crypto: switch to modern nettle AES APIs
The aes_ctx struct and aes_* functions have been deprecated in nettle 3.5, in favour of keysize specific functions which were introduced first in nettle 3.0. Switch QEMU code to use the new APIs and add some backcompat defines such that it still builds on nettle 2.7 Reviewed-by: Alex Bennée <alex.bennee@linaro.org> Tested-by: Alex Bennée <alex.bennee@linaro.org> Signed-off-by: Daniel P. Berrangé <berrange@redhat.com>
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@ -42,29 +42,89 @@ typedef void * cipher_ctx_t;
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typedef unsigned cipher_length_t;
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#define cast5_set_key cast128_set_key
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#define aes128_ctx aes_ctx
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#define aes192_ctx aes_ctx
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#define aes256_ctx aes_ctx
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#define aes128_set_encrypt_key(c, k) \
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aes_set_encrypt_key(c, 16, k)
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#define aes192_set_encrypt_key(c, k) \
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aes_set_encrypt_key(c, 24, k)
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#define aes256_set_encrypt_key(c, k) \
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aes_set_encrypt_key(c, 32, k)
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#define aes128_set_decrypt_key(c, k) \
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aes_set_decrypt_key(c, 16, k)
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#define aes192_set_decrypt_key(c, k) \
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aes_set_decrypt_key(c, 24, k)
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#define aes256_set_decrypt_key(c, k) \
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aes_set_decrypt_key(c, 32, k)
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#define aes128_encrypt aes_encrypt
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#define aes192_encrypt aes_encrypt
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#define aes256_encrypt aes_encrypt
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#define aes128_decrypt aes_decrypt
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#define aes192_decrypt aes_decrypt
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#define aes256_decrypt aes_decrypt
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#else
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typedef nettle_cipher_func * QCryptoCipherNettleFuncNative;
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typedef const void * cipher_ctx_t;
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typedef size_t cipher_length_t;
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#endif
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typedef struct QCryptoNettleAES {
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struct aes_ctx enc;
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struct aes_ctx dec;
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} QCryptoNettleAES;
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typedef struct QCryptoNettleAES128 {
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struct aes128_ctx enc;
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struct aes128_ctx dec;
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} QCryptoNettleAES128;
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static void aes_encrypt_native(cipher_ctx_t ctx, cipher_length_t length,
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uint8_t *dst, const uint8_t *src)
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typedef struct QCryptoNettleAES192 {
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struct aes192_ctx enc;
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struct aes192_ctx dec;
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} QCryptoNettleAES192;
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typedef struct QCryptoNettleAES256 {
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struct aes256_ctx enc;
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struct aes256_ctx dec;
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} QCryptoNettleAES256;
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static void aes128_encrypt_native(cipher_ctx_t ctx, cipher_length_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES *aesctx = ctx;
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aes_encrypt(&aesctx->enc, length, dst, src);
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const QCryptoNettleAES128 *aesctx = ctx;
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aes128_encrypt(&aesctx->enc, length, dst, src);
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}
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static void aes_decrypt_native(cipher_ctx_t ctx, cipher_length_t length,
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static void aes128_decrypt_native(cipher_ctx_t ctx, cipher_length_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES128 *aesctx = ctx;
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aes128_decrypt(&aesctx->dec, length, dst, src);
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}
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static void aes192_encrypt_native(cipher_ctx_t ctx, cipher_length_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES *aesctx = ctx;
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aes_decrypt(&aesctx->dec, length, dst, src);
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const QCryptoNettleAES192 *aesctx = ctx;
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aes192_encrypt(&aesctx->enc, length, dst, src);
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}
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static void aes192_decrypt_native(cipher_ctx_t ctx, cipher_length_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES192 *aesctx = ctx;
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aes192_decrypt(&aesctx->dec, length, dst, src);
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}
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static void aes256_encrypt_native(cipher_ctx_t ctx, cipher_length_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES256 *aesctx = ctx;
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aes256_encrypt(&aesctx->enc, length, dst, src);
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}
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static void aes256_decrypt_native(cipher_ctx_t ctx, cipher_length_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES256 *aesctx = ctx;
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aes256_decrypt(&aesctx->dec, length, dst, src);
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}
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static void des_encrypt_native(cipher_ctx_t ctx, cipher_length_t length,
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@ -127,18 +187,46 @@ static void twofish_decrypt_native(cipher_ctx_t ctx, cipher_length_t length,
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twofish_decrypt(ctx, length, dst, src);
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}
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static void aes_encrypt_wrapper(const void *ctx, size_t length,
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static void aes128_encrypt_wrapper(const void *ctx, size_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES *aesctx = ctx;
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aes_encrypt(&aesctx->enc, length, dst, src);
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const QCryptoNettleAES128 *aesctx = ctx;
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aes128_encrypt(&aesctx->enc, length, dst, src);
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}
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static void aes_decrypt_wrapper(const void *ctx, size_t length,
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static void aes128_decrypt_wrapper(const void *ctx, size_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES *aesctx = ctx;
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aes_decrypt(&aesctx->dec, length, dst, src);
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const QCryptoNettleAES128 *aesctx = ctx;
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aes128_decrypt(&aesctx->dec, length, dst, src);
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}
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static void aes192_encrypt_wrapper(const void *ctx, size_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES192 *aesctx = ctx;
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aes192_encrypt(&aesctx->enc, length, dst, src);
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}
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static void aes192_decrypt_wrapper(const void *ctx, size_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES192 *aesctx = ctx;
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aes192_decrypt(&aesctx->dec, length, dst, src);
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}
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static void aes256_encrypt_wrapper(const void *ctx, size_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES256 *aesctx = ctx;
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aes256_encrypt(&aesctx->enc, length, dst, src);
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}
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static void aes256_decrypt_wrapper(const void *ctx, size_t length,
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uint8_t *dst, const uint8_t *src)
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{
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const QCryptoNettleAES256 *aesctx = ctx;
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aes256_decrypt(&aesctx->dec, length, dst, src);
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}
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static void des_encrypt_wrapper(const void *ctx, size_t length,
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@ -319,34 +407,94 @@ static QCryptoCipherNettle *qcrypto_cipher_ctx_new(QCryptoCipherAlgorithm alg,
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break;
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case QCRYPTO_CIPHER_ALG_AES_128:
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case QCRYPTO_CIPHER_ALG_AES_192:
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case QCRYPTO_CIPHER_ALG_AES_256:
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ctx->ctx = g_new0(QCryptoNettleAES, 1);
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ctx->ctx = g_new0(QCryptoNettleAES128, 1);
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if (mode == QCRYPTO_CIPHER_MODE_XTS) {
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ctx->ctx_tweak = g_new0(QCryptoNettleAES, 1);
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ctx->ctx_tweak = g_new0(QCryptoNettleAES128, 1);
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nkey /= 2;
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aes_set_encrypt_key(&((QCryptoNettleAES *)ctx->ctx)->enc,
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nkey, key);
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aes_set_decrypt_key(&((QCryptoNettleAES *)ctx->ctx)->dec,
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nkey, key);
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aes128_set_encrypt_key(&((QCryptoNettleAES128 *)ctx->ctx)->enc,
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key);
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aes128_set_decrypt_key(&((QCryptoNettleAES128 *)ctx->ctx)->dec,
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key);
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aes_set_encrypt_key(&((QCryptoNettleAES *)ctx->ctx_tweak)->enc,
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nkey, key + nkey);
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aes_set_decrypt_key(&((QCryptoNettleAES *)ctx->ctx_tweak)->dec,
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nkey, key + nkey);
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aes128_set_encrypt_key(&((QCryptoNettleAES128 *)ctx->ctx_tweak)->
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enc, key + nkey);
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aes128_set_decrypt_key(&((QCryptoNettleAES128 *)ctx->ctx_tweak)->
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dec, key + nkey);
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} else {
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aes_set_encrypt_key(&((QCryptoNettleAES *)ctx->ctx)->enc,
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nkey, key);
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aes_set_decrypt_key(&((QCryptoNettleAES *)ctx->ctx)->dec,
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nkey, key);
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aes128_set_encrypt_key(&((QCryptoNettleAES128 *)ctx->ctx)->enc,
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key);
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aes128_set_decrypt_key(&((QCryptoNettleAES128 *)ctx->ctx)->dec,
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key);
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}
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ctx->alg_encrypt_native = aes_encrypt_native;
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ctx->alg_decrypt_native = aes_decrypt_native;
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ctx->alg_encrypt_wrapper = aes_encrypt_wrapper;
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ctx->alg_decrypt_wrapper = aes_decrypt_wrapper;
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ctx->alg_encrypt_native = aes128_encrypt_native;
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ctx->alg_decrypt_native = aes128_decrypt_native;
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ctx->alg_encrypt_wrapper = aes128_encrypt_wrapper;
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ctx->alg_decrypt_wrapper = aes128_decrypt_wrapper;
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ctx->blocksize = AES_BLOCK_SIZE;
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break;
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case QCRYPTO_CIPHER_ALG_AES_192:
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ctx->ctx = g_new0(QCryptoNettleAES192, 1);
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if (mode == QCRYPTO_CIPHER_MODE_XTS) {
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ctx->ctx_tweak = g_new0(QCryptoNettleAES192, 1);
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nkey /= 2;
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aes192_set_encrypt_key(&((QCryptoNettleAES192 *)ctx->ctx)->enc,
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key);
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aes192_set_decrypt_key(&((QCryptoNettleAES192 *)ctx->ctx)->dec,
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key);
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aes192_set_encrypt_key(&((QCryptoNettleAES192 *)ctx->ctx_tweak)->
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enc, key + nkey);
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aes192_set_decrypt_key(&((QCryptoNettleAES192 *)ctx->ctx_tweak)->
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dec, key + nkey);
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} else {
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aes192_set_encrypt_key(&((QCryptoNettleAES192 *)ctx->ctx)->enc,
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key);
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aes192_set_decrypt_key(&((QCryptoNettleAES192 *)ctx->ctx)->dec,
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key);
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}
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ctx->alg_encrypt_native = aes192_encrypt_native;
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ctx->alg_decrypt_native = aes192_decrypt_native;
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ctx->alg_encrypt_wrapper = aes192_encrypt_wrapper;
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ctx->alg_decrypt_wrapper = aes192_decrypt_wrapper;
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ctx->blocksize = AES_BLOCK_SIZE;
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break;
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case QCRYPTO_CIPHER_ALG_AES_256:
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ctx->ctx = g_new0(QCryptoNettleAES256, 1);
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if (mode == QCRYPTO_CIPHER_MODE_XTS) {
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ctx->ctx_tweak = g_new0(QCryptoNettleAES256, 1);
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nkey /= 2;
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aes256_set_encrypt_key(&((QCryptoNettleAES256 *)ctx->ctx)->enc,
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key);
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aes256_set_decrypt_key(&((QCryptoNettleAES256 *)ctx->ctx)->dec,
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key);
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aes256_set_encrypt_key(&((QCryptoNettleAES256 *)ctx->ctx_tweak)->
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enc, key + nkey);
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aes256_set_decrypt_key(&((QCryptoNettleAES256 *)ctx->ctx_tweak)->
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dec, key + nkey);
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} else {
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aes256_set_encrypt_key(&((QCryptoNettleAES256 *)ctx->ctx)->enc,
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key);
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aes256_set_decrypt_key(&((QCryptoNettleAES256 *)ctx->ctx)->dec,
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key);
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}
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ctx->alg_encrypt_native = aes256_encrypt_native;
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ctx->alg_decrypt_native = aes256_decrypt_native;
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ctx->alg_encrypt_wrapper = aes256_encrypt_wrapper;
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ctx->alg_decrypt_wrapper = aes256_decrypt_wrapper;
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ctx->blocksize = AES_BLOCK_SIZE;
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break;
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