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531 lines
16 KiB
531 lines
16 KiB
// Copyright © 2015 Jean-Luc Deltombe (LX3JL). All rights reserved.
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// urfd -- The universal reflector
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// Copyright © 2021 Thomas A. Early N7TAE
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// Copyright © 2021 Doug McLain AD8DP
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <https://www.gnu.org/licenses/>.
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#include <string.h>
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#include "P25Client.h"
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#include "P25Protocol.h"
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#include "Global.h"
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const uint8_t REC62[] = {0x62U, 0x02U, 0x02U, 0x0CU, 0x0BU, 0x12U, 0x64U, 0x00U, 0x00U, 0x80U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U,0x00U, 0x00U, 0x00U, 0x00U, 0x00U};
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const uint8_t REC63[] = {0x63U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC64[] = {0x64U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC65[] = {0x65U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC66[] = {0x66U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC67[] = {0x67U, 0xF0U, 0x9DU, 0x6AU, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC68[] = {0x68U, 0x19U, 0xD4U, 0x26U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC69[] = {0x69U, 0xE0U, 0xEBU, 0x7BU, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC6A[] = {0x6AU, 0x00U, 0x00U, 0x02U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U};
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const uint8_t REC6B[] = {0x6BU, 0x02U, 0x02U, 0x0CU, 0x0BU, 0x12U, 0x64U, 0x00U, 0x00U, 0x80U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U,0x00U, 0x00U, 0x00U, 0x00U, 0x00U};
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const uint8_t REC6C[] = {0x6CU, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC6D[] = {0x6DU, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC6E[] = {0x6EU, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC6F[] = {0x6FU, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC70[] = {0x70U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC71[] = {0x71U, 0xACU, 0xB8U, 0xA4U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC72[] = {0x72U, 0x9BU, 0xDCU, 0x75U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x02U};
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const uint8_t REC73[] = {0x73U, 0x00U, 0x00U, 0x02U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U};
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const uint8_t REC80[] = {0x80U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U, 0x00U};
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////////////////////////////////////////////////////////////////////////////////////////
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// operation
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bool CP25Protocol::Initialize(const char *type, const EProtocol ptype, const uint16_t port, const bool has_ipv4, const bool has_ipv6)
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{
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// config data
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m_ReflectorId = g_Configure.GetUnsigned(g_Keys.p25.reflectorid);
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m_DefaultId = g_Configure.GetUnsigned(g_Keys.mmdvm.defaultid);
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m_AutolinkModule = g_Configure.GetAutolinkModule(g_Keys.p25.autolinkmod);
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m_uiStreamId = 0;
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// base class
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if (! CProtocol::Initialize(type, ptype, port, has_ipv4, has_ipv6))
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return false;
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// update time
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m_LastKeepaliveTime.start();
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// done
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return true;
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}
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////////////////////////////////////////////////////////////////////////////////////////
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// task
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void CP25Protocol::Task(void)
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{
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CBuffer Buffer;
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CIp Ip;
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CCallsign Callsign;
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char ToLinkModule;
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std::unique_ptr<CDvHeaderPacket> Header;
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std::unique_ptr<CDvFramePacket> Frame;
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// handle incoming packets
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#if P25_IPV6==true
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#if P25_IPV4==true
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if ( ReceiveDS(Buffer, Ip, 20) )
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#else
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if ( Receive6(Buffer, Ip, 20) )
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#endif
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#else
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if ( Receive4(Buffer, Ip, 20) )
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#endif
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{
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// crack the packet
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if ( IsValidDvPacket(Ip, Buffer, Frame) )
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{
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if( !m_uiStreamId && IsValidDvHeaderPacket(Ip, Buffer, Header) )
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{
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// callsign muted?
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if ( g_GateKeeper.MayTransmit(Header->GetMyCallsign(), Ip, EProtocol::p25) )
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{
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OnDvHeaderPacketIn(Header, Ip);
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}
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}
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// push the packet
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OnDvFramePacketIn(Frame, &Ip);
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}
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else if ( IsValidConnectPacket(Buffer, &Callsign) )
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{
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// callsign authorized?
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if ( g_GateKeeper.MayLink(Callsign, Ip, EProtocol::p25) )
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{
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// add client if needed
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CClients *clients = g_Reflector.GetClients();
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std::shared_ptr<CClient>client = clients->FindClient(Callsign, Ip, EProtocol::p25);
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// client already connected ?
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if ( client == nullptr )
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{
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std::cout << "P25 connect packet from " << Callsign << " at " << Ip << std::endl;
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// create the client
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auto newclient = std::make_shared<CP25Client>(Callsign, Ip);
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// aautolink, if enabled
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if (' ' != m_AutolinkModule)
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newclient->SetReflectorModule(m_AutolinkModule);
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// and append
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clients->AddClient(newclient);
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}
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else
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{
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client->Alive();
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}
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// acknowledge the request -- P25Reflector simply echoes the packet
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Send(Buffer, Ip);
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// and done
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g_Reflector.ReleaseClients();
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}
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}
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else if ( IsValidDisconnectPacket(Buffer, &Callsign) )
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{
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std::cout << "P25 disconnect packet from " << Callsign << " at " << Ip << std::endl;
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// find client
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CClients *clients = g_Reflector.GetClients();
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std::shared_ptr<CClient>client = clients->FindClient(Ip, EProtocol::p25);
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if ( client != nullptr )
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{
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// remove it
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clients->RemoveClient(client);
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}
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g_Reflector.ReleaseClients();
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}
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else
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{
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// invalid packet
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std::string title("Unknown P25 packet from ");
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title += Ip.GetAddress();
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Buffer.Dump(title);
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}
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}
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// handle end of streaming timeout
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CheckStreamsTimeout();
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// handle queue from reflector
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HandleQueue();
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// keep client alive
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if ( m_LastKeepaliveTime.time() > P25_KEEPALIVE_PERIOD )
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{
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//
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HandleKeepalives();
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// update time
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m_LastKeepaliveTime.start();
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}
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}
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////////////////////////////////////////////////////////////////////////////////////////
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// streams helpers
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void CP25Protocol::OnDvHeaderPacketIn(std::unique_ptr<CDvHeaderPacket> &Header, const CIp &Ip)
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{
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// find the stream
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auto stream = GetStream(Header->GetStreamId(), &Ip);
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if ( stream )
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{
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// stream already open
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// skip packet, but tickle the stream
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stream->Tickle();
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}
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else
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{
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// no stream open yet, open a new one
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CCallsign my(Header->GetMyCallsign());
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CCallsign rpt1(Header->GetRpt1Callsign());
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CCallsign rpt2(Header->GetRpt2Callsign());
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// find this client
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std::shared_ptr<CClient>client = g_Reflector.GetClients()->FindClient(Ip, EProtocol::p25);
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if ( client )
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{
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// get client callsign
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rpt1 = client->GetCallsign();
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auto m = client->GetReflectorModule();
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Header->SetRpt2Module(m);
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rpt2.SetCSModule(m);
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// and try to open the stream
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if ( (stream = g_Reflector.OpenStream(Header, client)) != nullptr )
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{
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// keep the handle
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m_Streams[stream->GetStreamId()] = stream;
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}
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}
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// release
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g_Reflector.ReleaseClients();
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// update last heard
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g_Reflector.GetUsers()->Hearing(my, rpt1, rpt2);
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g_Reflector.ReleaseUsers();
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}
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}
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////////////////////////////////////////////////////////////////////////////////////////
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// queue helper
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void CP25Protocol::HandleQueue(void)
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{
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while (! m_Queue.IsEmpty())
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{
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// get the packet
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auto packet = m_Queue.Pop();
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// get our sender's id
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const auto module = packet->GetPacketModule();
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// check if it's header and update cache
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if ( packet->IsDvHeader() )
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{
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// this relies on queue feeder setting valid module id
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// m_StreamsCache[module] will be created if it doesn't exist
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m_StreamsCache[module].m_dvHeader = CDvHeaderPacket((const CDvHeaderPacket &)*packet.get());
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m_StreamsCache[module].m_iSeqCounter = 0;
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}
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else
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{
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// encode it
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CBuffer buffer;
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if ( packet->IsDvFrame() )
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{
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EncodeP25Packet(m_StreamsCache[module].m_dvHeader, (const CDvFramePacket &)*packet.get(), m_StreamsCache[module].m_iSeqCounter++, buffer, packet->IsLastPacket());
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}
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// send it
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if ( buffer.size() > 0 )
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{
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// and push it to all our clients linked to the module and who are not streaming in
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CClients *clients = g_Reflector.GetClients();
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auto it = clients->begin();
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std::shared_ptr<CClient>client = nullptr;
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while ( (client = clients->FindNextClient(EProtocol::p25, it)) != nullptr )
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{
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// is this client busy ?
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if ( !client->IsAMaster() && (client->GetReflectorModule() == module) )
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{
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// no, send the packet
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Send(buffer, client->GetIp());
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}
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}
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g_Reflector.ReleaseClients();
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}
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}
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}
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}
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////////////////////////////////////////////////////////////////////////////////////////
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// packet decoding helpers
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bool CP25Protocol::IsValidConnectPacket(const CBuffer &Buffer, CCallsign *callsign)
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{
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bool valid = false;
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if ( (Buffer.size() == 11) && (Buffer.data()[0] == 0xF0) )
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{
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callsign->SetCallsign(Buffer.data()+1, 10);
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valid = (callsign->IsValid());
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}
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return valid;
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}
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bool CP25Protocol::IsValidDisconnectPacket(const CBuffer &Buffer, CCallsign *callsign)
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{
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bool valid = false;
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if ( (Buffer.size() == 11) && (Buffer.data()[0] == 0xF1) )
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{
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callsign->SetCallsign(Buffer.data()+1, 10);
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valid = (callsign->IsValid());
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}
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return valid;
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}
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bool CP25Protocol::IsValidDvPacket(const CIp &Ip, const CBuffer &Buffer, std::unique_ptr<CDvFramePacket> &frame)
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{
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if ( (Buffer.size() >= 14) )
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{
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int offset = 0;
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bool last = false;
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switch (Buffer.data()[0U]) {
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case 0x62U:
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offset = 10U;
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break;
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case 0x63U:
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offset = 1U;
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break;
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case 0x64U:
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offset = 5U;
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break;
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case 0x65U:
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offset = 5U;
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break;
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case 0x66U:
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offset = 5U;
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break;
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case 0x67U:
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case 0x68U:
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case 0x69U:
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offset = 5U;
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break;
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case 0x6AU:
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offset = 4U;
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break;
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case 0x6BU:
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offset = 10U;
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break;
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case 0x6CU:
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offset = 1U;
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break;
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case 0x6DU:
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case 0x6EU:
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case 0x6FU:
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case 0x70U:
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case 0x71U:
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case 0x72U:
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offset = 5U;
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break;
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case 0x73U:
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offset = 4U;
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break;
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case 0x80U:
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last = true;
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m_uiStreamId = 0;
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break;
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default:
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break;
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}
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frame = std::unique_ptr<CDvFramePacket>(new CDvFramePacket(&(Buffer.data()[offset]), m_uiStreamId, last));
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return true;
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}
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return false;
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}
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bool CP25Protocol::IsValidDvHeaderPacket(const CIp &Ip, const CBuffer &Buffer, std::unique_ptr<CDvHeaderPacket> &header)
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{
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if(Buffer.data()[0] == 0x66){
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auto stream = GetStream(m_uiStreamId, &Ip);
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if ( !stream )
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{
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uint32_t uiSrcId = ((Buffer.data()[1] << 16) | ((Buffer.data()[2] << 8) & 0xff00) | (Buffer.data()[3] & 0xff));
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m_uiStreamId = static_cast<uint32_t>(::rand());
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CCallsign csMY = CCallsign("", uiSrcId);
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CCallsign rpt1 = CCallsign("", uiSrcId);
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CCallsign rpt2 = m_ReflectorCallsign;
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rpt1.SetCSModule(P25_MODULE_ID);
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rpt2.SetCSModule(' ');
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header = std::unique_ptr<CDvHeaderPacket>(new CDvHeaderPacket(csMY, CCallsign("CQCQCQ"), rpt1, rpt2, m_uiStreamId, false));
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}
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return true;
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}
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return false;
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}
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void CP25Protocol::EncodeP25Packet(const CDvHeaderPacket &Header, const CDvFramePacket &DvFrame, uint32_t iSeq, CBuffer &Buffer, bool islast) const
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{
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uint32_t uiSrcId = Header.GetMyCallsign().GetDmrid();
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if(uiSrcId == 0){
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uiSrcId = m_DefaultId;
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}
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if(islast)
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{
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Buffer.resize(17);
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::memcpy(Buffer.data(), REC80, 17U);
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return;
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}
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switch (iSeq % 18) {
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case 0x00U:
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Buffer.resize(22);
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::memcpy(Buffer.data(), REC62, 22U);
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::memcpy(Buffer.data() + 10U, DvFrame.GetCodecData(ECodecType::p25), 11U);
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break;
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case 0x01U:
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Buffer.resize(14);
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::memcpy(Buffer.data(), REC63, 14U);
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::memcpy(Buffer.data() + 1U, DvFrame.GetCodecData(ECodecType::p25), 11U);
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break;
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case 0x02U:
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Buffer.resize(17);
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::memcpy(Buffer.data(), REC64, 17U);
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::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
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break;
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case 0x03U:
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Buffer.resize(17);
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::memcpy(Buffer.data(), REC65, 17U);
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::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
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Buffer.data()[1U] = (m_ReflectorId >> 16) & 0xFFU;
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Buffer.data()[2U] = (m_ReflectorId >> 8) & 0xFFU;
|
|
Buffer.data()[3U] = (m_ReflectorId >> 0) & 0xFFU;
|
|
break;
|
|
case 0x04U:
|
|
Buffer.resize(17);
|
|
::memcpy(Buffer.data(), REC66, 17U);
|
|
::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
Buffer.data()[1U] = (uiSrcId >> 16) & 0xFFU;
|
|
Buffer.data()[2U] = (uiSrcId >> 8) & 0xFFU;
|
|
Buffer.data()[3U] = (uiSrcId >> 0) & 0xFFU;
|
|
break;
|
|
case 0x05U:
|
|
Buffer.resize(17);
|
|
::memcpy(Buffer.data(), REC67, 17U);
|
|
::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x06U:
|
|
Buffer.resize(17);
|
|
::memcpy(Buffer.data(), REC68, 17U);
|
|
::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x07U:
|
|
Buffer.resize(17);
|
|
::memcpy(Buffer.data(), REC69, 17U);
|
|
::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x08U:
|
|
Buffer.resize(16);
|
|
::memcpy(Buffer.data(), REC6A, 16U);
|
|
::memcpy(Buffer.data() + 4U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x09U:
|
|
Buffer.resize(22);
|
|
::memcpy(Buffer.data(), REC6B, 22U);
|
|
::memcpy(Buffer.data() + 10U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x0AU:
|
|
Buffer.resize(14);
|
|
::memcpy(Buffer.data(), REC6C, 14U);
|
|
::memcpy(Buffer.data() + 1U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x0BU:
|
|
Buffer.resize(17);
|
|
::memcpy(Buffer.data(), REC6D, 17U);
|
|
::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x0CU:
|
|
Buffer.resize(17);
|
|
::memcpy(Buffer.data(), REC6E, 17U);
|
|
::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x0DU:
|
|
Buffer.resize(17);
|
|
::memcpy(Buffer.data(), REC6F, 17U);
|
|
::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x0EU:
|
|
Buffer.resize(17);
|
|
::memcpy(Buffer.data(), REC70, 17U);
|
|
::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x0FU:
|
|
Buffer.resize(17);
|
|
::memcpy(Buffer.data(), REC71, 17U);
|
|
::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x10U:
|
|
Buffer.resize(17);
|
|
::memcpy(Buffer.data(), REC72, 17U);
|
|
::memcpy(Buffer.data() + 5U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
case 0x11U:
|
|
Buffer.resize(16);
|
|
::memcpy(Buffer.data(), REC73, 16U);
|
|
::memcpy(Buffer.data() + 4U, DvFrame.GetCodecData(ECodecType::p25), 11U);
|
|
break;
|
|
}
|
|
}
|
|
|
|
////////////////////////////////////////////////////////////////////////////////////////
|
|
// keepalive helpers
|
|
|
|
void CP25Protocol::HandleKeepalives(void)
|
|
{
|
|
// iterate on clients
|
|
CClients *clients = g_Reflector.GetClients();
|
|
auto it = clients->begin();
|
|
std::shared_ptr<CClient>client = nullptr;
|
|
while ( (client = clients->FindNextClient(EProtocol::p25, it)) != nullptr )
|
|
{
|
|
// is this client busy ?
|
|
if ( client->IsAMaster() )
|
|
{
|
|
// yes, just tickle it
|
|
client->Alive();
|
|
}
|
|
// check it's still with us
|
|
else if ( !client->IsAlive() )
|
|
{
|
|
// no, remove it
|
|
std::cout << "P25 client " << client->GetCallsign() << " keepalive timeout" << std::endl;
|
|
clients->RemoveClient(client);
|
|
}
|
|
|
|
}
|
|
g_Reflector.ReleaseClients();
|
|
}
|