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https://github.com/WinampDesktop/winamp.git
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238 lines
5.5 KiB
C++
238 lines
5.5 KiB
C++
#include "h264_mkv_decoder.h"
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#include "../Winamp/wa_ipc.h" // for YV12_PLANES
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#include <winsock.h>
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#include <mmsystem.h>
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#include <Mferror.h>
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int MKVDecoderCreator::CreateVideoDecoder(const char *codec_id, const nsmkv::TrackEntryData *track_entry_data, const nsmkv::VideoData *video_data, ifc_mkvvideodecoder **decoder)
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{
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if (!strcmp(codec_id, "V_MPEG4/ISO/AVC"))
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{
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const uint8_t *init_data = (const uint8_t *)track_entry_data->codec_private;
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size_t init_data_len = track_entry_data->codec_private_len;
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if (init_data && init_data_len >= 6)
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{
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MFTDecoder *ctx = new MFTDecoder;
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if (!ctx)
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return CREATEDECODER_FAILURE;
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if (FAILED(ctx->Open())) {
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delete ctx;
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return CREATEDECODER_FAILURE;
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}
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init_data+=4; // don't care about level & profile
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init_data_len-=4;
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// read NALU header size length
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uint8_t nalu_minus_one = *init_data++ & 0x3;
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init_data_len--;
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// number of SPS NAL units
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uint8_t num_sps = *init_data++ & 0x1F;
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init_data_len--;
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for (uint8_t i=0;i!=num_sps;i++)
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{
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if (init_data_len < 2)
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{
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delete ctx;
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return CREATEDECODER_FAILURE;
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}
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uint16_t *s = (uint16_t *)init_data;
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uint16_t sps_size = htons(*s);
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init_data+=2;
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init_data_len-=2;
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if (init_data_len < sps_size)
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{
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delete ctx;
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return CREATEDECODER_FAILURE;
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}
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ctx->Feed(init_data, sps_size, 0);
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init_data+=sps_size;
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init_data_len-=sps_size;
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}
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// read PPS NAL units
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if (init_data_len)
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{
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// number of PPS NAL units
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uint8_t num_pps = *init_data++ & 0x1F;
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init_data_len--;
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for (uint8_t i=0;i!=num_pps;i++)
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{
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if (init_data_len < 2)
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{
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delete ctx;
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return CREATEDECODER_FAILURE;
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}
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uint16_t *s = (uint16_t *)init_data;
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uint16_t pps_size = htons(*s);
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init_data+=2;
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init_data_len-=2;
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if (init_data_len < pps_size)
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{
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delete ctx;
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return CREATEDECODER_FAILURE;
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}
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ctx->Feed(init_data, pps_size, 0);
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init_data+=pps_size;
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init_data_len-=pps_size;
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}
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}
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// if we made it here, we should be good
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*decoder = new MKVH264(ctx, nalu_minus_one, video_data);
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return CREATEDECODER_SUCCESS;
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}
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else
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{
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return CREATEDECODER_FAILURE;
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}
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}
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else
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{
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return CREATEDECODER_NOT_MINE;
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}
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}
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#define CBCLASS MKVDecoderCreator
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START_DISPATCH;
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CB(CREATE_VIDEO_DECODER, CreateVideoDecoder)
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END_DISPATCH;
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#undef CBCLASS
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MKVH264::MKVH264(MFTDecoder *ctx, uint8_t nalu_minus_one, const nsmkv::VideoData *video_data) : decoder(ctx), video_data(video_data)
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{
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nalu_size = nalu_minus_one + 1;
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width=0;
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height=0;
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}
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MKVH264::~MKVH264()
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{
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for (size_t i=0;i<buffered_frames.size();i++) {
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nullsoft_h264_frame_data frame_data = buffered_frames[i];
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decoder->FreeFrame((YV12_PLANES *)frame_data.data, frame_data.decoder_data);
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}
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delete decoder;
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}
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int MKVH264::GetOutputProperties(int *x, int *y, int *color_format, double *aspect_ratio)
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{
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if (decoder) {
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bool flip;
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if (SUCCEEDED(decoder->GetOutputFormat(&width, &height, &flip, aspect_ratio))) {
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*x = width;
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*y = height;
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*color_format = htonl('YV12');
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return MKV_SUCCESS;
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}
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}
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return MKV_FAILURE;
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}
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uint32_t GetNALUSize(uint64_t nalu_size_bytes, const uint8_t *h264_data, size_t data_len);
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int MKVH264::DecodeBlock(const void *inputBuffer, size_t inputBufferBytes, uint64_t timestamp)
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{
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const uint8_t *h264_data = (const uint8_t *)inputBuffer;
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while (inputBufferBytes) {
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uint32_t this_size = GetNALUSize(nalu_size, h264_data, inputBufferBytes);
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if (this_size == 0)
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return MKV_FAILURE;
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inputBufferBytes-=nalu_size;
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h264_data+=nalu_size;
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if (this_size > inputBufferBytes)
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return MKV_FAILURE;
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for (;;) {
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HRESULT hr = decoder->Feed(h264_data, this_size, timestamp);
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if (hr == MF_E_NOTACCEPTING) {
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nullsoft_h264_frame_data frame_data;
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if (FAILED(decoder->GetFrame((YV12_PLANES **)&frame_data.data, &frame_data.decoder_data, &frame_data.local_timestamp))) {
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continue;
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}
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buffered_frames.push_back(frame_data);
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} else if (FAILED(hr)) {
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return MKV_FAILURE;
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} else {
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break;
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}
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}
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inputBufferBytes-=this_size;
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h264_data+=this_size;
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}
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return MKV_SUCCESS;
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}
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void MKVH264::Flush()
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{
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for (size_t i=0;i<buffered_frames.size();i++) {
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nullsoft_h264_frame_data frame_data = buffered_frames[i];
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decoder->FreeFrame((YV12_PLANES *)frame_data.data, frame_data.decoder_data);
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}
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if (decoder) {
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decoder->Flush();
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}
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}
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int MKVH264::GetPicture(void **data, void **decoder_data, uint64_t *timestamp)
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{
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if (!buffered_frames.empty()) {
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nullsoft_h264_frame_data frame_data = buffered_frames[0];
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buffered_frames.erase(buffered_frames.begin());
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*data = frame_data.data;
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*decoder_data = frame_data.decoder_data;
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*timestamp = frame_data.local_timestamp;
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return MKV_SUCCESS;
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}
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if (SUCCEEDED(decoder->GetFrame((YV12_PLANES **)data, decoder_data, timestamp))) {
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return MKV_SUCCESS;
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} else {
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return MKV_FAILURE;
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}
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}
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void MKVH264::FreePicture(void *data, void *decoder_data)
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{
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decoder->FreeFrame((YV12_PLANES *)data, decoder_data);
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}
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void MKVH264::EndOfStream()
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{
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if (decoder) {
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decoder->Drain();
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}
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}
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void MKVH264::HurryUp(int state)
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{
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// TODO(benski)
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//if (decoder)
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// H264_HurryUp(decoder, state);
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}
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void MKVH264::Close()
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{
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delete this;
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}
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#define CBCLASS MKVH264
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START_DISPATCH;
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CB(GET_OUTPUT_PROPERTIES, GetOutputProperties)
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CB(DECODE_BLOCK, DecodeBlock)
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VCB(FLUSH, Flush)
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VCB(CLOSE, Close)
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CB(GET_PICTURE, GetPicture)
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VCB(FREE_PICTURE, FreePicture)
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VCB(END_OF_STREAM, EndOfStream)
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VCB(HURRY_UP, HurryUp)
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END_DISPATCH;
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#undef CBCLASS
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