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#include "AmdaResultParser.h"
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#include <Data/ScalarSeries.h>
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#include <QDateTime>
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#include <QFile>
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#include <QRegularExpression>
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Q_LOGGING_CATEGORY(LOG_AmdaResultParser, "AmdaResultParser")
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namespace {
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/// Format for dates in result files
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const auto DATE_FORMAT = QStringLiteral("yyyy-MM-ddThh:mm:ss.zzz");
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/// Separator between values in a result line
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const auto RESULT_LINE_SEPARATOR = QRegularExpression{QStringLiteral("\\s+")};
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/// Regex to find unit in a line. Examples of valid lines:
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/// ... - Units : nT - ...
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/// ... -Units:nT- ...
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/// ... -Units: m²- ...
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/// ... - Units : m/s - ...
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const auto UNIT_REGEX = QRegularExpression{QStringLiteral("-\\s*Units\\s*:\\s*(.+?)\\s*-")};
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/// Converts a string date to a double date
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/// @return a double that represents the date in seconds, NaN if the string date can't be converted
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double doubleDate(const QString &stringDate) noexcept
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{
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auto dateTime = QDateTime::fromString(stringDate, DATE_FORMAT);
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return dateTime.isValid() ? (dateTime.toMSecsSinceEpoch() / 1000.)
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: std::numeric_limits<double>::quiet_NaN();
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}
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/**
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* Reads stream to retrieve x-axis unit
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* @param stream the stream to read
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* @return the unit that has been read in the stream, a default unit (time unit with no label) if an
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* error occured during reading
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*/
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Unit readXAxisUnit(QTextStream &stream)
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{
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QString line{};
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if (stream.readLineInto(&line)) {
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auto match = UNIT_REGEX.match(line);
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if (match.hasMatch()) {
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return Unit{match.captured(1), true};
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}
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else {
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qCWarning(LOG_AmdaResultParser())
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<< QObject::tr("Can't read unit: invalid line %1").arg(line);
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}
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}
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else {
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qCWarning(LOG_AmdaResultParser()) << QObject::tr("Can't read unit: end of file");
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}
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// Error cases
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return Unit{{}, true};
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}
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/**
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* Reads stream to retrieve results
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* @param stream the stream to read
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* @return the pair of vectors x-axis data/values data that has been read in the stream
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*/
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QPair<QVector<double>, QVector<double> > readResults(QTextStream &stream)
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{
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auto xData = QVector<double>{};
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auto valuesData = QVector<double>{};
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QString line{};
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while (stream.readLineInto(&line)) {
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auto lineData = line.split(RESULT_LINE_SEPARATOR, QString::SkipEmptyParts);
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if (lineData.size() == 2) {
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// X : the data is converted from date to double (in secs)
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auto x = doubleDate(lineData.at(0));
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// Value
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bool valueOk;
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auto value = lineData.at(1).toDouble(&valueOk);
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// Adds result only if x and value are valid
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if (!std::isnan(x) && !std::isnan(value) && valueOk) {
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xData.push_back(x);
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valuesData.push_back(value);
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}
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else {
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qCWarning(LOG_AmdaResultParser())
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<< QObject::tr(
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"Can't retrieve results from line %1: x and/or value are invalid")
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.arg(line);
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}
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}
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else {
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qCWarning(LOG_AmdaResultParser())
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<< QObject::tr("Can't retrieve results from line %1: invalid line").arg(line);
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}
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}
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return qMakePair(std::move(xData), std::move(valuesData));
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}
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} // namespace
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std::shared_ptr<IDataSeries> AmdaResultParser::readTxt(const QString &filePath) noexcept
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{
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QFile file{filePath};
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if (!file.open(QFile::ReadOnly | QIODevice::Text)) {
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qCCritical(LOG_AmdaResultParser())
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<< QObject::tr("Can't retrieve AMDA data from file %1: %2")
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.arg(filePath, file.errorString());
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return nullptr;
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}
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QTextStream stream{&file};
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// Ignore first two lines (comments lines)
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stream.readLine();
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stream.readLine();
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// Reads x-axis unit
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auto xAxisUnit = readXAxisUnit(stream);
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// Reads results
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auto results = readResults(stream);
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return std::make_shared<ScalarSeries>(std::move(results.first), std::move(results.second),
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xAxisUnit, Unit{});
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}
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