1 /*
2 * Copyright (c) 2015, Mellanox Technologies. All rights reserved.
3 *
4 * This software is available to you under a choice of one of two
5 * licenses. You may choose to be licensed under the terms of the GNU
6 * General Public License (GPL) Version 2, available from the file
7 * COPYING in the main directory of this source tree, or the
8 * OpenIB.org BSD license below:
9 *
10 * Redistribution and use in source and binary forms, with or
11 * without modification, are permitted provided that the following
12 * conditions are met:
13 *
14 * - Redistributions of source code must retain the above
15 * copyright notice, this list of conditions and the following
16 * disclaimer.
17 *
18 * - Redistributions in binary form must reproduce the above
19 * copyright notice, this list of conditions and the following
20 * disclaimer in the documentation and/or other materials
21 * provided with the distribution.
22 *
23 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
24 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
25 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
26 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
27 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
28 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
29 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
30 * SOFTWARE.
31 */
32
33 #include <linux/etherdevice.h>
34 #include <linux/mlx5/driver.h>
35 #include <linux/mlx5/mlx5_ifc.h>
36 #include <linux/mlx5/vport.h>
37 #include <linux/mlx5/fs.h>
38 #include <linux/mlx5/mpfs.h>
39 #include <linux/debugfs.h>
40 #include "esw/acl/lgcy.h"
41 #include "esw/legacy.h"
42 #include "esw/qos.h"
43 #include "mlx5_core.h"
44 #include "lib/eq.h"
45 #include "eswitch.h"
46 #include "fs_core.h"
47 #include "devlink.h"
48 #include "ecpf.h"
49 #include "en/mod_hdr.h"
50
51 enum {
52 MLX5_ACTION_NONE = 0,
53 MLX5_ACTION_ADD = 1,
54 MLX5_ACTION_DEL = 2,
55 };
56
57 /* Vport UC/MC hash node */
58 struct vport_addr {
59 struct l2addr_node node;
60 u8 action;
61 u16 vport;
62 struct mlx5_flow_handle *flow_rule;
63 bool mpfs; /* UC MAC was added to MPFs */
64 /* A flag indicating that mac was added due to mc promiscuous vport */
65 bool mc_promisc;
66 };
67
mlx5_eswitch_check(const struct mlx5_core_dev * dev)68 static int mlx5_eswitch_check(const struct mlx5_core_dev *dev)
69 {
70 if (MLX5_CAP_GEN(dev, port_type) != MLX5_CAP_PORT_TYPE_ETH)
71 return -EOPNOTSUPP;
72
73 if (!MLX5_ESWITCH_MANAGER(dev))
74 return -EOPNOTSUPP;
75
76 return 0;
77 }
78
mlx5_devlink_eswitch_get(struct devlink * devlink)79 struct mlx5_eswitch *mlx5_devlink_eswitch_get(struct devlink *devlink)
80 {
81 struct mlx5_core_dev *dev = devlink_priv(devlink);
82 int err;
83
84 err = mlx5_eswitch_check(dev);
85 if (err)
86 return ERR_PTR(err);
87
88 return dev->priv.eswitch;
89 }
90
91 struct mlx5_vport *__must_check
mlx5_eswitch_get_vport(struct mlx5_eswitch * esw,u16 vport_num)92 mlx5_eswitch_get_vport(struct mlx5_eswitch *esw, u16 vport_num)
93 {
94 struct mlx5_vport *vport;
95
96 if (!esw || !MLX5_CAP_GEN(esw->dev, vport_group_manager))
97 return ERR_PTR(-EPERM);
98
99 vport = xa_load(&esw->vports, vport_num);
100 if (!vport) {
101 esw_debug(esw->dev, "vport out of range: num(0x%x)\n", vport_num);
102 return ERR_PTR(-EINVAL);
103 }
104 return vport;
105 }
106
arm_vport_context_events_cmd(struct mlx5_core_dev * dev,u16 vport,u32 events_mask)107 static int arm_vport_context_events_cmd(struct mlx5_core_dev *dev, u16 vport,
108 u32 events_mask)
109 {
110 u32 in[MLX5_ST_SZ_DW(modify_nic_vport_context_in)] = {};
111 void *nic_vport_ctx;
112
113 MLX5_SET(modify_nic_vport_context_in, in,
114 opcode, MLX5_CMD_OP_MODIFY_NIC_VPORT_CONTEXT);
115 MLX5_SET(modify_nic_vport_context_in, in, field_select.change_event, 1);
116 MLX5_SET(modify_nic_vport_context_in, in, vport_number, vport);
117 MLX5_SET(modify_nic_vport_context_in, in, other_vport, 1);
118 nic_vport_ctx = MLX5_ADDR_OF(modify_nic_vport_context_in,
119 in, nic_vport_context);
120
121 MLX5_SET(nic_vport_context, nic_vport_ctx, arm_change_event, 1);
122
123 if (events_mask & MLX5_VPORT_UC_ADDR_CHANGE)
124 MLX5_SET(nic_vport_context, nic_vport_ctx,
125 event_on_uc_address_change, 1);
126 if (events_mask & MLX5_VPORT_MC_ADDR_CHANGE)
127 MLX5_SET(nic_vport_context, nic_vport_ctx,
128 event_on_mc_address_change, 1);
129 if (events_mask & MLX5_VPORT_PROMISC_CHANGE)
130 MLX5_SET(nic_vport_context, nic_vport_ctx,
131 event_on_promisc_change, 1);
132
133 return mlx5_cmd_exec_in(dev, modify_nic_vport_context, in);
134 }
135
136 /* E-Switch vport context HW commands */
mlx5_eswitch_modify_esw_vport_context(struct mlx5_core_dev * dev,u16 vport,bool other_vport,void * in)137 int mlx5_eswitch_modify_esw_vport_context(struct mlx5_core_dev *dev, u16 vport,
138 bool other_vport, void *in)
139 {
140 MLX5_SET(modify_esw_vport_context_in, in, opcode,
141 MLX5_CMD_OP_MODIFY_ESW_VPORT_CONTEXT);
142 MLX5_SET(modify_esw_vport_context_in, in, vport_number, vport);
143 MLX5_SET(modify_esw_vport_context_in, in, other_vport, other_vport);
144 return mlx5_cmd_exec_in(dev, modify_esw_vport_context, in);
145 }
146
modify_esw_vport_cvlan(struct mlx5_core_dev * dev,u16 vport,u16 vlan,u8 qos,u8 set_flags)147 static int modify_esw_vport_cvlan(struct mlx5_core_dev *dev, u16 vport,
148 u16 vlan, u8 qos, u8 set_flags)
149 {
150 u32 in[MLX5_ST_SZ_DW(modify_esw_vport_context_in)] = {};
151
152 if (!MLX5_CAP_ESW(dev, vport_cvlan_strip) ||
153 !MLX5_CAP_ESW(dev, vport_cvlan_insert_if_not_exist))
154 return -EOPNOTSUPP;
155
156 esw_debug(dev, "Set Vport[%d] VLAN %d qos %d set=%x\n",
157 vport, vlan, qos, set_flags);
158
159 if (set_flags & SET_VLAN_STRIP)
160 MLX5_SET(modify_esw_vport_context_in, in,
161 esw_vport_context.vport_cvlan_strip, 1);
162
163 if (set_flags & SET_VLAN_INSERT) {
164 if (MLX5_CAP_ESW(dev, vport_cvlan_insert_always)) {
165 /* insert either if vlan exist in packet or not */
166 MLX5_SET(modify_esw_vport_context_in, in,
167 esw_vport_context.vport_cvlan_insert,
168 MLX5_VPORT_CVLAN_INSERT_ALWAYS);
169 } else {
170 /* insert only if no vlan in packet */
171 MLX5_SET(modify_esw_vport_context_in, in,
172 esw_vport_context.vport_cvlan_insert,
173 MLX5_VPORT_CVLAN_INSERT_WHEN_NO_CVLAN);
174 }
175 MLX5_SET(modify_esw_vport_context_in, in,
176 esw_vport_context.cvlan_pcp, qos);
177 MLX5_SET(modify_esw_vport_context_in, in,
178 esw_vport_context.cvlan_id, vlan);
179 }
180
181 MLX5_SET(modify_esw_vport_context_in, in,
182 field_select.vport_cvlan_strip, 1);
183 MLX5_SET(modify_esw_vport_context_in, in,
184 field_select.vport_cvlan_insert, 1);
185
186 return mlx5_eswitch_modify_esw_vport_context(dev, vport, true, in);
187 }
188
189 /* E-Switch FDB */
190 static struct mlx5_flow_handle *
__esw_fdb_set_vport_rule(struct mlx5_eswitch * esw,u16 vport,bool rx_rule,u8 mac_c[ETH_ALEN],u8 mac_v[ETH_ALEN])191 __esw_fdb_set_vport_rule(struct mlx5_eswitch *esw, u16 vport, bool rx_rule,
192 u8 mac_c[ETH_ALEN], u8 mac_v[ETH_ALEN])
193 {
194 int match_header = (is_zero_ether_addr(mac_c) ? 0 :
195 MLX5_MATCH_OUTER_HEADERS);
196 struct mlx5_flow_handle *flow_rule = NULL;
197 struct mlx5_flow_act flow_act = {0};
198 struct mlx5_flow_destination dest = {};
199 struct mlx5_flow_spec *spec;
200 void *mv_misc = NULL;
201 void *mc_misc = NULL;
202 u8 *dmac_v = NULL;
203 u8 *dmac_c = NULL;
204
205 if (rx_rule)
206 match_header |= MLX5_MATCH_MISC_PARAMETERS;
207
208 spec = kvzalloc(sizeof(*spec), GFP_KERNEL);
209 if (!spec)
210 return NULL;
211
212 dmac_v = MLX5_ADDR_OF(fte_match_param, spec->match_value,
213 outer_headers.dmac_47_16);
214 dmac_c = MLX5_ADDR_OF(fte_match_param, spec->match_criteria,
215 outer_headers.dmac_47_16);
216
217 if (match_header & MLX5_MATCH_OUTER_HEADERS) {
218 ether_addr_copy(dmac_v, mac_v);
219 ether_addr_copy(dmac_c, mac_c);
220 }
221
222 if (match_header & MLX5_MATCH_MISC_PARAMETERS) {
223 mv_misc = MLX5_ADDR_OF(fte_match_param, spec->match_value,
224 misc_parameters);
225 mc_misc = MLX5_ADDR_OF(fte_match_param, spec->match_criteria,
226 misc_parameters);
227 MLX5_SET(fte_match_set_misc, mv_misc, source_port, MLX5_VPORT_UPLINK);
228 MLX5_SET_TO_ONES(fte_match_set_misc, mc_misc, source_port);
229 }
230
231 dest.type = MLX5_FLOW_DESTINATION_TYPE_VPORT;
232 dest.vport.num = vport;
233
234 esw_debug(esw->dev,
235 "\tFDB add rule dmac_v(%pM) dmac_c(%pM) -> vport(%d)\n",
236 dmac_v, dmac_c, vport);
237 spec->match_criteria_enable = match_header;
238 flow_act.action = MLX5_FLOW_CONTEXT_ACTION_FWD_DEST;
239 flow_rule =
240 mlx5_add_flow_rules(esw->fdb_table.legacy.fdb, spec,
241 &flow_act, &dest, 1);
242 if (IS_ERR(flow_rule)) {
243 esw_warn(esw->dev,
244 "FDB: Failed to add flow rule: dmac_v(%pM) dmac_c(%pM) -> vport(%d), err(%ld)\n",
245 dmac_v, dmac_c, vport, PTR_ERR(flow_rule));
246 flow_rule = NULL;
247 }
248
249 kvfree(spec);
250 return flow_rule;
251 }
252
253 static struct mlx5_flow_handle *
esw_fdb_set_vport_rule(struct mlx5_eswitch * esw,u8 mac[ETH_ALEN],u16 vport)254 esw_fdb_set_vport_rule(struct mlx5_eswitch *esw, u8 mac[ETH_ALEN], u16 vport)
255 {
256 u8 mac_c[ETH_ALEN];
257
258 eth_broadcast_addr(mac_c);
259 return __esw_fdb_set_vport_rule(esw, vport, false, mac_c, mac);
260 }
261
262 static struct mlx5_flow_handle *
esw_fdb_set_vport_allmulti_rule(struct mlx5_eswitch * esw,u16 vport)263 esw_fdb_set_vport_allmulti_rule(struct mlx5_eswitch *esw, u16 vport)
264 {
265 u8 mac_c[ETH_ALEN];
266 u8 mac_v[ETH_ALEN];
267
268 eth_zero_addr(mac_c);
269 eth_zero_addr(mac_v);
270 mac_c[0] = 0x01;
271 mac_v[0] = 0x01;
272 return __esw_fdb_set_vport_rule(esw, vport, false, mac_c, mac_v);
273 }
274
275 static struct mlx5_flow_handle *
esw_fdb_set_vport_promisc_rule(struct mlx5_eswitch * esw,u16 vport)276 esw_fdb_set_vport_promisc_rule(struct mlx5_eswitch *esw, u16 vport)
277 {
278 u8 mac_c[ETH_ALEN];
279 u8 mac_v[ETH_ALEN];
280
281 eth_zero_addr(mac_c);
282 eth_zero_addr(mac_v);
283 return __esw_fdb_set_vport_rule(esw, vport, true, mac_c, mac_v);
284 }
285
286 /* E-Switch vport UC/MC lists management */
287 typedef int (*vport_addr_action)(struct mlx5_eswitch *esw,
288 struct vport_addr *vaddr);
289
esw_add_uc_addr(struct mlx5_eswitch * esw,struct vport_addr * vaddr)290 static int esw_add_uc_addr(struct mlx5_eswitch *esw, struct vport_addr *vaddr)
291 {
292 u8 *mac = vaddr->node.addr;
293 u16 vport = vaddr->vport;
294 int err;
295
296 /* Skip mlx5_mpfs_add_mac for eswitch_managers,
297 * it is already done by its netdev in mlx5e_execute_l2_action
298 */
299 if (mlx5_esw_is_manager_vport(esw, vport))
300 goto fdb_add;
301
302 err = mlx5_mpfs_add_mac(esw->dev, mac);
303 if (err) {
304 esw_warn(esw->dev,
305 "Failed to add L2 table mac(%pM) for vport(0x%x), err(%d)\n",
306 mac, vport, err);
307 return err;
308 }
309 vaddr->mpfs = true;
310
311 fdb_add:
312 /* SRIOV is enabled: Forward UC MAC to vport */
313 if (esw->fdb_table.legacy.fdb && esw->mode == MLX5_ESWITCH_LEGACY)
314 vaddr->flow_rule = esw_fdb_set_vport_rule(esw, mac, vport);
315
316 esw_debug(esw->dev, "\tADDED UC MAC: vport[%d] %pM fr(%p)\n",
317 vport, mac, vaddr->flow_rule);
318
319 return 0;
320 }
321
esw_del_uc_addr(struct mlx5_eswitch * esw,struct vport_addr * vaddr)322 static int esw_del_uc_addr(struct mlx5_eswitch *esw, struct vport_addr *vaddr)
323 {
324 u8 *mac = vaddr->node.addr;
325 u16 vport = vaddr->vport;
326 int err = 0;
327
328 /* Skip mlx5_mpfs_del_mac for eswitch managers,
329 * it is already done by its netdev in mlx5e_execute_l2_action
330 */
331 if (!vaddr->mpfs || mlx5_esw_is_manager_vport(esw, vport))
332 goto fdb_del;
333
334 err = mlx5_mpfs_del_mac(esw->dev, mac);
335 if (err)
336 esw_warn(esw->dev,
337 "Failed to del L2 table mac(%pM) for vport(%d), err(%d)\n",
338 mac, vport, err);
339 vaddr->mpfs = false;
340
341 fdb_del:
342 if (vaddr->flow_rule)
343 mlx5_del_flow_rules(vaddr->flow_rule);
344 vaddr->flow_rule = NULL;
345
346 return 0;
347 }
348
update_allmulti_vports(struct mlx5_eswitch * esw,struct vport_addr * vaddr,struct esw_mc_addr * esw_mc)349 static void update_allmulti_vports(struct mlx5_eswitch *esw,
350 struct vport_addr *vaddr,
351 struct esw_mc_addr *esw_mc)
352 {
353 u8 *mac = vaddr->node.addr;
354 struct mlx5_vport *vport;
355 unsigned long i;
356 u16 vport_num;
357
358 mlx5_esw_for_each_vport(esw, i, vport) {
359 struct hlist_head *vport_hash = vport->mc_list;
360 struct vport_addr *iter_vaddr =
361 l2addr_hash_find(vport_hash,
362 mac,
363 struct vport_addr);
364 vport_num = vport->vport;
365 if (IS_ERR_OR_NULL(vport->allmulti_rule) ||
366 vaddr->vport == vport_num)
367 continue;
368 switch (vaddr->action) {
369 case MLX5_ACTION_ADD:
370 if (iter_vaddr)
371 continue;
372 iter_vaddr = l2addr_hash_add(vport_hash, mac,
373 struct vport_addr,
374 GFP_KERNEL);
375 if (!iter_vaddr) {
376 esw_warn(esw->dev,
377 "ALL-MULTI: Failed to add MAC(%pM) to vport[%d] DB\n",
378 mac, vport_num);
379 continue;
380 }
381 iter_vaddr->vport = vport_num;
382 iter_vaddr->flow_rule =
383 esw_fdb_set_vport_rule(esw,
384 mac,
385 vport_num);
386 iter_vaddr->mc_promisc = true;
387 break;
388 case MLX5_ACTION_DEL:
389 if (!iter_vaddr)
390 continue;
391 mlx5_del_flow_rules(iter_vaddr->flow_rule);
392 l2addr_hash_del(iter_vaddr);
393 break;
394 }
395 }
396 }
397
esw_add_mc_addr(struct mlx5_eswitch * esw,struct vport_addr * vaddr)398 static int esw_add_mc_addr(struct mlx5_eswitch *esw, struct vport_addr *vaddr)
399 {
400 struct hlist_head *hash = esw->mc_table;
401 struct esw_mc_addr *esw_mc;
402 u8 *mac = vaddr->node.addr;
403 u16 vport = vaddr->vport;
404
405 if (!esw->fdb_table.legacy.fdb)
406 return 0;
407
408 esw_mc = l2addr_hash_find(hash, mac, struct esw_mc_addr);
409 if (esw_mc)
410 goto add;
411
412 esw_mc = l2addr_hash_add(hash, mac, struct esw_mc_addr, GFP_KERNEL);
413 if (!esw_mc)
414 return -ENOMEM;
415
416 esw_mc->uplink_rule = /* Forward MC MAC to Uplink */
417 esw_fdb_set_vport_rule(esw, mac, MLX5_VPORT_UPLINK);
418
419 /* Add this multicast mac to all the mc promiscuous vports */
420 update_allmulti_vports(esw, vaddr, esw_mc);
421
422 add:
423 /* If the multicast mac is added as a result of mc promiscuous vport,
424 * don't increment the multicast ref count
425 */
426 if (!vaddr->mc_promisc)
427 esw_mc->refcnt++;
428
429 /* Forward MC MAC to vport */
430 vaddr->flow_rule = esw_fdb_set_vport_rule(esw, mac, vport);
431 esw_debug(esw->dev,
432 "\tADDED MC MAC: vport[%d] %pM fr(%p) refcnt(%d) uplinkfr(%p)\n",
433 vport, mac, vaddr->flow_rule,
434 esw_mc->refcnt, esw_mc->uplink_rule);
435 return 0;
436 }
437
esw_del_mc_addr(struct mlx5_eswitch * esw,struct vport_addr * vaddr)438 static int esw_del_mc_addr(struct mlx5_eswitch *esw, struct vport_addr *vaddr)
439 {
440 struct hlist_head *hash = esw->mc_table;
441 struct esw_mc_addr *esw_mc;
442 u8 *mac = vaddr->node.addr;
443 u16 vport = vaddr->vport;
444
445 if (!esw->fdb_table.legacy.fdb)
446 return 0;
447
448 esw_mc = l2addr_hash_find(hash, mac, struct esw_mc_addr);
449 if (!esw_mc) {
450 esw_warn(esw->dev,
451 "Failed to find eswitch MC addr for MAC(%pM) vport(%d)",
452 mac, vport);
453 return -EINVAL;
454 }
455 esw_debug(esw->dev,
456 "\tDELETE MC MAC: vport[%d] %pM fr(%p) refcnt(%d) uplinkfr(%p)\n",
457 vport, mac, vaddr->flow_rule, esw_mc->refcnt,
458 esw_mc->uplink_rule);
459
460 if (vaddr->flow_rule)
461 mlx5_del_flow_rules(vaddr->flow_rule);
462 vaddr->flow_rule = NULL;
463
464 /* If the multicast mac is added as a result of mc promiscuous vport,
465 * don't decrement the multicast ref count.
466 */
467 if (vaddr->mc_promisc || (--esw_mc->refcnt > 0))
468 return 0;
469
470 /* Remove this multicast mac from all the mc promiscuous vports */
471 update_allmulti_vports(esw, vaddr, esw_mc);
472
473 if (esw_mc->uplink_rule)
474 mlx5_del_flow_rules(esw_mc->uplink_rule);
475
476 l2addr_hash_del(esw_mc);
477 return 0;
478 }
479
480 /* Apply vport UC/MC list to HW l2 table and FDB table */
esw_apply_vport_addr_list(struct mlx5_eswitch * esw,struct mlx5_vport * vport,int list_type)481 static void esw_apply_vport_addr_list(struct mlx5_eswitch *esw,
482 struct mlx5_vport *vport, int list_type)
483 {
484 bool is_uc = list_type == MLX5_NVPRT_LIST_TYPE_UC;
485 vport_addr_action vport_addr_add;
486 vport_addr_action vport_addr_del;
487 struct vport_addr *addr;
488 struct l2addr_node *node;
489 struct hlist_head *hash;
490 struct hlist_node *tmp;
491 int hi;
492
493 vport_addr_add = is_uc ? esw_add_uc_addr :
494 esw_add_mc_addr;
495 vport_addr_del = is_uc ? esw_del_uc_addr :
496 esw_del_mc_addr;
497
498 hash = is_uc ? vport->uc_list : vport->mc_list;
499 for_each_l2hash_node(node, tmp, hash, hi) {
500 addr = container_of(node, struct vport_addr, node);
501 switch (addr->action) {
502 case MLX5_ACTION_ADD:
503 vport_addr_add(esw, addr);
504 addr->action = MLX5_ACTION_NONE;
505 break;
506 case MLX5_ACTION_DEL:
507 vport_addr_del(esw, addr);
508 l2addr_hash_del(addr);
509 break;
510 }
511 }
512 }
513
514 /* Sync vport UC/MC list from vport context */
esw_update_vport_addr_list(struct mlx5_eswitch * esw,struct mlx5_vport * vport,int list_type)515 static void esw_update_vport_addr_list(struct mlx5_eswitch *esw,
516 struct mlx5_vport *vport, int list_type)
517 {
518 bool is_uc = list_type == MLX5_NVPRT_LIST_TYPE_UC;
519 u8 (*mac_list)[ETH_ALEN];
520 struct l2addr_node *node;
521 struct vport_addr *addr;
522 struct hlist_head *hash;
523 struct hlist_node *tmp;
524 int size;
525 int err;
526 int hi;
527 int i;
528
529 size = is_uc ? MLX5_MAX_UC_PER_VPORT(esw->dev) :
530 MLX5_MAX_MC_PER_VPORT(esw->dev);
531
532 mac_list = kcalloc(size, ETH_ALEN, GFP_KERNEL);
533 if (!mac_list)
534 return;
535
536 hash = is_uc ? vport->uc_list : vport->mc_list;
537
538 for_each_l2hash_node(node, tmp, hash, hi) {
539 addr = container_of(node, struct vport_addr, node);
540 addr->action = MLX5_ACTION_DEL;
541 }
542
543 if (!vport->enabled)
544 goto out;
545
546 err = mlx5_query_nic_vport_mac_list(esw->dev, vport->vport, list_type,
547 mac_list, &size);
548 if (err)
549 goto out;
550 esw_debug(esw->dev, "vport[%d] context update %s list size (%d)\n",
551 vport->vport, is_uc ? "UC" : "MC", size);
552
553 for (i = 0; i < size; i++) {
554 if (is_uc && !is_valid_ether_addr(mac_list[i]))
555 continue;
556
557 if (!is_uc && !is_multicast_ether_addr(mac_list[i]))
558 continue;
559
560 addr = l2addr_hash_find(hash, mac_list[i], struct vport_addr);
561 if (addr) {
562 addr->action = MLX5_ACTION_NONE;
563 /* If this mac was previously added because of allmulti
564 * promiscuous rx mode, its now converted to be original
565 * vport mac.
566 */
567 if (addr->mc_promisc) {
568 struct esw_mc_addr *esw_mc =
569 l2addr_hash_find(esw->mc_table,
570 mac_list[i],
571 struct esw_mc_addr);
572 if (!esw_mc) {
573 esw_warn(esw->dev,
574 "Failed to MAC(%pM) in mcast DB\n",
575 mac_list[i]);
576 continue;
577 }
578 esw_mc->refcnt++;
579 addr->mc_promisc = false;
580 }
581 continue;
582 }
583
584 addr = l2addr_hash_add(hash, mac_list[i], struct vport_addr,
585 GFP_KERNEL);
586 if (!addr) {
587 esw_warn(esw->dev,
588 "Failed to add MAC(%pM) to vport[%d] DB\n",
589 mac_list[i], vport->vport);
590 continue;
591 }
592 addr->vport = vport->vport;
593 addr->action = MLX5_ACTION_ADD;
594 }
595 out:
596 kfree(mac_list);
597 }
598
599 /* Sync vport UC/MC list from vport context
600 * Must be called after esw_update_vport_addr_list
601 */
esw_update_vport_mc_promisc(struct mlx5_eswitch * esw,struct mlx5_vport * vport)602 static void esw_update_vport_mc_promisc(struct mlx5_eswitch *esw,
603 struct mlx5_vport *vport)
604 {
605 struct l2addr_node *node;
606 struct vport_addr *addr;
607 struct hlist_head *hash;
608 struct hlist_node *tmp;
609 int hi;
610
611 hash = vport->mc_list;
612
613 for_each_l2hash_node(node, tmp, esw->mc_table, hi) {
614 u8 *mac = node->addr;
615
616 addr = l2addr_hash_find(hash, mac, struct vport_addr);
617 if (addr) {
618 if (addr->action == MLX5_ACTION_DEL)
619 addr->action = MLX5_ACTION_NONE;
620 continue;
621 }
622 addr = l2addr_hash_add(hash, mac, struct vport_addr,
623 GFP_KERNEL);
624 if (!addr) {
625 esw_warn(esw->dev,
626 "Failed to add allmulti MAC(%pM) to vport[%d] DB\n",
627 mac, vport->vport);
628 continue;
629 }
630 addr->vport = vport->vport;
631 addr->action = MLX5_ACTION_ADD;
632 addr->mc_promisc = true;
633 }
634 }
635
636 /* Apply vport rx mode to HW FDB table */
esw_apply_vport_rx_mode(struct mlx5_eswitch * esw,struct mlx5_vport * vport,bool promisc,bool mc_promisc)637 static void esw_apply_vport_rx_mode(struct mlx5_eswitch *esw,
638 struct mlx5_vport *vport,
639 bool promisc, bool mc_promisc)
640 {
641 struct esw_mc_addr *allmulti_addr = &esw->mc_promisc;
642
643 if (IS_ERR_OR_NULL(vport->allmulti_rule) != mc_promisc)
644 goto promisc;
645
646 if (mc_promisc) {
647 vport->allmulti_rule =
648 esw_fdb_set_vport_allmulti_rule(esw, vport->vport);
649 if (!allmulti_addr->uplink_rule)
650 allmulti_addr->uplink_rule =
651 esw_fdb_set_vport_allmulti_rule(esw,
652 MLX5_VPORT_UPLINK);
653 allmulti_addr->refcnt++;
654 } else if (vport->allmulti_rule) {
655 mlx5_del_flow_rules(vport->allmulti_rule);
656 vport->allmulti_rule = NULL;
657
658 if (--allmulti_addr->refcnt > 0)
659 goto promisc;
660
661 if (allmulti_addr->uplink_rule)
662 mlx5_del_flow_rules(allmulti_addr->uplink_rule);
663 allmulti_addr->uplink_rule = NULL;
664 }
665
666 promisc:
667 if (IS_ERR_OR_NULL(vport->promisc_rule) != promisc)
668 return;
669
670 if (promisc) {
671 vport->promisc_rule =
672 esw_fdb_set_vport_promisc_rule(esw, vport->vport);
673 } else if (vport->promisc_rule) {
674 mlx5_del_flow_rules(vport->promisc_rule);
675 vport->promisc_rule = NULL;
676 }
677 }
678
679 /* Sync vport rx mode from vport context */
esw_update_vport_rx_mode(struct mlx5_eswitch * esw,struct mlx5_vport * vport)680 static void esw_update_vport_rx_mode(struct mlx5_eswitch *esw,
681 struct mlx5_vport *vport)
682 {
683 int promisc_all = 0;
684 int promisc_uc = 0;
685 int promisc_mc = 0;
686 int err;
687
688 err = mlx5_query_nic_vport_promisc(esw->dev,
689 vport->vport,
690 &promisc_uc,
691 &promisc_mc,
692 &promisc_all);
693 if (err)
694 return;
695 esw_debug(esw->dev, "vport[%d] context update rx mode promisc_all=%d, all_multi=%d\n",
696 vport->vport, promisc_all, promisc_mc);
697
698 if (!vport->info.trusted || !vport->enabled) {
699 promisc_uc = 0;
700 promisc_mc = 0;
701 promisc_all = 0;
702 }
703
704 esw_apply_vport_rx_mode(esw, vport, promisc_all,
705 (promisc_all || promisc_mc));
706 }
707
esw_vport_change_handle_locked(struct mlx5_vport * vport)708 void esw_vport_change_handle_locked(struct mlx5_vport *vport)
709 {
710 struct mlx5_core_dev *dev = vport->dev;
711 struct mlx5_eswitch *esw = dev->priv.eswitch;
712 u8 mac[ETH_ALEN];
713
714 mlx5_query_nic_vport_mac_address(dev, vport->vport, true, mac);
715 esw_debug(dev, "vport[%d] Context Changed: perm mac: %pM\n",
716 vport->vport, mac);
717
718 if (vport->enabled_events & MLX5_VPORT_UC_ADDR_CHANGE) {
719 esw_update_vport_addr_list(esw, vport, MLX5_NVPRT_LIST_TYPE_UC);
720 esw_apply_vport_addr_list(esw, vport, MLX5_NVPRT_LIST_TYPE_UC);
721 }
722
723 if (vport->enabled_events & MLX5_VPORT_MC_ADDR_CHANGE)
724 esw_update_vport_addr_list(esw, vport, MLX5_NVPRT_LIST_TYPE_MC);
725
726 if (vport->enabled_events & MLX5_VPORT_PROMISC_CHANGE) {
727 esw_update_vport_rx_mode(esw, vport);
728 if (!IS_ERR_OR_NULL(vport->allmulti_rule))
729 esw_update_vport_mc_promisc(esw, vport);
730 }
731
732 if (vport->enabled_events & (MLX5_VPORT_PROMISC_CHANGE | MLX5_VPORT_MC_ADDR_CHANGE))
733 esw_apply_vport_addr_list(esw, vport, MLX5_NVPRT_LIST_TYPE_MC);
734
735 esw_debug(esw->dev, "vport[%d] Context Changed: Done\n", vport->vport);
736 if (vport->enabled)
737 arm_vport_context_events_cmd(dev, vport->vport,
738 vport->enabled_events);
739 }
740
esw_vport_change_handler(struct work_struct * work)741 static void esw_vport_change_handler(struct work_struct *work)
742 {
743 struct mlx5_vport *vport =
744 container_of(work, struct mlx5_vport, vport_change_handler);
745 struct mlx5_eswitch *esw = vport->dev->priv.eswitch;
746
747 mutex_lock(&esw->state_lock);
748 esw_vport_change_handle_locked(vport);
749 mutex_unlock(&esw->state_lock);
750 }
751
node_guid_gen_from_mac(u64 * node_guid,const u8 * mac)752 static void node_guid_gen_from_mac(u64 *node_guid, const u8 *mac)
753 {
754 ((u8 *)node_guid)[7] = mac[0];
755 ((u8 *)node_guid)[6] = mac[1];
756 ((u8 *)node_guid)[5] = mac[2];
757 ((u8 *)node_guid)[4] = 0xff;
758 ((u8 *)node_guid)[3] = 0xfe;
759 ((u8 *)node_guid)[2] = mac[3];
760 ((u8 *)node_guid)[1] = mac[4];
761 ((u8 *)node_guid)[0] = mac[5];
762 }
763
esw_vport_setup_acl(struct mlx5_eswitch * esw,struct mlx5_vport * vport)764 static int esw_vport_setup_acl(struct mlx5_eswitch *esw,
765 struct mlx5_vport *vport)
766 {
767 if (esw->mode == MLX5_ESWITCH_LEGACY)
768 return esw_legacy_vport_acl_setup(esw, vport);
769 else
770 return esw_vport_create_offloads_acl_tables(esw, vport);
771 }
772
esw_vport_cleanup_acl(struct mlx5_eswitch * esw,struct mlx5_vport * vport)773 static void esw_vport_cleanup_acl(struct mlx5_eswitch *esw,
774 struct mlx5_vport *vport)
775 {
776 if (esw->mode == MLX5_ESWITCH_LEGACY)
777 esw_legacy_vport_acl_cleanup(esw, vport);
778 else
779 esw_vport_destroy_offloads_acl_tables(esw, vport);
780 }
781
mlx5_esw_vport_caps_get(struct mlx5_eswitch * esw,struct mlx5_vport * vport)782 static int mlx5_esw_vport_caps_get(struct mlx5_eswitch *esw, struct mlx5_vport *vport)
783 {
784 int query_out_sz = MLX5_ST_SZ_BYTES(query_hca_cap_out);
785 void *query_ctx;
786 void *hca_caps;
787 int err;
788
789 if (!MLX5_CAP_GEN(esw->dev, vhca_resource_manager))
790 return 0;
791
792 query_ctx = kzalloc(query_out_sz, GFP_KERNEL);
793 if (!query_ctx)
794 return -ENOMEM;
795
796 err = mlx5_vport_get_other_func_cap(esw->dev, vport->vport, query_ctx,
797 MLX5_CAP_GENERAL);
798 if (err)
799 goto out_free;
800
801 hca_caps = MLX5_ADDR_OF(query_hca_cap_out, query_ctx, capability);
802 vport->info.roce_enabled = MLX5_GET(cmd_hca_cap, hca_caps, roce);
803
804 memset(query_ctx, 0, query_out_sz);
805 err = mlx5_vport_get_other_func_cap(esw->dev, vport->vport, query_ctx,
806 MLX5_CAP_GENERAL_2);
807 if (err)
808 goto out_free;
809
810 hca_caps = MLX5_ADDR_OF(query_hca_cap_out, query_ctx, capability);
811 vport->info.mig_enabled = MLX5_GET(cmd_hca_cap_2, hca_caps, migratable);
812 out_free:
813 kfree(query_ctx);
814 return err;
815 }
816
esw_vport_setup(struct mlx5_eswitch * esw,struct mlx5_vport * vport)817 static int esw_vport_setup(struct mlx5_eswitch *esw, struct mlx5_vport *vport)
818 {
819 bool vst_mode_steering = esw_vst_mode_is_steering(esw);
820 u16 vport_num = vport->vport;
821 int flags;
822 int err;
823
824 err = esw_vport_setup_acl(esw, vport);
825 if (err)
826 return err;
827
828 if (mlx5_esw_is_manager_vport(esw, vport_num))
829 return 0;
830
831 err = mlx5_esw_vport_caps_get(esw, vport);
832 if (err)
833 goto err_caps;
834
835 mlx5_modify_vport_admin_state(esw->dev,
836 MLX5_VPORT_STATE_OP_MOD_ESW_VPORT,
837 vport_num, 1,
838 vport->info.link_state);
839
840 /* Host PF has its own mac/guid. */
841 if (vport_num) {
842 mlx5_modify_nic_vport_mac_address(esw->dev, vport_num,
843 vport->info.mac);
844 mlx5_modify_nic_vport_node_guid(esw->dev, vport_num,
845 vport->info.node_guid);
846 }
847
848 flags = (vport->info.vlan || vport->info.qos) ?
849 SET_VLAN_STRIP | SET_VLAN_INSERT : 0;
850 if (esw->mode == MLX5_ESWITCH_OFFLOADS || !vst_mode_steering)
851 modify_esw_vport_cvlan(esw->dev, vport_num, vport->info.vlan,
852 vport->info.qos, flags);
853
854 return 0;
855
856 err_caps:
857 esw_vport_cleanup_acl(esw, vport);
858 return err;
859 }
860
861 /* Don't cleanup vport->info, it's needed to restore vport configuration */
esw_vport_cleanup(struct mlx5_eswitch * esw,struct mlx5_vport * vport)862 static void esw_vport_cleanup(struct mlx5_eswitch *esw, struct mlx5_vport *vport)
863 {
864 u16 vport_num = vport->vport;
865
866 if (!mlx5_esw_is_manager_vport(esw, vport_num))
867 mlx5_modify_vport_admin_state(esw->dev,
868 MLX5_VPORT_STATE_OP_MOD_ESW_VPORT,
869 vport_num, 1,
870 MLX5_VPORT_ADMIN_STATE_DOWN);
871
872 mlx5_esw_qos_vport_disable(esw, vport);
873 esw_vport_cleanup_acl(esw, vport);
874 }
875
mlx5_esw_vport_enable(struct mlx5_eswitch * esw,u16 vport_num,enum mlx5_eswitch_vport_event enabled_events)876 int mlx5_esw_vport_enable(struct mlx5_eswitch *esw, u16 vport_num,
877 enum mlx5_eswitch_vport_event enabled_events)
878 {
879 struct mlx5_vport *vport;
880 int ret;
881
882 vport = mlx5_eswitch_get_vport(esw, vport_num);
883 if (IS_ERR(vport))
884 return PTR_ERR(vport);
885
886 mutex_lock(&esw->state_lock);
887 WARN_ON(vport->enabled);
888
889 esw_debug(esw->dev, "Enabling VPORT(%d)\n", vport_num);
890
891 ret = esw_vport_setup(esw, vport);
892 if (ret)
893 goto done;
894
895 /* Sync with current vport context */
896 vport->enabled_events = enabled_events;
897 vport->enabled = true;
898
899 /* Esw manager is trusted by default. Host PF (vport 0) is trusted as well
900 * in smartNIC as it's a vport group manager.
901 */
902 if (mlx5_esw_is_manager_vport(esw, vport_num) ||
903 (!vport_num && mlx5_core_is_ecpf(esw->dev)))
904 vport->info.trusted = true;
905
906 if (!mlx5_esw_is_manager_vport(esw, vport->vport) &&
907 MLX5_CAP_GEN(esw->dev, vhca_resource_manager)) {
908 ret = mlx5_esw_vport_vhca_id_set(esw, vport_num);
909 if (ret)
910 goto err_vhca_mapping;
911 }
912
913 /* External controller host PF has factory programmed MAC.
914 * Read it from the device.
915 */
916 if (mlx5_core_is_ecpf(esw->dev) && vport_num == MLX5_VPORT_PF)
917 mlx5_query_nic_vport_mac_address(esw->dev, vport_num, true, vport->info.mac);
918
919 esw_vport_change_handle_locked(vport);
920
921 esw->enabled_vports++;
922 esw_debug(esw->dev, "Enabled VPORT(%d)\n", vport_num);
923 done:
924 mutex_unlock(&esw->state_lock);
925 return ret;
926
927 err_vhca_mapping:
928 esw_vport_cleanup(esw, vport);
929 mutex_unlock(&esw->state_lock);
930 return ret;
931 }
932
mlx5_esw_vport_disable(struct mlx5_eswitch * esw,u16 vport_num)933 void mlx5_esw_vport_disable(struct mlx5_eswitch *esw, u16 vport_num)
934 {
935 struct mlx5_vport *vport;
936
937 vport = mlx5_eswitch_get_vport(esw, vport_num);
938 if (IS_ERR(vport))
939 return;
940
941 mutex_lock(&esw->state_lock);
942 if (!vport->enabled)
943 goto done;
944
945 esw_debug(esw->dev, "Disabling vport(%d)\n", vport_num);
946 /* Mark this vport as disabled to discard new events */
947 vport->enabled = false;
948
949 /* Disable events from this vport */
950 arm_vport_context_events_cmd(esw->dev, vport->vport, 0);
951
952 if (!mlx5_esw_is_manager_vport(esw, vport->vport) &&
953 MLX5_CAP_GEN(esw->dev, vhca_resource_manager))
954 mlx5_esw_vport_vhca_id_clear(esw, vport_num);
955
956 /* We don't assume VFs will cleanup after themselves.
957 * Calling vport change handler while vport is disabled will cleanup
958 * the vport resources.
959 */
960 esw_vport_change_handle_locked(vport);
961 vport->enabled_events = 0;
962 esw_vport_cleanup(esw, vport);
963 esw->enabled_vports--;
964
965 done:
966 mutex_unlock(&esw->state_lock);
967 }
968
eswitch_vport_event(struct notifier_block * nb,unsigned long type,void * data)969 static int eswitch_vport_event(struct notifier_block *nb,
970 unsigned long type, void *data)
971 {
972 struct mlx5_eswitch *esw = mlx5_nb_cof(nb, struct mlx5_eswitch, nb);
973 struct mlx5_eqe *eqe = data;
974 struct mlx5_vport *vport;
975 u16 vport_num;
976
977 vport_num = be16_to_cpu(eqe->data.vport_change.vport_num);
978 vport = mlx5_eswitch_get_vport(esw, vport_num);
979 if (!IS_ERR(vport))
980 queue_work(esw->work_queue, &vport->vport_change_handler);
981 return NOTIFY_OK;
982 }
983
984 /**
985 * mlx5_esw_query_functions - Returns raw output about functions state
986 * @dev: Pointer to device to query
987 *
988 * mlx5_esw_query_functions() allocates and returns functions changed
989 * raw output memory pointer from device on success. Otherwise returns ERR_PTR.
990 * Caller must free the memory using kvfree() when valid pointer is returned.
991 */
mlx5_esw_query_functions(struct mlx5_core_dev * dev)992 const u32 *mlx5_esw_query_functions(struct mlx5_core_dev *dev)
993 {
994 int outlen = MLX5_ST_SZ_BYTES(query_esw_functions_out);
995 u32 in[MLX5_ST_SZ_DW(query_esw_functions_in)] = {};
996 u32 *out;
997 int err;
998
999 out = kvzalloc(outlen, GFP_KERNEL);
1000 if (!out)
1001 return ERR_PTR(-ENOMEM);
1002
1003 MLX5_SET(query_esw_functions_in, in, opcode,
1004 MLX5_CMD_OP_QUERY_ESW_FUNCTIONS);
1005
1006 err = mlx5_cmd_exec(dev, in, sizeof(in), out, outlen);
1007 if (!err)
1008 return out;
1009
1010 kvfree(out);
1011 return ERR_PTR(err);
1012 }
1013
mlx5_eswitch_event_handlers_register(struct mlx5_eswitch * esw)1014 static void mlx5_eswitch_event_handlers_register(struct mlx5_eswitch *esw)
1015 {
1016 MLX5_NB_INIT(&esw->nb, eswitch_vport_event, NIC_VPORT_CHANGE);
1017 mlx5_eq_notifier_register(esw->dev, &esw->nb);
1018
1019 if (esw->mode == MLX5_ESWITCH_OFFLOADS && mlx5_eswitch_is_funcs_handler(esw->dev)) {
1020 MLX5_NB_INIT(&esw->esw_funcs.nb, mlx5_esw_funcs_changed_handler,
1021 ESW_FUNCTIONS_CHANGED);
1022 mlx5_eq_notifier_register(esw->dev, &esw->esw_funcs.nb);
1023 }
1024 }
1025
mlx5_eswitch_event_handlers_unregister(struct mlx5_eswitch * esw)1026 static void mlx5_eswitch_event_handlers_unregister(struct mlx5_eswitch *esw)
1027 {
1028 if (esw->mode == MLX5_ESWITCH_OFFLOADS && mlx5_eswitch_is_funcs_handler(esw->dev))
1029 mlx5_eq_notifier_unregister(esw->dev, &esw->esw_funcs.nb);
1030
1031 mlx5_eq_notifier_unregister(esw->dev, &esw->nb);
1032
1033 flush_workqueue(esw->work_queue);
1034 }
1035
mlx5_eswitch_clear_vf_vports_info(struct mlx5_eswitch * esw)1036 static void mlx5_eswitch_clear_vf_vports_info(struct mlx5_eswitch *esw)
1037 {
1038 struct mlx5_vport *vport;
1039 unsigned long i;
1040
1041 mlx5_esw_for_each_vf_vport(esw, i, vport, esw->esw_funcs.num_vfs) {
1042 memset(&vport->qos, 0, sizeof(vport->qos));
1043 memset(&vport->info, 0, sizeof(vport->info));
1044 vport->info.link_state = MLX5_VPORT_ADMIN_STATE_AUTO;
1045 }
1046 }
1047
1048 /* Public E-Switch API */
mlx5_eswitch_load_vport(struct mlx5_eswitch * esw,u16 vport_num,enum mlx5_eswitch_vport_event enabled_events)1049 int mlx5_eswitch_load_vport(struct mlx5_eswitch *esw, u16 vport_num,
1050 enum mlx5_eswitch_vport_event enabled_events)
1051 {
1052 int err;
1053
1054 err = mlx5_esw_vport_enable(esw, vport_num, enabled_events);
1055 if (err)
1056 return err;
1057
1058 mlx5_esw_vport_debugfs_create(esw, vport_num, false, 0);
1059 err = esw_offloads_load_rep(esw, vport_num);
1060 if (err)
1061 goto err_rep;
1062
1063 return err;
1064
1065 err_rep:
1066 mlx5_esw_vport_debugfs_destroy(esw, vport_num);
1067 mlx5_esw_vport_disable(esw, vport_num);
1068 return err;
1069 }
1070
mlx5_eswitch_unload_vport(struct mlx5_eswitch * esw,u16 vport_num)1071 void mlx5_eswitch_unload_vport(struct mlx5_eswitch *esw, u16 vport_num)
1072 {
1073 esw_offloads_unload_rep(esw, vport_num);
1074 mlx5_esw_vport_debugfs_destroy(esw, vport_num);
1075 mlx5_esw_vport_disable(esw, vport_num);
1076 }
1077
mlx5_eswitch_unload_vf_vports(struct mlx5_eswitch * esw,u16 num_vfs)1078 void mlx5_eswitch_unload_vf_vports(struct mlx5_eswitch *esw, u16 num_vfs)
1079 {
1080 struct mlx5_vport *vport;
1081 unsigned long i;
1082
1083 mlx5_esw_for_each_vf_vport(esw, i, vport, num_vfs) {
1084 if (!vport->enabled)
1085 continue;
1086 mlx5_eswitch_unload_vport(esw, vport->vport);
1087 }
1088 }
1089
mlx5_eswitch_load_vf_vports(struct mlx5_eswitch * esw,u16 num_vfs,enum mlx5_eswitch_vport_event enabled_events)1090 int mlx5_eswitch_load_vf_vports(struct mlx5_eswitch *esw, u16 num_vfs,
1091 enum mlx5_eswitch_vport_event enabled_events)
1092 {
1093 struct mlx5_vport *vport;
1094 unsigned long i;
1095 int err;
1096
1097 mlx5_esw_for_each_vf_vport(esw, i, vport, num_vfs) {
1098 err = mlx5_eswitch_load_vport(esw, vport->vport, enabled_events);
1099 if (err)
1100 goto vf_err;
1101 }
1102
1103 return 0;
1104
1105 vf_err:
1106 mlx5_eswitch_unload_vf_vports(esw, num_vfs);
1107 return err;
1108 }
1109
host_pf_enable_hca(struct mlx5_core_dev * dev)1110 static int host_pf_enable_hca(struct mlx5_core_dev *dev)
1111 {
1112 if (!mlx5_core_is_ecpf(dev))
1113 return 0;
1114
1115 /* Once vport and representor are ready, take out the external host PF
1116 * out of initializing state. Enabling HCA clears the iser->initializing
1117 * bit and host PF driver loading can progress.
1118 */
1119 return mlx5_cmd_host_pf_enable_hca(dev);
1120 }
1121
host_pf_disable_hca(struct mlx5_core_dev * dev)1122 static void host_pf_disable_hca(struct mlx5_core_dev *dev)
1123 {
1124 if (!mlx5_core_is_ecpf(dev))
1125 return;
1126
1127 mlx5_cmd_host_pf_disable_hca(dev);
1128 }
1129
1130 /* mlx5_eswitch_enable_pf_vf_vports() enables vports of PF, ECPF and VFs
1131 * whichever are present on the eswitch.
1132 */
1133 int
mlx5_eswitch_enable_pf_vf_vports(struct mlx5_eswitch * esw,enum mlx5_eswitch_vport_event enabled_events)1134 mlx5_eswitch_enable_pf_vf_vports(struct mlx5_eswitch *esw,
1135 enum mlx5_eswitch_vport_event enabled_events)
1136 {
1137 int ret;
1138
1139 /* Enable PF vport */
1140 ret = mlx5_eswitch_load_vport(esw, MLX5_VPORT_PF, enabled_events);
1141 if (ret)
1142 return ret;
1143
1144 /* Enable external host PF HCA */
1145 ret = host_pf_enable_hca(esw->dev);
1146 if (ret)
1147 goto pf_hca_err;
1148
1149 /* Enable ECPF vport */
1150 if (mlx5_ecpf_vport_exists(esw->dev)) {
1151 ret = mlx5_eswitch_load_vport(esw, MLX5_VPORT_ECPF, enabled_events);
1152 if (ret)
1153 goto ecpf_err;
1154 }
1155
1156 /* Enable VF vports */
1157 ret = mlx5_eswitch_load_vf_vports(esw, esw->esw_funcs.num_vfs,
1158 enabled_events);
1159 if (ret)
1160 goto vf_err;
1161 return 0;
1162
1163 vf_err:
1164 if (mlx5_ecpf_vport_exists(esw->dev))
1165 mlx5_eswitch_unload_vport(esw, MLX5_VPORT_ECPF);
1166 ecpf_err:
1167 host_pf_disable_hca(esw->dev);
1168 pf_hca_err:
1169 mlx5_eswitch_unload_vport(esw, MLX5_VPORT_PF);
1170 return ret;
1171 }
1172
1173 /* mlx5_eswitch_disable_pf_vf_vports() disables vports of PF, ECPF and VFs
1174 * whichever are previously enabled on the eswitch.
1175 */
mlx5_eswitch_disable_pf_vf_vports(struct mlx5_eswitch * esw)1176 void mlx5_eswitch_disable_pf_vf_vports(struct mlx5_eswitch *esw)
1177 {
1178 mlx5_eswitch_unload_vf_vports(esw, esw->esw_funcs.num_vfs);
1179
1180 if (mlx5_ecpf_vport_exists(esw->dev))
1181 mlx5_eswitch_unload_vport(esw, MLX5_VPORT_ECPF);
1182
1183 host_pf_disable_hca(esw->dev);
1184 mlx5_eswitch_unload_vport(esw, MLX5_VPORT_PF);
1185 }
1186
mlx5_eswitch_get_devlink_param(struct mlx5_eswitch * esw)1187 static void mlx5_eswitch_get_devlink_param(struct mlx5_eswitch *esw)
1188 {
1189 struct devlink *devlink = priv_to_devlink(esw->dev);
1190 union devlink_param_value val;
1191 int err;
1192
1193 err = devl_param_driverinit_value_get(devlink,
1194 MLX5_DEVLINK_PARAM_ID_ESW_LARGE_GROUP_NUM,
1195 &val);
1196 if (!err) {
1197 esw->params.large_group_num = val.vu32;
1198 } else {
1199 esw_warn(esw->dev,
1200 "Devlink can't get param fdb_large_groups, uses default (%d).\n",
1201 ESW_OFFLOADS_DEFAULT_NUM_GROUPS);
1202 esw->params.large_group_num = ESW_OFFLOADS_DEFAULT_NUM_GROUPS;
1203 }
1204 }
1205
1206 static void
mlx5_eswitch_update_num_of_vfs(struct mlx5_eswitch * esw,int num_vfs)1207 mlx5_eswitch_update_num_of_vfs(struct mlx5_eswitch *esw, int num_vfs)
1208 {
1209 const u32 *out;
1210
1211 if (num_vfs < 0)
1212 return;
1213
1214 if (!mlx5_core_is_ecpf_esw_manager(esw->dev)) {
1215 esw->esw_funcs.num_vfs = num_vfs;
1216 return;
1217 }
1218
1219 out = mlx5_esw_query_functions(esw->dev);
1220 if (IS_ERR(out))
1221 return;
1222
1223 esw->esw_funcs.num_vfs = MLX5_GET(query_esw_functions_out, out,
1224 host_params_context.host_num_of_vfs);
1225 kvfree(out);
1226 }
1227
mlx5_esw_mode_change_notify(struct mlx5_eswitch * esw,u16 mode)1228 static void mlx5_esw_mode_change_notify(struct mlx5_eswitch *esw, u16 mode)
1229 {
1230 struct mlx5_esw_event_info info = {};
1231
1232 info.new_mode = mode;
1233
1234 blocking_notifier_call_chain(&esw->n_head, 0, &info);
1235 }
1236
mlx5_esw_acls_ns_init(struct mlx5_eswitch * esw)1237 static int mlx5_esw_acls_ns_init(struct mlx5_eswitch *esw)
1238 {
1239 struct mlx5_core_dev *dev = esw->dev;
1240 int total_vports;
1241 int err;
1242
1243 if (esw->flags & MLX5_ESWITCH_VPORT_ACL_NS_CREATED)
1244 return 0;
1245
1246 total_vports = mlx5_eswitch_get_total_vports(dev);
1247
1248 if (MLX5_CAP_ESW_EGRESS_ACL(dev, ft_support)) {
1249 err = mlx5_fs_egress_acls_init(dev, total_vports);
1250 if (err)
1251 return err;
1252 } else {
1253 esw_warn(dev, "egress ACL is not supported by FW\n");
1254 }
1255
1256 if (MLX5_CAP_ESW_INGRESS_ACL(dev, ft_support)) {
1257 err = mlx5_fs_ingress_acls_init(dev, total_vports);
1258 if (err)
1259 goto err;
1260 } else {
1261 esw_warn(dev, "ingress ACL is not supported by FW\n");
1262 }
1263 esw->flags |= MLX5_ESWITCH_VPORT_ACL_NS_CREATED;
1264 return 0;
1265
1266 err:
1267 if (MLX5_CAP_ESW_EGRESS_ACL(dev, ft_support))
1268 mlx5_fs_egress_acls_cleanup(dev);
1269 return err;
1270 }
1271
mlx5_esw_acls_ns_cleanup(struct mlx5_eswitch * esw)1272 static void mlx5_esw_acls_ns_cleanup(struct mlx5_eswitch *esw)
1273 {
1274 struct mlx5_core_dev *dev = esw->dev;
1275
1276 esw->flags &= ~MLX5_ESWITCH_VPORT_ACL_NS_CREATED;
1277 if (MLX5_CAP_ESW_INGRESS_ACL(dev, ft_support))
1278 mlx5_fs_ingress_acls_cleanup(dev);
1279 if (MLX5_CAP_ESW_EGRESS_ACL(dev, ft_support))
1280 mlx5_fs_egress_acls_cleanup(dev);
1281 }
1282
1283 /**
1284 * mlx5_eswitch_enable_locked - Enable eswitch
1285 * @esw: Pointer to eswitch
1286 * @num_vfs: Enable eswitch for given number of VFs. This is optional.
1287 * Valid value are 0, > 0 and MLX5_ESWITCH_IGNORE_NUM_VFS.
1288 * Caller should pass num_vfs > 0 when enabling eswitch for
1289 * vf vports. Caller should pass num_vfs = 0, when eswitch
1290 * is enabled without sriov VFs or when caller
1291 * is unaware of the sriov state of the host PF on ECPF based
1292 * eswitch. Caller should pass < 0 when num_vfs should be
1293 * completely ignored. This is typically the case when eswitch
1294 * is enabled without sriov regardless of PF/ECPF system.
1295 * mlx5_eswitch_enable_locked() Enables eswitch in either legacy or offloads
1296 * mode. If num_vfs >=0 is provided, it setup VF related eswitch vports.
1297 * It returns 0 on success or error code on failure.
1298 */
mlx5_eswitch_enable_locked(struct mlx5_eswitch * esw,int num_vfs)1299 int mlx5_eswitch_enable_locked(struct mlx5_eswitch *esw, int num_vfs)
1300 {
1301 int err;
1302
1303 lockdep_assert_held(&esw->mode_lock);
1304
1305 if (!MLX5_CAP_ESW_FLOWTABLE_FDB(esw->dev, ft_support)) {
1306 esw_warn(esw->dev, "FDB is not supported, aborting ...\n");
1307 return -EOPNOTSUPP;
1308 }
1309
1310 mlx5_eswitch_get_devlink_param(esw);
1311
1312 err = mlx5_esw_acls_ns_init(esw);
1313 if (err)
1314 return err;
1315
1316 mlx5_eswitch_update_num_of_vfs(esw, num_vfs);
1317
1318 if (esw->mode == MLX5_ESWITCH_LEGACY) {
1319 err = esw_legacy_enable(esw);
1320 } else {
1321 mlx5_rescan_drivers(esw->dev);
1322 err = esw_offloads_enable(esw);
1323 }
1324
1325 if (err)
1326 goto abort;
1327
1328 esw->fdb_table.flags |= MLX5_ESW_FDB_CREATED;
1329
1330 mlx5_eswitch_event_handlers_register(esw);
1331
1332 esw_info(esw->dev, "Enable: mode(%s), nvfs(%d), active vports(%d)\n",
1333 esw->mode == MLX5_ESWITCH_LEGACY ? "LEGACY" : "OFFLOADS",
1334 esw->esw_funcs.num_vfs, esw->enabled_vports);
1335
1336 mlx5_esw_mode_change_notify(esw, esw->mode);
1337
1338 return 0;
1339
1340 abort:
1341 mlx5_esw_acls_ns_cleanup(esw);
1342 return err;
1343 }
1344
1345 /**
1346 * mlx5_eswitch_enable - Enable eswitch
1347 * @esw: Pointer to eswitch
1348 * @num_vfs: Enable eswitch switch for given number of VFs.
1349 * Caller must pass num_vfs > 0 when enabling eswitch for
1350 * vf vports.
1351 * mlx5_eswitch_enable() returns 0 on success or error code on failure.
1352 */
mlx5_eswitch_enable(struct mlx5_eswitch * esw,int num_vfs)1353 int mlx5_eswitch_enable(struct mlx5_eswitch *esw, int num_vfs)
1354 {
1355 bool toggle_lag;
1356 int ret;
1357
1358 if (!mlx5_esw_allowed(esw))
1359 return 0;
1360
1361 devl_assert_locked(priv_to_devlink(esw->dev));
1362
1363 toggle_lag = !mlx5_esw_is_fdb_created(esw);
1364
1365 if (toggle_lag)
1366 mlx5_lag_disable_change(esw->dev);
1367
1368 down_write(&esw->mode_lock);
1369 if (!mlx5_esw_is_fdb_created(esw)) {
1370 ret = mlx5_eswitch_enable_locked(esw, num_vfs);
1371 } else {
1372 enum mlx5_eswitch_vport_event vport_events;
1373
1374 vport_events = (esw->mode == MLX5_ESWITCH_LEGACY) ?
1375 MLX5_LEGACY_SRIOV_VPORT_EVENTS : MLX5_VPORT_UC_ADDR_CHANGE;
1376 ret = mlx5_eswitch_load_vf_vports(esw, num_vfs, vport_events);
1377 if (!ret)
1378 esw->esw_funcs.num_vfs = num_vfs;
1379 }
1380 up_write(&esw->mode_lock);
1381
1382 if (toggle_lag)
1383 mlx5_lag_enable_change(esw->dev);
1384
1385 return ret;
1386 }
1387
1388 /* When disabling sriov, free driver level resources. */
mlx5_eswitch_disable_sriov(struct mlx5_eswitch * esw,bool clear_vf)1389 void mlx5_eswitch_disable_sriov(struct mlx5_eswitch *esw, bool clear_vf)
1390 {
1391 if (!mlx5_esw_allowed(esw))
1392 return;
1393
1394 devl_assert_locked(priv_to_devlink(esw->dev));
1395 down_write(&esw->mode_lock);
1396 /* If driver is unloaded, this function is called twice by remove_one()
1397 * and mlx5_unload(). Prevent the second call.
1398 */
1399 if (!esw->esw_funcs.num_vfs && !clear_vf)
1400 goto unlock;
1401
1402 esw_info(esw->dev, "Unload vfs: mode(%s), nvfs(%d), active vports(%d)\n",
1403 esw->mode == MLX5_ESWITCH_LEGACY ? "LEGACY" : "OFFLOADS",
1404 esw->esw_funcs.num_vfs, esw->enabled_vports);
1405
1406 mlx5_eswitch_unload_vf_vports(esw, esw->esw_funcs.num_vfs);
1407 if (clear_vf)
1408 mlx5_eswitch_clear_vf_vports_info(esw);
1409
1410 if (esw->mode == MLX5_ESWITCH_OFFLOADS) {
1411 struct devlink *devlink = priv_to_devlink(esw->dev);
1412
1413 devl_rate_nodes_destroy(devlink);
1414 }
1415 /* Destroy legacy fdb when disabling sriov in legacy mode. */
1416 if (esw->mode == MLX5_ESWITCH_LEGACY)
1417 mlx5_eswitch_disable_locked(esw);
1418
1419 esw->esw_funcs.num_vfs = 0;
1420
1421 unlock:
1422 up_write(&esw->mode_lock);
1423 }
1424
1425 /* Free resources for corresponding eswitch mode. It is called by devlink
1426 * when changing eswitch mode or modprobe when unloading driver.
1427 */
mlx5_eswitch_disable_locked(struct mlx5_eswitch * esw)1428 void mlx5_eswitch_disable_locked(struct mlx5_eswitch *esw)
1429 {
1430 struct devlink *devlink = priv_to_devlink(esw->dev);
1431
1432 /* Notify eswitch users that it is exiting from current mode.
1433 * So that it can do necessary cleanup before the eswitch is disabled.
1434 */
1435 mlx5_esw_mode_change_notify(esw, MLX5_ESWITCH_LEGACY);
1436
1437 mlx5_eswitch_event_handlers_unregister(esw);
1438
1439 esw_info(esw->dev, "Disable: mode(%s), nvfs(%d), active vports(%d)\n",
1440 esw->mode == MLX5_ESWITCH_LEGACY ? "LEGACY" : "OFFLOADS",
1441 esw->esw_funcs.num_vfs, esw->enabled_vports);
1442
1443 if (esw->fdb_table.flags & MLX5_ESW_FDB_CREATED) {
1444 esw->fdb_table.flags &= ~MLX5_ESW_FDB_CREATED;
1445 if (esw->mode == MLX5_ESWITCH_OFFLOADS)
1446 esw_offloads_disable(esw);
1447 else if (esw->mode == MLX5_ESWITCH_LEGACY)
1448 esw_legacy_disable(esw);
1449 mlx5_esw_acls_ns_cleanup(esw);
1450 }
1451
1452 if (esw->mode == MLX5_ESWITCH_OFFLOADS)
1453 devl_rate_nodes_destroy(devlink);
1454 }
1455
mlx5_eswitch_disable(struct mlx5_eswitch * esw)1456 void mlx5_eswitch_disable(struct mlx5_eswitch *esw)
1457 {
1458 if (!mlx5_esw_allowed(esw))
1459 return;
1460
1461 devl_assert_locked(priv_to_devlink(esw->dev));
1462 mlx5_lag_disable_change(esw->dev);
1463 down_write(&esw->mode_lock);
1464 mlx5_eswitch_disable_locked(esw);
1465 esw->mode = MLX5_ESWITCH_LEGACY;
1466 up_write(&esw->mode_lock);
1467 mlx5_lag_enable_change(esw->dev);
1468 }
1469
mlx5_query_hca_cap_host_pf(struct mlx5_core_dev * dev,void * out)1470 static int mlx5_query_hca_cap_host_pf(struct mlx5_core_dev *dev, void *out)
1471 {
1472 u16 opmod = (MLX5_CAP_GENERAL << 1) | (HCA_CAP_OPMOD_GET_MAX & 0x01);
1473 u8 in[MLX5_ST_SZ_BYTES(query_hca_cap_in)] = {};
1474
1475 MLX5_SET(query_hca_cap_in, in, opcode, MLX5_CMD_OP_QUERY_HCA_CAP);
1476 MLX5_SET(query_hca_cap_in, in, op_mod, opmod);
1477 MLX5_SET(query_hca_cap_in, in, function_id, MLX5_VPORT_PF);
1478 MLX5_SET(query_hca_cap_in, in, other_function, true);
1479 return mlx5_cmd_exec_inout(dev, query_hca_cap, in, out);
1480 }
1481
mlx5_esw_sf_max_hpf_functions(struct mlx5_core_dev * dev,u16 * max_sfs,u16 * sf_base_id)1482 int mlx5_esw_sf_max_hpf_functions(struct mlx5_core_dev *dev, u16 *max_sfs, u16 *sf_base_id)
1483
1484 {
1485 int query_out_sz = MLX5_ST_SZ_BYTES(query_hca_cap_out);
1486 void *query_ctx;
1487 void *hca_caps;
1488 int err;
1489
1490 if (!mlx5_core_is_ecpf(dev) || mlx5_core_is_management_pf(dev)) {
1491 *max_sfs = 0;
1492 return 0;
1493 }
1494
1495 query_ctx = kzalloc(query_out_sz, GFP_KERNEL);
1496 if (!query_ctx)
1497 return -ENOMEM;
1498
1499 err = mlx5_query_hca_cap_host_pf(dev, query_ctx);
1500 if (err)
1501 goto out_free;
1502
1503 hca_caps = MLX5_ADDR_OF(query_hca_cap_out, query_ctx, capability);
1504 *max_sfs = MLX5_GET(cmd_hca_cap, hca_caps, max_num_sf);
1505 *sf_base_id = MLX5_GET(cmd_hca_cap, hca_caps, sf_base_id);
1506
1507 out_free:
1508 kfree(query_ctx);
1509 return err;
1510 }
1511
mlx5_esw_vport_alloc(struct mlx5_eswitch * esw,struct mlx5_core_dev * dev,int index,u16 vport_num)1512 static int mlx5_esw_vport_alloc(struct mlx5_eswitch *esw, struct mlx5_core_dev *dev,
1513 int index, u16 vport_num)
1514 {
1515 struct mlx5_vport *vport;
1516 int err;
1517
1518 vport = kzalloc(sizeof(*vport), GFP_KERNEL);
1519 if (!vport)
1520 return -ENOMEM;
1521
1522 vport->dev = esw->dev;
1523 vport->vport = vport_num;
1524 vport->index = index;
1525 vport->info.link_state = MLX5_VPORT_ADMIN_STATE_AUTO;
1526 INIT_WORK(&vport->vport_change_handler, esw_vport_change_handler);
1527 err = xa_insert(&esw->vports, vport_num, vport, GFP_KERNEL);
1528 if (err)
1529 goto insert_err;
1530
1531 esw->total_vports++;
1532 return 0;
1533
1534 insert_err:
1535 kfree(vport);
1536 return err;
1537 }
1538
mlx5_esw_vport_free(struct mlx5_eswitch * esw,struct mlx5_vport * vport)1539 static void mlx5_esw_vport_free(struct mlx5_eswitch *esw, struct mlx5_vport *vport)
1540 {
1541 xa_erase(&esw->vports, vport->vport);
1542 kfree(vport);
1543 }
1544
mlx5_esw_vports_cleanup(struct mlx5_eswitch * esw)1545 static void mlx5_esw_vports_cleanup(struct mlx5_eswitch *esw)
1546 {
1547 struct mlx5_vport *vport;
1548 unsigned long i;
1549
1550 mlx5_esw_for_each_vport(esw, i, vport)
1551 mlx5_esw_vport_free(esw, vport);
1552 xa_destroy(&esw->vports);
1553 }
1554
mlx5_esw_vports_init(struct mlx5_eswitch * esw)1555 static int mlx5_esw_vports_init(struct mlx5_eswitch *esw)
1556 {
1557 struct mlx5_core_dev *dev = esw->dev;
1558 u16 max_host_pf_sfs;
1559 u16 base_sf_num;
1560 int idx = 0;
1561 int err;
1562 int i;
1563
1564 xa_init(&esw->vports);
1565
1566 err = mlx5_esw_vport_alloc(esw, dev, idx, MLX5_VPORT_PF);
1567 if (err)
1568 goto err;
1569 if (esw->first_host_vport == MLX5_VPORT_PF)
1570 xa_set_mark(&esw->vports, idx, MLX5_ESW_VPT_HOST_FN);
1571 idx++;
1572
1573 for (i = 0; i < mlx5_core_max_vfs(dev); i++) {
1574 err = mlx5_esw_vport_alloc(esw, dev, idx, idx);
1575 if (err)
1576 goto err;
1577 xa_set_mark(&esw->vports, idx, MLX5_ESW_VPT_VF);
1578 xa_set_mark(&esw->vports, idx, MLX5_ESW_VPT_HOST_FN);
1579 idx++;
1580 }
1581 base_sf_num = mlx5_sf_start_function_id(dev);
1582 for (i = 0; i < mlx5_sf_max_functions(dev); i++) {
1583 err = mlx5_esw_vport_alloc(esw, dev, idx, base_sf_num + i);
1584 if (err)
1585 goto err;
1586 xa_set_mark(&esw->vports, base_sf_num + i, MLX5_ESW_VPT_SF);
1587 idx++;
1588 }
1589
1590 err = mlx5_esw_sf_max_hpf_functions(dev, &max_host_pf_sfs, &base_sf_num);
1591 if (err)
1592 goto err;
1593 for (i = 0; i < max_host_pf_sfs; i++) {
1594 err = mlx5_esw_vport_alloc(esw, dev, idx, base_sf_num + i);
1595 if (err)
1596 goto err;
1597 xa_set_mark(&esw->vports, base_sf_num + i, MLX5_ESW_VPT_SF);
1598 idx++;
1599 }
1600
1601 if (mlx5_ecpf_vport_exists(dev)) {
1602 err = mlx5_esw_vport_alloc(esw, dev, idx, MLX5_VPORT_ECPF);
1603 if (err)
1604 goto err;
1605 idx++;
1606 }
1607 err = mlx5_esw_vport_alloc(esw, dev, idx, MLX5_VPORT_UPLINK);
1608 if (err)
1609 goto err;
1610 return 0;
1611
1612 err:
1613 mlx5_esw_vports_cleanup(esw);
1614 return err;
1615 }
1616
mlx5_eswitch_init(struct mlx5_core_dev * dev)1617 int mlx5_eswitch_init(struct mlx5_core_dev *dev)
1618 {
1619 struct mlx5_eswitch *esw;
1620 int err;
1621
1622 if (!MLX5_VPORT_MANAGER(dev))
1623 return 0;
1624
1625 esw = kzalloc(sizeof(*esw), GFP_KERNEL);
1626 if (!esw)
1627 return -ENOMEM;
1628
1629 esw->dev = dev;
1630 esw->manager_vport = mlx5_eswitch_manager_vport(dev);
1631 esw->first_host_vport = mlx5_eswitch_first_host_vport_num(dev);
1632
1633 esw->work_queue = create_singlethread_workqueue("mlx5_esw_wq");
1634 if (!esw->work_queue) {
1635 err = -ENOMEM;
1636 goto abort;
1637 }
1638
1639 err = mlx5_esw_vports_init(esw);
1640 if (err)
1641 goto abort;
1642
1643 err = esw_offloads_init(esw);
1644 if (err)
1645 goto reps_err;
1646
1647 mutex_init(&esw->offloads.encap_tbl_lock);
1648 hash_init(esw->offloads.encap_tbl);
1649 mutex_init(&esw->offloads.decap_tbl_lock);
1650 hash_init(esw->offloads.decap_tbl);
1651 mlx5e_mod_hdr_tbl_init(&esw->offloads.mod_hdr);
1652 atomic64_set(&esw->offloads.num_flows, 0);
1653 ida_init(&esw->offloads.vport_metadata_ida);
1654 xa_init_flags(&esw->offloads.vhca_map, XA_FLAGS_ALLOC);
1655 mutex_init(&esw->state_lock);
1656 init_rwsem(&esw->mode_lock);
1657 refcount_set(&esw->qos.refcnt, 0);
1658
1659 esw->enabled_vports = 0;
1660 esw->mode = MLX5_ESWITCH_LEGACY;
1661 esw->offloads.inline_mode = MLX5_INLINE_MODE_NONE;
1662 if (MLX5_CAP_ESW_FLOWTABLE_FDB(dev, reformat) &&
1663 MLX5_CAP_ESW_FLOWTABLE_FDB(dev, decap))
1664 esw->offloads.encap = DEVLINK_ESWITCH_ENCAP_MODE_BASIC;
1665 else
1666 esw->offloads.encap = DEVLINK_ESWITCH_ENCAP_MODE_NONE;
1667 if (MLX5_ESWITCH_MANAGER(dev) &&
1668 mlx5_esw_vport_match_metadata_supported(esw))
1669 esw->flags |= MLX5_ESWITCH_VPORT_MATCH_METADATA;
1670
1671 dev->priv.eswitch = esw;
1672 BLOCKING_INIT_NOTIFIER_HEAD(&esw->n_head);
1673
1674 esw->dbgfs = debugfs_create_dir("esw", mlx5_debugfs_get_dev_root(esw->dev));
1675 esw_info(dev,
1676 "Total vports %d, per vport: max uc(%d) max mc(%d)\n",
1677 esw->total_vports,
1678 MLX5_MAX_UC_PER_VPORT(dev),
1679 MLX5_MAX_MC_PER_VPORT(dev));
1680 return 0;
1681
1682 reps_err:
1683 mlx5_esw_vports_cleanup(esw);
1684 abort:
1685 if (esw->work_queue)
1686 destroy_workqueue(esw->work_queue);
1687 kfree(esw);
1688 return err;
1689 }
1690
mlx5_eswitch_cleanup(struct mlx5_eswitch * esw)1691 void mlx5_eswitch_cleanup(struct mlx5_eswitch *esw)
1692 {
1693 if (!esw || !MLX5_VPORT_MANAGER(esw->dev))
1694 return;
1695
1696 esw_info(esw->dev, "cleanup\n");
1697
1698 debugfs_remove_recursive(esw->dbgfs);
1699 esw->dev->priv.eswitch = NULL;
1700 destroy_workqueue(esw->work_queue);
1701 WARN_ON(refcount_read(&esw->qos.refcnt));
1702 mutex_destroy(&esw->state_lock);
1703 WARN_ON(!xa_empty(&esw->offloads.vhca_map));
1704 xa_destroy(&esw->offloads.vhca_map);
1705 ida_destroy(&esw->offloads.vport_metadata_ida);
1706 mlx5e_mod_hdr_tbl_destroy(&esw->offloads.mod_hdr);
1707 mutex_destroy(&esw->offloads.encap_tbl_lock);
1708 mutex_destroy(&esw->offloads.decap_tbl_lock);
1709 esw_offloads_cleanup(esw);
1710 mlx5_esw_vports_cleanup(esw);
1711 kfree(esw);
1712 }
1713
1714 /* Vport Administration */
1715 static int
mlx5_esw_set_vport_mac_locked(struct mlx5_eswitch * esw,struct mlx5_vport * evport,const u8 * mac)1716 mlx5_esw_set_vport_mac_locked(struct mlx5_eswitch *esw,
1717 struct mlx5_vport *evport, const u8 *mac)
1718 {
1719 u16 vport_num = evport->vport;
1720 u64 node_guid;
1721 int err = 0;
1722
1723 if (is_multicast_ether_addr(mac))
1724 return -EINVAL;
1725
1726 if (evport->info.spoofchk && !is_valid_ether_addr(mac))
1727 mlx5_core_warn(esw->dev,
1728 "Set invalid MAC while spoofchk is on, vport(%d)\n",
1729 vport_num);
1730
1731 err = mlx5_modify_nic_vport_mac_address(esw->dev, vport_num, mac);
1732 if (err) {
1733 mlx5_core_warn(esw->dev,
1734 "Failed to mlx5_modify_nic_vport_mac vport(%d) err=(%d)\n",
1735 vport_num, err);
1736 return err;
1737 }
1738
1739 node_guid_gen_from_mac(&node_guid, mac);
1740 err = mlx5_modify_nic_vport_node_guid(esw->dev, vport_num, node_guid);
1741 if (err)
1742 mlx5_core_warn(esw->dev,
1743 "Failed to set vport %d node guid, err = %d. RDMA_CM will not function properly for this VF.\n",
1744 vport_num, err);
1745
1746 ether_addr_copy(evport->info.mac, mac);
1747 evport->info.node_guid = node_guid;
1748 if (evport->enabled && esw->mode == MLX5_ESWITCH_LEGACY)
1749 err = esw_acl_ingress_lgcy_setup(esw, evport);
1750
1751 return err;
1752 }
1753
mlx5_eswitch_set_vport_mac(struct mlx5_eswitch * esw,u16 vport,const u8 * mac)1754 int mlx5_eswitch_set_vport_mac(struct mlx5_eswitch *esw,
1755 u16 vport, const u8 *mac)
1756 {
1757 struct mlx5_vport *evport = mlx5_eswitch_get_vport(esw, vport);
1758 int err = 0;
1759
1760 if (IS_ERR(evport))
1761 return PTR_ERR(evport);
1762
1763 mutex_lock(&esw->state_lock);
1764 err = mlx5_esw_set_vport_mac_locked(esw, evport, mac);
1765 mutex_unlock(&esw->state_lock);
1766 return err;
1767 }
1768
mlx5_esw_check_port_type(struct mlx5_eswitch * esw,u16 vport_num,xa_mark_t mark)1769 static bool mlx5_esw_check_port_type(struct mlx5_eswitch *esw, u16 vport_num, xa_mark_t mark)
1770 {
1771 struct mlx5_vport *vport;
1772
1773 vport = mlx5_eswitch_get_vport(esw, vport_num);
1774 if (IS_ERR(vport))
1775 return false;
1776
1777 return xa_get_mark(&esw->vports, vport_num, mark);
1778 }
1779
mlx5_eswitch_is_vf_vport(struct mlx5_eswitch * esw,u16 vport_num)1780 bool mlx5_eswitch_is_vf_vport(struct mlx5_eswitch *esw, u16 vport_num)
1781 {
1782 return mlx5_esw_check_port_type(esw, vport_num, MLX5_ESW_VPT_VF);
1783 }
1784
mlx5_esw_is_sf_vport(struct mlx5_eswitch * esw,u16 vport_num)1785 bool mlx5_esw_is_sf_vport(struct mlx5_eswitch *esw, u16 vport_num)
1786 {
1787 return mlx5_esw_check_port_type(esw, vport_num, MLX5_ESW_VPT_SF);
1788 }
1789
mlx5_eswitch_set_vport_state(struct mlx5_eswitch * esw,u16 vport,int link_state)1790 int mlx5_eswitch_set_vport_state(struct mlx5_eswitch *esw,
1791 u16 vport, int link_state)
1792 {
1793 struct mlx5_vport *evport = mlx5_eswitch_get_vport(esw, vport);
1794 int opmod = MLX5_VPORT_STATE_OP_MOD_ESW_VPORT;
1795 int other_vport = 1;
1796 int err = 0;
1797
1798 if (!mlx5_esw_allowed(esw))
1799 return -EPERM;
1800 if (IS_ERR(evport))
1801 return PTR_ERR(evport);
1802
1803 if (vport == MLX5_VPORT_UPLINK) {
1804 opmod = MLX5_VPORT_STATE_OP_MOD_UPLINK;
1805 other_vport = 0;
1806 vport = 0;
1807 }
1808 mutex_lock(&esw->state_lock);
1809 if (esw->mode != MLX5_ESWITCH_LEGACY) {
1810 err = -EOPNOTSUPP;
1811 goto unlock;
1812 }
1813
1814 err = mlx5_modify_vport_admin_state(esw->dev, opmod, vport, other_vport, link_state);
1815 if (err) {
1816 mlx5_core_warn(esw->dev, "Failed to set vport %d link state, opmod = %d, err = %d",
1817 vport, opmod, err);
1818 goto unlock;
1819 }
1820
1821 evport->info.link_state = link_state;
1822
1823 unlock:
1824 mutex_unlock(&esw->state_lock);
1825 return err;
1826 }
1827
mlx5_eswitch_get_vport_config(struct mlx5_eswitch * esw,u16 vport,struct ifla_vf_info * ivi)1828 int mlx5_eswitch_get_vport_config(struct mlx5_eswitch *esw,
1829 u16 vport, struct ifla_vf_info *ivi)
1830 {
1831 struct mlx5_vport *evport = mlx5_eswitch_get_vport(esw, vport);
1832
1833 if (IS_ERR(evport))
1834 return PTR_ERR(evport);
1835
1836 memset(ivi, 0, sizeof(*ivi));
1837 ivi->vf = vport - 1;
1838
1839 mutex_lock(&esw->state_lock);
1840 ether_addr_copy(ivi->mac, evport->info.mac);
1841 ivi->linkstate = evport->info.link_state;
1842 ivi->vlan = evport->info.vlan;
1843 ivi->qos = evport->info.qos;
1844 ivi->spoofchk = evport->info.spoofchk;
1845 ivi->trusted = evport->info.trusted;
1846 if (evport->qos.enabled) {
1847 ivi->min_tx_rate = evport->qos.min_rate;
1848 ivi->max_tx_rate = evport->qos.max_rate;
1849 }
1850 mutex_unlock(&esw->state_lock);
1851
1852 return 0;
1853 }
1854
__mlx5_eswitch_set_vport_vlan(struct mlx5_eswitch * esw,u16 vport,u16 vlan,u8 qos,u8 set_flags)1855 int __mlx5_eswitch_set_vport_vlan(struct mlx5_eswitch *esw,
1856 u16 vport, u16 vlan, u8 qos, u8 set_flags)
1857 {
1858 struct mlx5_vport *evport = mlx5_eswitch_get_vport(esw, vport);
1859 bool vst_mode_steering = esw_vst_mode_is_steering(esw);
1860 int err = 0;
1861
1862 if (IS_ERR(evport))
1863 return PTR_ERR(evport);
1864 if (vlan > 4095 || qos > 7)
1865 return -EINVAL;
1866
1867 if (esw->mode == MLX5_ESWITCH_OFFLOADS || !vst_mode_steering) {
1868 err = modify_esw_vport_cvlan(esw->dev, vport, vlan, qos, set_flags);
1869 if (err)
1870 return err;
1871 }
1872
1873 evport->info.vlan = vlan;
1874 evport->info.qos = qos;
1875 if (evport->enabled && esw->mode == MLX5_ESWITCH_LEGACY) {
1876 err = esw_acl_ingress_lgcy_setup(esw, evport);
1877 if (err)
1878 return err;
1879 err = esw_acl_egress_lgcy_setup(esw, evport);
1880 }
1881
1882 return err;
1883 }
1884
mlx5_eswitch_get_vport_stats(struct mlx5_eswitch * esw,u16 vport_num,struct ifla_vf_stats * vf_stats)1885 int mlx5_eswitch_get_vport_stats(struct mlx5_eswitch *esw,
1886 u16 vport_num,
1887 struct ifla_vf_stats *vf_stats)
1888 {
1889 struct mlx5_vport *vport = mlx5_eswitch_get_vport(esw, vport_num);
1890 int outlen = MLX5_ST_SZ_BYTES(query_vport_counter_out);
1891 u32 in[MLX5_ST_SZ_DW(query_vport_counter_in)] = {};
1892 struct mlx5_vport_drop_stats stats = {};
1893 int err = 0;
1894 u32 *out;
1895
1896 if (IS_ERR(vport))
1897 return PTR_ERR(vport);
1898
1899 out = kvzalloc(outlen, GFP_KERNEL);
1900 if (!out)
1901 return -ENOMEM;
1902
1903 MLX5_SET(query_vport_counter_in, in, opcode,
1904 MLX5_CMD_OP_QUERY_VPORT_COUNTER);
1905 MLX5_SET(query_vport_counter_in, in, op_mod, 0);
1906 MLX5_SET(query_vport_counter_in, in, vport_number, vport->vport);
1907 MLX5_SET(query_vport_counter_in, in, other_vport, 1);
1908
1909 err = mlx5_cmd_exec_inout(esw->dev, query_vport_counter, in, out);
1910 if (err)
1911 goto free_out;
1912
1913 #define MLX5_GET_CTR(p, x) \
1914 MLX5_GET64(query_vport_counter_out, p, x)
1915
1916 memset(vf_stats, 0, sizeof(*vf_stats));
1917 vf_stats->rx_packets =
1918 MLX5_GET_CTR(out, received_eth_unicast.packets) +
1919 MLX5_GET_CTR(out, received_ib_unicast.packets) +
1920 MLX5_GET_CTR(out, received_eth_multicast.packets) +
1921 MLX5_GET_CTR(out, received_ib_multicast.packets) +
1922 MLX5_GET_CTR(out, received_eth_broadcast.packets);
1923
1924 vf_stats->rx_bytes =
1925 MLX5_GET_CTR(out, received_eth_unicast.octets) +
1926 MLX5_GET_CTR(out, received_ib_unicast.octets) +
1927 MLX5_GET_CTR(out, received_eth_multicast.octets) +
1928 MLX5_GET_CTR(out, received_ib_multicast.octets) +
1929 MLX5_GET_CTR(out, received_eth_broadcast.octets);
1930
1931 vf_stats->tx_packets =
1932 MLX5_GET_CTR(out, transmitted_eth_unicast.packets) +
1933 MLX5_GET_CTR(out, transmitted_ib_unicast.packets) +
1934 MLX5_GET_CTR(out, transmitted_eth_multicast.packets) +
1935 MLX5_GET_CTR(out, transmitted_ib_multicast.packets) +
1936 MLX5_GET_CTR(out, transmitted_eth_broadcast.packets);
1937
1938 vf_stats->tx_bytes =
1939 MLX5_GET_CTR(out, transmitted_eth_unicast.octets) +
1940 MLX5_GET_CTR(out, transmitted_ib_unicast.octets) +
1941 MLX5_GET_CTR(out, transmitted_eth_multicast.octets) +
1942 MLX5_GET_CTR(out, transmitted_ib_multicast.octets) +
1943 MLX5_GET_CTR(out, transmitted_eth_broadcast.octets);
1944
1945 vf_stats->multicast =
1946 MLX5_GET_CTR(out, received_eth_multicast.packets) +
1947 MLX5_GET_CTR(out, received_ib_multicast.packets);
1948
1949 vf_stats->broadcast =
1950 MLX5_GET_CTR(out, received_eth_broadcast.packets);
1951
1952 err = mlx5_esw_query_vport_drop_stats(esw->dev, vport, &stats);
1953 if (err)
1954 goto free_out;
1955 vf_stats->rx_dropped = stats.rx_dropped;
1956 vf_stats->tx_dropped = stats.tx_dropped;
1957
1958 free_out:
1959 kvfree(out);
1960 return err;
1961 }
1962
mlx5_eswitch_mode(const struct mlx5_core_dev * dev)1963 u8 mlx5_eswitch_mode(const struct mlx5_core_dev *dev)
1964 {
1965 struct mlx5_eswitch *esw = dev->priv.eswitch;
1966
1967 return mlx5_esw_allowed(esw) ? esw->mode : MLX5_ESWITCH_LEGACY;
1968 }
1969 EXPORT_SYMBOL_GPL(mlx5_eswitch_mode);
1970
1971 enum devlink_eswitch_encap_mode
mlx5_eswitch_get_encap_mode(const struct mlx5_core_dev * dev)1972 mlx5_eswitch_get_encap_mode(const struct mlx5_core_dev *dev)
1973 {
1974 struct mlx5_eswitch *esw;
1975
1976 esw = dev->priv.eswitch;
1977 return (mlx5_eswitch_mode(dev) == MLX5_ESWITCH_OFFLOADS) ? esw->offloads.encap :
1978 DEVLINK_ESWITCH_ENCAP_MODE_NONE;
1979 }
1980 EXPORT_SYMBOL(mlx5_eswitch_get_encap_mode);
1981
mlx5_esw_multipath_prereq(struct mlx5_core_dev * dev0,struct mlx5_core_dev * dev1)1982 bool mlx5_esw_multipath_prereq(struct mlx5_core_dev *dev0,
1983 struct mlx5_core_dev *dev1)
1984 {
1985 return (dev0->priv.eswitch->mode == MLX5_ESWITCH_OFFLOADS &&
1986 dev1->priv.eswitch->mode == MLX5_ESWITCH_OFFLOADS);
1987 }
1988
mlx5_esw_event_notifier_register(struct mlx5_eswitch * esw,struct notifier_block * nb)1989 int mlx5_esw_event_notifier_register(struct mlx5_eswitch *esw, struct notifier_block *nb)
1990 {
1991 return blocking_notifier_chain_register(&esw->n_head, nb);
1992 }
1993
mlx5_esw_event_notifier_unregister(struct mlx5_eswitch * esw,struct notifier_block * nb)1994 void mlx5_esw_event_notifier_unregister(struct mlx5_eswitch *esw, struct notifier_block *nb)
1995 {
1996 blocking_notifier_chain_unregister(&esw->n_head, nb);
1997 }
1998
1999 /**
2000 * mlx5_esw_hold() - Try to take a read lock on esw mode lock.
2001 * @mdev: mlx5 core device.
2002 *
2003 * Should be called by esw resources callers.
2004 *
2005 * Return: true on success or false.
2006 */
mlx5_esw_hold(struct mlx5_core_dev * mdev)2007 bool mlx5_esw_hold(struct mlx5_core_dev *mdev)
2008 {
2009 struct mlx5_eswitch *esw = mdev->priv.eswitch;
2010
2011 /* e.g. VF doesn't have eswitch so nothing to do */
2012 if (!mlx5_esw_allowed(esw))
2013 return true;
2014
2015 if (down_read_trylock(&esw->mode_lock) != 0)
2016 return true;
2017
2018 return false;
2019 }
2020
2021 /**
2022 * mlx5_esw_release() - Release a read lock on esw mode lock.
2023 * @mdev: mlx5 core device.
2024 */
mlx5_esw_release(struct mlx5_core_dev * mdev)2025 void mlx5_esw_release(struct mlx5_core_dev *mdev)
2026 {
2027 struct mlx5_eswitch *esw = mdev->priv.eswitch;
2028
2029 if (mlx5_esw_allowed(esw))
2030 up_read(&esw->mode_lock);
2031 }
2032
2033 /**
2034 * mlx5_esw_get() - Increase esw user count.
2035 * @mdev: mlx5 core device.
2036 */
mlx5_esw_get(struct mlx5_core_dev * mdev)2037 void mlx5_esw_get(struct mlx5_core_dev *mdev)
2038 {
2039 struct mlx5_eswitch *esw = mdev->priv.eswitch;
2040
2041 if (mlx5_esw_allowed(esw))
2042 atomic64_inc(&esw->user_count);
2043 }
2044
2045 /**
2046 * mlx5_esw_put() - Decrease esw user count.
2047 * @mdev: mlx5 core device.
2048 */
mlx5_esw_put(struct mlx5_core_dev * mdev)2049 void mlx5_esw_put(struct mlx5_core_dev *mdev)
2050 {
2051 struct mlx5_eswitch *esw = mdev->priv.eswitch;
2052
2053 if (mlx5_esw_allowed(esw))
2054 atomic64_dec_if_positive(&esw->user_count);
2055 }
2056
2057 /**
2058 * mlx5_esw_try_lock() - Take a write lock on esw mode lock.
2059 * @esw: eswitch device.
2060 *
2061 * Should be called by esw mode change routine.
2062 *
2063 * Return:
2064 * * 0 - esw mode if successfully locked and refcount is 0.
2065 * * -EBUSY - refcount is not 0.
2066 * * -EINVAL - In the middle of switching mode or lock is already held.
2067 */
mlx5_esw_try_lock(struct mlx5_eswitch * esw)2068 int mlx5_esw_try_lock(struct mlx5_eswitch *esw)
2069 {
2070 if (down_write_trylock(&esw->mode_lock) == 0)
2071 return -EINVAL;
2072
2073 if (atomic64_read(&esw->user_count) > 0) {
2074 up_write(&esw->mode_lock);
2075 return -EBUSY;
2076 }
2077
2078 return esw->mode;
2079 }
2080
2081 /**
2082 * mlx5_esw_unlock() - Release write lock on esw mode lock
2083 * @esw: eswitch device.
2084 */
mlx5_esw_unlock(struct mlx5_eswitch * esw)2085 void mlx5_esw_unlock(struct mlx5_eswitch *esw)
2086 {
2087 up_write(&esw->mode_lock);
2088 }
2089
2090 /**
2091 * mlx5_eswitch_get_total_vports - Get total vports of the eswitch
2092 *
2093 * @dev: Pointer to core device
2094 *
2095 * mlx5_eswitch_get_total_vports returns total number of eswitch vports.
2096 */
mlx5_eswitch_get_total_vports(const struct mlx5_core_dev * dev)2097 u16 mlx5_eswitch_get_total_vports(const struct mlx5_core_dev *dev)
2098 {
2099 struct mlx5_eswitch *esw;
2100
2101 esw = dev->priv.eswitch;
2102 return mlx5_esw_allowed(esw) ? esw->total_vports : 0;
2103 }
2104 EXPORT_SYMBOL_GPL(mlx5_eswitch_get_total_vports);
2105
2106 /**
2107 * mlx5_eswitch_get_core_dev - Get the mdev device
2108 * @esw : eswitch device.
2109 *
2110 * Return the mellanox core device which manages the eswitch.
2111 */
mlx5_eswitch_get_core_dev(struct mlx5_eswitch * esw)2112 struct mlx5_core_dev *mlx5_eswitch_get_core_dev(struct mlx5_eswitch *esw)
2113 {
2114 return mlx5_esw_allowed(esw) ? esw->dev : NULL;
2115 }
2116 EXPORT_SYMBOL(mlx5_eswitch_get_core_dev);
2117