#include "keyphase.h" #include "ui_keyphase.h" #include #include #include #include #include KeyPhase::KeyPhase(int slot_no_,QWidget *parent) : QDialog(parent) , ui(new Ui::KeyPhase) { ui->setupUi(this); ui->widget_body->setProperty("flag", "body"); slot_no = slot_no_; QString slot = QString("%1").arg(slot_no); ui->label_slot->setText(slot); QString filePath_keyphase = QCoreApplication::applicationDirPath() + QString("\\config\\%1\\keyphase.json").arg(slot_no); readJsonFile(filePath_keyphase); Init(); } KeyPhase::~KeyPhase() { delete ui; } void KeyPhase::readJsonFile(const QString &filePath) { QFile file(filePath); if (!file.open(QIODevice::ReadOnly | QIODevice::Text)) { qDebug() << "Cannot open file for reading:" << filePath; return; } QString content = file.readAll(); file.close(); QByteArray jsonData = content.toUtf8(); QJsonDocument jsonDoc = QJsonDocument::fromJson(jsonData); if (jsonDoc.isNull()) { qDebug() << "Cannot parse JSON document"; return; } if (!jsonDoc.isObject() && !jsonDoc.isArray()) { qDebug() << "JSON document is not an object or an array"; return; } QJsonObject json_obj = jsonDoc.object(); QJsonArray chan_array = json_obj["chan"].toArray(); for(int i = 0; i < chan_array.size(); i++){ QJsonObject temp_obj = chan_array[i].toObject(); keyphase_variables[i].id = temp_obj["id"].toInt(); keyphase_variables[i].active = temp_obj["active"].toBool(); QJsonArray voltage_range_array = temp_obj["normal_voltage_range"].toArray(); keyphase_variables[i].normal_voltage_high = voltage_range_array[1].toDouble(); keyphase_variables[i].normal_voltage_low = voltage_range_array[0].toDouble(); keyphase_variables[i].threshold = temp_obj["threshold"].toDouble(); keyphase_variables[i].hysteresis = temp_obj["hysteresis"].toDouble(); keyphase_variables[i].events_per_revolution = temp_obj["events_per_revolution"].toInt(); keyphase_variables[i].record_output = temp_obj["record_output"].toString(); keyphase_variables[i].two_ma_clamp = temp_obj["two_ma_clamp"].toBool(); keyphase_variables[i].alert_latching = temp_obj["alert_latching"].toBool(); keyphase_variables[i].overspeed_latching = temp_obj["overspeed_latching"].toBool(); keyphase_variables[i].normal_latching = temp_obj["normal_latching"].toBool(); } } void KeyPhase::Init() { for (int i = 0; i < CHANNLE_COUNT; i++) { if(keyphase_variables[i].id == 1){ ui->checkBox_enable_1->setChecked(keyphase_variables[i].active); ui->doubleSpinBox_high_1->setValue(keyphase_variables[i].normal_voltage_high); ui->doubleSpinBox_low_1->setValue(keyphase_variables[i].normal_voltage_low); if(keyphase_variables[i].automatic_threshold) ui->radioButton_automatic_threshold_1->setChecked(true); else ui->radioButton_manual_threshold_1->setChecked(true); ui->doubleSpinBox_threshold_1->setValue(keyphase_variables[i].threshold); ui->doubleSpinBox_hysteresis_1->setValue(keyphase_variables[i].hysteresis); ui->spinBox_events_per_revolution_1->setValue(keyphase_variables[i].events_per_revolution); } if(keyphase_variables[i].id == 2) { ui->checkBox_enable_2->setChecked(keyphase_variables[i].active); ui->doubleSpinBox_high_2->setValue(keyphase_variables[i].normal_voltage_high); ui->doubleSpinBox_low_2->setValue(keyphase_variables[i].normal_voltage_low); if(keyphase_variables[i].automatic_threshold) ui->radioButton_automatic_threshold_2->setChecked(true); else ui->radioButton_manual_threshold_2->setChecked(true); ui->doubleSpinBox_threshold_2->setValue(keyphase_variables[i].threshold); ui->doubleSpinBox_hysteresis_2->setValue(keyphase_variables[i].hysteresis); ui->spinBox_events_per_revolution_2->setValue(keyphase_variables[i].events_per_revolution); } if(keyphase_variables[i].id == 3){ ui->checkBox_enable_3->setChecked(keyphase_variables[i].active); ui->doubleSpinBox_high_3->setValue(keyphase_variables[i].normal_voltage_high); ui->doubleSpinBox_low_3->setValue(keyphase_variables[i].normal_voltage_low); if(keyphase_variables[i].automatic_threshold) ui->radioButton_automatic_threshold_3->setChecked(true); else ui->radioButton_manual_threshold_3->setChecked(true); ui->doubleSpinBox_threshold_3->setValue(keyphase_variables[i].threshold); ui->doubleSpinBox_hysteresis_3->setValue(keyphase_variables[i].hysteresis); ui->spinBox_events_per_revolution_3->setValue(keyphase_variables[i].events_per_revolution); } if(keyphase_variables[i].id == 4){ ui->checkBox_enable_4->setChecked(keyphase_variables[i].active); ui->doubleSpinBox_high_4->setValue(keyphase_variables[i].normal_voltage_high); ui->doubleSpinBox_low_4->setValue(keyphase_variables[i].normal_voltage_low); if(keyphase_variables[i].automatic_threshold) ui->radioButton_automatic_threshold_4->setChecked(true); else ui->radioButton_manual_threshold_4->setChecked(true); ui->doubleSpinBox_threshold_4->setValue(keyphase_variables[i].threshold); ui->doubleSpinBox_hysteresis_4->setValue(keyphase_variables[i].hysteresis); ui->spinBox_events_per_revolution_4->setValue(keyphase_variables[i].events_per_revolution); } } } void KeyPhase::on_pushButton_confirm_clicked() { for (int i = 0; i < CHANNLE_COUNT; i++) { if(keyphase_variables[i].id == 1){ keyphase_variables[i].active = ui->checkBox_enable_1->isChecked(); keyphase_variables[i].normal_voltage_high = ui->doubleSpinBox_high_1->value(); keyphase_variables[i].normal_voltage_low = ui->doubleSpinBox_low_1->value(); keyphase_variables[i].automatic_threshold = ui->radioButton_automatic_threshold_1->isChecked(); keyphase_variables[i].threshold = ui->doubleSpinBox_threshold_1->value(); keyphase_variables[i].hysteresis = ui->doubleSpinBox_hysteresis_1->value(); keyphase_variables[i].events_per_revolution = ui->spinBox_events_per_revolution_1->value(); } if(keyphase_variables[i].id == 2){ keyphase_variables[i].active = ui->checkBox_enable_2->isChecked(); keyphase_variables[i].normal_voltage_high = ui->doubleSpinBox_high_2->value(); keyphase_variables[i].normal_voltage_low = ui->doubleSpinBox_low_2->value(); keyphase_variables[i].automatic_threshold = ui->radioButton_automatic_threshold_2->isChecked(); keyphase_variables[i].threshold = ui->doubleSpinBox_threshold_2->value(); keyphase_variables[i].hysteresis = ui->doubleSpinBox_hysteresis_2->value(); keyphase_variables[i].events_per_revolution = ui->spinBox_events_per_revolution_2->value(); } if(keyphase_variables[i].id == 3){ keyphase_variables[i].active = ui->checkBox_enable_3->isChecked(); keyphase_variables[i].normal_voltage_high = ui->doubleSpinBox_high_3->value(); keyphase_variables[i].normal_voltage_low = ui->doubleSpinBox_low_3->value(); keyphase_variables[i].automatic_threshold = ui->radioButton_automatic_threshold_3->isChecked(); keyphase_variables[i].threshold = ui->doubleSpinBox_threshold_3->value(); keyphase_variables[i].hysteresis = ui->doubleSpinBox_hysteresis_3->value(); keyphase_variables[i].events_per_revolution = ui->spinBox_events_per_revolution_3->value(); } if(keyphase_variables[i].id == 4){ keyphase_variables[i].active = ui->checkBox_enable_4->isChecked(); keyphase_variables[i].normal_voltage_high = ui->doubleSpinBox_high_4->value(); keyphase_variables[i].normal_voltage_low = ui->doubleSpinBox_low_4->value(); keyphase_variables[i].automatic_threshold = ui->radioButton_automatic_threshold_4->isChecked(); keyphase_variables[i].threshold = ui->doubleSpinBox_threshold_4->value(); keyphase_variables[i].hysteresis = ui->doubleSpinBox_hysteresis_4->value(); keyphase_variables[i].events_per_revolution = ui->spinBox_events_per_revolution_4->value(); } } QString slot = QString("%1").arg(slot_no); QString filePath_keyphase = QCoreApplication::applicationDirPath() + QString("\\config\\%1\\keyphase.json").arg(slot_no); QFile file(filePath_keyphase); if(!file.open(QIODevice::WriteOnly)) { qDebug() << "Could not open file for writing"; return; } QJsonObject json_obj; QJsonArray chan_array; for (int i = 0; i < CHANNLE_COUNT; i++) { QJsonObject temp_obj; temp_obj.insert("id", keyphase_variables[i].id); temp_obj.insert("active", keyphase_variables[i].active); QJsonArray voltage_range_array; voltage_range_array.append(keyphase_variables[i].normal_voltage_low); voltage_range_array.append(keyphase_variables[i].normal_voltage_high); temp_obj.insert("normal_voltage_range", voltage_range_array); temp_obj.insert("threshold", keyphase_variables[i].threshold); temp_obj.insert("hysteresis", keyphase_variables[i].hysteresis); temp_obj.insert("events_per_revolution", keyphase_variables[i].events_per_revolution); chan_array.append(temp_obj); } json_obj.insert("chan", chan_array); json_obj.insert("version",1); json_obj.insert("slot",slot_no); json_obj.insert("card_type",2); QJsonDocument json_doc; json_doc.setObject(json_obj); QByteArray byte_array = json_doc.toJson(); file.write(byte_array); file.close(); }