An inferred-type array global -- let xs = [1,2,3]; -- hard-failed wwstage with 'asserttyped: int' exit 1, while cstage compiled+ran it. The array-twin of the inferred-global family (#135 inferred-float, #150-B inferred-Sym-repoint). exprtype's N_ARRLIT arm synthesizes the array type for an unannotated literal but left two synthesized child nodes unstamped: the count literal (asserttyped trips on it -> the loud failure) and the element TNAME (cgen then drops a non-scalar element's header load -> the silent miscompile that merely accepting on alone would introduce: an inferred str-array's xs[1].len read 24 not 3). Both are now stamped at the synthesis site: cn.type_ (asserttyped facet) and elt.type_ (cgen facet). Inferred int / u8 / str / struct / multi-dim array globals + locals + args now compile byte-identically to the explicit-typed form (== cstage). cstage unchanged (w6c md5 unchanged); selfhost has no inferred array globals so byte-id 990-997 8/8, no lib pin flips. test/wcc/833.
244 lines
7.2 KiB
C
244 lines
7.2 KiB
C
/*
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* 833_inferred_array_global — an inferred-type (annotation-less) module-global
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* `let xs = [10, 20, 30];` whose init is an ARRAY literal must compile and run
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* exactly as the explicit-typed `let xs: [3]int = [10, 20, 30]` does. The
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* array twin of #135/#150-B (inferred float / inferred scalar global).
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* WWSTAGE-ONLY bug (cstage already correct post-#150-B).
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*
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* Root (selfhost/cmd/wcc/check.ww exprtype N_ARRLIT, ~3294): for an inferred
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* array let, exprtype synthesizes the array type — an N_TARRAY whose lhs is
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* the element TNAME and whose rhs is a fresh N_INTLIT count node — and stamps
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* e.type_ and arr.type_, but NEVER the count node's type_. checkletassign
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* plants this synthesized arr on the inferred let's n.lhs; the pass-3
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* asserttyped walker then descends arr.rhs (the count N_INTLIT, an expr kind)
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* with type_ == nil and trips `asserttyped: int` — a HARD loud build failure.
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* wwstage could not compile an inferred array global at all. An explicit
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* `[3]int` works because resolvewalk stamps its parser-built count node.
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*
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* The fix (check.ww, checker-only): stamp the synthesized count node's type_.
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* The element TNAME needs no stamp (N_TNAME is not an asserttyped expr kind).
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* cgen reads arr.rhs.uval, so the stamp is byte-id-inert: once the checker
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* accepts the inferred array identically to an explicit one, the existing
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* [N]T-global cgen path emits the IDENTICAL `.s`. cstage is UNTOUCHED.
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*
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* row | shape | want
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* -----------+---------------------------------------------+-----
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* int_idx | let xs = [10,20,30]; xs[1] (the bug) | 20
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* int_len | let xs = [10,20,30]; xs.len | 3
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* u8_elem | let bs = [1u8,2u8,3u8]; bs[2] (narrow elem) | 3
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* ctrl_expl | let xs: [3]int = [10,20,30]; xs[1] (explicit)| 20
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*
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* Pre-fix the inferred rows ran wwstage=LOUD (asserttyped exit 1) and
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* cstage=correct (cs≠ww); post-fix all four run in both stages and the
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* inferred rows' `.s` is byte-identical between stages (and to the explicit
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* form). ctrl_expl guards the explicit-[N]T path didn't regress and is the
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* byte-id reference the inferred rows must match.
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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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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; };
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static const struct row rows[] = {
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/* int_idx — the bug: inferred array global indexed, cast to int.
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* Pre-fix wwstage tripped asserttyped (exit 1); cstage 20. */
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{ "int_idx",
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"package main;\n"
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"let xs = [10, 20, 30];\n"
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"export fn main() i32 = {\n"
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"\treturn xs[1]: i32;\n"
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"};\n",
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20 },
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/* int_len — inferred array global .len pseudo-field read. */
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{ "int_len",
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"package main;\n"
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"let xs = [10, 20, 30];\n"
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"export fn main() i32 = {\n"
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"\treturn xs.len: i32;\n"
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"};\n",
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3 },
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/* u8_elem — narrow (u8-default) element; the synthesized element
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* type defaults to u8 here, exercising a non-int stride. */
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{ "u8_elem",
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"package main;\n"
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"let bs = [1u8, 2u8, 3u8];\n"
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"export fn main() i32 = {\n"
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"\treturn bs[2]: i32;\n"
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"};\n",
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3 },
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/* ctrl_expl — explicit [3]int annotation; already worked. The
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* byte-id reference the inferred int rows must match. No-regress. */
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{ "ctrl_expl",
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"package main;\n"
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"let xs: [3]int = [10, 20, 30];\n"
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"export fn main() i32 = {\n"
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"\treturn xs[1]: i32;\n"
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"};\n",
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20 },
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};
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static int
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run_driver(const char *driver, const struct row *r, int i)
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{
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char src[64], tmpdir[64], cmd[1024];
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snprintf(src, sizeof src, "/tmp/iag_%d_%d.ww", getpid(), i);
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snprintf(tmpdir, sizeof tmpdir, "/tmp/iag_%d_d_%d", getpid(), i);
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FILE *f = fopen(src, "wb");
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if (!f) return -1;
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fputs(r->src, f);
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fclose(f);
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mkdir(tmpdir, 0755);
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snprintf(cmd, sizeof cmd, "cd %s && %s build %s 2>/dev/null",
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tmpdir, driver, src);
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if (runwait(cmd) != 0) {
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fprintf(stderr, "row[%s]: build via %s failed\n",
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r->label, driver);
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unlink(src); rmdir(tmpdir);
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return -1;
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}
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const char *base = strrchr(src, '/');
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base = base ? base + 1 : src;
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char outbin[128];
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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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unlink(src); unlink(outbin); rmdir(tmpdir);
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return got;
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}
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/* asm_byte_identical — w6c vs w6c_ww .s for the same source must match. */
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static int
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asm_byte_identical(const char *bin, const struct row *r, int i)
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{
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char src[64], cs[64], ws[64], cmd[1024];
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snprintf(src, sizeof src, "/tmp/iag_asm_%d_%d.ww", getpid(), i);
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snprintf(cs, sizeof cs, "/tmp/iag_asm_%d_%d_c.s", getpid(), i);
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snprintf(ws, sizeof ws, "/tmp/iag_asm_%d_%d_w.s", getpid(), i);
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FILE *f = fopen(src, "wb");
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if (!f) return -1;
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fputs(r->src, f);
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fclose(f);
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snprintf(cmd, sizeof cmd, "%s/w6c -o %s %s 2>/dev/null", bin, cs, src);
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if (runwait(cmd) != 0) {
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fprintf(stderr, "row[%s]: w6c errored\n", r->label);
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unlink(src);
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return -1;
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}
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snprintf(cmd, sizeof cmd, "%s/w6c_ww -o %s %s 2>/dev/null",
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bin, ws, src);
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if (runwait(cmd) != 0) {
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fprintf(stderr, "row[%s]: w6c_ww errored\n", r->label);
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unlink(src); unlink(cs);
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return -1;
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}
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FILE *fc = fopen(cs, "rb");
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FILE *fw = fopen(ws, "rb");
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int rc = 0;
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if (!fc || !fw) {
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rc = -1;
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} else {
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for (;;) {
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int a = fgetc(fc);
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int b = fgetc(fw);
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if (a != b) { rc = -1; break; }
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if (a == EOF) break;
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}
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}
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if (fc) fclose(fc);
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if (fw) fclose(fw);
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if (rc != 0)
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fprintf(stderr, "row[%s]: cstage vs wwstage asm differs\n",
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r->label);
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unlink(src); unlink(cs); unlink(ws);
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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 cdrv[1024];
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snprintf(cdrv, sizeof cdrv, "%s/ww", bin);
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char wdrv[1024];
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snprintf(wdrv, sizeof wdrv, "%s/ww_ww", bin);
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struct { const char *name; const char *path; int gated_on_existence; }
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drivers[] = {
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{ "cstage", cdrv, 0 },
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{ "wwstage", wdrv, 1 },
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{ NULL, NULL, 0 },
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};
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int n = (int)(sizeof rows / sizeof rows[0]);
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int total = 0, fail = 0;
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for (int d = 0; drivers[d].name; d++) {
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if (drivers[d].gated_on_existence
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&& access(drivers[d].path, X_OK) != 0) {
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fprintf(stderr, "inferred_array_global: skip %s (no %s)\n",
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drivers[d].name, drivers[d].path);
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continue;
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}
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for (int i = 0; i < n; i++) {
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int got = run_driver(drivers[d].path, &rows[i], i);
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total++;
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if (got != rows[i].want) {
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fprintf(stderr,
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"inferred_array_global[%s][%s]: exit=%d want=%d\n",
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drivers[d].name, rows[i].label,
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got, rows[i].want);
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fail++;
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}
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}
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}
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if (access(wdrv, X_OK) == 0) {
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for (int i = 0; i < n; i++) {
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total++;
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if (asm_byte_identical(bin, &rows[i], i) != 0)
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fail++;
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}
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}
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if (fail) {
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fprintf(stderr,
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"inferred_array_global: %d/%d fixtures failed\n", fail, total);
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return 1;
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}
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printf("inferred_array_global: %d/%d ok\n", total, total);
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return 0;
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}
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