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620 lines
27 KiB
620 lines
27 KiB
// SPDX-License-Identifier: GPL-2.0-only
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/**
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* Digital Voice Modem - Modem Host Software
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* GPLv2 Open Source. Use is subject to license terms.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* Copyright (C) 2017-2024 Bryan Biedenkapp, N2PLL
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*
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*/
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#include "Defines.h"
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#include "Host.h"
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#include "HostMain.h"
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using namespace modem;
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// ---------------------------------------------------------------------------
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// Macros
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// ---------------------------------------------------------------------------
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// Macro to start DMR duplex idle transmission (or beacon)
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#define START_DMR_DUPLEX_IDLE(x) \
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if (host->m_dmr != nullptr) { \
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if (host->m_duplex && !host->m_dmrTXTimer.isRunning()) { \
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host->m_modem->writeDMRStart(x); \
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host->m_dmrTXTimer.start(); \
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} \
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}
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// ---------------------------------------------------------------------------
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// Private Class Members
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// ---------------------------------------------------------------------------
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/* Entry point to read DMR slot 1 frames from modem Rx queue. */
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void* Host::threadDMRReader1(void* arg)
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{
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thread_t* th = (thread_t*)arg;
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if (th != nullptr) {
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#if defined(_WIN32)
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::CloseHandle(th->thread);
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#else
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::pthread_detach(th->thread);
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#endif // defined(_WIN32)
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std::string threadName("dmrd:frame1-r");
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Host* host = static_cast<Host*>(th->obj);
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if (host == nullptr) {
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g_killed = true;
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LogError(LOG_HOST, "[FAIL] %s", threadName.c_str());
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}
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if (g_killed) {
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delete th;
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return nullptr;
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}
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LogInfoEx(LOG_HOST, "[ OK ] %s", threadName.c_str());
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#ifdef _GNU_SOURCE
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::pthread_setname_np(th->thread, threadName.c_str());
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#endif // _GNU_SOURCE
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StopWatch stopWatch;
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stopWatch.start();
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if (host->m_dmr != nullptr) {
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while (!g_killed) {
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uint32_t ms = stopWatch.elapsed();
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stopWatch.start();
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// scope is intentional
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{
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// ------------------------------------------------------
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// -- Read from Modem Processing --
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// ------------------------------------------------------
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uint8_t data[DMRDEF::DMR_FRAME_LENGTH_BYTES * 2U];
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auto afterReadCallback = [&]() {
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if (host->m_dmr != nullptr) {
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host->interruptDMRBeacon();
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}
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// if there is a P25 CC running; halt the CC
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if (host->m_p25 != nullptr) {
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if (host->m_p25->getCCRunning() && !host->m_p25->getCCHalted()) {
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host->interruptP25Control();
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}
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}
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// if there is a NXDN CC running; halt the CC
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if (host->m_nxdn != nullptr) {
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if (host->m_nxdn->getCCRunning() && !host->m_nxdn->getCCHalted()) {
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host->interruptNXDNControl();
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}
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}
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};
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if (host->m_dmr != nullptr) {
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uint8_t nextLen = host->m_modem->peekDMRFrame1Length();
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if (nextLen > 0U) {
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// read DMR slot 1 frames from the modem, and if there is any
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// write those frames to the DMR controller
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uint32_t len = host->m_modem->readDMRFrame1(data);
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if (len > 0U) {
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if (host->m_state == STATE_IDLE) {
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// if the modem is in duplex -- process wakeup CSBKs
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if (host->m_duplex) {
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bool ret = host->m_dmr->processWakeup(data);
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if (ret) {
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host->m_modeTimer.setTimeout(host->m_rfModeHang);
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host->setState(STATE_DMR);
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START_DMR_DUPLEX_IDLE(true);
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afterReadCallback();
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}
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}
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else {
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// in simplex directly process slot 1 frames
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host->m_modeTimer.setTimeout(host->m_rfModeHang);
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host->setState(STATE_DMR);
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START_DMR_DUPLEX_IDLE(true);
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host->m_dmr->processFrame(1U, data, len);
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afterReadCallback();
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}
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}
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else if (host->m_state == STATE_DMR) {
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// if the modem is in duplex, and hasn't started transmitting
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// process wakeup CSBKs
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if (host->m_duplex && !host->m_modem->hasTX()) {
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bool ret = host->m_dmr->processWakeup(data);
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if (ret) {
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host->m_modem->writeDMRStart(true);
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host->m_dmrTXTimer.start();
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}
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}
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else {
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// process slot 1 frames
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bool ret = host->m_dmr->processFrame(1U, data, len);
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if (ret) {
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afterReadCallback();
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host->m_modeTimer.start();
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if (host->m_duplex)
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host->m_dmrTXTimer.start();
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}
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}
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}
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else if (host->m_state != HOST_STATE_LOCKOUT) {
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LogWarning(LOG_HOST, "DMR modem data received, state = %u", host->m_state);
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}
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}
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// were frames received while still in an In-Call reject state? if so, reset the timer
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if (host->m_dmr->getRFState(1U) == RS_RF_REJECTED) {
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host->m_dmr1RejectTimer.start();
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host->m_dmr1RejCnt++;
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}
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} else {
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// if we're receiving no more frames, and we're in a in-call reject state, clear the state
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if (host->m_dmr->getRFState(1U) == RS_RF_REJECTED) {
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host->m_dmr1RejectTimer.clock(ms);
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if (host->m_dmr1RejectTimer.hasExpired()) {
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LogInfoEx(LOG_HOST, "DMR, slot 1 reset from previous call reject, frames = %u", host->m_dmr1RejCnt);
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host->m_dmr1RejectTimer.stop();
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host->m_dmr->clearRFReject(1U);
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host->m_dmr1RejCnt = 0U;
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}
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}
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}
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}
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}
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if (host->m_state != STATE_IDLE)
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Thread::sleep(m_activeTickDelay);
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if (host->m_state == STATE_IDLE)
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Thread::sleep(m_idleTickDelay);
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}
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}
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LogInfoEx(LOG_HOST, "[STOP] %s", threadName.c_str());
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delete th;
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}
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return nullptr;
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}
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/* Entry point to write DMR slot 1 frames to modem. */
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void* Host::threadDMRWriter1(void* arg)
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{
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thread_t* th = (thread_t*)arg;
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if (th != nullptr) {
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#if defined(_WIN32)
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::CloseHandle(th->thread);
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#else
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::pthread_detach(th->thread);
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#endif // defined(_WIN32)
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std::string threadName("dmrd:frame1-w");
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Host* host = static_cast<Host*>(th->obj);
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if (host == nullptr) {
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g_killed = true;
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LogError(LOG_HOST, "[FAIL] %s", threadName.c_str());
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}
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if (g_killed) {
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delete th;
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return nullptr;
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}
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LogInfoEx(LOG_HOST, "[ OK ] %s", threadName.c_str());
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#ifdef _GNU_SOURCE
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::pthread_setname_np(th->thread, threadName.c_str());
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#endif // _GNU_SOURCE
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StopWatch stopWatch;
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stopWatch.start();
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if (host->m_dmr != nullptr) {
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while (!g_killed) {
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host->m_dmrTx1WatchdogTimer.start();
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uint32_t ms = stopWatch.elapsed();
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stopWatch.start();
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host->m_dmrTx1LoopMS = ms;
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// scope is intentional
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{
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std::lock_guard<std::mutex> lock(m_clockingMutex);
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// ------------------------------------------------------
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// -- Write to Modem Processing --
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// ------------------------------------------------------
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uint8_t data[DMRDEF::DMR_FRAME_LENGTH_BYTES * 2U];
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auto afterWriteCallback = [&]() {
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// if there is a P25 CC running; halt the CC
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if (host->m_p25 != nullptr) {
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if (host->m_p25->getCCRunning() && !host->m_p25->getCCHalted()) {
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host->interruptP25Control();
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}
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}
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// if there is a NXDN CC running; halt the CC
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if (host->m_nxdn != nullptr) {
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if (host->m_nxdn->getCCRunning() && !host->m_nxdn->getCCHalted()) {
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host->interruptNXDNControl();
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}
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}
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};
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if (host->m_dmr != nullptr) {
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// check if there is space on the modem for DMR slot 1 frames,
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// if there is read frames from the DMR controller and write it
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// to the modem
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bool ret = host->m_modem->hasDMRSpace1();
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if (ret) {
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uint32_t nextLen = host->m_dmr->peekFrameLength(1U);
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if (host->m_dmrCtrlChannel) {
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if (host->m_dmrDedicatedTxTestTimer.hasExpired() && !host->m_dmrDedicatedTxTestTimer.isPaused()) {
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host->m_dmrDedicatedTxTestTimer.pause();
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if (!host->m_modem->hasTX() && host->m_modem->gotModemStatus() && host->m_state == STATE_DMR && (host->m_dmr->getTSCCSlotNo() == 1U) && host->m_dmr->getCCRunning()) {
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LogError(LOG_HOST, "DMR dedicated CC not transmitting, running = %u, halted = %u, frameLength1 = %u", host->m_dmr->getCCRunning(), host->m_dmr->getCCHalted(), nextLen);
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}
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}
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}
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bool imm = false;
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uint32_t len = host->m_dmr->getFrame(1U, data, &imm);
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if (len > 0U) {
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// if the state is idle; set to DMR, start mode timer and start DMR idle frames
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if (host->m_state == STATE_IDLE) {
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host->m_modeTimer.setTimeout(host->m_netModeHang);
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host->setState(STATE_DMR);
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START_DMR_DUPLEX_IDLE(true);
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}
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// if the state is DMR; start DMR idle frames and write DMR slot 1 data
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if (host->m_state == STATE_DMR) {
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START_DMR_DUPLEX_IDLE(true);
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host->m_dmrTXTimer.start();
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host->m_modem->writeDMRFrame1(data, len);
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// if there is no DMR CC running; run the interrupt macro to stop
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// any running DMR beacon
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if (!host->m_dmr->getCCRunning()) {
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host->interruptDMRBeacon();
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}
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afterWriteCallback();
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host->m_modeTimer.start();
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}
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host->m_lastDstId = host->m_dmr->getLastDstId(1U);
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host->m_lastSrcId = host->m_dmr->getLastSrcId(1U);
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}
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}
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}
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}
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if (host->m_state != STATE_IDLE)
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Thread::sleep(m_activeTickDelay);
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if (host->m_state == STATE_IDLE)
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Thread::sleep(m_idleTickDelay);
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}
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}
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LogInfoEx(LOG_HOST, "[STOP] %s", threadName.c_str());
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delete th;
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}
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return nullptr;
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}
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/* Entry point to read DMR slot 2 frames from modem Rx queue. */
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void* Host::threadDMRReader2(void* arg)
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{
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thread_t* th = (thread_t*)arg;
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if (th != nullptr) {
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#if defined(_WIN32)
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::CloseHandle(th->thread);
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#else
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::pthread_detach(th->thread);
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#endif // defined(_WIN32)
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std::string threadName("dmrd:frame2-r");
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Host* host = static_cast<Host*>(th->obj);
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if (host == nullptr) {
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g_killed = true;
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LogError(LOG_HOST, "[FAIL] %s", threadName.c_str());
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}
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if (g_killed) {
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delete th;
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return nullptr;
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}
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LogInfoEx(LOG_HOST, "[ OK ] %s", threadName.c_str());
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#ifdef _GNU_SOURCE
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::pthread_setname_np(th->thread, threadName.c_str());
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#endif // _GNU_SOURCE
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StopWatch stopWatch;
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stopWatch.start();
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if (host->m_dmr != nullptr) {
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while (!g_killed) {
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uint32_t ms = stopWatch.elapsed();
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stopWatch.start();
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// scope is intentional
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{
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// ------------------------------------------------------
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// -- Read from Modem Processing --
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// ------------------------------------------------------
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uint8_t data[DMRDEF::DMR_FRAME_LENGTH_BYTES * 2U];
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auto afterReadCallback = [&]() {
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if (host->m_dmr != nullptr) {
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host->interruptDMRBeacon();
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}
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// if there is a P25 CC running; halt the CC
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if (host->m_p25 != nullptr) {
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if (host->m_p25->getCCRunning() && !host->m_p25->getCCHalted()) {
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host->interruptP25Control();
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}
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}
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// if there is a NXDN CC running; halt the CC
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if (host->m_nxdn != nullptr) {
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if (host->m_nxdn->getCCRunning() && !host->m_nxdn->getCCHalted()) {
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host->interruptNXDNControl();
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}
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}
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};
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if (host->m_dmr != nullptr) {
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uint8_t nextLen = host->m_modem->peekDMRFrame2Length();
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if (nextLen > 0U) {
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// read DMR slot 2 frames from the modem, and if there is any
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// write those frames to the DMR controller
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uint32_t len = host->m_modem->readDMRFrame2(data);
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if (len > 0U) {
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if (host->m_state == STATE_IDLE) {
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// if the modem is in duplex -- process wakeup CSBKs
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if (host->m_duplex) {
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bool ret = host->m_dmr->processWakeup(data);
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if (ret) {
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host->m_modeTimer.setTimeout(host->m_rfModeHang);
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host->setState(STATE_DMR);
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START_DMR_DUPLEX_IDLE(true);
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afterReadCallback();
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}
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}
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else {
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// in simplex -- directly process slot 2 frames
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host->m_modeTimer.setTimeout(host->m_rfModeHang);
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host->setState(STATE_DMR);
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START_DMR_DUPLEX_IDLE(true);
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host->m_dmr->processFrame(2U, data, len);
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afterReadCallback();
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}
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}
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else if (host->m_state == STATE_DMR) {
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// if the modem is in duplex, and hasn't started transmitting
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// process wakeup CSBKs
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if (host->m_duplex && !host->m_modem->hasTX()) {
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bool ret = host->m_dmr->processWakeup(data);
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if (ret) {
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host->m_modem->writeDMRStart(true);
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host->m_dmrTXTimer.start();
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}
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}
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else {
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// process slot 2 frames
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bool ret = host->m_dmr->processFrame(2U, data, len);
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if (ret) {
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afterReadCallback();
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host->m_modeTimer.start();
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if (host->m_duplex)
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host->m_dmrTXTimer.start();
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}
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}
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}
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else if (host->m_state != HOST_STATE_LOCKOUT) {
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LogWarning(LOG_HOST, "DMR modem data received, state = %u", host->m_state);
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}
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}
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// were frames received while still in an In-Call reject state? if so, reset the timer
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if (host->m_dmr->getRFState(2U) == RS_RF_REJECTED) {
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host->m_dmr2RejectTimer.start();
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host->m_dmr2RejCnt++;
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}
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} else {
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// if we're receiving no more frames, and we're in a in-call reject state, clear the state
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if (host->m_dmr->getRFState(2U) == RS_RF_REJECTED) {
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host->m_dmr2RejectTimer.clock(ms);
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if (host->m_dmr2RejectTimer.hasExpired()) {
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LogInfoEx(LOG_HOST, "DMR, slot 2 reset from previous in-call reject, frames = %u", host->m_dmr2RejCnt);
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host->m_dmr2RejectTimer.stop();
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host->m_dmr->clearRFReject(2U);
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host->m_dmr2RejCnt = 0U;
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}
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}
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}
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}
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}
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if (host->m_state != STATE_IDLE)
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Thread::sleep(m_activeTickDelay);
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if (host->m_state == STATE_IDLE)
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Thread::sleep(m_idleTickDelay);
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}
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}
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LogInfoEx(LOG_HOST, "[STOP] %s", threadName.c_str());
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delete th;
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}
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return nullptr;
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}
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/* Entry point to write DMR slot 2 frames to modem. */
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void* Host::threadDMRWriter2(void* arg)
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{
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thread_t* th = (thread_t*)arg;
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if (th != nullptr) {
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#if defined(_WIN32)
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::CloseHandle(th->thread);
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#else
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::pthread_detach(th->thread);
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#endif // defined(_WIN32)
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std::string threadName("dmrd:frame2-w");
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Host* host = static_cast<Host*>(th->obj);
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if (host == nullptr) {
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g_killed = true;
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LogError(LOG_HOST, "[FAIL] %s", threadName.c_str());
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}
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if (g_killed) {
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delete th;
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return nullptr;
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}
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LogInfoEx(LOG_HOST, "[ OK ] %s", threadName.c_str());
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#ifdef _GNU_SOURCE
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::pthread_setname_np(th->thread, threadName.c_str());
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#endif // _GNU_SOURCE
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StopWatch stopWatch;
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stopWatch.start();
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if (host->m_dmr != nullptr) {
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while (!g_killed) {
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host->m_dmrTx2WatchdogTimer.start();
|
|
|
|
uint32_t ms = stopWatch.elapsed();
|
|
stopWatch.start();
|
|
host->m_dmrTx2LoopMS = ms;
|
|
|
|
// scope is intentional
|
|
{
|
|
std::lock_guard<std::mutex> lock(m_clockingMutex);
|
|
|
|
// ------------------------------------------------------
|
|
// -- Write to Modem Processing --
|
|
// ------------------------------------------------------
|
|
|
|
uint8_t data[DMRDEF::DMR_FRAME_LENGTH_BYTES * 2U];
|
|
auto afterWriteCallback = [&]() {
|
|
// if there is a P25 CC running; halt the CC
|
|
if (host->m_p25 != nullptr) {
|
|
if (host->m_p25->getCCRunning() && !host->m_p25->getCCHalted()) {
|
|
host->interruptP25Control();
|
|
}
|
|
}
|
|
|
|
// if there is a NXDN CC running; halt the CC
|
|
if (host->m_nxdn != nullptr) {
|
|
if (host->m_nxdn->getCCRunning() && !host->m_nxdn->getCCHalted()) {
|
|
host->interruptNXDNControl();
|
|
}
|
|
}
|
|
};
|
|
|
|
if (host->m_dmr != nullptr) {
|
|
// check if there is space on the modem for DMR slot 2 frames,
|
|
// if there is read frames from the DMR controller and write it
|
|
// to the modem
|
|
bool ret = host->m_modem->hasDMRSpace2();
|
|
if (ret) {
|
|
uint32_t nextLen = host->m_dmr->peekFrameLength(2U);
|
|
if (host->m_dmrCtrlChannel) {
|
|
if (host->m_dmrDedicatedTxTestTimer.hasExpired() && !host->m_dmrDedicatedTxTestTimer.isPaused()) {
|
|
host->m_dmrDedicatedTxTestTimer.pause();
|
|
if (!host->m_modem->hasTX() && host->m_modem->gotModemStatus() && host->m_state == STATE_DMR && (host->m_dmr->getTSCCSlotNo() == 2U) && host->m_dmr->getCCRunning()) {
|
|
LogError(LOG_HOST, "DMR dedicated CC not transmitting, running = %u, halted = %u, frameLength2 = %u", host->m_dmr->getCCRunning(), host->m_dmr->getCCHalted(), nextLen);
|
|
}
|
|
}
|
|
}
|
|
|
|
bool imm = false;
|
|
uint32_t len = host->m_dmr->getFrame(2U, data, &imm);
|
|
if (len > 0U) {
|
|
// if the state is idle; set to DMR, start mode timer and start DMR idle frames
|
|
if (host->m_state == STATE_IDLE) {
|
|
host->m_modeTimer.setTimeout(host->m_netModeHang);
|
|
host->setState(STATE_DMR);
|
|
START_DMR_DUPLEX_IDLE(true);
|
|
}
|
|
|
|
// if the state is DMR; start DMR idle frames and write DMR slot 2 data
|
|
if (host->m_state == STATE_DMR) {
|
|
START_DMR_DUPLEX_IDLE(true);
|
|
host->m_dmrTXTimer.start();
|
|
|
|
host->m_modem->writeDMRFrame2(data, len);
|
|
|
|
// if there is no DMR CC running; run the interrupt macro to stop
|
|
// any running DMR beacon
|
|
if (!host->m_dmr->getCCRunning()) {
|
|
host->interruptDMRBeacon();
|
|
}
|
|
|
|
afterWriteCallback();
|
|
|
|
host->m_modeTimer.start();
|
|
}
|
|
|
|
host->m_lastDstId = host->m_dmr->getLastDstId(2U);
|
|
host->m_lastSrcId = host->m_dmr->getLastSrcId(2U);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
if (host->m_state != STATE_IDLE)
|
|
Thread::sleep(m_activeTickDelay);
|
|
if (host->m_state == STATE_IDLE)
|
|
Thread::sleep(m_idleTickDelay);
|
|
}
|
|
}
|
|
|
|
LogInfoEx(LOG_HOST, "[STOP] %s", threadName.c_str());
|
|
delete th;
|
|
}
|
|
|
|
return nullptr;
|
|
}
|
|
|
|
/* Helper to interrupt a running DMR beacon. */
|
|
|
|
void Host::interruptDMRBeacon()
|
|
{
|
|
if (m_dmr != nullptr) {
|
|
if (m_dmrBeaconDurationTimer.isRunning() && !m_dmrBeaconDurationTimer.hasExpired()) {
|
|
if (m_dmrTSCCData && !m_dmrCtrlChannel) {
|
|
LogDebug(LOG_HOST, "interrupt DMR m_dmr, m_state = %u", m_state);
|
|
m_dmr->setCCHalted(true);
|
|
m_dmr->setCCRunning(false);
|
|
}
|
|
}
|
|
|
|
m_dmrBeaconDurationTimer.stop();
|
|
}
|
|
}
|