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https://gitlab.freedesktop.org/gstreamer/gstreamer.git
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567 lines
17 KiB
C
567 lines
17 KiB
C
/* GStreamer
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* Copyright (C) <1999> Erik Walthinsen <omega@cse.ogi.edu>
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Library General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library 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 GNU
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* Library General Public License for more details.
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*
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* You should have received a copy of the GNU Library General Public
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* License along with this library; if not, write to the
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* Free Software Foundation, Inc., 51 Franklin St, Fifth Floor,
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* Boston, MA 02110-1301, USA.
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*/
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#ifndef __GST_QTDEMUX_H__
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#define __GST_QTDEMUX_H__
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#include <gst/gst.h>
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#include <gst/base/gstadapter.h>
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#include <gst/base/gstflowcombiner.h>
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#include <gst/base/gstbytereader.h>
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#include <gst/video/video.h>
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#include "gstisoff.h"
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G_BEGIN_DECLS
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#define GST_TYPE_QTDEMUX \
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(gst_qtdemux_get_type())
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#define GST_QTDEMUX(obj) \
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(G_TYPE_CHECK_INSTANCE_CAST((obj),GST_TYPE_QTDEMUX,GstQTDemux))
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#define GST_QTDEMUX_CLASS(klass) \
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(G_TYPE_CHECK_CLASS_CAST((klass),GST_TYPE_QTDEMUX,GstQTDemuxClass))
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#define GST_IS_QTDEMUX(obj) \
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(G_TYPE_CHECK_INSTANCE_TYPE((obj),GST_TYPE_QTDEMUX))
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#define GST_IS_QTDEMUX_CLASS(klass) \
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(G_TYPE_CHECK_CLASS_TYPE((klass),GST_TYPE_QTDEMUX))
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#define GST_QTDEMUX_CAST(obj) ((GstQTDemux *)(obj))
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/* qtdemux produces these for atoms it cannot parse */
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#define GST_QT_DEMUX_PRIVATE_TAG "private-qt-tag"
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#define GST_QT_DEMUX_CLASSIFICATION_TAG "classification"
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typedef struct _GstQTDemux GstQTDemux;
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typedef struct _GstQTDemuxClass GstQTDemuxClass;
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typedef struct _QtDemuxStream QtDemuxStream;
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typedef struct _QtDemuxSample QtDemuxSample;
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typedef struct _QtDemuxSegment QtDemuxSegment;
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typedef struct _QtDemuxRandomAccessEntry QtDemuxRandomAccessEntry;
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typedef struct _QtDemuxStreamStsdEntry QtDemuxStreamStsdEntry;
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typedef struct _QtDemuxGaplessAudioInfo QtDemuxGaplessAudioInfo;
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typedef GstBuffer * (*QtDemuxProcessFunc)(GstQTDemux * qtdemux, QtDemuxStream * stream, GstBuffer * buf);
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enum QtDemuxState
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{
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QTDEMUX_STATE_INITIAL, /* Initial state (haven't got the header yet) */
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QTDEMUX_STATE_HEADER, /* Parsing the header */
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QTDEMUX_STATE_MOVIE, /* Parsing/Playing the media data */
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QTDEMUX_STATE_BUFFER_MDAT /* Buffering the mdat atom */
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};
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typedef enum {
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/* Regular behaviour */
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VARIANT_NONE,
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/* We're working with a MediaSource Extensions ISO BMFF Bytestream. */
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VARIANT_MSE_BYTESTREAM,
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/* We're working with a smoothstreaming fragment.
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* Mss doesn't have 'moov' or any information about the streams format,
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* requiring qtdemux to expose and create the streams */
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VARIANT_MSS_FRAGMENTED,
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} Variant;
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typedef enum {
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/* No valid gapless audio info present. Types other than this one
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* are used only if all of these apply:
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*
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* 1. There is embedded gapless audio information available
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* 2. Only one stream exists
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* 3. Said stream has only one segment
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* 4. Said stream is an audio stream
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*/
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GAPLESS_AUDIO_INFO_TYPE_NONE,
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/* Using information from the iTunes iTunSMPB revdns tag. */
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GAPLESS_AUDIO_INFO_TYPE_ITUNES,
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/* Using known Nero encoder delay information. */
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GAPLESS_AUDIO_INFO_TYPE_NERO
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} QtDemuxGaplessAudioInfoType;
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/* Gapless audio information, only used for single-stream audio-only media. */
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struct _QtDemuxGaplessAudioInfo {
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QtDemuxGaplessAudioInfoType type;
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guint64 num_start_padding_pcm_frames;
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guint64 num_end_padding_pcm_frames;
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guint64 num_valid_pcm_frames;
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/* PCM frame amounts converted to nanoseconds. */
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GstClockTime start_padding_duration;
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GstClockTime end_padding_duration;
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GstClockTime valid_duration;
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};
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struct _GstQTDemux {
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GstElement element;
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/* Global state */
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enum QtDemuxState state;
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/* static sink pad */
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GstPad *sinkpad;
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/* TRUE if pull-based */
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gboolean pullbased;
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gchar *redirect_location;
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/* Protect pad exposing from flush event */
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GMutex expose_lock;
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/* list of QtDemuxStream */
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GPtrArray *active_streams;
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GPtrArray *old_streams;
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gint n_video_streams;
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gint n_audio_streams;
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gint n_sub_streams;
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gint n_meta_streams;
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GstFlowCombiner *flowcombiner;
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/* Incoming stream group-id to set on downstream STREAM_START events.
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* If upstream doesn't contain one, a global one will be generated */
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gboolean have_group_id;
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guint group_id;
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guint major_brand;
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GstBuffer *comp_brands;
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/* [moov] header.
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* FIXME : This is discarded just after it's created. Just move it
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* to a temporary variable ? */
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GNode *moov_node;
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/* FIXME : This is never freed. It is only assigned once. memleak ? */
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GNode *moov_node_compressed;
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/* Set to TRUE when the [moov] header has been fully parsed */
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gboolean got_moov;
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/* Global timescale for the incoming stream. Use the QTTIME macros
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* to convert values to/from GstClockTime */
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guint32 timescale;
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/* Global duration (in global timescale). Use QTTIME macros to get GstClockTime */
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guint64 duration;
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/* Start UTC time as extracted from the AFIdentification box, reset on every
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* moov */
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GstClockTime start_utc_time;
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/* Total size of header atoms. Used to calculate fallback overall bitrate */
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guint header_size;
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GstTagList *tag_list;
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/* configured playback region */
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GstSegment segment;
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/* State for key_units trickmode */
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GstClockTime trickmode_interval;
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/* PUSH-BASED only: If the initial segment event, or a segment consequence of
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* a seek or incoming TIME segment from upstream needs to be pushed. This
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* variable is used instead of pushing the event directly because at that
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* point we may not have yet emitted the srcpads. */
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gboolean need_segment;
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guint32 segment_seqnum;
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Variant variant;
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/* Set to TRUE if the incoming stream is either a MSS stream or
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* a Fragmented MP4 (containing the [mvex] atom in the header) */
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gboolean fragmented;
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/* PULL-BASED only : If TRUE there is a pending seek */
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gboolean fragmented_seek_pending;
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/* PULL-BASED : offset of first [moof] or of fragment to seek to
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* PUSH-BASED : offset of latest [moof] */
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guint64 moof_offset;
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/* MSS streams have a single media that is unspecified at the atoms, so
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* upstream provides it at the caps */
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GstCaps *media_caps;
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/* Set to TRUE when all streams have been exposed */
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gboolean exposed;
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gint64 chapters_track_id;
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QtDemuxGaplessAudioInfo gapless_audio_info;
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/* protection support */
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GPtrArray *protection_system_ids; /* Holds identifiers of all content protection systems for all tracks */
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GQueue protection_event_queue; /* holds copy of upstream protection events */
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guint64 cenc_aux_info_offset;
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guint8 *cenc_aux_info_sizes;
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guint32 cenc_aux_sample_count;
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gchar *preferred_protection_system_id;
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/* Whether the parent bin is streams-aware, meaning we can
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* add/remove streams at any point in time */
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gboolean streams_aware;
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/*
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* ALL VARIABLES BELOW ARE ONLY USED IN PUSH-BASED MODE
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*/
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GstAdapter *adapter;
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guint neededbytes;
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guint todrop;
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/* Used to store data if [mdat] is before the headers */
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GstBuffer *mdatbuffer;
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/* Amount of bytes left to read in the current [mdat] */
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guint64 mdatleft, mdatsize;
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/* When restoring the mdat to the adapter, this buffer stores any
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* trailing data that was after the last atom parsed as it has to be
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* restored later along with the correct offset. Used in fragmented
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* scenario where mdat/moof are one after the other in any order.
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*
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* Check https://bugzilla.gnome.org/show_bug.cgi?id=710623 */
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GstBuffer *restoredata_buffer;
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guint64 restoredata_offset;
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/* The current offset in bytes from upstream.
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* Note: While it makes complete sense when we are PULL-BASED (pulling
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* in BYTES from upstream) and PUSH-BASED with a BYTE SEGMENT (receiving
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* buffers with actual offsets), it is undefined in PUSH-BASED with a
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* TIME SEGMENT */
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guint64 offset;
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/* offset of the mdat atom */
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guint64 mdatoffset;
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/* Offset of the first mdat */
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guint64 first_mdat;
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/* offset of last [moov] seen */
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guint64 last_moov_offset;
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/* If TRUE, qtdemux received upstream newsegment in TIME format
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* which likely means that upstream is driving the pipeline (such as
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* adaptive demuxers or dlna sources) */
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gboolean upstream_format_is_time;
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/* Seqnum of the seek event sent upstream. Will be used to
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* detect incoming FLUSH events corresponding to that */
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guint32 offset_seek_seqnum;
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/* UPSTREAM BYTE: Requested upstream byte seek offset.
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* Currently it is only used to check if an incoming BYTE SEGMENT
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* corresponds to a seek event that was sent upstream */
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gint64 seek_offset;
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/* UPSTREAM BYTE: Requested start/stop TIME values from
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* downstream.
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* Used to set on the downstream segment once the corresponding upstream
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* BYTE SEEK has succeeded */
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gint64 push_seek_start;
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gint64 push_seek_stop;
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#if 0
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/* gst index support */
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GstIndex *element_index;
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gint index_id;
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#endif
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/* Whether upstream is seekable in BYTES */
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gboolean upstream_seekable;
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/* UPSTREAM BYTE: Size of upstream content.
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* Note : This is only computed once ! If upstream grows in the meantime
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* it will not be updated */
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gint64 upstream_size;
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/* UPSTREAM TIME : Contains the PTS (if any) of the
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* buffer that contains a [moof] header. Will be used to establish
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* the actual PTS of the samples contained within that fragment. */
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guint64 fragment_start;
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/* UPSTREAM TIME : The offset in bytes of the [moof]
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* header start.
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* Note : This is not computed from the GST_BUFFER_OFFSET field */
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guint64 fragment_start_offset;
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/* These two fields are used to perform an implicit seek when a fragmented
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* file whose first tfdt is not zero. This way if the first fragment starts
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* at 1 hour, the user does not have to wait 1 hour or perform a manual seek
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* for the image to move and the sound to play.
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*
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* This implicit seek is only done if the first parsed fragment has a non-zero
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* decode base time and a seek has not been received previously, hence these
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* fields. */
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gboolean received_seek;
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gboolean first_moof_already_parsed;
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};
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struct _GstQTDemuxClass {
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GstElementClass parent_class;
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};
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GType gst_qtdemux_get_type (void);
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struct _QtDemuxStreamStsdEntry
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{
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GstCaps *caps;
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guint32 fourcc;
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gboolean sparse;
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/* video info */
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gint width;
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gint height;
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gint par_w;
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gint par_h;
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/* Numerator/denominator framerate */
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gint fps_n;
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gint fps_d;
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GstVideoColorimetry colorimetry;
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guint16 bits_per_sample;
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guint16 color_table_id;
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GstMemory *rgb8_palette;
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guint interlace_mode;
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guint field_order;
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/* audio info */
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gdouble rate;
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gint n_channels;
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guint samples_per_packet;
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guint samples_per_frame;
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guint bytes_per_packet;
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guint bytes_per_sample;
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guint bytes_per_frame;
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guint compression;
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/* if we use chunks or samples */
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gboolean sampled;
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guint padding;
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};
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struct _QtDemuxSample
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{
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guint32 size;
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gint32 pts_offset; /* Add this value to timestamp to get the pts */
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guint64 offset;
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guint64 timestamp; /* DTS In mov time */
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guint32 duration; /* In mov time */
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gboolean keyframe; /* TRUE when this packet is a keyframe */
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};
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struct _QtDemuxStream
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{
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GstPad *pad;
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GstQTDemux *demux;
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gchar *stream_id;
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QtDemuxStreamStsdEntry *stsd_entries;
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guint stsd_entries_length;
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guint cur_stsd_entry_index;
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/* stream type */
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guint32 subtype;
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gboolean new_caps; /* If TRUE, caps need to be generated (by
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* calling _configure_stream()) This happens
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* for MSS and fragmented streams */
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gboolean new_stream; /* signals that a stream_start is required */
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gboolean on_keyframe; /* if this stream last pushed buffer was a
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* keyframe. This is important to identify
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* where to stop pushing buffers after a
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* segment stop time */
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/* if the stream has a redirect URI in its headers, we store it here */
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gchar *redirect_uri;
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/* track id */
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guint track_id;
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/* duration/scale */
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guint64 duration; /* in timescale units */
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guint32 timescale;
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/* language */
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gchar lang_id[4]; /* ISO 639-2T language code */
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/* our samples */
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guint32 n_samples;
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QtDemuxSample *samples;
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gboolean all_keyframe; /* TRUE when all samples are keyframes (no stss) */
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guint32 n_samples_moof; /* sample count in a moof */
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guint64 duration_moof; /* duration in timescale of a moof, used for figure out
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* the framerate of fragmented format stream */
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guint64 duration_last_moof;
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guint32 offset_in_sample; /* Offset in the current sample, used for
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* streams which have got exceedingly big
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* sample size (such as 24s of raw audio).
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* Only used when max_buffer_size is non-NULL */
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guint32 min_buffer_size; /* Minimum allowed size for output buffers.
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* Currently only set for raw audio streams*/
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guint32 max_buffer_size; /* Maximum allowed size for output buffers.
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* Currently only set for raw audio streams*/
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/* video info */
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/* aspect ratio */
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gint display_width;
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gint display_height;
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/* allocation */
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gboolean use_allocator;
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GstAllocator *allocator;
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GstAllocationParams params;
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gsize alignment;
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/* when a discontinuity is pending */
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gboolean discont;
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/* list of buffers to push first */
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GSList *buffers;
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/* if we need to clip this buffer. This is only needed for uncompressed
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* data */
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gboolean need_clip;
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/* If the buffer needs some custom processing, e.g. subtitles, pass them
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* through this function */
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QtDemuxProcessFunc process_func;
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/* buffer needs potentially be split, e.g. CEA608 subtitles */
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gboolean need_split;
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/* current position */
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guint32 segment_index;
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guint32 sample_index;
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GstClockTime time_position; /* in gst time */
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guint64 accumulated_base;
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/* the Gst segment we are processing out, used for clipping */
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GstSegment segment;
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/* quicktime segments */
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guint32 n_segments;
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QtDemuxSegment *segments;
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gboolean dummy_segment;
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guint32 from_sample;
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guint32 to_sample;
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gboolean sent_eos;
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GstTagList *stream_tags;
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gboolean send_global_tags;
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GstEvent *pending_event;
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GstByteReader stco;
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GstByteReader stsz;
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GstByteReader stsc;
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GstByteReader stts;
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GstByteReader stss;
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GstByteReader stps;
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GstByteReader ctts;
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gboolean chunks_are_samples; /* TRUE means treat chunks as samples */
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gint64 stbl_index;
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/* stco */
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guint co_size;
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GstByteReader co_chunk;
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guint32 first_chunk;
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guint32 current_chunk;
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guint32 last_chunk;
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guint32 samples_per_chunk;
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guint32 stsd_sample_description_id;
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guint32 stco_sample_index;
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/* stsz */
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guint32 sample_size; /* 0 means variable sizes are stored in stsz */
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/* stsc */
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guint32 stsc_index;
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guint32 n_samples_per_chunk;
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guint32 stsc_chunk_index;
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guint32 stsc_sample_index;
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guint64 chunk_offset;
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/* stts */
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guint32 stts_index;
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guint32 stts_samples;
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guint32 n_sample_times;
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guint32 stts_sample_index;
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guint64 stts_time;
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guint32 stts_duration;
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/* stss */
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gboolean stss_present;
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guint32 n_sample_syncs;
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guint32 stss_index;
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/* stps */
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gboolean stps_present;
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guint32 n_sample_partial_syncs;
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guint32 stps_index;
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QtDemuxRandomAccessEntry *ra_entries;
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guint n_ra_entries;
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const QtDemuxRandomAccessEntry *pending_seek;
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|
|
|
/* ctts */
|
|
gboolean ctts_present;
|
|
guint32 n_composition_times;
|
|
guint32 ctts_index;
|
|
guint32 ctts_sample_index;
|
|
guint32 ctts_count;
|
|
gint32 ctts_soffset;
|
|
|
|
/* cslg composition_to_dts_shift or based on the smallest negative
|
|
* composition time offset.
|
|
*
|
|
* This is unsigned because only negative composition time offsets /
|
|
* positive composition_to_dts_shift matter here. In all other cases,
|
|
* DTS/PTS can be inferred directly without ending up with PTS>DTS.
|
|
*
|
|
* See 14496-12 6.4
|
|
*/
|
|
guint64 cslg_shift;
|
|
|
|
/* fragmented */
|
|
gboolean parsed_trex;
|
|
guint32 def_sample_description_index; /* index is 1-based */
|
|
guint32 def_sample_duration;
|
|
guint32 def_sample_size;
|
|
guint32 def_sample_flags;
|
|
|
|
gboolean disabled;
|
|
|
|
/* stereoscopic video streams */
|
|
GstVideoMultiviewMode multiview_mode;
|
|
GstVideoMultiviewFlags multiview_flags;
|
|
|
|
/* protected streams */
|
|
gboolean protected;
|
|
guint32 protection_scheme_type;
|
|
guint32 protection_scheme_version;
|
|
gpointer protection_scheme_info; /* specific to the protection scheme */
|
|
GQueue protection_scheme_event_queue;
|
|
|
|
/* KEY_UNITS trickmode with an interval */
|
|
GstClockTime last_keyframe_dts;
|
|
|
|
gint ref_count; /* atomic */
|
|
};
|
|
|
|
G_END_DECLS
|
|
|
|
#endif /* __GST_QTDEMUX_H__ */
|