Update to the latest jitter buffer for compilation issues.
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71bd38f9e9
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a40826dd44
2 changed files with 72 additions and 36 deletions
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@ -18,27 +18,32 @@
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#include "JitterBuffer.h"
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#include "JitterBuffer.h"
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#include "Log.h"
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#include <cstdio>
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#include <cstdio>
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#include <cassert>
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#include <cassert>
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#include <cstring>
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CJitterBuffer::CJitterBuffer(unsigned int blockSize, unsigned int blockTime, unsigned int jitterTime, unsigned int topSequenceNumber) :
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CJitterBuffer::CJitterBuffer(unsigned int blockSize, unsigned int blockTime, unsigned int jitterTime, unsigned int topSequenceNumber, bool debug) :
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m_blockSize(blockSize),
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m_blockSize(blockSize),
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m_blockTime(blockTime),
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m_blockTime(blockTime),
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m_topSequenceNumber(topSequenceNumber),
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m_topSequenceNumber(topSequenceNumber),
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m_debug(debug),
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m_blockCount(0U),
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m_blockCount(0U),
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m_timer(1000U, 0U, jitterTime),
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m_timer(1000U, 0U, jitterTime),
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m_stopWatch(),
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m_stopWatch(),
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m_buffer(NULL),
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m_buffer(NULL),
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m_headSequenceNumber(0U),
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m_headSequenceNumber(0U),
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m_lastData(NULL),
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m_lastData(NULL),
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m_lastDataValid(false)
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m_lastDataLength(0U),
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m_running(false)
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{
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{
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assert(blockSize > 0U);
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assert(blockSize > 0U);
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assert(blockTime > 0U);
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assert(blockTime > 0U);
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assert(jitterTime > 0U);
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assert(jitterTime > 0U);
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assert(topSequenceNumber > 0U);
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assert(topSequenceNumber > 0U);
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m_blockCount = jitterTime / blockTime + 1U;
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m_blockCount = (jitterTime / blockTime) * 2U + 1U;
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m_buffer = new JitterEntry[m_blockCount];
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m_buffer = new JitterEntry[m_blockCount];
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@ -59,20 +64,28 @@ CJitterBuffer::~CJitterBuffer()
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delete[] m_lastData;
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delete[] m_lastData;
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}
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}
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bool CJitterBuffer::addData(const unsigned char* data, unsigned int sequenceNumber)
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bool CJitterBuffer::addData(const unsigned char* data, unsigned int length, unsigned int sequenceNumber)
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{
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{
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assert(data != NULL);
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assert(data != NULL);
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assert(length > 0U);
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assert(length <= m_blockSize);
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unsigned int headSequenceNumber = m_headSequenceNumber % m_topSequenceNumber;
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unsigned int headSequenceNumber = m_headSequenceNumber % m_topSequenceNumber;
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unsigned int tailSequenceNumber = (m_headSequenceNumber + m_blockCount) % m_topSequenceNumber;
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unsigned int tailSequenceNumber = (m_headSequenceNumber + m_blockCount) % m_topSequenceNumber;
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// Is the data out of sequence?
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// Is the data out of sequence?
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if (headSequenceNumber < tailSequenceNumber) {
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if (headSequenceNumber < tailSequenceNumber) {
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if (sequenceNumber < headSequenceNumber || sequenceNumber >= tailSequenceNumber)
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if (sequenceNumber < headSequenceNumber || sequenceNumber >= tailSequenceNumber) {
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if (m_debug)
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LogDebug("JitterBuffer: rejecting frame with seqNo=%u, raw=%u, head=%u, tail=%u", sequenceNumber, m_headSequenceNumber, headSequenceNumber, tailSequenceNumber);
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return false;
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return false;
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}
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} else {
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} else {
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if (sequenceNumber >= tailSequenceNumber && sequenceNumber < headSequenceNumber)
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if (sequenceNumber >= tailSequenceNumber && sequenceNumber < headSequenceNumber) {
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if (m_debug)
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LogDebug("JitterBuffer: rejecting frame with seqNo=%u, raw=%u, head=%u, tail=%u", sequenceNumber, m_headSequenceNumber, headSequenceNumber, tailSequenceNumber);
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return false;
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return false;
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}
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}
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}
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unsigned int number;
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unsigned int number;
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@ -84,70 +97,91 @@ bool CJitterBuffer::addData(const unsigned char* data, unsigned int sequenceNumb
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unsigned int index = (m_headSequenceNumber + number) % m_blockCount;
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unsigned int index = (m_headSequenceNumber + number) % m_blockCount;
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// Do we already have the data?
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// Do we already have the data?
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if (m_buffer[index].m_used)
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if (m_buffer[index].m_length > 0U) {
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if (m_debug)
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LogDebug("JitterBuffer: rejecting duplicate frame with seqNo=%u, raw=%u, head=%u, tail=%u", sequenceNumber, m_headSequenceNumber, headSequenceNumber, tailSequenceNumber);
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return false;
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return false;
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}
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::memcpy(m_buffer[index].m_data, data, m_blockSize);
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LogDebug("JitterBuffer: adding frame with seqNo=%u, raw=%u, head=%u, tail=%u", sequenceNumber, m_headSequenceNumber, headSequenceNumber, tailSequenceNumber);
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m_buffer[index].m_used = true;
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if (!m_timer.isRunning())
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::memcpy(m_buffer[index].m_data, data, length);
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m_buffer[index].m_length = length;
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if (!m_timer.isRunning()) {
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LogDebug("JitterBuffer: starting the timer");
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m_timer.start();
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m_timer.start();
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}
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return true;
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return true;
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}
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}
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JB_STATUS CJitterBuffer::getData(unsigned char* data)
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JB_STATUS CJitterBuffer::getData(unsigned char* data, unsigned int& length)
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{
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{
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assert(data != NULL);
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assert(data != NULL);
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if (!m_timer.isRunning() || !m_timer.hasExpired()) {
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if (!m_running)
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m_stopWatch.start();
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return JBS_NO_DATA;
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return JBS_NO_DATA;
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}
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unsigned int sequenceNumber = m_stopWatch.elapsed() / m_blockTime;
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unsigned int sequenceNumber = m_stopWatch.elapsed() / m_blockTime + 3U;
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if (m_headSequenceNumber > sequenceNumber)
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if (m_headSequenceNumber > sequenceNumber)
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return JBS_NO_DATA;
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return JBS_NO_DATA;
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unsigned int head = m_headSequenceNumber % m_blockCount;
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unsigned int head = m_headSequenceNumber % m_blockCount;
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if (m_buffer[head].m_used) {
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m_headSequenceNumber++;
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::memcpy(data, m_buffer[head].m_data, m_blockSize);
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m_buffer[head].m_used = false;
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if (m_buffer[head].m_length > 0U) {
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LogDebug("JitterBuffer: returning data, elapsed=%ums, raw=%u, head=%u", m_stopWatch.elapsed(), m_headSequenceNumber - 1U, head);
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::memcpy(data, m_buffer[head].m_data, m_buffer[head].m_length);
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length = m_buffer[head].m_length;
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// Save this data in case no more data is available next time
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// Save this data in case no more data is available next time
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::memcpy(m_lastData, m_buffer[head].m_data, m_blockSize);
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::memcpy(m_lastData, m_buffer[head].m_data, m_buffer[head].m_length);
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m_lastDataValid = true;
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m_lastDataLength = m_buffer[head].m_length;
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m_headSequenceNumber++;
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m_buffer[head].m_length = 0U;
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return JBS_DATA;
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return JBS_DATA;
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}
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}
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// Return the last data frame or null data if none exists
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if (m_debug)
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if (m_lastDataValid)
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LogDebug("JitterBuffer: no data available, elapsed=%ums, raw=%u, head=%u", m_stopWatch.elapsed(), m_headSequenceNumber - 1U, head);
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::memcpy(data, m_lastData, m_blockSize);
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else
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::memset(data, 0x00U, m_blockSize);
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m_headSequenceNumber++;
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// Return the last data frame if we have it
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if (m_lastDataLength > 0U) {
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LogDebug("JitterBuffer: returning the last received frame");
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::memcpy(data, m_lastData, m_lastDataLength);
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length = m_lastDataLength;
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return JBS_MISSING;
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return JBS_MISSING;
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}
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return JBS_NO_DATA;
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}
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}
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void CJitterBuffer::reset()
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void CJitterBuffer::reset()
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{
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{
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for (unsigned int i = 0U; i < m_blockCount; i++)
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for (unsigned int i = 0U; i < m_blockCount; i++)
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m_buffer[i].m_used = false;
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m_buffer[i].m_length = 0U;
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m_headSequenceNumber = 0U;
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m_headSequenceNumber = 0U;
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m_lastDataValid = false;
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m_lastDataLength = 0U;
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m_timer.stop();
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m_timer.stop();
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m_running = false;
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}
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}
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void CJitterBuffer::clock(unsigned int ms)
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void CJitterBuffer::clock(unsigned int ms)
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{
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{
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m_timer.clock(ms);
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m_timer.clock(ms);
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if (m_timer.isRunning() && m_timer.hasExpired()) {
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if (!m_running) {
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m_stopWatch.start();
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m_running = true;
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}
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}
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}
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}
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@ -30,12 +30,12 @@ enum JB_STATUS {
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class CJitterBuffer {
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class CJitterBuffer {
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public:
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public:
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CJitterBuffer(unsigned int blockSize, unsigned int blockTime, unsigned int jitterTime, unsigned int topSequenceNumber);
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CJitterBuffer(unsigned int blockSize, unsigned int blockTime, unsigned int jitterTime, unsigned int topSequenceNumber, bool debug);
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~CJitterBuffer();
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~CJitterBuffer();
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bool addData(const unsigned char* data, unsigned int sequenceNumber);
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bool addData(const unsigned char* data, unsigned int length, unsigned int sequenceNumber);
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JB_STATUS getData(unsigned char* data);
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JB_STATUS getData(unsigned char* data, unsigned int& length);
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void reset();
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void reset();
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@ -45,21 +45,23 @@ private:
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unsigned int m_blockSize;
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unsigned int m_blockSize;
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unsigned int m_blockTime;
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unsigned int m_blockTime;
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unsigned int m_topSequenceNumber;
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unsigned int m_topSequenceNumber;
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bool m_debug;
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unsigned int m_blockCount;
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unsigned int m_blockCount;
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CTimer m_timer;
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CTimer m_timer;
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CStopWatch m_stopWatch;
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CStopWatch m_stopWatch;
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bool m_running;
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struct JitterEntry
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struct JitterEntry
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{
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{
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unsigned char* m_data;
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unsigned char* m_data;
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bool m_used;
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unsigned int m_length;
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};
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};
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JitterEntry* m_buffer;
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JitterEntry* m_buffer;
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unsigned int m_headSequenceNumber;
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unsigned int m_headSequenceNumber;
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unsigned char* m_lastData;
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unsigned char* m_lastData;
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bool m_lastDataValid;
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unsigned int m_lastDataLength;
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};
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};
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#endif
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#endif
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