e_aes.c 140.1 KB
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/*
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 * Copyright 2001-2018 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 }; \
A
Andy Polyakov 已提交
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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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#elif defined(OPENSSL_CPUID_OBJ) && defined(__s390__)
/*
 * IBM S390X support
 */
# include "s390x_arch.h"

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typedef struct {
    union {
        double align;
        /*-
         * KM-AES parameter block - begin
         * (see z/Architecture Principles of Operation >= SA22-7832-06)
         */
        struct {
            unsigned char k[32];
        } param;
        /* KM-AES parameter block - end */
    } km;
    unsigned int fc;
} S390X_AES_ECB_CTX;

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typedef struct {
    union {
        double align;
        /*-
         * KMO-AES parameter block - begin
         * (see z/Architecture Principles of Operation >= SA22-7832-08)
         */
        struct {
            unsigned char cv[16];
            unsigned char k[32];
        } param;
        /* KMO-AES parameter block - end */
    } kmo;
    unsigned int fc;

    int res;
} S390X_AES_OFB_CTX;

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typedef struct {
    union {
        double align;
        /*-
         * KMF-AES parameter block - begin
         * (see z/Architecture Principles of Operation >= SA22-7832-08)
         */
        struct {
            unsigned char cv[16];
            unsigned char k[32];
        } param;
        /* KMF-AES parameter block - end */
    } kmf;
    unsigned int fc;

    int res;
} S390X_AES_CFB_CTX;

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typedef struct {
    union {
        double align;
        /*-
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         * KMA-GCM-AES parameter block - begin
         * (see z/Architecture Principles of Operation >= SA22-7832-11)
1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035
         */
        struct {
            unsigned char reserved[12];
            union {
                unsigned int w;
                unsigned char b[4];
            } cv;
            union {
                unsigned long long g[2];
                unsigned char b[16];
            } t;
            unsigned char h[16];
            unsigned long long taadl;
            unsigned long long tpcl;
            union {
                unsigned long long g[2];
                unsigned int w[4];
            } j0;
            unsigned char k[32];
        } param;
1036
        /* KMA-GCM-AES parameter block - end */
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    } kma;
    unsigned int fc;
    int key_set;

    unsigned char *iv;
    int ivlen;
    int iv_set;
    int iv_gen;

    int taglen;

    unsigned char ares[16];
    unsigned char mres[16];
    unsigned char kres[16];
    int areslen;
    int mreslen;
    int kreslen;

    int tls_aad_len;
} S390X_AES_GCM_CTX;

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typedef struct {
    union {
        double align;
        /*-
         * Padding is chosen so that ccm.kmac_param.k overlaps with key.k and
         * ccm.fc with key.k.rounds. Remember that on s390x, an AES_KEY's
         * rounds field is used to store the function code and that the key
         * schedule is not stored (if aes hardware support is detected).
         */
        struct {
            unsigned char pad[16];
            AES_KEY k;
        } key;

        struct {
            /*-
             * KMAC-AES parameter block - begin
             * (see z/Architecture Principles of Operation >= SA22-7832-08)
             */
            struct {
                union {
                    unsigned long long g[2];
                    unsigned char b[16];
                } icv;
                unsigned char k[32];
            } kmac_param;
            /* KMAC-AES paramater block - end */

            union {
                unsigned long long g[2];
                unsigned char b[16];
            } nonce;
            union {
                unsigned long long g[2];
                unsigned char b[16];
            } buf;

            unsigned long long blocks;
            int l;
            int m;
            int tls_aad_len;
            int iv_set;
            int tag_set;
            int len_set;
            int key_set;

            unsigned char pad[140];
            unsigned int fc;
        } ccm;
    } aes;
} S390X_AES_CCM_CTX;

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/* Convert key size to function code: [16,24,32] -> [18,19,20]. */
# define S390X_AES_FC(keylen)  (S390X_AES_128 + ((((keylen) << 3) - 128) >> 6))

/* Most modes of operation need km for partial block processing. */
# define S390X_aes_128_CAPABLE (OPENSSL_s390xcap_P.km[0] &	\
                                S390X_CAPBIT(S390X_AES_128))
# define S390X_aes_192_CAPABLE (OPENSSL_s390xcap_P.km[0] &	\
                                S390X_CAPBIT(S390X_AES_192))
# define S390X_aes_256_CAPABLE (OPENSSL_s390xcap_P.km[0] &	\
                                S390X_CAPBIT(S390X_AES_256))
1120 1121 1122 1123 1124 1125 1126 1127

# define s390x_aes_init_key aes_init_key
static int s390x_aes_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
                              const unsigned char *iv, int enc);

# define S390X_aes_128_cbc_CAPABLE	1	/* checked by callee */
# define S390X_aes_192_cbc_CAPABLE	1
# define S390X_aes_256_cbc_CAPABLE	1
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# define S390X_AES_CBC_CTX		EVP_AES_KEY

# define s390x_aes_cbc_init_key aes_init_key
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# define s390x_aes_cbc_cipher aes_cbc_cipher
static int s390x_aes_cbc_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                                const unsigned char *in, size_t len);

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# define S390X_aes_128_ecb_CAPABLE	S390X_aes_128_CAPABLE
# define S390X_aes_192_ecb_CAPABLE	S390X_aes_192_CAPABLE
# define S390X_aes_256_ecb_CAPABLE	S390X_aes_256_CAPABLE

static int s390x_aes_ecb_init_key(EVP_CIPHER_CTX *ctx,
                                  const unsigned char *key,
                                  const unsigned char *iv, int enc)
{
    S390X_AES_ECB_CTX *cctx = EVP_C_DATA(S390X_AES_ECB_CTX, ctx);
    const int keylen = EVP_CIPHER_CTX_key_length(ctx);

    cctx->fc = S390X_AES_FC(keylen);
    if (!enc)
        cctx->fc |= S390X_DECRYPT;

    memcpy(cctx->km.param.k, key, keylen);
    return 1;
}
1154 1155

static int s390x_aes_ecb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
1156 1157 1158 1159 1160 1161 1162
                                const unsigned char *in, size_t len)
{
    S390X_AES_ECB_CTX *cctx = EVP_C_DATA(S390X_AES_ECB_CTX, ctx);

    s390x_km(in, len, out, cctx->fc, &cctx->km.param);
    return 1;
}
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# define S390X_aes_128_ofb_CAPABLE (S390X_aes_128_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kmo[0] &	\
                                     S390X_CAPBIT(S390X_AES_128)))
# define S390X_aes_192_ofb_CAPABLE (S390X_aes_192_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kmo[0] &	\
                                     S390X_CAPBIT(S390X_AES_192)))
# define S390X_aes_256_ofb_CAPABLE (S390X_aes_256_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kmo[0] &	\
                                     S390X_CAPBIT(S390X_AES_256)))

static int s390x_aes_ofb_init_key(EVP_CIPHER_CTX *ctx,
                                  const unsigned char *key,
                                  const unsigned char *ivec, int enc)
{
    S390X_AES_OFB_CTX *cctx = EVP_C_DATA(S390X_AES_OFB_CTX, ctx);
    const unsigned char *iv = EVP_CIPHER_CTX_original_iv(ctx);
    const int keylen = EVP_CIPHER_CTX_key_length(ctx);
    const int ivlen = EVP_CIPHER_CTX_iv_length(ctx);
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    memcpy(cctx->kmo.param.cv, iv, ivlen);
    memcpy(cctx->kmo.param.k, key, keylen);
    cctx->fc = S390X_AES_FC(keylen);
    cctx->res = 0;
    return 1;
}
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static int s390x_aes_ofb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                                const unsigned char *in, size_t len)
{
    S390X_AES_OFB_CTX *cctx = EVP_C_DATA(S390X_AES_OFB_CTX, ctx);
    int n = cctx->res;
    int rem;

    while (n && len) {
        *out = *in ^ cctx->kmo.param.cv[n];
        n = (n + 1) & 0xf;
        --len;
        ++in;
        ++out;
    }

    rem = len & 0xf;

    len &= ~(size_t)0xf;
    if (len) {
        s390x_kmo(in, len, out, cctx->fc, &cctx->kmo.param);

        out += len;
        in += len;
    }

    if (rem) {
        s390x_km(cctx->kmo.param.cv, 16, cctx->kmo.param.cv, cctx->fc,
                 cctx->kmo.param.k);

        while (rem--) {
            out[n] = in[n] ^ cctx->kmo.param.cv[n];
            ++n;
        }
    }

    cctx->res = n;
    return 1;
}
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1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251
# define S390X_aes_128_cfb_CAPABLE (S390X_aes_128_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kmf[0] &	\
                                     S390X_CAPBIT(S390X_AES_128)))
# define S390X_aes_192_cfb_CAPABLE (S390X_aes_192_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kmf[0] &	\
                                     S390X_CAPBIT(S390X_AES_192)))
# define S390X_aes_256_cfb_CAPABLE (S390X_aes_256_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kmf[0] &	\
                                     S390X_CAPBIT(S390X_AES_256)))

static int s390x_aes_cfb_init_key(EVP_CIPHER_CTX *ctx,
                                  const unsigned char *key,
                                  const unsigned char *ivec, int enc)
{
    S390X_AES_CFB_CTX *cctx = EVP_C_DATA(S390X_AES_CFB_CTX, ctx);
    const unsigned char *iv = EVP_CIPHER_CTX_original_iv(ctx);
    const int keylen = EVP_CIPHER_CTX_key_length(ctx);
    const int ivlen = EVP_CIPHER_CTX_iv_length(ctx);

    cctx->fc = S390X_AES_FC(keylen);
    cctx->fc |= 16 << 24;   /* 16 bytes cipher feedback */
    if (!enc)
        cctx->fc |= S390X_DECRYPT;
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    cctx->res = 0;
    memcpy(cctx->kmf.param.cv, iv, ivlen);
    memcpy(cctx->kmf.param.k, key, keylen);
    return 1;
}
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static int s390x_aes_cfb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
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                                const unsigned char *in, size_t len)
{
    S390X_AES_CFB_CTX *cctx = EVP_C_DATA(S390X_AES_CFB_CTX, ctx);
    const int keylen = EVP_CIPHER_CTX_key_length(ctx);
    const int enc = EVP_CIPHER_CTX_encrypting(ctx);
    int n = cctx->res;
    int rem;
    unsigned char tmp;

    while (n && len) {
        tmp = *in;
        *out = cctx->kmf.param.cv[n] ^ tmp;
        cctx->kmf.param.cv[n] = enc ? *out : tmp;
        n = (n + 1) & 0xf;
        --len;
        ++in;
        ++out;
    }

    rem = len & 0xf;

    len &= ~(size_t)0xf;
    if (len) {
        s390x_kmf(in, len, out, cctx->fc, &cctx->kmf.param);

        out += len;
        in += len;
    }

    if (rem) {
        s390x_km(cctx->kmf.param.cv, 16, cctx->kmf.param.cv,
                 S390X_AES_FC(keylen), cctx->kmf.param.k);

        while (rem--) {
            tmp = in[n];
            out[n] = cctx->kmf.param.cv[n] ^ tmp;
            cctx->kmf.param.cv[n] = enc ? out[n] : tmp;
            ++n;
        }
    }
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    cctx->res = n;
    return 1;
}

# define S390X_aes_128_cfb8_CAPABLE (OPENSSL_s390xcap_P.kmf[0] &	\
                                     S390X_CAPBIT(S390X_AES_128))
# define S390X_aes_192_cfb8_CAPABLE (OPENSSL_s390xcap_P.kmf[0] &	\
                                     S390X_CAPBIT(S390X_AES_192))
# define S390X_aes_256_cfb8_CAPABLE (OPENSSL_s390xcap_P.kmf[0] &	\
                                     S390X_CAPBIT(S390X_AES_256))

static int s390x_aes_cfb8_init_key(EVP_CIPHER_CTX *ctx,
                                   const unsigned char *key,
                                   const unsigned char *ivec, int enc)
{
    S390X_AES_CFB_CTX *cctx = EVP_C_DATA(S390X_AES_CFB_CTX, ctx);
    const unsigned char *iv = EVP_CIPHER_CTX_original_iv(ctx);
    const int keylen = EVP_CIPHER_CTX_key_length(ctx);
    const int ivlen = EVP_CIPHER_CTX_iv_length(ctx);

    cctx->fc = S390X_AES_FC(keylen);
    cctx->fc |= 1 << 24;   /* 1 byte cipher feedback */
    if (!enc)
        cctx->fc |= S390X_DECRYPT;
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    memcpy(cctx->kmf.param.cv, iv, ivlen);
    memcpy(cctx->kmf.param.k, key, keylen);
    return 1;
}
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1331
static int s390x_aes_cfb8_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
1332 1333 1334 1335 1336 1337 1338
                                 const unsigned char *in, size_t len)
{
    S390X_AES_CFB_CTX *cctx = EVP_C_DATA(S390X_AES_CFB_CTX, ctx);

    s390x_kmf(in, len, out, cctx->fc, &cctx->kmf.param);
    return 1;
}
1339 1340 1341 1342 1343

# define S390X_aes_128_cfb1_CAPABLE	0
# define S390X_aes_192_cfb1_CAPABLE	0
# define S390X_aes_256_cfb1_CAPABLE	0

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# define s390x_aes_cfb1_init_key aes_init_key

1346 1347 1348 1349 1350 1351 1352
# define s390x_aes_cfb1_cipher aes_cfb1_cipher
static int s390x_aes_cfb1_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                                 const unsigned char *in, size_t len);

# define S390X_aes_128_ctr_CAPABLE	1	/* checked by callee */
# define S390X_aes_192_ctr_CAPABLE	1
# define S390X_aes_256_ctr_CAPABLE	1
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# define S390X_AES_CTR_CTX		EVP_AES_KEY

# define s390x_aes_ctr_init_key aes_init_key
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# define s390x_aes_ctr_cipher aes_ctr_cipher
static int s390x_aes_ctr_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                                const unsigned char *in, size_t len);

# define S390X_aes_128_gcm_CAPABLE (S390X_aes_128_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kma[0] &	\
                                     S390X_CAPBIT(S390X_AES_128)))
# define S390X_aes_192_gcm_CAPABLE (S390X_aes_192_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kma[0] &	\
                                     S390X_CAPBIT(S390X_AES_192)))
# define S390X_aes_256_gcm_CAPABLE (S390X_aes_256_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kma[0] &	\
                                     S390X_CAPBIT(S390X_AES_256)))

/* iv + padding length for iv lenghts != 12 */
# define S390X_gcm_ivpadlen(i)	((((i) + 15) >> 4 << 4) + 16)

1374 1375 1376 1377
/*-
 * Process additional authenticated data. Returns 0 on success. Code is
 * big-endian.
 */
1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409
static int s390x_aes_gcm_aad(S390X_AES_GCM_CTX *ctx, const unsigned char *aad,
                             size_t len)
{
    unsigned long long alen;
    int n, rem;

    if (ctx->kma.param.tpcl)
        return -2;

    alen = ctx->kma.param.taadl + len;
    if (alen > (U64(1) << 61) || (sizeof(len) == 8 && alen < len))
        return -1;
    ctx->kma.param.taadl = alen;

    n = ctx->areslen;
    if (n) {
        while (n && len) {
            ctx->ares[n] = *aad;
            n = (n + 1) & 0xf;
            ++aad;
            --len;
        }
        /* ctx->ares contains a complete block if offset has wrapped around */
        if (!n) {
            s390x_kma(ctx->ares, 16, NULL, 0, NULL, ctx->fc, &ctx->kma.param);
            ctx->fc |= S390X_KMA_HS;
        }
        ctx->areslen = n;
    }

    rem = len & 0xf;

1410
    len &= ~(size_t)0xf;
1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427
    if (len) {
        s390x_kma(aad, len, NULL, 0, NULL, ctx->fc, &ctx->kma.param);
        aad += len;
        ctx->fc |= S390X_KMA_HS;
    }

    if (rem) {
        ctx->areslen = rem;

        do {
            --rem;
            ctx->ares[rem] = aad[rem];
        } while (rem);
    }
    return 0;
}

1428 1429 1430 1431
/*-
 * En/de-crypt plain/cipher-text and authenticate ciphertext. Returns 0 for
 * success. Code is big-endian.
 */
1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481
static int s390x_aes_gcm(S390X_AES_GCM_CTX *ctx, const unsigned char *in,
                         unsigned char *out, size_t len)
{
    const unsigned char *inptr;
    unsigned long long mlen;
    union {
        unsigned int w[4];
        unsigned char b[16];
    } buf;
    size_t inlen;
    int n, rem, i;

    mlen = ctx->kma.param.tpcl + len;
    if (mlen > ((U64(1) << 36) - 32) || (sizeof(len) == 8 && mlen < len))
        return -1;
    ctx->kma.param.tpcl = mlen;

    n = ctx->mreslen;
    if (n) {
        inptr = in;
        inlen = len;
        while (n && inlen) {
            ctx->mres[n] = *inptr;
            n = (n + 1) & 0xf;
            ++inptr;
            --inlen;
        }
        /* ctx->mres contains a complete block if offset has wrapped around */
        if (!n) {
            s390x_kma(ctx->ares, ctx->areslen, ctx->mres, 16, buf.b,
                      ctx->fc | S390X_KMA_LAAD, &ctx->kma.param);
            ctx->fc |= S390X_KMA_HS;
            ctx->areslen = 0;

            /* previous call already encrypted/decrypted its remainder,
             * see comment below */
            n = ctx->mreslen;
            while (n) {
                *out = buf.b[n];
                n = (n + 1) & 0xf;
                ++out;
                ++in;
                --len;
            }
            ctx->mreslen = 0;
        }
    }

    rem = len & 0xf;

1482
    len &= ~(size_t)0xf;
1483 1484 1485 1486 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 1513 1514 1515 1516
    if (len) {
        s390x_kma(ctx->ares, ctx->areslen, in, len, out,
                  ctx->fc | S390X_KMA_LAAD, &ctx->kma.param);
        in += len;
        out += len;
        ctx->fc |= S390X_KMA_HS;
        ctx->areslen = 0;
    }

    /*-
     * If there is a remainder, it has to be saved such that it can be
     * processed by kma later. However, we also have to do the for-now
     * unauthenticated encryption/decryption part here and now...
     */
    if (rem) {
        if (!ctx->mreslen) {
            buf.w[0] = ctx->kma.param.j0.w[0];
            buf.w[1] = ctx->kma.param.j0.w[1];
            buf.w[2] = ctx->kma.param.j0.w[2];
            buf.w[3] = ctx->kma.param.cv.w + 1;
            s390x_km(buf.b, 16, ctx->kres, ctx->fc & 0x1f, &ctx->kma.param.k);
        }

        n = ctx->mreslen;
        for (i = 0; i < rem; i++) {
            ctx->mres[n + i] = in[i];
            out[i] = in[i] ^ ctx->kres[n + i];
        }

        ctx->mreslen += rem;
    }
    return 0;
}

1517 1518 1519
/*-
 * Initialize context structure. Code is big-endian.
 */
1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549
static void s390x_aes_gcm_setiv(S390X_AES_GCM_CTX *ctx,
                                const unsigned char *iv)
{
    ctx->kma.param.t.g[0] = 0;
    ctx->kma.param.t.g[1] = 0;
    ctx->kma.param.tpcl = 0;
    ctx->kma.param.taadl = 0;
    ctx->mreslen = 0;
    ctx->areslen = 0;
    ctx->kreslen = 0;

    if (ctx->ivlen == 12) {
        memcpy(&ctx->kma.param.j0, iv, ctx->ivlen);
        ctx->kma.param.j0.w[3] = 1;
        ctx->kma.param.cv.w = 1;
    } else {
        /* ctx->iv has the right size and is already padded. */
        memcpy(ctx->iv, iv, ctx->ivlen);
        s390x_kma(ctx->iv, S390X_gcm_ivpadlen(ctx->ivlen), NULL, 0, NULL,
                  ctx->fc, &ctx->kma.param);
        ctx->fc |= S390X_KMA_HS;

        ctx->kma.param.j0.g[0] = ctx->kma.param.t.g[0];
        ctx->kma.param.j0.g[1] = ctx->kma.param.t.g[1];
        ctx->kma.param.cv.w = ctx->kma.param.j0.w[3];
        ctx->kma.param.t.g[0] = 0;
        ctx->kma.param.t.g[1] = 0;
    }
}

1550 1551 1552 1553 1554
/*-
 * Performs various operations on the context structure depending on control
 * type. Returns 1 for success, 0 for failure and -1 for unknown control type.
 * Code is big-endian.
 */
1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588
static int s390x_aes_gcm_ctrl(EVP_CIPHER_CTX *c, int type, int arg, void *ptr)
{
    S390X_AES_GCM_CTX *gctx = EVP_C_DATA(S390X_AES_GCM_CTX, c);
    S390X_AES_GCM_CTX *gctx_out;
    EVP_CIPHER_CTX *out;
    unsigned char *buf, *iv;
    int ivlen, enc, len;

    switch (type) {
    case EVP_CTRL_INIT:
        ivlen = EVP_CIPHER_CTX_iv_length(c);
        iv = EVP_CIPHER_CTX_iv_noconst(c);
        gctx->key_set = 0;
        gctx->iv_set = 0;
        gctx->ivlen = ivlen;
        gctx->iv = iv;
        gctx->taglen = -1;
        gctx->iv_gen = 0;
        gctx->tls_aad_len = -1;
        return 1;

    case EVP_CTRL_AEAD_SET_IVLEN:
        if (arg <= 0)
            return 0;

        if (arg != 12) {
            iv = EVP_CIPHER_CTX_iv_noconst(c);
            len = S390X_gcm_ivpadlen(arg);

            /* Allocate memory for iv if needed. */
            if (gctx->ivlen == 12 || len > S390X_gcm_ivpadlen(gctx->ivlen)) {
                if (gctx->iv != iv)
                    OPENSSL_free(gctx->iv);

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1589 1590
                if ((gctx->iv = OPENSSL_malloc(len)) == NULL) {
                    EVPerr(EVP_F_S390X_AES_GCM_CTRL, ERR_R_MALLOC_FAILURE);
1591
                    return 0;
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1592
                }
1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636
            }
            /* Add padding. */
            memset(gctx->iv + arg, 0, len - arg - 8);
            *((unsigned long long *)(gctx->iv + len - 8)) = arg << 3;
        }
        gctx->ivlen = arg;
        return 1;

    case EVP_CTRL_AEAD_SET_TAG:
        buf = EVP_CIPHER_CTX_buf_noconst(c);
        enc = EVP_CIPHER_CTX_encrypting(c);
        if (arg <= 0 || arg > 16 || enc)
            return 0;

        memcpy(buf, ptr, arg);
        gctx->taglen = arg;
        return 1;

    case EVP_CTRL_AEAD_GET_TAG:
        enc = EVP_CIPHER_CTX_encrypting(c);
        if (arg <= 0 || arg > 16 || !enc || gctx->taglen < 0)
            return 0;

        memcpy(ptr, gctx->kma.param.t.b, arg);
        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);

        enc = EVP_CIPHER_CTX_encrypting(c);
1637 1638
        if (enc && RAND_bytes(gctx->iv + arg, gctx->ivlen - arg) <= 0)
            return 0;
1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707

        gctx->iv_gen = 1;
        return 1;

    case EVP_CTRL_GCM_IV_GEN:
        if (gctx->iv_gen == 0 || gctx->key_set == 0)
            return 0;

        s390x_aes_gcm_setiv(gctx, gctx->iv);

        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.
         */
        (*(unsigned long long *)(gctx->iv + gctx->ivlen - 8))++;
        gctx->iv_set = 1;
        return 1;

    case EVP_CTRL_GCM_SET_IV_INV:
        enc = EVP_CIPHER_CTX_encrypting(c);
        if (gctx->iv_gen == 0 || gctx->key_set == 0 || enc)
            return 0;

        memcpy(gctx->iv + gctx->ivlen - arg, ptr, arg);
        s390x_aes_gcm_setiv(gctx, gctx->iv);
        gctx->iv_set = 1;
        return 1;

    case EVP_CTRL_AEAD_TLS1_AAD:
        /* Save the aad for later use. */
        if (arg != EVP_AEAD_TLS1_AAD_LEN)
            return 0;

        buf = EVP_CIPHER_CTX_buf_noconst(c);
        memcpy(buf, ptr, arg);
        gctx->tls_aad_len = arg;

        len = buf[arg - 2] << 8 | buf[arg - 1];
        /* Correct length for explicit iv. */
        if (len < EVP_GCM_TLS_EXPLICIT_IV_LEN)
            return 0;
        len -= EVP_GCM_TLS_EXPLICIT_IV_LEN;

        /* If decrypting correct for tag too. */
        enc = EVP_CIPHER_CTX_encrypting(c);
        if (!enc) {
            if (len < EVP_GCM_TLS_TAG_LEN)
                return 0;
            len -= EVP_GCM_TLS_TAG_LEN;
        }
        buf[arg - 2] = len >> 8;
        buf[arg - 1] = len & 0xff;
        /* Extra padding: tag appended to record. */
        return EVP_GCM_TLS_TAG_LEN;

    case EVP_CTRL_COPY:
        out = ptr;
        gctx_out = EVP_C_DATA(S390X_AES_GCM_CTX, out);
        iv = EVP_CIPHER_CTX_iv_noconst(c);

        if (gctx->iv == iv) {
            gctx_out->iv = EVP_CIPHER_CTX_iv_noconst(out);
        } else {
            len = S390X_gcm_ivpadlen(gctx->ivlen);

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            if ((gctx_out->iv = OPENSSL_malloc(len)) == NULL) {
                EVPerr(EVP_F_S390X_AES_GCM_CTRL, ERR_R_MALLOC_FAILURE);
1710
                return 0;
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            }
1712 1713 1714 1715 1716 1717 1718 1719 1720 1721

            memcpy(gctx_out->iv, gctx->iv, len);
        }
        return 1;

    default:
        return -1;
    }
}

1722 1723 1724
/*-
 * Set key and/or iv. Returns 1 on success. Otherwise 0 is returned.
 */
1725 1726 1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738
static int s390x_aes_gcm_init_key(EVP_CIPHER_CTX *ctx,
                                  const unsigned char *key,
                                  const unsigned char *iv, int enc)
{
    S390X_AES_GCM_CTX *gctx = EVP_C_DATA(S390X_AES_GCM_CTX, ctx);
    int keylen;

    if (iv == NULL && key == NULL)
        return 1;

    if (key != NULL) {
        keylen = EVP_CIPHER_CTX_key_length(ctx);
        memcpy(&gctx->kma.param.k, key, keylen);

1739
        gctx->fc = S390X_AES_FC(keylen);
1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762
        if (!enc)
            gctx->fc |= S390X_DECRYPT;

        if (iv == NULL && gctx->iv_set)
            iv = gctx->iv;

        if (iv != NULL) {
            s390x_aes_gcm_setiv(gctx, iv);
            gctx->iv_set = 1;
        }
        gctx->key_set = 1;
    } else {
        if (gctx->key_set)
            s390x_aes_gcm_setiv(gctx, iv);
        else
            memcpy(gctx->iv, iv, gctx->ivlen);

        gctx->iv_set = 1;
        gctx->iv_gen = 0;
    }
    return 1;
}

1763 1764 1765 1766
/*-
 * En/de-crypt and authenticate TLS packet. Returns the number of bytes written
 * if successful. Otherwise -1 is returned. Code is big-endian.
 */
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static int s390x_aes_gcm_tls_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                                    const unsigned char *in, size_t len)
{
    S390X_AES_GCM_CTX *gctx = EVP_C_DATA(S390X_AES_GCM_CTX, ctx);
    const unsigned char *buf = EVP_CIPHER_CTX_buf_noconst(ctx);
    const int enc = EVP_CIPHER_CTX_encrypting(ctx);
    int rv = -1;

    if (out != in || len < (EVP_GCM_TLS_EXPLICIT_IV_LEN + EVP_GCM_TLS_TAG_LEN))
        return -1;

    if (EVP_CIPHER_CTX_ctrl(ctx, enc ? EVP_CTRL_GCM_IV_GEN
                                     : EVP_CTRL_GCM_SET_IV_INV,
                            EVP_GCM_TLS_EXPLICIT_IV_LEN, out) <= 0)
        goto err;

    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;

    gctx->kma.param.taadl = gctx->tls_aad_len << 3;
    gctx->kma.param.tpcl = len << 3;
    s390x_kma(buf, gctx->tls_aad_len, in, len, out,
              gctx->fc | S390X_KMA_LAAD | S390X_KMA_LPC, &gctx->kma.param);

    if (enc) {
        memcpy(out + len, gctx->kma.param.t.b, EVP_GCM_TLS_TAG_LEN);
        rv = len + EVP_GCM_TLS_EXPLICIT_IV_LEN + EVP_GCM_TLS_TAG_LEN;
    } else {
        if (CRYPTO_memcmp(gctx->kma.param.t.b, in + len,
                          EVP_GCM_TLS_TAG_LEN)) {
            OPENSSL_cleanse(out, len);
            goto err;
        }
        rv = len;
    }
err:
    gctx->iv_set = 0;
    gctx->tls_aad_len = -1;
    return rv;
}

1809 1810 1811 1812 1813 1814
/*-
 * Called from EVP layer to initialize context, process additional
 * authenticated data, en/de-crypt plain/cipher-text and authenticate
 * ciphertext or process a TLS packet, depending on context. Returns bytes
 * written on success. Otherwise -1 is returned. Code is big-endian.
 */
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static int s390x_aes_gcm_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                                const unsigned char *in, size_t len)
{
    S390X_AES_GCM_CTX *gctx = EVP_C_DATA(S390X_AES_GCM_CTX, ctx);
    unsigned char *buf, tmp[16];
    int enc;

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

    if (gctx->tls_aad_len >= 0)
        return s390x_aes_gcm_tls_cipher(ctx, out, in, len);

    if (!gctx->iv_set)
        return -1;

    if (in != NULL) {
        if (out == NULL) {
            if (s390x_aes_gcm_aad(gctx, in, len))
                return -1;
        } else {
            if (s390x_aes_gcm(gctx, in, out, len))
                return -1;
        }
        return len;
    } else {
        gctx->kma.param.taadl <<= 3;
        gctx->kma.param.tpcl <<= 3;
        s390x_kma(gctx->ares, gctx->areslen, gctx->mres, gctx->mreslen, tmp,
                  gctx->fc | S390X_KMA_LAAD | S390X_KMA_LPC, &gctx->kma.param);
        /* recall that we already did en-/decrypt gctx->mres
         * and returned it to caller... */
        OPENSSL_cleanse(tmp, gctx->mreslen);
        gctx->iv_set = 0;

        enc = EVP_CIPHER_CTX_encrypting(ctx);
        if (enc) {
            gctx->taglen = 16;
        } else {
            if (gctx->taglen < 0)
                return -1;

            buf = EVP_CIPHER_CTX_buf_noconst(ctx);
            if (CRYPTO_memcmp(buf, gctx->kma.param.t.b, gctx->taglen))
                return -1;
        }
        return 0;
    }
}

static int s390x_aes_gcm_cleanup(EVP_CIPHER_CTX *c)
{
    S390X_AES_GCM_CTX *gctx = EVP_C_DATA(S390X_AES_GCM_CTX, c);
    const unsigned char *iv;

    if (gctx == NULL)
        return 0;

    iv = EVP_CIPHER_CTX_iv(c);
    if (iv != gctx->iv)
        OPENSSL_free(gctx->iv);

    OPENSSL_cleanse(gctx, sizeof(*gctx));
    return 1;
}

# define S390X_AES_XTS_CTX		EVP_AES_XTS_CTX
# define S390X_aes_128_xts_CAPABLE	1	/* checked by callee */
# define S390X_aes_256_xts_CAPABLE	1

# define s390x_aes_xts_init_key aes_xts_init_key
static int s390x_aes_xts_init_key(EVP_CIPHER_CTX *ctx,
                                  const unsigned char *key,
                                  const unsigned char *iv, int enc);
# define s390x_aes_xts_cipher aes_xts_cipher
static int s390x_aes_xts_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                                const unsigned char *in, size_t len);
# define s390x_aes_xts_ctrl aes_xts_ctrl
static int s390x_aes_xts_ctrl(EVP_CIPHER_CTX *, int type, int arg, void *ptr);
# define s390x_aes_xts_cleanup aes_xts_cleanup

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# define S390X_aes_128_ccm_CAPABLE (S390X_aes_128_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kmac[0] &	\
                                     S390X_CAPBIT(S390X_AES_128)))
# define S390X_aes_192_ccm_CAPABLE (S390X_aes_192_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kmac[0] &	\
                                     S390X_CAPBIT(S390X_AES_192)))
# define S390X_aes_256_ccm_CAPABLE (S390X_aes_256_CAPABLE &&		\
                                    (OPENSSL_s390xcap_P.kmac[0] &	\
                                     S390X_CAPBIT(S390X_AES_256)))

# define S390X_CCM_AAD_FLAG	0x40

/*-
 * Set nonce and length fields. Code is big-endian.
 */
static inline void s390x_aes_ccm_setiv(S390X_AES_CCM_CTX *ctx,
                                          const unsigned char *nonce,
                                          size_t mlen)
{
    ctx->aes.ccm.nonce.b[0] &= ~S390X_CCM_AAD_FLAG;
    ctx->aes.ccm.nonce.g[1] = mlen;
    memcpy(ctx->aes.ccm.nonce.b + 1, nonce, 15 - ctx->aes.ccm.l);
}

/*-
 * Process additional authenticated data. Code is big-endian.
 */
static void s390x_aes_ccm_aad(S390X_AES_CCM_CTX *ctx, const unsigned char *aad,
                              size_t alen)
{
    unsigned char *ptr;
    int i, rem;

    if (!alen)
        return;

    ctx->aes.ccm.nonce.b[0] |= S390X_CCM_AAD_FLAG;

    /* Suppress 'type-punned pointer dereference' warning. */
    ptr = ctx->aes.ccm.buf.b;

    if (alen < ((1 << 16) - (1 << 8))) {
        *(uint16_t *)ptr = alen;
        i = 2;
    } else if (sizeof(alen) == 8
               && alen >= (size_t)1 << (32 % (sizeof(alen) * 8))) {
        *(uint16_t *)ptr = 0xffff;
        *(uint64_t *)(ptr + 2) = alen;
        i = 10;
    } else {
        *(uint16_t *)ptr = 0xfffe;
        *(uint32_t *)(ptr + 2) = alen;
        i = 6;
    }

    while (i < 16 && alen) {
        ctx->aes.ccm.buf.b[i] = *aad;
        ++aad;
        --alen;
        ++i;
    }
    while (i < 16) {
        ctx->aes.ccm.buf.b[i] = 0;
        ++i;
    }

    ctx->aes.ccm.kmac_param.icv.g[0] = 0;
    ctx->aes.ccm.kmac_param.icv.g[1] = 0;
    s390x_kmac(ctx->aes.ccm.nonce.b, 32, ctx->aes.ccm.fc,
               &ctx->aes.ccm.kmac_param);
    ctx->aes.ccm.blocks += 2;

    rem = alen & 0xf;
1969
    alen &= ~(size_t)0xf;
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    if (alen) {
        s390x_kmac(aad, alen, ctx->aes.ccm.fc, &ctx->aes.ccm.kmac_param);
        ctx->aes.ccm.blocks += alen >> 4;
        aad += alen;
    }
    if (rem) {
        for (i = 0; i < rem; i++)
            ctx->aes.ccm.kmac_param.icv.b[i] ^= aad[i];

        s390x_km(ctx->aes.ccm.kmac_param.icv.b, 16,
                 ctx->aes.ccm.kmac_param.icv.b, ctx->aes.ccm.fc,
                 ctx->aes.ccm.kmac_param.k);
        ctx->aes.ccm.blocks++;
    }
}

/*-
 * En/de-crypt plain/cipher-text. Compute tag from plaintext. Returns 0 for
 * success.
 */
static int s390x_aes_ccm(S390X_AES_CCM_CTX *ctx, const unsigned char *in,
                         unsigned char *out, size_t len, int enc)
{
    size_t n, rem;
    unsigned int i, l, num;
    unsigned char flags;

    flags = ctx->aes.ccm.nonce.b[0];
    if (!(flags & S390X_CCM_AAD_FLAG)) {
        s390x_km(ctx->aes.ccm.nonce.b, 16, ctx->aes.ccm.kmac_param.icv.b,
                 ctx->aes.ccm.fc, ctx->aes.ccm.kmac_param.k);
        ctx->aes.ccm.blocks++;
    }
    l = flags & 0x7;
    ctx->aes.ccm.nonce.b[0] = l;

    /*-
     * Reconstruct length from encoded length field
     * and initialize it with counter value.
     */
    n = 0;
    for (i = 15 - l; i < 15; i++) {
        n |= ctx->aes.ccm.nonce.b[i];
        ctx->aes.ccm.nonce.b[i] = 0;
        n <<= 8;
    }
    n |= ctx->aes.ccm.nonce.b[15];
    ctx->aes.ccm.nonce.b[15] = 1;

    if (n != len)
        return -1;		/* length mismatch */

    if (enc) {
        /* Two operations per block plus one for tag encryption */
        ctx->aes.ccm.blocks += (((len + 15) >> 4) << 1) + 1;
        if (ctx->aes.ccm.blocks > (1ULL << 61))
            return -2;		/* too much data */
    }

    num = 0;
    rem = len & 0xf;
2031
    len &= ~(size_t)0xf;
2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107 2108 2109 2110 2111 2112

    if (enc) {
        /* mac-then-encrypt */
        if (len)
            s390x_kmac(in, len, ctx->aes.ccm.fc, &ctx->aes.ccm.kmac_param);
        if (rem) {
            for (i = 0; i < rem; i++)
                ctx->aes.ccm.kmac_param.icv.b[i] ^= in[len + i];

            s390x_km(ctx->aes.ccm.kmac_param.icv.b, 16,
                     ctx->aes.ccm.kmac_param.icv.b, ctx->aes.ccm.fc,
                     ctx->aes.ccm.kmac_param.k);
        }

        CRYPTO_ctr128_encrypt_ctr32(in, out, len + rem, &ctx->aes.key.k,
                                    ctx->aes.ccm.nonce.b, ctx->aes.ccm.buf.b,
                                    &num, (ctr128_f)AES_ctr32_encrypt);
    } else {
        /* decrypt-then-mac */
        CRYPTO_ctr128_encrypt_ctr32(in, out, len + rem, &ctx->aes.key.k,
                                    ctx->aes.ccm.nonce.b, ctx->aes.ccm.buf.b,
                                    &num, (ctr128_f)AES_ctr32_encrypt);

        if (len)
            s390x_kmac(out, len, ctx->aes.ccm.fc, &ctx->aes.ccm.kmac_param);
        if (rem) {
            for (i = 0; i < rem; i++)
                ctx->aes.ccm.kmac_param.icv.b[i] ^= out[len + i];

            s390x_km(ctx->aes.ccm.kmac_param.icv.b, 16,
                     ctx->aes.ccm.kmac_param.icv.b, ctx->aes.ccm.fc,
                     ctx->aes.ccm.kmac_param.k);
        }
    }
    /* encrypt tag */
    for (i = 15 - l; i < 16; i++)
        ctx->aes.ccm.nonce.b[i] = 0;

    s390x_km(ctx->aes.ccm.nonce.b, 16, ctx->aes.ccm.buf.b, ctx->aes.ccm.fc,
             ctx->aes.ccm.kmac_param.k);
    ctx->aes.ccm.kmac_param.icv.g[0] ^= ctx->aes.ccm.buf.g[0];
    ctx->aes.ccm.kmac_param.icv.g[1] ^= ctx->aes.ccm.buf.g[1];

    ctx->aes.ccm.nonce.b[0] = flags;	/* restore flags field */
    return 0;
}

/*-
 * En/de-crypt and authenticate TLS packet. Returns the number of bytes written
 * if successful. Otherwise -1 is returned.
 */
static int s390x_aes_ccm_tls_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                                    const unsigned char *in, size_t len)
{
    S390X_AES_CCM_CTX *cctx = EVP_C_DATA(S390X_AES_CCM_CTX, ctx);
    unsigned char *ivec = EVP_CIPHER_CTX_iv_noconst(ctx);
    unsigned char *buf = EVP_CIPHER_CTX_buf_noconst(ctx);
    const int enc = EVP_CIPHER_CTX_encrypting(ctx);

    if (out != in
            || len < (EVP_CCM_TLS_EXPLICIT_IV_LEN + (size_t)cctx->aes.ccm.m))
        return -1;

    if (enc) {
        /* Set explicit iv (sequence number). */
        memcpy(out, buf, EVP_CCM_TLS_EXPLICIT_IV_LEN);
    }

    len -= EVP_CCM_TLS_EXPLICIT_IV_LEN + cctx->aes.ccm.m;
    /*-
     * Get explicit iv (sequence number). We already have fixed iv
     * (server/client_write_iv) here.
     */
    memcpy(ivec + EVP_CCM_TLS_FIXED_IV_LEN, in, EVP_CCM_TLS_EXPLICIT_IV_LEN);
    s390x_aes_ccm_setiv(cctx, ivec, len);

    /* Process aad (sequence number|type|version|length) */
    s390x_aes_ccm_aad(cctx, buf, cctx->aes.ccm.tls_aad_len);

    in += EVP_CCM_TLS_EXPLICIT_IV_LEN;
    out += EVP_CCM_TLS_EXPLICIT_IV_LEN;
2113

2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125 2126 2127 2128 2129 2130 2131 2132 2133 2134 2135
    if (enc) {
        if (s390x_aes_ccm(cctx, in, out, len, enc))
            return -1;

        memcpy(out + len, cctx->aes.ccm.kmac_param.icv.b, cctx->aes.ccm.m);
        return len + EVP_CCM_TLS_EXPLICIT_IV_LEN + cctx->aes.ccm.m;
    } else {
        if (!s390x_aes_ccm(cctx, in, out, len, enc)) {
            if (!CRYPTO_memcmp(cctx->aes.ccm.kmac_param.icv.b, in + len,
                               cctx->aes.ccm.m))
                return len;
        }

        OPENSSL_cleanse(out, len);
        return -1;
    }
}

/*-
 * Set key and flag field and/or iv. Returns 1 if successful. Otherwise 0 is
 * returned.
 */
2136 2137
static int s390x_aes_ccm_init_key(EVP_CIPHER_CTX *ctx,
                                  const unsigned char *key,
2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148
                                  const unsigned char *iv, int enc)
{
    S390X_AES_CCM_CTX *cctx = EVP_C_DATA(S390X_AES_CCM_CTX, ctx);
    unsigned char *ivec;
    int keylen;

    if (iv == NULL && key == NULL)
        return 1;

    if (key != NULL) {
        keylen = EVP_CIPHER_CTX_key_length(ctx);
2149
        cctx->aes.ccm.fc = S390X_AES_FC(keylen);
2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177
        memcpy(cctx->aes.ccm.kmac_param.k, key, keylen);

        /* Store encoded m and l. */
        cctx->aes.ccm.nonce.b[0] = ((cctx->aes.ccm.l - 1) & 0x7)
                                 | (((cctx->aes.ccm.m - 2) >> 1) & 0x7) << 3;
        memset(cctx->aes.ccm.nonce.b + 1, 0,
               sizeof(cctx->aes.ccm.nonce.b));
        cctx->aes.ccm.blocks = 0;

        cctx->aes.ccm.key_set = 1;
    }

    if (iv != NULL) {
        ivec = EVP_CIPHER_CTX_iv_noconst(ctx);
        memcpy(ivec, iv, 15 - cctx->aes.ccm.l);

        cctx->aes.ccm.iv_set = 1;
    }

    return 1;
}

/*-
 * Called from EVP layer to initialize context, process additional
 * authenticated data, en/de-crypt plain/cipher-text and authenticate
 * plaintext or process a TLS packet, depending on context. Returns bytes
 * written on success. Otherwise -1 is returned.
 */
2178
static int s390x_aes_ccm_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199 2200 2201 2202 2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277 2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324 2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363 2364 2365 2366 2367 2368 2369 2370 2371 2372
                                const unsigned char *in, size_t len)
{
    S390X_AES_CCM_CTX *cctx = EVP_C_DATA(S390X_AES_CCM_CTX, ctx);
    const int enc = EVP_CIPHER_CTX_encrypting(ctx);
    int rv;
    unsigned char *buf, *ivec;

    if (!cctx->aes.ccm.key_set)
        return -1;

    if (cctx->aes.ccm.tls_aad_len >= 0)
        return s390x_aes_ccm_tls_cipher(ctx, out, in, len);

    /*-
     * Final(): Does not return any data. Recall that ccm is mac-then-encrypt
     * so integrity must be checked already at Update() i.e., before
     * potentially corrupted data is output.
     */
    if (in == NULL && out != NULL)
        return 0;

    if (!cctx->aes.ccm.iv_set)
        return -1;

    if (!enc && !cctx->aes.ccm.tag_set)
        return -1;

    if (out == NULL) {
        /* Update(): Pass message length. */
        if (in == NULL) {
            ivec = EVP_CIPHER_CTX_iv_noconst(ctx);
            s390x_aes_ccm_setiv(cctx, ivec, len);

            cctx->aes.ccm.len_set = 1;
            return len;
        }

        /* Update(): Process aad. */
        if (!cctx->aes.ccm.len_set && len)
            return -1;

        s390x_aes_ccm_aad(cctx, in, len);
        return len;
    }

    /* Update(): Process message. */

    if (!cctx->aes.ccm.len_set) {
        /*-
         * In case message length was not previously set explicitely via
         * Update(), set it now.
         */
        ivec = EVP_CIPHER_CTX_iv_noconst(ctx);
        s390x_aes_ccm_setiv(cctx, ivec, len);

        cctx->aes.ccm.len_set = 1;
    }

    if (enc) {
        if (s390x_aes_ccm(cctx, in, out, len, enc))
            return -1;

        cctx->aes.ccm.tag_set = 1;
        return len;
    } else {
        rv = -1;

        if (!s390x_aes_ccm(cctx, in, out, len, enc)) {
            buf = EVP_CIPHER_CTX_buf_noconst(ctx);
            if (!CRYPTO_memcmp(cctx->aes.ccm.kmac_param.icv.b, buf,
                               cctx->aes.ccm.m))
                rv = len;
        }

        if (rv == -1)
            OPENSSL_cleanse(out, len);

        cctx->aes.ccm.iv_set = 0;
        cctx->aes.ccm.tag_set = 0;
        cctx->aes.ccm.len_set = 0;
        return rv;
    }
}

/*-
 * Performs various operations on the context structure depending on control
 * type. Returns 1 for success, 0 for failure and -1 for unknown control type.
 * Code is big-endian.
 */
static int s390x_aes_ccm_ctrl(EVP_CIPHER_CTX *c, int type, int arg, void *ptr)
{
    S390X_AES_CCM_CTX *cctx = EVP_C_DATA(S390X_AES_CCM_CTX, c);
    unsigned char *buf, *iv;
    int enc, len;

    switch (type) {
    case EVP_CTRL_INIT:
        cctx->aes.ccm.key_set = 0;
        cctx->aes.ccm.iv_set = 0;
        cctx->aes.ccm.l = 8;
        cctx->aes.ccm.m = 12;
        cctx->aes.ccm.tag_set = 0;
        cctx->aes.ccm.len_set = 0;
        cctx->aes.ccm.tls_aad_len = -1;
        return 1;

    case EVP_CTRL_AEAD_TLS1_AAD:
        if (arg != EVP_AEAD_TLS1_AAD_LEN)
            return 0;

        /* Save the aad for later use. */
        buf = EVP_CIPHER_CTX_buf_noconst(c);
        memcpy(buf, ptr, arg);
        cctx->aes.ccm.tls_aad_len = arg;

        len = *(uint16_t *)(buf + arg - 2);
        if (len < EVP_CCM_TLS_EXPLICIT_IV_LEN)
            return 0;

        /* Correct length for explicit iv. */
        len -= EVP_CCM_TLS_EXPLICIT_IV_LEN;

        enc = EVP_CIPHER_CTX_encrypting(c);
        if (!enc) {
            if (len < cctx->aes.ccm.m)
                return 0;

            /* Correct length for tag. */
            len -= cctx->aes.ccm.m;
        }

        *(uint16_t *)(buf + arg - 2) = len;
        /* Extra padding: tag appended to record. */
        return cctx->aes.ccm.m;

    case EVP_CTRL_CCM_SET_IV_FIXED:
        if (arg != EVP_CCM_TLS_FIXED_IV_LEN)
            return 0;

        /* Copy to first part of the iv. */
        iv = EVP_CIPHER_CTX_iv_noconst(c);
        memcpy(iv, ptr, arg);
        return 1;

    case EVP_CTRL_AEAD_SET_IVLEN:
        arg = 15 - arg;
        /* fall-through */

    case EVP_CTRL_CCM_SET_L:
        if (arg < 2 || arg > 8)
            return 0;

        cctx->aes.ccm.l = arg;
        return 1;

    case EVP_CTRL_AEAD_SET_TAG:
        if ((arg & 1) || arg < 4 || arg > 16)
            return 0;

        enc = EVP_CIPHER_CTX_encrypting(c);
        if (enc && ptr)
            return 0;

        if (ptr) {
            cctx->aes.ccm.tag_set = 1;
            buf = EVP_CIPHER_CTX_buf_noconst(c);
            memcpy(buf, ptr, arg);
        }

        cctx->aes.ccm.m = arg;
        return 1;

    case EVP_CTRL_AEAD_GET_TAG:
        enc = EVP_CIPHER_CTX_encrypting(c);
        if (!enc || !cctx->aes.ccm.tag_set)
            return 0;

        if(arg < cctx->aes.ccm.m)
            return 0;

        memcpy(ptr, cctx->aes.ccm.kmac_param.icv.b, cctx->aes.ccm.m);
        cctx->aes.ccm.tag_set = 0;
        cctx->aes.ccm.iv_set = 0;
        cctx->aes.ccm.len_set = 0;
        return 1;

    case EVP_CTRL_COPY:
        return 1;

    default:
        return -1;
    }
}

2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399
# define s390x_aes_ccm_cleanup aes_ccm_cleanup

# ifndef OPENSSL_NO_OCB
#  define S390X_AES_OCB_CTX		EVP_AES_OCB_CTX
#  define S390X_aes_128_ocb_CAPABLE	0
#  define S390X_aes_192_ocb_CAPABLE	0
#  define S390X_aes_256_ocb_CAPABLE	0

#  define s390x_aes_ocb_init_key aes_ocb_init_key
static int s390x_aes_ocb_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
                                  const unsigned char *iv, int enc);
#  define s390x_aes_ocb_cipher aes_ocb_cipher
static int s390x_aes_ocb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                                const unsigned char *in, size_t len);
#  define s390x_aes_ocb_cleanup aes_ocb_cleanup
static int s390x_aes_ocb_cleanup(EVP_CIPHER_CTX *);
#  define s390x_aes_ocb_ctrl aes_ocb_ctrl
static int s390x_aes_ocb_ctrl(EVP_CIPHER_CTX *, int type, int arg, void *ptr);
# endif

# define BLOCK_CIPHER_generic(nid,keylen,blocksize,ivlen,nmode,mode,	\
                              MODE,flags)				\
static const EVP_CIPHER s390x_aes_##keylen##_##mode = {			\
    nid##_##keylen##_##nmode,blocksize,					\
    keylen / 8,								\
    ivlen,								\
    flags | EVP_CIPH_##MODE##_MODE,					\
2400
    s390x_aes_##mode##_init_key,					\
2401 2402
    s390x_aes_##mode##_cipher,						\
    NULL,								\
2403
    sizeof(S390X_AES_##MODE##_CTX),					\
2404 2405 2406 2407 2408 2409 2410 2411 2412 2413 2414 2415 2416 2417 2418
    NULL,								\
    NULL,								\
    NULL,								\
    NULL								\
};									\
static const EVP_CIPHER aes_##keylen##_##mode = {			\
    nid##_##keylen##_##nmode,						\
    blocksize,								\
    keylen / 8,								\
    ivlen,								\
    flags | EVP_CIPH_##MODE##_MODE,					\
    aes_init_key,							\
    aes_##mode##_cipher,						\
    NULL,								\
    sizeof(EVP_AES_KEY),						\
2419 2420 2421 2422
    NULL,								\
    NULL,								\
    NULL,								\
    NULL								\
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};									\
const EVP_CIPHER *EVP_aes_##keylen##_##mode(void)			\
{									\
    return S390X_aes_##keylen##_##mode##_CAPABLE ?			\
           &s390x_aes_##keylen##_##mode : &aes_##keylen##_##mode;	\
}

# define BLOCK_CIPHER_custom(nid,keylen,blocksize,ivlen,mode,MODE,flags)\
static const EVP_CIPHER s390x_aes_##keylen##_##mode = {			\
    nid##_##keylen##_##mode,						\
    blocksize,								\
    (EVP_CIPH_##MODE##_MODE == EVP_CIPH_XTS_MODE ? 2 : 1) * keylen / 8,	\
    ivlen,								\
    flags | EVP_CIPH_##MODE##_MODE,					\
    s390x_aes_##mode##_init_key,					\
    s390x_aes_##mode##_cipher,						\
    s390x_aes_##mode##_cleanup,						\
    sizeof(S390X_AES_##MODE##_CTX),					\
    NULL,								\
    NULL,								\
    s390x_aes_##mode##_ctrl,						\
    NULL								\
};									\
static const EVP_CIPHER aes_##keylen##_##mode = {			\
    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								\
};									\
const EVP_CIPHER *EVP_aes_##keylen##_##mode(void)			\
{									\
    return S390X_aes_##keylen##_##mode##_CAPABLE ?			\
           &s390x_aes_##keylen##_##mode : &aes_##keylen##_##mode;	\
}

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#else
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# define BLOCK_CIPHER_generic(nid,keylen,blocksize,ivlen,nmode,mode,MODE,flags) \
2469
static const EVP_CIPHER aes_##keylen##_##mode = { \
2470 2471 2472 2473 2474 2475 2476
        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 }; \
2477 2478
const EVP_CIPHER *EVP_aes_##keylen##_##mode(void) \
{ return &aes_##keylen##_##mode; }
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# define BLOCK_CIPHER_custom(nid,keylen,blocksize,ivlen,mode,MODE,flags) \
2481
static const EVP_CIPHER aes_##keylen##_##mode = { \
2482 2483 2484 2485 2486 2487 2488 2489
        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 }; \
2490 2491
const EVP_CIPHER *EVP_aes_##keylen##_##mode(void) \
{ return &aes_##keylen##_##mode; }
2492

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#endif
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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)
2503
#  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
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#if defined(HWAES_CAPABLE)
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int HWAES_set_encrypt_key(const unsigned char *userKey, const int bits,
2516
                          AES_KEY *key);
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int HWAES_set_decrypt_key(const unsigned char *userKey, const int bits,
2518
                          AES_KEY *key);
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void HWAES_encrypt(const unsigned char *in, unsigned char *out,
2520
                   const AES_KEY *key);
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void HWAES_decrypt(const unsigned char *in, unsigned char *out,
2522
                   const AES_KEY *key);
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void HWAES_cbc_encrypt(const unsigned char *in, unsigned char *out,
2524 2525
                       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,
2527 2528
                                size_t len, const AES_KEY *key,
                                const unsigned char ivec[16]);
2529 2530 2531 2532 2533 2534
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)             \
2538 2539 2540 2541 2542 2543 2544
        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)
2545 2546

static int aes_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
2547 2548 2549
                        const unsigned char *iv, int enc)
{
    int ret, mode;
2550
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
2551

2552
    mode = EVP_CIPHER_CTX_mode(ctx);
2553
    if ((mode == EVP_CIPH_ECB_MODE || mode == EVP_CIPH_CBC_MODE)
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        && !enc) {
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#ifdef HWAES_CAPABLE
2556
        if (HWAES_CAPABLE) {
2557 2558 2559
            ret = HWAES_set_decrypt_key(key,
                                        EVP_CIPHER_CTX_key_length(ctx) * 8,
                                        &dat->ks.ks);
2560 2561
            dat->block = (block128_f) HWAES_decrypt;
            dat->stream.cbc = NULL;
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# ifdef HWAES_cbc_encrypt
2563 2564 2565
            if (mode == EVP_CIPH_CBC_MODE)
                dat->stream.cbc = (cbc128_f) HWAES_cbc_encrypt;
# endif
M
Matt Caswell 已提交
2566 2567 2568
        } else
#endif
#ifdef BSAES_CAPABLE
2569
        if (BSAES_CAPABLE && mode == EVP_CIPH_CBC_MODE) {
2570 2571
            ret = AES_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &dat->ks.ks);
2572 2573 2574
            dat->block = (block128_f) AES_decrypt;
            dat->stream.cbc = (cbc128_f) bsaes_cbc_encrypt;
        } else
M
Matt Caswell 已提交
2575 2576
#endif
#ifdef VPAES_CAPABLE
2577
        if (VPAES_CAPABLE) {
2578 2579 2580
            ret = vpaes_set_decrypt_key(key,
                                        EVP_CIPHER_CTX_key_length(ctx) * 8,
                                        &dat->ks.ks);
2581 2582 2583 2584
            dat->block = (block128_f) vpaes_decrypt;
            dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
                (cbc128_f) vpaes_cbc_encrypt : NULL;
        } else
M
Matt Caswell 已提交
2585
#endif
2586
        {
2587 2588 2589
            ret = AES_set_decrypt_key(key,
                                      EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &dat->ks.ks);
2590 2591 2592
            dat->block = (block128_f) AES_decrypt;
            dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
                (cbc128_f) AES_cbc_encrypt : NULL;
T
Todd Short 已提交
2593
        }
2594
    } else
M
Matt Caswell 已提交
2595
#ifdef HWAES_CAPABLE
2596
    if (HWAES_CAPABLE) {
2597 2598
        ret = HWAES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                    &dat->ks.ks);
2599 2600
        dat->block = (block128_f) HWAES_encrypt;
        dat->stream.cbc = NULL;
M
Matt Caswell 已提交
2601
# ifdef HWAES_cbc_encrypt
2602 2603 2604
        if (mode == EVP_CIPH_CBC_MODE)
            dat->stream.cbc = (cbc128_f) HWAES_cbc_encrypt;
        else
M
Matt Caswell 已提交
2605 2606
# endif
# ifdef HWAES_ctr32_encrypt_blocks
2607 2608 2609
        if (mode == EVP_CIPH_CTR_MODE)
            dat->stream.ctr = (ctr128_f) HWAES_ctr32_encrypt_blocks;
        else
M
Matt Caswell 已提交
2610
# endif
2611 2612
            (void)0;            /* terminate potentially open 'else' */
    } else
M
Matt Caswell 已提交
2613 2614
#endif
#ifdef BSAES_CAPABLE
2615
    if (BSAES_CAPABLE && mode == EVP_CIPH_CTR_MODE) {
2616 2617
        ret = AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                  &dat->ks.ks);
2618 2619 2620
        dat->block = (block128_f) AES_encrypt;
        dat->stream.ctr = (ctr128_f) bsaes_ctr32_encrypt_blocks;
    } else
M
Matt Caswell 已提交
2621 2622
#endif
#ifdef VPAES_CAPABLE
2623
    if (VPAES_CAPABLE) {
2624 2625
        ret = vpaes_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                    &dat->ks.ks);
2626 2627 2628 2629
        dat->block = (block128_f) vpaes_encrypt;
        dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
            (cbc128_f) vpaes_cbc_encrypt : NULL;
    } else
M
Matt Caswell 已提交
2630
#endif
2631
    {
2632 2633
        ret = AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                  &dat->ks.ks);
2634 2635 2636
        dat->block = (block128_f) AES_encrypt;
        dat->stream.cbc = mode == EVP_CIPH_CBC_MODE ?
            (cbc128_f) AES_cbc_encrypt : NULL;
M
Matt Caswell 已提交
2637
#ifdef AES_CTR_ASM
2638 2639
        if (mode == EVP_CIPH_CTR_MODE)
            dat->stream.ctr = (ctr128_f) AES_ctr32_encrypt;
M
Matt Caswell 已提交
2640
#endif
2641
    }
2642

2643 2644 2645 2646
    if (ret < 0) {
        EVPerr(EVP_F_AES_INIT_KEY, EVP_R_AES_KEY_SETUP_FAILED);
        return 0;
    }
2647

2648 2649
    return 1;
}
2650

2651 2652
static int aes_cbc_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                          const unsigned char *in, size_t len)
2653
{
2654
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
2655

2656
    if (dat->stream.cbc)
2657 2658 2659 2660 2661 2662
        (*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);
2663
    else
2664 2665
        CRYPTO_cbc128_decrypt(in, out, len, &dat->ks,
                              EVP_CIPHER_CTX_iv_noconst(ctx), dat->block);
2666

2667
    return 1;
2668 2669
}

2670 2671
static int aes_ecb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                          const unsigned char *in, size_t len)
2672
{
2673
    size_t bl = EVP_CIPHER_CTX_block_size(ctx);
2674
    size_t i;
2675
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
2676

2677 2678
    if (len < bl)
        return 1;
2679

2680 2681
    for (i = 0, len -= bl; i <= len; i += bl)
        (*dat->block) (in + i, out + i, &dat->ks);
2682

2683
    return 1;
2684
}
D
 
Dr. Stephen Henson 已提交
2685

2686 2687
static int aes_ofb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                          const unsigned char *in, size_t len)
2688
{
2689
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
2690

2691
    int num = EVP_CIPHER_CTX_num(ctx);
2692
    CRYPTO_ofb128_encrypt(in, out, len, &dat->ks,
2693 2694
                          EVP_CIPHER_CTX_iv_noconst(ctx), &num, dat->block);
    EVP_CIPHER_CTX_set_num(ctx, num);
2695
    return 1;
2696
}
D
 
Dr. Stephen Henson 已提交
2697

2698 2699
static int aes_cfb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                          const unsigned char *in, size_t len)
2700
{
2701
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
2702

2703
    int num = EVP_CIPHER_CTX_num(ctx);
2704
    CRYPTO_cfb128_encrypt(in, out, len, &dat->ks,
2705 2706 2707
                          EVP_CIPHER_CTX_iv_noconst(ctx), &num,
                          EVP_CIPHER_CTX_encrypting(ctx), dat->block);
    EVP_CIPHER_CTX_set_num(ctx, num);
2708
    return 1;
2709 2710
}

2711 2712
static int aes_cfb8_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                           const unsigned char *in, size_t len)
2713
{
2714
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
2715

2716
    int num = EVP_CIPHER_CTX_num(ctx);
2717
    CRYPTO_cfb128_8_encrypt(in, out, len, &dat->ks,
2718 2719 2720
                            EVP_CIPHER_CTX_iv_noconst(ctx), &num,
                            EVP_CIPHER_CTX_encrypting(ctx), dat->block);
    EVP_CIPHER_CTX_set_num(ctx, num);
2721
    return 1;
2722
}
2723

2724 2725
static int aes_cfb1_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                           const unsigned char *in, size_t len)
2726
{
2727
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
2728

2729 2730
    if (EVP_CIPHER_CTX_test_flags(ctx, EVP_CIPH_FLAG_LENGTH_BITS)) {
        int num = EVP_CIPHER_CTX_num(ctx);
2731
        CRYPTO_cfb128_1_encrypt(in, out, len, &dat->ks,
2732 2733 2734
                                EVP_CIPHER_CTX_iv_noconst(ctx), &num,
                                EVP_CIPHER_CTX_encrypting(ctx), dat->block);
        EVP_CIPHER_CTX_set_num(ctx, num);
2735 2736 2737 2738
        return 1;
    }

    while (len >= MAXBITCHUNK) {
2739
        int num = EVP_CIPHER_CTX_num(ctx);
2740
        CRYPTO_cfb128_1_encrypt(in, out, MAXBITCHUNK * 8, &dat->ks,
2741 2742 2743
                                EVP_CIPHER_CTX_iv_noconst(ctx), &num,
                                EVP_CIPHER_CTX_encrypting(ctx), dat->block);
        EVP_CIPHER_CTX_set_num(ctx, num);
2744
        len -= MAXBITCHUNK;
2745 2746
        out += MAXBITCHUNK;
        in  += MAXBITCHUNK;
2747
    }
2748 2749
    if (len) {
        int num = EVP_CIPHER_CTX_num(ctx);
2750
        CRYPTO_cfb128_1_encrypt(in, out, len * 8, &dat->ks,
2751 2752 2753 2754
                                EVP_CIPHER_CTX_iv_noconst(ctx), &num,
                                EVP_CIPHER_CTX_encrypting(ctx), dat->block);
        EVP_CIPHER_CTX_set_num(ctx, num);
    }
2755 2756

    return 1;
2757
}
2758

2759 2760
static int aes_ctr_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                          const unsigned char *in, size_t len)
A
Andy Polyakov 已提交
2761
{
2762 2763
    unsigned int num = EVP_CIPHER_CTX_num(ctx);
    EVP_AES_KEY *dat = EVP_C_DATA(EVP_AES_KEY,ctx);
2764 2765 2766

    if (dat->stream.ctr)
        CRYPTO_ctr128_encrypt_ctr32(in, out, len, &dat->ks,
2767 2768 2769
                                    EVP_CIPHER_CTX_iv_noconst(ctx),
                                    EVP_CIPHER_CTX_buf_noconst(ctx),
                                    &num, dat->stream.ctr);
2770 2771
    else
        CRYPTO_ctr128_encrypt(in, out, len, &dat->ks,
2772 2773 2774 2775
                              EVP_CIPHER_CTX_iv_noconst(ctx),
                              EVP_CIPHER_CTX_buf_noconst(ctx), &num,
                              dat->block);
    EVP_CIPHER_CTX_set_num(ctx, num);
2776
    return 1;
A
Andy Polyakov 已提交
2777 2778
}

2779 2780 2781
BLOCK_CIPHER_generic_pack(NID_aes, 128, 0)
    BLOCK_CIPHER_generic_pack(NID_aes, 192, 0)
    BLOCK_CIPHER_generic_pack(NID_aes, 256, 0)
2782 2783

static int aes_gcm_cleanup(EVP_CIPHER_CTX *c)
2784
{
2785
    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,c);
2786 2787
    if (gctx == NULL)
        return 0;
2788
    OPENSSL_cleanse(&gctx->gcm, sizeof(gctx->gcm));
2789
    if (gctx->iv != EVP_CIPHER_CTX_iv_noconst(c))
2790 2791 2792
        OPENSSL_free(gctx->iv);
    return 1;
}
2793

2794
/* increment counter (64-bit int) by 1 */
2795 2796 2797 2798 2799 2800 2801 2802 2803 2804 2805 2806 2807
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);
2808 2809
}

2810
static int aes_gcm_ctrl(EVP_CIPHER_CTX *c, int type, int arg, void *ptr)
2811
{
2812
    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,c);
2813 2814 2815 2816
    switch (type) {
    case EVP_CTRL_INIT:
        gctx->key_set = 0;
        gctx->iv_set = 0;
2817 2818
        gctx->ivlen = c->cipher->iv_len;
        gctx->iv = c->iv;
2819 2820 2821 2822 2823
        gctx->taglen = -1;
        gctx->iv_gen = 0;
        gctx->tls_aad_len = -1;
        return 1;

2824
    case EVP_CTRL_AEAD_SET_IVLEN:
2825 2826 2827 2828
        if (arg <= 0)
            return 0;
        /* Allocate memory for IV if needed */
        if ((arg > EVP_MAX_IV_LENGTH) && (arg > gctx->ivlen)) {
2829
            if (gctx->iv != c->iv)
2830
                OPENSSL_free(gctx->iv);
R
Rich Salz 已提交
2831 2832
            if ((gctx->iv = OPENSSL_malloc(arg)) == NULL) {
                EVPerr(EVP_F_AES_GCM_CTRL, ERR_R_MALLOC_FAILURE);
2833
                return 0;
R
Rich Salz 已提交
2834
            }
2835 2836 2837 2838
        }
        gctx->ivlen = arg;
        return 1;

2839
    case EVP_CTRL_AEAD_SET_TAG:
2840
        if (arg <= 0 || arg > 16 || c->encrypt)
2841
            return 0;
2842
        memcpy(c->buf, ptr, arg);
2843 2844 2845
        gctx->taglen = arg;
        return 1;

2846
    case EVP_CTRL_AEAD_GET_TAG:
2847
        if (arg <= 0 || arg > 16 || !c->encrypt
2848
            || gctx->taglen < 0)
2849
            return 0;
2850
        memcpy(ptr, c->buf, arg);
2851 2852 2853 2854 2855 2856 2857 2858 2859 2860 2861 2862 2863 2864 2865 2866 2867
        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);
2868
        if (c->encrypt && RAND_bytes(gctx->iv + arg, gctx->ivlen - arg) <= 0)
2869
            return 0;
2870 2871 2872 2873 2874 2875 2876 2877 2878 2879 2880 2881 2882 2883 2884 2885 2886 2887 2888
        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:
2889
        if (gctx->iv_gen == 0 || gctx->key_set == 0 || c->encrypt)
2890 2891 2892 2893 2894 2895 2896 2897
            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 */
2898
        if (arg != EVP_AEAD_TLS1_AAD_LEN)
2899
            return 0;
2900
        memcpy(c->buf, ptr, arg);
2901 2902
        gctx->tls_aad_len = arg;
        {
2903
            unsigned int len = c->buf[arg - 2] << 8 | c->buf[arg - 1];
2904
            /* Correct length for explicit IV */
A
Andy Polyakov 已提交
2905 2906
            if (len < EVP_GCM_TLS_EXPLICIT_IV_LEN)
                return 0;
2907 2908
            len -= EVP_GCM_TLS_EXPLICIT_IV_LEN;
            /* If decrypting correct for tag too */
2909
            if (!c->encrypt) {
A
Andy Polyakov 已提交
2910 2911
                if (len < EVP_GCM_TLS_TAG_LEN)
                    return 0;
2912
                len -= EVP_GCM_TLS_TAG_LEN;
A
Andy Polyakov 已提交
2913
            }
2914 2915
            c->buf[arg - 2] = len >> 8;
            c->buf[arg - 1] = len & 0xff;
2916 2917 2918 2919 2920 2921 2922
        }
        /* Extra padding: tag appended to record */
        return EVP_GCM_TLS_TAG_LEN;

    case EVP_CTRL_COPY:
        {
            EVP_CIPHER_CTX *out = ptr;
2923
            EVP_AES_GCM_CTX *gctx_out = EVP_C_DATA(EVP_AES_GCM_CTX,out);
2924 2925 2926 2927 2928
            if (gctx->gcm.key) {
                if (gctx->gcm.key != &gctx->ks)
                    return 0;
                gctx_out->gcm.key = &gctx_out->ks;
            }
2929 2930
            if (gctx->iv == c->iv)
                gctx_out->iv = out->iv;
2931
            else {
R
Rich Salz 已提交
2932 2933
                if ((gctx_out->iv = OPENSSL_malloc(gctx->ivlen)) == NULL) {
                    EVPerr(EVP_F_AES_GCM_CTRL, ERR_R_MALLOC_FAILURE);
2934
                    return 0;
R
Rich Salz 已提交
2935
                }
2936 2937 2938 2939 2940 2941 2942 2943 2944 2945
                memcpy(gctx_out->iv, gctx->iv, gctx->ivlen);
            }
            return 1;
        }

    default:
        return -1;

    }
}
2946 2947

static int aes_gcm_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
2948 2949
                            const unsigned char *iv, int enc)
{
2950
    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,ctx);
2951 2952 2953 2954
    if (!iv && !key)
        return 1;
    if (key) {
        do {
M
Matt Caswell 已提交
2955
#ifdef HWAES_CAPABLE
2956
            if (HWAES_CAPABLE) {
2957
                HWAES_set_encrypt_key(key, ctx->key_len * 8, &gctx->ks.ks);
2958 2959
                CRYPTO_gcm128_init(&gctx->gcm, &gctx->ks,
                                   (block128_f) HWAES_encrypt);
M
Matt Caswell 已提交
2960
# ifdef HWAES_ctr32_encrypt_blocks
2961
                gctx->ctr = (ctr128_f) HWAES_ctr32_encrypt_blocks;
M
Matt Caswell 已提交
2962
# else
2963
                gctx->ctr = NULL;
M
Matt Caswell 已提交
2964
# endif
2965 2966
                break;
            } else
M
Matt Caswell 已提交
2967 2968
#endif
#ifdef BSAES_CAPABLE
2969
            if (BSAES_CAPABLE) {
2970
                AES_set_encrypt_key(key, ctx->key_len * 8, &gctx->ks.ks);
2971 2972 2973 2974 2975
                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
2976 2977
#endif
#ifdef VPAES_CAPABLE
2978
            if (VPAES_CAPABLE) {
2979
                vpaes_set_encrypt_key(key, ctx->key_len * 8, &gctx->ks.ks);
2980 2981 2982 2983 2984
                CRYPTO_gcm128_init(&gctx->gcm, &gctx->ks,
                                   (block128_f) vpaes_encrypt);
                gctx->ctr = NULL;
                break;
            } else
M
Matt Caswell 已提交
2985
#endif
2986 2987
                (void)0;        /* terminate potentially open 'else' */

2988
            AES_set_encrypt_key(key, ctx->key_len * 8, &gctx->ks.ks);
2989 2990
            CRYPTO_gcm128_init(&gctx->gcm, &gctx->ks,
                               (block128_f) AES_encrypt);
M
Matt Caswell 已提交
2991
#ifdef AES_CTR_ASM
2992
            gctx->ctr = (ctr128_f) AES_ctr32_encrypt;
M
Matt Caswell 已提交
2993
#else
2994
            gctx->ctr = NULL;
M
Matt Caswell 已提交
2995
#endif
2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007 3008 3009 3010 3011 3012 3013 3014 3015 3016 3017 3018 3019 3020 3021
        } 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
3022 3023 3024 3025 3026 3027
 * 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,
3028 3029
                              const unsigned char *in, size_t len)
{
3030
    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,ctx);
3031 3032 3033 3034 3035 3036 3037 3038 3039
    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.
     */
3040 3041
    if (EVP_CIPHER_CTX_ctrl(ctx, ctx->encrypt ? EVP_CTRL_GCM_IV_GEN
                                              : EVP_CTRL_GCM_SET_IV_INV,
3042 3043 3044
                            EVP_GCM_TLS_EXPLICIT_IV_LEN, out) <= 0)
        goto err;
    /* Use saved AAD */
3045
    if (CRYPTO_gcm128_aad(&gctx->gcm, ctx->buf, gctx->tls_aad_len))
3046 3047 3048 3049 3050
        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;
3051
    if (ctx->encrypt) {
3052 3053 3054
        /* Encrypt payload */
        if (gctx->ctr) {
            size_t bulk = 0;
M
Matt Caswell 已提交
3055
#if defined(AES_GCM_ASM)
3056 3057 3058 3059 3060 3061 3062 3063 3064
            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
3065
#endif
3066 3067 3068 3069 3070 3071 3072
            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
3073
#if defined(AES_GCM_ASM2)
3074 3075 3076 3077 3078 3079 3080 3081 3082
            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
Matt Caswell 已提交
3083
#endif
3084 3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095
            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
3096
#if defined(AES_GCM_ASM)
3097 3098 3099 3100 3101 3102 3103 3104 3105
            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
Matt Caswell 已提交
3106
#endif
3107 3108 3109 3110 3111 3112 3113
            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
3114
#if defined(AES_GCM_ASM2)
3115 3116 3117 3118 3119 3120 3121 3122 3123
            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
3124
#endif
3125 3126 3127 3128 3129
            if (CRYPTO_gcm128_decrypt(&gctx->gcm,
                                      in + bulk, out + bulk, len - bulk))
                goto err;
        }
        /* Retrieve tag */
3130
        CRYPTO_gcm128_tag(&gctx->gcm, ctx->buf, EVP_GCM_TLS_TAG_LEN);
3131
        /* If tag mismatch wipe buffer */
3132
        if (CRYPTO_memcmp(ctx->buf, in + len, EVP_GCM_TLS_TAG_LEN)) {
3133 3134 3135 3136 3137 3138 3139 3140 3141 3142 3143
            OPENSSL_cleanse(out, len);
            goto err;
        }
        rv = len;
    }

 err:
    gctx->iv_set = 0;
    gctx->tls_aad_len = -1;
    return rv;
}
3144

3145
static int aes_gcm_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
3146 3147
                          const unsigned char *in, size_t len)
{
3148
    EVP_AES_GCM_CTX *gctx = EVP_C_DATA(EVP_AES_GCM_CTX,ctx);
3149 3150 3151 3152 3153 3154 3155 3156 3157 3158 3159 3160 3161
    /* 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;
3162
        } else if (ctx->encrypt) {
3163 3164
            if (gctx->ctr) {
                size_t bulk = 0;
M
Matt Caswell 已提交
3165
#if defined(AES_GCM_ASM)
3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178
                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
3179
#endif
3180 3181 3182 3183 3184 3185 3186
                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
3187
#if defined(AES_GCM_ASM2)
3188 3189 3190 3191 3192 3193 3194 3195 3196 3197 3198 3199 3200
                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
3201
#endif
3202 3203 3204 3205 3206 3207 3208
                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
3209
#if defined(AES_GCM_ASM)
3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221 3222
                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
3223
#endif
3224 3225 3226 3227 3228 3229 3230
                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
3231
#if defined(AES_GCM_ASM2)
3232 3233 3234 3235 3236 3237 3238 3239 3240 3241 3242 3243 3244
                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
3245
#endif
3246 3247 3248 3249 3250 3251 3252
                if (CRYPTO_gcm128_decrypt(&gctx->gcm,
                                          in + bulk, out + bulk, len - bulk))
                    return -1;
            }
        }
        return len;
    } else {
3253
        if (!ctx->encrypt) {
3254 3255
            if (gctx->taglen < 0)
                return -1;
3256
            if (CRYPTO_gcm128_finish(&gctx->gcm, ctx->buf, gctx->taglen) != 0)
3257 3258 3259 3260
                return -1;
            gctx->iv_set = 0;
            return 0;
        }
3261
        CRYPTO_gcm128_tag(&gctx->gcm, ctx->buf, 16);
3262 3263 3264 3265 3266 3267 3268 3269
        gctx->taglen = 16;
        /* Don't reuse the IV */
        gctx->iv_set = 0;
        return 0;
    }

}

M
Matt Caswell 已提交
3270
#define CUSTOM_FLAGS    (EVP_CIPH_FLAG_DEFAULT_ASN1 \
3271 3272 3273 3274 3275 3276 3277 3278 3279 3280
                | 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)
3281 3282

static int aes_xts_ctrl(EVP_CIPHER_CTX *c, int type, int arg, void *ptr)
3283
{
3284
    EVP_AES_XTS_CTX *xctx = EVP_C_DATA(EVP_AES_XTS_CTX,c);
3285 3286
    if (type == EVP_CTRL_COPY) {
        EVP_CIPHER_CTX *out = ptr;
3287
        EVP_AES_XTS_CTX *xctx_out = EVP_C_DATA(EVP_AES_XTS_CTX,out);
3288 3289 3290 3291 3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305
        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;
}
3306 3307

static int aes_xts_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
3308 3309
                            const unsigned char *iv, int enc)
{
3310
    EVP_AES_XTS_CTX *xctx = EVP_C_DATA(EVP_AES_XTS_CTX,ctx);
3311 3312 3313 3314 3315
    if (!iv && !key)
        return 1;

    if (key)
        do {
M
Matt Caswell 已提交
3316
#ifdef AES_XTS_ASM
3317
            xctx->stream = enc ? AES_xts_encrypt : AES_xts_decrypt;
M
Matt Caswell 已提交
3318
#else
3319
            xctx->stream = NULL;
M
Matt Caswell 已提交
3320
#endif
3321
            /* key_len is two AES keys */
M
Matt Caswell 已提交
3322
#ifdef HWAES_CAPABLE
3323 3324
            if (HWAES_CAPABLE) {
                if (enc) {
3325 3326
                    HWAES_set_encrypt_key(key,
                                          EVP_CIPHER_CTX_key_length(ctx) * 4,
3327 3328
                                          &xctx->ks1.ks);
                    xctx->xts.block1 = (block128_f) HWAES_encrypt;
3329 3330 3331
# ifdef HWAES_xts_encrypt
                    xctx->stream = HWAES_xts_encrypt;
# endif
3332
                } else {
3333 3334
                    HWAES_set_decrypt_key(key,
                                          EVP_CIPHER_CTX_key_length(ctx) * 4,
3335 3336
                                          &xctx->ks1.ks);
                    xctx->xts.block1 = (block128_f) HWAES_decrypt;
3337 3338 3339
# ifdef HWAES_xts_decrypt
                    xctx->stream = HWAES_xts_decrypt;
#endif
3340 3341
                }

3342 3343 3344
                HWAES_set_encrypt_key(key + EVP_CIPHER_CTX_key_length(ctx) / 2,
                                      EVP_CIPHER_CTX_key_length(ctx) * 4,
                                      &xctx->ks2.ks);
3345 3346 3347 3348 3349
                xctx->xts.block2 = (block128_f) HWAES_encrypt;

                xctx->xts.key1 = &xctx->ks1;
                break;
            } else
M
Matt Caswell 已提交
3350 3351
#endif
#ifdef BSAES_CAPABLE
3352 3353 3354
            if (BSAES_CAPABLE)
                xctx->stream = enc ? bsaes_xts_encrypt : bsaes_xts_decrypt;
            else
M
Matt Caswell 已提交
3355 3356
#endif
#ifdef VPAES_CAPABLE
3357 3358
            if (VPAES_CAPABLE) {
                if (enc) {
3359 3360
                    vpaes_set_encrypt_key(key,
                                          EVP_CIPHER_CTX_key_length(ctx) * 4,
3361 3362 3363
                                          &xctx->ks1.ks);
                    xctx->xts.block1 = (block128_f) vpaes_encrypt;
                } else {
3364 3365
                    vpaes_set_decrypt_key(key,
                                          EVP_CIPHER_CTX_key_length(ctx) * 4,
3366 3367 3368 3369
                                          &xctx->ks1.ks);
                    xctx->xts.block1 = (block128_f) vpaes_decrypt;
                }

3370 3371 3372
                vpaes_set_encrypt_key(key + EVP_CIPHER_CTX_key_length(ctx) / 2,
                                      EVP_CIPHER_CTX_key_length(ctx) * 4,
                                      &xctx->ks2.ks);
3373 3374 3375 3376 3377
                xctx->xts.block2 = (block128_f) vpaes_encrypt;

                xctx->xts.key1 = &xctx->ks1;
                break;
            } else
M
Matt Caswell 已提交
3378
#endif
3379 3380 3381
                (void)0;        /* terminate potentially open 'else' */

            if (enc) {
3382 3383
                AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 4,
                                    &xctx->ks1.ks);
3384 3385
                xctx->xts.block1 = (block128_f) AES_encrypt;
            } else {
3386 3387
                AES_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 4,
                                    &xctx->ks1.ks);
3388 3389 3390
                xctx->xts.block1 = (block128_f) AES_decrypt;
            }

3391 3392 3393
            AES_set_encrypt_key(key + EVP_CIPHER_CTX_key_length(ctx) / 2,
                                EVP_CIPHER_CTX_key_length(ctx) * 4,
                                &xctx->ks2.ks);
3394 3395 3396 3397 3398 3399 3400
            xctx->xts.block2 = (block128_f) AES_encrypt;

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

    if (iv) {
        xctx->xts.key2 = &xctx->ks2;
3401
        memcpy(EVP_CIPHER_CTX_iv_noconst(ctx), iv, 16);
3402 3403 3404 3405
    }

    return 1;
}
3406

3407
static int aes_xts_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
3408 3409
                          const unsigned char *in, size_t len)
{
3410
    EVP_AES_XTS_CTX *xctx = EVP_C_DATA(EVP_AES_XTS_CTX,ctx);
3411 3412 3413 3414 3415 3416
    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,
3417 3418 3419 3420 3421
                         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)))
3422 3423 3424 3425
        return 0;
    return 1;
}

M
Matt Caswell 已提交
3426
#define aes_xts_cleanup NULL
3427

M
Matt Caswell 已提交
3428
#define XTS_FLAGS       (EVP_CIPH_FLAG_DEFAULT_ASN1 | EVP_CIPH_CUSTOM_IV \
3429 3430 3431 3432 3433
                         | 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)
3434 3435

static int aes_ccm_ctrl(EVP_CIPHER_CTX *c, int type, int arg, void *ptr)
3436
{
3437
    EVP_AES_CCM_CTX *cctx = EVP_C_DATA(EVP_AES_CCM_CTX,c);
3438 3439 3440 3441 3442 3443 3444 3445
    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
3446 3447 3448 3449 3450 3451 3452
        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;
3453
        memcpy(EVP_CIPHER_CTX_buf_noconst(c), ptr, arg);
D
Dr. Stephen Henson 已提交
3454 3455
        cctx->tls_aad_len = arg;
        {
3456 3457 3458
            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
3459
            /* Correct length for explicit IV */
A
Andy Polyakov 已提交
3460 3461
            if (len < EVP_CCM_TLS_EXPLICIT_IV_LEN)
                return 0;
D
Dr. Stephen Henson 已提交
3462 3463
            len -= EVP_CCM_TLS_EXPLICIT_IV_LEN;
            /* If decrypting correct for tag too */
A
Andy Polyakov 已提交
3464 3465 3466
            if (!EVP_CIPHER_CTX_encrypting(c)) {
                if (len < cctx->M)
                    return 0;
D
Dr. Stephen Henson 已提交
3467
                len -= cctx->M;
A
Andy Polyakov 已提交
3468
            }
3469 3470
            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
3471 3472 3473 3474 3475 3476 3477 3478 3479
        }
        /* 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 */
3480
        memcpy(EVP_CIPHER_CTX_iv_noconst(c), ptr, arg);
3481 3482
        return 1;

3483
    case EVP_CTRL_AEAD_SET_IVLEN:
3484
        arg = 15 - arg;
B
Bernd Edlinger 已提交
3485
        /* fall thru */
3486 3487 3488 3489 3490 3491
    case EVP_CTRL_CCM_SET_L:
        if (arg < 2 || arg > 8)
            return 0;
        cctx->L = arg;
        return 1;

3492
    case EVP_CTRL_AEAD_SET_TAG:
3493 3494
        if ((arg & 1) || arg < 4 || arg > 16)
            return 0;
3495
        if (EVP_CIPHER_CTX_encrypting(c) && ptr)
3496 3497 3498
            return 0;
        if (ptr) {
            cctx->tag_set = 1;
3499
            memcpy(EVP_CIPHER_CTX_buf_noconst(c), ptr, arg);
3500 3501 3502 3503
        }
        cctx->M = arg;
        return 1;

3504
    case EVP_CTRL_AEAD_GET_TAG:
3505
        if (!EVP_CIPHER_CTX_encrypting(c) || !cctx->tag_set)
3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516
            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;
3517
            EVP_AES_CCM_CTX *cctx_out = EVP_C_DATA(EVP_AES_CCM_CTX,out);
3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530
            if (cctx->ccm.key) {
                if (cctx->ccm.key != &cctx->ks)
                    return 0;
                cctx_out->ccm.key = &cctx_out->ks;
            }
            return 1;
        }

    default:
        return -1;

    }
}
3531 3532

static int aes_ccm_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
3533 3534
                            const unsigned char *iv, int enc)
{
3535
    EVP_AES_CCM_CTX *cctx = EVP_C_DATA(EVP_AES_CCM_CTX,ctx);
3536 3537 3538 3539
    if (!iv && !key)
        return 1;
    if (key)
        do {
M
Matt Caswell 已提交
3540
#ifdef HWAES_CAPABLE
3541
            if (HWAES_CAPABLE) {
3542 3543
                HWAES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &cctx->ks.ks);
3544 3545 3546 3547 3548 3549 3550

                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
3551 3552
#endif
#ifdef VPAES_CAPABLE
3553
            if (VPAES_CAPABLE) {
3554 3555
                vpaes_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                      &cctx->ks.ks);
3556 3557 3558 3559 3560 3561
                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
3562
#endif
3563 3564
            AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                &cctx->ks.ks);
3565 3566 3567 3568 3569 3570
            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) {
3571
        memcpy(EVP_CIPHER_CTX_iv_noconst(ctx), iv, 15 - cctx->L);
3572 3573 3574 3575
        cctx->iv_set = 1;
    }
    return 1;
}
3576

D
Dr. Stephen Henson 已提交
3577 3578 3579
static int aes_ccm_tls_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
                              const unsigned char *in, size_t len)
{
3580
    EVP_AES_CCM_CTX *cctx = EVP_C_DATA(EVP_AES_CCM_CTX,ctx);
D
Dr. Stephen Henson 已提交
3581 3582 3583 3584 3585
    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) */
3586 3587 3588
    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
3589
    /* Get rest of IV from explicit IV */
3590 3591
    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
3592 3593
    /* Correct length value */
    len -= EVP_CCM_TLS_EXPLICIT_IV_LEN + cctx->M;
3594 3595
    if (CRYPTO_ccm128_setiv(ccm, EVP_CIPHER_CTX_iv_noconst(ctx), 15 - cctx->L,
                            len))
D
Dr. Stephen Henson 已提交
3596 3597
            return -1;
    /* Use saved AAD */
3598
    CRYPTO_ccm128_aad(ccm, EVP_CIPHER_CTX_buf_noconst(ctx), cctx->tls_aad_len);
D
Dr. Stephen Henson 已提交
3599 3600 3601
    /* Fix buffer to point to payload */
    in += EVP_CCM_TLS_EXPLICIT_IV_LEN;
    out += EVP_CCM_TLS_EXPLICIT_IV_LEN;
3602
    if (EVP_CIPHER_CTX_encrypting(ctx)) {
D
Dr. Stephen Henson 已提交
3603 3604 3605 3606 3607 3608 3609 3610 3611 3612 3613 3614 3615 3616 3617 3618 3619 3620 3621 3622 3623 3624
        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;
    }
}

3625
static int aes_ccm_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
3626 3627
                          const unsigned char *in, size_t len)
{
3628
    EVP_AES_CCM_CTX *cctx = EVP_C_DATA(EVP_AES_CCM_CTX,ctx);
3629 3630
    CCM128_CONTEXT *ccm = &cctx->ccm;
    /* If not set up, return error */
D
Dr. Stephen Henson 已提交
3631 3632 3633 3634 3635 3636
    if (!cctx->key_set)
        return -1;

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

3637 3638 3639 3640
    /* EVP_*Final() doesn't return any data */
    if (in == NULL && out != NULL)
        return 0;

D
Dr. Stephen Henson 已提交
3641
    if (!cctx->iv_set)
3642
        return -1;
D
Dr. Stephen Henson 已提交
3643

3644
    if (!EVP_CIPHER_CTX_encrypting(ctx) && !cctx->tag_set)
3645 3646 3647
        return -1;
    if (!out) {
        if (!in) {
3648 3649
            if (CRYPTO_ccm128_setiv(ccm, EVP_CIPHER_CTX_iv_noconst(ctx),
                                    15 - cctx->L, len))
3650 3651 3652 3653 3654 3655 3656 3657 3658 3659 3660 3661
                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) {
3662 3663
        if (CRYPTO_ccm128_setiv(ccm, EVP_CIPHER_CTX_iv_noconst(ctx),
                                15 - cctx->L, len))
3664 3665 3666
            return -1;
        cctx->len_set = 1;
    }
3667
    if (EVP_CIPHER_CTX_encrypting(ctx)) {
3668 3669 3670 3671 3672 3673 3674 3675 3676 3677 3678 3679 3680
        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)) {
3681 3682
                if (!CRYPTO_memcmp(tag, EVP_CIPHER_CTX_buf_noconst(ctx),
                                   cctx->M))
3683 3684 3685 3686 3687 3688 3689 3690 3691 3692 3693 3694
                    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
3695
#define aes_ccm_cleanup NULL
3696

D
Dr. Stephen Henson 已提交
3697 3698 3699 3700 3701 3702
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)
3703 3704 3705 3706 3707 3708 3709 3710 3711

typedef struct {
    union {
        double align;
        AES_KEY ks;
    } ks;
    /* Indicates if IV has been set */
    unsigned char *iv;
} EVP_AES_WRAP_CTX;
3712 3713

static int aes_wrap_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
3714 3715
                             const unsigned char *iv, int enc)
{
3716
    EVP_AES_WRAP_CTX *wctx = EVP_C_DATA(EVP_AES_WRAP_CTX,ctx);
3717 3718 3719
    if (!iv && !key)
        return 1;
    if (key) {
3720 3721 3722
        if (EVP_CIPHER_CTX_encrypting(ctx))
            AES_set_encrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                &wctx->ks.ks);
3723
        else
3724 3725
            AES_set_decrypt_key(key, EVP_CIPHER_CTX_key_length(ctx) * 8,
                                &wctx->ks.ks);
3726 3727 3728 3729
        if (!iv)
            wctx->iv = NULL;
    }
    if (iv) {
3730 3731
        memcpy(EVP_CIPHER_CTX_iv_noconst(ctx), iv, EVP_CIPHER_CTX_iv_length(ctx));
        wctx->iv = EVP_CIPHER_CTX_iv_noconst(ctx);
3732 3733 3734
    }
    return 1;
}
3735 3736

static int aes_wrap_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
3737 3738
                           const unsigned char *in, size_t inlen)
{
3739
    EVP_AES_WRAP_CTX *wctx = EVP_C_DATA(EVP_AES_WRAP_CTX,ctx);
3740 3741 3742 3743 3744 3745 3746 3747 3748 3749
    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 */
3750
    if (!EVP_CIPHER_CTX_encrypting(ctx) && (inlen < 16 || inlen & 0x7))
3751 3752 3753 3754
        return -1;
    /* If not padding input must be multiple of 8 */
    if (!pad && inlen & 0x7)
        return -1;
3755 3756 3757 3758
    if (is_partially_overlapping(out, in, inlen)) {
        EVPerr(EVP_F_AES_WRAP_CIPHER, EVP_R_PARTIALLY_OVERLAPPING);
        return 0;
    }
3759
    if (!out) {
3760
        if (EVP_CIPHER_CTX_encrypting(ctx)) {
3761 3762 3763 3764 3765 3766 3767 3768 3769 3770 3771 3772 3773 3774 3775
            /* 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) {
3776
        if (EVP_CIPHER_CTX_encrypting(ctx))
3777 3778 3779 3780 3781 3782 3783 3784
            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 {
3785
        if (EVP_CIPHER_CTX_encrypting(ctx))
3786 3787 3788 3789 3790 3791 3792 3793 3794
            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
3795
#define WRAP_FLAGS      (EVP_CIPH_WRAP_MODE \
3796 3797
                | EVP_CIPH_CUSTOM_IV | EVP_CIPH_FLAG_CUSTOM_CIPHER \
                | EVP_CIPH_ALWAYS_CALL_INIT | EVP_CIPH_FLAG_DEFAULT_ASN1)
3798 3799

static const EVP_CIPHER aes_128_wrap = {
3800 3801 3802 3803 3804 3805 3806
    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
};
3807 3808

const EVP_CIPHER *EVP_aes_128_wrap(void)
3809 3810 3811
{
    return &aes_128_wrap;
}
3812 3813

static const EVP_CIPHER aes_192_wrap = {
3814 3815 3816 3817 3818 3819 3820
    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
};
3821 3822

const EVP_CIPHER *EVP_aes_192_wrap(void)
3823 3824 3825
{
    return &aes_192_wrap;
}
3826 3827

static const EVP_CIPHER aes_256_wrap = {
3828 3829 3830 3831 3832 3833 3834
    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
};
3835 3836

const EVP_CIPHER *EVP_aes_256_wrap(void)
3837 3838 3839
{
    return &aes_256_wrap;
}
3840

D
Dr. Stephen Henson 已提交
3841
static const EVP_CIPHER aes_128_wrap_pad = {
3842 3843 3844 3845 3846 3847 3848
    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
3849 3850

const EVP_CIPHER *EVP_aes_128_wrap_pad(void)
3851 3852 3853
{
    return &aes_128_wrap_pad;
}
D
Dr. Stephen Henson 已提交
3854 3855

static const EVP_CIPHER aes_192_wrap_pad = {
3856 3857 3858 3859 3860 3861 3862
    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
3863 3864

const EVP_CIPHER *EVP_aes_192_wrap_pad(void)
3865 3866 3867
{
    return &aes_192_wrap_pad;
}
D
Dr. Stephen Henson 已提交
3868 3869

static const EVP_CIPHER aes_256_wrap_pad = {
3870 3871 3872 3873 3874 3875 3876
    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
};
D
Dr. Stephen Henson 已提交
3877 3878

const EVP_CIPHER *EVP_aes_256_wrap_pad(void)
3879 3880 3881
{
    return &aes_256_wrap_pad;
}
D
Dr. Stephen Henson 已提交
3882

M
Matt Caswell 已提交
3883
#ifndef OPENSSL_NO_OCB
M
Matt Caswell 已提交
3884
static int aes_ocb_ctrl(EVP_CIPHER_CTX *c, int type, int arg, void *ptr)
3885
{
3886
    EVP_AES_OCB_CTX *octx = EVP_C_DATA(EVP_AES_OCB_CTX,c);
3887 3888 3889 3890 3891 3892 3893
    EVP_CIPHER_CTX *newc;
    EVP_AES_OCB_CTX *new_octx;

    switch (type) {
    case EVP_CTRL_INIT:
        octx->key_set = 0;
        octx->iv_set = 0;
3894 3895
        octx->ivlen = EVP_CIPHER_CTX_iv_length(c);
        octx->iv = EVP_CIPHER_CTX_iv_noconst(c);
3896 3897 3898 3899 3900
        octx->taglen = 16;
        octx->data_buf_len = 0;
        octx->aad_buf_len = 0;
        return 1;

3901
    case EVP_CTRL_AEAD_SET_IVLEN:
3902 3903 3904 3905 3906 3907 3908
        /* IV len must be 1 to 15 */
        if (arg <= 0 || arg > 15)
            return 0;

        octx->ivlen = arg;
        return 1;

3909
    case EVP_CTRL_AEAD_SET_TAG:
3910 3911 3912 3913 3914 3915 3916 3917
        if (!ptr) {
            /* Tag len must be 0 to 16 */
            if (arg < 0 || arg > 16)
                return 0;

            octx->taglen = arg;
            return 1;
        }
3918
        if (arg != octx->taglen || EVP_CIPHER_CTX_encrypting(c))
3919 3920 3921 3922
            return 0;
        memcpy(octx->tag, ptr, arg);
        return 1;

3923
    case EVP_CTRL_AEAD_GET_TAG:
3924
        if (arg != octx->taglen || !EVP_CIPHER_CTX_encrypting(c))
3925 3926 3927 3928 3929 3930 3931
            return 0;

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

    case EVP_CTRL_COPY:
        newc = (EVP_CIPHER_CTX *)ptr;
3932
        new_octx = EVP_C_DATA(EVP_AES_OCB_CTX,newc);
3933
        return CRYPTO_ocb128_copy_ctx(&new_octx->ocb, &octx->ocb,
3934 3935
                                      &new_octx->ksenc.ks,
                                      &new_octx->ksdec.ks);
3936 3937 3938 3939 3940 3941

    default:
        return -1;

    }
}
M
Matt Caswell 已提交
3942

M
Matt Caswell 已提交
3943 3944
# ifdef HWAES_CAPABLE
#  ifdef HWAES_ocb_encrypt
3945 3946 3947 3948 3949 3950
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]);
M
Matt Caswell 已提交
3951
#  else
3952
#    define HWAES_ocb_encrypt ((ocb128_f)NULL)
M
Matt Caswell 已提交
3953 3954
#  endif
#  ifdef HWAES_ocb_decrypt
3955 3956 3957 3958 3959 3960
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]);
M
Matt Caswell 已提交
3961
#  else
3962
#    define HWAES_ocb_decrypt ((ocb128_f)NULL)
3963
#  endif
M
Matt Caswell 已提交
3964
# endif
3965

M
Matt Caswell 已提交
3966
static int aes_ocb_init_key(EVP_CIPHER_CTX *ctx, const unsigned char *key,
3967 3968
                            const unsigned char *iv, int enc)
{
3969
    EVP_AES_OCB_CTX *octx = EVP_C_DATA(EVP_AES_OCB_CTX,ctx);
3970 3971 3972 3973 3974 3975 3976 3977 3978
    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.
             */
M
Matt Caswell 已提交
3979
# ifdef HWAES_CAPABLE
3980
            if (HWAES_CAPABLE) {
3981 3982 3983 3984
                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);
3985 3986 3987 3988 3989 3990 3991 3992 3993
                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;
            }
M
Matt Caswell 已提交
3994 3995
# endif
# ifdef VPAES_CAPABLE
3996
            if (VPAES_CAPABLE) {
3997 3998 3999 4000
                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);
4001 4002 4003
                if (!CRYPTO_ocb128_init(&octx->ocb,
                                        &octx->ksenc.ks, &octx->ksdec.ks,
                                        (block128_f) vpaes_encrypt,
4004 4005
                                        (block128_f) vpaes_decrypt,
                                        NULL))
4006 4007 4008
                    return 0;
                break;
            }
M
Matt Caswell 已提交
4009
# endif
4010 4011 4012 4013
            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);
4014 4015
            if (!CRYPTO_ocb128_init(&octx->ocb,
                                    &octx->ksenc.ks, &octx->ksdec.ks,
4016
                                    (block128_f) AES_encrypt,
4017 4018
                                    (block128_f) AES_decrypt,
                                    NULL))
4019 4020 4021 4022 4023 4024 4025 4026 4027 4028 4029 4030 4031 4032 4033 4034 4035 4036 4037 4038 4039 4040 4041 4042 4043 4044
                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
4045 4046

static int aes_ocb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out,
4047 4048 4049 4050 4051 4052
                          const unsigned char *in, size_t len)
{
    unsigned char *buf;
    int *buf_len;
    int written_len = 0;
    size_t trailing_len;
4053
    EVP_AES_OCB_CTX *octx = EVP_C_DATA(EVP_AES_OCB_CTX,ctx);
4054 4055 4056 4057 4058 4059 4060 4061

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

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

4062
    if (in != NULL) {
4063 4064 4065 4066 4067 4068 4069 4070 4071 4072 4073 4074 4075 4076
        /*
         * 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);
4077 4078 4079 4080 4081

            if (is_partially_overlapping(out + *buf_len, in, len)) {
                EVPerr(EVP_F_AES_OCB_CIPHER, EVP_R_PARTIALLY_OVERLAPPING);
                return 0;
            }
4082 4083 4084 4085 4086 4087
        }

        /*
         * If we've got a partially filled buffer from a previous call then
         * use that data first
         */
4088
        if (*buf_len > 0) {
4089 4090
            unsigned int remaining;

4091
            remaining = AES_BLOCK_SIZE - (*buf_len);
4092 4093 4094 4095 4096 4097 4098 4099 4100 4101 4102 4103 4104
            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) {
4105
                if (!CRYPTO_ocb128_aad(&octx->ocb, buf, AES_BLOCK_SIZE))
4106
                    return -1;
4107
            } else if (EVP_CIPHER_CTX_encrypting(ctx)) {
4108 4109
                if (!CRYPTO_ocb128_encrypt(&octx->ocb, buf, out,
                                           AES_BLOCK_SIZE))
4110 4111
                    return -1;
            } else {
4112 4113
                if (!CRYPTO_ocb128_decrypt(&octx->ocb, buf, out,
                                           AES_BLOCK_SIZE))
4114 4115
                    return -1;
            }
4116
            written_len = AES_BLOCK_SIZE;
4117
            *buf_len = 0;
4118 4119
            if (out != NULL)
                out += AES_BLOCK_SIZE;
4120 4121 4122
        }

        /* Do we have a partial block to handle at the end? */
4123
        trailing_len = len % AES_BLOCK_SIZE;
4124 4125 4126 4127 4128 4129 4130 4131

        /*
         * 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;
4132
            } else if (EVP_CIPHER_CTX_encrypting(ctx)) {
4133 4134 4135 4136 4137 4138 4139 4140 4141 4142 4143 4144 4145
                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 */
4146
        if (trailing_len > 0) {
4147 4148 4149 4150 4151 4152 4153 4154 4155 4156
            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
         */
4157
        if (octx->data_buf_len > 0) {
4158
            if (EVP_CIPHER_CTX_encrypting(ctx)) {
4159 4160 4161 4162 4163 4164 4165 4166 4167 4168 4169
                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;
        }
4170
        if (octx->aad_buf_len > 0) {
4171 4172 4173 4174 4175 4176
            if (!CRYPTO_ocb128_aad
                (&octx->ocb, octx->aad_buf, octx->aad_buf_len))
                return -1;
            octx->aad_buf_len = 0;
        }
        /* If decrypting then verify */
4177
        if (!EVP_CIPHER_CTX_encrypting(ctx)) {
4178 4179 4180 4181 4182 4183 4184 4185 4186 4187 4188 4189 4190 4191 4192 4193
            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;
    }
}
M
Matt Caswell 已提交
4194 4195

static int aes_ocb_cleanup(EVP_CIPHER_CTX *c)
4196
{
4197
    EVP_AES_OCB_CTX *octx = EVP_C_DATA(EVP_AES_OCB_CTX,c);
4198 4199 4200
    CRYPTO_ocb128_cleanup(&octx->ocb);
    return 1;
}
M
Matt Caswell 已提交
4201

M
Matt Caswell 已提交
4202 4203 4204 4205 4206 4207
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)
M
Matt Caswell 已提交
4208
#endif                         /* OPENSSL_NO_OCB */