Factorize decryptADEPTKey() for ePub and PDF
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afab1c0012
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24bae89095
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@ -232,7 +232,7 @@ namespace gourou
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void fetchLicenseServiceCertificate(const std::string& licenseURL,
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void fetchLicenseServiceCertificate(const std::string& licenseURL,
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const std::string& operatorURL);
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const std::string& operatorURL);
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std::string encryptedKeyFirstPass(pugi::xml_document& rightsDoc, const std::string& encryptedKey, const std::string& keyType);
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std::string encryptedKeyFirstPass(pugi::xml_document& rightsDoc, const std::string& encryptedKey, const std::string& keyType);
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void decryptADEPTKey(const std::string& encryptedKey, unsigned char* decryptedKey);
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void decryptADEPTKey(pugi::xml_document& rightsDoc, unsigned char* decryptedKey, const unsigned char* encryptionKey=0, unsigned encryptionKeySize=0);
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void removeEPubDRM(const std::string& filenameIn, const std::string& filenameOut, const unsigned char* encryptionKey, unsigned encryptionKeySize);
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void removeEPubDRM(const std::string& filenameIn, const std::string& filenameOut, const unsigned char* encryptionKey, unsigned encryptionKeySize);
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void generatePDFObjectKey(int version,
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void generatePDFObjectKey(int version,
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const unsigned char* masterKey, unsigned int masterKeyLength,
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const unsigned char* masterKey, unsigned int masterKeyLength,
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@ -944,23 +944,6 @@ namespace gourou
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int DRMProcessor::getLogLevel() {return (int)gourou::logLevel;}
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int DRMProcessor::getLogLevel() {return (int)gourou::logLevel;}
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void DRMProcessor::setLogLevel(int logLevel) {gourou::logLevel = (GOUROU_LOG_LEVEL)logLevel;}
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void DRMProcessor::setLogLevel(int logLevel) {gourou::logLevel = (GOUROU_LOG_LEVEL)logLevel;}
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void DRMProcessor::decryptADEPTKey(const std::string& encryptedKey, unsigned char* decryptedKey)
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{
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if (encryptedKey.size() != 172)
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EXCEPTION(DRM_INVALID_KEY_SIZE, "Invalid encrypted key size (" << encryptedKey.size() << "). DRM version not supported");
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ByteArray arrayEncryptedKey = ByteArray::fromBase64(encryptedKey);
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std::string privateKeyData = user->getPrivateLicenseKey();
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ByteArray privateRSAKey = ByteArray::fromBase64(privateKeyData);
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dumpBuffer(gourou::LG_LOG_DEBUG, "To decrypt : ", arrayEncryptedKey.data(), arrayEncryptedKey.length());
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client->RSAPrivateDecrypt(privateRSAKey.data(), privateRSAKey.length(),
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RSAInterface::RSA_KEY_PKCS8, "",
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arrayEncryptedKey.data(), arrayEncryptedKey.length(), decryptedKey);
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}
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/**
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/**
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* RSA Key can be over encrypted with AES128-CBC if keyType attribute is set
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* RSA Key can be over encrypted with AES128-CBC if keyType attribute is set
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* remainder = keyType % 16
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* remainder = keyType % 16
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@ -1009,11 +992,10 @@ namespace gourou
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for(unsigned int i=0; i<sizeof(iv); i++)
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for(unsigned int i=0; i<sizeof(iv); i++)
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iv[i] = _deviceId[i] ^ _fulfillmentId[i] ^ _voucherId[i];
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iv[i] = _deviceId[i] ^ _fulfillmentId[i] ^ _voucherId[i];
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ByteArray arrayEncryptedKey = ByteArray::fromBase64(encryptedKey);
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dumpBuffer(gourou::LG_LOG_DEBUG, "First pass key : ", key, sizeof(key));
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dumpBuffer(gourou::LG_LOG_DEBUG, "First pass key : ", key, sizeof(key));
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dumpBuffer(gourou::LG_LOG_DEBUG, "First pass IV : ", iv, sizeof(iv));
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dumpBuffer(gourou::LG_LOG_DEBUG, "First pass IV : ", iv, sizeof(iv));
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ByteArray arrayEncryptedKey = ByteArray::fromBase64(encryptedKey);
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unsigned char* clearRSAKey = new unsigned char[arrayEncryptedKey.size()];
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unsigned char* clearRSAKey = new unsigned char[arrayEncryptedKey.size()];
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client->decrypt(CryptoInterface::ALGO_AES, CryptoInterface::CHAIN_CBC,
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client->decrypt(CryptoInterface::ALGO_AES, CryptoInterface::CHAIN_CBC,
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@ -1041,7 +1023,51 @@ namespace gourou
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return res.toBase64();
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return res.toBase64();
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}
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}
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void DRMProcessor::decryptADEPTKey(pugi::xml_document& rightsDoc, unsigned char* decryptedKey, const unsigned char* encryptionKey, unsigned encryptionKeySize)
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{
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unsigned char rsaKey[RSA_KEY_SIZE];
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if (!encryptionKey)
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{
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std::string encryptedKey = extractTextElem(rightsDoc, "/adept:rights/licenseToken/encryptedKey");
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std::string keyType = extractTextAttribute(rightsDoc, "/adept:rights/licenseToken/encryptedKey", "keyType", false);
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if (keyType != "")
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encryptedKey = encryptedKeyFirstPass(rightsDoc, encryptedKey, keyType);
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if (encryptedKey.size() != 172)
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EXCEPTION(DRM_INVALID_KEY_SIZE, "Invalid encrypted key size (" << encryptedKey.size() << "). DRM version not supported");
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ByteArray arrayEncryptedKey = ByteArray::fromBase64(encryptedKey);
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std::string privateKeyData = user->getPrivateLicenseKey();
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ByteArray privateRSAKey = ByteArray::fromBase64(privateKeyData);
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dumpBuffer(gourou::LG_LOG_DEBUG, "To decrypt : ", arrayEncryptedKey.data(), arrayEncryptedKey.length());
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client->RSAPrivateDecrypt(privateRSAKey.data(), privateRSAKey.length(),
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RSAInterface::RSA_KEY_PKCS8, "",
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arrayEncryptedKey.data(), arrayEncryptedKey.length(), rsaKey);
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dumpBuffer(gourou::LG_LOG_DEBUG, "Decrypted : ", rsaKey, sizeof(rsaKey));
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if (rsaKey[0] != 0x00 || rsaKey[1] != 0x02 ||
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rsaKey[RSA_KEY_SIZE-16-1] != 0x00)
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EXCEPTION(DRM_ERR_ENCRYPTION_KEY, "Unable to retrieve encryption key");
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memcpy(decryptedKey, &rsaKey[sizeof(rsaKey)-16], 16);
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}
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else
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{
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GOUROU_LOG(DEBUG, "Use provided encryption key");
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if (encryptionKeySize != 16)
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EXCEPTION(DRM_ERR_ENCRYPTION_KEY, "Provided encryption key must be 16 bytes");
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memcpy(decryptedKey, encryptionKey, encryptionKeySize);
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}
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}
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void DRMProcessor::removeEPubDRM(const std::string& filenameIn, const std::string& filenameOut,
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void DRMProcessor::removeEPubDRM(const std::string& filenameIn, const std::string& filenameOut,
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const unsigned char* encryptionKey, unsigned encryptionKeySize)
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const unsigned char* encryptionKey, unsigned encryptionKeySize)
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{
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{
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@ -1053,32 +1079,9 @@ namespace gourou
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pugi::xml_document rightsDoc;
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pugi::xml_document rightsDoc;
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rightsDoc.load_string((const char*)zipData.data());
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rightsDoc.load_string((const char*)zipData.data());
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std::string encryptedKey = extractTextElem(rightsDoc, "/adept:rights/licenseToken/encryptedKey");
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unsigned char decryptedKey[16];
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unsigned char decryptedKey[RSA_KEY_SIZE];
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if (!encryptionKey)
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decryptADEPTKey(rightsDoc, decryptedKey, encryptionKey, encryptionKeySize);
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{
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std::string keyType = extractTextAttribute(rightsDoc, "/adept:rights/licenseToken/encryptedKey", "keyType", false);
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if (keyType != "")
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encryptedKey = encryptedKeyFirstPass(rightsDoc, encryptedKey, keyType);
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decryptADEPTKey(encryptedKey, decryptedKey);
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dumpBuffer(gourou::LG_LOG_DEBUG, "Decrypted : ", decryptedKey, RSA_KEY_SIZE);
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if (decryptedKey[0] != 0x00 || decryptedKey[1] != 0x02 ||
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decryptedKey[RSA_KEY_SIZE-16-1] != 0x00)
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EXCEPTION(DRM_ERR_ENCRYPTION_KEY, "Unable to retrieve encryption key");
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}
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else
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{
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GOUROU_LOG(DEBUG, "Use provided encryption key");
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if (encryptionKeySize != 16)
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EXCEPTION(DRM_ERR_ENCRYPTION_KEY, "Provided encryption key must be 16 bytes");
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memcpy(&decryptedKey[sizeof(decryptedKey)-16], encryptionKey, encryptionKeySize);
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}
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client->zipReadFile(zipHandler, "META-INF/encryption.xml", zipData);
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client->zipReadFile(zipHandler, "META-INF/encryption.xml", zipData);
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pugi::xml_document encryptionDoc;
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pugi::xml_document encryptionDoc;
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@ -1117,7 +1120,7 @@ namespace gourou
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unsigned int dataOutLength;
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unsigned int dataOutLength;
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client->decrypt(CryptoInterface::ALGO_AES, CryptoInterface::CHAIN_CBC,
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client->decrypt(CryptoInterface::ALGO_AES, CryptoInterface::CHAIN_CBC,
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decryptedKey+sizeof(decryptedKey)-16, 16, /* Key */
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decryptedKey, sizeof(decryptedKey), /* Key */
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_data, 16, /* IV */
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_data, 16, /* IV */
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&_data[16], zipData.length()-16,
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&_data[16], zipData.length()-16,
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_clearData, &dataOutLength);
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_clearData, &dataOutLength);
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@ -1210,7 +1213,7 @@ namespace gourou
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std::vector<uPDFParser::Object*> objects = parser.objects();
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std::vector<uPDFParser::Object*> objects = parser.objects();
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std::vector<uPDFParser::Object*>::iterator it;
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std::vector<uPDFParser::Object*>::iterator it;
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std::vector<uPDFParser::Object*>::reverse_iterator rIt;
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std::vector<uPDFParser::Object*>::reverse_iterator rIt;
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unsigned char decryptedKey[RSA_KEY_SIZE];
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unsigned char decryptedKey[16];
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int ebxId;
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int ebxId;
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for(rIt = objects.rbegin(); rIt != objects.rend(); rIt++)
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for(rIt = objects.rbegin(); rIt != objects.rend(); rIt++)
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@ -1249,31 +1252,7 @@ namespace gourou
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pugi::xml_document rightsDoc;
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pugi::xml_document rightsDoc;
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rightsDoc.load_string((const char*)rightsStr.data());
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rightsDoc.load_string((const char*)rightsStr.data());
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std::string encryptedKey = extractTextElem(rightsDoc, "/adept:rights/licenseToken/encryptedKey");
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decryptADEPTKey(rightsDoc, decryptedKey, encryptionKey, encryptionKeySize);
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if (!encryptionKey)
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{
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std::string keyType = extractTextAttribute(rightsDoc, "/adept:rights/licenseToken/encryptedKey", "keyType", false);
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if (keyType != "")
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encryptedKey = encryptedKeyFirstPass(rightsDoc, encryptedKey, keyType);
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decryptADEPTKey(encryptedKey, decryptedKey);
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dumpBuffer(gourou::LG_LOG_DEBUG, "Decrypted : ", decryptedKey, RSA_KEY_SIZE);
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if (decryptedKey[0] != 0x00 || decryptedKey[1] != 0x02 ||
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decryptedKey[RSA_KEY_SIZE-16-1] != 0x00)
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EXCEPTION(DRM_ERR_ENCRYPTION_KEY, "Unable to retrieve encryption key");
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}
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else
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{
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GOUROU_LOG(DEBUG, "Use provided encryption key");
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if (encryptionKeySize != 16)
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EXCEPTION(DRM_ERR_ENCRYPTION_KEY, "Provided encryption key must be 16 bytes");
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memcpy(&decryptedKey[sizeof(decryptedKey)-16], encryptionKey, encryptionKeySize);
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}
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ebxId = ebx->objectId();
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ebxId = ebx->objectId();
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GOUROU_LOG(DEBUG, "Obj " << object->objectId());
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GOUROU_LOG(DEBUG, "Obj " << object->objectId());
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unsigned char tmpKey[16];
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unsigned char tmpKey[sizeof(decryptedKey)];
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generatePDFObjectKey(ebxVersion->value(),
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generatePDFObjectKey(ebxVersion->value(),
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decryptedKey+sizeof(decryptedKey)-16, 16,
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decryptedKey, sizeof(decryptedKey),
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object->objectId(), object->generationNumber(),
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object->objectId(), object->generationNumber(),
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tmpKey);
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tmpKey);
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