idx
int64
func_before
string
Vulnerability Classification
string
vul
int64
func_after
string
patch
string
CWE ID
string
lines_before
string
lines_after
string
37,700
static int sha224_ssse3_init(struct shash_desc *desc) { struct sha256_state *sctx = shash_desc_ctx(desc); sctx->state[0] = SHA224_H0; sctx->state[1] = SHA224_H1; sctx->state[2] = SHA224_H2; sctx->state[3] = SHA224_H3; sctx->state[4] = SHA224_H4; sctx->state[5] = SHA224_H5; sctx->state[6] = SHA224_H6; sctx->st...
null
0
static int sha224_ssse3_init(struct shash_desc *desc) { struct sha256_state *sctx = shash_desc_ctx(desc); sctx->state[0] = SHA224_H0; sctx->state[1] = SHA224_H1; sctx->state[2] = SHA224_H2; sctx->state[3] = SHA224_H3; sctx->state[4] = SHA224_H4; sctx->state[5] = SHA224_H5; sctx->state[6] = SHA224_H6; sctx->st...
@@ -318,5 +318,5 @@ module_exit(sha256_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA256 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha256"); -MODULE_ALIAS("sha224"); +MODULE_ALIAS_CRYPTO("sha256"); +MODULE_ALIAS_CRYPTO("sha224");
CWE-264
null
null
37,701
static int sha256_ssse3_export(struct shash_desc *desc, void *out) { struct sha256_state *sctx = shash_desc_ctx(desc); memcpy(out, sctx, sizeof(*sctx)); return 0; }
null
0
static int sha256_ssse3_export(struct shash_desc *desc, void *out) { struct sha256_state *sctx = shash_desc_ctx(desc); memcpy(out, sctx, sizeof(*sctx)); return 0; }
@@ -318,5 +318,5 @@ module_exit(sha256_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA256 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha256"); -MODULE_ALIAS("sha224"); +MODULE_ALIAS_CRYPTO("sha256"); +MODULE_ALIAS_CRYPTO("sha224");
CWE-264
null
null
37,702
static int sha256_ssse3_final(struct shash_desc *desc, u8 *out) { struct sha256_state *sctx = shash_desc_ctx(desc); unsigned int i, index, padlen; __be32 *dst = (__be32 *)out; __be64 bits; static const u8 padding[SHA256_BLOCK_SIZE] = { 0x80, }; bits = cpu_to_be64(sctx->count << 3); /* Pad out to 56 mod 64 and ...
null
0
static int sha256_ssse3_final(struct shash_desc *desc, u8 *out) { struct sha256_state *sctx = shash_desc_ctx(desc); unsigned int i, index, padlen; __be32 *dst = (__be32 *)out; __be64 bits; static const u8 padding[SHA256_BLOCK_SIZE] = { 0x80, }; bits = cpu_to_be64(sctx->count << 3); /* Pad out to 56 mod 64 and ...
@@ -318,5 +318,5 @@ module_exit(sha256_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA256 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha256"); -MODULE_ALIAS("sha224"); +MODULE_ALIAS_CRYPTO("sha256"); +MODULE_ALIAS_CRYPTO("sha224");
CWE-264
null
null
37,703
static int sha256_ssse3_import(struct shash_desc *desc, const void *in) { struct sha256_state *sctx = shash_desc_ctx(desc); memcpy(sctx, in, sizeof(*sctx)); return 0; }
null
0
static int sha256_ssse3_import(struct shash_desc *desc, const void *in) { struct sha256_state *sctx = shash_desc_ctx(desc); memcpy(sctx, in, sizeof(*sctx)); return 0; }
@@ -318,5 +318,5 @@ module_exit(sha256_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA256 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha256"); -MODULE_ALIAS("sha224"); +MODULE_ALIAS_CRYPTO("sha256"); +MODULE_ALIAS_CRYPTO("sha224");
CWE-264
null
null
37,704
static int sha256_ssse3_init(struct shash_desc *desc) { struct sha256_state *sctx = shash_desc_ctx(desc); sctx->state[0] = SHA256_H0; sctx->state[1] = SHA256_H1; sctx->state[2] = SHA256_H2; sctx->state[3] = SHA256_H3; sctx->state[4] = SHA256_H4; sctx->state[5] = SHA256_H5; sctx->state[6] = SHA256_H6; sctx->st...
null
0
static int sha256_ssse3_init(struct shash_desc *desc) { struct sha256_state *sctx = shash_desc_ctx(desc); sctx->state[0] = SHA256_H0; sctx->state[1] = SHA256_H1; sctx->state[2] = SHA256_H2; sctx->state[3] = SHA256_H3; sctx->state[4] = SHA256_H4; sctx->state[5] = SHA256_H5; sctx->state[6] = SHA256_H6; sctx->st...
@@ -318,5 +318,5 @@ module_exit(sha256_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA256 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha256"); -MODULE_ALIAS("sha224"); +MODULE_ALIAS_CRYPTO("sha256"); +MODULE_ALIAS_CRYPTO("sha224");
CWE-264
null
null
37,705
static int __init sha256_ssse3_mod_init(void) { /* test for SSSE3 first */ if (cpu_has_ssse3) sha256_transform_asm = sha256_transform_ssse3; #ifdef CONFIG_AS_AVX /* allow AVX to override SSSE3, it's a little faster */ if (avx_usable()) { #ifdef CONFIG_AS_AVX2 if (boot_cpu_has(X86_FEATURE_AVX2) && boot_cpu_has(...
null
0
static int __init sha256_ssse3_mod_init(void) { /* test for SSSE3 first */ if (cpu_has_ssse3) sha256_transform_asm = sha256_transform_ssse3; #ifdef CONFIG_AS_AVX /* allow AVX to override SSSE3, it's a little faster */ if (avx_usable()) { #ifdef CONFIG_AS_AVX2 if (boot_cpu_has(X86_FEATURE_AVX2) && boot_cpu_has(...
@@ -318,5 +318,5 @@ module_exit(sha256_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA256 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha256"); -MODULE_ALIAS("sha224"); +MODULE_ALIAS_CRYPTO("sha256"); +MODULE_ALIAS_CRYPTO("sha224");
CWE-264
null
null
37,706
static int sha256_ssse3_update(struct shash_desc *desc, const u8 *data, unsigned int len) { struct sha256_state *sctx = shash_desc_ctx(desc); unsigned int partial = sctx->count % SHA256_BLOCK_SIZE; int res; /* Handle the fast case right here */ if (partial + len < SHA256_BLOCK_SIZE) { sctx->count += len...
null
0
static int sha256_ssse3_update(struct shash_desc *desc, const u8 *data, unsigned int len) { struct sha256_state *sctx = shash_desc_ctx(desc); unsigned int partial = sctx->count % SHA256_BLOCK_SIZE; int res; /* Handle the fast case right here */ if (partial + len < SHA256_BLOCK_SIZE) { sctx->count += len...
@@ -318,5 +318,5 @@ module_exit(sha256_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA256 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha256"); -MODULE_ALIAS("sha224"); +MODULE_ALIAS_CRYPTO("sha256"); +MODULE_ALIAS_CRYPTO("sha224");
CWE-264
null
null
37,707
static int sha384_ssse3_final(struct shash_desc *desc, u8 *hash) { u8 D[SHA512_DIGEST_SIZE]; sha512_ssse3_final(desc, D); memcpy(hash, D, SHA384_DIGEST_SIZE); memset(D, 0, SHA512_DIGEST_SIZE); return 0; }
null
0
static int sha384_ssse3_final(struct shash_desc *desc, u8 *hash) { u8 D[SHA512_DIGEST_SIZE]; sha512_ssse3_final(desc, D); memcpy(hash, D, SHA384_DIGEST_SIZE); memset(D, 0, SHA512_DIGEST_SIZE); return 0; }
@@ -326,5 +326,5 @@ module_exit(sha512_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA512 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha512"); -MODULE_ALIAS("sha384"); +MODULE_ALIAS_CRYPTO("sha512"); +MODULE_ALIAS_CRYPTO("sha384");
CWE-264
null
null
37,708
static int sha384_ssse3_init(struct shash_desc *desc) { struct sha512_state *sctx = shash_desc_ctx(desc); sctx->state[0] = SHA384_H0; sctx->state[1] = SHA384_H1; sctx->state[2] = SHA384_H2; sctx->state[3] = SHA384_H3; sctx->state[4] = SHA384_H4; sctx->state[5] = SHA384_H5; sctx->state[6] = SHA384_H6; sctx->st...
null
0
static int sha384_ssse3_init(struct shash_desc *desc) { struct sha512_state *sctx = shash_desc_ctx(desc); sctx->state[0] = SHA384_H0; sctx->state[1] = SHA384_H1; sctx->state[2] = SHA384_H2; sctx->state[3] = SHA384_H3; sctx->state[4] = SHA384_H4; sctx->state[5] = SHA384_H5; sctx->state[6] = SHA384_H6; sctx->st...
@@ -326,5 +326,5 @@ module_exit(sha512_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA512 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha512"); -MODULE_ALIAS("sha384"); +MODULE_ALIAS_CRYPTO("sha512"); +MODULE_ALIAS_CRYPTO("sha384");
CWE-264
null
null
37,709
static int sha512_ssse3_export(struct shash_desc *desc, void *out) { struct sha512_state *sctx = shash_desc_ctx(desc); memcpy(out, sctx, sizeof(*sctx)); return 0; }
null
0
static int sha512_ssse3_export(struct shash_desc *desc, void *out) { struct sha512_state *sctx = shash_desc_ctx(desc); memcpy(out, sctx, sizeof(*sctx)); return 0; }
@@ -326,5 +326,5 @@ module_exit(sha512_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA512 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha512"); -MODULE_ALIAS("sha384"); +MODULE_ALIAS_CRYPTO("sha512"); +MODULE_ALIAS_CRYPTO("sha384");
CWE-264
null
null
37,710
static int sha512_ssse3_final(struct shash_desc *desc, u8 *out) { struct sha512_state *sctx = shash_desc_ctx(desc); unsigned int i, index, padlen; __be64 *dst = (__be64 *)out; __be64 bits[2]; static const u8 padding[SHA512_BLOCK_SIZE] = { 0x80, }; /* save number of bits */ bits[1] = cpu_to_be64(sctx->count[0] <...
null
0
static int sha512_ssse3_final(struct shash_desc *desc, u8 *out) { struct sha512_state *sctx = shash_desc_ctx(desc); unsigned int i, index, padlen; __be64 *dst = (__be64 *)out; __be64 bits[2]; static const u8 padding[SHA512_BLOCK_SIZE] = { 0x80, }; /* save number of bits */ bits[1] = cpu_to_be64(sctx->count[0] <...
@@ -326,5 +326,5 @@ module_exit(sha512_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA512 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha512"); -MODULE_ALIAS("sha384"); +MODULE_ALIAS_CRYPTO("sha512"); +MODULE_ALIAS_CRYPTO("sha384");
CWE-264
null
null
37,711
static int sha512_ssse3_import(struct shash_desc *desc, const void *in) { struct sha512_state *sctx = shash_desc_ctx(desc); memcpy(sctx, in, sizeof(*sctx)); return 0; }
null
0
static int sha512_ssse3_import(struct shash_desc *desc, const void *in) { struct sha512_state *sctx = shash_desc_ctx(desc); memcpy(sctx, in, sizeof(*sctx)); return 0; }
@@ -326,5 +326,5 @@ module_exit(sha512_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA512 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha512"); -MODULE_ALIAS("sha384"); +MODULE_ALIAS_CRYPTO("sha512"); +MODULE_ALIAS_CRYPTO("sha384");
CWE-264
null
null
37,712
static void __exit sha512_ssse3_mod_fini(void) { crypto_unregister_shashes(algs, ARRAY_SIZE(algs)); }
null
0
static void __exit sha512_ssse3_mod_fini(void) { crypto_unregister_shashes(algs, ARRAY_SIZE(algs)); }
@@ -326,5 +326,5 @@ module_exit(sha512_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA512 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha512"); -MODULE_ALIAS("sha384"); +MODULE_ALIAS_CRYPTO("sha512"); +MODULE_ALIAS_CRYPTO("sha384");
CWE-264
null
null
37,713
static int sha512_ssse3_update(struct shash_desc *desc, const u8 *data, unsigned int len) { struct sha512_state *sctx = shash_desc_ctx(desc); unsigned int partial = sctx->count[0] % SHA512_BLOCK_SIZE; int res; /* Handle the fast case right here */ if (partial + len < SHA512_BLOCK_SIZE) { sctx->count[0] ...
null
0
static int sha512_ssse3_update(struct shash_desc *desc, const u8 *data, unsigned int len) { struct sha512_state *sctx = shash_desc_ctx(desc); unsigned int partial = sctx->count[0] % SHA512_BLOCK_SIZE; int res; /* Handle the fast case right here */ if (partial + len < SHA512_BLOCK_SIZE) { sctx->count[0] ...
@@ -326,5 +326,5 @@ module_exit(sha512_ssse3_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("SHA512 Secure Hash Algorithm, Supplemental SSE3 accelerated"); -MODULE_ALIAS("sha512"); -MODULE_ALIAS("sha384"); +MODULE_ALIAS_CRYPTO("sha512"); +MODULE_ALIAS_CRYPTO("sha384");
CWE-264
null
null
37,714
static int cbc_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return glue_cbc_decrypt_128bit(&twofish_dec_cbc, desc, dst, src, nbytes); }
null
0
static int cbc_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return glue_cbc_decrypt_128bit(&twofish_dec_cbc, desc, dst, src, nbytes); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,715
static int cbc_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return glue_cbc_encrypt_128bit(GLUE_FUNC_CAST(twofish_enc_blk), desc, dst, src, nbytes); }
null
0
static int cbc_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return glue_cbc_encrypt_128bit(GLUE_FUNC_CAST(twofish_enc_blk), desc, dst, src, nbytes); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,716
static int ctr_crypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return glue_ctr_crypt_128bit(&twofish_ctr, desc, dst, src, nbytes); }
null
0
static int ctr_crypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return glue_ctr_crypt_128bit(&twofish_ctr, desc, dst, src, nbytes); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,717
static void decrypt_callback(void *priv, u8 *srcdst, unsigned int nbytes) { const unsigned int bsize = TF_BLOCK_SIZE; struct crypt_priv *ctx = priv; int i; ctx->fpu_enabled = twofish_fpu_begin(ctx->fpu_enabled, nbytes); if (nbytes == bsize * TWOFISH_PARALLEL_BLOCKS) { twofish_ecb_dec_8way(ctx->ctx, srcdst, src...
null
0
static void decrypt_callback(void *priv, u8 *srcdst, unsigned int nbytes) { const unsigned int bsize = TF_BLOCK_SIZE; struct crypt_priv *ctx = priv; int i; ctx->fpu_enabled = twofish_fpu_begin(ctx->fpu_enabled, nbytes); if (nbytes == bsize * TWOFISH_PARALLEL_BLOCKS) { twofish_ecb_dec_8way(ctx->ctx, srcdst, src...
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,718
static int ecb_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return glue_ecb_crypt_128bit(&twofish_dec, desc, dst, src, nbytes); }
null
0
static int ecb_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return glue_ecb_crypt_128bit(&twofish_dec, desc, dst, src, nbytes); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,719
static int ecb_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return glue_ecb_crypt_128bit(&twofish_enc, desc, dst, src, nbytes); }
null
0
static int ecb_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { return glue_ecb_crypt_128bit(&twofish_enc, desc, dst, src, nbytes); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,720
static void encrypt_callback(void *priv, u8 *srcdst, unsigned int nbytes) { const unsigned int bsize = TF_BLOCK_SIZE; struct crypt_priv *ctx = priv; int i; ctx->fpu_enabled = twofish_fpu_begin(ctx->fpu_enabled, nbytes); if (nbytes == bsize * TWOFISH_PARALLEL_BLOCKS) { twofish_ecb_enc_8way(ctx->ctx, srcdst, src...
null
0
static void encrypt_callback(void *priv, u8 *srcdst, unsigned int nbytes) { const unsigned int bsize = TF_BLOCK_SIZE; struct crypt_priv *ctx = priv; int i; ctx->fpu_enabled = twofish_fpu_begin(ctx->fpu_enabled, nbytes); if (nbytes == bsize * TWOFISH_PARALLEL_BLOCKS) { twofish_ecb_enc_8way(ctx->ctx, srcdst, src...
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,721
static int lrw_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_lrw_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[TWOFISH_PARALLEL_BLOCKS]; struct crypt_priv crypt_ctx = { .ctx = &ctx->twofish_ctx, .fpu_enabled = false, ...
null
0
static int lrw_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_lrw_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[TWOFISH_PARALLEL_BLOCKS]; struct crypt_priv crypt_ctx = { .ctx = &ctx->twofish_ctx, .fpu_enabled = false, ...
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,722
static int lrw_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_lrw_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[TWOFISH_PARALLEL_BLOCKS]; struct crypt_priv crypt_ctx = { .ctx = &ctx->twofish_ctx, .fpu_enabled = false, ...
null
0
static int lrw_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_lrw_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[TWOFISH_PARALLEL_BLOCKS]; struct crypt_priv crypt_ctx = { .ctx = &ctx->twofish_ctx, .fpu_enabled = false, ...
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,723
static inline void twofish_enc_blk_3way(struct twofish_ctx *ctx, u8 *dst, const u8 *src) { __twofish_enc_blk_3way(ctx, dst, src, false); }
null
0
static inline void twofish_enc_blk_3way(struct twofish_ctx *ctx, u8 *dst, const u8 *src) { __twofish_enc_blk_3way(ctx, dst, src, false); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,724
static void __exit twofish_exit(void) { crypto_unregister_algs(twofish_algs, ARRAY_SIZE(twofish_algs)); }
null
0
static void __exit twofish_exit(void) { crypto_unregister_algs(twofish_algs, ARRAY_SIZE(twofish_algs)); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,725
static inline bool twofish_fpu_begin(bool fpu_enabled, unsigned int nbytes) { return glue_fpu_begin(TF_BLOCK_SIZE, TWOFISH_PARALLEL_BLOCKS, NULL, fpu_enabled, nbytes); }
null
0
static inline bool twofish_fpu_begin(bool fpu_enabled, unsigned int nbytes) { return glue_fpu_begin(TF_BLOCK_SIZE, TWOFISH_PARALLEL_BLOCKS, NULL, fpu_enabled, nbytes); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,726
static inline void twofish_fpu_end(bool fpu_enabled) { glue_fpu_end(fpu_enabled); }
null
0
static inline void twofish_fpu_end(bool fpu_enabled) { glue_fpu_end(fpu_enabled); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,727
static void twofish_xts_dec(void *ctx, u128 *dst, const u128 *src, le128 *iv) { glue_xts_crypt_128bit_one(ctx, dst, src, iv, GLUE_FUNC_CAST(twofish_dec_blk)); }
null
0
static void twofish_xts_dec(void *ctx, u128 *dst, const u128 *src, le128 *iv) { glue_xts_crypt_128bit_one(ctx, dst, src, iv, GLUE_FUNC_CAST(twofish_dec_blk)); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,728
static void twofish_xts_enc(void *ctx, u128 *dst, const u128 *src, le128 *iv) { glue_xts_crypt_128bit_one(ctx, dst, src, iv, GLUE_FUNC_CAST(twofish_enc_blk)); }
null
0
static void twofish_xts_enc(void *ctx, u128 *dst, const u128 *src, le128 *iv) { glue_xts_crypt_128bit_one(ctx, dst, src, iv, GLUE_FUNC_CAST(twofish_enc_blk)); }
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,729
static int xts_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_xts_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); return glue_xts_crypt_128bit(&twofish_enc_xts, desc, dst, src, nbytes, XTS_TWEAK_CAST(twofish_enc_blk), ...
null
0
static int xts_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_xts_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); return glue_xts_crypt_128bit(&twofish_enc_xts, desc, dst, src, nbytes, XTS_TWEAK_CAST(twofish_enc_blk), ...
@@ -579,4 +579,4 @@ module_exit(twofish_exit); MODULE_DESCRIPTION("Twofish Cipher Algorithm, AVX optimized"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("twofish"); +MODULE_ALIAS_CRYPTO("twofish");
CWE-264
null
null
37,730
static void twofish_decrypt(struct crypto_tfm *tfm, u8 *dst, const u8 *src) { twofish_dec_blk(crypto_tfm_ctx(tfm), dst, src); }
null
0
static void twofish_decrypt(struct crypto_tfm *tfm, u8 *dst, const u8 *src) { twofish_dec_blk(crypto_tfm_ctx(tfm), dst, src); }
@@ -96,5 +96,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION ("Twofish Cipher Algorithm, asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,731
static void decrypt_callback(void *priv, u8 *srcdst, unsigned int nbytes) { const unsigned int bsize = TF_BLOCK_SIZE; struct twofish_ctx *ctx = priv; int i; if (nbytes == 3 * bsize) { twofish_dec_blk_3way(ctx, srcdst, srcdst); return; } for (i = 0; i < nbytes / bsize; i++, srcdst += bsize) twofish_dec_blk...
null
0
static void decrypt_callback(void *priv, u8 *srcdst, unsigned int nbytes) { const unsigned int bsize = TF_BLOCK_SIZE; struct twofish_ctx *ctx = priv; int i; if (nbytes == 3 * bsize) { twofish_dec_blk_3way(ctx, srcdst, srcdst); return; } for (i = 0; i < nbytes / bsize; i++, srcdst += bsize) twofish_dec_blk...
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,732
static void encrypt_callback(void *priv, u8 *srcdst, unsigned int nbytes) { const unsigned int bsize = TF_BLOCK_SIZE; struct twofish_ctx *ctx = priv; int i; if (nbytes == 3 * bsize) { twofish_enc_blk_3way(ctx, srcdst, srcdst); return; } for (i = 0; i < nbytes / bsize; i++, srcdst += bsize) twofish_enc_blk...
null
0
static void encrypt_callback(void *priv, u8 *srcdst, unsigned int nbytes) { const unsigned int bsize = TF_BLOCK_SIZE; struct twofish_ctx *ctx = priv; int i; if (nbytes == 3 * bsize) { twofish_enc_blk_3way(ctx, srcdst, srcdst); return; } for (i = 0; i < nbytes / bsize; i++, srcdst += bsize) twofish_enc_blk...
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,733
static void __exit fini(void) { crypto_unregister_algs(tf_algs, ARRAY_SIZE(tf_algs)); }
null
0
static void __exit fini(void) { crypto_unregister_algs(tf_algs, ARRAY_SIZE(tf_algs)); }
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,734
static int __init init(void) { if (!force && is_blacklisted_cpu()) { printk(KERN_INFO "twofish-x86_64-3way: performance on this CPU " "would be suboptimal: disabling " "twofish-x86_64-3way.\n"); return -ENODEV; } return crypto_register_algs(tf_algs, ARRAY_SIZE(tf_algs)); }
null
0
static int __init init(void) { if (!force && is_blacklisted_cpu()) { printk(KERN_INFO "twofish-x86_64-3way: performance on this CPU " "would be suboptimal: disabling " "twofish-x86_64-3way.\n"); return -ENODEV; } return crypto_register_algs(tf_algs, ARRAY_SIZE(tf_algs)); }
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,735
static int lrw_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_lrw_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[3]; struct lrw_crypt_req req = { .tbuf = buf, .tbuflen = sizeof(buf), .table_ctx = &ctx->lrw_table, ....
null
0
static int lrw_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_lrw_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[3]; struct lrw_crypt_req req = { .tbuf = buf, .tbuflen = sizeof(buf), .table_ctx = &ctx->lrw_table, ....
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,736
static int lrw_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_lrw_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[3]; struct lrw_crypt_req req = { .tbuf = buf, .tbuflen = sizeof(buf), .table_ctx = &ctx->lrw_table, ....
null
0
static int lrw_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_lrw_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[3]; struct lrw_crypt_req req = { .tbuf = buf, .tbuflen = sizeof(buf), .table_ctx = &ctx->lrw_table, ....
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,737
void lrw_twofish_exit_tfm(struct crypto_tfm *tfm) { struct twofish_lrw_ctx *ctx = crypto_tfm_ctx(tfm); lrw_free_table(&ctx->lrw_table); }
null
0
void lrw_twofish_exit_tfm(struct crypto_tfm *tfm) { struct twofish_lrw_ctx *ctx = crypto_tfm_ctx(tfm); lrw_free_table(&ctx->lrw_table); }
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,738
int lrw_twofish_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen) { struct twofish_lrw_ctx *ctx = crypto_tfm_ctx(tfm); int err; err = __twofish_setkey(&ctx->twofish_ctx, key, keylen - TF_BLOCK_SIZE, &tfm->crt_flags); if (err) return err; return lrw_init_table(&ctx->lrw_table...
null
0
int lrw_twofish_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen) { struct twofish_lrw_ctx *ctx = crypto_tfm_ctx(tfm); int err; err = __twofish_setkey(&ctx->twofish_ctx, key, keylen - TF_BLOCK_SIZE, &tfm->crt_flags); if (err) return err; return lrw_init_table(&ctx->lrw_table...
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,739
void twofish_dec_blk_cbc_3way(void *ctx, u128 *dst, const u128 *src) { u128 ivs[2]; ivs[0] = src[0]; ivs[1] = src[1]; twofish_dec_blk_3way(ctx, (u8 *)dst, (u8 *)src); u128_xor(&dst[1], &dst[1], &ivs[0]); u128_xor(&dst[2], &dst[2], &ivs[1]); }
null
0
void twofish_dec_blk_cbc_3way(void *ctx, u128 *dst, const u128 *src) { u128 ivs[2]; ivs[0] = src[0]; ivs[1] = src[1]; twofish_dec_blk_3way(ctx, (u8 *)dst, (u8 *)src); u128_xor(&dst[1], &dst[1], &ivs[0]); u128_xor(&dst[2], &dst[2], &ivs[1]); }
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,740
void twofish_enc_blk_ctr(void *ctx, u128 *dst, const u128 *src, le128 *iv) { be128 ctrblk; if (dst != src) *dst = *src; le128_to_be128(&ctrblk, iv); le128_inc(iv); twofish_enc_blk(ctx, (u8 *)&ctrblk, (u8 *)&ctrblk); u128_xor(dst, dst, (u128 *)&ctrblk); }
null
0
void twofish_enc_blk_ctr(void *ctx, u128 *dst, const u128 *src, le128 *iv) { be128 ctrblk; if (dst != src) *dst = *src; le128_to_be128(&ctrblk, iv); le128_inc(iv); twofish_enc_blk(ctx, (u8 *)&ctrblk, (u8 *)&ctrblk); u128_xor(dst, dst, (u128 *)&ctrblk); }
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,741
void twofish_enc_blk_ctr_3way(void *ctx, u128 *dst, const u128 *src, le128 *iv) { be128 ctrblks[3]; if (dst != src) { dst[0] = src[0]; dst[1] = src[1]; dst[2] = src[2]; } le128_to_be128(&ctrblks[0], iv); le128_inc(iv); le128_to_be128(&ctrblks[1], iv); le128_inc(iv); le128_to_be128(&ctrblks[2], ...
null
0
void twofish_enc_blk_ctr_3way(void *ctx, u128 *dst, const u128 *src, le128 *iv) { be128 ctrblks[3]; if (dst != src) { dst[0] = src[0]; dst[1] = src[1]; dst[2] = src[2]; } le128_to_be128(&ctrblks[0], iv); le128_inc(iv); le128_to_be128(&ctrblks[1], iv); le128_inc(iv); le128_to_be128(&ctrblks[2], ...
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,742
static inline void twofish_enc_blk_xor_3way(struct twofish_ctx *ctx, u8 *dst, const u8 *src) { __twofish_enc_blk_3way(ctx, dst, src, true); }
null
0
static inline void twofish_enc_blk_xor_3way(struct twofish_ctx *ctx, u8 *dst, const u8 *src) { __twofish_enc_blk_3way(ctx, dst, src, true); }
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,743
static int xts_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_xts_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[3]; struct xts_crypt_req req = { .tbuf = buf, .tbuflen = sizeof(buf), .tweak_ctx = &ctx->tweak_ctx, ....
null
0
static int xts_decrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_xts_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[3]; struct xts_crypt_req req = { .tbuf = buf, .tbuflen = sizeof(buf), .tweak_ctx = &ctx->tweak_ctx, ....
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,744
static int xts_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_xts_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[3]; struct xts_crypt_req req = { .tbuf = buf, .tbuflen = sizeof(buf), .tweak_ctx = &ctx->tweak_ctx, ....
null
0
static int xts_encrypt(struct blkcipher_desc *desc, struct scatterlist *dst, struct scatterlist *src, unsigned int nbytes) { struct twofish_xts_ctx *ctx = crypto_blkcipher_ctx(desc->tfm); be128 buf[3]; struct xts_crypt_req req = { .tbuf = buf, .tbuflen = sizeof(buf), .tweak_ctx = &ctx->tweak_ctx, ....
@@ -495,5 +495,5 @@ module_exit(fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Twofish Cipher Algorithm, 3-way parallel asm optimized"); -MODULE_ALIAS("twofish"); -MODULE_ALIAS("twofish-asm"); +MODULE_ALIAS_CRYPTO("twofish"); +MODULE_ALIAS_CRYPTO("twofish-asm");
CWE-264
null
null
37,745
static int nx842_crypto_decompress(struct crypto_tfm *tfm, const u8 *src, unsigned int slen, u8 *dst, unsigned int *dlen) { struct nx842_ctx *ctx = crypto_tfm_ctx(tfm); struct nx842_crypto_header *hdr; unsigned int tmp_len = *dlen; size_t lzodlen; /* needed for lzo */ int err; *dlen = 0; hdr = (struct ...
null
0
static int nx842_crypto_decompress(struct crypto_tfm *tfm, const u8 *src, unsigned int slen, u8 *dst, unsigned int *dlen) { struct nx842_ctx *ctx = crypto_tfm_ctx(tfm); struct nx842_crypto_header *hdr; unsigned int tmp_len = *dlen; size_t lzodlen; /* needed for lzo */ int err; *dlen = 0; hdr = (struct ...
@@ -180,3 +180,4 @@ module_exit(nx842_mod_exit); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("842 Compression Algorithm"); +MODULE_ALIAS_CRYPTO("842");
CWE-264
null
null
37,746
static void nx842_exit(struct crypto_tfm *tfm) { struct nx842_ctx *ctx = crypto_tfm_ctx(tfm); kfree(ctx->nx842_wmem); }
null
0
static void nx842_exit(struct crypto_tfm *tfm) { struct nx842_ctx *ctx = crypto_tfm_ctx(tfm); kfree(ctx->nx842_wmem); }
@@ -180,3 +180,4 @@ module_exit(nx842_mod_exit); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("842 Compression Algorithm"); +MODULE_ALIAS_CRYPTO("842");
CWE-264
null
null
37,747
static int nx842_init(struct crypto_tfm *tfm) { struct nx842_ctx *ctx = crypto_tfm_ctx(tfm); int wmemsize; wmemsize = max_t(int, nx842_get_workmem_size(), LZO1X_MEM_COMPRESS); ctx->nx842_wmem = kmalloc(wmemsize, GFP_NOFS); if (!ctx->nx842_wmem) return -ENOMEM; return 0; }
null
0
static int nx842_init(struct crypto_tfm *tfm) { struct nx842_ctx *ctx = crypto_tfm_ctx(tfm); int wmemsize; wmemsize = max_t(int, nx842_get_workmem_size(), LZO1X_MEM_COMPRESS); ctx->nx842_wmem = kmalloc(wmemsize, GFP_NOFS); if (!ctx->nx842_wmem) return -ENOMEM; return 0; }
@@ -180,3 +180,4 @@ module_exit(nx842_mod_exit); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("842 Compression Algorithm"); +MODULE_ALIAS_CRYPTO("842");
CWE-264
null
null
37,748
static void __exit nx842_mod_exit(void) { crypto_unregister_alg(&alg); }
null
0
static void __exit nx842_mod_exit(void) { crypto_unregister_alg(&alg); }
@@ -180,3 +180,4 @@ module_exit(nx842_mod_exit); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("842 Compression Algorithm"); +MODULE_ALIAS_CRYPTO("842");
CWE-264
null
null
37,749
static void nx842_reset_uselzo(unsigned long data) { nx842_uselzo = 0; }
null
0
static void nx842_reset_uselzo(unsigned long data) { nx842_uselzo = 0; }
@@ -180,3 +180,4 @@ module_exit(nx842_mod_exit); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("842 Compression Algorithm"); +MODULE_ALIAS_CRYPTO("842");
CWE-264
null
null
37,750
static void aes_decrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in) { const struct crypto_aes_ctx *ctx = crypto_tfm_ctx(tfm); const __le32 *src = (const __le32 *)in; __le32 *dst = (__le32 *)out; u32 b0[4], b1[4]; const int key_len = ctx->key_length; const u32 *kp = ctx->key_dec + 4; b0[0] = le32_to_cpu(src[0...
null
0
static void aes_decrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in) { const struct crypto_aes_ctx *ctx = crypto_tfm_ctx(tfm); const __le32 *src = (const __le32 *)in; __le32 *dst = (__le32 *)out; u32 b0[4], b1[4]; const int key_len = ctx->key_length; const u32 *kp = ctx->key_dec + 4; b0[0] = le32_to_cpu(src[0...
@@ -1474,4 +1474,4 @@ module_exit(aes_fini); MODULE_DESCRIPTION("Rijndael (AES) Cipher Algorithm"); MODULE_LICENSE("Dual BSD/GPL"); -MODULE_ALIAS("aes"); +MODULE_ALIAS_CRYPTO("aes");
CWE-264
null
null
37,751
static void aes_encrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in) { const struct crypto_aes_ctx *ctx = crypto_tfm_ctx(tfm); const __le32 *src = (const __le32 *)in; __le32 *dst = (__le32 *)out; u32 b0[4], b1[4]; const u32 *kp = ctx->key_enc + 4; const int key_len = ctx->key_length; b0[0] = le32_to_cpu(src[0...
null
0
static void aes_encrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in) { const struct crypto_aes_ctx *ctx = crypto_tfm_ctx(tfm); const __le32 *src = (const __le32 *)in; __le32 *dst = (__le32 *)out; u32 b0[4], b1[4]; const u32 *kp = ctx->key_enc + 4; const int key_len = ctx->key_length; b0[0] = le32_to_cpu(src[0...
@@ -1474,4 +1474,4 @@ module_exit(aes_fini); MODULE_DESCRIPTION("Rijndael (AES) Cipher Algorithm"); MODULE_LICENSE("Dual BSD/GPL"); -MODULE_ALIAS("aes"); +MODULE_ALIAS_CRYPTO("aes");
CWE-264
null
null
37,752
int crypto_aes_expand_key(struct crypto_aes_ctx *ctx, const u8 *in_key, unsigned int key_len) { const __le32 *key = (const __le32 *)in_key; u32 i, t, u, v, w, j; if (key_len != AES_KEYSIZE_128 && key_len != AES_KEYSIZE_192 && key_len != AES_KEYSIZE_256) return -EINVAL; ctx->key_length = key_len; ctx->key...
null
0
int crypto_aes_expand_key(struct crypto_aes_ctx *ctx, const u8 *in_key, unsigned int key_len) { const __le32 *key = (const __le32 *)in_key; u32 i, t, u, v, w, j; if (key_len != AES_KEYSIZE_128 && key_len != AES_KEYSIZE_192 && key_len != AES_KEYSIZE_256) return -EINVAL; ctx->key_length = key_len; ctx->key...
@@ -1474,4 +1474,4 @@ module_exit(aes_fini); MODULE_DESCRIPTION("Rijndael (AES) Cipher Algorithm"); MODULE_LICENSE("Dual BSD/GPL"); -MODULE_ALIAS("aes"); +MODULE_ALIAS_CRYPTO("aes");
CWE-264
null
null
37,753
int crypto_aes_set_key(struct crypto_tfm *tfm, const u8 *in_key, unsigned int key_len) { struct crypto_aes_ctx *ctx = crypto_tfm_ctx(tfm); u32 *flags = &tfm->crt_flags; int ret; ret = crypto_aes_expand_key(ctx, in_key, key_len); if (!ret) return 0; *flags |= CRYPTO_TFM_RES_BAD_KEY_LEN; return -EINVAL; }
null
0
int crypto_aes_set_key(struct crypto_tfm *tfm, const u8 *in_key, unsigned int key_len) { struct crypto_aes_ctx *ctx = crypto_tfm_ctx(tfm); u32 *flags = &tfm->crt_flags; int ret; ret = crypto_aes_expand_key(ctx, in_key, key_len); if (!ret) return 0; *flags |= CRYPTO_TFM_RES_BAD_KEY_LEN; return -EINVAL; }
@@ -1474,4 +1474,4 @@ module_exit(aes_fini); MODULE_DESCRIPTION("Rijndael (AES) Cipher Algorithm"); MODULE_LICENSE("Dual BSD/GPL"); -MODULE_ALIAS("aes"); +MODULE_ALIAS_CRYPTO("aes");
CWE-264
null
null
37,754
static int _get_more_prng_bytes(struct prng_context *ctx, int cont_test) { int i; unsigned char tmp[DEFAULT_BLK_SZ]; unsigned char *output = NULL; dbgprint(KERN_CRIT "Calling _get_more_prng_bytes for context %p\n", ctx); hexdump("Input DT: ", ctx->DT, DEFAULT_BLK_SZ); hexdump("Input I: ", ctx->I, DEFAULT_BLK...
null
0
static int _get_more_prng_bytes(struct prng_context *ctx, int cont_test) { int i; unsigned char tmp[DEFAULT_BLK_SZ]; unsigned char *output = NULL; dbgprint(KERN_CRIT "Calling _get_more_prng_bytes for context %p\n", ctx); hexdump("Input DT: ", ctx->DT, DEFAULT_BLK_SZ); hexdump("Input I: ", ctx->I, DEFAULT_BLK...
@@ -476,4 +476,4 @@ module_param(dbg, int, 0); MODULE_PARM_DESC(dbg, "Boolean to enable debugging (0/1 == off/on)"); module_init(prng_mod_init); module_exit(prng_mod_fini); -MODULE_ALIAS("stdrng"); +MODULE_ALIAS_CRYPTO("stdrng");
CWE-264
null
null
37,755
static void cprng_exit(struct crypto_tfm *tfm) { free_prng_context(crypto_tfm_ctx(tfm)); }
null
0
static void cprng_exit(struct crypto_tfm *tfm) { free_prng_context(crypto_tfm_ctx(tfm)); }
@@ -476,4 +476,4 @@ module_param(dbg, int, 0); MODULE_PARM_DESC(dbg, "Boolean to enable debugging (0/1 == off/on)"); module_init(prng_mod_init); module_exit(prng_mod_fini); -MODULE_ALIAS("stdrng"); +MODULE_ALIAS_CRYPTO("stdrng");
CWE-264
null
null
37,756
static int cprng_get_random(struct crypto_rng *tfm, u8 *rdata, unsigned int dlen) { struct prng_context *prng = crypto_rng_ctx(tfm); return get_prng_bytes(rdata, dlen, prng, 0); }
null
0
static int cprng_get_random(struct crypto_rng *tfm, u8 *rdata, unsigned int dlen) { struct prng_context *prng = crypto_rng_ctx(tfm); return get_prng_bytes(rdata, dlen, prng, 0); }
@@ -476,4 +476,4 @@ module_param(dbg, int, 0); MODULE_PARM_DESC(dbg, "Boolean to enable debugging (0/1 == off/on)"); module_init(prng_mod_init); module_exit(prng_mod_fini); -MODULE_ALIAS("stdrng"); +MODULE_ALIAS_CRYPTO("stdrng");
CWE-264
null
null
37,757
static int cprng_reset(struct crypto_rng *tfm, u8 *seed, unsigned int slen) { struct prng_context *prng = crypto_rng_ctx(tfm); u8 *key = seed + DEFAULT_BLK_SZ; u8 *dt = NULL; if (slen < DEFAULT_PRNG_KSZ + DEFAULT_BLK_SZ) return -EINVAL; if (slen >= (2 * DEFAULT_BLK_SZ + DEFAULT_PRNG_KSZ)) dt = key + DEFAULT_...
null
0
static int cprng_reset(struct crypto_rng *tfm, u8 *seed, unsigned int slen) { struct prng_context *prng = crypto_rng_ctx(tfm); u8 *key = seed + DEFAULT_BLK_SZ; u8 *dt = NULL; if (slen < DEFAULT_PRNG_KSZ + DEFAULT_BLK_SZ) return -EINVAL; if (slen >= (2 * DEFAULT_BLK_SZ + DEFAULT_PRNG_KSZ)) dt = key + DEFAULT_...
@@ -476,4 +476,4 @@ module_param(dbg, int, 0); MODULE_PARM_DESC(dbg, "Boolean to enable debugging (0/1 == off/on)"); module_init(prng_mod_init); module_exit(prng_mod_fini); -MODULE_ALIAS("stdrng"); +MODULE_ALIAS_CRYPTO("stdrng");
CWE-264
null
null
37,758
static int fips_cprng_get_random(struct crypto_rng *tfm, u8 *rdata, unsigned int dlen) { struct prng_context *prng = crypto_rng_ctx(tfm); return get_prng_bytes(rdata, dlen, prng, 1); }
null
0
static int fips_cprng_get_random(struct crypto_rng *tfm, u8 *rdata, unsigned int dlen) { struct prng_context *prng = crypto_rng_ctx(tfm); return get_prng_bytes(rdata, dlen, prng, 1); }
@@ -476,4 +476,4 @@ module_param(dbg, int, 0); MODULE_PARM_DESC(dbg, "Boolean to enable debugging (0/1 == off/on)"); module_init(prng_mod_init); module_exit(prng_mod_fini); -MODULE_ALIAS("stdrng"); +MODULE_ALIAS_CRYPTO("stdrng");
CWE-264
null
null
37,759
static void free_prng_context(struct prng_context *ctx) { crypto_free_cipher(ctx->tfm); }
null
0
static void free_prng_context(struct prng_context *ctx) { crypto_free_cipher(ctx->tfm); }
@@ -476,4 +476,4 @@ module_param(dbg, int, 0); MODULE_PARM_DESC(dbg, "Boolean to enable debugging (0/1 == off/on)"); module_init(prng_mod_init); module_exit(prng_mod_fini); -MODULE_ALIAS("stdrng"); +MODULE_ALIAS_CRYPTO("stdrng");
CWE-264
null
null
37,760
static void hexdump(char *note, unsigned char *buf, unsigned int len) { if (dbg) { printk(KERN_CRIT "%s", note); print_hex_dump(KERN_CONT, "", DUMP_PREFIX_OFFSET, 16, 1, buf, len, false); } }
null
0
static void hexdump(char *note, unsigned char *buf, unsigned int len) { if (dbg) { printk(KERN_CRIT "%s", note); print_hex_dump(KERN_CONT, "", DUMP_PREFIX_OFFSET, 16, 1, buf, len, false); } }
@@ -476,4 +476,4 @@ module_param(dbg, int, 0); MODULE_PARM_DESC(dbg, "Boolean to enable debugging (0/1 == off/on)"); module_init(prng_mod_init); module_exit(prng_mod_fini); -MODULE_ALIAS("stdrng"); +MODULE_ALIAS_CRYPTO("stdrng");
CWE-264
null
null
37,761
static void __exit prng_mod_fini(void) { crypto_unregister_algs(rng_algs, ARRAY_SIZE(rng_algs)); }
null
0
static void __exit prng_mod_fini(void) { crypto_unregister_algs(rng_algs, ARRAY_SIZE(rng_algs)); }
@@ -476,4 +476,4 @@ module_param(dbg, int, 0); MODULE_PARM_DESC(dbg, "Boolean to enable debugging (0/1 == off/on)"); module_init(prng_mod_init); module_exit(prng_mod_fini); -MODULE_ALIAS("stdrng"); +MODULE_ALIAS_CRYPTO("stdrng");
CWE-264
null
null
37,762
static int __init prng_mod_init(void) { return crypto_register_algs(rng_algs, ARRAY_SIZE(rng_algs)); }
null
0
static int __init prng_mod_init(void) { return crypto_register_algs(rng_algs, ARRAY_SIZE(rng_algs)); }
@@ -476,4 +476,4 @@ module_param(dbg, int, 0); MODULE_PARM_DESC(dbg, "Boolean to enable debugging (0/1 == off/on)"); module_init(prng_mod_init); module_exit(prng_mod_fini); -MODULE_ALIAS("stdrng"); +MODULE_ALIAS_CRYPTO("stdrng");
CWE-264
null
null
37,763
static void anubis_crypt(u32 roundKey[ANUBIS_MAX_ROUNDS + 1][4], u8 *ciphertext, const u8 *plaintext, const int R) { const __be32 *src = (const __be32 *)plaintext; __be32 *dst = (__be32 *)ciphertext; int i, r; u32 state[4]; u32 inter[4]; /* * map plaintext block to cipher state (mu) * and add initial round...
null
0
static void anubis_crypt(u32 roundKey[ANUBIS_MAX_ROUNDS + 1][4], u8 *ciphertext, const u8 *plaintext, const int R) { const __be32 *src = (const __be32 *)plaintext; __be32 *dst = (__be32 *)ciphertext; int i, r; u32 state[4]; u32 inter[4]; /* * map plaintext block to cipher state (mu) * and add initial round...
@@ -704,3 +704,4 @@ module_exit(anubis_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Anubis Cryptographic Algorithm"); +MODULE_ALIAS_CRYPTO("anubis");
CWE-264
null
null
37,764
static void anubis_decrypt(struct crypto_tfm *tfm, u8 *dst, const u8 *src) { struct anubis_ctx *ctx = crypto_tfm_ctx(tfm); anubis_crypt(ctx->D, dst, src, ctx->R); }
null
0
static void anubis_decrypt(struct crypto_tfm *tfm, u8 *dst, const u8 *src) { struct anubis_ctx *ctx = crypto_tfm_ctx(tfm); anubis_crypt(ctx->D, dst, src, ctx->R); }
@@ -704,3 +704,4 @@ module_exit(anubis_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Anubis Cryptographic Algorithm"); +MODULE_ALIAS_CRYPTO("anubis");
CWE-264
null
null
37,765
static void anubis_encrypt(struct crypto_tfm *tfm, u8 *dst, const u8 *src) { struct anubis_ctx *ctx = crypto_tfm_ctx(tfm); anubis_crypt(ctx->E, dst, src, ctx->R); }
null
0
static void anubis_encrypt(struct crypto_tfm *tfm, u8 *dst, const u8 *src) { struct anubis_ctx *ctx = crypto_tfm_ctx(tfm); anubis_crypt(ctx->E, dst, src, ctx->R); }
@@ -704,3 +704,4 @@ module_exit(anubis_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Anubis Cryptographic Algorithm"); +MODULE_ALIAS_CRYPTO("anubis");
CWE-264
null
null
37,766
static void __exit anubis_mod_fini(void) { crypto_unregister_alg(&anubis_alg); }
null
0
static void __exit anubis_mod_fini(void) { crypto_unregister_alg(&anubis_alg); }
@@ -704,3 +704,4 @@ module_exit(anubis_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Anubis Cryptographic Algorithm"); +MODULE_ALIAS_CRYPTO("anubis");
CWE-264
null
null
37,767
static int __init anubis_mod_init(void) { int ret = 0; ret = crypto_register_alg(&anubis_alg); return ret; }
null
0
static int __init anubis_mod_init(void) { int ret = 0; ret = crypto_register_alg(&anubis_alg); return ret; }
@@ -704,3 +704,4 @@ module_exit(anubis_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Anubis Cryptographic Algorithm"); +MODULE_ALIAS_CRYPTO("anubis");
CWE-264
null
null
37,768
static int anubis_setkey(struct crypto_tfm *tfm, const u8 *in_key, unsigned int key_len) { struct anubis_ctx *ctx = crypto_tfm_ctx(tfm); const __be32 *key = (const __be32 *)in_key; u32 *flags = &tfm->crt_flags; int N, R, i, r; u32 kappa[ANUBIS_MAX_N]; u32 inter[ANUBIS_MAX_N]; switch (key_len) { case 16: c...
null
0
static int anubis_setkey(struct crypto_tfm *tfm, const u8 *in_key, unsigned int key_len) { struct anubis_ctx *ctx = crypto_tfm_ctx(tfm); const __be32 *key = (const __be32 *)in_key; u32 *flags = &tfm->crt_flags; int N, R, i, r; u32 kappa[ANUBIS_MAX_N]; u32 inter[ANUBIS_MAX_N]; switch (key_len) { case 16: c...
@@ -704,3 +704,4 @@ module_exit(anubis_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Anubis Cryptographic Algorithm"); +MODULE_ALIAS_CRYPTO("anubis");
CWE-264
null
null
37,769
static struct crypto_alg *__crypto_alg_lookup(const char *name, u32 type, u32 mask) { struct crypto_alg *q, *alg = NULL; int best = -2; list_for_each_entry(q, &crypto_alg_list, cra_list) { int exact, fuzzy; if (crypto_is_moribund(q)) continue; if ((q->cra_flags ^ type) & mask) continue; ...
null
0
static struct crypto_alg *__crypto_alg_lookup(const char *name, u32 type, u32 mask) { struct crypto_alg *q, *alg = NULL; int best = -2; list_for_each_entry(q, &crypto_alg_list, cra_list) { int exact, fuzzy; if (crypto_is_moribund(q)) continue; if ((q->cra_flags ^ type) & mask) continue; ...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,770
struct crypto_alg *crypto_alg_lookup(const char *name, u32 type, u32 mask) { struct crypto_alg *alg; down_read(&crypto_alg_sem); alg = __crypto_alg_lookup(name, type, mask); up_read(&crypto_alg_sem); return alg; }
null
0
struct crypto_alg *crypto_alg_lookup(const char *name, u32 type, u32 mask) { struct crypto_alg *alg; down_read(&crypto_alg_sem); alg = __crypto_alg_lookup(name, type, mask); up_read(&crypto_alg_sem); return alg; }
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,771
struct crypto_alg *crypto_alg_mod_lookup(const char *name, u32 type, u32 mask) { struct crypto_alg *alg; struct crypto_alg *larval; int ok; if (!((type | mask) & CRYPTO_ALG_TESTED)) { type |= CRYPTO_ALG_TESTED; mask |= CRYPTO_ALG_TESTED; } larval = crypto_larval_lookup(name, type, mask); if (IS_ERR(larval)...
null
0
struct crypto_alg *crypto_alg_mod_lookup(const char *name, u32 type, u32 mask) { struct crypto_alg *alg; struct crypto_alg *larval; int ok; if (!((type | mask) & CRYPTO_ALG_TESTED)) { type |= CRYPTO_ALG_TESTED; mask |= CRYPTO_ALG_TESTED; } larval = crypto_larval_lookup(name, type, mask); if (IS_ERR(larval)...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,772
struct crypto_tfm *crypto_alloc_base(const char *alg_name, u32 type, u32 mask) { struct crypto_tfm *tfm; int err; for (;;) { struct crypto_alg *alg; alg = crypto_alg_mod_lookup(alg_name, type, mask); if (IS_ERR(alg)) { err = PTR_ERR(alg); goto err; } tfm = __crypto_alloc_tfm(alg, type, mask); if...
null
0
struct crypto_tfm *crypto_alloc_base(const char *alg_name, u32 type, u32 mask) { struct crypto_tfm *tfm; int err; for (;;) { struct crypto_alg *alg; alg = crypto_alg_mod_lookup(alg_name, type, mask); if (IS_ERR(alg)) { err = PTR_ERR(alg); goto err; } tfm = __crypto_alloc_tfm(alg, type, mask); if...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,773
void *crypto_alloc_tfm(const char *alg_name, const struct crypto_type *frontend, u32 type, u32 mask) { void *tfm; int err; for (;;) { struct crypto_alg *alg; alg = crypto_find_alg(alg_name, frontend, type, mask); if (IS_ERR(alg)) { err = PTR_ERR(alg); goto err; } tfm = crypto_create_tfm(a...
null
0
void *crypto_alloc_tfm(const char *alg_name, const struct crypto_type *frontend, u32 type, u32 mask) { void *tfm; int err; for (;;) { struct crypto_alg *alg; alg = crypto_find_alg(alg_name, frontend, type, mask); if (IS_ERR(alg)) { err = PTR_ERR(alg); goto err; } tfm = crypto_create_tfm(a...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,774
void *crypto_create_tfm(struct crypto_alg *alg, const struct crypto_type *frontend) { char *mem; struct crypto_tfm *tfm = NULL; unsigned int tfmsize; unsigned int total; int err = -ENOMEM; tfmsize = frontend->tfmsize; total = tfmsize + sizeof(*tfm) + frontend->extsize(alg); mem = kzalloc(total, GFP_KERNEL)...
null
0
void *crypto_create_tfm(struct crypto_alg *alg, const struct crypto_type *frontend) { char *mem; struct crypto_tfm *tfm = NULL; unsigned int tfmsize; unsigned int total; int err = -ENOMEM; tfmsize = frontend->tfmsize; total = tfmsize + sizeof(*tfm) + frontend->extsize(alg); mem = kzalloc(total, GFP_KERNEL)...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,775
static unsigned int crypto_ctxsize(struct crypto_alg *alg, u32 type, u32 mask) { const struct crypto_type *type_obj = alg->cra_type; unsigned int len; len = alg->cra_alignmask & ~(crypto_tfm_ctx_alignment() - 1); if (type_obj) return len + type_obj->ctxsize(alg, type, mask); switch (alg->cra_flags & CRYPTO_ALG...
null
0
static unsigned int crypto_ctxsize(struct crypto_alg *alg, u32 type, u32 mask) { const struct crypto_type *type_obj = alg->cra_type; unsigned int len; len = alg->cra_alignmask & ~(crypto_tfm_ctx_alignment() - 1); if (type_obj) return len + type_obj->ctxsize(alg, type, mask); switch (alg->cra_flags & CRYPTO_ALG...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,776
void crypto_destroy_tfm(void *mem, struct crypto_tfm *tfm) { struct crypto_alg *alg; if (unlikely(!mem)) return; alg = tfm->__crt_alg; if (!tfm->exit && alg->cra_exit) alg->cra_exit(tfm); crypto_exit_ops(tfm); crypto_mod_put(alg); kzfree(mem); }
null
0
void crypto_destroy_tfm(void *mem, struct crypto_tfm *tfm) { struct crypto_alg *alg; if (unlikely(!mem)) return; alg = tfm->__crt_alg; if (!tfm->exit && alg->cra_exit) alg->cra_exit(tfm); crypto_exit_ops(tfm); crypto_mod_put(alg); kzfree(mem); }
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,777
static void crypto_exit_ops(struct crypto_tfm *tfm) { const struct crypto_type *type = tfm->__crt_alg->cra_type; if (type) { if (tfm->exit) tfm->exit(tfm); return; } switch (crypto_tfm_alg_type(tfm)) { case CRYPTO_ALG_TYPE_CIPHER: crypto_exit_cipher_ops(tfm); break; case CRYPTO_ALG_TYPE_COMPRESS: ...
null
0
static void crypto_exit_ops(struct crypto_tfm *tfm) { const struct crypto_type *type = tfm->__crt_alg->cra_type; if (type) { if (tfm->exit) tfm->exit(tfm); return; } switch (crypto_tfm_alg_type(tfm)) { case CRYPTO_ALG_TYPE_CIPHER: crypto_exit_cipher_ops(tfm); break; case CRYPTO_ALG_TYPE_COMPRESS: ...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,778
struct crypto_alg *crypto_find_alg(const char *alg_name, const struct crypto_type *frontend, u32 type, u32 mask) { struct crypto_alg *(*lookup)(const char *name, u32 type, u32 mask) = crypto_alg_mod_lookup; if (frontend) { type &= frontend->maskclear; mask &= frontend->maskclear; type |= fronte...
null
0
struct crypto_alg *crypto_find_alg(const char *alg_name, const struct crypto_type *frontend, u32 type, u32 mask) { struct crypto_alg *(*lookup)(const char *name, u32 type, u32 mask) = crypto_alg_mod_lookup; if (frontend) { type &= frontend->maskclear; mask &= frontend->maskclear; type |= fronte...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,779
int crypto_has_alg(const char *name, u32 type, u32 mask) { int ret = 0; struct crypto_alg *alg = crypto_alg_mod_lookup(name, type, mask); if (!IS_ERR(alg)) { crypto_mod_put(alg); ret = 1; } return ret; }
null
0
int crypto_has_alg(const char *name, u32 type, u32 mask) { int ret = 0; struct crypto_alg *alg = crypto_alg_mod_lookup(name, type, mask); if (!IS_ERR(alg)) { crypto_mod_put(alg); ret = 1; } return ret; }
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,780
static int crypto_init_ops(struct crypto_tfm *tfm, u32 type, u32 mask) { const struct crypto_type *type_obj = tfm->__crt_alg->cra_type; if (type_obj) return type_obj->init(tfm, type, mask); switch (crypto_tfm_alg_type(tfm)) { case CRYPTO_ALG_TYPE_CIPHER: return crypto_init_cipher_ops(tfm); case CRYPTO_ALG_T...
null
0
static int crypto_init_ops(struct crypto_tfm *tfm, u32 type, u32 mask) { const struct crypto_type *type_obj = tfm->__crt_alg->cra_type; if (type_obj) return type_obj->init(tfm, type, mask); switch (crypto_tfm_alg_type(tfm)) { case CRYPTO_ALG_TYPE_CIPHER: return crypto_init_cipher_ops(tfm); case CRYPTO_ALG_T...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,781
static inline int crypto_is_test_larval(struct crypto_larval *larval) { return larval->alg.cra_driver_name[0]; }
null
0
static inline int crypto_is_test_larval(struct crypto_larval *larval) { return larval->alg.cra_driver_name[0]; }
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,782
static struct crypto_alg *crypto_larval_add(const char *name, u32 type, u32 mask) { struct crypto_alg *alg; struct crypto_larval *larval; larval = crypto_larval_alloc(name, type, mask); if (IS_ERR(larval)) return ERR_CAST(larval); atomic_set(&larval->alg.cra_refcnt, 2); down_write(&crypto_alg_sem); ...
null
0
static struct crypto_alg *crypto_larval_add(const char *name, u32 type, u32 mask) { struct crypto_alg *alg; struct crypto_larval *larval; larval = crypto_larval_alloc(name, type, mask); if (IS_ERR(larval)) return ERR_CAST(larval); atomic_set(&larval->alg.cra_refcnt, 2); down_write(&crypto_alg_sem); ...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,783
static void crypto_larval_destroy(struct crypto_alg *alg) { struct crypto_larval *larval = (void *)alg; BUG_ON(!crypto_is_larval(alg)); if (larval->adult) crypto_mod_put(larval->adult); kfree(larval); }
null
0
static void crypto_larval_destroy(struct crypto_alg *alg) { struct crypto_larval *larval = (void *)alg; BUG_ON(!crypto_is_larval(alg)); if (larval->adult) crypto_mod_put(larval->adult); kfree(larval); }
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,784
void crypto_larval_kill(struct crypto_alg *alg) { struct crypto_larval *larval = (void *)alg; down_write(&crypto_alg_sem); list_del(&alg->cra_list); up_write(&crypto_alg_sem); complete_all(&larval->completion); crypto_alg_put(alg); }
null
0
void crypto_larval_kill(struct crypto_alg *alg) { struct crypto_larval *larval = (void *)alg; down_write(&crypto_alg_sem); list_del(&alg->cra_list); up_write(&crypto_alg_sem); complete_all(&larval->completion); crypto_alg_put(alg); }
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,785
static struct crypto_alg *crypto_larval_wait(struct crypto_alg *alg) { struct crypto_larval *larval = (void *)alg; long timeout; timeout = wait_for_completion_interruptible_timeout( &larval->completion, 60 * HZ); alg = larval->adult; if (timeout < 0) alg = ERR_PTR(-EINTR); else if (!timeout) alg = ERR_PTR...
null
0
static struct crypto_alg *crypto_larval_wait(struct crypto_alg *alg) { struct crypto_larval *larval = (void *)alg; long timeout; timeout = wait_for_completion_interruptible_timeout( &larval->completion, 60 * HZ); alg = larval->adult; if (timeout < 0) alg = ERR_PTR(-EINTR); else if (!timeout) alg = ERR_PTR...
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,786
struct crypto_alg *crypto_mod_get(struct crypto_alg *alg) { return try_module_get(alg->cra_module) ? crypto_alg_get(alg) : NULL; }
null
0
struct crypto_alg *crypto_mod_get(struct crypto_alg *alg) { return try_module_get(alg->cra_module) ? crypto_alg_get(alg) : NULL; }
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,787
int crypto_probing_notify(unsigned long val, void *v) { int ok; ok = blocking_notifier_call_chain(&crypto_chain, val, v); if (ok == NOTIFY_DONE) { request_module("cryptomgr"); ok = blocking_notifier_call_chain(&crypto_chain, val, v); } return ok; }
null
0
int crypto_probing_notify(unsigned long val, void *v) { int ok; ok = blocking_notifier_call_chain(&crypto_chain, val, v); if (ok == NOTIFY_DONE) { request_module("cryptomgr"); ok = blocking_notifier_call_chain(&crypto_chain, val, v); } return ok; }
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,788
void crypto_shoot_alg(struct crypto_alg *alg) { down_write(&crypto_alg_sem); alg->cra_flags |= CRYPTO_ALG_DYING; up_write(&crypto_alg_sem); }
null
0
void crypto_shoot_alg(struct crypto_alg *alg) { down_write(&crypto_alg_sem); alg->cra_flags |= CRYPTO_ALG_DYING; up_write(&crypto_alg_sem); }
@@ -216,11 +216,11 @@ struct crypto_alg *crypto_larval_lookup(const char *name, u32 type, u32 mask) alg = crypto_alg_lookup(name, type, mask); if (!alg) { - request_module("%s", name); + request_module("crypto-%s", name); if (!((type ^ CRYPTO_ALG_NEED_FALLBACK) & mask & CRYPTO_ALG_NEED_FALLBACK)) ...
CWE-264
null
null
37,789
static void arc4_crypt(struct arc4_ctx *ctx, u8 *out, const u8 *in, unsigned int len) { u32 *const S = ctx->S; u32 x, y, a, b; u32 ty, ta, tb; if (len == 0) return; x = ctx->x; y = ctx->y; a = S[x]; y = (y + a) & 0xff; b = S[y]; do { S[y] = a; a = (a + b) & 0xff; S[x] = b; x = (x + 1) &...
null
0
static void arc4_crypt(struct arc4_ctx *ctx, u8 *out, const u8 *in, unsigned int len) { u32 *const S = ctx->S; u32 x, y, a, b; u32 ty, ta, tb; if (len == 0) return; x = ctx->x; y = ctx->y; a = S[x]; y = (y + a) & 0xff; b = S[y]; do { S[y] = a; a = (a + b) & 0xff; S[x] = b; x = (x + 1) &...
@@ -166,3 +166,4 @@ module_exit(arc4_exit); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("ARC4 Cipher Algorithm"); MODULE_AUTHOR("Jon Oberheide <jon@oberheide.org>"); +MODULE_ALIAS_CRYPTO("arc4");
CWE-264
null
null
37,790
static void arc4_crypt_one(struct crypto_tfm *tfm, u8 *out, const u8 *in) { arc4_crypt(crypto_tfm_ctx(tfm), out, in, 1); }
null
0
static void arc4_crypt_one(struct crypto_tfm *tfm, u8 *out, const u8 *in) { arc4_crypt(crypto_tfm_ctx(tfm), out, in, 1); }
@@ -166,3 +166,4 @@ module_exit(arc4_exit); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("ARC4 Cipher Algorithm"); MODULE_AUTHOR("Jon Oberheide <jon@oberheide.org>"); +MODULE_ALIAS_CRYPTO("arc4");
CWE-264
null
null
37,791
static void __exit arc4_exit(void) { crypto_unregister_algs(arc4_algs, ARRAY_SIZE(arc4_algs)); }
null
0
static void __exit arc4_exit(void) { crypto_unregister_algs(arc4_algs, ARRAY_SIZE(arc4_algs)); }
@@ -166,3 +166,4 @@ module_exit(arc4_exit); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("ARC4 Cipher Algorithm"); MODULE_AUTHOR("Jon Oberheide <jon@oberheide.org>"); +MODULE_ALIAS_CRYPTO("arc4");
CWE-264
null
null
37,792
static int __init arc4_init(void) { return crypto_register_algs(arc4_algs, ARRAY_SIZE(arc4_algs)); }
null
0
static int __init arc4_init(void) { return crypto_register_algs(arc4_algs, ARRAY_SIZE(arc4_algs)); }
@@ -166,3 +166,4 @@ module_exit(arc4_exit); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("ARC4 Cipher Algorithm"); MODULE_AUTHOR("Jon Oberheide <jon@oberheide.org>"); +MODULE_ALIAS_CRYPTO("arc4");
CWE-264
null
null
37,793
static int arc4_set_key(struct crypto_tfm *tfm, const u8 *in_key, unsigned int key_len) { struct arc4_ctx *ctx = crypto_tfm_ctx(tfm); int i, j = 0, k = 0; ctx->x = 1; ctx->y = 0; for (i = 0; i < 256; i++) ctx->S[i] = i; for (i = 0; i < 256; i++) { u32 a = ctx->S[i]; j = (j + in_key[k] + a) & 0xff; c...
null
0
static int arc4_set_key(struct crypto_tfm *tfm, const u8 *in_key, unsigned int key_len) { struct arc4_ctx *ctx = crypto_tfm_ctx(tfm); int i, j = 0, k = 0; ctx->x = 1; ctx->y = 0; for (i = 0; i < 256; i++) ctx->S[i] = i; for (i = 0; i < 256; i++) { u32 a = ctx->S[i]; j = (j + in_key[k] + a) & 0xff; c...
@@ -166,3 +166,4 @@ module_exit(arc4_exit); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("ARC4 Cipher Algorithm"); MODULE_AUTHOR("Jon Oberheide <jon@oberheide.org>"); +MODULE_ALIAS_CRYPTO("arc4");
CWE-264
null
null
37,794
static void bf_encrypt(struct crypto_tfm *tfm, u8 *dst, const u8 *src) { struct bf_ctx *ctx = crypto_tfm_ctx(tfm); const __be32 *in_blk = (const __be32 *)src; __be32 *const out_blk = (__be32 *)dst; const u32 *P = ctx->p; const u32 *S = ctx->s; u32 yl = be32_to_cpu(in_blk[0]); u32 yr = be32_to_cpu(in_blk[1]); R...
null
0
static void bf_encrypt(struct crypto_tfm *tfm, u8 *dst, const u8 *src) { struct bf_ctx *ctx = crypto_tfm_ctx(tfm); const __be32 *in_blk = (const __be32 *)src; __be32 *const out_blk = (__be32 *)dst; const u32 *P = ctx->p; const u32 *S = ctx->s; u32 yl = be32_to_cpu(in_blk[0]); u32 yr = be32_to_cpu(in_blk[1]); R...
@@ -138,4 +138,4 @@ module_exit(blowfish_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Blowfish Cipher Algorithm"); -MODULE_ALIAS("blowfish"); +MODULE_ALIAS_CRYPTO("blowfish");
CWE-264
null
null
37,795
static int __init blowfish_mod_init(void) { return crypto_register_alg(&alg); }
null
0
static int __init blowfish_mod_init(void) { return crypto_register_alg(&alg); }
@@ -138,4 +138,4 @@ module_exit(blowfish_mod_fini); MODULE_LICENSE("GPL"); MODULE_DESCRIPTION("Blowfish Cipher Algorithm"); -MODULE_ALIAS("blowfish"); +MODULE_ALIAS_CRYPTO("blowfish");
CWE-264
null
null
37,796
static void camellia_decrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in) { const struct camellia_ctx *cctx = crypto_tfm_ctx(tfm); const __be32 *src = (const __be32 *)in; __be32 *dst = (__be32 *)out; unsigned int max; u32 tmp[4]; tmp[0] = be32_to_cpu(src[0]); tmp[1] = be32_to_cpu(src[1]); tmp[2] = be32_to_c...
null
0
static void camellia_decrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in) { const struct camellia_ctx *cctx = crypto_tfm_ctx(tfm); const __be32 *src = (const __be32 *)in; __be32 *dst = (__be32 *)out; unsigned int max; u32 tmp[4]; tmp[0] = be32_to_cpu(src[0]); tmp[1] = be32_to_cpu(src[1]); tmp[2] = be32_to_c...
@@ -1098,4 +1098,4 @@ module_exit(camellia_fini); MODULE_DESCRIPTION("Camellia Cipher Algorithm"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("camellia"); +MODULE_ALIAS_CRYPTO("camellia");
CWE-264
null
null
37,797
static void camellia_do_decrypt(const u32 *subkey, u32 *io, unsigned i) { u32 il, ir, t0, t1; /* temporary variables */ /* pre whitening but absorb kw2 */ io[0] ^= SUBKEY_L(i); io[1] ^= SUBKEY_R(i); /* main iteration */ #define ROUNDS(i) ({ \ CAMELLIA_ROUNDSM(io[0], io[1], \ SUBKEY_L(i + 7), SUBK...
null
0
static void camellia_do_decrypt(const u32 *subkey, u32 *io, unsigned i) { u32 il, ir, t0, t1; /* temporary variables */ /* pre whitening but absorb kw2 */ io[0] ^= SUBKEY_L(i); io[1] ^= SUBKEY_R(i); /* main iteration */ #define ROUNDS(i) ({ \ CAMELLIA_ROUNDSM(io[0], io[1], \ SUBKEY_L(i + 7), SUBK...
@@ -1098,4 +1098,4 @@ module_exit(camellia_fini); MODULE_DESCRIPTION("Camellia Cipher Algorithm"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("camellia"); +MODULE_ALIAS_CRYPTO("camellia");
CWE-264
null
null
37,798
static void camellia_do_encrypt(const u32 *subkey, u32 *io, unsigned max) { u32 il, ir, t0, t1; /* temporary variables */ /* pre whitening but absorb kw2 */ io[0] ^= SUBKEY_L(0); io[1] ^= SUBKEY_R(0); /* main iteration */ #define ROUNDS(i) ({ \ CAMELLIA_ROUNDSM(io[0], io[1], \ SUBKEY_L(i + 2), SU...
null
0
static void camellia_do_encrypt(const u32 *subkey, u32 *io, unsigned max) { u32 il, ir, t0, t1; /* temporary variables */ /* pre whitening but absorb kw2 */ io[0] ^= SUBKEY_L(0); io[1] ^= SUBKEY_R(0); /* main iteration */ #define ROUNDS(i) ({ \ CAMELLIA_ROUNDSM(io[0], io[1], \ SUBKEY_L(i + 2), SU...
@@ -1098,4 +1098,4 @@ module_exit(camellia_fini); MODULE_DESCRIPTION("Camellia Cipher Algorithm"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("camellia"); +MODULE_ALIAS_CRYPTO("camellia");
CWE-264
null
null
37,799
static void camellia_encrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in) { const struct camellia_ctx *cctx = crypto_tfm_ctx(tfm); const __be32 *src = (const __be32 *)in; __be32 *dst = (__be32 *)out; unsigned int max; u32 tmp[4]; tmp[0] = be32_to_cpu(src[0]); tmp[1] = be32_to_cpu(src[1]); tmp[2] = be32_to_c...
null
0
static void camellia_encrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in) { const struct camellia_ctx *cctx = crypto_tfm_ctx(tfm); const __be32 *src = (const __be32 *)in; __be32 *dst = (__be32 *)out; unsigned int max; u32 tmp[4]; tmp[0] = be32_to_cpu(src[0]); tmp[1] = be32_to_cpu(src[1]); tmp[2] = be32_to_c...
@@ -1098,4 +1098,4 @@ module_exit(camellia_fini); MODULE_DESCRIPTION("Camellia Cipher Algorithm"); MODULE_LICENSE("GPL"); -MODULE_ALIAS("camellia"); +MODULE_ALIAS_CRYPTO("camellia");
CWE-264
null
null