TC packets carry sequence counter and round trip timer

unstable
Tom Early 4 years ago
parent 2a1e2b7404
commit bd62197312

@ -31,12 +31,11 @@ CCodecStream::CCodecStream(CPacketStream *PacketStream, uint16_t streamid, ECode
m_uiStreamId = streamid; m_uiStreamId = streamid;
m_uiPid = 0; m_uiPid = 0;
m_eCodecIn = type; m_eCodecIn = type;
m_fPingMin = -1; m_RTMin = -1;
m_fPingMax = -1; m_RTMax = -1;
m_fPingSum = 0; m_RTSum = 0;
m_fPingCount = 0; m_RTCount = 0;
m_uiTotalPackets = 0; m_uiTotalPackets = 0;
m_uiTimeoutPackets = 0;
m_PacketStream = PacketStream; m_PacketStream = PacketStream;
m_TCReader = reader; m_TCReader = reader;
InitCodecStream(); InitCodecStream();
@ -55,20 +54,16 @@ CCodecStream::~CCodecStream()
} }
// display stats // display stats
if (m_fPingMin >= 0.0) if (m_RTMin >= 0.0)
{ {
double min = m_fPingMin * 1000.0; double min = m_RTMin * 1000.0;
double max = m_fPingMax * 1000.0; double max = m_RTMax * 1000.0;
double ave = (m_fPingCount > 0) ? m_fPingSum / m_fPingCount * 1000.0 : 0.0; double ave = (m_RTCount > 0) ? m_RTSum / m_RTCount * 1000.0 : 0.0;
auto prec = std::cout.precision(); auto prec = std::cout.precision();
std::cout.precision(1); std::cout.precision(1);
std::cout << std::fixed << "Transcoder Stats (ms): " << min << "/" << ave << "/" << max << std::endl; std::cout << std::fixed << "Transcoder Stats (ms): " << min << "/" << ave << "/" << max << std::endl;
std::cout.precision(prec); std::cout.precision(prec);
} }
if (m_uiTimeoutPackets)
{
std::cout << m_uiTimeoutPackets << " of " << m_uiTotalPackets << " packets timed out" << std::endl;
}
} }
//////////////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////////////
@ -107,25 +102,22 @@ void CCodecStream::Task(void)
// any packet from transcoder // any packet from transcoder
if (m_TCReader->Receive(&pack, 5)) if (m_TCReader->Receive(&pack, 5))
{ {
// tickle
m_TimeoutTimer.start();
// update statistics // update statistics
double ping = m_StatsTimer.time(); double rt = pack.rt_timer.time();
if ( m_fPingMin == -1 ) if ( m_RTMin == -1 )
{ {
m_fPingMin = ping; m_RTMin = rt;
m_fPingMax = ping; m_RTMax = rt;
} }
else else
{ {
m_fPingMin = MIN(m_fPingMin, ping); m_RTMin = MIN(m_RTMin, rt);
m_fPingMax = MAX(m_fPingMax, ping); m_RTMax = MAX(m_RTMax, rt);
} }
m_fPingSum += ping; m_RTSum += rt;
m_fPingCount += 1; m_RTCount += 1;
if ( m_LocalQueue.empty() ) if ( m_LocalQueue.empty() )
{ {
@ -136,13 +128,19 @@ void CCodecStream::Task(void)
// pop the original packet // pop the original packet
auto Packet = m_LocalQueue.pop(); auto Packet = m_LocalQueue.pop();
auto Frame = (CDvFramePacket *)Packet.get(); auto Frame = (CDvFramePacket *)Packet.get();
// todo: check the PID
// do things look okay?
if (pack.sequence != Frame->GetCodecPacket()->sequence)
std::cerr << "Sequence mismatch: this voice frame=" << Frame->GetCodecPacket()->sequence << " returned transcoder packet=" << pack.sequence << std::endl;
if (pack.streamid != Frame->GetCodecPacket()->streamid)
std::cerr << std::hex << std::showbase << "StreamID mismatch: this voice frame=" << ntohs(Frame->GetCodecPacket()->streamid) << " returned transcoder packet=" << ntohs(pack.streamid) << std::dec << std::noshowbase << std::endl;
// update content with transcoded data // update content with transcoded data
Frame->SetCodecData(&pack); Frame->SetCodecData(&pack);
// mark the DStar sync frames if the source isn't dstar // mark the DStar sync frames if the source isn't dstar
if (ECodecType::dstar!=Frame->GetCodecIn() && 0==Frame->GetPacketId()%21) if (ECodecType::dstar!=Frame->GetCodecIn() && 0==Frame->GetPacketId()%21)
{ {
const uint8_t DStarSync[] = { 0x55,0x2D,0x16 }; const uint8_t DStarSync[] = { 0x55, 0x2D, 0x16 };
Frame->SetDvData(DStarSync); Frame->SetDvData(DStarSync);
} }
@ -163,25 +161,16 @@ void CCodecStream::Task(void)
auto Frame = (CDvFramePacket *)Packet.get(); auto Frame = (CDvFramePacket *)Packet.get();
// update important stuff in Frame->m_TCPack for the transcoder // update important stuff in Frame->m_TCPack for the transcoder
Frame->SetTCParams(); Frame->SetTCParams(m_uiTotalPackets);
// now send to transcoder // now send to transcoder
// this assume that thread pushing the Packet // this assume that thread pushing the Packet
// have verified that the CodecStream is connected // have verified that the CodecStream is connected
// and that the packet needs transcoding // and that the packet needs transcoding
m_StatsTimer.start();
m_uiTotalPackets++; m_uiTotalPackets++;
m_TCWriter.Send(Frame->GetCodecPacket()); m_TCWriter.Send(Frame->GetCodecPacket());
// and push to our local queue // and push to our local queue
m_LocalQueue.push(Packet); m_LocalQueue.push(Packet);
} }
// handle timeout
if ( !m_LocalQueue.empty() && (m_TimeoutTimer.time() >= (TRANSCODER_AMBEPACKET_TIMEOUT/1000.0f)) )
{
//std::cout << "transcoder packet timeout" << std::endl;
m_uiTimeoutPackets++;
m_TimeoutTimer.start();
}
} }

@ -63,14 +63,11 @@ protected:
// thread // thread
std::atomic<bool> keep_running; std::atomic<bool> keep_running;
std::future<void> m_Future; std::future<void> m_Future;
CTimer m_TimeoutTimer;
CTimer m_StatsTimer;
// statistics // statistics
double m_fPingMin; double m_RTMin;
double m_fPingMax; double m_RTMax;
double m_fPingSum; double m_RTSum;
double m_fPingCount; double m_RTCount;
uint32_t m_uiTotalPackets; uint32_t m_uiTotalPackets;
uint32_t m_uiTimeoutPackets;
}; };

@ -147,12 +147,14 @@ void CDvFramePacket::SetCodecData(const STCPacket *pack)
memcpy(&m_TCPack, pack, sizeof(STCPacket)); memcpy(&m_TCPack, pack, sizeof(STCPacket));
} }
void CDvFramePacket::SetTCParams() void CDvFramePacket::SetTCParams(uint32_t seq)
{ {
m_TCPack.sequence = seq;
m_TCPack.streamid = m_uiStreamId; m_TCPack.streamid = m_uiStreamId;
m_TCPack.is_second = m_bIsSecond; m_TCPack.is_second = m_bIsSecond;
m_TCPack.is_last = m_bLastPacket; m_TCPack.is_last = m_bLastPacket;
m_TCPack.module = m_cModule; m_TCPack.module = m_cModule;
m_TCPack.rt_timer.start();
} }
//////////////////////////////////////////////////////////////////////////////////////// ////////////////////////////////////////////////////////////////////////////////////////

@ -67,7 +67,7 @@ public:
// set // set
void SetDvData(const uint8_t *); void SetDvData(const uint8_t *);
void SetCodecData(const STCPacket *pack); void SetCodecData(const STCPacket *pack);
void SetTCParams(void); void SetTCParams(uint32_t seq);
// operators // operators
bool operator ==(const CDvFramePacket &) const; bool operator ==(const CDvFramePacket &) const;

@ -76,7 +76,7 @@ void CM17Protocol::Task(void)
// xrf needs a voice frame every 20 ms and an M17 frame is 40 ms, so we need a duplicate // xrf needs a voice frame every 20 ms and an M17 frame is 40 ms, so we need a duplicate
auto secondFrame = std::unique_ptr<CDvFramePacket>(new CDvFramePacket(*Frame.get())); auto secondFrame = std::unique_ptr<CDvFramePacket>(new CDvFramePacket(*Frame.get()));
// This is a "first" packet, so clear the last packet status, since the real last packet it the secondFrame // This is not a second packet, so clear the last packet status, since the real last packet it the secondFrame
if (Frame->IsLastPacket()) if (Frame->IsLastPacket())
Frame->SetLastPacket(false); Frame->SetLastPacket(false);

@ -17,6 +17,8 @@
#include <cstdint> #include <cstdint>
#include "Timer.h"
// unix socket names // unix socket names
#define TC2REF "TC2URFMod" #define TC2REF "TC2URFMod"
#define REF2TC "URF2TC" #define REF2TC "URF2TC"
@ -24,6 +26,8 @@
enum class ECodecType : std::uint8_t { none = 0, dstar = 1, dmr = 2, c2_1600 = 3, c2_3200 = 4 }; enum class ECodecType : std::uint8_t { none = 0, dstar = 1, dmr = 2, c2_1600 = 3, c2_3200 = 4 };
using STCPacket = struct tcpacket_tag { using STCPacket = struct tcpacket_tag {
CTimer rt_timer;
uint32_t sequence;
char module; char module;
bool is_second, is_last; bool is_second, is_last;
uint16_t streamid; uint16_t streamid;

Loading…
Cancel
Save

Powered by TurnKey Linux.