blob: 1e04c6624311b596b937200828de2aba4e62a761 [file] [log] [blame]
Marco Varleseb598f1d2017-09-19 14:25:28 +02001/*
2 * Copyright (c) 2017 SUSE LLC.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at:
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15#include <vnet/geneve/geneve.h>
16#include <vnet/ip/format.h>
17#include <vnet/fib/fib_entry.h>
18#include <vnet/fib/fib_table.h>
Neale Ranns1f50bf82019-07-16 15:28:52 +000019#include <vnet/fib/fib_entry_track.h>
Marco Varleseb598f1d2017-09-19 14:25:28 +020020#include <vnet/mfib/mfib_table.h>
21#include <vnet/adj/adj_mcast.h>
22#include <vnet/interface.h>
23#include <vlib/vlib.h>
24
25/**
26 * @file
27 * @brief GENEVE.
28 *
29 * GENEVE provides the features needed to allow L2 bridge domains (BDs)
30 * to span multiple servers. This is done by building an L2 overlay on
31 * top of an L3 network underlay using GENEVE tunnels.
32 *
33 * This makes it possible for servers to be co-located in the same data
34 * center or be separated geographically as long as they are reachable
35 * through the underlay L3 network.
Marco Varleseb598f1d2017-09-19 14:25:28 +020036 */
37
38
39geneve_main_t geneve_main;
40
Filip Tehlar55333d72019-03-05 00:36:04 -080041u8 *
42format_geneve_encap_trace (u8 * s, va_list * args)
43{
44 CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
45 CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
46 geneve_encap_trace_t *t = va_arg (*args, geneve_encap_trace_t *);
47
48 s = format (s, "GENEVE encap to geneve_tunnel%d vni %d",
49 t->tunnel_index, t->vni);
50 return s;
51}
52
Marco Varleseb598f1d2017-09-19 14:25:28 +020053static u8 *
54format_decap_next (u8 * s, va_list * args)
55{
56 u32 next_index = va_arg (*args, u32);
57
58 switch (next_index)
59 {
60 case GENEVE_INPUT_NEXT_DROP:
61 return format (s, "drop");
62 case GENEVE_INPUT_NEXT_L2_INPUT:
63 return format (s, "l2");
64 default:
65 return format (s, "index %d", next_index);
66 }
67 return s;
68}
69
70u8 *
71format_geneve_tunnel (u8 * s, va_list * args)
72{
73 geneve_tunnel_t *t = va_arg (*args, geneve_tunnel_t *);
74 geneve_main_t *ngm = &geneve_main;
75
John Lo4478d8e2018-01-12 17:15:25 -050076 s = format (s, "[%d] lcl %U rmt %U vni %d fib-idx %d sw-if-idx %d ",
Marco Varleseb598f1d2017-09-19 14:25:28 +020077 t - ngm->tunnels,
78 format_ip46_address, &t->local, IP46_TYPE_ANY,
79 format_ip46_address, &t->remote, IP46_TYPE_ANY,
John Lo4478d8e2018-01-12 17:15:25 -050080 t->vni, t->encap_fib_index, t->sw_if_index);
Marco Varleseb598f1d2017-09-19 14:25:28 +020081
John Lo4478d8e2018-01-12 17:15:25 -050082 s = format (s, "encap-dpo-idx %d ", t->next_dpo.dpoi_index);
83 s = format (s, "decap-next-%U ", format_decap_next, t->decap_next_index);
Marco Varleseb598f1d2017-09-19 14:25:28 +020084
John Lo4478d8e2018-01-12 17:15:25 -050085 if (PREDICT_FALSE (ip46_address_is_multicast (&t->remote)))
86 s = format (s, "mcast-sw-if-idx %d ", t->mcast_sw_if_index);
87
Marco Varleseb598f1d2017-09-19 14:25:28 +020088 return s;
89}
90
91static u8 *
92format_geneve_name (u8 * s, va_list * args)
93{
94 u32 dev_instance = va_arg (*args, u32);
95 return format (s, "geneve_tunnel%d", dev_instance);
96}
97
Marco Varleseb598f1d2017-09-19 14:25:28 +020098static clib_error_t *
99geneve_interface_admin_up_down (vnet_main_t * vnm, u32 hw_if_index, u32 flags)
100{
101 u32 hw_flags = (flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) ?
102 VNET_HW_INTERFACE_FLAG_LINK_UP : 0;
103 vnet_hw_interface_set_flags (vnm, hw_if_index, hw_flags);
104
105 return /* no error */ 0;
106}
107
108/* *INDENT-OFF* */
109VNET_DEVICE_CLASS (geneve_device_class, static) = {
110 .name = "GENEVE",
111 .format_device_name = format_geneve_name,
112 .format_tx_trace = format_geneve_encap_trace,
Marco Varleseb598f1d2017-09-19 14:25:28 +0200113 .admin_up_down_function = geneve_interface_admin_up_down,
114};
115/* *INDENT-ON* */
116
117static u8 *
118format_geneve_header_with_length (u8 * s, va_list * args)
119{
120 u32 dev_instance = va_arg (*args, u32);
121 s = format (s, "unimplemented dev %u", dev_instance);
122 return s;
123}
124
125/* *INDENT-OFF* */
126VNET_HW_INTERFACE_CLASS (geneve_hw_class) = {
127 .name = "GENEVE",
128 .format_header = format_geneve_header_with_length,
129 .build_rewrite = default_build_rewrite,
130};
131/* *INDENT-ON* */
132
133static void
134geneve_tunnel_restack_dpo (geneve_tunnel_t * t)
135{
136 dpo_id_t dpo = DPO_INVALID;
137 u32 encap_index = ip46_address_is_ip4 (&t->remote) ?
138 geneve4_encap_node.index : geneve6_encap_node.index;
139 fib_forward_chain_type_t forw_type = ip46_address_is_ip4 (&t->remote) ?
140 FIB_FORW_CHAIN_TYPE_UNICAST_IP4 : FIB_FORW_CHAIN_TYPE_UNICAST_IP6;
141
142 fib_entry_contribute_forwarding (t->fib_entry_index, forw_type, &dpo);
143 dpo_stack_from_node (encap_index, &t->next_dpo, &dpo);
144 dpo_reset (&dpo);
145}
146
147static geneve_tunnel_t *
148geneve_tunnel_from_fib_node (fib_node_t * node)
149{
Marco Varleseb598f1d2017-09-19 14:25:28 +0200150 ASSERT (FIB_NODE_TYPE_GENEVE_TUNNEL == node->fn_type);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200151 return ((geneve_tunnel_t *) (((char *) node) -
152 STRUCT_OFFSET_OF (geneve_tunnel_t, node)));
153}
154
155/**
156 * Function definition to backwalk a FIB node -
157 * Here we will restack the new dpo of GENEVE DIP to encap node.
158 */
159static fib_node_back_walk_rc_t
160geneve_tunnel_back_walk (fib_node_t * node, fib_node_back_walk_ctx_t * ctx)
161{
162 geneve_tunnel_restack_dpo (geneve_tunnel_from_fib_node (node));
163 return (FIB_NODE_BACK_WALK_CONTINUE);
164}
165
166/**
167 * Function definition to get a FIB node from its index
168 */
169static fib_node_t *
170geneve_tunnel_fib_node_get (fib_node_index_t index)
171{
172 geneve_tunnel_t *t;
173 geneve_main_t *vxm = &geneve_main;
174
175 t = pool_elt_at_index (vxm->tunnels, index);
176
177 return (&t->node);
178}
179
180/**
181 * Function definition to inform the FIB node that its last lock has gone.
182 */
183static void
184geneve_tunnel_last_lock_gone (fib_node_t * node)
185{
186 /*
187 * The GENEVE tunnel is a root of the graph. As such
188 * it never has children and thus is never locked.
189 */
190 ASSERT (0);
191}
192
193/*
194 * Virtual function table registered by GENEVE tunnels
195 * for participation in the FIB object graph.
196 */
197const static fib_node_vft_t geneve_vft = {
198 .fnv_get = geneve_tunnel_fib_node_get,
199 .fnv_last_lock = geneve_tunnel_last_lock_gone,
200 .fnv_back_walk = geneve_tunnel_back_walk,
201};
202
203
204#define foreach_copy_field \
205_(vni) \
206_(mcast_sw_if_index) \
207_(encap_fib_index) \
208_(decap_next_index) \
209_(local) \
210_(remote)
211
212static int
213geneve_rewrite (geneve_tunnel_t * t, bool is_ip6)
214{
215 union
216 {
217 ip4_geneve_header_t *h4;
218 ip6_geneve_header_t *h6;
219 u8 *rw;
220 } r =
221 {
222 .rw = 0};
223 int len = is_ip6 ? sizeof *r.h6 : sizeof *r.h4;
224#if SUPPORT_OPTIONS_HEADER==1
225 len += t->options_len;
226#endif
227
228 vec_validate_aligned (r.rw, len - 1, CLIB_CACHE_LINE_BYTES);
229
230 udp_header_t *udp;
231 geneve_header_t *geneve;
232 /* Fixed portion of the (outer) ip header */
233 if (!is_ip6)
234 {
235 ip4_header_t *ip = &r.h4->ip4;
236 udp = &r.h4->udp, geneve = &r.h4->geneve;
237 ip->ip_version_and_header_length = 0x45;
238 ip->ttl = 254;
239 ip->protocol = IP_PROTOCOL_UDP;
240
241 ip->src_address = t->local.ip4;
242 ip->dst_address = t->remote.ip4;
243
244 /* we fix up the ip4 header length and checksum after-the-fact */
245 ip->checksum = ip4_header_checksum (ip);
246 }
247 else
248 {
249 ip6_header_t *ip = &r.h6->ip6;
250 udp = &r.h6->udp, geneve = &r.h6->geneve;
251 ip->ip_version_traffic_class_and_flow_label =
252 clib_host_to_net_u32 (6 << 28);
253 ip->hop_limit = 255;
254 ip->protocol = IP_PROTOCOL_UDP;
255
256 ip->src_address = t->local.ip6;
257 ip->dst_address = t->remote.ip6;
258 }
259
260 /* UDP header, randomize local port on something, maybe? */
261 udp->src_port = clib_host_to_net_u16 (5251);
262 udp->dst_port = clib_host_to_net_u16 (UDP_DST_PORT_geneve);
263
264 /* GENEVE header */
265 vnet_set_geneve_version (geneve, GENEVE_VERSION);
266#if SUPPORT_OPTIONS_HEADER==1
267 vnet_set_geneve_options_len (geneve, t->options_len);
268#else
269 vnet_set_geneve_options_len (geneve, 0);
270#endif
271 vnet_set_geneve_oamframe_bit (geneve, 0);
272 vnet_set_geneve_critical_bit (geneve, 0);
273 vnet_set_geneve_protocol (geneve, GENEVE_ETH_PROTOCOL);
Marco Varlese60d48bb2017-11-20 09:20:38 +0100274
275 vnet_geneve_hdr_1word_hton (geneve);
276
Marco Varleseb598f1d2017-09-19 14:25:28 +0200277 vnet_set_geneve_vni (geneve, t->vni);
278
279 t->rewrite = r.rw;
280 return (0);
281}
282
283static bool
284geneve_decap_next_is_valid (geneve_main_t * vxm, u32 is_ip6,
285 u32 decap_next_index)
286{
287 vlib_main_t *vm = vxm->vlib_main;
288 u32 input_idx =
289 (!is_ip6) ? geneve4_input_node.index : geneve6_input_node.index;
290 vlib_node_runtime_t *r = vlib_node_get_runtime (vm, input_idx);
291
292 return decap_next_index < r->n_next_nodes;
293}
294
Neale Ranns91fd9102020-04-03 07:46:28 +0000295typedef union
296{
297 struct
298 {
299 fib_node_index_t mfib_entry_index;
300 adj_index_t mcast_adj_index;
301 };
302 u64 as_u64;
303} __clib_packed mcast_shared_t;
Marco Varleseb598f1d2017-09-19 14:25:28 +0200304
305static inline mcast_shared_t
306mcast_shared_get (ip46_address_t * ip)
307{
308 ASSERT (ip46_address_is_multicast (ip));
309 uword *p = hash_get_mem (geneve_main.mcast_shared, ip);
Dave Barachffd15462020-02-18 10:12:23 -0500310 ALWAYS_ASSERT (p);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200311 return (mcast_shared_t)
312 {
313 .as_u64 = *p};
314}
315
316static inline void
317mcast_shared_add (ip46_address_t * remote,
318 fib_node_index_t mfei, adj_index_t ai)
319{
320 mcast_shared_t new_ep = {
321 .mcast_adj_index = ai,
322 .mfib_entry_index = mfei,
323 };
324
John Loe6bfeab2018-01-04 16:39:42 -0500325 hash_set_mem_alloc (&geneve_main.mcast_shared, remote, new_ep.as_u64);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200326}
327
328static inline void
329mcast_shared_remove (ip46_address_t * remote)
330{
331 mcast_shared_t ep = mcast_shared_get (remote);
332
333 adj_unlock (ep.mcast_adj_index);
334 mfib_table_entry_delete_index (ep.mfib_entry_index, MFIB_SOURCE_GENEVE);
335
John Loe6bfeab2018-01-04 16:39:42 -0500336 hash_unset_mem_free (&geneve_main.mcast_shared, remote);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200337}
338
Marco Varleseb598f1d2017-09-19 14:25:28 +0200339int vnet_geneve_add_del_tunnel
340 (vnet_geneve_add_del_tunnel_args_t * a, u32 * sw_if_indexp)
341{
342 geneve_main_t *vxm = &geneve_main;
343 geneve_tunnel_t *t = 0;
344 vnet_main_t *vnm = vxm->vnet_main;
345 uword *p;
346 u32 hw_if_index = ~0;
347 u32 sw_if_index = ~0;
348 int rv;
349 geneve4_tunnel_key_t key4;
350 geneve6_tunnel_key_t key6;
351 u32 is_ip6 = a->is_ip6;
352
353 if (!is_ip6)
354 {
355 key4.remote = a->remote.ip4.as_u32;
Neale Ranns91fd9102020-04-03 07:46:28 +0000356 key4.vni = clib_host_to_net_u32 (a->vni << GENEVE_VNI_SHIFT);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200357 p = hash_get (vxm->geneve4_tunnel_by_key, key4.as_u64);
358 }
359 else
360 {
361 key6.remote = a->remote.ip6;
Neale Ranns91fd9102020-04-03 07:46:28 +0000362 key6.vni = clib_host_to_net_u32 (a->vni << GENEVE_VNI_SHIFT);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200363 p = hash_get_mem (vxm->geneve6_tunnel_by_key, &key6);
364 }
365
366 if (a->is_add)
367 {
368 l2input_main_t *l2im = &l2input_main;
369
370 /* adding a tunnel: tunnel must not already exist */
371 if (p)
372 return VNET_API_ERROR_TUNNEL_EXIST;
373
374 /*if not set explicitly, default to l2 */
375 if (a->decap_next_index == ~0)
376 a->decap_next_index = GENEVE_INPUT_NEXT_L2_INPUT;
377 if (!geneve_decap_next_is_valid (vxm, is_ip6, a->decap_next_index))
378 return VNET_API_ERROR_INVALID_DECAP_NEXT;
379
380 pool_get_aligned (vxm->tunnels, t, CLIB_CACHE_LINE_BYTES);
Dave Barachb7b92992018-10-17 10:38:51 -0400381 clib_memset (t, 0, sizeof (*t));
Marco Varleseb598f1d2017-09-19 14:25:28 +0200382
383 /* copy from arg structure */
384#define _(x) t->x = a->x;
385 foreach_copy_field;
386#undef _
387
388 rv = geneve_rewrite (t, is_ip6);
389 if (rv)
390 {
391 pool_put (vxm->tunnels, t);
392 return rv;
393 }
394
395 /* copy the key */
396 if (is_ip6)
John Loe6bfeab2018-01-04 16:39:42 -0500397 hash_set_mem_alloc (&vxm->geneve6_tunnel_by_key, &key6,
398 t - vxm->tunnels);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200399 else
400 hash_set (vxm->geneve4_tunnel_by_key, key4.as_u64, t - vxm->tunnels);
401
402 vnet_hw_interface_t *hi;
403 if (vec_len (vxm->free_geneve_tunnel_hw_if_indices) > 0)
404 {
405 vnet_interface_main_t *im = &vnm->interface_main;
406 hw_if_index = vxm->free_geneve_tunnel_hw_if_indices
407 [vec_len (vxm->free_geneve_tunnel_hw_if_indices) - 1];
408 _vec_len (vxm->free_geneve_tunnel_hw_if_indices) -= 1;
409
410 hi = vnet_get_hw_interface (vnm, hw_if_index);
411 hi->dev_instance = t - vxm->tunnels;
412 hi->hw_instance = hi->dev_instance;
413
414 /* clear old stats of freed tunnel before reuse */
415 sw_if_index = hi->sw_if_index;
416 vnet_interface_counter_lock (im);
417 vlib_zero_combined_counter
418 (&im->combined_sw_if_counters[VNET_INTERFACE_COUNTER_TX],
419 sw_if_index);
420 vlib_zero_combined_counter (&im->combined_sw_if_counters
421 [VNET_INTERFACE_COUNTER_RX],
422 sw_if_index);
423 vlib_zero_simple_counter (&im->sw_if_counters
424 [VNET_INTERFACE_COUNTER_DROP],
425 sw_if_index);
426 vnet_interface_counter_unlock (im);
427 }
428 else
429 {
430 hw_if_index = vnet_register_interface
431 (vnm, geneve_device_class.index, t - vxm->tunnels,
432 geneve_hw_class.index, t - vxm->tunnels);
433 hi = vnet_get_hw_interface (vnm, hw_if_index);
434 }
435
John Loe5453d02018-01-23 19:21:34 -0500436 /* Set geneve tunnel output node */
437 u32 encap_index = !is_ip6 ?
438 geneve4_encap_node.index : geneve6_encap_node.index;
439 vnet_set_interface_output_node (vnm, hw_if_index, encap_index);
440
Marco Varleseb598f1d2017-09-19 14:25:28 +0200441 t->hw_if_index = hw_if_index;
442 t->sw_if_index = sw_if_index = hi->sw_if_index;
443
444 vec_validate_init_empty (vxm->tunnel_index_by_sw_if_index, sw_if_index,
445 ~0);
446 vxm->tunnel_index_by_sw_if_index[sw_if_index] = t - vxm->tunnels;
447
448 /* setup l2 input config with l2 feature and bd 0 to drop packet */
449 vec_validate (l2im->configs, sw_if_index);
450 l2im->configs[sw_if_index].feature_bitmap = L2INPUT_FEAT_DROP;
451 l2im->configs[sw_if_index].bd_index = 0;
452
453 vnet_sw_interface_t *si = vnet_get_sw_interface (vnm, sw_if_index);
454 si->flags &= ~VNET_SW_INTERFACE_FLAG_HIDDEN;
455 vnet_sw_interface_set_flags (vnm, sw_if_index,
456 VNET_SW_INTERFACE_FLAG_ADMIN_UP);
457
458 fib_node_init (&t->node, FIB_NODE_TYPE_GENEVE_TUNNEL);
459 fib_prefix_t tun_remote_pfx;
Marco Varleseb598f1d2017-09-19 14:25:28 +0200460 vnet_flood_class_t flood_class = VNET_FLOOD_CLASS_TUNNEL_NORMAL;
461
462 fib_prefix_from_ip46_addr (&t->remote, &tun_remote_pfx);
463 if (!ip46_address_is_multicast (&t->remote))
464 {
465 /* Unicast tunnel -
466 * source the FIB entry for the tunnel's destination
467 * and become a child thereof. The tunnel will then get poked
468 * when the forwarding for the entry updates, and the tunnel can
469 * re-stack accordingly
470 */
Nick Zavaritsky27518c22020-02-27 15:54:58 +0000471 vtep_addr_ref (&vxm->vtep_table, t->encap_fib_index, &t->local);
Neale Ranns1f50bf82019-07-16 15:28:52 +0000472 t->fib_entry_index = fib_entry_track (t->encap_fib_index,
473 &tun_remote_pfx,
474 FIB_NODE_TYPE_GENEVE_TUNNEL,
475 t - vxm->tunnels,
476 &t->sibling_index);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200477 geneve_tunnel_restack_dpo (t);
478 }
479 else
480 {
481 /* Multicast tunnel -
482 * as the same mcast group can be used for mutiple mcast tunnels
483 * with different VNIs, create the output fib adjecency only if
484 * it does not already exist
485 */
486 fib_protocol_t fp = fib_ip_proto (is_ip6);
487
Nick Zavaritsky27518c22020-02-27 15:54:58 +0000488 if (vtep_addr_ref (&vxm->vtep_table,
489 t->encap_fib_index, &t->remote) == 1)
Marco Varleseb598f1d2017-09-19 14:25:28 +0200490 {
491 fib_node_index_t mfei;
492 adj_index_t ai;
493 fib_route_path_t path = {
494 .frp_proto = fib_proto_to_dpo (fp),
495 .frp_addr = zero_addr,
496 .frp_sw_if_index = 0xffffffff,
497 .frp_fib_index = ~0,
Neale Ranns097fa662018-05-01 05:17:55 -0700498 .frp_weight = 1,
Marco Varleseb598f1d2017-09-19 14:25:28 +0200499 .frp_flags = FIB_ROUTE_PATH_LOCAL,
Neale Ranns097fa662018-05-01 05:17:55 -0700500 .frp_mitf_flags = MFIB_ITF_FLAG_FORWARD,
Marco Varleseb598f1d2017-09-19 14:25:28 +0200501 };
502 const mfib_prefix_t mpfx = {
503 .fp_proto = fp,
504 .fp_len = (is_ip6 ? 128 : 32),
505 .fp_grp_addr = tun_remote_pfx.fp_addr,
506 };
507
508 /*
509 * Setup the (*,G) to receive traffic on the mcast group
510 * - the forwarding interface is for-us
511 * - the accepting interface is that from the API
512 */
513 mfib_table_entry_path_update (t->encap_fib_index,
Neale Ranns097fa662018-05-01 05:17:55 -0700514 &mpfx, MFIB_SOURCE_GENEVE, &path);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200515
516 path.frp_sw_if_index = a->mcast_sw_if_index;
517 path.frp_flags = FIB_ROUTE_PATH_FLAG_NONE;
Neale Ranns097fa662018-05-01 05:17:55 -0700518 path.frp_mitf_flags = MFIB_ITF_FLAG_ACCEPT;
Marco Varleseb598f1d2017-09-19 14:25:28 +0200519 mfei = mfib_table_entry_path_update (t->encap_fib_index,
520 &mpfx,
Neale Ranns097fa662018-05-01 05:17:55 -0700521 MFIB_SOURCE_GENEVE, &path);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200522
523 /*
524 * Create the mcast adjacency to send traffic to the group
525 */
526 ai = adj_mcast_add_or_lock (fp,
527 fib_proto_to_link (fp),
528 a->mcast_sw_if_index);
529
530 /*
531 * create a new end-point
532 */
533 mcast_shared_add (&t->remote, mfei, ai);
534 }
535
536 dpo_id_t dpo = DPO_INVALID;
537 mcast_shared_t ep = mcast_shared_get (&t->remote);
538
539 /* Stack shared mcast remote mac addr rewrite on encap */
540 dpo_set (&dpo, DPO_ADJACENCY_MCAST,
541 fib_proto_to_dpo (fp), ep.mcast_adj_index);
542
543 dpo_stack_from_node (encap_index, &t->next_dpo, &dpo);
544 dpo_reset (&dpo);
545 flood_class = VNET_FLOOD_CLASS_TUNNEL_MASTER;
546 }
547
Marco Varleseb598f1d2017-09-19 14:25:28 +0200548 vnet_get_sw_interface (vnet_get_main (), sw_if_index)->flood_class =
549 flood_class;
550 }
551 else
552 {
553 /* deleting a tunnel: tunnel must exist */
554 if (!p)
555 return VNET_API_ERROR_NO_SUCH_ENTRY;
556
557 t = pool_elt_at_index (vxm->tunnels, p[0]);
558
559 sw_if_index = t->sw_if_index;
560 vnet_sw_interface_set_flags (vnm, t->sw_if_index, 0 /* down */ );
561 vnet_sw_interface_t *si = vnet_get_sw_interface (vnm, t->sw_if_index);
562 si->flags |= VNET_SW_INTERFACE_FLAG_HIDDEN;
563
564 /* make sure tunnel is removed from l2 bd or xconnect */
Neale Rannsb4743802018-09-05 09:13:57 -0700565 set_int_l2_mode (vxm->vlib_main, vnm, MODE_L3, t->sw_if_index, 0,
566 L2_BD_PORT_TYPE_NORMAL, 0, 0);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200567 vec_add1 (vxm->free_geneve_tunnel_hw_if_indices, t->hw_if_index);
568
569 vxm->tunnel_index_by_sw_if_index[t->sw_if_index] = ~0;
570
571 if (!is_ip6)
572 hash_unset (vxm->geneve4_tunnel_by_key, key4.as_u64);
573 else
John Loe6bfeab2018-01-04 16:39:42 -0500574 hash_unset_mem_free (&vxm->geneve6_tunnel_by_key, &key6);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200575
576 if (!ip46_address_is_multicast (&t->remote))
577 {
Nick Zavaritsky27518c22020-02-27 15:54:58 +0000578 vtep_addr_unref (&vxm->vtep_table, t->encap_fib_index, &t->local);
Neale Ranns1f50bf82019-07-16 15:28:52 +0000579 fib_entry_untrack (t->fib_entry_index, t->sibling_index);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200580 }
Nick Zavaritsky27518c22020-02-27 15:54:58 +0000581 else if (vtep_addr_unref (&vxm->vtep_table,
582 t->encap_fib_index, &t->remote) == 0)
Marco Varleseb598f1d2017-09-19 14:25:28 +0200583 {
584 mcast_shared_remove (&t->remote);
585 }
586
587 fib_node_deinit (&t->node);
588 vec_free (t->rewrite);
589 pool_put (vxm->tunnels, t);
590 }
591
592 if (sw_if_indexp)
593 *sw_if_indexp = sw_if_index;
594
Jakub Grajciardf3ca232019-06-04 13:16:42 +0200595 if (a->is_add)
596 {
597 /* register udp ports */
598 if (!is_ip6 && !udp_is_valid_dst_port (UDP_DST_PORT_geneve, 1))
599 udp_register_dst_port (vxm->vlib_main, UDP_DST_PORT_geneve,
600 geneve4_input_node.index, 1);
601 if (is_ip6 && !udp_is_valid_dst_port (UDP_DST_PORT_geneve6, 0))
602 udp_register_dst_port (vxm->vlib_main, UDP_DST_PORT_geneve6,
603 geneve6_input_node.index, 0);
604 }
605
Marco Varleseb598f1d2017-09-19 14:25:28 +0200606 return 0;
607}
608
609static uword
610get_decap_next_for_node (u32 node_index, u32 ipv4_set)
611{
612 geneve_main_t *vxm = &geneve_main;
613 vlib_main_t *vm = vxm->vlib_main;
614 uword input_node = (ipv4_set) ? geneve4_input_node.index :
615 geneve6_input_node.index;
616
617 return vlib_node_add_next (vm, input_node, node_index);
618}
619
620static uword
621unformat_decap_next (unformat_input_t * input, va_list * args)
622{
623 u32 *result = va_arg (*args, u32 *);
624 u32 ipv4_set = va_arg (*args, int);
625 geneve_main_t *vxm = &geneve_main;
626 vlib_main_t *vm = vxm->vlib_main;
627 u32 node_index;
628 u32 tmp;
629
630 if (unformat (input, "l2"))
631 *result = GENEVE_INPUT_NEXT_L2_INPUT;
632 else if (unformat (input, "node %U", unformat_vlib_node, vm, &node_index))
633 *result = get_decap_next_for_node (node_index, ipv4_set);
634 else if (unformat (input, "%d", &tmp))
635 *result = tmp;
636 else
637 return 0;
638 return 1;
639}
640
641static clib_error_t *
642geneve_add_del_tunnel_command_fn (vlib_main_t * vm,
643 unformat_input_t * input,
644 vlib_cli_command_t * cmd)
645{
646 unformat_input_t _line_input, *line_input = &_line_input;
647 ip46_address_t local, remote;
648 u8 is_add = 1;
649 u8 local_set = 0;
650 u8 remote_set = 0;
651 u8 grp_set = 0;
652 u8 ipv4_set = 0;
653 u8 ipv6_set = 0;
654 u32 encap_fib_index = 0;
655 u32 mcast_sw_if_index = ~0;
656 u32 decap_next_index = GENEVE_INPUT_NEXT_L2_INPUT;
657 u32 vni = 0;
658 u32 tmp;
659 int rv;
660 vnet_geneve_add_del_tunnel_args_t _a, *a = &_a;
661 u32 tunnel_sw_if_index;
662 clib_error_t *error = NULL;
663
664 /* Cant "universally zero init" (={0}) due to GCC bug 53119 */
Dave Barachb7b92992018-10-17 10:38:51 -0400665 clib_memset (&local, 0, sizeof local);
666 clib_memset (&remote, 0, sizeof remote);
Marco Varleseb598f1d2017-09-19 14:25:28 +0200667
668 /* Get a line of input. */
669 if (!unformat_user (input, unformat_line_input, line_input))
670 return 0;
671
672 while (unformat_check_input (line_input) != UNFORMAT_END_OF_INPUT)
673 {
674 if (unformat (line_input, "del"))
675 {
676 is_add = 0;
677 }
678 else if (unformat (line_input, "local %U",
679 unformat_ip4_address, &local.ip4))
680 {
681 local_set = 1;
682 ipv4_set = 1;
683 }
684 else if (unformat (line_input, "remote %U",
685 unformat_ip4_address, &remote.ip4))
686 {
687 remote_set = 1;
688 ipv4_set = 1;
689 }
690 else if (unformat (line_input, "local %U",
691 unformat_ip6_address, &local.ip6))
692 {
693 local_set = 1;
694 ipv6_set = 1;
695 }
696 else if (unformat (line_input, "remote %U",
697 unformat_ip6_address, &remote.ip6))
698 {
699 remote_set = 1;
700 ipv6_set = 1;
701 }
702 else if (unformat (line_input, "group %U %U",
703 unformat_ip4_address, &remote.ip4,
704 unformat_vnet_sw_interface,
705 vnet_get_main (), &mcast_sw_if_index))
706 {
707 grp_set = remote_set = 1;
708 ipv4_set = 1;
709 }
710 else if (unformat (line_input, "group %U %U",
711 unformat_ip6_address, &remote.ip6,
712 unformat_vnet_sw_interface,
713 vnet_get_main (), &mcast_sw_if_index))
714 {
715 grp_set = remote_set = 1;
716 ipv6_set = 1;
717 }
718 else if (unformat (line_input, "encap-vrf-id %d", &tmp))
719 {
720 encap_fib_index = fib_table_find (fib_ip_proto (ipv6_set), tmp);
721 if (encap_fib_index == ~0)
722 {
723 error =
724 clib_error_return (0, "nonexistent encap-vrf-id %d", tmp);
725 goto done;
726 }
727 }
728 else if (unformat (line_input, "decap-next %U", unformat_decap_next,
729 &decap_next_index, ipv4_set))
730 ;
731 else if (unformat (line_input, "vni %d", &vni))
732 {
733 if (vni >> 24)
734 {
735 error = clib_error_return (0, "vni %d out of range", vni);
736 goto done;
737 }
738 }
739 else
740 {
741 error = clib_error_return (0, "parse error: '%U'",
742 format_unformat_error, line_input);
743 goto done;
744 }
745 }
746
747 if (local_set == 0)
748 {
749 error = clib_error_return (0, "tunnel local address not specified");
750 goto done;
751 }
752
753 if (remote_set == 0)
754 {
755 error = clib_error_return (0, "tunnel remote address not specified");
756 goto done;
757 }
758
759 if (grp_set && !ip46_address_is_multicast (&remote))
760 {
761 error = clib_error_return (0, "tunnel group address not multicast");
762 goto done;
763 }
764
765 if (grp_set == 0 && ip46_address_is_multicast (&remote))
766 {
767 error = clib_error_return (0, "remote address must be unicast");
768 goto done;
769 }
770
771 if (grp_set && mcast_sw_if_index == ~0)
772 {
773 error = clib_error_return (0, "tunnel nonexistent multicast device");
774 goto done;
775 }
776
777 if (ipv4_set && ipv6_set)
778 {
779 error = clib_error_return (0, "both IPv4 and IPv6 addresses specified");
780 goto done;
781 }
782
783 if (ip46_address_cmp (&local, &remote) == 0)
784 {
785 error =
786 clib_error_return (0, "local and remote addresses are identical");
787 goto done;
788 }
789
790 if (decap_next_index == ~0)
791 {
792 error = clib_error_return (0, "next node not found");
793 goto done;
794 }
795
796 if (vni == 0)
797 {
798 error = clib_error_return (0, "vni not specified");
799 goto done;
800 }
801
Dave Barachb7b92992018-10-17 10:38:51 -0400802 clib_memset (a, 0, sizeof (*a));
Marco Varleseb598f1d2017-09-19 14:25:28 +0200803
804 a->is_add = is_add;
805 a->is_ip6 = ipv6_set;
806
807#define _(x) a->x = x;
808 foreach_copy_field;
809#undef _
810
811 rv = vnet_geneve_add_del_tunnel (a, &tunnel_sw_if_index);
812
813 switch (rv)
814 {
815 case 0:
816 if (is_add)
817 vlib_cli_output (vm, "%U\n", format_vnet_sw_if_index_name,
818 vnet_get_main (), tunnel_sw_if_index);
819 break;
820
821 case VNET_API_ERROR_TUNNEL_EXIST:
822 error = clib_error_return (0, "tunnel already exists...");
823 goto done;
824
825 case VNET_API_ERROR_NO_SUCH_ENTRY:
826 error = clib_error_return (0, "tunnel does not exist...");
827 goto done;
828
829 default:
830 error = clib_error_return
831 (0, "vnet_geneve_add_del_tunnel returned %d", rv);
832 goto done;
833 }
834
835done:
836 unformat_free (line_input);
837
838 return error;
839}
840
841/*?
842 * Add or delete a GENEVE Tunnel.
843 *
844 * GENEVE provides the features needed to allow L2 bridge domains (BDs)
845 * to span multiple servers. This is done by building an L2 overlay on
846 * top of an L3 network underlay using GENEVE tunnels.
847 *
848 * This makes it possible for servers to be co-located in the same data
849 * center or be separated geographically as long as they are reachable
850 * through the underlay L3 network.
851 *
852 * You can refer to this kind of L2 overlay bridge domain as a GENEVE
853 * segment.
854 *
855 * @cliexpar
856 * Example of how to create a GENEVE Tunnel:
857 * @cliexcmd{create geneve tunnel local 10.0.3.1 remote 10.0.3.3 vni 13 encap-vrf-id 7}
858 * Example of how to delete a GENEVE Tunnel:
859 * @cliexcmd{create geneve tunnel local 10.0.3.1 remote 10.0.3.3 vni 13 del}
860 ?*/
861/* *INDENT-OFF* */
862VLIB_CLI_COMMAND (create_geneve_tunnel_command, static) = {
863 .path = "create geneve tunnel",
864 .short_help =
865 "create geneve tunnel local <local-vtep-addr>"
866 " {remote <remote-vtep-addr>|group <mcast-vtep-addr> <intf-name>} vni <nn>"
867 " [encap-vrf-id <nn>] [decap-next [l2|node <name>]] [del]",
868 .function = geneve_add_del_tunnel_command_fn,
869};
870/* *INDENT-ON* */
871
872static clib_error_t *
873show_geneve_tunnel_command_fn (vlib_main_t * vm,
874 unformat_input_t * input,
875 vlib_cli_command_t * cmd)
876{
877 geneve_main_t *vxm = &geneve_main;
878 geneve_tunnel_t *t;
879
880 if (pool_elts (vxm->tunnels) == 0)
881 vlib_cli_output (vm, "No geneve tunnels configured...");
882
883 pool_foreach (t, vxm->tunnels, (
884 {
885 vlib_cli_output (vm, "%U",
886 format_geneve_tunnel, t);
887 }
888 ));
889
890 return 0;
891}
892
893/*?
894 * Display all the GENEVE Tunnel entries.
895 *
896 * @cliexpar
897 * Example of how to display the GENEVE Tunnel entries:
898 * @cliexstart{show geneve tunnel}
899 * [0] local 10.0.3.1 remote 10.0.3.3 vni 13 encap_fib_index 0 sw_if_index 5 decap_next l2
900 * @cliexend
901 ?*/
902/* *INDENT-OFF* */
903VLIB_CLI_COMMAND (show_geneve_tunnel_command, static) = {
904 .path = "show geneve tunnel",
905 .short_help = "show geneve tunnel",
906 .function = show_geneve_tunnel_command_fn,
907};
908/* *INDENT-ON* */
909
910
911void
912vnet_int_geneve_bypass_mode (u32 sw_if_index, u8 is_ip6, u8 is_enable)
913{
914 if (is_ip6)
915 vnet_feature_enable_disable ("ip6-unicast", "ip6-geneve-bypass",
916 sw_if_index, is_enable, 0, 0);
917 else
918 vnet_feature_enable_disable ("ip4-unicast", "ip4-geneve-bypass",
919 sw_if_index, is_enable, 0, 0);
920}
921
922
923static clib_error_t *
924set_ip_geneve_bypass (u32 is_ip6,
925 unformat_input_t * input, vlib_cli_command_t * cmd)
926{
927 unformat_input_t _line_input, *line_input = &_line_input;
928 vnet_main_t *vnm = vnet_get_main ();
929 clib_error_t *error = 0;
930 u32 sw_if_index, is_enable;
931
932 sw_if_index = ~0;
933 is_enable = 1;
934
935 if (!unformat_user (input, unformat_line_input, line_input))
936 return 0;
937
938 while (unformat_check_input (line_input) != UNFORMAT_END_OF_INPUT)
939 {
940 if (unformat_user
941 (line_input, unformat_vnet_sw_interface, vnm, &sw_if_index))
942 ;
943 else if (unformat (line_input, "del"))
944 is_enable = 0;
945 else
946 {
947 error = unformat_parse_error (line_input);
948 goto done;
949 }
950 }
951
952 if (~0 == sw_if_index)
953 {
954 error = clib_error_return (0, "unknown interface `%U'",
955 format_unformat_error, line_input);
956 goto done;
957 }
958
959 vnet_int_geneve_bypass_mode (sw_if_index, is_ip6, is_enable);
960
961done:
962 unformat_free (line_input);
963
964 return error;
965}
966
967static clib_error_t *
968set_ip4_geneve_bypass (vlib_main_t * vm,
969 unformat_input_t * input, vlib_cli_command_t * cmd)
970{
971 return set_ip_geneve_bypass (0, input, cmd);
972}
973
974/*?
975 * This command adds the 'ip4-geneve-bypass' graph node for a given interface.
976 * By adding the IPv4 geneve-bypass graph node to an interface, the node checks
977 * for and validate input geneve packet and bypass ip4-lookup, ip4-local,
978 * ip4-udp-lookup nodes to speedup geneve packet forwarding. This node will
979 * cause extra overhead to for non-geneve packets which is kept at a minimum.
980 *
981 * @cliexpar
982 * @parblock
983 * Example of graph node before ip4-geneve-bypass is enabled:
984 * @cliexstart{show vlib graph ip4-geneve-bypass}
985 * Name Next Previous
986 * ip4-geneve-bypass error-drop [0]
987 * geneve4-input [1]
988 * ip4-lookup [2]
989 * @cliexend
990 *
991 * Example of how to enable ip4-geneve-bypass on an interface:
992 * @cliexcmd{set interface ip geneve-bypass GigabitEthernet2/0/0}
993 *
994 * Example of graph node after ip4-geneve-bypass is enabled:
995 * @cliexstart{show vlib graph ip4-geneve-bypass}
996 * Name Next Previous
997 * ip4-geneve-bypass error-drop [0] ip4-input
998 * geneve4-input [1] ip4-input-no-checksum
999 * ip4-lookup [2]
1000 * @cliexend
1001 *
1002 * Example of how to display the feature enabed on an interface:
1003 * @cliexstart{show ip interface features GigabitEthernet2/0/0}
1004 * IP feature paths configured on GigabitEthernet2/0/0...
1005 * ...
1006 * ipv4 unicast:
1007 * ip4-geneve-bypass
1008 * ip4-lookup
1009 * ...
1010 * @cliexend
1011 *
1012 * Example of how to disable ip4-geneve-bypass on an interface:
1013 * @cliexcmd{set interface ip geneve-bypass GigabitEthernet2/0/0 del}
1014 * @endparblock
1015?*/
1016/* *INDENT-OFF* */
1017VLIB_CLI_COMMAND (set_interface_ip_geneve_bypass_command, static) = {
1018 .path = "set interface ip geneve-bypass",
1019 .function = set_ip4_geneve_bypass,
1020 .short_help = "set interface ip geneve-bypass <interface> [del]",
1021};
1022/* *INDENT-ON* */
1023
1024static clib_error_t *
1025set_ip6_geneve_bypass (vlib_main_t * vm,
1026 unformat_input_t * input, vlib_cli_command_t * cmd)
1027{
1028 return set_ip_geneve_bypass (1, input, cmd);
1029}
1030
1031/*?
1032 * This command adds the 'ip6-geneve-bypass' graph node for a given interface.
1033 * By adding the IPv6 geneve-bypass graph node to an interface, the node checks
1034 * for and validate input geneve packet and bypass ip6-lookup, ip6-local,
1035 * ip6-udp-lookup nodes to speedup geneve packet forwarding. This node will
1036 * cause extra overhead to for non-geneve packets which is kept at a minimum.
1037 *
1038 * @cliexpar
1039 * @parblock
1040 * Example of graph node before ip6-geneve-bypass is enabled:
1041 * @cliexstart{show vlib graph ip6-geneve-bypass}
1042 * Name Next Previous
1043 * ip6-geneve-bypass error-drop [0]
1044 * geneve6-input [1]
1045 * ip6-lookup [2]
1046 * @cliexend
1047 *
1048 * Example of how to enable ip6-geneve-bypass on an interface:
1049 * @cliexcmd{set interface ip6 geneve-bypass GigabitEthernet2/0/0}
1050 *
1051 * Example of graph node after ip6-geneve-bypass is enabled:
1052 * @cliexstart{show vlib graph ip6-geneve-bypass}
1053 * Name Next Previous
1054 * ip6-geneve-bypass error-drop [0] ip6-input
1055 * geneve6-input [1] ip4-input-no-checksum
1056 * ip6-lookup [2]
1057 * @cliexend
1058 *
1059 * Example of how to display the feature enabed on an interface:
1060 * @cliexstart{show ip interface features GigabitEthernet2/0/0}
1061 * IP feature paths configured on GigabitEthernet2/0/0...
1062 * ...
1063 * ipv6 unicast:
1064 * ip6-geneve-bypass
1065 * ip6-lookup
1066 * ...
1067 * @cliexend
1068 *
1069 * Example of how to disable ip6-geneve-bypass on an interface:
1070 * @cliexcmd{set interface ip6 geneve-bypass GigabitEthernet2/0/0 del}
1071 * @endparblock
1072?*/
1073/* *INDENT-OFF* */
1074VLIB_CLI_COMMAND (set_interface_ip6_geneve_bypass_command, static) = {
1075 .path = "set interface ip6 geneve-bypass",
1076 .function = set_ip6_geneve_bypass,
Paul Vinciguerra5fb22782019-11-07 17:20:48 -05001077 .short_help = "set interface ip6 geneve-bypass <interface> [del]",
Marco Varleseb598f1d2017-09-19 14:25:28 +02001078};
1079/* *INDENT-ON* */
1080
1081clib_error_t *
1082geneve_init (vlib_main_t * vm)
1083{
1084 geneve_main_t *vxm = &geneve_main;
1085
1086 vxm->vnet_main = vnet_get_main ();
1087 vxm->vlib_main = vm;
1088
1089 /* initialize the ip6 hash */
1090 vxm->geneve6_tunnel_by_key = hash_create_mem (0,
1091 sizeof (geneve6_tunnel_key_t),
1092 sizeof (uword));
Nick Zavaritsky27518c22020-02-27 15:54:58 +00001093 vxm->vtep_table = vtep_table_create ();
Marco Varleseb598f1d2017-09-19 14:25:28 +02001094 vxm->mcast_shared = hash_create_mem (0,
1095 sizeof (ip46_address_t),
1096 sizeof (mcast_shared_t));
1097
Marco Varleseb598f1d2017-09-19 14:25:28 +02001098 fib_node_register_type (FIB_NODE_TYPE_GENEVE_TUNNEL, &geneve_vft);
1099
1100 return 0;
1101}
1102
1103VLIB_INIT_FUNCTION (geneve_init);
1104
1105/*
1106 * fd.io coding-style-patch-verification: ON
1107 *
1108 * Local Variables:
1109 * eval: (c-set-style "gnu")
1110 * End:
1111 */