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99ceb03a1c
This formats all copyright comments according to SPDX formatting guidelines. Additionally, this resolves the remaining GPLv2 only licensed files by relicensing them to GPLv2.0-or-later.
423 lines
No EOL
15 KiB
C++
423 lines
No EOL
15 KiB
C++
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#include <memory>
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#include <QKeyEvent>
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#include <QMenu>
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#include <QTimer>
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#include "core/hid/emulated_devices.h"
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#include "core/hid/hid_core.h"
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#include "input_common/drivers/keyboard.h"
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#include "input_common/drivers/mouse.h"
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#include "input_common/main.h"
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#include "ui_configure_ringcon.h"
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#include "yuzu/bootmanager.h"
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#include "yuzu/configuration/config.h"
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#include "yuzu/configuration/configure_ringcon.h"
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const std::array<std::string, ConfigureRingController::ANALOG_SUB_BUTTONS_NUM>
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ConfigureRingController::analog_sub_buttons{{
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"left",
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"right",
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}};
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namespace {
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QString GetKeyName(int key_code) {
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switch (key_code) {
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case Qt::Key_Shift:
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return QObject::tr("Shift");
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case Qt::Key_Control:
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return QObject::tr("Ctrl");
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case Qt::Key_Alt:
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return QObject::tr("Alt");
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case Qt::Key_Meta:
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return {};
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default:
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return QKeySequence(key_code).toString();
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}
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}
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QString GetButtonName(Common::Input::ButtonNames button_name) {
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switch (button_name) {
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case Common::Input::ButtonNames::ButtonLeft:
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return QObject::tr("Left");
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case Common::Input::ButtonNames::ButtonRight:
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return QObject::tr("Right");
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case Common::Input::ButtonNames::ButtonDown:
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return QObject::tr("Down");
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case Common::Input::ButtonNames::ButtonUp:
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return QObject::tr("Up");
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case Common::Input::ButtonNames::TriggerZ:
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return QObject::tr("Z");
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case Common::Input::ButtonNames::TriggerR:
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return QObject::tr("R");
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case Common::Input::ButtonNames::TriggerL:
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return QObject::tr("L");
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case Common::Input::ButtonNames::ButtonA:
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return QObject::tr("A");
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case Common::Input::ButtonNames::ButtonB:
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return QObject::tr("B");
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case Common::Input::ButtonNames::ButtonX:
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return QObject::tr("X");
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case Common::Input::ButtonNames::ButtonY:
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return QObject::tr("Y");
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case Common::Input::ButtonNames::ButtonStart:
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return QObject::tr("Start");
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case Common::Input::ButtonNames::L1:
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return QObject::tr("L1");
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case Common::Input::ButtonNames::L2:
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return QObject::tr("L2");
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case Common::Input::ButtonNames::L3:
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return QObject::tr("L3");
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case Common::Input::ButtonNames::R1:
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return QObject::tr("R1");
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case Common::Input::ButtonNames::R2:
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return QObject::tr("R2");
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case Common::Input::ButtonNames::R3:
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return QObject::tr("R3");
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case Common::Input::ButtonNames::Circle:
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return QObject::tr("Circle");
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case Common::Input::ButtonNames::Cross:
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return QObject::tr("Cross");
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case Common::Input::ButtonNames::Square:
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return QObject::tr("Square");
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case Common::Input::ButtonNames::Triangle:
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return QObject::tr("Triangle");
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case Common::Input::ButtonNames::Share:
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return QObject::tr("Share");
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case Common::Input::ButtonNames::Options:
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return QObject::tr("Options");
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default:
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return QObject::tr("[undefined]");
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}
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}
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void SetAnalogParam(const Common::ParamPackage& input_param, Common::ParamPackage& analog_param,
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const std::string& button_name) {
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// The poller returned a complete axis, so set all the buttons
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if (input_param.Has("axis_x") && input_param.Has("axis_y")) {
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analog_param = input_param;
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return;
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}
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// Check if the current configuration has either no engine or an axis binding.
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// Clears out the old binding and adds one with analog_from_button.
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if (!analog_param.Has("engine") || analog_param.Has("axis_x") || analog_param.Has("axis_y")) {
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analog_param = {
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{"engine", "analog_from_button"},
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};
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}
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analog_param.Set(button_name, input_param.Serialize());
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}
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} // namespace
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ConfigureRingController::ConfigureRingController(QWidget* parent,
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InputCommon::InputSubsystem* input_subsystem_,
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Core::HID::HIDCore& hid_core_)
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: QDialog(parent), timeout_timer(std::make_unique<QTimer>()),
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poll_timer(std::make_unique<QTimer>()), input_subsystem{input_subsystem_},
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ui(std::make_unique<Ui::ConfigureRingController>()) {
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ui->setupUi(this);
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analog_map_buttons = {
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ui->buttonRingAnalogPull,
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ui->buttonRingAnalogPush,
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};
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emulated_device = hid_core_.GetEmulatedDevices();
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emulated_device->SaveCurrentConfig();
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emulated_device->EnableConfiguration();
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LoadConfiguration();
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for (int sub_button_id = 0; sub_button_id < ANALOG_SUB_BUTTONS_NUM; ++sub_button_id) {
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auto* const analog_button = analog_map_buttons[sub_button_id];
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if (analog_button == nullptr) {
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continue;
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}
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connect(analog_button, &QPushButton::clicked, [=, this] {
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HandleClick(
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analog_map_buttons[sub_button_id],
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[=, this](const Common::ParamPackage& params) {
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Common::ParamPackage param = emulated_device->GetRingParam();
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SetAnalogParam(params, param, analog_sub_buttons[sub_button_id]);
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emulated_device->SetRingParam(param);
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},
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InputCommon::Polling::InputType::Stick);
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});
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analog_button->setContextMenuPolicy(Qt::CustomContextMenu);
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connect(analog_button, &QPushButton::customContextMenuRequested,
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[=, this](const QPoint& menu_location) {
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QMenu context_menu;
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Common::ParamPackage param = emulated_device->GetRingParam();
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context_menu.addAction(tr("Clear"), [&] {
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emulated_device->SetRingParam({});
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analog_map_buttons[sub_button_id]->setText(tr("[not set]"));
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});
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context_menu.addAction(tr("Invert axis"), [&] {
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const bool invert_value = param.Get("invert_x", "+") == "-";
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const std::string invert_str = invert_value ? "+" : "-";
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param.Set("invert_x", invert_str);
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emulated_device->SetRingParam(param);
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for (int sub_button_id = 0; sub_button_id < ANALOG_SUB_BUTTONS_NUM;
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++sub_button_id) {
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analog_map_buttons[sub_button_id]->setText(
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AnalogToText(param, analog_sub_buttons[sub_button_id]));
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}
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});
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context_menu.exec(
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analog_map_buttons[sub_button_id]->mapToGlobal(menu_location));
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});
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}
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connect(ui->sliderRingAnalogDeadzone, &QSlider::valueChanged, [=, this] {
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Common::ParamPackage param = emulated_device->GetRingParam();
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const auto slider_value = ui->sliderRingAnalogDeadzone->value();
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ui->labelRingAnalogDeadzone->setText(tr("Deadzone: %1%").arg(slider_value));
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param.Set("deadzone", slider_value / 100.0f);
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emulated_device->SetRingParam(param);
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});
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connect(ui->restore_defaults_button, &QPushButton::clicked, this,
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&ConfigureRingController::RestoreDefaults);
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timeout_timer->setSingleShot(true);
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connect(timeout_timer.get(), &QTimer::timeout, [this] { SetPollingResult({}, true); });
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connect(poll_timer.get(), &QTimer::timeout, [this] {
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const auto& params = input_subsystem->GetNextInput();
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if (params.Has("engine") && IsInputAcceptable(params)) {
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SetPollingResult(params, false);
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return;
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}
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});
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resize(0, 0);
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}
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ConfigureRingController::~ConfigureRingController() {
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emulated_device->DisableConfiguration();
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};
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void ConfigureRingController::changeEvent(QEvent* event) {
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if (event->type() == QEvent::LanguageChange) {
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RetranslateUI();
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}
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QDialog::changeEvent(event);
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}
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void ConfigureRingController::RetranslateUI() {
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ui->retranslateUi(this);
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}
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void ConfigureRingController::UpdateUI() {
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RetranslateUI();
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const Common::ParamPackage param = emulated_device->GetRingParam();
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for (int sub_button_id = 0; sub_button_id < ANALOG_SUB_BUTTONS_NUM; ++sub_button_id) {
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auto* const analog_button = analog_map_buttons[sub_button_id];
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if (analog_button == nullptr) {
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continue;
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}
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analog_button->setText(AnalogToText(param, analog_sub_buttons[sub_button_id]));
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}
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const auto deadzone_label = ui->labelRingAnalogDeadzone;
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const auto deadzone_slider = ui->sliderRingAnalogDeadzone;
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int slider_value = static_cast<int>(param.Get("deadzone", 0.15f) * 100);
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deadzone_label->setText(tr("Deadzone: %1%").arg(slider_value));
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deadzone_slider->setValue(slider_value);
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}
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void ConfigureRingController::ApplyConfiguration() {
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emulated_device->DisableConfiguration();
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emulated_device->SaveCurrentConfig();
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emulated_device->EnableConfiguration();
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}
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void ConfigureRingController::LoadConfiguration() {
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UpdateUI();
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}
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void ConfigureRingController::RestoreDefaults() {
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const std::string default_ring_string = InputCommon::GenerateAnalogParamFromKeys(
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0, 0, Config::default_ringcon_analogs[0], Config::default_ringcon_analogs[1], 0, 0.05f);
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emulated_device->SetRingParam(Common::ParamPackage(default_ring_string));
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UpdateUI();
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}
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void ConfigureRingController::HandleClick(
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QPushButton* button, std::function<void(const Common::ParamPackage&)> new_input_setter,
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InputCommon::Polling::InputType type) {
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button->setText(tr("[waiting]"));
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button->setFocus();
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input_setter = new_input_setter;
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input_subsystem->BeginMapping(type);
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QWidget::grabMouse();
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QWidget::grabKeyboard();
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timeout_timer->start(2500); // Cancel after 2.5 seconds
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poll_timer->start(25); // Check for new inputs every 25ms
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}
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void ConfigureRingController::SetPollingResult(const Common::ParamPackage& params, bool abort) {
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timeout_timer->stop();
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poll_timer->stop();
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input_subsystem->StopMapping();
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QWidget::releaseMouse();
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QWidget::releaseKeyboard();
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if (!abort) {
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(*input_setter)(params);
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}
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UpdateUI();
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input_setter = std::nullopt;
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}
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bool ConfigureRingController::IsInputAcceptable(const Common::ParamPackage& params) const {
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return true;
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}
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void ConfigureRingController::mousePressEvent(QMouseEvent* event) {
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if (!input_setter || !event) {
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return;
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}
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const auto button = GRenderWindow::QtButtonToMouseButton(event->button());
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input_subsystem->GetMouse()->PressButton(0, 0, 0, 0, button);
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}
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void ConfigureRingController::keyPressEvent(QKeyEvent* event) {
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if (!input_setter || !event) {
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return;
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}
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event->ignore();
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if (event->key() != Qt::Key_Escape) {
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input_subsystem->GetKeyboard()->PressKey(event->key());
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}
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}
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QString ConfigureRingController::ButtonToText(const Common::ParamPackage& param) {
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if (!param.Has("engine")) {
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return QObject::tr("[not set]");
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}
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const QString toggle = QString::fromStdString(param.Get("toggle", false) ? "~" : "");
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const QString inverted = QString::fromStdString(param.Get("inverted", false) ? "!" : "");
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const auto common_button_name = input_subsystem->GetButtonName(param);
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// Retrieve the names from Qt
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if (param.Get("engine", "") == "keyboard") {
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const QString button_str = GetKeyName(param.Get("code", 0));
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return QObject::tr("%1%2").arg(toggle, button_str);
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}
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if (common_button_name == Common::Input::ButtonNames::Invalid) {
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return QObject::tr("[invalid]");
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}
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if (common_button_name == Common::Input::ButtonNames::Engine) {
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return QString::fromStdString(param.Get("engine", ""));
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}
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if (common_button_name == Common::Input::ButtonNames::Value) {
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if (param.Has("hat")) {
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const QString hat = QString::fromStdString(param.Get("direction", ""));
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return QObject::tr("%1%2Hat %3").arg(toggle, inverted, hat);
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}
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if (param.Has("axis")) {
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const QString axis = QString::fromStdString(param.Get("axis", ""));
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return QObject::tr("%1%2Axis %3").arg(toggle, inverted, axis);
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}
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if (param.Has("axis_x") && param.Has("axis_y") && param.Has("axis_z")) {
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const QString axis_x = QString::fromStdString(param.Get("axis_x", ""));
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const QString axis_y = QString::fromStdString(param.Get("axis_y", ""));
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const QString axis_z = QString::fromStdString(param.Get("axis_z", ""));
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return QObject::tr("%1%2Axis %3,%4,%5").arg(toggle, inverted, axis_x, axis_y, axis_z);
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}
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if (param.Has("motion")) {
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const QString motion = QString::fromStdString(param.Get("motion", ""));
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return QObject::tr("%1%2Motion %3").arg(toggle, inverted, motion);
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}
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if (param.Has("button")) {
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const QString button = QString::fromStdString(param.Get("button", ""));
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return QObject::tr("%1%2Button %3").arg(toggle, inverted, button);
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}
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}
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QString button_name = GetButtonName(common_button_name);
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if (param.Has("hat")) {
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return QObject::tr("%1%2Hat %3").arg(toggle, inverted, button_name);
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}
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if (param.Has("axis")) {
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return QObject::tr("%1%2Axis %3").arg(toggle, inverted, button_name);
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}
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if (param.Has("motion")) {
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return QObject::tr("%1%2Axis %3").arg(toggle, inverted, button_name);
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}
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if (param.Has("button")) {
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return QObject::tr("%1%2Button %3").arg(toggle, inverted, button_name);
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}
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return QObject::tr("[unknown]");
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}
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QString ConfigureRingController::AnalogToText(const Common::ParamPackage& param,
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const std::string& dir) {
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if (!param.Has("engine")) {
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return QObject::tr("[not set]");
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}
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if (param.Get("engine", "") == "analog_from_button") {
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return ButtonToText(Common::ParamPackage{param.Get(dir, "")});
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}
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if (!param.Has("axis_x") || !param.Has("axis_y")) {
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return QObject::tr("[unknown]");
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}
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const auto engine_str = param.Get("engine", "");
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const QString axis_x_str = QString::fromStdString(param.Get("axis_x", ""));
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const QString axis_y_str = QString::fromStdString(param.Get("axis_y", ""));
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const bool invert_x = param.Get("invert_x", "+") == "-";
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const bool invert_y = param.Get("invert_y", "+") == "-";
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if (dir == "modifier") {
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return QObject::tr("[unused]");
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}
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if (dir == "left") {
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const QString invert_x_str = QString::fromStdString(invert_x ? "+" : "-");
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return QObject::tr("Axis %1%2").arg(axis_x_str, invert_x_str);
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}
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if (dir == "right") {
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const QString invert_x_str = QString::fromStdString(invert_x ? "-" : "+");
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return QObject::tr("Axis %1%2").arg(axis_x_str, invert_x_str);
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}
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if (dir == "up") {
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const QString invert_y_str = QString::fromStdString(invert_y ? "-" : "+");
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return QObject::tr("Axis %1%2").arg(axis_y_str, invert_y_str);
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}
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if (dir == "down") {
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const QString invert_y_str = QString::fromStdString(invert_y ? "+" : "-");
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return QObject::tr("Axis %1%2").arg(axis_y_str, invert_y_str);
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}
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return QObject::tr("[unknown]");
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} |