1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3 * net/dsa/user.c - user device handling
4 * Copyright (c) 2008-2009 Marvell Semiconductor
5 */
6
7 #include <linux/list.h>
8 #include <linux/etherdevice.h>
9 #include <linux/netdevice.h>
10 #include <linux/phy.h>
11 #include <linux/phy_fixed.h>
12 #include <linux/phylink.h>
13 #include <linux/of_net.h>
14 #include <linux/of_mdio.h>
15 #include <linux/mdio.h>
16 #include <net/rtnetlink.h>
17 #include <net/pkt_cls.h>
18 #include <net/selftests.h>
19 #include <net/tc_act/tc_mirred.h>
20 #include <linux/if_bridge.h>
21 #include <linux/if_hsr.h>
22 #include <net/dcbnl.h>
23 #include <linux/netpoll.h>
24 #include <linux/string.h>
25
26 #include "conduit.h"
27 #include "dsa.h"
28 #include "netlink.h"
29 #include "port.h"
30 #include "switch.h"
31 #include "tag.h"
32 #include "user.h"
33
34 struct dsa_switchdev_event_work {
35 struct net_device *dev;
36 struct net_device *orig_dev;
37 struct work_struct work;
38 unsigned long event;
39 /* Specific for SWITCHDEV_FDB_ADD_TO_DEVICE and
40 * SWITCHDEV_FDB_DEL_TO_DEVICE
41 */
42 unsigned char addr[ETH_ALEN];
43 u16 vid;
44 bool host_addr;
45 };
46
47 enum dsa_standalone_event {
48 DSA_UC_ADD,
49 DSA_UC_DEL,
50 DSA_MC_ADD,
51 DSA_MC_DEL,
52 };
53
54 struct dsa_standalone_event_work {
55 struct work_struct work;
56 struct net_device *dev;
57 enum dsa_standalone_event event;
58 unsigned char addr[ETH_ALEN];
59 u16 vid;
60 };
61
62 struct dsa_host_vlan_rx_filtering_ctx {
63 struct net_device *dev;
64 const unsigned char *addr;
65 enum dsa_standalone_event event;
66 };
67
dsa_switch_supports_uc_filtering(struct dsa_switch * ds)68 static bool dsa_switch_supports_uc_filtering(struct dsa_switch *ds)
69 {
70 return ds->ops->port_fdb_add && ds->ops->port_fdb_del &&
71 ds->fdb_isolation && !ds->vlan_filtering_is_global &&
72 !ds->needs_standalone_vlan_filtering;
73 }
74
dsa_switch_supports_mc_filtering(struct dsa_switch * ds)75 static bool dsa_switch_supports_mc_filtering(struct dsa_switch *ds)
76 {
77 return ds->ops->port_mdb_add && ds->ops->port_mdb_del &&
78 ds->fdb_isolation && !ds->vlan_filtering_is_global &&
79 !ds->needs_standalone_vlan_filtering;
80 }
81
dsa_user_standalone_event_work(struct work_struct * work)82 static void dsa_user_standalone_event_work(struct work_struct *work)
83 {
84 struct dsa_standalone_event_work *standalone_work =
85 container_of(work, struct dsa_standalone_event_work, work);
86 const unsigned char *addr = standalone_work->addr;
87 struct net_device *dev = standalone_work->dev;
88 struct dsa_port *dp = dsa_user_to_port(dev);
89 struct switchdev_obj_port_mdb mdb;
90 struct dsa_switch *ds = dp->ds;
91 u16 vid = standalone_work->vid;
92 int err;
93
94 switch (standalone_work->event) {
95 case DSA_UC_ADD:
96 err = dsa_port_standalone_host_fdb_add(dp, addr, vid);
97 if (err) {
98 dev_err(ds->dev,
99 "port %d failed to add %pM vid %d to fdb: %d\n",
100 dp->index, addr, vid, err);
101 break;
102 }
103 break;
104
105 case DSA_UC_DEL:
106 err = dsa_port_standalone_host_fdb_del(dp, addr, vid);
107 if (err) {
108 dev_err(ds->dev,
109 "port %d failed to delete %pM vid %d from fdb: %d\n",
110 dp->index, addr, vid, err);
111 }
112
113 break;
114 case DSA_MC_ADD:
115 ether_addr_copy(mdb.addr, addr);
116 mdb.vid = vid;
117
118 err = dsa_port_standalone_host_mdb_add(dp, &mdb);
119 if (err) {
120 dev_err(ds->dev,
121 "port %d failed to add %pM vid %d to mdb: %d\n",
122 dp->index, addr, vid, err);
123 break;
124 }
125 break;
126 case DSA_MC_DEL:
127 ether_addr_copy(mdb.addr, addr);
128 mdb.vid = vid;
129
130 err = dsa_port_standalone_host_mdb_del(dp, &mdb);
131 if (err) {
132 dev_err(ds->dev,
133 "port %d failed to delete %pM vid %d from mdb: %d\n",
134 dp->index, addr, vid, err);
135 }
136
137 break;
138 }
139
140 kfree(standalone_work);
141 }
142
dsa_user_schedule_standalone_work(struct net_device * dev,enum dsa_standalone_event event,const unsigned char * addr,u16 vid)143 static int dsa_user_schedule_standalone_work(struct net_device *dev,
144 enum dsa_standalone_event event,
145 const unsigned char *addr,
146 u16 vid)
147 {
148 struct dsa_standalone_event_work *standalone_work;
149
150 standalone_work = kzalloc_obj(*standalone_work, GFP_ATOMIC);
151 if (!standalone_work)
152 return -ENOMEM;
153
154 INIT_WORK(&standalone_work->work, dsa_user_standalone_event_work);
155 standalone_work->event = event;
156 standalone_work->dev = dev;
157
158 ether_addr_copy(standalone_work->addr, addr);
159 standalone_work->vid = vid;
160
161 dsa_schedule_work(&standalone_work->work);
162
163 return 0;
164 }
165
dsa_user_host_vlan_rx_filtering(void * arg,int vid)166 static int dsa_user_host_vlan_rx_filtering(void *arg, int vid)
167 {
168 struct dsa_host_vlan_rx_filtering_ctx *ctx = arg;
169
170 return dsa_user_schedule_standalone_work(ctx->dev, ctx->event,
171 ctx->addr, vid);
172 }
173
dsa_user_vlan_for_each(struct net_device * dev,int (* cb)(void * arg,int vid),void * arg)174 static int dsa_user_vlan_for_each(struct net_device *dev,
175 int (*cb)(void *arg, int vid), void *arg)
176 {
177 struct dsa_port *dp = dsa_user_to_port(dev);
178 struct dsa_vlan *v;
179 int err;
180
181 lockdep_assert_held(&dev->addr_list_lock);
182
183 err = cb(arg, 0);
184 if (err)
185 return err;
186
187 list_for_each_entry(v, &dp->user_vlans, list) {
188 err = cb(arg, v->vid);
189 if (err)
190 return err;
191 }
192
193 return 0;
194 }
195
dsa_user_sync_uc(struct net_device * dev,const unsigned char * addr)196 static int dsa_user_sync_uc(struct net_device *dev,
197 const unsigned char *addr)
198 {
199 struct net_device *conduit = dsa_user_to_conduit(dev);
200 struct dsa_port *dp = dsa_user_to_port(dev);
201 struct dsa_host_vlan_rx_filtering_ctx ctx = {
202 .dev = dev,
203 .addr = addr,
204 .event = DSA_UC_ADD,
205 };
206
207 dev_uc_add(conduit, addr);
208
209 if (!dsa_switch_supports_uc_filtering(dp->ds))
210 return 0;
211
212 return dsa_user_vlan_for_each(dev, dsa_user_host_vlan_rx_filtering,
213 &ctx);
214 }
215
dsa_user_unsync_uc(struct net_device * dev,const unsigned char * addr)216 static int dsa_user_unsync_uc(struct net_device *dev,
217 const unsigned char *addr)
218 {
219 struct net_device *conduit = dsa_user_to_conduit(dev);
220 struct dsa_port *dp = dsa_user_to_port(dev);
221 struct dsa_host_vlan_rx_filtering_ctx ctx = {
222 .dev = dev,
223 .addr = addr,
224 .event = DSA_UC_DEL,
225 };
226
227 dev_uc_del(conduit, addr);
228
229 if (!dsa_switch_supports_uc_filtering(dp->ds))
230 return 0;
231
232 return dsa_user_vlan_for_each(dev, dsa_user_host_vlan_rx_filtering,
233 &ctx);
234 }
235
dsa_user_sync_mc(struct net_device * dev,const unsigned char * addr)236 static int dsa_user_sync_mc(struct net_device *dev,
237 const unsigned char *addr)
238 {
239 struct net_device *conduit = dsa_user_to_conduit(dev);
240 struct dsa_port *dp = dsa_user_to_port(dev);
241 struct dsa_host_vlan_rx_filtering_ctx ctx = {
242 .dev = dev,
243 .addr = addr,
244 .event = DSA_MC_ADD,
245 };
246
247 dev_mc_add(conduit, addr);
248
249 if (!dsa_switch_supports_mc_filtering(dp->ds))
250 return 0;
251
252 return dsa_user_vlan_for_each(dev, dsa_user_host_vlan_rx_filtering,
253 &ctx);
254 }
255
dsa_user_unsync_mc(struct net_device * dev,const unsigned char * addr)256 static int dsa_user_unsync_mc(struct net_device *dev,
257 const unsigned char *addr)
258 {
259 struct net_device *conduit = dsa_user_to_conduit(dev);
260 struct dsa_port *dp = dsa_user_to_port(dev);
261 struct dsa_host_vlan_rx_filtering_ctx ctx = {
262 .dev = dev,
263 .addr = addr,
264 .event = DSA_MC_DEL,
265 };
266
267 dev_mc_del(conduit, addr);
268
269 if (!dsa_switch_supports_mc_filtering(dp->ds))
270 return 0;
271
272 return dsa_user_vlan_for_each(dev, dsa_user_host_vlan_rx_filtering,
273 &ctx);
274 }
275
dsa_user_sync_ha(struct net_device * dev)276 void dsa_user_sync_ha(struct net_device *dev)
277 {
278 struct dsa_port *dp = dsa_user_to_port(dev);
279 struct dsa_switch *ds = dp->ds;
280 struct netdev_hw_addr *ha;
281
282 netif_addr_lock_bh(dev);
283
284 netdev_for_each_synced_mc_addr(ha, dev)
285 dsa_user_sync_mc(dev, ha->addr);
286
287 netdev_for_each_synced_uc_addr(ha, dev)
288 dsa_user_sync_uc(dev, ha->addr);
289
290 netif_addr_unlock_bh(dev);
291
292 if (dsa_switch_supports_uc_filtering(ds) ||
293 dsa_switch_supports_mc_filtering(ds))
294 dsa_flush_workqueue();
295 }
296
dsa_user_unsync_ha(struct net_device * dev)297 void dsa_user_unsync_ha(struct net_device *dev)
298 {
299 struct dsa_port *dp = dsa_user_to_port(dev);
300 struct dsa_switch *ds = dp->ds;
301 struct netdev_hw_addr *ha;
302
303 netif_addr_lock_bh(dev);
304
305 netdev_for_each_synced_uc_addr(ha, dev)
306 dsa_user_unsync_uc(dev, ha->addr);
307
308 netdev_for_each_synced_mc_addr(ha, dev)
309 dsa_user_unsync_mc(dev, ha->addr);
310
311 netif_addr_unlock_bh(dev);
312
313 if (dsa_switch_supports_uc_filtering(ds) ||
314 dsa_switch_supports_mc_filtering(ds))
315 dsa_flush_workqueue();
316 }
317
318 /* user mii_bus handling ***************************************************/
dsa_user_phy_read(struct mii_bus * bus,int addr,int reg)319 static int dsa_user_phy_read(struct mii_bus *bus, int addr, int reg)
320 {
321 struct dsa_switch *ds = bus->priv;
322
323 if (ds->phys_mii_mask & (1 << addr))
324 return ds->ops->phy_read(ds, addr, reg);
325
326 return 0xffff;
327 }
328
dsa_user_phy_write(struct mii_bus * bus,int addr,int reg,u16 val)329 static int dsa_user_phy_write(struct mii_bus *bus, int addr, int reg, u16 val)
330 {
331 struct dsa_switch *ds = bus->priv;
332
333 if (ds->phys_mii_mask & (1 << addr))
334 return ds->ops->phy_write(ds, addr, reg, val);
335
336 return 0;
337 }
338
dsa_user_mii_bus_init(struct dsa_switch * ds)339 void dsa_user_mii_bus_init(struct dsa_switch *ds)
340 {
341 ds->user_mii_bus->priv = (void *)ds;
342 ds->user_mii_bus->name = "dsa user smi";
343 ds->user_mii_bus->read = dsa_user_phy_read;
344 ds->user_mii_bus->write = dsa_user_phy_write;
345 snprintf(ds->user_mii_bus->id, MII_BUS_ID_SIZE, "dsa-%d.%d",
346 ds->dst->index, ds->index);
347 ds->user_mii_bus->parent = ds->dev;
348 ds->user_mii_bus->phy_mask = ~ds->phys_mii_mask;
349 }
350
351
352 /* user device handling ****************************************************/
dsa_user_get_iflink(const struct net_device * dev)353 static int dsa_user_get_iflink(const struct net_device *dev)
354 {
355 return READ_ONCE(dsa_user_to_conduit(dev)->ifindex);
356 }
357
dsa_user_host_uc_install(struct net_device * dev,const u8 * addr)358 int dsa_user_host_uc_install(struct net_device *dev, const u8 *addr)
359 {
360 struct net_device *conduit = dsa_user_to_conduit(dev);
361 struct dsa_port *dp = dsa_user_to_port(dev);
362 struct dsa_switch *ds = dp->ds;
363 int err;
364
365 if (dsa_switch_supports_uc_filtering(ds)) {
366 err = dsa_port_standalone_host_fdb_add(dp, addr, 0);
367 if (err)
368 goto out;
369 }
370
371 if (!ether_addr_equal(addr, conduit->dev_addr)) {
372 err = dev_uc_add(conduit, addr);
373 if (err < 0)
374 goto del_host_addr;
375 }
376
377 return 0;
378
379 del_host_addr:
380 if (dsa_switch_supports_uc_filtering(ds))
381 dsa_port_standalone_host_fdb_del(dp, addr, 0);
382 out:
383 return err;
384 }
385
dsa_user_host_uc_uninstall(struct net_device * dev)386 void dsa_user_host_uc_uninstall(struct net_device *dev)
387 {
388 struct net_device *conduit = dsa_user_to_conduit(dev);
389 struct dsa_port *dp = dsa_user_to_port(dev);
390 struct dsa_switch *ds = dp->ds;
391
392 if (!ether_addr_equal(dev->dev_addr, conduit->dev_addr))
393 dev_uc_del(conduit, dev->dev_addr);
394
395 if (dsa_switch_supports_uc_filtering(ds))
396 dsa_port_standalone_host_fdb_del(dp, dev->dev_addr, 0);
397 }
398
dsa_user_open(struct net_device * dev)399 static int dsa_user_open(struct net_device *dev)
400 {
401 struct net_device *conduit = dsa_user_to_conduit(dev);
402 struct dsa_port *dp = dsa_user_to_port(dev);
403 int err;
404
405 err = dev_open(conduit, NULL);
406 if (err < 0) {
407 netdev_err(dev, "failed to open conduit %s\n", conduit->name);
408 goto out;
409 }
410
411 err = dsa_user_host_uc_install(dev, dev->dev_addr);
412 if (err)
413 goto out;
414
415 err = dsa_port_enable_rt(dp, dev->phydev);
416 if (err)
417 goto out_del_host_uc;
418
419 return 0;
420
421 out_del_host_uc:
422 dsa_user_host_uc_uninstall(dev);
423 out:
424 return err;
425 }
426
dsa_user_close(struct net_device * dev)427 static int dsa_user_close(struct net_device *dev)
428 {
429 struct dsa_port *dp = dsa_user_to_port(dev);
430
431 dsa_port_disable_rt(dp);
432
433 dsa_user_host_uc_uninstall(dev);
434
435 return 0;
436 }
437
dsa_user_manage_host_flood(struct net_device * dev)438 static void dsa_user_manage_host_flood(struct net_device *dev)
439 {
440 bool mc = dev->flags & (IFF_PROMISC | IFF_ALLMULTI);
441 struct dsa_port *dp = dsa_user_to_port(dev);
442 bool uc = dev->flags & IFF_PROMISC;
443
444 dsa_port_set_host_flood(dp, uc, mc);
445 }
446
dsa_user_change_rx_flags(struct net_device * dev,int change)447 static void dsa_user_change_rx_flags(struct net_device *dev, int change)
448 {
449 struct net_device *conduit = dsa_user_to_conduit(dev);
450 struct dsa_port *dp = dsa_user_to_port(dev);
451 struct dsa_switch *ds = dp->ds;
452
453 if (change & IFF_ALLMULTI)
454 dev_set_allmulti(conduit,
455 dev->flags & IFF_ALLMULTI ? 1 : -1);
456 if (change & IFF_PROMISC)
457 dev_set_promiscuity(conduit,
458 dev->flags & IFF_PROMISC ? 1 : -1);
459
460 if (dsa_switch_supports_uc_filtering(ds) &&
461 dsa_switch_supports_mc_filtering(ds))
462 dsa_user_manage_host_flood(dev);
463 }
464
dsa_user_set_rx_mode(struct net_device * dev)465 static void dsa_user_set_rx_mode(struct net_device *dev)
466 {
467 __dev_mc_sync(dev, dsa_user_sync_mc, dsa_user_unsync_mc);
468 __dev_uc_sync(dev, dsa_user_sync_uc, dsa_user_unsync_uc);
469 }
470
dsa_user_set_mac_address(struct net_device * dev,void * a)471 static int dsa_user_set_mac_address(struct net_device *dev, void *a)
472 {
473 struct dsa_port *dp = dsa_user_to_port(dev);
474 struct dsa_switch *ds = dp->ds;
475 struct sockaddr *addr = a;
476 int err;
477
478 if (!is_valid_ether_addr(addr->sa_data))
479 return -EADDRNOTAVAIL;
480
481 if (ds->ops->port_set_mac_address) {
482 err = ds->ops->port_set_mac_address(ds, dp->index,
483 addr->sa_data);
484 if (err)
485 return err;
486 }
487
488 /* If the port is down, the address isn't synced yet to hardware or
489 * to the DSA conduit, so there is nothing to change.
490 */
491 if (!(dev->flags & IFF_UP))
492 goto out_change_dev_addr;
493
494 err = dsa_user_host_uc_install(dev, addr->sa_data);
495 if (err)
496 return err;
497
498 dsa_user_host_uc_uninstall(dev);
499
500 out_change_dev_addr:
501 eth_hw_addr_set(dev, addr->sa_data);
502
503 return 0;
504 }
505
506 struct dsa_user_dump_ctx {
507 struct net_device *dev;
508 struct sk_buff *skb;
509 struct netlink_callback *cb;
510 int idx;
511 };
512
513 static int
dsa_user_port_fdb_do_dump(const unsigned char * addr,u16 vid,bool is_static,void * data)514 dsa_user_port_fdb_do_dump(const unsigned char *addr, u16 vid,
515 bool is_static, void *data)
516 {
517 struct dsa_user_dump_ctx *dump = data;
518 struct ndo_fdb_dump_context *ctx = (void *)dump->cb->ctx;
519 u32 portid = NETLINK_CB(dump->cb->skb).portid;
520 u32 seq = dump->cb->nlh->nlmsg_seq;
521 struct nlmsghdr *nlh;
522 struct ndmsg *ndm;
523
524 if (dump->idx < ctx->fdb_idx)
525 goto skip;
526
527 nlh = nlmsg_put(dump->skb, portid, seq, RTM_NEWNEIGH,
528 sizeof(*ndm), NLM_F_MULTI);
529 if (!nlh)
530 return -EMSGSIZE;
531
532 ndm = nlmsg_data(nlh);
533 ndm->ndm_family = AF_BRIDGE;
534 ndm->ndm_pad1 = 0;
535 ndm->ndm_pad2 = 0;
536 ndm->ndm_flags = NTF_SELF;
537 ndm->ndm_type = 0;
538 ndm->ndm_ifindex = dump->dev->ifindex;
539 ndm->ndm_state = is_static ? NUD_NOARP : NUD_REACHABLE;
540
541 if (nla_put(dump->skb, NDA_LLADDR, ETH_ALEN, addr))
542 goto nla_put_failure;
543
544 if (vid && nla_put_u16(dump->skb, NDA_VLAN, vid))
545 goto nla_put_failure;
546
547 nlmsg_end(dump->skb, nlh);
548
549 skip:
550 dump->idx++;
551 return 0;
552
553 nla_put_failure:
554 nlmsg_cancel(dump->skb, nlh);
555 return -EMSGSIZE;
556 }
557
558 static int
dsa_user_fdb_dump(struct sk_buff * skb,struct netlink_callback * cb,struct net_device * dev,struct net_device * filter_dev,int * idx)559 dsa_user_fdb_dump(struct sk_buff *skb, struct netlink_callback *cb,
560 struct net_device *dev, struct net_device *filter_dev,
561 int *idx)
562 {
563 struct dsa_port *dp = dsa_user_to_port(dev);
564 struct dsa_user_dump_ctx dump = {
565 .dev = dev,
566 .skb = skb,
567 .cb = cb,
568 .idx = *idx,
569 };
570 int err;
571
572 err = dsa_port_fdb_dump(dp, dsa_user_port_fdb_do_dump, &dump);
573 *idx = dump.idx;
574
575 return err;
576 }
577
dsa_user_ioctl(struct net_device * dev,struct ifreq * ifr,int cmd)578 static int dsa_user_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd)
579 {
580 struct dsa_user_priv *p = netdev_priv(dev);
581
582 return phylink_mii_ioctl(p->dp->pl, ifr, cmd);
583 }
584
dsa_user_port_attr_set(struct net_device * dev,const void * ctx,const struct switchdev_attr * attr,struct netlink_ext_ack * extack)585 static int dsa_user_port_attr_set(struct net_device *dev, const void *ctx,
586 const struct switchdev_attr *attr,
587 struct netlink_ext_ack *extack)
588 {
589 struct dsa_port *dp = dsa_user_to_port(dev);
590 int ret;
591
592 if (ctx && ctx != dp)
593 return 0;
594
595 switch (attr->id) {
596 case SWITCHDEV_ATTR_ID_PORT_STP_STATE:
597 if (!dsa_port_offloads_bridge_port(dp, attr->orig_dev))
598 return -EOPNOTSUPP;
599
600 ret = dsa_port_set_state(dp, attr->u.stp_state, true);
601 break;
602 case SWITCHDEV_ATTR_ID_PORT_MST_STATE:
603 if (!dsa_port_offloads_bridge_port(dp, attr->orig_dev))
604 return -EOPNOTSUPP;
605
606 ret = dsa_port_set_mst_state(dp, &attr->u.mst_state, extack);
607 break;
608 case SWITCHDEV_ATTR_ID_BRIDGE_VLAN_FILTERING:
609 if (!dsa_port_offloads_bridge_dev(dp, attr->orig_dev))
610 return -EOPNOTSUPP;
611
612 ret = dsa_port_vlan_filtering(dp, attr->u.vlan_filtering,
613 extack);
614 break;
615 case SWITCHDEV_ATTR_ID_BRIDGE_AGEING_TIME:
616 if (!dsa_port_offloads_bridge_dev(dp, attr->orig_dev))
617 return -EOPNOTSUPP;
618
619 ret = dsa_port_ageing_time(dp, attr->u.ageing_time);
620 break;
621 case SWITCHDEV_ATTR_ID_BRIDGE_MST:
622 if (!dsa_port_offloads_bridge_dev(dp, attr->orig_dev))
623 return -EOPNOTSUPP;
624
625 ret = dsa_port_mst_enable(dp, attr->u.mst, extack);
626 break;
627 case SWITCHDEV_ATTR_ID_PORT_PRE_BRIDGE_FLAGS:
628 if (!dsa_port_offloads_bridge_port(dp, attr->orig_dev))
629 return -EOPNOTSUPP;
630
631 ret = dsa_port_pre_bridge_flags(dp, attr->u.brport_flags,
632 extack);
633 break;
634 case SWITCHDEV_ATTR_ID_PORT_BRIDGE_FLAGS:
635 if (!dsa_port_offloads_bridge_port(dp, attr->orig_dev))
636 return -EOPNOTSUPP;
637
638 ret = dsa_port_bridge_flags(dp, attr->u.brport_flags, extack);
639 break;
640 case SWITCHDEV_ATTR_ID_VLAN_MSTI:
641 if (!dsa_port_offloads_bridge_dev(dp, attr->orig_dev))
642 return -EOPNOTSUPP;
643
644 ret = dsa_port_vlan_msti(dp, &attr->u.vlan_msti);
645 break;
646 default:
647 ret = -EOPNOTSUPP;
648 break;
649 }
650
651 return ret;
652 }
653
654 /* Must be called under rcu_read_lock() */
655 static int
dsa_user_vlan_check_for_8021q_uppers(struct net_device * user,const struct switchdev_obj_port_vlan * vlan)656 dsa_user_vlan_check_for_8021q_uppers(struct net_device *user,
657 const struct switchdev_obj_port_vlan *vlan)
658 {
659 struct net_device *upper_dev;
660 struct list_head *iter;
661
662 netdev_for_each_upper_dev_rcu(user, upper_dev, iter) {
663 u16 vid;
664
665 if (!is_vlan_dev(upper_dev))
666 continue;
667
668 vid = vlan_dev_vlan_id(upper_dev);
669 if (vid == vlan->vid)
670 return -EBUSY;
671 }
672
673 return 0;
674 }
675
dsa_user_vlan_add(struct net_device * dev,const struct switchdev_obj * obj,struct netlink_ext_ack * extack)676 static int dsa_user_vlan_add(struct net_device *dev,
677 const struct switchdev_obj *obj,
678 struct netlink_ext_ack *extack)
679 {
680 struct dsa_port *dp = dsa_user_to_port(dev);
681 struct switchdev_obj_port_vlan *vlan;
682 int err;
683
684 if (dsa_port_skip_vlan_configuration(dp)) {
685 NL_SET_ERR_MSG_MOD(extack, "skipping configuration of VLAN");
686 return 0;
687 }
688
689 vlan = SWITCHDEV_OBJ_PORT_VLAN(obj);
690
691 /* Deny adding a bridge VLAN when there is already an 802.1Q upper with
692 * the same VID.
693 */
694 if (br_vlan_enabled(dsa_port_bridge_dev_get(dp))) {
695 rcu_read_lock();
696 err = dsa_user_vlan_check_for_8021q_uppers(dev, vlan);
697 rcu_read_unlock();
698 if (err) {
699 NL_SET_ERR_MSG_MOD(extack,
700 "Port already has a VLAN upper with this VID");
701 return err;
702 }
703 }
704
705 return dsa_port_vlan_add(dp, vlan, extack);
706 }
707
708 /* Offload a VLAN installed on the bridge or on a foreign interface by
709 * installing it as a VLAN towards the CPU port.
710 */
dsa_user_host_vlan_add(struct net_device * dev,const struct switchdev_obj * obj,struct netlink_ext_ack * extack)711 static int dsa_user_host_vlan_add(struct net_device *dev,
712 const struct switchdev_obj *obj,
713 struct netlink_ext_ack *extack)
714 {
715 struct dsa_port *dp = dsa_user_to_port(dev);
716 struct switchdev_obj_port_vlan vlan;
717
718 /* Do nothing if this is a software bridge */
719 if (!dp->bridge)
720 return -EOPNOTSUPP;
721
722 if (dsa_port_skip_vlan_configuration(dp)) {
723 NL_SET_ERR_MSG_MOD(extack, "skipping configuration of VLAN");
724 return 0;
725 }
726
727 vlan = *SWITCHDEV_OBJ_PORT_VLAN(obj);
728
729 /* Even though drivers often handle CPU membership in special ways,
730 * it doesn't make sense to program a PVID, so clear this flag.
731 */
732 vlan.flags &= ~BRIDGE_VLAN_INFO_PVID;
733
734 return dsa_port_host_vlan_add(dp, &vlan, extack);
735 }
736
dsa_user_port_obj_add(struct net_device * dev,const void * ctx,const struct switchdev_obj * obj,struct netlink_ext_ack * extack)737 static int dsa_user_port_obj_add(struct net_device *dev, const void *ctx,
738 const struct switchdev_obj *obj,
739 struct netlink_ext_ack *extack)
740 {
741 struct dsa_port *dp = dsa_user_to_port(dev);
742 int err;
743
744 if (ctx && ctx != dp)
745 return 0;
746
747 switch (obj->id) {
748 case SWITCHDEV_OBJ_ID_PORT_MDB:
749 if (!dsa_port_offloads_bridge_port(dp, obj->orig_dev))
750 return -EOPNOTSUPP;
751
752 err = dsa_port_mdb_add(dp, SWITCHDEV_OBJ_PORT_MDB(obj));
753 break;
754 case SWITCHDEV_OBJ_ID_HOST_MDB:
755 if (!dsa_port_offloads_bridge_dev(dp, obj->orig_dev))
756 return -EOPNOTSUPP;
757
758 err = dsa_port_bridge_host_mdb_add(dp, SWITCHDEV_OBJ_PORT_MDB(obj));
759 break;
760 case SWITCHDEV_OBJ_ID_PORT_VLAN:
761 if (dsa_port_offloads_bridge_port(dp, obj->orig_dev))
762 err = dsa_user_vlan_add(dev, obj, extack);
763 else
764 err = dsa_user_host_vlan_add(dev, obj, extack);
765 break;
766 case SWITCHDEV_OBJ_ID_MRP:
767 if (!dsa_port_offloads_bridge_dev(dp, obj->orig_dev))
768 return -EOPNOTSUPP;
769
770 err = dsa_port_mrp_add(dp, SWITCHDEV_OBJ_MRP(obj));
771 break;
772 case SWITCHDEV_OBJ_ID_RING_ROLE_MRP:
773 if (!dsa_port_offloads_bridge_dev(dp, obj->orig_dev))
774 return -EOPNOTSUPP;
775
776 err = dsa_port_mrp_add_ring_role(dp,
777 SWITCHDEV_OBJ_RING_ROLE_MRP(obj));
778 break;
779 default:
780 err = -EOPNOTSUPP;
781 break;
782 }
783
784 return err;
785 }
786
dsa_user_vlan_del(struct net_device * dev,const struct switchdev_obj * obj)787 static int dsa_user_vlan_del(struct net_device *dev,
788 const struct switchdev_obj *obj)
789 {
790 struct dsa_port *dp = dsa_user_to_port(dev);
791 struct switchdev_obj_port_vlan *vlan;
792
793 if (dsa_port_skip_vlan_configuration(dp))
794 return 0;
795
796 vlan = SWITCHDEV_OBJ_PORT_VLAN(obj);
797
798 return dsa_port_vlan_del(dp, vlan);
799 }
800
dsa_user_host_vlan_del(struct net_device * dev,const struct switchdev_obj * obj)801 static int dsa_user_host_vlan_del(struct net_device *dev,
802 const struct switchdev_obj *obj)
803 {
804 struct dsa_port *dp = dsa_user_to_port(dev);
805 struct switchdev_obj_port_vlan *vlan;
806
807 /* Do nothing if this is a software bridge */
808 if (!dp->bridge)
809 return -EOPNOTSUPP;
810
811 if (dsa_port_skip_vlan_configuration(dp))
812 return 0;
813
814 vlan = SWITCHDEV_OBJ_PORT_VLAN(obj);
815
816 return dsa_port_host_vlan_del(dp, vlan);
817 }
818
dsa_user_port_obj_del(struct net_device * dev,const void * ctx,const struct switchdev_obj * obj)819 static int dsa_user_port_obj_del(struct net_device *dev, const void *ctx,
820 const struct switchdev_obj *obj)
821 {
822 struct dsa_port *dp = dsa_user_to_port(dev);
823 int err;
824
825 if (ctx && ctx != dp)
826 return 0;
827
828 switch (obj->id) {
829 case SWITCHDEV_OBJ_ID_PORT_MDB:
830 if (!dsa_port_offloads_bridge_port(dp, obj->orig_dev))
831 return -EOPNOTSUPP;
832
833 err = dsa_port_mdb_del(dp, SWITCHDEV_OBJ_PORT_MDB(obj));
834 break;
835 case SWITCHDEV_OBJ_ID_HOST_MDB:
836 if (!dsa_port_offloads_bridge_dev(dp, obj->orig_dev))
837 return -EOPNOTSUPP;
838
839 err = dsa_port_bridge_host_mdb_del(dp, SWITCHDEV_OBJ_PORT_MDB(obj));
840 break;
841 case SWITCHDEV_OBJ_ID_PORT_VLAN:
842 if (dsa_port_offloads_bridge_port(dp, obj->orig_dev))
843 err = dsa_user_vlan_del(dev, obj);
844 else
845 err = dsa_user_host_vlan_del(dev, obj);
846 break;
847 case SWITCHDEV_OBJ_ID_MRP:
848 if (!dsa_port_offloads_bridge_dev(dp, obj->orig_dev))
849 return -EOPNOTSUPP;
850
851 err = dsa_port_mrp_del(dp, SWITCHDEV_OBJ_MRP(obj));
852 break;
853 case SWITCHDEV_OBJ_ID_RING_ROLE_MRP:
854 if (!dsa_port_offloads_bridge_dev(dp, obj->orig_dev))
855 return -EOPNOTSUPP;
856
857 err = dsa_port_mrp_del_ring_role(dp,
858 SWITCHDEV_OBJ_RING_ROLE_MRP(obj));
859 break;
860 default:
861 err = -EOPNOTSUPP;
862 break;
863 }
864
865 return err;
866 }
867
dsa_user_netpoll_send_skb(struct net_device * dev,struct sk_buff * skb)868 static netdev_tx_t dsa_user_netpoll_send_skb(struct net_device *dev,
869 struct sk_buff *skb)
870 {
871 #ifdef CONFIG_NET_POLL_CONTROLLER
872 struct dsa_user_priv *p = netdev_priv(dev);
873
874 return netpoll_send_skb(p->netpoll, skb);
875 #else
876 BUG();
877 return NETDEV_TX_OK;
878 #endif
879 }
880
dsa_skb_tx_timestamp(struct dsa_user_priv * p,struct sk_buff * skb)881 static void dsa_skb_tx_timestamp(struct dsa_user_priv *p,
882 struct sk_buff *skb)
883 {
884 struct dsa_switch *ds = p->dp->ds;
885
886 if (!(skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP_NOBPF))
887 return;
888
889 if (!ds->ops->port_txtstamp)
890 return;
891
892 ds->ops->port_txtstamp(ds, p->dp->index, skb);
893 }
894
dsa_enqueue_skb(struct sk_buff * skb,struct net_device * dev)895 netdev_tx_t dsa_enqueue_skb(struct sk_buff *skb, struct net_device *dev)
896 {
897 /* SKB for netpoll still need to be mangled with the protocol-specific
898 * tag to be successfully transmitted
899 */
900 if (unlikely(netpoll_tx_running(dev)))
901 return dsa_user_netpoll_send_skb(dev, skb);
902
903 /* Queue the SKB for transmission on the parent interface, but
904 * do not modify its EtherType
905 */
906 skb->dev = dsa_user_to_conduit(dev);
907 dev_queue_xmit(skb);
908
909 return NETDEV_TX_OK;
910 }
911 EXPORT_SYMBOL_GPL(dsa_enqueue_skb);
912
dsa_user_xmit(struct sk_buff * skb,struct net_device * dev)913 static netdev_tx_t dsa_user_xmit(struct sk_buff *skb, struct net_device *dev)
914 {
915 struct dsa_user_priv *p = netdev_priv(dev);
916 struct sk_buff *nskb;
917
918 dev_sw_netstats_tx_add(dev, 1, skb->len);
919
920 memset(skb->cb, 0, sizeof(skb->cb));
921
922 /* Handle tx timestamp if any */
923 dsa_skb_tx_timestamp(p, skb);
924
925 if (skb_ensure_writable_head_tail(skb, dev)) {
926 dev_kfree_skb_any(skb);
927 return NETDEV_TX_OK;
928 }
929
930 /* needed_tailroom should still be 'warm' in the cache line from
931 * skb_ensure_writable_head_tail(), which has also ensured that
932 * padding is safe.
933 */
934 if (dev->needed_tailroom)
935 eth_skb_pad(skb);
936
937 /* Transmit function may have to reallocate the original SKB,
938 * in which case it must have freed it. Only free it here on error.
939 */
940 nskb = p->xmit(skb, dev);
941 if (!nskb) {
942 kfree_skb(skb);
943 return NETDEV_TX_OK;
944 }
945
946 return dsa_enqueue_skb(nskb, dev);
947 }
948
949 /* ethtool operations *******************************************************/
950
dsa_user_get_drvinfo(struct net_device * dev,struct ethtool_drvinfo * drvinfo)951 static void dsa_user_get_drvinfo(struct net_device *dev,
952 struct ethtool_drvinfo *drvinfo)
953 {
954 strscpy(drvinfo->driver, "dsa", sizeof(drvinfo->driver));
955 strscpy(drvinfo->fw_version, "N/A", sizeof(drvinfo->fw_version));
956 strscpy(drvinfo->bus_info, "platform", sizeof(drvinfo->bus_info));
957 }
958
dsa_user_get_regs_len(struct net_device * dev)959 static int dsa_user_get_regs_len(struct net_device *dev)
960 {
961 struct dsa_port *dp = dsa_user_to_port(dev);
962 struct dsa_switch *ds = dp->ds;
963
964 if (ds->ops->get_regs_len)
965 return ds->ops->get_regs_len(ds, dp->index);
966
967 return -EOPNOTSUPP;
968 }
969
970 static void
dsa_user_get_regs(struct net_device * dev,struct ethtool_regs * regs,void * _p)971 dsa_user_get_regs(struct net_device *dev, struct ethtool_regs *regs, void *_p)
972 {
973 struct dsa_port *dp = dsa_user_to_port(dev);
974 struct dsa_switch *ds = dp->ds;
975
976 if (ds->ops->get_regs)
977 ds->ops->get_regs(ds, dp->index, regs, _p);
978 }
979
dsa_user_nway_reset(struct net_device * dev)980 static int dsa_user_nway_reset(struct net_device *dev)
981 {
982 struct dsa_port *dp = dsa_user_to_port(dev);
983
984 return phylink_ethtool_nway_reset(dp->pl);
985 }
986
dsa_user_get_eeprom_len(struct net_device * dev)987 static int dsa_user_get_eeprom_len(struct net_device *dev)
988 {
989 struct dsa_port *dp = dsa_user_to_port(dev);
990 struct dsa_switch *ds = dp->ds;
991
992 if (ds->cd && ds->cd->eeprom_len)
993 return ds->cd->eeprom_len;
994
995 if (ds->ops->get_eeprom_len)
996 return ds->ops->get_eeprom_len(ds);
997
998 return 0;
999 }
1000
dsa_user_get_eeprom(struct net_device * dev,struct ethtool_eeprom * eeprom,u8 * data)1001 static int dsa_user_get_eeprom(struct net_device *dev,
1002 struct ethtool_eeprom *eeprom, u8 *data)
1003 {
1004 struct dsa_port *dp = dsa_user_to_port(dev);
1005 struct dsa_switch *ds = dp->ds;
1006
1007 if (ds->ops->get_eeprom)
1008 return ds->ops->get_eeprom(ds, eeprom, data);
1009
1010 return -EOPNOTSUPP;
1011 }
1012
dsa_user_set_eeprom(struct net_device * dev,struct ethtool_eeprom * eeprom,u8 * data)1013 static int dsa_user_set_eeprom(struct net_device *dev,
1014 struct ethtool_eeprom *eeprom, u8 *data)
1015 {
1016 struct dsa_port *dp = dsa_user_to_port(dev);
1017 struct dsa_switch *ds = dp->ds;
1018
1019 if (ds->ops->set_eeprom)
1020 return ds->ops->set_eeprom(ds, eeprom, data);
1021
1022 return -EOPNOTSUPP;
1023 }
1024
dsa_user_get_strings(struct net_device * dev,uint32_t stringset,uint8_t * data)1025 static void dsa_user_get_strings(struct net_device *dev,
1026 uint32_t stringset, uint8_t *data)
1027 {
1028 struct dsa_port *dp = dsa_user_to_port(dev);
1029 struct dsa_switch *ds = dp->ds;
1030
1031 if (stringset == ETH_SS_STATS) {
1032 ethtool_puts(&data, "tx_packets");
1033 ethtool_puts(&data, "tx_bytes");
1034 ethtool_puts(&data, "rx_packets");
1035 ethtool_puts(&data, "rx_bytes");
1036 if (ds->ops->get_strings)
1037 ds->ops->get_strings(ds, dp->index, stringset, data);
1038 } else if (stringset == ETH_SS_TEST) {
1039 net_selftest_get_strings(data);
1040 }
1041
1042 }
1043
dsa_user_get_ethtool_stats(struct net_device * dev,struct ethtool_stats * stats,uint64_t * data)1044 static void dsa_user_get_ethtool_stats(struct net_device *dev,
1045 struct ethtool_stats *stats,
1046 uint64_t *data)
1047 {
1048 struct dsa_port *dp = dsa_user_to_port(dev);
1049 struct dsa_switch *ds = dp->ds;
1050 struct pcpu_sw_netstats *s;
1051 unsigned int start;
1052 int i;
1053
1054 for_each_possible_cpu(i) {
1055 u64 tx_packets, tx_bytes, rx_packets, rx_bytes;
1056
1057 s = per_cpu_ptr(dev->tstats, i);
1058 do {
1059 start = u64_stats_fetch_begin(&s->syncp);
1060 tx_packets = u64_stats_read(&s->tx_packets);
1061 tx_bytes = u64_stats_read(&s->tx_bytes);
1062 rx_packets = u64_stats_read(&s->rx_packets);
1063 rx_bytes = u64_stats_read(&s->rx_bytes);
1064 } while (u64_stats_fetch_retry(&s->syncp, start));
1065 data[0] += tx_packets;
1066 data[1] += tx_bytes;
1067 data[2] += rx_packets;
1068 data[3] += rx_bytes;
1069 }
1070 if (ds->ops->get_ethtool_stats)
1071 ds->ops->get_ethtool_stats(ds, dp->index, data + 4);
1072 }
1073
dsa_user_get_sset_count(struct net_device * dev,int sset)1074 static int dsa_user_get_sset_count(struct net_device *dev, int sset)
1075 {
1076 struct dsa_port *dp = dsa_user_to_port(dev);
1077 struct dsa_switch *ds = dp->ds;
1078
1079 if (sset == ETH_SS_STATS) {
1080 int count = 0;
1081
1082 if (ds->ops->get_sset_count) {
1083 count = ds->ops->get_sset_count(ds, dp->index, sset);
1084 if (count < 0)
1085 return count;
1086 }
1087
1088 return count + 4;
1089 } else if (sset == ETH_SS_TEST) {
1090 return net_selftest_get_count();
1091 }
1092
1093 return -EOPNOTSUPP;
1094 }
1095
dsa_user_get_eth_phy_stats(struct net_device * dev,struct ethtool_eth_phy_stats * phy_stats)1096 static void dsa_user_get_eth_phy_stats(struct net_device *dev,
1097 struct ethtool_eth_phy_stats *phy_stats)
1098 {
1099 struct dsa_port *dp = dsa_user_to_port(dev);
1100 struct dsa_switch *ds = dp->ds;
1101
1102 if (ds->ops->get_eth_phy_stats)
1103 ds->ops->get_eth_phy_stats(ds, dp->index, phy_stats);
1104 }
1105
dsa_user_get_eth_mac_stats(struct net_device * dev,struct ethtool_eth_mac_stats * mac_stats)1106 static void dsa_user_get_eth_mac_stats(struct net_device *dev,
1107 struct ethtool_eth_mac_stats *mac_stats)
1108 {
1109 struct dsa_port *dp = dsa_user_to_port(dev);
1110 struct dsa_switch *ds = dp->ds;
1111
1112 if (ds->ops->get_eth_mac_stats)
1113 ds->ops->get_eth_mac_stats(ds, dp->index, mac_stats);
1114 }
1115
1116 static void
dsa_user_get_eth_ctrl_stats(struct net_device * dev,struct ethtool_eth_ctrl_stats * ctrl_stats)1117 dsa_user_get_eth_ctrl_stats(struct net_device *dev,
1118 struct ethtool_eth_ctrl_stats *ctrl_stats)
1119 {
1120 struct dsa_port *dp = dsa_user_to_port(dev);
1121 struct dsa_switch *ds = dp->ds;
1122
1123 if (ds->ops->get_eth_ctrl_stats)
1124 ds->ops->get_eth_ctrl_stats(ds, dp->index, ctrl_stats);
1125 }
1126
1127 static void
dsa_user_get_rmon_stats(struct net_device * dev,struct ethtool_rmon_stats * rmon_stats,const struct ethtool_rmon_hist_range ** ranges)1128 dsa_user_get_rmon_stats(struct net_device *dev,
1129 struct ethtool_rmon_stats *rmon_stats,
1130 const struct ethtool_rmon_hist_range **ranges)
1131 {
1132 struct dsa_port *dp = dsa_user_to_port(dev);
1133 struct dsa_switch *ds = dp->ds;
1134
1135 if (ds->ops->get_rmon_stats)
1136 ds->ops->get_rmon_stats(ds, dp->index, rmon_stats, ranges);
1137 }
1138
dsa_user_get_ts_stats(struct net_device * dev,struct ethtool_ts_stats * ts_stats)1139 static void dsa_user_get_ts_stats(struct net_device *dev,
1140 struct ethtool_ts_stats *ts_stats)
1141 {
1142 struct dsa_port *dp = dsa_user_to_port(dev);
1143 struct dsa_switch *ds = dp->ds;
1144
1145 if (ds->ops->get_ts_stats)
1146 ds->ops->get_ts_stats(ds, dp->index, ts_stats);
1147 }
1148
dsa_user_net_selftest(struct net_device * ndev,struct ethtool_test * etest,u64 * buf)1149 static void dsa_user_net_selftest(struct net_device *ndev,
1150 struct ethtool_test *etest, u64 *buf)
1151 {
1152 struct dsa_port *dp = dsa_user_to_port(ndev);
1153 struct dsa_switch *ds = dp->ds;
1154
1155 if (ds->ops->self_test) {
1156 ds->ops->self_test(ds, dp->index, etest, buf);
1157 return;
1158 }
1159
1160 net_selftest(ndev, etest, buf);
1161 }
1162
dsa_user_get_mm(struct net_device * dev,struct ethtool_mm_state * state)1163 static int dsa_user_get_mm(struct net_device *dev,
1164 struct ethtool_mm_state *state)
1165 {
1166 struct dsa_port *dp = dsa_user_to_port(dev);
1167 struct dsa_switch *ds = dp->ds;
1168
1169 if (!ds->ops->get_mm)
1170 return -EOPNOTSUPP;
1171
1172 return ds->ops->get_mm(ds, dp->index, state);
1173 }
1174
dsa_user_set_mm(struct net_device * dev,struct ethtool_mm_cfg * cfg,struct netlink_ext_ack * extack)1175 static int dsa_user_set_mm(struct net_device *dev, struct ethtool_mm_cfg *cfg,
1176 struct netlink_ext_ack *extack)
1177 {
1178 struct dsa_port *dp = dsa_user_to_port(dev);
1179 struct dsa_switch *ds = dp->ds;
1180
1181 if (!ds->ops->set_mm)
1182 return -EOPNOTSUPP;
1183
1184 return ds->ops->set_mm(ds, dp->index, cfg, extack);
1185 }
1186
dsa_user_get_mm_stats(struct net_device * dev,struct ethtool_mm_stats * stats)1187 static void dsa_user_get_mm_stats(struct net_device *dev,
1188 struct ethtool_mm_stats *stats)
1189 {
1190 struct dsa_port *dp = dsa_user_to_port(dev);
1191 struct dsa_switch *ds = dp->ds;
1192
1193 if (ds->ops->get_mm_stats)
1194 ds->ops->get_mm_stats(ds, dp->index, stats);
1195 }
1196
dsa_user_get_wol(struct net_device * dev,struct ethtool_wolinfo * w)1197 static void dsa_user_get_wol(struct net_device *dev, struct ethtool_wolinfo *w)
1198 {
1199 struct dsa_port *dp = dsa_user_to_port(dev);
1200 struct dsa_switch *ds = dp->ds;
1201
1202 phylink_ethtool_get_wol(dp->pl, w);
1203
1204 if (ds->ops->get_wol)
1205 ds->ops->get_wol(ds, dp->index, w);
1206 }
1207
dsa_user_set_wol(struct net_device * dev,struct ethtool_wolinfo * w)1208 static int dsa_user_set_wol(struct net_device *dev, struct ethtool_wolinfo *w)
1209 {
1210 struct dsa_port *dp = dsa_user_to_port(dev);
1211 struct dsa_switch *ds = dp->ds;
1212 int ret = -EOPNOTSUPP;
1213
1214 phylink_ethtool_set_wol(dp->pl, w);
1215
1216 if (ds->ops->set_wol)
1217 ret = ds->ops->set_wol(ds, dp->index, w);
1218
1219 return ret;
1220 }
1221
dsa_user_set_eee(struct net_device * dev,struct ethtool_keee * e)1222 static int dsa_user_set_eee(struct net_device *dev, struct ethtool_keee *e)
1223 {
1224 struct dsa_port *dp = dsa_user_to_port(dev);
1225 struct dsa_switch *ds = dp->ds;
1226 int ret;
1227
1228 /* Check whether the switch supports EEE */
1229 if (!ds->ops->support_eee || !ds->ops->support_eee(ds, dp->index))
1230 return -EOPNOTSUPP;
1231
1232 /* If the port is using phylink managed EEE, then an unimplemented
1233 * set_mac_eee() is permissible.
1234 */
1235 if (!phylink_mac_implements_lpi(ds->phylink_mac_ops)) {
1236 /* Port's PHY and MAC both need to be EEE capable */
1237 if (!dev->phydev)
1238 return -ENODEV;
1239
1240 if (!ds->ops->set_mac_eee)
1241 return -EOPNOTSUPP;
1242
1243 ret = ds->ops->set_mac_eee(ds, dp->index, e);
1244 if (ret)
1245 return ret;
1246 } else if (ds->ops->set_mac_eee) {
1247 ret = ds->ops->set_mac_eee(ds, dp->index, e);
1248 if (ret)
1249 return ret;
1250 }
1251
1252 return phylink_ethtool_set_eee(dp->pl, e);
1253 }
1254
dsa_user_get_eee(struct net_device * dev,struct ethtool_keee * e)1255 static int dsa_user_get_eee(struct net_device *dev, struct ethtool_keee *e)
1256 {
1257 struct dsa_port *dp = dsa_user_to_port(dev);
1258 struct dsa_switch *ds = dp->ds;
1259
1260 /* Check whether the switch supports EEE */
1261 if (!ds->ops->support_eee || !ds->ops->support_eee(ds, dp->index))
1262 return -EOPNOTSUPP;
1263
1264 /* Port's PHY and MAC both need to be EEE capable */
1265 if (!dev->phydev)
1266 return -ENODEV;
1267
1268 return phylink_ethtool_get_eee(dp->pl, e);
1269 }
1270
dsa_user_get_link_ksettings(struct net_device * dev,struct ethtool_link_ksettings * cmd)1271 static int dsa_user_get_link_ksettings(struct net_device *dev,
1272 struct ethtool_link_ksettings *cmd)
1273 {
1274 struct dsa_port *dp = dsa_user_to_port(dev);
1275
1276 return phylink_ethtool_ksettings_get(dp->pl, cmd);
1277 }
1278
dsa_user_set_link_ksettings(struct net_device * dev,const struct ethtool_link_ksettings * cmd)1279 static int dsa_user_set_link_ksettings(struct net_device *dev,
1280 const struct ethtool_link_ksettings *cmd)
1281 {
1282 struct dsa_port *dp = dsa_user_to_port(dev);
1283
1284 return phylink_ethtool_ksettings_set(dp->pl, cmd);
1285 }
1286
dsa_user_get_pause_stats(struct net_device * dev,struct ethtool_pause_stats * pause_stats)1287 static void dsa_user_get_pause_stats(struct net_device *dev,
1288 struct ethtool_pause_stats *pause_stats)
1289 {
1290 struct dsa_port *dp = dsa_user_to_port(dev);
1291 struct dsa_switch *ds = dp->ds;
1292
1293 if (ds->ops->get_pause_stats)
1294 ds->ops->get_pause_stats(ds, dp->index, pause_stats);
1295 }
1296
dsa_user_get_pauseparam(struct net_device * dev,struct ethtool_pauseparam * pause)1297 static void dsa_user_get_pauseparam(struct net_device *dev,
1298 struct ethtool_pauseparam *pause)
1299 {
1300 struct dsa_port *dp = dsa_user_to_port(dev);
1301
1302 phylink_ethtool_get_pauseparam(dp->pl, pause);
1303 }
1304
dsa_user_set_pauseparam(struct net_device * dev,struct ethtool_pauseparam * pause)1305 static int dsa_user_set_pauseparam(struct net_device *dev,
1306 struct ethtool_pauseparam *pause)
1307 {
1308 struct dsa_port *dp = dsa_user_to_port(dev);
1309
1310 return phylink_ethtool_set_pauseparam(dp->pl, pause);
1311 }
1312
1313 #ifdef CONFIG_NET_POLL_CONTROLLER
dsa_user_netpoll_setup(struct net_device * dev)1314 static int dsa_user_netpoll_setup(struct net_device *dev)
1315 {
1316 struct net_device *conduit = dsa_user_to_conduit(dev);
1317 struct dsa_user_priv *p = netdev_priv(dev);
1318 struct netpoll *netpoll;
1319 int err = 0;
1320
1321 netpoll = kzalloc_obj(*netpoll);
1322 if (!netpoll)
1323 return -ENOMEM;
1324
1325 err = __netpoll_setup(netpoll, conduit);
1326 if (err) {
1327 kfree(netpoll);
1328 goto out;
1329 }
1330
1331 p->netpoll = netpoll;
1332 out:
1333 return err;
1334 }
1335
dsa_user_netpoll_cleanup(struct net_device * dev)1336 static void dsa_user_netpoll_cleanup(struct net_device *dev)
1337 {
1338 struct dsa_user_priv *p = netdev_priv(dev);
1339 struct netpoll *netpoll = p->netpoll;
1340
1341 if (!netpoll)
1342 return;
1343
1344 p->netpoll = NULL;
1345
1346 __netpoll_free(netpoll);
1347 }
1348
dsa_user_poll_controller(struct net_device * dev)1349 static void dsa_user_poll_controller(struct net_device *dev)
1350 {
1351 }
1352 #endif
1353
1354 static struct dsa_mall_tc_entry *
dsa_user_mall_tc_entry_find(struct net_device * dev,unsigned long cookie)1355 dsa_user_mall_tc_entry_find(struct net_device *dev, unsigned long cookie)
1356 {
1357 struct dsa_user_priv *p = netdev_priv(dev);
1358 struct dsa_mall_tc_entry *mall_tc_entry;
1359
1360 list_for_each_entry(mall_tc_entry, &p->mall_tc_list, list)
1361 if (mall_tc_entry->cookie == cookie)
1362 return mall_tc_entry;
1363
1364 return NULL;
1365 }
1366
1367 static int
dsa_user_add_cls_matchall_mirred(struct net_device * dev,struct tc_cls_matchall_offload * cls,bool ingress,bool ingress_target)1368 dsa_user_add_cls_matchall_mirred(struct net_device *dev,
1369 struct tc_cls_matchall_offload *cls,
1370 bool ingress, bool ingress_target)
1371 {
1372 struct netlink_ext_ack *extack = cls->common.extack;
1373 struct dsa_port *dp = dsa_user_to_port(dev);
1374 struct dsa_user_priv *p = netdev_priv(dev);
1375 struct dsa_mall_mirror_tc_entry *mirror;
1376 struct dsa_mall_tc_entry *mall_tc_entry;
1377 struct dsa_switch *ds = dp->ds;
1378 struct flow_action_entry *act;
1379 struct dsa_port *to_dp;
1380 int err;
1381
1382 if (cls->common.protocol != htons(ETH_P_ALL)) {
1383 NL_SET_ERR_MSG_MOD(extack,
1384 "Can only offload \"protocol all\" matchall filter");
1385 return -EOPNOTSUPP;
1386 }
1387
1388 if (!ds->ops->port_mirror_add) {
1389 NL_SET_ERR_MSG_MOD(extack,
1390 "Switch does not support mirroring operation");
1391 return -EOPNOTSUPP;
1392 }
1393
1394 if (!flow_action_basic_hw_stats_check(&cls->rule->action, extack))
1395 return -EOPNOTSUPP;
1396
1397 act = &cls->rule->action.entries[0];
1398
1399 if (!act->dev)
1400 return -EINVAL;
1401
1402 if (dsa_user_dev_check(act->dev)) {
1403 if (ingress_target) {
1404 /* We can only fulfill this using software assist */
1405 if (cls->common.skip_sw) {
1406 NL_SET_ERR_MSG_MOD(extack,
1407 "Can only mirred to ingress of DSA user port if filter also runs in software");
1408 return -EOPNOTSUPP;
1409 }
1410 to_dp = dp->cpu_dp;
1411 } else {
1412 to_dp = dsa_user_to_port(act->dev);
1413 }
1414 } else {
1415 /* Handle mirroring to foreign target ports as a mirror towards
1416 * the CPU. The software tc rule will take the packets from
1417 * there.
1418 */
1419 if (cls->common.skip_sw) {
1420 NL_SET_ERR_MSG_MOD(extack,
1421 "Can only mirred to CPU if filter also runs in software");
1422 return -EOPNOTSUPP;
1423 }
1424 to_dp = dp->cpu_dp;
1425 }
1426
1427 if (dp->ds != to_dp->ds) {
1428 NL_SET_ERR_MSG_MOD(extack,
1429 "Cross-chip mirroring not implemented");
1430 return -EOPNOTSUPP;
1431 }
1432
1433 mall_tc_entry = kzalloc_obj(*mall_tc_entry);
1434 if (!mall_tc_entry)
1435 return -ENOMEM;
1436
1437 mall_tc_entry->cookie = cls->cookie;
1438 mall_tc_entry->type = DSA_PORT_MALL_MIRROR;
1439 mirror = &mall_tc_entry->mirror;
1440 mirror->to_local_port = to_dp->index;
1441 mirror->ingress = ingress;
1442
1443 err = ds->ops->port_mirror_add(ds, dp->index, mirror, ingress, extack);
1444 if (err) {
1445 kfree(mall_tc_entry);
1446 return err;
1447 }
1448
1449 list_add_tail(&mall_tc_entry->list, &p->mall_tc_list);
1450
1451 return err;
1452 }
1453
1454 static int
dsa_user_add_cls_matchall_police(struct net_device * dev,struct tc_cls_matchall_offload * cls,bool ingress)1455 dsa_user_add_cls_matchall_police(struct net_device *dev,
1456 struct tc_cls_matchall_offload *cls,
1457 bool ingress)
1458 {
1459 struct netlink_ext_ack *extack = cls->common.extack;
1460 struct dsa_port *dp = dsa_user_to_port(dev);
1461 struct dsa_user_priv *p = netdev_priv(dev);
1462 struct dsa_mall_tc_entry *mall_tc_entry;
1463 struct flow_action_police *policer;
1464 struct dsa_switch *ds = dp->ds;
1465 struct flow_action_entry *act;
1466 int err;
1467
1468 if (!ds->ops->port_policer_add) {
1469 NL_SET_ERR_MSG_MOD(extack,
1470 "Policing offload not implemented");
1471 return -EOPNOTSUPP;
1472 }
1473
1474 if (!ingress) {
1475 NL_SET_ERR_MSG_MOD(extack,
1476 "Only supported on ingress qdisc");
1477 return -EOPNOTSUPP;
1478 }
1479
1480 if (!flow_action_basic_hw_stats_check(&cls->rule->action, extack))
1481 return -EOPNOTSUPP;
1482
1483 list_for_each_entry(mall_tc_entry, &p->mall_tc_list, list) {
1484 if (mall_tc_entry->type == DSA_PORT_MALL_POLICER) {
1485 NL_SET_ERR_MSG_MOD(extack,
1486 "Only one port policer allowed");
1487 return -EEXIST;
1488 }
1489 }
1490
1491 act = &cls->rule->action.entries[0];
1492
1493 mall_tc_entry = kzalloc_obj(*mall_tc_entry);
1494 if (!mall_tc_entry)
1495 return -ENOMEM;
1496
1497 mall_tc_entry->cookie = cls->cookie;
1498 mall_tc_entry->type = DSA_PORT_MALL_POLICER;
1499 policer = &mall_tc_entry->policer;
1500 *policer = act->police;
1501
1502 err = ds->ops->port_policer_add(ds, dp->index, policer);
1503 if (err) {
1504 kfree(mall_tc_entry);
1505 return err;
1506 }
1507
1508 list_add_tail(&mall_tc_entry->list, &p->mall_tc_list);
1509
1510 return err;
1511 }
1512
dsa_user_add_cls_matchall(struct net_device * dev,struct tc_cls_matchall_offload * cls,bool ingress)1513 static int dsa_user_add_cls_matchall(struct net_device *dev,
1514 struct tc_cls_matchall_offload *cls,
1515 bool ingress)
1516 {
1517 const struct flow_action *action = &cls->rule->action;
1518 struct netlink_ext_ack *extack = cls->common.extack;
1519
1520 if (!flow_offload_has_one_action(action)) {
1521 NL_SET_ERR_MSG_MOD(extack,
1522 "Cannot offload matchall filter with more than one action");
1523 return -EOPNOTSUPP;
1524 }
1525
1526 switch (action->entries[0].id) {
1527 case FLOW_ACTION_MIRRED:
1528 return dsa_user_add_cls_matchall_mirred(dev, cls, ingress,
1529 false);
1530 case FLOW_ACTION_MIRRED_INGRESS:
1531 return dsa_user_add_cls_matchall_mirred(dev, cls, ingress,
1532 true);
1533 case FLOW_ACTION_POLICE:
1534 return dsa_user_add_cls_matchall_police(dev, cls, ingress);
1535 default:
1536 NL_SET_ERR_MSG_MOD(extack, "Unknown action");
1537 break;
1538 }
1539
1540 return -EOPNOTSUPP;
1541 }
1542
dsa_user_del_cls_matchall(struct net_device * dev,struct tc_cls_matchall_offload * cls)1543 static void dsa_user_del_cls_matchall(struct net_device *dev,
1544 struct tc_cls_matchall_offload *cls)
1545 {
1546 struct dsa_port *dp = dsa_user_to_port(dev);
1547 struct dsa_mall_tc_entry *mall_tc_entry;
1548 struct dsa_switch *ds = dp->ds;
1549
1550 mall_tc_entry = dsa_user_mall_tc_entry_find(dev, cls->cookie);
1551 if (!mall_tc_entry)
1552 return;
1553
1554 list_del(&mall_tc_entry->list);
1555
1556 switch (mall_tc_entry->type) {
1557 case DSA_PORT_MALL_MIRROR:
1558 if (ds->ops->port_mirror_del)
1559 ds->ops->port_mirror_del(ds, dp->index,
1560 &mall_tc_entry->mirror);
1561 break;
1562 case DSA_PORT_MALL_POLICER:
1563 if (ds->ops->port_policer_del)
1564 ds->ops->port_policer_del(ds, dp->index);
1565 break;
1566 default:
1567 WARN_ON(1);
1568 }
1569
1570 kfree(mall_tc_entry);
1571 }
1572
dsa_user_setup_tc_cls_matchall(struct net_device * dev,struct tc_cls_matchall_offload * cls,bool ingress)1573 static int dsa_user_setup_tc_cls_matchall(struct net_device *dev,
1574 struct tc_cls_matchall_offload *cls,
1575 bool ingress)
1576 {
1577 if (cls->common.chain_index)
1578 return -EOPNOTSUPP;
1579
1580 switch (cls->command) {
1581 case TC_CLSMATCHALL_REPLACE:
1582 return dsa_user_add_cls_matchall(dev, cls, ingress);
1583 case TC_CLSMATCHALL_DESTROY:
1584 dsa_user_del_cls_matchall(dev, cls);
1585 return 0;
1586 default:
1587 return -EOPNOTSUPP;
1588 }
1589 }
1590
dsa_user_add_cls_flower(struct net_device * dev,struct flow_cls_offload * cls,bool ingress)1591 static int dsa_user_add_cls_flower(struct net_device *dev,
1592 struct flow_cls_offload *cls,
1593 bool ingress)
1594 {
1595 struct dsa_port *dp = dsa_user_to_port(dev);
1596 struct dsa_switch *ds = dp->ds;
1597 int port = dp->index;
1598
1599 if (!ds->ops->cls_flower_add)
1600 return -EOPNOTSUPP;
1601
1602 return ds->ops->cls_flower_add(ds, port, cls, ingress);
1603 }
1604
dsa_user_del_cls_flower(struct net_device * dev,struct flow_cls_offload * cls,bool ingress)1605 static int dsa_user_del_cls_flower(struct net_device *dev,
1606 struct flow_cls_offload *cls,
1607 bool ingress)
1608 {
1609 struct dsa_port *dp = dsa_user_to_port(dev);
1610 struct dsa_switch *ds = dp->ds;
1611 int port = dp->index;
1612
1613 if (!ds->ops->cls_flower_del)
1614 return -EOPNOTSUPP;
1615
1616 return ds->ops->cls_flower_del(ds, port, cls, ingress);
1617 }
1618
dsa_user_stats_cls_flower(struct net_device * dev,struct flow_cls_offload * cls,bool ingress)1619 static int dsa_user_stats_cls_flower(struct net_device *dev,
1620 struct flow_cls_offload *cls,
1621 bool ingress)
1622 {
1623 struct dsa_port *dp = dsa_user_to_port(dev);
1624 struct dsa_switch *ds = dp->ds;
1625 int port = dp->index;
1626
1627 if (!ds->ops->cls_flower_stats)
1628 return -EOPNOTSUPP;
1629
1630 return ds->ops->cls_flower_stats(ds, port, cls, ingress);
1631 }
1632
dsa_user_setup_tc_cls_flower(struct net_device * dev,struct flow_cls_offload * cls,bool ingress)1633 static int dsa_user_setup_tc_cls_flower(struct net_device *dev,
1634 struct flow_cls_offload *cls,
1635 bool ingress)
1636 {
1637 switch (cls->command) {
1638 case FLOW_CLS_REPLACE:
1639 return dsa_user_add_cls_flower(dev, cls, ingress);
1640 case FLOW_CLS_DESTROY:
1641 return dsa_user_del_cls_flower(dev, cls, ingress);
1642 case FLOW_CLS_STATS:
1643 return dsa_user_stats_cls_flower(dev, cls, ingress);
1644 default:
1645 return -EOPNOTSUPP;
1646 }
1647 }
1648
dsa_user_setup_tc_block_cb(enum tc_setup_type type,void * type_data,void * cb_priv,bool ingress)1649 static int dsa_user_setup_tc_block_cb(enum tc_setup_type type, void *type_data,
1650 void *cb_priv, bool ingress)
1651 {
1652 struct net_device *dev = cb_priv;
1653
1654 if (!tc_can_offload(dev))
1655 return -EOPNOTSUPP;
1656
1657 switch (type) {
1658 case TC_SETUP_CLSMATCHALL:
1659 return dsa_user_setup_tc_cls_matchall(dev, type_data, ingress);
1660 case TC_SETUP_CLSFLOWER:
1661 return dsa_user_setup_tc_cls_flower(dev, type_data, ingress);
1662 default:
1663 return -EOPNOTSUPP;
1664 }
1665 }
1666
dsa_user_setup_tc_block_cb_ig(enum tc_setup_type type,void * type_data,void * cb_priv)1667 static int dsa_user_setup_tc_block_cb_ig(enum tc_setup_type type,
1668 void *type_data, void *cb_priv)
1669 {
1670 return dsa_user_setup_tc_block_cb(type, type_data, cb_priv, true);
1671 }
1672
dsa_user_setup_tc_block_cb_eg(enum tc_setup_type type,void * type_data,void * cb_priv)1673 static int dsa_user_setup_tc_block_cb_eg(enum tc_setup_type type,
1674 void *type_data, void *cb_priv)
1675 {
1676 return dsa_user_setup_tc_block_cb(type, type_data, cb_priv, false);
1677 }
1678
1679 static LIST_HEAD(dsa_user_block_cb_list);
1680
dsa_user_setup_tc_block(struct net_device * dev,struct flow_block_offload * f)1681 static int dsa_user_setup_tc_block(struct net_device *dev,
1682 struct flow_block_offload *f)
1683 {
1684 struct flow_block_cb *block_cb;
1685 flow_setup_cb_t *cb;
1686
1687 if (f->binder_type == FLOW_BLOCK_BINDER_TYPE_CLSACT_INGRESS)
1688 cb = dsa_user_setup_tc_block_cb_ig;
1689 else if (f->binder_type == FLOW_BLOCK_BINDER_TYPE_CLSACT_EGRESS)
1690 cb = dsa_user_setup_tc_block_cb_eg;
1691 else
1692 return -EOPNOTSUPP;
1693
1694 f->driver_block_list = &dsa_user_block_cb_list;
1695
1696 switch (f->command) {
1697 case FLOW_BLOCK_BIND:
1698 if (flow_block_cb_is_busy(cb, dev, &dsa_user_block_cb_list))
1699 return -EBUSY;
1700
1701 block_cb = flow_block_cb_alloc(cb, dev, dev, NULL);
1702 if (IS_ERR(block_cb))
1703 return PTR_ERR(block_cb);
1704
1705 flow_block_cb_add(block_cb, f);
1706 list_add_tail(&block_cb->driver_list, &dsa_user_block_cb_list);
1707 return 0;
1708 case FLOW_BLOCK_UNBIND:
1709 block_cb = flow_block_cb_lookup(f->block, cb, dev);
1710 if (!block_cb)
1711 return -ENOENT;
1712
1713 flow_block_cb_remove(block_cb, f);
1714 list_del(&block_cb->driver_list);
1715 return 0;
1716 default:
1717 return -EOPNOTSUPP;
1718 }
1719 }
1720
dsa_user_setup_ft_block(struct dsa_switch * ds,int port,void * type_data)1721 static int dsa_user_setup_ft_block(struct dsa_switch *ds, int port,
1722 void *type_data)
1723 {
1724 struct net_device *conduit = dsa_port_to_conduit(dsa_to_port(ds, port));
1725
1726 if (!conduit->netdev_ops->ndo_setup_tc)
1727 return -EOPNOTSUPP;
1728
1729 return conduit->netdev_ops->ndo_setup_tc(conduit, TC_SETUP_FT, type_data);
1730 }
1731
dsa_user_setup_tc(struct net_device * dev,enum tc_setup_type type,void * type_data)1732 static int dsa_user_setup_tc(struct net_device *dev, enum tc_setup_type type,
1733 void *type_data)
1734 {
1735 struct dsa_port *dp = dsa_user_to_port(dev);
1736 struct dsa_switch *ds = dp->ds;
1737
1738 switch (type) {
1739 case TC_SETUP_BLOCK:
1740 return dsa_user_setup_tc_block(dev, type_data);
1741 case TC_SETUP_FT:
1742 return dsa_user_setup_ft_block(ds, dp->index, type_data);
1743 default:
1744 break;
1745 }
1746
1747 if (!ds->ops->port_setup_tc)
1748 return -EOPNOTSUPP;
1749
1750 return ds->ops->port_setup_tc(ds, dp->index, type, type_data);
1751 }
1752
dsa_user_get_rxnfc(struct net_device * dev,struct ethtool_rxnfc * nfc,u32 * rule_locs)1753 static int dsa_user_get_rxnfc(struct net_device *dev,
1754 struct ethtool_rxnfc *nfc, u32 *rule_locs)
1755 {
1756 struct dsa_port *dp = dsa_user_to_port(dev);
1757 struct dsa_switch *ds = dp->ds;
1758
1759 if (!ds->ops->get_rxnfc)
1760 return -EOPNOTSUPP;
1761
1762 return ds->ops->get_rxnfc(ds, dp->index, nfc, rule_locs);
1763 }
1764
dsa_user_set_rxnfc(struct net_device * dev,struct ethtool_rxnfc * nfc)1765 static int dsa_user_set_rxnfc(struct net_device *dev,
1766 struct ethtool_rxnfc *nfc)
1767 {
1768 struct dsa_port *dp = dsa_user_to_port(dev);
1769 struct dsa_switch *ds = dp->ds;
1770
1771 if (!ds->ops->set_rxnfc)
1772 return -EOPNOTSUPP;
1773
1774 return ds->ops->set_rxnfc(ds, dp->index, nfc);
1775 }
1776
dsa_user_get_ts_info(struct net_device * dev,struct kernel_ethtool_ts_info * ts)1777 static int dsa_user_get_ts_info(struct net_device *dev,
1778 struct kernel_ethtool_ts_info *ts)
1779 {
1780 struct dsa_user_priv *p = netdev_priv(dev);
1781 struct dsa_switch *ds = p->dp->ds;
1782
1783 if (!ds->ops->get_ts_info)
1784 return -EOPNOTSUPP;
1785
1786 return ds->ops->get_ts_info(ds, p->dp->index, ts);
1787 }
1788
dsa_user_vlan_rx_add_vid(struct net_device * dev,__be16 proto,u16 vid)1789 static int dsa_user_vlan_rx_add_vid(struct net_device *dev, __be16 proto,
1790 u16 vid)
1791 {
1792 struct dsa_port *dp = dsa_user_to_port(dev);
1793 struct switchdev_obj_port_vlan vlan = {
1794 .obj.id = SWITCHDEV_OBJ_ID_PORT_VLAN,
1795 .vid = vid,
1796 /* This API only allows programming tagged, non-PVID VIDs */
1797 .flags = 0,
1798 };
1799 struct netlink_ext_ack extack = {0};
1800 struct dsa_switch *ds = dp->ds;
1801 struct netdev_hw_addr *ha;
1802 struct dsa_vlan *v;
1803 int ret;
1804
1805 /* User port... */
1806 ret = dsa_port_vlan_add(dp, &vlan, &extack);
1807 if (ret) {
1808 if (extack._msg)
1809 netdev_err(dev, "%s\n", extack._msg);
1810 return ret;
1811 }
1812
1813 /* And CPU port... */
1814 ret = dsa_port_host_vlan_add(dp, &vlan, &extack);
1815 if (ret) {
1816 if (extack._msg)
1817 netdev_err(dev, "CPU port %d: %s\n", dp->cpu_dp->index,
1818 extack._msg);
1819 return ret;
1820 }
1821
1822 if (!dsa_switch_supports_uc_filtering(ds) &&
1823 !dsa_switch_supports_mc_filtering(ds))
1824 return 0;
1825
1826 v = kzalloc_obj(*v);
1827 if (!v) {
1828 ret = -ENOMEM;
1829 goto rollback;
1830 }
1831
1832 netif_addr_lock_bh(dev);
1833
1834 v->vid = vid;
1835 list_add_tail(&v->list, &dp->user_vlans);
1836
1837 if (dsa_switch_supports_mc_filtering(ds)) {
1838 netdev_for_each_synced_mc_addr(ha, dev) {
1839 dsa_user_schedule_standalone_work(dev, DSA_MC_ADD,
1840 ha->addr, vid);
1841 }
1842 }
1843
1844 if (dsa_switch_supports_uc_filtering(ds)) {
1845 netdev_for_each_synced_uc_addr(ha, dev) {
1846 dsa_user_schedule_standalone_work(dev, DSA_UC_ADD,
1847 ha->addr, vid);
1848 }
1849 }
1850
1851 netif_addr_unlock_bh(dev);
1852
1853 dsa_flush_workqueue();
1854
1855 return 0;
1856
1857 rollback:
1858 dsa_port_host_vlan_del(dp, &vlan);
1859 dsa_port_vlan_del(dp, &vlan);
1860
1861 return ret;
1862 }
1863
dsa_user_vlan_rx_kill_vid(struct net_device * dev,__be16 proto,u16 vid)1864 static int dsa_user_vlan_rx_kill_vid(struct net_device *dev, __be16 proto,
1865 u16 vid)
1866 {
1867 struct dsa_port *dp = dsa_user_to_port(dev);
1868 struct switchdev_obj_port_vlan vlan = {
1869 .vid = vid,
1870 /* This API only allows programming tagged, non-PVID VIDs */
1871 .flags = 0,
1872 };
1873 struct dsa_switch *ds = dp->ds;
1874 struct netdev_hw_addr *ha;
1875 struct dsa_vlan *v;
1876 int err;
1877
1878 err = dsa_port_vlan_del(dp, &vlan);
1879 if (err)
1880 return err;
1881
1882 err = dsa_port_host_vlan_del(dp, &vlan);
1883 if (err)
1884 return err;
1885
1886 if (!dsa_switch_supports_uc_filtering(ds) &&
1887 !dsa_switch_supports_mc_filtering(ds))
1888 return 0;
1889
1890 netif_addr_lock_bh(dev);
1891
1892 v = dsa_vlan_find(&dp->user_vlans, &vlan);
1893 if (!v) {
1894 netif_addr_unlock_bh(dev);
1895 return -ENOENT;
1896 }
1897
1898 list_del(&v->list);
1899 kfree(v);
1900
1901 if (dsa_switch_supports_mc_filtering(ds)) {
1902 netdev_for_each_synced_mc_addr(ha, dev) {
1903 dsa_user_schedule_standalone_work(dev, DSA_MC_DEL,
1904 ha->addr, vid);
1905 }
1906 }
1907
1908 if (dsa_switch_supports_uc_filtering(ds)) {
1909 netdev_for_each_synced_uc_addr(ha, dev) {
1910 dsa_user_schedule_standalone_work(dev, DSA_UC_DEL,
1911 ha->addr, vid);
1912 }
1913 }
1914
1915 netif_addr_unlock_bh(dev);
1916
1917 dsa_flush_workqueue();
1918
1919 return 0;
1920 }
1921
dsa_user_restore_vlan(struct net_device * vdev,int vid,void * arg)1922 static int dsa_user_restore_vlan(struct net_device *vdev, int vid, void *arg)
1923 {
1924 __be16 proto = vdev ? vlan_dev_vlan_proto(vdev) : htons(ETH_P_8021Q);
1925
1926 return dsa_user_vlan_rx_add_vid(arg, proto, vid);
1927 }
1928
dsa_user_clear_vlan(struct net_device * vdev,int vid,void * arg)1929 static int dsa_user_clear_vlan(struct net_device *vdev, int vid, void *arg)
1930 {
1931 __be16 proto = vdev ? vlan_dev_vlan_proto(vdev) : htons(ETH_P_8021Q);
1932
1933 return dsa_user_vlan_rx_kill_vid(arg, proto, vid);
1934 }
1935
1936 /* Keep the VLAN RX filtering list in sync with the hardware only if VLAN
1937 * filtering is enabled. The baseline is that only ports that offload a
1938 * VLAN-aware bridge are VLAN-aware, and standalone ports are VLAN-unaware,
1939 * but there are exceptions for quirky hardware.
1940 *
1941 * If ds->vlan_filtering_is_global = true, then standalone ports which share
1942 * the same switch with other ports that offload a VLAN-aware bridge are also
1943 * inevitably VLAN-aware.
1944 *
1945 * To summarize, a DSA switch port offloads:
1946 *
1947 * - If standalone (this includes software bridge, software LAG):
1948 * - if ds->needs_standalone_vlan_filtering = true, OR if
1949 * (ds->vlan_filtering_is_global = true AND there are bridges spanning
1950 * this switch chip which have vlan_filtering=1)
1951 * - the 8021q upper VLANs
1952 * - else (standalone VLAN filtering is not needed, VLAN filtering is not
1953 * global, or it is, but no port is under a VLAN-aware bridge):
1954 * - no VLAN (any 8021q upper is a software VLAN)
1955 *
1956 * - If under a vlan_filtering=0 bridge which it offload:
1957 * - if ds->configure_vlan_while_not_filtering = true (default):
1958 * - the bridge VLANs. These VLANs are committed to hardware but inactive.
1959 * - else (deprecated):
1960 * - no VLAN. The bridge VLANs are not restored when VLAN awareness is
1961 * enabled, so this behavior is broken and discouraged.
1962 *
1963 * - If under a vlan_filtering=1 bridge which it offload:
1964 * - the bridge VLANs
1965 * - the 8021q upper VLANs
1966 */
dsa_user_manage_vlan_filtering(struct net_device * user,bool vlan_filtering)1967 int dsa_user_manage_vlan_filtering(struct net_device *user,
1968 bool vlan_filtering)
1969 {
1970 int err;
1971
1972 if (vlan_filtering) {
1973 user->features |= NETIF_F_HW_VLAN_CTAG_FILTER;
1974
1975 err = vlan_for_each(user, dsa_user_restore_vlan, user);
1976 if (err) {
1977 vlan_for_each(user, dsa_user_clear_vlan, user);
1978 user->features &= ~NETIF_F_HW_VLAN_CTAG_FILTER;
1979 return err;
1980 }
1981 } else {
1982 err = vlan_for_each(user, dsa_user_clear_vlan, user);
1983 if (err)
1984 return err;
1985
1986 user->features &= ~NETIF_F_HW_VLAN_CTAG_FILTER;
1987 }
1988
1989 return 0;
1990 }
1991
1992 struct dsa_hw_port {
1993 struct list_head list;
1994 struct net_device *dev;
1995 int old_mtu;
1996 };
1997
dsa_hw_port_list_set_mtu(struct list_head * hw_port_list,int mtu)1998 static int dsa_hw_port_list_set_mtu(struct list_head *hw_port_list, int mtu)
1999 {
2000 const struct dsa_hw_port *p;
2001 int err;
2002
2003 list_for_each_entry(p, hw_port_list, list) {
2004 if (p->dev->mtu == mtu)
2005 continue;
2006
2007 err = dev_set_mtu(p->dev, mtu);
2008 if (err)
2009 goto rollback;
2010 }
2011
2012 return 0;
2013
2014 rollback:
2015 list_for_each_entry_continue_reverse(p, hw_port_list, list) {
2016 if (p->dev->mtu == p->old_mtu)
2017 continue;
2018
2019 if (dev_set_mtu(p->dev, p->old_mtu))
2020 netdev_err(p->dev, "Failed to restore MTU\n");
2021 }
2022
2023 return err;
2024 }
2025
dsa_hw_port_list_free(struct list_head * hw_port_list)2026 static void dsa_hw_port_list_free(struct list_head *hw_port_list)
2027 {
2028 struct dsa_hw_port *p, *n;
2029
2030 list_for_each_entry_safe(p, n, hw_port_list, list)
2031 kfree(p);
2032 }
2033
2034 /* Make the hardware datapath to/from @dev limited to a common MTU */
dsa_bridge_mtu_normalization(struct dsa_port * dp)2035 static void dsa_bridge_mtu_normalization(struct dsa_port *dp)
2036 {
2037 struct list_head hw_port_list;
2038 struct dsa_switch_tree *dst;
2039 int min_mtu = ETH_MAX_MTU;
2040 struct dsa_port *other_dp;
2041 int err;
2042
2043 if (!dp->ds->mtu_enforcement_ingress)
2044 return;
2045
2046 if (!dp->bridge)
2047 return;
2048
2049 INIT_LIST_HEAD(&hw_port_list);
2050
2051 /* Populate the list of ports that are part of the same bridge
2052 * as the newly added/modified port
2053 */
2054 list_for_each_entry(dst, &dsa_tree_list, list) {
2055 list_for_each_entry(other_dp, &dst->ports, list) {
2056 struct dsa_hw_port *hw_port;
2057 struct net_device *user;
2058
2059 if (other_dp->type != DSA_PORT_TYPE_USER)
2060 continue;
2061
2062 if (!dsa_port_bridge_same(dp, other_dp))
2063 continue;
2064
2065 if (!other_dp->ds->mtu_enforcement_ingress)
2066 continue;
2067
2068 user = other_dp->user;
2069
2070 if (min_mtu > user->mtu)
2071 min_mtu = user->mtu;
2072
2073 hw_port = kzalloc_obj(*hw_port);
2074 if (!hw_port)
2075 goto out;
2076
2077 hw_port->dev = user;
2078 hw_port->old_mtu = user->mtu;
2079
2080 list_add(&hw_port->list, &hw_port_list);
2081 }
2082 }
2083
2084 /* Attempt to configure the entire hardware bridge to the newly added
2085 * interface's MTU first, regardless of whether the intention of the
2086 * user was to raise or lower it.
2087 */
2088 err = dsa_hw_port_list_set_mtu(&hw_port_list, dp->user->mtu);
2089 if (!err)
2090 goto out;
2091
2092 /* Clearly that didn't work out so well, so just set the minimum MTU on
2093 * all hardware bridge ports now. If this fails too, then all ports will
2094 * still have their old MTU rolled back anyway.
2095 */
2096 dsa_hw_port_list_set_mtu(&hw_port_list, min_mtu);
2097
2098 out:
2099 dsa_hw_port_list_free(&hw_port_list);
2100 }
2101
dsa_user_change_mtu(struct net_device * dev,int new_mtu)2102 int dsa_user_change_mtu(struct net_device *dev, int new_mtu)
2103 {
2104 struct net_device *conduit = dsa_user_to_conduit(dev);
2105 struct dsa_port *dp = dsa_user_to_port(dev);
2106 struct dsa_port *cpu_dp = dp->cpu_dp;
2107 struct dsa_switch *ds = dp->ds;
2108 struct dsa_port *other_dp;
2109 int largest_mtu = 0;
2110 int new_conduit_mtu;
2111 int old_conduit_mtu;
2112 int mtu_limit;
2113 int overhead;
2114 int cpu_mtu;
2115 int err;
2116
2117 if (!ds->ops->port_change_mtu)
2118 return -EOPNOTSUPP;
2119
2120 dsa_tree_for_each_user_port(other_dp, ds->dst) {
2121 int user_mtu;
2122
2123 /* During probe, this function will be called for each user
2124 * device, while not all of them have been allocated. That's
2125 * ok, it doesn't change what the maximum is, so ignore it.
2126 */
2127 if (!other_dp->user)
2128 continue;
2129
2130 /* Pretend that we already applied the setting, which we
2131 * actually haven't (still haven't done all integrity checks)
2132 */
2133 if (dp == other_dp)
2134 user_mtu = new_mtu;
2135 else
2136 user_mtu = other_dp->user->mtu;
2137
2138 if (largest_mtu < user_mtu)
2139 largest_mtu = user_mtu;
2140 }
2141
2142 overhead = dsa_tag_protocol_overhead(cpu_dp->tag_ops);
2143 mtu_limit = min_t(int, conduit->max_mtu, dev->max_mtu + overhead);
2144 old_conduit_mtu = conduit->mtu;
2145 new_conduit_mtu = largest_mtu + overhead;
2146 if (new_conduit_mtu > mtu_limit)
2147 return -ERANGE;
2148
2149 /* If the conduit MTU isn't over limit, there's no need to check the CPU
2150 * MTU, since that surely isn't either.
2151 */
2152 cpu_mtu = largest_mtu;
2153
2154 /* Start applying stuff */
2155 if (new_conduit_mtu != old_conduit_mtu) {
2156 err = dev_set_mtu(conduit, new_conduit_mtu);
2157 if (err < 0)
2158 goto out_conduit_failed;
2159
2160 /* We only need to propagate the MTU of the CPU port to
2161 * upstream switches, so emit a notifier which updates them.
2162 */
2163 err = dsa_port_mtu_change(cpu_dp, cpu_mtu);
2164 if (err)
2165 goto out_cpu_failed;
2166 }
2167
2168 err = ds->ops->port_change_mtu(ds, dp->index, new_mtu);
2169 if (err)
2170 goto out_port_failed;
2171
2172 WRITE_ONCE(dev->mtu, new_mtu);
2173
2174 dsa_bridge_mtu_normalization(dp);
2175
2176 return 0;
2177
2178 out_port_failed:
2179 if (new_conduit_mtu != old_conduit_mtu)
2180 dsa_port_mtu_change(cpu_dp, old_conduit_mtu - overhead);
2181 out_cpu_failed:
2182 if (new_conduit_mtu != old_conduit_mtu)
2183 dev_set_mtu(conduit, old_conduit_mtu);
2184 out_conduit_failed:
2185 return err;
2186 }
2187
2188 static int __maybe_unused
dsa_user_dcbnl_set_apptrust(struct net_device * dev,u8 * sel,int nsel)2189 dsa_user_dcbnl_set_apptrust(struct net_device *dev, u8 *sel, int nsel)
2190 {
2191 struct dsa_port *dp = dsa_user_to_port(dev);
2192 struct dsa_switch *ds = dp->ds;
2193 int port = dp->index;
2194
2195 if (!ds->ops->port_set_apptrust)
2196 return -EOPNOTSUPP;
2197
2198 return ds->ops->port_set_apptrust(ds, port, sel, nsel);
2199 }
2200
2201 static int __maybe_unused
dsa_user_dcbnl_get_apptrust(struct net_device * dev,u8 * sel,int * nsel)2202 dsa_user_dcbnl_get_apptrust(struct net_device *dev, u8 *sel, int *nsel)
2203 {
2204 struct dsa_port *dp = dsa_user_to_port(dev);
2205 struct dsa_switch *ds = dp->ds;
2206 int port = dp->index;
2207
2208 if (!ds->ops->port_get_apptrust)
2209 return -EOPNOTSUPP;
2210
2211 return ds->ops->port_get_apptrust(ds, port, sel, nsel);
2212 }
2213
2214 static int __maybe_unused
dsa_user_dcbnl_set_default_prio(struct net_device * dev,struct dcb_app * app)2215 dsa_user_dcbnl_set_default_prio(struct net_device *dev, struct dcb_app *app)
2216 {
2217 struct dsa_port *dp = dsa_user_to_port(dev);
2218 struct dsa_switch *ds = dp->ds;
2219 unsigned long mask, new_prio;
2220 int err, port = dp->index;
2221
2222 if (!ds->ops->port_set_default_prio)
2223 return -EOPNOTSUPP;
2224
2225 err = dcb_ieee_setapp(dev, app);
2226 if (err)
2227 return err;
2228
2229 mask = dcb_ieee_getapp_mask(dev, app);
2230 new_prio = __fls(mask);
2231
2232 err = ds->ops->port_set_default_prio(ds, port, new_prio);
2233 if (err) {
2234 dcb_ieee_delapp(dev, app);
2235 return err;
2236 }
2237
2238 return 0;
2239 }
2240
2241 /* Update the DSCP prio entries on all user ports of the switch in case
2242 * the switch supports global DSCP prio instead of per port DSCP prios.
2243 */
dsa_user_dcbnl_ieee_global_dscp_setdel(struct net_device * dev,struct dcb_app * app,bool del)2244 static int dsa_user_dcbnl_ieee_global_dscp_setdel(struct net_device *dev,
2245 struct dcb_app *app, bool del)
2246 {
2247 int (*setdel)(struct net_device *dev, struct dcb_app *app);
2248 struct dsa_port *dp = dsa_user_to_port(dev);
2249 struct dsa_switch *ds = dp->ds;
2250 struct dsa_port *other_dp;
2251 int err, restore_err;
2252
2253 if (del)
2254 setdel = dcb_ieee_delapp;
2255 else
2256 setdel = dcb_ieee_setapp;
2257
2258 dsa_switch_for_each_user_port(other_dp, ds) {
2259 struct net_device *user = other_dp->user;
2260
2261 if (!user || user == dev)
2262 continue;
2263
2264 err = setdel(user, app);
2265 if (err)
2266 goto err_try_to_restore;
2267 }
2268
2269 return 0;
2270
2271 err_try_to_restore:
2272
2273 /* Revert logic to restore previous state of app entries */
2274 if (!del)
2275 setdel = dcb_ieee_delapp;
2276 else
2277 setdel = dcb_ieee_setapp;
2278
2279 dsa_switch_for_each_user_port_continue_reverse(other_dp, ds) {
2280 struct net_device *user = other_dp->user;
2281
2282 if (!user || user == dev)
2283 continue;
2284
2285 restore_err = setdel(user, app);
2286 if (restore_err)
2287 netdev_err(user, "Failed to restore DSCP prio entry configuration\n");
2288 }
2289
2290 return err;
2291 }
2292
2293 static int __maybe_unused
dsa_user_dcbnl_add_dscp_prio(struct net_device * dev,struct dcb_app * app)2294 dsa_user_dcbnl_add_dscp_prio(struct net_device *dev, struct dcb_app *app)
2295 {
2296 struct dsa_port *dp = dsa_user_to_port(dev);
2297 struct dsa_switch *ds = dp->ds;
2298 unsigned long mask, new_prio;
2299 int err, port = dp->index;
2300 u8 dscp = app->protocol;
2301
2302 if (!ds->ops->port_add_dscp_prio)
2303 return -EOPNOTSUPP;
2304
2305 if (dscp >= 64) {
2306 netdev_err(dev, "DSCP APP entry with protocol value %u is invalid\n",
2307 dscp);
2308 return -EINVAL;
2309 }
2310
2311 err = dcb_ieee_setapp(dev, app);
2312 if (err)
2313 return err;
2314
2315 mask = dcb_ieee_getapp_mask(dev, app);
2316 new_prio = __fls(mask);
2317
2318 err = ds->ops->port_add_dscp_prio(ds, port, dscp, new_prio);
2319 if (err) {
2320 dcb_ieee_delapp(dev, app);
2321 return err;
2322 }
2323
2324 if (!ds->dscp_prio_mapping_is_global)
2325 return 0;
2326
2327 err = dsa_user_dcbnl_ieee_global_dscp_setdel(dev, app, false);
2328 if (err) {
2329 if (ds->ops->port_del_dscp_prio)
2330 ds->ops->port_del_dscp_prio(ds, port, dscp, new_prio);
2331 dcb_ieee_delapp(dev, app);
2332 return err;
2333 }
2334
2335 return 0;
2336 }
2337
dsa_user_dcbnl_ieee_setapp(struct net_device * dev,struct dcb_app * app)2338 static int __maybe_unused dsa_user_dcbnl_ieee_setapp(struct net_device *dev,
2339 struct dcb_app *app)
2340 {
2341 switch (app->selector) {
2342 case IEEE_8021QAZ_APP_SEL_ETHERTYPE:
2343 switch (app->protocol) {
2344 case 0:
2345 return dsa_user_dcbnl_set_default_prio(dev, app);
2346 default:
2347 return -EOPNOTSUPP;
2348 }
2349 break;
2350 case IEEE_8021QAZ_APP_SEL_DSCP:
2351 return dsa_user_dcbnl_add_dscp_prio(dev, app);
2352 default:
2353 return -EOPNOTSUPP;
2354 }
2355 }
2356
2357 static int __maybe_unused
dsa_user_dcbnl_del_default_prio(struct net_device * dev,struct dcb_app * app)2358 dsa_user_dcbnl_del_default_prio(struct net_device *dev, struct dcb_app *app)
2359 {
2360 struct dsa_port *dp = dsa_user_to_port(dev);
2361 struct dsa_switch *ds = dp->ds;
2362 unsigned long mask, new_prio;
2363 int err, port = dp->index;
2364
2365 if (!ds->ops->port_set_default_prio)
2366 return -EOPNOTSUPP;
2367
2368 err = dcb_ieee_delapp(dev, app);
2369 if (err)
2370 return err;
2371
2372 mask = dcb_ieee_getapp_mask(dev, app);
2373 new_prio = mask ? __fls(mask) : 0;
2374
2375 err = ds->ops->port_set_default_prio(ds, port, new_prio);
2376 if (err) {
2377 dcb_ieee_setapp(dev, app);
2378 return err;
2379 }
2380
2381 return 0;
2382 }
2383
2384 static int __maybe_unused
dsa_user_dcbnl_del_dscp_prio(struct net_device * dev,struct dcb_app * app)2385 dsa_user_dcbnl_del_dscp_prio(struct net_device *dev, struct dcb_app *app)
2386 {
2387 struct dsa_port *dp = dsa_user_to_port(dev);
2388 struct dsa_switch *ds = dp->ds;
2389 int err, port = dp->index;
2390 u8 dscp = app->protocol;
2391
2392 if (!ds->ops->port_del_dscp_prio)
2393 return -EOPNOTSUPP;
2394
2395 err = dcb_ieee_delapp(dev, app);
2396 if (err)
2397 return err;
2398
2399 err = ds->ops->port_del_dscp_prio(ds, port, dscp, app->priority);
2400 if (err) {
2401 dcb_ieee_setapp(dev, app);
2402 return err;
2403 }
2404
2405 if (!ds->dscp_prio_mapping_is_global)
2406 return 0;
2407
2408 err = dsa_user_dcbnl_ieee_global_dscp_setdel(dev, app, true);
2409 if (err) {
2410 if (ds->ops->port_add_dscp_prio)
2411 ds->ops->port_add_dscp_prio(ds, port, dscp,
2412 app->priority);
2413 dcb_ieee_setapp(dev, app);
2414 return err;
2415 }
2416
2417 return 0;
2418 }
2419
dsa_user_dcbnl_ieee_delapp(struct net_device * dev,struct dcb_app * app)2420 static int __maybe_unused dsa_user_dcbnl_ieee_delapp(struct net_device *dev,
2421 struct dcb_app *app)
2422 {
2423 switch (app->selector) {
2424 case IEEE_8021QAZ_APP_SEL_ETHERTYPE:
2425 switch (app->protocol) {
2426 case 0:
2427 return dsa_user_dcbnl_del_default_prio(dev, app);
2428 default:
2429 return -EOPNOTSUPP;
2430 }
2431 break;
2432 case IEEE_8021QAZ_APP_SEL_DSCP:
2433 return dsa_user_dcbnl_del_dscp_prio(dev, app);
2434 default:
2435 return -EOPNOTSUPP;
2436 }
2437 }
2438
2439 /* Pre-populate the DCB application priority table with the priorities
2440 * configured during switch setup, which we read from hardware here.
2441 */
dsa_user_dcbnl_init(struct net_device * dev)2442 static int dsa_user_dcbnl_init(struct net_device *dev)
2443 {
2444 struct dsa_port *dp = dsa_user_to_port(dev);
2445 struct dsa_switch *ds = dp->ds;
2446 int port = dp->index;
2447 int err;
2448
2449 if (ds->ops->port_get_default_prio) {
2450 int prio = ds->ops->port_get_default_prio(ds, port);
2451 struct dcb_app app = {
2452 .selector = IEEE_8021QAZ_APP_SEL_ETHERTYPE,
2453 .protocol = 0,
2454 .priority = prio,
2455 };
2456
2457 if (prio < 0)
2458 return prio;
2459
2460 err = dcb_ieee_setapp(dev, &app);
2461 if (err)
2462 return err;
2463 }
2464
2465 if (ds->ops->port_get_dscp_prio) {
2466 int protocol;
2467
2468 for (protocol = 0; protocol < 64; protocol++) {
2469 struct dcb_app app = {
2470 .selector = IEEE_8021QAZ_APP_SEL_DSCP,
2471 .protocol = protocol,
2472 };
2473 int prio;
2474
2475 prio = ds->ops->port_get_dscp_prio(ds, port, protocol);
2476 if (prio == -EOPNOTSUPP)
2477 continue;
2478 if (prio < 0)
2479 return prio;
2480
2481 app.priority = prio;
2482
2483 err = dcb_ieee_setapp(dev, &app);
2484 if (err)
2485 return err;
2486 }
2487 }
2488
2489 return 0;
2490 }
2491
2492 static const struct ethtool_ops dsa_user_ethtool_ops = {
2493 .get_drvinfo = dsa_user_get_drvinfo,
2494 .get_regs_len = dsa_user_get_regs_len,
2495 .get_regs = dsa_user_get_regs,
2496 .nway_reset = dsa_user_nway_reset,
2497 .get_link = ethtool_op_get_link,
2498 .get_eeprom_len = dsa_user_get_eeprom_len,
2499 .get_eeprom = dsa_user_get_eeprom,
2500 .set_eeprom = dsa_user_set_eeprom,
2501 .get_strings = dsa_user_get_strings,
2502 .get_ethtool_stats = dsa_user_get_ethtool_stats,
2503 .get_sset_count = dsa_user_get_sset_count,
2504 .get_eth_phy_stats = dsa_user_get_eth_phy_stats,
2505 .get_eth_mac_stats = dsa_user_get_eth_mac_stats,
2506 .get_eth_ctrl_stats = dsa_user_get_eth_ctrl_stats,
2507 .get_rmon_stats = dsa_user_get_rmon_stats,
2508 .get_ts_stats = dsa_user_get_ts_stats,
2509 .set_wol = dsa_user_set_wol,
2510 .get_wol = dsa_user_get_wol,
2511 .set_eee = dsa_user_set_eee,
2512 .get_eee = dsa_user_get_eee,
2513 .get_link_ksettings = dsa_user_get_link_ksettings,
2514 .set_link_ksettings = dsa_user_set_link_ksettings,
2515 .get_pause_stats = dsa_user_get_pause_stats,
2516 .get_pauseparam = dsa_user_get_pauseparam,
2517 .set_pauseparam = dsa_user_set_pauseparam,
2518 .get_rxnfc = dsa_user_get_rxnfc,
2519 .set_rxnfc = dsa_user_set_rxnfc,
2520 .get_ts_info = dsa_user_get_ts_info,
2521 .self_test = dsa_user_net_selftest,
2522 .get_mm = dsa_user_get_mm,
2523 .set_mm = dsa_user_set_mm,
2524 .get_mm_stats = dsa_user_get_mm_stats,
2525 };
2526
2527 static const struct dcbnl_rtnl_ops __maybe_unused dsa_user_dcbnl_ops = {
2528 .ieee_setapp = dsa_user_dcbnl_ieee_setapp,
2529 .ieee_delapp = dsa_user_dcbnl_ieee_delapp,
2530 .dcbnl_setapptrust = dsa_user_dcbnl_set_apptrust,
2531 .dcbnl_getapptrust = dsa_user_dcbnl_get_apptrust,
2532 };
2533
dsa_user_get_stats64(struct net_device * dev,struct rtnl_link_stats64 * s)2534 static void dsa_user_get_stats64(struct net_device *dev,
2535 struct rtnl_link_stats64 *s)
2536 {
2537 struct dsa_port *dp = dsa_user_to_port(dev);
2538 struct dsa_switch *ds = dp->ds;
2539
2540 if (ds->ops->get_stats64)
2541 ds->ops->get_stats64(ds, dp->index, s);
2542 else
2543 dev_get_tstats64(dev, s);
2544 }
2545
dsa_user_fill_forward_path(struct net_device_path_ctx * ctx,struct net_device_path * path)2546 static int dsa_user_fill_forward_path(struct net_device_path_ctx *ctx,
2547 struct net_device_path *path)
2548 {
2549 struct dsa_port *dp = dsa_user_to_port(ctx->dev);
2550 struct net_device *conduit = dsa_port_to_conduit(dp);
2551 struct dsa_port *cpu_dp = dp->cpu_dp;
2552
2553 path->dev = ctx->dev;
2554 path->type = DEV_PATH_DSA;
2555 path->dsa.proto = cpu_dp->tag_ops->proto;
2556 path->dsa.port = dp->index;
2557 ctx->dev = conduit;
2558
2559 return 0;
2560 }
2561
dsa_user_hwtstamp_get(struct net_device * dev,struct kernel_hwtstamp_config * cfg)2562 static int dsa_user_hwtstamp_get(struct net_device *dev,
2563 struct kernel_hwtstamp_config *cfg)
2564 {
2565 struct dsa_port *dp = dsa_user_to_port(dev);
2566 struct dsa_switch *ds = dp->ds;
2567
2568 if (!ds->ops->port_hwtstamp_get)
2569 return -EOPNOTSUPP;
2570
2571 return ds->ops->port_hwtstamp_get(ds, dp->index, cfg);
2572 }
2573
dsa_user_hwtstamp_set(struct net_device * dev,struct kernel_hwtstamp_config * cfg,struct netlink_ext_ack * extack)2574 static int dsa_user_hwtstamp_set(struct net_device *dev,
2575 struct kernel_hwtstamp_config *cfg,
2576 struct netlink_ext_ack *extack)
2577 {
2578 struct dsa_port *dp = dsa_user_to_port(dev);
2579 struct dsa_switch *ds = dp->ds;
2580
2581 if (!ds->ops->port_hwtstamp_set)
2582 return -EOPNOTSUPP;
2583
2584 return ds->ops->port_hwtstamp_set(ds, dp->index, cfg, extack);
2585 }
2586
2587 static const struct net_device_ops dsa_user_netdev_ops = {
2588 .ndo_open = dsa_user_open,
2589 .ndo_stop = dsa_user_close,
2590 .ndo_start_xmit = dsa_user_xmit,
2591 .ndo_change_rx_flags = dsa_user_change_rx_flags,
2592 .ndo_set_rx_mode = dsa_user_set_rx_mode,
2593 .ndo_set_mac_address = dsa_user_set_mac_address,
2594 .ndo_fdb_dump = dsa_user_fdb_dump,
2595 .ndo_eth_ioctl = dsa_user_ioctl,
2596 .ndo_get_iflink = dsa_user_get_iflink,
2597 #ifdef CONFIG_NET_POLL_CONTROLLER
2598 .ndo_netpoll_setup = dsa_user_netpoll_setup,
2599 .ndo_netpoll_cleanup = dsa_user_netpoll_cleanup,
2600 .ndo_poll_controller = dsa_user_poll_controller,
2601 #endif
2602 .ndo_setup_tc = dsa_user_setup_tc,
2603 .ndo_get_stats64 = dsa_user_get_stats64,
2604 .ndo_vlan_rx_add_vid = dsa_user_vlan_rx_add_vid,
2605 .ndo_vlan_rx_kill_vid = dsa_user_vlan_rx_kill_vid,
2606 .ndo_change_mtu = dsa_user_change_mtu,
2607 .ndo_fill_forward_path = dsa_user_fill_forward_path,
2608 .ndo_hwtstamp_get = dsa_user_hwtstamp_get,
2609 .ndo_hwtstamp_set = dsa_user_hwtstamp_set,
2610 };
2611
2612 static const struct device_type dsa_type = {
2613 .name = "dsa",
2614 };
2615
dsa_port_phylink_mac_change(struct dsa_switch * ds,int port,bool up)2616 void dsa_port_phylink_mac_change(struct dsa_switch *ds, int port, bool up)
2617 {
2618 const struct dsa_port *dp = dsa_to_port(ds, port);
2619
2620 if (dp->pl)
2621 phylink_mac_change(dp->pl, up);
2622 }
2623 EXPORT_SYMBOL_GPL(dsa_port_phylink_mac_change);
2624
dsa_user_phylink_fixed_state(struct phylink_config * config,struct phylink_link_state * state)2625 static void dsa_user_phylink_fixed_state(struct phylink_config *config,
2626 struct phylink_link_state *state)
2627 {
2628 struct dsa_port *dp = dsa_phylink_to_port(config);
2629 struct dsa_switch *ds = dp->ds;
2630
2631 /* No need to check that this operation is valid, the callback would
2632 * not be called if it was not.
2633 */
2634 ds->ops->phylink_fixed_state(ds, dp->index, state);
2635 }
2636
2637 /* user device setup *******************************************************/
dsa_user_phy_connect(struct net_device * user_dev,int addr,u32 flags)2638 static int dsa_user_phy_connect(struct net_device *user_dev, int addr,
2639 u32 flags)
2640 {
2641 struct dsa_port *dp = dsa_user_to_port(user_dev);
2642 struct dsa_switch *ds = dp->ds;
2643
2644 user_dev->phydev = mdiobus_get_phy(ds->user_mii_bus, addr);
2645 if (!user_dev->phydev) {
2646 netdev_err(user_dev, "no phy at %d\n", addr);
2647 return -ENODEV;
2648 }
2649
2650 user_dev->phydev->dev_flags |= flags;
2651
2652 return phylink_connect_phy(dp->pl, user_dev->phydev);
2653 }
2654
dsa_user_phy_setup(struct net_device * user_dev)2655 static int dsa_user_phy_setup(struct net_device *user_dev)
2656 {
2657 struct dsa_port *dp = dsa_user_to_port(user_dev);
2658 struct device_node *port_dn = dp->dn;
2659 struct dsa_switch *ds = dp->ds;
2660 u32 phy_flags = 0;
2661 int ret;
2662
2663 dp->pl_config.dev = &user_dev->dev;
2664 dp->pl_config.type = PHYLINK_NETDEV;
2665
2666 /* The get_fixed_state callback takes precedence over polling the
2667 * link GPIO in PHYLINK (see phylink_get_fixed_state). Only set
2668 * this if the switch provides such a callback.
2669 */
2670 if (ds->ops->phylink_fixed_state) {
2671 dp->pl_config.get_fixed_state = dsa_user_phylink_fixed_state;
2672 dp->pl_config.poll_fixed_state = true;
2673 }
2674
2675 ret = dsa_port_phylink_create(dp);
2676 if (ret)
2677 return ret;
2678
2679 if (ds->ops->get_phy_flags)
2680 phy_flags = ds->ops->get_phy_flags(ds, dp->index);
2681
2682 ret = phylink_of_phy_connect(dp->pl, port_dn, phy_flags);
2683 if (ret == -ENODEV && ds->user_mii_bus) {
2684 /* We could not connect to a designated PHY or SFP, so try to
2685 * use the switch internal MDIO bus instead
2686 */
2687 ret = dsa_user_phy_connect(user_dev, dp->index, phy_flags);
2688 }
2689 if (ret) {
2690 netdev_err(user_dev, "failed to connect to PHY: %pe\n",
2691 ERR_PTR(ret));
2692 dsa_port_phylink_destroy(dp);
2693 }
2694
2695 return ret;
2696 }
2697
dsa_user_setup_tagger(struct net_device * user)2698 void dsa_user_setup_tagger(struct net_device *user)
2699 {
2700 struct dsa_port *dp = dsa_user_to_port(user);
2701 struct net_device *conduit = dsa_port_to_conduit(dp);
2702 struct dsa_user_priv *p = netdev_priv(user);
2703 const struct dsa_port *cpu_dp = dp->cpu_dp;
2704 const struct dsa_switch *ds = dp->ds;
2705
2706 user->needed_headroom = cpu_dp->tag_ops->needed_headroom;
2707 user->needed_tailroom = cpu_dp->tag_ops->needed_tailroom;
2708 /* Try to save one extra realloc later in the TX path (in the conduit)
2709 * by also inheriting the conduit's needed headroom and tailroom.
2710 * The 8021q driver also does this.
2711 */
2712 user->needed_headroom += conduit->needed_headroom;
2713 user->needed_tailroom += conduit->needed_tailroom;
2714
2715 p->xmit = cpu_dp->tag_ops->xmit;
2716
2717 user->features = conduit->vlan_features | NETIF_F_HW_TC;
2718 user->hw_features |= NETIF_F_HW_TC;
2719 if (user->needed_tailroom)
2720 user->features &= ~(NETIF_F_SG | NETIF_F_FRAGLIST);
2721 if (ds->needs_standalone_vlan_filtering)
2722 user->features |= NETIF_F_HW_VLAN_CTAG_FILTER;
2723
2724 user->lltx = true;
2725 }
2726
dsa_user_suspend(struct net_device * user_dev)2727 int dsa_user_suspend(struct net_device *user_dev)
2728 {
2729 struct dsa_port *dp = dsa_user_to_port(user_dev);
2730
2731 if (!netif_running(user_dev))
2732 return 0;
2733
2734 netif_device_detach(user_dev);
2735
2736 rtnl_lock();
2737 phylink_stop(dp->pl);
2738 rtnl_unlock();
2739
2740 return 0;
2741 }
2742
dsa_user_resume(struct net_device * user_dev)2743 int dsa_user_resume(struct net_device *user_dev)
2744 {
2745 struct dsa_port *dp = dsa_user_to_port(user_dev);
2746
2747 if (!netif_running(user_dev))
2748 return 0;
2749
2750 netif_device_attach(user_dev);
2751
2752 rtnl_lock();
2753 phylink_start(dp->pl);
2754 rtnl_unlock();
2755
2756 return 0;
2757 }
2758
dsa_user_create(struct dsa_port * port)2759 int dsa_user_create(struct dsa_port *port)
2760 {
2761 struct net_device *conduit = dsa_port_to_conduit(port);
2762 struct dsa_switch *ds = port->ds;
2763 struct net_device *user_dev;
2764 struct dsa_user_priv *p;
2765 const char *name;
2766 int assign_type;
2767 int ret;
2768
2769 if (!ds->num_tx_queues)
2770 ds->num_tx_queues = 1;
2771
2772 if (port->name) {
2773 name = port->name;
2774 assign_type = NET_NAME_PREDICTABLE;
2775 } else {
2776 name = "eth%d";
2777 assign_type = NET_NAME_ENUM;
2778 }
2779
2780 user_dev = alloc_netdev_mqs(sizeof(struct dsa_user_priv), name,
2781 assign_type, ether_setup,
2782 ds->num_tx_queues, 1);
2783 if (user_dev == NULL)
2784 return -ENOMEM;
2785
2786 user_dev->rtnl_link_ops = &dsa_link_ops;
2787 user_dev->ethtool_ops = &dsa_user_ethtool_ops;
2788 #if IS_ENABLED(CONFIG_DCB)
2789 user_dev->dcbnl_ops = &dsa_user_dcbnl_ops;
2790 #endif
2791 if (!is_zero_ether_addr(port->mac))
2792 eth_hw_addr_set(user_dev, port->mac);
2793 else
2794 eth_hw_addr_inherit(user_dev, conduit);
2795 user_dev->priv_flags |= IFF_NO_QUEUE;
2796 if (dsa_switch_supports_uc_filtering(ds))
2797 user_dev->priv_flags |= IFF_UNICAST_FLT;
2798 user_dev->netdev_ops = &dsa_user_netdev_ops;
2799 if (ds->ops->port_max_mtu)
2800 user_dev->max_mtu = ds->ops->port_max_mtu(ds, port->index);
2801 SET_NETDEV_DEVTYPE(user_dev, &dsa_type);
2802
2803 SET_NETDEV_DEV(user_dev, port->ds->dev);
2804 SET_NETDEV_DEVLINK_PORT(user_dev, &port->devlink_port);
2805 user_dev->dev.of_node = port->dn;
2806 user_dev->vlan_features = conduit->vlan_features;
2807
2808 p = netdev_priv(user_dev);
2809 user_dev->pcpu_stat_type = NETDEV_PCPU_STAT_TSTATS;
2810
2811 ret = gro_cells_init(&p->gcells, user_dev);
2812 if (ret)
2813 goto out_free;
2814
2815 p->dp = port;
2816 INIT_LIST_HEAD(&p->mall_tc_list);
2817 port->user = user_dev;
2818 dsa_user_setup_tagger(user_dev);
2819
2820 netif_carrier_off(user_dev);
2821
2822 ret = dsa_user_phy_setup(user_dev);
2823 if (ret) {
2824 netdev_err(user_dev,
2825 "error %d setting up PHY for tree %d, switch %d, port %d\n",
2826 ret, ds->dst->index, ds->index, port->index);
2827 goto out_gcells;
2828 }
2829
2830 rtnl_lock();
2831
2832 ret = dsa_user_change_mtu(user_dev, ETH_DATA_LEN);
2833 if (ret && ret != -EOPNOTSUPP)
2834 dev_warn(ds->dev, "nonfatal error %d setting MTU to %d on port %d\n",
2835 ret, ETH_DATA_LEN, port->index);
2836
2837 ret = register_netdevice(user_dev);
2838 if (ret) {
2839 netdev_err(conduit, "error %d registering interface %s\n",
2840 ret, user_dev->name);
2841 rtnl_unlock();
2842 goto out_phy;
2843 }
2844
2845 if (IS_ENABLED(CONFIG_DCB)) {
2846 ret = dsa_user_dcbnl_init(user_dev);
2847 if (ret) {
2848 netdev_err(user_dev,
2849 "failed to initialize DCB: %pe\n",
2850 ERR_PTR(ret));
2851 rtnl_unlock();
2852 goto out_unregister;
2853 }
2854 }
2855
2856 ret = netdev_upper_dev_link(conduit, user_dev, NULL);
2857
2858 rtnl_unlock();
2859
2860 if (ret)
2861 goto out_unregister;
2862
2863 return 0;
2864
2865 out_unregister:
2866 unregister_netdev(user_dev);
2867 out_phy:
2868 rtnl_lock();
2869 phylink_disconnect_phy(p->dp->pl);
2870 rtnl_unlock();
2871 dsa_port_phylink_destroy(p->dp);
2872 out_gcells:
2873 gro_cells_destroy(&p->gcells);
2874 out_free:
2875 free_netdev(user_dev);
2876 port->user = NULL;
2877 return ret;
2878 }
2879
dsa_user_destroy(struct net_device * user_dev)2880 void dsa_user_destroy(struct net_device *user_dev)
2881 {
2882 struct net_device *conduit = dsa_user_to_conduit(user_dev);
2883 struct dsa_port *dp = dsa_user_to_port(user_dev);
2884 struct dsa_user_priv *p = netdev_priv(user_dev);
2885
2886 netif_carrier_off(user_dev);
2887 rtnl_lock();
2888 netdev_upper_dev_unlink(conduit, user_dev);
2889 unregister_netdevice(user_dev);
2890 phylink_disconnect_phy(dp->pl);
2891 rtnl_unlock();
2892
2893 dsa_port_phylink_destroy(dp);
2894 gro_cells_destroy(&p->gcells);
2895 free_netdev(user_dev);
2896 }
2897
dsa_user_change_conduit(struct net_device * dev,struct net_device * conduit,struct netlink_ext_ack * extack)2898 int dsa_user_change_conduit(struct net_device *dev, struct net_device *conduit,
2899 struct netlink_ext_ack *extack)
2900 {
2901 struct net_device *old_conduit = dsa_user_to_conduit(dev);
2902 struct dsa_port *dp = dsa_user_to_port(dev);
2903 struct dsa_switch *ds = dp->ds;
2904 struct net_device *upper;
2905 struct list_head *iter;
2906 int err;
2907
2908 if (conduit == old_conduit)
2909 return 0;
2910
2911 if (!ds->ops->port_change_conduit) {
2912 NL_SET_ERR_MSG_MOD(extack,
2913 "Driver does not support changing DSA conduit");
2914 return -EOPNOTSUPP;
2915 }
2916
2917 if (!netdev_uses_dsa(conduit)) {
2918 NL_SET_ERR_MSG_MOD(extack,
2919 "Interface not eligible as DSA conduit");
2920 return -EOPNOTSUPP;
2921 }
2922
2923 netdev_for_each_upper_dev_rcu(conduit, upper, iter) {
2924 if (dsa_user_dev_check(upper))
2925 continue;
2926 if (netif_is_bridge_master(upper))
2927 continue;
2928 NL_SET_ERR_MSG_MOD(extack, "Cannot join conduit with unknown uppers");
2929 return -EOPNOTSUPP;
2930 }
2931
2932 /* Since we allow live-changing the DSA conduit, plus we auto-open the
2933 * DSA conduit when the user port opens => we need to ensure that the
2934 * new DSA conduit is open too.
2935 */
2936 if (dev->flags & IFF_UP) {
2937 err = dev_open(conduit, extack);
2938 if (err)
2939 return err;
2940 }
2941
2942 netdev_upper_dev_unlink(old_conduit, dev);
2943
2944 err = netdev_upper_dev_link(conduit, dev, extack);
2945 if (err)
2946 goto out_revert_old_conduit_unlink;
2947
2948 err = dsa_port_change_conduit(dp, conduit, extack);
2949 if (err)
2950 goto out_revert_conduit_link;
2951
2952 /* Update the MTU of the new CPU port through cross-chip notifiers */
2953 err = dsa_user_change_mtu(dev, dev->mtu);
2954 if (err && err != -EOPNOTSUPP) {
2955 netdev_warn(dev,
2956 "nonfatal error updating MTU with new conduit: %pe\n",
2957 ERR_PTR(err));
2958 }
2959
2960 return 0;
2961
2962 out_revert_conduit_link:
2963 netdev_upper_dev_unlink(conduit, dev);
2964 out_revert_old_conduit_unlink:
2965 netdev_upper_dev_link(old_conduit, dev, NULL);
2966 return err;
2967 }
2968
dsa_user_dev_check(const struct net_device * dev)2969 bool dsa_user_dev_check(const struct net_device *dev)
2970 {
2971 return dev->netdev_ops == &dsa_user_netdev_ops;
2972 }
2973 EXPORT_SYMBOL_GPL(dsa_user_dev_check);
2974
dsa_user_changeupper(struct net_device * dev,struct netdev_notifier_changeupper_info * info)2975 static int dsa_user_changeupper(struct net_device *dev,
2976 struct netdev_notifier_changeupper_info *info)
2977 {
2978 struct netlink_ext_ack *extack;
2979 int err = NOTIFY_DONE;
2980 struct dsa_port *dp;
2981
2982 if (!dsa_user_dev_check(dev))
2983 return err;
2984
2985 dp = dsa_user_to_port(dev);
2986 extack = netdev_notifier_info_to_extack(&info->info);
2987
2988 if (netif_is_bridge_master(info->upper_dev)) {
2989 if (info->linking) {
2990 err = dsa_port_bridge_join(dp, info->upper_dev, extack);
2991 if (!err)
2992 dsa_bridge_mtu_normalization(dp);
2993 if (err == -EOPNOTSUPP) {
2994 NL_SET_ERR_MSG_WEAK_MOD(extack,
2995 "Offloading not supported");
2996 err = 0;
2997 }
2998 err = notifier_from_errno(err);
2999 } else {
3000 dsa_port_bridge_leave(dp, info->upper_dev);
3001 err = NOTIFY_OK;
3002 }
3003 } else if (netif_is_lag_master(info->upper_dev)) {
3004 if (info->linking) {
3005 err = dsa_port_lag_join(dp, info->upper_dev,
3006 info->upper_info, extack);
3007 if (err == -EOPNOTSUPP) {
3008 NL_SET_ERR_MSG_WEAK_MOD(extack,
3009 "Offloading not supported");
3010 err = 0;
3011 }
3012 err = notifier_from_errno(err);
3013 } else {
3014 dsa_port_lag_leave(dp, info->upper_dev);
3015 err = NOTIFY_OK;
3016 }
3017 } else if (is_hsr_master(info->upper_dev)) {
3018 if (info->linking) {
3019 err = dsa_port_hsr_join(dp, info->upper_dev, extack);
3020 if (err == -EOPNOTSUPP) {
3021 NL_SET_ERR_MSG_WEAK_MOD(extack,
3022 "Offloading not supported");
3023 err = 0;
3024 }
3025 err = notifier_from_errno(err);
3026 } else {
3027 dsa_port_hsr_leave(dp, info->upper_dev);
3028 err = NOTIFY_OK;
3029 }
3030 }
3031
3032 return err;
3033 }
3034
dsa_user_prechangeupper(struct net_device * dev,struct netdev_notifier_changeupper_info * info)3035 static int dsa_user_prechangeupper(struct net_device *dev,
3036 struct netdev_notifier_changeupper_info *info)
3037 {
3038 struct dsa_port *dp;
3039
3040 if (!dsa_user_dev_check(dev))
3041 return NOTIFY_DONE;
3042
3043 dp = dsa_user_to_port(dev);
3044
3045 if (netif_is_bridge_master(info->upper_dev) && !info->linking)
3046 dsa_port_pre_bridge_leave(dp, info->upper_dev);
3047 else if (netif_is_lag_master(info->upper_dev) && !info->linking)
3048 dsa_port_pre_lag_leave(dp, info->upper_dev);
3049 /* dsa_port_pre_hsr_leave is not yet necessary since hsr devices cannot
3050 * meaningfully placed under a bridge yet
3051 */
3052
3053 return NOTIFY_DONE;
3054 }
3055
3056 static int
dsa_user_lag_changeupper(struct net_device * dev,struct netdev_notifier_changeupper_info * info)3057 dsa_user_lag_changeupper(struct net_device *dev,
3058 struct netdev_notifier_changeupper_info *info)
3059 {
3060 struct net_device *lower;
3061 struct list_head *iter;
3062 int err = NOTIFY_DONE;
3063 struct dsa_port *dp;
3064
3065 if (!netif_is_lag_master(dev))
3066 return err;
3067
3068 netdev_for_each_lower_dev(dev, lower, iter) {
3069 if (!dsa_user_dev_check(lower))
3070 continue;
3071
3072 dp = dsa_user_to_port(lower);
3073 if (!dp->lag)
3074 /* Software LAG */
3075 continue;
3076
3077 err = dsa_user_changeupper(lower, info);
3078 if (notifier_to_errno(err))
3079 break;
3080 }
3081
3082 return err;
3083 }
3084
3085 /* Same as dsa_user_lag_changeupper() except that it calls
3086 * dsa_user_prechangeupper()
3087 */
3088 static int
dsa_user_lag_prechangeupper(struct net_device * dev,struct netdev_notifier_changeupper_info * info)3089 dsa_user_lag_prechangeupper(struct net_device *dev,
3090 struct netdev_notifier_changeupper_info *info)
3091 {
3092 struct net_device *lower;
3093 struct list_head *iter;
3094 int err = NOTIFY_DONE;
3095 struct dsa_port *dp;
3096
3097 if (!netif_is_lag_master(dev))
3098 return err;
3099
3100 netdev_for_each_lower_dev(dev, lower, iter) {
3101 if (!dsa_user_dev_check(lower))
3102 continue;
3103
3104 dp = dsa_user_to_port(lower);
3105 if (!dp->lag)
3106 /* Software LAG */
3107 continue;
3108
3109 err = dsa_user_prechangeupper(lower, info);
3110 if (notifier_to_errno(err))
3111 break;
3112 }
3113
3114 return err;
3115 }
3116
3117 static int
dsa_prevent_bridging_8021q_upper(struct net_device * dev,struct netdev_notifier_changeupper_info * info)3118 dsa_prevent_bridging_8021q_upper(struct net_device *dev,
3119 struct netdev_notifier_changeupper_info *info)
3120 {
3121 struct netlink_ext_ack *ext_ack;
3122 struct net_device *user, *br;
3123 struct dsa_port *dp;
3124
3125 ext_ack = netdev_notifier_info_to_extack(&info->info);
3126
3127 if (!is_vlan_dev(dev))
3128 return NOTIFY_DONE;
3129
3130 user = vlan_dev_real_dev(dev);
3131 if (!dsa_user_dev_check(user))
3132 return NOTIFY_DONE;
3133
3134 dp = dsa_user_to_port(user);
3135 br = dsa_port_bridge_dev_get(dp);
3136 if (!br)
3137 return NOTIFY_DONE;
3138
3139 /* Deny enslaving a VLAN device into a VLAN-aware bridge */
3140 if (br_vlan_enabled(br) &&
3141 netif_is_bridge_master(info->upper_dev) && info->linking) {
3142 NL_SET_ERR_MSG_MOD(ext_ack,
3143 "Cannot make VLAN device join VLAN-aware bridge");
3144 return notifier_from_errno(-EINVAL);
3145 }
3146
3147 return NOTIFY_DONE;
3148 }
3149
3150 static int
dsa_user_check_8021q_upper(struct net_device * dev,struct netdev_notifier_changeupper_info * info)3151 dsa_user_check_8021q_upper(struct net_device *dev,
3152 struct netdev_notifier_changeupper_info *info)
3153 {
3154 struct dsa_port *dp = dsa_user_to_port(dev);
3155 struct net_device *br = dsa_port_bridge_dev_get(dp);
3156 struct bridge_vlan_info br_info;
3157 struct netlink_ext_ack *extack;
3158 int err = NOTIFY_DONE;
3159 u16 vid;
3160
3161 if (!br || !br_vlan_enabled(br))
3162 return NOTIFY_DONE;
3163
3164 extack = netdev_notifier_info_to_extack(&info->info);
3165 vid = vlan_dev_vlan_id(info->upper_dev);
3166
3167 /* br_vlan_get_info() returns -EINVAL or -ENOENT if the
3168 * device, respectively the VID is not found, returning
3169 * 0 means success, which is a failure for us here.
3170 */
3171 err = br_vlan_get_info(br, vid, &br_info);
3172 if (err == 0) {
3173 NL_SET_ERR_MSG_MOD(extack,
3174 "This VLAN is already configured by the bridge");
3175 return notifier_from_errno(-EBUSY);
3176 }
3177
3178 return NOTIFY_DONE;
3179 }
3180
3181 static int
dsa_user_prechangeupper_sanity_check(struct net_device * dev,struct netdev_notifier_changeupper_info * info)3182 dsa_user_prechangeupper_sanity_check(struct net_device *dev,
3183 struct netdev_notifier_changeupper_info *info)
3184 {
3185 struct dsa_switch *ds;
3186 struct dsa_port *dp;
3187 int err;
3188
3189 if (!dsa_user_dev_check(dev))
3190 return dsa_prevent_bridging_8021q_upper(dev, info);
3191
3192 dp = dsa_user_to_port(dev);
3193 ds = dp->ds;
3194
3195 if (ds->ops->port_prechangeupper) {
3196 err = ds->ops->port_prechangeupper(ds, dp->index, info);
3197 if (err)
3198 return notifier_from_errno(err);
3199 }
3200
3201 if (is_vlan_dev(info->upper_dev))
3202 return dsa_user_check_8021q_upper(dev, info);
3203
3204 return NOTIFY_DONE;
3205 }
3206
3207 /* To be eligible as a DSA conduit, a LAG must have all lower interfaces be
3208 * eligible DSA conduits. Additionally, all LAG slaves must be DSA conduits of
3209 * switches in the same switch tree.
3210 */
dsa_lag_conduit_validate(struct net_device * lag_dev,struct netlink_ext_ack * extack)3211 static int dsa_lag_conduit_validate(struct net_device *lag_dev,
3212 struct netlink_ext_ack *extack)
3213 {
3214 struct net_device *lower1, *lower2;
3215 struct list_head *iter1, *iter2;
3216
3217 netdev_for_each_lower_dev(lag_dev, lower1, iter1) {
3218 netdev_for_each_lower_dev(lag_dev, lower2, iter2) {
3219 if (!netdev_uses_dsa(lower1) ||
3220 !netdev_uses_dsa(lower2)) {
3221 NL_SET_ERR_MSG_MOD(extack,
3222 "All LAG ports must be eligible as DSA conduits");
3223 return notifier_from_errno(-EINVAL);
3224 }
3225
3226 if (lower1 == lower2)
3227 continue;
3228
3229 if (!dsa_port_tree_same(lower1->dsa_ptr,
3230 lower2->dsa_ptr)) {
3231 NL_SET_ERR_MSG_MOD(extack,
3232 "LAG contains DSA conduits of disjoint switch trees");
3233 return notifier_from_errno(-EINVAL);
3234 }
3235 }
3236 }
3237
3238 return NOTIFY_DONE;
3239 }
3240
3241 static int
dsa_conduit_prechangeupper_sanity_check(struct net_device * conduit,struct netdev_notifier_changeupper_info * info)3242 dsa_conduit_prechangeupper_sanity_check(struct net_device *conduit,
3243 struct netdev_notifier_changeupper_info *info)
3244 {
3245 struct netlink_ext_ack *extack = netdev_notifier_info_to_extack(&info->info);
3246
3247 if (!netdev_uses_dsa(conduit))
3248 return NOTIFY_DONE;
3249
3250 if (!info->linking)
3251 return NOTIFY_DONE;
3252
3253 /* Allow DSA switch uppers */
3254 if (dsa_user_dev_check(info->upper_dev))
3255 return NOTIFY_DONE;
3256
3257 /* Allow bridge uppers of DSA conduits, subject to further
3258 * restrictions in dsa_bridge_prechangelower_sanity_check()
3259 */
3260 if (netif_is_bridge_master(info->upper_dev))
3261 return NOTIFY_DONE;
3262
3263 /* Allow LAG uppers, subject to further restrictions in
3264 * dsa_lag_conduit_prechangelower_sanity_check()
3265 */
3266 if (netif_is_lag_master(info->upper_dev))
3267 return dsa_lag_conduit_validate(info->upper_dev, extack);
3268
3269 NL_SET_ERR_MSG_MOD(extack,
3270 "DSA conduit cannot join unknown upper interfaces");
3271 return notifier_from_errno(-EBUSY);
3272 }
3273
3274 static int
dsa_lag_conduit_prechangelower_sanity_check(struct net_device * dev,struct netdev_notifier_changeupper_info * info)3275 dsa_lag_conduit_prechangelower_sanity_check(struct net_device *dev,
3276 struct netdev_notifier_changeupper_info *info)
3277 {
3278 struct netlink_ext_ack *extack = netdev_notifier_info_to_extack(&info->info);
3279 struct net_device *lag_dev = info->upper_dev;
3280 struct net_device *lower;
3281 struct list_head *iter;
3282
3283 if (!netdev_uses_dsa(lag_dev) || !netif_is_lag_master(lag_dev))
3284 return NOTIFY_DONE;
3285
3286 if (!info->linking)
3287 return NOTIFY_DONE;
3288
3289 if (!netdev_uses_dsa(dev)) {
3290 NL_SET_ERR_MSG(extack,
3291 "Only DSA conduits can join a LAG DSA conduit");
3292 return notifier_from_errno(-EINVAL);
3293 }
3294
3295 netdev_for_each_lower_dev(lag_dev, lower, iter) {
3296 if (!dsa_port_tree_same(dev->dsa_ptr, lower->dsa_ptr)) {
3297 NL_SET_ERR_MSG(extack,
3298 "Interface is DSA conduit for a different switch tree than this LAG");
3299 return notifier_from_errno(-EINVAL);
3300 }
3301
3302 break;
3303 }
3304
3305 return NOTIFY_DONE;
3306 }
3307
3308 /* Don't allow bridging of DSA conduits, since the bridge layer rx_handler
3309 * prevents the DSA fake ethertype handler to be invoked, so we don't get the
3310 * chance to strip off and parse the DSA switch tag protocol header (the bridge
3311 * layer just returns RX_HANDLER_CONSUMED, stopping RX processing for these
3312 * frames).
3313 * The only case where that would not be an issue is when bridging can already
3314 * be offloaded, such as when the DSA conduit is itself a DSA or plain switchdev
3315 * port, and is bridged only with other ports from the same hardware device.
3316 */
3317 static int
dsa_bridge_prechangelower_sanity_check(struct net_device * new_lower,struct netdev_notifier_changeupper_info * info)3318 dsa_bridge_prechangelower_sanity_check(struct net_device *new_lower,
3319 struct netdev_notifier_changeupper_info *info)
3320 {
3321 struct net_device *br = info->upper_dev;
3322 struct netlink_ext_ack *extack;
3323 struct net_device *lower;
3324 struct list_head *iter;
3325
3326 if (!netif_is_bridge_master(br))
3327 return NOTIFY_DONE;
3328
3329 if (!info->linking)
3330 return NOTIFY_DONE;
3331
3332 extack = netdev_notifier_info_to_extack(&info->info);
3333
3334 netdev_for_each_lower_dev(br, lower, iter) {
3335 if (!netdev_uses_dsa(new_lower) && !netdev_uses_dsa(lower))
3336 continue;
3337
3338 if (!netdev_port_same_parent_id(lower, new_lower)) {
3339 NL_SET_ERR_MSG(extack,
3340 "Cannot do software bridging with a DSA conduit");
3341 return notifier_from_errno(-EINVAL);
3342 }
3343 }
3344
3345 return NOTIFY_DONE;
3346 }
3347
dsa_tree_migrate_ports_from_lag_conduit(struct dsa_switch_tree * dst,struct net_device * lag_dev)3348 static void dsa_tree_migrate_ports_from_lag_conduit(struct dsa_switch_tree *dst,
3349 struct net_device *lag_dev)
3350 {
3351 struct net_device *new_conduit = dsa_tree_find_first_conduit(dst);
3352 struct dsa_port *dp;
3353 int err;
3354
3355 dsa_tree_for_each_user_port(dp, dst) {
3356 if (dsa_port_to_conduit(dp) != lag_dev)
3357 continue;
3358
3359 err = dsa_user_change_conduit(dp->user, new_conduit, NULL);
3360 if (err) {
3361 netdev_err(dp->user,
3362 "failed to restore conduit to %s: %pe\n",
3363 new_conduit->name, ERR_PTR(err));
3364 }
3365 }
3366 }
3367
dsa_conduit_lag_join(struct net_device * conduit,struct net_device * lag_dev,struct netdev_lag_upper_info * uinfo,struct netlink_ext_ack * extack)3368 static int dsa_conduit_lag_join(struct net_device *conduit,
3369 struct net_device *lag_dev,
3370 struct netdev_lag_upper_info *uinfo,
3371 struct netlink_ext_ack *extack)
3372 {
3373 struct dsa_port *cpu_dp = conduit->dsa_ptr;
3374 struct dsa_switch_tree *dst = cpu_dp->dst;
3375 struct dsa_port *dp;
3376 int err;
3377
3378 err = dsa_conduit_lag_setup(lag_dev, cpu_dp, uinfo, extack);
3379 if (err)
3380 return err;
3381
3382 dsa_tree_for_each_user_port(dp, dst) {
3383 if (dsa_port_to_conduit(dp) != conduit)
3384 continue;
3385
3386 err = dsa_user_change_conduit(dp->user, lag_dev, extack);
3387 if (err)
3388 goto restore;
3389 }
3390
3391 return 0;
3392
3393 restore:
3394 dsa_tree_for_each_user_port_continue_reverse(dp, dst) {
3395 if (dsa_port_to_conduit(dp) != lag_dev)
3396 continue;
3397
3398 err = dsa_user_change_conduit(dp->user, conduit, NULL);
3399 if (err) {
3400 netdev_err(dp->user,
3401 "failed to restore conduit to %s: %pe\n",
3402 conduit->name, ERR_PTR(err));
3403 }
3404 }
3405
3406 dsa_conduit_lag_teardown(lag_dev, conduit->dsa_ptr);
3407
3408 return err;
3409 }
3410
dsa_conduit_lag_leave(struct net_device * conduit,struct net_device * lag_dev)3411 static void dsa_conduit_lag_leave(struct net_device *conduit,
3412 struct net_device *lag_dev)
3413 {
3414 struct dsa_port *dp, *cpu_dp = lag_dev->dsa_ptr;
3415 struct dsa_switch_tree *dst = cpu_dp->dst;
3416 struct dsa_port *new_cpu_dp = NULL;
3417 struct net_device *lower;
3418 struct list_head *iter;
3419
3420 netdev_for_each_lower_dev(lag_dev, lower, iter) {
3421 if (netdev_uses_dsa(lower)) {
3422 new_cpu_dp = lower->dsa_ptr;
3423 break;
3424 }
3425 }
3426
3427 if (new_cpu_dp) {
3428 /* Update the CPU port of the user ports still under the LAG
3429 * so that dsa_port_to_conduit() continues to work properly
3430 */
3431 dsa_tree_for_each_user_port(dp, dst)
3432 if (dsa_port_to_conduit(dp) == lag_dev)
3433 dp->cpu_dp = new_cpu_dp;
3434
3435 /* Update the index of the virtual CPU port to match the lowest
3436 * physical CPU port
3437 */
3438 lag_dev->dsa_ptr = new_cpu_dp;
3439 wmb();
3440 } else {
3441 /* If the LAG DSA conduit has no ports left, migrate back all
3442 * user ports to the first physical CPU port
3443 */
3444 dsa_tree_migrate_ports_from_lag_conduit(dst, lag_dev);
3445 }
3446
3447 /* This DSA conduit has left its LAG in any case, so let
3448 * the CPU port leave the hardware LAG as well
3449 */
3450 dsa_conduit_lag_teardown(lag_dev, conduit->dsa_ptr);
3451 }
3452
dsa_conduit_changeupper(struct net_device * dev,struct netdev_notifier_changeupper_info * info)3453 static int dsa_conduit_changeupper(struct net_device *dev,
3454 struct netdev_notifier_changeupper_info *info)
3455 {
3456 struct netlink_ext_ack *extack;
3457 int err = NOTIFY_DONE;
3458
3459 if (!netdev_uses_dsa(dev))
3460 return err;
3461
3462 extack = netdev_notifier_info_to_extack(&info->info);
3463
3464 if (netif_is_lag_master(info->upper_dev)) {
3465 if (info->linking) {
3466 err = dsa_conduit_lag_join(dev, info->upper_dev,
3467 info->upper_info, extack);
3468 err = notifier_from_errno(err);
3469 } else {
3470 dsa_conduit_lag_leave(dev, info->upper_dev);
3471 err = NOTIFY_OK;
3472 }
3473 }
3474
3475 return err;
3476 }
3477
dsa_user_netdevice_event(struct notifier_block * nb,unsigned long event,void * ptr)3478 static int dsa_user_netdevice_event(struct notifier_block *nb,
3479 unsigned long event, void *ptr)
3480 {
3481 struct net_device *dev = netdev_notifier_info_to_dev(ptr);
3482
3483 switch (event) {
3484 case NETDEV_PRECHANGEUPPER: {
3485 struct netdev_notifier_changeupper_info *info = ptr;
3486 int err;
3487
3488 err = dsa_user_prechangeupper_sanity_check(dev, info);
3489 if (notifier_to_errno(err))
3490 return err;
3491
3492 err = dsa_conduit_prechangeupper_sanity_check(dev, info);
3493 if (notifier_to_errno(err))
3494 return err;
3495
3496 err = dsa_lag_conduit_prechangelower_sanity_check(dev, info);
3497 if (notifier_to_errno(err))
3498 return err;
3499
3500 err = dsa_bridge_prechangelower_sanity_check(dev, info);
3501 if (notifier_to_errno(err))
3502 return err;
3503
3504 err = dsa_user_prechangeupper(dev, ptr);
3505 if (notifier_to_errno(err))
3506 return err;
3507
3508 err = dsa_user_lag_prechangeupper(dev, ptr);
3509 if (notifier_to_errno(err))
3510 return err;
3511
3512 break;
3513 }
3514 case NETDEV_CHANGEUPPER: {
3515 int err;
3516
3517 err = dsa_user_changeupper(dev, ptr);
3518 if (notifier_to_errno(err))
3519 return err;
3520
3521 err = dsa_user_lag_changeupper(dev, ptr);
3522 if (notifier_to_errno(err))
3523 return err;
3524
3525 err = dsa_conduit_changeupper(dev, ptr);
3526 if (notifier_to_errno(err))
3527 return err;
3528
3529 break;
3530 }
3531 case NETDEV_CHANGELOWERSTATE: {
3532 struct netdev_notifier_changelowerstate_info *info = ptr;
3533 struct dsa_port *dp;
3534 int err = 0;
3535
3536 if (dsa_user_dev_check(dev)) {
3537 dp = dsa_user_to_port(dev);
3538
3539 err = dsa_port_lag_change(dp, info->lower_state_info);
3540 }
3541
3542 /* Mirror LAG port events on DSA conduits that are in
3543 * a LAG towards their respective switch CPU ports
3544 */
3545 if (netdev_uses_dsa(dev)) {
3546 dp = dev->dsa_ptr;
3547
3548 err = dsa_port_lag_change(dp, info->lower_state_info);
3549 }
3550
3551 return notifier_from_errno(err);
3552 }
3553 case NETDEV_CHANGE:
3554 case NETDEV_UP: {
3555 /* Track state of conduit port.
3556 * DSA driver may require the conduit port (and indirectly
3557 * the tagger) to be available for some special operation.
3558 */
3559 if (netdev_uses_dsa(dev)) {
3560 struct dsa_port *cpu_dp = dev->dsa_ptr;
3561 struct dsa_switch_tree *dst = cpu_dp->ds->dst;
3562
3563 /* Track when the conduit port is UP */
3564 dsa_tree_conduit_oper_state_change(dst, dev,
3565 netif_oper_up(dev));
3566
3567 /* Track when the conduit port is ready and can accept
3568 * packet.
3569 * NETDEV_UP event is not enough to flag a port as ready.
3570 * We also have to wait for linkwatch_do_dev to dev_activate
3571 * and emit a NETDEV_CHANGE event.
3572 * We check if a conduit port is ready by checking if the dev
3573 * have a qdisc assigned and is not noop.
3574 */
3575 dsa_tree_conduit_admin_state_change(dst, dev,
3576 !qdisc_tx_is_noop(dev));
3577
3578 return NOTIFY_OK;
3579 }
3580
3581 return NOTIFY_DONE;
3582 }
3583 case NETDEV_GOING_DOWN: {
3584 struct dsa_port *dp, *cpu_dp;
3585 struct dsa_switch_tree *dst;
3586 LIST_HEAD(close_list);
3587
3588 if (!netdev_uses_dsa(dev))
3589 return NOTIFY_DONE;
3590
3591 cpu_dp = dev->dsa_ptr;
3592 dst = cpu_dp->ds->dst;
3593
3594 dsa_tree_conduit_admin_state_change(dst, dev, false);
3595
3596 list_for_each_entry(dp, &dst->ports, list) {
3597 if (!dsa_port_is_user(dp))
3598 continue;
3599
3600 if (dp->cpu_dp != cpu_dp)
3601 continue;
3602
3603 list_add(&dp->user->close_list, &close_list);
3604 }
3605
3606 netif_close_many(&close_list, true);
3607
3608 return NOTIFY_OK;
3609 }
3610 default:
3611 break;
3612 }
3613
3614 return NOTIFY_DONE;
3615 }
3616
3617 static void
dsa_fdb_offload_notify(struct dsa_switchdev_event_work * switchdev_work)3618 dsa_fdb_offload_notify(struct dsa_switchdev_event_work *switchdev_work)
3619 {
3620 struct switchdev_notifier_fdb_info info = {};
3621
3622 info.addr = switchdev_work->addr;
3623 info.vid = switchdev_work->vid;
3624 info.offloaded = true;
3625 call_switchdev_notifiers(SWITCHDEV_FDB_OFFLOADED,
3626 switchdev_work->orig_dev, &info.info, NULL);
3627 }
3628
dsa_user_switchdev_event_work(struct work_struct * work)3629 static void dsa_user_switchdev_event_work(struct work_struct *work)
3630 {
3631 struct dsa_switchdev_event_work *switchdev_work =
3632 container_of(work, struct dsa_switchdev_event_work, work);
3633 const unsigned char *addr = switchdev_work->addr;
3634 struct net_device *dev = switchdev_work->dev;
3635 u16 vid = switchdev_work->vid;
3636 struct dsa_switch *ds;
3637 struct dsa_port *dp;
3638 int err;
3639
3640 dp = dsa_user_to_port(dev);
3641 ds = dp->ds;
3642
3643 switch (switchdev_work->event) {
3644 case SWITCHDEV_FDB_ADD_TO_DEVICE:
3645 if (switchdev_work->host_addr)
3646 err = dsa_port_bridge_host_fdb_add(dp, addr, vid);
3647 else if (dp->lag)
3648 err = dsa_port_lag_fdb_add(dp, addr, vid);
3649 else
3650 err = dsa_port_fdb_add(dp, addr, vid);
3651 if (err) {
3652 dev_err(ds->dev,
3653 "port %d failed to add %pM vid %d to fdb: %d\n",
3654 dp->index, addr, vid, err);
3655 break;
3656 }
3657 dsa_fdb_offload_notify(switchdev_work);
3658 break;
3659
3660 case SWITCHDEV_FDB_DEL_TO_DEVICE:
3661 if (switchdev_work->host_addr)
3662 err = dsa_port_bridge_host_fdb_del(dp, addr, vid);
3663 else if (dp->lag)
3664 err = dsa_port_lag_fdb_del(dp, addr, vid);
3665 else
3666 err = dsa_port_fdb_del(dp, addr, vid);
3667 if (err) {
3668 dev_err(ds->dev,
3669 "port %d failed to delete %pM vid %d from fdb: %d\n",
3670 dp->index, addr, vid, err);
3671 }
3672
3673 break;
3674 }
3675
3676 kfree(switchdev_work);
3677 }
3678
dsa_foreign_dev_check(const struct net_device * dev,const struct net_device * foreign_dev)3679 static bool dsa_foreign_dev_check(const struct net_device *dev,
3680 const struct net_device *foreign_dev)
3681 {
3682 const struct dsa_port *dp = dsa_user_to_port(dev);
3683 struct dsa_switch_tree *dst = dp->ds->dst;
3684
3685 if (netif_is_bridge_master(foreign_dev))
3686 return !dsa_tree_offloads_bridge_dev(dst, foreign_dev);
3687
3688 if (netif_is_bridge_port(foreign_dev))
3689 return !dsa_tree_offloads_bridge_port(dst, foreign_dev);
3690
3691 /* Everything else is foreign */
3692 return true;
3693 }
3694
dsa_user_fdb_event(struct net_device * dev,struct net_device * orig_dev,unsigned long event,const void * ctx,const struct switchdev_notifier_fdb_info * fdb_info)3695 static int dsa_user_fdb_event(struct net_device *dev,
3696 struct net_device *orig_dev,
3697 unsigned long event, const void *ctx,
3698 const struct switchdev_notifier_fdb_info *fdb_info)
3699 {
3700 struct dsa_switchdev_event_work *switchdev_work;
3701 struct dsa_port *dp = dsa_user_to_port(dev);
3702 bool host_addr = fdb_info->is_local;
3703 struct dsa_switch *ds = dp->ds;
3704
3705 if (ctx && ctx != dp)
3706 return 0;
3707
3708 if (!dp->bridge)
3709 return 0;
3710
3711 if (switchdev_fdb_is_dynamically_learned(fdb_info)) {
3712 if (dsa_port_offloads_bridge_port(dp, orig_dev))
3713 return 0;
3714
3715 /* FDB entries learned by the software bridge or by foreign
3716 * bridge ports should be installed as host addresses only if
3717 * the driver requests assisted learning.
3718 */
3719 if (!ds->assisted_learning_on_cpu_port)
3720 return 0;
3721 }
3722
3723 /* Also treat FDB entries on foreign interfaces bridged with us as host
3724 * addresses.
3725 */
3726 if (dsa_foreign_dev_check(dev, orig_dev))
3727 host_addr = true;
3728
3729 /* Check early that we're not doing work in vain.
3730 * Host addresses on LAG ports still require regular FDB ops,
3731 * since the CPU port isn't in a LAG.
3732 */
3733 if (dp->lag && !host_addr) {
3734 if (!ds->ops->lag_fdb_add || !ds->ops->lag_fdb_del)
3735 return -EOPNOTSUPP;
3736 } else {
3737 if (!ds->ops->port_fdb_add || !ds->ops->port_fdb_del)
3738 return -EOPNOTSUPP;
3739 }
3740
3741 switchdev_work = kzalloc_obj(*switchdev_work, GFP_ATOMIC);
3742 if (!switchdev_work)
3743 return -ENOMEM;
3744
3745 netdev_dbg(dev, "%s FDB entry towards %s, addr %pM vid %d%s\n",
3746 event == SWITCHDEV_FDB_ADD_TO_DEVICE ? "Adding" : "Deleting",
3747 orig_dev->name, fdb_info->addr, fdb_info->vid,
3748 host_addr ? " as host address" : "");
3749
3750 INIT_WORK(&switchdev_work->work, dsa_user_switchdev_event_work);
3751 switchdev_work->event = event;
3752 switchdev_work->dev = dev;
3753 switchdev_work->orig_dev = orig_dev;
3754
3755 ether_addr_copy(switchdev_work->addr, fdb_info->addr);
3756 switchdev_work->vid = fdb_info->vid;
3757 switchdev_work->host_addr = host_addr;
3758
3759 dsa_schedule_work(&switchdev_work->work);
3760
3761 return 0;
3762 }
3763
3764 /* Called under rcu_read_lock() */
dsa_user_switchdev_event(struct notifier_block * unused,unsigned long event,void * ptr)3765 static int dsa_user_switchdev_event(struct notifier_block *unused,
3766 unsigned long event, void *ptr)
3767 {
3768 struct net_device *dev = switchdev_notifier_info_to_dev(ptr);
3769 int err;
3770
3771 switch (event) {
3772 case SWITCHDEV_PORT_ATTR_SET:
3773 err = switchdev_handle_port_attr_set(dev, ptr,
3774 dsa_user_dev_check,
3775 dsa_user_port_attr_set);
3776 return notifier_from_errno(err);
3777 case SWITCHDEV_FDB_ADD_TO_DEVICE:
3778 case SWITCHDEV_FDB_DEL_TO_DEVICE:
3779 err = switchdev_handle_fdb_event_to_device(dev, event, ptr,
3780 dsa_user_dev_check,
3781 dsa_foreign_dev_check,
3782 dsa_user_fdb_event);
3783 return notifier_from_errno(err);
3784 default:
3785 return NOTIFY_DONE;
3786 }
3787
3788 return NOTIFY_OK;
3789 }
3790
dsa_user_switchdev_blocking_event(struct notifier_block * unused,unsigned long event,void * ptr)3791 static int dsa_user_switchdev_blocking_event(struct notifier_block *unused,
3792 unsigned long event, void *ptr)
3793 {
3794 struct net_device *dev = switchdev_notifier_info_to_dev(ptr);
3795 int err;
3796
3797 switch (event) {
3798 case SWITCHDEV_PORT_OBJ_ADD:
3799 err = switchdev_handle_port_obj_add_foreign(dev, ptr,
3800 dsa_user_dev_check,
3801 dsa_foreign_dev_check,
3802 dsa_user_port_obj_add);
3803 return notifier_from_errno(err);
3804 case SWITCHDEV_PORT_OBJ_DEL:
3805 err = switchdev_handle_port_obj_del_foreign(dev, ptr,
3806 dsa_user_dev_check,
3807 dsa_foreign_dev_check,
3808 dsa_user_port_obj_del);
3809 return notifier_from_errno(err);
3810 case SWITCHDEV_PORT_ATTR_SET:
3811 err = switchdev_handle_port_attr_set(dev, ptr,
3812 dsa_user_dev_check,
3813 dsa_user_port_attr_set);
3814 return notifier_from_errno(err);
3815 }
3816
3817 return NOTIFY_DONE;
3818 }
3819
3820 static struct notifier_block dsa_user_nb __read_mostly = {
3821 .notifier_call = dsa_user_netdevice_event,
3822 };
3823
3824 struct notifier_block dsa_user_switchdev_notifier = {
3825 .notifier_call = dsa_user_switchdev_event,
3826 };
3827
3828 struct notifier_block dsa_user_switchdev_blocking_notifier = {
3829 .notifier_call = dsa_user_switchdev_blocking_event,
3830 };
3831
dsa_user_register_notifier(void)3832 int dsa_user_register_notifier(void)
3833 {
3834 struct notifier_block *nb;
3835 int err;
3836
3837 err = register_netdevice_notifier(&dsa_user_nb);
3838 if (err)
3839 return err;
3840
3841 err = register_switchdev_notifier(&dsa_user_switchdev_notifier);
3842 if (err)
3843 goto err_switchdev_nb;
3844
3845 nb = &dsa_user_switchdev_blocking_notifier;
3846 err = register_switchdev_blocking_notifier(nb);
3847 if (err)
3848 goto err_switchdev_blocking_nb;
3849
3850 return 0;
3851
3852 err_switchdev_blocking_nb:
3853 unregister_switchdev_notifier(&dsa_user_switchdev_notifier);
3854 err_switchdev_nb:
3855 unregister_netdevice_notifier(&dsa_user_nb);
3856 return err;
3857 }
3858
dsa_user_unregister_notifier(void)3859 void dsa_user_unregister_notifier(void)
3860 {
3861 struct notifier_block *nb;
3862 int err;
3863
3864 nb = &dsa_user_switchdev_blocking_notifier;
3865 err = unregister_switchdev_blocking_notifier(nb);
3866 if (err)
3867 pr_err("DSA: failed to unregister switchdev blocking notifier (%d)\n", err);
3868
3869 err = unregister_switchdev_notifier(&dsa_user_switchdev_notifier);
3870 if (err)
3871 pr_err("DSA: failed to unregister switchdev notifier (%d)\n", err);
3872
3873 err = unregister_netdevice_notifier(&dsa_user_nb);
3874 if (err)
3875 pr_err("DSA: failed to unregister user notifier (%d)\n", err);
3876 }
3877