controllers/npad: Send an empty vibration on destruction/deactivation
This stops all controllers from continuously vibrating when emulation is stopped.
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@ -117,7 +117,10 @@ u32 Controller_NPad::IndexToNPad(std::size_t index) {
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}
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}
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Controller_NPad::Controller_NPad(Core::System& system) : ControllerBase(system), system(system) {}
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Controller_NPad::Controller_NPad(Core::System& system) : ControllerBase(system), system(system) {}
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Controller_NPad::~Controller_NPad() = default;
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Controller_NPad::~Controller_NPad() {
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OnRelease();
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}
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void Controller_NPad::InitNewlyAddedController(std::size_t controller_idx) {
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void Controller_NPad::InitNewlyAddedController(std::size_t controller_idx) {
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const auto controller_type = connected_controllers[controller_idx].type;
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const auto controller_type = connected_controllers[controller_idx].type;
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@ -274,7 +277,11 @@ void Controller_NPad::OnLoadInputDevices() {
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}
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}
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}
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}
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void Controller_NPad::OnRelease() {}
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void Controller_NPad::OnRelease() {
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for (std::size_t index = 0; index < connected_controllers.size(); ++index) {
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VibrateControllerAtIndex(index, {});
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}
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}
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void Controller_NPad::RequestPadStateUpdate(u32 npad_id) {
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void Controller_NPad::RequestPadStateUpdate(u32 npad_id) {
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const auto controller_idx = NPadIdToIndex(npad_id);
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const auto controller_idx = NPadIdToIndex(npad_id);
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@ -667,7 +674,23 @@ void Controller_NPad::SetNpadMode(u32 npad_id, NpadAssignments assignment_mode)
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}
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}
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}
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}
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void Controller_NPad::VibrateController(const std::vector<DeviceHandle>& vibration_device_handles,
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bool Controller_NPad::VibrateControllerAtIndex(std::size_t npad_index,
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const VibrationValue& vibration_value) {
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if (!connected_controllers[npad_index].is_connected) {
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return false;
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}
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using namespace Settings::NativeButton;
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const auto& button_state = buttons[npad_index];
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return button_state[A - BUTTON_HID_BEGIN]->SetRumblePlay(
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vibration_value.amp_low * Settings::values.vibration_strength.GetValue() / 100,
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vibration_value.freq_low,
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vibration_value.amp_high * Settings::values.vibration_strength.GetValue() / 100,
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vibration_value.freq_high);
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}
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void Controller_NPad::VibrateControllers(const std::vector<DeviceHandle>& vibration_device_handles,
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const std::vector<VibrationValue>& vibration_values) {
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const std::vector<VibrationValue>& vibration_values) {
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LOG_TRACE(Service_HID, "called");
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LOG_TRACE(Service_HID, "called");
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@ -717,17 +740,8 @@ void Controller_NPad::VibrateController(const std::vector<DeviceHandle>& vibrati
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continue;
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continue;
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}
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}
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using namespace Settings::NativeButton;
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const auto& button_state = buttons[npad_index];
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// TODO: Vibrate left/right vibration motors independently if possible.
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// TODO: Vibrate left/right vibration motors independently if possible.
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const bool success = button_state[A - BUTTON_HID_BEGIN]->SetRumblePlay(
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if (VibrateControllerAtIndex(npad_index, vibration_values[i])) {
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vibration_values[i].amp_low * Settings::values.vibration_strength.GetValue() / 100,
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vibration_values[i].freq_low,
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vibration_values[i].amp_high * Settings::values.vibration_strength.GetValue() / 100,
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vibration_values[i].freq_high);
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if (success) {
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switch (connected_controllers[npad_index].type) {
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switch (connected_controllers[npad_index].type) {
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case NPadControllerType::None:
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case NPadControllerType::None:
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UNREACHABLE();
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UNREACHABLE();
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@ -110,10 +110,10 @@ public:
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static_assert(sizeof(NpadStyleSet) == 4, "NpadStyleSet is an invalid size");
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static_assert(sizeof(NpadStyleSet) == 4, "NpadStyleSet is an invalid size");
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struct VibrationValue {
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struct VibrationValue {
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f32 amp_low;
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f32 amp_low{0.0f};
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f32 freq_low;
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f32 freq_low{160.0f};
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f32 amp_high;
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f32 amp_high{0.0f};
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f32 freq_high;
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f32 freq_high{320.0f};
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};
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};
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static_assert(sizeof(VibrationValue) == 0x10, "Vibration is an invalid size");
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static_assert(sizeof(VibrationValue) == 0x10, "Vibration is an invalid size");
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@ -148,7 +148,9 @@ public:
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void SetNpadMode(u32 npad_id, NpadAssignments assignment_mode);
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void SetNpadMode(u32 npad_id, NpadAssignments assignment_mode);
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void VibrateController(const std::vector<DeviceHandle>& vibration_device_handles,
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bool VibrateControllerAtIndex(std::size_t npad_index, const VibrationValue& vibration_value);
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void VibrateControllers(const std::vector<DeviceHandle>& vibration_device_handles,
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const std::vector<VibrationValue>& vibration_values);
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const std::vector<VibrationValue>& vibration_values);
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VibrationValue GetLastVibration(const DeviceHandle& vibration_device_handle) const;
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VibrationValue GetLastVibration(const DeviceHandle& vibration_device_handle) const;
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@ -1022,7 +1022,7 @@ void Hid::SendVibrationValue(Kernel::HLERequestContext& ctx) {
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const auto parameters{rp.PopRaw<Parameters>()};
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const auto parameters{rp.PopRaw<Parameters>()};
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applet_resource->GetController<Controller_NPad>(HidController::NPad)
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applet_resource->GetController<Controller_NPad>(HidController::NPad)
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.VibrateController({parameters.vibration_device_handle}, {parameters.vibration_value});
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.VibrateControllers({parameters.vibration_device_handle}, {parameters.vibration_value});
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LOG_DEBUG(Service_HID,
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LOG_DEBUG(Service_HID,
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"called, npad_type={}, npad_id={}, device_index={}, applet_resource_user_id={}",
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"called, npad_type={}, npad_id={}, device_index={}, applet_resource_user_id={}",
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@ -1100,7 +1100,7 @@ void Hid::SendVibrationValues(Kernel::HLERequestContext& ctx) {
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std::memcpy(vibration_values.data(), vibrations.data(), vibrations.size());
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std::memcpy(vibration_values.data(), vibrations.data(), vibrations.size());
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applet_resource->GetController<Controller_NPad>(HidController::NPad)
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applet_resource->GetController<Controller_NPad>(HidController::NPad)
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.VibrateController(vibration_device_handles, vibration_values);
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.VibrateControllers(vibration_device_handles, vibration_values);
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LOG_DEBUG(Service_HID, "called, applet_resource_user_id={}", applet_resource_user_id);
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LOG_DEBUG(Service_HID, "called, applet_resource_user_id={}", applet_resource_user_id);
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