* docs(playback): plan protocol v3 server implementation * docs(playback): incorporate protocol v3 review * feat(playback): implement protocol v3 server * fix(playback): persist empty route diagnostics * feat(playback): harden protocol v3 HDR routing * feat(playback): complete protocol v3 client contract * fix(playback): harden protocol v3 recovery * fix(playback): restore dovi_rpu strip filter for DV remuxes The v3 work renamed the Dolby Vision strip recipe to a dovi_split=mode=bl bitstream filter that does not exist in stock FFmpeg or jellyfin-ffmpeg; the probe failed closed on every deployment, disabling the new validated DV7-to-HDR10 route and regressing the previously working dovi_rpu=strip=1 remux path from main. Restore dovi_rpu across the probe, remux and HLS copy arguments, and the recipe-card constant. Also from review: validate the remux DV mode for every profile (garbage modes on non-P7 sources silently no-opped), reject preserve mode for P7 outright (a base-layer-only remux cannot preserve dual-layer DV), tag dvhe sample entries only for the explicit v3 preserve recipe so legacy web/jellycompat remuxes keep their pre-v3 hev1 labeling, and honor the token-frozen DV mode in the proxy remux path instead of legacy-auto. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(playback): correct v3 planner policy and contract validation Review fixes to the v3 planner and wire contracts: - Bar Profile 7 sources from the non-strip progressive remux route: a base-layer-only remux can never deliver native dual-layer DV, so the planner no longer emits plans claiming validated Dolby Vision while the executed remux drops the enhancement layer. - Accept the device-quirks feature flag from either capability location, matching every other dual-location feature check. - Treat legacy hdr_unknown rows as HDR10 for HDR10-capable clients with a degradation warning instead of leaving them unplayable under v3. - Honor bandwidth_cap_kbps as a hard ceiling in every quality mode and wire the previously dead Metered signal into conservative auto rungs. - Degrade to the validated source-quality route instead of a terminal when only an implicit quality reduction demanded an unsupported transcode; explicit user-selected rungs keep terminal behavior. - Bound inner capability lists and strings; compare attempt keys exactly instead of case-folded; make ParseTrackIDV3 strict about canonical numerics; accept dvdsub/pgssub/dvbsub aliases and stop promising burn-in for unknown subtitle codecs; probe every h264 encoder rather than requiring libx264; normalize the file-level bitrate fallback. - Evaluate subtitle renderability against the engine each candidate route executes on, not always media3_direct. - Pin the with-quirks attempt-key preimage arity in the cross-language fixture so the Kotlin client stays in lockstep. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(playback): harden v3 control-plane reliability Review fixes to the v3 session, store, and handler layer: - Bound concurrent replans with a slot semaphore: each replan pins a pooled connection for its advisory lock while issuing further store queries from the same pool, so an unbounded recovery storm could turn every connection into a lock holder and deadlock the server. - Make CompleteReplan a real compare-and-swap (base-revision predicate, ErrReplanSupersededV3) and map BeginReplan insert races to a replay instead of a raw unique violation. - Fingerprint start requests (request_digest column): an attempt ID reused with different input is now a 409-style conflict rather than a silent replay, and both replay paths check session liveness so dead sessions surface as retryable terminals. - Pre-delete expired attempt rows on SaveAttempt so a retry during the cleanup window cannot wedge on an unreachable conflict. - Align the in-memory store's semantics with Postgres and add DB-backed planstore tests (SILO_TEST_DATABASE_URL), including a regression test inserting every route-event name against the real CHECK constraint. - Session manager: v3 route-set updates own RemuxDVMode outright so a replan onto an SDR source clears a stale strip mode; replacement reservations survive unrelated legacy stream updates; replacement admission excludes the replaced session explicitly instead of decrementing totals it may no longer be part of; the admission CAS loop is bounded and decider errors are logged. - Map transient store failures to 500s instead of terminal 404/403s; authorize route events via identity-only projections after the rate limiter; keep sanitized diagnostics deterministic. - Merge the server-computed durable plan key into replan exclusions so unreproducible client history cannot re-select the failed route. - Remap tracks only when the effective edition changes (a same-file replan no longer switches audio to a lookalike track) and remap ID-only subtitle selections on edition fallback. - Cache the v3/shadow feature flags for five seconds instead of one settings SELECT per playback request; stop remote transports best-effort when the start call times out; carry dvm/tid claims and the transport-scoped job identity through the legacy audio-change re-mint; index playback_route_events(received_at) for the retention delete; run store maintenance for DB-less deployments too. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(transcode): reap idle node jobs and gate WebVTT conversion - Add an idle reaper to the transcode node: a job untouched by manifest or segment requests for ten minutes is closed and unregistered. After a v3 replan retires a transport ID, a stale in-flight stream token could resurrect the old job via reconstruct and encode to end-of-file for nobody; jobs waiting on readiness count registration as access and are never reaped mid-wait, and reaping keeps the recipe so a still-valid token reconstructs on the next hit. - Reject bitmap subtitle tracks (PGS) on the .vtt conversion path with 415 before headers are written instead of spawning an ffmpeg command that always fails mid-response, and make the extract-format override fall back to source-driven mapping for bitmap codecs. - Drain error bodies on non-202 node responses so the HTTP transport can reuse connections. - Pin the transcode-dir cleanup separator-boundary semantics with a regression test (a session ID sharing another's prefix must not retain foreign directories). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(playback): close v3 planner policy gaps from review - Clamp the final transcode bitrate to bandwidth_cap_kbps: the ladder has no rung below 480p/1500kbps, so lower caps were silently exceeded even though the cap is documented as a hard delivery ceiling. - Treat video-only media as audio-compatible instead of forcing an AAC conversion (or an audio_conversion_unsupported terminal) onto a file with no audio stream. Tracks whose codec failed to probe keep the gate. - Only promise a bitmap subtitle sidecar for embedded PGS with an engine that renders embedded bitmap: external/downloaded bitmap and embedded DVD/DVB published artifact URLs that always failed at fetch. They now fall through to burn-in or its terminal. - Accept client_video_transformations_v1 from either client_features or the nested context when validating client-executor transformations, matching the planner's dual-source reads. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(playback): probe and execute DV remuxes with one ffmpeg binary The v3 transformation registry probed the configured playback.ffmpeg_path while progressive remux execution resolved the process-global discovery path, so a deployment where only one binary carries dovi_rpu could plan a server_dv7_to_hdr10 route and then fail it at stream time. Resolution now goes through a shared ResolveFFmpegPath (configured path first, discovery fallback — the same rule the transcode pipeline already used), the dovi_rpu probe is cached per binary path, and the stream handler and proxy worker pass their configured path into ServeRemuxWithDVMode. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(playback): harden v3 replan identity and control-plane limits - Seed failure-replan track selections from the durable current plan before overlaying the request: after an alternate-version fallback the normalized request still carries requested-edition track IDs, so a replan omitting unchanged tracks was rejected as a track/file mismatch. - Remap ID-only audio selections across edition changes (parse the ID to an index like the subtitle remap already does) instead of leaving a stale file-bound ID to fail validation. - Release the node planner reservation when a prepared remote transport rolls back after the node accepted the job; repeated failed starts could otherwise pin max-job/bandwidth budgets for the full reservation age. - Size the replan semaphore below the PostgreSQL pool via a store capacity advisor: with max_connections at or below the fixed bound, advisory-lock holders could starve the inner store queries they need to finish. - Contain shadow-planner panics with a recover boundary; it runs on a bare goroutine where an escaped panic kills the process for what is telemetry-only work. Document why the memory store's session lock is deliberately a no-op. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(transcode): serialize node job teardown against reconstructs - Look up and touch manifest/segment sessions in one critical section so the idle reaper cannot unregister a job between the lookup and its liveness refresh. - Re-validate each reap candidate under the per-session lifecycle lock before closing it: Close removes the output directory, and without the lock it could race a token reconstruct and wipe the segments the fresh ffmpeg is writing. - Take the lifecycle lock in handleStop so a stop racing a RequireReady start's readiness wait blocks until registration and tears the job down, instead of 404ing and orphaning the ffmpeg until the reaper. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> --------- Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
98 lines
4.0 KiB
Go
98 lines
4.0 KiB
Go
package streamtoken
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import (
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"fmt"
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"time"
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"github.com/golang-jwt/jwt/v5"
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)
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// Claims holds everything a stateless proxy or transcode node needs
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// to serve a streaming session without database access.
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//
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// Under token-carried reconstruction (TR-lease) the token is also the durable
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// reconstruction descriptor: its claims carry the full set of byte-affecting
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// encode parameters (the former Postgres "recipe card"), so a front-end that has
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// lost its in-memory session can rebuild ffmpeg from the token the client
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// re-presents — no shared per-session store. The ownership claims (uid/pid/mfid)
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// are lookup keys re-resolved against the authority on reconstruct; they are
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// never trusted on their own.
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type Claims struct {
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SessionID string `json:"sid"`
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MediaPath string `json:"path"`
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PlayMethod string `json:"method"`
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TranscodeAudio bool `json:"ta,omitempty"`
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TranscodeNode string `json:"tnode,omitempty"`
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TranscodeTransportID string `json:"tid,omitempty"`
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TargetCodec string `json:"tc,omitempty"`
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TargetRes string `json:"tres,omitempty"`
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AudioCodec string `json:"ac,omitempty"`
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AudioChannels int `json:"ach,omitempty"`
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AudioTrackIndex int `json:"ati,omitempty"`
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// DVProfile is the file's Dolby Vision profile (0 = none); remux nodes
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// use it to strip dangling profile 7 RPUs. Absent in older tokens, which
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// decodes as 0 (no strip — the pre-existing behavior).
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DVProfile int `json:"dvp,omitempty"`
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// RemuxDVMode freezes whether a Profile 7 remux preserves or strips DV
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// metadata. Empty is the legacy auto behavior for old tokens.
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RemuxDVMode string `json:"dvm,omitempty"`
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// Ownership / authorization lookup keys (re-resolved at reconstruct).
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// Not trust assertions.
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UserID int `json:"uid,omitempty"`
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ProfileID string `json:"pid,omitempty"`
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MediaFileID int `json:"mfid,omitempty"`
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// Reconstruction recipe — the byte-affecting encode parameters, mirroring the
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// former playback.RecipeCard. Zero for direct/remux tokens, which reconstruct
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// from identity alone plus the client-supplied position.
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SourceVideoCodec string `json:"svc,omitempty"`
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VideoBitstreamFilter string `json:"vbsf,omitempty"`
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OutputSubdir string `json:"osd,omitempty"`
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SeekSeconds float64 `json:"seek,omitempty"`
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SegmentDuration int `json:"segd,omitempty"`
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StartSegmentNumber int `json:"ssn,omitempty"`
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SubtitleTrackIndex int `json:"sti,omitempty"`
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SubtitleBurnIn bool `json:"sbi,omitempty"`
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SubtitleCodec string `json:"sbc,omitempty"`
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TargetBitrateKbps int `json:"tbr,omitempty"`
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TotalDuration float64 `json:"dur,omitempty"`
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FastStart bool `json:"fs,omitempty"`
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TargetCodecAudio string `json:"tca,omitempty"`
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// Recipe staleness hint, bumped on each re-mint after a recipe mutation
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// (audio/quality/seek switch). An optional client-side hint only.
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Version int `json:"ver,omitempty"`
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jwt.RegisteredClaims
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}
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// Sign creates a signed JWT string from the given claims.
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func Sign(c Claims, secret string, ttl time.Duration) (string, error) {
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now := time.Now()
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c.RegisteredClaims = jwt.RegisteredClaims{
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ExpiresAt: jwt.NewNumericDate(now.Add(ttl)),
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IssuedAt: jwt.NewNumericDate(now),
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}
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token := jwt.NewWithClaims(jwt.SigningMethodHS256, c)
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return token.SignedString([]byte(secret))
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}
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// Verify parses and validates a stream token JWT string.
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func Verify(tokenString, secret string) (*Claims, error) {
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token, err := jwt.ParseWithClaims(tokenString, &Claims{}, func(token *jwt.Token) (any, error) {
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if _, ok := token.Method.(*jwt.SigningMethodHMAC); !ok {
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return nil, fmt.Errorf("unexpected signing method: %v", token.Header["alg"])
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}
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return []byte(secret), nil
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})
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if err != nil {
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return nil, fmt.Errorf("invalid stream token: %w", err)
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}
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claims, ok := token.Claims.(*Claims)
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if !ok || !token.Valid {
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return nil, fmt.Errorf("invalid stream token claims")
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}
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return claims, nil
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}
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