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@ -5,8 +5,10 @@ |
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#include "common/logging/log.h"
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#include "common/math_util.h"
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#include "common/settings.h"
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#include "core/core.h"
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#include "core/core_timing.h"
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#include "core/frontend/emu_window.h"
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#include "core/hid/hid_core.h"
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#include "core/hle/service/hid/controllers/gesture.h"
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namespace Service::HID { |
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@ -23,16 +25,15 @@ constexpr f32 Square(s32 num) { |
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return static_cast<f32>(num * num); |
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} |
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Controller_Gesture::Controller_Gesture(Core::System& system_) : ControllerBase(system_) {} |
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Controller_Gesture::Controller_Gesture(Core::System& system_) : ControllerBase(system_) { |
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console = system.HIDCore().GetEmulatedConsole(); |
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} |
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Controller_Gesture::~Controller_Gesture() = default; |
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void Controller_Gesture::OnInit() { |
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for (std::size_t id = 0; id < MAX_FINGERS; ++id) { |
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mouse_finger_id[id] = MAX_POINTS; |
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keyboard_finger_id[id] = MAX_POINTS; |
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udp_finger_id[id] = MAX_POINTS; |
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} |
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shared_memory.header.entry_count = 0; |
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gesture_lifo.entry_count = 0; |
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gesture_lifo.last_entry_index = 0; |
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force_update = true; |
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} |
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@ -40,50 +41,43 @@ void Controller_Gesture::OnRelease() {} |
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void Controller_Gesture::OnUpdate(const Core::Timing::CoreTiming& core_timing, u8* data, |
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std::size_t size) { |
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shared_memory.header.timestamp = core_timing.GetCPUTicks(); |
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shared_memory.header.total_entry_count = 17; |
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// TODO FIND WTF IS WRONG HERE!!!!!!!!
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return; |
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if (!IsControllerActivated()) { |
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shared_memory.header.entry_count = 0; |
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shared_memory.header.last_entry_index = 0; |
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gesture_lifo.entry_count = 0; |
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gesture_lifo.last_entry_index = 0; |
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std::memcpy(data, &gesture_lifo, sizeof(gesture_lifo)); |
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return; |
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} |
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ReadTouchInput(); |
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GestureProperties gesture = GetGestureProperties(); |
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f32 time_difference = static_cast<f32>(shared_memory.header.timestamp - last_update_timestamp) / |
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(1000 * 1000 * 1000); |
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f32 time_difference = |
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static_cast<f32>(gesture_lifo.timestamp - last_update_timestamp) / (1000 * 1000 * 1000); |
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// Only update if necesary
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if (!ShouldUpdateGesture(gesture, time_difference)) { |
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return; |
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} |
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last_update_timestamp = shared_memory.header.timestamp; |
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last_update_timestamp = gesture_lifo.timestamp; |
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UpdateGestureSharedMemory(data, size, gesture, time_difference); |
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} |
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void Controller_Gesture::ReadTouchInput() { |
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const Input::TouchStatus& mouse_status = touch_mouse_device->GetStatus(); |
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const Input::TouchStatus& udp_status = touch_udp_device->GetStatus(); |
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for (std::size_t id = 0; id < mouse_status.size(); ++id) { |
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mouse_finger_id[id] = UpdateTouchInputEvent(mouse_status[id], mouse_finger_id[id]); |
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udp_finger_id[id] = UpdateTouchInputEvent(udp_status[id], udp_finger_id[id]); |
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} |
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if (Settings::values.use_touch_from_button) { |
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const Input::TouchStatus& keyboard_status = touch_btn_device->GetStatus(); |
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for (std::size_t id = 0; id < mouse_status.size(); ++id) { |
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keyboard_finger_id[id] = |
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UpdateTouchInputEvent(keyboard_status[id], keyboard_finger_id[id]); |
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} |
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const auto touch_status = console->GetTouch(); |
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for (std::size_t id = 0; id < fingers.size(); ++id) { |
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const Core::HID::TouchFinger& status = touch_status[id]; |
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Finger& finger = fingers[id]; |
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finger.pos = status.position; |
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finger.pressed = status.pressed; |
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} |
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} |
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bool Controller_Gesture::ShouldUpdateGesture(const GestureProperties& gesture, |
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f32 time_difference) { |
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const auto& last_entry = shared_memory.gesture_states[shared_memory.header.last_entry_index]; |
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const auto& last_entry = gesture_lifo.ReadCurrentEntry().state; |
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if (force_update) { |
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force_update = false; |
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return true; |
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@ -97,7 +91,7 @@ bool Controller_Gesture::ShouldUpdateGesture(const GestureProperties& gesture, |
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} |
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// Update on press and hold event after 0.5 seconds
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if (last_entry.type == TouchType::Touch && last_entry.point_count == 1 && |
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if (last_entry.type == GestureType::Touch && last_entry.point_count == 1 && |
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time_difference > press_delay) { |
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return enable_press_and_tap; |
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} |
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@ -108,27 +102,19 @@ bool Controller_Gesture::ShouldUpdateGesture(const GestureProperties& gesture, |
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void Controller_Gesture::UpdateGestureSharedMemory(u8* data, std::size_t size, |
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GestureProperties& gesture, |
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f32 time_difference) { |
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TouchType type = TouchType::Idle; |
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Attribute attributes{}; |
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GestureType type = GestureType::Idle; |
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GestureAttribute attributes{}; |
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const auto& last_entry = shared_memory.gesture_states[shared_memory.header.last_entry_index]; |
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shared_memory.header.last_entry_index = (shared_memory.header.last_entry_index + 1) % 17; |
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auto& cur_entry = shared_memory.gesture_states[shared_memory.header.last_entry_index]; |
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const auto& last_entry = gesture_lifo.ReadCurrentEntry().state; |
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if (shared_memory.header.entry_count < 16) { |
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shared_memory.header.entry_count++; |
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} |
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cur_entry.sampling_number = last_entry.sampling_number + 1; |
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cur_entry.sampling_number2 = cur_entry.sampling_number; |
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// Reset values to default
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cur_entry.delta = {}; |
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cur_entry.vel_x = 0; |
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cur_entry.vel_y = 0; |
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cur_entry.direction = Direction::None; |
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cur_entry.rotation_angle = 0; |
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cur_entry.scale = 0; |
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// Reset next state to default
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next_state.sampling_number = last_entry.sampling_number + 1; |
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next_state.delta = {}; |
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next_state.vel_x = 0; |
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next_state.vel_y = 0; |
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next_state.direction = GestureDirection::None; |
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next_state.rotation_angle = 0; |
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next_state.scale = 0; |
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if (gesture.active_points > 0) { |
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if (last_gesture.active_points == 0) { |
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@ -141,46 +127,47 @@ void Controller_Gesture::UpdateGestureSharedMemory(u8* data, std::size_t size, |
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} |
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// Apply attributes
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cur_entry.detection_count = gesture.detection_count; |
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cur_entry.type = type; |
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cur_entry.attributes = attributes; |
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cur_entry.pos = gesture.mid_point; |
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cur_entry.point_count = static_cast<s32>(gesture.active_points); |
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cur_entry.points = gesture.points; |
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next_state.detection_count = gesture.detection_count; |
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next_state.type = type; |
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next_state.attributes = attributes; |
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next_state.pos = gesture.mid_point; |
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next_state.point_count = static_cast<s32>(gesture.active_points); |
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next_state.points = gesture.points; |
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last_gesture = gesture; |
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std::memcpy(data + SHARED_MEMORY_OFFSET, &shared_memory, sizeof(SharedMemory)); |
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gesture_lifo.WriteNextEntry(next_state); |
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std::memcpy(data + SHARED_MEMORY_OFFSET, &gesture_lifo, sizeof(gesture_lifo)); |
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} |
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void Controller_Gesture::NewGesture(GestureProperties& gesture, TouchType& type, |
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Attribute& attributes) { |
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const auto& last_entry = GetLastGestureEntry(); |
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void Controller_Gesture::NewGesture(GestureProperties& gesture, GestureType& type, |
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GestureAttribute& attributes) { |
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const auto& last_entry = gesture_lifo.ReadCurrentEntry().state; |
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gesture.detection_count++; |
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type = TouchType::Touch; |
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type = GestureType::Touch; |
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// New touch after cancel is not considered new
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if (last_entry.type != TouchType::Cancel) { |
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if (last_entry.type != GestureType::Cancel) { |
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attributes.is_new_touch.Assign(1); |
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enable_press_and_tap = true; |
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} |
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} |
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void Controller_Gesture::UpdateExistingGesture(GestureProperties& gesture, TouchType& type, |
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void Controller_Gesture::UpdateExistingGesture(GestureProperties& gesture, GestureType& type, |
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f32 time_difference) { |
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const auto& last_entry = GetLastGestureEntry(); |
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const auto& last_entry = gesture_lifo.ReadCurrentEntry().state; |
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// Promote to pan type if touch moved
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for (size_t id = 0; id < MAX_POINTS; id++) { |
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if (gesture.points[id] != last_gesture.points[id]) { |
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type = TouchType::Pan; |
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type = GestureType::Pan; |
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break; |
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} |
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} |
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// Number of fingers changed cancel the last event and clear data
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if (gesture.active_points != last_gesture.active_points) { |
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type = TouchType::Cancel; |
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type = GestureType::Cancel; |
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enable_press_and_tap = false; |
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gesture.active_points = 0; |
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gesture.mid_point = {}; |
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@ -189,41 +176,41 @@ void Controller_Gesture::UpdateExistingGesture(GestureProperties& gesture, Touch |
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} |
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// Calculate extra parameters of panning
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if (type == TouchType::Pan) { |
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if (type == GestureType::Pan) { |
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UpdatePanEvent(gesture, last_gesture, type, time_difference); |
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return; |
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} |
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// Promote to press type
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if (last_entry.type == TouchType::Touch) { |
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type = TouchType::Press; |
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if (last_entry.type == GestureType::Touch) { |
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type = GestureType::Press; |
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} |
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} |
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void Controller_Gesture::EndGesture(GestureProperties& gesture, |
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GestureProperties& last_gesture_props, TouchType& type, |
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Attribute& attributes, f32 time_difference) { |
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const auto& last_entry = GetLastGestureEntry(); |
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GestureProperties& last_gesture_props, GestureType& type, |
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GestureAttribute& attributes, f32 time_difference) { |
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const auto& last_entry = gesture_lifo.ReadCurrentEntry().state; |
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if (last_gesture_props.active_points != 0) { |
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switch (last_entry.type) { |
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case TouchType::Touch: |
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case GestureType::Touch: |
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if (enable_press_and_tap) { |
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SetTapEvent(gesture, last_gesture_props, type, attributes); |
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return; |
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} |
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type = TouchType::Cancel; |
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type = GestureType::Cancel; |
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force_update = true; |
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break; |
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case TouchType::Press: |
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case TouchType::Tap: |
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case TouchType::Swipe: |
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case TouchType::Pinch: |
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case TouchType::Rotate: |
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type = TouchType::Complete; |
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case GestureType::Press: |
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case GestureType::Tap: |
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case GestureType::Swipe: |
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case GestureType::Pinch: |
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case GestureType::Rotate: |
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type = GestureType::Complete; |
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force_update = true; |
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break; |
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case TouchType::Pan: |
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case GestureType::Pan: |
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EndPanEvent(gesture, last_gesture_props, type, time_difference); |
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break; |
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default: |
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@ -231,15 +218,15 @@ void Controller_Gesture::EndGesture(GestureProperties& gesture, |
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} |
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return; |
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} |
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if (last_entry.type == TouchType::Complete || last_entry.type == TouchType::Cancel) { |
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if (last_entry.type == GestureType::Complete || last_entry.type == GestureType::Cancel) { |
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gesture.detection_count++; |
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} |
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} |
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void Controller_Gesture::SetTapEvent(GestureProperties& gesture, |
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GestureProperties& last_gesture_props, TouchType& type, |
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Attribute& attributes) { |
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type = TouchType::Tap; |
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GestureProperties& last_gesture_props, GestureType& type, |
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GestureAttribute& attributes) { |
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type = GestureType::Tap; |
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gesture = last_gesture_props; |
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force_update = true; |
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f32 tap_time_difference = |
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@ -251,44 +238,42 @@ void Controller_Gesture::SetTapEvent(GestureProperties& gesture, |
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} |
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void Controller_Gesture::UpdatePanEvent(GestureProperties& gesture, |
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GestureProperties& last_gesture_props, TouchType& type, |
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GestureProperties& last_gesture_props, GestureType& type, |
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f32 time_difference) { |
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auto& cur_entry = shared_memory.gesture_states[shared_memory.header.last_entry_index]; |
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const auto& last_entry = GetLastGestureEntry(); |
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const auto& last_entry = gesture_lifo.ReadCurrentEntry().state; |
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cur_entry.delta = gesture.mid_point - last_entry.pos; |
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cur_entry.vel_x = static_cast<f32>(cur_entry.delta.x) / time_difference; |
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cur_entry.vel_y = static_cast<f32>(cur_entry.delta.y) / time_difference; |
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next_state.delta = gesture.mid_point - last_entry.pos; |
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next_state.vel_x = static_cast<f32>(next_state.delta.x) / time_difference; |
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next_state.vel_y = static_cast<f32>(next_state.delta.y) / time_difference; |
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last_pan_time_difference = time_difference; |
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// Promote to pinch type
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if (std::abs(gesture.average_distance - last_gesture_props.average_distance) > |
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pinch_threshold) { |
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type = TouchType::Pinch; |
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cur_entry.scale = gesture.average_distance / last_gesture_props.average_distance; |
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type = GestureType::Pinch; |
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next_state.scale = gesture.average_distance / last_gesture_props.average_distance; |
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} |
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const f32 angle_between_two_lines = std::atan((gesture.angle - last_gesture_props.angle) / |
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(1 + (gesture.angle * last_gesture_props.angle))); |
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// Promote to rotate type
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if (std::abs(angle_between_two_lines) > angle_threshold) { |
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type = TouchType::Rotate; |
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cur_entry.scale = 0; |
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cur_entry.rotation_angle = angle_between_two_lines * 180.0f / Common::PI; |
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type = GestureType::Rotate; |
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next_state.scale = 0; |
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next_state.rotation_angle = angle_between_two_lines * 180.0f / Common::PI; |
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} |
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} |
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void Controller_Gesture::EndPanEvent(GestureProperties& gesture, |
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GestureProperties& last_gesture_props, TouchType& type, |
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GestureProperties& last_gesture_props, GestureType& type, |
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f32 time_difference) { |
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auto& cur_entry = shared_memory.gesture_states[shared_memory.header.last_entry_index]; |
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const auto& last_entry = GetLastGestureEntry(); |
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cur_entry.vel_x = |
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const auto& last_entry = gesture_lifo.ReadCurrentEntry().state; |
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next_state.vel_x = |
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static_cast<f32>(last_entry.delta.x) / (last_pan_time_difference + time_difference); |
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cur_entry.vel_y = |
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next_state.vel_y = |
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static_cast<f32>(last_entry.delta.y) / (last_pan_time_difference + time_difference); |
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const f32 curr_vel = |
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std::sqrt((cur_entry.vel_x * cur_entry.vel_x) + (cur_entry.vel_y * cur_entry.vel_y)); |
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std::sqrt((next_state.vel_x * next_state.vel_x) + (next_state.vel_y * next_state.vel_y)); |
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// Set swipe event with parameters
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if (curr_vel > swipe_threshold) { |
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@ -297,93 +282,34 @@ void Controller_Gesture::EndPanEvent(GestureProperties& gesture, |
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} |
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// End panning without swipe
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type = TouchType::Complete; |
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cur_entry.vel_x = 0; |
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cur_entry.vel_y = 0; |
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type = GestureType::Complete; |
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next_state.vel_x = 0; |
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next_state.vel_y = 0; |
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force_update = true; |
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} |
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void Controller_Gesture::SetSwipeEvent(GestureProperties& gesture, |
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GestureProperties& last_gesture_props, TouchType& type) { |
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auto& cur_entry = shared_memory.gesture_states[shared_memory.header.last_entry_index]; |
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const auto& last_entry = GetLastGestureEntry(); |
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GestureProperties& last_gesture_props, GestureType& type) { |
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const auto& last_entry = gesture_lifo.ReadCurrentEntry().state; |
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type = TouchType::Swipe; |
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type = GestureType::Swipe; |
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gesture = last_gesture_props; |
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force_update = true; |
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cur_entry.delta = last_entry.delta; |
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next_state.delta = last_entry.delta; |
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if (std::abs(cur_entry.delta.x) > std::abs(cur_entry.delta.y)) { |
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if (cur_entry.delta.x > 0) { |
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cur_entry.direction = Direction::Right; |
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if (std::abs(next_state.delta.x) > std::abs(next_state.delta.y)) { |
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if (next_state.delta.x > 0) { |
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next_state.direction = GestureDirection::Right; |
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return; |
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} |
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cur_entry.direction = Direction::Left; |
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next_state.direction = GestureDirection::Left; |
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return; |
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} |
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if (cur_entry.delta.y > 0) { |
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cur_entry.direction = Direction::Down; |
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if (next_state.delta.y > 0) { |
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next_state.direction = GestureDirection::Down; |
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return; |
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} |
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cur_entry.direction = Direction::Up; |
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} |
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void Controller_Gesture::OnLoadInputDevices() { |
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touch_mouse_device = Input::CreateDevice<Input::TouchDevice>("engine:emu_window"); |
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touch_udp_device = Input::CreateDevice<Input::TouchDevice>("engine:cemuhookudp"); |
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touch_btn_device = Input::CreateDevice<Input::TouchDevice>("engine:touch_from_button"); |
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} |
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std::optional<std::size_t> Controller_Gesture::GetUnusedFingerID() const { |
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// Dont assign any touch input to a point if disabled
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if (!Settings::values.touchscreen.enabled) { |
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return std::nullopt; |
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} |
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std::size_t first_free_id = 0; |
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while (first_free_id < MAX_POINTS) { |
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if (!fingers[first_free_id].pressed) { |
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return first_free_id; |
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} else { |
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first_free_id++; |
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} |
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} |
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return std::nullopt; |
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} |
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Controller_Gesture::GestureState& Controller_Gesture::GetLastGestureEntry() { |
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return shared_memory.gesture_states[(shared_memory.header.last_entry_index + 16) % 17]; |
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} |
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const Controller_Gesture::GestureState& Controller_Gesture::GetLastGestureEntry() const { |
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return shared_memory.gesture_states[(shared_memory.header.last_entry_index + 16) % 17]; |
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} |
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std::size_t Controller_Gesture::UpdateTouchInputEvent( |
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const std::tuple<float, float, bool>& touch_input, std::size_t finger_id) { |
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const auto& [x, y, pressed] = touch_input; |
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if (finger_id > MAX_POINTS) { |
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LOG_ERROR(Service_HID, "Invalid finger id {}", finger_id); |
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return MAX_POINTS; |
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} |
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|
if (pressed) { |
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|
if (finger_id == MAX_POINTS) { |
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|
const auto first_free_id = GetUnusedFingerID(); |
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|
if (!first_free_id) { |
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|
// Invalid finger id do nothing
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return MAX_POINTS; |
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} |
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|
finger_id = first_free_id.value(); |
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|
fingers[finger_id].pressed = true; |
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} |
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|
fingers[finger_id].pos = {x, y}; |
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|
return finger_id; |
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} |
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|
if (finger_id != MAX_POINTS) { |
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|
fingers[finger_id].pressed = false; |
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|
} |
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return MAX_POINTS; |
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|
next_state.direction = GestureDirection::Up; |
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|
} |
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Controller_Gesture::GestureProperties Controller_Gesture::GetGestureProperties() { |
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