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/*
* Engine
* (C) 1999-2007 Jack Lloyd
*
* Distributed under the terms of the Botan license
*/
#ifndef BOTAN_ENGINE_H__
#define BOTAN_ENGINE_H__
#include <botan/scan_name.h>
#include <botan/block_cipher.h>
#include <botan/stream_cipher.h>
#include <botan/hash.h>
#include <botan/mac.h>
#include <botan/pbkdf.h>
#include <botan/pow_mod.h>
#include <botan/pk_keys.h>
#include <botan/pk_ops.h>
#include <utility>
#include <map>
namespace Botan {
class Algorithm_Factory;
class Keyed_Filter;
/**
* Base class for all engines. All non-pure virtual functions simply
* return NULL, indicating the algorithm in question is not
* supported. Subclasses can reimplement whichever function(s)
* they want to hook in a particular type.
*/
class BOTAN_DLL Engine
{
public:
virtual ~Engine() {}
/**
* @return name of this engine
*/
virtual std::string provider_name() const = 0;
/**
* @param algo_spec the algorithm name/specification
* @param af an algorithm factory object
* @return newly allocated object, or NULL
*/
virtual BlockCipher*
find_block_cipher(const SCAN_Name& algo_spec,
Algorithm_Factory& af) const;
/**
* @param algo_spec the algorithm name/specification
* @param af an algorithm factory object
* @return newly allocated object, or NULL
*/
virtual StreamCipher*
find_stream_cipher(const SCAN_Name& algo_spec,
Algorithm_Factory& af) const;
/**
* @param algo_spec the algorithm name/specification
* @param af an algorithm factory object
* @return newly allocated object, or NULL
*/
virtual HashFunction*
find_hash(const SCAN_Name& algo_spec,
Algorithm_Factory& af) const;
/**
* @param algo_spec the algorithm name/specification
* @param af an algorithm factory object
* @return newly allocated object, or NULL
*/
virtual MessageAuthenticationCode*
find_mac(const SCAN_Name& algo_spec,
Algorithm_Factory& af) const;
/**
* @param algo_spec the algorithm name/specification
* @param af an algorithm factory object
* @return newly allocated object, or NULL
*/
virtual PBKDF* find_pbkdf(const SCAN_Name& algo_spec,
Algorithm_Factory& af) const;
/**
* @param n the modulus
* @param hints any use hints
* @return newly allocated object, or NULL
*/
virtual Modular_Exponentiator*
mod_exp(const BigInt& n,
Power_Mod::Usage_Hints hints) const;
/**
* Return a new cipher object
* @param algo_spec the algorithm name/specification
* @param dir specifies if encryption or decryption is desired
* @param af an algorithm factory object
* @return newly allocated object, or NULL
*/
virtual Keyed_Filter* get_cipher(const std::string& algo_spec,
Cipher_Dir dir,
Algorithm_Factory& af);
/**
* Return a new operator object for this key, if possible
* @param key the key we want an operator for
* @return newly allocated operator object, or NULL
*/
virtual PK_Ops::Key_Agreement*
get_key_agreement_op(const Private_Key& key) const;
/**
* Return a new operator object for this key, if possible
* @param key the key we want an operator for
* @return newly allocated operator object, or NULL
*/
virtual PK_Ops::Signature*
get_signature_op(const Private_Key& key) const;
/**
* Return a new operator object for this key, if possible
* @param key the key we want an operator for
* @return newly allocated operator object, or NULL
*/
virtual PK_Ops::Verification*
get_verify_op(const Public_Key& key) const;
/**
* Return a new operator object for this key, if possible
* @param key the key we want an operator for
* @return newly allocated operator object, or NULL
*/
virtual PK_Ops::Encryption*
get_encryption_op(const Public_Key& key) const;
/**
* Return a new operator object for this key, if possible
* @param key the key we want an operator for
* @return newly allocated operator object, or NULL
*/
virtual PK_Ops::Decryption*
get_decryption_op(const Private_Key& key) const;
};
}
#endif
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