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/*
* Copyright (C) 2011-2015,2018 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.
*/
#ifndef MMDVMController_H
#define MMDVMController_H
#include "SerialDataController.h"
#include "RingBuffer.h"
#include "Modem.h"
#include "Utils.h"
#include "StdCompat.h"
#include <string>
enum RESP_TYPE_MMDVM {
RTDVM_TIMEOUT,
RTDVM_ERROR,
RTDVM_UNKNOWN,
RTDVM_GET_STATUS,
RTDVM_GET_VERSION,
RTDVM_DSTAR_HEADER,
RTDVM_DSTAR_DATA,
RTDVM_DSTAR_EOT,
RTDVM_DSTAR_LOST,
RTDVM_ACK,
RTDVM_NAK,
RTDVM_DUMP,
RTDVM_DEBUG1,
RTDVM_DEBUG2,
RTDVM_DEBUG3,
RTDVM_DEBUG4,
RTDVM_DEBUG5
};
/*
* CMMDVMController - Driver for MMDVM (Multi-Mode Digital Voice Modem) boards.
*
* Hardware interface: USB CDC-ACM serial at 115200 baud with RTS/CTS flow control.
*
* Protocol: Binary, 3-byte minimum frame.
* byte[0] = 0xE0 (MMDVM_FRAME_START, always)
* byte[1] = total frame length (including this 3-byte header)
* byte[2] = frame type (command/response code)
* byte[3..] = payload
*
* Frame types used for D-Star:
* 0x00 GET_VERSION - request firmware version string
* 0x01 GET_STATUS - request modem status (TX state, space, ADC overflow)
* 0x02 SET_CONFIG - configure modem (invert flags, levels, txDelay, mode)
* 0x10 DSTAR_HEADER - D-Star header (TX from host, RX from modem)
* 0x11 DSTAR_DATA - D-Star voice frame
* 0x12 DSTAR_LOST - RX sync lost (modem -> host)
* 0x13 DSTAR_EOT - end of transmission
* 0x70 ACK - positive acknowledgement
* 0x7F NAK - negative acknowledgement (with reason byte)
* 0xF0 DUMP - raw hex dump from firmware
* 0xF1-0xF5 DEBUG1-5 - firmware debug messages with 0-4 int16 parameters
*
* Startup sequence (readVersion waits 2s for the firmware to boot):
* readVersion() -> setConfig() -> launch entry() thread
*
* During operation (entry() thread):
* - Sends GET_STATUS every 100ms (readStatus()), which triggers a status
* response containing the current TX flag and remaining TX buffer space.
* - Buffer space is used to gate outbound header and data writes:
* space > 4 required to send a header (4 frames reserved)
* space > 1 required to send a data frame
*
* pttInvert: inverts the PTT output polarity (useful when the radio uses
* active-low PTT keying).
* rxLevel / txLevel: 0-100%, scaled to 0-255 for the modem's ADC/DAC ranges.
*
* Auto-detection (findPort / findPath): same sysfs USB path mechanism as
* CDVMegaController; allows the modem to be found after a USB re-enumeration.
*/
class CMMDVMController : public CModem {
public:
CMMDVMController(const std::string& port, const std::string& path, bool rxInvert, bool txInvert, bool pttInvert, unsigned int txDelay, unsigned int rxLevel, unsigned int txLevel);
virtual ~CMMDVMController();
virtual bool start();
virtual unsigned int getSpace();
virtual bool isTXReady();
virtual bool writeHeader(const CHeaderData& header);
virtual bool writeData(const unsigned char* data, unsigned int length, bool end);
virtual std::string getPath() const;
private:
void entry();
std::string m_port;
std::string m_path;
bool m_rxInvert;
bool m_txInvert;
bool m_pttInvert;
unsigned int m_txDelay;
unsigned int m_rxLevel;
unsigned int m_txLevel;
CSerialDataController m_serial;
unsigned char* m_buffer;
CRingBuffer<unsigned char> m_txData;
bool m_rx;
bool readVersion();
bool readStatus();
bool setConfig();
RESP_TYPE_MMDVM getResponse(unsigned char* buffer, unsigned int& length);
bool findPort();
bool findPath();
bool findModem();
bool openModem();
// Decodes and logs a DEBUG1-DEBUG5 firmware debug frame.
// DEBUG1 carries a string; DEBUG2-5 append 1-4 big-endian int16 values.
void printDebug();
};
#endif

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