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00056965e8
If we were not waiting for the missing seqnum when we insert the lost packet event in the jitterbuffer, we end up not updating the next_seqnum and wait forever for the lost packets to arrive. Instead, keep track of the amount of packets contained by the jitterbuffer item and update the next expected seqnum only after pushing the buffer/event. This makes sure we correctly handle GAPS in the sequence numbers.
165 lines
6.1 KiB
C
165 lines
6.1 KiB
C
/* GStreamer
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* Copyright (C) <2007> Wim Taymans <wim.taymans@gmail.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 __RTP_JITTER_BUFFER_H__
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#define __RTP_JITTER_BUFFER_H__
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#include <gst/gst.h>
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#include <gst/rtp/gstrtcpbuffer.h>
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typedef struct _RTPJitterBuffer RTPJitterBuffer;
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typedef struct _RTPJitterBufferClass RTPJitterBufferClass;
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typedef struct _RTPJitterBufferItem RTPJitterBufferItem;
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#define RTP_TYPE_JITTER_BUFFER (rtp_jitter_buffer_get_type())
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#define RTP_JITTER_BUFFER(src) (G_TYPE_CHECK_INSTANCE_CAST((src),RTP_TYPE_JITTER_BUFFER,RTPJitterBuffer))
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#define RTP_JITTER_BUFFER_CLASS(klass) (G_TYPE_CHECK_CLASS_CAST((klass),RTP_TYPE_JITTER_BUFFER,RTPJitterBufferClass))
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#define RTP_IS_JITTER_BUFFER(src) (G_TYPE_CHECK_INSTANCE_TYPE((src),RTP_TYPE_JITTER_BUFFER))
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#define RTP_IS_JITTER_BUFFER_CLASS(klass) (G_TYPE_CHECK_CLASS_TYPE((klass),RTP_TYPE_JITTER_BUFFER))
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#define RTP_JITTER_BUFFER_CAST(src) ((RTPJitterBuffer *)(src))
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/**
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* RTPJitterBufferMode:
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*
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* RTP_JITTER_BUFFER_MODE_NONE: don't do any skew correction, outgoing
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* timestamps are calculated directly from the RTP timestamps. This mode is
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* good for recording but not for real-time applications.
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* RTP_JITTER_BUFFER_MODE_SLAVE: calculate the skew between sender and receiver
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* and produce smoothed adjusted outgoing timestamps. This mode is good for
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* low latency communications.
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* RTP_JITTER_BUFFER_MODE_BUFFER: buffer packets between low/high watermarks.
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* This mode is good for streaming communication.
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* RTP_JITTER_BUFFER_MODE_LAST: last buffer mode.
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*
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* The different buffer modes for a jitterbuffer.
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*/
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typedef enum {
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RTP_JITTER_BUFFER_MODE_NONE = 0,
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RTP_JITTER_BUFFER_MODE_SLAVE = 1,
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RTP_JITTER_BUFFER_MODE_BUFFER = 2,
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RTP_JITTER_BUFFER_MODE_LAST
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} RTPJitterBufferMode;
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#define RTP_TYPE_JITTER_BUFFER_MODE (rtp_jitter_buffer_mode_get_type())
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GType rtp_jitter_buffer_mode_get_type (void);
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#define RTP_JITTER_BUFFER_MAX_WINDOW 512
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/**
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* RTPJitterBuffer:
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*
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* A JitterBuffer in the #RTPSession
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*/
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struct _RTPJitterBuffer {
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GObject object;
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GQueue *packets;
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RTPJitterBufferMode mode;
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GstClockTime delay;
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/* for buffering */
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gboolean buffering;
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guint64 low_level;
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guint64 high_level;
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/* for calculating skew */
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GstClockTime base_time;
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GstClockTime base_rtptime;
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guint32 clock_rate;
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GstClockTime base_extrtp;
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GstClockTime prev_out_time;
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guint64 ext_rtptime;
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guint64 last_rtptime;
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gint64 window[RTP_JITTER_BUFFER_MAX_WINDOW];
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guint window_pos;
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guint window_size;
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gboolean window_filling;
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gint64 window_min;
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gint64 skew;
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gint64 prev_send_diff;
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};
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struct _RTPJitterBufferClass {
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GObjectClass parent_class;
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};
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/**
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* RTPJitterBufferItem:
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* @data: the data of the item
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* @next: pointer to next item
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* @prev: pointer to previous item
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* @type: the type of @data
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* @dts: input DTS
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* @pts: output PTS
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* @seqnum: seqnum
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* @count: amount of seqnum in this item
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* @rtptime: rtp timestamp
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*
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* An object containing an RTP packet or event.
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*/
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struct _RTPJitterBufferItem {
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gpointer data;
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GList *next;
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GList *prev;
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guint type;
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GstClockTime dts;
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GstClockTime pts;
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guint seqnum;
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guint count;
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guint rtptime;
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};
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GType rtp_jitter_buffer_get_type (void);
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/* managing lifetime */
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RTPJitterBuffer* rtp_jitter_buffer_new (void);
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RTPJitterBufferMode rtp_jitter_buffer_get_mode (RTPJitterBuffer *jbuf);
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void rtp_jitter_buffer_set_mode (RTPJitterBuffer *jbuf, RTPJitterBufferMode mode);
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GstClockTime rtp_jitter_buffer_get_delay (RTPJitterBuffer *jbuf);
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void rtp_jitter_buffer_set_delay (RTPJitterBuffer *jbuf, GstClockTime delay);
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void rtp_jitter_buffer_set_clock_rate (RTPJitterBuffer *jbuf, guint32 clock_rate);
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guint32 rtp_jitter_buffer_get_clock_rate (RTPJitterBuffer *jbuf);
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void rtp_jitter_buffer_reset_skew (RTPJitterBuffer *jbuf);
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gboolean rtp_jitter_buffer_insert (RTPJitterBuffer *jbuf,
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RTPJitterBufferItem *item,
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gboolean *tail, gint *percent);
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RTPJitterBufferItem * rtp_jitter_buffer_peek (RTPJitterBuffer *jbuf);
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RTPJitterBufferItem * rtp_jitter_buffer_pop (RTPJitterBuffer *jbuf, gint *percent);
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void rtp_jitter_buffer_flush (RTPJitterBuffer *jbuf,
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GFunc free_func, gpointer user_data);
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gboolean rtp_jitter_buffer_is_buffering (RTPJitterBuffer * jbuf);
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void rtp_jitter_buffer_set_buffering (RTPJitterBuffer * jbuf, gboolean buffering);
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gint rtp_jitter_buffer_get_percent (RTPJitterBuffer * jbuf);
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guint rtp_jitter_buffer_num_packets (RTPJitterBuffer *jbuf);
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guint32 rtp_jitter_buffer_get_ts_diff (RTPJitterBuffer *jbuf);
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void rtp_jitter_buffer_get_sync (RTPJitterBuffer *jbuf, guint64 *rtptime,
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guint64 *timestamp, guint32 *clock_rate,
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guint64 *last_rtptime);
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#endif /* __RTP_JITTER_BUFFER_H__ */
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