early-access version 2324
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5 changed files with 189 additions and 43 deletions
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yuzu emulator early access
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=============
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This is the source code for early-access 2323.
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This is the source code for early-access 2324.
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## Legal Notice
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@ -536,42 +536,46 @@ CalibrationConfigurationJob::CalibrationConfigurationJob(
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std::function<void(u16, u16, u16, u16)> data_callback) {
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std::thread([=, this] {
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u16 min_x{UINT16_MAX};
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u16 min_y{UINT16_MAX};
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u16 max_x{};
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u16 max_y{};
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Status current_status{Status::Initialized};
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SocketCallback callback{
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[](Response::Version) {}, [](Response::PortInfo) {},
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[&](Response::PadData data) {
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static constexpr u16 CALIBRATION_THRESHOLD = 100;
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static constexpr u16 MAX_VALUE = UINT16_MAX;
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SocketCallback callback{[](Response::Version) {}, [](Response::PortInfo) {},
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[&](Response::PadData data) {
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constexpr u16 CALIBRATION_THRESHOLD = 100;
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if (current_status == Status::Initialized) {
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// Receiving data means the communication is ready now
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current_status = Status::Ready;
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status_callback(current_status);
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}
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const auto& touchpad_0 = data.touch[0];
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if (touchpad_0.is_active == 0) {
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return;
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}
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LOG_DEBUG(Input, "Current touch: {} {}", touchpad_0.x, touchpad_0.y);
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const u16 min_x = std::min(MAX_VALUE, static_cast<u16>(touchpad_0.x));
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const u16 min_y = std::min(MAX_VALUE, static_cast<u16>(touchpad_0.y));
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if (current_status == Status::Ready) {
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// First touch - min data (min_x/min_y)
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current_status = Status::Stage1Completed;
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status_callback(current_status);
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}
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if (touchpad_0.x - min_x > CALIBRATION_THRESHOLD &&
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touchpad_0.y - min_y > CALIBRATION_THRESHOLD) {
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// Set the current position as max value and finishes configuration
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const u16 max_x = touchpad_0.x;
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const u16 max_y = touchpad_0.y;
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current_status = Status::Completed;
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data_callback(min_x, min_y, max_x, max_y);
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status_callback(current_status);
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if (current_status == Status::Initialized) {
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// Receiving data means the communication is ready now
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current_status = Status::Ready;
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status_callback(current_status);
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}
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if (data.touch[0].is_active == 0) {
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return;
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}
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LOG_DEBUG(Input, "Current touch: {} {}", data.touch[0].x,
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data.touch[0].y);
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min_x = std::min(min_x, static_cast<u16>(data.touch[0].x));
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min_y = std::min(min_y, static_cast<u16>(data.touch[0].y));
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if (current_status == Status::Ready) {
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// First touch - min data (min_x/min_y)
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current_status = Status::Stage1Completed;
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status_callback(current_status);
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}
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if (data.touch[0].x - min_x > CALIBRATION_THRESHOLD &&
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data.touch[0].y - min_y > CALIBRATION_THRESHOLD) {
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// Set the current position as max value and finishes
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// configuration
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max_x = data.touch[0].x;
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max_y = data.touch[0].y;
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current_status = Status::Completed;
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data_callback(min_x, min_y, max_x, max_y);
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status_callback(current_status);
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complete_event.Set();
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}
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}};
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complete_event.Set();
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}
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}};
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Socket socket{host, port, std::move(callback)};
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std::thread worker_thread{SocketLoop, &socket};
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complete_event.Wait();
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@ -54,6 +54,18 @@ struct Message {
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template <typename T>
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constexpr Type GetMessageType();
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template <typename T>
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Message<T> CreateMessage(const u32 magic, const T data, const u32 sender_id) {
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boost::crc_32_type crc;
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Header header{
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magic, PROTOCOL_VERSION, sizeof(T) + sizeof(Type), 0, sender_id, GetMessageType<T>(),
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};
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Message<T> message{header, data};
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crc.process_bytes(&message, sizeof(Message<T>));
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message.header.crc = crc.checksum();
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return message;
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}
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namespace Request {
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enum RegisterFlags : u8 {
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@ -101,14 +113,7 @@ static_assert(std::is_trivially_copyable_v<PadData>,
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*/
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template <typename T>
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Message<T> Create(const T data, const u32 client_id = 0) {
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boost::crc_32_type crc;
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Header header{
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CLIENT_MAGIC, PROTOCOL_VERSION, sizeof(T) + sizeof(Type), 0, client_id, GetMessageType<T>(),
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};
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Message<T> message{header, data};
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crc.process_bytes(&message, sizeof(Message<T>));
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message.header.crc = crc.checksum();
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return message;
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return CreateMessage(CLIENT_MAGIC, data, client_id);
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}
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} // namespace Request
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@ -10,11 +10,12 @@ add_executable(tests
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core/network/network.cpp
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tests.cpp
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video_core/buffer_base.cpp
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input_common/calibration_configuration_job.cpp
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)
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create_target_directory_groups(tests)
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target_link_libraries(tests PRIVATE common core)
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target_link_libraries(tests PRIVATE common core input_common)
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target_link_libraries(tests PRIVATE ${PLATFORM_LIBRARIES} catch-single-include Threads::Threads)
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add_test(NAME tests COMMAND tests)
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136
src/tests/input_common/calibration_configuration_job.cpp
Executable file
136
src/tests/input_common/calibration_configuration_job.cpp
Executable file
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// Copyright 2020 yuzu Emulator Project
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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#include <array>
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#include <string>
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#include <thread>
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#include <boost/asio.hpp>
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#include <boost/crc.hpp>
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#include <catch2/catch.hpp>
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#include "input_common/drivers/udp_client.h"
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#include "input_common/helpers/udp_protocol.h"
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class FakeCemuhookServer {
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public:
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FakeCemuhookServer()
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: socket(io_service, boost::asio::ip::udp::endpoint(boost::asio::ip::udp::v4(), 0)) {}
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~FakeCemuhookServer() {
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is_running = false;
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boost::system::error_code error_code;
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socket.shutdown(boost::asio::socket_base::shutdown_both, error_code);
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socket.close();
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if (handler.joinable()) {
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handler.join();
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}
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}
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u16 GetPort() {
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return socket.local_endpoint().port();
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}
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std::string GetHost() {
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return socket.local_endpoint().address().to_string();
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}
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void Run(const std::vector<InputCommon::CemuhookUDP::Response::TouchPad> touch_movement_path) {
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constexpr size_t HeaderSize = sizeof(InputCommon::CemuhookUDP::Header);
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constexpr size_t PadDataSize =
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sizeof(InputCommon::CemuhookUDP::Message<InputCommon::CemuhookUDP::Response::PadData>);
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REQUIRE(touch_movement_path.size() > 0);
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is_running = true;
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handler = std::thread([touch_movement_path, this]() {
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auto current_touch_position = touch_movement_path.begin();
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while (is_running) {
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boost::asio::ip::udp::endpoint sender_endpoint;
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boost::system::error_code error_code;
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auto received_size = socket.receive_from(boost::asio::buffer(receive_buffer),
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sender_endpoint, 0, error_code);
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if (received_size < HeaderSize) {
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continue;
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}
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InputCommon::CemuhookUDP::Header header{};
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std::memcpy(&header, receive_buffer.data(), HeaderSize);
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switch (header.type) {
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case InputCommon::CemuhookUDP::Type::PadData: {
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InputCommon::CemuhookUDP::Response::PadData pad_data{};
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pad_data.touch[0] = *current_touch_position;
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const auto pad_message = InputCommon::CemuhookUDP::CreateMessage(
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InputCommon::CemuhookUDP::SERVER_MAGIC, pad_data, 0);
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std::memcpy(send_buffer.data(), &pad_message, PadDataSize);
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socket.send_to(boost::asio::buffer(send_buffer, PadDataSize), sender_endpoint,
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0, error_code);
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bool can_advance =
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std::next(current_touch_position) != touch_movement_path.end();
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if (can_advance) {
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std::advance(current_touch_position, 1);
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}
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break;
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}
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case InputCommon::CemuhookUDP::Type::PortInfo:
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case InputCommon::CemuhookUDP::Type::Version:
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default:
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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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private:
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boost::asio::io_service io_service;
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boost::asio::ip::udp::socket socket;
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std::array<u8, InputCommon::CemuhookUDP::MAX_PACKET_SIZE> send_buffer;
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std::array<u8, InputCommon::CemuhookUDP::MAX_PACKET_SIZE> receive_buffer;
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bool is_running = false;
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std::thread handler;
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};
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TEST_CASE("CalibrationConfigurationJob completed", "[input_common]") {
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Common::Event complete_event;
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FakeCemuhookServer server;
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server.Run({{
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.is_active = 1,
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.x = 0,
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.y = 0,
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},
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{
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.is_active = 1,
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.x = 200,
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.y = 200,
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}});
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InputCommon::CemuhookUDP::CalibrationConfigurationJob::Status status{};
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u16 min_x{};
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u16 min_y{};
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u16 max_x{};
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u16 max_y{};
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InputCommon::CemuhookUDP::CalibrationConfigurationJob job(
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server.GetHost(), server.GetPort(),
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[&status,
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&complete_event](InputCommon::CemuhookUDP::CalibrationConfigurationJob::Status status_) {
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status = status_;
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if (status ==
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InputCommon::CemuhookUDP::CalibrationConfigurationJob::Status::Completed) {
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complete_event.Set();
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}
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},
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[&](u16 min_x_, u16 min_y_, u16 max_x_, u16 max_y_) {
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min_x = min_x_;
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min_y = min_y_;
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max_x = max_x_;
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max_y = max_y_;
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});
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complete_event.WaitUntil(std::chrono::system_clock::now() + std::chrono::seconds(10));
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REQUIRE(status == InputCommon::CemuhookUDP::CalibrationConfigurationJob::Status::Completed);
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REQUIRE(min_x == 0);
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REQUIRE(min_y == 0);
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REQUIRE(max_x == 200);
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REQUIRE(max_y == 200);
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}
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