Co-authored-by: jason.woltje <jason@diversecanvas.com> Co-committed-by: jason.woltje <jason@diversecanvas.com>
209 lines
9.6 KiB
Bash
Executable File
209 lines
9.6 KiB
Bash
Executable File
#!/usr/bin/env bash
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# test-wake-store-enqueue-race.sh — DETERMINISTIC reproduction of the wake/store
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# enqueue TOCTOU race (#927, EPIC #892; contract anchors: #908 seq-integrity).
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#
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# THE BUG (#927): cmd_enqueue calls _wake_init_dir() BEFORE _wake_lock_acquire().
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# _wake_init_dir() (pre-fix) invokes _wake_clean_stale_tmp(), which UNCONDITIONALLY
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# deletes EVERY .wake.tmp.* in the state dir. So a SECOND enqueue B, still in its
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# PRE-LOCK setup, deletes the LIVE in-flight temp write of a FIRST enqueue A that
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# is holding the enqueue lock throughout its atomic write. A's tmp->rename then
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# fails => a SPURIOUS "durable pending write FAILED" abort of a perfectly valid
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# enqueue. Reachable under live co-feed (detector + reconciler concurrently
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# enqueue).
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#
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# WHY THIS IS DETERMINISTIC (not scheduling luck): we FREEZE enqueue A exactly at
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# its rename point (tmp fully written, lock held, rename not yet issued) by
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# PATH-shadowing `mv`, and we only release A AFTER enqueue B has provably run its
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# pre-lock cleanup (detected by PATH-shadowing `flock`, which store.sh calls
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# immediately AFTER the pre-lock _wake_init_dir). No sleeps gate correctness — the
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# race window is held open by the signal files, so A's live tmp is deleted by B's
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# pre-lock cleanup every run, independent of the scheduler. This mirrors the
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# issue's "a process holding the lock the whole time still had its live tmp
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# deleted by a concurrent pre-lock cleanup".
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#
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# RED (pre-fix): A aborts with "durable pending write FAILED" (its live tmp was
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# deleted by B's pre-lock _wake_clean_stale_tmp).
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# GREEN (post-fix): stale-tmp cleanup is OFF the hot enqueue path, so B's setup
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# never touches A's live tmp. BOTH enqueues succeed with
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# DISTINCT, gapless seqs {1,2}; ZERO spurious aborts; #908
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# allocation invariants (observed_seq=2, depth=2) hold.
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#
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# Isolated: runs against a fresh WAKE_STATE_HOME temp dir. Operator-agnostic.
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set -uo pipefail
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SCRIPT_DIR="$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd)"
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STORE="$SCRIPT_DIR/store.sh"
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command -v jq >/dev/null 2>&1 || {
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echo "SKIP: jq not available" >&2
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exit 0
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}
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# The race is only meaningful when enqueues actually serialize on flock (the #908
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# lock); without flock the concurrency guarantee is already documented as
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# degraded and T10 SKIPs identically. We also PATH-shadow the real flock/mv, so
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# resolve them up front.
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if ! command -v flock >/dev/null 2>&1; then
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echo "SKIP: flock not available (enqueue lock / race window needs flock; matches T10 SKIP)"
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exit 0
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fi
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REALMV="$(command -v mv)"
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REALFLOCK="$(command -v flock)"
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TMP_ROOT="$(mktemp -d)"
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trap 'rm -rf "$TMP_ROOT"' EXIT
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FAILFILE="$TMP_ROOT/failures"
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: >"$FAILFILE"
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pass=0
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fail_msg() {
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echo " FAIL: $*" >&2
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echo "x" >>"$FAILFILE"
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}
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ok() { pass=$((pass + 1)); }
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# wait_for FILE TIMEOUT_S — poll until FILE exists (bounded). Returns non-zero on
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# timeout so a wedged reproduction fails loud instead of hanging CI.
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wait_for() {
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local f="$1" timeout="${2:-10}" waited=0
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while [ ! -e "$f" ]; do
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sleep 0.02
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waited=$((waited + 1))
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if [ "$waited" -ge $((timeout * 50)) ]; then
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return 1
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fi
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done
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return 0
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}
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echo "== T-RACE: concurrent enqueue B's pre-lock stale-tmp cleanup must NOT clobber enqueue A's in-flight write (#927) =="
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(
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WAKE_STATE_HOME="$(mktemp -d "$TMP_ROOT/state.XXXXXX")"
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export WAKE_STATE_HOME
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unset WAKE_AGENT
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STATE_DIR="$WAKE_STATE_HOME/default"
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# Establish the layout so both enqueues start from observed_seq=0 with the
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# cursor files already present (so A's only atomic write that we freeze is the
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# durable pending.jsonl write, not an init-time seed write).
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"$STORE" init >/dev/null 2>&1 || true
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# --- signal files (the race-window control plane) -------------------------
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local_sig() { printf '%s' "$WAKE_STATE_HOME/$1"; }
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A_ARM="$(local_sig A_arm)" # while present, A's mv wrapper stalls on pending.jsonl
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A_AT_RENAME="$(local_sig A_at_rename)" # A has reached the rename (tmp is LIVE, lock held)
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GO_A="$(local_sig go_A)" # release A's rename
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B_PAST_CLEANUP="$(local_sig B_past_cleanup)" # B finished pre-lock setup, about to lock
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: >"$A_ARM"
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# --- PATH shadow for enqueue A: freeze it AT the pending.jsonl rename ------
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# store.sh's _atomic_write does: mktemp .wake.tmp.XXXX -> cat > tmp -> sync ->
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# `mv -f tmp target`. Shadowing `mv` lets us hold A at the instant its tmp is
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# fully written but not yet renamed: exactly the in-flight window #927 clobbers.
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WRAP_A="$TMP_ROOT/wrapA"
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mkdir -p "$WRAP_A"
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cat >"$WRAP_A/mv" <<EOF
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#!/usr/bin/env bash
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# Stall ONLY the durable pending.jsonl rename, ONCE (disarm by removing A_ARM).
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# Every other rename passes straight through so A's later observed.set /
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# observed_seq writes behave normally on the GREEN path.
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for a in "\$@"; do :; done
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target="\${!#}"
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if [ "\$(basename "\$target")" = "pending.jsonl" ] && [ -e "$A_ARM" ]; then
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rm -f "$A_ARM"
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: >"$A_AT_RENAME" # tmp is LIVE and the lock is held: window is OPEN
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while [ ! -e "$GO_A" ]; do sleep 0.02; done
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fi
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exec "$REALMV" "\$@"
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EOF
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chmod +x "$WRAP_A/mv"
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# --- PATH shadow for enqueue B: signal the moment its pre-lock setup ended --
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# cmd_enqueue calls _wake_init_dir (pre-lock, where the buggy cleanup lives)
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# and THEN _wake_lock_acquire -> `flock 8`. Shadowing `flock` fires exactly
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# after B's pre-lock cleanup has run, so we release A only once B has already
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# had its chance to clobber A's tmp — making RED deterministic.
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WRAP_B="$TMP_ROOT/wrapB"
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mkdir -p "$WRAP_B"
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cat >"$WRAP_B/flock" <<EOF
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#!/usr/bin/env bash
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: >"$B_PAST_CLEANUP"
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exec "$REALFLOCK" "\$@"
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EOF
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chmod +x "$WRAP_B/flock"
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# --- launch A (frozen at rename), then B (runs pre-lock cleanup) -----------
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a_out="$TMP_ROOT/a.out"; a_err="$TMP_ROOT/a.err"
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b_out="$TMP_ROOT/b.out"; b_err="$TMP_ROOT/b.err"
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PATH="$WRAP_A:$PATH" "$STORE" enqueue --class actionable --locators '{"who":"A"}' \
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>"$a_out" 2>"$a_err" &
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pa=$!
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# A must reach its frozen rename with a LIVE tmp before B runs.
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if ! wait_for "$A_AT_RENAME" 10; then
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fail_msg "T-RACE: enqueue A never reached its pending.jsonl rename (harness wedged)"
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kill "$pa" 2>/dev/null || true
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: >"$GO_A"
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wait "$pa" 2>/dev/null || true
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else
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# Confirm the window is genuinely open: A holds a live in-flight tmp now.
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n_tmp="$(find "$STATE_DIR" -maxdepth 1 -name '.wake.tmp.*' -type f | grep -c . || true)"
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[ "$n_tmp" -ge 1 ] || fail_msg "T-RACE: expected A's live in-flight tmp to exist while A holds the lock (got $n_tmp)"
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# B: its PRE-LOCK _wake_init_dir runs now (pre-fix: deletes A's live tmp),
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# then it blocks on the enqueue lock (A holds it) via the flock shim.
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PATH="$WRAP_B:$PATH" "$STORE" enqueue --class actionable --locators '{"who":"B"}' \
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>"$b_out" 2>"$b_err" &
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pb=$!
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# Release A only AFTER B has provably finished its pre-lock setup.
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if ! wait_for "$B_PAST_CLEANUP" 10; then
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fail_msg "T-RACE: enqueue B never reached its lock acquire (harness wedged)"
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fi
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: >"$GO_A"
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wait "$pa"; ra=$?
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wait "$pb"; rb=$?
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a_seq="$(tr -d '[:space:]' <"$a_out")"
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b_seq="$(tr -d '[:space:]' <"$b_out")"
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# ---- THE #927 ASSERTIONS (RED pre-fix, GREEN post-fix) -----------------
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# A must NOT have been spuriously aborted by B's pre-lock cleanup.
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if [ "$ra" -ne 0 ]; then
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fail_msg "T-RACE: enqueue A was SPURIOUSLY ABORTED (rc=$ra) — its live in-flight tmp was deleted by B's pre-lock cleanup [#927]. stderr: $(tr '\n' ' ' <"$a_err")"
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fi
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if grep -q 'durable pending write FAILED' "$a_err" 2>/dev/null; then
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fail_msg "T-RACE: enqueue A reported 'durable pending write FAILED' — the exact #927 spurious abort (its tmp was clobbered mid-write by a concurrent pre-lock cleanup)."
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fi
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[ "$rb" -eq 0 ] || fail_msg "T-RACE: enqueue B should also succeed (rc=$rb). stderr: $(tr '\n' ' ' <"$b_err")"
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# Both enqueues succeeded with DISTINCT, gapless seqs {1,2} (#908 allocator).
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if [ -n "$a_seq" ] && [ -n "$b_seq" ]; then
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[ "$a_seq" != "$b_seq" ] || fail_msg "T-RACE: the two enqueues must get DISTINCT seqs (both '$a_seq')"
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lo="$a_seq"; hi="$b_seq"; [ "$a_seq" -gt "$b_seq" ] 2>/dev/null && { lo="$b_seq"; hi="$a_seq"; }
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{ [ "$lo" = "1" ] && [ "$hi" = "2" ]; } || fail_msg "T-RACE: concurrent seqs must be {1,2} (distinct, gapless), got {$lo,$hi}"
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else
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fail_msg "T-RACE: both enqueues must print an allocated seq (got A='$a_seq' B='$b_seq')"
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fi
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# #908 store invariants: both durably landed, cursor reached 2, no burned seq.
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cur="$("$STORE" cursors)"
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echo "$cur" | grep -q 'observed_seq=2' || fail_msg "T-RACE: observed_seq must reach 2 (both allocations committed) [$cur]"
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echo "$cur" | grep -q 'pending_depth=2' || fail_msg "T-RACE: both entries must be durably stored — no lost/aborted write [$cur]"
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echo "$cur" | grep -q 'consumed_seq=0' || fail_msg "T-RACE: enqueue must never advance consumed_seq [$cur]"
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# Gapless: the contiguous prefix 1..2 is consumable (no interior gap/burn).
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"$STORE" consume --upto 2 >/dev/null 2>&1 || fail_msg "T-RACE: CONSUMED 2 must succeed — seqs {1,2} are gapless (no burned seq)"
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# No stale tmp left leaking either.
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n_leak="$(find "$STATE_DIR" -maxdepth 1 -name '.wake.tmp.*' -type f | grep -c . || true)"
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[ "$n_leak" = "0" ] || fail_msg "T-RACE: $n_leak stale tmp file(s) leaked after both enqueues committed"
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fi
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) && ok
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echo
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if [ -s "$FAILFILE" ]; then
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echo "wake store enqueue-race harness: FAILED ($(grep -c . "$FAILFILE") assertion(s)) — #927 TOCTOU reproduced (RED)" >&2
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exit 1
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fi
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echo "wake store enqueue-race harness: all invariants passed ($pass group) — #927 race closed (GREEN)"
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