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https://github.com/mpv-player/mpv
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0af5335383
This uses a different method to piece segments together. The old approach basically changes to a new file (with a new start offset) any time a segment ends. This meant waiting for audio/video end on segment end, and then changing to the new segment all at once. It had a very weird impact on the playback core, and some things (like truly gapless segment transitions, or frame backstepping) just didn't work. The new approach adds the demux_timeline pseudo-demuxer, which presents an uniform packet stream from the many segments. This is pretty similar to how ordered chapters are implemented everywhere else. It also reminds of the FFmpeg concat pseudo-demuxer. The "pure" version of this approach doesn't work though. Segments can actually have different codec configurations (different extradata), and subtitles are most likely broken too. (Subtitles have multiple corner cases which break the pure stream-concatenation approach completely.) To counter this, we do two things: - Reinit the decoder with each segment. We go as far as allowing concatenating files with completely different codecs for the sake of EDL (which also uses the timeline infrastructure). A "lighter" approach would try to make use of decoder mechanism to update e.g. the extradata, but that seems fragile. - Clip decoded data to segment boundaries. This is equivalent to normal playback core mechanisms like hr-seek, but now the playback core doesn't need to care about these things. These two mechanisms are equivalent to what happened in the old implementation, except they don't happen in the playback core anymore. In other words, the playback core is completely relieved from timeline implementation details. (Which honestly is exactly what I'm trying to do here. I don't think ordered chapter behavior deserves improvement, even if it's bad - but I want to get it out from the playback core.) There is code duplication between audio and video decoder common code. This is awful and could be shareable - but this will happen later. Note that the audio path has some code to clip audio frames for the purpose of codec preroll/gapless handling, but it's not shared as sharing it would cause more pain than it would help.
309 lines
10 KiB
C
309 lines
10 KiB
C
/*
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* This file is part of mpv.
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*
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* mpv 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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* mpv 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 mpv. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef MPLAYER_DEMUXER_H
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#define MPLAYER_DEMUXER_H
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#include <sys/types.h>
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#include <stdint.h>
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#include <stdlib.h>
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#include <string.h>
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#include <stdbool.h>
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#include "misc/bstr.h"
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#include "common/common.h"
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#include "common/tags.h"
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#include "packet.h"
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#include "stheader.h"
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// DEMUXER control commands/answers
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#define DEMUXER_CTRL_NOTIMPL -1
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#define DEMUXER_CTRL_DONTKNOW 0
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#define DEMUXER_CTRL_OK 1
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enum demux_ctrl {
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DEMUXER_CTRL_SWITCHED_TRACKS = 1,
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DEMUXER_CTRL_GET_TIME_LENGTH,
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DEMUXER_CTRL_RESYNC,
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DEMUXER_CTRL_IDENTIFY_PROGRAM,
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DEMUXER_CTRL_STREAM_CTRL,
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DEMUXER_CTRL_GET_READER_STATE,
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DEMUXER_CTRL_GET_BITRATE_STATS, // double[STREAM_TYPE_COUNT]
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};
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struct demux_ctrl_reader_state {
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bool eof, underrun, idle;
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double ts_range[2]; // start, end
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double ts_duration;
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};
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struct demux_ctrl_stream_ctrl {
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int ctrl;
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void *arg;
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int res;
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};
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#define SEEK_ABSOLUTE (1 << 0) // argument is a timestamp
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#define SEEK_FACTOR (1 << 1) // argument is in range [0,1]
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#define SEEK_FORWARD (1 << 2) // prefer later time if not exact
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#define SEEK_BACKWARD (1 << 3) // prefer earlier time if not exact
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#define SEEK_HR (1 << 5) // hr-seek (this is a weak hint only)
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// Strictness of the demuxer open format check.
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// demux.c will try by default: NORMAL, UNSAFE (in this order)
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// Using "-demuxer format" will try REQUEST
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// Using "-demuxer +format" will try FORCE
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// REQUEST can be used as special value for raw demuxers which have no file
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// header check; then they should fail if check!=FORCE && check!=REQUEST.
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//
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// In general, the list is sorted from weakest check to normal check.
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// You can use relation operators to compare the check level.
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enum demux_check {
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DEMUX_CHECK_FORCE, // force format if possible
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DEMUX_CHECK_UNSAFE, // risky/fuzzy detection
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DEMUX_CHECK_REQUEST,// requested by user or stream implementation
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DEMUX_CHECK_NORMAL, // normal, safe detection
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};
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enum demux_event {
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DEMUX_EVENT_INIT = 1 << 0, // complete (re-)initialization
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DEMUX_EVENT_STREAMS = 1 << 1, // a stream was added
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DEMUX_EVENT_METADATA = 1 << 2, // metadata or stream_metadata changed
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DEMUX_EVENT_ALL = 0xFFFF,
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};
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struct demuxer;
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struct timeline;
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/**
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* Demuxer description structure
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*/
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typedef struct demuxer_desc {
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const char *name; // Demuxer name, used with -demuxer switch
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const char *desc; // Displayed to user
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// Return 0 on success, otherwise -1
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int (*open)(struct demuxer *demuxer, enum demux_check check);
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// The following functions are all optional
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int (*fill_buffer)(struct demuxer *demuxer); // 0 on EOF, otherwise 1
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void (*close)(struct demuxer *demuxer);
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void (*seek)(struct demuxer *demuxer, double rel_seek_secs, int flags);
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int (*control)(struct demuxer *demuxer, int cmd, void *arg);
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// See timeline.c
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void (*load_timeline)(struct timeline *tl);
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} demuxer_desc_t;
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typedef struct demux_chapter
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{
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int original_index;
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double pts;
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struct mp_tags *metadata;
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uint64_t demuxer_id; // for mapping to internal demuxer data structures
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} demux_chapter_t;
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struct demux_edition {
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uint64_t demuxer_id;
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bool default_edition;
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struct mp_tags *metadata;
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};
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struct matroska_segment_uid {
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unsigned char segment[16];
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uint64_t edition;
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};
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struct matroska_data {
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struct matroska_segment_uid uid;
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// Ordered chapter information if any
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struct matroska_chapter {
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uint64_t start;
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uint64_t end;
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bool has_segment_uid;
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struct matroska_segment_uid uid;
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char *name;
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} *ordered_chapters;
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int num_ordered_chapters;
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};
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struct replaygain_data {
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float track_gain;
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float track_peak;
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float album_gain;
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float album_peak;
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};
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typedef struct demux_attachment
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{
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char *name;
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char *type;
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void *data;
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unsigned int data_size;
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} demux_attachment_t;
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struct demuxer_params {
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char *force_format;
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int matroska_num_wanted_uids;
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struct matroska_segment_uid *matroska_wanted_uids;
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int matroska_wanted_segment;
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bool *matroska_was_valid;
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struct timeline *timeline;
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// -- demux_open_url() only
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int stream_flags;
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bool allow_capture;
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bool disable_cache;
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// result
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bool demuxer_failed;
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};
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typedef struct demuxer {
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const demuxer_desc_t *desc; ///< Demuxer description structure
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const char *filetype; // format name when not identified by demuxer (libavformat)
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int64_t filepos; // input stream current pos.
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char *filename; // same as stream->url
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bool seekable;
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bool partially_seekable; // implies seekable=true
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double start_time;
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// File format allows PTS resets (even if the current file is without)
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bool ts_resets_possible;
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// Send relative seek requests, instead of SEEK_ABSOLUTE or SEEK_FACTOR.
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// This is only done if the user explicitly uses a relative seek.
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bool rel_seeks;
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// Enable fast track switching hacks. This requires from the demuxer:
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// - seeking is somewhat reliable; packet contents must not change
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// - packet position (demux_packet.pos) is set, not negative, unique, and
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// monotonically increasing
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// - seeking leaves packet positions invariant
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bool allow_refresh_seeks;
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// The file data was fully read, and there is no need to keep the stream
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// open, keep the cache active, or to run the demuxer thread. Generating
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// packets is not slow either (unlike e.g. libavdevice pseudo-demuxers).
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// Typical examples: text subtitles, playlists
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bool fully_read;
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// Bitmask of DEMUX_EVENT_*
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int events;
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struct demux_edition *editions;
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int num_editions;
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int edition;
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struct demux_chapter *chapters;
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int num_chapters;
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struct demux_attachment *attachments;
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int num_attachments;
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struct matroska_data matroska_data;
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// If the file is a playlist file
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struct playlist *playlist;
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struct mp_tags *metadata;
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void *priv; // demuxer-specific internal data
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struct MPOpts *opts;
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struct mpv_global *global;
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struct mp_log *log, *glog;
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struct demuxer_params *params;
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struct demux_internal *in; // internal to demux.c
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// Since the demuxer can run in its own thread, and the stream is not
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// thread-safe, only the demuxer is allowed to access the stream directly.
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// You can freely use demux_stream_control() to send STREAM_CTRLs, or use
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// demux_pause() to get exclusive access to the stream.
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struct stream *stream;
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} demuxer_t;
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typedef struct {
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int progid; //program id
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int aid, vid, sid; //audio, video and subtitle id
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} demux_program_t;
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void free_demuxer(struct demuxer *demuxer);
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void free_demuxer_and_stream(struct demuxer *demuxer);
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void demux_add_packet(struct sh_stream *stream, demux_packet_t *dp);
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void demuxer_feed_caption(struct sh_stream *stream, demux_packet_t *dp);
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struct demux_packet *demux_read_packet(struct sh_stream *sh);
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int demux_read_packet_async(struct sh_stream *sh, struct demux_packet **out_pkt);
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bool demux_stream_is_selected(struct sh_stream *stream);
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bool demux_has_packet(struct sh_stream *sh);
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struct demux_packet *demux_read_any_packet(struct demuxer *demuxer);
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struct sh_stream *demux_get_stream(struct demuxer *demuxer, int index);
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int demux_get_num_stream(struct demuxer *demuxer);
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struct sh_stream *demux_alloc_sh_stream(enum stream_type type);
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void demux_add_sh_stream(struct demuxer *demuxer, struct sh_stream *sh);
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struct demuxer *demux_open(struct stream *stream, struct demuxer_params *params,
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struct mpv_global *global);
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struct mp_cancel;
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struct demuxer *demux_open_url(const char *url,
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struct demuxer_params *params,
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struct mp_cancel *cancel,
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struct mpv_global *global);
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void demux_start_thread(struct demuxer *demuxer);
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void demux_stop_thread(struct demuxer *demuxer);
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void demux_set_wakeup_cb(struct demuxer *demuxer, void (*cb)(void *ctx), void *ctx);
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bool demux_cancel_test(struct demuxer *demuxer);
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void demux_flush(struct demuxer *demuxer);
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int demux_seek(struct demuxer *demuxer, double rel_seek_secs, int flags);
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void demux_set_enable_refresh_seeks(struct demuxer *demuxer, bool enabled);
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void demux_set_ts_offset(struct demuxer *demuxer, double offset);
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int demux_control(struct demuxer *demuxer, int cmd, void *arg);
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void demuxer_select_track(struct demuxer *demuxer, struct sh_stream *stream,
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bool selected);
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void demux_set_stream_autoselect(struct demuxer *demuxer, bool autoselect);
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void demuxer_help(struct mp_log *log);
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int demuxer_add_attachment(struct demuxer *demuxer, char *name,
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char *type, void *data, size_t data_size);
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int demuxer_add_chapter(demuxer_t *demuxer, char *name,
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double pts, uint64_t demuxer_id);
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double demuxer_get_time_length(struct demuxer *demuxer);
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int demux_stream_control(demuxer_t *demuxer, int ctrl, void *arg);
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void demux_pause(demuxer_t *demuxer);
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void demux_unpause(demuxer_t *demuxer);
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void demux_changed(demuxer_t *demuxer, int events);
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void demux_update(demuxer_t *demuxer);
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struct sh_stream *demuxer_stream_by_demuxer_id(struct demuxer *d,
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enum stream_type t, int id);
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struct demux_chapter *demux_copy_chapter_data(struct demux_chapter *c, int num);
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bool demux_matroska_uid_cmp(struct matroska_segment_uid *a,
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struct matroska_segment_uid *b);
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const char *stream_type_name(enum stream_type type);
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#endif /* MPLAYER_DEMUXER_H */
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