key[7] ^= F2(key[0], Tr[i % 4][7], Tm[i][7]);
}
-int __cast6_setkey(struct cast6_ctx *c, const u8 *in_key,
- unsigned key_len, u32 *flags)
+int __cast6_setkey(struct cast6_ctx *c, const u8 *in_key, unsigned int key_len)
{
int i;
u32 key[8];
__be32 p_key[8]; /* padded key */
- if (key_len % 4 != 0) {
- *flags |= CRYPTO_TFM_RES_BAD_KEY_LEN;
+ if (key_len % 4 != 0)
return -EINVAL;
- }
memset(p_key, 0, 32);
memcpy(p_key, in_key, key_len);
int cast6_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen)
{
- return __cast6_setkey(crypto_tfm_ctx(tfm), key, keylen,
- &tfm->crt_flags);
+ return __cast6_setkey(crypto_tfm_ctx(tfm), key, keylen);
}
EXPORT_SYMBOL_GPL(cast6_setkey);
/*forward quad round*/
-static inline void Q(u32 *block, u8 *Kr, u32 *Km)
+static inline void Q(u32 *block, const u8 *Kr, const u32 *Km)
{
u32 I;
block[2] ^= F1(block[3], Kr[0], Km[0]);
}
/*reverse quad round*/
-static inline void QBAR(u32 *block, u8 *Kr, u32 *Km)
+static inline void QBAR(u32 *block, const u8 *Kr, const u32 *Km)
{
u32 I;
block[3] ^= F1(block[0], Kr[3], Km[3]);
block[2] ^= F1(block[3], Kr[0], Km[0]);
}
-void __cast6_encrypt(struct cast6_ctx *c, u8 *outbuf, const u8 *inbuf)
+void __cast6_encrypt(const void *ctx, u8 *outbuf, const u8 *inbuf)
{
+ const struct cast6_ctx *c = ctx;
const __be32 *src = (const __be32 *)inbuf;
__be32 *dst = (__be32 *)outbuf;
u32 block[4];
- u32 *Km;
- u8 *Kr;
+ const u32 *Km;
+ const u8 *Kr;
block[0] = be32_to_cpu(src[0]);
block[1] = be32_to_cpu(src[1]);
__cast6_encrypt(crypto_tfm_ctx(tfm), outbuf, inbuf);
}
-void __cast6_decrypt(struct cast6_ctx *c, u8 *outbuf, const u8 *inbuf)
+void __cast6_decrypt(const void *ctx, u8 *outbuf, const u8 *inbuf)
{
+ const struct cast6_ctx *c = ctx;
const __be32 *src = (const __be32 *)inbuf;
__be32 *dst = (__be32 *)outbuf;
u32 block[4];
- u32 *Km;
- u8 *Kr;
+ const u32 *Km;
+ const u8 *Kr;
block[0] = be32_to_cpu(src[0]);
block[1] = be32_to_cpu(src[1]);