Float array-element stores (array-literal init, [v...] repeat-fill, and arr[i]=v) now route from X0 via MOVSS/MOVSD in both stages; the AX path stored the raw double low-bits, garbage for f32 (f64 worked by accident). A clobbering call-index (a[geti()]=v) loses the X0 value — deferred to #125.
240 lines
7.8 KiB
C
240 lines
7.8 KiB
C
/*
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* 946_floatarr_run — runtime + byte-id net for #119: a float ARRAY
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* ELEMENT load must land in X0 (MOVSS/MOVSD), not the integer register
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* file (MOVQ → AX). cgindex's element-load sites ended in the integer
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* loadopsz, so `let a: [3]f64 = [...]; a[0] + a[1]` loaded the element
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* into AX while the consumer's ADDSD read a stale X0 → wrong sum. #119
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* adds a float-element branch (MOVSS f32 / MOVSD f64 into X0) at all
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* three wwstage cgindex sites (global, baselocal, fallback) and both
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* cstage N_INDEX element-load sites, deriving float-ness from the same
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* stamped element tinfo the esz already reads (elemisfloatc/elemisf32c
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* for ident bases, typeisfloat/typeisf32(n.type_) for N_DOT/N_INDEX
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* bases — never an unstamped node-stamp, dodging the #121 trap).
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*
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* #119 also required a wwstage exprfloatkind N_INDEX arm: the consumer
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* (cgbin / cgcast) classified an indexed float operand as INTEGER and
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* fell to PUSHQ/ADDQ/MOVSXD, while the cstage read the stamped operand
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* type and used ADDSD/CVTTSD2SI — a rule-10 divergence the load fix
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* exposed. The N_INDEX result type_ is checker-stamped (cgindex reads
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* it for esz), so this is not the unstamped-N_MLET case deferred under
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* #121.
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*
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* Each row carries (a) a cstage `ww build` + run asserting the exit
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* code, and (b) a w6c vs w6c_ww `.s` cmp (rule-10 byte-id). A row whose
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* want_exit is RUN_SKIP runs only the byte-id leg.
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*
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* #122 fixes the store-side twin the #119 commit deferred: the f32
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* array-element STORE wrote AX (the raw double low-bits) instead of the
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* CVTSD2SS-narrowed X0 single, so every f32 array slot read back garbage.
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* Both the array-literal-init store (cgen.c:6889 / cgenstmt:949) and the
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* arr[i]= index store (cgen.c:3818 / cgenexpr:4209) now route FROM X0 via
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* MOVSS/MOVSD, mirroring the scalar float store. The f32 rows below now
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* assert the runtime VALUE (not byte-id only) and add an arr[i]= store
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* plus a [v...] repeat-fill init (a distinct cgen arm #122 also fixed).
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include <sys/stat.h>
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#include <sys/wait.h>
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#define RUN_SKIP (-1)
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static int
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runwait(const char *cmd)
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{
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int rc = system(cmd);
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if (rc == -1) return -1;
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if (WIFEXITED(rc)) return WEXITSTATUS(rc);
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return -1;
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}
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struct row { const char *label; const char *src; int want_exit; };
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static const struct row rows[] = {
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/* f64 element load + float add: 1.5 + 2.5 == 4.0. On the bug the
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* elements loaded into AX and the ADDSD read a stale X0 -> != 4.0. */
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{ "f64_arith",
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"package main;\n"
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"export fn main() i32 = {\n"
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" let a: [3]f64 = [1.5, 2.5, 9.0];\n"
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" if (a[0] + a[1] != 4.0) { return 1; };\n"
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" return 0;\n"
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"};\n", 0 },
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/* f64 element -> i32 cast: 1.5 truncates to 1. On the bug the cast
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* operand classified integer (MOVSXD on AX) not CVTTSD2SI on X0. */
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{ "f64_trunc",
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"package main;\n"
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"export fn main() i32 = {\n"
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" let a: [3]f64 = [1.5, 2.5, 9.0];\n"
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" return a[0]: i32;\n"
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"};\n", 1 },
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/* third element, non-adjacent index: a[2] == 9.0. */
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{ "f64_elem2",
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"package main;\n"
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"export fn main() i32 = {\n"
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" let a: [3]f64 = [1.5, 2.5, 9.0];\n"
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" if (a[2] != 9.0) { return 1; };\n"
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" return 0;\n"
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"};\n", 0 },
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/* f32 array-literal-init store + element load + add: suffixed
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* literals so fold-1 narrows them. Pre-#122 the init store wrote
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* MOVL AX (raw double low-bits) so the slots read garbage; #122
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* routes the store from X0 via MOVSS, so 1.5 + 2.5 == 4.0. */
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{ "f32_arith",
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"package main;\n"
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"export fn main() i32 = {\n"
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" let b: [2]f32 = [1.5f32, 2.5f32];\n"
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" if ((b[0] + b[1]): f64 != 4.0) { return 1; };\n"
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" return 0;\n"
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"};\n", 0 },
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/* f32 arr[i]= index store (#122): assign each slot, read back.
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* The index-store path popped the value to AX and wrote MOVL (raw
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* double low-bits, garbage for f32); #122 stores from X0 via MOVSS.
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* The [0.0f32,0.0f32] init also exercises the array-lit store. */
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{ "f32_index_store",
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"package main;\n"
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"export fn main() i32 = {\n"
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" let b: [2]f32 = [0.0f32, 0.0f32];\n"
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" b[0] = 1.5f32;\n"
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" b[1] = 2.5f32;\n"
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" if ((b[0] + b[1]): f64 != 4.0) { return 1; };\n"
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" return 0;\n"
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"};\n", 0 },
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/* f32 [v...] repeat-fill init store (#122): the repeat marker
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* fills every slot from the last element's X0 single; pre-#122 the
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* fill wrote MOVL AX (raw double low-bits) per slot so each read
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* back garbage. Distinct cgen arm from the per-element list store.
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* 1.5 * 3 == 4.5 (exact in IEEE). */
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{ "f32_repeat_fill",
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"package main;\n"
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"export fn main() i32 = {\n"
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" let c: [3]f32 = [1.5f32...];\n"
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" if ((c[0] + c[1] + c[2]): f64 != 4.5) { return 1; };\n"
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" return 0;\n"
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"};\n", 0 },
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{ NULL, NULL, 0 }
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};
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static int
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slurp_eq(const char *a, const char *b)
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{
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FILE *fa = fopen(a, "rb");
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FILE *fb = fopen(b, "rb");
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if (!fa || !fb) { if (fa) fclose(fa); if (fb) fclose(fb); return -1; }
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int rc = 0;
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for (;;) {
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int ca = fgetc(fa);
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int cb = fgetc(fb);
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if (ca != cb) { rc = -1; break; }
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if (ca == EOF) break;
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}
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fclose(fa); fclose(fb);
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return rc;
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}
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int
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main(void)
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{
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const char *bin = getenv("BIN");
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if (!bin) bin = "out/bin";
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char absbin[1024];
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if (bin[0] != '/') {
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char cwd[1024];
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if (getcwd(cwd, sizeof cwd) == NULL) return 1;
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snprintf(absbin, sizeof absbin, "%s/%s", cwd, bin);
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bin = absbin;
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}
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char w6c[1100], w6c_ww[1100];
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snprintf(w6c, sizeof w6c, "%s/w6c", bin);
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snprintf(w6c_ww, sizeof w6c_ww, "%s/w6c_ww", bin);
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if (access(w6c_ww, X_OK) != 0) {
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fprintf(stderr, "floatarr: w6c_ww missing — cannot run the "
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"cs==ww byte-id gate (the whole point of this test)\n");
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return 1;
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}
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int n = 0, fail = 0;
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for (int i = 0; rows[i].src; i++, n++) {
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char src[64];
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snprintf(src, sizeof src, "/tmp/wwfarr_%d_%d.ww", getpid(), i);
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FILE *f = fopen(src, "wb");
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if (f == NULL) { fail++; continue; }
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fputs(rows[i].src, f);
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fclose(f);
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/* (a) cstage build + run (skipped for byte-id-only rows). */
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if (rows[i].want_exit != RUN_SKIP) {
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char tmpdir[64];
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snprintf(tmpdir, sizeof tmpdir, "/tmp/wwfarr_%d_d_%d",
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getpid(), i);
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mkdir(tmpdir, 0755);
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char cmd[2048];
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snprintf(cmd, sizeof cmd, "cd %s && %s/ww build %s",
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tmpdir, bin, src);
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if (runwait(cmd) != 0) {
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fprintf(stderr, "row[%s]: cstage build failed\n",
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rows[i].label);
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fail++;
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unlink(src); rmdir(tmpdir);
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continue;
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}
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char outbin[128];
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const char *base = strrchr(src, '/');
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base = base ? base + 1 : src;
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snprintf(outbin, sizeof outbin, "%s/%s", tmpdir, base);
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char *dot = strrchr(outbin, '.');
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if (dot && strcmp(dot, ".ww") == 0) *dot = '\0';
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int got = runwait(outbin);
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if (got != rows[i].want_exit) {
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fprintf(stderr, "row[%s]: cstage exit %d, want %d\n",
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rows[i].label, got, rows[i].want_exit);
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fail++;
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}
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unlink(outbin); rmdir(tmpdir);
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}
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/* (b) cs==ww byte-id gate: emit .s from both stages, cmp. */
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char cs_s[64], ws_s[64];
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snprintf(cs_s, sizeof cs_s, "/tmp/wwfarr_%d_%d_cs.s",
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getpid(), i);
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snprintf(ws_s, sizeof ws_s, "/tmp/wwfarr_%d_%d_ww.s",
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getpid(), i);
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char cmd[2048];
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snprintf(cmd, sizeof cmd, "%s -o %s %s 2>/dev/null",
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w6c, cs_s, src);
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if (runwait(cmd) != 0) {
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fprintf(stderr, "row[%s]: w6c failed\n", rows[i].label);
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fail++; unlink(src); continue;
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}
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snprintf(cmd, sizeof cmd, "%s -o %s %s 2>/dev/null",
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w6c_ww, ws_s, src);
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if (runwait(cmd) != 0) {
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fprintf(stderr, "row[%s]: w6c_ww failed\n",
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rows[i].label);
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fail++; unlink(src); unlink(cs_s); continue;
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}
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if (slurp_eq(cs_s, ws_s) != 0) {
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fprintf(stderr,
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"row[%s]: cstage/wwstage .s DIFFER (rule-10 "
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"byte-id violation)\n", rows[i].label);
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fail++;
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}
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unlink(src); unlink(cs_s); unlink(ws_s);
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}
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if (fail) {
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fprintf(stderr, "%d/%d float-array element tests failed\n",
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fail, n);
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return 1;
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}
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printf("floatarr: %d/%d ok (cstage run + cs==ww byte-id)\n", n, n);
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return 0;
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}
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