mirror of
https://github.com/yuzu-emu/yuzu-mainline.git
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key_manager: Add structure for Ticket parsing
This commit is contained in:
parent
b294b13584
commit
f8718ae779
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@ -37,6 +37,7 @@
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namespace Core::Crypto {
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constexpr u64 CURRENT_CRYPTO_REVISION = 0x5;
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constexpr u64 FULL_TICKET_SIZE = 0x400;
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using namespace Common;
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@ -55,6 +56,78 @@ const std::map<std::pair<S128KeyType, u64>, std::string> KEYS_VARIABLE_LENGTH{
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{{S128KeyType::KeyblobMAC, 0}, "keyblob_mac_key_"},
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};
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u64 GetSignatureTypeDataSize(SignatureType type) {
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switch (type) {
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case SignatureType::RSA_4096_SHA1:
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case SignatureType::RSA_4096_SHA256:
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return 0x200;
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case SignatureType::RSA_2048_SHA1:
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case SignatureType::RSA_2048_SHA256:
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return 0x100;
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case SignatureType::ECDSA_SHA1:
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case SignatureType::ECDSA_SHA256:
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return 0x3C;
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}
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UNREACHABLE();
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}
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u64 GetSignatureTypePaddingSize(SignatureType type) {
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switch (type) {
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case SignatureType::RSA_4096_SHA1:
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case SignatureType::RSA_4096_SHA256:
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case SignatureType::RSA_2048_SHA1:
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case SignatureType::RSA_2048_SHA256:
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return 0x3C;
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case SignatureType::ECDSA_SHA1:
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case SignatureType::ECDSA_SHA256:
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return 0x40;
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}
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UNREACHABLE();
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}
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TicketData& Ticket::GetData() {
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switch (sig_type) {
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case SignatureType::RSA_4096_SHA1:
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case SignatureType::RSA_4096_SHA256:
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return rsa_4096.data;
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case SignatureType::RSA_2048_SHA1:
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case SignatureType::RSA_2048_SHA256:
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return rsa_2048.data;
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case SignatureType::ECDSA_SHA1:
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case SignatureType::ECDSA_SHA256:
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return ecdsa.data;
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}
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UNREACHABLE();
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}
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const TicketData& Ticket::GetData() const {
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switch (sig_type) {
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case SignatureType::RSA_4096_SHA1:
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case SignatureType::RSA_4096_SHA256:
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return rsa_4096.data;
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case SignatureType::RSA_2048_SHA1:
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case SignatureType::RSA_2048_SHA256:
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return rsa_2048.data;
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case SignatureType::ECDSA_SHA1:
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case SignatureType::ECDSA_SHA256:
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return ecdsa.data;
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}
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UNREACHABLE();
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}
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u64 Ticket::GetSize() const {
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return sizeof(SignatureType) + GetSignatureTypeDataSize(sig_type) +
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GetSignatureTypePaddingSize(sig_type) + sizeof(TicketData);
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}
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Ticket Ticket::SynthesizeCommon(Key128 title_key, std::array<u8, 16> rights_id) {
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Ticket out{};
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out.sig_type = SignatureType::RSA_2048_SHA256;
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out.GetData().rights_id = rights_id;
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out.GetData().title_key_common = title_key;
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return out;
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}
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Key128 GenerateKeyEncryptionKey(Key128 source, Key128 master, Key128 kek_seed, Key128 key_seed) {
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Key128 out{};
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@ -259,7 +332,7 @@ Loader::ResultStatus DeriveSDKeys(std::array<Key256, 2>& sd_keys, KeyManager& ke
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return Loader::ResultStatus::Success;
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}
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std::vector<TicketRaw> GetTicketblob(const FileUtil::IOFile& ticket_save) {
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std::vector<Ticket> GetTicketblob(const FileUtil::IOFile& ticket_save) {
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if (!ticket_save.IsOpen())
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return {};
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@ -268,14 +341,14 @@ std::vector<TicketRaw> GetTicketblob(const FileUtil::IOFile& ticket_save) {
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return {};
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}
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std::vector<TicketRaw> out;
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std::vector<Ticket> out;
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for (std::size_t offset = 0; offset + 0x4 < buffer.size(); ++offset) {
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if (buffer[offset] == 0x4 && buffer[offset + 1] == 0x0 && buffer[offset + 2] == 0x1 &&
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buffer[offset + 3] == 0x0) {
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out.emplace_back();
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auto& next = out.back();
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std::memcpy(&next, buffer.data() + offset, sizeof(TicketRaw));
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offset += next.size();
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std::memcpy(&next, buffer.data() + offset, sizeof(Ticket));
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offset += FULL_TICKET_SIZE;
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}
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}
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@ -327,29 +400,25 @@ static std::optional<u64> FindTicketOffset(const std::array<u8, size>& data) {
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return offset;
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}
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std::optional<std::pair<Key128, Key128>> ParseTicket(const TicketRaw& ticket,
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std::optional<std::pair<Key128, Key128>> ParseTicket(const Ticket& ticket,
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const RSAKeyPair<2048>& key) {
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u32 cert_authority;
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std::memcpy(&cert_authority, ticket.data() + 0x140, sizeof(cert_authority));
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if (cert_authority == 0)
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const auto issuer = ticket.GetData().issuer;
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if (issuer == std::array<u8, 0x40>{})
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return {};
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if (cert_authority != Common::MakeMagic('R', 'o', 'o', 't')) {
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if (issuer[0] != 'R' || issuer[1] != 'o' || issuer[2] != 'o' || issuer[3] != 't') {
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LOG_INFO(Crypto,
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"Attempting to parse ticket with non-standard certificate authority {:08X}.",
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cert_authority);
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issuer);
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}
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Key128 rights_id;
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std::memcpy(rights_id.data(), ticket.data() + 0x2A0, sizeof(Key128));
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Key128 rights_id = ticket.GetData().rights_id;
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if (rights_id == Key128{})
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return {};
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Key128 key_temp{};
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if (!std::any_of(ticket.begin() + 0x190, ticket.begin() + 0x280, [](u8 b) { return b != 0; })) {
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std::memcpy(key_temp.data(), ticket.data() + 0x180, key_temp.size());
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return std::make_pair(rights_id, key_temp);
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if (!std::any_of(ticket.GetData().title_key_common_pad.begin(),
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ticket.GetData().title_key_common_pad.end(), [](u8 b) { return b != 0; })) {
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return std::make_pair(rights_id, ticket.GetData().title_key_common);
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}
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mbedtls_mpi D; // RSA Private Exponent
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@ -364,7 +433,7 @@ std::optional<std::pair<Key128, Key128>> ParseTicket(const TicketRaw& ticket,
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mbedtls_mpi_read_binary(&D, key.decryption_key.data(), key.decryption_key.size());
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mbedtls_mpi_read_binary(&N, key.modulus.data(), key.modulus.size());
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mbedtls_mpi_read_binary(&S, ticket.data() + 0x180, 0x100);
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mbedtls_mpi_read_binary(&S, ticket.GetData().title_key_block.data(), 0x100);
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mbedtls_mpi_exp_mod(&M, &S, &D, &N, nullptr);
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@ -388,6 +457,7 @@ std::optional<std::pair<Key128, Key128>> ParseTicket(const TicketRaw& ticket,
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return {};
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ASSERT(*offset > 0);
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Key128 key_temp{};
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std::memcpy(key_temp.data(), m_2.data() + *offset, key_temp.size());
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return std::make_pair(rights_id, key_temp);
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@ -411,6 +481,16 @@ KeyManager::KeyManager() {
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AttemptLoadKeyFile(yuzu_keys_dir, yuzu_keys_dir, "title.keys_autogenerated", true);
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AttemptLoadKeyFile(yuzu_keys_dir, hactool_keys_dir, "console.keys", false);
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AttemptLoadKeyFile(yuzu_keys_dir, yuzu_keys_dir, "console.keys_autogenerated", false);
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for (const auto& key : s128_keys) {
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if (key.first.type == S128KeyType::Titlekey) {
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u128 rights_id{key.first.field1, key.first.field2};
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Key128 rights_id_2;
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std::memcpy(rights_id_2.data(), rights_id.data(), rights_id_2.size());
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const auto ticket = Ticket::SynthesizeCommon(key.second, rights_id_2);
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common_tickets.insert_or_assign(rights_id, ticket);
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}
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}
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}
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static bool ValidCryptoRevisionString(std::string_view base, size_t begin, size_t length) {
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@ -1029,15 +1109,15 @@ void KeyManager::PopulateFromPartitionData(PartitionDataManager& data) {
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DeriveBase();
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}
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const std::map<u128, TicketRaw>& KeyManager::GetCommonTickets() const {
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const std::map<u128, Ticket>& KeyManager::GetCommonTickets() const {
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return common_tickets;
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}
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const std::map<u128, TicketRaw>& KeyManager::GetPersonalizedTickets() const {
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const std::map<u128, Ticket>& KeyManager::GetPersonalizedTickets() const {
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return personal_tickets;
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}
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bool KeyManager::AddTicketCommon(TicketRaw raw) {
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bool KeyManager::AddTicketCommon(Ticket raw) {
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const auto rsa_key = GetETicketRSAKey();
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if (rsa_key == RSAKeyPair<2048>{})
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return false;
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@ -1053,7 +1133,7 @@ bool KeyManager::AddTicketCommon(TicketRaw raw) {
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return true;
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}
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bool KeyManager::AddTicketPersonalized(TicketRaw raw) {
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bool KeyManager::AddTicketPersonalized(Ticket raw) {
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const auto rsa_key = GetETicketRSAKey();
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if (rsa_key == RSAKeyPair<2048>{})
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return false;
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@ -11,6 +11,7 @@
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#include <boost/container/flat_map.hpp>
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#include <fmt/format.h>
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#include "common/common_funcs.h"
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#include "common/common_types.h"
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#include "core/crypto/partition_data_manager.h"
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#include "core/file_sys/vfs_types.h"
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@ -30,7 +31,76 @@ constexpr u64 TICKET_FILE_TITLEKEY_OFFSET = 0x180;
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using Key128 = std::array<u8, 0x10>;
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using Key256 = std::array<u8, 0x20>;
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using SHA256Hash = std::array<u8, 0x20>;
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using TicketRaw = std::array<u8, 0x400>;
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enum class SignatureType {
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RSA_4096_SHA1 = 0x10000,
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RSA_2048_SHA1 = 0x10001,
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ECDSA_SHA1 = 0x10002,
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RSA_4096_SHA256 = 0x10003,
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RSA_2048_SHA256 = 0x10004,
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ECDSA_SHA256 = 0x10005,
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};
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u64 GetSignatureTypeDataSize(SignatureType type);
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u64 GetSignatureTypePaddingSize(SignatureType type);
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enum class TitleKeyType : u8 {
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Common = 0,
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Personalized = 1,
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};
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struct TicketData {
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std::array<u8, 0x40> issuer;
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union {
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std::array<u8, 0x100> title_key_block;
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struct {
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Key128 title_key_common;
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std::array<u8, 0xF0> title_key_common_pad;
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};
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};
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INSERT_PADDING_BYTES(0x1);
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TitleKeyType type;
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INSERT_PADDING_BYTES(0x3);
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u8 revision;
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INSERT_PADDING_BYTES(0xA);
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u64 ticket_id;
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u64 device_id;
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std::array<u8, 0x10> rights_id;
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u32 account_id;
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INSERT_PADDING_BYTES(0x14C);
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};
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static_assert(sizeof(TicketData) == 0x2C0, "TicketData has incorrect size.");
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struct Ticket {
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SignatureType sig_type;
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union {
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struct {
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std::array<u8, 0x200> sig_data;
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INSERT_PADDING_BYTES(0x3C);
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TicketData data;
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} rsa_4096;
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struct {
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std::array<u8, 0x100> sig_data;
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INSERT_PADDING_BYTES(0x3C);
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TicketData data;
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} rsa_2048;
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struct {
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std::array<u8, 0x3C> sig_data;
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INSERT_PADDING_BYTES(0x40);
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TicketData data;
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} ecdsa;
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};
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TicketData& GetData();
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const TicketData& GetData() const;
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u64 GetSize() const;
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static Ticket SynthesizeCommon(Key128 title_key, std::array<u8, 0x10> rights_id);
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};
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static_assert(sizeof(Key128) == 16, "Key128 must be 128 bytes big.");
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static_assert(sizeof(Key256) == 32, "Key256 must be 256 bytes big.");
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@ -158,8 +228,8 @@ public:
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static bool KeyFileExists(bool title);
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// Call before using the sd seed to attempt to derive it if it dosen't exist. Needs system save
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// 8*43 and the private file to exist.
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// Call before using the sd seed to attempt to derive it if it dosen't exist. Needs system
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// save 8*43 and the private file to exist.
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void DeriveSDSeedLazy();
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bool BaseDeriveNecessary() const;
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@ -169,19 +239,19 @@ public:
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void PopulateFromPartitionData(PartitionDataManager& data);
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const std::map<u128, TicketRaw>& GetCommonTickets() const;
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const std::map<u128, TicketRaw>& GetPersonalizedTickets() const;
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const std::map<u128, Ticket>& GetCommonTickets() const;
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const std::map<u128, Ticket>& GetPersonalizedTickets() const;
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bool AddTicketCommon(TicketRaw raw);
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bool AddTicketPersonalized(TicketRaw raw);
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bool AddTicketCommon(Ticket raw);
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bool AddTicketPersonalized(Ticket raw);
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private:
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std::map<KeyIndex<S128KeyType>, Key128> s128_keys;
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std::map<KeyIndex<S256KeyType>, Key256> s256_keys;
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// Map from rights ID to ticket
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std::map<u128, TicketRaw> common_tickets;
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std::map<u128, TicketRaw> personal_tickets;
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std::map<u128, Ticket> common_tickets;
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std::map<u128, Ticket> personal_tickets;
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std::array<std::array<u8, 0xB0>, 0x20> encrypted_keyblobs{};
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std::array<std::array<u8, 0x90>, 0x20> keyblobs{};
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@ -216,11 +286,11 @@ std::array<u8, 0x90> DecryptKeyblob(const std::array<u8, 0xB0>& encrypted_keyblo
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std::optional<Key128> DeriveSDSeed();
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Loader::ResultStatus DeriveSDKeys(std::array<Key256, 2>& sd_keys, KeyManager& keys);
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std::vector<TicketRaw> GetTicketblob(const FileUtil::IOFile& ticket_save);
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std::vector<Ticket> GetTicketblob(const FileUtil::IOFile& ticket_save);
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// Returns a pair of {rights_id, titlekey}. Fails if the ticket has no certificate authority (offset
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// 0x140-0x144 is zero)
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std::optional<std::pair<Key128, Key128>> ParseTicket(const TicketRaw& ticket,
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// Returns a pair of {rights_id, titlekey}. Fails if the ticket has no certificate authority
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// (offset 0x140-0x144 is zero)
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std::optional<std::pair<Key128, Key128>> ParseTicket(const Ticket& ticket,
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const RSAKeyPair<2048>& eticket_extended_key);
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} // namespace Core::Crypto
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@ -75,15 +75,15 @@ private:
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const auto ticket = ctx.ReadBuffer();
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const auto cert = ctx.ReadBuffer(1);
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if (ticket.size() < sizeof(Core::Crypto::TicketRaw)) {
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if (ticket.size() < sizeof(Core::Crypto::Ticket)) {
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LOG_ERROR(Service_ETicket, "The input buffer is not large enough!");
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IPC::ResponseBuilder rb{ctx, 2};
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rb.Push(ERROR_INVALID_ARGUMENT);
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return;
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}
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Core::Crypto::TicketRaw raw;
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std::memcpy(raw.data(), ticket.data(), sizeof(Core::Crypto::TicketRaw));
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Core::Crypto::Ticket raw{};
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std::memcpy(&raw, ticket.data(), sizeof(Core::Crypto::Ticket));
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if (!keys.AddTicketPersonalized(raw)) {
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LOG_ERROR(Service_ETicket, "The ticket could not be imported!");
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@ -203,7 +203,7 @@ private:
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IPC::ResponseBuilder rb{ctx, 4};
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rb.Push(RESULT_SUCCESS);
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rb.Push<u64>(ticket.size());
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rb.Push<u64>(ticket.GetSize());
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}
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void GetPersonalizedTicketSize(Kernel::HLERequestContext& ctx) {
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@ -219,7 +219,7 @@ private:
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IPC::ResponseBuilder rb{ctx, 4};
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rb.Push(RESULT_SUCCESS);
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rb.Push<u64>(ticket.size());
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rb.Push<u64>(ticket.GetSize());
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}
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void GetCommonTicketData(Kernel::HLERequestContext& ctx) {
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@ -233,8 +233,8 @@ private:
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const auto ticket = keys.GetCommonTickets().at(rights_id);
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const auto write_size = std::min(ticket.size(), ctx.GetWriteBufferSize());
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ctx.WriteBuffer(ticket.data(), write_size);
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const auto write_size = std::min(ticket.GetSize(), ctx.GetWriteBufferSize());
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ctx.WriteBuffer(&ticket, write_size);
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IPC::ResponseBuilder rb{ctx, 4};
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rb.Push(RESULT_SUCCESS);
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@ -252,8 +252,8 @@ private:
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const auto ticket = keys.GetPersonalizedTickets().at(rights_id);
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const auto write_size = std::min(ticket.size(), ctx.GetWriteBufferSize());
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ctx.WriteBuffer(ticket.data(), write_size);
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const auto write_size = std::min(ticket.GetSize(), ctx.GetWriteBufferSize());
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ctx.WriteBuffer(&ticket, write_size);
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IPC::ResponseBuilder rb{ctx, 4};
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rb.Push(RESULT_SUCCESS);
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