forked from soutade/libgourou
Fix over encrypted RSA key decryption algorithm
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7878f91cdd
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afab1c0012
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@ -231,7 +231,7 @@ namespace gourou
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void buildSignInRequest(pugi::xml_document& signInRequest, const std::string& adobeID, const std::string& adobePassword, const std::string& authenticationCertificate);
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void fetchLicenseServiceCertificate(const std::string& licenseURL,
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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, ITEM_TYPE type);
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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 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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@ -963,13 +963,13 @@ namespace gourou
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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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* For EPUB, Key = SHA256(keyType)[14:22] || SHA256(keyType)[7:13]
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* For PDF, Key = SHA256(keyType)[6:19] || SHA256(keyType)[3:6]
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* remainder = keyType % 16
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* Key = SHA256(keyType)[remainder*2:remainder*2+(16-remainder)] || SHA256(keyType)[16-remainder:16]
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* IV = DeviceID ^ FulfillmentId ^ VoucherId
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*
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* @return Base64 encoded decrypted key
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*/
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std::string DRMProcessor::encryptedKeyFirstPass(pugi::xml_document& rightsDoc, const std::string& encryptedKey, const std::string& keyType, ITEM_TYPE type)
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std::string DRMProcessor::encryptedKeyFirstPass(pugi::xml_document& rightsDoc, const std::string& encryptedKey, const std::string& keyType)
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{
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unsigned char digest[32], key[16], iv[16];
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unsigned int dataOutLength;
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@ -979,18 +979,12 @@ namespace gourou
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dumpBuffer(gourou::LG_LOG_DEBUG, "SHA of KeyType : ", digest, sizeof(digest));
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switch(type)
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{
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case EPUB:
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memcpy(key, &digest[14], 9);
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memcpy(&key[9], &digest[7], 7);
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break;
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case PDF:
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memcpy(key, &digest[6], 13);
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memcpy(&key[13], &digest[3], 3);
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break;
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}
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long nonce = std::stol(keyType);
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int remainder = nonce % 16;
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memcpy(key, &digest[remainder*2], 16-remainder);
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memcpy(&key[16-remainder], &digest[remainder], remainder);
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id = extractTextElem(rightsDoc, "/adept:rights/licenseToken/device");
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if (id == "")
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EXCEPTION(DRM_ERR_ENCRYPTION_KEY_FP, "Device id not found in rights.xml");
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@ -1021,7 +1015,7 @@ namespace gourou
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dumpBuffer(gourou::LG_LOG_DEBUG, "First pass IV : ", iv, sizeof(iv));
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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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(const unsigned char*)key, (unsigned int)sizeof(key),
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(const unsigned char*)iv, (unsigned int)sizeof(iv),
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@ -1067,7 +1061,7 @@ namespace gourou
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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, EPUB);
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encryptedKey = encryptedKeyFirstPass(rightsDoc, encryptedKey, keyType);
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decryptADEPTKey(encryptedKey, decryptedKey);
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@ -1262,7 +1256,7 @@ namespace gourou
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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, PDF);
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encryptedKey = encryptedKeyFirstPass(rightsDoc, encryptedKey, keyType);
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decryptADEPTKey(encryptedKey, decryptedKey);
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