MMDVMHost-Private/MMDVMHost.cpp

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/*
* Copyright (C) 2015-2021 by Jonathan Naylor G4KLX
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*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 2 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
*/
#include "MMDVMHost.h"
#include "DMRDirectNetwork.h"
#include "DMRGatewayNetwork.h"
#include "NXDNKenwoodNetwork.h"
#include "NXDNIcomNetwork.h"
#include "RSSIInterpolator.h"
#include "NullController.h"
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#include "UARTController.h"
#if defined(__linux__)
#include "I2CController.h"
#endif
#include "UDPController.h"
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#include "Version.h"
#include "StopWatch.h"
#include "Defines.h"
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#include "Thread.h"
#include "Log.h"
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#include "GitVersion.h"
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#include <cstdio>
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#include <vector>
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#include <cstdlib>
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#if !defined(_WIN32) && !defined(_WIN64)
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#include <sys/types.h>
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#include <unistd.h>
#include <signal.h>
#include <fcntl.h>
#include <pwd.h>
#endif
#if defined(_WIN32) || defined(_WIN64)
const char* DEFAULT_INI_FILE = "MMDVM.ini";
#else
const char* DEFAULT_INI_FILE = "/etc/MMDVM.ini";
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#endif
static bool m_killed = false;
static int m_signal = 0;
static bool m_reload = false;
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#if !defined(_WIN32) && !defined(_WIN64)
static void sigHandler1(int signum)
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{
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m_killed = true;
m_signal = signum;
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}
static void sigHandler2(int signum)
{
m_reload = true;
}
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#endif
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const char* HEADER1 = "This software is for use on amateur radio networks only,";
const char* HEADER2 = "it is to be used for educational purposes only. Its use on";
const char* HEADER3 = "commercial networks is strictly prohibited.";
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const char* HEADER4 = "Copyright(C) 2015-2020 by Jonathan Naylor, G4KLX and others";
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int main(int argc, char** argv)
{
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const char* iniFile = DEFAULT_INI_FILE;
if (argc > 1) {
for (int currentArg = 1; currentArg < argc; ++currentArg) {
std::string arg = argv[currentArg];
if ((arg == "-v") || (arg == "--version")) {
::fprintf(stdout, "MMDVMHost version %s git #%.7s\n", VERSION, gitversion);
return 0;
} else if (arg.substr(0,1) == "-") {
::fprintf(stderr, "Usage: MMDVMHost [-v|--version] [filename]\n");
return 1;
} else {
iniFile = argv[currentArg];
}
}
}
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#if !defined(_WIN32) && !defined(_WIN64)
::signal(SIGINT, sigHandler1);
::signal(SIGTERM, sigHandler1);
::signal(SIGHUP, sigHandler1);
::signal(SIGUSR1, sigHandler2);
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#endif
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int ret = 0;
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do {
m_signal = 0;
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CMMDVMHost* host = new CMMDVMHost(std::string(iniFile));
ret = host->run();
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delete host;
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if (m_signal == 2)
::LogInfo("MMDVMHost-%s exited on receipt of SIGINT", VERSION);
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if (m_signal == 15)
::LogInfo("MMDVMHost-%s exited on receipt of SIGTERM", VERSION);
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if (m_signal == 1)
::LogInfo("MMDVMHost-%s is restarting on receipt of SIGHUP", VERSION);
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} while (m_signal == 1);
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::LogFinalise();
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return ret;
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}
CMMDVMHost::CMMDVMHost(const std::string& confFile) :
m_conf(confFile),
m_modem(NULL),
m_dstar(NULL),
m_dmr(NULL),
m_ysf(NULL),
m_p25(NULL),
m_nxdn(NULL),
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m_m17(NULL),
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m_pocsag(NULL),
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m_fm(NULL),
m_ax25(NULL),
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m_dstarNetwork(NULL),
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m_dmrNetwork(NULL),
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m_ysfNetwork(NULL),
m_p25Network(NULL),
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m_nxdnNetwork(NULL),
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m_m17Network(NULL),
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m_pocsagNetwork(NULL),
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m_fmNetwork(NULL),
m_ax25Network(NULL),
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m_display(NULL),
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m_mode(MODE_IDLE),
m_dstarRFModeHang(10U),
m_dmrRFModeHang(10U),
m_ysfRFModeHang(10U),
m_p25RFModeHang(10U),
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m_nxdnRFModeHang(10U),
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m_m17RFModeHang(10U),
m_fmRFModeHang(10U),
m_dstarNetModeHang(3U),
m_dmrNetModeHang(3U),
m_ysfNetModeHang(3U),
m_p25NetModeHang(3U),
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m_nxdnNetModeHang(3U),
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m_m17NetModeHang(3U),
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m_pocsagNetModeHang(3U),
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m_fmNetModeHang(3U),
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m_modeTimer(1000U),
m_dmrTXTimer(1000U),
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m_cwIdTimer(1000U),
m_duplex(false),
m_timeout(180U),
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m_dstarEnabled(false),
m_dmrEnabled(false),
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m_ysfEnabled(false),
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m_p25Enabled(false),
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m_nxdnEnabled(false),
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m_m17Enabled(false),
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m_pocsagEnabled(false),
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m_fmEnabled(false),
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m_ax25Enabled(false),
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m_cwIdTime(0U),
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m_dmrLookup(NULL),
m_nxdnLookup(NULL),
m_callsign(),
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m_id(0U),
m_cwCallsign(),
m_lockFileEnabled(false),
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m_lockFileName(),
m_remoteControl(NULL),
m_fixedMode(false)
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{
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CUDPSocket::startup();
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}
CMMDVMHost::~CMMDVMHost()
{
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CUDPSocket::shutdown();
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}
int CMMDVMHost::run()
{
bool ret = m_conf.read();
if (!ret) {
::fprintf(stderr, "MMDVMHost: cannot read the .ini file\n");
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return 1;
}
#if !defined(_WIN32) && !defined(_WIN64)
bool m_daemon = m_conf.getDaemon();
if (m_daemon) {
// Create new process
pid_t pid = ::fork();
if (pid == -1) {
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::fprintf(stderr, "Couldn't fork() , exiting\n");
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return -1;
} else if (pid != 0) {
exit(EXIT_SUCCESS);
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}
// Create new session and process group
if (::setsid() == -1){
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::fprintf(stderr, "Couldn't setsid(), exiting\n");
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return -1;
}
// Set the working directory to the root directory
if (::chdir("/") == -1){
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::fprintf(stderr, "Couldn't cd /, exiting\n");
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return -1;
}
#if !defined(HD44780) && !defined(OLED) && !defined(_OPENWRT)
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// If we are currently root...
if (getuid() == 0) {
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struct passwd* user = ::getpwnam("mmdvm");
if (user == NULL) {
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::fprintf(stderr, "Could not get the mmdvm user, exiting\n");
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return -1;
}
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uid_t mmdvm_uid = user->pw_uid;
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gid_t mmdvm_gid = user->pw_gid;
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// Set user and group ID's to mmdvm:mmdvm
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if (::setgid(mmdvm_gid) != 0) {
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::fprintf(stderr, "Could not set mmdvm GID, exiting\n");
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return -1;
}
if (::setuid(mmdvm_uid) != 0) {
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::fprintf(stderr, "Could not set mmdvm UID, exiting\n");
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return -1;
}
// Double check it worked (AKA Paranoia)
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if (::setuid(0) != -1){
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::fprintf(stderr, "It's possible to regain root - something is wrong!, exiting\n");
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return -1;
}
}
}
#else
::fprintf(stderr, "Dropping root permissions in daemon mode is disabled.\n");
}
#endif
#endif
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#if !defined(_WIN32) && !defined(_WIN64)
ret = ::LogInitialise(m_daemon, m_conf.getLogFilePath(), m_conf.getLogFileRoot(), m_conf.getLogFileLevel(), m_conf.getLogDisplayLevel(), m_conf.getLogFileRotate());
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#else
ret = ::LogInitialise(false, m_conf.getLogFilePath(), m_conf.getLogFileRoot(), m_conf.getLogFileLevel(), m_conf.getLogDisplayLevel(), m_conf.getLogFileRotate());
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#endif
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if (!ret) {
::fprintf(stderr, "MMDVMHost: unable to open the log file\n");
return 1;
}
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#if !defined(_WIN32) && !defined(_WIN64)
if (m_daemon) {
::close(STDIN_FILENO);
::close(STDOUT_FILENO);
}
#endif
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LogInfo(HEADER1);
LogInfo(HEADER2);
LogInfo(HEADER3);
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LogInfo(HEADER4);
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LogMessage("MMDVMHost-%s is starting", VERSION);
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LogMessage("Built %s %s (GitID #%.7s)", __TIME__, __DATE__, gitversion);
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readParams();
ret = createModem();
if (!ret)
return 1;
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m_display = CDisplay::createDisplay(m_conf, m_modem);
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if (m_dstarEnabled && m_conf.getDStarNetworkEnabled()) {
ret = createDStarNetwork();
if (!ret)
return 1;
}
if (m_dmrEnabled && m_conf.getDMRNetworkEnabled()) {
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ret = createDMRNetwork();
if (!ret)
return 1;
}
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if (m_ysfEnabled && m_conf.getFusionNetworkEnabled()) {
ret = createYSFNetwork();
if (!ret)
return 1;
}
if (m_p25Enabled && m_conf.getP25NetworkEnabled()) {
ret = createP25Network();
if (!ret)
return 1;
}
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if (m_nxdnEnabled && m_conf.getNXDNNetworkEnabled()) {
ret = createNXDNNetwork();
if (!ret)
return 1;
}
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if (m_m17Enabled && m_conf.getM17NetworkEnabled()) {
ret = createM17Network();
if (!ret)
return 1;
}
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if (m_pocsagEnabled && m_conf.getPOCSAGNetworkEnabled()) {
ret = createPOCSAGNetwork();
if (!ret)
return 1;
}
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if (m_fmEnabled && m_conf.getFMNetworkEnabled()) {
ret = createFMNetwork();
if (!ret)
return 1;
}
if (m_ax25Enabled && m_conf.getAX25NetworkEnabled()) {
ret = createAX25Network();
if (!ret)
return 1;
}
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sockaddr_storage transparentAddress;
unsigned int transparentAddrLen;
CUDPSocket* transparentSocket = NULL;
unsigned int sendFrameType = 0U;
if (m_conf.getTransparentEnabled()) {
std::string remoteAddress = m_conf.getTransparentRemoteAddress();
unsigned int remotePort = m_conf.getTransparentRemotePort();
unsigned int localPort = m_conf.getTransparentLocalPort();
sendFrameType = m_conf.getTransparentSendFrameType();
LogInfo("Transparent Data");
LogInfo(" Remote Address: %s", remoteAddress.c_str());
LogInfo(" Remote Port: %u", remotePort);
LogInfo(" Local Port: %u", localPort);
LogInfo(" Send Frame Type: %u", sendFrameType);
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if (CUDPSocket::lookup(remoteAddress, remotePort, transparentAddress, transparentAddrLen) != 0) {
LogError("Unable to resolve the address of the Transparent Data source");
return 1;
}
transparentSocket = new CUDPSocket(localPort);
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ret = transparentSocket->open(transparentAddress);
if (!ret) {
LogWarning("Could not open the Transparent data socket, disabling");
delete transparentSocket;
transparentSocket = NULL;
sendFrameType=0;
}
m_modem->setTransparentDataParams(sendFrameType);
}
if (m_conf.getLockFileEnabled()) {
m_lockFileEnabled = true;
m_lockFileName = m_conf.getLockFileName();
LogInfo("Lock File Parameters");
LogInfo(" Name: %s", m_lockFileName.c_str());
removeLockFile();
}
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if (m_conf.getCWIdEnabled()) {
unsigned int time = m_conf.getCWIdTime();
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m_cwCallsign = m_conf.getCWIdCallsign();
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LogInfo("CW Id Parameters");
LogInfo(" Time: %u mins", time);
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LogInfo(" Callsign: %s", m_cwCallsign.c_str());
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m_cwIdTime = time * 60U;
m_cwIdTimer.setTimeout(m_cwIdTime / 4U);
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m_cwIdTimer.start();
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}
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// For all modes we handle RSSI
std::string rssiMappingFile = m_conf.getModemRSSIMappingFile();
CRSSIInterpolator* rssi = new CRSSIInterpolator;
if (!rssiMappingFile.empty()) {
LogInfo("RSSI");
LogInfo(" Mapping File: %s", rssiMappingFile.c_str());
rssi->load(rssiMappingFile);
}
// For DMR and P25 we try to map IDs to callsigns
if (m_dmrEnabled || m_p25Enabled) {
std::string lookupFile = m_conf.getDMRIdLookupFile();
unsigned int reloadTime = m_conf.getDMRIdLookupTime();
LogInfo("DMR Id Lookups");
LogInfo(" File: %s", lookupFile.length() > 0U ? lookupFile.c_str() : "None");
if (reloadTime > 0U)
LogInfo(" Reload: %u hours", reloadTime);
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m_dmrLookup = new CDMRLookup(lookupFile, reloadTime);
m_dmrLookup->read();
}
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CStopWatch stopWatch;
stopWatch.start();
if (m_dstarEnabled) {
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std::string module = m_conf.getDStarModule();
bool selfOnly = m_conf.getDStarSelfOnly();
std::vector<std::string> blackList = m_conf.getDStarBlackList();
std::vector<std::string> whiteList = m_conf.getDStarWhiteList();
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bool ackReply = m_conf.getDStarAckReply();
unsigned int ackTime = m_conf.getDStarAckTime();
bool ackMessage = m_conf.getDStarAckMessage();
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bool errorReply = m_conf.getDStarErrorReply();
bool remoteGateway = m_conf.getDStarRemoteGateway();
m_dstarRFModeHang = m_conf.getDStarModeHang();
LogInfo("D-Star RF Parameters");
LogInfo(" Module: %s", module.c_str());
LogInfo(" Self Only: %s", selfOnly ? "yes" : "no");
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LogInfo(" Ack Reply: %s", ackReply ? "yes" : "no");
LogInfo(" Ack message: %s", ackMessage ? "RSSI" : "BER");
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LogInfo(" Ack Time: %ums", ackTime);
LogInfo(" Error Reply: %s", errorReply ? "yes" : "no");
LogInfo(" Remote Gateway: %s", remoteGateway ? "yes" : "no");
LogInfo(" Mode Hang: %us", m_dstarRFModeHang);
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if (blackList.size() > 0U)
LogInfo(" Black List: %u", blackList.size());
if (whiteList.size() > 0U)
LogInfo(" White List: %u", whiteList.size());
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m_dstar = new CDStarControl(m_callsign, module, selfOnly, ackReply, ackTime, ackMessage, errorReply, blackList, whiteList, m_dstarNetwork, m_display, m_timeout, m_duplex, remoteGateway, rssi);
}
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DMR_BEACONS dmrBeacons = DMR_BEACONS_OFF;
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CTimer dmrBeaconIntervalTimer(1000U);
CTimer dmrBeaconDurationTimer(1000U);
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if (m_dmrEnabled) {
unsigned int id = m_conf.getDMRId();
unsigned int colorCode = m_conf.getDMRColorCode();
bool selfOnly = m_conf.getDMRSelfOnly();
bool embeddedLCOnly = m_conf.getDMREmbeddedLCOnly();
bool dumpTAData = m_conf.getDMRDumpTAData();
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std::vector<unsigned int> prefixes = m_conf.getDMRPrefixes();
std::vector<unsigned int> blackList = m_conf.getDMRBlackList();
std::vector<unsigned int> whiteList = m_conf.getDMRWhiteList();
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std::vector<unsigned int> slot1TGWhiteList = m_conf.getDMRSlot1TGWhiteList();
std::vector<unsigned int> slot2TGWhiteList = m_conf.getDMRSlot2TGWhiteList();
unsigned int callHang = m_conf.getDMRCallHang();
unsigned int txHang = m_conf.getDMRTXHang();
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unsigned int jitter = m_conf.getDMRNetworkJitter();
m_dmrRFModeHang = m_conf.getDMRModeHang();
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dmrBeacons = m_conf.getDMRBeacons();
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DMR_OVCM_TYPES ovcm = m_conf.getDMROVCM();
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if (txHang > m_dmrRFModeHang)
txHang = m_dmrRFModeHang;
if (m_conf.getDMRNetworkEnabled()) {
if (txHang > m_dmrNetModeHang)
txHang = m_dmrNetModeHang;
}
if (callHang > txHang)
callHang = txHang;
LogInfo("DMR RF Parameters");
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LogInfo(" Id: %u", id);
LogInfo(" Color Code: %u", colorCode);
LogInfo(" Self Only: %s", selfOnly ? "yes" : "no");
LogInfo(" Embedded LC Only: %s", embeddedLCOnly ? "yes" : "no");
LogInfo(" Dump Talker Alias Data: %s", dumpTAData ? "yes" : "no");
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LogInfo(" Prefixes: %u", prefixes.size());
if (blackList.size() > 0U)
LogInfo(" Source ID Black List: %u", blackList.size());
if (whiteList.size() > 0U)
LogInfo(" Source ID White List: %u", whiteList.size());
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if (slot1TGWhiteList.size() > 0U)
LogInfo(" Slot 1 TG White List: %u", slot1TGWhiteList.size());
if (slot2TGWhiteList.size() > 0U)
LogInfo(" Slot 2 TG White List: %u", slot2TGWhiteList.size());
LogInfo(" Call Hang: %us", callHang);
LogInfo(" TX Hang: %us", txHang);
LogInfo(" Mode Hang: %us", m_dmrRFModeHang);
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if (ovcm == DMR_OVCM_OFF)
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LogInfo(" OVCM: off");
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else if (ovcm == DMR_OVCM_RX_ON)
LogInfo(" OVCM: on(rx only)");
else if (ovcm == DMR_OVCM_TX_ON)
LogInfo(" OVCM: on(tx only)");
else if (ovcm == DMR_OVCM_ON)
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LogInfo(" OVCM: on");
else if (ovcm == DMR_OVCM_FORCE_OFF)
LogInfo(" OVCM: off (forced)");
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switch (dmrBeacons) {
case DMR_BEACONS_NETWORK: {
unsigned int dmrBeaconDuration = m_conf.getDMRBeaconDuration();
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LogInfo(" DMR Roaming Beacons Type: network");
LogInfo(" DMR Roaming Beacons Duration: %us", dmrBeaconDuration);
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dmrBeaconDurationTimer.setTimeout(dmrBeaconDuration);
}
break;
case DMR_BEACONS_TIMED: {
unsigned int dmrBeaconInterval = m_conf.getDMRBeaconInterval();
unsigned int dmrBeaconDuration = m_conf.getDMRBeaconDuration();
LogInfo(" DMR Roaming Beacons Type: timed");
LogInfo(" DMR Roaming Beacons Interval: %us", dmrBeaconInterval);
LogInfo(" DMR Roaming Beacons Duration: %us", dmrBeaconDuration);
dmrBeaconDurationTimer.setTimeout(dmrBeaconDuration);
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dmrBeaconIntervalTimer.setTimeout(dmrBeaconInterval);
dmrBeaconIntervalTimer.start();
}
break;
default:
LogInfo(" DMR Roaming Beacons Type: off");
break;
2018-01-15 19:22:01 +00:00
}
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m_dmr = new CDMRControl(id, colorCode, callHang, selfOnly, embeddedLCOnly, dumpTAData, prefixes, blackList, whiteList, slot1TGWhiteList, slot2TGWhiteList, m_timeout, m_modem, m_dmrNetwork, m_display, m_duplex, m_dmrLookup, rssi, jitter, ovcm);
m_dmrTXTimer.setTimeout(txHang);
2016-01-14 18:45:04 +00:00
}
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if (m_ysfEnabled) {
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bool lowDeviation = m_conf.getFusionLowDeviation();
bool remoteGateway = m_conf.getFusionRemoteGateway();
unsigned int txHang = m_conf.getFusionTXHang();
bool selfOnly = m_conf.getFusionSelfOnly();
m_ysfRFModeHang = m_conf.getFusionModeHang();
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LogInfo("YSF RF Parameters");
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LogInfo(" Low Deviation: %s", lowDeviation ? "yes" : "no");
LogInfo(" Remote Gateway: %s", remoteGateway ? "yes" : "no");
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LogInfo(" TX Hang: %us", txHang);
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LogInfo(" Self Only: %s", selfOnly ? "yes" : "no");
LogInfo(" Mode Hang: %us", m_ysfRFModeHang);
2016-08-09 19:05:35 +00:00
m_ysf = new CYSFControl(m_callsign, selfOnly, m_ysfNetwork, m_display, m_timeout, m_duplex, lowDeviation, remoteGateway, rssi);
2016-08-09 19:05:35 +00:00
}
2016-01-14 18:45:04 +00:00
if (m_p25Enabled) {
unsigned int id = m_conf.getP25Id();
unsigned int nac = m_conf.getP25NAC();
unsigned int txHang = m_conf.getP25TXHang();
bool uidOverride = m_conf.getP25OverrideUID();
bool selfOnly = m_conf.getP25SelfOnly();
bool remoteGateway = m_conf.getP25RemoteGateway();
m_p25RFModeHang = m_conf.getP25ModeHang();
LogInfo("P25 RF Parameters");
LogInfo(" Id: %u", id);
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LogInfo(" NAC: $%03X", nac);
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LogInfo(" UID Override: %s", uidOverride ? "yes" : "no");
LogInfo(" Self Only: %s", selfOnly ? "yes" : "no");
LogInfo(" Remote Gateway: %s", remoteGateway ? "yes" : "no");
LogInfo(" TX Hang: %us", txHang);
LogInfo(" Mode Hang: %us", m_p25RFModeHang);
m_p25 = new CP25Control(nac, id, selfOnly, uidOverride, m_p25Network, m_display, m_timeout, m_duplex, m_dmrLookup, remoteGateway, rssi);
}
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if (m_nxdnEnabled) {
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std::string lookupFile = m_conf.getNXDNIdLookupFile();
unsigned int reloadTime = m_conf.getNXDNIdLookupTime();
LogInfo("NXDN Id Lookups");
LogInfo(" File: %s", lookupFile.length() > 0U ? lookupFile.c_str() : "None");
if (reloadTime > 0U)
LogInfo(" Reload: %u hours", reloadTime);
m_nxdnLookup = new CNXDNLookup(lookupFile, reloadTime);
m_nxdnLookup->read();
unsigned int id = m_conf.getNXDNId();
unsigned int ran = m_conf.getNXDNRAN();
bool selfOnly = m_conf.getNXDNSelfOnly();
bool remoteGateway = m_conf.getNXDNRemoteGateway();
unsigned int txHang = m_conf.getNXDNTXHang();
m_nxdnRFModeHang = m_conf.getNXDNModeHang();
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LogInfo("NXDN RF Parameters");
LogInfo(" Id: %u", id);
LogInfo(" RAN: %u", ran);
LogInfo(" Self Only: %s", selfOnly ? "yes" : "no");
LogInfo(" Remote Gateway: %s", remoteGateway ? "yes" : "no");
LogInfo(" TX Hang: %us", txHang);
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LogInfo(" Mode Hang: %us", m_nxdnRFModeHang);
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m_nxdn = new CNXDNControl(ran, id, selfOnly, m_nxdnNetwork, m_display, m_timeout, m_duplex, remoteGateway, m_nxdnLookup, rssi);
2018-01-11 19:35:33 +00:00
}
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if (m_m17Enabled) {
bool selfOnly = m_conf.getM17SelfOnly();
unsigned int can = m_conf.getM17CAN();
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bool allowEncryption = m_conf.getM17AllowEncryption();
unsigned int txHang = m_conf.getM17TXHang();
m_m17RFModeHang = m_conf.getM17ModeHang();
LogInfo("M17 RF Parameters");
LogInfo(" Self Only: %s", selfOnly ? "yes" : "no");
LogInfo(" CAN: %u", can);
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LogInfo(" Allow Encryption: %s", allowEncryption ? "yes" : "no");
LogInfo(" TX Hang: %us", txHang);
LogInfo(" Mode Hang: %us", m_m17RFModeHang);
m_m17 = new CM17Control(m_callsign, can, selfOnly, allowEncryption, m_m17Network, m_display, m_timeout, m_duplex, rssi);
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}
CTimer pocsagTimer(1000U, 30U);
if (m_pocsagEnabled) {
unsigned int frequency = m_conf.getPOCSAGFrequency();
LogInfo("POCSAG RF Parameters");
LogInfo(" Frequency: %uHz", frequency);
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m_pocsag = new CPOCSAGControl(m_pocsagNetwork, m_display);
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if (m_pocsagNetwork != NULL)
pocsagTimer.start();
}
2018-06-07 17:46:03 +00:00
2020-12-15 16:21:07 +00:00
if (m_ax25Enabled) {
unsigned int txDelay = m_conf.getAX25TXDelay();
int rxTwist = m_conf.getAX25RXTwist();
unsigned int slotTime = m_conf.getAX25SlotTime();
unsigned int pPersist = m_conf.getAX25PPersist();
bool trace = m_conf.getAX25Trace();
LogInfo("AX.25 RF Parameters");
LogInfo(" TX Delay: %ums", txDelay);
LogInfo(" RX Twist: %d", rxTwist);
LogInfo(" Slot Time: %ums", slotTime);
LogInfo(" P-Persist: %u", pPersist);
LogInfo(" Trace: %s", trace ? "yes" : "no");
m_ax25 = new CAX25Control(m_ax25Network, trace);
}
if (m_fmEnabled) {
bool preEmphasis = m_conf.getFMPreEmphasis();
bool deEmphasis = m_conf.getFMDeEmphasis();
float txAudioGain = m_conf.getFMTXAudioGain();
float rxAudioGain = m_conf.getFMRXAudioGain();
m_fmRFModeHang = m_conf.getFMModeHang();
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m_fm = new CFMControl(m_fmNetwork, txAudioGain, rxAudioGain, preEmphasis, deEmphasis);
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}
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bool remoteControlEnabled = m_conf.getRemoteControlEnabled();
if (remoteControlEnabled) {
std::string address = m_conf.getRemoteControlAddress();
unsigned int port = m_conf.getRemoteControlPort();
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LogInfo("Remote Control Parameters");
LogInfo(" Address: %s", address.c_str());
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LogInfo(" Port: %u", port);
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m_remoteControl = new CRemoteControl(this, address, port);
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ret = m_remoteControl->open();
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if (!ret) {
delete m_remoteControl;
m_remoteControl = NULL;
2019-01-07 11:03:37 +00:00
}
}
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setMode(MODE_IDLE);
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LogMessage("MMDVMHost-%s is running", VERSION);
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while (!m_killed) {
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bool lockout = m_modem->hasLockout();
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if (lockout && m_mode != MODE_LOCKOUT)
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setMode(MODE_LOCKOUT);
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else if (!lockout && m_mode == MODE_LOCKOUT)
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setMode(MODE_IDLE);
2016-03-21 22:47:58 +00:00
bool error = m_modem->hasError();
if (error && m_mode != MODE_ERROR)
setMode(MODE_ERROR);
else if (!error && m_mode == MODE_ERROR)
setMode(MODE_IDLE);
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unsigned char data[500U];
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unsigned int len;
bool ret;
len = m_modem->readDStarData(data);
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if (m_dstar != NULL && len > 0U) {
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if (m_mode == MODE_IDLE) {
bool ret = m_dstar->writeModem(data, len);
if (ret) {
m_modeTimer.setTimeout(m_dstarRFModeHang);
2016-02-02 18:17:36 +00:00
setMode(MODE_DSTAR);
}
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} else if (m_mode == MODE_DSTAR) {
m_dstar->writeModem(data, len);
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m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("D-Star modem data received when in mode %u", m_mode);
2016-01-14 18:45:04 +00:00
}
}
len = m_modem->readDMRData1(data);
if (m_dmr != NULL && len > 0U) {
2016-02-02 18:17:36 +00:00
if (m_mode == MODE_IDLE) {
if (m_duplex) {
bool ret = m_dmr->processWakeup(data);
if (ret) {
m_modeTimer.setTimeout(m_dmrRFModeHang);
setMode(MODE_DMR);
2018-01-16 18:35:29 +00:00
dmrBeaconDurationTimer.stop();
}
} else {
m_modeTimer.setTimeout(m_dmrRFModeHang);
2016-02-02 18:17:36 +00:00
setMode(MODE_DMR);
m_dmr->writeModemSlot1(data, len);
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dmrBeaconDurationTimer.stop();
}
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} else if (m_mode == MODE_DMR) {
if (m_duplex && !m_modem->hasTX()) {
bool ret = m_dmr->processWakeup(data);
if (ret) {
m_modem->writeDMRStart(true);
m_dmrTXTimer.start();
}
} else {
bool ret = m_dmr->writeModemSlot1(data, len);
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if (ret) {
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dmrBeaconDurationTimer.stop();
2017-03-12 19:06:47 +00:00
m_modeTimer.start();
if (m_duplex)
m_dmrTXTimer.start();
}
}
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("DMR modem data received when in mode %u", m_mode);
2016-01-14 18:45:04 +00:00
}
}
len = m_modem->readDMRData2(data);
if (m_dmr != NULL && len > 0U) {
2016-02-02 18:17:36 +00:00
if (m_mode == MODE_IDLE) {
if (m_duplex) {
bool ret = m_dmr->processWakeup(data);
if (ret) {
m_modeTimer.setTimeout(m_dmrRFModeHang);
setMode(MODE_DMR);
2018-01-16 18:35:29 +00:00
dmrBeaconDurationTimer.stop();
}
} else {
m_modeTimer.setTimeout(m_dmrRFModeHang);
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setMode(MODE_DMR);
m_dmr->writeModemSlot2(data, len);
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dmrBeaconDurationTimer.stop();
}
2016-02-02 18:17:36 +00:00
} else if (m_mode == MODE_DMR) {
if (m_duplex && !m_modem->hasTX()) {
bool ret = m_dmr->processWakeup(data);
if (ret) {
m_modem->writeDMRStart(true);
m_dmrTXTimer.start();
}
} else {
bool ret = m_dmr->writeModemSlot2(data, len);
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if (ret) {
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dmrBeaconDurationTimer.stop();
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m_modeTimer.start();
if (m_duplex)
m_dmrTXTimer.start();
}
}
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("DMR modem data received when in mode %u", m_mode);
2016-01-14 18:45:04 +00:00
}
}
len = m_modem->readYSFData(data);
if (m_ysf != NULL && len > 0U) {
2016-02-02 18:17:36 +00:00
if (m_mode == MODE_IDLE) {
bool ret = m_ysf->writeModem(data, len);
if (ret) {
m_modeTimer.setTimeout(m_ysfRFModeHang);
2016-02-02 18:17:36 +00:00
setMode(MODE_YSF);
}
2016-02-02 18:17:36 +00:00
} else if (m_mode == MODE_YSF) {
m_ysf->writeModem(data, len);
2016-02-02 18:17:36 +00:00
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("System Fusion modem data received when in mode %u", m_mode);
2016-01-14 18:45:04 +00:00
}
}
len = m_modem->readP25Data(data);
if (m_p25 != NULL && len > 0U) {
if (m_mode == MODE_IDLE) {
bool ret = m_p25->writeModem(data, len);
if (ret) {
m_modeTimer.setTimeout(m_p25RFModeHang);
setMode(MODE_P25);
}
} else if (m_mode == MODE_P25) {
m_p25->writeModem(data, len);
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("P25 modem data received when in mode %u", m_mode);
}
}
2018-01-11 19:35:33 +00:00
len = m_modem->readNXDNData(data);
if (m_nxdn != NULL && len > 0U) {
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if (m_mode == MODE_IDLE) {
bool ret = m_nxdn->writeModem(data, len);
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if (ret) {
m_modeTimer.setTimeout(m_nxdnRFModeHang);
setMode(MODE_NXDN);
}
} else if (m_mode == MODE_NXDN) {
m_nxdn->writeModem(data, len);
2018-01-11 19:35:33 +00:00
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("NXDN modem data received when in mode %u", m_mode);
}
}
2020-12-15 16:21:07 +00:00
len = m_modem->readM17Data(data);
if (m_m17 != NULL && len > 0U) {
if (m_mode == MODE_IDLE) {
bool ret = m_m17->writeModem(data, len);
if (ret) {
m_modeTimer.setTimeout(m_m17RFModeHang);
setMode(MODE_M17);
}
} else if (m_mode == MODE_M17) {
m_m17->writeModem(data, len);
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("M17 modem data received when in mode %u", m_mode);
}
}
len = m_modem->readFMData(data);
if (m_fm != NULL && len > 0U) {
if (m_mode == MODE_IDLE) {
bool ret = m_fm->writeModem(data, len);
if (ret) {
m_modeTimer.setTimeout(m_fmRFModeHang);
setMode(MODE_FM);
}
} else if (m_mode == MODE_FM) {
m_fm->writeModem(data, len);
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("FM modem data received when in mode %u", m_mode);
}
}
len = m_modem->readAX25Data(data);
if (m_ax25 != NULL && len > 0U) {
if (m_mode == MODE_IDLE || m_mode == MODE_FM) {
m_ax25->writeModem(data, len);
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("NXDN modem data received when in mode %u", m_mode);
}
}
len = m_modem->readTransparentData(data);
if (transparentSocket != NULL && len > 0U)
2020-03-27 20:40:35 +00:00
transparentSocket->write(data, len, transparentAddress, transparentAddrLen);
if (!m_fixedMode) {
if (m_modeTimer.isRunning() && m_modeTimer.hasExpired())
setMode(MODE_IDLE);
}
2016-01-14 18:45:04 +00:00
2019-01-10 21:50:57 +00:00
if (m_dstar != NULL) {
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ret = m_modem->hasDStarSpace();
2016-01-14 18:45:04 +00:00
if (ret) {
len = m_dstar->readModem(data);
if (len > 0U) {
if (m_mode == MODE_IDLE) {
m_modeTimer.setTimeout(m_dstarNetModeHang);
setMode(MODE_DSTAR);
}
if (m_mode == MODE_DSTAR) {
m_modem->writeDStarData(data, len);
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("D-Star data received when in mode %u", m_mode);
}
2016-01-14 18:45:04 +00:00
}
}
}
if (m_dmr != NULL) {
2016-01-14 18:45:04 +00:00
ret = m_modem->hasDMRSpace1();
if (ret) {
len = m_dmr->readModemSlot1(data);
if (len > 0U) {
if (m_mode == MODE_IDLE) {
m_modeTimer.setTimeout(m_dmrNetModeHang);
setMode(MODE_DMR);
}
if (m_mode == MODE_DMR) {
if (m_duplex) {
m_modem->writeDMRStart(true);
m_dmrTXTimer.start();
}
m_modem->writeDMRData1(data, len);
2018-01-16 18:35:29 +00:00
dmrBeaconDurationTimer.stop();
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("DMR data received when in mode %u", m_mode);
}
2016-01-14 18:45:04 +00:00
}
}
ret = m_modem->hasDMRSpace2();
if (ret) {
len = m_dmr->readModemSlot2(data);
if (len > 0U) {
if (m_mode == MODE_IDLE) {
m_modeTimer.setTimeout(m_dmrNetModeHang);
setMode(MODE_DMR);
}
if (m_mode == MODE_DMR) {
if (m_duplex) {
m_modem->writeDMRStart(true);
m_dmrTXTimer.start();
}
m_modem->writeDMRData2(data, len);
2018-01-16 18:35:29 +00:00
dmrBeaconDurationTimer.stop();
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("DMR data received when in mode %u", m_mode);
}
2016-01-14 18:45:04 +00:00
}
}
}
if (m_ysf != NULL) {
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ret = m_modem->hasYSFSpace();
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if (ret) {
len = m_ysf->readModem(data);
if (len > 0U) {
if (m_mode == MODE_IDLE) {
m_modeTimer.setTimeout(m_ysfNetModeHang);
setMode(MODE_YSF);
}
if (m_mode == MODE_YSF) {
m_modem->writeYSFData(data, len);
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("System Fusion data received when in mode %u", m_mode);
}
2016-01-14 18:45:04 +00:00
}
}
}
if (m_p25 != NULL) {
ret = m_modem->hasP25Space();
if (ret) {
len = m_p25->readModem(data);
if (len > 0U) {
if (m_mode == MODE_IDLE) {
m_modeTimer.setTimeout(m_p25NetModeHang);
setMode(MODE_P25);
}
if (m_mode == MODE_P25) {
m_modem->writeP25Data(data, len);
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("P25 data received when in mode %u", m_mode);
}
}
}
}
if (m_nxdn != NULL) {
2018-01-11 19:35:33 +00:00
ret = m_modem->hasNXDNSpace();
if (ret) {
len = m_nxdn->readModem(data);
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if (len > 0U) {
if (m_mode == MODE_IDLE) {
m_modeTimer.setTimeout(m_nxdnNetModeHang);
setMode(MODE_NXDN);
}
if (m_mode == MODE_NXDN) {
m_modem->writeNXDNData(data, len);
m_modeTimer.start();
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} else if (m_mode != MODE_LOCKOUT) {
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LogWarning("NXDN data received when in mode %u", m_mode);
}
}
}
}
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if (m_m17 != NULL) {
ret = m_modem->hasM17Space();
if (ret) {
len = m_m17->readModem(data);
if (len > 0U) {
if (m_mode == MODE_IDLE) {
m_modeTimer.setTimeout(m_m17NetModeHang);
setMode(MODE_M17);
}
if (m_mode == MODE_M17) {
m_modem->writeM17Data(data, len);
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("M17 data received when in mode %u", m_mode);
}
}
}
}
2019-01-10 14:03:23 +00:00
if (m_pocsag != NULL) {
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ret = m_modem->hasPOCSAGSpace();
if (ret) {
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len = m_pocsag->readModem(data);
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if (len > 0U) {
if (m_mode == MODE_IDLE) {
m_modeTimer.setTimeout(m_pocsagNetModeHang);
setMode(MODE_POCSAG);
}
if (m_mode == MODE_POCSAG) {
m_modem->writePOCSAGData(data, len);
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("POCSAG data received when in mode %u", m_mode);
}
}
}
}
2020-12-15 16:21:07 +00:00
if (m_fm != NULL) {
unsigned int space = m_modem->getFMSpace();
if (space > 0U) {
len = m_fm->readModem(data, space);
if (len > 0U) {
if (m_mode == MODE_IDLE) {
m_modeTimer.setTimeout(m_fmNetModeHang);
setMode(MODE_FM);
}
if (m_mode == MODE_FM) {
m_modem->writeFMData(data, len);
m_modeTimer.start();
} else if (m_mode != MODE_LOCKOUT) {
LogWarning("FM data received when in mode %u", m_mode);
}
}
}
}
if (m_ax25 != NULL) {
ret = m_modem->hasAX25Space();
if (ret) {
len = m_ax25->readModem(data);
if (len > 0U) {
if (m_mode == MODE_IDLE || m_mode == MODE_FM) {
m_modem->writeAX25Data(data, len);
}
else if (m_mode != MODE_LOCKOUT) {
LogWarning("AX.25 data received when in mode %u", m_mode);
}
}
}
}
if (transparentSocket != NULL) {
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sockaddr_storage address;
unsigned int addrlen;
len = transparentSocket->read(data, 200U, address, addrlen);
if (len > 0U)
m_modem->writeTransparentData(data, len);
}
remoteControl();
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unsigned int ms = stopWatch.elapsed();
stopWatch.start();
m_display->clock(ms);
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m_modem->clock(ms);
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if (!m_fixedMode)
m_modeTimer.clock(ms);
if (m_reload) {
if (m_dmrLookup != NULL)
m_dmrLookup->reload();
if (m_nxdnLookup != NULL)
m_nxdnLookup->reload();
m_reload = false;
}
if (m_dstar != NULL)
m_dstar->clock();
if (m_dmr != NULL)
m_dmr->clock();
if (m_ysf != NULL)
m_ysf->clock(ms);
if (m_p25 != NULL)
m_p25->clock(ms);
if (m_nxdn != NULL)
m_nxdn->clock(ms);
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if (m_m17 != NULL)
m_m17->clock(ms);
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if (m_pocsag != NULL)
m_pocsag->clock(ms);
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if (m_fm != NULL)
m_fm->clock(ms);
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if (m_dstarNetwork != NULL)
m_dstarNetwork->clock(ms);
if (m_dmrNetwork != NULL)
m_dmrNetwork->clock(ms);
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if (m_ysfNetwork != NULL)
m_ysfNetwork->clock(ms);
if (m_p25Network != NULL)
m_p25Network->clock(ms);
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if (m_nxdnNetwork != NULL)
m_nxdnNetwork->clock(ms);
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if (m_m17Network != NULL)
m_m17Network->clock(ms);
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if (m_pocsagNetwork != NULL)
m_pocsagNetwork->clock(ms);
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if (m_fmNetwork != NULL)
m_fmNetwork->clock(ms);
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m_cwIdTimer.clock(ms);
if (m_cwIdTimer.isRunning() && m_cwIdTimer.hasExpired()) {
if (!m_modem->hasTX()){
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LogDebug("sending CW ID");
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m_display->writeCW();
m_modem->sendCWId(m_cwCallsign);
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m_cwIdTimer.setTimeout(m_cwIdTime);
m_cwIdTimer.start();
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}
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}
switch (dmrBeacons) {
case DMR_BEACONS_TIMED:
dmrBeaconIntervalTimer.clock(ms);
if (dmrBeaconIntervalTimer.isRunning() && dmrBeaconIntervalTimer.hasExpired()) {
if ((m_mode == MODE_IDLE || m_mode == MODE_DMR) && !m_modem->hasTX()) {
if (!m_fixedMode && m_mode == MODE_IDLE)
setMode(MODE_DMR);
dmrBeaconIntervalTimer.start();
dmrBeaconDurationTimer.start();
}
}
break;
case DMR_BEACONS_NETWORK:
if (m_dmrNetwork != NULL) {
bool beacon = m_dmrNetwork->wantsBeacon();
if (beacon) {
if ((m_mode == MODE_IDLE || m_mode == MODE_DMR) && !m_modem->hasTX()) {
if (!m_fixedMode && m_mode == MODE_IDLE)
setMode(MODE_DMR);
dmrBeaconDurationTimer.start();
}
}
}
break;
default:
break;
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}
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dmrBeaconDurationTimer.clock(ms);
if (dmrBeaconDurationTimer.isRunning() && dmrBeaconDurationTimer.hasExpired()) {
if (!m_fixedMode)
setMode(MODE_IDLE);
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dmrBeaconDurationTimer.stop();
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}
m_dmrTXTimer.clock(ms);
if (m_dmrTXTimer.isRunning() && m_dmrTXTimer.hasExpired()) {
m_modem->writeDMRStart(false);
m_dmrTXTimer.stop();
}
pocsagTimer.clock(ms);
if (pocsagTimer.isRunning() && pocsagTimer.hasExpired()) {
assert(m_pocsagNetwork != NULL);
m_pocsagNetwork->enable(m_mode == MODE_IDLE || m_mode == MODE_POCSAG);
pocsagTimer.start();
}
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if (ms < 5U)
CThread::sleep(5U);
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}
setMode(MODE_QUIT);
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m_modem->close();
delete m_modem;
m_display->close();
delete m_display;
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if (m_dmrLookup != NULL)
m_dmrLookup->stop();
if (m_nxdnLookup != NULL)
m_nxdnLookup->stop();
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if (m_dstarNetwork != NULL) {
m_dstarNetwork->close();
delete m_dstarNetwork;
}
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if (m_dmrNetwork != NULL) {
m_dmrNetwork->close();
delete m_dmrNetwork;
}
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if (m_ysfNetwork != NULL) {
m_ysfNetwork->close();
delete m_ysfNetwork;
}
if (m_p25Network != NULL) {
m_p25Network->close();
delete m_p25Network;
}
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if (m_nxdnNetwork != NULL) {
m_nxdnNetwork->close();
delete m_nxdnNetwork;
}
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if (m_m17Network != NULL) {
m_m17Network->close();
delete m_m17Network;
}
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if (m_pocsagNetwork != NULL) {
m_pocsagNetwork->close();
delete m_pocsagNetwork;
}
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if (m_fmNetwork != NULL) {
m_fmNetwork->close();
delete m_fmNetwork;
}
if (m_ax25Network != NULL) {
m_ax25Network->close();
delete m_ax25Network;
}
if (transparentSocket != NULL) {
transparentSocket->close();
delete transparentSocket;
}
if (m_remoteControl != NULL) {
m_remoteControl->close();
delete m_remoteControl;
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}
delete m_dstar;
delete m_dmr;
delete m_ysf;
delete m_p25;
delete m_nxdn;
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delete m_m17;
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delete m_pocsag;
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delete m_fm;
delete m_ax25;
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return 0;
}
bool CMMDVMHost::createModem()
{
std::string protocol = m_conf.getModemProtocol();
std::string uartPort = m_conf.getModemUARTPort();
unsigned int uartSpeed = m_conf.getModemUARTSpeed();
std::string i2cPort = m_conf.getModemI2CPort();
unsigned int i2cAddress = m_conf.getModemI2CAddress();
std::string modemAddress = m_conf.getModemModemAddress();
unsigned int modemPort = m_conf.getModemModemPort();
unsigned int localPort = m_conf.getModemLocalPort();
bool rxInvert = m_conf.getModemRXInvert();
bool txInvert = m_conf.getModemTXInvert();
bool pttInvert = m_conf.getModemPTTInvert();
unsigned int txDelay = m_conf.getModemTXDelay();
unsigned int dmrDelay = m_conf.getModemDMRDelay();
float rxLevel = m_conf.getModemRXLevel();
float cwIdTXLevel = m_conf.getModemCWIdTXLevel();
float dstarTXLevel = m_conf.getModemDStarTXLevel();
float dmrTXLevel = m_conf.getModemDMRTXLevel();
float ysfTXLevel = m_conf.getModemYSFTXLevel();
float p25TXLevel = m_conf.getModemP25TXLevel();
float nxdnTXLevel = m_conf.getModemNXDNTXLevel();
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float m17TXLevel = m_conf.getModemM17TXLevel();
float pocsagTXLevel = m_conf.getModemPOCSAGTXLevel();
float fmTXLevel = m_conf.getModemFMTXLevel();
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float ax25TXLevel = m_conf.getModemAX25TXLevel();
bool trace = m_conf.getModemTrace();
bool debug = m_conf.getModemDebug();
unsigned int colorCode = m_conf.getDMRColorCode();
bool lowDeviation = m_conf.getFusionLowDeviation();
unsigned int ysfTXHang = m_conf.getFusionTXHang();
unsigned int p25TXHang = m_conf.getP25TXHang();
unsigned int nxdnTXHang = m_conf.getNXDNTXHang();
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unsigned int m17TXHang = m_conf.getM17TXHang();
unsigned int rxFrequency = m_conf.getRXFrequency();
unsigned int txFrequency = m_conf.getTXFrequency();
unsigned int pocsagFrequency = m_conf.getPOCSAGFrequency();
int rxOffset = m_conf.getModemRXOffset();
int txOffset = m_conf.getModemTXOffset();
int rxDCOffset = m_conf.getModemRXDCOffset();
int txDCOffset = m_conf.getModemTXDCOffset();
float rfLevel = m_conf.getModemRFLevel();
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int rxTwist = m_conf.getAX25RXTwist();
unsigned int ax25TXDelay = m_conf.getAX25TXDelay();
unsigned int ax25SlotTime = m_conf.getAX25SlotTime();
unsigned int ax25PPersist = m_conf.getAX25PPersist();
bool useCOSAsLockout = m_conf.getModemUseCOSAsLockout();
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LogInfo("Modem Parameters");
LogInfo(" Protocol: %s", protocol.c_str());
if (protocol == "uart") {
LogInfo(" UART Port: %s", uartPort.c_str());
LogInfo(" UART Speed: %u", uartSpeed);
} else if (protocol == "udp") {
LogInfo(" Modem Address: %s", modemAddress.c_str());
LogInfo(" Modem Port: %u", modemPort);
LogInfo(" Local Port: %u", localPort);
}
#if defined(__linux__)
else if (protocol == "i2c") {
LogInfo(" I2C Port: %s", i2cPort.c_str());
LogInfo(" I2C Address: %02X", i2cAddress);
}
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#endif
2016-01-14 18:45:04 +00:00
LogInfo(" RX Invert: %s", rxInvert ? "yes" : "no");
LogInfo(" TX Invert: %s", txInvert ? "yes" : "no");
LogInfo(" PTT Invert: %s", pttInvert ? "yes" : "no");
2016-03-17 18:12:14 +00:00
LogInfo(" TX Delay: %ums", txDelay);
LogInfo(" RX Offset: %dHz", rxOffset);
LogInfo(" TX Offset: %dHz", txOffset);
LogInfo(" RX DC Offset: %d", rxDCOffset);
LogInfo(" TX DC Offset: %d", txDCOffset);
LogInfo(" RF Level: %.1f%%", rfLevel);
LogInfo(" DMR Delay: %u (%.1fms)", dmrDelay, float(dmrDelay) * 0.0416666F);
LogInfo(" RX Level: %.1f%%", rxLevel);
LogInfo(" CW Id TX Level: %.1f%%", cwIdTXLevel);
LogInfo(" D-Star TX Level: %.1f%%", dstarTXLevel);
LogInfo(" DMR TX Level: %.1f%%", dmrTXLevel);
LogInfo(" YSF TX Level: %.1f%%", ysfTXLevel);
LogInfo(" P25 TX Level: %.1f%%", p25TXLevel);
2018-01-11 19:35:33 +00:00
LogInfo(" NXDN TX Level: %.1f%%", nxdnTXLevel);
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LogInfo(" M17 TX Level: %.1f%%", m17TXLevel);
2018-06-07 17:46:03 +00:00
LogInfo(" POCSAG TX Level: %.1f%%", pocsagTXLevel);
LogInfo(" FM TX Level: %.1f%%", fmTXLevel);
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LogInfo(" AX.25 TX Level: %.1f%%", ax25TXLevel);
LogInfo(" TX Frequency: %uHz (%uHz)", txFrequency, txFrequency + txOffset);
LogInfo(" Use COS as Lockout: %s", useCOSAsLockout ? "yes" : "no");
2016-01-14 18:45:04 +00:00
2021-02-17 21:36:47 +00:00
m_modem = new CModem(m_duplex, rxInvert, txInvert, pttInvert, txDelay, dmrDelay, useCOSAsLockout, trace, debug);
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IModemPort* port = NULL;
if (protocol == "uart")
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port = new CUARTController(uartPort, uartSpeed, true);
else if (protocol == "udp")
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port = new CUDPController(modemAddress, modemPort, localPort);
#if defined(__linux__)
else if (protocol == "i2c")
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port = new CI2CController(i2cPort, i2cAddress);
#endif
else if (protocol == "null")
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port = new CNullController;
else
return false;
2021-02-17 21:36:47 +00:00
m_modem->setPort(port);
2020-12-15 16:21:07 +00:00
m_modem->setModeParams(m_dstarEnabled, m_dmrEnabled, m_ysfEnabled, m_p25Enabled, m_nxdnEnabled, m_m17Enabled, m_pocsagEnabled, m_fmEnabled, m_ax25Enabled);
m_modem->setLevels(rxLevel, cwIdTXLevel, dstarTXLevel, dmrTXLevel, ysfTXLevel, p25TXLevel, nxdnTXLevel, m17TXLevel, pocsagTXLevel, fmTXLevel, ax25TXLevel);
m_modem->setRFParams(rxFrequency, rxOffset, txFrequency, txOffset, txDCOffset, rxDCOffset, rfLevel, pocsagFrequency);
m_modem->setDMRParams(colorCode);
m_modem->setYSFParams(lowDeviation, ysfTXHang);
m_modem->setP25Params(p25TXHang);
m_modem->setNXDNParams(nxdnTXHang);
2020-12-15 16:21:07 +00:00
m_modem->setM17Params(m17TXHang);
m_modem->setAX25Params(rxTwist, ax25TXDelay, ax25SlotTime, ax25PPersist);
2020-04-18 13:59:19 +00:00
if (m_fmEnabled) {
2020-12-15 16:21:07 +00:00
std::string callsign = m_conf.getFMCallsign();
unsigned int callsignSpeed = m_conf.getFMCallsignSpeed();
unsigned int callsignFrequency = m_conf.getFMCallsignFrequency();
unsigned int callsignTime = m_conf.getFMCallsignTime();
unsigned int callsignHoldoff = m_conf.getFMCallsignHoldoff();
float callsignHighLevel = m_conf.getFMCallsignHighLevel();
float callsignLowLevel = m_conf.getFMCallsignLowLevel();
bool callsignAtStart = m_conf.getFMCallsignAtStart();
bool callsignAtEnd = m_conf.getFMCallsignAtEnd();
bool callsignAtLatch = m_conf.getFMCallsignAtLatch();
std::string rfAck = m_conf.getFMRFAck();
unsigned int ackSpeed = m_conf.getFMAckSpeed();
unsigned int ackFrequency = m_conf.getFMAckFrequency();
unsigned int ackMinTime = m_conf.getFMAckMinTime();
unsigned int ackDelay = m_conf.getFMAckDelay();
float ackLevel = m_conf.getFMAckLevel();
unsigned int timeout = m_conf.getFMTimeout();
float timeoutLevel = m_conf.getFMTimeoutLevel();
float ctcssFrequency = m_conf.getFMCTCSSFrequency();
unsigned int ctcssHighThreshold = m_conf.getFMCTCSSHighThreshold();
unsigned int ctcssLowThreshold = m_conf.getFMCTCSSLowThreshold();
float ctcssLevel = m_conf.getFMCTCSSLevel();
unsigned int kerchunkTime = m_conf.getFMKerchunkTime();
unsigned int hangTime = m_conf.getFMHangTime();
unsigned int accessMode = m_conf.getFMAccessMode();
bool cosInvert = m_conf.getFMCOSInvert();
bool noiseSquelch = m_conf.getFMNoiseSquelch();
unsigned int squelchHighThreshold = m_conf.getFMSquelchHighThreshold();
unsigned int squelchLowThreshold = m_conf.getFMSquelchLowThreshold();
unsigned int rfAudioBoost = m_conf.getFMRFAudioBoost();
float maxDevLevel = m_conf.getFMMaxDevLevel();
unsigned int modeHangTime = m_conf.getFMModeHang();
2020-04-18 13:59:19 +00:00
LogInfo("FM Parameters");
LogInfo(" Callsign: %s", callsign.c_str());
LogInfo(" Callsign Speed: %uWPM", callsignSpeed);
LogInfo(" Callsign Frequency: %uHz", callsignFrequency);
LogInfo(" Callsign Time: %umins", callsignTime);
LogInfo(" Callsign Holdoff: 1/%u", callsignHoldoff);
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LogInfo(" Callsign High Level: %.1f%%", callsignHighLevel);
LogInfo(" Callsign Low Level: %.1f%%", callsignLowLevel);
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LogInfo(" Callsign At Start: %s", callsignAtStart ? "yes" : "no");
LogInfo(" Callsign At End: %s", callsignAtEnd ? "yes" : "no");
LogInfo(" Callsign At Latch: %s", callsignAtLatch ? "yes" : "no");
2020-04-18 13:59:19 +00:00
LogInfo(" RF Ack: %s", rfAck.c_str());
LogInfo(" Ack Speed: %uWPM", ackSpeed);
LogInfo(" Ack Frequency: %uHz", ackFrequency);
LogInfo(" Ack Min Time: %us", ackMinTime);
LogInfo(" Ack Delay: %ums", ackDelay);
LogInfo(" Ack Level: %.1f%%", ackLevel);
LogInfo(" Timeout: %us", timeout);
LogInfo(" Timeout Level: %.1f%%", timeoutLevel);
LogInfo(" CTCSS Frequency: %.1fHz", ctcssFrequency);
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LogInfo(" CTCSS High Threshold: %u", ctcssHighThreshold);
LogInfo(" CTCSS Low Threshold: %u", ctcssLowThreshold);
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LogInfo(" CTCSS Level: %.1f%%", ctcssLevel);
LogInfo(" Kerchunk Time: %us", kerchunkTime);
LogInfo(" Hang Time: %us", hangTime);
LogInfo(" Access Mode: %u", accessMode);
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LogInfo(" COS Invert: %s", cosInvert ? "yes" : "no");
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LogInfo(" Noise Squelch: %s", noiseSquelch ? "yes" : "no");
if (noiseSquelch) {
LogInfo(" Squelch High Threshold: %u", squelchHighThreshold);
LogInfo(" Squelch Low Threshold: %u", squelchLowThreshold);
}
2020-04-28 13:39:14 +00:00
LogInfo(" RF Audio Boost: x%u", rfAudioBoost);
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LogInfo(" Max. Deviation Level: %.1f%%", maxDevLevel);
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LogInfo(" Mode Hang: %us", modeHangTime);
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m_modem->setFMCallsignParams(callsign, callsignSpeed, callsignFrequency, callsignTime, callsignHoldoff, callsignHighLevel, callsignLowLevel, callsignAtStart, callsignAtEnd, callsignAtLatch);
2020-04-18 13:59:19 +00:00
m_modem->setFMAckParams(rfAck, ackSpeed, ackFrequency, ackMinTime, ackDelay, ackLevel);
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m_modem->setFMMiscParams(timeout, timeoutLevel, ctcssFrequency, ctcssHighThreshold, ctcssLowThreshold, ctcssLevel, kerchunkTime, hangTime, accessMode, cosInvert, noiseSquelch, squelchHighThreshold, squelchLowThreshold, rfAudioBoost, maxDevLevel);
if (m_conf.getFMNetworkEnabled()) {
std::string extAck = m_conf.getFMExtAck();
unsigned int extAudioBoost = m_conf.getFMExtAudioBoost();
LogInfo(" Ext. Ack: %s", extAck.c_str());
LogInfo(" Ext. Audio Boost: x%u", extAudioBoost);
m_modem->setFMExtParams(extAck, extAudioBoost);
}
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}
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bool ret = m_modem->open();
if (!ret) {
delete m_modem;
m_modem = NULL;
return false;
}
return true;
}
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bool CMMDVMHost::createDStarNetwork()
{
std::string gatewayAddress = m_conf.getDStarGatewayAddress();
unsigned int gatewayPort = m_conf.getDStarGatewayPort();
unsigned int localPort = m_conf.getDStarLocalPort();
bool debug = m_conf.getDStarNetworkDebug();
m_dstarNetModeHang = m_conf.getDStarNetworkModeHang();
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LogInfo("D-Star Network Parameters");
LogInfo(" Gateway Address: %s", gatewayAddress.c_str());
LogInfo(" Gateway Port: %u", gatewayPort);
LogInfo(" Local Port: %u", localPort);
LogInfo(" Mode Hang: %us", m_dstarNetModeHang);
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m_dstarNetwork = new CDStarNetwork(gatewayAddress, gatewayPort, localPort, m_duplex, VERSION, debug);
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bool ret = m_dstarNetwork->open();
if (!ret) {
delete m_dstarNetwork;
m_dstarNetwork = NULL;
return false;
}
m_dstarNetwork->enable(true);
return true;
}
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bool CMMDVMHost::createDMRNetwork()
{
std::string address = m_conf.getDMRNetworkAddress();
unsigned int port = m_conf.getDMRNetworkPort();
unsigned int local = m_conf.getDMRNetworkLocal();
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unsigned int id = m_conf.getDMRId();
std::string password = m_conf.getDMRNetworkPassword();
bool debug = m_conf.getDMRNetworkDebug();
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unsigned int jitter = m_conf.getDMRNetworkJitter();
bool slot1 = m_conf.getDMRNetworkSlot1();
bool slot2 = m_conf.getDMRNetworkSlot2();
HW_TYPE hwType = m_modem->getHWType();
m_dmrNetModeHang = m_conf.getDMRNetworkModeHang();
std::string options = m_conf.getDMRNetworkOptions();
std::string type = m_conf.getDMRNetworkType();
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LogInfo("DMR Network Parameters");
LogInfo(" Type: %s", type.c_str());
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LogInfo(" Address: %s", address.c_str());
LogInfo(" Port: %u", port);
if (local > 0U)
LogInfo(" Local: %u", local);
else
LogInfo(" Local: random");
2016-09-06 18:42:15 +00:00
LogInfo(" Jitter: %ums", jitter);
LogInfo(" Slot 1: %s", slot1 ? "enabled" : "disabled");
LogInfo(" Slot 2: %s", slot2 ? "enabled" : "disabled");
LogInfo(" Mode Hang: %us", m_dmrNetModeHang);
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if (type == "Direct")
m_dmrNetwork = new CDMRDirectNetwork(address, port, local, id, password, m_duplex, VERSION, slot1, slot2, hwType, debug);
else
m_dmrNetwork = new CDMRGatewayNetwork(address, port, local, id, m_duplex, VERSION, slot1, slot2, hwType, debug);
unsigned int rxFrequency = m_conf.getRXFrequency();
unsigned int txFrequency = m_conf.getTXFrequency();
2016-01-14 18:45:04 +00:00
unsigned int power = m_conf.getPower();
unsigned int colorCode = m_conf.getDMRColorCode();
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LogInfo("Info Parameters");
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LogInfo(" Callsign: %s", m_callsign.c_str());
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LogInfo(" RX Frequency: %uHz", rxFrequency);
LogInfo(" TX Frequency: %uHz", txFrequency);
LogInfo(" Power: %uW", power);
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if (type == "Direct") {
float latitude = m_conf.getLatitude();
float longitude = m_conf.getLongitude();
int height = m_conf.getHeight();
std::string location = m_conf.getLocation();
std::string description = m_conf.getDescription();
std::string url = m_conf.getURL();
LogInfo(" Latitude: %fdeg N", latitude);
LogInfo(" Longitude: %fdeg E", longitude);
LogInfo(" Height: %um", height);
LogInfo(" Location: \"%s\"", location.c_str());
LogInfo(" Description: \"%s\"", description.c_str());
LogInfo(" URL: \"%s\"", url.c_str());
m_dmrNetwork->setConfig(m_callsign, rxFrequency, txFrequency, power, colorCode, latitude, longitude, height, location, description, url);
} else {
m_dmrNetwork->setConfig(m_callsign, rxFrequency, txFrequency, power, colorCode, 0.0F, 0.0F, 0, "", "", "");
}
if (!options.empty()) {
LogInfo(" Options: %s", options.c_str());
m_dmrNetwork->setOptions(options);
}
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bool ret = m_dmrNetwork->open();
if (!ret) {
delete m_dmrNetwork;
m_dmrNetwork = NULL;
return false;
}
m_dmrNetwork->enable(true);
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return true;
}
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bool CMMDVMHost::createYSFNetwork()
{
std::string myAddress = m_conf.getFusionNetworkMyAddress();
unsigned int myPort = m_conf.getFusionNetworkMyPort();
std::string gatewayAddress = m_conf.getFusionNetworkGatewayAddress();
unsigned int gatewayPort = m_conf.getFusionNetworkGatewayPort();
m_ysfNetModeHang = m_conf.getFusionNetworkModeHang();
bool debug = m_conf.getFusionNetworkDebug();
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LogInfo("System Fusion Network Parameters");
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LogInfo(" Local Address: %s", myAddress.c_str());
LogInfo(" Local Port: %u", myPort);
LogInfo(" Gateway Address: %s", gatewayAddress.c_str());
LogInfo(" Gateway Port: %u", gatewayPort);
LogInfo(" Mode Hang: %us", m_ysfNetModeHang);
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m_ysfNetwork = new CYSFNetwork(myAddress, myPort, gatewayAddress, gatewayPort, m_callsign, debug);
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bool ret = m_ysfNetwork->open();
if (!ret) {
delete m_ysfNetwork;
m_ysfNetwork = NULL;
return false;
}
m_ysfNetwork->enable(true);
return true;
}
bool CMMDVMHost::createP25Network()
{
std::string gatewayAddress = m_conf.getP25GatewayAddress();
unsigned int gatewayPort = m_conf.getP25GatewayPort();
unsigned int localPort = m_conf.getP25LocalPort();
m_p25NetModeHang = m_conf.getP25NetworkModeHang();
bool debug = m_conf.getP25NetworkDebug();
LogInfo("P25 Network Parameters");
LogInfo(" Gateway Address: %s", gatewayAddress.c_str());
LogInfo(" Gateway Port: %u", gatewayPort);
LogInfo(" Local Port: %u", localPort);
LogInfo(" Mode Hang: %us", m_p25NetModeHang);
m_p25Network = new CP25Network(gatewayAddress, gatewayPort, localPort, debug);
bool ret = m_p25Network->open();
if (!ret) {
delete m_p25Network;
m_p25Network = NULL;
return false;
}
m_p25Network->enable(true);
return true;
}
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bool CMMDVMHost::createNXDNNetwork()
{
std::string protocol = m_conf.getNXDNNetworkProtocol();
std::string gatewayAddress = m_conf.getNXDNGatewayAddress();
unsigned int gatewayPort = m_conf.getNXDNGatewayPort();
std::string localAddress = m_conf.getNXDNLocalAddress();
unsigned int localPort = m_conf.getNXDNLocalPort();
m_nxdnNetModeHang = m_conf.getNXDNNetworkModeHang();
bool debug = m_conf.getNXDNNetworkDebug();
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LogInfo("NXDN Network Parameters");
LogInfo(" Protocol: %s", protocol.c_str());
LogInfo(" Gateway Address: %s", gatewayAddress.c_str());
LogInfo(" Gateway Port: %u", gatewayPort);
LogInfo(" Local Address: %s", localAddress.c_str());
LogInfo(" Local Port: %u", localPort);
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LogInfo(" Mode Hang: %us", m_nxdnNetModeHang);
if (protocol == "Kenwood")
m_nxdnNetwork = new CNXDNKenwoodNetwork(localAddress, localPort, gatewayAddress, gatewayPort, debug);
else
m_nxdnNetwork = new CNXDNIcomNetwork(localAddress, localPort, gatewayAddress, gatewayPort, debug);
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bool ret = m_nxdnNetwork->open();
if (!ret) {
delete m_nxdnNetwork;
m_nxdnNetwork = NULL;
return false;
}
m_nxdnNetwork->enable(true);
return true;
}
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bool CMMDVMHost::createM17Network()
{
std::string gatewayAddress = m_conf.getM17GatewayAddress();
unsigned int gatewayPort = m_conf.getM17GatewayPort();
unsigned int localPort = m_conf.getM17LocalPort();
m_m17NetModeHang = m_conf.getM17NetworkModeHang();
bool debug = m_conf.getM17NetworkDebug();
LogInfo("M17 Network Parameters");
LogInfo(" Gateway Address: %s", gatewayAddress.c_str());
LogInfo(" Gateway Port: %u", gatewayPort);
LogInfo(" Local Port: %u", localPort);
LogInfo(" Mode Hang: %us", m_m17NetModeHang);
m_m17Network = new CM17Network(localPort, gatewayAddress, gatewayPort, debug);
bool ret = m_m17Network->open();
if (!ret) {
delete m_m17Network;
m_m17Network = NULL;
return false;
}
m_m17Network->enable(true);
return true;
}
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bool CMMDVMHost::createPOCSAGNetwork()
{
std::string gatewayAddress = m_conf.getPOCSAGGatewayAddress();
unsigned int gatewayPort = m_conf.getPOCSAGGatewayPort();
std::string localAddress = m_conf.getPOCSAGLocalAddress();
unsigned int localPort = m_conf.getPOCSAGLocalPort();
m_pocsagNetModeHang = m_conf.getPOCSAGNetworkModeHang();
bool debug = m_conf.getPOCSAGNetworkDebug();
LogInfo("POCSAG Network Parameters");
LogInfo(" Gateway Address: %s", gatewayAddress.c_str());
LogInfo(" Gateway Port: %u", gatewayPort);
LogInfo(" Local Address: %s", localAddress.c_str());
LogInfo(" Local Port: %u", localPort);
LogInfo(" Mode Hang: %us", m_pocsagNetModeHang);
m_pocsagNetwork = new CPOCSAGNetwork(localAddress, localPort, gatewayAddress, gatewayPort, debug);
bool ret = m_pocsagNetwork->open();
if (!ret) {
delete m_pocsagNetwork;
m_pocsagNetwork = NULL;
return false;
}
m_pocsagNetwork->enable(true);
return true;
}
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bool CMMDVMHost::createFMNetwork()
{
std::string protocol = m_conf.getFMNetworkProtocol();
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std::string gatewayAddress = m_conf.getFMGatewayAddress();
unsigned int gatewayPort = m_conf.getFMGatewayPort();
std::string localAddress = m_conf.getFMLocalAddress();
unsigned int localPort = m_conf.getFMLocalPort();
unsigned int sampleRate = m_conf.getFMSampleRate();
bool preEmphasis = m_conf.getFMPreEmphasis();
bool deEmphasis = m_conf.getFMDeEmphasis();
float txAudioGain = m_conf.getFMTXAudioGain();
float rxAudioGain = m_conf.getFMRXAudioGain();
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m_fmNetModeHang = m_conf.getFMNetworkModeHang();
bool debug = m_conf.getFMNetworkDebug();
LogInfo("FM Network Parameters");
LogInfo(" Protocol: %s", protocol.c_str());
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LogInfo(" Gateway Address: %s", gatewayAddress.c_str());
LogInfo(" Gateway Port: %u", gatewayPort);
LogInfo(" Local Address: %s", localAddress.c_str());
LogInfo(" Local Port: %u", localPort);
LogInfo(" Sample Rate: %u", sampleRate);
LogInfo(" Pre-Emphasis: %s", preEmphasis ? "yes" : "no");
LogInfo(" De-Emphasis: %s", deEmphasis ? "yes" : "no");
LogInfo(" TX Audio Gain: %.2f", txAudioGain);
LogInfo(" RX Audio Gain: %.2f", rxAudioGain);
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LogInfo(" Mode Hang: %us", m_fmNetModeHang);
m_fmNetwork = new CFMNetwork(protocol, localAddress, localPort, gatewayAddress, gatewayPort, sampleRate, debug);
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bool ret = m_fmNetwork->open();
if (!ret) {
delete m_fmNetwork;
m_fmNetwork = NULL;
return false;
}
m_fmNetwork->enable(true);
return true;
}
bool CMMDVMHost::createAX25Network()
{
std::string port = m_conf.getAX25NetworkPort();
unsigned int speed = m_conf.getAX25NetworkSpeed();
bool debug = m_conf.getAX25NetworkDebug();
LogInfo("AX.25 Network Parameters");
LogInfo(" Port: %s", port.c_str());
LogInfo(" Speed: %u", speed);
m_ax25Network = new CAX25Network(port, speed, debug);
bool ret = m_ax25Network->open();
if (!ret) {
delete m_ax25Network;
m_ax25Network = NULL;
return false;
}
m_ax25Network->enable(true);
return true;
}
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void CMMDVMHost::readParams()
{
2018-06-07 17:46:03 +00:00
m_dstarEnabled = m_conf.getDStarEnabled();
m_dmrEnabled = m_conf.getDMREnabled();
m_ysfEnabled = m_conf.getFusionEnabled();
m_p25Enabled = m_conf.getP25Enabled();
m_nxdnEnabled = m_conf.getNXDNEnabled();
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m_m17Enabled = m_conf.getM17Enabled();
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m_pocsagEnabled = m_conf.getPOCSAGEnabled();
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m_fmEnabled = m_conf.getFMEnabled();
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m_ax25Enabled = m_conf.getAX25Enabled();
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m_duplex = m_conf.getDuplex();
m_callsign = m_conf.getCallsign();
m_id = m_conf.getId();
m_timeout = m_conf.getTimeout();
LogInfo("General Parameters");
LogInfo(" Callsign: %s", m_callsign.c_str());
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LogInfo(" Id: %u", m_id);
LogInfo(" Duplex: %s", m_duplex ? "yes" : "no");
LogInfo(" Timeout: %us", m_timeout);
LogInfo(" D-Star: %s", m_dstarEnabled ? "enabled" : "disabled");
LogInfo(" DMR: %s", m_dmrEnabled ? "enabled" : "disabled");
LogInfo(" YSF: %s", m_ysfEnabled ? "enabled" : "disabled");
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LogInfo(" P25: %s", m_p25Enabled ? "enabled" : "disabled");
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LogInfo(" NXDN: %s", m_nxdnEnabled ? "enabled" : "disabled");
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LogInfo(" M17: %s", m_m17Enabled ? "enabled" : "disabled");
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LogInfo(" POCSAG: %s", m_pocsagEnabled ? "enabled" : "disabled");
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LogInfo(" FM: %s", m_fmEnabled ? "enabled" : "disabled");
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LogInfo(" AX.25: %s", m_ax25Enabled ? "enabled" : "disabled");
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}
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void CMMDVMHost::setMode(unsigned char mode)
2016-02-02 18:17:36 +00:00
{
assert(m_modem != NULL);
assert(m_display != NULL);
switch (mode) {
case MODE_DSTAR:
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(true);
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if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(false);
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if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(false);
if (m_p25Network != NULL)
m_p25Network->enable(false);
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if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(false);
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if (m_m17Network != NULL)
m_m17Network->enable(false);
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if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(false);
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if (m_fmNetwork != NULL)
m_fmNetwork->enable(false);
if (m_ax25Network != NULL)
m_ax25Network->enable(false);
if (m_dstar != NULL)
m_dstar->enable(true);
if (m_dmr != NULL)
m_dmr->enable(false);
if (m_ysf != NULL)
m_ysf->enable(false);
if (m_p25 != NULL)
m_p25->enable(false);
if (m_nxdn != NULL)
m_nxdn->enable(false);
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if (m_m17 != NULL)
m_m17->enable(false);
if (m_pocsag != NULL)
m_pocsag->enable(false);
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if (m_fm != NULL)
m_fm->enable(false);
if (m_ax25 != NULL)
m_ax25->enable(false);
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m_modem->setMode(MODE_DSTAR);
m_mode = MODE_DSTAR;
m_modeTimer.start();
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m_cwIdTimer.stop();
createLockFile("D-Star");
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break;
case MODE_DMR:
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(false);
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(true);
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if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(false);
if (m_p25Network != NULL)
m_p25Network->enable(false);
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if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(false);
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if (m_m17Network != NULL)
m_m17Network->enable(false);
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if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(false);
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if (m_fmNetwork != NULL)
m_fmNetwork->enable(false);
if (m_ax25Network != NULL)
m_ax25Network->enable(false);
if (m_dstar != NULL)
m_dstar->enable(false);
if (m_dmr != NULL)
m_dmr->enable(true);
if (m_ysf != NULL)
m_ysf->enable(false);
if (m_p25 != NULL)
m_p25->enable(false);
if (m_nxdn != NULL)
m_nxdn->enable(false);
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if (m_m17 != NULL)
m_m17->enable(false);
if (m_pocsag != NULL)
m_pocsag->enable(false);
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if (m_fm != NULL)
m_fm->enable(false);
if (m_ax25 != NULL)
m_ax25->enable(false);
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m_modem->setMode(MODE_DMR);
if (m_duplex) {
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m_modem->writeDMRStart(true);
m_dmrTXTimer.start();
}
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m_mode = MODE_DMR;
m_modeTimer.start();
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m_cwIdTimer.stop();
createLockFile("DMR");
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break;
case MODE_YSF:
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(false);
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(false);
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(true);
if (m_p25Network != NULL)
m_p25Network->enable(false);
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if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(false);
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if (m_m17Network != NULL)
m_m17Network->enable(false);
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if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(false);
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if (m_fmNetwork != NULL)
m_fmNetwork->enable(false);
if (m_ax25Network != NULL)
m_ax25Network->enable(false);
if (m_dstar != NULL)
m_dstar->enable(false);
if (m_dmr != NULL)
m_dmr->enable(false);
if (m_ysf != NULL)
m_ysf->enable(true);
if (m_p25 != NULL)
m_p25->enable(false);
if (m_nxdn != NULL)
m_nxdn->enable(false);
2020-12-15 16:21:07 +00:00
if (m_m17 != NULL)
m_m17->enable(false);
if (m_pocsag != NULL)
m_pocsag->enable(false);
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if (m_fm != NULL)
m_fm->enable(false);
if (m_ax25 != NULL)
m_ax25->enable(false);
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m_modem->setMode(MODE_YSF);
m_mode = MODE_YSF;
m_modeTimer.start();
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m_cwIdTimer.stop();
createLockFile("System Fusion");
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break;
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case MODE_P25:
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(false);
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(false);
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(false);
if (m_p25Network != NULL)
m_p25Network->enable(true);
2018-01-15 21:03:34 +00:00
if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(false);
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if (m_m17Network != NULL)
m_m17Network->enable(false);
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if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(false);
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if (m_fmNetwork != NULL)
m_fmNetwork->enable(false);
if (m_ax25Network != NULL)
m_ax25Network->enable(false);
if (m_dstar != NULL)
m_dstar->enable(false);
if (m_dmr != NULL)
m_dmr->enable(false);
if (m_ysf != NULL)
m_ysf->enable(false);
if (m_p25 != NULL)
m_p25->enable(true);
if (m_nxdn != NULL)
m_nxdn->enable(false);
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if (m_m17 != NULL)
m_m17->enable(false);
if (m_pocsag != NULL)
m_pocsag->enable(false);
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if (m_fm != NULL)
m_fm->enable(false);
if (m_ax25 != NULL)
m_ax25->enable(false);
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m_modem->setMode(MODE_P25);
m_mode = MODE_P25;
m_modeTimer.start();
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m_cwIdTimer.stop();
createLockFile("P25");
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break;
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case MODE_NXDN:
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(false);
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(false);
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(false);
if (m_p25Network != NULL)
m_p25Network->enable(false);
if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(true);
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if (m_m17Network != NULL)
m_m17Network->enable(false);
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if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(false);
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if (m_fmNetwork != NULL)
m_fmNetwork->enable(false);
if (m_ax25Network != NULL)
m_ax25Network->enable(false);
if (m_dstar != NULL)
m_dstar->enable(false);
if (m_dmr != NULL)
m_dmr->enable(false);
if (m_ysf != NULL)
m_ysf->enable(false);
if (m_p25 != NULL)
m_p25->enable(false);
if (m_nxdn != NULL)
m_nxdn->enable(true);
2020-12-15 16:21:07 +00:00
if (m_m17 != NULL)
m_m17->enable(false);
if (m_pocsag != NULL)
m_pocsag->enable(false);
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if (m_fm != NULL)
m_fm->enable(false);
if (m_ax25 != NULL)
m_ax25->enable(false);
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m_modem->setMode(MODE_NXDN);
m_mode = MODE_NXDN;
m_modeTimer.start();
m_cwIdTimer.stop();
createLockFile("NXDN");
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break;
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case MODE_M17:
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(false);
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(false);
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(false);
if (m_p25Network != NULL)
m_p25Network->enable(false);
if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(false);
if (m_m17Network != NULL)
m_m17Network->enable(true);
if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(false);
if (m_dstar != NULL)
m_dstar->enable(false);
if (m_dmr != NULL)
m_dmr->enable(false);
if (m_ysf != NULL)
m_ysf->enable(false);
if (m_p25 != NULL)
m_p25->enable(false);
if (m_nxdn != NULL)
m_nxdn->enable(false);
if (m_m17 != NULL)
m_m17->enable(true);
if (m_pocsag != NULL)
m_pocsag->enable(false);
m_modem->setMode(MODE_M17);
m_mode = MODE_M17;
m_modeTimer.start();
m_cwIdTimer.stop();
createLockFile("M17");
break;
2018-06-07 17:46:03 +00:00
case MODE_POCSAG:
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(false);
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(false);
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(false);
if (m_p25Network != NULL)
m_p25Network->enable(false);
if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(false);
2020-12-15 16:21:07 +00:00
if (m_m17Network != NULL)
m_m17Network->enable(false);
if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(true);
2020-12-15 16:21:07 +00:00
if (m_fmNetwork != NULL)
m_fmNetwork->enable(false);
if (m_ax25Network != NULL)
m_ax25Network->enable(false);
if (m_dstar != NULL)
m_dstar->enable(false);
if (m_dmr != NULL)
m_dmr->enable(false);
if (m_ysf != NULL)
m_ysf->enable(false);
if (m_p25 != NULL)
m_p25->enable(false);
if (m_nxdn != NULL)
m_nxdn->enable(false);
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if (m_m17 != NULL)
m_m17->enable(false);
if (m_pocsag != NULL)
m_pocsag->enable(true);
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if (m_fm != NULL)
m_fm->enable(false);
if (m_ax25 != NULL)
m_ax25->enable(false);
2018-06-07 17:46:03 +00:00
m_modem->setMode(MODE_POCSAG);
m_mode = MODE_POCSAG;
m_modeTimer.start();
m_cwIdTimer.stop();
createLockFile("POCSAG");
2018-06-07 17:46:03 +00:00
break;
2020-04-11 19:42:05 +00:00
case MODE_FM:
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(false);
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(false);
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(false);
if (m_p25Network != NULL)
m_p25Network->enable(false);
if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(false);
2020-12-15 16:21:07 +00:00
if (m_m17Network != NULL)
m_m17Network->enable(false);
2020-04-11 19:42:05 +00:00
if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(false);
2020-12-15 16:21:07 +00:00
if (m_fmNetwork != NULL)
m_fmNetwork->enable(true);
if (m_ax25Network != NULL)
m_ax25Network->enable(true);
2020-04-11 19:42:05 +00:00
if (m_dstar != NULL)
m_dstar->enable(false);
if (m_dmr != NULL)
m_dmr->enable(false);
if (m_ysf != NULL)
m_ysf->enable(false);
if (m_p25 != NULL)
m_p25->enable(false);
if (m_nxdn != NULL)
m_nxdn->enable(false);
2020-12-15 16:21:07 +00:00
if (m_m17 != NULL)
m_m17->enable(false);
2020-04-11 19:42:05 +00:00
if (m_pocsag != NULL)
m_pocsag->enable(false);
2020-12-15 16:21:07 +00:00
if (m_fm != NULL)
m_fm->enable(true);
if (m_ax25 != NULL)
m_ax25->enable(true);
2020-04-11 19:42:05 +00:00
if (m_mode == MODE_DMR && m_duplex && m_modem->hasTX()) {
m_modem->writeDMRStart(false);
m_dmrTXTimer.stop();
}
2020-12-15 16:21:07 +00:00
m_modem->setMode(MODE_FM);
2020-04-11 19:42:05 +00:00
m_display->setFM();
m_mode = MODE_FM;
2020-12-15 16:21:07 +00:00
m_modeTimer.start();
2020-04-11 19:42:05 +00:00
m_cwIdTimer.stop();
createLockFile("FM");
break;
2016-03-03 18:01:01 +00:00
case MODE_LOCKOUT:
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(false);
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(false);
2016-05-16 20:57:32 +00:00
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(false);
if (m_p25Network != NULL)
m_p25Network->enable(false);
2018-01-15 21:03:34 +00:00
if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(false);
2020-12-15 16:21:07 +00:00
if (m_m17Network != NULL)
m_m17Network->enable(false);
2018-06-07 17:46:03 +00:00
if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(false);
2020-12-15 16:21:07 +00:00
if (m_fmNetwork != NULL)
m_fmNetwork->enable(false);
if (m_ax25Network != NULL)
m_ax25Network->enable(false);
if (m_dstar != NULL)
m_dstar->enable(false);
if (m_dmr != NULL)
m_dmr->enable(false);
if (m_ysf != NULL)
m_ysf->enable(false);
if (m_p25 != NULL)
m_p25->enable(false);
if (m_nxdn != NULL)
m_nxdn->enable(false);
2020-12-15 16:21:07 +00:00
if (m_m17 != NULL)
m_m17->enable(false);
if (m_pocsag != NULL)
m_pocsag->enable(false);
2020-12-15 16:21:07 +00:00
if (m_fm != NULL)
m_fm->enable(false);
if (m_ax25 != NULL)
m_ax25->enable(false);
if (m_mode == MODE_DMR && m_duplex && m_modem->hasTX()) {
2016-03-03 18:01:01 +00:00
m_modem->writeDMRStart(false);
m_dmrTXTimer.stop();
}
2016-03-29 16:59:15 +00:00
m_modem->setMode(MODE_IDLE);
2016-03-03 18:01:01 +00:00
m_display->setLockout();
m_mode = MODE_LOCKOUT;
m_modeTimer.stop();
2016-05-09 20:55:44 +00:00
m_cwIdTimer.stop();
removeLockFile();
2016-03-03 18:01:01 +00:00
break;
2016-03-21 22:47:58 +00:00
case MODE_ERROR:
2016-05-10 17:26:52 +00:00
LogMessage("Mode set to Error");
2016-03-21 22:47:58 +00:00
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(false);
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(false);
2016-05-16 20:57:32 +00:00
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(false);
if (m_p25Network != NULL)
m_p25Network->enable(false);
2018-01-15 21:03:34 +00:00
if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(false);
2020-12-15 16:21:07 +00:00
if (m_m17Network != NULL)
m_m17Network->enable(false);
2018-06-07 17:46:03 +00:00
if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(false);
2020-12-15 16:21:07 +00:00
if (m_fmNetwork != NULL)
m_fmNetwork->enable(false);
if (m_ax25Network != NULL)
m_ax25Network->enable(false);
if (m_dstar != NULL)
m_dstar->enable(false);
if (m_dmr != NULL)
m_dmr->enable(false);
if (m_ysf != NULL)
m_ysf->enable(false);
if (m_p25 != NULL)
m_p25->enable(false);
if (m_nxdn != NULL)
m_nxdn->enable(false);
2020-12-15 16:21:07 +00:00
if (m_m17 != NULL)
m_m17->enable(false);
if (m_pocsag != NULL)
m_pocsag->enable(false);
2020-12-15 16:21:07 +00:00
if (m_fm != NULL)
m_fm->enable(false);
if (m_ax25 != NULL)
m_ax25->enable(false);
if (m_mode == MODE_DMR && m_duplex && m_modem->hasTX()) {
m_modem->writeDMRStart(false);
m_dmrTXTimer.stop();
}
2016-03-21 22:47:58 +00:00
m_display->setError("MODEM");
m_mode = MODE_ERROR;
m_modeTimer.stop();
2016-05-09 20:55:44 +00:00
m_cwIdTimer.stop();
removeLockFile();
2016-03-21 22:47:58 +00:00
break;
2016-02-02 18:17:36 +00:00
default:
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(true);
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(true);
2016-05-16 20:57:32 +00:00
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(true);
if (m_p25Network != NULL)
m_p25Network->enable(true);
2018-01-15 21:03:34 +00:00
if (m_nxdnNetwork != NULL)
2018-02-08 00:19:51 +00:00
m_nxdnNetwork->enable(true);
2020-12-15 16:21:07 +00:00
if (m_m17Network != NULL)
m_m17Network->enable(true);
2018-06-07 17:46:03 +00:00
if (m_pocsagNetwork != NULL)
m_pocsagNetwork->enable(true);
2020-12-15 16:21:07 +00:00
if (m_fmNetwork != NULL)
m_fmNetwork->enable(true);
if (m_ax25Network != NULL)
m_ax25Network->enable(true);
if (m_dstar != NULL)
m_dstar->enable(true);
if (m_dmr != NULL)
m_dmr->enable(true);
if (m_ysf != NULL)
m_ysf->enable(true);
if (m_p25 != NULL)
m_p25->enable(true);
if (m_nxdn != NULL)
m_nxdn->enable(true);
2020-12-15 16:21:07 +00:00
if (m_m17 != NULL)
m_m17->enable(true);
if (m_pocsag != NULL)
m_pocsag->enable(true);
2020-12-15 16:21:07 +00:00
if (m_fm != NULL)
m_fm->enable(true);
if (m_ax25 != NULL)
m_ax25->enable(true);
if (m_mode == MODE_DMR && m_duplex && m_modem->hasTX()) {
2016-02-02 18:17:36 +00:00
m_modem->writeDMRStart(false);
m_dmrTXTimer.stop();
}
2016-03-29 16:59:15 +00:00
m_modem->setMode(MODE_IDLE);
if (m_mode == MODE_ERROR) {
m_modem->sendCWId(m_callsign);
2016-10-17 17:01:38 +00:00
m_cwIdTimer.setTimeout(m_cwIdTime);
m_cwIdTimer.start();
} else {
m_cwIdTimer.setTimeout(m_cwIdTime / 4U);
m_cwIdTimer.start();
}
2016-02-02 18:17:36 +00:00
m_display->setIdle();
if (mode == MODE_QUIT)
m_display->setQuit();
2016-02-02 18:17:36 +00:00
m_mode = MODE_IDLE;
m_modeTimer.stop();
removeLockFile();
2016-02-02 18:17:36 +00:00
break;
}
}
void CMMDVMHost::createLockFile(const char* mode) const
{
if (m_lockFileEnabled) {
FILE* fp = ::fopen(m_lockFileName.c_str(), "wt");
if (fp != NULL) {
::fprintf(fp, "%s\n", mode);
::fclose(fp);
}
}
}
void CMMDVMHost::removeLockFile() const
{
if (m_lockFileEnabled)
::remove(m_lockFileName.c_str());
}
void CMMDVMHost::remoteControl()
{
2019-01-11 13:02:33 +00:00
if (m_remoteControl == NULL)
return;
REMOTE_COMMAND command = m_remoteControl->getCommand();
2019-01-22 14:56:15 +00:00
switch (command) {
case RCD_MODE_IDLE:
m_fixedMode = false;
setMode(MODE_IDLE);
break;
case RCD_MODE_LOCKOUT:
m_fixedMode = false;
setMode(MODE_LOCKOUT);
break;
case RCD_MODE_DSTAR:
if (m_dstar != NULL)
processModeCommand(MODE_DSTAR, m_dstarRFModeHang);
break;
case RCD_MODE_DMR:
2019-01-22 14:56:15 +00:00
if (m_dmr != NULL)
processModeCommand(MODE_DMR, m_dmrRFModeHang);
break;
case RCD_MODE_YSF:
if (m_ysf != NULL)
processModeCommand(MODE_YSF, m_ysfRFModeHang);
break;
case RCD_MODE_P25:
if (m_p25 != NULL)
processModeCommand(MODE_P25, m_p25RFModeHang);
break;
case RCD_MODE_NXDN:
if (m_nxdn != NULL)
processModeCommand(MODE_NXDN, m_nxdnRFModeHang);
break;
2020-12-15 16:21:07 +00:00
case RCD_MODE_M17:
if (m_m17 != NULL)
processModeCommand(MODE_M17, m_m17RFModeHang);
break;
case RCD_MODE_FM:
2020-12-15 16:21:07 +00:00
if (m_fmEnabled)
processModeCommand(MODE_FM, 0);
break;
case RCD_ENABLE_DSTAR:
2020-12-15 16:21:07 +00:00
if (m_dstar != NULL && !m_dstarEnabled)
processEnableCommand(m_dstarEnabled, true);
2021-01-01 14:45:08 +00:00
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(true);
break;
case RCD_ENABLE_DMR:
2020-12-15 16:21:07 +00:00
if (m_dmr != NULL && !m_dmrEnabled)
processEnableCommand(m_dmrEnabled, true);
2021-01-01 14:45:08 +00:00
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(true);
break;
case RCD_ENABLE_YSF:
2020-12-15 16:21:07 +00:00
if (m_ysf != NULL && !m_ysfEnabled)
processEnableCommand(m_ysfEnabled, true);
2021-01-01 14:45:08 +00:00
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(true);
break;
case RCD_ENABLE_P25:
2020-12-15 16:21:07 +00:00
if (m_p25 != NULL && !m_p25Enabled)
processEnableCommand(m_p25Enabled, true);
2021-01-01 14:45:08 +00:00
if (m_p25Network != NULL)
m_p25Network->enable(true);
break;
case RCD_ENABLE_NXDN:
2020-12-15 16:21:07 +00:00
if (m_nxdn != NULL && !m_nxdnEnabled)
processEnableCommand(m_nxdnEnabled, true);
2021-01-01 14:45:08 +00:00
if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(true);
2020-12-15 16:21:07 +00:00
break;
case RCD_ENABLE_M17:
if (m_m17 != NULL && m_m17Enabled == false)
processEnableCommand(m_m17Enabled, true);
if (m_m17Network != NULL)
m_m17Network->enable(true);
2020-10-14 15:16:54 +00:00
break;
case RCD_ENABLE_FM:
2020-12-15 16:21:07 +00:00
if (!m_fmEnabled)
processEnableCommand(m_fmEnabled, true);
break;
2020-12-15 16:21:07 +00:00
case RCD_ENABLE_AX25:
if (!m_ax25Enabled)
processEnableCommand(m_ax25Enabled, true);
break;
case RCD_DISABLE_DSTAR:
2020-12-15 16:21:07 +00:00
if (m_dstar != NULL && m_dstarEnabled)
processEnableCommand(m_dstarEnabled, false);
2021-01-01 14:45:08 +00:00
if (m_dstarNetwork != NULL)
m_dstarNetwork->enable(false);
break;
case RCD_DISABLE_DMR:
2020-12-15 16:21:07 +00:00
if (m_dmr != NULL && m_dmrEnabled)
processEnableCommand(m_dmrEnabled, false);
2021-01-01 14:45:08 +00:00
if (m_dmrNetwork != NULL)
m_dmrNetwork->enable(false);
break;
case RCD_DISABLE_YSF:
2020-12-15 16:21:07 +00:00
if (m_ysf != NULL && m_ysfEnabled)
processEnableCommand(m_ysfEnabled, false);
2021-01-01 14:45:08 +00:00
if (m_ysfNetwork != NULL)
m_ysfNetwork->enable(false);
break;
case RCD_DISABLE_P25:
2020-12-15 16:21:07 +00:00
if (m_p25 != NULL && m_p25Enabled)
processEnableCommand(m_p25Enabled, false);
2021-01-01 14:45:08 +00:00
if (m_p25Network != NULL)
m_p25Network->enable(false);
break;
case RCD_DISABLE_NXDN:
2020-12-15 16:21:07 +00:00
if (m_nxdn != NULL && m_nxdnEnabled)
processEnableCommand(m_nxdnEnabled, false);
2021-01-01 14:45:08 +00:00
if (m_nxdnNetwork != NULL)
m_nxdnNetwork->enable(false);
2020-12-15 16:21:07 +00:00
break;
case RCD_DISABLE_M17:
if (m_m17 != NULL && m_m17Enabled == true)
processEnableCommand(m_m17Enabled, false);
if (m_m17Network != NULL)
m_m17Network->enable(false);
2020-10-14 15:16:54 +00:00
break;
case RCD_DISABLE_FM:
2020-12-15 16:21:07 +00:00
if (m_fmEnabled)
processEnableCommand(m_fmEnabled, false);
break;
2020-12-15 16:21:07 +00:00
case RCD_DISABLE_AX25:
if (m_ax25Enabled == true)
processEnableCommand(m_ax25Enabled, false);
break;
case RCD_PAGE:
if (m_pocsag != NULL) {
unsigned int ric = m_remoteControl->getArgUInt(0U);
std::string text;
for (unsigned int i = 1U; i < m_remoteControl->getArgCount(); i++) {
if (i > 1U)
text += " ";
text += m_remoteControl->getArgString(i);
}
m_pocsag->sendPage(ric, text);
}
2020-12-15 16:21:07 +00:00
break;
2020-05-05 18:24:29 +00:00
case RCD_CW:
2020-05-05 18:30:56 +00:00
setMode(MODE_IDLE); // Force the modem to go idle so that we can send the CW text.
2020-12-15 16:21:07 +00:00
if (!m_modem->hasTX()) {
std::string cwtext;
for (unsigned int i = 0U; i < m_remoteControl->getArgCount(); i++) {
if (i > 0U)
cwtext += " ";
cwtext += m_remoteControl->getArgString(i);
}
m_display->writeCW();
m_modem->sendCWId(cwtext);
}
break;
case RCD_RELOAD:
m_reload = true;
break;
default:
break;
}
}
void CMMDVMHost::processModeCommand(unsigned char mode, unsigned int timeout)
{
m_fixedMode = false;
m_modeTimer.setTimeout(timeout);
if (m_remoteControl->getArgCount() > 0U) {
if (m_remoteControl->getArgString(0U) == "fixed") {
m_fixedMode = true;
} else {
unsigned int t = m_remoteControl->getArgUInt(0U);
if (t > 0U)
m_modeTimer.setTimeout(t);
}
}
setMode(mode);
}
void CMMDVMHost::processEnableCommand(bool& mode, bool enabled)
{
LogDebug("Setting mode current=%s new=%s",mode ? "true" : "false",enabled ? "true" : "false");
2020-12-15 16:21:07 +00:00
mode = enabled;
m_modem->setModeParams(m_dstarEnabled, m_dmrEnabled, m_ysfEnabled, m_p25Enabled, m_nxdnEnabled, m_m17Enabled, m_pocsagEnabled, m_fmEnabled, m_ax25Enabled);
if (!m_modem->writeConfig())
LogError("Cannot write Config to MMDVM");
}
void CMMDVMHost::buildNetworkStatusString(std::string &str)
{
str = "";
str += std::string("dstar:") + (((m_dstarNetwork == NULL) || (m_dstarEnabled == false)) ? "n/a" : (m_dstarNetwork->isConnected() ? "conn" : "disc"));
str += std::string(" dmr:") + (((m_dmrNetwork == NULL) || (m_dmrEnabled == false)) ? "n/a" : (m_dmrNetwork->isConnected() ? "conn" : "disc"));
str += std::string(" ysf:") + (((m_ysfNetwork == NULL) || (m_ysfEnabled == false)) ? "n/a" : (m_ysfNetwork->isConnected() ? "conn" : "disc"));
str += std::string(" p25:") + (((m_p25Network == NULL) || (m_p25Enabled == false)) ? "n/a" : (m_p25Network->isConnected() ? "conn" : "disc"));
str += std::string(" nxdn:") + (((m_nxdnNetwork == NULL) || (m_nxdnEnabled == false)) ? "n/a" : (m_nxdnNetwork->isConnected() ? "conn" : "disc"));
str += std::string(" fm:") + (m_fmEnabled ? "conn" : "n/a");
}