* update VE.Direct product IDs fixes typos and errors, and adds previously unknown PIDs. closes #641.
424 lines
13 KiB
C++
424 lines
13 KiB
C++
/* framehandler.cpp
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*
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* Arduino library to read from Victron devices using VE.Direct protocol.
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* Derived from Victron framehandler reference implementation.
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*
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* The MIT License
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*
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* Copyright (c) 2019 Victron Energy BV
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* Portions Copyright (C) 2020 Chris Terwilliger
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* https://github.com/cterwilliger/VeDirectFrameHandler
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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*
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* 2020.05.05 - 0.2 - initial release
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* 2020.06.21 - 0.2 - add MIT license, no code changes
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* 2020.08.20 - 0.3 - corrected #include reference
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*
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*/
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#include <Arduino.h>
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#include "VeDirectFrameHandler.h"
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// The name of the record that contains the checksum.
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static constexpr char checksumTagName[] = "CHECKSUM";
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// state machine
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enum States {
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IDLE = 1,
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RECORD_BEGIN = 2,
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RECORD_NAME = 3,
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RECORD_VALUE = 4,
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CHECKSUM = 5,
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RECORD_HEX = 6
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};
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class Silent : public Print {
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public:
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size_t write(uint8_t c) final { return 0; }
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};
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static Silent MessageOutputDummy;
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VeDirectFrameHandler::VeDirectFrameHandler() :
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_msgOut(&MessageOutputDummy),
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_lastUpdate(0),
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_state(IDLE),
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_checksum(0),
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_textPointer(0),
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_hexSize(0),
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_name(""),
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_value(""),
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_debugIn(0),
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_lastByteMillis(0)
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{
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}
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void VeDirectFrameHandler::init(int8_t rx, int8_t tx, Print* msgOut, bool verboseLogging, uint16_t hwSerialPort)
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{
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_vedirectSerial = std::make_unique<HardwareSerial>(hwSerialPort);
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_vedirectSerial->begin(19200, SERIAL_8N1, rx, tx);
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_vedirectSerial->flush();
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_msgOut = msgOut;
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_verboseLogging = verboseLogging;
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_debugIn = 0;
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}
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void VeDirectFrameHandler::dumpDebugBuffer() {
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_msgOut->printf("[VE.Direct] serial input (%d Bytes):", _debugIn);
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for (int i = 0; i < _debugIn; ++i) {
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if (i % 16 == 0) {
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_msgOut->printf("\r\n[VE.Direct]");
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}
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_msgOut->printf(" %02x", _debugBuffer[i]);
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}
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_msgOut->println("");
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_debugIn = 0;
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}
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void VeDirectFrameHandler::loop()
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{
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while ( _vedirectSerial->available()) {
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rxData(_vedirectSerial->read());
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_lastByteMillis = millis();
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}
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// there will never be a large gap between two bytes of the same frame.
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// if such a large gap is observed, reset the state machine so it tries
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// to decode a new frame once more data arrives.
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if (IDLE != _state && _lastByteMillis + 500 < millis()) {
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_msgOut->printf("[VE.Direct] Resetting state machine (was %d) after timeout\r\n", _state);
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if (_verboseLogging) { dumpDebugBuffer(); }
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_checksum = 0;
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_state = IDLE;
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}
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}
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/*
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* rxData
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* This function is called by loop() which passes a byte of serial data
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* Based on Victron's example code. But using String and Map instead of pointer and arrays
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*/
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void VeDirectFrameHandler::rxData(uint8_t inbyte)
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{
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if (_verboseLogging) {
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_debugBuffer[_debugIn] = inbyte;
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_debugIn = (_debugIn + 1) % _debugBuffer.size();
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if (0 == _debugIn) {
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_msgOut->println("[VE.Direct] ERROR: debug buffer overrun!");
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}
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}
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if ( (inbyte == ':') && (_state != CHECKSUM) ) {
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_prevState = _state; //hex frame can interrupt TEXT
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_state = RECORD_HEX;
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_hexSize = 0;
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}
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if (_state != RECORD_HEX) {
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_checksum += inbyte;
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}
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inbyte = toupper(inbyte);
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switch(_state) {
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case IDLE:
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/* wait for \n of the start of an record */
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switch(inbyte) {
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case '\n':
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_state = RECORD_BEGIN;
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break;
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case '\r': /* Skip */
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default:
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break;
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}
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break;
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case RECORD_BEGIN:
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_textPointer = _name;
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*_textPointer++ = inbyte;
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_state = RECORD_NAME;
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break;
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case RECORD_NAME:
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// The record name is being received, terminated by a \t
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switch(inbyte) {
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case '\t':
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// the Checksum record indicates a EOR
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if ( _textPointer < (_name + sizeof(_name)) ) {
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*_textPointer = 0; /* Zero terminate */
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if (strcmp(_name, checksumTagName) == 0) {
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_state = CHECKSUM;
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break;
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}
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}
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_textPointer = _value; /* Reset value pointer */
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_state = RECORD_VALUE;
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break;
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case '#': /* Ignore # from serial number*/
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break;
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default:
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// add byte to name, but do no overflow
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if ( _textPointer < (_name + sizeof(_name)) )
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*_textPointer++ = inbyte;
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break;
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}
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break;
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case RECORD_VALUE:
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// The record value is being received. The \r indicates a new record.
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switch(inbyte) {
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case '\n':
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if ( _textPointer < (_value + sizeof(_value)) ) {
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*_textPointer = 0; // make zero ended
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textRxEvent(_name, _value);
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}
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_state = RECORD_BEGIN;
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break;
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case '\r': /* Skip */
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break;
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default:
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// add byte to value, but do no overflow
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if ( _textPointer < (_value + sizeof(_value)) )
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*_textPointer++ = inbyte;
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break;
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}
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break;
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case CHECKSUM:
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{
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bool valid = _checksum == 0;
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if (!valid) {
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_msgOut->printf("[VE.Direct] checksum 0x%02x != 0, invalid frame\r\n", _checksum);
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}
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if (_verboseLogging) { dumpDebugBuffer(); }
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_checksum = 0;
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_state = IDLE;
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if (valid) { frameValidEvent(); }
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break;
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}
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case RECORD_HEX:
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_state = hexRxEvent(inbyte);
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break;
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}
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}
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/*
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* textRxEvent
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* This function is called every time a new name/value is successfully parsed. It writes the values to the temporary buffer.
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*/
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bool VeDirectFrameHandler::textRxEvent(std::string const& who, char* name, char* value, veStruct& frame) {
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if (_verboseLogging) {
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_msgOut->printf("[Victron %s] Text Event %s: Value: %s\r\n",
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who.c_str(), name, value );
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}
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if (strcmp(name, "PID") == 0) {
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frame.PID = strtol(value, nullptr, 0);
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return true;
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}
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if (strcmp(name, "SER") == 0) {
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strcpy(frame.SER, value);
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return true;
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}
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if (strcmp(name, "FW") == 0) {
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strcpy(frame.FW, value);
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return true;
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}
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if (strcmp(name, "V") == 0) {
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frame.V = round(atof(value) / 10.0) / 100.0;
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return true;
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}
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if (strcmp(name, "I") == 0) {
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frame.I = round(atof(value) / 10.0) / 100.0;
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return true;
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}
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return false;
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}
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/*
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* hexRxEvent
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* This function records hex answers or async messages
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*/
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int VeDirectFrameHandler::hexRxEvent(uint8_t inbyte) {
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int ret=RECORD_HEX; // default - continue recording until end of frame
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switch (inbyte) {
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case '\n':
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// restore previous state
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ret=_prevState;
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break;
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default:
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_hexSize++;
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if (_hexSize>=VE_MAX_HEX_LEN) { // oops -buffer overflow - something went wrong, we abort
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_msgOut->println("[VE.Direct] hexRx buffer overflow - aborting read");
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_hexSize=0;
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ret=IDLE;
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}
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}
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return ret;
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}
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bool VeDirectFrameHandler::isDataValid(veStruct const& frame) const {
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if (_lastUpdate == 0) {
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return false;
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}
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if (strlen(frame.SER) == 0) {
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return false;
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}
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return true;
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}
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uint32_t VeDirectFrameHandler::getLastUpdate() const
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{
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return _lastUpdate;
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}
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/*
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* getPidAsString
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* This function returns the product id (PID) as readable text.
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*/
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frozen::string const& VeDirectFrameHandler::veStruct::getPidAsString() const
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{
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/**
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* this map is rendered from [1], which is more recent than [2]. Phoenix
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* inverters are not included in the map. unfortunately, the documents do
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* not fully align. PID 0xA07F is only present in [1]. PIDs 0xA048, 0xA110,
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* and 0xA111 are only present in [2]. PIDs 0xA06D and 0xA078 are rev3 in
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* [1] but rev2 in [2].
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*
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* [1] https://www.victronenergy.com/upload/documents/VE.Direct-Protocol-3.33.pdf
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* [2] https://www.victronenergy.com/upload/documents/BlueSolar-HEX-protocol.pdf
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*/
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static constexpr frozen::map<uint16_t, frozen::string, 105> values = {
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{ 0x0203, "BMV-700" },
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{ 0x0204, "BMV-702" },
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{ 0x0205, "BMV-700H" },
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{ 0x0300, "BlueSolar MPPT 70|15" },
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{ 0xA040, "BlueSolar MPPT 75|50" },
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{ 0xA041, "BlueSolar MPPT 150|35" },
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{ 0xA042, "BlueSolar MPPT 75|15" },
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{ 0xA043, "BlueSolar MPPT 100|15" },
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{ 0xA044, "BlueSolar MPPT 100|30" },
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{ 0xA045, "BlueSolar MPPT 100|50" },
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{ 0xA046, "BlueSolar MPPT 150|70" },
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{ 0xA047, "BlueSolar MPPT 150|100" },
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{ 0xA048, "BlueSolar MPPT 75|50 rev2" },
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{ 0xA049, "BlueSolar MPPT 100|50 rev2" },
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{ 0xA04A, "BlueSolar MPPT 100|30 rev2" },
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{ 0xA04B, "BlueSolar MPPT 150|35 rev2" },
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{ 0xA04C, "BlueSolar MPPT 75|10" },
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{ 0xA04D, "BlueSolar MPPT 150|45" },
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{ 0xA04E, "BlueSolar MPPT 150|60" },
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{ 0xA04F, "BlueSolar MPPT 150|85" },
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{ 0xA050, "SmartSolar MPPT 250|100" },
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{ 0xA051, "SmartSolar MPPT 150|100" },
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{ 0xA052, "SmartSolar MPPT 150|85" },
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{ 0xA053, "SmartSolar MPPT 75|15" },
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{ 0xA054, "SmartSolar MPPT 75|10" },
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{ 0xA055, "SmartSolar MPPT 100|15" },
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{ 0xA056, "SmartSolar MPPT 100|30" },
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{ 0xA057, "SmartSolar MPPT 100|50" },
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{ 0xA058, "SmartSolar MPPT 150|35" },
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{ 0xA059, "SmartSolar MPPT 150|100 rev2" },
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{ 0xA05A, "SmartSolar MPPT 150|85 rev2" },
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{ 0xA05B, "SmartSolar MPPT 250|70" },
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{ 0xA05C, "SmartSolar MPPT 250|85" },
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{ 0xA05D, "SmartSolar MPPT 250|60" },
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{ 0xA05E, "SmartSolar MPPT 250|45" },
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{ 0xA05F, "SmartSolar MPPT 100|20" },
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{ 0xA060, "SmartSolar MPPT 100|20 48V" },
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{ 0xA061, "SmartSolar MPPT 150|45" },
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{ 0xA062, "SmartSolar MPPT 150|60" },
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{ 0xA063, "SmartSolar MPPT 150|70" },
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{ 0xA064, "SmartSolar MPPT 250|85 rev2" },
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{ 0xA065, "SmartSolar MPPT 250|100 rev2" },
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{ 0xA066, "BlueSolar MPPT 100|20" },
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{ 0xA067, "BlueSolar MPPT 100|20 48V" },
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{ 0xA068, "SmartSolar MPPT 250|60 rev2" },
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{ 0xA069, "SmartSolar MPPT 250|70 rev2" },
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{ 0xA06A, "SmartSolar MPPT 150|45 rev2" },
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{ 0xA06B, "SmartSolar MPPT 150|60 rev2" },
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{ 0xA06C, "SmartSolar MPPT 150|70 rev2" },
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{ 0xA06D, "SmartSolar MPPT 150|85 rev3" },
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{ 0xA06E, "SmartSolar MPPT 150|100 rev3" },
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{ 0xA06F, "BlueSolar MPPT 150|45 rev2" },
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{ 0xA070, "BlueSolar MPPT 150|60 rev2" },
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{ 0xA071, "BlueSolar MPPT 150|70 rev2" },
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{ 0xA072, "BlueSolar MPPT 150|45 rev3" },
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{ 0xA073, "SmartSolar MPPT 150|45 rev3" },
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{ 0xA074, "SmartSolar MPPT 75|10 rev2" },
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{ 0xA075, "SmartSolar MPPT 75|15 rev2" },
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{ 0xA076, "BlueSolar MPPT 100|30 rev3" },
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{ 0xA077, "BlueSolar MPPT 100|50 rev3" },
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{ 0xA078, "BlueSolar MPPT 150|35 rev3" },
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{ 0xA079, "BlueSolar MPPT 75|10 rev2" },
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{ 0xA07A, "BlueSolar MPPT 75|15 rev2" },
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{ 0xA07B, "BlueSolar MPPT 100|15 rev2" },
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{ 0xA07C, "BlueSolar MPPT 75|10 rev3" },
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{ 0xA07D, "BlueSolar MPPT 75|15 rev3" },
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{ 0xA07E, "SmartSolar MPPT 100|30 12V" },
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{ 0xA07F, "All-In-1 SmartSolar MPPT 75|15 12V" },
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{ 0xA102, "SmartSolar MPPT VE.Can 150|70" },
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{ 0xA103, "SmartSolar MPPT VE.Can 150|45" },
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{ 0xA104, "SmartSolar MPPT VE.Can 150|60" },
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{ 0xA105, "SmartSolar MPPT VE.Can 150|85" },
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{ 0xA106, "SmartSolar MPPT VE.Can 150|100" },
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{ 0xA107, "SmartSolar MPPT VE.Can 250|45" },
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{ 0xA108, "SmartSolar MPPT VE.Can 250|60" },
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{ 0xA109, "SmartSolar MPPT VE.Can 250|70" },
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{ 0xA10A, "SmartSolar MPPT VE.Can 250|85" },
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{ 0xA10B, "SmartSolar MPPT VE.Can 250|100" },
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{ 0xA10C, "SmartSolar MPPT VE.Can 150|70 rev2" },
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{ 0xA10D, "SmartSolar MPPT VE.Can 150|85 rev2" },
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{ 0xA10E, "SmartSolar MPPT VE.Can 150|100 rev2" },
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{ 0xA10F, "BlueSolar MPPT VE.Can 150|100" },
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{ 0xA110, "SmartSolar MPPT RS 450|100" },
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{ 0xA111, "SmartSolar MPPT RS 450|200" },
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{ 0xA112, "BlueSolar MPPT VE.Can 250|70" },
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{ 0xA113, "BlueSolar MPPT VE.Can 250|100" },
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{ 0xA114, "SmartSolar MPPT VE.Can 250|70 rev2" },
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{ 0xA115, "SmartSolar MPPT VE.Can 250|100 rev2" },
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{ 0xA116, "SmartSolar MPPT VE.Can 250|85 rev2" },
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{ 0xA117, "BlueSolar MPPT VE.Can 150|100 rev2" },
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{ 0xA340, "Phoenix Smart IP43 Charger 12|50 (1+1)" },
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{ 0xA341, "Phoenix Smart IP43 Charger 12|50 (3)" },
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{ 0xA342, "Phoenix Smart IP43 Charger 24|25 (1+1)" },
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{ 0xA343, "Phoenix Smart IP43 Charger 24|25 (3)" },
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{ 0xA344, "Phoenix Smart IP43 Charger 12|30 (1+1)" },
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{ 0xA345, "Phoenix Smart IP43 Charger 12|30 (3)" },
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{ 0xA346, "Phoenix Smart IP43 Charger 24|16 (1+1)" },
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{ 0xA347, "Phoenix Smart IP43 Charger 24|16 (3)" },
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{ 0xA381, "BMV-712 Smart" },
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{ 0xA382, "BMV-710H Smart" },
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{ 0xA383, "BMV-712 Smart Rev2" },
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{ 0xA389, "SmartShunt 500A/50mV" },
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{ 0xA38A, "SmartShunt 1000A/50mV" },
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{ 0xA38B, "SmartShunt 2000A/50mV" },
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{ 0xA3F0, "Smart BuckBoost 12V/12V-50A" },
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};
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return getAsString(values, PID);
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}
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