key_manager.cpp 14 KB

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  1. // Copyright 2018 yuzu emulator team
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #include <algorithm>
  5. #include <array>
  6. #include <fstream>
  7. #include <locale>
  8. #include <sstream>
  9. #include <string_view>
  10. #include "common/common_paths.h"
  11. #include "common/file_util.h"
  12. #include "common/hex_util.h"
  13. #include "common/logging/log.h"
  14. #include "core/crypto/aes_util.h"
  15. #include "core/crypto/key_manager.h"
  16. #include "core/settings.h"
  17. namespace Core::Crypto {
  18. Key128 GenerateKeyEncryptionKey(Key128 source, Key128 master, Key128 kek_seed, Key128 key_seed) {
  19. Key128 out{};
  20. AESCipher<Key128> cipher1(master, Mode::ECB);
  21. cipher1.Transcode(kek_seed.data(), kek_seed.size(), out.data(), Op::Decrypt);
  22. AESCipher<Key128> cipher2(out, Mode::ECB);
  23. cipher2.Transcode(source.data(), source.size(), out.data(), Op::Decrypt);
  24. if (key_seed != Key128{}) {
  25. AESCipher<Key128> cipher3(out, Mode::ECB);
  26. cipher3.Transcode(key_seed.data(), key_seed.size(), out.data(), Op::Decrypt);
  27. }
  28. return out;
  29. }
  30. boost::optional<Key128> DeriveSDSeed() {
  31. const FileUtil::IOFile save_43(FileUtil::GetUserPath(FileUtil::UserPath::NANDDir) +
  32. "/system/save/8000000000000043",
  33. "rb+");
  34. if (!save_43.IsOpen())
  35. return boost::none;
  36. const FileUtil::IOFile sd_private(
  37. FileUtil::GetUserPath(FileUtil::UserPath::SDMCDir) + "/Nintendo/Contents/private", "rb+");
  38. if (!sd_private.IsOpen())
  39. return boost::none;
  40. sd_private.Seek(0, SEEK_SET);
  41. std::array<u8, 0x10> private_seed{};
  42. if (sd_private.ReadBytes(private_seed.data(), private_seed.size()) != 0x10)
  43. return boost::none;
  44. std::array<u8, 0x10> buffer{};
  45. size_t offset = 0;
  46. for (; offset + 0x10 < save_43.GetSize(); ++offset) {
  47. save_43.Seek(offset, SEEK_SET);
  48. save_43.ReadBytes(buffer.data(), buffer.size());
  49. if (buffer == private_seed)
  50. break;
  51. }
  52. if (offset + 0x10 >= save_43.GetSize())
  53. return boost::none;
  54. Key128 seed{};
  55. save_43.Seek(offset + 0x10, SEEK_SET);
  56. save_43.ReadBytes(seed.data(), seed.size());
  57. return seed;
  58. }
  59. Loader::ResultStatus DeriveSDKeys(std::array<Key256, 2>& sd_keys, const KeyManager& keys) {
  60. if (!keys.HasKey(S128KeyType::Source, static_cast<u64>(SourceKeyType::SDKEK)))
  61. return Loader::ResultStatus::ErrorMissingSDKEKSource;
  62. if (!keys.HasKey(S128KeyType::Source, static_cast<u64>(SourceKeyType::AESKEKGeneration)))
  63. return Loader::ResultStatus::ErrorMissingAESKEKGenerationSource;
  64. if (!keys.HasKey(S128KeyType::Source, static_cast<u64>(SourceKeyType::AESKeyGeneration)))
  65. return Loader::ResultStatus::ErrorMissingAESKeyGenerationSource;
  66. const auto sd_kek_source =
  67. keys.GetKey(S128KeyType::Source, static_cast<u64>(SourceKeyType::SDKEK));
  68. const auto aes_kek_gen =
  69. keys.GetKey(S128KeyType::Source, static_cast<u64>(SourceKeyType::AESKEKGeneration));
  70. const auto aes_key_gen =
  71. keys.GetKey(S128KeyType::Source, static_cast<u64>(SourceKeyType::AESKeyGeneration));
  72. const auto master_00 = keys.GetKey(S128KeyType::Master);
  73. const auto sd_kek =
  74. GenerateKeyEncryptionKey(sd_kek_source, master_00, aes_kek_gen, aes_key_gen);
  75. if (!keys.HasKey(S128KeyType::SDSeed))
  76. return Loader::ResultStatus::ErrorMissingSDSeed;
  77. const auto sd_seed = keys.GetKey(S128KeyType::SDSeed);
  78. if (!keys.HasKey(S256KeyType::SDKeySource, static_cast<u64>(SDKeyType::Save)))
  79. return Loader::ResultStatus::ErrorMissingSDSaveKeySource;
  80. if (!keys.HasKey(S256KeyType::SDKeySource, static_cast<u64>(SDKeyType::NCA)))
  81. return Loader::ResultStatus::ErrorMissingSDNCAKeySource;
  82. std::array<Key256, 2> sd_key_sources{
  83. keys.GetKey(S256KeyType::SDKeySource, static_cast<u64>(SDKeyType::Save)),
  84. keys.GetKey(S256KeyType::SDKeySource, static_cast<u64>(SDKeyType::NCA)),
  85. };
  86. AESCipher<Key128> cipher(sd_kek, Mode::ECB);
  87. for (size_t i = 0; i < 2; ++i) {
  88. for (size_t j = 0; j < 0x20; ++j)
  89. sd_key_sources[i][j] ^= sd_seed[j & 0xF];
  90. cipher.Transcode(sd_key_sources[i].data(), sd_key_sources[i].size(), sd_keys[i].data(),
  91. Op::Decrypt);
  92. }
  93. return Loader::ResultStatus::Success;
  94. }
  95. KeyManager::KeyManager() {
  96. // Initialize keys
  97. const std::string hactool_keys_dir = FileUtil::GetHactoolConfigurationPath();
  98. const std::string yuzu_keys_dir = FileUtil::GetUserPath(FileUtil::UserPath::KeysDir);
  99. if (Settings::values.use_dev_keys) {
  100. dev_mode = true;
  101. AttemptLoadKeyFile(yuzu_keys_dir, hactool_keys_dir, "dev.keys", false);
  102. AttemptLoadKeyFile(yuzu_keys_dir, yuzu_keys_dir, "dev.keys_autogenerated", false);
  103. } else {
  104. dev_mode = false;
  105. AttemptLoadKeyFile(yuzu_keys_dir, hactool_keys_dir, "prod.keys", false);
  106. AttemptLoadKeyFile(yuzu_keys_dir, yuzu_keys_dir, "prod.keys_autogenerated", false);
  107. }
  108. AttemptLoadKeyFile(yuzu_keys_dir, hactool_keys_dir, "title.keys", true);
  109. AttemptLoadKeyFile(yuzu_keys_dir, yuzu_keys_dir, "title.keys_autogenerated", false);
  110. }
  111. void KeyManager::LoadFromFile(const std::string& filename, bool is_title_keys) {
  112. std::ifstream file(filename);
  113. if (!file.is_open())
  114. return;
  115. std::string line;
  116. while (std::getline(file, line)) {
  117. std::vector<std::string> out;
  118. std::stringstream stream(line);
  119. std::string item;
  120. while (std::getline(stream, item, '='))
  121. out.push_back(std::move(item));
  122. if (out.size() != 2)
  123. continue;
  124. out[0].erase(std::remove(out[0].begin(), out[0].end(), ' '), out[0].end());
  125. out[1].erase(std::remove(out[1].begin(), out[1].end(), ' '), out[1].end());
  126. if (is_title_keys) {
  127. auto rights_id_raw = Common::HexStringToArray<16>(out[0]);
  128. u128 rights_id{};
  129. std::memcpy(rights_id.data(), rights_id_raw.data(), rights_id_raw.size());
  130. Key128 key = Common::HexStringToArray<16>(out[1]);
  131. s128_keys[{S128KeyType::Titlekey, rights_id[1], rights_id[0]}] = key;
  132. } else {
  133. std::transform(out[0].begin(), out[0].end(), out[0].begin(), ::tolower);
  134. if (s128_file_id.find(out[0]) != s128_file_id.end()) {
  135. const auto index = s128_file_id.at(out[0]);
  136. Key128 key = Common::HexStringToArray<16>(out[1]);
  137. s128_keys[{index.type, index.field1, index.field2}] = key;
  138. } else if (s256_file_id.find(out[0]) != s256_file_id.end()) {
  139. const auto index = s256_file_id.at(out[0]);
  140. Key256 key = Common::HexStringToArray<32>(out[1]);
  141. s256_keys[{index.type, index.field1, index.field2}] = key;
  142. }
  143. }
  144. }
  145. }
  146. void KeyManager::AttemptLoadKeyFile(const std::string& dir1, const std::string& dir2,
  147. const std::string& filename, bool title) {
  148. if (FileUtil::Exists(dir1 + DIR_SEP + filename))
  149. LoadFromFile(dir1 + DIR_SEP + filename, title);
  150. else if (FileUtil::Exists(dir2 + DIR_SEP + filename))
  151. LoadFromFile(dir2 + DIR_SEP + filename, title);
  152. }
  153. bool KeyManager::HasKey(S128KeyType id, u64 field1, u64 field2) const {
  154. return s128_keys.find({id, field1, field2}) != s128_keys.end();
  155. }
  156. bool KeyManager::HasKey(S256KeyType id, u64 field1, u64 field2) const {
  157. return s256_keys.find({id, field1, field2}) != s256_keys.end();
  158. }
  159. Key128 KeyManager::GetKey(S128KeyType id, u64 field1, u64 field2) const {
  160. if (!HasKey(id, field1, field2))
  161. return {};
  162. return s128_keys.at({id, field1, field2});
  163. }
  164. Key256 KeyManager::GetKey(S256KeyType id, u64 field1, u64 field2) const {
  165. if (!HasKey(id, field1, field2))
  166. return {};
  167. return s256_keys.at({id, field1, field2});
  168. }
  169. template <size_t Size>
  170. void KeyManager::WriteKeyToFile(bool title_key, std::string_view keyname,
  171. std::array<u8, Size> key) {
  172. const std::string yuzu_keys_dir = FileUtil::GetUserPath(FileUtil::UserPath::KeysDir);
  173. std::string filename = "title.keys_autogenerated";
  174. if (!title_key)
  175. filename = dev_mode ? "dev.keys_autogenerated" : "prod.keys_autogenerated";
  176. const auto add_info_text = !FileUtil::Exists(yuzu_keys_dir + DIR_SEP + filename);
  177. std::ofstream file(yuzu_keys_dir + DIR_SEP + filename, std::ios::app);
  178. if (!file.is_open())
  179. return;
  180. if (add_info_text) {
  181. file << "# This file is autogenerated by Yuzu" << std::endl
  182. << "# It serves to store keys that were automatically generated from the normal keys"
  183. << std::endl
  184. << "# If you are experiencing issues involving keys, it may help to delete this file"
  185. << std::endl;
  186. }
  187. file << std::endl
  188. << fmt::format("{} = {}", keyname, Common::HexArrayToString(key)) << std::endl;
  189. AttemptLoadKeyFile(yuzu_keys_dir, yuzu_keys_dir, filename, title_key);
  190. }
  191. void KeyManager::SetKey(S128KeyType id, Key128 key, u64 field1, u64 field2) {
  192. const auto iter = std::find_if(
  193. s128_file_id.begin(), s128_file_id.end(),
  194. [&id, &field1, &field2](const std::pair<std::string, KeyIndex<S128KeyType>> elem) {
  195. return std::tie(elem.second.type, elem.second.field1, elem.second.field2) ==
  196. std::tie(id, field1, field2);
  197. });
  198. if (iter != s128_file_id.end())
  199. WriteKeyToFile(id == S128KeyType::Titlekey, iter->first, key);
  200. s128_keys[{id, field1, field2}] = key;
  201. }
  202. void KeyManager::SetKey(S256KeyType id, Key256 key, u64 field1, u64 field2) {
  203. const auto iter = std::find_if(
  204. s256_file_id.begin(), s256_file_id.end(),
  205. [&id, &field1, &field2](const std::pair<std::string, KeyIndex<S256KeyType>> elem) {
  206. return std::tie(elem.second.type, elem.second.field1, elem.second.field2) ==
  207. std::tie(id, field1, field2);
  208. });
  209. if (iter != s256_file_id.end())
  210. WriteKeyToFile(false, iter->first, key);
  211. s256_keys[{id, field1, field2}] = key;
  212. }
  213. bool KeyManager::KeyFileExists(bool title) {
  214. const std::string hactool_keys_dir = FileUtil::GetHactoolConfigurationPath();
  215. const std::string yuzu_keys_dir = FileUtil::GetUserPath(FileUtil::UserPath::KeysDir);
  216. if (title) {
  217. return FileUtil::Exists(hactool_keys_dir + DIR_SEP + "title.keys") ||
  218. FileUtil::Exists(yuzu_keys_dir + DIR_SEP + "title.keys");
  219. }
  220. if (Settings::values.use_dev_keys) {
  221. return FileUtil::Exists(hactool_keys_dir + DIR_SEP + "dev.keys") ||
  222. FileUtil::Exists(yuzu_keys_dir + DIR_SEP + "dev.keys");
  223. }
  224. return FileUtil::Exists(hactool_keys_dir + DIR_SEP + "prod.keys") ||
  225. FileUtil::Exists(yuzu_keys_dir + DIR_SEP + "prod.keys");
  226. }
  227. void KeyManager::DeriveSDSeedLazy() {
  228. if (!HasKey(S128KeyType::SDSeed)) {
  229. const auto res = DeriveSDSeed();
  230. if (res != boost::none)
  231. SetKey(S128KeyType::SDSeed, res.get());
  232. }
  233. }
  234. const boost::container::flat_map<std::string, KeyIndex<S128KeyType>> KeyManager::s128_file_id = {
  235. {"master_key_00", {S128KeyType::Master, 0, 0}},
  236. {"master_key_01", {S128KeyType::Master, 1, 0}},
  237. {"master_key_02", {S128KeyType::Master, 2, 0}},
  238. {"master_key_03", {S128KeyType::Master, 3, 0}},
  239. {"master_key_04", {S128KeyType::Master, 4, 0}},
  240. {"package1_key_00", {S128KeyType::Package1, 0, 0}},
  241. {"package1_key_01", {S128KeyType::Package1, 1, 0}},
  242. {"package1_key_02", {S128KeyType::Package1, 2, 0}},
  243. {"package1_key_03", {S128KeyType::Package1, 3, 0}},
  244. {"package1_key_04", {S128KeyType::Package1, 4, 0}},
  245. {"package2_key_00", {S128KeyType::Package2, 0, 0}},
  246. {"package2_key_01", {S128KeyType::Package2, 1, 0}},
  247. {"package2_key_02", {S128KeyType::Package2, 2, 0}},
  248. {"package2_key_03", {S128KeyType::Package2, 3, 0}},
  249. {"package2_key_04", {S128KeyType::Package2, 4, 0}},
  250. {"titlekek_00", {S128KeyType::Titlekek, 0, 0}},
  251. {"titlekek_01", {S128KeyType::Titlekek, 1, 0}},
  252. {"titlekek_02", {S128KeyType::Titlekek, 2, 0}},
  253. {"titlekek_03", {S128KeyType::Titlekek, 3, 0}},
  254. {"titlekek_04", {S128KeyType::Titlekek, 4, 0}},
  255. {"eticket_rsa_kek", {S128KeyType::ETicketRSAKek, 0, 0}},
  256. {"key_area_key_application_00",
  257. {S128KeyType::KeyArea, 0, static_cast<u64>(KeyAreaKeyType::Application)}},
  258. {"key_area_key_application_01",
  259. {S128KeyType::KeyArea, 1, static_cast<u64>(KeyAreaKeyType::Application)}},
  260. {"key_area_key_application_02",
  261. {S128KeyType::KeyArea, 2, static_cast<u64>(KeyAreaKeyType::Application)}},
  262. {"key_area_key_application_03",
  263. {S128KeyType::KeyArea, 3, static_cast<u64>(KeyAreaKeyType::Application)}},
  264. {"key_area_key_application_04",
  265. {S128KeyType::KeyArea, 4, static_cast<u64>(KeyAreaKeyType::Application)}},
  266. {"key_area_key_ocean_00", {S128KeyType::KeyArea, 0, static_cast<u64>(KeyAreaKeyType::Ocean)}},
  267. {"key_area_key_ocean_01", {S128KeyType::KeyArea, 1, static_cast<u64>(KeyAreaKeyType::Ocean)}},
  268. {"key_area_key_ocean_02", {S128KeyType::KeyArea, 2, static_cast<u64>(KeyAreaKeyType::Ocean)}},
  269. {"key_area_key_ocean_03", {S128KeyType::KeyArea, 3, static_cast<u64>(KeyAreaKeyType::Ocean)}},
  270. {"key_area_key_ocean_04", {S128KeyType::KeyArea, 4, static_cast<u64>(KeyAreaKeyType::Ocean)}},
  271. {"key_area_key_system_00", {S128KeyType::KeyArea, 0, static_cast<u64>(KeyAreaKeyType::System)}},
  272. {"key_area_key_system_01", {S128KeyType::KeyArea, 1, static_cast<u64>(KeyAreaKeyType::System)}},
  273. {"key_area_key_system_02", {S128KeyType::KeyArea, 2, static_cast<u64>(KeyAreaKeyType::System)}},
  274. {"key_area_key_system_03", {S128KeyType::KeyArea, 3, static_cast<u64>(KeyAreaKeyType::System)}},
  275. {"key_area_key_system_04", {S128KeyType::KeyArea, 4, static_cast<u64>(KeyAreaKeyType::System)}},
  276. {"sd_card_kek_source", {S128KeyType::Source, static_cast<u64>(SourceKeyType::SDKEK), 0}},
  277. {"aes_kek_generation_source",
  278. {S128KeyType::Source, static_cast<u64>(SourceKeyType::AESKEKGeneration), 0}},
  279. {"aes_key_generation_source",
  280. {S128KeyType::Source, static_cast<u64>(SourceKeyType::AESKeyGeneration), 0}},
  281. {"sd_seed", {S128KeyType::SDSeed, 0, 0}},
  282. };
  283. const boost::container::flat_map<std::string, KeyIndex<S256KeyType>> KeyManager::s256_file_id = {
  284. {"header_key", {S256KeyType::Header, 0, 0}},
  285. {"sd_card_save_key_source", {S256KeyType::SDKeySource, static_cast<u64>(SDKeyType::Save), 0}},
  286. {"sd_card_nca_key_source", {S256KeyType::SDKeySource, static_cast<u64>(SDKeyType::NCA), 0}},
  287. };
  288. } // namespace Core::Crypto