Update to the MAP rule lookup (in IPv6) based on the rule's source prefix instead of DMR Type: improvement Per RFC, the DMR is allowed to serve multiple MAP Basic Mapping Rules, but this capability was prevented by the above logic. Updates to the code include populating a new hash table based on the MAP rule ip6 prefix and length, changing several functions to reference this new table, and slight alterations to a few functions regarding pre-lookup bitmasking. All changes are commented with [dgeist] and are in need of peer review, especially the bitmask alterations. An attempt was made at generating an additonal MAP rule in the test_map_br test harness, but the coding appears very much oriented towards testing just one rule. I would appreciate suggestions on how to test multi-rule cases. Issue: VPP-2111 Change-Id: Id1fea280eba625e23cd893575d9b63aac7f48405 Signed-off-by: Dan Geist <dan@polter.net>
511 lines
13 KiB
C
511 lines
13 KiB
C
/*
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* Copyright (c) 2015 Cisco and/or its affiliates.
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef included_map_h
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#define included_map_h
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#include <stdbool.h>
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#include <vppinfra/error.h>
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#include <vnet/vnet.h>
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#include <vnet/ip/ip.h>
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#include <vlib/vlib.h>
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#include <vnet/fib/fib_types.h>
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#include <vnet/fib/ip4_fib.h>
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#include <vnet/adj/adj.h>
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#include <vnet/dpo/load_balance.h>
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#include "lpm.h"
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#include <vppinfra/lock.h>
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#include <map/map.api_enum.h>
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#define MAP_SKIP_IP6_LOOKUP 1
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#define MAP_ERR_GOOD 0
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#define MAP_ERR_BAD_POOL_SIZE -1
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#define MAP_ERR_BAD_HT_RATIO -2
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#define MAP_ERR_BAD_LIFETIME -3
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#define MAP_ERR_BAD_BUFFERS -4
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#define MAP_ERR_BAD_BUFFERS_TOO_LARGE -5
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#define MAP_ERR_UNSUPPORTED -6
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int map_create_domain (ip4_address_t * ip4_prefix, u8 ip4_prefix_len,
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ip6_address_t * ip6_prefix, u8 ip6_prefix_len,
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ip6_address_t * ip6_src, u8 ip6_src_len,
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u8 ea_bits_len, u8 psid_offset, u8 psid_length,
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u32 * map_domain_index, u16 mtu, u8 flags, u8 * tag);
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int map_delete_domain (u32 map_domain_index);
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int map_add_del_psid (u32 map_domain_index, u16 psid, ip6_address_t * tep,
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bool is_add);
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int map_if_enable_disable (bool is_enable, u32 sw_if_index,
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bool is_translation);
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u8 *format_map_trace (u8 * s, va_list * args);
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int map_param_set_fragmentation (bool inner, bool ignore_df);
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int map_param_set_icmp (ip4_address_t * ip4_err_relay_src);
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int map_param_set_icmp6 (u8 enable_unreachable);
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void map_pre_resolve (ip4_address_t * ip4, ip6_address_t * ip6, bool is_del);
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int map_param_set_security_check (bool enable, bool fragments);
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int map_param_set_traffic_class (bool copy, u8 tc);
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int map_param_set_tcp (u16 tcp_mss);
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typedef enum
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{
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MAP_DOMAIN_PREFIX = 1 << 0,
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MAP_DOMAIN_TRANSLATION = 1 << 1, // The domain uses MAP-T
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MAP_DOMAIN_RFC6052 = 1 << 2,
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} __attribute__ ((__packed__)) map_domain_flags_e;
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//#define IP6_MAP_T_OVERRIDE_TOS 0
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/*
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* This structure _MUST_ be no larger than a single cache line (64 bytes).
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* If more space is needed make a union of ip6_prefix and *rules, as
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* those are mutually exclusive.
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*/
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typedef struct
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{
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/* Required for pool_get_aligned */
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CLIB_CACHE_LINE_ALIGN_MARK (cacheline0);
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ip6_address_t ip6_src;
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ip6_address_t ip6_prefix;
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ip6_address_t *rules;
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u32 suffix_mask;
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ip4_address_t ip4_prefix;
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u16 psid_mask;
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u16 mtu;
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map_domain_flags_e flags;
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u8 ip6_prefix_len;
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u8 ip6_src_len;
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u8 ea_bits_len;
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u8 psid_offset;
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u8 psid_length;
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/* helpers */
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u8 psid_shift;
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u8 suffix_shift;
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u8 ea_shift;
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/* not used by forwarding */
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u8 ip4_prefix_len;
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} map_domain_t;
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STATIC_ASSERT ((sizeof (map_domain_t) <= CLIB_CACHE_LINE_BYTES),
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"MAP domain fits in one cacheline");
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/*
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* Extra data about a domain that doesn't need to be time/space critical.
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* This structure is in a vector parallel to the main map_domain_t,
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* and indexed by the same map-domain-index values.
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*/
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typedef struct
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{
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u8 *tag; /* Probably a user-assigned domain name. */
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} map_domain_extra_t;
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#define MAP_REASS_INDEX_NONE ((u16)0xffff)
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/*
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* MAP domain counters
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*/
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typedef enum
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{
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/* Simple counters */
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MAP_DOMAIN_IPV4_FRAGMENT = 0,
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/* Combined counters */
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MAP_DOMAIN_COUNTER_RX = 0,
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MAP_DOMAIN_COUNTER_TX,
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MAP_N_DOMAIN_COUNTER
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} map_domain_counter_t;
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#ifdef MAP_SKIP_IP6_LOOKUP
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/**
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* A pre-resolved next-hop
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*/
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typedef struct map_main_pre_resolved_t_
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{
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/**
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* Linkage into the FIB graph
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*/
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fib_node_t node;
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/**
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* The FIB entry index of the next-hop
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*/
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fib_node_index_t fei;
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/**
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* This object sibling index on the FIB entry's child dependency list
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*/
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u32 sibling;
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/**
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* The Load-balance object index to use to forward
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*/
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dpo_id_t dpo;
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} map_main_pre_resolved_t;
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/**
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* Pre-resolved next hops for v4 and v6. Why these are global and not
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* per-domain is beyond me.
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*/
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extern map_main_pre_resolved_t pre_resolved[FIB_PROTOCOL_MAX];
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#endif
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typedef struct
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{
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/* pool of MAP domains */
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map_domain_t *domains;
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map_domain_extra_t *domain_extras;
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/* MAP Domain packet/byte counters indexed by map domain index */
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vlib_simple_counter_main_t *simple_domain_counters;
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vlib_combined_counter_main_t *domain_counters;
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volatile u32 *counter_lock;
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/* API message id base */
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u16 msg_id_base;
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/* Traffic class: zero, copy (~0) or fixed value */
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u8 tc;
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bool tc_copy;
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bool sec_check; /* Inbound security check */
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bool sec_check_frag; /* Inbound security check for (subsequent) fragments */
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bool icmp6_enabled; /* Send destination unreachable for security check failure */
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u16 tcp_mss; /* TCP MSS clamp value */
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/* ICMPv6 -> ICMPv4 relay parameters */
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ip4_address_t icmp4_src_address;
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vlib_simple_counter_main_t icmp_relayed;
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/* convenience */
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vlib_main_t *vlib_main;
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vnet_main_t *vnet_main;
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bool frag_inner; /* Inner or outer fragmentation */
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bool frag_ignore_df; /* Fragment (outer) packet even if DF is set */
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/* Graph node state */
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uword *bm_trans_enabled_by_sw_if;
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uword *bm_encap_enabled_by_sw_if;
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/* Lookup tables */
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lpm_t *ip4_prefix_tbl;
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lpm_t *ip6_prefix_tbl;
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lpm_t *ip6_src_prefix_tbl;
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uword ip4_sv_reass_custom_next_index;
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} map_main_t;
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typedef vl_counter_map_enum_t map_error_t;
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u64 map_error_counter_get (u32 node_index, map_error_t map_error);
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typedef struct
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{
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u32 map_domain_index;
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u16 port;
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} map_trace_t;
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always_inline void
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map_add_trace (vlib_main_t * vm, vlib_node_runtime_t * node,
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vlib_buffer_t * b, u32 map_domain_index, u16 port)
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{
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map_trace_t *tr = vlib_add_trace (vm, node, b, sizeof (*tr));
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tr->map_domain_index = map_domain_index;
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tr->port = port;
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}
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extern map_main_t map_main;
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extern vlib_node_registration_t ip4_map_node;
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extern vlib_node_registration_t ip6_map_node;
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extern vlib_node_registration_t ip4_map_t_node;
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extern vlib_node_registration_t ip4_map_t_fragmented_node;
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extern vlib_node_registration_t ip4_map_t_tcp_udp_node;
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extern vlib_node_registration_t ip4_map_t_icmp_node;
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extern vlib_node_registration_t ip6_map_t_node;
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extern vlib_node_registration_t ip6_map_t_fragmented_node;
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extern vlib_node_registration_t ip6_map_t_tcp_udp_node;
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extern vlib_node_registration_t ip6_map_t_icmp_node;
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/*
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* map_get_pfx
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*/
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static_always_inline u64
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map_get_pfx (map_domain_t * d, u32 addr, u16 port)
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{
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u16 psid = (port >> d->psid_shift) & d->psid_mask;
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if (d->ea_bits_len == 0 && d->rules)
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return clib_net_to_host_u64 (d->rules[psid].as_u64[0]);
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u32 suffix = (addr >> d->suffix_shift) & d->suffix_mask;
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u64 ea =
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d->ea_bits_len == 0 ? 0 : (((u64) suffix << d->psid_length)) | psid;
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return clib_net_to_host_u64 (d->ip6_prefix.as_u64[0]) | ea << d->ea_shift;
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}
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static_always_inline u64
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map_get_pfx_net (map_domain_t * d, u32 addr, u16 port)
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{
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return clib_host_to_net_u64 (map_get_pfx (d, clib_net_to_host_u32 (addr),
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clib_net_to_host_u16 (port)));
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}
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/*
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* map_get_sfx
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*/
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static_always_inline u64
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map_get_sfx (map_domain_t * d, u32 addr, u16 port)
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{
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u16 psid = (port >> d->psid_shift) & d->psid_mask;
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/* Shared 1:1 mode. */
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if (d->ea_bits_len == 0 && d->rules)
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return clib_net_to_host_u64 (d->rules[psid].as_u64[1]);
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if (d->ip6_prefix_len == 128)
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return clib_net_to_host_u64 (d->ip6_prefix.as_u64[1]);
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if (d->ip6_src_len == 96)
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return (clib_net_to_host_u64 (d->ip6_prefix.as_u64[1]) | addr);
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/* IPv4 prefix */
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if (d->flags & MAP_DOMAIN_PREFIX)
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return (u64) (addr & (0xFFFFFFFF << d->suffix_shift)) << 16;
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/* Shared or full IPv4 address */
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return ((u64) addr << 16) | psid;
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}
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static_always_inline u64
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map_get_sfx_net (map_domain_t * d, u32 addr, u16 port)
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{
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return clib_host_to_net_u64 (map_get_sfx (d, clib_net_to_host_u32 (addr),
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clib_net_to_host_u16 (port)));
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}
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static_always_inline u32
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map_get_ip4 (ip6_address_t * addr, u16 prefix_len)
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{
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ASSERT (prefix_len == 64 || prefix_len == 96);
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if (prefix_len == 96)
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return clib_host_to_net_u32 (clib_net_to_host_u64 (addr->as_u64[1]));
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else
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return clib_host_to_net_u32 (clib_net_to_host_u64 (addr->as_u64[1]) >>
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16);
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}
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static_always_inline map_domain_t *
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ip4_map_get_domain (ip4_address_t * addr, u32 * map_domain_index, u8 * error)
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{
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map_main_t *mm = &map_main;
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u32 mdi = mm->ip4_prefix_tbl->lookup (mm->ip4_prefix_tbl, addr, 32);
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if (mdi == ~0)
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{
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*error = MAP_ERROR_NO_DOMAIN;
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return 0;
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}
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*map_domain_index = mdi;
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return pool_elt_at_index (mm->domains, mdi);
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}
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/*
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* Get the MAP domain from an IPv6 address.
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* If the IPv6 address or
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* prefix is shared the IPv4 address must be used.
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*/
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static_always_inline map_domain_t *
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ip6_map_get_domain (ip6_address_t * addr, u32 * map_domain_index, u8 * error)
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{
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map_main_t *mm = &map_main;
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u32 mdi =
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/* This is the old src (ip6 destination) hash lookup [dgeist]
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*
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* mm->ip6_src_prefix_tbl->lookup (mm->ip6_src_prefix_tbl, addr, 128);
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*/
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mm->ip6_prefix_tbl->lookup (mm->ip6_prefix_tbl, addr, 128);
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if (mdi == ~0)
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{
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*error = MAP_ERROR_NO_DOMAIN;
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return 0;
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}
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*map_domain_index = mdi;
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return pool_elt_at_index (mm->domains, mdi);
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}
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clib_error_t *map_plugin_api_hookup (vlib_main_t * vm);
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void map_ip6_drop_pi (u32 pi);
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/*
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* Supports prefix of 96 or 64 (with u-octet)
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*/
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static_always_inline void
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ip4_map_t_embedded_address (map_domain_t * d,
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ip6_address_t * ip6, const ip4_address_t * ip4)
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{
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ASSERT (d->ip6_src_len == 96 || d->ip6_src_len == 64); //No support for other lengths for now
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u8 offset = d->ip6_src_len == 64 ? 9 : 12;
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ip6->as_u64[0] = d->ip6_src.as_u64[0];
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ip6->as_u64[1] = d->ip6_src.as_u64[1];
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clib_memcpy_fast (&ip6->as_u8[offset], ip4, 4);
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}
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static_always_inline u32
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ip6_map_t_embedded_address (map_domain_t * d, ip6_address_t * addr)
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{
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ASSERT (d->ip6_src_len == 64 || d->ip6_src_len == 96);
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u32 x;
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u8 offset = d->ip6_src_len == 64 ? 9 : 12;
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clib_memcpy (&x, &addr->as_u8[offset], 4);
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return x;
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}
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static inline void
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map_domain_counter_lock (map_main_t * mm)
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{
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if (mm->counter_lock)
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while (clib_atomic_test_and_set (mm->counter_lock))
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/* zzzz */ ;
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}
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static inline void
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map_domain_counter_unlock (map_main_t * mm)
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{
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if (mm->counter_lock)
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clib_atomic_release (mm->counter_lock);
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}
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static_always_inline void
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map_send_all_to_node (vlib_main_t * vm, u32 * pi_vector,
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vlib_node_runtime_t * node, vlib_error_t * error,
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u32 next)
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{
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u32 n_left_from, *from, next_index, *to_next, n_left_to_next;
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//Deal with fragments that are ready
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from = pi_vector;
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n_left_from = vec_len (pi_vector);
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next_index = node->cached_next_index;
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while (n_left_from > 0)
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{
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vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
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while (n_left_from > 0 && n_left_to_next > 0)
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{
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u32 pi0 = to_next[0] = from[0];
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from += 1;
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n_left_from -= 1;
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to_next += 1;
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n_left_to_next -= 1;
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vlib_buffer_t *p0 = vlib_get_buffer (vm, pi0);
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p0->error = *error;
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vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
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n_left_to_next, pi0, next);
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}
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vlib_put_next_frame (vm, node, next_index, n_left_to_next);
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}
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}
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static_always_inline void
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map_mss_clamping (tcp_header_t * tcp, ip_csum_t * sum, u16 mss_clamping)
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{
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u8 *data;
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u8 opt_len, opts_len, kind;
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u16 mss;
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u16 mss_value_net = clib_host_to_net_u16 (mss_clamping);
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if (!tcp_syn (tcp))
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return;
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opts_len = (tcp_doff (tcp) << 2) - sizeof (tcp_header_t);
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data = (u8 *) (tcp + 1);
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for (; opts_len > 0; opts_len -= opt_len, data += opt_len)
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{
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kind = data[0];
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if (kind == TCP_OPTION_EOL)
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break;
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else if (kind == TCP_OPTION_NOOP)
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{
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opt_len = 1;
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continue;
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}
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else
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{
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if (opts_len < 2)
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return;
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opt_len = data[1];
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if (opt_len < 2 || opt_len > opts_len)
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return;
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}
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if (kind == TCP_OPTION_MSS)
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{
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mss = *(u16 *) (data + 2);
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if (clib_net_to_host_u16 (mss) > mss_clamping)
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{
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|
*sum =
|
|
ip_csum_update (*sum, mss, mss_value_net, ip4_header_t,
|
|
length);
|
|
clib_memcpy (data + 2, &mss_value_net, 2);
|
|
}
|
|
return;
|
|
}
|
|
}
|
|
}
|
|
|
|
static_always_inline bool
|
|
ip4_map_ip6_lookup_bypass (vlib_buffer_t * p0, ip4_header_t * ip)
|
|
{
|
|
#ifdef MAP_SKIP_IP6_LOOKUP
|
|
if (FIB_NODE_INDEX_INVALID != pre_resolved[FIB_PROTOCOL_IP6].fei)
|
|
{
|
|
vnet_buffer (p0)->ip.adj_index[VLIB_TX] =
|
|
pre_resolved[FIB_PROTOCOL_IP6].dpo.dpoi_index;
|
|
return (true);
|
|
}
|
|
#endif
|
|
return (false);
|
|
}
|
|
|
|
static_always_inline bool
|
|
ip6_map_ip4_lookup_bypass (vlib_buffer_t * p0, ip4_header_t * ip)
|
|
{
|
|
#ifdef MAP_SKIP_IP6_LOOKUP
|
|
if (FIB_NODE_INDEX_INVALID != pre_resolved[FIB_PROTOCOL_IP4].fei)
|
|
{
|
|
vnet_buffer (p0)->ip.adj_index[VLIB_TX] =
|
|
pre_resolved[FIB_PROTOCOL_IP4].dpo.dpoi_index;
|
|
return (true);
|
|
}
|
|
#endif
|
|
return (false);
|
|
}
|
|
|
|
#endif
|
|
/*
|
|
* fd.io coding-style-patch-verification: ON
|
|
*
|
|
* Local Variables:
|
|
* eval: (c-set-style "gnu")
|
|
* End:
|
|
*/
|