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https://git.suyu.dev/suyu/suyu.git
synced 2024-11-23 15:22:45 +01:00
hid: Fix controller rumble based on new research
This fixes the issue where rumble is only sent to the first controller. Now, individual controllers can receive their own rumble commands.
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parent
31de52513e
commit
07b81f57ba
3 changed files with 69 additions and 43 deletions
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@ -667,35 +667,44 @@ void Controller_NPad::SetNpadMode(u32 npad_id, NpadAssignments assignment_mode)
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}
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}
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void Controller_NPad::VibrateController(const std::vector<u32>& controllers,
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const std::vector<Vibration>& vibrations) {
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void Controller_NPad::VibrateController(const std::vector<DeviceHandle>& vibration_device_handles,
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const std::vector<VibrationValue>& vibration_values) {
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LOG_TRACE(Service_HID, "called");
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if (!Settings::values.vibration_enabled.GetValue() || !can_controllers_vibrate) {
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return;
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}
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bool success = true;
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for (std::size_t i = 0; i < controllers.size(); ++i) {
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if (!connected_controllers[i].is_connected) {
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ASSERT_MSG(vibration_device_handles.size() == vibration_values.size(),
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"The amount of device handles does not match with the amount of vibration values,"
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"this is undefined behavior!");
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for (std::size_t i = 0; i < vibration_device_handles.size(); ++i) {
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const auto npad_index = NPadIdToIndex(vibration_device_handles[i].npad_id);
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const auto device_index =
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static_cast<std::size_t>(vibration_device_handles[i].device_index);
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if (!connected_controllers[npad_index].is_connected) {
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continue;
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}
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using namespace Settings::NativeButton;
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const auto& button_state = buttons[i];
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if (button_state[A - BUTTON_HID_BEGIN]) {
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if (button_state[A - BUTTON_HID_BEGIN]->SetRumblePlay(
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vibrations[0].amp_high, vibrations[0].amp_low, vibrations[0].freq_high,
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vibrations[0].freq_low)) {
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success = false;
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}
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}
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}
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if (success) {
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last_processed_vibration = vibrations.back();
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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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button_state[A - BUTTON_HID_BEGIN]->SetRumblePlay(
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vibration_values[i].amp_high, vibration_values[i].amp_low,
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vibration_values[i].freq_high, vibration_values[i].freq_low);
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latest_vibration_values[npad_index][device_index] = vibration_values[i];
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}
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}
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Controller_NPad::Vibration Controller_NPad::GetLastVibration() const {
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return last_processed_vibration;
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Controller_NPad::VibrationValue Controller_NPad::GetLastVibration(
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const DeviceHandle& vibration_device_handle) const {
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const auto npad_index = NPadIdToIndex(vibration_device_handle.npad_id);
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const auto device_index = static_cast<std::size_t>(vibration_device_handle.device_index);
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return latest_vibration_values[npad_index][device_index];
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}
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std::shared_ptr<Kernel::ReadableEvent> Controller_NPad::GetStyleSetChangedEvent(u32 npad_id) const {
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@ -109,13 +109,13 @@ public:
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};
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static_assert(sizeof(NpadStyleSet) == 4, "NpadStyleSet is an invalid size");
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struct Vibration {
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struct VibrationValue {
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f32 amp_low;
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f32 freq_low;
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f32 amp_high;
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f32 freq_high;
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};
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static_assert(sizeof(Vibration) == 0x10, "Vibration is an invalid size");
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static_assert(sizeof(VibrationValue) == 0x10, "Vibration is an invalid size");
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struct LedPattern {
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explicit LedPattern(u64 light1, u64 light2, u64 light3, u64 light4) {
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@ -148,10 +148,10 @@ public:
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void SetNpadMode(u32 npad_id, NpadAssignments assignment_mode);
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void VibrateController(const std::vector<u32>& controllers,
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const std::vector<Vibration>& vibrations);
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void VibrateController(const std::vector<DeviceHandle>& vibration_device_handles,
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const std::vector<VibrationValue>& vibration_values);
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Vibration GetLastVibration() const;
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VibrationValue GetLastVibration(const DeviceHandle& vibration_device_handle) const;
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std::shared_ptr<Kernel::ReadableEvent> GetStyleSetChangedEvent(u32 npad_id) const;
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void SignalStyleSetChangedEvent(u32 npad_id) const;
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@ -410,7 +410,7 @@ private:
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NpadHandheldActivationMode handheld_activation_mode{NpadHandheldActivationMode::Dual};
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// Each controller should have their own styleset changed event
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std::array<Kernel::EventPair, 10> styleset_changed_events;
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Vibration last_processed_vibration{};
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std::array<std::array<VibrationValue, 3>, 10> latest_vibration_values;
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std::array<ControllerHolder, 10> connected_controllers{};
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std::array<bool, 10> unintended_home_button_input_protection{};
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GyroscopeZeroDriftMode gyroscope_zero_drift_mode{GyroscopeZeroDriftMode::Standard};
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@ -1012,15 +1012,23 @@ void Hid::GetVibrationDeviceInfo(Kernel::HLERequestContext& ctx) {
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void Hid::SendVibrationValue(Kernel::HLERequestContext& ctx) {
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IPC::RequestParser rp{ctx};
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const auto controller{rp.Pop<u32>()};
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const auto vibration_values{rp.PopRaw<Controller_NPad::Vibration>()};
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const auto applet_resource_user_id{rp.Pop<u64>()};
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struct Parameters {
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Controller_NPad::DeviceHandle vibration_device_handle{};
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Controller_NPad::VibrationValue vibration_value{};
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INSERT_PADDING_WORDS(1);
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u64 applet_resource_user_id{};
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};
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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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.VibrateController({controller}, {vibration_values});
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.VibrateController({parameters.vibration_device_handle}, {parameters.vibration_value});
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LOG_DEBUG(Service_HID, "called, controller={}, applet_resource_user_id={}", controller,
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applet_resource_user_id);
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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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parameters.vibration_device_handle.npad_type,
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parameters.vibration_device_handle.npad_id,
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parameters.vibration_device_handle.device_index, parameters.applet_resource_user_id);
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IPC::ResponseBuilder rb{ctx, 2};
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rb.Push(RESULT_SUCCESS);
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@ -1028,16 +1036,24 @@ void Hid::SendVibrationValue(Kernel::HLERequestContext& ctx) {
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void Hid::GetActualVibrationValue(Kernel::HLERequestContext& ctx) {
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IPC::RequestParser rp{ctx};
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const auto controller_id{rp.Pop<u32>()};
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const auto applet_resource_user_id{rp.Pop<u64>()};
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struct Parameters {
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Controller_NPad::DeviceHandle vibration_device_handle{};
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INSERT_PADDING_WORDS(1);
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u64 applet_resource_user_id{};
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};
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LOG_DEBUG(Service_HID, "called, controller_id={}, applet_resource_user_id={}", controller_id,
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applet_resource_user_id);
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const auto parameters{rp.PopRaw<Parameters>()};
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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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parameters.vibration_device_handle.npad_type,
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parameters.vibration_device_handle.npad_id,
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parameters.vibration_device_handle.device_index, parameters.applet_resource_user_id);
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IPC::ResponseBuilder rb{ctx, 6};
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rb.Push(RESULT_SUCCESS);
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rb.PushRaw(
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applet_resource->GetController<Controller_NPad>(HidController::NPad).GetLastVibration());
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rb.PushRaw(applet_resource->GetController<Controller_NPad>(HidController::NPad)
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.GetLastVibration(parameters.vibration_device_handle));
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}
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void Hid::CreateActiveVibrationDeviceList(Kernel::HLERequestContext& ctx) {
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@ -1072,18 +1088,19 @@ void Hid::SendVibrationValues(Kernel::HLERequestContext& ctx) {
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IPC::RequestParser rp{ctx};
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const auto applet_resource_user_id{rp.Pop<u64>()};
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const auto controllers = ctx.ReadBuffer(0);
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const auto handles = ctx.ReadBuffer(0);
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const auto vibrations = ctx.ReadBuffer(1);
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std::vector<u32> controller_list(controllers.size() / sizeof(u32));
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std::vector<Controller_NPad::Vibration> vibration_list(vibrations.size() /
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sizeof(Controller_NPad::Vibration));
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std::vector<Controller_NPad::DeviceHandle> vibration_device_handles(
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handles.size() / sizeof(Controller_NPad::DeviceHandle));
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std::vector<Controller_NPad::VibrationValue> vibration_values(
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vibrations.size() / sizeof(Controller_NPad::VibrationValue));
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std::memcpy(controller_list.data(), controllers.data(), controllers.size());
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std::memcpy(vibration_list.data(), vibrations.data(), vibrations.size());
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std::memcpy(vibration_device_handles.data(), handles.data(), handles.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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.VibrateController(controller_list, vibration_list);
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.VibrateController(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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