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Storing encryption trophy key in config.toml (#1930)
* get trophy key from toml file * clang format fix * get trophy key from toml file * clang format fix * merge fixes * Update config.cpp
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d69341fd31
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3 changed files with 33 additions and 0 deletions
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@ -67,6 +67,7 @@ static int cursorHideTimeout = 5; // 5 seconds (default)
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static bool separateupdatefolder = false;
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static bool separateupdatefolder = false;
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static bool compatibilityData = false;
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static bool compatibilityData = false;
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static bool checkCompatibilityOnStartup = false;
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static bool checkCompatibilityOnStartup = false;
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static std::string trophyKey = "";
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// Gui
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// Gui
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std::vector<std::filesystem::path> settings_install_dirs = {};
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std::vector<std::filesystem::path> settings_install_dirs = {};
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@ -91,6 +92,14 @@ std::string emulator_language = "en";
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// Language
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// Language
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u32 m_language = 1; // english
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u32 m_language = 1; // english
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std::string getTrophyKey() {
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return trophyKey;
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}
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void setTrophyKey(std::string key) {
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trophyKey = key;
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}
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bool isNeoMode() {
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bool isNeoMode() {
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return isNeo;
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return isNeo;
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}
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}
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@ -652,6 +661,11 @@ void load(const std::filesystem::path& path) {
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m_language = toml::find_or<int>(settings, "consoleLanguage", 1);
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m_language = toml::find_or<int>(settings, "consoleLanguage", 1);
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}
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}
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if (data.contains("Keys")) {
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const toml::value& keys = data.at("Keys");
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trophyKey = toml::find_or<std::string>(keys, "TrophyKey", "");
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}
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}
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}
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void save(const std::filesystem::path& path) {
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void save(const std::filesystem::path& path) {
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@ -712,6 +726,8 @@ void save(const std::filesystem::path& path) {
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data["Debug"]["DebugDump"] = isDebugDump;
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data["Debug"]["DebugDump"] = isDebugDump;
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data["Debug"]["CollectShader"] = isShaderDebug;
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data["Debug"]["CollectShader"] = isShaderDebug;
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data["Keys"]["TrophyKey"] = trophyKey;
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std::vector<std::string> install_dirs;
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std::vector<std::string> install_dirs;
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for (const auto& dirString : settings_install_dirs) {
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for (const auto& dirString : settings_install_dirs) {
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install_dirs.emplace_back(std::string{fmt::UTF(dirString.u8string()).data});
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install_dirs.emplace_back(std::string{fmt::UTF(dirString.u8string()).data});
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@ -15,6 +15,9 @@ void load(const std::filesystem::path& path);
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void save(const std::filesystem::path& path);
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void save(const std::filesystem::path& path);
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void saveMainWindow(const std::filesystem::path& path);
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void saveMainWindow(const std::filesystem::path& path);
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std::string getTrophyKey();
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void setTrophyKey(std::string key);
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bool isNeoMode();
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bool isNeoMode();
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bool isFullscreenMode();
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bool isFullscreenMode();
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bool getPlayBGM();
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bool getPlayBGM();
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@ -2,6 +2,7 @@
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// SPDX-License-Identifier: GPL-2.0-or-later
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// SPDX-License-Identifier: GPL-2.0-or-later
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#include <array>
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#include <array>
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#include <common/config.h>
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#include "crypto.h"
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#include "crypto.h"
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CryptoPP::RSA::PrivateKey Crypto::key_pkg_derived_key3_keyset_init() {
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CryptoPP::RSA::PrivateKey Crypto::key_pkg_derived_key3_keyset_init() {
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@ -137,6 +138,13 @@ void Crypto::aesCbcCfb128DecryptEntry(std::span<const CryptoPP::byte, 32> ivkey,
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}
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}
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}
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}
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static void hexToBytes(const char* hex, unsigned char* dst) {
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for (size_t i = 0; hex[i] != 0; i++) {
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const unsigned char value = (hex[i] < 0x3A) ? (hex[i] - 0x30) : (hex[i] - 0x37);
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dst[i / 2] |= ((i % 2) == 0) ? (value << 4) : (value);
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}
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}
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void Crypto::decryptEFSM(std::span<CryptoPP::byte, 16> NPcommID,
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void Crypto::decryptEFSM(std::span<CryptoPP::byte, 16> NPcommID,
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std::span<CryptoPP::byte, 16> efsmIv, std::span<CryptoPP::byte> ciphertext,
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std::span<CryptoPP::byte, 16> efsmIv, std::span<CryptoPP::byte> ciphertext,
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std::span<CryptoPP::byte> decrypted) {
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std::span<CryptoPP::byte> decrypted) {
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@ -145,9 +153,15 @@ void Crypto::decryptEFSM(std::span<CryptoPP::byte, 16> NPcommID,
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// step 1: Encrypt NPcommID
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// step 1: Encrypt NPcommID
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CryptoPP::CBC_Mode<CryptoPP::AES>::Encryption encrypt;
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CryptoPP::CBC_Mode<CryptoPP::AES>::Encryption encrypt;
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const char* TrophyKeyget = Config::getTrophyKey().c_str();
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std::vector<CryptoPP::byte> TrophyKey;
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hexToBytes(TrophyKeyget, TrophyKey.data());
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std::vector<CryptoPP::byte> trpKey(16);
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std::vector<CryptoPP::byte> trpKey(16);
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encrypt.ProcessData(trpKey.data(), NPcommID.data(), 16);
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encrypt.ProcessData(trpKey.data(), NPcommID.data(), 16);
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encrypt.SetKeyWithIV(TrophyKey.data(), TrophyKey.size(), TrophyIV.data());
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// step 2: decrypt efsm.
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// step 2: decrypt efsm.
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CryptoPP::CBC_Mode<CryptoPP::AES>::Decryption decrypt;
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CryptoPP::CBC_Mode<CryptoPP::AES>::Decryption decrypt;
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decrypt.SetKeyWithIV(trpKey.data(), trpKey.size(), efsmIv.data());
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decrypt.SetKeyWithIV(trpKey.data(), trpKey.size(), efsmIv.data());
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