forked from soutade/libgourou
Make DRMProcessorClient API more consistent
This commit is contained in:
parent
7b8c7acbad
commit
e28dc39a68
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@ -47,20 +47,16 @@ namespace gourou
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* @param handler Digest handler
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* @param data Data to digest
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* @param length Length of data
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*
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* @return OK/KO
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*/
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virtual int digestUpdate(void* handler, unsigned char* data, unsigned int length) = 0;
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virtual void digestUpdate(void* handler, unsigned char* data, unsigned int length) = 0;
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/**
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* @brief Finalize digest with remained buffered data and destroy handler
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*
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* @param handler Digest handler
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* @param digestOut Digest result (buffer must be pre allocated with right size)
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*
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* @return OK/KO
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*/
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virtual int digestFinalize(void* handler, unsigned char* digestOut) = 0;
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virtual void digestFinalize(void* handler, unsigned char* digestOut) = 0;
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/**
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* @brief Global digest function
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@ -69,10 +65,8 @@ namespace gourou
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* @param data Data to digest
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* @param length Length of data
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* @param digestOut Digest result (buffer must be pre allocated with right size)
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*
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* @return OK/KO
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*/
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virtual int digest(const std::string& digestName, unsigned char* data, unsigned int length, unsigned char* digestOut) = 0;
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virtual void digest(const std::string& digestName, unsigned char* data, unsigned int length, unsigned char* digestOut) = 0;
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};
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class RandomInterface
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@ -239,7 +233,7 @@ namespace gourou
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* @param dataOut Encrypted data
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* @param dataOutLength Length of encrypted data
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*/
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virtual void Encrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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virtual void encrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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const unsigned char* key, unsigned int keyLength,
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const unsigned char* iv, unsigned int ivLength,
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const unsigned char* dataIn, unsigned int dataInLength,
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@ -256,7 +250,7 @@ namespace gourou
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*
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* @return AES handler
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*/
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virtual void* EncryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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virtual void* encryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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const unsigned char* key, unsigned int keyLength,
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const unsigned char* iv=0, unsigned int ivLength=0) = 0;
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@ -269,18 +263,18 @@ namespace gourou
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* @param dataOut Encrypted data
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* @param dataOutLength Length of encrypted data
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*/
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virtual void EncryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
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virtual void encryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
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unsigned char* dataOut, unsigned int* dataOutLength) = 0;
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/**
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* @brief Finalizeencryption (pad and encrypt last block if needed)
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* @brief Finalize encryption (pad and encrypt last block if needed)
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* Destroy handler at the end
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*
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* @param handler Crypto handler
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* @param dataOut Last block of encrypted data
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* @param dataOutLength Length of encrypted data
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*/
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virtual void EncryptFinalize(void* handler, unsigned char* dataOut, unsigned int* dataOutLength) = 0;
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virtual void encryptFinalize(void* handler, unsigned char* dataOut, unsigned int* dataOutLength) = 0;
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/**
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* @brief Do decryption. If length of data is not multiple of block size, PKCS#5 padding is done
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@ -296,7 +290,7 @@ namespace gourou
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* @param dataOut Encrypted data
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* @param dataOutLength Length of encrypted data
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*/
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virtual void Decrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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virtual void decrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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const unsigned char* key, unsigned int keyLength,
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const unsigned char* iv, unsigned int ivLength,
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const unsigned char* dataIn, unsigned int dataInLength,
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@ -313,7 +307,7 @@ namespace gourou
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*
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* @return AES handler
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*/
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virtual void* DecryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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virtual void* decryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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const unsigned char* key, unsigned int keyLength,
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const unsigned char* iv=0, unsigned int ivLength=0) = 0;
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@ -326,7 +320,7 @@ namespace gourou
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* @param dataOut Decrypted data
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* @param dataOutLength Length of decrypted data
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*/
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virtual void DecryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
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virtual void decryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
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unsigned char* dataOut, unsigned int* dataOutLength) = 0;
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/**
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* @brief Finalize decryption (decrypt last block and remove padding if it is set).
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@ -336,7 +330,7 @@ namespace gourou
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* @param dataOut Last block decrypted data
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* @param dataOutLength Length of decrypted data
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*/
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virtual void DecryptFinalize(void* handler, unsigned char* dataOut, unsigned int* dataOutLength) = 0;
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virtual void decryptFinalize(void* handler, unsigned char* dataOut, unsigned int* dataOutLength) = 0;
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};
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@ -117,6 +117,8 @@ namespace gourou
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CLIENT_INVALID_PKCS8,
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CLIENT_FILE_ERROR,
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CLIENT_OSSL_ERROR,
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CLIENT_CRYPT_ERROR,
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CLIENT_DIGEST_ERROR,
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};
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enum DRM_REMOVAL_ERROR {
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@ -869,7 +869,7 @@ namespace gourou
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// Generate IV in front
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client->randBytes(encrypted_data, 16);
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client->Encrypt(CryptoInterface::ALGO_AES, CryptoInterface::CHAIN_CBC,
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client->encrypt(CryptoInterface::ALGO_AES, CryptoInterface::CHAIN_CBC,
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deviceKey, 16, encrypted_data, 16,
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data, len,
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encrypted_data+16, &outLen);
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@ -888,7 +888,7 @@ namespace gourou
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const unsigned char* deviceKey = device->getDeviceKey();
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unsigned char* decrypted_data = new unsigned char[len-16];
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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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deviceKey, 16, data, 16,
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data+16, len-16,
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decrypted_data, &outLen);
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@ -1009,7 +1009,7 @@ namespace gourou
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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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(const unsigned char*)key, (unsigned int)sizeof(key),
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(const unsigned char*)iv, (unsigned int)sizeof(iv),
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(const unsigned char*)arrayEncryptedKey.data(), arrayEncryptedKey.size(),
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@ -1109,7 +1109,7 @@ namespace gourou
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gourou::ByteArray inflateData(true);
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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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_data, 16, /* IV */
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&_data[16], zipData.length()-16,
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@ -1313,7 +1313,7 @@ namespace gourou
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GOUROU_LOG(DEBUG, "Decrypt string " << dictIt->first << " " << dataLength);
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client->Decrypt(CryptoInterface::ALGO_RC4, CryptoInterface::CHAIN_ECB,
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client->decrypt(CryptoInterface::ALGO_RC4, CryptoInterface::CHAIN_ECB,
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tmpKey, 16, /* Key */
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NULL, 0, /* IV */
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encryptedData, dataLength,
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@ -1346,7 +1346,7 @@ namespace gourou
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GOUROU_LOG(DEBUG, "Decrypt stream id " << object->objectId() << ", size " << stream->dataLength());
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client->Decrypt(CryptoInterface::ALGO_RC4, CryptoInterface::CHAIN_ECB,
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client->decrypt(CryptoInterface::ALGO_RC4, CryptoInterface::CHAIN_ECB,
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tmpKey, 16, /* Key */
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NULL, 0, /* IV */
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encryptedData, dataLength,
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@ -82,32 +82,32 @@ void* DRMProcessorClientImpl::createDigest(const std::string& digestName)
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if (EVP_DigestInit(md_ctx, md) != 1)
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{
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EVP_MD_CTX_free(md_ctx);
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return 0;
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EXCEPTION(gourou::CLIENT_DIGEST_ERROR, ERR_error_string(ERR_get_error(), NULL));
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}
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return md_ctx;
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}
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int DRMProcessorClientImpl::digestUpdate(void* handler, unsigned char* data, unsigned int length)
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void DRMProcessorClientImpl::digestUpdate(void* handler, unsigned char* data, unsigned int length)
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{
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return (EVP_DigestUpdate((EVP_MD_CTX *)handler, data, length)) ? 0 : -1;
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if (EVP_DigestUpdate((EVP_MD_CTX *)handler, data, length) != 1)
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EXCEPTION(gourou::CLIENT_DIGEST_ERROR, ERR_error_string(ERR_get_error(), NULL));
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}
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int DRMProcessorClientImpl::digestFinalize(void* handler, unsigned char* digestOut)
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void DRMProcessorClientImpl::digestFinalize(void* handler, unsigned char* digestOut)
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{
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int res = EVP_DigestFinal((EVP_MD_CTX *)handler, digestOut, NULL);
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EVP_MD_CTX_free((EVP_MD_CTX *)handler);
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return (res == 1) ? 0 : -1;
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if (res <= 0)
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EXCEPTION(gourou::CLIENT_DIGEST_ERROR, ERR_error_string(ERR_get_error(), NULL));
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}
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int DRMProcessorClientImpl::digest(const std::string& digestName, unsigned char* data, unsigned int length, unsigned char* digestOut)
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void DRMProcessorClientImpl::digest(const std::string& digestName, unsigned char* data, unsigned int length, unsigned char* digestOut)
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{
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void* handler = createDigest(digestName);
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if (!handler)
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return -1;
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if (digestUpdate(handler, data, length))
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return -1;
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return digestFinalize(handler, digestOut);
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digestUpdate(handler, data, length);
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digestFinalize(handler, digestOut);
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}
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/* Random interface */
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@ -506,24 +506,27 @@ void DRMProcessorClientImpl::extractCertificate(const unsigned char* RSAKey, uns
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}
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/* Crypto interface */
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void DRMProcessorClientImpl::Encrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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void DRMProcessorClientImpl::encrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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const unsigned char* key, unsigned int keyLength,
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const unsigned char* iv, unsigned int ivLength,
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const unsigned char* dataIn, unsigned int dataInLength,
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unsigned char* dataOut, unsigned int* dataOutLength)
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{
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void* handler = EncryptInit(algo, chaining, key, keyLength, iv, ivLength);
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EncryptUpdate(handler, dataIn, dataInLength, dataOut, dataOutLength);
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EncryptFinalize(handler, dataOut+*dataOutLength, dataOutLength);
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void* handler = encryptInit(algo, chaining, key, keyLength, iv, ivLength);
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encryptUpdate(handler, dataIn, dataInLength, dataOut, dataOutLength);
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encryptFinalize(handler, dataOut+*dataOutLength, dataOutLength);
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}
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void* DRMProcessorClientImpl::EncryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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void* DRMProcessorClientImpl::encryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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const unsigned char* key, unsigned int keyLength,
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const unsigned char* iv, unsigned int ivLength)
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{
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EVP_CIPHER_CTX *ctx = EVP_CIPHER_CTX_new();
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int ret = 0;
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if (algo == ALGO_AES)
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switch (algo)
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{
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case ALGO_AES:
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{
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switch(keyLength)
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{
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@ -531,10 +534,10 @@ void* DRMProcessorClientImpl::EncryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaini
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switch(chaining)
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{
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case CHAIN_ECB:
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EVP_EncryptInit(ctx, EVP_aes_128_ecb(), key, iv);
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ret = EVP_EncryptInit(ctx, EVP_aes_128_ecb(), key, iv);
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break;
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case CHAIN_CBC:
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EVP_EncryptInit(ctx, EVP_aes_128_cbc(), key, iv);
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ret = EVP_EncryptInit(ctx, EVP_aes_128_cbc(), key, iv);
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break;
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default:
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EXCEPTION(gourou::CLIENT_BAD_CHAINING, "Unknown chaining mode " << chaining);
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@ -544,26 +547,39 @@ void* DRMProcessorClientImpl::EncryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaini
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EVP_CIPHER_CTX_free(ctx);
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EXCEPTION(gourou::CLIENT_BAD_KEY_SIZE, "Invalid key size " << keyLength);
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}
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break;
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}
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else if (algo == ALGO_RC4)
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case ALGO_RC4:
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{
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if (keyLength != 16)
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{
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EVP_CIPHER_CTX_free(ctx);
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EXCEPTION(gourou::CLIENT_BAD_KEY_SIZE, "Invalid key size " << keyLength);
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}
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EVP_DecryptInit(ctx, EVP_rc4(), key, iv);
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ret = EVP_DecryptInit(ctx, EVP_rc4(), key, iv);
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break;
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}
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}
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if (ret <= 0)
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{
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EVP_CIPHER_CTX_free(ctx);
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EXCEPTION(gourou::CLIENT_CRYPT_ERROR, ERR_error_string(ERR_get_error(), NULL));
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}
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return ctx;
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}
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void* DRMProcessorClientImpl::DecryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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void* DRMProcessorClientImpl::decryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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const unsigned char* key, unsigned int keyLength,
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const unsigned char* iv, unsigned int ivLength)
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{
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EVP_CIPHER_CTX *ctx = EVP_CIPHER_CTX_new();
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int ret = 0;
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if (algo == ALGO_AES)
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switch(algo)
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{
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case ALGO_AES:
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{
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switch(keyLength)
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{
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@ -571,10 +587,10 @@ void* DRMProcessorClientImpl::DecryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaini
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switch(chaining)
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{
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case CHAIN_ECB:
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EVP_DecryptInit(ctx, EVP_aes_128_ecb(), key, iv);
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ret = EVP_DecryptInit(ctx, EVP_aes_128_ecb(), key, iv);
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break;
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case CHAIN_CBC:
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EVP_DecryptInit(ctx, EVP_aes_128_cbc(), key, iv);
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ret = EVP_DecryptInit(ctx, EVP_aes_128_cbc(), key, iv);
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break;
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default:
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EXCEPTION(gourou::CLIENT_BAD_CHAINING, "Unknown chaining mode " << chaining);
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@ -584,58 +600,81 @@ void* DRMProcessorClientImpl::DecryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaini
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EVP_CIPHER_CTX_free(ctx);
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EXCEPTION(gourou::CLIENT_BAD_KEY_SIZE, "Invalid key size " << keyLength);
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}
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break;
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}
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else if (algo == ALGO_RC4)
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case ALGO_RC4:
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{
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if (keyLength != 16)
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{
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EVP_CIPHER_CTX_free(ctx);
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EXCEPTION(gourou::CLIENT_BAD_KEY_SIZE, "Invalid key size " << keyLength);
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}
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EVP_DecryptInit(ctx, EVP_rc4(), key, iv);
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ret = EVP_DecryptInit(ctx, EVP_rc4(), key, iv);
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break;
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}
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}
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if (ret <= 0)
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{
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EVP_CIPHER_CTX_free(ctx);
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EXCEPTION(gourou::CLIENT_CRYPT_ERROR, ERR_error_string(ERR_get_error(), NULL));
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}
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return ctx;
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}
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void DRMProcessorClientImpl::EncryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
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void DRMProcessorClientImpl::encryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
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unsigned char* dataOut, unsigned int* dataOutLength)
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{
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EVP_EncryptUpdate((EVP_CIPHER_CTX*)handler, dataOut, (int*)dataOutLength, dataIn, dataInLength);
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int ret = EVP_EncryptUpdate((EVP_CIPHER_CTX*)handler, dataOut, (int*)dataOutLength, dataIn, dataInLength);
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if (ret <= 0)
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EXCEPTION(gourou::CLIENT_CRYPT_ERROR, ERR_error_string(ERR_get_error(), NULL));
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}
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void DRMProcessorClientImpl::EncryptFinalize(void* handler,
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void DRMProcessorClientImpl::encryptFinalize(void* handler,
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unsigned char* dataOut, unsigned int* dataOutLength)
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{
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int len;
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EVP_EncryptFinal_ex((EVP_CIPHER_CTX*)handler, dataOut, &len);
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int len, ret;
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ret = EVP_EncryptFinal_ex((EVP_CIPHER_CTX*)handler, dataOut, &len);
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*dataOutLength += len;
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EVP_CIPHER_CTX_free((EVP_CIPHER_CTX*)handler);
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if (ret <= 0)
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EXCEPTION(gourou::CLIENT_CRYPT_ERROR, ERR_error_string(ERR_get_error(), NULL));
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}
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void DRMProcessorClientImpl::Decrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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void DRMProcessorClientImpl::decrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
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const unsigned char* key, unsigned int keyLength,
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const unsigned char* iv, unsigned int ivLength,
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const unsigned char* dataIn, unsigned int dataInLength,
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unsigned char* dataOut, unsigned int* dataOutLength)
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{
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void* handler = DecryptInit(algo, chaining, key, keyLength, iv, ivLength);
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DecryptUpdate(handler, dataIn, dataInLength, dataOut, dataOutLength);
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DecryptFinalize(handler, dataOut+*dataOutLength, dataOutLength);
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void* handler = decryptInit(algo, chaining, key, keyLength, iv, ivLength);
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decryptUpdate(handler, dataIn, dataInLength, dataOut, dataOutLength);
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decryptFinalize(handler, dataOut+*dataOutLength, dataOutLength);
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}
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void DRMProcessorClientImpl::DecryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
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void DRMProcessorClientImpl::decryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
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unsigned char* dataOut, unsigned int* dataOutLength)
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{
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EVP_DecryptUpdate((EVP_CIPHER_CTX*)handler, dataOut, (int*)dataOutLength, dataIn, dataInLength);
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int ret = EVP_DecryptUpdate((EVP_CIPHER_CTX*)handler, dataOut, (int*)dataOutLength, dataIn, dataInLength);
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if (ret <= 0)
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EXCEPTION(gourou::CLIENT_CRYPT_ERROR, ERR_error_string(ERR_get_error(), NULL));
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}
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void DRMProcessorClientImpl::DecryptFinalize(void* handler, unsigned char* dataOut, unsigned int* dataOutLength)
|
||||
void DRMProcessorClientImpl::decryptFinalize(void* handler, unsigned char* dataOut, unsigned int* dataOutLength)
|
||||
{
|
||||
int len;
|
||||
EVP_DecryptFinal_ex((EVP_CIPHER_CTX*)handler, dataOut, &len);
|
||||
int len, ret;
|
||||
|
||||
ret = EVP_DecryptFinal_ex((EVP_CIPHER_CTX*)handler, dataOut, &len);
|
||||
*dataOutLength += len;
|
||||
EVP_CIPHER_CTX_free((EVP_CIPHER_CTX*)handler);
|
||||
|
||||
if (ret <= 0)
|
||||
EXCEPTION(gourou::CLIENT_CRYPT_ERROR, ERR_error_string(ERR_get_error(), NULL));
|
||||
}
|
||||
|
||||
void* DRMProcessorClientImpl::zipOpen(const std::string& path)
|
||||
|
|
|
@ -45,9 +45,9 @@ public:
|
|||
|
||||
/* Digest interface */
|
||||
virtual void* createDigest(const std::string& digestName);
|
||||
virtual int digestUpdate(void* handler, unsigned char* data, unsigned int length);
|
||||
virtual int digestFinalize(void* handler,unsigned char* digestOut);
|
||||
virtual int digest(const std::string& digestName, unsigned char* data, unsigned int length, unsigned char* digestOut);
|
||||
virtual void digestUpdate(void* handler, unsigned char* data, unsigned int length);
|
||||
virtual void digestFinalize(void* handler,unsigned char* digestOut);
|
||||
virtual void digest(const std::string& digestName, unsigned char* data, unsigned int length, unsigned char* digestOut);
|
||||
|
||||
/* Random interface */
|
||||
virtual void randBytes(unsigned char* bytesOut, unsigned int length);
|
||||
|
@ -80,34 +80,34 @@ public:
|
|||
unsigned char** certOut, unsigned int* certOutLength);
|
||||
|
||||
/* Crypto interface */
|
||||
virtual void Encrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
|
||||
virtual void encrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
|
||||
const unsigned char* key, unsigned int keyLength,
|
||||
const unsigned char* iv, unsigned int ivLength,
|
||||
const unsigned char* dataIn, unsigned int dataInLength,
|
||||
unsigned char* dataOut, unsigned int* dataOutLength);
|
||||
|
||||
virtual void* EncryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
|
||||
virtual void* encryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
|
||||
const unsigned char* key, unsigned int keyLength,
|
||||
const unsigned char* iv=0, unsigned int ivLength=0);
|
||||
|
||||
|
||||
virtual void EncryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
|
||||
virtual void encryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
|
||||
unsigned char* dataOut, unsigned int* dataOutLength);
|
||||
virtual void EncryptFinalize(void* handler, unsigned char* dataOut, unsigned int* dataOutLength);
|
||||
virtual void encryptFinalize(void* handler, unsigned char* dataOut, unsigned int* dataOutLength);
|
||||
|
||||
virtual void Decrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
|
||||
virtual void decrypt(CRYPTO_ALGO algo, CHAINING_MODE chaining,
|
||||
const unsigned char* key, unsigned int keyLength,
|
||||
const unsigned char* iv, unsigned int ivLength,
|
||||
const unsigned char* dataIn, unsigned int dataInLength,
|
||||
unsigned char* dataOut, unsigned int* dataOutLength);
|
||||
|
||||
virtual void* DecryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
|
||||
virtual void* decryptInit(CRYPTO_ALGO algo, CHAINING_MODE chaining,
|
||||
const unsigned char* key, unsigned int keyLength,
|
||||
const unsigned char* iv=0, unsigned int ivLength=0);
|
||||
|
||||
virtual void DecryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
|
||||
virtual void decryptUpdate(void* handler, const unsigned char* dataIn, unsigned int dataInLength,
|
||||
unsigned char* dataOut, unsigned int* dataOutLength);
|
||||
virtual void DecryptFinalize(void* handler, unsigned char* dataOut, unsigned int* dataOutLength);
|
||||
virtual void decryptFinalize(void* handler, unsigned char* dataOut, unsigned int* dataOutLength);
|
||||
|
||||
/* ZIP Interface */
|
||||
virtual void* zipOpen(const std::string& path);
|
||||
|
|
Loading…
Reference in New Issue
Block a user