mirror of
https://github.com/danog/libtgvoip.git
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159 lines
5.2 KiB
C++
159 lines
5.2 KiB
C++
#include "../../VoIPController.h"
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using namespace tgvoip;
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#pragma mark - Bandwidth management
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double VoIPController::GetAverageRTT()
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{
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ENFORCE_MSG_THREAD;
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PacketManager &pm = getBestPacketManager();
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if (pm.getLastSentSeq() >= pm.getLastAckedSeq())
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{
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uint32_t diff = pm.getLastSentSeq() - pm.getLastAckedSeq();
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//LOGV("rtt diff=%u", diff);
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if (diff < 32)
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{
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double res = 0;
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size_t count = 0;
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for (const auto &packet : pm.getRecentOutgoingPackets())
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{
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if (packet.rttTime)
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{
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res += packet.rttTime;
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count++;
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}
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}
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if (count)
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res /= count;
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return res;
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}
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}
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return 999;
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}
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void VoIPController::SetNetworkType(int type)
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{
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networkType = type;
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UpdateDataSavingState();
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UpdateAudioBitrateLimit();
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myIPv6 = NetworkAddress::Empty();
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string itfName = udpSocket->GetLocalInterfaceInfo(NULL, &myIPv6);
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LOGI("set network type: %s, active interface %s", NetworkTypeToString(type).c_str(), itfName.c_str());
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LOGI("Local IPv6 address: %s", myIPv6.ToString().c_str());
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if (IS_MOBILE_NETWORK(networkType))
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{
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CellularCarrierInfo carrier = GetCarrierInfo();
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if (!carrier.name.empty())
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{
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LOGI("Carrier: %s [%s; mcc=%s, mnc=%s]", carrier.name.c_str(), carrier.countryCode.c_str(), carrier.mcc.c_str(), carrier.mnc.c_str());
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}
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}
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if (itfName != activeNetItfName)
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{
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udpSocket->OnActiveInterfaceChanged();
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LOGI("Active network interface changed: %s -> %s", activeNetItfName.c_str(), itfName.c_str());
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bool isFirstChange = activeNetItfName.length() == 0 && state != STATE_ESTABLISHED && state != STATE_RECONNECTING;
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activeNetItfName = itfName;
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if (isFirstChange)
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return;
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messageThread.Post([this] {
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wasNetworkHandover = true;
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if (currentEndpoint)
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{
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const Endpoint &_currentEndpoint = endpoints.at(currentEndpoint);
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const Endpoint &_preferredRelay = endpoints.at(preferredRelay);
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if (_currentEndpoint.type != Endpoint::Type::UDP_RELAY)
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{
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if (_preferredRelay.type == Endpoint::Type::UDP_RELAY)
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currentEndpoint = preferredRelay;
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MutexGuard m(endpointsMutex);
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endpoints.erase(Endpoint::ID::LANv4);
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for (pair<const int64_t, Endpoint> &e : endpoints)
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{
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Endpoint &endpoint = e.second;
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if (endpoint.type == Endpoint::Type::UDP_RELAY && useTCP)
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{
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useTCP = false;
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if (_preferredRelay.type == Endpoint::Type::TCP_RELAY)
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{
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preferredRelay = currentEndpoint = endpoint.id;
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}
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}
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else if (endpoint.type == Endpoint::Type::TCP_RELAY && endpoint.socket)
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{
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endpoint.socket->Close();
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}
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endpoint.averageRTT = 0;
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endpoint.rtts.Reset();
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}
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}
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}
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lastUdpPingTime = 0;
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if (proxyProtocol == PROXY_SOCKS5)
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InitUDPProxy();
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if (allowP2p && currentEndpoint)
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{
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SendPublicEndpointsRequest();
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}
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SendDataSavingMode();
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needReInitUdpProxy = true;
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selectCanceller->CancelSelect();
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didSendIPv6Endpoint = false;
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AddIPv6Relays();
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ResetUdpAvailability();
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ResetEndpointPingStats();
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});
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}
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}
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void VoIPController::UpdateAudioBitrateLimit()
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{
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if (encoder)
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{
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if (dataSavingMode || dataSavingRequestedByPeer)
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{
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maxBitrate = maxAudioBitrateSaving;
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encoder->SetBitrate(initAudioBitrateSaving);
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}
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else if (networkType == NET_TYPE_GPRS)
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{
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maxBitrate = maxAudioBitrateGPRS;
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encoder->SetBitrate(initAudioBitrateGPRS);
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}
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else if (networkType == NET_TYPE_EDGE)
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{
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maxBitrate = maxAudioBitrateEDGE;
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encoder->SetBitrate(initAudioBitrateEDGE);
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}
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else
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{
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maxBitrate = maxAudioBitrate;
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encoder->SetBitrate(initAudioBitrate);
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}
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encoder->SetVadMode(dataSavingMode || dataSavingRequestedByPeer);
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if (echoCanceller)
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echoCanceller->SetVoiceDetectionEnabled(dataSavingMode || dataSavingRequestedByPeer);
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}
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}
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void VoIPController::UpdateDataSavingState()
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{
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if (config.dataSaving == DATA_SAVING_ALWAYS)
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{
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dataSavingMode = true;
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}
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else if (config.dataSaving == DATA_SAVING_MOBILE)
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{
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dataSavingMode = IS_MOBILE_NETWORK(networkType);
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}
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else
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{
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dataSavingMode = false;
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}
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LOGI("update data saving mode, config %d, enabled %d, reqd by peer %d", config.dataSaving, dataSavingMode, dataSavingRequestedByPeer);
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}
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