mirror of
https://github.com/mpv-player/mpv
synced 2024-10-30 04:46:41 +01:00
6fe158d7e7
lacking memalign(), e.g. Win32. git-svn-id: svn://svn.mplayerhq.hu/mplayer/trunk@31045 b3059339-0415-0410-9bf9-f77b7e298cf2
749 lines
24 KiB
C
749 lines
24 KiB
C
/*
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* This file is part of MPlayer.
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*
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* MPlayer is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* MPlayer is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along
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* with MPlayer; if not, write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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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 "config.h"
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#if HAVE_MALLOC_H
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#include <malloc.h>
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#endif
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#ifdef MP_DEBUG
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#include <assert.h>
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#endif
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#include "mp_msg.h"
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#include "help_mp.h"
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#include "m_option.h"
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#include "m_struct.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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#include "libvo/fastmemcpy.h"
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#include "libavutil/mem.h"
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extern const vf_info_t vf_info_vo;
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extern const vf_info_t vf_info_rectangle;
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extern const vf_info_t vf_info_bmovl;
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extern const vf_info_t vf_info_crop;
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extern const vf_info_t vf_info_expand;
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extern const vf_info_t vf_info_pp;
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extern const vf_info_t vf_info_scale;
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extern const vf_info_t vf_info_format;
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extern const vf_info_t vf_info_noformat;
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extern const vf_info_t vf_info_yuy2;
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extern const vf_info_t vf_info_flip;
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extern const vf_info_t vf_info_rgb2bgr;
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extern const vf_info_t vf_info_rotate;
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extern const vf_info_t vf_info_mirror;
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extern const vf_info_t vf_info_palette;
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extern const vf_info_t vf_info_lavc;
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extern const vf_info_t vf_info_zrmjpeg;
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extern const vf_info_t vf_info_dvbscale;
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extern const vf_info_t vf_info_cropdetect;
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extern const vf_info_t vf_info_test;
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extern const vf_info_t vf_info_noise;
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extern const vf_info_t vf_info_yvu9;
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extern const vf_info_t vf_info_lavcdeint;
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extern const vf_info_t vf_info_eq;
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extern const vf_info_t vf_info_eq2;
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extern const vf_info_t vf_info_gradfun;
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extern const vf_info_t vf_info_halfpack;
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extern const vf_info_t vf_info_dint;
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extern const vf_info_t vf_info_1bpp;
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extern const vf_info_t vf_info_2xsai;
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extern const vf_info_t vf_info_unsharp;
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extern const vf_info_t vf_info_swapuv;
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extern const vf_info_t vf_info_il;
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extern const vf_info_t vf_info_fil;
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extern const vf_info_t vf_info_boxblur;
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extern const vf_info_t vf_info_sab;
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extern const vf_info_t vf_info_smartblur;
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extern const vf_info_t vf_info_perspective;
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extern const vf_info_t vf_info_down3dright;
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extern const vf_info_t vf_info_field;
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extern const vf_info_t vf_info_denoise3d;
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extern const vf_info_t vf_info_hqdn3d;
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extern const vf_info_t vf_info_detc;
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extern const vf_info_t vf_info_telecine;
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extern const vf_info_t vf_info_tinterlace;
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extern const vf_info_t vf_info_tfields;
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extern const vf_info_t vf_info_ivtc;
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extern const vf_info_t vf_info_ilpack;
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extern const vf_info_t vf_info_dsize;
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extern const vf_info_t vf_info_decimate;
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extern const vf_info_t vf_info_softpulldown;
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extern const vf_info_t vf_info_pullup;
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extern const vf_info_t vf_info_filmdint;
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extern const vf_info_t vf_info_framestep;
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extern const vf_info_t vf_info_tile;
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extern const vf_info_t vf_info_delogo;
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extern const vf_info_t vf_info_remove_logo;
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extern const vf_info_t vf_info_hue;
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extern const vf_info_t vf_info_spp;
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extern const vf_info_t vf_info_uspp;
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extern const vf_info_t vf_info_fspp;
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extern const vf_info_t vf_info_pp7;
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extern const vf_info_t vf_info_yuvcsp;
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extern const vf_info_t vf_info_kerndeint;
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extern const vf_info_t vf_info_rgbtest;
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extern const vf_info_t vf_info_qp;
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extern const vf_info_t vf_info_phase;
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extern const vf_info_t vf_info_divtc;
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extern const vf_info_t vf_info_harddup;
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extern const vf_info_t vf_info_softskip;
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extern const vf_info_t vf_info_screenshot;
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extern const vf_info_t vf_info_ass;
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extern const vf_info_t vf_info_mcdeint;
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extern const vf_info_t vf_info_yadif;
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extern const vf_info_t vf_info_blackframe;
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extern const vf_info_t vf_info_geq;
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extern const vf_info_t vf_info_ow;
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extern const vf_info_t vf_info_fixpts;
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// list of available filters:
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static const vf_info_t* const filter_list[]={
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&vf_info_rectangle,
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#ifdef HAVE_POSIX_SELECT
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&vf_info_bmovl,
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#endif
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&vf_info_crop,
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&vf_info_expand,
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#ifdef CONFIG_LIBPOSTPROC
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&vf_info_pp,
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#endif
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&vf_info_scale,
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// &vf_info_osd,
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&vf_info_vo,
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&vf_info_format,
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&vf_info_noformat,
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&vf_info_yuy2,
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&vf_info_flip,
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&vf_info_rgb2bgr,
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&vf_info_rotate,
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&vf_info_mirror,
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&vf_info_palette,
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&vf_info_pp7,
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#ifdef CONFIG_LIBAVCODEC
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&vf_info_lavc,
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&vf_info_lavcdeint,
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&vf_info_screenshot,
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#endif
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#ifdef CONFIG_ZR
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&vf_info_zrmjpeg,
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#endif
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&vf_info_dvbscale,
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&vf_info_cropdetect,
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&vf_info_test,
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&vf_info_noise,
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&vf_info_yvu9,
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&vf_info_eq,
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&vf_info_eq2,
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&vf_info_gradfun,
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&vf_info_halfpack,
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&vf_info_dint,
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&vf_info_1bpp,
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&vf_info_2xsai,
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&vf_info_unsharp,
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&vf_info_swapuv,
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&vf_info_il,
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&vf_info_fil,
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&vf_info_boxblur,
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&vf_info_sab,
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&vf_info_smartblur,
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&vf_info_perspective,
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&vf_info_down3dright,
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&vf_info_field,
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&vf_info_denoise3d,
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&vf_info_hqdn3d,
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&vf_info_detc,
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&vf_info_telecine,
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&vf_info_tinterlace,
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&vf_info_tfields,
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&vf_info_ivtc,
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&vf_info_ilpack,
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&vf_info_dsize,
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&vf_info_decimate,
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&vf_info_softpulldown,
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&vf_info_pullup,
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&vf_info_filmdint,
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&vf_info_framestep,
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&vf_info_tile,
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&vf_info_delogo,
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&vf_info_remove_logo,
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&vf_info_hue,
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#ifdef CONFIG_LIBAVCODEC_A
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&vf_info_spp,
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&vf_info_uspp,
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&vf_info_fspp,
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&vf_info_qp,
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&vf_info_mcdeint,
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&vf_info_geq,
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#endif
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&vf_info_yuvcsp,
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&vf_info_kerndeint,
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&vf_info_rgbtest,
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&vf_info_phase,
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&vf_info_divtc,
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&vf_info_harddup,
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&vf_info_softskip,
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#ifdef CONFIG_ASS
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&vf_info_ass,
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#endif
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&vf_info_yadif,
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&vf_info_blackframe,
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&vf_info_ow,
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&vf_info_fixpts,
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NULL
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};
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// For the vf option
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m_obj_settings_t* vf_settings = NULL;
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const m_obj_list_t vf_obj_list = {
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(void**)filter_list,
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M_ST_OFF(vf_info_t,name),
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M_ST_OFF(vf_info_t,info),
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M_ST_OFF(vf_info_t,opts)
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};
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//============================================================================
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// mpi stuff:
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void vf_mpi_clear(mp_image_t* mpi,int x0,int y0,int w,int h){
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int y;
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if(mpi->flags&MP_IMGFLAG_PLANAR){
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y0&=~1;h+=h&1;
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if(x0==0 && w==mpi->width){
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// full width clear:
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memset(mpi->planes[0]+mpi->stride[0]*y0,0,mpi->stride[0]*h);
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memset(mpi->planes[1]+mpi->stride[1]*(y0>>mpi->chroma_y_shift),128,mpi->stride[1]*(h>>mpi->chroma_y_shift));
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memset(mpi->planes[2]+mpi->stride[2]*(y0>>mpi->chroma_y_shift),128,mpi->stride[2]*(h>>mpi->chroma_y_shift));
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} else
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for(y=y0;y<y0+h;y+=2){
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memset(mpi->planes[0]+x0+mpi->stride[0]*y,0,w);
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memset(mpi->planes[0]+x0+mpi->stride[0]*(y+1),0,w);
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memset(mpi->planes[1]+(x0>>mpi->chroma_x_shift)+mpi->stride[1]*(y>>mpi->chroma_y_shift),128,(w>>mpi->chroma_x_shift));
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memset(mpi->planes[2]+(x0>>mpi->chroma_x_shift)+mpi->stride[2]*(y>>mpi->chroma_y_shift),128,(w>>mpi->chroma_x_shift));
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}
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return;
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}
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// packed:
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for(y=y0;y<y0+h;y++){
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unsigned char* dst=mpi->planes[0]+mpi->stride[0]*y+(mpi->bpp>>3)*x0;
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if(mpi->flags&MP_IMGFLAG_YUV){
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unsigned int* p=(unsigned int*) dst;
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int size=(mpi->bpp>>3)*w/4;
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int i;
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#if HAVE_BIGENDIAN
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#define CLEAR_PACKEDYUV_PATTERN 0x00800080
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#define CLEAR_PACKEDYUV_PATTERN_SWAPPED 0x80008000
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#else
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#define CLEAR_PACKEDYUV_PATTERN 0x80008000
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#define CLEAR_PACKEDYUV_PATTERN_SWAPPED 0x00800080
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#endif
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if(mpi->flags&MP_IMGFLAG_SWAPPED){
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for(i=0;i<size-3;i+=4) p[i]=p[i+1]=p[i+2]=p[i+3]=CLEAR_PACKEDYUV_PATTERN_SWAPPED;
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for(;i<size;i++) p[i]=CLEAR_PACKEDYUV_PATTERN_SWAPPED;
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} else {
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for(i=0;i<size-3;i+=4) p[i]=p[i+1]=p[i+2]=p[i+3]=CLEAR_PACKEDYUV_PATTERN;
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for(;i<size;i++) p[i]=CLEAR_PACKEDYUV_PATTERN;
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}
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} else
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memset(dst,0,(mpi->bpp>>3)*w);
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}
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}
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mp_image_t* vf_get_image(vf_instance_t* vf, unsigned int outfmt, int mp_imgtype, int mp_imgflag, int w, int h){
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mp_image_t* mpi=NULL;
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int w2;
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int number = mp_imgtype >> 16;
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#ifdef MP_DEBUG
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assert(w == -1 || w >= vf->w);
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assert(h == -1 || h >= vf->h);
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assert(vf->w > 0);
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assert(vf->h > 0);
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#endif
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// fprintf(stderr, "get_image: %d:%d, vf: %d:%d\n", w,h,vf->w,vf->h);
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if (w == -1) w = vf->w;
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if (h == -1) h = vf->h;
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w2=(mp_imgflag&MP_IMGFLAG_ACCEPT_ALIGNED_STRIDE)?((w+15)&(~15)):w;
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if(vf->put_image==vf_next_put_image){
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// passthru mode, if the filter uses the fallback/default put_image() code
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return vf_get_image(vf->next,outfmt,mp_imgtype,mp_imgflag,w,h);
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}
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// Note: we should call libvo first to check if it supports direct rendering
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// and if not, then fallback to software buffers:
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switch(mp_imgtype & 0xff){
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case MP_IMGTYPE_EXPORT:
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if(!vf->imgctx.export_images[0]) vf->imgctx.export_images[0]=new_mp_image(w2,h);
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mpi=vf->imgctx.export_images[0];
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break;
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case MP_IMGTYPE_STATIC:
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if(!vf->imgctx.static_images[0]) vf->imgctx.static_images[0]=new_mp_image(w2,h);
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mpi=vf->imgctx.static_images[0];
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break;
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case MP_IMGTYPE_TEMP:
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if(!vf->imgctx.temp_images[0]) vf->imgctx.temp_images[0]=new_mp_image(w2,h);
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mpi=vf->imgctx.temp_images[0];
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break;
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case MP_IMGTYPE_IPB:
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if(!(mp_imgflag&MP_IMGFLAG_READABLE)){ // B frame:
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if(!vf->imgctx.temp_images[0]) vf->imgctx.temp_images[0]=new_mp_image(w2,h);
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mpi=vf->imgctx.temp_images[0];
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break;
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}
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case MP_IMGTYPE_IP:
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if(!vf->imgctx.static_images[vf->imgctx.static_idx]) vf->imgctx.static_images[vf->imgctx.static_idx]=new_mp_image(w2,h);
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mpi=vf->imgctx.static_images[vf->imgctx.static_idx];
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vf->imgctx.static_idx^=1;
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break;
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case MP_IMGTYPE_NUMBERED:
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if (number == -1) {
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int i;
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for (i = 0; i < NUM_NUMBERED_MPI; i++)
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if (!vf->imgctx.numbered_images[i] || !vf->imgctx.numbered_images[i]->usage_count)
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break;
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number = i;
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}
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if (number < 0 || number >= NUM_NUMBERED_MPI) return NULL;
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if (!vf->imgctx.numbered_images[number]) vf->imgctx.numbered_images[number] = new_mp_image(w2,h);
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mpi = vf->imgctx.numbered_images[number];
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mpi->number = number;
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break;
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}
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if(mpi){
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mpi->type=mp_imgtype;
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mpi->w=vf->w; mpi->h=vf->h;
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// keep buffer allocation status & color flags only:
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// mpi->flags&=~(MP_IMGFLAG_PRESERVE|MP_IMGFLAG_READABLE|MP_IMGFLAG_DIRECT);
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mpi->flags&=MP_IMGFLAG_ALLOCATED|MP_IMGFLAG_TYPE_DISPLAYED|MP_IMGFLAGMASK_COLORS;
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// accept restrictions, draw_slice and palette flags only:
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mpi->flags|=mp_imgflag&(MP_IMGFLAGMASK_RESTRICTIONS|MP_IMGFLAG_DRAW_CALLBACK|MP_IMGFLAG_RGB_PALETTE);
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if(!vf->draw_slice) mpi->flags&=~MP_IMGFLAG_DRAW_CALLBACK;
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if(mpi->width!=w2 || mpi->height!=h){
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// printf("vf.c: MPI parameters changed! %dx%d -> %dx%d \n", mpi->width,mpi->height,w2,h);
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if(mpi->flags&MP_IMGFLAG_ALLOCATED){
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if(mpi->width<w2 || mpi->height<h){
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// need to re-allocate buffer memory:
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av_free(mpi->planes[0]);
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mpi->flags&=~MP_IMGFLAG_ALLOCATED;
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mp_msg(MSGT_VFILTER,MSGL_V,"vf.c: have to REALLOCATE buffer memory :(\n");
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}
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// } else {
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} {
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mpi->width=w2; mpi->chroma_width=(w2 + (1<<mpi->chroma_x_shift) - 1)>>mpi->chroma_x_shift;
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mpi->height=h; mpi->chroma_height=(h + (1<<mpi->chroma_y_shift) - 1)>>mpi->chroma_y_shift;
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}
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}
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if(!mpi->bpp) mp_image_setfmt(mpi,outfmt);
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if(!(mpi->flags&MP_IMGFLAG_ALLOCATED) && mpi->type>MP_IMGTYPE_EXPORT){
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// check libvo first!
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if(vf->get_image) vf->get_image(vf,mpi);
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if(!(mpi->flags&MP_IMGFLAG_DIRECT)){
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// non-direct and not yet allocated image. allocate it!
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if (!mpi->bpp) { // no way we can allocate this
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mp_msg(MSGT_DECVIDEO, MSGL_FATAL,
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"vf_get_image: Tried to allocate a format that can not be allocated!\n");
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return NULL;
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}
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// check if codec prefer aligned stride:
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if(mp_imgflag&MP_IMGFLAG_PREFER_ALIGNED_STRIDE){
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int align=(mpi->flags&MP_IMGFLAG_PLANAR &&
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mpi->flags&MP_IMGFLAG_YUV) ?
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(8<<mpi->chroma_x_shift)-1 : 15; // -- maybe FIXME
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w2=((w+align)&(~align));
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if(mpi->width!=w2){
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// we have to change width... check if we CAN co it:
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int flags=vf->query_format(vf,outfmt); // should not fail
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if(!(flags&3)) mp_msg(MSGT_DECVIDEO,MSGL_WARN,"??? vf_get_image{vf->query_format(outfmt)} failed!\n");
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// printf("query -> 0x%X \n",flags);
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if(flags&VFCAP_ACCEPT_STRIDE){
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mpi->width=w2;
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mpi->chroma_width=(w2 + (1<<mpi->chroma_x_shift) - 1)>>mpi->chroma_x_shift;
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}
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}
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}
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mp_image_alloc_planes(mpi);
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// printf("clearing img!\n");
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vf_mpi_clear(mpi,0,0,mpi->width,mpi->height);
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}
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}
|
|
if(mpi->flags&MP_IMGFLAG_DRAW_CALLBACK)
|
|
if(vf->start_slice) vf->start_slice(vf,mpi);
|
|
if(!(mpi->flags&MP_IMGFLAG_TYPE_DISPLAYED)){
|
|
mp_msg(MSGT_DECVIDEO,MSGL_V,"*** [%s] %s%s mp_image_t, %dx%dx%dbpp %s %s, %d bytes\n",
|
|
vf->info->name,
|
|
(mpi->type==MP_IMGTYPE_EXPORT)?"Exporting":
|
|
((mpi->flags&MP_IMGFLAG_DIRECT)?"Direct Rendering":"Allocating"),
|
|
(mpi->flags&MP_IMGFLAG_DRAW_CALLBACK)?" (slices)":"",
|
|
mpi->width,mpi->height,mpi->bpp,
|
|
(mpi->flags&MP_IMGFLAG_YUV)?"YUV":((mpi->flags&MP_IMGFLAG_SWAPPED)?"BGR":"RGB"),
|
|
(mpi->flags&MP_IMGFLAG_PLANAR)?"planar":"packed",
|
|
mpi->bpp*mpi->width*mpi->height/8);
|
|
mp_msg(MSGT_DECVIDEO,MSGL_DBG2,"(imgfmt: %x, planes: %p,%p,%p strides: %d,%d,%d, chroma: %dx%d, shift: h:%d,v:%d)\n",
|
|
mpi->imgfmt, mpi->planes[0], mpi->planes[1], mpi->planes[2],
|
|
mpi->stride[0], mpi->stride[1], mpi->stride[2],
|
|
mpi->chroma_width, mpi->chroma_height, mpi->chroma_x_shift, mpi->chroma_y_shift);
|
|
mpi->flags|=MP_IMGFLAG_TYPE_DISPLAYED;
|
|
}
|
|
|
|
mpi->qscale = NULL;
|
|
}
|
|
mpi->usage_count++;
|
|
// printf("\rVF_MPI: %p %p %p %d %d %d \n",
|
|
// mpi->planes[0],mpi->planes[1],mpi->planes[2],
|
|
// mpi->stride[0],mpi->stride[1],mpi->stride[2]);
|
|
return mpi;
|
|
}
|
|
|
|
//============================================================================
|
|
|
|
// By default vf doesn't accept MPEGPES
|
|
static int vf_default_query_format(struct vf_instance *vf, unsigned int fmt){
|
|
if(fmt == IMGFMT_MPEGPES) return 0;
|
|
return vf_next_query_format(vf,fmt);
|
|
}
|
|
|
|
vf_instance_t* vf_open_plugin(const vf_info_t* const* filter_list, vf_instance_t* next, const char *name, char **args){
|
|
vf_instance_t* vf;
|
|
int i;
|
|
for(i=0;;i++){
|
|
if(!filter_list[i]){
|
|
mp_msg(MSGT_VFILTER,MSGL_ERR,MSGTR_CouldNotFindVideoFilter,name);
|
|
return NULL; // no such filter!
|
|
}
|
|
if(!strcmp(filter_list[i]->name,name)) break;
|
|
}
|
|
vf=malloc(sizeof(vf_instance_t));
|
|
memset(vf,0,sizeof(vf_instance_t));
|
|
vf->info=filter_list[i];
|
|
vf->next=next;
|
|
vf->config=vf_next_config;
|
|
vf->control=vf_next_control;
|
|
vf->query_format=vf_default_query_format;
|
|
vf->put_image=vf_next_put_image;
|
|
vf->default_caps=VFCAP_ACCEPT_STRIDE;
|
|
vf->default_reqs=0;
|
|
if(vf->info->opts) { // vf_vo get some special argument
|
|
const m_struct_t* st = vf->info->opts;
|
|
void* vf_priv = m_struct_alloc(st);
|
|
int n;
|
|
for(n = 0 ; args && args[2*n] ; n++)
|
|
m_struct_set(st,vf_priv,args[2*n],args[2*n+1]);
|
|
vf->priv = vf_priv;
|
|
args = NULL;
|
|
} else // Otherwise we should have the '_oldargs_'
|
|
if(args && !strcmp(args[0],"_oldargs_"))
|
|
args = (char**)args[1];
|
|
else
|
|
args = NULL;
|
|
if(vf->info->vf_open(vf,(char*)args)>0) return vf; // Success!
|
|
free(vf);
|
|
mp_msg(MSGT_VFILTER,MSGL_ERR,MSGTR_CouldNotOpenVideoFilter,name);
|
|
return NULL;
|
|
}
|
|
|
|
vf_instance_t* vf_open_filter(vf_instance_t* next, const char *name, char **args){
|
|
if(args && strcmp(args[0],"_oldargs_")) {
|
|
int i,l = 0;
|
|
for(i = 0 ; args && args[2*i] ; i++)
|
|
l += 1 + strlen(args[2*i]) + 1 + strlen(args[2*i+1]);
|
|
l += strlen(name);
|
|
{
|
|
char str[l+1];
|
|
char* p = str;
|
|
p += sprintf(str,"%s",name);
|
|
for(i = 0 ; args && args[2*i] ; i++)
|
|
p += sprintf(p," %s=%s",args[2*i],args[2*i+1]);
|
|
mp_msg(MSGT_VFILTER,MSGL_INFO,MSGTR_OpeningVideoFilter "[%s]\n",str);
|
|
}
|
|
} else if(strcmp(name,"vo")) {
|
|
if(args && strcmp(args[0],"_oldargs_") == 0)
|
|
mp_msg(MSGT_VFILTER,MSGL_INFO,MSGTR_OpeningVideoFilter
|
|
"[%s=%s]\n", name,args[1]);
|
|
else
|
|
mp_msg(MSGT_VFILTER,MSGL_INFO,MSGTR_OpeningVideoFilter
|
|
"[%s]\n", name);
|
|
}
|
|
return vf_open_plugin(filter_list,next,name,args);
|
|
}
|
|
|
|
/**
|
|
* \brief adds a filter before the last one (which should be the vo filter).
|
|
* \param vf start of the filter chain.
|
|
* \param name name of the filter to add.
|
|
* \param args argument list for the filter.
|
|
* \return pointer to the filter instance that was created.
|
|
*/
|
|
vf_instance_t* vf_add_before_vo(vf_instance_t **vf, char *name, char **args) {
|
|
vf_instance_t *vo, *prev = NULL, *new;
|
|
// Find the last filter (should be vf_vo)
|
|
for (vo = *vf; vo->next; vo = vo->next)
|
|
prev = vo;
|
|
new = vf_open_filter(vo, name, args);
|
|
if (prev)
|
|
prev->next = new;
|
|
else
|
|
*vf = new;
|
|
return new;
|
|
}
|
|
|
|
//============================================================================
|
|
|
|
unsigned int vf_match_csp(vf_instance_t** vfp,const unsigned int* list,unsigned int preferred){
|
|
vf_instance_t* vf=*vfp;
|
|
const unsigned int* p;
|
|
unsigned int best=0;
|
|
int ret;
|
|
if((p=list)) while(*p){
|
|
ret=vf->query_format(vf,*p);
|
|
mp_msg(MSGT_VFILTER,MSGL_V,"[%s] query(%s) -> %d\n",vf->info->name,vo_format_name(*p),ret&3);
|
|
if(ret&2){ best=*p; break;} // no conversion -> bingo!
|
|
if(ret&1 && !best) best=*p; // best with conversion
|
|
++p;
|
|
}
|
|
if(best) return best; // bingo, they have common csp!
|
|
// ok, then try with scale:
|
|
if(vf->info == &vf_info_scale) return 0; // avoid infinite recursion!
|
|
vf=vf_open_filter(vf,"scale",NULL);
|
|
if(!vf) return 0; // failed to init "scale"
|
|
// try the preferred csp first:
|
|
if(preferred && vf->query_format(vf,preferred)) best=preferred; else
|
|
// try the list again, now with "scaler" :
|
|
if((p=list)) while(*p){
|
|
ret=vf->query_format(vf,*p);
|
|
mp_msg(MSGT_VFILTER,MSGL_V,"[%s] query(%s) -> %d\n",vf->info->name,vo_format_name(*p),ret&3);
|
|
if(ret&2){ best=*p; break;} // no conversion -> bingo!
|
|
if(ret&1 && !best) best=*p; // best with conversion
|
|
++p;
|
|
}
|
|
if(best) *vfp=vf; // else uninit vf !FIXME!
|
|
return best;
|
|
}
|
|
|
|
void vf_clone_mpi_attributes(mp_image_t* dst, mp_image_t* src){
|
|
dst->pict_type= src->pict_type;
|
|
dst->fields = src->fields;
|
|
dst->qscale_type= src->qscale_type;
|
|
if(dst->width == src->width && dst->height == src->height){
|
|
dst->qstride= src->qstride;
|
|
dst->qscale= src->qscale;
|
|
}
|
|
}
|
|
|
|
void vf_queue_frame(vf_instance_t *vf, int (*func)(vf_instance_t *))
|
|
{
|
|
vf->continue_buffered_image = func;
|
|
}
|
|
|
|
// Output the next buffered image (if any) from the filter chain.
|
|
// The queue could be kept as a simple stack/list instead avoiding the
|
|
// looping here, but there's currently no good context variable where
|
|
// that could be stored so this was easier to implement.
|
|
|
|
int vf_output_queued_frame(vf_instance_t *vf)
|
|
{
|
|
while (1) {
|
|
int ret;
|
|
vf_instance_t *current;
|
|
vf_instance_t *last=NULL;
|
|
int (*tmp)(vf_instance_t *);
|
|
for (current = vf; current; current = current->next)
|
|
if (current->continue_buffered_image)
|
|
last = current;
|
|
if (!last)
|
|
return 0;
|
|
tmp = last->continue_buffered_image;
|
|
last->continue_buffered_image = NULL;
|
|
ret = tmp(last);
|
|
if (ret > 0) {
|
|
vf->control(vf, VFCTRL_DRAW_OSD, NULL);
|
|
#ifdef CONFIG_ASS
|
|
vf->control(vf, VFCTRL_DRAW_EOSD, NULL);
|
|
#endif
|
|
}
|
|
if (ret)
|
|
return ret;
|
|
}
|
|
}
|
|
|
|
|
|
/**
|
|
* \brief Video config() function wrapper
|
|
*
|
|
* Blocks config() calls with different size or format for filters
|
|
* with VFCAP_CONSTANT
|
|
*
|
|
* First call is redirected to vf->config.
|
|
*
|
|
* In following calls, it verifies that the configuration parameters
|
|
* are unchanged, and returns either success or error.
|
|
*
|
|
*/
|
|
int vf_config_wrapper(struct vf_instance *vf,
|
|
int width, int height, int d_width, int d_height,
|
|
unsigned int flags, unsigned int outfmt)
|
|
{
|
|
int r;
|
|
if ((vf->default_caps&VFCAP_CONSTANT) && vf->fmt.have_configured) {
|
|
if ((vf->fmt.orig_width != width)
|
|
|| (vf->fmt.orig_height != height)
|
|
|| (vf->fmt.orig_fmt != outfmt)) {
|
|
mp_msg(MSGT_VFILTER,MSGL_ERR,MSGTR_ResolutionDoesntMatch);
|
|
return 0;
|
|
}
|
|
return 1;
|
|
}
|
|
vf->fmt.have_configured = 1;
|
|
vf->fmt.orig_height = height;
|
|
vf->fmt.orig_width = width;
|
|
vf->fmt.orig_fmt = outfmt;
|
|
r = vf->config(vf, width, height, d_width, d_height, flags, outfmt);
|
|
if (!r) vf->fmt.have_configured = 0;
|
|
return r;
|
|
}
|
|
|
|
int vf_next_config(struct vf_instance *vf,
|
|
int width, int height, int d_width, int d_height,
|
|
unsigned int voflags, unsigned int outfmt){
|
|
int miss;
|
|
int flags=vf->next->query_format(vf->next,outfmt);
|
|
if(!flags){
|
|
// hmm. colorspace mismatch!!!
|
|
// let's insert the 'scale' filter, it does the job for us:
|
|
vf_instance_t* vf2;
|
|
if(vf->next->info==&vf_info_scale) return 0; // scale->scale
|
|
vf2=vf_open_filter(vf->next,"scale",NULL);
|
|
if(!vf2) return 0; // shouldn't happen!
|
|
vf->next=vf2;
|
|
flags=vf->next->query_format(vf->next,outfmt);
|
|
if(!flags){
|
|
mp_msg(MSGT_VFILTER,MSGL_ERR,MSGTR_CannotFindColorspace);
|
|
return 0; // FAIL
|
|
}
|
|
}
|
|
mp_msg(MSGT_VFILTER,MSGL_V,"REQ: flags=0x%X req=0x%X \n",flags,vf->default_reqs);
|
|
miss=vf->default_reqs - (flags&vf->default_reqs);
|
|
if(miss&VFCAP_ACCEPT_STRIDE){
|
|
// vf requires stride support but vf->next doesn't support it!
|
|
// let's insert the 'expand' filter, it does the job for us:
|
|
vf_instance_t* vf2=vf_open_filter(vf->next,"expand",NULL);
|
|
if(!vf2) return 0; // shouldn't happen!
|
|
vf->next=vf2;
|
|
}
|
|
vf->next->w = width; vf->next->h = height;
|
|
return vf_config_wrapper(vf->next,width,height,d_width,d_height,voflags,outfmt);
|
|
}
|
|
|
|
int vf_next_control(struct vf_instance *vf, int request, void* data){
|
|
return vf->next->control(vf->next,request,data);
|
|
}
|
|
|
|
void vf_extra_flip(struct vf_instance *vf) {
|
|
vf_next_control(vf, VFCTRL_DRAW_OSD, NULL);
|
|
#ifdef CONFIG_ASS
|
|
vf_next_control(vf, VFCTRL_DRAW_EOSD, NULL);
|
|
#endif
|
|
vf_next_control(vf, VFCTRL_FLIP_PAGE, NULL);
|
|
}
|
|
|
|
int vf_next_query_format(struct vf_instance *vf, unsigned int fmt){
|
|
int flags=vf->next->query_format(vf->next,fmt);
|
|
if(flags) flags|=vf->default_caps;
|
|
return flags;
|
|
}
|
|
|
|
int vf_next_put_image(struct vf_instance *vf,mp_image_t *mpi, double pts){
|
|
return vf->next->put_image(vf->next,mpi, pts);
|
|
}
|
|
|
|
void vf_next_draw_slice(struct vf_instance *vf,unsigned char** src, int * stride,int w, int h, int x, int y){
|
|
if (vf->next->draw_slice) {
|
|
vf->next->draw_slice(vf->next,src,stride,w,h,x,y);
|
|
return;
|
|
}
|
|
if (!vf->dmpi) {
|
|
mp_msg(MSGT_VFILTER,MSGL_ERR,"draw_slice: dmpi not stored by vf_%s\n", vf->info->name);
|
|
return;
|
|
}
|
|
if (!(vf->dmpi->flags & MP_IMGFLAG_PLANAR)) {
|
|
memcpy_pic(vf->dmpi->planes[0]+y*vf->dmpi->stride[0]+vf->dmpi->bpp/8*x,
|
|
src[0], vf->dmpi->bpp/8*w, h, vf->dmpi->stride[0], stride[0]);
|
|
return;
|
|
}
|
|
memcpy_pic(vf->dmpi->planes[0]+y*vf->dmpi->stride[0]+x, src[0],
|
|
w, h, vf->dmpi->stride[0], stride[0]);
|
|
memcpy_pic(vf->dmpi->planes[1]+(y>>vf->dmpi->chroma_y_shift)*vf->dmpi->stride[1]+(x>>vf->dmpi->chroma_x_shift),
|
|
src[1], w>>vf->dmpi->chroma_x_shift, h>>vf->dmpi->chroma_y_shift, vf->dmpi->stride[1], stride[1]);
|
|
memcpy_pic(vf->dmpi->planes[2]+(y>>vf->dmpi->chroma_y_shift)*vf->dmpi->stride[2]+(x>>vf->dmpi->chroma_x_shift),
|
|
src[2], w>>vf->dmpi->chroma_x_shift, h>>vf->dmpi->chroma_y_shift, vf->dmpi->stride[2], stride[2]);
|
|
}
|
|
|
|
//============================================================================
|
|
|
|
vf_instance_t* append_filters(vf_instance_t* last){
|
|
vf_instance_t* vf;
|
|
int i;
|
|
|
|
if(vf_settings) {
|
|
// We want to add them in the 'right order'
|
|
for(i = 0 ; vf_settings[i].name ; i++)
|
|
/* NOP */;
|
|
for(i-- ; i >= 0 ; i--) {
|
|
//printf("Open filter %s\n",vf_settings[i].name);
|
|
vf = vf_open_filter(last,vf_settings[i].name,vf_settings[i].attribs);
|
|
if(vf) last=vf;
|
|
}
|
|
}
|
|
return last;
|
|
}
|
|
|
|
//============================================================================
|
|
|
|
void vf_uninit_filter(vf_instance_t* vf){
|
|
if(vf->uninit) vf->uninit(vf);
|
|
free_mp_image(vf->imgctx.static_images[0]);
|
|
free_mp_image(vf->imgctx.static_images[1]);
|
|
free_mp_image(vf->imgctx.temp_images[0]);
|
|
free_mp_image(vf->imgctx.export_images[0]);
|
|
free(vf);
|
|
}
|
|
|
|
void vf_uninit_filter_chain(vf_instance_t* vf){
|
|
while(vf){
|
|
vf_instance_t* next=vf->next;
|
|
vf_uninit_filter(vf);
|
|
vf=next;
|
|
}
|
|
}
|