/* * Copyright (C) 2011-2015 by Jonathan Naylor G4KLX * * 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 "CCITTChecksumReverse.h" #include "DVMegaController.h" #include "CCITTChecksum.h" #include "DStarDefines.h" #include "Timer.h" #if defined(__WINDOWS__) #include #else #include #endif const unsigned char DVRPTR_HEADER_LENGTH = 5U; const unsigned char DVRPTR_FRAME_START = 0xD0U; const unsigned char DVRPTR_GET_STATUS = 0x10U; const unsigned char DVRPTR_GET_VERSION = 0x11U; const unsigned char DVRPTR_GET_SERIAL = 0x12U; const unsigned char DVRPTR_GET_CONFIG = 0x13U; const unsigned char DVRPTR_SET_CONFIG = 0x14U; const unsigned char DVRPTR_RXPREAMBLE = 0x15U; const unsigned char DVRPTR_START = 0x16U; const unsigned char DVRPTR_HEADER = 0x17U; const unsigned char DVRPTR_RXSYNC = 0x18U; const unsigned char DVRPTR_DATA = 0x19U; const unsigned char DVRPTR_EOT = 0x1AU; const unsigned char DVRPTR_RXLOST = 0x1BU; const unsigned char DVRPTR_MSG_RSVD1 = 0x1CU; const unsigned char DVRPTR_MSG_RSVD2 = 0x1DU; const unsigned char DVRPTR_MSG_RSVD3 = 0x1EU; const unsigned char DVRPTR_SET_TESTMDE = 0x1FU; const unsigned char DVRPTR_ACK = 0x06U; const unsigned char DVRPTR_NAK = 0x15U; const unsigned int MAX_RESPONSES = 30U; const unsigned int BUFFER_LENGTH = 200U; CDVMegaController::CDVMegaController(const wxString& port, const wxString& path, bool rxInvert, bool txInvert, unsigned int txDelay) : CModem(), m_port(port), m_path(path), m_rxInvert(rxInvert), m_txInvert(txInvert), m_txDelay(txDelay), m_rxFrequency(0U), m_txFrequency(0U), m_power(0U), m_serial(port, SERIAL_115200, true), m_buffer(NULL), m_txData(1000U), m_txCounter(0U), m_pktCounter(0U), m_rx(false), m_txSpace(0U), m_txEnabled(false), m_checksum(false) { wxASSERT(!port.IsEmpty()); m_buffer = new unsigned char[BUFFER_LENGTH]; } CDVMegaController::CDVMegaController(const wxString& port, const wxString& path, unsigned int txDelay, unsigned int rxFrequency, unsigned int txFrequency, unsigned int power) : CModem(), m_port(port), m_path(path), m_rxInvert(false), m_txInvert(false), m_txDelay(txDelay), m_rxFrequency(rxFrequency), m_txFrequency(txFrequency), m_power(power), m_serial(port, SERIAL_115200, true), m_buffer(NULL), m_txData(1000U), m_txCounter(0U), m_pktCounter(0U), m_rx(false), m_txSpace(0U), m_txEnabled(false), m_checksum(false) { wxASSERT(!port.IsEmpty()); wxASSERT((rxFrequency >= 144000000U && rxFrequency <= 148000000U) || (rxFrequency >= 420000000U && rxFrequency <= 450000000U)); wxASSERT((txFrequency >= 144000000U && txFrequency <= 148000000U) || (txFrequency >= 420000000U && txFrequency <= 450000000U)); m_buffer = new unsigned char[BUFFER_LENGTH]; } CDVMegaController::~CDVMegaController() { delete[] m_buffer; } bool CDVMegaController::start() { findPort(); bool ret = openModem(); if (!ret) return false; findPath(); Create(); SetPriority(100U); Run(); return true; } void* CDVMegaController::Entry() { wxLogMessage(wxT("Starting DVMEGA Controller thread")); // Clock every 5ms-ish CTimer pollTimer(200U, 0U, 100U); pollTimer.start(); unsigned char writeType = DSMTT_NONE; unsigned char writeLength = 0U; unsigned char* writeBuffer = new unsigned char[BUFFER_LENGTH]; unsigned int space = 0U; while (!m_stopped) { // Poll the modem status every 100ms if (pollTimer.hasExpired()) { bool ret = readStatus(); if (!ret) { ret = findModem(); if (!ret) { wxLogMessage(wxT("Stopping DVMEGA Controller thread")); return NULL; } } pollTimer.start(); } unsigned int length; RESP_TYPE_MEGA type = getResponse(m_buffer, length); switch (type) { case RTM_TIMEOUT: break; case RTM_ERROR: { bool ret = findModem(); if (!ret) { wxLogMessage(wxT("Stopping DVMEGA Controller thread")); return NULL; } } break; case RTM_RXPREAMBLE: // wxLogMessage(wxT("RT_PREAMBLE")); break; case RTM_START: // wxLogMessage(wxT("RT_START")); break; case RTM_HEADER: // CUtils::dump(wxT("RT_HEADER"), m_buffer, length); if (length == 7U) { if (m_buffer[4U] == DVRPTR_NAK) wxLogWarning(wxT("Received a header NAK from the DVMEGA")); } else { bool correct = (m_buffer[5U] & 0x80U) == 0x00U; if (correct) { wxMutexLocker locker(m_mutex); unsigned char data[2U]; data[0U] = DSMTT_HEADER; data[1U] = RADIO_HEADER_LENGTH_BYTES; m_rxData.addData(data, 2U); m_rxData.addData(m_buffer + 8U, RADIO_HEADER_LENGTH_BYTES); m_rx = true; } } break; case RTM_RXSYNC: // wxLogMessage(wxT("RT_RXSYNC")); break; case RTM_DATA: // CUtils::dump(wxT("RT_DATA"), m_buffer, length); if (length == 7U) { if (m_buffer[4U] == DVRPTR_NAK) wxLogWarning(wxT("Received a data NAK from the DVMEGA")); } else { wxMutexLocker locker(m_mutex); unsigned char data[2U]; data[0U] = DSMTT_DATA; data[1U] = DV_FRAME_LENGTH_BYTES; m_rxData.addData(data, 2U); m_rxData.addData(m_buffer + 8U, DV_FRAME_LENGTH_BYTES); m_rx = true; } break; case RTM_EOT: { // wxLogMessage(wxT("RT_EOT")); wxMutexLocker locker(m_mutex); unsigned char data[2U]; data[0U] = DSMTT_EOT; data[1U] = 0U; m_rxData.addData(data, 2U); m_rx = false; } break; case RTM_RXLOST: { // wxLogMessage(wxT("RT_LOST")); wxMutexLocker locker(m_mutex); unsigned char data[2U]; data[0U] = DSMTT_LOST; data[1U] = 0U; m_rxData.addData(data, 2U); m_rx = false; } break; case RTM_GET_STATUS: { m_txEnabled = (m_buffer[4U] & 0x02U) == 0x02U; m_checksum = (m_buffer[4U] & 0x08U) == 0x08U; m_tx = (m_buffer[5U] & 0x02U) == 0x02U; m_txSpace = m_buffer[8U]; space = m_txSpace - m_buffer[9U]; // CUtils::dump(wxT("GET_STATUS"), m_buffer, length); // wxLogMessage(wxT("PTT=%d tx=%u space=%u cksum=%d, tx enabled=%d"), int(m_tx), m_txSpace, space, int(m_checksum), int(m_txEnabled)); } break; // These should not be received in this loop, but don't complain if we do case RTM_GET_VERSION: case RTM_GET_SERIAL: case RTM_GET_CONFIG: break; default: wxLogMessage(wxT("Unknown message, type: %02X"), m_buffer[3U]); CUtils::dump(wxT("Buffer dump"), m_buffer, length); break; } if (space > 0U) { if (writeType == DSMTT_NONE && m_txData.hasData()) { wxMutexLocker locker(m_mutex); m_txData.getData(&writeType, 1U); m_txData.getData(&writeLength, 1U); m_txData.getData(writeBuffer, writeLength); } // Only send the start when the TX is off if (!m_tx && writeType == DSMTT_START) { // CUtils::dump(wxT("Write Header"), writeBuffer, writeLength); int ret = m_serial.write(writeBuffer, writeLength); if (ret != int(writeLength)) wxLogWarning(wxT("Error when writing the header to the DVMEGA")); writeType = DSMTT_NONE; space--; } if (space > 4U && writeType == DSMTT_HEADER) { // CUtils::dump(wxT("Write Header"), writeBuffer, writeLength); int ret = m_serial.write(writeBuffer, writeLength); if (ret != int(writeLength)) wxLogWarning(wxT("Error when writing the header to the DVMEGA")); writeType = DSMTT_NONE; space -= 4U; } if (writeType == DSMTT_DATA || writeType == DSMTT_EOT) { // CUtils::dump(wxT("Write Data"), writeBuffer, writeLength); int ret = m_serial.write(writeBuffer, writeLength); if (ret != int(writeLength)) wxLogWarning(wxT("Error when writing data to the DVMEGA")); writeType = DSMTT_NONE; space--; } } Sleep(5UL); pollTimer.clock(); } wxLogMessage(wxT("Stopping DVMEGA Controller thread")); setEnabled(false); delete[] writeBuffer; m_serial.close(); return NULL; } bool CDVMegaController::writeHeader(const CHeaderData& header) { if (!m_txEnabled) return false; bool ret = m_txData.hasSpace(64U); if (!ret) { wxLogWarning(wxT("No space to write the header")); return false; } m_txCounter++; if (m_txCounter == 0U) m_txCounter = 1U; unsigned char buffer1[10U]; buffer1[0U] = DVRPTR_FRAME_START; buffer1[1U] = 0x03U; buffer1[2U] = 0x00U; buffer1[3U] = DVRPTR_START; buffer1[4U] = m_txCounter; buffer1[5U] = 0x00U; if (m_checksum) { CCCITTChecksum cksum; cksum.update(buffer1 + 0U, 6U); cksum.result(buffer1 + 6U); } else { buffer1[6U] = 0x00U; buffer1[7U] = 0x0BU; } unsigned char buffer2[60U]; buffer2[0U] = DVRPTR_FRAME_START; buffer2[1U] = 0x2FU; buffer2[2U] = 0x00U; buffer2[3U] = DVRPTR_HEADER; buffer2[4U] = m_txCounter; buffer2[5U] = 0x00U; buffer2[6U] = 0x00U; buffer2[7U] = 0x00U; ::memset(buffer2 + 8U, ' ', RADIO_HEADER_LENGTH_BYTES); buffer2[8U] = header.getFlag1(); buffer2[9U] = header.getFlag2(); buffer2[10U] = header.getFlag3(); wxString rpt2 = header.getRptCall2(); for (unsigned int i = 0U; i < rpt2.Len() && i < LONG_CALLSIGN_LENGTH; i++) buffer2[i + 11U] = rpt2.GetChar(i); wxString rpt1 = header.getRptCall1(); for (unsigned int i = 0U; i < rpt1.Len() && i < LONG_CALLSIGN_LENGTH; i++) buffer2[i + 19U] = rpt1.GetChar(i); wxString your = header.getYourCall(); for (unsigned int i = 0U; i < your.Len() && i < LONG_CALLSIGN_LENGTH; i++) buffer2[i + 27U] = your.GetChar(i); wxString my1 = header.getMyCall1(); for (unsigned int i = 0U; i < my1.Len() && i < LONG_CALLSIGN_LENGTH; i++) buffer2[i + 35U] = my1.GetChar(i); wxString my2 = header.getMyCall2(); for (unsigned int i = 0U; i < my2.Len() && i < SHORT_CALLSIGN_LENGTH; i++) buffer2[i + 43U] = my2.GetChar(i); CCCITTChecksumReverse cksum1; cksum1.update(buffer2 + 8U, RADIO_HEADER_LENGTH_BYTES - 2U); cksum1.result(buffer2 + 47U); buffer2[49U] = 0x00U; if (m_checksum) { CCCITTChecksum cksum; cksum.update(buffer2 + 0U, 50U); cksum.result(buffer2 + 50U); } else { buffer2[50U] = 0x00U; buffer2[51U] = 0x0BU; } m_pktCounter = 0U; wxMutexLocker locker(m_mutex); unsigned char type1 = DSMTT_START; m_txData.addData(&type1, 1U); unsigned char len1 = 8U; m_txData.addData(&len1, 1U); m_txData.addData(buffer1, 8U); unsigned char type2 = DSMTT_HEADER; m_txData.addData(&type2, 1U); unsigned char len2 = 52U; m_txData.addData(&len2, 1U); m_txData.addData(buffer2, 52U); return true; } bool CDVMegaController::writeData(const unsigned char* data, unsigned int, bool end) { if (!m_txEnabled) return false; bool ret = m_txData.hasSpace(26U); if (!ret) { wxLogWarning(wxT("No space to write data")); return false; } unsigned char buffer[30U]; if (end) { buffer[0U] = DVRPTR_FRAME_START; buffer[1U] = 0x03U; buffer[2U] = 0x00U; buffer[3U] = DVRPTR_EOT; buffer[4U] = m_txCounter; buffer[5U] = 0xFFU; if (m_checksum) { CCCITTChecksum cksum; cksum.update(buffer + 0U, 6U); cksum.result(buffer + 6U); } else { buffer[6U] = 0x00U; buffer[7U] = 0x0BU; } wxMutexLocker locker(m_mutex); unsigned char type = DSMTT_EOT; m_txData.addData(&type, 1U); unsigned char len = 8U; m_txData.addData(&len, 1U); m_txData.addData(buffer, 8U); return true; } buffer[0U] = DVRPTR_FRAME_START; buffer[1U] = 0x13U; buffer[2U] = 0x00U; buffer[3U] = DVRPTR_DATA; buffer[4U] = m_txCounter; buffer[5U] = m_pktCounter; m_pktCounter++; if (m_pktCounter >= m_txSpace) m_pktCounter = 0U; buffer[6U] = 0x00U; buffer[7U] = 0x00U; ::memcpy(buffer + 8U, data, DV_FRAME_LENGTH_BYTES); buffer[20U] = 0x00U; buffer[21U] = 0x00U; if (m_checksum) { CCCITTChecksum cksum; cksum.update(buffer + 0U, 22U); cksum.result(buffer + 22U); } else { buffer[22U] = 0x00U; buffer[23U] = 0x0BU; } wxMutexLocker locker(m_mutex); unsigned char type = DSMTT_DATA; m_txData.addData(&type, 1U); unsigned char len = 24U; m_txData.addData(&len, 1U); m_txData.addData(buffer, 24U); return true; } unsigned int CDVMegaController::getSpace() { return m_txData.freeSpace() / 26U; } bool CDVMegaController::isTXReady() { if (m_tx) return false; return m_txData.isEmpty(); } bool CDVMegaController::readVersion() { for (unsigned int i = 0U; i < 6U; i++) { unsigned char buffer[10U]; buffer[0U] = DVRPTR_FRAME_START; buffer[1U] = 0x01U; buffer[2U] = 0x00U; buffer[3U] = DVRPTR_GET_VERSION; if (m_checksum) { CCCITTChecksum cksum; cksum.update(buffer + 0U, 4U); cksum.result(buffer + 4U); } else { buffer[4U] = 0x00U; buffer[5U] = 0x0BU; } // CUtils::dump(wxT("Written"), buffer, 6U); int ret = m_serial.write(buffer, 6U); if (ret != 6) return false; for (unsigned int count = 0U; count < MAX_RESPONSES; count++) { ::wxMilliSleep(10UL); unsigned int length; RESP_TYPE_MEGA resp = getResponse(m_buffer, length); if (resp == RTM_GET_VERSION) { wxString firmware; if ((m_buffer[4U] & 0x0FU) > 0x00U) firmware.Printf(wxT("%u.%u%u%c"), (m_buffer[5U] & 0xF0U) >> 4, m_buffer[5U] & 0x0FU, (m_buffer[4U] & 0xF0U) >> 4, (m_buffer[4U] & 0x0FU) + wxT('a') - 1U); else firmware.Printf(wxT("%u.%u%u"), (m_buffer[5U] & 0xF0U) >> 4, m_buffer[5U] & 0x0FU, (m_buffer[4U] & 0xF0U) >> 4); wxString hardware((char*)(m_buffer + 6U), wxConvLocal, length - DVRPTR_HEADER_LENGTH - 3U); wxLogInfo(wxT("DVMEGA Firmware version: %s, hardware: %s"), firmware.c_str(), hardware.c_str()); return true; } } ::wxSleep(1); } wxLogError(wxT("Unable to read the firmware version after six attempts")); return false; } bool CDVMegaController::readStatus() { unsigned char buffer[10U]; buffer[0U] = DVRPTR_FRAME_START; buffer[1U] = 0x01U; buffer[2U] = 0x00U; buffer[3U] = DVRPTR_GET_STATUS; if (m_checksum) { CCCITTChecksum cksum; cksum.update(buffer + 0U, 4U); cksum.result(buffer + 4U); } else { buffer[4U] = 0x00U; buffer[5U] = 0x0BU; } return m_serial.write(buffer, 6U) == 6; } bool CDVMegaController::setConfig() { unsigned char buffer[20U]; buffer[0U] = DVRPTR_FRAME_START; buffer[1U] = 0x07U; buffer[2U] = 0x00U; buffer[3U] = DVRPTR_SET_CONFIG; buffer[4U] = 0xC0U; // Physical layer buffer[5U] = 0x04U; // Block length buffer[6U] = 0x00U; if (m_rxInvert) buffer[6U] |= 0x01U; if (m_txInvert) buffer[6U] |= 0x02U; wxUint16* txDelay = (wxUint16*)(buffer + 8U); *txDelay = wxUINT16_SWAP_ON_BE(m_txDelay); if (m_checksum) { CCCITTChecksum cksum; cksum.update(buffer + 0U, 10U); cksum.result(buffer + 10U); } else { buffer[10U] = 0x00U; buffer[11U] = 0x0BU; } // CUtils::dump(wxT("Written"), buffer, 12U); int ret = m_serial.write(buffer, 12U); if (ret != 12) return false; unsigned int count = 0U; unsigned int length; RESP_TYPE_MEGA resp; do { ::wxMilliSleep(10UL); resp = getResponse(m_buffer, length); if (resp != RTM_SET_CONFIG) { count++; if (count >= MAX_RESPONSES) { wxLogError(wxT("The DVMEGA is not responding to the SET_CONFIG command")); return false; } } } while (resp != RTM_SET_CONFIG); // CUtils::dump(wxT("Response"), m_buffer, length); unsigned char type = m_buffer[4U]; if (type != DVRPTR_ACK) { wxLogError(wxT("Received a NAK to the SET_CONFIG command from the modem")); return false; } return true; } bool CDVMegaController::setFrequencyAndPower() { unsigned char buffer[25U]; ::memset(buffer, 0x00U, 21U); buffer[0U] = DVRPTR_FRAME_START; buffer[1U] = 0x10U; buffer[2U] = 0x00U; buffer[3U] = DVRPTR_SET_CONFIG; buffer[4U] = 0xC1U; // RF layer buffer[5U] = 0x0CU; // Block length wxUint32 rxFreq = wxUINT32_SWAP_ON_BE(wxUint32(m_rxFrequency)); wxUint32 txFreq = wxUINT32_SWAP_ON_BE(wxUint32(m_txFrequency)); ::memcpy(buffer + 7U, &rxFreq, sizeof(wxUint32)); ::memcpy(buffer + 11U, &txFreq, sizeof(wxUint32)); buffer[16U] = (m_power * 64U) / 100U; if (m_checksum) { CCCITTChecksum cksum; cksum.update(buffer + 0U, 19U); cksum.result(buffer + 19U); } else { buffer[19U] = 0x00U; buffer[20U] = 0x0BU; } // CUtils::dump(wxT("Written"), buffer, 21U); int ret = m_serial.write(buffer, 21U); if (ret != 21) return false; unsigned int count = 0U; unsigned int length; RESP_TYPE_MEGA resp; do { ::wxMilliSleep(10UL); resp = getResponse(m_buffer, length); if (resp != RTM_SET_CONFIG) { count++; if (count >= MAX_RESPONSES) { wxLogError(wxT("The DVMEGA is not responding to the SET_CONFIG command")); return false; } } } while (resp != RTM_SET_CONFIG); // CUtils::dump(wxT("Response"), m_buffer, length); unsigned char type = m_buffer[4U]; if (type != DVRPTR_ACK) { wxLogError(wxT("Received a NAK to the SET_CONFIG command from the modem")); return false; } return true; } bool CDVMegaController::setEnabled(bool enable) { unsigned char buffer[10U]; buffer[0U] = DVRPTR_FRAME_START; buffer[1U] = 0x02U; buffer[2U] = 0x00U; buffer[3U] = DVRPTR_GET_STATUS; // Enable RX, TX, and Watchdog if (enable) buffer[4U] = 0x01U | 0x02U | 0x04U; else buffer[4U] = 0x00U; if (m_checksum) { CCCITTChecksum cksum; cksum.update(buffer + 0U, 5U); cksum.result(buffer + 5U); } else { buffer[5U] = 0x00U; buffer[6U] = 0x0BU; } // CUtils::dump(wxT("Written"), buffer, 7U); int ret = m_serial.write(buffer, 7U); if (ret != 7) return false; unsigned int count = 0U; unsigned int length; RESP_TYPE_MEGA resp; do { ::wxMilliSleep(10UL); resp = getResponse(m_buffer, length); if (resp != RTM_GET_STATUS) { count++; if (count >= MAX_RESPONSES) { wxLogError(wxT("The DVMEGA is not responding to the SET_STATUS command")); return false; } } } while (resp != RTM_GET_STATUS); // CUtils::dump(wxT("Response"), m_buffer, length); unsigned char type = m_buffer[4U]; if (type != DVRPTR_ACK) { wxLogError(wxT("Received a NAK to the SET_STATUS command from the modem")); return false; } return true; } RESP_TYPE_MEGA CDVMegaController::getResponse(unsigned char *buffer, unsigned int& length) { // Get the start of the frame or nothing at all int ret = m_serial.read(buffer, 1U); if (ret < 0) { wxLogError(wxT("Error when reading from the DVMEGA")); return RTM_ERROR; } if (ret == 0) return RTM_TIMEOUT; if (buffer[0U] != DVRPTR_FRAME_START) return RTM_TIMEOUT; unsigned int offset = 1U; while (offset < DVRPTR_HEADER_LENGTH) { ret = m_serial.read(buffer + offset, DVRPTR_HEADER_LENGTH - offset); if (ret < 0) { wxLogError(wxT("Error when reading from the DVMEGA")); return RTM_ERROR; } if (ret > 0) offset += ret; if (ret == 0) Sleep(5UL); } length = buffer[1U] + buffer[2U] * 256U; if (length >= 100U) { wxLogError(wxT("Invalid data received from the DVMEGA")); return RTM_ERROR; } // Remove the response bit unsigned int type = buffer[3U] & 0x7FU; offset = 0U; while (offset < length) { ret = m_serial.read(buffer + offset + DVRPTR_HEADER_LENGTH, length - offset); if (ret < 0) { wxLogError(wxT("Error when reading from the DVMEGA")); return RTM_ERROR; } if (ret > 0) offset += ret; if (ret == 0) Sleep(5UL); } length += DVRPTR_HEADER_LENGTH; // CUtils::dump(wxT("Received"), buffer, length); switch (type) { case DVRPTR_GET_STATUS: return RTM_GET_STATUS; case DVRPTR_GET_VERSION: return RTM_GET_VERSION; case DVRPTR_GET_SERIAL: return RTM_GET_SERIAL; case DVRPTR_GET_CONFIG: return RTM_GET_CONFIG; case DVRPTR_SET_CONFIG: return RTM_SET_CONFIG; case DVRPTR_RXPREAMBLE: return RTM_RXPREAMBLE; case DVRPTR_START: return RTM_START; case DVRPTR_HEADER: return RTM_HEADER; case DVRPTR_RXSYNC: return RTM_RXSYNC; case DVRPTR_DATA: return RTM_DATA; case DVRPTR_EOT: return RTM_EOT; case DVRPTR_RXLOST: return RTM_RXLOST; case DVRPTR_SET_TESTMDE: return RTM_SET_TESTMDE; default: return RTM_UNKNOWN; } } wxString CDVMegaController::getPath() const { return m_path; } bool CDVMegaController::findPort() { if (m_path.IsEmpty()) return false; #if defined(__WINDOWS__) #else wxDir dir; bool ret1 = dir.Open(wxT("/sys/class/tty")); if (!ret1) { wxLogError(wxT("Cannot open directory /sys/class/tty")); return false; } wxString fileName; ret1 = dir.GetFirst(&fileName, wxT("ttyACM*")); while (ret1) { wxString path; path.Printf(wxT("/sys/class/tty/%s"), fileName.c_str()); char cpath[255U]; ::memset(cpath, 0x00U, 255U); for (unsigned int i = 0U; i < path.Len(); i++) cpath[i] = path.GetChar(i); char symlink[255U]; int ret2 = ::readlink(cpath, symlink, 255U); if (ret2 < 0) { ::strcat(cpath, "/device"); ret2 = ::readlink(cpath, symlink, 255U); if (ret2 < 0) { wxLogError(wxT("Error from readlink()")); return false; } path = wxString(symlink, wxConvLocal, ret2); } else { // Get all but the last section wxString fullPath = wxString(symlink, wxConvLocal, ret2); path = fullPath.BeforeLast(wxT('/')); } if (path.IsSameAs(m_path)) { m_port.Printf(wxT("/dev/%s"), fileName.c_str()); wxLogMessage(wxT("Found modem port of %s based on the path"), m_port.c_str()); return true; } ret1 = dir.GetNext(&fileName); } #endif return false; } bool CDVMegaController::findPath() { #if defined(__WINDOWS__) #ifdef notdef GUID guids[5U]; DWORD count; BOOL res = ::SetupDiClassGuidsFromName(L"Multifunction", guids, 5U, &count); if (!res) { wxLogError(wxT("Error from SetupDiClassGuidsFromName: err=%u"), ::GetLastError()); return false; } for (DWORD i = 0U; i < count; i++) { HDEVINFO devInfo = ::SetupDiGetClassDevs(&guids[i], NULL, NULL, DIGCF_DEVICEINTERFACE | DIGCF_PRESENT); if (devInfo == INVALID_HANDLE_VALUE) { wxLogError(wxT("Error from SetupDiGetClassDevs: err=%u"), ::GetLastError()); return false; } SP_DEVICE_INTERFACE_DATA devInfoData; devInfoData.cbSize = sizeof(SP_DEVICE_INTERFACE_DATA); for (DWORD index = 0U; ::SetupDiEnumDeviceInterfaces(devInfo, NULL, &guids[i], index, &devInfoData); index++) { // Find the required length of the device structure DWORD length; ::SetupDiGetDeviceInterfaceDetail(devInfo, &devInfoData, NULL, 0U, &length, NULL); PSP_DEVICE_INTERFACE_DETAIL_DATA detailData = PSP_DEVICE_INTERFACE_DETAIL_DATA(::malloc(length)); detailData->cbSize = sizeof(SP_DEVICE_INTERFACE_DETAIL_DATA); // Get the detailed data into the newly allocated device structure DWORD required; res = ::SetupDiGetDeviceInterfaceDetail(devInfo, &devInfoData, detailData, length, &required, NULL); if (!res) { wxLogError(wxT("Error from SetupDiGetDeviceInterfaceDetail: err=%u"), ::GetLastError()); ::SetupDiDestroyDeviceInfoList(devInfo); ::free(detailData); return false; } ::free(detailData); } ::SetupDiDestroyDeviceInfoList(devInfo); } return false; #endif #else wxString path; path.Printf(wxT("/sys/class/tty/%s"), m_port.Mid(5U).c_str()); char cpath[255U]; ::memset(cpath, 0x00U, 255U); for (unsigned int i = 0U; i < path.Len(); i++) cpath[i] = path.GetChar(i); char symlink[255U]; int ret = ::readlink(cpath, symlink, 255U); if (ret < 0) { ::strcat(cpath, "/device"); ret = ::readlink(cpath, symlink, 255U); if (ret < 0) { wxLogError(wxT("Error from readlink()")); return false; } path = wxString(symlink, wxConvLocal, ret); } else { wxString fullPath = wxString(symlink, wxConvLocal, ret); path = fullPath.BeforeLast(wxT('/')); } if (m_path.IsEmpty()) wxLogMessage(wxT("Found modem path of %s"), path.c_str()); m_path = path; #endif return true; } bool CDVMegaController::findModem() { m_serial.close(); // Tell the repeater that the signal has gone away if (m_rx) { wxMutexLocker locker(m_mutex); unsigned char data[2U]; data[0U] = DSMTT_EOT; data[1U] = 0U; m_rxData.addData(data, 2U); m_rx = false; } unsigned int count = 0U; // Purge the transmit buffer every 500ms to avoid overflow, but only try and reopen the modem every 2s while (!m_stopped) { count++; if (count >= 4U) { wxLogMessage(wxT("Trying to reopen the modem")); bool ret = findPort(); if (ret) { ret = openModem(); if (ret) return true; } count = 0U; } Sleep(500UL); } return false; } bool CDVMegaController::openModem() { bool ret = m_serial.open(); if (!ret) return false; ret = readVersion(); if (!ret) { m_serial.close(); return false; } ret = setConfig(); if (!ret) { m_serial.close(); return false; } if (m_rxFrequency != 0U && m_txFrequency != 0U) { ret = setFrequencyAndPower(); if (!ret) { m_serial.close(); return false; } } ret = setEnabled(true); if (!ret) { m_serial.close(); return false; } return true; }