forked from KolibriOS/kolibrios
4f80db8269
git-svn-id: svn://kolibrios.org@1696 a494cfbc-eb01-0410-851d-a64ba20cac60
257 lines
6.5 KiB
C
257 lines
6.5 KiB
C
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#include <stdint.h>
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#include <libavcodec/avcodec.h>
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#include <libavformat/avformat.h>
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#include <libavdevice/avdevice.h>
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#include <libswscale/swscale.h>
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#include <stdio.h>
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#include <string.h>
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#include <fcntl.h>
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#include "sound.h"
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#include "fplay.h"
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volatile uint32_t status = 1;
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uint32_t win_width, win_height;
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void decoder();
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AVFormatContext *pFormatCtx;
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AVCodecContext *pCodecCtx;
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AVCodecContext *aCodecCtx;
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AVCodec *pCodec;
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AVCodec *aCodec;
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AVFrame *pFrame;
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int videoStream;
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int audioStream;
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int have_sound = 0;
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uint8_t *decoder_buffer;
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extern int sample_rate;
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int main( int argc, char *argv[])
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{
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int i;
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if(argc < 2) {
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printf("Please provide a movie file\n");
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return -1;
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}
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/* register all codecs, demux and protocols */
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avcodec_register_all();
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avdevice_register_all();
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av_register_all();
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// Open video file
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if(av_open_input_file(&pFormatCtx, argv[1], NULL, 0, NULL)!=0)
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{
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printf("Cannot open file %s\n\r", argv[1]);
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return -1; // Couldn't open file
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};
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// __asm__ __volatile__("int3");
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// Retrieve stream information
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if(av_find_stream_info(pFormatCtx)<0)
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{
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printf("Cannot find streams\n\r");
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return -1;
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};
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// __asm__ __volatile__("int3");
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// dump_format(pFormatCtx, 0, argv[1], 0);
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// Find the first video stream
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videoStream=-1;
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audioStream=-1;
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for(i=0; i < pFormatCtx->nb_streams; i++)
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{
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if(pFormatCtx->streams[i]->codec->codec_type==CODEC_TYPE_VIDEO
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&& videoStream < 0)
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{
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videoStream=i;
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video_time_base = pFormatCtx->streams[i]->time_base;
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}
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if(pFormatCtx->streams[i]->codec->codec_type==CODEC_TYPE_AUDIO &&
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audioStream < 0)
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{
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audioStream=i;
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}
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}
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if(videoStream==-1)
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{
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printf("Video stream not detected\n\r");
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return -1; // Didn't find a video stream
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}
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// Get a pointer to the codec context for the video stream
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pCodecCtx=pFormatCtx->streams[videoStream]->codec;
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aCodecCtx=pFormatCtx->streams[audioStream]->codec;
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// Find the decoder for the video stream
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pCodec=avcodec_find_decoder(pCodecCtx->codec_id);
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if(pCodec==NULL) {
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printf("Unsupported video codec!\n");
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return -1; // Codec not found
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}
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// Open codec
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if(avcodec_open(pCodecCtx, pCodec) < 0)
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{
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printf("Cannot open video codec\n\r");
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return -1; // Could not open codec
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};
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if (aCodecCtx->channels > 0)
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aCodecCtx->request_channels = FFMIN(2, aCodecCtx->channels);
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else
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aCodecCtx->request_channels = 2;
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aCodec = avcodec_find_decoder(aCodecCtx->codec_id);
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if(aCodec)
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{
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if(avcodec_open(aCodecCtx, aCodec) >= 0 )
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{
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WAVEHEADER whdr;
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int fmt;
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printf("audio stream rate %d channels %d\n",
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aCodecCtx->sample_rate, aCodecCtx->channels);
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whdr.riff_id = 0x46464952;
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whdr.riff_format = 0x45564157;
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whdr.wFormatTag = 0x01;
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whdr.nSamplesPerSec = aCodecCtx->sample_rate;
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whdr.nChannels = aCodecCtx->channels;
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whdr.wBitsPerSample = 16;
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sample_rate = aCodecCtx->sample_rate;
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fmt = test_wav(&whdr);
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if( init_audio(fmt) )
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{
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decoder_buffer = (uint8_t*)av_mallocz(AVCODEC_MAX_AUDIO_FRAME_SIZE);
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if( decoder_buffer != NULL )
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{
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astream.lock = 0;
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astream.count = 0;
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astream.buffer = (char *)av_mallocz(AVCODEC_MAX_AUDIO_FRAME_SIZE*8);
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if( astream.buffer != NULL )
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have_sound = 1;
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else
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av_free(decoder_buffer);
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}
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if( have_sound == 0)
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{
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printf("Not enough memory for audio buffers\n");
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}
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}
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}
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else printf("Cannot open audio codec\n\r");
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}
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else printf("Unsupported audio codec!\n");
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if( !init_video(pCodecCtx))
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return 0;
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// Assign appropriate parts of buffer to image planes in pFrameRGB
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// Note that pFrameRGB is an AVFrame, but AVFrame is a superset
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// of AVPicture
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// __asm__ __volatile__("int3");
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decoder();
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status = 0;
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// Free the YUV frame
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av_free(pFrame);
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//__asm__ __volatile__("int3");
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// Close the codec
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// avcodec_close(pCodecCtx);
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// Close the video file
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// av_close_input_file(pFormatCtx);
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//__asm__ __volatile__("int3");
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return 0;
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}
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void decoder()
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{
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AVPacket packet;
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while(av_read_frame(pFormatCtx, &packet) >=0 )
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{
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if(packet.stream_index==videoStream)
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{
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decode_video(pCodecCtx, &packet);
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}
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else if( (packet.stream_index == audioStream) &&
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(have_sound != 0) )
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{
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uint8_t *audio_data;
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int audio_size;
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int len;
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int data_size=0;
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audio_data = packet.data;
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audio_size = packet.size;
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while(audio_size > 0)
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{
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data_size = AVCODEC_MAX_AUDIO_FRAME_SIZE;
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len = avcodec_decode_audio2(aCodecCtx,(int16_t*)decoder_buffer,
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&data_size, audio_data, audio_size);
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if(len >= 0)
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{
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audio_data += len;
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audio_size -= len;
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while((astream.count + data_size) >
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AVCODEC_MAX_AUDIO_FRAME_SIZE*8)
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{
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yield();
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}
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spinlock_lock(&astream.lock);
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memcpy(astream.buffer+astream.count, decoder_buffer, data_size);
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astream.count += data_size;
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spinlock_unlock(&astream.lock);
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}
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else audio_size = 0;
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}
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}
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// Free the packet that was allocated by av_read_frame
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av_free_packet(&packet);
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};
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};
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__int64 _lseeki64(int fd, __int64 offset, int origin )
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{
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int off = offset;
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return lseek(fd, off, origin);
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}
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