Files
TrollSSH/internal/tsf/video.go

372 lines
8.5 KiB
Go

package tsf
import (
"bufio"
"bytes"
"encoding/binary"
"encoding/json"
"errors"
"fmt"
"io"
"math"
"os"
"os/exec"
"path/filepath"
"strconv"
"strings"
"time"
"github.com/YuzuZensai/TrollSSH/internal/logx"
)
var (
jpegSOI = []byte{0xff, 0xd8}
jpegEOI = []byte{0xff, 0xd9}
)
const (
maxJPEGFrameBytes = 64 << 20
maxFFmpegLogBytes = 64 << 10
)
type jpegFrameSplitter struct {
buffer []byte
scan int
inJPEG bool
}
func (s *jpegFrameSplitter) push(chunk []byte, emit func([]byte) error) (int, error) {
s.buffer = append(s.buffer, chunk...)
emitted := 0
for {
if !s.inJPEG {
start := bytes.Index(s.buffer[s.scan:], jpegSOI)
if start == -1 {
// Retain only a possible marker prefix spanning two reads.
if len(s.buffer) > 0 && s.buffer[len(s.buffer)-1] == jpegSOI[0] {
s.buffer = s.buffer[len(s.buffer)-1:]
} else {
s.buffer = s.buffer[:0]
}
s.scan = 0
return emitted, nil
}
start += s.scan
s.buffer = s.buffer[start:]
s.scan = len(jpegSOI)
s.inJPEG = true
}
end := bytes.Index(s.buffer[s.scan:], jpegEOI)
if end == -1 {
if len(s.buffer) > maxJPEGFrameBytes {
return emitted, fmt.Errorf("JPEG frame exceeds %d MiB limit", maxJPEGFrameBytes>>20)
}
s.scan = max(len(jpegSOI), len(s.buffer)-1)
return emitted, nil
}
frameEnd := s.scan + end + len(jpegEOI)
if frameEnd > maxJPEGFrameBytes {
return emitted, fmt.Errorf("JPEG frame exceeds %d MiB limit", maxJPEGFrameBytes>>20)
}
if err := emit(s.buffer[:frameEnd]); err != nil {
return emitted, err
}
emitted++
s.buffer = s.buffer[frameEnd:]
s.scan = 0
s.inJPEG = false
}
}
func (s *jpegFrameSplitter) finish() error {
if s.inJPEG {
return fmt.Errorf("ffmpeg produced a truncated JPEG frame")
}
return nil
}
type boundedLog struct {
buffer bytes.Buffer
limit int
}
func (w *boundedLog) Write(p []byte) (int, error) {
n := len(p)
if remaining := w.limit - w.buffer.Len(); remaining > 0 {
_, _ = w.buffer.Write(p[:min(len(p), remaining)])
}
return n, nil
}
func (w *boundedLog) String() string {
return strings.TrimSpace(w.buffer.String())
}
type streamingTSF struct {
file *os.File
writer *bufio.Writer
path string
count uint32
}
func newStreamingTSF(output string, fps float64) (*streamingTSF, error) {
if math.IsNaN(fps) || math.IsInf(fps, 0) || fps <= 0 || fps > maxTSFFPS {
return nil, fmt.Errorf("cannot write .tsf: fps must be finite and between 0 and %d", maxTSFFPS)
}
dir := filepath.Dir(output)
f, err := os.CreateTemp(dir, "."+filepath.Base(output)+"-*.tmp")
if err != nil {
return nil, err
}
s := &streamingTSF{file: f, writer: bufio.NewWriterSize(f, 1<<20), path: f.Name()}
if err := f.Chmod(0o644); err != nil {
s.abort()
return nil, err
}
if _, err := s.writer.WriteString(tsfMagic); err != nil {
s.abort()
return nil, err
}
var hdr [14]byte
binary.LittleEndian.PutUint16(hdr[0:], tsfVersion)
binary.LittleEndian.PutUint64(hdr[2:], math.Float64bits(fps))
if _, err := s.writer.Write(hdr[:]); err != nil {
s.abort()
return nil, err
}
return s, nil
}
func (s *streamingTSF) addFrame(frame []byte) error {
if s.count >= maxTSFFrameCount {
return fmt.Errorf("too many video frames")
}
if uint64(len(frame)) > math.MaxUint32 {
return fmt.Errorf("JPEG frame is too large")
}
var size [4]byte
binary.LittleEndian.PutUint32(size[:], uint32(len(frame)))
if _, err := s.writer.Write(size[:]); err != nil {
return err
}
if _, err := s.writer.Write(frame); err != nil {
return err
}
s.count++
return nil
}
func (s *streamingTSF) commit(output string) error {
if s.count == 0 {
return fmt.Errorf("no frames were decoded from the video")
}
if err := s.writer.Flush(); err != nil {
return err
}
if _, err := s.file.Seek(14, io.SeekStart); err != nil {
return err
}
var count [4]byte
binary.LittleEndian.PutUint32(count[:], s.count)
if _, err := s.file.Write(count[:]); err != nil {
return err
}
if err := s.file.Sync(); err != nil {
return err
}
if err := s.file.Close(); err != nil {
return err
}
s.file = nil
if err := os.Rename(s.path, output); err != nil {
return err
}
s.path = ""
return nil
}
func (s *streamingTSF) abort() {
if s.file != nil {
_ = s.file.Close()
s.file = nil
}
if s.path != "" {
_ = os.Remove(s.path)
s.path = ""
}
}
type ffprobeOutput struct {
Streams []struct {
RFrameRate string `json:"r_frame_rate"`
NbFrames string `json:"nb_frames"`
Duration string `json:"duration"`
} `json:"streams"`
Format struct {
Duration string `json:"duration"`
} `json:"format"`
}
func parseFrameRate(rate string) float64 {
if rate == "" {
return math.NaN()
}
parts := strings.SplitN(rate, "/", 2)
num, err := strconv.ParseFloat(parts[0], 64)
if err != nil {
return math.NaN()
}
if len(parts) == 2 {
den, err := strconv.ParseFloat(parts[1], 64)
if err != nil || den == 0 {
return math.NaN()
}
return num / den
}
return num
}
func extractFrames(path, vf, label string, totalFrames int, emit func([]byte) error) (int, error) {
cmd := exec.Command(
"ffmpeg", "-hide_banner", "-loglevel", "error", "-nostats",
"-i", path,
"-c:v", "mjpeg",
"-q:v", "3",
"-vf", vf,
"-f", "image2pipe",
"pipe:1",
)
stderr := &boundedLog{limit: maxFFmpegLogBytes}
cmd.Stderr = stderr
stdout, err := cmd.StdoutPipe()
if err != nil {
return 0, fmt.Errorf("ffmpeg failed: %w", err)
}
if err := cmd.Start(); err != nil {
return 0, fmt.Errorf("ffmpeg failed: %w", err)
}
splitter := &jpegFrameSplitter{}
frameCount := 0
lastReport := time.Now()
reportProgress := func(force bool) {
if !force && time.Since(lastReport) < 250*time.Millisecond {
return
}
if totalFrames > 0 {
pct := min(100, int(math.Round(float64(frameCount)/float64(totalFrames)*100)))
fmt.Printf("\rGenerating %s frames: %d/%d (%d%%)", label, frameCount, totalFrames, pct)
} else {
fmt.Printf("\rGenerating %s frames: %d", label, frameCount)
}
lastReport = time.Now()
}
failStream := func(err error) (int, error) {
_ = cmd.Process.Kill()
_ = cmd.Wait()
return frameCount, err
}
buf := make([]byte, 256*1024)
for {
n, readErr := stdout.Read(buf)
if n > 0 {
emitted, splitErr := splitter.push(buf[:n], emit)
frameCount += emitted
if splitErr != nil {
return failStream(fmt.Errorf("ffmpeg stream error: %w", splitErr))
}
if emitted > 0 {
reportProgress(false)
}
}
if readErr == io.EOF {
break
}
if readErr != nil {
return failStream(fmt.Errorf("ffmpeg stream error: %w", readErr))
}
}
if err := cmd.Wait(); err != nil {
if msg := stderr.String(); msg != "" {
return frameCount, fmt.Errorf("ffmpeg failed: %s", msg)
}
return frameCount, fmt.Errorf("ffmpeg failed: %w", err)
}
if err := splitter.finish(); err != nil {
return frameCount, err
}
if frameCount == 0 {
return 0, fmt.Errorf("no frames were decoded from the video")
}
reportProgress(true)
fmt.Println()
return frameCount, nil
}
func ProcessVideo(path, output string, maxDimension int) error {
probeCmd := exec.Command(
"ffprobe", "-v", "error",
"-show_streams", "-show_format",
"-of", "json", path,
)
probeOut, err := probeCmd.Output()
if err != nil {
msg := err.Error()
var exitErr *exec.ExitError
if errors.As(err, &exitErr) && len(exitErr.Stderr) > 0 {
msg = strings.TrimSpace(string(exitErr.Stderr))
}
return fmt.Errorf("ffprobe failed: %s", msg)
}
var probe ffprobeOutput
if err := json.Unmarshal(probeOut, &probe); err != nil {
return fmt.Errorf("ffprobe failed: %w", err)
}
if len(probe.Streams) == 0 {
return fmt.Errorf("unable to determine a valid video fps")
}
stream := probe.Streams[0]
fps := parseFrameRate(stream.RFrameRate)
if math.IsNaN(fps) || fps <= 0 {
return fmt.Errorf("unable to determine a valid video fps")
}
totalFrames := 0
if n, err := strconv.Atoi(stream.NbFrames); err == nil {
totalFrames = n
} else {
durStr := probe.Format.Duration
if durStr == "" {
durStr = stream.Duration
}
if d, err := strconv.ParseFloat(durStr, 64); err == nil {
totalFrames = int(math.Round(d * fps))
}
}
scaleFilter := fmt.Sprintf(
"scale=w=%d:h=%d:force_original_aspect_ratio=decrease",
maxDimension, maxDimension,
)
outputFile, err := newStreamingTSF(output, fps)
if err != nil {
return err
}
defer outputFile.abort()
frameCount, err := extractFrames(path, scaleFilter, "color", totalFrames, outputFile.addFrame)
if err != nil {
return err
}
if err := outputFile.commit(output); err != nil {
return err
}
logx.Info(fmt.Sprintf("Saved %d frames to %s", frameCount, output))
return nil
}