With intermediates following the output stem, concurrent wwstage-driver builds no longer share paths - 950/990-997 join the xargs -P group. Measured: 202.7s -> 153.8s full-test wall (x2 runs race-clean); the serial tail (57.7% of wall) is gone, remainder is CPU-bound. CLAUDE.md rule 14 documents the new reality: NNN range no longer a correctness constraint, still keys phase membership / skip set / cache set.
269 lines
11 KiB
Bash
Executable File
269 lines
11 KiB
Bash
Executable File
#!/bin/sh
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# test/run — driver for `make test`. Plan 9 rc-flavoured but plain sh.
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#
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# Walks test/wcc/<NNN>_<name>.c → out/bin/test_<name> binary, fans out
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# across $JOBS (default $(nproc)) workers via xargs -P. Each worker
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# writes its status to a per-job file; the collector enumerates them in
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# lexicographic order so output stays deterministic across runs even
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# though execution interleaves. Exit non-zero if any worker failed.
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BIN=${BIN:-out/bin}
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WW=${WW:-$BIN/ww}
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# Worker mode: invoked once per test by xargs. Argv: --one <prefix> <test.c>.
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# Writes <prefix>.status; touches <prefix>.fail on a non-zero binary exit.
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if [ "$1" = "--one" ]; then
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prefix=$2
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t=$3
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name=${t##*/}
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name=${name%.c}
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short=${name#[0-9][0-9][0-9]_}
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bin=$BIN/test_$short
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if [ ! -x "$bin" ]; then
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# A missing binary means an unwired test/wcc file: `make test`
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# builds every $(TESTS) target before this runs, so the only way
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# to get here is a .c with no Makefile rule. That used to SKIP
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# and still count toward "all N tests passed" — 953_arrlit_slice
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# sat dark for weeks under a green gate. Fail loud instead.
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{
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printf 'FAIL %s (no binary %s)\n' "$name" "$bin"
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printf 'unwired test: add $(BIN)/test_%s to TESTS + a build rule in Makefile\n' "$short"
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} > "$prefix.status"
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: > "$prefix.fail"
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exit 0
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fi
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# Per-test wall-clock (task #10 baseline). Stamp around the binary run
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# only; build cost lives in `make all`, not here. Duration lands in
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# <prefix>.dur as "<sec>\t<name>" for the collector's timing section —
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# kept out of <prefix>.status so the ok/FAIL log format is untouched.
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t0=$(date +%s.%N)
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if "$bin" > "$prefix.out" 2> "$prefix.err"; then
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t1=$(date +%s.%N)
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printf 'ok %s\n' "$name" > "$prefix.status"
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else
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rc=$?
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t1=$(date +%s.%N)
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{
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printf 'FAIL %s (rc=%d)\n' "$name" "$rc"
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echo '--- stdout ---'
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cat "$prefix.out"
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echo '--- stderr ---'
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cat "$prefix.err"
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} > "$prefix.status"
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: > "$prefix.fail"
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fi
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awk -v a="$t0" -v b="$t1" -v n="$name" 'BEGIN{printf "%.3f\t%s\n", b-a, n}' \
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> "$prefix.dur"
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exit 0
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fi
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set -e
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RESULTS=$(mktemp -d "${TMPDIR:-/tmp}/wwtest.XXXXXX")
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trap 'rm -rf "$RESULTS"' EXIT
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JOBS=${JOBS:-$(nproc 2>/dev/null || echo 4)}
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# ---- content-keyed gate cache (task #10 T1; .ai/rob-testperf-go.md L1) -------
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# `make test-commit` (COMMIT=1) reports the expensive wwstage byte-id /
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# self-compile gates as `cached` when their full input set is byte-identical to
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# the last green run. Those gate outcomes are a PURE function of (stage binaries
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# + selfhost/lib/cmd/rt sources + test fixtures + this harness + the Makefile);
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# if that content hash equals the recorded last-green key the result is provably
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# unchanged, so `cached` is sound — not a guess. `make test` NEVER reads the
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# cache (it stays the no-skip pre-push bar) but a green run of the gates DOES
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# record the key, as the natural primer. A red run never records: the write is
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# guarded on fail=0 (and the fail>0 path exits before it). Cache lives under
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# out/.testcache (out/ is gitignored); `make clean` wipes out/ and thus the
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# cache, which is correct — the key is keyed on the just-built binaries, so a
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# from-scratch rebuild must start from a clean cache.
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OUT_DIR=$(dirname "$BIN")
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CACHE_DIR=$OUT_DIR/.testcache
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CACHE_FILE=$CACHE_DIR/last-green
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# The exact cached set, confirmed from the Makefile/test/run: the UNIT-guarded
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# phase-2 gates (950 + 990-997) plus the single phase-1 lib byte-id gate
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# (989_lib_byteid). The other 989_*/998/999 files are cheap functional _run
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# tests, NOT byte-id gates, and stay always-on. Every member is a deterministic
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# pure function of the hashed inputs (no /tmp/env/clock/network reads); a future
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# gate that reads outside that set must be kept OUT of this list (Go marks such
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# tests uncacheable for the same reason).
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is_cached_gate() {
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case $1 in
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950_selfcheck.c|989_lib_byteid.c|\
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990_*|991_*|992_*|993_*|994_*|995_*|996_*|997_*) return 0 ;;
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esac
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return 1
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}
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emit_cached() {
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printf 'cached %s\n' "$1" > "$RESULTS/$1.status"
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: > "$RESULTS/$1.cached"
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}
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# Content key over EVERYTHING that determines the cached gates' outcomes: the
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# stage binary md5s first (fixed order), then tracked source/fixture/harness
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# content (git ls-files is sorted → deterministic; md5sum hashes working-tree
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# bytes, so uncommitted edits flip the key too). Any changed byte flips the key
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# → the gates RUN. A missed input would be a false green (rob's veto), so the
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# set is a deliberate conservative superset (wwstage binary md5s overlap the
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# selfhost/lib source hashes, rt/ is hashed though it only reaches the gates via
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# libwwrt); an extra input only ever costs a needless honest re-run. examples/
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# is hashed because 996_dyn_ww links examples/mandelbrot/mandelbrot.{ww,o} — a
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# real gate input outside the source tree.
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testcache_key() {
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for b in ww w6c w6a w6l wwdump ww_ww w6c_ww w6a_ww w6l_ww wwdump_ww; do
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[ -f "$BIN/$b" ] && md5sum "$BIN/$b"
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done
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git ls-files selfhost lib cmd rt examples test/wcc test/run Makefile | xargs md5sum
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}
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KEY=""
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if [ "${UNIT:-0}" != "1" ]; then
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KEY=$(testcache_key 2>/dev/null | md5sum 2>/dev/null | cut -d' ' -f1) || KEY=""
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fi
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CACHE_HIT=0
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if [ "${COMMIT:-0}" = "1" ] && [ -n "$KEY" ] && [ -f "$CACHE_FILE" ] \
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&& [ "$(cat "$CACHE_FILE" 2>/dev/null)" = "$KEY" ]; then
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CACHE_HIT=1
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fi
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# Phase wall-clock stamps (task #10 baseline). Each phase records start/end
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# so the collector can report wall shares onto ken's three poles.
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run_start=$(date +%s.%N)
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# Phase 2 runs the wwstage byte-id / self-compile gates (990-997) +
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# 950_selfcheck. They're kept out of phase 1 only so the heavy 43k
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# self-compiles don't contend with the phase-1 fixture swarm; within
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# phase 2 they all run in parallel (post-T3 each build's intermediates
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# follow its output via `-o`/temp, so no member writes a path another
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# reads — see the phase-2 block below).
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for t in test/wcc/*.c; do
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[ -f "$t" ] || continue
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case ${t##*/} in
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950_*|990_*|991_*|992_*|993_*|994_*|995_*|996_*|997_*) continue ;;
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esac
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name=${t##*/}; name=${name%.c}
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# The only cached gate that lives in phase 1 is 989_lib_byteid; on a
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# content-key hit report it cached instead of re-running it.
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if [ "$CACHE_HIT" = 1 ] && is_cached_gate "${t##*/}"; then
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emit_cached "$name"
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continue
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fi
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printf '%s/%s\0%s\0' "$RESULTS" "$name" "$t"
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done | xargs -0 -n2 -P "$JOBS" "$0" --one || true
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p1_end=$(date +%s.%N)
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# UNIT=1 (make test-unit) is the inner-loop short path: skip the wwstage
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# byte-id gates (990-997) and 950_selfcheck entirely. Pre-push uses
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# `make test` for the full suite.
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if [ "${UNIT:-0}" != "1" ]; then
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if [ "$CACHE_HIT" = 1 ]; then
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# Content key matched last-green → the wwstage byte-id / self-compile
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# gates are provably unchanged. Report them cached; do NOT re-run.
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for t in test/wcc/990_*.c test/wcc/991_*.c test/wcc/992_*.c \
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test/wcc/993_*.c test/wcc/994_*.c test/wcc/995_*.c \
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test/wcc/996_*.c test/wcc/997_*.c test/wcc/950_*.c; do
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[ -f "$t" ] || continue
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name=${t##*/}; name=${name%.c}
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emit_cached "$name"
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done
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else
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p2par_start=$(date +%s.%N)
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# Phase 2 — the wwstage byte-id / self-compile gates, all parallel.
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# Pre-T3 the source-tree writers (993/995/950) ran in a serial tail
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# because ww_ww wrote intermediates next to every traversed source, so
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# they raced each other AND the 990/991/992/994 readers. T3 made every
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# build's .combined.ww/.s/.o follow its OUTPUT (`-o`/per-pid temp): 993
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# → its dc/dw workdirs, 995 → /tmp/wwsr_<pid>_<tool>, 950 → /tmp only.
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# No member now writes a stem another reads (the readers see only the
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# stable make-all regen), so the whole group fans out via xargs -P.
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for t in test/wcc/990_*.c test/wcc/991_*.c test/wcc/992_*.c \
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test/wcc/993_*.c test/wcc/994_*.c test/wcc/995_*.c \
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test/wcc/996_*.c test/wcc/997_*.c test/wcc/950_*.c; do
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[ -f "$t" ] || continue
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name=${t##*/}; name=${name%.c}
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printf '%s/%s\0%s\0' "$RESULTS" "$name" "$t"
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done | xargs -0 -n2 -P "$JOBS" "$0" --one || true
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p2par_end=$(date +%s.%N)
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fi
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# combined.ww freshness gate (#110): 990/995 above unconditionally
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# regenerate every tracked combined.ww amalgamation, so a diff vs HEAD
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# here means an embedded source changed without its derived artifact
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# being regenerated + committed (the #28 staleness hole the per-file
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# byte-id gates were blind to). git ls-files keeps new combined.ww
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# auto-covered (rule-13 SSoT). Lives inside the UNIT guard because
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# test-unit skips 990/995 and thus the regen.
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name=combined_ww_fresh
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if git diff --exit-code -- $(git ls-files '*.combined.ww') > /dev/null 2>&1; then
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printf 'ok %s\n' "$name" > "$RESULTS/$name.status"
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else
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{
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printf 'FAIL %s (stale; regen + commit the derived amalgamation)\n' "$name"
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echo '--- stale combined.ww ---'
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git diff --name-only -- $(git ls-files '*.combined.ww')
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} > "$RESULTS/$name.status"
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: > "$RESULTS/$name.fail"
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fi
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fi
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fail=0
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ran=0
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cached=0
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for s in "$RESULTS"/*.status; do
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[ -f "$s" ] || continue
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cat "$s"
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prefix=${s%.status}
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if [ -f "$prefix.cached" ]; then
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cached=$((cached + 1))
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else
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ran=$((ran + 1))
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fi
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[ -f "$prefix.fail" ] && fail=$((fail + 1))
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done
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# ---- ww source-level tests ----------------------------------------------
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if [ -d test/lang ]; then
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for f in test/lang/*/*.ww; do
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[ -f "$f" ] || continue
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echo "skip $f (ww run not online yet)"
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done
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fi
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# ---- timing (task #10 baseline) -----------------------------------------
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# Per-test durations + phase walls. Emitted after the per-test ok/FAIL dump
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# but before the summary line's exit checks, so timing prints even on the
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# failure path; the "all N tests passed" summary stays the last line. No log
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# consumer is disturbed: the "---" delimiters and "<sec>\t<name>" rows match
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# neither the "all N tests passed" nor the "FAIL" grep keys.
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run_end=$(date +%s.%N)
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echo '--- timing: per-test (sec, desc) ---'
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cat "$RESULTS"/*.dur 2>/dev/null | sort -rn
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echo '--- timing: phase walls (sec) ---'
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awk -v rs="$run_start" -v p1e="$p1_end" \
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-v ppar_s="$p2par_start" -v ppar_e="$p2par_end" \
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-v pser_s="$p2ser_start" -v pser_e="$p2ser_end" \
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-v re="$run_end" 'BEGIN{
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printf "phase1_parallel\t%.3f\n", p1e - rs
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if (ppar_e != "") printf "phase2_parallel\t%.3f\n", ppar_e - ppar_s
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if (pser_e != "") printf "phase2_serial_tail\t%.3f\n", pser_e - pser_s
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printf "total\t%.3f\n", re - rs
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}'
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if [ $ran -eq 0 ] && [ $cached -eq 0 ]; then
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echo "no tests were run"
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exit 1
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fi
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if [ $fail -gt 0 ]; then
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echo "$fail test(s) failed"
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exit 1
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fi
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# Green and the gates actually RAN (not a cache hit, not test-unit): record the
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# content key as the last-green primer. A red run exits above, never here.
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if [ "${UNIT:-0}" != "1" ] && [ "$CACHE_HIT" != 1 ] && [ -n "$KEY" ]; then
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mkdir -p "$CACHE_DIR" && printf '%s\n' "$KEY" > "$CACHE_FILE"
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fi
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[ $cached -gt 0 ] && echo "$cached gate(s) cached (content key matched last green)"
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echo "all $ran tests passed"
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