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.
355 lines
13 KiB
C
355 lines
13 KiB
C
/*
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* 919_array_static_init_run — runtime + byte-id net for #129 Phase
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* A.3: module-level let/def with array initializer.
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*
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* Pre-A.3 state:
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* - Int-element arrays (u8/i8/u16/u32/u64/i32 etc) already worked
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* in both stages via fold_int_literal.
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* - Float-element arrays ([N]f64, [N]f32) → undef-ref at link
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* (emit_lets array arm fold_int_literal fails on FLOATLIT).
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* - Array DEFs (def A: [N]T = [...]) → emit_defs no array arm
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* (storage missing) AND cgindex broken (reads LEAQ (BP), BX —
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* stack frame, not data section).
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* - Array-in-struct field (`def D: dt = dt{tag=42, buf=[...]}`) →
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* #129 A.2 rule-7 fatal "array field rhs not foldable" — the
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* shape parked in A.2 awaiting A.3.
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*
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* Phase A.3 fix (mirror A.1/A.2 SSoT-helper precedent):
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* - cstage: emit_array_data + emit_array_lit_bytes helpers with
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* element-kind dispatch (int via fold_int_literal preserving
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* bootstrap byte-id, float via inline bitcast + sign-XOR byte-
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* loop mirror of A.1, struct via emit_struct_lit_bytes recursion
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* mirror of A.2). Two-pass validate-then-emit avoids partial-byte
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* corruption on rhs-fold-failure.
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* - cstage: emit_lets array arm routes through helper; emit_defs
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* gains array arm.
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* - cstage: DefArray registry + def_isarraydef populated in
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* let_collect; cgindex N_INDEX direct-ident `isglobal` gate
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* widened to (let_islet || def_isarraydef).
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* - cstage: emit_struct_lit_bytes (A.2 helper) gains TY_ARRAY field
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* arm calling emit_array_lit_bytes recursively (closes A.2 parked
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* shape 15).
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* - wwstage: parallel emitarraydata + emitarraylitbytes; emitstruct
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* litbytes TY_ARRAY arm; defvartnode helper; cgindex falls through
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* to defvartnode after letvartnode nil.
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*
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* Bootstrap RISK: live consumers in lib/os, lib/bufio, lib/strings,
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* lib/encoding/utf8 (dfa + masks), lib/strconv/stof_data
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* (left_shift_table). All use typed-int-literal elements; the int-elem
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* helper path is byte-for-byte preserved → bootstrap NEUTRAL.
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*
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* Rows (size strata 1B/2B/4B/8B × count strata 1/2/4 × int/float/struct/
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* empty/no-rhs/def-variant, avoiding the 16B-evade pattern from A.2):
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*
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* - (a) `let A: [4]u8 = [1u8, 2u8, 3u8, 4u8]` — 1B regression
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* - (b) `let A: [4]u32 = [1u32, 2u32, 3u32, 4u32]` — 4B regression
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* - (c) `let A: [2]u64 = [1u64, 2u64]` — 8B regression
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* - (d) `let A: [4]i32 = [-1, -2, -3, -4]` — N_UN peel regression
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* - (e) `let A: [4]f64 = [1.5, -2.5, 3.5, -4.5]` — NEW float-elem
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* - (f) `let A: [4]f32 = [1.5f32, -2.5f32, 3.5f32, -4.5f32]` — NEW
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* f32 narrow + sign-XOR per element
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* - (g) `def A: [4]u32 = [11u32, 22u32, 33u32, 44u32]` — NEW
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* def-storage + LOAD-widening
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* - (h) `def A: [4]f64 = [1.5, 2.5, 3.5, 4.5]` — NEW def-variant of
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* float
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* - (i) `def D: dt = dt{tag=42, buf=[1u8,2u8,3u8,4u8]}` — NEW
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* closes A.2 shape 15 (struct-with-array-field)
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* - (j) `let A: [4]u8 = [0u8, 0u8, 0u8, 0u8]` — explicit-zero
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* regression
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* - (k) `let A: [1]u8 = [0u8]` — single-elem (matches lib/os/
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* emptypath pattern)
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*
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* Each row: cstage `ww build` + run asserting exit code + w6c vs
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* w6c_ww `.s` cmp (rule-10 byte-id).
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*
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* #156 (PREREQ-1) extends this with 2D `[N][M]T` static-init (a) +
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* double-index read (b) — the A.3 shape-14 capstone, consumer-driven by
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* fold-4's powers_of_ten[596][2]u64. emit_array_lit_bytes gains a
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* TY_ARRAY-element arm (recurse; esz=etype->size); cgindex leaves the
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* sub-array ADDRESS for an array element (sister of #135). Rows
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* let_2d_x, def_2d_u64 and let_struct_2d_field + the nested-`...`
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* loud-reject (rule-7) below. The D.m[i][j] global-struct-field-array
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* READ stays a
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* pre-existing gap (#160, 1D+2D, cs≠ww) out of scope here.
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*
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* Deferred:
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* - Pointer-element arrays `[N]*T = [&G, &H]` — needs DATAR per
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* element (own task/fold).
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* - `...` repeat with a nested-array element — loud-reject (#156
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* rule-7); no consumer (powers_of_ten is fully enumerated).
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* - Bare-int `[N]u8 = [1, 2, 3, 4]` — #130 (checker issue).
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* - Partial init `[4]u8 = [1u8]` — checker rejects (parser/checker
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* decision).
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*/
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#include <stdio.h>
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#include <stdlib.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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struct row { const char *label; const char *src; int want_exit; };
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static const struct row rows[] = {
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{ "let_u8_arr",
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"package main;\n"
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"let A: [4]u8 = [1u8, 2u8, 3u8, 4u8];\n"
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"export fn main() i32 = { return A[0]: i32; };\n", 1 },
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{ "let_u32_arr",
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"package main;\n"
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"let A: [4]u32 = [1u32, 2u32, 3u32, 4u32];\n"
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"export fn main() i32 = { return A[0]: i32; };\n", 1 },
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{ "let_u64_arr",
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"package main;\n"
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"let A: [2]u64 = [1u64, 2u64];\n"
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"export fn main() i32 = { return A[0]: i32; };\n", 1 },
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{ "let_i32_neg_arr",
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"package main;\n"
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"let A: [4]i32 = [-1, -2, -3, -4];\n"
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"export fn main() i32 = { return A[0]; };\n", 255 /* -1 */ },
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/* Float-element array — NEW in A.3. Includes both signs to exercise
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* the sign-XOR byte-loop per element. */
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{ "let_f64_arr",
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"package main;\n"
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"let A: [4]f64 = [1.5, -2.5, 3.5, -4.5];\n"
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"export fn main() i32 = { return (A[0]: i32); };\n", 1 },
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{ "let_f32_arr",
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"package main;\n"
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"let A: [4]f32 = [1.5f32, -2.5f32, 3.5f32, -4.5f32];\n"
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"export fn main() i32 = { return (A[0]: i32); };\n", 1 },
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/* def-variant exercises the LOAD-widening (def_isarraydef) at
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* cgindex/cgident. Storage emit also new. */
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{ "def_u32_arr",
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"package main;\n"
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"def A: [4]u32 = [11u32, 22u32, 33u32, 44u32];\n"
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"export fn main() i32 = { return A[0]: i32; };\n", 11 },
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{ "def_f64_arr",
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"package main;\n"
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"def A: [4]f64 = [1.5, 2.5, 3.5, 4.5];\n"
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"export fn main() i32 = { return (A[0]: i32); };\n", 1 },
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/* The A.2-parked shape-15 — closes via emit_struct_lit_bytes
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* TY_ARRAY field arm. */
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{ "let_struct_with_arr_field",
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"package main;\n"
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"type dt = struct { tag: i32, buf: [4]u8 };\n"
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"let D: dt = dt{tag=42, buf=[1u8, 2u8, 3u8, 4u8]};\n"
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"export fn main() i32 = { return D.tag; };\n", 42 },
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{ "let_u8_zero_arr",
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"package main;\n"
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"let A: [4]u8 = [0u8, 0u8, 0u8, 0u8];\n"
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"export fn main() i32 = { return A[0]: i32; };\n", 0 },
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{ "let_u8_single",
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"package main;\n"
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"let A: [1]u8 = [7u8];\n"
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"export fn main() i32 = { return A[0]: i32; };\n", 7 },
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/* #156 (PREREQ-1): 2D [N][M]T static-init (a) + double-index read
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* (b) — the A.3 shape-14 capstone, consumer-driven by fold-4's
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* powers_of_ten[596][2]u64. emit_array_lit_bytes recurses on the
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* TY_ARRAY element (esz=etype->size, rule-13); cgindex leaves the
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* sub-array ADDRESS (not a value) for an array element so the outer
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* index dereferences the right cell (sister of #135). */
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{ "let_2d_u64",
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"package main;\n"
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"let A: [3][2]u64 = [[1u64,2u64],[3u64,4u64],[5u64,6u64]];\n"
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"export fn main() i32 = { return A[1][0]: i32; };\n", 3 },
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{ "def_2d_u64",
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"package main;\n"
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"def A: [3][2]u64 = [[1u64,2u64],[3u64,4u64],[5u64,6u64]];\n"
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"export fn main() i32 = { return A[2][1]: i32; };\n", 6 },
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/* variable-index read — the exact fold-4 access pattern
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* (powers_of_ten[i][0]/[i][1]). 21 + 30 = 51. */
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{ "let_2d_varidx",
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"package main;\n"
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"let A: [3][2]u64 = [[10u64,11u64],[20u64,21u64],[30u64,31u64]];\n"
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"fn at(i: i32, j: i32) u64 = { return A[i][j]; };\n"
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"export fn main() i32 = { return (at(1, 1) + at(2, 0)): i32; };\n",
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51 },
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/* 8-byte 2D: must NOT hit the sz==8 scalar short-circuit (the
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* isarr8/N_TARRAY guard, #128 lesson) — routes to the array arm. */
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{ "let_2d_u32_8byte",
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"package main;\n"
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"let A: [2][1]u32 = [[7u32],[9u32]];\n"
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"export fn main() i32 = { return A[1][0]: i32; };\n", 9 },
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/* 2D write to one cell, sum all four — verifies the lvalue address
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* targets the exact cell with no neighbour clobber. 1+2+99+4=106. */
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{ "let_2d_write",
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"package main;\n"
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"let A: [2][2]u64 = [[1u64,2u64],[3u64,4u64]];\n"
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"export fn main() i32 = { A[1][0] = 99u64; return "
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"(A[0][0]+A[0][1]+A[1][0]+A[1][1]): i32; };\n", 106 },
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/* struct field that is itself a 2D array — static-init emit +
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* layout (read D.tag). The D.m[i][j] field-array READ exercises a
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* pre-existing global-struct-field-base bug (#137/#150 family,
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* 1D+2D, cs≠ww) out of PREREQ-1 scope — the array bytes are
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* covered by the cs==ww byte-id gate below. */
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{ "let_struct_2d_field",
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"package main;\n"
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"type dt = struct { tag: i32, m: [2][2]u64 };\n"
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"let D: dt = dt{tag=42, m=[[1u64,2u64],[3u64,4u64]]};\n"
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"export fn main() i32 = { return D.tag; };\n", 42 },
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/* 3D — locks recursion-depth>2 in both emit (nested TY_ARRAY arm
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* recurses twice) and read (double-then-single index, two
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* address-leaves). [[[1,2],[3,4]],[[5,6],[7,8]]]; A[1][1][0] = 7. */
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{ "let_3d_u8",
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"package main;\n"
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"let A: [2][2][2]u8 = "
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"[[[1u8,2u8],[3u8,4u8]],[[5u8,6u8],[7u8,8u8]]];\n"
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"export fn main() i32 = { return A[1][1][0]: i32; };\n", 7 },
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{ NULL, NULL, 0 }
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};
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static int
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slurp_eq(const char *a, const char *b)
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{
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FILE *fa = fopen(a, "rb");
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FILE *fb = fopen(b, "rb");
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if (!fa || !fb) { if (fa) fclose(fa); if (fb) fclose(fb); return -1; }
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int rc = 0;
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for (;;) {
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int ca = fgetc(fa);
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int cb = fgetc(fb);
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if (ca != cb) { rc = -1; break; }
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if (ca == EOF) break;
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}
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fclose(fa); fclose(fb);
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return rc;
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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 w6c[1100], w6c_ww[1100];
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snprintf(w6c, sizeof w6c, "%s/w6c", bin);
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snprintf(w6c_ww, sizeof w6c_ww, "%s/w6c_ww", bin);
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if (access(w6c_ww, X_OK) != 0) {
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fprintf(stderr, "arrinit: w6c_ww missing — cannot run "
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"the cs==ww byte-id gate (the whole point of this test)\n");
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return 1;
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}
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int n = 0, fail = 0;
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for (int i = 0; rows[i].src; i++, n++) {
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char tmpdir[64];
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snprintf(tmpdir, sizeof tmpdir, "/tmp/wwari_%d_d_%d",
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getpid(), i);
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mkdir(tmpdir, 0755);
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char rmcmd[160];
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snprintf(rmcmd, sizeof rmcmd, "rm -rf %s", tmpdir);
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char src[128];
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snprintf(src, sizeof src, "%s/wwari_%d_%d.ww",
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tmpdir, getpid(), i);
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FILE *f = fopen(src, "wb");
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if (f == NULL) { fail++; runwait(rmcmd); continue; }
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fputs(rows[i].src, f);
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fclose(f);
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char outbin[128];
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snprintf(outbin, sizeof outbin, "%s/wwari_%d_%d",
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tmpdir, getpid(), i);
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char cmd[2048];
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snprintf(cmd, sizeof cmd, "%s/ww build -o %s %s",
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bin, outbin, src);
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if (runwait(cmd) != 0) {
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fprintf(stderr, "row[%s]: cstage build failed\n",
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rows[i].label);
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fail++;
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runwait(rmcmd);
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continue;
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}
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int got = runwait(outbin);
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if (got != rows[i].want_exit) {
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fprintf(stderr, "row[%s]: cstage exit %d, want %d\n",
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rows[i].label, got, rows[i].want_exit);
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fail++;
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}
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char cs_s[128], ws_s[128];
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snprintf(cs_s, sizeof cs_s, "%s/wwari_%d_%d_cs.s",
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tmpdir, getpid(), i);
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snprintf(ws_s, sizeof ws_s, "%s/wwari_%d_%d_ww.s",
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tmpdir, getpid(), i);
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snprintf(cmd, sizeof cmd, "%s -o %s %s 2>/dev/null",
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w6c, cs_s, src);
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if (runwait(cmd) != 0) {
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fprintf(stderr, "row[%s]: w6c failed\n", rows[i].label);
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fail++; runwait(rmcmd); continue;
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}
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snprintf(cmd, sizeof cmd, "%s -o %s %s 2>/dev/null",
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w6c_ww, ws_s, src);
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if (runwait(cmd) != 0) {
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fprintf(stderr, "row[%s]: w6c_ww failed\n",
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rows[i].label);
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fail++; runwait(rmcmd); continue;
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}
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if (slurp_eq(cs_s, ws_s) != 0) {
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fprintf(stderr,
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"row[%s]: cstage/wwstage .s DIFFER (rule-10 "
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"byte-id violation)\n", rows[i].label);
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fail++;
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}
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runwait(rmcmd);
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}
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/* #156 rule-7: a `...` repeat marker with a nested-array element is
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* a loud reject in BOTH stages (no consumer needs it; powers_of_ten
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* is fully enumerated). The compile must FAIL, not silently emit
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* wrong bytes. Separate from the rows table (which asserts build
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* success). */
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{
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char src[64];
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snprintf(src, sizeof src, "/tmp/wwari_%d_rej.ww", getpid());
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FILE *f = fopen(src, "wb");
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if (f != NULL) {
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fputs("package main;\n"
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"let A: [4][2]u64 = [[1u64, 2u64]...];\n"
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"export fn main() i32 = { return 0; };\n", f);
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fclose(f);
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}
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char cmd[2048];
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snprintf(cmd, sizeof cmd, "%s -o /dev/null %s 2>/dev/null",
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w6c, src);
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int rc_cs = runwait(cmd);
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snprintf(cmd, sizeof cmd, "%s -o /dev/null %s 2>/dev/null",
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w6c_ww, src);
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int rc_ww = runwait(cmd);
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n++;
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if (rc_cs == 0 || rc_ww == 0) {
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fprintf(stderr, "row[nested_ellipsis_reject]: expected "
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"BOTH stages to reject (cs=%d ww=%d), want nonzero "
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"(#156 rule-7)\n", rc_cs, rc_ww);
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fail++;
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}
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unlink(src);
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}
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if (fail) {
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fprintf(stderr, "%d/%d array-static-init tests failed\n", fail, n);
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return 1;
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}
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printf("arrinit: %d/%d ok (cstage run + cs==ww byte-id)\n",
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n, n);
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return 0;
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||
}
|