service: nfp: Actually write correct crc
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0c7149d222
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026fe2e4f4
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@ -585,6 +585,8 @@ Ver3StoreData MiiManager::ConvertCharInfoToV3(const CharInfo& mii) const {
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mii_v3.appearance_bits11.mole_x_position.Assign(mii.mole_x);
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mii_v3.appearance_bits11.mole_x_position.Assign(mii.mole_x);
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mii_v3.appearance_bits11.mole_y_position.Assign(mii.mole_y);
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mii_v3.appearance_bits11.mole_y_position.Assign(mii.mole_y);
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mii_v3.crc = GenerateCrc16(&mii_v3, sizeof(Ver3StoreData) - sizeof(u16));
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// TODO: Validate mii_v3 data
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// TODO: Validate mii_v3 data
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return mii_v3;
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return mii_v3;
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@ -365,7 +365,8 @@ struct Ver3StoreData {
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} appearance_bits11;
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} appearance_bits11;
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std::array<u16_le, 0xA> author_name;
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std::array<u16_le, 0xA> author_name;
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INSERT_PADDING_BYTES(0x4);
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INSERT_PADDING_BYTES(0x2);
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u16_be crc;
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};
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};
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static_assert(sizeof(Ver3StoreData) == 0x60, "Ver3StoreData is an invalid size");
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static_assert(sizeof(Ver3StoreData) == 0x60, "Ver3StoreData is an invalid size");
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@ -89,7 +89,7 @@ NTAG215File NfcDataToEncodedData(const EncryptedNTAG215File& nfc_data) {
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encoded_data.application_id_byte = nfc_data.user_memory.application_id_byte;
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encoded_data.application_id_byte = nfc_data.user_memory.application_id_byte;
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encoded_data.unknown = nfc_data.user_memory.unknown;
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encoded_data.unknown = nfc_data.user_memory.unknown;
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encoded_data.unknown2 = nfc_data.user_memory.unknown2;
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encoded_data.unknown2 = nfc_data.user_memory.unknown2;
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encoded_data.application_area_crc = nfc_data.user_memory.application_area_crc;
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encoded_data.register_info_crc = nfc_data.user_memory.register_info_crc;
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encoded_data.application_area = nfc_data.user_memory.application_area;
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encoded_data.application_area = nfc_data.user_memory.application_area;
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encoded_data.hmac_tag = nfc_data.user_memory.hmac_tag;
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encoded_data.hmac_tag = nfc_data.user_memory.hmac_tag;
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encoded_data.lock_bytes = nfc_data.uuid.lock_bytes;
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encoded_data.lock_bytes = nfc_data.uuid.lock_bytes;
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@ -123,7 +123,7 @@ EncryptedNTAG215File EncodedDataToNfcData(const NTAG215File& encoded_data) {
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nfc_data.user_memory.application_id_byte = encoded_data.application_id_byte;
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nfc_data.user_memory.application_id_byte = encoded_data.application_id_byte;
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nfc_data.user_memory.unknown = encoded_data.unknown;
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nfc_data.user_memory.unknown = encoded_data.unknown;
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nfc_data.user_memory.unknown2 = encoded_data.unknown2;
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nfc_data.user_memory.unknown2 = encoded_data.unknown2;
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nfc_data.user_memory.application_area_crc = encoded_data.application_area_crc;
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nfc_data.user_memory.register_info_crc = encoded_data.register_info_crc;
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nfc_data.user_memory.application_area = encoded_data.application_area;
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nfc_data.user_memory.application_area = encoded_data.application_area;
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nfc_data.user_memory.hmac_tag = encoded_data.hmac_tag;
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nfc_data.user_memory.hmac_tag = encoded_data.hmac_tag;
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nfc_data.user_memory.model_info = encoded_data.model_info;
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nfc_data.user_memory.model_info = encoded_data.model_info;
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@ -448,7 +448,7 @@ Result NfpDevice::DeleteRegisterInfo() {
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rng.GenerateRandomBytes(&tag_data.unknown, sizeof(u8));
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rng.GenerateRandomBytes(&tag_data.unknown, sizeof(u8));
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rng.GenerateRandomBytes(&tag_data.unknown2[0], sizeof(u32));
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rng.GenerateRandomBytes(&tag_data.unknown2[0], sizeof(u32));
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rng.GenerateRandomBytes(&tag_data.unknown2[1], sizeof(u32));
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rng.GenerateRandomBytes(&tag_data.unknown2[1], sizeof(u32));
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rng.GenerateRandomBytes(&tag_data.application_area_crc, sizeof(u32));
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rng.GenerateRandomBytes(&tag_data.register_info_crc, sizeof(u32));
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rng.GenerateRandomBytes(&tag_data.settings.init_date, sizeof(u32));
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rng.GenerateRandomBytes(&tag_data.settings.init_date, sizeof(u32));
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tag_data.settings.settings.font_region.Assign(0);
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tag_data.settings.settings.font_region.Assign(0);
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tag_data.settings.settings.amiibo_initialized.Assign(0);
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tag_data.settings.settings.amiibo_initialized.Assign(0);
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@ -486,9 +486,7 @@ Result NfpDevice::SetRegisterInfoPrivate(const AmiiboName& amiibo_name) {
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settings.settings.font_region.Assign(0);
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settings.settings.font_region.Assign(0);
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settings.settings.amiibo_initialized.Assign(1);
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settings.settings.amiibo_initialized.Assign(1);
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// TODO: this is a mix of tag.file input
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UpdateRegisterInfoCrc();
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std::array<u8, 0x7e> unknown_input{};
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tag_data.application_area_crc = CalculateCrc(unknown_input);
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return Flush();
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return Flush();
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}
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}
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@ -716,9 +714,7 @@ Result NfpDevice::RecreateApplicationArea(u32 access_id, std::span<const u8> dat
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tag_data.application_area_id = access_id;
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tag_data.application_area_id = access_id;
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tag_data.unknown = {};
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tag_data.unknown = {};
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// TODO: this is a mix of tag_data input
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UpdateRegisterInfoCrc();
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std::array<u8, 0x7e> unknown_input{};
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tag_data.application_area_crc = CalculateCrc(unknown_input);
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return Flush();
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return Flush();
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}
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}
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@ -838,6 +834,29 @@ void NfpDevice::UpdateSettingsCrc() {
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settings.crc = CalculateCrc(unknown_input);
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settings.crc = CalculateCrc(unknown_input);
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}
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}
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void NfpDevice::UpdateRegisterInfoCrc() {
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#pragma pack(push, 1)
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struct CrcData {
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Mii::Ver3StoreData mii;
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u8 application_id_byte;
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u8 unknown;
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std::array<u32, 0x7> unknown2;
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};
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static_assert(sizeof(CrcData) == 0x7e, "CrcData is an invalid size");
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#pragma pack(pop)
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const CrcData crc_data{
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.mii = tag_data.owner_mii,
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.application_id_byte = tag_data.application_id_byte,
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.unknown = tag_data.unknown,
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.unknown2 = tag_data.unknown2,
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};
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std::array<u8, sizeof(CrcData)> data{};
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memcpy(data.data(), &crc_data, sizeof(CrcData));
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tag_data.register_info_crc = CalculateCrc(data);
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}
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u32 NfpDevice::CalculateCrc(std::span<const u8> data) {
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u32 NfpDevice::CalculateCrc(std::span<const u8> data) {
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constexpr u32 magic = 0xedb88320;
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constexpr u32 magic = 0xedb88320;
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u32 crc = 0xffffffff;
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u32 crc = 0xffffffff;
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@ -847,17 +866,15 @@ u32 NfpDevice::CalculateCrc(std::span<const u8> data) {
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}
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}
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for (u8 input : data) {
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for (u8 input : data) {
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u32 temp = (crc ^ input) >> 1;
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crc ^= input;
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if (((crc ^ input) & 1) != 0) {
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crc = crc >> 1 ^ ((crc & 1) ? magic : 0x0);
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temp = temp ^ magic;
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crc = crc >> 1 ^ ((crc & 1) ? magic : 0x0);
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}
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crc = crc >> 1 ^ ((crc & 1) ? magic : 0x0);
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crc = crc >> 1 ^ ((crc & 1) ? magic : 0x0);
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for (std::size_t step = 0; step < 7; ++step) {
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crc = crc >> 1 ^ ((crc & 1) ? magic : 0x0);
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crc = temp >> 1;
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crc = crc >> 1 ^ ((crc & 1) ? magic : 0x0);
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if ((temp & 1) != 0) {
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crc = crc >> 1 ^ ((crc & 1) ? magic : 0x0);
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crc = temp >> 1 ^ magic;
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crc = crc >> 1 ^ ((crc & 1) ? magic : 0x0);
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}
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}
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}
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}
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return ~crc;
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return ~crc;
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@ -80,6 +80,7 @@ private:
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AmiiboDate GetAmiiboDate(s64 posix_time) const;
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AmiiboDate GetAmiiboDate(s64 posix_time) const;
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u64 RemoveVersionByte(u64 application_id) const;
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u64 RemoveVersionByte(u64 application_id) const;
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void UpdateSettingsCrc();
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void UpdateSettingsCrc();
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void UpdateRegisterInfoCrc();
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u32 CalculateCrc(std::span<const u8>);
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u32 CalculateCrc(std::span<const u8>);
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bool is_controller_set{};
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bool is_controller_set{};
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@ -260,7 +260,7 @@ struct EncryptedAmiiboFile {
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u8 application_id_byte;
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u8 application_id_byte;
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u8 unknown;
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u8 unknown;
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std::array<u32, 0x7> unknown2;
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std::array<u32, 0x7> unknown2;
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u32_be application_area_crc;
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u32_be register_info_crc;
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ApplicationArea application_area; // Encrypted Game data
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ApplicationArea application_area; // Encrypted Game data
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};
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};
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static_assert(sizeof(EncryptedAmiiboFile) == 0x1F8, "AmiiboFile is an invalid size");
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static_assert(sizeof(EncryptedAmiiboFile) == 0x1F8, "AmiiboFile is an invalid size");
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@ -281,7 +281,7 @@ struct NTAG215File {
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u8 application_id_byte;
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u8 application_id_byte;
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u8 unknown;
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u8 unknown;
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std::array<u32, 0x7> unknown2;
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std::array<u32, 0x7> unknown2;
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u32_be application_area_crc;
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u32_be register_info_crc;
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ApplicationArea application_area; // Encrypted Game data
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ApplicationArea application_area; // Encrypted Game data
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HashData hmac_tag; // Hash
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HashData hmac_tag; // Hash
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UniqueSerialNumber uid; // Unique serial number
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UniqueSerialNumber uid; // Unique serial number
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