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des_undes/third_party/cryptlib-0.99/lib_idea.c
T

443 lines
11 KiB
C

#include <ctype.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <time.h>
#include "crypt.h"
#include "idea/idea.h"
/* The IDEA key and block size */
#define IDEA_KEYSIZE IDEAKEYSIZE
#define IDEA_BLOCKSIZE IDEABLOCKSIZE
/* A structure to hold the two expanded IDEA keys */
typedef struct {
WORD eKey[ IDEAKEYLEN ]; /* The encryption key */
WORD dKey[ IDEAKEYLEN ]; /* The decryption key */
} IDEA_KEY;
/* The size of the expanded IDEA keys */
#define IDEA_EXPANDED_KEYSIZE sizeof( IDEA_KEY )
/****************************************************************************
* *
* IDEA Self-test Routines *
* *
****************************************************************************/
#include "testidea.h"
/* Test the IDEA code against the test vectors from the ETH reference
implementation */
int ideaSelfTest( void )
{
BYTE temp[ IDEA_BLOCKSIZE ];
WORD key[ IDEAKEYLEN ];
int i;
for( i = 0; i < sizeof( testIdea ) / sizeof( IDEA_TEST ); i++ )
{
memcpy( temp, testIdea[ i ].plaintext, IDEA_BLOCKSIZE );
ideaExpandKey( testIdea[ i ].key, key );
ideaCipher( temp, temp, key );
if( memcmp( testIdea[ i ].ciphertext, temp, IDEA_BLOCKSIZE ) )
return( CRYPT_ERROR );
}
return( CRYPT_OK );
}
/****************************************************************************
* *
* Init/Shutdown Routines *
* *
****************************************************************************/
/* Perform auxiliary init and shutdown actions on an encryption context */
int ideaInitEx( CRYPT_INFO *cryptInfo, void *cryptInfoEx )
{
/* Get rid of unused parameter warnings in a compiler-independant manner */
if( cryptInfoEx );
/* Allocate memory for the keyscheduled key */
if( cryptInfo->key != NULL || cryptInfo->privateData != NULL )
return( CRYPT_INITED );
if( ( cryptInfo->key = malloc( IDEA_EXPANDED_KEYSIZE ) ) == NULL )
return( CRYPT_NOMEM );
memset( cryptInfo->key, 0, IDEA_EXPANDED_KEYSIZE );
cryptInfo->keyLength = IDEA_EXPANDED_KEYSIZE;
return( CRYPT_OK );
}
int ideaInit( CRYPT_INFO *cryptInfo )
{
/* Just pass the call through to the extended setup routine */
return( ideaInitEx( cryptInfo, NULL ) );
}
int ideaEnd( CRYPT_INFO *cryptInfo )
{
/* Free any allocated memory */
secureFree( &cryptInfo->key, cryptInfo->keyLength );
return( CRYPT_OK );
}
/****************************************************************************
* *
* IDEA En/Decryption Routines *
* *
****************************************************************************/
/* Encrypt/decrypt data in ECB mode */
int ideaEncryptECB( CRYPT_INFO *cryptInfo, BYTE *buffer, int noBytes )
{
IDEA_KEY *ideaKey = ( IDEA_KEY * ) cryptInfo->key;
int blockCount = noBytes / IDEA_BLOCKSIZE;
/* Make sure the data length is a multiple of the block size */
if( noBytes % IDEA_BLOCKSIZE )
return( CRYPT_BADPARM3 );
while( blockCount-- )
{
/* Encrypt a block of data */
ideaCipher( buffer, buffer, ideaKey->eKey );
/* Move on to next block of data */
buffer += IDEA_BLOCKSIZE;
}
return( CRYPT_OK );
}
int ideaDecryptECB( CRYPT_INFO *cryptInfo, BYTE *buffer, int noBytes )
{
IDEA_KEY *ideaKey = ( IDEA_KEY * ) cryptInfo->key;
int blockCount = noBytes / IDEA_BLOCKSIZE;
/* Make sure the data length is a multiple of the block size */
if( noBytes % IDEA_BLOCKSIZE )
return( CRYPT_BADPARM3 );
while( blockCount-- )
{
/* Decrypt a block of data */
ideaCipher( buffer, buffer, ideaKey->dKey );
/* Move on to next block of data */
buffer += IDEA_BLOCKSIZE;
}
return( CRYPT_OK );
}
/* Encrypt/decrypt data in CBC mode */
int ideaEncryptCBC( CRYPT_INFO *cryptInfo, BYTE *buffer, int noBytes )
{
IDEA_KEY *ideaKey = ( IDEA_KEY * ) cryptInfo->key;
int blockCount = noBytes / IDEA_BLOCKSIZE;
/* Make sure the data length is a multiple of the block size */
if( noBytes % IDEA_BLOCKSIZE )
return( CRYPT_BADPARM3 );
while( blockCount-- )
{
int i;
/* XOR the buffer contents with the encrypted IV */
for( i = 0; i < IDEA_BLOCKSIZE; i++ )
buffer[ i ] ^= cryptInfo->currentIV[ i ];
/* Encrypt a block of data */
ideaCipher( buffer, buffer, ideaKey->eKey );
/* Shift ciphertext into IV */
memcpy( cryptInfo->currentIV, buffer, IDEA_BLOCKSIZE );
/* Move on to next block of data */
buffer += IDEA_BLOCKSIZE;
}
return( CRYPT_OK );
}
int ideaDecryptCBC( CRYPT_INFO *cryptInfo, BYTE *buffer, int noBytes )
{
IDEA_KEY *ideaKey = ( IDEA_KEY * ) cryptInfo->key;
BYTE temp[ IDEA_BLOCKSIZE ];
int blockCount = noBytes / IDEA_BLOCKSIZE;
/* Make sure the data length is a multiple of the block size */
if( noBytes % IDEA_BLOCKSIZE )
return( CRYPT_BADPARM3 );
while( blockCount-- )
{
int i;
/* Save the ciphertext */
memcpy( temp, buffer, IDEA_BLOCKSIZE );
/* Decrypt a block of data */
ideaCipher( buffer, buffer, ideaKey->dKey );
/* XOR the buffer contents with the encrypted IV */
for( i = 0; i < IDEA_BLOCKSIZE; i++ )
buffer[ i ] ^= cryptInfo->currentIV[ i ];
/* Shift the ciphertext into the IV */
memcpy( cryptInfo->currentIV, temp, IDEA_BLOCKSIZE );
/* Move on to next block of data */
buffer += IDEA_BLOCKSIZE;
}
/* Clear the temporary buffer */
memset( temp, 0, IDEA_BLOCKSIZE );
return( CRYPT_OK );
}
/* Encrypt/decrypt data in CFB mode */
int ideaEncryptCFB( CRYPT_INFO *cryptInfo, BYTE *buffer, int noBytes )
{
IDEA_KEY *ideaKey = ( IDEA_KEY * ) cryptInfo->key;
int i, ivCount = cryptInfo->ivCount;
/* If there's any encrypted material left in the IV, use it now */
if( ivCount )
{
int bytesToUse;
/* Find out how much material left in the encrypted IV we can use */
bytesToUse = IDEA_BLOCKSIZE - ivCount;
if( noBytes < bytesToUse )
bytesToUse = noBytes;
/* Encrypt the data */
for( i = 0; i < bytesToUse; i++ )
buffer[ i ] ^= cryptInfo->currentIV[ i + ivCount ];
memcpy( cryptInfo->currentIV + ivCount, buffer, bytesToUse );
/* Adjust the byte count and buffer position */
noBytes -= bytesToUse;
buffer += bytesToUse;
ivCount += bytesToUse;
}
while( noBytes )
{
ivCount = ( noBytes > IDEA_BLOCKSIZE ) ? IDEA_BLOCKSIZE : noBytes;
/* Encrypt the IV */
ideaCipher( cryptInfo->currentIV, cryptInfo->currentIV, ideaKey->eKey );
/* XOR the buffer contents with the encrypted IV */
for( i = 0; i < ivCount; i++ )
buffer[ i ] ^= cryptInfo->currentIV[ i ];
/* Shift the ciphertext into the IV */
memcpy( cryptInfo->currentIV, buffer, ivCount );
/* Move on to next block of data */
noBytes -= ivCount;
buffer += ivCount;
}
/* Remember how much of the IV is still available for use */
cryptInfo->ivCount = ( ivCount % IDEA_BLOCKSIZE );
return( CRYPT_OK );
}
/* Decrypt data in CFB mode. Note that the transformation can be made
faster (but less clear) with temp = buffer, buffer ^= iv, iv = temp
all in one loop */
int ideaDecryptCFB( CRYPT_INFO *cryptInfo, BYTE *buffer, int noBytes )
{
IDEA_KEY *ideaKey = ( IDEA_KEY * ) cryptInfo->key;
BYTE temp[ IDEA_BLOCKSIZE ];
int i, ivCount = cryptInfo->ivCount;
/* If there's any encrypted material left in the IV, use it now */
if( ivCount )
{
int bytesToUse;
/* Find out how much material left in the encrypted IV we can use */
bytesToUse = IDEA_BLOCKSIZE - ivCount;
if( noBytes < bytesToUse )
bytesToUse = noBytes;
/* Decrypt the data */
memcpy( temp, buffer, bytesToUse );
for( i = 0; i < bytesToUse; i++ )
buffer[ i ] ^= cryptInfo->currentIV[ i + ivCount ];
memcpy( cryptInfo->currentIV + ivCount, temp, bytesToUse );
/* Adjust the byte count and buffer position */
noBytes -= bytesToUse;
buffer += bytesToUse;
ivCount += bytesToUse;
}
while( noBytes )
{
ivCount = ( noBytes > IDEA_BLOCKSIZE ) ? IDEA_BLOCKSIZE : noBytes;
/* Encrypt the IV */
ideaCipher( cryptInfo->currentIV, cryptInfo->currentIV, ideaKey->eKey );
/* Save the ciphertext */
memcpy( temp, buffer, ivCount );
/* XOR the buffer contents with the encrypted IV */
for( i = 0; i < ivCount; i++ )
buffer[ i ] ^= cryptInfo->currentIV[ i ];
/* Shift the ciphertext into the IV */
memcpy( cryptInfo->currentIV, temp, ivCount );
/* Move on to next block of data */
noBytes -= ivCount;
buffer += ivCount;
}
/* Remember how much of the IV is still available for use */
cryptInfo->ivCount = ( ivCount % IDEA_BLOCKSIZE );
/* Clear the temporary buffer */
memset( temp, 0, IDEA_BLOCKSIZE );
return( CRYPT_OK );
}
/* Encrypt/decrypt data in OFB mode */
int ideaEncryptOFB( CRYPT_INFO *cryptInfo, BYTE *buffer, int noBytes )
{
IDEA_KEY *ideaKey = ( IDEA_KEY * ) cryptInfo->key;
int i, ivCount = cryptInfo->ivCount;
/* If there's any encrypted material left in the IV, use it now */
if( ivCount )
{
int bytesToUse;
/* Find out how much material left in the encrypted IV we can use */
bytesToUse = IDEA_BLOCKSIZE - ivCount;
if( noBytes < bytesToUse )
bytesToUse = noBytes;
/* Encrypt the data */
for( i = 0; i < bytesToUse; i++ )
buffer[ i ] ^= cryptInfo->currentIV[ i + ivCount ];
/* Adjust the byte count and buffer position */
noBytes -= bytesToUse;
buffer += bytesToUse;
ivCount += bytesToUse;
}
while( noBytes )
{
ivCount = ( noBytes > IDEA_BLOCKSIZE ) ? IDEA_BLOCKSIZE : noBytes;
/* Encrypt the IV */
ideaCipher( cryptInfo->currentIV, cryptInfo->currentIV, ideaKey->eKey );
/* XOR the buffer contents with the encrypted IV */
for( i = 0; i < ivCount; i++ )
buffer[ i ] ^= cryptInfo->currentIV[ i ];
/* Move on to next block of data */
noBytes -= ivCount;
buffer += ivCount;
}
/* Remember how much of the IV is still available for use */
cryptInfo->ivCount = ( ivCount % IDEA_BLOCKSIZE );
return( CRYPT_OK );
}
/* Decrypt data in OFB mode */
int ideaDecryptOFB( CRYPT_INFO *cryptInfo, BYTE *buffer, int noBytes )
{
IDEA_KEY *ideaKey = ( IDEA_KEY * ) cryptInfo->key;
int i, ivCount = cryptInfo->ivCount;
/* If there's any encrypted material left in the IV, use it now */
if( ivCount )
{
int bytesToUse;
/* Find out how much material left in the encrypted IV we can use */
bytesToUse = IDEA_BLOCKSIZE - ivCount;
if( noBytes < bytesToUse )
bytesToUse = noBytes;
/* Decrypt the data */
for( i = 0; i < bytesToUse; i++ )
buffer[ i ] ^= cryptInfo->currentIV[ i + ivCount ];
/* Adjust the byte count and buffer position */
noBytes -= bytesToUse;
buffer += bytesToUse;
ivCount += bytesToUse;
}
while( noBytes )
{
ivCount = ( noBytes > IDEA_BLOCKSIZE ) ? IDEA_BLOCKSIZE : noBytes;
/* Encrypt the IV */
ideaCipher( cryptInfo->currentIV, cryptInfo->currentIV, ideaKey->eKey );
/* XOR the buffer contents with the encrypted IV */
for( i = 0; i < ivCount; i++ )
buffer[ i ] ^= cryptInfo->currentIV[ i ];
/* Move on to next block of data */
noBytes -= ivCount;
buffer += ivCount;
}
/* Remember how much of the IV is still available for use */
cryptInfo->ivCount = ( ivCount % IDEA_BLOCKSIZE );
return( CRYPT_OK );
}
/****************************************************************************
* *
* IDEA Key Management Routines *
* *
****************************************************************************/
/* Key schedule an IDEA key */
int ideaInitKey( CRYPT_INFO *cryptInfo )
{
IDEA_KEY *ideaKey = ( IDEA_KEY * ) cryptInfo->key;
/* Generate an expanded IDEA key and its inverse */
ideaExpandKey( cryptInfo->userKey, ideaKey->eKey );
ideaInvertKey( ideaKey->eKey, ideaKey->dKey );
return( CRYPT_OK );
}