Files
av1dae/internal/encoder/encoder.go
T
Esa Kataja aa8a341069 add: live encode progress tracking and read-only status web UI
Stream ffmpeg -progress during the video encode into an in-memory tracker
(internal/status) so the long-running step is no longer a black box: percent,
fps, speed, and ETA are derived from the source duration and updated ~1/s.
Progress prints to stdout only (no logs.db row) to avoid burying real events.

Expose it over HTTP (internal/server, default :8080, set http_addr to "" to
disable): GET /status returns the live snapshot, the pending input queue, and
recent non-debug events; GET / serves an embedded dashboard that polls /status
every second. The server shuts down on the same SIGINT/SIGTERM context as the
watcher.
2026-06-21 17:43:00 +03:00

519 lines
16 KiB
Go

package encoder
import (
"bytes"
"context"
"encoding/json"
"fmt"
"os/exec"
"path/filepath"
"regexp"
"sort"
"strconv"
"strings"
"time"
"videnc-vibe/internal/logger"
"videnc-vibe/internal/status"
"videnc-vibe/pkg/types"
)
var idetSummaryRegex = regexp.MustCompile(`Multi frame detection:\s+TFF:\s*(\d+)\s+BFF:\s*(\d+)\s+Progressive:\s*(\d+)\s+Undetermined:\s*(\d+)`)
type Encoder struct {
ffmpegPath string
ffprobePath string
opusencPath string
log *logger.Logger
tracker *status.Tracker
}
type StreamInfo struct {
Width int `json:"width"`
Height int `json:"height"`
SampleAspectRatio string `json:"sample_aspect_ratio"`
DisplayAspectRatio string `json:"display_aspect_ratio"`
CodecName string `json:"codec_name"`
CodecType string `json:"codec_type"`
}
type ProbeResult struct {
Streams []StreamInfo `json:"streams"`
}
type StreamMetadata struct {
Index int `json:"index"`
CodecType string `json:"codec_type"`
CodecName string `json:"codec_name"`
Language string `json:"tags"`
Title string `json:"title"`
}
func New(log *logger.Logger, tracker *status.Tracker) *Encoder {
return &Encoder{
ffmpegPath: "ffmpeg",
ffprobePath: "ffprobe",
opusencPath: "opusenc",
log: log,
tracker: tracker,
}
}
// runCmd executes the command and emits a debug entry containing the full
// command line and its combined output. file is the source file the command
// is acting on (may be empty).
func (e *Encoder) runCmd(ctx context.Context, label, file, name string, args []string) ([]byte, error) {
cmd := exec.CommandContext(ctx, name, args...)
out, err := cmd.CombinedOutput()
extra, _ := json.Marshal(struct {
Cmd string `json:"cmd"`
Output string `json:"output"`
}{
Cmd: name + " " + strings.Join(args, " "),
Output: string(out),
})
e.log.Debug(label, file, string(extra))
return out, err
}
// runCmdProgress runs ffmpeg with `-progress pipe:1`, streaming progress
// samples to the tracker (instead of buffering all output like runCmd). stdout
// carries only the key=value progress stream; stderr carries real errors and is
// returned for the caller's error message. Used solely for the video encode —
// the one step long enough to be worth watching live.
func (e *Encoder) runCmdProgress(ctx context.Context, label, file, name string, args []string) ([]byte, error) {
cmd := exec.CommandContext(ctx, name, args...)
stdout, err := cmd.StdoutPipe()
if err != nil {
return nil, err
}
var stderr bytes.Buffer
cmd.Stderr = &stderr
if err := cmd.Start(); err != nil {
return nil, err
}
// Reads stdout to EOF (when ffmpeg exits), so Wait below is safe afterwards.
var lastLog time.Time
_ = status.ScanProgress(stdout, func(s status.ProgressSample) {
if e.tracker == nil {
return
}
e.tracker.Update(s.OutTimeSec, s.FPS, s.Speed)
if time.Since(lastLog) >= 5*time.Second {
lastLog = time.Now()
snap := e.tracker.Snapshot()
e.log.Progress(fmt.Sprintf("encoding %s · %.1f%% · %.1ffps · %.2fx · ETA %s",
filepath.Base(file), snap.Percent, snap.FPS, snap.Speed, fmtETA(snap.ETASec)))
}
})
err = cmd.Wait()
extra, _ := json.Marshal(struct {
Cmd string `json:"cmd"`
Output string `json:"output"`
}{
Cmd: name + " " + strings.Join(args, " "),
Output: stderr.String(),
})
e.log.Debug(label, file, string(extra))
return stderr.Bytes(), err
}
// fmtETA renders a seconds count as a compact "11h03m" / "4m12s" / "9s" string.
func fmtETA(sec int) string {
if sec <= 0 {
return "--"
}
d := time.Duration(sec) * time.Second
switch {
case d >= time.Hour:
return fmt.Sprintf("%dh%02dm", int(d.Hours()), int(d.Minutes())%60)
case d >= time.Minute:
return fmt.Sprintf("%dm%02ds", int(d.Minutes()), sec%60)
default:
return fmt.Sprintf("%ds", sec)
}
}
// GetDuration returns the source container duration in seconds via ffprobe.
func (e *Encoder) GetDuration(ctx context.Context, path string) (float64, error) {
args := []string{"-v", "error", "-show_entries", "format=duration", "-of", "default=noprint_wrappers=1:nokey=1", path}
out, err := e.runCmd(ctx, "ffprobe duration", path, e.ffprobePath, args)
if err != nil {
return 0, fmt.Errorf("ffprobe duration: %w", err)
}
d, err := strconv.ParseFloat(strings.TrimSpace(string(out)), 64)
if err != nil {
return 0, fmt.Errorf("parsing duration %q: %w", strings.TrimSpace(string(out)), err)
}
return d, nil
}
func (e *Encoder) CheckDeps() error {
if _, err := exec.LookPath(e.ffmpegPath); err != nil {
return fmt.Errorf("ffmpeg not found")
}
if _, err := exec.LookPath(e.ffprobePath); err != nil {
return fmt.Errorf("ffprobe not found")
}
if _, err := exec.LookPath(e.opusencPath); err != nil {
return fmt.Errorf("opusenc not found")
}
return nil
}
func (e *Encoder) GetStreamLanguages(ctx context.Context, path string) ([]StreamMetadata, error) {
args := []string{"-v", "error", "-show_streams", "-print_format", "json", path}
output, err := e.runCmd(ctx, "ffprobe stream languages", path, e.ffprobePath, args)
if err != nil {
return nil, fmt.Errorf("ffprobe error: %w", err)
}
var result struct {
Streams []struct {
Index int `json:"index"`
CodecType string `json:"codec_type"`
CodecName string `json:"codec_name"`
Tags map[string]string `json:"tags"`
} `json:"streams"`
}
if err := json.Unmarshal(output, &result); err != nil {
return nil, fmt.Errorf("parsing ffprobe: %w", err)
}
var streams []StreamMetadata
for _, s := range result.Streams {
lang := ""
title := ""
if s.Tags != nil {
lang = s.Tags["language"]
title = s.Tags["title"]
}
streams = append(streams, StreamMetadata{
Index: s.Index,
CodecType: s.CodecType,
CodecName: s.CodecName,
Language: lang,
Title: title,
})
}
streamsJSON, _ := json.Marshal(streams)
e.log.Debug("parsed stream languages", path, string(streamsJSON))
return streams, nil
}
func (e *Encoder) GetMediaInfo(ctx context.Context, path string) (width, height int, interlaced bool, err error) {
probeArgs := []string{"-v", "error", "-show_streams", "-print_format", "json", path}
output, err := e.runCmd(ctx, "ffprobe media info", path, e.ffprobePath, probeArgs)
if err != nil {
return 0, 0, false, fmt.Errorf("ffprobe error: %w", err)
}
var result ProbeResult
if err := json.Unmarshal(output, &result); err != nil {
return 0, 0, false, fmt.Errorf("parsing ffprobe output: %w", err)
}
foundVideo := false
for _, stream := range result.Streams {
if stream.CodecType == "video" {
width = stream.Width
height = stream.Height
foundVideo = true
info, _ := json.Marshal(map[string]interface{}{
"width": width, "height": height, "codec": stream.CodecName, "sar": stream.SampleAspectRatio,
})
e.log.Debug("detected video stream", path, string(info))
break
}
}
if !foundVideo {
return 0, 0, false, fmt.Errorf("no video stream found")
}
idetArgs := []string{
"-hide_banner",
"-nostats",
"-i", path,
"-vf", "idet",
"-frames:v", "400",
"-an", "-sn",
"-f", "null", "-",
}
idetOut, _ := e.runCmd(ctx, "ffmpeg idet", path, e.ffmpegPath, idetArgs)
interlaced = detectInterlaced(string(idetOut))
info, _ := json.Marshal(map[string]bool{"interlaced": interlaced})
e.log.Debug("interlace detection", path, string(info))
return width, height, interlaced, nil
}
// detectInterlaced parses ffmpeg idet's "Multi frame detection" summary line
// and returns true when TFF+BFF clearly outnumber Progressive frames among
// the decided frames. Undetermined frames are ignored. If the summary line
// is missing, returns false (default to progressive).
func detectInterlaced(idetOutput string) bool {
m := idetSummaryRegex.FindStringSubmatch(idetOutput)
if m == nil {
return false
}
tff, _ := strconv.Atoi(m[1])
bff, _ := strconv.Atoi(m[2])
prog, _ := strconv.Atoi(m[3])
interlaced := tff + bff
decided := interlaced + prog
if decided == 0 {
return false
}
return interlaced > prog
}
func (e *Encoder) calculateZscaleWidth(ctx context.Context, path string, originalHeight int) (string, int, error) {
args := []string{"-v", "error", "-select_streams", "v:0", "-show_entries", "stream=width,height,sample_aspect_ratio", "-print_format", "json", path}
output, err := e.runCmd(ctx, "ffprobe zscale info", path, e.ffprobePath, args)
if err != nil {
return "", 0, fmt.Errorf("ffprobe error: %w", err)
}
var result ProbeResult
if err := json.Unmarshal(output, &result); err != nil {
return "", 0, fmt.Errorf("parsing ffprobe: %w", err)
}
if len(result.Streams) == 0 {
return "", 0, fmt.Errorf("no video streams found")
}
stream := result.Streams[0]
width := stream.Width
height := stream.Height
sar := stream.SampleAspectRatio
newWidth := width
if sar == "1:1" || sar == "N/A" || sar == "" {
return "", newWidth, nil
}
parts := strings.Split(sar, ":")
if len(parts) != 2 {
return "", newWidth, nil
}
num, err1 := strconv.Atoi(parts[0])
den, err2 := strconv.Atoi(parts[1])
if err1 != nil || err2 != nil || num == 0 || den == 0 {
return "", newWidth, nil
}
// Round to nearest, then snap down to even (mod-2 widths preferred by AV1/H.264).
newWidth = ((width*num + den/2) / den) &^ 1
info, _ := json.Marshal(map[string]interface{}{
"width": width, "height": height, "sar": sar, "new_width": newWidth,
})
e.log.Debug("zscale calculation", path, string(info))
if newWidth == width {
return "", newWidth, nil
}
zscale := fmt.Sprintf("zscale=w=%d:h=%d:filter=spline36", newWidth, height)
return zscale, newWidth, nil
}
func (e *Encoder) Transcode(ctx context.Context, input, workDir string, job *types.Job, metadata *types.Metadata, interlaced bool, streamLangs []StreamMetadata) error {
if e.tracker != nil {
e.tracker.SetPhase(status.PhaseAudio)
}
audioWavs, err := e.extractAudio(ctx, input, workDir, streamLangs)
if err != nil {
return fmt.Errorf("extracting audio: %w", err)
}
opusFiles, err := e.encodeOpus(ctx, audioWavs, workDir)
if err != nil {
return fmt.Errorf("encoding opus: %w", err)
}
if err := e.encodeVideo(ctx, input, workDir, opusFiles, job, metadata, interlaced, streamLangs); err != nil {
return fmt.Errorf("encoding video: %w", err)
}
return nil
}
// audioStreamsInSourceOrder returns the audio entries of streamLangs sorted by
// their source-side Index. The resulting slice position is the 0-based audio
// stream index used by ffmpeg selectors like `0:a:<n>`.
func audioStreamsInSourceOrder(streamLangs []StreamMetadata) []StreamMetadata {
var audio []StreamMetadata
for _, s := range streamLangs {
if s.CodecType == "audio" {
audio = append(audio, s)
}
}
sort.Slice(audio, func(i, j int) bool { return audio[i].Index < audio[j].Index })
return audio
}
func (e *Encoder) extractAudio(ctx context.Context, input, workDir string, streamLangs []StreamMetadata) ([]string, error) {
audio := audioStreamsInSourceOrder(streamLangs)
if len(audio) == 0 {
return nil, fmt.Errorf("no audio streams found")
}
wavs := make([]string, 0, len(audio))
for srcAudioIndex := range audio {
wavPath := filepath.Join(workDir, fmt.Sprintf("audio.%d.wav", srcAudioIndex))
args := []string{
"-i", input,
"-map", fmt.Sprintf("0:a:%d", srcAudioIndex),
"-vn", "-c:a", "pcm_s16le", "-ar", "48000",
"-f", "wav", wavPath,
}
out, err := e.runCmd(ctx, "ffmpeg extract audio", input, e.ffmpegPath, args)
if err != nil {
return wavs, fmt.Errorf("ffmpeg extract a:%d: %s %w", srcAudioIndex, out, err)
}
wavs = append(wavs, wavPath)
}
return wavs, nil
}
func (e *Encoder) encodeOpus(ctx context.Context, wavs []string, workDir string) ([]string, error) {
var opusFiles []string
for _, wav := range wavs {
base := filepath.Base(strings.Replace(wav, ".wav", ".opus", 1))
out := filepath.Join(workDir, base)
args := []string{"--bitrate", "128k", wav, out}
logOut, err := e.runCmd(ctx, "opusenc", wav, e.opusencPath, args)
if err != nil {
return nil, fmt.Errorf("opusenc: %s %w", logOut, err)
}
opusFiles = append(opusFiles, out)
}
return opusFiles, nil
}
func (e *Encoder) encodeVideo(ctx context.Context, input, workDir string, opusFiles []string, job *types.Job, metadata *types.Metadata, interlaced bool, streamLangs []StreamMetadata) error {
outFile := filepath.Join(workDir, "output.mkv")
// Switch the tracker to the encode phase and feed it the source duration so
// progress samples can be turned into a percentage. A failed duration probe
// just means no percent — it must not abort the encode.
if e.tracker != nil {
e.tracker.SetPhase(status.PhaseEncoding)
if dur, derr := e.GetDuration(ctx, input); derr == nil {
e.tracker.SetTotal(dur)
} else {
e.log.Debug("duration probe failed", input, derr.Error())
}
}
svtParams := fmt.Sprintf("film-grain=10:film-grain-denoise=1:scd=1:qm-min=4:qm-max=15:keyint=10s")
zscaleStr, newWidth, err := e.calculateZscaleWidth(ctx, input, 0)
if err != nil {
return fmt.Errorf("calculating zscale: %w", err)
}
var filters []string
if interlaced {
filters = append(filters, "bwdif=mode=0:par=-1:-1")
}
if zscaleStr != "" {
filters = append(filters, zscaleStr)
}
filterInfo, _ := json.Marshal(map[string]interface{}{
"zscale": zscaleStr, "new_width": newWidth, "interlaced": interlaced, "vf": strings.Join(filters, ","),
})
e.log.Debug("video filter chain", input, string(filterInfo))
args := []string{
"-y",
"-i", input,
}
for _, opus := range opusFiles {
args = append(args, "-i", opus)
}
if len(filters) > 0 {
args = append(args, "-vf", strings.Join(filters, ","))
}
args = append(args, "-c:v", "libsvtav1")
args = append(args, "-crf", strconv.Itoa(job.CRF))
args = append(args, "-preset", strconv.Itoa(job.Preset))
args = append(args, "-svtav1-params", svtParams)
args = append(args, "-pix_fmt", "yuv420p10le")
args = append(args, "-map", "0:v")
args = append(args, "-map", "0:s?")
for i := range opusFiles {
args = append(args, "-map", fmt.Sprintf("%d:a", i+1))
}
args = append(args, "-c:a", "copy")
args = append(args, "-c:s", "copy")
args = append(args, "-map_metadata", "-1")
// Walk opusFiles by output audio index (0..N-1) and look up the source
// audio language at the same source-audio-index position. This keeps the
// `-metadata:s:a:i` index aligned with the output stream order, regardless
// of whether some source streams lacked a language tag.
audioStreams := audioStreamsInSourceOrder(streamLangs)
for i := range opusFiles {
if i >= len(audioStreams) {
break
}
lang := audioStreams[i].Language
if lang == "" {
continue
}
args = append(args, fmt.Sprintf("-metadata:s:a:%d", i), fmt.Sprintf("language=%s", lang))
}
for _, stream := range streamLangs {
if stream.CodecType == "subtitle" && stream.Language != "" {
idx := 0
for _, s := range streamLangs {
if s.CodecType == "subtitle" && s.Index < stream.Index {
idx++
}
}
args = append(args, fmt.Sprintf("-metadata:s:s:%d", idx), fmt.Sprintf("language=%s", stream.Language))
}
}
args = append(args, "-metadata", fmt.Sprintf("TITLE=%s", metadata.Title))
args = append(args, "-metadata", fmt.Sprintf("DATE_RELEASED=%s", metadata.DateReleased))
args = append(args, "-metadata", fmt.Sprintf("IMDBID=%s", metadata.IMDBID))
args = append(args, "-metadata", fmt.Sprintf("ORIGINAL_MEDIA_TYPE=%s", metadata.OriginalMedia))
if metadata.IsSeries {
args = append(args, "-metadata", fmt.Sprintf("COLLECTION=%s", metadata.Collection))
args = append(args, "-metadata", fmt.Sprintf("SEASON=%s", metadata.Season))
args = append(args, "-metadata", fmt.Sprintf("EPISODE=%s", metadata.Episode))
if metadata.TVMazeID != "" {
args = append(args, "-metadata", fmt.Sprintf("TVMAZE_ID=%s", metadata.TVMazeID))
}
}
args = append(args, outFile)
args = append([]string{"-hide_banner", "-v", "error", "-progress", "pipe:1", "-nostats"}, args...)
out, err := e.runCmdProgress(ctx, "ffmpeg encode", input, e.ffmpegPath, args)
if err != nil {
return fmt.Errorf("ffmpeg encode: %s %w", out, err)
}
return nil
}