1 // SPDX-License-Identifier: GPL-2.0
2 /* Copyright (C) 2018-2021, Intel Corporation. */
3
4 /* Link Aggregation code */
5
6 #include "ice.h"
7 #include "ice_lib.h"
8 #include "ice_lag.h"
9
10 #define ICE_LAG_RES_SHARED BIT(14)
11 #define ICE_LAG_RES_VALID BIT(15)
12
13 #define LACP_TRAIN_PKT_LEN 16
14 static const u8 lacp_train_pkt[LACP_TRAIN_PKT_LEN] = { 0, 0, 0, 0, 0, 0,
15 0, 0, 0, 0, 0, 0,
16 0x88, 0x09, 0, 0 };
17
18 #define ICE_RECIPE_LEN 64
19 static const u8 ice_dflt_vsi_rcp[ICE_RECIPE_LEN] = {
20 0x05, 0, 0, 0, 0x20, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
21 0x85, 0, 0x01, 0, 0, 0, 0xff, 0xff, 0x08, 0, 0, 0, 0, 0, 0, 0,
22 0, 0, 0, 0, 0, 0, 0x30 };
23 static const u8 ice_lport_rcp[ICE_RECIPE_LEN] = {
24 0x05, 0, 0, 0, 0x20, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
25 0x85, 0, 0x16, 0, 0, 0, 0xff, 0xff, 0x07, 0, 0, 0, 0, 0, 0, 0,
26 0, 0, 0, 0, 0, 0, 0x30 };
27
28 /**
29 * ice_lag_set_primary - set PF LAG state as Primary
30 * @lag: LAG info struct
31 */
ice_lag_set_primary(struct ice_lag * lag)32 static void ice_lag_set_primary(struct ice_lag *lag)
33 {
34 struct ice_pf *pf = lag->pf;
35
36 if (!pf)
37 return;
38
39 if (lag->role != ICE_LAG_UNSET && lag->role != ICE_LAG_BACKUP) {
40 dev_warn(ice_pf_to_dev(pf), "%s: Attempt to be Primary, but incompatible state.\n",
41 netdev_name(lag->netdev));
42 return;
43 }
44
45 lag->role = ICE_LAG_PRIMARY;
46 }
47
48 /**
49 * ice_lag_set_backup - set PF LAG state to Backup
50 * @lag: LAG info struct
51 */
ice_lag_set_backup(struct ice_lag * lag)52 static void ice_lag_set_backup(struct ice_lag *lag)
53 {
54 struct ice_pf *pf = lag->pf;
55
56 if (!pf)
57 return;
58
59 if (lag->role != ICE_LAG_UNSET && lag->role != ICE_LAG_PRIMARY) {
60 dev_dbg(ice_pf_to_dev(pf), "%s: Attempt to be Backup, but incompatible state\n",
61 netdev_name(lag->netdev));
62 return;
63 }
64
65 lag->role = ICE_LAG_BACKUP;
66 }
67
68 /**
69 * netif_is_same_ice - determine if netdev is on the same ice NIC as local PF
70 * @pf: local PF struct
71 * @netdev: netdev we are evaluating
72 */
netif_is_same_ice(struct ice_pf * pf,struct net_device * netdev)73 static bool netif_is_same_ice(struct ice_pf *pf, struct net_device *netdev)
74 {
75 struct ice_netdev_priv *np;
76 struct ice_pf *test_pf;
77 struct ice_vsi *vsi;
78
79 if (!netif_is_ice(netdev))
80 return false;
81
82 np = netdev_priv(netdev);
83 if (!np)
84 return false;
85
86 vsi = np->vsi;
87 if (!vsi)
88 return false;
89
90 test_pf = vsi->back;
91 if (!test_pf)
92 return false;
93
94 if (pf->pdev->bus != test_pf->pdev->bus ||
95 pf->pdev->slot != test_pf->pdev->slot)
96 return false;
97
98 return true;
99 }
100
101 /**
102 * ice_netdev_to_lag - return pointer to associated lag struct from netdev
103 * @netdev: pointer to net_device struct to query
104 */
ice_netdev_to_lag(struct net_device * netdev)105 static struct ice_lag *ice_netdev_to_lag(struct net_device *netdev)
106 {
107 struct ice_netdev_priv *np;
108 struct ice_vsi *vsi;
109
110 if (!netif_is_ice(netdev))
111 return NULL;
112
113 np = netdev_priv(netdev);
114 if (!np)
115 return NULL;
116
117 vsi = np->vsi;
118 if (!vsi)
119 return NULL;
120
121 return vsi->back->lag;
122 }
123
124 /**
125 * ice_lag_find_hw_by_lport - return an hw struct from bond members lport
126 * @lag: lag struct
127 * @lport: lport value to search for
128 */
129 static struct ice_hw *
ice_lag_find_hw_by_lport(struct ice_lag * lag,u8 lport)130 ice_lag_find_hw_by_lport(struct ice_lag *lag, u8 lport)
131 {
132 struct ice_lag_netdev_list *entry;
133 struct net_device *tmp_netdev;
134 struct ice_netdev_priv *np;
135 struct ice_hw *hw;
136
137 list_for_each_entry(entry, lag->netdev_head, node) {
138 tmp_netdev = entry->netdev;
139 if (!tmp_netdev || !netif_is_ice(tmp_netdev))
140 continue;
141
142 np = netdev_priv(tmp_netdev);
143 if (!np || !np->vsi)
144 continue;
145
146 hw = &np->vsi->back->hw;
147 if (hw->port_info->lport == lport)
148 return hw;
149 }
150
151 return NULL;
152 }
153
154 /**
155 * ice_pkg_has_lport_extract - check if lport extraction supported
156 * @hw: HW struct
157 */
ice_pkg_has_lport_extract(struct ice_hw * hw)158 static bool ice_pkg_has_lport_extract(struct ice_hw *hw)
159 {
160 int i;
161
162 for (i = 0; i < hw->blk[ICE_BLK_SW].es.count; i++) {
163 u16 offset;
164 u8 fv_prot;
165
166 ice_find_prot_off(hw, ICE_BLK_SW, ICE_SW_DEFAULT_PROFILE, i,
167 &fv_prot, &offset);
168 if (fv_prot == ICE_FV_PROT_MDID &&
169 offset == ICE_LP_EXT_BUF_OFFSET)
170 return true;
171 }
172 return false;
173 }
174
175 /**
176 * ice_lag_find_primary - returns pointer to primary interfaces lag struct
177 * @lag: local interfaces lag struct
178 */
ice_lag_find_primary(struct ice_lag * lag)179 static struct ice_lag *ice_lag_find_primary(struct ice_lag *lag)
180 {
181 struct ice_lag *primary_lag = NULL;
182 struct list_head *tmp;
183
184 list_for_each(tmp, lag->netdev_head) {
185 struct ice_lag_netdev_list *entry;
186 struct ice_lag *tmp_lag;
187
188 entry = list_entry(tmp, struct ice_lag_netdev_list, node);
189 tmp_lag = ice_netdev_to_lag(entry->netdev);
190 if (tmp_lag && tmp_lag->primary) {
191 primary_lag = tmp_lag;
192 break;
193 }
194 }
195
196 return primary_lag;
197 }
198
199 /**
200 * ice_lag_cfg_fltr - Add/Remove rule for LAG
201 * @lag: lag struct for local interface
202 * @act: rule action
203 * @recipe_id: recipe id for the new rule
204 * @rule_idx: pointer to rule index
205 * @direction: ICE_FLTR_RX or ICE_FLTR_TX
206 * @add: boolean on whether we are adding filters
207 */
208 static int
ice_lag_cfg_fltr(struct ice_lag * lag,u32 act,u16 recipe_id,u16 * rule_idx,u8 direction,bool add)209 ice_lag_cfg_fltr(struct ice_lag *lag, u32 act, u16 recipe_id, u16 *rule_idx,
210 u8 direction, bool add)
211 {
212 struct ice_sw_rule_lkup_rx_tx *s_rule;
213 u16 s_rule_sz, vsi_num;
214 struct ice_hw *hw;
215 u8 *eth_hdr;
216 u32 opc;
217 int err;
218
219 hw = &lag->pf->hw;
220 vsi_num = ice_get_hw_vsi_num(hw, 0);
221
222 s_rule_sz = ICE_SW_RULE_RX_TX_ETH_HDR_SIZE(s_rule);
223 s_rule = kzalloc(s_rule_sz, GFP_KERNEL);
224 if (!s_rule) {
225 dev_err(ice_pf_to_dev(lag->pf), "error allocating rule for LAG\n");
226 return -ENOMEM;
227 }
228
229 if (add) {
230 eth_hdr = s_rule->hdr_data;
231 ice_fill_eth_hdr(eth_hdr);
232
233 act |= FIELD_PREP(ICE_SINGLE_ACT_VSI_ID_M, vsi_num);
234
235 s_rule->recipe_id = cpu_to_le16(recipe_id);
236 if (direction == ICE_FLTR_RX) {
237 s_rule->hdr.type =
238 cpu_to_le16(ICE_AQC_SW_RULES_T_LKUP_RX);
239 s_rule->src = cpu_to_le16(hw->port_info->lport);
240 } else {
241 s_rule->hdr.type =
242 cpu_to_le16(ICE_AQC_SW_RULES_T_LKUP_TX);
243 s_rule->src = cpu_to_le16(vsi_num);
244 }
245 s_rule->act = cpu_to_le32(act);
246 s_rule->hdr_len = cpu_to_le16(DUMMY_ETH_HDR_LEN);
247 opc = ice_aqc_opc_add_sw_rules;
248 } else {
249 s_rule->index = cpu_to_le16(*rule_idx);
250 opc = ice_aqc_opc_remove_sw_rules;
251 }
252
253 err = ice_aq_sw_rules(&lag->pf->hw, s_rule, s_rule_sz, 1, opc, NULL);
254 if (err)
255 goto dflt_fltr_free;
256
257 if (add)
258 *rule_idx = le16_to_cpu(s_rule->index);
259 else
260 *rule_idx = 0;
261
262 dflt_fltr_free:
263 kfree(s_rule);
264 return err;
265 }
266
267 /**
268 * ice_lag_cfg_dflt_fltr - Add/Remove default VSI rule for LAG
269 * @lag: lag struct for local interface
270 * @add: boolean on whether to add filter
271 */
272 static int
ice_lag_cfg_dflt_fltr(struct ice_lag * lag,bool add)273 ice_lag_cfg_dflt_fltr(struct ice_lag *lag, bool add)
274 {
275 u32 act = ICE_SINGLE_ACT_VSI_FORWARDING |
276 ICE_SINGLE_ACT_VALID_BIT | ICE_SINGLE_ACT_LAN_ENABLE;
277 int err;
278
279 err = ice_lag_cfg_fltr(lag, act, lag->pf_recipe, &lag->pf_rx_rule_id,
280 ICE_FLTR_RX, add);
281 if (err)
282 goto err_rx;
283
284 act = ICE_SINGLE_ACT_VSI_FORWARDING | ICE_SINGLE_ACT_VALID_BIT |
285 ICE_SINGLE_ACT_LB_ENABLE;
286 err = ice_lag_cfg_fltr(lag, act, lag->pf_recipe, &lag->pf_tx_rule_id,
287 ICE_FLTR_TX, add);
288 if (err)
289 goto err_tx;
290
291 return 0;
292
293 err_tx:
294 ice_lag_cfg_fltr(lag, act, lag->pf_recipe, &lag->pf_rx_rule_id,
295 ICE_FLTR_RX, !add);
296 err_rx:
297 return err;
298 }
299
300 /**
301 * ice_lag_cfg_drop_fltr - Add/Remove lport drop rule
302 * @lag: lag struct for local interface
303 * @add: boolean on whether to add filter
304 */
305 static int
ice_lag_cfg_drop_fltr(struct ice_lag * lag,bool add)306 ice_lag_cfg_drop_fltr(struct ice_lag *lag, bool add)
307 {
308 u32 act = ICE_SINGLE_ACT_VSI_FORWARDING |
309 ICE_SINGLE_ACT_VALID_BIT |
310 ICE_SINGLE_ACT_DROP;
311
312 return ice_lag_cfg_fltr(lag, act, lag->lport_recipe,
313 &lag->lport_rule_idx, ICE_FLTR_RX, add);
314 }
315
316 /**
317 * ice_lag_cfg_pf_fltrs - set filters up for new active port
318 * @lag: local interfaces lag struct
319 * @ptr: opaque data containing notifier event
320 */
321 static void
ice_lag_cfg_pf_fltrs(struct ice_lag * lag,void * ptr)322 ice_lag_cfg_pf_fltrs(struct ice_lag *lag, void *ptr)
323 {
324 struct netdev_notifier_bonding_info *info;
325 struct netdev_bonding_info *bonding_info;
326 struct net_device *event_netdev;
327 struct device *dev;
328
329 event_netdev = netdev_notifier_info_to_dev(ptr);
330 /* not for this netdev */
331 if (event_netdev != lag->netdev)
332 return;
333
334 info = (struct netdev_notifier_bonding_info *)ptr;
335 bonding_info = &info->bonding_info;
336 dev = ice_pf_to_dev(lag->pf);
337
338 /* interface not active - remove old default VSI rule */
339 if (bonding_info->slave.state && lag->pf_rx_rule_id) {
340 if (ice_lag_cfg_dflt_fltr(lag, false))
341 dev_err(dev, "Error removing old default VSI filter\n");
342 if (ice_lag_cfg_drop_fltr(lag, true))
343 dev_err(dev, "Error adding new drop filter\n");
344 return;
345 }
346
347 /* interface becoming active - add new default VSI rule */
348 if (!bonding_info->slave.state && !lag->pf_rx_rule_id) {
349 if (ice_lag_cfg_dflt_fltr(lag, true))
350 dev_err(dev, "Error adding new default VSI filter\n");
351 if (lag->lport_rule_idx && ice_lag_cfg_drop_fltr(lag, false))
352 dev_err(dev, "Error removing old drop filter\n");
353 }
354 }
355
356 /**
357 * ice_display_lag_info - print LAG info
358 * @lag: LAG info struct
359 */
ice_display_lag_info(struct ice_lag * lag)360 static void ice_display_lag_info(struct ice_lag *lag)
361 {
362 const char *name, *upper, *role, *bonded, *primary;
363 struct device *dev = &lag->pf->pdev->dev;
364
365 name = lag->netdev ? netdev_name(lag->netdev) : "unset";
366 upper = lag->upper_netdev ? netdev_name(lag->upper_netdev) : "unset";
367 primary = lag->primary ? "TRUE" : "FALSE";
368 bonded = lag->bonded ? "BONDED" : "UNBONDED";
369
370 switch (lag->role) {
371 case ICE_LAG_NONE:
372 role = "NONE";
373 break;
374 case ICE_LAG_PRIMARY:
375 role = "PRIMARY";
376 break;
377 case ICE_LAG_BACKUP:
378 role = "BACKUP";
379 break;
380 case ICE_LAG_UNSET:
381 role = "UNSET";
382 break;
383 default:
384 role = "ERROR";
385 }
386
387 dev_dbg(dev, "%s %s, upper:%s, role:%s, primary:%s\n", name, bonded,
388 upper, role, primary);
389 }
390
391 /**
392 * ice_lag_qbuf_recfg - generate a buffer of queues for a reconfigure command
393 * @hw: HW struct that contains the queue contexts
394 * @qbuf: pointer to buffer to populate
395 * @vsi_num: index of the VSI in PF space
396 * @numq: number of queues to search for
397 * @tc: traffic class that contains the queues
398 *
399 * function returns the number of valid queues in buffer
400 */
401 static u16
ice_lag_qbuf_recfg(struct ice_hw * hw,struct ice_aqc_cfg_txqs_buf * qbuf,u16 vsi_num,u16 numq,u8 tc)402 ice_lag_qbuf_recfg(struct ice_hw *hw, struct ice_aqc_cfg_txqs_buf *qbuf,
403 u16 vsi_num, u16 numq, u8 tc)
404 {
405 struct ice_q_ctx *q_ctx;
406 u16 qid, count = 0;
407 struct ice_pf *pf;
408 int i;
409
410 pf = hw->back;
411 for (i = 0; i < numq; i++) {
412 q_ctx = ice_get_lan_q_ctx(hw, vsi_num, tc, i);
413 if (!q_ctx) {
414 dev_dbg(ice_hw_to_dev(hw), "%s queue %d NO Q CONTEXT\n",
415 __func__, i);
416 continue;
417 }
418 if (q_ctx->q_teid == ICE_INVAL_TEID) {
419 dev_dbg(ice_hw_to_dev(hw), "%s queue %d INVAL TEID\n",
420 __func__, i);
421 continue;
422 }
423 if (q_ctx->q_handle == ICE_INVAL_Q_HANDLE) {
424 dev_dbg(ice_hw_to_dev(hw), "%s queue %d INVAL Q HANDLE\n",
425 __func__, i);
426 continue;
427 }
428
429 qid = pf->vsi[vsi_num]->txq_map[q_ctx->q_handle];
430 qbuf->queue_info[count].q_handle = cpu_to_le16(qid);
431 qbuf->queue_info[count].tc = tc;
432 qbuf->queue_info[count].q_teid = cpu_to_le32(q_ctx->q_teid);
433 count++;
434 }
435
436 return count;
437 }
438
439 /**
440 * ice_lag_get_sched_parent - locate or create a sched node parent
441 * @hw: HW struct for getting parent in
442 * @tc: traffic class on parent/node
443 */
444 static struct ice_sched_node *
ice_lag_get_sched_parent(struct ice_hw * hw,u8 tc)445 ice_lag_get_sched_parent(struct ice_hw *hw, u8 tc)
446 {
447 struct ice_sched_node *tc_node, *aggnode, *parent = NULL;
448 u16 num_nodes[ICE_AQC_TOPO_MAX_LEVEL_NUM] = { 0 };
449 struct ice_port_info *pi = hw->port_info;
450 struct device *dev;
451 u8 aggl, vsil;
452 int n;
453
454 dev = ice_hw_to_dev(hw);
455
456 tc_node = ice_sched_get_tc_node(pi, tc);
457 if (!tc_node) {
458 dev_warn(dev, "Failure to find TC node for LAG move\n");
459 return parent;
460 }
461
462 aggnode = ice_sched_get_agg_node(pi, tc_node, ICE_DFLT_AGG_ID);
463 if (!aggnode) {
464 dev_warn(dev, "Failure to find aggregate node for LAG move\n");
465 return parent;
466 }
467
468 aggl = ice_sched_get_agg_layer(hw);
469 vsil = ice_sched_get_vsi_layer(hw);
470
471 for (n = aggl + 1; n < vsil; n++)
472 num_nodes[n] = 1;
473
474 for (n = 0; n < aggnode->num_children; n++) {
475 parent = ice_sched_get_free_vsi_parent(hw, aggnode->children[n],
476 num_nodes);
477 if (parent)
478 return parent;
479 }
480
481 /* if free parent not found - add one */
482 parent = aggnode;
483 for (n = aggl + 1; n < vsil; n++) {
484 u16 num_nodes_added;
485 u32 first_teid;
486 int err;
487
488 err = ice_sched_add_nodes_to_layer(pi, tc_node, parent, n,
489 num_nodes[n], &first_teid,
490 &num_nodes_added);
491 if (err || num_nodes[n] != num_nodes_added)
492 return NULL;
493
494 if (num_nodes_added)
495 parent = ice_sched_find_node_by_teid(tc_node,
496 first_teid);
497 else
498 parent = parent->children[0];
499 if (!parent) {
500 dev_warn(dev, "Failure to add new parent for LAG move\n");
501 return parent;
502 }
503 }
504
505 return parent;
506 }
507
508 /**
509 * ice_lag_move_vf_node_tc - move scheduling nodes for one VF on one TC
510 * @lag: lag info struct
511 * @oldport: lport of previous nodes location
512 * @newport: lport of destination nodes location
513 * @vsi_num: array index of VSI in PF space
514 * @tc: traffic class to move
515 */
516 static void
ice_lag_move_vf_node_tc(struct ice_lag * lag,u8 oldport,u8 newport,u16 vsi_num,u8 tc)517 ice_lag_move_vf_node_tc(struct ice_lag *lag, u8 oldport, u8 newport,
518 u16 vsi_num, u8 tc)
519 {
520 DEFINE_RAW_FLEX(struct ice_aqc_move_elem, buf, teid, 1);
521 struct device *dev = ice_pf_to_dev(lag->pf);
522 u16 numq, valq, num_moved, qbuf_size;
523 u16 buf_size = __struct_size(buf);
524 struct ice_aqc_cfg_txqs_buf *qbuf;
525 struct ice_sched_node *n_prt;
526 struct ice_hw *new_hw = NULL;
527 __le32 teid, parent_teid;
528 struct ice_vsi_ctx *ctx;
529 u32 tmp_teid;
530
531 ctx = ice_get_vsi_ctx(&lag->pf->hw, vsi_num);
532 if (!ctx) {
533 dev_warn(dev, "Unable to locate VSI context for LAG failover\n");
534 return;
535 }
536
537 /* check to see if this VF is enabled on this TC */
538 if (!ctx->sched.vsi_node[tc])
539 return;
540
541 /* locate HW struct for destination port */
542 new_hw = ice_lag_find_hw_by_lport(lag, newport);
543 if (!new_hw) {
544 dev_warn(dev, "Unable to locate HW struct for LAG node destination\n");
545 return;
546 }
547
548 numq = ctx->num_lan_q_entries[tc];
549 teid = ctx->sched.vsi_node[tc]->info.node_teid;
550 tmp_teid = le32_to_cpu(teid);
551 parent_teid = ctx->sched.vsi_node[tc]->info.parent_teid;
552 /* if no teid assigned or numq == 0, then this TC is not active */
553 if (!tmp_teid || !numq)
554 return;
555
556 /* suspend VSI subtree for Traffic Class "tc" on
557 * this VF's VSI
558 */
559 if (ice_sched_suspend_resume_elems(&lag->pf->hw, 1, &tmp_teid, true))
560 dev_dbg(dev, "Problem suspending traffic for LAG node move\n");
561
562 /* reconfigure all VF's queues on this Traffic Class
563 * to new port
564 */
565 qbuf_size = struct_size(qbuf, queue_info, numq);
566 qbuf = kzalloc(qbuf_size, GFP_KERNEL);
567 if (!qbuf) {
568 dev_warn(dev, "Failure allocating memory for VF queue recfg buffer\n");
569 goto resume_traffic;
570 }
571
572 /* add the per queue info for the reconfigure command buffer */
573 valq = ice_lag_qbuf_recfg(&lag->pf->hw, qbuf, vsi_num, numq, tc);
574 if (!valq) {
575 dev_dbg(dev, "No valid queues found for LAG failover\n");
576 goto qbuf_none;
577 }
578
579 if (ice_aq_cfg_lan_txq(&lag->pf->hw, qbuf, qbuf_size, valq, oldport,
580 newport, NULL)) {
581 dev_warn(dev, "Failure to configure queues for LAG failover\n");
582 goto qbuf_err;
583 }
584
585 qbuf_none:
586 kfree(qbuf);
587
588 /* find new parent in destination port's tree for VF VSI node on this
589 * Traffic Class
590 */
591 n_prt = ice_lag_get_sched_parent(new_hw, tc);
592 if (!n_prt)
593 goto resume_traffic;
594
595 /* Move Vf's VSI node for this TC to newport's scheduler tree */
596 buf->hdr.src_parent_teid = parent_teid;
597 buf->hdr.dest_parent_teid = n_prt->info.node_teid;
598 buf->hdr.num_elems = cpu_to_le16(1);
599 buf->hdr.mode = ICE_AQC_MOVE_ELEM_MODE_KEEP_OWN;
600 buf->teid[0] = teid;
601
602 if (ice_aq_move_sched_elems(&lag->pf->hw, buf, buf_size, &num_moved))
603 dev_warn(dev, "Failure to move VF nodes for failover\n");
604 else
605 ice_sched_update_parent(n_prt, ctx->sched.vsi_node[tc]);
606
607 goto resume_traffic;
608
609 qbuf_err:
610 kfree(qbuf);
611
612 resume_traffic:
613 /* restart traffic for VSI node */
614 if (ice_sched_suspend_resume_elems(&lag->pf->hw, 1, &tmp_teid, false))
615 dev_dbg(dev, "Problem restarting traffic for LAG node move\n");
616 }
617
618 /**
619 * ice_lag_build_netdev_list - populate the lag struct's netdev list
620 * @lag: local lag struct
621 * @ndlist: pointer to netdev list to populate
622 */
ice_lag_build_netdev_list(struct ice_lag * lag,struct ice_lag_netdev_list * ndlist)623 static void ice_lag_build_netdev_list(struct ice_lag *lag,
624 struct ice_lag_netdev_list *ndlist)
625 {
626 struct ice_lag_netdev_list *nl;
627 struct net_device *tmp_nd;
628
629 INIT_LIST_HEAD(&ndlist->node);
630 rcu_read_lock();
631 for_each_netdev_in_bond_rcu(lag->upper_netdev, tmp_nd) {
632 nl = kzalloc(sizeof(*nl), GFP_ATOMIC);
633 if (!nl)
634 break;
635
636 nl->netdev = tmp_nd;
637 list_add(&nl->node, &ndlist->node);
638 }
639 rcu_read_unlock();
640 lag->netdev_head = &ndlist->node;
641 }
642
643 /**
644 * ice_lag_destroy_netdev_list - free lag struct's netdev list
645 * @lag: pointer to local lag struct
646 * @ndlist: pointer to lag struct netdev list
647 */
ice_lag_destroy_netdev_list(struct ice_lag * lag,struct ice_lag_netdev_list * ndlist)648 static void ice_lag_destroy_netdev_list(struct ice_lag *lag,
649 struct ice_lag_netdev_list *ndlist)
650 {
651 struct ice_lag_netdev_list *entry, *n;
652
653 rcu_read_lock();
654 list_for_each_entry_safe(entry, n, &ndlist->node, node) {
655 list_del(&entry->node);
656 kfree(entry);
657 }
658 rcu_read_unlock();
659 lag->netdev_head = NULL;
660 }
661
662 /**
663 * ice_lag_move_single_vf_nodes - Move Tx scheduling nodes for single VF
664 * @lag: primary interface LAG struct
665 * @oldport: lport of previous interface
666 * @newport: lport of destination interface
667 * @vsi_num: SW index of VF's VSI
668 */
669 static void
ice_lag_move_single_vf_nodes(struct ice_lag * lag,u8 oldport,u8 newport,u16 vsi_num)670 ice_lag_move_single_vf_nodes(struct ice_lag *lag, u8 oldport, u8 newport,
671 u16 vsi_num)
672 {
673 u8 tc;
674
675 ice_for_each_traffic_class(tc)
676 ice_lag_move_vf_node_tc(lag, oldport, newport, vsi_num, tc);
677 }
678
679 /**
680 * ice_lag_move_new_vf_nodes - Move Tx scheduling nodes for a VF if required
681 * @vf: the VF to move Tx nodes for
682 *
683 * Called just after configuring new VF queues. Check whether the VF Tx
684 * scheduling nodes need to be updated to fail over to the active port. If so,
685 * move them now.
686 */
ice_lag_move_new_vf_nodes(struct ice_vf * vf)687 void ice_lag_move_new_vf_nodes(struct ice_vf *vf)
688 {
689 struct ice_lag_netdev_list ndlist;
690 u8 pri_port, act_port;
691 struct ice_lag *lag;
692 struct ice_vsi *vsi;
693 struct ice_pf *pf;
694
695 vsi = ice_get_vf_vsi(vf);
696
697 if (WARN_ON(!vsi))
698 return;
699
700 if (WARN_ON(vsi->type != ICE_VSI_VF))
701 return;
702
703 pf = vf->pf;
704 lag = pf->lag;
705
706 mutex_lock(&pf->lag_mutex);
707 if (!lag->bonded)
708 goto new_vf_unlock;
709
710 pri_port = pf->hw.port_info->lport;
711 act_port = lag->active_port;
712
713 if (lag->upper_netdev)
714 ice_lag_build_netdev_list(lag, &ndlist);
715
716 if (ice_is_feature_supported(pf, ICE_F_SRIOV_LAG) &&
717 lag->bonded && lag->primary && pri_port != act_port &&
718 !list_empty(lag->netdev_head))
719 ice_lag_move_single_vf_nodes(lag, pri_port, act_port, vsi->idx);
720
721 ice_lag_destroy_netdev_list(lag, &ndlist);
722
723 new_vf_unlock:
724 mutex_unlock(&pf->lag_mutex);
725 }
726
727 /**
728 * ice_lag_move_vf_nodes - move Tx scheduling nodes for all VFs to new port
729 * @lag: lag info struct
730 * @oldport: lport of previous interface
731 * @newport: lport of destination interface
732 */
ice_lag_move_vf_nodes(struct ice_lag * lag,u8 oldport,u8 newport)733 static void ice_lag_move_vf_nodes(struct ice_lag *lag, u8 oldport, u8 newport)
734 {
735 struct ice_pf *pf;
736 int i;
737
738 if (!lag->primary)
739 return;
740
741 pf = lag->pf;
742 ice_for_each_vsi(pf, i)
743 if (pf->vsi[i] && pf->vsi[i]->type == ICE_VSI_VF)
744 ice_lag_move_single_vf_nodes(lag, oldport, newport, i);
745 }
746
747 /**
748 * ice_lag_move_vf_nodes_cfg - move vf nodes outside LAG netdev event context
749 * @lag: local lag struct
750 * @src_prt: lport value for source port
751 * @dst_prt: lport value for destination port
752 *
753 * This function is used to move nodes during an out-of-netdev-event situation,
754 * primarily when the driver needs to reconfigure or recreate resources.
755 *
756 * Must be called while holding the lag_mutex to avoid lag events from
757 * processing while out-of-sync moves are happening. Also, paired moves,
758 * such as used in a reset flow, should both be called under the same mutex
759 * lock to avoid changes between start of reset and end of reset.
760 */
ice_lag_move_vf_nodes_cfg(struct ice_lag * lag,u8 src_prt,u8 dst_prt)761 void ice_lag_move_vf_nodes_cfg(struct ice_lag *lag, u8 src_prt, u8 dst_prt)
762 {
763 struct ice_lag_netdev_list ndlist;
764
765 ice_lag_build_netdev_list(lag, &ndlist);
766 ice_lag_move_vf_nodes(lag, src_prt, dst_prt);
767 ice_lag_destroy_netdev_list(lag, &ndlist);
768 }
769
770 #define ICE_LAG_SRIOV_CP_RECIPE 10
771 #define ICE_LAG_SRIOV_TRAIN_PKT_LEN 16
772
773 /**
774 * ice_lag_cfg_cp_fltr - configure filter for control packets
775 * @lag: local interface's lag struct
776 * @add: add or remove rule
777 */
778 static void
ice_lag_cfg_cp_fltr(struct ice_lag * lag,bool add)779 ice_lag_cfg_cp_fltr(struct ice_lag *lag, bool add)
780 {
781 struct ice_sw_rule_lkup_rx_tx *s_rule = NULL;
782 struct ice_vsi *vsi;
783 u16 buf_len, opc;
784
785 vsi = lag->pf->vsi[0];
786
787 buf_len = ICE_SW_RULE_RX_TX_HDR_SIZE(s_rule,
788 ICE_LAG_SRIOV_TRAIN_PKT_LEN);
789 s_rule = kzalloc(buf_len, GFP_KERNEL);
790 if (!s_rule) {
791 netdev_warn(lag->netdev, "-ENOMEM error configuring CP filter\n");
792 return;
793 }
794
795 if (add) {
796 s_rule->hdr.type = cpu_to_le16(ICE_AQC_SW_RULES_T_LKUP_RX);
797 s_rule->recipe_id = cpu_to_le16(ICE_LAG_SRIOV_CP_RECIPE);
798 s_rule->src = cpu_to_le16(vsi->port_info->lport);
799 s_rule->act = cpu_to_le32(ICE_FWD_TO_VSI |
800 ICE_SINGLE_ACT_LAN_ENABLE |
801 ICE_SINGLE_ACT_VALID_BIT |
802 FIELD_PREP(ICE_SINGLE_ACT_VSI_ID_M, vsi->vsi_num));
803 s_rule->hdr_len = cpu_to_le16(ICE_LAG_SRIOV_TRAIN_PKT_LEN);
804 memcpy(s_rule->hdr_data, lacp_train_pkt, LACP_TRAIN_PKT_LEN);
805 opc = ice_aqc_opc_add_sw_rules;
806 } else {
807 opc = ice_aqc_opc_remove_sw_rules;
808 s_rule->index = cpu_to_le16(lag->cp_rule_idx);
809 }
810 if (ice_aq_sw_rules(&lag->pf->hw, s_rule, buf_len, 1, opc, NULL)) {
811 netdev_warn(lag->netdev, "Error %s CP rule for fail-over\n",
812 add ? "ADDING" : "REMOVING");
813 goto cp_free;
814 }
815
816 if (add)
817 lag->cp_rule_idx = le16_to_cpu(s_rule->index);
818 else
819 lag->cp_rule_idx = 0;
820
821 cp_free:
822 kfree(s_rule);
823 }
824
825 /**
826 * ice_lag_info_event - handle NETDEV_BONDING_INFO event
827 * @lag: LAG info struct
828 * @ptr: opaque data pointer
829 *
830 * ptr is to be cast to (netdev_notifier_bonding_info *)
831 */
ice_lag_info_event(struct ice_lag * lag,void * ptr)832 static void ice_lag_info_event(struct ice_lag *lag, void *ptr)
833 {
834 struct netdev_notifier_bonding_info *info;
835 struct netdev_bonding_info *bonding_info;
836 struct net_device *event_netdev;
837 const char *lag_netdev_name;
838
839 event_netdev = netdev_notifier_info_to_dev(ptr);
840 info = ptr;
841 lag_netdev_name = netdev_name(lag->netdev);
842 bonding_info = &info->bonding_info;
843
844 if (event_netdev != lag->netdev || !lag->bonded || !lag->upper_netdev)
845 return;
846
847 if (bonding_info->master.bond_mode != BOND_MODE_ACTIVEBACKUP) {
848 netdev_dbg(lag->netdev, "Bonding event recv, but mode not active/backup\n");
849 goto lag_out;
850 }
851
852 if (strcmp(bonding_info->slave.slave_name, lag_netdev_name)) {
853 netdev_dbg(lag->netdev, "Bonding event recv, but secondary info not for us\n");
854 goto lag_out;
855 }
856
857 if (bonding_info->slave.state)
858 ice_lag_set_backup(lag);
859 else
860 ice_lag_set_primary(lag);
861
862 lag_out:
863 ice_display_lag_info(lag);
864 }
865
866 /**
867 * ice_lag_reclaim_vf_tc - move scheduling nodes back to primary interface
868 * @lag: primary interface lag struct
869 * @src_hw: HW struct current node location
870 * @vsi_num: VSI index in PF space
871 * @tc: traffic class to move
872 */
873 static void
ice_lag_reclaim_vf_tc(struct ice_lag * lag,struct ice_hw * src_hw,u16 vsi_num,u8 tc)874 ice_lag_reclaim_vf_tc(struct ice_lag *lag, struct ice_hw *src_hw, u16 vsi_num,
875 u8 tc)
876 {
877 DEFINE_RAW_FLEX(struct ice_aqc_move_elem, buf, teid, 1);
878 struct device *dev = ice_pf_to_dev(lag->pf);
879 u16 numq, valq, num_moved, qbuf_size;
880 u16 buf_size = __struct_size(buf);
881 struct ice_aqc_cfg_txqs_buf *qbuf;
882 struct ice_sched_node *n_prt;
883 __le32 teid, parent_teid;
884 struct ice_vsi_ctx *ctx;
885 struct ice_hw *hw;
886 u32 tmp_teid;
887
888 hw = &lag->pf->hw;
889 ctx = ice_get_vsi_ctx(hw, vsi_num);
890 if (!ctx) {
891 dev_warn(dev, "Unable to locate VSI context for LAG reclaim\n");
892 return;
893 }
894
895 /* check to see if this VF is enabled on this TC */
896 if (!ctx->sched.vsi_node[tc])
897 return;
898
899 numq = ctx->num_lan_q_entries[tc];
900 teid = ctx->sched.vsi_node[tc]->info.node_teid;
901 tmp_teid = le32_to_cpu(teid);
902 parent_teid = ctx->sched.vsi_node[tc]->info.parent_teid;
903
904 /* if !teid or !numq, then this TC is not active */
905 if (!tmp_teid || !numq)
906 return;
907
908 /* suspend traffic */
909 if (ice_sched_suspend_resume_elems(hw, 1, &tmp_teid, true))
910 dev_dbg(dev, "Problem suspending traffic for LAG node move\n");
911
912 /* reconfig queues for new port */
913 qbuf_size = struct_size(qbuf, queue_info, numq);
914 qbuf = kzalloc(qbuf_size, GFP_KERNEL);
915 if (!qbuf) {
916 dev_warn(dev, "Failure allocating memory for VF queue recfg buffer\n");
917 goto resume_reclaim;
918 }
919
920 /* add the per queue info for the reconfigure command buffer */
921 valq = ice_lag_qbuf_recfg(hw, qbuf, vsi_num, numq, tc);
922 if (!valq) {
923 dev_dbg(dev, "No valid queues found for LAG reclaim\n");
924 goto reclaim_none;
925 }
926
927 if (ice_aq_cfg_lan_txq(hw, qbuf, qbuf_size, numq,
928 src_hw->port_info->lport, hw->port_info->lport,
929 NULL)) {
930 dev_warn(dev, "Failure to configure queues for LAG failover\n");
931 goto reclaim_qerr;
932 }
933
934 reclaim_none:
935 kfree(qbuf);
936
937 /* find parent in primary tree */
938 n_prt = ice_lag_get_sched_parent(hw, tc);
939 if (!n_prt)
940 goto resume_reclaim;
941
942 /* Move node to new parent */
943 buf->hdr.src_parent_teid = parent_teid;
944 buf->hdr.dest_parent_teid = n_prt->info.node_teid;
945 buf->hdr.num_elems = cpu_to_le16(1);
946 buf->hdr.mode = ICE_AQC_MOVE_ELEM_MODE_KEEP_OWN;
947 buf->teid[0] = teid;
948
949 if (ice_aq_move_sched_elems(&lag->pf->hw, buf, buf_size, &num_moved))
950 dev_warn(dev, "Failure to move VF nodes for LAG reclaim\n");
951 else
952 ice_sched_update_parent(n_prt, ctx->sched.vsi_node[tc]);
953
954 goto resume_reclaim;
955
956 reclaim_qerr:
957 kfree(qbuf);
958
959 resume_reclaim:
960 /* restart traffic */
961 if (ice_sched_suspend_resume_elems(hw, 1, &tmp_teid, false))
962 dev_warn(dev, "Problem restarting traffic for LAG node reclaim\n");
963 }
964
965 /**
966 * ice_lag_reclaim_vf_nodes - When interface leaving bond primary reclaims nodes
967 * @lag: primary interface lag struct
968 * @src_hw: HW struct for current node location
969 */
970 static void
ice_lag_reclaim_vf_nodes(struct ice_lag * lag,struct ice_hw * src_hw)971 ice_lag_reclaim_vf_nodes(struct ice_lag *lag, struct ice_hw *src_hw)
972 {
973 struct ice_pf *pf;
974 int i, tc;
975
976 if (!lag->primary || !src_hw)
977 return;
978
979 pf = lag->pf;
980 ice_for_each_vsi(pf, i)
981 if (pf->vsi[i] && pf->vsi[i]->type == ICE_VSI_VF)
982 ice_for_each_traffic_class(tc)
983 ice_lag_reclaim_vf_tc(lag, src_hw, i, tc);
984 }
985
986 /**
987 * ice_lag_link - handle LAG link event
988 * @lag: LAG info struct
989 */
ice_lag_link(struct ice_lag * lag)990 static void ice_lag_link(struct ice_lag *lag)
991 {
992 struct ice_pf *pf = lag->pf;
993
994 if (lag->bonded)
995 dev_warn(ice_pf_to_dev(pf), "%s Already part of a bond\n",
996 netdev_name(lag->netdev));
997
998 lag->bonded = true;
999 lag->role = ICE_LAG_UNSET;
1000 netdev_info(lag->netdev, "Shared SR-IOV resources in bond are active\n");
1001 }
1002
1003 /**
1004 * ice_lag_config_eswitch - configure eswitch to work with LAG
1005 * @lag: lag info struct
1006 * @netdev: active network interface device struct
1007 *
1008 * Updates all port representors in eswitch to use @netdev for Tx.
1009 *
1010 * Configures the netdev to keep dst metadata (also used in representor Tx).
1011 * This is required for an uplink without switchdev mode configured.
1012 */
ice_lag_config_eswitch(struct ice_lag * lag,struct net_device * netdev)1013 static void ice_lag_config_eswitch(struct ice_lag *lag,
1014 struct net_device *netdev)
1015 {
1016 struct ice_repr *repr;
1017 unsigned long id;
1018
1019 xa_for_each(&lag->pf->eswitch.reprs, id, repr)
1020 repr->dst->u.port_info.lower_dev = netdev;
1021
1022 netif_keep_dst(netdev);
1023 }
1024
1025 /**
1026 * ice_lag_unlink - handle unlink event
1027 * @lag: LAG info struct
1028 */
ice_lag_unlink(struct ice_lag * lag)1029 static void ice_lag_unlink(struct ice_lag *lag)
1030 {
1031 u8 pri_port, act_port, loc_port;
1032 struct ice_pf *pf = lag->pf;
1033
1034 if (!lag->bonded) {
1035 netdev_dbg(lag->netdev, "bonding unlink event on non-LAG netdev\n");
1036 return;
1037 }
1038
1039 if (lag->primary) {
1040 act_port = lag->active_port;
1041 pri_port = lag->pf->hw.port_info->lport;
1042 if (act_port != pri_port && act_port != ICE_LAG_INVALID_PORT)
1043 ice_lag_move_vf_nodes(lag, act_port, pri_port);
1044 lag->primary = false;
1045 lag->active_port = ICE_LAG_INVALID_PORT;
1046
1047 /* Config primary's eswitch back to normal operation. */
1048 ice_lag_config_eswitch(lag, lag->netdev);
1049 } else {
1050 struct ice_lag *primary_lag;
1051
1052 primary_lag = ice_lag_find_primary(lag);
1053 if (primary_lag) {
1054 act_port = primary_lag->active_port;
1055 pri_port = primary_lag->pf->hw.port_info->lport;
1056 loc_port = pf->hw.port_info->lport;
1057 if (act_port == loc_port &&
1058 act_port != ICE_LAG_INVALID_PORT) {
1059 ice_lag_reclaim_vf_nodes(primary_lag,
1060 &lag->pf->hw);
1061 primary_lag->active_port = ICE_LAG_INVALID_PORT;
1062 }
1063 }
1064 }
1065
1066 lag->bonded = false;
1067 lag->role = ICE_LAG_NONE;
1068 lag->upper_netdev = NULL;
1069 }
1070
1071 /**
1072 * ice_lag_link_unlink - helper function to call lag_link/unlink
1073 * @lag: lag info struct
1074 * @ptr: opaque pointer data
1075 */
ice_lag_link_unlink(struct ice_lag * lag,void * ptr)1076 static void ice_lag_link_unlink(struct ice_lag *lag, void *ptr)
1077 {
1078 struct net_device *netdev = netdev_notifier_info_to_dev(ptr);
1079 struct netdev_notifier_changeupper_info *info = ptr;
1080
1081 if (netdev != lag->netdev)
1082 return;
1083
1084 if (info->linking)
1085 ice_lag_link(lag);
1086 else
1087 ice_lag_unlink(lag);
1088 }
1089
1090 /**
1091 * ice_lag_set_swid - set the SWID on secondary interface
1092 * @primary_swid: primary interface's SWID
1093 * @local_lag: local interfaces LAG struct
1094 * @link: Is this a linking activity
1095 *
1096 * If link is false, then primary_swid should be expected to not be valid
1097 * This function should never be called in interrupt context.
1098 */
1099 static void
ice_lag_set_swid(u16 primary_swid,struct ice_lag * local_lag,bool link)1100 ice_lag_set_swid(u16 primary_swid, struct ice_lag *local_lag,
1101 bool link)
1102 {
1103 struct ice_aqc_alloc_free_res_elem *buf;
1104 struct ice_aqc_set_port_params *cmd;
1105 struct ice_aq_desc desc;
1106 u16 buf_len, swid;
1107 int status, i;
1108
1109 buf_len = struct_size(buf, elem, 1);
1110 buf = kzalloc(buf_len, GFP_KERNEL);
1111 if (!buf) {
1112 dev_err(ice_pf_to_dev(local_lag->pf), "-ENOMEM error setting SWID\n");
1113 return;
1114 }
1115
1116 buf->num_elems = cpu_to_le16(1);
1117 buf->res_type = cpu_to_le16(ICE_AQC_RES_TYPE_SWID);
1118 /* if unlinnking need to free the shared resource */
1119 if (!link && local_lag->bond_swid) {
1120 buf->elem[0].e.sw_resp = cpu_to_le16(local_lag->bond_swid);
1121 status = ice_aq_alloc_free_res(&local_lag->pf->hw, buf,
1122 buf_len, ice_aqc_opc_free_res);
1123 if (status)
1124 dev_err(ice_pf_to_dev(local_lag->pf), "Error freeing SWID during LAG unlink\n");
1125 local_lag->bond_swid = 0;
1126 }
1127
1128 if (link) {
1129 buf->res_type |= cpu_to_le16(ICE_LAG_RES_SHARED |
1130 ICE_LAG_RES_VALID);
1131 /* store the primary's SWID in case it leaves bond first */
1132 local_lag->bond_swid = primary_swid;
1133 buf->elem[0].e.sw_resp = cpu_to_le16(local_lag->bond_swid);
1134 } else {
1135 buf->elem[0].e.sw_resp =
1136 cpu_to_le16(local_lag->pf->hw.port_info->sw_id);
1137 }
1138
1139 status = ice_aq_alloc_free_res(&local_lag->pf->hw, buf, buf_len,
1140 ice_aqc_opc_alloc_res);
1141 if (status)
1142 dev_err(ice_pf_to_dev(local_lag->pf), "Error subscribing to SWID 0x%04X\n",
1143 local_lag->bond_swid);
1144
1145 kfree(buf);
1146
1147 /* Configure port param SWID to correct value */
1148 if (link)
1149 swid = primary_swid;
1150 else
1151 swid = local_lag->pf->hw.port_info->sw_id;
1152
1153 cmd = &desc.params.set_port_params;
1154 ice_fill_dflt_direct_cmd_desc(&desc, ice_aqc_opc_set_port_params);
1155
1156 cmd->swid = cpu_to_le16(ICE_AQC_PORT_SWID_VALID | swid);
1157 /* If this is happening in reset context, it is possible that the
1158 * primary interface has not finished setting its SWID to SHARED
1159 * yet. Allow retries to account for this timing issue between
1160 * interfaces.
1161 */
1162 for (i = 0; i < ICE_LAG_RESET_RETRIES; i++) {
1163 status = ice_aq_send_cmd(&local_lag->pf->hw, &desc, NULL, 0,
1164 NULL);
1165 if (!status)
1166 break;
1167
1168 usleep_range(1000, 2000);
1169 }
1170
1171 if (status)
1172 dev_err(ice_pf_to_dev(local_lag->pf), "Error setting SWID in port params %d\n",
1173 status);
1174 }
1175
1176 /**
1177 * ice_lag_primary_swid - set/clear the SHARED attrib of primary's SWID
1178 * @lag: primary interface's lag struct
1179 * @link: is this a linking activity
1180 *
1181 * Implement setting primary SWID as shared using 0x020B
1182 */
ice_lag_primary_swid(struct ice_lag * lag,bool link)1183 static void ice_lag_primary_swid(struct ice_lag *lag, bool link)
1184 {
1185 struct ice_hw *hw;
1186 u16 swid;
1187
1188 hw = &lag->pf->hw;
1189 swid = hw->port_info->sw_id;
1190
1191 if (ice_share_res(hw, ICE_AQC_RES_TYPE_SWID, link, swid))
1192 dev_warn(ice_pf_to_dev(lag->pf), "Failure to set primary interface shared status\n");
1193 }
1194
1195 /**
1196 * ice_lag_add_prune_list - Adds event_pf's VSI to primary's prune list
1197 * @lag: lag info struct
1198 * @event_pf: PF struct for VSI we are adding to primary's prune list
1199 */
ice_lag_add_prune_list(struct ice_lag * lag,struct ice_pf * event_pf)1200 static void ice_lag_add_prune_list(struct ice_lag *lag, struct ice_pf *event_pf)
1201 {
1202 u16 num_vsi, rule_buf_sz, vsi_list_id, event_vsi_num, prim_vsi_idx;
1203 struct ice_sw_rule_vsi_list *s_rule = NULL;
1204 struct device *dev;
1205
1206 num_vsi = 1;
1207
1208 dev = ice_pf_to_dev(lag->pf);
1209 event_vsi_num = event_pf->vsi[0]->vsi_num;
1210 prim_vsi_idx = lag->pf->vsi[0]->idx;
1211
1212 if (!ice_find_vsi_list_entry(&lag->pf->hw, ICE_SW_LKUP_VLAN,
1213 prim_vsi_idx, &vsi_list_id)) {
1214 dev_warn(dev, "Could not locate prune list when setting up SRIOV LAG\n");
1215 return;
1216 }
1217
1218 rule_buf_sz = (u16)ICE_SW_RULE_VSI_LIST_SIZE(s_rule, num_vsi);
1219 s_rule = kzalloc(rule_buf_sz, GFP_KERNEL);
1220 if (!s_rule) {
1221 dev_warn(dev, "Error allocating space for prune list when configuring SRIOV LAG\n");
1222 return;
1223 }
1224
1225 s_rule->hdr.type = cpu_to_le16(ICE_AQC_SW_RULES_T_PRUNE_LIST_SET);
1226 s_rule->index = cpu_to_le16(vsi_list_id);
1227 s_rule->number_vsi = cpu_to_le16(num_vsi);
1228 s_rule->vsi[0] = cpu_to_le16(event_vsi_num);
1229
1230 if (ice_aq_sw_rules(&event_pf->hw, s_rule, rule_buf_sz, 1,
1231 ice_aqc_opc_update_sw_rules, NULL))
1232 dev_warn(dev, "Error adding VSI prune list\n");
1233 kfree(s_rule);
1234 }
1235
1236 /**
1237 * ice_lag_del_prune_list - Remove secondary's vsi from primary's prune list
1238 * @lag: primary interface's ice_lag struct
1239 * @event_pf: PF struct for unlinking interface
1240 */
ice_lag_del_prune_list(struct ice_lag * lag,struct ice_pf * event_pf)1241 static void ice_lag_del_prune_list(struct ice_lag *lag, struct ice_pf *event_pf)
1242 {
1243 u16 num_vsi, vsi_num, vsi_idx, rule_buf_sz, vsi_list_id;
1244 struct ice_sw_rule_vsi_list *s_rule = NULL;
1245 struct device *dev;
1246
1247 num_vsi = 1;
1248
1249 dev = ice_pf_to_dev(lag->pf);
1250 vsi_num = event_pf->vsi[0]->vsi_num;
1251 vsi_idx = lag->pf->vsi[0]->idx;
1252
1253 if (!ice_find_vsi_list_entry(&lag->pf->hw, ICE_SW_LKUP_VLAN,
1254 vsi_idx, &vsi_list_id)) {
1255 dev_warn(dev, "Could not locate prune list when unwinding SRIOV LAG\n");
1256 return;
1257 }
1258
1259 rule_buf_sz = (u16)ICE_SW_RULE_VSI_LIST_SIZE(s_rule, num_vsi);
1260 s_rule = kzalloc(rule_buf_sz, GFP_KERNEL);
1261 if (!s_rule) {
1262 dev_warn(dev, "Error allocating prune list when unwinding SRIOV LAG\n");
1263 return;
1264 }
1265
1266 s_rule->hdr.type = cpu_to_le16(ICE_AQC_SW_RULES_T_PRUNE_LIST_CLEAR);
1267 s_rule->index = cpu_to_le16(vsi_list_id);
1268 s_rule->number_vsi = cpu_to_le16(num_vsi);
1269 s_rule->vsi[0] = cpu_to_le16(vsi_num);
1270
1271 if (ice_aq_sw_rules(&event_pf->hw, (struct ice_aqc_sw_rules *)s_rule,
1272 rule_buf_sz, 1, ice_aqc_opc_update_sw_rules, NULL))
1273 dev_warn(dev, "Error clearing VSI prune list\n");
1274
1275 kfree(s_rule);
1276 }
1277
1278 /**
1279 * ice_lag_init_feature_support_flag - Check for package and NVM support for LAG
1280 * @pf: PF struct
1281 */
ice_lag_init_feature_support_flag(struct ice_pf * pf)1282 static void ice_lag_init_feature_support_flag(struct ice_pf *pf)
1283 {
1284 struct ice_hw_common_caps *caps;
1285
1286 caps = &pf->hw.dev_caps.common_cap;
1287 if (caps->roce_lag)
1288 ice_set_feature_support(pf, ICE_F_ROCE_LAG);
1289 else
1290 ice_clear_feature_support(pf, ICE_F_ROCE_LAG);
1291
1292 if (caps->sriov_lag && ice_pkg_has_lport_extract(&pf->hw))
1293 ice_set_feature_support(pf, ICE_F_SRIOV_LAG);
1294 else
1295 ice_clear_feature_support(pf, ICE_F_SRIOV_LAG);
1296 }
1297
1298 /**
1299 * ice_lag_changeupper_event - handle LAG changeupper event
1300 * @lag: LAG info struct
1301 * @ptr: opaque pointer data
1302 */
ice_lag_changeupper_event(struct ice_lag * lag,void * ptr)1303 static void ice_lag_changeupper_event(struct ice_lag *lag, void *ptr)
1304 {
1305 struct netdev_notifier_changeupper_info *info;
1306 struct ice_lag *primary_lag;
1307 struct net_device *netdev;
1308
1309 info = ptr;
1310 netdev = netdev_notifier_info_to_dev(ptr);
1311
1312 /* not for this netdev */
1313 if (netdev != lag->netdev)
1314 return;
1315
1316 primary_lag = ice_lag_find_primary(lag);
1317 if (info->linking) {
1318 lag->upper_netdev = info->upper_dev;
1319 /* If there is not already a primary interface in the LAG,
1320 * then mark this one as primary.
1321 */
1322 if (!primary_lag) {
1323 lag->primary = true;
1324 /* Configure primary's SWID to be shared */
1325 ice_lag_primary_swid(lag, true);
1326 primary_lag = lag;
1327 } else {
1328 u16 swid;
1329
1330 swid = primary_lag->pf->hw.port_info->sw_id;
1331 ice_lag_set_swid(swid, lag, true);
1332 ice_lag_add_prune_list(primary_lag, lag->pf);
1333 ice_lag_cfg_drop_fltr(lag, true);
1334 }
1335 /* add filter for primary control packets */
1336 ice_lag_cfg_cp_fltr(lag, true);
1337 } else {
1338 if (!primary_lag && lag->primary)
1339 primary_lag = lag;
1340
1341 if (!lag->primary) {
1342 ice_lag_set_swid(0, lag, false);
1343 } else {
1344 if (primary_lag && lag->primary) {
1345 ice_lag_primary_swid(lag, false);
1346 ice_lag_del_prune_list(primary_lag, lag->pf);
1347 }
1348 }
1349 /* remove filter for control packets */
1350 ice_lag_cfg_cp_fltr(lag, false);
1351 }
1352 }
1353
1354 /**
1355 * ice_lag_monitor_link - monitor interfaces entering/leaving the aggregate
1356 * @lag: lag info struct
1357 * @ptr: opaque data containing notifier event
1358 *
1359 * This function only operates after a primary has been set.
1360 */
ice_lag_monitor_link(struct ice_lag * lag,void * ptr)1361 static void ice_lag_monitor_link(struct ice_lag *lag, void *ptr)
1362 {
1363 struct netdev_notifier_changeupper_info *info;
1364 struct ice_hw *prim_hw, *active_hw;
1365 struct net_device *event_netdev;
1366 struct ice_pf *pf;
1367 u8 prim_port;
1368
1369 if (!lag->primary)
1370 return;
1371
1372 event_netdev = netdev_notifier_info_to_dev(ptr);
1373 if (!netif_is_same_ice(lag->pf, event_netdev))
1374 return;
1375
1376 pf = lag->pf;
1377 prim_hw = &pf->hw;
1378 prim_port = prim_hw->port_info->lport;
1379
1380 info = (struct netdev_notifier_changeupper_info *)ptr;
1381 if (info->upper_dev != lag->upper_netdev)
1382 return;
1383
1384 if (!info->linking) {
1385 /* Since there are only two interfaces allowed in SRIOV+LAG, if
1386 * one port is leaving, then nodes need to be on primary
1387 * interface.
1388 */
1389 if (prim_port != lag->active_port &&
1390 lag->active_port != ICE_LAG_INVALID_PORT) {
1391 active_hw = ice_lag_find_hw_by_lport(lag,
1392 lag->active_port);
1393 ice_lag_reclaim_vf_nodes(lag, active_hw);
1394 lag->active_port = ICE_LAG_INVALID_PORT;
1395 }
1396 }
1397 }
1398
1399 /**
1400 * ice_lag_monitor_active - main PF keep track of which port is active
1401 * @lag: lag info struct
1402 * @ptr: opaque data containing notifier event
1403 *
1404 * This function is for the primary PF to monitor changes in which port is
1405 * active and handle changes for SRIOV VF functionality
1406 */
ice_lag_monitor_active(struct ice_lag * lag,void * ptr)1407 static void ice_lag_monitor_active(struct ice_lag *lag, void *ptr)
1408 {
1409 struct net_device *event_netdev, *event_upper;
1410 struct netdev_notifier_bonding_info *info;
1411 struct netdev_bonding_info *bonding_info;
1412 struct ice_netdev_priv *event_np;
1413 struct ice_pf *pf, *event_pf;
1414 u8 prim_port, event_port;
1415
1416 if (!lag->primary)
1417 return;
1418
1419 pf = lag->pf;
1420 if (!pf)
1421 return;
1422
1423 event_netdev = netdev_notifier_info_to_dev(ptr);
1424 rcu_read_lock();
1425 event_upper = netdev_master_upper_dev_get_rcu(event_netdev);
1426 rcu_read_unlock();
1427 if (!netif_is_ice(event_netdev) || event_upper != lag->upper_netdev)
1428 return;
1429
1430 event_np = netdev_priv(event_netdev);
1431 event_pf = event_np->vsi->back;
1432 event_port = event_pf->hw.port_info->lport;
1433 prim_port = pf->hw.port_info->lport;
1434
1435 info = (struct netdev_notifier_bonding_info *)ptr;
1436 bonding_info = &info->bonding_info;
1437
1438 if (!bonding_info->slave.state) {
1439 /* if no port is currently active, then nodes and filters exist
1440 * on primary port, check if we need to move them
1441 */
1442 if (lag->active_port == ICE_LAG_INVALID_PORT) {
1443 if (event_port != prim_port)
1444 ice_lag_move_vf_nodes(lag, prim_port,
1445 event_port);
1446 lag->active_port = event_port;
1447 ice_lag_config_eswitch(lag, event_netdev);
1448 return;
1449 }
1450
1451 /* active port is already set and is current event port */
1452 if (lag->active_port == event_port)
1453 return;
1454 /* new active port */
1455 ice_lag_move_vf_nodes(lag, lag->active_port, event_port);
1456 lag->active_port = event_port;
1457 ice_lag_config_eswitch(lag, event_netdev);
1458 } else {
1459 /* port not set as currently active (e.g. new active port
1460 * has already claimed the nodes and filters
1461 */
1462 if (lag->active_port != event_port)
1463 return;
1464 /* This is the case when neither port is active (both link down)
1465 * Link down on the bond - set active port to invalid and move
1466 * nodes and filters back to primary if not already there
1467 */
1468 if (event_port != prim_port)
1469 ice_lag_move_vf_nodes(lag, event_port, prim_port);
1470 lag->active_port = ICE_LAG_INVALID_PORT;
1471 }
1472 }
1473
1474 /**
1475 * ice_lag_chk_comp - evaluate bonded interface for feature support
1476 * @lag: lag info struct
1477 * @ptr: opaque data for netdev event info
1478 */
1479 static bool
ice_lag_chk_comp(struct ice_lag * lag,void * ptr)1480 ice_lag_chk_comp(struct ice_lag *lag, void *ptr)
1481 {
1482 struct net_device *event_netdev, *event_upper;
1483 struct netdev_notifier_bonding_info *info;
1484 struct netdev_bonding_info *bonding_info;
1485 struct list_head *tmp;
1486 struct device *dev;
1487 int count = 0;
1488
1489 if (!lag->primary)
1490 return true;
1491
1492 event_netdev = netdev_notifier_info_to_dev(ptr);
1493 rcu_read_lock();
1494 event_upper = netdev_master_upper_dev_get_rcu(event_netdev);
1495 rcu_read_unlock();
1496 if (event_upper != lag->upper_netdev)
1497 return true;
1498
1499 dev = ice_pf_to_dev(lag->pf);
1500
1501 /* only supporting switchdev mode for SRIOV VF LAG.
1502 * primary interface has to be in switchdev mode
1503 */
1504 if (!ice_is_switchdev_running(lag->pf)) {
1505 dev_info(dev, "Primary interface not in switchdev mode - VF LAG disabled\n");
1506 return false;
1507 }
1508
1509 info = (struct netdev_notifier_bonding_info *)ptr;
1510 bonding_info = &info->bonding_info;
1511 lag->bond_mode = bonding_info->master.bond_mode;
1512 if (lag->bond_mode != BOND_MODE_ACTIVEBACKUP) {
1513 dev_info(dev, "Bond Mode not ACTIVE-BACKUP - VF LAG disabled\n");
1514 return false;
1515 }
1516
1517 list_for_each(tmp, lag->netdev_head) {
1518 struct ice_dcbx_cfg *dcb_cfg, *peer_dcb_cfg;
1519 struct ice_lag_netdev_list *entry;
1520 struct ice_netdev_priv *peer_np;
1521 struct net_device *peer_netdev;
1522 struct ice_vsi *vsi, *peer_vsi;
1523 struct ice_pf *peer_pf;
1524
1525 entry = list_entry(tmp, struct ice_lag_netdev_list, node);
1526 peer_netdev = entry->netdev;
1527 if (!netif_is_ice(peer_netdev)) {
1528 dev_info(dev, "Found %s non-ice netdev in LAG - VF LAG disabled\n",
1529 netdev_name(peer_netdev));
1530 return false;
1531 }
1532
1533 count++;
1534 if (count > 2) {
1535 dev_info(dev, "Found more than two netdevs in LAG - VF LAG disabled\n");
1536 return false;
1537 }
1538
1539 peer_np = netdev_priv(peer_netdev);
1540 vsi = ice_get_main_vsi(lag->pf);
1541 peer_vsi = peer_np->vsi;
1542 if (lag->pf->pdev->bus != peer_vsi->back->pdev->bus ||
1543 lag->pf->pdev->slot != peer_vsi->back->pdev->slot) {
1544 dev_info(dev, "Found %s on different device in LAG - VF LAG disabled\n",
1545 netdev_name(peer_netdev));
1546 return false;
1547 }
1548
1549 dcb_cfg = &vsi->port_info->qos_cfg.local_dcbx_cfg;
1550 peer_dcb_cfg = &peer_vsi->port_info->qos_cfg.local_dcbx_cfg;
1551 if (memcmp(dcb_cfg, peer_dcb_cfg,
1552 sizeof(struct ice_dcbx_cfg))) {
1553 dev_info(dev, "Found %s with different DCB in LAG - VF LAG disabled\n",
1554 netdev_name(peer_netdev));
1555 return false;
1556 }
1557
1558 peer_pf = peer_vsi->back;
1559 if (test_bit(ICE_FLAG_FW_LLDP_AGENT, peer_pf->flags)) {
1560 dev_warn(dev, "Found %s with FW LLDP agent active - VF LAG disabled\n",
1561 netdev_name(peer_netdev));
1562 return false;
1563 }
1564 }
1565
1566 return true;
1567 }
1568
1569 /**
1570 * ice_lag_unregister - handle netdev unregister events
1571 * @lag: LAG info struct
1572 * @event_netdev: netdev struct for target of notifier event
1573 */
1574 static void
ice_lag_unregister(struct ice_lag * lag,struct net_device * event_netdev)1575 ice_lag_unregister(struct ice_lag *lag, struct net_device *event_netdev)
1576 {
1577 struct ice_netdev_priv *np;
1578 struct ice_pf *event_pf;
1579 struct ice_lag *p_lag;
1580
1581 p_lag = ice_lag_find_primary(lag);
1582 np = netdev_priv(event_netdev);
1583 event_pf = np->vsi->back;
1584
1585 if (p_lag) {
1586 if (p_lag->active_port != p_lag->pf->hw.port_info->lport &&
1587 p_lag->active_port != ICE_LAG_INVALID_PORT) {
1588 struct ice_hw *active_hw;
1589
1590 active_hw = ice_lag_find_hw_by_lport(lag,
1591 p_lag->active_port);
1592 if (active_hw)
1593 ice_lag_reclaim_vf_nodes(p_lag, active_hw);
1594 lag->active_port = ICE_LAG_INVALID_PORT;
1595 }
1596 }
1597
1598 /* primary processing for primary */
1599 if (lag->primary && lag->netdev == event_netdev)
1600 ice_lag_primary_swid(lag, false);
1601
1602 /* primary processing for secondary */
1603 if (lag->primary && lag->netdev != event_netdev)
1604 ice_lag_del_prune_list(lag, event_pf);
1605
1606 /* secondary processing for secondary */
1607 if (!lag->primary && lag->netdev == event_netdev)
1608 ice_lag_set_swid(0, lag, false);
1609 }
1610
1611 /**
1612 * ice_lag_monitor_rdma - set and clear rdma functionality
1613 * @lag: pointer to lag struct
1614 * @ptr: opaque data for netdev event info
1615 */
1616 static void
ice_lag_monitor_rdma(struct ice_lag * lag,void * ptr)1617 ice_lag_monitor_rdma(struct ice_lag *lag, void *ptr)
1618 {
1619 struct netdev_notifier_changeupper_info *info;
1620 struct net_device *netdev;
1621
1622 info = ptr;
1623 netdev = netdev_notifier_info_to_dev(ptr);
1624
1625 if (netdev != lag->netdev)
1626 return;
1627
1628 if (info->linking)
1629 ice_clear_rdma_cap(lag->pf);
1630 else
1631 ice_set_rdma_cap(lag->pf);
1632 }
1633
1634 /**
1635 * ice_lag_chk_disabled_bond - monitor interfaces entering/leaving disabled bond
1636 * @lag: lag info struct
1637 * @ptr: opaque data containing event
1638 *
1639 * as interfaces enter a bond - determine if the bond is currently
1640 * SRIOV LAG compliant and flag if not. As interfaces leave the
1641 * bond, reset their compliant status.
1642 */
ice_lag_chk_disabled_bond(struct ice_lag * lag,void * ptr)1643 static void ice_lag_chk_disabled_bond(struct ice_lag *lag, void *ptr)
1644 {
1645 struct net_device *netdev = netdev_notifier_info_to_dev(ptr);
1646 struct netdev_notifier_changeupper_info *info = ptr;
1647 struct ice_lag *prim_lag;
1648
1649 if (netdev != lag->netdev)
1650 return;
1651
1652 if (info->linking) {
1653 prim_lag = ice_lag_find_primary(lag);
1654 if (prim_lag &&
1655 !ice_is_feature_supported(prim_lag->pf, ICE_F_SRIOV_LAG)) {
1656 ice_clear_feature_support(lag->pf, ICE_F_SRIOV_LAG);
1657 netdev_info(netdev, "Interface added to non-compliant SRIOV LAG aggregate\n");
1658 }
1659 } else {
1660 ice_lag_init_feature_support_flag(lag->pf);
1661 }
1662 }
1663
1664 /**
1665 * ice_lag_disable_sriov_bond - set members of bond as not supporting SRIOV LAG
1666 * @lag: primary interfaces lag struct
1667 */
ice_lag_disable_sriov_bond(struct ice_lag * lag)1668 static void ice_lag_disable_sriov_bond(struct ice_lag *lag)
1669 {
1670 struct ice_netdev_priv *np;
1671 struct ice_pf *pf;
1672
1673 np = netdev_priv(lag->netdev);
1674 pf = np->vsi->back;
1675 ice_clear_feature_support(pf, ICE_F_SRIOV_LAG);
1676 }
1677
1678 /**
1679 * ice_lag_process_event - process a task assigned to the lag_wq
1680 * @work: pointer to work_struct
1681 */
ice_lag_process_event(struct work_struct * work)1682 static void ice_lag_process_event(struct work_struct *work)
1683 {
1684 struct netdev_notifier_changeupper_info *info;
1685 struct ice_lag_work *lag_work;
1686 struct net_device *netdev;
1687 struct list_head *tmp, *n;
1688 struct ice_pf *pf;
1689
1690 lag_work = container_of(work, struct ice_lag_work, lag_task);
1691 pf = lag_work->lag->pf;
1692
1693 mutex_lock(&pf->lag_mutex);
1694 lag_work->lag->netdev_head = &lag_work->netdev_list.node;
1695
1696 switch (lag_work->event) {
1697 case NETDEV_CHANGEUPPER:
1698 info = &lag_work->info.changeupper_info;
1699 ice_lag_chk_disabled_bond(lag_work->lag, info);
1700 if (ice_is_feature_supported(pf, ICE_F_SRIOV_LAG)) {
1701 ice_lag_monitor_link(lag_work->lag, info);
1702 ice_lag_changeupper_event(lag_work->lag, info);
1703 ice_lag_link_unlink(lag_work->lag, info);
1704 }
1705 ice_lag_monitor_rdma(lag_work->lag, info);
1706 break;
1707 case NETDEV_BONDING_INFO:
1708 if (ice_is_feature_supported(pf, ICE_F_SRIOV_LAG)) {
1709 if (!ice_lag_chk_comp(lag_work->lag,
1710 &lag_work->info.bonding_info)) {
1711 netdev = lag_work->info.bonding_info.info.dev;
1712 ice_lag_disable_sriov_bond(lag_work->lag);
1713 ice_lag_unregister(lag_work->lag, netdev);
1714 goto lag_cleanup;
1715 }
1716 ice_lag_monitor_active(lag_work->lag,
1717 &lag_work->info.bonding_info);
1718 ice_lag_cfg_pf_fltrs(lag_work->lag,
1719 &lag_work->info.bonding_info);
1720 }
1721 ice_lag_info_event(lag_work->lag, &lag_work->info.bonding_info);
1722 break;
1723 case NETDEV_UNREGISTER:
1724 if (ice_is_feature_supported(pf, ICE_F_SRIOV_LAG)) {
1725 netdev = lag_work->info.bonding_info.info.dev;
1726 if ((netdev == lag_work->lag->netdev ||
1727 lag_work->lag->primary) && lag_work->lag->bonded)
1728 ice_lag_unregister(lag_work->lag, netdev);
1729 }
1730 break;
1731 default:
1732 break;
1733 }
1734
1735 lag_cleanup:
1736 /* cleanup resources allocated for this work item */
1737 list_for_each_safe(tmp, n, &lag_work->netdev_list.node) {
1738 struct ice_lag_netdev_list *entry;
1739
1740 entry = list_entry(tmp, struct ice_lag_netdev_list, node);
1741 list_del(&entry->node);
1742 kfree(entry);
1743 }
1744 lag_work->lag->netdev_head = NULL;
1745
1746 mutex_unlock(&pf->lag_mutex);
1747
1748 kfree(lag_work);
1749 }
1750
1751 /**
1752 * ice_lag_event_handler - handle LAG events from netdev
1753 * @notif_blk: notifier block registered by this netdev
1754 * @event: event type
1755 * @ptr: opaque data containing notifier event
1756 */
1757 static int
ice_lag_event_handler(struct notifier_block * notif_blk,unsigned long event,void * ptr)1758 ice_lag_event_handler(struct notifier_block *notif_blk, unsigned long event,
1759 void *ptr)
1760 {
1761 struct net_device *netdev = netdev_notifier_info_to_dev(ptr);
1762 struct net_device *upper_netdev;
1763 struct ice_lag_work *lag_work;
1764 struct ice_lag *lag;
1765
1766 if (!netif_is_ice(netdev))
1767 return NOTIFY_DONE;
1768
1769 if (event != NETDEV_CHANGEUPPER && event != NETDEV_BONDING_INFO &&
1770 event != NETDEV_UNREGISTER)
1771 return NOTIFY_DONE;
1772
1773 if (!(netdev->priv_flags & IFF_BONDING))
1774 return NOTIFY_DONE;
1775
1776 lag = container_of(notif_blk, struct ice_lag, notif_block);
1777 if (!lag->netdev)
1778 return NOTIFY_DONE;
1779
1780 if (!net_eq(dev_net(netdev), &init_net))
1781 return NOTIFY_DONE;
1782
1783 /* This memory will be freed at the end of ice_lag_process_event */
1784 lag_work = kzalloc(sizeof(*lag_work), GFP_KERNEL);
1785 if (!lag_work)
1786 return -ENOMEM;
1787
1788 lag_work->event_netdev = netdev;
1789 lag_work->lag = lag;
1790 lag_work->event = event;
1791 if (event == NETDEV_CHANGEUPPER) {
1792 struct netdev_notifier_changeupper_info *info;
1793
1794 info = ptr;
1795 upper_netdev = info->upper_dev;
1796 } else {
1797 upper_netdev = netdev_master_upper_dev_get(netdev);
1798 }
1799
1800 INIT_LIST_HEAD(&lag_work->netdev_list.node);
1801 if (upper_netdev) {
1802 struct ice_lag_netdev_list *nd_list;
1803 struct net_device *tmp_nd;
1804
1805 rcu_read_lock();
1806 for_each_netdev_in_bond_rcu(upper_netdev, tmp_nd) {
1807 nd_list = kzalloc(sizeof(*nd_list), GFP_ATOMIC);
1808 if (!nd_list)
1809 break;
1810
1811 nd_list->netdev = tmp_nd;
1812 list_add(&nd_list->node, &lag_work->netdev_list.node);
1813 }
1814 rcu_read_unlock();
1815 }
1816
1817 switch (event) {
1818 case NETDEV_CHANGEUPPER:
1819 lag_work->info.changeupper_info =
1820 *((struct netdev_notifier_changeupper_info *)ptr);
1821 break;
1822 case NETDEV_BONDING_INFO:
1823 lag_work->info.bonding_info =
1824 *((struct netdev_notifier_bonding_info *)ptr);
1825 break;
1826 default:
1827 lag_work->info.notifier_info =
1828 *((struct netdev_notifier_info *)ptr);
1829 break;
1830 }
1831
1832 INIT_WORK(&lag_work->lag_task, ice_lag_process_event);
1833 queue_work(ice_lag_wq, &lag_work->lag_task);
1834
1835 return NOTIFY_DONE;
1836 }
1837
1838 /**
1839 * ice_register_lag_handler - register LAG handler on netdev
1840 * @lag: LAG struct
1841 */
ice_register_lag_handler(struct ice_lag * lag)1842 static int ice_register_lag_handler(struct ice_lag *lag)
1843 {
1844 struct device *dev = ice_pf_to_dev(lag->pf);
1845 struct notifier_block *notif_blk;
1846
1847 notif_blk = &lag->notif_block;
1848
1849 if (!notif_blk->notifier_call) {
1850 notif_blk->notifier_call = ice_lag_event_handler;
1851 if (register_netdevice_notifier(notif_blk)) {
1852 notif_blk->notifier_call = NULL;
1853 dev_err(dev, "FAIL register LAG event handler!\n");
1854 return -EINVAL;
1855 }
1856 dev_dbg(dev, "LAG event handler registered\n");
1857 }
1858 return 0;
1859 }
1860
1861 /**
1862 * ice_unregister_lag_handler - unregister LAG handler on netdev
1863 * @lag: LAG struct
1864 */
ice_unregister_lag_handler(struct ice_lag * lag)1865 static void ice_unregister_lag_handler(struct ice_lag *lag)
1866 {
1867 struct device *dev = ice_pf_to_dev(lag->pf);
1868 struct notifier_block *notif_blk;
1869
1870 notif_blk = &lag->notif_block;
1871 if (notif_blk->notifier_call) {
1872 unregister_netdevice_notifier(notif_blk);
1873 dev_dbg(dev, "LAG event handler unregistered\n");
1874 }
1875 }
1876
1877 /**
1878 * ice_create_lag_recipe
1879 * @hw: pointer to HW struct
1880 * @rid: pointer to u16 to pass back recipe index
1881 * @base_recipe: recipe to base the new recipe on
1882 * @prio: priority for new recipe
1883 *
1884 * function returns 0 on error
1885 */
ice_create_lag_recipe(struct ice_hw * hw,u16 * rid,const u8 * base_recipe,u8 prio)1886 static int ice_create_lag_recipe(struct ice_hw *hw, u16 *rid,
1887 const u8 *base_recipe, u8 prio)
1888 {
1889 struct ice_aqc_recipe_data_elem *new_rcp;
1890 int err;
1891
1892 err = ice_alloc_recipe(hw, rid);
1893 if (err)
1894 return err;
1895
1896 new_rcp = kzalloc(ICE_RECIPE_LEN * ICE_MAX_NUM_RECIPES, GFP_KERNEL);
1897 if (!new_rcp)
1898 return -ENOMEM;
1899
1900 memcpy(new_rcp, base_recipe, ICE_RECIPE_LEN);
1901 new_rcp->content.act_ctrl_fwd_priority = prio;
1902 new_rcp->content.rid = *rid | ICE_AQ_RECIPE_ID_IS_ROOT;
1903 new_rcp->recipe_indx = *rid;
1904 bitmap_zero((unsigned long *)new_rcp->recipe_bitmap,
1905 ICE_MAX_NUM_RECIPES);
1906 set_bit(*rid, (unsigned long *)new_rcp->recipe_bitmap);
1907
1908 err = ice_aq_add_recipe(hw, new_rcp, 1, NULL);
1909 if (err)
1910 *rid = 0;
1911
1912 kfree(new_rcp);
1913 return err;
1914 }
1915
1916 /**
1917 * ice_lag_move_vf_nodes_tc_sync - move a VF's nodes for a tc during reset
1918 * @lag: primary interfaces lag struct
1919 * @dest_hw: HW struct for destination's interface
1920 * @vsi_num: VSI index in PF space
1921 * @tc: traffic class to move
1922 */
1923 static void
ice_lag_move_vf_nodes_tc_sync(struct ice_lag * lag,struct ice_hw * dest_hw,u16 vsi_num,u8 tc)1924 ice_lag_move_vf_nodes_tc_sync(struct ice_lag *lag, struct ice_hw *dest_hw,
1925 u16 vsi_num, u8 tc)
1926 {
1927 DEFINE_RAW_FLEX(struct ice_aqc_move_elem, buf, teid, 1);
1928 struct device *dev = ice_pf_to_dev(lag->pf);
1929 u16 numq, valq, num_moved, qbuf_size;
1930 u16 buf_size = __struct_size(buf);
1931 struct ice_aqc_cfg_txqs_buf *qbuf;
1932 struct ice_sched_node *n_prt;
1933 __le32 teid, parent_teid;
1934 struct ice_vsi_ctx *ctx;
1935 struct ice_hw *hw;
1936 u32 tmp_teid;
1937
1938 hw = &lag->pf->hw;
1939 ctx = ice_get_vsi_ctx(hw, vsi_num);
1940 if (!ctx) {
1941 dev_warn(dev, "LAG rebuild failed after reset due to VSI Context failure\n");
1942 return;
1943 }
1944
1945 if (!ctx->sched.vsi_node[tc])
1946 return;
1947
1948 numq = ctx->num_lan_q_entries[tc];
1949 teid = ctx->sched.vsi_node[tc]->info.node_teid;
1950 tmp_teid = le32_to_cpu(teid);
1951 parent_teid = ctx->sched.vsi_node[tc]->info.parent_teid;
1952
1953 if (!tmp_teid || !numq)
1954 return;
1955
1956 if (ice_sched_suspend_resume_elems(hw, 1, &tmp_teid, true))
1957 dev_dbg(dev, "Problem suspending traffic during reset rebuild\n");
1958
1959 /* reconfig queues for new port */
1960 qbuf_size = struct_size(qbuf, queue_info, numq);
1961 qbuf = kzalloc(qbuf_size, GFP_KERNEL);
1962 if (!qbuf) {
1963 dev_warn(dev, "Failure allocating VF queue recfg buffer for reset rebuild\n");
1964 goto resume_sync;
1965 }
1966
1967 /* add the per queue info for the reconfigure command buffer */
1968 valq = ice_lag_qbuf_recfg(hw, qbuf, vsi_num, numq, tc);
1969 if (!valq) {
1970 dev_warn(dev, "Failure to reconfig queues for LAG reset rebuild\n");
1971 goto sync_none;
1972 }
1973
1974 if (ice_aq_cfg_lan_txq(hw, qbuf, qbuf_size, numq, hw->port_info->lport,
1975 dest_hw->port_info->lport, NULL)) {
1976 dev_warn(dev, "Failure to configure queues for LAG reset rebuild\n");
1977 goto sync_qerr;
1978 }
1979
1980 sync_none:
1981 kfree(qbuf);
1982
1983 /* find parent in destination tree */
1984 n_prt = ice_lag_get_sched_parent(dest_hw, tc);
1985 if (!n_prt)
1986 goto resume_sync;
1987
1988 /* Move node to new parent */
1989 buf->hdr.src_parent_teid = parent_teid;
1990 buf->hdr.dest_parent_teid = n_prt->info.node_teid;
1991 buf->hdr.num_elems = cpu_to_le16(1);
1992 buf->hdr.mode = ICE_AQC_MOVE_ELEM_MODE_KEEP_OWN;
1993 buf->teid[0] = teid;
1994
1995 if (ice_aq_move_sched_elems(&lag->pf->hw, buf, buf_size, &num_moved))
1996 dev_warn(dev, "Failure to move VF nodes for LAG reset rebuild\n");
1997 else
1998 ice_sched_update_parent(n_prt, ctx->sched.vsi_node[tc]);
1999
2000 goto resume_sync;
2001
2002 sync_qerr:
2003 kfree(qbuf);
2004
2005 resume_sync:
2006 if (ice_sched_suspend_resume_elems(hw, 1, &tmp_teid, false))
2007 dev_warn(dev, "Problem restarting traffic for LAG node reset rebuild\n");
2008 }
2009
2010 /**
2011 * ice_lag_move_vf_nodes_sync - move vf nodes to active interface
2012 * @lag: primary interfaces lag struct
2013 * @dest_hw: lport value for currently active port
2014 *
2015 * This function is used in a reset context, outside of event handling,
2016 * to move the VF nodes to the secondary interface when that interface
2017 * is the active interface during a reset rebuild
2018 */
2019 static void
ice_lag_move_vf_nodes_sync(struct ice_lag * lag,struct ice_hw * dest_hw)2020 ice_lag_move_vf_nodes_sync(struct ice_lag *lag, struct ice_hw *dest_hw)
2021 {
2022 struct ice_pf *pf;
2023 int i, tc;
2024
2025 if (!lag->primary || !dest_hw)
2026 return;
2027
2028 pf = lag->pf;
2029 ice_for_each_vsi(pf, i)
2030 if (pf->vsi[i] && pf->vsi[i]->type == ICE_VSI_VF)
2031 ice_for_each_traffic_class(tc)
2032 ice_lag_move_vf_nodes_tc_sync(lag, dest_hw, i,
2033 tc);
2034 }
2035
2036 /**
2037 * ice_init_lag - initialize support for LAG
2038 * @pf: PF struct
2039 *
2040 * Alloc memory for LAG structs and initialize the elements.
2041 * Memory will be freed in ice_deinit_lag
2042 */
ice_init_lag(struct ice_pf * pf)2043 int ice_init_lag(struct ice_pf *pf)
2044 {
2045 struct device *dev = ice_pf_to_dev(pf);
2046 struct ice_lag *lag;
2047 struct ice_vsi *vsi;
2048 u64 recipe_bits = 0;
2049 int n, err;
2050
2051 ice_lag_init_feature_support_flag(pf);
2052 if (!ice_is_feature_supported(pf, ICE_F_SRIOV_LAG))
2053 return 0;
2054
2055 pf->lag = kzalloc(sizeof(*lag), GFP_KERNEL);
2056 if (!pf->lag)
2057 return -ENOMEM;
2058 lag = pf->lag;
2059
2060 vsi = ice_get_main_vsi(pf);
2061 if (!vsi) {
2062 dev_err(dev, "couldn't get main vsi, link aggregation init fail\n");
2063 err = -EIO;
2064 goto lag_error;
2065 }
2066
2067 lag->pf = pf;
2068 lag->netdev = vsi->netdev;
2069 lag->role = ICE_LAG_NONE;
2070 lag->active_port = ICE_LAG_INVALID_PORT;
2071 lag->bonded = false;
2072 lag->upper_netdev = NULL;
2073 lag->notif_block.notifier_call = NULL;
2074
2075 err = ice_register_lag_handler(lag);
2076 if (err) {
2077 dev_warn(dev, "INIT LAG: Failed to register event handler\n");
2078 goto lag_error;
2079 }
2080
2081 err = ice_create_lag_recipe(&pf->hw, &lag->pf_recipe,
2082 ice_dflt_vsi_rcp, 1);
2083 if (err)
2084 goto lag_error;
2085
2086 err = ice_create_lag_recipe(&pf->hw, &lag->lport_recipe,
2087 ice_lport_rcp, 3);
2088 if (err)
2089 goto free_rcp_res;
2090
2091 /* associate recipes to profiles */
2092 for (n = 0; n < ICE_PROFID_IPV6_GTPU_IPV6_TCP_INNER; n++) {
2093 err = ice_aq_get_recipe_to_profile(&pf->hw, n,
2094 &recipe_bits, NULL);
2095 if (err)
2096 continue;
2097
2098 if (recipe_bits & BIT(ICE_SW_LKUP_DFLT)) {
2099 recipe_bits |= BIT(lag->pf_recipe) |
2100 BIT(lag->lport_recipe);
2101 ice_aq_map_recipe_to_profile(&pf->hw, n,
2102 recipe_bits, NULL);
2103 }
2104 }
2105
2106 ice_display_lag_info(lag);
2107
2108 dev_dbg(dev, "INIT LAG complete\n");
2109 return 0;
2110
2111 free_rcp_res:
2112 ice_free_hw_res(&pf->hw, ICE_AQC_RES_TYPE_RECIPE, 1,
2113 &pf->lag->pf_recipe);
2114 lag_error:
2115 kfree(lag);
2116 pf->lag = NULL;
2117 return err;
2118 }
2119
2120 /**
2121 * ice_deinit_lag - Clean up LAG
2122 * @pf: PF struct
2123 *
2124 * Clean up kernel LAG info and free memory
2125 * This function is meant to only be called on driver remove/shutdown
2126 */
ice_deinit_lag(struct ice_pf * pf)2127 void ice_deinit_lag(struct ice_pf *pf)
2128 {
2129 struct ice_lag *lag;
2130
2131 lag = pf->lag;
2132
2133 if (!lag)
2134 return;
2135
2136 if (lag->pf)
2137 ice_unregister_lag_handler(lag);
2138
2139 flush_workqueue(ice_lag_wq);
2140
2141 ice_free_hw_res(&pf->hw, ICE_AQC_RES_TYPE_RECIPE, 1,
2142 &pf->lag->pf_recipe);
2143 ice_free_hw_res(&pf->hw, ICE_AQC_RES_TYPE_RECIPE, 1,
2144 &pf->lag->lport_recipe);
2145
2146 kfree(lag);
2147
2148 pf->lag = NULL;
2149 }
2150
2151 /**
2152 * ice_lag_rebuild - rebuild lag resources after reset
2153 * @pf: pointer to local pf struct
2154 *
2155 * PF resets are promoted to CORER resets when interface in an aggregate. This
2156 * means that we need to rebuild the PF resources for the interface. Since
2157 * this will happen outside the normal event processing, need to acquire the lag
2158 * lock.
2159 *
2160 * This function will also evaluate the VF resources if this is the primary
2161 * interface.
2162 */
ice_lag_rebuild(struct ice_pf * pf)2163 void ice_lag_rebuild(struct ice_pf *pf)
2164 {
2165 struct ice_lag_netdev_list ndlist;
2166 struct ice_lag *lag, *prim_lag;
2167 u8 act_port, loc_port;
2168
2169 if (!pf->lag || !pf->lag->bonded)
2170 return;
2171
2172 mutex_lock(&pf->lag_mutex);
2173
2174 lag = pf->lag;
2175 if (lag->primary) {
2176 prim_lag = lag;
2177 } else {
2178 ice_lag_build_netdev_list(lag, &ndlist);
2179 prim_lag = ice_lag_find_primary(lag);
2180 }
2181
2182 if (!prim_lag) {
2183 dev_dbg(ice_pf_to_dev(pf), "No primary interface in aggregate, can't rebuild\n");
2184 goto lag_rebuild_out;
2185 }
2186
2187 act_port = prim_lag->active_port;
2188 loc_port = lag->pf->hw.port_info->lport;
2189
2190 /* configure SWID for this port */
2191 if (lag->primary) {
2192 ice_lag_primary_swid(lag, true);
2193 } else {
2194 ice_lag_set_swid(prim_lag->pf->hw.port_info->sw_id, lag, true);
2195 ice_lag_add_prune_list(prim_lag, pf);
2196 if (act_port == loc_port)
2197 ice_lag_move_vf_nodes_sync(prim_lag, &pf->hw);
2198 }
2199
2200 ice_lag_cfg_cp_fltr(lag, true);
2201
2202 if (lag->pf_rx_rule_id)
2203 if (ice_lag_cfg_dflt_fltr(lag, true))
2204 dev_err(ice_pf_to_dev(pf), "Error adding default VSI rule in rebuild\n");
2205
2206 ice_clear_rdma_cap(pf);
2207 lag_rebuild_out:
2208 ice_lag_destroy_netdev_list(lag, &ndlist);
2209 mutex_unlock(&pf->lag_mutex);
2210 }
2211
2212 /**
2213 * ice_lag_is_switchdev_running
2214 * @pf: pointer to PF structure
2215 *
2216 * Check if switchdev is running on any of the interfaces connected to lag.
2217 */
ice_lag_is_switchdev_running(struct ice_pf * pf)2218 bool ice_lag_is_switchdev_running(struct ice_pf *pf)
2219 {
2220 struct ice_lag *lag = pf->lag;
2221 struct net_device *tmp_nd;
2222
2223 if (!ice_is_feature_supported(pf, ICE_F_SRIOV_LAG) || !lag)
2224 return false;
2225
2226 rcu_read_lock();
2227 for_each_netdev_in_bond_rcu(lag->upper_netdev, tmp_nd) {
2228 struct ice_netdev_priv *priv = netdev_priv(tmp_nd);
2229
2230 if (!netif_is_ice(tmp_nd) || !priv || !priv->vsi ||
2231 !priv->vsi->back)
2232 continue;
2233
2234 if (ice_is_switchdev_running(priv->vsi->back)) {
2235 rcu_read_unlock();
2236 return true;
2237 }
2238 }
2239 rcu_read_unlock();
2240
2241 return false;
2242 }
2243