forked from mia/Aegisub
38c420c7bd
Renamed a public api function just because I can Less access violations (AGAIN!) Dumping now implies indexing too Much better logic for automatically indexing files when FFAudioSource is used in avisynth Changed defaults for FFIndex Now FFmpeg's internal codec lists are used for lookup from the non-lavf based parts Originally committed to SVN as r2991.
266 lines
8.6 KiB
C++
266 lines
8.6 KiB
C++
// Copyright (c) 2007-2009 Fredrik Mellbin
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//
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// Permission is hereby granted, free of charge, to any person obtaining a copy
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// of this software and associated documentation files (the "Software"), to deal
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// in the Software without restriction, including without limitation the rights
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// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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// copies of the Software, and to permit persons to whom the Software is
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// furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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// THE SOFTWARE.
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extern "C" {
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#include <libavcodec/avcodec.h>
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}
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#include "ffms.h"
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#include "ffvideosource.h"
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#include "ffaudiosource.h"
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#include "indexing.h"
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#ifdef __UNIX__
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#define _snprintf snprintf
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#endif
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static bool FFmpegInited = false;
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FFMS_API(void) FFMS_Init() {
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if (!FFmpegInited) {
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av_register_all();
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av_log_set_level(AV_LOG_QUIET);
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FFmpegInited = true;
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}
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}
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FFMS_API(int) FFMS_GetLogLevel() {
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return av_log_get_level();
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}
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FFMS_API(void) FFMS_SetLogLevel(int Level) {
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av_log_set_level(AV_LOG_QUIET);
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}
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FFMS_API(FFVideo *) FFMS_CreateVideoSource(const char *SourceFile, int Track, FFIndex *Index, const char *PP, int Threads, int SeekMode, char *ErrorMsg, unsigned MsgSize) {
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if (Track < 0 || Track >= Index->size()) {
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_snprintf(ErrorMsg, MsgSize, "Out of bounds track index selected");
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return NULL;
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}
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if (Index->at(Track).TT != FFMS_TYPE_VIDEO) {
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_snprintf(ErrorMsg, MsgSize, "Not a video track");
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return NULL;
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}
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try {
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switch (Index->Decoder) {
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case 0: return new FFLAVFVideo(SourceFile, Track, Index, PP, Threads, SeekMode, ErrorMsg, MsgSize);
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case 1: return new FFMatroskaVideo(SourceFile, Track, Index, PP, Threads, ErrorMsg, MsgSize);
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#ifdef HAALISOURCE
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case 2: return new FFHaaliVideo(SourceFile, Track, Index, PP, Threads, 0, ErrorMsg, MsgSize);
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case 3: return new FFHaaliVideo(SourceFile, Track, Index, PP, Threads, 1, ErrorMsg, MsgSize);
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#endif
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default:
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_snprintf(ErrorMsg, MsgSize, "Unsupported format");
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return NULL;
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}
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} catch (...) {
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return NULL;
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}
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}
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FFMS_API(FFAudio *) FFMS_CreateAudioSource(const char *SourceFile, int Track, FFIndex *Index, char *ErrorMsg, unsigned MsgSize) {
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if (Track < 0 || Track >= Index->size()) {
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_snprintf(ErrorMsg, MsgSize, "Out of bounds track index selected");
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return NULL;
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}
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if (Index->at(Track).TT != FFMS_TYPE_AUDIO) {
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_snprintf(ErrorMsg, MsgSize, "Not an audio track");
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return NULL;
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}
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try {
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switch (Index->Decoder) {
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case 0: return new FFLAVFAudio(SourceFile, Track, Index, ErrorMsg, MsgSize);
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case 1: return new FFMatroskaAudio(SourceFile, Track, Index, ErrorMsg, MsgSize);
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#ifdef HAALISOURCE
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case 2: return new FFHaaliAudio(SourceFile, Track, Index, 0, ErrorMsg, MsgSize);
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case 3: return new FFHaaliAudio(SourceFile, Track, Index, 1, ErrorMsg, MsgSize);
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#endif
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default:
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_snprintf(ErrorMsg, MsgSize, "Unsupported format");
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return NULL;
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}
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} catch (...) {
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return NULL;
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}
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}
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FFMS_API(void) FFMS_DestroyVideoSource(FFVideo *V) {
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delete V;
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}
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FFMS_API(void) FFMS_DestroyAudioSource(FFAudio *A) {
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delete A;
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}
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FFMS_API(const TVideoProperties *) FFMS_GetVideoProperties(FFVideo *V) {
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return &V->GetTVideoProperties();
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}
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FFMS_API(const TAudioProperties *) FFMS_GetAudioProperties(FFAudio *A) {
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return &A->GetTAudioProperties();
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}
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FFMS_API(const TAVFrameLite *) FFMS_GetFrame(FFVideo *V, int n, char *ErrorMsg, unsigned MsgSize) {
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return (TAVFrameLite *)V->GetFrame(n, ErrorMsg, MsgSize);
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}
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FFMS_API(const TAVFrameLite *) FFMS_GetFrameByTime(FFVideo *V, double Time, char *ErrorMsg, unsigned MsgSize) {
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return (TAVFrameLite *)V->GetFrameByTime(Time, ErrorMsg, MsgSize);
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}
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FFMS_API(int) FFMS_GetAudio(FFAudio *A, void *Buf, int64_t Start, int64_t Count, char *ErrorMsg, unsigned MsgSize) {
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return A->GetAudio(Buf, Start, Count, ErrorMsg, MsgSize);
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}
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FFMS_API(int) FFMS_SetOutputFormat(FFVideo *V, int64_t TargetFormats, int Width, int Height, char *ErrorMsg, unsigned MsgSize) {
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return V->SetOutputFormat(TargetFormats, Width, Height, ErrorMsg, MsgSize);
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}
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FFMS_API(void) FFMS_ResetOutputFormat(FFVideo *V) {
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V->ResetOutputFormat();
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}
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FFMS_API(void) FFMS_DestroyIndex(FFIndex *Index) {
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delete Index;
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}
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FFMS_API(int) FFMS_GetFirstTrackOfType(FFIndex *Index, int TrackType, char *ErrorMsg, unsigned MsgSize) {
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for (int i = 0; i < static_cast<int>(Index->size()); i++)
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if ((*Index)[i].TT == TrackType)
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return i;
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_snprintf(ErrorMsg, MsgSize, "No suitable, indexed track found");
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return -1;
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}
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FFMS_API(int) FFMS_GetFirstIndexedTrackOfType(FFIndex *Index, int TrackType, char *ErrorMsg, unsigned MsgSize) {
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for (int i = 0; i < static_cast<int>(Index->size()); i++)
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if ((*Index)[i].TT == TrackType && (*Index)[i].size() > 0)
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return i;
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_snprintf(ErrorMsg, MsgSize, "No suitable, indexed track found");
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return -1;
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}
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FFMS_API(int) FFMS_GetNumTracks(FFIndex *Index) {
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return Index->size();
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}
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FFMS_API(int) FFMS_GetNumTracksI(FFIndexer *Indexer) {
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return Indexer->GetNumberOfTracks();
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}
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FFMS_API(FFMS_TrackType) FFMS_GetTrackType(FFTrack *T) {
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return T->TT;
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}
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FFMS_API(FFMS_TrackType) FFMS_GetTrackTypeI(FFIndexer *Indexer, int Track) {
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return Indexer->GetTrackType(Track);
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}
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FFMS_API(const char *) FFMS_GetCodecNameI(FFIndexer *Indexer, int Track) {
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return Indexer->GetTrackCodec(Track);
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}
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FFMS_API(int) FFMS_GetNumFrames(FFTrack *T) {
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return T->size();
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}
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FFMS_API(const FFFrameInfo *) FFMS_GetFrameInfo(FFTrack *T, int Frame) {
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return reinterpret_cast<FFFrameInfo *>(&(*T)[Frame]);
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}
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FFMS_API(FFTrack *) FFMS_GetTrackFromIndex(FFIndex *Index, int Track) {
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return &(*Index)[Track];
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}
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FFMS_API(FFTrack *) FFMS_GetTrackFromVideo(FFVideo *V) {
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return V->GetFFTrack();
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}
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FFMS_API(FFTrack *) FFMS_GetTrackFromAudio(FFAudio *A) {
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return A->GetFFTrack();
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}
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FFMS_API(const TTrackTimeBase *) FFMS_GetTimeBase(FFTrack *T) {
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return &T->TB;
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}
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FFMS_API(int) FFMS_WriteTimecodes(FFTrack *T, const char *TimecodeFile, char *ErrorMsg, unsigned MsgSize) {
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return T->WriteTimecodes(TimecodeFile, ErrorMsg, MsgSize);
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}
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FFMS_API(FFIndex *) FFMS_MakeIndex(const char *SourceFile, int IndexMask, int DumpMask, TAudioNameCallback ANC, void *ANCPrivate, bool IgnoreDecodeErrors, TIndexCallback IC, void *ICPrivate, char *ErrorMsg, unsigned MsgSize) {
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FFIndexer *Indexer = FFMS_CreateIndexer(SourceFile, ErrorMsg, MsgSize);
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if (!Indexer)
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return NULL;
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return FFMS_DoIndexing(Indexer, IndexMask, DumpMask, ANC, ANCPrivate, IgnoreDecodeErrors, IC, ICPrivate, ErrorMsg, MsgSize);
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}
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FFMS_API(int) FFMS_DefaultAudioFilename(const char *SourceFile, int Track, const TAudioProperties *AP, char *FileName, void *Private) {
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const char * FormatString = "%s.Track%d.delay%dms.w64";
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if (FileName == NULL)
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return _snprintf(NULL, 0, FormatString, SourceFile, Track, (int)AP->FirstTime) + 1;
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else
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return _snprintf(FileName, 999999, FormatString, SourceFile, Track, (int)AP->FirstTime) + 1;
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}
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FFMS_API(FFIndexer *) FFMS_CreateIndexer(const char *SourceFile, char *ErrorMsg, unsigned MsgSize) {
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try {
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return FFIndexer::CreateFFIndexer(SourceFile, ErrorMsg, MsgSize);
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} catch (...) {
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return NULL;
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}
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}
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FFMS_API(FFIndex *) FFMS_DoIndexing(FFIndexer *Indexer, int IndexMask, int DumpMask, TAudioNameCallback ANC, void *ANCPrivate, bool IgnoreDecodeErrors, TIndexCallback IC, void *ICPrivate, char *ErrorMsg, unsigned MsgSize) {
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Indexer->SetIndexMask(IndexMask | DumpMask);
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Indexer->SetDumpMask(DumpMask);
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Indexer->SetIgnoreDecodeErrors(IgnoreDecodeErrors);
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Indexer->SetProgressCallback(IC, ICPrivate);
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Indexer->SetAudioNameCallback(ANC, ANCPrivate);
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FFIndex *Index = Indexer->DoIndexing(ErrorMsg, MsgSize);
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delete Indexer;
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return Index;
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}
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FFMS_API(void) FFMS_CancelIndexing(FFIndexer *Indexer) {
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delete Indexer;
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}
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FFMS_API(FFIndex *) FFMS_ReadIndex(const char *IndexFile, char *ErrorMsg, unsigned MsgSize) {
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FFIndex *Index = new FFIndex();
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if (Index->ReadIndex(IndexFile, ErrorMsg, MsgSize)) {
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delete Index;
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return NULL;
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} else {
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return Index;
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}
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}
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FFMS_API(int) FFMS_WriteIndex(const char *IndexFile, FFIndex *Index, char *ErrorMsg, unsigned MsgSize) {
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return Index->WriteIndex(IndexFile, ErrorMsg, MsgSize);
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}
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FFMS_API(int) FFMS_GetPixFmt(const char *Name) {
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return avcodec_get_pix_fmt(Name);
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}
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