mirror of
https://github.com/pineappleEA/pineapple-src.git
synced 2024-11-28 20:08:24 -05:00
early-access version 3646
This commit is contained in:
parent
80bec92d21
commit
b237675917
@ -255,7 +255,7 @@ endif()
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# boost asio's concept usage doesn't play nicely with some compilers yet.
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add_definitions(-DBOOST_ASIO_DISABLE_CONCEPTS)
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if (MSVC)
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add_compile_options($<$<COMPILE_LANGUAGE:CXX>:/std:c++latest>)
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add_compile_options($<$<COMPILE_LANGUAGE:CXX>:/std:c++20>)
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# boost still makes use of deprecated result_of.
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add_definitions(-D_HAS_DEPRECATED_RESULT_OF)
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@ -1,7 +1,7 @@
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yuzu emulator early access
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=============
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This is the source code for early-access 3645.
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This is the source code for early-access 3646.
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## Legal Notice
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@ -43,7 +43,7 @@ if (MSVC)
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/Zo
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/permissive-
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/EHsc
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/std:c++latest
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/std:c++20
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/utf-8
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/volatile:iso
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/Zc:externConstexpr
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@ -51,8 +51,10 @@ if (MSVC)
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/Zc:throwingNew
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/GT
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# Modules
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/experimental:module- # Disable module support explicitly due to conflicts with precompiled headers
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# External headers diagnostics
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/experimental:external # Enables the external headers options. This option isn't required in Visual Studio 2019 version 16.10 and later
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/external:anglebrackets # Treats all headers included by #include <header>, where the header file is enclosed in angle brackets (< >), as external headers
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/external:W0 # Sets the default warning level to 0 for external headers, effectively turning off warnings for external headers
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@ -10,6 +10,7 @@
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// Sub-directories contained within a yuzu data directory
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#define AMIIBO_DIR "amiibo"
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#define CACHE_DIR "cache"
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#define CONFIG_DIR "config"
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#define DUMP_DIR "dump"
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@ -114,6 +114,7 @@ public:
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#endif
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GenerateYuzuPath(YuzuPath::YuzuDir, yuzu_path);
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GenerateYuzuPath(YuzuPath::AmiiboDir, yuzu_path / AMIIBO_DIR);
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GenerateYuzuPath(YuzuPath::CacheDir, yuzu_path_cache);
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GenerateYuzuPath(YuzuPath::ConfigDir, yuzu_path_config);
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GenerateYuzuPath(YuzuPath::DumpDir, yuzu_path / DUMP_DIR);
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@ -12,6 +12,7 @@ namespace Common::FS {
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enum class YuzuPath {
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YuzuDir, // Where yuzu stores its data.
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AmiiboDir, // Where Amiibo backups are stored.
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CacheDir, // Where cached filesystem data is stored.
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ConfigDir, // Where config files are stored.
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DumpDir, // Where dumped data is stored.
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@ -12,6 +12,11 @@
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#pragma warning(pop)
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#endif
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#include <fmt/format.h>
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#include "common/fs/file.h"
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#include "common/fs/fs.h"
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#include "common/fs/path_util.h"
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#include "common/input.h"
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#include "common/logging/log.h"
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#include "common/string_util.h"
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@ -136,7 +141,7 @@ bool NfcDevice::LoadNfcTag(std::span<const u8> data) {
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if (!NFP::AmiiboCrypto::IsKeyAvailable()) {
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LOG_INFO(Service_NFC, "Loading amiibo without keys");
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memcpy(&encrypted_tag_data, data.data(), sizeof(NFP::EncryptedNTAG215File));
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BuildAmiiboWithoutKeys();
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BuildAmiiboWithoutKeys(tag_data, encrypted_tag_data);
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is_plain_amiibo = true;
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is_write_protected = true;
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return true;
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@ -366,16 +371,25 @@ Result NfcDevice::Mount(NFP::ModelType model_type, NFP::MountTarget mount_target
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// The loaded amiibo is not encrypted
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if (is_plain_amiibo) {
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std::vector<u8> data(sizeof(NFP::NTAG215File));
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memcpy(data.data(), &tag_data, sizeof(tag_data));
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WriteBackupData(tag_data.uid, data);
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device_state = DeviceState::TagMounted;
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mount_target = mount_target_;
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return ResultSuccess;
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}
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if (!NFP::AmiiboCrypto::DecodeAmiibo(encrypted_tag_data, tag_data)) {
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LOG_ERROR(Service_NFP, "Can't decode amiibo {}", device_state);
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return ResultCorruptedData;
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bool has_backup = HasBackup(encrypted_tag_data.uuid.uid).IsSuccess();
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LOG_ERROR(Service_NFP, "Can't decode amiibo, has_backup= {}", has_backup);
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return has_backup ? ResultCorruptedDataWithBackup : ResultCorruptedData;
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}
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std::vector<u8> data(sizeof(NFP::EncryptedNTAG215File));
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memcpy(data.data(), &encrypted_tag_data, sizeof(encrypted_tag_data));
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WriteBackupData(encrypted_tag_data.uuid.uid, data);
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device_state = DeviceState::TagMounted;
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mount_target = mount_target_;
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return ResultSuccess;
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@ -470,6 +484,7 @@ Result NfcDevice::FlushWithBreak(NFP::BreakType break_type) {
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std::vector<u8> data(sizeof(NFP::EncryptedNTAG215File));
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if (is_plain_amiibo) {
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memcpy(data.data(), &tag_data, sizeof(tag_data));
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WriteBackupData(tag_data.uid, data);
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} else {
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if (!NFP::AmiiboCrypto::EncodeAmiibo(tag_data, encrypted_tag_data)) {
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LOG_ERROR(Service_NFP, "Failed to encode data");
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@ -477,6 +492,7 @@ Result NfcDevice::FlushWithBreak(NFP::BreakType break_type) {
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}
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memcpy(data.data(), &encrypted_tag_data, sizeof(encrypted_tag_data));
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WriteBackupData(encrypted_tag_data.uuid.uid, data);
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}
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if (!npad_device->WriteNfc(data)) {
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@ -488,7 +504,7 @@ Result NfcDevice::FlushWithBreak(NFP::BreakType break_type) {
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}
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Result NfcDevice::Restore() {
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if (device_state != DeviceState::TagMounted) {
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if (device_state != DeviceState::TagFound) {
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LOG_ERROR(Service_NFP, "Wrong device state {}", device_state);
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if (device_state == DeviceState::TagRemoved) {
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return ResultTagRemoved;
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@ -496,13 +512,59 @@ Result NfcDevice::Restore() {
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return ResultWrongDeviceState;
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}
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if (mount_target == NFP::MountTarget::None || mount_target == NFP::MountTarget::Rom) {
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LOG_ERROR(Service_NFC, "Amiibo is read only", device_state);
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return ResultWrongDeviceState;
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NFC::TagInfo tag_info{};
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std::array<u8, sizeof(NFP::EncryptedNTAG215File)> data{};
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Result result = GetTagInfo(tag_info, false);
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if (result.IsError()) {
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return result;
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}
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// TODO: Load amiibo from backup on system
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LOG_ERROR(Service_NFP, "Not Implemented");
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result = ReadBackupData(tag_info.uuid, data);
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if (result.IsError()) {
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return result;
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}
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NFP::NTAG215File temporary_tag_data{};
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NFP::EncryptedNTAG215File temporary_encrypted_tag_data{};
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// Fallback for encrypted amiibos without keys
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if (is_write_protected) {
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return ResultWriteAmiiboFailed;
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}
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// Fallback for plain amiibos
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if (is_plain_amiibo) {
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LOG_INFO(Service_NFP, "Restoring backup of plain amiibo");
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memcpy(&temporary_tag_data, data.data(), sizeof(NFP::EncryptedNTAG215File));
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temporary_encrypted_tag_data = NFP::AmiiboCrypto::EncodedDataToNfcData(temporary_tag_data);
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}
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if (!is_plain_amiibo) {
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LOG_INFO(Service_NFP, "Restoring backup of encrypted amiibo");
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temporary_tag_data = {};
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memcpy(&temporary_encrypted_tag_data, data.data(), sizeof(NFP::EncryptedNTAG215File));
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}
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if (!NFP::AmiiboCrypto::IsAmiiboValid(temporary_encrypted_tag_data)) {
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return ResultNotAnAmiibo;
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}
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if (!is_plain_amiibo) {
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if (!NFP::AmiiboCrypto::DecodeAmiibo(temporary_encrypted_tag_data, temporary_tag_data)) {
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LOG_ERROR(Service_NFP, "Can't decode amiibo");
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return ResultCorruptedData;
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}
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}
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// Overwrite tag contents with backup and mount the tag
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tag_data = temporary_tag_data;
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encrypted_tag_data = temporary_encrypted_tag_data;
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device_state = DeviceState::TagMounted;
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mount_target = NFP::MountTarget::All;
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is_data_moddified = true;
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return ResultSuccess;
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}
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@ -1132,13 +1194,69 @@ Result NfcDevice::BreakTag(NFP::BreakType break_type) {
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return FlushWithBreak(break_type);
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}
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Result NfcDevice::ReadBackupData(std::span<u8> data) const {
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// Not implemented
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Result NfcDevice::HasBackup(const NFC::UniqueSerialNumber& uid) const {
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constexpr auto backup_dir = "backup";
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const auto yuzu_amiibo_dir = Common::FS::GetYuzuPath(Common::FS::YuzuPath::AmiiboDir);
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const auto file_name = fmt::format("{0:02x}.bin", fmt::join(uid, ""));
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if (!Common::FS::Exists(yuzu_amiibo_dir / backup_dir / file_name)) {
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return ResultUnableToAccessBackupFile;
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}
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return ResultSuccess;
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}
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Result NfcDevice::WriteBackupData(std::span<const u8> data) {
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// Not implemented
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Result NfcDevice::ReadBackupData(const NFC::UniqueSerialNumber& uid, std::span<u8> data) const {
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constexpr auto backup_dir = "backup";
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const auto yuzu_amiibo_dir = Common::FS::GetYuzuPath(Common::FS::YuzuPath::AmiiboDir);
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const auto file_name = fmt::format("{0:02x}.bin", fmt::join(uid, ""));
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const Common::FS::IOFile keys_file{yuzu_amiibo_dir / backup_dir / file_name,
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Common::FS::FileAccessMode::Read,
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Common::FS::FileType::BinaryFile};
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if (!keys_file.IsOpen()) {
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LOG_ERROR(Service_NFP, "Failed to open amiibo backup");
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return ResultUnableToAccessBackupFile;
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}
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if (keys_file.Read(data) != data.size()) {
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LOG_ERROR(Service_NFP, "Failed to read amiibo backup");
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return ResultUnableToAccessBackupFile;
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}
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return ResultSuccess;
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}
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Result NfcDevice::WriteBackupData(const NFC::UniqueSerialNumber& uid, std::span<const u8> data) {
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constexpr auto backup_dir = "backup";
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const auto yuzu_amiibo_dir = Common::FS::GetYuzuPath(Common::FS::YuzuPath::AmiiboDir);
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const auto file_name = fmt::format("{0:02x}.bin", fmt::join(uid, ""));
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if (HasBackup(uid).IsError()) {
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if (!Common::FS::CreateDir(yuzu_amiibo_dir / backup_dir)) {
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return ResultBackupPathAlreadyExist;
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}
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if (!Common::FS::NewFile(yuzu_amiibo_dir / backup_dir / file_name)) {
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return ResultBackupPathAlreadyExist;
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}
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}
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const Common::FS::IOFile keys_file{yuzu_amiibo_dir / backup_dir / file_name,
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Common::FS::FileAccessMode::ReadWrite,
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Common::FS::FileType::BinaryFile};
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if (!keys_file.IsOpen()) {
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LOG_ERROR(Service_NFP, "Failed to open amiibo backup");
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return ResultUnableToAccessBackupFile;
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}
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if (keys_file.Write(data) != data.size()) {
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LOG_ERROR(Service_NFP, "Failed to write amiibo backup");
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return ResultUnableToAccessBackupFile;
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}
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return ResultSuccess;
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}
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@ -1177,7 +1295,8 @@ NFP::AmiiboName NfcDevice::GetAmiiboName(const NFP::AmiiboSettings& settings) co
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return amiibo_name;
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}
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void NfcDevice::SetAmiiboName(NFP::AmiiboSettings& settings, const NFP::AmiiboName& amiibo_name) {
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void NfcDevice::SetAmiiboName(NFP::AmiiboSettings& settings,
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const NFP::AmiiboName& amiibo_name) const {
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std::array<char16_t, NFP::amiibo_name_length> settings_amiibo_name{};
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// Convert from utf8 to utf16
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@ -1258,22 +1377,23 @@ void NfcDevice::UpdateRegisterInfoCrc() {
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tag_data.register_info_crc = crc.checksum();
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}
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void NfcDevice::BuildAmiiboWithoutKeys() {
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void NfcDevice::BuildAmiiboWithoutKeys(NFP::NTAG215File& stubbed_tag_data,
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const NFP::EncryptedNTAG215File& encrypted_file) const {
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Service::Mii::MiiManager manager;
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auto& settings = tag_data.settings;
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auto& settings = stubbed_tag_data.settings;
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tag_data = NFP::AmiiboCrypto::NfcDataToEncodedData(encrypted_tag_data);
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stubbed_tag_data = NFP::AmiiboCrypto::NfcDataToEncodedData(encrypted_file);
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// Common info
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tag_data.write_counter = 0;
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tag_data.amiibo_version = 0;
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stubbed_tag_data.write_counter = 0;
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stubbed_tag_data.amiibo_version = 0;
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settings.write_date = GetAmiiboDate(GetCurrentPosixTime());
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// Register info
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SetAmiiboName(settings, {'y', 'u', 'z', 'u', 'A', 'm', 'i', 'i', 'b', 'o'});
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settings.settings.font_region.Assign(0);
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settings.init_date = GetAmiiboDate(GetCurrentPosixTime());
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tag_data.owner_mii = manager.BuildFromStoreData(manager.BuildDefault(0));
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stubbed_tag_data.owner_mii = manager.BuildFromStoreData(manager.BuildDefault(0));
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// Admin info
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settings.settings.amiibo_initialized.Assign(1);
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@ -86,8 +86,9 @@ public:
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Result GetAll(NFP::NfpData& data) const;
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Result SetAll(const NFP::NfpData& data);
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Result BreakTag(NFP::BreakType break_type);
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Result ReadBackupData(std::span<u8> data) const;
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Result WriteBackupData(std::span<const u8> data);
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Result HasBackup(const NFC::UniqueSerialNumber& uid) const;
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Result ReadBackupData(const NFC::UniqueSerialNumber& uid, std::span<u8> data) const;
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Result WriteBackupData(const NFC::UniqueSerialNumber& uid, std::span<const u8> data);
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Result WriteNtf(std::span<const u8> data);
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u64 GetHandle() const;
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@ -103,14 +104,15 @@ private:
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void CloseNfcTag();
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NFP::AmiiboName GetAmiiboName(const NFP::AmiiboSettings& settings) const;
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void SetAmiiboName(NFP::AmiiboSettings& settings, const NFP::AmiiboName& amiibo_name);
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void SetAmiiboName(NFP::AmiiboSettings& settings, const NFP::AmiiboName& amiibo_name) const;
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NFP::AmiiboDate GetAmiiboDate(s64 posix_time) const;
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u64 GetCurrentPosixTime() const;
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u64 RemoveVersionByte(u64 application_id) const;
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void UpdateSettingsCrc();
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void UpdateRegisterInfoCrc();
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void BuildAmiiboWithoutKeys();
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void BuildAmiiboWithoutKeys(NFP::NTAG215File& stubbed_tag_data,
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const NFP::EncryptedNTAG215File& encrypted_file) const;
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bool is_controller_set{};
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int callback_key;
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@ -543,9 +543,14 @@ Result DeviceManager::ReadBackupData(u64 device_handle, std::span<u8> data) cons
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std::shared_ptr<NfcDevice> device = nullptr;
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auto result = GetDeviceHandle(device_handle, device);
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NFC::TagInfo tag_info{};
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if (result.IsSuccess()) {
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result = device->ReadBackupData(data);
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result = device->GetTagInfo(tag_info, false);
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}
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if (result.IsSuccess()) {
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result = device->ReadBackupData(tag_info.uuid, data);
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result = VerifyDeviceResult(device, result);
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}
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@ -557,9 +562,14 @@ Result DeviceManager::WriteBackupData(u64 device_handle, std::span<const u8> dat
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std::shared_ptr<NfcDevice> device = nullptr;
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auto result = GetDeviceHandle(device_handle, device);
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NFC::TagInfo tag_info{};
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if (result.IsSuccess()) {
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result = device->WriteBackupData(data);
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result = device->GetTagInfo(tag_info, false);
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}
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if (result.IsSuccess()) {
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result = device->WriteBackupData(tag_info.uuid, data);
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result = VerifyDeviceResult(device, result);
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}
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@ -302,7 +302,7 @@ Result NfcInterface::TranslateResultToServiceError(Result result) const {
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return TranslateResultToNfp(result);
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}
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default:
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if (result != ResultUnknown216) {
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if (result != ResultBackupPathAlreadyExist) {
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return result;
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}
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return ResultUnknown74;
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@ -343,6 +343,9 @@ Result NfcInterface::TranslateResultToNfp(Result result) const {
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if (result == ResultApplicationAreaIsNotInitialized) {
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return NFP::ResultApplicationAreaIsNotInitialized;
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}
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if (result == ResultCorruptedDataWithBackup) {
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return NFP::ResultCorruptedDataWithBackup;
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}
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if (result == ResultCorruptedData) {
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return NFP::ResultCorruptedData;
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}
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@ -355,6 +358,9 @@ Result NfcInterface::TranslateResultToNfp(Result result) const {
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if (result == ResultNotAnAmiibo) {
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return NFP::ResultNotAnAmiibo;
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}
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if (result == ResultUnableToAccessBackupFile) {
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return NFP::ResultUnableToAccessBackupFile;
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}
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LOG_WARNING(Service_NFC, "Result conversion not handled");
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return result;
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}
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@ -9,20 +9,22 @@ namespace Service::NFC {
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constexpr Result ResultDeviceNotFound(ErrorModule::NFC, 64);
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constexpr Result ResultInvalidArgument(ErrorModule::NFC, 65);
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constexpr Result ResultWrongApplicationAreaSize(ErrorModule::NFP, 68);
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constexpr Result ResultWrongApplicationAreaSize(ErrorModule::NFC, 68);
|
||||
constexpr Result ResultWrongDeviceState(ErrorModule::NFC, 73);
|
||||
constexpr Result ResultUnknown74(ErrorModule::NFC, 74);
|
||||
constexpr Result ResultUnknown76(ErrorModule::NFC, 76);
|
||||
constexpr Result ResultNfcNotInitialized(ErrorModule::NFC, 77);
|
||||
constexpr Result ResultNfcDisabled(ErrorModule::NFC, 80);
|
||||
constexpr Result ResultWriteAmiiboFailed(ErrorModule::NFP, 88);
|
||||
constexpr Result ResultWriteAmiiboFailed(ErrorModule::NFC, 88);
|
||||
constexpr Result ResultTagRemoved(ErrorModule::NFC, 97);
|
||||
constexpr Result ResultRegistrationIsNotInitialized(ErrorModule::NFP, 120);
|
||||
constexpr Result ResultApplicationAreaIsNotInitialized(ErrorModule::NFP, 128);
|
||||
constexpr Result ResultCorruptedData(ErrorModule::NFP, 144);
|
||||
constexpr Result ResultWrongApplicationAreaId(ErrorModule::NFP, 152);
|
||||
constexpr Result ResultApplicationAreaExist(ErrorModule::NFP, 168);
|
||||
constexpr Result ResultNotAnAmiibo(ErrorModule::NFP, 178);
|
||||
constexpr Result ResultUnknown216(ErrorModule::NFC, 216);
|
||||
constexpr Result ResultUnableToAccessBackupFile(ErrorModule::NFC, 113);
|
||||
constexpr Result ResultRegistrationIsNotInitialized(ErrorModule::NFC, 120);
|
||||
constexpr Result ResultApplicationAreaIsNotInitialized(ErrorModule::NFC, 128);
|
||||
constexpr Result ResultCorruptedDataWithBackup(ErrorModule::NFC, 136);
|
||||
constexpr Result ResultCorruptedData(ErrorModule::NFC, 144);
|
||||
constexpr Result ResultWrongApplicationAreaId(ErrorModule::NFC, 152);
|
||||
constexpr Result ResultApplicationAreaExist(ErrorModule::NFC, 168);
|
||||
constexpr Result ResultNotAnAmiibo(ErrorModule::NFC, 178);
|
||||
constexpr Result ResultBackupPathAlreadyExist(ErrorModule::NFC, 216);
|
||||
|
||||
} // namespace Service::NFC
|
||||
|
@ -126,7 +126,7 @@ void Interface::Flush(HLERequestContext& ctx) {
|
||||
void Interface::Restore(HLERequestContext& ctx) {
|
||||
IPC::RequestParser rp{ctx};
|
||||
const auto device_handle{rp.Pop<u64>()};
|
||||
LOG_WARNING(Service_NFP, "(STUBBED) called, device_handle={}", device_handle);
|
||||
LOG_INFO(Service_NFP, "called, device_handle={}", device_handle);
|
||||
|
||||
auto result = GetManager()->Restore(device_handle);
|
||||
result = TranslateResultToServiceError(result);
|
||||
@ -394,7 +394,7 @@ void Interface::BreakTag(HLERequestContext& ctx) {
|
||||
void Interface::ReadBackupData(HLERequestContext& ctx) {
|
||||
IPC::RequestParser rp{ctx};
|
||||
const auto device_handle{rp.Pop<u64>()};
|
||||
LOG_WARNING(Service_NFP, "(STUBBED) called, device_handle={}", device_handle);
|
||||
LOG_INFO(Service_NFP, "called, device_handle={}", device_handle);
|
||||
|
||||
std::vector<u8> backup_data{};
|
||||
auto result = GetManager()->ReadBackupData(device_handle, backup_data);
|
||||
@ -412,7 +412,7 @@ void Interface::WriteBackupData(HLERequestContext& ctx) {
|
||||
IPC::RequestParser rp{ctx};
|
||||
const auto device_handle{rp.Pop<u64>()};
|
||||
const auto backup_data_buffer{ctx.ReadBuffer()};
|
||||
LOG_WARNING(Service_NFP, "(STUBBED) called, device_handle={}", device_handle);
|
||||
LOG_INFO(Service_NFP, "called, device_handle={}", device_handle);
|
||||
|
||||
auto result = GetManager()->WriteBackupData(device_handle, backup_data_buffer);
|
||||
result = TranslateResultToServiceError(result);
|
||||
|
@ -17,9 +17,11 @@ constexpr Result ResultWriteAmiiboFailed(ErrorModule::NFP, 88);
|
||||
constexpr Result ResultTagRemoved(ErrorModule::NFP, 97);
|
||||
constexpr Result ResultRegistrationIsNotInitialized(ErrorModule::NFP, 120);
|
||||
constexpr Result ResultApplicationAreaIsNotInitialized(ErrorModule::NFP, 128);
|
||||
constexpr Result ResultCorruptedDataWithBackup(ErrorModule::NFP, 136);
|
||||
constexpr Result ResultCorruptedData(ErrorModule::NFP, 144);
|
||||
constexpr Result ResultWrongApplicationAreaId(ErrorModule::NFP, 152);
|
||||
constexpr Result ResultApplicationAreaExist(ErrorModule::NFP, 168);
|
||||
constexpr Result ResultNotAnAmiibo(ErrorModule::NFP, 178);
|
||||
constexpr Result ResultUnableToAccessBackupFile(ErrorModule::NFP, 200);
|
||||
|
||||
} // namespace Service::NFP
|
||||
|
@ -85,7 +85,6 @@
|
||||
|
||||
// Define extensions which must be supported.
|
||||
#define FOR_EACH_VK_MANDATORY_EXTENSION(EXTENSION_NAME) \
|
||||
EXTENSION_NAME(VK_EXT_ROBUSTNESS_2_EXTENSION_NAME) \
|
||||
EXTENSION_NAME(VK_EXT_VERTEX_ATTRIBUTE_DIVISOR_EXTENSION_NAME) \
|
||||
EXTENSION_NAME(VK_KHR_DRIVER_PROPERTIES_EXTENSION_NAME) \
|
||||
EXTENSION_NAME(VK_KHR_SAMPLER_MIRROR_CLAMP_TO_EDGE_EXTENSION_NAME) \
|
||||
@ -105,6 +104,7 @@
|
||||
EXTENSION_NAME(VK_EXT_EXTENDED_DYNAMIC_STATE_2_EXTENSION_NAME) \
|
||||
EXTENSION_NAME(VK_EXT_EXTENDED_DYNAMIC_STATE_3_EXTENSION_NAME) \
|
||||
EXTENSION_NAME(VK_EXT_LINE_RASTERIZATION_EXTENSION_NAME) \
|
||||
EXTENSION_NAME(VK_EXT_ROBUSTNESS_2_EXTENSION_NAME) \
|
||||
EXTENSION_NAME(VK_EXT_VERTEX_INPUT_DYNAMIC_STATE_EXTENSION_NAME) \
|
||||
EXTENSION_NAME(VK_NV_GEOMETRY_SHADER_PASSTHROUGH_EXTENSION_NAME) \
|
||||
EXTENSION_NAME(VK_NV_VIEWPORT_ARRAY2_EXTENSION_NAME) \
|
||||
@ -141,9 +141,6 @@
|
||||
FEATURE_NAME(features, vertexPipelineStoresAndAtomics) \
|
||||
FEATURE_NAME(features, wideLines) \
|
||||
FEATURE_NAME(host_query_reset, hostQueryReset) \
|
||||
FEATURE_NAME(robustness2, nullDescriptor) \
|
||||
FEATURE_NAME(robustness2, robustBufferAccess2) \
|
||||
FEATURE_NAME(robustness2, robustImageAccess2) \
|
||||
FEATURE_NAME(shader_demote_to_helper_invocation, shaderDemoteToHelperInvocation) \
|
||||
FEATURE_NAME(shader_draw_parameters, shaderDrawParameters) \
|
||||
FEATURE_NAME(variable_pointer, variablePointers) \
|
||||
@ -156,6 +153,9 @@
|
||||
FEATURE_NAME(index_type_uint8, indexTypeUint8) \
|
||||
FEATURE_NAME(primitive_topology_list_restart, primitiveTopologyListRestart) \
|
||||
FEATURE_NAME(provoking_vertex, provokingVertexLast) \
|
||||
FEATURE_NAME(robustness2, nullDescriptor) \
|
||||
FEATURE_NAME(robustness2, robustBufferAccess2) \
|
||||
FEATURE_NAME(robustness2, robustImageAccess2) \
|
||||
FEATURE_NAME(shader_float16_int8, shaderFloat16) \
|
||||
FEATURE_NAME(shader_float16_int8, shaderInt8) \
|
||||
FEATURE_NAME(timeline_semaphore, timelineSemaphore) \
|
||||
|
Loading…
Reference in New Issue
Block a user