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IB/srp: Remove superfluous casts
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aef9ec39
RD
1/*
2 * Copyright (c) 2005 Cisco Systems. All rights reserved.
3 *
4 * This software is available to you under a choice of one of two
5 * licenses. You may choose to be licensed under the terms of the GNU
6 * General Public License (GPL) Version 2, available from the file
7 * COPYING in the main directory of this source tree, or the
8 * OpenIB.org BSD license below:
9 *
10 * Redistribution and use in source and binary forms, with or
11 * without modification, are permitted provided that the following
12 * conditions are met:
13 *
14 * - Redistributions of source code must retain the above
15 * copyright notice, this list of conditions and the following
16 * disclaimer.
17 *
18 * - Redistributions in binary form must reproduce the above
19 * copyright notice, this list of conditions and the following
20 * disclaimer in the documentation and/or other materials
21 * provided with the distribution.
22 *
23 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
24 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
25 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
26 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
27 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
28 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
29 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
30 * SOFTWARE.
aef9ec39
RD
31 */
32
d236cd0e 33#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
e0bda7d8 34
aef9ec39
RD
35#include <linux/module.h>
36#include <linux/init.h>
37#include <linux/slab.h>
38#include <linux/err.h>
39#include <linux/string.h>
40#include <linux/parser.h>
41#include <linux/random.h>
de25968c 42#include <linux/jiffies.h>
56b5390c 43#include <rdma/ib_cache.h>
aef9ec39 44
60063497 45#include <linux/atomic.h>
aef9ec39
RD
46
47#include <scsi/scsi.h>
48#include <scsi/scsi_device.h>
49#include <scsi/scsi_dbg.h>
71444b97 50#include <scsi/scsi_tcq.h>
aef9ec39 51#include <scsi/srp.h>
3236822b 52#include <scsi/scsi_transport_srp.h>
aef9ec39 53
aef9ec39
RD
54#include "ib_srp.h"
55
56#define DRV_NAME "ib_srp"
57#define PFX DRV_NAME ": "
e8ca4135
VP
58#define DRV_VERSION "1.0"
59#define DRV_RELDATE "July 1, 2013"
aef9ec39
RD
60
61MODULE_AUTHOR("Roland Dreier");
62MODULE_DESCRIPTION("InfiniBand SCSI RDMA Protocol initiator "
63 "v" DRV_VERSION " (" DRV_RELDATE ")");
64MODULE_LICENSE("Dual BSD/GPL");
65
49248644
DD
66static unsigned int srp_sg_tablesize;
67static unsigned int cmd_sg_entries;
c07d424d
DD
68static unsigned int indirect_sg_entries;
69static bool allow_ext_sg;
5cfb1782 70static bool prefer_fr;
b1b8854d 71static bool register_always;
49248644 72static int topspin_workarounds = 1;
74b0a15b 73
49248644
DD
74module_param(srp_sg_tablesize, uint, 0444);
75MODULE_PARM_DESC(srp_sg_tablesize, "Deprecated name for cmd_sg_entries");
74b0a15b 76
49248644
DD
77module_param(cmd_sg_entries, uint, 0444);
78MODULE_PARM_DESC(cmd_sg_entries,
79 "Default number of gather/scatter entries in the SRP command (default is 12, max 255)");
aef9ec39 80
c07d424d
DD
81module_param(indirect_sg_entries, uint, 0444);
82MODULE_PARM_DESC(indirect_sg_entries,
83 "Default max number of gather/scatter entries (default is 12, max is " __stringify(SCSI_MAX_SG_CHAIN_SEGMENTS) ")");
84
85module_param(allow_ext_sg, bool, 0444);
86MODULE_PARM_DESC(allow_ext_sg,
87 "Default behavior when there are more than cmd_sg_entries S/G entries after mapping; fails the request when false (default false)");
88
aef9ec39
RD
89module_param(topspin_workarounds, int, 0444);
90MODULE_PARM_DESC(topspin_workarounds,
91 "Enable workarounds for Topspin/Cisco SRP target bugs if != 0");
92
5cfb1782
BVA
93module_param(prefer_fr, bool, 0444);
94MODULE_PARM_DESC(prefer_fr,
95"Whether to use fast registration if both FMR and fast registration are supported");
96
b1b8854d
BVA
97module_param(register_always, bool, 0444);
98MODULE_PARM_DESC(register_always,
99 "Use memory registration even for contiguous memory regions");
100
ed9b2264
BVA
101static struct kernel_param_ops srp_tmo_ops;
102
a95cadb9
BVA
103static int srp_reconnect_delay = 10;
104module_param_cb(reconnect_delay, &srp_tmo_ops, &srp_reconnect_delay,
105 S_IRUGO | S_IWUSR);
106MODULE_PARM_DESC(reconnect_delay, "Time between successive reconnect attempts");
107
ed9b2264
BVA
108static int srp_fast_io_fail_tmo = 15;
109module_param_cb(fast_io_fail_tmo, &srp_tmo_ops, &srp_fast_io_fail_tmo,
110 S_IRUGO | S_IWUSR);
111MODULE_PARM_DESC(fast_io_fail_tmo,
112 "Number of seconds between the observation of a transport"
113 " layer error and failing all I/O. \"off\" means that this"
114 " functionality is disabled.");
115
a95cadb9 116static int srp_dev_loss_tmo = 600;
ed9b2264
BVA
117module_param_cb(dev_loss_tmo, &srp_tmo_ops, &srp_dev_loss_tmo,
118 S_IRUGO | S_IWUSR);
119MODULE_PARM_DESC(dev_loss_tmo,
120 "Maximum number of seconds that the SRP transport should"
121 " insulate transport layer errors. After this time has been"
122 " exceeded the SCSI host is removed. Should be"
123 " between 1 and " __stringify(SCSI_DEVICE_BLOCK_MAX_TIMEOUT)
124 " if fast_io_fail_tmo has not been set. \"off\" means that"
125 " this functionality is disabled.");
126
d92c0da7
BVA
127static unsigned ch_count;
128module_param(ch_count, uint, 0444);
129MODULE_PARM_DESC(ch_count,
130 "Number of RDMA channels to use for communication with an SRP target. Using more than one channel improves performance if the HCA supports multiple completion vectors. The default value is the minimum of four times the number of online CPU sockets and the number of completion vectors supported by the HCA.");
131
aef9ec39
RD
132static void srp_add_one(struct ib_device *device);
133static void srp_remove_one(struct ib_device *device);
509c07bc
BVA
134static void srp_recv_completion(struct ib_cq *cq, void *ch_ptr);
135static void srp_send_completion(struct ib_cq *cq, void *ch_ptr);
aef9ec39
RD
136static int srp_cm_handler(struct ib_cm_id *cm_id, struct ib_cm_event *event);
137
3236822b 138static struct scsi_transport_template *ib_srp_transport_template;
bcc05910 139static struct workqueue_struct *srp_remove_wq;
3236822b 140
aef9ec39
RD
141static struct ib_client srp_client = {
142 .name = "srp",
143 .add = srp_add_one,
144 .remove = srp_remove_one
145};
146
c1a0b23b
MT
147static struct ib_sa_client srp_sa_client;
148
ed9b2264
BVA
149static int srp_tmo_get(char *buffer, const struct kernel_param *kp)
150{
151 int tmo = *(int *)kp->arg;
152
153 if (tmo >= 0)
154 return sprintf(buffer, "%d", tmo);
155 else
156 return sprintf(buffer, "off");
157}
158
159static int srp_tmo_set(const char *val, const struct kernel_param *kp)
160{
161 int tmo, res;
162
163 if (strncmp(val, "off", 3) != 0) {
164 res = kstrtoint(val, 0, &tmo);
165 if (res)
166 goto out;
167 } else {
168 tmo = -1;
169 }
a95cadb9
BVA
170 if (kp->arg == &srp_reconnect_delay)
171 res = srp_tmo_valid(tmo, srp_fast_io_fail_tmo,
172 srp_dev_loss_tmo);
173 else if (kp->arg == &srp_fast_io_fail_tmo)
174 res = srp_tmo_valid(srp_reconnect_delay, tmo, srp_dev_loss_tmo);
ed9b2264 175 else
a95cadb9
BVA
176 res = srp_tmo_valid(srp_reconnect_delay, srp_fast_io_fail_tmo,
177 tmo);
ed9b2264
BVA
178 if (res)
179 goto out;
180 *(int *)kp->arg = tmo;
181
182out:
183 return res;
184}
185
186static struct kernel_param_ops srp_tmo_ops = {
187 .get = srp_tmo_get,
188 .set = srp_tmo_set,
189};
190
aef9ec39
RD
191static inline struct srp_target_port *host_to_target(struct Scsi_Host *host)
192{
193 return (struct srp_target_port *) host->hostdata;
194}
195
196static const char *srp_target_info(struct Scsi_Host *host)
197{
198 return host_to_target(host)->target_name;
199}
200
5d7cbfd6
RD
201static int srp_target_is_topspin(struct srp_target_port *target)
202{
203 static const u8 topspin_oui[3] = { 0x00, 0x05, 0xad };
3d1ff48d 204 static const u8 cisco_oui[3] = { 0x00, 0x1b, 0x0d };
5d7cbfd6
RD
205
206 return topspin_workarounds &&
3d1ff48d
RK
207 (!memcmp(&target->ioc_guid, topspin_oui, sizeof topspin_oui) ||
208 !memcmp(&target->ioc_guid, cisco_oui, sizeof cisco_oui));
5d7cbfd6
RD
209}
210
aef9ec39
RD
211static struct srp_iu *srp_alloc_iu(struct srp_host *host, size_t size,
212 gfp_t gfp_mask,
213 enum dma_data_direction direction)
214{
215 struct srp_iu *iu;
216
217 iu = kmalloc(sizeof *iu, gfp_mask);
218 if (!iu)
219 goto out;
220
221 iu->buf = kzalloc(size, gfp_mask);
222 if (!iu->buf)
223 goto out_free_iu;
224
05321937
GKH
225 iu->dma = ib_dma_map_single(host->srp_dev->dev, iu->buf, size,
226 direction);
227 if (ib_dma_mapping_error(host->srp_dev->dev, iu->dma))
aef9ec39
RD
228 goto out_free_buf;
229
230 iu->size = size;
231 iu->direction = direction;
232
233 return iu;
234
235out_free_buf:
236 kfree(iu->buf);
237out_free_iu:
238 kfree(iu);
239out:
240 return NULL;
241}
242
243static void srp_free_iu(struct srp_host *host, struct srp_iu *iu)
244{
245 if (!iu)
246 return;
247
05321937
GKH
248 ib_dma_unmap_single(host->srp_dev->dev, iu->dma, iu->size,
249 iu->direction);
aef9ec39
RD
250 kfree(iu->buf);
251 kfree(iu);
252}
253
254static void srp_qp_event(struct ib_event *event, void *context)
255{
e0bda7d8 256 pr_debug("QP event %d\n", event->event);
aef9ec39
RD
257}
258
259static int srp_init_qp(struct srp_target_port *target,
260 struct ib_qp *qp)
261{
262 struct ib_qp_attr *attr;
263 int ret;
264
265 attr = kmalloc(sizeof *attr, GFP_KERNEL);
266 if (!attr)
267 return -ENOMEM;
268
56b5390c
BVA
269 ret = ib_find_cached_pkey(target->srp_host->srp_dev->dev,
270 target->srp_host->port,
271 be16_to_cpu(target->pkey),
272 &attr->pkey_index);
aef9ec39
RD
273 if (ret)
274 goto out;
275
276 attr->qp_state = IB_QPS_INIT;
277 attr->qp_access_flags = (IB_ACCESS_REMOTE_READ |
278 IB_ACCESS_REMOTE_WRITE);
279 attr->port_num = target->srp_host->port;
280
281 ret = ib_modify_qp(qp, attr,
282 IB_QP_STATE |
283 IB_QP_PKEY_INDEX |
284 IB_QP_ACCESS_FLAGS |
285 IB_QP_PORT);
286
287out:
288 kfree(attr);
289 return ret;
290}
291
509c07bc 292static int srp_new_cm_id(struct srp_rdma_ch *ch)
9fe4bcf4 293{
509c07bc 294 struct srp_target_port *target = ch->target;
9fe4bcf4
DD
295 struct ib_cm_id *new_cm_id;
296
05321937 297 new_cm_id = ib_create_cm_id(target->srp_host->srp_dev->dev,
509c07bc 298 srp_cm_handler, ch);
9fe4bcf4
DD
299 if (IS_ERR(new_cm_id))
300 return PTR_ERR(new_cm_id);
301
509c07bc
BVA
302 if (ch->cm_id)
303 ib_destroy_cm_id(ch->cm_id);
304 ch->cm_id = new_cm_id;
305 ch->path.sgid = target->sgid;
306 ch->path.dgid = target->orig_dgid;
307 ch->path.pkey = target->pkey;
308 ch->path.service_id = target->service_id;
9fe4bcf4
DD
309
310 return 0;
311}
312
d1b4289e
BVA
313static struct ib_fmr_pool *srp_alloc_fmr_pool(struct srp_target_port *target)
314{
315 struct srp_device *dev = target->srp_host->srp_dev;
316 struct ib_fmr_pool_param fmr_param;
317
318 memset(&fmr_param, 0, sizeof(fmr_param));
319 fmr_param.pool_size = target->scsi_host->can_queue;
320 fmr_param.dirty_watermark = fmr_param.pool_size / 4;
321 fmr_param.cache = 1;
52ede08f
BVA
322 fmr_param.max_pages_per_fmr = dev->max_pages_per_mr;
323 fmr_param.page_shift = ilog2(dev->mr_page_size);
d1b4289e
BVA
324 fmr_param.access = (IB_ACCESS_LOCAL_WRITE |
325 IB_ACCESS_REMOTE_WRITE |
326 IB_ACCESS_REMOTE_READ);
327
328 return ib_create_fmr_pool(dev->pd, &fmr_param);
329}
330
5cfb1782
BVA
331/**
332 * srp_destroy_fr_pool() - free the resources owned by a pool
333 * @pool: Fast registration pool to be destroyed.
334 */
335static void srp_destroy_fr_pool(struct srp_fr_pool *pool)
336{
337 int i;
338 struct srp_fr_desc *d;
339
340 if (!pool)
341 return;
342
343 for (i = 0, d = &pool->desc[0]; i < pool->size; i++, d++) {
344 if (d->frpl)
345 ib_free_fast_reg_page_list(d->frpl);
346 if (d->mr)
347 ib_dereg_mr(d->mr);
348 }
349 kfree(pool);
350}
351
352/**
353 * srp_create_fr_pool() - allocate and initialize a pool for fast registration
354 * @device: IB device to allocate fast registration descriptors for.
355 * @pd: Protection domain associated with the FR descriptors.
356 * @pool_size: Number of descriptors to allocate.
357 * @max_page_list_len: Maximum fast registration work request page list length.
358 */
359static struct srp_fr_pool *srp_create_fr_pool(struct ib_device *device,
360 struct ib_pd *pd, int pool_size,
361 int max_page_list_len)
362{
363 struct srp_fr_pool *pool;
364 struct srp_fr_desc *d;
365 struct ib_mr *mr;
366 struct ib_fast_reg_page_list *frpl;
367 int i, ret = -EINVAL;
368
369 if (pool_size <= 0)
370 goto err;
371 ret = -ENOMEM;
372 pool = kzalloc(sizeof(struct srp_fr_pool) +
373 pool_size * sizeof(struct srp_fr_desc), GFP_KERNEL);
374 if (!pool)
375 goto err;
376 pool->size = pool_size;
377 pool->max_page_list_len = max_page_list_len;
378 spin_lock_init(&pool->lock);
379 INIT_LIST_HEAD(&pool->free_list);
380
381 for (i = 0, d = &pool->desc[0]; i < pool->size; i++, d++) {
382 mr = ib_alloc_fast_reg_mr(pd, max_page_list_len);
383 if (IS_ERR(mr)) {
384 ret = PTR_ERR(mr);
385 goto destroy_pool;
386 }
387 d->mr = mr;
388 frpl = ib_alloc_fast_reg_page_list(device, max_page_list_len);
389 if (IS_ERR(frpl)) {
390 ret = PTR_ERR(frpl);
391 goto destroy_pool;
392 }
393 d->frpl = frpl;
394 list_add_tail(&d->entry, &pool->free_list);
395 }
396
397out:
398 return pool;
399
400destroy_pool:
401 srp_destroy_fr_pool(pool);
402
403err:
404 pool = ERR_PTR(ret);
405 goto out;
406}
407
408/**
409 * srp_fr_pool_get() - obtain a descriptor suitable for fast registration
410 * @pool: Pool to obtain descriptor from.
411 */
412static struct srp_fr_desc *srp_fr_pool_get(struct srp_fr_pool *pool)
413{
414 struct srp_fr_desc *d = NULL;
415 unsigned long flags;
416
417 spin_lock_irqsave(&pool->lock, flags);
418 if (!list_empty(&pool->free_list)) {
419 d = list_first_entry(&pool->free_list, typeof(*d), entry);
420 list_del(&d->entry);
421 }
422 spin_unlock_irqrestore(&pool->lock, flags);
423
424 return d;
425}
426
427/**
428 * srp_fr_pool_put() - put an FR descriptor back in the free list
429 * @pool: Pool the descriptor was allocated from.
430 * @desc: Pointer to an array of fast registration descriptor pointers.
431 * @n: Number of descriptors to put back.
432 *
433 * Note: The caller must already have queued an invalidation request for
434 * desc->mr->rkey before calling this function.
435 */
436static void srp_fr_pool_put(struct srp_fr_pool *pool, struct srp_fr_desc **desc,
437 int n)
438{
439 unsigned long flags;
440 int i;
441
442 spin_lock_irqsave(&pool->lock, flags);
443 for (i = 0; i < n; i++)
444 list_add(&desc[i]->entry, &pool->free_list);
445 spin_unlock_irqrestore(&pool->lock, flags);
446}
447
448static struct srp_fr_pool *srp_alloc_fr_pool(struct srp_target_port *target)
449{
450 struct srp_device *dev = target->srp_host->srp_dev;
451
452 return srp_create_fr_pool(dev->dev, dev->pd,
453 target->scsi_host->can_queue,
454 dev->max_pages_per_mr);
455}
456
7dad6b2e
BVA
457/**
458 * srp_destroy_qp() - destroy an RDMA queue pair
459 * @ch: SRP RDMA channel.
460 *
461 * Change a queue pair into the error state and wait until all receive
462 * completions have been processed before destroying it. This avoids that
463 * the receive completion handler can access the queue pair while it is
464 * being destroyed.
465 */
466static void srp_destroy_qp(struct srp_rdma_ch *ch)
467{
7dad6b2e
BVA
468 static struct ib_qp_attr attr = { .qp_state = IB_QPS_ERR };
469 static struct ib_recv_wr wr = { .wr_id = SRP_LAST_WR_ID };
470 struct ib_recv_wr *bad_wr;
471 int ret;
472
473 /* Destroying a QP and reusing ch->done is only safe if not connected */
c014c8cd 474 WARN_ON_ONCE(ch->connected);
7dad6b2e
BVA
475
476 ret = ib_modify_qp(ch->qp, &attr, IB_QP_STATE);
477 WARN_ONCE(ret, "ib_cm_init_qp_attr() returned %d\n", ret);
478 if (ret)
479 goto out;
480
481 init_completion(&ch->done);
482 ret = ib_post_recv(ch->qp, &wr, &bad_wr);
483 WARN_ONCE(ret, "ib_post_recv() returned %d\n", ret);
484 if (ret == 0)
485 wait_for_completion(&ch->done);
486
487out:
488 ib_destroy_qp(ch->qp);
489}
490
509c07bc 491static int srp_create_ch_ib(struct srp_rdma_ch *ch)
aef9ec39 492{
509c07bc 493 struct srp_target_port *target = ch->target;
62154b2e 494 struct srp_device *dev = target->srp_host->srp_dev;
aef9ec39 495 struct ib_qp_init_attr *init_attr;
73aa89ed
IR
496 struct ib_cq *recv_cq, *send_cq;
497 struct ib_qp *qp;
d1b4289e 498 struct ib_fmr_pool *fmr_pool = NULL;
5cfb1782
BVA
499 struct srp_fr_pool *fr_pool = NULL;
500 const int m = 1 + dev->use_fast_reg;
aef9ec39
RD
501 int ret;
502
503 init_attr = kzalloc(sizeof *init_attr, GFP_KERNEL);
504 if (!init_attr)
505 return -ENOMEM;
506
7dad6b2e 507 /* + 1 for SRP_LAST_WR_ID */
509c07bc 508 recv_cq = ib_create_cq(dev->dev, srp_recv_completion, NULL, ch,
7dad6b2e 509 target->queue_size + 1, ch->comp_vector);
73aa89ed
IR
510 if (IS_ERR(recv_cq)) {
511 ret = PTR_ERR(recv_cq);
da9d2f07 512 goto err;
aef9ec39
RD
513 }
514
509c07bc
BVA
515 send_cq = ib_create_cq(dev->dev, srp_send_completion, NULL, ch,
516 m * target->queue_size, ch->comp_vector);
73aa89ed
IR
517 if (IS_ERR(send_cq)) {
518 ret = PTR_ERR(send_cq);
da9d2f07 519 goto err_recv_cq;
9c03dc9f
BVA
520 }
521
73aa89ed 522 ib_req_notify_cq(recv_cq, IB_CQ_NEXT_COMP);
aef9ec39
RD
523
524 init_attr->event_handler = srp_qp_event;
5cfb1782 525 init_attr->cap.max_send_wr = m * target->queue_size;
7dad6b2e 526 init_attr->cap.max_recv_wr = target->queue_size + 1;
aef9ec39
RD
527 init_attr->cap.max_recv_sge = 1;
528 init_attr->cap.max_send_sge = 1;
5cfb1782 529 init_attr->sq_sig_type = IB_SIGNAL_REQ_WR;
aef9ec39 530 init_attr->qp_type = IB_QPT_RC;
73aa89ed
IR
531 init_attr->send_cq = send_cq;
532 init_attr->recv_cq = recv_cq;
aef9ec39 533
62154b2e 534 qp = ib_create_qp(dev->pd, init_attr);
73aa89ed
IR
535 if (IS_ERR(qp)) {
536 ret = PTR_ERR(qp);
da9d2f07 537 goto err_send_cq;
aef9ec39
RD
538 }
539
73aa89ed 540 ret = srp_init_qp(target, qp);
da9d2f07
RD
541 if (ret)
542 goto err_qp;
aef9ec39 543
5cfb1782
BVA
544 if (dev->use_fast_reg && dev->has_fr) {
545 fr_pool = srp_alloc_fr_pool(target);
546 if (IS_ERR(fr_pool)) {
547 ret = PTR_ERR(fr_pool);
548 shost_printk(KERN_WARNING, target->scsi_host, PFX
549 "FR pool allocation failed (%d)\n", ret);
550 goto err_qp;
551 }
509c07bc
BVA
552 if (ch->fr_pool)
553 srp_destroy_fr_pool(ch->fr_pool);
554 ch->fr_pool = fr_pool;
5cfb1782 555 } else if (!dev->use_fast_reg && dev->has_fmr) {
d1b4289e
BVA
556 fmr_pool = srp_alloc_fmr_pool(target);
557 if (IS_ERR(fmr_pool)) {
558 ret = PTR_ERR(fmr_pool);
559 shost_printk(KERN_WARNING, target->scsi_host, PFX
560 "FMR pool allocation failed (%d)\n", ret);
561 goto err_qp;
562 }
509c07bc
BVA
563 if (ch->fmr_pool)
564 ib_destroy_fmr_pool(ch->fmr_pool);
565 ch->fmr_pool = fmr_pool;
d1b4289e
BVA
566 }
567
509c07bc 568 if (ch->qp)
7dad6b2e 569 srp_destroy_qp(ch);
509c07bc
BVA
570 if (ch->recv_cq)
571 ib_destroy_cq(ch->recv_cq);
572 if (ch->send_cq)
573 ib_destroy_cq(ch->send_cq);
73aa89ed 574
509c07bc
BVA
575 ch->qp = qp;
576 ch->recv_cq = recv_cq;
577 ch->send_cq = send_cq;
73aa89ed 578
da9d2f07
RD
579 kfree(init_attr);
580 return 0;
581
582err_qp:
73aa89ed 583 ib_destroy_qp(qp);
da9d2f07
RD
584
585err_send_cq:
73aa89ed 586 ib_destroy_cq(send_cq);
da9d2f07
RD
587
588err_recv_cq:
73aa89ed 589 ib_destroy_cq(recv_cq);
da9d2f07
RD
590
591err:
aef9ec39
RD
592 kfree(init_attr);
593 return ret;
594}
595
4d73f95f
BVA
596/*
597 * Note: this function may be called without srp_alloc_iu_bufs() having been
509c07bc 598 * invoked. Hence the ch->[rt]x_ring checks.
4d73f95f 599 */
509c07bc
BVA
600static void srp_free_ch_ib(struct srp_target_port *target,
601 struct srp_rdma_ch *ch)
aef9ec39 602{
5cfb1782 603 struct srp_device *dev = target->srp_host->srp_dev;
aef9ec39
RD
604 int i;
605
d92c0da7
BVA
606 if (!ch->target)
607 return;
608
509c07bc
BVA
609 if (ch->cm_id) {
610 ib_destroy_cm_id(ch->cm_id);
611 ch->cm_id = NULL;
394c595e
BVA
612 }
613
d92c0da7
BVA
614 /* If srp_new_cm_id() succeeded but srp_create_ch_ib() not, return. */
615 if (!ch->qp)
616 return;
617
5cfb1782 618 if (dev->use_fast_reg) {
509c07bc
BVA
619 if (ch->fr_pool)
620 srp_destroy_fr_pool(ch->fr_pool);
5cfb1782 621 } else {
509c07bc
BVA
622 if (ch->fmr_pool)
623 ib_destroy_fmr_pool(ch->fmr_pool);
5cfb1782 624 }
7dad6b2e 625 srp_destroy_qp(ch);
509c07bc
BVA
626 ib_destroy_cq(ch->send_cq);
627 ib_destroy_cq(ch->recv_cq);
aef9ec39 628
d92c0da7
BVA
629 /*
630 * Avoid that the SCSI error handler tries to use this channel after
631 * it has been freed. The SCSI error handler can namely continue
632 * trying to perform recovery actions after scsi_remove_host()
633 * returned.
634 */
635 ch->target = NULL;
636
509c07bc
BVA
637 ch->qp = NULL;
638 ch->send_cq = ch->recv_cq = NULL;
73aa89ed 639
509c07bc 640 if (ch->rx_ring) {
4d73f95f 641 for (i = 0; i < target->queue_size; ++i)
509c07bc
BVA
642 srp_free_iu(target->srp_host, ch->rx_ring[i]);
643 kfree(ch->rx_ring);
644 ch->rx_ring = NULL;
4d73f95f 645 }
509c07bc 646 if (ch->tx_ring) {
4d73f95f 647 for (i = 0; i < target->queue_size; ++i)
509c07bc
BVA
648 srp_free_iu(target->srp_host, ch->tx_ring[i]);
649 kfree(ch->tx_ring);
650 ch->tx_ring = NULL;
4d73f95f 651 }
aef9ec39
RD
652}
653
654static void srp_path_rec_completion(int status,
655 struct ib_sa_path_rec *pathrec,
509c07bc 656 void *ch_ptr)
aef9ec39 657{
509c07bc
BVA
658 struct srp_rdma_ch *ch = ch_ptr;
659 struct srp_target_port *target = ch->target;
aef9ec39 660
509c07bc 661 ch->status = status;
aef9ec39 662 if (status)
7aa54bd7
DD
663 shost_printk(KERN_ERR, target->scsi_host,
664 PFX "Got failed path rec status %d\n", status);
aef9ec39 665 else
509c07bc
BVA
666 ch->path = *pathrec;
667 complete(&ch->done);
aef9ec39
RD
668}
669
509c07bc 670static int srp_lookup_path(struct srp_rdma_ch *ch)
aef9ec39 671{
509c07bc 672 struct srp_target_port *target = ch->target;
a702adce
BVA
673 int ret;
674
509c07bc
BVA
675 ch->path.numb_path = 1;
676
677 init_completion(&ch->done);
678
679 ch->path_query_id = ib_sa_path_rec_get(&srp_sa_client,
680 target->srp_host->srp_dev->dev,
681 target->srp_host->port,
682 &ch->path,
683 IB_SA_PATH_REC_SERVICE_ID |
684 IB_SA_PATH_REC_DGID |
685 IB_SA_PATH_REC_SGID |
686 IB_SA_PATH_REC_NUMB_PATH |
687 IB_SA_PATH_REC_PKEY,
688 SRP_PATH_REC_TIMEOUT_MS,
689 GFP_KERNEL,
690 srp_path_rec_completion,
691 ch, &ch->path_query);
692 if (ch->path_query_id < 0)
693 return ch->path_query_id;
694
695 ret = wait_for_completion_interruptible(&ch->done);
a702adce
BVA
696 if (ret < 0)
697 return ret;
aef9ec39 698
509c07bc 699 if (ch->status < 0)
7aa54bd7
DD
700 shost_printk(KERN_WARNING, target->scsi_host,
701 PFX "Path record query failed\n");
aef9ec39 702
509c07bc 703 return ch->status;
aef9ec39
RD
704}
705
d92c0da7 706static int srp_send_req(struct srp_rdma_ch *ch, bool multich)
aef9ec39 707{
509c07bc 708 struct srp_target_port *target = ch->target;
aef9ec39
RD
709 struct {
710 struct ib_cm_req_param param;
711 struct srp_login_req priv;
712 } *req = NULL;
713 int status;
714
715 req = kzalloc(sizeof *req, GFP_KERNEL);
716 if (!req)
717 return -ENOMEM;
718
509c07bc 719 req->param.primary_path = &ch->path;
aef9ec39
RD
720 req->param.alternate_path = NULL;
721 req->param.service_id = target->service_id;
509c07bc
BVA
722 req->param.qp_num = ch->qp->qp_num;
723 req->param.qp_type = ch->qp->qp_type;
aef9ec39
RD
724 req->param.private_data = &req->priv;
725 req->param.private_data_len = sizeof req->priv;
726 req->param.flow_control = 1;
727
728 get_random_bytes(&req->param.starting_psn, 4);
729 req->param.starting_psn &= 0xffffff;
730
731 /*
732 * Pick some arbitrary defaults here; we could make these
733 * module parameters if anyone cared about setting them.
734 */
735 req->param.responder_resources = 4;
736 req->param.remote_cm_response_timeout = 20;
737 req->param.local_cm_response_timeout = 20;
7bb312e4 738 req->param.retry_count = target->tl_retry_count;
aef9ec39
RD
739 req->param.rnr_retry_count = 7;
740 req->param.max_cm_retries = 15;
741
742 req->priv.opcode = SRP_LOGIN_REQ;
743 req->priv.tag = 0;
49248644 744 req->priv.req_it_iu_len = cpu_to_be32(target->max_iu_len);
aef9ec39
RD
745 req->priv.req_buf_fmt = cpu_to_be16(SRP_BUF_FORMAT_DIRECT |
746 SRP_BUF_FORMAT_INDIRECT);
d92c0da7
BVA
747 req->priv.req_flags = (multich ? SRP_MULTICHAN_MULTI :
748 SRP_MULTICHAN_SINGLE);
0c0450db 749 /*
3cd96564 750 * In the published SRP specification (draft rev. 16a), the
0c0450db
R
751 * port identifier format is 8 bytes of ID extension followed
752 * by 8 bytes of GUID. Older drafts put the two halves in the
753 * opposite order, so that the GUID comes first.
754 *
755 * Targets conforming to these obsolete drafts can be
756 * recognized by the I/O Class they report.
757 */
758 if (target->io_class == SRP_REV10_IB_IO_CLASS) {
759 memcpy(req->priv.initiator_port_id,
747fe000 760 &target->sgid.global.interface_id, 8);
0c0450db 761 memcpy(req->priv.initiator_port_id + 8,
01cb9bcb 762 &target->initiator_ext, 8);
0c0450db
R
763 memcpy(req->priv.target_port_id, &target->ioc_guid, 8);
764 memcpy(req->priv.target_port_id + 8, &target->id_ext, 8);
765 } else {
766 memcpy(req->priv.initiator_port_id,
01cb9bcb
IR
767 &target->initiator_ext, 8);
768 memcpy(req->priv.initiator_port_id + 8,
747fe000 769 &target->sgid.global.interface_id, 8);
0c0450db
R
770 memcpy(req->priv.target_port_id, &target->id_ext, 8);
771 memcpy(req->priv.target_port_id + 8, &target->ioc_guid, 8);
772 }
773
aef9ec39
RD
774 /*
775 * Topspin/Cisco SRP targets will reject our login unless we
01cb9bcb
IR
776 * zero out the first 8 bytes of our initiator port ID and set
777 * the second 8 bytes to the local node GUID.
aef9ec39 778 */
5d7cbfd6 779 if (srp_target_is_topspin(target)) {
7aa54bd7
DD
780 shost_printk(KERN_DEBUG, target->scsi_host,
781 PFX "Topspin/Cisco initiator port ID workaround "
782 "activated for target GUID %016llx\n",
45c37cad 783 be64_to_cpu(target->ioc_guid));
aef9ec39 784 memset(req->priv.initiator_port_id, 0, 8);
01cb9bcb 785 memcpy(req->priv.initiator_port_id + 8,
05321937 786 &target->srp_host->srp_dev->dev->node_guid, 8);
aef9ec39 787 }
aef9ec39 788
509c07bc 789 status = ib_send_cm_req(ch->cm_id, &req->param);
aef9ec39
RD
790
791 kfree(req);
792
793 return status;
794}
795
ef6c49d8
BVA
796static bool srp_queue_remove_work(struct srp_target_port *target)
797{
798 bool changed = false;
799
800 spin_lock_irq(&target->lock);
801 if (target->state != SRP_TARGET_REMOVED) {
802 target->state = SRP_TARGET_REMOVED;
803 changed = true;
804 }
805 spin_unlock_irq(&target->lock);
806
807 if (changed)
bcc05910 808 queue_work(srp_remove_wq, &target->remove_work);
ef6c49d8
BVA
809
810 return changed;
811}
812
aef9ec39
RD
813static void srp_disconnect_target(struct srp_target_port *target)
814{
d92c0da7
BVA
815 struct srp_rdma_ch *ch;
816 int i;
509c07bc 817
c014c8cd 818 /* XXX should send SRP_I_LOGOUT request */
aef9ec39 819
c014c8cd
BVA
820 for (i = 0; i < target->ch_count; i++) {
821 ch = &target->ch[i];
822 ch->connected = false;
823 if (ch->cm_id && ib_send_cm_dreq(ch->cm_id, NULL, 0)) {
824 shost_printk(KERN_DEBUG, target->scsi_host,
825 PFX "Sending CM DREQ failed\n");
294c875a 826 }
e6581056 827 }
aef9ec39
RD
828}
829
509c07bc
BVA
830static void srp_free_req_data(struct srp_target_port *target,
831 struct srp_rdma_ch *ch)
8f26c9ff 832{
5cfb1782
BVA
833 struct srp_device *dev = target->srp_host->srp_dev;
834 struct ib_device *ibdev = dev->dev;
8f26c9ff
DD
835 struct srp_request *req;
836 int i;
837
d92c0da7 838 if (!ch->target || !ch->req_ring)
4d73f95f
BVA
839 return;
840
841 for (i = 0; i < target->req_ring_size; ++i) {
509c07bc 842 req = &ch->req_ring[i];
5cfb1782
BVA
843 if (dev->use_fast_reg)
844 kfree(req->fr_list);
845 else
846 kfree(req->fmr_list);
8f26c9ff 847 kfree(req->map_page);
c07d424d
DD
848 if (req->indirect_dma_addr) {
849 ib_dma_unmap_single(ibdev, req->indirect_dma_addr,
850 target->indirect_size,
851 DMA_TO_DEVICE);
852 }
853 kfree(req->indirect_desc);
8f26c9ff 854 }
4d73f95f 855
509c07bc
BVA
856 kfree(ch->req_ring);
857 ch->req_ring = NULL;
8f26c9ff
DD
858}
859
509c07bc 860static int srp_alloc_req_data(struct srp_rdma_ch *ch)
b81d00bd 861{
509c07bc 862 struct srp_target_port *target = ch->target;
b81d00bd
BVA
863 struct srp_device *srp_dev = target->srp_host->srp_dev;
864 struct ib_device *ibdev = srp_dev->dev;
865 struct srp_request *req;
5cfb1782 866 void *mr_list;
b81d00bd
BVA
867 dma_addr_t dma_addr;
868 int i, ret = -ENOMEM;
869
509c07bc
BVA
870 ch->req_ring = kcalloc(target->req_ring_size, sizeof(*ch->req_ring),
871 GFP_KERNEL);
872 if (!ch->req_ring)
4d73f95f
BVA
873 goto out;
874
875 for (i = 0; i < target->req_ring_size; ++i) {
509c07bc 876 req = &ch->req_ring[i];
5cfb1782
BVA
877 mr_list = kmalloc(target->cmd_sg_cnt * sizeof(void *),
878 GFP_KERNEL);
879 if (!mr_list)
880 goto out;
881 if (srp_dev->use_fast_reg)
882 req->fr_list = mr_list;
883 else
884 req->fmr_list = mr_list;
52ede08f 885 req->map_page = kmalloc(srp_dev->max_pages_per_mr *
d1b4289e 886 sizeof(void *), GFP_KERNEL);
5cfb1782
BVA
887 if (!req->map_page)
888 goto out;
b81d00bd 889 req->indirect_desc = kmalloc(target->indirect_size, GFP_KERNEL);
5cfb1782 890 if (!req->indirect_desc)
b81d00bd
BVA
891 goto out;
892
893 dma_addr = ib_dma_map_single(ibdev, req->indirect_desc,
894 target->indirect_size,
895 DMA_TO_DEVICE);
896 if (ib_dma_mapping_error(ibdev, dma_addr))
897 goto out;
898
899 req->indirect_dma_addr = dma_addr;
b81d00bd
BVA
900 }
901 ret = 0;
902
903out:
904 return ret;
905}
906
683b159a
BVA
907/**
908 * srp_del_scsi_host_attr() - Remove attributes defined in the host template.
909 * @shost: SCSI host whose attributes to remove from sysfs.
910 *
911 * Note: Any attributes defined in the host template and that did not exist
912 * before invocation of this function will be ignored.
913 */
914static void srp_del_scsi_host_attr(struct Scsi_Host *shost)
915{
916 struct device_attribute **attr;
917
918 for (attr = shost->hostt->shost_attrs; attr && *attr; ++attr)
919 device_remove_file(&shost->shost_dev, *attr);
920}
921
ee12d6a8
BVA
922static void srp_remove_target(struct srp_target_port *target)
923{
d92c0da7
BVA
924 struct srp_rdma_ch *ch;
925 int i;
509c07bc 926
ef6c49d8
BVA
927 WARN_ON_ONCE(target->state != SRP_TARGET_REMOVED);
928
ee12d6a8 929 srp_del_scsi_host_attr(target->scsi_host);
9dd69a60 930 srp_rport_get(target->rport);
ee12d6a8
BVA
931 srp_remove_host(target->scsi_host);
932 scsi_remove_host(target->scsi_host);
93079162 933 srp_stop_rport_timers(target->rport);
ef6c49d8 934 srp_disconnect_target(target);
d92c0da7
BVA
935 for (i = 0; i < target->ch_count; i++) {
936 ch = &target->ch[i];
937 srp_free_ch_ib(target, ch);
938 }
c1120f89 939 cancel_work_sync(&target->tl_err_work);
9dd69a60 940 srp_rport_put(target->rport);
d92c0da7
BVA
941 for (i = 0; i < target->ch_count; i++) {
942 ch = &target->ch[i];
943 srp_free_req_data(target, ch);
944 }
945 kfree(target->ch);
946 target->ch = NULL;
65d7dd2f
VP
947
948 spin_lock(&target->srp_host->target_lock);
949 list_del(&target->list);
950 spin_unlock(&target->srp_host->target_lock);
951
ee12d6a8
BVA
952 scsi_host_put(target->scsi_host);
953}
954
c4028958 955static void srp_remove_work(struct work_struct *work)
aef9ec39 956{
c4028958 957 struct srp_target_port *target =
ef6c49d8 958 container_of(work, struct srp_target_port, remove_work);
aef9ec39 959
ef6c49d8 960 WARN_ON_ONCE(target->state != SRP_TARGET_REMOVED);
aef9ec39 961
96fc248a 962 srp_remove_target(target);
aef9ec39
RD
963}
964
dc1bdbd9
BVA
965static void srp_rport_delete(struct srp_rport *rport)
966{
967 struct srp_target_port *target = rport->lld_data;
968
969 srp_queue_remove_work(target);
970}
971
c014c8cd
BVA
972/**
973 * srp_connected_ch() - number of connected channels
974 * @target: SRP target port.
975 */
976static int srp_connected_ch(struct srp_target_port *target)
977{
978 int i, c = 0;
979
980 for (i = 0; i < target->ch_count; i++)
981 c += target->ch[i].connected;
982
983 return c;
984}
985
d92c0da7 986static int srp_connect_ch(struct srp_rdma_ch *ch, bool multich)
aef9ec39 987{
509c07bc 988 struct srp_target_port *target = ch->target;
aef9ec39
RD
989 int ret;
990
c014c8cd 991 WARN_ON_ONCE(!multich && srp_connected_ch(target) > 0);
294c875a 992
509c07bc 993 ret = srp_lookup_path(ch);
aef9ec39
RD
994 if (ret)
995 return ret;
996
997 while (1) {
509c07bc 998 init_completion(&ch->done);
d92c0da7 999 ret = srp_send_req(ch, multich);
aef9ec39
RD
1000 if (ret)
1001 return ret;
509c07bc 1002 ret = wait_for_completion_interruptible(&ch->done);
a702adce
BVA
1003 if (ret < 0)
1004 return ret;
aef9ec39
RD
1005
1006 /*
1007 * The CM event handling code will set status to
1008 * SRP_PORT_REDIRECT if we get a port redirect REJ
1009 * back, or SRP_DLID_REDIRECT if we get a lid/qp
1010 * redirect REJ back.
1011 */
509c07bc 1012 switch (ch->status) {
aef9ec39 1013 case 0:
c014c8cd 1014 ch->connected = true;
aef9ec39
RD
1015 return 0;
1016
1017 case SRP_PORT_REDIRECT:
509c07bc 1018 ret = srp_lookup_path(ch);
aef9ec39
RD
1019 if (ret)
1020 return ret;
1021 break;
1022
1023 case SRP_DLID_REDIRECT:
1024 break;
1025
9fe4bcf4 1026 case SRP_STALE_CONN:
9fe4bcf4 1027 shost_printk(KERN_ERR, target->scsi_host, PFX
205619f2 1028 "giving up on stale connection\n");
509c07bc
BVA
1029 ch->status = -ECONNRESET;
1030 return ch->status;
9fe4bcf4 1031
aef9ec39 1032 default:
509c07bc 1033 return ch->status;
aef9ec39
RD
1034 }
1035 }
1036}
1037
509c07bc 1038static int srp_inv_rkey(struct srp_rdma_ch *ch, u32 rkey)
5cfb1782
BVA
1039{
1040 struct ib_send_wr *bad_wr;
1041 struct ib_send_wr wr = {
1042 .opcode = IB_WR_LOCAL_INV,
1043 .wr_id = LOCAL_INV_WR_ID_MASK,
1044 .next = NULL,
1045 .num_sge = 0,
1046 .send_flags = 0,
1047 .ex.invalidate_rkey = rkey,
1048 };
1049
509c07bc 1050 return ib_post_send(ch->qp, &wr, &bad_wr);
5cfb1782
BVA
1051}
1052
d945e1df 1053static void srp_unmap_data(struct scsi_cmnd *scmnd,
509c07bc 1054 struct srp_rdma_ch *ch,
d945e1df
RD
1055 struct srp_request *req)
1056{
509c07bc 1057 struct srp_target_port *target = ch->target;
5cfb1782
BVA
1058 struct srp_device *dev = target->srp_host->srp_dev;
1059 struct ib_device *ibdev = dev->dev;
1060 int i, res;
8f26c9ff 1061
bb350d1d 1062 if (!scsi_sglist(scmnd) ||
d945e1df
RD
1063 (scmnd->sc_data_direction != DMA_TO_DEVICE &&
1064 scmnd->sc_data_direction != DMA_FROM_DEVICE))
1065 return;
1066
5cfb1782
BVA
1067 if (dev->use_fast_reg) {
1068 struct srp_fr_desc **pfr;
1069
1070 for (i = req->nmdesc, pfr = req->fr_list; i > 0; i--, pfr++) {
509c07bc 1071 res = srp_inv_rkey(ch, (*pfr)->mr->rkey);
5cfb1782
BVA
1072 if (res < 0) {
1073 shost_printk(KERN_ERR, target->scsi_host, PFX
1074 "Queueing INV WR for rkey %#x failed (%d)\n",
1075 (*pfr)->mr->rkey, res);
1076 queue_work(system_long_wq,
1077 &target->tl_err_work);
1078 }
1079 }
1080 if (req->nmdesc)
509c07bc 1081 srp_fr_pool_put(ch->fr_pool, req->fr_list,
5cfb1782
BVA
1082 req->nmdesc);
1083 } else {
1084 struct ib_pool_fmr **pfmr;
1085
1086 for (i = req->nmdesc, pfmr = req->fmr_list; i > 0; i--, pfmr++)
1087 ib_fmr_pool_unmap(*pfmr);
1088 }
f5358a17 1089
8f26c9ff
DD
1090 ib_dma_unmap_sg(ibdev, scsi_sglist(scmnd), scsi_sg_count(scmnd),
1091 scmnd->sc_data_direction);
d945e1df
RD
1092}
1093
22032991
BVA
1094/**
1095 * srp_claim_req - Take ownership of the scmnd associated with a request.
509c07bc 1096 * @ch: SRP RDMA channel.
22032991 1097 * @req: SRP request.
b3fe628d 1098 * @sdev: If not NULL, only take ownership for this SCSI device.
22032991
BVA
1099 * @scmnd: If NULL, take ownership of @req->scmnd. If not NULL, only take
1100 * ownership of @req->scmnd if it equals @scmnd.
1101 *
1102 * Return value:
1103 * Either NULL or a pointer to the SCSI command the caller became owner of.
1104 */
509c07bc 1105static struct scsi_cmnd *srp_claim_req(struct srp_rdma_ch *ch,
22032991 1106 struct srp_request *req,
b3fe628d 1107 struct scsi_device *sdev,
22032991
BVA
1108 struct scsi_cmnd *scmnd)
1109{
1110 unsigned long flags;
1111
509c07bc 1112 spin_lock_irqsave(&ch->lock, flags);
b3fe628d
BVA
1113 if (req->scmnd &&
1114 (!sdev || req->scmnd->device == sdev) &&
1115 (!scmnd || req->scmnd == scmnd)) {
22032991
BVA
1116 scmnd = req->scmnd;
1117 req->scmnd = NULL;
22032991
BVA
1118 } else {
1119 scmnd = NULL;
1120 }
509c07bc 1121 spin_unlock_irqrestore(&ch->lock, flags);
22032991
BVA
1122
1123 return scmnd;
1124}
1125
1126/**
1127 * srp_free_req() - Unmap data and add request to the free request list.
509c07bc 1128 * @ch: SRP RDMA channel.
af24663b
BVA
1129 * @req: Request to be freed.
1130 * @scmnd: SCSI command associated with @req.
1131 * @req_lim_delta: Amount to be added to @target->req_lim.
22032991 1132 */
509c07bc
BVA
1133static void srp_free_req(struct srp_rdma_ch *ch, struct srp_request *req,
1134 struct scsi_cmnd *scmnd, s32 req_lim_delta)
526b4caa 1135{
94a9174c
BVA
1136 unsigned long flags;
1137
509c07bc 1138 srp_unmap_data(scmnd, ch, req);
22032991 1139
509c07bc
BVA
1140 spin_lock_irqsave(&ch->lock, flags);
1141 ch->req_lim += req_lim_delta;
509c07bc 1142 spin_unlock_irqrestore(&ch->lock, flags);
526b4caa
IR
1143}
1144
509c07bc
BVA
1145static void srp_finish_req(struct srp_rdma_ch *ch, struct srp_request *req,
1146 struct scsi_device *sdev, int result)
526b4caa 1147{
509c07bc 1148 struct scsi_cmnd *scmnd = srp_claim_req(ch, req, sdev, NULL);
22032991
BVA
1149
1150 if (scmnd) {
509c07bc 1151 srp_free_req(ch, req, scmnd, 0);
ed9b2264 1152 scmnd->result = result;
22032991 1153 scmnd->scsi_done(scmnd);
22032991 1154 }
526b4caa
IR
1155}
1156
ed9b2264 1157static void srp_terminate_io(struct srp_rport *rport)
aef9ec39 1158{
ed9b2264 1159 struct srp_target_port *target = rport->lld_data;
d92c0da7 1160 struct srp_rdma_ch *ch;
b3fe628d
BVA
1161 struct Scsi_Host *shost = target->scsi_host;
1162 struct scsi_device *sdev;
d92c0da7 1163 int i, j;
ed9b2264 1164
b3fe628d
BVA
1165 /*
1166 * Invoking srp_terminate_io() while srp_queuecommand() is running
1167 * is not safe. Hence the warning statement below.
1168 */
1169 shost_for_each_device(sdev, shost)
1170 WARN_ON_ONCE(sdev->request_queue->request_fn_active);
1171
d92c0da7
BVA
1172 for (i = 0; i < target->ch_count; i++) {
1173 ch = &target->ch[i];
509c07bc 1174
d92c0da7
BVA
1175 for (j = 0; j < target->req_ring_size; ++j) {
1176 struct srp_request *req = &ch->req_ring[j];
1177
1178 srp_finish_req(ch, req, NULL,
1179 DID_TRANSPORT_FAILFAST << 16);
1180 }
ed9b2264
BVA
1181 }
1182}
aef9ec39 1183
ed9b2264
BVA
1184/*
1185 * It is up to the caller to ensure that srp_rport_reconnect() calls are
1186 * serialized and that no concurrent srp_queuecommand(), srp_abort(),
1187 * srp_reset_device() or srp_reset_host() calls will occur while this function
1188 * is in progress. One way to realize that is not to call this function
1189 * directly but to call srp_reconnect_rport() instead since that last function
1190 * serializes calls of this function via rport->mutex and also blocks
1191 * srp_queuecommand() calls before invoking this function.
1192 */
1193static int srp_rport_reconnect(struct srp_rport *rport)
1194{
1195 struct srp_target_port *target = rport->lld_data;
d92c0da7
BVA
1196 struct srp_rdma_ch *ch;
1197 int i, j, ret = 0;
1198 bool multich = false;
09be70a2 1199
aef9ec39 1200 srp_disconnect_target(target);
34aa654e
BVA
1201
1202 if (target->state == SRP_TARGET_SCANNING)
1203 return -ENODEV;
1204
aef9ec39 1205 /*
c7c4e7ff
BVA
1206 * Now get a new local CM ID so that we avoid confusing the target in
1207 * case things are really fouled up. Doing so also ensures that all CM
1208 * callbacks will have finished before a new QP is allocated.
aef9ec39 1209 */
d92c0da7
BVA
1210 for (i = 0; i < target->ch_count; i++) {
1211 ch = &target->ch[i];
1212 if (!ch->target)
1213 break;
1214 ret += srp_new_cm_id(ch);
536ae14e 1215 }
d92c0da7
BVA
1216 for (i = 0; i < target->ch_count; i++) {
1217 ch = &target->ch[i];
1218 if (!ch->target)
1219 break;
1220 for (j = 0; j < target->req_ring_size; ++j) {
1221 struct srp_request *req = &ch->req_ring[j];
aef9ec39 1222
d92c0da7
BVA
1223 srp_finish_req(ch, req, NULL, DID_RESET << 16);
1224 }
1225 }
1226 for (i = 0; i < target->ch_count; i++) {
1227 ch = &target->ch[i];
1228 if (!ch->target)
1229 break;
1230 /*
1231 * Whether or not creating a new CM ID succeeded, create a new
1232 * QP. This guarantees that all completion callback function
1233 * invocations have finished before request resetting starts.
1234 */
1235 ret += srp_create_ch_ib(ch);
aef9ec39 1236
d92c0da7
BVA
1237 INIT_LIST_HEAD(&ch->free_tx);
1238 for (j = 0; j < target->queue_size; ++j)
1239 list_add(&ch->tx_ring[j]->list, &ch->free_tx);
1240 }
8de9fe3a
BVA
1241
1242 target->qp_in_error = false;
1243
d92c0da7
BVA
1244 for (i = 0; i < target->ch_count; i++) {
1245 ch = &target->ch[i];
a44074f1 1246 if (ret || !ch->target)
d92c0da7 1247 break;
d92c0da7
BVA
1248 ret = srp_connect_ch(ch, multich);
1249 multich = true;
1250 }
09be70a2 1251
ed9b2264
BVA
1252 if (ret == 0)
1253 shost_printk(KERN_INFO, target->scsi_host,
1254 PFX "reconnect succeeded\n");
aef9ec39
RD
1255
1256 return ret;
1257}
1258
8f26c9ff
DD
1259static void srp_map_desc(struct srp_map_state *state, dma_addr_t dma_addr,
1260 unsigned int dma_len, u32 rkey)
f5358a17 1261{
8f26c9ff 1262 struct srp_direct_buf *desc = state->desc;
f5358a17 1263
8f26c9ff
DD
1264 desc->va = cpu_to_be64(dma_addr);
1265 desc->key = cpu_to_be32(rkey);
1266 desc->len = cpu_to_be32(dma_len);
f5358a17 1267
8f26c9ff
DD
1268 state->total_len += dma_len;
1269 state->desc++;
1270 state->ndesc++;
1271}
559ce8f1 1272
8f26c9ff 1273static int srp_map_finish_fmr(struct srp_map_state *state,
509c07bc 1274 struct srp_rdma_ch *ch)
8f26c9ff 1275{
8f26c9ff
DD
1276 struct ib_pool_fmr *fmr;
1277 u64 io_addr = 0;
85507bcc 1278
509c07bc 1279 fmr = ib_fmr_pool_map_phys(ch->fmr_pool, state->pages,
8f26c9ff
DD
1280 state->npages, io_addr);
1281 if (IS_ERR(fmr))
1282 return PTR_ERR(fmr);
f5358a17 1283
8f26c9ff 1284 *state->next_fmr++ = fmr;
52ede08f 1285 state->nmdesc++;
f5358a17 1286
52ede08f 1287 srp_map_desc(state, 0, state->dma_len, fmr->fmr->rkey);
539dde6f 1288
8f26c9ff
DD
1289 return 0;
1290}
1291
5cfb1782 1292static int srp_map_finish_fr(struct srp_map_state *state,
509c07bc 1293 struct srp_rdma_ch *ch)
5cfb1782 1294{
509c07bc 1295 struct srp_target_port *target = ch->target;
5cfb1782
BVA
1296 struct srp_device *dev = target->srp_host->srp_dev;
1297 struct ib_send_wr *bad_wr;
1298 struct ib_send_wr wr;
1299 struct srp_fr_desc *desc;
1300 u32 rkey;
1301
509c07bc 1302 desc = srp_fr_pool_get(ch->fr_pool);
5cfb1782
BVA
1303 if (!desc)
1304 return -ENOMEM;
1305
1306 rkey = ib_inc_rkey(desc->mr->rkey);
1307 ib_update_fast_reg_key(desc->mr, rkey);
1308
1309 memcpy(desc->frpl->page_list, state->pages,
1310 sizeof(state->pages[0]) * state->npages);
1311
1312 memset(&wr, 0, sizeof(wr));
1313 wr.opcode = IB_WR_FAST_REG_MR;
1314 wr.wr_id = FAST_REG_WR_ID_MASK;
1315 wr.wr.fast_reg.iova_start = state->base_dma_addr;
1316 wr.wr.fast_reg.page_list = desc->frpl;
1317 wr.wr.fast_reg.page_list_len = state->npages;
1318 wr.wr.fast_reg.page_shift = ilog2(dev->mr_page_size);
1319 wr.wr.fast_reg.length = state->dma_len;
1320 wr.wr.fast_reg.access_flags = (IB_ACCESS_LOCAL_WRITE |
1321 IB_ACCESS_REMOTE_READ |
1322 IB_ACCESS_REMOTE_WRITE);
1323 wr.wr.fast_reg.rkey = desc->mr->lkey;
1324
1325 *state->next_fr++ = desc;
1326 state->nmdesc++;
1327
1328 srp_map_desc(state, state->base_dma_addr, state->dma_len,
1329 desc->mr->rkey);
1330
509c07bc 1331 return ib_post_send(ch->qp, &wr, &bad_wr);
5cfb1782
BVA
1332}
1333
539dde6f 1334static int srp_finish_mapping(struct srp_map_state *state,
509c07bc 1335 struct srp_rdma_ch *ch)
539dde6f 1336{
509c07bc 1337 struct srp_target_port *target = ch->target;
539dde6f
BVA
1338 int ret = 0;
1339
1340 if (state->npages == 0)
1341 return 0;
1342
b1b8854d 1343 if (state->npages == 1 && !register_always)
52ede08f 1344 srp_map_desc(state, state->base_dma_addr, state->dma_len,
539dde6f
BVA
1345 target->rkey);
1346 else
5cfb1782 1347 ret = target->srp_host->srp_dev->use_fast_reg ?
509c07bc
BVA
1348 srp_map_finish_fr(state, ch) :
1349 srp_map_finish_fmr(state, ch);
539dde6f
BVA
1350
1351 if (ret == 0) {
1352 state->npages = 0;
52ede08f 1353 state->dma_len = 0;
539dde6f
BVA
1354 }
1355
1356 return ret;
1357}
1358
8f26c9ff
DD
1359static void srp_map_update_start(struct srp_map_state *state,
1360 struct scatterlist *sg, int sg_index,
1361 dma_addr_t dma_addr)
1362{
1363 state->unmapped_sg = sg;
1364 state->unmapped_index = sg_index;
1365 state->unmapped_addr = dma_addr;
1366}
85507bcc 1367
8f26c9ff 1368static int srp_map_sg_entry(struct srp_map_state *state,
509c07bc 1369 struct srp_rdma_ch *ch,
8f26c9ff 1370 struct scatterlist *sg, int sg_index,
5cfb1782 1371 bool use_mr)
8f26c9ff 1372{
509c07bc 1373 struct srp_target_port *target = ch->target;
8f26c9ff
DD
1374 struct srp_device *dev = target->srp_host->srp_dev;
1375 struct ib_device *ibdev = dev->dev;
1376 dma_addr_t dma_addr = ib_sg_dma_address(ibdev, sg);
1377 unsigned int dma_len = ib_sg_dma_len(ibdev, sg);
1378 unsigned int len;
1379 int ret;
1380
1381 if (!dma_len)
1382 return 0;
1383
5cfb1782
BVA
1384 if (!use_mr) {
1385 /*
1386 * Once we're in direct map mode for a request, we don't
1387 * go back to FMR or FR mode, so no need to update anything
8f26c9ff
DD
1388 * other than the descriptor.
1389 */
1390 srp_map_desc(state, dma_addr, dma_len, target->rkey);
1391 return 0;
85507bcc 1392 }
f5358a17 1393
5cfb1782
BVA
1394 /*
1395 * Since not all RDMA HW drivers support non-zero page offsets for
1396 * FMR, if we start at an offset into a page, don't merge into the
1397 * current FMR mapping. Finish it out, and use the kernel's MR for
1398 * this sg entry.
8f26c9ff 1399 */
5cfb1782
BVA
1400 if ((!dev->use_fast_reg && dma_addr & ~dev->mr_page_mask) ||
1401 dma_len > dev->mr_max_size) {
509c07bc 1402 ret = srp_finish_mapping(state, ch);
8f26c9ff
DD
1403 if (ret)
1404 return ret;
1405
1406 srp_map_desc(state, dma_addr, dma_len, target->rkey);
1407 srp_map_update_start(state, NULL, 0, 0);
1408 return 0;
f5358a17
RD
1409 }
1410
5cfb1782
BVA
1411 /*
1412 * If this is the first sg that will be mapped via FMR or via FR, save
1413 * our position. We need to know the first unmapped entry, its index,
1414 * and the first unmapped address within that entry to be able to
1415 * restart mapping after an error.
8f26c9ff
DD
1416 */
1417 if (!state->unmapped_sg)
1418 srp_map_update_start(state, sg, sg_index, dma_addr);
f5358a17 1419
8f26c9ff 1420 while (dma_len) {
5cfb1782
BVA
1421 unsigned offset = dma_addr & ~dev->mr_page_mask;
1422 if (state->npages == dev->max_pages_per_mr || offset != 0) {
509c07bc 1423 ret = srp_finish_mapping(state, ch);
8f26c9ff
DD
1424 if (ret)
1425 return ret;
f5358a17 1426
8f26c9ff
DD
1427 srp_map_update_start(state, sg, sg_index, dma_addr);
1428 }
1429
5cfb1782 1430 len = min_t(unsigned int, dma_len, dev->mr_page_size - offset);
f5358a17 1431
8f26c9ff
DD
1432 if (!state->npages)
1433 state->base_dma_addr = dma_addr;
5cfb1782 1434 state->pages[state->npages++] = dma_addr & dev->mr_page_mask;
52ede08f 1435 state->dma_len += len;
8f26c9ff
DD
1436 dma_addr += len;
1437 dma_len -= len;
1438 }
1439
5cfb1782
BVA
1440 /*
1441 * If the last entry of the MR wasn't a full page, then we need to
8f26c9ff
DD
1442 * close it out and start a new one -- we can only merge at page
1443 * boundries.
1444 */
1445 ret = 0;
52ede08f 1446 if (len != dev->mr_page_size) {
509c07bc 1447 ret = srp_finish_mapping(state, ch);
8f26c9ff
DD
1448 if (!ret)
1449 srp_map_update_start(state, NULL, 0, 0);
1450 }
f5358a17
RD
1451 return ret;
1452}
1453
509c07bc
BVA
1454static int srp_map_sg(struct srp_map_state *state, struct srp_rdma_ch *ch,
1455 struct srp_request *req, struct scatterlist *scat,
1456 int count)
76bc1e1d 1457{
509c07bc 1458 struct srp_target_port *target = ch->target;
76bc1e1d
BVA
1459 struct srp_device *dev = target->srp_host->srp_dev;
1460 struct ib_device *ibdev = dev->dev;
1461 struct scatterlist *sg;
5cfb1782
BVA
1462 int i;
1463 bool use_mr;
76bc1e1d
BVA
1464
1465 state->desc = req->indirect_desc;
1466 state->pages = req->map_page;
5cfb1782
BVA
1467 if (dev->use_fast_reg) {
1468 state->next_fr = req->fr_list;
509c07bc 1469 use_mr = !!ch->fr_pool;
5cfb1782
BVA
1470 } else {
1471 state->next_fmr = req->fmr_list;
509c07bc 1472 use_mr = !!ch->fmr_pool;
5cfb1782 1473 }
76bc1e1d
BVA
1474
1475 for_each_sg(scat, sg, count, i) {
509c07bc 1476 if (srp_map_sg_entry(state, ch, sg, i, use_mr)) {
5cfb1782
BVA
1477 /*
1478 * Memory registration failed, so backtrack to the
1479 * first unmapped entry and continue on without using
1480 * memory registration.
76bc1e1d
BVA
1481 */
1482 dma_addr_t dma_addr;
1483 unsigned int dma_len;
1484
1485backtrack:
1486 sg = state->unmapped_sg;
1487 i = state->unmapped_index;
1488
1489 dma_addr = ib_sg_dma_address(ibdev, sg);
1490 dma_len = ib_sg_dma_len(ibdev, sg);
1491 dma_len -= (state->unmapped_addr - dma_addr);
1492 dma_addr = state->unmapped_addr;
5cfb1782 1493 use_mr = false;
76bc1e1d
BVA
1494 srp_map_desc(state, dma_addr, dma_len, target->rkey);
1495 }
1496 }
1497
509c07bc 1498 if (use_mr && srp_finish_mapping(state, ch))
76bc1e1d
BVA
1499 goto backtrack;
1500
52ede08f 1501 req->nmdesc = state->nmdesc;
5cfb1782
BVA
1502
1503 return 0;
76bc1e1d
BVA
1504}
1505
509c07bc 1506static int srp_map_data(struct scsi_cmnd *scmnd, struct srp_rdma_ch *ch,
aef9ec39
RD
1507 struct srp_request *req)
1508{
509c07bc 1509 struct srp_target_port *target = ch->target;
76bc1e1d 1510 struct scatterlist *scat;
aef9ec39 1511 struct srp_cmd *cmd = req->cmd->buf;
76bc1e1d 1512 int len, nents, count;
85507bcc
RC
1513 struct srp_device *dev;
1514 struct ib_device *ibdev;
8f26c9ff
DD
1515 struct srp_map_state state;
1516 struct srp_indirect_buf *indirect_hdr;
8f26c9ff
DD
1517 u32 table_len;
1518 u8 fmt;
aef9ec39 1519
bb350d1d 1520 if (!scsi_sglist(scmnd) || scmnd->sc_data_direction == DMA_NONE)
aef9ec39
RD
1521 return sizeof (struct srp_cmd);
1522
1523 if (scmnd->sc_data_direction != DMA_FROM_DEVICE &&
1524 scmnd->sc_data_direction != DMA_TO_DEVICE) {
7aa54bd7
DD
1525 shost_printk(KERN_WARNING, target->scsi_host,
1526 PFX "Unhandled data direction %d\n",
1527 scmnd->sc_data_direction);
aef9ec39
RD
1528 return -EINVAL;
1529 }
1530
bb350d1d
FT
1531 nents = scsi_sg_count(scmnd);
1532 scat = scsi_sglist(scmnd);
aef9ec39 1533
05321937 1534 dev = target->srp_host->srp_dev;
85507bcc
RC
1535 ibdev = dev->dev;
1536
1537 count = ib_dma_map_sg(ibdev, scat, nents, scmnd->sc_data_direction);
8f26c9ff
DD
1538 if (unlikely(count == 0))
1539 return -EIO;
f5358a17
RD
1540
1541 fmt = SRP_DATA_DESC_DIRECT;
1542 len = sizeof (struct srp_cmd) + sizeof (struct srp_direct_buf);
aef9ec39 1543
b1b8854d 1544 if (count == 1 && !register_always) {
f5358a17
RD
1545 /*
1546 * The midlayer only generated a single gather/scatter
1547 * entry, or DMA mapping coalesced everything to a
1548 * single entry. So a direct descriptor along with
1549 * the DMA MR suffices.
1550 */
cf368713 1551 struct srp_direct_buf *buf = (void *) cmd->add_data;
aef9ec39 1552
85507bcc 1553 buf->va = cpu_to_be64(ib_sg_dma_address(ibdev, scat));
9af76271 1554 buf->key = cpu_to_be32(target->rkey);
85507bcc 1555 buf->len = cpu_to_be32(ib_sg_dma_len(ibdev, scat));
8f26c9ff 1556
52ede08f 1557 req->nmdesc = 0;
8f26c9ff
DD
1558 goto map_complete;
1559 }
1560
5cfb1782
BVA
1561 /*
1562 * We have more than one scatter/gather entry, so build our indirect
1563 * descriptor table, trying to merge as many entries as we can.
8f26c9ff
DD
1564 */
1565 indirect_hdr = (void *) cmd->add_data;
1566
c07d424d
DD
1567 ib_dma_sync_single_for_cpu(ibdev, req->indirect_dma_addr,
1568 target->indirect_size, DMA_TO_DEVICE);
1569
8f26c9ff 1570 memset(&state, 0, sizeof(state));
509c07bc 1571 srp_map_sg(&state, ch, req, scat, count);
cf368713 1572
c07d424d
DD
1573 /* We've mapped the request, now pull as much of the indirect
1574 * descriptor table as we can into the command buffer. If this
1575 * target is not using an external indirect table, we are
1576 * guaranteed to fit into the command, as the SCSI layer won't
1577 * give us more S/G entries than we allow.
8f26c9ff 1578 */
8f26c9ff 1579 if (state.ndesc == 1) {
5cfb1782
BVA
1580 /*
1581 * Memory registration collapsed the sg-list into one entry,
8f26c9ff
DD
1582 * so use a direct descriptor.
1583 */
1584 struct srp_direct_buf *buf = (void *) cmd->add_data;
cf368713 1585
c07d424d 1586 *buf = req->indirect_desc[0];
8f26c9ff 1587 goto map_complete;
aef9ec39
RD
1588 }
1589
c07d424d
DD
1590 if (unlikely(target->cmd_sg_cnt < state.ndesc &&
1591 !target->allow_ext_sg)) {
1592 shost_printk(KERN_ERR, target->scsi_host,
1593 "Could not fit S/G list into SRP_CMD\n");
1594 return -EIO;
1595 }
1596
1597 count = min(state.ndesc, target->cmd_sg_cnt);
8f26c9ff
DD
1598 table_len = state.ndesc * sizeof (struct srp_direct_buf);
1599
1600 fmt = SRP_DATA_DESC_INDIRECT;
1601 len = sizeof(struct srp_cmd) + sizeof (struct srp_indirect_buf);
c07d424d 1602 len += count * sizeof (struct srp_direct_buf);
8f26c9ff 1603
c07d424d
DD
1604 memcpy(indirect_hdr->desc_list, req->indirect_desc,
1605 count * sizeof (struct srp_direct_buf));
8f26c9ff 1606
c07d424d 1607 indirect_hdr->table_desc.va = cpu_to_be64(req->indirect_dma_addr);
8f26c9ff
DD
1608 indirect_hdr->table_desc.key = cpu_to_be32(target->rkey);
1609 indirect_hdr->table_desc.len = cpu_to_be32(table_len);
1610 indirect_hdr->len = cpu_to_be32(state.total_len);
1611
1612 if (scmnd->sc_data_direction == DMA_TO_DEVICE)
c07d424d 1613 cmd->data_out_desc_cnt = count;
8f26c9ff 1614 else
c07d424d
DD
1615 cmd->data_in_desc_cnt = count;
1616
1617 ib_dma_sync_single_for_device(ibdev, req->indirect_dma_addr, table_len,
1618 DMA_TO_DEVICE);
8f26c9ff
DD
1619
1620map_complete:
aef9ec39
RD
1621 if (scmnd->sc_data_direction == DMA_TO_DEVICE)
1622 cmd->buf_fmt = fmt << 4;
1623 else
1624 cmd->buf_fmt = fmt;
1625
aef9ec39
RD
1626 return len;
1627}
1628
76c75b25
BVA
1629/*
1630 * Return an IU and possible credit to the free pool
1631 */
509c07bc 1632static void srp_put_tx_iu(struct srp_rdma_ch *ch, struct srp_iu *iu,
76c75b25
BVA
1633 enum srp_iu_type iu_type)
1634{
1635 unsigned long flags;
1636
509c07bc
BVA
1637 spin_lock_irqsave(&ch->lock, flags);
1638 list_add(&iu->list, &ch->free_tx);
76c75b25 1639 if (iu_type != SRP_IU_RSP)
509c07bc
BVA
1640 ++ch->req_lim;
1641 spin_unlock_irqrestore(&ch->lock, flags);
76c75b25
BVA
1642}
1643
05a1d750 1644/*
509c07bc 1645 * Must be called with ch->lock held to protect req_lim and free_tx.
e9684678 1646 * If IU is not sent, it must be returned using srp_put_tx_iu().
05a1d750
DD
1647 *
1648 * Note:
1649 * An upper limit for the number of allocated information units for each
1650 * request type is:
1651 * - SRP_IU_CMD: SRP_CMD_SQ_SIZE, since the SCSI mid-layer never queues
1652 * more than Scsi_Host.can_queue requests.
1653 * - SRP_IU_TSK_MGMT: SRP_TSK_MGMT_SQ_SIZE.
1654 * - SRP_IU_RSP: 1, since a conforming SRP target never sends more than
1655 * one unanswered SRP request to an initiator.
1656 */
509c07bc 1657static struct srp_iu *__srp_get_tx_iu(struct srp_rdma_ch *ch,
05a1d750
DD
1658 enum srp_iu_type iu_type)
1659{
509c07bc 1660 struct srp_target_port *target = ch->target;
05a1d750
DD
1661 s32 rsv = (iu_type == SRP_IU_TSK_MGMT) ? 0 : SRP_TSK_MGMT_SQ_SIZE;
1662 struct srp_iu *iu;
1663
509c07bc 1664 srp_send_completion(ch->send_cq, ch);
05a1d750 1665
509c07bc 1666 if (list_empty(&ch->free_tx))
05a1d750
DD
1667 return NULL;
1668
1669 /* Initiator responses to target requests do not consume credits */
76c75b25 1670 if (iu_type != SRP_IU_RSP) {
509c07bc 1671 if (ch->req_lim <= rsv) {
76c75b25
BVA
1672 ++target->zero_req_lim;
1673 return NULL;
1674 }
1675
509c07bc 1676 --ch->req_lim;
05a1d750
DD
1677 }
1678
509c07bc 1679 iu = list_first_entry(&ch->free_tx, struct srp_iu, list);
76c75b25 1680 list_del(&iu->list);
05a1d750
DD
1681 return iu;
1682}
1683
509c07bc 1684static int srp_post_send(struct srp_rdma_ch *ch, struct srp_iu *iu, int len)
05a1d750 1685{
509c07bc 1686 struct srp_target_port *target = ch->target;
05a1d750
DD
1687 struct ib_sge list;
1688 struct ib_send_wr wr, *bad_wr;
05a1d750
DD
1689
1690 list.addr = iu->dma;
1691 list.length = len;
9af76271 1692 list.lkey = target->lkey;
05a1d750
DD
1693
1694 wr.next = NULL;
dcb4cb85 1695 wr.wr_id = (uintptr_t) iu;
05a1d750
DD
1696 wr.sg_list = &list;
1697 wr.num_sge = 1;
1698 wr.opcode = IB_WR_SEND;
1699 wr.send_flags = IB_SEND_SIGNALED;
1700
509c07bc 1701 return ib_post_send(ch->qp, &wr, &bad_wr);
05a1d750
DD
1702}
1703
509c07bc 1704static int srp_post_recv(struct srp_rdma_ch *ch, struct srp_iu *iu)
c996bb47 1705{
509c07bc 1706 struct srp_target_port *target = ch->target;
c996bb47 1707 struct ib_recv_wr wr, *bad_wr;
dcb4cb85 1708 struct ib_sge list;
c996bb47
BVA
1709
1710 list.addr = iu->dma;
1711 list.length = iu->size;
9af76271 1712 list.lkey = target->lkey;
c996bb47
BVA
1713
1714 wr.next = NULL;
dcb4cb85 1715 wr.wr_id = (uintptr_t) iu;
c996bb47
BVA
1716 wr.sg_list = &list;
1717 wr.num_sge = 1;
1718
509c07bc 1719 return ib_post_recv(ch->qp, &wr, &bad_wr);
c996bb47
BVA
1720}
1721
509c07bc 1722static void srp_process_rsp(struct srp_rdma_ch *ch, struct srp_rsp *rsp)
aef9ec39 1723{
509c07bc 1724 struct srp_target_port *target = ch->target;
aef9ec39
RD
1725 struct srp_request *req;
1726 struct scsi_cmnd *scmnd;
1727 unsigned long flags;
aef9ec39 1728
aef9ec39 1729 if (unlikely(rsp->tag & SRP_TAG_TSK_MGMT)) {
509c07bc
BVA
1730 spin_lock_irqsave(&ch->lock, flags);
1731 ch->req_lim += be32_to_cpu(rsp->req_lim_delta);
1732 spin_unlock_irqrestore(&ch->lock, flags);
94a9174c 1733
509c07bc 1734 ch->tsk_mgmt_status = -1;
f8b6e31e 1735 if (be32_to_cpu(rsp->resp_data_len) >= 4)
509c07bc
BVA
1736 ch->tsk_mgmt_status = rsp->data[3];
1737 complete(&ch->tsk_mgmt_done);
aef9ec39 1738 } else {
77f2c1a4
BVA
1739 scmnd = scsi_host_find_tag(target->scsi_host, rsp->tag);
1740 if (scmnd) {
1741 req = (void *)scmnd->host_scribble;
1742 scmnd = srp_claim_req(ch, req, NULL, scmnd);
1743 }
22032991 1744 if (!scmnd) {
7aa54bd7 1745 shost_printk(KERN_ERR, target->scsi_host,
d92c0da7
BVA
1746 "Null scmnd for RSP w/tag %#016llx received on ch %td / QP %#x\n",
1747 rsp->tag, ch - target->ch, ch->qp->qp_num);
22032991 1748
509c07bc
BVA
1749 spin_lock_irqsave(&ch->lock, flags);
1750 ch->req_lim += be32_to_cpu(rsp->req_lim_delta);
1751 spin_unlock_irqrestore(&ch->lock, flags);
22032991
BVA
1752
1753 return;
1754 }
aef9ec39
RD
1755 scmnd->result = rsp->status;
1756
1757 if (rsp->flags & SRP_RSP_FLAG_SNSVALID) {
1758 memcpy(scmnd->sense_buffer, rsp->data +
1759 be32_to_cpu(rsp->resp_data_len),
1760 min_t(int, be32_to_cpu(rsp->sense_data_len),
1761 SCSI_SENSE_BUFFERSIZE));
1762 }
1763
e714531a 1764 if (unlikely(rsp->flags & SRP_RSP_FLAG_DIUNDER))
bb350d1d 1765 scsi_set_resid(scmnd, be32_to_cpu(rsp->data_in_res_cnt));
e714531a
BVA
1766 else if (unlikely(rsp->flags & SRP_RSP_FLAG_DIOVER))
1767 scsi_set_resid(scmnd, -be32_to_cpu(rsp->data_in_res_cnt));
1768 else if (unlikely(rsp->flags & SRP_RSP_FLAG_DOUNDER))
1769 scsi_set_resid(scmnd, be32_to_cpu(rsp->data_out_res_cnt));
1770 else if (unlikely(rsp->flags & SRP_RSP_FLAG_DOOVER))
1771 scsi_set_resid(scmnd, -be32_to_cpu(rsp->data_out_res_cnt));
aef9ec39 1772
509c07bc 1773 srp_free_req(ch, req, scmnd,
22032991
BVA
1774 be32_to_cpu(rsp->req_lim_delta));
1775
f8b6e31e
DD
1776 scmnd->host_scribble = NULL;
1777 scmnd->scsi_done(scmnd);
aef9ec39 1778 }
aef9ec39
RD
1779}
1780
509c07bc 1781static int srp_response_common(struct srp_rdma_ch *ch, s32 req_delta,
bb12588a
DD
1782 void *rsp, int len)
1783{
509c07bc 1784 struct srp_target_port *target = ch->target;
76c75b25 1785 struct ib_device *dev = target->srp_host->srp_dev->dev;
bb12588a
DD
1786 unsigned long flags;
1787 struct srp_iu *iu;
76c75b25 1788 int err;
bb12588a 1789
509c07bc
BVA
1790 spin_lock_irqsave(&ch->lock, flags);
1791 ch->req_lim += req_delta;
1792 iu = __srp_get_tx_iu(ch, SRP_IU_RSP);
1793 spin_unlock_irqrestore(&ch->lock, flags);
76c75b25 1794
bb12588a
DD
1795 if (!iu) {
1796 shost_printk(KERN_ERR, target->scsi_host, PFX
1797 "no IU available to send response\n");
76c75b25 1798 return 1;
bb12588a
DD
1799 }
1800
1801 ib_dma_sync_single_for_cpu(dev, iu->dma, len, DMA_TO_DEVICE);
1802 memcpy(iu->buf, rsp, len);
1803 ib_dma_sync_single_for_device(dev, iu->dma, len, DMA_TO_DEVICE);
1804
509c07bc 1805 err = srp_post_send(ch, iu, len);
76c75b25 1806 if (err) {
bb12588a
DD
1807 shost_printk(KERN_ERR, target->scsi_host, PFX
1808 "unable to post response: %d\n", err);
509c07bc 1809 srp_put_tx_iu(ch, iu, SRP_IU_RSP);
76c75b25 1810 }
bb12588a 1811
bb12588a
DD
1812 return err;
1813}
1814
509c07bc 1815static void srp_process_cred_req(struct srp_rdma_ch *ch,
bb12588a
DD
1816 struct srp_cred_req *req)
1817{
1818 struct srp_cred_rsp rsp = {
1819 .opcode = SRP_CRED_RSP,
1820 .tag = req->tag,
1821 };
1822 s32 delta = be32_to_cpu(req->req_lim_delta);
1823
509c07bc
BVA
1824 if (srp_response_common(ch, delta, &rsp, sizeof(rsp)))
1825 shost_printk(KERN_ERR, ch->target->scsi_host, PFX
bb12588a
DD
1826 "problems processing SRP_CRED_REQ\n");
1827}
1828
509c07bc 1829static void srp_process_aer_req(struct srp_rdma_ch *ch,
bb12588a
DD
1830 struct srp_aer_req *req)
1831{
509c07bc 1832 struct srp_target_port *target = ch->target;
bb12588a
DD
1833 struct srp_aer_rsp rsp = {
1834 .opcode = SRP_AER_RSP,
1835 .tag = req->tag,
1836 };
1837 s32 delta = be32_to_cpu(req->req_lim_delta);
1838
1839 shost_printk(KERN_ERR, target->scsi_host, PFX
1840 "ignoring AER for LUN %llu\n", be64_to_cpu(req->lun));
1841
509c07bc 1842 if (srp_response_common(ch, delta, &rsp, sizeof(rsp)))
bb12588a
DD
1843 shost_printk(KERN_ERR, target->scsi_host, PFX
1844 "problems processing SRP_AER_REQ\n");
1845}
1846
509c07bc 1847static void srp_handle_recv(struct srp_rdma_ch *ch, struct ib_wc *wc)
aef9ec39 1848{
509c07bc 1849 struct srp_target_port *target = ch->target;
dcb4cb85 1850 struct ib_device *dev = target->srp_host->srp_dev->dev;
737b94eb 1851 struct srp_iu *iu = (struct srp_iu *) (uintptr_t) wc->wr_id;
c996bb47 1852 int res;
aef9ec39
RD
1853 u8 opcode;
1854
509c07bc 1855 ib_dma_sync_single_for_cpu(dev, iu->dma, ch->max_ti_iu_len,
85507bcc 1856 DMA_FROM_DEVICE);
aef9ec39
RD
1857
1858 opcode = *(u8 *) iu->buf;
1859
1860 if (0) {
7aa54bd7
DD
1861 shost_printk(KERN_ERR, target->scsi_host,
1862 PFX "recv completion, opcode 0x%02x\n", opcode);
7a700811
BVA
1863 print_hex_dump(KERN_ERR, "", DUMP_PREFIX_OFFSET, 8, 1,
1864 iu->buf, wc->byte_len, true);
aef9ec39
RD
1865 }
1866
1867 switch (opcode) {
1868 case SRP_RSP:
509c07bc 1869 srp_process_rsp(ch, iu->buf);
aef9ec39
RD
1870 break;
1871
bb12588a 1872 case SRP_CRED_REQ:
509c07bc 1873 srp_process_cred_req(ch, iu->buf);
bb12588a
DD
1874 break;
1875
1876 case SRP_AER_REQ:
509c07bc 1877 srp_process_aer_req(ch, iu->buf);
bb12588a
DD
1878 break;
1879
aef9ec39
RD
1880 case SRP_T_LOGOUT:
1881 /* XXX Handle target logout */
7aa54bd7
DD
1882 shost_printk(KERN_WARNING, target->scsi_host,
1883 PFX "Got target logout request\n");
aef9ec39
RD
1884 break;
1885
1886 default:
7aa54bd7
DD
1887 shost_printk(KERN_WARNING, target->scsi_host,
1888 PFX "Unhandled SRP opcode 0x%02x\n", opcode);
aef9ec39
RD
1889 break;
1890 }
1891
509c07bc 1892 ib_dma_sync_single_for_device(dev, iu->dma, ch->max_ti_iu_len,
85507bcc 1893 DMA_FROM_DEVICE);
c996bb47 1894
509c07bc 1895 res = srp_post_recv(ch, iu);
c996bb47
BVA
1896 if (res != 0)
1897 shost_printk(KERN_ERR, target->scsi_host,
1898 PFX "Recv failed with error code %d\n", res);
aef9ec39
RD
1899}
1900
c1120f89
BVA
1901/**
1902 * srp_tl_err_work() - handle a transport layer error
af24663b 1903 * @work: Work structure embedded in an SRP target port.
c1120f89
BVA
1904 *
1905 * Note: This function may get invoked before the rport has been created,
1906 * hence the target->rport test.
1907 */
1908static void srp_tl_err_work(struct work_struct *work)
1909{
1910 struct srp_target_port *target;
1911
1912 target = container_of(work, struct srp_target_port, tl_err_work);
1913 if (target->rport)
1914 srp_start_tl_fail_timers(target->rport);
1915}
1916
5cfb1782 1917static void srp_handle_qp_err(u64 wr_id, enum ib_wc_status wc_status,
7dad6b2e 1918 bool send_err, struct srp_rdma_ch *ch)
948d1e88 1919{
7dad6b2e
BVA
1920 struct srp_target_port *target = ch->target;
1921
1922 if (wr_id == SRP_LAST_WR_ID) {
1923 complete(&ch->done);
1924 return;
1925 }
1926
c014c8cd 1927 if (ch->connected && !target->qp_in_error) {
5cfb1782
BVA
1928 if (wr_id & LOCAL_INV_WR_ID_MASK) {
1929 shost_printk(KERN_ERR, target->scsi_host, PFX
1930 "LOCAL_INV failed with status %d\n",
1931 wc_status);
1932 } else if (wr_id & FAST_REG_WR_ID_MASK) {
1933 shost_printk(KERN_ERR, target->scsi_host, PFX
1934 "FAST_REG_MR failed status %d\n",
1935 wc_status);
1936 } else {
1937 shost_printk(KERN_ERR, target->scsi_host,
1938 PFX "failed %s status %d for iu %p\n",
1939 send_err ? "send" : "receive",
1940 wc_status, (void *)(uintptr_t)wr_id);
1941 }
c1120f89 1942 queue_work(system_long_wq, &target->tl_err_work);
4f0af697 1943 }
948d1e88
BVA
1944 target->qp_in_error = true;
1945}
1946
509c07bc 1947static void srp_recv_completion(struct ib_cq *cq, void *ch_ptr)
aef9ec39 1948{
509c07bc 1949 struct srp_rdma_ch *ch = ch_ptr;
aef9ec39 1950 struct ib_wc wc;
aef9ec39
RD
1951
1952 ib_req_notify_cq(cq, IB_CQ_NEXT_COMP);
1953 while (ib_poll_cq(cq, 1, &wc) > 0) {
948d1e88 1954 if (likely(wc.status == IB_WC_SUCCESS)) {
509c07bc 1955 srp_handle_recv(ch, &wc);
948d1e88 1956 } else {
7dad6b2e 1957 srp_handle_qp_err(wc.wr_id, wc.status, false, ch);
aef9ec39 1958 }
9c03dc9f
BVA
1959 }
1960}
1961
509c07bc 1962static void srp_send_completion(struct ib_cq *cq, void *ch_ptr)
9c03dc9f 1963{
509c07bc 1964 struct srp_rdma_ch *ch = ch_ptr;
9c03dc9f 1965 struct ib_wc wc;
dcb4cb85 1966 struct srp_iu *iu;
9c03dc9f
BVA
1967
1968 while (ib_poll_cq(cq, 1, &wc) > 0) {
948d1e88
BVA
1969 if (likely(wc.status == IB_WC_SUCCESS)) {
1970 iu = (struct srp_iu *) (uintptr_t) wc.wr_id;
509c07bc 1971 list_add(&iu->list, &ch->free_tx);
948d1e88 1972 } else {
7dad6b2e 1973 srp_handle_qp_err(wc.wr_id, wc.status, true, ch);
9c03dc9f 1974 }
aef9ec39
RD
1975 }
1976}
1977
76c75b25 1978static int srp_queuecommand(struct Scsi_Host *shost, struct scsi_cmnd *scmnd)
aef9ec39 1979{
76c75b25 1980 struct srp_target_port *target = host_to_target(shost);
a95cadb9 1981 struct srp_rport *rport = target->rport;
509c07bc 1982 struct srp_rdma_ch *ch;
aef9ec39
RD
1983 struct srp_request *req;
1984 struct srp_iu *iu;
1985 struct srp_cmd *cmd;
85507bcc 1986 struct ib_device *dev;
76c75b25 1987 unsigned long flags;
77f2c1a4
BVA
1988 u32 tag;
1989 u16 idx;
d1b4289e 1990 int len, ret;
a95cadb9
BVA
1991 const bool in_scsi_eh = !in_interrupt() && current == shost->ehandler;
1992
1993 /*
1994 * The SCSI EH thread is the only context from which srp_queuecommand()
1995 * can get invoked for blocked devices (SDEV_BLOCK /
1996 * SDEV_CREATED_BLOCK). Avoid racing with srp_reconnect_rport() by
1997 * locking the rport mutex if invoked from inside the SCSI EH.
1998 */
1999 if (in_scsi_eh)
2000 mutex_lock(&rport->mutex);
aef9ec39 2001
d1b4289e
BVA
2002 scmnd->result = srp_chkready(target->rport);
2003 if (unlikely(scmnd->result))
2004 goto err;
2ce19e72 2005
77f2c1a4
BVA
2006 WARN_ON_ONCE(scmnd->request->tag < 0);
2007 tag = blk_mq_unique_tag(scmnd->request);
d92c0da7 2008 ch = &target->ch[blk_mq_unique_tag_to_hwq(tag)];
77f2c1a4
BVA
2009 idx = blk_mq_unique_tag_to_tag(tag);
2010 WARN_ONCE(idx >= target->req_ring_size, "%s: tag %#x: idx %d >= %d\n",
2011 dev_name(&shost->shost_gendev), tag, idx,
2012 target->req_ring_size);
509c07bc
BVA
2013
2014 spin_lock_irqsave(&ch->lock, flags);
2015 iu = __srp_get_tx_iu(ch, SRP_IU_CMD);
509c07bc 2016 spin_unlock_irqrestore(&ch->lock, flags);
aef9ec39 2017
77f2c1a4
BVA
2018 if (!iu)
2019 goto err;
2020
2021 req = &ch->req_ring[idx];
05321937 2022 dev = target->srp_host->srp_dev->dev;
49248644 2023 ib_dma_sync_single_for_cpu(dev, iu->dma, target->max_iu_len,
85507bcc 2024 DMA_TO_DEVICE);
aef9ec39 2025
f8b6e31e 2026 scmnd->host_scribble = (void *) req;
aef9ec39
RD
2027
2028 cmd = iu->buf;
2029 memset(cmd, 0, sizeof *cmd);
2030
2031 cmd->opcode = SRP_CMD;
2032 cmd->lun = cpu_to_be64((u64) scmnd->device->lun << 48);
77f2c1a4 2033 cmd->tag = tag;
aef9ec39
RD
2034 memcpy(cmd->cdb, scmnd->cmnd, scmnd->cmd_len);
2035
aef9ec39
RD
2036 req->scmnd = scmnd;
2037 req->cmd = iu;
aef9ec39 2038
509c07bc 2039 len = srp_map_data(scmnd, ch, req);
aef9ec39 2040 if (len < 0) {
7aa54bd7 2041 shost_printk(KERN_ERR, target->scsi_host,
d1b4289e
BVA
2042 PFX "Failed to map data (%d)\n", len);
2043 /*
2044 * If we ran out of memory descriptors (-ENOMEM) because an
2045 * application is queuing many requests with more than
52ede08f 2046 * max_pages_per_mr sg-list elements, tell the SCSI mid-layer
d1b4289e
BVA
2047 * to reduce queue depth temporarily.
2048 */
2049 scmnd->result = len == -ENOMEM ?
2050 DID_OK << 16 | QUEUE_FULL << 1 : DID_ERROR << 16;
76c75b25 2051 goto err_iu;
aef9ec39
RD
2052 }
2053
49248644 2054 ib_dma_sync_single_for_device(dev, iu->dma, target->max_iu_len,
85507bcc 2055 DMA_TO_DEVICE);
aef9ec39 2056
509c07bc 2057 if (srp_post_send(ch, iu, len)) {
7aa54bd7 2058 shost_printk(KERN_ERR, target->scsi_host, PFX "Send failed\n");
aef9ec39
RD
2059 goto err_unmap;
2060 }
2061
d1b4289e
BVA
2062 ret = 0;
2063
a95cadb9
BVA
2064unlock_rport:
2065 if (in_scsi_eh)
2066 mutex_unlock(&rport->mutex);
2067
d1b4289e 2068 return ret;
aef9ec39
RD
2069
2070err_unmap:
509c07bc 2071 srp_unmap_data(scmnd, ch, req);
aef9ec39 2072
76c75b25 2073err_iu:
509c07bc 2074 srp_put_tx_iu(ch, iu, SRP_IU_CMD);
76c75b25 2075
024ca901
BVA
2076 /*
2077 * Avoid that the loops that iterate over the request ring can
2078 * encounter a dangling SCSI command pointer.
2079 */
2080 req->scmnd = NULL;
2081
d1b4289e
BVA
2082err:
2083 if (scmnd->result) {
2084 scmnd->scsi_done(scmnd);
2085 ret = 0;
2086 } else {
2087 ret = SCSI_MLQUEUE_HOST_BUSY;
2088 }
a95cadb9 2089
d1b4289e 2090 goto unlock_rport;
aef9ec39
RD
2091}
2092
4d73f95f
BVA
2093/*
2094 * Note: the resources allocated in this function are freed in
509c07bc 2095 * srp_free_ch_ib().
4d73f95f 2096 */
509c07bc 2097static int srp_alloc_iu_bufs(struct srp_rdma_ch *ch)
aef9ec39 2098{
509c07bc 2099 struct srp_target_port *target = ch->target;
aef9ec39
RD
2100 int i;
2101
509c07bc
BVA
2102 ch->rx_ring = kcalloc(target->queue_size, sizeof(*ch->rx_ring),
2103 GFP_KERNEL);
2104 if (!ch->rx_ring)
4d73f95f 2105 goto err_no_ring;
509c07bc
BVA
2106 ch->tx_ring = kcalloc(target->queue_size, sizeof(*ch->tx_ring),
2107 GFP_KERNEL);
2108 if (!ch->tx_ring)
4d73f95f
BVA
2109 goto err_no_ring;
2110
2111 for (i = 0; i < target->queue_size; ++i) {
509c07bc
BVA
2112 ch->rx_ring[i] = srp_alloc_iu(target->srp_host,
2113 ch->max_ti_iu_len,
2114 GFP_KERNEL, DMA_FROM_DEVICE);
2115 if (!ch->rx_ring[i])
aef9ec39
RD
2116 goto err;
2117 }
2118
4d73f95f 2119 for (i = 0; i < target->queue_size; ++i) {
509c07bc
BVA
2120 ch->tx_ring[i] = srp_alloc_iu(target->srp_host,
2121 target->max_iu_len,
2122 GFP_KERNEL, DMA_TO_DEVICE);
2123 if (!ch->tx_ring[i])
aef9ec39 2124 goto err;
dcb4cb85 2125
509c07bc 2126 list_add(&ch->tx_ring[i]->list, &ch->free_tx);
aef9ec39
RD
2127 }
2128
2129 return 0;
2130
2131err:
4d73f95f 2132 for (i = 0; i < target->queue_size; ++i) {
509c07bc
BVA
2133 srp_free_iu(target->srp_host, ch->rx_ring[i]);
2134 srp_free_iu(target->srp_host, ch->tx_ring[i]);
aef9ec39
RD
2135 }
2136
4d73f95f
BVA
2137
2138err_no_ring:
509c07bc
BVA
2139 kfree(ch->tx_ring);
2140 ch->tx_ring = NULL;
2141 kfree(ch->rx_ring);
2142 ch->rx_ring = NULL;
4d73f95f 2143
aef9ec39
RD
2144 return -ENOMEM;
2145}
2146
c9b03c1a
BVA
2147static uint32_t srp_compute_rq_tmo(struct ib_qp_attr *qp_attr, int attr_mask)
2148{
2149 uint64_t T_tr_ns, max_compl_time_ms;
2150 uint32_t rq_tmo_jiffies;
2151
2152 /*
2153 * According to section 11.2.4.2 in the IBTA spec (Modify Queue Pair,
2154 * table 91), both the QP timeout and the retry count have to be set
2155 * for RC QP's during the RTR to RTS transition.
2156 */
2157 WARN_ON_ONCE((attr_mask & (IB_QP_TIMEOUT | IB_QP_RETRY_CNT)) !=
2158 (IB_QP_TIMEOUT | IB_QP_RETRY_CNT));
2159
2160 /*
2161 * Set target->rq_tmo_jiffies to one second more than the largest time
2162 * it can take before an error completion is generated. See also
2163 * C9-140..142 in the IBTA spec for more information about how to
2164 * convert the QP Local ACK Timeout value to nanoseconds.
2165 */
2166 T_tr_ns = 4096 * (1ULL << qp_attr->timeout);
2167 max_compl_time_ms = qp_attr->retry_cnt * 4 * T_tr_ns;
2168 do_div(max_compl_time_ms, NSEC_PER_MSEC);
2169 rq_tmo_jiffies = msecs_to_jiffies(max_compl_time_ms + 1000);
2170
2171 return rq_tmo_jiffies;
2172}
2173
961e0be8
DD
2174static void srp_cm_rep_handler(struct ib_cm_id *cm_id,
2175 struct srp_login_rsp *lrsp,
509c07bc 2176 struct srp_rdma_ch *ch)
961e0be8 2177{
509c07bc 2178 struct srp_target_port *target = ch->target;
961e0be8
DD
2179 struct ib_qp_attr *qp_attr = NULL;
2180 int attr_mask = 0;
2181 int ret;
2182 int i;
2183
2184 if (lrsp->opcode == SRP_LOGIN_RSP) {
509c07bc
BVA
2185 ch->max_ti_iu_len = be32_to_cpu(lrsp->max_ti_iu_len);
2186 ch->req_lim = be32_to_cpu(lrsp->req_lim_delta);
961e0be8
DD
2187
2188 /*
2189 * Reserve credits for task management so we don't
2190 * bounce requests back to the SCSI mid-layer.
2191 */
2192 target->scsi_host->can_queue
509c07bc 2193 = min(ch->req_lim - SRP_TSK_MGMT_SQ_SIZE,
961e0be8 2194 target->scsi_host->can_queue);
4d73f95f
BVA
2195 target->scsi_host->cmd_per_lun
2196 = min_t(int, target->scsi_host->can_queue,
2197 target->scsi_host->cmd_per_lun);
961e0be8
DD
2198 } else {
2199 shost_printk(KERN_WARNING, target->scsi_host,
2200 PFX "Unhandled RSP opcode %#x\n", lrsp->opcode);
2201 ret = -ECONNRESET;
2202 goto error;
2203 }
2204
509c07bc
BVA
2205 if (!ch->rx_ring) {
2206 ret = srp_alloc_iu_bufs(ch);
961e0be8
DD
2207 if (ret)
2208 goto error;
2209 }
2210
2211 ret = -ENOMEM;
2212 qp_attr = kmalloc(sizeof *qp_attr, GFP_KERNEL);
2213 if (!qp_attr)
2214 goto error;
2215
2216 qp_attr->qp_state = IB_QPS_RTR;
2217 ret = ib_cm_init_qp_attr(cm_id, qp_attr, &attr_mask);
2218 if (ret)
2219 goto error_free;
2220
509c07bc 2221 ret = ib_modify_qp(ch->qp, qp_attr, attr_mask);
961e0be8
DD
2222 if (ret)
2223 goto error_free;
2224
4d73f95f 2225 for (i = 0; i < target->queue_size; i++) {
509c07bc
BVA
2226 struct srp_iu *iu = ch->rx_ring[i];
2227
2228 ret = srp_post_recv(ch, iu);
961e0be8
DD
2229 if (ret)
2230 goto error_free;
2231 }
2232
2233 qp_attr->qp_state = IB_QPS_RTS;
2234 ret = ib_cm_init_qp_attr(cm_id, qp_attr, &attr_mask);
2235 if (ret)
2236 goto error_free;
2237
c9b03c1a
BVA
2238 target->rq_tmo_jiffies = srp_compute_rq_tmo(qp_attr, attr_mask);
2239
509c07bc 2240 ret = ib_modify_qp(ch->qp, qp_attr, attr_mask);
961e0be8
DD
2241 if (ret)
2242 goto error_free;
2243
2244 ret = ib_send_cm_rtu(cm_id, NULL, 0);
2245
2246error_free:
2247 kfree(qp_attr);
2248
2249error:
509c07bc 2250 ch->status = ret;
961e0be8
DD
2251}
2252
aef9ec39
RD
2253static void srp_cm_rej_handler(struct ib_cm_id *cm_id,
2254 struct ib_cm_event *event,
509c07bc 2255 struct srp_rdma_ch *ch)
aef9ec39 2256{
509c07bc 2257 struct srp_target_port *target = ch->target;
7aa54bd7 2258 struct Scsi_Host *shost = target->scsi_host;
aef9ec39
RD
2259 struct ib_class_port_info *cpi;
2260 int opcode;
2261
2262 switch (event->param.rej_rcvd.reason) {
2263 case IB_CM_REJ_PORT_CM_REDIRECT:
2264 cpi = event->param.rej_rcvd.ari;
509c07bc
BVA
2265 ch->path.dlid = cpi->redirect_lid;
2266 ch->path.pkey = cpi->redirect_pkey;
aef9ec39 2267 cm_id->remote_cm_qpn = be32_to_cpu(cpi->redirect_qp) & 0x00ffffff;
509c07bc 2268 memcpy(ch->path.dgid.raw, cpi->redirect_gid, 16);
aef9ec39 2269
509c07bc 2270 ch->status = ch->path.dlid ?
aef9ec39
RD
2271 SRP_DLID_REDIRECT : SRP_PORT_REDIRECT;
2272 break;
2273
2274 case IB_CM_REJ_PORT_REDIRECT:
5d7cbfd6 2275 if (srp_target_is_topspin(target)) {
aef9ec39
RD
2276 /*
2277 * Topspin/Cisco SRP gateways incorrectly send
2278 * reject reason code 25 when they mean 24
2279 * (port redirect).
2280 */
509c07bc 2281 memcpy(ch->path.dgid.raw,
aef9ec39
RD
2282 event->param.rej_rcvd.ari, 16);
2283
7aa54bd7
DD
2284 shost_printk(KERN_DEBUG, shost,
2285 PFX "Topspin/Cisco redirect to target port GID %016llx%016llx\n",
509c07bc
BVA
2286 be64_to_cpu(ch->path.dgid.global.subnet_prefix),
2287 be64_to_cpu(ch->path.dgid.global.interface_id));
aef9ec39 2288
509c07bc 2289 ch->status = SRP_PORT_REDIRECT;
aef9ec39 2290 } else {
7aa54bd7
DD
2291 shost_printk(KERN_WARNING, shost,
2292 " REJ reason: IB_CM_REJ_PORT_REDIRECT\n");
509c07bc 2293 ch->status = -ECONNRESET;
aef9ec39
RD
2294 }
2295 break;
2296
2297 case IB_CM_REJ_DUPLICATE_LOCAL_COMM_ID:
7aa54bd7
DD
2298 shost_printk(KERN_WARNING, shost,
2299 " REJ reason: IB_CM_REJ_DUPLICATE_LOCAL_COMM_ID\n");
509c07bc 2300 ch->status = -ECONNRESET;
aef9ec39
RD
2301 break;
2302
2303 case IB_CM_REJ_CONSUMER_DEFINED:
2304 opcode = *(u8 *) event->private_data;
2305 if (opcode == SRP_LOGIN_REJ) {
2306 struct srp_login_rej *rej = event->private_data;
2307 u32 reason = be32_to_cpu(rej->reason);
2308
2309 if (reason == SRP_LOGIN_REJ_REQ_IT_IU_LENGTH_TOO_LARGE)
7aa54bd7
DD
2310 shost_printk(KERN_WARNING, shost,
2311 PFX "SRP_LOGIN_REJ: requested max_it_iu_len too large\n");
aef9ec39 2312 else
e7ffde01
BVA
2313 shost_printk(KERN_WARNING, shost, PFX
2314 "SRP LOGIN from %pI6 to %pI6 REJECTED, reason 0x%08x\n",
747fe000
BVA
2315 target->sgid.raw,
2316 target->orig_dgid.raw, reason);
aef9ec39 2317 } else
7aa54bd7
DD
2318 shost_printk(KERN_WARNING, shost,
2319 " REJ reason: IB_CM_REJ_CONSUMER_DEFINED,"
2320 " opcode 0x%02x\n", opcode);
509c07bc 2321 ch->status = -ECONNRESET;
aef9ec39
RD
2322 break;
2323
9fe4bcf4
DD
2324 case IB_CM_REJ_STALE_CONN:
2325 shost_printk(KERN_WARNING, shost, " REJ reason: stale connection\n");
509c07bc 2326 ch->status = SRP_STALE_CONN;
9fe4bcf4
DD
2327 break;
2328
aef9ec39 2329 default:
7aa54bd7
DD
2330 shost_printk(KERN_WARNING, shost, " REJ reason 0x%x\n",
2331 event->param.rej_rcvd.reason);
509c07bc 2332 ch->status = -ECONNRESET;
aef9ec39
RD
2333 }
2334}
2335
2336static int srp_cm_handler(struct ib_cm_id *cm_id, struct ib_cm_event *event)
2337{
509c07bc
BVA
2338 struct srp_rdma_ch *ch = cm_id->context;
2339 struct srp_target_port *target = ch->target;
aef9ec39 2340 int comp = 0;
aef9ec39
RD
2341
2342 switch (event->event) {
2343 case IB_CM_REQ_ERROR:
7aa54bd7
DD
2344 shost_printk(KERN_DEBUG, target->scsi_host,
2345 PFX "Sending CM REQ failed\n");
aef9ec39 2346 comp = 1;
509c07bc 2347 ch->status = -ECONNRESET;
aef9ec39
RD
2348 break;
2349
2350 case IB_CM_REP_RECEIVED:
2351 comp = 1;
509c07bc 2352 srp_cm_rep_handler(cm_id, event->private_data, ch);
aef9ec39
RD
2353 break;
2354
2355 case IB_CM_REJ_RECEIVED:
7aa54bd7 2356 shost_printk(KERN_DEBUG, target->scsi_host, PFX "REJ received\n");
aef9ec39
RD
2357 comp = 1;
2358
509c07bc 2359 srp_cm_rej_handler(cm_id, event, ch);
aef9ec39
RD
2360 break;
2361
b7ac4ab4 2362 case IB_CM_DREQ_RECEIVED:
7aa54bd7
DD
2363 shost_printk(KERN_WARNING, target->scsi_host,
2364 PFX "DREQ received - connection closed\n");
c014c8cd 2365 ch->connected = false;
b7ac4ab4 2366 if (ib_send_cm_drep(cm_id, NULL, 0))
7aa54bd7
DD
2367 shost_printk(KERN_ERR, target->scsi_host,
2368 PFX "Sending CM DREP failed\n");
c1120f89 2369 queue_work(system_long_wq, &target->tl_err_work);
aef9ec39
RD
2370 break;
2371
2372 case IB_CM_TIMEWAIT_EXIT:
7aa54bd7
DD
2373 shost_printk(KERN_ERR, target->scsi_host,
2374 PFX "connection closed\n");
ac72d766 2375 comp = 1;
aef9ec39 2376
509c07bc 2377 ch->status = 0;
aef9ec39
RD
2378 break;
2379
b7ac4ab4
IR
2380 case IB_CM_MRA_RECEIVED:
2381 case IB_CM_DREQ_ERROR:
2382 case IB_CM_DREP_RECEIVED:
2383 break;
2384
aef9ec39 2385 default:
7aa54bd7
DD
2386 shost_printk(KERN_WARNING, target->scsi_host,
2387 PFX "Unhandled CM event %d\n", event->event);
aef9ec39
RD
2388 break;
2389 }
2390
2391 if (comp)
509c07bc 2392 complete(&ch->done);
aef9ec39 2393
aef9ec39
RD
2394 return 0;
2395}
2396
71444b97
JW
2397/**
2398 * srp_change_queue_depth - setting device queue depth
2399 * @sdev: scsi device struct
2400 * @qdepth: requested queue depth
71444b97
JW
2401 *
2402 * Returns queue depth.
2403 */
2404static int
db5ed4df 2405srp_change_queue_depth(struct scsi_device *sdev, int qdepth)
71444b97 2406{
c40ecc12 2407 if (!sdev->tagged_supported)
1e6f2416 2408 qdepth = 1;
db5ed4df 2409 return scsi_change_queue_depth(sdev, qdepth);
71444b97
JW
2410}
2411
509c07bc
BVA
2412static int srp_send_tsk_mgmt(struct srp_rdma_ch *ch, u64 req_tag,
2413 unsigned int lun, u8 func)
aef9ec39 2414{
509c07bc 2415 struct srp_target_port *target = ch->target;
a95cadb9 2416 struct srp_rport *rport = target->rport;
19081f31 2417 struct ib_device *dev = target->srp_host->srp_dev->dev;
aef9ec39
RD
2418 struct srp_iu *iu;
2419 struct srp_tsk_mgmt *tsk_mgmt;
aef9ec39 2420
c014c8cd 2421 if (!ch->connected || target->qp_in_error)
3780d1f0
BVA
2422 return -1;
2423
509c07bc 2424 init_completion(&ch->tsk_mgmt_done);
aef9ec39 2425
a95cadb9 2426 /*
509c07bc 2427 * Lock the rport mutex to avoid that srp_create_ch_ib() is
a95cadb9
BVA
2428 * invoked while a task management function is being sent.
2429 */
2430 mutex_lock(&rport->mutex);
509c07bc
BVA
2431 spin_lock_irq(&ch->lock);
2432 iu = __srp_get_tx_iu(ch, SRP_IU_TSK_MGMT);
2433 spin_unlock_irq(&ch->lock);
76c75b25 2434
a95cadb9
BVA
2435 if (!iu) {
2436 mutex_unlock(&rport->mutex);
2437
76c75b25 2438 return -1;
a95cadb9 2439 }
aef9ec39 2440
19081f31
DD
2441 ib_dma_sync_single_for_cpu(dev, iu->dma, sizeof *tsk_mgmt,
2442 DMA_TO_DEVICE);
aef9ec39
RD
2443 tsk_mgmt = iu->buf;
2444 memset(tsk_mgmt, 0, sizeof *tsk_mgmt);
2445
2446 tsk_mgmt->opcode = SRP_TSK_MGMT;
f8b6e31e
DD
2447 tsk_mgmt->lun = cpu_to_be64((u64) lun << 48);
2448 tsk_mgmt->tag = req_tag | SRP_TAG_TSK_MGMT;
aef9ec39 2449 tsk_mgmt->tsk_mgmt_func = func;
f8b6e31e 2450 tsk_mgmt->task_tag = req_tag;
aef9ec39 2451
19081f31
DD
2452 ib_dma_sync_single_for_device(dev, iu->dma, sizeof *tsk_mgmt,
2453 DMA_TO_DEVICE);
509c07bc
BVA
2454 if (srp_post_send(ch, iu, sizeof(*tsk_mgmt))) {
2455 srp_put_tx_iu(ch, iu, SRP_IU_TSK_MGMT);
a95cadb9
BVA
2456 mutex_unlock(&rport->mutex);
2457
76c75b25
BVA
2458 return -1;
2459 }
a95cadb9 2460 mutex_unlock(&rport->mutex);
d945e1df 2461
509c07bc 2462 if (!wait_for_completion_timeout(&ch->tsk_mgmt_done,
aef9ec39 2463 msecs_to_jiffies(SRP_ABORT_TIMEOUT_MS)))
d945e1df 2464 return -1;
aef9ec39 2465
d945e1df 2466 return 0;
d945e1df
RD
2467}
2468
aef9ec39
RD
2469static int srp_abort(struct scsi_cmnd *scmnd)
2470{
d945e1df 2471 struct srp_target_port *target = host_to_target(scmnd->device->host);
f8b6e31e 2472 struct srp_request *req = (struct srp_request *) scmnd->host_scribble;
77f2c1a4 2473 u32 tag;
d92c0da7 2474 u16 ch_idx;
509c07bc 2475 struct srp_rdma_ch *ch;
086f44f5 2476 int ret;
d945e1df 2477
7aa54bd7 2478 shost_printk(KERN_ERR, target->scsi_host, "SRP abort called\n");
aef9ec39 2479
d92c0da7 2480 if (!req)
99b6697a 2481 return SUCCESS;
77f2c1a4 2482 tag = blk_mq_unique_tag(scmnd->request);
d92c0da7
BVA
2483 ch_idx = blk_mq_unique_tag_to_hwq(tag);
2484 if (WARN_ON_ONCE(ch_idx >= target->ch_count))
2485 return SUCCESS;
2486 ch = &target->ch[ch_idx];
2487 if (!srp_claim_req(ch, req, NULL, scmnd))
2488 return SUCCESS;
2489 shost_printk(KERN_ERR, target->scsi_host,
2490 "Sending SRP abort for tag %#x\n", tag);
77f2c1a4 2491 if (srp_send_tsk_mgmt(ch, tag, scmnd->device->lun,
80d5e8a2 2492 SRP_TSK_ABORT_TASK) == 0)
086f44f5 2493 ret = SUCCESS;
ed9b2264 2494 else if (target->rport->state == SRP_RPORT_LOST)
99e1c139 2495 ret = FAST_IO_FAIL;
086f44f5
BVA
2496 else
2497 ret = FAILED;
509c07bc 2498 srp_free_req(ch, req, scmnd, 0);
22032991 2499 scmnd->result = DID_ABORT << 16;
d8536670 2500 scmnd->scsi_done(scmnd);
d945e1df 2501
086f44f5 2502 return ret;
aef9ec39
RD
2503}
2504
2505static int srp_reset_device(struct scsi_cmnd *scmnd)
2506{
d945e1df 2507 struct srp_target_port *target = host_to_target(scmnd->device->host);
d92c0da7 2508 struct srp_rdma_ch *ch;
536ae14e 2509 int i;
d945e1df 2510
7aa54bd7 2511 shost_printk(KERN_ERR, target->scsi_host, "SRP reset_device called\n");
aef9ec39 2512
d92c0da7 2513 ch = &target->ch[0];
509c07bc 2514 if (srp_send_tsk_mgmt(ch, SRP_TAG_NO_REQ, scmnd->device->lun,
f8b6e31e 2515 SRP_TSK_LUN_RESET))
d945e1df 2516 return FAILED;
509c07bc 2517 if (ch->tsk_mgmt_status)
d945e1df
RD
2518 return FAILED;
2519
d92c0da7
BVA
2520 for (i = 0; i < target->ch_count; i++) {
2521 ch = &target->ch[i];
2522 for (i = 0; i < target->req_ring_size; ++i) {
2523 struct srp_request *req = &ch->req_ring[i];
509c07bc 2524
d92c0da7
BVA
2525 srp_finish_req(ch, req, scmnd->device, DID_RESET << 16);
2526 }
536ae14e 2527 }
d945e1df 2528
d945e1df 2529 return SUCCESS;
aef9ec39
RD
2530}
2531
2532static int srp_reset_host(struct scsi_cmnd *scmnd)
2533{
2534 struct srp_target_port *target = host_to_target(scmnd->device->host);
aef9ec39 2535
7aa54bd7 2536 shost_printk(KERN_ERR, target->scsi_host, PFX "SRP reset_host called\n");
aef9ec39 2537
ed9b2264 2538 return srp_reconnect_rport(target->rport) == 0 ? SUCCESS : FAILED;
aef9ec39
RD
2539}
2540
c9b03c1a
BVA
2541static int srp_slave_configure(struct scsi_device *sdev)
2542{
2543 struct Scsi_Host *shost = sdev->host;
2544 struct srp_target_port *target = host_to_target(shost);
2545 struct request_queue *q = sdev->request_queue;
2546 unsigned long timeout;
2547
2548 if (sdev->type == TYPE_DISK) {
2549 timeout = max_t(unsigned, 30 * HZ, target->rq_tmo_jiffies);
2550 blk_queue_rq_timeout(q, timeout);
2551 }
2552
2553 return 0;
2554}
2555
ee959b00
TJ
2556static ssize_t show_id_ext(struct device *dev, struct device_attribute *attr,
2557 char *buf)
6ecb0c84 2558{
ee959b00 2559 struct srp_target_port *target = host_to_target(class_to_shost(dev));
6ecb0c84 2560
45c37cad 2561 return sprintf(buf, "0x%016llx\n", be64_to_cpu(target->id_ext));
6ecb0c84
RD
2562}
2563
ee959b00
TJ
2564static ssize_t show_ioc_guid(struct device *dev, struct device_attribute *attr,
2565 char *buf)
6ecb0c84 2566{
ee959b00 2567 struct srp_target_port *target = host_to_target(class_to_shost(dev));
6ecb0c84 2568
45c37cad 2569 return sprintf(buf, "0x%016llx\n", be64_to_cpu(target->ioc_guid));
6ecb0c84
RD
2570}
2571
ee959b00
TJ
2572static ssize_t show_service_id(struct device *dev,
2573 struct device_attribute *attr, char *buf)
6ecb0c84 2574{
ee959b00 2575 struct srp_target_port *target = host_to_target(class_to_shost(dev));
6ecb0c84 2576
45c37cad 2577 return sprintf(buf, "0x%016llx\n", be64_to_cpu(target->service_id));
6ecb0c84
RD
2578}
2579
ee959b00
TJ
2580static ssize_t show_pkey(struct device *dev, struct device_attribute *attr,
2581 char *buf)
6ecb0c84 2582{
ee959b00 2583 struct srp_target_port *target = host_to_target(class_to_shost(dev));
6ecb0c84 2584
747fe000 2585 return sprintf(buf, "0x%04x\n", be16_to_cpu(target->pkey));
6ecb0c84
RD
2586}
2587
848b3082
BVA
2588static ssize_t show_sgid(struct device *dev, struct device_attribute *attr,
2589 char *buf)
2590{
2591 struct srp_target_port *target = host_to_target(class_to_shost(dev));
2592
747fe000 2593 return sprintf(buf, "%pI6\n", target->sgid.raw);
848b3082
BVA
2594}
2595
ee959b00
TJ
2596static ssize_t show_dgid(struct device *dev, struct device_attribute *attr,
2597 char *buf)
6ecb0c84 2598{
ee959b00 2599 struct srp_target_port *target = host_to_target(class_to_shost(dev));
d92c0da7 2600 struct srp_rdma_ch *ch = &target->ch[0];
6ecb0c84 2601
509c07bc 2602 return sprintf(buf, "%pI6\n", ch->path.dgid.raw);
6ecb0c84
RD
2603}
2604
ee959b00
TJ
2605static ssize_t show_orig_dgid(struct device *dev,
2606 struct device_attribute *attr, char *buf)
3633b3d0 2607{
ee959b00 2608 struct srp_target_port *target = host_to_target(class_to_shost(dev));
3633b3d0 2609
747fe000 2610 return sprintf(buf, "%pI6\n", target->orig_dgid.raw);
3633b3d0
IR
2611}
2612
89de7486
BVA
2613static ssize_t show_req_lim(struct device *dev,
2614 struct device_attribute *attr, char *buf)
2615{
2616 struct srp_target_port *target = host_to_target(class_to_shost(dev));
d92c0da7
BVA
2617 struct srp_rdma_ch *ch;
2618 int i, req_lim = INT_MAX;
89de7486 2619
d92c0da7
BVA
2620 for (i = 0; i < target->ch_count; i++) {
2621 ch = &target->ch[i];
2622 req_lim = min(req_lim, ch->req_lim);
2623 }
2624 return sprintf(buf, "%d\n", req_lim);
89de7486
BVA
2625}
2626
ee959b00
TJ
2627static ssize_t show_zero_req_lim(struct device *dev,
2628 struct device_attribute *attr, char *buf)
6bfa24fa 2629{
ee959b00 2630 struct srp_target_port *target = host_to_target(class_to_shost(dev));
6bfa24fa 2631
6bfa24fa
RD
2632 return sprintf(buf, "%d\n", target->zero_req_lim);
2633}
2634
ee959b00
TJ
2635static ssize_t show_local_ib_port(struct device *dev,
2636 struct device_attribute *attr, char *buf)
ded7f1a1 2637{
ee959b00 2638 struct srp_target_port *target = host_to_target(class_to_shost(dev));
ded7f1a1
IR
2639
2640 return sprintf(buf, "%d\n", target->srp_host->port);
2641}
2642
ee959b00
TJ
2643static ssize_t show_local_ib_device(struct device *dev,
2644 struct device_attribute *attr, char *buf)
ded7f1a1 2645{
ee959b00 2646 struct srp_target_port *target = host_to_target(class_to_shost(dev));
ded7f1a1 2647
05321937 2648 return sprintf(buf, "%s\n", target->srp_host->srp_dev->dev->name);
ded7f1a1
IR
2649}
2650
d92c0da7
BVA
2651static ssize_t show_ch_count(struct device *dev, struct device_attribute *attr,
2652 char *buf)
2653{
2654 struct srp_target_port *target = host_to_target(class_to_shost(dev));
2655
2656 return sprintf(buf, "%d\n", target->ch_count);
2657}
2658
4b5e5f41
BVA
2659static ssize_t show_comp_vector(struct device *dev,
2660 struct device_attribute *attr, char *buf)
2661{
2662 struct srp_target_port *target = host_to_target(class_to_shost(dev));
2663
2664 return sprintf(buf, "%d\n", target->comp_vector);
2665}
2666
7bb312e4
VP
2667static ssize_t show_tl_retry_count(struct device *dev,
2668 struct device_attribute *attr, char *buf)
2669{
2670 struct srp_target_port *target = host_to_target(class_to_shost(dev));
2671
2672 return sprintf(buf, "%d\n", target->tl_retry_count);
2673}
2674
49248644
DD
2675static ssize_t show_cmd_sg_entries(struct device *dev,
2676 struct device_attribute *attr, char *buf)
2677{
2678 struct srp_target_port *target = host_to_target(class_to_shost(dev));
2679
2680 return sprintf(buf, "%u\n", target->cmd_sg_cnt);
2681}
2682
c07d424d
DD
2683static ssize_t show_allow_ext_sg(struct device *dev,
2684 struct device_attribute *attr, char *buf)
2685{
2686 struct srp_target_port *target = host_to_target(class_to_shost(dev));
2687
2688 return sprintf(buf, "%s\n", target->allow_ext_sg ? "true" : "false");
2689}
2690
ee959b00
TJ
2691static DEVICE_ATTR(id_ext, S_IRUGO, show_id_ext, NULL);
2692static DEVICE_ATTR(ioc_guid, S_IRUGO, show_ioc_guid, NULL);
2693static DEVICE_ATTR(service_id, S_IRUGO, show_service_id, NULL);
2694static DEVICE_ATTR(pkey, S_IRUGO, show_pkey, NULL);
848b3082 2695static DEVICE_ATTR(sgid, S_IRUGO, show_sgid, NULL);
ee959b00
TJ
2696static DEVICE_ATTR(dgid, S_IRUGO, show_dgid, NULL);
2697static DEVICE_ATTR(orig_dgid, S_IRUGO, show_orig_dgid, NULL);
89de7486 2698static DEVICE_ATTR(req_lim, S_IRUGO, show_req_lim, NULL);
ee959b00
TJ
2699static DEVICE_ATTR(zero_req_lim, S_IRUGO, show_zero_req_lim, NULL);
2700static DEVICE_ATTR(local_ib_port, S_IRUGO, show_local_ib_port, NULL);
2701static DEVICE_ATTR(local_ib_device, S_IRUGO, show_local_ib_device, NULL);
d92c0da7 2702static DEVICE_ATTR(ch_count, S_IRUGO, show_ch_count, NULL);
4b5e5f41 2703static DEVICE_ATTR(comp_vector, S_IRUGO, show_comp_vector, NULL);
7bb312e4 2704static DEVICE_ATTR(tl_retry_count, S_IRUGO, show_tl_retry_count, NULL);
49248644 2705static DEVICE_ATTR(cmd_sg_entries, S_IRUGO, show_cmd_sg_entries, NULL);
c07d424d 2706static DEVICE_ATTR(allow_ext_sg, S_IRUGO, show_allow_ext_sg, NULL);
ee959b00
TJ
2707
2708static struct device_attribute *srp_host_attrs[] = {
2709 &dev_attr_id_ext,
2710 &dev_attr_ioc_guid,
2711 &dev_attr_service_id,
2712 &dev_attr_pkey,
848b3082 2713 &dev_attr_sgid,
ee959b00
TJ
2714 &dev_attr_dgid,
2715 &dev_attr_orig_dgid,
89de7486 2716 &dev_attr_req_lim,
ee959b00
TJ
2717 &dev_attr_zero_req_lim,
2718 &dev_attr_local_ib_port,
2719 &dev_attr_local_ib_device,
d92c0da7 2720 &dev_attr_ch_count,
4b5e5f41 2721 &dev_attr_comp_vector,
7bb312e4 2722 &dev_attr_tl_retry_count,
49248644 2723 &dev_attr_cmd_sg_entries,
c07d424d 2724 &dev_attr_allow_ext_sg,
6ecb0c84
RD
2725 NULL
2726};
2727
aef9ec39
RD
2728static struct scsi_host_template srp_template = {
2729 .module = THIS_MODULE,
b7f008fd
RD
2730 .name = "InfiniBand SRP initiator",
2731 .proc_name = DRV_NAME,
c9b03c1a 2732 .slave_configure = srp_slave_configure,
aef9ec39
RD
2733 .info = srp_target_info,
2734 .queuecommand = srp_queuecommand,
71444b97 2735 .change_queue_depth = srp_change_queue_depth,
aef9ec39
RD
2736 .eh_abort_handler = srp_abort,
2737 .eh_device_reset_handler = srp_reset_device,
2738 .eh_host_reset_handler = srp_reset_host,
2742c1da 2739 .skip_settle_delay = true,
49248644 2740 .sg_tablesize = SRP_DEF_SG_TABLESIZE,
4d73f95f 2741 .can_queue = SRP_DEFAULT_CMD_SQ_SIZE,
aef9ec39 2742 .this_id = -1,
4d73f95f 2743 .cmd_per_lun = SRP_DEFAULT_CMD_SQ_SIZE,
6ecb0c84 2744 .use_clustering = ENABLE_CLUSTERING,
77f2c1a4
BVA
2745 .shost_attrs = srp_host_attrs,
2746 .use_blk_tags = 1,
c40ecc12 2747 .track_queue_depth = 1,
aef9ec39
RD
2748};
2749
34aa654e
BVA
2750static int srp_sdev_count(struct Scsi_Host *host)
2751{
2752 struct scsi_device *sdev;
2753 int c = 0;
2754
2755 shost_for_each_device(sdev, host)
2756 c++;
2757
2758 return c;
2759}
2760
aef9ec39
RD
2761static int srp_add_target(struct srp_host *host, struct srp_target_port *target)
2762{
3236822b
FT
2763 struct srp_rport_identifiers ids;
2764 struct srp_rport *rport;
2765
34aa654e 2766 target->state = SRP_TARGET_SCANNING;
aef9ec39 2767 sprintf(target->target_name, "SRP.T10:%016llX",
45c37cad 2768 be64_to_cpu(target->id_ext));
aef9ec39 2769
05321937 2770 if (scsi_add_host(target->scsi_host, host->srp_dev->dev->dma_device))
aef9ec39
RD
2771 return -ENODEV;
2772
3236822b
FT
2773 memcpy(ids.port_id, &target->id_ext, 8);
2774 memcpy(ids.port_id + 8, &target->ioc_guid, 8);
aebd5e47 2775 ids.roles = SRP_RPORT_ROLE_TARGET;
3236822b
FT
2776 rport = srp_rport_add(target->scsi_host, &ids);
2777 if (IS_ERR(rport)) {
2778 scsi_remove_host(target->scsi_host);
2779 return PTR_ERR(rport);
2780 }
2781
dc1bdbd9 2782 rport->lld_data = target;
9dd69a60 2783 target->rport = rport;
dc1bdbd9 2784
b3589fd4 2785 spin_lock(&host->target_lock);
aef9ec39 2786 list_add_tail(&target->list, &host->target_list);
b3589fd4 2787 spin_unlock(&host->target_lock);
aef9ec39 2788
aef9ec39 2789 scsi_scan_target(&target->scsi_host->shost_gendev,
1962a4a1 2790 0, target->scsi_id, SCAN_WILD_CARD, 0);
aef9ec39 2791
c014c8cd
BVA
2792 if (srp_connected_ch(target) < target->ch_count ||
2793 target->qp_in_error) {
34aa654e
BVA
2794 shost_printk(KERN_INFO, target->scsi_host,
2795 PFX "SCSI scan failed - removing SCSI host\n");
2796 srp_queue_remove_work(target);
2797 goto out;
2798 }
2799
2800 pr_debug(PFX "%s: SCSI scan succeeded - detected %d LUNs\n",
2801 dev_name(&target->scsi_host->shost_gendev),
2802 srp_sdev_count(target->scsi_host));
2803
2804 spin_lock_irq(&target->lock);
2805 if (target->state == SRP_TARGET_SCANNING)
2806 target->state = SRP_TARGET_LIVE;
2807 spin_unlock_irq(&target->lock);
2808
2809out:
aef9ec39
RD
2810 return 0;
2811}
2812
ee959b00 2813static void srp_release_dev(struct device *dev)
aef9ec39
RD
2814{
2815 struct srp_host *host =
ee959b00 2816 container_of(dev, struct srp_host, dev);
aef9ec39
RD
2817
2818 complete(&host->released);
2819}
2820
2821static struct class srp_class = {
2822 .name = "infiniband_srp",
ee959b00 2823 .dev_release = srp_release_dev
aef9ec39
RD
2824};
2825
96fc248a
BVA
2826/**
2827 * srp_conn_unique() - check whether the connection to a target is unique
af24663b
BVA
2828 * @host: SRP host.
2829 * @target: SRP target port.
96fc248a
BVA
2830 */
2831static bool srp_conn_unique(struct srp_host *host,
2832 struct srp_target_port *target)
2833{
2834 struct srp_target_port *t;
2835 bool ret = false;
2836
2837 if (target->state == SRP_TARGET_REMOVED)
2838 goto out;
2839
2840 ret = true;
2841
2842 spin_lock(&host->target_lock);
2843 list_for_each_entry(t, &host->target_list, list) {
2844 if (t != target &&
2845 target->id_ext == t->id_ext &&
2846 target->ioc_guid == t->ioc_guid &&
2847 target->initiator_ext == t->initiator_ext) {
2848 ret = false;
2849 break;
2850 }
2851 }
2852 spin_unlock(&host->target_lock);
2853
2854out:
2855 return ret;
2856}
2857
aef9ec39
RD
2858/*
2859 * Target ports are added by writing
2860 *
2861 * id_ext=<SRP ID ext>,ioc_guid=<SRP IOC GUID>,dgid=<dest GID>,
2862 * pkey=<P_Key>,service_id=<service ID>
2863 *
2864 * to the add_target sysfs attribute.
2865 */
2866enum {
2867 SRP_OPT_ERR = 0,
2868 SRP_OPT_ID_EXT = 1 << 0,
2869 SRP_OPT_IOC_GUID = 1 << 1,
2870 SRP_OPT_DGID = 1 << 2,
2871 SRP_OPT_PKEY = 1 << 3,
2872 SRP_OPT_SERVICE_ID = 1 << 4,
2873 SRP_OPT_MAX_SECT = 1 << 5,
52fb2b50 2874 SRP_OPT_MAX_CMD_PER_LUN = 1 << 6,
0c0450db 2875 SRP_OPT_IO_CLASS = 1 << 7,
01cb9bcb 2876 SRP_OPT_INITIATOR_EXT = 1 << 8,
49248644 2877 SRP_OPT_CMD_SG_ENTRIES = 1 << 9,
c07d424d
DD
2878 SRP_OPT_ALLOW_EXT_SG = 1 << 10,
2879 SRP_OPT_SG_TABLESIZE = 1 << 11,
4b5e5f41 2880 SRP_OPT_COMP_VECTOR = 1 << 12,
7bb312e4 2881 SRP_OPT_TL_RETRY_COUNT = 1 << 13,
4d73f95f 2882 SRP_OPT_QUEUE_SIZE = 1 << 14,
aef9ec39
RD
2883 SRP_OPT_ALL = (SRP_OPT_ID_EXT |
2884 SRP_OPT_IOC_GUID |
2885 SRP_OPT_DGID |
2886 SRP_OPT_PKEY |
2887 SRP_OPT_SERVICE_ID),
2888};
2889
a447c093 2890static const match_table_t srp_opt_tokens = {
52fb2b50
VP
2891 { SRP_OPT_ID_EXT, "id_ext=%s" },
2892 { SRP_OPT_IOC_GUID, "ioc_guid=%s" },
2893 { SRP_OPT_DGID, "dgid=%s" },
2894 { SRP_OPT_PKEY, "pkey=%x" },
2895 { SRP_OPT_SERVICE_ID, "service_id=%s" },
2896 { SRP_OPT_MAX_SECT, "max_sect=%d" },
2897 { SRP_OPT_MAX_CMD_PER_LUN, "max_cmd_per_lun=%d" },
0c0450db 2898 { SRP_OPT_IO_CLASS, "io_class=%x" },
01cb9bcb 2899 { SRP_OPT_INITIATOR_EXT, "initiator_ext=%s" },
49248644 2900 { SRP_OPT_CMD_SG_ENTRIES, "cmd_sg_entries=%u" },
c07d424d
DD
2901 { SRP_OPT_ALLOW_EXT_SG, "allow_ext_sg=%u" },
2902 { SRP_OPT_SG_TABLESIZE, "sg_tablesize=%u" },
4b5e5f41 2903 { SRP_OPT_COMP_VECTOR, "comp_vector=%u" },
7bb312e4 2904 { SRP_OPT_TL_RETRY_COUNT, "tl_retry_count=%u" },
4d73f95f 2905 { SRP_OPT_QUEUE_SIZE, "queue_size=%d" },
52fb2b50 2906 { SRP_OPT_ERR, NULL }
aef9ec39
RD
2907};
2908
2909static int srp_parse_options(const char *buf, struct srp_target_port *target)
2910{
2911 char *options, *sep_opt;
2912 char *p;
2913 char dgid[3];
2914 substring_t args[MAX_OPT_ARGS];
2915 int opt_mask = 0;
2916 int token;
2917 int ret = -EINVAL;
2918 int i;
2919
2920 options = kstrdup(buf, GFP_KERNEL);
2921 if (!options)
2922 return -ENOMEM;
2923
2924 sep_opt = options;
7dcf9c19 2925 while ((p = strsep(&sep_opt, ",\n")) != NULL) {
aef9ec39
RD
2926 if (!*p)
2927 continue;
2928
2929 token = match_token(p, srp_opt_tokens, args);
2930 opt_mask |= token;
2931
2932 switch (token) {
2933 case SRP_OPT_ID_EXT:
2934 p = match_strdup(args);
a20f3a6d
IR
2935 if (!p) {
2936 ret = -ENOMEM;
2937 goto out;
2938 }
aef9ec39
RD
2939 target->id_ext = cpu_to_be64(simple_strtoull(p, NULL, 16));
2940 kfree(p);
2941 break;
2942
2943 case SRP_OPT_IOC_GUID:
2944 p = match_strdup(args);
a20f3a6d
IR
2945 if (!p) {
2946 ret = -ENOMEM;
2947 goto out;
2948 }
aef9ec39
RD
2949 target->ioc_guid = cpu_to_be64(simple_strtoull(p, NULL, 16));
2950 kfree(p);
2951 break;
2952
2953 case SRP_OPT_DGID:
2954 p = match_strdup(args);
a20f3a6d
IR
2955 if (!p) {
2956 ret = -ENOMEM;
2957 goto out;
2958 }
aef9ec39 2959 if (strlen(p) != 32) {
e0bda7d8 2960 pr_warn("bad dest GID parameter '%s'\n", p);
ce1823f0 2961 kfree(p);
aef9ec39
RD
2962 goto out;
2963 }
2964
2965 for (i = 0; i < 16; ++i) {
747fe000
BVA
2966 strlcpy(dgid, p + i * 2, sizeof(dgid));
2967 if (sscanf(dgid, "%hhx",
2968 &target->orig_dgid.raw[i]) < 1) {
2969 ret = -EINVAL;
2970 kfree(p);
2971 goto out;
2972 }
aef9ec39 2973 }
bf17c1c7 2974 kfree(p);
aef9ec39
RD
2975 break;
2976
2977 case SRP_OPT_PKEY:
2978 if (match_hex(args, &token)) {
e0bda7d8 2979 pr_warn("bad P_Key parameter '%s'\n", p);
aef9ec39
RD
2980 goto out;
2981 }
747fe000 2982 target->pkey = cpu_to_be16(token);
aef9ec39
RD
2983 break;
2984
2985 case SRP_OPT_SERVICE_ID:
2986 p = match_strdup(args);
a20f3a6d
IR
2987 if (!p) {
2988 ret = -ENOMEM;
2989 goto out;
2990 }
aef9ec39
RD
2991 target->service_id = cpu_to_be64(simple_strtoull(p, NULL, 16));
2992 kfree(p);
2993 break;
2994
2995 case SRP_OPT_MAX_SECT:
2996 if (match_int(args, &token)) {
e0bda7d8 2997 pr_warn("bad max sect parameter '%s'\n", p);
aef9ec39
RD
2998 goto out;
2999 }
3000 target->scsi_host->max_sectors = token;
3001 break;
3002
4d73f95f
BVA
3003 case SRP_OPT_QUEUE_SIZE:
3004 if (match_int(args, &token) || token < 1) {
3005 pr_warn("bad queue_size parameter '%s'\n", p);
3006 goto out;
3007 }
3008 target->scsi_host->can_queue = token;
3009 target->queue_size = token + SRP_RSP_SQ_SIZE +
3010 SRP_TSK_MGMT_SQ_SIZE;
3011 if (!(opt_mask & SRP_OPT_MAX_CMD_PER_LUN))
3012 target->scsi_host->cmd_per_lun = token;
3013 break;
3014
52fb2b50 3015 case SRP_OPT_MAX_CMD_PER_LUN:
4d73f95f 3016 if (match_int(args, &token) || token < 1) {
e0bda7d8
BVA
3017 pr_warn("bad max cmd_per_lun parameter '%s'\n",
3018 p);
52fb2b50
VP
3019 goto out;
3020 }
4d73f95f 3021 target->scsi_host->cmd_per_lun = token;
52fb2b50
VP
3022 break;
3023
0c0450db
R
3024 case SRP_OPT_IO_CLASS:
3025 if (match_hex(args, &token)) {
e0bda7d8 3026 pr_warn("bad IO class parameter '%s'\n", p);
0c0450db
R
3027 goto out;
3028 }
3029 if (token != SRP_REV10_IB_IO_CLASS &&
3030 token != SRP_REV16A_IB_IO_CLASS) {
e0bda7d8
BVA
3031 pr_warn("unknown IO class parameter value %x specified (use %x or %x).\n",
3032 token, SRP_REV10_IB_IO_CLASS,
3033 SRP_REV16A_IB_IO_CLASS);
0c0450db
R
3034 goto out;
3035 }
3036 target->io_class = token;
3037 break;
3038
01cb9bcb
IR
3039 case SRP_OPT_INITIATOR_EXT:
3040 p = match_strdup(args);
a20f3a6d
IR
3041 if (!p) {
3042 ret = -ENOMEM;
3043 goto out;
3044 }
01cb9bcb
IR
3045 target->initiator_ext = cpu_to_be64(simple_strtoull(p, NULL, 16));
3046 kfree(p);
3047 break;
3048
49248644
DD
3049 case SRP_OPT_CMD_SG_ENTRIES:
3050 if (match_int(args, &token) || token < 1 || token > 255) {
e0bda7d8
BVA
3051 pr_warn("bad max cmd_sg_entries parameter '%s'\n",
3052 p);
49248644
DD
3053 goto out;
3054 }
3055 target->cmd_sg_cnt = token;
3056 break;
3057
c07d424d
DD
3058 case SRP_OPT_ALLOW_EXT_SG:
3059 if (match_int(args, &token)) {
e0bda7d8 3060 pr_warn("bad allow_ext_sg parameter '%s'\n", p);
c07d424d
DD
3061 goto out;
3062 }
3063 target->allow_ext_sg = !!token;
3064 break;
3065
3066 case SRP_OPT_SG_TABLESIZE:
3067 if (match_int(args, &token) || token < 1 ||
3068 token > SCSI_MAX_SG_CHAIN_SEGMENTS) {
e0bda7d8
BVA
3069 pr_warn("bad max sg_tablesize parameter '%s'\n",
3070 p);
c07d424d
DD
3071 goto out;
3072 }
3073 target->sg_tablesize = token;
3074 break;
3075
4b5e5f41
BVA
3076 case SRP_OPT_COMP_VECTOR:
3077 if (match_int(args, &token) || token < 0) {
3078 pr_warn("bad comp_vector parameter '%s'\n", p);
3079 goto out;
3080 }
3081 target->comp_vector = token;
3082 break;
3083
7bb312e4
VP
3084 case SRP_OPT_TL_RETRY_COUNT:
3085 if (match_int(args, &token) || token < 2 || token > 7) {
3086 pr_warn("bad tl_retry_count parameter '%s' (must be a number between 2 and 7)\n",
3087 p);
3088 goto out;
3089 }
3090 target->tl_retry_count = token;
3091 break;
3092
aef9ec39 3093 default:
e0bda7d8
BVA
3094 pr_warn("unknown parameter or missing value '%s' in target creation request\n",
3095 p);
aef9ec39
RD
3096 goto out;
3097 }
3098 }
3099
3100 if ((opt_mask & SRP_OPT_ALL) == SRP_OPT_ALL)
3101 ret = 0;
3102 else
3103 for (i = 0; i < ARRAY_SIZE(srp_opt_tokens); ++i)
3104 if ((srp_opt_tokens[i].token & SRP_OPT_ALL) &&
3105 !(srp_opt_tokens[i].token & opt_mask))
e0bda7d8
BVA
3106 pr_warn("target creation request is missing parameter '%s'\n",
3107 srp_opt_tokens[i].pattern);
aef9ec39 3108
4d73f95f
BVA
3109 if (target->scsi_host->cmd_per_lun > target->scsi_host->can_queue
3110 && (opt_mask & SRP_OPT_MAX_CMD_PER_LUN))
3111 pr_warn("cmd_per_lun = %d > queue_size = %d\n",
3112 target->scsi_host->cmd_per_lun,
3113 target->scsi_host->can_queue);
3114
aef9ec39
RD
3115out:
3116 kfree(options);
3117 return ret;
3118}
3119
ee959b00
TJ
3120static ssize_t srp_create_target(struct device *dev,
3121 struct device_attribute *attr,
aef9ec39
RD
3122 const char *buf, size_t count)
3123{
3124 struct srp_host *host =
ee959b00 3125 container_of(dev, struct srp_host, dev);
aef9ec39
RD
3126 struct Scsi_Host *target_host;
3127 struct srp_target_port *target;
509c07bc 3128 struct srp_rdma_ch *ch;
d1b4289e
BVA
3129 struct srp_device *srp_dev = host->srp_dev;
3130 struct ib_device *ibdev = srp_dev->dev;
d92c0da7
BVA
3131 int ret, node_idx, node, cpu, i;
3132 bool multich = false;
aef9ec39
RD
3133
3134 target_host = scsi_host_alloc(&srp_template,
3135 sizeof (struct srp_target_port));
3136 if (!target_host)
3137 return -ENOMEM;
3138
49248644 3139 target_host->transportt = ib_srp_transport_template;
fd1b6c4a
BVA
3140 target_host->max_channel = 0;
3141 target_host->max_id = 1;
3c8edf0e
AR
3142 target_host->max_lun = SRP_MAX_LUN;
3143 target_host->max_cmd_len = sizeof ((struct srp_cmd *) (void *) 0L)->cdb;
5f068992 3144
aef9ec39 3145 target = host_to_target(target_host);
aef9ec39 3146
49248644
DD
3147 target->io_class = SRP_REV16A_IB_IO_CLASS;
3148 target->scsi_host = target_host;
3149 target->srp_host = host;
3150 target->lkey = host->srp_dev->mr->lkey;
3151 target->rkey = host->srp_dev->mr->rkey;
3152 target->cmd_sg_cnt = cmd_sg_entries;
c07d424d
DD
3153 target->sg_tablesize = indirect_sg_entries ? : cmd_sg_entries;
3154 target->allow_ext_sg = allow_ext_sg;
7bb312e4 3155 target->tl_retry_count = 7;
4d73f95f 3156 target->queue_size = SRP_DEFAULT_QUEUE_SIZE;
aef9ec39 3157
34aa654e
BVA
3158 /*
3159 * Avoid that the SCSI host can be removed by srp_remove_target()
3160 * before this function returns.
3161 */
3162 scsi_host_get(target->scsi_host);
3163
2d7091bc
BVA
3164 mutex_lock(&host->add_target_mutex);
3165
aef9ec39
RD
3166 ret = srp_parse_options(buf, target);
3167 if (ret)
fb49c8bb 3168 goto out;
aef9ec39 3169
77f2c1a4
BVA
3170 ret = scsi_init_shared_tag_map(target_host, target_host->can_queue);
3171 if (ret)
fb49c8bb 3172 goto out;
77f2c1a4 3173
4d73f95f
BVA
3174 target->req_ring_size = target->queue_size - SRP_TSK_MGMT_SQ_SIZE;
3175
96fc248a
BVA
3176 if (!srp_conn_unique(target->srp_host, target)) {
3177 shost_printk(KERN_INFO, target->scsi_host,
3178 PFX "Already connected to target port with id_ext=%016llx;ioc_guid=%016llx;initiator_ext=%016llx\n",
3179 be64_to_cpu(target->id_ext),
3180 be64_to_cpu(target->ioc_guid),
3181 be64_to_cpu(target->initiator_ext));
3182 ret = -EEXIST;
fb49c8bb 3183 goto out;
96fc248a
BVA
3184 }
3185
5cfb1782 3186 if (!srp_dev->has_fmr && !srp_dev->has_fr && !target->allow_ext_sg &&
d1b4289e 3187 target->cmd_sg_cnt < target->sg_tablesize) {
5cfb1782 3188 pr_warn("No MR pool and no external indirect descriptors, limiting sg_tablesize to cmd_sg_cnt\n");
c07d424d
DD
3189 target->sg_tablesize = target->cmd_sg_cnt;
3190 }
3191
3192 target_host->sg_tablesize = target->sg_tablesize;
3193 target->indirect_size = target->sg_tablesize *
3194 sizeof (struct srp_direct_buf);
49248644
DD
3195 target->max_iu_len = sizeof (struct srp_cmd) +
3196 sizeof (struct srp_indirect_buf) +
3197 target->cmd_sg_cnt * sizeof (struct srp_direct_buf);
3198
c1120f89 3199 INIT_WORK(&target->tl_err_work, srp_tl_err_work);
ef6c49d8 3200 INIT_WORK(&target->remove_work, srp_remove_work);
8f26c9ff 3201 spin_lock_init(&target->lock);
747fe000 3202 ret = ib_query_gid(ibdev, host->port, 0, &target->sgid);
2088ca66 3203 if (ret)
fb49c8bb 3204 goto out;
aef9ec39 3205
d92c0da7
BVA
3206 ret = -ENOMEM;
3207 target->ch_count = max_t(unsigned, num_online_nodes(),
3208 min(ch_count ? :
3209 min(4 * num_online_nodes(),
3210 ibdev->num_comp_vectors),
3211 num_online_cpus()));
3212 target->ch = kcalloc(target->ch_count, sizeof(*target->ch),
3213 GFP_KERNEL);
3214 if (!target->ch)
fb49c8bb 3215 goto out;
aef9ec39 3216
d92c0da7
BVA
3217 node_idx = 0;
3218 for_each_online_node(node) {
3219 const int ch_start = (node_idx * target->ch_count /
3220 num_online_nodes());
3221 const int ch_end = ((node_idx + 1) * target->ch_count /
3222 num_online_nodes());
3223 const int cv_start = (node_idx * ibdev->num_comp_vectors /
3224 num_online_nodes() + target->comp_vector)
3225 % ibdev->num_comp_vectors;
3226 const int cv_end = ((node_idx + 1) * ibdev->num_comp_vectors /
3227 num_online_nodes() + target->comp_vector)
3228 % ibdev->num_comp_vectors;
3229 int cpu_idx = 0;
3230
3231 for_each_online_cpu(cpu) {
3232 if (cpu_to_node(cpu) != node)
3233 continue;
3234 if (ch_start + cpu_idx >= ch_end)
3235 continue;
3236 ch = &target->ch[ch_start + cpu_idx];
3237 ch->target = target;
3238 ch->comp_vector = cv_start == cv_end ? cv_start :
3239 cv_start + cpu_idx % (cv_end - cv_start);
3240 spin_lock_init(&ch->lock);
3241 INIT_LIST_HEAD(&ch->free_tx);
3242 ret = srp_new_cm_id(ch);
3243 if (ret)
3244 goto err_disconnect;
aef9ec39 3245
d92c0da7
BVA
3246 ret = srp_create_ch_ib(ch);
3247 if (ret)
3248 goto err_disconnect;
3249
3250 ret = srp_alloc_req_data(ch);
3251 if (ret)
3252 goto err_disconnect;
3253
3254 ret = srp_connect_ch(ch, multich);
3255 if (ret) {
3256 shost_printk(KERN_ERR, target->scsi_host,
3257 PFX "Connection %d/%d failed\n",
3258 ch_start + cpu_idx,
3259 target->ch_count);
3260 if (node_idx == 0 && cpu_idx == 0) {
3261 goto err_disconnect;
3262 } else {
3263 srp_free_ch_ib(target, ch);
3264 srp_free_req_data(target, ch);
3265 target->ch_count = ch - target->ch;
3266 break;
3267 }
3268 }
3269
3270 multich = true;
3271 cpu_idx++;
3272 }
3273 node_idx++;
aef9ec39
RD
3274 }
3275
d92c0da7
BVA
3276 target->scsi_host->nr_hw_queues = target->ch_count;
3277
aef9ec39
RD
3278 ret = srp_add_target(host, target);
3279 if (ret)
3280 goto err_disconnect;
3281
34aa654e
BVA
3282 if (target->state != SRP_TARGET_REMOVED) {
3283 shost_printk(KERN_DEBUG, target->scsi_host, PFX
3284 "new target: id_ext %016llx ioc_guid %016llx pkey %04x service_id %016llx sgid %pI6 dgid %pI6\n",
3285 be64_to_cpu(target->id_ext),
3286 be64_to_cpu(target->ioc_guid),
747fe000 3287 be16_to_cpu(target->pkey),
34aa654e 3288 be64_to_cpu(target->service_id),
747fe000 3289 target->sgid.raw, target->orig_dgid.raw);
34aa654e 3290 }
e7ffde01 3291
2d7091bc
BVA
3292 ret = count;
3293
3294out:
3295 mutex_unlock(&host->add_target_mutex);
34aa654e
BVA
3296
3297 scsi_host_put(target->scsi_host);
3298
2d7091bc 3299 return ret;
aef9ec39
RD
3300
3301err_disconnect:
3302 srp_disconnect_target(target);
3303
d92c0da7
BVA
3304 for (i = 0; i < target->ch_count; i++) {
3305 ch = &target->ch[i];
3306 srp_free_ch_ib(target, ch);
3307 srp_free_req_data(target, ch);
3308 }
aef9ec39 3309
d92c0da7 3310 kfree(target->ch);
2d7091bc 3311 goto out;
aef9ec39
RD
3312}
3313
ee959b00 3314static DEVICE_ATTR(add_target, S_IWUSR, NULL, srp_create_target);
aef9ec39 3315
ee959b00
TJ
3316static ssize_t show_ibdev(struct device *dev, struct device_attribute *attr,
3317 char *buf)
aef9ec39 3318{
ee959b00 3319 struct srp_host *host = container_of(dev, struct srp_host, dev);
aef9ec39 3320
05321937 3321 return sprintf(buf, "%s\n", host->srp_dev->dev->name);
aef9ec39
RD
3322}
3323
ee959b00 3324static DEVICE_ATTR(ibdev, S_IRUGO, show_ibdev, NULL);
aef9ec39 3325
ee959b00
TJ
3326static ssize_t show_port(struct device *dev, struct device_attribute *attr,
3327 char *buf)
aef9ec39 3328{
ee959b00 3329 struct srp_host *host = container_of(dev, struct srp_host, dev);
aef9ec39
RD
3330
3331 return sprintf(buf, "%d\n", host->port);
3332}
3333
ee959b00 3334static DEVICE_ATTR(port, S_IRUGO, show_port, NULL);
aef9ec39 3335
f5358a17 3336static struct srp_host *srp_add_port(struct srp_device *device, u8 port)
aef9ec39
RD
3337{
3338 struct srp_host *host;
3339
3340 host = kzalloc(sizeof *host, GFP_KERNEL);
3341 if (!host)
3342 return NULL;
3343
3344 INIT_LIST_HEAD(&host->target_list);
b3589fd4 3345 spin_lock_init(&host->target_lock);
aef9ec39 3346 init_completion(&host->released);
2d7091bc 3347 mutex_init(&host->add_target_mutex);
05321937 3348 host->srp_dev = device;
aef9ec39
RD
3349 host->port = port;
3350
ee959b00
TJ
3351 host->dev.class = &srp_class;
3352 host->dev.parent = device->dev->dma_device;
d927e38c 3353 dev_set_name(&host->dev, "srp-%s-%d", device->dev->name, port);
aef9ec39 3354
ee959b00 3355 if (device_register(&host->dev))
f5358a17 3356 goto free_host;
ee959b00 3357 if (device_create_file(&host->dev, &dev_attr_add_target))
aef9ec39 3358 goto err_class;
ee959b00 3359 if (device_create_file(&host->dev, &dev_attr_ibdev))
aef9ec39 3360 goto err_class;
ee959b00 3361 if (device_create_file(&host->dev, &dev_attr_port))
aef9ec39
RD
3362 goto err_class;
3363
3364 return host;
3365
3366err_class:
ee959b00 3367 device_unregister(&host->dev);
aef9ec39 3368
f5358a17 3369free_host:
aef9ec39
RD
3370 kfree(host);
3371
3372 return NULL;
3373}
3374
3375static void srp_add_one(struct ib_device *device)
3376{
f5358a17
RD
3377 struct srp_device *srp_dev;
3378 struct ib_device_attr *dev_attr;
aef9ec39 3379 struct srp_host *host;
52ede08f
BVA
3380 int mr_page_shift, s, e, p;
3381 u64 max_pages_per_mr;
aef9ec39 3382
f5358a17
RD
3383 dev_attr = kmalloc(sizeof *dev_attr, GFP_KERNEL);
3384 if (!dev_attr)
cf311cd4 3385 return;
aef9ec39 3386
f5358a17 3387 if (ib_query_device(device, dev_attr)) {
e0bda7d8 3388 pr_warn("Query device failed for %s\n", device->name);
f5358a17
RD
3389 goto free_attr;
3390 }
3391
3392 srp_dev = kmalloc(sizeof *srp_dev, GFP_KERNEL);
3393 if (!srp_dev)
3394 goto free_attr;
3395
d1b4289e
BVA
3396 srp_dev->has_fmr = (device->alloc_fmr && device->dealloc_fmr &&
3397 device->map_phys_fmr && device->unmap_fmr);
5cfb1782
BVA
3398 srp_dev->has_fr = (dev_attr->device_cap_flags &
3399 IB_DEVICE_MEM_MGT_EXTENSIONS);
3400 if (!srp_dev->has_fmr && !srp_dev->has_fr)
3401 dev_warn(&device->dev, "neither FMR nor FR is supported\n");
3402
3403 srp_dev->use_fast_reg = (srp_dev->has_fr &&
3404 (!srp_dev->has_fmr || prefer_fr));
d1b4289e 3405
f5358a17
RD
3406 /*
3407 * Use the smallest page size supported by the HCA, down to a
8f26c9ff
DD
3408 * minimum of 4096 bytes. We're unlikely to build large sglists
3409 * out of smaller entries.
f5358a17 3410 */
52ede08f
BVA
3411 mr_page_shift = max(12, ffs(dev_attr->page_size_cap) - 1);
3412 srp_dev->mr_page_size = 1 << mr_page_shift;
3413 srp_dev->mr_page_mask = ~((u64) srp_dev->mr_page_size - 1);
3414 max_pages_per_mr = dev_attr->max_mr_size;
3415 do_div(max_pages_per_mr, srp_dev->mr_page_size);
3416 srp_dev->max_pages_per_mr = min_t(u64, SRP_MAX_PAGES_PER_MR,
3417 max_pages_per_mr);
5cfb1782
BVA
3418 if (srp_dev->use_fast_reg) {
3419 srp_dev->max_pages_per_mr =
3420 min_t(u32, srp_dev->max_pages_per_mr,
3421 dev_attr->max_fast_reg_page_list_len);
3422 }
52ede08f
BVA
3423 srp_dev->mr_max_size = srp_dev->mr_page_size *
3424 srp_dev->max_pages_per_mr;
5cfb1782 3425 pr_debug("%s: mr_page_shift = %d, dev_attr->max_mr_size = %#llx, dev_attr->max_fast_reg_page_list_len = %u, max_pages_per_mr = %d, mr_max_size = %#x\n",
52ede08f 3426 device->name, mr_page_shift, dev_attr->max_mr_size,
5cfb1782 3427 dev_attr->max_fast_reg_page_list_len,
52ede08f 3428 srp_dev->max_pages_per_mr, srp_dev->mr_max_size);
f5358a17
RD
3429
3430 INIT_LIST_HEAD(&srp_dev->dev_list);
3431
3432 srp_dev->dev = device;
3433 srp_dev->pd = ib_alloc_pd(device);
3434 if (IS_ERR(srp_dev->pd))
3435 goto free_dev;
3436
3437 srp_dev->mr = ib_get_dma_mr(srp_dev->pd,
3438 IB_ACCESS_LOCAL_WRITE |
3439 IB_ACCESS_REMOTE_READ |
3440 IB_ACCESS_REMOTE_WRITE);
3441 if (IS_ERR(srp_dev->mr))
3442 goto err_pd;
3443
07ebafba 3444 if (device->node_type == RDMA_NODE_IB_SWITCH) {
aef9ec39
RD
3445 s = 0;
3446 e = 0;
3447 } else {
3448 s = 1;
3449 e = device->phys_port_cnt;
3450 }
3451
3452 for (p = s; p <= e; ++p) {
f5358a17 3453 host = srp_add_port(srp_dev, p);
aef9ec39 3454 if (host)
f5358a17 3455 list_add_tail(&host->list, &srp_dev->dev_list);
aef9ec39
RD
3456 }
3457
f5358a17
RD
3458 ib_set_client_data(device, &srp_client, srp_dev);
3459
3460 goto free_attr;
3461
3462err_pd:
3463 ib_dealloc_pd(srp_dev->pd);
3464
3465free_dev:
3466 kfree(srp_dev);
3467
3468free_attr:
3469 kfree(dev_attr);
aef9ec39
RD
3470}
3471
3472static void srp_remove_one(struct ib_device *device)
3473{
f5358a17 3474 struct srp_device *srp_dev;
aef9ec39 3475 struct srp_host *host, *tmp_host;
ef6c49d8 3476 struct srp_target_port *target;
aef9ec39 3477
f5358a17 3478 srp_dev = ib_get_client_data(device, &srp_client);
1fe0cb84
DB
3479 if (!srp_dev)
3480 return;
aef9ec39 3481
f5358a17 3482 list_for_each_entry_safe(host, tmp_host, &srp_dev->dev_list, list) {
ee959b00 3483 device_unregister(&host->dev);
aef9ec39
RD
3484 /*
3485 * Wait for the sysfs entry to go away, so that no new
3486 * target ports can be created.
3487 */
3488 wait_for_completion(&host->released);
3489
3490 /*
ef6c49d8 3491 * Remove all target ports.
aef9ec39 3492 */
b3589fd4 3493 spin_lock(&host->target_lock);
ef6c49d8
BVA
3494 list_for_each_entry(target, &host->target_list, list)
3495 srp_queue_remove_work(target);
b3589fd4 3496 spin_unlock(&host->target_lock);
aef9ec39
RD
3497
3498 /*
bcc05910 3499 * Wait for tl_err and target port removal tasks.
aef9ec39 3500 */
ef6c49d8 3501 flush_workqueue(system_long_wq);
bcc05910 3502 flush_workqueue(srp_remove_wq);
aef9ec39 3503
aef9ec39
RD
3504 kfree(host);
3505 }
3506
f5358a17
RD
3507 ib_dereg_mr(srp_dev->mr);
3508 ib_dealloc_pd(srp_dev->pd);
3509
3510 kfree(srp_dev);
aef9ec39
RD
3511}
3512
3236822b 3513static struct srp_function_template ib_srp_transport_functions = {
ed9b2264
BVA
3514 .has_rport_state = true,
3515 .reset_timer_if_blocked = true,
a95cadb9 3516 .reconnect_delay = &srp_reconnect_delay,
ed9b2264
BVA
3517 .fast_io_fail_tmo = &srp_fast_io_fail_tmo,
3518 .dev_loss_tmo = &srp_dev_loss_tmo,
3519 .reconnect = srp_rport_reconnect,
dc1bdbd9 3520 .rport_delete = srp_rport_delete,
ed9b2264 3521 .terminate_rport_io = srp_terminate_io,
3236822b
FT
3522};
3523
aef9ec39
RD
3524static int __init srp_init_module(void)
3525{
3526 int ret;
3527
dcb4cb85 3528 BUILD_BUG_ON(FIELD_SIZEOF(struct ib_wc, wr_id) < sizeof(void *));
dd5e6e38 3529
49248644 3530 if (srp_sg_tablesize) {
e0bda7d8 3531 pr_warn("srp_sg_tablesize is deprecated, please use cmd_sg_entries\n");
49248644
DD
3532 if (!cmd_sg_entries)
3533 cmd_sg_entries = srp_sg_tablesize;
3534 }
3535
3536 if (!cmd_sg_entries)
3537 cmd_sg_entries = SRP_DEF_SG_TABLESIZE;
3538
3539 if (cmd_sg_entries > 255) {
e0bda7d8 3540 pr_warn("Clamping cmd_sg_entries to 255\n");
49248644 3541 cmd_sg_entries = 255;
1e89a194
DD
3542 }
3543
c07d424d
DD
3544 if (!indirect_sg_entries)
3545 indirect_sg_entries = cmd_sg_entries;
3546 else if (indirect_sg_entries < cmd_sg_entries) {
e0bda7d8
BVA
3547 pr_warn("Bumping up indirect_sg_entries to match cmd_sg_entries (%u)\n",
3548 cmd_sg_entries);
c07d424d
DD
3549 indirect_sg_entries = cmd_sg_entries;
3550 }
3551
bcc05910 3552 srp_remove_wq = create_workqueue("srp_remove");
da05be29
WY
3553 if (!srp_remove_wq) {
3554 ret = -ENOMEM;
bcc05910
BVA
3555 goto out;
3556 }
3557
3558 ret = -ENOMEM;
3236822b
FT
3559 ib_srp_transport_template =
3560 srp_attach_transport(&ib_srp_transport_functions);
3561 if (!ib_srp_transport_template)
bcc05910 3562 goto destroy_wq;
3236822b 3563
aef9ec39
RD
3564 ret = class_register(&srp_class);
3565 if (ret) {
e0bda7d8 3566 pr_err("couldn't register class infiniband_srp\n");
bcc05910 3567 goto release_tr;
aef9ec39
RD
3568 }
3569
c1a0b23b
MT
3570 ib_sa_register_client(&srp_sa_client);
3571
aef9ec39
RD
3572 ret = ib_register_client(&srp_client);
3573 if (ret) {
e0bda7d8 3574 pr_err("couldn't register IB client\n");
bcc05910 3575 goto unreg_sa;
aef9ec39
RD
3576 }
3577
bcc05910
BVA
3578out:
3579 return ret;
3580
3581unreg_sa:
3582 ib_sa_unregister_client(&srp_sa_client);
3583 class_unregister(&srp_class);
3584
3585release_tr:
3586 srp_release_transport(ib_srp_transport_template);
3587
3588destroy_wq:
3589 destroy_workqueue(srp_remove_wq);
3590 goto out;
aef9ec39
RD
3591}
3592
3593static void __exit srp_cleanup_module(void)
3594{
3595 ib_unregister_client(&srp_client);
c1a0b23b 3596 ib_sa_unregister_client(&srp_sa_client);
aef9ec39 3597 class_unregister(&srp_class);
3236822b 3598 srp_release_transport(ib_srp_transport_template);
bcc05910 3599 destroy_workqueue(srp_remove_wq);
aef9ec39
RD
3600}
3601
3602module_init(srp_init_module);
3603module_exit(srp_cleanup_module);