mirror of
https://github.com/yuzu-mirror/yuzu.git
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597 lines
18 KiB
C++
597 lines
18 KiB
C++
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#include "common/logging/log.h"
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#include "common/swap.h"
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#include "common/thread.h"
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#include "input_common/helpers/joycon_driver.h"
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#include "input_common/helpers/joycon_protocol/calibration.h"
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#include "input_common/helpers/joycon_protocol/generic_functions.h"
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#include "input_common/helpers/joycon_protocol/irs.h"
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#include "input_common/helpers/joycon_protocol/nfc.h"
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#include "input_common/helpers/joycon_protocol/poller.h"
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#include "input_common/helpers/joycon_protocol/ringcon.h"
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#include "input_common/helpers/joycon_protocol/rumble.h"
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namespace InputCommon::Joycon {
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JoyconDriver::JoyconDriver(std::size_t port_) : port{port_} {
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hidapi_handle = std::make_shared<JoyconHandle>();
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}
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JoyconDriver::~JoyconDriver() {
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Stop();
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}
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void JoyconDriver::Stop() {
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is_connected = false;
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input_thread = {};
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}
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DriverResult JoyconDriver::RequestDeviceAccess(SDL_hid_device_info* device_info) {
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std::scoped_lock lock{mutex};
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handle_device_type = ControllerType::None;
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GetDeviceType(device_info, handle_device_type);
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if (handle_device_type == ControllerType::None) {
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return DriverResult::UnsupportedControllerType;
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}
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hidapi_handle->handle =
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SDL_hid_open(device_info->vendor_id, device_info->product_id, device_info->serial_number);
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std::memcpy(&handle_serial_number, device_info->serial_number, 15);
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if (!hidapi_handle->handle) {
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LOG_ERROR(Input, "Yuzu can't gain access to this device: ID {:04X}:{:04X}.",
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device_info->vendor_id, device_info->product_id);
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return DriverResult::HandleInUse;
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}
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SDL_hid_set_nonblocking(hidapi_handle->handle, 1);
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return DriverResult::Success;
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}
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DriverResult JoyconDriver::InitializeDevice() {
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if (!hidapi_handle->handle) {
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return DriverResult::InvalidHandle;
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}
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std::scoped_lock lock{mutex};
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disable_input_thread = true;
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// Reset Counters
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error_counter = 0;
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hidapi_handle->packet_counter = 0;
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// Reset external device status
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starlink_connected = false;
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ring_connected = false;
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amiibo_detected = false;
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// Set HW default configuration
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vibration_enabled = true;
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motion_enabled = true;
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hidbus_enabled = false;
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nfc_enabled = false;
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passive_enabled = false;
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irs_enabled = false;
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gyro_sensitivity = Joycon::GyroSensitivity::DPS2000;
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gyro_performance = Joycon::GyroPerformance::HZ833;
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accelerometer_sensitivity = Joycon::AccelerometerSensitivity::G8;
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accelerometer_performance = Joycon::AccelerometerPerformance::HZ100;
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// Initialize HW Protocols
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calibration_protocol = std::make_unique<CalibrationProtocol>(hidapi_handle);
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generic_protocol = std::make_unique<GenericProtocol>(hidapi_handle);
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irs_protocol = std::make_unique<IrsProtocol>(hidapi_handle);
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nfc_protocol = std::make_unique<NfcProtocol>(hidapi_handle);
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ring_protocol = std::make_unique<RingConProtocol>(hidapi_handle);
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rumble_protocol = std::make_unique<RumbleProtocol>(hidapi_handle);
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// Get fixed joycon info
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generic_protocol->GetVersionNumber(version);
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generic_protocol->SetLowPowerMode(false);
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generic_protocol->GetColor(color);
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if (handle_device_type == ControllerType::Pro) {
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// Some 3rd party controllers aren't pro controllers
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generic_protocol->GetControllerType(device_type);
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} else {
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device_type = handle_device_type;
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}
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generic_protocol->GetSerialNumber(serial_number);
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supported_features = GetSupportedFeatures();
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// Get Calibration data
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calibration_protocol->GetLeftJoyStickCalibration(left_stick_calibration);
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calibration_protocol->GetRightJoyStickCalibration(right_stick_calibration);
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calibration_protocol->GetImuCalibration(motion_calibration);
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// Set led status
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generic_protocol->SetLedBlinkPattern(static_cast<u8>(1 + port));
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// Apply HW configuration
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SetPollingMode();
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// Initialize joycon poller
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joycon_poller = std::make_unique<JoyconPoller>(device_type, left_stick_calibration,
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right_stick_calibration, motion_calibration);
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// Start pooling for data
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is_connected = true;
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if (!input_thread_running) {
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input_thread =
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std::jthread([this](std::stop_token stop_token) { InputThread(stop_token); });
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}
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disable_input_thread = false;
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return DriverResult::Success;
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}
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void JoyconDriver::InputThread(std::stop_token stop_token) {
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LOG_INFO(Input, "Joycon Adapter input thread started");
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Common::SetCurrentThreadName("JoyconInput");
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input_thread_running = true;
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// Max update rate is 5ms, ensure we are always able to read a bit faster
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constexpr int ThreadDelay = 2;
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std::vector<u8> buffer(MaxBufferSize);
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while (!stop_token.stop_requested()) {
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int status = 0;
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if (!IsInputThreadValid()) {
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input_thread.request_stop();
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continue;
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}
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// By disabling the input thread we can ensure custom commands will succeed as no package is
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// skipped
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if (!disable_input_thread) {
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status = SDL_hid_read_timeout(hidapi_handle->handle, buffer.data(), buffer.size(),
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ThreadDelay);
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} else {
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std::this_thread::sleep_for(std::chrono::milliseconds(ThreadDelay));
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}
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if (IsPayloadCorrect(status, buffer)) {
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OnNewData(buffer);
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}
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std::this_thread::yield();
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}
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is_connected = false;
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input_thread_running = false;
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LOG_INFO(Input, "Joycon Adapter input thread stopped");
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}
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void JoyconDriver::OnNewData(std::span<u8> buffer) {
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const auto report_mode = static_cast<ReportMode>(buffer[0]);
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// Packages can be a little bit inconsistent. Average the delta time to provide a smoother
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// motion experience
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switch (report_mode) {
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case ReportMode::STANDARD_FULL_60HZ:
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case ReportMode::NFC_IR_MODE_60HZ:
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case ReportMode::SIMPLE_HID_MODE: {
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const auto now = std::chrono::steady_clock::now();
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const auto new_delta_time = static_cast<u64>(
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std::chrono::duration_cast<std::chrono::microseconds>(now - last_update).count());
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delta_time = ((delta_time * 8) + (new_delta_time * 2)) / 10;
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last_update = now;
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joycon_poller->UpdateColor(color);
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break;
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}
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default:
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break;
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}
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const MotionStatus motion_status{
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.is_enabled = motion_enabled,
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.delta_time = delta_time,
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.gyro_sensitivity = gyro_sensitivity,
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.accelerometer_sensitivity = accelerometer_sensitivity,
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};
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// TODO: Remove this when calibration is properly loaded and not calculated
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if (ring_connected && report_mode == ReportMode::STANDARD_FULL_60HZ) {
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InputReportActive data{};
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memcpy(&data, buffer.data(), sizeof(InputReportActive));
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calibration_protocol->GetRingCalibration(ring_calibration, data.ring_input);
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}
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const RingStatus ring_status{
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.is_enabled = ring_connected,
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.default_value = ring_calibration.default_value,
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.max_value = ring_calibration.max_value,
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.min_value = ring_calibration.min_value,
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};
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if (irs_protocol->IsEnabled()) {
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irs_protocol->RequestImage(buffer);
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joycon_poller->UpdateCamera(irs_protocol->GetImage(), irs_protocol->GetIrsFormat());
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}
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if (nfc_protocol->IsEnabled()) {
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if (amiibo_detected) {
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if (!nfc_protocol->HasAmiibo()) {
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joycon_poller->UpdateAmiibo({});
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amiibo_detected = false;
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return;
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}
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}
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if (!amiibo_detected) {
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std::vector<u8> data(0x21C);
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const auto result = nfc_protocol->ScanAmiibo(data);
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if (result == DriverResult::Success) {
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joycon_poller->UpdateAmiibo(data);
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amiibo_detected = true;
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}
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}
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}
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switch (report_mode) {
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case ReportMode::STANDARD_FULL_60HZ:
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joycon_poller->ReadActiveMode(buffer, motion_status, ring_status);
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break;
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case ReportMode::NFC_IR_MODE_60HZ:
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joycon_poller->ReadNfcIRMode(buffer, motion_status);
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break;
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case ReportMode::SIMPLE_HID_MODE:
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joycon_poller->ReadPassiveMode(buffer);
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break;
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case ReportMode::SUBCMD_REPLY:
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LOG_DEBUG(Input, "Unhandled command reply");
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break;
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default:
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LOG_ERROR(Input, "Report mode not Implemented {}", report_mode);
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break;
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}
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}
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DriverResult JoyconDriver::SetPollingMode() {
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disable_input_thread = true;
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rumble_protocol->EnableRumble(vibration_enabled && supported_features.vibration);
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if (motion_enabled && supported_features.motion) {
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generic_protocol->EnableImu(true);
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generic_protocol->SetImuConfig(gyro_sensitivity, gyro_performance,
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accelerometer_sensitivity, accelerometer_performance);
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} else {
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generic_protocol->EnableImu(false);
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}
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if (irs_protocol->IsEnabled()) {
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irs_protocol->DisableIrs();
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}
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if (nfc_protocol->IsEnabled()) {
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amiibo_detected = false;
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nfc_protocol->DisableNfc();
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}
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if (ring_protocol->IsEnabled()) {
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ring_connected = false;
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ring_protocol->DisableRingCon();
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}
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if (irs_enabled && supported_features.irs) {
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auto result = irs_protocol->EnableIrs();
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if (result == DriverResult::Success) {
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disable_input_thread = false;
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return result;
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}
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irs_protocol->DisableIrs();
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LOG_ERROR(Input, "Error enabling IRS");
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}
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if (nfc_enabled && supported_features.nfc) {
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auto result = nfc_protocol->EnableNfc();
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if (result == DriverResult::Success) {
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result = nfc_protocol->StartNFCPollingMode();
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}
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if (result == DriverResult::Success) {
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disable_input_thread = false;
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return result;
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}
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nfc_protocol->DisableNfc();
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LOG_ERROR(Input, "Error enabling NFC");
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}
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if (hidbus_enabled && supported_features.hidbus) {
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auto result = ring_protocol->EnableRingCon();
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if (result == DriverResult::Success) {
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result = ring_protocol->StartRingconPolling();
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}
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if (result == DriverResult::Success) {
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ring_connected = true;
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disable_input_thread = false;
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return result;
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}
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ring_connected = false;
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ring_protocol->DisableRingCon();
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LOG_ERROR(Input, "Error enabling Ringcon");
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}
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if (passive_enabled && supported_features.passive) {
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const auto result = generic_protocol->EnablePassiveMode();
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if (result == DriverResult::Success) {
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disable_input_thread = false;
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return result;
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}
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LOG_ERROR(Input, "Error enabling passive mode");
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}
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// Default Mode
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const auto result = generic_protocol->EnableActiveMode();
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if (result != DriverResult::Success) {
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LOG_ERROR(Input, "Error enabling active mode");
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}
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// Switch calls this function after enabling active mode
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generic_protocol->TriggersElapsed();
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disable_input_thread = false;
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return result;
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}
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JoyconDriver::SupportedFeatures JoyconDriver::GetSupportedFeatures() {
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SupportedFeatures features{
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.passive = true,
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.motion = true,
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.vibration = true,
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};
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if (device_type == ControllerType::Right) {
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features.nfc = true;
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features.irs = true;
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features.hidbus = true;
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}
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if (device_type == ControllerType::Pro) {
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features.nfc = true;
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}
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return features;
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}
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bool JoyconDriver::IsInputThreadValid() const {
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if (!is_connected.load()) {
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return false;
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}
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if (hidapi_handle->handle == nullptr) {
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return false;
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}
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// Controller is not responding. Terminate connection
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if (error_counter > MaxErrorCount) {
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return false;
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}
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return true;
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}
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bool JoyconDriver::IsPayloadCorrect(int status, std::span<const u8> buffer) {
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if (status <= -1) {
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error_counter++;
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return false;
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}
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// There's no new data
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if (status == 0) {
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return false;
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}
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// No reply ever starts with zero
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if (buffer[0] == 0x00) {
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error_counter++;
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return false;
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}
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error_counter = 0;
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return true;
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}
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DriverResult JoyconDriver::SetVibration(const VibrationValue& vibration) {
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std::scoped_lock lock{mutex};
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if (disable_input_thread) {
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return DriverResult::HandleInUse;
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}
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return rumble_protocol->SendVibration(vibration);
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}
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DriverResult JoyconDriver::SetLedConfig(u8 led_pattern) {
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std::scoped_lock lock{mutex};
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if (disable_input_thread) {
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return DriverResult::HandleInUse;
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}
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return generic_protocol->SetLedPattern(led_pattern);
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}
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DriverResult JoyconDriver::SetIrsConfig(IrsMode mode_, IrsResolution format_) {
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std::scoped_lock lock{mutex};
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if (disable_input_thread) {
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return DriverResult::HandleInUse;
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}
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disable_input_thread = true;
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const auto result = irs_protocol->SetIrsConfig(mode_, format_);
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disable_input_thread = false;
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return result;
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}
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DriverResult JoyconDriver::SetPassiveMode() {
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std::scoped_lock lock{mutex};
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motion_enabled = false;
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hidbus_enabled = false;
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nfc_enabled = false;
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passive_enabled = true;
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irs_enabled = false;
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return SetPollingMode();
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}
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DriverResult JoyconDriver::SetActiveMode() {
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if (is_ring_disabled_by_irs) {
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is_ring_disabled_by_irs = false;
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SetActiveMode();
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return SetRingConMode();
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}
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std::scoped_lock lock{mutex};
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motion_enabled = true;
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hidbus_enabled = false;
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nfc_enabled = false;
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passive_enabled = false;
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irs_enabled = false;
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return SetPollingMode();
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}
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DriverResult JoyconDriver::SetIrMode() {
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std::scoped_lock lock{mutex};
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if (!supported_features.irs) {
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return DriverResult::NotSupported;
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}
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if (ring_connected) {
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is_ring_disabled_by_irs = true;
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}
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motion_enabled = false;
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hidbus_enabled = false;
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nfc_enabled = false;
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passive_enabled = false;
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irs_enabled = true;
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return SetPollingMode();
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}
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DriverResult JoyconDriver::SetNfcMode() {
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std::scoped_lock lock{mutex};
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if (!supported_features.nfc) {
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return DriverResult::NotSupported;
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}
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motion_enabled = true;
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hidbus_enabled = false;
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nfc_enabled = true;
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passive_enabled = false;
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irs_enabled = false;
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return SetPollingMode();
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}
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DriverResult JoyconDriver::SetRingConMode() {
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std::scoped_lock lock{mutex};
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if (!supported_features.hidbus) {
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return DriverResult::NotSupported;
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}
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motion_enabled = true;
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hidbus_enabled = true;
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nfc_enabled = false;
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passive_enabled = false;
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irs_enabled = false;
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const auto result = SetPollingMode();
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if (!ring_connected) {
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return DriverResult::NoDeviceDetected;
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}
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return result;
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}
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DriverResult JoyconDriver::WriteNfcData(std::span<const u8> data) {
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std::scoped_lock lock{mutex};
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disable_input_thread = true;
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if (!supported_features.nfc) {
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return DriverResult::NotSupported;
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}
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if (!nfc_protocol->IsEnabled()) {
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return DriverResult::Disabled;
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}
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if (!amiibo_detected) {
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return DriverResult::ErrorWritingData;
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}
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const auto result = nfc_protocol->WriteAmiibo(data);
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disable_input_thread = false;
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return result;
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}
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bool JoyconDriver::IsConnected() const {
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std::scoped_lock lock{mutex};
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return is_connected.load();
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}
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bool JoyconDriver::IsVibrationEnabled() const {
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std::scoped_lock lock{mutex};
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return vibration_enabled;
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}
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FirmwareVersion JoyconDriver::GetDeviceVersion() const {
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std::scoped_lock lock{mutex};
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return version;
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}
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Color JoyconDriver::GetDeviceColor() const {
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std::scoped_lock lock{mutex};
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return color;
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}
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std::size_t JoyconDriver::GetDevicePort() const {
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std::scoped_lock lock{mutex};
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return port;
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}
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ControllerType JoyconDriver::GetDeviceType() const {
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std::scoped_lock lock{mutex};
|
|
return device_type;
|
|
}
|
|
|
|
ControllerType JoyconDriver::GetHandleDeviceType() const {
|
|
std::scoped_lock lock{mutex};
|
|
return handle_device_type;
|
|
}
|
|
|
|
SerialNumber JoyconDriver::GetSerialNumber() const {
|
|
std::scoped_lock lock{mutex};
|
|
return serial_number;
|
|
}
|
|
|
|
SerialNumber JoyconDriver::GetHandleSerialNumber() const {
|
|
std::scoped_lock lock{mutex};
|
|
return handle_serial_number;
|
|
}
|
|
|
|
void JoyconDriver::SetCallbacks(const JoyconCallbacks& callbacks) {
|
|
joycon_poller->SetCallbacks(callbacks);
|
|
}
|
|
|
|
DriverResult JoyconDriver::GetDeviceType(SDL_hid_device_info* device_info,
|
|
ControllerType& controller_type) {
|
|
static constexpr std::array<std::pair<u32, ControllerType>, 6> supported_devices{
|
|
std::pair<u32, ControllerType>{0x2006, ControllerType::Left},
|
|
{0x2007, ControllerType::Right},
|
|
{0x2009, ControllerType::Pro},
|
|
};
|
|
constexpr u16 nintendo_vendor_id = 0x057e;
|
|
|
|
controller_type = ControllerType::None;
|
|
if (device_info->vendor_id != nintendo_vendor_id) {
|
|
return DriverResult::UnsupportedControllerType;
|
|
}
|
|
|
|
for (const auto& [product_id, type] : supported_devices) {
|
|
if (device_info->product_id == static_cast<u16>(product_id)) {
|
|
controller_type = type;
|
|
return Joycon::DriverResult::Success;
|
|
}
|
|
}
|
|
return Joycon::DriverResult::UnsupportedControllerType;
|
|
}
|
|
|
|
DriverResult JoyconDriver::GetSerialNumber(SDL_hid_device_info* device_info,
|
|
SerialNumber& serial_number) {
|
|
if (device_info->serial_number == nullptr) {
|
|
return DriverResult::Unknown;
|
|
}
|
|
std::memcpy(&serial_number, device_info->serial_number, 15);
|
|
return Joycon::DriverResult::Success;
|
|
}
|
|
|
|
} // namespace InputCommon::Joycon
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