228 lines
7.7 KiB
C
228 lines
7.7 KiB
C
/* SPDX-License-Identifier: GPL-2.0-only */
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/****************************************************************************
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* Driver for Solarflare network controllers and boards
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* Copyright 2019 Solarflare Communications Inc.
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* Copyright 2020-2022 Xilinx Inc.
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 as published
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* by the Free Software Foundation, incorporated herein by reference.
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*/
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#ifndef EFX_TC_H
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#define EFX_TC_H
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#include <net/flow_offload.h>
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#include <linux/rhashtable.h>
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#include "net_driver.h"
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#include "tc_counters.h"
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#define IS_ALL_ONES(v) (!(typeof (v))~(v))
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#ifdef CONFIG_IPV6
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static inline bool efx_ipv6_addr_all_ones(struct in6_addr *addr)
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{
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return !memchr_inv(addr, 0xff, sizeof(*addr));
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}
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#endif
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struct efx_tc_encap_action; /* see tc_encap_actions.h */
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struct efx_tc_action_set {
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u16 vlan_push:2;
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u16 vlan_pop:2;
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u16 decap:1;
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u16 deliver:1;
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__be16 vlan_tci[2]; /* TCIs for vlan_push */
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__be16 vlan_proto[2]; /* Ethertypes for vlan_push */
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struct efx_tc_counter_index *count;
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struct efx_tc_encap_action *encap_md; /* entry in tc_encap_ht table */
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struct list_head encap_user; /* entry on encap_md->users list */
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struct efx_tc_action_set_list *user; /* Only populated if encap_md */
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struct list_head count_user; /* entry on counter->users list, if encap */
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u32 dest_mport;
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u32 fw_id; /* index of this entry in firmware actions table */
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struct list_head list;
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};
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struct efx_tc_match_fields {
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/* L1 */
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u32 ingress_port;
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u8 recirc_id;
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/* L2 (inner when encap) */
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__be16 eth_proto;
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__be16 vlan_tci[2], vlan_proto[2];
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u8 eth_saddr[ETH_ALEN], eth_daddr[ETH_ALEN];
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/* L3 (when IP) */
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u8 ip_proto, ip_tos, ip_ttl;
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__be32 src_ip, dst_ip;
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#ifdef CONFIG_IPV6
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struct in6_addr src_ip6, dst_ip6;
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#endif
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bool ip_frag, ip_firstfrag;
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/* L4 */
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__be16 l4_sport, l4_dport; /* Ports (UDP, TCP) */
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__be16 tcp_flags;
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/* Encap. The following are *outer* fields. Note that there are no
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* outer eth (L2) fields; this is because TC doesn't have them.
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*/
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__be32 enc_src_ip, enc_dst_ip;
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struct in6_addr enc_src_ip6, enc_dst_ip6;
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u8 enc_ip_tos, enc_ip_ttl;
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__be16 enc_sport, enc_dport;
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__be32 enc_keyid; /* e.g. VNI, VSID */
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};
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static inline bool efx_tc_match_is_encap(const struct efx_tc_match_fields *mask)
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{
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return mask->enc_src_ip || mask->enc_dst_ip ||
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!ipv6_addr_any(&mask->enc_src_ip6) ||
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!ipv6_addr_any(&mask->enc_dst_ip6) || mask->enc_ip_tos ||
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mask->enc_ip_ttl || mask->enc_sport || mask->enc_dport;
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}
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/**
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* enum efx_tc_em_pseudo_type - &struct efx_tc_encap_match pseudo type
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*
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* These are used to classify "pseudo" encap matches, which don't refer
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* to an entry in hardware but rather indicate that a section of the
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* match space is in use by another Outer Rule.
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*
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* @EFX_TC_EM_DIRECT: real HW entry in Outer Rule table; not a pseudo.
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* Hardware index in &struct efx_tc_encap_match.fw_id is valid.
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* @EFX_TC_EM_PSEUDO_MASK: registered by an encap match which includes a
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* match on an optional field (currently ip_tos and/or udp_sport),
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* to prevent an overlapping encap match _without_ optional fields.
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* The pseudo encap match may be referenced again by an encap match
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* with different values for these fields, but all masks must match the
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* first (stored in our child_* fields).
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*/
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enum efx_tc_em_pseudo_type {
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EFX_TC_EM_DIRECT,
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EFX_TC_EM_PSEUDO_MASK,
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};
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struct efx_tc_encap_match {
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__be32 src_ip, dst_ip;
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struct in6_addr src_ip6, dst_ip6;
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__be16 udp_dport;
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__be16 udp_sport, udp_sport_mask;
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u8 ip_tos, ip_tos_mask;
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struct rhash_head linkage;
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enum efx_encap_type tun_type;
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u8 child_ip_tos_mask;
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__be16 child_udp_sport_mask;
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refcount_t ref;
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enum efx_tc_em_pseudo_type type;
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u32 fw_id; /* index of this entry in firmware encap match table */
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struct efx_tc_encap_match *pseudo; /* Referenced pseudo EM if needed */
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};
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struct efx_tc_match {
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struct efx_tc_match_fields value;
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struct efx_tc_match_fields mask;
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struct efx_tc_encap_match *encap;
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};
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struct efx_tc_action_set_list {
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struct list_head list;
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u32 fw_id;
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};
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struct efx_tc_flow_rule {
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unsigned long cookie;
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struct rhash_head linkage;
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struct efx_tc_match match;
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struct efx_tc_action_set_list acts;
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struct efx_tc_action_set_list *fallback; /* what to use when unready? */
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u32 fw_id;
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};
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enum efx_tc_rule_prios {
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EFX_TC_PRIO_TC, /* Rule inserted by TC */
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EFX_TC_PRIO_DFLT, /* Default switch rule; one of efx_tc_default_rules */
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EFX_TC_PRIO__NUM
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};
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/**
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* struct efx_tc_state - control plane data for TC offload
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*
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* @caps: MAE capabilities reported by MCDI
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* @block_list: List of &struct efx_tc_block_binding
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* @mutex: Used to serialise operations on TC hashtables
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* @counter_ht: Hashtable of TC counters (FW IDs and counter values)
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* @counter_id_ht: Hashtable mapping TC counter cookies to counters
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* @encap_ht: Hashtable of TC encap actions
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* @encap_match_ht: Hashtable of TC encap matches
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* @match_action_ht: Hashtable of TC match-action rules
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* @neigh_ht: Hashtable of neighbour watches (&struct efx_neigh_binder)
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* @reps_mport_id: MAE port allocated for representor RX
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* @reps_filter_uc: VNIC filter for representor unicast RX (promisc)
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* @reps_filter_mc: VNIC filter for representor multicast RX (allmulti)
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* @reps_mport_vport_id: vport_id for representor RX filters
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* @flush_counters: counters have been stopped, waiting for drain
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* @flush_gen: final generation count per type array as reported by
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* MC_CMD_MAE_COUNTERS_STREAM_STOP
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* @seen_gen: most recent generation count per type as seen by efx_tc_rx()
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* @flush_wq: wait queue used by efx_mae_stop_counters() to wait for
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* MAE counters RXQ to finish draining
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* @dflt: Match-action rules for default switching; at priority
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* %EFX_TC_PRIO_DFLT. Named by *ingress* port
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* @dflt.pf: rule for traffic ingressing from PF (egresses to wire)
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* @dflt.wire: rule for traffic ingressing from wire (egresses to PF)
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* @facts: Fallback action-set-lists for unready rules. Named by *egress* port
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* @facts.pf: action-set-list for unready rules on PF netdev, hence applying to
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* traffic from wire, and egressing to PF
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* @facts.reps: action-set-list for unready rules on representors, hence
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* applying to traffic from representees, and egressing to the reps mport
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* @up: have TC datastructures been set up?
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*/
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struct efx_tc_state {
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struct mae_caps *caps;
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struct list_head block_list;
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struct mutex mutex;
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struct rhashtable counter_ht;
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struct rhashtable counter_id_ht;
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struct rhashtable encap_ht;
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struct rhashtable encap_match_ht;
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struct rhashtable match_action_ht;
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struct rhashtable neigh_ht;
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u32 reps_mport_id, reps_mport_vport_id;
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s32 reps_filter_uc, reps_filter_mc;
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bool flush_counters;
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u32 flush_gen[EFX_TC_COUNTER_TYPE_MAX];
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u32 seen_gen[EFX_TC_COUNTER_TYPE_MAX];
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wait_queue_head_t flush_wq;
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struct {
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struct efx_tc_flow_rule pf;
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struct efx_tc_flow_rule wire;
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} dflt;
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struct {
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struct efx_tc_action_set_list pf;
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struct efx_tc_action_set_list reps;
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} facts;
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bool up;
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};
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struct efx_rep;
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enum efx_encap_type efx_tc_indr_netdev_type(struct net_device *net_dev);
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struct efx_rep *efx_tc_flower_lookup_efv(struct efx_nic *efx,
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struct net_device *dev);
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s64 efx_tc_flower_external_mport(struct efx_nic *efx, struct efx_rep *efv);
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int efx_tc_configure_default_rule_rep(struct efx_rep *efv);
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void efx_tc_deconfigure_default_rule(struct efx_nic *efx,
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struct efx_tc_flow_rule *rule);
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int efx_tc_flower(struct efx_nic *efx, struct net_device *net_dev,
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struct flow_cls_offload *tc, struct efx_rep *efv);
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int efx_tc_insert_rep_filters(struct efx_nic *efx);
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void efx_tc_remove_rep_filters(struct efx_nic *efx);
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int efx_init_tc(struct efx_nic *efx);
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void efx_fini_tc(struct efx_nic *efx);
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int efx_init_struct_tc(struct efx_nic *efx);
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void efx_fini_struct_tc(struct efx_nic *efx);
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#endif /* EFX_TC_H */
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