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Jussi Kivilinna
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Herbert Xu
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Nov 9, 2011
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refs/heads/master: 171c02048f50d7187991f251ddeed2d7e5de104f | ||
refs/heads/master: 6c2205b8ffec035f4925b8ee84b7758afeee58b5 |
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#ifndef _CRYPTO_LRW_H | ||
#define _CRYPTO_LRW_H | ||
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#include <crypto/b128ops.h> | ||
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struct scatterlist; | ||
struct gf128mul_64k; | ||
struct blkcipher_desc; | ||
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#define LRW_BLOCK_SIZE 16 | ||
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struct lrw_table_ctx { | ||
/* optimizes multiplying a random (non incrementing, as at the | ||
* start of a new sector) value with key2, we could also have | ||
* used 4k optimization tables or no optimization at all. In the | ||
* latter case we would have to store key2 here */ | ||
struct gf128mul_64k *table; | ||
/* stores: | ||
* key2*{ 0,0,...0,0,0,0,1 }, key2*{ 0,0,...0,0,0,1,1 }, | ||
* key2*{ 0,0,...0,0,1,1,1 }, key2*{ 0,0,...0,1,1,1,1 } | ||
* key2*{ 0,0,...1,1,1,1,1 }, etc | ||
* needed for optimized multiplication of incrementing values | ||
* with key2 */ | ||
be128 mulinc[128]; | ||
}; | ||
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int lrw_init_table(struct lrw_table_ctx *ctx, const u8 *tweak); | ||
void lrw_free_table(struct lrw_table_ctx *ctx); | ||
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struct lrw_crypt_req { | ||
be128 *tbuf; | ||
unsigned int tbuflen; | ||
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struct lrw_table_ctx *table_ctx; | ||
void *crypt_ctx; | ||
void (*crypt_fn)(void *ctx, u8 *blks, unsigned int nbytes); | ||
}; | ||
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int lrw_crypt(struct blkcipher_desc *desc, struct scatterlist *dst, | ||
struct scatterlist *src, unsigned int nbytes, | ||
struct lrw_crypt_req *req); | ||
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#endif /* _CRYPTO_LRW_H */ |