diff options
Diffstat (limited to 'arch/arm64/crypto/aes-glue.c')
-rw-r--r-- | arch/arm64/crypto/aes-glue.c | 248 |
1 files changed, 115 insertions, 133 deletions
diff --git a/arch/arm64/crypto/aes-glue.c b/arch/arm64/crypto/aes-glue.c index aa57dc639f77..162787c7aa86 100644 --- a/arch/arm64/crypto/aes-glue.c +++ b/arch/arm64/crypto/aes-glue.c @@ -10,7 +10,7 @@ #include <asm/simd.h> #include <crypto/aes.h> #include <crypto/ctr.h> -#include <crypto/sha.h> +#include <crypto/sha2.h> #include <crypto/internal/hash.h> #include <crypto/internal/simd.h> #include <crypto/internal/skcipher.h> @@ -34,10 +34,11 @@ #define aes_essiv_cbc_encrypt ce_aes_essiv_cbc_encrypt #define aes_essiv_cbc_decrypt ce_aes_essiv_cbc_decrypt #define aes_ctr_encrypt ce_aes_ctr_encrypt +#define aes_xctr_encrypt ce_aes_xctr_encrypt #define aes_xts_encrypt ce_aes_xts_encrypt #define aes_xts_decrypt ce_aes_xts_decrypt #define aes_mac_update ce_aes_mac_update -MODULE_DESCRIPTION("AES-ECB/CBC/CTR/XTS using ARMv8 Crypto Extensions"); +MODULE_DESCRIPTION("AES-ECB/CBC/CTR/XTS/XCTR using ARMv8 Crypto Extensions"); #else #define MODE "neon" #define PRIO 200 @@ -50,16 +51,18 @@ MODULE_DESCRIPTION("AES-ECB/CBC/CTR/XTS using ARMv8 Crypto Extensions"); #define aes_essiv_cbc_encrypt neon_aes_essiv_cbc_encrypt #define aes_essiv_cbc_decrypt neon_aes_essiv_cbc_decrypt #define aes_ctr_encrypt neon_aes_ctr_encrypt +#define aes_xctr_encrypt neon_aes_xctr_encrypt #define aes_xts_encrypt neon_aes_xts_encrypt #define aes_xts_decrypt neon_aes_xts_decrypt #define aes_mac_update neon_aes_mac_update -MODULE_DESCRIPTION("AES-ECB/CBC/CTR/XTS using ARMv8 NEON"); +MODULE_DESCRIPTION("AES-ECB/CBC/CTR/XTS/XCTR using ARMv8 NEON"); #endif -#if defined(USE_V8_CRYPTO_EXTENSIONS) || !defined(CONFIG_CRYPTO_AES_ARM64_BS) +#if defined(USE_V8_CRYPTO_EXTENSIONS) || !IS_ENABLED(CONFIG_CRYPTO_AES_ARM64_BS) MODULE_ALIAS_CRYPTO("ecb(aes)"); MODULE_ALIAS_CRYPTO("cbc(aes)"); MODULE_ALIAS_CRYPTO("ctr(aes)"); MODULE_ALIAS_CRYPTO("xts(aes)"); +MODULE_ALIAS_CRYPTO("xctr(aes)"); #endif MODULE_ALIAS_CRYPTO("cts(cbc(aes))"); MODULE_ALIAS_CRYPTO("essiv(cbc(aes),sha256)"); @@ -87,7 +90,10 @@ asmlinkage void aes_cbc_cts_decrypt(u8 out[], u8 const in[], u32 const rk[], int rounds, int bytes, u8 const iv[]); asmlinkage void aes_ctr_encrypt(u8 out[], u8 const in[], u32 const rk[], - int rounds, int blocks, u8 ctr[]); + int rounds, int bytes, u8 ctr[]); + +asmlinkage void aes_xctr_encrypt(u8 out[], u8 const in[], u32 const rk[], + int rounds, int bytes, u8 ctr[], int byte_ctr); asmlinkage void aes_xts_encrypt(u8 out[], u8 const in[], u32 const rk1[], int rounds, int bytes, u32 const rk2[], u8 iv[], @@ -103,9 +109,9 @@ asmlinkage void aes_essiv_cbc_decrypt(u8 out[], u8 const in[], u32 const rk1[], int rounds, int blocks, u8 iv[], u32 const rk2[]); -asmlinkage void aes_mac_update(u8 const in[], u32 const rk[], int rounds, - int blocks, u8 dg[], int enc_before, - int enc_after); +asmlinkage int aes_mac_update(u8 const in[], u32 const rk[], int rounds, + int blocks, u8 dg[], int enc_before, + int enc_after); struct crypto_aes_xts_ctx { struct crypto_aes_ctx key1; @@ -132,13 +138,8 @@ static int skcipher_aes_setkey(struct crypto_skcipher *tfm, const u8 *in_key, unsigned int key_len) { struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm); - int ret; - - ret = aes_expandkey(ctx, in_key, key_len); - if (ret) - crypto_skcipher_set_flags(tfm, CRYPTO_TFM_RES_BAD_KEY_LEN); - return ret; + return aes_expandkey(ctx, in_key, key_len); } static int __maybe_unused xts_set_key(struct crypto_skcipher *tfm, @@ -155,11 +156,7 @@ static int __maybe_unused xts_set_key(struct crypto_skcipher *tfm, if (!ret) ret = aes_expandkey(&ctx->key2, &in_key[key_len / 2], key_len / 2); - if (!ret) - return 0; - - crypto_skcipher_set_flags(tfm, CRYPTO_TFM_RES_BAD_KEY_LEN); - return -EINVAL; + return ret; } static int __maybe_unused essiv_cbc_set_key(struct crypto_skcipher *tfm, @@ -167,25 +164,16 @@ static int __maybe_unused essiv_cbc_set_key(struct crypto_skcipher *tfm, unsigned int key_len) { struct crypto_aes_essiv_cbc_ctx *ctx = crypto_skcipher_ctx(tfm); - SHASH_DESC_ON_STACK(desc, ctx->hash); u8 digest[SHA256_DIGEST_SIZE]; int ret; ret = aes_expandkey(&ctx->key1, in_key, key_len); if (ret) - goto out; - - desc->tfm = ctx->hash; - crypto_shash_digest(desc, in_key, key_len, digest); + return ret; - ret = aes_expandkey(&ctx->key2, digest, sizeof(digest)); - if (ret) - goto out; + crypto_shash_tfm_digest(ctx->hash, in_key, key_len, digest); - return 0; -out: - crypto_skcipher_set_flags(tfm, CRYPTO_TFM_RES_BAD_KEY_LEN); - return -EINVAL; + return aes_expandkey(&ctx->key2, digest, sizeof(digest)); } static int __maybe_unused ecb_encrypt(struct skcipher_request *req) @@ -460,66 +448,94 @@ static int __maybe_unused essiv_cbc_decrypt(struct skcipher_request *req) return err ?: cbc_decrypt_walk(req, &walk); } -static int ctr_encrypt(struct skcipher_request *req) +static int __maybe_unused xctr_encrypt(struct skcipher_request *req) { struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req); struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm); int err, rounds = 6 + ctx->key_length / 4; struct skcipher_walk walk; - int blocks; + unsigned int byte_ctr = 0; err = skcipher_walk_virt(&walk, req, false); - while ((blocks = (walk.nbytes / AES_BLOCK_SIZE))) { - kernel_neon_begin(); - aes_ctr_encrypt(walk.dst.virt.addr, walk.src.virt.addr, - ctx->key_enc, rounds, blocks, walk.iv); - kernel_neon_end(); - err = skcipher_walk_done(&walk, walk.nbytes % AES_BLOCK_SIZE); - } - if (walk.nbytes) { - u8 __aligned(8) tail[AES_BLOCK_SIZE]; + while (walk.nbytes > 0) { + const u8 *src = walk.src.virt.addr; unsigned int nbytes = walk.nbytes; - u8 *tdst = walk.dst.virt.addr; - u8 *tsrc = walk.src.virt.addr; + u8 *dst = walk.dst.virt.addr; + u8 buf[AES_BLOCK_SIZE]; /* - * Tell aes_ctr_encrypt() to process a tail block. + * If given less than 16 bytes, we must copy the partial block + * into a temporary buffer of 16 bytes to avoid out of bounds + * reads and writes. Furthermore, this code is somewhat unusual + * in that it expects the end of the data to be at the end of + * the temporary buffer, rather than the start of the data at + * the start of the temporary buffer. */ - blocks = -1; + if (unlikely(nbytes < AES_BLOCK_SIZE)) + src = dst = memcpy(buf + sizeof(buf) - nbytes, + src, nbytes); + else if (nbytes < walk.total) + nbytes &= ~(AES_BLOCK_SIZE - 1); kernel_neon_begin(); - aes_ctr_encrypt(tail, NULL, ctx->key_enc, rounds, - blocks, walk.iv); + aes_xctr_encrypt(dst, src, ctx->key_enc, rounds, nbytes, + walk.iv, byte_ctr); kernel_neon_end(); - crypto_xor_cpy(tdst, tsrc, tail, nbytes); - err = skcipher_walk_done(&walk, 0); + + if (unlikely(nbytes < AES_BLOCK_SIZE)) + memcpy(walk.dst.virt.addr, + buf + sizeof(buf) - nbytes, nbytes); + byte_ctr += nbytes; + + err = skcipher_walk_done(&walk, walk.nbytes - nbytes); } return err; } -static void ctr_encrypt_one(struct crypto_skcipher *tfm, const u8 *src, u8 *dst) +static int __maybe_unused ctr_encrypt(struct skcipher_request *req) { - const struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm); - unsigned long flags; - - /* - * Temporarily disable interrupts to avoid races where - * cachelines are evicted when the CPU is interrupted - * to do something else. - */ - local_irq_save(flags); - aes_encrypt(ctx, dst, src); - local_irq_restore(flags); -} + struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req); + struct crypto_aes_ctx *ctx = crypto_skcipher_ctx(tfm); + int err, rounds = 6 + ctx->key_length / 4; + struct skcipher_walk walk; -static int __maybe_unused ctr_encrypt_sync(struct skcipher_request *req) -{ - if (!crypto_simd_usable()) - return crypto_ctr_encrypt_walk(req, ctr_encrypt_one); + err = skcipher_walk_virt(&walk, req, false); - return ctr_encrypt(req); + while (walk.nbytes > 0) { + const u8 *src = walk.src.virt.addr; + unsigned int nbytes = walk.nbytes; + u8 *dst = walk.dst.virt.addr; + u8 buf[AES_BLOCK_SIZE]; + + /* + * If given less than 16 bytes, we must copy the partial block + * into a temporary buffer of 16 bytes to avoid out of bounds + * reads and writes. Furthermore, this code is somewhat unusual + * in that it expects the end of the data to be at the end of + * the temporary buffer, rather than the start of the data at + * the start of the temporary buffer. + */ + if (unlikely(nbytes < AES_BLOCK_SIZE)) + src = dst = memcpy(buf + sizeof(buf) - nbytes, + src, nbytes); + else if (nbytes < walk.total) + nbytes &= ~(AES_BLOCK_SIZE - 1); + + kernel_neon_begin(); + aes_ctr_encrypt(dst, src, ctx->key_enc, rounds, nbytes, + walk.iv); + kernel_neon_end(); + + if (unlikely(nbytes < AES_BLOCK_SIZE)) + memcpy(walk.dst.virt.addr, + buf + sizeof(buf) - nbytes, nbytes); + + err = skcipher_walk_done(&walk, walk.nbytes - nbytes); + } + + return err; } static int __maybe_unused xts_encrypt(struct skcipher_request *req) @@ -668,12 +684,11 @@ static int __maybe_unused xts_decrypt(struct skcipher_request *req) } static struct skcipher_alg aes_algs[] = { { -#if defined(USE_V8_CRYPTO_EXTENSIONS) || !defined(CONFIG_CRYPTO_AES_ARM64_BS) +#if defined(USE_V8_CRYPTO_EXTENSIONS) || !IS_ENABLED(CONFIG_CRYPTO_AES_ARM64_BS) .base = { - .cra_name = "__ecb(aes)", - .cra_driver_name = "__ecb-aes-" MODE, + .cra_name = "ecb(aes)", + .cra_driver_name = "ecb-aes-" MODE, .cra_priority = PRIO, - .cra_flags = CRYPTO_ALG_INTERNAL, .cra_blocksize = AES_BLOCK_SIZE, .cra_ctxsize = sizeof(struct crypto_aes_ctx), .cra_module = THIS_MODULE, @@ -685,10 +700,9 @@ static struct skcipher_alg aes_algs[] = { { .decrypt = ecb_decrypt, }, { .base = { - .cra_name = "__cbc(aes)", - .cra_driver_name = "__cbc-aes-" MODE, + .cra_name = "cbc(aes)", + .cra_driver_name = "cbc-aes-" MODE, .cra_priority = PRIO, - .cra_flags = CRYPTO_ALG_INTERNAL, .cra_blocksize = AES_BLOCK_SIZE, .cra_ctxsize = sizeof(struct crypto_aes_ctx), .cra_module = THIS_MODULE, @@ -701,10 +715,9 @@ static struct skcipher_alg aes_algs[] = { { .decrypt = cbc_decrypt, }, { .base = { - .cra_name = "__ctr(aes)", - .cra_driver_name = "__ctr-aes-" MODE, + .cra_name = "ctr(aes)", + .cra_driver_name = "ctr-aes-" MODE, .cra_priority = PRIO, - .cra_flags = CRYPTO_ALG_INTERNAL, .cra_blocksize = 1, .cra_ctxsize = sizeof(struct crypto_aes_ctx), .cra_module = THIS_MODULE, @@ -718,9 +731,9 @@ static struct skcipher_alg aes_algs[] = { { .decrypt = ctr_encrypt, }, { .base = { - .cra_name = "ctr(aes)", - .cra_driver_name = "ctr-aes-" MODE, - .cra_priority = PRIO - 1, + .cra_name = "xctr(aes)", + .cra_driver_name = "xctr-aes-" MODE, + .cra_priority = PRIO, .cra_blocksize = 1, .cra_ctxsize = sizeof(struct crypto_aes_ctx), .cra_module = THIS_MODULE, @@ -730,14 +743,13 @@ static struct skcipher_alg aes_algs[] = { { .ivsize = AES_BLOCK_SIZE, .chunksize = AES_BLOCK_SIZE, .setkey = skcipher_aes_setkey, - .encrypt = ctr_encrypt_sync, - .decrypt = ctr_encrypt_sync, + .encrypt = xctr_encrypt, + .decrypt = xctr_encrypt, }, { .base = { - .cra_name = "__xts(aes)", - .cra_driver_name = "__xts-aes-" MODE, + .cra_name = "xts(aes)", + .cra_driver_name = "xts-aes-" MODE, .cra_priority = PRIO, - .cra_flags = CRYPTO_ALG_INTERNAL, .cra_blocksize = AES_BLOCK_SIZE, .cra_ctxsize = sizeof(struct crypto_aes_xts_ctx), .cra_module = THIS_MODULE, @@ -752,10 +764,9 @@ static struct skcipher_alg aes_algs[] = { { }, { #endif .base = { - .cra_name = "__cts(cbc(aes))", - .cra_driver_name = "__cts-cbc-aes-" MODE, + .cra_name = "cts(cbc(aes))", + .cra_driver_name = "cts-cbc-aes-" MODE, .cra_priority = PRIO, - .cra_flags = CRYPTO_ALG_INTERNAL, .cra_blocksize = AES_BLOCK_SIZE, .cra_ctxsize = sizeof(struct crypto_aes_ctx), .cra_module = THIS_MODULE, @@ -769,10 +780,9 @@ static struct skcipher_alg aes_algs[] = { { .decrypt = cts_cbc_decrypt, }, { .base = { - .cra_name = "__essiv(cbc(aes),sha256)", - .cra_driver_name = "__essiv-cbc-aes-sha256-" MODE, + .cra_name = "essiv(cbc(aes),sha256)", + .cra_driver_name = "essiv-cbc-aes-sha256-" MODE, .cra_priority = PRIO + 1, - .cra_flags = CRYPTO_ALG_INTERNAL, .cra_blocksize = AES_BLOCK_SIZE, .cra_ctxsize = sizeof(struct crypto_aes_essiv_cbc_ctx), .cra_module = THIS_MODULE, @@ -791,13 +801,8 @@ static int cbcmac_setkey(struct crypto_shash *tfm, const u8 *in_key, unsigned int key_len) { struct mac_tfm_ctx *ctx = crypto_shash_ctx(tfm); - int err; - - err = aes_expandkey(&ctx->key, in_key, key_len); - if (err) - crypto_shash_set_flags(tfm, CRYPTO_TFM_RES_BAD_KEY_LEN); - return err; + return aes_expandkey(&ctx->key, in_key, key_len); } static void cmac_gf128_mul_by_x(be128 *y, const be128 *x) @@ -875,10 +880,17 @@ static void mac_do_update(struct crypto_aes_ctx *ctx, u8 const in[], int blocks, int rounds = 6 + ctx->key_length / 4; if (crypto_simd_usable()) { - kernel_neon_begin(); - aes_mac_update(in, ctx->key_enc, rounds, blocks, dg, enc_before, - enc_after); - kernel_neon_end(); + int rem; + + do { + kernel_neon_begin(); + rem = aes_mac_update(in, ctx->key_enc, rounds, blocks, + dg, enc_before, enc_after); + kernel_neon_end(); + in += (blocks - rem) * AES_BLOCK_SIZE; + blocks = rem; + enc_before = 0; + } while (blocks); } else { if (enc_before) aes_encrypt(ctx, dg, dg); @@ -1009,28 +1021,15 @@ static struct shash_alg mac_algs[] = { { .descsize = sizeof(struct mac_desc_ctx), } }; -static struct simd_skcipher_alg *aes_simd_algs[ARRAY_SIZE(aes_algs)]; - static void aes_exit(void) { - int i; - - for (i = 0; i < ARRAY_SIZE(aes_simd_algs); i++) - if (aes_simd_algs[i]) - simd_skcipher_free(aes_simd_algs[i]); - crypto_unregister_shashes(mac_algs, ARRAY_SIZE(mac_algs)); crypto_unregister_skciphers(aes_algs, ARRAY_SIZE(aes_algs)); } static int __init aes_init(void) { - struct simd_skcipher_alg *simd; - const char *basename; - const char *algname; - const char *drvname; int err; - int i; err = crypto_register_skciphers(aes_algs, ARRAY_SIZE(aes_algs)); if (err) @@ -1040,26 +1039,8 @@ static int __init aes_init(void) if (err) goto unregister_ciphers; - for (i = 0; i < ARRAY_SIZE(aes_algs); i++) { - if (!(aes_algs[i].base.cra_flags & CRYPTO_ALG_INTERNAL)) - continue; - - algname = aes_algs[i].base.cra_name + 2; - drvname = aes_algs[i].base.cra_driver_name + 2; - basename = aes_algs[i].base.cra_driver_name; - simd = simd_skcipher_create_compat(algname, drvname, basename); - err = PTR_ERR(simd); - if (IS_ERR(simd)) - goto unregister_simds; - - aes_simd_algs[i] = simd; - } - return 0; -unregister_simds: - aes_exit(); - return err; unregister_ciphers: crypto_unregister_skciphers(aes_algs, ARRAY_SIZE(aes_algs)); return err; @@ -1071,6 +1052,7 @@ module_cpu_feature_match(AES, aes_init); module_init(aes_init); EXPORT_SYMBOL(neon_aes_ecb_encrypt); EXPORT_SYMBOL(neon_aes_cbc_encrypt); +EXPORT_SYMBOL(neon_aes_ctr_encrypt); EXPORT_SYMBOL(neon_aes_xts_encrypt); EXPORT_SYMBOL(neon_aes_xts_decrypt); #endif |