A coding agent could develop this repo's Go packages and could not develop the application: every path to running YellowJacket ended in a blocking GTK window, so 265 bound methods, 46 events, 33 component directories and 13 stores had exactly one form of verification available — `tsc --noEmit`. The unlock is that `wails dev`'s dev server on :34115 serves the real frontend with the real generated bindings against the same Go backend a desktop window attaches to, so a plain Chromium under Xvfb gets a fully functional app. Four test tiers now exist, cheapest first: - `make ui-test` — 313 Vitest tests in a real browser in ~2 s, no app, no backend, no display. Works because `frontend/wailsjs/` is a pure passthrough to `window.go`/`window.runtime`, so faking just those two globals runs the real bindings and the real store code. - `make test` — services in-process, asserting on the payload the frontend would receive, via a new `events.Emit` wrapper. - `make dev-headless` + `playwright-cli` — the real app, driven interactively, with an event bridge on `window.__yjEvents` and a dev-only control surface at `/__test/`. - `make e2e` — 19 of those flows frozen as Playwright specs. `events.Emit(ctx, …)` replaces all 35 direct `runtime.EventsEmit` call sites: wails' `getEvents` `log.Fatalf`s on any context without its runtime, so those paths could not run under test and a background worker could take the app down. Four packages had each hand-rolled the same guard; nine more guarded on `ctx != nil`, which does not help. `TestNoDirectRuntimeEmits` fails the build on a new one. Fixtures are generated, not committed (`make testdata`), and seeds are built by *running the app* — never by hand-writing config and DB rows, which would be a second description of a valid YJ_HOME. `.gitea/workflows/ci.yml` is the first workflow here that tests anything; the other three only package, so `gitea_ci` reported only packaging jobs and misled anyone asking whether a push was healthy. Both jobs were prototyped to green in a bare ubuntu:24.04 container before the YAML was written, which immediately caught `make lint` linting three configurations that nothing builds: all three passes omitted `webkit2_41`, so wails resolved webkit2gtk-4.0 — which Arch still ships and Ubuntu 24.04 dropped. Operational instructions live in `.pi/skills/yellowjacket-dev/`, measured discoveries in `.planning/NOTES.md`, and architecture in `CLAUDE.md` — split by tense, not by topic, because a topical split gives every new fact two plausible homes. `make skill-check` fails a commit if the skill cites a make target that does not exist.
198 lines
6.2 KiB
Bash
Executable File
198 lines
6.2 KiB
Bash
Executable File
#!/usr/bin/env bash
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#
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# Start YellowJacket headless, in the background, and return.
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#
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# `wails dev` binds an HTTP + WebSocket dev server on :34115 that serves
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# the real frontend with the real generated bindings on `window.go` and
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# bridges every call and every runtime.EventsEmit to the *same* Go
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# backend the desktop window uses. A browser pointed at it is not a
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# mock. That is what makes this app drivable by a coding agent.
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#
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# Three details are load-bearing:
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#
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# * We run the dev *binary*, not `wails dev`. app_dev.go parses
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# -devserver / -assetdir / -loglevel straight from os.Args, so a
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# `go build -tags "dev webkit2_41"` binary serves the identical
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# devserver with no file watcher, no rebuild supervisor and no
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# reload broadcast: one process, one PID, deterministic startup.
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#
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# * Xvfb is not optional. devserver.Run ends in Frontend.Run(ctx),
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# which opens the GTK window and blocks; no flag suppresses it.
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#
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# * dbus-run-session is not incidental. A private session bus makes
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# backend/mediacontrols register MPRIS for real, so it becomes
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# assertable with busctl. It replaces the bus, not /run/user, so
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# PulseAudio still works and InitSpeaker succeeds.
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#
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# Usage:
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# scripts/dev-headless.sh [--seed NAME|--fresh] [--port N] [--no-build]
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#
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set -euo pipefail
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cd "$(dirname "$0")/.."
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REPO_ROOT="$PWD"
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RUN_DIR="$REPO_ROOT/.dev"
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PID_FILE="$RUN_DIR/app.pid"
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LOG_FILE="$RUN_DIR/app.log"
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HOME_FILE="$RUN_DIR/app.home"
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SEED_DIR="$RUN_DIR/seeds"
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BIN="$REPO_ROOT/build/bin/yj-dev"
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PORT=34115
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SEED=""
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FRESH=0
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BUILD=1
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LOG_LEVEL="${YJ_LOG_LEVEL:-debug}"
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STARTUP_TIMEOUT=60
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usage() {
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sed -n '3,28p' "$0" | sed 's/^# \{0,1\}//'
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exit "${1:-0}"
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}
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while [ $# -gt 0 ]; do
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case "$1" in
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--seed)
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SEED="${2:?--seed needs a name}"
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shift 2
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;;
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--fresh)
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FRESH=1
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shift
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;;
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--port)
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PORT="${2:?--port needs a number}"
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shift 2
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;;
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--no-build)
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BUILD=0
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shift
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;;
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-h | --help) usage 0 ;;
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*)
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echo "dev-headless: unknown argument: $1" >&2
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usage 2
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;;
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esac
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done
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mkdir -p "$RUN_DIR"
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# ── Refuse to stack instances ────────────────────────────────────────
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# Two backends on one port fails obscurely; two backends on one YJ_HOME
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# corrupts a SQLite database. Check the saved PID, not the port.
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if [ -f "$PID_FILE" ] && kill -0 "$(cat "$PID_FILE")" 2>/dev/null; then
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echo "dev-headless: already running (pid $(cat "$PID_FILE")); " \
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"run 'make dev-stop' first" >&2
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exit 1
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fi
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rm -f "$PID_FILE"
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# ── Choose the YJ_HOME ───────────────────────────────────────────────
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# A seed is a YJ_HOME that a previous run of the app produced, tarred
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# up (see scripts/seed-sandbox.sh). Restoring it means starting *in*
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# the app instead of on the first-run wizard, which intercepts every
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# pointer event until a library exists.
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if [ -n "$SEED" ] && [ "$FRESH" = 1 ]; then
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echo "dev-headless: --seed and --fresh are mutually exclusive" >&2
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exit 2
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fi
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if [ -n "$SEED" ]; then
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SEED_TAR="$SEED_DIR/$SEED.tar"
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if [ ! -f "$SEED_TAR" ]; then
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echo "dev-headless: no seed '$SEED' at $SEED_TAR" >&2
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echo " build one with: make sandbox-seed NAME=$SEED" >&2
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exit 1
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fi
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YJ_HOME="$RUN_DIR/home-$SEED"
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rm -rf "$YJ_HOME"
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mkdir -p "$YJ_HOME"
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tar -xf "$SEED_TAR" -C "$YJ_HOME"
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echo "dev-headless: restored seed '$SEED'"
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elif [ "$FRESH" = 1 ]; then
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# Deliberately empty: the first-run wizard is itself a surface
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# that needs testing.
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YJ_HOME="$RUN_DIR/home-fresh"
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rm -rf "$YJ_HOME"
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mkdir -p "$YJ_HOME"
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echo "dev-headless: fresh YJ_HOME (expect the first-run wizard)"
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else
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YJ_HOME="${YJ_HOME:-$RUN_DIR/home}"
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mkdir -p "$YJ_HOME"
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fi
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export YJ_HOME
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echo "$YJ_HOME" >"$HOME_FILE"
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# ── Build ────────────────────────────────────────────────────────────
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if [ "$BUILD" = 1 ]; then
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echo "dev-headless: building frontend + dev binary..."
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(cd frontend && pnpm install --silent && pnpm build >/dev/null)
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go build -tags "dev webkit2_41" -o "$BIN" .
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fi
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if [ ! -x "$BIN" ]; then
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echo "dev-headless: $BIN missing; drop --no-build" >&2
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exit 1
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fi
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# ── Launch ───────────────────────────────────────────────────────────
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# setsid puts the app in its own process group so dev-stop can kill the
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# whole tree (xvfb-run, dbus-daemon, the app) by group id. Never
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# `pkill -f`: the pattern matches the invoking shell's own command line
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# and silently drops the rest of the chain.
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: >"$LOG_FILE"
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# YJ_TESTCTL mounts backend/testctl's /__test/ endpoints. It is opt-in
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# rather than implied by the dev build so that a human's `make dev` does
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# not carry an arbitrary-SQL endpoint on a listening port.
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YJ_TESTCTL=1 \
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YJ_LOG_LEVEL="$LOG_LEVEL" setsid dbus-run-session -- xvfb-run -a \
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"$BIN" \
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-devserver "localhost:$PORT" \
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-assetdir "$REPO_ROOT/frontend/dist" \
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-loglevel Debug \
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>>"$LOG_FILE" 2>&1 &
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APP_PID=$!
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echo "$APP_PID" >"$PID_FILE"
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# ── Wait for the dev server ──────────────────────────────────────────
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deadline=$((SECONDS + STARTUP_TIMEOUT))
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until curl -sf -o /dev/null "http://localhost:$PORT/"; do
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if ! kill -0 "$APP_PID" 2>/dev/null; then
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echo "dev-headless: app exited during startup; last log lines:" >&2
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tail -n 30 "$LOG_FILE" >&2
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rm -f "$PID_FILE"
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exit 1
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fi
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if [ "$SECONDS" -ge "$deadline" ]; then
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echo "dev-headless: :$PORT did not answer within ${STARTUP_TIMEOUT}s" >&2
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tail -n 30 "$LOG_FILE" >&2
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exit 1
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fi
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sleep 0.25
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done
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cat <<EOF
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dev-headless: up
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url http://localhost:$PORT
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pid $APP_PID
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YJ_HOME $YJ_HOME
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log ${LOG_FILE#"$REPO_ROOT"/} (make dev-logs)
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Drive it with:
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playwright-cli -s=yj open http://localhost:$PORT
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playwright-cli -s=yj snapshot
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playwright-cli -s=yj eval "() => window.__yjEvents.call('queue.Queue.GetState', [], 5000)"
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A binding call that never settles means wrong argument types: the
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backend logs 'error parsing arguments' and never fires the callback.
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The app log is the only place that shows up, so always use a timeout.
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EOF
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