mirror of
https://github.com/mpv-player/mpv
synced 2024-12-13 10:26:00 +00:00
1c6f0aff46
git-svn-id: svn://svn.mplayerhq.hu/mplayer/trunk@5142 b3059339-0415-0410-9bf9-f77b7e298cf2
543 lines
12 KiB
C
543 lines
12 KiB
C
// Don't change for DVB card, it must be 2048
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#define PES_MAX_SIZE 2048
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// 100=best >=80 very good >=50 fast
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#define QUALITY 90
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// #undef if you don't want mpeg1 transcoder (you'll be limited to mpeg1/2 playback only)
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#define USE_LIBFAME
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/*
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* Based on:
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*
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* test_av.c - Test program for new API
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*
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* Copyright (C) 2000 Ralph Metzler <ralph@convergence.de>
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* & Marcus Metzler <marcus@convergence.de>
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* for convergence integrated media GmbH
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*
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* libav - MPEG-PS multiplexer, part of ffmpeg
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* Copyright Gerard Lantau (see http://ffmpeg.sf.net)
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*
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <errno.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <fcntl.h>
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#include "config.h"
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#ifdef HAVE_DVB
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#include <sys/poll.h>
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#include <sys/ioctl.h>
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#include <stdio.h>
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#include <time.h>
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#include <unistd.h>
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#include <ost/dmx.h>
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#include <ost/frontend.h>
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#include <ost/sec.h>
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#include <ost/video.h>
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#include <ost/audio.h>
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#endif
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#include "config.h"
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#include "video_out.h"
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#include "video_out_internal.h"
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LIBVO_EXTERN (mpegpes)
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int vo_mpegpes_fd=-1;
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int vo_mpegpes_fd2=-1;
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#ifdef USE_LIBFAME
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#include "../libfame/fame.h"
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static unsigned char *picture_buf=NULL;
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static unsigned char *outbuf=NULL;
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static int outbuf_size = 1000000;
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static int s_pos_x,s_pos_y;
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static int d_pos_x,d_pos_y;
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static int osd_w,osd_h;
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static fame_parameters_t params;
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static fame_yuv_t yuv;
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static fame_context_t *ctx=NULL;
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#endif
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static vo_info_t vo_info =
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{
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#ifdef HAVE_DVB
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"Mpeg-PES to DVB card",
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#else
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"Mpeg-PES file",
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#endif
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"mpegpes",
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"A'rpi",
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""
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};
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static uint32_t
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config(uint32_t s_width, uint32_t s_height, uint32_t width, uint32_t height, uint32_t fullscreen, char *title, uint32_t format,const vo_tune_info_t *info)
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{
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#ifdef HAVE_DVB
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//|O_NONBLOCK
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if((vo_mpegpes_fd = open("/dev/ost/video",O_RDWR)) < 0){
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perror("DVB VIDEO DEVICE: ");
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return -1;
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}
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if((vo_mpegpes_fd2 = open("/dev/ost/audio",O_RDWR|O_NONBLOCK)) < 0){
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perror("DVB AUDIO DEVICE: ");
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return -1;
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}
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if ( (ioctl(vo_mpegpes_fd,VIDEO_SET_BLANK, false) < 0)){
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perror("DVB VIDEO SET BLANK: ");
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return -1;
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}
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if ( (ioctl(vo_mpegpes_fd,VIDEO_SELECT_SOURCE, VIDEO_SOURCE_MEMORY) < 0)){
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perror("DVB VIDEO SELECT SOURCE: ");
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return -1;
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}
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#if 1
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if ( (ioctl(vo_mpegpes_fd2,AUDIO_SELECT_SOURCE, AUDIO_SOURCE_MEMORY) < 0)){
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perror("DVB AUDIO SELECT SOURCE: ");
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return -1;
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}
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if ( (ioctl(vo_mpegpes_fd2,AUDIO_PLAY) < 0)){
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perror("DVB AUDIO PLAY: ");
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return -1;
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}
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#else
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if ( (ioctl(vo_mpegpes_fd2,AUDIO_STOP,0) < 0)){
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perror("DVB AUDIO STOP: ");
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return -1;
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}
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#endif
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if ( (ioctl(vo_mpegpes_fd,VIDEO_PLAY) < 0)){
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perror("DVB VIDEO PLAY: ");
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return -1;
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}
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if ( (ioctl(vo_mpegpes_fd2,AUDIO_SET_AV_SYNC, false) < 0)){
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perror("DVB AUDIO SET AV SYNC: ");
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return -1;
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}
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if ( (ioctl(vo_mpegpes_fd2,AUDIO_SET_MUTE, false) < 0)){
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perror("DVB AUDIO SET MUTE: ");
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return -1;
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}
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#else
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vo_mpegpes_fd=open("grab.mpg",O_WRONLY|O_CREAT);
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if(vo_mpegpes_fd<0){
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perror("vo_mpegpes");
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return -1;
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}
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#endif
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#ifdef USE_LIBFAME
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picture_buf=NULL;
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if(format==IMGFMT_YV12){
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int size;
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ctx=fame_open();
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if(!ctx){
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printf("FATAL: cannot open libFAME!\n");
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return -1;
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}
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params.width=720;
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params.height=576;
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//params.coding="IPPPPP"; // seems to be buggy and eats more cpu
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params.coding="I";
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params.quality=QUALITY; // 100=best >=80 very good >=50 fast
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params.bitrate=0; // 6*1000000 // bitrate (X bits/sec), 0=VBR
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params.slices_per_frame=1;
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params.frames_per_sequence=25; //0xffffffff;
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params.frame_rate_num=25;
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params.frame_rate_den=1;
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params.shape_quality=100;
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params.search_range=8; // for "IPPP" only
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params.verbose=0;
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params.profile=NULL; // TODO
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#if 0
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params.width=width;
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params.height=height;
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#else
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if(width<=352 && height<=288){
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params.width=352;
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params.height=288;
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} else
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if(width<=352 && height<=576){
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params.width=352;
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params.height=576;
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} else
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if(width<=480 && height<=576){
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params.width=480;
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params.height=576;
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} else
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if(width<=544 && height<=576){
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params.width=544;
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params.height=576;
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} else {
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params.width=704;
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params.height=576;
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}
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#endif
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osd_w=s_width;
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d_pos_x=(params.width-(int)s_width)/2;
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if(d_pos_x<0){
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s_pos_x=-d_pos_x;d_pos_x=0;
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osd_w=params.width;
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} else s_pos_x=0;
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d_pos_y=(params.height-(int)s_height)/2;
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if(d_pos_y<0){
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s_pos_y=-d_pos_y;d_pos_y=0;
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osd_h=params.height;
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} else {
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s_pos_y=0;
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osd_h=s_height+d_pos_y;
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// if(d_pos_y) osd clear: s_height+d_pos_y .. params.height
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}
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printf("[vo] position mapping: %d;%d => %d;%d\n",s_pos_x,s_pos_y,d_pos_x,d_pos_y);
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/* open it */
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outbuf_size=10000+width*height; // must be enough!
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outbuf = malloc(outbuf_size);
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fame_init(ctx,¶ms,outbuf,outbuf_size);
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size = params.width*params.height;
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picture_buf = malloc((size * 3) / 2); /* size for YUV 420 */
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memset(picture_buf,0,size); // clear Y
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memset(picture_buf+size,128,size/2); // clear UV
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yuv.w=params.width;
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yuv.h=params.height;
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yuv.y=picture_buf;
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yuv.u=yuv.y+size;
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yuv.v=yuv.u+size/4;
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}
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#endif
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return 0;
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}
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static const vo_info_t*
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get_info(void)
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{
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return &vo_info;
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}
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#ifdef USE_LIBFAME
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static void draw_alpha(int x0,int y0, int w,int h, unsigned char* src, unsigned char *srca, int stride){
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int x,y;
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vo_draw_alpha_yv12(w,h,src,srca,stride,
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yuv.y+(x0+d_pos_x)+(y0+d_pos_y)*yuv.w,yuv.w);
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}
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#endif
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static void draw_osd(void)
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{
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#ifdef USE_LIBFAME
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if(picture_buf){ // YV12 only:
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// if(d_pos_y) osd clear: s_height+d_pos_y .. params.height
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if(d_pos_y){
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memset(yuv.y+osd_h*yuv.w,0,(params.height-osd_h)*yuv.w);
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}
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vo_draw_text(osd_w,osd_h,draw_alpha);
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}
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#endif
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}
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static void my_write(unsigned char* data,int len){
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#ifdef HAVE_DVB
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#define NFD 2
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struct pollfd pfd[NFD];
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// printf("write %d bytes \n",len);
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pfd[0].fd = vo_mpegpes_fd;
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pfd[0].events = POLLOUT;
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pfd[1].fd = vo_mpegpes_fd2;
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pfd[1].events = POLLOUT;
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while(len>0){
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if (poll(pfd,NFD,1)){
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if (pfd[0].revents & POLLOUT){
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int ret=write(vo_mpegpes_fd,data,len);
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// printf("ret=%d \n",ret);
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if(ret<=0){
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perror("write");
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usleep(0);
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} else {
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len-=ret; data+=ret;
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}
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} else usleep(1000);
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}
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}
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#else
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write(vo_mpegpes_fd,data,len); // write to file
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#endif
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}
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static unsigned char pes_header[PES_MAX_SIZE];
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void send_pes_packet(unsigned char* data,int len,int id,int timestamp){
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int ptslen=timestamp?5:1;
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// startcode:
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pes_header[0]=pes_header[1]=0;
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pes_header[2]=id>>8; pes_header[3]=id&255;
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while(len>0){
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int payload_size=len; // data + PTS
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if(6+ptslen+payload_size>PES_MAX_SIZE) payload_size=PES_MAX_SIZE-(6+ptslen);
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// construct PES header: (code from ffmpeg's libav)
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// packetsize:
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pes_header[4]=(ptslen+payload_size)>>8;
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pes_header[5]=(ptslen+payload_size)&255;
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if(ptslen==5){
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int x;
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// presentation time stamp:
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x=(0x02 << 4) | (((timestamp >> 30) & 0x07) << 1) | 1;
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pes_header[6]=x;
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x=((((timestamp >> 15) & 0x7fff) << 1) | 1);
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pes_header[7]=x>>8; pes_header[8]=x&255;
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x=((((timestamp) & 0x7fff) << 1) | 1);
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pes_header[9]=x>>8; pes_header[10]=x&255;
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} else {
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// stuffing and header bits:
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pes_header[6]=0x0f;
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}
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memcpy(&pes_header[6+ptslen],data,payload_size);
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my_write(pes_header,6+ptslen+payload_size);
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len-=payload_size; data+=payload_size;
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ptslen=1; // store PTS only once, at first packet!
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}
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// printf("PES: draw frame! pts=%d size=%d \n",timestamp,len);
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}
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void send_lpcm_packet(unsigned char* data,int len,int id,unsigned int timestamp,int freq_id){
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int ptslen=timestamp?5:0;
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// startcode:
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pes_header[0]=pes_header[1]=0;
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pes_header[2]=1; pes_header[3]=0xBD;
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while(len>=4){
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int payload_size;
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payload_size=PES_MAX_SIZE-6-20; // max possible data len
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if(payload_size>len) payload_size=len;
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payload_size&=(~3); // align!
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//if(6+payload_size>PES_MAX_SIZE) payload_size=PES_MAX_SIZE-6;
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// packetsize:
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pes_header[4]=(payload_size+3+ptslen+7)>>8;
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pes_header[5]=(payload_size+3+ptslen+7)&255;
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// stuffing:
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pes_header[6]=0x81;
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pes_header[7]=0x80;
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// hdrlen:
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pes_header[8]=ptslen;
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if(ptslen){
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int x;
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// presentation time stamp:
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x=(0x02 << 4) | (((timestamp >> 30) & 0x07) << 1) | 1;
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pes_header[9]=x;
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x=((((timestamp >> 15) & 0x7fff) << 1) | 1);
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pes_header[10]=x>>8; pes_header[11]=x&255;
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x=((((timestamp) & 0x7fff) << 1) | 1);
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pes_header[12]=x>>8; pes_header[13]=x&255;
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}
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// ============ LPCM header: (7 bytes) =================
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// Info by mocm@convergence.de
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// ID:
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pes_header[ptslen+9]=id;
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// number of frames:
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pes_header[ptslen+10]=0x07;
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// first acces unit pointer, i.e. start of audio frame:
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pes_header[ptslen+11]=0x00;
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pes_header[ptslen+12]=0x04;
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// audio emphasis on-off 1 bit
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// audio mute on-off 1 bit
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// reserved 1 bit
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// audio frame number 5 bit
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pes_header[ptslen+13]=0x0C;
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// quantization word length 2 bit
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// audio sampling frequency (48khz = 0, 96khz = 1) 2 bit
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// reserved 1 bit
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// number of audio channels - 1 (e.g. stereo = 1) 3 bit
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pes_header[ptslen+14]=1|(freq_id<<4);
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// dynamic range control (0x80 if off)
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pes_header[ptslen+15]=0x80;
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memcpy(&pes_header[6+3+ptslen+7],data,payload_size);
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my_write(pes_header,6+3+ptslen+7+payload_size);
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len-=payload_size; data+=payload_size;
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ptslen=0; // store PTS only once, at first packet!
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}
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// printf("PES: draw frame! pts=%d size=%d \n",timestamp,len);
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}
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static uint32_t draw_frame(uint8_t * src[])
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{
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vo_mpegpes_t *p=(vo_mpegpes_t *)src[0];
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unsigned char *data=p->data;
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// int tmp=-1;
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send_pes_packet(p->data,p->size,p->id,p->timestamp); // video data
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// send_pes_packet(&tmp,0,0x1C0,p->timestamp+30000); // fake audio data
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return 0;
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}
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static void flip_page (void)
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{
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#ifdef USE_LIBFAME
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if(picture_buf){ // YV12 only:
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int out_size;
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// static int fno=0;
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/* encode the image */
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out_size = fame_encode_frame(ctx, &yuv, NULL);
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// send_pes_packet(outbuf,out_size,0x1E0,fno*(90000/25));++fno;
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send_pes_packet(outbuf,out_size,0x1E0,vo_pts);
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// printf("frame size: %d \n",out_size);
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}
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#endif
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}
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static uint32_t draw_slice(uint8_t *srcimg[], int stride[], int w,int h,int x0,int y0)
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{
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#ifdef USE_LIBFAME
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int y;
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unsigned char* s;
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unsigned char* d;
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x0+=d_pos_x;
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y0+=d_pos_y;
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if(x0+w>yuv.w) w=yuv.w-x0; // !!
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if(y0+h>params.height) h=params.height-y0;
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// Y
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s=srcimg[0]+s_pos_x+s_pos_y*stride[0];
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d=yuv.y+x0+y0*yuv.w;
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for(y=0;y<h;y++){
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memcpy(d,s,w);
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s+=stride[0];
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d+=yuv.w;
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}
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w/=2;h/=2;x0/=2;y0/=2;
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// U
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s=srcimg[1]+(s_pos_x/2)+(s_pos_y/2)*stride[1];
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d=yuv.u+x0+y0*(yuv.w>>1);
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for(y=0;y<h;y++){
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memcpy(d,s,w);
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s+=stride[1];
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d+=(yuv.w>>1);
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}
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// V
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s=srcimg[2]+(s_pos_x/2)+(s_pos_y/2)*stride[2];
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d=yuv.v+x0+y0*(yuv.w>>1);
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for(y=0;y<h;y++){
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memcpy(d,s,w);
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s+=stride[2];
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d+=(yuv.w>>1);
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}
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#endif
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return 0;
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}
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static uint32_t
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query_format(uint32_t format)
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{
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if(format==IMGFMT_MPEGPES) return 1|256;
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#ifdef USE_LIBFAME
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if(format==IMGFMT_YV12) return 1|256;
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#endif
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|
return 0;
|
|
}
|
|
|
|
static void
|
|
uninit(void)
|
|
{
|
|
#ifdef USE_LIBFAME
|
|
if(picture_buf){ // YV12 only:
|
|
free(outbuf);
|
|
free(picture_buf);
|
|
fame_close(ctx); ctx=NULL;
|
|
}
|
|
#endif
|
|
if(vo_mpegpes_fd>=0){ close(vo_mpegpes_fd);vo_mpegpes_fd=-1;}
|
|
if(vo_mpegpes_fd2>=0){ close(vo_mpegpes_fd2);vo_mpegpes_fd2=-1;}
|
|
}
|
|
|
|
|
|
static void check_events(void)
|
|
{
|
|
}
|
|
|
|
static uint32_t preinit(const char *arg)
|
|
{
|
|
if(arg)
|
|
{
|
|
printf("vo_mpegpes: Unknown subdevice: %s\n",arg);
|
|
return ENOSYS;
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
static uint32_t control(uint32_t request, void *data, ...)
|
|
{
|
|
switch (request) {
|
|
case VOCTRL_QUERY_FORMAT:
|
|
return query_format(*((uint32_t*)data));
|
|
}
|
|
return VO_NOTIMPL;
|
|
}
|