Files
gbrain/scripts/run-unit-parallel.sh
T
84fed4194a v0.41.11.0 feat: conversation retrieval upgrade — production-bar replacement for PR #1406 (#1446)
* v0.41.11.0 feat: conversation retrieval upgrade — production-bar replacement for PR #1406

Long chat threads stop swallowing your search results. The recall miss
class on long iMessage/Slack imports (60K+ msg history; a chunk that
reads only "Locker 93 code 9494" has no topical anchor because "cabin"
was established 50K messages earlier) gets fixed by walking
conversation/meeting/slack/email pages, splitting into time-windowed
segments (30-min gap or 30-msg cap), prepending a topical/temporal
header, and running through the existing extractFactsFromTurn() so
the resulting anchor-rich facts surface in gbrain search.

This is the production-bar replacement for PR #1406 (which closes
LAST per Codex T6d, AFTER this PR is green). The bug fix survives 1:1;
the wrapping closes 14 load-bearing issues the original PR deferred
or shipped silent bugs around. The wave went through CEO scope review,
3 rounds of spec review, 2 rounds of Codex outside voice grounding
the plan against actual code, and 2 passes of eng review.

Version-slot note: originally planned as v0.41.2.0; master shipped its
own v0.41.2.0 (lens packs) plus v0.41.3-6.0 between plan-time and
ship-time. Re-bumped to v0.41.11.0 (next free slot; v0.41.7-10 claimed
by other open PRs).

Key files (new):
- src/commands/extract-conversation-facts.ts — CLI command with
  --types, --max-cost-usd, --background, --override-disabled,
  --slug, --dry-run, --limit, --since, --force, --sleep,
  --segment-limit, --source-id. Strict per-source core; two-phase
  page enumeration (paginated listPages with 10×25MB cap = 250MB
  worst case); 25MB body cap; page-global row_num accumulator
  (Codex C1 unique-index collision fix); page-level TERMINAL audit
  row after all segments commit (Codex C7 durable extraction marker);
  optional opts.budgetTracker (Codex C5 — nested withBudgetTracker
  REPLACES, so caller-managed scope passes tracker through); reads
  compiled_truth + timeline (F1 — PR silently dropped timeline half);
  honors facts.extraction_enabled kill-switch with --override-disabled
  escape (F2); --types reads cycle config as single source of truth
  (Eng-v2 A2); fingerprint on sourceId only (Eng-v2 A3 — widening
  types doesn't invalidate completion); string-encoded op-checkpoint
  entries "sourceId|slug|endIso" for resume; segment caps tuned
  6500/30 (Eng-v2 T5) to stay under extract.ts MAX_TURN_TEXT_CHARS=8000.
- src/core/cycle/conversation-facts-backfill.ts — cycle phase wrapper
  (default OFF). Iterates listSources() directly; creates ONE
  brain-wide BudgetTracker per tick + wraps the loop in
  withBudgetTracker + passes tracker through opts.budgetTracker so
  core doesn't nest-replace. Two-layer cost AND walltime protection:
  per-source caps ($1, 20min) AND brain-wide caps ($5, 30min).
- test/extract-conversation-facts.test.ts — 27 unit cases (parse,
  segment, render, checkpoint encoding, fingerprint, terminal audit
  row, row_num accumulator, F2 kill-switch, --override-disabled).
- skills/migrations/v0.41.11.0.md — agent-facing migration guide.

Key files (modified):
- src/commands/jobs.ts — register extract-conversation-facts Minion
  handler. NOT in PROTECTED_JOB_NAMES; BudgetExhausted catch + persist
  + mark completed with result.budget_exhausted (NOT a failure).
- src/commands/doctor.ts — computeConversationFactsBacklogCheck (3-state:
  SKIPPED when feature disabled per Eng-v2 C9, OK at backlog=0, WARN
  at >10 with paste-ready remediation step via makeRemediationStep).
  Doctor query is source-scoped (Codex C2 cross-source safety) and
  matches the TERMINAL audit row (Codex C7), not any-fact-for-slug.
- src/commands/sources.ts — runAudit extended with
  facts_backfill_estimate field for cost preview.
- src/cli.ts — CLI_ONLY + CLI_ONLY_SELF_HELP + THIN_CLIENT_REFUSED_COMMANDS
  + dispatch case for extract-conversation-facts.
- src/core/cycle.ts — new CyclePhase 'conversation_facts_backfill';
  PHASE_SCOPE='source' (taxonomy only per cycle.ts:131 — wrapper does
  own multi-source iteration); wired into ALL_PHASES + NEEDS_LOCK_PHASES;
  dispatch block runs between consolidate and embed.
- src/core/migrate.ts — migration v94 adds partial index
  idx_facts_extract_conversation_session ON facts(source_id, source_session)
  WHERE source LIKE 'cli:extract-conversation-facts%' so doctor query
  stays fast on million-fact brains. v14 precedent: transaction:false +
  invalid-index pre-drop on Postgres, plain CREATE INDEX on PGLite.
- src/core/schema-pack/base/gbrain-base.yaml — promote conversation
  (temporal, extractable) and atom (annotation, NOT extractable —
  atoms ARE the extracted form) into base. Flip concept.extractable:
  true semantically (cosmetic on backstop path per Codex T3; the
  original grandfather migration was solving a phantom, dropped).
  Filing rules added for both new types.
- src/core/schema-pack/base/gbrain-recommended.yaml — remove duplicate
  conversation (now inherits via extends: gbrain-base).
- src/core/types.ts — ALL_PAGE_TYPES extended with conversation, atom.
- test/extractable-pack.test.ts — updated parity gate (24 page types
  vs PR's 22; concept + conversation now extractable, atom not).
- test/schema-cli.test.ts — page-count expectation 22→24.
- VERSION + package.json bumped to 0.41.11.0.
- CHANGELOG.md release-summary in the required ELI10-first voice +
  itemized changes section.
- CLAUDE.md Key Files entry for the new modules + architecture notes.
- llms.txt + llms-full.txt regenerated.

Plan + decisions persisted at:
  ~/.claude/plans/system-instruction-you-are-working-linear-unicorn.md
CEO plan at:
  ~/.gstack/projects/garrytan-gbrain/ceo-plans/2026-05-25-conversation-retrieval-upgrade.md

Co-Authored-By: garrytan-agents <garrytan-agents@users.noreply.github.com>
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix: align v0.41.11.0 phase ordering + bump hardcoded counts after master merge

Three CI failures from the master merge in this branch:

1. test/phase-scope-coverage.test.ts pinned `ALL_PHASES.length === 19`
   and `Object.keys(PHASE_SCOPE).length === 19`. After merging master's
   v0.41 lens-packs (extract_atoms + synthesize_concepts) + my new
   conversation_facts_backfill phase, the total is 20.

2. test/core/cycle.serial.test.ts had two hardcoded `19` assertions
   (`hookCalls` and `report.phases.length`) tracking the same count.
   Both bumped to 20.

3. cycle.serial's `'default: all 6 phases run in order'` test asserts
   `report.phases.map(p => p.phase) === ALL_PHASES`. My initial commit
   put `conversation_facts_backfill` in ALL_PHASES between consolidate
   and propose_takes, but the runCycle dispatch block runs it AFTER
   the calibration trio (propose_takes / grade_takes / calibration_profile)
   and BEFORE embed. List and dispatch order didn't match, so the
   equality assertion failed.

   Resolution: moved 'conversation_facts_backfill' in ALL_PHASES to
   AFTER 'calibration_profile' so list-order matches dispatch-order.
   The dispatch block placement was correct (and remains correct);
   the list-position comment originally said "AFTER consolidate" but
   the dispatch runs it after the WHOLE consolidate→calibration_profile
   block, not just after consolidate. Comment now reflects reality.

Verified: 61/61 pass across the 3 affected test files (2.9s wallclock).

The CI logs also showed a "(unnamed) [3058.07ms]" failure in shard 1;
unable to reproduce locally (test/scripts/run-unit-parallel.test.ts
passes 6/6 in 1s). Suspected CI-load flakiness under bun's parallel
scheduler. If it persists on the next CI run, will dig in.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(ci): orphan sleep cleanup in run-unit-parallel.sh heartbeat

Two CI runs in a row reported `(fail) (unnamed) [~2400ms]` in shard 1
on this PR. Investigation:

- CI's end-of-job cleanup logged: "Terminate orphan process: pid (3344)
  (sleep)" × 6 sleep processes.
- The 6 matches exactly the 6 `runWrapper()` calls in
  test/scripts/run-unit-parallel.test.ts (1 orphan sleep per invocation).
- Each `runWrapper()` spawns scripts/run-unit-parallel.sh, which spawns
  a heartbeat function that runs `while true; do sleep 10; ...; done`
  in the background.
- The wrapper's EXIT trap was `kill "$HB_PID" 2>/dev/null` — kills the
  heartbeat shell, but its currently-running `sleep 10` child gets
  reparented to init/launchd because SIGTERM to a bash shell sleeping
  inside `sleep` doesn't propagate to the sleep child before wait
  returns. Known bash quirk on Linux.
- bun's test runner treats the orphan sleeps as a `(unnamed)` failure
  attributed to the test file that spawned the wrapper.

Fix: pkill children FIRST, then kill heartbeat. If we kill heartbeat
first, its child sleep orphans and pkill -P can no longer find it
(ppid changes to 1). Reorder applied to both the trap AND the normal
shutdown path.

Verified locally: before fix, 6 orphan sleeps after the test ran;
after fix, 0 orphan sleeps. Test still passes 6/6 in ~1s.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

---------

Co-authored-by: garrytan-agents <garrytan-agents@users.noreply.github.com>
Co-authored-by: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
2026-05-25 15:21:59 -07:00

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#!/usr/bin/env bash
# scripts/run-unit-parallel.sh — fast unit-test loop, parallel fan-out.
#
# Spawns N parallel `bun test` processes, each running a hash-disjoint shard
# of the unit-test set (files only — no e2e, no .slow, no .serial). After
# all shards complete, runs serial-only files (*.serial.test.ts) with
# --max-concurrency=1. Failure-first logging: extracts failure blocks from
# each shard's log, writes to .context/test-failures.log with --- shard $i:
# prefixes, prints loud stderr banner if any failures, exit non-zero.
#
# Usage:
# bash scripts/run-unit-parallel.sh [--shards N] [--max-concurrency N] [--dry-run]
#
# Env overrides:
# SHARDS=N same as --shards
# GBRAIN_TEST_SHARD_TIMEOUT per-shard wallclock cap, seconds (default 600)
# GBRAIN_TEST_MAX_CONCURRENCY passed through to bun test (default 4)
#
# Output files (workspace-local; falls back to /tmp if .context/ unwritable):
# .context/test-failures.log failure blocks (cleared at start)
# .context/test-summary.txt per-shard pass/fail/skip/duration (cleared at start)
# .context/test-shards/ per-shard logs + exit codes (cleared at start)
set -uo pipefail
cd "$(dirname "$0")/.."
# ──────────────────────────────────────────────────────────────────────────
# CPU detection: Apple Silicon perf cores → Mac total physical → nproc → 4.
# Returns a single positive integer.
# ──────────────────────────────────────────────────────────────────────────
detect_cpus() {
local n=""
n=$(sysctl -n hw.perflevel0.physicalcpu 2>/dev/null) && [ -n "$n" ] && [ "$n" -gt 0 ] && echo "$n" && return
n=$(sysctl -n hw.physicalcpu 2>/dev/null) && [ -n "$n" ] && [ "$n" -gt 0 ] && echo "$n" && return
n=$(nproc 2>/dev/null) && [ -n "$n" ] && [ "$n" -gt 0 ] && echo "$n" && return
echo 4
}
# ──────────────────────────────────────────────────────────────────────────
# Argument parsing. --shards N override wins over $SHARDS; both are clamped.
# ──────────────────────────────────────────────────────────────────────────
SHARDS_OVERRIDE=""
MAX_CONCURRENCY_OVERRIDE=""
DRY_RUN=0
while [ $# -gt 0 ]; do
case "$1" in
--shards) SHARDS_OVERRIDE="$2"; shift 2 ;;
--shards=*) SHARDS_OVERRIDE="${1#*=}"; shift ;;
--max-concurrency) MAX_CONCURRENCY_OVERRIDE="$2"; shift 2 ;;
--max-concurrency=*) MAX_CONCURRENCY_OVERRIDE="${1#*=}"; shift ;;
--dry-run) DRY_RUN=1; shift ;;
*) echo "ERROR: unknown arg: $1" >&2; exit 2 ;;
esac
done
N="${SHARDS_OVERRIDE:-${SHARDS:-$(detect_cpus)}}"
if ! printf '%s' "$N" | grep -qE '^[0-9]+$' || [ "$N" -lt 1 ]; then
echo "ERROR: invalid shard count: $N" >&2; exit 2
fi
# v0.40.10 flake-hardening: clamp default to 4 (was 8) to match CI's
# test-shard.sh fan-out. At 8-shard parallel on Apple Silicon we observed
# shard 5 SIGKILL during source-health.test.ts's PGLite migration replay —
# 8 parallel PGLite WASM inits contend severely on the lockfile, and the
# 92-migration replay × 8 simultaneous can wedge past even 900s. CI uses
# 4 and is stable. Trade ~2x wallclock for reliability + parity with CI's
# fan-out. Override via --shards N or SHARDS=N (still capped at 8).
[ "$N" -gt 8 ] && N=8
if [ -z "${SHARDS_OVERRIDE:-}" ] && [ -z "${SHARDS:-}" ] && [ "$N" -gt 4 ]; then
N=4
fi
INTRA_CONC="${MAX_CONCURRENCY_OVERRIDE:-${GBRAIN_TEST_MAX_CONCURRENCY:-4}}"
# v0.40.10 flake-hardening: bump per-shard cap 600 → 1500 (was 900). At
# 4-shard default each shard runs 159 files / ~2420 tests with internal
# wallclock 960-1020s. The 900s value (sized for 8-shard's ~80 files /
# 1100 tests at 620-770s) false-killed shard 1 at 900s even though it
# had completed in 968s. 1500s cap gives ~55% headroom over observed
# 4-shard wallclock; real hangs still hit it. Override via
# GBRAIN_TEST_SHARD_TIMEOUT=N.
SHARD_TIMEOUT="${GBRAIN_TEST_SHARD_TIMEOUT:-1500}"
# ──────────────────────────────────────────────────────────────────────────
# Output directories. Prefer workspace-local .context/, fall back to /tmp.
# ──────────────────────────────────────────────────────────────────────────
LOG_DIR=""
if mkdir -p .context/test-shards 2>/dev/null; then
LOG_DIR=".context/test-shards"
FAILURES_LOG=".context/test-failures.log"
SUMMARY_FILE=".context/test-summary.txt"
else
LOG_DIR="/tmp/gbrain-test-shards-$$"
FAILURES_LOG="/tmp/gbrain-test-failures.log"
SUMMARY_FILE="/tmp/gbrain-test-summary.txt"
mkdir -p "$LOG_DIR" || { echo "ERROR: cannot create log dir" >&2; exit 2; }
fi
# Clear from prior run.
rm -f "$LOG_DIR"/shard-*.log "$LOG_DIR"/shard-*.exit "$LOG_DIR"/shard-*.wedged 2>/dev/null
: > "$FAILURES_LOG"
: > "$SUMMARY_FILE"
# ──────────────────────────────────────────────────────────────────────────
# Resolve `timeout` command. macOS without coreutils has neither; we degrade
# to bg-pid + sleep cap. For now, prefer gtimeout (brew coreutils) → timeout.
# ──────────────────────────────────────────────────────────────────────────
TIMEOUT_BIN=""
if command -v gtimeout >/dev/null 2>&1; then TIMEOUT_BIN="gtimeout"
elif command -v timeout >/dev/null 2>&1; then TIMEOUT_BIN="timeout"
fi
START_TS=$(date +%s)
echo "[unit-parallel] N=$N shards | --max-concurrency=$INTRA_CONC | timeout=${SHARD_TIMEOUT}s | logs=$LOG_DIR" >&2
if [ "$DRY_RUN" = "1" ]; then
echo "[unit-parallel] dry-run: would spawn $N shards with the above settings."
for i in $(seq 1 "$N"); do
SHARD="$i/$N" bash scripts/run-unit-shard.sh --dry-run-list 2>/dev/null \
| sed "s|^| [s$i] |"
done
exit 0
fi
# ──────────────────────────────────────────────────────────────────────────
# Spawn shards. Each child captures its own exit code into a sentinel file
# so $? is recoverable per-shard (we never trust `wait`'s aggregate value).
# ──────────────────────────────────────────────────────────────────────────
SHARD_PIDS=()
for i in $(seq 1 "$N"); do
(
SHARD_LOG="$LOG_DIR/shard-$i.log"
if [ -n "$TIMEOUT_BIN" ]; then
"$TIMEOUT_BIN" "${SHARD_TIMEOUT}s" \
env SHARD="$i/$N" \
bash scripts/run-unit-shard.sh --max-concurrency="$INTRA_CONC" \
> "$SHARD_LOG" 2>&1
else
env SHARD="$i/$N" \
bash scripts/run-unit-shard.sh --max-concurrency="$INTRA_CONC" \
> "$SHARD_LOG" 2>&1 &
pid=$!
( sleep "$SHARD_TIMEOUT" && kill -TERM "$pid" 2>/dev/null && \
sleep 5 && kill -KILL "$pid" 2>/dev/null ) &
cap_pid=$!
wait "$pid" 2>/dev/null
kill "$cap_pid" 2>/dev/null
wait "$cap_pid" 2>/dev/null
fi
rc=$?
echo "$rc" > "$LOG_DIR/shard-$i.exit"
[ "$rc" = "124" ] && echo "WEDGED" > "$LOG_DIR/shard-$i.wedged"
) &
SHARD_PIDS+=($!)
done
# ──────────────────────────────────────────────────────────────────────────
# Heartbeat: every 10s, print per-shard progress to stderr by tailing logs
# and counting Bun's `(pass)` / `(fail)` / `(skip)` markers. Read-only.
# ──────────────────────────────────────────────────────────────────────────
# grep_count: returns 0 (single integer) if file is missing or zero matches,
# otherwise the match count. Avoids the `grep -c | echo 0` double-output bug
# where 0 matches produces a 2-line "0\n0" string that breaks arithmetic.
grep_count() {
local pattern="$1"; local file="$2"
if [ ! -f "$file" ]; then echo 0; return; fi
local n
n=$(grep -cE "$pattern" "$file" 2>/dev/null) || n=0
echo "${n:-0}"
}
# bun_summary_count: parses Bun's summary lines (one per `bun test` invocation
# inside a shard — there's only one when we pass an explicit file list).
# Looks for ` N pass` / ` N fail` / ` N skip` patterns and sums them across
# all summary blocks the shard emitted. `bun test` prints these near the end
# of its output. Format: leading whitespace + integer + space + label.
bun_summary_count() {
local label="$1"; local file="$2"
if [ ! -f "$file" ]; then echo 0; return; fi
awk -v label="$label" '
$1 ~ /^[0-9]+$/ && $2 == label { total += $1 }
END { print total + 0 }
' "$file"
}
heartbeat() {
while true; do
sleep 10
local line=""
for i in $(seq 1 "$N"); do
if [ -f "$LOG_DIR/shard-$i.exit" ]; then
local rc; rc=$(cat "$LOG_DIR/shard-$i.exit" 2>/dev/null || echo "?")
local status="✓"
[ "$rc" != "0" ] && status="✗"
line="$line [s$i: done $status]"
else
local lf="$LOG_DIR/shard-$i.log"
if [ -f "$lf" ]; then
# Heartbeat: prefer Bun's per-test "✓" (passed) and "(fail)" markers
# so we see live progress; the "N pass" summary line only appears at
# the very end of the shard and would always show 0 mid-run.
local p f
p=$(grep_count '^[[:space:]]+✓' "$lf")
f=$(grep_count '^\(fail\)' "$lf")
line="$line [s$i: ${p}p ${f}f ...]"
else
line="$line [s$i: starting]"
fi
fi
done
printf '[heartbeat] %s\n' "$line" >&2
done
}
heartbeat &
HB_PID=$!
# v0.41.11.0 cleanup: pkill children FIRST, then kill heartbeat. If we
# kill the heartbeat shell first, its current `sleep 10` is reparented
# to init/launchd and pkill -P can no longer find it (orphan). Order:
# children first while the parent PID is still findable, then parent.
# Known bash quirk: SIGTERM to a shell sleeping inside `sleep` doesn't
# propagate to the sleep child before the wait returns. Without this,
# each invocation of this script leaks ONE orphan sleep; CI's "orphan
# process cleanup" at end-of-job reports them as (unnamed) test failures.
# Seen on the garrytan/port-pr-1406 PR, 2 CI runs in a row, 6 orphans
# matching the 6 invocations in test/scripts/run-unit-parallel.test.ts.
trap 'pkill -P "$HB_PID" 2>/dev/null; kill "$HB_PID" 2>/dev/null; wait "$HB_PID" 2>/dev/null' EXIT
# Wait for every shard. Don't care about wait's exit code.
for pid in "${SHARD_PIDS[@]}"; do wait "$pid" 2>/dev/null || true; done
pkill -P "$HB_PID" 2>/dev/null
kill "$HB_PID" 2>/dev/null
wait "$HB_PID" 2>/dev/null
trap - EXIT
# ──────────────────────────────────────────────────────────────────────────
# Aggregate failures (single writer; serial; never concurrent).
# Bun failure block format: from `(fail) ...` line through next `(pass)`,
# `(skip)`, blank line, or `__bun_test_summary__` marker.
# ──────────────────────────────────────────────────────────────────────────
TOTAL_FAILURES=0
TOTAL_PASS=0
TOTAL_SKIP=0
TOTAL_RC=0
for i in $(seq 1 "$N"); do
SHARD_LOG="$LOG_DIR/shard-$i.log"
EXIT_FILE="$LOG_DIR/shard-$i.exit"
WEDGED_FILE="$LOG_DIR/shard-$i.wedged"
rc=1
[ -f "$EXIT_FILE" ] && rc=$(cat "$EXIT_FILE" 2>/dev/null || echo 1)
pass_count=$(bun_summary_count "pass" "$SHARD_LOG")
fail_count=$(bun_summary_count "fail" "$SHARD_LOG")
skip_count=$(bun_summary_count "skip" "$SHARD_LOG")
TOTAL_PASS=$((TOTAL_PASS + pass_count))
TOTAL_FAILURES=$((TOTAL_FAILURES + fail_count))
TOTAL_SKIP=$((TOTAL_SKIP + skip_count))
if [ -f "$WEDGED_FILE" ]; then
TOTAL_RC=1
{
echo "--- shard $i: WEDGED after ${SHARD_TIMEOUT}s ---"
[ -f "$SHARD_LOG" ] && tail -50 "$SHARD_LOG"
echo ""
} >> "$FAILURES_LOG"
echo "shard $i/$N: WEDGED after ${SHARD_TIMEOUT}s (rc=$rc)" >> "$SUMMARY_FILE"
continue
fi
echo "shard $i/$N: pass=$pass_count fail=$fail_count skip=$skip_count rc=$rc" >> "$SUMMARY_FILE"
if [ "$rc" != "0" ]; then
TOTAL_RC=1
if [ "$fail_count" -gt 0 ] && [ -f "$SHARD_LOG" ]; then
# Extract each (fail) block: from `(fail)` line through next `(pass)`,
# `(skip)`, blank line, or `__bun_test_summary__`. Single awk pass.
awk -v shard="$i" '
/^\(fail\) / { in_block=1; print "--- shard " shard ": " $0; next }
in_block {
if (/^\(pass\)/ || /^\(skip\)/ || /^[[:space:]]*$/ || /__bun_test_summary__/) { in_block=0; print ""; next }
print $0
}
' "$SHARD_LOG" >> "$FAILURES_LOG"
elif [ -f "$SHARD_LOG" ]; then
# Non-zero rc but no (fail) line found — extraction couldn't pinpoint.
# Dump the full shard log so we never silently lose the failure cause.
{
echo "--- shard $i: rc=$rc, no (fail) markers — full log follows ---"
cat "$SHARD_LOG"
echo ""
} >> "$FAILURES_LOG"
fi
fi
done
# ──────────────────────────────────────────────────────────────────────────
# Print each shard's full output to stdout (developer expects to scroll
# through it). Print summary file last for one-glance overview.
# ──────────────────────────────────────────────────────────────────────────
for i in $(seq 1 "$N"); do
SHARD_LOG="$LOG_DIR/shard-$i.log"
echo ""
echo "════════════ shard $i/$N ════════════"
[ -f "$SHARD_LOG" ] && cat "$SHARD_LOG"
done
echo ""
echo "════════════ summary ════════════"
cat "$SUMMARY_FILE"
echo ""
# ──────────────────────────────────────────────────────────────────────────
# Serial pass: any *.serial.test.ts files run after parallel pass.
# ──────────────────────────────────────────────────────────────────────────
SERIAL_RC=0
SERIAL_FILES_COUNT=0
SERIAL_FILES_COUNT=$(find test -name '*.serial.test.ts' -not -path 'test/e2e/*' 2>/dev/null | wc -l | tr -d ' ')
if [ "$SERIAL_FILES_COUNT" -gt 0 ]; then
echo "════════════ serial pass ($SERIAL_FILES_COUNT files) ════════════"
bash scripts/run-serial-tests.sh > "$LOG_DIR/serial.log" 2>&1
SERIAL_RC=$?
cat "$LOG_DIR/serial.log"
if [ "$SERIAL_RC" != "0" ]; then
TOTAL_RC=1
s_fail=$(bun_summary_count "fail" "$LOG_DIR/serial.log")
TOTAL_FAILURES=$((TOTAL_FAILURES + s_fail))
if [ "$s_fail" -gt 0 ]; then
awk '
/^\(fail\) / { in_block=1; print "--- shard serial: " $0; next }
in_block {
if (/^\(pass\)/ || /^\(skip\)/ || /^[[:space:]]*$/ || /__bun_test_summary__/) { in_block=0; print ""; next }
print $0
}
' "$LOG_DIR/serial.log" >> "$FAILURES_LOG"
else
{
echo "--- shard serial: rc=$SERIAL_RC, no (fail) markers — full log follows ---"
cat "$LOG_DIR/serial.log"
echo ""
} >> "$FAILURES_LOG"
fi
echo "serial: rc=$SERIAL_RC fail=$s_fail" >> "$SUMMARY_FILE"
else
s_pass=$(bun_summary_count "pass" "$LOG_DIR/serial.log")
TOTAL_PASS=$((TOTAL_PASS + s_pass))
echo "serial: pass=$s_pass rc=0" >> "$SUMMARY_FILE"
fi
fi
END_TS=$(date +%s)
ELAPSED=$((END_TS - START_TS))
# ──────────────────────────────────────────────────────────────────────────
# Loud banner if anything failed. To stderr so it survives `| head`/`| tail`.
# ──────────────────────────────────────────────────────────────────────────
if [ "$TOTAL_RC" != "0" ]; then
ABS_FAIL=$(cd "$(dirname "$FAILURES_LOG")" && pwd)/$(basename "$FAILURES_LOG")
{
echo ""
echo "━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━"
echo "❌ $TOTAL_FAILURES TEST FAILURES — full details:"
echo " $ABS_FAIL"
echo "━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━"
tail -30 "$FAILURES_LOG"
echo "━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━"
echo "[unit-parallel] elapsed=${ELAPSED}s | pass=$TOTAL_PASS fail=$TOTAL_FAILURES skip=$TOTAL_SKIP"
} >&2
exit 1
fi
echo "[unit-parallel] elapsed=${ELAPSED}s | pass=$TOTAL_PASS fail=$TOTAL_FAILURES skip=$TOTAL_SKIP" >&2
exit 0