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24e1959062
Introduce asymmetric service definition, asymmetric operations and several well known algorithms. Co-developed-by: lei he <helei.sig11@bytedance.com> Signed-off-by: lei he <helei.sig11@bytedance.com> Signed-off-by: zhenwei pi <pizhenwei@bytedance.com> Link: https://lore.kernel.org/r/20220302033917.1295334-3-pizhenwei@bytedance.com Signed-off-by: Michael S. Tsirkin <mst@redhat.com> Reviewed-by: Gonglei <arei.gonglei@huawei.com>
530 lines
16 KiB
C
530 lines
16 KiB
C
#ifndef _VIRTIO_CRYPTO_H
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#define _VIRTIO_CRYPTO_H
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/* This header is BSD licensed so anyone can use the definitions to implement
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* compatible drivers/servers.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. Neither the name of IBM nor the names of its contributors
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* may be used to endorse or promote products derived from this software
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* without specific prior written permission.
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
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* FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL IBM OR
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* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
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* USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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* ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
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* OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*/
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#include <linux/types.h>
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#include <linux/virtio_types.h>
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#include <linux/virtio_ids.h>
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#include <linux/virtio_config.h>
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#define VIRTIO_CRYPTO_SERVICE_CIPHER 0
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#define VIRTIO_CRYPTO_SERVICE_HASH 1
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#define VIRTIO_CRYPTO_SERVICE_MAC 2
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#define VIRTIO_CRYPTO_SERVICE_AEAD 3
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#define VIRTIO_CRYPTO_SERVICE_AKCIPHER 4
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#define VIRTIO_CRYPTO_OPCODE(service, op) (((service) << 8) | (op))
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struct virtio_crypto_ctrl_header {
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#define VIRTIO_CRYPTO_CIPHER_CREATE_SESSION \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_CIPHER, 0x02)
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#define VIRTIO_CRYPTO_CIPHER_DESTROY_SESSION \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_CIPHER, 0x03)
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#define VIRTIO_CRYPTO_HASH_CREATE_SESSION \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_HASH, 0x02)
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#define VIRTIO_CRYPTO_HASH_DESTROY_SESSION \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_HASH, 0x03)
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#define VIRTIO_CRYPTO_MAC_CREATE_SESSION \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_MAC, 0x02)
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#define VIRTIO_CRYPTO_MAC_DESTROY_SESSION \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_MAC, 0x03)
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#define VIRTIO_CRYPTO_AEAD_CREATE_SESSION \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_AEAD, 0x02)
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#define VIRTIO_CRYPTO_AEAD_DESTROY_SESSION \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_AEAD, 0x03)
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#define VIRTIO_CRYPTO_AKCIPHER_CREATE_SESSION \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_AKCIPHER, 0x04)
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#define VIRTIO_CRYPTO_AKCIPHER_DESTROY_SESSION \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_AKCIPHER, 0x05)
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__le32 opcode;
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__le32 algo;
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__le32 flag;
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/* data virtqueue id */
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__le32 queue_id;
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};
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struct virtio_crypto_cipher_session_para {
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#define VIRTIO_CRYPTO_NO_CIPHER 0
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#define VIRTIO_CRYPTO_CIPHER_ARC4 1
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#define VIRTIO_CRYPTO_CIPHER_AES_ECB 2
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#define VIRTIO_CRYPTO_CIPHER_AES_CBC 3
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#define VIRTIO_CRYPTO_CIPHER_AES_CTR 4
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#define VIRTIO_CRYPTO_CIPHER_DES_ECB 5
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#define VIRTIO_CRYPTO_CIPHER_DES_CBC 6
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#define VIRTIO_CRYPTO_CIPHER_3DES_ECB 7
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#define VIRTIO_CRYPTO_CIPHER_3DES_CBC 8
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#define VIRTIO_CRYPTO_CIPHER_3DES_CTR 9
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#define VIRTIO_CRYPTO_CIPHER_KASUMI_F8 10
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#define VIRTIO_CRYPTO_CIPHER_SNOW3G_UEA2 11
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#define VIRTIO_CRYPTO_CIPHER_AES_F8 12
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#define VIRTIO_CRYPTO_CIPHER_AES_XTS 13
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#define VIRTIO_CRYPTO_CIPHER_ZUC_EEA3 14
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__le32 algo;
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/* length of key */
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__le32 keylen;
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#define VIRTIO_CRYPTO_OP_ENCRYPT 1
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#define VIRTIO_CRYPTO_OP_DECRYPT 2
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/* encrypt or decrypt */
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__le32 op;
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__le32 padding;
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};
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struct virtio_crypto_session_input {
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/* Device-writable part */
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__le64 session_id;
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__le32 status;
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__le32 padding;
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};
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struct virtio_crypto_cipher_session_req {
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struct virtio_crypto_cipher_session_para para;
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__u8 padding[32];
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};
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struct virtio_crypto_hash_session_para {
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#define VIRTIO_CRYPTO_NO_HASH 0
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#define VIRTIO_CRYPTO_HASH_MD5 1
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#define VIRTIO_CRYPTO_HASH_SHA1 2
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#define VIRTIO_CRYPTO_HASH_SHA_224 3
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#define VIRTIO_CRYPTO_HASH_SHA_256 4
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#define VIRTIO_CRYPTO_HASH_SHA_384 5
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#define VIRTIO_CRYPTO_HASH_SHA_512 6
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#define VIRTIO_CRYPTO_HASH_SHA3_224 7
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#define VIRTIO_CRYPTO_HASH_SHA3_256 8
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#define VIRTIO_CRYPTO_HASH_SHA3_384 9
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#define VIRTIO_CRYPTO_HASH_SHA3_512 10
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#define VIRTIO_CRYPTO_HASH_SHA3_SHAKE128 11
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#define VIRTIO_CRYPTO_HASH_SHA3_SHAKE256 12
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__le32 algo;
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/* hash result length */
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__le32 hash_result_len;
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__u8 padding[8];
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};
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struct virtio_crypto_hash_create_session_req {
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struct virtio_crypto_hash_session_para para;
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__u8 padding[40];
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};
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struct virtio_crypto_mac_session_para {
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#define VIRTIO_CRYPTO_NO_MAC 0
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#define VIRTIO_CRYPTO_MAC_HMAC_MD5 1
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#define VIRTIO_CRYPTO_MAC_HMAC_SHA1 2
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#define VIRTIO_CRYPTO_MAC_HMAC_SHA_224 3
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#define VIRTIO_CRYPTO_MAC_HMAC_SHA_256 4
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#define VIRTIO_CRYPTO_MAC_HMAC_SHA_384 5
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#define VIRTIO_CRYPTO_MAC_HMAC_SHA_512 6
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#define VIRTIO_CRYPTO_MAC_CMAC_3DES 25
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#define VIRTIO_CRYPTO_MAC_CMAC_AES 26
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#define VIRTIO_CRYPTO_MAC_KASUMI_F9 27
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#define VIRTIO_CRYPTO_MAC_SNOW3G_UIA2 28
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#define VIRTIO_CRYPTO_MAC_GMAC_AES 41
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#define VIRTIO_CRYPTO_MAC_GMAC_TWOFISH 42
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#define VIRTIO_CRYPTO_MAC_CBCMAC_AES 49
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#define VIRTIO_CRYPTO_MAC_CBCMAC_KASUMI_F9 50
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#define VIRTIO_CRYPTO_MAC_XCBC_AES 53
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__le32 algo;
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/* hash result length */
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__le32 hash_result_len;
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/* length of authenticated key */
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__le32 auth_key_len;
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__le32 padding;
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};
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struct virtio_crypto_mac_create_session_req {
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struct virtio_crypto_mac_session_para para;
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__u8 padding[40];
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};
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struct virtio_crypto_aead_session_para {
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#define VIRTIO_CRYPTO_NO_AEAD 0
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#define VIRTIO_CRYPTO_AEAD_GCM 1
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#define VIRTIO_CRYPTO_AEAD_CCM 2
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#define VIRTIO_CRYPTO_AEAD_CHACHA20_POLY1305 3
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__le32 algo;
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/* length of key */
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__le32 key_len;
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/* hash result length */
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__le32 hash_result_len;
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/* length of the additional authenticated data (AAD) in bytes */
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__le32 aad_len;
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/* encrypt or decrypt, See above VIRTIO_CRYPTO_OP_* */
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__le32 op;
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__le32 padding;
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};
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struct virtio_crypto_aead_create_session_req {
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struct virtio_crypto_aead_session_para para;
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__u8 padding[32];
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};
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struct virtio_crypto_rsa_session_para {
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#define VIRTIO_CRYPTO_RSA_RAW_PADDING 0
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#define VIRTIO_CRYPTO_RSA_PKCS1_PADDING 1
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__le32 padding_algo;
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#define VIRTIO_CRYPTO_RSA_NO_HASH 0
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#define VIRTIO_CRYPTO_RSA_MD2 1
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#define VIRTIO_CRYPTO_RSA_MD3 2
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#define VIRTIO_CRYPTO_RSA_MD4 3
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#define VIRTIO_CRYPTO_RSA_MD5 4
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#define VIRTIO_CRYPTO_RSA_SHA1 5
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#define VIRTIO_CRYPTO_RSA_SHA256 6
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#define VIRTIO_CRYPTO_RSA_SHA384 7
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#define VIRTIO_CRYPTO_RSA_SHA512 8
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#define VIRTIO_CRYPTO_RSA_SHA224 9
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__le32 hash_algo;
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};
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struct virtio_crypto_ecdsa_session_para {
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#define VIRTIO_CRYPTO_CURVE_UNKNOWN 0
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#define VIRTIO_CRYPTO_CURVE_NIST_P192 1
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#define VIRTIO_CRYPTO_CURVE_NIST_P224 2
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#define VIRTIO_CRYPTO_CURVE_NIST_P256 3
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#define VIRTIO_CRYPTO_CURVE_NIST_P384 4
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#define VIRTIO_CRYPTO_CURVE_NIST_P521 5
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__le32 curve_id;
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__le32 padding;
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};
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struct virtio_crypto_akcipher_session_para {
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#define VIRTIO_CRYPTO_NO_AKCIPHER 0
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#define VIRTIO_CRYPTO_AKCIPHER_RSA 1
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#define VIRTIO_CRYPTO_AKCIPHER_DSA 2
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#define VIRTIO_CRYPTO_AKCIPHER_ECDSA 3
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__le32 algo;
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#define VIRTIO_CRYPTO_AKCIPHER_KEY_TYPE_PUBLIC 1
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#define VIRTIO_CRYPTO_AKCIPHER_KEY_TYPE_PRIVATE 2
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__le32 keytype;
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__le32 keylen;
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union {
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struct virtio_crypto_rsa_session_para rsa;
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struct virtio_crypto_ecdsa_session_para ecdsa;
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} u;
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};
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struct virtio_crypto_akcipher_create_session_req {
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struct virtio_crypto_akcipher_session_para para;
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__u8 padding[36];
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};
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struct virtio_crypto_alg_chain_session_para {
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#define VIRTIO_CRYPTO_SYM_ALG_CHAIN_ORDER_HASH_THEN_CIPHER 1
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#define VIRTIO_CRYPTO_SYM_ALG_CHAIN_ORDER_CIPHER_THEN_HASH 2
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__le32 alg_chain_order;
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/* Plain hash */
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#define VIRTIO_CRYPTO_SYM_HASH_MODE_PLAIN 1
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/* Authenticated hash (mac) */
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#define VIRTIO_CRYPTO_SYM_HASH_MODE_AUTH 2
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/* Nested hash */
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#define VIRTIO_CRYPTO_SYM_HASH_MODE_NESTED 3
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__le32 hash_mode;
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struct virtio_crypto_cipher_session_para cipher_param;
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union {
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struct virtio_crypto_hash_session_para hash_param;
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struct virtio_crypto_mac_session_para mac_param;
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__u8 padding[16];
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} u;
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/* length of the additional authenticated data (AAD) in bytes */
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__le32 aad_len;
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__le32 padding;
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};
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struct virtio_crypto_alg_chain_session_req {
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struct virtio_crypto_alg_chain_session_para para;
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};
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struct virtio_crypto_sym_create_session_req {
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union {
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struct virtio_crypto_cipher_session_req cipher;
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struct virtio_crypto_alg_chain_session_req chain;
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__u8 padding[48];
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} u;
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/* Device-readable part */
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/* No operation */
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#define VIRTIO_CRYPTO_SYM_OP_NONE 0
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/* Cipher only operation on the data */
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#define VIRTIO_CRYPTO_SYM_OP_CIPHER 1
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/*
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* Chain any cipher with any hash or mac operation. The order
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* depends on the value of alg_chain_order param
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*/
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#define VIRTIO_CRYPTO_SYM_OP_ALGORITHM_CHAINING 2
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__le32 op_type;
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__le32 padding;
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};
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struct virtio_crypto_destroy_session_req {
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/* Device-readable part */
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__le64 session_id;
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__u8 padding[48];
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};
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/* The request of the control virtqueue's packet */
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struct virtio_crypto_op_ctrl_req {
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struct virtio_crypto_ctrl_header header;
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union {
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struct virtio_crypto_sym_create_session_req
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sym_create_session;
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struct virtio_crypto_hash_create_session_req
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hash_create_session;
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struct virtio_crypto_mac_create_session_req
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mac_create_session;
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struct virtio_crypto_aead_create_session_req
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aead_create_session;
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struct virtio_crypto_akcipher_create_session_req
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akcipher_create_session;
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struct virtio_crypto_destroy_session_req
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destroy_session;
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__u8 padding[56];
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} u;
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};
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struct virtio_crypto_op_header {
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#define VIRTIO_CRYPTO_CIPHER_ENCRYPT \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_CIPHER, 0x00)
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#define VIRTIO_CRYPTO_CIPHER_DECRYPT \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_CIPHER, 0x01)
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#define VIRTIO_CRYPTO_HASH \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_HASH, 0x00)
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#define VIRTIO_CRYPTO_MAC \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_MAC, 0x00)
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#define VIRTIO_CRYPTO_AEAD_ENCRYPT \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_AEAD, 0x00)
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#define VIRTIO_CRYPTO_AEAD_DECRYPT \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_AEAD, 0x01)
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#define VIRTIO_CRYPTO_AKCIPHER_ENCRYPT \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_AKCIPHER, 0x00)
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#define VIRTIO_CRYPTO_AKCIPHER_DECRYPT \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_AKCIPHER, 0x01)
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#define VIRTIO_CRYPTO_AKCIPHER_SIGN \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_AKCIPHER, 0x02)
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#define VIRTIO_CRYPTO_AKCIPHER_VERIFY \
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VIRTIO_CRYPTO_OPCODE(VIRTIO_CRYPTO_SERVICE_AKCIPHER, 0x03)
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__le32 opcode;
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/* algo should be service-specific algorithms */
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__le32 algo;
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/* session_id should be service-specific algorithms */
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__le64 session_id;
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/* control flag to control the request */
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__le32 flag;
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__le32 padding;
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};
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struct virtio_crypto_cipher_para {
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/*
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* Byte Length of valid IV/Counter
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*
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* For block ciphers in CBC or F8 mode, or for Kasumi in F8 mode, or for
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* SNOW3G in UEA2 mode, this is the length of the IV (which
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* must be the same as the block length of the cipher).
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* For block ciphers in CTR mode, this is the length of the counter
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* (which must be the same as the block length of the cipher).
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* For AES-XTS, this is the 128bit tweak, i, from IEEE Std 1619-2007.
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*
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* The IV/Counter will be updated after every partial cryptographic
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* operation.
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*/
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__le32 iv_len;
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/* length of source data */
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__le32 src_data_len;
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/* length of dst data */
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__le32 dst_data_len;
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__le32 padding;
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};
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struct virtio_crypto_hash_para {
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/* length of source data */
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__le32 src_data_len;
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/* hash result length */
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__le32 hash_result_len;
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};
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struct virtio_crypto_mac_para {
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struct virtio_crypto_hash_para hash;
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};
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struct virtio_crypto_aead_para {
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/*
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* Byte Length of valid IV data pointed to by the below iv_addr
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* parameter.
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*
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* For GCM mode, this is either 12 (for 96-bit IVs) or 16, in which
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* case iv_addr points to J0.
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* For CCM mode, this is the length of the nonce, which can be in the
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* range 7 to 13 inclusive.
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*/
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__le32 iv_len;
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/* length of additional auth data */
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__le32 aad_len;
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/* length of source data */
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__le32 src_data_len;
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/* length of dst data */
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__le32 dst_data_len;
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};
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struct virtio_crypto_cipher_data_req {
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/* Device-readable part */
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struct virtio_crypto_cipher_para para;
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__u8 padding[24];
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};
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struct virtio_crypto_hash_data_req {
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/* Device-readable part */
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struct virtio_crypto_hash_para para;
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__u8 padding[40];
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};
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struct virtio_crypto_mac_data_req {
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/* Device-readable part */
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struct virtio_crypto_mac_para para;
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__u8 padding[40];
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};
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struct virtio_crypto_alg_chain_data_para {
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__le32 iv_len;
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/* Length of source data */
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__le32 src_data_len;
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/* Length of destination data */
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__le32 dst_data_len;
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/* Starting point for cipher processing in source data */
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__le32 cipher_start_src_offset;
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/* Length of the source data that the cipher will be computed on */
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__le32 len_to_cipher;
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/* Starting point for hash processing in source data */
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__le32 hash_start_src_offset;
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/* Length of the source data that the hash will be computed on */
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__le32 len_to_hash;
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|
/* Length of the additional auth data */
|
|
__le32 aad_len;
|
|
/* Length of the hash result */
|
|
__le32 hash_result_len;
|
|
__le32 reserved;
|
|
};
|
|
|
|
struct virtio_crypto_alg_chain_data_req {
|
|
/* Device-readable part */
|
|
struct virtio_crypto_alg_chain_data_para para;
|
|
};
|
|
|
|
struct virtio_crypto_sym_data_req {
|
|
union {
|
|
struct virtio_crypto_cipher_data_req cipher;
|
|
struct virtio_crypto_alg_chain_data_req chain;
|
|
__u8 padding[40];
|
|
} u;
|
|
|
|
/* See above VIRTIO_CRYPTO_SYM_OP_* */
|
|
__le32 op_type;
|
|
__le32 padding;
|
|
};
|
|
|
|
struct virtio_crypto_aead_data_req {
|
|
/* Device-readable part */
|
|
struct virtio_crypto_aead_para para;
|
|
__u8 padding[32];
|
|
};
|
|
|
|
struct virtio_crypto_akcipher_para {
|
|
__le32 src_data_len;
|
|
__le32 dst_data_len;
|
|
};
|
|
|
|
struct virtio_crypto_akcipher_data_req {
|
|
struct virtio_crypto_akcipher_para para;
|
|
__u8 padding[40];
|
|
};
|
|
|
|
/* The request of the data virtqueue's packet */
|
|
struct virtio_crypto_op_data_req {
|
|
struct virtio_crypto_op_header header;
|
|
|
|
union {
|
|
struct virtio_crypto_sym_data_req sym_req;
|
|
struct virtio_crypto_hash_data_req hash_req;
|
|
struct virtio_crypto_mac_data_req mac_req;
|
|
struct virtio_crypto_aead_data_req aead_req;
|
|
struct virtio_crypto_akcipher_data_req akcipher_req;
|
|
__u8 padding[48];
|
|
} u;
|
|
};
|
|
|
|
#define VIRTIO_CRYPTO_OK 0
|
|
#define VIRTIO_CRYPTO_ERR 1
|
|
#define VIRTIO_CRYPTO_BADMSG 2
|
|
#define VIRTIO_CRYPTO_NOTSUPP 3
|
|
#define VIRTIO_CRYPTO_INVSESS 4 /* Invalid session id */
|
|
#define VIRTIO_CRYPTO_NOSPC 5 /* no free session ID */
|
|
#define VIRTIO_CRYPTO_KEY_REJECTED 6 /* Signature verification failed */
|
|
|
|
/* The accelerator hardware is ready */
|
|
#define VIRTIO_CRYPTO_S_HW_READY (1 << 0)
|
|
|
|
struct virtio_crypto_config {
|
|
/* See VIRTIO_CRYPTO_OP_* above */
|
|
__le32 status;
|
|
|
|
/*
|
|
* Maximum number of data queue
|
|
*/
|
|
__le32 max_dataqueues;
|
|
|
|
/*
|
|
* Specifies the services mask which the device support,
|
|
* see VIRTIO_CRYPTO_SERVICE_* above
|
|
*/
|
|
__le32 crypto_services;
|
|
|
|
/* Detailed algorithms mask */
|
|
__le32 cipher_algo_l;
|
|
__le32 cipher_algo_h;
|
|
__le32 hash_algo;
|
|
__le32 mac_algo_l;
|
|
__le32 mac_algo_h;
|
|
__le32 aead_algo;
|
|
/* Maximum length of cipher key */
|
|
__le32 max_cipher_key_len;
|
|
/* Maximum length of authenticated key */
|
|
__le32 max_auth_key_len;
|
|
__le32 akcipher_algo;
|
|
/* Maximum size of each crypto request's content */
|
|
__le64 max_size;
|
|
};
|
|
|
|
struct virtio_crypto_inhdr {
|
|
/* See VIRTIO_CRYPTO_* above */
|
|
__u8 status;
|
|
};
|
|
#endif
|