Some steam networking accuracy improvements.
parent
968cd6d601
commit
51a5e3bc27
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@ -85,7 +85,7 @@ message Network {
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enum Types {
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enum Types {
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DATA = 0;
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DATA = 0;
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CLEAR_BEFORE = 1;
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NEW_CONNECTION = 1;
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}
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}
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Types type = 3;
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Types type = 3;
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@ -19,6 +19,7 @@
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//packet timeout in seconds for non connections
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//packet timeout in seconds for non connections
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#define ORPHANED_PACKET_TIMEOUT (20)
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#define ORPHANED_PACKET_TIMEOUT (20)
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#define NEW_CONNECTION_TIMEOUT (20.0)
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#define OLD_CHANNEL_NUMBER 1
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#define OLD_CHANNEL_NUMBER 1
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@ -72,6 +73,8 @@ public ISteamNetworking
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std::vector<struct steam_listen_socket> listen_sockets;
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std::vector<struct steam_listen_socket> listen_sockets;
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std::vector<struct steam_connection_socket> connection_sockets;
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std::vector<struct steam_connection_socket> connection_sockets;
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std::map<CSteamID, std::chrono::high_resolution_clock::time_point> new_connection_times;
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bool connection_exists(CSteamID id)
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bool connection_exists(CSteamID id)
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{
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{
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return std::find_if(connections.begin(), connections.end(), [&id](struct Steam_Networking_Connection const& conn) { return conn.remote == id;}) != connections.end();
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return std::find_if(connections.begin(), connections.end(), [&id](struct Steam_Networking_Connection const& conn) { return conn.remote == id;}) != connections.end();
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@ -248,7 +251,7 @@ bool SendP2PPacket( CSteamID steamIDRemote, const void *pubData, uint32 cubData,
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msg.set_allocated_network(new Network);
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msg.set_allocated_network(new Network);
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if (!connection_exists(steamIDRemote)) {
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if (!connection_exists(steamIDRemote)) {
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msg.mutable_network()->set_type(Network::CLEAR_BEFORE);
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msg.mutable_network()->set_type(Network::NEW_CONNECTION);
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network->sendTo(&msg, true);
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network->sendTo(&msg, true);
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}
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}
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@ -257,6 +260,8 @@ bool SendP2PPacket( CSteamID steamIDRemote, const void *pubData, uint32 cubData,
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msg.mutable_network()->set_type(Network::DATA);
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msg.mutable_network()->set_type(Network::DATA);
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struct Steam_Networking_Connection *conn = get_or_create_connection(steamIDRemote);
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struct Steam_Networking_Connection *conn = get_or_create_connection(steamIDRemote);
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new_connection_times.erase(steamIDRemote);
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conn->open_channels.insert(nChannel);
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conn->open_channels.insert(nChannel);
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bool ret = network->sendTo(&msg, reliable);
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bool ret = network->sendTo(&msg, reliable);
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PRINT_DEBUG("Sent message with size: %zu %u\n", msg.network().data().size(), ret);
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PRINT_DEBUG("Sent message with size: %zu %u\n", msg.network().data().size(), ret);
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@ -289,6 +294,7 @@ bool IsP2PPacketAvailable( uint32 *pcubMsgSize, int nChannel)
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}
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}
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PRINT_DEBUG("Not available\n");
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PRINT_DEBUG("Not available\n");
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if (pcubMsgSize) *pcubMsgSize = 0;
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return false;
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return false;
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}
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}
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@ -335,6 +341,8 @@ bool ReadP2PPacket( void *pubDest, uint32 cubDest, uint32 *pcubMsgSize, CSteamID
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++msg;
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++msg;
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}
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}
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if (pcubMsgSize) *pcubMsgSize = 0;
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if (psteamIDRemote) *psteamIDRemote = k_steamIDNil;
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return false;
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return false;
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}
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}
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@ -355,6 +363,7 @@ bool AcceptP2PSessionWithUser( CSteamID steamIDRemote )
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PRINT_DEBUG("Steam_Networking::AcceptP2PSessionWithUser %llu\n", steamIDRemote.ConvertToUint64());
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PRINT_DEBUG("Steam_Networking::AcceptP2PSessionWithUser %llu\n", steamIDRemote.ConvertToUint64());
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std::lock_guard<std::recursive_mutex> lock(global_mutex);
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std::lock_guard<std::recursive_mutex> lock(global_mutex);
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struct Steam_Networking_Connection *conn = get_or_create_connection(steamIDRemote);
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struct Steam_Networking_Connection *conn = get_or_create_connection(steamIDRemote);
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if (conn) new_connection_times.erase(steamIDRemote);
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return !!conn;
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return !!conn;
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}
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}
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@ -591,7 +600,11 @@ bool IsDataAvailableOnSocket( SNetSocket_t hSocket, uint32 *pcubMsgSize )
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PRINT_DEBUG("Steam_Networking::IsDataAvailableOnSocket\n");
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PRINT_DEBUG("Steam_Networking::IsDataAvailableOnSocket\n");
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std::lock_guard<std::recursive_mutex> lock(global_mutex);
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std::lock_guard<std::recursive_mutex> lock(global_mutex);
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struct steam_connection_socket *socket = get_connection_socket(hSocket);
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struct steam_connection_socket *socket = get_connection_socket(hSocket);
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if (!socket) return false;
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if (!socket) {
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if (pcubMsgSize) *pcubMsgSize = 0;
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return false;
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}
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if (socket->data_packets.size() == 0) return false;
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if (socket->data_packets.size() == 0) return false;
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if (pcubMsgSize) *pcubMsgSize = socket->data_packets[0].data().size();
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if (pcubMsgSize) *pcubMsgSize = socket->data_packets[0].data().size();
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return true;
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return true;
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@ -745,10 +758,13 @@ void RunCallbacks()
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CSteamID source_id((uint64)msg.source_id());
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CSteamID source_id((uint64)msg.source_id());
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if (!msg.network().processed()) {
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if (!msg.network().processed()) {
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if (!connection_exists(source_id)) {
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if (!connection_exists(source_id)) {
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if (new_connection_times.find(source_id) == new_connection_times.end()) {
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P2PSessionRequest_t data;
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P2PSessionRequest_t data;
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memset(&data, 0, sizeof(data));
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memset(&data, 0, sizeof(data));
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data.m_steamIDRemote = CSteamID(source_id);
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data.m_steamIDRemote = CSteamID(source_id);
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callbacks->addCBResult(data.k_iCallback, &data, sizeof(data), 0.1, true);
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callbacks->addCBResult(data.k_iCallback, &data, sizeof(data), 0.1);
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new_connection_times[source_id] = std::chrono::high_resolution_clock::now();
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}
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} else {
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} else {
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struct Steam_Networking_Connection *conn = get_or_create_connection(source_id);
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struct Steam_Networking_Connection *conn = get_or_create_connection(source_id);
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conn->open_channels.insert(msg.network().channel());
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conn->open_channels.insert(msg.network().channel());
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@ -779,13 +795,22 @@ void RunCallbacks()
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//TODO: not sure if sockets should be wiped right away
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//TODO: not sure if sockets should be wiped right away
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remove_killed_connection_sockets();
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remove_killed_connection_sockets();
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for(auto it = new_connection_times.begin(); it != new_connection_times.end(); ) {
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if (std::chrono::duration_cast<std::chrono::duration<double>>(std::chrono::high_resolution_clock::now() - it->second).count() > NEW_CONNECTION_TIMEOUT) {
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it = new_connection_times.erase(it);
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//TODO send packet to other side to tell them connection has "failed".
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} else {
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++it;
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}
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}
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}
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}
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void Callback(Common_Message *msg)
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void Callback(Common_Message *msg)
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{
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{
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if (msg->has_network()) {
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if (msg->has_network()) {
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#ifndef EMU_RELEASE_BUILD
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#ifndef EMU_RELEASE_BUILD
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PRINT_DEBUG("Steam_Networking: got msg from: %llu to: %llu size %zu | messages %p: %zu\n", msg->source_id(), msg->dest_id(), msg->network().data().size(), &messages, messages.size());
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PRINT_DEBUG("Steam_Networking: got msg from: %llu to: %llu size %zu type %u | messages %p: %zu\n", msg->source_id(), msg->dest_id(), msg->network().data().size(), msg->network().type(), &messages, messages.size());
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for (int i = 0; i < msg->network().data().size(); ++i) {
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for (int i = 0; i < msg->network().data().size(); ++i) {
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PRINT_DEBUG("%02hhX", msg->network().data().data()[i]);
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PRINT_DEBUG("%02hhX", msg->network().data().data()[i]);
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}PRINT_DEBUG("\n");
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}PRINT_DEBUG("\n");
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@ -795,11 +820,11 @@ void Callback(Common_Message *msg)
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messages.push_back(Common_Message(*msg));
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messages.push_back(Common_Message(*msg));
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}
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}
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if (msg->network().type() == Network::CLEAR_BEFORE) {
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if (msg->network().type() == Network::NEW_CONNECTION) {
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auto msg_temp = std::begin(messages);
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auto msg_temp = std::begin(messages);
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while (msg_temp != std::end(messages)) {
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while (msg_temp != std::end(messages)) {
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//only delete processed to handle unreliable message arriving at the same time.
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//only delete processed to handle unreliable message arriving at the same time.
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if (msg_temp->source_id() == msg->source_id() && msg->network().processed()) {
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if (msg_temp->source_id() == msg->source_id() && msg_temp->network().processed()) {
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msg_temp = messages.erase(msg_temp);
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msg_temp = messages.erase(msg_temp);
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} else {
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} else {
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++msg_temp;
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++msg_temp;
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