187 lines
5.9 KiB
C++
187 lines
5.9 KiB
C++
#include "sensor.hpp"
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#include <algorithm>
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#include <regex>
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#include <QSerialPort>
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#include <QtDebug>
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#include <QtGlobal>
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#include "log_tr.hpp"
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#include "utils.hpp"
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Sensor::~Sensor()
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{
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qDebug(ltr("Destroying sensor on serial port %1").arg(m_serialPortName));
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}
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Sensor::Sensor(Sensor&& other) noexcept : m_serialPortName(other.m_serialPortName), m_errorOccurred(other.m_errorOccurred), m_range(other.m_range)
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{
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other.m_serialPortName.clear();
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other.m_errorOccurred = false;
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other.m_range.reset();
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}
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std::vector<float> Sensor::readValues()
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{
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qDebug(ltr("Reading values of sensor on port %1").arg(m_serialPortName));
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const auto readCmd = QByteArray(READ_CMD.data(), static_cast<int>(READ_CMD.size()));
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QByteArray response;
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if(!getSensorCommandResponse(m_serialPortName, readCmd, response))
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return {};
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const auto values = parseReadResponse(response);
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if(!m_range) {
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qDebug(ltr("No sensor range known"));
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const auto sensorRange = readRange();
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if(m_errorOccurred) {
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return {};
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}
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m_range = sensorRange;
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}
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std::vector<float> normalizedValues;
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for(const auto& value: values) {
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normalizedValues.push_back(utils::map(value, m_range->first, m_range->second, 0.f, 1.f));
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}
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return normalizedValues;
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}
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Sensor::Sensor(const QString& serialPortName) : m_serialPortName(serialPortName)
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{
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qDebug(ltr("Creating sensor on serial port %1").arg(m_serialPortName));
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}
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bool Sensor::isValidSensor()
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{
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const auto versionCmd = QByteArray(VERSION_CMD.data(), static_cast<int>(VERSION_CMD.size()));
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QByteArray response;
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if(!getSensorCommandResponse(m_serialPortName, versionCmd, response)) {
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if(!response.isEmpty()) {
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qCritical(ltr("Only read \"%1\" from serial port %2").arg(QString(response)).arg(m_serialPortName));
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}
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return false;
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}
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const auto version = parseVersionResponse(response);
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return version == SUPPORTED_FIRMWARE;
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}
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bool Sensor::getSensorCommandResponse(const QString& serialPortName, QByteArray command, QByteArray& response)
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{
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QSerialPort serialPort;
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serialPort.setPortName(serialPortName);
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serialPort.setBaudRate(115200); // Not required, STM32 VCP works with any baud rate
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m_errorOccurred = true; // Cleared on success
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if(!serialPort.open(QIODevice::ReadWrite)) {
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qCritical(ltr("Unable to open serial port %1, error code: %2").arg(serialPortName).arg(serialPort.errorString()));
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return false;
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}
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qDebug(ltr("Sending \"%1\" command to serial port %2").arg(QString(command)).arg(serialPortName));
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command.prepend("\r\n");
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command.append("\r\n");
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const auto bytesWritten = serialPort.write(command);
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if(bytesWritten == -1) {
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qCritical(ltr("Failed to write data to serial port %1, error code: %2").arg(serialPortName).arg(serialPort.errorString()));
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return false;
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}
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else if(bytesWritten != command.size()) {
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qCritical(ltr("Only %1/%2 bytes written to serial port %3, error: %4")
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.arg(bytesWritten)
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.arg(command.size())
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.arg(serialPortName)
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.arg(serialPort.errorString()));
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return false;
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}
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else if(!serialPort.waitForBytesWritten(100)) {
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qCritical(ltr("Writing operation timed out for serial port %1, error: %2").arg(serialPortName).arg(serialPort.errorString()));
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return false;
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}
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while(serialPort.waitForReadyRead(100)) {
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const auto newData = serialPort.readAll();
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qDebug(ltr("Read additional %1 bytes from serial port %2").arg(newData.size()).arg(serialPortName));
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response.append(newData);
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}
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if(serialPort.error() == QSerialPort::ReadError) {
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qCritical(ltr("Failed to read from serial port %1, error: %2").arg(serialPortName).arg(serialPort.errorString()));
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return false;
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}
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else if(serialPort.error() == QSerialPort::TimeoutError && response.isEmpty()) {
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qCritical(ltr("No data was read from serial port %1, error: %2").arg(serialPortName).arg(serialPort.errorString()));
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return false;
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}
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m_errorOccurred = false;
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return true;
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}
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std::string Sensor::parseVersionResponse(const QByteArray& response) const
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{
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const auto versionRegex = std::regex("[a-zA-Z]+ v[0-9]\\.[0-9]");
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const auto strResponse = response.toStdString();
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std::smatch versionMatch;
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if(std::regex_search(strResponse, versionMatch, versionRegex)) {
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qDebug(ltr("Found version match: '%1'").arg(QString().fromStdString(versionMatch[0].str())));
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return versionMatch[0];
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}
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return {};
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}
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std::pair<int, int> Sensor::parseRangeResponse(const QByteArray& response) const
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{
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const auto rangeRegex = std::regex("([0-9]+),([0-9]+)");
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const auto strResponse = response.toStdString();
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std::smatch rangeMatch;
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if(std::regex_search(strResponse, rangeMatch, rangeRegex)) {
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qDebug(ltr("Found range response: '%1'").arg(QString().fromStdString(rangeMatch[0].str())));
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return std::pair{std::stoi(rangeMatch[1]), std::stoi(rangeMatch[2])};
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}
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return {-1, -1};
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}
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std::vector<int> Sensor::parseReadResponse(const QByteArray& response) const
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{
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const auto readRegex = std::regex("([0-9]+),([0-9]+),([0-9]+)");
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const auto strResponse = response.toStdString();
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std::smatch readMatch;
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if(std::regex_search(strResponse, readMatch, readRegex)) {
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qDebug(ltr("Found read response: '%1'").arg(QString().fromStdString(readMatch[0].str())));
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return {std::stoi(readMatch[1]), std::stoi(readMatch[2]), std::stoi(readMatch[3])};
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}
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return {};
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}
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std::pair<int, int> Sensor::readRange()
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{
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qDebug(ltr("Reading range of sensor on port %1").arg(m_serialPortName));
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const auto rangeCmd = QByteArray(RANGE_CMD.data(), static_cast<int>(RANGE_CMD.size()));
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QByteArray response;
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if(!getSensorCommandResponse(m_serialPortName, rangeCmd, response))
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return {-1, -1};
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return parseRangeResponse(response);
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}
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