1 // SPDX-License-Identifier: GPL-2.0
2 /* Copyright 2011-2014 Autronica Fire and Security AS
5 * 2011-2014 Arvid Brodin, arvid.brodin@alten.se
6 * This file contains device methods for creating, using and destroying
7 * virtual HSR or PRP devices.
10 #include <linux/netdevice.h>
11 #include <linux/skbuff.h>
12 #include <linux/etherdevice.h>
13 #include <linux/rtnetlink.h>
14 #include <linux/pkt_sched.h>
15 #include "hsr_device.h"
16 #include "hsr_slave.h"
17 #include "hsr_framereg.h"
19 #include "hsr_forward.h"
21 static bool is_admin_up(struct net_device
*dev
)
23 return dev
&& (dev
->flags
& IFF_UP
);
26 static bool is_slave_up(struct net_device
*dev
)
28 return dev
&& is_admin_up(dev
) && netif_oper_up(dev
);
31 static void __hsr_set_operstate(struct net_device
*dev
, int transition
)
33 write_lock_bh(&dev_base_lock
);
34 if (dev
->operstate
!= transition
) {
35 dev
->operstate
= transition
;
36 write_unlock_bh(&dev_base_lock
);
37 netdev_state_change(dev
);
39 write_unlock_bh(&dev_base_lock
);
43 static void hsr_set_operstate(struct hsr_port
*master
, bool has_carrier
)
45 if (!is_admin_up(master
->dev
)) {
46 __hsr_set_operstate(master
->dev
, IF_OPER_DOWN
);
51 __hsr_set_operstate(master
->dev
, IF_OPER_UP
);
53 __hsr_set_operstate(master
->dev
, IF_OPER_LOWERLAYERDOWN
);
56 static bool hsr_check_carrier(struct hsr_port
*master
)
58 struct hsr_port
*port
;
62 hsr_for_each_port(master
->hsr
, port
) {
63 if (port
->type
!= HSR_PT_MASTER
&& is_slave_up(port
->dev
)) {
64 netif_carrier_on(master
->dev
);
69 netif_carrier_off(master
->dev
);
74 static void hsr_check_announce(struct net_device
*hsr_dev
,
75 unsigned char old_operstate
)
79 hsr
= netdev_priv(hsr_dev
);
81 if (hsr_dev
->operstate
== IF_OPER_UP
&& old_operstate
!= IF_OPER_UP
) {
83 hsr
->announce_count
= 0;
84 mod_timer(&hsr
->announce_timer
,
85 jiffies
+ msecs_to_jiffies(HSR_ANNOUNCE_INTERVAL
));
88 if (hsr_dev
->operstate
!= IF_OPER_UP
&& old_operstate
== IF_OPER_UP
)
90 del_timer(&hsr
->announce_timer
);
93 void hsr_check_carrier_and_operstate(struct hsr_priv
*hsr
)
95 struct hsr_port
*master
;
96 unsigned char old_operstate
;
99 master
= hsr_port_get_hsr(hsr
, HSR_PT_MASTER
);
100 /* netif_stacked_transfer_operstate() cannot be used here since
101 * it doesn't set IF_OPER_LOWERLAYERDOWN (?)
103 old_operstate
= master
->dev
->operstate
;
104 has_carrier
= hsr_check_carrier(master
);
105 hsr_set_operstate(master
, has_carrier
);
106 hsr_check_announce(master
->dev
, old_operstate
);
109 int hsr_get_max_mtu(struct hsr_priv
*hsr
)
111 unsigned int mtu_max
;
112 struct hsr_port
*port
;
114 mtu_max
= ETH_DATA_LEN
;
115 hsr_for_each_port(hsr
, port
)
116 if (port
->type
!= HSR_PT_MASTER
)
117 mtu_max
= min(port
->dev
->mtu
, mtu_max
);
119 if (mtu_max
< HSR_HLEN
)
121 return mtu_max
- HSR_HLEN
;
124 static int hsr_dev_change_mtu(struct net_device
*dev
, int new_mtu
)
126 struct hsr_priv
*hsr
;
128 hsr
= netdev_priv(dev
);
130 if (new_mtu
> hsr_get_max_mtu(hsr
)) {
131 netdev_info(dev
, "A HSR master's MTU cannot be greater than the smallest MTU of its slaves minus the HSR Tag length (%d octets).\n",
141 static int hsr_dev_open(struct net_device
*dev
)
143 struct hsr_priv
*hsr
;
144 struct hsr_port
*port
;
147 hsr
= netdev_priv(dev
);
150 hsr_for_each_port(hsr
, port
) {
151 if (port
->type
== HSR_PT_MASTER
)
153 switch (port
->type
) {
163 if (!is_slave_up(port
->dev
))
164 netdev_warn(dev
, "Slave %c (%s) is not up; please bring it up to get a fully working HSR network\n",
165 designation
, port
->dev
->name
);
168 if (designation
== '\0')
169 netdev_warn(dev
, "No slave devices configured\n");
174 static int hsr_dev_close(struct net_device
*dev
)
176 /* Nothing to do here. */
180 static netdev_features_t
hsr_features_recompute(struct hsr_priv
*hsr
,
181 netdev_features_t features
)
183 netdev_features_t mask
;
184 struct hsr_port
*port
;
188 /* Mask out all features that, if supported by one device, should be
189 * enabled for all devices (see NETIF_F_ONE_FOR_ALL).
191 * Anything that's off in mask will not be enabled - so only things
192 * that were in features originally, and also is in NETIF_F_ONE_FOR_ALL,
193 * may become enabled.
195 features
&= ~NETIF_F_ONE_FOR_ALL
;
196 hsr_for_each_port(hsr
, port
)
197 features
= netdev_increment_features(features
,
204 static netdev_features_t
hsr_fix_features(struct net_device
*dev
,
205 netdev_features_t features
)
207 struct hsr_priv
*hsr
= netdev_priv(dev
);
209 return hsr_features_recompute(hsr
, features
);
212 static netdev_tx_t
hsr_dev_xmit(struct sk_buff
*skb
, struct net_device
*dev
)
214 struct hsr_priv
*hsr
= netdev_priv(dev
);
215 struct hsr_port
*master
;
217 master
= hsr_port_get_hsr(hsr
, HSR_PT_MASTER
);
219 skb
->dev
= master
->dev
;
220 hsr_forward_skb(skb
, master
);
222 atomic_long_inc(&dev
->tx_dropped
);
223 dev_kfree_skb_any(skb
);
228 static const struct header_ops hsr_header_ops
= {
229 .create
= eth_header
,
230 .parse
= eth_header_parse
,
233 static struct sk_buff
*hsr_init_skb(struct hsr_port
*master
, u16 proto
)
235 struct hsr_priv
*hsr
= master
->hsr
;
239 hlen
= LL_RESERVED_SPACE(master
->dev
);
240 tlen
= master
->dev
->needed_tailroom
;
241 /* skb size is same for PRP/HSR frames, only difference
242 * being, for PRP it is a trailer and for HSR it is a
245 skb
= dev_alloc_skb(sizeof(struct hsr_tag
) +
246 sizeof(struct hsr_sup_tag
) +
247 sizeof(struct hsr_sup_payload
) + hlen
+ tlen
);
252 skb_reserve(skb
, hlen
);
253 skb
->dev
= master
->dev
;
254 skb
->protocol
= htons(proto
);
255 skb
->priority
= TC_PRIO_CONTROL
;
257 if (dev_hard_header(skb
, skb
->dev
, proto
,
258 hsr
->sup_multicast_addr
,
259 skb
->dev
->dev_addr
, skb
->len
) <= 0)
262 skb_reset_mac_header(skb
);
263 skb_reset_network_header(skb
);
264 skb_reset_transport_header(skb
);
273 static void send_hsr_supervision_frame(struct hsr_port
*master
,
274 unsigned long *interval
)
276 struct hsr_priv
*hsr
= master
->hsr
;
277 __u8 type
= HSR_TLV_LIFE_CHECK
;
278 struct hsr_tag
*hsr_tag
= NULL
;
279 struct hsr_sup_payload
*hsr_sp
;
280 struct hsr_sup_tag
*hsr_stag
;
281 unsigned long irqflags
;
285 *interval
= msecs_to_jiffies(HSR_LIFE_CHECK_INTERVAL
);
286 if (hsr
->announce_count
< 3 && hsr
->prot_version
== 0) {
287 type
= HSR_TLV_ANNOUNCE
;
288 *interval
= msecs_to_jiffies(HSR_ANNOUNCE_INTERVAL
);
289 hsr
->announce_count
++;
292 if (!hsr
->prot_version
)
297 skb
= hsr_init_skb(master
, proto
);
299 WARN_ONCE(1, "HSR: Could not send supervision frame\n");
303 if (hsr
->prot_version
> 0) {
304 hsr_tag
= skb_put(skb
, sizeof(struct hsr_tag
));
305 hsr_tag
->encap_proto
= htons(ETH_P_PRP
);
306 set_hsr_tag_LSDU_size(hsr_tag
, HSR_V1_SUP_LSDUSIZE
);
309 hsr_stag
= skb_put(skb
, sizeof(struct hsr_sup_tag
));
310 set_hsr_stag_path(hsr_stag
, (hsr
->prot_version
? 0x0 : 0xf));
311 set_hsr_stag_HSR_ver(hsr_stag
, hsr
->prot_version
);
313 /* From HSRv1 on we have separate supervision sequence numbers. */
314 spin_lock_irqsave(&master
->hsr
->seqnr_lock
, irqflags
);
315 if (hsr
->prot_version
> 0) {
316 hsr_stag
->sequence_nr
= htons(hsr
->sup_sequence_nr
);
317 hsr
->sup_sequence_nr
++;
318 hsr_tag
->sequence_nr
= htons(hsr
->sequence_nr
);
321 hsr_stag
->sequence_nr
= htons(hsr
->sequence_nr
);
324 spin_unlock_irqrestore(&master
->hsr
->seqnr_lock
, irqflags
);
326 hsr_stag
->HSR_TLV_type
= type
;
327 /* TODO: Why 12 in HSRv0? */
328 hsr_stag
->HSR_TLV_length
= hsr
->prot_version
?
329 sizeof(struct hsr_sup_payload
) : 12;
331 /* Payload: MacAddressA */
332 hsr_sp
= skb_put(skb
, sizeof(struct hsr_sup_payload
));
333 ether_addr_copy(hsr_sp
->macaddress_A
, master
->dev
->dev_addr
);
335 if (skb_put_padto(skb
, ETH_ZLEN
+ HSR_HLEN
))
338 hsr_forward_skb(skb
, master
);
343 static void send_prp_supervision_frame(struct hsr_port
*master
,
344 unsigned long *interval
)
346 struct hsr_priv
*hsr
= master
->hsr
;
347 struct hsr_sup_payload
*hsr_sp
;
348 struct hsr_sup_tag
*hsr_stag
;
349 unsigned long irqflags
;
354 skb
= hsr_init_skb(master
, ETH_P_PRP
);
356 WARN_ONCE(1, "PRP: Could not send supervision frame\n");
360 *interval
= msecs_to_jiffies(HSR_LIFE_CHECK_INTERVAL
);
361 hsr_stag
= skb_put(skb
, sizeof(struct hsr_sup_tag
));
362 set_hsr_stag_path(hsr_stag
, (hsr
->prot_version
? 0x0 : 0xf));
363 set_hsr_stag_HSR_ver(hsr_stag
, (hsr
->prot_version
? 1 : 0));
365 /* From HSRv1 on we have separate supervision sequence numbers. */
366 spin_lock_irqsave(&master
->hsr
->seqnr_lock
, irqflags
);
367 hsr_stag
->sequence_nr
= htons(hsr
->sup_sequence_nr
);
368 hsr
->sup_sequence_nr
++;
369 hsr_stag
->HSR_TLV_type
= PRP_TLV_LIFE_CHECK_DD
;
370 hsr_stag
->HSR_TLV_length
= sizeof(struct hsr_sup_payload
);
372 /* Payload: MacAddressA */
373 hsr_sp
= skb_put(skb
, sizeof(struct hsr_sup_payload
));
374 ether_addr_copy(hsr_sp
->macaddress_A
, master
->dev
->dev_addr
);
376 if (skb_put_padto(skb
, ETH_ZLEN
+ HSR_HLEN
)) {
377 spin_unlock_irqrestore(&master
->hsr
->seqnr_lock
, irqflags
);
381 tail
= skb_tail_pointer(skb
) - HSR_HLEN
;
382 rct
= (struct prp_rct
*)tail
;
383 rct
->PRP_suffix
= htons(ETH_P_PRP
);
384 set_prp_LSDU_size(rct
, HSR_V1_SUP_LSDUSIZE
);
385 rct
->sequence_nr
= htons(hsr
->sequence_nr
);
387 spin_unlock_irqrestore(&master
->hsr
->seqnr_lock
, irqflags
);
389 hsr_forward_skb(skb
, master
);
392 /* Announce (supervision frame) timer function
394 static void hsr_announce(struct timer_list
*t
)
396 struct hsr_priv
*hsr
;
397 struct hsr_port
*master
;
398 unsigned long interval
;
400 hsr
= from_timer(hsr
, t
, announce_timer
);
403 master
= hsr_port_get_hsr(hsr
, HSR_PT_MASTER
);
404 hsr
->proto_ops
->send_sv_frame(master
, &interval
);
406 if (is_admin_up(master
->dev
))
407 mod_timer(&hsr
->announce_timer
, jiffies
+ interval
);
412 void hsr_del_ports(struct hsr_priv
*hsr
)
414 struct hsr_port
*port
;
416 port
= hsr_port_get_hsr(hsr
, HSR_PT_SLAVE_A
);
420 port
= hsr_port_get_hsr(hsr
, HSR_PT_SLAVE_B
);
424 port
= hsr_port_get_hsr(hsr
, HSR_PT_MASTER
);
429 static const struct net_device_ops hsr_device_ops
= {
430 .ndo_change_mtu
= hsr_dev_change_mtu
,
431 .ndo_open
= hsr_dev_open
,
432 .ndo_stop
= hsr_dev_close
,
433 .ndo_start_xmit
= hsr_dev_xmit
,
434 .ndo_fix_features
= hsr_fix_features
,
437 static struct device_type hsr_type
= {
441 static struct hsr_proto_ops hsr_ops
= {
442 .send_sv_frame
= send_hsr_supervision_frame
,
443 .create_tagged_frame
= hsr_create_tagged_frame
,
444 .get_untagged_frame
= hsr_get_untagged_frame
,
445 .fill_frame_info
= hsr_fill_frame_info
,
446 .invalid_dan_ingress_frame
= hsr_invalid_dan_ingress_frame
,
449 static struct hsr_proto_ops prp_ops
= {
450 .send_sv_frame
= send_prp_supervision_frame
,
451 .create_tagged_frame
= prp_create_tagged_frame
,
452 .get_untagged_frame
= prp_get_untagged_frame
,
453 .drop_frame
= prp_drop_frame
,
454 .fill_frame_info
= prp_fill_frame_info
,
455 .handle_san_frame
= prp_handle_san_frame
,
456 .update_san_info
= prp_update_san_info
,
459 void hsr_dev_setup(struct net_device
*dev
)
461 eth_hw_addr_random(dev
);
465 dev
->header_ops
= &hsr_header_ops
;
466 dev
->netdev_ops
= &hsr_device_ops
;
467 SET_NETDEV_DEVTYPE(dev
, &hsr_type
);
468 dev
->priv_flags
|= IFF_NO_QUEUE
;
470 dev
->needs_free_netdev
= true;
472 dev
->hw_features
= NETIF_F_SG
| NETIF_F_FRAGLIST
| NETIF_F_HIGHDMA
|
473 NETIF_F_GSO_MASK
| NETIF_F_HW_CSUM
|
474 NETIF_F_HW_VLAN_CTAG_TX
;
476 dev
->features
= dev
->hw_features
;
478 /* Prevent recursive tx locking */
479 dev
->features
|= NETIF_F_LLTX
;
480 /* VLAN on top of HSR needs testing and probably some work on
481 * hsr_header_create() etc.
483 dev
->features
|= NETIF_F_VLAN_CHALLENGED
;
484 /* Not sure about this. Taken from bridge code. netdev_features.h says
485 * it means "Does not change network namespaces".
487 dev
->features
|= NETIF_F_NETNS_LOCAL
;
490 /* Return true if dev is a HSR master; return false otherwise.
492 inline bool is_hsr_master(struct net_device
*dev
)
494 return (dev
->netdev_ops
->ndo_start_xmit
== hsr_dev_xmit
);
497 /* Default multicast address for HSR Supervision frames */
498 static const unsigned char def_multicast_addr
[ETH_ALEN
] __aligned(2) = {
499 0x01, 0x15, 0x4e, 0x00, 0x01, 0x00
502 int hsr_dev_finalize(struct net_device
*hsr_dev
, struct net_device
*slave
[2],
503 unsigned char multicast_spec
, u8 protocol_version
,
504 struct netlink_ext_ack
*extack
)
506 bool unregister
= false;
507 struct hsr_priv
*hsr
;
510 hsr
= netdev_priv(hsr_dev
);
511 INIT_LIST_HEAD(&hsr
->ports
);
512 INIT_LIST_HEAD(&hsr
->node_db
);
513 INIT_LIST_HEAD(&hsr
->self_node_db
);
514 spin_lock_init(&hsr
->list_lock
);
516 ether_addr_copy(hsr_dev
->dev_addr
, slave
[0]->dev_addr
);
518 /* initialize protocol specific functions */
519 if (protocol_version
== PRP_V1
) {
520 /* For PRP, lan_id has most significant 3 bits holding
521 * the net_id of PRP_LAN_ID
523 hsr
->net_id
= PRP_LAN_ID
<< 1;
524 hsr
->proto_ops
= &prp_ops
;
526 hsr
->proto_ops
= &hsr_ops
;
529 /* Make sure we recognize frames from ourselves in hsr_rcv() */
530 res
= hsr_create_self_node(hsr
, hsr_dev
->dev_addr
,
535 spin_lock_init(&hsr
->seqnr_lock
);
536 /* Overflow soon to find bugs easier: */
537 hsr
->sequence_nr
= HSR_SEQNR_START
;
538 hsr
->sup_sequence_nr
= HSR_SUP_SEQNR_START
;
540 timer_setup(&hsr
->announce_timer
, hsr_announce
, 0);
541 timer_setup(&hsr
->prune_timer
, hsr_prune_nodes
, 0);
543 ether_addr_copy(hsr
->sup_multicast_addr
, def_multicast_addr
);
544 hsr
->sup_multicast_addr
[ETH_ALEN
- 1] = multicast_spec
;
546 hsr
->prot_version
= protocol_version
;
548 /* FIXME: should I modify the value of these?
550 * - hsr_dev->flags - i.e.
552 * - hsr_dev->priv_flags - i.e.
554 * IFF_TX_SKB_SHARING?
555 * IFF_HSR_MASTER/SLAVE?
558 /* Make sure the 1st call to netif_carrier_on() gets through */
559 netif_carrier_off(hsr_dev
);
561 res
= hsr_add_port(hsr
, hsr_dev
, HSR_PT_MASTER
, extack
);
565 res
= register_netdevice(hsr_dev
);
571 res
= hsr_add_port(hsr
, slave
[0], HSR_PT_SLAVE_A
, extack
);
575 res
= hsr_add_port(hsr
, slave
[1], HSR_PT_SLAVE_B
, extack
);
579 hsr_debugfs_init(hsr
, hsr_dev
);
580 mod_timer(&hsr
->prune_timer
, jiffies
+ msecs_to_jiffies(PRUNE_PERIOD
));
587 hsr_del_self_node(hsr
);
590 unregister_netdevice(hsr_dev
);