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https://gitlab.com/suyu-emu/suyu.git
synced 2024-03-15 23:15:44 +00:00
Merge pull request #10344 from german77/pro-amiibo
input_common: Fix pro controller amiibo support
This commit is contained in:
commit
1e398e6c36
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@ -195,8 +195,8 @@ void Joycons::RegisterNewDevice(SDL_hid_device_info* device_info) {
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OnMotionUpdate(port, type, id, value);
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}},
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.on_ring_data = {[this](f32 ring_data) { OnRingConUpdate(ring_data); }},
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.on_amiibo_data = {[this, port](const std::vector<u8>& amiibo_data) {
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OnAmiiboUpdate(port, amiibo_data);
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.on_amiibo_data = {[this, port, type](const std::vector<u8>& amiibo_data) {
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OnAmiiboUpdate(port, type, amiibo_data);
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}},
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.on_camera_data = {[this, port](const std::vector<u8>& camera_data,
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Joycon::IrsResolution format) {
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@ -398,8 +398,9 @@ void Joycons::OnRingConUpdate(f32 ring_data) {
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SetAxis(identifier, 100, ring_data);
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}
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void Joycons::OnAmiiboUpdate(std::size_t port, const std::vector<u8>& amiibo_data) {
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const auto identifier = GetIdentifier(port, Joycon::ControllerType::Right);
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void Joycons::OnAmiiboUpdate(std::size_t port, Joycon::ControllerType type,
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const std::vector<u8>& amiibo_data) {
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const auto identifier = GetIdentifier(port, type);
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const auto nfc_state = amiibo_data.empty() ? Common::Input::NfcState::AmiiboRemoved
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: Common::Input::NfcState::NewAmiibo;
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SetNfc(identifier, {nfc_state, amiibo_data});
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@ -81,7 +81,8 @@ private:
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void OnMotionUpdate(std::size_t port, Joycon::ControllerType type, int id,
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const Joycon::MotionData& value);
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void OnRingConUpdate(f32 ring_data);
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void OnAmiiboUpdate(std::size_t port, const std::vector<u8>& amiibo_data);
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void OnAmiiboUpdate(std::size_t port, Joycon::ControllerType type,
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const std::vector<u8>& amiibo_data);
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void OnCameraUpdate(std::size_t port, const std::vector<u8>& camera_data,
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Joycon::IrsResolution format);
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@ -265,7 +265,7 @@ DriverResult JoyconCommonProtocol::SendMCUData(ReportMode report_mode, MCUSubCom
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DriverResult JoyconCommonProtocol::WaitSetMCUMode(ReportMode report_mode, MCUMode mode) {
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MCUCommandResponse output{};
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constexpr std::size_t MaxTries{8};
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constexpr std::size_t MaxTries{16};
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std::size_t tries{};
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do {
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@ -577,8 +577,8 @@ static_assert(sizeof(NFCPollingCommandData) == 0x05, "NFCPollingCommandData is a
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struct NFCRequestState {
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NFCReadCommand command_argument;
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u8 packet_id;
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INSERT_PADDING_BYTES(0x1);
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u8 packet_id;
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MCUPacketFlag packet_flag;
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u8 data_length;
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union {
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@ -64,6 +64,20 @@ DriverResult NfcProtocol::StartNFCPollingMode() {
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if (result == DriverResult::Success) {
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result = WaitUntilNfcIsReady();
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}
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if (result == DriverResult::Success) {
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MCUCommandResponse output{};
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result = SendStopPollingRequest(output);
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}
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if (result == DriverResult::Success) {
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result = WaitUntilNfcIsReady();
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}
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if (result == DriverResult::Success) {
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MCUCommandResponse output{};
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result = SendStartPollingRequest(output);
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}
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if (result == DriverResult::Success) {
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result = WaitUntilNfcIsPolling();
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}
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if (result == DriverResult::Success) {
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is_enabled = true;
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}
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@ -77,24 +91,21 @@ DriverResult NfcProtocol::ScanAmiibo(std::vector<u8>& data) {
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}
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update_counter = 0;
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LOG_DEBUG(Input, "Start NFC pooling Mode");
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LOG_DEBUG(Input, "Scan for amiibos");
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ScopedSetBlocking sb(this);
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DriverResult result{DriverResult::Success};
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TagFoundData tag_data{};
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if (result == DriverResult::Success) {
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result = StartPolling(tag_data);
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result = IsTagInRange(tag_data);
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}
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if (result == DriverResult::Success) {
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result = ReadTag(tag_data);
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std::string uuid_string;
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for (auto& content : tag_data.uuid) {
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uuid_string += fmt::format(" {:02x}", content);
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}
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if (result == DriverResult::Success) {
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result = WaitUntilNfcIsReady();
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}
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if (result == DriverResult::Success) {
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result = StartPolling(tag_data, 7);
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}
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if (result == DriverResult::Success) {
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LOG_INFO(Input, "Tag detected, type={}, uuid={}", tag_data.type, uuid_string);
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result = GetAmiiboData(data);
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}
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@ -102,12 +113,17 @@ DriverResult NfcProtocol::ScanAmiibo(std::vector<u8>& data) {
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}
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bool NfcProtocol::HasAmiibo() {
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if (update_counter++ < AMIIBO_UPDATE_DELAY) {
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return true;
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}
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update_counter = 0;
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ScopedSetBlocking sb(this);
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DriverResult result{DriverResult::Success};
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TagFoundData tag_data{};
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if (result == DriverResult::Success) {
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result = StartPolling(tag_data);
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result = IsTagInRange(tag_data, 7);
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}
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return result == DriverResult::Success;
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@ -119,7 +135,7 @@ DriverResult NfcProtocol::WaitUntilNfcIsReady() {
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std::size_t tries = 0;
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do {
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auto result = SendStartWaitingRecieveRequest(output);
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auto result = SendNextPackageRequest(output, {});
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if (result != DriverResult::Success) {
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return result;
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@ -134,13 +150,14 @@ DriverResult NfcProtocol::WaitUntilNfcIsReady() {
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return DriverResult::Success;
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}
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DriverResult NfcProtocol::StartPolling(TagFoundData& data, std::size_t timeout_limit) {
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LOG_DEBUG(Input, "Start Polling for tag");
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DriverResult NfcProtocol::WaitUntilNfcIsPolling() {
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constexpr std::size_t timeout_limit = 10;
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MCUCommandResponse output{};
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std::size_t tries = 0;
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do {
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const auto result = SendStartPollingRequest(output);
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auto result = SendNextPackageRequest(output, {});
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if (result != DriverResult::Success) {
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return result;
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}
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@ -149,7 +166,26 @@ DriverResult NfcProtocol::StartPolling(TagFoundData& data, std::size_t timeout_l
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}
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} while (output.mcu_report != MCUReport::NFCState ||
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(output.mcu_data[1] << 8) + output.mcu_data[0] != 0x0500 ||
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output.mcu_data[6] != 0x09);
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output.mcu_data[5] != 0x31 || output.mcu_data[6] != 0x01);
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return DriverResult::Success;
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}
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DriverResult NfcProtocol::IsTagInRange(TagFoundData& data, std::size_t timeout_limit) {
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MCUCommandResponse output{};
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std::size_t tries = 0;
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do {
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const auto result = SendNextPackageRequest(output, {});
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if (result != DriverResult::Success) {
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return result;
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}
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if (tries++ > timeout_limit) {
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return DriverResult::Timeout;
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}
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} while (output.mcu_report != MCUReport::NFCState ||
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(output.mcu_data[1] << 8) + output.mcu_data[0] != 0x0500 ||
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(output.mcu_data[6] != 0x09 && output.mcu_data[6] != 0x04));
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data.type = output.mcu_data[12];
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data.uuid.resize(output.mcu_data[14]);
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@ -158,85 +194,22 @@ DriverResult NfcProtocol::StartPolling(TagFoundData& data, std::size_t timeout_l
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return DriverResult::Success;
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}
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DriverResult NfcProtocol::ReadTag(const TagFoundData& data) {
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constexpr std::size_t timeout_limit = 10;
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DriverResult NfcProtocol::GetAmiiboData(std::vector<u8>& ntag_data) {
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constexpr std::size_t timeout_limit = 60;
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MCUCommandResponse output{};
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std::size_t tries = 0;
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std::string uuid_string;
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for (auto& content : data.uuid) {
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uuid_string += fmt::format(" {:02x}", content);
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}
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LOG_INFO(Input, "Tag detected, type={}, uuid={}", data.type, uuid_string);
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tries = 0;
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NFCPages ntag_pages = NFCPages::Block0;
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// Read Tag data
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while (true) {
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auto result = SendReadAmiiboRequest(output, ntag_pages);
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const auto nfc_status = static_cast<NFCStatus>(output.mcu_data[6]);
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u8 package_index = 0;
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std::size_t ntag_buffer_pos = 0;
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auto result = SendReadAmiiboRequest(output, NFCPages::Block135);
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if (result != DriverResult::Success) {
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return result;
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}
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if ((output.mcu_report == MCUReport::NFCReadData ||
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output.mcu_report == MCUReport::NFCState) &&
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nfc_status == NFCStatus::TagLost) {
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return DriverResult::ErrorReadingData;
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}
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if (output.mcu_report == MCUReport::NFCReadData && output.mcu_data[1] == 0x07 &&
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output.mcu_data[2] == 0x01) {
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if (data.type != 2) {
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continue;
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}
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switch (output.mcu_data[24]) {
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case 0:
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ntag_pages = NFCPages::Block135;
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break;
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case 3:
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ntag_pages = NFCPages::Block45;
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break;
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case 4:
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ntag_pages = NFCPages::Block231;
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break;
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default:
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return DriverResult::ErrorReadingData;
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}
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continue;
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}
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if (output.mcu_report == MCUReport::NFCState && nfc_status == NFCStatus::LastPackage) {
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// finished
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SendStopPollingRequest(output);
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return DriverResult::Success;
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}
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// Ignore other state reports
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if (output.mcu_report == MCUReport::NFCState) {
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continue;
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}
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if (tries++ > timeout_limit) {
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return DriverResult::Timeout;
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}
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}
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return DriverResult::Success;
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}
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DriverResult NfcProtocol::GetAmiiboData(std::vector<u8>& ntag_data) {
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constexpr std::size_t timeout_limit = 10;
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MCUCommandResponse output{};
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std::size_t tries = 0;
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NFCPages ntag_pages = NFCPages::Block135;
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std::size_t ntag_buffer_pos = 0;
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// Read Tag data
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while (true) {
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auto result = SendReadAmiiboRequest(output, ntag_pages);
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while (tries++ < timeout_limit) {
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result = SendNextPackageRequest(output, package_index);
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const auto nfc_status = static_cast<NFCStatus>(output.mcu_data[6]);
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if (result != DriverResult::Success) {
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@ -259,6 +232,7 @@ DriverResult NfcProtocol::GetAmiiboData(std::vector<u8>& ntag_data) {
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memcpy(ntag_data.data() + ntag_buffer_pos, output.mcu_data.data() + 6,
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payload_size);
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}
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package_index++;
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continue;
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}
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@ -266,19 +240,10 @@ DriverResult NfcProtocol::GetAmiiboData(std::vector<u8>& ntag_data) {
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LOG_INFO(Input, "Finished reading amiibo");
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return DriverResult::Success;
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}
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// Ignore other state reports
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if (output.mcu_report == MCUReport::NFCState) {
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continue;
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}
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if (tries++ > timeout_limit) {
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return DriverResult::Timeout;
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}
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}
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return DriverResult::Success;
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}
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DriverResult NfcProtocol::SendStartPollingRequest(MCUCommandResponse& output) {
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NFCRequestState request{
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@ -321,10 +286,10 @@ DriverResult NfcProtocol::SendStopPollingRequest(MCUCommandResponse& output) {
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output);
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}
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DriverResult NfcProtocol::SendStartWaitingRecieveRequest(MCUCommandResponse& output) {
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DriverResult NfcProtocol::SendNextPackageRequest(MCUCommandResponse& output, u8 packet_id) {
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NFCRequestState request{
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.command_argument = NFCReadCommand::StartWaitingRecieve,
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.packet_id = 0x0,
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.packet_id = packet_id,
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.packet_flag = MCUPacketFlag::LastCommandPacket,
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.data_length = 0,
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.raw_data = {},
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@ -42,9 +42,9 @@ private:
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DriverResult WaitUntilNfcIsReady();
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DriverResult StartPolling(TagFoundData& data, std::size_t timeout_limit = 1);
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DriverResult WaitUntilNfcIsPolling();
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DriverResult ReadTag(const TagFoundData& data);
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DriverResult IsTagInRange(TagFoundData& data, std::size_t timeout_limit = 1);
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DriverResult GetAmiiboData(std::vector<u8>& data);
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@ -52,7 +52,7 @@ private:
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DriverResult SendStopPollingRequest(MCUCommandResponse& output);
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DriverResult SendStartWaitingRecieveRequest(MCUCommandResponse& output);
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DriverResult SendNextPackageRequest(MCUCommandResponse& output, u8 packet_id);
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DriverResult SendReadAmiiboRequest(MCUCommandResponse& output, NFCPages ntag_pages);
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