IPv4/6 reassembly
[vpp.git] / src / vnet / ip / ip6_reassembly.c
1 /*
2  * Copyright (c) 2017 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 /**
17  * @file
18  * @brief IPv6 Reassembly.
19  *
20  * This file contains the source code for IPv6 reassembly.
21  */
22
23 #include <vppinfra/vec.h>
24 #include <vnet/vnet.h>
25 #include <vnet/ip/ip.h>
26 #include <vppinfra/bihash_48_8.h>
27 #include <vnet/ip/ip6_reassembly.h>
28
29 #define MSEC_PER_SEC 1000
30 #define IP6_REASS_TIMEOUT_DEFAULT_MS 100
31 #define IP6_REASS_EXPIRE_WALK_INTERVAL_DEFAULT_MS 10000 // 10 seconds default
32 #define IP6_REASS_MAX_REASSEMBLIES_DEAFULT 1024
33 #define IP6_REASS_HT_LOAD_FACTOR (0.75)
34
35 static vlib_node_registration_t ip6_reass_node;
36
37 typedef struct
38 {
39   union
40   {
41     struct
42     {
43       ip6_address_t src;
44       ip6_address_t dst;
45       // align by making this 4 octets even though its a 2 octets field
46       u32 xx_id;
47       // align by making this 4 octets even though its a 2 octets field
48       u32 frag_id;
49       // align by making this 4 octets even though its a 1 octet field
50       u32 proto;
51       u32 unused;
52     };
53     u64 as_u64[6];
54   };
55 } ip6_reass_key_t;
56
57 always_inline u32
58 ip6_reass_buffer_get_data_offset_no_check (vlib_buffer_t * b)
59 {
60   vnet_buffer_opaque_t *vnb = vnet_buffer (b);
61   return vnb->ip.reass.range_first - vnb->ip.reass.fragment_first;
62 }
63
64 always_inline u32
65 ip6_reass_buffer_get_data_offset (vlib_buffer_t * b)
66 {
67   vnet_buffer_opaque_t *vnb = vnet_buffer (b);
68   ASSERT (vnb->ip.reass.range_first >= vnb->ip.reass.fragment_first);
69   return ip6_reass_buffer_get_data_offset_no_check (b);
70 }
71
72 always_inline u16
73 ip6_reass_buffer_get_data_len_no_check (vlib_buffer_t * b)
74 {
75   vnet_buffer_opaque_t *vnb = vnet_buffer (b);
76   return clib_min (vnb->ip.reass.range_last, vnb->ip.reass.fragment_last) -
77     (vnb->ip.reass.fragment_first + ip6_reass_buffer_get_data_offset (b)) + 1;
78 }
79
80 always_inline u16
81 ip6_reass_buffer_get_data_len (vlib_buffer_t * b)
82 {
83   vnet_buffer_opaque_t *vnb = vnet_buffer (b);
84   ASSERT (vnb->ip.reass.range_last > vnb->ip.reass.fragment_first);
85   return ip6_reass_buffer_get_data_len_no_check (b);
86 }
87
88 typedef struct
89 {
90   // hash table key
91   ip6_reass_key_t key;
92   // time when first packet was received
93   f64 first_heard;
94   // time when last packet was received
95   f64 last_heard;
96   // internal id of this reassembly
97   u32 id;
98   // buffer index of first buffer in this reassembly context
99   u32 first_bi;
100   // last octet of packet, ~0 until fragment without more_fragments arrives
101   u32 last_packet_octet;
102   // length of data collected so far
103   u32 data_len;
104   // trace operation counter
105   u32 trace_op_counter;
106 } ip6_reass_t;
107
108 typedef struct
109 {
110   // IPv6 config
111   u32 timeout_ms;
112   f64 timeout;
113   u32 expire_walk_interval_ms;
114   u32 max_reass_n;
115
116   // IPv6 runtime
117   ip6_reass_t *pool;
118   clib_bihash_48_8_t hash;
119   u32 reass_n;
120   u32 id_counter;
121   u32 buffers_n;
122
123   // convenience
124   vlib_main_t *vlib_main;
125   vnet_main_t *vnet_main;
126
127   // node index of ip6-drop node
128   u32 ip6_drop_idx;
129   u32 ip6_icmp_error_idx;
130   u32 ip6_reass_expire_node_idx;
131
132 } ip6_reass_main_t;
133
134 ip6_reass_main_t ip6_reass_main;
135
136 typedef enum
137 {
138   IP6_REASSEMBLY_NEXT_INPUT,
139   IP6_REASSEMBLY_NEXT_DROP,
140   IP6_REASSEMBLY_NEXT_ICMP_ERROR,
141   IP6_REASSEMBLY_N_NEXT,
142 } ip6_reass_next_t;
143
144 typedef enum
145 {
146   RANGE_NEW,
147   RANGE_OVERLAP,
148   ICMP_ERROR_RT_EXCEEDED,
149   ICMP_ERROR_FL_TOO_BIG,
150   ICMP_ERROR_FL_NOT_MULT_8,
151   FINALIZE,
152 } ip6_reass_trace_operation_e;
153
154 typedef struct
155 {
156   u16 range_first;
157   u16 range_last;
158   u32 range_bi;
159   i32 data_offset;
160   u32 data_len;
161   u32 first_bi;
162 } ip6_reass_range_trace_t;
163
164 typedef struct
165 {
166   ip6_reass_trace_operation_e action;
167   u32 pool_index;
168   u32 reass_id;
169   ip6_reass_range_trace_t trace_range;
170   u32 size_diff;
171   u32 op_id;
172   u32 fragment_first;
173   u32 fragment_last;
174   u32 total_data_len;
175 } ip6_reass_trace_t;
176
177 static void
178 ip6_reass_trace_details (vlib_main_t * vm, u32 bi,
179                          ip6_reass_range_trace_t * trace)
180 {
181   vlib_buffer_t *b = vlib_get_buffer (vm, bi);
182   vnet_buffer_opaque_t *vnb = vnet_buffer (b);
183   trace->range_first = vnb->ip.reass.range_first;
184   trace->range_last = vnb->ip.reass.range_last;
185   trace->data_offset = ip6_reass_buffer_get_data_offset_no_check (b);
186   trace->data_len = ip6_reass_buffer_get_data_len_no_check (b);
187   trace->range_bi = bi;
188 }
189
190 u8 *
191 format_ip6_reass_range_trace (u8 * s, va_list * args)
192 {
193   ip6_reass_range_trace_t *trace = va_arg (*args, ip6_reass_range_trace_t *);
194   s = format (s, "range: [%u, %u], off %d, len %u, bi %u", trace->range_first,
195               trace->range_last, trace->data_offset, trace->data_len,
196               trace->range_bi);
197   return s;
198 }
199
200 u8 *
201 format_ip6_reass_trace (u8 * s, va_list * args)
202 {
203   CLIB_UNUSED (vlib_main_t * vm) = va_arg (*args, vlib_main_t *);
204   CLIB_UNUSED (vlib_node_t * node) = va_arg (*args, vlib_node_t *);
205   ip6_reass_trace_t *t = va_arg (*args, ip6_reass_trace_t *);
206   s = format (s, "reass id: %u, op id: %u ", t->reass_id, t->op_id);
207   u32 indent = format_get_indent (s);
208   s = format (s, "first bi: %u, data len: %u, ip/fragment[%u, %u]",
209               t->trace_range.first_bi, t->total_data_len, t->fragment_first,
210               t->fragment_last);
211   switch (t->action)
212     {
213     case RANGE_NEW:
214       s = format (s, "\n%Unew %U", format_white_space, indent,
215                   format_ip6_reass_range_trace, &t->trace_range);
216       break;
217     case RANGE_OVERLAP:
218       s = format (s, "\n%Uoverlap %U", format_white_space, indent,
219                   format_ip6_reass_range_trace, &t->trace_range);
220       break;
221     case ICMP_ERROR_FL_TOO_BIG:
222       s = format (s, "\n%Uicmp-error - frag_len > 65535 %U",
223                   format_white_space, indent, format_ip6_reass_range_trace,
224                   &t->trace_range);
225       break;
226     case ICMP_ERROR_FL_NOT_MULT_8:
227       s = format (s, "\n%Uicmp-error - frag_len mod 8 != 0 %U",
228                   format_white_space, indent, format_ip6_reass_range_trace,
229                   &t->trace_range);
230       break;
231     case ICMP_ERROR_RT_EXCEEDED:
232       s = format (s, "\n%Uicmp-error - reassembly time exceeded",
233                   format_white_space, indent);
234       break;
235     case FINALIZE:
236       s = format (s, "\n%Ufinalize reassembly", format_white_space, indent);
237       break;
238     }
239   return s;
240 }
241
242 static void
243 ip6_reass_add_trace (vlib_main_t * vm, vlib_node_runtime_t * node,
244                      ip6_reass_main_t * rm, ip6_reass_t * reass,
245                      u32 bi, ip6_reass_trace_operation_e action,
246                      u32 size_diff)
247 {
248   vlib_buffer_t *b = vlib_get_buffer (vm, bi);
249   vnet_buffer_opaque_t *vnb = vnet_buffer (b);
250   ip6_reass_trace_t *t = vlib_add_trace (vm, node, b, sizeof (t[0]));
251   t->pool_index = reass - rm->pool;
252   t->reass_id = reass->id;
253   t->action = action;
254   ip6_reass_trace_details (vm, bi, &t->trace_range);
255   t->size_diff = size_diff;
256   t->op_id = reass->trace_op_counter;
257   ++reass->trace_op_counter;
258   t->fragment_first = vnb->ip.reass.fragment_first;
259   t->fragment_last = vnb->ip.reass.fragment_last;
260   t->trace_range.first_bi = reass->first_bi;
261   t->total_data_len = reass->data_len;
262 #if 0
263   static u8 *s = NULL;
264   s = format (s, "%U", format_ip6_reass_trace, NULL, NULL, t);
265   printf ("%.*s\n", vec_len (s), s);
266   fflush (stdout);
267   vec_reset_length (s);
268 #endif
269 }
270
271 static void
272 ip6_reass_free (ip6_reass_main_t * rm, ip6_reass_t * reass)
273 {
274   clib_bihash_kv_48_8_t kv;
275   kv.key[0] = reass->key.as_u64[0];
276   kv.key[1] = reass->key.as_u64[1];
277   kv.key[2] = reass->key.as_u64[2];
278   kv.key[3] = reass->key.as_u64[3];
279   kv.key[4] = reass->key.as_u64[4];
280   kv.key[5] = reass->key.as_u64[5];
281   clib_bihash_add_del_48_8 (&rm->hash, &kv, 0);
282   pool_put (rm->pool, reass);
283   --rm->reass_n;
284 }
285
286 static void
287 ip6_reass_drop_all (vlib_main_t * vm, ip6_reass_main_t * rm,
288                     ip6_reass_t * reass, u32 ** vec_drop_bi)
289 {
290   u32 range_bi = reass->first_bi;
291   vlib_buffer_t *range_b;
292   vnet_buffer_opaque_t *range_vnb;
293   while (~0 != range_bi)
294     {
295       range_b = vlib_get_buffer (vm, range_bi);
296       range_vnb = vnet_buffer (range_b);
297       u32 bi = range_bi;
298       while (~0 != bi)
299         {
300           vec_add1 (*vec_drop_bi, bi);
301           vlib_buffer_t *b = vlib_get_buffer (vm, bi);
302           if (b->flags & VLIB_BUFFER_NEXT_PRESENT)
303             {
304               bi = b->next_buffer;
305               b->flags &= ~VLIB_BUFFER_NEXT_PRESENT;
306             }
307           else
308             {
309               bi = ~0;
310             }
311         }
312       range_bi = range_vnb->ip.reass.next_range_bi;
313     }
314 }
315
316 static void
317 ip6_reass_on_timeout (vlib_main_t * vm, vlib_node_runtime_t * node,
318                       ip6_reass_main_t * rm, ip6_reass_t * reass,
319                       u32 * icmp_bi, u32 ** vec_timeout)
320 {
321   if (~0 == reass->first_bi)
322     {
323       return;
324     }
325   vlib_buffer_t *b = vlib_get_buffer (vm, reass->first_bi);
326   if (0 == vnet_buffer (b)->ip.reass.fragment_first)
327     {
328       *icmp_bi = reass->first_bi;
329       if (PREDICT_FALSE (b->flags & VLIB_BUFFER_IS_TRACED))
330         {
331           ip6_reass_add_trace (vm, node, rm, reass, reass->first_bi,
332                                ICMP_ERROR_RT_EXCEEDED, 0);
333         }
334       // fragment with offset zero received - send icmp message back
335       if (b->flags & VLIB_BUFFER_NEXT_PRESENT)
336         {
337           // separate first buffer from chain and steer it towards icmp node
338           b->flags &= ~VLIB_BUFFER_NEXT_PRESENT;
339           reass->first_bi = b->next_buffer;
340         }
341       else
342         {
343           reass->first_bi = vnet_buffer (b)->ip.reass.next_range_bi;
344         }
345       icmp6_error_set_vnet_buffer (b, ICMP6_time_exceeded,
346                                    ICMP6_time_exceeded_fragment_reassembly_time_exceeded,
347                                    0);
348     }
349   ip6_reass_drop_all (vm, rm, reass, vec_timeout);
350 }
351
352 static ip6_reass_t *
353 ip6_reass_find_or_create (vlib_main_t * vm,
354                           vlib_node_runtime_t * node,
355                           ip6_reass_main_t * rm,
356                           ip6_reass_key_t * k, u32 * icmp_bi,
357                           u32 ** vec_timeout)
358 {
359   ip6_reass_t *reass = NULL;
360   f64 now = vlib_time_now (rm->vlib_main);
361   clib_bihash_kv_48_8_t kv, value;
362   kv.key[0] = k->as_u64[0];
363   kv.key[1] = k->as_u64[1];
364   kv.key[2] = k->as_u64[2];
365   kv.key[3] = k->as_u64[3];
366   kv.key[4] = k->as_u64[4];
367   kv.key[5] = k->as_u64[5];
368
369   if (!clib_bihash_search_48_8 (&rm->hash, &kv, &value))
370     {
371       reass = pool_elt_at_index (rm->pool, value.value);
372       if (now > reass->last_heard + rm->timeout)
373         {
374           ip6_reass_on_timeout (vm, node, rm, reass, icmp_bi, vec_timeout);
375           ip6_reass_free (rm, reass);
376           reass = NULL;
377         }
378     }
379
380   if (reass)
381     {
382       reass->last_heard = now;
383       return reass;
384     }
385
386   if (rm->reass_n >= rm->max_reass_n)
387     {
388       reass = NULL;
389       return reass;
390     }
391   else
392     {
393       pool_get (rm->pool, reass);
394       memset (reass, 0, sizeof (*reass));
395       reass->id = rm->id_counter;
396       ++rm->id_counter;
397       reass->first_bi = ~0;
398       reass->last_packet_octet = ~0;
399       reass->data_len = 0;
400       ++rm->reass_n;
401     }
402
403   reass->key.as_u64[0] = kv.key[0] = k->as_u64[0];
404   reass->key.as_u64[1] = kv.key[1] = k->as_u64[1];
405   reass->key.as_u64[2] = kv.key[2] = k->as_u64[2];
406   reass->key.as_u64[3] = kv.key[3] = k->as_u64[3];
407   reass->key.as_u64[4] = kv.key[4] = k->as_u64[4];
408   reass->key.as_u64[5] = kv.key[5] = k->as_u64[5];
409   kv.value = reass - rm->pool;
410   reass->last_heard = now;
411
412   if (clib_bihash_add_del_48_8 (&rm->hash, &kv, 1))
413     {
414       ip6_reass_free (rm, reass);
415       reass = NULL;
416     }
417
418   return reass;
419 }
420
421 void
422 ip6_reass_finalize (vlib_main_t * vm, vlib_node_runtime_t * node,
423                     ip6_reass_main_t * rm, ip6_reass_t * reass, u32 * bi0,
424                     u32 * next0, vlib_error_t * error0, u32 next_input,
425                     u32 ** vec_drop_compress)
426 {
427   ASSERT (~0 != reass->first_bi);
428   *bi0 = reass->first_bi;
429   *next0 = next_input;
430   *error0 = IP6_ERROR_NONE;
431   ip6_frag_hdr_t *frag_hdr;
432   vlib_buffer_t *last_b = NULL;
433   u32 sub_chain_bi = reass->first_bi;
434   u32 total_length = 0;
435   u32 buf_cnt = 0;
436   u32 dropped_cnt = 0;
437   do
438     {
439       u32 tmp_bi = sub_chain_bi;
440       vlib_buffer_t *tmp = vlib_get_buffer (vm, tmp_bi);
441       u32 data_len = ip6_reass_buffer_get_data_len (tmp);
442       u32 trim_front = vnet_buffer (tmp)->ip.reass.ip6_frag_hdr_offset +
443         sizeof (*frag_hdr) + ip6_reass_buffer_get_data_offset (tmp);
444       u32 trim_end =
445         vlib_buffer_length_in_chain (vm, tmp) - trim_front - data_len;
446       if (tmp_bi == reass->first_bi)
447         {
448           /* first buffer - keep ip6 header */
449           ASSERT (0 == ip6_reass_buffer_get_data_offset (tmp));
450           trim_front = 0;
451           trim_end = vlib_buffer_length_in_chain (vm, tmp) - data_len -
452             (vnet_buffer (tmp)->ip.reass.ip6_frag_hdr_offset +
453              sizeof (*frag_hdr));
454         }
455       u32 keep_data =
456         vlib_buffer_length_in_chain (vm, tmp) - trim_front - trim_end;
457       while (1)
458         {
459           ++buf_cnt;
460           if (trim_front)
461             {
462               if (trim_front > tmp->current_length)
463                 {
464                   /* drop whole buffer */
465                   vec_add1 (*vec_drop_compress, tmp_bi);
466                   ++dropped_cnt;
467                   trim_front -= tmp->current_length;
468                   ASSERT (tmp->flags & VLIB_BUFFER_NEXT_PRESENT);
469                   tmp->flags &= ~VLIB_BUFFER_NEXT_PRESENT;
470                   tmp_bi = tmp->next_buffer;
471                   tmp = vlib_get_buffer (vm, tmp_bi);
472                   continue;
473                 }
474               else
475                 {
476                   vlib_buffer_advance (tmp, trim_front);
477                   trim_front = 0;
478                 }
479             }
480           if (keep_data)
481             {
482               if (last_b)
483                 {
484                   last_b->flags |= VLIB_BUFFER_NEXT_PRESENT;
485                   last_b->next_buffer = tmp_bi;
486                 }
487               last_b = tmp;
488               if (keep_data <= tmp->current_length)
489                 {
490                   tmp->current_length = keep_data;
491                   keep_data = 0;
492                 }
493               else
494                 {
495                   keep_data -= tmp->current_length;
496                   ASSERT (tmp->flags & VLIB_BUFFER_NEXT_PRESENT);
497                 }
498               total_length += tmp->current_length;
499             }
500           else
501             {
502               vec_add1 (*vec_drop_compress, tmp_bi);
503               ASSERT (reass->first_bi != tmp_bi);
504               ++dropped_cnt;
505             }
506           if (tmp->flags & VLIB_BUFFER_NEXT_PRESENT)
507             {
508               tmp_bi = tmp->next_buffer;
509               tmp = vlib_get_buffer (vm, tmp->next_buffer);
510             }
511           else
512             {
513               break;
514             }
515         }
516       sub_chain_bi =
517         vnet_buffer (vlib_get_buffer (vm, sub_chain_bi))->ip.
518         reass.next_range_bi;
519     }
520   while (~0 != sub_chain_bi);
521   last_b->flags &= ~VLIB_BUFFER_NEXT_PRESENT;
522   vlib_buffer_t *first_b = vlib_get_buffer (vm, reass->first_bi);
523   ASSERT (total_length >= first_b->current_length);
524   total_length -= first_b->current_length;
525   first_b->flags |= VLIB_BUFFER_TOTAL_LENGTH_VALID;
526   first_b->total_length_not_including_first_buffer = total_length;
527   // drop fragment header
528   vnet_buffer_opaque_t *first_b_vnb = vnet_buffer (first_b);
529   ip6_header_t *ip = vlib_buffer_get_current (first_b);
530   u16 ip6_frag_hdr_offset = first_b_vnb->ip.reass.ip6_frag_hdr_offset;
531   ip6_ext_header_t *prev_hdr;
532   ip6_ext_header_find_t (ip, prev_hdr, frag_hdr,
533                          IP_PROTOCOL_IPV6_FRAGMENTATION);
534   if (prev_hdr)
535     {
536       prev_hdr->next_hdr = frag_hdr->next_hdr;
537     }
538   else
539     {
540       ip->protocol = frag_hdr->next_hdr;
541     }
542   ASSERT ((u8 *) frag_hdr - (u8 *) ip == ip6_frag_hdr_offset);
543   memmove (frag_hdr, (u8 *) frag_hdr + sizeof (*frag_hdr),
544            first_b->current_length - ip6_frag_hdr_offset -
545            sizeof (ip6_frag_hdr_t));
546   first_b->current_length -= sizeof (*frag_hdr);
547   ip->payload_length =
548     clib_host_to_net_u16 (total_length + first_b->current_length -
549                           sizeof (*ip));
550   ip6_reass_free (rm, reass);
551   vlib_buffer_chain_compress (vm, first_b, vec_drop_compress);
552   if (PREDICT_FALSE (first_b->flags & VLIB_BUFFER_IS_TRACED))
553     {
554       ip6_reass_add_trace (vm, node, rm, reass, reass->first_bi, FINALIZE, 0);
555 #if 0
556       // following code does a hexdump of packet fragments to stdout ...
557       do
558         {
559           u32 bi = reass->first_bi;
560           u8 *s = NULL;
561           while (~0 != bi)
562             {
563               vlib_buffer_t *b = vlib_get_buffer (vm, bi);
564               s = format (s, "%u: %U\n", bi, format_hexdump,
565                           vlib_buffer_get_current (b), b->current_length);
566               if (b->flags & VLIB_BUFFER_NEXT_PRESENT)
567                 {
568                   bi = b->next_buffer;
569                 }
570               else
571                 {
572                   break;
573                 }
574             }
575           printf ("%.*s\n", vec_len (s), s);
576           fflush (stdout);
577           vec_free (s);
578         }
579       while (0);
580 #endif
581     }
582   reass = NULL;
583 }
584
585 static u32
586 ip6_reass_get_buffer_chain_length (vlib_main_t * vm, vlib_buffer_t * b)
587 {
588   u32 len = 0;
589   while (b)
590     {
591       ++len;
592       if (PREDICT_FALSE (b->flags & VLIB_BUFFER_NEXT_PRESENT))
593         {
594           b = vlib_get_buffer (vm, b->next_buffer);
595         }
596       else
597         {
598           break;
599         }
600     }
601   return len;
602 }
603
604 static void
605 ip6_reass_insert_range_in_chain (vlib_main_t * vm,
606                                  ip6_reass_main_t * rm,
607                                  ip6_reass_t * reass,
608                                  u32 prev_range_bi, u32 new_next_bi)
609 {
610
611   vlib_buffer_t *new_next_b = vlib_get_buffer (vm, new_next_bi);
612   vnet_buffer_opaque_t *new_next_vnb = vnet_buffer (new_next_b);
613   if (~0 != prev_range_bi)
614     {
615       vlib_buffer_t *prev_b = vlib_get_buffer (vm, prev_range_bi);
616       vnet_buffer_opaque_t *prev_vnb = vnet_buffer (prev_b);
617       new_next_vnb->ip.reass.next_range_bi = prev_vnb->ip.reass.next_range_bi;
618       prev_vnb->ip.reass.next_range_bi = new_next_bi;
619     }
620   else
621     {
622       if (~0 != reass->first_bi)
623         {
624           new_next_vnb->ip.reass.next_range_bi = reass->first_bi;
625         }
626       reass->first_bi = new_next_bi;
627     }
628   reass->data_len += ip6_reass_buffer_get_data_len (new_next_b);
629   rm->buffers_n += ip6_reass_get_buffer_chain_length (vm, new_next_b);
630 }
631
632 void
633 ip6_reass_update (vlib_main_t * vm, vlib_node_runtime_t * node,
634                   ip6_reass_main_t * rm, ip6_reass_t * reass, u32 * bi0,
635                   u32 * next0, vlib_error_t * error0,
636                   ip6_frag_hdr_t * frag_hdr, u32 ** vec_drop_overlap,
637                   u32 ** vec_drop_compress, u32 next_input, u32 next_drop,
638                   u32 next_icmp_error)
639 {
640   int consumed = 0;
641   vlib_buffer_t *fb = vlib_get_buffer (vm, *bi0);
642   vnet_buffer_opaque_t *fvnb = vnet_buffer (fb);
643   fvnb->ip.reass.ip6_frag_hdr_offset =
644     (u8 *) frag_hdr - (u8 *) vlib_buffer_get_current (fb);
645   ip6_header_t *fip = vlib_buffer_get_current (fb);
646   ASSERT (fb->current_length > sizeof (*fip));
647   ASSERT (fvnb->ip.reass.ip6_frag_hdr_offset > 0 &&
648           fvnb->ip.reass.ip6_frag_hdr_offset < fb->current_length);
649   u32 fragment_first = fvnb->ip.reass.fragment_first =
650     ip6_frag_hdr_offset_bytes (frag_hdr);
651   u32 fragment_length =
652     vlib_buffer_length_in_chain (vm, fb) -
653     (fvnb->ip.reass.ip6_frag_hdr_offset + sizeof (*frag_hdr));
654   u32 fragment_last = fvnb->ip.reass.fragment_last =
655     fragment_first + fragment_length - 1;
656   int more_fragments = ip6_frag_hdr_more (frag_hdr);
657   u32 candidate_range_bi = reass->first_bi;
658   u32 prev_range_bi = ~0;
659   fvnb->ip.reass.range_first = fragment_first;
660   fvnb->ip.reass.range_last = fragment_last;
661   fvnb->ip.reass.next_range_bi = ~0;
662   if (more_fragments && 0 != fragment_length % 8)
663     {
664       if (PREDICT_FALSE (fb->flags & VLIB_BUFFER_IS_TRACED))
665         {
666           ip6_reass_add_trace (vm, node, rm, reass, *bi0,
667                                ICMP_ERROR_FL_NOT_MULT_8, 0);
668         }
669       *next0 = next_icmp_error;
670       icmp6_error_set_vnet_buffer (fb, ICMP6_parameter_problem,
671                                    ICMP6_parameter_problem_erroneous_header_field,
672                                    (u8 *) & fip->payload_length - (u8 *) fip);
673       return;
674     }
675   if (fragment_first + fragment_length > 65535)
676     {
677       if (PREDICT_FALSE (fb->flags & VLIB_BUFFER_IS_TRACED))
678         {
679           ip6_reass_add_trace (vm, node, rm, reass, *bi0,
680                                ICMP_ERROR_FL_TOO_BIG, 0);
681         }
682       *next0 = next_icmp_error;
683       ip6_header_t *ip0 = vlib_buffer_get_current (fb);
684       icmp6_error_set_vnet_buffer (fb, ICMP6_parameter_problem,
685                                    ICMP6_parameter_problem_erroneous_header_field,
686                                    (u8 *) & frag_hdr->fragment_offset_and_more
687                                    - (u8 *) ip0);
688       return;
689     }
690   if (!more_fragments)
691     {
692       reass->last_packet_octet = fragment_last;
693     }
694   if (~0 == reass->first_bi)
695     {
696       // starting a new reassembly
697       ip6_reass_insert_range_in_chain (vm, rm, reass, prev_range_bi, *bi0);
698       if (PREDICT_FALSE (fb->flags & VLIB_BUFFER_IS_TRACED))
699         {
700           ip6_reass_add_trace (vm, node, rm, reass, *bi0, RANGE_NEW, 0);
701         }
702       *bi0 = ~0;
703       return;
704     }
705   fvnb->ip.reass.estimated_mtu =
706     clib_min (clib_net_to_host_u16 (fip->payload_length),
707               fvnb->ip.reass.estimated_mtu);
708   while (~0 != candidate_range_bi)
709     {
710       vlib_buffer_t *candidate_b = vlib_get_buffer (vm, candidate_range_bi);
711       vnet_buffer_opaque_t *candidate_vnb = vnet_buffer (candidate_b);
712       if (fragment_first > candidate_vnb->ip.reass.range_last)
713         {
714           // this fragments starts after candidate range
715           prev_range_bi = candidate_range_bi;
716           candidate_range_bi = candidate_vnb->ip.reass.next_range_bi;
717           if (candidate_vnb->ip.reass.range_last < fragment_last &&
718               ~0 == candidate_range_bi)
719             {
720               // special case - this fragment falls beyond all known ranges
721               ip6_reass_insert_range_in_chain (vm, rm, reass, prev_range_bi,
722                                                *bi0);
723               consumed = 1;
724               break;
725             }
726           continue;
727         }
728       if (fragment_last < candidate_vnb->ip.reass.range_first)
729         {
730           // this fragment ends before candidate range without any overlap
731           ip6_reass_insert_range_in_chain (vm, rm, reass, prev_range_bi,
732                                            *bi0);
733           consumed = 1;
734         }
735       else if (fragment_first == candidate_vnb->ip.reass.range_first &&
736                fragment_last == candidate_vnb->ip.reass.range_last)
737         {
738           // duplicate fragment - ignore
739         }
740       else
741         {
742           // overlapping fragment - not allowed by RFC 8200
743           ip6_reass_drop_all (vm, rm, reass, vec_drop_overlap);
744           ip6_reass_free (rm, reass);
745           if (PREDICT_FALSE (fb->flags & VLIB_BUFFER_IS_TRACED))
746             {
747               ip6_reass_add_trace (vm, node, rm, reass, *bi0, RANGE_OVERLAP,
748                                    0);
749             }
750           *next0 = next_drop;
751           *error0 = IP6_ERROR_REASS_OVERLAPPING_FRAGMENT;
752         }
753       break;
754     }
755   if (consumed)
756     {
757       if (PREDICT_FALSE (fb->flags & VLIB_BUFFER_IS_TRACED))
758         {
759           ip6_reass_add_trace (vm, node, rm, reass, *bi0, RANGE_NEW, 0);
760         }
761     }
762   if (~0 != reass->last_packet_octet &&
763       reass->data_len == reass->last_packet_octet + 1)
764     {
765       ip6_reass_finalize (vm, node, rm, reass, bi0, next0, error0, next_input,
766                           vec_drop_compress);
767     }
768   else
769     {
770       if (consumed)
771         {
772           *bi0 = ~0;
773         }
774       else
775         {
776           *next0 = next_drop;
777           *error0 = IP6_ERROR_REASS_DUPLICATE_FRAGMENT;
778         }
779     }
780 }
781
782 always_inline uword
783 ip6_reassembly (vlib_main_t * vm, vlib_node_runtime_t * node,
784                 vlib_frame_t * frame)
785 {
786   u32 *from = vlib_frame_vector_args (frame);
787   u32 n_left_from, n_left_to_next, *to_next, next_index;
788   ip6_reass_main_t *rm = &ip6_reass_main;
789
790   n_left_from = frame->n_vectors;
791   next_index = node->cached_next_index;
792   static u32 *vec_timeout = NULL;       // indexes of buffers which timed out
793   static u32 *vec_drop_overlap = NULL;  // indexes of buffers dropped due to overlap
794   static u32 *vec_drop_compress = NULL; // indexes of buffers dropped due to buffer compression
795   while (n_left_from > 0 || vec_len (vec_timeout) > 0 ||
796          vec_len (vec_drop_overlap) > 0)
797     {
798       vlib_get_next_frame (vm, node, next_index, to_next, n_left_to_next);
799
800       while (vec_len (vec_timeout) > 0 && n_left_to_next > 0)
801         {
802           u32 bi = vec_pop (vec_timeout);
803           vlib_buffer_t *b = vlib_get_buffer (vm, bi);
804           b->error = node->errors[IP6_ERROR_REASS_TIMEOUT];
805           to_next[0] = bi;
806           to_next += 1;
807           n_left_to_next -= 1;
808           vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
809                                            n_left_to_next, bi,
810                                            IP6_REASSEMBLY_NEXT_DROP);
811           ASSERT (rm->buffers_n > 0);
812           --rm->buffers_n;
813         }
814
815       while (vec_len (vec_drop_overlap) > 0 && n_left_to_next > 0)
816         {
817           u32 bi = vec_pop (vec_drop_overlap);
818           vlib_buffer_t *b = vlib_get_buffer (vm, bi);
819           b->error = node->errors[IP6_ERROR_REASS_OVERLAPPING_FRAGMENT];
820           to_next[0] = bi;
821           to_next += 1;
822           n_left_to_next -= 1;
823           vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
824                                            n_left_to_next, bi,
825                                            IP6_REASSEMBLY_NEXT_DROP);
826           ASSERT (rm->buffers_n > 0);
827           --rm->buffers_n;
828         }
829
830       while (vec_len (vec_drop_compress) > 0 && n_left_to_next > 0)
831         {
832           u32 bi = vec_pop (vec_drop_compress);
833           vlib_buffer_t *b = vlib_get_buffer (vm, bi);
834           b->error = node->errors[IP6_ERROR_NONE];
835           to_next[0] = bi;
836           to_next += 1;
837           n_left_to_next -= 1;
838           vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
839                                            n_left_to_next, bi,
840                                            IP6_REASSEMBLY_NEXT_DROP);
841           ASSERT (rm->buffers_n > 0);
842           --rm->buffers_n;
843         }
844
845       while (n_left_from > 0 && n_left_to_next > 0)
846         {
847           u32 bi0;
848           vlib_buffer_t *b0;
849           u32 next0;            //, error0;
850
851           bi0 = from[0];
852           b0 = vlib_get_buffer (vm, bi0);
853
854           ip6_header_t *ip0 = vlib_buffer_get_current (b0);
855           ip6_frag_hdr_t *frag_hdr;
856           ip6_ext_header_t *prev_hdr;
857           ip6_ext_header_find_t (ip0, prev_hdr, frag_hdr,
858                                  IP_PROTOCOL_IPV6_FRAGMENTATION);
859           if (0 == ip6_frag_hdr_offset (frag_hdr))
860             {
861               // first fragment - verify upper-layer is present
862               ip6_ext_header_t *tmp = (ip6_ext_header_t *) frag_hdr;
863               while (ip6_ext_hdr (tmp->next_hdr))
864                 {
865                   tmp = ip6_ext_next_header (tmp);
866                 }
867               if (IP_PROTOCOL_IP6_NONXT == tmp->next_hdr)
868                 {
869                   icmp6_error_set_vnet_buffer (b0, ICMP6_parameter_problem,
870                                                ICMP6_parameter_problem_first_fragment_has_incomplete_header_chain,
871                                                0);
872                   b0->error = node->errors[IP6_ERROR_REASS_MISSING_UPPER];
873
874                   to_next[0] = bi0;
875                   to_next += 1;
876                   n_left_to_next -= 1;
877                   vlib_validate_buffer_enqueue_x1 (vm, node, next_index,
878                                                    to_next, n_left_to_next,
879                                                    bi0,
880                                                    IP6_REASSEMBLY_NEXT_ICMP_ERROR);
881                   goto next;
882                 }
883             }
884           vnet_buffer (b0)->ip.reass.ip6_frag_hdr_offset =
885             (u8 *) frag_hdr - (u8 *) ip0;
886
887           ip6_reass_key_t k;
888           k.src.as_u64[0] = ip0->src_address.as_u64[0];
889           k.src.as_u64[1] = ip0->src_address.as_u64[1];
890           k.dst.as_u64[0] = ip0->dst_address.as_u64[0];
891           k.dst.as_u64[1] = ip0->dst_address.as_u64[1];
892           k.xx_id = vnet_buffer (b0)->sw_if_index[VLIB_RX];
893           k.frag_id = frag_hdr->identification;
894           k.proto = ip0->protocol;
895           k.unused = 0;
896           u32 icmp_bi = ~0;
897           ip6_reass_t *reass =
898             ip6_reass_find_or_create (vm, node, rm, &k, &icmp_bi,
899                                       &vec_timeout);
900
901           u32 error0 = IP6_ERROR_NONE;
902           if (reass)
903             {
904               ip6_reass_update (vm, node, rm, reass, &bi0, &next0, &error0,
905                                 frag_hdr, &vec_drop_overlap,
906                                 &vec_drop_compress, IP6_REASSEMBLY_NEXT_INPUT,
907                                 IP6_REASSEMBLY_NEXT_DROP,
908                                 IP6_REASSEMBLY_NEXT_ICMP_ERROR);
909             }
910           else
911             {
912               next0 = IP6_REASSEMBLY_NEXT_DROP;
913               error0 = IP6_ERROR_REASS_LIMIT_REACHED;
914             }
915
916           b0->error = node->errors[error0];
917
918           if (~0 != bi0)
919             {
920               to_next[0] = bi0;
921               to_next += 1;
922               n_left_to_next -= 1;
923               vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
924                                                n_left_to_next, bi0, next0);
925             }
926
927           if (~0 != icmp_bi)
928             {
929               next0 = IP6_REASSEMBLY_NEXT_ICMP_ERROR;
930               to_next[0] = icmp_bi;
931               to_next += 1;
932               n_left_to_next -= 1;
933               vlib_validate_buffer_enqueue_x1 (vm, node, next_index, to_next,
934                                                n_left_to_next, icmp_bi,
935                                                next0);
936             }
937         next:
938           from += 1;
939           n_left_from -= 1;
940         }
941
942       vlib_put_next_frame (vm, node, next_index, n_left_to_next);
943     }
944
945   return frame->n_vectors;
946 }
947
948 static char *ip6_reassembly_error_strings[] = {
949 #define _(sym, string) string,
950   foreach_ip6_error
951 #undef _
952 };
953
954 /* *INDENT-OFF* */
955 VLIB_REGISTER_NODE (ip6_reass_node, static) = {
956     .function = ip6_reassembly,
957     .name = "ip6-reassembly",
958     .vector_size = sizeof (u32),
959     .format_trace = format_ip6_reass_trace,
960     .n_errors = ARRAY_LEN (ip6_reassembly_error_strings),
961     .error_strings = ip6_reassembly_error_strings,
962     .n_next_nodes = IP6_REASSEMBLY_N_NEXT,
963     .next_nodes =
964         {
965                 [IP6_REASSEMBLY_NEXT_INPUT] = "ip6-input",
966                 [IP6_REASSEMBLY_NEXT_DROP] = "ip6-drop",
967                 [IP6_REASSEMBLY_NEXT_ICMP_ERROR] = "ip6-icmp-error",
968         },
969 };
970 /* *INDENT-ON* */
971
972 VLIB_NODE_FUNCTION_MULTIARCH (ip6_reass_node, ip6_reassembly)
973      static u32 ip6_reass_get_nbuckets ()
974 {
975   ip6_reass_main_t *rm = &ip6_reass_main;
976   u32 nbuckets;
977   u8 i;
978
979   nbuckets = (u32) (rm->max_reass_n / IP6_REASS_HT_LOAD_FACTOR);
980
981   for (i = 0; i < 31; i++)
982     if ((1 << i) >= nbuckets)
983       break;
984   nbuckets = 1 << i;
985
986   return nbuckets;
987 }
988
989 typedef enum
990 {
991   IP6_EVENT_CONFIG_CHANGED = 1,
992 } ip6_reass_event_t;
993
994 typedef struct
995 {
996   int failure;
997   clib_bihash_48_8_t *new_hash;
998 } ip6_rehash_cb_ctx;
999
1000 void
1001 ip6_rehash_cb (clib_bihash_kv_48_8_t * kv, void *_ctx)
1002 {
1003   ip6_rehash_cb_ctx *ctx = _ctx;
1004   if (clib_bihash_add_del_48_8 (ctx->new_hash, kv, 1))
1005     {
1006       ctx->failure = 1;
1007     }
1008 }
1009
1010 vnet_api_error_t
1011 ip6_reass_set (u32 timeout_ms, u32 max_reassemblies,
1012                u32 expire_walk_interval_ms)
1013 {
1014   u32 old_nbuckets = ip6_reass_get_nbuckets ();
1015   ip6_reass_main.timeout_ms = timeout_ms;
1016   ip6_reass_main.timeout = (f64) timeout_ms / (f64) MSEC_PER_SEC;
1017   ip6_reass_main.max_reass_n = max_reassemblies;
1018   ip6_reass_main.expire_walk_interval_ms = expire_walk_interval_ms;
1019   vlib_process_signal_event (ip6_reass_main.vlib_main,
1020                              ip6_reass_main.ip6_reass_expire_node_idx,
1021                              IP6_EVENT_CONFIG_CHANGED, 0);
1022   u32 new_nbuckets = ip6_reass_get_nbuckets ();
1023   if (ip6_reass_main.max_reass_n > 0 && new_nbuckets > 1 &&
1024       new_nbuckets != old_nbuckets)
1025     {
1026       clib_bihash_48_8_t new_hash;
1027       memset (&new_hash, 0, sizeof (new_hash));
1028       ip6_rehash_cb_ctx ctx;
1029       ctx.failure = 0;
1030       ctx.new_hash = &new_hash;
1031       clib_bihash_init_48_8 (&new_hash, "ip6-reass", new_nbuckets,
1032                              new_nbuckets * 1024);
1033       clib_bihash_foreach_key_value_pair_48_8 (&ip6_reass_main.hash,
1034                                                ip6_rehash_cb, &ctx);
1035       if (ctx.failure)
1036         {
1037           clib_bihash_free_48_8 (&new_hash);
1038           return -1;
1039         }
1040       else
1041         {
1042           clib_bihash_free_48_8 (&ip6_reass_main.hash);
1043           clib_memcpy (&ip6_reass_main.hash, &new_hash,
1044                        sizeof (ip6_reass_main.hash));
1045         }
1046     }
1047   return 0;
1048 }
1049
1050 vnet_api_error_t
1051 ip6_reass_get (u32 * timeout_ms, u32 * max_reassemblies,
1052                u32 * expire_walk_interval_ms)
1053 {
1054   *timeout_ms = ip6_reass_main.timeout_ms;
1055   *max_reassemblies = ip6_reass_main.max_reass_n;
1056   *expire_walk_interval_ms = ip6_reass_main.expire_walk_interval_ms;
1057   return 0;
1058 }
1059
1060 clib_error_t *
1061 ip6_reass_init_function (vlib_main_t * vm)
1062 {
1063   ip6_reass_main_t *rm = &ip6_reass_main;
1064   clib_error_t *error = 0;
1065   u32 nbuckets;
1066
1067   rm->vlib_main = vm;
1068   rm->vnet_main = vnet_get_main ();
1069
1070   rm->reass_n = 0;
1071   pool_alloc (rm->pool, rm->max_reass_n);
1072   ip6_reass_set (IP6_REASS_TIMEOUT_DEFAULT_MS,
1073                  IP6_REASS_MAX_REASSEMBLIES_DEAFULT,
1074                  IP6_REASS_EXPIRE_WALK_INTERVAL_DEFAULT_MS);
1075
1076   nbuckets = ip6_reass_get_nbuckets ();
1077   clib_bihash_init_48_8 (&rm->hash, "ip6-reass", nbuckets, nbuckets * 1024);
1078
1079   vlib_node_t *node = vlib_get_node_by_name (vm, (u8 *) "ip6-drop");
1080   ASSERT (node);
1081   rm->ip6_drop_idx = node->index;
1082   node = vlib_get_node_by_name (vm, (u8 *) "ip6-reassembly-expire-walk");
1083   ASSERT (node);
1084   rm->ip6_reass_expire_node_idx = node->index;
1085   node = vlib_get_node_by_name (vm, (u8 *) "ip6-icmp-error");
1086   ASSERT (node);
1087   rm->ip6_icmp_error_idx = node->index;
1088
1089   if ((error = vlib_call_init_function (vm, ip_main_init)))
1090     return error;
1091   ip6_register_protocol (IP_PROTOCOL_IPV6_FRAGMENTATION,
1092                          ip6_reass_node.index);
1093   return error;
1094 }
1095
1096 VLIB_INIT_FUNCTION (ip6_reass_init_function);
1097
1098 static uword
1099 ip6_reass_walk_expired (vlib_main_t * vm,
1100                         vlib_node_runtime_t * node, vlib_frame_t * f)
1101 {
1102   ip6_reass_main_t *rm = &ip6_reass_main;
1103   uword event_type, *event_data = 0;
1104
1105   while (true)
1106     {
1107       vlib_process_wait_for_event_or_clock (vm,
1108                                             (f64) rm->expire_walk_interval_ms
1109                                             / (f64) MSEC_PER_SEC);
1110       event_type = vlib_process_get_events (vm, &event_data);
1111
1112       switch (event_type)
1113         {
1114         case ~0:                /* no events => timeout */
1115           /* nothing to do here */
1116           break;
1117         case IP6_EVENT_CONFIG_CHANGED:
1118           break;
1119         default:
1120           clib_warning ("BUG: event type 0x%wx", event_type);
1121           break;
1122         }
1123       f64 now = vlib_time_now (vm);
1124
1125       ip6_reass_t *reass;
1126       u32 *vec_timeout = NULL;
1127       int *pool_indexes_to_free = NULL;
1128
1129       int index;
1130       /* *INDENT-OFF* */
1131       pool_foreach_index (index, rm->pool, ({
1132                             reass = pool_elt_at_index (rm->pool, index);
1133                             if (now > reass->last_heard + rm->timeout)
1134                               {
1135                                 vec_add1 (pool_indexes_to_free, index);
1136                               }
1137                           }));
1138       /* *INDENT-ON* */
1139       int *i;
1140       u32 *vec_icmp_bi = NULL;
1141       /* *INDENT-OFF* */
1142       vec_foreach (i, pool_indexes_to_free)
1143       {
1144         ip6_reass_t *reass = pool_elt_at_index (rm->pool, i[0]);
1145         u32 icmp_bi = ~0;
1146         ip6_reass_on_timeout (vm, node, rm, reass, &icmp_bi, &vec_timeout);
1147         if (~0 != icmp_bi)
1148           {
1149             vec_add1 (vec_icmp_bi, icmp_bi);
1150           }
1151         ip6_reass_free (rm, reass);
1152       }
1153       /* *INDENT-ON* */
1154
1155       while (vec_len (vec_timeout) > 0)
1156         {
1157           vlib_frame_t *f = vlib_get_frame_to_node (vm, rm->ip6_drop_idx);
1158           u32 *to_next = vlib_frame_vector_args (f);
1159           u32 n_left_to_next = VLIB_FRAME_SIZE - f->n_vectors;
1160           u32 n_trace = 0;
1161           while (vec_len (vec_timeout) > 0 && n_left_to_next > 0)
1162             {
1163               u32 bi = vec_pop (vec_timeout);
1164               vlib_buffer_t *b = vlib_get_buffer (vm, bi);
1165               if (PREDICT_FALSE (b->flags & VLIB_BUFFER_IS_TRACED))
1166                 {
1167                   if (pool_is_free_index (vm->trace_main.trace_buffer_pool,
1168                                           b->trace_index))
1169                     {
1170                       /* the trace is gone, don't trace this buffer anymore */
1171                       b->flags &= ~VLIB_BUFFER_IS_TRACED;
1172                     }
1173                   else
1174                     {
1175                       ++n_trace;
1176                     }
1177                 }
1178               b->error = node->errors[IP6_ERROR_REASS_TIMEOUT];
1179               to_next[0] = bi;
1180               ++f->n_vectors;
1181               to_next += 1;
1182               n_left_to_next -= 1;
1183               ASSERT (rm->buffers_n > 0);
1184               --rm->buffers_n;
1185             }
1186           if (PREDICT_FALSE (n_trace > 0))
1187             {
1188               f->flags |= VLIB_FRAME_TRACE;
1189             }
1190           vlib_put_frame_to_node (vm, rm->ip6_drop_idx, f);
1191         }
1192
1193       while (vec_len (vec_icmp_bi) > 0)
1194         {
1195           vlib_frame_t *f =
1196             vlib_get_frame_to_node (vm, rm->ip6_icmp_error_idx);
1197           u32 *to_next = vlib_frame_vector_args (f);
1198           u32 n_left_to_next = VLIB_FRAME_SIZE - f->n_vectors;
1199           u32 n_trace = 0;
1200           while (vec_len (vec_icmp_bi) > 0 && n_left_to_next > 0)
1201             {
1202               u32 bi = vec_pop (vec_icmp_bi);
1203               vlib_buffer_t *b = vlib_get_buffer (vm, bi);
1204               if (PREDICT_FALSE (b->flags & VLIB_BUFFER_IS_TRACED))
1205                 {
1206                   if (pool_is_free_index (vm->trace_main.trace_buffer_pool,
1207                                           b->trace_index))
1208                     {
1209                       /* the trace is gone, don't trace this buffer anymore */
1210                       b->flags &= ~VLIB_BUFFER_IS_TRACED;
1211                     }
1212                   else
1213                     {
1214                       ++n_trace;
1215                     }
1216                 }
1217               b->error = node->errors[IP6_ERROR_REASS_TIMEOUT];
1218               to_next[0] = bi;
1219               ++f->n_vectors;
1220               to_next += 1;
1221               n_left_to_next -= 1;
1222               ASSERT (rm->buffers_n > 0);
1223               --rm->buffers_n;
1224             }
1225           if (PREDICT_FALSE (n_trace > 0))
1226             {
1227               f->flags |= VLIB_FRAME_TRACE;
1228             }
1229           vlib_put_frame_to_node (vm, rm->ip6_icmp_error_idx, f);
1230         }
1231
1232       vec_free (pool_indexes_to_free);
1233       vec_free (vec_timeout);
1234       vec_free (vec_icmp_bi);
1235       if (event_data)
1236         {
1237           _vec_len (event_data) = 0;
1238         }
1239     }
1240
1241   return 0;
1242 }
1243
1244 static vlib_node_registration_t ip6_reass_expire_node;
1245
1246 /* *INDENT-OFF* */
1247 VLIB_REGISTER_NODE (ip6_reass_expire_node, static) = {
1248     .function = ip6_reass_walk_expired,
1249     .format_trace = format_ip6_reass_trace,
1250     .type = VLIB_NODE_TYPE_PROCESS,
1251     .name = "ip6-reassembly-expire-walk",
1252
1253     .n_errors = ARRAY_LEN (ip6_reassembly_error_strings),
1254     .error_strings = ip6_reassembly_error_strings,
1255
1256 };
1257 /* *INDENT-ON* */
1258
1259 static u8 *
1260 format_ip6_reass_key (u8 * s, va_list * args)
1261 {
1262   ip6_reass_key_t *key = va_arg (*args, ip6_reass_key_t *);
1263   s = format (s, "xx_id: %u, src: %U, dst: %U, frag_id: %u, proto: %u",
1264               key->xx_id, format_ip6_address, &key->src, format_ip6_address,
1265               &key->dst, clib_net_to_host_u16 (key->frag_id), key->proto);
1266   return s;
1267 }
1268
1269 static u8 *
1270 format_ip6_reass (u8 * s, va_list * args)
1271 {
1272   vlib_main_t *vm = va_arg (*args, vlib_main_t *);
1273   ip6_reass_t *reass = va_arg (*args, ip6_reass_t *);
1274
1275   s = format (s, "ID: %u, key: %U\n  first_bi: %u, data_len: %u, "
1276               "last_packet_octet: %u, trace_op_counter: %u\n",
1277               reass->id, format_ip6_reass_key, &reass->key, reass->first_bi,
1278               reass->data_len, reass->last_packet_octet,
1279               reass->trace_op_counter);
1280   u32 bi = reass->first_bi;
1281   u32 counter = 0;
1282   while (~0 != bi)
1283     {
1284       vlib_buffer_t *b = vlib_get_buffer (vm, bi);
1285       vnet_buffer_opaque_t *vnb = vnet_buffer (b);
1286       s = format (s, "  #%03u: range: [%u, %u], bi: %u, off: %d, len: %u, "
1287                   "fragment[%u, %u]\n",
1288                   counter, vnb->ip.reass.range_first,
1289                   vnb->ip.reass.range_last, bi,
1290                   ip6_reass_buffer_get_data_offset_no_check (b),
1291                   ip6_reass_buffer_get_data_len_no_check (b),
1292                   vnb->ip.reass.fragment_first, vnb->ip.reass.fragment_last);
1293       if (b->flags & VLIB_BUFFER_NEXT_PRESENT)
1294         {
1295           bi = b->next_buffer;
1296         }
1297       else
1298         {
1299           bi = ~0;
1300         }
1301     }
1302   return s;
1303 }
1304
1305 static clib_error_t *
1306 show_ip6_reass (vlib_main_t * vm, unformat_input_t * input,
1307                 CLIB_UNUSED (vlib_cli_command_t * lmd))
1308 {
1309   ip6_reass_main_t *rm = &ip6_reass_main;
1310
1311   vlib_cli_output (vm, "---------------------");
1312   vlib_cli_output (vm, "IP6 reassembly status");
1313   vlib_cli_output (vm, "---------------------");
1314   if (unformat (input, "details"))
1315     {
1316       ip6_reass_t *reass;
1317       /* *INDENT-OFF* */
1318       pool_foreach (reass, rm->pool, {
1319         vlib_cli_output (vm, "%U", format_ip6_reass, vm, reass);
1320       });
1321       /* *INDENT-ON* */
1322     }
1323   vlib_cli_output (vm, "---------------------");
1324   vlib_cli_output (vm, "Current IP6 reassemblies count: %lu\n", rm->reass_n);
1325   vlib_cli_output (vm,
1326                    "Maximum configured concurrent IP6 reassemblies: %lu\n",
1327                    (long unsigned) rm->max_reass_n);
1328   vlib_cli_output (vm, "Buffers in use: %lu\n",
1329                    (long unsigned) rm->buffers_n);
1330   return 0;
1331 }
1332
1333 /* *INDENT-OFF* */
1334 VLIB_CLI_COMMAND (show_ip6_reassembly_cmd, static) = {
1335     .path = "show ip6-reassembly",
1336     .short_help = "show ip6-reassembly [details]",
1337     .function = show_ip6_reass,
1338 };
1339 /* *INDENT-ON* */
1340
1341 /*
1342  * fd.io coding-style-patch-verification: ON
1343  *
1344  * Local Variables:
1345  * eval: (c-set-style "gnu")
1346  * End:
1347  */