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* fix(jellyfin): send SessionInfo on login so JellyBox gets past sign-in
JellyBox parses AuthenticateByName's SessionInfo as a required object and
fails silently when it is missing, leaving the user on the login screen.
Real Jellyfin always sends it (SessionManager.AuthenticateNewSessionInternal,
10.10.7 and master), so the login response now carries a full SessionInfo
built from the user and the MediaBrowser auth header. It includes every field
JellyBox (Id, PlayState) and Finamp (UserId, LastActivityDate, the activity
and control bools, PlayState's CanSeek/IsPaused/IsMuted) require once the
object is present. The session Id is derived from client and device id, so
repeated logins from one install share it.
* fix(jellyfin): ignore IncludeItemTypes names that aren't Jellyfin kinds
JellyBox opens an album with ParentId=<album>&IncludeItemTypes=music. Music
is not a BaseItemKind, and Jellyfin's comma-delimited binder drops values it
cannot parse, so real Jellyfin treats the request as having no type filter and
lists the album's tracks. Navidrome returned an empty list, so every album
opened empty. Entries that aren't BaseItemKind names are now dropped before
type resolution, so an all-unknown list behaves like an absent one. Real kinds
Navidrome doesn't serve, such as Boxset, still return nothing.
* fix(jellyfin): treat universal Container as the direct-play list
On /Audio/{id}/universal, Container lists the "container|codec" entries the
client can direct play, and TranscodingContainer/AudioCodec name the target
when it can't (UniversalAudioController builds DirectPlayProfiles from it).
Navidrome passed the whole list to the decider as one target format, which
matched nothing and fell back to DefaultDownsamplingFormat, so JellyBox got
every MP3 transcoded to Opus. /universal now has its own handler: a source
matching an entry keeps its format (still downsampled under a bitrate cap),
anything else is transcoded to TranscodingContainer, then AudioCodec. The
/stream routes keep treating Container as the target format.
* refactor(jellyfin): let the stream decider resolve universal requests
streamUniversal matched the Container list itself with plain string equality
and then asked the legacy resolver for the source format. That skipped the
decider's container and codec aliases (mp4 vs m4a, ogg vs opus), and a
direct-playable source over the bitrate cap was transcoded to its own format
instead of the client's TranscodingContainer.
The shared part of ResolveRequest (server-side player override, player
MaxBitRate cap, decision to Request mapping) moves to a resolve helper, and a
new ResolveClientRequest exposes it for callers that build their own
ClientInfo. streamUniversal now turns Container into DirectPlayProfiles and
TranscodingContainer/AudioCodec into a transcoding profile, so the decision
uses the same rules as the Subsonic getTranscodeDecision path. streamFile and
the /stream routes share a serveStream helper, NewSessionInfo reads the clock
itself, and duplicate comments and tests are trimmed.
459 lines
17 KiB
Go
459 lines
17 KiB
Go
package stream
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import (
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"context"
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"encoding/json"
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"fmt"
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"strings"
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"github.com/navidrome/navidrome/conf"
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"github.com/navidrome/navidrome/consts"
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"github.com/navidrome/navidrome/core/ffmpeg"
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"github.com/navidrome/navidrome/log"
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"github.com/navidrome/navidrome/model"
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"github.com/navidrome/navidrome/model/request"
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"github.com/navidrome/navidrome/utils/gg"
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)
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const fallbackBitrate = 256 // kbps
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// TranscodeDecider is the core service interface for making transcoding decisions
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type TranscodeDecider interface {
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MakeDecision(ctx context.Context, mf *model.MediaFile, clientInfo *ClientInfo, opts TranscodeOptions) (*TranscodeDecision, error)
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CreateTranscodeParams(decision *TranscodeDecision) (string, error)
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ResolveRequestFromToken(ctx context.Context, token string, mf *model.MediaFile, offset int) (Request, error)
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ResolveRequest(ctx context.Context, mf *model.MediaFile, reqFormat string, reqBitRate int, offset int) Request
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ResolveClientRequest(ctx context.Context, mf *model.MediaFile, clientInfo *ClientInfo, offset int) Request
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}
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func NewTranscodeDecider(ds model.DataStore, ff ffmpeg.FFmpeg) TranscodeDecider {
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return &deciderService{
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ds: ds,
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ff: ff,
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}
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}
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type deciderService struct {
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ds model.DataStore
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ff ffmpeg.FFmpeg
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}
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func (s *deciderService) MakeDecision(ctx context.Context, mf *model.MediaFile, clientInfo *ClientInfo, opts TranscodeOptions) (*TranscodeDecision, error) {
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decision := &TranscodeDecision{
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MediaID: mf.ID,
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SourceUpdatedAt: mf.UpdatedAt,
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}
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var probe *ffmpeg.AudioProbeResult
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if !opts.SkipProbe {
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if !s.ff.IsProbeAvailable() {
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log.Debug(ctx, "ffprobe not available, using tag metadata for transcode decision", "mediaID", mf.ID)
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} else {
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var err error
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probe, err = s.ensureProbed(ctx, mf)
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if err != nil {
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return nil, err
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}
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}
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}
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// Build source stream details (uses probe data if available)
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decision.SourceStream = buildSourceStream(mf, probe)
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src := &decision.SourceStream
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log.Trace(ctx, "Making transcode decision", "mediaID", mf.ID, "container", src.Container,
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"codec", src.Codec, "bitrate", src.Bitrate, "channels", src.Channels,
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"sampleRate", src.SampleRate, "lossless", src.IsLossless, "client", clientInfo.Name)
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// Check global bitrate constraint first.
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if clientInfo.MaxAudioBitrate > 0 && src.Bitrate > clientInfo.MaxAudioBitrate {
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log.Trace(ctx, "Global bitrate constraint exceeded, skipping direct play",
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"sourceBitrate", src.Bitrate, "maxAudioBitrate", clientInfo.MaxAudioBitrate)
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decision.TranscodeReasons = append(decision.TranscodeReasons, "audio bitrate not supported")
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// Skip direct play profiles entirely — global constraint fails
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} else {
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// Try direct play profiles, collecting reasons for each failure
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for _, profile := range clientInfo.DirectPlayProfiles {
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if reason := s.checkDirectPlayProfile(src, &profile, clientInfo); reason == "" {
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decision.CanDirectPlay = true
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decision.TranscodeReasons = nil // Clear any previously collected reasons
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break
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} else {
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decision.TranscodeReasons = append(decision.TranscodeReasons, reason)
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}
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}
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}
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// If direct play is possible, we're done
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if decision.CanDirectPlay {
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log.Debug(ctx, "Transcode decision: direct play", "mediaID", mf.ID, "container", src.Container, "codec", src.Codec)
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return decision, nil
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}
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// Try transcoding profiles (in order of preference)
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for _, profile := range clientInfo.TranscodingProfiles {
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if ts, transcodeFormat := s.computeTranscodedStream(ctx, src, &profile, clientInfo); ts != nil {
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decision.CanTranscode = true
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decision.TargetFormat = transcodeFormat
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decision.TargetBitrate = ts.Bitrate
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decision.TargetChannels = ts.Channels
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decision.TargetSampleRate = ts.SampleRate
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decision.TargetBitDepth = ts.BitDepth
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decision.TranscodeStream = ts
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break
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}
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}
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if decision.CanTranscode {
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log.Debug(ctx, "Transcode decision: transcode", "mediaID", mf.ID,
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"targetFormat", decision.TargetFormat, "targetBitrate", decision.TargetBitrate,
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"targetChannels", decision.TargetChannels, "reasons", decision.TranscodeReasons)
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}
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// If neither direct play nor transcode is possible
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if !decision.CanDirectPlay && !decision.CanTranscode {
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decision.ErrorReason = "no compatible playback profile found"
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log.Warn(ctx, "Transcode decision: no compatible profile", "mediaID", mf.ID,
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"container", src.Container, "codec", src.Codec, "reasons", decision.TranscodeReasons)
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}
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return decision, nil
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}
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func buildSourceStream(mf *model.MediaFile, probe *ffmpeg.AudioProbeResult) Details {
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sd := Details{
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Container: mf.Suffix,
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Duration: mf.Duration,
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Size: mf.Size,
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}
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// Use pre-parsed probe result, or fall back to parsing stored probe data
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if probe == nil {
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probe, _ = parseProbeData(mf.ProbeData)
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}
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// Use probe data if available for authoritative values
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if probe != nil {
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sd.Codec = normalizeProbeCodec(probe.Codec)
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sd.Profile = probe.Profile
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sd.Bitrate = probe.BitRate
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sd.SampleRate = probe.SampleRate
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sd.BitDepth = probe.BitDepth
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sd.Channels = probe.Channels
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} else {
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sd.Codec = mf.AudioCodec()
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sd.Bitrate = mf.BitRate
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sd.SampleRate = mf.SampleRate
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sd.BitDepth = gg.V(mf.BitDepth)
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sd.Channels = mf.Channels
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}
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sd.IsLossless = isLosslessFormat(sd.Codec)
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return sd
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}
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// applyServerOverride replaces the client-provided profiles with synthetic ones
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// matching the server-forced transcoding format and bitrate.
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func applyServerOverride(ctx context.Context, original *ClientInfo, trc *model.Transcoding) *ClientInfo {
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maxBitRate := trc.DefaultBitRate
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if player, ok := request.PlayerFrom(ctx); ok && player.MaxBitRate > 0 {
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maxBitRate = player.MaxBitRate
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}
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log.Debug(ctx, "Applying server-side transcoding override",
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"targetFormat", trc.TargetFormat, "maxBitRate", maxBitRate,
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"client", original.Name)
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return &ClientInfo{
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Name: original.Name,
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Platform: original.Platform,
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MaxAudioBitrate: maxBitRate,
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MaxTranscodingAudioBitrate: maxBitRate,
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DirectPlayProfiles: []DirectPlayProfile{
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{Containers: []string{trc.TargetFormat}, AudioCodecs: []string{trc.TargetFormat}, Protocols: []string{ProtocolHTTP}},
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},
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TranscodingProfiles: []Profile{
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{Container: trc.TargetFormat, AudioCodec: trc.TargetFormat, Protocol: ProtocolHTTP},
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},
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}
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}
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func parseProbeData(data string) (*ffmpeg.AudioProbeResult, error) {
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if data == "" {
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return nil, nil
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}
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var result ffmpeg.AudioProbeResult
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if err := json.Unmarshal([]byte(data), &result); err != nil {
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return nil, err
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}
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return &result, nil
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}
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// matchesPCMWAVBridge bridges Navidrome's internal "pcm" codec name with the
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// "wav" codec name that browsers use to advertise audio/wav support. The match
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// is scoped to WAV-container sources so AIFF files (which also normalize to
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// codec "pcm" but use a different container) cannot false-match a codec-only
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// ["wav"] profile.
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func matchesPCMWAVBridge(src *Details, profile *DirectPlayProfile) bool {
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return strings.EqualFold(src.Codec, "pcm") &&
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strings.EqualFold(src.Container, "wav") &&
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containsIgnoreCase(profile.AudioCodecs, "wav")
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}
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// checkDirectPlayProfile returns "" if the profile matches (direct play OK),
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// or a typed reason string if it doesn't match.
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func (s *deciderService) checkDirectPlayProfile(src *Details, profile *DirectPlayProfile, clientInfo *ClientInfo) string {
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// Check protocol (only http for now)
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if len(profile.Protocols) > 0 && !containsIgnoreCase(profile.Protocols, ProtocolHTTP) {
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return "protocol not supported"
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}
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// Check container
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if len(profile.Containers) > 0 && !matchesContainer(src.Container, profile.Containers) {
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return fmt.Sprintf("container '%s' not supported by profile %s", src.Container, profile)
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}
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// Check codec
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if len(profile.AudioCodecs) > 0 && !matchesCodec(src.Codec, profile.AudioCodecs) && !matchesPCMWAVBridge(src, profile) {
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return fmt.Sprintf("audio codec '%s' not supported by profile %s", src.Codec, profile)
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}
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// Check channels
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if profile.MaxAudioChannels > 0 && src.Channels > profile.MaxAudioChannels {
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return fmt.Sprintf("audio channels %d not supported by profile %s (max %d)", src.Channels, profile, profile.MaxAudioChannels)
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}
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// Check codec-specific limitations
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for _, codecProfile := range clientInfo.CodecProfiles {
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if strings.EqualFold(codecProfile.Type, CodecProfileTypeAudio) && matchesCodec(src.Codec, []string{codecProfile.Name}) {
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if reason := checkLimitations(src, codecProfile.Limitations); reason != "" {
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return reason
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}
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}
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}
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return ""
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}
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// computeTranscodedStream attempts to build a valid transcoded stream for the given profile.
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// Returns the stream details and the internal transcoding format (which may differ from the
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// response container when a codec fallback occurs, e.g., "mp4"→"aac").
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// Returns nil, "" if the profile cannot produce a valid output.
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func (s *deciderService) computeTranscodedStream(ctx context.Context, src *Details, profile *Profile, clientInfo *ClientInfo) (*Details, string) {
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// Check protocol (only http for now)
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if profile.Protocol != "" && !strings.EqualFold(profile.Protocol, ProtocolHTTP) {
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log.Trace(ctx, "Skipping transcoding profile: unsupported protocol", "protocol", profile.Protocol)
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return nil, ""
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}
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responseContainer, targetFormat := resolveTargetFormat(profile)
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if targetFormat == "" {
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return nil, ""
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}
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// Verify we have a transcoding command available (DB custom or built-in default)
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if LookupTranscodeCommand(ctx, s.ds, targetFormat) == "" {
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log.Trace(ctx, "Skipping transcoding profile: no transcoding command available", "targetFormat", targetFormat)
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return nil, ""
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}
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targetIsLossless := isLosslessFormat(targetFormat)
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// Reject lossy to lossless conversion
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if !src.IsLossless && targetIsLossless {
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log.Trace(ctx, "Skipping transcoding profile: lossy to lossless not allowed", "targetFormat", targetFormat)
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return nil, ""
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}
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ts := &Details{
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Container: responseContainer,
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Codec: strings.ToLower(profile.AudioCodec),
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SampleRate: normalizeSourceSampleRate(src.SampleRate, src.Codec),
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Channels: src.Channels,
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BitDepth: targetBitDepth(src.BitDepth, src.Codec, targetIsLossless),
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IsLossless: targetIsLossless,
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}
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if ts.Codec == "" {
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ts.Codec = targetFormat
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}
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// Apply codec-intrinsic sample rate adjustments before codec profile limitations
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if fixedRate := codecFixedOutputSampleRate(ts.Codec); fixedRate > 0 {
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ts.SampleRate = fixedRate
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}
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if maxRate := codecMaxSampleRate(ts.Codec); maxRate > 0 && ts.SampleRate > maxRate {
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ts.SampleRate = maxRate
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}
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if maxCh := codecMaxChannels(ts.Codec); maxCh > 0 && ts.Channels > maxCh {
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ts.Channels = maxCh
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}
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// Determine target bitrate (all in kbps)
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if ok := s.computeBitrate(ctx, src, targetFormat, targetIsLossless, clientInfo, ts); !ok {
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return nil, ""
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}
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// Apply MaxAudioChannels from the transcoding profile. Compare against the
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// already-clamped ts.Channels (not src.Channels) so the codec hard limit
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// applied above is never raised by a looser profile setting.
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if profile.MaxAudioChannels > 0 && ts.Channels > profile.MaxAudioChannels {
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ts.Channels = profile.MaxAudioChannels
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}
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// Apply codec profile limitations to the TARGET codec
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if ok := s.applyCodecLimitations(ctx, src.Bitrate, targetFormat, targetIsLossless, clientInfo, ts); !ok {
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return nil, ""
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}
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return ts, targetFormat
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}
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// lookupDefaultBitrate returns the default bitrate for the given format.
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// It checks the DB first (for user-customized values), then falls back to
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// the built-in defaults, and finally to fallbackBitrate.
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func lookupDefaultBitrate(ctx context.Context, ds model.DataStore, format string) int {
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if t, err := ds.Transcoding(ctx).FindByFormat(format); err == nil && t.DefaultBitRate > 0 {
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return t.DefaultBitRate
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}
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for _, dt := range consts.DefaultTranscodings {
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if dt.TargetFormat == format && dt.DefaultBitRate > 0 {
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return dt.DefaultBitRate
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}
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}
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return fallbackBitrate
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}
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// LookupTranscodeCommand returns the ffmpeg command for the given format.
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// It checks the DB first (for user-customized commands), then falls back to
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// the built-in default command. Returns "" if the format is unknown.
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func LookupTranscodeCommand(ctx context.Context, ds model.DataStore, format string) string {
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t, err := ds.Transcoding(ctx).FindByFormat(format)
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if err == nil && t.Command != "" {
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return t.Command
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}
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// Fall back to built-in defaults
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for _, dt := range consts.DefaultTranscodings {
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if dt.TargetFormat == format {
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return dt.Command
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}
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}
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return ""
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}
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// resolveTargetFormat determines the response container and internal target format
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// from the profile's Container and AudioCodec fields. When an AudioCodec is specified
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// it is preferred as targetFormat (e.g. container "mp4" with audioCodec "aac" → targetFormat "aac").
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func resolveTargetFormat(profile *Profile) (responseContainer, targetFormat string) {
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responseContainer = strings.ToLower(profile.Container)
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targetFormat = responseContainer
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// Prefer the audioCodec as targetFormat when provided (handles container-to-codec
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// mapping like "mp4" → "aac", "ogg" → "opus").
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if profile.AudioCodec != "" {
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targetFormat = strings.ToLower(profile.AudioCodec)
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}
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// If neither container nor audioCodec is set, we can't resolve a format.
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if targetFormat == "" {
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return "", ""
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}
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// When no container was specified, use the targetFormat as container too.
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if responseContainer == "" {
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responseContainer = targetFormat
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}
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return responseContainer, targetFormat
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}
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// computeBitrate determines the target bitrate for the transcoded stream.
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// Returns false if the profile should be rejected.
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func (s *deciderService) computeBitrate(ctx context.Context, src *Details, targetFormat string, targetIsLossless bool, clientInfo *ClientInfo, ts *Details) bool {
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if src.IsLossless {
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if !targetIsLossless {
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if clientInfo.MaxTranscodingAudioBitrate > 0 {
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ts.Bitrate = clientInfo.MaxTranscodingAudioBitrate
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} else if clientInfo.MaxAudioBitrate > 0 {
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ts.Bitrate = clientInfo.MaxAudioBitrate
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} else {
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ts.Bitrate = lookupDefaultBitrate(ctx, s.ds, targetFormat)
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}
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} else {
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if clientInfo.MaxAudioBitrate > 0 && src.Bitrate > clientInfo.MaxAudioBitrate {
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log.Trace(ctx, "Skipping transcoding profile: lossless target exceeds bitrate limit",
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"targetFormat", targetFormat, "sourceBitrate", src.Bitrate, "maxAudioBitrate", clientInfo.MaxAudioBitrate)
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return false
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}
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}
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} else {
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ts.Bitrate = src.Bitrate
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}
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// Apply maxAudioBitrate as final cap
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if clientInfo.MaxAudioBitrate > 0 && ts.Bitrate > 0 && ts.Bitrate > clientInfo.MaxAudioBitrate {
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ts.Bitrate = clientInfo.MaxAudioBitrate
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}
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return true
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}
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// applyCodecLimitations applies codec profile limitations to the transcoded stream.
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// Returns false if the profile should be rejected.
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func (s *deciderService) applyCodecLimitations(ctx context.Context, sourceBitrate int, targetFormat string, targetIsLossless bool, clientInfo *ClientInfo, ts *Details) bool {
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targetCodec := ts.Codec
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for _, codecProfile := range clientInfo.CodecProfiles {
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if !strings.EqualFold(codecProfile.Type, CodecProfileTypeAudio) {
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continue
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}
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if !matchesCodec(targetCodec, []string{codecProfile.Name}) {
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continue
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}
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for _, lim := range codecProfile.Limitations {
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result := applyLimitation(sourceBitrate, &lim, ts)
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if strings.EqualFold(lim.Name, LimitationAudioBitrate) && targetIsLossless && result == adjustAdjusted {
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log.Trace(ctx, "Skipping transcoding profile: cannot adjust bitrate for lossless target",
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"targetFormat", targetFormat, "codec", targetCodec, "limitation", lim.Name)
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return false
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}
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if result == adjustCannotFit {
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log.Trace(ctx, "Skipping transcoding profile: codec limitation cannot be satisfied",
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"targetFormat", targetFormat, "codec", targetCodec, "limitation", lim.Name,
|
|
"comparison", lim.Comparison, "values", lim.Values)
|
|
return false
|
|
}
|
|
}
|
|
}
|
|
return true
|
|
}
|
|
|
|
// ensureProbed runs ffprobe if probe data is missing, persists it, and returns
|
|
// the parsed result. Returns (nil, nil) when probing is skipped or data already exists
|
|
// (in which case the caller should parse mf.ProbeData).
|
|
func (s *deciderService) ensureProbed(ctx context.Context, mf *model.MediaFile) (*ffmpeg.AudioProbeResult, error) {
|
|
if mf.ProbeData != "" {
|
|
return nil, nil
|
|
}
|
|
if !conf.Server.DevEnableMediaFileProbe {
|
|
return nil, nil
|
|
}
|
|
|
|
result, err := s.ff.ProbeAudioStream(ctx, mf.AbsolutePath())
|
|
if err != nil {
|
|
return nil, fmt.Errorf("probing media file %s: %w", mf.ID, err)
|
|
}
|
|
|
|
data, err := json.Marshal(result)
|
|
if err != nil {
|
|
return nil, fmt.Errorf("marshaling probe result for %s: %w", mf.ID, err)
|
|
}
|
|
mf.ProbeData = string(data)
|
|
|
|
if err := s.ds.MediaFile(ctx).UpdateProbeData(mf.ID, mf.ProbeData); err != nil {
|
|
log.Error(ctx, "Failed to persist probe data", "mediaID", mf.ID, err)
|
|
// Don't fail the decision — we have the data in memory
|
|
}
|
|
|
|
log.Debug(ctx, "Probed media file", "mediaID", mf.ID, "codec", result.Codec,
|
|
"profile", result.Profile, "bitRate", result.BitRate,
|
|
"sampleRate", result.SampleRate, "bitDepth", result.BitDepth, "channels", result.Channels)
|
|
return result, nil
|
|
}
|