||
if (crc16.sum16ccitt(buf) != ccitt) { let _: i32 = 1/0; };
|
||||
if (crc16.sum16cmda2000(buf) != cmda) { let _: i32 = 1/0; };
|
||||
if (crc16.sum16dect(buf) != dect) { let _: i32 = 1/0; };
|
||||
if (crc16.sum16ansi(buf) != ansi) { let _: i32 = 1/0; };
|
||||
};
|
||||
|
||||
@test fn vec_empty() void = {
|
||||
let arr: [1]u8;
|
||||
let buf: []u8 = arr[0:0];
|
||||
if (crc16.sum16ccitt(buf) != 0u16) { let _: i32 = 1/0; };
|
||||
if (crc16.sum16cmda2000(buf) != 0u16) { let _: i32 = 1/0; };
|
||||
if (crc16.sum16dect(buf) != 0u16) { let _: i32 = 1/0; };
|
||||
if (crc16.sum16ansi(buf) != 0u16) { let _: i32 = 1/0; };
|
||||
};
|
||||
|
||||
@test fn vec_truman() void = {
|
||||
check("Always be sincere, even if you don't mean it. -- Harry Truman",
|
||||
0x38DFu16, 0x2441u16, 0x8E44u16, 0xEF5Eu16);
|
||||
};
|
||||
|
||||
@test fn vec_animals() void = {
|
||||
check("You get along very well with everyone except animals and people.",
|
||||
0xB6AEu16, 0xFED0u16, 0x8739u16, 0xCF56u16);
|
||||
};
|
||||
|
||||
@test fn vec_twain() void = {
|
||||
check("All generalizations are false, including this one. -- Mark Twain",
|
||||
0xCA68u16, 0x65ECu16, 0x098Au16, 0x45B4u16);
|
||||
};
|
||||
|
||||
@test fn vec_peace() void = {
|
||||
check("I want peace and I'm willing to fight for it. -- Harry Truman",
|
||||
0xB0E8u16, 0xFE1Fu16, 0x4659u16, 0x5062u16);
|
||||
};
|
||||
|
||||
export fn main() i32 = {
|
||||
vec_empty();
|
||||
vec_truman();
|
||||
vec_animals();
|
||||
vec_twain();
|
||||
vec_peace();
|
||||
return 0;
|
||||
};
|
||||
36
lib/hash/crc32/crc32.ww
Normal file
36
lib/hash/crc32/crc32.ww
Normal file
@@ -0,0 +1,36 @@
|
||||
// hash/crc32 — CRC-32 checksum. Pure ww.
|
||||
//
|
||||
// Same shape as lib/hash/crc16: per-byte inline polynomial shift,
|
||||
// no precomputed table. Slower than Hare's table-driven path by ~8x
|
||||
// per byte but produces identical answers.
|
||||
|
||||
def IEEE: u32 = 0xEDB88320u32; // gzip, PNG, zip, Ethernet
|
||||
def CASTAGNOLI: u32 = 0x82F63B78u32; // iSCSI, SCTP, SSE4.2
|
||||
def KOOPMAN: u32 = 0xEB31D82Eu32; // small datasets
|
||||
|
||||
// sum32 — fold `buf` under `poly` (reversed form). Initial cval is
|
||||
// ~0u32; per byte we mix in the low byte via 8 polynomial shifts and
|
||||
// XOR with the high three bytes shifted down.
|
||||
export fn sum32(buf: []u8, poly: u32) u32 = {
|
||||
let c: u32 = 0xFFFFFFFFu32;
|
||||
let i: i32 = 0;
|
||||
for (i < buf.len) {
|
||||
let t: u32 = (c & 0xFFu32) ^ (buf[i]: u32);
|
||||
let z: i32 = 0;
|
||||
for (z < 8) {
|
||||
if ((t & 1u32) == 1u32) {
|
||||
t = (t >> 1u32) ^ poly;
|
||||
} else {
|
||||
t = t >> 1u32;
|
||||
};
|
||||
z += 1;
|
||||
};
|
||||
c = t ^ (c >> 8u32);
|
||||
i += 1;
|
||||
};
|
||||
return ~c;
|
||||
};
|
||||
|
||||
export fn sum32ieee(buf: []u8) u32 = { return sum32(buf, IEEE); };
|
||||
export fn sum32castagnoli(buf: []u8) u32 = { return sum32(buf, CASTAGNOLI); };
|
||||
export fn sum32koopman(buf: []u8) u32 = { return sum32(buf, KOOPMAN); };
|
||||
62
lib/hash/crc32/crc32_test.ww
Normal file
62
lib/hash/crc32/crc32_test.ww
Normal file
@@ -0,0 +1,62 @@
|
||||
use crc32;
|
||||
|
||||
fn putstr(s: str, into: []u8, off: i32) i32 = {
|
||||
let i: i32 = 0;
|
||||
for (i < s.len) {
|
||||
into[off + i] = s[i];
|
||||
i += 1;
|
||||
};
|
||||
return off + s.len;
|
||||
};
|
||||
|
||||
fn check(s: str, ieee: u32, cast: u32, koop: u32) void = {
|
||||
let arr: [128]u8;
|
||||
let n: i32 = putstr(s, arr[0:128], 0);
|
||||
let buf: []u8 = arr[0:n];
|
||||
if (crc32.sum32ieee(buf) != ieee) { let _: i32 = 1/0; };
|
||||
if (crc32.sum32castagnoli(buf) != cast) { let _: i32 = 1/0; };
|
||||
if (crc32.sum32koopman(buf) != koop) { let _: i32 = 1/0; };
|
||||
};
|
||||
|
||||
@test fn vec_empty() void = {
|
||||
let arr: [1]u8;
|
||||
let buf: []u8 = arr[0:0];
|
||||
if (crc32.sum32ieee(buf) != 0u32) { let _: i32 = 1/0; };
|
||||
if (crc32.sum32castagnoli(buf) != 0u32) { let _: i32 = 1/0; };
|
||||
if (crc32.sum32koopman(buf) != 0u32) { let _: i32 = 1/0; };
|
||||
};
|
||||
|
||||
@test fn vec_fire() void = {
|
||||
check("Give a man a fire, they be warm for a day",
|
||||
4026734998u32, 2112273292u32, 1263149916u32);
|
||||
};
|
||||
|
||||
@test fn vec_setfire() void = {
|
||||
check("Set a man on fire, they be warm for the rest of their life",
|
||||
3931092334u32, 4172943610u32, 3071632577u32);
|
||||
};
|
||||
|
||||
@test fn vec_blm() void = {
|
||||
check("Black lives matter",
|
||||
2370964079u32, 2068416418u32, 4151357773u32);
|
||||
};
|
||||
|
||||
@test fn vec_unix() void = {
|
||||
check("UNIX is simple and coherent",
|
||||
3254252081u32, 1650777601u32, 340189632u32);
|
||||
};
|
||||
|
||||
@test fn vec_gnu() void = {
|
||||
check("GNU's not UNIX",
|
||||
224734747u32, 200511816u32, 332335539u32);
|
||||
};
|
||||
|
||||
export fn main() i32 = {
|
||||
vec_empty();
|
||||
vec_fire();
|
||||
vec_setfire();
|
||||
vec_blm();
|
||||
vec_unix();
|
||||
vec_gnu();
|
||||
return 0;
|
||||
};
|
||||
@@ -443,6 +443,62 @@ export fn encode(a: *asm_) i32 = {
|
||||
p = p.link; continue;
|
||||
};
|
||||
|
||||
if (op == A_MOVW) {
|
||||
// 16-bit MOV: 0x66 operand-size prefix + the 32-bit
|
||||
// MOV opcodes 0x89 / 0x8B. No REX.W.
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
if (isgpr(ft)) { if (tt == D_INDIR) {
|
||||
emitbyte(a, 102u8); // 0x66
|
||||
emitrex(a, rhi(ft), rhi(p.to.reg), 0);
|
||||
emitbyte(a, 137u8); // 0x89
|
||||
emitmodrmmem(a, rcode(ft), p.to.reg, p.to.offset);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
if (ft == D_INDIR) { if (isgpr(tt)) {
|
||||
emitbyte(a, 102u8); // 0x66
|
||||
emitrex(a, rhi(tt), rhi(p.from.reg), 0);
|
||||
emitbyte(a, 139u8); // 0x8B
|
||||
emitmodrmmem(a, rcode(tt), p.from.reg, p.from.offset);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
os.write(2, "w6a: unsupported MOVW shape\n".ptr, 27u64);
|
||||
a.errs += 1;
|
||||
p = p.link; continue;
|
||||
};
|
||||
|
||||
if (op == A_MOVZWQ) {
|
||||
// MOVZX r64, r/m16 — 0F B7 /r with REX.W.
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
if (ft == D_INDIR) { if (isgpr(tt)) {
|
||||
emitrex(a, rhi(tt), rhi(p.from.reg), 1);
|
||||
emitbyte(a, 15u8);
|
||||
emitbyte(a, 183u8); // 0xB7
|
||||
emitmodrmmem(a, rcode(tt), p.from.reg, p.from.offset);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
os.write(2, "w6a: unsupported MOVZWQ shape\n".ptr, 29u64);
|
||||
a.errs += 1;
|
||||
p = p.link; continue;
|
||||
};
|
||||
|
||||
if (op == A_MOVSWQ) {
|
||||
// MOVSX r64, r/m16 — 0F BF /r with REX.W.
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
if (ft == D_INDIR) { if (isgpr(tt)) {
|
||||
emitrex(a, rhi(tt), rhi(p.from.reg), 1);
|
||||
emitbyte(a, 15u8);
|
||||
emitbyte(a, 191u8); // 0xBF
|
||||
emitmodrmmem(a, rcode(tt), p.from.reg, p.from.offset);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
os.write(2, "w6a: unsupported MOVSWQ shape\n".ptr, 29u64);
|
||||
a.errs += 1;
|
||||
p = p.link; continue;
|
||||
};
|
||||
|
||||
if (op == A_MOVZBQ) {
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
@@ -607,8 +663,30 @@ export fn encode(a: *asm_) i32 = {
|
||||
p = p.link; continue;
|
||||
};
|
||||
|
||||
if (op == A_ANDQ) { encoderr(a, 33u8, p.from.atype, p.to.atype); p = p.link; continue; }; // 0x21
|
||||
if (op == A_ORQ) { encoderr(a, 9u8, p.from.atype, p.to.atype); p = p.link; continue; }; // 0x09
|
||||
if (op == A_ANDQ) {
|
||||
// AND r/m64, imm32 — 0x81 /4 (REX.W). Without the
|
||||
// D_CONST path encoderr would silently emit 0x21
|
||||
// with garbage reg fields.
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
if (ft == D_CONST) { if (isgpr(tt)) {
|
||||
encoderiimm32(a, 129u8, 4, tt, p.from.offset: i32);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
encoderr(a, 33u8, ft, tt); // 0x21
|
||||
p = p.link; continue;
|
||||
};
|
||||
if (op == A_ORQ) {
|
||||
// OR r/m64, imm32 — 0x81 /1 (REX.W). Mirrors ANDQ.
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
if (ft == D_CONST) { if (isgpr(tt)) {
|
||||
encoderiimm32(a, 129u8, 1, tt, p.from.offset: i32);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
encoderr(a, 9u8, ft, tt); // 0x09
|
||||
p = p.link; continue;
|
||||
};
|
||||
if (op == A_XORQ) {
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
|
||||
@@ -402,6 +402,9 @@ def A_MOVL: i32 = 6;
|
||||
def A_MOVB: i32 = 7;
|
||||
def A_MOVZBQ: i32 = 8;
|
||||
def A_MOVSXD: i32 = 9;
|
||||
def A_MOVW: i32 = 62;
|
||||
def A_MOVZWQ: i32 = 63;
|
||||
def A_MOVSWQ: i32 = 64;
|
||||
|
||||
def A_MOVSD: i32 = 10;
|
||||
def A_ADDSD: i32 = 11;
|
||||
@@ -648,9 +651,12 @@ fn streqlit(p: *u8, n: u64, lit: str) bool = {
|
||||
fn opcodelookup(p: *u8, n: u64) i32 = {
|
||||
if (streqlit(p, n, "MOVQ")) { return A_MOVQ; };
|
||||
if (streqlit(p, n, "MOVL")) { return A_MOVL; };
|
||||
if (streqlit(p, n, "MOVW")) { return A_MOVW; };
|
||||
if (streqlit(p, n, "MOVB")) { return A_MOVB; };
|
||||
if (streqlit(p, n, "MOVZBQ")) { return A_MOVZBQ; };
|
||||
if (streqlit(p, n, "MOVZWQ")) { return A_MOVZWQ; };
|
||||
if (streqlit(p, n, "MOVSXD")) { return A_MOVSXD; };
|
||||
if (streqlit(p, n, "MOVSWQ")) { return A_MOVSWQ; };
|
||||
if (streqlit(p, n, "MOVSD")) { return A_MOVSD; };
|
||||
if (streqlit(p, n, "ADDSD")) { return A_ADDSD; };
|
||||
if (streqlit(p, n, "SUBSD")) { return A_SUBSD; };
|
||||
@@ -1647,6 +1653,62 @@ export fn encode(a: *asm_) i32 = {
|
||||
p = p.link; continue;
|
||||
};
|
||||
|
||||
if (op == A_MOVW) {
|
||||
// 16-bit MOV: 0x66 operand-size prefix + the 32-bit
|
||||
// MOV opcodes 0x89 / 0x8B. No REX.W.
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
if (isgpr(ft)) { if (tt == D_INDIR) {
|
||||
emitbyte(a, 102u8); // 0x66
|
||||
emitrex(a, rhi(ft), rhi(p.to.reg), 0);
|
||||
emitbyte(a, 137u8); // 0x89
|
||||
emitmodrmmem(a, rcode(ft), p.to.reg, p.to.offset);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
if (ft == D_INDIR) { if (isgpr(tt)) {
|
||||
emitbyte(a, 102u8); // 0x66
|
||||
emitrex(a, rhi(tt), rhi(p.from.reg), 0);
|
||||
emitbyte(a, 139u8); // 0x8B
|
||||
emitmodrmmem(a, rcode(tt), p.from.reg, p.from.offset);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
os.write(2, "w6a: unsupported MOVW shape\n".ptr, 27u64);
|
||||
a.errs += 1;
|
||||
p = p.link; continue;
|
||||
};
|
||||
|
||||
if (op == A_MOVZWQ) {
|
||||
// MOVZX r64, r/m16 — 0F B7 /r with REX.W.
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
if (ft == D_INDIR) { if (isgpr(tt)) {
|
||||
emitrex(a, rhi(tt), rhi(p.from.reg), 1);
|
||||
emitbyte(a, 15u8);
|
||||
emitbyte(a, 183u8); // 0xB7
|
||||
emitmodrmmem(a, rcode(tt), p.from.reg, p.from.offset);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
os.write(2, "w6a: unsupported MOVZWQ shape\n".ptr, 29u64);
|
||||
a.errs += 1;
|
||||
p = p.link; continue;
|
||||
};
|
||||
|
||||
if (op == A_MOVSWQ) {
|
||||
// MOVSX r64, r/m16 — 0F BF /r with REX.W.
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
if (ft == D_INDIR) { if (isgpr(tt)) {
|
||||
emitrex(a, rhi(tt), rhi(p.from.reg), 1);
|
||||
emitbyte(a, 15u8);
|
||||
emitbyte(a, 191u8); // 0xBF
|
||||
emitmodrmmem(a, rcode(tt), p.from.reg, p.from.offset);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
os.write(2, "w6a: unsupported MOVSWQ shape\n".ptr, 29u64);
|
||||
a.errs += 1;
|
||||
p = p.link; continue;
|
||||
};
|
||||
|
||||
if (op == A_MOVZBQ) {
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
@@ -1811,8 +1873,30 @@ export fn encode(a: *asm_) i32 = {
|
||||
p = p.link; continue;
|
||||
};
|
||||
|
||||
if (op == A_ANDQ) { encoderr(a, 33u8, p.from.atype, p.to.atype); p = p.link; continue; }; // 0x21
|
||||
if (op == A_ORQ) { encoderr(a, 9u8, p.from.atype, p.to.atype); p = p.link; continue; }; // 0x09
|
||||
if (op == A_ANDQ) {
|
||||
// AND r/m64, imm32 — 0x81 /4 (REX.W). Without the
|
||||
// D_CONST path encoderr would silently emit 0x21
|
||||
// with garbage reg fields.
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
if (ft == D_CONST) { if (isgpr(tt)) {
|
||||
encoderiimm32(a, 129u8, 4, tt, p.from.offset: i32);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
encoderr(a, 33u8, ft, tt); // 0x21
|
||||
p = p.link; continue;
|
||||
};
|
||||
if (op == A_ORQ) {
|
||||
// OR r/m64, imm32 — 0x81 /1 (REX.W). Mirrors ANDQ.
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
if (ft == D_CONST) { if (isgpr(tt)) {
|
||||
encoderiimm32(a, 129u8, 1, tt, p.from.offset: i32);
|
||||
p = p.link; continue;
|
||||
};};
|
||||
encoderr(a, 9u8, ft, tt); // 0x09
|
||||
p = p.link; continue;
|
||||
};
|
||||
if (op == A_XORQ) {
|
||||
let ft: i32 = p.from.atype;
|
||||
let tt: i32 = p.to.atype;
|
||||
|
||||
@@ -31,9 +31,12 @@ fn streqlit(p: *u8, n: u64, lit: str) bool = {
|
||||
fn opcodelookup(p: *u8, n: u64) i32 = {
|
||||
if (streqlit(p, n, "MOVQ")) { return A_MOVQ; };
|
||||
if (streqlit(p, n, "MOVL")) { return A_MOVL; };
|
||||
if (streqlit(p, n, "MOVW")) { return A_MOVW; };
|
||||
if (streqlit(p, n, "MOVB")) { return A_MOVB; };
|
||||
if (streqlit(p, n, "MOVZBQ")) { return A_MOVZBQ; };
|
||||
if (streqlit(p, n, "MOVZWQ")) { return A_MOVZWQ; };
|
||||
if (streqlit(p, n, "MOVSXD")) { return A_MOVSXD; };
|
||||
if (streqlit(p, n, "MOVSWQ")) { return A_MOVSWQ; };
|
||||
if (streqlit(p, n, "MOVSD")) { return A_MOVSD; };
|
||||
if (streqlit(p, n, "ADDSD")) { return A_ADDSD; };
|
||||
if (streqlit(p, n, "SUBSD")) { return A_SUBSD; };
|
||||
|
||||
@@ -64,6 +64,9 @@ def A_MOVL: i32 = 6;
|
||||
def A_MOVB: i32 = 7;
|
||||
def A_MOVZBQ: i32 = 8;
|
||||
def A_MOVSXD: i32 = 9;
|
||||
def A_MOVW: i32 = 62;
|
||||
def A_MOVZWQ: i32 = 63;
|
||||
def A_MOVSWQ: i32 = 64;
|
||||
|
||||
def A_MOVSD: i32 = 10;
|
||||
def A_ADDSD: i32 = 11;
|
||||
|
||||
@@ -5789,10 +5789,20 @@ fn pushargsrev(c: *cgen, arg: *node, param: *node) i32 = {
|
||||
let lo: *node = arg.rhs;
|
||||
let hi: *node = arg.cond;
|
||||
let baselocal: *local = nil;
|
||||
let globaltn: *node = nil;
|
||||
let globalname: str;
|
||||
globalname.ptr = nil; globalname.len = 0;
|
||||
if (base != nil) {
|
||||
if (base.kind == nkind.N_IDENT) {
|
||||
let bn: str = base.str;
|
||||
baselocal = localfindnode(c, bn);
|
||||
if (baselocal == nil) {
|
||||
let gt: *node = letvartnode(c, bn);
|
||||
if (gt != nil) {
|
||||
globaltn = gt;
|
||||
globalname = bn;
|
||||
};
|
||||
};
|
||||
};
|
||||
};
|
||||
// base address → push
|
||||
@@ -5813,9 +5823,19 @@ fn pushargsrev(c: *cgen, arg: *node, param: *node) i32 = {
|
||||
emitoff(baselocal.off: i64);
|
||||
emitline("(BP), AX\n");
|
||||
};
|
||||
} else { if (globaltn != nil) {
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
} else {
|
||||
emitline("\tMOVQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
};
|
||||
} else {
|
||||
cgexpr(c, base);
|
||||
};
|
||||
};};
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
// hi (default base length) → push
|
||||
if (hi != nil) {
|
||||
@@ -5844,9 +5864,25 @@ fn pushargsrev(c: *cgen, arg: *node, param: *node) i32 = {
|
||||
};
|
||||
};};};
|
||||
};
|
||||
} else { if (globaltn != nil) {
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
let lenn: *node = globaltn.rhs;
|
||||
if (lenn != nil) {
|
||||
if (lenn.kind == nkind.N_INTLIT) {
|
||||
emitline("\tMOVQ\t$");
|
||||
emituint(lenn.uval);
|
||||
emitline(", AX\n");
|
||||
};
|
||||
};
|
||||
} else { if (globaltn.kind == nkind.N_TSLICE) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), CX\n");
|
||||
emitline("\tMOVQ\t8(CX), AX\n");
|
||||
};};
|
||||
} else {
|
||||
emitline("\tMOVQ\t$0, AX\n");
|
||||
};};
|
||||
};};};
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
// lo (default 0) → AX
|
||||
if (lo != nil) { cgexpr(c, lo); }
|
||||
@@ -5930,6 +5966,7 @@ fn nodeisslice(c: *cgen, n: *node) bool = {
|
||||
return false;
|
||||
};
|
||||
if (k == nkind.N_SLICE) { return true; };
|
||||
if (k == nkind.N_CAST) { return isslicetype(c, n.rhs); };
|
||||
return false;
|
||||
};
|
||||
|
||||
@@ -6287,6 +6324,11 @@ fn elemsizeof(t: *node) i32 = {
|
||||
return 1;
|
||||
};
|
||||
if (elem == nil) { return 1; };
|
||||
// `*[N]T`: drill through the pointer into the array's element so
|
||||
// indexing scales by T's width, not the whole-array byte size.
|
||||
if (elem.kind == nkind.N_TARRAY) {
|
||||
if (elem.lhs != nil) { elem = elem.lhs; };
|
||||
};
|
||||
if (elem.kind == nkind.N_TNAME) {
|
||||
let nm: str = elem.str;
|
||||
// str element is 16B (ptr+len). primsize returns 0 for it.
|
||||
@@ -6409,6 +6451,35 @@ fn nodeisunsigned(c: *cgen, n: *node) bool = {
|
||||
};
|
||||
return false;
|
||||
};
|
||||
|
||||
// nodeprimwidth — primitive byte width of an expression, or 0 if not
|
||||
// statically determinable. Mirrors nodeisunsigned's structural walk.
|
||||
// Used by cgun TK_TILDE to clamp narrow unsigned ~ results to type
|
||||
// width (NOTQ inverts the full 64-bit register).
|
||||
fn nodeprimwidth(c: *cgen, n: *node) i32 = {
|
||||
if (n == nil) { return 0; };
|
||||
let k: nkind = n.kind;
|
||||
if (k == nkind.N_IDENT) {
|
||||
let lc: *local = localfindnode(c, n.str);
|
||||
if (lc != nil) {
|
||||
let tn: *node = lc.tnode;
|
||||
if (tn != nil) {
|
||||
if (tn.kind == nkind.N_TNAME) { return primsize(tn.str); };
|
||||
};
|
||||
};
|
||||
return 0;
|
||||
};
|
||||
if (k == nkind.N_CAST) {
|
||||
let tn: *node = n.rhs;
|
||||
if (tn != nil) {
|
||||
if (tn.kind == nkind.N_TNAME) { return primsize(tn.str); };
|
||||
};
|
||||
return 0;
|
||||
};
|
||||
if (k == nkind.N_UN) { return nodeprimwidth(c, n.lhs); };
|
||||
return 0;
|
||||
};
|
||||
|
||||
// ---- type-driven slot sizing ----------------------------------------
|
||||
|
||||
fn structlookup(c: *cgen, name: str) *structinfo = {
|
||||
@@ -8051,6 +8122,23 @@ fn cgcast(c: *cgen, n: *node) void = {
|
||||
if (dstf32) { dstfk = 1; }
|
||||
else { if (dstf64) { dstfk = 2; }; };
|
||||
cgexpr(c, n.lhs);
|
||||
// str → []T: cgexpr left (AX=ptr, BX=len). Slice register
|
||||
// convention is (AX=ptr, BX=len, CX=cap); synthesise cap = len
|
||||
// so downstream arg-push / let-init paths see the canonical
|
||||
// triple. Detect via dst-is-slice + src-ident's local-tnode
|
||||
// being str (the common shape; non-ident sources rare).
|
||||
if (isslicetype(c, n.rhs)) {
|
||||
let srcstr: bool = false;
|
||||
if (n.lhs != nil) {
|
||||
if (n.lhs.kind == nkind.N_IDENT) {
|
||||
let lc: *local = localfindnode(c, n.lhs.str);
|
||||
if (lc != nil) {
|
||||
if (isstrtype(c, lc.tnode)) { srcstr = true; };
|
||||
};
|
||||
};
|
||||
};
|
||||
if (srcstr) { emitline("\tMOVQ\tBX, CX\n"); };
|
||||
};
|
||||
// 0=int, 1=f32, 2=f64. CVT picks one direction per combo;
|
||||
// same-kind casts (int↔int with widening differences,
|
||||
// f64→f64 etc.) stay no-ops at the asm level, matching the
|
||||
@@ -8326,11 +8414,15 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVZBQ\t(BX), AX\n"); }
|
||||
else { if (esz == 2) {
|
||||
if (signed_elem) { emitline("\tMOVSWQ\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVZWQ\t(BX), AX\n"); };
|
||||
}
|
||||
else { if (esz == 4) {
|
||||
if (signed_elem) { emitline("\tMOVSXD\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVL\t(BX), AX\n"); };
|
||||
}
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};};
|
||||
return;
|
||||
};
|
||||
if (baselocal != nil) {
|
||||
@@ -8369,11 +8461,15 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVZBQ\t(BX), AX\n"); }
|
||||
else { if (esz == 2) {
|
||||
if (signed_elem) { emitline("\tMOVSWQ\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVZWQ\t(BX), AX\n"); };
|
||||
}
|
||||
else { if (esz == 4) {
|
||||
if (signed_elem) { emitline("\tMOVSXD\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVL\t(BX), AX\n"); };
|
||||
}
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};};
|
||||
return;
|
||||
};
|
||||
// Generic fallback when base isn't a plain ident.
|
||||
@@ -8400,11 +8496,15 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVZBQ\t(AX), AX\n"); }
|
||||
else { if (esz == 2) {
|
||||
if (signed_elem) { emitline("\tMOVSWQ\t(AX), AX\n"); }
|
||||
else { emitline("\tMOVZWQ\t(AX), AX\n"); };
|
||||
}
|
||||
else { if (esz == 4) {
|
||||
if (signed_elem) { emitline("\tMOVSXD\t(AX), AX\n"); }
|
||||
else { emitline("\tMOVL\t(AX), AX\n"); };
|
||||
}
|
||||
else { emitline("\tMOVQ\t(AX), AX\n"); };};
|
||||
else { emitline("\tMOVQ\t(AX), AX\n"); };};};
|
||||
return;
|
||||
};
|
||||
|
||||
@@ -8418,9 +8518,19 @@ fn cgslice(c: *cgen, n: *node) void = {
|
||||
let lo: *node = n.rhs;
|
||||
let hi: *node = n.cond;
|
||||
let baselocal: *local = nil;
|
||||
let globaltn: *node = nil;
|
||||
let globalname: str;
|
||||
globalname.ptr = nil; globalname.len = 0;
|
||||
if (base != nil) {
|
||||
if (base.kind == nkind.N_IDENT) {
|
||||
baselocal = localfindnode(c, base.str);
|
||||
if (baselocal == nil) {
|
||||
let gt: *node = letvartnode(c, base.str);
|
||||
if (gt != nil) {
|
||||
globaltn = gt;
|
||||
globalname = base.str;
|
||||
};
|
||||
};
|
||||
};
|
||||
};
|
||||
// base address
|
||||
@@ -8439,9 +8549,22 @@ fn cgslice(c: *cgen, n: *node) void = {
|
||||
emitoff(baselocal.off: i64);
|
||||
emitline("(BP), AX\n");
|
||||
};
|
||||
} else { if (globaltn != nil) {
|
||||
// Top-level let: [N]T → LEAQ name(SB); pointer/slice/str
|
||||
// → MOVQ name(SB) (the symbol holds the {ptr,len,cap} or
|
||||
// {ptr,len} or pointer value).
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
} else {
|
||||
emitline("\tMOVQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
};
|
||||
} else { if (base != nil) {
|
||||
cgexpr(c, base);
|
||||
};};
|
||||
};};};
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
// lo (default 0)
|
||||
if (lo != nil) { cgexpr(c, lo); }
|
||||
@@ -8479,9 +8602,29 @@ fn cgslice(c: *cgen, n: *node) void = {
|
||||
};};};
|
||||
};
|
||||
if (!handled) { emitline("\tMOVQ\t$0, AX\n"); };
|
||||
} else { if (globaltn != nil) {
|
||||
let handled: bool = false;
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
let lenn: *node = globaltn.rhs;
|
||||
if (lenn != nil) {
|
||||
if (lenn.kind == nkind.N_INTLIT) {
|
||||
emitline("\tMOVQ\t$");
|
||||
emituint(lenn.uval);
|
||||
emitline(", AX\n");
|
||||
handled = true;
|
||||
};
|
||||
};
|
||||
} else { if (globaltn.kind == nkind.N_TSLICE) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), CX\n");
|
||||
emitline("\tMOVQ\t8(CX), AX\n");
|
||||
handled = true;
|
||||
};};
|
||||
if (!handled) { emitline("\tMOVQ\t$0, AX\n"); };
|
||||
} else {
|
||||
emitline("\tMOVQ\t$0, AX\n");
|
||||
};};
|
||||
};};};
|
||||
emitline("\tMOVQ\tAX, BX\n");
|
||||
emitline("\tPOPQ\tCX\n");
|
||||
emitline("\tPOPQ\tAX\n");
|
||||
@@ -9439,7 +9582,21 @@ fn cgun(c: *cgen, n: *node) void = {
|
||||
};
|
||||
cgexpr(c, n.lhs);
|
||||
if (n.op == tkind.TK_MINUS) { emitline("\tNEGQ\tAX\n"); return; };
|
||||
if (n.op == tkind.TK_TILDE) { emitline("\tNOTQ\tAX\n"); return; };
|
||||
if (n.op == tkind.TK_TILDE) {
|
||||
emitline("\tNOTQ\tAX\n");
|
||||
// NOTQ inverts the whole 64-bit register; clamp narrow
|
||||
// unsigned results to type width so subsequent 64-bit
|
||||
// compares against typed literals agree. u32 uses MOVL r,r
|
||||
// (zero-extends upper 32) because ANDQ $0xFFFFFFFF would
|
||||
// sign-extend imm32 to all-ones and act as a no-op.
|
||||
if (nodeisunsigned(c, n.lhs)) {
|
||||
let w: i32 = nodeprimwidth(c, n.lhs);
|
||||
if (w == 1) { emitline("\tANDQ\t$255, AX\n"); };
|
||||
if (w == 2) { emitline("\tANDQ\t$65535, AX\n"); };
|
||||
if (w == 4) { emitline("\tMOVL\tAX, AX\n"); };
|
||||
};
|
||||
return;
|
||||
};
|
||||
if (n.op == tkind.TK_STAR) { emitline("\tMOVQ\t(AX), AX\n"); return; };
|
||||
if (n.op == tkind.TK_NOT) {
|
||||
let t: str = mklabel(c, "tt");
|
||||
@@ -10506,8 +10663,9 @@ fn cgassign(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVB\tAX, (BX)\n"); }
|
||||
else { if (esz == 2) { emitline("\tMOVW\tAX, (BX)\n"); }
|
||||
else { if (esz == 4) { emitline("\tMOVL\tAX, (BX)\n"); }
|
||||
else { emitline("\tMOVQ\tAX, (BX)\n"); };};
|
||||
else { emitline("\tMOVQ\tAX, (BX)\n"); };};};
|
||||
return;
|
||||
};
|
||||
};
|
||||
@@ -14085,7 +14243,16 @@ fn emitletdataw(c: *cgen, file: *node) void = {
|
||||
emitline("\"\n");
|
||||
};
|
||||
};
|
||||
if (sz == 8 && !issg && fsz == 0) {
|
||||
// Skip the scalar 8B path when the global is a
|
||||
// fixed-size array that just happens to sum to 8
|
||||
// bytes (e.g. [4]u16, [8]u8) — the array path
|
||||
// below handles it and the duplicate DATAW would
|
||||
// otherwise differ across stages on user code.
|
||||
let isarr8: bool = false;
|
||||
if (d.lhs != nil) {
|
||||
if (d.lhs.kind == nkind.N_TARRAY) { isarr8 = true; };
|
||||
};
|
||||
if (sz == 8 && !issg && fsz == 0 && !isarr8) {
|
||||
let v: u64 = 0u64;
|
||||
let ok: bool = true;
|
||||
if (d.rhs != nil) {
|
||||
|
||||
@@ -988,7 +988,16 @@ fn emitletdataw(c: *cgen, file: *node) void = {
|
||||
emitline("\"\n");
|
||||
};
|
||||
};
|
||||
if (sz == 8 && !issg && fsz == 0) {
|
||||
// Skip the scalar 8B path when the global is a
|
||||
// fixed-size array that just happens to sum to 8
|
||||
// bytes (e.g. [4]u16, [8]u8) — the array path
|
||||
// below handles it and the duplicate DATAW would
|
||||
// otherwise differ across stages on user code.
|
||||
let isarr8: bool = false;
|
||||
if (d.lhs != nil) {
|
||||
if (d.lhs.kind == nkind.N_TARRAY) { isarr8 = true; };
|
||||
};
|
||||
if (sz == 8 && !issg && fsz == 0 && !isarr8) {
|
||||
let v: u64 = 0u64;
|
||||
let ok: bool = true;
|
||||
if (d.rhs != nil) {
|
||||
|
||||
@@ -357,6 +357,23 @@ fn cgcast(c: *cgen, n: *node) void = {
|
||||
if (dstf32) { dstfk = 1; }
|
||||
else { if (dstf64) { dstfk = 2; }; };
|
||||
cgexpr(c, n.lhs);
|
||||
// str → []T: cgexpr left (AX=ptr, BX=len). Slice register
|
||||
// convention is (AX=ptr, BX=len, CX=cap); synthesise cap = len
|
||||
// so downstream arg-push / let-init paths see the canonical
|
||||
// triple. Detect via dst-is-slice + src-ident's local-tnode
|
||||
// being str (the common shape; non-ident sources rare).
|
||||
if (isslicetype(c, n.rhs)) {
|
||||
let srcstr: bool = false;
|
||||
if (n.lhs != nil) {
|
||||
if (n.lhs.kind == nkind.N_IDENT) {
|
||||
let lc: *local = localfindnode(c, n.lhs.str);
|
||||
if (lc != nil) {
|
||||
if (isstrtype(c, lc.tnode)) { srcstr = true; };
|
||||
};
|
||||
};
|
||||
};
|
||||
if (srcstr) { emitline("\tMOVQ\tBX, CX\n"); };
|
||||
};
|
||||
// 0=int, 1=f32, 2=f64. CVT picks one direction per combo;
|
||||
// same-kind casts (int↔int with widening differences,
|
||||
// f64→f64 etc.) stay no-ops at the asm level, matching the
|
||||
@@ -632,11 +649,15 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVZBQ\t(BX), AX\n"); }
|
||||
else { if (esz == 2) {
|
||||
if (signed_elem) { emitline("\tMOVSWQ\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVZWQ\t(BX), AX\n"); };
|
||||
}
|
||||
else { if (esz == 4) {
|
||||
if (signed_elem) { emitline("\tMOVSXD\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVL\t(BX), AX\n"); };
|
||||
}
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};};
|
||||
return;
|
||||
};
|
||||
if (baselocal != nil) {
|
||||
@@ -675,11 +696,15 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVZBQ\t(BX), AX\n"); }
|
||||
else { if (esz == 2) {
|
||||
if (signed_elem) { emitline("\tMOVSWQ\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVZWQ\t(BX), AX\n"); };
|
||||
}
|
||||
else { if (esz == 4) {
|
||||
if (signed_elem) { emitline("\tMOVSXD\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVL\t(BX), AX\n"); };
|
||||
}
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};};
|
||||
return;
|
||||
};
|
||||
// Generic fallback when base isn't a plain ident.
|
||||
@@ -706,11 +731,15 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVZBQ\t(AX), AX\n"); }
|
||||
else { if (esz == 2) {
|
||||
if (signed_elem) { emitline("\tMOVSWQ\t(AX), AX\n"); }
|
||||
else { emitline("\tMOVZWQ\t(AX), AX\n"); };
|
||||
}
|
||||
else { if (esz == 4) {
|
||||
if (signed_elem) { emitline("\tMOVSXD\t(AX), AX\n"); }
|
||||
else { emitline("\tMOVL\t(AX), AX\n"); };
|
||||
}
|
||||
else { emitline("\tMOVQ\t(AX), AX\n"); };};
|
||||
else { emitline("\tMOVQ\t(AX), AX\n"); };};};
|
||||
return;
|
||||
};
|
||||
|
||||
@@ -724,9 +753,19 @@ fn cgslice(c: *cgen, n: *node) void = {
|
||||
let lo: *node = n.rhs;
|
||||
let hi: *node = n.cond;
|
||||
let baselocal: *local = nil;
|
||||
let globaltn: *node = nil;
|
||||
let globalname: str;
|
||||
globalname.ptr = nil; globalname.len = 0;
|
||||
if (base != nil) {
|
||||
if (base.kind == nkind.N_IDENT) {
|
||||
baselocal = localfindnode(c, base.str);
|
||||
if (baselocal == nil) {
|
||||
let gt: *node = letvartnode(c, base.str);
|
||||
if (gt != nil) {
|
||||
globaltn = gt;
|
||||
globalname = base.str;
|
||||
};
|
||||
};
|
||||
};
|
||||
};
|
||||
// base address
|
||||
@@ -745,9 +784,22 @@ fn cgslice(c: *cgen, n: *node) void = {
|
||||
emitoff(baselocal.off: i64);
|
||||
emitline("(BP), AX\n");
|
||||
};
|
||||
} else { if (globaltn != nil) {
|
||||
// Top-level let: [N]T → LEAQ name(SB); pointer/slice/str
|
||||
// → MOVQ name(SB) (the symbol holds the {ptr,len,cap} or
|
||||
// {ptr,len} or pointer value).
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
} else {
|
||||
emitline("\tMOVQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
};
|
||||
} else { if (base != nil) {
|
||||
cgexpr(c, base);
|
||||
};};
|
||||
};};};
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
// lo (default 0)
|
||||
if (lo != nil) { cgexpr(c, lo); }
|
||||
@@ -785,9 +837,29 @@ fn cgslice(c: *cgen, n: *node) void = {
|
||||
};};};
|
||||
};
|
||||
if (!handled) { emitline("\tMOVQ\t$0, AX\n"); };
|
||||
} else { if (globaltn != nil) {
|
||||
let handled: bool = false;
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
let lenn: *node = globaltn.rhs;
|
||||
if (lenn != nil) {
|
||||
if (lenn.kind == nkind.N_INTLIT) {
|
||||
emitline("\tMOVQ\t$");
|
||||
emituint(lenn.uval);
|
||||
emitline(", AX\n");
|
||||
handled = true;
|
||||
};
|
||||
};
|
||||
} else { if (globaltn.kind == nkind.N_TSLICE) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), CX\n");
|
||||
emitline("\tMOVQ\t8(CX), AX\n");
|
||||
handled = true;
|
||||
};};
|
||||
if (!handled) { emitline("\tMOVQ\t$0, AX\n"); };
|
||||
} else {
|
||||
emitline("\tMOVQ\t$0, AX\n");
|
||||
};};
|
||||
};};};
|
||||
emitline("\tMOVQ\tAX, BX\n");
|
||||
emitline("\tPOPQ\tCX\n");
|
||||
emitline("\tPOPQ\tAX\n");
|
||||
@@ -1745,7 +1817,21 @@ fn cgun(c: *cgen, n: *node) void = {
|
||||
};
|
||||
cgexpr(c, n.lhs);
|
||||
if (n.op == tkind.TK_MINUS) { emitline("\tNEGQ\tAX\n"); return; };
|
||||
if (n.op == tkind.TK_TILDE) { emitline("\tNOTQ\tAX\n"); return; };
|
||||
if (n.op == tkind.TK_TILDE) {
|
||||
emitline("\tNOTQ\tAX\n");
|
||||
// NOTQ inverts the whole 64-bit register; clamp narrow
|
||||
// unsigned results to type width so subsequent 64-bit
|
||||
// compares against typed literals agree. u32 uses MOVL r,r
|
||||
// (zero-extends upper 32) because ANDQ $0xFFFFFFFF would
|
||||
// sign-extend imm32 to all-ones and act as a no-op.
|
||||
if (nodeisunsigned(c, n.lhs)) {
|
||||
let w: i32 = nodeprimwidth(c, n.lhs);
|
||||
if (w == 1) { emitline("\tANDQ\t$255, AX\n"); };
|
||||
if (w == 2) { emitline("\tANDQ\t$65535, AX\n"); };
|
||||
if (w == 4) { emitline("\tMOVL\tAX, AX\n"); };
|
||||
};
|
||||
return;
|
||||
};
|
||||
if (n.op == tkind.TK_STAR) { emitline("\tMOVQ\t(AX), AX\n"); return; };
|
||||
if (n.op == tkind.TK_NOT) {
|
||||
let t: str = mklabel(c, "tt");
|
||||
@@ -2812,8 +2898,9 @@ fn cgassign(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVB\tAX, (BX)\n"); }
|
||||
else { if (esz == 2) { emitline("\tMOVW\tAX, (BX)\n"); }
|
||||
else { if (esz == 4) { emitline("\tMOVL\tAX, (BX)\n"); }
|
||||
else { emitline("\tMOVQ\tAX, (BX)\n"); };};
|
||||
else { emitline("\tMOVQ\tAX, (BX)\n"); };};};
|
||||
return;
|
||||
};
|
||||
};
|
||||
|
||||
@@ -235,10 +235,20 @@ fn pushargsrev(c: *cgen, arg: *node, param: *node) i32 = {
|
||||
let lo: *node = arg.rhs;
|
||||
let hi: *node = arg.cond;
|
||||
let baselocal: *local = nil;
|
||||
let globaltn: *node = nil;
|
||||
let globalname: str;
|
||||
globalname.ptr = nil; globalname.len = 0;
|
||||
if (base != nil) {
|
||||
if (base.kind == nkind.N_IDENT) {
|
||||
let bn: str = base.str;
|
||||
baselocal = localfindnode(c, bn);
|
||||
if (baselocal == nil) {
|
||||
let gt: *node = letvartnode(c, bn);
|
||||
if (gt != nil) {
|
||||
globaltn = gt;
|
||||
globalname = bn;
|
||||
};
|
||||
};
|
||||
};
|
||||
};
|
||||
// base address → push
|
||||
@@ -259,9 +269,19 @@ fn pushargsrev(c: *cgen, arg: *node, param: *node) i32 = {
|
||||
emitoff(baselocal.off: i64);
|
||||
emitline("(BP), AX\n");
|
||||
};
|
||||
} else { if (globaltn != nil) {
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
} else {
|
||||
emitline("\tMOVQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
};
|
||||
} else {
|
||||
cgexpr(c, base);
|
||||
};
|
||||
};};
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
// hi (default base length) → push
|
||||
if (hi != nil) {
|
||||
@@ -290,9 +310,25 @@ fn pushargsrev(c: *cgen, arg: *node, param: *node) i32 = {
|
||||
};
|
||||
};};};
|
||||
};
|
||||
} else { if (globaltn != nil) {
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
let lenn: *node = globaltn.rhs;
|
||||
if (lenn != nil) {
|
||||
if (lenn.kind == nkind.N_INTLIT) {
|
||||
emitline("\tMOVQ\t$");
|
||||
emituint(lenn.uval);
|
||||
emitline(", AX\n");
|
||||
};
|
||||
};
|
||||
} else { if (globaltn.kind == nkind.N_TSLICE) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), CX\n");
|
||||
emitline("\tMOVQ\t8(CX), AX\n");
|
||||
};};
|
||||
} else {
|
||||
emitline("\tMOVQ\t$0, AX\n");
|
||||
};};
|
||||
};};};
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
// lo (default 0) → AX
|
||||
if (lo != nil) { cgexpr(c, lo); }
|
||||
@@ -376,6 +412,7 @@ fn nodeisslice(c: *cgen, n: *node) bool = {
|
||||
return false;
|
||||
};
|
||||
if (k == nkind.N_SLICE) { return true; };
|
||||
if (k == nkind.N_CAST) { return isslicetype(c, n.rhs); };
|
||||
return false;
|
||||
};
|
||||
|
||||
@@ -733,6 +770,11 @@ fn elemsizeof(t: *node) i32 = {
|
||||
return 1;
|
||||
};
|
||||
if (elem == nil) { return 1; };
|
||||
// `*[N]T`: drill through the pointer into the array's element so
|
||||
// indexing scales by T's width, not the whole-array byte size.
|
||||
if (elem.kind == nkind.N_TARRAY) {
|
||||
if (elem.lhs != nil) { elem = elem.lhs; };
|
||||
};
|
||||
if (elem.kind == nkind.N_TNAME) {
|
||||
let nm: str = elem.str;
|
||||
// str element is 16B (ptr+len). primsize returns 0 for it.
|
||||
@@ -855,6 +897,35 @@ fn nodeisunsigned(c: *cgen, n: *node) bool = {
|
||||
};
|
||||
return false;
|
||||
};
|
||||
|
||||
// nodeprimwidth — primitive byte width of an expression, or 0 if not
|
||||
// statically determinable. Mirrors nodeisunsigned's structural walk.
|
||||
// Used by cgun TK_TILDE to clamp narrow unsigned ~ results to type
|
||||
// width (NOTQ inverts the full 64-bit register).
|
||||
fn nodeprimwidth(c: *cgen, n: *node) i32 = {
|
||||
if (n == nil) { return 0; };
|
||||
let k: nkind = n.kind;
|
||||
if (k == nkind.N_IDENT) {
|
||||
let lc: *local = localfindnode(c, n.str);
|
||||
if (lc != nil) {
|
||||
let tn: *node = lc.tnode;
|
||||
if (tn != nil) {
|
||||
if (tn.kind == nkind.N_TNAME) { return primsize(tn.str); };
|
||||
};
|
||||
};
|
||||
return 0;
|
||||
};
|
||||
if (k == nkind.N_CAST) {
|
||||
let tn: *node = n.rhs;
|
||||
if (tn != nil) {
|
||||
if (tn.kind == nkind.N_TNAME) { return primsize(tn.str); };
|
||||
};
|
||||
return 0;
|
||||
};
|
||||
if (k == nkind.N_UN) { return nodeprimwidth(c, n.lhs); };
|
||||
return 0;
|
||||
};
|
||||
|
||||
// ---- type-driven slot sizing ----------------------------------------
|
||||
|
||||
fn structlookup(c: *cgen, name: str) *structinfo = {
|
||||
|
||||
@@ -5789,10 +5789,20 @@ fn pushargsrev(c: *cgen, arg: *node, param: *node) i32 = {
|
||||
let lo: *node = arg.rhs;
|
||||
let hi: *node = arg.cond;
|
||||
let baselocal: *local = nil;
|
||||
let globaltn: *node = nil;
|
||||
let globalname: str;
|
||||
globalname.ptr = nil; globalname.len = 0;
|
||||
if (base != nil) {
|
||||
if (base.kind == nkind.N_IDENT) {
|
||||
let bn: str = base.str;
|
||||
baselocal = localfindnode(c, bn);
|
||||
if (baselocal == nil) {
|
||||
let gt: *node = letvartnode(c, bn);
|
||||
if (gt != nil) {
|
||||
globaltn = gt;
|
||||
globalname = bn;
|
||||
};
|
||||
};
|
||||
};
|
||||
};
|
||||
// base address → push
|
||||
@@ -5813,9 +5823,19 @@ fn pushargsrev(c: *cgen, arg: *node, param: *node) i32 = {
|
||||
emitoff(baselocal.off: i64);
|
||||
emitline("(BP), AX\n");
|
||||
};
|
||||
} else { if (globaltn != nil) {
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
} else {
|
||||
emitline("\tMOVQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
};
|
||||
} else {
|
||||
cgexpr(c, base);
|
||||
};
|
||||
};};
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
// hi (default base length) → push
|
||||
if (hi != nil) {
|
||||
@@ -5844,9 +5864,25 @@ fn pushargsrev(c: *cgen, arg: *node, param: *node) i32 = {
|
||||
};
|
||||
};};};
|
||||
};
|
||||
} else { if (globaltn != nil) {
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
let lenn: *node = globaltn.rhs;
|
||||
if (lenn != nil) {
|
||||
if (lenn.kind == nkind.N_INTLIT) {
|
||||
emitline("\tMOVQ\t$");
|
||||
emituint(lenn.uval);
|
||||
emitline(", AX\n");
|
||||
};
|
||||
};
|
||||
} else { if (globaltn.kind == nkind.N_TSLICE) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), CX\n");
|
||||
emitline("\tMOVQ\t8(CX), AX\n");
|
||||
};};
|
||||
} else {
|
||||
emitline("\tMOVQ\t$0, AX\n");
|
||||
};};
|
||||
};};};
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
// lo (default 0) → AX
|
||||
if (lo != nil) { cgexpr(c, lo); }
|
||||
@@ -5930,6 +5966,7 @@ fn nodeisslice(c: *cgen, n: *node) bool = {
|
||||
return false;
|
||||
};
|
||||
if (k == nkind.N_SLICE) { return true; };
|
||||
if (k == nkind.N_CAST) { return isslicetype(c, n.rhs); };
|
||||
return false;
|
||||
};
|
||||
|
||||
@@ -6287,6 +6324,11 @@ fn elemsizeof(t: *node) i32 = {
|
||||
return 1;
|
||||
};
|
||||
if (elem == nil) { return 1; };
|
||||
// `*[N]T`: drill through the pointer into the array's element so
|
||||
// indexing scales by T's width, not the whole-array byte size.
|
||||
if (elem.kind == nkind.N_TARRAY) {
|
||||
if (elem.lhs != nil) { elem = elem.lhs; };
|
||||
};
|
||||
if (elem.kind == nkind.N_TNAME) {
|
||||
let nm: str = elem.str;
|
||||
// str element is 16B (ptr+len). primsize returns 0 for it.
|
||||
@@ -6409,6 +6451,35 @@ fn nodeisunsigned(c: *cgen, n: *node) bool = {
|
||||
};
|
||||
return false;
|
||||
};
|
||||
|
||||
// nodeprimwidth — primitive byte width of an expression, or 0 if not
|
||||
// statically determinable. Mirrors nodeisunsigned's structural walk.
|
||||
// Used by cgun TK_TILDE to clamp narrow unsigned ~ results to type
|
||||
// width (NOTQ inverts the full 64-bit register).
|
||||
fn nodeprimwidth(c: *cgen, n: *node) i32 = {
|
||||
if (n == nil) { return 0; };
|
||||
let k: nkind = n.kind;
|
||||
if (k == nkind.N_IDENT) {
|
||||
let lc: *local = localfindnode(c, n.str);
|
||||
if (lc != nil) {
|
||||
let tn: *node = lc.tnode;
|
||||
if (tn != nil) {
|
||||
if (tn.kind == nkind.N_TNAME) { return primsize(tn.str); };
|
||||
};
|
||||
};
|
||||
return 0;
|
||||
};
|
||||
if (k == nkind.N_CAST) {
|
||||
let tn: *node = n.rhs;
|
||||
if (tn != nil) {
|
||||
if (tn.kind == nkind.N_TNAME) { return primsize(tn.str); };
|
||||
};
|
||||
return 0;
|
||||
};
|
||||
if (k == nkind.N_UN) { return nodeprimwidth(c, n.lhs); };
|
||||
return 0;
|
||||
};
|
||||
|
||||
// ---- type-driven slot sizing ----------------------------------------
|
||||
|
||||
fn structlookup(c: *cgen, name: str) *structinfo = {
|
||||
@@ -8051,6 +8122,23 @@ fn cgcast(c: *cgen, n: *node) void = {
|
||||
if (dstf32) { dstfk = 1; }
|
||||
else { if (dstf64) { dstfk = 2; }; };
|
||||
cgexpr(c, n.lhs);
|
||||
// str → []T: cgexpr left (AX=ptr, BX=len). Slice register
|
||||
// convention is (AX=ptr, BX=len, CX=cap); synthesise cap = len
|
||||
// so downstream arg-push / let-init paths see the canonical
|
||||
// triple. Detect via dst-is-slice + src-ident's local-tnode
|
||||
// being str (the common shape; non-ident sources rare).
|
||||
if (isslicetype(c, n.rhs)) {
|
||||
let srcstr: bool = false;
|
||||
if (n.lhs != nil) {
|
||||
if (n.lhs.kind == nkind.N_IDENT) {
|
||||
let lc: *local = localfindnode(c, n.lhs.str);
|
||||
if (lc != nil) {
|
||||
if (isstrtype(c, lc.tnode)) { srcstr = true; };
|
||||
};
|
||||
};
|
||||
};
|
||||
if (srcstr) { emitline("\tMOVQ\tBX, CX\n"); };
|
||||
};
|
||||
// 0=int, 1=f32, 2=f64. CVT picks one direction per combo;
|
||||
// same-kind casts (int↔int with widening differences,
|
||||
// f64→f64 etc.) stay no-ops at the asm level, matching the
|
||||
@@ -8326,11 +8414,15 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVZBQ\t(BX), AX\n"); }
|
||||
else { if (esz == 2) {
|
||||
if (signed_elem) { emitline("\tMOVSWQ\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVZWQ\t(BX), AX\n"); };
|
||||
}
|
||||
else { if (esz == 4) {
|
||||
if (signed_elem) { emitline("\tMOVSXD\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVL\t(BX), AX\n"); };
|
||||
}
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};};
|
||||
return;
|
||||
};
|
||||
if (baselocal != nil) {
|
||||
@@ -8369,11 +8461,15 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVZBQ\t(BX), AX\n"); }
|
||||
else { if (esz == 2) {
|
||||
if (signed_elem) { emitline("\tMOVSWQ\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVZWQ\t(BX), AX\n"); };
|
||||
}
|
||||
else { if (esz == 4) {
|
||||
if (signed_elem) { emitline("\tMOVSXD\t(BX), AX\n"); }
|
||||
else { emitline("\tMOVL\t(BX), AX\n"); };
|
||||
}
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};
|
||||
else { emitline("\tMOVQ\t(BX), AX\n"); };};};
|
||||
return;
|
||||
};
|
||||
// Generic fallback when base isn't a plain ident.
|
||||
@@ -8400,11 +8496,15 @@ fn cgindex(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVZBQ\t(AX), AX\n"); }
|
||||
else { if (esz == 2) {
|
||||
if (signed_elem) { emitline("\tMOVSWQ\t(AX), AX\n"); }
|
||||
else { emitline("\tMOVZWQ\t(AX), AX\n"); };
|
||||
}
|
||||
else { if (esz == 4) {
|
||||
if (signed_elem) { emitline("\tMOVSXD\t(AX), AX\n"); }
|
||||
else { emitline("\tMOVL\t(AX), AX\n"); };
|
||||
}
|
||||
else { emitline("\tMOVQ\t(AX), AX\n"); };};
|
||||
else { emitline("\tMOVQ\t(AX), AX\n"); };};};
|
||||
return;
|
||||
};
|
||||
|
||||
@@ -8418,9 +8518,19 @@ fn cgslice(c: *cgen, n: *node) void = {
|
||||
let lo: *node = n.rhs;
|
||||
let hi: *node = n.cond;
|
||||
let baselocal: *local = nil;
|
||||
let globaltn: *node = nil;
|
||||
let globalname: str;
|
||||
globalname.ptr = nil; globalname.len = 0;
|
||||
if (base != nil) {
|
||||
if (base.kind == nkind.N_IDENT) {
|
||||
baselocal = localfindnode(c, base.str);
|
||||
if (baselocal == nil) {
|
||||
let gt: *node = letvartnode(c, base.str);
|
||||
if (gt != nil) {
|
||||
globaltn = gt;
|
||||
globalname = base.str;
|
||||
};
|
||||
};
|
||||
};
|
||||
};
|
||||
// base address
|
||||
@@ -8439,9 +8549,22 @@ fn cgslice(c: *cgen, n: *node) void = {
|
||||
emitoff(baselocal.off: i64);
|
||||
emitline("(BP), AX\n");
|
||||
};
|
||||
} else { if (globaltn != nil) {
|
||||
// Top-level let: [N]T → LEAQ name(SB); pointer/slice/str
|
||||
// → MOVQ name(SB) (the symbol holds the {ptr,len,cap} or
|
||||
// {ptr,len} or pointer value).
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
} else {
|
||||
emitline("\tMOVQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), AX\n");
|
||||
};
|
||||
} else { if (base != nil) {
|
||||
cgexpr(c, base);
|
||||
};};
|
||||
};};};
|
||||
emitline("\tPUSHQ\tAX\n");
|
||||
// lo (default 0)
|
||||
if (lo != nil) { cgexpr(c, lo); }
|
||||
@@ -8479,9 +8602,29 @@ fn cgslice(c: *cgen, n: *node) void = {
|
||||
};};};
|
||||
};
|
||||
if (!handled) { emitline("\tMOVQ\t$0, AX\n"); };
|
||||
} else { if (globaltn != nil) {
|
||||
let handled: bool = false;
|
||||
if (globaltn.kind == nkind.N_TARRAY) {
|
||||
let lenn: *node = globaltn.rhs;
|
||||
if (lenn != nil) {
|
||||
if (lenn.kind == nkind.N_INTLIT) {
|
||||
emitline("\tMOVQ\t$");
|
||||
emituint(lenn.uval);
|
||||
emitline(", AX\n");
|
||||
handled = true;
|
||||
};
|
||||
};
|
||||
} else { if (globaltn.kind == nkind.N_TSLICE) {
|
||||
emitline("\tLEAQ\t");
|
||||
emitsymname(c, globalname);
|
||||
emitline("(SB), CX\n");
|
||||
emitline("\tMOVQ\t8(CX), AX\n");
|
||||
handled = true;
|
||||
};};
|
||||
if (!handled) { emitline("\tMOVQ\t$0, AX\n"); };
|
||||
} else {
|
||||
emitline("\tMOVQ\t$0, AX\n");
|
||||
};};
|
||||
};};};
|
||||
emitline("\tMOVQ\tAX, BX\n");
|
||||
emitline("\tPOPQ\tCX\n");
|
||||
emitline("\tPOPQ\tAX\n");
|
||||
@@ -9439,7 +9582,21 @@ fn cgun(c: *cgen, n: *node) void = {
|
||||
};
|
||||
cgexpr(c, n.lhs);
|
||||
if (n.op == tkind.TK_MINUS) { emitline("\tNEGQ\tAX\n"); return; };
|
||||
if (n.op == tkind.TK_TILDE) { emitline("\tNOTQ\tAX\n"); return; };
|
||||
if (n.op == tkind.TK_TILDE) {
|
||||
emitline("\tNOTQ\tAX\n");
|
||||
// NOTQ inverts the whole 64-bit register; clamp narrow
|
||||
// unsigned results to type width so subsequent 64-bit
|
||||
// compares against typed literals agree. u32 uses MOVL r,r
|
||||
// (zero-extends upper 32) because ANDQ $0xFFFFFFFF would
|
||||
// sign-extend imm32 to all-ones and act as a no-op.
|
||||
if (nodeisunsigned(c, n.lhs)) {
|
||||
let w: i32 = nodeprimwidth(c, n.lhs);
|
||||
if (w == 1) { emitline("\tANDQ\t$255, AX\n"); };
|
||||
if (w == 2) { emitline("\tANDQ\t$65535, AX\n"); };
|
||||
if (w == 4) { emitline("\tMOVL\tAX, AX\n"); };
|
||||
};
|
||||
return;
|
||||
};
|
||||
if (n.op == tkind.TK_STAR) { emitline("\tMOVQ\t(AX), AX\n"); return; };
|
||||
if (n.op == tkind.TK_NOT) {
|
||||
let t: str = mklabel(c, "tt");
|
||||
@@ -10506,8 +10663,9 @@ fn cgassign(c: *cgen, n: *node) void = {
|
||||
return;
|
||||
};
|
||||
if (esz == 1) { emitline("\tMOVB\tAX, (BX)\n"); }
|
||||
else { if (esz == 2) { emitline("\tMOVW\tAX, (BX)\n"); }
|
||||
else { if (esz == 4) { emitline("\tMOVL\tAX, (BX)\n"); }
|
||||
else { emitline("\tMOVQ\tAX, (BX)\n"); };};
|
||||
else { emitline("\tMOVQ\tAX, (BX)\n"); };};};
|
||||
return;
|
||||
};
|
||||
};
|
||||
@@ -14085,7 +14243,16 @@ fn emitletdataw(c: *cgen, file: *node) void = {
|
||||
emitline("\"\n");
|
||||
};
|
||||
};
|
||||
if (sz == 8 && !issg && fsz == 0) {
|
||||
// Skip the scalar 8B path when the global is a
|
||||
// fixed-size array that just happens to sum to 8
|
||||
// bytes (e.g. [4]u16, [8]u8) — the array path
|
||||
// below handles it and the duplicate DATAW would
|
||||
// otherwise differ across stages on user code.
|
||||
let isarr8: bool = false;
|
||||
if (d.lhs != nil) {
|
||||
if (d.lhs.kind == nkind.N_TARRAY) { isarr8 = true; };
|
||||
};
|
||||
if (sz == 8 && !issg && fsz == 0 && !isarr8) {
|
||||
let v: u64 = 0u64;
|
||||
let ok: bool = true;
|
||||
if (d.rhs != nil) {
|
||||
|
||||
@@ -23,6 +23,9 @@ static const char *modules[] = {
|
||||
"lib/encoding/utf8/utf8.ww",
|
||||
"lib/encoding/hex/hex.ww",
|
||||
"lib/hash/fnv/fnv.ww",
|
||||
"lib/hash/adler32/adler32.ww",
|
||||
"lib/hash/crc16/crc16.ww",
|
||||
"lib/hash/crc32/crc32.ww",
|
||||
"lib/time/time.ww",
|
||||
"lib/c/libc/libc.ww",
|
||||
"lib/bufio/bufio.ww",
|
||||
|
||||
Reference in New Issue
Block a user