* refactor(launchpad): quieter, borderless design refresh The launchpad carried decoration from an earlier direction: icon chips, corner-hung count badges, a permanently visible filled arrow, uppercase mono card titles, and a dotted stipple divider — plus a frame that had been invisible since the app-wide border tokens were zeroed. Rework it around what the borderless direction actually implies: - Feature tiles get a whisper-faint surface instead of a dead frame, and read as three bands (bare glyph + count / title + arrow / description). `--card-hue` is spent sparingly — the glyph at rest, the surface, count and arrow only once raised. Titles move to sans sentence case; counts are plain tabular numerals. Lift softened 4px -> 2px, coloured glow -> neutral shadow, plus an explicit focus ring and a staggered entrance. - Hero drops the boxed "646" pill and the filled A/B-Compare button for quiet type, with a hairline standing in for the separation. - Section labels trade the dotted stipple for a single fading hairline; rows are transparent until hover and reveal "Open" on hover/focus (it stays in the DOM, so AT and keyboard always reach it). - Hero, tiles, recent files, callout and project lists now share one 1180px column — previously only the top half was capped, so lists ran edge-to-edge on a wide display while the deck stayed centred. Two bugs found and fixed while doing it: - Buttons that had `border border-solid border-transparent` removed fell back to the UA default border and rendered a visible 1px outline. They now carry `border-0` explicitly. - `.lp-animate` used `animation-fill-mode: both`, so after the entrance it kept owning `transform` — and animation-origin declarations outrank normal ones, which silently killed the card hover lift. Now `backwards`, which still holds the from-state through the stagger delay. Also drops CSS the page has not rendered since #904: the cursor-spotlight layer, the breath ring, and the per-card waveform strip. Verified with headless renders at 1600/1280/940 and the empty state. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(dictation): decode Wayland portal signals and show the capture pill The GlobalShortcuts portal declares Activated/Deactivated as (o session, s shortcut_id, t timestamp, a{sv} options). We decoded the timestamp as u32, so zbus rejected every signal with Signature mismatch: got `(osta{sv})`, expected `(osua{sv})` and the press was dropped as an invalid signal. Registration succeeded and the desktop even reported the bound chord back, so the hotkey looked wired up while doing nothing at all — on every Wayland compositor, for the whole life of the feature (#1490). Decode the 64-bit timestamp, and keep the 32-bit spelling as a fallback so a non-conforming portal degrades to working rather than to silence. With presses arriving, the second half of the failure showed: nothing had shown the widget window since it became a hidden recorder host, so a capture ran with no pill on screen — and a mic or Accessibility failure rendered into a window nobody could see. Add show_dictation_pill, which bottom-centres the capsule on the monitor under the pointer and shows it without taking focus (Windows keeps SW_SHOWNOACTIVATE so paste still lands in the user's document), and call it from the widget for every state but idle. Wayland denies clients their own placement, so the compositor picks the spot there; the pill still appears. dispatch_dictation_capture now logs whether a press was emitted or queued — a press that reaches Rust and produces nothing was otherwise indistinguishable from one the compositor never delivered. Tests: portal signals decode at both timestamp widths (the 64-bit case fails before this change with the exact production error); pill placement centres, respects a second monitor's origin, and clamps rather than going off-screen; the widget shows for a state needing the user, stays hidden while idle, and never shows for a press that arrives while dictation is disabled. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: sync in-progress workspace changes Uncommitted work already in the tree, checkpointed so the branch matches the local machine: - Remote GPU workers: join-from-the-app flow, one-time secrets, QR join codes, a Compute control in the status bar, and the device-list Workers panel (#1516) - Model Catalogue workspace, with Settings pointing at it - Settings sidebar search and keyboard navigation - Demo assets for dubbing, dictation and voice design, plus the scripts that render them - Backend: validation-error handling, ASR request-path degradation, and the accompanying tests - CHANGELOG entries for the above and for the Wayland dictation fix Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(tests): follow Engines to the Model Catalogue, and green the sweep - test_supertonic3 asserted the license gate points at "Settings" while the engine now names Model Catalogue → Engines, which is where the accept button actually lives. The assertion follows the move; what it pins is unchanged — the hint must name a place the user can reach it. - Carries the CJK allowlist entries for the rendered dub bundle (#1517) and the regenerated route snapshot for /workers/agent (#1516), both of which this branch inherits from the workspace sync. - docs/install/linux.md: the dictation capsule is bottom-anchored everywhere except Wayland, where the protocol gives applications no say in their placement. Documented rather than left as a surprise (CodeRabbit). Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * ci: stop a flaky dependency fetch from failing green runs en-core-web-sm resolves to a direct GitHub release URL, and github.com intermittently answers `http2 error: refused stream before processing any application logic`. uv's own three retries all land within the same few seconds and fail together, so the whole job dies on a dependency that has nothing to do with the change under test — it cost #1518 and #1517 an otherwise-green run tonight. Two changes: back off between whole `uv sync` attempts, which is what actually clears it, and pass --no-sync to the pytest steps. `uv run` re-resolves the environment before running, so every test step was a fresh chance to hit the same fetch even though the install step had already synced — that is exactly how #1518 failed, in the isolated backend/tests step, with all 5467 tests already passed. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * ci: one retry seam for every uv sync, not just the job that failed last en-core-web-sm resolves to a direct GitHub *release* URL rather than a package index, and github.com intermittently answers `http2 error: refused stream before processing any application logic`. uv's own retries all land inside the same ~10 seconds and fail together, so a job dies on a dependency unrelated to the change under test. Tonight that cost four otherwise-green runs across #1515, #1517 and #1518 — and the first fix only covered the Tests job, so the next failure simply moved to Smoke (Linux), which syncs separately. The fetch is per-job, so the fix has to be per-job: scripts/uv-sync-retry.sh backs off between whole attempts (15s, 45s, 90s) and every workflow that syncs now goes through it — ci.yml (tests + the platform matrix), release.yml, security.yml, evals.yml. It still fails loudly after four attempts, so a genuinely broken lockfile is not disguised as a flake. The Tests job also lacked the UV_HTTP_TIMEOUT / UV_HTTP_RETRIES the smoke matrix has always set, which is part of why it was the one that kept dying; it has them now. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * test(ci): pin the Intel-Mac contract by intent, not by command spelling test_ci_verifies_intel_mac_as_the_documented_remote_only_host asserted the literal line `run: uv sync --extra pockettts`, so routing every sync through scripts/uv-sync-retry.sh read as a broken Intel-Mac contract. The contract it exists to protect is that the pockettts extra installs ONLY on backend_supported legs — which the regex now pins, while leaving how the sync is invoked free to change. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * ci: keep every uv run out of the resolver, and bound the retry budget CodeRabbit, #1517: - `uv run` re-resolves before running, so the smoke suite, the worker-artifact tests, the release test run and the eval run were each a fresh chance to hit the flaky direct-URL fetch outside the retry loop. All of them pass --no-sync now; the environment is already synced by the step that owns the retries. security.yml's `uv run --with pip-audit` is deliberately left alone — it layers an ephemeral package rather than running the project's own tests. - The retry count multiplied uv's own budget (UV_HTTP_RETRIES=5 with a 120 s timeout on the smoke matrix). Three attempts and 60 s of total backoff outlast the refusals actually observed while staying well inside the jobs' timeout-minutes. - The Intel-Mac contract test pinned the smoke command literally too, so --no-sync tripped it exactly like the sync line did. Same fix: assert the contract (smoke runs only on backend_supported legs), not its spelling. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
180 lines
7.7 KiB
Python
180 lines
7.7 KiB
Python
"""Crash-isolated ASR backends (Wave 4.2 / Spec 7).
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Native ASR engines (the whisper.cpp / CTranslate2 class) can segfault on GPU
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teardown — a process-level crash that takes the whole backend down with it.
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Running them in a child process turns that segfault into a *failed job*: the
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sidecar dies, the parent surfaces a decorated error, and the next request
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respawns a fresh sidecar.
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This reuses ``SubprocessBackend``'s wire protocol + lifecycle (spawn, ready
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handshake, length-prefixed JSON, GPU-slot acquire, and — critically —
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respawn-on-dead-process: ``_spawn`` relaunches whenever the previous child
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isn't alive). We add a ``transcribe`` op alongside the TTS ``synthesize`` op;
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the TTS ``generate`` surface is stubbed since an ASR sidecar never synthesizes.
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The base is engine-agnostic; concrete subclasses point ``sidecar_script()`` at
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an engine runner. ``IsolatedFasterWhisperBackend`` wraps faster-whisper (the
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CTranslate2 engine with the documented GPU-teardown crash) using the parent
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venv — faster-whisper is already a dependency, so no separate venv is needed,
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only process isolation.
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"""
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from __future__ import annotations
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import logging
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import sys
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import threading
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from pathlib import Path
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from services.subprocess_backend import (
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RECV_TIMEOUT_S,
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SubprocessBackend,
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)
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logger = logging.getLogger("omnivoice.asr.subprocess")
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# A model load + transcription can take a while on CPU for a long clip; give
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# the transcribe round-trip more headroom than the TTS default.
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ASR_RECV_TIMEOUT_S = 600.0
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class SubprocessASRBackend(SubprocessBackend):
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"""Crash-isolated ASR over the SubprocessBackend protocol.
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Concrete subclasses set ``id`` / ``display_name`` and override
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``venv_python()`` / ``sidecar_script()``. They are registered in the ASR
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registry (``services.asr_backend._REGISTRY``); the registry uses
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``is_available()`` + ``transcribe()`` duck-typed, so subclassing the TTS
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``SubprocessBackend`` is fine.
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"""
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# ── TTS surface stubs (an ASR sidecar never synthesizes) ───────────────
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@property
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def sample_rate(self) -> int: # pragma: no cover - unused
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return self._DEFAULT_SAMPLE_RATE
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@property
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def supported_languages(self) -> list[str]: # pragma: no cover - unused
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return ["multi"]
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def generate(self, text: str, **kw): # pragma: no cover - unused
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raise NotImplementedError("ASR sidecar does not synthesize speech")
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# ── ASR surface ────────────────────────────────────────────────────────
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@staticmethod
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def _device() -> str:
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try:
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import torch
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if torch.cuda.is_available():
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return "cuda"
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if getattr(torch.backends, "mps", None) and torch.backends.mps.is_available():
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return "mps"
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except Exception:
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pass
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return "cpu"
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def transcribe(self, audio_path: str, *, word_timestamps: bool = True) -> dict:
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"""Transcribe ``audio_path`` in the sidecar. Returns the engine's
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result dict ({"segments": [...], "language": ...}).
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A sidecar crash mid-transcription raises a RuntimeError decorated with
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the engine id + device (so the failure is attributable, not a bare
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broken-pipe) — and the *next* call respawns a fresh sidecar via
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``_spawn``'s dead-process check. Acquires a GPU-pool slot for the
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duration, released even if the child dies (the base's try/finally)."""
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# On-pool callers (run_transcribe_guarded dispatches via run_in_executor
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# on the GPU pool) already own a pool slot; re-acquiring would
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# self-deadlock on a 1-worker (MPS) pool, so skip it. Off-pool callers
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# hold a real slot for the whole transcription via _occupy. Mirrors
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# SubprocessBackend.generate()'s path-aware slot block.
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from services.model_manager import running_on_gpu_pool
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_held = None
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slot_future = None
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if not running_on_gpu_pool():
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from services.model_manager import _get_gpu_pool
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pool = _get_gpu_pool()
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_held = threading.Event()
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_acquired = threading.Event()
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def _occupy():
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_acquired.set()
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_held.wait()
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slot_future = pool.submit(_occupy)
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try:
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if _held is not None and not _acquired.wait(timeout=10):
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if slot_future is not None:
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slot_future.cancel()
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raise TimeoutError("timed out waiting for a free GPU worker")
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with self._lock:
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self._spawn()
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self._send({
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"op": "transcribe",
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"audio_path": str(audio_path),
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"word_timestamps": bool(word_timestamps),
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})
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reply = self._recv_with_timeout(ASR_RECV_TIMEOUT_S)
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if not reply:
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# Pipe closed mid-transcription → the child crashed.
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raise RuntimeError(
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f"{self.id} ASR sidecar crashed mid-transcription "
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f"(device={self._device()}); the job failed but the backend "
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f"stayed up — retry to respawn a fresh sidecar."
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)
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if reply.get("op") == "error":
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raise RuntimeError(
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f"{self.id} ASR sidecar error (device={self._device()}): "
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f"{reply.get('message')!r}"
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)
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if reply.get("op") != "segments":
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raise RuntimeError(
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f"{self.id} ASR sidecar returned unexpected op: {reply.get('op')!r}"
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)
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return reply.get("result") or {"segments": [], "language": "unknown"}
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finally:
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if _held is not None:
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_held.set()
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class IsolatedFasterWhisperBackend(SubprocessASRBackend):
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"""faster-whisper (CTranslate2) in a child process — opt-in.
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CTranslate2's GPU teardown can segfault (the endemic faster-whisper crash);
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running it isolated keeps that from killing the backend. Uses the PARENT
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venv (faster-whisper is already installed) — only the process boundary is
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new. Select with ``OMNIVOICE_ASR_BACKEND=faster-whisper-isolated``.
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"""
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id = "faster-whisper-isolated"
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display_name = "Faster-Whisper (crash-isolated subprocess)"
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# Same engine as FasterWhisperBackend, so the same device support — the
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# sidecar picks cuda/cpu itself via `_device()`. Without this the registry
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# default ("cpu",) would dishonestly report cpu_only routing on CUDA hosts.
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gpu_compat = ("cuda", "cpu")
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@classmethod
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def is_available(cls) -> tuple[bool, str]:
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try:
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import faster_whisper # noqa: F401
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except Exception as e:
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return False, f"faster-whisper not installed: {e}"
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if not cls.sidecar_script().is_file():
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return False, f"ASR sidecar script missing at {cls.sidecar_script()}"
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# Same CTranslate2 engine, same cuDNN 8 requirement (#1371). Crash
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# isolation means a missing cuDNN 8 kills only the child — so instead of
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# a dead backend the user gets a sidecar that fails every transcribe
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# with no explanation. Report it here, where Model Catalogue → Engines shows it.
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from services.asr_backend import _ctranslate2_cudnn_ok
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return _ctranslate2_cudnn_ok()
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@classmethod
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def venv_python(cls) -> Path:
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# faster-whisper lives in the parent venv — isolation is process-only.
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return Path(sys.executable)
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@classmethod
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def sidecar_script(cls) -> Path:
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return Path(__file__).resolve().parents[1] / "engines" / "_asr_sidecar" / "main.py"
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