e_aes.c 96.1 KB
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/*
 * Copyright 2001-2016 The OpenSSL Project Authors. All Rights Reserved.
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 *
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 * Licensed under the OpenSSL license (the "License").  You may not use
 * this file except in compliance with the License.  You can obtain a copy
 * in the file LICENSE in the source distribution or at
 * https://www.openssl.org/source/license.html
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 */

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#include <openssl/opensslconf.h>
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#include <openssl/crypto.h>
#include <openssl/evp.h>
#include <openssl/err.h>
#include <string.h>
#include <assert.h>
#include <openssl/aes.h>
#include "internal/evp_int.h"
#include "modes_lcl.h"
#include <openssl/rand.h>
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#include "evp_locl.h"
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typedef struct {
    union {
        double align;
        AES_KEY ks;
    } ks;
    block128_f block;
    union {
        cbc128_f cbc;
        ctr128_f ctr;
    } stream;
} EVP_AES_KEY;

typedef struct {
    union {
        double align;
        AES_KEY ks;
    } ks;                       /* AES key schedule to use */
    int key_set;                /* Set if key initialised */
    int iv_set;                 /* Set if an iv is set */
    GCM128_CONTEXT gcm;
    unsigned char *iv;          /* Temporary IV store */
    int ivlen;                  /* IV length */
    int taglen;
    int iv_gen;                 /* It is OK to generate IVs */
    int tls_aad_len;            /* TLS AAD length */
    ctr128_f ctr;
} EVP_AES_GCM_CTX;

typedef struct {
    union {
        double align;
        AES_KEY ks;
    } ks1, ks2;                 /* AES key schedules to use */
    XTS128_CONTEXT xts;
    void (*stream) (const unsigned char *in,
                    unsigned char *out, size_t length,
                    const AES_KEY *key1, const AES_KEY *key2,
                    const unsigned char iv[16]);
} EVP_AES_XTS_CTX;

typedef struct {
    union {
        double align;
        AES_KEY ks;
    } ks;                       /* AES key schedule to use */
    int key_set;                /* Set if key initialised */
    int iv_set;                 /* Set if an iv is set */
    int tag_set;                /* Set if tag is valid */
    int len_set;                /* Set if message length set */
    int L, M;                   /* L and M parameters from RFC3610 */
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    int tls_aad_len;            /* TLS AAD length */
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    CCM128_CONTEXT ccm;
    ccm128_f str;
} EVP_AES_CCM_CTX;

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#ifndef OPENSSL_NO_OCB
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typedef struct {
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    union {
        double align;
        AES_KEY ks;
    } ksenc;                    /* AES key schedule to use for encryption */
    union {
        double align;
        AES_KEY ks;
    } ksdec;                    /* AES key schedule to use for decryption */
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    int key_set;                /* Set if key initialised */
    int iv_set;                 /* Set if an iv is set */
    OCB128_CONTEXT ocb;
    unsigned char *iv;          /* Temporary IV store */
    unsigned char tag[16];
    unsigned char data_buf[16]; /* Store partial data blocks */
    unsigned char aad_buf[16];  /* Store partial AAD blocks */
    int data_buf_len;
    int aad_buf_len;
    int ivlen;                  /* IV length */
    int taglen;
} EVP_AES_OCB_CTX;
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#endif
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#define MAXBITCHUNK     ((size_t)1<<(sizeof(size_t)*8-4))
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#ifdef VPAES_ASM
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int vpaes_set_encrypt_key(const unsigned char *userKey, int bits,
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                          AES_KEY *key);
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int vpaes_set_decrypt_key(const unsigned char *userKey, int bits,
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                          AES_KEY *key);
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void vpaes_encrypt(const unsigned char *in, unsigned char *out,
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                   const AES_KEY *key);
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void vpaes_decrypt(const unsigned char *in, unsigned char *out,
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                   const AES_KEY *key);
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void vpaes_cbc_encrypt(const unsigned char *in,
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                       unsigned char *out,
                       size_t length,
                       const AES_KEY *key, unsigned char *ivec, int enc);
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#endif
#ifdef BSAES_ASM
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void bsaes_cbc_encrypt(const unsigned char *in, unsigned char *out,
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                       size_t length, const AES_KEY *key,
                       unsigned char ivec[16], int enc);
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void bsaes_ctr32_encrypt_blocks(const unsigned char *in, unsigned char *out,
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                                size_t len, const AES_KEY *key,
                                const unsigned char ivec[16]);
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void bsaes_xts_encrypt(const unsigned char *inp, unsigned char *out,
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                       size_t len, const AES_KEY *key1,
                       const AES_KEY *key2, const unsigned char iv[16]);
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void bsaes_xts_decrypt(const unsigned char *inp, unsigned char *out,
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                       size_t len, const AES_KEY *key1,
                       const AES_KEY *key2, const unsigned char iv[16]);
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#endif
#ifdef AES_CTR_ASM
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void AES_ctr32_encrypt(const unsigned char *in, unsigned char *out,
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                       size_t blocks, const AES_KEY *key,
                       const unsigned char ivec[AES_BLOCK_SIZE]);
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#endif
#ifdef AES_XTS_ASM
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void AES_xts_encrypt(const unsigned char *inp, unsigned char *out, size_t len,
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                     const AES_KEY *key1, const AES_KEY *key2,
                     const unsigned char iv[16]);
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void AES_xts_decrypt(const unsigned char *inp, unsigned char *out, size_t len,
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                     const AES_KEY *key1, const AES_KEY *key2,
                     const unsigned char iv[16]);
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#endif
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#if defined(OPENSSL_CPUID_OBJ) && (defined(__powerpc__) || defined(__ppc__) || defined(_ARCH_PPC))
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# include "ppc_arch.h"
# ifdef VPAES_ASM
#  define VPAES_CAPABLE (OPENSSL_ppccap_P & PPC_ALTIVEC)
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# endif
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# define HWAES_CAPABLE  (OPENSSL_ppccap_P & PPC_CRYPTO207)
# define HWAES_set_encrypt_key aes_p8_set_encrypt_key
# define HWAES_set_decrypt_key aes_p8_set_decrypt_key
# define HWAES_encrypt aes_p8_encrypt
# define HWAES_decrypt aes_p8_decrypt
# define HWAES_cbc_encrypt aes_p8_cbc_encrypt
# define HWAES_ctr32_encrypt_blocks aes_p8_ctr32_encrypt_blocks
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# define HWAES_xts_encrypt aes_p8_xts_encrypt
# define HWAES_xts_decrypt aes_p8_xts_decrypt
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#endif
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#if     defined(AES_ASM) && !defined(I386_ONLY) &&      (  \
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        ((defined(__i386)       || defined(__i386__)    || \
          defined(_M_IX86)) && defined(OPENSSL_IA32_SSE2))|| \
        defined(__x86_64)       || defined(__x86_64__)  || \
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        defined(_M_AMD64)       || defined(_M_X64)      )
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extern unsigned int OPENSSL_ia32cap_P[];
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# ifdef VPAES_ASM
#  define VPAES_CAPABLE   (OPENSSL_ia32cap_P[1]&(1<<(41-32)))
# endif
# ifdef BSAES_ASM
#  define BSAES_CAPABLE   (OPENSSL_ia32cap_P[1]&(1<<(41-32)))
# endif
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/*
 * AES-NI section
 */
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# define AESNI_CAPABLE   (OPENSSL_ia32cap_P[1]&(1<<(57-32)))
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int aesni_set_encrypt_key(const unsigned char *userKey, int bits,
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                          AES_KEY *key);
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int aesni_set_decrypt_key(const unsigned char *userKey, int bits,
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                          AES_KEY *key);
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void aesni_encrypt(const unsigned char *in, unsigned char *out,
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                   const AES_KEY *key);
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void aesni_decrypt(const unsigned char *in, unsigned char *out,
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                   const AES_KEY *key);
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void aesni_ecb_encrypt(const unsigned char *in,
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                       unsigned char *out,
                       size_t length, const AES_KEY *key, int enc);
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void aesni_cbc_encrypt(const unsigned char *in,
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                       unsigned char *out,
                       size_t length,
                       const AES_KEY *key, unsigned char *ivec, int enc);
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void aesni_ctr32_encrypt_blocks(const unsigned char *in,
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                                unsigned char *out,
                                size_t blocks,
                                const void *key, const unsigned char *ivec);
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void aesni_xts_encrypt(const unsigned char *in,
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                       unsigned char *out,
                       size_t length,
                       const AES_KEY *key1, const AES_KEY *key2,
                       const unsigned char iv[16]);
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void aesni_xts_decrypt(const unsigned char *in,
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                       unsigned char *out,
                       size_t length,
                       const AES_KEY *key1, const AES_KEY *key2,
                       const unsigned char iv[16]);

void aesni_ccm64_encrypt_blocks(const unsigned char *in,
                                unsigned char *out,
                                size_t blocks,
                                const void *key,
                                const unsigned char ivec[16],
                                unsigned char cmac[16]);

void aesni_ccm64_decrypt_blocks(const unsigned char *in,
                                unsigned char *out,
                                size_t blocks,
                                const void *key,
                                const unsigned char ivec[16],
                                unsigned char cmac[16]);

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# if defined(__x86_64) || defined(__x86_64__) || defined(_M_AMD64) || defined(_M_X64)
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size_t aesni_gcm_encrypt(const unsigned char *in,
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                         unsigned char *out,
                         size_t len,
                         const void *key, unsigned char ivec[16], u64 *Xi);
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#  define AES_gcm_encrypt aesni_gcm_encrypt
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size_t aesni_gcm_decrypt(const unsigned char *in,
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                         unsigned char *out,
                         size_t len,
                         const void *key, unsigned char ivec[16], u64 *Xi);
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#  define AES_gcm_decrypt aesni_gcm_decrypt
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void gcm_ghash_avx(u64 Xi[2], const u128 Htable[16], const u8 *in,
                   size_t len);
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#  define AES_GCM_ASM(gctx)       (gctx->ctr==aesni_ctr32_encrypt_blocks && \
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                                 gctx->gcm.ghash==gcm_ghash_avx)
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#  define AES_GCM_ASM2(gctx)      (gctx->gcm.block==(block128_f)aesni_encrypt && \
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                                 gctx->gcm.ghash==gcm_ghash_avx)
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#  undef AES_GCM_ASM2          /* minor size optimization */
# endif
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static int aesni_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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                          const unsigned char *iv, int enc)
{
    int ret, mode;
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    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
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    mode = EVP_CIPHER_CTX_mode(ctx);
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    if ((mode == EVP_CIPH_ECB_MODE || mode == EVP_CIPH_CBC_MODE)
        && !enc) {
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        ret = aesni_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                    &dat->ks.ks);
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        dat->block = (block128_f) aesni_decrypt;
        dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
            (cbc128_f) aesni_cbc_encrypt : NULL;
    } else {
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        ret = aesni_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                    &dat->ks.ks);
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        dat->block = (block128_f) aesni_encrypt;
        if (mode == EVP_CIPH_CBC_MODE)
            dat->stream.cbc = (cbc128_f) aesni_cbc_encrypt;
        else if (mode == EVP_CIPH_CTR_MODE)
            dat->stream.ctr = (ctr128_f) aesni_ctr32_encrypt_blocks;
        else
            dat->stream.cbc = NULL;
    }

    if (ret < 0) {
        EVPerr(EVP_F_AESNI_INIT_KEY, EVP_R_AES_KEY_SETUP_FAILED);
        return 0;
    }

    return 1;
}

static int aesni_cbc_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                            const unsigned char *in, size_t len)
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{
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    aesni_cbc_encrypt(in, out, len, &EVP_C_DATA(EVP_AES_KEY,ctx)->ks.ks,
                      EVP_CIPHER_CTX_iv_noconst(ctx),
                      EVP_CIPHER_CTX_encrypting(ctx));
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    return 1;
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}

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static int aesni_ecb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                            const unsigned char *in, size_t len)
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{
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    size_t bl = EVP_CIPHER_CTX_block_size(ctx);
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    if (len < bl)
        return 1;
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    aesni_ecb_encrypt(in, out, len, &EVP_C_DATA(EVP_AES_KEY,ctx)->ks.ks,
                      EVP_CIPHER_CTX_encrypting(ctx));
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    return 1;
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}

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# define aesni_ofb_cipher aes_ofb_cipher
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static int aesni_ofb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                            const unsigned char *in, size_t len);
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# define aesni_cfb_cipher aes_cfb_cipher
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static int aesni_cfb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                            const unsigned char *in, size_t len);
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# define aesni_cfb8_cipher aes_cfb8_cipher
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static int aesni_cfb8_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                             const unsigned char *in, size_t len);
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# define aesni_cfb1_cipher aes_cfb1_cipher
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static int aesni_cfb1_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                             const unsigned char *in, size_t len);
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# define aesni_ctr_cipher aes_ctr_cipher
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static int aesni_ctr_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                            const unsigned char *in, size_t len);
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static int aesni_gcm_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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                              const unsigned char *iv, int enc)
{
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    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,ctx);
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    if (!iv && !key)
        return 1;
    if (key) {
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        aesni_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                              &gctx->ks.ks);
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        CRYPTO_gcm128_init(&gctx->gcm, &gctx->ks, (block128_f) aesni_encrypt);
        gctx->ctr = (ctr128_f) aesni_ctr32_encrypt_blocks;
        /*
         * If we have an iv can set it directly, otherwise use saved IV.
         */
        if (iv == NULL && gctx->iv_set)
            iv = gctx->iv;
        if (iv) {
            CRYPTO_gcm128_setiv(&gctx->gcm, iv, gctx->ivlen);
            gctx->iv_set = 1;
        }
        gctx->key_set = 1;
    } else {
        /* If key set use IV, otherwise copy */
        if (gctx->key_set)
            CRYPTO_gcm128_setiv(&gctx->gcm, iv, gctx->ivlen);
        else
            memcpy(gctx->iv, iv, gctx->ivlen);
        gctx->iv_set = 1;
        gctx->iv_gen = 0;
    }
    return 1;
}

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# define aesni_gcm_cipher aes_gcm_cipher
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static int aesni_gcm_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                            const unsigned char *in, size_t len);
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static int aesni_xts_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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                              const unsigned char *iv, int enc)
{
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    EVP_AES_XTS_CTX *xctx = EVP_C_DATA(EVP_AES_XTS_CTX,ctx);
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    if (!iv && !key)
        return 1;

    if (key) {
        /* key_len is two AES keys */
        if (enc) {
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            aesni_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 4,
                                  &xctx->ks1.ks);
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            xctx->xts.block1 = (block128_f) aesni_encrypt;
            xctx->stream = aesni_xts_encrypt;
        } else {
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            aesni_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 4,
                                  &xctx->ks1.ks);
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            xctx->xts.block1 = (block128_f) aesni_decrypt;
            xctx->stream = aesni_xts_decrypt;
        }

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        aesni_set_encrypt_key(key + EVP_CIPHER_CTX_key_length(ctx) / 2,
                              EVP_CIPHER_CTX_key_length(ctx) * 4,
                              &xctx->ks2.ks);
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        xctx->xts.block2 = (block128_f) aesni_encrypt;

        xctx->xts.key1 = &xctx->ks1;
    }

    if (iv) {
        xctx->xts.key2 = &xctx->ks2;
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        memcpy(EVP_CIPHER_CTX_iv_noconst(ctx), iv, 16);
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    }

    return 1;
}

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# define aesni_xts_cipher aes_xts_cipher
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static int aesni_xts_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                            const unsigned char *in, size_t len);
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static int aesni_ccm_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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                              const unsigned char *iv, int enc)
{
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    EVP_AES_CCM_CTX *cctx = EVP_C_DATA(EVP_AES_CCM_CTX,ctx);
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    if (!iv && !key)
        return 1;
    if (key) {
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        aesni_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                              &cctx->ks.ks);
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        CRYPTO_ccm128_init(&cctx->ccm, cctx->M, cctx->L,
                           &cctx->ks, (block128_f) aesni_encrypt);
        cctx->str = enc ? (ccm128_f) aesni_ccm64_encrypt_blocks :
            (ccm128_f) aesni_ccm64_decrypt_blocks;
        cctx->key_set = 1;
    }
    if (iv) {
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        memcpy(EVP_CIPHER_CTX_iv_noconst(ctx), iv, 15 - cctx->L);
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        cctx->iv_set = 1;
    }
    return 1;
}

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# define aesni_ccm_cipher aes_ccm_cipher
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static int aesni_ccm_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                            const unsigned char *in, size_t len);
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# ifndef OPENSSL_NO_OCB
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void aesni_ocb_encrypt(const unsigned char *in, unsigned char *out,
                       size_t blocks, const void *key,
                       size_t start_block_num,
                       unsigned char offset_i[16],
                       const unsigned char L_[][16],
                       unsigned char checksum[16]);
void aesni_ocb_decrypt(const unsigned char *in, unsigned char *out,
                       size_t blocks, const void *key,
                       size_t start_block_num,
                       unsigned char offset_i[16],
                       const unsigned char L_[][16],
                       unsigned char checksum[16]);

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static int aesni_ocb_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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                              const unsigned char *iv, int enc)
{
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    EVP_AES_OCB_CTX *octx = EVP_C_DATA(EVP_AES_OCB_CTX,ctx);
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    if (!iv && !key)
        return 1;
    if (key) {
        do {
            /*
             * We set both the encrypt and decrypt key here because decrypt
             * needs both. We could possibly optimise to remove setting the
             * decrypt for an encryption operation.
             */
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            aesni_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                  &octx->ksenc.ks);
            aesni_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                  &octx->ksdec.ks);
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            if (!CRYPTO_ocb128_init(&octx->ocb,
                                    &octx->ksenc.ks, &octx->ksdec.ks,
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                                    (block128_f) aesni_encrypt,
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                                    (block128_f) aesni_decrypt,
                                    enc ? aesni_ocb_encrypt
                                        : aesni_ocb_decrypt))
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                return 0;
        }
        while (0);

        /*
         * If we have an iv we can set it directly, otherwise use saved IV.
         */
        if (iv == NULL && octx->iv_set)
            iv = octx->iv;
        if (iv) {
            if (CRYPTO_ocb128_setiv(&octx->ocb, iv, octx->ivlen, octx->taglen)
                != 1)
                return 0;
            octx->iv_set = 1;
        }
        octx->key_set = 1;
    } else {
        /* If key set use IV, otherwise copy */
        if (octx->key_set)
            CRYPTO_ocb128_setiv(&octx->ocb, iv, octx->ivlen, octx->taglen);
        else
            memcpy(octx->iv, iv, octx->ivlen);
        octx->iv_set = 1;
    }
    return 1;
}

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#  define aesni_ocb_cipher aes_ocb_cipher
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static int aesni_ocb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                            const unsigned char *in, size_t len);
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# endif                        /* OPENSSL_NO_OCB */
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# define BLOCK_CIPHER_generic(nid,keylen,blocksize,ivlen,nmode,mode,MODE,flags) \
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static const EVP_CIPHER aesni_##keylen##_##mode = { \
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        nid##_##keylen##_##nmode,blocksize,keylen/8,ivlen, \
        flags|EVP_CIPH_##MODE##_MODE,   \
        aesni_init_key,                 \
        aesni_##mode##_cipher,          \
        NULL,                           \
        sizeof(EVP_AES_KEY),            \
        NULL,NULL,NULL,NULL }; \
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static const EVP_CIPHER aes_##keylen##_##mode = { \
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        nid##_##keylen##_##nmode,blocksize,     \
        keylen/8,ivlen, \
        flags|EVP_CIPH_##MODE##_MODE,   \
        aes_init_key,                   \
        aes_##mode##_cipher,            \
        NULL,                           \
        sizeof(EVP_AES_KEY),            \
        NULL,NULL,NULL,NULL }; \
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const EVP_CIPHER *EVP_aes_##keylen##_##mode(void) \
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{ return AESNI_CAPABLE?&aesni_##keylen##_##mode:&aes_##keylen##_##mode; }
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# define BLOCK_CIPHER_custom(nid,keylen,blocksize,ivlen,mode,MODE,flags) \
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static const EVP_CIPHER aesni_##keylen##_##mode = { \
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        nid##_##keylen##_##mode,blocksize, \
        (EVP_CIPH_##MODE##_MODE==EVP_CIPH_XTS_MODE?2:1)*keylen/8, ivlen, \
        flags|EVP_CIPH_##MODE##_MODE,   \
        aesni_##mode##_init_key,        \
        aesni_##mode##_cipher,          \
        aes_##mode##_cleanup,           \
        sizeof(EVP_AES_##MODE##_CTX),   \
        NULL,NULL,aes_##mode##_ctrl,NULL }; \
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static const EVP_CIPHER aes_##keylen##_##mode = { \
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        nid##_##keylen##_##mode,blocksize, \
        (EVP_CIPH_##MODE##_MODE==EVP_CIPH_XTS_MODE?2:1)*keylen/8, ivlen, \
        flags|EVP_CIPH_##MODE##_MODE,   \
        aes_##mode##_init_key,          \
        aes_##mode##_cipher,            \
        aes_##mode##_cleanup,           \
        sizeof(EVP_AES_##MODE##_CTX),   \
        NULL,NULL,aes_##mode##_ctrl,NULL }; \
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const EVP_CIPHER *EVP_aes_##keylen##_##mode(void) \
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{ return AESNI_CAPABLE?&aesni_##keylen##_##mode:&aes_##keylen##_##mode; }
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#elif   defined(AES_ASM) && (defined(__sparc) || defined(__sparc__))
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# include "sparc_arch.h"
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extern unsigned int OPENSSL_sparcv9cap_P[];

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/*
 * Initial Fujitsu SPARC64 X support
 */
# define HWAES_CAPABLE           (OPENSSL_sparcv9cap_P[0] & SPARCV9_FJAESX)
# define HWAES_set_encrypt_key aes_fx_set_encrypt_key
# define HWAES_set_decrypt_key aes_fx_set_decrypt_key
# define HWAES_encrypt aes_fx_encrypt
# define HWAES_decrypt aes_fx_decrypt
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# define HWAES_cbc_encrypt aes_fx_cbc_encrypt
# define HWAES_ctr32_encrypt_blocks aes_fx_ctr32_encrypt_blocks
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# define SPARC_AES_CAPABLE       (OPENSSL_sparcv9cap_P[1] & CFR_AES)
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void aes_t4_set_encrypt_key(const unsigned char *key, int bits, AES_KEY *ks);
void aes_t4_set_decrypt_key(const unsigned char *key, int bits, AES_KEY *ks);
void aes_t4_encrypt(const unsigned char *in, unsigned char *out,
                    const AES_KEY *key);
void aes_t4_decrypt(const unsigned char *in, unsigned char *out,
                    const AES_KEY *key);
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/*
 * Key-length specific subroutines were chosen for following reason.
 * Each SPARC T4 core can execute up to 8 threads which share core's
 * resources. Loading as much key material to registers allows to
 * minimize references to shared memory interface, as well as amount
 * of instructions in inner loops [much needed on T4]. But then having
 * non-key-length specific routines would require conditional branches
 * either in inner loops or on subroutines' entries. Former is hardly
 * acceptable, while latter means code size increase to size occupied
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 * by multiple key-length specific subroutines, so why fight?
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 */
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void aes128_t4_cbc_encrypt(const unsigned char *in, unsigned char *out,
                           size_t len, const AES_KEY *key,
                           unsigned char *ivec);
void aes128_t4_cbc_decrypt(const unsigned char *in, unsigned char *out,
                           size_t len, const AES_KEY *key,
                           unsigned char *ivec);
void aes192_t4_cbc_encrypt(const unsigned char *in, unsigned char *out,
                           size_t len, const AES_KEY *key,
                           unsigned char *ivec);
void aes192_t4_cbc_decrypt(const unsigned char *in, unsigned char *out,
                           size_t len, const AES_KEY *key,
                           unsigned char *ivec);
void aes256_t4_cbc_encrypt(const unsigned char *in, unsigned char *out,
                           size_t len, const AES_KEY *key,
                           unsigned char *ivec);
void aes256_t4_cbc_decrypt(const unsigned char *in, unsigned char *out,
                           size_t len, const AES_KEY *key,
                           unsigned char *ivec);
void aes128_t4_ctr32_encrypt(const unsigned char *in, unsigned char *out,
                             size_t blocks, const AES_KEY *key,
                             unsigned char *ivec);
void aes192_t4_ctr32_encrypt(const unsigned char *in, unsigned char *out,
                             size_t blocks, const AES_KEY *key,
                             unsigned char *ivec);
void aes256_t4_ctr32_encrypt(const unsigned char *in, unsigned char *out,
                             size_t blocks, const AES_KEY *key,
                             unsigned char *ivec);
void aes128_t4_xts_encrypt(const unsigned char *in, unsigned char *out,
                           size_t blocks, const AES_KEY *key1,
                           const AES_KEY *key2, const unsigned char *ivec);
void aes128_t4_xts_decrypt(const unsigned char *in, unsigned char *out,
                           size_t blocks, const AES_KEY *key1,
                           const AES_KEY *key2, const unsigned char *ivec);
void aes256_t4_xts_encrypt(const unsigned char *in, unsigned char *out,
                           size_t blocks, const AES_KEY *key1,
                           const AES_KEY *key2, const unsigned char *ivec);
void aes256_t4_xts_decrypt(const unsigned char *in, unsigned char *out,
                           size_t blocks, const AES_KEY *key1,
                           const AES_KEY *key2, const unsigned char *ivec);
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static int aes_t4_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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                           const unsigned char *iv, int enc)
{
    int ret, mode, bits;
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    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
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    mode = EVP_CIPHER_CTX_mode(ctx);
    bits = EVP_CIPHER_CTX_key_length(ctx) * 8;
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    if ((mode == EVP_CIPH_ECB_MODE || mode == EVP_CIPH_CBC_MODE)
        && !enc) {
        ret = 0;
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        aes_t4_set_decrypt_key(key, bits, &dat->ks.ks);
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        dat->block = (block128_f) aes_t4_decrypt;
        switch (bits) {
        case 128:
            dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
                (cbc128_f) aes128_t4_cbc_decrypt : NULL;
            break;
        case 192:
            dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
                (cbc128_f) aes192_t4_cbc_decrypt : NULL;
            break;
        case 256:
            dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
                (cbc128_f) aes256_t4_cbc_decrypt : NULL;
            break;
        default:
            ret = -1;
        }
    } else {
        ret = 0;
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        aes_t4_set_encrypt_key(key, bits, &dat->ks.ks);
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        dat->block = (block128_f) aes_t4_encrypt;
        switch (bits) {
        case 128:
            if (mode == EVP_CIPH_CBC_MODE)
                dat->stream.cbc = (cbc128_f) aes128_t4_cbc_encrypt;
            else if (mode == EVP_CIPH_CTR_MODE)
                dat->stream.ctr = (ctr128_f) aes128_t4_ctr32_encrypt;
            else
                dat->stream.cbc = NULL;
            break;
        case 192:
            if (mode == EVP_CIPH_CBC_MODE)
                dat->stream.cbc = (cbc128_f) aes192_t4_cbc_encrypt;
            else if (mode == EVP_CIPH_CTR_MODE)
                dat->stream.ctr = (ctr128_f) aes192_t4_ctr32_encrypt;
            else
                dat->stream.cbc = NULL;
            break;
        case 256:
            if (mode == EVP_CIPH_CBC_MODE)
                dat->stream.cbc = (cbc128_f) aes256_t4_cbc_encrypt;
            else if (mode == EVP_CIPH_CTR_MODE)
                dat->stream.ctr = (ctr128_f) aes256_t4_ctr32_encrypt;
            else
                dat->stream.cbc = NULL;
            break;
        default:
            ret = -1;
        }
    }

    if (ret < 0) {
        EVPerr(EVP_F_AES_T4_INIT_KEY, EVP_R_AES_KEY_SETUP_FAILED);
        return 0;
    }

    return 1;
}

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# define aes_t4_cbc_cipher aes_cbc_cipher
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static int aes_t4_cbc_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                             const unsigned char *in, size_t len);

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# define aes_t4_ecb_cipher aes_ecb_cipher
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static int aes_t4_ecb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                             const unsigned char *in, size_t len);

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# define aes_t4_ofb_cipher aes_ofb_cipher
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static int aes_t4_ofb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                             const unsigned char *in, size_t len);

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# define aes_t4_cfb_cipher aes_cfb_cipher
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static int aes_t4_cfb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                             const unsigned char *in, size_t len);

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# define aes_t4_cfb8_cipher aes_cfb8_cipher
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static int aes_t4_cfb8_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                              const unsigned char *in, size_t len);

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# define aes_t4_cfb1_cipher aes_cfb1_cipher
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static int aes_t4_cfb1_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                              const unsigned char *in, size_t len);

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# define aes_t4_ctr_cipher aes_ctr_cipher
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static int aes_t4_ctr_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                             const unsigned char *in, size_t len);
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static int aes_t4_gcm_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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                               const unsigned char *iv, int enc)
{
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    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,ctx);
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    if (!iv && !key)
        return 1;
    if (key) {
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        int bits = EVP_CIPHER_CTX_key_length(ctx) * 8;
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        aes_t4_set_encrypt_key(key, bits, &gctx->ks.ks);
        CRYPTO_gcm128_init(&gctx->gcm, &gctx->ks,
                           (block128_f) aes_t4_encrypt);
        switch (bits) {
        case 128:
            gctx->ctr = (ctr128_f) aes128_t4_ctr32_encrypt;
            break;
        case 192:
            gctx->ctr = (ctr128_f) aes192_t4_ctr32_encrypt;
            break;
        case 256:
            gctx->ctr = (ctr128_f) aes256_t4_ctr32_encrypt;
            break;
        default:
            return 0;
        }
        /*
         * If we have an iv can set it directly, otherwise use saved IV.
         */
        if (iv == NULL && gctx->iv_set)
            iv = gctx->iv;
        if (iv) {
            CRYPTO_gcm128_setiv(&gctx->gcm, iv, gctx->ivlen);
            gctx->iv_set = 1;
        }
        gctx->key_set = 1;
    } else {
        /* If key set use IV, otherwise copy */
        if (gctx->key_set)
            CRYPTO_gcm128_setiv(&gctx->gcm, iv, gctx->ivlen);
        else
            memcpy(gctx->iv, iv, gctx->ivlen);
        gctx->iv_set = 1;
        gctx->iv_gen = 0;
    }
    return 1;
}

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# define aes_t4_gcm_cipher aes_gcm_cipher
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static int aes_t4_gcm_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                             const unsigned char *in, size_t len);
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static int aes_t4_xts_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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                               const unsigned char *iv, int enc)
{
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    EVP_AES_XTS_CTX *xctx = EVP_C_DATA(EVP_AES_XTS_CTX,ctx);
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    if (!iv && !key)
        return 1;

    if (key) {
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        int bits = EVP_CIPHER_CTX_key_length(ctx) * 4;
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        xctx->stream = NULL;
        /* key_len is two AES keys */
        if (enc) {
            aes_t4_set_encrypt_key(key, bits, &xctx->ks1.ks);
            xctx->xts.block1 = (block128_f) aes_t4_encrypt;
            switch (bits) {
            case 128:
                xctx->stream = aes128_t4_xts_encrypt;
                break;
            case 256:
                xctx->stream = aes256_t4_xts_encrypt;
                break;
            default:
                return 0;
            }
        } else {
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            aes_t4_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 4,
                                   &xctx->ks1.ks);
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            xctx->xts.block1 = (block128_f) aes_t4_decrypt;
            switch (bits) {
            case 128:
                xctx->stream = aes128_t4_xts_decrypt;
                break;
            case 256:
                xctx->stream = aes256_t4_xts_decrypt;
                break;
            default:
                return 0;
            }
        }

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        aes_t4_set_encrypt_key(key + EVP_CIPHER_CTX_key_length(ctx) / 2,
                               EVP_CIPHER_CTX_key_length(ctx) * 4,
                               &xctx->ks2.ks);
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        xctx->xts.block2 = (block128_f) aes_t4_encrypt;

        xctx->xts.key1 = &xctx->ks1;
    }

    if (iv) {
        xctx->xts.key2 = &xctx->ks2;
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        memcpy(EVP_CIPHER_CTX_iv_noconst(ctx), iv, 16);
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    }

    return 1;
}

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# define aes_t4_xts_cipher aes_xts_cipher
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static int aes_t4_xts_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                             const unsigned char *in, size_t len);
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static int aes_t4_ccm_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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                               const unsigned char *iv, int enc)
{
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    EVP_AES_CCM_CTX *cctx = EVP_C_DATA(EVP_AES_CCM_CTX,ctx);
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    if (!iv && !key)
        return 1;
    if (key) {
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        int bits = EVP_CIPHER_CTX_key_length(ctx) * 8;
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        aes_t4_set_encrypt_key(key, bits, &cctx->ks.ks);
        CRYPTO_ccm128_init(&cctx->ccm, cctx->M, cctx->L,
                           &cctx->ks, (block128_f) aes_t4_encrypt);
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        cctx->str = NULL;
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        cctx->key_set = 1;
    }
    if (iv) {
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        memcpy(EVP_CIPHER_CTX_iv_noconst(ctx), iv, 15 - cctx->L);
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        cctx->iv_set = 1;
    }
    return 1;
}

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# define aes_t4_ccm_cipher aes_ccm_cipher
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static int aes_t4_ccm_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                             const unsigned char *in, size_t len);
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# ifndef OPENSSL_NO_OCB
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static int aes_t4_ocb_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
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                               const unsigned char *iv, int enc)
{
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    EVP_AES_OCB_CTX *octx = EVP_C_DATA(EVP_AES_OCB_CTX,ctx);
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    if (!iv && !key)
        return 1;
    if (key) {
        do {
            /*
             * We set both the encrypt and decrypt key here because decrypt
             * needs both. We could possibly optimise to remove setting the
             * decrypt for an encryption operation.
             */
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            aes_t4_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                   &octx->ksenc.ks);
            aes_t4_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                   &octx->ksdec.ks);
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            if (!CRYPTO_ocb128_init(&octx->ocb,
                                    &octx->ksenc.ks, &octx->ksdec.ks,
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                                    (block128_f) aes_t4_encrypt,
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                                    (block128_f) aes_t4_decrypt,
                                    NULL))
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                return 0;
        }
        while (0);

        /*
         * If we have an iv we can set it directly, otherwise use saved IV.
         */
        if (iv == NULL && octx->iv_set)
            iv = octx->iv;
        if (iv) {
            if (CRYPTO_ocb128_setiv(&octx->ocb, iv, octx->ivlen, octx->taglen)
                != 1)
                return 0;
            octx->iv_set = 1;
        }
        octx->key_set = 1;
    } else {
        /* If key set use IV, otherwise copy */
        if (octx->key_set)
            CRYPTO_ocb128_setiv(&octx->ocb, iv, octx->ivlen, octx->taglen);
        else
            memcpy(octx->iv, iv, octx->ivlen);
        octx->iv_set = 1;
    }
    return 1;
}

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#  define aes_t4_ocb_cipher aes_ocb_cipher
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static int aes_t4_ocb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                             const unsigned char *in, size_t len);
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# endif                        /* OPENSSL_NO_OCB */
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# define BLOCK_CIPHER_generic(nid,keylen,blocksize,ivlen,nmode,mode,MODE,flags) \
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static const EVP_CIPHER aes_t4_##keylen##_##mode = { \
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        nid##_##keylen##_##nmode,blocksize,keylen/8,ivlen, \
        flags|EVP_CIPH_##MODE##_MODE,   \
        aes_t4_init_key,                \
        aes_t4_##mode##_cipher,         \
        NULL,                           \
        sizeof(EVP_AES_KEY),            \
        NULL,NULL,NULL,NULL }; \
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static const EVP_CIPHER aes_##keylen##_##mode = { \
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        nid##_##keylen##_##nmode,blocksize,     \
        keylen/8,ivlen, \
        flags|EVP_CIPH_##MODE##_MODE,   \
        aes_init_key,                   \
        aes_##mode##_cipher,            \
        NULL,                           \
        sizeof(EVP_AES_KEY),            \
        NULL,NULL,NULL,NULL }; \
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const EVP_CIPHER *EVP_aes_##keylen##_##mode(void) \
{ return SPARC_AES_CAPABLE?&aes_t4_##keylen##_##mode:&aes_##keylen##_##mode; }

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# define BLOCK_CIPHER_custom(nid,keylen,blocksize,ivlen,mode,MODE,flags) \
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static const EVP_CIPHER aes_t4_##keylen##_##mode = { \
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        nid##_##keylen##_##mode,blocksize, \
        (EVP_CIPH_##MODE##_MODE==EVP_CIPH_XTS_MODE?2:1)*keylen/8, ivlen, \
        flags|EVP_CIPH_##MODE##_MODE,   \
        aes_t4_##mode##_init_key,       \
        aes_t4_##mode##_cipher,         \
        aes_##mode##_cleanup,           \
        sizeof(EVP_AES_##MODE##_CTX),   \
        NULL,NULL,aes_##mode##_ctrl,NULL }; \
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static const EVP_CIPHER aes_##keylen##_##mode = { \
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        nid##_##keylen##_##mode,blocksize, \
        (EVP_CIPH_##MODE##_MODE==EVP_CIPH_XTS_MODE?2:1)*keylen/8, ivlen, \
        flags|EVP_CIPH_##MODE##_MODE,   \
        aes_##mode##_init_key,          \
        aes_##mode##_cipher,            \
        aes_##mode##_cleanup,           \
        sizeof(EVP_AES_##MODE##_CTX),   \
        NULL,NULL,aes_##mode##_ctrl,NULL }; \
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const EVP_CIPHER *EVP_aes_##keylen##_##mode(void) \
{ return SPARC_AES_CAPABLE?&aes_t4_##keylen##_##mode:&aes_##keylen##_##mode; }

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#else
954

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# define BLOCK_CIPHER_generic(nid,keylen,blocksize,ivlen,nmode,mode,MODE,flags) \
956
static const EVP_CIPHER aes_##keylen##_##mode = { \
957 958 959 960 961 962 963
        nid##_##keylen##_##nmode,blocksize,keylen/8,ivlen, \
        flags|EVP_CIPH_##MODE##_MODE,   \
        aes_init_key,                   \
        aes_##mode##_cipher,            \
        NULL,                           \
        sizeof(EVP_AES_KEY),            \
        NULL,NULL,NULL,NULL }; \
964 965
const EVP_CIPHER *EVP_aes_##keylen##_##mode(void) \
{ return &aes_##keylen##_##mode; }
966

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# define BLOCK_CIPHER_custom(nid,keylen,blocksize,ivlen,mode,MODE,flags) \
968
static const EVP_CIPHER aes_##keylen##_##mode = { \
969 970 971 972 973 974 975 976
        nid##_##keylen##_##mode,blocksize, \
        (EVP_CIPH_##MODE##_MODE==EVP_CIPH_XTS_MODE?2:1)*keylen/8, ivlen, \
        flags|EVP_CIPH_##MODE##_MODE,   \
        aes_##mode##_init_key,          \
        aes_##mode##_cipher,            \
        aes_##mode##_cleanup,           \
        sizeof(EVP_AES_##MODE##_CTX),   \
        NULL,NULL,aes_##mode##_ctrl,NULL }; \
977 978
const EVP_CIPHER *EVP_aes_##keylen##_##mode(void) \
{ return &aes_##keylen##_##mode; }
979

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#endif
981

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#if defined(OPENSSL_CPUID_OBJ) && (defined(__arm__) || defined(__arm) || defined(__aarch64__))
# include "arm_arch.h"
# if __ARM_MAX_ARCH__>=7
#  if defined(BSAES_ASM)
#   define BSAES_CAPABLE (OPENSSL_armcap_P & ARMV7_NEON)
#  endif
#  if defined(VPAES_ASM)
#   define VPAES_CAPABLE (OPENSSL_armcap_P & ARMV7_NEON)
990
#  endif
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#  define HWAES_CAPABLE (OPENSSL_armcap_P & ARMV8_AES)
#  define HWAES_set_encrypt_key aes_v8_set_encrypt_key
#  define HWAES_set_decrypt_key aes_v8_set_decrypt_key
#  define HWAES_encrypt aes_v8_encrypt
#  define HWAES_decrypt aes_v8_decrypt
#  define HWAES_cbc_encrypt aes_v8_cbc_encrypt
#  define HWAES_ctr32_encrypt_blocks aes_v8_ctr32_encrypt_blocks
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# endif
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#endif
1000

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#if defined(HWAES_CAPABLE)
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int HWAES_set_encrypt_key(const unsigned char *userKey, const int bits,
1003
                          AES_KEY *key);
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int HWAES_set_decrypt_key(const unsigned char *userKey, const int bits,
1005
                          AES_KEY *key);
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void HWAES_encrypt(const unsigned char *in, unsigned char *out,
1007
                   const AES_KEY *key);
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void HWAES_decrypt(const unsigned char *in, unsigned char *out,
1009
                   const AES_KEY *key);
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void HWAES_cbc_encrypt(const unsigned char *in, unsigned char *out,
1011 1012
                       size_t length, const AES_KEY *key,
                       unsigned char *ivec, const int enc);
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void HWAES_ctr32_encrypt_blocks(const unsigned char *in, unsigned char *out,
1014 1015
                                size_t len, const AES_KEY *key,
                                const unsigned char ivec[16]);
1016 1017 1018 1019 1020 1021
void HWAES_xts_encrypt(const unsigned char *inp, unsigned char *out,
                       size_t len, const AES_KEY *key1,
                       const AES_KEY *key2, const unsigned char iv[16]);
void HWAES_xts_decrypt(const unsigned char *inp, unsigned char *out,
                       size_t len, const AES_KEY *key1,
                       const AES_KEY *key2, const unsigned char iv[16]);
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#endif
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#define BLOCK_CIPHER_generic_pack(nid,keylen,flags)             \
1025 1026 1027 1028 1029 1030 1031
        BLOCK_CIPHER_generic(nid,keylen,16,16,cbc,cbc,CBC,flags|EVP_CIPH_FLAG_DEFAULT_ASN1)     \
        BLOCK_CIPHER_generic(nid,keylen,16,0,ecb,ecb,ECB,flags|EVP_CIPH_FLAG_DEFAULT_ASN1)      \
        BLOCK_CIPHER_generic(nid,keylen,1,16,ofb128,ofb,OFB,flags|EVP_CIPH_FLAG_DEFAULT_ASN1)   \
        BLOCK_CIPHER_generic(nid,keylen,1,16,cfb128,cfb,CFB,flags|EVP_CIPH_FLAG_DEFAULT_ASN1)   \
        BLOCK_CIPHER_generic(nid,keylen,1,16,cfb1,cfb1,CFB,flags)       \
        BLOCK_CIPHER_generic(nid,keylen,1,16,cfb8,cfb8,CFB,flags)       \
        BLOCK_CIPHER_generic(nid,keylen,1,16,ctr,ctr,CTR,flags)
1032 1033

static int aes_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
1034 1035 1036
                        const unsigned char *iv, int enc)
{
    int ret, mode;
1037
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
1038

1039
    mode = EVP_CIPHER_CTX_mode(ctx);
1040
    if ((mode == EVP_CIPH_ECB_MODE || mode == EVP_CIPH_CBC_MODE)
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        && !enc) {
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#ifdef HWAES_CAPABLE
1043
        if (HWAES_CAPABLE) {
1044 1045 1046
            ret = HWAES_set_decrypt_key(key,
                                        EVP_CIPHER_CTX_key_length(ctx) * 8,
                                        &dat->ks.ks);
1047 1048
            dat->block = (block128_f) HWAES_decrypt;
            dat->stream.cbc = NULL;
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# ifdef HWAES_cbc_encrypt
1050 1051 1052
            if (mode == EVP_CIPH_CBC_MODE)
                dat->stream.cbc = (cbc128_f) HWAES_cbc_encrypt;
# endif
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        } else
#endif
#ifdef BSAES_CAPABLE
1056
        if (BSAES_CAPABLE && mode == EVP_CIPH_CBC_MODE) {
1057 1058
            ret = AES_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &dat->ks.ks);
1059 1060 1061
            dat->block = (block128_f) AES_decrypt;
            dat->stream.cbc = (cbc128_f) bsaes_cbc_encrypt;
        } else
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#endif
#ifdef VPAES_CAPABLE
1064
        if (VPAES_CAPABLE) {
1065 1066 1067
            ret = vpaes_set_decrypt_key(key,
                                        EVP_CIPHER_CTX_key_length(ctx) * 8,
                                        &dat->ks.ks);
1068 1069 1070 1071
            dat->block = (block128_f) vpaes_decrypt;
            dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
                (cbc128_f) vpaes_cbc_encrypt : NULL;
        } else
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#endif
1073
        {
1074 1075 1076
            ret = AES_set_decrypt_key(key,
                                      EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &dat->ks.ks);
1077 1078 1079
            dat->block = (block128_f) AES_decrypt;
            dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
                (cbc128_f) AES_cbc_encrypt : NULL;
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        }
1081
    } else
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#ifdef HWAES_CAPABLE
1083
    if (HWAES_CAPABLE) {
1084 1085
        ret = HWAES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                    &dat->ks.ks);
1086 1087
        dat->block = (block128_f) HWAES_encrypt;
        dat->stream.cbc = NULL;
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# ifdef HWAES_cbc_encrypt
1089 1090 1091
        if (mode == EVP_CIPH_CBC_MODE)
            dat->stream.cbc = (cbc128_f) HWAES_cbc_encrypt;
        else
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# endif
# ifdef HWAES_ctr32_encrypt_blocks
1094 1095 1096
        if (mode == EVP_CIPH_CTR_MODE)
            dat->stream.ctr = (ctr128_f) HWAES_ctr32_encrypt_blocks;
        else
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# endif
1098 1099
            (void)0;            /* terminate potentially open 'else' */
    } else
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#endif
#ifdef BSAES_CAPABLE
1102
    if (BSAES_CAPABLE && mode == EVP_CIPH_CTR_MODE) {
1103 1104
        ret = AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                  &dat->ks.ks);
1105 1106 1107
        dat->block = (block128_f) AES_encrypt;
        dat->stream.ctr = (ctr128_f) bsaes_ctr32_encrypt_blocks;
    } else
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#endif
#ifdef VPAES_CAPABLE
1110
    if (VPAES_CAPABLE) {
1111 1112
        ret = vpaes_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                    &dat->ks.ks);
1113 1114 1115 1116
        dat->block = (block128_f) vpaes_encrypt;
        dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
            (cbc128_f) vpaes_cbc_encrypt : NULL;
    } else
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#endif
1118
    {
1119 1120
        ret = AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                  &dat->ks.ks);
1121 1122 1123
        dat->block = (block128_f) AES_encrypt;
        dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
            (cbc128_f) AES_cbc_encrypt : NULL;
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#ifdef AES_CTR_ASM
1125 1126
        if (mode == EVP_CIPH_CTR_MODE)
            dat->stream.ctr = (ctr128_f) AES_ctr32_encrypt;
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#endif
1128
    }
1129

1130 1131 1132 1133
    if (ret < 0) {
        EVPerr(EVP_F_AES_INIT_KEY, EVP_R_AES_KEY_SETUP_FAILED);
        return 0;
    }
1134

1135 1136
    return 1;
}
1137

1138 1139
static int aes_cbc_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                          const unsigned char *in, size_t len)
1140
{
1141
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
1142

1143
    if (dat->stream.cbc)
1144 1145 1146 1147 1148 1149
        (*dat->stream.cbc) (in, out, len, &dat->ks,
                            EVP_CIPHER_CTX_iv_noconst(ctx),
                            EVP_CIPHER_CTX_encrypting(ctx));
    else if (EVP_CIPHER_CTX_encrypting(ctx))
        CRYPTO_cbc128_encrypt(in, out, len, &dat->ks,
                              EVP_CIPHER_CTX_iv_noconst(ctx), dat->block);
1150
    else
1151 1152
        CRYPTO_cbc128_decrypt(in, out, len, &dat->ks,
                              EVP_CIPHER_CTX_iv_noconst(ctx), dat->block);
1153

1154
    return 1;
1155 1156
}

1157 1158
static int aes_ecb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                          const unsigned char *in, size_t len)
1159
{
1160
    size_t bl = EVP_CIPHER_CTX_block_size(ctx);
1161
    size_t i;
1162
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
1163

1164 1165
    if (len < bl)
        return 1;
1166

1167 1168
    for (i = 0, len -= bl; i <= len; i += bl)
        (*dat->block) (in + i, out + i, &dat->ks);
1169

1170
    return 1;
1171
}
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1172

1173 1174
static int aes_ofb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                          const unsigned char *in, size_t len)
1175
{
1176
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
1177

1178
    int num = EVP_CIPHER_CTX_num(ctx);
1179
    CRYPTO_ofb128_encrypt(in, out, len, &dat->ks,
1180 1181
                          EVP_CIPHER_CTX_iv_noconst(ctx), &num, dat->block);
    EVP_CIPHER_CTX_set_num(ctx, num);
1182
    return 1;
1183
}
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Dr. Stephen Henson 已提交
1184

1185 1186
static int aes_cfb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                          const unsigned char *in, size_t len)
1187
{
1188
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
1189

1190
    int num = EVP_CIPHER_CTX_num(ctx);
1191
    CRYPTO_cfb128_encrypt(in, out, len, &dat->ks,
1192 1193 1194
                          EVP_CIPHER_CTX_iv_noconst(ctx), &num,
                          EVP_CIPHER_CTX_encrypting(ctx), dat->block);
    EVP_CIPHER_CTX_set_num(ctx, num);
1195
    return 1;
1196 1197
}

1198 1199
static int aes_cfb8_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                           const unsigned char *in, size_t len)
1200
{
1201
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
1202

1203
    int num = EVP_CIPHER_CTX_num(ctx);
1204
    CRYPTO_cfb128_8_encrypt(in, out, len, &dat->ks,
1205 1206 1207
                            EVP_CIPHER_CTX_iv_noconst(ctx), &num,
                            EVP_CIPHER_CTX_encrypting(ctx), dat->block);
    EVP_CIPHER_CTX_set_num(ctx, num);
1208
    return 1;
1209
}
1210

1211 1212
static int aes_cfb1_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                           const unsigned char *in, size_t len)
1213
{
1214
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
1215

1216 1217
    if (EVP_CIPHER_CTX_test_flags(ctx, EVP_CIPH_FLAG_LENGTH_BITS)) {
        int num = EVP_CIPHER_CTX_num(ctx);
1218
        CRYPTO_cfb128_1_encrypt(in, out, len, &dat->ks,
1219 1220 1221
                                EVP_CIPHER_CTX_iv_noconst(ctx), &num,
                                EVP_CIPHER_CTX_encrypting(ctx), dat->block);
        EVP_CIPHER_CTX_set_num(ctx, num);
1222 1223 1224 1225
        return 1;
    }

    while (len >= MAXBITCHUNK) {
1226
        int num = EVP_CIPHER_CTX_num(ctx);
1227
        CRYPTO_cfb128_1_encrypt(in, out, MAXBITCHUNK * 8, &dat->ks,
1228 1229 1230
                                EVP_CIPHER_CTX_iv_noconst(ctx), &num,
                                EVP_CIPHER_CTX_encrypting(ctx), dat->block);
        EVP_CIPHER_CTX_set_num(ctx, num);
1231 1232
        len -= MAXBITCHUNK;
    }
1233 1234
    if (len) {
        int num = EVP_CIPHER_CTX_num(ctx);
1235
        CRYPTO_cfb128_1_encrypt(in, out, len * 8, &dat->ks,
1236 1237 1238 1239
                                EVP_CIPHER_CTX_iv_noconst(ctx), &num,
                                EVP_CIPHER_CTX_encrypting(ctx), dat->block);
        EVP_CIPHER_CTX_set_num(ctx, num);
    }
1240 1241

    return 1;
1242
}
1243

1244 1245
static int aes_ctr_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                          const unsigned char *in, size_t len)
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Andy Polyakov 已提交
1246
{
1247 1248
    unsigned int num = EVP_CIPHER_CTX_num(ctx);
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
1249 1250 1251

    if (dat->stream.ctr)
        CRYPTO_ctr128_encrypt_ctr32(in, out, len, &dat->ks,
1252 1253 1254
                                    EVP_CIPHER_CTX_iv_noconst(ctx),
                                    EVP_CIPHER_CTX_buf_noconst(ctx),
                                    &num, dat->stream.ctr);
1255 1256
    else
        CRYPTO_ctr128_encrypt(in, out, len, &dat->ks,
1257 1258 1259 1260
                              EVP_CIPHER_CTX_iv_noconst(ctx),
                              EVP_CIPHER_CTX_buf_noconst(ctx), &num,
                              dat->block);
    EVP_CIPHER_CTX_set_num(ctx, num);
1261
    return 1;
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Andy Polyakov 已提交
1262 1263
}

1264 1265 1266
BLOCK_CIPHER_generic_pack(NID_aes, 128, 0)
    BLOCK_CIPHER_generic_pack(NID_aes, 192, 0)
    BLOCK_CIPHER_generic_pack(NID_aes, 256, 0)
1267 1268

static int aes_gcm_cleanup(EVP_CIPHER_CTX *c)
1269
{
1270
    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,c);
1271 1272
    if (gctx == NULL)
        return 0;
1273
    OPENSSL_cleanse(&gctx->gcm, sizeof(gctx->gcm));
1274
    if (gctx->iv != EVP_CIPHER_CTX_iv_noconst(c))
1275 1276 1277
        OPENSSL_free(gctx->iv);
    return 1;
}
1278

1279
/* increment counter (64-bit int) by 1 */
1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292
static void ctr64_inc(unsigned char *counter)
{
    int n = 8;
    unsigned char c;

    do {
        --n;
        c = counter[n];
        ++c;
        counter[n] = c;
        if (c)
            return;
    } while (n);
1293 1294
}

1295
static int aes_gcm_ctrl(EVP_CIPHER_CTX *c, int type, int arg, void *ptr)
1296
{
1297
    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,c);
1298 1299 1300 1301
    switch (type) {
    case EVP_CTRL_INIT:
        gctx->key_set = 0;
        gctx->iv_set = 0;
1302 1303
        gctx->ivlen = EVP_CIPHER_CTX_iv_length(c);
        gctx->iv = EVP_CIPHER_CTX_iv_noconst(c);
1304 1305 1306 1307 1308
        gctx->taglen = -1;
        gctx->iv_gen = 0;
        gctx->tls_aad_len = -1;
        return 1;

1309
    case EVP_CTRL_AEAD_SET_IVLEN:
1310 1311 1312 1313
        if (arg <= 0)
            return 0;
        /* Allocate memory for IV if needed */
        if ((arg > EVP_MAX_IV_LENGTH) && (arg > gctx->ivlen)) {
1314
            if (gctx->iv != EVP_CIPHER_CTX_iv_noconst(c))
1315 1316
                OPENSSL_free(gctx->iv);
            gctx->iv = OPENSSL_malloc(arg);
1317
            if (gctx->iv == NULL)
1318 1319 1320 1321 1322
                return 0;
        }
        gctx->ivlen = arg;
        return 1;

1323
    case EVP_CTRL_AEAD_SET_TAG:
1324
        if (arg <= 0 || arg > 16 || EVP_CIPHER_CTX_encrypting(c))
1325
            return 0;
1326
        memcpy(EVP_CIPHER_CTX_buf_noconst(c), ptr, arg);
1327 1328 1329
        gctx->taglen = arg;
        return 1;

1330
    case EVP_CTRL_AEAD_GET_TAG:
1331 1332
        if (arg <= 0 || arg > 16 || !EVP_CIPHER_CTX_encrypting(c)
            || gctx->taglen < 0)
1333
            return 0;
1334
        memcpy(ptr, EVP_CIPHER_CTX_buf_noconst(c), arg);
1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351
        return 1;

    case EVP_CTRL_GCM_SET_IV_FIXED:
        /* Special case: -1 length restores whole IV */
        if (arg == -1) {
            memcpy(gctx->iv, ptr, gctx->ivlen);
            gctx->iv_gen = 1;
            return 1;
        }
        /*
         * Fixed field must be at least 4 bytes and invocation field at least
         * 8.
         */
        if ((arg < 4) || (gctx->ivlen - arg) < 8)
            return 0;
        if (arg)
            memcpy(gctx->iv, ptr, arg);
1352 1353
        if (EVP_CIPHER_CTX_encrypting(c)
            && RAND_bytes(gctx->iv + arg, gctx->ivlen - arg) <= 0)
1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373
            return 0;
        gctx->iv_gen = 1;
        return 1;

    case EVP_CTRL_GCM_IV_GEN:
        if (gctx->iv_gen == 0 || gctx->key_set == 0)
            return 0;
        CRYPTO_gcm128_setiv(&gctx->gcm, gctx->iv, gctx->ivlen);
        if (arg <= 0 || arg > gctx->ivlen)
            arg = gctx->ivlen;
        memcpy(ptr, gctx->iv + gctx->ivlen - arg, arg);
        /*
         * Invocation field will be at least 8 bytes in size and so no need
         * to check wrap around or increment more than last 8 bytes.
         */
        ctr64_inc(gctx->iv + gctx->ivlen - 8);
        gctx->iv_set = 1;
        return 1;

    case EVP_CTRL_GCM_SET_IV_INV:
1374 1375
        if (gctx->iv_gen == 0 || gctx->key_set == 0
            || EVP_CIPHER_CTX_encrypting(c))
1376 1377 1378 1379 1380 1381 1382 1383
            return 0;
        memcpy(gctx->iv + gctx->ivlen - arg, ptr, arg);
        CRYPTO_gcm128_setiv(&gctx->gcm, gctx->iv, gctx->ivlen);
        gctx->iv_set = 1;
        return 1;

    case EVP_CTRL_AEAD_TLS1_AAD:
        /* Save the AAD for later use */
1384
        if (arg != EVP_AEAD_TLS1_AAD_LEN)
1385
            return 0;
1386
        memcpy(EVP_CIPHER_CTX_buf_noconst(c), ptr, arg);
1387 1388
        gctx->tls_aad_len = arg;
        {
1389 1390 1391
            unsigned int len =
                EVP_CIPHER_CTX_buf_noconst(c)[arg - 2] << 8
                | EVP_CIPHER_CTX_buf_noconst(c)[arg - 1];
1392
            /* Correct length for explicit IV */
A
Andy Polyakov 已提交
1393 1394
            if (len < EVP_GCM_TLS_EXPLICIT_IV_LEN)
                return 0;
1395 1396
            len -= EVP_GCM_TLS_EXPLICIT_IV_LEN;
            /* If decrypting correct for tag too */
A
Andy Polyakov 已提交
1397 1398 1399
            if (!EVP_CIPHER_CTX_encrypting(c)) {
                if (len < EVP_GCM_TLS_TAG_LEN)
                    return 0;
1400
                len -= EVP_GCM_TLS_TAG_LEN;
A
Andy Polyakov 已提交
1401
            }
1402 1403
            EVP_CIPHER_CTX_buf_noconst(c)[arg - 2] = len >> 8;
            EVP_CIPHER_CTX_buf_noconst(c)[arg - 1] = len & 0xff;
1404 1405 1406 1407 1408 1409 1410
        }
        /* Extra padding: tag appended to record */
        return EVP_GCM_TLS_TAG_LEN;

    case EVP_CTRL_COPY:
        {
            EVP_CIPHER_CTX *out = ptr;
1411
            EVP_AES_GCM_CTX *gctx_out = EVP_C_DATA(EVP_AES_GCM_CTX,out);
1412 1413 1414 1415 1416
            if (gctx->gcm.key) {
                if (gctx->gcm.key != &gctx->ks)
                    return 0;
                gctx_out->gcm.key = &gctx_out->ks;
            }
1417 1418
            if (gctx->iv == EVP_CIPHER_CTX_iv_noconst(c))
                gctx_out->iv = EVP_CIPHER_CTX_iv_noconst(out);
1419 1420
            else {
                gctx_out->iv = OPENSSL_malloc(gctx->ivlen);
1421
                if (gctx_out->iv == NULL)
1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432
                    return 0;
                memcpy(gctx_out->iv, gctx->iv, gctx->ivlen);
            }
            return 1;
        }

    default:
        return -1;

    }
}
1433 1434

static int aes_gcm_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
1435 1436
                            const unsigned char *iv, int enc)
{
1437
    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,ctx);
1438 1439 1440 1441
    if (!iv && !key)
        return 1;
    if (key) {
        do {
M
Matt Caswell 已提交
1442
#ifdef HWAES_CAPABLE
1443
            if (HWAES_CAPABLE) {
1444 1445
                HWAES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &gctx->ks.ks);
1446 1447
                CRYPTO_gcm128_init(&gctx->gcm, &gctx->ks,
                                   (block128_f) HWAES_encrypt);
M
Matt Caswell 已提交
1448
# ifdef HWAES_ctr32_encrypt_blocks
1449
                gctx->ctr = (ctr128_f) HWAES_ctr32_encrypt_blocks;
M
Matt Caswell 已提交
1450
# else
1451
                gctx->ctr = NULL;
M
Matt Caswell 已提交
1452
# endif
1453 1454
                break;
            } else
M
Matt Caswell 已提交
1455 1456
#endif
#ifdef BSAES_CAPABLE
1457
            if (BSAES_CAPABLE) {
1458 1459
                AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                    &gctx->ks.ks);
1460 1461 1462 1463 1464
                CRYPTO_gcm128_init(&gctx->gcm, &gctx->ks,
                                   (block128_f) AES_encrypt);
                gctx->ctr = (ctr128_f) bsaes_ctr32_encrypt_blocks;
                break;
            } else
M
Matt Caswell 已提交
1465 1466
#endif
#ifdef VPAES_CAPABLE
1467
            if (VPAES_CAPABLE) {
1468 1469
                vpaes_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &gctx->ks.ks);
1470 1471 1472 1473 1474
                CRYPTO_gcm128_init(&gctx->gcm, &gctx->ks,
                                   (block128_f) vpaes_encrypt);
                gctx->ctr = NULL;
                break;
            } else
M
Matt Caswell 已提交
1475
#endif
1476 1477
                (void)0;        /* terminate potentially open 'else' */

1478 1479
            AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                &gctx->ks.ks);
1480 1481
            CRYPTO_gcm128_init(&gctx->gcm, &gctx->ks,
                               (block128_f) AES_encrypt);
M
Matt Caswell 已提交
1482
#ifdef AES_CTR_ASM
1483
            gctx->ctr = (ctr128_f) AES_ctr32_encrypt;
M
Matt Caswell 已提交
1484
#else
1485
            gctx->ctr = NULL;
M
Matt Caswell 已提交
1486
#endif
1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512
        } while (0);

        /*
         * If we have an iv can set it directly, otherwise use saved IV.
         */
        if (iv == NULL && gctx->iv_set)
            iv = gctx->iv;
        if (iv) {
            CRYPTO_gcm128_setiv(&gctx->gcm, iv, gctx->ivlen);
            gctx->iv_set = 1;
        }
        gctx->key_set = 1;
    } else {
        /* If key set use IV, otherwise copy */
        if (gctx->key_set)
            CRYPTO_gcm128_setiv(&gctx->gcm, iv, gctx->ivlen);
        else
            memcpy(gctx->iv, iv, gctx->ivlen);
        gctx->iv_set = 1;
        gctx->iv_gen = 0;
    }
    return 1;
}

/*
 * Handle TLS GCM packet format. This consists of the last portion of the IV
1513 1514 1515 1516 1517 1518
 * followed by the payload and finally the tag. On encrypt generate IV,
 * encrypt payload and write the tag. On verify retrieve IV, decrypt payload
 * and verify tag.
 */

static int aes_gcm_tls_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
1519 1520
                              const unsigned char *in, size_t len)
{
1521
    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,ctx);
1522 1523 1524 1525 1526 1527 1528 1529 1530
    int rv = -1;
    /* Encrypt/decrypt must be performed in place */
    if (out != in
        || len < (EVP_GCM_TLS_EXPLICIT_IV_LEN + EVP_GCM_TLS_TAG_LEN))
        return -1;
    /*
     * Set IV from start of buffer or generate IV and write to start of
     * buffer.
     */
1531
    if (EVP_CIPHER_CTX_ctrl(ctx, EVP_CIPHER_CTX_encrypting(ctx) ?
1532 1533 1534 1535
                            EVP_CTRL_GCM_IV_GEN : EVP_CTRL_GCM_SET_IV_INV,
                            EVP_GCM_TLS_EXPLICIT_IV_LEN, out) <= 0)
        goto err;
    /* Use saved AAD */
1536 1537
    if (CRYPTO_gcm128_aad(&gctx->gcm, EVP_CIPHER_CTX_buf_noconst(ctx),
                          gctx->tls_aad_len))
1538 1539 1540 1541 1542
        goto err;
    /* Fix buffer and length to point to payload */
    in += EVP_GCM_TLS_EXPLICIT_IV_LEN;
    out += EVP_GCM_TLS_EXPLICIT_IV_LEN;
    len -= EVP_GCM_TLS_EXPLICIT_IV_LEN + EVP_GCM_TLS_TAG_LEN;
1543
    if (EVP_CIPHER_CTX_encrypting(ctx)) {
1544 1545 1546
        /* Encrypt payload */
        if (gctx->ctr) {
            size_t bulk = 0;
M
Matt Caswell 已提交
1547
#if defined(AES_GCM_ASM)
1548 1549 1550 1551 1552 1553 1554 1555 1556
            if (len >= 32 && AES_GCM_ASM(gctx)) {
                if (CRYPTO_gcm128_encrypt(&gctx->gcm, NULL, NULL, 0))
                    return -1;

                bulk = AES_gcm_encrypt(in, out, len,
                                       gctx->gcm.key,
                                       gctx->gcm.Yi.c, gctx->gcm.Xi.u);
                gctx->gcm.len.u[1] += bulk;
            }
M
Matt Caswell 已提交
1557
#endif
1558 1559 1560 1561 1562 1563 1564
            if (CRYPTO_gcm128_encrypt_ctr32(&gctx->gcm,
                                            in + bulk,
                                            out + bulk,
                                            len - bulk, gctx->ctr))
                goto err;
        } else {
            size_t bulk = 0;
M
Matt Caswell 已提交
1565
#if defined(AES_GCM_ASM2)
1566 1567 1568 1569 1570 1571 1572 1573 1574
            if (len >= 32 && AES_GCM_ASM2(gctx)) {
                if (CRYPTO_gcm128_encrypt(&gctx->gcm, NULL, NULL, 0))
                    return -1;

                bulk = AES_gcm_encrypt(in, out, len,
                                       gctx->gcm.key,
                                       gctx->gcm.Yi.c, gctx->gcm.Xi.u);
                gctx->gcm.len.u[1] += bulk;
            }
M
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1575
#endif
1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587
            if (CRYPTO_gcm128_encrypt(&gctx->gcm,
                                      in + bulk, out + bulk, len - bulk))
                goto err;
        }
        out += len;
        /* Finally write tag */
        CRYPTO_gcm128_tag(&gctx->gcm, out, EVP_GCM_TLS_TAG_LEN);
        rv = len + EVP_GCM_TLS_EXPLICIT_IV_LEN + EVP_GCM_TLS_TAG_LEN;
    } else {
        /* Decrypt */
        if (gctx->ctr) {
            size_t bulk = 0;
M
Matt Caswell 已提交
1588
#if defined(AES_GCM_ASM)
1589 1590 1591 1592 1593 1594 1595 1596 1597
            if (len >= 16 && AES_GCM_ASM(gctx)) {
                if (CRYPTO_gcm128_decrypt(&gctx->gcm, NULL, NULL, 0))
                    return -1;

                bulk = AES_gcm_decrypt(in, out, len,
                                       gctx->gcm.key,
                                       gctx->gcm.Yi.c, gctx->gcm.Xi.u);
                gctx->gcm.len.u[1] += bulk;
            }
M
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1598
#endif
1599 1600 1601 1602 1603 1604 1605
            if (CRYPTO_gcm128_decrypt_ctr32(&gctx->gcm,
                                            in + bulk,
                                            out + bulk,
                                            len - bulk, gctx->ctr))
                goto err;
        } else {
            size_t bulk = 0;
M
Matt Caswell 已提交
1606
#if defined(AES_GCM_ASM2)
1607 1608 1609 1610 1611 1612 1613 1614 1615
            if (len >= 16 && AES_GCM_ASM2(gctx)) {
                if (CRYPTO_gcm128_decrypt(&gctx->gcm, NULL, NULL, 0))
                    return -1;

                bulk = AES_gcm_decrypt(in, out, len,
                                       gctx->gcm.key,
                                       gctx->gcm.Yi.c, gctx->gcm.Xi.u);
                gctx->gcm.len.u[1] += bulk;
            }
M
Matt Caswell 已提交
1616
#endif
1617 1618 1619 1620 1621
            if (CRYPTO_gcm128_decrypt(&gctx->gcm,
                                      in + bulk, out + bulk, len - bulk))
                goto err;
        }
        /* Retrieve tag */
1622 1623
        CRYPTO_gcm128_tag(&gctx->gcm, EVP_CIPHER_CTX_buf_noconst(ctx),
                          EVP_GCM_TLS_TAG_LEN);
1624
        /* If tag mismatch wipe buffer */
1625 1626
        if (CRYPTO_memcmp(EVP_CIPHER_CTX_buf_noconst(ctx), in + len,
                          EVP_GCM_TLS_TAG_LEN)) {
1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637
            OPENSSL_cleanse(out, len);
            goto err;
        }
        rv = len;
    }

 err:
    gctx->iv_set = 0;
    gctx->tls_aad_len = -1;
    return rv;
}
1638

1639
static int aes_gcm_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
1640 1641
                          const unsigned char *in, size_t len)
{
1642
    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,ctx);
1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655
    /* If not set up, return error */
    if (!gctx->key_set)
        return -1;

    if (gctx->tls_aad_len >= 0)
        return aes_gcm_tls_cipher(ctx, out, in, len);

    if (!gctx->iv_set)
        return -1;
    if (in) {
        if (out == NULL) {
            if (CRYPTO_gcm128_aad(&gctx->gcm, in, len))
                return -1;
1656
        } else if (EVP_CIPHER_CTX_encrypting(ctx)) {
1657 1658
            if (gctx->ctr) {
                size_t bulk = 0;
M
Matt Caswell 已提交
1659
#if defined(AES_GCM_ASM)
1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672
                if (len >= 32 && AES_GCM_ASM(gctx)) {
                    size_t res = (16 - gctx->gcm.mres) % 16;

                    if (CRYPTO_gcm128_encrypt(&gctx->gcm, in, out, res))
                        return -1;

                    bulk = AES_gcm_encrypt(in + res,
                                           out + res, len - res,
                                           gctx->gcm.key, gctx->gcm.Yi.c,
                                           gctx->gcm.Xi.u);
                    gctx->gcm.len.u[1] += bulk;
                    bulk += res;
                }
M
Matt Caswell 已提交
1673
#endif
1674 1675 1676 1677 1678 1679 1680
                if (CRYPTO_gcm128_encrypt_ctr32(&gctx->gcm,
                                                in + bulk,
                                                out + bulk,
                                                len - bulk, gctx->ctr))
                    return -1;
            } else {
                size_t bulk = 0;
M
Matt Caswell 已提交
1681
#if defined(AES_GCM_ASM2)
1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694
                if (len >= 32 && AES_GCM_ASM2(gctx)) {
                    size_t res = (16 - gctx->gcm.mres) % 16;

                    if (CRYPTO_gcm128_encrypt(&gctx->gcm, in, out, res))
                        return -1;

                    bulk = AES_gcm_encrypt(in + res,
                                           out + res, len - res,
                                           gctx->gcm.key, gctx->gcm.Yi.c,
                                           gctx->gcm.Xi.u);
                    gctx->gcm.len.u[1] += bulk;
                    bulk += res;
                }
M
Matt Caswell 已提交
1695
#endif
1696 1697 1698 1699 1700 1701 1702
                if (CRYPTO_gcm128_encrypt(&gctx->gcm,
                                          in + bulk, out + bulk, len - bulk))
                    return -1;
            }
        } else {
            if (gctx->ctr) {
                size_t bulk = 0;
M
Matt Caswell 已提交
1703
#if defined(AES_GCM_ASM)
1704 1705 1706 1707 1708 1709 1710 1711 1712 1713 1714 1715 1716
                if (len >= 16 && AES_GCM_ASM(gctx)) {
                    size_t res = (16 - gctx->gcm.mres) % 16;

                    if (CRYPTO_gcm128_decrypt(&gctx->gcm, in, out, res))
                        return -1;

                    bulk = AES_gcm_decrypt(in + res,
                                           out + res, len - res,
                                           gctx->gcm.key,
                                           gctx->gcm.Yi.c, gctx->gcm.Xi.u);
                    gctx->gcm.len.u[1] += bulk;
                    bulk += res;
                }
M
Matt Caswell 已提交
1717
#endif
1718 1719 1720 1721 1722 1723 1724
                if (CRYPTO_gcm128_decrypt_ctr32(&gctx->gcm,
                                                in + bulk,
                                                out + bulk,
                                                len - bulk, gctx->ctr))
                    return -1;
            } else {
                size_t bulk = 0;
M
Matt Caswell 已提交
1725
#if defined(AES_GCM_ASM2)
1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738
                if (len >= 16 && AES_GCM_ASM2(gctx)) {
                    size_t res = (16 - gctx->gcm.mres) % 16;

                    if (CRYPTO_gcm128_decrypt(&gctx->gcm, in, out, res))
                        return -1;

                    bulk = AES_gcm_decrypt(in + res,
                                           out + res, len - res,
                                           gctx->gcm.key,
                                           gctx->gcm.Yi.c, gctx->gcm.Xi.u);
                    gctx->gcm.len.u[1] += bulk;
                    bulk += res;
                }
M
Matt Caswell 已提交
1739
#endif
1740 1741 1742 1743 1744 1745 1746
                if (CRYPTO_gcm128_decrypt(&gctx->gcm,
                                          in + bulk, out + bulk, len - bulk))
                    return -1;
            }
        }
        return len;
    } else {
1747
        if (!EVP_CIPHER_CTX_encrypting(ctx)) {
1748 1749
            if (gctx->taglen < 0)
                return -1;
1750 1751 1752
            if (CRYPTO_gcm128_finish(&gctx->gcm,
                                     EVP_CIPHER_CTX_buf_noconst(ctx),
                                     gctx->taglen) != 0)
1753 1754 1755 1756
                return -1;
            gctx->iv_set = 0;
            return 0;
        }
1757
        CRYPTO_gcm128_tag(&gctx->gcm, EVP_CIPHER_CTX_buf_noconst(ctx), 16);
1758 1759 1760 1761 1762 1763 1764 1765
        gctx->taglen = 16;
        /* Don't reuse the IV */
        gctx->iv_set = 0;
        return 0;
    }

}

M
Matt Caswell 已提交
1766
#define CUSTOM_FLAGS    (EVP_CIPH_FLAG_DEFAULT_ASN1 \
1767 1768 1769 1770 1771 1772 1773 1774 1775 1776
                | EVP_CIPH_CUSTOM_IV | EVP_CIPH_FLAG_CUSTOM_CIPHER \
                | EVP_CIPH_ALWAYS_CALL_INIT | EVP_CIPH_CTRL_INIT \
                | EVP_CIPH_CUSTOM_COPY)

BLOCK_CIPHER_custom(NID_aes, 128, 1, 12, gcm, GCM,
                    EVP_CIPH_FLAG_AEAD_CIPHER | CUSTOM_FLAGS)
    BLOCK_CIPHER_custom(NID_aes, 192, 1, 12, gcm, GCM,
                    EVP_CIPH_FLAG_AEAD_CIPHER | CUSTOM_FLAGS)
    BLOCK_CIPHER_custom(NID_aes, 256, 1, 12, gcm, GCM,
                    EVP_CIPH_FLAG_AEAD_CIPHER | CUSTOM_FLAGS)
1777 1778

static int aes_xts_ctrl(EVP_CIPHER_CTX *c, int type, int arg, void *ptr)
1779
{
1780
    EVP_AES_XTS_CTX *xctx = EVP_C_DATA(EVP_AES_XTS_CTX,c);
1781 1782
    if (type == EVP_CTRL_COPY) {
        EVP_CIPHER_CTX *out = ptr;
1783
        EVP_AES_XTS_CTX *xctx_out = EVP_C_DATA(EVP_AES_XTS_CTX,out);
1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801
        if (xctx->xts.key1) {
            if (xctx->xts.key1 != &xctx->ks1)
                return 0;
            xctx_out->xts.key1 = &xctx_out->ks1;
        }
        if (xctx->xts.key2) {
            if (xctx->xts.key2 != &xctx->ks2)
                return 0;
            xctx_out->xts.key2 = &xctx_out->ks2;
        }
        return 1;
    } else if (type != EVP_CTRL_INIT)
        return -1;
    /* key1 and key2 are used as an indicator both key and IV are set */
    xctx->xts.key1 = NULL;
    xctx->xts.key2 = NULL;
    return 1;
}
1802 1803

static int aes_xts_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
1804 1805
                            const unsigned char *iv, int enc)
{
1806
    EVP_AES_XTS_CTX *xctx = EVP_C_DATA(EVP_AES_XTS_CTX,ctx);
1807 1808 1809 1810 1811
    if (!iv && !key)
        return 1;

    if (key)
        do {
M
Matt Caswell 已提交
1812
#ifdef AES_XTS_ASM
1813
            xctx->stream = enc ? AES_xts_encrypt : AES_xts_decrypt;
M
Matt Caswell 已提交
1814
#else
1815
            xctx->stream = NULL;
M
Matt Caswell 已提交
1816
#endif
1817
            /* key_len is two AES keys */
M
Matt Caswell 已提交
1818
#ifdef HWAES_CAPABLE
1819 1820
            if (HWAES_CAPABLE) {
                if (enc) {
1821 1822
                    HWAES_set_encrypt_key(key,
                                          EVP_CIPHER_CTX_key_length(ctx) * 4,
1823 1824
                                          &xctx->ks1.ks);
                    xctx->xts.block1 = (block128_f) HWAES_encrypt;
1825 1826 1827
# ifdef HWAES_xts_encrypt
                    xctx->stream = HWAES_xts_encrypt;
# endif
1828
                } else {
1829 1830
                    HWAES_set_decrypt_key(key,
                                          EVP_CIPHER_CTX_key_length(ctx) * 4,
1831 1832
                                          &xctx->ks1.ks);
                    xctx->xts.block1 = (block128_f) HWAES_decrypt;
1833 1834 1835
# ifdef HWAES_xts_decrypt
                    xctx->stream = HWAES_xts_decrypt;
#endif
1836 1837
                }

1838 1839 1840
                HWAES_set_encrypt_key(key + EVP_CIPHER_CTX_key_length(ctx) / 2,
                                      EVP_CIPHER_CTX_key_length(ctx) * 4,
                                      &xctx->ks2.ks);
1841 1842 1843 1844 1845
                xctx->xts.block2 = (block128_f) HWAES_encrypt;

                xctx->xts.key1 = &xctx->ks1;
                break;
            } else
M
Matt Caswell 已提交
1846 1847
#endif
#ifdef BSAES_CAPABLE
1848 1849 1850
            if (BSAES_CAPABLE)
                xctx->stream = enc ? bsaes_xts_encrypt : bsaes_xts_decrypt;
            else
M
Matt Caswell 已提交
1851 1852
#endif
#ifdef VPAES_CAPABLE
1853 1854
            if (VPAES_CAPABLE) {
                if (enc) {
1855 1856
                    vpaes_set_encrypt_key(key,
                                          EVP_CIPHER_CTX_key_length(ctx) * 4,
1857 1858 1859
                                          &xctx->ks1.ks);
                    xctx->xts.block1 = (block128_f) vpaes_encrypt;
                } else {
1860 1861
                    vpaes_set_decrypt_key(key,
                                          EVP_CIPHER_CTX_key_length(ctx) * 4,
1862 1863 1864 1865
                                          &xctx->ks1.ks);
                    xctx->xts.block1 = (block128_f) vpaes_decrypt;
                }

1866 1867 1868
                vpaes_set_encrypt_key(key + EVP_CIPHER_CTX_key_length(ctx) / 2,
                                      EVP_CIPHER_CTX_key_length(ctx) * 4,
                                      &xctx->ks2.ks);
1869 1870 1871 1872 1873
                xctx->xts.block2 = (block128_f) vpaes_encrypt;

                xctx->xts.key1 = &xctx->ks1;
                break;
            } else
M
Matt Caswell 已提交
1874
#endif
1875 1876 1877
                (void)0;        /* terminate potentially open 'else' */

            if (enc) {
1878 1879
                AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 4,
                                    &xctx->ks1.ks);
1880 1881
                xctx->xts.block1 = (block128_f) AES_encrypt;
            } else {
1882 1883
                AES_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 4,
                                    &xctx->ks1.ks);
1884 1885 1886
                xctx->xts.block1 = (block128_f) AES_decrypt;
            }

1887 1888 1889
            AES_set_encrypt_key(key + EVP_CIPHER_CTX_key_length(ctx) / 2,
                                EVP_CIPHER_CTX_key_length(ctx) * 4,
                                &xctx->ks2.ks);
1890 1891 1892 1893 1894 1895 1896
            xctx->xts.block2 = (block128_f) AES_encrypt;

            xctx->xts.key1 = &xctx->ks1;
        } while (0);

    if (iv) {
        xctx->xts.key2 = &xctx->ks2;
1897
        memcpy(EVP_CIPHER_CTX_iv_noconst(ctx), iv, 16);
1898 1899 1900 1901
    }

    return 1;
}
1902

1903
static int aes_xts_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
1904 1905
                          const unsigned char *in, size_t len)
{
1906
    EVP_AES_XTS_CTX *xctx = EVP_C_DATA(EVP_AES_XTS_CTX,ctx);
1907 1908 1909 1910 1911 1912
    if (!xctx->xts.key1 || !xctx->xts.key2)
        return 0;
    if (!out || !in || len < AES_BLOCK_SIZE)
        return 0;
    if (xctx->stream)
        (*xctx->stream) (in, out, len,
1913 1914 1915 1916 1917
                         xctx->xts.key1, xctx->xts.key2,
                         EVP_CIPHER_CTX_iv_noconst(ctx));
    else if (CRYPTO_xts128_encrypt(&xctx->xts, EVP_CIPHER_CTX_iv_noconst(ctx),
                                   in, out, len,
                                   EVP_CIPHER_CTX_encrypting(ctx)))
1918 1919 1920 1921
        return 0;
    return 1;
}

M
Matt Caswell 已提交
1922
#define aes_xts_cleanup NULL
1923

M
Matt Caswell 已提交
1924
#define XTS_FLAGS       (EVP_CIPH_FLAG_DEFAULT_ASN1 | EVP_CIPH_CUSTOM_IV \
1925 1926 1927 1928 1929
                         | EVP_CIPH_ALWAYS_CALL_INIT | EVP_CIPH_CTRL_INIT \
                         | EVP_CIPH_CUSTOM_COPY)

BLOCK_CIPHER_custom(NID_aes, 128, 1, 16, xts, XTS, XTS_FLAGS)
    BLOCK_CIPHER_custom(NID_aes, 256, 1, 16, xts, XTS, XTS_FLAGS)
1930 1931

static int aes_ccm_ctrl(EVP_CIPHER_CTX *c, int type, int arg, void *ptr)
1932
{
1933
    EVP_AES_CCM_CTX *cctx = EVP_C_DATA(EVP_AES_CCM_CTX,c);
1934 1935 1936 1937 1938 1939 1940 1941
    switch (type) {
    case EVP_CTRL_INIT:
        cctx->key_set = 0;
        cctx->iv_set = 0;
        cctx->L = 8;
        cctx->M = 12;
        cctx->tag_set = 0;
        cctx->len_set = 0;
D
Dr. Stephen Henson 已提交
1942 1943 1944 1945 1946 1947 1948
        cctx->tls_aad_len = -1;
        return 1;

    case EVP_CTRL_AEAD_TLS1_AAD:
        /* Save the AAD for later use */
        if (arg != EVP_AEAD_TLS1_AAD_LEN)
            return 0;
1949
        memcpy(EVP_CIPHER_CTX_buf_noconst(c), ptr, arg);
D
Dr. Stephen Henson 已提交
1950 1951
        cctx->tls_aad_len = arg;
        {
1952 1953 1954
            uint16_t len =
                EVP_CIPHER_CTX_buf_noconst(c)[arg - 2] << 8
                | EVP_CIPHER_CTX_buf_noconst(c)[arg - 1];
D
Dr. Stephen Henson 已提交
1955
            /* Correct length for explicit IV */
A
Andy Polyakov 已提交
1956 1957
            if (len < EVP_CCM_TLS_EXPLICIT_IV_LEN)
                return 0;
D
Dr. Stephen Henson 已提交
1958 1959
            len -= EVP_CCM_TLS_EXPLICIT_IV_LEN;
            /* If decrypting correct for tag too */
A
Andy Polyakov 已提交
1960 1961 1962
            if (!EVP_CIPHER_CTX_encrypting(c)) {
                if (len < cctx->M)
                    return 0;
D
Dr. Stephen Henson 已提交
1963
                len -= cctx->M;
A
Andy Polyakov 已提交
1964
            }
1965 1966
            EVP_CIPHER_CTX_buf_noconst(c)[arg - 2] = len >> 8;
            EVP_CIPHER_CTX_buf_noconst(c)[arg - 1] = len & 0xff;
D
Dr. Stephen Henson 已提交
1967 1968 1969 1970 1971 1972 1973 1974 1975
        }
        /* Extra padding: tag appended to record */
        return cctx->M;

    case EVP_CTRL_CCM_SET_IV_FIXED:
        /* Sanity check length */
        if (arg != EVP_CCM_TLS_FIXED_IV_LEN)
            return 0;
        /* Just copy to first part of IV */
1976
        memcpy(EVP_CIPHER_CTX_iv_noconst(c), ptr, arg);
1977 1978
        return 1;

1979
    case EVP_CTRL_AEAD_SET_IVLEN:
1980
        arg = 15 - arg;
B
Bernd Edlinger 已提交
1981
        /* fall thru */
1982 1983 1984 1985 1986 1987
    case EVP_CTRL_CCM_SET_L:
        if (arg < 2 || arg > 8)
            return 0;
        cctx->L = arg;
        return 1;

1988
    case EVP_CTRL_AEAD_SET_TAG:
1989 1990
        if ((arg & 1) || arg < 4 || arg > 16)
            return 0;
1991
        if (EVP_CIPHER_CTX_encrypting(c) && ptr)
1992 1993 1994
            return 0;
        if (ptr) {
            cctx->tag_set = 1;
1995
            memcpy(EVP_CIPHER_CTX_buf_noconst(c), ptr, arg);
1996 1997 1998 1999
        }
        cctx->M = arg;
        return 1;

2000
    case EVP_CTRL_AEAD_GET_TAG:
2001
        if (!EVP_CIPHER_CTX_encrypting(c) || !cctx->tag_set)
2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012
            return 0;
        if (!CRYPTO_ccm128_tag(&cctx->ccm, ptr, (size_t)arg))
            return 0;
        cctx->tag_set = 0;
        cctx->iv_set = 0;
        cctx->len_set = 0;
        return 1;

    case EVP_CTRL_COPY:
        {
            EVP_CIPHER_CTX *out = ptr;
2013
            EVP_AES_CCM_CTX *cctx_out = EVP_C_DATA(EVP_AES_CCM_CTX,out);
2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026
            if (cctx->ccm.key) {
                if (cctx->ccm.key != &cctx->ks)
                    return 0;
                cctx_out->ccm.key = &cctx_out->ks;
            }
            return 1;
        }

    default:
        return -1;

    }
}
2027 2028

static int aes_ccm_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
2029 2030
                            const unsigned char *iv, int enc)
{
2031
    EVP_AES_CCM_CTX *cctx = EVP_C_DATA(EVP_AES_CCM_CTX,ctx);
2032 2033 2034 2035
    if (!iv && !key)
        return 1;
    if (key)
        do {
M
Matt Caswell 已提交
2036
#ifdef HWAES_CAPABLE
2037
            if (HWAES_CAPABLE) {
2038 2039
                HWAES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &cctx->ks.ks);
2040 2041 2042 2043 2044 2045 2046

                CRYPTO_ccm128_init(&cctx->ccm, cctx->M, cctx->L,
                                   &cctx->ks, (block128_f) HWAES_encrypt);
                cctx->str = NULL;
                cctx->key_set = 1;
                break;
            } else
M
Matt Caswell 已提交
2047 2048
#endif
#ifdef VPAES_CAPABLE
2049
            if (VPAES_CAPABLE) {
2050 2051
                vpaes_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &cctx->ks.ks);
2052 2053 2054 2055 2056 2057
                CRYPTO_ccm128_init(&cctx->ccm, cctx->M, cctx->L,
                                   &cctx->ks, (block128_f) vpaes_encrypt);
                cctx->str = NULL;
                cctx->key_set = 1;
                break;
            }
M
Matt Caswell 已提交
2058
#endif
2059 2060
            AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                &cctx->ks.ks);
2061 2062 2063 2064 2065 2066
            CRYPTO_ccm128_init(&cctx->ccm, cctx->M, cctx->L,
                               &cctx->ks, (block128_f) AES_encrypt);
            cctx->str = NULL;
            cctx->key_set = 1;
        } while (0);
    if (iv) {
2067
        memcpy(EVP_CIPHER_CTX_iv_noconst(ctx), iv, 15 - cctx->L);
2068 2069 2070 2071
        cctx->iv_set = 1;
    }
    return 1;
}
2072

D
Dr. Stephen Henson 已提交
2073 2074 2075
static int aes_ccm_tls_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                              const unsigned char *in, size_t len)
{
2076
    EVP_AES_CCM_CTX *cctx = EVP_C_DATA(EVP_AES_CCM_CTX,ctx);
D
Dr. Stephen Henson 已提交
2077 2078 2079 2080 2081
    CCM128_CONTEXT *ccm = &cctx->ccm;
    /* Encrypt/decrypt must be performed in place */
    if (out != in || len < (EVP_CCM_TLS_EXPLICIT_IV_LEN + (size_t)cctx->M))
        return -1;
    /* If encrypting set explicit IV from sequence number (start of AAD) */
2082 2083 2084
    if (EVP_CIPHER_CTX_encrypting(ctx))
        memcpy(out, EVP_CIPHER_CTX_buf_noconst(ctx),
               EVP_CCM_TLS_EXPLICIT_IV_LEN);
D
Dr. Stephen Henson 已提交
2085
    /* Get rest of IV from explicit IV */
2086 2087
    memcpy(EVP_CIPHER_CTX_iv_noconst(ctx) + EVP_CCM_TLS_FIXED_IV_LEN, in,
           EVP_CCM_TLS_EXPLICIT_IV_LEN);
D
Dr. Stephen Henson 已提交
2088 2089
    /* Correct length value */
    len -= EVP_CCM_TLS_EXPLICIT_IV_LEN + cctx->M;
2090 2091
    if (CRYPTO_ccm128_setiv(ccm, EVP_CIPHER_CTX_iv_noconst(ctx), 15 - cctx->L,
                            len))
D
Dr. Stephen Henson 已提交
2092 2093
            return -1;
    /* Use saved AAD */
2094
    CRYPTO_ccm128_aad(ccm, EVP_CIPHER_CTX_buf_noconst(ctx), cctx->tls_aad_len);
D
Dr. Stephen Henson 已提交
2095 2096 2097
    /* Fix buffer to point to payload */
    in += EVP_CCM_TLS_EXPLICIT_IV_LEN;
    out += EVP_CCM_TLS_EXPLICIT_IV_LEN;
2098
    if (EVP_CIPHER_CTX_encrypting(ctx)) {
D
Dr. Stephen Henson 已提交
2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112 2113 2114 2115 2116 2117 2118 2119 2120
        if (cctx->str ? CRYPTO_ccm128_encrypt_ccm64(ccm, in, out, len,
                                                    cctx->str) :
            CRYPTO_ccm128_encrypt(ccm, in, out, len))
            return -1;
        if (!CRYPTO_ccm128_tag(ccm, out + len, cctx->M))
            return -1;
        return len + EVP_CCM_TLS_EXPLICIT_IV_LEN + cctx->M;
    } else {
        if (cctx->str ? !CRYPTO_ccm128_decrypt_ccm64(ccm, in, out, len,
                                                     cctx->str) :
            !CRYPTO_ccm128_decrypt(ccm, in, out, len)) {
            unsigned char tag[16];
            if (CRYPTO_ccm128_tag(ccm, tag, cctx->M)) {
                if (!CRYPTO_memcmp(tag, in + len, cctx->M))
                    return len;
            }
        }
        OPENSSL_cleanse(out, len);
        return -1;
    }
}

2121
static int aes_ccm_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
2122 2123
                          const unsigned char *in, size_t len)
{
2124
    EVP_AES_CCM_CTX *cctx = EVP_C_DATA(EVP_AES_CCM_CTX,ctx);
2125 2126
    CCM128_CONTEXT *ccm = &cctx->ccm;
    /* If not set up, return error */
D
Dr. Stephen Henson 已提交
2127 2128 2129 2130 2131 2132
    if (!cctx->key_set)
        return -1;

    if (cctx->tls_aad_len >= 0)
        return aes_ccm_tls_cipher(ctx, out, in, len);

2133 2134 2135 2136
    /* EVP_*Final() doesn't return any data */
    if (in == NULL && out != NULL)
        return 0;

D
Dr. Stephen Henson 已提交
2137
    if (!cctx->iv_set)
2138
        return -1;
D
Dr. Stephen Henson 已提交
2139

2140
    if (!EVP_CIPHER_CTX_encrypting(ctx) && !cctx->tag_set)
2141 2142 2143
        return -1;
    if (!out) {
        if (!in) {
2144 2145
            if (CRYPTO_ccm128_setiv(ccm, EVP_CIPHER_CTX_iv_noconst(ctx),
                                    15 - cctx->L, len))
2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157
                return -1;
            cctx->len_set = 1;
            return len;
        }
        /* If have AAD need message length */
        if (!cctx->len_set && len)
            return -1;
        CRYPTO_ccm128_aad(ccm, in, len);
        return len;
    }
    /* If not set length yet do it */
    if (!cctx->len_set) {
2158 2159
        if (CRYPTO_ccm128_setiv(ccm, EVP_CIPHER_CTX_iv_noconst(ctx),
                                15 - cctx->L, len))
2160 2161 2162
            return -1;
        cctx->len_set = 1;
    }
2163
    if (EVP_CIPHER_CTX_encrypting(ctx)) {
2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176
        if (cctx->str ? CRYPTO_ccm128_encrypt_ccm64(ccm, in, out, len,
                                                    cctx->str) :
            CRYPTO_ccm128_encrypt(ccm, in, out, len))
            return -1;
        cctx->tag_set = 1;
        return len;
    } else {
        int rv = -1;
        if (cctx->str ? !CRYPTO_ccm128_decrypt_ccm64(ccm, in, out, len,
                                                     cctx->str) :
            !CRYPTO_ccm128_decrypt(ccm, in, out, len)) {
            unsigned char tag[16];
            if (CRYPTO_ccm128_tag(ccm, tag, cctx->M)) {
2177 2178
                if (!CRYPTO_memcmp(tag, EVP_CIPHER_CTX_buf_noconst(ctx),
                                   cctx->M))
2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190
                    rv = len;
            }
        }
        if (rv == -1)
            OPENSSL_cleanse(out, len);
        cctx->iv_set = 0;
        cctx->tag_set = 0;
        cctx->len_set = 0;
        return rv;
    }
}

M
Matt Caswell 已提交
2191
#define aes_ccm_cleanup NULL
2192

D
Dr. Stephen Henson 已提交
2193 2194 2195 2196 2197 2198
BLOCK_CIPHER_custom(NID_aes, 128, 1, 12, ccm, CCM,
                    EVP_CIPH_FLAG_AEAD_CIPHER | CUSTOM_FLAGS)
    BLOCK_CIPHER_custom(NID_aes, 192, 1, 12, ccm, CCM,
                        EVP_CIPH_FLAG_AEAD_CIPHER | CUSTOM_FLAGS)
    BLOCK_CIPHER_custom(NID_aes, 256, 1, 12, ccm, CCM,
                        EVP_CIPH_FLAG_AEAD_CIPHER | CUSTOM_FLAGS)
2199 2200 2201 2202 2203 2204 2205 2206 2207

typedef struct {
    union {
        double align;
        AES_KEY ks;
    } ks;
    /* Indicates if IV has been set */
    unsigned char *iv;
} EVP_AES_WRAP_CTX;
2208 2209

static int aes_wrap_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
2210 2211
                             const unsigned char *iv, int enc)
{
2212
    EVP_AES_WRAP_CTX *wctx = EVP_C_DATA(EVP_AES_WRAP_CTX,ctx);
2213 2214 2215
    if (!iv && !key)
        return 1;
    if (key) {
2216 2217 2218
        if (EVP_CIPHER_CTX_encrypting(ctx))
            AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                &wctx->ks.ks);
2219
        else
2220 2221
            AES_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                &wctx->ks.ks);
2222 2223 2224 2225
        if (!iv)
            wctx->iv = NULL;
    }
    if (iv) {
2226 2227
        memcpy(EVP_CIPHER_CTX_iv_noconst(ctx), iv, EVP_CIPHER_CTX_iv_length(ctx));
        wctx->iv = EVP_CIPHER_CTX_iv_noconst(ctx);
2228 2229 2230
    }
    return 1;
}
2231 2232

static int aes_wrap_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
2233 2234
                           const unsigned char *in, size_t inlen)
{
2235
    EVP_AES_WRAP_CTX *wctx = EVP_C_DATA(EVP_AES_WRAP_CTX,ctx);
2236 2237 2238 2239 2240 2241 2242 2243 2244 2245
    size_t rv;
    /* AES wrap with padding has IV length of 4, without padding 8 */
    int pad = EVP_CIPHER_CTX_iv_length(ctx) == 4;
    /* No final operation so always return zero length */
    if (!in)
        return 0;
    /* Input length must always be non-zero */
    if (!inlen)
        return -1;
    /* If decrypting need at least 16 bytes and multiple of 8 */
2246
    if (!EVP_CIPHER_CTX_encrypting(ctx) && (inlen < 16 || inlen & 0x7))
2247 2248 2249 2250
        return -1;
    /* If not padding input must be multiple of 8 */
    if (!pad && inlen & 0x7)
        return -1;
2251 2252 2253 2254
    if (is_partially_overlapping(out, in, inlen)) {
        EVPerr(EVP_F_AES_WRAP_CIPHER, EVP_R_PARTIALLY_OVERLAPPING);
        return 0;
    }
2255
    if (!out) {
2256
        if (EVP_CIPHER_CTX_encrypting(ctx)) {
2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271
            /* If padding round up to multiple of 8 */
            if (pad)
                inlen = (inlen + 7) / 8 * 8;
            /* 8 byte prefix */
            return inlen + 8;
        } else {
            /*
             * If not padding output will be exactly 8 bytes smaller than
             * input. If padding it will be at least 8 bytes smaller but we
             * don't know how much.
             */
            return inlen - 8;
        }
    }
    if (pad) {
2272
        if (EVP_CIPHER_CTX_encrypting(ctx))
2273 2274 2275 2276 2277 2278 2279 2280
            rv = CRYPTO_128_wrap_pad(&wctx->ks.ks, wctx->iv,
                                     out, in, inlen,
                                     (block128_f) AES_encrypt);
        else
            rv = CRYPTO_128_unwrap_pad(&wctx->ks.ks, wctx->iv,
                                       out, in, inlen,
                                       (block128_f) AES_decrypt);
    } else {
2281
        if (EVP_CIPHER_CTX_encrypting(ctx))
2282 2283 2284 2285 2286 2287 2288 2289 2290
            rv = CRYPTO_128_wrap(&wctx->ks.ks, wctx->iv,
                                 out, in, inlen, (block128_f) AES_encrypt);
        else
            rv = CRYPTO_128_unwrap(&wctx->ks.ks, wctx->iv,
                                   out, in, inlen, (block128_f) AES_decrypt);
    }
    return rv ? (int)rv : -1;
}

M
Matt Caswell 已提交
2291
#define WRAP_FLAGS      (EVP_CIPH_WRAP_MODE \
2292 2293
                | EVP_CIPH_CUSTOM_IV | EVP_CIPH_FLAG_CUSTOM_CIPHER \
                | EVP_CIPH_ALWAYS_CALL_INIT | EVP_CIPH_FLAG_DEFAULT_ASN1)
2294 2295

static const EVP_CIPHER aes_128_wrap = {
2296 2297 2298 2299 2300 2301 2302
    NID_id_aes128_wrap,
    8, 16, 8, WRAP_FLAGS,
    aes_wrap_init_key, aes_wrap_cipher,
    NULL,
    sizeof(EVP_AES_WRAP_CTX),
    NULL, NULL, NULL, NULL
};
2303 2304

const EVP_CIPHER *EVP_aes_128_wrap(void)
2305 2306 2307
{
    return &aes_128_wrap;
}
2308 2309

static const EVP_CIPHER aes_192_wrap = {
2310 2311 2312 2313 2314 2315 2316
    NID_id_aes192_wrap,
    8, 24, 8, WRAP_FLAGS,
    aes_wrap_init_key, aes_wrap_cipher,
    NULL,
    sizeof(EVP_AES_WRAP_CTX),
    NULL, NULL, NULL, NULL
};
2317 2318

const EVP_CIPHER *EVP_aes_192_wrap(void)
2319 2320 2321
{
    return &aes_192_wrap;
}
2322 2323

static const EVP_CIPHER aes_256_wrap = {
2324 2325 2326 2327 2328 2329 2330
    NID_id_aes256_wrap,
    8, 32, 8, WRAP_FLAGS,
    aes_wrap_init_key, aes_wrap_cipher,
    NULL,
    sizeof(EVP_AES_WRAP_CTX),
    NULL, NULL, NULL, NULL
};
2331 2332

const EVP_CIPHER *EVP_aes_256_wrap(void)
2333 2334 2335
{
    return &aes_256_wrap;
}
2336

D
Dr. Stephen Henson 已提交
2337
static const EVP_CIPHER aes_128_wrap_pad = {
2338 2339 2340 2341 2342 2343 2344
    NID_id_aes128_wrap_pad,
    8, 16, 4, WRAP_FLAGS,
    aes_wrap_init_key, aes_wrap_cipher,
    NULL,
    sizeof(EVP_AES_WRAP_CTX),
    NULL, NULL, NULL, NULL
};
D
Dr. Stephen Henson 已提交
2345 2346

const EVP_CIPHER *EVP_aes_128_wrap_pad(void)
2347 2348 2349
{
    return &aes_128_wrap_pad;
}
D
Dr. Stephen Henson 已提交
2350 2351

static const EVP_CIPHER aes_192_wrap_pad = {
2352 2353 2354 2355 2356 2357 2358
    NID_id_aes192_wrap_pad,
    8, 24, 4, WRAP_FLAGS,
    aes_wrap_init_key, aes_wrap_cipher,
    NULL,
    sizeof(EVP_AES_WRAP_CTX),
    NULL, NULL, NULL, NULL
};
D
Dr. Stephen Henson 已提交
2359 2360

const EVP_CIPHER *EVP_aes_192_wrap_pad(void)
2361 2362 2363
{
    return &aes_192_wrap_pad;
}
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Dr. Stephen Henson 已提交
2364 2365

static const EVP_CIPHER aes_256_wrap_pad = {
2366 2367 2368 2369 2370 2371 2372
    NID_id_aes256_wrap_pad,
    8, 32, 4, WRAP_FLAGS,
    aes_wrap_init_key, aes_wrap_cipher,
    NULL,
    sizeof(EVP_AES_WRAP_CTX),
    NULL, NULL, NULL, NULL
};
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Dr. Stephen Henson 已提交
2373 2374

const EVP_CIPHER *EVP_aes_256_wrap_pad(void)
2375 2376 2377
{
    return &aes_256_wrap_pad;
}
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Dr. Stephen Henson 已提交
2378

M
Matt Caswell 已提交
2379
#ifndef OPENSSL_NO_OCB
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static int aes_ocb_ctrl(EVP_CIPHER_CTX *c, int type, int arg, void *ptr)
2381
{
2382
    EVP_AES_OCB_CTX *octx = EVP_C_DATA(EVP_AES_OCB_CTX,c);
2383 2384 2385 2386 2387 2388 2389
    EVP_CIPHER_CTX *newc;
    EVP_AES_OCB_CTX *new_octx;

    switch (type) {
    case EVP_CTRL_INIT:
        octx->key_set = 0;
        octx->iv_set = 0;
2390 2391
        octx->ivlen = EVP_CIPHER_CTX_iv_length(c);
        octx->iv = EVP_CIPHER_CTX_iv_noconst(c);
2392 2393 2394 2395 2396
        octx->taglen = 16;
        octx->data_buf_len = 0;
        octx->aad_buf_len = 0;
        return 1;

2397
    case EVP_CTRL_AEAD_SET_IVLEN:
2398 2399 2400 2401 2402 2403 2404
        /* IV len must be 1 to 15 */
        if (arg <= 0 || arg > 15)
            return 0;

        octx->ivlen = arg;
        return 1;

2405
    case EVP_CTRL_AEAD_SET_TAG:
2406 2407 2408 2409 2410 2411 2412 2413
        if (!ptr) {
            /* Tag len must be 0 to 16 */
            if (arg < 0 || arg > 16)
                return 0;

            octx->taglen = arg;
            return 1;
        }
2414
        if (arg != octx->taglen || EVP_CIPHER_CTX_encrypting(c))
2415 2416 2417 2418
            return 0;
        memcpy(octx->tag, ptr, arg);
        return 1;

2419
    case EVP_CTRL_AEAD_GET_TAG:
2420
        if (arg != octx->taglen || !EVP_CIPHER_CTX_encrypting(c))
2421 2422 2423 2424 2425 2426 2427
            return 0;

        memcpy(ptr, octx->tag, arg);
        return 1;

    case EVP_CTRL_COPY:
        newc = (EVP_CIPHER_CTX *)ptr;
2428
        new_octx = EVP_C_DATA(EVP_AES_OCB_CTX,newc);
2429
        return CRYPTO_ocb128_copy_ctx(&new_octx->ocb, &octx->ocb,
2430 2431
                                      &new_octx->ksenc.ks,
                                      &new_octx->ksdec.ks);
2432 2433 2434 2435 2436 2437

    default:
        return -1;

    }
}
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Matt Caswell 已提交
2438

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2439 2440
# ifdef HWAES_CAPABLE
#  ifdef HWAES_ocb_encrypt
2441 2442 2443 2444 2445 2446
void HWAES_ocb_encrypt(const unsigned char *in, unsigned char *out,
                       size_t blocks, const void *key,
                       size_t start_block_num,
                       unsigned char offset_i[16],
                       const unsigned char L_[][16],
                       unsigned char checksum[16]);
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Matt Caswell 已提交
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#  else
2448
#    define HWAES_ocb_encrypt ((ocb128_f)NULL)
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2449 2450
#  endif
#  ifdef HWAES_ocb_decrypt
2451 2452 2453 2454 2455 2456
void HWAES_ocb_decrypt(const unsigned char *in, unsigned char *out,
                       size_t blocks, const void *key,
                       size_t start_block_num,
                       unsigned char offset_i[16],
                       const unsigned char L_[][16],
                       unsigned char checksum[16]);
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Matt Caswell 已提交
2457
#  else
2458
#    define HWAES_ocb_decrypt ((ocb128_f)NULL)
2459
#  endif
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2460
# endif
2461

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2462
static int aes_ocb_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
2463 2464
                            const unsigned char *iv, int enc)
{
2465
    EVP_AES_OCB_CTX *octx = EVP_C_DATA(EVP_AES_OCB_CTX,ctx);
2466 2467 2468 2469 2470 2471 2472 2473 2474
    if (!iv && !key)
        return 1;
    if (key) {
        do {
            /*
             * We set both the encrypt and decrypt key here because decrypt
             * needs both. We could possibly optimise to remove setting the
             * decrypt for an encryption operation.
             */
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# ifdef HWAES_CAPABLE
2476
            if (HWAES_CAPABLE) {
2477 2478 2479 2480
                HWAES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &octx->ksenc.ks);
                HWAES_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &octx->ksdec.ks);
2481 2482 2483 2484 2485 2486 2487 2488 2489
                if (!CRYPTO_ocb128_init(&octx->ocb,
                                        &octx->ksenc.ks, &octx->ksdec.ks,
                                        (block128_f) HWAES_encrypt,
                                        (block128_f) HWAES_decrypt,
                                        enc ? HWAES_ocb_encrypt
                                            : HWAES_ocb_decrypt))
                    return 0;
                break;
            }
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2490 2491
# endif
# ifdef VPAES_CAPABLE
2492
            if (VPAES_CAPABLE) {
2493 2494 2495 2496
                vpaes_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &octx->ksenc.ks);
                vpaes_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &octx->ksdec.ks);
2497 2498 2499
                if (!CRYPTO_ocb128_init(&octx->ocb,
                                        &octx->ksenc.ks, &octx->ksdec.ks,
                                        (block128_f) vpaes_encrypt,
2500 2501
                                        (block128_f) vpaes_decrypt,
                                        NULL))
2502 2503 2504
                    return 0;
                break;
            }
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2505
# endif
2506 2507 2508 2509
            AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                &octx->ksenc.ks);
            AES_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                &octx->ksdec.ks);
2510 2511
            if (!CRYPTO_ocb128_init(&octx->ocb,
                                    &octx->ksenc.ks, &octx->ksdec.ks,
2512
                                    (block128_f) AES_encrypt,
2513 2514
                                    (block128_f) AES_decrypt,
                                    NULL))
2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540
                return 0;
        }
        while (0);

        /*
         * If we have an iv we can set it directly, otherwise use saved IV.
         */
        if (iv == NULL && octx->iv_set)
            iv = octx->iv;
        if (iv) {
            if (CRYPTO_ocb128_setiv(&octx->ocb, iv, octx->ivlen, octx->taglen)
                != 1)
                return 0;
            octx->iv_set = 1;
        }
        octx->key_set = 1;
    } else {
        /* If key set use IV, otherwise copy */
        if (octx->key_set)
            CRYPTO_ocb128_setiv(&octx->ocb, iv, octx->ivlen, octx->taglen);
        else
            memcpy(octx->iv, iv, octx->ivlen);
        octx->iv_set = 1;
    }
    return 1;
}
M
Matt Caswell 已提交
2541 2542

static int aes_ocb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
2543 2544 2545 2546 2547 2548
                          const unsigned char *in, size_t len)
{
    unsigned char *buf;
    int *buf_len;
    int written_len = 0;
    size_t trailing_len;
2549
    EVP_AES_OCB_CTX *octx = EVP_C_DATA(EVP_AES_OCB_CTX,ctx);
2550 2551 2552 2553 2554 2555 2556 2557

    /* If IV or Key not set then return error */
    if (!octx->iv_set)
        return -1;

    if (!octx->key_set)
        return -1;

2558
    if (in != NULL) {
2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572
        /*
         * Need to ensure we are only passing full blocks to low level OCB
         * routines. We do it here rather than in EVP_EncryptUpdate/
         * EVP_DecryptUpdate because we need to pass full blocks of AAD too
         * and those routines don't support that
         */

        /* Are we dealing with AAD or normal data here? */
        if (out == NULL) {
            buf = octx->aad_buf;
            buf_len = &(octx->aad_buf_len);
        } else {
            buf = octx->data_buf;
            buf_len = &(octx->data_buf_len);
2573 2574 2575 2576 2577

            if (is_partially_overlapping(out + *buf_len, in, len)) {
                EVPerr(EVP_F_AES_OCB_CIPHER, EVP_R_PARTIALLY_OVERLAPPING);
                return 0;
            }
2578 2579 2580 2581 2582 2583
        }

        /*
         * If we've got a partially filled buffer from a previous call then
         * use that data first
         */
2584
        if (*buf_len > 0) {
2585 2586
            unsigned int remaining;

2587
            remaining = AES_BLOCK_SIZE - (*buf_len);
2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600
            if (remaining > len) {
                memcpy(buf + (*buf_len), in, len);
                *(buf_len) += len;
                return 0;
            }
            memcpy(buf + (*buf_len), in, remaining);

            /*
             * If we get here we've filled the buffer, so process it
             */
            len -= remaining;
            in += remaining;
            if (out == NULL) {
2601
                if (!CRYPTO_ocb128_aad(&octx->ocb, buf, AES_BLOCK_SIZE))
2602
                    return -1;
2603
            } else if (EVP_CIPHER_CTX_encrypting(ctx)) {
2604 2605
                if (!CRYPTO_ocb128_encrypt(&octx->ocb, buf, out,
                                           AES_BLOCK_SIZE))
2606 2607
                    return -1;
            } else {
2608 2609
                if (!CRYPTO_ocb128_decrypt(&octx->ocb, buf, out,
                                           AES_BLOCK_SIZE))
2610 2611
                    return -1;
            }
2612
            written_len = AES_BLOCK_SIZE;
2613
            *buf_len = 0;
2614 2615
            if (out != NULL)
                out += AES_BLOCK_SIZE;
2616 2617 2618
        }

        /* Do we have a partial block to handle at the end? */
2619
        trailing_len = len % AES_BLOCK_SIZE;
2620 2621 2622 2623 2624 2625 2626 2627

        /*
         * If we've got some full blocks to handle, then process these first
         */
        if (len != trailing_len) {
            if (out == NULL) {
                if (!CRYPTO_ocb128_aad(&octx->ocb, in, len - trailing_len))
                    return -1;
2628
            } else if (EVP_CIPHER_CTX_encrypting(ctx)) {
2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639 2640 2641
                if (!CRYPTO_ocb128_encrypt
                    (&octx->ocb, in, out, len - trailing_len))
                    return -1;
            } else {
                if (!CRYPTO_ocb128_decrypt
                    (&octx->ocb, in, out, len - trailing_len))
                    return -1;
            }
            written_len += len - trailing_len;
            in += len - trailing_len;
        }

        /* Handle any trailing partial block */
2642
        if (trailing_len > 0) {
2643 2644 2645 2646 2647 2648 2649 2650 2651 2652
            memcpy(buf, in, trailing_len);
            *buf_len = trailing_len;
        }

        return written_len;
    } else {
        /*
         * First of all empty the buffer of any partial block that we might
         * have been provided - both for data and AAD
         */
2653
        if (octx->data_buf_len > 0) {
2654
            if (EVP_CIPHER_CTX_encrypting(ctx)) {
2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665
                if (!CRYPTO_ocb128_encrypt(&octx->ocb, octx->data_buf, out,
                                           octx->data_buf_len))
                    return -1;
            } else {
                if (!CRYPTO_ocb128_decrypt(&octx->ocb, octx->data_buf, out,
                                           octx->data_buf_len))
                    return -1;
            }
            written_len = octx->data_buf_len;
            octx->data_buf_len = 0;
        }
2666
        if (octx->aad_buf_len > 0) {
2667 2668 2669 2670 2671 2672
            if (!CRYPTO_ocb128_aad
                (&octx->ocb, octx->aad_buf, octx->aad_buf_len))
                return -1;
            octx->aad_buf_len = 0;
        }
        /* If decrypting then verify */
2673
        if (!EVP_CIPHER_CTX_encrypting(ctx)) {
2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689
            if (octx->taglen < 0)
                return -1;
            if (CRYPTO_ocb128_finish(&octx->ocb,
                                     octx->tag, octx->taglen) != 0)
                return -1;
            octx->iv_set = 0;
            return written_len;
        }
        /* If encrypting then just get the tag */
        if (CRYPTO_ocb128_tag(&octx->ocb, octx->tag, 16) != 1)
            return -1;
        /* Don't reuse the IV */
        octx->iv_set = 0;
        return written_len;
    }
}
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Matt Caswell 已提交
2690 2691

static int aes_ocb_cleanup(EVP_CIPHER_CTX *c)
2692
{
2693
    EVP_AES_OCB_CTX *octx = EVP_C_DATA(EVP_AES_OCB_CTX,c);
2694 2695 2696
    CRYPTO_ocb128_cleanup(&octx->ocb);
    return 1;
}
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2697

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2698 2699 2700 2701 2702 2703
BLOCK_CIPHER_custom(NID_aes, 128, 16, 12, ocb, OCB,
                    EVP_CIPH_FLAG_AEAD_CIPHER | CUSTOM_FLAGS)
BLOCK_CIPHER_custom(NID_aes, 192, 16, 12, ocb, OCB,
                    EVP_CIPH_FLAG_AEAD_CIPHER | CUSTOM_FLAGS)
BLOCK_CIPHER_custom(NID_aes, 256, 16, 12, ocb, OCB,
                    EVP_CIPH_FLAG_AEAD_CIPHER | CUSTOM_FLAGS)
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2704
#endif                         /* OPENSSL_NO_OCB */