009ac7157c
enum should be initialized with 1 so that unitialized(memset)
memory may not be treated as a valid enum value.
Fixes: c261d1431b
("security: introduce security API and framework")
Cc: stable@dpdk.org
Signed-off-by: Akhil Goyal <akhil.goyal@nxp.com>
Acked-by: Radu Nicolau <radu.nicolau@intel.com>
535 lines
14 KiB
C
535 lines
14 KiB
C
/*-
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* BSD LICENSE
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*
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* Copyright 2017 NXP.
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* Copyright(c) 2017 Intel Corporation. All rights reserved.
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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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*
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* * 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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* * Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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* * Neither the name of NXP nor the names of its
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* contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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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 FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR 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 USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#ifndef _RTE_SECURITY_H_
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#define _RTE_SECURITY_H_
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/**
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* @file rte_security.h
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* @b EXPERIMENTAL: this API may change without prior notice
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*
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* RTE Security Common Definitions
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*
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*/
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <sys/types.h>
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#include <netinet/in.h>
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#include <netinet/ip.h>
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#include <netinet/ip6.h>
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#include <rte_common.h>
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#include <rte_crypto.h>
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#include <rte_mbuf.h>
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#include <rte_memory.h>
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#include <rte_mempool.h>
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/** IPSec protocol mode */
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enum rte_security_ipsec_sa_mode {
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RTE_SECURITY_IPSEC_SA_MODE_TRANSPORT = 1,
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/**< IPSec Transport mode */
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RTE_SECURITY_IPSEC_SA_MODE_TUNNEL,
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/**< IPSec Tunnel mode */
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};
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/** IPSec Protocol */
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enum rte_security_ipsec_sa_protocol {
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RTE_SECURITY_IPSEC_SA_PROTO_AH = 1,
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/**< AH protocol */
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RTE_SECURITY_IPSEC_SA_PROTO_ESP,
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/**< ESP protocol */
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};
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/** IPSEC tunnel type */
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enum rte_security_ipsec_tunnel_type {
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RTE_SECURITY_IPSEC_TUNNEL_IPV4 = 1,
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/**< Outer header is IPv4 */
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RTE_SECURITY_IPSEC_TUNNEL_IPV6,
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/**< Outer header is IPv6 */
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};
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/**
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* Security context for crypto/eth devices
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*
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* Security instance for each driver to register security operations.
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* The application can get the security context from the crypto/eth device id
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* using the APIs rte_cryptodev_get_sec_ctx()/rte_eth_dev_get_sec_ctx()
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* This structure is used to identify the device(crypto/eth) for which the
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* security operations need to be performed.
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*/
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struct rte_security_ctx {
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void *device;
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/**< Crypto/ethernet device attached */
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const struct rte_security_ops *ops;
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/**< Pointer to security ops for the device */
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uint16_t sess_cnt;
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/**< Number of sessions attached to this context */
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};
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/**
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* IPSEC tunnel parameters
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*
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* These parameters are used to build outbound tunnel headers.
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*/
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struct rte_security_ipsec_tunnel_param {
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enum rte_security_ipsec_tunnel_type type;
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/**< Tunnel type: IPv4 or IPv6 */
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RTE_STD_C11
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union {
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struct {
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struct in_addr src_ip;
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/**< IPv4 source address */
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struct in_addr dst_ip;
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/**< IPv4 destination address */
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uint8_t dscp;
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/**< IPv4 Differentiated Services Code Point */
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uint8_t df;
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/**< IPv4 Don't Fragment bit */
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uint8_t ttl;
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/**< IPv4 Time To Live */
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} ipv4;
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/**< IPv4 header parameters */
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struct {
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struct in6_addr src_addr;
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/**< IPv6 source address */
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struct in6_addr dst_addr;
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/**< IPv6 destination address */
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uint8_t dscp;
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/**< IPv6 Differentiated Services Code Point */
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uint32_t flabel;
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/**< IPv6 flow label */
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uint8_t hlimit;
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/**< IPv6 hop limit */
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} ipv6;
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/**< IPv6 header parameters */
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};
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};
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/**
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* IPsec Security Association option flags
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*/
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struct rte_security_ipsec_sa_options {
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/**< Extended Sequence Numbers (ESN)
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*
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* * 1: Use extended (64 bit) sequence numbers
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* * 0: Use normal sequence numbers
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*/
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uint32_t esn : 1;
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/**< UDP encapsulation
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*
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* * 1: Do UDP encapsulation/decapsulation so that IPSEC packets can
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* traverse through NAT boxes.
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* * 0: No UDP encapsulation
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*/
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uint32_t udp_encap : 1;
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/**< Copy DSCP bits
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*
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* * 1: Copy IPv4 or IPv6 DSCP bits from inner IP header to
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* the outer IP header in encapsulation, and vice versa in
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* decapsulation.
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* * 0: Do not change DSCP field.
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*/
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uint32_t copy_dscp : 1;
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/**< Copy IPv6 Flow Label
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*
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* * 1: Copy IPv6 flow label from inner IPv6 header to the
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* outer IPv6 header.
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* * 0: Outer header is not modified.
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*/
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uint32_t copy_flabel : 1;
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/**< Copy IPv4 Don't Fragment bit
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*
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* * 1: Copy the DF bit from the inner IPv4 header to the outer
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* IPv4 header.
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* * 0: Outer header is not modified.
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*/
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uint32_t copy_df : 1;
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/**< Decrement inner packet Time To Live (TTL) field
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*
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* * 1: In tunnel mode, decrement inner packet IPv4 TTL or
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* IPv6 Hop Limit after tunnel decapsulation, or before tunnel
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* encapsulation.
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* * 0: Inner packet is not modified.
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*/
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uint32_t dec_ttl : 1;
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};
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/** IPSec security association direction */
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enum rte_security_ipsec_sa_direction {
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RTE_SECURITY_IPSEC_SA_DIR_EGRESS,
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/**< Encrypt and generate digest */
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RTE_SECURITY_IPSEC_SA_DIR_INGRESS,
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/**< Verify digest and decrypt */
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};
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/**
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* IPsec security association configuration data.
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*
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* This structure contains data required to create an IPsec SA security session.
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*/
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struct rte_security_ipsec_xform {
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uint32_t spi;
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/**< SA security parameter index */
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uint32_t salt;
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/**< SA salt */
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struct rte_security_ipsec_sa_options options;
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/**< various SA options */
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enum rte_security_ipsec_sa_direction direction;
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/**< IPSec SA Direction - Egress/Ingress */
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enum rte_security_ipsec_sa_protocol proto;
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/**< IPsec SA Protocol - AH/ESP */
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enum rte_security_ipsec_sa_mode mode;
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/**< IPsec SA Mode - transport/tunnel */
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struct rte_security_ipsec_tunnel_param tunnel;
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/**< Tunnel parameters, NULL for transport mode */
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};
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/**
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* MACsec security session configuration
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*/
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struct rte_security_macsec_xform {
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/** To be Filled */
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int dummy;
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};
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/**
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* Security session action type.
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*/
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enum rte_security_session_action_type {
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RTE_SECURITY_ACTION_TYPE_NONE,
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/**< No security actions */
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RTE_SECURITY_ACTION_TYPE_INLINE_CRYPTO,
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/**< Crypto processing for security protocol is processed inline
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* during transmission
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*/
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RTE_SECURITY_ACTION_TYPE_INLINE_PROTOCOL,
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/**< All security protocol processing is performed inline during
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* transmission
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*/
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RTE_SECURITY_ACTION_TYPE_LOOKASIDE_PROTOCOL
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/**< All security protocol processing including crypto is performed
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* on a lookaside accelerator
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*/
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};
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/** Security session protocol definition */
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enum rte_security_session_protocol {
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RTE_SECURITY_PROTOCOL_IPSEC = 1,
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/**< IPsec Protocol */
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RTE_SECURITY_PROTOCOL_MACSEC,
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/**< MACSec Protocol */
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};
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/**
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* Security session configuration
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*/
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struct rte_security_session_conf {
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enum rte_security_session_action_type action_type;
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/**< Type of action to be performed on the session */
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enum rte_security_session_protocol protocol;
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/**< Security protocol to be configured */
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RTE_STD_C11
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union {
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struct rte_security_ipsec_xform ipsec;
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struct rte_security_macsec_xform macsec;
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};
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/**< Configuration parameters for security session */
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struct rte_crypto_sym_xform *crypto_xform;
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/**< Security Session Crypto Transformations */
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};
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struct rte_security_session {
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void *sess_private_data;
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/**< Private session material */
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};
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/**
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* Create security session as specified by the session configuration
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*
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* @param instance security instance
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* @param conf session configuration parameters
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* @param mp mempool to allocate session objects from
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* @return
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* - On success, pointer to session
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* - On failure, NULL
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*/
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struct rte_security_session *
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rte_security_session_create(struct rte_security_ctx *instance,
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struct rte_security_session_conf *conf,
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struct rte_mempool *mp);
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/**
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* Update security session as specified by the session configuration
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*
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* @param instance security instance
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* @param sess session to update parameters
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* @param conf update configuration parameters
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* @return
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* - On success returns 0
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* - On failure return errno
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*/
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int
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rte_security_session_update(struct rte_security_ctx *instance,
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struct rte_security_session *sess,
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struct rte_security_session_conf *conf);
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/**
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* Free security session header and the session private data and
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* return it to its original mempool.
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*
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* @param instance security instance
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* @param sess security session to freed
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*
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* @return
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* - 0 if successful.
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* - -EINVAL if session is NULL.
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* - -EBUSY if not all device private data has been freed.
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*/
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int
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rte_security_session_destroy(struct rte_security_ctx *instance,
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struct rte_security_session *sess);
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/**
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* Updates the buffer with device-specific defined metadata
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*
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* @param instance security instance
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* @param sess security session
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* @param mb packet mbuf to set metadata on.
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* @param params device-specific defined parameters
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* required for metadata
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*
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* @return
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* - On success, zero.
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* - On failure, a negative value.
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*/
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int
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rte_security_set_pkt_metadata(struct rte_security_ctx *instance,
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struct rte_security_session *sess,
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struct rte_mbuf *mb, void *params);
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/**
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* Attach a session to a symmetric crypto operation
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*
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* @param sym_op crypto operation
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* @param sess security session
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*/
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static inline int
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__rte_security_attach_session(struct rte_crypto_sym_op *sym_op,
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struct rte_security_session *sess)
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{
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sym_op->sec_session = sess;
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return 0;
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}
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static inline void *
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get_sec_session_private_data(const struct rte_security_session *sess)
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{
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return sess->sess_private_data;
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}
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static inline void
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set_sec_session_private_data(struct rte_security_session *sess,
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void *private_data)
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{
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sess->sess_private_data = private_data;
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}
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/**
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* Attach a session to a crypto operation.
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* This API is needed only in case of RTE_SECURITY_SESS_CRYPTO_PROTO_OFFLOAD
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* For other rte_security_session_action_type, ol_flags in rte_mbuf may be
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* defined to perform security operations.
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*
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* @param op crypto operation
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* @param sess security session
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*/
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static inline int
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rte_security_attach_session(struct rte_crypto_op *op,
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struct rte_security_session *sess)
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{
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if (unlikely(op->type != RTE_CRYPTO_OP_TYPE_SYMMETRIC))
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return -EINVAL;
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op->sess_type = RTE_CRYPTO_OP_SECURITY_SESSION;
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return __rte_security_attach_session(op->sym, sess);
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}
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struct rte_security_macsec_stats {
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uint64_t reserved;
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};
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struct rte_security_ipsec_stats {
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uint64_t reserved;
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};
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struct rte_security_stats {
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enum rte_security_session_protocol protocol;
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/**< Security protocol to be configured */
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RTE_STD_C11
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union {
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struct rte_security_macsec_stats macsec;
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struct rte_security_ipsec_stats ipsec;
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};
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};
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/**
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* Get security session statistics
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*
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* @param instance security instance
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* @param sess security session
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* @param stats statistics
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* @return
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* - On success return 0
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* - On failure errno
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*/
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int
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rte_security_session_stats_get(struct rte_security_ctx *instance,
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struct rte_security_session *sess,
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struct rte_security_stats *stats);
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/**
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* Security capability definition
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*/
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struct rte_security_capability {
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enum rte_security_session_action_type action;
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/**< Security action type*/
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enum rte_security_session_protocol protocol;
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/**< Security protocol */
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RTE_STD_C11
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union {
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struct {
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enum rte_security_ipsec_sa_protocol proto;
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/**< IPsec SA protocol */
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enum rte_security_ipsec_sa_mode mode;
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/**< IPsec SA mode */
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enum rte_security_ipsec_sa_direction direction;
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/**< IPsec SA direction */
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struct rte_security_ipsec_sa_options options;
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/**< IPsec SA supported options */
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} ipsec;
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/**< IPsec capability */
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struct {
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/* To be Filled */
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int dummy;
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} macsec;
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/**< MACsec capability */
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};
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const struct rte_cryptodev_capabilities *crypto_capabilities;
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/**< Corresponding crypto capabilities for security capability */
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uint32_t ol_flags;
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/**< Device offload flags */
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};
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#define RTE_SECURITY_TX_OLOAD_NEED_MDATA 0x00000001
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/**< HW needs metadata update, see rte_security_set_pkt_metadata().
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*/
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#define RTE_SECURITY_TX_HW_TRAILER_OFFLOAD 0x00000002
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/**< HW constructs trailer of packets
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* Transmitted packets will have the trailer added to them
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* by hardawre. The next protocol field will be based on
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* the mbuf->inner_esp_next_proto field.
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*/
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#define RTE_SECURITY_RX_HW_TRAILER_OFFLOAD 0x00010000
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/**< HW removes trailer of packets
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* Received packets have no trailer, the next protocol field
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* is supplied in the mbuf->inner_esp_next_proto field.
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* Inner packet is not modified.
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*/
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/**
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* Security capability index used to query a security instance for a specific
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* security capability
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*/
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struct rte_security_capability_idx {
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enum rte_security_session_action_type action;
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enum rte_security_session_protocol protocol;
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RTE_STD_C11
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union {
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struct {
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enum rte_security_ipsec_sa_protocol proto;
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enum rte_security_ipsec_sa_mode mode;
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enum rte_security_ipsec_sa_direction direction;
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} ipsec;
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};
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};
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/**
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* Returns array of security instance capabilities
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*
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* @param instance Security instance.
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*
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* @return
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* - Returns array of security capabilities.
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* - Return NULL if no capabilities available.
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*/
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const struct rte_security_capability *
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rte_security_capabilities_get(struct rte_security_ctx *instance);
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/**
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* Query if a specific capability is available on security instance
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*
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* @param instance security instance.
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* @param idx security capability index to match against
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*
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* @return
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* - Returns pointer to security capability on match of capability
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* index criteria.
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* - Return NULL if the capability not matched on security instance.
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*/
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const struct rte_security_capability *
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rte_security_capability_get(struct rte_security_ctx *instance,
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struct rte_security_capability_idx *idx);
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#ifdef __cplusplus
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}
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#endif
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#endif /* _RTE_SECURITY_H_ */
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