8#ifndef BOTAN_BLOCK_CIPHER_H_
9#define BOTAN_BLOCK_CIPHER_H_
11#include <botan/sym_algo.h>
31 static std::unique_ptr<BlockCipher> create(std::string_view algo_spec, std::string_view provider =
"");
38 static std::unique_ptr<BlockCipher> create_or_throw(std::string_view algo_spec, std::string_view provider =
"");
44 static std::vector<std::string> providers(std::string_view algo_spec);
52 static constexpr size_t ParallelismMult = 4;
67 size_t parallel_bytes()
const {
return parallelism() * block_size() * BlockCipher::ParallelismMult; }
73 virtual std::string
provider()
const {
return "base"; }
82 void encrypt(
const uint8_t in[], uint8_t out[])
const { encrypt_n(in, out, 1); }
91 void decrypt(
const uint8_t in[], uint8_t out[])
const { decrypt_n(in, out, 1); }
99 void encrypt(uint8_t block[])
const { encrypt_n(block, block, 1); }
107 void decrypt(uint8_t block[])
const { decrypt_n(block, block, 1); }
113 void encrypt(std::span<uint8_t> block)
const {
114 return encrypt_n(block.data(), block.data(), block.size() / block_size());
121 void decrypt(std::span<uint8_t> block)
const {
122 return decrypt_n(block.data(), block.data(), block.size() / block_size());
130 void encrypt(std::span<const uint8_t> in, std::span<uint8_t> out)
const {
131 return encrypt_n(in.data(), out.data(), in.size() / block_size());
139 void decrypt(std::span<const uint8_t> in, std::span<uint8_t> out)
const {
140 return decrypt_n(in.data(), out.data(), in.size() / block_size());
149 virtual void encrypt_n(
const uint8_t in[], uint8_t out[],
size_t blocks)
const = 0;
157 virtual void decrypt_n(
const uint8_t in[], uint8_t out[],
size_t blocks)
const = 0;
160 void encrypt_n_xex(uint8_t data[], const uint8_t mask[],
size_t blocks)
const {
161 const size_t BS = block_size();
162 for(
size_t i = 0; i != blocks * BS; ++i) {
165 encrypt_n(data, data, blocks);
166 for(
size_t i = 0; i != blocks * BS; ++i) {
172 void decrypt_n_xex(uint8_t data[], const uint8_t mask[],
size_t blocks)
const {
173 const size_t BS = block_size();
174 for(
size_t i = 0; i != blocks * BS; ++i) {
177 decrypt_n(data, data, blocks);
178 for(
size_t i = 0; i != blocks * BS; ++i) {
203 virtual void set_tweak(
const uint8_t tweak[],
size_t len) = 0;
209template <
size_t BS,
size_t KMIN,
size_t KMAX = 0,
size_t KMOD = 1,
typename BaseClass = BlockCipher>
#define BOTAN_PUBLIC_API(maj, min)
#define BOTAN_DEPRECATED(msg)
void encrypt(const uint8_t in[], uint8_t out[]) const
void decrypt(const uint8_t in[], uint8_t out[]) const
void decrypt(std::span< uint8_t > block) const
void decrypt(std::span< const uint8_t > in, std::span< uint8_t > out) const
void encrypt(std::span< const uint8_t > in, std::span< uint8_t > out) const
void encrypt(std::span< uint8_t > block) const
virtual void decrypt_n(const uint8_t in[], uint8_t out[], size_t blocks) const =0
virtual void encrypt_n(const uint8_t in[], uint8_t out[], size_t blocks) const =0
BlockCipher * clone() const
virtual std::unique_ptr< BlockCipher > new_object() const =0
virtual size_t block_size() const =0
virtual size_t parallelism() const
void decrypt(uint8_t block[]) const
virtual std::string provider() const
size_t parallel_bytes() const
void encrypt(uint8_t block[]) const
size_t block_size() const final
Key_Length_Specification key_spec() const final
virtual void set_tweak(const uint8_t tweak[], size_t len)=0
int(* final)(unsigned char *, CTX *)