1 #include <linux/crc32.h>
2 #include <crypto/internal/hash.h>
3 #include <linux/init.h>
4 #include <linux/module.h>
5 #include <linux/string.h>
6 #include <linux/kernel.h>
7 #include <linux/cpufeature.h>
8 #include <asm/switch_to.h>
10 #define CHKSUM_BLOCK_SIZE 1
11 #define CHKSUM_DIGEST_SIZE 4
14 #define VMX_ALIGN_MASK (VMX_ALIGN-1)
16 #define VECTOR_BREAKPOINT 512
18 u32
__crc32c_vpmsum(u32 crc
, unsigned char const *p
, size_t len
);
20 static u32
crc32c_vpmsum(u32 crc
, unsigned char const *p
, size_t len
)
22 unsigned int prealign
;
25 if (len
< (VECTOR_BREAKPOINT
+ VMX_ALIGN
) || in_interrupt())
26 return __crc32c_le(crc
, p
, len
);
28 if ((unsigned long)p
& VMX_ALIGN_MASK
) {
29 prealign
= VMX_ALIGN
- ((unsigned long)p
& VMX_ALIGN_MASK
);
30 crc
= __crc32c_le(crc
, p
, prealign
);
35 if (len
& ~VMX_ALIGN_MASK
) {
38 enable_kernel_altivec();
39 crc
= __crc32c_vpmsum(crc
, p
, len
& ~VMX_ALIGN_MASK
);
40 disable_kernel_altivec();
45 tail
= len
& VMX_ALIGN_MASK
;
47 p
+= len
& ~VMX_ALIGN_MASK
;
48 crc
= __crc32c_le(crc
, p
, tail
);
54 static int crc32c_vpmsum_cra_init(struct crypto_tfm
*tfm
)
56 u32
*key
= crypto_tfm_ctx(tfm
);
64 * Setting the seed allows arbitrary accumulators and flexible XOR policy
65 * If your algorithm starts with ~0, then XOR with ~0 before you set
68 static int crc32c_vpmsum_setkey(struct crypto_shash
*hash
, const u8
*key
,
71 u32
*mctx
= crypto_shash_ctx(hash
);
73 if (keylen
!= sizeof(u32
)) {
74 crypto_shash_set_flags(hash
, CRYPTO_TFM_RES_BAD_KEY_LEN
);
77 *mctx
= le32_to_cpup((__le32
*)key
);
81 static int crc32c_vpmsum_init(struct shash_desc
*desc
)
83 u32
*mctx
= crypto_shash_ctx(desc
->tfm
);
84 u32
*crcp
= shash_desc_ctx(desc
);
91 static int crc32c_vpmsum_update(struct shash_desc
*desc
, const u8
*data
,
94 u32
*crcp
= shash_desc_ctx(desc
);
96 *crcp
= crc32c_vpmsum(*crcp
, data
, len
);
101 static int __crc32c_vpmsum_finup(u32
*crcp
, const u8
*data
, unsigned int len
,
104 *(__le32
*)out
= ~cpu_to_le32(crc32c_vpmsum(*crcp
, data
, len
));
109 static int crc32c_vpmsum_finup(struct shash_desc
*desc
, const u8
*data
,
110 unsigned int len
, u8
*out
)
112 return __crc32c_vpmsum_finup(shash_desc_ctx(desc
), data
, len
, out
);
115 static int crc32c_vpmsum_final(struct shash_desc
*desc
, u8
*out
)
117 u32
*crcp
= shash_desc_ctx(desc
);
119 *(__le32
*)out
= ~cpu_to_le32p(crcp
);
124 static int crc32c_vpmsum_digest(struct shash_desc
*desc
, const u8
*data
,
125 unsigned int len
, u8
*out
)
127 return __crc32c_vpmsum_finup(crypto_shash_ctx(desc
->tfm
), data
, len
,
131 static struct shash_alg alg
= {
132 .setkey
= crc32c_vpmsum_setkey
,
133 .init
= crc32c_vpmsum_init
,
134 .update
= crc32c_vpmsum_update
,
135 .final
= crc32c_vpmsum_final
,
136 .finup
= crc32c_vpmsum_finup
,
137 .digest
= crc32c_vpmsum_digest
,
138 .descsize
= sizeof(u32
),
139 .digestsize
= CHKSUM_DIGEST_SIZE
,
141 .cra_name
= "crc32c",
142 .cra_driver_name
= "crc32c-vpmsum",
144 .cra_flags
= CRYPTO_ALG_OPTIONAL_KEY
,
145 .cra_blocksize
= CHKSUM_BLOCK_SIZE
,
146 .cra_ctxsize
= sizeof(u32
),
147 .cra_module
= THIS_MODULE
,
148 .cra_init
= crc32c_vpmsum_cra_init
,
152 static int __init
crc32c_vpmsum_mod_init(void)
154 if (!cpu_has_feature(CPU_FTR_ARCH_207S
))
157 return crypto_register_shash(&alg
);
160 static void __exit
crc32c_vpmsum_mod_fini(void)
162 crypto_unregister_shash(&alg
);
165 module_cpu_feature_match(PPC_MODULE_FEATURE_VEC_CRYPTO
, crc32c_vpmsum_mod_init
);
166 module_exit(crc32c_vpmsum_mod_fini
);
168 MODULE_AUTHOR("Anton Blanchard <anton@samba.org>");
169 MODULE_DESCRIPTION("CRC32C using vector polynomial multiply-sum instructions");
170 MODULE_LICENSE("GPL");
171 MODULE_ALIAS_CRYPTO("crc32c");
172 MODULE_ALIAS_CRYPTO("crc32c-vpmsum");