Files
ww/test/wcc/989_m1usehint_run.c
Hojun-Cho a95a7a316b test/wcc: carrier ownership repair and driver-contract adaptation
Every surviving carrier now owns its artifacts: checked mkdir/mkdtemp/
fopen acquisition, one all-exit cleanup funnel per carrier, ENOENT-
tolerant checked unlinks, exact-path deletion (rm -rf only for an
owned pid-keyed dir or a .sepwork beneath one), and cleanup failure
fails a passing carrier without overwriting its diagnostic. In the
same pass the carriers adapt to the driver contract this branch lands:
--sep and WW_PKGCACHE are gone, -S and the /tmp/ww_run_<pid> scratch
contract are asserted, and rows whose runtime or reject coverage moved
to test/wcc/data fixtures or test/lang @test owners are trimmed to the
byte/artifact/diagnostic observations only they can make.

Repair and adaptation ride together because most files interleave both
in the same hunks; splitting would manufacture intermediate carrier
states that never existed and cannot run against either driver.
2026-08-07 23:21:04 +09:00

388 lines
12 KiB
C

/*
* 989_m1usehint_run — M1 (#40): the cgen mangle-hint must be MODULE-scoped,
* not unit-global. When two directory-packages in the same compilation unit
* export the same leaf fn (a.math and b.math both `export fn pick`), and two
* referencing modules each `import <X>.math` aliasing `math`, every
* `math.pick()` call must mangle to the package its OWN module imported —
* not to whichever `use` the file-global hint collected first.
*
* Pre-#40 the hint (use_hint / usehint) was file-global first-match: both
* modules' `math.pick()` resolved to the same package, so one call landed
* the wrong body and returned the wrong value — IDENTICALLY on both stages
* (a byte-id-green #263-class miscompile). Gate-visible: each module's call
* has a distinct expected value, so a mis-route changes the runtime exit.
*
* row | proves
* -----------------+--------------------------------------------------
* leaf_collision | two same-leaf exported fns; each module's qualified
* | call mangles to its OWN import (111 / 222) -> 0
* collision_diff | same, with mismatched signatures — the checker's
* | curmod-preferenced resolve agrees with the hint
* | (pick(int) vs pick()) -> 0
*
* Plus a byte-id gate: cstage.s == wwstage.s on the leaf_collision unit
* (rule-10).
*/
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#include <sys/stat.h>
#include <sys/wait.h>
static int
runwait(const char *cmd)
{
int rc = system(cmd);
if (rc == -1) return -1;
if (WIFEXITED(rc)) return WEXITSTATUS(rc);
return -1;
}
struct file { const char *path; const char *content; };
struct row {
const char *label;
struct file files[6]; /* {NULL,NULL}-terminated package files */
const char *root; /* root main.ww content */
int want_exit;
};
static const struct row rows[] = {
{ "leaf_collision",
{ { "a/math/math.ww",
"package math;\n"
"export fn pick() int = { return 111; };\n" },
{ "b/math/math.ww",
"package math;\n"
"export fn pick() int = { return 222; };\n" },
{ "one/one.ww",
"package one;\n"
"import a.math;\n"
"export fn getone() int = { return math.pick(); };\n" },
{ "two/two.ww",
"package two;\n"
"import b.math;\n"
"export fn gettwo() int = { return math.pick(); };\n" },
{ NULL, NULL } },
"package main;\n"
"import one;\n"
"import two;\n"
"export fn main() int = {\n"
" if (one.getone() != 111) { return 1; };\n"
" if (two.gettwo() != 222) { return 2; };\n"
" return 0;\n"
"};\n",
0 },
{ "collision_diff",
{ { "a/math/math.ww",
"package math;\n"
"export fn pick(x: int) int = { return x + 100; };\n" },
{ "b/math/math.ww",
"package math;\n"
"export fn pick() int = { return 222; };\n" },
{ "one/one.ww",
"package one;\n"
"import a.math;\n"
"export fn getone() int = { return math.pick(11); };\n" },
{ "two/two.ww",
"package two;\n"
"import b.math;\n"
"export fn gettwo() int = { return math.pick(); };\n" },
{ NULL, NULL } },
"package main;\n"
"import one;\n"
"import two;\n"
"export fn main() int = {\n"
" if (one.getone() != 111) { return 1; };\n"
" if (two.gettwo() != 222) { return 2; };\n"
" return 0;\n"
"};\n",
0 },
};
/* write_file — create `dir/rel` in an already-owned package tree. */
static int
write_file(const char *dir, const char *rel, const char *content, int *acquired)
{
char path[512];
*acquired = 0;
snprintf(path, sizeof path, "%s/%s", dir, rel);
FILE *f = fopen(path, "wb");
if (!f) return -1;
*acquired = 1;
int rc = fputs(content, f) == EOF ? -1 : 0;
if (fclose(f) != 0) rc = -1;
return rc;
}
struct layout_owned {
int root, a, amath, b, bmath, one, two;
int files[6], mainfile;
};
/* Remove exactly the files and semantic directories acquired for one row. */
static int
cleanup_layout(const char *dir, const struct row *r, int byteid,
const struct layout_owned *owned, const int started[2])
{
char path[512], cmd[1024];
int fail = 0;
if (byteid) {
const char *tags[] = { "cstage", "wwstage" };
for (int i = 0; i < 2; i++) {
if (!started[i]) continue;
snprintf(path, sizeof path, "%s/%s.sepwork", dir, tags[i]);
snprintf(cmd, sizeof cmd, "rm -rf '%s'", path);
if (runwait(cmd) != 0) fail = 1;
snprintf(path, sizeof path, "%s/%s", dir, tags[i]);
if (unlink(path) != 0 && access(path, F_OK) == 0) fail = 1;
snprintf(path, sizeof path, "%s/%s.s", dir, tags[i]);
if (unlink(path) != 0 && access(path, F_OK) == 0) fail = 1;
}
} else {
if (started[0]) {
snprintf(path, sizeof path, "%s/main.sepwork", dir);
snprintf(cmd, sizeof cmd, "rm -rf '%s'", path);
if (runwait(cmd) != 0) fail = 1;
snprintf(path, sizeof path, "%s/main", dir);
if (unlink(path) != 0 && access(path, F_OK) == 0) fail = 1;
}
}
if (owned->mainfile) {
snprintf(path, sizeof path, "%s/main.ww", dir);
if (unlink(path) != 0 && access(path, F_OK) == 0) fail = 1;
}
for (int k = 0; r->files[k].path; k++) {
if (!owned->files[k]) continue;
snprintf(path, sizeof path, "%s/%s", dir, r->files[k].path);
if (unlink(path) != 0 && access(path, F_OK) == 0) fail = 1;
}
if (owned->amath) {
snprintf(path, sizeof path, "%s/a/math", dir);
if (rmdir(path) != 0 && access(path, F_OK) == 0) fail = 1;
}
if (owned->a) {
snprintf(path, sizeof path, "%s/a", dir);
if (rmdir(path) != 0 && access(path, F_OK) == 0) fail = 1;
}
if (owned->bmath) {
snprintf(path, sizeof path, "%s/b/math", dir);
if (rmdir(path) != 0 && access(path, F_OK) == 0) fail = 1;
}
if (owned->b) {
snprintf(path, sizeof path, "%s/b", dir);
if (rmdir(path) != 0 && access(path, F_OK) == 0) fail = 1;
}
if (owned->one) {
snprintf(path, sizeof path, "%s/one", dir);
if (rmdir(path) != 0 && access(path, F_OK) == 0) fail = 1;
}
if (owned->two) {
snprintf(path, sizeof path, "%s/two", dir);
if (rmdir(path) != 0 && access(path, F_OK) == 0) fail = 1;
}
if (owned->root && rmdir(dir) != 0) fail = 1;
return fail ? -1 : 0;
}
/* layout — acquire and lay out the row's package tree + root under `dir`. */
static int
layout(const char *dir, const struct row *r, struct layout_owned *owned)
{
char path[512];
memset(owned, 0, sizeof *owned);
if (mkdir(dir, 0755) != 0) return -1;
owned->root = 1;
snprintf(path, sizeof path, "%s/a", dir);
if (mkdir(path, 0755) != 0) goto fail;
owned->a = 1;
snprintf(path, sizeof path, "%s/a/math", dir);
if (mkdir(path, 0755) != 0) goto fail;
owned->amath = 1;
snprintf(path, sizeof path, "%s/b", dir);
if (mkdir(path, 0755) != 0) goto fail;
owned->b = 1;
snprintf(path, sizeof path, "%s/b/math", dir);
if (mkdir(path, 0755) != 0) goto fail;
owned->bmath = 1;
snprintf(path, sizeof path, "%s/one", dir);
if (mkdir(path, 0755) != 0) goto fail;
owned->one = 1;
snprintf(path, sizeof path, "%s/two", dir);
if (mkdir(path, 0755) != 0) goto fail;
owned->two = 1;
for (int k = 0; r->files[k].path; k++)
if (write_file(dir, r->files[k].path, r->files[k].content,
&owned->files[k]) != 0)
goto fail;
if (write_file(dir, "main.ww", r->root, &owned->mainfile) != 0) goto fail;
return 0;
fail:
{
int started[2] = { 0, 0 };
if (cleanup_layout(dir, r, 0, owned, started) != 0)
fprintf(stderr, "m1usehint_run: temporary cleanup failed during setup\n");
}
return -1;
}
/* run_build — build+run the row's root via `driver`; return the binary's
* exit code, or -1 on a build failure. */
static int
run_build(const char *driver, const struct row *r, int i, int *cleanup_failed)
{
char dir[64], cmd[2048];
struct layout_owned owned;
int started[2] = { 0, 0 };
*cleanup_failed = 0;
snprintf(dir, sizeof dir, "/tmp/m1usehint_%d_%d", getpid(), i);
if (layout(dir, r, &owned) != 0) return -2;
/* #93 sep layout: `-o main` emits per-unit asm under
* main.sepwork/ (each dir-pkg in its own <pkgpath>.s); binary stays
* <dir>/main. The whole tree is removed below. */
snprintf(cmd, sizeof cmd,
"cd '%s' && %s build -o main "
"main.ww 2>/dev/null", dir, driver);
started[0] = 1;
int brc = runwait(cmd);
int got = -1;
if (brc == 0) {
char outbin[128];
snprintf(outbin, sizeof outbin, "%s/main", dir);
got = runwait(outbin);
}
if (cleanup_layout(dir, r, 0, &owned, started) != 0) {
*cleanup_failed = 1;
}
return brc == 0 ? got : -1;
}
/* byteid — build the leaf_collision unit with both drivers and cmp the
* concatenated per-package .s (rule 10). Returns 0 on byte-identical. */
static int
byteid(const char *cdrv, const char *wdrv, const struct row *r,
int *cleanup_failed)
{
char dir[64], cmd[2048];
char cstem[128], wstem[128], cs[160], ws[160];
struct layout_owned owned;
int started[2] = { 0, 0 };
*cleanup_failed = 0;
snprintf(dir, sizeof dir, "/tmp/m1usehint_bid_%d", getpid());
if (layout(dir, r, &owned) != 0) return -1;
snprintf(cstem, sizeof cstem, "%s/cstage", dir);
snprintf(wstem, sizeof wstem, "%s/wwstage", dir);
snprintf(cs, sizeof cs, "%s.s", cstem);
snprintf(ws, sizeof ws, "%s.s", wstem);
/* #93 sep layout: each stage emits per-unit asm under <stem>.sepwork/
* (a.math.s, b.math.s, one.s, two.s, __root.s). The rule-10 byte-id
* gate concats each tree's per-unit *.s (sorted glob order is
* deterministic) into a flat <stem>.s and cmps the two. */
int rc = -1;
snprintf(cmd, sizeof cmd,
"cd '%s' && %s build -o '%s' "
"main.ww 2>/dev/null && cat '%s.sepwork/'*.s > '%s'",
dir, cdrv, cstem, cstem, cs);
started[0] = 1;
int cb = runwait(cmd);
snprintf(cmd, sizeof cmd,
"cd '%s' && %s build -o '%s' "
"main.ww 2>/dev/null && cat '%s.sepwork/'*.s > '%s'",
dir, wdrv, wstem, wstem, ws);
started[1] = 1;
int wb = runwait(cmd);
if (cb == 0 && wb == 0) {
snprintf(cmd, sizeof cmd, "cmp -s '%s' '%s'", cs, ws);
rc = runwait(cmd);
} else {
fprintf(stderr, "m1usehint_run: byte-id build failed "
"(cstage=%d wwstage=%d)\n", cb, wb);
}
if (cleanup_layout(dir, r, 1, &owned, started) != 0) {
*cleanup_failed = 1;
}
return rc;
}
int
main(void)
{
const char *bin = getenv("BIN");
if (!bin) bin = "out/bin";
char absbin[1024];
if (bin[0] != '/') {
char cwd[1024];
if (getcwd(cwd, sizeof cwd) == NULL) return 1;
snprintf(absbin, sizeof absbin, "%s/%s", cwd, bin);
bin = absbin;
}
char cdrv[1024], wdrv[1024];
snprintf(cdrv, sizeof cdrv, "%s/ww", bin);
snprintf(wdrv, sizeof wdrv, "%s/ww_ww", bin);
struct { const char *name; const char *drv; int gated; }
drivers[] = {
{ "cstage", cdrv, 0 },
{ "wwstage", wdrv, 1 },
{ NULL, NULL, 0 },
};
int n = (int)(sizeof rows / sizeof rows[0]);
int total = 0, fail = 0;
for (int d = 0; drivers[d].name; d++) {
if (drivers[d].gated && access(drivers[d].drv, X_OK) != 0) {
fprintf(stderr, "m1usehint_run: skip %s (no %s)\n",
drivers[d].name, drivers[d].drv);
continue;
}
for (int i = 0; i < n; i++) {
total++;
int cleanfail = 0;
int got = run_build(drivers[d].drv, &rows[i], i,
&cleanfail);
if (got != rows[i].want_exit) {
fprintf(stderr, "m1usehint_run[%s][%s]: exit=%d "
"want=%d\n", drivers[d].name, rows[i].label,
got, rows[i].want_exit);
fail++;
}
if (cleanfail) {
fprintf(stderr, "m1usehint_run[%s][%s]: temporary cleanup "
"failed\n", drivers[d].name, rows[i].label);
fail++;
}
}
}
/* rule-10 byte-id gate on the leaf_collision unit. */
if (access(wdrv, X_OK) == 0) {
total++;
int cleanfail = 0;
if (byteid(cdrv, wdrv, &rows[0], &cleanfail) != 0) {
fprintf(stderr, "m1usehint_run: cstage.s != wwstage.s "
"(byte-id break)\n");
fail++;
}
if (cleanfail) {
fprintf(stderr, "m1usehint_run: byte-id temporary cleanup "
"failed\n");
fail++;
}
}
if (fail) {
fprintf(stderr, "m1usehint_run: %d/%d failed\n", fail, total);
return 1;
}
printf("m1usehint_run: %d/%d ok\n", total, total);
return 0;
}