Files
tomcrypt/src/modes/ctr/ctr_encrypt.c
T

113 lines
3.3 KiB
C
Raw Normal View History

2004-01-25 17:40:34 +00:00
/* LibTomCrypt, modular cryptographic library -- Tom St Denis
*
* LibTomCrypt is a library that provides various cryptographic
* algorithms in a highly modular and flexible manner.
*
* The library is free for all purposes without any express
2004-05-12 20:42:16 +00:00
* guarantee it works.
2004-01-25 17:40:34 +00:00
*
2006-04-06 19:48:32 +00:00
* Tom St Denis, tomstdenis@gmail.com, http://libtomcrypt.com
2004-01-25 17:40:34 +00:00
*/
2004-12-30 23:55:53 +00:00
#include "tomcrypt.h"
/**
@file ctr_encrypt.c
CTR implementation, encrypt data, Tom St Denis
*/
2003-03-03 00:59:24 +00:00
2006-08-30 23:30:00 +00:00
#ifdef LTC_CTR_MODE
2003-03-03 00:59:24 +00:00
2004-12-30 23:55:53 +00:00
/**
CTR encrypt
@param pt Plaintext
@param ct [out] Ciphertext
@param len Length of plaintext (octets)
@param ctr CTR state
@return CRYPT_OK if successful
*/
2003-03-03 00:59:24 +00:00
int ctr_encrypt(const unsigned char *pt, unsigned char *ct, unsigned long len, symmetric_CTR *ctr)
{
2003-03-03 01:02:42 +00:00
int x, err;
2003-03-03 00:59:24 +00:00
2004-12-30 23:55:53 +00:00
LTC_ARGCHK(pt != NULL);
LTC_ARGCHK(ct != NULL);
LTC_ARGCHK(ctr != NULL);
2003-03-03 00:59:24 +00:00
2003-03-03 01:02:42 +00:00
if ((err = cipher_is_valid(ctr->cipher)) != CRYPT_OK) {
return err;
2003-03-03 00:59:24 +00:00
}
2003-03-13 02:12:16 +00:00
/* is blocklen/padlen valid? */
2005-08-01 16:36:47 +00:00
if (ctr->blocklen < 1 || ctr->blocklen > (int)sizeof(ctr->ctr) ||
2003-03-13 02:12:16 +00:00
ctr->padlen < 0 || ctr->padlen > (int)sizeof(ctr->pad)) {
return CRYPT_INVALID_ARG;
}
2003-03-03 00:59:24 +00:00
2005-04-17 11:37:13 +00:00
#ifdef LTC_FAST
if (ctr->blocklen % sizeof(LTC_FAST_TYPE)) {
return CRYPT_INVALID_ARG;
}
#endif
/* handle acceleration only if pad is empty, accelerator is present and length is >= a block size */
if ((ctr->padlen == ctr->blocklen) && cipher_descriptor[ctr->cipher].accel_ctr_encrypt != NULL && (len >= (unsigned long)ctr->blocklen)) {
2005-11-18 05:15:37 +00:00
if ((err = cipher_descriptor[ctr->cipher].accel_ctr_encrypt(pt, ct, len/ctr->blocklen, ctr->ctr, ctr->mode, &ctr->key)) != CRYPT_OK) {
return err;
}
2005-04-17 11:37:13 +00:00
len %= ctr->blocklen;
}
while (len) {
2003-03-03 00:59:24 +00:00
/* is the pad empty? */
if (ctr->padlen == ctr->blocklen) {
/* increment counter */
2005-06-09 00:08:13 +00:00
if (ctr->mode == CTR_COUNTER_LITTLE_ENDIAN) {
2004-01-25 17:40:34 +00:00
/* little-endian */
for (x = 0; x < ctr->blocklen; x++) {
ctr->ctr[x] = (ctr->ctr[x] + (unsigned char)1) & (unsigned char)255;
if (ctr->ctr[x] != (unsigned char)0) {
break;
}
}
} else {
/* big-endian */
for (x = ctr->blocklen-1; x >= 0; x--) {
ctr->ctr[x] = (ctr->ctr[x] + (unsigned char)1) & (unsigned char)255;
if (ctr->ctr[x] != (unsigned char)0) {
break;
}
2003-03-03 00:59:24 +00:00
}
}
/* encrypt it */
2005-11-18 05:15:37 +00:00
if ((err = cipher_descriptor[ctr->cipher].ecb_encrypt(ctr->ctr, ctr->pad, &ctr->key)) != CRYPT_OK) {
return err;
}
2003-03-03 00:59:24 +00:00
ctr->padlen = 0;
}
2005-04-17 11:37:13 +00:00
#ifdef LTC_FAST
if (ctr->padlen == 0 && len >= (unsigned long)ctr->blocklen) {
for (x = 0; x < ctr->blocklen; x += sizeof(LTC_FAST_TYPE)) {
*((LTC_FAST_TYPE*)((unsigned char *)ct + x)) = *((LTC_FAST_TYPE*)((unsigned char *)pt + x)) ^
*((LTC_FAST_TYPE*)((unsigned char *)ctr->pad + x));
}
pt += ctr->blocklen;
ct += ctr->blocklen;
len -= ctr->blocklen;
ctr->padlen = ctr->blocklen;
continue;
}
#endif
*ct++ = *pt++ ^ ctr->pad[ctr->padlen++];
--len;
2003-03-03 00:59:24 +00:00
}
return CRYPT_OK;
}
#endif
2005-06-09 00:08:13 +00:00
/* $Source$ */
/* $Revision$ */
/* $Date$ */