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496 lines
11 KiB
Go
496 lines
11 KiB
Go
package flv
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import (
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"bufio"
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"fmt"
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"io"
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"github.com/Danile71/joy4/av"
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"github.com/Danile71/joy4/av/avutil"
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"github.com/Danile71/joy4/codec"
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"github.com/Danile71/joy4/codec/aacparser"
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"github.com/Danile71/joy4/codec/fake"
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"github.com/Danile71/joy4/codec/h264parser"
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"github.com/Danile71/joy4/format/flv/flvio"
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"github.com/Danile71/joy4/utils/bits/pio"
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)
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var MaxProbePacketCount = 20
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func NewMetadataByStreams(streams []av.CodecData) (metadata flvio.AMFMap, err error) {
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metadata = flvio.AMFMap{}
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for _, _stream := range streams {
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typ := _stream.Type()
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switch {
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case typ.IsVideo():
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stream := _stream.(av.VideoCodecData)
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switch typ {
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case av.H264:
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metadata["videocodecid"] = flvio.VIDEO_H264
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default:
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err = fmt.Errorf("flv: metadata: unsupported video codecType=%v", stream.Type())
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return
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}
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metadata["width"] = stream.Width()
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metadata["height"] = stream.Height()
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metadata["displayWidth"] = stream.Width()
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metadata["displayHeight"] = stream.Height()
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case typ.IsAudio():
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stream := _stream.(av.AudioCodecData)
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switch typ {
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case av.AAC:
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metadata["audiocodecid"] = flvio.SOUND_AAC
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case av.SPEEX:
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metadata["audiocodecid"] = flvio.SOUND_SPEEX
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default:
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err = fmt.Errorf("flv: metadata: unsupported audio codecType=%v", stream.Type())
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return
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}
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metadata["audiosamplerate"] = stream.SampleRate()
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}
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}
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return
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}
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type Prober struct {
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HasAudio, HasVideo bool
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GotAudio, GotVideo bool
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VideoStreamIdx, AudioStreamIdx int
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PushedCount int
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Streams []av.CodecData
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CachedPkts []av.Packet
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}
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func (self *Prober) CacheTag(_tag flvio.Tag, timestamp int32) {
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pkt, _ := self.TagToPacket(_tag, timestamp)
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self.CachedPkts = append(self.CachedPkts, pkt)
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}
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func (self *Prober) PushTag(tag flvio.Tag, timestamp int32) (err error) {
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self.PushedCount++
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if self.PushedCount > MaxProbePacketCount {
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err = fmt.Errorf("flv: max probe packet count reached")
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return
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}
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switch tag.Type {
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case flvio.TAG_VIDEO:
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switch tag.AVCPacketType {
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case flvio.AVC_SEQHDR:
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if !self.GotVideo {
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var stream h264parser.CodecData
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if stream, err = h264parser.NewCodecDataFromAVCDecoderConfRecord(tag.Data); err != nil {
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err = fmt.Errorf("flv: h264 seqhdr invalid")
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return
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}
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self.VideoStreamIdx = len(self.Streams)
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self.Streams = append(self.Streams, stream)
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self.GotVideo = true
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}
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case flvio.AVC_NALU:
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self.CacheTag(tag, timestamp)
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}
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case flvio.TAG_AUDIO:
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switch tag.SoundFormat {
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case flvio.SOUND_AAC:
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switch tag.AACPacketType {
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case flvio.AAC_SEQHDR:
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if !self.GotAudio {
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var stream aacparser.CodecData
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if stream, err = aacparser.NewCodecDataFromMPEG4AudioConfigBytes(tag.Data); err != nil {
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err = fmt.Errorf("flv: aac seqhdr invalid")
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return
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}
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self.AudioStreamIdx = len(self.Streams)
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self.Streams = append(self.Streams, stream)
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self.GotAudio = true
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}
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case flvio.AAC_RAW:
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self.CacheTag(tag, timestamp)
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}
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case flvio.SOUND_SPEEX:
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if !self.GotAudio {
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stream := codec.NewSpeexCodecData(16000, tag.ChannelLayout())
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self.AudioStreamIdx = len(self.Streams)
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self.Streams = append(self.Streams, stream)
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self.GotAudio = true
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self.CacheTag(tag, timestamp)
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}
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case flvio.SOUND_NELLYMOSER:
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if !self.GotAudio {
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stream := fake.CodecData{
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CodecType_: av.NELLYMOSER,
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SampleRate_: 16000,
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SampleFormat_: av.S16,
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ChannelLayout_: tag.ChannelLayout(),
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}
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self.AudioStreamIdx = len(self.Streams)
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self.Streams = append(self.Streams, stream)
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self.GotAudio = true
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self.CacheTag(tag, timestamp)
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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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func (self *Prober) Probed() (ok bool) {
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if self.HasAudio || self.HasVideo {
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if self.HasAudio == self.GotAudio && self.HasVideo == self.GotVideo {
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return true
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}
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} else {
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if self.PushedCount == MaxProbePacketCount {
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return true
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}
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}
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return
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}
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func (self *Prober) TagToPacket(tag flvio.Tag, timestamp int32) (pkt av.Packet, ok bool) {
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switch tag.Type {
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case flvio.TAG_VIDEO:
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pkt.Idx = int8(self.VideoStreamIdx)
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switch tag.AVCPacketType {
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case flvio.AVC_NALU:
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ok = true
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pkt.Data = tag.Data
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pkt.CompositionTime = flvio.TsToTime(tag.CompositionTime)
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pkt.IsKeyFrame = tag.FrameType == flvio.FRAME_KEY
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}
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case flvio.TAG_AUDIO:
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pkt.Idx = int8(self.AudioStreamIdx)
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switch tag.SoundFormat {
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case flvio.SOUND_AAC:
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switch tag.AACPacketType {
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case flvio.AAC_RAW:
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ok = true
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pkt.Data = tag.Data
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}
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case flvio.SOUND_SPEEX:
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ok = true
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pkt.Data = tag.Data
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case flvio.SOUND_NELLYMOSER:
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ok = true
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pkt.Data = tag.Data
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}
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}
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pkt.Time = flvio.TsToTime(timestamp)
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return
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}
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func (self *Prober) Empty() bool {
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return len(self.CachedPkts) == 0
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}
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func (self *Prober) PopPacket() av.Packet {
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pkt := self.CachedPkts[0]
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self.CachedPkts = self.CachedPkts[1:]
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return pkt
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}
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func CodecDataToTag(stream av.CodecData) (_tag flvio.Tag, ok bool, err error) {
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switch stream.Type() {
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case av.H264:
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h264 := stream.(h264parser.CodecData)
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tag := flvio.Tag{
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Type: flvio.TAG_VIDEO,
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AVCPacketType: flvio.AVC_SEQHDR,
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CodecID: flvio.VIDEO_H264,
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Data: h264.AVCDecoderConfRecordBytes(),
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FrameType: flvio.FRAME_KEY,
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}
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ok = true
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_tag = tag
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case av.NELLYMOSER:
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case av.SPEEX:
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case av.AAC:
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aac := stream.(aacparser.CodecData)
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tag := flvio.Tag{
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Type: flvio.TAG_AUDIO,
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SoundFormat: flvio.SOUND_AAC,
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SoundRate: flvio.SOUND_44Khz,
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AACPacketType: flvio.AAC_SEQHDR,
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Data: aac.MPEG4AudioConfigBytes(),
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}
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switch aac.SampleFormat().BytesPerSample() {
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case 1:
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tag.SoundSize = flvio.SOUND_8BIT
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default:
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tag.SoundSize = flvio.SOUND_16BIT
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}
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switch aac.ChannelLayout().Count() {
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case 1:
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tag.SoundType = flvio.SOUND_MONO
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case 2:
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tag.SoundType = flvio.SOUND_STEREO
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}
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ok = true
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_tag = tag
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default:
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err = fmt.Errorf("flv: unspported codecType=%v", stream.Type())
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return
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}
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return
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}
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func PacketToTag(pkt av.Packet, stream av.CodecData) (tag flvio.Tag, timestamp int32) {
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switch stream.Type() {
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case av.H264:
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tag = flvio.Tag{
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Type: flvio.TAG_VIDEO,
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AVCPacketType: flvio.AVC_NALU,
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CodecID: flvio.VIDEO_H264,
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Data: pkt.Data,
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CompositionTime: flvio.TimeToTs(pkt.CompositionTime),
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}
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if pkt.IsKeyFrame {
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tag.FrameType = flvio.FRAME_KEY
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} else {
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tag.FrameType = flvio.FRAME_INTER
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}
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case av.AAC:
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tag = flvio.Tag{
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Type: flvio.TAG_AUDIO,
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SoundFormat: flvio.SOUND_AAC,
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SoundRate: flvio.SOUND_44Khz,
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AACPacketType: flvio.AAC_RAW,
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Data: pkt.Data,
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}
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astream := stream.(av.AudioCodecData)
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switch astream.SampleFormat().BytesPerSample() {
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case 1:
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tag.SoundSize = flvio.SOUND_8BIT
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default:
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tag.SoundSize = flvio.SOUND_16BIT
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}
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switch astream.ChannelLayout().Count() {
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case 1:
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tag.SoundType = flvio.SOUND_MONO
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case 2:
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tag.SoundType = flvio.SOUND_STEREO
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}
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case av.SPEEX:
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tag = flvio.Tag{
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Type: flvio.TAG_AUDIO,
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SoundFormat: flvio.SOUND_SPEEX,
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Data: pkt.Data,
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}
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case av.NELLYMOSER:
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tag = flvio.Tag{
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Type: flvio.TAG_AUDIO,
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SoundFormat: flvio.SOUND_NELLYMOSER,
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Data: pkt.Data,
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}
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}
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timestamp = flvio.TimeToTs(pkt.Time)
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return
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}
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type Muxer struct {
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bufw writeFlusher
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b []byte
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streams []av.CodecData
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}
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type writeFlusher interface {
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io.Writer
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Flush() error
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}
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func NewMuxerWriteFlusher(w writeFlusher) *Muxer {
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return &Muxer{
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bufw: w,
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b: make([]byte, 256),
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}
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}
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func NewMuxer(w io.Writer) *Muxer {
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return NewMuxerWriteFlusher(bufio.NewWriterSize(w, pio.RecommendBufioSize))
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}
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var CodecTypes = []av.CodecType{av.H264, av.AAC, av.SPEEX}
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func (self *Muxer) WriteHeader(streams []av.CodecData) (err error) {
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var flags uint8
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for _, stream := range streams {
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if stream.Type().IsVideo() {
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flags |= flvio.FILE_HAS_VIDEO
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} else if stream.Type().IsAudio() {
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flags |= flvio.FILE_HAS_AUDIO
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}
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}
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n := flvio.FillFileHeader(self.b, flags)
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if _, err = self.bufw.Write(self.b[:n]); err != nil {
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return
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}
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for _, stream := range streams {
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var tag flvio.Tag
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var ok bool
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if tag, ok, err = CodecDataToTag(stream); err != nil {
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return
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}
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if ok {
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if err = flvio.WriteTag(self.bufw, tag, 0, self.b); err != nil {
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return
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}
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}
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}
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self.streams = streams
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return
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}
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func (self *Muxer) WritePacket(pkt av.Packet) (err error) {
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stream := self.streams[pkt.Idx]
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tag, timestamp := PacketToTag(pkt, stream)
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if err = flvio.WriteTag(self.bufw, tag, timestamp, self.b); err != nil {
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return
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}
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return
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}
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func (self *Muxer) WriteTrailer() (err error) {
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if err = self.bufw.Flush(); err != nil {
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return
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}
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return
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}
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type Demuxer struct {
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prober *Prober
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bufr *bufio.Reader
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b []byte
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stage int
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}
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func NewDemuxer(r io.Reader) *Demuxer {
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return &Demuxer{
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bufr: bufio.NewReaderSize(r, pio.RecommendBufioSize),
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prober: &Prober{},
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b: make([]byte, 256),
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}
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}
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func (self *Demuxer) prepare() (err error) {
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for self.stage < 2 {
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switch self.stage {
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case 0:
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if _, err = io.ReadFull(self.bufr, self.b[:flvio.FileHeaderLength]); err != nil {
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return
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}
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var flags uint8
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var skip int
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if flags, skip, err = flvio.ParseFileHeader(self.b); err != nil {
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return
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}
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if _, err = self.bufr.Discard(skip); err != nil {
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return
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}
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if flags&flvio.FILE_HAS_AUDIO != 0 {
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self.prober.HasAudio = true
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}
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if flags&flvio.FILE_HAS_VIDEO != 0 {
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self.prober.HasVideo = true
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}
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self.stage++
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case 1:
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for !self.prober.Probed() {
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var tag flvio.Tag
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var timestamp int32
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if tag, timestamp, err = flvio.ReadTag(self.bufr, self.b); err != nil {
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return
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}
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if err = self.prober.PushTag(tag, timestamp); err != nil {
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return
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}
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}
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self.stage++
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}
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}
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return
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}
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func (self *Demuxer) Streams() (streams []av.CodecData, err error) {
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if err = self.prepare(); err != nil {
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return
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}
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streams = self.prober.Streams
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return
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}
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func (self *Demuxer) ReadPacket() (pkt av.Packet, err error) {
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if err = self.prepare(); err != nil {
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return
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}
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if !self.prober.Empty() {
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pkt = self.prober.PopPacket()
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return
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}
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for {
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var tag flvio.Tag
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var timestamp int32
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if tag, timestamp, err = flvio.ReadTag(self.bufr, self.b); err != nil {
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return
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}
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var ok bool
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if pkt, ok = self.prober.TagToPacket(tag, timestamp); ok {
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return
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}
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}
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return
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}
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func Handler(h *avutil.RegisterHandler) {
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h.Probe = func(b []byte) bool {
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return b[0] == 'F' && b[1] == 'L' && b[2] == 'V'
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}
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h.Ext = ".flv"
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h.ReaderDemuxer = func(r io.Reader) av.Demuxer {
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return NewDemuxer(r)
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}
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h.WriterMuxer = func(w io.Writer) av.Muxer {
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return NewMuxer(w)
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}
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h.CodecTypes = CodecTypes
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}
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