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
* Merges GlobalCtx2 and Window classes. * Includes condition variable in File. * add mac specific include * sstream to get past "implicit instantiation of undefined template" error * switch/wiiu includes * that file doesn't exist * more wii u globalctx2 stuff Co-authored-by: briaguya <briaguya@alice>
259 lines
9.2 KiB
C++
259 lines
9.2 KiB
C++
#include "ControlDeck.h"
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#include "Window.h"
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#include "Controller.h"
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#include "DummyController.h"
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#include <Utils/StringHelper.h>
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#include "Cvar.h"
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#ifndef __WIIU__
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#include "KeyboardController.h"
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#include "SDLController.h"
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#else
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#include "WiiUGamepad.h"
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#include "WiiUController.h"
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#endif
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namespace Ship {
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void ControlDeck::Init(uint8_t* bits) {
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ScanPhysicalDevices();
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controllerBits = bits;
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}
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void ControlDeck::ScanPhysicalDevices() {
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virtualDevices.clear();
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physicalDevices.clear();
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#ifndef __WIIU__
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for (int32_t i = 0; i < SDL_NumJoysticks(); i++) {
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if (SDL_IsGameController(i)) {
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auto sdl = std::make_shared<SDLController>(i);
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sdl->Open();
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physicalDevices.push_back(sdl);
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}
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}
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physicalDevices.push_back(std::make_shared<DummyController>("Auto", "Auto", true));
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physicalDevices.push_back(std::make_shared<KeyboardController>());
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#else
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physicalDevices.push_back(std::make_shared<DummyController>("Auto", "Auto", true));
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auto gamepad = std::make_shared<Ship::WiiUGamepad>();
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gamepad->Open();
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physicalDevices.push_back(gamepad);
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for (int32_t i = 0; i < 4; i++) {
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auto controller = std::make_shared<Ship::WiiUController>((WPADChan) i);
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controller->Open();
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physicalDevices.push_back(controller);
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}
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#endif
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physicalDevices.push_back(std::make_shared<DummyController>("Disconnected", "None", false));
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for (const auto device : physicalDevices) {
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for (int32_t i = 0; i < MAXCONTROLLERS; i++) {
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device->CreateDefaultBinding(i);
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}
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}
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for (int32_t i = 0; i < MAXCONTROLLERS; i++) {
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virtualDevices.push_back(i == 0 ? 0 : static_cast<int>(physicalDevices.size()) - 1);
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}
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LoadControllerSettings();
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}
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void ControlDeck::SetPhysicalDevice(int32_t slot, int32_t deviceSlot) {
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const std::shared_ptr<Controller> backend = physicalDevices[deviceSlot];
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virtualDevices[slot] = deviceSlot;
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*controllerBits |= (backend->Connected()) << slot;
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}
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void ControlDeck::WriteToPad(OSContPad* pad) const {
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bool shouldBlockGameInput = CVar_GetS32("gOpenMenuBar", 0) && CVar_GetS32("gControlNav", 0);
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for (size_t i = 0; i < virtualDevices.size(); i++) {
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const std::shared_ptr<Controller> backend = physicalDevices[virtualDevices[i]];
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if (backend->GetGuid() == "Auto") {
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for (const auto& device : physicalDevices) {
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if(shouldBlockGameInput && device->GetGuid() != "Keyboard") {
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continue;
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}
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device->Read(&pad[i], i);
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}
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continue;
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}
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if(shouldBlockGameInput && backend->GetGuid() != "Keyboard") {
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continue;
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}
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backend->Read(&pad[i], i);
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}
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}
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#define NESTED(key, ...) StringHelper::Sprintf("Controllers.%s.Slot_%d." key, device->GetGuid().c_str(), virtualSlot, __VA_ARGS__)
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void ControlDeck::LoadControllerSettings() {
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std::shared_ptr<Mercury> Config = Window::GetInstance()->GetConfig();
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for (auto const& val : Config->rjson["Controllers"]["Deck"].items()) {
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int32_t slot = std::stoi(val.key().substr(5));
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for (size_t dev = 0; dev < physicalDevices.size(); dev++) {
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std::string guid = physicalDevices[dev]->GetGuid();
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if (guid != val.value()) continue;
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virtualDevices[slot] = dev;
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}
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}
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for (size_t i = 0; i < virtualDevices.size(); i++) {
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std::shared_ptr<Controller> backend = physicalDevices[virtualDevices[i]];
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Config->setString(StringHelper::Sprintf("Controllers.Deck.Slot_%d", (int)i), backend->GetGuid());
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}
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for (const auto device : physicalDevices) {
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std::string guid = device->GetGuid();
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for (int32_t virtualSlot = 0; virtualSlot < MAXCONTROLLERS; virtualSlot++) {
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if (!(Config->rjson["Controllers"].contains(guid) && Config->rjson["Controllers"][guid].contains(StringHelper::Sprintf("Slot_%d", virtualSlot)))) continue;
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auto profile = device->getProfile(virtualSlot);
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auto rawProfile = Config->rjson["Controllers"][guid][StringHelper::Sprintf("Slot_%d", virtualSlot)];
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profile->Mappings.clear();
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profile->AxisDeadzones.clear();
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profile->AxisDeadzones.clear();
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profile->GyroData.clear();
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profile->Version = Config->getInt(NESTED("Version", ""), DEVICE_PROFILE_VERSION_V0);
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switch (profile->Version) {
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case DEVICE_PROFILE_VERSION_V0:
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// Load up defaults for the things we can't load.
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device->CreateDefaultBinding(virtualSlot);
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profile->UseRumble = Config->getBool(NESTED("Rumble.Enabled", ""));
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profile->RumbleStrength = Config->getFloat(NESTED("Rumble.Strength", ""));
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profile->UseGyro = Config->getBool(NESTED("Gyro.Enabled", ""));
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for (auto const& val : rawProfile["Mappings"].items()) {
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device->SetButtonMapping(virtualSlot, std::stoi(val.key().substr(4)), val.value());
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}
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break;
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case DEVICE_PROFILE_VERSION_V1:
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profile->UseRumble = Config->getBool(NESTED("Rumble.Enabled", ""));
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profile->RumbleStrength = Config->getFloat(NESTED("Rumble.Strength", ""));
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profile->UseGyro = Config->getBool(NESTED("Gyro.Enabled", ""));
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for (auto const& val : rawProfile["AxisDeadzones"].items()) {
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profile->AxisDeadzones[std::stoi(val.key())] = val.value();
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}
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for (auto const& val : rawProfile["AxisMinimumPress"].items()) {
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profile->AxisMinimumPress[std::stoi(val.key())] = val.value();
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}
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for (auto const& val : rawProfile["GyroData"].items()) {
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profile->GyroData[std::stoi(val.key())] = val.value();
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}
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for (auto const& val : rawProfile["Mappings"].items()) {
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device->SetButtonMapping(virtualSlot, std::stoi(val.key().substr(4)), val.value());
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}
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break;
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// Version is invalid.
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default:
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device->CreateDefaultBinding(virtualSlot);
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break;
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}
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}
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}
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}
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void ControlDeck::SaveControllerSettings() {
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std::shared_ptr<Mercury> Config = Window::GetInstance()->GetConfig();
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for (size_t i = 0; i < virtualDevices.size(); i++) {
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std::shared_ptr<Controller> backend = physicalDevices[virtualDevices[i]];
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Config->setString(StringHelper::Sprintf("Controllers.Deck.Slot_%d", (int)i), backend->GetGuid());
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}
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for (const auto& device : physicalDevices) {
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int32_t virtualSlot = 0;
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std::string guid = device->GetGuid();
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for (int32_t virtualSlot = 0; virtualSlot < MAXCONTROLLERS; virtualSlot++) {
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auto profile = device->getProfile(virtualSlot);
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if (!device->Connected()) continue;
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auto rawProfile = Config->rjson["Controllers"][guid][StringHelper::Sprintf("Slot_%d", virtualSlot)];
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Config->setInt(NESTED("Version", ""), profile->Version);
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Config->setBool(NESTED("Rumble.Enabled", ""), profile->UseRumble);
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Config->setFloat(NESTED("Rumble.Strength", ""), profile->RumbleStrength);
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Config->setBool(NESTED("Gyro.Enabled", ""), profile->UseGyro);
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for (auto const& val : rawProfile["Mappings"].items()) {
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Config->setInt(NESTED("Mappings.%s", val.key().c_str()), -1);
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}
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for (auto const& [key, val] : profile->AxisDeadzones) {
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Config->setFloat(NESTED("AxisDeadzones.%d", key), val);
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}
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for (auto const& [key, val] : profile->AxisMinimumPress) {
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Config->setFloat(NESTED("AxisMinimumPress.%d", key), val);
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}
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for (auto const& [key, val] : profile->GyroData) {
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Config->setFloat(NESTED("GyroData.%d", key), val);
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}
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for (auto const& [key, val] : profile->Mappings) {
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Config->setInt(NESTED("Mappings.BTN_%d", val), key);
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}
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virtualSlot++;
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}
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}
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Config->save();
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}
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std::shared_ptr<Controller> ControlDeck::GetPhysicalDevice(int32_t deviceSlot) {
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return physicalDevices[deviceSlot];
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}
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size_t ControlDeck::GetNumPhysicalDevices() {
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return physicalDevices.size();
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}
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int32_t ControlDeck::GetVirtualDevice(int32_t slot) {
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return virtualDevices[slot];
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}
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size_t ControlDeck::GetNumVirtualDevices() {
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return virtualDevices.size();
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}
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std::shared_ptr<Controller> ControlDeck::GetPhysicalDeviceFromVirtualSlot(int32_t slot) {
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return GetPhysicalDevice(GetVirtualDevice(slot));
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}
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uint8_t* ControlDeck::GetControllerBits() {
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return controllerBits;
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}
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} |