forked from luck/tmp_suning_uos_patched
b62c362450
When HW offloading is enabled, offloaded stats should be used, because s/w stats are wrong and out of sync with the HW in this case. Signed-off-by: Dmitry Bogdanov <dbogdanov@marvell.com> Signed-off-by: Mark Starovoytov <mstarovoitov@marvell.com> Signed-off-by: Igor Russkikh <irusskikh@marvell.com> Signed-off-by: David S. Miller <davem@davemloft.net>
294 lines
6.9 KiB
C
294 lines
6.9 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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/*
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* MACsec netdev header, used for h/w accelerated implementations.
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*
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* Copyright (c) 2015 Sabrina Dubroca <sd@queasysnail.net>
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*/
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#ifndef _NET_MACSEC_H_
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#define _NET_MACSEC_H_
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#include <linux/u64_stats_sync.h>
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#include <uapi/linux/if_link.h>
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#include <uapi/linux/if_macsec.h>
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#define MACSEC_DEFAULT_PN_LEN 4
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#define MACSEC_XPN_PN_LEN 8
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#define MACSEC_SALT_LEN 12
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#define MACSEC_NUM_AN 4 /* 2 bits for the association number */
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typedef u64 __bitwise sci_t;
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typedef u32 __bitwise ssci_t;
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typedef union salt {
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struct {
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u32 ssci;
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u64 pn;
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} __packed;
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u8 bytes[MACSEC_SALT_LEN];
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} __packed salt_t;
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typedef union pn {
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struct {
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#if defined(__LITTLE_ENDIAN_BITFIELD)
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u32 lower;
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u32 upper;
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#elif defined(__BIG_ENDIAN_BITFIELD)
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u32 upper;
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u32 lower;
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#else
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#error "Please fix <asm/byteorder.h>"
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#endif
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};
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u64 full64;
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} pn_t;
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/**
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* struct macsec_key - SA key
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* @id: user-provided key identifier
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* @tfm: crypto struct, key storage
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* @salt: salt used to generate IV in XPN cipher suites
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*/
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struct macsec_key {
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u8 id[MACSEC_KEYID_LEN];
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struct crypto_aead *tfm;
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salt_t salt;
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};
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struct macsec_rx_sc_stats {
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__u64 InOctetsValidated;
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__u64 InOctetsDecrypted;
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__u64 InPktsUnchecked;
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__u64 InPktsDelayed;
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__u64 InPktsOK;
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__u64 InPktsInvalid;
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__u64 InPktsLate;
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__u64 InPktsNotValid;
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__u64 InPktsNotUsingSA;
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__u64 InPktsUnusedSA;
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};
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struct macsec_rx_sa_stats {
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__u32 InPktsOK;
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__u32 InPktsInvalid;
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__u32 InPktsNotValid;
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__u32 InPktsNotUsingSA;
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__u32 InPktsUnusedSA;
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};
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struct macsec_tx_sa_stats {
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__u32 OutPktsProtected;
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__u32 OutPktsEncrypted;
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};
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struct macsec_tx_sc_stats {
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__u64 OutPktsProtected;
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__u64 OutPktsEncrypted;
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__u64 OutOctetsProtected;
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__u64 OutOctetsEncrypted;
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};
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struct macsec_dev_stats {
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__u64 OutPktsUntagged;
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__u64 InPktsUntagged;
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__u64 OutPktsTooLong;
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__u64 InPktsNoTag;
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__u64 InPktsBadTag;
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__u64 InPktsUnknownSCI;
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__u64 InPktsNoSCI;
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__u64 InPktsOverrun;
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};
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/**
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* struct macsec_rx_sa - receive secure association
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* @active:
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* @next_pn: packet number expected for the next packet
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* @lock: protects next_pn manipulations
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* @key: key structure
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* @ssci: short secure channel identifier
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* @stats: per-SA stats
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*/
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struct macsec_rx_sa {
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struct macsec_key key;
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ssci_t ssci;
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spinlock_t lock;
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union {
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pn_t next_pn_halves;
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u64 next_pn;
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};
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refcount_t refcnt;
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bool active;
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struct macsec_rx_sa_stats __percpu *stats;
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struct macsec_rx_sc *sc;
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struct rcu_head rcu;
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};
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struct pcpu_rx_sc_stats {
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struct macsec_rx_sc_stats stats;
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struct u64_stats_sync syncp;
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};
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struct pcpu_tx_sc_stats {
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struct macsec_tx_sc_stats stats;
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struct u64_stats_sync syncp;
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};
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/**
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* struct macsec_rx_sc - receive secure channel
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* @sci: secure channel identifier for this SC
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* @active: channel is active
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* @sa: array of secure associations
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* @stats: per-SC stats
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*/
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struct macsec_rx_sc {
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struct macsec_rx_sc __rcu *next;
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sci_t sci;
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bool active;
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struct macsec_rx_sa __rcu *sa[MACSEC_NUM_AN];
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struct pcpu_rx_sc_stats __percpu *stats;
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refcount_t refcnt;
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struct rcu_head rcu_head;
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};
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/**
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* struct macsec_tx_sa - transmit secure association
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* @active:
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* @next_pn: packet number to use for the next packet
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* @lock: protects next_pn manipulations
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* @key: key structure
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* @ssci: short secure channel identifier
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* @stats: per-SA stats
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*/
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struct macsec_tx_sa {
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struct macsec_key key;
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ssci_t ssci;
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spinlock_t lock;
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union {
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pn_t next_pn_halves;
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u64 next_pn;
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};
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refcount_t refcnt;
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bool active;
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struct macsec_tx_sa_stats __percpu *stats;
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struct rcu_head rcu;
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};
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/**
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* struct macsec_tx_sc - transmit secure channel
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* @active:
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* @encoding_sa: association number of the SA currently in use
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* @encrypt: encrypt packets on transmit, or authenticate only
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* @send_sci: always include the SCI in the SecTAG
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* @end_station:
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* @scb: single copy broadcast flag
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* @sa: array of secure associations
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* @stats: stats for this TXSC
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*/
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struct macsec_tx_sc {
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bool active;
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u8 encoding_sa;
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bool encrypt;
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bool send_sci;
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bool end_station;
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bool scb;
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struct macsec_tx_sa __rcu *sa[MACSEC_NUM_AN];
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struct pcpu_tx_sc_stats __percpu *stats;
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};
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/**
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* struct macsec_secy - MACsec Security Entity
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* @netdev: netdevice for this SecY
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* @n_rx_sc: number of receive secure channels configured on this SecY
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* @sci: secure channel identifier used for tx
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* @key_len: length of keys used by the cipher suite
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* @icv_len: length of ICV used by the cipher suite
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* @validate_frames: validation mode
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* @xpn: enable XPN for this SecY
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* @operational: MAC_Operational flag
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* @protect_frames: enable protection for this SecY
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* @replay_protect: enable packet number checks on receive
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* @replay_window: size of the replay window
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* @tx_sc: transmit secure channel
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* @rx_sc: linked list of receive secure channels
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*/
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struct macsec_secy {
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struct net_device *netdev;
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unsigned int n_rx_sc;
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sci_t sci;
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u16 key_len;
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u16 icv_len;
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enum macsec_validation_type validate_frames;
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bool xpn;
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bool operational;
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bool protect_frames;
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bool replay_protect;
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u32 replay_window;
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struct macsec_tx_sc tx_sc;
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struct macsec_rx_sc __rcu *rx_sc;
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};
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/**
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* struct macsec_context - MACsec context for hardware offloading
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*/
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struct macsec_context {
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union {
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struct net_device *netdev;
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struct phy_device *phydev;
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};
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enum macsec_offload offload;
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struct macsec_secy *secy;
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struct macsec_rx_sc *rx_sc;
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struct {
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unsigned char assoc_num;
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u8 key[MACSEC_KEYID_LEN];
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union {
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struct macsec_rx_sa *rx_sa;
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struct macsec_tx_sa *tx_sa;
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};
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} sa;
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union {
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struct macsec_tx_sc_stats *tx_sc_stats;
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struct macsec_tx_sa_stats *tx_sa_stats;
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struct macsec_rx_sc_stats *rx_sc_stats;
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struct macsec_rx_sa_stats *rx_sa_stats;
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struct macsec_dev_stats *dev_stats;
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} stats;
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u8 prepare:1;
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};
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/**
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* struct macsec_ops - MACsec offloading operations
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*/
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struct macsec_ops {
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/* Device wide */
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int (*mdo_dev_open)(struct macsec_context *ctx);
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int (*mdo_dev_stop)(struct macsec_context *ctx);
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/* SecY */
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int (*mdo_add_secy)(struct macsec_context *ctx);
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int (*mdo_upd_secy)(struct macsec_context *ctx);
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int (*mdo_del_secy)(struct macsec_context *ctx);
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/* Security channels */
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int (*mdo_add_rxsc)(struct macsec_context *ctx);
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int (*mdo_upd_rxsc)(struct macsec_context *ctx);
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int (*mdo_del_rxsc)(struct macsec_context *ctx);
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/* Security associations */
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int (*mdo_add_rxsa)(struct macsec_context *ctx);
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int (*mdo_upd_rxsa)(struct macsec_context *ctx);
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int (*mdo_del_rxsa)(struct macsec_context *ctx);
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int (*mdo_add_txsa)(struct macsec_context *ctx);
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int (*mdo_upd_txsa)(struct macsec_context *ctx);
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int (*mdo_del_txsa)(struct macsec_context *ctx);
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/* Statistics */
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int (*mdo_get_dev_stats)(struct macsec_context *ctx);
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int (*mdo_get_tx_sc_stats)(struct macsec_context *ctx);
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int (*mdo_get_tx_sa_stats)(struct macsec_context *ctx);
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int (*mdo_get_rx_sc_stats)(struct macsec_context *ctx);
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int (*mdo_get_rx_sa_stats)(struct macsec_context *ctx);
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};
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void macsec_pn_wrapped(struct macsec_secy *secy, struct macsec_tx_sa *tx_sa);
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#endif /* _NET_MACSEC_H_ */
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