Commit | Line | Data |
---|---|---|
42e9a92f RL |
1 | /* |
2 | * Copyright(c) 2007 Intel Corporation. All rights reserved. | |
3 | * Copyright(c) 2008 Red Hat, Inc. All rights reserved. | |
4 | * Copyright(c) 2008 Mike Christie | |
5 | * | |
6 | * This program is free software; you can redistribute it and/or modify it | |
7 | * under the terms and conditions of the GNU General Public License, | |
8 | * version 2, as published by the Free Software Foundation. | |
9 | * | |
10 | * This program is distributed in the hope it will be useful, but WITHOUT | |
11 | * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or | |
12 | * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for | |
13 | * more details. | |
14 | * | |
15 | * You should have received a copy of the GNU General Public License along with | |
16 | * this program; if not, write to the Free Software Foundation, Inc., | |
17 | * 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA. | |
18 | * | |
19 | * Maintained at www.Open-FCoE.org | |
20 | */ | |
21 | ||
22 | /* | |
23 | * Fibre Channel exchange and sequence handling. | |
24 | */ | |
25 | ||
26 | #include <linux/timer.h> | |
27 | #include <linux/gfp.h> | |
28 | #include <linux/err.h> | |
29 | ||
30 | #include <scsi/fc/fc_fc2.h> | |
31 | ||
32 | #include <scsi/libfc.h> | |
33 | #include <scsi/fc_encode.h> | |
34 | ||
8866a5d9 RL |
35 | #include "fc_libfc.h" |
36 | ||
e4bc50be VD |
37 | u16 fc_cpu_mask; /* cpu mask for possible cpus */ |
38 | EXPORT_SYMBOL(fc_cpu_mask); | |
39 | static u16 fc_cpu_order; /* 2's power to represent total possible cpus */ | |
3a3b42bf | 40 | static struct kmem_cache *fc_em_cachep; /* cache for exchanges */ |
42e9a92f RL |
41 | |
42 | /* | |
43 | * Structure and function definitions for managing Fibre Channel Exchanges | |
44 | * and Sequences. | |
45 | * | |
46 | * The three primary structures used here are fc_exch_mgr, fc_exch, and fc_seq. | |
47 | * | |
48 | * fc_exch_mgr holds the exchange state for an N port | |
49 | * | |
50 | * fc_exch holds state for one exchange and links to its active sequence. | |
51 | * | |
52 | * fc_seq holds the state for an individual sequence. | |
53 | */ | |
54 | ||
3a3b42bf RL |
55 | /** |
56 | * struct fc_exch_pool - Per cpu exchange pool | |
57 | * @next_index: Next possible free exchange index | |
58 | * @total_exches: Total allocated exchanges | |
59 | * @lock: Exch pool lock | |
60 | * @ex_list: List of exchanges | |
e4bc50be VD |
61 | * |
62 | * This structure manages per cpu exchanges in array of exchange pointers. | |
63 | * This array is allocated followed by struct fc_exch_pool memory for | |
64 | * assigned range of exchanges to per cpu pool. | |
65 | */ | |
66 | struct fc_exch_pool { | |
3a3b42bf RL |
67 | u16 next_index; |
68 | u16 total_exches; | |
69 | spinlock_t lock; | |
70 | struct list_head ex_list; | |
e4bc50be VD |
71 | }; |
72 | ||
3a3b42bf RL |
73 | /** |
74 | * struct fc_exch_mgr - The Exchange Manager (EM). | |
75 | * @class: Default class for new sequences | |
76 | * @kref: Reference counter | |
77 | * @min_xid: Minimum exchange ID | |
78 | * @max_xid: Maximum exchange ID | |
79 | * @ep_pool: Reserved exchange pointers | |
80 | * @pool_max_index: Max exch array index in exch pool | |
81 | * @pool: Per cpu exch pool | |
82 | * @stats: Statistics structure | |
42e9a92f RL |
83 | * |
84 | * This structure is the center for creating exchanges and sequences. | |
85 | * It manages the allocation of exchange IDs. | |
86 | */ | |
87 | struct fc_exch_mgr { | |
3a3b42bf RL |
88 | enum fc_class class; |
89 | struct kref kref; | |
90 | u16 min_xid; | |
91 | u16 max_xid; | |
92 | mempool_t *ep_pool; | |
93 | u16 pool_max_index; | |
94 | struct fc_exch_pool *pool; | |
42e9a92f RL |
95 | |
96 | /* | |
97 | * currently exchange mgr stats are updated but not used. | |
98 | * either stats can be expose via sysfs or remove them | |
99 | * all together if not used XXX | |
100 | */ | |
101 | struct { | |
102 | atomic_t no_free_exch; | |
103 | atomic_t no_free_exch_xid; | |
104 | atomic_t xid_not_found; | |
105 | atomic_t xid_busy; | |
106 | atomic_t seq_not_found; | |
107 | atomic_t non_bls_resp; | |
108 | } stats; | |
42e9a92f RL |
109 | }; |
110 | #define fc_seq_exch(sp) container_of(sp, struct fc_exch, seq) | |
111 | ||
3a3b42bf RL |
112 | /** |
113 | * struct fc_exch_mgr_anchor - primary structure for list of EMs | |
114 | * @ema_list: Exchange Manager Anchor list | |
115 | * @mp: Exchange Manager associated with this anchor | |
116 | * @match: Routine to determine if this anchor's EM should be used | |
117 | * | |
118 | * When walking the list of anchors the match routine will be called | |
119 | * for each anchor to determine if that EM should be used. The last | |
120 | * anchor in the list will always match to handle any exchanges not | |
121 | * handled by other EMs. The non-default EMs would be added to the | |
122 | * anchor list by HW that provides FCoE offloads. | |
123 | */ | |
96316099 VD |
124 | struct fc_exch_mgr_anchor { |
125 | struct list_head ema_list; | |
126 | struct fc_exch_mgr *mp; | |
127 | bool (*match)(struct fc_frame *); | |
128 | }; | |
129 | ||
42e9a92f RL |
130 | static void fc_exch_rrq(struct fc_exch *); |
131 | static void fc_seq_ls_acc(struct fc_seq *); | |
132 | static void fc_seq_ls_rjt(struct fc_seq *, enum fc_els_rjt_reason, | |
133 | enum fc_els_rjt_explan); | |
134 | static void fc_exch_els_rec(struct fc_seq *, struct fc_frame *); | |
135 | static void fc_exch_els_rrq(struct fc_seq *, struct fc_frame *); | |
42e9a92f RL |
136 | |
137 | /* | |
138 | * Internal implementation notes. | |
139 | * | |
140 | * The exchange manager is one by default in libfc but LLD may choose | |
141 | * to have one per CPU. The sequence manager is one per exchange manager | |
142 | * and currently never separated. | |
143 | * | |
144 | * Section 9.8 in FC-FS-2 specifies: "The SEQ_ID is a one-byte field | |
145 | * assigned by the Sequence Initiator that shall be unique for a specific | |
146 | * D_ID and S_ID pair while the Sequence is open." Note that it isn't | |
147 | * qualified by exchange ID, which one might think it would be. | |
148 | * In practice this limits the number of open sequences and exchanges to 256 | |
149 | * per session. For most targets we could treat this limit as per exchange. | |
150 | * | |
151 | * The exchange and its sequence are freed when the last sequence is received. | |
152 | * It's possible for the remote port to leave an exchange open without | |
153 | * sending any sequences. | |
154 | * | |
155 | * Notes on reference counts: | |
156 | * | |
157 | * Exchanges are reference counted and exchange gets freed when the reference | |
158 | * count becomes zero. | |
159 | * | |
160 | * Timeouts: | |
161 | * Sequences are timed out for E_D_TOV and R_A_TOV. | |
162 | * | |
163 | * Sequence event handling: | |
164 | * | |
165 | * The following events may occur on initiator sequences: | |
166 | * | |
167 | * Send. | |
168 | * For now, the whole thing is sent. | |
169 | * Receive ACK | |
170 | * This applies only to class F. | |
171 | * The sequence is marked complete. | |
172 | * ULP completion. | |
173 | * The upper layer calls fc_exch_done() when done | |
174 | * with exchange and sequence tuple. | |
175 | * RX-inferred completion. | |
176 | * When we receive the next sequence on the same exchange, we can | |
177 | * retire the previous sequence ID. (XXX not implemented). | |
178 | * Timeout. | |
179 | * R_A_TOV frees the sequence ID. If we're waiting for ACK, | |
180 | * E_D_TOV causes abort and calls upper layer response handler | |
181 | * with FC_EX_TIMEOUT error. | |
182 | * Receive RJT | |
183 | * XXX defer. | |
184 | * Send ABTS | |
185 | * On timeout. | |
186 | * | |
187 | * The following events may occur on recipient sequences: | |
188 | * | |
189 | * Receive | |
190 | * Allocate sequence for first frame received. | |
191 | * Hold during receive handler. | |
192 | * Release when final frame received. | |
193 | * Keep status of last N of these for the ELS RES command. XXX TBD. | |
194 | * Receive ABTS | |
195 | * Deallocate sequence | |
196 | * Send RJT | |
197 | * Deallocate | |
198 | * | |
199 | * For now, we neglect conditions where only part of a sequence was | |
200 | * received or transmitted, or where out-of-order receipt is detected. | |
201 | */ | |
202 | ||
203 | /* | |
204 | * Locking notes: | |
205 | * | |
206 | * The EM code run in a per-CPU worker thread. | |
207 | * | |
208 | * To protect against concurrency between a worker thread code and timers, | |
209 | * sequence allocation and deallocation must be locked. | |
210 | * - exchange refcnt can be done atomicly without locks. | |
211 | * - sequence allocation must be locked by exch lock. | |
b2f0091f VD |
212 | * - If the EM pool lock and ex_lock must be taken at the same time, then the |
213 | * EM pool lock must be taken before the ex_lock. | |
42e9a92f RL |
214 | */ |
215 | ||
216 | /* | |
217 | * opcode names for debugging. | |
218 | */ | |
219 | static char *fc_exch_rctl_names[] = FC_RCTL_NAMES_INIT; | |
220 | ||
221 | #define FC_TABLE_SIZE(x) (sizeof(x) / sizeof(x[0])) | |
222 | ||
3a3b42bf RL |
223 | /** |
224 | * fc_exch_name_lookup() - Lookup name by opcode | |
225 | * @op: Opcode to be looked up | |
226 | * @table: Opcode/name table | |
227 | * @max_index: Index not to be exceeded | |
228 | * | |
229 | * This routine is used to determine a human-readable string identifying | |
230 | * a R_CTL opcode. | |
231 | */ | |
42e9a92f RL |
232 | static inline const char *fc_exch_name_lookup(unsigned int op, char **table, |
233 | unsigned int max_index) | |
234 | { | |
235 | const char *name = NULL; | |
236 | ||
237 | if (op < max_index) | |
238 | name = table[op]; | |
239 | if (!name) | |
240 | name = "unknown"; | |
241 | return name; | |
242 | } | |
243 | ||
3a3b42bf RL |
244 | /** |
245 | * fc_exch_rctl_name() - Wrapper routine for fc_exch_name_lookup() | |
246 | * @op: The opcode to be looked up | |
247 | */ | |
42e9a92f RL |
248 | static const char *fc_exch_rctl_name(unsigned int op) |
249 | { | |
250 | return fc_exch_name_lookup(op, fc_exch_rctl_names, | |
251 | FC_TABLE_SIZE(fc_exch_rctl_names)); | |
252 | } | |
253 | ||
3a3b42bf RL |
254 | /** |
255 | * fc_exch_hold() - Increment an exchange's reference count | |
256 | * @ep: Echange to be held | |
42e9a92f | 257 | */ |
3a3b42bf | 258 | static inline void fc_exch_hold(struct fc_exch *ep) |
42e9a92f RL |
259 | { |
260 | atomic_inc(&ep->ex_refcnt); | |
261 | } | |
262 | ||
3a3b42bf RL |
263 | /** |
264 | * fc_exch_setup_hdr() - Initialize a FC header by initializing some fields | |
265 | * and determine SOF and EOF. | |
266 | * @ep: The exchange to that will use the header | |
267 | * @fp: The frame whose header is to be modified | |
268 | * @f_ctl: F_CTL bits that will be used for the frame header | |
269 | * | |
270 | * The fields initialized by this routine are: fh_ox_id, fh_rx_id, | |
271 | * fh_seq_id, fh_seq_cnt and the SOF and EOF. | |
42e9a92f RL |
272 | */ |
273 | static void fc_exch_setup_hdr(struct fc_exch *ep, struct fc_frame *fp, | |
274 | u32 f_ctl) | |
275 | { | |
276 | struct fc_frame_header *fh = fc_frame_header_get(fp); | |
277 | u16 fill; | |
278 | ||
279 | fr_sof(fp) = ep->class; | |
280 | if (ep->seq.cnt) | |
281 | fr_sof(fp) = fc_sof_normal(ep->class); | |
282 | ||
283 | if (f_ctl & FC_FC_END_SEQ) { | |
284 | fr_eof(fp) = FC_EOF_T; | |
285 | if (fc_sof_needs_ack(ep->class)) | |
286 | fr_eof(fp) = FC_EOF_N; | |
287 | /* | |
3a3b42bf | 288 | * From F_CTL. |
42e9a92f RL |
289 | * The number of fill bytes to make the length a 4-byte |
290 | * multiple is the low order 2-bits of the f_ctl. | |
291 | * The fill itself will have been cleared by the frame | |
292 | * allocation. | |
293 | * After this, the length will be even, as expected by | |
294 | * the transport. | |
295 | */ | |
296 | fill = fr_len(fp) & 3; | |
297 | if (fill) { | |
298 | fill = 4 - fill; | |
299 | /* TODO, this may be a problem with fragmented skb */ | |
300 | skb_put(fp_skb(fp), fill); | |
301 | hton24(fh->fh_f_ctl, f_ctl | fill); | |
302 | } | |
303 | } else { | |
304 | WARN_ON(fr_len(fp) % 4 != 0); /* no pad to non last frame */ | |
305 | fr_eof(fp) = FC_EOF_N; | |
306 | } | |
307 | ||
308 | /* | |
309 | * Initialize remainig fh fields | |
310 | * from fc_fill_fc_hdr | |
311 | */ | |
312 | fh->fh_ox_id = htons(ep->oxid); | |
313 | fh->fh_rx_id = htons(ep->rxid); | |
314 | fh->fh_seq_id = ep->seq.id; | |
315 | fh->fh_seq_cnt = htons(ep->seq.cnt); | |
316 | } | |
317 | ||
3a3b42bf RL |
318 | /** |
319 | * fc_exch_release() - Decrement an exchange's reference count | |
320 | * @ep: Exchange to be released | |
321 | * | |
322 | * If the reference count reaches zero and the exchange is complete, | |
323 | * it is freed. | |
42e9a92f RL |
324 | */ |
325 | static void fc_exch_release(struct fc_exch *ep) | |
326 | { | |
327 | struct fc_exch_mgr *mp; | |
328 | ||
329 | if (atomic_dec_and_test(&ep->ex_refcnt)) { | |
330 | mp = ep->em; | |
331 | if (ep->destructor) | |
332 | ep->destructor(&ep->seq, ep->arg); | |
aa6cd29b | 333 | WARN_ON(!(ep->esb_stat & ESB_ST_COMPLETE)); |
42e9a92f RL |
334 | mempool_free(ep, mp->ep_pool); |
335 | } | |
336 | } | |
337 | ||
3a3b42bf RL |
338 | /** |
339 | * fc_exch_done_locked() - Complete an exchange with the exchange lock held | |
340 | * @ep: The exchange that is complete | |
341 | */ | |
42e9a92f RL |
342 | static int fc_exch_done_locked(struct fc_exch *ep) |
343 | { | |
344 | int rc = 1; | |
345 | ||
346 | /* | |
347 | * We must check for completion in case there are two threads | |
348 | * tyring to complete this. But the rrq code will reuse the | |
349 | * ep, and in that case we only clear the resp and set it as | |
350 | * complete, so it can be reused by the timer to send the rrq. | |
351 | */ | |
352 | ep->resp = NULL; | |
353 | if (ep->state & FC_EX_DONE) | |
354 | return rc; | |
355 | ep->esb_stat |= ESB_ST_COMPLETE; | |
356 | ||
357 | if (!(ep->esb_stat & ESB_ST_REC_QUAL)) { | |
358 | ep->state |= FC_EX_DONE; | |
359 | if (cancel_delayed_work(&ep->timeout_work)) | |
360 | atomic_dec(&ep->ex_refcnt); /* drop hold for timer */ | |
361 | rc = 0; | |
362 | } | |
363 | return rc; | |
364 | } | |
365 | ||
3a3b42bf RL |
366 | /** |
367 | * fc_exch_ptr_get() - Return an exchange from an exchange pool | |
368 | * @pool: Exchange Pool to get an exchange from | |
369 | * @index: Index of the exchange within the pool | |
370 | * | |
371 | * Use the index to get an exchange from within an exchange pool. exches | |
372 | * will point to an array of exchange pointers. The index will select | |
373 | * the exchange within the array. | |
374 | */ | |
e4bc50be VD |
375 | static inline struct fc_exch *fc_exch_ptr_get(struct fc_exch_pool *pool, |
376 | u16 index) | |
377 | { | |
378 | struct fc_exch **exches = (struct fc_exch **)(pool + 1); | |
379 | return exches[index]; | |
380 | } | |
381 | ||
3a3b42bf RL |
382 | /** |
383 | * fc_exch_ptr_set() - Assign an exchange to a slot in an exchange pool | |
384 | * @pool: The pool to assign the exchange to | |
385 | * @index: The index in the pool where the exchange will be assigned | |
386 | * @ep: The exchange to assign to the pool | |
387 | */ | |
e4bc50be VD |
388 | static inline void fc_exch_ptr_set(struct fc_exch_pool *pool, u16 index, |
389 | struct fc_exch *ep) | |
390 | { | |
391 | ((struct fc_exch **)(pool + 1))[index] = ep; | |
392 | } | |
393 | ||
3a3b42bf RL |
394 | /** |
395 | * fc_exch_delete() - Delete an exchange | |
396 | * @ep: The exchange to be deleted | |
397 | */ | |
b2f0091f | 398 | static void fc_exch_delete(struct fc_exch *ep) |
42e9a92f | 399 | { |
b2f0091f | 400 | struct fc_exch_pool *pool; |
42e9a92f | 401 | |
b2f0091f VD |
402 | pool = ep->pool; |
403 | spin_lock_bh(&pool->lock); | |
404 | WARN_ON(pool->total_exches <= 0); | |
405 | pool->total_exches--; | |
406 | fc_exch_ptr_set(pool, (ep->xid - ep->em->min_xid) >> fc_cpu_order, | |
407 | NULL); | |
42e9a92f | 408 | list_del(&ep->ex_list); |
b2f0091f | 409 | spin_unlock_bh(&pool->lock); |
42e9a92f RL |
410 | fc_exch_release(ep); /* drop hold for exch in mp */ |
411 | } | |
412 | ||
3a3b42bf RL |
413 | /** |
414 | * fc_exch_timer_set_locked() - Start a timer for an exchange w/ the | |
415 | * the exchange lock held | |
416 | * @ep: The exchange whose timer will start | |
417 | * @timer_msec: The timeout period | |
418 | * | |
419 | * Used for upper level protocols to time out the exchange. | |
420 | * The timer is cancelled when it fires or when the exchange completes. | |
42e9a92f RL |
421 | */ |
422 | static inline void fc_exch_timer_set_locked(struct fc_exch *ep, | |
423 | unsigned int timer_msec) | |
424 | { | |
425 | if (ep->state & (FC_EX_RST_CLEANUP | FC_EX_DONE)) | |
426 | return; | |
427 | ||
cd305ce4 | 428 | FC_EXCH_DBG(ep, "Exchange timer armed\n"); |
7414705e | 429 | |
42e9a92f RL |
430 | if (schedule_delayed_work(&ep->timeout_work, |
431 | msecs_to_jiffies(timer_msec))) | |
432 | fc_exch_hold(ep); /* hold for timer */ | |
433 | } | |
434 | ||
3a3b42bf RL |
435 | /** |
436 | * fc_exch_timer_set() - Lock the exchange and set the timer | |
437 | * @ep: The exchange whose timer will start | |
438 | * @timer_msec: The timeout period | |
42e9a92f RL |
439 | */ |
440 | static void fc_exch_timer_set(struct fc_exch *ep, unsigned int timer_msec) | |
441 | { | |
442 | spin_lock_bh(&ep->ex_lock); | |
443 | fc_exch_timer_set_locked(ep, timer_msec); | |
444 | spin_unlock_bh(&ep->ex_lock); | |
445 | } | |
446 | ||
1a7b75ae | 447 | /** |
3a3b42bf RL |
448 | * fc_seq_send() - Send a frame using existing sequence/exchange pair |
449 | * @lport: The local port that the exchange will be sent on | |
450 | * @sp: The sequence to be sent | |
451 | * @fp: The frame to be sent on the exchange | |
1a7b75ae | 452 | */ |
3a3b42bf | 453 | static int fc_seq_send(struct fc_lport *lport, struct fc_seq *sp, |
1a7b75ae RL |
454 | struct fc_frame *fp) |
455 | { | |
456 | struct fc_exch *ep; | |
457 | struct fc_frame_header *fh = fc_frame_header_get(fp); | |
458 | int error; | |
3a3b42bf | 459 | u32 f_ctl; |
1a7b75ae RL |
460 | |
461 | ep = fc_seq_exch(sp); | |
462 | WARN_ON((ep->esb_stat & ESB_ST_SEQ_INIT) != ESB_ST_SEQ_INIT); | |
463 | ||
464 | f_ctl = ntoh24(fh->fh_f_ctl); | |
465 | fc_exch_setup_hdr(ep, fp, f_ctl); | |
466 | ||
467 | /* | |
468 | * update sequence count if this frame is carrying | |
469 | * multiple FC frames when sequence offload is enabled | |
470 | * by LLD. | |
471 | */ | |
472 | if (fr_max_payload(fp)) | |
473 | sp->cnt += DIV_ROUND_UP((fr_len(fp) - sizeof(*fh)), | |
474 | fr_max_payload(fp)); | |
475 | else | |
476 | sp->cnt++; | |
477 | ||
478 | /* | |
479 | * Send the frame. | |
480 | */ | |
3a3b42bf | 481 | error = lport->tt.frame_send(lport, fp); |
1a7b75ae RL |
482 | |
483 | /* | |
484 | * Update the exchange and sequence flags, | |
485 | * assuming all frames for the sequence have been sent. | |
486 | * We can only be called to send once for each sequence. | |
487 | */ | |
488 | spin_lock_bh(&ep->ex_lock); | |
489 | ep->f_ctl = f_ctl & ~FC_FC_FIRST_SEQ; /* not first seq */ | |
490 | if (f_ctl & (FC_FC_END_SEQ | FC_FC_SEQ_INIT)) | |
491 | ep->esb_stat &= ~ESB_ST_SEQ_INIT; | |
492 | spin_unlock_bh(&ep->ex_lock); | |
493 | return error; | |
494 | } | |
495 | ||
496 | /** | |
3a3b42bf RL |
497 | * fc_seq_alloc() - Allocate a sequence for a given exchange |
498 | * @ep: The exchange to allocate a new sequence for | |
499 | * @seq_id: The sequence ID to be used | |
1a7b75ae RL |
500 | * |
501 | * We don't support multiple originated sequences on the same exchange. | |
502 | * By implication, any previously originated sequence on this exchange | |
503 | * is complete, and we reallocate the same sequence. | |
504 | */ | |
505 | static struct fc_seq *fc_seq_alloc(struct fc_exch *ep, u8 seq_id) | |
506 | { | |
507 | struct fc_seq *sp; | |
508 | ||
509 | sp = &ep->seq; | |
510 | sp->ssb_stat = 0; | |
511 | sp->cnt = 0; | |
512 | sp->id = seq_id; | |
513 | return sp; | |
514 | } | |
515 | ||
3a3b42bf RL |
516 | /** |
517 | * fc_seq_start_next_locked() - Allocate a new sequence on the same | |
518 | * exchange as the supplied sequence | |
519 | * @sp: The sequence/exchange to get a new sequence for | |
520 | */ | |
1a7b75ae RL |
521 | static struct fc_seq *fc_seq_start_next_locked(struct fc_seq *sp) |
522 | { | |
523 | struct fc_exch *ep = fc_seq_exch(sp); | |
524 | ||
525 | sp = fc_seq_alloc(ep, ep->seq_id++); | |
526 | FC_EXCH_DBG(ep, "f_ctl %6x seq %2x\n", | |
527 | ep->f_ctl, sp->id); | |
528 | return sp; | |
529 | } | |
530 | ||
531 | /** | |
3a3b42bf RL |
532 | * fc_seq_start_next() - Lock the exchange and get a new sequence |
533 | * for a given sequence/exchange pair | |
534 | * @sp: The sequence/exchange to get a new exchange for | |
1a7b75ae RL |
535 | */ |
536 | static struct fc_seq *fc_seq_start_next(struct fc_seq *sp) | |
537 | { | |
538 | struct fc_exch *ep = fc_seq_exch(sp); | |
539 | ||
540 | spin_lock_bh(&ep->ex_lock); | |
541 | sp = fc_seq_start_next_locked(sp); | |
542 | spin_unlock_bh(&ep->ex_lock); | |
543 | ||
544 | return sp; | |
545 | } | |
546 | ||
547 | /** | |
3a3b42bf RL |
548 | * fc_seq_exch_abort() - Abort an exchange and sequence |
549 | * @req_sp: The sequence to be aborted | |
550 | * @timer_msec: The period of time to wait before aborting | |
551 | * | |
552 | * Generally called because of a timeout or an abort from the upper layer. | |
1a7b75ae RL |
553 | */ |
554 | static int fc_seq_exch_abort(const struct fc_seq *req_sp, | |
555 | unsigned int timer_msec) | |
42e9a92f RL |
556 | { |
557 | struct fc_seq *sp; | |
558 | struct fc_exch *ep; | |
559 | struct fc_frame *fp; | |
560 | int error; | |
561 | ||
562 | ep = fc_seq_exch(req_sp); | |
563 | ||
564 | spin_lock_bh(&ep->ex_lock); | |
565 | if (ep->esb_stat & (ESB_ST_COMPLETE | ESB_ST_ABNORMAL) || | |
566 | ep->state & (FC_EX_DONE | FC_EX_RST_CLEANUP)) { | |
567 | spin_unlock_bh(&ep->ex_lock); | |
568 | return -ENXIO; | |
569 | } | |
570 | ||
571 | /* | |
572 | * Send the abort on a new sequence if possible. | |
573 | */ | |
574 | sp = fc_seq_start_next_locked(&ep->seq); | |
575 | if (!sp) { | |
576 | spin_unlock_bh(&ep->ex_lock); | |
577 | return -ENOMEM; | |
578 | } | |
579 | ||
580 | ep->esb_stat |= ESB_ST_SEQ_INIT | ESB_ST_ABNORMAL; | |
581 | if (timer_msec) | |
582 | fc_exch_timer_set_locked(ep, timer_msec); | |
583 | spin_unlock_bh(&ep->ex_lock); | |
584 | ||
585 | /* | |
586 | * If not logged into the fabric, don't send ABTS but leave | |
587 | * sequence active until next timeout. | |
588 | */ | |
589 | if (!ep->sid) | |
590 | return 0; | |
591 | ||
592 | /* | |
593 | * Send an abort for the sequence that timed out. | |
594 | */ | |
595 | fp = fc_frame_alloc(ep->lp, 0); | |
596 | if (fp) { | |
597 | fc_fill_fc_hdr(fp, FC_RCTL_BA_ABTS, ep->did, ep->sid, | |
598 | FC_TYPE_BLS, FC_FC_END_SEQ | FC_FC_SEQ_INIT, 0); | |
599 | error = fc_seq_send(ep->lp, sp, fp); | |
600 | } else | |
601 | error = -ENOBUFS; | |
602 | return error; | |
603 | } | |
42e9a92f | 604 | |
3a3b42bf RL |
605 | /** |
606 | * fc_exch_timeout() - Handle exchange timer expiration | |
607 | * @work: The work_struct identifying the exchange that timed out | |
42e9a92f RL |
608 | */ |
609 | static void fc_exch_timeout(struct work_struct *work) | |
610 | { | |
611 | struct fc_exch *ep = container_of(work, struct fc_exch, | |
612 | timeout_work.work); | |
613 | struct fc_seq *sp = &ep->seq; | |
614 | void (*resp)(struct fc_seq *, struct fc_frame *fp, void *arg); | |
615 | void *arg; | |
616 | u32 e_stat; | |
617 | int rc = 1; | |
618 | ||
cd305ce4 RL |
619 | FC_EXCH_DBG(ep, "Exchange timed out\n"); |
620 | ||
42e9a92f RL |
621 | spin_lock_bh(&ep->ex_lock); |
622 | if (ep->state & (FC_EX_RST_CLEANUP | FC_EX_DONE)) | |
623 | goto unlock; | |
624 | ||
625 | e_stat = ep->esb_stat; | |
626 | if (e_stat & ESB_ST_COMPLETE) { | |
627 | ep->esb_stat = e_stat & ~ESB_ST_REC_QUAL; | |
a0cc1ecc | 628 | spin_unlock_bh(&ep->ex_lock); |
42e9a92f RL |
629 | if (e_stat & ESB_ST_REC_QUAL) |
630 | fc_exch_rrq(ep); | |
42e9a92f RL |
631 | goto done; |
632 | } else { | |
633 | resp = ep->resp; | |
634 | arg = ep->arg; | |
635 | ep->resp = NULL; | |
636 | if (e_stat & ESB_ST_ABNORMAL) | |
637 | rc = fc_exch_done_locked(ep); | |
638 | spin_unlock_bh(&ep->ex_lock); | |
639 | if (!rc) | |
b2f0091f | 640 | fc_exch_delete(ep); |
42e9a92f RL |
641 | if (resp) |
642 | resp(sp, ERR_PTR(-FC_EX_TIMEOUT), arg); | |
643 | fc_seq_exch_abort(sp, 2 * ep->r_a_tov); | |
644 | goto done; | |
645 | } | |
646 | unlock: | |
647 | spin_unlock_bh(&ep->ex_lock); | |
648 | done: | |
649 | /* | |
650 | * This release matches the hold taken when the timer was set. | |
651 | */ | |
652 | fc_exch_release(ep); | |
653 | } | |
654 | ||
52ff878c | 655 | /** |
3a3b42bf RL |
656 | * fc_exch_em_alloc() - Allocate an exchange from a specified EM. |
657 | * @lport: The local port that the exchange is for | |
658 | * @mp: The exchange manager that will allocate the exchange | |
42e9a92f | 659 | * |
d7179680 | 660 | * Returns pointer to allocated fc_exch with exch lock held. |
42e9a92f | 661 | */ |
52ff878c | 662 | static struct fc_exch *fc_exch_em_alloc(struct fc_lport *lport, |
d7179680 | 663 | struct fc_exch_mgr *mp) |
42e9a92f RL |
664 | { |
665 | struct fc_exch *ep; | |
b2f0091f VD |
666 | unsigned int cpu; |
667 | u16 index; | |
668 | struct fc_exch_pool *pool; | |
42e9a92f RL |
669 | |
670 | /* allocate memory for exchange */ | |
671 | ep = mempool_alloc(mp->ep_pool, GFP_ATOMIC); | |
672 | if (!ep) { | |
673 | atomic_inc(&mp->stats.no_free_exch); | |
674 | goto out; | |
675 | } | |
676 | memset(ep, 0, sizeof(*ep)); | |
677 | ||
b2f0091f VD |
678 | cpu = smp_processor_id(); |
679 | pool = per_cpu_ptr(mp->pool, cpu); | |
680 | spin_lock_bh(&pool->lock); | |
681 | index = pool->next_index; | |
682 | /* allocate new exch from pool */ | |
683 | while (fc_exch_ptr_get(pool, index)) { | |
684 | index = index == mp->pool_max_index ? 0 : index + 1; | |
685 | if (index == pool->next_index) | |
42e9a92f | 686 | goto err; |
42e9a92f | 687 | } |
b2f0091f | 688 | pool->next_index = index == mp->pool_max_index ? 0 : index + 1; |
42e9a92f RL |
689 | |
690 | fc_exch_hold(ep); /* hold for exch in mp */ | |
691 | spin_lock_init(&ep->ex_lock); | |
692 | /* | |
693 | * Hold exch lock for caller to prevent fc_exch_reset() | |
694 | * from releasing exch while fc_exch_alloc() caller is | |
695 | * still working on exch. | |
696 | */ | |
697 | spin_lock_bh(&ep->ex_lock); | |
698 | ||
b2f0091f VD |
699 | fc_exch_ptr_set(pool, index, ep); |
700 | list_add_tail(&ep->ex_list, &pool->ex_list); | |
42e9a92f | 701 | fc_seq_alloc(ep, ep->seq_id++); |
b2f0091f VD |
702 | pool->total_exches++; |
703 | spin_unlock_bh(&pool->lock); | |
42e9a92f RL |
704 | |
705 | /* | |
706 | * update exchange | |
707 | */ | |
b2f0091f | 708 | ep->oxid = ep->xid = (index << fc_cpu_order | cpu) + mp->min_xid; |
42e9a92f | 709 | ep->em = mp; |
b2f0091f | 710 | ep->pool = pool; |
52ff878c | 711 | ep->lp = lport; |
42e9a92f RL |
712 | ep->f_ctl = FC_FC_FIRST_SEQ; /* next seq is first seq */ |
713 | ep->rxid = FC_XID_UNKNOWN; | |
714 | ep->class = mp->class; | |
715 | INIT_DELAYED_WORK(&ep->timeout_work, fc_exch_timeout); | |
716 | out: | |
717 | return ep; | |
718 | err: | |
b2f0091f | 719 | spin_unlock_bh(&pool->lock); |
42e9a92f RL |
720 | atomic_inc(&mp->stats.no_free_exch_xid); |
721 | mempool_free(ep, mp->ep_pool); | |
722 | return NULL; | |
723 | } | |
52ff878c VD |
724 | |
725 | /** | |
3a3b42bf RL |
726 | * fc_exch_alloc() - Allocate an exchange from an EM on a |
727 | * local port's list of EMs. | |
728 | * @lport: The local port that will own the exchange | |
729 | * @fp: The FC frame that the exchange will be for | |
52ff878c | 730 | * |
3a3b42bf RL |
731 | * This function walks the list of exchange manager(EM) |
732 | * anchors to select an EM for a new exchange allocation. The | |
733 | * EM is selected when a NULL match function pointer is encountered | |
734 | * or when a call to a match function returns true. | |
52ff878c | 735 | */ |
1a7b75ae RL |
736 | static struct fc_exch *fc_exch_alloc(struct fc_lport *lport, |
737 | struct fc_frame *fp) | |
52ff878c VD |
738 | { |
739 | struct fc_exch_mgr_anchor *ema; | |
740 | struct fc_exch *ep; | |
741 | ||
742 | list_for_each_entry(ema, &lport->ema_list, ema_list) { | |
743 | if (!ema->match || ema->match(fp)) { | |
d7179680 | 744 | ep = fc_exch_em_alloc(lport, ema->mp); |
52ff878c VD |
745 | if (ep) |
746 | return ep; | |
747 | } | |
748 | } | |
749 | return NULL; | |
750 | } | |
42e9a92f | 751 | |
3a3b42bf RL |
752 | /** |
753 | * fc_exch_find() - Lookup and hold an exchange | |
754 | * @mp: The exchange manager to lookup the exchange from | |
755 | * @xid: The XID of the exchange to look up | |
42e9a92f RL |
756 | */ |
757 | static struct fc_exch *fc_exch_find(struct fc_exch_mgr *mp, u16 xid) | |
758 | { | |
b2f0091f | 759 | struct fc_exch_pool *pool; |
42e9a92f RL |
760 | struct fc_exch *ep = NULL; |
761 | ||
762 | if ((xid >= mp->min_xid) && (xid <= mp->max_xid)) { | |
b2f0091f VD |
763 | pool = per_cpu_ptr(mp->pool, xid & fc_cpu_mask); |
764 | spin_lock_bh(&pool->lock); | |
765 | ep = fc_exch_ptr_get(pool, (xid - mp->min_xid) >> fc_cpu_order); | |
42e9a92f RL |
766 | if (ep) { |
767 | fc_exch_hold(ep); | |
768 | WARN_ON(ep->xid != xid); | |
769 | } | |
b2f0091f | 770 | spin_unlock_bh(&pool->lock); |
42e9a92f RL |
771 | } |
772 | return ep; | |
773 | } | |
774 | ||
1a7b75ae RL |
775 | |
776 | /** | |
777 | * fc_exch_done() - Indicate that an exchange/sequence tuple is complete and | |
3a3b42bf RL |
778 | * the memory allocated for the related objects may be freed. |
779 | * @sp: The sequence that has completed | |
1a7b75ae RL |
780 | */ |
781 | static void fc_exch_done(struct fc_seq *sp) | |
42e9a92f RL |
782 | { |
783 | struct fc_exch *ep = fc_seq_exch(sp); | |
784 | int rc; | |
785 | ||
786 | spin_lock_bh(&ep->ex_lock); | |
787 | rc = fc_exch_done_locked(ep); | |
788 | spin_unlock_bh(&ep->ex_lock); | |
789 | if (!rc) | |
b2f0091f | 790 | fc_exch_delete(ep); |
42e9a92f | 791 | } |
42e9a92f | 792 | |
3a3b42bf RL |
793 | /** |
794 | * fc_exch_resp() - Allocate a new exchange for a response frame | |
795 | * @lport: The local port that the exchange was for | |
796 | * @mp: The exchange manager to allocate the exchange from | |
797 | * @fp: The response frame | |
798 | * | |
42e9a92f RL |
799 | * Sets the responder ID in the frame header. |
800 | */ | |
52ff878c VD |
801 | static struct fc_exch *fc_exch_resp(struct fc_lport *lport, |
802 | struct fc_exch_mgr *mp, | |
803 | struct fc_frame *fp) | |
42e9a92f RL |
804 | { |
805 | struct fc_exch *ep; | |
806 | struct fc_frame_header *fh; | |
42e9a92f | 807 | |
52ff878c | 808 | ep = fc_exch_alloc(lport, fp); |
42e9a92f RL |
809 | if (ep) { |
810 | ep->class = fc_frame_class(fp); | |
811 | ||
812 | /* | |
813 | * Set EX_CTX indicating we're responding on this exchange. | |
814 | */ | |
815 | ep->f_ctl |= FC_FC_EX_CTX; /* we're responding */ | |
816 | ep->f_ctl &= ~FC_FC_FIRST_SEQ; /* not new */ | |
817 | fh = fc_frame_header_get(fp); | |
818 | ep->sid = ntoh24(fh->fh_d_id); | |
819 | ep->did = ntoh24(fh->fh_s_id); | |
820 | ep->oid = ep->did; | |
821 | ||
822 | /* | |
823 | * Allocated exchange has placed the XID in the | |
824 | * originator field. Move it to the responder field, | |
825 | * and set the originator XID from the frame. | |
826 | */ | |
827 | ep->rxid = ep->xid; | |
828 | ep->oxid = ntohs(fh->fh_ox_id); | |
829 | ep->esb_stat |= ESB_ST_RESP | ESB_ST_SEQ_INIT; | |
830 | if ((ntoh24(fh->fh_f_ctl) & FC_FC_SEQ_INIT) == 0) | |
831 | ep->esb_stat &= ~ESB_ST_SEQ_INIT; | |
832 | ||
42e9a92f | 833 | fc_exch_hold(ep); /* hold for caller */ |
52ff878c | 834 | spin_unlock_bh(&ep->ex_lock); /* lock from fc_exch_alloc */ |
42e9a92f RL |
835 | } |
836 | return ep; | |
837 | } | |
838 | ||
3a3b42bf RL |
839 | /** |
840 | * fc_seq_lookup_recip() - Find a sequence where the other end | |
841 | * originated the sequence | |
842 | * @lport: The local port that the frame was sent to | |
843 | * @mp: The Exchange Manager to lookup the exchange from | |
844 | * @fp: The frame associated with the sequence we're looking for | |
845 | * | |
42e9a92f RL |
846 | * If fc_pf_rjt_reason is FC_RJT_NONE then this function will have a hold |
847 | * on the ep that should be released by the caller. | |
848 | */ | |
52ff878c VD |
849 | static enum fc_pf_rjt_reason fc_seq_lookup_recip(struct fc_lport *lport, |
850 | struct fc_exch_mgr *mp, | |
b2ab99c9 | 851 | struct fc_frame *fp) |
42e9a92f RL |
852 | { |
853 | struct fc_frame_header *fh = fc_frame_header_get(fp); | |
854 | struct fc_exch *ep = NULL; | |
855 | struct fc_seq *sp = NULL; | |
856 | enum fc_pf_rjt_reason reject = FC_RJT_NONE; | |
857 | u32 f_ctl; | |
858 | u16 xid; | |
859 | ||
860 | f_ctl = ntoh24(fh->fh_f_ctl); | |
861 | WARN_ON((f_ctl & FC_FC_SEQ_CTX) != 0); | |
862 | ||
863 | /* | |
864 | * Lookup or create the exchange if we will be creating the sequence. | |
865 | */ | |
866 | if (f_ctl & FC_FC_EX_CTX) { | |
867 | xid = ntohs(fh->fh_ox_id); /* we originated exch */ | |
868 | ep = fc_exch_find(mp, xid); | |
869 | if (!ep) { | |
870 | atomic_inc(&mp->stats.xid_not_found); | |
871 | reject = FC_RJT_OX_ID; | |
872 | goto out; | |
873 | } | |
874 | if (ep->rxid == FC_XID_UNKNOWN) | |
875 | ep->rxid = ntohs(fh->fh_rx_id); | |
876 | else if (ep->rxid != ntohs(fh->fh_rx_id)) { | |
877 | reject = FC_RJT_OX_ID; | |
878 | goto rel; | |
879 | } | |
880 | } else { | |
881 | xid = ntohs(fh->fh_rx_id); /* we are the responder */ | |
882 | ||
883 | /* | |
884 | * Special case for MDS issuing an ELS TEST with a | |
885 | * bad rxid of 0. | |
886 | * XXX take this out once we do the proper reject. | |
887 | */ | |
888 | if (xid == 0 && fh->fh_r_ctl == FC_RCTL_ELS_REQ && | |
889 | fc_frame_payload_op(fp) == ELS_TEST) { | |
890 | fh->fh_rx_id = htons(FC_XID_UNKNOWN); | |
891 | xid = FC_XID_UNKNOWN; | |
892 | } | |
893 | ||
894 | /* | |
895 | * new sequence - find the exchange | |
896 | */ | |
897 | ep = fc_exch_find(mp, xid); | |
898 | if ((f_ctl & FC_FC_FIRST_SEQ) && fc_sof_is_init(fr_sof(fp))) { | |
899 | if (ep) { | |
900 | atomic_inc(&mp->stats.xid_busy); | |
901 | reject = FC_RJT_RX_ID; | |
902 | goto rel; | |
903 | } | |
52ff878c | 904 | ep = fc_exch_resp(lport, mp, fp); |
42e9a92f RL |
905 | if (!ep) { |
906 | reject = FC_RJT_EXCH_EST; /* XXX */ | |
907 | goto out; | |
908 | } | |
909 | xid = ep->xid; /* get our XID */ | |
910 | } else if (!ep) { | |
911 | atomic_inc(&mp->stats.xid_not_found); | |
912 | reject = FC_RJT_RX_ID; /* XID not found */ | |
913 | goto out; | |
914 | } | |
915 | } | |
916 | ||
917 | /* | |
918 | * At this point, we have the exchange held. | |
919 | * Find or create the sequence. | |
920 | */ | |
921 | if (fc_sof_is_init(fr_sof(fp))) { | |
922 | sp = fc_seq_start_next(&ep->seq); | |
923 | if (!sp) { | |
924 | reject = FC_RJT_SEQ_XS; /* exchange shortage */ | |
925 | goto rel; | |
926 | } | |
927 | sp->id = fh->fh_seq_id; | |
928 | sp->ssb_stat |= SSB_ST_RESP; | |
929 | } else { | |
930 | sp = &ep->seq; | |
931 | if (sp->id != fh->fh_seq_id) { | |
932 | atomic_inc(&mp->stats.seq_not_found); | |
933 | reject = FC_RJT_SEQ_ID; /* sequence/exch should exist */ | |
934 | goto rel; | |
935 | } | |
936 | } | |
937 | WARN_ON(ep != fc_seq_exch(sp)); | |
938 | ||
939 | if (f_ctl & FC_FC_SEQ_INIT) | |
940 | ep->esb_stat |= ESB_ST_SEQ_INIT; | |
941 | ||
942 | fr_seq(fp) = sp; | |
943 | out: | |
944 | return reject; | |
945 | rel: | |
946 | fc_exch_done(&ep->seq); | |
947 | fc_exch_release(ep); /* hold from fc_exch_find/fc_exch_resp */ | |
948 | return reject; | |
949 | } | |
950 | ||
3a3b42bf RL |
951 | /** |
952 | * fc_seq_lookup_orig() - Find a sequence where this end | |
953 | * originated the sequence | |
954 | * @mp: The Exchange Manager to lookup the exchange from | |
955 | * @fp: The frame associated with the sequence we're looking for | |
956 | * | |
42e9a92f RL |
957 | * Does not hold the sequence for the caller. |
958 | */ | |
959 | static struct fc_seq *fc_seq_lookup_orig(struct fc_exch_mgr *mp, | |
960 | struct fc_frame *fp) | |
961 | { | |
962 | struct fc_frame_header *fh = fc_frame_header_get(fp); | |
963 | struct fc_exch *ep; | |
964 | struct fc_seq *sp = NULL; | |
965 | u32 f_ctl; | |
966 | u16 xid; | |
967 | ||
968 | f_ctl = ntoh24(fh->fh_f_ctl); | |
969 | WARN_ON((f_ctl & FC_FC_SEQ_CTX) != FC_FC_SEQ_CTX); | |
970 | xid = ntohs((f_ctl & FC_FC_EX_CTX) ? fh->fh_ox_id : fh->fh_rx_id); | |
971 | ep = fc_exch_find(mp, xid); | |
972 | if (!ep) | |
973 | return NULL; | |
974 | if (ep->seq.id == fh->fh_seq_id) { | |
975 | /* | |
976 | * Save the RX_ID if we didn't previously know it. | |
977 | */ | |
978 | sp = &ep->seq; | |
979 | if ((f_ctl & FC_FC_EX_CTX) != 0 && | |
980 | ep->rxid == FC_XID_UNKNOWN) { | |
981 | ep->rxid = ntohs(fh->fh_rx_id); | |
982 | } | |
983 | } | |
984 | fc_exch_release(ep); | |
985 | return sp; | |
986 | } | |
987 | ||
3a3b42bf RL |
988 | /** |
989 | * fc_exch_set_addr() - Set the source and destination IDs for an exchange | |
990 | * @ep: The exchange to set the addresses for | |
991 | * @orig_id: The originator's ID | |
992 | * @resp_id: The responder's ID | |
993 | * | |
42e9a92f RL |
994 | * Note this must be done before the first sequence of the exchange is sent. |
995 | */ | |
996 | static void fc_exch_set_addr(struct fc_exch *ep, | |
997 | u32 orig_id, u32 resp_id) | |
998 | { | |
999 | ep->oid = orig_id; | |
1000 | if (ep->esb_stat & ESB_ST_RESP) { | |
1001 | ep->sid = resp_id; | |
1002 | ep->did = orig_id; | |
1003 | } else { | |
1004 | ep->sid = orig_id; | |
1005 | ep->did = resp_id; | |
1006 | } | |
1007 | } | |
1008 | ||
1a7b75ae | 1009 | /** |
3a3b42bf RL |
1010 | * fc_seq_els_rsp_send() - Send an ELS response using infomation from |
1011 | * the existing sequence/exchange. | |
1012 | * @sp: The sequence/exchange to get information from | |
1013 | * @els_cmd: The ELS command to be sent | |
1014 | * @els_data: The ELS data to be sent | |
42e9a92f | 1015 | */ |
1a7b75ae RL |
1016 | static void fc_seq_els_rsp_send(struct fc_seq *sp, enum fc_els_cmd els_cmd, |
1017 | struct fc_seq_els_data *els_data) | |
42e9a92f RL |
1018 | { |
1019 | switch (els_cmd) { | |
1020 | case ELS_LS_RJT: | |
1021 | fc_seq_ls_rjt(sp, els_data->reason, els_data->explan); | |
1022 | break; | |
1023 | case ELS_LS_ACC: | |
1024 | fc_seq_ls_acc(sp); | |
1025 | break; | |
1026 | case ELS_RRQ: | |
1027 | fc_exch_els_rrq(sp, els_data->fp); | |
1028 | break; | |
1029 | case ELS_REC: | |
1030 | fc_exch_els_rec(sp, els_data->fp); | |
1031 | break; | |
1032 | default: | |
7414705e | 1033 | FC_EXCH_DBG(fc_seq_exch(sp), "Invalid ELS CMD:%x\n", els_cmd); |
42e9a92f RL |
1034 | } |
1035 | } | |
42e9a92f | 1036 | |
3a3b42bf RL |
1037 | /** |
1038 | * fc_seq_send_last() - Send a sequence that is the last in the exchange | |
1039 | * @sp: The sequence that is to be sent | |
1040 | * @fp: The frame that will be sent on the sequence | |
1041 | * @rctl: The R_CTL information to be sent | |
1042 | * @fh_type: The frame header type | |
42e9a92f RL |
1043 | */ |
1044 | static void fc_seq_send_last(struct fc_seq *sp, struct fc_frame *fp, | |
1045 | enum fc_rctl rctl, enum fc_fh_type fh_type) | |
1046 | { | |
1047 | u32 f_ctl; | |
1048 | struct fc_exch *ep = fc_seq_exch(sp); | |
1049 | ||
1050 | f_ctl = FC_FC_LAST_SEQ | FC_FC_END_SEQ | FC_FC_SEQ_INIT; | |
1051 | f_ctl |= ep->f_ctl; | |
1052 | fc_fill_fc_hdr(fp, rctl, ep->did, ep->sid, fh_type, f_ctl, 0); | |
1053 | fc_seq_send(ep->lp, sp, fp); | |
1054 | } | |
1055 | ||
3a3b42bf RL |
1056 | /** |
1057 | * fc_seq_send_ack() - Send an acknowledgement that we've received a frame | |
1058 | * @sp: The sequence to send the ACK on | |
1059 | * @rx_fp: The received frame that is being acknoledged | |
1060 | * | |
42e9a92f | 1061 | * Send ACK_1 (or equiv.) indicating we received something. |
42e9a92f RL |
1062 | */ |
1063 | static void fc_seq_send_ack(struct fc_seq *sp, const struct fc_frame *rx_fp) | |
1064 | { | |
1065 | struct fc_frame *fp; | |
1066 | struct fc_frame_header *rx_fh; | |
1067 | struct fc_frame_header *fh; | |
1068 | struct fc_exch *ep = fc_seq_exch(sp); | |
3a3b42bf | 1069 | struct fc_lport *lport = ep->lp; |
42e9a92f RL |
1070 | unsigned int f_ctl; |
1071 | ||
1072 | /* | |
1073 | * Don't send ACKs for class 3. | |
1074 | */ | |
1075 | if (fc_sof_needs_ack(fr_sof(rx_fp))) { | |
3a3b42bf | 1076 | fp = fc_frame_alloc(lport, 0); |
42e9a92f RL |
1077 | if (!fp) |
1078 | return; | |
1079 | ||
1080 | fh = fc_frame_header_get(fp); | |
1081 | fh->fh_r_ctl = FC_RCTL_ACK_1; | |
1082 | fh->fh_type = FC_TYPE_BLS; | |
1083 | ||
1084 | /* | |
1085 | * Form f_ctl by inverting EX_CTX and SEQ_CTX (bits 23, 22). | |
1086 | * Echo FIRST_SEQ, LAST_SEQ, END_SEQ, END_CONN, SEQ_INIT. | |
1087 | * Bits 9-8 are meaningful (retransmitted or unidirectional). | |
1088 | * Last ACK uses bits 7-6 (continue sequence), | |
1089 | * bits 5-4 are meaningful (what kind of ACK to use). | |
1090 | */ | |
1091 | rx_fh = fc_frame_header_get(rx_fp); | |
1092 | f_ctl = ntoh24(rx_fh->fh_f_ctl); | |
1093 | f_ctl &= FC_FC_EX_CTX | FC_FC_SEQ_CTX | | |
1094 | FC_FC_FIRST_SEQ | FC_FC_LAST_SEQ | | |
1095 | FC_FC_END_SEQ | FC_FC_END_CONN | FC_FC_SEQ_INIT | | |
1096 | FC_FC_RETX_SEQ | FC_FC_UNI_TX; | |
1097 | f_ctl ^= FC_FC_EX_CTX | FC_FC_SEQ_CTX; | |
1098 | hton24(fh->fh_f_ctl, f_ctl); | |
1099 | ||
1100 | fc_exch_setup_hdr(ep, fp, f_ctl); | |
1101 | fh->fh_seq_id = rx_fh->fh_seq_id; | |
1102 | fh->fh_seq_cnt = rx_fh->fh_seq_cnt; | |
1103 | fh->fh_parm_offset = htonl(1); /* ack single frame */ | |
1104 | ||
1105 | fr_sof(fp) = fr_sof(rx_fp); | |
1106 | if (f_ctl & FC_FC_END_SEQ) | |
1107 | fr_eof(fp) = FC_EOF_T; | |
1108 | else | |
1109 | fr_eof(fp) = FC_EOF_N; | |
1110 | ||
3a3b42bf | 1111 | lport->tt.frame_send(lport, fp); |
42e9a92f RL |
1112 | } |
1113 | } | |
1114 | ||
3a3b42bf RL |
1115 | /** |
1116 | * fc_exch_send_ba_rjt() - Send BLS Reject | |
1117 | * @rx_fp: The frame being rejected | |
1118 | * @reason: The reason the frame is being rejected | |
1119 | * @explan: The explaination for the rejection | |
1120 | * | |
42e9a92f RL |
1121 | * This is for rejecting BA_ABTS only. |
1122 | */ | |
b2ab99c9 RL |
1123 | static void fc_exch_send_ba_rjt(struct fc_frame *rx_fp, |
1124 | enum fc_ba_rjt_reason reason, | |
1125 | enum fc_ba_rjt_explan explan) | |
42e9a92f RL |
1126 | { |
1127 | struct fc_frame *fp; | |
1128 | struct fc_frame_header *rx_fh; | |
1129 | struct fc_frame_header *fh; | |
1130 | struct fc_ba_rjt *rp; | |
3a3b42bf | 1131 | struct fc_lport *lport; |
42e9a92f RL |
1132 | unsigned int f_ctl; |
1133 | ||
3a3b42bf RL |
1134 | lport = fr_dev(rx_fp); |
1135 | fp = fc_frame_alloc(lport, sizeof(*rp)); | |
42e9a92f RL |
1136 | if (!fp) |
1137 | return; | |
1138 | fh = fc_frame_header_get(fp); | |
1139 | rx_fh = fc_frame_header_get(rx_fp); | |
1140 | ||
1141 | memset(fh, 0, sizeof(*fh) + sizeof(*rp)); | |
1142 | ||
1143 | rp = fc_frame_payload_get(fp, sizeof(*rp)); | |
1144 | rp->br_reason = reason; | |
1145 | rp->br_explan = explan; | |
1146 | ||
1147 | /* | |
1148 | * seq_id, cs_ctl, df_ctl and param/offset are zero. | |
1149 | */ | |
1150 | memcpy(fh->fh_s_id, rx_fh->fh_d_id, 3); | |
1151 | memcpy(fh->fh_d_id, rx_fh->fh_s_id, 3); | |
1d490ce3 JE |
1152 | fh->fh_ox_id = rx_fh->fh_ox_id; |
1153 | fh->fh_rx_id = rx_fh->fh_rx_id; | |
42e9a92f RL |
1154 | fh->fh_seq_cnt = rx_fh->fh_seq_cnt; |
1155 | fh->fh_r_ctl = FC_RCTL_BA_RJT; | |
1156 | fh->fh_type = FC_TYPE_BLS; | |
1157 | ||
1158 | /* | |
1159 | * Form f_ctl by inverting EX_CTX and SEQ_CTX (bits 23, 22). | |
1160 | * Echo FIRST_SEQ, LAST_SEQ, END_SEQ, END_CONN, SEQ_INIT. | |
1161 | * Bits 9-8 are meaningful (retransmitted or unidirectional). | |
1162 | * Last ACK uses bits 7-6 (continue sequence), | |
1163 | * bits 5-4 are meaningful (what kind of ACK to use). | |
1164 | * Always set LAST_SEQ, END_SEQ. | |
1165 | */ | |
1166 | f_ctl = ntoh24(rx_fh->fh_f_ctl); | |
1167 | f_ctl &= FC_FC_EX_CTX | FC_FC_SEQ_CTX | | |
1168 | FC_FC_END_CONN | FC_FC_SEQ_INIT | | |
1169 | FC_FC_RETX_SEQ | FC_FC_UNI_TX; | |
1170 | f_ctl ^= FC_FC_EX_CTX | FC_FC_SEQ_CTX; | |
1171 | f_ctl |= FC_FC_LAST_SEQ | FC_FC_END_SEQ; | |
1172 | f_ctl &= ~FC_FC_FIRST_SEQ; | |
1173 | hton24(fh->fh_f_ctl, f_ctl); | |
1174 | ||
1175 | fr_sof(fp) = fc_sof_class(fr_sof(rx_fp)); | |
1176 | fr_eof(fp) = FC_EOF_T; | |
1177 | if (fc_sof_needs_ack(fr_sof(fp))) | |
1178 | fr_eof(fp) = FC_EOF_N; | |
1179 | ||
3a3b42bf | 1180 | lport->tt.frame_send(lport, fp); |
42e9a92f RL |
1181 | } |
1182 | ||
3a3b42bf RL |
1183 | /** |
1184 | * fc_exch_recv_abts() - Handle an incoming ABTS | |
1185 | * @ep: The exchange the abort was on | |
1186 | * @rx_fp: The ABTS frame | |
1187 | * | |
1188 | * This would be for target mode usually, but could be due to lost | |
1189 | * FCP transfer ready, confirm or RRQ. We always handle this as an | |
1190 | * exchange abort, ignoring the parameter. | |
42e9a92f RL |
1191 | */ |
1192 | static void fc_exch_recv_abts(struct fc_exch *ep, struct fc_frame *rx_fp) | |
1193 | { | |
1194 | struct fc_frame *fp; | |
1195 | struct fc_ba_acc *ap; | |
1196 | struct fc_frame_header *fh; | |
1197 | struct fc_seq *sp; | |
1198 | ||
1199 | if (!ep) | |
1200 | goto reject; | |
1201 | spin_lock_bh(&ep->ex_lock); | |
1202 | if (ep->esb_stat & ESB_ST_COMPLETE) { | |
1203 | spin_unlock_bh(&ep->ex_lock); | |
1204 | goto reject; | |
1205 | } | |
1206 | if (!(ep->esb_stat & ESB_ST_REC_QUAL)) | |
1207 | fc_exch_hold(ep); /* hold for REC_QUAL */ | |
1208 | ep->esb_stat |= ESB_ST_ABNORMAL | ESB_ST_REC_QUAL; | |
1209 | fc_exch_timer_set_locked(ep, ep->r_a_tov); | |
1210 | ||
1211 | fp = fc_frame_alloc(ep->lp, sizeof(*ap)); | |
1212 | if (!fp) { | |
1213 | spin_unlock_bh(&ep->ex_lock); | |
1214 | goto free; | |
1215 | } | |
1216 | fh = fc_frame_header_get(fp); | |
1217 | ap = fc_frame_payload_get(fp, sizeof(*ap)); | |
1218 | memset(ap, 0, sizeof(*ap)); | |
1219 | sp = &ep->seq; | |
1220 | ap->ba_high_seq_cnt = htons(0xffff); | |
1221 | if (sp->ssb_stat & SSB_ST_RESP) { | |
1222 | ap->ba_seq_id = sp->id; | |
1223 | ap->ba_seq_id_val = FC_BA_SEQ_ID_VAL; | |
1224 | ap->ba_high_seq_cnt = fh->fh_seq_cnt; | |
1225 | ap->ba_low_seq_cnt = htons(sp->cnt); | |
1226 | } | |
a7e84f2b | 1227 | sp = fc_seq_start_next_locked(sp); |
42e9a92f RL |
1228 | spin_unlock_bh(&ep->ex_lock); |
1229 | fc_seq_send_last(sp, fp, FC_RCTL_BA_ACC, FC_TYPE_BLS); | |
1230 | fc_frame_free(rx_fp); | |
1231 | return; | |
1232 | ||
1233 | reject: | |
1234 | fc_exch_send_ba_rjt(rx_fp, FC_BA_RJT_UNABLE, FC_BA_RJT_INV_XID); | |
1235 | free: | |
1236 | fc_frame_free(rx_fp); | |
1237 | } | |
1238 | ||
3a3b42bf RL |
1239 | /** |
1240 | * fc_exch_recv_req() - Handler for an incoming request where is other | |
1241 | * end is originating the sequence | |
1242 | * @lport: The local port that received the request | |
1243 | * @mp: The EM that the exchange is on | |
1244 | * @fp: The request frame | |
42e9a92f | 1245 | */ |
3a3b42bf | 1246 | static void fc_exch_recv_req(struct fc_lport *lport, struct fc_exch_mgr *mp, |
42e9a92f RL |
1247 | struct fc_frame *fp) |
1248 | { | |
1249 | struct fc_frame_header *fh = fc_frame_header_get(fp); | |
1250 | struct fc_seq *sp = NULL; | |
1251 | struct fc_exch *ep = NULL; | |
1252 | enum fc_sof sof; | |
1253 | enum fc_eof eof; | |
1254 | u32 f_ctl; | |
1255 | enum fc_pf_rjt_reason reject; | |
1256 | ||
174e1ebf CL |
1257 | /* We can have the wrong fc_lport at this point with NPIV, which is a |
1258 | * problem now that we know a new exchange needs to be allocated | |
1259 | */ | |
3a3b42bf RL |
1260 | lport = fc_vport_id_lookup(lport, ntoh24(fh->fh_d_id)); |
1261 | if (!lport) { | |
174e1ebf CL |
1262 | fc_frame_free(fp); |
1263 | return; | |
1264 | } | |
1265 | ||
42e9a92f | 1266 | fr_seq(fp) = NULL; |
3a3b42bf | 1267 | reject = fc_seq_lookup_recip(lport, mp, fp); |
42e9a92f RL |
1268 | if (reject == FC_RJT_NONE) { |
1269 | sp = fr_seq(fp); /* sequence will be held */ | |
1270 | ep = fc_seq_exch(sp); | |
1271 | sof = fr_sof(fp); | |
1272 | eof = fr_eof(fp); | |
1273 | f_ctl = ntoh24(fh->fh_f_ctl); | |
1274 | fc_seq_send_ack(sp, fp); | |
1275 | ||
1276 | /* | |
1277 | * Call the receive function. | |
1278 | * | |
1279 | * The receive function may allocate a new sequence | |
1280 | * over the old one, so we shouldn't change the | |
1281 | * sequence after this. | |
1282 | * | |
1283 | * The frame will be freed by the receive function. | |
1284 | * If new exch resp handler is valid then call that | |
1285 | * first. | |
1286 | */ | |
1287 | if (ep->resp) | |
1288 | ep->resp(sp, fp, ep->arg); | |
1289 | else | |
3a3b42bf | 1290 | lport->tt.lport_recv(lport, sp, fp); |
42e9a92f RL |
1291 | fc_exch_release(ep); /* release from lookup */ |
1292 | } else { | |
3a3b42bf RL |
1293 | FC_LPORT_DBG(lport, "exch/seq lookup failed: reject %x\n", |
1294 | reject); | |
42e9a92f RL |
1295 | fc_frame_free(fp); |
1296 | } | |
1297 | } | |
1298 | ||
3a3b42bf RL |
1299 | /** |
1300 | * fc_exch_recv_seq_resp() - Handler for an incoming response where the other | |
1301 | * end is the originator of the sequence that is a | |
1302 | * response to our initial exchange | |
1303 | * @mp: The EM that the exchange is on | |
1304 | * @fp: The response frame | |
42e9a92f RL |
1305 | */ |
1306 | static void fc_exch_recv_seq_resp(struct fc_exch_mgr *mp, struct fc_frame *fp) | |
1307 | { | |
1308 | struct fc_frame_header *fh = fc_frame_header_get(fp); | |
1309 | struct fc_seq *sp; | |
1310 | struct fc_exch *ep; | |
1311 | enum fc_sof sof; | |
1312 | u32 f_ctl; | |
1313 | void (*resp)(struct fc_seq *, struct fc_frame *fp, void *arg); | |
1314 | void *ex_resp_arg; | |
1315 | int rc; | |
1316 | ||
1317 | ep = fc_exch_find(mp, ntohs(fh->fh_ox_id)); | |
1318 | if (!ep) { | |
1319 | atomic_inc(&mp->stats.xid_not_found); | |
1320 | goto out; | |
1321 | } | |
30121d14 SM |
1322 | if (ep->esb_stat & ESB_ST_COMPLETE) { |
1323 | atomic_inc(&mp->stats.xid_not_found); | |
1324 | goto out; | |
1325 | } | |
42e9a92f RL |
1326 | if (ep->rxid == FC_XID_UNKNOWN) |
1327 | ep->rxid = ntohs(fh->fh_rx_id); | |
1328 | if (ep->sid != 0 && ep->sid != ntoh24(fh->fh_d_id)) { | |
1329 | atomic_inc(&mp->stats.xid_not_found); | |
1330 | goto rel; | |
1331 | } | |
1332 | if (ep->did != ntoh24(fh->fh_s_id) && | |
1333 | ep->did != FC_FID_FLOGI) { | |
1334 | atomic_inc(&mp->stats.xid_not_found); | |
1335 | goto rel; | |
1336 | } | |
1337 | sof = fr_sof(fp); | |
1338 | if (fc_sof_is_init(sof)) { | |
1339 | sp = fc_seq_start_next(&ep->seq); | |
1340 | sp->id = fh->fh_seq_id; | |
1341 | sp->ssb_stat |= SSB_ST_RESP; | |
1342 | } else { | |
1343 | sp = &ep->seq; | |
1344 | if (sp->id != fh->fh_seq_id) { | |
1345 | atomic_inc(&mp->stats.seq_not_found); | |
1346 | goto rel; | |
1347 | } | |
1348 | } | |
1349 | f_ctl = ntoh24(fh->fh_f_ctl); | |
1350 | fr_seq(fp) = sp; | |
1351 | if (f_ctl & FC_FC_SEQ_INIT) | |
1352 | ep->esb_stat |= ESB_ST_SEQ_INIT; | |
1353 | ||
1354 | if (fc_sof_needs_ack(sof)) | |
1355 | fc_seq_send_ack(sp, fp); | |
1356 | resp = ep->resp; | |
1357 | ex_resp_arg = ep->arg; | |
1358 | ||
1359 | if (fh->fh_type != FC_TYPE_FCP && fr_eof(fp) == FC_EOF_T && | |
1360 | (f_ctl & (FC_FC_LAST_SEQ | FC_FC_END_SEQ)) == | |
1361 | (FC_FC_LAST_SEQ | FC_FC_END_SEQ)) { | |
1362 | spin_lock_bh(&ep->ex_lock); | |
1363 | rc = fc_exch_done_locked(ep); | |
1364 | WARN_ON(fc_seq_exch(sp) != ep); | |
1365 | spin_unlock_bh(&ep->ex_lock); | |
1366 | if (!rc) | |
b2f0091f | 1367 | fc_exch_delete(ep); |
42e9a92f RL |
1368 | } |
1369 | ||
1370 | /* | |
1371 | * Call the receive function. | |
1372 | * The sequence is held (has a refcnt) for us, | |
1373 | * but not for the receive function. | |
1374 | * | |
1375 | * The receive function may allocate a new sequence | |
1376 | * over the old one, so we shouldn't change the | |
1377 | * sequence after this. | |
1378 | * | |
1379 | * The frame will be freed by the receive function. | |
1380 | * If new exch resp handler is valid then call that | |
1381 | * first. | |
1382 | */ | |
1383 | if (resp) | |
1384 | resp(sp, fp, ex_resp_arg); | |
1385 | else | |
1386 | fc_frame_free(fp); | |
1387 | fc_exch_release(ep); | |
1388 | return; | |
1389 | rel: | |
1390 | fc_exch_release(ep); | |
1391 | out: | |
1392 | fc_frame_free(fp); | |
1393 | } | |
1394 | ||
3a3b42bf RL |
1395 | /** |
1396 | * fc_exch_recv_resp() - Handler for a sequence where other end is | |
1397 | * responding to our sequence | |
1398 | * @mp: The EM that the exchange is on | |
1399 | * @fp: The response frame | |
42e9a92f RL |
1400 | */ |
1401 | static void fc_exch_recv_resp(struct fc_exch_mgr *mp, struct fc_frame *fp) | |
1402 | { | |
1403 | struct fc_seq *sp; | |
1404 | ||
1405 | sp = fc_seq_lookup_orig(mp, fp); /* doesn't hold sequence */ | |
d459b7ea RL |
1406 | |
1407 | if (!sp) | |
42e9a92f | 1408 | atomic_inc(&mp->stats.xid_not_found); |
d459b7ea | 1409 | else |
42e9a92f | 1410 | atomic_inc(&mp->stats.non_bls_resp); |
d459b7ea | 1411 | |
42e9a92f RL |
1412 | fc_frame_free(fp); |
1413 | } | |
1414 | ||
3a3b42bf RL |
1415 | /** |
1416 | * fc_exch_abts_resp() - Handler for a response to an ABT | |
1417 | * @ep: The exchange that the frame is on | |
1418 | * @fp: The response frame | |
1419 | * | |
1420 | * This response would be to an ABTS cancelling an exchange or sequence. | |
1421 | * The response can be either BA_ACC or BA_RJT | |
42e9a92f RL |
1422 | */ |
1423 | static void fc_exch_abts_resp(struct fc_exch *ep, struct fc_frame *fp) | |
1424 | { | |
1425 | void (*resp)(struct fc_seq *, struct fc_frame *fp, void *arg); | |
1426 | void *ex_resp_arg; | |
1427 | struct fc_frame_header *fh; | |
1428 | struct fc_ba_acc *ap; | |
1429 | struct fc_seq *sp; | |
1430 | u16 low; | |
1431 | u16 high; | |
1432 | int rc = 1, has_rec = 0; | |
1433 | ||
1434 | fh = fc_frame_header_get(fp); | |
7414705e RL |
1435 | FC_EXCH_DBG(ep, "exch: BLS rctl %x - %s\n", fh->fh_r_ctl, |
1436 | fc_exch_rctl_name(fh->fh_r_ctl)); | |
42e9a92f RL |
1437 | |
1438 | if (cancel_delayed_work_sync(&ep->timeout_work)) | |
1439 | fc_exch_release(ep); /* release from pending timer hold */ | |
1440 | ||
1441 | spin_lock_bh(&ep->ex_lock); | |
1442 | switch (fh->fh_r_ctl) { | |
1443 | case FC_RCTL_BA_ACC: | |
1444 | ap = fc_frame_payload_get(fp, sizeof(*ap)); | |
1445 | if (!ap) | |
1446 | break; | |
1447 | ||
1448 | /* | |
1449 | * Decide whether to establish a Recovery Qualifier. | |
1450 | * We do this if there is a non-empty SEQ_CNT range and | |
1451 | * SEQ_ID is the same as the one we aborted. | |
1452 | */ | |
1453 | low = ntohs(ap->ba_low_seq_cnt); | |
1454 | high = ntohs(ap->ba_high_seq_cnt); | |
1455 | if ((ep->esb_stat & ESB_ST_REC_QUAL) == 0 && | |
1456 | (ap->ba_seq_id_val != FC_BA_SEQ_ID_VAL || | |
1457 | ap->ba_seq_id == ep->seq_id) && low != high) { | |
1458 | ep->esb_stat |= ESB_ST_REC_QUAL; | |
1459 | fc_exch_hold(ep); /* hold for recovery qualifier */ | |
1460 | has_rec = 1; | |
1461 | } | |
1462 | break; | |
1463 | case FC_RCTL_BA_RJT: | |
1464 | break; | |
1465 | default: | |
1466 | break; | |
1467 | } | |
1468 | ||
1469 | resp = ep->resp; | |
1470 | ex_resp_arg = ep->arg; | |
1471 | ||
1472 | /* do we need to do some other checks here. Can we reuse more of | |
1473 | * fc_exch_recv_seq_resp | |
1474 | */ | |
1475 | sp = &ep->seq; | |
1476 | /* | |
1477 | * do we want to check END_SEQ as well as LAST_SEQ here? | |
1478 | */ | |
1479 | if (ep->fh_type != FC_TYPE_FCP && | |
1480 | ntoh24(fh->fh_f_ctl) & FC_FC_LAST_SEQ) | |
1481 | rc = fc_exch_done_locked(ep); | |
1482 | spin_unlock_bh(&ep->ex_lock); | |
1483 | if (!rc) | |
b2f0091f | 1484 | fc_exch_delete(ep); |
42e9a92f RL |
1485 | |
1486 | if (resp) | |
1487 | resp(sp, fp, ex_resp_arg); | |
1488 | else | |
1489 | fc_frame_free(fp); | |
1490 | ||
1491 | if (has_rec) | |
1492 | fc_exch_timer_set(ep, ep->r_a_tov); | |
1493 | ||
1494 | } | |
1495 | ||
3a3b42bf RL |
1496 | /** |
1497 | * fc_exch_recv_bls() - Handler for a BLS sequence | |
1498 | * @mp: The EM that the exchange is on | |
1499 | * @fp: The request frame | |
1500 | * | |
1501 | * The BLS frame is always a sequence initiated by the remote side. | |
42e9a92f RL |
1502 | * We may be either the originator or recipient of the exchange. |
1503 | */ | |
1504 | static void fc_exch_recv_bls(struct fc_exch_mgr *mp, struct fc_frame *fp) | |
1505 | { | |
1506 | struct fc_frame_header *fh; | |
1507 | struct fc_exch *ep; | |
1508 | u32 f_ctl; | |
1509 | ||
1510 | fh = fc_frame_header_get(fp); | |
1511 | f_ctl = ntoh24(fh->fh_f_ctl); | |
1512 | fr_seq(fp) = NULL; | |
1513 | ||
1514 | ep = fc_exch_find(mp, (f_ctl & FC_FC_EX_CTX) ? | |
1515 | ntohs(fh->fh_ox_id) : ntohs(fh->fh_rx_id)); | |
1516 | if (ep && (f_ctl & FC_FC_SEQ_INIT)) { | |
1517 | spin_lock_bh(&ep->ex_lock); | |
1518 | ep->esb_stat |= ESB_ST_SEQ_INIT; | |
1519 | spin_unlock_bh(&ep->ex_lock); | |
1520 | } | |
1521 | if (f_ctl & FC_FC_SEQ_CTX) { | |
1522 | /* | |
1523 | * A response to a sequence we initiated. | |
1524 | * This should only be ACKs for class 2 or F. | |
1525 | */ | |
1526 | switch (fh->fh_r_ctl) { | |
1527 | case FC_RCTL_ACK_1: | |
1528 | case FC_RCTL_ACK_0: | |
1529 | break; | |
1530 | default: | |
7414705e RL |
1531 | FC_EXCH_DBG(ep, "BLS rctl %x - %s received", |
1532 | fh->fh_r_ctl, | |
1533 | fc_exch_rctl_name(fh->fh_r_ctl)); | |
42e9a92f RL |
1534 | break; |
1535 | } | |
1536 | fc_frame_free(fp); | |
1537 | } else { | |
1538 | switch (fh->fh_r_ctl) { | |
1539 | case FC_RCTL_BA_RJT: | |
1540 | case FC_RCTL_BA_ACC: | |
1541 | if (ep) | |
1542 | fc_exch_abts_resp(ep, fp); | |
1543 | else | |
1544 | fc_frame_free(fp); | |
1545 | break; | |
1546 | case FC_RCTL_BA_ABTS: | |
1547 | fc_exch_recv_abts(ep, fp); | |
1548 | break; | |
1549 | default: /* ignore junk */ | |
1550 | fc_frame_free(fp); | |
1551 | break; | |
1552 | } | |
1553 | } | |
1554 | if (ep) | |
1555 | fc_exch_release(ep); /* release hold taken by fc_exch_find */ | |
1556 | } | |
1557 | ||
3a3b42bf RL |
1558 | /** |
1559 | * fc_seq_ls_acc() - Accept sequence with LS_ACC | |
1560 | * @req_sp: The request sequence | |
1561 | * | |
42e9a92f RL |
1562 | * If this fails due to allocation or transmit congestion, assume the |
1563 | * originator will repeat the sequence. | |
1564 | */ | |
1565 | static void fc_seq_ls_acc(struct fc_seq *req_sp) | |
1566 | { | |
1567 | struct fc_seq *sp; | |
1568 | struct fc_els_ls_acc *acc; | |
1569 | struct fc_frame *fp; | |
1570 | ||
1571 | sp = fc_seq_start_next(req_sp); | |
1572 | fp = fc_frame_alloc(fc_seq_exch(sp)->lp, sizeof(*acc)); | |
1573 | if (fp) { | |
1574 | acc = fc_frame_payload_get(fp, sizeof(*acc)); | |
1575 | memset(acc, 0, sizeof(*acc)); | |
1576 | acc->la_cmd = ELS_LS_ACC; | |
1577 | fc_seq_send_last(sp, fp, FC_RCTL_ELS_REP, FC_TYPE_ELS); | |
1578 | } | |
1579 | } | |
1580 | ||
3a3b42bf RL |
1581 | /** |
1582 | * fc_seq_ls_rjt() - Reject a sequence with ELS LS_RJT | |
1583 | * @req_sp: The request sequence | |
1584 | * @reason: The reason the sequence is being rejected | |
1585 | * @explan: The explaination for the rejection | |
1586 | * | |
42e9a92f RL |
1587 | * If this fails due to allocation or transmit congestion, assume the |
1588 | * originator will repeat the sequence. | |
1589 | */ | |
1590 | static void fc_seq_ls_rjt(struct fc_seq *req_sp, enum fc_els_rjt_reason reason, | |
1591 | enum fc_els_rjt_explan explan) | |
1592 | { | |
1593 | struct fc_seq *sp; | |
1594 | struct fc_els_ls_rjt *rjt; | |
1595 | struct fc_frame *fp; | |
1596 | ||
1597 | sp = fc_seq_start_next(req_sp); | |
1598 | fp = fc_frame_alloc(fc_seq_exch(sp)->lp, sizeof(*rjt)); | |
1599 | if (fp) { | |
1600 | rjt = fc_frame_payload_get(fp, sizeof(*rjt)); | |
1601 | memset(rjt, 0, sizeof(*rjt)); | |
1602 | rjt->er_cmd = ELS_LS_RJT; | |
1603 | rjt->er_reason = reason; | |
1604 | rjt->er_explan = explan; | |
1605 | fc_seq_send_last(sp, fp, FC_RCTL_ELS_REP, FC_TYPE_ELS); | |
1606 | } | |
1607 | } | |
1608 | ||
3a3b42bf RL |
1609 | /** |
1610 | * fc_exch_reset() - Reset an exchange | |
1611 | * @ep: The exchange to be reset | |
1612 | */ | |
42e9a92f RL |
1613 | static void fc_exch_reset(struct fc_exch *ep) |
1614 | { | |
1615 | struct fc_seq *sp; | |
1616 | void (*resp)(struct fc_seq *, struct fc_frame *, void *); | |
1617 | void *arg; | |
1618 | int rc = 1; | |
1619 | ||
1620 | spin_lock_bh(&ep->ex_lock); | |
1621 | ep->state |= FC_EX_RST_CLEANUP; | |
1622 | /* | |
1623 | * we really want to call del_timer_sync, but cannot due | |
1624 | * to the lport calling with the lport lock held (some resp | |
1625 | * functions can also grab the lport lock which could cause | |
1626 | * a deadlock). | |
1627 | */ | |
1628 | if (cancel_delayed_work(&ep->timeout_work)) | |
1629 | atomic_dec(&ep->ex_refcnt); /* drop hold for timer */ | |
1630 | resp = ep->resp; | |
1631 | ep->resp = NULL; | |
1632 | if (ep->esb_stat & ESB_ST_REC_QUAL) | |
1633 | atomic_dec(&ep->ex_refcnt); /* drop hold for rec_qual */ | |
1634 | ep->esb_stat &= ~ESB_ST_REC_QUAL; | |
1635 | arg = ep->arg; | |
1636 | sp = &ep->seq; | |
1637 | rc = fc_exch_done_locked(ep); | |
1638 | spin_unlock_bh(&ep->ex_lock); | |
1639 | if (!rc) | |
b2f0091f | 1640 | fc_exch_delete(ep); |
42e9a92f RL |
1641 | |
1642 | if (resp) | |
1643 | resp(sp, ERR_PTR(-FC_EX_CLOSED), arg); | |
1644 | } | |
1645 | ||
b2f0091f | 1646 | /** |
3a3b42bf RL |
1647 | * fc_exch_pool_reset() - Reset a per cpu exchange pool |
1648 | * @lport: The local port that the exchange pool is on | |
1649 | * @pool: The exchange pool to be reset | |
1650 | * @sid: The source ID | |
1651 | * @did: The destination ID | |
b2f0091f | 1652 | * |
3a3b42bf RL |
1653 | * Resets a per cpu exches pool, releasing all of its sequences |
1654 | * and exchanges. If sid is non-zero then reset only exchanges | |
1655 | * we sourced from the local port's FID. If did is non-zero then | |
1656 | * only reset exchanges destined for the local port's FID. | |
42e9a92f | 1657 | */ |
b2f0091f VD |
1658 | static void fc_exch_pool_reset(struct fc_lport *lport, |
1659 | struct fc_exch_pool *pool, | |
1660 | u32 sid, u32 did) | |
42e9a92f RL |
1661 | { |
1662 | struct fc_exch *ep; | |
1663 | struct fc_exch *next; | |
1664 | ||
b2f0091f | 1665 | spin_lock_bh(&pool->lock); |
42e9a92f | 1666 | restart: |
b2f0091f VD |
1667 | list_for_each_entry_safe(ep, next, &pool->ex_list, ex_list) { |
1668 | if ((lport == ep->lp) && | |
1669 | (sid == 0 || sid == ep->sid) && | |
1670 | (did == 0 || did == ep->did)) { | |
1671 | fc_exch_hold(ep); | |
1672 | spin_unlock_bh(&pool->lock); | |
1673 | ||
1674 | fc_exch_reset(ep); | |
1675 | ||
1676 | fc_exch_release(ep); | |
1677 | spin_lock_bh(&pool->lock); | |
1678 | ||
1679 | /* | |
1680 | * must restart loop incase while lock | |
1681 | * was down multiple eps were released. | |
1682 | */ | |
1683 | goto restart; | |
42e9a92f | 1684 | } |
b2f0091f VD |
1685 | } |
1686 | spin_unlock_bh(&pool->lock); | |
1687 | } | |
1688 | ||
1689 | /** | |
3a3b42bf RL |
1690 | * fc_exch_mgr_reset() - Reset all EMs of a local port |
1691 | * @lport: The local port whose EMs are to be reset | |
1692 | * @sid: The source ID | |
1693 | * @did: The destination ID | |
b2f0091f | 1694 | * |
3a3b42bf RL |
1695 | * Reset all EMs associated with a given local port. Release all |
1696 | * sequences and exchanges. If sid is non-zero then reset only the | |
1697 | * exchanges sent from the local port's FID. If did is non-zero then | |
1698 | * reset only exchanges destined for the local port's FID. | |
b2f0091f VD |
1699 | */ |
1700 | void fc_exch_mgr_reset(struct fc_lport *lport, u32 sid, u32 did) | |
1701 | { | |
1702 | struct fc_exch_mgr_anchor *ema; | |
1703 | unsigned int cpu; | |
1704 | ||
1705 | list_for_each_entry(ema, &lport->ema_list, ema_list) { | |
1706 | for_each_possible_cpu(cpu) | |
1707 | fc_exch_pool_reset(lport, | |
1708 | per_cpu_ptr(ema->mp->pool, cpu), | |
1709 | sid, did); | |
42e9a92f | 1710 | } |
42e9a92f RL |
1711 | } |
1712 | EXPORT_SYMBOL(fc_exch_mgr_reset); | |
1713 | ||
3a3b42bf RL |
1714 | /** |
1715 | * fc_exch_els_rec() - Handler for ELS REC (Read Exchange Concise) requests | |
1716 | * @sp: The sequence the REC is on | |
1717 | * @rfp: The REC frame | |
1718 | * | |
42e9a92f RL |
1719 | * Note that the requesting port may be different than the S_ID in the request. |
1720 | */ | |
1721 | static void fc_exch_els_rec(struct fc_seq *sp, struct fc_frame *rfp) | |
1722 | { | |
1723 | struct fc_frame *fp; | |
1724 | struct fc_exch *ep; | |
1725 | struct fc_exch_mgr *em; | |
1726 | struct fc_els_rec *rp; | |
1727 | struct fc_els_rec_acc *acc; | |
1728 | enum fc_els_rjt_reason reason = ELS_RJT_LOGIC; | |
1729 | enum fc_els_rjt_explan explan; | |
1730 | u32 sid; | |
1731 | u16 rxid; | |
1732 | u16 oxid; | |
1733 | ||
1734 | rp = fc_frame_payload_get(rfp, sizeof(*rp)); | |
1735 | explan = ELS_EXPL_INV_LEN; | |
1736 | if (!rp) | |
1737 | goto reject; | |
1738 | sid = ntoh24(rp->rec_s_id); | |
1739 | rxid = ntohs(rp->rec_rx_id); | |
1740 | oxid = ntohs(rp->rec_ox_id); | |
1741 | ||
1742 | /* | |
1743 | * Currently it's hard to find the local S_ID from the exchange | |
1744 | * manager. This will eventually be fixed, but for now it's easier | |
1745 | * to lookup the subject exchange twice, once as if we were | |
1746 | * the initiator, and then again if we weren't. | |
1747 | */ | |
1748 | em = fc_seq_exch(sp)->em; | |
1749 | ep = fc_exch_find(em, oxid); | |
1750 | explan = ELS_EXPL_OXID_RXID; | |
1751 | if (ep && ep->oid == sid) { | |
1752 | if (ep->rxid != FC_XID_UNKNOWN && | |
1753 | rxid != FC_XID_UNKNOWN && | |
1754 | ep->rxid != rxid) | |
1755 | goto rel; | |
1756 | } else { | |
1757 | if (ep) | |
1758 | fc_exch_release(ep); | |
1759 | ep = NULL; | |
1760 | if (rxid != FC_XID_UNKNOWN) | |
1761 | ep = fc_exch_find(em, rxid); | |
1762 | if (!ep) | |
1763 | goto reject; | |
1764 | } | |
1765 | ||
1766 | fp = fc_frame_alloc(fc_seq_exch(sp)->lp, sizeof(*acc)); | |
1767 | if (!fp) { | |
1768 | fc_exch_done(sp); | |
1769 | goto out; | |
1770 | } | |
1771 | sp = fc_seq_start_next(sp); | |
1772 | acc = fc_frame_payload_get(fp, sizeof(*acc)); | |
1773 | memset(acc, 0, sizeof(*acc)); | |
1774 | acc->reca_cmd = ELS_LS_ACC; | |
1775 | acc->reca_ox_id = rp->rec_ox_id; | |
1776 | memcpy(acc->reca_ofid, rp->rec_s_id, 3); | |
1777 | acc->reca_rx_id = htons(ep->rxid); | |
1778 | if (ep->sid == ep->oid) | |
1779 | hton24(acc->reca_rfid, ep->did); | |
1780 | else | |
1781 | hton24(acc->reca_rfid, ep->sid); | |
1782 | acc->reca_fc4value = htonl(ep->seq.rec_data); | |
1783 | acc->reca_e_stat = htonl(ep->esb_stat & (ESB_ST_RESP | | |
1784 | ESB_ST_SEQ_INIT | | |
1785 | ESB_ST_COMPLETE)); | |
1786 | sp = fc_seq_start_next(sp); | |
1787 | fc_seq_send_last(sp, fp, FC_RCTL_ELS_REP, FC_TYPE_ELS); | |
1788 | out: | |
1789 | fc_exch_release(ep); | |
1790 | fc_frame_free(rfp); | |
1791 | return; | |
1792 | ||
1793 | rel: | |
1794 | fc_exch_release(ep); | |
1795 | reject: | |
1796 | fc_seq_ls_rjt(sp, reason, explan); | |
1797 | fc_frame_free(rfp); | |
1798 | } | |
1799 | ||
3a3b42bf RL |
1800 | /** |
1801 | * fc_exch_rrq_resp() - Handler for RRQ responses | |
1802 | * @sp: The sequence that the RRQ is on | |
1803 | * @fp: The RRQ frame | |
1804 | * @arg: The exchange that the RRQ is on | |
42e9a92f RL |
1805 | * |
1806 | * TODO: fix error handler. | |
1807 | */ | |
1808 | static void fc_exch_rrq_resp(struct fc_seq *sp, struct fc_frame *fp, void *arg) | |
1809 | { | |
1810 | struct fc_exch *aborted_ep = arg; | |
1811 | unsigned int op; | |
1812 | ||
1813 | if (IS_ERR(fp)) { | |
1814 | int err = PTR_ERR(fp); | |
1815 | ||
78342da3 | 1816 | if (err == -FC_EX_CLOSED || err == -FC_EX_TIMEOUT) |
42e9a92f | 1817 | goto cleanup; |
7414705e RL |
1818 | FC_EXCH_DBG(aborted_ep, "Cannot process RRQ, " |
1819 | "frame error %d\n", err); | |
42e9a92f RL |
1820 | return; |
1821 | } | |
1822 | ||
1823 | op = fc_frame_payload_op(fp); | |
1824 | fc_frame_free(fp); | |
1825 | ||
1826 | switch (op) { | |
1827 | case ELS_LS_RJT: | |
7414705e | 1828 | FC_EXCH_DBG(aborted_ep, "LS_RJT for RRQ"); |
42e9a92f RL |
1829 | /* fall through */ |
1830 | case ELS_LS_ACC: | |
1831 | goto cleanup; | |
1832 | default: | |
7414705e RL |
1833 | FC_EXCH_DBG(aborted_ep, "unexpected response op %x " |
1834 | "for RRQ", op); | |
42e9a92f RL |
1835 | return; |
1836 | } | |
1837 | ||
1838 | cleanup: | |
1839 | fc_exch_done(&aborted_ep->seq); | |
1840 | /* drop hold for rec qual */ | |
1841 | fc_exch_release(aborted_ep); | |
1842 | } | |
1843 | ||
1a7b75ae RL |
1844 | |
1845 | /** | |
3a3b42bf RL |
1846 | * fc_exch_seq_send() - Send a frame using a new exchange and sequence |
1847 | * @lport: The local port to send the frame on | |
1848 | * @fp: The frame to be sent | |
1849 | * @resp: The response handler for this request | |
1850 | * @destructor: The destructor for the exchange | |
1851 | * @arg: The argument to be passed to the response handler | |
1852 | * @timer_msec: The timeout period for the exchange | |
1853 | * | |
1854 | * The frame pointer with some of the header's fields must be | |
1855 | * filled before calling this routine, those fields are: | |
1856 | * | |
1857 | * - routing control | |
1858 | * - FC port did | |
1859 | * - FC port sid | |
1860 | * - FC header type | |
1861 | * - frame control | |
1862 | * - parameter or relative offset | |
1a7b75ae | 1863 | */ |
3a3b42bf | 1864 | static struct fc_seq *fc_exch_seq_send(struct fc_lport *lport, |
1a7b75ae RL |
1865 | struct fc_frame *fp, |
1866 | void (*resp)(struct fc_seq *, | |
1867 | struct fc_frame *fp, | |
1868 | void *arg), | |
1869 | void (*destructor)(struct fc_seq *, | |
1870 | void *), | |
1871 | void *arg, u32 timer_msec) | |
1872 | { | |
1873 | struct fc_exch *ep; | |
1874 | struct fc_seq *sp = NULL; | |
1875 | struct fc_frame_header *fh; | |
1876 | int rc = 1; | |
1877 | ||
3a3b42bf | 1878 | ep = fc_exch_alloc(lport, fp); |
1a7b75ae RL |
1879 | if (!ep) { |
1880 | fc_frame_free(fp); | |
1881 | return NULL; | |
1882 | } | |
1883 | ep->esb_stat |= ESB_ST_SEQ_INIT; | |
1884 | fh = fc_frame_header_get(fp); | |
1885 | fc_exch_set_addr(ep, ntoh24(fh->fh_s_id), ntoh24(fh->fh_d_id)); | |
1886 | ep->resp = resp; | |
1887 | ep->destructor = destructor; | |
1888 | ep->arg = arg; | |
1889 | ep->r_a_tov = FC_DEF_R_A_TOV; | |
3a3b42bf | 1890 | ep->lp = lport; |
1a7b75ae RL |
1891 | sp = &ep->seq; |
1892 | ||
1893 | ep->fh_type = fh->fh_type; /* save for possbile timeout handling */ | |
1894 | ep->f_ctl = ntoh24(fh->fh_f_ctl); | |
1895 | fc_exch_setup_hdr(ep, fp, ep->f_ctl); | |
1896 | sp->cnt++; | |
1897 | ||
3a3b42bf | 1898 | if (ep->xid <= lport->lro_xid) |
1a7b75ae RL |
1899 | fc_fcp_ddp_setup(fr_fsp(fp), ep->xid); |
1900 | ||
3a3b42bf | 1901 | if (unlikely(lport->tt.frame_send(lport, fp))) |
1a7b75ae RL |
1902 | goto err; |
1903 | ||
1904 | if (timer_msec) | |
1905 | fc_exch_timer_set_locked(ep, timer_msec); | |
1906 | ep->f_ctl &= ~FC_FC_FIRST_SEQ; /* not first seq */ | |
1907 | ||
1908 | if (ep->f_ctl & FC_FC_SEQ_INIT) | |
1909 | ep->esb_stat &= ~ESB_ST_SEQ_INIT; | |
1910 | spin_unlock_bh(&ep->ex_lock); | |
1911 | return sp; | |
1912 | err: | |
1913 | rc = fc_exch_done_locked(ep); | |
1914 | spin_unlock_bh(&ep->ex_lock); | |
1915 | if (!rc) | |
1916 | fc_exch_delete(ep); | |
1917 | return NULL; | |
1918 | } | |
1919 | ||
3a3b42bf RL |
1920 | /** |
1921 | * fc_exch_rrq() - Send an ELS RRQ (Reinstate Recovery Qualifier) command | |
1922 | * @ep: The exchange to send the RRQ on | |
1923 | * | |
42e9a92f RL |
1924 | * This tells the remote port to stop blocking the use of |
1925 | * the exchange and the seq_cnt range. | |
1926 | */ | |
1927 | static void fc_exch_rrq(struct fc_exch *ep) | |
1928 | { | |
3a3b42bf | 1929 | struct fc_lport *lport; |
42e9a92f RL |
1930 | struct fc_els_rrq *rrq; |
1931 | struct fc_frame *fp; | |
42e9a92f RL |
1932 | u32 did; |
1933 | ||
3a3b42bf | 1934 | lport = ep->lp; |
42e9a92f | 1935 | |
3a3b42bf | 1936 | fp = fc_frame_alloc(lport, sizeof(*rrq)); |
42e9a92f | 1937 | if (!fp) |
a0cc1ecc VD |
1938 | goto retry; |
1939 | ||
42e9a92f RL |
1940 | rrq = fc_frame_payload_get(fp, sizeof(*rrq)); |
1941 | memset(rrq, 0, sizeof(*rrq)); | |
1942 | rrq->rrq_cmd = ELS_RRQ; | |
1943 | hton24(rrq->rrq_s_id, ep->sid); | |
1944 | rrq->rrq_ox_id = htons(ep->oxid); | |
1945 | rrq->rrq_rx_id = htons(ep->rxid); | |
1946 | ||
1947 | did = ep->did; | |
1948 | if (ep->esb_stat & ESB_ST_RESP) | |
1949 | did = ep->sid; | |
1950 | ||
1951 | fc_fill_fc_hdr(fp, FC_RCTL_ELS_REQ, did, | |
3a3b42bf | 1952 | fc_host_port_id(lport->host), FC_TYPE_ELS, |
42e9a92f RL |
1953 | FC_FC_FIRST_SEQ | FC_FC_END_SEQ | FC_FC_SEQ_INIT, 0); |
1954 | ||
3a3b42bf RL |
1955 | if (fc_exch_seq_send(lport, fp, fc_exch_rrq_resp, NULL, ep, |
1956 | lport->e_d_tov)) | |
a0cc1ecc VD |
1957 | return; |
1958 | ||
1959 | retry: | |
1960 | spin_lock_bh(&ep->ex_lock); | |
1961 | if (ep->state & (FC_EX_RST_CLEANUP | FC_EX_DONE)) { | |
1962 | spin_unlock_bh(&ep->ex_lock); | |
1963 | /* drop hold for rec qual */ | |
1964 | fc_exch_release(ep); | |
42e9a92f RL |
1965 | return; |
1966 | } | |
a0cc1ecc VD |
1967 | ep->esb_stat |= ESB_ST_REC_QUAL; |
1968 | fc_exch_timer_set_locked(ep, ep->r_a_tov); | |
1969 | spin_unlock_bh(&ep->ex_lock); | |
42e9a92f RL |
1970 | } |
1971 | ||
1972 | ||
3a3b42bf RL |
1973 | /** |
1974 | * fc_exch_els_rrq() - Handler for ELS RRQ (Reset Recovery Qualifier) requests | |
1975 | * @sp: The sequence that the RRQ is on | |
1976 | * @fp: The RRQ frame | |
42e9a92f RL |
1977 | */ |
1978 | static void fc_exch_els_rrq(struct fc_seq *sp, struct fc_frame *fp) | |
1979 | { | |
3f127ad9 | 1980 | struct fc_exch *ep = NULL; /* request or subject exchange */ |
42e9a92f RL |
1981 | struct fc_els_rrq *rp; |
1982 | u32 sid; | |
1983 | u16 xid; | |
1984 | enum fc_els_rjt_explan explan; | |
1985 | ||
1986 | rp = fc_frame_payload_get(fp, sizeof(*rp)); | |
1987 | explan = ELS_EXPL_INV_LEN; | |
1988 | if (!rp) | |
1989 | goto reject; | |
1990 | ||
1991 | /* | |
1992 | * lookup subject exchange. | |
1993 | */ | |
1994 | ep = fc_seq_exch(sp); | |
1995 | sid = ntoh24(rp->rrq_s_id); /* subject source */ | |
1996 | xid = ep->did == sid ? ntohs(rp->rrq_ox_id) : ntohs(rp->rrq_rx_id); | |
1997 | ep = fc_exch_find(ep->em, xid); | |
1998 | ||
1999 | explan = ELS_EXPL_OXID_RXID; | |
2000 | if (!ep) | |
2001 | goto reject; | |
2002 | spin_lock_bh(&ep->ex_lock); | |
2003 | if (ep->oxid != ntohs(rp->rrq_ox_id)) | |
2004 | goto unlock_reject; | |
2005 | if (ep->rxid != ntohs(rp->rrq_rx_id) && | |
2006 | ep->rxid != FC_XID_UNKNOWN) | |
2007 | goto unlock_reject; | |
2008 | explan = ELS_EXPL_SID; | |
2009 | if (ep->sid != sid) | |
2010 | goto unlock_reject; | |
2011 | ||
2012 | /* | |
2013 | * Clear Recovery Qualifier state, and cancel timer if complete. | |
2014 | */ | |
2015 | if (ep->esb_stat & ESB_ST_REC_QUAL) { | |
2016 | ep->esb_stat &= ~ESB_ST_REC_QUAL; | |
2017 | atomic_dec(&ep->ex_refcnt); /* drop hold for rec qual */ | |
2018 | } | |
2019 | if (ep->esb_stat & ESB_ST_COMPLETE) { | |
2020 | if (cancel_delayed_work(&ep->timeout_work)) | |
2021 | atomic_dec(&ep->ex_refcnt); /* drop timer hold */ | |
2022 | } | |
2023 | ||
2024 | spin_unlock_bh(&ep->ex_lock); | |
2025 | ||
2026 | /* | |
2027 | * Send LS_ACC. | |
2028 | */ | |
2029 | fc_seq_ls_acc(sp); | |
3f127ad9 | 2030 | goto out; |
42e9a92f RL |
2031 | |
2032 | unlock_reject: | |
2033 | spin_unlock_bh(&ep->ex_lock); | |
42e9a92f RL |
2034 | reject: |
2035 | fc_seq_ls_rjt(sp, ELS_RJT_LOGIC, explan); | |
3f127ad9 | 2036 | out: |
42e9a92f | 2037 | fc_frame_free(fp); |
3f127ad9 VD |
2038 | if (ep) |
2039 | fc_exch_release(ep); /* drop hold from fc_exch_find */ | |
42e9a92f RL |
2040 | } |
2041 | ||
3a3b42bf RL |
2042 | /** |
2043 | * fc_exch_mgr_add() - Add an exchange manager to a local port's list of EMs | |
2044 | * @lport: The local port to add the exchange manager to | |
2045 | * @mp: The exchange manager to be added to the local port | |
2046 | * @match: The match routine that indicates when this EM should be used | |
2047 | */ | |
96316099 VD |
2048 | struct fc_exch_mgr_anchor *fc_exch_mgr_add(struct fc_lport *lport, |
2049 | struct fc_exch_mgr *mp, | |
2050 | bool (*match)(struct fc_frame *)) | |
2051 | { | |
2052 | struct fc_exch_mgr_anchor *ema; | |
2053 | ||
2054 | ema = kmalloc(sizeof(*ema), GFP_ATOMIC); | |
2055 | if (!ema) | |
2056 | return ema; | |
2057 | ||
2058 | ema->mp = mp; | |
2059 | ema->match = match; | |
2060 | /* add EM anchor to EM anchors list */ | |
2061 | list_add_tail(&ema->ema_list, &lport->ema_list); | |
2062 | kref_get(&mp->kref); | |
2063 | return ema; | |
2064 | } | |
2065 | EXPORT_SYMBOL(fc_exch_mgr_add); | |
2066 | ||
3a3b42bf RL |
2067 | /** |
2068 | * fc_exch_mgr_destroy() - Destroy an exchange manager | |
2069 | * @kref: The reference to the EM to be destroyed | |
2070 | */ | |
96316099 VD |
2071 | static void fc_exch_mgr_destroy(struct kref *kref) |
2072 | { | |
2073 | struct fc_exch_mgr *mp = container_of(kref, struct fc_exch_mgr, kref); | |
2074 | ||
96316099 | 2075 | mempool_destroy(mp->ep_pool); |
e4bc50be | 2076 | free_percpu(mp->pool); |
96316099 VD |
2077 | kfree(mp); |
2078 | } | |
2079 | ||
3a3b42bf RL |
2080 | /** |
2081 | * fc_exch_mgr_del() - Delete an EM from a local port's list | |
2082 | * @ema: The exchange manager anchor identifying the EM to be deleted | |
2083 | */ | |
96316099 VD |
2084 | void fc_exch_mgr_del(struct fc_exch_mgr_anchor *ema) |
2085 | { | |
2086 | /* remove EM anchor from EM anchors list */ | |
2087 | list_del(&ema->ema_list); | |
2088 | kref_put(&ema->mp->kref, fc_exch_mgr_destroy); | |
2089 | kfree(ema); | |
2090 | } | |
2091 | EXPORT_SYMBOL(fc_exch_mgr_del); | |
2092 | ||
174e1ebf | 2093 | /** |
3a3b42bf RL |
2094 | * fc_exch_mgr_list_clone() - Share all exchange manager objects |
2095 | * @src: Source lport to clone exchange managers from | |
2096 | * @dst: New lport that takes references to all the exchange managers | |
174e1ebf CL |
2097 | */ |
2098 | int fc_exch_mgr_list_clone(struct fc_lport *src, struct fc_lport *dst) | |
2099 | { | |
2100 | struct fc_exch_mgr_anchor *ema, *tmp; | |
2101 | ||
2102 | list_for_each_entry(ema, &src->ema_list, ema_list) { | |
2103 | if (!fc_exch_mgr_add(dst, ema->mp, ema->match)) | |
2104 | goto err; | |
2105 | } | |
2106 | return 0; | |
2107 | err: | |
2108 | list_for_each_entry_safe(ema, tmp, &dst->ema_list, ema_list) | |
2109 | fc_exch_mgr_del(ema); | |
2110 | return -ENOMEM; | |
2111 | } | |
2112 | ||
3a3b42bf RL |
2113 | /** |
2114 | * fc_exch_mgr_alloc() - Allocate an exchange manager | |
2115 | * @lport: The local port that the new EM will be associated with | |
2116 | * @class: The default FC class for new exchanges | |
2117 | * @min_xid: The minimum XID for exchanges from the new EM | |
2118 | * @max_xid: The maximum XID for exchanges from the new EM | |
2119 | * @match: The match routine for the new EM | |
2120 | */ | |
2121 | struct fc_exch_mgr *fc_exch_mgr_alloc(struct fc_lport *lport, | |
42e9a92f | 2122 | enum fc_class class, |
52ff878c VD |
2123 | u16 min_xid, u16 max_xid, |
2124 | bool (*match)(struct fc_frame *)) | |
42e9a92f RL |
2125 | { |
2126 | struct fc_exch_mgr *mp; | |
e4bc50be VD |
2127 | u16 pool_exch_range; |
2128 | size_t pool_size; | |
2129 | unsigned int cpu; | |
2130 | struct fc_exch_pool *pool; | |
42e9a92f | 2131 | |
e4bc50be VD |
2132 | if (max_xid <= min_xid || max_xid == FC_XID_UNKNOWN || |
2133 | (min_xid & fc_cpu_mask) != 0) { | |
3a3b42bf | 2134 | FC_LPORT_DBG(lport, "Invalid min_xid 0x:%x and max_xid 0x:%x\n", |
7414705e | 2135 | min_xid, max_xid); |
42e9a92f RL |
2136 | return NULL; |
2137 | } | |
2138 | ||
2139 | /* | |
b2f0091f | 2140 | * allocate memory for EM |
42e9a92f | 2141 | */ |
b2f0091f | 2142 | mp = kzalloc(sizeof(struct fc_exch_mgr), GFP_ATOMIC); |
42e9a92f RL |
2143 | if (!mp) |
2144 | return NULL; | |
2145 | ||
2146 | mp->class = class; | |
42e9a92f RL |
2147 | /* adjust em exch xid range for offload */ |
2148 | mp->min_xid = min_xid; | |
2149 | mp->max_xid = max_xid; | |
42e9a92f RL |
2150 | |
2151 | mp->ep_pool = mempool_create_slab_pool(2, fc_em_cachep); | |
2152 | if (!mp->ep_pool) | |
2153 | goto free_mp; | |
2154 | ||
e4bc50be VD |
2155 | /* |
2156 | * Setup per cpu exch pool with entire exchange id range equally | |
2157 | * divided across all cpus. The exch pointers array memory is | |
2158 | * allocated for exch range per pool. | |
2159 | */ | |
2160 | pool_exch_range = (mp->max_xid - mp->min_xid + 1) / (fc_cpu_mask + 1); | |
2161 | mp->pool_max_index = pool_exch_range - 1; | |
2162 | ||
2163 | /* | |
2164 | * Allocate and initialize per cpu exch pool | |
2165 | */ | |
2166 | pool_size = sizeof(*pool) + pool_exch_range * sizeof(struct fc_exch *); | |
2167 | mp->pool = __alloc_percpu(pool_size, __alignof__(struct fc_exch_pool)); | |
2168 | if (!mp->pool) | |
2169 | goto free_mempool; | |
2170 | for_each_possible_cpu(cpu) { | |
2171 | pool = per_cpu_ptr(mp->pool, cpu); | |
2172 | spin_lock_init(&pool->lock); | |
2173 | INIT_LIST_HEAD(&pool->ex_list); | |
2174 | } | |
2175 | ||
52ff878c | 2176 | kref_init(&mp->kref); |
3a3b42bf | 2177 | if (!fc_exch_mgr_add(lport, mp, match)) { |
e4bc50be VD |
2178 | free_percpu(mp->pool); |
2179 | goto free_mempool; | |
52ff878c VD |
2180 | } |
2181 | ||
2182 | /* | |
2183 | * Above kref_init() sets mp->kref to 1 and then | |
2184 | * call to fc_exch_mgr_add incremented mp->kref again, | |
2185 | * so adjust that extra increment. | |
2186 | */ | |
2187 | kref_put(&mp->kref, fc_exch_mgr_destroy); | |
42e9a92f RL |
2188 | return mp; |
2189 | ||
e4bc50be VD |
2190 | free_mempool: |
2191 | mempool_destroy(mp->ep_pool); | |
42e9a92f RL |
2192 | free_mp: |
2193 | kfree(mp); | |
2194 | return NULL; | |
2195 | } | |
2196 | EXPORT_SYMBOL(fc_exch_mgr_alloc); | |
2197 | ||
3a3b42bf RL |
2198 | /** |
2199 | * fc_exch_mgr_free() - Free all exchange managers on a local port | |
2200 | * @lport: The local port whose EMs are to be freed | |
2201 | */ | |
52ff878c | 2202 | void fc_exch_mgr_free(struct fc_lport *lport) |
42e9a92f | 2203 | { |
52ff878c VD |
2204 | struct fc_exch_mgr_anchor *ema, *next; |
2205 | ||
2206 | list_for_each_entry_safe(ema, next, &lport->ema_list, ema_list) | |
2207 | fc_exch_mgr_del(ema); | |
42e9a92f RL |
2208 | } |
2209 | EXPORT_SYMBOL(fc_exch_mgr_free); | |
2210 | ||
3a3b42bf RL |
2211 | /** |
2212 | * fc_exch_recv() - Handler for received frames | |
2213 | * @lport: The local port the frame was received on | |
2214 | * @fp: The received frame | |
42e9a92f | 2215 | */ |
3a3b42bf | 2216 | void fc_exch_recv(struct fc_lport *lport, struct fc_frame *fp) |
42e9a92f RL |
2217 | { |
2218 | struct fc_frame_header *fh = fc_frame_header_get(fp); | |
52ff878c VD |
2219 | struct fc_exch_mgr_anchor *ema; |
2220 | u32 f_ctl, found = 0; | |
2221 | u16 oxid; | |
42e9a92f RL |
2222 | |
2223 | /* lport lock ? */ | |
3a3b42bf RL |
2224 | if (!lport || lport->state == LPORT_ST_DISABLED) { |
2225 | FC_LPORT_DBG(lport, "Receiving frames for an lport that " | |
7414705e | 2226 | "has not been initialized correctly\n"); |
42e9a92f RL |
2227 | fc_frame_free(fp); |
2228 | return; | |
2229 | } | |
2230 | ||
52ff878c VD |
2231 | f_ctl = ntoh24(fh->fh_f_ctl); |
2232 | oxid = ntohs(fh->fh_ox_id); | |
2233 | if (f_ctl & FC_FC_EX_CTX) { | |
3a3b42bf | 2234 | list_for_each_entry(ema, &lport->ema_list, ema_list) { |
52ff878c VD |
2235 | if ((oxid >= ema->mp->min_xid) && |
2236 | (oxid <= ema->mp->max_xid)) { | |
2237 | found = 1; | |
2238 | break; | |
2239 | } | |
2240 | } | |
2241 | ||
2242 | if (!found) { | |
3a3b42bf | 2243 | FC_LPORT_DBG(lport, "Received response for out " |
52ff878c VD |
2244 | "of range oxid:%hx\n", oxid); |
2245 | fc_frame_free(fp); | |
2246 | return; | |
2247 | } | |
2248 | } else | |
3a3b42bf | 2249 | ema = list_entry(lport->ema_list.prev, typeof(*ema), ema_list); |
52ff878c | 2250 | |
42e9a92f RL |
2251 | /* |
2252 | * If frame is marked invalid, just drop it. | |
2253 | */ | |
42e9a92f RL |
2254 | switch (fr_eof(fp)) { |
2255 | case FC_EOF_T: | |
2256 | if (f_ctl & FC_FC_END_SEQ) | |
2257 | skb_trim(fp_skb(fp), fr_len(fp) - FC_FC_FILL(f_ctl)); | |
2258 | /* fall through */ | |
2259 | case FC_EOF_N: | |
2260 | if (fh->fh_type == FC_TYPE_BLS) | |
52ff878c | 2261 | fc_exch_recv_bls(ema->mp, fp); |
42e9a92f RL |
2262 | else if ((f_ctl & (FC_FC_EX_CTX | FC_FC_SEQ_CTX)) == |
2263 | FC_FC_EX_CTX) | |
52ff878c | 2264 | fc_exch_recv_seq_resp(ema->mp, fp); |
42e9a92f | 2265 | else if (f_ctl & FC_FC_SEQ_CTX) |
52ff878c | 2266 | fc_exch_recv_resp(ema->mp, fp); |
42e9a92f | 2267 | else |
3a3b42bf | 2268 | fc_exch_recv_req(lport, ema->mp, fp); |
42e9a92f RL |
2269 | break; |
2270 | default: | |
3a3b42bf RL |
2271 | FC_LPORT_DBG(lport, "dropping invalid frame (eof %x)", |
2272 | fr_eof(fp)); | |
42e9a92f | 2273 | fc_frame_free(fp); |
42e9a92f RL |
2274 | } |
2275 | } | |
2276 | EXPORT_SYMBOL(fc_exch_recv); | |
2277 | ||
3a3b42bf RL |
2278 | /** |
2279 | * fc_exch_init() - Initialize the exchange layer for a local port | |
2280 | * @lport: The local port to initialize the exchange layer for | |
2281 | */ | |
2282 | int fc_exch_init(struct fc_lport *lport) | |
42e9a92f | 2283 | { |
3a3b42bf RL |
2284 | if (!lport->tt.seq_start_next) |
2285 | lport->tt.seq_start_next = fc_seq_start_next; | |
42e9a92f | 2286 | |
3a3b42bf RL |
2287 | if (!lport->tt.exch_seq_send) |
2288 | lport->tt.exch_seq_send = fc_exch_seq_send; | |
42e9a92f | 2289 | |
3a3b42bf RL |
2290 | if (!lport->tt.seq_send) |
2291 | lport->tt.seq_send = fc_seq_send; | |
42e9a92f | 2292 | |
3a3b42bf RL |
2293 | if (!lport->tt.seq_els_rsp_send) |
2294 | lport->tt.seq_els_rsp_send = fc_seq_els_rsp_send; | |
42e9a92f | 2295 | |
3a3b42bf RL |
2296 | if (!lport->tt.exch_done) |
2297 | lport->tt.exch_done = fc_exch_done; | |
42e9a92f | 2298 | |
3a3b42bf RL |
2299 | if (!lport->tt.exch_mgr_reset) |
2300 | lport->tt.exch_mgr_reset = fc_exch_mgr_reset; | |
42e9a92f | 2301 | |
3a3b42bf RL |
2302 | if (!lport->tt.seq_exch_abort) |
2303 | lport->tt.seq_exch_abort = fc_seq_exch_abort; | |
42e9a92f | 2304 | |
89f19a59 VD |
2305 | return 0; |
2306 | } | |
2307 | EXPORT_SYMBOL(fc_exch_init); | |
2308 | ||
2309 | /** | |
2310 | * fc_setup_exch_mgr() - Setup an exchange manager | |
2311 | */ | |
2312 | int fc_setup_exch_mgr() | |
2313 | { | |
2314 | fc_em_cachep = kmem_cache_create("libfc_em", sizeof(struct fc_exch), | |
2315 | 0, SLAB_HWCACHE_ALIGN, NULL); | |
2316 | if (!fc_em_cachep) | |
2317 | return -ENOMEM; | |
2318 | ||
e4bc50be VD |
2319 | /* |
2320 | * Initialize fc_cpu_mask and fc_cpu_order. The | |
2321 | * fc_cpu_mask is set for nr_cpu_ids rounded up | |
2322 | * to order of 2's * power and order is stored | |
2323 | * in fc_cpu_order as this is later required in | |
2324 | * mapping between an exch id and exch array index | |
2325 | * in per cpu exch pool. | |
2326 | * | |
2327 | * This round up is required to align fc_cpu_mask | |
2328 | * to exchange id's lower bits such that all incoming | |
2329 | * frames of an exchange gets delivered to the same | |
2330 | * cpu on which exchange originated by simple bitwise | |
2331 | * AND operation between fc_cpu_mask and exchange id. | |
2332 | */ | |
2333 | fc_cpu_mask = 1; | |
2334 | fc_cpu_order = 0; | |
2335 | while (fc_cpu_mask < nr_cpu_ids) { | |
2336 | fc_cpu_mask <<= 1; | |
2337 | fc_cpu_order++; | |
2338 | } | |
2339 | fc_cpu_mask--; | |
2340 | ||
42e9a92f RL |
2341 | return 0; |
2342 | } | |
42e9a92f | 2343 | |
3a3b42bf RL |
2344 | /** |
2345 | * fc_destroy_exch_mgr() - Destroy an exchange manager | |
2346 | */ | |
2347 | void fc_destroy_exch_mgr() | |
42e9a92f RL |
2348 | { |
2349 | kmem_cache_destroy(fc_em_cachep); | |
2350 | } |