Botan 1.10.17
Botan::XTEA_SIMD Class Reference

#include <xtea_simd.h>

Inheritance diagram for Botan::XTEA_SIMD:
Botan::XTEA Botan::Block_Cipher_Fixed_Params< 8, 16 > Botan::BlockCipher Botan::SymmetricAlgorithm Botan::Algorithm

Public Types

enum  

Public Member Functions

size_t block_size () const
void clear ()
BlockCipherclone () const
void decrypt (byte block[]) const
void decrypt (const byte in[], byte out[]) const
void decrypt_n (const byte in[], byte out[], size_t blocks) const
void encrypt (byte block[]) const
void encrypt (const byte in[], byte out[]) const
void encrypt_n (const byte in[], byte out[], size_t blocks) const
Key_Length_Specification key_spec () const
size_t maximum_keylength () const
size_t minimum_keylength () const
std::string name () const
size_t parallel_bytes () const
size_t parallelism () const
void set_key (const byte key[], size_t length)
void set_key (const SymmetricKey &key)
bool valid_keylength (size_t length) const

Protected Member Functions

const SecureVector< u32bit > & get_EK () const

Detailed Description

XTEA implemented using SIMD operations

Definition at line 18 of file xtea_simd.h.

Member Enumeration Documentation

◆ anonymous enum

anonymous enum
inherited

Definition at line 107 of file block_cipher.h.

Member Function Documentation

◆ block_size()

size_t Botan::Block_Cipher_Fixed_Params< BS, KMIN, 0, 1 >::block_size ( ) const
inlinevirtualinherited
Returns
block size of this algorithm

Implements Botan::BlockCipher.

Definition at line 108 of file block_cipher.h.

108{ return BS; }

◆ clear()

void Botan::XTEA::clear ( )
inlinevirtualinherited

Zeroize internal state

Implements Botan::Algorithm.

Definition at line 24 of file xtea.h.

24{ zeroise(EK); }
void zeroise(MemoryRegion< T > &vec)
Definition secmem.h:428

References Botan::zeroise().

◆ clone()

BlockCipher * Botan::XTEA_SIMD::clone ( ) const
inlinevirtual

Get a new object representing the same algorithm as *this

Reimplemented from Botan::XTEA.

Definition at line 25 of file xtea_simd.h.

25{ return new XTEA_SIMD; }

◆ decrypt() [1/2]

void Botan::BlockCipher::decrypt ( byte block[]) const
inlineinherited

Decrypt a block.

Parameters
blockthe ciphertext block to be decrypted Must be of length block_size(). Will hold the result when the function has finished.

Definition at line 74 of file block_cipher.h.

74{ decrypt_n(block, block, 1); }

◆ decrypt() [2/2]

void Botan::BlockCipher::decrypt ( const byte in[],
byte out[] ) const
inlineinherited

Decrypt a block.

Parameters
inThe ciphertext block to be decypted as a byte array. Must be of length block_size().
outThe byte array designated to hold the decrypted block. Must be of length block_size().

Definition at line 57 of file block_cipher.h.

58 { decrypt_n(in, out, 1); }

◆ decrypt_n()

void Botan::XTEA_SIMD::decrypt_n ( const byte in[],
byte out[],
size_t blocks ) const
virtual

Decrypt one or more blocks

Parameters
inthe input buffer (multiple of block_size())
outthe output buffer (same size as in)
blocksthe number of blocks to process

Reimplemented from Botan::XTEA.

Definition at line 114 of file xtea_simd.cpp.

115 {
116 const u32bit* KS = &(this->get_EK()[0]);
117
118 while(blocks >= 8)
119 {
120 xtea_decrypt_8(in, out, KS);
121 in += 8 * BLOCK_SIZE;
122 out += 8 * BLOCK_SIZE;
123 blocks -= 8;
124 }
125
126 if(blocks)
127 XTEA::decrypt_n(in, out, blocks);
128 }
void decrypt_n(const byte in[], byte out[], size_t blocks) const
Definition xtea.cpp:93
const SecureVector< u32bit > & get_EK() const
Definition xtea.h:33
unsigned int u32bit
Definition types.h:32

References Botan::Block_Cipher_Fixed_Params< 8, 16 >::BLOCK_SIZE, Botan::XTEA::decrypt_n(), and Botan::XTEA::get_EK().

◆ encrypt() [1/2]

void Botan::BlockCipher::encrypt ( byte block[]) const
inlineinherited

Encrypt a block.

Parameters
blockthe plaintext block to be encrypted Must be of length block_size(). Will hold the result when the function has finished.

Definition at line 66 of file block_cipher.h.

66{ encrypt_n(block, block, 1); }

◆ encrypt() [2/2]

void Botan::BlockCipher::encrypt ( const byte in[],
byte out[] ) const
inlineinherited

Encrypt a block.

Parameters
inThe plaintext block to be encrypted as a byte array. Must be of length block_size().
outThe byte array designated to hold the encrypted block. Must be of length block_size().

Definition at line 47 of file block_cipher.h.

48 { encrypt_n(in, out, 1); }

◆ encrypt_n()

void Botan::XTEA_SIMD::encrypt_n ( const byte in[],
byte out[],
size_t blocks ) const
virtual

Encrypt one or more blocks

Parameters
inthe input buffer (multiple of block_size())
outthe output buffer (same size as in)
blocksthe number of blocks to process

Reimplemented from Botan::XTEA.

Definition at line 95 of file xtea_simd.cpp.

96 {
97 const u32bit* KS = &(this->get_EK()[0]);
98
99 while(blocks >= 8)
100 {
101 xtea_encrypt_8(in, out, KS);
102 in += 8 * BLOCK_SIZE;
103 out += 8 * BLOCK_SIZE;
104 blocks -= 8;
105 }
106
107 if(blocks)
108 XTEA::encrypt_n(in, out, blocks);
109 }
void encrypt_n(const byte in[], byte out[], size_t blocks) const
Definition xtea.cpp:62

References Botan::Block_Cipher_Fixed_Params< 8, 16 >::BLOCK_SIZE, Botan::XTEA::encrypt_n(), and Botan::XTEA::get_EK().

◆ get_EK()

const SecureVector< u32bit > & Botan::XTEA::get_EK ( ) const
inlineprotectedinherited
Returns
const reference to the key schedule

Definition at line 33 of file xtea.h.

33{ return EK; }

Referenced by Botan::XTEA_SIMD::decrypt_n(), and Botan::XTEA_SIMD::encrypt_n().

◆ key_spec()

Key_Length_Specification Botan::Block_Cipher_Fixed_Params< BS, KMIN, 0, 1 >::key_spec ( ) const
inlinevirtualinherited
Returns
object describing limits on key size

Implements Botan::SymmetricAlgorithm.

Definition at line 110 of file block_cipher.h.

111 {
113 }
Key_Length_Specification(size_t keylen)
Definition key_spec.h:25

◆ maximum_keylength()

size_t Botan::SymmetricAlgorithm::maximum_keylength ( ) const
inlineinherited
Returns
minimum allowed key length

Definition at line 33 of file sym_algo.h.

34 {
35 return key_spec().maximum_keylength();
36 }
size_t maximum_keylength() const
Definition sym_algo.h:33

◆ minimum_keylength()

size_t Botan::SymmetricAlgorithm::minimum_keylength ( ) const
inlineinherited
Returns
maxmium allowed key length

Definition at line 41 of file sym_algo.h.

42 {
43 return key_spec().minimum_keylength();
44 }
size_t minimum_keylength() const
Definition sym_algo.h:41

◆ name()

std::string Botan::XTEA::name ( ) const
inlinevirtualinherited
Returns
name of this algorithm

Implements Botan::Algorithm.

Definition at line 25 of file xtea.h.

25{ return "XTEA"; }

◆ parallel_bytes()

size_t Botan::BlockCipher::parallel_bytes ( ) const
inlineinherited
Returns
prefererred parallelism of this cipher in bytes

Definition at line 35 of file block_cipher.h.

36 {
38 }

◆ parallelism()

size_t Botan::XTEA_SIMD::parallelism ( ) const
inlinevirtual
Returns
native parallelism of this cipher in blocks

Reimplemented from Botan::BlockCipher.

Definition at line 21 of file xtea_simd.h.

21{ return 8; }

◆ set_key() [1/2]

void Botan::SymmetricAlgorithm::set_key ( const byte key[],
size_t length )
inlineinherited

Set the symmetric key of this object.

Parameters
keythe to be set as a byte array.
lengthin bytes of key param

Definition at line 68 of file sym_algo.h.

69 {
73 }
Invalid_Key_Length(const std::string &name, size_t length)
Definition exceptn.h:57

◆ set_key() [2/2]

void Botan::SymmetricAlgorithm::set_key ( const SymmetricKey & key)
inlineinherited

Set the symmetric key of this object.

Parameters
keythe SymmetricKey to be set.

Definition at line 60 of file sym_algo.h.

61 { set_key(key.begin(), key.length()); }

◆ valid_keylength()

bool Botan::SymmetricAlgorithm::valid_keylength ( size_t length) const
inlineinherited

Check whether a given key length is valid for this algorithm.

Parameters
lengththe key length to be checked.
Returns
true if the key length is valid.

Definition at line 51 of file sym_algo.h.

52 {
54 }
bool valid_keylength(size_t length) const
Definition sym_algo.h:51

The documentation for this class was generated from the following files: