mirror of
https://git.suyu.dev/suyu/suyu.git
synced 2024-11-29 14:57:41 -05:00
Using dual joycons as the default controller
Reason for the change is to allow both docked and undocked mode to work
This commit is contained in:
parent
98b760c645
commit
8144fa42bd
3 changed files with 59 additions and 77 deletions
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@ -27,7 +27,7 @@ constexpr u32 JOYCON_BUTTONS_NEON_BLUE = 0x001E1E;
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constexpr s32 HID_JOYSTICK_MAX = 0x7fff;
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constexpr s32 HID_JOYSTICK_MAX = 0x7fff;
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constexpr s32 HID_JOYSTICK_MIN = -0x7fff;
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constexpr s32 HID_JOYSTICK_MIN = -0x7fff;
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constexpr std::size_t NPAD_OFFSET = 0x9A00;
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constexpr std::size_t NPAD_OFFSET = 0x9A00;
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constexpr u32 BATTERY_FULL = 2;
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enum class JoystickId : std::size_t { Joystick_Left, Joystick_Right };
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enum class JoystickId : std::size_t { Joystick_Left, Joystick_Right };
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Controller_NPad::Controller_NPad() = default;
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Controller_NPad::Controller_NPad() = default;
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@ -46,6 +46,12 @@ void Controller_NPad::InitNewlyAddedControler(std::size_t controller_idx) {
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controller.device_type.handheld.Assign(1);
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controller.device_type.handheld.Assign(1);
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controller.pad_assignment = NPadAssignments::Dual;
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controller.pad_assignment = NPadAssignments::Dual;
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break;
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break;
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case NPadControllerType::JoyDual:
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controller.joy_styles.joycon_dual.Assign(1);
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controller.device_type.joycon_left.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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break;
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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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@ -56,9 +62,6 @@ void Controller_NPad::InitNewlyAddedControler(std::size_t controller_idx) {
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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::Dual;
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break;
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break;
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case NPadControllerType::Tabletop:
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UNIMPLEMENTED_MSG("Tabletop is not implemented");
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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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controller.device_type.pokeball.Assign(1);
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controller.device_type.pokeball.Assign(1);
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@ -82,6 +85,11 @@ void Controller_NPad::InitNewlyAddedControler(std::size_t controller_idx) {
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controller.right_color.button_color = JOYCON_BUTTONS_NEON_RED;
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controller.right_color.button_color = JOYCON_BUTTONS_NEON_RED;
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controller.properties.is_vertical.Assign(1); // TODO(ogniK): Swap joycons orientations
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controller.properties.is_vertical.Assign(1); // TODO(ogniK): Swap joycons orientations
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controller.properties.use_plus.Assign(1);
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controller.properties.use_minus.Assign(1);
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controller.battery_level[0] = BATTERY_FULL;
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controller.battery_level[1] = BATTERY_FULL;
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controller.battery_level[2] = BATTERY_FULL;
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}
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}
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void Controller_NPad::OnInit() {
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void Controller_NPad::OnInit() {
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@ -106,7 +114,7 @@ void Controller_NPad::OnInit() {
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supported_npad_id_types.resize(npad_id_list.size());
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supported_npad_id_types.resize(npad_id_list.size());
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std::memcpy(supported_npad_id_types.data(), npad_id_list.data(),
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std::memcpy(supported_npad_id_types.data(), npad_id_list.data(),
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npad_id_list.size() * sizeof(u32));
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npad_id_list.size() * sizeof(u32));
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AddNewController(NPadControllerType::Handheld);
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AddNewController(NPadControllerType::JoyDual);
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}
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}
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}
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}
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@ -218,9 +226,11 @@ void Controller_NPad::OnUpdate(u8* data, std::size_t data_len) {
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if (hold_type == NpadHoldType::Horizontal) {
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if (hold_type == NpadHoldType::Horizontal) {
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// TODO(ogniK): Remap buttons for different orientations
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// TODO(ogniK): Remap buttons for different orientations
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}
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}
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libnx_entry.connection_status.raw = 0;
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switch (controller_type) {
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switch (controller_type) {
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case NPadControllerType::Handheld:
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case NPadControllerType::Handheld:
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handheld_entry.connection_status.raw = 0;
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handheld_entry.connection_status.IsConnected.Assign(1);
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handheld_entry.connection_status.IsConnected.Assign(1);
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if (!Settings::values.use_docked_mode) {
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if (!Settings::values.use_docked_mode) {
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handheld_entry.connection_status.IsWired.Assign(1);
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handheld_entry.connection_status.IsWired.Assign(1);
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@ -229,26 +239,39 @@ void Controller_NPad::OnUpdate(u8* data, std::size_t data_len) {
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handheld_entry.l_stick = lstick_entry;
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handheld_entry.l_stick = lstick_entry;
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handheld_entry.r_stick = rstick_entry;
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handheld_entry.r_stick = rstick_entry;
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break;
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break;
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case NPadControllerType::JoyDual:
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dual_entry.connection_status.raw = 0;
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dual_entry.connection_status.IsLeftJoyConnected.Assign(1);
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dual_entry.connection_status.IsRightJoyConnected.Assign(1);
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dual_entry.connection_status.IsConnected.Assign(1);
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libnx_entry.connection_status.IsLeftJoyConnected.Assign(1);
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libnx_entry.connection_status.IsRightJoyConnected.Assign(1);
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libnx_entry.connection_status.IsConnected.Assign(1);
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dual_entry.pad_states.raw = pad_state.raw;
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dual_entry.l_stick = lstick_entry;
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dual_entry.r_stick = rstick_entry;
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case NPadControllerType::JoyLeft:
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case NPadControllerType::JoyLeft:
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left_entry.connection_status.raw = 0;
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left_entry.connection_status.IsConnected.Assign(1);
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left_entry.connection_status.IsConnected.Assign(1);
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left_entry.pad_states.raw = pad_state.raw;
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left_entry.pad_states.raw = pad_state.raw;
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left_entry.l_stick = lstick_entry;
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left_entry.l_stick = lstick_entry;
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left_entry.r_stick = rstick_entry;
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left_entry.r_stick = rstick_entry;
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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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right_entry.connection_status.raw = 0;
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right_entry.connection_status.IsConnected.Assign(1);
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right_entry.connection_status.IsConnected.Assign(1);
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right_entry.pad_states.raw = pad_state.raw;
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right_entry.pad_states.raw = pad_state.raw;
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right_entry.l_stick = lstick_entry;
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right_entry.l_stick = lstick_entry;
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right_entry.r_stick = rstick_entry;
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right_entry.r_stick = rstick_entry;
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break;
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break;
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case NPadControllerType::Tabletop:
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// TODO(ogniK): Figure out how to add proper tabletop support
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dual_entry.pad_states.raw = pad_state.raw;
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dual_entry.l_stick = lstick_entry;
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dual_entry.r_stick = rstick_entry;
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dual_entry.connection_status.IsConnected.Assign(1);
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break;
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case NPadControllerType::Pokeball:
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case NPadControllerType::Pokeball:
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pokeball_entry.connection_status.raw = 0;
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pokeball_entry.connection_status.IsConnected.Assign(1);
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pokeball_entry.connection_status.IsConnected.Assign(1);
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pokeball_entry.connection_status.IsWired.Assign(1);
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pokeball_entry.connection_status.IsWired.Assign(1);
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@ -257,18 +280,18 @@ void Controller_NPad::OnUpdate(u8* data, std::size_t data_len) {
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pokeball_entry.r_stick = rstick_entry;
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pokeball_entry.r_stick = rstick_entry;
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break;
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break;
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case NPadControllerType::ProController:
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case NPadControllerType::ProController:
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main_controller.connection_status.raw = 0;
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main_controller.connection_status.IsConnected.Assign(1);
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main_controller.connection_status.IsWired.Assign(1);
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main_controller.pad_states.raw = pad_state.raw;
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main_controller.pad_states.raw = pad_state.raw;
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main_controller.l_stick = lstick_entry;
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main_controller.l_stick = lstick_entry;
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main_controller.r_stick = rstick_entry;
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main_controller.r_stick = rstick_entry;
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main_controller.connection_status.IsConnected.Assign(1);
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main_controller.connection_status.IsWired.Assign(1);
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break;
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break;
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}
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}
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// LibNX exclusively uses this section, so we always update it since LibNX doesn't activate
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// LibNX exclusively uses this section, so we always update it since LibNX doesn't activate
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// any controllers.
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// any controllers.
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libnx_entry.connection_status.IsConnected.Assign(1);
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libnx_entry.connection_status.IsWired.Assign(1);
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libnx_entry.pad_states.raw = pad_state.raw;
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libnx_entry.pad_states.raw = pad_state.raw;
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libnx_entry.l_stick = lstick_entry;
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libnx_entry.l_stick = lstick_entry;
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libnx_entry.r_stick = rstick_entry;
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libnx_entry.r_stick = rstick_entry;
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@ -290,44 +313,6 @@ void Controller_NPad::SetSupportedNPadIdTypes(u8* data, std::size_t length) {
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supported_npad_id_types.clear();
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supported_npad_id_types.clear();
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supported_npad_id_types.resize(length / sizeof(u32));
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supported_npad_id_types.resize(length / sizeof(u32));
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std::memcpy(supported_npad_id_types.data(), data, length);
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std::memcpy(supported_npad_id_types.data(), data, length);
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CheckForHandheldVariant();
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}
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#pragma optimize("", off)
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void Controller_NPad::CheckForHandheldVariant() {
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// As some games expect us to use the variant of handheld mode and some games don't. It's
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// consistent that games set the npad ids in order of priority. We can just swap the controller
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// ids on the fly then if we're in handheld mode
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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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const auto& first_controller = connected_controllers.front();
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if (first_controller.is_connected &&
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first_controller.type == NPadControllerType::Handheld) {
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DisconnectNPad(0);
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AddNewController(NPadControllerType::Handheld, true);
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}
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} else {
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if (connected_controllers[8].is_connected) {
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DisconnectNPad(8);
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AddNewController(NPadControllerType::Handheld);
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}
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}
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/*
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if (supported_npad_id_types.size() > 0) {
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const auto& first_controller = supported_npad_id_types.front();
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if (first_controller == 32 && !connected_controllers[8].is_connected) {
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const auto& first_controller = connected_controllers.front();
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if (first_controller.is_connected &&
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first_controller.type == NPadControllerType::Handheld) {
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DisconnectNPad(0);
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AddNewController(NPadControllerType::Handheld, true);
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}
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} else if (first_controller != 32 && connected_controllers[8].is_connected) {
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if (!connected_controllers[0].is_connected) {
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DisconnectNPad(8);
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AddNewController(NPadControllerType::Handheld);
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}
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}
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}*/
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}
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}
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const void Controller_NPad::GetSupportedNpadIdTypes(u32* data, std::size_t max_length) {
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const void Controller_NPad::GetSupportedNpadIdTypes(u32* data, std::size_t max_length) {
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@ -358,11 +343,14 @@ void Controller_NPad::VibrateController(const std::vector<u32>& controller_ids,
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}
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}
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for (std::size_t i = 0; i < controller_ids.size(); i++) {
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for (std::size_t i = 0; i < controller_ids.size(); i++) {
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std::size_t controller_pos = i;
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std::size_t controller_pos = i;
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if (controller_pos == 32)
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// Handheld controller conversion
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if (controller_pos == 32) {
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controller_pos = 8;
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controller_pos = 8;
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if (controller_pos == 16)
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}
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// Unknown controller conversion
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if (controller_pos == 16) {
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controller_pos = 9;
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controller_pos = 9;
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}
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if (connected_controllers[controller_pos].is_connected) {
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if (connected_controllers[controller_pos].is_connected) {
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// TODO(ogniK): Vibrate the physical controller
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// TODO(ogniK): Vibrate the physical controller
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}
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}
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@ -378,8 +366,8 @@ Kernel::SharedPtr<Kernel::Event> Controller_NPad::GetStyleSetChangedEvent() cons
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Controller_NPad::Vibration Controller_NPad::GetLastVibration() const {
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Controller_NPad::Vibration Controller_NPad::GetLastVibration() const {
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return last_processed_vibration;
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return last_processed_vibration;
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}
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}
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void Controller_NPad::AddNewController(NPadControllerType controller, bool is_handheld_variant) {
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void Controller_NPad::AddNewController(NPadControllerType controller) {
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if (is_handheld_variant) {
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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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return;
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return;
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@ -438,13 +426,4 @@ Controller_NPad::LedPattern Controller_NPad::GetLedPattern(u32 npad_id) {
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void Controller_NPad::SetVibrationEnabled(bool can_vibrate) {
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void Controller_NPad::SetVibrationEnabled(bool can_vibrate) {
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can_controllers_vibrate = can_vibrate;
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can_controllers_vibrate = can_vibrate;
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}
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}
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void Controller_NPad::SetHandheldActiviationMode(u32 mode) {
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const auto& first_controller = connected_controllers.front();
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if (!first_controller.is_connected || connected_controllers[8].is_connected) {
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return;
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}
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DisconnectNPad(0);
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AddNewController(NPadControllerType::Handheld, true);
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}
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} // namespace Service::HID
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} // namespace Service::HID
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None,
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None,
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ProController,
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ProController,
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Handheld,
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Handheld,
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JoyDual,
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JoyLeft,
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JoyLeft,
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JoyRight,
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JoyRight,
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Tabletop,
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Pokeball,
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Pokeball,
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};
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};
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Kernel::SharedPtr<Kernel::Event> GetStyleSetChangedEvent() const;
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Kernel::SharedPtr<Kernel::Event> GetStyleSetChangedEvent() const;
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Vibration GetLastVibration() const;
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Vibration GetLastVibration() const;
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void AddNewController(NPadControllerType controller, bool is_handheld_variant = false);
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void AddNewController(NPadControllerType controller);
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void ConnectNPad(u32 npad_id);
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void ConnectNPad(u32 npad_id);
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void DisconnectNPad(u32 npad_id);
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void DisconnectNPad(u32 npad_id);
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LedPattern GetLedPattern(u32 npad_id);
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LedPattern GetLedPattern(u32 npad_id);
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void SetVibrationEnabled(bool can_vibrate);
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void SetVibrationEnabled(bool can_vibrate);
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void SetHandheldActiviationMode(u32 mode);
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private:
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private:
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struct CommonHeader {
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struct CommonHeader {
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@ -181,6 +180,10 @@ private:
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u32_le raw{};
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u32_le raw{};
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BitField<0, 1, u32_le> IsConnected;
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BitField<0, 1, u32_le> IsConnected;
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BitField<1, 1, u32_le> IsWired;
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BitField<1, 1, u32_le> IsWired;
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BitField<2, 1, u32_le> IsLeftJoyConnected;
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BitField<3, 1, u32_le> IsLeftJoyWired;
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BitField<4, 1, u32_le> IsRightJoyConnected;
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BitField<5, 1, u32_le> IsRightJoyWired;
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};
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};
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};
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};
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static_assert(sizeof(ConnectionState) == 4, "ConnectionState is an invalid size");
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static_assert(sizeof(ConnectionState) == 4, "ConnectionState is an invalid size");
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@ -212,6 +215,8 @@ private:
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s64_le raw{};
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s64_le raw{};
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BitField<11, 1, s64_le> is_vertical;
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BitField<11, 1, s64_le> is_vertical;
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BitField<12, 1, s64_le> is_horizontal;
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BitField<12, 1, s64_le> is_horizontal;
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BitField<13, 1, s64_le> use_plus;
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BitField<14, 1, s64_le> use_minus;
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};
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};
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};
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};
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@ -252,8 +257,9 @@ private:
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6); // TODO(ogniK): SixAxis states, require more information before implementation
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6); // TODO(ogniK): SixAxis states, require more information before implementation
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NPadDevice device_type;
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NPadDevice device_type;
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NPadProperties properties;
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NPadProperties properties;
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INSERT_PADDING_WORDS(4);
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INSERT_PADDING_WORDS(1);
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||||||
INSERT_PADDING_BYTES(0x60);
|
std::array<u32, 3> battery_level;
|
||||||
|
INSERT_PADDING_BYTES(0x5c);
|
||||||
INSERT_PADDING_BYTES(0xdf8);
|
INSERT_PADDING_BYTES(0xdf8);
|
||||||
};
|
};
|
||||||
static_assert(sizeof(NPadEntry) == 0x5000, "NPadEntry is an invalid size");
|
static_assert(sizeof(NPadEntry) == 0x5000, "NPadEntry is an invalid size");
|
||||||
|
@ -276,7 +282,6 @@ private:
|
||||||
static constexpr std::array<u32, 10> npad_id_list{0, 1, 2, 3, 4, 5, 6, 7, 32, 16};
|
static constexpr std::array<u32, 10> npad_id_list{0, 1, 2, 3, 4, 5, 6, 7, 32, 16};
|
||||||
std::array<ControllerHolder, 10> connected_controllers{};
|
std::array<ControllerHolder, 10> connected_controllers{};
|
||||||
bool can_controllers_vibrate{true};
|
bool can_controllers_vibrate{true};
|
||||||
void CheckForHandheldVariant();
|
|
||||||
|
|
||||||
void InitNewlyAddedControler(std::size_t controller_idx);
|
void InitNewlyAddedControler(std::size_t controller_idx);
|
||||||
};
|
};
|
||||||
|
|
|
@ -284,7 +284,7 @@ public:
|
||||||
|
|
||||||
private:
|
private:
|
||||||
std::shared_ptr<IAppletResource> applet_resource;
|
std::shared_ptr<IAppletResource> applet_resource;
|
||||||
#pragma optimize("", off)
|
|
||||||
void CreateAppletResource(Kernel::HLERequestContext& ctx) {
|
void CreateAppletResource(Kernel::HLERequestContext& ctx) {
|
||||||
if (applet_resource == nullptr) {
|
if (applet_resource == nullptr) {
|
||||||
applet_resource = std::make_shared<IAppletResource>();
|
applet_resource = std::make_shared<IAppletResource>();
|
||||||
|
@ -545,8 +545,6 @@ private:
|
||||||
IPC::ResponseBuilder rb{ctx, 2};
|
IPC::ResponseBuilder rb{ctx, 2};
|
||||||
rb.Push(RESULT_SUCCESS);
|
rb.Push(RESULT_SUCCESS);
|
||||||
LOG_WARNING(Service_HID, "(STUBBED) called");
|
LOG_WARNING(Service_HID, "(STUBBED) called");
|
||||||
applet_resource->GetController<Controller_NPad>(HidController::NPad)
|
|
||||||
.SetHandheldActiviationMode(mode);
|
|
||||||
}
|
}
|
||||||
|
|
||||||
void GetVibrationDeviceInfo(Kernel::HLERequestContext& ctx) {
|
void GetVibrationDeviceInfo(Kernel::HLERequestContext& ctx) {
|
||||||
|
|
Loading…
Reference in a new issue