diff options
Diffstat (limited to '')
| -rw-r--r-- | src/input_common/gcadapter/gc_adapter.cpp | 462 | ||||
| -rw-r--r-- | src/input_common/gcadapter/gc_adapter.h | 146 | ||||
| -rw-r--r-- | src/input_common/gcadapter/gc_poller.cpp | 128 |
3 files changed, 433 insertions, 303 deletions
diff --git a/src/input_common/gcadapter/gc_adapter.cpp b/src/input_common/gcadapter/gc_adapter.cpp index c95feb0d7..b912188b6 100644 --- a/src/input_common/gcadapter/gc_adapter.cpp +++ b/src/input_common/gcadapter/gc_adapter.cpp | |||
| @@ -21,26 +21,6 @@ | |||
| 21 | 21 | ||
| 22 | namespace GCAdapter { | 22 | namespace GCAdapter { |
| 23 | 23 | ||
| 24 | // Used to loop through and assign button in poller | ||
| 25 | constexpr std::array<PadButton, 12> PadButtonArray{ | ||
| 26 | PadButton::PAD_BUTTON_LEFT, PadButton::PAD_BUTTON_RIGHT, PadButton::PAD_BUTTON_DOWN, | ||
| 27 | PadButton::PAD_BUTTON_UP, PadButton::PAD_TRIGGER_Z, PadButton::PAD_TRIGGER_R, | ||
| 28 | PadButton::PAD_TRIGGER_L, PadButton::PAD_BUTTON_A, PadButton::PAD_BUTTON_B, | ||
| 29 | PadButton::PAD_BUTTON_X, PadButton::PAD_BUTTON_Y, PadButton::PAD_BUTTON_START, | ||
| 30 | }; | ||
| 31 | |||
| 32 | static void PadToState(const GCPadStatus& pad, GCState& out_state) { | ||
| 33 | for (const auto& button : PadButtonArray) { | ||
| 34 | const auto button_key = static_cast<u16>(button); | ||
| 35 | const auto button_value = (pad.button & button_key) != 0; | ||
| 36 | out_state.buttons.insert_or_assign(static_cast<s32>(button_key), button_value); | ||
| 37 | } | ||
| 38 | |||
| 39 | for (std::size_t i = 0; i < pad.axis_values.size(); ++i) { | ||
| 40 | out_state.axes.insert_or_assign(static_cast<u32>(i), pad.axis_values[i]); | ||
| 41 | } | ||
| 42 | } | ||
| 43 | |||
| 44 | Adapter::Adapter() { | 24 | Adapter::Adapter() { |
| 45 | if (usb_adapter_handle != nullptr) { | 25 | if (usb_adapter_handle != nullptr) { |
| 46 | return; | 26 | return; |
| @@ -49,168 +29,263 @@ Adapter::Adapter() { | |||
| 49 | 29 | ||
| 50 | const int init_res = libusb_init(&libusb_ctx); | 30 | const int init_res = libusb_init(&libusb_ctx); |
| 51 | if (init_res == LIBUSB_SUCCESS) { | 31 | if (init_res == LIBUSB_SUCCESS) { |
| 52 | Setup(); | 32 | adapter_scan_thread = std::thread(&Adapter::AdapterScanThread, this); |
| 53 | } else { | 33 | } else { |
| 54 | LOG_ERROR(Input, "libusb could not be initialized. failed with error = {}", init_res); | 34 | LOG_ERROR(Input, "libusb could not be initialized. failed with error = {}", init_res); |
| 55 | } | 35 | } |
| 56 | } | 36 | } |
| 57 | 37 | ||
| 58 | GCPadStatus Adapter::GetPadStatus(std::size_t port, const std::array<u8, 37>& adapter_payload) { | 38 | Adapter::~Adapter() { |
| 59 | GCPadStatus pad = {}; | 39 | Reset(); |
| 60 | const std::size_t offset = 1 + (9 * port); | 40 | } |
| 41 | |||
| 42 | void Adapter::AdapterInputThread() { | ||
| 43 | LOG_DEBUG(Input, "GC Adapter input thread started"); | ||
| 44 | s32 payload_size{}; | ||
| 45 | AdapterPayload adapter_payload{}; | ||
| 46 | |||
| 47 | if (adapter_scan_thread.joinable()) { | ||
| 48 | adapter_scan_thread.join(); | ||
| 49 | } | ||
| 50 | |||
| 51 | while (adapter_input_thread_running) { | ||
| 52 | libusb_interrupt_transfer(usb_adapter_handle, input_endpoint, adapter_payload.data(), | ||
| 53 | static_cast<s32>(adapter_payload.size()), &payload_size, 16); | ||
| 54 | if (IsPayloadCorrect(adapter_payload, payload_size)) { | ||
| 55 | UpdateControllers(adapter_payload); | ||
| 56 | UpdateVibrations(); | ||
| 57 | } | ||
| 58 | std::this_thread::yield(); | ||
| 59 | } | ||
| 61 | 60 | ||
| 62 | adapter_controllers_status[port] = static_cast<ControllerTypes>(adapter_payload[offset] >> 4); | 61 | if (restart_scan_thread) { |
| 62 | adapter_scan_thread = std::thread(&Adapter::AdapterScanThread, this); | ||
| 63 | restart_scan_thread = false; | ||
| 64 | } | ||
| 65 | } | ||
| 66 | |||
| 67 | bool Adapter::IsPayloadCorrect(const AdapterPayload& adapter_payload, s32 payload_size) { | ||
| 68 | if (payload_size != static_cast<s32>(adapter_payload.size()) || | ||
| 69 | adapter_payload[0] != LIBUSB_DT_HID) { | ||
| 70 | LOG_DEBUG(Input, "Error reading payload (size: {}, type: {:02x})", payload_size, | ||
| 71 | adapter_payload[0]); | ||
| 72 | if (input_error_counter++ > 20) { | ||
| 73 | LOG_ERROR(Input, "GC adapter timeout, Is the adapter connected?"); | ||
| 74 | adapter_input_thread_running = false; | ||
| 75 | restart_scan_thread = true; | ||
| 76 | } | ||
| 77 | return false; | ||
| 78 | } | ||
| 79 | |||
| 80 | input_error_counter = 0; | ||
| 81 | return true; | ||
| 82 | } | ||
| 83 | |||
| 84 | void Adapter::UpdateControllers(const AdapterPayload& adapter_payload) { | ||
| 85 | for (std::size_t port = 0; port < pads.size(); ++port) { | ||
| 86 | const std::size_t offset = 1 + (9 * port); | ||
| 87 | const auto type = static_cast<ControllerTypes>(adapter_payload[offset] >> 4); | ||
| 88 | UpdatePadType(port, type); | ||
| 89 | if (DeviceConnected(port)) { | ||
| 90 | const u8 b1 = adapter_payload[offset + 1]; | ||
| 91 | const u8 b2 = adapter_payload[offset + 2]; | ||
| 92 | UpdateStateButtons(port, b1, b2); | ||
| 93 | UpdateStateAxes(port, adapter_payload); | ||
| 94 | if (configuring) { | ||
| 95 | UpdateYuzuSettings(port); | ||
| 96 | } | ||
| 97 | } | ||
| 98 | } | ||
| 99 | } | ||
| 100 | |||
| 101 | void Adapter::UpdatePadType(std::size_t port, ControllerTypes pad_type) { | ||
| 102 | if (pads[port].type == pad_type) { | ||
| 103 | return; | ||
| 104 | } | ||
| 105 | // Device changed reset device and set new type | ||
| 106 | ResetDevice(port); | ||
| 107 | pads[port].type = pad_type; | ||
| 108 | } | ||
| 109 | |||
| 110 | void Adapter::UpdateStateButtons(std::size_t port, u8 b1, u8 b2) { | ||
| 111 | if (port >= pads.size()) { | ||
| 112 | return; | ||
| 113 | } | ||
| 63 | 114 | ||
| 64 | static constexpr std::array<PadButton, 8> b1_buttons{ | 115 | static constexpr std::array<PadButton, 8> b1_buttons{ |
| 65 | PadButton::PAD_BUTTON_A, PadButton::PAD_BUTTON_B, PadButton::PAD_BUTTON_X, | 116 | PadButton::ButtonA, PadButton::ButtonB, PadButton::ButtonX, PadButton::ButtonY, |
| 66 | PadButton::PAD_BUTTON_Y, PadButton::PAD_BUTTON_LEFT, PadButton::PAD_BUTTON_RIGHT, | 117 | PadButton::ButtonLeft, PadButton::ButtonRight, PadButton::ButtonDown, PadButton::ButtonUp, |
| 67 | PadButton::PAD_BUTTON_DOWN, PadButton::PAD_BUTTON_UP, | ||
| 68 | }; | 118 | }; |
| 69 | 119 | ||
| 70 | static constexpr std::array<PadButton, 4> b2_buttons{ | 120 | static constexpr std::array<PadButton, 4> b2_buttons{ |
| 71 | PadButton::PAD_BUTTON_START, | 121 | PadButton::ButtonStart, |
| 72 | PadButton::PAD_TRIGGER_Z, | 122 | PadButton::TriggerZ, |
| 73 | PadButton::PAD_TRIGGER_R, | 123 | PadButton::TriggerR, |
| 74 | PadButton::PAD_TRIGGER_L, | 124 | PadButton::TriggerL, |
| 75 | }; | 125 | }; |
| 126 | pads[port].buttons = 0; | ||
| 127 | for (std::size_t i = 0; i < b1_buttons.size(); ++i) { | ||
| 128 | if ((b1 & (1U << i)) != 0) { | ||
| 129 | pads[port].buttons = | ||
| 130 | static_cast<u16>(pads[port].buttons | static_cast<u16>(b1_buttons[i])); | ||
| 131 | pads[port].last_button = b1_buttons[i]; | ||
| 132 | } | ||
| 133 | } | ||
| 76 | 134 | ||
| 135 | for (std::size_t j = 0; j < b2_buttons.size(); ++j) { | ||
| 136 | if ((b2 & (1U << j)) != 0) { | ||
| 137 | pads[port].buttons = | ||
| 138 | static_cast<u16>(pads[port].buttons | static_cast<u16>(b2_buttons[j])); | ||
| 139 | pads[port].last_button = b2_buttons[j]; | ||
| 140 | } | ||
| 141 | } | ||
| 142 | } | ||
| 143 | |||
| 144 | void Adapter::UpdateStateAxes(std::size_t port, const AdapterPayload& adapter_payload) { | ||
| 145 | if (port >= pads.size()) { | ||
| 146 | return; | ||
| 147 | } | ||
| 148 | |||
| 149 | const std::size_t offset = 1 + (9 * port); | ||
| 77 | static constexpr std::array<PadAxes, 6> axes{ | 150 | static constexpr std::array<PadAxes, 6> axes{ |
| 78 | PadAxes::StickX, PadAxes::StickY, PadAxes::SubstickX, | 151 | PadAxes::StickX, PadAxes::StickY, PadAxes::SubstickX, |
| 79 | PadAxes::SubstickY, PadAxes::TriggerLeft, PadAxes::TriggerRight, | 152 | PadAxes::SubstickY, PadAxes::TriggerLeft, PadAxes::TriggerRight, |
| 80 | }; | 153 | }; |
| 81 | 154 | ||
| 82 | if (adapter_controllers_status[port] == ControllerTypes::None && !get_origin[port]) { | 155 | for (const PadAxes axis : axes) { |
| 83 | // Controller may have been disconnected, recalibrate if reconnected. | 156 | const auto index = static_cast<std::size_t>(axis); |
| 84 | get_origin[port] = true; | 157 | const u8 axis_value = adapter_payload[offset + 3 + index]; |
| 158 | if (pads[port].axis_origin[index] == 255) { | ||
| 159 | pads[port].axis_origin[index] = axis_value; | ||
| 160 | } | ||
| 161 | pads[port].axis_values[index] = | ||
| 162 | static_cast<s16>(axis_value - pads[port].axis_origin[index]); | ||
| 85 | } | 163 | } |
| 164 | } | ||
| 86 | 165 | ||
| 87 | if (adapter_controllers_status[port] != ControllerTypes::None) { | 166 | void Adapter::UpdateYuzuSettings(std::size_t port) { |
| 88 | const u8 b1 = adapter_payload[offset + 1]; | 167 | if (port >= pads.size()) { |
| 89 | const u8 b2 = adapter_payload[offset + 2]; | 168 | return; |
| 169 | } | ||
| 90 | 170 | ||
| 91 | for (std::size_t i = 0; i < b1_buttons.size(); ++i) { | 171 | constexpr u8 axis_threshold = 50; |
| 92 | if ((b1 & (1U << i)) != 0) { | 172 | GCPadStatus pad_status = {.port = port}; |
| 93 | pad.button = static_cast<u16>(pad.button | static_cast<u16>(b1_buttons[i])); | ||
| 94 | } | ||
| 95 | } | ||
| 96 | 173 | ||
| 97 | for (std::size_t j = 0; j < b2_buttons.size(); ++j) { | 174 | if (pads[port].buttons != 0) { |
| 98 | if ((b2 & (1U << j)) != 0) { | 175 | pad_status.button = pads[port].last_button; |
| 99 | pad.button = static_cast<u16>(pad.button | static_cast<u16>(b2_buttons[j])); | 176 | pad_queue.Push(pad_status); |
| 100 | } | 177 | } |
| 101 | } | 178 | |
| 102 | for (PadAxes axis : axes) { | 179 | // Accounting for a threshold here to ensure an intentional press |
| 103 | const auto index = static_cast<std::size_t>(axis); | 180 | for (std::size_t i = 0; i < pads[port].axis_values.size(); ++i) { |
| 104 | pad.axis_values[index] = adapter_payload[offset + 3 + index]; | 181 | const s16 value = pads[port].axis_values[i]; |
| 105 | } | ||
| 106 | 182 | ||
| 107 | if (get_origin[port]) { | 183 | if (value > axis_threshold || value < -axis_threshold) { |
| 108 | origin_status[port].axis_values = pad.axis_values; | 184 | pad_status.axis = static_cast<PadAxes>(i); |
| 109 | get_origin[port] = false; | 185 | pad_status.axis_value = value; |
| 186 | pad_status.axis_threshold = axis_threshold; | ||
| 187 | pad_queue.Push(pad_status); | ||
| 110 | } | 188 | } |
| 111 | } | 189 | } |
| 112 | return pad; | ||
| 113 | } | 190 | } |
| 114 | 191 | ||
| 115 | void Adapter::Read() { | 192 | void Adapter::UpdateVibrations() { |
| 116 | LOG_DEBUG(Input, "GC Adapter Read() thread started"); | 193 | // Use 8 states to keep the switching between on/off fast enough for |
| 194 | // a human to not notice the difference between switching from on/off | ||
| 195 | // More states = more rumble strengths = slower update time | ||
| 196 | constexpr u8 vibration_states = 8; | ||
| 117 | 197 | ||
| 118 | int payload_size; | 198 | vibration_counter = (vibration_counter + 1) % vibration_states; |
| 119 | std::array<u8, 37> adapter_payload; | ||
| 120 | std::array<GCPadStatus, 4> pads; | ||
| 121 | |||
| 122 | while (adapter_thread_running) { | ||
| 123 | libusb_interrupt_transfer(usb_adapter_handle, input_endpoint, adapter_payload.data(), | ||
| 124 | sizeof(adapter_payload), &payload_size, 16); | ||
| 125 | |||
| 126 | if (payload_size != sizeof(adapter_payload) || adapter_payload[0] != LIBUSB_DT_HID) { | ||
| 127 | LOG_ERROR(Input, | ||
| 128 | "Error reading payload (size: {}, type: {:02x}) Is the adapter connected?", | ||
| 129 | payload_size, adapter_payload[0]); | ||
| 130 | adapter_thread_running = false; // error reading from adapter, stop reading. | ||
| 131 | break; | ||
| 132 | } | ||
| 133 | for (std::size_t port = 0; port < pads.size(); ++port) { | ||
| 134 | pads[port] = GetPadStatus(port, adapter_payload); | ||
| 135 | if (DeviceConnected(port) && configuring) { | ||
| 136 | if (pads[port].button != 0) { | ||
| 137 | pad_queue[port].Push(pads[port]); | ||
| 138 | } | ||
| 139 | 199 | ||
| 140 | // Accounting for a threshold here to ensure an intentional press | 200 | for (GCController& pad : pads) { |
| 141 | for (size_t i = 0; i < pads[port].axis_values.size(); ++i) { | 201 | const bool vibrate = pad.rumble_amplitude > vibration_counter; |
| 142 | const u8 value = pads[port].axis_values[i]; | 202 | vibration_changed |= vibrate != pad.enable_vibration; |
| 143 | const u8 origin = origin_status[port].axis_values[i]; | 203 | pad.enable_vibration = vibrate; |
| 144 | |||
| 145 | if (value > origin + pads[port].THRESHOLD || | ||
| 146 | value < origin - pads[port].THRESHOLD) { | ||
| 147 | pads[port].axis = static_cast<PadAxes>(i); | ||
| 148 | pads[port].axis_value = pads[port].axis_values[i]; | ||
| 149 | pad_queue[port].Push(pads[port]); | ||
| 150 | } | ||
| 151 | } | ||
| 152 | } | ||
| 153 | PadToState(pads[port], state[port]); | ||
| 154 | } | ||
| 155 | std::this_thread::yield(); | ||
| 156 | } | 204 | } |
| 205 | SendVibrations(); | ||
| 157 | } | 206 | } |
| 158 | 207 | ||
| 159 | void Adapter::Setup() { | 208 | void Adapter::SendVibrations() { |
| 160 | // Initialize all controllers as unplugged | 209 | if (!rumble_enabled || !vibration_changed) { |
| 161 | adapter_controllers_status.fill(ControllerTypes::None); | ||
| 162 | // Initialize all ports to store axis origin values | ||
| 163 | get_origin.fill(true); | ||
| 164 | |||
| 165 | // pointer to list of connected usb devices | ||
| 166 | libusb_device** devices{}; | ||
| 167 | |||
| 168 | // populate the list of devices, get the count | ||
| 169 | const ssize_t device_count = libusb_get_device_list(libusb_ctx, &devices); | ||
| 170 | if (device_count < 0) { | ||
| 171 | LOG_ERROR(Input, "libusb_get_device_list failed with error: {}", device_count); | ||
| 172 | return; | 210 | return; |
| 173 | } | 211 | } |
| 174 | 212 | s32 size{}; | |
| 175 | if (devices != nullptr) { | 213 | constexpr u8 rumble_command = 0x11; |
| 176 | for (std::size_t index = 0; index < static_cast<std::size_t>(device_count); ++index) { | 214 | const u8 p1 = pads[0].enable_vibration; |
| 177 | if (CheckDeviceAccess(devices[index])) { | 215 | const u8 p2 = pads[1].enable_vibration; |
| 178 | // GC Adapter found and accessible, registering it | 216 | const u8 p3 = pads[2].enable_vibration; |
| 179 | GetGCEndpoint(devices[index]); | 217 | const u8 p4 = pads[3].enable_vibration; |
| 180 | break; | 218 | std::array<u8, 5> payload = {rumble_command, p1, p2, p3, p4}; |
| 181 | } | 219 | const int err = libusb_interrupt_transfer(usb_adapter_handle, output_endpoint, payload.data(), |
| 220 | static_cast<s32>(payload.size()), &size, 16); | ||
| 221 | if (err) { | ||
| 222 | LOG_DEBUG(Input, "Adapter libusb write failed: {}", libusb_error_name(err)); | ||
| 223 | if (output_error_counter++ > 5) { | ||
| 224 | LOG_ERROR(Input, "GC adapter output timeout, Rumble disabled"); | ||
| 225 | rumble_enabled = false; | ||
| 182 | } | 226 | } |
| 183 | libusb_free_device_list(devices, 1); | 227 | return; |
| 184 | } | 228 | } |
| 229 | output_error_counter = 0; | ||
| 230 | vibration_changed = false; | ||
| 185 | } | 231 | } |
| 186 | 232 | ||
| 187 | bool Adapter::CheckDeviceAccess(libusb_device* device) { | 233 | bool Adapter::RumblePlay(std::size_t port, f32 amplitude) { |
| 188 | libusb_device_descriptor desc; | 234 | amplitude = std::clamp(amplitude, 0.0f, 1.0f); |
| 189 | const int get_descriptor_error = libusb_get_device_descriptor(device, &desc); | 235 | const auto raw_amp = static_cast<u8>(amplitude * 0x8); |
| 190 | if (get_descriptor_error) { | 236 | pads[port].rumble_amplitude = raw_amp; |
| 191 | // could not acquire the descriptor, no point in trying to use it. | 237 | |
| 192 | LOG_ERROR(Input, "libusb_get_device_descriptor failed with error: {}", | 238 | return rumble_enabled; |
| 193 | get_descriptor_error); | 239 | } |
| 194 | return false; | 240 | |
| 241 | void Adapter::AdapterScanThread() { | ||
| 242 | adapter_scan_thread_running = true; | ||
| 243 | adapter_input_thread_running = false; | ||
| 244 | if (adapter_input_thread.joinable()) { | ||
| 245 | adapter_input_thread.join(); | ||
| 246 | } | ||
| 247 | ClearLibusbHandle(); | ||
| 248 | ResetDevices(); | ||
| 249 | while (adapter_scan_thread_running && !adapter_input_thread_running) { | ||
| 250 | Setup(); | ||
| 251 | std::this_thread::sleep_for(std::chrono::seconds(1)); | ||
| 195 | } | 252 | } |
| 253 | } | ||
| 196 | 254 | ||
| 197 | if (desc.idVendor != 0x057e || desc.idProduct != 0x0337) { | 255 | void Adapter::Setup() { |
| 198 | // This isn't the device we are looking for. | 256 | usb_adapter_handle = libusb_open_device_with_vid_pid(libusb_ctx, 0x057e, 0x0337); |
| 199 | return false; | 257 | |
| 258 | if (usb_adapter_handle == NULL) { | ||
| 259 | return; | ||
| 260 | } | ||
| 261 | if (!CheckDeviceAccess()) { | ||
| 262 | ClearLibusbHandle(); | ||
| 263 | return; | ||
| 200 | } | 264 | } |
| 201 | const int open_error = libusb_open(device, &usb_adapter_handle); | ||
| 202 | 265 | ||
| 203 | if (open_error == LIBUSB_ERROR_ACCESS) { | 266 | libusb_device* device = libusb_get_device(usb_adapter_handle); |
| 204 | LOG_ERROR(Input, "Yuzu can not gain access to this device: ID {:04X}:{:04X}.", | 267 | |
| 205 | desc.idVendor, desc.idProduct); | 268 | LOG_INFO(Input, "GC adapter is now connected"); |
| 206 | return false; | 269 | // GC Adapter found and accessible, registering it |
| 270 | if (GetGCEndpoint(device)) { | ||
| 271 | adapter_scan_thread_running = false; | ||
| 272 | adapter_input_thread_running = true; | ||
| 273 | rumble_enabled = true; | ||
| 274 | input_error_counter = 0; | ||
| 275 | output_error_counter = 0; | ||
| 276 | adapter_input_thread = std::thread(&Adapter::AdapterInputThread, this); | ||
| 207 | } | 277 | } |
| 208 | if (open_error) { | 278 | } |
| 209 | LOG_ERROR(Input, "libusb_open failed to open device with error = {}", open_error); | 279 | |
| 210 | return false; | 280 | bool Adapter::CheckDeviceAccess() { |
| 281 | // This fixes payload problems from offbrand GCAdapters | ||
| 282 | const s32 control_transfer_error = | ||
| 283 | libusb_control_transfer(usb_adapter_handle, 0x21, 11, 0x0001, 0, nullptr, 0, 1000); | ||
| 284 | if (control_transfer_error < 0) { | ||
| 285 | LOG_ERROR(Input, "libusb_control_transfer failed with error= {}", control_transfer_error); | ||
| 211 | } | 286 | } |
| 212 | 287 | ||
| 213 | int kernel_driver_error = libusb_kernel_driver_active(usb_adapter_handle, 0); | 288 | s32 kernel_driver_error = libusb_kernel_driver_active(usb_adapter_handle, 0); |
| 214 | if (kernel_driver_error == 1) { | 289 | if (kernel_driver_error == 1) { |
| 215 | kernel_driver_error = libusb_detach_kernel_driver(usb_adapter_handle, 0); | 290 | kernel_driver_error = libusb_detach_kernel_driver(usb_adapter_handle, 0); |
| 216 | if (kernel_driver_error != 0 && kernel_driver_error != LIBUSB_ERROR_NOT_SUPPORTED) { | 291 | if (kernel_driver_error != 0 && kernel_driver_error != LIBUSB_ERROR_NOT_SUPPORTED) { |
| @@ -236,13 +311,13 @@ bool Adapter::CheckDeviceAccess(libusb_device* device) { | |||
| 236 | return true; | 311 | return true; |
| 237 | } | 312 | } |
| 238 | 313 | ||
| 239 | void Adapter::GetGCEndpoint(libusb_device* device) { | 314 | bool Adapter::GetGCEndpoint(libusb_device* device) { |
| 240 | libusb_config_descriptor* config = nullptr; | 315 | libusb_config_descriptor* config = nullptr; |
| 241 | const int config_descriptor_return = libusb_get_config_descriptor(device, 0, &config); | 316 | const int config_descriptor_return = libusb_get_config_descriptor(device, 0, &config); |
| 242 | if (config_descriptor_return != LIBUSB_SUCCESS) { | 317 | if (config_descriptor_return != LIBUSB_SUCCESS) { |
| 243 | LOG_ERROR(Input, "libusb_get_config_descriptor failed with error = {}", | 318 | LOG_ERROR(Input, "libusb_get_config_descriptor failed with error = {}", |
| 244 | config_descriptor_return); | 319 | config_descriptor_return); |
| 245 | return; | 320 | return false; |
| 246 | } | 321 | } |
| 247 | 322 | ||
| 248 | for (u8 ic = 0; ic < config->bNumInterfaces; ic++) { | 323 | for (u8 ic = 0; ic < config->bNumInterfaces; ic++) { |
| @@ -264,31 +339,51 @@ void Adapter::GetGCEndpoint(libusb_device* device) { | |||
| 264 | unsigned char clear_payload = 0x13; | 339 | unsigned char clear_payload = 0x13; |
| 265 | libusb_interrupt_transfer(usb_adapter_handle, output_endpoint, &clear_payload, | 340 | libusb_interrupt_transfer(usb_adapter_handle, output_endpoint, &clear_payload, |
| 266 | sizeof(clear_payload), nullptr, 16); | 341 | sizeof(clear_payload), nullptr, 16); |
| 267 | 342 | return true; | |
| 268 | adapter_thread_running = true; | ||
| 269 | adapter_input_thread = std::thread(&Adapter::Read, this); | ||
| 270 | } | 343 | } |
| 271 | 344 | ||
| 272 | Adapter::~Adapter() { | 345 | void Adapter::JoinThreads() { |
| 273 | Reset(); | 346 | restart_scan_thread = false; |
| 274 | } | 347 | adapter_input_thread_running = false; |
| 348 | adapter_scan_thread_running = false; | ||
| 275 | 349 | ||
| 276 | void Adapter::Reset() { | 350 | if (adapter_scan_thread.joinable()) { |
| 277 | if (adapter_thread_running) { | 351 | adapter_scan_thread.join(); |
| 278 | adapter_thread_running = false; | ||
| 279 | } | 352 | } |
| 353 | |||
| 280 | if (adapter_input_thread.joinable()) { | 354 | if (adapter_input_thread.joinable()) { |
| 281 | adapter_input_thread.join(); | 355 | adapter_input_thread.join(); |
| 282 | } | 356 | } |
| 357 | } | ||
| 283 | 358 | ||
| 284 | adapter_controllers_status.fill(ControllerTypes::None); | 359 | void Adapter::ClearLibusbHandle() { |
| 285 | get_origin.fill(true); | ||
| 286 | |||
| 287 | if (usb_adapter_handle) { | 360 | if (usb_adapter_handle) { |
| 288 | libusb_release_interface(usb_adapter_handle, 1); | 361 | libusb_release_interface(usb_adapter_handle, 1); |
| 289 | libusb_close(usb_adapter_handle); | 362 | libusb_close(usb_adapter_handle); |
| 290 | usb_adapter_handle = nullptr; | 363 | usb_adapter_handle = nullptr; |
| 291 | } | 364 | } |
| 365 | } | ||
| 366 | |||
| 367 | void Adapter::ResetDevices() { | ||
| 368 | for (std::size_t i = 0; i < pads.size(); ++i) { | ||
| 369 | ResetDevice(i); | ||
| 370 | } | ||
| 371 | } | ||
| 372 | |||
| 373 | void Adapter::ResetDevice(std::size_t port) { | ||
| 374 | pads[port].type = ControllerTypes::None; | ||
| 375 | pads[port].enable_vibration = false; | ||
| 376 | pads[port].rumble_amplitude = 0; | ||
| 377 | pads[port].buttons = 0; | ||
| 378 | pads[port].last_button = PadButton::Undefined; | ||
| 379 | pads[port].axis_values.fill(0); | ||
| 380 | pads[port].axis_origin.fill(255); | ||
| 381 | } | ||
| 382 | |||
| 383 | void Adapter::Reset() { | ||
| 384 | JoinThreads(); | ||
| 385 | ClearLibusbHandle(); | ||
| 386 | ResetDevices(); | ||
| 292 | 387 | ||
| 293 | if (libusb_ctx) { | 388 | if (libusb_ctx) { |
| 294 | libusb_exit(libusb_ctx); | 389 | libusb_exit(libusb_ctx); |
| @@ -297,11 +392,11 @@ void Adapter::Reset() { | |||
| 297 | 392 | ||
| 298 | std::vector<Common::ParamPackage> Adapter::GetInputDevices() const { | 393 | std::vector<Common::ParamPackage> Adapter::GetInputDevices() const { |
| 299 | std::vector<Common::ParamPackage> devices; | 394 | std::vector<Common::ParamPackage> devices; |
| 300 | for (std::size_t port = 0; port < state.size(); ++port) { | 395 | for (std::size_t port = 0; port < pads.size(); ++port) { |
| 301 | if (!DeviceConnected(port)) { | 396 | if (!DeviceConnected(port)) { |
| 302 | continue; | 397 | continue; |
| 303 | } | 398 | } |
| 304 | std::string name = fmt::format("Gamecube Controller {}", port); | 399 | std::string name = fmt::format("Gamecube Controller {}", port + 1); |
| 305 | devices.emplace_back(Common::ParamPackage{ | 400 | devices.emplace_back(Common::ParamPackage{ |
| 306 | {"class", "gcpad"}, | 401 | {"class", "gcpad"}, |
| 307 | {"display", std::move(name)}, | 402 | {"display", std::move(name)}, |
| @@ -318,18 +413,18 @@ InputCommon::ButtonMapping Adapter::GetButtonMappingForDevice( | |||
| 318 | // This list also excludes any button that can't be really mapped | 413 | // This list also excludes any button that can't be really mapped |
| 319 | static constexpr std::array<std::pair<Settings::NativeButton::Values, PadButton>, 12> | 414 | static constexpr std::array<std::pair<Settings::NativeButton::Values, PadButton>, 12> |
| 320 | switch_to_gcadapter_button = { | 415 | switch_to_gcadapter_button = { |
| 321 | std::pair{Settings::NativeButton::A, PadButton::PAD_BUTTON_A}, | 416 | std::pair{Settings::NativeButton::A, PadButton::ButtonA}, |
| 322 | {Settings::NativeButton::B, PadButton::PAD_BUTTON_B}, | 417 | {Settings::NativeButton::B, PadButton::ButtonB}, |
| 323 | {Settings::NativeButton::X, PadButton::PAD_BUTTON_X}, | 418 | {Settings::NativeButton::X, PadButton::ButtonX}, |
| 324 | {Settings::NativeButton::Y, PadButton::PAD_BUTTON_Y}, | 419 | {Settings::NativeButton::Y, PadButton::ButtonY}, |
| 325 | {Settings::NativeButton::Plus, PadButton::PAD_BUTTON_START}, | 420 | {Settings::NativeButton::Plus, PadButton::ButtonStart}, |
| 326 | {Settings::NativeButton::DLeft, PadButton::PAD_BUTTON_LEFT}, | 421 | {Settings::NativeButton::DLeft, PadButton::ButtonLeft}, |
| 327 | {Settings::NativeButton::DUp, PadButton::PAD_BUTTON_UP}, | 422 | {Settings::NativeButton::DUp, PadButton::ButtonUp}, |
| 328 | {Settings::NativeButton::DRight, PadButton::PAD_BUTTON_RIGHT}, | 423 | {Settings::NativeButton::DRight, PadButton::ButtonRight}, |
| 329 | {Settings::NativeButton::DDown, PadButton::PAD_BUTTON_DOWN}, | 424 | {Settings::NativeButton::DDown, PadButton::ButtonDown}, |
| 330 | {Settings::NativeButton::SL, PadButton::PAD_TRIGGER_L}, | 425 | {Settings::NativeButton::SL, PadButton::TriggerL}, |
| 331 | {Settings::NativeButton::SR, PadButton::PAD_TRIGGER_R}, | 426 | {Settings::NativeButton::SR, PadButton::TriggerR}, |
| 332 | {Settings::NativeButton::R, PadButton::PAD_TRIGGER_Z}, | 427 | {Settings::NativeButton::R, PadButton::TriggerZ}, |
| 333 | }; | 428 | }; |
| 334 | if (!params.Has("port")) { | 429 | if (!params.Has("port")) { |
| 335 | return {}; | 430 | return {}; |
| @@ -352,8 +447,10 @@ InputCommon::ButtonMapping Adapter::GetButtonMappingForDevice( | |||
| 352 | for (const auto& [switch_button, gcadapter_axis] : switch_to_gcadapter_axis) { | 447 | for (const auto& [switch_button, gcadapter_axis] : switch_to_gcadapter_axis) { |
| 353 | Common::ParamPackage button_params({{"engine", "gcpad"}}); | 448 | Common::ParamPackage button_params({{"engine", "gcpad"}}); |
| 354 | button_params.Set("port", params.Get("port", 0)); | 449 | button_params.Set("port", params.Get("port", 0)); |
| 355 | button_params.Set("button", static_cast<int>(PadButton::PAD_STICK)); | 450 | button_params.Set("button", static_cast<s32>(PadButton::Stick)); |
| 356 | button_params.Set("axis", static_cast<int>(gcadapter_axis)); | 451 | button_params.Set("axis", static_cast<s32>(gcadapter_axis)); |
| 452 | button_params.Set("threshold", 0.5f); | ||
| 453 | button_params.Set("direction", "+"); | ||
| 357 | mapping.insert_or_assign(switch_button, std::move(button_params)); | 454 | mapping.insert_or_assign(switch_button, std::move(button_params)); |
| 358 | } | 455 | } |
| 359 | return mapping; | 456 | return mapping; |
| @@ -382,46 +479,33 @@ InputCommon::AnalogMapping Adapter::GetAnalogMappingForDevice( | |||
| 382 | } | 479 | } |
| 383 | 480 | ||
| 384 | bool Adapter::DeviceConnected(std::size_t port) const { | 481 | bool Adapter::DeviceConnected(std::size_t port) const { |
| 385 | return adapter_controllers_status[port] != ControllerTypes::None; | 482 | return pads[port].type != ControllerTypes::None; |
| 386 | } | ||
| 387 | |||
| 388 | void Adapter::ResetDeviceType(std::size_t port) { | ||
| 389 | adapter_controllers_status[port] = ControllerTypes::None; | ||
| 390 | } | 483 | } |
| 391 | 484 | ||
| 392 | void Adapter::BeginConfiguration() { | 485 | void Adapter::BeginConfiguration() { |
| 393 | get_origin.fill(true); | 486 | pad_queue.Clear(); |
| 394 | for (auto& pq : pad_queue) { | ||
| 395 | pq.Clear(); | ||
| 396 | } | ||
| 397 | configuring = true; | 487 | configuring = true; |
| 398 | } | 488 | } |
| 399 | 489 | ||
| 400 | void Adapter::EndConfiguration() { | 490 | void Adapter::EndConfiguration() { |
| 401 | for (auto& pq : pad_queue) { | 491 | pad_queue.Clear(); |
| 402 | pq.Clear(); | ||
| 403 | } | ||
| 404 | configuring = false; | 492 | configuring = false; |
| 405 | } | 493 | } |
| 406 | 494 | ||
| 407 | std::array<Common::SPSCQueue<GCPadStatus>, 4>& Adapter::GetPadQueue() { | 495 | Common::SPSCQueue<GCPadStatus>& Adapter::GetPadQueue() { |
| 408 | return pad_queue; | 496 | return pad_queue; |
| 409 | } | 497 | } |
| 410 | 498 | ||
| 411 | const std::array<Common::SPSCQueue<GCPadStatus>, 4>& Adapter::GetPadQueue() const { | 499 | const Common::SPSCQueue<GCPadStatus>& Adapter::GetPadQueue() const { |
| 412 | return pad_queue; | 500 | return pad_queue; |
| 413 | } | 501 | } |
| 414 | 502 | ||
| 415 | std::array<GCState, 4>& Adapter::GetPadState() { | 503 | GCController& Adapter::GetPadState(std::size_t port) { |
| 416 | return state; | 504 | return pads.at(port); |
| 417 | } | ||
| 418 | |||
| 419 | const std::array<GCState, 4>& Adapter::GetPadState() const { | ||
| 420 | return state; | ||
| 421 | } | 505 | } |
| 422 | 506 | ||
| 423 | int Adapter::GetOriginValue(u32 port, u32 axis) const { | 507 | const GCController& Adapter::GetPadState(std::size_t port) const { |
| 424 | return origin_status[port].axis_values[axis]; | 508 | return pads.at(port); |
| 425 | } | 509 | } |
| 426 | 510 | ||
| 427 | } // namespace GCAdapter | 511 | } // namespace GCAdapter |
diff --git a/src/input_common/gcadapter/gc_adapter.h b/src/input_common/gcadapter/gc_adapter.h index 4f5f3de8e..d28dcfad3 100644 --- a/src/input_common/gcadapter/gc_adapter.h +++ b/src/input_common/gcadapter/gc_adapter.h | |||
| @@ -19,24 +19,23 @@ struct libusb_device_handle; | |||
| 19 | namespace GCAdapter { | 19 | namespace GCAdapter { |
| 20 | 20 | ||
| 21 | enum class PadButton { | 21 | enum class PadButton { |
| 22 | PAD_BUTTON_LEFT = 0x0001, | 22 | Undefined = 0x0000, |
| 23 | PAD_BUTTON_RIGHT = 0x0002, | 23 | ButtonLeft = 0x0001, |
| 24 | PAD_BUTTON_DOWN = 0x0004, | 24 | ButtonRight = 0x0002, |
| 25 | PAD_BUTTON_UP = 0x0008, | 25 | ButtonDown = 0x0004, |
| 26 | PAD_TRIGGER_Z = 0x0010, | 26 | ButtonUp = 0x0008, |
| 27 | PAD_TRIGGER_R = 0x0020, | 27 | TriggerZ = 0x0010, |
| 28 | PAD_TRIGGER_L = 0x0040, | 28 | TriggerR = 0x0020, |
| 29 | PAD_BUTTON_A = 0x0100, | 29 | TriggerL = 0x0040, |
| 30 | PAD_BUTTON_B = 0x0200, | 30 | ButtonA = 0x0100, |
| 31 | PAD_BUTTON_X = 0x0400, | 31 | ButtonB = 0x0200, |
| 32 | PAD_BUTTON_Y = 0x0800, | 32 | ButtonX = 0x0400, |
| 33 | PAD_BUTTON_START = 0x1000, | 33 | ButtonY = 0x0800, |
| 34 | ButtonStart = 0x1000, | ||
| 34 | // Below is for compatibility with "AxisButton" type | 35 | // Below is for compatibility with "AxisButton" type |
| 35 | PAD_STICK = 0x2000, | 36 | Stick = 0x2000, |
| 36 | }; | 37 | }; |
| 37 | 38 | ||
| 38 | extern const std::array<PadButton, 12> PadButtonArray; | ||
| 39 | |||
| 40 | enum class PadAxes : u8 { | 39 | enum class PadAxes : u8 { |
| 41 | StickX, | 40 | StickX, |
| 42 | StickY, | 41 | StickY, |
| @@ -47,87 +46,122 @@ enum class PadAxes : u8 { | |||
| 47 | Undefined, | 46 | Undefined, |
| 48 | }; | 47 | }; |
| 49 | 48 | ||
| 49 | enum class ControllerTypes { | ||
| 50 | None, | ||
| 51 | Wired, | ||
| 52 | Wireless, | ||
| 53 | }; | ||
| 54 | |||
| 50 | struct GCPadStatus { | 55 | struct GCPadStatus { |
| 51 | u16 button{}; // Or-ed PAD_BUTTON_* and PAD_TRIGGER_* bits | 56 | std::size_t port{}; |
| 52 | 57 | ||
| 53 | std::array<u8, 6> axis_values{}; // Triggers and sticks, following indices defined in PadAxes | 58 | PadButton button{PadButton::Undefined}; // Or-ed PAD_BUTTON_* and PAD_TRIGGER_* bits |
| 54 | static constexpr u8 THRESHOLD = 50; // Threshold for axis press for polling | ||
| 55 | 59 | ||
| 56 | u8 port{}; | ||
| 57 | PadAxes axis{PadAxes::Undefined}; | 60 | PadAxes axis{PadAxes::Undefined}; |
| 58 | u8 axis_value{255}; | 61 | s16 axis_value{}; |
| 62 | u8 axis_threshold{50}; | ||
| 59 | }; | 63 | }; |
| 60 | 64 | ||
| 61 | struct GCState { | 65 | struct GCController { |
| 62 | std::unordered_map<int, bool> buttons; | 66 | ControllerTypes type{}; |
| 63 | std::unordered_map<u32, u16> axes; | 67 | bool enable_vibration{}; |
| 68 | u8 rumble_amplitude{}; | ||
| 69 | u16 buttons{}; | ||
| 70 | PadButton last_button{}; | ||
| 71 | std::array<s16, 6> axis_values{}; | ||
| 72 | std::array<u8, 6> axis_origin{}; | ||
| 64 | }; | 73 | }; |
| 65 | 74 | ||
| 66 | enum class ControllerTypes { None, Wired, Wireless }; | ||
| 67 | |||
| 68 | class Adapter { | 75 | class Adapter { |
| 69 | public: | 76 | public: |
| 70 | /// Initialize the GC Adapter capture and read sequence | ||
| 71 | Adapter(); | 77 | Adapter(); |
| 72 | |||
| 73 | /// Close the adapter read thread and release the adapter | ||
| 74 | ~Adapter(); | 78 | ~Adapter(); |
| 79 | |||
| 80 | /// Request a vibration for a controlelr | ||
| 81 | bool RumblePlay(std::size_t port, f32 amplitude); | ||
| 82 | |||
| 75 | /// Used for polling | 83 | /// Used for polling |
| 76 | void BeginConfiguration(); | 84 | void BeginConfiguration(); |
| 77 | void EndConfiguration(); | 85 | void EndConfiguration(); |
| 78 | 86 | ||
| 87 | Common::SPSCQueue<GCPadStatus>& GetPadQueue(); | ||
| 88 | const Common::SPSCQueue<GCPadStatus>& GetPadQueue() const; | ||
| 89 | |||
| 90 | GCController& GetPadState(std::size_t port); | ||
| 91 | const GCController& GetPadState(std::size_t port) const; | ||
| 92 | |||
| 93 | /// Returns true if there is a device connected to port | ||
| 94 | bool DeviceConnected(std::size_t port) const; | ||
| 95 | |||
| 96 | /// Used for automapping features | ||
| 79 | std::vector<Common::ParamPackage> GetInputDevices() const; | 97 | std::vector<Common::ParamPackage> GetInputDevices() const; |
| 80 | InputCommon::ButtonMapping GetButtonMappingForDevice(const Common::ParamPackage& params) const; | 98 | InputCommon::ButtonMapping GetButtonMappingForDevice(const Common::ParamPackage& params) const; |
| 81 | InputCommon::AnalogMapping GetAnalogMappingForDevice(const Common::ParamPackage& params) const; | 99 | InputCommon::AnalogMapping GetAnalogMappingForDevice(const Common::ParamPackage& params) const; |
| 82 | 100 | ||
| 83 | /// Returns true if there is a device connected to port | 101 | private: |
| 84 | bool DeviceConnected(std::size_t port) const; | 102 | using AdapterPayload = std::array<u8, 37>; |
| 85 | 103 | ||
| 86 | std::array<Common::SPSCQueue<GCPadStatus>, 4>& GetPadQueue(); | 104 | void UpdatePadType(std::size_t port, ControllerTypes pad_type); |
| 87 | const std::array<Common::SPSCQueue<GCPadStatus>, 4>& GetPadQueue() const; | 105 | void UpdateControllers(const AdapterPayload& adapter_payload); |
| 106 | void UpdateYuzuSettings(std::size_t port); | ||
| 107 | void UpdateStateButtons(std::size_t port, u8 b1, u8 b2); | ||
| 108 | void UpdateStateAxes(std::size_t port, const AdapterPayload& adapter_payload); | ||
| 109 | void UpdateVibrations(); | ||
| 88 | 110 | ||
| 89 | std::array<GCState, 4>& GetPadState(); | 111 | void AdapterInputThread(); |
| 90 | const std::array<GCState, 4>& GetPadState() const; | ||
| 91 | 112 | ||
| 92 | int GetOriginValue(u32 port, u32 axis) const; | 113 | void AdapterScanThread(); |
| 93 | 114 | ||
| 94 | private: | 115 | bool IsPayloadCorrect(const AdapterPayload& adapter_payload, s32 payload_size); |
| 95 | GCPadStatus GetPadStatus(std::size_t port, const std::array<u8, 37>& adapter_payload); | 116 | |
| 117 | // Updates vibration state of all controllers | ||
| 118 | void SendVibrations(); | ||
| 119 | |||
| 120 | /// For use in initialization, querying devices to find the adapter | ||
| 121 | void Setup(); | ||
| 96 | 122 | ||
| 97 | void Read(); | 123 | /// Resets status of all GC controller devices to a disconected state |
| 124 | void ResetDevices(); | ||
| 98 | 125 | ||
| 99 | /// Resets status of device connected to port | 126 | /// Resets status of device connected to a disconected state |
| 100 | void ResetDeviceType(std::size_t port); | 127 | void ResetDevice(std::size_t port); |
| 101 | 128 | ||
| 102 | /// Returns true if we successfully gain access to GC Adapter | 129 | /// Returns true if we successfully gain access to GC Adapter |
| 103 | bool CheckDeviceAccess(libusb_device* device); | 130 | bool CheckDeviceAccess(); |
| 104 | 131 | ||
| 105 | /// Captures GC Adapter endpoint address, | 132 | /// Captures GC Adapter endpoint address |
| 106 | void GetGCEndpoint(libusb_device* device); | 133 | /// Returns true if the endpoind was set correctly |
| 134 | bool GetGCEndpoint(libusb_device* device); | ||
| 107 | 135 | ||
| 108 | /// For shutting down, clear all data, join all threads, release usb | 136 | /// For shutting down, clear all data, join all threads, release usb |
| 109 | void Reset(); | 137 | void Reset(); |
| 110 | 138 | ||
| 111 | /// For use in initialization, querying devices to find the adapter | 139 | // Join all threads |
| 112 | void Setup(); | 140 | void JoinThreads(); |
| 141 | |||
| 142 | // Release usb handles | ||
| 143 | void ClearLibusbHandle(); | ||
| 113 | 144 | ||
| 114 | libusb_device_handle* usb_adapter_handle = nullptr; | 145 | libusb_device_handle* usb_adapter_handle = nullptr; |
| 146 | std::array<GCController, 4> pads; | ||
| 147 | Common::SPSCQueue<GCPadStatus> pad_queue; | ||
| 115 | 148 | ||
| 116 | std::thread adapter_input_thread; | 149 | std::thread adapter_input_thread; |
| 117 | bool adapter_thread_running; | 150 | std::thread adapter_scan_thread; |
| 151 | bool adapter_input_thread_running; | ||
| 152 | bool adapter_scan_thread_running; | ||
| 153 | bool restart_scan_thread; | ||
| 118 | 154 | ||
| 119 | libusb_context* libusb_ctx; | 155 | libusb_context* libusb_ctx; |
| 120 | 156 | ||
| 121 | u8 input_endpoint = 0; | 157 | u8 input_endpoint{0}; |
| 122 | u8 output_endpoint = 0; | 158 | u8 output_endpoint{0}; |
| 123 | 159 | u8 input_error_counter{0}; | |
| 124 | bool configuring = false; | 160 | u8 output_error_counter{0}; |
| 161 | int vibration_counter{0}; | ||
| 125 | 162 | ||
| 126 | std::array<GCState, 4> state; | 163 | bool configuring{false}; |
| 127 | std::array<bool, 4> get_origin; | 164 | bool rumble_enabled{true}; |
| 128 | std::array<GCPadStatus, 4> origin_status; | 165 | bool vibration_changed{true}; |
| 129 | std::array<Common::SPSCQueue<GCPadStatus>, 4> pad_queue; | ||
| 130 | std::array<ControllerTypes, 4> adapter_controllers_status{}; | ||
| 131 | }; | 166 | }; |
| 132 | |||
| 133 | } // namespace GCAdapter | 167 | } // namespace GCAdapter |
diff --git a/src/input_common/gcadapter/gc_poller.cpp b/src/input_common/gcadapter/gc_poller.cpp index 893556916..6bd6f57fc 100644 --- a/src/input_common/gcadapter/gc_poller.cpp +++ b/src/input_common/gcadapter/gc_poller.cpp | |||
| @@ -15,22 +15,30 @@ namespace InputCommon { | |||
| 15 | 15 | ||
| 16 | class GCButton final : public Input::ButtonDevice { | 16 | class GCButton final : public Input::ButtonDevice { |
| 17 | public: | 17 | public: |
| 18 | explicit GCButton(u32 port_, int button_, const GCAdapter::Adapter* adapter) | 18 | explicit GCButton(u32 port_, s32 button_, GCAdapter::Adapter* adapter) |
| 19 | : port(port_), button(button_), gcadapter(adapter) {} | 19 | : port(port_), button(button_), gcadapter(adapter) {} |
| 20 | 20 | ||
| 21 | ~GCButton() override; | 21 | ~GCButton() override; |
| 22 | 22 | ||
| 23 | bool GetStatus() const override { | 23 | bool GetStatus() const override { |
| 24 | if (gcadapter->DeviceConnected(port)) { | 24 | if (gcadapter->DeviceConnected(port)) { |
| 25 | return gcadapter->GetPadState()[port].buttons.at(button); | 25 | return (gcadapter->GetPadState(port).buttons & button) != 0; |
| 26 | } | 26 | } |
| 27 | return false; | 27 | return false; |
| 28 | } | 28 | } |
| 29 | 29 | ||
| 30 | bool SetRumblePlay(f32 amp_high, f32 amp_low, f32 freq_high, f32 freq_low) const override { | ||
| 31 | const float amplitude = amp_high + amp_low > 2.0f ? 1.0f : (amp_high + amp_low) * 0.5f; | ||
| 32 | const auto new_amp = | ||
| 33 | static_cast<f32>(pow(amplitude, 0.5f) * (3.0f - 2.0f * pow(amplitude, 0.15f))); | ||
| 34 | |||
| 35 | return gcadapter->RumblePlay(port, new_amp); | ||
| 36 | } | ||
| 37 | |||
| 30 | private: | 38 | private: |
| 31 | const u32 port; | 39 | const u32 port; |
| 32 | const int button; | 40 | const s32 button; |
| 33 | const GCAdapter::Adapter* gcadapter; | 41 | GCAdapter::Adapter* gcadapter; |
| 34 | }; | 42 | }; |
| 35 | 43 | ||
| 36 | class GCAxisButton final : public Input::ButtonDevice { | 44 | class GCAxisButton final : public Input::ButtonDevice { |
| @@ -38,13 +46,12 @@ public: | |||
| 38 | explicit GCAxisButton(u32 port_, u32 axis_, float threshold_, bool trigger_if_greater_, | 46 | explicit GCAxisButton(u32 port_, u32 axis_, float threshold_, bool trigger_if_greater_, |
| 39 | const GCAdapter::Adapter* adapter) | 47 | const GCAdapter::Adapter* adapter) |
| 40 | : port(port_), axis(axis_), threshold(threshold_), trigger_if_greater(trigger_if_greater_), | 48 | : port(port_), axis(axis_), threshold(threshold_), trigger_if_greater(trigger_if_greater_), |
| 41 | gcadapter(adapter), | 49 | gcadapter(adapter) {} |
| 42 | origin_value(static_cast<float>(adapter->GetOriginValue(port_, axis_))) {} | ||
| 43 | 50 | ||
| 44 | bool GetStatus() const override { | 51 | bool GetStatus() const override { |
| 45 | if (gcadapter->DeviceConnected(port)) { | 52 | if (gcadapter->DeviceConnected(port)) { |
| 46 | const float current_axis_value = gcadapter->GetPadState()[port].axes.at(axis); | 53 | const float current_axis_value = gcadapter->GetPadState(port).axis_values.at(axis); |
| 47 | const float axis_value = (current_axis_value - origin_value) / 128.0f; | 54 | const float axis_value = current_axis_value / 128.0f; |
| 48 | if (trigger_if_greater) { | 55 | if (trigger_if_greater) { |
| 49 | // TODO: Might be worthwile to set a slider for the trigger threshold. It is | 56 | // TODO: Might be worthwile to set a slider for the trigger threshold. It is |
| 50 | // currently always set to 0.5 in configure_input_player.cpp ZL/ZR HandleClick | 57 | // currently always set to 0.5 in configure_input_player.cpp ZL/ZR HandleClick |
| @@ -61,7 +68,6 @@ private: | |||
| 61 | float threshold; | 68 | float threshold; |
| 62 | bool trigger_if_greater; | 69 | bool trigger_if_greater; |
| 63 | const GCAdapter::Adapter* gcadapter; | 70 | const GCAdapter::Adapter* gcadapter; |
| 64 | const float origin_value; | ||
| 65 | }; | 71 | }; |
| 66 | 72 | ||
| 67 | GCButtonFactory::GCButtonFactory(std::shared_ptr<GCAdapter::Adapter> adapter_) | 73 | GCButtonFactory::GCButtonFactory(std::shared_ptr<GCAdapter::Adapter> adapter_) |
| @@ -73,7 +79,7 @@ std::unique_ptr<Input::ButtonDevice> GCButtonFactory::Create(const Common::Param | |||
| 73 | const auto button_id = params.Get("button", 0); | 79 | const auto button_id = params.Get("button", 0); |
| 74 | const auto port = static_cast<u32>(params.Get("port", 0)); | 80 | const auto port = static_cast<u32>(params.Get("port", 0)); |
| 75 | 81 | ||
| 76 | constexpr int PAD_STICK_ID = static_cast<u16>(GCAdapter::PadButton::PAD_STICK); | 82 | constexpr s32 PAD_STICK_ID = static_cast<s32>(GCAdapter::PadButton::Stick); |
| 77 | 83 | ||
| 78 | // button is not an axis/stick button | 84 | // button is not an axis/stick button |
| 79 | if (button_id != PAD_STICK_ID) { | 85 | if (button_id != PAD_STICK_ID) { |
| @@ -106,32 +112,25 @@ Common::ParamPackage GCButtonFactory::GetNextInput() const { | |||
| 106 | Common::ParamPackage params; | 112 | Common::ParamPackage params; |
| 107 | GCAdapter::GCPadStatus pad; | 113 | GCAdapter::GCPadStatus pad; |
| 108 | auto& queue = adapter->GetPadQueue(); | 114 | auto& queue = adapter->GetPadQueue(); |
| 109 | for (std::size_t port = 0; port < queue.size(); ++port) { | 115 | while (queue.Pop(pad)) { |
| 110 | while (queue[port].Pop(pad)) { | 116 | // This while loop will break on the earliest detected button |
| 111 | // This while loop will break on the earliest detected button | 117 | params.Set("engine", "gcpad"); |
| 112 | params.Set("engine", "gcpad"); | 118 | params.Set("port", static_cast<s32>(pad.port)); |
| 113 | params.Set("port", static_cast<int>(port)); | 119 | if (pad.button != GCAdapter::PadButton::Undefined) { |
| 114 | for (const auto& button : GCAdapter::PadButtonArray) { | 120 | params.Set("button", static_cast<u16>(pad.button)); |
| 115 | const u16 button_value = static_cast<u16>(button); | 121 | } |
| 116 | if (pad.button & button_value) { | ||
| 117 | params.Set("button", button_value); | ||
| 118 | break; | ||
| 119 | } | ||
| 120 | } | ||
| 121 | 122 | ||
| 122 | // For Axis button implementation | 123 | // For Axis button implementation |
| 123 | if (pad.axis != GCAdapter::PadAxes::Undefined) { | 124 | if (pad.axis != GCAdapter::PadAxes::Undefined) { |
| 124 | params.Set("axis", static_cast<u8>(pad.axis)); | 125 | params.Set("axis", static_cast<u8>(pad.axis)); |
| 125 | params.Set("button", static_cast<u16>(GCAdapter::PadButton::PAD_STICK)); | 126 | params.Set("button", static_cast<u16>(GCAdapter::PadButton::Stick)); |
| 126 | if (pad.axis_value > 128) { | 127 | params.Set("threshold", "0.25"); |
| 127 | params.Set("direction", "+"); | 128 | if (pad.axis_value > 0) { |
| 128 | params.Set("threshold", "0.25"); | 129 | params.Set("direction", "+"); |
| 129 | } else { | 130 | } else { |
| 130 | params.Set("direction", "-"); | 131 | params.Set("direction", "-"); |
| 131 | params.Set("threshold", "-0.25"); | ||
| 132 | } | ||
| 133 | break; | ||
| 134 | } | 132 | } |
| 133 | break; | ||
| 135 | } | 134 | } |
| 136 | } | 135 | } |
| 137 | return params; | 136 | return params; |
| @@ -152,17 +151,14 @@ public: | |||
| 152 | explicit GCAnalog(u32 port_, u32 axis_x_, u32 axis_y_, float deadzone_, | 151 | explicit GCAnalog(u32 port_, u32 axis_x_, u32 axis_y_, float deadzone_, |
| 153 | const GCAdapter::Adapter* adapter, float range_) | 152 | const GCAdapter::Adapter* adapter, float range_) |
| 154 | : port(port_), axis_x(axis_x_), axis_y(axis_y_), deadzone(deadzone_), gcadapter(adapter), | 153 | : port(port_), axis_x(axis_x_), axis_y(axis_y_), deadzone(deadzone_), gcadapter(adapter), |
| 155 | origin_value_x(static_cast<float>(adapter->GetOriginValue(port_, axis_x_))), | ||
| 156 | origin_value_y(static_cast<float>(adapter->GetOriginValue(port_, axis_y_))), | ||
| 157 | range(range_) {} | 154 | range(range_) {} |
| 158 | 155 | ||
| 159 | float GetAxis(u32 axis) const { | 156 | float GetAxis(u32 axis) const { |
| 160 | if (gcadapter->DeviceConnected(port)) { | 157 | if (gcadapter->DeviceConnected(port)) { |
| 161 | std::lock_guard lock{mutex}; | 158 | std::lock_guard lock{mutex}; |
| 162 | const auto origin_value = axis % 2 == 0 ? origin_value_x : origin_value_y; | ||
| 163 | const auto axis_value = | 159 | const auto axis_value = |
| 164 | static_cast<float>(gcadapter->GetPadState()[port].axes.at(axis)); | 160 | static_cast<float>(gcadapter->GetPadState(port).axis_values.at(axis)); |
| 165 | return (axis_value - origin_value) / (100.0f * range); | 161 | return (axis_value) / (100.0f * range); |
| 166 | } | 162 | } |
| 167 | return 0.0f; | 163 | return 0.0f; |
| 168 | } | 164 | } |
| @@ -215,8 +211,6 @@ private: | |||
| 215 | const u32 axis_y; | 211 | const u32 axis_y; |
| 216 | const float deadzone; | 212 | const float deadzone; |
| 217 | const GCAdapter::Adapter* gcadapter; | 213 | const GCAdapter::Adapter* gcadapter; |
| 218 | const float origin_value_x; | ||
| 219 | const float origin_value_y; | ||
| 220 | const float range; | 214 | const float range; |
| 221 | mutable std::mutex mutex; | 215 | mutable std::mutex mutex; |
| 222 | }; | 216 | }; |
| @@ -254,26 +248,44 @@ void GCAnalogFactory::EndConfiguration() { | |||
| 254 | 248 | ||
| 255 | Common::ParamPackage GCAnalogFactory::GetNextInput() { | 249 | Common::ParamPackage GCAnalogFactory::GetNextInput() { |
| 256 | GCAdapter::GCPadStatus pad; | 250 | GCAdapter::GCPadStatus pad; |
| 251 | Common::ParamPackage params; | ||
| 257 | auto& queue = adapter->GetPadQueue(); | 252 | auto& queue = adapter->GetPadQueue(); |
| 258 | for (std::size_t port = 0; port < queue.size(); ++port) { | 253 | while (queue.Pop(pad)) { |
| 259 | while (queue[port].Pop(pad)) { | 254 | if (pad.button != GCAdapter::PadButton::Undefined) { |
| 260 | if (pad.axis == GCAdapter::PadAxes::Undefined || | 255 | params.Set("engine", "gcpad"); |
| 261 | std::abs((static_cast<float>(pad.axis_value) - 128.0f) / 128.0f) < 0.1f) { | 256 | params.Set("port", static_cast<s32>(pad.port)); |
| 262 | continue; | 257 | params.Set("button", static_cast<u16>(pad.button)); |
| 263 | } | 258 | return params; |
| 264 | // An analog device needs two axes, so we need to store the axis for later and wait for | 259 | } |
| 265 | // a second input event. The axes also must be from the same joystick. | 260 | if (pad.axis == GCAdapter::PadAxes::Undefined || |
| 266 | const u8 axis = static_cast<u8>(pad.axis); | 261 | std::abs(static_cast<float>(pad.axis_value) / 128.0f) < 0.1f) { |
| 267 | if (analog_x_axis == -1) { | 262 | continue; |
| 268 | analog_x_axis = axis; | 263 | } |
| 269 | controller_number = static_cast<int>(port); | 264 | // An analog device needs two axes, so we need to store the axis for later and wait for |
| 270 | } else if (analog_y_axis == -1 && analog_x_axis != axis && | 265 | // a second input event. The axes also must be from the same joystick. |
| 271 | controller_number == static_cast<int>(port)) { | 266 | const u8 axis = static_cast<u8>(pad.axis); |
| 272 | analog_y_axis = axis; | 267 | if (axis == 0 || axis == 1) { |
| 273 | } | 268 | analog_x_axis = 0; |
| 269 | analog_y_axis = 1; | ||
| 270 | controller_number = static_cast<s32>(pad.port); | ||
| 271 | break; | ||
| 272 | } | ||
| 273 | if (axis == 2 || axis == 3) { | ||
| 274 | analog_x_axis = 2; | ||
| 275 | analog_y_axis = 3; | ||
| 276 | controller_number = static_cast<s32>(pad.port); | ||
| 277 | break; | ||
| 278 | } | ||
| 279 | |||
| 280 | if (analog_x_axis == -1) { | ||
| 281 | analog_x_axis = axis; | ||
| 282 | controller_number = static_cast<s32>(pad.port); | ||
| 283 | } else if (analog_y_axis == -1 && analog_x_axis != axis && | ||
| 284 | controller_number == static_cast<s32>(pad.port)) { | ||
| 285 | analog_y_axis = axis; | ||
| 286 | break; | ||
| 274 | } | 287 | } |
| 275 | } | 288 | } |
| 276 | Common::ParamPackage params; | ||
| 277 | if (analog_x_axis != -1 && analog_y_axis != -1) { | 289 | if (analog_x_axis != -1 && analog_y_axis != -1) { |
| 278 | params.Set("engine", "gcpad"); | 290 | params.Set("engine", "gcpad"); |
| 279 | params.Set("port", controller_number); | 291 | params.Set("port", controller_number); |