ip: Remove unused include file
[vpp.git] / src / vnet / ip / ip6_forward.c
1 /*
2  * Copyright (c) 2016 Cisco and/or its affiliates.
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 /*
16  * ip/ip6_forward.c: IP v6 forwarding
17  *
18  * Copyright (c) 2008 Eliot Dresselhaus
19  *
20  * Permission is hereby granted, free of charge, to any person obtaining
21  * a copy of this software and associated documentation files (the
22  * "Software"), to deal in the Software without restriction, including
23  * without limitation the rights to use, copy, modify, merge, publish,
24  * distribute, sublicense, and/or sell copies of the Software, and to
25  * permit persons to whom the Software is furnished to do so, subject to
26  * the following conditions:
27  *
28  * The above copyright notice and this permission notice shall be
29  * included in all copies or substantial portions of the Software.
30  *
31  *  THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
32  *  EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
33  *  MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
34  *  NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
35  *  LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
36  *  OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
37  *  WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
38  */
39
40 #include <vnet/vnet.h>
41 #include <vnet/ip/ip.h>
42 #include <vnet/ip/ip_frag.h>
43 #include <vnet/ip/ip6_link.h>
44 #include <vnet/ethernet/ethernet.h>     /* for ethernet_header_t */
45 #include <vnet/srp/srp.h>       /* for srp_hw_interface_class */
46 #include <vppinfra/cache.h>
47 #include <vnet/fib/fib_urpf_list.h>     /* for FIB uRPF check */
48 #include <vnet/fib/ip6_fib.h>
49 #include <vnet/mfib/ip6_mfib.h>
50 #include <vnet/dpo/load_balance_map.h>
51 #include <vnet/dpo/classify_dpo.h>
52 #include <vnet/classify/vnet_classify.h>
53
54 #ifndef CLIB_MARCH_VARIANT
55 #include <vppinfra/bihash_template.c>
56 #endif
57 #include <vnet/ip/ip6_forward.h>
58 #include <vnet/interface_output.h>
59
60 /* Flag used by IOAM code. Classifier sets it pop-hop-by-hop checks it */
61 #define OI_DECAP   0x80000000
62
63 static void
64 ip6_add_interface_prefix_routes (ip6_main_t * im,
65                                  u32 sw_if_index,
66                                  u32 fib_index,
67                                  ip6_address_t * address, u32 address_length)
68 {
69   ip_lookup_main_t *lm = &im->lookup_main;
70   ip_interface_prefix_t *if_prefix;
71
72   /* *INDENT-OFF* */
73   ip_interface_prefix_key_t key = {
74     .prefix = {
75       .fp_len = address_length,
76       .fp_proto = FIB_PROTOCOL_IP6,
77       .fp_addr.ip6 = {
78         .as_u64 = {
79           address->as_u64[0] & im->fib_masks[address_length].as_u64[0],
80           address->as_u64[1] & im->fib_masks[address_length].as_u64[1],
81         },
82       },
83     },
84     .sw_if_index = sw_if_index,
85   };
86   /* *INDENT-ON* */
87
88   /* If prefix already set on interface, just increment ref count & return */
89   if_prefix = ip_get_interface_prefix (lm, &key);
90   if (if_prefix)
91     {
92       if_prefix->ref_count += 1;
93       return;
94     }
95
96   /* New prefix - allocate a pool entry, initialize it, add to the hash */
97   pool_get (lm->if_prefix_pool, if_prefix);
98   if_prefix->ref_count = 1;
99   clib_memcpy (&if_prefix->key, &key, sizeof (key));
100   mhash_set (&lm->prefix_to_if_prefix_index, &key,
101              if_prefix - lm->if_prefix_pool, 0 /* old value */ );
102
103   /* length < 128 - add glean */
104   if (address_length < 128)
105     {
106       /* set the glean route for the prefix */
107       fib_table_entry_update_one_path (fib_index, &key.prefix,
108                                        FIB_SOURCE_INTERFACE,
109                                        (FIB_ENTRY_FLAG_CONNECTED |
110                                         FIB_ENTRY_FLAG_ATTACHED),
111                                        DPO_PROTO_IP6,
112                                        /* No next-hop address */
113                                        NULL, sw_if_index,
114                                        /* invalid FIB index */
115                                        ~0, 1,
116                                        /* no out-label stack */
117                                        NULL, FIB_ROUTE_PATH_FLAG_NONE);
118     }
119 }
120
121 static void
122 ip6_add_interface_routes (vnet_main_t * vnm, u32 sw_if_index,
123                           ip6_main_t * im, u32 fib_index,
124                           ip_interface_address_t * a)
125 {
126   ip_lookup_main_t *lm = &im->lookup_main;
127   ip6_address_t *address = ip_interface_address_get_address (lm, a);
128   fib_prefix_t pfx = {
129     .fp_len = a->address_length,
130     .fp_proto = FIB_PROTOCOL_IP6,
131     .fp_addr.ip6 = *address,
132   };
133
134   /* set special routes for the prefix if needed */
135   ip6_add_interface_prefix_routes (im, sw_if_index, fib_index,
136                                    address, a->address_length);
137
138   pfx.fp_len = 128;
139   if (sw_if_index < vec_len (lm->classify_table_index_by_sw_if_index))
140     {
141       u32 classify_table_index =
142         lm->classify_table_index_by_sw_if_index[sw_if_index];
143       if (classify_table_index != (u32) ~ 0)
144         {
145           dpo_id_t dpo = DPO_INVALID;
146
147           dpo_set (&dpo,
148                    DPO_CLASSIFY,
149                    DPO_PROTO_IP6,
150                    classify_dpo_create (DPO_PROTO_IP6, classify_table_index));
151
152           fib_table_entry_special_dpo_add (fib_index,
153                                            &pfx,
154                                            FIB_SOURCE_CLASSIFY,
155                                            FIB_ENTRY_FLAG_NONE, &dpo);
156           dpo_reset (&dpo);
157         }
158     }
159
160   fib_table_entry_update_one_path (fib_index, &pfx,
161                                    FIB_SOURCE_INTERFACE,
162                                    (FIB_ENTRY_FLAG_CONNECTED |
163                                     FIB_ENTRY_FLAG_LOCAL),
164                                    DPO_PROTO_IP6,
165                                    &pfx.fp_addr,
166                                    sw_if_index, ~0,
167                                    1, NULL, FIB_ROUTE_PATH_FLAG_NONE);
168 }
169
170 static void
171 ip6_del_interface_prefix_routes (ip6_main_t * im,
172                                  u32 sw_if_index,
173                                  u32 fib_index,
174                                  ip6_address_t * address, u32 address_length)
175 {
176   ip_lookup_main_t *lm = &im->lookup_main;
177   ip_interface_prefix_t *if_prefix;
178
179   /* *INDENT-OFF* */
180   ip_interface_prefix_key_t key = {
181     .prefix = {
182       .fp_len = address_length,
183       .fp_proto = FIB_PROTOCOL_IP6,
184       .fp_addr.ip6 = {
185         .as_u64 = {
186           address->as_u64[0] & im->fib_masks[address_length].as_u64[0],
187           address->as_u64[1] & im->fib_masks[address_length].as_u64[1],
188         },
189       },
190     },
191     .sw_if_index = sw_if_index,
192   };
193   /* *INDENT-ON* */
194
195   if_prefix = ip_get_interface_prefix (lm, &key);
196   if (!if_prefix)
197     {
198       clib_warning ("Prefix not found while deleting %U",
199                     format_ip4_address_and_length, address, address_length);
200       return;
201     }
202
203   /* If not deleting last intf addr in prefix, decrement ref count & return */
204   if_prefix->ref_count -= 1;
205   if (if_prefix->ref_count > 0)
206     return;
207
208   /* length <= 128, delete glean route */
209   if (address_length <= 128)
210     {
211       /* remove glean route for prefix */
212       fib_table_entry_delete (fib_index, &key.prefix, FIB_SOURCE_INTERFACE);
213     }
214
215   mhash_unset (&lm->prefix_to_if_prefix_index, &key, 0 /* old_value */ );
216   pool_put (lm->if_prefix_pool, if_prefix);
217 }
218
219 static void
220 ip6_del_interface_routes (u32 sw_if_index, ip6_main_t * im,
221                           u32 fib_index,
222                           ip6_address_t * address, u32 address_length)
223 {
224   fib_prefix_t pfx = {
225     .fp_len = 128,
226     .fp_proto = FIB_PROTOCOL_IP6,
227     .fp_addr.ip6 = *address,
228   };
229
230   /* delete special routes for the prefix if needed */
231   ip6_del_interface_prefix_routes (im, sw_if_index, fib_index,
232                                    address, address_length);
233
234   fib_table_entry_delete (fib_index, &pfx, FIB_SOURCE_INTERFACE);
235 }
236
237 #ifndef CLIB_MARCH_VARIANT
238 void
239 ip6_sw_interface_enable_disable (u32 sw_if_index, u32 is_enable)
240 {
241   ip6_main_t *im = &ip6_main;
242   vnet_main_t *vnm = vnet_get_main ();
243   vnet_hw_interface_t *hi = vnet_get_sup_hw_interface (vnm, sw_if_index);
244
245   vec_validate_init_empty (im->ip_enabled_by_sw_if_index, sw_if_index, 0);
246
247   /*
248    * enable/disable only on the 1<->0 transition
249    */
250   if (is_enable)
251     {
252       if (1 != ++im->ip_enabled_by_sw_if_index[sw_if_index])
253         return;
254     }
255   else
256     {
257       /* The ref count is 0 when an address is removed from an interface that has
258        * no address - this is not a ciritical error */
259       if (0 == im->ip_enabled_by_sw_if_index[sw_if_index] ||
260           0 != --im->ip_enabled_by_sw_if_index[sw_if_index])
261         return;
262     }
263
264   vnet_feature_enable_disable ("ip6-unicast", "ip6-not-enabled", sw_if_index,
265                                !is_enable, 0, 0);
266
267   vnet_feature_enable_disable ("ip6-multicast", "ip6-not-enabled",
268                                sw_if_index, !is_enable, 0, 0);
269
270   if (is_enable)
271     hi->l3_if_count++;
272   else if (hi->l3_if_count)
273     hi->l3_if_count--;
274 }
275
276 /* get first interface address */
277 ip6_address_t *
278 ip6_interface_first_address (ip6_main_t * im, u32 sw_if_index)
279 {
280   ip_lookup_main_t *lm = &im->lookup_main;
281   ip_interface_address_t *ia = 0;
282   ip6_address_t *result = 0;
283
284   /* *INDENT-OFF* */
285   foreach_ip_interface_address (lm, ia, sw_if_index,
286                                 1 /* honor unnumbered */,
287   ({
288     ip6_address_t * a = ip_interface_address_get_address (lm, ia);
289     result = a;
290     break;
291   }));
292   /* *INDENT-ON* */
293   return result;
294 }
295
296 clib_error_t *
297 ip6_add_del_interface_address (vlib_main_t * vm,
298                                u32 sw_if_index,
299                                ip6_address_t * address,
300                                u32 address_length, u32 is_del)
301 {
302   vnet_main_t *vnm = vnet_get_main ();
303   ip6_main_t *im = &ip6_main;
304   ip_lookup_main_t *lm = &im->lookup_main;
305   clib_error_t *error = NULL;
306   u32 if_address_index;
307   ip6_address_fib_t ip6_af, *addr_fib = 0;
308   const ip6_address_t *ll_addr;
309
310   /* local0 interface doesn't support IP addressing */
311   if (sw_if_index == 0)
312     {
313       return
314         clib_error_create ("local0 interface doesn't support IP addressing");
315     }
316
317   if (ip6_address_is_link_local_unicast (address))
318     {
319       if (address_length != 128)
320         {
321           vnm->api_errno = VNET_API_ERROR_ADDRESS_LENGTH_MISMATCH;
322           return
323             clib_error_create
324             ("prefix length of link-local address must be 128");
325         }
326       if (!is_del)
327         {
328           int rv;
329
330           rv = ip6_link_set_local_address (sw_if_index, address);
331
332           if (rv)
333             {
334               vnm->api_errno = rv;
335               return clib_error_create ("address not assignable");
336             }
337         }
338       else
339         {
340           ll_addr = ip6_get_link_local_address (sw_if_index);
341           if (ip6_address_is_equal (ll_addr, address))
342             {
343               vnm->api_errno = VNET_API_ERROR_ADDRESS_NOT_DELETABLE;
344               return clib_error_create ("address not deletable");
345             }
346           else
347             {
348               vnm->api_errno = VNET_API_ERROR_ADDRESS_NOT_FOUND_FOR_INTERFACE;
349               return clib_error_create ("address not found");
350             }
351         }
352
353       return (NULL);
354     }
355
356   vec_validate (im->fib_index_by_sw_if_index, sw_if_index);
357   vec_validate (im->mfib_index_by_sw_if_index, sw_if_index);
358
359   ip6_addr_fib_init (&ip6_af, address,
360                      vec_elt (im->fib_index_by_sw_if_index, sw_if_index));
361   vec_add1 (addr_fib, ip6_af);
362
363   /* *INDENT-OFF* */
364   if (!is_del)
365     {
366       /* When adding an address check that it does not conflict
367          with an existing address on any interface in this table. */
368       ip_interface_address_t *ia;
369       vnet_sw_interface_t *sif;
370
371       pool_foreach (sif, vnm->interface_main.sw_interfaces)
372        {
373           if (im->fib_index_by_sw_if_index[sw_if_index] ==
374               im->fib_index_by_sw_if_index[sif->sw_if_index])
375             {
376               foreach_ip_interface_address
377                 (&im->lookup_main, ia, sif->sw_if_index,
378                  0 /* honor unnumbered */ ,
379                  ({
380                    ip6_address_t * x =
381                      ip_interface_address_get_address
382                      (&im->lookup_main, ia);
383
384                    if (ip6_destination_matches_route
385                        (im, address, x, ia->address_length) ||
386                        ip6_destination_matches_route (im,
387                                                       x,
388                                                       address,
389                                                       address_length))
390                      {
391                        /* an intf may have >1 addr from the same prefix */
392                        if ((sw_if_index == sif->sw_if_index) &&
393                            (ia->address_length == address_length) &&
394                            !ip6_address_is_equal (x, address))
395                          continue;
396
397                        if (ia->flags & IP_INTERFACE_ADDRESS_FLAG_STALE)
398                          /* if the address we're comparing against is stale
399                           * then the CP has not added this one back yet, maybe
400                           * it never will, so we have to assume it won't and
401                           * ignore it. if it does add it back, then it will fail
402                           * because this one is now present */
403                          continue;
404
405                        /* error if the length or intf was different */
406                        vnm->api_errno = VNET_API_ERROR_DUPLICATE_IF_ADDRESS;
407                        error =  clib_error_create
408                          ("failed to add %U which conflicts with %U for interface %U",
409                           format_ip6_address_and_length, address,
410                           address_length,
411                           format_ip6_address_and_length, x,
412                           ia->address_length,
413                           format_vnet_sw_if_index_name, vnm,
414                           sif->sw_if_index);
415                        goto done;
416                      }
417                  }));
418             }
419       }
420     }
421   /* *INDENT-ON* */
422
423   if_address_index = ip_interface_address_find (lm, addr_fib, address_length);
424
425   if (is_del)
426     {
427       if (~0 == if_address_index)
428         {
429           vnm->api_errno = VNET_API_ERROR_ADDRESS_NOT_FOUND_FOR_INTERFACE;
430           error = clib_error_create ("%U not found for interface %U",
431                                      lm->format_address_and_length,
432                                      addr_fib, address_length,
433                                      format_vnet_sw_if_index_name, vnm,
434                                      sw_if_index);
435           goto done;
436         }
437
438       error = ip_interface_address_del (lm, vnm, if_address_index, addr_fib,
439                                         address_length, sw_if_index);
440       if (error)
441         goto done;
442     }
443   else
444     {
445       if (~0 != if_address_index)
446         {
447           ip_interface_address_t *ia;
448
449           ia = pool_elt_at_index (lm->if_address_pool, if_address_index);
450
451           if (ia->flags & IP_INTERFACE_ADDRESS_FLAG_STALE)
452             {
453               if (ia->sw_if_index == sw_if_index)
454                 {
455                   /* re-adding an address during the replace action.
456                    * consdier this the update. clear the flag and
457                    * we're done */
458                   ia->flags &= ~IP_INTERFACE_ADDRESS_FLAG_STALE;
459                   goto done;
460                 }
461               else
462                 {
463                   /* The prefix is moving from one interface to another.
464                    * delete the stale and add the new */
465                   ip6_add_del_interface_address (vm,
466                                                  ia->sw_if_index,
467                                                  address, address_length, 1);
468                   ia = NULL;
469                   error = ip_interface_address_add (lm, sw_if_index,
470                                                     addr_fib, address_length,
471                                                     &if_address_index);
472                 }
473             }
474           else
475             {
476               vnm->api_errno = VNET_API_ERROR_DUPLICATE_IF_ADDRESS;
477               error = clib_error_create
478                 ("Prefix %U already found on interface %U",
479                  lm->format_address_and_length, addr_fib, address_length,
480                  format_vnet_sw_if_index_name, vnm, ia->sw_if_index);
481             }
482         }
483       else
484         error = ip_interface_address_add (lm, sw_if_index,
485                                           addr_fib, address_length,
486                                           &if_address_index);
487     }
488
489   if (error)
490     goto done;
491
492   ip6_sw_interface_enable_disable (sw_if_index, !is_del);
493   if (!is_del)
494     ip6_link_enable (sw_if_index, NULL);
495
496   /* intf addr routes are added/deleted on admin up/down */
497   if (vnet_sw_interface_is_admin_up (vnm, sw_if_index))
498     {
499       if (is_del)
500         ip6_del_interface_routes (sw_if_index,
501                                   im, ip6_af.fib_index, address,
502                                   address_length);
503       else
504         ip6_add_interface_routes (vnm, sw_if_index,
505                                   im, ip6_af.fib_index,
506                                   pool_elt_at_index (lm->if_address_pool,
507                                                      if_address_index));
508     }
509
510   ip6_add_del_interface_address_callback_t *cb;
511   vec_foreach (cb, im->add_del_interface_address_callbacks)
512     cb->function (im, cb->function_opaque, sw_if_index,
513                   address, address_length, if_address_index, is_del);
514
515   if (is_del)
516     ip6_link_disable (sw_if_index);
517
518 done:
519   vec_free (addr_fib);
520   return error;
521 }
522
523 #endif
524
525 static clib_error_t *
526 ip6_sw_interface_admin_up_down (vnet_main_t * vnm, u32 sw_if_index, u32 flags)
527 {
528   ip6_main_t *im = &ip6_main;
529   ip_interface_address_t *ia;
530   ip6_address_t *a;
531   u32 is_admin_up, fib_index;
532
533   /* Fill in lookup tables with default table (0). */
534   vec_validate (im->fib_index_by_sw_if_index, sw_if_index);
535
536   vec_validate_init_empty (im->
537                            lookup_main.if_address_pool_index_by_sw_if_index,
538                            sw_if_index, ~0);
539
540   is_admin_up = (flags & VNET_SW_INTERFACE_FLAG_ADMIN_UP) != 0;
541
542   fib_index = vec_elt (im->fib_index_by_sw_if_index, sw_if_index);
543
544   /* *INDENT-OFF* */
545   foreach_ip_interface_address (&im->lookup_main, ia, sw_if_index,
546                                 0 /* honor unnumbered */,
547   ({
548     a = ip_interface_address_get_address (&im->lookup_main, ia);
549     if (is_admin_up)
550       ip6_add_interface_routes (vnm, sw_if_index,
551                                 im, fib_index,
552                                 ia);
553     else
554       ip6_del_interface_routes (sw_if_index, im, fib_index,
555                                 a, ia->address_length);
556   }));
557   /* *INDENT-ON* */
558
559   return 0;
560 }
561
562 VNET_SW_INTERFACE_ADMIN_UP_DOWN_FUNCTION (ip6_sw_interface_admin_up_down);
563
564 /* Built-in ip6 unicast rx feature path definition */
565 /* *INDENT-OFF* */
566 VNET_FEATURE_ARC_INIT (ip6_unicast, static) =
567 {
568   .arc_name  = "ip6-unicast",
569   .start_nodes = VNET_FEATURES ("ip6-input"),
570   .last_in_arc = "ip6-lookup",
571   .arc_index_ptr = &ip6_main.lookup_main.ucast_feature_arc_index,
572 };
573
574 VNET_FEATURE_INIT (ip6_flow_classify, static) =
575 {
576   .arc_name = "ip6-unicast",
577   .node_name = "ip6-flow-classify",
578   .runs_before = VNET_FEATURES ("ip6-inacl"),
579 };
580
581 VNET_FEATURE_INIT (ip6_inacl, static) =
582 {
583   .arc_name = "ip6-unicast",
584   .node_name = "ip6-inacl",
585   .runs_before = VNET_FEATURES ("ip6-policer-classify"),
586 };
587
588 VNET_FEATURE_INIT (ip6_policer_classify, static) =
589 {
590   .arc_name = "ip6-unicast",
591   .node_name = "ip6-policer-classify",
592   .runs_before = VNET_FEATURES ("ipsec6-input-feature"),
593 };
594
595 VNET_FEATURE_INIT (ip6_ipsec, static) =
596 {
597   .arc_name = "ip6-unicast",
598   .node_name = "ipsec6-input-feature",
599   .runs_before = VNET_FEATURES ("l2tp-decap"),
600 };
601
602 VNET_FEATURE_INIT (ip6_l2tp, static) =
603 {
604   .arc_name = "ip6-unicast",
605   .node_name = "l2tp-decap",
606   .runs_before = VNET_FEATURES ("vpath-input-ip6"),
607 };
608
609 VNET_FEATURE_INIT (ip6_vpath, static) =
610 {
611   .arc_name = "ip6-unicast",
612   .node_name = "vpath-input-ip6",
613   .runs_before = VNET_FEATURES ("ip6-vxlan-bypass"),
614 };
615
616 VNET_FEATURE_INIT (ip6_vxlan_bypass, static) =
617 {
618   .arc_name = "ip6-unicast",
619   .node_name = "ip6-vxlan-bypass",
620   .runs_before = VNET_FEATURES ("ip6-lookup"),
621 };
622
623 VNET_FEATURE_INIT (ip6_not_enabled, static) =
624 {
625   .arc_name = "ip6-unicast",
626   .node_name = "ip6-not-enabled",
627   .runs_before = VNET_FEATURES ("ip6-lookup"),
628 };
629
630 VNET_FEATURE_INIT (ip6_lookup, static) =
631 {
632   .arc_name = "ip6-unicast",
633   .node_name = "ip6-lookup",
634   .runs_before = 0,  /*last feature*/
635 };
636
637 /* Built-in ip6 multicast rx feature path definition (none now) */
638 VNET_FEATURE_ARC_INIT (ip6_multicast, static) =
639 {
640   .arc_name  = "ip6-multicast",
641   .start_nodes = VNET_FEATURES ("ip6-input"),
642   .last_in_arc = "ip6-mfib-forward-lookup",
643   .arc_index_ptr = &ip6_main.lookup_main.mcast_feature_arc_index,
644 };
645
646 VNET_FEATURE_INIT (ip6_vpath_mc, static) = {
647   .arc_name = "ip6-multicast",
648   .node_name = "vpath-input-ip6",
649   .runs_before = VNET_FEATURES ("ip6-mfib-forward-lookup"),
650 };
651
652 VNET_FEATURE_INIT (ip6_not_enabled_mc, static) = {
653   .arc_name = "ip6-multicast",
654   .node_name = "ip6-not-enabled",
655   .runs_before = VNET_FEATURES ("ip6-mfib-forward-lookup"),
656 };
657
658 VNET_FEATURE_INIT (ip6_mc_lookup, static) = {
659   .arc_name = "ip6-multicast",
660   .node_name = "ip6-mfib-forward-lookup",
661   .runs_before = 0, /* last feature */
662 };
663
664 /* Built-in ip4 tx feature path definition */
665 VNET_FEATURE_ARC_INIT (ip6_output, static) =
666 {
667   .arc_name  = "ip6-output",
668   .start_nodes = VNET_FEATURES ("ip6-rewrite", "ip6-midchain", "ip6-dvr-dpo"),
669   .last_in_arc = "interface-output",
670   .arc_index_ptr = &ip6_main.lookup_main.output_feature_arc_index,
671 };
672
673 VNET_FEATURE_INIT (ip6_outacl, static) = {
674   .arc_name = "ip6-output",
675   .node_name = "ip6-outacl",
676   .runs_before = VNET_FEATURES ("ipsec6-output-feature"),
677 };
678
679 VNET_FEATURE_INIT (ip6_ipsec_output, static) = {
680   .arc_name = "ip6-output",
681   .node_name = "ipsec6-output-feature",
682   .runs_before = VNET_FEATURES ("interface-output"),
683 };
684
685 VNET_FEATURE_INIT (ip6_interface_output, static) = {
686   .arc_name = "ip6-output",
687   .node_name = "interface-output",
688   .runs_before = 0, /* not before any other features */
689 };
690 /* *INDENT-ON* */
691
692 static clib_error_t *
693 ip6_sw_interface_add_del (vnet_main_t * vnm, u32 sw_if_index, u32 is_add)
694 {
695   ip6_main_t *im = &ip6_main;
696
697   vec_validate (im->fib_index_by_sw_if_index, sw_if_index);
698   vec_validate (im->mfib_index_by_sw_if_index, sw_if_index);
699
700   if (!is_add)
701     {
702       /* Ensure that IPv6 is disabled */
703       ip6_main_t *im6 = &ip6_main;
704       ip_lookup_main_t *lm6 = &im6->lookup_main;
705       ip_interface_address_t *ia = 0;
706       ip6_address_t *address;
707       vlib_main_t *vm = vlib_get_main ();
708
709       vnet_sw_interface_update_unnumbered (sw_if_index, ~0, 0);
710       /* *INDENT-OFF* */
711       foreach_ip_interface_address (lm6, ia, sw_if_index, 0,
712       ({
713         address = ip_interface_address_get_address (lm6, ia);
714         ip6_add_del_interface_address(vm, sw_if_index, address, ia->address_length, 1);
715       }));
716       /* *INDENT-ON* */
717       ip6_mfib_interface_enable_disable (sw_if_index, 0);
718     }
719
720   vnet_feature_enable_disable ("ip6-unicast", "ip6-not-enabled", sw_if_index,
721                                is_add, 0, 0);
722
723   vnet_feature_enable_disable ("ip6-multicast", "ip6-not-enabled",
724                                sw_if_index, is_add, 0, 0);
725
726   return /* no error */ 0;
727 }
728
729 VNET_SW_INTERFACE_ADD_DEL_FUNCTION (ip6_sw_interface_add_del);
730
731 VLIB_NODE_FN (ip6_lookup_node) (vlib_main_t * vm,
732                                 vlib_node_runtime_t * node,
733                                 vlib_frame_t * frame)
734 {
735   return ip6_lookup_inline (vm, node, frame);
736 }
737
738 static u8 *format_ip6_lookup_trace (u8 * s, va_list * args);
739
740 /* *INDENT-OFF* */
741 VLIB_REGISTER_NODE (ip6_lookup_node) =
742 {
743   .name = "ip6-lookup",
744   .vector_size = sizeof (u32),
745   .format_trace = format_ip6_lookup_trace,
746   .n_next_nodes = IP6_LOOKUP_N_NEXT,
747   .next_nodes = IP6_LOOKUP_NEXT_NODES,
748 };
749 /* *INDENT-ON* */
750
751 VLIB_NODE_FN (ip6_load_balance_node) (vlib_main_t * vm,
752                                       vlib_node_runtime_t * node,
753                                       vlib_frame_t * frame)
754 {
755   vlib_combined_counter_main_t *cm = &load_balance_main.lbm_via_counters;
756   u32 n_left, *from;
757   u32 thread_index = vm->thread_index;
758   ip6_main_t *im = &ip6_main;
759   vlib_buffer_t *bufs[VLIB_FRAME_SIZE], **b = bufs;
760   u16 nexts[VLIB_FRAME_SIZE], *next;
761
762   from = vlib_frame_vector_args (frame);
763   n_left = frame->n_vectors;
764   next = nexts;
765
766   vlib_get_buffers (vm, from, bufs, n_left);
767
768   while (n_left >= 4)
769     {
770       const load_balance_t *lb0, *lb1;
771       const ip6_header_t *ip0, *ip1;
772       u32 lbi0, hc0, lbi1, hc1;
773       const dpo_id_t *dpo0, *dpo1;
774
775       /* Prefetch next iteration. */
776       {
777         vlib_prefetch_buffer_header (b[2], STORE);
778         vlib_prefetch_buffer_header (b[3], STORE);
779
780         CLIB_PREFETCH (b[2]->data, sizeof (ip0[0]), STORE);
781         CLIB_PREFETCH (b[3]->data, sizeof (ip0[0]), STORE);
782       }
783
784       ip0 = vlib_buffer_get_current (b[0]);
785       ip1 = vlib_buffer_get_current (b[1]);
786       lbi0 = vnet_buffer (b[0])->ip.adj_index[VLIB_TX];
787       lbi1 = vnet_buffer (b[1])->ip.adj_index[VLIB_TX];
788
789       lb0 = load_balance_get (lbi0);
790       lb1 = load_balance_get (lbi1);
791
792       /*
793        * this node is for via FIBs we can re-use the hash value from the
794        * to node if present.
795        * We don't want to use the same hash value at each level in the recursion
796        * graph as that would lead to polarisation
797        */
798       hc0 = hc1 = 0;
799
800       if (PREDICT_FALSE (lb0->lb_n_buckets > 1))
801         {
802           if (PREDICT_TRUE (vnet_buffer (b[0])->ip.flow_hash))
803             {
804               hc0 = vnet_buffer (b[0])->ip.flow_hash =
805                 vnet_buffer (b[0])->ip.flow_hash >> 1;
806             }
807           else
808             {
809               hc0 = vnet_buffer (b[0])->ip.flow_hash =
810                 ip6_compute_flow_hash (ip0, lb0->lb_hash_config);
811             }
812           dpo0 = load_balance_get_fwd_bucket
813             (lb0, (hc0 & (lb0->lb_n_buckets_minus_1)));
814         }
815       else
816         {
817           dpo0 = load_balance_get_bucket_i (lb0, 0);
818         }
819       if (PREDICT_FALSE (lb1->lb_n_buckets > 1))
820         {
821           if (PREDICT_TRUE (vnet_buffer (b[1])->ip.flow_hash))
822             {
823               hc1 = vnet_buffer (b[1])->ip.flow_hash =
824                 vnet_buffer (b[1])->ip.flow_hash >> 1;
825             }
826           else
827             {
828               hc1 = vnet_buffer (b[1])->ip.flow_hash =
829                 ip6_compute_flow_hash (ip1, lb1->lb_hash_config);
830             }
831           dpo1 = load_balance_get_fwd_bucket
832             (lb1, (hc1 & (lb1->lb_n_buckets_minus_1)));
833         }
834       else
835         {
836           dpo1 = load_balance_get_bucket_i (lb1, 0);
837         }
838
839       next[0] = dpo0->dpoi_next_node;
840       next[1] = dpo1->dpoi_next_node;
841
842       /* Only process the HBH Option Header if explicitly configured to do so */
843       if (PREDICT_FALSE (ip0->protocol == IP_PROTOCOL_IP6_HOP_BY_HOP_OPTIONS))
844         {
845           next[0] = (dpo_is_adj (dpo0) && im->hbh_enabled) ?
846             (ip_lookup_next_t) IP6_LOOKUP_NEXT_HOP_BY_HOP : next[0];
847         }
848       /* Only process the HBH Option Header if explicitly configured to do so */
849       if (PREDICT_FALSE (ip1->protocol == IP_PROTOCOL_IP6_HOP_BY_HOP_OPTIONS))
850         {
851           next[1] = (dpo_is_adj (dpo1) && im->hbh_enabled) ?
852             (ip_lookup_next_t) IP6_LOOKUP_NEXT_HOP_BY_HOP : next[1];
853         }
854
855       vnet_buffer (b[0])->ip.adj_index[VLIB_TX] = dpo0->dpoi_index;
856       vnet_buffer (b[1])->ip.adj_index[VLIB_TX] = dpo1->dpoi_index;
857
858       vlib_increment_combined_counter
859         (cm, thread_index, lbi0, 1, vlib_buffer_length_in_chain (vm, b[0]));
860       vlib_increment_combined_counter
861         (cm, thread_index, lbi1, 1, vlib_buffer_length_in_chain (vm, b[1]));
862
863       b += 2;
864       next += 2;
865       n_left -= 2;
866     }
867
868   while (n_left > 0)
869     {
870       const load_balance_t *lb0;
871       const ip6_header_t *ip0;
872       const dpo_id_t *dpo0;
873       u32 lbi0, hc0;
874
875       ip0 = vlib_buffer_get_current (b[0]);
876       lbi0 = vnet_buffer (b[0])->ip.adj_index[VLIB_TX];
877
878       lb0 = load_balance_get (lbi0);
879
880       hc0 = 0;
881       if (PREDICT_FALSE (lb0->lb_n_buckets > 1))
882         {
883           if (PREDICT_TRUE (vnet_buffer (b[0])->ip.flow_hash))
884             {
885               hc0 = vnet_buffer (b[0])->ip.flow_hash =
886                 vnet_buffer (b[0])->ip.flow_hash >> 1;
887             }
888           else
889             {
890               hc0 = vnet_buffer (b[0])->ip.flow_hash =
891                 ip6_compute_flow_hash (ip0, lb0->lb_hash_config);
892             }
893           dpo0 = load_balance_get_fwd_bucket
894             (lb0, (hc0 & (lb0->lb_n_buckets_minus_1)));
895         }
896       else
897         {
898           dpo0 = load_balance_get_bucket_i (lb0, 0);
899         }
900
901       next[0] = dpo0->dpoi_next_node;
902       vnet_buffer (b[0])->ip.adj_index[VLIB_TX] = dpo0->dpoi_index;
903
904       /* Only process the HBH Option Header if explicitly configured to do so */
905       if (PREDICT_FALSE (ip0->protocol == IP_PROTOCOL_IP6_HOP_BY_HOP_OPTIONS))
906         {
907           next[0] = (dpo_is_adj (dpo0) && im->hbh_enabled) ?
908             (ip_lookup_next_t) IP6_LOOKUP_NEXT_HOP_BY_HOP : next[0];
909         }
910
911       vlib_increment_combined_counter
912         (cm, thread_index, lbi0, 1, vlib_buffer_length_in_chain (vm, b[0]));
913
914       b += 1;
915       next += 1;
916       n_left -= 1;
917     }
918
919   vlib_buffer_enqueue_to_next (vm, node, from, nexts, frame->n_vectors);
920
921   if (node->flags & VLIB_NODE_FLAG_TRACE)
922     ip6_forward_next_trace (vm, node, frame, VLIB_TX);
923
924   return frame->n_vectors;
925 }
926
927 /* *INDENT-OFF* */
928 VLIB_REGISTER_NODE (ip6_load_balance_node) =
929 {
930   .name = "ip6-load-balance",
931   .vector_size = sizeof (u32),
932   .sibling_of = "ip6-lookup",
933   .format_trace = format_ip6_lookup_trace,
934 };
935 /* *INDENT-ON* */
936
937 typedef struct
938 {
939   /* Adjacency taken. */
940   u32 adj_index;
941   u32 flow_hash;
942   u32 fib_index;
943
944   /* Packet data, possibly *after* rewrite. */
945   u8 packet_data[128 - 1 * sizeof (u32)];
946 }
947 ip6_forward_next_trace_t;
948
949 #ifndef CLIB_MARCH_VARIANT
950 u8 *
951 format_ip6_forward_next_trace (u8 * s, va_list * args)
952 {
953   CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
954   CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
955   ip6_forward_next_trace_t *t = va_arg (*args, ip6_forward_next_trace_t *);
956   u32 indent = format_get_indent (s);
957
958   s = format (s, "%Ufib:%d adj:%d flow:%d",
959               format_white_space, indent,
960               t->fib_index, t->adj_index, t->flow_hash);
961   s = format (s, "\n%U%U",
962               format_white_space, indent,
963               format_ip6_header, t->packet_data, sizeof (t->packet_data));
964   return s;
965 }
966 #endif
967
968 static u8 *
969 format_ip6_lookup_trace (u8 * s, va_list * args)
970 {
971   CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
972   CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
973   ip6_forward_next_trace_t *t = va_arg (*args, ip6_forward_next_trace_t *);
974   u32 indent = format_get_indent (s);
975
976   s = format (s, "fib %d dpo-idx %d flow hash: 0x%08x",
977               t->fib_index, t->adj_index, t->flow_hash);
978   s = format (s, "\n%U%U",
979               format_white_space, indent,
980               format_ip6_header, t->packet_data, sizeof (t->packet_data));
981   return s;
982 }
983
984
985 static u8 *
986 format_ip6_rewrite_trace (u8 * s, va_list * args)
987 {
988   CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
989   CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
990   ip6_forward_next_trace_t *t = va_arg (*args, ip6_forward_next_trace_t *);
991   u32 indent = format_get_indent (s);
992
993   s = format (s, "tx_sw_if_index %d adj-idx %d : %U flow hash: 0x%08x",
994               t->fib_index, t->adj_index, format_ip_adjacency,
995               t->adj_index, FORMAT_IP_ADJACENCY_NONE, t->flow_hash);
996   s = format (s, "\n%U%U",
997               format_white_space, indent,
998               format_ip_adjacency_packet_data,
999               t->packet_data, sizeof (t->packet_data));
1000   return s;
1001 }
1002
1003 /* Common trace function for all ip6-forward next nodes. */
1004 #ifndef CLIB_MARCH_VARIANT
1005 void
1006 ip6_forward_next_trace (vlib_main_t * vm,
1007                         vlib_node_runtime_t * node,
1008                         vlib_frame_t * frame, vlib_rx_or_tx_t which_adj_index)
1009 {
1010   u32 *from, n_left;
1011   ip6_main_t *im = &ip6_main;
1012
1013   n_left = frame->n_vectors;
1014   from = vlib_frame_vector_args (frame);
1015
1016   while (n_left >= 4)
1017     {
1018       u32 bi0, bi1;
1019       vlib_buffer_t *b0, *b1;
1020       ip6_forward_next_trace_t *t0, *t1;
1021
1022       /* Prefetch next iteration. */
1023       vlib_prefetch_buffer_with_index (vm, from[2], LOAD);
1024       vlib_prefetch_buffer_with_index (vm, from[3], LOAD);
1025
1026       bi0 = from[0];
1027       bi1 = from[1];
1028
1029       b0 = vlib_get_buffer (vm, bi0);
1030       b1 = vlib_get_buffer (vm, bi1);
1031
1032       if (b0->flags & VLIB_BUFFER_IS_TRACED)
1033         {
1034           t0 = vlib_add_trace (vm, node, b0, sizeof (t0[0]));
1035           t0->adj_index = vnet_buffer (b0)->ip.adj_index[which_adj_index];
1036           t0->flow_hash = vnet_buffer (b0)->ip.flow_hash;
1037           t0->fib_index =
1038             (vnet_buffer (b0)->sw_if_index[VLIB_TX] !=
1039              (u32) ~ 0) ? vnet_buffer (b0)->sw_if_index[VLIB_TX] :
1040             vec_elt (im->fib_index_by_sw_if_index,
1041                      vnet_buffer (b0)->sw_if_index[VLIB_RX]);
1042
1043           clib_memcpy_fast (t0->packet_data,
1044                             vlib_buffer_get_current (b0),
1045                             sizeof (t0->packet_data));
1046         }
1047       if (b1->flags & VLIB_BUFFER_IS_TRACED)
1048         {
1049           t1 = vlib_add_trace (vm, node, b1, sizeof (t1[0]));
1050           t1->adj_index = vnet_buffer (b1)->ip.adj_index[which_adj_index];
1051           t1->flow_hash = vnet_buffer (b1)->ip.flow_hash;
1052           t1->fib_index =
1053             (vnet_buffer (b1)->sw_if_index[VLIB_TX] !=
1054              (u32) ~ 0) ? vnet_buffer (b1)->sw_if_index[VLIB_TX] :
1055             vec_elt (im->fib_index_by_sw_if_index,
1056                      vnet_buffer (b1)->sw_if_index[VLIB_RX]);
1057
1058           clib_memcpy_fast (t1->packet_data,
1059                             vlib_buffer_get_current (b1),
1060                             sizeof (t1->packet_data));
1061         }
1062       from += 2;
1063       n_left -= 2;
1064     }
1065
1066   while (n_left >= 1)
1067     {
1068       u32 bi0;
1069       vlib_buffer_t *b0;
1070       ip6_forward_next_trace_t *t0;
1071
1072       bi0 = from[0];
1073
1074       b0 = vlib_get_buffer (vm, bi0);
1075
1076       if (b0->flags & VLIB_BUFFER_IS_TRACED)
1077         {
1078           t0 = vlib_add_trace (vm, node, b0, sizeof (t0[0]));
1079           t0->adj_index = vnet_buffer (b0)->ip.adj_index[which_adj_index];
1080           t0->flow_hash = vnet_buffer (b0)->ip.flow_hash;
1081           t0->fib_index =
1082             (vnet_buffer (b0)->sw_if_index[VLIB_TX] !=
1083              (u32) ~ 0) ? vnet_buffer (b0)->sw_if_index[VLIB_TX] :
1084             vec_elt (im->fib_index_by_sw_if_index,
1085                      vnet_buffer (b0)->sw_if_index[VLIB_RX]);
1086
1087           clib_memcpy_fast (t0->packet_data,
1088                             vlib_buffer_get_current (b0),
1089                             sizeof (t0->packet_data));
1090         }
1091       from += 1;
1092       n_left -= 1;
1093     }
1094 }
1095
1096 /* Compute TCP/UDP/ICMP6 checksum in software. */
1097 u16
1098 ip6_tcp_udp_icmp_compute_checksum (vlib_main_t * vm, vlib_buffer_t * p0,
1099                                    ip6_header_t * ip0, int *bogus_lengthp)
1100 {
1101   ip_csum_t sum0 = 0;
1102   u16 payload_length, payload_length_host_byte_order;
1103   u32 i;
1104   u32 headers_size = sizeof (ip0[0]);
1105   u8 *data_this_buffer;
1106   u8 next_hdr = ip0->protocol;
1107
1108   ASSERT (bogus_lengthp);
1109   *bogus_lengthp = 0;
1110
1111   payload_length_host_byte_order = clib_net_to_host_u16 (ip0->payload_length);
1112   data_this_buffer = (u8 *) (ip0 + 1);
1113   payload_length = ip0->payload_length;
1114
1115   /* some icmp packets may come with a "router alert" hop-by-hop extension header (e.g., mldv2 packets)
1116    * or UDP-Ping packets */
1117   if (PREDICT_FALSE (next_hdr == IP_PROTOCOL_IP6_HOP_BY_HOP_OPTIONS))
1118     {
1119       u32 skip_bytes;
1120       ip6_hop_by_hop_ext_t *ext_hdr =
1121         (ip6_hop_by_hop_ext_t *) data_this_buffer;
1122
1123       /* validate really icmp6 next */
1124       ASSERT ((ext_hdr->next_hdr == IP_PROTOCOL_ICMP6)
1125               || (ext_hdr->next_hdr == IP_PROTOCOL_UDP));
1126
1127       skip_bytes = 8 * (1 + ext_hdr->n_data_u64s);
1128       data_this_buffer = (void *) ((u8 *) data_this_buffer + skip_bytes);
1129
1130       payload_length_host_byte_order -= skip_bytes;
1131       headers_size += skip_bytes;
1132
1133       /* pseudo-header adjustments:
1134        *   exclude ext header bytes from payload length
1135        *   use payload IP proto rather than ext header IP proto
1136        */
1137       payload_length = clib_host_to_net_u16 (payload_length_host_byte_order);
1138       next_hdr = ext_hdr->next_hdr;
1139     }
1140
1141   /* Initialize checksum with ip pseudo-header. */
1142   sum0 = payload_length + clib_host_to_net_u16 (next_hdr);
1143
1144   for (i = 0; i < ARRAY_LEN (ip0->src_address.as_uword); i++)
1145     {
1146       sum0 = ip_csum_with_carry
1147         (sum0, clib_mem_unaligned (&ip0->src_address.as_uword[i], uword));
1148       sum0 = ip_csum_with_carry
1149         (sum0, clib_mem_unaligned (&ip0->dst_address.as_uword[i], uword));
1150     }
1151
1152   if (p0)
1153     return ip_calculate_l4_checksum (vm, p0, sum0,
1154                                      payload_length_host_byte_order,
1155                                      (u8 *) ip0, headers_size, NULL);
1156   else
1157     return ip_calculate_l4_checksum (vm, 0, sum0,
1158                                      payload_length_host_byte_order, NULL, 0,
1159                                      data_this_buffer);
1160 }
1161
1162 u32
1163 ip6_tcp_udp_icmp_validate_checksum (vlib_main_t * vm, vlib_buffer_t * p0)
1164 {
1165   ip6_header_t *ip0 = vlib_buffer_get_current (p0);
1166   udp_header_t *udp0;
1167   u16 sum16;
1168   int bogus_length;
1169
1170   /* some icmp packets may come with a "router alert" hop-by-hop extension header (e.g., mldv2 packets) */
1171   ASSERT (ip0->protocol == IP_PROTOCOL_TCP
1172           || ip0->protocol == IP_PROTOCOL_ICMP6
1173           || ip0->protocol == IP_PROTOCOL_UDP
1174           || ip0->protocol == IP_PROTOCOL_IP6_HOP_BY_HOP_OPTIONS);
1175
1176   udp0 = (void *) (ip0 + 1);
1177   if (ip0->protocol == IP_PROTOCOL_UDP && udp0->checksum == 0)
1178     {
1179       p0->flags |= (VNET_BUFFER_F_L4_CHECKSUM_COMPUTED
1180                     | VNET_BUFFER_F_L4_CHECKSUM_CORRECT);
1181       return p0->flags;
1182     }
1183
1184   sum16 = ip6_tcp_udp_icmp_compute_checksum (vm, p0, ip0, &bogus_length);
1185
1186   p0->flags |= (VNET_BUFFER_F_L4_CHECKSUM_COMPUTED
1187                 | ((sum16 == 0) << VNET_BUFFER_F_LOG2_L4_CHECKSUM_CORRECT));
1188
1189   return p0->flags;
1190 }
1191 #endif
1192
1193 /**
1194  * @brief returns number of links on which src is reachable.
1195  */
1196 always_inline int
1197 ip6_urpf_loose_check (ip6_main_t * im, vlib_buffer_t * b, ip6_header_t * i)
1198 {
1199   const load_balance_t *lb0;
1200   index_t lbi;
1201   u32 fib_index;
1202
1203   fib_index = vec_elt (im->fib_index_by_sw_if_index,
1204                        vnet_buffer (b)->sw_if_index[VLIB_RX]);
1205   fib_index =
1206     (vnet_buffer (b)->sw_if_index[VLIB_TX] == (u32) ~ 0) ?
1207     fib_index : vnet_buffer (b)->sw_if_index[VLIB_TX];
1208
1209   lbi = ip6_fib_table_fwding_lookup (fib_index, &i->src_address);
1210   lb0 = load_balance_get (lbi);
1211
1212   return (fib_urpf_check_size (lb0->lb_urpf));
1213 }
1214
1215 always_inline u8
1216 ip6_next_proto_is_tcp_udp (vlib_buffer_t * p0, ip6_header_t * ip0,
1217                            u32 * udp_offset0)
1218 {
1219   u32 proto0;
1220   proto0 = ip6_locate_header (p0, ip0, IP_PROTOCOL_UDP, udp_offset0);
1221   if (proto0 != IP_PROTOCOL_UDP)
1222     {
1223       proto0 = ip6_locate_header (p0, ip0, IP_PROTOCOL_TCP, udp_offset0);
1224       proto0 = (proto0 == IP_PROTOCOL_TCP) ? proto0 : 0;
1225     }
1226   return proto0;
1227 }
1228
1229 /* *INDENT-OFF* */
1230 VNET_FEATURE_ARC_INIT (ip6_local) =
1231 {
1232   .arc_name  = "ip6-local",
1233   .start_nodes = VNET_FEATURES ("ip6-local"),
1234 };
1235 /* *INDENT-ON* */
1236
1237 static_always_inline u8
1238 ip6_tcp_udp_icmp_bad_length (vlib_main_t * vm, vlib_buffer_t * p0)
1239 {
1240
1241   u16 payload_length_host_byte_order;
1242   u32 n_this_buffer, n_bytes_left;
1243   ip6_header_t *ip0 = vlib_buffer_get_current (p0);
1244   u32 headers_size = sizeof (ip0[0]);
1245   u8 *data_this_buffer;
1246
1247
1248   data_this_buffer = (u8 *) (ip0 + 1);
1249
1250   ip6_hop_by_hop_ext_t *ext_hdr = (ip6_hop_by_hop_ext_t *) data_this_buffer;
1251
1252   /* validate really icmp6 next */
1253
1254   if (!(ext_hdr->next_hdr == IP_PROTOCOL_ICMP6)
1255       || (ext_hdr->next_hdr == IP_PROTOCOL_UDP))
1256     return 0;
1257
1258
1259   payload_length_host_byte_order = clib_net_to_host_u16 (ip0->payload_length);
1260   n_bytes_left = n_this_buffer = payload_length_host_byte_order;
1261
1262
1263   u32 n_ip_bytes_this_buffer =
1264     p0->current_length - (((u8 *) ip0 - p0->data) - p0->current_data);
1265   if (n_this_buffer + headers_size > n_ip_bytes_this_buffer)
1266     {
1267       n_this_buffer = p0->current_length > headers_size ?
1268         n_ip_bytes_this_buffer - headers_size : 0;
1269     }
1270
1271   n_bytes_left -= n_this_buffer;
1272   n_bytes_left -= p0->total_length_not_including_first_buffer;
1273
1274   if (n_bytes_left == 0)
1275     return 0;
1276   else
1277     return 1;
1278 }
1279
1280
1281 always_inline uword
1282 ip6_local_inline (vlib_main_t * vm, vlib_node_runtime_t * node,
1283                   vlib_frame_t * frame, int head_of_feature_arc)
1284 {
1285   ip6_main_t *im = &ip6_main;
1286   ip_lookup_main_t *lm = &im->lookup_main;
1287   u32 *from, n_left_from;
1288   vlib_node_runtime_t *error_node =
1289     vlib_node_get_runtime (vm, ip6_input_node.index);
1290   u8 arc_index = vnet_feat_arc_ip6_local.feature_arc_index;
1291   vlib_buffer_t *bufs[VLIB_FRAME_SIZE], **b;
1292   u16 nexts[VLIB_FRAME_SIZE], *next;
1293
1294   from = vlib_frame_vector_args (frame);
1295   n_left_from = frame->n_vectors;
1296
1297   if (node->flags & VLIB_NODE_FLAG_TRACE)
1298     ip6_forward_next_trace (vm, node, frame, VLIB_TX);
1299
1300   vlib_get_buffers (vm, from, bufs, n_left_from);
1301   b = bufs;
1302   next = nexts;
1303
1304   while (n_left_from > 2)
1305     {
1306       /* Prefetch next iteration. */
1307       if (n_left_from >= 6)
1308         {
1309           vlib_prefetch_buffer_header (b[4], STORE);
1310           vlib_prefetch_buffer_header (b[5], STORE);
1311           vlib_prefetch_buffer_data (b[2], LOAD);
1312           vlib_prefetch_buffer_data (b[3], LOAD);
1313         }
1314
1315       ip6_error_t error[2];
1316       error[0] = IP6_ERROR_UNKNOWN_PROTOCOL;
1317       error[1] = IP6_ERROR_UNKNOWN_PROTOCOL;
1318
1319       ip6_header_t *ip[2];
1320       ip[0] = vlib_buffer_get_current (b[0]);
1321       ip[1] = vlib_buffer_get_current (b[1]);
1322
1323       if (head_of_feature_arc)
1324         {
1325           vnet_buffer (b[0])->l3_hdr_offset = b[0]->current_data;
1326           vnet_buffer (b[1])->l3_hdr_offset = b[1]->current_data;
1327
1328           u8 type[2];
1329           type[0] = lm->builtin_protocol_by_ip_protocol[ip[0]->protocol];
1330           type[1] = lm->builtin_protocol_by_ip_protocol[ip[1]->protocol];
1331
1332           u32 flags[2];
1333           flags[0] = b[0]->flags;
1334           flags[1] = b[1]->flags;
1335
1336           u32 good_l4_csum[2];
1337           good_l4_csum[0] =
1338             flags[0] & (VNET_BUFFER_F_L4_CHECKSUM_CORRECT |
1339                         VNET_BUFFER_F_OFFLOAD_TCP_CKSUM |
1340                         VNET_BUFFER_F_OFFLOAD_UDP_CKSUM);
1341           good_l4_csum[1] =
1342             flags[1] & (VNET_BUFFER_F_L4_CHECKSUM_CORRECT |
1343                         VNET_BUFFER_F_OFFLOAD_TCP_CKSUM |
1344                         VNET_BUFFER_F_OFFLOAD_UDP_CKSUM);
1345
1346           u32 udp_offset[2] = { };
1347           u8 is_tcp_udp[2];
1348           is_tcp_udp[0] =
1349             ip6_next_proto_is_tcp_udp (b[0], ip[0], &udp_offset[0]);
1350           is_tcp_udp[1] =
1351             ip6_next_proto_is_tcp_udp (b[1], ip[1], &udp_offset[1]);
1352           i16 len_diff[2] = { 0 };
1353           if (PREDICT_TRUE (is_tcp_udp[0]))
1354             {
1355               udp_header_t *udp =
1356                 (udp_header_t *) ((u8 *) ip[0] + udp_offset[0]);
1357               good_l4_csum[0] |= type[0] == IP_BUILTIN_PROTOCOL_UDP
1358                 && udp->checksum == 0;
1359               /* optimistically verify UDP length. */
1360               u16 ip_len, udp_len;
1361               ip_len = clib_net_to_host_u16 (ip[0]->payload_length);
1362               udp_len = clib_net_to_host_u16 (udp->length);
1363               len_diff[0] = ip_len - udp_len;
1364             }
1365           if (PREDICT_TRUE (is_tcp_udp[1]))
1366             {
1367               udp_header_t *udp =
1368                 (udp_header_t *) ((u8 *) ip[1] + udp_offset[1]);
1369               good_l4_csum[1] |= type[1] == IP_BUILTIN_PROTOCOL_UDP
1370                 && udp->checksum == 0;
1371               /* optimistically verify UDP length. */
1372               u16 ip_len, udp_len;
1373               ip_len = clib_net_to_host_u16 (ip[1]->payload_length);
1374               udp_len = clib_net_to_host_u16 (udp->length);
1375               len_diff[1] = ip_len - udp_len;
1376             }
1377
1378           good_l4_csum[0] |= type[0] == IP_BUILTIN_PROTOCOL_UNKNOWN;
1379           good_l4_csum[1] |= type[1] == IP_BUILTIN_PROTOCOL_UNKNOWN;
1380
1381           len_diff[0] = type[0] == IP_BUILTIN_PROTOCOL_UDP ? len_diff[0] : 0;
1382           len_diff[1] = type[1] == IP_BUILTIN_PROTOCOL_UDP ? len_diff[1] : 0;
1383
1384           u8 need_csum[2];
1385           need_csum[0] = type[0] != IP_BUILTIN_PROTOCOL_UNKNOWN
1386             && !good_l4_csum[0]
1387             && !(flags[0] & VNET_BUFFER_F_L4_CHECKSUM_COMPUTED);
1388           need_csum[1] = type[1] != IP_BUILTIN_PROTOCOL_UNKNOWN
1389             && !good_l4_csum[1]
1390             && !(flags[1] & VNET_BUFFER_F_L4_CHECKSUM_COMPUTED);
1391           if (PREDICT_FALSE (need_csum[0]))
1392             {
1393               flags[0] = ip6_tcp_udp_icmp_validate_checksum (vm, b[0]);
1394               good_l4_csum[0] = flags[0] & VNET_BUFFER_F_L4_CHECKSUM_CORRECT;
1395               error[0] = IP6_ERROR_UNKNOWN_PROTOCOL;
1396             }
1397           else
1398             {
1399               if (ip6_tcp_udp_icmp_bad_length (vm, b[0]))
1400                 error[0] = IP6_ERROR_BAD_LENGTH;
1401             }
1402           if (PREDICT_FALSE (need_csum[1]))
1403             {
1404               flags[1] = ip6_tcp_udp_icmp_validate_checksum (vm, b[1]);
1405               good_l4_csum[1] = flags[1] & VNET_BUFFER_F_L4_CHECKSUM_CORRECT;
1406               error[1] = IP6_ERROR_UNKNOWN_PROTOCOL;
1407             }
1408           else
1409             {
1410               if (ip6_tcp_udp_icmp_bad_length (vm, b[1]))
1411                 error[1] = IP6_ERROR_BAD_LENGTH;
1412             }
1413
1414
1415           error[0] = len_diff[0] < 0 ? IP6_ERROR_UDP_LENGTH : error[0];
1416
1417           error[1] = len_diff[1] < 0 ? IP6_ERROR_UDP_LENGTH : error[1];
1418
1419           STATIC_ASSERT (IP6_ERROR_UDP_CHECKSUM + IP_BUILTIN_PROTOCOL_UDP ==
1420                          IP6_ERROR_UDP_CHECKSUM,
1421                          "Wrong IP6 errors constants");
1422           STATIC_ASSERT (IP6_ERROR_UDP_CHECKSUM + IP_BUILTIN_PROTOCOL_ICMP ==
1423                          IP6_ERROR_ICMP_CHECKSUM,
1424                          "Wrong IP6 errors constants");
1425
1426           error[0] =
1427             !good_l4_csum[0] ? IP6_ERROR_UDP_CHECKSUM + type[0] : error[0];
1428           error[1] =
1429             !good_l4_csum[1] ? IP6_ERROR_UDP_CHECKSUM + type[1] : error[1];
1430
1431           /* Drop packets from unroutable hosts. */
1432           /* If this is a neighbor solicitation (ICMP), skip source RPF check */
1433           u8 unroutable[2];
1434           unroutable[0] = error[0] == IP6_ERROR_UNKNOWN_PROTOCOL
1435             && type[0] != IP_BUILTIN_PROTOCOL_ICMP
1436             && !ip6_address_is_link_local_unicast (&ip[0]->src_address);
1437           unroutable[1] = error[1] == IP6_ERROR_UNKNOWN_PROTOCOL
1438             && type[1] != IP_BUILTIN_PROTOCOL_ICMP
1439             && !ip6_address_is_link_local_unicast (&ip[1]->src_address);
1440           if (PREDICT_FALSE (unroutable[0]))
1441             {
1442               error[0] =
1443                 !ip6_urpf_loose_check (im, b[0],
1444                                        ip[0]) ? IP6_ERROR_SRC_LOOKUP_MISS
1445                 : error[0];
1446             }
1447           if (PREDICT_FALSE (unroutable[1]))
1448             {
1449               error[1] =
1450                 !ip6_urpf_loose_check (im, b[1],
1451                                        ip[1]) ? IP6_ERROR_SRC_LOOKUP_MISS
1452                 : error[1];
1453             }
1454
1455           vnet_buffer (b[0])->ip.fib_index =
1456             vnet_buffer (b[0])->sw_if_index[VLIB_TX] != ~0 ?
1457             vnet_buffer (b[0])->sw_if_index[VLIB_TX] :
1458             vnet_buffer (b[0])->ip.fib_index;
1459           vnet_buffer (b[1])->ip.fib_index =
1460             vnet_buffer (b[1])->sw_if_index[VLIB_TX] != ~0 ?
1461             vnet_buffer (b[1])->sw_if_index[VLIB_TX] :
1462             vnet_buffer (b[1])->ip.fib_index;
1463         }                       /* head_of_feature_arc */
1464
1465       next[0] = lm->local_next_by_ip_protocol[ip[0]->protocol];
1466       next[0] =
1467         error[0] != IP6_ERROR_UNKNOWN_PROTOCOL ? IP_LOCAL_NEXT_DROP : next[0];
1468       next[1] = lm->local_next_by_ip_protocol[ip[1]->protocol];
1469       next[1] =
1470         error[1] != IP6_ERROR_UNKNOWN_PROTOCOL ? IP_LOCAL_NEXT_DROP : next[1];
1471
1472       b[0]->error = error_node->errors[error[0]];
1473       b[1]->error = error_node->errors[error[1]];
1474
1475       if (head_of_feature_arc)
1476         {
1477           u8 ip6_unknown[2];
1478           ip6_unknown[0] = error[0] == (u8) IP6_ERROR_UNKNOWN_PROTOCOL;
1479           ip6_unknown[1] = error[1] == (u8) IP6_ERROR_UNKNOWN_PROTOCOL;
1480           if (PREDICT_TRUE (ip6_unknown[0]))
1481             {
1482               u32 next32 = next[0];
1483               vnet_feature_arc_start (arc_index,
1484                                       vnet_buffer (b[0])->sw_if_index
1485                                       [VLIB_RX], &next32, b[0]);
1486               next[0] = next32;
1487             }
1488           if (PREDICT_TRUE (ip6_unknown[1]))
1489             {
1490               u32 next32 = next[1];
1491               vnet_feature_arc_start (arc_index,
1492                                       vnet_buffer (b[1])->sw_if_index
1493                                       [VLIB_RX], &next32, b[1]);
1494               next[1] = next32;
1495             }
1496         }
1497
1498       /* next */
1499       b += 2;
1500       next += 2;
1501       n_left_from -= 2;
1502     }
1503
1504   while (n_left_from)
1505     {
1506       u8 error;
1507       error = IP6_ERROR_UNKNOWN_PROTOCOL;
1508
1509       ip6_header_t *ip;
1510       ip = vlib_buffer_get_current (b[0]);
1511
1512       if (head_of_feature_arc)
1513         {
1514           vnet_buffer (b[0])->l3_hdr_offset = b[0]->current_data;
1515           u8 type = lm->builtin_protocol_by_ip_protocol[ip->protocol];
1516
1517           u32 flags = b[0]->flags;
1518           u32 good_l4_csum =
1519             flags & (VNET_BUFFER_F_L4_CHECKSUM_CORRECT |
1520                      VNET_BUFFER_F_OFFLOAD_TCP_CKSUM |
1521                      VNET_BUFFER_F_OFFLOAD_UDP_CKSUM);
1522
1523           u32 udp_offset;
1524           i16 len_diff = 0;
1525           u8 is_tcp_udp = ip6_next_proto_is_tcp_udp (b[0], ip, &udp_offset);
1526           if (PREDICT_TRUE (is_tcp_udp))
1527             {
1528               udp_header_t *udp = (udp_header_t *) ((u8 *) ip + udp_offset);
1529               /* Don't verify UDP checksum for packets with explicit zero checksum. */
1530               good_l4_csum |= type == IP_BUILTIN_PROTOCOL_UDP
1531                 && udp->checksum == 0;
1532               /* optimistically verify UDP length. */
1533               u16 ip_len, udp_len;
1534               ip_len = clib_net_to_host_u16 (ip->payload_length);
1535               udp_len = clib_net_to_host_u16 (udp->length);
1536               len_diff = ip_len - udp_len;
1537             }
1538
1539           good_l4_csum |= type == IP_BUILTIN_PROTOCOL_UNKNOWN;
1540           len_diff = type == IP_BUILTIN_PROTOCOL_UDP ? len_diff : 0;
1541
1542           u8 need_csum = type != IP_BUILTIN_PROTOCOL_UNKNOWN && !good_l4_csum
1543             && !(flags & VNET_BUFFER_F_L4_CHECKSUM_COMPUTED);
1544           if (PREDICT_FALSE (need_csum))
1545             {
1546               flags = ip6_tcp_udp_icmp_validate_checksum (vm, b[0]);
1547               good_l4_csum = flags & VNET_BUFFER_F_L4_CHECKSUM_CORRECT;
1548               error = IP6_ERROR_UNKNOWN_PROTOCOL;
1549             }
1550           else
1551             {
1552               if (ip6_tcp_udp_icmp_bad_length (vm, b[0]))
1553                 error = IP6_ERROR_BAD_LENGTH;
1554             }
1555
1556
1557
1558           error = len_diff < 0 ? IP6_ERROR_UDP_LENGTH : error;
1559
1560           STATIC_ASSERT (IP6_ERROR_UDP_CHECKSUM + IP_BUILTIN_PROTOCOL_UDP ==
1561                          IP6_ERROR_UDP_CHECKSUM,
1562                          "Wrong IP6 errors constants");
1563           STATIC_ASSERT (IP6_ERROR_UDP_CHECKSUM + IP_BUILTIN_PROTOCOL_ICMP ==
1564                          IP6_ERROR_ICMP_CHECKSUM,
1565                          "Wrong IP6 errors constants");
1566
1567           error = !good_l4_csum ? IP6_ERROR_UDP_CHECKSUM + type : error;
1568
1569           /* Drop packets from unroutable hosts. */
1570           /* If this is a neighbor solicitation (ICMP), skip source RPF check */
1571           u8 unroutable = error == IP6_ERROR_UNKNOWN_PROTOCOL
1572             && type != IP_BUILTIN_PROTOCOL_ICMP
1573             && !ip6_address_is_link_local_unicast (&ip->src_address);
1574           if (PREDICT_FALSE (unroutable))
1575             {
1576               error =
1577                 !ip6_urpf_loose_check (im, b[0],
1578                                        ip) ? IP6_ERROR_SRC_LOOKUP_MISS :
1579                 error;
1580             }
1581
1582           vnet_buffer (b[0])->ip.fib_index =
1583             vnet_buffer (b[0])->sw_if_index[VLIB_TX] != ~0 ?
1584             vnet_buffer (b[0])->sw_if_index[VLIB_TX] :
1585             vnet_buffer (b[0])->ip.fib_index;
1586         }                       /* head_of_feature_arc */
1587
1588       next[0] = lm->local_next_by_ip_protocol[ip->protocol];
1589       next[0] =
1590         error != IP6_ERROR_UNKNOWN_PROTOCOL ? IP_LOCAL_NEXT_DROP : next[0];
1591
1592       b[0]->error = error_node->errors[error];
1593
1594       if (head_of_feature_arc)
1595         {
1596           if (PREDICT_TRUE (error == (u8) IP6_ERROR_UNKNOWN_PROTOCOL))
1597             {
1598               u32 next32 = next[0];
1599               vnet_feature_arc_start (arc_index,
1600                                       vnet_buffer (b[0])->sw_if_index
1601                                       [VLIB_RX], &next32, b[0]);
1602               next[0] = next32;
1603             }
1604         }
1605
1606       /* next */
1607       b += 1;
1608       next += 1;
1609       n_left_from -= 1;
1610     }
1611
1612   vlib_buffer_enqueue_to_next (vm, node, from, nexts, frame->n_vectors);
1613   return frame->n_vectors;
1614 }
1615
1616 VLIB_NODE_FN (ip6_local_node) (vlib_main_t * vm, vlib_node_runtime_t * node,
1617                                vlib_frame_t * frame)
1618 {
1619   return ip6_local_inline (vm, node, frame, 1 /* head of feature arc */ );
1620 }
1621
1622 /* *INDENT-OFF* */
1623 VLIB_REGISTER_NODE (ip6_local_node) =
1624 {
1625   .name = "ip6-local",
1626   .vector_size = sizeof (u32),
1627   .format_trace = format_ip6_forward_next_trace,
1628   .n_next_nodes = IP_LOCAL_N_NEXT,
1629   .next_nodes =
1630   {
1631     [IP_LOCAL_NEXT_DROP] = "ip6-drop",
1632     [IP_LOCAL_NEXT_PUNT] = "ip6-punt",
1633     [IP_LOCAL_NEXT_UDP_LOOKUP] = "ip6-udp-lookup",
1634     [IP_LOCAL_NEXT_ICMP] = "ip6-icmp-input",
1635     [IP_LOCAL_NEXT_REASSEMBLY] = "ip6-full-reassembly",
1636   },
1637 };
1638 /* *INDENT-ON* */
1639
1640 VLIB_NODE_FN (ip6_local_end_of_arc_node) (vlib_main_t * vm,
1641                                           vlib_node_runtime_t * node,
1642                                           vlib_frame_t * frame)
1643 {
1644   return ip6_local_inline (vm, node, frame, 0 /* head of feature arc */ );
1645 }
1646
1647 /* *INDENT-OFF* */
1648 VLIB_REGISTER_NODE (ip6_local_end_of_arc_node) = {
1649   .name = "ip6-local-end-of-arc",
1650   .vector_size = sizeof (u32),
1651
1652   .format_trace = format_ip6_forward_next_trace,
1653   .sibling_of = "ip6-local",
1654 };
1655
1656 VNET_FEATURE_INIT (ip6_local_end_of_arc, static) = {
1657   .arc_name = "ip6-local",
1658   .node_name = "ip6-local-end-of-arc",
1659   .runs_before = 0, /* not before any other features */
1660 };
1661 /* *INDENT-ON* */
1662
1663 #ifdef CLIB_MARCH_VARIANT
1664 extern vlib_node_registration_t ip6_local_node;
1665 #else
1666 void
1667 ip6_register_protocol (u32 protocol, u32 node_index)
1668 {
1669   vlib_main_t *vm = vlib_get_main ();
1670   ip6_main_t *im = &ip6_main;
1671   ip_lookup_main_t *lm = &im->lookup_main;
1672
1673   ASSERT (protocol < ARRAY_LEN (lm->local_next_by_ip_protocol));
1674   lm->local_next_by_ip_protocol[protocol] =
1675     vlib_node_add_next (vm, ip6_local_node.index, node_index);
1676 }
1677
1678 void
1679 ip6_unregister_protocol (u32 protocol)
1680 {
1681   ip6_main_t *im = &ip6_main;
1682   ip_lookup_main_t *lm = &im->lookup_main;
1683
1684   ASSERT (protocol < ARRAY_LEN (lm->local_next_by_ip_protocol));
1685   lm->local_next_by_ip_protocol[protocol] = IP_LOCAL_NEXT_PUNT;
1686 }
1687 #endif
1688
1689 typedef enum
1690 {
1691   IP6_REWRITE_NEXT_DROP,
1692   IP6_REWRITE_NEXT_ICMP_ERROR,
1693   IP6_REWRITE_NEXT_FRAGMENT,
1694   IP6_REWRITE_N_NEXT            /* Last */
1695 } ip6_rewrite_next_t;
1696
1697 /**
1698  * This bits of an IPv6 address to mask to construct a multicast
1699  * MAC address
1700  */
1701 #define IP6_MCAST_ADDR_MASK 0xffffffff
1702
1703 always_inline void
1704 ip6_mtu_check (vlib_buffer_t * b, u16 packet_bytes,
1705                u16 adj_packet_bytes, bool is_locally_generated,
1706                u32 * next, u8 is_midchain, u32 * error)
1707 {
1708   if (adj_packet_bytes >= 1280 && packet_bytes > adj_packet_bytes)
1709     {
1710       if (is_locally_generated)
1711         {
1712           /* IP fragmentation */
1713           ip_frag_set_vnet_buffer (b, adj_packet_bytes,
1714                                    (is_midchain ?
1715                                     IP_FRAG_NEXT_IP_REWRITE_MIDCHAIN :
1716                                     IP_FRAG_NEXT_IP_REWRITE), 0);
1717           *next = IP6_REWRITE_NEXT_FRAGMENT;
1718           *error = IP6_ERROR_MTU_EXCEEDED;
1719         }
1720       else
1721         {
1722           *error = IP6_ERROR_MTU_EXCEEDED;
1723           icmp6_error_set_vnet_buffer (b, ICMP6_packet_too_big, 0,
1724                                        adj_packet_bytes);
1725           *next = IP6_REWRITE_NEXT_ICMP_ERROR;
1726         }
1727     }
1728 }
1729
1730 always_inline uword
1731 ip6_rewrite_inline_with_gso (vlib_main_t * vm,
1732                              vlib_node_runtime_t * node,
1733                              vlib_frame_t * frame,
1734                              int do_counters, int is_midchain, int is_mcast)
1735 {
1736   ip_lookup_main_t *lm = &ip6_main.lookup_main;
1737   u32 *from = vlib_frame_vector_args (frame);
1738   u32 n_left_from, n_left_to_next, *to_next, next_index;
1739   vlib_node_runtime_t *error_node =
1740     vlib_node_get_runtime (vm, ip6_input_node.index);
1741
1742   n_left_from = frame->n_vectors;
1743   next_index = node->cached_next_index;
1744   u32 thread_index = vm->thread_index;
1745
1746   while (n_left_from > 0)
1747     {
1748       vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
1749
1750       while (n_left_from >= 4 && n_left_to_next >= 2)
1751         {
1752           const ip_adjacency_t *adj0, *adj1;
1753           vlib_buffer_t *p0, *p1;
1754           ip6_header_t *ip0, *ip1;
1755           u32 pi0, rw_len0, next0, error0, adj_index0;
1756           u32 pi1, rw_len1, next1, error1, adj_index1;
1757           u32 tx_sw_if_index0, tx_sw_if_index1;
1758           bool is_locally_originated0, is_locally_originated1;
1759
1760           /* Prefetch next iteration. */
1761           {
1762             vlib_buffer_t *p2, *p3;
1763
1764             p2 = vlib_get_buffer (vm, from[2]);
1765             p3 = vlib_get_buffer (vm, from[3]);
1766
1767             vlib_prefetch_buffer_header (p2, LOAD);
1768             vlib_prefetch_buffer_header (p3, LOAD);
1769
1770             CLIB_PREFETCH (p2->pre_data, 32, STORE);
1771             CLIB_PREFETCH (p3->pre_data, 32, STORE);
1772
1773             CLIB_PREFETCH (p2->data, sizeof (ip0[0]), STORE);
1774             CLIB_PREFETCH (p3->data, sizeof (ip0[0]), STORE);
1775           }
1776
1777           pi0 = to_next[0] = from[0];
1778           pi1 = to_next[1] = from[1];
1779
1780           from += 2;
1781           n_left_from -= 2;
1782           to_next += 2;
1783           n_left_to_next -= 2;
1784
1785           p0 = vlib_get_buffer (vm, pi0);
1786           p1 = vlib_get_buffer (vm, pi1);
1787
1788           adj_index0 = vnet_buffer (p0)->ip.adj_index[VLIB_TX];
1789           adj_index1 = vnet_buffer (p1)->ip.adj_index[VLIB_TX];
1790
1791           ip0 = vlib_buffer_get_current (p0);
1792           ip1 = vlib_buffer_get_current (p1);
1793
1794           error0 = error1 = IP6_ERROR_NONE;
1795           next0 = next1 = IP6_REWRITE_NEXT_DROP;
1796
1797           is_locally_originated0 =
1798             p0->flags & VNET_BUFFER_F_LOCALLY_ORIGINATED;
1799           if (PREDICT_TRUE (!is_locally_originated0))
1800             {
1801               i32 hop_limit0 = ip0->hop_limit;
1802
1803               /* Input node should have reject packets with hop limit 0. */
1804               ASSERT (ip0->hop_limit > 0);
1805
1806               hop_limit0 -= 1;
1807
1808               ip0->hop_limit = hop_limit0;
1809
1810               /*
1811                * If the hop count drops below 1 when forwarding, generate
1812                * an ICMP response.
1813                */
1814               if (PREDICT_FALSE (hop_limit0 <= 0))
1815                 {
1816                   error0 = IP6_ERROR_TIME_EXPIRED;
1817                   next0 = IP6_REWRITE_NEXT_ICMP_ERROR;
1818                   vnet_buffer (p0)->sw_if_index[VLIB_TX] = (u32) ~ 0;
1819                   icmp6_error_set_vnet_buffer (p0, ICMP6_time_exceeded,
1820                                                ICMP6_time_exceeded_ttl_exceeded_in_transit,
1821                                                0);
1822                 }
1823             }
1824
1825           is_locally_originated1 =
1826             p1->flags & VNET_BUFFER_F_LOCALLY_ORIGINATED;
1827           if (PREDICT_TRUE (!is_locally_originated1))
1828             {
1829               i32 hop_limit1 = ip1->hop_limit;
1830
1831               /* Input node should have reject packets with hop limit 0. */
1832               ASSERT (ip1->hop_limit > 0);
1833
1834               hop_limit1 -= 1;
1835
1836               ip1->hop_limit = hop_limit1;
1837
1838               /*
1839                * If the hop count drops below 1 when forwarding, generate
1840                * an ICMP response.
1841                */
1842               if (PREDICT_FALSE (hop_limit1 <= 0))
1843                 {
1844                   error1 = IP6_ERROR_TIME_EXPIRED;
1845                   next1 = IP6_REWRITE_NEXT_ICMP_ERROR;
1846                   vnet_buffer (p1)->sw_if_index[VLIB_TX] = (u32) ~ 0;
1847                   icmp6_error_set_vnet_buffer (p1, ICMP6_time_exceeded,
1848                                                ICMP6_time_exceeded_ttl_exceeded_in_transit,
1849                                                0);
1850                 }
1851             }
1852
1853           adj0 = adj_get (adj_index0);
1854           adj1 = adj_get (adj_index1);
1855
1856           rw_len0 = adj0[0].rewrite_header.data_bytes;
1857           rw_len1 = adj1[0].rewrite_header.data_bytes;
1858           vnet_buffer (p0)->ip.save_rewrite_length = rw_len0;
1859           vnet_buffer (p1)->ip.save_rewrite_length = rw_len1;
1860
1861           if (do_counters)
1862             {
1863               vlib_increment_combined_counter
1864                 (&adjacency_counters,
1865                  thread_index, adj_index0, 1,
1866                  vlib_buffer_length_in_chain (vm, p0) + rw_len0);
1867               vlib_increment_combined_counter
1868                 (&adjacency_counters,
1869                  thread_index, adj_index1, 1,
1870                  vlib_buffer_length_in_chain (vm, p1) + rw_len1);
1871             }
1872
1873           /* Check MTU of outgoing interface. */
1874           u16 ip0_len =
1875             clib_net_to_host_u16 (ip0->payload_length) +
1876             sizeof (ip6_header_t);
1877           u16 ip1_len =
1878             clib_net_to_host_u16 (ip1->payload_length) +
1879             sizeof (ip6_header_t);
1880           if (p0->flags & VNET_BUFFER_F_GSO)
1881             ip0_len = gso_mtu_sz (p0);
1882           if (p1->flags & VNET_BUFFER_F_GSO)
1883             ip1_len = gso_mtu_sz (p1);
1884
1885
1886
1887           ip6_mtu_check (p0, ip0_len,
1888                          adj0[0].rewrite_header.max_l3_packet_bytes,
1889                          is_locally_originated0, &next0, is_midchain,
1890                          &error0);
1891           ip6_mtu_check (p1, ip1_len,
1892                          adj1[0].rewrite_header.max_l3_packet_bytes,
1893                          is_locally_originated1, &next1, is_midchain,
1894                          &error1);
1895
1896           /* Don't adjust the buffer for hop count issue; icmp-error node
1897            * wants to see the IP header */
1898           if (PREDICT_TRUE (error0 == IP6_ERROR_NONE))
1899             {
1900               p0->current_data -= rw_len0;
1901               p0->current_length += rw_len0;
1902
1903               tx_sw_if_index0 = adj0[0].rewrite_header.sw_if_index;
1904               vnet_buffer (p0)->sw_if_index[VLIB_TX] = tx_sw_if_index0;
1905               next0 = adj0[0].rewrite_header.next_index;
1906
1907               if (PREDICT_FALSE
1908                   (adj0[0].rewrite_header.flags & VNET_REWRITE_HAS_FEATURES))
1909                 vnet_feature_arc_start_w_cfg_index
1910                   (lm->output_feature_arc_index, tx_sw_if_index0, &next0, p0,
1911                    adj0->ia_cfg_index);
1912             }
1913           else
1914             {
1915               p0->error = error_node->errors[error0];
1916             }
1917           if (PREDICT_TRUE (error1 == IP6_ERROR_NONE))
1918             {
1919               p1->current_data -= rw_len1;
1920               p1->current_length += rw_len1;
1921
1922               tx_sw_if_index1 = adj1[0].rewrite_header.sw_if_index;
1923               vnet_buffer (p1)->sw_if_index[VLIB_TX] = tx_sw_if_index1;
1924               next1 = adj1[0].rewrite_header.next_index;
1925
1926               if (PREDICT_FALSE
1927                   (adj1[0].rewrite_header.flags & VNET_REWRITE_HAS_FEATURES))
1928                 vnet_feature_arc_start_w_cfg_index
1929                   (lm->output_feature_arc_index, tx_sw_if_index1, &next1, p1,
1930                    adj1->ia_cfg_index);
1931             }
1932           else
1933             {
1934               p1->error = error_node->errors[error1];
1935             }
1936
1937           if (is_midchain)
1938             {
1939               /* before we paint on the next header, update the L4
1940                * checksums if required, since there's no offload on a tunnel */
1941               vnet_calc_checksums_inline (vm, p0, 0 /* is_ip4 */ ,
1942                                           1 /* is_ip6 */ );
1943               vnet_calc_checksums_inline (vm, p1, 0 /* is_ip4 */ ,
1944                                           1 /* is_ip6 */ );
1945
1946               /* Guess we are only writing on ipv6 header. */
1947               vnet_rewrite_two_headers (adj0[0], adj1[0],
1948                                         ip0, ip1, sizeof (ip6_header_t));
1949             }
1950           else
1951             /* Guess we are only writing on simple Ethernet header. */
1952             vnet_rewrite_two_headers (adj0[0], adj1[0],
1953                                       ip0, ip1, sizeof (ethernet_header_t));
1954
1955           if (is_midchain)
1956             {
1957               if (adj0->sub_type.midchain.fixup_func)
1958                 adj0->sub_type.midchain.fixup_func
1959                   (vm, adj0, p0, adj0->sub_type.midchain.fixup_data);
1960               if (adj1->sub_type.midchain.fixup_func)
1961                 adj1->sub_type.midchain.fixup_func
1962                   (vm, adj1, p1, adj1->sub_type.midchain.fixup_data);
1963             }
1964           if (is_mcast)
1965             {
1966               /*
1967                * copy bytes from the IP address into the MAC rewrite
1968                */
1969               vnet_ip_mcast_fixup_header (IP6_MCAST_ADDR_MASK,
1970                                           adj0->
1971                                           rewrite_header.dst_mcast_offset,
1972                                           &ip0->dst_address.as_u32[3],
1973                                           (u8 *) ip0);
1974               vnet_ip_mcast_fixup_header (IP6_MCAST_ADDR_MASK,
1975                                           adj1->
1976                                           rewrite_header.dst_mcast_offset,
1977                                           &ip1->dst_address.as_u32[3],
1978                                           (u8 *) ip1);
1979             }
1980
1981           vlib_validate_buffer_enqueue_x2 (vm, node, next_index,
1982                                            to_next, n_left_to_next,
1983                                            pi0, pi1, next0, next1);
1984         }
1985
1986       while (n_left_from > 0 && n_left_to_next > 0)
1987         {
1988           ip_adjacency_t *adj0;
1989           vlib_buffer_t *p0;
1990           ip6_header_t *ip0;
1991           u32 pi0, rw_len0;
1992           u32 adj_index0, next0, error0;
1993           u32 tx_sw_if_index0;
1994           bool is_locally_originated0;
1995
1996           pi0 = to_next[0] = from[0];
1997
1998           p0 = vlib_get_buffer (vm, pi0);
1999
2000           adj_index0 = vnet_buffer (p0)->ip.adj_index[VLIB_TX];
2001
2002           adj0 = adj_get (adj_index0);
2003
2004           ip0 = vlib_buffer_get_current (p0);
2005
2006           error0 = IP6_ERROR_NONE;
2007           next0 = IP6_REWRITE_NEXT_DROP;
2008
2009           /* Check hop limit */
2010           is_locally_originated0 =
2011             p0->flags & VNET_BUFFER_F_LOCALLY_ORIGINATED;
2012           if (PREDICT_TRUE (!is_locally_originated0))
2013             {
2014               i32 hop_limit0 = ip0->hop_limit;
2015
2016               ASSERT (ip0->hop_limit > 0);
2017
2018               hop_limit0 -= 1;
2019
2020               ip0->hop_limit = hop_limit0;
2021
2022               if (PREDICT_FALSE (hop_limit0 <= 0))
2023                 {
2024                   /*
2025                    * If the hop count drops below 1 when forwarding, generate
2026                    * an ICMP response.
2027                    */
2028                   error0 = IP6_ERROR_TIME_EXPIRED;
2029                   next0 = IP6_REWRITE_NEXT_ICMP_ERROR;
2030                   vnet_buffer (p0)->sw_if_index[VLIB_TX] = (u32) ~ 0;
2031                   icmp6_error_set_vnet_buffer (p0, ICMP6_time_exceeded,
2032                                                ICMP6_time_exceeded_ttl_exceeded_in_transit,
2033                                                0);
2034                 }
2035             }
2036
2037           if (is_midchain)
2038             {
2039               vnet_calc_checksums_inline (vm, p0, 0 /* is_ip4 */ ,
2040                                           1 /* is_ip6 */ );
2041
2042               /* Guess we are only writing on ip6 header. */
2043               vnet_rewrite_one_header (adj0[0], ip0, sizeof (ip6_header_t));
2044             }
2045           else
2046             /* Guess we are only writing on simple Ethernet header. */
2047             vnet_rewrite_one_header (adj0[0], ip0,
2048                                      sizeof (ethernet_header_t));
2049
2050           /* Update packet buffer attributes/set output interface. */
2051           rw_len0 = adj0[0].rewrite_header.data_bytes;
2052           vnet_buffer (p0)->ip.save_rewrite_length = rw_len0;
2053
2054           if (do_counters)
2055             {
2056               vlib_increment_combined_counter
2057                 (&adjacency_counters,
2058                  thread_index, adj_index0, 1,
2059                  vlib_buffer_length_in_chain (vm, p0) + rw_len0);
2060             }
2061
2062           /* Check MTU of outgoing interface. */
2063           u16 ip0_len =
2064             clib_net_to_host_u16 (ip0->payload_length) +
2065             sizeof (ip6_header_t);
2066           if (p0->flags & VNET_BUFFER_F_GSO)
2067             ip0_len = gso_mtu_sz (p0);
2068
2069           ip6_mtu_check (p0, ip0_len,
2070                          adj0[0].rewrite_header.max_l3_packet_bytes,
2071                          is_locally_originated0, &next0, is_midchain,
2072                          &error0);
2073
2074           /* Don't adjust the buffer for hop count issue; icmp-error node
2075            * wants to see the IP header */
2076           if (PREDICT_TRUE (error0 == IP6_ERROR_NONE))
2077             {
2078               p0->current_data -= rw_len0;
2079               p0->current_length += rw_len0;
2080
2081               tx_sw_if_index0 = adj0[0].rewrite_header.sw_if_index;
2082
2083               vnet_buffer (p0)->sw_if_index[VLIB_TX] = tx_sw_if_index0;
2084               next0 = adj0[0].rewrite_header.next_index;
2085
2086               if (PREDICT_FALSE
2087                   (adj0[0].rewrite_header.flags & VNET_REWRITE_HAS_FEATURES))
2088                 vnet_feature_arc_start_w_cfg_index
2089                   (lm->output_feature_arc_index, tx_sw_if_index0, &next0, p0,
2090                    adj0->ia_cfg_index);
2091             }
2092           else
2093             {
2094               p0->error = error_node->errors[error0];
2095             }
2096
2097           if (is_midchain)
2098             {
2099               if (adj0->sub_type.midchain.fixup_func)
2100                 adj0->sub_type.midchain.fixup_func
2101                   (vm, adj0, p0, adj0->sub_type.midchain.fixup_data);
2102             }
2103           if (is_mcast)
2104             {
2105               vnet_ip_mcast_fixup_header (IP6_MCAST_ADDR_MASK,
2106                                           adj0->
2107                                           rewrite_header.dst_mcast_offset,
2108                                           &ip0->dst_address.as_u32[3],
2109                                           (u8 *) ip0);
2110             }
2111
2112           from += 1;
2113           n_left_from -= 1;
2114           to_next += 1;
2115           n_left_to_next -= 1;
2116
2117           vlib_validate_buffer_enqueue_x1 (vm, node, next_index,
2118                                            to_next, n_left_to_next,
2119                                            pi0, next0);
2120         }
2121
2122       vlib_put_next_frame (vm, node, next_index, n_left_to_next);
2123     }
2124
2125   /* Need to do trace after rewrites to pick up new packet data. */
2126   if (node->flags & VLIB_NODE_FLAG_TRACE)
2127     ip6_forward_next_trace (vm, node, frame, VLIB_TX);
2128
2129   return frame->n_vectors;
2130 }
2131
2132 always_inline uword
2133 ip6_rewrite_inline (vlib_main_t * vm,
2134                     vlib_node_runtime_t * node,
2135                     vlib_frame_t * frame,
2136                     int do_counters, int is_midchain, int is_mcast)
2137 {
2138   return ip6_rewrite_inline_with_gso (vm, node, frame, do_counters,
2139                                       is_midchain, is_mcast);
2140 }
2141
2142 VLIB_NODE_FN (ip6_rewrite_node) (vlib_main_t * vm,
2143                                  vlib_node_runtime_t * node,
2144                                  vlib_frame_t * frame)
2145 {
2146   if (adj_are_counters_enabled ())
2147     return ip6_rewrite_inline (vm, node, frame, 1, 0, 0);
2148   else
2149     return ip6_rewrite_inline (vm, node, frame, 0, 0, 0);
2150 }
2151
2152 VLIB_NODE_FN (ip6_rewrite_bcast_node) (vlib_main_t * vm,
2153                                        vlib_node_runtime_t * node,
2154                                        vlib_frame_t * frame)
2155 {
2156   if (adj_are_counters_enabled ())
2157     return ip6_rewrite_inline (vm, node, frame, 1, 0, 0);
2158   else
2159     return ip6_rewrite_inline (vm, node, frame, 0, 0, 0);
2160 }
2161
2162 VLIB_NODE_FN (ip6_rewrite_mcast_node) (vlib_main_t * vm,
2163                                        vlib_node_runtime_t * node,
2164                                        vlib_frame_t * frame)
2165 {
2166   if (adj_are_counters_enabled ())
2167     return ip6_rewrite_inline (vm, node, frame, 1, 0, 1);
2168   else
2169     return ip6_rewrite_inline (vm, node, frame, 0, 0, 1);
2170 }
2171
2172 VLIB_NODE_FN (ip6_midchain_node) (vlib_main_t * vm,
2173                                   vlib_node_runtime_t * node,
2174                                   vlib_frame_t * frame)
2175 {
2176   if (adj_are_counters_enabled ())
2177     return ip6_rewrite_inline (vm, node, frame, 1, 1, 0);
2178   else
2179     return ip6_rewrite_inline (vm, node, frame, 0, 1, 0);
2180 }
2181
2182 VLIB_NODE_FN (ip6_mcast_midchain_node) (vlib_main_t * vm,
2183                                         vlib_node_runtime_t * node,
2184                                         vlib_frame_t * frame)
2185 {
2186   if (adj_are_counters_enabled ())
2187     return ip6_rewrite_inline (vm, node, frame, 1, 1, 1);
2188   else
2189     return ip6_rewrite_inline (vm, node, frame, 0, 1, 1);
2190 }
2191
2192 /* *INDENT-OFF* */
2193 VLIB_REGISTER_NODE (ip6_midchain_node) =
2194 {
2195   .name = "ip6-midchain",
2196   .vector_size = sizeof (u32),
2197   .format_trace = format_ip6_forward_next_trace,
2198   .sibling_of = "ip6-rewrite",
2199   };
2200
2201 VLIB_REGISTER_NODE (ip6_rewrite_node) =
2202 {
2203   .name = "ip6-rewrite",
2204   .vector_size = sizeof (u32),
2205   .format_trace = format_ip6_rewrite_trace,
2206   .n_next_nodes = IP6_REWRITE_N_NEXT,
2207   .next_nodes =
2208   {
2209     [IP6_REWRITE_NEXT_DROP] = "ip6-drop",
2210     [IP6_REWRITE_NEXT_ICMP_ERROR] = "ip6-icmp-error",
2211     [IP6_REWRITE_NEXT_FRAGMENT] = "ip6-frag",
2212   },
2213 };
2214
2215 VLIB_REGISTER_NODE (ip6_rewrite_bcast_node) = {
2216   .name = "ip6-rewrite-bcast",
2217   .vector_size = sizeof (u32),
2218
2219   .format_trace = format_ip6_rewrite_trace,
2220   .sibling_of = "ip6-rewrite",
2221 };
2222
2223 VLIB_REGISTER_NODE (ip6_rewrite_mcast_node) =
2224 {
2225   .name = "ip6-rewrite-mcast",
2226   .vector_size = sizeof (u32),
2227   .format_trace = format_ip6_rewrite_trace,
2228   .sibling_of = "ip6-rewrite",
2229 };
2230
2231
2232 VLIB_REGISTER_NODE (ip6_mcast_midchain_node) =
2233 {
2234   .name = "ip6-mcast-midchain",
2235   .vector_size = sizeof (u32),
2236   .format_trace = format_ip6_rewrite_trace,
2237   .sibling_of = "ip6-rewrite",
2238 };
2239
2240 /* *INDENT-ON* */
2241
2242 /*
2243  * Hop-by-Hop handling
2244  */
2245 #ifndef CLIB_MARCH_VARIANT
2246 ip6_hop_by_hop_main_t ip6_hop_by_hop_main;
2247 #endif /* CLIB_MARCH_VARIANT */
2248
2249 #define foreach_ip6_hop_by_hop_error \
2250 _(PROCESSED, "pkts with ip6 hop-by-hop options") \
2251 _(FORMAT, "incorrectly formatted hop-by-hop options") \
2252 _(UNKNOWN_OPTION, "unknown ip6 hop-by-hop options")
2253
2254 /* *INDENT-OFF* */
2255 typedef enum
2256 {
2257 #define _(sym,str) IP6_HOP_BY_HOP_ERROR_##sym,
2258   foreach_ip6_hop_by_hop_error
2259 #undef _
2260   IP6_HOP_BY_HOP_N_ERROR,
2261 } ip6_hop_by_hop_error_t;
2262 /* *INDENT-ON* */
2263
2264 /*
2265  * Primary h-b-h handler trace support
2266  * We work pretty hard on the problem for obvious reasons
2267  */
2268 typedef struct
2269 {
2270   u32 next_index;
2271   u32 trace_len;
2272   u8 option_data[256];
2273 } ip6_hop_by_hop_trace_t;
2274
2275 extern vlib_node_registration_t ip6_hop_by_hop_node;
2276
2277 static char *ip6_hop_by_hop_error_strings[] = {
2278 #define _(sym,string) string,
2279   foreach_ip6_hop_by_hop_error
2280 #undef _
2281 };
2282
2283 #ifndef CLIB_MARCH_VARIANT
2284 u8 *
2285 format_ip6_hop_by_hop_ext_hdr (u8 * s, va_list * args)
2286 {
2287   ip6_hop_by_hop_header_t *hbh0 = va_arg (*args, ip6_hop_by_hop_header_t *);
2288   int total_len = va_arg (*args, int);
2289   ip6_hop_by_hop_option_t *opt0, *limit0;
2290   ip6_hop_by_hop_main_t *hm = &ip6_hop_by_hop_main;
2291   u8 type0;
2292
2293   s = format (s, "IP6_HOP_BY_HOP: next protocol %d len %d total %d",
2294               hbh0->protocol, (hbh0->length + 1) << 3, total_len);
2295
2296   opt0 = (ip6_hop_by_hop_option_t *) (hbh0 + 1);
2297   limit0 = (ip6_hop_by_hop_option_t *) ((u8 *) hbh0 + total_len);
2298
2299   while (opt0 < limit0)
2300     {
2301       type0 = opt0->type;
2302       switch (type0)
2303         {
2304         case 0:         /* Pad, just stop */
2305           opt0 = (ip6_hop_by_hop_option_t *) ((u8 *) opt0 + 1);
2306           break;
2307
2308         default:
2309           if (hm->trace[type0])
2310             {
2311               s = (*hm->trace[type0]) (s, opt0);
2312             }
2313           else
2314             {
2315               s =
2316                 format (s, "\n    unrecognized option %d length %d", type0,
2317                         opt0->length);
2318             }
2319           opt0 =
2320             (ip6_hop_by_hop_option_t *) (((u8 *) opt0) + opt0->length +
2321                                          sizeof (ip6_hop_by_hop_option_t));
2322           break;
2323         }
2324     }
2325   return s;
2326 }
2327 #endif
2328
2329 static u8 *
2330 format_ip6_hop_by_hop_trace (u8 * s, va_list * args)
2331 {
2332   CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
2333   CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
2334   ip6_hop_by_hop_trace_t *t = va_arg (*args, ip6_hop_by_hop_trace_t *);
2335   ip6_hop_by_hop_header_t *hbh0;
2336   ip6_hop_by_hop_option_t *opt0, *limit0;
2337   ip6_hop_by_hop_main_t *hm = &ip6_hop_by_hop_main;
2338
2339   u8 type0;
2340
2341   hbh0 = (ip6_hop_by_hop_header_t *) t->option_data;
2342
2343   s = format (s, "IP6_HOP_BY_HOP: next index %d len %d traced %d",
2344               t->next_index, (hbh0->length + 1) << 3, t->trace_len);
2345
2346   opt0 = (ip6_hop_by_hop_option_t *) (hbh0 + 1);
2347   limit0 = (ip6_hop_by_hop_option_t *) ((u8 *) hbh0) + t->trace_len;
2348
2349   while (opt0 < limit0)
2350     {
2351       type0 = opt0->type;
2352       switch (type0)
2353         {
2354         case 0:         /* Pad, just stop */
2355           opt0 = (ip6_hop_by_hop_option_t *) ((u8 *) opt0) + 1;
2356           break;
2357
2358         default:
2359           if (hm->trace[type0])
2360             {
2361               s = (*hm->trace[type0]) (s, opt0);
2362             }
2363           else
2364             {
2365               s =
2366                 format (s, "\n    unrecognized option %d length %d", type0,
2367                         opt0->length);
2368             }
2369           opt0 =
2370             (ip6_hop_by_hop_option_t *) (((u8 *) opt0) + opt0->length +
2371                                          sizeof (ip6_hop_by_hop_option_t));
2372           break;
2373         }
2374     }
2375   return s;
2376 }
2377
2378 always_inline u8
2379 ip6_scan_hbh_options (vlib_buffer_t * b0,
2380                       ip6_header_t * ip0,
2381                       ip6_hop_by_hop_header_t * hbh0,
2382                       ip6_hop_by_hop_option_t * opt0,
2383                       ip6_hop_by_hop_option_t * limit0, u32 * next0)
2384 {
2385   ip6_hop_by_hop_main_t *hm = &ip6_hop_by_hop_main;
2386   u8 type0;
2387   u8 error0 = 0;
2388
2389   while (opt0 < limit0)
2390     {
2391       type0 = opt0->type;
2392       switch (type0)
2393         {
2394         case 0:         /* Pad1 */
2395           opt0 = (ip6_hop_by_hop_option_t *) ((u8 *) opt0) + 1;
2396           continue;
2397         case 1:         /* PadN */
2398           break;
2399         default:
2400           if (hm->options[type0])
2401             {
2402               if ((*hm->options[type0]) (b0, ip0, opt0) < 0)
2403                 {
2404                   error0 = IP6_HOP_BY_HOP_ERROR_FORMAT;
2405                   return (error0);
2406                 }
2407             }
2408           else
2409             {
2410               /* Unrecognized mandatory option, check the two high order bits */
2411               switch (opt0->type & HBH_OPTION_TYPE_HIGH_ORDER_BITS)
2412                 {
2413                 case HBH_OPTION_TYPE_SKIP_UNKNOWN:
2414                   break;
2415                 case HBH_OPTION_TYPE_DISCARD_UNKNOWN:
2416                   error0 = IP6_HOP_BY_HOP_ERROR_UNKNOWN_OPTION;
2417                   *next0 = IP_LOOKUP_NEXT_DROP;
2418                   break;
2419                 case HBH_OPTION_TYPE_DISCARD_UNKNOWN_ICMP:
2420                   error0 = IP6_HOP_BY_HOP_ERROR_UNKNOWN_OPTION;
2421                   *next0 = IP_LOOKUP_NEXT_ICMP_ERROR;
2422                   icmp6_error_set_vnet_buffer (b0, ICMP6_parameter_problem,
2423                                                ICMP6_parameter_problem_unrecognized_option,
2424                                                (u8 *) opt0 - (u8 *) ip0);
2425                   break;
2426                 case HBH_OPTION_TYPE_DISCARD_UNKNOWN_ICMP_NOT_MCAST:
2427                   error0 = IP6_HOP_BY_HOP_ERROR_UNKNOWN_OPTION;
2428                   if (!ip6_address_is_multicast (&ip0->dst_address))
2429                     {
2430                       *next0 = IP_LOOKUP_NEXT_ICMP_ERROR;
2431                       icmp6_error_set_vnet_buffer (b0,
2432                                                    ICMP6_parameter_problem,
2433                                                    ICMP6_parameter_problem_unrecognized_option,
2434                                                    (u8 *) opt0 - (u8 *) ip0);
2435                     }
2436                   else
2437                     {
2438                       *next0 = IP_LOOKUP_NEXT_DROP;
2439                     }
2440                   break;
2441                 }
2442               return (error0);
2443             }
2444         }
2445       opt0 =
2446         (ip6_hop_by_hop_option_t *) (((u8 *) opt0) + opt0->length +
2447                                      sizeof (ip6_hop_by_hop_option_t));
2448     }
2449   return (error0);
2450 }
2451
2452 /*
2453  * Process the Hop-by-Hop Options header
2454  */
2455 VLIB_NODE_FN (ip6_hop_by_hop_node) (vlib_main_t * vm,
2456                                     vlib_node_runtime_t * node,
2457                                     vlib_frame_t * frame)
2458 {
2459   vlib_node_runtime_t *error_node =
2460     vlib_node_get_runtime (vm, ip6_hop_by_hop_node.index);
2461   ip6_hop_by_hop_main_t *hm = &ip6_hop_by_hop_main;
2462   u32 n_left_from, *from, *to_next;
2463   ip_lookup_next_t next_index;
2464
2465   from = vlib_frame_vector_args (frame);
2466   n_left_from = frame->n_vectors;
2467   next_index = node->cached_next_index;
2468
2469   while (n_left_from > 0)
2470     {
2471       u32 n_left_to_next;
2472
2473       vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
2474
2475       while (n_left_from >= 4 && n_left_to_next >= 2)
2476         {
2477           u32 bi0, bi1;
2478           vlib_buffer_t *b0, *b1;
2479           u32 next0, next1;
2480           ip6_header_t *ip0, *ip1;
2481           ip6_hop_by_hop_header_t *hbh0, *hbh1;
2482           ip6_hop_by_hop_option_t *opt0, *limit0, *opt1, *limit1;
2483           u8 error0 = 0, error1 = 0;
2484
2485           /* Prefetch next iteration. */
2486           {
2487             vlib_buffer_t *p2, *p3;
2488
2489             p2 = vlib_get_buffer (vm, from[2]);
2490             p3 = vlib_get_buffer (vm, from[3]);
2491
2492             vlib_prefetch_buffer_header (p2, LOAD);
2493             vlib_prefetch_buffer_header (p3, LOAD);
2494
2495             CLIB_PREFETCH (p2->data, 2 * CLIB_CACHE_LINE_BYTES, LOAD);
2496             CLIB_PREFETCH (p3->data, 2 * CLIB_CACHE_LINE_BYTES, LOAD);
2497           }
2498
2499           /* Speculatively enqueue b0, b1 to the current next frame */
2500           to_next[0] = bi0 = from[0];
2501           to_next[1] = bi1 = from[1];
2502           from += 2;
2503           to_next += 2;
2504           n_left_from -= 2;
2505           n_left_to_next -= 2;
2506
2507           b0 = vlib_get_buffer (vm, bi0);
2508           b1 = vlib_get_buffer (vm, bi1);
2509
2510           /* Default use the next_index from the adjacency. A HBH option rarely redirects to a different node */
2511           u32 adj_index0 = vnet_buffer (b0)->ip.adj_index[VLIB_TX];
2512           ip_adjacency_t *adj0 = adj_get (adj_index0);
2513           u32 adj_index1 = vnet_buffer (b1)->ip.adj_index[VLIB_TX];
2514           ip_adjacency_t *adj1 = adj_get (adj_index1);
2515
2516           /* Default use the next_index from the adjacency. A HBH option rarely redirects to a different node */
2517           next0 = adj0->lookup_next_index;
2518           next1 = adj1->lookup_next_index;
2519
2520           ip0 = vlib_buffer_get_current (b0);
2521           ip1 = vlib_buffer_get_current (b1);
2522           hbh0 = (ip6_hop_by_hop_header_t *) (ip0 + 1);
2523           hbh1 = (ip6_hop_by_hop_header_t *) (ip1 + 1);
2524           opt0 = (ip6_hop_by_hop_option_t *) (hbh0 + 1);
2525           opt1 = (ip6_hop_by_hop_option_t *) (hbh1 + 1);
2526           limit0 =
2527             (ip6_hop_by_hop_option_t *) ((u8 *) hbh0 +
2528                                          ((hbh0->length + 1) << 3));
2529           limit1 =
2530             (ip6_hop_by_hop_option_t *) ((u8 *) hbh1 +
2531                                          ((hbh1->length + 1) << 3));
2532
2533           /*
2534            * Basic validity checks
2535            */
2536           if ((hbh0->length + 1) << 3 >
2537               clib_net_to_host_u16 (ip0->payload_length))
2538             {
2539               error0 = IP6_HOP_BY_HOP_ERROR_FORMAT;
2540               next0 = IP_LOOKUP_NEXT_DROP;
2541               goto outdual;
2542             }
2543           /* Scan the set of h-b-h options, process ones that we understand */
2544           error0 = ip6_scan_hbh_options (b0, ip0, hbh0, opt0, limit0, &next0);
2545
2546           if ((hbh1->length + 1) << 3 >
2547               clib_net_to_host_u16 (ip1->payload_length))
2548             {
2549               error1 = IP6_HOP_BY_HOP_ERROR_FORMAT;
2550               next1 = IP_LOOKUP_NEXT_DROP;
2551               goto outdual;
2552             }
2553           /* Scan the set of h-b-h options, process ones that we understand */
2554           error1 = ip6_scan_hbh_options (b1, ip1, hbh1, opt1, limit1, &next1);
2555
2556         outdual:
2557           /* Has the classifier flagged this buffer for special treatment? */
2558           if (PREDICT_FALSE
2559               ((error0 == 0)
2560                && (vnet_buffer (b0)->l2_classify.opaque_index & OI_DECAP)))
2561             next0 = hm->next_override;
2562
2563           /* Has the classifier flagged this buffer for special treatment? */
2564           if (PREDICT_FALSE
2565               ((error1 == 0)
2566                && (vnet_buffer (b1)->l2_classify.opaque_index & OI_DECAP)))
2567             next1 = hm->next_override;
2568
2569           if (PREDICT_FALSE ((node->flags & VLIB_NODE_FLAG_TRACE)))
2570             {
2571               if (b0->flags & VLIB_BUFFER_IS_TRACED)
2572                 {
2573                   ip6_hop_by_hop_trace_t *t =
2574                     vlib_add_trace (vm, node, b0, sizeof (*t));
2575                   u32 trace_len = (hbh0->length + 1) << 3;
2576                   t->next_index = next0;
2577                   /* Capture the h-b-h option verbatim */
2578                   trace_len =
2579                     trace_len <
2580                     ARRAY_LEN (t->option_data) ? trace_len :
2581                     ARRAY_LEN (t->option_data);
2582                   t->trace_len = trace_len;
2583                   clib_memcpy_fast (t->option_data, hbh0, trace_len);
2584                 }
2585               if (b1->flags & VLIB_BUFFER_IS_TRACED)
2586                 {
2587                   ip6_hop_by_hop_trace_t *t =
2588                     vlib_add_trace (vm, node, b1, sizeof (*t));
2589                   u32 trace_len = (hbh1->length + 1) << 3;
2590                   t->next_index = next1;
2591                   /* Capture the h-b-h option verbatim */
2592                   trace_len =
2593                     trace_len <
2594                     ARRAY_LEN (t->option_data) ? trace_len :
2595                     ARRAY_LEN (t->option_data);
2596                   t->trace_len = trace_len;
2597                   clib_memcpy_fast (t->option_data, hbh1, trace_len);
2598                 }
2599
2600             }
2601
2602           b0->error = error_node->errors[error0];
2603           b1->error = error_node->errors[error1];
2604
2605           /* verify speculative enqueue, maybe switch current next frame */
2606           vlib_validate_buffer_enqueue_x2 (vm, node, next_index, to_next,
2607                                            n_left_to_next, bi0, bi1, next0,
2608                                            next1);
2609         }
2610
2611       while (n_left_from > 0 && n_left_to_next > 0)
2612         {
2613           u32 bi0;
2614           vlib_buffer_t *b0;
2615           u32 next0;
2616           ip6_header_t *ip0;
2617           ip6_hop_by_hop_header_t *hbh0;
2618           ip6_hop_by_hop_option_t *opt0, *limit0;
2619           u8 error0 = 0;
2620
2621           /* Speculatively enqueue b0 to the current next frame */
2622           bi0 = from[0];
2623           to_next[0] = bi0;
2624           from += 1;
2625           to_next += 1;
2626           n_left_from -= 1;
2627           n_left_to_next -= 1;
2628
2629           b0 = vlib_get_buffer (vm, bi0);
2630           /*
2631            * Default use the next_index from the adjacency.
2632            * A HBH option rarely redirects to a different node
2633            */
2634           u32 adj_index0 = vnet_buffer (b0)->ip.adj_index[VLIB_TX];
2635           ip_adjacency_t *adj0 = adj_get (adj_index0);
2636           next0 = adj0->lookup_next_index;
2637
2638           ip0 = vlib_buffer_get_current (b0);
2639           hbh0 = (ip6_hop_by_hop_header_t *) (ip0 + 1);
2640           opt0 = (ip6_hop_by_hop_option_t *) (hbh0 + 1);
2641           limit0 =
2642             (ip6_hop_by_hop_option_t *) ((u8 *) hbh0 +
2643                                          ((hbh0->length + 1) << 3));
2644
2645           /*
2646            * Basic validity checks
2647            */
2648           if ((hbh0->length + 1) << 3 >
2649               clib_net_to_host_u16 (ip0->payload_length))
2650             {
2651               error0 = IP6_HOP_BY_HOP_ERROR_FORMAT;
2652               next0 = IP_LOOKUP_NEXT_DROP;
2653               goto out0;
2654             }
2655
2656           /* Scan the set of h-b-h options, process ones that we understand */
2657           error0 = ip6_scan_hbh_options (b0, ip0, hbh0, opt0, limit0, &next0);
2658
2659         out0:
2660           /* Has the classifier flagged this buffer for special treatment? */
2661           if (PREDICT_FALSE
2662               ((error0 == 0)
2663                && (vnet_buffer (b0)->l2_classify.opaque_index & OI_DECAP)))
2664             next0 = hm->next_override;
2665
2666           if (PREDICT_FALSE (b0->flags & VLIB_BUFFER_IS_TRACED))
2667             {
2668               ip6_hop_by_hop_trace_t *t =
2669                 vlib_add_trace (vm, node, b0, sizeof (*t));
2670               u32 trace_len = (hbh0->length + 1) << 3;
2671               t->next_index = next0;
2672               /* Capture the h-b-h option verbatim */
2673               trace_len =
2674                 trace_len <
2675                 ARRAY_LEN (t->option_data) ? trace_len :
2676                 ARRAY_LEN (t->option_data);
2677               t->trace_len = trace_len;
2678               clib_memcpy_fast (t->option_data, hbh0, trace_len);
2679             }
2680
2681           b0->error = error_node->errors[error0];
2682
2683           /* verify speculative enqueue, maybe switch current next frame */
2684           vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
2685                                            n_left_to_next, bi0, next0);
2686         }
2687       vlib_put_next_frame (vm, node, next_index, n_left_to_next);
2688     }
2689   return frame->n_vectors;
2690 }
2691
2692 /* *INDENT-OFF* */
2693 VLIB_REGISTER_NODE (ip6_hop_by_hop_node) =
2694 {
2695   .name = "ip6-hop-by-hop",
2696   .sibling_of = "ip6-lookup",
2697   .vector_size = sizeof (u32),
2698   .format_trace = format_ip6_hop_by_hop_trace,
2699   .type = VLIB_NODE_TYPE_INTERNAL,
2700   .n_errors = ARRAY_LEN (ip6_hop_by_hop_error_strings),
2701   .error_strings = ip6_hop_by_hop_error_strings,
2702   .n_next_nodes = 0,
2703 };
2704 /* *INDENT-ON* */
2705
2706 static clib_error_t *
2707 ip6_hop_by_hop_init (vlib_main_t * vm)
2708 {
2709   ip6_hop_by_hop_main_t *hm = &ip6_hop_by_hop_main;
2710   clib_memset (hm->options, 0, sizeof (hm->options));
2711   clib_memset (hm->trace, 0, sizeof (hm->trace));
2712   hm->next_override = IP6_LOOKUP_NEXT_POP_HOP_BY_HOP;
2713   return (0);
2714 }
2715
2716 VLIB_INIT_FUNCTION (ip6_hop_by_hop_init);
2717
2718 #ifndef CLIB_MARCH_VARIANT
2719 void
2720 ip6_hbh_set_next_override (uword next)
2721 {
2722   ip6_hop_by_hop_main_t *hm = &ip6_hop_by_hop_main;
2723
2724   hm->next_override = next;
2725 }
2726
2727 int
2728 ip6_hbh_register_option (u8 option,
2729                          int options (vlib_buffer_t * b, ip6_header_t * ip,
2730                                       ip6_hop_by_hop_option_t * opt),
2731                          u8 * trace (u8 * s, ip6_hop_by_hop_option_t * opt))
2732 {
2733   ip6_main_t *im = &ip6_main;
2734   ip6_hop_by_hop_main_t *hm = &ip6_hop_by_hop_main;
2735
2736   ASSERT ((u32) option < ARRAY_LEN (hm->options));
2737
2738   /* Already registered */
2739   if (hm->options[option])
2740     return (-1);
2741
2742   hm->options[option] = options;
2743   hm->trace[option] = trace;
2744
2745   /* Set global variable */
2746   im->hbh_enabled = 1;
2747
2748   return (0);
2749 }
2750
2751 int
2752 ip6_hbh_unregister_option (u8 option)
2753 {
2754   ip6_main_t *im = &ip6_main;
2755   ip6_hop_by_hop_main_t *hm = &ip6_hop_by_hop_main;
2756
2757   ASSERT ((u32) option < ARRAY_LEN (hm->options));
2758
2759   /* Not registered */
2760   if (!hm->options[option])
2761     return (-1);
2762
2763   hm->options[option] = NULL;
2764   hm->trace[option] = NULL;
2765
2766   /* Disable global knob if this was the last option configured */
2767   int i;
2768   bool found = false;
2769   for (i = 0; i < 256; i++)
2770     {
2771       if (hm->options[option])
2772         {
2773           found = true;
2774           break;
2775         }
2776     }
2777   if (!found)
2778     im->hbh_enabled = 0;
2779
2780   return (0);
2781 }
2782
2783 /* Global IP6 main. */
2784 ip6_main_t ip6_main;
2785 #endif
2786
2787 static clib_error_t *
2788 ip6_lookup_init (vlib_main_t * vm)
2789 {
2790   ip6_main_t *im = &ip6_main;
2791   clib_error_t *error;
2792   uword i;
2793
2794   if ((error = vlib_call_init_function (vm, vnet_feature_init)))
2795     return error;
2796
2797   for (i = 0; i < ARRAY_LEN (im->fib_masks); i++)
2798     {
2799       u32 j, i0, i1;
2800
2801       i0 = i / 32;
2802       i1 = i % 32;
2803
2804       for (j = 0; j < i0; j++)
2805         im->fib_masks[i].as_u32[j] = ~0;
2806
2807       if (i1)
2808         im->fib_masks[i].as_u32[i0] =
2809           clib_host_to_net_u32 (pow2_mask (i1) << (32 - i1));
2810     }
2811
2812   ip_lookup_init (&im->lookup_main, /* is_ip6 */ 1);
2813
2814   /* Create FIB with index 0 and table id of 0. */
2815   fib_table_find_or_create_and_lock (FIB_PROTOCOL_IP6, 0,
2816                                      FIB_SOURCE_DEFAULT_ROUTE);
2817   mfib_table_find_or_create_and_lock (FIB_PROTOCOL_IP6, 0,
2818                                       MFIB_SOURCE_DEFAULT_ROUTE);
2819
2820   {
2821     pg_node_t *pn;
2822     pn = pg_get_node (ip6_lookup_node.index);
2823     pn->unformat_edit = unformat_pg_ip6_header;
2824   }
2825
2826   /* Unless explicitly configured, don't process HBH options */
2827   im->hbh_enabled = 0;
2828
2829   return error;
2830 }
2831
2832 VLIB_INIT_FUNCTION (ip6_lookup_init);
2833
2834 static clib_error_t *
2835 set_ip6_flow_hash_command_fn (vlib_main_t * vm,
2836                               unformat_input_t * input,
2837                               vlib_cli_command_t * cmd)
2838 {
2839   int matched = 0;
2840   u32 table_id = 0;
2841   u32 flow_hash_config = 0;
2842   int rv;
2843
2844   while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
2845     {
2846       if (unformat (input, "table %d", &table_id))
2847         matched = 1;
2848 #define _(a, b, v)                                                            \
2849   else if (unformat (input, #a))                                              \
2850   {                                                                           \
2851     flow_hash_config |= v;                                                    \
2852     matched = 1;                                                              \
2853   }
2854       foreach_flow_hash_bit
2855 #undef _
2856         else
2857         break;
2858     }
2859
2860   if (matched == 0)
2861     return clib_error_return (0, "unknown input `%U'",
2862                               format_unformat_error, input);
2863
2864   rv = ip_flow_hash_set (AF_IP6, table_id, flow_hash_config);
2865   switch (rv)
2866     {
2867     case 0:
2868       break;
2869
2870     case -1:
2871       return clib_error_return (0, "no such FIB table %d", table_id);
2872
2873     default:
2874       clib_warning ("BUG: illegal flow hash config 0x%x", flow_hash_config);
2875       break;
2876     }
2877
2878   return 0;
2879 }
2880
2881 /*?
2882  * Configure the set of IPv6 fields used by the flow hash.
2883  *
2884  * @cliexpar
2885  * @parblock
2886  * Example of how to set the flow hash on a given table:
2887  * @cliexcmd{set ip6 flow-hash table 8 dst sport dport proto}
2888  *
2889  * Example of display the configured flow hash:
2890  * @cliexstart{show ip6 fib}
2891  * ipv6-VRF:0, fib_index 0, flow hash: src dst sport dport proto
2892  * @::/0
2893  *   unicast-ip6-chain
2894  *   [@0]: dpo-load-balance: [index:5 buckets:1 uRPF:5 to:[0:0]]
2895  *     [0] [@0]: dpo-drop ip6
2896  * fe80::/10
2897  *   unicast-ip6-chain
2898  *   [@0]: dpo-load-balance: [index:10 buckets:1 uRPF:10 to:[0:0]]
2899  *     [0] [@2]: dpo-receive
2900  * ff02::1/128
2901  *   unicast-ip6-chain
2902  *   [@0]: dpo-load-balance: [index:8 buckets:1 uRPF:8 to:[0:0]]
2903  *     [0] [@2]: dpo-receive
2904  * ff02::2/128
2905  *   unicast-ip6-chain
2906  *   [@0]: dpo-load-balance: [index:7 buckets:1 uRPF:7 to:[0:0]]
2907  *     [0] [@2]: dpo-receive
2908  * ff02::16/128
2909  *   unicast-ip6-chain
2910  *   [@0]: dpo-load-balance: [index:9 buckets:1 uRPF:9 to:[0:0]]
2911  *     [0] [@2]: dpo-receive
2912  * ff02::1:ff00:0/104
2913  *   unicast-ip6-chain
2914  *   [@0]: dpo-load-balance: [index:6 buckets:1 uRPF:6 to:[0:0]]
2915  *     [0] [@2]: dpo-receive
2916  * ipv6-VRF:8, fib_index 1, flow hash: dst sport dport proto
2917  * @::/0
2918  *   unicast-ip6-chain
2919  *   [@0]: dpo-load-balance: [index:21 buckets:1 uRPF:20 to:[0:0]]
2920  *     [0] [@0]: dpo-drop ip6
2921  * @::a:1:1:0:4/126
2922  *   unicast-ip6-chain
2923  *   [@0]: dpo-load-balance: [index:27 buckets:1 uRPF:26 to:[0:0]]
2924  *     [0] [@4]: ipv6-glean: af_packet0
2925  * @::a:1:1:0:7/128
2926  *   unicast-ip6-chain
2927  *   [@0]: dpo-load-balance: [index:28 buckets:1 uRPF:27 to:[0:0]]
2928  *     [0] [@2]: dpo-receive: @::a:1:1:0:7 on af_packet0
2929  * fe80::/10
2930  *   unicast-ip6-chain
2931  *   [@0]: dpo-load-balance: [index:26 buckets:1 uRPF:25 to:[0:0]]
2932  *     [0] [@2]: dpo-receive
2933  * fe80::fe:3eff:fe3e:9222/128
2934  *   unicast-ip6-chain
2935  *   [@0]: dpo-load-balance: [index:29 buckets:1 uRPF:28 to:[0:0]]
2936  *     [0] [@2]: dpo-receive: fe80::fe:3eff:fe3e:9222 on af_packet0
2937  * ff02::1/128
2938  *   unicast-ip6-chain
2939  *   [@0]: dpo-load-balance: [index:24 buckets:1 uRPF:23 to:[0:0]]
2940  *     [0] [@2]: dpo-receive
2941  * ff02::2/128
2942  *   unicast-ip6-chain
2943  *   [@0]: dpo-load-balance: [index:23 buckets:1 uRPF:22 to:[0:0]]
2944  *     [0] [@2]: dpo-receive
2945  * ff02::16/128
2946  *   unicast-ip6-chain
2947  *   [@0]: dpo-load-balance: [index:25 buckets:1 uRPF:24 to:[0:0]]
2948  *     [0] [@2]: dpo-receive
2949  * ff02::1:ff00:0/104
2950  *   unicast-ip6-chain
2951  *   [@0]: dpo-load-balance: [index:22 buckets:1 uRPF:21 to:[0:0]]
2952  *     [0] [@2]: dpo-receive
2953  * @cliexend
2954  * @endparblock
2955 ?*/
2956 /* *INDENT-OFF* */
2957 VLIB_CLI_COMMAND (set_ip6_flow_hash_command, static) = {
2958   .path = "set ip6 flow-hash",
2959   .short_help = "set ip6 flow-hash table <table-id> [src] [dst] [sport] "
2960                 "[dport] [proto] [reverse] [flowlabel]",
2961   .function = set_ip6_flow_hash_command_fn,
2962 };
2963 /* *INDENT-ON* */
2964
2965 static clib_error_t *
2966 show_ip6_local_command_fn (vlib_main_t * vm,
2967                            unformat_input_t * input, vlib_cli_command_t * cmd)
2968 {
2969   ip6_main_t *im = &ip6_main;
2970   ip_lookup_main_t *lm = &im->lookup_main;
2971   int i;
2972
2973   vlib_cli_output (vm, "Protocols handled by ip6_local");
2974   for (i = 0; i < ARRAY_LEN (lm->local_next_by_ip_protocol); i++)
2975     {
2976       if (lm->local_next_by_ip_protocol[i] != IP_LOCAL_NEXT_PUNT)
2977         {
2978
2979           u32 node_index = vlib_get_node (vm,
2980                                           ip6_local_node.index)->
2981             next_nodes[lm->local_next_by_ip_protocol[i]];
2982           vlib_cli_output (vm, "%d: %U", i, format_vlib_node_name, vm,
2983                            node_index);
2984         }
2985     }
2986   return 0;
2987 }
2988
2989
2990
2991 /*?
2992  * Display the set of protocols handled by the local IPv6 stack.
2993  *
2994  * @cliexpar
2995  * Example of how to display local protocol table:
2996  * @cliexstart{show ip6 local}
2997  * Protocols handled by ip6_local
2998  * 17
2999  * 43
3000  * 58
3001  * 115
3002  * @cliexend
3003 ?*/
3004 /* *INDENT-OFF* */
3005 VLIB_CLI_COMMAND (show_ip6_local, static) =
3006 {
3007   .path = "show ip6 local",
3008   .function = show_ip6_local_command_fn,
3009   .short_help = "show ip6 local",
3010 };
3011 /* *INDENT-ON* */
3012
3013 #ifndef CLIB_MARCH_VARIANT
3014 int
3015 vnet_set_ip6_classify_intfc (vlib_main_t * vm, u32 sw_if_index,
3016                              u32 table_index)
3017 {
3018   vnet_main_t *vnm = vnet_get_main ();
3019   vnet_interface_main_t *im = &vnm->interface_main;
3020   ip6_main_t *ipm = &ip6_main;
3021   ip_lookup_main_t *lm = &ipm->lookup_main;
3022   vnet_classify_main_t *cm = &vnet_classify_main;
3023   ip6_address_t *if_addr;
3024
3025   if (pool_is_free_index (im->sw_interfaces, sw_if_index))
3026     return VNET_API_ERROR_NO_MATCHING_INTERFACE;
3027
3028   if (table_index != ~0 && pool_is_free_index (cm->tables, table_index))
3029     return VNET_API_ERROR_NO_SUCH_ENTRY;
3030
3031   vec_validate (lm->classify_table_index_by_sw_if_index, sw_if_index);
3032   lm->classify_table_index_by_sw_if_index[sw_if_index] = table_index;
3033
3034   if_addr = ip6_interface_first_address (ipm, sw_if_index);
3035
3036   if (NULL != if_addr)
3037     {
3038       fib_prefix_t pfx = {
3039         .fp_len = 128,
3040         .fp_proto = FIB_PROTOCOL_IP6,
3041         .fp_addr.ip6 = *if_addr,
3042       };
3043       u32 fib_index;
3044
3045       fib_index = fib_table_get_index_for_sw_if_index (FIB_PROTOCOL_IP4,
3046                                                        sw_if_index);
3047
3048
3049       if (table_index != (u32) ~ 0)
3050         {
3051           dpo_id_t dpo = DPO_INVALID;
3052
3053           dpo_set (&dpo,
3054                    DPO_CLASSIFY,
3055                    DPO_PROTO_IP6,
3056                    classify_dpo_create (DPO_PROTO_IP6, table_index));
3057
3058           fib_table_entry_special_dpo_add (fib_index,
3059                                            &pfx,
3060                                            FIB_SOURCE_CLASSIFY,
3061                                            FIB_ENTRY_FLAG_NONE, &dpo);
3062           dpo_reset (&dpo);
3063         }
3064       else
3065         {
3066           fib_table_entry_special_remove (fib_index,
3067                                           &pfx, FIB_SOURCE_CLASSIFY);
3068         }
3069     }
3070
3071   return 0;
3072 }
3073 #endif
3074
3075 static clib_error_t *
3076 set_ip6_classify_command_fn (vlib_main_t * vm,
3077                              unformat_input_t * input,
3078                              vlib_cli_command_t * cmd)
3079 {
3080   u32 table_index = ~0;
3081   int table_index_set = 0;
3082   u32 sw_if_index = ~0;
3083   int rv;
3084
3085   while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT)
3086     {
3087       if (unformat (input, "table-index %d", &table_index))
3088         table_index_set = 1;
3089       else if (unformat (input, "intfc %U", unformat_vnet_sw_interface,
3090                          vnet_get_main (), &sw_if_index))
3091         ;
3092       else
3093         break;
3094     }
3095
3096   if (table_index_set == 0)
3097     return clib_error_return (0, "classify table-index must be specified");
3098
3099   if (sw_if_index == ~0)
3100     return clib_error_return (0, "interface / subif must be specified");
3101
3102   rv = vnet_set_ip6_classify_intfc (vm, sw_if_index, table_index);
3103
3104   switch (rv)
3105     {
3106     case 0:
3107       break;
3108
3109     case VNET_API_ERROR_NO_MATCHING_INTERFACE:
3110       return clib_error_return (0, "No such interface");
3111
3112     case VNET_API_ERROR_NO_SUCH_ENTRY:
3113       return clib_error_return (0, "No such classifier table");
3114     }
3115   return 0;
3116 }
3117
3118 /*?
3119  * Assign a classification table to an interface. The classification
3120  * table is created using the '<em>classify table</em>' and '<em>classify session</em>'
3121  * commands. Once the table is create, use this command to filter packets
3122  * on an interface.
3123  *
3124  * @cliexpar
3125  * Example of how to assign a classification table to an interface:
3126  * @cliexcmd{set ip6 classify intfc GigabitEthernet2/0/0 table-index 1}
3127 ?*/
3128 /* *INDENT-OFF* */
3129 VLIB_CLI_COMMAND (set_ip6_classify_command, static) =
3130 {
3131   .path = "set ip6 classify",
3132   .short_help =
3133   "set ip6 classify intfc <interface> table-index <classify-idx>",
3134   .function = set_ip6_classify_command_fn,
3135 };
3136 /* *INDENT-ON* */
3137
3138 /*
3139  * fd.io coding-style-patch-verification: ON
3140  *
3141  * Local Variables:
3142  * eval: (c-set-style "gnu")
3143  * End:
3144  */