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https://gitlab.freedesktop.org/gstreamer/gstreamer.git
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372 lines
12 KiB
C
372 lines
12 KiB
C
/* GStreamer
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*
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* Copyright (C) 2014 Samsung Electronics. All rights reserved.
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* Author: Thiago Santos <thiagoss@osg.samsung.com>
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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_ADAPTIVE_DEMUX_H_
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#define _GST_ADAPTIVE_DEMUX_H_
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#include <gst/gst.h>
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#include <gst/base/gstadapter.h>
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G_BEGIN_DECLS
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#define GST_TYPE_ADAPTIVE_DEMUX \
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(gst_adaptive_demux_get_type())
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#define GST_ADAPTIVE_DEMUX(obj) \
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(G_TYPE_CHECK_INSTANCE_CAST((obj),GST_TYPE_ADAPTIVE_DEMUX,GstAdaptiveDemux))
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#define GST_ADAPTIVE_DEMUX_CLASS(klass) \
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(G_TYPE_CHECK_CLASS_CAST((klass),GST_TYPE_ADAPTIVE_DEMUX,GstAdaptiveDemuxClass))
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#define GST_ADAPTIVE_DEMUX_GET_CLASS(obj) \
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(G_TYPE_INSTANCE_GET_CLASS((obj),GST_TYPE_ADAPTIVE_DEMUX,GstAdaptiveDemuxClass))
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#define GST_IS_ADAPTIVE_DEMUX(obj) \
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(G_TYPE_CHECK_INSTANCE_TYPE((obj),GST_TYPE_ADAPTIVE_DEMUX))
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#define GST_IS_ADAPTIVE_DEMUX_CLASS(obj) \
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(G_TYPE_CHECK_CLASS_TYPE((klass),GST_TYPE_ADAPTIVE_DEMUX))
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#define GST_ADAPTIVE_DEMUX_CAST(obj) ((GstAdaptiveDemux *)obj)
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#define GST_ADAPTIVE_DEMUX_STREAM_CAST(obj) ((GstAdaptiveDemuxStream *)obj)
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/**
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* GST_ADAPTIVE_DEMUX_SINK_NAME:
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*
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* The name of the templates for the sink pad.
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*/
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#define GST_ADAPTIVE_DEMUX_SINK_NAME "sink"
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/**
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* GST_ADAPTIVE_DEMUX_SINK_PAD:
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* @obj: a #GstAdaptiveDemux
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*
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* Gives the pointer to the sink #GstPad object of the element.
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*/
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#define GST_ADAPTIVE_DEMUX_SINK_PAD(obj) (((GstAdaptiveDemux *) (obj))->sinkpad)
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#define GST_ADAPTIVE_DEMUX_STREAM_PAD(obj) (((GstAdaptiveDemuxStream *) (obj))->pad)
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#define GST_ADAPTIVE_DEMUX_STREAM_NEED_HEADER(obj) (((GstAdaptiveDemuxStream *) (obj))->need_header)
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#define STATISTICS_MESSAGE_NAME "adaptive-streaming-statistics"
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#define GST_MANIFEST_GET_LOCK(d) (&(GST_ADAPTIVE_DEMUX_CAST(d)->manifest_lock))
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#define GST_MANIFEST_LOCK(d) (g_mutex_lock (GST_MANIFEST_GET_LOCK (d)))
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#define GST_MANIFEST_UNLOCK(d) (g_mutex_unlock (GST_MANIFEST_GET_LOCK (d)))
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#define GST_ELEMENT_ERROR_FROM_ERROR(el, msg, err) G_STMT_START { \
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gchar *__dbg = g_strdup_printf ("%s: %s", msg, err->message); \
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GST_WARNING_OBJECT (el, "error: %s", __dbg); \
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gst_element_message_full (GST_ELEMENT(el), GST_MESSAGE_ERROR, \
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err->domain, err->code, \
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NULL, __dbg, __FILE__, GST_FUNCTION, __LINE__); \
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g_clear_error (&err); \
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} G_STMT_END
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typedef struct _GstAdaptiveDemuxStreamFragment GstAdaptiveDemuxStreamFragment;
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typedef struct _GstAdaptiveDemuxStream GstAdaptiveDemuxStream;
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typedef struct _GstAdaptiveDemux GstAdaptiveDemux;
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typedef struct _GstAdaptiveDemuxClass GstAdaptiveDemuxClass;
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typedef struct _GstAdaptiveDemuxPrivate GstAdaptiveDemuxPrivate;
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struct _GstAdaptiveDemuxStreamFragment
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{
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GstClockTime timestamp;
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GstClockTime duration;
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gchar *uri;
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gint64 range_start;
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gint64 range_end;
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/* when headers are needed */
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gchar *header_uri;
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gint64 header_range_start;
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gint64 header_range_end;
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/* when index is needed */
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gchar *index_uri;
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gint64 index_range_start;
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gint64 index_range_end;
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};
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struct _GstAdaptiveDemuxStream
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{
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GstPad *pad;
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GstAdaptiveDemux *demux;
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GstSegment segment;
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GstCaps *pending_caps;
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GstEvent *pending_segment;
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GstTagList *pending_tags;
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gboolean need_header;
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GstFlowReturn last_ret;
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GError *last_error;
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GstTask *download_task;
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GRecMutex download_lock;
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gboolean restart_download;
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gboolean discont;
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/* download tooling */
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GstElement *src;
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GstPad *src_srcpad;
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GMutex fragment_download_lock;
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GCond fragment_download_cond;
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gboolean download_finished;
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gboolean starting_fragment;
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gboolean first_fragment_buffer;
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gint64 download_start_time;
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gint64 download_total_time;
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gint64 download_total_bytes;
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gint current_download_rate;
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GstAdaptiveDemuxStreamFragment fragment;
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guint download_error_count;
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/* TODO check if used */
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gboolean eos;
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};
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/**
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* GstAdaptiveDemux:
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*
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* The opaque #GstAdaptiveDemux data structure.
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*/
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struct _GstAdaptiveDemux
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{
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/*< private >*/
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GstBin bin;
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gsize stream_struct_size;
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/*< protected >*/
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GstPad *sinkpad;
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GstAdaptiveDemuxPrivate *priv;
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GList *streams;
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GList *next_streams;
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GstSegment segment;
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gboolean cancelled;
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GMutex manifest_lock;
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GCond manifest_cond;
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gchar *manifest_uri;
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gchar *manifest_base_uri;
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gboolean have_group_id;
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guint group_id;
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};
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/**
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* GstAdaptiveDemuxClass:
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*
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*/
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struct _GstAdaptiveDemuxClass
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{
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/*< private >*/
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GstBinClass bin_class;
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/*< public >*/
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/**
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* process_manifest: Parse the manifest
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* @demux: #GstAdaptiveDemux
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* @manifest: the manifest to be parsed
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*
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* Parse the manifest and add the created streams using
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* gst_adaptive_demux_stream_new()
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*
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* Returns: #TRUE if successful
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*/
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gboolean (*process_manifest) (GstAdaptiveDemux * demux, GstBuffer * manifest);
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/**
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* get_manifest_update_interval:
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* @demux: #GstAdaptiveDemux
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*
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* Used during live streaming, the subclass should return the interval
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* between successive manifest updates
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*
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* Returns: the update interval in microseconds
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*/
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gint64 (*get_manifest_update_interval) (GstAdaptiveDemux * demux);
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/**
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* update_manifest:
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* @demux: #GstAdaptiveDemux
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* @buf: Downloaded manifest data
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*
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* During live streaming, this will be called for the subclass to update its
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* manifest with the new version
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*
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* Returns: #GST_FLOW_OK is all succeeded, #GST_FLOW_EOS if the stream ended
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* or #GST_FLOW_ERROR if an error happened
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*/
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GstFlowReturn (*update_manifest) (GstAdaptiveDemux * demux, GstBuffer * buf);
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gboolean (*is_live) (GstAdaptiveDemux * demux);
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GstClockTime (*get_duration) (GstAdaptiveDemux * demux);
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/**
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* reset:
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* @demux: #GstAdaptiveDemux
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*
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* Reset the internal state of the subclass, getting ready to restart with
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* a new stream afterwards
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*/
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void (*reset) (GstAdaptiveDemux * demux);
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/**
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* seek:
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* @demux: #GstAdaptiveDemux
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* @seek: a seek #GstEvent
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*
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* The demuxer should seek on all its streams to the specified position
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* in the seek event
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*
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* Returns: #TRUE if successful
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*/
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gboolean (*seek) (GstAdaptiveDemux * demux, GstEvent * seek);
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/**
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* has_next_period:
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* @demux: #GstAdaptiveDemux
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*
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* Checks if there is a next period following the current one.
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* DASH can have multiple medias chained in its manifest, when one finishes
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* this function is called to verify if there is a new period to be played
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* in sequence.
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*
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* Returns: #TRUE if there is another period
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*/
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gboolean (*has_next_period) (GstAdaptiveDemux * demux);
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/**
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* advance_period:
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* @demux: #GstAdaptiveDemux
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*
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* Advances the manifest to the next period. New streams should be created
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* using gst_adaptive_demux_stream_new().
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*/
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void (*advance_period) (GstAdaptiveDemux * demux);
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void (*stream_free) (GstAdaptiveDemuxStream * stream);
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GstFlowReturn (*stream_seek) (GstAdaptiveDemuxStream * stream, GstClockTime ts);
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gboolean (*stream_has_next_fragment) (GstAdaptiveDemuxStream * stream);
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GstFlowReturn (*stream_advance_fragment) (GstAdaptiveDemuxStream * stream);
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/**
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* stream_update_fragment_info:
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* @stream: #GstAdaptiveDemuxStream
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*
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* Requests the stream to set the information about the current fragment to its
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* current fragment struct
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*
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* Returns: #GST_FLOW_OK in success, #GST_FLOW_ERROR on error and #GST_FLOW_EOS
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* if there is no fragment.
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*/
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GstFlowReturn (*stream_update_fragment_info) (GstAdaptiveDemuxStream * stream);
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/**
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* stream_select_bitrate:
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* @stream: #GstAdaptiveDemuxStream
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* @bitrate: the bitrate to select (in bytes per second)
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*
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* The stream should try to select the bitrate that is the greater, but not
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* greater than the requested bitrate. If it needs a codec change it should
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* create the new stream using gst_adaptive_demux_stream_new(). If it only
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* needs a caps change it should set the new caps using
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* gst_adaptive_demux_stream_set_caps().
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*
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* Returns: #TRUE if the stream changed bitrate, #FALSE otherwise
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*/
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gboolean (*stream_select_bitrate) (GstAdaptiveDemuxStream * stream, guint64 bitrate);
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/**
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* stream_get_fragment_waiting_time:
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* @stream: #GstAdaptiveDemuxStream
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*
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* For live streams, requests how much time should be waited before starting
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* to download the fragment. This is useful to avoid downloading a fragment that
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* isn't available yet.
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*
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* Returns: The waiting time in microsseconds
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*/
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gint64 (*stream_get_fragment_waiting_time) (GstAdaptiveDemuxStream * stream);
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/**
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* start_fragment:
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* @demux: #GstAdaptiveDemux
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* @stream: #GstAdaptiveDemuxStream
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*
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* Notifies the subclass that the given stream is starting the download
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* of a new fragment. Can be used to reset/init internal state that is
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* needed before each fragment, like decryption engines.
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*
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* Returns: #TRUE if successful.
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*/
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gboolean (*start_fragment) (GstAdaptiveDemux * demux, GstAdaptiveDemuxStream * stream);
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/**
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* finish_fragment:
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* @demux: #GstAdaptiveDemux
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* @stream: #GstAdaptiveDemuxStream
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* @buffer: Pointer to store and pending data that should be pushed.
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*
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* Notifies the subclass that a fragment download was finished.
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* It can be used to cleanup internal state after a fragment and also
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* provides a pointer for the subclass to return some pending data
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* that should be pushed before starting the next fragment. This
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* covers the use case of finishing the decryption of the last chunk
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* of an encrypted fragment.
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*/
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void (*finish_fragment) (GstAdaptiveDemux * demux, GstAdaptiveDemuxStream * stream, GstBuffer ** buffer);
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/**
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* chunk_received:
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* @demux: #GstAdaptiveDemux
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* @stream: #GstAdaptiveDemuxStream
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* @buffer: Pointer containing the received chunk, also used to return modified data
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*
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* Notifies the subclass that a fragment chunk was downloaded. The subclass can
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* modify the buffer and return a new one if needed. Used for decryption.
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*
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* Returns: #GST_FLOW_OK if successful, #GST_FLOW_ERROR in case of error.
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*/
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GstFlowReturn (*chunk_received) (GstAdaptiveDemux * demux, GstAdaptiveDemuxStream * stream, GstBuffer ** buffer);
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};
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GType gst_adaptive_demux_get_type (void);
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void gst_adaptive_demux_set_stream_struct_size (GstAdaptiveDemux * demux,
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gsize struct_size);
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GstAdaptiveDemuxStream *gst_adaptive_demux_stream_new (GstAdaptiveDemux * demux,
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GstPad * pad);
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void gst_adaptive_demux_stream_set_caps (GstAdaptiveDemuxStream * stream,
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GstCaps * caps);
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void gst_adaptive_demux_stream_set_tags (GstAdaptiveDemuxStream * stream,
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GstTagList * tags);
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void gst_adaptive_demux_stream_fragment_clear (GstAdaptiveDemuxStreamFragment * f);
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G_END_DECLS
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#endif
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