39ba284c9d feat(ai): shared AI core — metadata translation, Whisper ASR, per-profile language, on-view translation (#127)
* docs: design + plan for shared AI core, metadata translation, Whisper ASR

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* refactor(ai): shared LLM client, segment translator, and job runner packages

internal/ai/llm: OpenAI-compatible chat client moved out of subtitles/ai,
plus /v1/audio/transcriptions (verbose_json) for the ASR work; one shared
retry/backoff loop for both. internal/ai/translate: the batched indexed-JSON
translation protocol generalized to text segments. internal/ai/jobrunner:
dispatch/heartbeat/reaper/cancel lifecycle extracted behind a minimal store
interface, with a semaphore shareable across job services.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* refactor(subtitles): consume shared AI core

LLMTranslator becomes a thin cue<->segment adapter over aitranslate; the
service delegates dispatch/heartbeat/reaper/cancel to jobrunner; the local
OpenAI client is gone in favor of internal/ai/llm. Behavior (prompts, wire
protocol, job rows, recovery semantics) is unchanged. NewService now takes
the dispatch semaphore so all AI job services can share one bound.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* feat(config): shared ai.* settings, metadata translation job table, localization provenance columns

ai.* connection keys (chat + optional separate ASR endpoint) load with a
fallback to the legacy subtitle_ai.* rows — those are never renamed in SQL
because encrypted values are GCM-bound to their setting key. New toggles:
subtitle_ai.transcribe_enabled, metadata_ai.enabled. Migration adds
metadata_translation_jobs, per-field provenance (provider|ai|manual) on the
localization tables, and media_folders.auto_translate_metadata.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* feat(catalog): localization field provenance with provider/ai/manual precedence

Provider upserts keep manual values and never blank a field with an empty
incoming value; new UpsertAITranslation/UpsertAIOverview methods write AI
fields only over empty or ai-sourced values (force adds provider, never
manual) — all enforced in single-statement SQL. Serving now merges only
non-empty localized fields onto the base item, since localization rows are
legitimately partial (AI rows carry no titles/artwork).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* feat(metadata): AI translation service, refresh auto-fallback, and admin API

internal/metadata/translation: job service over the shared AI core that
expands an item to its season/episode overviews, skips already-localized
fields (zero model calls on repeat runs), batches paragraphs through the
generic translator, and persists per batch with provenance-aware upserts.
MetadataService gains an AutoTranslator seam invoked after each refresh for
libraries with auto_translate_metadata. Admin endpoints under the metadata
curation guard: enqueue, list (poll), cancel; plus a status probe.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* feat(subtitles): Whisper ASR transcribe and transcribe_translate jobs

New WhisperTranscriber: one ffmpeg pass extracts the audio track to 10-min
16kHz mono WAV chunks (temp dir cleaned on every exit path), each chunk goes
to the OpenAI-compatible /v1/audio/transcriptions endpoint (verbose_json,
per-request timeout sized to 3x chunk duration), segment timestamps are
offset and built into wrapped cues. Chunks process playhead-first and stream
live to the requesting session. The transcript is stored as an ordinary
downloaded subtitle (provider 'transcribed'); transcribe_translate chains
the existing translator and stores the translated track as the job result.
Enqueue accepts an optional kind; status reports transcribe_enabled.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* feat(web): AI services settings, metadata translate action, library auto-translate, generate-from-audio

New AI Services admin page hosts the shared endpoint config (reads fall back
to legacy subtitle_ai.* values, writes target ai.*) and the three feature
toggles; the AI card moves out of Subtitles settings. The metadata editor
gains a Translate-with-AI panel with job polling and force/re-translate. The
library form gains the auto-translate toggle (threaded through the libraries
API). The player translate modal gains a From-audio mode that lists audio
tracks and submits transcribe / transcribe_translate jobs.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* style: gofmt import grouping in router and translation tests

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* feat(catalog): per-profile metadata language and viewer-triggered description translation

user_profiles.preferred_metadata_language threads through the access scope
into catalog serving: presentation language now resolves explicit param ->
profile preference -> library metadata language (native API and jellycompat).
ItemDetail gains pending_translation_language when the viewer's language is
missing a localized overview. New metadata_ai.on_view setting (off|button|
auto) gates POST /items/{id}/translate-description: any profile with item
access may request its language, with in-flight dedup and a 15-minute
failure cooldown so page views never hammer a broken endpoint.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* feat(web): on-view description translation with per-profile metadata language

Profile playback settings gain a Metadata language picker (library default
inherit). Detail pages: when the server reports pending_translation_language
and metadata_ai.on_view is 'auto', the description translates on view with a
pulse animation until the refetched detail comes back localized (45s
timeout); in 'button' mode a small Translate chip triggers the same flow.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(web): expose metadata_ai.on_view in AI Services settings

The on-view translation mode had no UI control, so it could only ever be
'off' — viewers got neither the auto translation nor the fallback button.
Adds the off/button/auto selector to the Features card, and the config
loader now warns and falls back to 'off' on a bad row instead of refusing
to start.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(ai): clear configuration hint when the transcription endpoint is chat-only

A blank Transcription base URL falls back to the chat endpoint; chat-only
gateways reject the multipart upload with an opaque 400 that reads like a
pipeline bug. 400/404/405 transcription failures now carry a hint to set a
Whisper-compatible endpoint in AI Services.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(subtitles): wrap ASR cue text by rune count, not bytes

Arabic/Cyrillic/Greek text is 2+ bytes per character in UTF-8, so byte-based
wrapping broke lines at roughly half the intended visual width.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* docs(web): steer transcription base URL hint away from chat-only gateways

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* feat(ai): block chat-only gateways for transcription, add endpoint presets

llm.IsChatOnlyGateway (OpenRouter et al — no timestamped transcription API)
is enforced in three layers: the settings API rejects ai.asr_base_url values
pointing at one, the router disables ASR with a warning when the blank-URL
fallback would land on one, and llm.Transcribe refuses outright. The AI
Services page gains one-click transcription presets (Groq turbo/accurate,
OpenAI, self-hosted speaches) plus the mirrored client-side check, and the
settings API now also validates metadata_ai.on_view.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(subtitles): tighten ASR subtitle sync

Three systematic timing-error sources addressed: cue offsets now use the
segment muxer's exact per-chunk start times (segment_list CSV) instead of
assuming index*chunk_seconds; the audio stream's start delay relative to the
container timeline (common in TS remuxes) is probed via ffprobe and added to
every cue; and the chunk length is now operator-tunable via
subtitle_ai.asr_chunk_seconds (60-600s, default 600) since shorter chunks
bound Whisper's within-chunk timestamp drift. Playhead-first ordering now
pivots on real chunk starts, and a beyond-end playhead starts at the final
chunk instead of restarting from zero.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(ai): tolerate base URLs that already include the /v1 segment

Providers like DeepInfra expose their OpenAI-compatible API under a base
that contains the version segment (api.deepinfra.com/v1/openai); always
appending /v1/... mangled those. endpointURL now appends bare paths when
the base already carries /v1.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* feat(web): prefer self-hosted transcription in presets and hints

Preset order becomes self-hosted (recommended) -> Groq turbo -> Groq
large-v3 -> OpenAI, and the settings hint plus the job-error hint lead with
the self-hosted option. The self-hosted preset now fills the turbo CT2 model
to match the recommended speaches setup.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(subtitles): request VAD and word timestamps for ASR cue accuracy

Without vad_filter, faster-whisper servers report wall-to-wall segment
times: cues linger on screen through silence (verified up to 91s) and
paragraph-length segments become single 400+ char cues. Request
vad_filter=true (skipped for hosted providers that reject non-OpenAI
fields and run VAD server-side) plus timestamp_granularities word+segment,
and rebuild cues from word timings: split at speech pauses, sentence ends,
text capacity, and a 7s max duration; cap word-less segments instead of
trusting their reported end; stretch sub-second cues to a readable minimum.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

---------

Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
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Silo

A self-hosted media streaming server with a React frontend and Go backend. Supports direct play, remuxing, and hardware-accelerated transcoding. Compatible with Jellyfin/Emby clients (VidHub, Findroid) via a built-in compatibility layer.

Join the community on Discord.

The easiest way to run Silo is with Docker Compose. The default stack assumes you do not already have PostgreSQL and Redis available, so it bundles PostgreSQL, Redis, FFmpeg, and the application for a one-command start.

  1. Create a .env file

    cp .env.example .env
    
  2. Set your media path

    Edit .env and set:

    MEDIA_ROOT=/path/to/your/media
    

    MEDIA_ROOT is the one value most users need to change. You can also override SILO_DATA_ROOT if you do not want bind mounts under /opt/silo, and change ports if the defaults conflict with something else on the host.

  3. Start the default integrated stack

    docker compose up -d
    

    This starts PostgreSQL, Redis, and the integrated Silo server. The app is available at http://localhost:8090 and the Jellyfin-compatible endpoint at http://localhost:8096.

    If you already have PostgreSQL and Redis available, omit those bundled service examples from compose and point Silo at your existing DATABASE_URL and REDIS_URL instead.

    Optional NVIDIA/NVENC

    GPU support is kept out of the default compose file so hosts without NVIDIA drivers work unchanged.

    Install the NVIDIA Container Toolkit and use a Docker Compose version with GPU reservation support before enabling this override.

    Use the optional override file when you want NVENC:

    docker compose -f docker-compose.yml -f docker-compose.nvidia.yml up -d
    

    If you want this controlled from .env, set COMPOSE_FILE:

    COMPOSE_FILE=docker-compose.yml:docker-compose.nvidia.yml
    NVIDIA_GPU_COUNT=1
    

    Windows uses ; instead of : between compose files.

    Then docker compose up -d will include the NVIDIA override automatically.

  4. Configure through the admin UI

    Add libraries, users, metadata providers, and playback settings from the web interface.

Bind Mount Layout

The deploy-oriented compose files use host folder mappings rather than Docker-managed volumes.

By default, data is stored under /opt/silo:

  • /opt/silo/postgres
  • /opt/silo/redis
  • /opt/silo/transcode
  • /opt/silo/catalog-seeds

Media is mounted into the container at /mnt/media from the host path you set in MEDIA_ROOT.

Optional Profiles

The main compose file is integrated-first. These profiles exist for operators testing distributed mode or mirroring a split deployment shape. Most single-host installs should stay on the default integrated service, because it already includes proxying and transcoding.

Profile Command Description
default docker compose up -d Integrated server plus bundled PostgreSQL and Redis
proxy docker compose --profile proxy up -d Start a standalone proxy service for distributed-mode testing
transcode docker compose --profile transcode up -d Start a standalone transcode service for distributed-mode testing

You can enable both optional examples together:

docker compose --profile proxy --profile transcode up -d

If you are splitting workers across multiple hosts, use the separate remote worker example instead of trying to stretch the main compose file across machines.

Advanced Remote Node Example

For a dedicated remote transcode worker, use docker-compose.remote-transcode.yml. That file is intended for a separate worker host that connects back to an existing Silo deployment using shared PostgreSQL and Redis.

Deployment Notes

The default compose stack intentionally bundles PostgreSQL and Redis for ease of setup and assumes a fresh install without those services already available. If you already operate PostgreSQL and Redis, omit those examples from compose and point Silo at your existing infrastructure instead. For serious installs, PostgreSQL is better on a separate VM or a managed service so upgrades, tuning, and backups are isolated from the app host. Redis can stay local for many installs, but externalizing it is also reasonable if you already operate shared infrastructure.

Silo is externally stateful by default rather than fully stateless. Durable application state lives in PostgreSQL. Redis only stores coordination and cache-style data. Silo still writes transient transcode output locally under /tmp/silo-transcode. If you switch userdb.backend=sqlite, Silo also becomes locally stateful at /var/lib/silo/userdb.

Migrating an existing Continuum Docker install should be done with the preflight helper and cutover guide in docs/continuum-to-silo-docker-migration.md.

Build from Source

Prerequisites

  • Go 1.24+
  • Bun 1.0+
  • PostgreSQL 18+
  • FFmpeg (for transcoding support)

Quick Start

  1. Start PostgreSQL (skip if you already have one running)

    docker compose up -d postgres redis
    

    The main compose file still expects MEDIA_ROOT to be set even if you only want the bundled PostgreSQL and Redis services, so set that in .env first.

  2. Configure the database connection

    cp .env.example .env
    

    Edit .env and set DATABASE_URL to point to your PostgreSQL instance.

  3. Build and run

    make build
    ./silo
    

    The server starts at http://localhost:8080 by default. All other settings are configured through the admin UI.

Development

Local development remains intentionally separate from the deploy-oriented compose setup. Use docker-compose.yml and the existing source-build workflow for local development.

# Run the frontend dev server (hot reload, proxies API to :8090)
make dev-frontend

# Run the Go backend
make dev-backend

If you are developing Silo and silo-plugin-sdk together, keep using the local go.work workspace. That workspace is a developer convenience only. CI and release builds run with GOWORK=off, so any new SDK helper used here must be pushed and tagged in silo-plugin-sdk before this repo can merge or release the change.

See CONTRIBUTING.md for contribution expectations, merge request guidance, and the policy for AI-assisted submissions.

Plugin authors should start with docs/architecture/plugin-development.md, which covers the RPC plugin package format, generated proto workflow, SDK import paths, route and asset exposure, and auth or user-config integration points.

Reporting Issues

If you are reporting a bug, install problem, or performance issue, start with the admin workflow and reproduction steps, not Claude/Codex analysis.

Please include:

  • What you were trying to do
  • Exact steps you took
  • What you expected to happen
  • What actually happened
  • What exact action is slow or broken (save, scan, browse, import, playback, etc.)
  • Whether it happens every time or only sometimes
  • The library, media type, filter, setting, or value involved
  • Version, branch, commit, and deployment details if you know them
  • Screenshots, recordings, or log snippets if relevant

If you used Claude/Codex for debugging, put that under Technical notes at the end. Suspected files, SQL output, stack traces, and root-cause theories can be helpful, but only after the workflow and repro steps are clear.

Use this template:

Goal:
Steps:
Expected:
Actual:
What is slow/broken:
Scope:
Version/branch:
Deployment:
Technical notes:

Make Targets

Target Description
make build Build frontend + Go binary
make frontend Build frontend only
make dev-frontend Vite dev server with HMR
make dev-backend Run Go backend (integrated mode)
make dev-proxy Run a standalone proxy node
make dev-transcode Run a standalone transcode node
make migrate-create NAME=add_thing Create a timestamped Goose SQL migration
make migrate-validate Validate Goose migration files without touching a database
make migrate-status Show Goose migration status using Silo's bootstrapping runner
make migrate-up Apply pending Goose migrations using Silo's bootstrapping runner
make clean Remove build artifacts

Database Migrations

PostgreSQL schema migrations are managed by Goose. Migration SQL files live in migrations/sql/ and use Goose annotations. Converted legacy migrations keep their original numeric versions so existing schema_versions rows can bootstrap cleanly into Goose without replaying old SQL. New migrations should be created with timestamped filenames:

make migrate-create NAME=add_thing
make migrate-validate

Do not run goose fix; timestamped migrations are the repository policy because they avoid version collisions across parallel PRs. The existing 001-style files are historical compatibility records, not the naming pattern for new work. Runtime migrations are applied by the integrated/API server only. Proxy and transcode modes never mutate schema. For existing installs, use make migrate-status and make migrate-up rather than invoking the Goose CLI directly; those targets copy legacy schema_versions rows into public.goose_db_version under the migration lock before reading or applying migrations. Set ENV_FILE=path/to/.env when the database URL should be read from a non-default env file.

Running Tests

# Go tests (uses testcontainers — Docker must be running)
go test ./...

# Frontend tests
cd web && bun test

Linting

# Go
golangci-lint run

# Frontend
cd web && bun run lint
cd web && bun run format:check

License

Silo is licensed under AGPL-3.0-or-later. See LICENSE.

Configuration

Silo requires only a DATABASE_URL when running from source or against external infrastructure. In the default Docker Compose path, the stack wires the database and Redis URLs for you. All other settings — libraries, metadata providers, transcoding, users — are managed through the admin UI after first launch.

Server Modes

Mode Description
integrated Full server: API + frontend + scanner + transcode (default)
api API server only, no local transcoding
proxy Stream proxy node that connects to the shared deployment database and Redis
transcode HLS transcode worker node that connects to the shared deployment database and Redis

PostgreSQL Auto-Tuning

The default Docker Compose stack does not require a checked-in postgresql.conf. It enables Silo's pgtune-style OLTP tuning by default:

POSTGRES_TUNE: auto

When enabled, Silo connects with DATABASE_URL and applies recommendations with ALTER SYSTEM, which writes to PostgreSQL's postgresql.auto.conf inside the database data directory. Reloadable settings are applied immediately with pg_reload_conf(). Settings that PostgreSQL marks as restart-only are written too, and Silo logs the setting names so you can restart PostgreSQL once:

docker compose restart postgres

The default Compose database user has the required PostgreSQL permissions. If you use an external PostgreSQL server, make sure the configured DATABASE_URL user can run ALTER SYSTEM, or set POSTGRES_TUNE=off and manage PostgreSQL yourself.

For POSTGRES_TUNE_MEMORY=auto, Silo uses the first trustworthy memory source: a finite Docker cgroup limit, the read-only /host/proc/meminfo mount supplied by the bundled Compose file, then /proc/meminfo with container safety guards. Auto-detected memory is treated as a PostgreSQL budget, defaulting to 75% of detected RAM so Silo, Redis, plugins, transcodes, and the OS retain headroom. POSTGRES_TUNE_DB_SIZE=auto queries pg_database_size(current_database()) and classifies the workload by comparing the database size to that memory budget.

Optional tuning overrides:

Variable Default Description
POSTGRES_TUNE_PROFILE oltp Tuning profile. Only oltp is currently supported.
POSTGRES_TUNE_MEMORY auto Server/container RAM, such as 8GB or 32GB; explicit values are used as-is.
POSTGRES_TUNE_MEMORY_BUDGET_PERCENT 75 Percent of auto-detected RAM used for PostgreSQL recommendations.
POSTGRES_TUNE_CPUS auto CPU count used for worker recommendations.
POSTGRES_TUNE_STORAGE ssd One of hdd, ssd, san, or nvme.
POSTGRES_TUNE_DB_SIZE auto Use less_ram when the database comfortably fits in RAM, mid_ram, or greater_ram for very large databases.
POSTGRES_TUNE_CONNECTIONS 100 PostgreSQL max_connections; automatically raised if Silo's app pool is configured higher.
POSTGRES_SHM_SIZE 8gb Docker /dev/shm size for the bundled PostgreSQL container.

Advanced operators can still supply their own PostgreSQL configuration or override these env vars. Set POSTGRES_TUNE=off when you do not want Silo to change PostgreSQL server settings. Settings already written with ALTER SYSTEM remain in postgresql.auto.conf; reset those PostgreSQL parameters if you later move fully to a custom postgresql.conf.

Project Structure

cmd/silo/       Entry point
internal/
  api/               HTTP router, handlers, middleware
  auth/              JWT authentication and sessions
  catalog/           Media item, episode, season repositories
  config/            YAML + env var configuration
  jellycompat/       Jellyfin/Emby protocol compatibility
  metadata/          Plugin-driven metadata matching and enrichment
  playback/          Direct play, remux, transcode session management
  scanner/           Media file discovery and FFProbe
  worker/            Background jobs (scan, match, reconcile)
web/                 React + TypeScript frontend (Vite, Tailwind, shadcn/ui)
migrations/sql/      Goose-managed PostgreSQL schema migrations
S
Description
Self-hosted media streaming server with a Go backend, React web UI, Docker deployment, transcoding, and Jellyfin-compatible APIs.
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