Type: refactor Change-Id: I5235bf3e9aff58af6ba2c14e8c6529c4fc9ec86c Signed-off-by: Damjan Marion <damarion@cisco.com>
597 lines
16 KiB
C
597 lines
16 KiB
C
/*
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* Copyright (c) 2016 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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/**
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* @file
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* @brief L2 LISP-GPE decap code.
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*
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*/
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#include <vlib/vlib.h>
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#include <lisp/lisp-gpe/lisp_gpe.h>
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typedef struct
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{
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u32 next_index;
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u32 tunnel_index;
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u32 error;
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lisp_gpe_header_t h;
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} lisp_gpe_rx_trace_t;
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static u8 *
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format_lisp_gpe_rx_trace (u8 * s, va_list * args)
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{
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CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
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CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
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lisp_gpe_rx_trace_t *t = va_arg (*args, lisp_gpe_rx_trace_t *);
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if (t->tunnel_index != ~0)
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{
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s = format (s, "LISP-GPE: tunnel %d next %d error %d", t->tunnel_index,
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t->next_index, t->error);
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}
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else
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{
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s = format (s, "LISP-GPE: no tunnel next %d error %d\n", t->next_index,
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t->error);
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}
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s = format (s, "\n %U", format_lisp_gpe_header_with_length, &t->h,
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(u32) sizeof (t->h) /* max size */ );
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return s;
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}
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static u32 next_proto_to_next_index[LISP_GPE_NEXT_PROTOS] = {
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LISP_GPE_INPUT_NEXT_DROP,
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LISP_GPE_INPUT_NEXT_IP4_INPUT,
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LISP_GPE_INPUT_NEXT_IP6_INPUT,
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LISP_GPE_INPUT_NEXT_L2_INPUT,
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LISP_GPE_INPUT_NEXT_DROP
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};
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always_inline u32
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next_protocol_to_next_index (lisp_gpe_header_t * lgh, u8 * next_header)
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{
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lisp_gpe_main_t *lgm = vnet_lisp_gpe_get_main ();
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/* lisp-gpe router */
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if (PREDICT_TRUE ((lgh->flags & LISP_GPE_FLAGS_P)
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|| GPE_ENCAP_VXLAN == lgm->encap_mode))
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{
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if (PREDICT_FALSE (lgh->next_protocol >= LISP_GPE_NEXT_PROTOS))
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return LISP_GPE_INPUT_NEXT_DROP;
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return next_proto_to_next_index[lgh->next_protocol];
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}
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/* legacy lisp router */
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else if ((lgh->flags & LISP_GPE_FLAGS_P) == 0)
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{
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ip4_header_t *iph = (ip4_header_t *) next_header;
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if ((iph->ip_version_and_header_length & 0xF0) == 0x40)
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return LISP_GPE_INPUT_NEXT_IP4_INPUT;
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else if ((iph->ip_version_and_header_length & 0xF0) == 0x60)
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return LISP_GPE_INPUT_NEXT_IP6_INPUT;
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else
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return LISP_GPE_INPUT_NEXT_DROP;
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}
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else
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return LISP_GPE_INPUT_NEXT_DROP;
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}
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always_inline tunnel_lookup_t *
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next_index_to_iface (lisp_gpe_main_t * lgm, u32 next_index)
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{
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if (LISP_GPE_INPUT_NEXT_IP4_INPUT == next_index
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|| LISP_GPE_INPUT_NEXT_IP6_INPUT == next_index)
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return &lgm->l3_ifaces;
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else if (LISP_GPE_INPUT_NEXT_L2_INPUT == next_index)
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return &lgm->l2_ifaces;
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else if (LISP_GPE_INPUT_NEXT_NSH_INPUT == next_index)
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return &lgm->nsh_ifaces;
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clib_warning ("next_index not associated to an interface!");
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return 0;
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}
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static_always_inline void
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incr_decap_stats (vnet_main_t * vnm, u32 thread_index, u32 length,
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u32 sw_if_index, u32 * last_sw_if_index, u32 * n_packets,
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u32 * n_bytes)
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{
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vnet_interface_main_t *im;
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if (PREDICT_TRUE (sw_if_index == *last_sw_if_index))
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{
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*n_packets += 1;
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*n_bytes += length;
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}
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else
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{
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if (PREDICT_TRUE (*last_sw_if_index != ~0))
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{
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im = &vnm->interface_main;
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vlib_increment_combined_counter (im->combined_sw_if_counters +
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VNET_INTERFACE_COUNTER_RX,
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thread_index, *last_sw_if_index,
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*n_packets, *n_bytes);
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}
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*last_sw_if_index = sw_if_index;
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*n_packets = 1;
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*n_bytes = length;
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}
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}
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/**
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* @brief LISP-GPE decap dispatcher.
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* @node lisp_gpe_input_inline
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*
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* LISP-GPE decap dispatcher.
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*
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* Decaps IP-UDP-LISP-GPE header and based on the next protocol and in the
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* GPE header and the vni decides the next node to forward the packet to.
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*
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* @param[in] vm vlib_main_t corresponding to current thread.
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* @param[in] node vlib_node_runtime_t data for this node.
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* @param[in] frame vlib_frame_t whose contents should be dispatched.
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*
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* @return number of vectors in frame.
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*/
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static uword
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lisp_gpe_input_inline (vlib_main_t * vm, vlib_node_runtime_t * node,
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vlib_frame_t * from_frame, u8 is_v4)
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{
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u32 n_left_from, next_index, *from, *to_next, thread_index;
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u32 n_bytes = 0, n_packets = 0, last_sw_if_index = ~0, drops = 0;
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lisp_gpe_main_t *lgm = vnet_lisp_gpe_get_main ();
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thread_index = vm->thread_index;
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from = vlib_frame_vector_args (from_frame);
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n_left_from = from_frame->n_vectors;
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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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u32 n_left_to_next;
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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 >= 4 && n_left_to_next >= 2)
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{
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u32 bi0, bi1;
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vlib_buffer_t *b0, *b1;
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ip4_udp_lisp_gpe_header_t *iul4_0, *iul4_1;
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ip6_udp_lisp_gpe_header_t *iul6_0, *iul6_1;
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lisp_gpe_header_t *lh0, *lh1;
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u32 next0, next1, error0, error1;
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uword *si0, *si1;
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tunnel_lookup_t *tl0, *tl1;
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/* Prefetch next iteration. */
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{
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vlib_buffer_t *p2, *p3;
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p2 = vlib_get_buffer (vm, from[2]);
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p3 = vlib_get_buffer (vm, from[3]);
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vlib_prefetch_buffer_header (p2, LOAD);
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vlib_prefetch_buffer_header (p3, LOAD);
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CLIB_PREFETCH (p2->data, 2 * CLIB_CACHE_LINE_BYTES, LOAD);
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CLIB_PREFETCH (p3->data, 2 * CLIB_CACHE_LINE_BYTES, LOAD);
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}
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bi0 = from[0];
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bi1 = from[1];
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to_next[0] = bi0;
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to_next[1] = bi1;
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from += 2;
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to_next += 2;
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n_left_to_next -= 2;
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n_left_from -= 2;
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b0 = vlib_get_buffer (vm, bi0);
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b1 = vlib_get_buffer (vm, bi1);
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/* udp leaves current_data pointing at the lisp header */
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if (is_v4)
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{
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vlib_buffer_advance (b0,
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-(word) (sizeof (udp_header_t) +
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sizeof (ip4_header_t)));
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vlib_buffer_advance (b1,
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-(word) (sizeof (udp_header_t) +
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sizeof (ip4_header_t)));
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iul4_0 = vlib_buffer_get_current (b0);
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iul4_1 = vlib_buffer_get_current (b1);
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/* pop (ip, udp, lisp-gpe) */
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vlib_buffer_advance (b0, sizeof (*iul4_0));
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vlib_buffer_advance (b1, sizeof (*iul4_1));
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lh0 = &iul4_0->lisp;
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lh1 = &iul4_1->lisp;
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}
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else
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{
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vlib_buffer_advance (b0,
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-(word) (sizeof (udp_header_t) +
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sizeof (ip6_header_t)));
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vlib_buffer_advance (b1,
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-(word) (sizeof (udp_header_t) +
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sizeof (ip6_header_t)));
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iul6_0 = vlib_buffer_get_current (b0);
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iul6_1 = vlib_buffer_get_current (b1);
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/* pop (ip, udp, lisp-gpe) */
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vlib_buffer_advance (b0, sizeof (*iul6_0));
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vlib_buffer_advance (b1, sizeof (*iul6_1));
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lh0 = &iul6_0->lisp;
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lh1 = &iul6_1->lisp;
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}
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/* determine next_index from lisp-gpe header */
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next0 = next_protocol_to_next_index (lh0,
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vlib_buffer_get_current (b0));
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next1 = next_protocol_to_next_index (lh1,
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vlib_buffer_get_current (b1));
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/* determine if tunnel is l2 or l3 */
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tl0 = next_index_to_iface (lgm, next0);
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tl1 = next_index_to_iface (lgm, next1);
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/* map iid/vni to lisp-gpe sw_if_index which is used by ipx_input to
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* decide the rx vrf and the input features to be applied */
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si0 = hash_get (tl0->sw_if_index_by_vni,
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clib_net_to_host_u32 (lh0->iid << 8));
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si1 = hash_get (tl1->sw_if_index_by_vni,
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clib_net_to_host_u32 (lh1->iid << 8));
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/* Required to make the l2 tag push / pop code work on l2 subifs */
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vnet_update_l2_len (b0);
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vnet_update_l2_len (b1);
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if (si0)
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{
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incr_decap_stats (lgm->vnet_main, thread_index,
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vlib_buffer_length_in_chain (vm, b0), si0[0],
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&last_sw_if_index, &n_packets, &n_bytes);
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vnet_buffer (b0)->sw_if_index[VLIB_RX] = si0[0];
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error0 = 0;
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}
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else
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{
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next0 = LISP_GPE_INPUT_NEXT_DROP;
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error0 = LISP_GPE_ERROR_NO_TUNNEL;
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drops++;
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}
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if (si1)
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{
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incr_decap_stats (lgm->vnet_main, thread_index,
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vlib_buffer_length_in_chain (vm, b1), si1[0],
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&last_sw_if_index, &n_packets, &n_bytes);
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vnet_buffer (b1)->sw_if_index[VLIB_RX] = si1[0];
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error1 = 0;
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}
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else
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{
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next1 = LISP_GPE_INPUT_NEXT_DROP;
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error1 = LISP_GPE_ERROR_NO_TUNNEL;
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drops++;
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}
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b0->error = error0 ? node->errors[error0] : 0;
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b1->error = error1 ? node->errors[error1] : 0;
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if (PREDICT_FALSE (b0->flags & VLIB_BUFFER_IS_TRACED))
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{
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lisp_gpe_rx_trace_t *tr = vlib_add_trace (vm, node, b0,
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sizeof (*tr));
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tr->next_index = next0;
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tr->error = error0;
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tr->h = lh0[0];
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}
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if (PREDICT_FALSE (b1->flags & VLIB_BUFFER_IS_TRACED))
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{
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lisp_gpe_rx_trace_t *tr = vlib_add_trace (vm, node, b1,
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sizeof (*tr));
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tr->next_index = next1;
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tr->error = error1;
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tr->h = lh1[0];
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}
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vlib_validate_buffer_enqueue_x2 (vm, node, next_index, to_next,
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n_left_to_next, bi0, bi1, next0,
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next1);
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}
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while (n_left_from > 0 && n_left_to_next > 0)
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{
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u32 bi0;
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vlib_buffer_t *b0;
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u32 next0;
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ip4_udp_lisp_gpe_header_t *iul4_0;
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ip6_udp_lisp_gpe_header_t *iul6_0;
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lisp_gpe_header_t *lh0;
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u32 error0;
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uword *si0;
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tunnel_lookup_t *tl0;
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bi0 = from[0];
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to_next[0] = bi0;
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from += 1;
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to_next += 1;
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n_left_from -= 1;
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n_left_to_next -= 1;
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b0 = vlib_get_buffer (vm, bi0);
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/* udp leaves current_data pointing at the lisp header
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* TODO: there's no difference in processing between v4 and v6
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* encapsulated packets so the code should be simplified if ip header
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* info is not going to be used for dp smrs/dpsec */
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if (is_v4)
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{
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vlib_buffer_advance (b0,
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-(word) (sizeof (udp_header_t) +
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sizeof (ip4_header_t)));
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iul4_0 = vlib_buffer_get_current (b0);
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/* pop (ip, udp, lisp-gpe) */
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vlib_buffer_advance (b0, sizeof (*iul4_0));
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lh0 = &iul4_0->lisp;
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}
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else
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{
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vlib_buffer_advance (b0,
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-(word) (sizeof (udp_header_t) +
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sizeof (ip6_header_t)));
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iul6_0 = vlib_buffer_get_current (b0);
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/* pop (ip, udp, lisp-gpe) */
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vlib_buffer_advance (b0, sizeof (*iul6_0));
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lh0 = &iul6_0->lisp;
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}
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/* TODO if security is to be implemented, something similar to RPF,
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* probably we'd like to check that the peer is allowed to send us
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* packets. For this, we should use the tunnel table OR check that
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* we have a mapping for the source eid and that the outer source of
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* the packet is one of its locators */
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/* determine next_index from lisp-gpe header */
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next0 = next_protocol_to_next_index (lh0,
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vlib_buffer_get_current (b0));
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/* determine if tunnel is l2 or l3 */
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tl0 = next_index_to_iface (lgm, next0);
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/* map iid/vni to lisp-gpe sw_if_index which is used by ipx_input to
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* decide the rx vrf and the input features to be applied.
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* NOTE: vni uses only the first 24 bits */
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si0 = hash_get (tl0->sw_if_index_by_vni,
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clib_net_to_host_u32 (lh0->iid << 8));
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/* Required to make the l2 tag push / pop code work on l2 subifs */
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vnet_update_l2_len (b0);
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if (si0)
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{
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incr_decap_stats (lgm->vnet_main, thread_index,
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vlib_buffer_length_in_chain (vm, b0), si0[0],
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&last_sw_if_index, &n_packets, &n_bytes);
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vnet_buffer (b0)->sw_if_index[VLIB_RX] = si0[0];
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error0 = 0;
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}
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else
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{
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next0 = LISP_GPE_INPUT_NEXT_DROP;
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error0 = LISP_GPE_ERROR_NO_TUNNEL;
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drops++;
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}
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/* TODO error handling if security is implemented */
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b0->error = error0 ? node->errors[error0] : 0;
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if (PREDICT_FALSE (b0->flags & VLIB_BUFFER_IS_TRACED))
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{
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lisp_gpe_rx_trace_t *tr = vlib_add_trace (vm, node, b0,
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sizeof (*tr));
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tr->next_index = next0;
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tr->error = error0;
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tr->h = lh0[0];
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}
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vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
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n_left_to_next, bi0, next0);
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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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/* flush iface stats */
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incr_decap_stats (lgm->vnet_main, thread_index, 0, ~0, &last_sw_if_index,
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&n_packets, &n_bytes);
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vlib_node_increment_counter (vm, lisp_gpe_ip4_input_node.index,
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LISP_GPE_ERROR_NO_TUNNEL, drops);
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return from_frame->n_vectors;
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}
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static uword
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lisp_gpe_ip4_input (vlib_main_t * vm, vlib_node_runtime_t * node,
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vlib_frame_t * from_frame)
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{
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return lisp_gpe_input_inline (vm, node, from_frame, 1);
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}
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static uword
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lisp_gpe_ip6_input (vlib_main_t * vm, vlib_node_runtime_t * node,
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vlib_frame_t * from_frame)
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{
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return lisp_gpe_input_inline (vm, node, from_frame, 0);
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}
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static char *lisp_gpe_ip4_input_error_strings[] = {
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#define lisp_gpe_error(n,s) s,
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#include <lisp/lisp-gpe/lisp_gpe_error.def>
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#undef lisp_gpe_error
|
|
};
|
|
|
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VLIB_REGISTER_NODE (lisp_gpe_ip4_input_node) = {
|
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.function = lisp_gpe_ip4_input,
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|
.name = "lisp-gpe-ip4-input",
|
|
/* Takes a vector of packets. */
|
|
.vector_size = sizeof (u32),
|
|
.n_next_nodes = LISP_GPE_INPUT_N_NEXT,
|
|
.next_nodes = {
|
|
#define _(s,n) [LISP_GPE_INPUT_NEXT_##s] = n,
|
|
foreach_lisp_gpe_ip_input_next
|
|
#undef _
|
|
},
|
|
|
|
.n_errors = ARRAY_LEN (lisp_gpe_ip4_input_error_strings),
|
|
.error_strings = lisp_gpe_ip4_input_error_strings,
|
|
|
|
.format_buffer = format_lisp_gpe_header_with_length,
|
|
.format_trace = format_lisp_gpe_rx_trace,
|
|
// $$$$ .unformat_buffer = unformat_lisp_gpe_header,
|
|
};
|
|
|
|
VLIB_REGISTER_NODE (lisp_gpe_ip6_input_node) = {
|
|
.function = lisp_gpe_ip6_input,
|
|
.name = "lisp-gpe-ip6-input",
|
|
/* Takes a vector of packets. */
|
|
.vector_size = sizeof (u32),
|
|
.n_next_nodes = LISP_GPE_INPUT_N_NEXT,
|
|
.next_nodes = {
|
|
#define _(s,n) [LISP_GPE_INPUT_NEXT_##s] = n,
|
|
foreach_lisp_gpe_ip_input_next
|
|
#undef _
|
|
},
|
|
|
|
.n_errors = ARRAY_LEN (lisp_gpe_ip4_input_error_strings),
|
|
.error_strings = lisp_gpe_ip4_input_error_strings,
|
|
|
|
.format_buffer = format_lisp_gpe_header_with_length,
|
|
.format_trace = format_lisp_gpe_rx_trace,
|
|
// $$$$ .unformat_buffer = unformat_lisp_gpe_header,
|
|
};
|
|
|
|
/**
|
|
* Adds arc from lisp-gpe-input to nsh-input if nsh-input is available
|
|
*/
|
|
static void
|
|
gpe_add_arc_from_input_to_nsh ()
|
|
{
|
|
lisp_gpe_main_t *lgm = vnet_lisp_gpe_get_main ();
|
|
vlib_main_t *vm = lgm->vlib_main;
|
|
vlib_node_t *nsh_input;
|
|
|
|
/* Arc already exists */
|
|
if (next_proto_to_next_index[LISP_GPE_NEXT_PROTO_NSH]
|
|
!= LISP_GPE_INPUT_NEXT_DROP)
|
|
return;
|
|
|
|
/* Check if nsh-input is available */
|
|
if ((nsh_input = vlib_get_node_by_name (vm, (u8 *) "nsh-input")))
|
|
{
|
|
u32 slot4, slot6;
|
|
slot4 = vlib_node_add_next_with_slot (vm, lisp_gpe_ip4_input_node.index,
|
|
nsh_input->index,
|
|
LISP_GPE_NEXT_PROTO_NSH);
|
|
slot6 = vlib_node_add_next_with_slot (vm, lisp_gpe_ip6_input_node.index,
|
|
nsh_input->index,
|
|
LISP_GPE_NEXT_PROTO_NSH);
|
|
ASSERT (slot4 == slot6 && slot4 == LISP_GPE_INPUT_NEXT_NSH_INPUT);
|
|
|
|
next_proto_to_next_index[LISP_GPE_NEXT_PROTO_NSH] = slot4;
|
|
}
|
|
}
|
|
|
|
/** GPE decap init function. */
|
|
clib_error_t *
|
|
gpe_decap_init (vlib_main_t * vm)
|
|
{
|
|
clib_error_t *error = 0;
|
|
|
|
if ((error = vlib_call_init_function (vm, lisp_gpe_init)))
|
|
return error;
|
|
|
|
gpe_add_arc_from_input_to_nsh ();
|
|
return 0;
|
|
}
|
|
|
|
static uword
|
|
lisp_gpe_nsh_placeholder_input (vlib_main_t * vm, vlib_node_runtime_t * node,
|
|
vlib_frame_t * from_frame)
|
|
{
|
|
vlib_node_increment_counter (vm, node->node_index, 0, 1);
|
|
return from_frame->n_vectors;
|
|
}
|
|
|
|
static char *lisp_gpe_nsh_placeholder_error_strings[] = {
|
|
"lisp gpe placeholder nsh decap",
|
|
};
|
|
|
|
VLIB_REGISTER_NODE (lisp_gpe_nsh_placeholder_input_node) = {
|
|
.function = lisp_gpe_nsh_placeholder_input,
|
|
.name = "lisp-gpe-nsh-placeholder-input",
|
|
.vector_size = sizeof (u32),
|
|
.type = VLIB_NODE_TYPE_INTERNAL,
|
|
.n_next_nodes = 1,
|
|
|
|
.n_errors = 1,
|
|
.error_strings = lisp_gpe_nsh_placeholder_error_strings,
|
|
|
|
.next_nodes = {
|
|
[0] = "error-drop",
|
|
},
|
|
};
|
|
|
|
static clib_error_t *
|
|
lisp_add_placeholder_nsh_node_command_fn (vlib_main_t * vm,
|
|
unformat_input_t * input,
|
|
vlib_cli_command_t * cmd)
|
|
{
|
|
lisp_gpe_main_t *lgm = vnet_lisp_gpe_get_main ();
|
|
vlib_node_add_next (lgm->vlib_main, lisp_gpe_ip4_input_node.index,
|
|
lisp_gpe_nsh_placeholder_input_node.index);
|
|
next_proto_to_next_index[LISP_GPE_NEXT_PROTO_NSH] =
|
|
LISP_GPE_INPUT_NEXT_NSH_INPUT;
|
|
return 0;
|
|
}
|
|
|
|
VLIB_CLI_COMMAND (lisp_add_placeholder_nsh_node_command, static) = {
|
|
.path = "test one nsh add-placeholder-decap-node",
|
|
.function = lisp_add_placeholder_nsh_node_command_fn,
|
|
};
|
|
|
|
VLIB_INIT_FUNCTION (gpe_decap_init);
|
|
|
|
/*
|
|
* fd.io coding-style-patch-verification: ON
|
|
*
|
|
* Local Variables:
|
|
* eval: (c-set-style "gnu")
|
|
* End:
|
|
*/
|