mirror of
https://github.com/mpv-player/mpv
synced 2025-01-02 21:12:23 +00:00
f569d245ba
Add the "vf" command, which allows changing the video filter chain at runtime. For example, the 'y' key could be bound to toggle deinterlacing by adding 'y vf toggle yadif' to the input.conf. Reconfiguring the video filter chain normally resets the VO, so that it will be "stuck" until a new video frame is rendered. To mitigate this, a seek to the current position is issued when the filter chain is changed. This is done only if playback is paused, because normal playback will show an actual new frame quickly enough. If vdpau hardware decoding is used, filter insertion (whether it fails or not) will break the video for a while. This is because vo_vdpau resets decoding related things on vo_config().
360 lines
11 KiB
C
360 lines
11 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 "config.h"
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#include "core/options.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdbool.h>
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#include <assert.h>
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#include "demux/codec_tags.h"
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#include "core/mp_msg.h"
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#include "osdep/timer.h"
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#include "osdep/shmem.h"
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#include "stream/stream.h"
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#include "demux/demux.h"
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#include "core/codecs.h"
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#include "video/out/vo.h"
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#include "video/csputils.h"
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#include "demux/stheader.h"
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#include "video/decode/vd.h"
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#include "video/filter/vf.h"
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#include "video/decode/dec_video.h"
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// ===================================================================
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#include "core/cpudetect.h"
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int field_dominance = -1;
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int divx_quality = 0;
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int get_video_quality_max(sh_video_t *sh_video)
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{
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vf_instance_t *vf = sh_video->vfilter;
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if (vf) {
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int ret = vf->control(vf, VFCTRL_QUERY_MAX_PP_LEVEL, NULL);
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if (ret > 0) {
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mp_tmsg(MSGT_DECVIDEO, MSGL_INFO, "[PP] Using external postprocessing filter, max q = %d.\n", ret);
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return ret;
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}
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}
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return 0;
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}
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int set_video_colors(sh_video_t *sh_video, const char *item, int value)
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{
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vf_instance_t *vf = sh_video->vfilter;
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vf_equalizer_t data;
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data.item = item;
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data.value = value;
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mp_dbg(MSGT_DECVIDEO, MSGL_V, "set video colors %s=%d \n", item, value);
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if (vf) {
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int ret = vf->control(vf, VFCTRL_SET_EQUALIZER, &data);
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if (ret == CONTROL_TRUE)
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return 1;
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}
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mp_tmsg(MSGT_DECVIDEO, MSGL_V, "Video attribute '%s' is not supported by selected vo.\n",
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item);
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return 0;
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}
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int get_video_colors(sh_video_t *sh_video, const char *item, int *value)
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{
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vf_instance_t *vf = sh_video->vfilter;
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vf_equalizer_t data;
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data.item = item;
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mp_dbg(MSGT_DECVIDEO, MSGL_V, "get video colors %s \n", item);
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if (vf) {
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int ret = vf->control(vf, VFCTRL_GET_EQUALIZER, &data);
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if (ret == CONTROL_TRUE) {
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*value = data.value;
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return 1;
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}
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}
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return 0;
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}
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void get_detected_video_colorspace(struct sh_video *sh, struct mp_csp_details *csp)
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{
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struct MPOpts *opts = sh->opts;
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csp->format = opts->requested_colorspace;
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csp->levels_in = opts->requested_input_range;
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csp->levels_out = opts->requested_output_range;
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if (csp->format == MP_CSP_AUTO)
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csp->format = sh->colorspace;
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if (csp->format == MP_CSP_AUTO)
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csp->format = mp_csp_guess_colorspace(sh->disp_w, sh->disp_h);
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if (csp->levels_in == MP_CSP_LEVELS_AUTO)
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csp->levels_in = sh->color_range;
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if (csp->levels_in == MP_CSP_LEVELS_AUTO)
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csp->levels_in = MP_CSP_LEVELS_TV;
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if (csp->levels_out == MP_CSP_LEVELS_AUTO)
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csp->levels_out = MP_CSP_LEVELS_PC;
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}
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void set_video_colorspace(struct sh_video *sh)
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{
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struct vf_instance *vf = sh->vfilter;
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struct mp_csp_details requested;
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get_detected_video_colorspace(sh, &requested);
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vf->control(vf, VFCTRL_SET_YUV_COLORSPACE, &requested);
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struct mp_csp_details actual = MP_CSP_DETAILS_DEFAULTS;
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vf->control(vf, VFCTRL_GET_YUV_COLORSPACE, &actual);
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int success = actual.format == requested.format
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&& actual.levels_in == requested.levels_in
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&& actual.levels_out == requested.levels_out;
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if (!success)
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mp_tmsg(MSGT_DECVIDEO, MSGL_WARN,
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"Colorspace details not fully supported by selected vo.\n");
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if (actual.format != requested.format
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&& requested.format == MP_CSP_SMPTE_240M) {
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// BT.709 is pretty close, much better than BT.601
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requested.format = MP_CSP_BT_709;
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vf->control(vf, VFCTRL_SET_YUV_COLORSPACE, &requested);
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}
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}
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void resync_video_stream(sh_video_t *sh_video)
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{
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const struct vd_functions *vd = sh_video->vd_driver;
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if (vd)
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vd->control(sh_video, VDCTRL_RESYNC_STREAM, NULL);
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sh_video->prev_codec_reordered_pts = MP_NOPTS_VALUE;
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sh_video->prev_sorted_pts = MP_NOPTS_VALUE;
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}
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void video_reinit_vo(struct sh_video *sh_video)
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{
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sh_video->vd_driver->control(sh_video, VDCTRL_REINIT_VO, NULL);
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}
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int get_current_video_decoder_lag(sh_video_t *sh_video)
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{
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const struct vd_functions *vd = sh_video->vd_driver;
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if (!vd)
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return -1;
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int ret = -1;
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vd->control(sh_video, VDCTRL_QUERY_UNSEEN_FRAMES, &ret);
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return ret;
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}
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void uninit_video(sh_video_t *sh_video)
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{
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if (!sh_video->initialized)
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return;
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mp_tmsg(MSGT_DECVIDEO, MSGL_V, "Uninit video.\n");
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sh_video->vd_driver->uninit(sh_video);
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vf_uninit_filter_chain(sh_video->vfilter);
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sh_video->vfilter = NULL;
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talloc_free(sh_video->gsh->decoder_desc);
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sh_video->gsh->decoder_desc = NULL;
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sh_video->initialized = 0;
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}
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static int init_video_codec(sh_video_t *sh_video, const char *decoder)
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{
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assert(!sh_video->initialized);
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if (!sh_video->vd_driver->init(sh_video, decoder)) {
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mp_tmsg(MSGT_DECVIDEO, MSGL_V, "Video decoder init failed.\n");
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//uninit_video(sh_video);
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return 0;
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}
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sh_video->initialized = 1;
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sh_video->prev_codec_reordered_pts = MP_NOPTS_VALUE;
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sh_video->prev_sorted_pts = MP_NOPTS_VALUE;
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return 1;
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}
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struct mp_decoder_list *mp_video_decoder_list(void)
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{
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struct mp_decoder_list *list = talloc_zero(NULL, struct mp_decoder_list);
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for (int i = 0; mpcodecs_vd_drivers[i] != NULL; i++)
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mpcodecs_vd_drivers[i]->add_decoders(list);
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return list;
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}
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static struct mp_decoder_list *mp_select_video_decoders(const char *codec,
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char *selection)
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{
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struct mp_decoder_list *list = mp_video_decoder_list();
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struct mp_decoder_list *new = mp_select_decoders(list, codec, selection);
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talloc_free(list);
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return new;
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}
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static const struct vd_functions *find_driver(const char *name)
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{
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for (int i = 0; mpcodecs_vd_drivers[i] != NULL; i++) {
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if (strcmp(mpcodecs_vd_drivers[i]->name, name) == 0)
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return mpcodecs_vd_drivers[i];
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}
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return NULL;
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}
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int init_best_video_codec(sh_video_t *sh_video, char* video_decoders)
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{
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assert(!sh_video->initialized);
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struct mp_decoder_entry *decoder = NULL;
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struct mp_decoder_list *list =
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mp_select_video_decoders(sh_video->gsh->codec, video_decoders);
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mp_print_decoders(MSGT_DECVIDEO, MSGL_V, "Codec list:", list);
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for (int n = 0; n < list->num_entries; n++) {
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struct mp_decoder_entry *sel = &list->entries[n];
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const struct vd_functions *driver = find_driver(sel->family);
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if (!driver)
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continue;
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mp_tmsg(MSGT_DECVIDEO, MSGL_V, "Opening video decoder %s:%s\n",
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sel->family, sel->decoder);
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sh_video->vd_driver = driver;
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if (init_video_codec(sh_video, sel->decoder)) {
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decoder = sel;
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break;
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}
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sh_video->vd_driver = NULL;
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mp_tmsg(MSGT_DECVIDEO, MSGL_WARN, "Video decoder init failed for "
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"%s:%s\n", sel->family, sel->decoder);
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}
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if (sh_video->initialized) {
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sh_video->gsh->decoder_desc =
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talloc_asprintf(NULL, "%s [%s:%s]", decoder->desc, decoder->family,
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decoder->decoder);
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mp_msg(MSGT_DECVIDEO, MSGL_INFO, "Selected video codec: %s\n",
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sh_video->gsh->decoder_desc);
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} else {
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mp_msg(MSGT_DECVIDEO, MSGL_ERR,
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"Failed to initialize a video decoder for codec '%s'.\n",
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sh_video->gsh->codec ? sh_video->gsh->codec : "<unknown>");
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}
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talloc_free(list);
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return sh_video->initialized;
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}
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void *decode_video(sh_video_t *sh_video, struct demux_packet *packet,
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int drop_frame, double pts)
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{
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mp_image_t *mpi = NULL;
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struct MPOpts *opts = sh_video->opts;
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if (opts->correct_pts && pts != MP_NOPTS_VALUE) {
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int delay = get_current_video_decoder_lag(sh_video);
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if (delay >= 0) {
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if (delay > sh_video->num_buffered_pts)
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#if 0
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// this is disabled because vd_ffmpeg reports the same lag
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// after seek even when there are no buffered frames,
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// leading to incorrect error messages
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mp_msg(MSGT_DECVIDEO, MSGL_ERR, "Not enough buffered pts\n");
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#else
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;
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#endif
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else
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sh_video->num_buffered_pts = delay;
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}
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if (sh_video->num_buffered_pts ==
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sizeof(sh_video->buffered_pts) / sizeof(double))
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mp_msg(MSGT_DECVIDEO, MSGL_ERR, "Too many buffered pts\n");
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else {
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int i, j;
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for (i = 0; i < sh_video->num_buffered_pts; i++)
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if (sh_video->buffered_pts[i] < pts)
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break;
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for (j = sh_video->num_buffered_pts; j > i; j--)
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sh_video->buffered_pts[j] = sh_video->buffered_pts[j - 1];
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sh_video->buffered_pts[i] = pts;
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sh_video->num_buffered_pts++;
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}
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}
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mpi = sh_video->vd_driver->decode(sh_video, packet, drop_frame, &pts);
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//------------------------ frame decoded. --------------------
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#if HAVE_MMX
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// some codecs are broken, and doesn't restore MMX state :(
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// it happens usually with broken/damaged files.
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if (gCpuCaps.hasMMX) {
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__asm__ volatile("emms\n\t":::"memory");
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}
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#endif
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if (!mpi || drop_frame) {
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talloc_free(mpi);
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return NULL; // error / skipped frame
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}
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if (field_dominance == 0)
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mpi->fields |= MP_IMGFIELD_TOP_FIRST;
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else if (field_dominance == 1)
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mpi->fields &= ~MP_IMGFIELD_TOP_FIRST;
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double prevpts = sh_video->codec_reordered_pts;
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sh_video->prev_codec_reordered_pts = prevpts;
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sh_video->codec_reordered_pts = pts;
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if (prevpts != MP_NOPTS_VALUE && pts <= prevpts
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|| pts == MP_NOPTS_VALUE)
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sh_video->num_reordered_pts_problems++;
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prevpts = sh_video->sorted_pts;
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if (opts->correct_pts) {
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if (sh_video->num_buffered_pts) {
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sh_video->num_buffered_pts--;
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sh_video->sorted_pts =
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sh_video->buffered_pts[sh_video->num_buffered_pts];
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} else {
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mp_msg(MSGT_CPLAYER, MSGL_ERR,
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"No pts value from demuxer to use for frame!\n");
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sh_video->sorted_pts = MP_NOPTS_VALUE;
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}
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}
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pts = sh_video->sorted_pts;
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if (prevpts != MP_NOPTS_VALUE && pts <= prevpts
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|| pts == MP_NOPTS_VALUE)
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sh_video->num_sorted_pts_problems++;
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return mpi;
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}
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