mirror of
https://github.com/mpv-player/mpv
synced 2024-12-16 20:05:07 +00:00
c7944423a3
git-svn-id: svn://svn.mplayerhq.hu/mplayer/trunk@7369 b3059339-0415-0410-9bf9-f77b7e298cf2
318 lines
10 KiB
C
318 lines
10 KiB
C
#define HAVE_XVID_VBR
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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 "../config.h"
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#include "../mp_msg.h"
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#ifdef HAVE_DIVX4ENCORE
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#include "codec-cfg.h"
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#include "stream.h"
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#include "demuxer.h"
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#include "stheader.h"
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#include "aviwrite.h"
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#include "img_format.h"
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#include "mp_image.h"
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#include "vf.h"
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/* About XviD VBR Library, Edouard Gomez (GomGom) said:
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<GomGom> header bytes == frame header bytes :-)
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<GomGom> total bytes = frame bytes == texture + header
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<GomGom> quant = quant returned by xvidcore
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<GomGom> it's possible that xvid lowers or increases the passed quant because of lumimasking
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<GomGom> kblks = blocks coded as intra blocks
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<GomGom> mblks = blocks coded as predicted blocks
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<GomGom> ublks = skipped blocks
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<GomGom> at the moemnt le vbr lib uses total bytes, and quant
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<GomGom> so it's easy to use it with divx5 (wo bframes)
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<klOUg> bframes breaks what assumptions?
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<GomGom> quant estimation for next frame
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<GomGom> because of the bframe quant multiplier given to divx5
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<GomGom> that the vbr lib does not "know"
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*/
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//===========================================================================//
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#include "divx4_vbr.h"
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#ifdef HAVE_XVID_VBR
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#include "xvid_vbr.h"
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#endif
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extern int pass;
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extern char* passtmpfile;
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extern void mencoder_write_chunk(aviwrite_stream_t *s,int len,unsigned int flags);
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#include <encore2.h>
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#ifndef ENCORE_MAJOR_VERSION
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#define ENCORE_MAJOR_VERSION 4000
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#endif
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ENC_PARAM divx4_param;
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int divx4_crispness;
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#ifdef HAVE_XVID_VBR
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static int vbrpass = -1;
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static int vbrdebug = 0;
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#endif
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#include "cfgparser.h"
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struct config divx4opts_conf[]={
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{"br", &divx4_param.bitrate, CONF_TYPE_INT, CONF_RANGE, 4, 24000000, NULL},
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{"rc_period", &divx4_param.rc_period, CONF_TYPE_INT, 0,0,0, NULL},
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{"rc_reaction_period", &divx4_param.rc_reaction_period, CONF_TYPE_INT, 0,0,0, NULL},
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{"rc_reaction_ratio", &divx4_param.rc_reaction_ratio, CONF_TYPE_INT, 0,0,0, NULL},
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{"min_quant", &divx4_param.min_quantizer, CONF_TYPE_INT, CONF_RANGE,0,32, NULL},
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{"max_quant", &divx4_param.max_quantizer, CONF_TYPE_INT, CONF_RANGE,0,32, NULL},
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{"key", &divx4_param.max_key_interval, CONF_TYPE_INT, CONF_MIN,0,0, NULL},
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{"deinterlace", &divx4_param.deinterlace, CONF_TYPE_FLAG, 0,0,1, NULL},
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{"q", &divx4_param.quality, CONF_TYPE_INT, CONF_RANGE, 1, 5, NULL},
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{"crispness", &divx4_crispness, CONF_TYPE_INT, CONF_RANGE,0,100, NULL},
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#if ENCORE_MAJOR_VERSION >= 5010
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{"bidirect", &divx4_param.extensions.use_bidirect, CONF_TYPE_FLAG, 0,0,1, NULL},
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{"obmc", &divx4_param.extensions.obmc, CONF_TYPE_FLAG, 0,0,1, NULL},
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{"data_partitioning", &divx4_param.extensions.data_partitioning, CONF_TYPE_FLAG, 0,0,1, NULL},
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{"qpel", &divx4_param.extensions.quarter_pel, CONF_TYPE_FLAG, 0,0,1, NULL},
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{"intra_frame_threshold", &divx4_param.extensions.intra_frame_threshold, CONF_TYPE_INT, CONF_RANGE,1,100, NULL},
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{"psychovisual", &divx4_param.extensions.psychovisual, CONF_TYPE_FLAG, 0,0,1, NULL},
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{"testing_param", &divx4_param.extensions.testing_param, CONF_TYPE_FLAG, 0,0,1, NULL},
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{"gmc", &divx4_param.extensions.use_gmc, CONF_TYPE_FLAG, 0,0,1, NULL},
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{"interlace_mode", &divx4_param.extensions.interlace_mode, CONF_TYPE_INT, CONF_RANGE,0,2, NULL},
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{"temporal", &divx4_param.extensions.temporal_enable, CONF_TYPE_FLAG, 0,0,1, NULL},
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{"spatial", &divx4_param.extensions.spatial_passes, CONF_TYPE_INT, 0,0,1, NULL},
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{"mv_file", &divx4_param.extensions.mv_file, CONF_TYPE_STRING, 0,0,1, NULL},
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#endif
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#ifdef HAVE_XVID_VBR
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{"vbrpass", &vbrpass, CONF_TYPE_INT, CONF_RANGE, 0, 2, NULL},
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{"vbrdebug", &vbrdebug, CONF_TYPE_INT, CONF_RANGE, 0, 1, NULL},
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#endif
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{"help", "TODO: divx4opts help!\n", CONF_TYPE_PRINT, CONF_NOCFG, 0, 0, NULL},
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{NULL, NULL, 0, 0, 0, 0, NULL}
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};
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struct vf_priv_s {
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aviwrite_stream_t* mux;
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ENC_RESULT enc_result;
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ENC_FRAME enc_frame;
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void* enc_handle;
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#ifdef HAVE_XVID_VBR
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vbr_control_t vbr_state;
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#endif
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};
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#define mux_v (vf->priv->mux)
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static int config(struct vf_instance_s* vf,
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int width, int height, int d_width, int d_height,
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unsigned int flags, unsigned int outfmt){
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mux_v->bih->biWidth=width;
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mux_v->bih->biHeight=height;
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divx4_param.x_dim=width;
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divx4_param.y_dim=height;
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divx4_param.framerate=(float)mux_v->h.dwRate/mux_v->h.dwScale;
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mux_v->bih->biSizeImage=mux_v->bih->biWidth*mux_v->bih->biHeight*3;
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if(!divx4_param.bitrate) divx4_param.bitrate=800000;
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else if(divx4_param.bitrate<=16000) divx4_param.bitrate*=1000;
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if(!divx4_param.quality) divx4_param.quality=5; // the quality of compression ( 1 - fastest, 5 - best )
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// set some usefull defaults:
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if(!divx4_param.min_quantizer) divx4_param.min_quantizer=2;
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if(!divx4_param.max_quantizer) divx4_param.max_quantizer=31;
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if(!divx4_param.rc_period) divx4_param.rc_period=2000;
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if(!divx4_param.rc_reaction_period) divx4_param.rc_reaction_period=10;
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if(!divx4_param.rc_reaction_ratio) divx4_param.rc_reaction_ratio=20;
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#ifdef HAVE_XVID_VBR
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if (vbrpass >= 0) {
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vbrSetDefaults(&vf->priv->vbr_state);
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vf->priv->vbr_state.desired_bitrate = divx4_param.bitrate;
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switch (vbrpass) {
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case 0:
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vf->priv->vbr_state.mode = VBR_MODE_1PASS;
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break;
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case 1:
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vf->priv->vbr_state.mode = VBR_MODE_2PASS_1;
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break;
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case 2:
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vf->priv->vbr_state.mode = VBR_MODE_2PASS_2;
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break;
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default:
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abort();
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}
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vf->priv->vbr_state.debug = vbrdebug;
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if (vbrInit(&vf->priv->vbr_state) == -1)
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abort();
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/* XXX - kludge to workaround some DivX encoder limitations */
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if (vf->priv->vbr_state.mode != VBR_MODE_2PASS_2)
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divx4_param.min_quantizer = divx4_param.max_quantizer = vbrGetQuant(&vf->priv->vbr_state);
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}
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#endif
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divx4_param.handle=NULL;
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encore(NULL,ENC_OPT_INIT,&divx4_param,NULL);
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vf->priv->enc_handle=divx4_param.handle;
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switch(outfmt){
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case IMGFMT_YV12: vf->priv->enc_frame.colorspace=ENC_CSP_YV12; break;
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case IMGFMT_IYUV:
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case IMGFMT_I420: vf->priv->enc_frame.colorspace=ENC_CSP_I420; break;
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case IMGFMT_YUY2: vf->priv->enc_frame.colorspace=ENC_CSP_YUY2; break;
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case IMGFMT_UYVY: vf->priv->enc_frame.colorspace=ENC_CSP_UYVY; break;
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case IMGFMT_RGB24:
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case IMGFMT_BGR24:
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vf->priv->enc_frame.colorspace=ENC_CSP_RGB24; break;
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default:
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mp_msg(MSGT_MENCODER,MSGL_ERR,"divx4: unsupported picture format (%s)!\n",
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vo_format_name(outfmt));
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return 0;
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}
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switch(pass){
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case 1:
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if (VbrControl_init_2pass_vbr_analysis(passtmpfile, divx4_param.quality) == -1){
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mp_msg(MSGT_MENCODER,MSGL_ERR,"2pass failed: filename=%s\n", passtmpfile);
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pass=0;
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}
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break;
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case 2:
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if (VbrControl_init_2pass_vbr_encoding(passtmpfile,
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divx4_param.bitrate,
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divx4_param.framerate,
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divx4_crispness,
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divx4_param.quality) == -1){
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mp_msg(MSGT_MENCODER,MSGL_ERR,"2pass failed: filename=%s\n", passtmpfile);
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pass=0;
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}
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break;
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}
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return 1;
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}
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#ifdef HAVE_XVID_VBR
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static void uninit(struct vf_instance_s* vf){
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if (vbrpass >= 0 && vbrFinish(&vf->priv->vbr_state) == -1)
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abort();
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}
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#endif
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static int control(struct vf_instance_s* vf, int request, void* data){
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return CONTROL_UNKNOWN;
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}
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static int query_format(struct vf_instance_s* vf, unsigned int fmt){
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switch(fmt){
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case IMGFMT_YV12:
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case IMGFMT_IYUV:
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case IMGFMT_I420:
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return 3; // no conversion
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case IMGFMT_YUY2:
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case IMGFMT_UYVY:
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return 1; // conversion
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case IMGFMT_RGB24:
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case IMGFMT_BGR24:
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return 1 | VFCAP_FLIPPED; // conversion+flipped
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}
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return 0;
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}
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static int put_image(struct vf_instance_s* vf, mp_image_t *mpi){
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ENC_RESULT enc_result;
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vf->priv->enc_frame.image=mpi->planes[0];
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vf->priv->enc_frame.bitstream=mux_v->buffer;
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vf->priv->enc_frame.length=mux_v->buffer_size;
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vf->priv->enc_frame.mvs=NULL;
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#ifdef HAVE_XVID_VBR
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if (vbrpass >= 0) {
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int quant = vbrGetQuant(&vf->priv->vbr_state);
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int intra = vbrGetIntra(&vf->priv->vbr_state);
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vf->priv->enc_frame.quant = quant ? quant : 1;
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vf->priv->enc_frame.intra = intra;
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/* XXX - kludge to workaround some DivX encoder limitations:
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only pass 2 needs to call encore with VBR, and then it does
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not report quantizer and intra*/
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if (vf->priv->vbr_state.mode != VBR_MODE_2PASS_2)
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encore(vf->priv->enc_handle, ENC_OPT_ENCODE, &vf->priv->enc_frame, &enc_result);
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else {
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encore(vf->priv->enc_handle, ENC_OPT_ENCODE_VBR, &vf->priv->enc_frame, &enc_result);
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enc_result.quantizer = quant;
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if (intra >= 0)
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enc_result.is_key_frame = intra;
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}
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if (vbrUpdate(&vf->priv->vbr_state, enc_result.quantizer, enc_result.is_key_frame,
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(enc_result.total_bits - enc_result.texture_bits) / 8, enc_result.total_bits / 8,
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0, 0, 0) == -1)
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abort();
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}
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else
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#endif
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if(pass==2){ // handle 2-pass:
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vf->priv->enc_frame.quant = VbrControl_get_quant();
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vf->priv->enc_frame.intra = VbrControl_get_intra();
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encore(vf->priv->enc_handle,ENC_OPT_ENCODE_VBR,&vf->priv->enc_frame,&enc_result);
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VbrControl_update_2pass_vbr_encoding(enc_result.motion_bits,
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enc_result.texture_bits,
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enc_result.total_bits);
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} else {
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vf->priv->enc_frame.quant=0;
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vf->priv->enc_frame.intra=0;
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encore(vf->priv->enc_handle,ENC_OPT_ENCODE,&vf->priv->enc_frame,&enc_result);
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if(pass==1){
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VbrControl_update_2pass_vbr_analysis(enc_result.is_key_frame,
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enc_result.motion_bits,
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enc_result.texture_bits,
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enc_result.total_bits,
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enc_result.quantizer);
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}
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}
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mencoder_write_chunk(mux_v,vf->priv->enc_frame.length,enc_result.is_key_frame?0x10:0);
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return 1;
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}
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//===========================================================================//
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static int vf_open(vf_instance_t *vf, char* args){
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vf->config=config;
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vf->control=control;
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vf->query_format=query_format;
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vf->put_image=put_image;
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#ifdef HAVE_XVID_VBR
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vf->uninit = uninit;
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#endif
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vf->priv=malloc(sizeof(struct vf_priv_s));
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memset(vf->priv,0,sizeof(struct vf_priv_s));
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vf->priv->mux=(aviwrite_stream_t*)args;
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mux_v->bih=malloc(sizeof(BITMAPINFOHEADER));
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mux_v->bih->biSize=sizeof(BITMAPINFOHEADER);
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mux_v->bih->biWidth=0;
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mux_v->bih->biHeight=0;
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mux_v->bih->biPlanes=1;
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mux_v->bih->biBitCount=24;
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#if ENCORE_MAJOR_VERSION >= 5010
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mux_v->bih->biCompression=mmioFOURCC('D','X','5','0');
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#else
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mux_v->bih->biCompression=mmioFOURCC('d','i','v','x');
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#endif
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return 1;
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}
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vf_info_t ve_info_divx4 = {
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"divx4 encoder",
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"divx4",
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"A'rpi",
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"for internal use by mencoder",
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vf_open
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};
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//===========================================================================//
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#endif
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