blob: 299ed97f6e4bcd276977b2f54de75e52a8955665 [file] [log] [blame]
Neale Rannscbe25aa2019-09-30 10:53:31 +00001/*
2 * ethernet/arp.c: IP v4 ARP node
3 *
4 * Copyright (c) 2010 Cisco and/or its affiliates.
5 * Licensed under the Apache License, Version 2.0 (the "License");
6 * you may not use this file except in compliance with the License.
7 * You may obtain a copy of the License at:
8 *
9 * http://www.apache.org/licenses/LICENSE-2.0
10 *
11 * Unless required by applicable law or agreed to in writing, software
12 * distributed under the License is distributed on an "AS IS" BASIS,
13 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 * See the License for the specific language governing permissions and
15 * limitations under the License.
16 */
17
18#include <vnet/arp/arp.h>
19#include <vnet/arp/arp_packet.h>
20
21#include <vnet/fib/ip4_fib.h>
22#include <vnet/fib/fib_entry_src.h>
23#include <vnet/adj/adj_nbr.h>
24#include <vnet/adj/adj_mcast.h>
25
26#include <vnet/ip-neighbor/ip_neighbor.h>
27#include <vnet/ip-neighbor/ip_neighbor_dp.h>
28
29#include <vlibmemory/api.h>
30
31/**
32 * @file
33 * @brief IPv4 ARP.
34 *
35 * This file contains code to manage the IPv4 ARP tables (IP Address
36 * to MAC Address lookup).
37 */
38
39/**
40 * @brief Per-interface ARP configuration and state
41 */
42typedef struct ethernet_arp_interface_t_
43{
44 /**
45 * Is ARP enabled on this interface
46 */
47 u32 enabled;
48} ethernet_arp_interface_t;
49
50typedef struct
51{
52 /* Hash tables mapping name to opcode. */
53 uword *opcode_by_name;
54
55 /** Per interface state */
56 ethernet_arp_interface_t *ethernet_arp_by_sw_if_index;
57
58 /* ARP feature arc index */
59 u8 feature_arc_index;
60} ethernet_arp_main_t;
61
62static ethernet_arp_main_t ethernet_arp_main;
63
64static const u8 vrrp_prefix[] = { 0x00, 0x00, 0x5E, 0x00, 0x01 };
65
66static uword
67unformat_ethernet_arp_opcode_host_byte_order (unformat_input_t * input,
68 va_list * args)
69{
70 int *result = va_arg (*args, int *);
71 ethernet_arp_main_t *am = &ethernet_arp_main;
72 int x, i;
73
74 /* Numeric opcode. */
75 if (unformat (input, "0x%x", &x) || unformat (input, "%d", &x))
76 {
77 if (x >= (1 << 16))
78 return 0;
79 *result = x;
80 return 1;
81 }
82
83 /* Named type. */
84 if (unformat_user (input, unformat_vlib_number_by_name,
85 am->opcode_by_name, &i))
86 {
87 *result = i;
88 return 1;
89 }
90
91 return 0;
92}
93
94static uword
95unformat_ethernet_arp_opcode_net_byte_order (unformat_input_t * input,
96 va_list * args)
97{
98 int *result = va_arg (*args, int *);
99 if (!unformat_user
100 (input, unformat_ethernet_arp_opcode_host_byte_order, result))
101 return 0;
102
103 *result = clib_host_to_net_u16 ((u16) * result);
104 return 1;
105}
106
107typedef struct
108{
109 u8 packet_data[64];
110} ethernet_arp_input_trace_t;
111
112static u8 *
113format_ethernet_arp_input_trace (u8 * s, va_list * va)
114{
115 CLIB_UNUSED (vlib_main_t * vm) = va_arg (*va, vlib_main_t *);
116 CLIB_UNUSED (vlib_node_t * node) = va_arg (*va, vlib_node_t *);
117 ethernet_arp_input_trace_t *t = va_arg (*va, ethernet_arp_input_trace_t *);
118
119 s = format (s, "%U",
120 format_ethernet_arp_header,
121 t->packet_data, sizeof (t->packet_data));
122
123 return s;
124}
125
126static int
127arp_is_enabled (ethernet_arp_main_t * am, u32 sw_if_index)
128{
129 if (vec_len (am->ethernet_arp_by_sw_if_index) <= sw_if_index)
130 return 0;
131
132 return (am->ethernet_arp_by_sw_if_index[sw_if_index].enabled);
133}
134
135static void
136arp_enable (ethernet_arp_main_t * am, u32 sw_if_index)
137{
138 if (arp_is_enabled (am, sw_if_index))
139 return;
140
141 vec_validate (am->ethernet_arp_by_sw_if_index, sw_if_index);
142
143 am->ethernet_arp_by_sw_if_index[sw_if_index].enabled = 1;
144
145 vnet_feature_enable_disable ("arp", "arp-reply", sw_if_index, 1, NULL, 0);
146 vnet_feature_enable_disable ("arp", "arp-disabled", sw_if_index, 0, NULL,
147 0);
148}
149
150static void
151arp_disable (ethernet_arp_main_t * am, u32 sw_if_index)
152{
153 if (!arp_is_enabled (am, sw_if_index))
154 return;
155
156 vnet_feature_enable_disable ("arp", "arp-disabled", sw_if_index, 1, NULL,
157 0);
158 vnet_feature_enable_disable ("arp", "arp-reply", sw_if_index, 0, NULL, 0);
159
160 am->ethernet_arp_by_sw_if_index[sw_if_index].enabled = 0;
161}
162
163static int
164arp_unnumbered (vlib_buffer_t * p0,
165 u32 input_sw_if_index, u32 conn_sw_if_index)
166{
167 vnet_main_t *vnm = vnet_get_main ();
168 vnet_interface_main_t *vim = &vnm->interface_main;
169 vnet_sw_interface_t *si;
170
171 /* verify that the input interface is unnumbered to the connected.
172 * the connected interface is the interface on which the subnet is
173 * configured */
174 si = &vim->sw_interfaces[input_sw_if_index];
175
176 if (!(si->flags & VNET_SW_INTERFACE_FLAG_UNNUMBERED &&
177 (si->unnumbered_sw_if_index == conn_sw_if_index)))
178 {
179 /* the input interface is not unnumbered to the interface on which
180 * the sub-net is configured that covers the ARP request.
181 * So this is not the case for unnumbered.. */
182 return 0;
183 }
184
185 return !0;
186}
187
188always_inline u32
189arp_learn (u32 sw_if_index,
190 const ethernet_arp_ip4_over_ethernet_address_t * addr)
191{
Neale Rannsdc617b82020-08-20 08:22:56 +0000192 /* *INDENT-OFF* */
Neale Rannscbe25aa2019-09-30 10:53:31 +0000193 ip_neighbor_learn_t l = {
Neale Rannsdc617b82020-08-20 08:22:56 +0000194 .ip = {
195 .ip.ip4 = addr->ip4,
196 .version = AF_IP4,
197 },
Neale Rannscbe25aa2019-09-30 10:53:31 +0000198 .mac = addr->mac,
199 .sw_if_index = sw_if_index,
200 };
Neale Rannsdc617b82020-08-20 08:22:56 +0000201 /* *INDENT-ON* */
Neale Rannscbe25aa2019-09-30 10:53:31 +0000202
203 ip_neighbor_learn_dp (&l);
204
205 return (ETHERNET_ARP_ERROR_l3_src_address_learned);
206}
207
208typedef enum arp_input_next_t_
209{
210 ARP_INPUT_NEXT_DROP,
211 ARP_INPUT_NEXT_DISABLED,
212 ARP_INPUT_N_NEXT,
213} arp_input_next_t;
214
215static uword
216arp_input (vlib_main_t * vm, vlib_node_runtime_t * node, vlib_frame_t * frame)
217{
218 u32 n_left_from, next_index, *from, *to_next, n_left_to_next;
219 ethernet_arp_main_t *am = &ethernet_arp_main;
220
221 from = vlib_frame_vector_args (frame);
222 n_left_from = frame->n_vectors;
223 next_index = node->cached_next_index;
224
225 if (node->flags & VLIB_NODE_FLAG_TRACE)
226 vlib_trace_frame_buffers_only (vm, node, from, frame->n_vectors,
227 /* stride */ 1,
228 sizeof (ethernet_arp_input_trace_t));
229
230 while (n_left_from > 0)
231 {
232 vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
233
234 while (n_left_from > 0 && n_left_to_next > 0)
235 {
236 const ethernet_arp_header_t *arp0;
237 arp_input_next_t next0;
238 vlib_buffer_t *p0;
239 u32 pi0, error0;
240
241 pi0 = to_next[0] = from[0];
242 from += 1;
243 to_next += 1;
244 n_left_from -= 1;
245 n_left_to_next -= 1;
246
247 p0 = vlib_get_buffer (vm, pi0);
248 arp0 = vlib_buffer_get_current (p0);
249
250 error0 = ETHERNET_ARP_ERROR_replies_sent;
251 next0 = ARP_INPUT_NEXT_DROP;
252
253 error0 =
254 (arp0->l2_type !=
255 clib_net_to_host_u16 (ETHERNET_ARP_HARDWARE_TYPE_ethernet) ?
256 ETHERNET_ARP_ERROR_l2_type_not_ethernet : error0);
257 error0 =
258 (arp0->l3_type !=
259 clib_net_to_host_u16 (ETHERNET_TYPE_IP4) ?
260 ETHERNET_ARP_ERROR_l3_type_not_ip4 : error0);
261 error0 =
262 (0 == arp0->ip4_over_ethernet[0].ip4.as_u32 ?
263 ETHERNET_ARP_ERROR_l3_dst_address_unset : error0);
264
265 if (ETHERNET_ARP_ERROR_replies_sent == error0)
266 {
267 next0 = ARP_INPUT_NEXT_DISABLED;
268 vnet_feature_arc_start (am->feature_arc_index,
269 vnet_buffer (p0)->sw_if_index[VLIB_RX],
270 &next0, p0);
271 }
272 else
273 p0->error = node->errors[error0];
274
275 vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
276 n_left_to_next, pi0, next0);
277 }
278
279 vlib_put_next_frame (vm, node, next_index, n_left_to_next);
280 }
281
282 return frame->n_vectors;
283}
284
285typedef enum arp_disabled_next_t_
286{
287 ARP_DISABLED_NEXT_DROP,
288 ARP_DISABLED_N_NEXT,
289} arp_disabled_next_t;
290
291#define foreach_arp_disabled_error \
292 _ (DISABLED, "ARP Disabled on this interface") \
293
294typedef enum
295{
296#define _(sym,string) ARP_DISABLED_ERROR_##sym,
297 foreach_arp_disabled_error
298#undef _
299 ARP_DISABLED_N_ERROR,
300} arp_disabled_error_t;
301
302static char *arp_disabled_error_strings[] = {
303#define _(sym,string) string,
304 foreach_arp_disabled_error
305#undef _
306};
307
308static uword
309arp_disabled (vlib_main_t * vm,
310 vlib_node_runtime_t * node, vlib_frame_t * frame)
311{
312 u32 n_left_from, next_index, *from, *to_next, n_left_to_next;
313
314 from = vlib_frame_vector_args (frame);
315 n_left_from = frame->n_vectors;
316 next_index = node->cached_next_index;
317
318 if (node->flags & VLIB_NODE_FLAG_TRACE)
319 vlib_trace_frame_buffers_only (vm, node, from, frame->n_vectors,
320 /* stride */ 1,
321 sizeof (ethernet_arp_input_trace_t));
322
323 while (n_left_from > 0)
324 {
325 vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
326
327 while (n_left_from > 0 && n_left_to_next > 0)
328 {
329 arp_disabled_next_t next0 = ARP_DISABLED_NEXT_DROP;
330 vlib_buffer_t *p0;
331 u32 pi0, error0;
332
333 next0 = ARP_DISABLED_NEXT_DROP;
334 error0 = ARP_DISABLED_ERROR_DISABLED;
335
336 pi0 = to_next[0] = from[0];
337 from += 1;
338 to_next += 1;
339 n_left_from -= 1;
340 n_left_to_next -= 1;
341
342 p0 = vlib_get_buffer (vm, pi0);
343 p0->error = node->errors[error0];
344
345 vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
346 n_left_to_next, pi0, next0);
347 }
348
349 vlib_put_next_frame (vm, node, next_index, n_left_to_next);
350 }
351
352 return frame->n_vectors;
353}
354
355enum arp_dst_fib_type
356{
357 ARP_DST_FIB_NONE,
358 ARP_DST_FIB_ADJ,
359 ARP_DST_FIB_CONN
360};
361
362/*
363 * we're looking for FIB sources that indicate the destination
364 * is attached. There may be interposed DPO prior to the one
365 * we are looking for
366 */
367static enum arp_dst_fib_type
368arp_dst_fib_check (const fib_node_index_t fei, fib_entry_flag_t * flags)
369{
370 const fib_entry_t *entry = fib_entry_get (fei);
371 const fib_entry_src_t *entry_src;
372 fib_source_t src;
373 /* *INDENT-OFF* */
374 FOR_EACH_SRC_ADDED(entry, entry_src, src,
375 ({
376 *flags = fib_entry_get_flags_for_source (fei, src);
377 if (fib_entry_is_sourced (fei, FIB_SOURCE_ADJ))
378 return ARP_DST_FIB_ADJ;
379 else if (FIB_ENTRY_FLAG_CONNECTED & *flags)
380 return ARP_DST_FIB_CONN;
381 }))
382 /* *INDENT-ON* */
383
384 return ARP_DST_FIB_NONE;
385}
386
387static uword
388arp_reply (vlib_main_t * vm, vlib_node_runtime_t * node, vlib_frame_t * frame)
389{
390 vnet_main_t *vnm = vnet_get_main ();
391 u32 n_left_from, next_index, *from, *to_next;
392 u32 n_replies_sent = 0;
393
394 from = vlib_frame_vector_args (frame);
395 n_left_from = frame->n_vectors;
396 next_index = node->cached_next_index;
397
398 if (node->flags & VLIB_NODE_FLAG_TRACE)
399 vlib_trace_frame_buffers_only (vm, node, from, frame->n_vectors,
400 /* stride */ 1,
401 sizeof (ethernet_arp_input_trace_t));
402
403 while (n_left_from > 0)
404 {
405 u32 n_left_to_next;
406
407 vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
408
409 while (n_left_from > 0 && n_left_to_next > 0)
410 {
411 vlib_buffer_t *p0;
412 ethernet_arp_header_t *arp0;
413 ethernet_header_t *eth_rx;
414 const ip4_address_t *if_addr0;
415 u32 pi0, error0, next0, sw_if_index0, conn_sw_if_index0, fib_index0;
416 u8 dst_is_local0, is_vrrp_reply0;
417 fib_node_index_t dst_fei, src_fei;
418 const fib_prefix_t *pfx0;
419 fib_entry_flag_t src_flags, dst_flags;
420
421 pi0 = from[0];
422 to_next[0] = pi0;
423 from += 1;
424 to_next += 1;
425 n_left_from -= 1;
426 n_left_to_next -= 1;
427
428 p0 = vlib_get_buffer (vm, pi0);
429 arp0 = vlib_buffer_get_current (p0);
430 /* Fill in ethernet header. */
431 eth_rx = ethernet_buffer_get_header (p0);
432
433 next0 = ARP_REPLY_NEXT_DROP;
434 error0 = ETHERNET_ARP_ERROR_replies_sent;
435 sw_if_index0 = vnet_buffer (p0)->sw_if_index[VLIB_RX];
436
437 /* Check that IP address is local and matches incoming interface. */
438 fib_index0 = ip4_fib_table_get_index_for_sw_if_index (sw_if_index0);
439 if (~0 == fib_index0)
440 {
441 error0 = ETHERNET_ARP_ERROR_interface_no_table;
442 goto drop;
443
444 }
445
446 {
447 /*
448 * we're looking for FIB entries that indicate the source
449 * is attached. There may be more specific non-attached
450 * routes that match the source, but these do not influence
451 * whether we respond to an ARP request, i.e. they do not
452 * influence whether we are the correct way for the sender
453 * to reach us, they only affect how we reach the sender.
454 */
455 fib_entry_t *src_fib_entry;
456 const fib_prefix_t *pfx;
457 fib_entry_src_t *src;
458 fib_source_t source;
459 int attached;
460 int mask;
461
462 mask = 32;
463 attached = 0;
464
465 do
466 {
467 src_fei = ip4_fib_table_lookup (ip4_fib_get (fib_index0),
468 &arp0->
469 ip4_over_ethernet[0].ip4,
470 mask);
471 src_fib_entry = fib_entry_get (src_fei);
472
473 /*
474 * It's possible that the source that provides the
475 * flags we need, or the flags we must not have,
476 * is not the best source, so check then all.
477 */
478 /* *INDENT-OFF* */
479 FOR_EACH_SRC_ADDED(src_fib_entry, src, source,
480 ({
481 src_flags = fib_entry_get_flags_for_source (src_fei, source);
482
483 /* Reject requests/replies with our local interface
484 address. */
485 if (FIB_ENTRY_FLAG_LOCAL & src_flags)
486 {
487 error0 = ETHERNET_ARP_ERROR_l3_src_address_is_local;
488 /*
489 * When VPP has an interface whose address is also
490 * applied to a TAP interface on the host, then VPP's
491 * TAP interface will be unnumbered to the 'real'
492 * interface and do proxy ARP from the host.
493 * The curious aspect of this setup is that ARP requests
494 * from the host will come from the VPP's own address.
495 * So don't drop immediately here, instead go see if this
496 * is a proxy ARP case.
497 */
498 goto next_feature;
499 }
500 /* A Source must also be local to subnet of matching
501 * interface address. */
502 if ((FIB_ENTRY_FLAG_ATTACHED & src_flags) ||
503 (FIB_ENTRY_FLAG_CONNECTED & src_flags))
504 {
505 attached = 1;
506 break;
507 }
508 /*
509 * else
510 * The packet was sent from an address that is not
511 * connected nor attached i.e. it is not from an
512 * address that is covered by a link's sub-net,
513 * nor is it a already learned host resp.
514 */
515 }));
516 /* *INDENT-ON* */
517
518 /*
519 * shorter mask lookup for the next iteration.
520 */
521 pfx = fib_entry_get_prefix (src_fei);
522 mask = pfx->fp_len - 1;
523
524 /*
525 * continue until we hit the default route or we find
526 * the attached we are looking for. The most likely
527 * outcome is we find the attached with the first source
528 * on the first lookup.
529 */
530 }
531 while (!attached &&
532 !fib_entry_is_sourced (src_fei, FIB_SOURCE_DEFAULT_ROUTE));
533
534 if (!attached)
535 {
536 /*
537 * the matching route is a not attached, i.e. it was
538 * added as a result of routing, rather than interface/ARP
539 * configuration. If the matching route is not a host route
540 * (i.e. a /32)
541 */
542 error0 = ETHERNET_ARP_ERROR_l3_src_address_not_local;
543 goto drop;
544 }
545 }
546
547 dst_fei = ip4_fib_table_lookup (ip4_fib_get (fib_index0),
548 &arp0->ip4_over_ethernet[1].ip4,
549 32);
Neale Rannscc4f7e12020-10-26 10:44:54 +0000550 conn_sw_if_index0 = fib_entry_get_any_resolving_interface (dst_fei);
Neale Ranns22eefd72020-09-23 11:25:21 +0000551
Neale Rannscbe25aa2019-09-30 10:53:31 +0000552 switch (arp_dst_fib_check (dst_fei, &dst_flags))
553 {
554 case ARP_DST_FIB_ADJ:
555 /*
556 * We matched an adj-fib on ths source subnet (a /32 previously
557 * added as a result of ARP). If this request is a gratuitous
558 * ARP, then learn from it.
559 * The check for matching an adj-fib, is to prevent hosts
560 * from spamming us with gratuitous ARPS that might otherwise
561 * blow our ARP cache
562 */
Neale Ranns22eefd72020-09-23 11:25:21 +0000563 if (conn_sw_if_index0 != sw_if_index0)
564 error0 = ETHERNET_ARP_ERROR_l3_dst_address_not_local;
565 else if (arp0->ip4_over_ethernet[0].ip4.as_u32 ==
566 arp0->ip4_over_ethernet[1].ip4.as_u32)
567 error0 = arp_learn (sw_if_index0,
568 &arp0->ip4_over_ethernet[0]);
Neale Rannscbe25aa2019-09-30 10:53:31 +0000569 goto drop;
570 case ARP_DST_FIB_CONN:
571 /* destination is connected, continue to process */
572 break;
573 case ARP_DST_FIB_NONE:
574 /* destination is not connected, stop here */
575 error0 = ETHERNET_ARP_ERROR_l3_dst_address_not_local;
576 goto next_feature;
577 }
578
579 dst_is_local0 = (FIB_ENTRY_FLAG_LOCAL & dst_flags);
580 pfx0 = fib_entry_get_prefix (dst_fei);
581 if_addr0 = &pfx0->fp_addr.ip4;
582
583 is_vrrp_reply0 =
584 ((arp0->opcode ==
585 clib_host_to_net_u16 (ETHERNET_ARP_OPCODE_reply))
586 &&
587 (!memcmp
588 (arp0->ip4_over_ethernet[0].mac.bytes, vrrp_prefix,
589 sizeof (vrrp_prefix))));
590
591 /* Trash ARP packets whose ARP-level source addresses do not
592 match their L2-frame-level source addresses, unless it's
593 a reply from a VRRP virtual router */
594 if (!ethernet_mac_address_equal
595 (eth_rx->src_address,
596 arp0->ip4_over_ethernet[0].mac.bytes) && !is_vrrp_reply0)
597 {
598 error0 = ETHERNET_ARP_ERROR_l2_address_mismatch;
599 goto drop;
600 }
601
602 /* Learn or update sender's mapping only for replies to addresses
603 * that are local to the subnet */
604 if (arp0->opcode ==
605 clib_host_to_net_u16 (ETHERNET_ARP_OPCODE_reply))
606 {
607 if (dst_is_local0)
608 error0 =
609 arp_learn (sw_if_index0, &arp0->ip4_over_ethernet[0]);
610 else
611 /* a reply for a non-local destination could be a GARP.
612 * GARPs for hosts we know were handled above, so this one
613 * we drop */
614 error0 = ETHERNET_ARP_ERROR_l3_dst_address_not_local;
615
616 goto next_feature;
617 }
618 else if (arp0->opcode ==
619 clib_host_to_net_u16 (ETHERNET_ARP_OPCODE_request) &&
620 (dst_is_local0 == 0))
621 {
622 goto next_feature;
623 }
624
625 /* Honor unnumbered interface, if any */
Neale Rannscbe25aa2019-09-30 10:53:31 +0000626 if (sw_if_index0 != conn_sw_if_index0 ||
627 sw_if_index0 != fib_entry_get_resolving_interface (src_fei))
628 {
629 /*
630 * The interface the ARP is sent to or was received on is not the
631 * interface on which the covering prefix is configured.
632 * Maybe this is a case for unnumbered.
633 */
634 if (!arp_unnumbered (p0, sw_if_index0, conn_sw_if_index0))
635 {
636 error0 = ETHERNET_ARP_ERROR_unnumbered_mismatch;
637 goto drop;
638 }
639 }
640 if (arp0->ip4_over_ethernet[0].ip4.as_u32 ==
641 arp0->ip4_over_ethernet[1].ip4.as_u32)
642 {
643 error0 = ETHERNET_ARP_ERROR_gratuitous_arp;
644 goto drop;
645 }
646
647 next0 = arp_mk_reply (vnm, p0, sw_if_index0,
648 if_addr0, arp0, eth_rx);
649
650 /* We are going to reply to this request, so, in the absence of
651 errors, learn the sender */
652 if (!error0)
653 error0 = arp_learn (sw_if_index0, &arp0->ip4_over_ethernet[1]);
654
655 n_replies_sent += 1;
656 goto enqueue;
657
658 next_feature:
659 vnet_feature_next (&next0, p0);
660 goto enqueue;
661
662 drop:
663 p0->error = node->errors[error0];
664
665 enqueue:
666 vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
667 n_left_to_next, pi0, next0);
668 }
669
670 vlib_put_next_frame (vm, node, next_index, n_left_to_next);
671 }
672
673 vlib_error_count (vm, node->node_index,
674 ETHERNET_ARP_ERROR_replies_sent, n_replies_sent);
675
676 return frame->n_vectors;
677}
678
679
680static char *ethernet_arp_error_strings[] = {
681#define _(sym,string) string,
682 foreach_ethernet_arp_error
683#undef _
684};
685
686/* *INDENT-OFF* */
687
688VLIB_REGISTER_NODE (arp_input_node, static) =
689{
690 .function = arp_input,
691 .name = "arp-input",
692 .vector_size = sizeof (u32),
693 .n_errors = ETHERNET_ARP_N_ERROR,
694 .error_strings = ethernet_arp_error_strings,
695 .n_next_nodes = ARP_INPUT_N_NEXT,
696 .next_nodes = {
697 [ARP_INPUT_NEXT_DROP] = "error-drop",
698 [ARP_INPUT_NEXT_DISABLED] = "arp-disabled",
699 },
700 .format_buffer = format_ethernet_arp_header,
701 .format_trace = format_ethernet_arp_input_trace,
702};
703
704VLIB_REGISTER_NODE (arp_disabled_node, static) =
705{
706 .function = arp_disabled,
707 .name = "arp-disabled",
708 .vector_size = sizeof (u32),
709 .n_errors = ARP_DISABLED_N_ERROR,
710 .error_strings = arp_disabled_error_strings,
711 .n_next_nodes = ARP_DISABLED_N_NEXT,
712 .next_nodes = {
713 [ARP_INPUT_NEXT_DROP] = "error-drop",
714 },
715 .format_buffer = format_ethernet_arp_header,
716 .format_trace = format_ethernet_arp_input_trace,
717};
718
719VLIB_REGISTER_NODE (arp_reply_node, static) =
720{
721 .function = arp_reply,
722 .name = "arp-reply",
723 .vector_size = sizeof (u32),
724 .n_errors = ETHERNET_ARP_N_ERROR,
725 .error_strings = ethernet_arp_error_strings,
726 .n_next_nodes = ARP_REPLY_N_NEXT,
727 .next_nodes = {
728 [ARP_REPLY_NEXT_DROP] = "error-drop",
729 [ARP_REPLY_NEXT_REPLY_TX] = "interface-output",
730 },
731 .format_buffer = format_ethernet_arp_header,
732 .format_trace = format_ethernet_arp_input_trace,
733};
734
735/* Built-in ARP rx feature path definition */
736VNET_FEATURE_ARC_INIT (arp_feat, static) =
737{
738 .arc_name = "arp",
739 .start_nodes = VNET_FEATURES ("arp-input"),
740 .last_in_arc = "error-drop",
741 .arc_index_ptr = &ethernet_arp_main.feature_arc_index,
742};
743
744VNET_FEATURE_INIT (arp_reply_feat_node, static) =
745{
746 .arc_name = "arp",
747 .node_name = "arp-reply",
748 .runs_before = VNET_FEATURES ("arp-disabled"),
749};
750
751VNET_FEATURE_INIT (arp_proxy_feat_node, static) =
752{
753 .arc_name = "arp",
754 .node_name = "arp-proxy",
755 .runs_after = VNET_FEATURES ("arp-reply"),
756 .runs_before = VNET_FEATURES ("arp-disabled"),
757};
758
759VNET_FEATURE_INIT (arp_disabled_feat_node, static) =
760{
761 .arc_name = "arp",
762 .node_name = "arp-disabled",
763 .runs_before = VNET_FEATURES ("error-drop"),
764};
765
766VNET_FEATURE_INIT (arp_drop_feat_node, static) =
767{
768 .arc_name = "arp",
769 .node_name = "error-drop",
770 .runs_before = 0, /* last feature */
771};
772
773/* *INDENT-ON* */
774
775typedef struct
776{
777 pg_edit_t l2_type, l3_type;
778 pg_edit_t n_l2_address_bytes, n_l3_address_bytes;
779 pg_edit_t opcode;
780 struct
781 {
782 pg_edit_t mac;
783 pg_edit_t ip4;
784 } ip4_over_ethernet[2];
785} pg_ethernet_arp_header_t;
786
787static inline void
788pg_ethernet_arp_header_init (pg_ethernet_arp_header_t * p)
789{
790 /* Initialize fields that are not bit fields in the IP header. */
791#define _(f) pg_edit_init (&p->f, ethernet_arp_header_t, f);
792 _(l2_type);
793 _(l3_type);
794 _(n_l2_address_bytes);
795 _(n_l3_address_bytes);
796 _(opcode);
797 _(ip4_over_ethernet[0].mac);
798 _(ip4_over_ethernet[0].ip4);
799 _(ip4_over_ethernet[1].mac);
800 _(ip4_over_ethernet[1].ip4);
801#undef _
802}
803
804uword
805unformat_pg_arp_header (unformat_input_t * input, va_list * args)
806{
807 pg_stream_t *s = va_arg (*args, pg_stream_t *);
808 pg_ethernet_arp_header_t *p;
809 u32 group_index;
810
811 p = pg_create_edit_group (s, sizeof (p[0]), sizeof (ethernet_arp_header_t),
812 &group_index);
813 pg_ethernet_arp_header_init (p);
814
815 /* Defaults. */
816 pg_edit_set_fixed (&p->l2_type, ETHERNET_ARP_HARDWARE_TYPE_ethernet);
817 pg_edit_set_fixed (&p->l3_type, ETHERNET_TYPE_IP4);
818 pg_edit_set_fixed (&p->n_l2_address_bytes, 6);
819 pg_edit_set_fixed (&p->n_l3_address_bytes, 4);
820
821 if (!unformat (input, "%U: %U/%U -> %U/%U",
822 unformat_pg_edit,
823 unformat_ethernet_arp_opcode_net_byte_order, &p->opcode,
824 unformat_pg_edit,
825 unformat_mac_address_t, &p->ip4_over_ethernet[0].mac,
826 unformat_pg_edit,
827 unformat_ip4_address, &p->ip4_over_ethernet[0].ip4,
828 unformat_pg_edit,
829 unformat_mac_address_t, &p->ip4_over_ethernet[1].mac,
830 unformat_pg_edit,
831 unformat_ip4_address, &p->ip4_over_ethernet[1].ip4))
832 {
833 /* Free up any edits we may have added. */
834 pg_free_edit_group (s);
835 return 0;
836 }
837 return 1;
838}
839
840/*
841 * callback when an interface address is added or deleted
842 */
843static void
844arp_enable_disable_interface (ip4_main_t * im,
845 uword opaque, u32 sw_if_index, u32 is_enable)
846{
847 ethernet_arp_main_t *am = &ethernet_arp_main;
848
849 if (is_enable)
850 arp_enable (am, sw_if_index);
851 else
852 arp_disable (am, sw_if_index);
853}
854
855/*
856 * Remove any arp entries associated with the specified interface
857 */
858static clib_error_t *
859vnet_arp_add_del_sw_interface (vnet_main_t * vnm, u32 sw_if_index, u32 is_add)
860{
861 ethernet_arp_main_t *am = &ethernet_arp_main;
BenoƮt Ganne6178bda2020-11-04 10:02:03 +0100862 if (is_add)
863 arp_disable (am, sw_if_index);
Neale Rannscbe25aa2019-09-30 10:53:31 +0000864 return (NULL);
865}
866
867VNET_SW_INTERFACE_ADD_DEL_FUNCTION (vnet_arp_add_del_sw_interface);
868
869const static ip_neighbor_vft_t arp_vft = {
870 .inv_proxy4_add = arp_proxy_add,
871 .inv_proxy4_del = arp_proxy_del,
872 .inv_proxy4_enable = arp_proxy_disable,
873 .inv_proxy4_disable = arp_proxy_disable,
874};
875
876static clib_error_t *
877ethernet_arp_init (vlib_main_t * vm)
878{
879 ethernet_arp_main_t *am = &ethernet_arp_main;
880 ip4_main_t *im = &ip4_main;
881 pg_node_t *pn;
882
883 ethernet_register_input_type (vm, ETHERNET_TYPE_ARP, arp_input_node.index);
884
885 pn = pg_get_node (arp_input_node.index);
886 pn->unformat_edit = unformat_pg_arp_header;
887
888 am->opcode_by_name = hash_create_string (0, sizeof (uword));
889#define _(o) hash_set_mem (am->opcode_by_name, #o, ETHERNET_ARP_OPCODE_##o);
890 foreach_ethernet_arp_opcode;
891#undef _
892
893 /* don't trace ARP error packets */
894 {
895 vlib_node_runtime_t *rt =
896 vlib_node_get_runtime (vm, arp_input_node.index);
897
898#define _(a,b) \
899 vnet_pcap_drop_trace_filter_add_del \
900 (rt->errors[ETHERNET_ARP_ERROR_##a], \
901 1 /* is_add */);
902 foreach_ethernet_arp_error
903#undef _
904 }
905
906 {
907 ip4_enable_disable_interface_callback_t cb = {
908 .function = arp_enable_disable_interface,
909 };
910 vec_add1 (im->enable_disable_interface_callbacks, cb);
911 }
912
Neale Rannsdc617b82020-08-20 08:22:56 +0000913 ip_neighbor_register (AF_IP4, &arp_vft);
Neale Rannscbe25aa2019-09-30 10:53:31 +0000914
915 return 0;
916}
917
918/* *INDENT-OFF* */
919VLIB_INIT_FUNCTION (ethernet_arp_init) =
920{
921 .runs_after = VLIB_INITS("ethernet_init",
922 "ip_neighbor_init"),
923};
924/* *INDENT-ON* */
925
926/*
927 * fd.io coding-style-patch-verification: ON
928 *
929 * Local Variables:
930 * eval: (c-set-style "gnu")
931 * End:
932 */