135 lines
4.2 KiB
C
135 lines
4.2 KiB
C
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/*
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* Copyright (c) 2011 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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/*
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* Implementation of RTCP statistics reporting.
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*/
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#include "rtcp.h"
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#include <string.h>
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#include "signal_processing_library.h"
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int WebRtcNetEQ_RTCPInit(WebRtcNetEQ_RTCP_t *RTCP_inst, WebRtc_UWord16 uw16_seqNo)
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{
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/*
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* Initialize everything to zero and then set the start values for the RTP packet stream.
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*/
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WebRtcSpl_MemSetW16((WebRtc_Word16*) RTCP_inst, 0,
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sizeof(WebRtcNetEQ_RTCP_t) / sizeof(WebRtc_Word16));
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RTCP_inst->base_seq = uw16_seqNo;
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RTCP_inst->max_seq = uw16_seqNo;
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return 0;
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}
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int WebRtcNetEQ_RTCPUpdate(WebRtcNetEQ_RTCP_t *RTCP_inst, WebRtc_UWord16 uw16_seqNo,
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WebRtc_UWord32 uw32_timeStamp, WebRtc_UWord32 uw32_recTime)
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{
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WebRtc_Word16 w16_SeqDiff;
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WebRtc_Word32 w32_TimeDiff;
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WebRtc_Word32 w32_JitterDiff;
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/*
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* Update number of received packets, and largest packet number received.
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*/
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RTCP_inst->received++;
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w16_SeqDiff = uw16_seqNo - RTCP_inst->max_seq;
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if (w16_SeqDiff >= 0)
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{
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if (uw16_seqNo < RTCP_inst->max_seq)
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{
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/* Wrap around detected */
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RTCP_inst->cycles++;
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}
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RTCP_inst->max_seq = uw16_seqNo;
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}
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/* Calculate Jitter, and update previous timestamps */
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/* Note that the value in RTCP_inst->jitter is in Q4. */
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if (RTCP_inst->received > 1)
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{
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w32_TimeDiff = (uw32_recTime - (uw32_timeStamp - RTCP_inst->transit));
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w32_TimeDiff = WEBRTC_SPL_ABS_W32(w32_TimeDiff);
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w32_JitterDiff = WEBRTC_SPL_LSHIFT_W16(w32_TimeDiff, 4) - RTCP_inst->jitter;
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RTCP_inst->jitter = RTCP_inst->jitter + WEBRTC_SPL_RSHIFT_W32((w32_JitterDiff + 8), 4);
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}
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RTCP_inst->transit = (uw32_timeStamp - uw32_recTime);
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return 0;
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}
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int WebRtcNetEQ_RTCPGetStats(WebRtcNetEQ_RTCP_t *RTCP_inst,
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WebRtc_UWord16 *puw16_fraction_lost,
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WebRtc_UWord32 *puw32_cum_lost, WebRtc_UWord32 *puw32_ext_max,
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WebRtc_UWord32 *puw32_jitter, WebRtc_Word16 doNotReset)
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{
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WebRtc_UWord32 uw32_exp_nr, uw32_exp_interval, uw32_rec_interval;
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WebRtc_Word32 w32_lost;
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/* Extended highest sequence number received */
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*puw32_ext_max
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= (WebRtc_UWord32) WEBRTC_SPL_LSHIFT_W32((WebRtc_UWord32)RTCP_inst->cycles, 16)
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+ RTCP_inst->max_seq;
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/*
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* Calculate expected number of packets and compare it to the number of packets that
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* were actually received => the cumulative number of packets lost can be extracted.
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*/
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uw32_exp_nr = *puw32_ext_max - RTCP_inst->base_seq + 1;
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if (RTCP_inst->received == 0)
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{
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/* no packets received, assume none lost */
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*puw32_cum_lost = 0;
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}
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else if (uw32_exp_nr > RTCP_inst->received)
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{
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*puw32_cum_lost = uw32_exp_nr - RTCP_inst->received;
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if (*puw32_cum_lost > (WebRtc_UWord32) 0xFFFFFF)
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{
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*puw32_cum_lost = 0xFFFFFF;
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}
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}
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else
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{
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*puw32_cum_lost = 0;
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}
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/* Fraction lost (Since last report) */
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uw32_exp_interval = uw32_exp_nr - RTCP_inst->exp_prior;
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if (!doNotReset)
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{
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RTCP_inst->exp_prior = uw32_exp_nr;
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}
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uw32_rec_interval = RTCP_inst->received - RTCP_inst->rec_prior;
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if (!doNotReset)
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{
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RTCP_inst->rec_prior = RTCP_inst->received;
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}
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w32_lost = (WebRtc_Word32) (uw32_exp_interval - uw32_rec_interval);
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if (uw32_exp_interval == 0 || w32_lost <= 0 || RTCP_inst->received == 0)
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{
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*puw16_fraction_lost = 0;
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}
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else
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{
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*puw16_fraction_lost = (WebRtc_UWord16) (WEBRTC_SPL_LSHIFT_W32(w32_lost, 8)
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/ uw32_exp_interval);
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}
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if (*puw16_fraction_lost > 0xFF)
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{
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*puw16_fraction_lost = 0xFF;
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}
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/* Inter-arrival jitter */
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*puw32_jitter = (RTCP_inst->jitter) >> 4; /* scaling from Q4 */
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return 0;
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}
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