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1 /*
2 * Copyright(c) 2007 - 2009 Intel Corporation. All rights reserved.
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms and conditions of the GNU General Public License,
6 * version 2, as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
11 * more details.
12 *
13 * You should have received a copy of the GNU General Public License along with
14 * this program; if not, write to the Free Software Foundation, Inc.,
15 * 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA.
16 *
17 * Maintained at www.Open-FCoE.org
18 */
19
20 #include <linux/module.h>
21 #include <linux/version.h>
22 #include <linux/spinlock.h>
23 #include <linux/netdevice.h>
24 #include <linux/etherdevice.h>
25 #include <linux/ethtool.h>
26 #include <linux/if_ether.h>
27 #include <linux/if_vlan.h>
28 #include <linux/crc32.h>
29 #include <linux/slab.h>
30 #include <linux/cpu.h>
31 #include <linux/fs.h>
32 #include <linux/sysfs.h>
33 #include <linux/ctype.h>
34 #include <scsi/scsi_tcq.h>
35 #include <scsi/scsicam.h>
36 #include <scsi/scsi_transport.h>
37 #include <scsi/scsi_transport_fc.h>
38 #include <net/rtnetlink.h>
39
40 #include <scsi/fc/fc_encaps.h>
41 #include <scsi/fc/fc_fip.h>
42
43 #include <scsi/libfc.h>
44 #include <scsi/fc_frame.h>
45 #include <scsi/libfcoe.h>
46
47 #include "fcoe.h"
48
49 MODULE_AUTHOR("Open-FCoE.org");
50 MODULE_DESCRIPTION("FCoE");
51 MODULE_LICENSE("GPL v2");
52
53 /* Performance tuning parameters for fcoe */
54 static unsigned int fcoe_ddp_min;
55 module_param_named(ddp_min, fcoe_ddp_min, uint, S_IRUGO | S_IWUSR);
56 MODULE_PARM_DESC(ddp_min, "Minimum I/O size in bytes for " \
57 "Direct Data Placement (DDP).");
58
59 DEFINE_MUTEX(fcoe_config_mutex);
60
61 /* fcoe_percpu_clean completion. Waiter protected by fcoe_create_mutex */
62 static DECLARE_COMPLETION(fcoe_flush_completion);
63
64 /* fcoe host list */
65 /* must only by accessed under the RTNL mutex */
66 LIST_HEAD(fcoe_hostlist);
67 DEFINE_PER_CPU(struct fcoe_percpu_s, fcoe_percpu);
68
69 /* Function Prototypes */
70 static int fcoe_reset(struct Scsi_Host *);
71 static int fcoe_xmit(struct fc_lport *, struct fc_frame *);
72 static int fcoe_rcv(struct sk_buff *, struct net_device *,
73 struct packet_type *, struct net_device *);
74 static int fcoe_percpu_receive_thread(void *);
75 static void fcoe_clean_pending_queue(struct fc_lport *);
76 static void fcoe_percpu_clean(struct fc_lport *);
77 static int fcoe_link_ok(struct fc_lport *);
78
79 static struct fc_lport *fcoe_hostlist_lookup(const struct net_device *);
80 static int fcoe_hostlist_add(const struct fc_lport *);
81
82 static void fcoe_check_wait_queue(struct fc_lport *, struct sk_buff *);
83 static int fcoe_device_notification(struct notifier_block *, ulong, void *);
84 static void fcoe_dev_setup(void);
85 static void fcoe_dev_cleanup(void);
86 static struct fcoe_interface
87 *fcoe_hostlist_lookup_port(const struct net_device *);
88
89 static int fcoe_fip_recv(struct sk_buff *, struct net_device *,
90 struct packet_type *, struct net_device *);
91
92 static void fcoe_fip_send(struct fcoe_ctlr *, struct sk_buff *);
93 static void fcoe_update_src_mac(struct fc_lport *, u8 *);
94 static u8 *fcoe_get_src_mac(struct fc_lport *);
95 static void fcoe_destroy_work(struct work_struct *);
96
97 static int fcoe_ddp_setup(struct fc_lport *, u16, struct scatterlist *,
98 unsigned int);
99 static int fcoe_ddp_done(struct fc_lport *, u16);
100
101 static int fcoe_cpu_callback(struct notifier_block *, unsigned long, void *);
102
103 static int fcoe_create(const char *, struct kernel_param *);
104 static int fcoe_destroy(const char *, struct kernel_param *);
105 static int fcoe_enable(const char *, struct kernel_param *);
106 static int fcoe_disable(const char *, struct kernel_param *);
107
108 static struct fc_seq *fcoe_elsct_send(struct fc_lport *,
109 u32 did, struct fc_frame *,
110 unsigned int op,
111 void (*resp)(struct fc_seq *,
112 struct fc_frame *,
113 void *),
114 void *, u32 timeout);
115 static void fcoe_recv_frame(struct sk_buff *skb);
116
117 static void fcoe_get_lesb(struct fc_lport *, struct fc_els_lesb *);
118
119 module_param_call(create, fcoe_create, NULL, NULL, S_IWUSR);
120 __MODULE_PARM_TYPE(create, "string");
121 MODULE_PARM_DESC(create, " Creates fcoe instance on a ethernet interface");
122 module_param_call(destroy, fcoe_destroy, NULL, NULL, S_IWUSR);
123 __MODULE_PARM_TYPE(destroy, "string");
124 MODULE_PARM_DESC(destroy, " Destroys fcoe instance on a ethernet interface");
125 module_param_call(enable, fcoe_enable, NULL, NULL, S_IWUSR);
126 __MODULE_PARM_TYPE(enable, "string");
127 MODULE_PARM_DESC(enable, " Enables fcoe on a ethernet interface.");
128 module_param_call(disable, fcoe_disable, NULL, NULL, S_IWUSR);
129 __MODULE_PARM_TYPE(disable, "string");
130 MODULE_PARM_DESC(disable, " Disables fcoe on a ethernet interface.");
131
132 /* notification function for packets from net device */
133 static struct notifier_block fcoe_notifier = {
134 .notifier_call = fcoe_device_notification,
135 };
136
137 /* notification function for CPU hotplug events */
138 static struct notifier_block fcoe_cpu_notifier = {
139 .notifier_call = fcoe_cpu_callback,
140 };
141
142 static struct scsi_transport_template *fcoe_transport_template;
143 static struct scsi_transport_template *fcoe_vport_transport_template;
144
145 static int fcoe_vport_destroy(struct fc_vport *);
146 static int fcoe_vport_create(struct fc_vport *, bool disabled);
147 static int fcoe_vport_disable(struct fc_vport *, bool disable);
148 static void fcoe_set_vport_symbolic_name(struct fc_vport *);
149
150 static struct libfc_function_template fcoe_libfc_fcn_templ = {
151 .frame_send = fcoe_xmit,
152 .ddp_setup = fcoe_ddp_setup,
153 .ddp_done = fcoe_ddp_done,
154 .elsct_send = fcoe_elsct_send,
155 .get_lesb = fcoe_get_lesb,
156 };
157
158 struct fc_function_template fcoe_transport_function = {
159 .show_host_node_name = 1,
160 .show_host_port_name = 1,
161 .show_host_supported_classes = 1,
162 .show_host_supported_fc4s = 1,
163 .show_host_active_fc4s = 1,
164 .show_host_maxframe_size = 1,
165
166 .show_host_port_id = 1,
167 .show_host_supported_speeds = 1,
168 .get_host_speed = fc_get_host_speed,
169 .show_host_speed = 1,
170 .show_host_port_type = 1,
171 .get_host_port_state = fc_get_host_port_state,
172 .show_host_port_state = 1,
173 .show_host_symbolic_name = 1,
174
175 .dd_fcrport_size = sizeof(struct fc_rport_libfc_priv),
176 .show_rport_maxframe_size = 1,
177 .show_rport_supported_classes = 1,
178
179 .show_host_fabric_name = 1,
180 .show_starget_node_name = 1,
181 .show_starget_port_name = 1,
182 .show_starget_port_id = 1,
183 .set_rport_dev_loss_tmo = fc_set_rport_loss_tmo,
184 .show_rport_dev_loss_tmo = 1,
185 .get_fc_host_stats = fc_get_host_stats,
186 .issue_fc_host_lip = fcoe_reset,
187
188 .terminate_rport_io = fc_rport_terminate_io,
189
190 .vport_create = fcoe_vport_create,
191 .vport_delete = fcoe_vport_destroy,
192 .vport_disable = fcoe_vport_disable,
193 .set_vport_symbolic_name = fcoe_set_vport_symbolic_name,
194
195 .bsg_request = fc_lport_bsg_request,
196 };
197
198 struct fc_function_template fcoe_vport_transport_function = {
199 .show_host_node_name = 1,
200 .show_host_port_name = 1,
201 .show_host_supported_classes = 1,
202 .show_host_supported_fc4s = 1,
203 .show_host_active_fc4s = 1,
204 .show_host_maxframe_size = 1,
205
206 .show_host_port_id = 1,
207 .show_host_supported_speeds = 1,
208 .get_host_speed = fc_get_host_speed,
209 .show_host_speed = 1,
210 .show_host_port_type = 1,
211 .get_host_port_state = fc_get_host_port_state,
212 .show_host_port_state = 1,
213 .show_host_symbolic_name = 1,
214
215 .dd_fcrport_size = sizeof(struct fc_rport_libfc_priv),
216 .show_rport_maxframe_size = 1,
217 .show_rport_supported_classes = 1,
218
219 .show_host_fabric_name = 1,
220 .show_starget_node_name = 1,
221 .show_starget_port_name = 1,
222 .show_starget_port_id = 1,
223 .set_rport_dev_loss_tmo = fc_set_rport_loss_tmo,
224 .show_rport_dev_loss_tmo = 1,
225 .get_fc_host_stats = fc_get_host_stats,
226 .issue_fc_host_lip = fcoe_reset,
227
228 .terminate_rport_io = fc_rport_terminate_io,
229
230 .bsg_request = fc_lport_bsg_request,
231 };
232
233 static struct scsi_host_template fcoe_shost_template = {
234 .module = THIS_MODULE,
235 .name = "FCoE Driver",
236 .proc_name = FCOE_NAME,
237 .queuecommand = fc_queuecommand,
238 .eh_abort_handler = fc_eh_abort,
239 .eh_device_reset_handler = fc_eh_device_reset,
240 .eh_host_reset_handler = fc_eh_host_reset,
241 .slave_alloc = fc_slave_alloc,
242 .change_queue_depth = fc_change_queue_depth,
243 .change_queue_type = fc_change_queue_type,
244 .this_id = -1,
245 .cmd_per_lun = 3,
246 .can_queue = FCOE_MAX_OUTSTANDING_COMMANDS,
247 .use_clustering = ENABLE_CLUSTERING,
248 .sg_tablesize = SG_ALL,
249 .max_sectors = 0xffff,
250 };
251
252 /**
253 * fcoe_interface_setup() - Setup a FCoE interface
254 * @fcoe: The new FCoE interface
255 * @netdev: The net device that the fcoe interface is on
256 *
257 * Returns : 0 for success
258 * Locking: must be called with the RTNL mutex held
259 */
260 static int fcoe_interface_setup(struct fcoe_interface *fcoe,
261 struct net_device *netdev)
262 {
263 struct fcoe_ctlr *fip = &fcoe->ctlr;
264 struct netdev_hw_addr *ha;
265 struct net_device *real_dev;
266 u8 flogi_maddr[ETH_ALEN];
267 const struct net_device_ops *ops;
268
269 fcoe->netdev = netdev;
270
271 /* Let LLD initialize for FCoE */
272 ops = netdev->netdev_ops;
273 if (ops->ndo_fcoe_enable) {
274 if (ops->ndo_fcoe_enable(netdev))
275 FCOE_NETDEV_DBG(netdev, "Failed to enable FCoE"
276 " specific feature for LLD.\n");
277 }
278
279 /* Do not support for bonding device */
280 if ((netdev->priv_flags & IFF_MASTER_ALB) ||
281 (netdev->priv_flags & IFF_SLAVE_INACTIVE) ||
282 (netdev->priv_flags & IFF_MASTER_8023AD)) {
283 FCOE_NETDEV_DBG(netdev, "Bonded interfaces not supported\n");
284 return -EOPNOTSUPP;
285 }
286
287 /* look for SAN MAC address, if multiple SAN MACs exist, only
288 * use the first one for SPMA */
289 real_dev = (netdev->priv_flags & IFF_802_1Q_VLAN) ?
290 vlan_dev_real_dev(netdev) : netdev;
291 rcu_read_lock();
292 for_each_dev_addr(real_dev, ha) {
293 if ((ha->type == NETDEV_HW_ADDR_T_SAN) &&
294 (is_valid_ether_addr(ha->addr))) {
295 memcpy(fip->ctl_src_addr, ha->addr, ETH_ALEN);
296 fip->spma = 1;
297 break;
298 }
299 }
300 rcu_read_unlock();
301
302 /* setup Source Mac Address */
303 if (!fip->spma)
304 memcpy(fip->ctl_src_addr, netdev->dev_addr, netdev->addr_len);
305
306 /*
307 * Add FCoE MAC address as second unicast MAC address
308 * or enter promiscuous mode if not capable of listening
309 * for multiple unicast MACs.
310 */
311 memcpy(flogi_maddr, (u8[6]) FC_FCOE_FLOGI_MAC, ETH_ALEN);
312 dev_unicast_add(netdev, flogi_maddr);
313 if (fip->spma)
314 dev_unicast_add(netdev, fip->ctl_src_addr);
315 dev_mc_add(netdev, FIP_ALL_ENODE_MACS, ETH_ALEN, 0);
316
317 /*
318 * setup the receive function from ethernet driver
319 * on the ethertype for the given device
320 */
321 fcoe->fcoe_packet_type.func = fcoe_rcv;
322 fcoe->fcoe_packet_type.type = __constant_htons(ETH_P_FCOE);
323 fcoe->fcoe_packet_type.dev = netdev;
324 dev_add_pack(&fcoe->fcoe_packet_type);
325
326 fcoe->fip_packet_type.func = fcoe_fip_recv;
327 fcoe->fip_packet_type.type = htons(ETH_P_FIP);
328 fcoe->fip_packet_type.dev = netdev;
329 dev_add_pack(&fcoe->fip_packet_type);
330
331 return 0;
332 }
333
334 /**
335 * fcoe_interface_create() - Create a FCoE interface on a net device
336 * @netdev: The net device to create the FCoE interface on
337 *
338 * Returns: pointer to a struct fcoe_interface or NULL on error
339 */
340 static struct fcoe_interface *fcoe_interface_create(struct net_device *netdev)
341 {
342 struct fcoe_interface *fcoe;
343 int err;
344
345 fcoe = kzalloc(sizeof(*fcoe), GFP_KERNEL);
346 if (!fcoe) {
347 FCOE_NETDEV_DBG(netdev, "Could not allocate fcoe structure\n");
348 return NULL;
349 }
350
351 dev_hold(netdev);
352 kref_init(&fcoe->kref);
353
354 /*
355 * Initialize FIP.
356 */
357 fcoe_ctlr_init(&fcoe->ctlr);
358 fcoe->ctlr.send = fcoe_fip_send;
359 fcoe->ctlr.update_mac = fcoe_update_src_mac;
360 fcoe->ctlr.get_src_addr = fcoe_get_src_mac;
361
362 err = fcoe_interface_setup(fcoe, netdev);
363 if (err) {
364 fcoe_ctlr_destroy(&fcoe->ctlr);
365 kfree(fcoe);
366 dev_put(netdev);
367 return NULL;
368 }
369
370 return fcoe;
371 }
372
373 /**
374 * fcoe_interface_cleanup() - Clean up a FCoE interface
375 * @fcoe: The FCoE interface to be cleaned up
376 *
377 * Caller must be holding the RTNL mutex
378 */
379 void fcoe_interface_cleanup(struct fcoe_interface *fcoe)
380 {
381 struct net_device *netdev = fcoe->netdev;
382 struct fcoe_ctlr *fip = &fcoe->ctlr;
383 u8 flogi_maddr[ETH_ALEN];
384 const struct net_device_ops *ops;
385
386 /*
387 * Don't listen for Ethernet packets anymore.
388 * synchronize_net() ensures that the packet handlers are not running
389 * on another CPU. dev_remove_pack() would do that, this calls the
390 * unsyncronized version __dev_remove_pack() to avoid multiple delays.
391 */
392 __dev_remove_pack(&fcoe->fcoe_packet_type);
393 __dev_remove_pack(&fcoe->fip_packet_type);
394 synchronize_net();
395
396 /* Delete secondary MAC addresses */
397 memcpy(flogi_maddr, (u8[6]) FC_FCOE_FLOGI_MAC, ETH_ALEN);
398 dev_unicast_delete(netdev, flogi_maddr);
399 if (fip->spma)
400 dev_unicast_delete(netdev, fip->ctl_src_addr);
401 dev_mc_delete(netdev, FIP_ALL_ENODE_MACS, ETH_ALEN, 0);
402
403 /* Tell the LLD we are done w/ FCoE */
404 ops = netdev->netdev_ops;
405 if (ops->ndo_fcoe_disable) {
406 if (ops->ndo_fcoe_disable(netdev))
407 FCOE_NETDEV_DBG(netdev, "Failed to disable FCoE"
408 " specific feature for LLD.\n");
409 }
410 }
411
412 /**
413 * fcoe_interface_release() - fcoe_port kref release function
414 * @kref: Embedded reference count in an fcoe_interface struct
415 */
416 static void fcoe_interface_release(struct kref *kref)
417 {
418 struct fcoe_interface *fcoe;
419 struct net_device *netdev;
420
421 fcoe = container_of(kref, struct fcoe_interface, kref);
422 netdev = fcoe->netdev;
423 /* tear-down the FCoE controller */
424 fcoe_ctlr_destroy(&fcoe->ctlr);
425 kfree(fcoe);
426 dev_put(netdev);
427 }
428
429 /**
430 * fcoe_interface_get() - Get a reference to a FCoE interface
431 * @fcoe: The FCoE interface to be held
432 */
433 static inline void fcoe_interface_get(struct fcoe_interface *fcoe)
434 {
435 kref_get(&fcoe->kref);
436 }
437
438 /**
439 * fcoe_interface_put() - Put a reference to a FCoE interface
440 * @fcoe: The FCoE interface to be released
441 */
442 static inline void fcoe_interface_put(struct fcoe_interface *fcoe)
443 {
444 kref_put(&fcoe->kref, fcoe_interface_release);
445 }
446
447 /**
448 * fcoe_fip_recv() - Handler for received FIP frames
449 * @skb: The receive skb
450 * @netdev: The associated net device
451 * @ptype: The packet_type structure which was used to register this handler
452 * @orig_dev: The original net_device the the skb was received on.
453 * (in case dev is a bond)
454 *
455 * Returns: 0 for success
456 */
457 static int fcoe_fip_recv(struct sk_buff *skb, struct net_device *netdev,
458 struct packet_type *ptype,
459 struct net_device *orig_dev)
460 {
461 struct fcoe_interface *fcoe;
462
463 fcoe = container_of(ptype, struct fcoe_interface, fip_packet_type);
464 fcoe_ctlr_recv(&fcoe->ctlr, skb);
465 return 0;
466 }
467
468 /**
469 * fcoe_fip_send() - Send an Ethernet-encapsulated FIP frame
470 * @fip: The FCoE controller
471 * @skb: The FIP packet to be sent
472 */
473 static void fcoe_fip_send(struct fcoe_ctlr *fip, struct sk_buff *skb)
474 {
475 skb->dev = fcoe_from_ctlr(fip)->netdev;
476 dev_queue_xmit(skb);
477 }
478
479 /**
480 * fcoe_update_src_mac() - Update the Ethernet MAC filters
481 * @lport: The local port to update the source MAC on
482 * @addr: Unicast MAC address to add
483 *
484 * Remove any previously-set unicast MAC filter.
485 * Add secondary FCoE MAC address filter for our OUI.
486 */
487 static void fcoe_update_src_mac(struct fc_lport *lport, u8 *addr)
488 {
489 struct fcoe_port *port = lport_priv(lport);
490 struct fcoe_interface *fcoe = port->fcoe;
491
492 rtnl_lock();
493 if (!is_zero_ether_addr(port->data_src_addr))
494 dev_unicast_delete(fcoe->netdev, port->data_src_addr);
495 if (!is_zero_ether_addr(addr))
496 dev_unicast_add(fcoe->netdev, addr);
497 memcpy(port->data_src_addr, addr, ETH_ALEN);
498 rtnl_unlock();
499 }
500
501 /**
502 * fcoe_get_src_mac() - return the Ethernet source address for an lport
503 * @lport: libfc lport
504 */
505 static u8 *fcoe_get_src_mac(struct fc_lport *lport)
506 {
507 struct fcoe_port *port = lport_priv(lport);
508
509 return port->data_src_addr;
510 }
511
512 /**
513 * fcoe_lport_config() - Set up a local port
514 * @lport: The local port to be setup
515 *
516 * Returns: 0 for success
517 */
518 static int fcoe_lport_config(struct fc_lport *lport)
519 {
520 lport->link_up = 0;
521 lport->qfull = 0;
522 lport->max_retry_count = 3;
523 lport->max_rport_retry_count = 3;
524 lport->e_d_tov = 2 * 1000; /* FC-FS default */
525 lport->r_a_tov = 2 * 2 * 1000;
526 lport->service_params = (FCP_SPPF_INIT_FCN | FCP_SPPF_RD_XRDY_DIS |
527 FCP_SPPF_RETRY | FCP_SPPF_CONF_COMPL);
528 lport->does_npiv = 1;
529
530 fc_lport_init_stats(lport);
531
532 /* lport fc_lport related configuration */
533 fc_lport_config(lport);
534
535 /* offload related configuration */
536 lport->crc_offload = 0;
537 lport->seq_offload = 0;
538 lport->lro_enabled = 0;
539 lport->lro_xid = 0;
540 lport->lso_max = 0;
541
542 return 0;
543 }
544
545 /**
546 * fcoe_queue_timer() - The fcoe queue timer
547 * @lport: The local port
548 *
549 * Calls fcoe_check_wait_queue on timeout
550 */
551 static void fcoe_queue_timer(ulong lport)
552 {
553 fcoe_check_wait_queue((struct fc_lport *)lport, NULL);
554 }
555
556 /**
557 * fcoe_get_wwn() - Get the world wide name from LLD if it supports it
558 * @netdev: the associated net device
559 * @wwn: the output WWN
560 * @type: the type of WWN (WWPN or WWNN)
561 *
562 * Returns: 0 for success
563 */
564 static int fcoe_get_wwn(struct net_device *netdev, u64 *wwn, int type)
565 {
566 const struct net_device_ops *ops = netdev->netdev_ops;
567
568 if (ops->ndo_fcoe_get_wwn)
569 return ops->ndo_fcoe_get_wwn(netdev, wwn, type);
570 return -EINVAL;
571 }
572
573 /**
574 * fcoe_netdev_config() - Set up net devive for SW FCoE
575 * @lport: The local port that is associated with the net device
576 * @netdev: The associated net device
577 *
578 * Must be called after fcoe_lport_config() as it will use local port mutex
579 *
580 * Returns: 0 for success
581 */
582 static int fcoe_netdev_config(struct fc_lport *lport, struct net_device *netdev)
583 {
584 u32 mfs;
585 u64 wwnn, wwpn;
586 struct fcoe_interface *fcoe;
587 struct fcoe_port *port;
588 int vid = 0;
589
590 /* Setup lport private data to point to fcoe softc */
591 port = lport_priv(lport);
592 fcoe = port->fcoe;
593
594 /*
595 * Determine max frame size based on underlying device and optional
596 * user-configured limit. If the MFS is too low, fcoe_link_ok()
597 * will return 0, so do this first.
598 */
599 mfs = netdev->mtu;
600 if (netdev->features & NETIF_F_FCOE_MTU) {
601 mfs = FCOE_MTU;
602 FCOE_NETDEV_DBG(netdev, "Supports FCOE_MTU of %d bytes\n", mfs);
603 }
604 mfs -= (sizeof(struct fcoe_hdr) + sizeof(struct fcoe_crc_eof));
605 if (fc_set_mfs(lport, mfs))
606 return -EINVAL;
607
608 /* offload features support */
609 if (netdev->features & NETIF_F_SG)
610 lport->sg_supp = 1;
611
612 if (netdev->features & NETIF_F_FCOE_CRC) {
613 lport->crc_offload = 1;
614 FCOE_NETDEV_DBG(netdev, "Supports FCCRC offload\n");
615 }
616 if (netdev->features & NETIF_F_FSO) {
617 lport->seq_offload = 1;
618 lport->lso_max = netdev->gso_max_size;
619 FCOE_NETDEV_DBG(netdev, "Supports LSO for max len 0x%x\n",
620 lport->lso_max);
621 }
622 if (netdev->fcoe_ddp_xid) {
623 lport->lro_enabled = 1;
624 lport->lro_xid = netdev->fcoe_ddp_xid;
625 FCOE_NETDEV_DBG(netdev, "Supports LRO for max xid 0x%x\n",
626 lport->lro_xid);
627 }
628 skb_queue_head_init(&port->fcoe_pending_queue);
629 port->fcoe_pending_queue_active = 0;
630 setup_timer(&port->timer, fcoe_queue_timer, (unsigned long)lport);
631
632 if (!lport->vport) {
633 /*
634 * Use NAA 1&2 (FC-FS Rev. 2.0, Sec. 15) to generate WWNN/WWPN:
635 * For WWNN, we use NAA 1 w/ bit 27-16 of word 0 as 0.
636 * For WWPN, we use NAA 2 w/ bit 27-16 of word 0 from VLAN ID
637 */
638 if (netdev->priv_flags & IFF_802_1Q_VLAN)
639 vid = vlan_dev_vlan_id(netdev);
640
641 if (fcoe_get_wwn(netdev, &wwnn, NETDEV_FCOE_WWNN))
642 wwnn = fcoe_wwn_from_mac(fcoe->ctlr.ctl_src_addr, 1, 0);
643 fc_set_wwnn(lport, wwnn);
644 if (fcoe_get_wwn(netdev, &wwpn, NETDEV_FCOE_WWPN))
645 wwpn = fcoe_wwn_from_mac(fcoe->ctlr.ctl_src_addr,
646 2, vid);
647 fc_set_wwpn(lport, wwpn);
648 }
649
650 return 0;
651 }
652
653 /**
654 * fcoe_shost_config() - Set up the SCSI host associated with a local port
655 * @lport: The local port
656 * @shost: The SCSI host to associate with the local port
657 * @dev: The device associated with the SCSI host
658 *
659 * Must be called after fcoe_lport_config() and fcoe_netdev_config()
660 *
661 * Returns: 0 for success
662 */
663 static int fcoe_shost_config(struct fc_lport *lport, struct Scsi_Host *shost,
664 struct device *dev)
665 {
666 int rc = 0;
667
668 /* lport scsi host config */
669 lport->host->max_lun = FCOE_MAX_LUN;
670 lport->host->max_id = FCOE_MAX_FCP_TARGET;
671 lport->host->max_channel = 0;
672 if (lport->vport)
673 lport->host->transportt = fcoe_vport_transport_template;
674 else
675 lport->host->transportt = fcoe_transport_template;
676
677 /* add the new host to the SCSI-ml */
678 rc = scsi_add_host(lport->host, dev);
679 if (rc) {
680 FCOE_NETDEV_DBG(fcoe_netdev(lport), "fcoe_shost_config: "
681 "error on scsi_add_host\n");
682 return rc;
683 }
684
685 if (!lport->vport)
686 fc_host_max_npiv_vports(lport->host) = USHORT_MAX;
687
688 snprintf(fc_host_symbolic_name(lport->host), FC_SYMBOLIC_NAME_SIZE,
689 "%s v%s over %s", FCOE_NAME, FCOE_VERSION,
690 fcoe_netdev(lport)->name);
691
692 return 0;
693 }
694
695 /**
696 * fcoe_oem_match() - The match routine for the offloaded exchange manager
697 * @fp: The I/O frame
698 *
699 * This routine will be associated with an exchange manager (EM). When
700 * the libfc exchange handling code is looking for an EM to use it will
701 * call this routine and pass it the frame that it wishes to send. This
702 * routine will return True if the associated EM is to be used and False
703 * if the echange code should continue looking for an EM.
704 *
705 * The offload EM that this routine is associated with will handle any
706 * packets that are for SCSI read requests.
707 *
708 * Returns: True for read types I/O, otherwise returns false.
709 */
710 bool fcoe_oem_match(struct fc_frame *fp)
711 {
712 return fc_fcp_is_read(fr_fsp(fp)) &&
713 (fr_fsp(fp)->data_len > fcoe_ddp_min);
714 }
715
716 /**
717 * fcoe_em_config() - Allocate and configure an exchange manager
718 * @lport: The local port that the new EM will be associated with
719 *
720 * Returns: 0 on success
721 */
722 static inline int fcoe_em_config(struct fc_lport *lport)
723 {
724 struct fcoe_port *port = lport_priv(lport);
725 struct fcoe_interface *fcoe = port->fcoe;
726 struct fcoe_interface *oldfcoe = NULL;
727 struct net_device *old_real_dev, *cur_real_dev;
728 u16 min_xid = FCOE_MIN_XID;
729 u16 max_xid = FCOE_MAX_XID;
730
731 /*
732 * Check if need to allocate an em instance for
733 * offload exchange ids to be shared across all VN_PORTs/lport.
734 */
735 if (!lport->lro_enabled || !lport->lro_xid ||
736 (lport->lro_xid >= max_xid)) {
737 lport->lro_xid = 0;
738 goto skip_oem;
739 }
740
741 /*
742 * Reuse existing offload em instance in case
743 * it is already allocated on real eth device
744 */
745 if (fcoe->netdev->priv_flags & IFF_802_1Q_VLAN)
746 cur_real_dev = vlan_dev_real_dev(fcoe->netdev);
747 else
748 cur_real_dev = fcoe->netdev;
749
750 list_for_each_entry(oldfcoe, &fcoe_hostlist, list) {
751 if (oldfcoe->netdev->priv_flags & IFF_802_1Q_VLAN)
752 old_real_dev = vlan_dev_real_dev(oldfcoe->netdev);
753 else
754 old_real_dev = oldfcoe->netdev;
755
756 if (cur_real_dev == old_real_dev) {
757 fcoe->oem = oldfcoe->oem;
758 break;
759 }
760 }
761
762 if (fcoe->oem) {
763 if (!fc_exch_mgr_add(lport, fcoe->oem, fcoe_oem_match)) {
764 printk(KERN_ERR "fcoe_em_config: failed to add "
765 "offload em:%p on interface:%s\n",
766 fcoe->oem, fcoe->netdev->name);
767 return -ENOMEM;
768 }
769 } else {
770 fcoe->oem = fc_exch_mgr_alloc(lport, FC_CLASS_3,
771 FCOE_MIN_XID, lport->lro_xid,
772 fcoe_oem_match);
773 if (!fcoe->oem) {
774 printk(KERN_ERR "fcoe_em_config: failed to allocate "
775 "em for offload exches on interface:%s\n",
776 fcoe->netdev->name);
777 return -ENOMEM;
778 }
779 }
780
781 /*
782 * Exclude offload EM xid range from next EM xid range.
783 */
784 min_xid += lport->lro_xid + 1;
785
786 skip_oem:
787 if (!fc_exch_mgr_alloc(lport, FC_CLASS_3, min_xid, max_xid, NULL)) {
788 printk(KERN_ERR "fcoe_em_config: failed to "
789 "allocate em on interface %s\n", fcoe->netdev->name);
790 return -ENOMEM;
791 }
792
793 return 0;
794 }
795
796 /**
797 * fcoe_if_destroy() - Tear down a SW FCoE instance
798 * @lport: The local port to be destroyed
799 */
800 static void fcoe_if_destroy(struct fc_lport *lport)
801 {
802 struct fcoe_port *port = lport_priv(lport);
803 struct fcoe_interface *fcoe = port->fcoe;
804 struct net_device *netdev = fcoe->netdev;
805
806 FCOE_NETDEV_DBG(netdev, "Destroying interface\n");
807
808 /* Logout of the fabric */
809 fc_fabric_logoff(lport);
810
811 /* Cleanup the fc_lport */
812 fc_lport_destroy(lport);
813 fc_fcp_destroy(lport);
814
815 /* Stop the transmit retry timer */
816 del_timer_sync(&port->timer);
817
818 /* Free existing transmit skbs */
819 fcoe_clean_pending_queue(lport);
820
821 rtnl_lock();
822 if (!is_zero_ether_addr(port->data_src_addr))
823 dev_unicast_delete(netdev, port->data_src_addr);
824 rtnl_unlock();
825
826 /* receives may not be stopped until after this */
827 fcoe_interface_put(fcoe);
828
829 /* Free queued packets for the per-CPU receive threads */
830 fcoe_percpu_clean(lport);
831
832 /* Detach from the scsi-ml */
833 fc_remove_host(lport->host);
834 scsi_remove_host(lport->host);
835
836 /* There are no more rports or I/O, free the EM */
837 fc_exch_mgr_free(lport);
838
839 /* Free memory used by statistical counters */
840 fc_lport_free_stats(lport);
841
842 /* Release the Scsi_Host */
843 scsi_host_put(lport->host);
844 }
845
846 /**
847 * fcoe_ddp_setup() - Call a LLD's ddp_setup through the net device
848 * @lport: The local port to setup DDP for
849 * @xid: The exchange ID for this DDP transfer
850 * @sgl: The scatterlist describing this transfer
851 * @sgc: The number of sg items
852 *
853 * Returns: 0 if the DDP context was not configured
854 */
855 static int fcoe_ddp_setup(struct fc_lport *lport, u16 xid,
856 struct scatterlist *sgl, unsigned int sgc)
857 {
858 struct net_device *netdev = fcoe_netdev(lport);
859
860 if (netdev->netdev_ops->ndo_fcoe_ddp_setup)
861 return netdev->netdev_ops->ndo_fcoe_ddp_setup(netdev,
862 xid, sgl,
863 sgc);
864
865 return 0;
866 }
867
868 /**
869 * fcoe_ddp_done() - Call a LLD's ddp_done through the net device
870 * @lport: The local port to complete DDP on
871 * @xid: The exchange ID for this DDP transfer
872 *
873 * Returns: the length of data that have been completed by DDP
874 */
875 static int fcoe_ddp_done(struct fc_lport *lport, u16 xid)
876 {
877 struct net_device *netdev = fcoe_netdev(lport);
878
879 if (netdev->netdev_ops->ndo_fcoe_ddp_done)
880 return netdev->netdev_ops->ndo_fcoe_ddp_done(netdev, xid);
881 return 0;
882 }
883
884 /**
885 * fcoe_if_create() - Create a FCoE instance on an interface
886 * @fcoe: The FCoE interface to create a local port on
887 * @parent: The device pointer to be the parent in sysfs for the SCSI host
888 * @npiv: Indicates if the port is a vport or not
889 *
890 * Creates a fc_lport instance and a Scsi_Host instance and configure them.
891 *
892 * Returns: The allocated fc_lport or an error pointer
893 */
894 static struct fc_lport *fcoe_if_create(struct fcoe_interface *fcoe,
895 struct device *parent, int npiv)
896 {
897 struct net_device *netdev = fcoe->netdev;
898 struct fc_lport *lport = NULL;
899 struct fcoe_port *port;
900 struct Scsi_Host *shost;
901 int rc;
902 /*
903 * parent is only a vport if npiv is 1,
904 * but we'll only use vport in that case so go ahead and set it
905 */
906 struct fc_vport *vport = dev_to_vport(parent);
907
908 FCOE_NETDEV_DBG(netdev, "Create Interface\n");
909
910 if (!npiv) {
911 lport = libfc_host_alloc(&fcoe_shost_template,
912 sizeof(struct fcoe_port));
913 } else {
914 lport = libfc_vport_create(vport,
915 sizeof(struct fcoe_port));
916 }
917 if (!lport) {
918 FCOE_NETDEV_DBG(netdev, "Could not allocate host structure\n");
919 rc = -ENOMEM;
920 goto out;
921 }
922 shost = lport->host;
923 port = lport_priv(lport);
924 port->lport = lport;
925 port->fcoe = fcoe;
926 INIT_WORK(&port->destroy_work, fcoe_destroy_work);
927
928 /* configure a fc_lport including the exchange manager */
929 rc = fcoe_lport_config(lport);
930 if (rc) {
931 FCOE_NETDEV_DBG(netdev, "Could not configure lport for the "
932 "interface\n");
933 goto out_host_put;
934 }
935
936 if (npiv) {
937 FCOE_NETDEV_DBG(netdev, "Setting vport names, 0x%llX 0x%llX\n",
938 vport->node_name, vport->port_name);
939 fc_set_wwnn(lport, vport->node_name);
940 fc_set_wwpn(lport, vport->port_name);
941 }
942
943 /* configure lport network properties */
944 rc = fcoe_netdev_config(lport, netdev);
945 if (rc) {
946 FCOE_NETDEV_DBG(netdev, "Could not configure netdev for the "
947 "interface\n");
948 goto out_lp_destroy;
949 }
950
951 /* configure lport scsi host properties */
952 rc = fcoe_shost_config(lport, shost, parent);
953 if (rc) {
954 FCOE_NETDEV_DBG(netdev, "Could not configure shost for the "
955 "interface\n");
956 goto out_lp_destroy;
957 }
958
959 /* Initialize the library */
960 rc = fcoe_libfc_config(lport, &fcoe_libfc_fcn_templ);
961 if (rc) {
962 FCOE_NETDEV_DBG(netdev, "Could not configure libfc for the "
963 "interface\n");
964 goto out_lp_destroy;
965 }
966
967 if (!npiv) {
968 /*
969 * fcoe_em_alloc() and fcoe_hostlist_add() both
970 * need to be atomic with respect to other changes to the
971 * hostlist since fcoe_em_alloc() looks for an existing EM
972 * instance on host list updated by fcoe_hostlist_add().
973 *
974 * This is currently handled through the fcoe_config_mutex
975 * begin held.
976 */
977
978 /* lport exch manager allocation */
979 rc = fcoe_em_config(lport);
980 if (rc) {
981 FCOE_NETDEV_DBG(netdev, "Could not configure the EM "
982 "for the interface\n");
983 goto out_lp_destroy;
984 }
985 }
986
987 fcoe_interface_get(fcoe);
988 return lport;
989
990 out_lp_destroy:
991 fc_exch_mgr_free(lport);
992 out_host_put:
993 scsi_host_put(lport->host);
994 out:
995 return ERR_PTR(rc);
996 }
997
998 /**
999 * fcoe_if_init() - Initialization routine for fcoe.ko
1000 *
1001 * Attaches the SW FCoE transport to the FC transport
1002 *
1003 * Returns: 0 on success
1004 */
1005 static int __init fcoe_if_init(void)
1006 {
1007 /* attach to scsi transport */
1008 fcoe_transport_template = fc_attach_transport(&fcoe_transport_function);
1009 fcoe_vport_transport_template =
1010 fc_attach_transport(&fcoe_vport_transport_function);
1011
1012 if (!fcoe_transport_template) {
1013 printk(KERN_ERR "fcoe: Failed to attach to the FC transport\n");
1014 return -ENODEV;
1015 }
1016
1017 return 0;
1018 }
1019
1020 /**
1021 * fcoe_if_exit() - Tear down fcoe.ko
1022 *
1023 * Detaches the SW FCoE transport from the FC transport
1024 *
1025 * Returns: 0 on success
1026 */
1027 int __exit fcoe_if_exit(void)
1028 {
1029 fc_release_transport(fcoe_transport_template);
1030 fc_release_transport(fcoe_vport_transport_template);
1031 fcoe_transport_template = NULL;
1032 fcoe_vport_transport_template = NULL;
1033 return 0;
1034 }
1035
1036 /**
1037 * fcoe_percpu_thread_create() - Create a receive thread for an online CPU
1038 * @cpu: The CPU index of the CPU to create a receive thread for
1039 */
1040 static void fcoe_percpu_thread_create(unsigned int cpu)
1041 {
1042 struct fcoe_percpu_s *p;
1043 struct task_struct *thread;
1044
1045 p = &per_cpu(fcoe_percpu, cpu);
1046
1047 thread = kthread_create(fcoe_percpu_receive_thread,
1048 (void *)p, "fcoethread/%d", cpu);
1049
1050 if (likely(!IS_ERR(thread))) {
1051 kthread_bind(thread, cpu);
1052 wake_up_process(thread);
1053
1054 spin_lock_bh(&p->fcoe_rx_list.lock);
1055 p->thread = thread;
1056 spin_unlock_bh(&p->fcoe_rx_list.lock);
1057 }
1058 }
1059
1060 /**
1061 * fcoe_percpu_thread_destroy() - Remove the receive thread of a CPU
1062 * @cpu: The CPU index of the CPU whose receive thread is to be destroyed
1063 *
1064 * Destroys a per-CPU Rx thread. Any pending skbs are moved to the
1065 * current CPU's Rx thread. If the thread being destroyed is bound to
1066 * the CPU processing this context the skbs will be freed.
1067 */
1068 static void fcoe_percpu_thread_destroy(unsigned int cpu)
1069 {
1070 struct fcoe_percpu_s *p;
1071 struct task_struct *thread;
1072 struct page *crc_eof;
1073 struct sk_buff *skb;
1074 #ifdef CONFIG_SMP
1075 struct fcoe_percpu_s *p0;
1076 unsigned targ_cpu = smp_processor_id();
1077 #endif /* CONFIG_SMP */
1078
1079 FCOE_DBG("Destroying receive thread for CPU %d\n", cpu);
1080
1081 /* Prevent any new skbs from being queued for this CPU. */
1082 p = &per_cpu(fcoe_percpu, cpu);
1083 spin_lock_bh(&p->fcoe_rx_list.lock);
1084 thread = p->thread;
1085 p->thread = NULL;
1086 crc_eof = p->crc_eof_page;
1087 p->crc_eof_page = NULL;
1088 p->crc_eof_offset = 0;
1089 spin_unlock_bh(&p->fcoe_rx_list.lock);
1090
1091 #ifdef CONFIG_SMP
1092 /*
1093 * Don't bother moving the skb's if this context is running
1094 * on the same CPU that is having its thread destroyed. This
1095 * can easily happen when the module is removed.
1096 */
1097 if (cpu != targ_cpu) {
1098 p0 = &per_cpu(fcoe_percpu, targ_cpu);
1099 spin_lock_bh(&p0->fcoe_rx_list.lock);
1100 if (p0->thread) {
1101 FCOE_DBG("Moving frames from CPU %d to CPU %d\n",
1102 cpu, targ_cpu);
1103
1104 while ((skb = __skb_dequeue(&p->fcoe_rx_list)) != NULL)
1105 __skb_queue_tail(&p0->fcoe_rx_list, skb);
1106 spin_unlock_bh(&p0->fcoe_rx_list.lock);
1107 } else {
1108 /*
1109 * The targeted CPU is not initialized and cannot accept
1110 * new skbs. Unlock the targeted CPU and drop the skbs
1111 * on the CPU that is going offline.
1112 */
1113 while ((skb = __skb_dequeue(&p->fcoe_rx_list)) != NULL)
1114 kfree_skb(skb);
1115 spin_unlock_bh(&p0->fcoe_rx_list.lock);
1116 }
1117 } else {
1118 /*
1119 * This scenario occurs when the module is being removed
1120 * and all threads are being destroyed. skbs will continue
1121 * to be shifted from the CPU thread that is being removed
1122 * to the CPU thread associated with the CPU that is processing
1123 * the module removal. Once there is only one CPU Rx thread it
1124 * will reach this case and we will drop all skbs and later
1125 * stop the thread.
1126 */
1127 spin_lock_bh(&p->fcoe_rx_list.lock);
1128 while ((skb = __skb_dequeue(&p->fcoe_rx_list)) != NULL)
1129 kfree_skb(skb);
1130 spin_unlock_bh(&p->fcoe_rx_list.lock);
1131 }
1132 #else
1133 /*
1134 * This a non-SMP scenario where the singular Rx thread is
1135 * being removed. Free all skbs and stop the thread.
1136 */
1137 spin_lock_bh(&p->fcoe_rx_list.lock);
1138 while ((skb = __skb_dequeue(&p->fcoe_rx_list)) != NULL)
1139 kfree_skb(skb);
1140 spin_unlock_bh(&p->fcoe_rx_list.lock);
1141 #endif
1142
1143 if (thread)
1144 kthread_stop(thread);
1145
1146 if (crc_eof)
1147 put_page(crc_eof);
1148 }
1149
1150 /**
1151 * fcoe_cpu_callback() - Handler for CPU hotplug events
1152 * @nfb: The callback data block
1153 * @action: The event triggering the callback
1154 * @hcpu: The index of the CPU that the event is for
1155 *
1156 * This creates or destroys per-CPU data for fcoe
1157 *
1158 * Returns NOTIFY_OK always.
1159 */
1160 static int fcoe_cpu_callback(struct notifier_block *nfb,
1161 unsigned long action, void *hcpu)
1162 {
1163 unsigned cpu = (unsigned long)hcpu;
1164
1165 switch (action) {
1166 case CPU_ONLINE:
1167 case CPU_ONLINE_FROZEN:
1168 FCOE_DBG("CPU %x online: Create Rx thread\n", cpu);
1169 fcoe_percpu_thread_create(cpu);
1170 break;
1171 case CPU_DEAD:
1172 case CPU_DEAD_FROZEN:
1173 FCOE_DBG("CPU %x offline: Remove Rx thread\n", cpu);
1174 fcoe_percpu_thread_destroy(cpu);
1175 break;
1176 default:
1177 break;
1178 }
1179 return NOTIFY_OK;
1180 }
1181
1182 /**
1183 * fcoe_rcv() - Receive packets from a net device
1184 * @skb: The received packet
1185 * @netdev: The net device that the packet was received on
1186 * @ptype: The packet type context
1187 * @olddev: The last device net device
1188 *
1189 * This routine is called by NET_RX_SOFTIRQ. It receives a packet, builds a
1190 * FC frame and passes the frame to libfc.
1191 *
1192 * Returns: 0 for success
1193 */
1194 int fcoe_rcv(struct sk_buff *skb, struct net_device *netdev,
1195 struct packet_type *ptype, struct net_device *olddev)
1196 {
1197 struct fc_lport *lport;
1198 struct fcoe_rcv_info *fr;
1199 struct fcoe_interface *fcoe;
1200 struct fc_frame_header *fh;
1201 struct fcoe_percpu_s *fps;
1202 unsigned int cpu;
1203
1204 fcoe = container_of(ptype, struct fcoe_interface, fcoe_packet_type);
1205 lport = fcoe->ctlr.lp;
1206 if (unlikely(!lport)) {
1207 FCOE_NETDEV_DBG(netdev, "Cannot find hba structure");
1208 goto err2;
1209 }
1210 if (!lport->link_up)
1211 goto err2;
1212
1213 FCOE_NETDEV_DBG(netdev, "skb_info: len:%d data_len:%d head:%p "
1214 "data:%p tail:%p end:%p sum:%d dev:%s",
1215 skb->len, skb->data_len, skb->head, skb->data,
1216 skb_tail_pointer(skb), skb_end_pointer(skb),
1217 skb->csum, skb->dev ? skb->dev->name : "<NULL>");
1218
1219 /* check for FCOE packet type */
1220 if (unlikely(eth_hdr(skb)->h_proto != htons(ETH_P_FCOE))) {
1221 FCOE_NETDEV_DBG(netdev, "Wrong FC type frame");
1222 goto err;
1223 }
1224
1225 /*
1226 * Check for minimum frame length, and make sure required FCoE
1227 * and FC headers are pulled into the linear data area.
1228 */
1229 if (unlikely((skb->len < FCOE_MIN_FRAME) ||
1230 !pskb_may_pull(skb, FCOE_HEADER_LEN)))
1231 goto err;
1232
1233 skb_set_transport_header(skb, sizeof(struct fcoe_hdr));
1234 fh = (struct fc_frame_header *) skb_transport_header(skb);
1235
1236 fr = fcoe_dev_from_skb(skb);
1237 fr->fr_dev = lport;
1238 fr->ptype = ptype;
1239
1240 /*
1241 * In case the incoming frame's exchange is originated from
1242 * the initiator, then received frame's exchange id is ANDed
1243 * with fc_cpu_mask bits to get the same cpu on which exchange
1244 * was originated, otherwise just use the current cpu.
1245 */
1246 if (ntoh24(fh->fh_f_ctl) & FC_FC_EX_CTX)
1247 cpu = ntohs(fh->fh_ox_id) & fc_cpu_mask;
1248 else
1249 cpu = smp_processor_id();
1250
1251 fps = &per_cpu(fcoe_percpu, cpu);
1252 spin_lock_bh(&fps->fcoe_rx_list.lock);
1253 if (unlikely(!fps->thread)) {
1254 /*
1255 * The targeted CPU is not ready, let's target
1256 * the first CPU now. For non-SMP systems this
1257 * will check the same CPU twice.
1258 */
1259 FCOE_NETDEV_DBG(netdev, "CPU is online, but no receive thread "
1260 "ready for incoming skb- using first online "
1261 "CPU.\n");
1262
1263 spin_unlock_bh(&fps->fcoe_rx_list.lock);
1264 cpu = cpumask_first(cpu_online_mask);
1265 fps = &per_cpu(fcoe_percpu, cpu);
1266 spin_lock_bh(&fps->fcoe_rx_list.lock);
1267 if (!fps->thread) {
1268 spin_unlock_bh(&fps->fcoe_rx_list.lock);
1269 goto err;
1270 }
1271 }
1272
1273 /*
1274 * We now have a valid CPU that we're targeting for
1275 * this skb. We also have this receive thread locked,
1276 * so we're free to queue skbs into it's queue.
1277 */
1278
1279 /* If this is a SCSI-FCP frame, and this is already executing on the
1280 * correct CPU, and the queue for this CPU is empty, then go ahead
1281 * and process the frame directly in the softirq context.
1282 * This lets us process completions without context switching from the
1283 * NET_RX softirq, to our receive processing thread, and then back to
1284 * BLOCK softirq context.
1285 */
1286 if (fh->fh_type == FC_TYPE_FCP &&
1287 cpu == smp_processor_id() &&
1288 skb_queue_empty(&fps->fcoe_rx_list)) {
1289 spin_unlock_bh(&fps->fcoe_rx_list.lock);
1290 fcoe_recv_frame(skb);
1291 } else {
1292 __skb_queue_tail(&fps->fcoe_rx_list, skb);
1293 if (fps->fcoe_rx_list.qlen == 1)
1294 wake_up_process(fps->thread);
1295 spin_unlock_bh(&fps->fcoe_rx_list.lock);
1296 }
1297
1298 return 0;
1299 err:
1300 fc_lport_get_stats(lport)->ErrorFrames++;
1301
1302 err2:
1303 kfree_skb(skb);
1304 return -1;
1305 }
1306
1307 /**
1308 * fcoe_start_io() - Start FCoE I/O
1309 * @skb: The packet to be transmitted
1310 *
1311 * This routine is called from the net device to start transmitting
1312 * FCoE packets.
1313 *
1314 * Returns: 0 for success
1315 */
1316 static inline int fcoe_start_io(struct sk_buff *skb)
1317 {
1318 struct sk_buff *nskb;
1319 int rc;
1320
1321 nskb = skb_clone(skb, GFP_ATOMIC);
1322 rc = dev_queue_xmit(nskb);
1323 if (rc != 0)
1324 return rc;
1325 kfree_skb(skb);
1326 return 0;
1327 }
1328
1329 /**
1330 * fcoe_get_paged_crc_eof() - Allocate a page to be used for the trailer CRC
1331 * @skb: The packet to be transmitted
1332 * @tlen: The total length of the trailer
1333 *
1334 * This routine allocates a page for frame trailers. The page is re-used if
1335 * there is enough room left on it for the current trailer. If there isn't
1336 * enough buffer left a new page is allocated for the trailer. Reference to
1337 * the page from this function as well as the skbs using the page fragments
1338 * ensure that the page is freed at the appropriate time.
1339 *
1340 * Returns: 0 for success
1341 */
1342 static int fcoe_get_paged_crc_eof(struct sk_buff *skb, int tlen)
1343 {
1344 struct fcoe_percpu_s *fps;
1345 struct page *page;
1346
1347 fps = &get_cpu_var(fcoe_percpu);
1348 page = fps->crc_eof_page;
1349 if (!page) {
1350 page = alloc_page(GFP_ATOMIC);
1351 if (!page) {
1352 put_cpu_var(fcoe_percpu);
1353 return -ENOMEM;
1354 }
1355 fps->crc_eof_page = page;
1356 fps->crc_eof_offset = 0;
1357 }
1358
1359 get_page(page);
1360 skb_fill_page_desc(skb, skb_shinfo(skb)->nr_frags, page,
1361 fps->crc_eof_offset, tlen);
1362 skb->len += tlen;
1363 skb->data_len += tlen;
1364 skb->truesize += tlen;
1365 fps->crc_eof_offset += sizeof(struct fcoe_crc_eof);
1366
1367 if (fps->crc_eof_offset >= PAGE_SIZE) {
1368 fps->crc_eof_page = NULL;
1369 fps->crc_eof_offset = 0;
1370 put_page(page);
1371 }
1372 put_cpu_var(fcoe_percpu);
1373 return 0;
1374 }
1375
1376 /**
1377 * fcoe_fc_crc() - Calculates the CRC for a given frame
1378 * @fp: The frame to be checksumed
1379 *
1380 * This uses crc32() routine to calculate the CRC for a frame
1381 *
1382 * Return: The 32 bit CRC value
1383 */
1384 u32 fcoe_fc_crc(struct fc_frame *fp)
1385 {
1386 struct sk_buff *skb = fp_skb(fp);
1387 struct skb_frag_struct *frag;
1388 unsigned char *data;
1389 unsigned long off, len, clen;
1390 u32 crc;
1391 unsigned i;
1392
1393 crc = crc32(~0, skb->data, skb_headlen(skb));
1394
1395 for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
1396 frag = &skb_shinfo(skb)->frags[i];
1397 off = frag->page_offset;
1398 len = frag->size;
1399 while (len > 0) {
1400 clen = min(len, PAGE_SIZE - (off & ~PAGE_MASK));
1401 data = kmap_atomic(frag->page + (off >> PAGE_SHIFT),
1402 KM_SKB_DATA_SOFTIRQ);
1403 crc = crc32(crc, data + (off & ~PAGE_MASK), clen);
1404 kunmap_atomic(data, KM_SKB_DATA_SOFTIRQ);
1405 off += clen;
1406 len -= clen;
1407 }
1408 }
1409 return crc;
1410 }
1411
1412 /**
1413 * fcoe_xmit() - Transmit a FCoE frame
1414 * @lport: The local port that the frame is to be transmitted for
1415 * @fp: The frame to be transmitted
1416 *
1417 * Return: 0 for success
1418 */
1419 int fcoe_xmit(struct fc_lport *lport, struct fc_frame *fp)
1420 {
1421 int wlen;
1422 u32 crc;
1423 struct ethhdr *eh;
1424 struct fcoe_crc_eof *cp;
1425 struct sk_buff *skb;
1426 struct fcoe_dev_stats *stats;
1427 struct fc_frame_header *fh;
1428 unsigned int hlen; /* header length implies the version */
1429 unsigned int tlen; /* trailer length */
1430 unsigned int elen; /* eth header, may include vlan */
1431 struct fcoe_port *port = lport_priv(lport);
1432 struct fcoe_interface *fcoe = port->fcoe;
1433 u8 sof, eof;
1434 struct fcoe_hdr *hp;
1435
1436 WARN_ON((fr_len(fp) % sizeof(u32)) != 0);
1437
1438 fh = fc_frame_header_get(fp);
1439 skb = fp_skb(fp);
1440 wlen = skb->len / FCOE_WORD_TO_BYTE;
1441
1442 if (!lport->link_up) {
1443 kfree_skb(skb);
1444 return 0;
1445 }
1446
1447 if (unlikely(fh->fh_r_ctl == FC_RCTL_ELS_REQ) &&
1448 fcoe_ctlr_els_send(&fcoe->ctlr, lport, skb))
1449 return 0;
1450
1451 sof = fr_sof(fp);
1452 eof = fr_eof(fp);
1453
1454 elen = sizeof(struct ethhdr);
1455 hlen = sizeof(struct fcoe_hdr);
1456 tlen = sizeof(struct fcoe_crc_eof);
1457 wlen = (skb->len - tlen + sizeof(crc)) / FCOE_WORD_TO_BYTE;
1458
1459 /* crc offload */
1460 if (likely(lport->crc_offload)) {
1461 skb->ip_summed = CHECKSUM_PARTIAL;
1462 skb->csum_start = skb_headroom(skb);
1463 skb->csum_offset = skb->len;
1464 crc = 0;
1465 } else {
1466 skb->ip_summed = CHECKSUM_NONE;
1467 crc = fcoe_fc_crc(fp);
1468 }
1469
1470 /* copy port crc and eof to the skb buff */
1471 if (skb_is_nonlinear(skb)) {
1472 skb_frag_t *frag;
1473 if (fcoe_get_paged_crc_eof(skb, tlen)) {
1474 kfree_skb(skb);
1475 return -ENOMEM;
1476 }
1477 frag = &skb_shinfo(skb)->frags[skb_shinfo(skb)->nr_frags - 1];
1478 cp = kmap_atomic(frag->page, KM_SKB_DATA_SOFTIRQ)
1479 + frag->page_offset;
1480 } else {
1481 cp = (struct fcoe_crc_eof *)skb_put(skb, tlen);
1482 }
1483
1484 memset(cp, 0, sizeof(*cp));
1485 cp->fcoe_eof = eof;
1486 cp->fcoe_crc32 = cpu_to_le32(~crc);
1487
1488 if (skb_is_nonlinear(skb)) {
1489 kunmap_atomic(cp, KM_SKB_DATA_SOFTIRQ);
1490 cp = NULL;
1491 }
1492
1493 /* adjust skb network/transport offsets to match mac/fcoe/port */
1494 skb_push(skb, elen + hlen);
1495 skb_reset_mac_header(skb);
1496 skb_reset_network_header(skb);
1497 skb->mac_len = elen;
1498 skb->protocol = htons(ETH_P_FCOE);
1499 skb->dev = fcoe->netdev;
1500
1501 /* fill up mac and fcoe headers */
1502 eh = eth_hdr(skb);
1503 eh->h_proto = htons(ETH_P_FCOE);
1504 if (fcoe->ctlr.map_dest)
1505 fc_fcoe_set_mac(eh->h_dest, fh->fh_d_id);
1506 else
1507 /* insert GW address */
1508 memcpy(eh->h_dest, fcoe->ctlr.dest_addr, ETH_ALEN);
1509
1510 if (unlikely(fcoe->ctlr.flogi_oxid != FC_XID_UNKNOWN))
1511 memcpy(eh->h_source, fcoe->ctlr.ctl_src_addr, ETH_ALEN);
1512 else
1513 memcpy(eh->h_source, port->data_src_addr, ETH_ALEN);
1514
1515 hp = (struct fcoe_hdr *)(eh + 1);
1516 memset(hp, 0, sizeof(*hp));
1517 if (FC_FCOE_VER)
1518 FC_FCOE_ENCAPS_VER(hp, FC_FCOE_VER);
1519 hp->fcoe_sof = sof;
1520
1521 /* fcoe lso, mss is in max_payload which is non-zero for FCP data */
1522 if (lport->seq_offload && fr_max_payload(fp)) {
1523 skb_shinfo(skb)->gso_type = SKB_GSO_FCOE;
1524 skb_shinfo(skb)->gso_size = fr_max_payload(fp);
1525 } else {
1526 skb_shinfo(skb)->gso_type = 0;
1527 skb_shinfo(skb)->gso_size = 0;
1528 }
1529 /* update tx stats: regardless if LLD fails */
1530 stats = fc_lport_get_stats(lport);
1531 stats->TxFrames++;
1532 stats->TxWords += wlen;
1533
1534 /* send down to lld */
1535 fr_dev(fp) = lport;
1536 if (port->fcoe_pending_queue.qlen)
1537 fcoe_check_wait_queue(lport, skb);
1538 else if (fcoe_start_io(skb))
1539 fcoe_check_wait_queue(lport, skb);
1540
1541 return 0;
1542 }
1543
1544 /**
1545 * fcoe_percpu_flush_done() - Indicate per-CPU queue flush completion
1546 * @skb: The completed skb (argument required by destructor)
1547 */
1548 static void fcoe_percpu_flush_done(struct sk_buff *skb)
1549 {
1550 complete(&fcoe_flush_completion);
1551 }
1552
1553 /**
1554 * fcoe_recv_frame() - process a single received frame
1555 * @skb: frame to process
1556 */
1557 static void fcoe_recv_frame(struct sk_buff *skb)
1558 {
1559 u32 fr_len;
1560 struct fc_lport *lport;
1561 struct fcoe_rcv_info *fr;
1562 struct fcoe_dev_stats *stats;
1563 struct fc_frame_header *fh;
1564 struct fcoe_crc_eof crc_eof;
1565 struct fc_frame *fp;
1566 u8 *mac = NULL;
1567 struct fcoe_port *port;
1568 struct fcoe_hdr *hp;
1569
1570 fr = fcoe_dev_from_skb(skb);
1571 lport = fr->fr_dev;
1572 if (unlikely(!lport)) {
1573 if (skb->destructor != fcoe_percpu_flush_done)
1574 FCOE_NETDEV_DBG(skb->dev, "NULL lport in skb");
1575 kfree_skb(skb);
1576 return;
1577 }
1578
1579 FCOE_NETDEV_DBG(skb->dev, "skb_info: len:%d data_len:%d "
1580 "head:%p data:%p tail:%p end:%p sum:%d dev:%s",
1581 skb->len, skb->data_len,
1582 skb->head, skb->data, skb_tail_pointer(skb),
1583 skb_end_pointer(skb), skb->csum,
1584 skb->dev ? skb->dev->name : "<NULL>");
1585
1586 /*
1587 * Save source MAC address before discarding header.
1588 */
1589 port = lport_priv(lport);
1590 if (skb_is_nonlinear(skb))
1591 skb_linearize(skb); /* not ideal */
1592 mac = eth_hdr(skb)->h_source;
1593
1594 /*
1595 * Frame length checks and setting up the header pointers
1596 * was done in fcoe_rcv already.
1597 */
1598 hp = (struct fcoe_hdr *) skb_network_header(skb);
1599 fh = (struct fc_frame_header *) skb_transport_header(skb);
1600
1601 stats = fc_lport_get_stats(lport);
1602 if (unlikely(FC_FCOE_DECAPS_VER(hp) != FC_FCOE_VER)) {
1603 if (stats->ErrorFrames < 5)
1604 printk(KERN_WARNING "fcoe: FCoE version "
1605 "mismatch: The frame has "
1606 "version %x, but the "
1607 "initiator supports version "
1608 "%x\n", FC_FCOE_DECAPS_VER(hp),
1609 FC_FCOE_VER);
1610 stats->ErrorFrames++;
1611 kfree_skb(skb);
1612 return;
1613 }
1614
1615 skb_pull(skb, sizeof(struct fcoe_hdr));
1616 fr_len = skb->len - sizeof(struct fcoe_crc_eof);
1617
1618 stats->RxFrames++;
1619 stats->RxWords += fr_len / FCOE_WORD_TO_BYTE;
1620
1621 fp = (struct fc_frame *)skb;
1622 fc_frame_init(fp);
1623 fr_dev(fp) = lport;
1624 fr_sof(fp) = hp->fcoe_sof;
1625
1626 /* Copy out the CRC and EOF trailer for access */
1627 if (skb_copy_bits(skb, fr_len, &crc_eof, sizeof(crc_eof))) {
1628 kfree_skb(skb);
1629 return;
1630 }
1631 fr_eof(fp) = crc_eof.fcoe_eof;
1632 fr_crc(fp) = crc_eof.fcoe_crc32;
1633 if (pskb_trim(skb, fr_len)) {
1634 kfree_skb(skb);
1635 return;
1636 }
1637
1638 /*
1639 * We only check CRC if no offload is available and if it is
1640 * it's solicited data, in which case, the FCP layer would
1641 * check it during the copy.
1642 */
1643 if (lport->crc_offload &&
1644 skb->ip_summed == CHECKSUM_UNNECESSARY)
1645 fr_flags(fp) &= ~FCPHF_CRC_UNCHECKED;
1646 else
1647 fr_flags(fp) |= FCPHF_CRC_UNCHECKED;
1648
1649 fh = fc_frame_header_get(fp);
1650 if (fh->fh_r_ctl == FC_RCTL_DD_SOL_DATA &&
1651 fh->fh_type == FC_TYPE_FCP) {
1652 fc_exch_recv(lport, fp);
1653 return;
1654 }
1655 if (fr_flags(fp) & FCPHF_CRC_UNCHECKED) {
1656 if (le32_to_cpu(fr_crc(fp)) !=
1657 ~crc32(~0, skb->data, fr_len)) {
1658 if (stats->InvalidCRCCount < 5)
1659 printk(KERN_WARNING "fcoe: dropping "
1660 "frame with CRC error\n");
1661 stats->InvalidCRCCount++;
1662 stats->ErrorFrames++;
1663 fc_frame_free(fp);
1664 return;
1665 }
1666 fr_flags(fp) &= ~FCPHF_CRC_UNCHECKED;
1667 }
1668 fc_exch_recv(lport, fp);
1669 }
1670
1671 /**
1672 * fcoe_percpu_receive_thread() - The per-CPU packet receive thread
1673 * @arg: The per-CPU context
1674 *
1675 * Return: 0 for success
1676 */
1677 int fcoe_percpu_receive_thread(void *arg)
1678 {
1679 struct fcoe_percpu_s *p = arg;
1680 struct sk_buff *skb;
1681
1682 set_user_nice(current, -20);
1683
1684 while (!kthread_should_stop()) {
1685
1686 spin_lock_bh(&p->fcoe_rx_list.lock);
1687 while ((skb = __skb_dequeue(&p->fcoe_rx_list)) == NULL) {
1688 set_current_state(TASK_INTERRUPTIBLE);
1689 spin_unlock_bh(&p->fcoe_rx_list.lock);
1690 schedule();
1691 set_current_state(TASK_RUNNING);
1692 if (kthread_should_stop())
1693 return 0;
1694 spin_lock_bh(&p->fcoe_rx_list.lock);
1695 }
1696 spin_unlock_bh(&p->fcoe_rx_list.lock);
1697 fcoe_recv_frame(skb);
1698 }
1699 return 0;
1700 }
1701
1702 /**
1703 * fcoe_check_wait_queue() - Attempt to clear the transmit backlog
1704 * @lport: The local port whose backlog is to be cleared
1705 *
1706 * This empties the wait_queue, dequeues the head of the wait_queue queue
1707 * and calls fcoe_start_io() for each packet. If all skb have been
1708 * transmitted it returns the qlen. If an error occurs it restores
1709 * wait_queue (to try again later) and returns -1.
1710 *
1711 * The wait_queue is used when the skb transmit fails. The failed skb
1712 * will go in the wait_queue which will be emptied by the timer function or
1713 * by the next skb transmit.
1714 */
1715 static void fcoe_check_wait_queue(struct fc_lport *lport, struct sk_buff *skb)
1716 {
1717 struct fcoe_port *port = lport_priv(lport);
1718 int rc;
1719
1720 spin_lock_bh(&port->fcoe_pending_queue.lock);
1721
1722 if (skb)
1723 __skb_queue_tail(&port->fcoe_pending_queue, skb);
1724
1725 if (port->fcoe_pending_queue_active)
1726 goto out;
1727 port->fcoe_pending_queue_active = 1;
1728
1729 while (port->fcoe_pending_queue.qlen) {
1730 /* keep qlen > 0 until fcoe_start_io succeeds */
1731 port->fcoe_pending_queue.qlen++;
1732 skb = __skb_dequeue(&port->fcoe_pending_queue);
1733
1734 spin_unlock_bh(&port->fcoe_pending_queue.lock);
1735 rc = fcoe_start_io(skb);
1736 spin_lock_bh(&port->fcoe_pending_queue.lock);
1737
1738 if (rc) {
1739 __skb_queue_head(&port->fcoe_pending_queue, skb);
1740 /* undo temporary increment above */
1741 port->fcoe_pending_queue.qlen--;
1742 break;
1743 }
1744 /* undo temporary increment above */
1745 port->fcoe_pending_queue.qlen--;
1746 }
1747
1748 if (port->fcoe_pending_queue.qlen < FCOE_LOW_QUEUE_DEPTH)
1749 lport->qfull = 0;
1750 if (port->fcoe_pending_queue.qlen && !timer_pending(&port->timer))
1751 mod_timer(&port->timer, jiffies + 2);
1752 port->fcoe_pending_queue_active = 0;
1753 out:
1754 if (port->fcoe_pending_queue.qlen > FCOE_MAX_QUEUE_DEPTH)
1755 lport->qfull = 1;
1756 spin_unlock_bh(&port->fcoe_pending_queue.lock);
1757 return;
1758 }
1759
1760 /**
1761 * fcoe_dev_setup() - Setup the link change notification interface
1762 */
1763 static void fcoe_dev_setup(void)
1764 {
1765 register_netdevice_notifier(&fcoe_notifier);
1766 }
1767
1768 /**
1769 * fcoe_dev_cleanup() - Cleanup the link change notification interface
1770 */
1771 static void fcoe_dev_cleanup(void)
1772 {
1773 unregister_netdevice_notifier(&fcoe_notifier);
1774 }
1775
1776 /**
1777 * fcoe_device_notification() - Handler for net device events
1778 * @notifier: The context of the notification
1779 * @event: The type of event
1780 * @ptr: The net device that the event was on
1781 *
1782 * This function is called by the Ethernet driver in case of link change event.
1783 *
1784 * Returns: 0 for success
1785 */
1786 static int fcoe_device_notification(struct notifier_block *notifier,
1787 ulong event, void *ptr)
1788 {
1789 struct fc_lport *lport = NULL;
1790 struct net_device *netdev = ptr;
1791 struct fcoe_interface *fcoe;
1792 struct fcoe_port *port;
1793 struct fcoe_dev_stats *stats;
1794 u32 link_possible = 1;
1795 u32 mfs;
1796 int rc = NOTIFY_OK;
1797
1798 list_for_each_entry(fcoe, &fcoe_hostlist, list) {
1799 if (fcoe->netdev == netdev) {
1800 lport = fcoe->ctlr.lp;
1801 break;
1802 }
1803 }
1804 if (!lport) {
1805 rc = NOTIFY_DONE;
1806 goto out;
1807 }
1808
1809 switch (event) {
1810 case NETDEV_DOWN:
1811 case NETDEV_GOING_DOWN:
1812 link_possible = 0;
1813 break;
1814 case NETDEV_UP:
1815 case NETDEV_CHANGE:
1816 break;
1817 case NETDEV_CHANGEMTU:
1818 if (netdev->features & NETIF_F_FCOE_MTU)
1819 break;
1820 mfs = netdev->mtu - (sizeof(struct fcoe_hdr) +
1821 sizeof(struct fcoe_crc_eof));
1822 if (mfs >= FC_MIN_MAX_FRAME)
1823 fc_set_mfs(lport, mfs);
1824 break;
1825 case NETDEV_REGISTER:
1826 break;
1827 case NETDEV_UNREGISTER:
1828 list_del(&fcoe->list);
1829 port = lport_priv(fcoe->ctlr.lp);
1830 fcoe_interface_cleanup(fcoe);
1831 schedule_work(&port->destroy_work);
1832 goto out;
1833 break;
1834 default:
1835 FCOE_NETDEV_DBG(netdev, "Unknown event %ld "
1836 "from netdev netlink\n", event);
1837 }
1838 if (link_possible && !fcoe_link_ok(lport))
1839 fcoe_ctlr_link_up(&fcoe->ctlr);
1840 else if (fcoe_ctlr_link_down(&fcoe->ctlr)) {
1841 stats = fc_lport_get_stats(lport);
1842 stats->LinkFailureCount++;
1843 fcoe_clean_pending_queue(lport);
1844 }
1845 out:
1846 return rc;
1847 }
1848
1849 /**
1850 * fcoe_if_to_netdev() - Parse a name buffer to get a net device
1851 * @buffer: The name of the net device
1852 *
1853 * Returns: NULL or a ptr to net_device
1854 */
1855 static struct net_device *fcoe_if_to_netdev(const char *buffer)
1856 {
1857 char *cp;
1858 char ifname[IFNAMSIZ + 2];
1859
1860 if (buffer) {
1861 strlcpy(ifname, buffer, IFNAMSIZ);
1862 cp = ifname + strlen(ifname);
1863 while (--cp >= ifname && *cp == '\n')
1864 *cp = '\0';
1865 return dev_get_by_name(&init_net, ifname);
1866 }
1867 return NULL;
1868 }
1869
1870 /**
1871 * fcoe_disable() - Disables a FCoE interface
1872 * @buffer: The name of the Ethernet interface to be disabled
1873 * @kp: The associated kernel parameter
1874 *
1875 * Called from sysfs.
1876 *
1877 * Returns: 0 for success
1878 */
1879 static int fcoe_disable(const char *buffer, struct kernel_param *kp)
1880 {
1881 struct fcoe_interface *fcoe;
1882 struct net_device *netdev;
1883 int rc = 0;
1884
1885 mutex_lock(&fcoe_config_mutex);
1886 #ifdef CONFIG_FCOE_MODULE
1887 /*
1888 * Make sure the module has been initialized, and is not about to be
1889 * removed. Module paramter sysfs files are writable before the
1890 * module_init function is called and after module_exit.
1891 */
1892 if (THIS_MODULE->state != MODULE_STATE_LIVE) {
1893 rc = -ENODEV;
1894 goto out_nodev;
1895 }
1896 #endif
1897
1898 netdev = fcoe_if_to_netdev(buffer);
1899 if (!netdev) {
1900 rc = -ENODEV;
1901 goto out_nodev;
1902 }
1903
1904 rtnl_lock();
1905 fcoe = fcoe_hostlist_lookup_port(netdev);
1906 rtnl_unlock();
1907
1908 if (fcoe)
1909 fc_fabric_logoff(fcoe->ctlr.lp);
1910 else
1911 rc = -ENODEV;
1912
1913 dev_put(netdev);
1914 out_nodev:
1915 mutex_unlock(&fcoe_config_mutex);
1916 return rc;
1917 }
1918
1919 /**
1920 * fcoe_enable() - Enables a FCoE interface
1921 * @buffer: The name of the Ethernet interface to be enabled
1922 * @kp: The associated kernel parameter
1923 *
1924 * Called from sysfs.
1925 *
1926 * Returns: 0 for success
1927 */
1928 static int fcoe_enable(const char *buffer, struct kernel_param *kp)
1929 {
1930 struct fcoe_interface *fcoe;
1931 struct net_device *netdev;
1932 int rc = 0;
1933
1934 mutex_lock(&fcoe_config_mutex);
1935 #ifdef CONFIG_FCOE_MODULE
1936 /*
1937 * Make sure the module has been initialized, and is not about to be
1938 * removed. Module paramter sysfs files are writable before the
1939 * module_init function is called and after module_exit.
1940 */
1941 if (THIS_MODULE->state != MODULE_STATE_LIVE) {
1942 rc = -ENODEV;
1943 goto out_nodev;
1944 }
1945 #endif
1946
1947 netdev = fcoe_if_to_netdev(buffer);
1948 if (!netdev) {
1949 rc = -ENODEV;
1950 goto out_nodev;
1951 }
1952
1953 rtnl_lock();
1954 fcoe = fcoe_hostlist_lookup_port(netdev);
1955 rtnl_unlock();
1956
1957 if (fcoe)
1958 rc = fc_fabric_login(fcoe->ctlr.lp);
1959 else
1960 rc = -ENODEV;
1961
1962 dev_put(netdev);
1963 out_nodev:
1964 mutex_unlock(&fcoe_config_mutex);
1965 return rc;
1966 }
1967
1968 /**
1969 * fcoe_destroy() - Destroy a FCoE interface
1970 * @buffer: The name of the Ethernet interface to be destroyed
1971 * @kp: The associated kernel parameter
1972 *
1973 * Called from sysfs.
1974 *
1975 * Returns: 0 for success
1976 */
1977 static int fcoe_destroy(const char *buffer, struct kernel_param *kp)
1978 {
1979 struct fcoe_interface *fcoe;
1980 struct net_device *netdev;
1981 int rc = 0;
1982
1983 mutex_lock(&fcoe_config_mutex);
1984 #ifdef CONFIG_FCOE_MODULE
1985 /*
1986 * Make sure the module has been initialized, and is not about to be
1987 * removed. Module paramter sysfs files are writable before the
1988 * module_init function is called and after module_exit.
1989 */
1990 if (THIS_MODULE->state != MODULE_STATE_LIVE) {
1991 rc = -ENODEV;
1992 goto out_nodev;
1993 }
1994 #endif
1995
1996 netdev = fcoe_if_to_netdev(buffer);
1997 if (!netdev) {
1998 rc = -ENODEV;
1999 goto out_nodev;
2000 }
2001
2002 rtnl_lock();
2003 fcoe = fcoe_hostlist_lookup_port(netdev);
2004 if (!fcoe) {
2005 rtnl_unlock();
2006 rc = -ENODEV;
2007 goto out_putdev;
2008 }
2009 list_del(&fcoe->list);
2010 fcoe_interface_cleanup(fcoe);
2011 rtnl_unlock();
2012 fcoe_if_destroy(fcoe->ctlr.lp);
2013 module_put(THIS_MODULE);
2014
2015 out_putdev:
2016 dev_put(netdev);
2017 out_nodev:
2018 mutex_unlock(&fcoe_config_mutex);
2019 return rc;
2020 }
2021
2022 /**
2023 * fcoe_destroy_work() - Destroy a FCoE port in a deferred work context
2024 * @work: Handle to the FCoE port to be destroyed
2025 */
2026 static void fcoe_destroy_work(struct work_struct *work)
2027 {
2028 struct fcoe_port *port;
2029
2030 port = container_of(work, struct fcoe_port, destroy_work);
2031 mutex_lock(&fcoe_config_mutex);
2032 fcoe_if_destroy(port->lport);
2033 mutex_unlock(&fcoe_config_mutex);
2034 }
2035
2036 /**
2037 * fcoe_create() - Create a fcoe interface
2038 * @buffer: The name of the Ethernet interface to create on
2039 * @kp: The associated kernel param
2040 *
2041 * Called from sysfs.
2042 *
2043 * Returns: 0 for success
2044 */
2045 static int fcoe_create(const char *buffer, struct kernel_param *kp)
2046 {
2047 int rc;
2048 struct fcoe_interface *fcoe;
2049 struct fc_lport *lport;
2050 struct net_device *netdev;
2051
2052 mutex_lock(&fcoe_config_mutex);
2053 #ifdef CONFIG_FCOE_MODULE
2054 /*
2055 * Make sure the module has been initialized, and is not about to be
2056 * removed. Module paramter sysfs files are writable before the
2057 * module_init function is called and after module_exit.
2058 */
2059 if (THIS_MODULE->state != MODULE_STATE_LIVE) {
2060 rc = -ENODEV;
2061 goto out_nodev;
2062 }
2063 #endif
2064
2065 if (!try_module_get(THIS_MODULE)) {
2066 rc = -EINVAL;
2067 goto out_nomod;
2068 }
2069
2070 rtnl_lock();
2071 netdev = fcoe_if_to_netdev(buffer);
2072 if (!netdev) {
2073 rc = -ENODEV;
2074 goto out_nodev;
2075 }
2076
2077 /* look for existing lport */
2078 if (fcoe_hostlist_lookup(netdev)) {
2079 rc = -EEXIST;
2080 goto out_putdev;
2081 }
2082
2083 fcoe = fcoe_interface_create(netdev);
2084 if (!fcoe) {
2085 rc = -ENOMEM;
2086 goto out_putdev;
2087 }
2088
2089 lport = fcoe_if_create(fcoe, &netdev->dev, 0);
2090 if (IS_ERR(lport)) {
2091 printk(KERN_ERR "fcoe: Failed to create interface (%s)\n",
2092 netdev->name);
2093 rc = -EIO;
2094 fcoe_interface_cleanup(fcoe);
2095 goto out_free;
2096 }
2097
2098 /* Make this the "master" N_Port */
2099 fcoe->ctlr.lp = lport;
2100
2101 /* add to lports list */
2102 fcoe_hostlist_add(lport);
2103
2104 /* start FIP Discovery and FLOGI */
2105 lport->boot_time = jiffies;
2106 fc_fabric_login(lport);
2107 if (!fcoe_link_ok(lport))
2108 fcoe_ctlr_link_up(&fcoe->ctlr);
2109
2110 /*
2111 * Release from init in fcoe_interface_create(), on success lport
2112 * should be holding a reference taken in fcoe_if_create().
2113 */
2114 fcoe_interface_put(fcoe);
2115 dev_put(netdev);
2116 rtnl_unlock();
2117 mutex_unlock(&fcoe_config_mutex);
2118
2119 return 0;
2120 out_free:
2121 fcoe_interface_put(fcoe);
2122 out_putdev:
2123 dev_put(netdev);
2124 out_nodev:
2125 rtnl_unlock();
2126 module_put(THIS_MODULE);
2127 out_nomod:
2128 mutex_unlock(&fcoe_config_mutex);
2129 return rc;
2130 }
2131
2132 /**
2133 * fcoe_link_ok() - Check if the link is OK for a local port
2134 * @lport: The local port to check link on
2135 *
2136 * Any permanently-disqualifying conditions have been previously checked.
2137 * This also updates the speed setting, which may change with link for 100/1000.
2138 *
2139 * This function should probably be checking for PAUSE support at some point
2140 * in the future. Currently Per-priority-pause is not determinable using
2141 * ethtool, so we shouldn't be restrictive until that problem is resolved.
2142 *
2143 * Returns: 0 if link is OK for use by FCoE.
2144 *
2145 */
2146 int fcoe_link_ok(struct fc_lport *lport)
2147 {
2148 struct fcoe_port *port = lport_priv(lport);
2149 struct net_device *netdev = port->fcoe->netdev;
2150 struct ethtool_cmd ecmd = { ETHTOOL_GSET };
2151
2152 if ((netdev->flags & IFF_UP) && netif_carrier_ok(netdev) &&
2153 (!dev_ethtool_get_settings(netdev, &ecmd))) {
2154 lport->link_supported_speeds &=
2155 ~(FC_PORTSPEED_1GBIT | FC_PORTSPEED_10GBIT);
2156 if (ecmd.supported & (SUPPORTED_1000baseT_Half |
2157 SUPPORTED_1000baseT_Full))
2158 lport->link_supported_speeds |= FC_PORTSPEED_1GBIT;
2159 if (ecmd.supported & SUPPORTED_10000baseT_Full)
2160 lport->link_supported_speeds |=
2161 FC_PORTSPEED_10GBIT;
2162 if (ecmd.speed == SPEED_1000)
2163 lport->link_speed = FC_PORTSPEED_1GBIT;
2164 if (ecmd.speed == SPEED_10000)
2165 lport->link_speed = FC_PORTSPEED_10GBIT;
2166
2167 return 0;
2168 }
2169 return -1;
2170 }
2171
2172 /**
2173 * fcoe_percpu_clean() - Clear all pending skbs for an local port
2174 * @lport: The local port whose skbs are to be cleared
2175 *
2176 * Must be called with fcoe_create_mutex held to single-thread completion.
2177 *
2178 * This flushes the pending skbs by adding a new skb to each queue and
2179 * waiting until they are all freed. This assures us that not only are
2180 * there no packets that will be handled by the lport, but also that any
2181 * threads already handling packet have returned.
2182 */
2183 void fcoe_percpu_clean(struct fc_lport *lport)
2184 {
2185 struct fcoe_percpu_s *pp;
2186 struct fcoe_rcv_info *fr;
2187 struct sk_buff_head *list;
2188 struct sk_buff *skb, *next;
2189 struct sk_buff *head;
2190 unsigned int cpu;
2191
2192 for_each_possible_cpu(cpu) {
2193 pp = &per_cpu(fcoe_percpu, cpu);
2194 spin_lock_bh(&pp->fcoe_rx_list.lock);
2195 list = &pp->fcoe_rx_list;
2196 head = list->next;
2197 for (skb = head; skb != (struct sk_buff *)list;
2198 skb = next) {
2199 next = skb->next;
2200 fr = fcoe_dev_from_skb(skb);
2201 if (fr->fr_dev == lport) {
2202 __skb_unlink(skb, list);
2203 kfree_skb(skb);
2204 }
2205 }
2206
2207 if (!pp->thread || !cpu_online(cpu)) {
2208 spin_unlock_bh(&pp->fcoe_rx_list.lock);
2209 continue;
2210 }
2211
2212 skb = dev_alloc_skb(0);
2213 if (!skb) {
2214 spin_unlock_bh(&pp->fcoe_rx_list.lock);
2215 continue;
2216 }
2217 skb->destructor = fcoe_percpu_flush_done;
2218
2219 __skb_queue_tail(&pp->fcoe_rx_list, skb);
2220 if (pp->fcoe_rx_list.qlen == 1)
2221 wake_up_process(pp->thread);
2222 spin_unlock_bh(&pp->fcoe_rx_list.lock);
2223
2224 wait_for_completion(&fcoe_flush_completion);
2225 }
2226 }
2227
2228 /**
2229 * fcoe_clean_pending_queue() - Dequeue a skb and free it
2230 * @lport: The local port to dequeue a skb on
2231 */
2232 void fcoe_clean_pending_queue(struct fc_lport *lport)
2233 {
2234 struct fcoe_port *port = lport_priv(lport);
2235 struct sk_buff *skb;
2236
2237 spin_lock_bh(&port->fcoe_pending_queue.lock);
2238 while ((skb = __skb_dequeue(&port->fcoe_pending_queue)) != NULL) {
2239 spin_unlock_bh(&port->fcoe_pending_queue.lock);
2240 kfree_skb(skb);
2241 spin_lock_bh(&port->fcoe_pending_queue.lock);
2242 }
2243 spin_unlock_bh(&port->fcoe_pending_queue.lock);
2244 }
2245
2246 /**
2247 * fcoe_reset() - Reset a local port
2248 * @shost: The SCSI host associated with the local port to be reset
2249 *
2250 * Returns: Always 0 (return value required by FC transport template)
2251 */
2252 int fcoe_reset(struct Scsi_Host *shost)
2253 {
2254 struct fc_lport *lport = shost_priv(shost);
2255 fc_lport_reset(lport);
2256 return 0;
2257 }
2258
2259 /**
2260 * fcoe_hostlist_lookup_port() - Find the FCoE interface associated with a net device
2261 * @netdev: The net device used as a key
2262 *
2263 * Locking: Must be called with the RNL mutex held.
2264 *
2265 * Returns: NULL or the FCoE interface
2266 */
2267 static struct fcoe_interface *
2268 fcoe_hostlist_lookup_port(const struct net_device *netdev)
2269 {
2270 struct fcoe_interface *fcoe;
2271
2272 list_for_each_entry(fcoe, &fcoe_hostlist, list) {
2273 if (fcoe->netdev == netdev)
2274 return fcoe;
2275 }
2276 return NULL;
2277 }
2278
2279 /**
2280 * fcoe_hostlist_lookup() - Find the local port associated with a
2281 * given net device
2282 * @netdev: The netdevice used as a key
2283 *
2284 * Locking: Must be called with the RTNL mutex held
2285 *
2286 * Returns: NULL or the local port
2287 */
2288 static struct fc_lport *fcoe_hostlist_lookup(const struct net_device *netdev)
2289 {
2290 struct fcoe_interface *fcoe;
2291
2292 fcoe = fcoe_hostlist_lookup_port(netdev);
2293 return (fcoe) ? fcoe->ctlr.lp : NULL;
2294 }
2295
2296 /**
2297 * fcoe_hostlist_add() - Add the FCoE interface identified by a local
2298 * port to the hostlist
2299 * @lport: The local port that identifies the FCoE interface to be added
2300 *
2301 * Locking: must be called with the RTNL mutex held
2302 *
2303 * Returns: 0 for success
2304 */
2305 static int fcoe_hostlist_add(const struct fc_lport *lport)
2306 {
2307 struct fcoe_interface *fcoe;
2308 struct fcoe_port *port;
2309
2310 fcoe = fcoe_hostlist_lookup_port(fcoe_netdev(lport));
2311 if (!fcoe) {
2312 port = lport_priv(lport);
2313 fcoe = port->fcoe;
2314 list_add_tail(&fcoe->list, &fcoe_hostlist);
2315 }
2316 return 0;
2317 }
2318
2319 /**
2320 * fcoe_init() - Initialize fcoe.ko
2321 *
2322 * Returns: 0 on success, or a negative value on failure
2323 */
2324 static int __init fcoe_init(void)
2325 {
2326 struct fcoe_percpu_s *p;
2327 unsigned int cpu;
2328 int rc = 0;
2329
2330 mutex_lock(&fcoe_config_mutex);
2331
2332 for_each_possible_cpu(cpu) {
2333 p = &per_cpu(fcoe_percpu, cpu);
2334 skb_queue_head_init(&p->fcoe_rx_list);
2335 }
2336
2337 for_each_online_cpu(cpu)
2338 fcoe_percpu_thread_create(cpu);
2339
2340 /* Initialize per CPU interrupt thread */
2341 rc = register_hotcpu_notifier(&fcoe_cpu_notifier);
2342 if (rc)
2343 goto out_free;
2344
2345 /* Setup link change notification */
2346 fcoe_dev_setup();
2347
2348 rc = fcoe_if_init();
2349 if (rc)
2350 goto out_free;
2351
2352 mutex_unlock(&fcoe_config_mutex);
2353 return 0;
2354
2355 out_free:
2356 for_each_online_cpu(cpu) {
2357 fcoe_percpu_thread_destroy(cpu);
2358 }
2359 mutex_unlock(&fcoe_config_mutex);
2360 return rc;
2361 }
2362 module_init(fcoe_init);
2363
2364 /**
2365 * fcoe_exit() - Clean up fcoe.ko
2366 *
2367 * Returns: 0 on success or a negative value on failure
2368 */
2369 static void __exit fcoe_exit(void)
2370 {
2371 struct fcoe_interface *fcoe, *tmp;
2372 struct fcoe_port *port;
2373 unsigned int cpu;
2374
2375 mutex_lock(&fcoe_config_mutex);
2376
2377 fcoe_dev_cleanup();
2378
2379 /* releases the associated fcoe hosts */
2380 rtnl_lock();
2381 list_for_each_entry_safe(fcoe, tmp, &fcoe_hostlist, list) {
2382 list_del(&fcoe->list);
2383 port = lport_priv(fcoe->ctlr.lp);
2384 fcoe_interface_cleanup(fcoe);
2385 schedule_work(&port->destroy_work);
2386 }
2387 rtnl_unlock();
2388
2389 unregister_hotcpu_notifier(&fcoe_cpu_notifier);
2390
2391 for_each_online_cpu(cpu)
2392 fcoe_percpu_thread_destroy(cpu);
2393
2394 mutex_unlock(&fcoe_config_mutex);
2395
2396 /* flush any asyncronous interface destroys,
2397 * this should happen after the netdev notifier is unregistered */
2398 flush_scheduled_work();
2399 /* That will flush out all the N_Ports on the hostlist, but now we
2400 * may have NPIV VN_Ports scheduled for destruction */
2401 flush_scheduled_work();
2402
2403 /* detach from scsi transport
2404 * must happen after all destroys are done, therefor after the flush */
2405 fcoe_if_exit();
2406 }
2407 module_exit(fcoe_exit);
2408
2409 /**
2410 * fcoe_flogi_resp() - FCoE specific FLOGI and FDISC response handler
2411 * @seq: active sequence in the FLOGI or FDISC exchange
2412 * @fp: response frame, or error encoded in a pointer (timeout)
2413 * @arg: pointer the the fcoe_ctlr structure
2414 *
2415 * This handles MAC address managment for FCoE, then passes control on to
2416 * the libfc FLOGI response handler.
2417 */
2418 static void fcoe_flogi_resp(struct fc_seq *seq, struct fc_frame *fp, void *arg)
2419 {
2420 struct fcoe_ctlr *fip = arg;
2421 struct fc_exch *exch = fc_seq_exch(seq);
2422 struct fc_lport *lport = exch->lp;
2423 u8 *mac;
2424
2425 if (IS_ERR(fp))
2426 goto done;
2427
2428 mac = fr_cb(fp)->granted_mac;
2429 if (is_zero_ether_addr(mac)) {
2430 /* pre-FIP */
2431 if (fcoe_ctlr_recv_flogi(fip, lport, fp)) {
2432 fc_frame_free(fp);
2433 return;
2434 }
2435 }
2436 fcoe_update_src_mac(lport, mac);
2437 done:
2438 fc_lport_flogi_resp(seq, fp, lport);
2439 }
2440
2441 /**
2442 * fcoe_logo_resp() - FCoE specific LOGO response handler
2443 * @seq: active sequence in the LOGO exchange
2444 * @fp: response frame, or error encoded in a pointer (timeout)
2445 * @arg: pointer the the fcoe_ctlr structure
2446 *
2447 * This handles MAC address managment for FCoE, then passes control on to
2448 * the libfc LOGO response handler.
2449 */
2450 static void fcoe_logo_resp(struct fc_seq *seq, struct fc_frame *fp, void *arg)
2451 {
2452 struct fc_lport *lport = arg;
2453 static u8 zero_mac[ETH_ALEN] = { 0 };
2454
2455 if (!IS_ERR(fp))
2456 fcoe_update_src_mac(lport, zero_mac);
2457 fc_lport_logo_resp(seq, fp, lport);
2458 }
2459
2460 /**
2461 * fcoe_elsct_send - FCoE specific ELS handler
2462 *
2463 * This does special case handling of FIP encapsualted ELS exchanges for FCoE,
2464 * using FCoE specific response handlers and passing the FIP controller as
2465 * the argument (the lport is still available from the exchange).
2466 *
2467 * Most of the work here is just handed off to the libfc routine.
2468 */
2469 static struct fc_seq *fcoe_elsct_send(struct fc_lport *lport, u32 did,
2470 struct fc_frame *fp, unsigned int op,
2471 void (*resp)(struct fc_seq *,
2472 struct fc_frame *,
2473 void *),
2474 void *arg, u32 timeout)
2475 {
2476 struct fcoe_port *port = lport_priv(lport);
2477 struct fcoe_interface *fcoe = port->fcoe;
2478 struct fcoe_ctlr *fip = &fcoe->ctlr;
2479 struct fc_frame_header *fh = fc_frame_header_get(fp);
2480
2481 switch (op) {
2482 case ELS_FLOGI:
2483 case ELS_FDISC:
2484 return fc_elsct_send(lport, did, fp, op, fcoe_flogi_resp,
2485 fip, timeout);
2486 case ELS_LOGO:
2487 /* only hook onto fabric logouts, not port logouts */
2488 if (ntoh24(fh->fh_d_id) != FC_FID_FLOGI)
2489 break;
2490 return fc_elsct_send(lport, did, fp, op, fcoe_logo_resp,
2491 lport, timeout);
2492 }
2493 return fc_elsct_send(lport, did, fp, op, resp, arg, timeout);
2494 }
2495
2496 /**
2497 * fcoe_vport_create() - create an fc_host/scsi_host for a vport
2498 * @vport: fc_vport object to create a new fc_host for
2499 * @disabled: start the new fc_host in a disabled state by default?
2500 *
2501 * Returns: 0 for success
2502 */
2503 static int fcoe_vport_create(struct fc_vport *vport, bool disabled)
2504 {
2505 struct Scsi_Host *shost = vport_to_shost(vport);
2506 struct fc_lport *n_port = shost_priv(shost);
2507 struct fcoe_port *port = lport_priv(n_port);
2508 struct fcoe_interface *fcoe = port->fcoe;
2509 struct net_device *netdev = fcoe->netdev;
2510 struct fc_lport *vn_port;
2511
2512 mutex_lock(&fcoe_config_mutex);
2513 vn_port = fcoe_if_create(fcoe, &vport->dev, 1);
2514 mutex_unlock(&fcoe_config_mutex);
2515
2516 if (IS_ERR(vn_port)) {
2517 printk(KERN_ERR "fcoe: fcoe_vport_create(%s) failed\n",
2518 netdev->name);
2519 return -EIO;
2520 }
2521
2522 if (disabled) {
2523 fc_vport_set_state(vport, FC_VPORT_DISABLED);
2524 } else {
2525 vn_port->boot_time = jiffies;
2526 fc_fabric_login(vn_port);
2527 fc_vport_setlink(vn_port);
2528 }
2529 return 0;
2530 }
2531
2532 /**
2533 * fcoe_vport_destroy() - destroy the fc_host/scsi_host for a vport
2534 * @vport: fc_vport object that is being destroyed
2535 *
2536 * Returns: 0 for success
2537 */
2538 static int fcoe_vport_destroy(struct fc_vport *vport)
2539 {
2540 struct Scsi_Host *shost = vport_to_shost(vport);
2541 struct fc_lport *n_port = shost_priv(shost);
2542 struct fc_lport *vn_port = vport->dd_data;
2543 struct fcoe_port *port = lport_priv(vn_port);
2544
2545 mutex_lock(&n_port->lp_mutex);
2546 list_del(&vn_port->list);
2547 mutex_unlock(&n_port->lp_mutex);
2548 schedule_work(&port->destroy_work);
2549 return 0;
2550 }
2551
2552 /**
2553 * fcoe_vport_disable() - change vport state
2554 * @vport: vport to bring online/offline
2555 * @disable: should the vport be disabled?
2556 */
2557 static int fcoe_vport_disable(struct fc_vport *vport, bool disable)
2558 {
2559 struct fc_lport *lport = vport->dd_data;
2560
2561 if (disable) {
2562 fc_vport_set_state(vport, FC_VPORT_DISABLED);
2563 fc_fabric_logoff(lport);
2564 } else {
2565 lport->boot_time = jiffies;
2566 fc_fabric_login(lport);
2567 fc_vport_setlink(lport);
2568 }
2569
2570 return 0;
2571 }
2572
2573 /**
2574 * fcoe_vport_set_symbolic_name() - append vport string to symbolic name
2575 * @vport: fc_vport with a new symbolic name string
2576 *
2577 * After generating a new symbolic name string, a new RSPN_ID request is
2578 * sent to the name server. There is no response handler, so if it fails
2579 * for some reason it will not be retried.
2580 */
2581 static void fcoe_set_vport_symbolic_name(struct fc_vport *vport)
2582 {
2583 struct fc_lport *lport = vport->dd_data;
2584 struct fc_frame *fp;
2585 size_t len;
2586
2587 snprintf(fc_host_symbolic_name(lport->host), FC_SYMBOLIC_NAME_SIZE,
2588 "%s v%s over %s : %s", FCOE_NAME, FCOE_VERSION,
2589 fcoe_netdev(lport)->name, vport->symbolic_name);
2590
2591 if (lport->state != LPORT_ST_READY)
2592 return;
2593
2594 len = strnlen(fc_host_symbolic_name(lport->host), 255);
2595 fp = fc_frame_alloc(lport,
2596 sizeof(struct fc_ct_hdr) +
2597 sizeof(struct fc_ns_rspn) + len);
2598 if (!fp)
2599 return;
2600 lport->tt.elsct_send(lport, FC_FID_DIR_SERV, fp, FC_NS_RSPN_ID,
2601 NULL, NULL, 3 * lport->r_a_tov);
2602 }
2603
2604 /**
2605 * fcoe_get_lesb() - Fill the FCoE Link Error Status Block
2606 * @lport: the local port
2607 * @fc_lesb: the link error status block
2608 */
2609 static void fcoe_get_lesb(struct fc_lport *lport,
2610 struct fc_els_lesb *fc_lesb)
2611 {
2612 unsigned int cpu;
2613 u32 lfc, vlfc, mdac;
2614 struct fcoe_dev_stats *devst;
2615 struct fcoe_fc_els_lesb *lesb;
2616 struct net_device *netdev = fcoe_netdev(lport);
2617
2618 lfc = 0;
2619 vlfc = 0;
2620 mdac = 0;
2621 lesb = (struct fcoe_fc_els_lesb *)fc_lesb;
2622 memset(lesb, 0, sizeof(*lesb));
2623 for_each_possible_cpu(cpu) {
2624 devst = per_cpu_ptr(lport->dev_stats, cpu);
2625 lfc += devst->LinkFailureCount;
2626 vlfc += devst->VLinkFailureCount;
2627 mdac += devst->MissDiscAdvCount;
2628 }
2629 lesb->lesb_link_fail = htonl(lfc);
2630 lesb->lesb_vlink_fail = htonl(vlfc);
2631 lesb->lesb_miss_fka = htonl(mdac);
2632 lesb->lesb_fcs_error = htonl(dev_get_stats(netdev)->rx_crc_errors);
2633 }