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-rw-r--r--src/input_common/gcadapter/gc_adapter.cpp69
1 files changed, 51 insertions, 18 deletions
diff --git a/src/input_common/gcadapter/gc_adapter.cpp b/src/input_common/gcadapter/gc_adapter.cpp
index 38210ffcb..898a278a9 100644
--- a/src/input_common/gcadapter/gc_adapter.cpp
+++ b/src/input_common/gcadapter/gc_adapter.cpp
@@ -25,6 +25,7 @@ Adapter::Adapter() {
25 LOG_INFO(Input, "GC Adapter Initialization started"); 25 LOG_INFO(Input, "GC Adapter Initialization started");
26 26
27 current_status = NO_ADAPTER_DETECTED; 27 current_status = NO_ADAPTER_DETECTED;
28 get_origin.fill(true);
28 29
29 const int init_res = libusb_init(&libusb_ctx); 30 const int init_res = libusb_init(&libusb_ctx);
30 if (init_res == LIBUSB_SUCCESS) { 31 if (init_res == LIBUSB_SUCCESS) {
@@ -36,13 +37,8 @@ Adapter::Adapter() {
36 37
37GCPadStatus Adapter::GetPadStatus(std::size_t port, const std::array<u8, 37>& adapter_payload) { 38GCPadStatus Adapter::GetPadStatus(std::size_t port, const std::array<u8, 37>& adapter_payload) {
38 GCPadStatus pad = {}; 39 GCPadStatus pad = {};
39 bool get_origin = false;
40 40
41 ControllerTypes type = ControllerTypes(adapter_payload[1 + (9 * port)] >> 4); 41 ControllerTypes type = ControllerTypes(adapter_payload[1 + (9 * port)] >> 4);
42 if (type != ControllerTypes::None) {
43 get_origin = true;
44 }
45
46 adapter_controllers_status[port] = type; 42 adapter_controllers_status[port] = type;
47 43
48 static constexpr std::array<PadButton, 8> b1_buttons{ 44 static constexpr std::array<PadButton, 8> b1_buttons{
@@ -58,6 +54,11 @@ GCPadStatus Adapter::GetPadStatus(std::size_t port, const std::array<u8, 37>& ad
58 PadButton::PAD_TRIGGER_L, 54 PadButton::PAD_TRIGGER_L,
59 }; 55 };
60 56
57 if (adapter_controllers_status[port] == ControllerTypes::None && !get_origin[port]) {
58 // Controller may have been disconnected, recalibrate if reconnected.
59 get_origin[port] = true;
60 }
61
61 if (adapter_controllers_status[port] != ControllerTypes::None) { 62 if (adapter_controllers_status[port] != ControllerTypes::None) {
62 const u8 b1 = adapter_payload[1 + (9 * port) + 1]; 63 const u8 b1 = adapter_payload[1 + (9 * port) + 1];
63 const u8 b2 = adapter_payload[1 + (9 * port) + 2]; 64 const u8 b2 = adapter_payload[1 + (9 * port) + 2];
@@ -74,16 +75,22 @@ GCPadStatus Adapter::GetPadStatus(std::size_t port, const std::array<u8, 37>& ad
74 } 75 }
75 } 76 }
76 77
77 if (get_origin) {
78 pad.button |= PAD_GET_ORIGIN;
79 }
80
81 pad.stick_x = adapter_payload[1 + (9 * port) + 3]; 78 pad.stick_x = adapter_payload[1 + (9 * port) + 3];
82 pad.stick_y = adapter_payload[1 + (9 * port) + 4]; 79 pad.stick_y = adapter_payload[1 + (9 * port) + 4];
83 pad.substick_x = adapter_payload[1 + (9 * port) + 5]; 80 pad.substick_x = adapter_payload[1 + (9 * port) + 5];
84 pad.substick_y = adapter_payload[1 + (9 * port) + 6]; 81 pad.substick_y = adapter_payload[1 + (9 * port) + 6];
85 pad.trigger_left = adapter_payload[1 + (9 * port) + 7]; 82 pad.trigger_left = adapter_payload[1 + (9 * port) + 7];
86 pad.trigger_right = adapter_payload[1 + (9 * port) + 8]; 83 pad.trigger_right = adapter_payload[1 + (9 * port) + 8];
84
85 if (get_origin[port]) {
86 origin_status[port].stick_x = pad.stick_x;
87 origin_status[port].stick_y = pad.stick_y;
88 origin_status[port].substick_x = pad.substick_x;
89 origin_status[port].substick_y = pad.substick_y;
90 origin_status[port].trigger_left = pad.trigger_left;
91 origin_status[port].trigger_right = pad.trigger_right;
92 get_origin[port] = false;
93 }
87 } 94 }
88 return pad; 95 return pad;
89} 96}
@@ -132,31 +139,31 @@ void Adapter::Read() {
132 for (std::size_t port = 0; port < pads.size(); ++port) { 139 for (std::size_t port = 0; port < pads.size(); ++port) {
133 pads[port] = GetPadStatus(port, adapter_payload_copy); 140 pads[port] = GetPadStatus(port, adapter_payload_copy);
134 if (DeviceConnected(port) && configuring) { 141 if (DeviceConnected(port) && configuring) {
135 if (pads[port].button != PAD_GET_ORIGIN) { 142 if (pads[port].button != 0) {
136 pad_queue[port].Push(pads[port]); 143 pad_queue[port].Push(pads[port]);
137 } 144 }
138 145
139 // Accounting for a threshold here because of some controller variance 146 // Accounting for a threshold here because of some controller variance
140 if (pads[port].stick_x > pads[port].MAIN_STICK_CENTER_X + pads[port].THRESHOLD || 147 if (pads[port].stick_x > origin_status[port].stick_x + pads[port].THRESHOLD ||
141 pads[port].stick_x < pads[port].MAIN_STICK_CENTER_X - pads[port].THRESHOLD) { 148 pads[port].stick_x < origin_status[port].stick_x - pads[port].THRESHOLD) {
142 pads[port].axis = GCAdapter::PadAxes::StickX; 149 pads[port].axis = GCAdapter::PadAxes::StickX;
143 pads[port].axis_value = pads[port].stick_x; 150 pads[port].axis_value = pads[port].stick_x;
144 pad_queue[port].Push(pads[port]); 151 pad_queue[port].Push(pads[port]);
145 } 152 }
146 if (pads[port].stick_y > pads[port].MAIN_STICK_CENTER_Y + pads[port].THRESHOLD || 153 if (pads[port].stick_y > origin_status[port].stick_y + pads[port].THRESHOLD ||
147 pads[port].stick_y < pads[port].MAIN_STICK_CENTER_Y - pads[port].THRESHOLD) { 154 pads[port].stick_y < origin_status[port].stick_y - pads[port].THRESHOLD) {
148 pads[port].axis = GCAdapter::PadAxes::StickY; 155 pads[port].axis = GCAdapter::PadAxes::StickY;
149 pads[port].axis_value = pads[port].stick_y; 156 pads[port].axis_value = pads[port].stick_y;
150 pad_queue[port].Push(pads[port]); 157 pad_queue[port].Push(pads[port]);
151 } 158 }
152 if (pads[port].substick_x > pads[port].C_STICK_CENTER_X + pads[port].THRESHOLD || 159 if (pads[port].substick_x > origin_status[port].substick_x + pads[port].THRESHOLD ||
153 pads[port].substick_x < pads[port].C_STICK_CENTER_X - pads[port].THRESHOLD) { 160 pads[port].substick_x < origin_status[port].substick_x - pads[port].THRESHOLD) {
154 pads[port].axis = GCAdapter::PadAxes::SubstickX; 161 pads[port].axis = GCAdapter::PadAxes::SubstickX;
155 pads[port].axis_value = pads[port].substick_x; 162 pads[port].axis_value = pads[port].substick_x;
156 pad_queue[port].Push(pads[port]); 163 pad_queue[port].Push(pads[port]);
157 } 164 }
158 if (pads[port].substick_y > pads[port].C_STICK_CENTER_Y + pads[port].THRESHOLD || 165 if (pads[port].substick_y > origin_status[port].substick_y + pads[port].THRESHOLD ||
159 pads[port].substick_y < pads[port].C_STICK_CENTER_Y - pads[port].THRESHOLD) { 166 pads[port].substick_y < origin_status[port].substick_y - pads[port].THRESHOLD) {
160 pads[port].axis = GCAdapter::PadAxes::SubstickY; 167 pads[port].axis = GCAdapter::PadAxes::SubstickY;
161 pads[port].axis_value = pads[port].substick_y; 168 pads[port].axis_value = pads[port].substick_y;
162 pad_queue[port].Push(pads[port]); 169 pad_queue[port].Push(pads[port]);
@@ -237,6 +244,9 @@ void Adapter::Setup() {
237 } 244 }
238 libusb_free_device_list(devices, 1); 245 libusb_free_device_list(devices, 1);
239 } 246 }
247 // Break out of the ScanThreadFunc() loop that is constantly looking for the device
248 // Assumes user has GC adapter plugged in before launch to use the adapter
249 detect_thread_running = false;
240} 250}
241 251
242bool Adapter::CheckDeviceAccess(libusb_device* device) { 252bool Adapter::CheckDeviceAccess(libusb_device* device) {
@@ -345,6 +355,7 @@ void Adapter::Reset() {
345 adapter_input_thread.join(); 355 adapter_input_thread.join();
346 356
347 adapter_controllers_status.fill(ControllerTypes::None); 357 adapter_controllers_status.fill(ControllerTypes::None);
358 get_origin.fill(true);
348 current_status = NO_ADAPTER_DETECTED; 359 current_status = NO_ADAPTER_DETECTED;
349 360
350 if (usb_adapter_handle) { 361 if (usb_adapter_handle) {
@@ -367,6 +378,7 @@ void Adapter::ResetDeviceType(std::size_t port) {
367} 378}
368 379
369void Adapter::BeginConfiguration() { 380void Adapter::BeginConfiguration() {
381 get_origin.fill(true);
370 for (auto& pq : pad_queue) { 382 for (auto& pq : pad_queue) {
371 pq.Clear(); 383 pq.Clear();
372 } 384 }
@@ -396,4 +408,25 @@ const std::array<GCState, 4>& Adapter::GetPadState() const {
396 return state; 408 return state;
397} 409}
398 410
411int Adapter::GetOriginValue(int port, int axis) const {
412 const auto& status = origin_status[port];
413
414 switch (static_cast<PadAxes>(axis)) {
415 case PadAxes::StickX:
416 return status.stick_x;
417 case PadAxes::StickY:
418 return status.stick_y;
419 case PadAxes::SubstickX:
420 return status.substick_x;
421 case PadAxes::SubstickY:
422 return status.substick_y;
423 case PadAxes::TriggerLeft:
424 return status.trigger_left;
425 case PadAxes::TriggerRight:
426 return status.trigger_right;
427 default:
428 return 0;
429 }
430}
431
399} // namespace GCAdapter 432} // namespace GCAdapter