The runtime is JSPI-only; this removes everything that still pretended otherwise. Three exhaustive sweeps (C++/JS+build+CI/tests+docs) drove the inventory; every deletion verified by grep closure + full gates. Broken-right-now fixes: - deploy-staging.yml passed the retired opt_level input — the workflow could not even start. Removed. - env.sh carried dead exports with a live -sASYNCIFY=1 inside (WASM_LDFLAGS/PTHREAD_LDFLAGS, zero consumers). Removed; the WASM_LEGACY_EXCEPTIONS rationale rewritten to the real reason. - docker/build.sh exported PCBJAM_ASYNC_BACKEND (read nowhere). Gone. Dead weight removed: - binaryen submodule (nothing builds or invokes it), wasm-opt-bench workflow + scripts/bench/, get-wasm-opt.sh, diagnostics.js (242 lines of Asyncify-API-only code), the KICAD_PIPELINE background-postprocess scaffolding (existed to parallelize the deleted wasm-opt phase; the postprocess is a seconds-long node script and now runs inline), build-monitor's dead asyncify rows, sched-context orphan build output, dead .gitignore entries, the .jspi-assets spike dir (the two wf-result research JSONs moved to docs/features/async/migration-evidence/). - bindings: fiber_park.h + its 12 embind registrations (broken-if- called under JSPI), the kicadOpenFileStart/OPEN_JOB starter route, main_stack_runner.h + 5 includes, the always-null context-sleep weak hook in nanosleep_yield.c. - shim: the backend field (installed-flag idempotency instead), noteContextWait (dead both sides), the __wxAsyncifyDump alias (+ the WasmTool fallback and string-dump normalize branch). - web: the emscripten-6-ignored mainScriptUrlOrBlob option in boot.ts (gerber-demo keeps it: it loads the deployed CDN release, which predates emscripten 6 — noted inline). Conditionals: all 'backend === jspi' checks reduced to scheduler- presence checks; races_quiescent re-keyed from Asyncify.state (vacuous) to real backlog quiescence (resumeReady/mutatorQueue — NOT _windowLive, which is the probing activation's own window by definition). Renames (identifiers only, no file renames): ASYNC_LINK_FLAGS→ JSPI_LINK_FLAGS and Makefile ASYNC_LDFLAGS→JSPI_LDFLAGS, kicadCollabFiberBusy→kicadCollabBusy (embind + web + tests), collab_common.h fiber*→apply*/coroutine naming, asyncifySignatures→ wasmTrapSignatures (lists byte-identical). Tests: the two remaining vacuous [wx-asyncify]/fiber-resume-refused asserts re-keyed to live JSPI beacons; eeschema-load's failure message no longer sends the developer to a deleted script; wait-beacons' dead families/parser deleted; lane-0 legacy-glue guards removed (lane 0 is unconstructible); the embind test.fail re-gated with the JSPI reason (plain embind invokers cannot suspend — verified still failing); lint-determinism now scans tests/jspi (166 files clean); eeschema-collab local-move gated to chromium (~50% flaky on FF even solo; pcbnew twin covers both engines). Docs: DEBUG.md rewritten as the JSPI debugging guide; build.md describes the single-phase build; docs/features/async/README.md banner-marked historical and repointed at the NEW 23-jspi-runtime.md (current architecture: export census, turnstile, libcontext ownership + refusal contract, embind call shapes, the em-pthread service-wrapper trick, exception policy, known gaps). Gates on the cleaned tree: test:e2e 725 passed / 0 failed (after the quiescence-probe fix; the 3 other reds were verified contention flakes solo-green or the documented FF gate), web 76/0, jspi 18/18 both engines, vitest 295/295 + 17/17, all lints green, live-app census clean. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_016X9eh1s5sTx1o9Em9KBuwR
276 lines
14 KiB
Markdown
276 lines
14 KiB
Markdown
# Debugging guide — KiCad / wxWidgets WASM (JSPI runtime)
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A practical reference for debugging this project: how the JSPI runtime is
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wired, the observability surfaces built into it, and the recipes that actually
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work here. It is **not** a writeup of any one bug — the numbered docs under
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[`docs/features/async/`](../features/async/) carry those; the current
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architecture is [`23-jspi-runtime.md`](../features/async/23-jspi-runtime.md).
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If you're new to this codebase, read [§1](#1-the-runtime-in-one-paragraph) and
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then go straight to [§2 (observability)](#2-observability) — most questions of
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the form "why is nothing happening" are answered by one `__wxWaitDump()` call.
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---
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## 1. The runtime, in one paragraph
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Suspension is JSPI: every wasm entry point that can park is a
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**promising export** (`-sJSPI` + the census in
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`scripts/common/jspi-exports.txt`), and every suspension awaits a real JS
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promise. One scheduler — `scripts/common/shims/jspi-scheduler.js`, shipped as
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a `--pre-js` — owns the discipline around that: it wraps the promising
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exports so it always knows which **activation** is executing or suspended,
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gives each activation its own **spill-stack region** (JSPI switches the
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native stack per activation but *not* the C spill stack — emscripten #27364),
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and serializes engine re-entries through a resume **turnstile** so only one
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activation's SP can be armed between wasm entries. KiCad tool coroutines run
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on the JSPI backend of `kicad/thirdparty/libcontext/` (one promising
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activation per coroutine, own region, promise-pair yield/resume) and
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integrate with the same turnstile. There is no post-link instrumentation, no
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unwind/rewind state machine, and no rewind buffer to corrupt: what used to be
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"asyncify state problems" are now ordinary promise/call-shape problems.
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---
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## 2. Observability
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### 2.1 `__wxWaitDump()` — the first thing to run
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Available on any app page (and printed automatically by the SuspendError
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attributor). Returns one object:
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| field | meaning |
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| `dead` | scheduler shut down (teardown seen) |
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| `waitsBegun` / `waitsResolved` | token-wait registry totals (modal, nested, clipboard, lib-bridge …) |
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| `earlyWaitResolves` | waits resolved before their waiter parked (legal fast path) |
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| `pendingWaits` | unresolved registry entries right now |
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| `runningActivations` | promising exports currently on the JS stack |
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| `suspendedActivations` | array of `{id, kind, waitKind, token, suspendedMs}` — every parked activation |
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| `mutatorsWrapped` / `mutatorsDelivered` / `mutatorQueueDepth` | the embind mutator FIFO (queued while `kicadOpenFileBusy`) |
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| `ring` | the last 64 scheduler events (see §2.2) |
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Reading it: a wedge usually shows up as an entry in `suspendedActivations`
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with a large `suspendedMs` and a `waitKind`/`token` that tells you *what* it
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is waiting for; cross-check `pendingWaits` and the ring. `id`s of the form
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`"lc<N>"` are libcontext coroutines; negative ids are untracked/anonymous
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suspensions (boot-time `main`, foreign yields).
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### 2.2 Ring counting recipes
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`__wxScheduler._ring` holds `[epochMs, event, a, b]` tuples (last 256; the
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dump slices the last 64). Useful counts:
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```js
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// stale resumes refused by the doc-15 contract (a = 'lc<id>')
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__wxScheduler._ring.filter(e => e[1] === 'libctxRefusedResume').length
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// turnstile self-heals — should be 0 in a healthy run
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__wxScheduler._ring.filter(e => e[1] === 'forceClearWindow')
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// wakes dropped at quarantined (released-while-parked) coroutines
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__wxScheduler._ring.filter(e => e[1] === 'deadWakeDropped')
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// park/resolve balance per wait kind
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__wxScheduler._ring.filter(e => e[1] === 'park').map(e => e[2])
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```
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Other event names you will see: `beginWait`, `resolve`, `wrapped`,
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`libctxQuarantine`, `shutdown`.
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### 2.3 `__libctxJspi` — the coroutine census
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The libcontext JSPI backend keeps its own JS-side census:
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```js
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Object.keys(__libctxJspi.s).length // live coroutine slots (promise pairs)
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__libctxJspi.tops // id -> spill-region top (SP swap target)
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__libctxJspi.ghosts // ghost/refused transitions, ever
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__libctxJspi.deadParked // coroutines released while parked mid-body
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```
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Records are tombstoned, never freed C-side, so stale handles / double
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releases / ghost resumes are refused loudly instead of corrupting anything —
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each refusal bumps `ghosts` and prints a beacon (§2.4).
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### 2.4 Beacon vocabulary
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Everything the runtime is unhappy about is announced on the console with a
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stable prefix. Test helpers count these (`tests/kicad/utils/wait-beacons.ts`);
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when debugging by hand, grep the captured console for the prefix.
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| beacon | source | meaning |
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|---|---|---|
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| `[libctx-jspi] ghost/refused transition … reason=<r>` | `libcontext.cpp` | a refused coroutine transition; `reason` is one of `ghost-enter`, `yield-no-cur`, `released-while-parked`, `dead-cur-substituted`, `yield-to-dead-enterer`, `release-of-running-ignored` |
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| `[libctx-jspi] coroutine N entry REJECTED: <stack>` | `libcontext.cpp` | the coroutine's entry activation *rejected* (a trap inside the body); the enterer receives the refusal sentinel instead of hanging |
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| `[libctx-jspi] REGION OVERFLOW: coroutine N …` | `libcontext.cpp` | the spill-region base canary tripped — a tool body outgrew its region |
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| `[wx-scheduler] force-clearing stuck window …` | `jspi-scheduler.js` | turnstile self-heal: some suspension bypassed the shim (untracked raw await) and would otherwise block resumes forever |
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| `[wx-scheduler] job tick error: …` | `evtloop.cpp` | a scheduled-job handler threw; containment fired |
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| `[wx-scheduler] mailbox tick error: …` | `jspi-scheduler.js` | a delivered mailbox handler threw; `wx_dispatch_abandon` + top-wait resolution keep the app alive |
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| `[wx-scheduler] shutdown (<why>) clean` / `… stranded:N` | `jspi-scheduler.js` | teardown contract — a clean exit *says so*; `stranded` counts waits that never resolved (asserted by `e2e/app-quit.spec.ts`) |
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| `[wx-scheduler] SuspendError: …` | `jspi-scheduler.js` | see §3 — includes a full dump for targeting |
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| `[wx-scheduler] LOST WAKE: …` | `jspi-scheduler.js` | watchdog: an activation parked >30 s on a token wait that is no longer registered |
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| `[wx-scheduler] dropping wake for quarantined N` | `jspi-scheduler.js` | a late wake arrived for a released coroutine; refused (never re-enter a freed body) |
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| `[wx-timer] retry storm: N retries …` | `timer.cpp` | a timer's `Notify` kept retrying against a held dispatch interlock — something is parked across ticks |
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| `[wx-dispatch] ERASED … / NEGATIVE depth …` | `evtloop.cpp` | dispatch-interlock bookkeeping anomaly — depth accounting corrupt, report it |
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A healthy run is beacon-silent apart from at most a `shutdown … clean`.
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### 2.5 Tooling blind spots (read before trusting output)
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- **Console is async** — `printf`/`console.*` reaches Playwright via CDP
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asynchronously; the *last delivered* line can lag the real failure point.
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Prefer state dumps (§2.1) and binary-outcome bisection over "the last log
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line".
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- **Playwright hides the renderer** — it forces `--disable-breakpad` and only
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pipes the *browser* process stderr. To see the renderer's own stderr and a
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real crash reason, serve `tests/apps` with the COOP/COEP headers
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(`tests/serve.json`, e.g. `npx serve apps -c ../serve.json`) and open the
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page in a normal Chrome with crash reporting on.
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- **macOS `sample`/`.ips`** see wasm frames as numeric offsets, not C++ names.
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**Crash vs. hang vs. stall** — a failure with no exception is not necessarily
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a crash. Find the renderer PID and inspect it:
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```bash
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ps -axo pid,%cpu,%mem,command | grep -i 'Google Chrome'
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sample <rendererPID> 3 # what is the main thread doing?
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```
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- Idle in `CFRunLoop`/`mach_msg2_trap`, ~0% CPU → a *stall* (event loop
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alive, nothing scheduled). Under JSPI this almost always means a parked
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activation whose wake was lost or refused — go read `__wxWaitDump()` and
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the ring.
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- Blocked on a futex / `Atomics.wait` → a pthread/lock issue.
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- Spinning at 100% → an infinite loop.
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- Gone + a `.ips` report → a real signal crash.
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---
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## 3. Reading a SuspendError
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Chromium: `RangeError: Trying to suspend without WebAssembly.promising` (or
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similar `Suspend…` wording). Firefox: `No matching WebAssembly.promising`.
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Both mean the same **call-shape problem**: a *plain* (non-promising) entry
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into wasm reached a suspending import. The suspension has nowhere to go — a
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promising activation is created at the *export* boundary, not at the park
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site — so the engine throws at the park.
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The scheduler's attributor catches these globally and prints
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`[wx-scheduler] SuspendError: …` with a full `__wxWaitDump()` — the engine
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cannot say *which* export was entered plainly, but the dump (what is wrapped,
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what was executing) is exactly the targeting data you need.
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Fixes, in order of likelihood:
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1. **A missing census entry.** The export can suspend but is not declared:
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add it to `scripts/common/jspi-exports.txt` *and* the scheduler wrap list
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in `jspi-scheduler.js` *and* `tests/apps/Makefile.wasm`'s
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`WX_JSPI_EXPORTS` (three synchronized copies — see doc 23).
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2. **A plain embind registration.** Suspending embind exports must be
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registered `emscripten::async()` — use `PCBJAM_PARKER_POLICY`
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(`wasm/bindings/pcbjam_async_policy.h`).
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3. **A genuinely illegal park** — code that must not suspend (a CLI/service
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target with no suspension backend, an `emscripten_set_main_loop` callback)
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grew a suspending call. Move the work behind a promising export instead.
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---
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## 4. The harnesses
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### 4.1 `tests/apps/standalone/jspi-coroutine` — the coroutine contract battery
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A wx-free MiniCoro that mirrors `tool/coroutine.h`'s protocol *exactly*
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(INVOCATION_ARGS, callerStub + `finish_fcontext`, jumpIn/jumpOut,
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CONTINUE_AFTER_ROOT) over the **real** `kicad/thirdparty/libcontext`. 18
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cases: entry/yield/resume/completion, deep-stack preservation, nesting with
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enterer inference, RunMainStack, value transfer, yield-inside-catch under
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native wasm-EH, timer-driven resume, slot reclaim, ghost-resume refusal
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(sentinel-shaped), mid-body release census, phantom-release refusal, and
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destroy-while-parked containment.
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```bash
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cd tests/apps/standalone/jspi-coroutine
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./build.sh # rebuild both variants against the real libcontext
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node run.mjs # single-thread build, node
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node run_pt.mjs # pthread build
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# browser (both variants): tests/jspi/jspi-coroutine.spec.ts
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```
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Output contract: `[JSPI_CORO] CASE <name> PASS|FAIL(<detail>)`, then
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`[JSPI_CORO] SUMMARY passed=<n> failed=<n>`. If `build.sh` dies inside
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emscripten's python driver, point `EMSDK_PYTHON` at a modern interpreter
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(≥3.10; 3.13 known-good).
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### 4.2 `tests/jspi/suspend-races.spec.ts` — semantic suspension races
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The suspension-race scenarios (nested modal LIFO, out-of-order wake
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resolution, no-lost-wakes, nested-loop teardown-on-error), run against the
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races harness built for JSPI. The scenarios express through public wx +
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coroutine APIs, so they are exactly as meaningful under JSPI — only the
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failure *modes* they'd catch differ (activation misnesting or a lost wait
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token). `tests/jspi/jspi-stack.spec.ts` is the red/green proof of the
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spill-stack discipline itself.
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### 4.3 Isolated probes, generally
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A standalone probe often *won't* reproduce a bug that needs the full app
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runtime — don't over-trust a green probe. The reverse recipe still holds
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too: stub-bisection (comment out a suspect call, rebuild, observe a binary
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survives-or-fails outcome) beats staring at logs, because it does not depend
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on console delivery order.
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---
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## 5. Browser notes
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- **Firefox 153+ is the strict engine.** JSPI is on by default (Playwright
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≥1.62 ships FF 153) and a *plain* embind call into a suspending body throws
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immediately. Chromium tolerates some shapes FF refuses — the sync
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`kicadTestFiberPark*` levers are usable for manual probing **on Chromium
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only**. If a suspension bug reproduces on one engine only, suspect a
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call-shape difference first (§3), not a logic difference.
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- **Firefox runs big promising modules on a slow tier.** Observed as library
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enumeration slowness (FootprintEnumerate rows never appearing within 60 s
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on the remote read path); tracked upstream (#42199). The firefox leg of
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`footprint-browse-remote` is gated on it.
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- **COOP/COEP.** SharedArrayBuffer/pthreads need cross-origin isolation
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headers; serve `tests/apps` with `tests/serve.json`.
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---
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## 6. Build-side debugging
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- **The build is single-phase.** `docker/build.sh` compiles, links *and
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finalizes* inside the container; the only host step is
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`node scripts/common/patch-env-shim.mjs` (merges `Module.ENV` into the
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glue's `ENV` so `?trace=` works — seconds). `--compile-only` /
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`--postprocess-only` split the two when CI caches the compile. There is no
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post-link wasm rewriting to go wrong: what you linked is what runs.
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- **Logs + monitor.** Builds redirect all output to
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`logs/<script>/<timestamp>.log`; `./scripts/build-monitor.sh` renders a
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live stage dashboard off the newest log (`--once` for a snapshot).
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- **Docker compose project-name trap.** `build.sh` derives
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`COMPOSE_PROJECT_NAME` from the git branch (`kicad-wasm-<branch>`), so each
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branch has its own build-cache volume. Any *manual* `docker compose` run
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must export the same `COMPOSE_PROJECT_NAME` first or it silently targets a
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scratch volume.
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- **Source diagnostic logging** (off by default, per-category at build time):
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```bash
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./docker/build.sh --debug --diag=gal,coroutine,ctor # or: --diag=all
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```
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| `--diag=` value | covers |
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| `gal` | `[DIAG_GAL]` — GAL/WebGL pipeline (paint, context create/lock, init) |
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| `coroutine` | `[WASM_FCONTEXT]` coroutine switches + `[DIAG_TOOL]`/`[DIAG_DISP]` tool dispatch |
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| `ctor` | `[DIAG_CTOR]` — `PCB_EDIT_FRAME` startup milestones |
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Each value maps to a `-DKICAD_DIAG_*` define gating the `KI_DIAG_*` macros
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in `kicad/include/kicad_wasm_diag.h`; output goes to stdout
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(`[KICAD_OUT]`). Changing `--diag` changes `CMAKE_CXX_FLAGS` → forces a
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recompile (ccache-cached per flag combo).
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- **Per-branch volumes + optimization level.** Switching `-O1`↔`-O2` busts
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ccache and forces a full recompile; plan accordingly.
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