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zebra: align dplane notify processing with nhg work
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ea1c14f6
MS
1/*
2 * Zebra dataplane layer.
3 * Copyright (c) 2018 Volta Networks, Inc.
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful, but
11 * WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License along
16 * with this program; see the file COPYING; if not, write to the Free Software
17 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
18 */
19
2618a52e
DL
20#ifdef HAVE_CONFIG_H
21#include "config.h"
22#endif
23
18c37974 24#include "lib/libfrr.h"
1d11b21f
MS
25#include "lib/debug.h"
26#include "lib/frratomic.h"
7cdb1a84 27#include "lib/frr_pthread.h"
1d11b21f 28#include "lib/memory.h"
7cdb1a84 29#include "lib/queue.h"
1d11b21f 30#include "lib/zebra.h"
1485bbe7 31#include "zebra/zebra_router.h"
7cdb1a84 32#include "zebra/zebra_memory.h"
3801e764 33#include "zebra/zebra_router.h"
7cdb1a84
MS
34#include "zebra/zebra_dplane.h"
35#include "zebra/rt.h"
36#include "zebra/debug.h"
37
38/* Memory type for context blocks */
c1344b54
DL
39DEFINE_MTYPE_STATIC(ZEBRA, DP_CTX, "Zebra DPlane Ctx")
40DEFINE_MTYPE_STATIC(ZEBRA, DP_PROV, "Zebra DPlane Provider")
7cdb1a84
MS
41
42#ifndef AOK
43# define AOK 0
44#endif
45
e5a60d82
MS
46/* Enable test dataplane provider */
47/*#define DPLANE_TEST_PROVIDER 1 */
48
91f16812
MS
49/* Default value for max queued incoming updates */
50const uint32_t DPLANE_DEFAULT_MAX_QUEUED = 200;
51
c831033f
MS
52/* Default value for new work per cycle */
53const uint32_t DPLANE_DEFAULT_NEW_WORK = 100;
54
7cdb1a84
MS
55/* Validation check macro for context blocks */
56/* #define DPLANE_DEBUG 1 */
57
58#ifdef DPLANE_DEBUG
59
25779064
MS
60# define DPLANE_CTX_VALID(p) \
61 assert((p) != NULL)
7cdb1a84
MS
62
63#else
64
5709131c 65# define DPLANE_CTX_VALID(p)
7cdb1a84
MS
66
67#endif /* DPLANE_DEBUG */
68
0c8215cb
SW
69/*
70 * Nexthop information captured for nexthop/nexthop group updates
71 */
72struct dplane_nexthop_info {
73 uint32_t id;
74 afi_t afi;
75 vrf_id_t vrf_id;
38e40db1 76 int type;
0c8215cb
SW
77
78 struct nexthop_group ng;
e22e8001
SW
79 struct nh_grp nh_grp[MULTIPATH_NUM];
80 uint8_t nh_grp_count;
0c8215cb
SW
81};
82
7cdb1a84 83/*
0f461727 84 * Route information captured for route updates.
7cdb1a84 85 */
0f461727 86struct dplane_route_info {
7cdb1a84
MS
87
88 /* Dest and (optional) source prefixes */
89 struct prefix zd_dest;
90 struct prefix zd_src;
91
0f461727
MS
92 afi_t zd_afi;
93 safi_t zd_safi;
7cdb1a84
MS
94
95 int zd_type;
96 int zd_old_type;
97
7cdb1a84
MS
98 route_tag_t zd_tag;
99 route_tag_t zd_old_tag;
100 uint32_t zd_metric;
01ce7cba 101 uint32_t zd_old_metric;
0f461727 102
7cdb1a84
MS
103 uint16_t zd_instance;
104 uint16_t zd_old_instance;
105
106 uint8_t zd_distance;
107 uint8_t zd_old_distance;
108
109 uint32_t zd_mtu;
110 uint32_t zd_nexthop_mtu;
111
0c8215cb
SW
112 /* Nexthop hash entry info */
113 struct dplane_nexthop_info nhe;
f820d025 114
7cdb1a84
MS
115 /* Nexthops */
116 struct nexthop_group zd_ng;
117
4dfd7a02 118 /* "Previous" nexthops, used only in route updates without netlink */
01ce7cba
MS
119 struct nexthop_group zd_old_ng;
120
b8e0423d
MS
121 /* TODO -- use fixed array of nexthops, to avoid mallocs? */
122
0f461727
MS
123};
124
d613b8e1
MS
125/*
126 * Pseudowire info for the dataplane
127 */
128struct dplane_pw_info {
d613b8e1
MS
129 int type;
130 int af;
131 int status;
132 uint32_t flags;
16d69787 133 union g_addr dest;
d613b8e1
MS
134 mpls_label_t local_label;
135 mpls_label_t remote_label;
136
16d69787
MS
137 /* Nexthops */
138 struct nexthop_group nhg;
139
d613b8e1
MS
140 union pw_protocol_fields fields;
141};
142
a4a4802a
MS
143/*
144 * Interface/prefix info for the dataplane
145 */
146struct dplane_intf_info {
147
a4a4802a
MS
148 uint32_t metric;
149 uint32_t flags;
150
151#define DPLANE_INTF_CONNECTED (1 << 0) /* Connected peer, p2p */
152#define DPLANE_INTF_SECONDARY (1 << 1)
64168803 153#define DPLANE_INTF_BROADCAST (1 << 2)
0f3af738 154#define DPLANE_INTF_HAS_DEST DPLANE_INTF_CONNECTED
64168803 155#define DPLANE_INTF_HAS_LABEL (1 << 4)
a4a4802a
MS
156
157 /* Interface address/prefix */
158 struct prefix prefix;
159
160 /* Dest address, for p2p, or broadcast prefix */
161 struct prefix dest_prefix;
162
163 char *label;
164 char label_buf[32];
165};
166
7597ac7b 167/*
0bbd4ff4 168 * EVPN MAC address info for the dataplane.
7597ac7b
MS
169 */
170struct dplane_mac_info {
171 vlanid_t vid;
478566d6 172 ifindex_t br_ifindex;
7597ac7b
MS
173 struct ethaddr mac;
174 struct in_addr vtep_ip;
175 bool is_sticky;
176
177};
178
931fa60c
MS
179/*
180 * EVPN neighbor info for the dataplane
181 */
182struct dplane_neigh_info {
183 struct ipaddr ip_addr;
184 struct ethaddr mac;
185 uint32_t flags;
186 uint16_t state;
187};
188
0f461727
MS
189/*
190 * The context block used to exchange info about route updates across
191 * the boundary between the zebra main context (and pthread) and the
192 * dataplane layer (and pthread).
193 */
194struct zebra_dplane_ctx {
195
196 /* Operation code */
197 enum dplane_op_e zd_op;
198
199 /* Status on return */
200 enum zebra_dplane_result zd_status;
201
202 /* Dplane provider id */
203 uint32_t zd_provider;
204
205 /* Flags - used by providers, e.g. */
206 int zd_flags;
207
208 bool zd_is_update;
209
210 uint32_t zd_seq;
211 uint32_t zd_old_seq;
212
0024a559
MS
213 /* Some updates may be generated by notifications: allow the
214 * plugin to notice and ignore results from its own notifications.
215 */
216 uint32_t zd_notif_provider;
217
0f461727
MS
218 /* TODO -- internal/sub-operation status? */
219 enum zebra_dplane_result zd_remote_status;
220 enum zebra_dplane_result zd_kernel_status;
221
222 vrf_id_t zd_vrf_id;
223 uint32_t zd_table_id;
224
7c7ef4a8
MS
225 char zd_ifname[INTERFACE_NAMSIZ];
226 ifindex_t zd_ifindex;
227
a4a4802a 228 /* Support info for different kinds of updates */
0f461727
MS
229 union {
230 struct dplane_route_info rinfo;
231 zebra_lsp_t lsp;
d613b8e1 232 struct dplane_pw_info pw;
a4a4802a 233 struct dplane_intf_info intf;
7597ac7b 234 struct dplane_mac_info macinfo;
931fa60c 235 struct dplane_neigh_info neigh;
0f461727
MS
236 } u;
237
238 /* Namespace info, used especially for netlink kernel communication */
239 struct zebra_dplane_info zd_ns_info;
240
7cdb1a84 241 /* Embedded list linkage */
25779064 242 TAILQ_ENTRY(zebra_dplane_ctx) zd_q_entries;
7cdb1a84
MS
243};
244
c831033f
MS
245/* Flag that can be set by a pre-kernel provider as a signal that an update
246 * should bypass the kernel.
247 */
248#define DPLANE_CTX_FLAG_NO_KERNEL 0x01
249
250
7cdb1a84
MS
251/*
252 * Registration block for one dataplane provider.
253 */
25779064 254struct zebra_dplane_provider {
7cdb1a84
MS
255 /* Name */
256 char dp_name[DPLANE_PROVIDER_NAMELEN + 1];
257
258 /* Priority, for ordering among providers */
259 uint8_t dp_priority;
260
261 /* Id value */
262 uint32_t dp_id;
263
c831033f
MS
264 /* Mutex */
265 pthread_mutex_t dp_mutex;
266
267 /* Plugin-provided extra data */
268 void *dp_data;
269
270 /* Flags */
271 int dp_flags;
272
1dd4ea8a
MS
273 int (*dp_start)(struct zebra_dplane_provider *prov);
274
4c206c8f 275 int (*dp_fp)(struct zebra_dplane_provider *prov);
7cdb1a84 276
4c206c8f 277 int (*dp_fini)(struct zebra_dplane_provider *prov, bool early_p);
18c37974 278
0545c373 279 _Atomic uint32_t dp_in_counter;
c9d17fe8 280 _Atomic uint32_t dp_in_queued;
c831033f
MS
281 _Atomic uint32_t dp_in_max;
282 _Atomic uint32_t dp_out_counter;
c9d17fe8 283 _Atomic uint32_t dp_out_queued;
c831033f 284 _Atomic uint32_t dp_out_max;
0545c373 285 _Atomic uint32_t dp_error_counter;
1d11b21f 286
c831033f
MS
287 /* Queue of contexts inbound to the provider */
288 struct dplane_ctx_q dp_ctx_in_q;
289
290 /* Queue of completed contexts outbound from the provider back
291 * towards the dataplane module.
292 */
293 struct dplane_ctx_q dp_ctx_out_q;
7cdb1a84 294
c831033f
MS
295 /* Embedded list linkage for provider objects */
296 TAILQ_ENTRY(zebra_dplane_provider) dp_prov_link;
7cdb1a84
MS
297};
298
299/*
300 * Globals
301 */
25779064 302static struct zebra_dplane_globals {
7cdb1a84
MS
303 /* Mutex to control access to dataplane components */
304 pthread_mutex_t dg_mutex;
305
306 /* Results callback registered by zebra 'core' */
4c206c8f 307 int (*dg_results_cb)(struct dplane_ctx_q *ctxlist);
7cdb1a84 308
4dfd7a02
MS
309 /* Sentinel for beginning of shutdown */
310 volatile bool dg_is_shutdown;
311
312 /* Sentinel for end of shutdown */
1d11b21f
MS
313 volatile bool dg_run;
314
3fe4ccc4
MS
315 /* Update context queue inbound to the dataplane */
316 TAILQ_HEAD(zdg_ctx_q, zebra_dplane_ctx) dg_update_ctx_q;
7cdb1a84
MS
317
318 /* Ordered list of providers */
25779064 319 TAILQ_HEAD(zdg_prov_q, zebra_dplane_provider) dg_providers_q;
7cdb1a84 320
1d11b21f 321 /* Counter used to assign internal ids to providers */
b8e0423d
MS
322 uint32_t dg_provider_id;
323
91f16812
MS
324 /* Limit number of pending, unprocessed updates */
325 _Atomic uint32_t dg_max_queued_updates;
326
cf363e1b
MS
327 /* Control whether system route notifications should be produced. */
328 bool dg_sys_route_notifs;
329
c831033f
MS
330 /* Limit number of new updates dequeued at once, to pace an
331 * incoming burst.
332 */
333 uint32_t dg_updates_per_cycle;
334
0545c373 335 _Atomic uint32_t dg_routes_in;
1d11b21f 336 _Atomic uint32_t dg_routes_queued;
4dfd7a02 337 _Atomic uint32_t dg_routes_queued_max;
0545c373 338 _Atomic uint32_t dg_route_errors;
16c628de
MS
339 _Atomic uint32_t dg_other_errors;
340
f820d025
SW
341 _Atomic uint32_t dg_nexthops_in;
342 _Atomic uint32_t dg_nexthop_errors;
343
16c628de 344 _Atomic uint32_t dg_lsps_in;
16c628de
MS
345 _Atomic uint32_t dg_lsp_errors;
346
97d8d05a
MS
347 _Atomic uint32_t dg_pws_in;
348 _Atomic uint32_t dg_pw_errors;
349
64168803
MS
350 _Atomic uint32_t dg_intf_addrs_in;
351 _Atomic uint32_t dg_intf_addr_errors;
352
7597ac7b
MS
353 _Atomic uint32_t dg_macs_in;
354 _Atomic uint32_t dg_mac_errors;
355
931fa60c
MS
356 _Atomic uint32_t dg_neighs_in;
357 _Atomic uint32_t dg_neigh_errors;
358
c831033f 359 _Atomic uint32_t dg_update_yields;
1d11b21f 360
d8c16a95
MS
361 /* Dataplane pthread */
362 struct frr_pthread *dg_pthread;
363
7cdb1a84
MS
364 /* Event-delivery context 'master' for the dplane */
365 struct thread_master *dg_master;
366
367 /* Event/'thread' pointer for queued updates */
368 struct thread *dg_t_update;
369
4dfd7a02
MS
370 /* Event pointer for pending shutdown check loop */
371 struct thread *dg_t_shutdown_check;
372
25779064 373} zdplane_info;
7cdb1a84
MS
374
375/*
c831033f 376 * Lock and unlock for interactions with the zebra 'core' pthread
7cdb1a84 377 */
25779064 378#define DPLANE_LOCK() pthread_mutex_lock(&zdplane_info.dg_mutex)
25779064 379#define DPLANE_UNLOCK() pthread_mutex_unlock(&zdplane_info.dg_mutex)
7cdb1a84 380
c831033f
MS
381
382/*
383 * Lock and unlock for individual providers
384 */
385#define DPLANE_PROV_LOCK(p) pthread_mutex_lock(&((p)->dp_mutex))
386#define DPLANE_PROV_UNLOCK(p) pthread_mutex_unlock(&((p)->dp_mutex))
387
7cdb1a84 388/* Prototypes */
c831033f 389static int dplane_thread_loop(struct thread *event);
62b8bb7a
MS
390static void dplane_info_from_zns(struct zebra_dplane_info *ns_info,
391 struct zebra_ns *zns);
16c628de
MS
392static enum zebra_dplane_result lsp_update_internal(zebra_lsp_t *lsp,
393 enum dplane_op_e op);
97d8d05a
MS
394static enum zebra_dplane_result pw_update_internal(struct zebra_pw *pw,
395 enum dplane_op_e op);
64168803
MS
396static enum zebra_dplane_result intf_addr_update_internal(
397 const struct interface *ifp, const struct connected *ifc,
398 enum dplane_op_e op);
7597ac7b
MS
399static enum zebra_dplane_result mac_update_internal(
400 enum dplane_op_e op, const struct interface *ifp,
478566d6 401 const struct interface *br_ifp,
7597ac7b
MS
402 vlanid_t vid, const struct ethaddr *mac,
403 struct in_addr vtep_ip, bool sticky);
931fa60c
MS
404static enum zebra_dplane_result neigh_update_internal(
405 enum dplane_op_e op,
406 const struct interface *ifp,
407 const struct ethaddr *mac,
408 const struct ipaddr *ip,
409 uint32_t flags, uint16_t state);
7cdb1a84
MS
410
411/*
412 * Public APIs
413 */
414
ad6aad4d
MS
415/* Obtain thread_master for dataplane thread */
416struct thread_master *dplane_get_thread_master(void)
417{
418 return zdplane_info.dg_master;
419}
420
7cdb1a84 421/*
b8e0423d 422 * Allocate a dataplane update context
7cdb1a84 423 */
593e4eb1 424struct zebra_dplane_ctx *dplane_ctx_alloc(void)
7cdb1a84 425{
25779064 426 struct zebra_dplane_ctx *p;
7cdb1a84 427
b8e0423d
MS
428 /* TODO -- just alloc'ing memory, but would like to maintain
429 * a pool
430 */
25779064 431 p = XCALLOC(MTYPE_DP_CTX, sizeof(struct zebra_dplane_ctx));
7cdb1a84 432
5709131c 433 return p;
7cdb1a84
MS
434}
435
cf363e1b
MS
436/* Enable system route notifications */
437void dplane_enable_sys_route_notifs(void)
438{
439 zdplane_info.dg_sys_route_notifs = true;
440}
441
7cdb1a84 442/*
b8e0423d 443 * Free a dataplane results context.
7cdb1a84 444 */
25779064 445static void dplane_ctx_free(struct zebra_dplane_ctx **pctx)
7cdb1a84 446{
16c628de
MS
447 if (pctx == NULL)
448 return;
7cdb1a84 449
16c628de
MS
450 DPLANE_CTX_VALID(*pctx);
451
452 /* TODO -- just freeing memory, but would like to maintain
453 * a pool
454 */
455
456 /* Some internal allocations may need to be freed, depending on
457 * the type of info captured in the ctx.
458 */
459 switch ((*pctx)->zd_op) {
460 case DPLANE_OP_ROUTE_INSTALL:
461 case DPLANE_OP_ROUTE_UPDATE:
462 case DPLANE_OP_ROUTE_DELETE:
cf363e1b
MS
463 case DPLANE_OP_SYS_ROUTE_ADD:
464 case DPLANE_OP_SYS_ROUTE_DELETE:
54818e3b 465 case DPLANE_OP_ROUTE_NOTIFY:
b8e0423d 466
16c628de 467 /* Free allocated nexthops */
0f461727 468 if ((*pctx)->u.rinfo.zd_ng.nexthop) {
7cdb1a84 469 /* This deals with recursive nexthops too */
0f461727 470 nexthops_free((*pctx)->u.rinfo.zd_ng.nexthop);
16c628de
MS
471
472 (*pctx)->u.rinfo.zd_ng.nexthop = NULL;
7cdb1a84
MS
473 }
474
0f461727 475 if ((*pctx)->u.rinfo.zd_old_ng.nexthop) {
4dfd7a02 476 /* This deals with recursive nexthops too */
0f461727 477 nexthops_free((*pctx)->u.rinfo.zd_old_ng.nexthop);
16c628de
MS
478
479 (*pctx)->u.rinfo.zd_old_ng.nexthop = NULL;
480 }
481
482 break;
483
f820d025
SW
484 case DPLANE_OP_NH_INSTALL:
485 case DPLANE_OP_NH_UPDATE:
486 case DPLANE_OP_NH_DELETE: {
0c8215cb
SW
487 if ((*pctx)->u.rinfo.nhe.ng.nexthop) {
488 /* This deals with recursive nexthops too */
489 nexthops_free((*pctx)->u.rinfo.nhe.ng.nexthop);
490
491 (*pctx)->u.rinfo.nhe.ng.nexthop = NULL;
492 }
f820d025
SW
493 break;
494 }
495
16c628de
MS
496 case DPLANE_OP_LSP_INSTALL:
497 case DPLANE_OP_LSP_UPDATE:
498 case DPLANE_OP_LSP_DELETE:
104e3ad9 499 case DPLANE_OP_LSP_NOTIFY:
16c628de
MS
500 {
501 zebra_nhlfe_t *nhlfe, *next;
502
503 /* Free allocated NHLFEs */
504 for (nhlfe = (*pctx)->u.lsp.nhlfe_list; nhlfe; nhlfe = next) {
505 next = nhlfe->next;
506
507 zebra_mpls_nhlfe_del(nhlfe);
01ce7cba
MS
508 }
509
16c628de
MS
510 /* Clear pointers in lsp struct, in case we're cacheing
511 * free context structs.
512 */
513 (*pctx)->u.lsp.nhlfe_list = NULL;
514 (*pctx)->u.lsp.best_nhlfe = NULL;
515
516 break;
517 }
518
97d8d05a
MS
519 case DPLANE_OP_PW_INSTALL:
520 case DPLANE_OP_PW_UNINSTALL:
16d69787
MS
521 /* Free allocated nexthops */
522 if ((*pctx)->u.pw.nhg.nexthop) {
523 /* This deals with recursive nexthops too */
524 nexthops_free((*pctx)->u.pw.nhg.nexthop);
525
526 (*pctx)->u.pw.nhg.nexthop = NULL;
527 }
528 break;
529
a4a4802a
MS
530 case DPLANE_OP_ADDR_INSTALL:
531 case DPLANE_OP_ADDR_UNINSTALL:
64168803
MS
532 /* Maybe free label string, if allocated */
533 if ((*pctx)->u.intf.label != NULL &&
534 (*pctx)->u.intf.label != (*pctx)->u.intf.label_buf) {
535 free((*pctx)->u.intf.label);
536 (*pctx)->u.intf.label = NULL;
537 }
538 break;
539
7597ac7b
MS
540 case DPLANE_OP_MAC_INSTALL:
541 case DPLANE_OP_MAC_DELETE:
f2412b2d 542 case DPLANE_OP_NEIGH_INSTALL:
931fa60c 543 case DPLANE_OP_NEIGH_UPDATE:
f2412b2d 544 case DPLANE_OP_NEIGH_DELETE:
0bbd4ff4
MS
545 case DPLANE_OP_VTEP_ADD:
546 case DPLANE_OP_VTEP_DELETE:
16c628de
MS
547 case DPLANE_OP_NONE:
548 break;
7cdb1a84 549 }
16c628de
MS
550
551 XFREE(MTYPE_DP_CTX, *pctx);
552 *pctx = NULL;
7cdb1a84
MS
553}
554
555/*
556 * Return a context block to the dplane module after processing
557 */
25779064 558void dplane_ctx_fini(struct zebra_dplane_ctx **pctx)
7cdb1a84 559{
14b0bc8e 560 /* TODO -- maintain pool; for now, just free */
7cdb1a84
MS
561 dplane_ctx_free(pctx);
562}
563
564/* Enqueue a context block */
25779064
MS
565void dplane_ctx_enqueue_tail(struct dplane_ctx_q *q,
566 const struct zebra_dplane_ctx *ctx)
7cdb1a84 567{
25779064 568 TAILQ_INSERT_TAIL(q, (struct zebra_dplane_ctx *)ctx, zd_q_entries);
7cdb1a84
MS
569}
570
14b0bc8e
MS
571/* Append a list of context blocks to another list */
572void dplane_ctx_list_append(struct dplane_ctx_q *to_list,
573 struct dplane_ctx_q *from_list)
574{
575 if (TAILQ_FIRST(from_list)) {
576 TAILQ_CONCAT(to_list, from_list, zd_q_entries);
577
578 /* And clear 'from' list */
579 TAILQ_INIT(from_list);
580 }
581}
582
7cdb1a84 583/* Dequeue a context block from the head of a list */
68b375e0 584struct zebra_dplane_ctx *dplane_ctx_dequeue(struct dplane_ctx_q *q)
7cdb1a84 585{
25779064 586 struct zebra_dplane_ctx *ctx = TAILQ_FIRST(q);
5709131c
MS
587
588 if (ctx)
7cdb1a84 589 TAILQ_REMOVE(q, ctx, zd_q_entries);
7cdb1a84 590
68b375e0 591 return ctx;
7cdb1a84
MS
592}
593
594/*
595 * Accessors for information from the context object
596 */
25779064
MS
597enum zebra_dplane_result dplane_ctx_get_status(
598 const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
599{
600 DPLANE_CTX_VALID(ctx);
601
5709131c 602 return ctx->zd_status;
7cdb1a84
MS
603}
604
c831033f
MS
605void dplane_ctx_set_status(struct zebra_dplane_ctx *ctx,
606 enum zebra_dplane_result status)
607{
608 DPLANE_CTX_VALID(ctx);
609
610 ctx->zd_status = status;
611}
612
613/* Retrieve last/current provider id */
614uint32_t dplane_ctx_get_provider(const struct zebra_dplane_ctx *ctx)
615{
616 DPLANE_CTX_VALID(ctx);
617 return ctx->zd_provider;
618}
619
620/* Providers run before the kernel can control whether a kernel
621 * update should be done.
622 */
623void dplane_ctx_set_skip_kernel(struct zebra_dplane_ctx *ctx)
624{
625 DPLANE_CTX_VALID(ctx);
626
627 SET_FLAG(ctx->zd_flags, DPLANE_CTX_FLAG_NO_KERNEL);
628}
629
630bool dplane_ctx_is_skip_kernel(const struct zebra_dplane_ctx *ctx)
631{
632 DPLANE_CTX_VALID(ctx);
633
634 return CHECK_FLAG(ctx->zd_flags, DPLANE_CTX_FLAG_NO_KERNEL);
635}
636
593e4eb1
MS
637void dplane_ctx_set_op(struct zebra_dplane_ctx *ctx, enum dplane_op_e op)
638{
639 DPLANE_CTX_VALID(ctx);
640 ctx->zd_op = op;
641}
642
25779064 643enum dplane_op_e dplane_ctx_get_op(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
644{
645 DPLANE_CTX_VALID(ctx);
646
5709131c 647 return ctx->zd_op;
7cdb1a84
MS
648}
649
5709131c 650const char *dplane_op2str(enum dplane_op_e op)
7cdb1a84
MS
651{
652 const char *ret = "UNKNOWN";
653
5709131c 654 switch (op) {
7cdb1a84
MS
655 case DPLANE_OP_NONE:
656 ret = "NONE";
657 break;
658
659 /* Route update */
660 case DPLANE_OP_ROUTE_INSTALL:
661 ret = "ROUTE_INSTALL";
662 break;
663 case DPLANE_OP_ROUTE_UPDATE:
664 ret = "ROUTE_UPDATE";
665 break;
666 case DPLANE_OP_ROUTE_DELETE:
667 ret = "ROUTE_DELETE";
668 break;
54818e3b
MS
669 case DPLANE_OP_ROUTE_NOTIFY:
670 ret = "ROUTE_NOTIFY";
671 break;
7cdb1a84 672
f820d025
SW
673 /* Nexthop update */
674 case DPLANE_OP_NH_INSTALL:
675 ret = "NH_INSTALL";
676 break;
677 case DPLANE_OP_NH_UPDATE:
678 ret = "NH_UPDATE";
679 break;
680 case DPLANE_OP_NH_DELETE:
681 ret = "NH_DELETE";
682 break;
683
16c628de
MS
684 case DPLANE_OP_LSP_INSTALL:
685 ret = "LSP_INSTALL";
686 break;
687 case DPLANE_OP_LSP_UPDATE:
688 ret = "LSP_UPDATE";
689 break;
690 case DPLANE_OP_LSP_DELETE:
691 ret = "LSP_DELETE";
692 break;
104e3ad9
MS
693 case DPLANE_OP_LSP_NOTIFY:
694 ret = "LSP_NOTIFY";
695 break;
16c628de 696
97d8d05a
MS
697 case DPLANE_OP_PW_INSTALL:
698 ret = "PW_INSTALL";
699 break;
700 case DPLANE_OP_PW_UNINSTALL:
701 ret = "PW_UNINSTALL";
702 break;
703
cf363e1b
MS
704 case DPLANE_OP_SYS_ROUTE_ADD:
705 ret = "SYS_ROUTE_ADD";
706 break;
707 case DPLANE_OP_SYS_ROUTE_DELETE:
708 ret = "SYS_ROUTE_DEL";
709 break;
a4a4802a
MS
710
711 case DPLANE_OP_ADDR_INSTALL:
712 ret = "ADDR_INSTALL";
713 break;
714 case DPLANE_OP_ADDR_UNINSTALL:
715 ret = "ADDR_UNINSTALL";
716 break;
717
7597ac7b
MS
718 case DPLANE_OP_MAC_INSTALL:
719 ret = "MAC_INSTALL";
720 break;
721 case DPLANE_OP_MAC_DELETE:
722 ret = "MAC_DELETE";
723 break;
f2412b2d
MS
724
725 case DPLANE_OP_NEIGH_INSTALL:
726 ret = "NEIGH_INSTALL";
727 break;
931fa60c
MS
728 case DPLANE_OP_NEIGH_UPDATE:
729 ret = "NEIGH_UPDATE";
730 break;
f2412b2d
MS
731 case DPLANE_OP_NEIGH_DELETE:
732 ret = "NEIGH_DELETE";
733 break;
0bbd4ff4
MS
734 case DPLANE_OP_VTEP_ADD:
735 ret = "VTEP_ADD";
736 break;
737 case DPLANE_OP_VTEP_DELETE:
738 ret = "VTEP_DELETE";
739 break;
5b94ec50 740 }
7cdb1a84 741
5709131c 742 return ret;
7cdb1a84
MS
743}
744
f183e380
MS
745const char *dplane_res2str(enum zebra_dplane_result res)
746{
747 const char *ret = "<Unknown>";
748
749 switch (res) {
750 case ZEBRA_DPLANE_REQUEST_FAILURE:
751 ret = "FAILURE";
752 break;
753 case ZEBRA_DPLANE_REQUEST_QUEUED:
754 ret = "QUEUED";
755 break;
756 case ZEBRA_DPLANE_REQUEST_SUCCESS:
757 ret = "SUCCESS";
758 break;
5b94ec50 759 }
f183e380
MS
760
761 return ret;
762}
763
593e4eb1
MS
764void dplane_ctx_set_dest(struct zebra_dplane_ctx *ctx,
765 const struct prefix *dest)
766{
767 DPLANE_CTX_VALID(ctx);
768
769 prefix_copy(&(ctx->u.rinfo.zd_dest), dest);
770}
771
25779064 772const struct prefix *dplane_ctx_get_dest(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
773{
774 DPLANE_CTX_VALID(ctx);
775
0f461727 776 return &(ctx->u.rinfo.zd_dest);
7cdb1a84
MS
777}
778
593e4eb1
MS
779void dplane_ctx_set_src(struct zebra_dplane_ctx *ctx, const struct prefix *src)
780{
781 DPLANE_CTX_VALID(ctx);
782
783 if (src)
784 prefix_copy(&(ctx->u.rinfo.zd_src), src);
785 else
786 memset(&(ctx->u.rinfo.zd_src), 0, sizeof(struct prefix));
787}
788
5709131c 789/* Source prefix is a little special - return NULL for "no src prefix" */
25779064 790const struct prefix *dplane_ctx_get_src(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
791{
792 DPLANE_CTX_VALID(ctx);
793
0f461727
MS
794 if (ctx->u.rinfo.zd_src.prefixlen == 0 &&
795 IN6_IS_ADDR_UNSPECIFIED(&(ctx->u.rinfo.zd_src.u.prefix6))) {
5709131c 796 return NULL;
7cdb1a84 797 } else {
0f461727 798 return &(ctx->u.rinfo.zd_src);
7cdb1a84
MS
799 }
800}
801
25779064 802bool dplane_ctx_is_update(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
803{
804 DPLANE_CTX_VALID(ctx);
805
5709131c 806 return ctx->zd_is_update;
7cdb1a84
MS
807}
808
25779064 809uint32_t dplane_ctx_get_seq(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
810{
811 DPLANE_CTX_VALID(ctx);
812
5709131c 813 return ctx->zd_seq;
7cdb1a84
MS
814}
815
25779064 816uint32_t dplane_ctx_get_old_seq(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
817{
818 DPLANE_CTX_VALID(ctx);
819
5709131c 820 return ctx->zd_old_seq;
7cdb1a84
MS
821}
822
593e4eb1
MS
823void dplane_ctx_set_vrf(struct zebra_dplane_ctx *ctx, vrf_id_t vrf)
824{
825 DPLANE_CTX_VALID(ctx);
826
827 ctx->zd_vrf_id = vrf;
828}
829
25779064 830vrf_id_t dplane_ctx_get_vrf(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
831{
832 DPLANE_CTX_VALID(ctx);
833
5709131c 834 return ctx->zd_vrf_id;
7cdb1a84
MS
835}
836
0024a559
MS
837bool dplane_ctx_is_from_notif(const struct zebra_dplane_ctx *ctx)
838{
839 DPLANE_CTX_VALID(ctx);
840
841 return (ctx->zd_notif_provider != 0);
842}
843
844uint32_t dplane_ctx_get_notif_provider(const struct zebra_dplane_ctx *ctx)
845{
846 DPLANE_CTX_VALID(ctx);
847
848 return ctx->zd_notif_provider;
849}
850
9651af61
MS
851void dplane_ctx_set_notif_provider(struct zebra_dplane_ctx *ctx,
852 uint32_t id)
853{
854 DPLANE_CTX_VALID(ctx);
855
856 ctx->zd_notif_provider = id;
857}
7c7ef4a8
MS
858const char *dplane_ctx_get_ifname(const struct zebra_dplane_ctx *ctx)
859{
860 DPLANE_CTX_VALID(ctx);
861
862 return ctx->zd_ifname;
863}
864
865ifindex_t dplane_ctx_get_ifindex(const struct zebra_dplane_ctx *ctx)
866{
867 DPLANE_CTX_VALID(ctx);
868
869 return ctx->zd_ifindex;
870}
9651af61 871
593e4eb1
MS
872void dplane_ctx_set_type(struct zebra_dplane_ctx *ctx, int type)
873{
874 DPLANE_CTX_VALID(ctx);
875
876 ctx->u.rinfo.zd_type = type;
877}
878
25779064 879int dplane_ctx_get_type(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
880{
881 DPLANE_CTX_VALID(ctx);
882
0f461727 883 return ctx->u.rinfo.zd_type;
7cdb1a84
MS
884}
885
25779064 886int dplane_ctx_get_old_type(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
887{
888 DPLANE_CTX_VALID(ctx);
889
0f461727 890 return ctx->u.rinfo.zd_old_type;
7cdb1a84
MS
891}
892
593e4eb1
MS
893void dplane_ctx_set_afi(struct zebra_dplane_ctx *ctx, afi_t afi)
894{
895 DPLANE_CTX_VALID(ctx);
896
897 ctx->u.rinfo.zd_afi = afi;
898}
899
25779064 900afi_t dplane_ctx_get_afi(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
901{
902 DPLANE_CTX_VALID(ctx);
903
0f461727 904 return ctx->u.rinfo.zd_afi;
7cdb1a84
MS
905}
906
593e4eb1
MS
907void dplane_ctx_set_safi(struct zebra_dplane_ctx *ctx, safi_t safi)
908{
909 DPLANE_CTX_VALID(ctx);
910
911 ctx->u.rinfo.zd_safi = safi;
912}
913
25779064 914safi_t dplane_ctx_get_safi(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
915{
916 DPLANE_CTX_VALID(ctx);
917
0f461727 918 return ctx->u.rinfo.zd_safi;
7cdb1a84
MS
919}
920
593e4eb1
MS
921void dplane_ctx_set_table(struct zebra_dplane_ctx *ctx, uint32_t table)
922{
923 DPLANE_CTX_VALID(ctx);
924
925 ctx->zd_table_id = table;
926}
927
25779064 928uint32_t dplane_ctx_get_table(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
929{
930 DPLANE_CTX_VALID(ctx);
931
5709131c 932 return ctx->zd_table_id;
7cdb1a84
MS
933}
934
25779064 935route_tag_t dplane_ctx_get_tag(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
936{
937 DPLANE_CTX_VALID(ctx);
938
0f461727 939 return ctx->u.rinfo.zd_tag;
7cdb1a84
MS
940}
941
6a91ae98
MS
942void dplane_ctx_set_tag(struct zebra_dplane_ctx *ctx, route_tag_t tag)
943{
944 DPLANE_CTX_VALID(ctx);
945
946 ctx->u.rinfo.zd_tag = tag;
947}
948
25779064 949route_tag_t dplane_ctx_get_old_tag(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
950{
951 DPLANE_CTX_VALID(ctx);
952
0f461727 953 return ctx->u.rinfo.zd_old_tag;
7cdb1a84
MS
954}
955
25779064 956uint16_t dplane_ctx_get_instance(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
957{
958 DPLANE_CTX_VALID(ctx);
959
0f461727 960 return ctx->u.rinfo.zd_instance;
7cdb1a84
MS
961}
962
6a91ae98
MS
963void dplane_ctx_set_instance(struct zebra_dplane_ctx *ctx, uint16_t instance)
964{
965 DPLANE_CTX_VALID(ctx);
966
967 ctx->u.rinfo.zd_instance = instance;
968}
969
25779064 970uint16_t dplane_ctx_get_old_instance(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
971{
972 DPLANE_CTX_VALID(ctx);
973
0f461727 974 return ctx->u.rinfo.zd_old_instance;
7cdb1a84
MS
975}
976
25779064 977uint32_t dplane_ctx_get_metric(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
978{
979 DPLANE_CTX_VALID(ctx);
980
0f461727 981 return ctx->u.rinfo.zd_metric;
7cdb1a84
MS
982}
983
25779064 984uint32_t dplane_ctx_get_old_metric(const struct zebra_dplane_ctx *ctx)
01ce7cba
MS
985{
986 DPLANE_CTX_VALID(ctx);
987
0f461727 988 return ctx->u.rinfo.zd_old_metric;
01ce7cba
MS
989}
990
25779064 991uint32_t dplane_ctx_get_mtu(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
992{
993 DPLANE_CTX_VALID(ctx);
994
0f461727 995 return ctx->u.rinfo.zd_mtu;
7cdb1a84
MS
996}
997
25779064 998uint32_t dplane_ctx_get_nh_mtu(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
999{
1000 DPLANE_CTX_VALID(ctx);
1001
0f461727 1002 return ctx->u.rinfo.zd_nexthop_mtu;
7cdb1a84
MS
1003}
1004
25779064 1005uint8_t dplane_ctx_get_distance(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
1006{
1007 DPLANE_CTX_VALID(ctx);
1008
0f461727 1009 return ctx->u.rinfo.zd_distance;
7cdb1a84
MS
1010}
1011
6a91ae98
MS
1012void dplane_ctx_set_distance(struct zebra_dplane_ctx *ctx, uint8_t distance)
1013{
1014 DPLANE_CTX_VALID(ctx);
1015
1016 ctx->u.rinfo.zd_distance = distance;
1017}
1018
25779064 1019uint8_t dplane_ctx_get_old_distance(const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
1020{
1021 DPLANE_CTX_VALID(ctx);
1022
0f461727 1023 return ctx->u.rinfo.zd_old_distance;
7cdb1a84
MS
1024}
1025
593e4eb1
MS
1026void dplane_ctx_set_nexthops(struct zebra_dplane_ctx *ctx, struct nexthop *nh)
1027{
1028 DPLANE_CTX_VALID(ctx);
1029
1030 if (ctx->u.rinfo.zd_ng.nexthop) {
1031 nexthops_free(ctx->u.rinfo.zd_ng.nexthop);
1032 ctx->u.rinfo.zd_ng.nexthop = NULL;
1033 }
1034 copy_nexthops(&(ctx->u.rinfo.zd_ng.nexthop), nh, NULL);
1035}
1036
25779064
MS
1037const struct nexthop_group *dplane_ctx_get_ng(
1038 const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
1039{
1040 DPLANE_CTX_VALID(ctx);
1041
0f461727 1042 return &(ctx->u.rinfo.zd_ng);
7cdb1a84
MS
1043}
1044
25779064
MS
1045const struct nexthop_group *dplane_ctx_get_old_ng(
1046 const struct zebra_dplane_ctx *ctx)
01ce7cba
MS
1047{
1048 DPLANE_CTX_VALID(ctx);
1049
0f461727 1050 return &(ctx->u.rinfo.zd_old_ng);
01ce7cba
MS
1051}
1052
25779064
MS
1053const struct zebra_dplane_info *dplane_ctx_get_ns(
1054 const struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
1055{
1056 DPLANE_CTX_VALID(ctx);
1057
5709131c 1058 return &(ctx->zd_ns_info);
7cdb1a84
MS
1059}
1060
f820d025 1061/* Accessors for nexthop information */
0c8215cb
SW
1062uint32_t dplane_ctx_get_nhe_id(const struct zebra_dplane_ctx *ctx)
1063{
1064 DPLANE_CTX_VALID(ctx);
1065 return ctx->u.rinfo.nhe.id;
1066}
1067
1068afi_t dplane_ctx_get_nhe_afi(const struct zebra_dplane_ctx *ctx)
1069{
1070 DPLANE_CTX_VALID(ctx);
1071 return ctx->u.rinfo.nhe.afi;
1072}
1073
1074vrf_id_t dplane_ctx_get_nhe_vrf_id(const struct zebra_dplane_ctx *ctx)
f820d025
SW
1075{
1076 DPLANE_CTX_VALID(ctx);
0c8215cb
SW
1077 return ctx->u.rinfo.nhe.vrf_id;
1078}
1079
38e40db1 1080int dplane_ctx_get_nhe_type(const struct zebra_dplane_ctx *ctx)
0c8215cb
SW
1081{
1082 DPLANE_CTX_VALID(ctx);
38e40db1 1083 return ctx->u.rinfo.nhe.type;
0c8215cb
SW
1084}
1085
1086const struct nexthop_group *
1087dplane_ctx_get_nhe_ng(const struct zebra_dplane_ctx *ctx)
1088{
1089 DPLANE_CTX_VALID(ctx);
1090 return &(ctx->u.rinfo.nhe.ng);
1091}
1092
e22e8001
SW
1093const struct nh_grp *
1094dplane_ctx_get_nhe_nh_grp(const struct zebra_dplane_ctx *ctx)
0c8215cb
SW
1095{
1096 DPLANE_CTX_VALID(ctx);
e22e8001 1097 return ctx->u.rinfo.nhe.nh_grp;
0c8215cb
SW
1098}
1099
e22e8001 1100uint8_t dplane_ctx_get_nhe_nh_grp_count(const struct zebra_dplane_ctx *ctx)
0c8215cb
SW
1101{
1102 DPLANE_CTX_VALID(ctx);
e22e8001 1103 return ctx->u.rinfo.nhe.nh_grp_count;
f820d025
SW
1104}
1105
0f461727
MS
1106/* Accessors for LSP information */
1107
1108mpls_label_t dplane_ctx_get_in_label(const struct zebra_dplane_ctx *ctx)
1109{
1110 DPLANE_CTX_VALID(ctx);
1111
1112 return ctx->u.lsp.ile.in_label;
1113}
1114
3ab54059
MS
1115void dplane_ctx_set_in_label(struct zebra_dplane_ctx *ctx, mpls_label_t label)
1116{
1117 DPLANE_CTX_VALID(ctx);
1118
1119 ctx->u.lsp.ile.in_label = label;
1120}
1121
0f461727
MS
1122uint8_t dplane_ctx_get_addr_family(const struct zebra_dplane_ctx *ctx)
1123{
1124 DPLANE_CTX_VALID(ctx);
1125
1126 return ctx->u.lsp.addr_family;
1127}
1128
3ab54059
MS
1129void dplane_ctx_set_addr_family(struct zebra_dplane_ctx *ctx,
1130 uint8_t family)
1131{
1132 DPLANE_CTX_VALID(ctx);
1133
1134 ctx->u.lsp.addr_family = family;
1135}
1136
0f461727
MS
1137uint32_t dplane_ctx_get_lsp_flags(const struct zebra_dplane_ctx *ctx)
1138{
1139 DPLANE_CTX_VALID(ctx);
1140
1141 return ctx->u.lsp.flags;
1142}
1143
3ab54059
MS
1144void dplane_ctx_set_lsp_flags(struct zebra_dplane_ctx *ctx,
1145 uint32_t flags)
1146{
1147 DPLANE_CTX_VALID(ctx);
1148
1149 ctx->u.lsp.flags = flags;
1150}
1151
81793ac1 1152const zebra_nhlfe_t *dplane_ctx_get_nhlfe(const struct zebra_dplane_ctx *ctx)
0f461727
MS
1153{
1154 DPLANE_CTX_VALID(ctx);
1155
1156 return ctx->u.lsp.nhlfe_list;
1157}
1158
3ab54059
MS
1159zebra_nhlfe_t *dplane_ctx_add_nhlfe(struct zebra_dplane_ctx *ctx,
1160 enum lsp_types_t lsp_type,
1161 enum nexthop_types_t nh_type,
1162 union g_addr *gate,
1163 ifindex_t ifindex,
5065db0a
RW
1164 uint8_t num_labels,
1165 mpls_label_t out_labels[])
3ab54059
MS
1166{
1167 zebra_nhlfe_t *nhlfe;
1168
1169 DPLANE_CTX_VALID(ctx);
1170
1171 nhlfe = zebra_mpls_lsp_add_nhlfe(&(ctx->u.lsp),
1172 lsp_type, nh_type, gate,
5065db0a 1173 ifindex, num_labels, out_labels);
3ab54059
MS
1174
1175 return nhlfe;
1176}
1177
81793ac1
MS
1178const zebra_nhlfe_t *
1179dplane_ctx_get_best_nhlfe(const struct zebra_dplane_ctx *ctx)
0f461727
MS
1180{
1181 DPLANE_CTX_VALID(ctx);
1182
1183 return ctx->u.lsp.best_nhlfe;
1184}
1185
3ab54059
MS
1186const zebra_nhlfe_t *
1187dplane_ctx_set_best_nhlfe(struct zebra_dplane_ctx *ctx,
1188 zebra_nhlfe_t *nhlfe)
1189{
1190 DPLANE_CTX_VALID(ctx);
1191
1192 ctx->u.lsp.best_nhlfe = nhlfe;
1193 return ctx->u.lsp.best_nhlfe;
1194}
1195
0f461727
MS
1196uint32_t dplane_ctx_get_lsp_num_ecmp(const struct zebra_dplane_ctx *ctx)
1197{
1198 DPLANE_CTX_VALID(ctx);
1199
1200 return ctx->u.lsp.num_ecmp;
1201}
1202
d613b8e1
MS
1203mpls_label_t dplane_ctx_get_pw_local_label(const struct zebra_dplane_ctx *ctx)
1204{
1205 DPLANE_CTX_VALID(ctx);
1206
1207 return ctx->u.pw.local_label;
1208}
1209
1210mpls_label_t dplane_ctx_get_pw_remote_label(const struct zebra_dplane_ctx *ctx)
1211{
1212 DPLANE_CTX_VALID(ctx);
1213
1214 return ctx->u.pw.remote_label;
1215}
1216
1217int dplane_ctx_get_pw_type(const struct zebra_dplane_ctx *ctx)
1218{
1219 DPLANE_CTX_VALID(ctx);
1220
1221 return ctx->u.pw.type;
1222}
1223
1224int dplane_ctx_get_pw_af(const struct zebra_dplane_ctx *ctx)
1225{
1226 DPLANE_CTX_VALID(ctx);
1227
1228 return ctx->u.pw.af;
1229}
1230
1231uint32_t dplane_ctx_get_pw_flags(const struct zebra_dplane_ctx *ctx)
1232{
1233 DPLANE_CTX_VALID(ctx);
1234
1235 return ctx->u.pw.flags;
1236}
1237
1238int dplane_ctx_get_pw_status(const struct zebra_dplane_ctx *ctx)
1239{
1240 DPLANE_CTX_VALID(ctx);
1241
1242 return ctx->u.pw.status;
1243}
1244
16d69787 1245const union g_addr *dplane_ctx_get_pw_dest(
d613b8e1
MS
1246 const struct zebra_dplane_ctx *ctx)
1247{
1248 DPLANE_CTX_VALID(ctx);
1249
16d69787 1250 return &(ctx->u.pw.dest);
d613b8e1
MS
1251}
1252
1253const union pw_protocol_fields *dplane_ctx_get_pw_proto(
1254 const struct zebra_dplane_ctx *ctx)
1255{
1256 DPLANE_CTX_VALID(ctx);
1257
1258 return &(ctx->u.pw.fields);
1259}
1260
09cd307c
MS
1261const struct nexthop_group *
1262dplane_ctx_get_pw_nhg(const struct zebra_dplane_ctx *ctx)
1263{
1264 DPLANE_CTX_VALID(ctx);
1265
1266 return &(ctx->u.pw.nhg);
1267}
1268
a4a4802a 1269/* Accessors for interface information */
a4a4802a
MS
1270uint32_t dplane_ctx_get_intf_metric(const struct zebra_dplane_ctx *ctx)
1271{
1272 DPLANE_CTX_VALID(ctx);
1273
1274 return ctx->u.intf.metric;
1275}
1276
1277/* Is interface addr p2p? */
1278bool dplane_ctx_intf_is_connected(const struct zebra_dplane_ctx *ctx)
1279{
1280 DPLANE_CTX_VALID(ctx);
1281
1282 return (ctx->u.intf.flags & DPLANE_INTF_CONNECTED);
1283}
1284
1285bool dplane_ctx_intf_is_secondary(const struct zebra_dplane_ctx *ctx)
1286{
1287 DPLANE_CTX_VALID(ctx);
1288
1289 return (ctx->u.intf.flags & DPLANE_INTF_SECONDARY);
1290}
1291
64168803
MS
1292bool dplane_ctx_intf_is_broadcast(const struct zebra_dplane_ctx *ctx)
1293{
1294 DPLANE_CTX_VALID(ctx);
1295
1296 return (ctx->u.intf.flags & DPLANE_INTF_BROADCAST);
1297}
1298
a4a4802a
MS
1299const struct prefix *dplane_ctx_get_intf_addr(
1300 const struct zebra_dplane_ctx *ctx)
1301{
1302 DPLANE_CTX_VALID(ctx);
1303
1304 return &(ctx->u.intf.prefix);
1305}
1306
1307bool dplane_ctx_intf_has_dest(const struct zebra_dplane_ctx *ctx)
1308{
1309 DPLANE_CTX_VALID(ctx);
1310
1311 return (ctx->u.intf.flags & DPLANE_INTF_HAS_DEST);
1312}
1313
1314const struct prefix *dplane_ctx_get_intf_dest(
1315 const struct zebra_dplane_ctx *ctx)
1316{
1317 DPLANE_CTX_VALID(ctx);
1318
1319 if (ctx->u.intf.flags & DPLANE_INTF_HAS_DEST)
1320 return &(ctx->u.intf.dest_prefix);
1321 else
1322 return NULL;
1323}
1324
1325bool dplane_ctx_intf_has_label(const struct zebra_dplane_ctx *ctx)
1326{
1327 DPLANE_CTX_VALID(ctx);
1328
1329 return (ctx->u.intf.flags & DPLANE_INTF_HAS_LABEL);
1330}
1331
1332const char *dplane_ctx_get_intf_label(const struct zebra_dplane_ctx *ctx)
1333{
1334 DPLANE_CTX_VALID(ctx);
1335
1336 return ctx->u.intf.label;
1337}
1338
7597ac7b
MS
1339/* Accessors for MAC information */
1340vlanid_t dplane_ctx_mac_get_vlan(const struct zebra_dplane_ctx *ctx)
1341{
1342 DPLANE_CTX_VALID(ctx);
1343 return ctx->u.macinfo.vid;
1344}
1345
1346bool dplane_ctx_mac_is_sticky(const struct zebra_dplane_ctx *ctx)
1347{
1348 DPLANE_CTX_VALID(ctx);
1349 return ctx->u.macinfo.is_sticky;
1350}
1351
1352const struct ethaddr *dplane_ctx_mac_get_addr(
1353 const struct zebra_dplane_ctx *ctx)
1354{
1355 DPLANE_CTX_VALID(ctx);
1356 return &(ctx->u.macinfo.mac);
1357}
1358
1359const struct in_addr *dplane_ctx_mac_get_vtep_ip(
1360 const struct zebra_dplane_ctx *ctx)
1361{
1362 DPLANE_CTX_VALID(ctx);
1363 return &(ctx->u.macinfo.vtep_ip);
1364}
1365
478566d6
MS
1366ifindex_t dplane_ctx_mac_get_br_ifindex(const struct zebra_dplane_ctx *ctx)
1367{
1368 DPLANE_CTX_VALID(ctx);
1369 return ctx->u.macinfo.br_ifindex;
1370}
1371
931fa60c
MS
1372/* Accessors for neighbor information */
1373const struct ipaddr *dplane_ctx_neigh_get_ipaddr(
1374 const struct zebra_dplane_ctx *ctx)
1375{
1376 DPLANE_CTX_VALID(ctx);
1377 return &(ctx->u.neigh.ip_addr);
1378}
1379
1380const struct ethaddr *dplane_ctx_neigh_get_mac(
1381 const struct zebra_dplane_ctx *ctx)
1382{
1383 DPLANE_CTX_VALID(ctx);
1384 return &(ctx->u.neigh.mac);
1385}
1386
1387uint32_t dplane_ctx_neigh_get_flags(const struct zebra_dplane_ctx *ctx)
1388{
1389 DPLANE_CTX_VALID(ctx);
1390 return ctx->u.neigh.flags;
1391}
1392
1393uint16_t dplane_ctx_neigh_get_state(const struct zebra_dplane_ctx *ctx)
1394{
1395 DPLANE_CTX_VALID(ctx);
1396 return ctx->u.neigh.state;
1397}
1398
7cdb1a84
MS
1399/*
1400 * End of dplane context accessors
1401 */
1402
c831033f 1403
91f16812
MS
1404/*
1405 * Retrieve the limit on the number of pending, unprocessed updates.
1406 */
1407uint32_t dplane_get_in_queue_limit(void)
1408{
1409 return atomic_load_explicit(&zdplane_info.dg_max_queued_updates,
1410 memory_order_relaxed);
1411}
1412
1413/*
1414 * Configure limit on the number of pending, queued updates.
1415 */
1416void dplane_set_in_queue_limit(uint32_t limit, bool set)
1417{
1418 /* Reset to default on 'unset' */
1419 if (!set)
1420 limit = DPLANE_DEFAULT_MAX_QUEUED;
1421
1422 atomic_store_explicit(&zdplane_info.dg_max_queued_updates, limit,
1423 memory_order_relaxed);
1424}
1425
1426/*
1427 * Retrieve the current queue depth of incoming, unprocessed updates
1428 */
1429uint32_t dplane_get_in_queue_len(void)
1430{
1431 return atomic_load_explicit(&zdplane_info.dg_routes_queued,
1432 memory_order_seq_cst);
1433}
1434
16c628de
MS
1435/*
1436 * Common dataplane context init with zebra namespace info.
1437 */
1438static int dplane_ctx_ns_init(struct zebra_dplane_ctx *ctx,
1439 struct zebra_ns *zns,
1440 bool is_update)
1441{
1442 dplane_info_from_zns(&(ctx->zd_ns_info), zns);
1443
1444#if defined(HAVE_NETLINK)
1445 /* Increment message counter after copying to context struct - may need
1446 * two messages in some 'update' cases.
1447 */
1448 if (is_update)
1449 zns->netlink_dplane.seq += 2;
1450 else
1451 zns->netlink_dplane.seq++;
1452#endif /* HAVE_NETLINK */
1453
1454 return AOK;
1455}
1456
7cdb1a84
MS
1457/*
1458 * Initialize a context block for a route update from zebra data structs.
1459 */
25779064 1460static int dplane_ctx_route_init(struct zebra_dplane_ctx *ctx,
5709131c 1461 enum dplane_op_e op,
7cdb1a84
MS
1462 struct route_node *rn,
1463 struct route_entry *re)
1464{
1465 int ret = EINVAL;
1466 const struct route_table *table = NULL;
1467 const rib_table_info_t *info;
1468 const struct prefix *p, *src_p;
1469 struct zebra_ns *zns;
1470 struct zebra_vrf *zvrf;
f183e380 1471 struct nexthop *nexthop;
7cdb1a84 1472
5709131c 1473 if (!ctx || !rn || !re)
7cdb1a84 1474 goto done;
7cdb1a84
MS
1475
1476 ctx->zd_op = op;
14b0bc8e 1477 ctx->zd_status = ZEBRA_DPLANE_REQUEST_SUCCESS;
7cdb1a84 1478
0f461727
MS
1479 ctx->u.rinfo.zd_type = re->type;
1480 ctx->u.rinfo.zd_old_type = re->type;
7cdb1a84
MS
1481
1482 /* Prefixes: dest, and optional source */
1483 srcdest_rnode_prefixes(rn, &p, &src_p);
1484
0f461727 1485 prefix_copy(&(ctx->u.rinfo.zd_dest), p);
7cdb1a84 1486
5709131c 1487 if (src_p)
0f461727 1488 prefix_copy(&(ctx->u.rinfo.zd_src), src_p);
5709131c 1489 else
0f461727 1490 memset(&(ctx->u.rinfo.zd_src), 0, sizeof(ctx->u.rinfo.zd_src));
7cdb1a84
MS
1491
1492 ctx->zd_table_id = re->table;
1493
0f461727
MS
1494 ctx->u.rinfo.zd_metric = re->metric;
1495 ctx->u.rinfo.zd_old_metric = re->metric;
7cdb1a84 1496 ctx->zd_vrf_id = re->vrf_id;
0f461727
MS
1497 ctx->u.rinfo.zd_mtu = re->mtu;
1498 ctx->u.rinfo.zd_nexthop_mtu = re->nexthop_mtu;
1499 ctx->u.rinfo.zd_instance = re->instance;
1500 ctx->u.rinfo.zd_tag = re->tag;
1501 ctx->u.rinfo.zd_old_tag = re->tag;
1502 ctx->u.rinfo.zd_distance = re->distance;
7cdb1a84
MS
1503
1504 table = srcdest_rnode_table(rn);
1505 info = table->info;
1506
0f461727
MS
1507 ctx->u.rinfo.zd_afi = info->afi;
1508 ctx->u.rinfo.zd_safi = info->safi;
7cdb1a84 1509
7cdb1a84 1510 /* Copy nexthops; recursive info is included too */
0eb97b86
MS
1511 copy_nexthops(&(ctx->u.rinfo.zd_ng.nexthop),
1512 re->nhe->nhg->nexthop, NULL);
7cdb1a84 1513
14b0bc8e 1514 /* Ensure that the dplane's nexthops flags are clear. */
0f461727 1515 for (ALL_NEXTHOPS(ctx->u.rinfo.zd_ng, nexthop))
f183e380 1516 UNSET_FLAG(nexthop->flags, NEXTHOP_FLAG_FIB);
f183e380 1517
cf363e1b
MS
1518 /* Don't need some info when capturing a system notification */
1519 if (op == DPLANE_OP_SYS_ROUTE_ADD ||
1520 op == DPLANE_OP_SYS_ROUTE_DELETE) {
1521 ret = AOK;
1522 goto done;
1523 }
1524
1525 /* Extract ns info - can't use pointers to 'core' structs */
1526 zvrf = vrf_info_lookup(re->vrf_id);
1527 zns = zvrf->zns;
1528 dplane_ctx_ns_init(ctx, zns, (op == DPLANE_OP_ROUTE_UPDATE));
1529
6df59152 1530#ifdef HAVE_NETLINK
81505946 1531 if (re->nhe_id) {
ae9bfa06
SW
1532 struct nhg_hash_entry *nhe =
1533 zebra_nhg_resolve(zebra_nhg_lookup_id(re->nhe_id));
6df59152 1534
ae9bfa06 1535 ctx->u.rinfo.nhe.id = nhe->id;
6df59152 1536 /*
ae9bfa06
SW
1537 * Check if the nhe is installed/queued before doing anything
1538 * with this route.
08c51a38
SW
1539 *
1540 * If its a delete we only use the prefix anyway, so this only
1541 * matters for INSTALL/UPDATE.
6df59152 1542 */
08c51a38
SW
1543 if (((op == DPLANE_OP_ROUTE_INSTALL)
1544 || (op == DPLANE_OP_ROUTE_UPDATE))
1545 && !CHECK_FLAG(nhe->flags, NEXTHOP_GROUP_INSTALLED)
ae9bfa06 1546 && !CHECK_FLAG(nhe->flags, NEXTHOP_GROUP_QUEUED)) {
6df59152
SW
1547 ret = ENOENT;
1548 goto done;
1549 }
98cda54a 1550 }
6df59152 1551#endif /* HAVE_NETLINK */
de3f5488 1552
7cdb1a84
MS
1553 /* Trying out the sequence number idea, so we can try to detect
1554 * when a result is stale.
1555 */
1485bbe7 1556 re->dplane_sequence = zebra_router_get_next_sequence();
7cdb1a84
MS
1557 ctx->zd_seq = re->dplane_sequence;
1558
1559 ret = AOK;
1560
1561done:
1562 return ret;
1563}
1564
f820d025
SW
1565/**
1566 * dplane_ctx_nexthop_init() - Initialize a context block for a nexthop update
1567 *
1568 * @ctx: Dataplane context to init
1569 * @op: Operation being performed
1570 * @nhe: Nexthop group hash entry
1571 *
1572 * Return: Result status
1573 */
1574static int dplane_ctx_nexthop_init(struct zebra_dplane_ctx *ctx,
1575 enum dplane_op_e op,
1576 struct nhg_hash_entry *nhe)
1577{
a7df21c4 1578 struct zebra_vrf *zvrf = NULL;
8e401b25 1579 struct zebra_ns *zns = NULL;
1909e63a 1580
f820d025
SW
1581 int ret = EINVAL;
1582
1583 if (!ctx || !nhe)
1584 goto done;
1585
1586 ctx->zd_op = op;
1587 ctx->zd_status = ZEBRA_DPLANE_REQUEST_SUCCESS;
1588
1589 /* Copy over nhe info */
0c8215cb
SW
1590 ctx->u.rinfo.nhe.id = nhe->id;
1591 ctx->u.rinfo.nhe.afi = nhe->afi;
1592 ctx->u.rinfo.nhe.vrf_id = nhe->vrf_id;
38e40db1 1593 ctx->u.rinfo.nhe.type = nhe->type;
0c8215cb
SW
1594
1595 nexthop_group_copy(&(ctx->u.rinfo.nhe.ng), nhe->nhg);
1596
98cda54a
SW
1597 /* If its a group, convert it to a grp array of ids */
1598 if (!zebra_nhg_depends_is_empty(nhe)
1599 && !CHECK_FLAG(nhe->flags, NEXTHOP_GROUP_RECURSIVE))
8dbc800f
SW
1600 ctx->u.rinfo.nhe.nh_grp_count = zebra_nhg_nhe2grp(
1601 ctx->u.rinfo.nhe.nh_grp, nhe, MULTIPATH_NUM);
f820d025 1602
a7df21c4
SW
1603 zvrf = vrf_info_lookup(nhe->vrf_id);
1604
1605 /*
1606 * Fallback to default namespace if the vrf got ripped out from under
1607 * us.
1608 */
1609 zns = zvrf ? zvrf->zns : zebra_ns_lookup(NS_DEFAULT);
1909e63a 1610
2d3c57e6
SW
1611 /*
1612 * TODO: Might not need to mark this as an update, since
1613 * it probably won't require two messages
1614 */
1909e63a
SW
1615 dplane_ctx_ns_init(ctx, zns, (op == DPLANE_OP_NH_UPDATE));
1616
f820d025
SW
1617 ret = AOK;
1618
1619done:
1620 return ret;
1621}
1622
16c628de
MS
1623/*
1624 * Capture information for an LSP update in a dplane context.
1625 */
1626static int dplane_ctx_lsp_init(struct zebra_dplane_ctx *ctx,
1627 enum dplane_op_e op,
1628 zebra_lsp_t *lsp)
1629{
1630 int ret = AOK;
1631 zebra_nhlfe_t *nhlfe, *new_nhlfe;
1632
1633 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
1634 zlog_debug("init dplane ctx %s: in-label %u ecmp# %d",
1635 dplane_op2str(op), lsp->ile.in_label,
1636 lsp->num_ecmp);
1637
1638 ctx->zd_op = op;
1639 ctx->zd_status = ZEBRA_DPLANE_REQUEST_SUCCESS;
1640
1641 /* Capture namespace info */
1642 dplane_ctx_ns_init(ctx, zebra_ns_lookup(NS_DEFAULT),
1643 (op == DPLANE_OP_LSP_UPDATE));
1644
1645 memset(&ctx->u.lsp, 0, sizeof(ctx->u.lsp));
1646
1647 ctx->u.lsp.ile = lsp->ile;
1648 ctx->u.lsp.addr_family = lsp->addr_family;
1649 ctx->u.lsp.num_ecmp = lsp->num_ecmp;
1650 ctx->u.lsp.flags = lsp->flags;
1651
1652 /* Copy source LSP's nhlfes, and capture 'best' nhlfe */
1653 for (nhlfe = lsp->nhlfe_list; nhlfe; nhlfe = nhlfe->next) {
1654 /* Not sure if this is meaningful... */
1655 if (nhlfe->nexthop == NULL)
1656 continue;
1657
1658 new_nhlfe =
1659 zebra_mpls_lsp_add_nhlfe(
1660 &(ctx->u.lsp),
1661 nhlfe->type,
1662 nhlfe->nexthop->type,
1663 &(nhlfe->nexthop->gate),
1664 nhlfe->nexthop->ifindex,
5065db0a
RW
1665 nhlfe->nexthop->nh_label->num_labels,
1666 nhlfe->nexthop->nh_label->label);
16c628de
MS
1667
1668 if (new_nhlfe == NULL || new_nhlfe->nexthop == NULL) {
1669 ret = ENOMEM;
1670 break;
1671 }
1672
1673 /* Need to copy flags too */
1674 new_nhlfe->flags = nhlfe->flags;
1675 new_nhlfe->nexthop->flags = nhlfe->nexthop->flags;
1676
1677 if (nhlfe == lsp->best_nhlfe)
1678 ctx->u.lsp.best_nhlfe = new_nhlfe;
1679 }
1680
1681 /* On error the ctx will be cleaned-up, so we don't need to
1682 * deal with any allocated nhlfe or nexthop structs here.
1683 */
1684
1685 return ret;
1686}
1687
97d8d05a
MS
1688/*
1689 * Capture information for an LSP update in a dplane context.
1690 */
1691static int dplane_ctx_pw_init(struct zebra_dplane_ctx *ctx,
1692 enum dplane_op_e op,
1693 struct zebra_pw *pw)
1694{
09cd307c
MS
1695 struct prefix p;
1696 afi_t afi;
1697 struct route_table *table;
1698 struct route_node *rn;
1699 struct route_entry *re;
1700
97d8d05a
MS
1701 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
1702 zlog_debug("init dplane ctx %s: pw '%s', loc %u, rem %u",
1703 dplane_op2str(op), pw->ifname, pw->local_label,
1704 pw->remote_label);
1705
1706 ctx->zd_op = op;
1707 ctx->zd_status = ZEBRA_DPLANE_REQUEST_SUCCESS;
1708
1709 /* Capture namespace info: no netlink support as of 12/18,
1710 * but just in case...
1711 */
1712 dplane_ctx_ns_init(ctx, zebra_ns_lookup(NS_DEFAULT), false);
1713
1714 memset(&ctx->u.pw, 0, sizeof(ctx->u.pw));
1715
1716 /* This name appears to be c-string, so we use string copy. */
7c7ef4a8 1717 strlcpy(ctx->zd_ifname, pw->ifname, sizeof(ctx->zd_ifname));
16d69787 1718
9bd9717b 1719 ctx->zd_vrf_id = pw->vrf_id;
7c7ef4a8 1720 ctx->zd_ifindex = pw->ifindex;
97d8d05a
MS
1721 ctx->u.pw.type = pw->type;
1722 ctx->u.pw.af = pw->af;
1723 ctx->u.pw.local_label = pw->local_label;
1724 ctx->u.pw.remote_label = pw->remote_label;
1725 ctx->u.pw.flags = pw->flags;
1726
16d69787 1727 ctx->u.pw.dest = pw->nexthop;
97d8d05a
MS
1728
1729 ctx->u.pw.fields = pw->data;
1730
09cd307c
MS
1731 /* Capture nexthop info for the pw destination. We need to look
1732 * up and use zebra datastructs, but we're running in the zebra
1733 * pthread here so that should be ok.
1734 */
1735 memcpy(&p.u, &pw->nexthop, sizeof(pw->nexthop));
1736 p.family = pw->af;
1737 p.prefixlen = ((pw->af == AF_INET) ?
1738 IPV4_MAX_PREFIXLEN : IPV6_MAX_PREFIXLEN);
1739
1740 afi = (pw->af == AF_INET) ? AFI_IP : AFI_IP6;
1741 table = zebra_vrf_table(afi, SAFI_UNICAST, pw->vrf_id);
1742 if (table) {
1743 rn = route_node_match(table, &p);
1744 if (rn) {
1745 RNODE_FOREACH_RE(rn, re) {
1746 if (CHECK_FLAG(re->flags, ZEBRA_FLAG_SELECTED))
1747 break;
1748 }
1749
1750 if (re)
1751 copy_nexthops(&(ctx->u.pw.nhg.nexthop),
0eb97b86 1752 re->nhe->nhg->nexthop, NULL);
09cd307c
MS
1753
1754 route_unlock_node(rn);
1755 }
1756 }
1757
9f2d0354 1758 return AOK;
97d8d05a
MS
1759}
1760
7cdb1a84 1761/*
3fe4ccc4 1762 * Enqueue a new update,
16c628de 1763 * and ensure an event is active for the dataplane pthread.
7cdb1a84 1764 */
3fe4ccc4 1765static int dplane_update_enqueue(struct zebra_dplane_ctx *ctx)
7cdb1a84
MS
1766{
1767 int ret = EINVAL;
91f16812 1768 uint32_t high, curr;
7cdb1a84 1769
16c628de 1770 /* Enqueue for processing by the dataplane pthread */
7cdb1a84
MS
1771 DPLANE_LOCK();
1772 {
3fe4ccc4 1773 TAILQ_INSERT_TAIL(&zdplane_info.dg_update_ctx_q, ctx,
25779064 1774 zd_q_entries);
7cdb1a84
MS
1775 }
1776 DPLANE_UNLOCK();
1777
e07e9549
MS
1778 curr = atomic_add_fetch_explicit(
1779#ifdef __clang__
1780 /* TODO -- issue with the clang atomic/intrinsics currently;
1781 * casting away the 'Atomic'-ness of the variable works.
1782 */
1783 (uint32_t *)&(zdplane_info.dg_routes_queued),
1784#else
1785 &(zdplane_info.dg_routes_queued),
1786#endif
1787 1, memory_order_seq_cst);
91f16812
MS
1788
1789 /* Maybe update high-water counter also */
1790 high = atomic_load_explicit(&zdplane_info.dg_routes_queued_max,
1791 memory_order_seq_cst);
1792 while (high < curr) {
1793 if (atomic_compare_exchange_weak_explicit(
1794 &zdplane_info.dg_routes_queued_max,
1795 &high, curr,
1796 memory_order_seq_cst,
1797 memory_order_seq_cst))
1798 break;
1799 }
1800
7cdb1a84 1801 /* Ensure that an event for the dataplane thread is active */
c831033f 1802 ret = dplane_provider_work_ready();
7cdb1a84 1803
5709131c 1804 return ret;
7cdb1a84
MS
1805}
1806
7cdb1a84
MS
1807/*
1808 * Utility that prepares a route update and enqueues it for processing
1809 */
655d681a
MS
1810static enum zebra_dplane_result
1811dplane_route_update_internal(struct route_node *rn,
1812 struct route_entry *re,
1813 struct route_entry *old_re,
5709131c 1814 enum dplane_op_e op)
7cdb1a84 1815{
655d681a 1816 enum zebra_dplane_result result = ZEBRA_DPLANE_REQUEST_FAILURE;
7cdb1a84 1817 int ret = EINVAL;
25779064 1818 struct zebra_dplane_ctx *ctx = NULL;
7cdb1a84
MS
1819
1820 /* Obtain context block */
1821 ctx = dplane_ctx_alloc();
7cdb1a84
MS
1822
1823 /* Init context with info from zebra data structs */
1824 ret = dplane_ctx_route_init(ctx, op, rn, re);
1825 if (ret == AOK) {
1826 /* Capture some extra info for update case
1827 * where there's a different 'old' route.
1828 */
b8e0423d
MS
1829 if ((op == DPLANE_OP_ROUTE_UPDATE) &&
1830 old_re && (old_re != re)) {
7cdb1a84
MS
1831 ctx->zd_is_update = true;
1832
1485bbe7
DS
1833 old_re->dplane_sequence =
1834 zebra_router_get_next_sequence();
7cdb1a84
MS
1835 ctx->zd_old_seq = old_re->dplane_sequence;
1836
0f461727
MS
1837 ctx->u.rinfo.zd_old_tag = old_re->tag;
1838 ctx->u.rinfo.zd_old_type = old_re->type;
1839 ctx->u.rinfo.zd_old_instance = old_re->instance;
1840 ctx->u.rinfo.zd_old_distance = old_re->distance;
1841 ctx->u.rinfo.zd_old_metric = old_re->metric;
01ce7cba
MS
1842
1843#ifndef HAVE_NETLINK
f183e380
MS
1844 /* For bsd, capture previous re's nexthops too, sigh.
1845 * We'll need these to do per-nexthop deletes.
1846 */
0f461727 1847 copy_nexthops(&(ctx->u.rinfo.zd_old_ng.nexthop),
0eb97b86 1848 old_re->nhe->nhg->nexthop, NULL);
01ce7cba 1849#endif /* !HAVE_NETLINK */
7cdb1a84
MS
1850 }
1851
1852 /* Enqueue context for processing */
3fe4ccc4 1853 ret = dplane_update_enqueue(ctx);
7cdb1a84
MS
1854 }
1855
91f16812 1856 /* Update counter */
25779064 1857 atomic_fetch_add_explicit(&zdplane_info.dg_routes_in, 1,
1d11b21f
MS
1858 memory_order_relaxed);
1859
91f16812 1860 if (ret == AOK)
655d681a 1861 result = ZEBRA_DPLANE_REQUEST_QUEUED;
16c628de 1862 else {
6df59152
SW
1863 if (ret == ENOENT)
1864 result = ZEBRA_DPLANE_REQUEST_SUCCESS;
1865 else
1866 atomic_fetch_add_explicit(&zdplane_info.dg_route_errors,
1867 1, memory_order_relaxed);
16c628de
MS
1868 if (ctx)
1869 dplane_ctx_free(&ctx);
1d11b21f 1870 }
7cdb1a84 1871
5709131c 1872 return result;
7cdb1a84
MS
1873}
1874
f820d025
SW
1875/**
1876 * dplane_nexthop_update_internal() - Helper for enqueuing nexthop changes
1877 *
1878 * @nhe: Nexthop group hash entry where the change occured
1879 * @op: The operation to be enqued
1880 *
1881 * Return: Result of the change
1882 */
1883static enum zebra_dplane_result
1884dplane_nexthop_update_internal(struct nhg_hash_entry *nhe, enum dplane_op_e op)
1885{
1886 enum zebra_dplane_result result = ZEBRA_DPLANE_REQUEST_FAILURE;
1887 int ret = EINVAL;
1888 struct zebra_dplane_ctx *ctx = NULL;
1889
1890 /* Obtain context block */
1891 ctx = dplane_ctx_alloc();
1892 if (!ctx) {
1893 ret = ENOMEM;
1894 goto done;
1895 }
1896
1897 ret = dplane_ctx_nexthop_init(ctx, op, nhe);
2d3c57e6 1898 if (ret == AOK)
f820d025 1899 ret = dplane_update_enqueue(ctx);
2d3c57e6 1900
f820d025
SW
1901done:
1902 /* Update counter */
1903 atomic_fetch_add_explicit(&zdplane_info.dg_nexthops_in, 1,
1904 memory_order_relaxed);
1905
1906 if (ret == AOK)
1907 result = ZEBRA_DPLANE_REQUEST_QUEUED;
1908 else {
81505946
SW
1909 atomic_fetch_add_explicit(&zdplane_info.dg_nexthop_errors, 1,
1910 memory_order_relaxed);
f820d025
SW
1911 if (ctx)
1912 dplane_ctx_free(&ctx);
1913 }
1914
1915 return result;
1916}
1917
7cdb1a84
MS
1918/*
1919 * Enqueue a route 'add' for the dataplane.
1920 */
655d681a
MS
1921enum zebra_dplane_result dplane_route_add(struct route_node *rn,
1922 struct route_entry *re)
7cdb1a84 1923{
655d681a 1924 enum zebra_dplane_result ret = ZEBRA_DPLANE_REQUEST_FAILURE;
7cdb1a84 1925
5709131c 1926 if (rn == NULL || re == NULL)
7cdb1a84 1927 goto done;
7cdb1a84
MS
1928
1929 ret = dplane_route_update_internal(rn, re, NULL,
1930 DPLANE_OP_ROUTE_INSTALL);
1931
1932done:
5709131c 1933 return ret;
7cdb1a84
MS
1934}
1935
1936/*
1937 * Enqueue a route update for the dataplane.
1938 */
655d681a
MS
1939enum zebra_dplane_result dplane_route_update(struct route_node *rn,
1940 struct route_entry *re,
1941 struct route_entry *old_re)
7cdb1a84 1942{
655d681a 1943 enum zebra_dplane_result ret = ZEBRA_DPLANE_REQUEST_FAILURE;
7cdb1a84 1944
5709131c 1945 if (rn == NULL || re == NULL)
7cdb1a84 1946 goto done;
7cdb1a84
MS
1947
1948 ret = dplane_route_update_internal(rn, re, old_re,
1949 DPLANE_OP_ROUTE_UPDATE);
7cdb1a84 1950done:
5709131c 1951 return ret;
7cdb1a84
MS
1952}
1953
1954/*
1955 * Enqueue a route removal for the dataplane.
1956 */
655d681a
MS
1957enum zebra_dplane_result dplane_route_delete(struct route_node *rn,
1958 struct route_entry *re)
7cdb1a84 1959{
655d681a 1960 enum zebra_dplane_result ret = ZEBRA_DPLANE_REQUEST_FAILURE;
7cdb1a84 1961
5709131c 1962 if (rn == NULL || re == NULL)
7cdb1a84 1963 goto done;
7cdb1a84
MS
1964
1965 ret = dplane_route_update_internal(rn, re, NULL,
1966 DPLANE_OP_ROUTE_DELETE);
1967
1968done:
5709131c 1969 return ret;
7cdb1a84
MS
1970}
1971
cf363e1b
MS
1972/*
1973 * Notify the dplane when system/connected routes change.
1974 */
1975enum zebra_dplane_result dplane_sys_route_add(struct route_node *rn,
1976 struct route_entry *re)
1977{
1978 enum zebra_dplane_result ret = ZEBRA_DPLANE_REQUEST_FAILURE;
1979
1980 /* Ignore this event unless a provider plugin has requested it. */
1981 if (!zdplane_info.dg_sys_route_notifs) {
1982 ret = ZEBRA_DPLANE_REQUEST_SUCCESS;
1983 goto done;
1984 }
1985
1986 if (rn == NULL || re == NULL)
1987 goto done;
1988
1989 ret = dplane_route_update_internal(rn, re, NULL,
1990 DPLANE_OP_SYS_ROUTE_ADD);
1991
1992done:
1993 return ret;
1994}
1995
1996/*
1997 * Notify the dplane when system/connected routes are deleted.
1998 */
1999enum zebra_dplane_result dplane_sys_route_del(struct route_node *rn,
2000 struct route_entry *re)
2001{
2002 enum zebra_dplane_result ret = ZEBRA_DPLANE_REQUEST_FAILURE;
2003
2004 /* Ignore this event unless a provider plugin has requested it. */
2005 if (!zdplane_info.dg_sys_route_notifs) {
2006 ret = ZEBRA_DPLANE_REQUEST_SUCCESS;
2007 goto done;
2008 }
2009
2010 if (rn == NULL || re == NULL)
2011 goto done;
2012
2013 ret = dplane_route_update_internal(rn, re, NULL,
2014 DPLANE_OP_SYS_ROUTE_DELETE);
2015
2016done:
2017 return ret;
2018}
2019
188a00e0
MS
2020/*
2021 * Update from an async notification, to bring other fibs up-to-date.
2022 */
2023enum zebra_dplane_result
2024dplane_route_notif_update(struct route_node *rn,
2025 struct route_entry *re,
2026 enum dplane_op_e op,
2027 struct zebra_dplane_ctx *ctx)
2028{
2029 enum zebra_dplane_result ret = ZEBRA_DPLANE_REQUEST_FAILURE;
2030 struct zebra_dplane_ctx *new_ctx = NULL;
2031 struct nexthop *nexthop;
2032
2033 if (rn == NULL || re == NULL)
2034 goto done;
2035
2036 new_ctx = dplane_ctx_alloc();
2037 if (new_ctx == NULL)
2038 goto done;
2039
2040 /* Init context with info from zebra data structs */
2041 dplane_ctx_route_init(new_ctx, op, rn, re);
2042
2043 /* For add/update, need to adjust the nexthops so that we match
2044 * the notification state, which may not be the route-entry/RIB
2045 * state.
2046 */
2047 if (op == DPLANE_OP_ROUTE_UPDATE ||
2048 op == DPLANE_OP_ROUTE_INSTALL) {
2049
2050 nexthops_free(new_ctx->u.rinfo.zd_ng.nexthop);
2051 new_ctx->u.rinfo.zd_ng.nexthop = NULL;
2052
2053 copy_nexthops(&(new_ctx->u.rinfo.zd_ng.nexthop),
2054 (rib_active_nhg(re))->nexthop, NULL);
2055
2056 for (ALL_NEXTHOPS(new_ctx->u.rinfo.zd_ng, nexthop))
2057 UNSET_FLAG(nexthop->flags, NEXTHOP_FLAG_FIB);
2058
2059 }
2060
2061 /* Capture info about the source of the notification, in 'ctx' */
2062 dplane_ctx_set_notif_provider(new_ctx,
2063 dplane_ctx_get_notif_provider(ctx));
2064
3fe4ccc4 2065 dplane_update_enqueue(new_ctx);
188a00e0
MS
2066
2067 ret = ZEBRA_DPLANE_REQUEST_QUEUED;
2068
2069done:
2070 return ret;
2071}
2072
f820d025
SW
2073/*
2074 * Enqueue a nexthop add for the dataplane.
2075 */
2076enum zebra_dplane_result dplane_nexthop_add(struct nhg_hash_entry *nhe)
2077{
2078 enum zebra_dplane_result ret = ZEBRA_DPLANE_REQUEST_FAILURE;
2079
2080 if (nhe)
2081 ret = dplane_nexthop_update_internal(nhe, DPLANE_OP_NH_INSTALL);
2082 return ret;
2083}
2084
2085/*
2086 * Enqueue a nexthop update for the dataplane.
81505946
SW
2087 *
2088 * Might not need this func since zebra's nexthop objects should be immutable?
f820d025
SW
2089 */
2090enum zebra_dplane_result dplane_nexthop_update(struct nhg_hash_entry *nhe)
2091{
2092 enum zebra_dplane_result ret = ZEBRA_DPLANE_REQUEST_FAILURE;
2093
2094 if (nhe)
2095 ret = dplane_nexthop_update_internal(nhe, DPLANE_OP_NH_UPDATE);
2096 return ret;
2097}
2098
2099/*
2100 * Enqueue a nexthop removal for the dataplane.
2101 */
2102enum zebra_dplane_result dplane_nexthop_delete(struct nhg_hash_entry *nhe)
2103{
2104 enum zebra_dplane_result ret = ZEBRA_DPLANE_REQUEST_FAILURE;
2105
2106 if (nhe)
2107 ret = dplane_nexthop_update_internal(nhe, DPLANE_OP_NH_DELETE);
2108
2109 return ret;
2110}
2111
16c628de
MS
2112/*
2113 * Enqueue LSP add for the dataplane.
2114 */
2115enum zebra_dplane_result dplane_lsp_add(zebra_lsp_t *lsp)
2116{
2117 enum zebra_dplane_result ret =
2118 lsp_update_internal(lsp, DPLANE_OP_LSP_INSTALL);
2119
2120 return ret;
2121}
2122
2123/*
2124 * Enqueue LSP update for the dataplane.
2125 */
2126enum zebra_dplane_result dplane_lsp_update(zebra_lsp_t *lsp)
2127{
2128 enum zebra_dplane_result ret =
2129 lsp_update_internal(lsp, DPLANE_OP_LSP_UPDATE);
2130
2131 return ret;
2132}
2133
2134/*
2135 * Enqueue LSP delete for the dataplane.
2136 */
2137enum zebra_dplane_result dplane_lsp_delete(zebra_lsp_t *lsp)
2138{
2139 enum zebra_dplane_result ret =
2140 lsp_update_internal(lsp, DPLANE_OP_LSP_DELETE);
2141
2142 return ret;
2143}
2144
188a00e0
MS
2145/* Update or un-install resulting from an async notification */
2146enum zebra_dplane_result
2147dplane_lsp_notif_update(zebra_lsp_t *lsp,
2148 enum dplane_op_e op,
2149 struct zebra_dplane_ctx *notif_ctx)
2150{
2151 enum zebra_dplane_result result = ZEBRA_DPLANE_REQUEST_FAILURE;
2152 int ret = EINVAL;
2153 struct zebra_dplane_ctx *ctx = NULL;
2154
2155 /* Obtain context block */
2156 ctx = dplane_ctx_alloc();
2157 if (ctx == NULL) {
2158 ret = ENOMEM;
2159 goto done;
2160 }
2161
2162 ret = dplane_ctx_lsp_init(ctx, op, lsp);
2163 if (ret != AOK)
2164 goto done;
2165
2166 /* Capture info about the source of the notification */
2167 dplane_ctx_set_notif_provider(
2168 ctx,
2169 dplane_ctx_get_notif_provider(notif_ctx));
2170
3fe4ccc4 2171 ret = dplane_update_enqueue(ctx);
188a00e0
MS
2172
2173done:
2174 /* Update counter */
2175 atomic_fetch_add_explicit(&zdplane_info.dg_lsps_in, 1,
2176 memory_order_relaxed);
2177
2178 if (ret == AOK)
2179 result = ZEBRA_DPLANE_REQUEST_QUEUED;
2180 else {
2181 atomic_fetch_add_explicit(&zdplane_info.dg_lsp_errors, 1,
2182 memory_order_relaxed);
2183 if (ctx)
2184 dplane_ctx_free(&ctx);
2185 }
2186 return result;
2187}
2188
97d8d05a
MS
2189/*
2190 * Enqueue pseudowire install for the dataplane.
2191 */
2192enum zebra_dplane_result dplane_pw_install(struct zebra_pw *pw)
2193{
2194 return pw_update_internal(pw, DPLANE_OP_PW_INSTALL);
2195}
2196
2197/*
2198 * Enqueue pseudowire un-install for the dataplane.
2199 */
2200enum zebra_dplane_result dplane_pw_uninstall(struct zebra_pw *pw)
2201{
2202 return pw_update_internal(pw, DPLANE_OP_PW_UNINSTALL);
2203}
2204
16c628de
MS
2205/*
2206 * Common internal LSP update utility
2207 */
2208static enum zebra_dplane_result lsp_update_internal(zebra_lsp_t *lsp,
2209 enum dplane_op_e op)
2210{
2211 enum zebra_dplane_result result = ZEBRA_DPLANE_REQUEST_FAILURE;
2212 int ret = EINVAL;
2213 struct zebra_dplane_ctx *ctx = NULL;
2214
2215 /* Obtain context block */
2216 ctx = dplane_ctx_alloc();
16c628de
MS
2217
2218 ret = dplane_ctx_lsp_init(ctx, op, lsp);
2219 if (ret != AOK)
2220 goto done;
2221
3fe4ccc4 2222 ret = dplane_update_enqueue(ctx);
16c628de
MS
2223
2224done:
2225 /* Update counter */
2226 atomic_fetch_add_explicit(&zdplane_info.dg_lsps_in, 1,
2227 memory_order_relaxed);
2228
2229 if (ret == AOK)
2230 result = ZEBRA_DPLANE_REQUEST_QUEUED;
2231 else {
2232 atomic_fetch_add_explicit(&zdplane_info.dg_lsp_errors, 1,
2233 memory_order_relaxed);
d8e479a3 2234 dplane_ctx_free(&ctx);
16c628de
MS
2235 }
2236
2237 return result;
2238}
2239
97d8d05a
MS
2240/*
2241 * Internal, common handler for pseudowire updates.
2242 */
2243static enum zebra_dplane_result pw_update_internal(struct zebra_pw *pw,
2244 enum dplane_op_e op)
2245{
2246 enum zebra_dplane_result result = ZEBRA_DPLANE_REQUEST_FAILURE;
2247 int ret;
2248 struct zebra_dplane_ctx *ctx = NULL;
2249
2250 ctx = dplane_ctx_alloc();
97d8d05a
MS
2251
2252 ret = dplane_ctx_pw_init(ctx, op, pw);
2253 if (ret != AOK)
2254 goto done;
2255
3fe4ccc4 2256 ret = dplane_update_enqueue(ctx);
97d8d05a
MS
2257
2258done:
2259 /* Update counter */
2260 atomic_fetch_add_explicit(&zdplane_info.dg_pws_in, 1,
2261 memory_order_relaxed);
2262
2263 if (ret == AOK)
2264 result = ZEBRA_DPLANE_REQUEST_QUEUED;
2265 else {
2266 atomic_fetch_add_explicit(&zdplane_info.dg_pw_errors, 1,
2267 memory_order_relaxed);
d8e479a3 2268 dplane_ctx_free(&ctx);
97d8d05a
MS
2269 }
2270
2271 return result;
2272}
2273
a4a4802a
MS
2274/*
2275 * Enqueue interface address add for the dataplane.
2276 */
2277enum zebra_dplane_result dplane_intf_addr_set(const struct interface *ifp,
2278 const struct connected *ifc)
2279{
64168803
MS
2280#if !defined(HAVE_NETLINK) && defined(HAVE_STRUCT_IFALIASREQ)
2281 /* Extra checks for this OS path. */
2282
2283 /* Don't configure PtP addresses on broadcast ifs or reverse */
2284 if (!(ifp->flags & IFF_POINTOPOINT) != !CONNECTED_PEER(ifc)) {
2285 if (IS_ZEBRA_DEBUG_KERNEL || IS_ZEBRA_DEBUG_DPLANE)
2286 zlog_debug("Failed to set intf addr: mismatch p2p and connected");
2287
2288 return ZEBRA_DPLANE_REQUEST_FAILURE;
2289 }
2290
2291 /* Ensure that no existing installed v4 route conflicts with
2292 * the new interface prefix. This check must be done in the
2293 * zebra pthread context, and any route delete (if needed)
2294 * is enqueued before the interface address programming attempt.
2295 */
2296 if (ifc->address->family == AF_INET) {
2297 struct prefix_ipv4 *p;
2298
2299 p = (struct prefix_ipv4 *)ifc->address;
a36898e7 2300 rib_lookup_and_pushup(p, ifp->vrf_id);
64168803
MS
2301 }
2302#endif
2303
2304 return intf_addr_update_internal(ifp, ifc, DPLANE_OP_ADDR_INSTALL);
a4a4802a
MS
2305}
2306
2307/*
2308 * Enqueue interface address remove/uninstall for the dataplane.
2309 */
2310enum zebra_dplane_result dplane_intf_addr_unset(const struct interface *ifp,
2311 const struct connected *ifc)
2312{
64168803
MS
2313 return intf_addr_update_internal(ifp, ifc, DPLANE_OP_ADDR_UNINSTALL);
2314}
2315
2316static enum zebra_dplane_result intf_addr_update_internal(
2317 const struct interface *ifp, const struct connected *ifc,
2318 enum dplane_op_e op)
2319{
2320 enum zebra_dplane_result result = ZEBRA_DPLANE_REQUEST_FAILURE;
2321 int ret = EINVAL;
2322 struct zebra_dplane_ctx *ctx = NULL;
2323 struct zebra_ns *zns;
2324
2325 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL) {
2326 char addr_str[PREFIX_STRLEN];
2327
2328 prefix2str(ifc->address, addr_str, sizeof(addr_str));
2329
2330 zlog_debug("init intf ctx %s: idx %d, addr %u:%s",
a36898e7 2331 dplane_op2str(op), ifp->ifindex, ifp->vrf_id,
64168803
MS
2332 addr_str);
2333 }
2334
2335 ctx = dplane_ctx_alloc();
64168803
MS
2336
2337 ctx->zd_op = op;
2338 ctx->zd_status = ZEBRA_DPLANE_REQUEST_SUCCESS;
a36898e7 2339 ctx->zd_vrf_id = ifp->vrf_id;
64168803 2340
a36898e7 2341 zns = zebra_ns_lookup(ifp->vrf_id);
64168803
MS
2342 dplane_ctx_ns_init(ctx, zns, false);
2343
2344 /* Init the interface-addr-specific area */
2345 memset(&ctx->u.intf, 0, sizeof(ctx->u.intf));
2346
7c7ef4a8
MS
2347 strlcpy(ctx->zd_ifname, ifp->name, sizeof(ctx->zd_ifname));
2348 ctx->zd_ifindex = ifp->ifindex;
64168803
MS
2349 ctx->u.intf.prefix = *(ifc->address);
2350
2351 if (if_is_broadcast(ifp))
2352 ctx->u.intf.flags |= DPLANE_INTF_BROADCAST;
2353
2354 if (CONNECTED_PEER(ifc)) {
2355 ctx->u.intf.dest_prefix = *(ifc->destination);
2356 ctx->u.intf.flags |=
2357 (DPLANE_INTF_CONNECTED | DPLANE_INTF_HAS_DEST);
64168803
MS
2358 }
2359
2360 if (CHECK_FLAG(ifc->flags, ZEBRA_IFA_SECONDARY))
2361 ctx->u.intf.flags |= DPLANE_INTF_SECONDARY;
2362
2363 if (ifc->label) {
2364 size_t len;
2365
2366 ctx->u.intf.flags |= DPLANE_INTF_HAS_LABEL;
2367
2368 /* Use embedded buffer if it's adequate; else allocate. */
2369 len = strlen(ifc->label);
2370
2371 if (len < sizeof(ctx->u.intf.label_buf)) {
b7b7bf31 2372 strlcpy(ctx->u.intf.label_buf, ifc->label,
64168803
MS
2373 sizeof(ctx->u.intf.label_buf));
2374 ctx->u.intf.label = ctx->u.intf.label_buf;
2375 } else {
2376 ctx->u.intf.label = strdup(ifc->label);
2377 }
2378 }
2379
3fe4ccc4 2380 ret = dplane_update_enqueue(ctx);
64168803 2381
64168803
MS
2382 /* Increment counter */
2383 atomic_fetch_add_explicit(&zdplane_info.dg_intf_addrs_in, 1,
2384 memory_order_relaxed);
2385
2386 if (ret == AOK)
2387 result = ZEBRA_DPLANE_REQUEST_QUEUED;
2388 else {
2389 /* Error counter */
2390 atomic_fetch_add_explicit(&zdplane_info.dg_intf_addr_errors,
2391 1, memory_order_relaxed);
d8e479a3 2392 dplane_ctx_free(&ctx);
64168803
MS
2393 }
2394
2395 return result;
a4a4802a
MS
2396}
2397
7597ac7b
MS
2398/*
2399 * Enqueue vxlan/evpn mac add (or update).
2400 */
2401enum zebra_dplane_result dplane_mac_add(const struct interface *ifp,
478566d6 2402 const struct interface *bridge_ifp,
7597ac7b
MS
2403 vlanid_t vid,
2404 const struct ethaddr *mac,
2405 struct in_addr vtep_ip,
2406 bool sticky)
2407{
2408 enum zebra_dplane_result result;
2409
2410 /* Use common helper api */
478566d6
MS
2411 result = mac_update_internal(DPLANE_OP_MAC_INSTALL, ifp, bridge_ifp,
2412 vid, mac, vtep_ip, sticky);
7597ac7b
MS
2413 return result;
2414}
2415
2416/*
2417 * Enqueue vxlan/evpn mac delete.
2418 */
2419enum zebra_dplane_result dplane_mac_del(const struct interface *ifp,
478566d6 2420 const struct interface *bridge_ifp,
7597ac7b
MS
2421 vlanid_t vid,
2422 const struct ethaddr *mac,
2423 struct in_addr vtep_ip)
2424{
2425 enum zebra_dplane_result result;
2426
2427 /* Use common helper api */
478566d6
MS
2428 result = mac_update_internal(DPLANE_OP_MAC_DELETE, ifp, bridge_ifp,
2429 vid, mac, vtep_ip, false);
7597ac7b
MS
2430 return result;
2431}
2432
2433/*
2434 * Common helper api for MAC address/vxlan updates
2435 */
2436static enum zebra_dplane_result
2437mac_update_internal(enum dplane_op_e op,
2438 const struct interface *ifp,
478566d6 2439 const struct interface *br_ifp,
7597ac7b
MS
2440 vlanid_t vid,
2441 const struct ethaddr *mac,
2442 struct in_addr vtep_ip,
2443 bool sticky)
2444{
2445 enum zebra_dplane_result result = ZEBRA_DPLANE_REQUEST_FAILURE;
2446 int ret;
2447 struct zebra_dplane_ctx *ctx = NULL;
2448 struct zebra_ns *zns;
2449
036d93c0
MS
2450 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL) {
2451 char buf1[ETHER_ADDR_STRLEN], buf2[PREFIX_STRLEN];
2452
2453 zlog_debug("init mac ctx %s: mac %s, ifp %s, vtep %s",
2454 dplane_op2str(op),
2455 prefix_mac2str(mac, buf1, sizeof(buf1)),
2456 ifp->name,
2457 inet_ntop(AF_INET, &vtep_ip, buf2, sizeof(buf2)));
2458 }
2459
7597ac7b
MS
2460 ctx = dplane_ctx_alloc();
2461
2462 ctx->zd_op = op;
2463 ctx->zd_status = ZEBRA_DPLANE_REQUEST_SUCCESS;
2464 ctx->zd_vrf_id = ifp->vrf_id;
2465
2466 zns = zebra_ns_lookup(ifp->vrf_id);
2467 dplane_ctx_ns_init(ctx, zns, false);
2468
2469 strlcpy(ctx->zd_ifname, ifp->name, sizeof(ctx->zd_ifname));
2470 ctx->zd_ifindex = ifp->ifindex;
2471
2472 /* Init the mac-specific data area */
2473 memset(&ctx->u.macinfo, 0, sizeof(ctx->u.macinfo));
2474
478566d6 2475 ctx->u.macinfo.br_ifindex = br_ifp->ifindex;
7597ac7b
MS
2476 ctx->u.macinfo.vtep_ip = vtep_ip;
2477 ctx->u.macinfo.mac = *mac;
2478 ctx->u.macinfo.vid = vid;
2479 ctx->u.macinfo.is_sticky = sticky;
2480
2481 /* Enqueue for processing on the dplane pthread */
2482 ret = dplane_update_enqueue(ctx);
2483
2484 /* Increment counter */
2485 atomic_fetch_add_explicit(&zdplane_info.dg_macs_in, 1,
2486 memory_order_relaxed);
2487
2488 if (ret == AOK)
2489 result = ZEBRA_DPLANE_REQUEST_QUEUED;
2490 else {
2491 /* Error counter */
2492 atomic_fetch_add_explicit(&zdplane_info.dg_mac_errors, 1,
2493 memory_order_relaxed);
2494 dplane_ctx_free(&ctx);
2495 }
2496
2497 return result;
2498}
2499
931fa60c
MS
2500/*
2501 * Enqueue evpn neighbor add for the dataplane.
2502 */
2503enum zebra_dplane_result dplane_neigh_add(const struct interface *ifp,
2504 const struct ipaddr *ip,
2505 const struct ethaddr *mac,
2506 uint32_t flags)
2507{
2508 enum zebra_dplane_result result = ZEBRA_DPLANE_REQUEST_FAILURE;
2509
2510 result = neigh_update_internal(DPLANE_OP_NEIGH_INSTALL,
2511 ifp, mac, ip, flags, 0);
2512
2513 return result;
2514}
2515
2516/*
2517 * Enqueue evpn neighbor update for the dataplane.
2518 */
2519enum zebra_dplane_result dplane_neigh_update(const struct interface *ifp,
2520 const struct ipaddr *ip,
2521 const struct ethaddr *mac)
2522{
0bbd4ff4 2523 enum zebra_dplane_result result;
931fa60c
MS
2524
2525 result = neigh_update_internal(DPLANE_OP_NEIGH_UPDATE,
2526 ifp, mac, ip, 0, DPLANE_NUD_PROBE);
2527
2528 return result;
2529}
2530
2531/*
2532 * Enqueue evpn neighbor delete for the dataplane.
2533 */
2534enum zebra_dplane_result dplane_neigh_delete(const struct interface *ifp,
2535 const struct ipaddr *ip)
2536{
0bbd4ff4 2537 enum zebra_dplane_result result;
931fa60c
MS
2538
2539 result = neigh_update_internal(DPLANE_OP_NEIGH_DELETE,
2540 ifp, NULL, ip, 0, 0);
2541
2542 return result;
2543}
2544
0bbd4ff4
MS
2545/*
2546 * Enqueue evpn VTEP add for the dataplane.
2547 */
2548enum zebra_dplane_result dplane_vtep_add(const struct interface *ifp,
2549 const struct in_addr *ip,
2550 vni_t vni)
2551{
2552 enum zebra_dplane_result result;
2553 struct ethaddr mac = { {0, 0, 0, 0, 0, 0} };
2554 struct ipaddr addr;
2555
2556 if (IS_ZEBRA_DEBUG_VXLAN)
2557 zlog_debug("Install %s into flood list for VNI %u intf %s(%u)",
2558 inet_ntoa(*ip), vni, ifp->name, ifp->ifindex);
2559
2560 SET_IPADDR_V4(&addr);
2561 addr.ipaddr_v4 = *ip;
2562
2563 result = neigh_update_internal(DPLANE_OP_VTEP_ADD,
2564 ifp, &mac, &addr, 0, 0);
2565
2566 return result;
2567}
2568
2569/*
2570 * Enqueue evpn VTEP add for the dataplane.
2571 */
2572enum zebra_dplane_result dplane_vtep_delete(const struct interface *ifp,
2573 const struct in_addr *ip,
2574 vni_t vni)
2575{
2576 enum zebra_dplane_result result;
2577 struct ethaddr mac = { {0, 0, 0, 0, 0, 0} };
2578 struct ipaddr addr;
2579
2580 if (IS_ZEBRA_DEBUG_VXLAN)
2581 zlog_debug(
2582 "Uninstall %s from flood list for VNI %u intf %s(%u)",
2583 inet_ntoa(*ip), vni, ifp->name, ifp->ifindex);
2584
2585 SET_IPADDR_V4(&addr);
2586 addr.ipaddr_v4 = *ip;
2587
2588 result = neigh_update_internal(DPLANE_OP_VTEP_DELETE,
2589 ifp, &mac, &addr, 0, 0);
2590
2591 return result;
2592}
2593
931fa60c
MS
2594/*
2595 * Common helper api for evpn neighbor updates
2596 */
2597static enum zebra_dplane_result
2598neigh_update_internal(enum dplane_op_e op,
2599 const struct interface *ifp,
2600 const struct ethaddr *mac,
2601 const struct ipaddr *ip,
2602 uint32_t flags, uint16_t state)
2603{
2604 enum zebra_dplane_result result = ZEBRA_DPLANE_REQUEST_FAILURE;
2605 int ret;
2606 struct zebra_dplane_ctx *ctx = NULL;
2607 struct zebra_ns *zns;
2608
2609 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL) {
2610 char buf1[ETHER_ADDR_STRLEN], buf2[PREFIX_STRLEN];
2611
2612 zlog_debug("init neigh ctx %s: ifp %s, mac %s, ip %s",
2613 dplane_op2str(op),
2614 prefix_mac2str(mac, buf1, sizeof(buf1)),
2615 ifp->name,
2616 ipaddr2str(ip, buf2, sizeof(buf2)));
2617 }
2618
2619 ctx = dplane_ctx_alloc();
2620
2621 ctx->zd_op = op;
2622 ctx->zd_status = ZEBRA_DPLANE_REQUEST_SUCCESS;
2623 ctx->zd_vrf_id = ifp->vrf_id;
2624
2625 zns = zebra_ns_lookup(ifp->vrf_id);
2626 dplane_ctx_ns_init(ctx, zns, false);
2627
2628 strlcpy(ctx->zd_ifname, ifp->name, sizeof(ctx->zd_ifname));
2629 ctx->zd_ifindex = ifp->ifindex;
2630
2631 /* Init the neighbor-specific data area */
2632 memset(&ctx->u.neigh, 0, sizeof(ctx->u.neigh));
2633
2634 ctx->u.neigh.ip_addr = *ip;
2635 if (mac)
2636 ctx->u.neigh.mac = *mac;
2637 ctx->u.neigh.flags = flags;
2638 ctx->u.neigh.state = state;
2639
2640 /* Enqueue for processing on the dplane pthread */
2641 ret = dplane_update_enqueue(ctx);
2642
2643 /* Increment counter */
2644 atomic_fetch_add_explicit(&zdplane_info.dg_neighs_in, 1,
2645 memory_order_relaxed);
2646
2647 if (ret == AOK)
2648 result = ZEBRA_DPLANE_REQUEST_QUEUED;
2649 else {
2650 /* Error counter */
2651 atomic_fetch_add_explicit(&zdplane_info.dg_neigh_errors, 1,
2652 memory_order_relaxed);
2653 dplane_ctx_free(&ctx);
2654 }
2655
2656 return result;
2657}
2658
1d11b21f
MS
2659/*
2660 * Handler for 'show dplane'
2661 */
2662int dplane_show_helper(struct vty *vty, bool detailed)
2663{
16c628de
MS
2664 uint64_t queued, queue_max, limit, errs, incoming, yields,
2665 other_errs;
1d11b21f 2666
4dfd7a02 2667 /* Using atomics because counters are being changed in different
c831033f 2668 * pthread contexts.
4dfd7a02 2669 */
25779064 2670 incoming = atomic_load_explicit(&zdplane_info.dg_routes_in,
1d11b21f 2671 memory_order_relaxed);
91f16812
MS
2672 limit = atomic_load_explicit(&zdplane_info.dg_max_queued_updates,
2673 memory_order_relaxed);
25779064 2674 queued = atomic_load_explicit(&zdplane_info.dg_routes_queued,
1d11b21f 2675 memory_order_relaxed);
25779064 2676 queue_max = atomic_load_explicit(&zdplane_info.dg_routes_queued_max,
4dfd7a02 2677 memory_order_relaxed);
25779064 2678 errs = atomic_load_explicit(&zdplane_info.dg_route_errors,
1d11b21f 2679 memory_order_relaxed);
c831033f
MS
2680 yields = atomic_load_explicit(&zdplane_info.dg_update_yields,
2681 memory_order_relaxed);
16c628de
MS
2682 other_errs = atomic_load_explicit(&zdplane_info.dg_other_errors,
2683 memory_order_relaxed);
1d11b21f 2684
c831033f
MS
2685 vty_out(vty, "Zebra dataplane:\nRoute updates: %"PRIu64"\n",
2686 incoming);
1d11b21f 2687 vty_out(vty, "Route update errors: %"PRIu64"\n", errs);
16c628de 2688 vty_out(vty, "Other errors : %"PRIu64"\n", other_errs);
91f16812 2689 vty_out(vty, "Route update queue limit: %"PRIu64"\n", limit);
1d11b21f 2690 vty_out(vty, "Route update queue depth: %"PRIu64"\n", queued);
4dfd7a02 2691 vty_out(vty, "Route update queue max: %"PRIu64"\n", queue_max);
4280d91c
MS
2692 vty_out(vty, "Dplane update yields: %"PRIu64"\n", yields);
2693
2694 incoming = atomic_load_explicit(&zdplane_info.dg_lsps_in,
2695 memory_order_relaxed);
2696 errs = atomic_load_explicit(&zdplane_info.dg_lsp_errors,
2697 memory_order_relaxed);
2698 vty_out(vty, "LSP updates: %"PRIu64"\n", incoming);
2699 vty_out(vty, "LSP update errors: %"PRIu64"\n", errs);
2700
2701 incoming = atomic_load_explicit(&zdplane_info.dg_pws_in,
2702 memory_order_relaxed);
2703 errs = atomic_load_explicit(&zdplane_info.dg_pw_errors,
2704 memory_order_relaxed);
2705 vty_out(vty, "PW updates: %"PRIu64"\n", incoming);
2706 vty_out(vty, "PW update errors: %"PRIu64"\n", errs);
2707
2708 incoming = atomic_load_explicit(&zdplane_info.dg_intf_addrs_in,
2709 memory_order_relaxed);
2710 errs = atomic_load_explicit(&zdplane_info.dg_intf_addr_errors,
2711 memory_order_relaxed);
2712 vty_out(vty, "Intf addr updates: %"PRIu64"\n", incoming);
2713 vty_out(vty, "Intf addr errors: %"PRIu64"\n", errs);
2714
2715 incoming = atomic_load_explicit(&zdplane_info.dg_macs_in,
2716 memory_order_relaxed);
2717 errs = atomic_load_explicit(&zdplane_info.dg_mac_errors,
2718 memory_order_relaxed);
2719 vty_out(vty, "EVPN MAC updates: %"PRIu64"\n", incoming);
2720 vty_out(vty, "EVPN MAC errors: %"PRIu64"\n", errs);
1d11b21f 2721
931fa60c
MS
2722 incoming = atomic_load_explicit(&zdplane_info.dg_neighs_in,
2723 memory_order_relaxed);
2724 errs = atomic_load_explicit(&zdplane_info.dg_neigh_errors,
2725 memory_order_relaxed);
2726 vty_out(vty, "EVPN neigh updates: %"PRIu64"\n", incoming);
2727 vty_out(vty, "EVPN neigh errors: %"PRIu64"\n", errs);
2728
1d11b21f
MS
2729 return CMD_SUCCESS;
2730}
2731
2732/*
2733 * Handler for 'show dplane providers'
2734 */
2735int dplane_show_provs_helper(struct vty *vty, bool detailed)
2736{
c831033f
MS
2737 struct zebra_dplane_provider *prov;
2738 uint64_t in, in_max, out, out_max;
2739
2740 vty_out(vty, "Zebra dataplane providers:\n");
2741
2742 DPLANE_LOCK();
2743 prov = TAILQ_FIRST(&zdplane_info.dg_providers_q);
2744 DPLANE_UNLOCK();
2745
2746 /* Show counters, useful info from each registered provider */
2747 while (prov) {
2748
2749 in = atomic_load_explicit(&prov->dp_in_counter,
2750 memory_order_relaxed);
2751 in_max = atomic_load_explicit(&prov->dp_in_max,
2752 memory_order_relaxed);
2753 out = atomic_load_explicit(&prov->dp_out_counter,
2754 memory_order_relaxed);
2755 out_max = atomic_load_explicit(&prov->dp_out_max,
2756 memory_order_relaxed);
2757
c9d17fe8
MS
2758 vty_out(vty, "%s (%u): in: %"PRIu64", q_max: %"PRIu64", "
2759 "out: %"PRIu64", q_max: %"PRIu64"\n",
c831033f
MS
2760 prov->dp_name, prov->dp_id, in, in_max, out, out_max);
2761
2762 DPLANE_LOCK();
2763 prov = TAILQ_NEXT(prov, dp_prov_link);
2764 DPLANE_UNLOCK();
2765 }
1d11b21f
MS
2766
2767 return CMD_SUCCESS;
2768}
2769
f26730e1
MS
2770/*
2771 * Helper for 'show run' etc.
2772 */
2773int dplane_config_write_helper(struct vty *vty)
2774{
2775 if (zdplane_info.dg_max_queued_updates != DPLANE_DEFAULT_MAX_QUEUED)
2776 vty_out(vty, "zebra dplane limit %u\n",
2777 zdplane_info.dg_max_queued_updates);
2778
2779 return 0;
2780}
2781
b8e0423d
MS
2782/*
2783 * Provider registration
2784 */
2785int dplane_provider_register(const char *name,
c831033f
MS
2786 enum dplane_provider_prio prio,
2787 int flags,
1dd4ea8a 2788 int (*start_fp)(struct zebra_dplane_provider *),
4c206c8f
MS
2789 int (*fp)(struct zebra_dplane_provider *),
2790 int (*fini_fp)(struct zebra_dplane_provider *,
2791 bool early),
1ff8a248
MS
2792 void *data,
2793 struct zebra_dplane_provider **prov_p)
b8e0423d
MS
2794{
2795 int ret = 0;
6fb51ccb 2796 struct zebra_dplane_provider *p = NULL, *last;
b8e0423d
MS
2797
2798 /* Validate */
2799 if (fp == NULL) {
2800 ret = EINVAL;
2801 goto done;
2802 }
2803
2804 if (prio <= DPLANE_PRIO_NONE ||
1bcea841 2805 prio > DPLANE_PRIO_LAST) {
b8e0423d
MS
2806 ret = EINVAL;
2807 goto done;
2808 }
2809
2810 /* Allocate and init new provider struct */
25779064 2811 p = XCALLOC(MTYPE_DP_PROV, sizeof(struct zebra_dplane_provider));
b8e0423d 2812
c831033f
MS
2813 pthread_mutex_init(&(p->dp_mutex), NULL);
2814 TAILQ_INIT(&(p->dp_ctx_in_q));
2815 TAILQ_INIT(&(p->dp_ctx_out_q));
b8e0423d 2816
932dbb4d 2817 p->dp_flags = flags;
b8e0423d
MS
2818 p->dp_priority = prio;
2819 p->dp_fp = fp;
1dd4ea8a 2820 p->dp_start = start_fp;
18c37974 2821 p->dp_fini = fini_fp;
c831033f 2822 p->dp_data = data;
18c37974 2823
c831033f 2824 /* Lock - the dplane pthread may be running */
18c37974 2825 DPLANE_LOCK();
b8e0423d 2826
25779064 2827 p->dp_id = ++zdplane_info.dg_provider_id;
b8e0423d 2828
c831033f
MS
2829 if (name)
2830 strlcpy(p->dp_name, name, DPLANE_PROVIDER_NAMELEN);
2831 else
2832 snprintf(p->dp_name, DPLANE_PROVIDER_NAMELEN,
2833 "provider-%u", p->dp_id);
2834
b8e0423d 2835 /* Insert into list ordered by priority */
c831033f 2836 TAILQ_FOREACH(last, &zdplane_info.dg_providers_q, dp_prov_link) {
5709131c 2837 if (last->dp_priority > p->dp_priority)
b8e0423d 2838 break;
b8e0423d
MS
2839 }
2840
5709131c 2841 if (last)
c831033f 2842 TAILQ_INSERT_BEFORE(last, p, dp_prov_link);
5709131c 2843 else
25779064 2844 TAILQ_INSERT_TAIL(&zdplane_info.dg_providers_q, p,
c831033f 2845 dp_prov_link);
b8e0423d 2846
18c37974
MS
2847 /* And unlock */
2848 DPLANE_UNLOCK();
2849
c831033f
MS
2850 if (IS_ZEBRA_DEBUG_DPLANE)
2851 zlog_debug("dplane: registered new provider '%s' (%u), prio %d",
2852 p->dp_name, p->dp_id, p->dp_priority);
2853
b8e0423d 2854done:
1ff8a248
MS
2855 if (prov_p)
2856 *prov_p = p;
2857
5709131c 2858 return ret;
b8e0423d
MS
2859}
2860
c831033f
MS
2861/* Accessors for provider attributes */
2862const char *dplane_provider_get_name(const struct zebra_dplane_provider *prov)
2863{
2864 return prov->dp_name;
2865}
2866
2867uint32_t dplane_provider_get_id(const struct zebra_dplane_provider *prov)
2868{
2869 return prov->dp_id;
2870}
2871
2872void *dplane_provider_get_data(const struct zebra_dplane_provider *prov)
2873{
2874 return prov->dp_data;
2875}
2876
2877int dplane_provider_get_work_limit(const struct zebra_dplane_provider *prov)
2878{
2879 return zdplane_info.dg_updates_per_cycle;
2880}
2881
ad6aad4d
MS
2882/* Lock/unlock a provider's mutex - iff the provider was registered with
2883 * the THREADED flag.
2884 */
2885void dplane_provider_lock(struct zebra_dplane_provider *prov)
2886{
2887 if (dplane_provider_is_threaded(prov))
2888 DPLANE_PROV_LOCK(prov);
2889}
2890
2891void dplane_provider_unlock(struct zebra_dplane_provider *prov)
2892{
2893 if (dplane_provider_is_threaded(prov))
2894 DPLANE_PROV_UNLOCK(prov);
2895}
2896
c831033f
MS
2897/*
2898 * Dequeue and maintain associated counter
2899 */
2900struct zebra_dplane_ctx *dplane_provider_dequeue_in_ctx(
2901 struct zebra_dplane_provider *prov)
2902{
2903 struct zebra_dplane_ctx *ctx = NULL;
2904
ad6aad4d 2905 dplane_provider_lock(prov);
c831033f
MS
2906
2907 ctx = TAILQ_FIRST(&(prov->dp_ctx_in_q));
2908 if (ctx) {
2909 TAILQ_REMOVE(&(prov->dp_ctx_in_q), ctx, zd_q_entries);
c9d17fe8
MS
2910
2911 atomic_fetch_sub_explicit(&prov->dp_in_queued, 1,
2912 memory_order_relaxed);
c831033f
MS
2913 }
2914
ad6aad4d 2915 dplane_provider_unlock(prov);
c831033f
MS
2916
2917 return ctx;
2918}
2919
2920/*
2921 * Dequeue work to a list, return count
2922 */
2923int dplane_provider_dequeue_in_list(struct zebra_dplane_provider *prov,
2924 struct dplane_ctx_q *listp)
2925{
2926 int limit, ret;
2927 struct zebra_dplane_ctx *ctx;
2928
2929 limit = zdplane_info.dg_updates_per_cycle;
2930
ad6aad4d 2931 dplane_provider_lock(prov);
c831033f
MS
2932
2933 for (ret = 0; ret < limit; ret++) {
2934 ctx = TAILQ_FIRST(&(prov->dp_ctx_in_q));
2935 if (ctx) {
2936 TAILQ_REMOVE(&(prov->dp_ctx_in_q), ctx, zd_q_entries);
2937
2938 TAILQ_INSERT_TAIL(listp, ctx, zd_q_entries);
2939 } else {
2940 break;
2941 }
2942 }
2943
c9d17fe8
MS
2944 if (ret > 0)
2945 atomic_fetch_sub_explicit(&prov->dp_in_queued, ret,
2946 memory_order_relaxed);
2947
ad6aad4d 2948 dplane_provider_unlock(prov);
c831033f
MS
2949
2950 return ret;
2951}
2952
2953/*
2954 * Enqueue and maintain associated counter
2955 */
2956void dplane_provider_enqueue_out_ctx(struct zebra_dplane_provider *prov,
2957 struct zebra_dplane_ctx *ctx)
2958{
ad6aad4d 2959 dplane_provider_lock(prov);
c831033f
MS
2960
2961 TAILQ_INSERT_TAIL(&(prov->dp_ctx_out_q), ctx,
2962 zd_q_entries);
2963
ad6aad4d 2964 dplane_provider_unlock(prov);
c831033f
MS
2965
2966 atomic_fetch_add_explicit(&(prov->dp_out_counter), 1,
2967 memory_order_relaxed);
2968}
2969
62b8bb7a
MS
2970/*
2971 * Accessor for provider object
2972 */
c831033f
MS
2973bool dplane_provider_is_threaded(const struct zebra_dplane_provider *prov)
2974{
2975 return (prov->dp_flags & DPLANE_PROV_FLAG_THREADED);
2976}
2977
62b8bb7a
MS
2978/*
2979 * Internal helper that copies information from a zebra ns object; this is
2980 * called in the zebra main pthread context as part of dplane ctx init.
2981 */
2982static void dplane_info_from_zns(struct zebra_dplane_info *ns_info,
2983 struct zebra_ns *zns)
2984{
2985 ns_info->ns_id = zns->ns_id;
2986
2987#if defined(HAVE_NETLINK)
2988 ns_info->is_cmd = true;
2989 ns_info->nls = zns->netlink_dplane;
2990#endif /* NETLINK */
2991}
2992
c831033f
MS
2993/*
2994 * Provider api to signal that work/events are available
2995 * for the dataplane pthread.
2996 */
2997int dplane_provider_work_ready(void)
2998{
e5a60d82
MS
2999 /* Note that during zebra startup, we may be offered work before
3000 * the dataplane pthread (and thread-master) are ready. We want to
3001 * enqueue the work, but the event-scheduling machinery may not be
3002 * available.
3003 */
3004 if (zdplane_info.dg_run) {
3005 thread_add_event(zdplane_info.dg_master,
3006 dplane_thread_loop, NULL, 0,
3007 &zdplane_info.dg_t_update);
3008 }
c831033f
MS
3009
3010 return AOK;
3011}
3012
593e4eb1
MS
3013/*
3014 * Enqueue a context directly to zebra main.
3015 */
3016void dplane_provider_enqueue_to_zebra(struct zebra_dplane_ctx *ctx)
3017{
3018 struct dplane_ctx_q temp_list;
3019
3020 /* Zebra's api takes a list, so we need to use a temporary list */
3021 TAILQ_INIT(&temp_list);
3022
3023 TAILQ_INSERT_TAIL(&temp_list, ctx, zd_q_entries);
3024 (zdplane_info.dg_results_cb)(&temp_list);
3025}
3026
7cdb1a84 3027/*
c831033f 3028 * Kernel dataplane provider
7cdb1a84 3029 */
c831033f 3030
16c628de
MS
3031/*
3032 * Handler for kernel LSP updates
3033 */
3034static enum zebra_dplane_result
3035kernel_dplane_lsp_update(struct zebra_dplane_ctx *ctx)
3036{
3037 enum zebra_dplane_result res;
3038
3039 /* Call into the synchronous kernel-facing code here */
3040 res = kernel_lsp_update(ctx);
3041
3042 if (res != ZEBRA_DPLANE_REQUEST_SUCCESS)
3043 atomic_fetch_add_explicit(
3044 &zdplane_info.dg_lsp_errors, 1,
3045 memory_order_relaxed);
3046
3047 return res;
3048}
3049
c10a646d
MS
3050/*
3051 * Handler for kernel pseudowire updates
3052 */
3053static enum zebra_dplane_result
3054kernel_dplane_pw_update(struct zebra_dplane_ctx *ctx)
3055{
3056 enum zebra_dplane_result res;
3057
3058 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
3059 zlog_debug("Dplane pw %s: op %s af %d loc: %u rem: %u",
7c7ef4a8 3060 dplane_ctx_get_ifname(ctx),
c10a646d
MS
3061 dplane_op2str(ctx->zd_op),
3062 dplane_ctx_get_pw_af(ctx),
3063 dplane_ctx_get_pw_local_label(ctx),
3064 dplane_ctx_get_pw_remote_label(ctx));
3065
3066 res = kernel_pw_update(ctx);
3067
3068 if (res != ZEBRA_DPLANE_REQUEST_SUCCESS)
3069 atomic_fetch_add_explicit(
3070 &zdplane_info.dg_pw_errors, 1,
3071 memory_order_relaxed);
3072
3073 return res;
3074}
3075
16c628de
MS
3076/*
3077 * Handler for kernel route updates
3078 */
3079static enum zebra_dplane_result
3080kernel_dplane_route_update(struct zebra_dplane_ctx *ctx)
3081{
3082 enum zebra_dplane_result res;
3083
3084 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL) {
3085 char dest_str[PREFIX_STRLEN];
3086
3087 prefix2str(dplane_ctx_get_dest(ctx),
3088 dest_str, sizeof(dest_str));
3089
3090 zlog_debug("%u:%s Dplane route update ctx %p op %s",
3091 dplane_ctx_get_vrf(ctx), dest_str,
3092 ctx, dplane_op2str(dplane_ctx_get_op(ctx)));
3093 }
3094
3095 /* Call into the synchronous kernel-facing code here */
3096 res = kernel_route_update(ctx);
3097
3098 if (res != ZEBRA_DPLANE_REQUEST_SUCCESS)
3099 atomic_fetch_add_explicit(
3100 &zdplane_info.dg_route_errors, 1,
3101 memory_order_relaxed);
3102
3103 return res;
3104}
3105
64168803
MS
3106/*
3107 * Handler for kernel-facing interface address updates
3108 */
3109static enum zebra_dplane_result
3110kernel_dplane_address_update(struct zebra_dplane_ctx *ctx)
3111{
3112 enum zebra_dplane_result res;
3113
64168803
MS
3114 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL) {
3115 char dest_str[PREFIX_STRLEN];
3116
3117 prefix2str(dplane_ctx_get_intf_addr(ctx), dest_str,
3118 sizeof(dest_str));
3119
3120 zlog_debug("Dplane intf %s, idx %u, addr %s",
3121 dplane_op2str(dplane_ctx_get_op(ctx)),
3122 dplane_ctx_get_ifindex(ctx), dest_str);
3123 }
3124
3125 res = kernel_address_update_ctx(ctx);
3126
3127 if (res != ZEBRA_DPLANE_REQUEST_SUCCESS)
3128 atomic_fetch_add_explicit(&zdplane_info.dg_intf_addr_errors,
3129 1, memory_order_relaxed);
3130
3131 return res;
3132}
3133
f820d025
SW
3134/**
3135 * kernel_dplane_nexthop_update() - Handler for kernel nexthop updates
3136 *
3137 * @ctx: Dataplane context
3138 *
3139 * Return: Dataplane result flag
3140 */
3141static enum zebra_dplane_result
3142kernel_dplane_nexthop_update(struct zebra_dplane_ctx *ctx)
3143{
3144 enum zebra_dplane_result res;
3145
3146 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL) {
3147 zlog_debug("ID (%u) Dplane nexthop update ctx %p op %s",
0c8215cb 3148 dplane_ctx_get_nhe_id(ctx), ctx,
f820d025
SW
3149 dplane_op2str(dplane_ctx_get_op(ctx)));
3150 }
3151
3152 res = kernel_nexthop_update(ctx);
3153
3154 if (res != ZEBRA_DPLANE_REQUEST_SUCCESS)
3155 atomic_fetch_add_explicit(&zdplane_info.dg_nexthop_errors, 1,
3156 memory_order_relaxed);
3157
3158 return res;
3159}
3160
036d93c0 3161/*
931fa60c 3162 * Handler for kernel-facing EVPN MAC address updates
036d93c0
MS
3163 */
3164static enum zebra_dplane_result
3165kernel_dplane_mac_update(struct zebra_dplane_ctx *ctx)
3166{
3167 enum zebra_dplane_result res;
3168
3169 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL) {
3170 char buf[ETHER_ADDR_STRLEN];
3171
3172 prefix_mac2str(dplane_ctx_mac_get_addr(ctx), buf,
3173 sizeof(buf));
3174
3175 zlog_debug("Dplane %s, mac %s, ifindex %u",
3176 dplane_op2str(dplane_ctx_get_op(ctx)),
3177 buf, dplane_ctx_get_ifindex(ctx));
3178 }
3179
3180 res = kernel_mac_update_ctx(ctx);
3181
3182 if (res != ZEBRA_DPLANE_REQUEST_SUCCESS)
3183 atomic_fetch_add_explicit(&zdplane_info.dg_mac_errors,
3184 1, memory_order_relaxed);
3185
3186 return res;
3187}
3188
931fa60c
MS
3189/*
3190 * Handler for kernel-facing EVPN neighbor updates
3191 */
3192static enum zebra_dplane_result
3193kernel_dplane_neigh_update(struct zebra_dplane_ctx *ctx)
3194{
3195 enum zebra_dplane_result res;
3196
3197 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL) {
3198 char buf[PREFIX_STRLEN];
3199
3200 ipaddr2str(dplane_ctx_neigh_get_ipaddr(ctx), buf,
3201 sizeof(buf));
3202
3203 zlog_debug("Dplane %s, ip %s, ifindex %u",
3204 dplane_op2str(dplane_ctx_get_op(ctx)),
3205 buf, dplane_ctx_get_ifindex(ctx));
3206 }
3207
3208 res = kernel_neigh_update_ctx(ctx);
3209
3210 if (res != ZEBRA_DPLANE_REQUEST_SUCCESS)
3211 atomic_fetch_add_explicit(&zdplane_info.dg_neigh_errors,
3212 1, memory_order_relaxed);
3213
3214 return res;
3215}
3216
c831033f
MS
3217/*
3218 * Kernel provider callback
3219 */
3220static int kernel_dplane_process_func(struct zebra_dplane_provider *prov)
7cdb1a84 3221{
c831033f
MS
3222 enum zebra_dplane_result res;
3223 struct zebra_dplane_ctx *ctx;
3224 int counter, limit;
7cdb1a84 3225
c831033f 3226 limit = dplane_provider_get_work_limit(prov);
7cdb1a84 3227
c831033f
MS
3228 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
3229 zlog_debug("dplane provider '%s': processing",
3230 dplane_provider_get_name(prov));
7cdb1a84 3231
c831033f 3232 for (counter = 0; counter < limit; counter++) {
91f16812 3233
c831033f
MS
3234 ctx = dplane_provider_dequeue_in_ctx(prov);
3235 if (ctx == NULL)
3236 break;
d8c16a95 3237
9677961e
MS
3238 /* A previous provider plugin may have asked to skip the
3239 * kernel update.
3240 */
3241 if (dplane_ctx_is_skip_kernel(ctx)) {
3242 res = ZEBRA_DPLANE_REQUEST_SUCCESS;
3243 goto skip_one;
3244 }
3245
16c628de
MS
3246 /* Dispatch to appropriate kernel-facing apis */
3247 switch (dplane_ctx_get_op(ctx)) {
1d11b21f 3248
16c628de
MS
3249 case DPLANE_OP_ROUTE_INSTALL:
3250 case DPLANE_OP_ROUTE_UPDATE:
3251 case DPLANE_OP_ROUTE_DELETE:
3252 res = kernel_dplane_route_update(ctx);
3253 break;
d8c16a95 3254
f820d025
SW
3255 case DPLANE_OP_NH_INSTALL:
3256 case DPLANE_OP_NH_UPDATE:
3257 case DPLANE_OP_NH_DELETE:
3258 res = kernel_dplane_nexthop_update(ctx);
3259 break;
3260
16c628de
MS
3261 case DPLANE_OP_LSP_INSTALL:
3262 case DPLANE_OP_LSP_UPDATE:
3263 case DPLANE_OP_LSP_DELETE:
3264 res = kernel_dplane_lsp_update(ctx);
3265 break;
d8c16a95 3266
c10a646d
MS
3267 case DPLANE_OP_PW_INSTALL:
3268 case DPLANE_OP_PW_UNINSTALL:
3269 res = kernel_dplane_pw_update(ctx);
3270 break;
3271
64168803
MS
3272 case DPLANE_OP_ADDR_INSTALL:
3273 case DPLANE_OP_ADDR_UNINSTALL:
3274 res = kernel_dplane_address_update(ctx);
3275 break;
3276
036d93c0
MS
3277 case DPLANE_OP_MAC_INSTALL:
3278 case DPLANE_OP_MAC_DELETE:
3279 res = kernel_dplane_mac_update(ctx);
3280 break;
3281
931fa60c
MS
3282 case DPLANE_OP_NEIGH_INSTALL:
3283 case DPLANE_OP_NEIGH_UPDATE:
3284 case DPLANE_OP_NEIGH_DELETE:
0bbd4ff4
MS
3285 case DPLANE_OP_VTEP_ADD:
3286 case DPLANE_OP_VTEP_DELETE:
931fa60c
MS
3287 res = kernel_dplane_neigh_update(ctx);
3288 break;
3289
104e3ad9 3290 /* Ignore 'notifications' - no-op */
cf363e1b
MS
3291 case DPLANE_OP_SYS_ROUTE_ADD:
3292 case DPLANE_OP_SYS_ROUTE_DELETE:
54818e3b 3293 case DPLANE_OP_ROUTE_NOTIFY:
104e3ad9 3294 case DPLANE_OP_LSP_NOTIFY:
cf363e1b
MS
3295 res = ZEBRA_DPLANE_REQUEST_SUCCESS;
3296 break;
3297
16c628de 3298 default:
c831033f 3299 atomic_fetch_add_explicit(
16c628de 3300 &zdplane_info.dg_other_errors, 1,
c831033f 3301 memory_order_relaxed);
d8c16a95 3302
16c628de
MS
3303 res = ZEBRA_DPLANE_REQUEST_FAILURE;
3304 break;
3305 }
3306
9677961e 3307skip_one:
c831033f
MS
3308 dplane_ctx_set_status(ctx, res);
3309
3310 dplane_provider_enqueue_out_ctx(prov, ctx);
3311 }
3312
3313 /* Ensure that we'll run the work loop again if there's still
3314 * more work to do.
3315 */
3316 if (counter >= limit) {
3317 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
3318 zlog_debug("dplane provider '%s' reached max updates %d",
3319 dplane_provider_get_name(prov), counter);
3320
3321 atomic_fetch_add_explicit(&zdplane_info.dg_update_yields,
3322 1, memory_order_relaxed);
3323
3324 dplane_provider_work_ready();
3325 }
3326
3327 return 0;
3328}
3329
e5a60d82
MS
3330#if DPLANE_TEST_PROVIDER
3331
c831033f
MS
3332/*
3333 * Test dataplane provider plugin
3334 */
3335
3336/*
3337 * Test provider process callback
3338 */
3339static int test_dplane_process_func(struct zebra_dplane_provider *prov)
3340{
3341 struct zebra_dplane_ctx *ctx;
3342 int counter, limit;
3343
3344 /* Just moving from 'in' queue to 'out' queue */
3345
3346 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
3347 zlog_debug("dplane provider '%s': processing",
3348 dplane_provider_get_name(prov));
3349
3350 limit = dplane_provider_get_work_limit(prov);
3351
3352 for (counter = 0; counter < limit; counter++) {
3353
3354 ctx = dplane_provider_dequeue_in_ctx(prov);
3355 if (ctx == NULL)
3356 break;
3357
cf363e1b
MS
3358 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
3359 zlog_debug("dplane provider '%s': op %s",
3360 dplane_provider_get_name(prov),
3361 dplane_op2str(dplane_ctx_get_op(ctx)));
3362
c831033f
MS
3363 dplane_ctx_set_status(ctx, ZEBRA_DPLANE_REQUEST_SUCCESS);
3364
3365 dplane_provider_enqueue_out_ctx(prov, ctx);
3366 }
3367
c9d17fe8
MS
3368 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
3369 zlog_debug("dplane provider '%s': processed %d",
3370 dplane_provider_get_name(prov), counter);
3371
c831033f
MS
3372 /* Ensure that we'll run the work loop again if there's still
3373 * more work to do.
3374 */
3375 if (counter >= limit)
3376 dplane_provider_work_ready();
3377
3378 return 0;
3379}
3380
3381/*
3382 * Test provider shutdown/fini callback
3383 */
3384static int test_dplane_shutdown_func(struct zebra_dplane_provider *prov,
3385 bool early)
3386{
3387 if (IS_ZEBRA_DEBUG_DPLANE)
3388 zlog_debug("dplane provider '%s': %sshutdown",
3389 dplane_provider_get_name(prov),
3390 early ? "early " : "");
3391
3392 return 0;
3393}
e5a60d82 3394#endif /* DPLANE_TEST_PROVIDER */
c831033f
MS
3395
3396/*
3397 * Register default kernel provider
3398 */
3399static void dplane_provider_init(void)
3400{
3401 int ret;
3402
3403 ret = dplane_provider_register("Kernel",
3404 DPLANE_PRIO_KERNEL,
1dd4ea8a 3405 DPLANE_PROV_FLAGS_DEFAULT, NULL,
c831033f
MS
3406 kernel_dplane_process_func,
3407 NULL,
1ff8a248 3408 NULL, NULL);
c831033f
MS
3409
3410 if (ret != AOK)
3411 zlog_err("Unable to register kernel dplane provider: %d",
3412 ret);
3413
e5a60d82
MS
3414#if DPLANE_TEST_PROVIDER
3415 /* Optional test provider ... */
c831033f
MS
3416 ret = dplane_provider_register("Test",
3417 DPLANE_PRIO_PRE_KERNEL,
1dd4ea8a 3418 DPLANE_PROV_FLAGS_DEFAULT, NULL,
c831033f
MS
3419 test_dplane_process_func,
3420 test_dplane_shutdown_func,
1ff8a248 3421 NULL /* data */, NULL);
c831033f
MS
3422
3423 if (ret != AOK)
3424 zlog_err("Unable to register test dplane provider: %d",
3425 ret);
e5a60d82 3426#endif /* DPLANE_TEST_PROVIDER */
7cdb1a84
MS
3427}
3428
4dfd7a02
MS
3429/* Indicates zebra shutdown/exit is in progress. Some operations may be
3430 * simplified or skipped during shutdown processing.
3431 */
3432bool dplane_is_in_shutdown(void)
3433{
25779064 3434 return zdplane_info.dg_is_shutdown;
4dfd7a02
MS
3435}
3436
3437/*
3438 * Early or pre-shutdown, de-init notification api. This runs pretty
3439 * early during zebra shutdown, as a signal to stop new work and prepare
3440 * for updates generated by shutdown/cleanup activity, as zebra tries to
3441 * remove everything it's responsible for.
c9d17fe8 3442 * NB: This runs in the main zebra pthread context.
4dfd7a02
MS
3443 */
3444void zebra_dplane_pre_finish(void)
3445{
3446 if (IS_ZEBRA_DEBUG_DPLANE)
3447 zlog_debug("Zebra dataplane pre-fini called");
3448
25779064 3449 zdplane_info.dg_is_shutdown = true;
4dfd7a02 3450
c9d17fe8 3451 /* TODO -- Notify provider(s) of pending shutdown */
4dfd7a02
MS
3452}
3453
3454/*
3455 * Utility to determine whether work remains enqueued within the dplane;
3456 * used during system shutdown processing.
3457 */
3458static bool dplane_work_pending(void)
3459{
c9d17fe8 3460 bool ret = false;
25779064 3461 struct zebra_dplane_ctx *ctx;
c9d17fe8 3462 struct zebra_dplane_provider *prov;
4dfd7a02 3463
c831033f
MS
3464 /* TODO -- just checking incoming/pending work for now, must check
3465 * providers
3466 */
4dfd7a02
MS
3467 DPLANE_LOCK();
3468 {
3fe4ccc4 3469 ctx = TAILQ_FIRST(&zdplane_info.dg_update_ctx_q);
c9d17fe8 3470 prov = TAILQ_FIRST(&zdplane_info.dg_providers_q);
4dfd7a02
MS
3471 }
3472 DPLANE_UNLOCK();
3473
c9d17fe8
MS
3474 if (ctx != NULL) {
3475 ret = true;
3476 goto done;
3477 }
3478
3479 while (prov) {
3480
ad6aad4d 3481 dplane_provider_lock(prov);
c9d17fe8
MS
3482
3483 ctx = TAILQ_FIRST(&(prov->dp_ctx_in_q));
3484 if (ctx == NULL)
3485 ctx = TAILQ_FIRST(&(prov->dp_ctx_out_q));
3486
ad6aad4d 3487 dplane_provider_unlock(prov);
c9d17fe8
MS
3488
3489 if (ctx != NULL)
3490 break;
3491
3492 DPLANE_LOCK();
3493 prov = TAILQ_NEXT(prov, dp_prov_link);
3494 DPLANE_UNLOCK();
3495 }
3496
3497 if (ctx != NULL)
3498 ret = true;
3499
3500done:
3501 return ret;
4dfd7a02
MS
3502}
3503
3504/*
3505 * Shutdown-time intermediate callback, used to determine when all pending
3506 * in-flight updates are done. If there's still work to do, reschedules itself.
3507 * If all work is done, schedules an event to the main zebra thread for
3508 * final zebra shutdown.
3509 * This runs in the dplane pthread context.
3510 */
3511static int dplane_check_shutdown_status(struct thread *event)
3512{
3513 if (IS_ZEBRA_DEBUG_DPLANE)
3514 zlog_debug("Zebra dataplane shutdown status check called");
3515
3516 if (dplane_work_pending()) {
3517 /* Reschedule dplane check on a short timer */
25779064 3518 thread_add_timer_msec(zdplane_info.dg_master,
4dfd7a02
MS
3519 dplane_check_shutdown_status,
3520 NULL, 100,
25779064 3521 &zdplane_info.dg_t_shutdown_check);
4dfd7a02
MS
3522
3523 /* TODO - give up and stop waiting after a short time? */
3524
3525 } else {
3526 /* We appear to be done - schedule a final callback event
3527 * for the zebra main pthread.
3528 */
3801e764 3529 thread_add_event(zrouter.master, zebra_finalize, NULL, 0, NULL);
4dfd7a02
MS
3530 }
3531
3532 return 0;
3533}
3534
18c37974 3535/*
1d11b21f 3536 * Shutdown, de-init api. This runs pretty late during shutdown,
4dfd7a02
MS
3537 * after zebra has tried to free/remove/uninstall all routes during shutdown.
3538 * At this point, dplane work may still remain to be done, so we can't just
3539 * blindly terminate. If there's still work to do, we'll periodically check
3540 * and when done, we'll enqueue a task to the zebra main thread for final
3541 * termination processing.
3542 *
1d11b21f 3543 * NB: This runs in the main zebra thread context.
18c37974 3544 */
1d11b21f 3545void zebra_dplane_finish(void)
18c37974 3546{
4dfd7a02
MS
3547 if (IS_ZEBRA_DEBUG_DPLANE)
3548 zlog_debug("Zebra dataplane fini called");
3549
25779064 3550 thread_add_event(zdplane_info.dg_master,
4dfd7a02 3551 dplane_check_shutdown_status, NULL, 0,
25779064 3552 &zdplane_info.dg_t_shutdown_check);
4dfd7a02
MS
3553}
3554
c831033f
MS
3555/*
3556 * Main dataplane pthread event loop. The thread takes new incoming work
3557 * and offers it to the first provider. It then iterates through the
3558 * providers, taking complete work from each one and offering it
3559 * to the next in order. At each step, a limited number of updates are
3560 * processed during a cycle in order to provide some fairness.
14b0bc8e
MS
3561 *
3562 * This loop through the providers is only run once, so that the dataplane
3563 * pthread can look for other pending work - such as i/o work on behalf of
3564 * providers.
c831033f
MS
3565 */
3566static int dplane_thread_loop(struct thread *event)
3567{
3568 struct dplane_ctx_q work_list;
3569 struct dplane_ctx_q error_list;
3570 struct zebra_dplane_provider *prov;
3571 struct zebra_dplane_ctx *ctx, *tctx;
3572 int limit, counter, error_counter;
c9d17fe8 3573 uint64_t curr, high;
c831033f
MS
3574
3575 /* Capture work limit per cycle */
3576 limit = zdplane_info.dg_updates_per_cycle;
3577
14b0bc8e 3578 /* Init temporary lists used to move contexts among providers */
c831033f 3579 TAILQ_INIT(&work_list);
14b0bc8e
MS
3580 TAILQ_INIT(&error_list);
3581 error_counter = 0;
c831033f
MS
3582
3583 /* Check for zebra shutdown */
3584 if (!zdplane_info.dg_run)
3585 goto done;
3586
3587 /* Dequeue some incoming work from zebra (if any) onto the temporary
3588 * working list.
3589 */
3590 DPLANE_LOCK();
3591
3592 /* Locate initial registered provider */
3593 prov = TAILQ_FIRST(&zdplane_info.dg_providers_q);
3594
14b0bc8e 3595 /* Move new work from incoming list to temp list */
c831033f 3596 for (counter = 0; counter < limit; counter++) {
3fe4ccc4 3597 ctx = TAILQ_FIRST(&zdplane_info.dg_update_ctx_q);
c831033f 3598 if (ctx) {
3fe4ccc4 3599 TAILQ_REMOVE(&zdplane_info.dg_update_ctx_q, ctx,
c831033f
MS
3600 zd_q_entries);
3601
c831033f
MS
3602 ctx->zd_provider = prov->dp_id;
3603
3604 TAILQ_INSERT_TAIL(&work_list, ctx, zd_q_entries);
3605 } else {
3606 break;
3607 }
3608 }
3609
3610 DPLANE_UNLOCK();
3611
14b0bc8e
MS
3612 atomic_fetch_sub_explicit(&zdplane_info.dg_routes_queued, counter,
3613 memory_order_relaxed);
3614
c831033f
MS
3615 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
3616 zlog_debug("dplane: incoming new work counter: %d", counter);
3617
3618 /* Iterate through the registered providers, offering new incoming
3619 * work. If the provider has outgoing work in its queue, take that
3620 * work for the next provider
3621 */
3622 while (prov) {
3623
14b0bc8e
MS
3624 /* At each iteration, the temporary work list has 'counter'
3625 * items.
3626 */
c831033f
MS
3627 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
3628 zlog_debug("dplane enqueues %d new work to provider '%s'",
3629 counter, dplane_provider_get_name(prov));
3630
3631 /* Capture current provider id in each context; check for
3632 * error status.
3633 */
3634 TAILQ_FOREACH_SAFE(ctx, &work_list, zd_q_entries, tctx) {
3635 if (dplane_ctx_get_status(ctx) ==
3636 ZEBRA_DPLANE_REQUEST_SUCCESS) {
3637 ctx->zd_provider = prov->dp_id;
3638 } else {
3639 /*
3640 * TODO -- improve error-handling: recirc
3641 * errors backwards so that providers can
3642 * 'undo' their work (if they want to)
3643 */
3644
3645 /* Move to error list; will be returned
3646 * zebra main.
3647 */
3648 TAILQ_REMOVE(&work_list, ctx, zd_q_entries);
3649 TAILQ_INSERT_TAIL(&error_list,
3650 ctx, zd_q_entries);
3651 error_counter++;
3652 }
3653 }
3654
3655 /* Enqueue new work to the provider */
ad6aad4d 3656 dplane_provider_lock(prov);
c831033f
MS
3657
3658 if (TAILQ_FIRST(&work_list))
3659 TAILQ_CONCAT(&(prov->dp_ctx_in_q), &work_list,
3660 zd_q_entries);
3661
c9d17fe8
MS
3662 atomic_fetch_add_explicit(&prov->dp_in_counter, counter,
3663 memory_order_relaxed);
3664 atomic_fetch_add_explicit(&prov->dp_in_queued, counter,
3665 memory_order_relaxed);
3666 curr = atomic_load_explicit(&prov->dp_in_queued,
3667 memory_order_relaxed);
3668 high = atomic_load_explicit(&prov->dp_in_max,
3669 memory_order_relaxed);
3670 if (curr > high)
3671 atomic_store_explicit(&prov->dp_in_max, curr,
c831033f
MS
3672 memory_order_relaxed);
3673
ad6aad4d 3674 dplane_provider_unlock(prov);
c831033f 3675
14b0bc8e
MS
3676 /* Reset the temp list (though the 'concat' may have done this
3677 * already), and the counter
3678 */
c831033f
MS
3679 TAILQ_INIT(&work_list);
3680 counter = 0;
3681
14b0bc8e
MS
3682 /* Call into the provider code. Note that this is
3683 * unconditional: we offer to do work even if we don't enqueue
3684 * any _new_ work.
3685 */
c831033f
MS
3686 (*prov->dp_fp)(prov);
3687
3688 /* Check for zebra shutdown */
3689 if (!zdplane_info.dg_run)
3690 break;
3691
3692 /* Dequeue completed work from the provider */
ad6aad4d 3693 dplane_provider_lock(prov);
c831033f
MS
3694
3695 while (counter < limit) {
3696 ctx = TAILQ_FIRST(&(prov->dp_ctx_out_q));
3697 if (ctx) {
3698 TAILQ_REMOVE(&(prov->dp_ctx_out_q), ctx,
3699 zd_q_entries);
3700
3701 TAILQ_INSERT_TAIL(&work_list,
3702 ctx, zd_q_entries);
3703 counter++;
3704 } else
3705 break;
3706 }
3707
ad6aad4d 3708 dplane_provider_unlock(prov);
c831033f
MS
3709
3710 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
3711 zlog_debug("dplane dequeues %d completed work from provider %s",
3712 counter, dplane_provider_get_name(prov));
3713
3714 /* Locate next provider */
3715 DPLANE_LOCK();
3716 prov = TAILQ_NEXT(prov, dp_prov_link);
3717 DPLANE_UNLOCK();
c831033f
MS
3718 }
3719
3720 /* After all providers have been serviced, enqueue any completed
14b0bc8e 3721 * work and any errors back to zebra so it can process the results.
c831033f 3722 */
c831033f 3723 if (IS_ZEBRA_DEBUG_DPLANE_DETAIL)
14b0bc8e
MS
3724 zlog_debug("dplane has %d completed, %d errors, for zebra main",
3725 counter, error_counter);
c831033f
MS
3726
3727 /*
4c206c8f 3728 * Hand lists through the api to zebra main,
c831033f
MS
3729 * to reduce the number of lock/unlock cycles
3730 */
14b0bc8e 3731
4c206c8f
MS
3732 /* Call through to zebra main */
3733 (zdplane_info.dg_results_cb)(&error_list);
14b0bc8e 3734
4c206c8f 3735 TAILQ_INIT(&error_list);
14b0bc8e 3736
4c206c8f
MS
3737 /* Call through to zebra main */
3738 (zdplane_info.dg_results_cb)(&work_list);
c831033f 3739
4c206c8f 3740 TAILQ_INIT(&work_list);
c831033f
MS
3741
3742done:
3743 return 0;
3744}
3745
4dfd7a02
MS
3746/*
3747 * Final phase of shutdown, after all work enqueued to dplane has been
3748 * processed. This is called from the zebra main pthread context.
3749 */
3750void zebra_dplane_shutdown(void)
3751{
3752 if (IS_ZEBRA_DEBUG_DPLANE)
3753 zlog_debug("Zebra dataplane shutdown called");
1d11b21f
MS
3754
3755 /* Stop dplane thread, if it's running */
3756
25779064 3757 zdplane_info.dg_run = false;
1d11b21f 3758
9344d3fc
SW
3759 if (zdplane_info.dg_t_update)
3760 thread_cancel_async(zdplane_info.dg_t_update->master,
3761 &zdplane_info.dg_t_update, NULL);
1d11b21f 3762
d8c16a95
MS
3763 frr_pthread_stop(zdplane_info.dg_pthread, NULL);
3764
3765 /* Destroy pthread */
3766 frr_pthread_destroy(zdplane_info.dg_pthread);
3767 zdplane_info.dg_pthread = NULL;
3768 zdplane_info.dg_master = NULL;
4dfd7a02 3769
c831033f
MS
3770 /* TODO -- Notify provider(s) of final shutdown */
3771
3772 /* TODO -- Clean-up provider objects */
3773
3774 /* TODO -- Clean queue(s), free memory */
3775}
3776
3777/*
3778 * Initialize the dataplane module during startup, internal/private version
3779 */
2561d12e 3780static void zebra_dplane_init_internal(void)
c831033f
MS
3781{
3782 memset(&zdplane_info, 0, sizeof(zdplane_info));
3783
3784 pthread_mutex_init(&zdplane_info.dg_mutex, NULL);
1d11b21f 3785
3fe4ccc4 3786 TAILQ_INIT(&zdplane_info.dg_update_ctx_q);
c831033f 3787 TAILQ_INIT(&zdplane_info.dg_providers_q);
1d11b21f 3788
c831033f
MS
3789 zdplane_info.dg_updates_per_cycle = DPLANE_DEFAULT_NEW_WORK;
3790
3791 zdplane_info.dg_max_queued_updates = DPLANE_DEFAULT_MAX_QUEUED;
3792
3793 /* Register default kernel 'provider' during init */
3794 dplane_provider_init();
e5a60d82 3795}
c831033f 3796
e5a60d82
MS
3797/*
3798 * Start the dataplane pthread. This step needs to be run later than the
3799 * 'init' step, in case zebra has fork-ed.
3800 */
3801void zebra_dplane_start(void)
3802{
1dd4ea8a 3803 struct zebra_dplane_provider *prov;
c831033f
MS
3804 struct frr_pthread_attr pattr = {
3805 .start = frr_pthread_attr_default.start,
3806 .stop = frr_pthread_attr_default.stop
3807 };
3808
1dd4ea8a
MS
3809 /* Start dataplane pthread */
3810
c831033f 3811 zdplane_info.dg_pthread = frr_pthread_new(&pattr, "Zebra dplane thread",
0eca319c 3812 "zebra_dplane");
c831033f
MS
3813
3814 zdplane_info.dg_master = zdplane_info.dg_pthread->master;
3815
e5a60d82
MS
3816 zdplane_info.dg_run = true;
3817
c831033f
MS
3818 /* Enqueue an initial event for the dataplane pthread */
3819 thread_add_event(zdplane_info.dg_master, dplane_thread_loop, NULL, 0,
3820 &zdplane_info.dg_t_update);
3821
1dd4ea8a
MS
3822 /* Call start callbacks for registered providers */
3823
3824 DPLANE_LOCK();
3825 prov = TAILQ_FIRST(&zdplane_info.dg_providers_q);
3826 DPLANE_UNLOCK();
3827
3828 while (prov) {
3829
3830 if (prov->dp_start)
3831 (prov->dp_start)(prov);
3832
3833 /* Locate next provider */
3834 DPLANE_LOCK();
3835 prov = TAILQ_NEXT(prov, dp_prov_link);
3836 DPLANE_UNLOCK();
3837 }
3838
c831033f 3839 frr_pthread_run(zdplane_info.dg_pthread, NULL);
18c37974
MS
3840}
3841
7cdb1a84 3842/*
b8e0423d 3843 * Initialize the dataplane module at startup; called by zebra rib_init()
7cdb1a84 3844 */
4c206c8f 3845void zebra_dplane_init(int (*results_fp)(struct dplane_ctx_q *))
7cdb1a84 3846{
2561d12e 3847 zebra_dplane_init_internal();
4c206c8f 3848 zdplane_info.dg_results_cb = results_fp;
7cdb1a84 3849}