Files
ww/test/wcc/946_structparam_run.c
Hojun-Cho ce3a25a0b4 test: contain sepwork scratch per-driver tmpdir, fix /tmp+in-repo leak (#8)
The wcc test drivers ran `ww build <bare-/tmp src>` with no -o, so the
compiler's <stem>.sepwork scratch landed beside the source and was never
cleaned: unbounded /tmp growth (2195 stale dirs observed) that fills tmpfs
and fabricates phantom test failures + silent harness aborts, and for
in-repo fixture builds leaked .sepwork into the tracked tree.

Each leaking build now writes its source + output inside a per-invocation
tmpdir, passes -o <tmpdir>/<stem> so the .sepwork lands inside it, and
rm -rf's the tmpdir on every exit path -- including fopen-fail and the
expected-fail reject builds (scratch is mkdir'd before the build can fail).
`ww run` and explicit-`-o`/byte-id helpers are left as-is; the 990/993
byte-id comparison logic is byte-for-byte unchanged.

Two items filed separately (this commit holds the no-Makefile / no-main.c
rail):
- #13: a stale <src>.s byte-id readback (749) silently no-ops since
  separate-compile emits .s to <ostem>.sepwork/__root.s; documented inline.
- #14: build-system Makefile recipes build selfhost/cmd/*/main.ww with no
  -o and leak main.sepwork in-tree (bounded, gitignored; own commit).

One concern -- sepwork leak hygiene -- across 228 drivers; uniform
transform applied per-file and two-round reviewed. make test: all 402
passed, zero net-new /tmp scratch, zero test-driven in-repo .sepwork.
2026-06-22 23:29:39 +09:00

306 lines
11 KiB
C

/*
* 946_structparam_run — runtime + byte-id + asm-pattern net for #165, the
* float-bearing struct-PARAM SysV ABI (the param twin of #171's struct
* RETURN, and the struct counterpart of #163's per-element tuple PARAM).
*
* THE BUG (#165, cs==ww but SysV-non-conformant on master): struct args
* ARE handled but GP-ONLY — the cgcall pop drained every struct eightbyte
* into the INTEGER arg regs (DI/SI/..) and the callee cgfnparams receive
* MOVQ'd them back from the same GP regs. So a `struct { a: f64, b: f64 }`
* arg landed in DI/SI instead of X0/X1. For a pure INTERNAL ww call (both
* ends compiled by the same stage) the f64 bits still round-trip through
* the GP regs intact, so the runtime VALUE was correct AND both stages
* were symmetric-GP — the cs==ww gate and a value check are therefore
* NECESSARY-NOT-SUFFICIENT here (cf. 907_f32arg_run, same situation). The
* genuine defect is SysV register-CLASS conformance, observable only in
* the emitted asm (and at a real ABI boundary). The discriminating
* dimension is therefore the asm pattern (c) below.
*
* THE FIX: per-EIGHTBYTE SysV classification (structs classify per
* eightbyte, unlike #163's per-element tuples). Each 8-byte eightbyte that
* is a lone f64 rides the SSE arg cursor (X0..X7); a pure-INTEGER eightbyte
* rides the INTEGER cursor (DI/SI/..). SEND (cgcall pop) MOVSD's the float
* eightbyte off (SP) into the next XMM; RECV (cgfnparams) MOVSD's the XMM
* into the param slot. Symmetric across cstage (cmd/w6c/cgen.c
* struct_float_class + the cgcall pop arm + cgfnparams) and wwstage
* (cgenutil.ww structfloatclass + cgenexpr.ww cgcall pop + cgendecl.ww).
*
* THE FALLBACK GATE: only a struct whose every eightbyte is pure-INT or a
* lone f64 qualifies. An f32 field packs two f32 into ONE SSE eightbyte
* (needs packing — deferred #165b); a naive per-field reuse would WRONGLY
* route its two f32 to two SSE regs. struct{f32,f32} therefore STAYS on
* the GP transport (correct + byte-identical current behavior). The
* f32f32 row asserts BOTH the correct round-tripped value AND the ABSENCE
* of an SSE receive, proving the gate caught it.
*
* Each row carries THREE dimensions:
* (a) cstage `ww build` + run — exit code (end-to-end round-trip).
* (b) w6c vs w6c_ww `.s` cmp — rule-10 byte-id (both stages identical).
* (c) asm-pattern on the CALLEE function's receive: a lone-f64 eightbyte
* is received `MOVSD Xn, -off(BP)` (XMM -> slot); a GP eightbyte is
* `MOVQ DI, ...`. The marker is scoped to the callee `main.use` text
* (main's float-literal init also emits `MOVSD X0, -off(BP)`, so a
* whole-file grep would not discriminate). PRESENT for the SSE-routed
* rows, ABSENT for the GP / fallback rows. A pre-fix (or GP-regressed)
* build receives every struct eightbyte via MOVQ -> marker absent,
* which is exactly what (c) catches.
*/
#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 row {
const char *label;
const char *src;
int want_exit;
int want_sse; /* 1 = callee must receive an f64 eightbyte via XMM */
};
static const struct row rows[] = {
/* HEADLINE — struct{f64,f64}. Both eightbytes lone f64 -> X0,X1. The
* callee receives `MOVSD X0, slot` + `MOVSD X1, slot`. s.a+s.b = 8.0. */
{ "f64f64_arg",
"package main;\n"
"type pff = struct { a: f64, b: f64 };\n"
"fn use(s: pff) f64 = { return s.a + s.b; };\n"
"export fn main() i32 = {\n"
"\tlet s: pff = pff { a = 3.0, b = 5.0 };\n"
"\tif (use(s) != 8.0) { return 1; };\n"
"\treturn 0;\n"
"};\n", 0, 1 },
/* struct{f64,i64} — eb0 lone f64 (X0), eb1 pure-INT (DI). Class is
* independent of eightbyte position. (s.a:i64)+s.b = 3+5 = 8. */
{ "f64i64_arg",
"package main;\n"
"type pfi = struct { a: f64, b: i64 };\n"
"fn use(s: pfi) i64 = { return (s.a: i64) + s.b; };\n"
"export fn main() i32 = {\n"
"\tlet s: pfi = pfi { a = 3.0, b = 5 };\n"
"\tif (use(s) != 8) { return 1; };\n"
"\treturn 0;\n"
"};\n", 0, 1 },
/* struct{i64,f64} — order-swap: eb0 pure-INT (DI), eb1 lone f64 (X0,
* the first float still gets X0). Confirms the float lands in the next
* XMM regardless of position. s.a + (s.b:i64) = 3+5 = 8. */
{ "i64f64_arg",
"package main;\n"
"type pif = struct { a: i64, b: f64 };\n"
"fn use(s: pif) i64 = { return s.a + (s.b: i64); };\n"
"export fn main() i32 = {\n"
"\tlet s: pif = pif { a = 3, b = 5.0 };\n"
"\tif (use(s) != 8) { return 1; };\n"
"\treturn 0;\n"
"};\n", 0, 1 },
/* GP REGRESSION — struct{i64,i64}: every eightbyte pure-INT, no float
* to route, so it STAYS on the GP transport unchanged (the in-tree
* byte-id case). Callee receives via MOVQ DI/SI -> no SSE marker. */
{ "i64i64_arg",
"package main;\n"
"type pii = struct { a: i64, b: i64 };\n"
"fn use(s: pii) i64 = { return s.a + s.b; };\n"
"export fn main() i32 = {\n"
"\tlet s: pii = pii { a = 3, b = 5 };\n"
"\tif (use(s) != 8) { return 1; };\n"
"\treturn 0;\n"
"};\n", 0, 0 },
/* FALLBACK GATE — struct{f32,f32}: two f32 pack into ONE SSE eightbyte
* (8B struct). The gate rejects f32, so the struct stays GP-routed
* (received via MOVQ DI). The value still round-trips (the 8B MOVQ
* carries both f32) -> (s.a:i64)+(s.b:i64) = 3+5 = 8. Asserts BOTH the
* correct value AND no SSE receive, proving the gate caught it (NOT
* routed to 2 SSE regs). The 2-f32-per-eightbyte packing is #165b. */
{ "f32f32_arg_fallback",
"package main;\n"
"type pf32 = struct { a: f32, b: f32 };\n"
"fn use(s: pf32) i64 = { return (s.a: i64) + (s.b: i64); };\n"
"export fn main() i32 = {\n"
"\tlet s: pf32 = pf32 { a = 3.0f32, b = 5.0f32 };\n"
"\tif (use(s) != 8) { return 1; };\n"
"\treturn 0;\n"
"};\n", 0, 0 },
/* CURSOR INDEPENDENCE — i64 scalar + struct{f64,f64}. n->DI (INTEGER
* cursor), s.a->X0, s.b->X1 (SSE cursor), independent counters.
* n + s.a + s.b = 2+3+5 = 10. SSE receive present. */
{ "scalar_plus_f64f64",
"package main;\n"
"type pff = struct { a: f64, b: f64 };\n"
"fn use(n: i64, s: pff) i64 = {\n"
"\treturn n + (s.a: i64) + (s.b: i64);\n"
"};\n"
"export fn main() i32 = {\n"
"\tlet s: pff = pff { a = 3.0, b = 5.0 };\n"
"\tif (use(2, s) != 10) { return 1; };\n"
"\treturn 0;\n"
"};\n", 0, 1 },
{ NULL, NULL, 0, 0 }
};
static int
slurp_eq(const char *a, const char *b)
{
FILE *fa = fopen(a, "rb");
FILE *fb = fopen(b, "rb");
if (!fa || !fb) { if (fa) fclose(fa); if (fb) fclose(fb); return -1; }
int rc = 0;
for (;;) {
int ca = fgetc(fa);
int cb = fgetc(fb);
if (ca != cb) { rc = -1; break; }
if (ca == EOF) break;
}
fclose(fa); fclose(fb);
return rc;
}
/* Does the callee `main.use` receive an f64 eightbyte via an XMM reg?
* Isolate that function's text (its receive of an SSE eightbyte is the
* only `MOVSD Xn, -off(BP)` store-to-slot in it; the body of these probes
* stores no f64 local, and main's float-literal init — also a
* `MOVSD X0, -off(BP)` — lives in a different function), then look for an
* XMM-source store to a negative BP offset. Returns 1/0, or -1 on error. */
static int
callee_receives_sse(const char *path)
{
FILE *f = fopen(path, "rb");
if (!f) return -1;
static char buf[1 << 18];
size_t n = fread(buf, 1, sizeof buf - 1, f);
fclose(f);
buf[n] = '\0';
char *start = strstr(buf, "TEXT main.use");
if (!start) return -1;
char *end = strstr(start + 1, "\nTEXT ");
if (end) *end = '\0';
/* `MOVSD\tX0, -` is the receive of the first (or only) f64 eightbyte;
* a GP-routed struct never emits it (MOVQ DI instead). */
return strstr(start, "MOVSD\tX0, -") != NULL ? 1 : 0;
}
int
main(void)
{
const char *bin = getenv("BIN");
if (!bin) bin = "out/bin";
char absbin[2200];
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 w6c[2300], w6c_ww[2300];
snprintf(w6c, sizeof w6c, "%s/w6c", bin);
snprintf(w6c_ww, sizeof w6c_ww, "%s/w6c_ww", bin);
if (access(w6c_ww, X_OK) != 0) {
fprintf(stderr, "structparam: w6c_ww missing — cannot run the "
"cs==ww byte-id gate\n");
return 1;
}
int n = 0, fail = 0;
for (int i = 0; rows[i].src; i++, n++) {
/* src, binary, and both .s files all live under one tmpdir so
* the compiler's path-derived .sepwork scratch stays inside it;
* a single `rm -rf` at the end of all phases reclaims it. */
char tmpdir[64], src[128], outbin[128];
char cs_s[128], ws_s[128], rmcmd[160];
snprintf(tmpdir, sizeof tmpdir, "/tmp/wwstp_%d_d_%d",
getpid(), i);
mkdir(tmpdir, 0755);
snprintf(src, sizeof src, "%s/wwstp_%d_%d.ww",
tmpdir, getpid(), i);
snprintf(outbin, sizeof outbin, "%s/wwstp_%d_%d",
tmpdir, getpid(), i);
snprintf(cs_s, sizeof cs_s, "%s/wwstp_%d_%d_cs.s",
tmpdir, getpid(), i);
snprintf(ws_s, sizeof ws_s, "%s/wwstp_%d_%d_ww.s",
tmpdir, getpid(), i);
snprintf(rmcmd, sizeof rmcmd, "rm -rf %s", tmpdir);
FILE *f = fopen(src, "wb");
if (f == NULL) { runwait(rmcmd); fail++; continue; }
fputs(rows[i].src, f);
fclose(f);
char cmd[4096];
/* (a) cstage build + run. */
snprintf(cmd, sizeof cmd, "%s/ww build -o %s %s",
bin, outbin, src);
if (runwait(cmd) != 0) {
fprintf(stderr, "row[%s]: cstage build failed\n",
rows[i].label);
fail++;
runwait(rmcmd);
continue;
}
int got = runwait(outbin);
if (got != rows[i].want_exit) {
fprintf(stderr, "row[%s]: cstage exit %d, want %d\n",
rows[i].label, got, rows[i].want_exit);
fail++;
}
/* (b) cs==ww byte-id gate: emit .s from both stages, cmp. */
snprintf(cmd, sizeof cmd, "%s -o %s %s 2>/dev/null",
w6c, cs_s, src);
if (runwait(cmd) != 0) {
fprintf(stderr, "row[%s]: w6c failed\n", rows[i].label);
fail++; runwait(rmcmd); continue;
}
snprintf(cmd, sizeof cmd, "%s -o %s %s 2>/dev/null",
w6c_ww, ws_s, src);
if (runwait(cmd) != 0) {
fprintf(stderr, "row[%s]: w6c_ww failed\n",
rows[i].label);
fail++; runwait(rmcmd); continue;
}
if (slurp_eq(cs_s, ws_s) != 0) {
fprintf(stderr,
"row[%s]: cstage/wwstage .s DIFFER (rule-10 "
"byte-id violation)\n", rows[i].label);
fail++;
}
/* (c) asm-pattern discriminator on the callee receive. byte-id
* (b) proves ww_s mirrors cs_s, so checking cs_s suffices. */
int sse = callee_receives_sse(cs_s);
if (sse < 0) {
fprintf(stderr, "row[%s]: cannot scan callee .s\n",
rows[i].label);
fail++;
} else if (sse != rows[i].want_sse) {
fprintf(stderr,
"row[%s]: callee SSE receive %s, want %s "
"(register-class discriminator)\n",
rows[i].label, sse ? "present" : "absent",
rows[i].want_sse ? "present" : "absent");
fail++;
}
runwait(rmcmd);
}
if (fail) {
fprintf(stderr, "%d/%d struct-param tests failed\n", fail, n);
return 1;
}
printf("structparam: %d/%d ok (cstage run + cs==ww byte-id + "
"SSE-receive asm)\n", n, n);
return 0;
}