Files
ww/test/lang/append_structlit_evalorder_test.ww
Hojun-Cho 132ea4ee60 test: migrate Fam13 misc checker/coercion value tests to @test (#5-C6)
Final fold-2 chunk. The 12 Fam13 single-file value drivers move from
test/wcc/*_run.c into in-language @test row-tables under test/lang/:

- value rows -> test/lang/*_test.ww (12 files)
- reject rows -> runww //ww:error carriers (13, dual-stage non-vacuous)
- nullable abort rows -> runww //ww:run-exit 1 carriers (3)
- 953_globalslice_arg -> _runonly (cs!=ww checker divergence, #28)
- 788 value_not_type_neg + 953_arrlit_slice reject_assign kept as slim
  rc-only .c pins (divergent-diag dual-reject, mutation-gated); 788 #29

Coverage parity verified row-by-row vs each retired driver; advisor-
ratified carve taxonomy; two-round reviewed. Floor ratchet follows.
2026-06-24 22:59:32 +09:00

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// append_structlit_evalorder_test — #59: an append/insert of a STRUCT-LITERAL
// value evaluates the value BEFORE the len-bump (Hare order). Migrated from
// test/wcc/946_append_structlit_evalorder_run.c (value rows; cs==ww byte-id
// rides T2).
//
// #263 both-wrong-IDENTICAL: pre-fix both stages filled the literal AFTER
// cg_append_grow bumped xs.len, so a `len(xs)` field expression saw the
// post-grow length (sum 6 not 3). The asm-diff/byte-id gates are blind to it —
// only a runtime readback is the net. insert() desugars to this same arm.
// narrow_neighbor (sub-8B struct filled to capacity) catches the 8B-over-copy
// regression: a wrong tail copy clobbers the adjacent `victim` allocation.
package append_structlit_evalorder_test;
type rec = struct { f: i64 };
type narrowrec = struct { a: i32 };
@test fn append_eval() void = {
let xs: []rec = [];
append(xs, rec{ f = len(xs): i64 });
append(xs, rec{ f = len(xs): i64 });
append(xs, rec{ f = len(xs): i64 });
let s: i64 = xs[0].f + xs[1].f + xs[2].f;
assert(s == 3);
};
@test fn insert_eval() void = {
let xs: []rec = [];
append(xs, rec{ f = 100 });
append(xs, rec{ f = 200 });
insert(xs[1], rec{ f = len(xs): i64 });
assert(xs[1].f == 2);
assert(xs[0].f == 100);
assert(xs[2].f == 200);
};
@test fn narrow_neighbor() void = {
let xs: []narrowrec = [];
append(xs, narrowrec{ a = len(xs): i32 });
let victim: []i64 = [];
append(victim, 1234605616436508552i64);
let i: i32 = 1;
for (i < 8) {
append(xs, narrowrec{ a = len(xs): i32 });
i += 1;
};
let s: i32 = 0;
let j: i32 = 0;
for (j < 8) { s += xs[j].a; j += 1; };
assert(s == 28);
assert(victim[0] == 1234605616436508552i64);
};