Files
ww/test/misc/arrglob_test.ww
Hojun-Cho aab9ec5e5f test: birth test/misc + port the arrglob DATAW observer; retire 689_arrglob_nodup_run
test/misc hosts the residual mixed-shape observers (divergence pins,
stamp/stderr probes, .wwi trees) on testenv, wired into test-compiler
beside the sep/xmod/asm families; its rule declares both full
per-stage toolchains plus the wwdump twins for the coming files.
The 689 port keeps the both-driver run-exit-6 backstop and the
per-stage absolute DATAW row count (linker dedup and byte-id sweeps
are both blind to a symmetric double-emit).
2026-08-08 15:05:52 +09:00

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package arrglob_test;
// #12: a no-init module-level array global emits its zero-fill DATAW
// row EXACTLY ONCE. Port of the retired native carrier
// test/wcc/689_arrglob_nodup_run.c; every assertion preserved. The
// wwstage bug was a SIZE-keyed (sz == 24) str-fallback arm matching a
// [3]u64 global on top of the TY_ARRAY arm — two identical rows the
// linker deduped, so runtime and byte-id-only sweeps stayed blind to
// the absolute count: the per-stage count == 1 is the unowned claim.
//
// Legs: build+run exit 6 through both driver stages (correctness
// backstop), then per-stage `DATAW main.g(SB)` occurrence count == 1
// over the emitted .s (both stages emitting 2 identical rows would
// pass a byte-id sweep).
import os;
import os.exec;
import strings;
import testenv;
import time;
fn fail(label: str, why: str) void = {
let m: str = strings.concat("arrglob FAIL: ", label, " -- ", why,
"\n");
os.write(2, m.ptr, m.len: u64);
assert(false);
};
fn tmo() time.duration = {
return (240i64 * (time.second: i64)): time.duration;
};
fn src() str = {
return strings.concat(
"package main;\n",
"let g: [3]u64;\n",
"export fn main() i32 = {\n",
" g[0] = 1; g[1] = 2; g[2] = 3;\n",
" return (g[0] + g[1] + g[2]): i32;\n",
"};\n");
};
fn runcode(dir: str, name: str, argv: []str) i32 = {
let co: testenv.commandout;
testenv.runcommand(dir, dir, name, argv, tmo(), &co);
if (co.termination != exec.termination.EXIT) { return -1; };
return co.code;
};
@test fn rundrivers() void = {
let drvs: []str = ["ww", "ww_ww"];
let s: i32 = 0;
for (s < 2) {
let td: str = testenv.fresh();
testenv.writefile(strings.concat(td, "/t.ww"), src());
let av: []str = [testenv.driver(drvs[s]), "build", "-o",
"t", "t.ww"];
if (runcode(td, strings.concat("build_", drvs[s]), av) != 0) {
fail(drvs[s], "driver build failed");
};
let rav: []str = [strings.concat(td, "/t")];
if (runcode(td, strings.concat("run_", drvs[s]), rav) != 6) {
fail(drvs[s], "run-exit != 6");
};
testenv.clean(td);
s += 1;
};
};
@test fn datawcount() void = {
let tools: []str = ["w6c", "w6c_ww"];
let s: i32 = 0;
for (s < 2) {
let td: str = testenv.fresh();
testenv.writefile(strings.concat(td, "/t.ww"), src());
let av: []str = [testenv.driver(tools[s]), "-o",
strings.concat(td, "/t.s"),
strings.concat(td, "/t.ww")];
let co: testenv.commandout;
testenv.runcommand(td, td, tools[s], av, tmo(), &co);
if (co.termination != exec.termination.EXIT || co.code != 0) {
fail(tools[s], "compile failed");
};
let asm: str = testenv.readfile(strings.concat(td, "/t.s"));
let n: i32 = testenv.occurrences(asm, "DATAW main.g(SB)");
if (n != 1) {
fail(tools[s],
"DATAW main.g rows != 1 (double-emit #12)");
};
testenv.clean(td);
s += 1;
};
};