Added automatic npad switch based on supported stylesets
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@ -89,12 +89,12 @@ void Controller_NPad::InitNewlyAddedControler(std::size_t controller_idx) {
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case NPadControllerType::JoyLeft:
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case NPadControllerType::JoyLeft:
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controller.joy_styles.joycon_left.Assign(1);
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controller.joy_styles.joycon_left.Assign(1);
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controller.device_type.joycon_left.Assign(1);
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controller.device_type.joycon_left.Assign(1);
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controller.pad_assignment = NPadAssignments::Dual;
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controller.pad_assignment = NPadAssignments::Single;
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break;
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break;
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case NPadControllerType::JoyRight:
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case NPadControllerType::JoyRight:
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controller.joy_styles.joycon_right.Assign(1);
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controller.joy_styles.joycon_right.Assign(1);
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controller.device_type.joycon_right.Assign(1);
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controller.device_type.joycon_right.Assign(1);
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controller.pad_assignment = NPadAssignments::Dual;
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controller.pad_assignment = NPadAssignments::Single;
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break;
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break;
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case NPadControllerType::Pokeball:
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case NPadControllerType::Pokeball:
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controller.joy_styles.pokeball.Assign(1);
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controller.joy_styles.pokeball.Assign(1);
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@ -381,7 +381,7 @@ void Controller_NPad::OnUpdate(u8* data, std::size_t data_len) {
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}
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}
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std::memcpy(data + NPAD_OFFSET, shared_memory_entries.data(),
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std::memcpy(data + NPAD_OFFSET, shared_memory_entries.data(),
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shared_memory_entries.size() * sizeof(NPadEntry));
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shared_memory_entries.size() * sizeof(NPadEntry));
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} // namespace Service::HID
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}
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void Controller_NPad::SetSupportedStyleSet(NPadType style_set) {
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void Controller_NPad::SetSupportedStyleSet(NPadType style_set) {
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style.raw = style_set.raw;
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style.raw = style_set.raw;
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@ -516,6 +516,7 @@ u32 Controller_NPad::IndexToNPad(std::size_t index) {
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}
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}
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void Controller_NPad::AddNewController(NPadControllerType controller) {
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void Controller_NPad::AddNewController(NPadControllerType controller) {
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controller = DecideBestController(controller);
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if (controller == NPadControllerType::Handheld) {
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if (controller == NPadControllerType::Handheld) {
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connected_controllers[8] = {controller, true};
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connected_controllers[8] = {controller, true};
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InitNewlyAddedControler(8);
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InitNewlyAddedControler(8);
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@ -534,6 +535,7 @@ void Controller_NPad::AddNewController(NPadControllerType controller) {
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}
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}
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void Controller_NPad::AddNewControllerAt(NPadControllerType controller, u32 npad_id) {
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void Controller_NPad::AddNewControllerAt(NPadControllerType controller, u32 npad_id) {
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controller = DecideBestController(controller);
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if (controller == NPadControllerType::Handheld) {
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if (controller == NPadControllerType::Handheld) {
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connected_controllers[8] = {controller, true};
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connected_controllers[8] = {controller, true};
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InitNewlyAddedControler(8);
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InitNewlyAddedControler(8);
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@ -552,6 +554,122 @@ void Controller_NPad::DisconnectNPad(u32 npad_id) {
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connected_controllers[NPadIdToIndex(npad_id)].is_connected = false;
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connected_controllers[NPadIdToIndex(npad_id)].is_connected = false;
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}
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}
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Controller_NPad::NPadControllerType Controller_NPad::DecideBestController(
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NPadControllerType priority) {
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if (IsControllerSupported(priority)) {
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return priority;
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}
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const auto is_docked = Settings::values->use_docked_mode;
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if (is_docked && priority == NPadControllerType::Handheld) {
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priority = NPadControllerType::JoyDual;
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if (IsControllerSupported(priority)) {
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return priority;
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}
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}
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std::vector<NPadControllerType> priority_list{};
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switch (priority) {
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case NPadControllerType::ProController:
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priority_list.push_back(NPadControllerType::JoyDual);
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if (!is_docked) {
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priority_list.push_back(NPadControllerType::Handheld);
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}
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priority_list.push_back(NPadControllerType::JoyLeft);
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priority_list.push_back(NPadControllerType::JoyRight);
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priority_list.push_back(NPadControllerType::Pokeball);
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break;
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case NPadControllerType::Handheld:
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priority_list.push_back(NPadControllerType::JoyDual);
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priority_list.push_back(NPadControllerType::ProController);
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priority_list.push_back(NPadControllerType::JoyLeft);
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priority_list.push_back(NPadControllerType::JoyRight);
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priority_list.push_back(NPadControllerType::Pokeball);
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break;
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case NPadControllerType::JoyDual:
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if (!is_docked) {
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priority_list.push_back(NPadControllerType::Handheld);
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}
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priority_list.push_back(NPadControllerType::ProController);
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priority_list.push_back(NPadControllerType::JoyLeft);
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priority_list.push_back(NPadControllerType::JoyRight);
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priority_list.push_back(NPadControllerType::Pokeball);
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break;
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case NPadControllerType::JoyLeft:
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priority_list.push_back(NPadControllerType::JoyRight);
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priority_list.push_back(NPadControllerType::JoyDual);
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if (!is_docked) {
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priority_list.push_back(NPadControllerType::Handheld);
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}
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priority_list.push_back(NPadControllerType::ProController);
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priority_list.push_back(NPadControllerType::Pokeball);
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break;
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case NPadControllerType::JoyRight:
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priority_list.push_back(NPadControllerType::JoyLeft);
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priority_list.push_back(NPadControllerType::JoyDual);
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if (!is_docked) {
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priority_list.push_back(NPadControllerType::Handheld);
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}
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priority_list.push_back(NPadControllerType::ProController);
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priority_list.push_back(NPadControllerType::Pokeball);
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break;
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case NPadControllerType::Pokeball:
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priority_list.push_back(NPadControllerType::JoyLeft);
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priority_list.push_back(NPadControllerType::JoyRight);
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priority_list.push_back(NPadControllerType::JoyDual);
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if (!is_docked) {
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priority_list.push_back(NPadControllerType::Handheld);
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}
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priority_list.push_back(NPadControllerType::ProController);
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break;
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default:
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priority_list.push_back(NPadControllerType::JoyDual);
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if (!is_docked) {
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priority_list.push_back(NPadControllerType::Handheld);
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}
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priority_list.push_back(NPadControllerType::ProController);
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priority_list.push_back(NPadControllerType::JoyLeft);
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priority_list.push_back(NPadControllerType::JoyRight);
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priority_list.push_back(NPadControllerType::JoyDual);
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}
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for (const auto controller_type : priority_list) {
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if (IsControllerSupported(controller_type)) {
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return controller_type;
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}
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}
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UNIMPLEMENTED_MSG("Could not find supported controller!");
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return priority;
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}
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bool Controller_NPad::IsControllerSupported(NPadControllerType controller) {
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if (controller == NPadControllerType::Handheld) {
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// Handheld is not even a supported type, lets stop here
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if (std::find(supported_npad_id_types.begin(), supported_npad_id_types.end(), 32) ==
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supported_npad_id_types.end()) {
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return false;
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}
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// Handheld should not be supported in docked mode
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if (Settings::values->use_docked_mode) {
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return false;
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}
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}
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switch (controller) {
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case NPadControllerType::ProController:
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return style.pro_controller;
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case NPadControllerType::Handheld:
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return style.handheld;
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case NPadControllerType::JoyDual:
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return style.joycon_dual;
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case NPadControllerType::JoyLeft:
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return style.joycon_left;
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case NPadControllerType::JoyRight:
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return style.joycon_right;
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case NPadControllerType::Pokeball:
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return style.pokeball;
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default:
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return false;
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}
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}
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Controller_NPad::LedPattern Controller_NPad::GetLedPattern(u32 npad_id) {
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Controller_NPad::LedPattern Controller_NPad::GetLedPattern(u32 npad_id) {
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if (npad_id == npad_id_list.back() || npad_id == npad_id_list[npad_id_list.size() - 2]) {
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if (npad_id == npad_id_list.back() || npad_id == npad_id_list[npad_id_list.size() - 2]) {
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// These are controllers without led patterns
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// These are controllers without led patterns
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@ -272,7 +272,7 @@ private:
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static_assert(sizeof(NPadEntry) == 0x5000, "NPadEntry is an invalid size");
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static_assert(sizeof(NPadEntry) == 0x5000, "NPadEntry is an invalid size");
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struct ControllerHolder {
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struct ControllerHolder {
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Controller_NPad::NPadControllerType type;
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NPadControllerType type;
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bool is_connected;
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bool is_connected;
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};
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};
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@ -295,5 +295,7 @@ private:
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std::size_t NPadIdToIndex(u32 npad_id);
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std::size_t NPadIdToIndex(u32 npad_id);
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u32 IndexToNPad(std::size_t index);
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u32 IndexToNPad(std::size_t index);
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std::array<ControllerPad, 10> npad_pad_states{};
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std::array<ControllerPad, 10> npad_pad_states{};
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NPadControllerType DecideBestController(NPadControllerType priority);
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bool IsControllerSupported(NPadControllerType controller);
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};
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};
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} // namespace Service::HID
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} // namespace Service::HID
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