wwstage's tuple-parse loop checked the RPAREN-break at the top, so `(a,)` parsed as a 1-element N_TUPLE and reached cgen — a silent wrong-accept. A trailing comma is legal only after >=2 elements. Align the loop order to cstage cmd/wcc/parse.c:552-558 (parse each element before the RPAREN-break); `(a,)` now errors at the next parseexpr, `(a, b)` / `(a, b,)` are unchanged. cstage already rejected; this brings wwstage's w6c_ww parser into agreement. Regen w6c/wwdump combined.ww (parser embeds in both). Valid-program codegen unchanged → cs==ww byte-id gate stays green.
187 lines
5.5 KiB
C
187 lines
5.5 KiB
C
/*
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* 845_tuple_trailing_comma_reject (catB-92) — cstage and wwstage
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* LOUD-REJECT a single-element trailing-comma tuple `(a,)`.
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*
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* A trailing comma is legal ONLY after >=2 tuple elements; `(a,)` is a
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* parse error, `(a, b)` and `(a, b,)` are 2-tuples. cstage parse.c:552-
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* 558 parses each element BEFORE the RPAREN-break, so `(a,)` errors at
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* the next parseexpr (it sees `)`). wwstage's lib/ww/parse/expr.ww tuple
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* loop checked the RPAREN-break at the TOP, so `(a,)` parsed as a
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* 1-element N_TUPLE and reached cgen — a silent wrong-accept. The fix
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* mirrors cstage's loop order (break sits AFTER accept(COMMA)).
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*
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* The reject row is `let t = (5,);` — an INFERRED-type 1-tuple, the
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* context the old wwstage built rc=0 and codegen'd (a 2-tuple-DECLARED
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* `(5,)` already errored on arity downstream, masking the parse bug;
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* the inferred form is the clean discriminator). Pre-fix wwstage built
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* it rc=0; cstage rejected it. Post-fix both reject at parse.
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*
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* row | shape | expect
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* -----------+-----------------+--------
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* one_comma | let t = (5,); | REJECT (parse)
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* two_elem | (3, 4) | BUILD, run 7
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* two_comma | (3, 4,) | BUILD, run 7 (trailing OK after >=2)
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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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/* outbin — derive the driver's default binary name from a *.ww source
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* (strip dir + the .ww suffix), placed in tmpdir. */
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static void
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outbin(char *dst, size_t n, const char *tmpdir, const char *src)
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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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snprintf(dst, n, "%s/%s", tmpdir, base);
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char *dot = strrchr(dst, '.');
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if (dot && strcmp(dot, ".ww") == 0) *dot = '\0';
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}
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/* build_should_fail — returns 0 when the build correctly FAILS. */
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static int
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build_should_fail(const char *driver, const char *label, const char *src,
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int i)
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{
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char s[64], tmpdir[64], cmd[1024], bin[128];
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snprintf(s, sizeof s, "/tmp/tuptc_%d_%d.ww", getpid(), i);
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snprintf(tmpdir, sizeof tmpdir, "/tmp/tuptc_%d_d_%d", getpid(), i);
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FILE *f = fopen(s, "wb");
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if (!f) return -1;
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fputs(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, s);
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int rc = runwait(cmd);
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outbin(bin, sizeof bin, tmpdir, s);
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unlink(s);
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unlink(bin);
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rmdir(tmpdir);
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if (rc == 0)
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fprintf(stderr, "tuptc[%s][%s]: built ok, expected a reject\n",
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driver, label);
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return rc == 0 ? -1 : 0;
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}
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/* run_build — build a program that MUST compile, run it, return exit. */
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static int
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run_build(const char *driver, const char *label, const char *src, int i)
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{
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char s[64], tmpdir[64], cmd[1024], bin[128];
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snprintf(s, sizeof s, "/tmp/tuptc_ok_%d_%d.ww", getpid(), i);
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snprintf(tmpdir, sizeof tmpdir, "/tmp/tuptc_ok_%d_d_%d", getpid(), i);
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FILE *f = fopen(s, "wb");
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if (!f) return -1;
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fputs(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, s);
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if (runwait(cmd) != 0) {
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fprintf(stderr, "tuptc[%s][%s]: build failed (a valid tuple "
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"must compile)\n", driver, label);
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unlink(s); rmdir(tmpdir);
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return -1;
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}
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outbin(bin, sizeof bin, tmpdir, s);
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int got = runwait(bin);
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unlink(s); unlink(bin); rmdir(tmpdir);
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return got;
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}
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struct rejrow { const char *label; const char *src; };
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static const struct rejrow reject_rows[] = {
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{ "one_comma",
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"package main;\n"
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"fn main() i32 = { let t = (5,); return 0; };\n" },
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};
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struct okrow { const char *label; const char *src; int want; };
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static const struct okrow ok_rows[] = {
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{ "two_elem",
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"package main;\n"
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"fn pair() (i32, i32) = { return (3, 4); };\n"
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"fn main() i32 = { let a, b = pair(); return a + b; };\n", 7 },
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{ "two_comma",
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"package main;\n"
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"fn pair() (i32, i32) = { return (3, 4,); };\n"
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"fn main() i32 = { let a, b = pair(); return a + b; };\n", 7 },
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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], wdrv[1024];
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snprintf(cdrv, sizeof cdrv, "%s/ww", bin);
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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; } 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 nrej = (int)(sizeof reject_rows / sizeof reject_rows[0]);
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int nok = (int)(sizeof ok_rows / sizeof ok_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 && access(drivers[d].path, X_OK) != 0) {
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fprintf(stderr, "tuptc: 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 < nrej; i++) {
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total++;
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if (build_should_fail(drivers[d].path,
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reject_rows[i].label, reject_rows[i].src,
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d * 100 + i) != 0)
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fail++;
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}
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for (int i = 0; i < nok; i++) {
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total++;
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int got = run_build(drivers[d].path, ok_rows[i].label,
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ok_rows[i].src, d * 100 + i);
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if (got != ok_rows[i].want) {
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fprintf(stderr, "tuptc[%s][%s]: exit=%d want=%d\n",
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drivers[d].name, ok_rows[i].label,
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got, ok_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 (fail) {
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fprintf(stderr, "tuptc: %d/%d fixtures failed\n", fail, total);
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return 1;
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}
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printf("tuptc: %d/%d ok\n", total, total);
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return 0;
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}
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