blob: 25bdaeef25203abf5e250a334c40cbbadb051b01 [file] [log] [blame]
Bart Van Asschea42d9852011-10-14 01:30:46 +00001/*
2 * Copyright (c) 2006 - 2009 Mellanox Technology Inc. All rights reserved.
3 * Copyright (C) 2008 - 2011 Bart Van Assche <bvanassche@acm.org>.
4 *
5 * This software is available to you under a choice of one of two
6 * licenses. You may choose to be licensed under the terms of the GNU
7 * General Public License (GPL) Version 2, available from the file
8 * COPYING in the main directory of this source tree, or the
9 * OpenIB.org BSD license below:
10 *
11 * Redistribution and use in source and binary forms, with or
12 * without modification, are permitted provided that the following
13 * conditions are met:
14 *
15 * - Redistributions of source code must retain the above
16 * copyright notice, this list of conditions and the following
17 * disclaimer.
18 *
19 * - Redistributions in binary form must reproduce the above
20 * copyright notice, this list of conditions and the following
21 * disclaimer in the documentation and/or other materials
22 * provided with the distribution.
23 *
24 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
25 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
26 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
27 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
28 * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
29 * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
30 * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
31 * SOFTWARE.
32 *
33 */
34
35#include <linux/module.h>
36#include <linux/init.h>
37#include <linux/slab.h>
38#include <linux/err.h>
39#include <linux/ctype.h>
40#include <linux/kthread.h>
41#include <linux/string.h>
42#include <linux/delay.h>
43#include <linux/atomic.h>
Bart Van Asscheba929992015-05-08 10:11:12 +020044#include <scsi/scsi_proto.h>
Bart Van Asschea42d9852011-10-14 01:30:46 +000045#include <scsi/scsi_tcq.h>
Bart Van Asschea42d9852011-10-14 01:30:46 +000046#include <target/target_core_base.h>
Bart Van Asschea42d9852011-10-14 01:30:46 +000047#include <target/target_core_fabric.h>
Bart Van Asschea42d9852011-10-14 01:30:46 +000048#include "ib_srpt.h"
49
50/* Name of this kernel module. */
51#define DRV_NAME "ib_srpt"
52#define DRV_VERSION "2.0.0"
53#define DRV_RELDATE "2011-02-14"
54
55#define SRPT_ID_STRING "Linux SRP target"
56
57#undef pr_fmt
58#define pr_fmt(fmt) DRV_NAME " " fmt
59
60MODULE_AUTHOR("Vu Pham and Bart Van Assche");
61MODULE_DESCRIPTION("InfiniBand SCSI RDMA Protocol target "
62 "v" DRV_VERSION " (" DRV_RELDATE ")");
63MODULE_LICENSE("Dual BSD/GPL");
64
65/*
66 * Global Variables
67 */
68
69static u64 srpt_service_guid;
Roland Dreier486d8b92012-02-02 12:55:58 -080070static DEFINE_SPINLOCK(srpt_dev_lock); /* Protects srpt_dev_list. */
71static LIST_HEAD(srpt_dev_list); /* List of srpt_device structures. */
Bart Van Asschea42d9852011-10-14 01:30:46 +000072
73static unsigned srp_max_req_size = DEFAULT_MAX_REQ_SIZE;
74module_param(srp_max_req_size, int, 0444);
75MODULE_PARM_DESC(srp_max_req_size,
76 "Maximum size of SRP request messages in bytes.");
77
78static int srpt_srq_size = DEFAULT_SRPT_SRQ_SIZE;
79module_param(srpt_srq_size, int, 0444);
80MODULE_PARM_DESC(srpt_srq_size,
81 "Shared receive queue (SRQ) size.");
82
83static int srpt_get_u64_x(char *buffer, struct kernel_param *kp)
84{
85 return sprintf(buffer, "0x%016llx", *(u64 *)kp->arg);
86}
87module_param_call(srpt_service_guid, NULL, srpt_get_u64_x, &srpt_service_guid,
88 0444);
89MODULE_PARM_DESC(srpt_service_guid,
90 "Using this value for ioc_guid, id_ext, and cm_listen_id"
91 " instead of using the node_guid of the first HCA.");
92
93static struct ib_client srpt_client;
Bart Van Assche2c7f37f2016-02-11 11:06:55 -080094static void srpt_release_cmd(struct se_cmd *se_cmd);
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -080095static void srpt_free_ch(struct kref *kref);
Bart Van Asschea42d9852011-10-14 01:30:46 +000096static int srpt_queue_status(struct se_cmd *cmd);
Christoph Hellwig59fae4d2015-09-29 13:00:44 +020097static void srpt_recv_done(struct ib_cq *cq, struct ib_wc *wc);
98static void srpt_send_done(struct ib_cq *cq, struct ib_wc *wc);
Bart Van Assche387add42016-02-11 11:10:09 -080099static void srpt_process_wait_list(struct srpt_rdma_ch *ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000100
Bart Van Asschef130c222016-02-11 11:05:38 -0800101/*
102 * The only allowed channel state changes are those that change the channel
103 * state into a state with a higher numerical value. Hence the new > prev test.
Bart Van Asschea42d9852011-10-14 01:30:46 +0000104 */
Bart Van Asschef130c222016-02-11 11:05:38 -0800105static bool srpt_set_ch_state(struct srpt_rdma_ch *ch, enum rdma_ch_state new)
Bart Van Asschea42d9852011-10-14 01:30:46 +0000106{
107 unsigned long flags;
108 enum rdma_ch_state prev;
Bart Van Asschef130c222016-02-11 11:05:38 -0800109 bool changed = false;
Bart Van Asschea42d9852011-10-14 01:30:46 +0000110
111 spin_lock_irqsave(&ch->spinlock, flags);
112 prev = ch->state;
Bart Van Asschef130c222016-02-11 11:05:38 -0800113 if (new > prev) {
Bart Van Asschea42d9852011-10-14 01:30:46 +0000114 ch->state = new;
Bart Van Asschef130c222016-02-11 11:05:38 -0800115 changed = true;
116 }
Bart Van Asschea42d9852011-10-14 01:30:46 +0000117 spin_unlock_irqrestore(&ch->spinlock, flags);
Bart Van Asschef130c222016-02-11 11:05:38 -0800118
119 return changed;
Bart Van Asschea42d9852011-10-14 01:30:46 +0000120}
121
122/**
123 * srpt_event_handler() - Asynchronous IB event callback function.
124 *
125 * Callback function called by the InfiniBand core when an asynchronous IB
126 * event occurs. This callback may occur in interrupt context. See also
127 * section 11.5.2, Set Asynchronous Event Handler in the InfiniBand
128 * Architecture Specification.
129 */
130static void srpt_event_handler(struct ib_event_handler *handler,
131 struct ib_event *event)
132{
133 struct srpt_device *sdev;
134 struct srpt_port *sport;
135
136 sdev = ib_get_client_data(event->device, &srpt_client);
137 if (!sdev || sdev->device != event->device)
138 return;
139
140 pr_debug("ASYNC event= %d on device= %s\n", event->event,
Bart Van Asschef68cba4e92016-02-11 11:04:20 -0800141 sdev->device->name);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000142
143 switch (event->event) {
144 case IB_EVENT_PORT_ERR:
145 if (event->element.port_num <= sdev->device->phys_port_cnt) {
146 sport = &sdev->port[event->element.port_num - 1];
147 sport->lid = 0;
148 sport->sm_lid = 0;
149 }
150 break;
151 case IB_EVENT_PORT_ACTIVE:
152 case IB_EVENT_LID_CHANGE:
153 case IB_EVENT_PKEY_CHANGE:
154 case IB_EVENT_SM_CHANGE:
155 case IB_EVENT_CLIENT_REREGISTER:
Doug Ledford2aa1cf62014-08-12 19:20:10 -0400156 case IB_EVENT_GID_CHANGE:
Bart Van Asschea42d9852011-10-14 01:30:46 +0000157 /* Refresh port data asynchronously. */
158 if (event->element.port_num <= sdev->device->phys_port_cnt) {
159 sport = &sdev->port[event->element.port_num - 1];
160 if (!sport->lid && !sport->sm_lid)
161 schedule_work(&sport->work);
162 }
163 break;
164 default:
Doug Ledford9f5d32a2014-10-20 18:25:15 -0400165 pr_err("received unrecognized IB event %d\n",
Bart Van Asschea42d9852011-10-14 01:30:46 +0000166 event->event);
167 break;
168 }
169}
170
171/**
172 * srpt_srq_event() - SRQ event callback function.
173 */
174static void srpt_srq_event(struct ib_event *event, void *ctx)
175{
Doug Ledford9f5d32a2014-10-20 18:25:15 -0400176 pr_info("SRQ event %d\n", event->event);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000177}
178
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -0800179static const char *get_ch_state_name(enum rdma_ch_state s)
180{
181 switch (s) {
182 case CH_CONNECTING:
183 return "connecting";
184 case CH_LIVE:
185 return "live";
186 case CH_DISCONNECTING:
187 return "disconnecting";
188 case CH_DRAINING:
189 return "draining";
190 case CH_DISCONNECTED:
191 return "disconnected";
192 }
193 return "???";
194}
195
Bart Van Asschea42d9852011-10-14 01:30:46 +0000196/**
197 * srpt_qp_event() - QP event callback function.
198 */
199static void srpt_qp_event(struct ib_event *event, struct srpt_rdma_ch *ch)
200{
201 pr_debug("QP event %d on cm_id=%p sess_name=%s state=%d\n",
Bart Van Assche33912d72016-02-11 11:04:43 -0800202 event->event, ch->cm_id, ch->sess_name, ch->state);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000203
204 switch (event->event) {
205 case IB_EVENT_COMM_EST:
206 ib_cm_notify(ch->cm_id, event->event);
207 break;
208 case IB_EVENT_QP_LAST_WQE_REACHED:
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -0800209 pr_debug("%s-%d, state %s: received Last WQE event.\n",
210 ch->sess_name, ch->qp->qp_num,
211 get_ch_state_name(ch->state));
Bart Van Asschea42d9852011-10-14 01:30:46 +0000212 break;
213 default:
Doug Ledford9f5d32a2014-10-20 18:25:15 -0400214 pr_err("received unrecognized IB QP event %d\n", event->event);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000215 break;
216 }
217}
218
219/**
220 * srpt_set_ioc() - Helper function for initializing an IOUnitInfo structure.
221 *
222 * @slot: one-based slot number.
223 * @value: four-bit value.
224 *
225 * Copies the lowest four bits of value in element slot of the array of four
226 * bit elements called c_list (controller list). The index slot is one-based.
227 */
228static void srpt_set_ioc(u8 *c_list, u32 slot, u8 value)
229{
230 u16 id;
231 u8 tmp;
232
233 id = (slot - 1) / 2;
234 if (slot & 0x1) {
235 tmp = c_list[id] & 0xf;
236 c_list[id] = (value << 4) | tmp;
237 } else {
238 tmp = c_list[id] & 0xf0;
239 c_list[id] = (value & 0xf) | tmp;
240 }
241}
242
243/**
244 * srpt_get_class_port_info() - Copy ClassPortInfo to a management datagram.
245 *
246 * See also section 16.3.3.1 ClassPortInfo in the InfiniBand Architecture
247 * Specification.
248 */
249static void srpt_get_class_port_info(struct ib_dm_mad *mad)
250{
251 struct ib_class_port_info *cif;
252
253 cif = (struct ib_class_port_info *)mad->data;
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800254 memset(cif, 0, sizeof(*cif));
Bart Van Asschea42d9852011-10-14 01:30:46 +0000255 cif->base_version = 1;
256 cif->class_version = 1;
257 cif->resp_time_value = 20;
258
259 mad->mad_hdr.status = 0;
260}
261
262/**
263 * srpt_get_iou() - Write IOUnitInfo to a management datagram.
264 *
265 * See also section 16.3.3.3 IOUnitInfo in the InfiniBand Architecture
266 * Specification. See also section B.7, table B.6 in the SRP r16a document.
267 */
268static void srpt_get_iou(struct ib_dm_mad *mad)
269{
270 struct ib_dm_iou_info *ioui;
271 u8 slot;
272 int i;
273
274 ioui = (struct ib_dm_iou_info *)mad->data;
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +0530275 ioui->change_id = cpu_to_be16(1);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000276 ioui->max_controllers = 16;
277
278 /* set present for slot 1 and empty for the rest */
279 srpt_set_ioc(ioui->controller_list, 1, 1);
280 for (i = 1, slot = 2; i < 16; i++, slot++)
281 srpt_set_ioc(ioui->controller_list, slot, 0);
282
283 mad->mad_hdr.status = 0;
284}
285
286/**
287 * srpt_get_ioc() - Write IOControllerprofile to a management datagram.
288 *
289 * See also section 16.3.3.4 IOControllerProfile in the InfiniBand
290 * Architecture Specification. See also section B.7, table B.7 in the SRP
291 * r16a document.
292 */
293static void srpt_get_ioc(struct srpt_port *sport, u32 slot,
294 struct ib_dm_mad *mad)
295{
296 struct srpt_device *sdev = sport->sdev;
297 struct ib_dm_ioc_profile *iocp;
298
299 iocp = (struct ib_dm_ioc_profile *)mad->data;
300
301 if (!slot || slot > 16) {
302 mad->mad_hdr.status
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +0530303 = cpu_to_be16(DM_MAD_STATUS_INVALID_FIELD);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000304 return;
305 }
306
307 if (slot > 2) {
308 mad->mad_hdr.status
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +0530309 = cpu_to_be16(DM_MAD_STATUS_NO_IOC);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000310 return;
311 }
312
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800313 memset(iocp, 0, sizeof(*iocp));
Bart Van Asschea42d9852011-10-14 01:30:46 +0000314 strcpy(iocp->id_string, SRPT_ID_STRING);
315 iocp->guid = cpu_to_be64(srpt_service_guid);
Or Gerlitz4a061b22015-12-18 10:59:46 +0200316 iocp->vendor_id = cpu_to_be32(sdev->device->attrs.vendor_id);
317 iocp->device_id = cpu_to_be32(sdev->device->attrs.vendor_part_id);
318 iocp->device_version = cpu_to_be16(sdev->device->attrs.hw_ver);
319 iocp->subsys_vendor_id = cpu_to_be32(sdev->device->attrs.vendor_id);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000320 iocp->subsys_device_id = 0x0;
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +0530321 iocp->io_class = cpu_to_be16(SRP_REV16A_IB_IO_CLASS);
322 iocp->io_subclass = cpu_to_be16(SRP_IO_SUBCLASS);
323 iocp->protocol = cpu_to_be16(SRP_PROTOCOL);
324 iocp->protocol_version = cpu_to_be16(SRP_PROTOCOL_VERSION);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000325 iocp->send_queue_depth = cpu_to_be16(sdev->srq_size);
326 iocp->rdma_read_depth = 4;
327 iocp->send_size = cpu_to_be32(srp_max_req_size);
328 iocp->rdma_size = cpu_to_be32(min(sport->port_attrib.srp_max_rdma_size,
329 1U << 24));
330 iocp->num_svc_entries = 1;
331 iocp->op_cap_mask = SRP_SEND_TO_IOC | SRP_SEND_FROM_IOC |
332 SRP_RDMA_READ_FROM_IOC | SRP_RDMA_WRITE_FROM_IOC;
333
334 mad->mad_hdr.status = 0;
335}
336
337/**
338 * srpt_get_svc_entries() - Write ServiceEntries to a management datagram.
339 *
340 * See also section 16.3.3.5 ServiceEntries in the InfiniBand Architecture
341 * Specification. See also section B.7, table B.8 in the SRP r16a document.
342 */
343static void srpt_get_svc_entries(u64 ioc_guid,
344 u16 slot, u8 hi, u8 lo, struct ib_dm_mad *mad)
345{
346 struct ib_dm_svc_entries *svc_entries;
347
348 WARN_ON(!ioc_guid);
349
350 if (!slot || slot > 16) {
351 mad->mad_hdr.status
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +0530352 = cpu_to_be16(DM_MAD_STATUS_INVALID_FIELD);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000353 return;
354 }
355
356 if (slot > 2 || lo > hi || hi > 1) {
357 mad->mad_hdr.status
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +0530358 = cpu_to_be16(DM_MAD_STATUS_NO_IOC);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000359 return;
360 }
361
362 svc_entries = (struct ib_dm_svc_entries *)mad->data;
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800363 memset(svc_entries, 0, sizeof(*svc_entries));
Bart Van Asschea42d9852011-10-14 01:30:46 +0000364 svc_entries->service_entries[0].id = cpu_to_be64(ioc_guid);
365 snprintf(svc_entries->service_entries[0].name,
366 sizeof(svc_entries->service_entries[0].name),
367 "%s%016llx",
368 SRP_SERVICE_NAME_PREFIX,
369 ioc_guid);
370
371 mad->mad_hdr.status = 0;
372}
373
374/**
375 * srpt_mgmt_method_get() - Process a received management datagram.
376 * @sp: source port through which the MAD has been received.
377 * @rq_mad: received MAD.
378 * @rsp_mad: response MAD.
379 */
380static void srpt_mgmt_method_get(struct srpt_port *sp, struct ib_mad *rq_mad,
381 struct ib_dm_mad *rsp_mad)
382{
383 u16 attr_id;
384 u32 slot;
385 u8 hi, lo;
386
387 attr_id = be16_to_cpu(rq_mad->mad_hdr.attr_id);
388 switch (attr_id) {
389 case DM_ATTR_CLASS_PORT_INFO:
390 srpt_get_class_port_info(rsp_mad);
391 break;
392 case DM_ATTR_IOU_INFO:
393 srpt_get_iou(rsp_mad);
394 break;
395 case DM_ATTR_IOC_PROFILE:
396 slot = be32_to_cpu(rq_mad->mad_hdr.attr_mod);
397 srpt_get_ioc(sp, slot, rsp_mad);
398 break;
399 case DM_ATTR_SVC_ENTRIES:
400 slot = be32_to_cpu(rq_mad->mad_hdr.attr_mod);
401 hi = (u8) ((slot >> 8) & 0xff);
402 lo = (u8) (slot & 0xff);
403 slot = (u16) ((slot >> 16) & 0xffff);
404 srpt_get_svc_entries(srpt_service_guid,
405 slot, hi, lo, rsp_mad);
406 break;
407 default:
408 rsp_mad->mad_hdr.status =
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +0530409 cpu_to_be16(DM_MAD_STATUS_UNSUP_METHOD_ATTR);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000410 break;
411 }
412}
413
414/**
415 * srpt_mad_send_handler() - Post MAD-send callback function.
416 */
417static void srpt_mad_send_handler(struct ib_mad_agent *mad_agent,
418 struct ib_mad_send_wc *mad_wc)
419{
420 ib_destroy_ah(mad_wc->send_buf->ah);
421 ib_free_send_mad(mad_wc->send_buf);
422}
423
424/**
425 * srpt_mad_recv_handler() - MAD reception callback function.
426 */
427static void srpt_mad_recv_handler(struct ib_mad_agent *mad_agent,
Christoph Hellwigca281262016-01-04 14:15:58 +0100428 struct ib_mad_send_buf *send_buf,
Bart Van Asschea42d9852011-10-14 01:30:46 +0000429 struct ib_mad_recv_wc *mad_wc)
430{
431 struct srpt_port *sport = (struct srpt_port *)mad_agent->context;
432 struct ib_ah *ah;
433 struct ib_mad_send_buf *rsp;
434 struct ib_dm_mad *dm_mad;
435
436 if (!mad_wc || !mad_wc->recv_buf.mad)
437 return;
438
439 ah = ib_create_ah_from_wc(mad_agent->qp->pd, mad_wc->wc,
440 mad_wc->recv_buf.grh, mad_agent->port_num);
441 if (IS_ERR(ah))
442 goto err;
443
444 BUILD_BUG_ON(offsetof(struct ib_dm_mad, data) != IB_MGMT_DEVICE_HDR);
445
446 rsp = ib_create_send_mad(mad_agent, mad_wc->wc->src_qp,
447 mad_wc->wc->pkey_index, 0,
448 IB_MGMT_DEVICE_HDR, IB_MGMT_DEVICE_DATA,
Ira Weinyda2dfaa2015-06-06 14:38:28 -0400449 GFP_KERNEL,
450 IB_MGMT_BASE_VERSION);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000451 if (IS_ERR(rsp))
452 goto err_rsp;
453
454 rsp->ah = ah;
455
456 dm_mad = rsp->mad;
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800457 memcpy(dm_mad, mad_wc->recv_buf.mad, sizeof(*dm_mad));
Bart Van Asschea42d9852011-10-14 01:30:46 +0000458 dm_mad->mad_hdr.method = IB_MGMT_METHOD_GET_RESP;
459 dm_mad->mad_hdr.status = 0;
460
461 switch (mad_wc->recv_buf.mad->mad_hdr.method) {
462 case IB_MGMT_METHOD_GET:
463 srpt_mgmt_method_get(sport, mad_wc->recv_buf.mad, dm_mad);
464 break;
465 case IB_MGMT_METHOD_SET:
466 dm_mad->mad_hdr.status =
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +0530467 cpu_to_be16(DM_MAD_STATUS_UNSUP_METHOD_ATTR);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000468 break;
469 default:
470 dm_mad->mad_hdr.status =
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +0530471 cpu_to_be16(DM_MAD_STATUS_UNSUP_METHOD);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000472 break;
473 }
474
475 if (!ib_post_send_mad(rsp, NULL)) {
476 ib_free_recv_mad(mad_wc);
477 /* will destroy_ah & free_send_mad in send completion */
478 return;
479 }
480
481 ib_free_send_mad(rsp);
482
483err_rsp:
484 ib_destroy_ah(ah);
485err:
486 ib_free_recv_mad(mad_wc);
487}
488
489/**
490 * srpt_refresh_port() - Configure a HCA port.
491 *
492 * Enable InfiniBand management datagram processing, update the cached sm_lid,
493 * lid and gid values, and register a callback function for processing MADs
494 * on the specified port.
495 *
496 * Note: It is safe to call this function more than once for the same port.
497 */
498static int srpt_refresh_port(struct srpt_port *sport)
499{
500 struct ib_mad_reg_req reg_req;
501 struct ib_port_modify port_modify;
502 struct ib_port_attr port_attr;
503 int ret;
504
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800505 memset(&port_modify, 0, sizeof(port_modify));
Bart Van Asschea42d9852011-10-14 01:30:46 +0000506 port_modify.set_port_cap_mask = IB_PORT_DEVICE_MGMT_SUP;
507 port_modify.clr_port_cap_mask = 0;
508
509 ret = ib_modify_port(sport->sdev->device, sport->port, 0, &port_modify);
510 if (ret)
511 goto err_mod_port;
512
513 ret = ib_query_port(sport->sdev->device, sport->port, &port_attr);
514 if (ret)
515 goto err_query_port;
516
517 sport->sm_lid = port_attr.sm_lid;
518 sport->lid = port_attr.lid;
519
Matan Barak55ee3ab2015-10-15 18:38:45 +0300520 ret = ib_query_gid(sport->sdev->device, sport->port, 0, &sport->gid,
521 NULL);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000522 if (ret)
523 goto err_query_port;
524
525 if (!sport->mad_agent) {
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800526 memset(&reg_req, 0, sizeof(reg_req));
Bart Van Asschea42d9852011-10-14 01:30:46 +0000527 reg_req.mgmt_class = IB_MGMT_CLASS_DEVICE_MGMT;
528 reg_req.mgmt_class_version = IB_MGMT_BASE_VERSION;
529 set_bit(IB_MGMT_METHOD_GET, reg_req.method_mask);
530 set_bit(IB_MGMT_METHOD_SET, reg_req.method_mask);
531
532 sport->mad_agent = ib_register_mad_agent(sport->sdev->device,
533 sport->port,
534 IB_QPT_GSI,
535 &reg_req, 0,
536 srpt_mad_send_handler,
537 srpt_mad_recv_handler,
Ira Weiny0f29b462014-08-08 19:00:55 -0400538 sport, 0);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000539 if (IS_ERR(sport->mad_agent)) {
540 ret = PTR_ERR(sport->mad_agent);
541 sport->mad_agent = NULL;
542 goto err_query_port;
543 }
544 }
545
546 return 0;
547
548err_query_port:
549
550 port_modify.set_port_cap_mask = 0;
551 port_modify.clr_port_cap_mask = IB_PORT_DEVICE_MGMT_SUP;
552 ib_modify_port(sport->sdev->device, sport->port, 0, &port_modify);
553
554err_mod_port:
555
556 return ret;
557}
558
559/**
560 * srpt_unregister_mad_agent() - Unregister MAD callback functions.
561 *
562 * Note: It is safe to call this function more than once for the same device.
563 */
564static void srpt_unregister_mad_agent(struct srpt_device *sdev)
565{
566 struct ib_port_modify port_modify = {
567 .clr_port_cap_mask = IB_PORT_DEVICE_MGMT_SUP,
568 };
569 struct srpt_port *sport;
570 int i;
571
572 for (i = 1; i <= sdev->device->phys_port_cnt; i++) {
573 sport = &sdev->port[i - 1];
574 WARN_ON(sport->port != i);
575 if (ib_modify_port(sdev->device, i, 0, &port_modify) < 0)
Doug Ledford9f5d32a2014-10-20 18:25:15 -0400576 pr_err("disabling MAD processing failed.\n");
Bart Van Asschea42d9852011-10-14 01:30:46 +0000577 if (sport->mad_agent) {
578 ib_unregister_mad_agent(sport->mad_agent);
579 sport->mad_agent = NULL;
580 }
581 }
582}
583
584/**
585 * srpt_alloc_ioctx() - Allocate an SRPT I/O context structure.
586 */
587static struct srpt_ioctx *srpt_alloc_ioctx(struct srpt_device *sdev,
588 int ioctx_size, int dma_size,
589 enum dma_data_direction dir)
590{
591 struct srpt_ioctx *ioctx;
592
593 ioctx = kmalloc(ioctx_size, GFP_KERNEL);
594 if (!ioctx)
595 goto err;
596
597 ioctx->buf = kmalloc(dma_size, GFP_KERNEL);
598 if (!ioctx->buf)
599 goto err_free_ioctx;
600
601 ioctx->dma = ib_dma_map_single(sdev->device, ioctx->buf, dma_size, dir);
602 if (ib_dma_mapping_error(sdev->device, ioctx->dma))
603 goto err_free_buf;
604
605 return ioctx;
606
607err_free_buf:
608 kfree(ioctx->buf);
609err_free_ioctx:
610 kfree(ioctx);
611err:
612 return NULL;
613}
614
615/**
616 * srpt_free_ioctx() - Free an SRPT I/O context structure.
617 */
618static void srpt_free_ioctx(struct srpt_device *sdev, struct srpt_ioctx *ioctx,
619 int dma_size, enum dma_data_direction dir)
620{
621 if (!ioctx)
622 return;
623
624 ib_dma_unmap_single(sdev->device, ioctx->dma, dma_size, dir);
625 kfree(ioctx->buf);
626 kfree(ioctx);
627}
628
629/**
630 * srpt_alloc_ioctx_ring() - Allocate a ring of SRPT I/O context structures.
631 * @sdev: Device to allocate the I/O context ring for.
632 * @ring_size: Number of elements in the I/O context ring.
633 * @ioctx_size: I/O context size.
634 * @dma_size: DMA buffer size.
635 * @dir: DMA data direction.
636 */
637static struct srpt_ioctx **srpt_alloc_ioctx_ring(struct srpt_device *sdev,
638 int ring_size, int ioctx_size,
639 int dma_size, enum dma_data_direction dir)
640{
641 struct srpt_ioctx **ring;
642 int i;
643
644 WARN_ON(ioctx_size != sizeof(struct srpt_recv_ioctx)
645 && ioctx_size != sizeof(struct srpt_send_ioctx));
646
647 ring = kmalloc(ring_size * sizeof(ring[0]), GFP_KERNEL);
648 if (!ring)
649 goto out;
650 for (i = 0; i < ring_size; ++i) {
651 ring[i] = srpt_alloc_ioctx(sdev, ioctx_size, dma_size, dir);
652 if (!ring[i])
653 goto err;
654 ring[i]->index = i;
655 }
656 goto out;
657
658err:
659 while (--i >= 0)
660 srpt_free_ioctx(sdev, ring[i], dma_size, dir);
661 kfree(ring);
Jesper Juhl715252d2012-02-04 23:49:40 +0100662 ring = NULL;
Bart Van Asschea42d9852011-10-14 01:30:46 +0000663out:
664 return ring;
665}
666
667/**
668 * srpt_free_ioctx_ring() - Free the ring of SRPT I/O context structures.
669 */
670static void srpt_free_ioctx_ring(struct srpt_ioctx **ioctx_ring,
671 struct srpt_device *sdev, int ring_size,
672 int dma_size, enum dma_data_direction dir)
673{
674 int i;
675
676 for (i = 0; i < ring_size; ++i)
677 srpt_free_ioctx(sdev, ioctx_ring[i], dma_size, dir);
678 kfree(ioctx_ring);
679}
680
681/**
682 * srpt_get_cmd_state() - Get the state of a SCSI command.
683 */
684static enum srpt_command_state srpt_get_cmd_state(struct srpt_send_ioctx *ioctx)
685{
686 enum srpt_command_state state;
687 unsigned long flags;
688
689 BUG_ON(!ioctx);
690
691 spin_lock_irqsave(&ioctx->spinlock, flags);
692 state = ioctx->state;
693 spin_unlock_irqrestore(&ioctx->spinlock, flags);
694 return state;
695}
696
697/**
698 * srpt_set_cmd_state() - Set the state of a SCSI command.
699 *
700 * Does not modify the state of aborted commands. Returns the previous command
701 * state.
702 */
703static enum srpt_command_state srpt_set_cmd_state(struct srpt_send_ioctx *ioctx,
704 enum srpt_command_state new)
705{
706 enum srpt_command_state previous;
707 unsigned long flags;
708
709 BUG_ON(!ioctx);
710
711 spin_lock_irqsave(&ioctx->spinlock, flags);
712 previous = ioctx->state;
713 if (previous != SRPT_STATE_DONE)
714 ioctx->state = new;
715 spin_unlock_irqrestore(&ioctx->spinlock, flags);
716
717 return previous;
718}
719
720/**
721 * srpt_test_and_set_cmd_state() - Test and set the state of a command.
722 *
723 * Returns true if and only if the previous command state was equal to 'old'.
724 */
725static bool srpt_test_and_set_cmd_state(struct srpt_send_ioctx *ioctx,
726 enum srpt_command_state old,
727 enum srpt_command_state new)
728{
729 enum srpt_command_state previous;
730 unsigned long flags;
731
732 WARN_ON(!ioctx);
733 WARN_ON(old == SRPT_STATE_DONE);
734 WARN_ON(new == SRPT_STATE_NEW);
735
736 spin_lock_irqsave(&ioctx->spinlock, flags);
737 previous = ioctx->state;
738 if (previous == old)
739 ioctx->state = new;
740 spin_unlock_irqrestore(&ioctx->spinlock, flags);
741 return previous == old;
742}
743
744/**
745 * srpt_post_recv() - Post an IB receive request.
746 */
747static int srpt_post_recv(struct srpt_device *sdev,
748 struct srpt_recv_ioctx *ioctx)
749{
750 struct ib_sge list;
751 struct ib_recv_wr wr, *bad_wr;
752
753 BUG_ON(!sdev);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000754 list.addr = ioctx->ioctx.dma;
755 list.length = srp_max_req_size;
Jason Gunthorpe5a783952015-07-30 17:22:24 -0600756 list.lkey = sdev->pd->local_dma_lkey;
Bart Van Asschea42d9852011-10-14 01:30:46 +0000757
Christoph Hellwig59fae4d2015-09-29 13:00:44 +0200758 ioctx->ioctx.cqe.done = srpt_recv_done;
759 wr.wr_cqe = &ioctx->ioctx.cqe;
Bart Van Asschea42d9852011-10-14 01:30:46 +0000760 wr.next = NULL;
761 wr.sg_list = &list;
762 wr.num_sge = 1;
763
764 return ib_post_srq_recv(sdev->srq, &wr, &bad_wr);
765}
766
767/**
768 * srpt_post_send() - Post an IB send request.
769 *
770 * Returns zero upon success and a non-zero value upon failure.
771 */
772static int srpt_post_send(struct srpt_rdma_ch *ch,
773 struct srpt_send_ioctx *ioctx, int len)
774{
775 struct ib_sge list;
776 struct ib_send_wr wr, *bad_wr;
777 struct srpt_device *sdev = ch->sport->sdev;
778 int ret;
779
780 atomic_inc(&ch->req_lim);
781
782 ret = -ENOMEM;
783 if (unlikely(atomic_dec_return(&ch->sq_wr_avail) < 0)) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -0400784 pr_warn("IB send queue full (needed 1)\n");
Bart Van Asschea42d9852011-10-14 01:30:46 +0000785 goto out;
786 }
787
788 ib_dma_sync_single_for_device(sdev->device, ioctx->ioctx.dma, len,
789 DMA_TO_DEVICE);
790
791 list.addr = ioctx->ioctx.dma;
792 list.length = len;
Jason Gunthorpe5a783952015-07-30 17:22:24 -0600793 list.lkey = sdev->pd->local_dma_lkey;
Bart Van Asschea42d9852011-10-14 01:30:46 +0000794
Christoph Hellwig59fae4d2015-09-29 13:00:44 +0200795 ioctx->ioctx.cqe.done = srpt_send_done;
Bart Van Asschea42d9852011-10-14 01:30:46 +0000796 wr.next = NULL;
Christoph Hellwig59fae4d2015-09-29 13:00:44 +0200797 wr.wr_cqe = &ioctx->ioctx.cqe;
Bart Van Asschea42d9852011-10-14 01:30:46 +0000798 wr.sg_list = &list;
799 wr.num_sge = 1;
800 wr.opcode = IB_WR_SEND;
801 wr.send_flags = IB_SEND_SIGNALED;
802
803 ret = ib_post_send(ch->qp, &wr, &bad_wr);
804
805out:
806 if (ret < 0) {
807 atomic_inc(&ch->sq_wr_avail);
808 atomic_dec(&ch->req_lim);
809 }
810 return ret;
811}
812
813/**
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -0800814 * srpt_zerolength_write() - Perform a zero-length RDMA write.
815 *
816 * A quote from the InfiniBand specification: C9-88: For an HCA responder
817 * using Reliable Connection service, for each zero-length RDMA READ or WRITE
818 * request, the R_Key shall not be validated, even if the request includes
819 * Immediate data.
820 */
821static int srpt_zerolength_write(struct srpt_rdma_ch *ch)
822{
823 struct ib_send_wr wr, *bad_wr;
824
825 memset(&wr, 0, sizeof(wr));
826 wr.opcode = IB_WR_RDMA_WRITE;
827 wr.wr_cqe = &ch->zw_cqe;
828 wr.send_flags = IB_SEND_SIGNALED;
829 return ib_post_send(ch->qp, &wr, &bad_wr);
830}
831
832static void srpt_zerolength_write_done(struct ib_cq *cq, struct ib_wc *wc)
833{
834 struct srpt_rdma_ch *ch = cq->cq_context;
835
Bart Van Assche387add42016-02-11 11:10:09 -0800836 if (wc->status == IB_WC_SUCCESS) {
837 srpt_process_wait_list(ch);
838 } else {
839 if (srpt_set_ch_state(ch, CH_DISCONNECTED))
840 schedule_work(&ch->release_work);
841 else
842 WARN_ONCE("%s-%d\n", ch->sess_name, ch->qp->qp_num);
843 }
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -0800844}
845
846/**
Bart Van Asschea42d9852011-10-14 01:30:46 +0000847 * srpt_get_desc_tbl() - Parse the data descriptors of an SRP_CMD request.
848 * @ioctx: Pointer to the I/O context associated with the request.
849 * @srp_cmd: Pointer to the SRP_CMD request data.
850 * @dir: Pointer to the variable to which the transfer direction will be
851 * written.
852 * @data_len: Pointer to the variable to which the total data length of all
853 * descriptors in the SRP_CMD request will be written.
854 *
855 * This function initializes ioctx->nrbuf and ioctx->r_bufs.
856 *
857 * Returns -EINVAL when the SRP_CMD request contains inconsistent descriptors;
858 * -ENOMEM when memory allocation fails and zero upon success.
859 */
860static int srpt_get_desc_tbl(struct srpt_send_ioctx *ioctx,
861 struct srp_cmd *srp_cmd,
862 enum dma_data_direction *dir, u64 *data_len)
863{
864 struct srp_indirect_buf *idb;
865 struct srp_direct_buf *db;
866 unsigned add_cdb_offset;
867 int ret;
868
869 /*
870 * The pointer computations below will only be compiled correctly
871 * if srp_cmd::add_data is declared as s8*, u8*, s8[] or u8[], so check
872 * whether srp_cmd::add_data has been declared as a byte pointer.
873 */
874 BUILD_BUG_ON(!__same_type(srp_cmd->add_data[0], (s8)0)
875 && !__same_type(srp_cmd->add_data[0], (u8)0));
876
877 BUG_ON(!dir);
878 BUG_ON(!data_len);
879
880 ret = 0;
881 *data_len = 0;
882
883 /*
884 * The lower four bits of the buffer format field contain the DATA-IN
885 * buffer descriptor format, and the highest four bits contain the
886 * DATA-OUT buffer descriptor format.
887 */
888 *dir = DMA_NONE;
889 if (srp_cmd->buf_fmt & 0xf)
890 /* DATA-IN: transfer data from target to initiator (read). */
891 *dir = DMA_FROM_DEVICE;
892 else if (srp_cmd->buf_fmt >> 4)
893 /* DATA-OUT: transfer data from initiator to target (write). */
894 *dir = DMA_TO_DEVICE;
895
896 /*
897 * According to the SRP spec, the lower two bits of the 'ADDITIONAL
898 * CDB LENGTH' field are reserved and the size in bytes of this field
899 * is four times the value specified in bits 3..7. Hence the "& ~3".
900 */
901 add_cdb_offset = srp_cmd->add_cdb_len & ~3;
902 if (((srp_cmd->buf_fmt & 0xf) == SRP_DATA_DESC_DIRECT) ||
903 ((srp_cmd->buf_fmt >> 4) == SRP_DATA_DESC_DIRECT)) {
904 ioctx->n_rbuf = 1;
905 ioctx->rbufs = &ioctx->single_rbuf;
906
907 db = (struct srp_direct_buf *)(srp_cmd->add_data
908 + add_cdb_offset);
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800909 memcpy(ioctx->rbufs, db, sizeof(*db));
Bart Van Asschea42d9852011-10-14 01:30:46 +0000910 *data_len = be32_to_cpu(db->len);
911 } else if (((srp_cmd->buf_fmt & 0xf) == SRP_DATA_DESC_INDIRECT) ||
912 ((srp_cmd->buf_fmt >> 4) == SRP_DATA_DESC_INDIRECT)) {
913 idb = (struct srp_indirect_buf *)(srp_cmd->add_data
914 + add_cdb_offset);
915
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800916 ioctx->n_rbuf = be32_to_cpu(idb->table_desc.len) / sizeof(*db);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000917
918 if (ioctx->n_rbuf >
919 (srp_cmd->data_out_desc_cnt + srp_cmd->data_in_desc_cnt)) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -0400920 pr_err("received unsupported SRP_CMD request"
Bart Van Asschea42d9852011-10-14 01:30:46 +0000921 " type (%u out + %u in != %u / %zu)\n",
922 srp_cmd->data_out_desc_cnt,
923 srp_cmd->data_in_desc_cnt,
924 be32_to_cpu(idb->table_desc.len),
925 sizeof(*db));
926 ioctx->n_rbuf = 0;
927 ret = -EINVAL;
928 goto out;
929 }
930
931 if (ioctx->n_rbuf == 1)
932 ioctx->rbufs = &ioctx->single_rbuf;
933 else {
934 ioctx->rbufs =
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800935 kmalloc(ioctx->n_rbuf * sizeof(*db), GFP_ATOMIC);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000936 if (!ioctx->rbufs) {
937 ioctx->n_rbuf = 0;
938 ret = -ENOMEM;
939 goto out;
940 }
941 }
942
943 db = idb->desc_list;
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800944 memcpy(ioctx->rbufs, db, ioctx->n_rbuf * sizeof(*db));
Bart Van Asschea42d9852011-10-14 01:30:46 +0000945 *data_len = be32_to_cpu(idb->len);
946 }
947out:
948 return ret;
949}
950
951/**
952 * srpt_init_ch_qp() - Initialize queue pair attributes.
953 *
954 * Initialized the attributes of queue pair 'qp' by allowing local write,
955 * remote read and remote write. Also transitions 'qp' to state IB_QPS_INIT.
956 */
957static int srpt_init_ch_qp(struct srpt_rdma_ch *ch, struct ib_qp *qp)
958{
959 struct ib_qp_attr *attr;
960 int ret;
961
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -0800962 attr = kzalloc(sizeof(*attr), GFP_KERNEL);
Bart Van Asschea42d9852011-10-14 01:30:46 +0000963 if (!attr)
964 return -ENOMEM;
965
966 attr->qp_state = IB_QPS_INIT;
967 attr->qp_access_flags = IB_ACCESS_LOCAL_WRITE | IB_ACCESS_REMOTE_READ |
968 IB_ACCESS_REMOTE_WRITE;
969 attr->port_num = ch->sport->port;
970 attr->pkey_index = 0;
971
972 ret = ib_modify_qp(qp, attr,
973 IB_QP_STATE | IB_QP_ACCESS_FLAGS | IB_QP_PORT |
974 IB_QP_PKEY_INDEX);
975
976 kfree(attr);
977 return ret;
978}
979
980/**
981 * srpt_ch_qp_rtr() - Change the state of a channel to 'ready to receive' (RTR).
982 * @ch: channel of the queue pair.
983 * @qp: queue pair to change the state of.
984 *
985 * Returns zero upon success and a negative value upon failure.
986 *
987 * Note: currently a struct ib_qp_attr takes 136 bytes on a 64-bit system.
988 * If this structure ever becomes larger, it might be necessary to allocate
989 * it dynamically instead of on the stack.
990 */
991static int srpt_ch_qp_rtr(struct srpt_rdma_ch *ch, struct ib_qp *qp)
992{
993 struct ib_qp_attr qp_attr;
994 int attr_mask;
995 int ret;
996
997 qp_attr.qp_state = IB_QPS_RTR;
998 ret = ib_cm_init_qp_attr(ch->cm_id, &qp_attr, &attr_mask);
999 if (ret)
1000 goto out;
1001
1002 qp_attr.max_dest_rd_atomic = 4;
1003
1004 ret = ib_modify_qp(qp, &qp_attr, attr_mask);
1005
1006out:
1007 return ret;
1008}
1009
1010/**
1011 * srpt_ch_qp_rts() - Change the state of a channel to 'ready to send' (RTS).
1012 * @ch: channel of the queue pair.
1013 * @qp: queue pair to change the state of.
1014 *
1015 * Returns zero upon success and a negative value upon failure.
1016 *
1017 * Note: currently a struct ib_qp_attr takes 136 bytes on a 64-bit system.
1018 * If this structure ever becomes larger, it might be necessary to allocate
1019 * it dynamically instead of on the stack.
1020 */
1021static int srpt_ch_qp_rts(struct srpt_rdma_ch *ch, struct ib_qp *qp)
1022{
1023 struct ib_qp_attr qp_attr;
1024 int attr_mask;
1025 int ret;
1026
1027 qp_attr.qp_state = IB_QPS_RTS;
1028 ret = ib_cm_init_qp_attr(ch->cm_id, &qp_attr, &attr_mask);
1029 if (ret)
1030 goto out;
1031
1032 qp_attr.max_rd_atomic = 4;
1033
1034 ret = ib_modify_qp(qp, &qp_attr, attr_mask);
1035
1036out:
1037 return ret;
1038}
1039
1040/**
1041 * srpt_ch_qp_err() - Set the channel queue pair state to 'error'.
1042 */
1043static int srpt_ch_qp_err(struct srpt_rdma_ch *ch)
1044{
1045 struct ib_qp_attr qp_attr;
1046
1047 qp_attr.qp_state = IB_QPS_ERR;
1048 return ib_modify_qp(ch->qp, &qp_attr, IB_QP_STATE);
1049}
1050
1051/**
1052 * srpt_unmap_sg_to_ib_sge() - Unmap an IB SGE list.
1053 */
1054static void srpt_unmap_sg_to_ib_sge(struct srpt_rdma_ch *ch,
1055 struct srpt_send_ioctx *ioctx)
1056{
1057 struct scatterlist *sg;
1058 enum dma_data_direction dir;
1059
1060 BUG_ON(!ch);
1061 BUG_ON(!ioctx);
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001062 BUG_ON(ioctx->n_rdma && !ioctx->rdma_wrs);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001063
1064 while (ioctx->n_rdma)
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001065 kfree(ioctx->rdma_wrs[--ioctx->n_rdma].wr.sg_list);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001066
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001067 kfree(ioctx->rdma_wrs);
1068 ioctx->rdma_wrs = NULL;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001069
1070 if (ioctx->mapped_sg_count) {
1071 sg = ioctx->sg;
1072 WARN_ON(!sg);
1073 dir = ioctx->cmd.data_direction;
1074 BUG_ON(dir == DMA_NONE);
1075 ib_dma_unmap_sg(ch->sport->sdev->device, sg, ioctx->sg_cnt,
Bart Van Assche671ec1b2016-02-11 11:05:01 -08001076 target_reverse_dma_direction(&ioctx->cmd));
Bart Van Asschea42d9852011-10-14 01:30:46 +00001077 ioctx->mapped_sg_count = 0;
1078 }
1079}
1080
1081/**
1082 * srpt_map_sg_to_ib_sge() - Map an SG list to an IB SGE list.
1083 */
1084static int srpt_map_sg_to_ib_sge(struct srpt_rdma_ch *ch,
1085 struct srpt_send_ioctx *ioctx)
1086{
Mike Marciniszynb0768082014-04-07 13:58:35 -04001087 struct ib_device *dev = ch->sport->sdev->device;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001088 struct se_cmd *cmd;
1089 struct scatterlist *sg, *sg_orig;
1090 int sg_cnt;
1091 enum dma_data_direction dir;
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001092 struct ib_rdma_wr *riu;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001093 struct srp_direct_buf *db;
1094 dma_addr_t dma_addr;
1095 struct ib_sge *sge;
1096 u64 raddr;
1097 u32 rsize;
1098 u32 tsize;
1099 u32 dma_len;
1100 int count, nrdma;
1101 int i, j, k;
1102
1103 BUG_ON(!ch);
1104 BUG_ON(!ioctx);
1105 cmd = &ioctx->cmd;
1106 dir = cmd->data_direction;
1107 BUG_ON(dir == DMA_NONE);
1108
Roland Dreier6f9e7f02012-03-30 11:29:12 -07001109 ioctx->sg = sg = sg_orig = cmd->t_data_sg;
1110 ioctx->sg_cnt = sg_cnt = cmd->t_data_nents;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001111
1112 count = ib_dma_map_sg(ch->sport->sdev->device, sg, sg_cnt,
Bart Van Assche671ec1b2016-02-11 11:05:01 -08001113 target_reverse_dma_direction(cmd));
Bart Van Asschea42d9852011-10-14 01:30:46 +00001114 if (unlikely(!count))
1115 return -EAGAIN;
1116
1117 ioctx->mapped_sg_count = count;
1118
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001119 if (ioctx->rdma_wrs && ioctx->n_rdma_wrs)
1120 nrdma = ioctx->n_rdma_wrs;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001121 else {
1122 nrdma = (count + SRPT_DEF_SG_PER_WQE - 1) / SRPT_DEF_SG_PER_WQE
1123 + ioctx->n_rbuf;
1124
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001125 ioctx->rdma_wrs = kcalloc(nrdma, sizeof(*ioctx->rdma_wrs),
1126 GFP_KERNEL);
1127 if (!ioctx->rdma_wrs)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001128 goto free_mem;
1129
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001130 ioctx->n_rdma_wrs = nrdma;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001131 }
1132
1133 db = ioctx->rbufs;
1134 tsize = cmd->data_length;
Mike Marciniszynb0768082014-04-07 13:58:35 -04001135 dma_len = ib_sg_dma_len(dev, &sg[0]);
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001136 riu = ioctx->rdma_wrs;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001137
1138 /*
1139 * For each remote desc - calculate the #ib_sge.
1140 * If #ib_sge < SRPT_DEF_SG_PER_WQE per rdma operation then
1141 * each remote desc rdma_iu is required a rdma wr;
1142 * else
1143 * we need to allocate extra rdma_iu to carry extra #ib_sge in
1144 * another rdma wr
1145 */
1146 for (i = 0, j = 0;
1147 j < count && i < ioctx->n_rbuf && tsize > 0; ++i, ++riu, ++db) {
1148 rsize = be32_to_cpu(db->len);
1149 raddr = be64_to_cpu(db->va);
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001150 riu->remote_addr = raddr;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001151 riu->rkey = be32_to_cpu(db->key);
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001152 riu->wr.num_sge = 0;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001153
1154 /* calculate how many sge required for this remote_buf */
1155 while (rsize > 0 && tsize > 0) {
1156
1157 if (rsize >= dma_len) {
1158 tsize -= dma_len;
1159 rsize -= dma_len;
1160 raddr += dma_len;
1161
1162 if (tsize > 0) {
1163 ++j;
1164 if (j < count) {
1165 sg = sg_next(sg);
Mike Marciniszynb0768082014-04-07 13:58:35 -04001166 dma_len = ib_sg_dma_len(
1167 dev, sg);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001168 }
1169 }
1170 } else {
1171 tsize -= rsize;
1172 dma_len -= rsize;
1173 rsize = 0;
1174 }
1175
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001176 ++riu->wr.num_sge;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001177
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001178 if (rsize > 0 &&
1179 riu->wr.num_sge == SRPT_DEF_SG_PER_WQE) {
Bart Van Asschea42d9852011-10-14 01:30:46 +00001180 ++ioctx->n_rdma;
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001181 riu->wr.sg_list = kmalloc_array(riu->wr.num_sge,
1182 sizeof(*riu->wr.sg_list),
1183 GFP_KERNEL);
1184 if (!riu->wr.sg_list)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001185 goto free_mem;
1186
1187 ++riu;
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001188 riu->wr.num_sge = 0;
1189 riu->remote_addr = raddr;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001190 riu->rkey = be32_to_cpu(db->key);
1191 }
1192 }
1193
1194 ++ioctx->n_rdma;
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001195 riu->wr.sg_list = kmalloc_array(riu->wr.num_sge,
1196 sizeof(*riu->wr.sg_list),
1197 GFP_KERNEL);
1198 if (!riu->wr.sg_list)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001199 goto free_mem;
1200 }
1201
1202 db = ioctx->rbufs;
1203 tsize = cmd->data_length;
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001204 riu = ioctx->rdma_wrs;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001205 sg = sg_orig;
Mike Marciniszynb0768082014-04-07 13:58:35 -04001206 dma_len = ib_sg_dma_len(dev, &sg[0]);
1207 dma_addr = ib_sg_dma_address(dev, &sg[0]);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001208
1209 /* this second loop is really mapped sg_addres to rdma_iu->ib_sge */
1210 for (i = 0, j = 0;
1211 j < count && i < ioctx->n_rbuf && tsize > 0; ++i, ++riu, ++db) {
1212 rsize = be32_to_cpu(db->len);
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001213 sge = riu->wr.sg_list;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001214 k = 0;
1215
1216 while (rsize > 0 && tsize > 0) {
1217 sge->addr = dma_addr;
Jason Gunthorpe5a783952015-07-30 17:22:24 -06001218 sge->lkey = ch->sport->sdev->pd->local_dma_lkey;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001219
1220 if (rsize >= dma_len) {
1221 sge->length =
1222 (tsize < dma_len) ? tsize : dma_len;
1223 tsize -= dma_len;
1224 rsize -= dma_len;
1225
1226 if (tsize > 0) {
1227 ++j;
1228 if (j < count) {
1229 sg = sg_next(sg);
Mike Marciniszynb0768082014-04-07 13:58:35 -04001230 dma_len = ib_sg_dma_len(
1231 dev, sg);
1232 dma_addr = ib_sg_dma_address(
1233 dev, sg);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001234 }
1235 }
1236 } else {
1237 sge->length = (tsize < rsize) ? tsize : rsize;
1238 tsize -= rsize;
1239 dma_len -= rsize;
1240 dma_addr += rsize;
1241 rsize = 0;
1242 }
1243
1244 ++k;
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001245 if (k == riu->wr.num_sge && rsize > 0 && tsize > 0) {
Bart Van Asschea42d9852011-10-14 01:30:46 +00001246 ++riu;
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001247 sge = riu->wr.sg_list;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001248 k = 0;
1249 } else if (rsize > 0 && tsize > 0)
1250 ++sge;
1251 }
1252 }
1253
1254 return 0;
1255
1256free_mem:
1257 srpt_unmap_sg_to_ib_sge(ch, ioctx);
1258
1259 return -ENOMEM;
1260}
1261
1262/**
1263 * srpt_get_send_ioctx() - Obtain an I/O context for sending to the initiator.
1264 */
1265static struct srpt_send_ioctx *srpt_get_send_ioctx(struct srpt_rdma_ch *ch)
1266{
1267 struct srpt_send_ioctx *ioctx;
1268 unsigned long flags;
1269
1270 BUG_ON(!ch);
1271
1272 ioctx = NULL;
1273 spin_lock_irqsave(&ch->spinlock, flags);
1274 if (!list_empty(&ch->free_list)) {
1275 ioctx = list_first_entry(&ch->free_list,
1276 struct srpt_send_ioctx, free_list);
1277 list_del(&ioctx->free_list);
1278 }
1279 spin_unlock_irqrestore(&ch->spinlock, flags);
1280
1281 if (!ioctx)
1282 return ioctx;
1283
1284 BUG_ON(ioctx->ch != ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001285 spin_lock_init(&ioctx->spinlock);
1286 ioctx->state = SRPT_STATE_NEW;
1287 ioctx->n_rbuf = 0;
1288 ioctx->rbufs = NULL;
1289 ioctx->n_rdma = 0;
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001290 ioctx->n_rdma_wrs = 0;
1291 ioctx->rdma_wrs = NULL;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001292 ioctx->mapped_sg_count = 0;
1293 init_completion(&ioctx->tx_done);
1294 ioctx->queue_status_only = false;
1295 /*
1296 * transport_init_se_cmd() does not initialize all fields, so do it
1297 * here.
1298 */
1299 memset(&ioctx->cmd, 0, sizeof(ioctx->cmd));
1300 memset(&ioctx->sense_data, 0, sizeof(ioctx->sense_data));
1301
1302 return ioctx;
1303}
1304
1305/**
Bart Van Asschea42d9852011-10-14 01:30:46 +00001306 * srpt_abort_cmd() - Abort a SCSI command.
1307 * @ioctx: I/O context associated with the SCSI command.
1308 * @context: Preferred execution context.
1309 */
1310static int srpt_abort_cmd(struct srpt_send_ioctx *ioctx)
1311{
1312 enum srpt_command_state state;
1313 unsigned long flags;
1314
1315 BUG_ON(!ioctx);
1316
1317 /*
1318 * If the command is in a state where the target core is waiting for
Bart Van Assche49f40162016-02-11 11:07:11 -08001319 * the ib_srpt driver, change the state to the next state.
Bart Van Asschea42d9852011-10-14 01:30:46 +00001320 */
1321
1322 spin_lock_irqsave(&ioctx->spinlock, flags);
1323 state = ioctx->state;
1324 switch (state) {
1325 case SRPT_STATE_NEED_DATA:
1326 ioctx->state = SRPT_STATE_DATA_IN;
1327 break;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001328 case SRPT_STATE_CMD_RSP_SENT:
1329 case SRPT_STATE_MGMT_RSP_SENT:
1330 ioctx->state = SRPT_STATE_DONE;
1331 break;
1332 default:
Bart Van Assche49f40162016-02-11 11:07:11 -08001333 WARN_ONCE(true, "%s: unexpected I/O context state %d\n",
1334 __func__, state);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001335 break;
1336 }
1337 spin_unlock_irqrestore(&ioctx->spinlock, flags);
1338
Bart Van Asschea42d9852011-10-14 01:30:46 +00001339 pr_debug("Aborting cmd with state %d and tag %lld\n", state,
Bart Van Assche649ee052015-04-14 13:26:44 +02001340 ioctx->cmd.tag);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001341
1342 switch (state) {
1343 case SRPT_STATE_NEW:
1344 case SRPT_STATE_DATA_IN:
1345 case SRPT_STATE_MGMT:
Bart Van Assche49f40162016-02-11 11:07:11 -08001346 case SRPT_STATE_DONE:
Bart Van Asschea42d9852011-10-14 01:30:46 +00001347 /*
1348 * Do nothing - defer abort processing until
1349 * srpt_queue_response() is invoked.
1350 */
Bart Van Asschea42d9852011-10-14 01:30:46 +00001351 break;
1352 case SRPT_STATE_NEED_DATA:
Bart Van Assche49f40162016-02-11 11:07:11 -08001353 pr_debug("tag %#llx: RDMA read error\n", ioctx->cmd.tag);
1354 transport_generic_request_failure(&ioctx->cmd,
1355 TCM_CHECK_CONDITION_ABORT_CMD);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001356 break;
1357 case SRPT_STATE_CMD_RSP_SENT:
1358 /*
1359 * SRP_RSP sending failed or the SRP_RSP send completion has
1360 * not been received in time.
1361 */
1362 srpt_unmap_sg_to_ib_sge(ioctx->ch, ioctx);
Bart Van Assche49f40162016-02-11 11:07:11 -08001363 transport_generic_free_cmd(&ioctx->cmd, 0);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001364 break;
1365 case SRPT_STATE_MGMT_RSP_SENT:
Bart Van Assche49f40162016-02-11 11:07:11 -08001366 transport_generic_free_cmd(&ioctx->cmd, 0);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001367 break;
1368 default:
Grant Grundler532ec6f2013-03-26 21:48:28 +00001369 WARN(1, "Unexpected command state (%d)", state);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001370 break;
1371 }
1372
Bart Van Asschea42d9852011-10-14 01:30:46 +00001373 return state;
1374}
1375
1376/**
Christoph Hellwige672a472012-07-08 15:58:43 -04001377 * XXX: what is now target_execute_cmd used to be asynchronous, and unmapping
1378 * the data that has been transferred via IB RDMA had to be postponed until the
Masanari Iida142ad5d2012-08-10 00:07:58 +00001379 * check_stop_free() callback. None of this is necessary anymore and needs to
Christoph Hellwige672a472012-07-08 15:58:43 -04001380 * be cleaned up.
Bart Van Asschea42d9852011-10-14 01:30:46 +00001381 */
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001382static void srpt_rdma_read_done(struct ib_cq *cq, struct ib_wc *wc)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001383{
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001384 struct srpt_rdma_ch *ch = cq->cq_context;
1385 struct srpt_send_ioctx *ioctx =
Bart Van Assche19f57292015-12-31 09:56:43 +01001386 container_of(wc->wr_cqe, struct srpt_send_ioctx, rdma_cqe);
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001387
Bart Van Asschea42d9852011-10-14 01:30:46 +00001388 WARN_ON(ioctx->n_rdma <= 0);
1389 atomic_add(ioctx->n_rdma, &ch->sq_wr_avail);
1390
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001391 if (unlikely(wc->status != IB_WC_SUCCESS)) {
1392 pr_info("RDMA_READ for ioctx 0x%p failed with status %d\n",
1393 ioctx, wc->status);
1394 srpt_abort_cmd(ioctx);
1395 return;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001396 }
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001397
1398 if (srpt_test_and_set_cmd_state(ioctx, SRPT_STATE_NEED_DATA,
1399 SRPT_STATE_DATA_IN))
1400 target_execute_cmd(&ioctx->cmd);
1401 else
1402 pr_err("%s[%d]: wrong state = %d\n", __func__,
1403 __LINE__, srpt_get_cmd_state(ioctx));
Bart Van Asschea42d9852011-10-14 01:30:46 +00001404}
1405
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001406static void srpt_rdma_write_done(struct ib_cq *cq, struct ib_wc *wc)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001407{
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001408 struct srpt_send_ioctx *ioctx =
Bart Van Assche19f57292015-12-31 09:56:43 +01001409 container_of(wc->wr_cqe, struct srpt_send_ioctx, rdma_cqe);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001410
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001411 if (unlikely(wc->status != IB_WC_SUCCESS)) {
Bart Van Assche49f40162016-02-11 11:07:11 -08001412 /*
1413 * Note: if an RDMA write error completion is received that
1414 * means that a SEND also has been posted. Defer further
1415 * processing of the associated command until the send error
1416 * completion has been received.
1417 */
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001418 pr_info("RDMA_WRITE for ioctx 0x%p failed with status %d\n",
1419 ioctx, wc->status);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001420 }
1421}
1422
1423/**
1424 * srpt_build_cmd_rsp() - Build an SRP_RSP response.
1425 * @ch: RDMA channel through which the request has been received.
1426 * @ioctx: I/O context associated with the SRP_CMD request. The response will
1427 * be built in the buffer ioctx->buf points at and hence this function will
1428 * overwrite the request data.
1429 * @tag: tag of the request for which this response is being generated.
1430 * @status: value for the STATUS field of the SRP_RSP information unit.
1431 *
1432 * Returns the size in bytes of the SRP_RSP response.
1433 *
1434 * An SRP_RSP response contains a SCSI status or service response. See also
1435 * section 6.9 in the SRP r16a document for the format of an SRP_RSP
1436 * response. See also SPC-2 for more information about sense data.
1437 */
1438static int srpt_build_cmd_rsp(struct srpt_rdma_ch *ch,
1439 struct srpt_send_ioctx *ioctx, u64 tag,
1440 int status)
1441{
1442 struct srp_rsp *srp_rsp;
1443 const u8 *sense_data;
1444 int sense_data_len, max_sense_len;
1445
1446 /*
1447 * The lowest bit of all SAM-3 status codes is zero (see also
1448 * paragraph 5.3 in SAM-3).
1449 */
1450 WARN_ON(status & 1);
1451
1452 srp_rsp = ioctx->ioctx.buf;
1453 BUG_ON(!srp_rsp);
1454
1455 sense_data = ioctx->sense_data;
1456 sense_data_len = ioctx->cmd.scsi_sense_length;
1457 WARN_ON(sense_data_len > sizeof(ioctx->sense_data));
1458
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -08001459 memset(srp_rsp, 0, sizeof(*srp_rsp));
Bart Van Asschea42d9852011-10-14 01:30:46 +00001460 srp_rsp->opcode = SRP_RSP;
1461 srp_rsp->req_lim_delta =
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05301462 cpu_to_be32(1 + atomic_xchg(&ch->req_lim_delta, 0));
Bart Van Asschea42d9852011-10-14 01:30:46 +00001463 srp_rsp->tag = tag;
1464 srp_rsp->status = status;
1465
1466 if (sense_data_len) {
1467 BUILD_BUG_ON(MIN_MAX_RSP_SIZE <= sizeof(*srp_rsp));
1468 max_sense_len = ch->max_ti_iu_len - sizeof(*srp_rsp);
1469 if (sense_data_len > max_sense_len) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04001470 pr_warn("truncated sense data from %d to %d"
1471 " bytes\n", sense_data_len, max_sense_len);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001472 sense_data_len = max_sense_len;
1473 }
1474
1475 srp_rsp->flags |= SRP_RSP_FLAG_SNSVALID;
1476 srp_rsp->sense_data_len = cpu_to_be32(sense_data_len);
1477 memcpy(srp_rsp + 1, sense_data, sense_data_len);
1478 }
1479
1480 return sizeof(*srp_rsp) + sense_data_len;
1481}
1482
1483/**
1484 * srpt_build_tskmgmt_rsp() - Build a task management response.
1485 * @ch: RDMA channel through which the request has been received.
1486 * @ioctx: I/O context in which the SRP_RSP response will be built.
1487 * @rsp_code: RSP_CODE that will be stored in the response.
1488 * @tag: Tag of the request for which this response is being generated.
1489 *
1490 * Returns the size in bytes of the SRP_RSP response.
1491 *
1492 * An SRP_RSP response contains a SCSI status or service response. See also
1493 * section 6.9 in the SRP r16a document for the format of an SRP_RSP
1494 * response.
1495 */
1496static int srpt_build_tskmgmt_rsp(struct srpt_rdma_ch *ch,
1497 struct srpt_send_ioctx *ioctx,
1498 u8 rsp_code, u64 tag)
1499{
1500 struct srp_rsp *srp_rsp;
1501 int resp_data_len;
1502 int resp_len;
1503
Jack Wangc807f642013-09-30 10:09:05 +02001504 resp_data_len = 4;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001505 resp_len = sizeof(*srp_rsp) + resp_data_len;
1506
1507 srp_rsp = ioctx->ioctx.buf;
1508 BUG_ON(!srp_rsp);
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -08001509 memset(srp_rsp, 0, sizeof(*srp_rsp));
Bart Van Asschea42d9852011-10-14 01:30:46 +00001510
1511 srp_rsp->opcode = SRP_RSP;
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05301512 srp_rsp->req_lim_delta =
1513 cpu_to_be32(1 + atomic_xchg(&ch->req_lim_delta, 0));
Bart Van Asschea42d9852011-10-14 01:30:46 +00001514 srp_rsp->tag = tag;
1515
Jack Wangc807f642013-09-30 10:09:05 +02001516 srp_rsp->flags |= SRP_RSP_FLAG_RSPVALID;
1517 srp_rsp->resp_data_len = cpu_to_be32(resp_data_len);
1518 srp_rsp->data[3] = rsp_code;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001519
1520 return resp_len;
1521}
1522
Bart Van Asschea42d9852011-10-14 01:30:46 +00001523static int srpt_check_stop_free(struct se_cmd *cmd)
1524{
Nicholas Bellinger9474b042012-11-27 23:55:57 -08001525 struct srpt_send_ioctx *ioctx = container_of(cmd,
1526 struct srpt_send_ioctx, cmd);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001527
Bart Van Asscheafc16602015-04-27 13:52:36 +02001528 return target_put_sess_cmd(&ioctx->cmd);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001529}
1530
1531/**
1532 * srpt_handle_cmd() - Process SRP_CMD.
1533 */
Bart Van Assche2c7f37f2016-02-11 11:06:55 -08001534static void srpt_handle_cmd(struct srpt_rdma_ch *ch,
1535 struct srpt_recv_ioctx *recv_ioctx,
1536 struct srpt_send_ioctx *send_ioctx)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001537{
1538 struct se_cmd *cmd;
1539 struct srp_cmd *srp_cmd;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001540 u64 data_len;
1541 enum dma_data_direction dir;
Nicholas Bellinger9474b042012-11-27 23:55:57 -08001542 int rc;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001543
1544 BUG_ON(!send_ioctx);
1545
1546 srp_cmd = recv_ioctx->ioctx.buf;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001547 cmd = &send_ioctx->cmd;
Bart Van Assche649ee052015-04-14 13:26:44 +02001548 cmd->tag = srp_cmd->tag;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001549
1550 switch (srp_cmd->task_attr) {
1551 case SRP_CMD_SIMPLE_Q:
Christoph Hellwig68d81f42014-11-24 07:07:25 -08001552 cmd->sam_task_attr = TCM_SIMPLE_TAG;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001553 break;
1554 case SRP_CMD_ORDERED_Q:
1555 default:
Christoph Hellwig68d81f42014-11-24 07:07:25 -08001556 cmd->sam_task_attr = TCM_ORDERED_TAG;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001557 break;
1558 case SRP_CMD_HEAD_OF_Q:
Christoph Hellwig68d81f42014-11-24 07:07:25 -08001559 cmd->sam_task_attr = TCM_HEAD_TAG;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001560 break;
1561 case SRP_CMD_ACA:
Christoph Hellwig68d81f42014-11-24 07:07:25 -08001562 cmd->sam_task_attr = TCM_ACA_TAG;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001563 break;
1564 }
1565
Christoph Hellwigde103c92012-11-06 12:24:09 -08001566 if (srpt_get_desc_tbl(send_ioctx, srp_cmd, &dir, &data_len)) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04001567 pr_err("0x%llx: parsing SRP descriptor table failed.\n",
Bart Van Asschea42d9852011-10-14 01:30:46 +00001568 srp_cmd->tag);
Bart Van Assche2c7f37f2016-02-11 11:06:55 -08001569 goto release_ioctx;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001570 }
1571
Nicholas Bellinger9474b042012-11-27 23:55:57 -08001572 rc = target_submit_cmd(cmd, ch->sess, srp_cmd->cdb,
Bart Van Asschee1dd4132016-02-11 11:05:19 -08001573 &send_ioctx->sense_data[0],
1574 scsilun_to_int(&srp_cmd->lun), data_len,
1575 TCM_SIMPLE_TAG, dir, TARGET_SCF_ACK_KREF);
Nicholas Bellinger9474b042012-11-27 23:55:57 -08001576 if (rc != 0) {
Bart Van Assche2c7f37f2016-02-11 11:06:55 -08001577 pr_debug("target_submit_cmd() returned %d for tag %#llx\n", rc,
1578 srp_cmd->tag);
1579 goto release_ioctx;
Nicholas Bellinger187e70a2012-03-17 20:12:36 -07001580 }
Bart Van Assche2c7f37f2016-02-11 11:06:55 -08001581 return;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001582
Bart Van Assche2c7f37f2016-02-11 11:06:55 -08001583release_ioctx:
1584 send_ioctx->state = SRPT_STATE_DONE;
1585 srpt_release_cmd(cmd);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001586}
1587
Bart Van Asschea42d9852011-10-14 01:30:46 +00001588static int srp_tmr_to_tcm(int fn)
1589{
1590 switch (fn) {
1591 case SRP_TSK_ABORT_TASK:
1592 return TMR_ABORT_TASK;
1593 case SRP_TSK_ABORT_TASK_SET:
1594 return TMR_ABORT_TASK_SET;
1595 case SRP_TSK_CLEAR_TASK_SET:
1596 return TMR_CLEAR_TASK_SET;
1597 case SRP_TSK_LUN_RESET:
1598 return TMR_LUN_RESET;
1599 case SRP_TSK_CLEAR_ACA:
1600 return TMR_CLEAR_ACA;
1601 default:
1602 return -1;
1603 }
1604}
1605
1606/**
1607 * srpt_handle_tsk_mgmt() - Process an SRP_TSK_MGMT information unit.
1608 *
1609 * Returns 0 if and only if the request will be processed by the target core.
1610 *
1611 * For more information about SRP_TSK_MGMT information units, see also section
1612 * 6.7 in the SRP r16a document.
1613 */
1614static void srpt_handle_tsk_mgmt(struct srpt_rdma_ch *ch,
1615 struct srpt_recv_ioctx *recv_ioctx,
1616 struct srpt_send_ioctx *send_ioctx)
1617{
1618 struct srp_tsk_mgmt *srp_tsk;
1619 struct se_cmd *cmd;
Nicholas Bellinger3e4f5742012-11-28 01:38:04 -08001620 struct se_session *sess = ch->sess;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001621 int tcm_tmr;
Nicholas Bellinger3e4f5742012-11-28 01:38:04 -08001622 int rc;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001623
1624 BUG_ON(!send_ioctx);
1625
1626 srp_tsk = recv_ioctx->ioctx.buf;
1627 cmd = &send_ioctx->cmd;
1628
1629 pr_debug("recv tsk_mgmt fn %d for task_tag %lld and cmd tag %lld"
1630 " cm_id %p sess %p\n", srp_tsk->tsk_mgmt_func,
1631 srp_tsk->task_tag, srp_tsk->tag, ch->cm_id, ch->sess);
1632
1633 srpt_set_cmd_state(send_ioctx, SRPT_STATE_MGMT);
Bart Van Assche649ee052015-04-14 13:26:44 +02001634 send_ioctx->cmd.tag = srp_tsk->tag;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001635 tcm_tmr = srp_tmr_to_tcm(srp_tsk->tsk_mgmt_func);
Bart Van Asschee1dd4132016-02-11 11:05:19 -08001636 rc = target_submit_tmr(&send_ioctx->cmd, sess, NULL,
1637 scsilun_to_int(&srp_tsk->lun), srp_tsk, tcm_tmr,
1638 GFP_KERNEL, srp_tsk->task_tag,
1639 TARGET_SCF_ACK_KREF);
Nicholas Bellinger3e4f5742012-11-28 01:38:04 -08001640 if (rc != 0) {
Bart Van Asschea42d9852011-10-14 01:30:46 +00001641 send_ioctx->cmd.se_tmr_req->response = TMR_FUNCTION_REJECTED;
Christoph Hellwigde103c92012-11-06 12:24:09 -08001642 goto fail;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001643 }
Christoph Hellwigde103c92012-11-06 12:24:09 -08001644 return;
1645fail:
Christoph Hellwigde103c92012-11-06 12:24:09 -08001646 transport_send_check_condition_and_sense(cmd, 0, 0); // XXX:
Bart Van Asschea42d9852011-10-14 01:30:46 +00001647}
1648
1649/**
1650 * srpt_handle_new_iu() - Process a newly received information unit.
1651 * @ch: RDMA channel through which the information unit has been received.
1652 * @ioctx: SRPT I/O context associated with the information unit.
1653 */
1654static void srpt_handle_new_iu(struct srpt_rdma_ch *ch,
1655 struct srpt_recv_ioctx *recv_ioctx,
1656 struct srpt_send_ioctx *send_ioctx)
1657{
1658 struct srp_cmd *srp_cmd;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001659
1660 BUG_ON(!ch);
1661 BUG_ON(!recv_ioctx);
1662
1663 ib_dma_sync_single_for_cpu(ch->sport->sdev->device,
1664 recv_ioctx->ioctx.dma, srp_max_req_size,
1665 DMA_FROM_DEVICE);
1666
Bart Van Assche33912d72016-02-11 11:04:43 -08001667 if (unlikely(ch->state == CH_CONNECTING)) {
Bart Van Asschea42d9852011-10-14 01:30:46 +00001668 list_add_tail(&recv_ioctx->wait_list, &ch->cmd_wait_list);
1669 goto out;
1670 }
1671
Bart Van Assche33912d72016-02-11 11:04:43 -08001672 if (unlikely(ch->state != CH_LIVE))
Bart Van Asschea42d9852011-10-14 01:30:46 +00001673 goto out;
1674
1675 srp_cmd = recv_ioctx->ioctx.buf;
1676 if (srp_cmd->opcode == SRP_CMD || srp_cmd->opcode == SRP_TSK_MGMT) {
1677 if (!send_ioctx)
1678 send_ioctx = srpt_get_send_ioctx(ch);
1679 if (unlikely(!send_ioctx)) {
1680 list_add_tail(&recv_ioctx->wait_list,
1681 &ch->cmd_wait_list);
1682 goto out;
1683 }
1684 }
1685
Bart Van Asschea42d9852011-10-14 01:30:46 +00001686 switch (srp_cmd->opcode) {
1687 case SRP_CMD:
1688 srpt_handle_cmd(ch, recv_ioctx, send_ioctx);
1689 break;
1690 case SRP_TSK_MGMT:
1691 srpt_handle_tsk_mgmt(ch, recv_ioctx, send_ioctx);
1692 break;
1693 case SRP_I_LOGOUT:
Doug Ledford9f5d32a2014-10-20 18:25:15 -04001694 pr_err("Not yet implemented: SRP_I_LOGOUT\n");
Bart Van Asschea42d9852011-10-14 01:30:46 +00001695 break;
1696 case SRP_CRED_RSP:
1697 pr_debug("received SRP_CRED_RSP\n");
1698 break;
1699 case SRP_AER_RSP:
1700 pr_debug("received SRP_AER_RSP\n");
1701 break;
1702 case SRP_RSP:
Doug Ledford9f5d32a2014-10-20 18:25:15 -04001703 pr_err("Received SRP_RSP\n");
Bart Van Asschea42d9852011-10-14 01:30:46 +00001704 break;
1705 default:
Doug Ledford9f5d32a2014-10-20 18:25:15 -04001706 pr_err("received IU with unknown opcode 0x%x\n",
Bart Van Asschea42d9852011-10-14 01:30:46 +00001707 srp_cmd->opcode);
1708 break;
1709 }
1710
1711 srpt_post_recv(ch->sport->sdev, recv_ioctx);
1712out:
1713 return;
1714}
1715
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001716static void srpt_recv_done(struct ib_cq *cq, struct ib_wc *wc)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001717{
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001718 struct srpt_rdma_ch *ch = cq->cq_context;
1719 struct srpt_recv_ioctx *ioctx =
1720 container_of(wc->wr_cqe, struct srpt_recv_ioctx, ioctx.cqe);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001721
Bart Van Asschea42d9852011-10-14 01:30:46 +00001722 if (wc->status == IB_WC_SUCCESS) {
1723 int req_lim;
1724
1725 req_lim = atomic_dec_return(&ch->req_lim);
1726 if (unlikely(req_lim < 0))
Doug Ledford9f5d32a2014-10-20 18:25:15 -04001727 pr_err("req_lim = %d < 0\n", req_lim);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001728 srpt_handle_new_iu(ch, ioctx, NULL);
1729 } else {
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001730 pr_info("receiving failed for ioctx %p with status %d\n",
1731 ioctx, wc->status);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001732 }
1733}
1734
Bart Van Assche539b3242016-02-11 11:09:50 -08001735/*
1736 * This function must be called from the context in which RDMA completions are
1737 * processed because it accesses the wait list without protection against
1738 * access from other threads.
1739 */
1740static void srpt_process_wait_list(struct srpt_rdma_ch *ch)
1741{
1742 struct srpt_send_ioctx *ioctx;
1743
1744 while (!list_empty(&ch->cmd_wait_list) &&
1745 ch->state >= CH_LIVE &&
1746 (ioctx = srpt_get_send_ioctx(ch)) != NULL) {
1747 struct srpt_recv_ioctx *recv_ioctx;
1748
1749 recv_ioctx = list_first_entry(&ch->cmd_wait_list,
1750 struct srpt_recv_ioctx,
1751 wait_list);
1752 list_del(&recv_ioctx->wait_list);
1753 srpt_handle_new_iu(ch, recv_ioctx, ioctx);
1754 }
1755}
1756
Bart Van Asschea42d9852011-10-14 01:30:46 +00001757/**
Bart Van Asschea42d9852011-10-14 01:30:46 +00001758 * Note: Although this has not yet been observed during tests, at least in
1759 * theory it is possible that the srpt_get_send_ioctx() call invoked by
1760 * srpt_handle_new_iu() fails. This is possible because the req_lim_delta
1761 * value in each response is set to one, and it is possible that this response
1762 * makes the initiator send a new request before the send completion for that
1763 * response has been processed. This could e.g. happen if the call to
1764 * srpt_put_send_iotcx() is delayed because of a higher priority interrupt or
1765 * if IB retransmission causes generation of the send completion to be
1766 * delayed. Incoming information units for which srpt_get_send_ioctx() fails
1767 * are queued on cmd_wait_list. The code below processes these delayed
1768 * requests one at a time.
1769 */
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001770static void srpt_send_done(struct ib_cq *cq, struct ib_wc *wc)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001771{
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001772 struct srpt_rdma_ch *ch = cq->cq_context;
1773 struct srpt_send_ioctx *ioctx =
1774 container_of(wc->wr_cqe, struct srpt_send_ioctx, ioctx.cqe);
1775 enum srpt_command_state state;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001776
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001777 state = srpt_set_cmd_state(ioctx, SRPT_STATE_DONE);
1778
1779 WARN_ON(state != SRPT_STATE_CMD_RSP_SENT &&
1780 state != SRPT_STATE_MGMT_RSP_SENT);
1781
1782 atomic_inc(&ch->sq_wr_avail);
1783
Bart Van Assche49f40162016-02-11 11:07:11 -08001784 if (wc->status != IB_WC_SUCCESS)
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001785 pr_info("sending response for ioctx 0x%p failed"
1786 " with status %d\n", ioctx, wc->status);
1787
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001788 if (state != SRPT_STATE_DONE) {
1789 srpt_unmap_sg_to_ib_sge(ch, ioctx);
1790 transport_generic_free_cmd(&ioctx->cmd, 0);
1791 } else {
1792 pr_err("IB completion has been received too late for"
1793 " wr_id = %u.\n", ioctx->ioctx.index);
1794 }
1795
Bart Van Assche539b3242016-02-11 11:09:50 -08001796 srpt_process_wait_list(ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001797}
1798
Bart Van Asschea42d9852011-10-14 01:30:46 +00001799/**
1800 * srpt_create_ch_ib() - Create receive and send completion queues.
1801 */
1802static int srpt_create_ch_ib(struct srpt_rdma_ch *ch)
1803{
1804 struct ib_qp_init_attr *qp_init;
1805 struct srpt_port *sport = ch->sport;
1806 struct srpt_device *sdev = sport->sdev;
1807 u32 srp_sq_size = sport->port_attrib.srp_sq_size;
1808 int ret;
1809
1810 WARN_ON(ch->rq_size < 1);
1811
1812 ret = -ENOMEM;
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -08001813 qp_init = kzalloc(sizeof(*qp_init), GFP_KERNEL);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001814 if (!qp_init)
1815 goto out;
1816
Bart Van Asscheab477c12014-10-19 18:05:33 +03001817retry:
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001818 ch->cq = ib_alloc_cq(sdev->device, ch, ch->rq_size + srp_sq_size,
1819 0 /* XXX: spread CQs */, IB_POLL_WORKQUEUE);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001820 if (IS_ERR(ch->cq)) {
1821 ret = PTR_ERR(ch->cq);
Doug Ledford9f5d32a2014-10-20 18:25:15 -04001822 pr_err("failed to create CQ cqe= %d ret= %d\n",
Bart Van Asschea42d9852011-10-14 01:30:46 +00001823 ch->rq_size + srp_sq_size, ret);
1824 goto out;
1825 }
1826
1827 qp_init->qp_context = (void *)ch;
1828 qp_init->event_handler
1829 = (void(*)(struct ib_event *, void*))srpt_qp_event;
1830 qp_init->send_cq = ch->cq;
1831 qp_init->recv_cq = ch->cq;
1832 qp_init->srq = sdev->srq;
1833 qp_init->sq_sig_type = IB_SIGNAL_REQ_WR;
1834 qp_init->qp_type = IB_QPT_RC;
1835 qp_init->cap.max_send_wr = srp_sq_size;
1836 qp_init->cap.max_send_sge = SRPT_DEF_SG_PER_WQE;
1837
1838 ch->qp = ib_create_qp(sdev->pd, qp_init);
1839 if (IS_ERR(ch->qp)) {
1840 ret = PTR_ERR(ch->qp);
Bart Van Asscheab477c12014-10-19 18:05:33 +03001841 if (ret == -ENOMEM) {
1842 srp_sq_size /= 2;
1843 if (srp_sq_size >= MIN_SRPT_SQ_SIZE) {
1844 ib_destroy_cq(ch->cq);
1845 goto retry;
1846 }
1847 }
Doug Ledford9f5d32a2014-10-20 18:25:15 -04001848 pr_err("failed to create_qp ret= %d\n", ret);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001849 goto err_destroy_cq;
1850 }
1851
1852 atomic_set(&ch->sq_wr_avail, qp_init->cap.max_send_wr);
1853
1854 pr_debug("%s: max_cqe= %d max_sge= %d sq_size = %d cm_id= %p\n",
1855 __func__, ch->cq->cqe, qp_init->cap.max_send_sge,
1856 qp_init->cap.max_send_wr, ch->cm_id);
1857
1858 ret = srpt_init_ch_qp(ch, ch->qp);
1859 if (ret)
1860 goto err_destroy_qp;
1861
Bart Van Asschea42d9852011-10-14 01:30:46 +00001862out:
1863 kfree(qp_init);
1864 return ret;
1865
1866err_destroy_qp:
1867 ib_destroy_qp(ch->qp);
1868err_destroy_cq:
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001869 ib_free_cq(ch->cq);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001870 goto out;
1871}
1872
1873static void srpt_destroy_ch_ib(struct srpt_rdma_ch *ch)
1874{
Bart Van Asschea42d9852011-10-14 01:30:46 +00001875 ib_destroy_qp(ch->qp);
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02001876 ib_free_cq(ch->cq);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001877}
1878
1879/**
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001880 * srpt_close_ch() - Close an RDMA channel.
Bart Van Asschea42d9852011-10-14 01:30:46 +00001881 *
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001882 * Make sure all resources associated with the channel will be deallocated at
1883 * an appropriate time.
Bart Van Asschea42d9852011-10-14 01:30:46 +00001884 *
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001885 * Returns true if and only if the channel state has been modified into
1886 * CH_DRAINING.
Bart Van Asschea42d9852011-10-14 01:30:46 +00001887 */
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001888static bool srpt_close_ch(struct srpt_rdma_ch *ch)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001889{
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001890 int ret;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001891
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001892 if (!srpt_set_ch_state(ch, CH_DRAINING)) {
1893 pr_debug("%s-%d: already closed\n", ch->sess_name,
1894 ch->qp->qp_num);
1895 return false;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001896 }
Bart Van Asschea42d9852011-10-14 01:30:46 +00001897
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001898 kref_get(&ch->kref);
1899
1900 ret = srpt_ch_qp_err(ch);
1901 if (ret < 0)
1902 pr_err("%s-%d: changing queue pair into error state failed: %d\n",
1903 ch->sess_name, ch->qp->qp_num, ret);
1904
1905 pr_debug("%s-%d: queued zerolength write\n", ch->sess_name,
1906 ch->qp->qp_num);
1907 ret = srpt_zerolength_write(ch);
1908 if (ret < 0) {
1909 pr_err("%s-%d: queuing zero-length write failed: %d\n",
1910 ch->sess_name, ch->qp->qp_num, ret);
1911 if (srpt_set_ch_state(ch, CH_DISCONNECTED))
1912 schedule_work(&ch->release_work);
1913 else
1914 WARN_ON_ONCE(true);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001915 }
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001916
1917 kref_put(&ch->kref, srpt_free_ch);
1918
1919 return true;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001920}
1921
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001922/*
1923 * Change the channel state into CH_DISCONNECTING. If a channel has not yet
1924 * reached the connected state, close it. If a channel is in the connected
1925 * state, send a DREQ. If a DREQ has been received, send a DREP. Note: it is
1926 * the responsibility of the caller to ensure that this function is not
1927 * invoked concurrently with the code that accepts a connection. This means
1928 * that this function must either be invoked from inside a CM callback
1929 * function or that it must be invoked with the srpt_port.mutex held.
Bart Van Asschea42d9852011-10-14 01:30:46 +00001930 */
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001931static int srpt_disconnect_ch(struct srpt_rdma_ch *ch)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001932{
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001933 int ret;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001934
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001935 if (!srpt_set_ch_state(ch, CH_DISCONNECTING))
1936 return -ENOTCONN;
1937
1938 ret = ib_send_cm_dreq(ch->cm_id, NULL, 0);
1939 if (ret < 0)
1940 ret = ib_send_cm_drep(ch->cm_id, NULL, 0);
1941
1942 if (ret < 0 && srpt_close_ch(ch))
1943 ret = 0;
1944
1945 return ret;
1946}
1947
1948static void __srpt_close_all_ch(struct srpt_device *sdev)
1949{
1950 struct srpt_rdma_ch *ch;
1951
1952 lockdep_assert_held(&sdev->mutex);
1953
1954 list_for_each_entry(ch, &sdev->rch_list, list) {
1955 if (srpt_disconnect_ch(ch) >= 0)
1956 pr_info("Closing channel %s-%d because target %s has been disabled\n",
1957 ch->sess_name, ch->qp->qp_num,
1958 sdev->device->name);
1959 srpt_close_ch(ch);
1960 }
Bart Van Asschea42d9852011-10-14 01:30:46 +00001961}
1962
1963/**
Nicholas Bellinger1d19f782013-05-15 01:30:01 -07001964 * srpt_shutdown_session() - Whether or not a session may be shut down.
1965 */
1966static int srpt_shutdown_session(struct se_session *se_sess)
1967{
Bart Van Assche88936252016-02-11 11:05:58 -08001968 return 1;
Nicholas Bellinger1d19f782013-05-15 01:30:01 -07001969}
1970
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001971static void srpt_free_ch(struct kref *kref)
Bart Van Asschea42d9852011-10-14 01:30:46 +00001972{
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001973 struct srpt_rdma_ch *ch = container_of(kref, struct srpt_rdma_ch, kref);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001974
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08001975 kfree(ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001976}
1977
1978static void srpt_release_channel_work(struct work_struct *w)
1979{
1980 struct srpt_rdma_ch *ch;
1981 struct srpt_device *sdev;
Nicholas Bellinger9474b042012-11-27 23:55:57 -08001982 struct se_session *se_sess;
Bart Van Asschea42d9852011-10-14 01:30:46 +00001983
1984 ch = container_of(w, struct srpt_rdma_ch, release_work);
Bart Van Asschef108f0f2016-02-11 11:06:14 -08001985 pr_debug("%s: %s-%d; release_done = %p\n", __func__, ch->sess_name,
1986 ch->qp->qp_num, ch->release_done);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001987
1988 sdev = ch->sport->sdev;
1989 BUG_ON(!sdev);
1990
Nicholas Bellinger9474b042012-11-27 23:55:57 -08001991 se_sess = ch->sess;
1992 BUG_ON(!se_sess);
1993
Bart Van Assche88936252016-02-11 11:05:58 -08001994 target_sess_cmd_list_set_waiting(se_sess);
Joern Engelbe646c2d2013-05-15 00:44:07 -07001995 target_wait_for_sess_cmds(se_sess);
Nicholas Bellinger9474b042012-11-27 23:55:57 -08001996
1997 transport_deregister_session_configfs(se_sess);
1998 transport_deregister_session(se_sess);
Bart Van Asschea42d9852011-10-14 01:30:46 +00001999 ch->sess = NULL;
2000
Nicholas Bellinger0b41d6c2013-09-18 12:48:27 -07002001 ib_destroy_cm_id(ch->cm_id);
2002
Bart Van Asschea42d9852011-10-14 01:30:46 +00002003 srpt_destroy_ch_ib(ch);
2004
2005 srpt_free_ioctx_ring((struct srpt_ioctx **)ch->ioctx_ring,
2006 ch->sport->sdev, ch->rq_size,
2007 ch->rsp_size, DMA_TO_DEVICE);
2008
Bart Van Assche86289912016-02-11 11:08:34 -08002009 mutex_lock(&sdev->mutex);
Bart Van Asschef108f0f2016-02-11 11:06:14 -08002010 list_del_init(&ch->list);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002011 if (ch->release_done)
2012 complete(ch->release_done);
Bart Van Assche86289912016-02-11 11:08:34 -08002013 mutex_unlock(&sdev->mutex);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002014
2015 wake_up(&sdev->ch_releaseQ);
2016
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002017 kref_put(&ch->kref, srpt_free_ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002018}
2019
Bart Van Asschea42d9852011-10-14 01:30:46 +00002020/**
2021 * srpt_cm_req_recv() - Process the event IB_CM_REQ_RECEIVED.
2022 *
2023 * Ownership of the cm_id is transferred to the target session if this
2024 * functions returns zero. Otherwise the caller remains the owner of cm_id.
2025 */
2026static int srpt_cm_req_recv(struct ib_cm_id *cm_id,
2027 struct ib_cm_req_event_param *param,
2028 void *private_data)
2029{
2030 struct srpt_device *sdev = cm_id->context;
2031 struct srpt_port *sport = &sdev->port[param->port - 1];
2032 struct srp_login_req *req;
2033 struct srp_login_rsp *rsp;
2034 struct srp_login_rej *rej;
2035 struct ib_cm_rep_param *rep_param;
2036 struct srpt_rdma_ch *ch, *tmp_ch;
Nicholas Bellingerf246c942016-01-07 22:19:21 -08002037 struct se_node_acl *se_acl;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002038 u32 it_iu_len;
Nicholas Bellingerf246c942016-01-07 22:19:21 -08002039 int i, ret = 0;
2040 unsigned char *p;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002041
2042 WARN_ON_ONCE(irqs_disabled());
2043
2044 if (WARN_ON(!sdev || !private_data))
2045 return -EINVAL;
2046
2047 req = (struct srp_login_req *)private_data;
2048
2049 it_iu_len = be32_to_cpu(req->req_it_iu_len);
2050
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002051 pr_info("Received SRP_LOGIN_REQ with i_port_id 0x%llx:0x%llx,"
2052 " t_port_id 0x%llx:0x%llx and it_iu_len %d on port %d"
2053 " (guid=0x%llx:0x%llx)\n",
2054 be64_to_cpu(*(__be64 *)&req->initiator_port_id[0]),
2055 be64_to_cpu(*(__be64 *)&req->initiator_port_id[8]),
2056 be64_to_cpu(*(__be64 *)&req->target_port_id[0]),
2057 be64_to_cpu(*(__be64 *)&req->target_port_id[8]),
2058 it_iu_len,
2059 param->port,
2060 be64_to_cpu(*(__be64 *)&sdev->port[param->port - 1].gid.raw[0]),
2061 be64_to_cpu(*(__be64 *)&sdev->port[param->port - 1].gid.raw[8]));
Bart Van Asschea42d9852011-10-14 01:30:46 +00002062
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -08002063 rsp = kzalloc(sizeof(*rsp), GFP_KERNEL);
2064 rej = kzalloc(sizeof(*rej), GFP_KERNEL);
2065 rep_param = kzalloc(sizeof(*rep_param), GFP_KERNEL);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002066
2067 if (!rsp || !rej || !rep_param) {
2068 ret = -ENOMEM;
2069 goto out;
2070 }
2071
2072 if (it_iu_len > srp_max_req_size || it_iu_len < 64) {
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05302073 rej->reason = cpu_to_be32(
2074 SRP_LOGIN_REJ_REQ_IT_IU_LENGTH_TOO_LARGE);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002075 ret = -EINVAL;
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002076 pr_err("rejected SRP_LOGIN_REQ because its"
Bart Van Asschea42d9852011-10-14 01:30:46 +00002077 " length (%d bytes) is out of range (%d .. %d)\n",
2078 it_iu_len, 64, srp_max_req_size);
2079 goto reject;
2080 }
2081
2082 if (!sport->enabled) {
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05302083 rej->reason = cpu_to_be32(
2084 SRP_LOGIN_REJ_INSUFFICIENT_RESOURCES);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002085 ret = -EINVAL;
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002086 pr_err("rejected SRP_LOGIN_REQ because the target port"
Bart Van Asschea42d9852011-10-14 01:30:46 +00002087 " has not yet been enabled\n");
2088 goto reject;
2089 }
2090
2091 if ((req->req_flags & SRP_MTCH_ACTION) == SRP_MULTICHAN_SINGLE) {
2092 rsp->rsp_flags = SRP_LOGIN_RSP_MULTICHAN_NO_CHAN;
2093
Bart Van Assche86289912016-02-11 11:08:34 -08002094 mutex_lock(&sdev->mutex);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002095
2096 list_for_each_entry_safe(ch, tmp_ch, &sdev->rch_list, list) {
2097 if (!memcmp(ch->i_port_id, req->initiator_port_id, 16)
2098 && !memcmp(ch->t_port_id, req->target_port_id, 16)
2099 && param->port == ch->sport->port
2100 && param->listen_id == ch->sport->sdev->cm_id
2101 && ch->cm_id) {
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002102 if (srpt_disconnect_ch(ch) < 0)
Bart Van Asschea42d9852011-10-14 01:30:46 +00002103 continue;
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002104 pr_info("Relogin - closed existing channel %s\n",
2105 ch->sess_name);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002106 rsp->rsp_flags =
2107 SRP_LOGIN_RSP_MULTICHAN_TERMINATED;
2108 }
2109 }
2110
Bart Van Assche86289912016-02-11 11:08:34 -08002111 mutex_unlock(&sdev->mutex);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002112
2113 } else
2114 rsp->rsp_flags = SRP_LOGIN_RSP_MULTICHAN_MAINTAINED;
2115
2116 if (*(__be64 *)req->target_port_id != cpu_to_be64(srpt_service_guid)
2117 || *(__be64 *)(req->target_port_id + 8) !=
2118 cpu_to_be64(srpt_service_guid)) {
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05302119 rej->reason = cpu_to_be32(
2120 SRP_LOGIN_REJ_UNABLE_ASSOCIATE_CHANNEL);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002121 ret = -ENOMEM;
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002122 pr_err("rejected SRP_LOGIN_REQ because it"
Bart Van Asschea42d9852011-10-14 01:30:46 +00002123 " has an invalid target port identifier.\n");
2124 goto reject;
2125 }
2126
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -08002127 ch = kzalloc(sizeof(*ch), GFP_KERNEL);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002128 if (!ch) {
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05302129 rej->reason = cpu_to_be32(
2130 SRP_LOGIN_REJ_INSUFFICIENT_RESOURCES);
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002131 pr_err("rejected SRP_LOGIN_REQ because no memory.\n");
Bart Van Asschea42d9852011-10-14 01:30:46 +00002132 ret = -ENOMEM;
2133 goto reject;
2134 }
2135
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002136 kref_init(&ch->kref);
2137 ch->zw_cqe.done = srpt_zerolength_write_done;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002138 INIT_WORK(&ch->release_work, srpt_release_channel_work);
2139 memcpy(ch->i_port_id, req->initiator_port_id, 16);
2140 memcpy(ch->t_port_id, req->target_port_id, 16);
2141 ch->sport = &sdev->port[param->port - 1];
2142 ch->cm_id = cm_id;
Bart Van Assche2739b592016-02-11 11:07:49 -08002143 cm_id->context = ch;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002144 /*
2145 * Avoid QUEUE_FULL conditions by limiting the number of buffers used
2146 * for the SRP protocol to the command queue size.
2147 */
2148 ch->rq_size = SRPT_RQ_SIZE;
2149 spin_lock_init(&ch->spinlock);
2150 ch->state = CH_CONNECTING;
2151 INIT_LIST_HEAD(&ch->cmd_wait_list);
2152 ch->rsp_size = ch->sport->port_attrib.srp_max_rsp_size;
2153
2154 ch->ioctx_ring = (struct srpt_send_ioctx **)
2155 srpt_alloc_ioctx_ring(ch->sport->sdev, ch->rq_size,
2156 sizeof(*ch->ioctx_ring[0]),
2157 ch->rsp_size, DMA_TO_DEVICE);
2158 if (!ch->ioctx_ring)
2159 goto free_ch;
2160
2161 INIT_LIST_HEAD(&ch->free_list);
2162 for (i = 0; i < ch->rq_size; i++) {
2163 ch->ioctx_ring[i]->ch = ch;
2164 list_add_tail(&ch->ioctx_ring[i]->free_list, &ch->free_list);
2165 }
2166
2167 ret = srpt_create_ch_ib(ch);
2168 if (ret) {
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05302169 rej->reason = cpu_to_be32(
2170 SRP_LOGIN_REJ_INSUFFICIENT_RESOURCES);
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002171 pr_err("rejected SRP_LOGIN_REQ because creating"
Bart Van Asschea42d9852011-10-14 01:30:46 +00002172 " a new RDMA channel failed.\n");
2173 goto free_ring;
2174 }
2175
2176 ret = srpt_ch_qp_rtr(ch, ch->qp);
2177 if (ret) {
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05302178 rej->reason = cpu_to_be32(SRP_LOGIN_REJ_INSUFFICIENT_RESOURCES);
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002179 pr_err("rejected SRP_LOGIN_REQ because enabling"
Bart Van Asschea42d9852011-10-14 01:30:46 +00002180 " RTR failed (error code = %d)\n", ret);
2181 goto destroy_ib;
2182 }
Nicholas Bellingerf246c942016-01-07 22:19:21 -08002183
Bart Van Asschea42d9852011-10-14 01:30:46 +00002184 /*
Nicholas Bellingerf246c942016-01-07 22:19:21 -08002185 * Use the initator port identifier as the session name, when
2186 * checking against se_node_acl->initiatorname[] this can be
2187 * with or without preceeding '0x'.
Bart Van Asschea42d9852011-10-14 01:30:46 +00002188 */
2189 snprintf(ch->sess_name, sizeof(ch->sess_name), "0x%016llx%016llx",
2190 be64_to_cpu(*(__be64 *)ch->i_port_id),
2191 be64_to_cpu(*(__be64 *)(ch->i_port_id + 8)));
2192
2193 pr_debug("registering session %s\n", ch->sess_name);
Nicholas Bellingerf246c942016-01-07 22:19:21 -08002194 p = &ch->sess_name[0];
Bart Van Asschea42d9852011-10-14 01:30:46 +00002195
Nicholas Bellingere70beee2014-04-02 12:52:38 -07002196 ch->sess = transport_init_session(TARGET_PROT_NORMAL);
Dan Carpenter3af33632011-11-04 21:27:32 +03002197 if (IS_ERR(ch->sess)) {
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05302198 rej->reason = cpu_to_be32(
Nicholas Bellingerf246c942016-01-07 22:19:21 -08002199 SRP_LOGIN_REJ_INSUFFICIENT_RESOURCES);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002200 pr_debug("Failed to create session\n");
Nicholas Bellingerf246c942016-01-07 22:19:21 -08002201 goto destroy_ib;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002202 }
Nicholas Bellingerf246c942016-01-07 22:19:21 -08002203
2204try_again:
2205 se_acl = core_tpg_get_initiator_node_acl(&sport->port_tpg_1, p);
2206 if (!se_acl) {
2207 pr_info("Rejected login because no ACL has been"
2208 " configured yet for initiator %s.\n", ch->sess_name);
2209 /*
2210 * XXX: Hack to retry of ch->i_port_id without leading '0x'
2211 */
2212 if (p == &ch->sess_name[0]) {
2213 p += 2;
2214 goto try_again;
2215 }
2216 rej->reason = cpu_to_be32(
2217 SRP_LOGIN_REJ_CHANNEL_LIMIT_REACHED);
2218 transport_free_session(ch->sess);
2219 goto destroy_ib;
2220 }
2221 ch->sess->se_node_acl = se_acl;
2222
2223 transport_register_session(&sport->port_tpg_1, se_acl, ch->sess, ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002224
2225 pr_debug("Establish connection sess=%p name=%s cm_id=%p\n", ch->sess,
2226 ch->sess_name, ch->cm_id);
2227
2228 /* create srp_login_response */
2229 rsp->opcode = SRP_LOGIN_RSP;
2230 rsp->tag = req->tag;
2231 rsp->max_it_iu_len = req->req_it_iu_len;
2232 rsp->max_ti_iu_len = req->req_it_iu_len;
2233 ch->max_ti_iu_len = it_iu_len;
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05302234 rsp->buf_fmt = cpu_to_be16(SRP_BUF_FORMAT_DIRECT
2235 | SRP_BUF_FORMAT_INDIRECT);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002236 rsp->req_lim_delta = cpu_to_be32(ch->rq_size);
2237 atomic_set(&ch->req_lim, ch->rq_size);
2238 atomic_set(&ch->req_lim_delta, 0);
2239
2240 /* create cm reply */
2241 rep_param->qp_num = ch->qp->qp_num;
2242 rep_param->private_data = (void *)rsp;
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -08002243 rep_param->private_data_len = sizeof(*rsp);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002244 rep_param->rnr_retry_count = 7;
2245 rep_param->flow_control = 1;
2246 rep_param->failover_accepted = 0;
2247 rep_param->srq = 1;
2248 rep_param->responder_resources = 4;
2249 rep_param->initiator_depth = 4;
2250
2251 ret = ib_send_cm_rep(cm_id, rep_param);
2252 if (ret) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002253 pr_err("sending SRP_LOGIN_REQ response failed"
Bart Van Asschea42d9852011-10-14 01:30:46 +00002254 " (error code = %d)\n", ret);
2255 goto release_channel;
2256 }
2257
Bart Van Assche86289912016-02-11 11:08:34 -08002258 mutex_lock(&sdev->mutex);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002259 list_add_tail(&ch->list, &sdev->rch_list);
Bart Van Assche86289912016-02-11 11:08:34 -08002260 mutex_unlock(&sdev->mutex);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002261
2262 goto out;
2263
2264release_channel:
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002265 srpt_disconnect_ch(ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002266 transport_deregister_session_configfs(ch->sess);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002267 transport_deregister_session(ch->sess);
2268 ch->sess = NULL;
2269
2270destroy_ib:
2271 srpt_destroy_ch_ib(ch);
2272
2273free_ring:
2274 srpt_free_ioctx_ring((struct srpt_ioctx **)ch->ioctx_ring,
2275 ch->sport->sdev, ch->rq_size,
2276 ch->rsp_size, DMA_TO_DEVICE);
2277free_ch:
2278 kfree(ch);
2279
2280reject:
2281 rej->opcode = SRP_LOGIN_REJ;
2282 rej->tag = req->tag;
Vaishali Thakkarb356c1c2015-06-24 10:12:13 +05302283 rej->buf_fmt = cpu_to_be16(SRP_BUF_FORMAT_DIRECT
2284 | SRP_BUF_FORMAT_INDIRECT);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002285
2286 ib_send_cm_rej(cm_id, IB_CM_REJ_CONSUMER_DEFINED, NULL, 0,
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -08002287 (void *)rej, sizeof(*rej));
Bart Van Asschea42d9852011-10-14 01:30:46 +00002288
2289out:
2290 kfree(rep_param);
2291 kfree(rsp);
2292 kfree(rej);
2293
2294 return ret;
2295}
2296
Bart Van Assche2739b592016-02-11 11:07:49 -08002297static void srpt_cm_rej_recv(struct srpt_rdma_ch *ch,
2298 enum ib_cm_rej_reason reason,
2299 const u8 *private_data,
2300 u8 private_data_len)
Bart Van Asschea42d9852011-10-14 01:30:46 +00002301{
Bart Van Asschec13c90e2016-02-11 11:08:12 -08002302 char *priv = NULL;
2303 int i;
2304
2305 if (private_data_len && (priv = kmalloc(private_data_len * 3 + 1,
2306 GFP_KERNEL))) {
2307 for (i = 0; i < private_data_len; i++)
2308 sprintf(priv + 3 * i, " %02x", private_data[i]);
2309 }
2310 pr_info("Received CM REJ for ch %s-%d; reason %d%s%s.\n",
2311 ch->sess_name, ch->qp->qp_num, reason, private_data_len ?
2312 "; private data" : "", priv ? priv : " (?)");
2313 kfree(priv);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002314}
2315
2316/**
2317 * srpt_cm_rtu_recv() - Process an IB_CM_RTU_RECEIVED or USER_ESTABLISHED event.
2318 *
2319 * An IB_CM_RTU_RECEIVED message indicates that the connection is established
2320 * and that the recipient may begin transmitting (RTU = ready to use).
2321 */
Bart Van Assche2739b592016-02-11 11:07:49 -08002322static void srpt_cm_rtu_recv(struct srpt_rdma_ch *ch)
Bart Van Asschea42d9852011-10-14 01:30:46 +00002323{
Bart Van Asschea42d9852011-10-14 01:30:46 +00002324 int ret;
2325
Bart Van Asschef130c222016-02-11 11:05:38 -08002326 if (srpt_set_ch_state(ch, CH_LIVE)) {
Bart Van Asschea42d9852011-10-14 01:30:46 +00002327 ret = srpt_ch_qp_rts(ch, ch->qp);
2328
Bart Van Assche387add42016-02-11 11:10:09 -08002329 if (ret == 0) {
2330 /* Trigger wait list processing. */
2331 ret = srpt_zerolength_write(ch);
2332 WARN_ONCE(ret < 0, "%d\n", ret);
2333 } else {
Bart Van Asschea42d9852011-10-14 01:30:46 +00002334 srpt_close_ch(ch);
Bart Van Assche387add42016-02-11 11:10:09 -08002335 }
Bart Van Asschea42d9852011-10-14 01:30:46 +00002336 }
2337}
2338
Bart Van Asschea42d9852011-10-14 01:30:46 +00002339/**
Bart Van Asschea42d9852011-10-14 01:30:46 +00002340 * srpt_cm_handler() - IB connection manager callback function.
2341 *
2342 * A non-zero return value will cause the caller destroy the CM ID.
2343 *
2344 * Note: srpt_cm_handler() must only return a non-zero value when transferring
2345 * ownership of the cm_id to a channel by srpt_cm_req_recv() failed. Returning
2346 * a non-zero value in any other case will trigger a race with the
2347 * ib_destroy_cm_id() call in srpt_release_channel().
2348 */
2349static int srpt_cm_handler(struct ib_cm_id *cm_id, struct ib_cm_event *event)
2350{
Bart Van Assche2739b592016-02-11 11:07:49 -08002351 struct srpt_rdma_ch *ch = cm_id->context;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002352 int ret;
2353
2354 ret = 0;
2355 switch (event->event) {
2356 case IB_CM_REQ_RECEIVED:
2357 ret = srpt_cm_req_recv(cm_id, &event->param.req_rcvd,
2358 event->private_data);
2359 break;
2360 case IB_CM_REJ_RECEIVED:
Bart Van Assche2739b592016-02-11 11:07:49 -08002361 srpt_cm_rej_recv(ch, event->param.rej_rcvd.reason,
2362 event->private_data,
2363 IB_CM_REJ_PRIVATE_DATA_SIZE);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002364 break;
2365 case IB_CM_RTU_RECEIVED:
2366 case IB_CM_USER_ESTABLISHED:
Bart Van Assche2739b592016-02-11 11:07:49 -08002367 srpt_cm_rtu_recv(ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002368 break;
2369 case IB_CM_DREQ_RECEIVED:
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002370 srpt_disconnect_ch(ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002371 break;
2372 case IB_CM_DREP_RECEIVED:
Bart Van Assche2739b592016-02-11 11:07:49 -08002373 pr_info("Received CM DREP message for ch %s-%d.\n",
2374 ch->sess_name, ch->qp->qp_num);
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002375 srpt_close_ch(ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002376 break;
2377 case IB_CM_TIMEWAIT_EXIT:
Bart Van Assche2739b592016-02-11 11:07:49 -08002378 pr_info("Received CM TimeWait exit for ch %s-%d.\n",
2379 ch->sess_name, ch->qp->qp_num);
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002380 srpt_close_ch(ch);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002381 break;
2382 case IB_CM_REP_ERROR:
Bart Van Assche2739b592016-02-11 11:07:49 -08002383 pr_info("Received CM REP error for ch %s-%d.\n", ch->sess_name,
2384 ch->qp->qp_num);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002385 break;
2386 case IB_CM_DREQ_ERROR:
Bart Van Assche1e20a2a2016-02-11 11:07:29 -08002387 pr_info("Received CM DREQ ERROR event.\n");
Bart Van Asschea42d9852011-10-14 01:30:46 +00002388 break;
2389 case IB_CM_MRA_RECEIVED:
Bart Van Assche1e20a2a2016-02-11 11:07:29 -08002390 pr_info("Received CM MRA event\n");
Bart Van Asschea42d9852011-10-14 01:30:46 +00002391 break;
2392 default:
Bart Van Assche1e20a2a2016-02-11 11:07:29 -08002393 pr_err("received unrecognized CM event %d\n", event->event);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002394 break;
2395 }
2396
2397 return ret;
2398}
2399
2400/**
2401 * srpt_perform_rdmas() - Perform IB RDMA.
2402 *
2403 * Returns zero upon success or a negative number upon failure.
2404 */
2405static int srpt_perform_rdmas(struct srpt_rdma_ch *ch,
2406 struct srpt_send_ioctx *ioctx)
2407{
Bart Van Asschea42d9852011-10-14 01:30:46 +00002408 struct ib_send_wr *bad_wr;
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02002409 int sq_wr_avail, ret, i;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002410 enum dma_data_direction dir;
2411 const int n_rdma = ioctx->n_rdma;
2412
2413 dir = ioctx->cmd.data_direction;
2414 if (dir == DMA_TO_DEVICE) {
2415 /* write */
2416 ret = -ENOMEM;
2417 sq_wr_avail = atomic_sub_return(n_rdma, &ch->sq_wr_avail);
2418 if (sq_wr_avail < 0) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002419 pr_warn("IB send queue full (needed %d)\n",
2420 n_rdma);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002421 goto out;
2422 }
2423 }
2424
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02002425 for (i = 0; i < n_rdma; i++) {
2426 struct ib_send_wr *wr = &ioctx->rdma_wrs[i].wr;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002427
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02002428 wr->opcode = (dir == DMA_FROM_DEVICE) ?
2429 IB_WR_RDMA_WRITE : IB_WR_RDMA_READ;
2430
2431 if (i == n_rdma - 1) {
2432 /* only get completion event for the last rdma read */
2433 if (dir == DMA_TO_DEVICE) {
2434 wr->send_flags = IB_SEND_SIGNALED;
2435 ioctx->rdma_cqe.done = srpt_rdma_read_done;
2436 } else {
2437 ioctx->rdma_cqe.done = srpt_rdma_write_done;
2438 }
2439 wr->wr_cqe = &ioctx->rdma_cqe;
2440 wr->next = NULL;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002441 } else {
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02002442 wr->wr_cqe = NULL;
2443 wr->next = &ioctx->rdma_wrs[i + 1].wr;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002444 }
Bart Van Asschea42d9852011-10-14 01:30:46 +00002445 }
2446
Christoph Hellwig59fae4d2015-09-29 13:00:44 +02002447 ret = ib_post_send(ch->qp, &ioctx->rdma_wrs->wr, &bad_wr);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002448 if (ret)
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002449 pr_err("%s[%d]: ib_post_send() returned %d for %d/%d\n",
Bart Van Asschea42d9852011-10-14 01:30:46 +00002450 __func__, __LINE__, ret, i, n_rdma);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002451out:
2452 if (unlikely(dir == DMA_TO_DEVICE && ret < 0))
2453 atomic_add(n_rdma, &ch->sq_wr_avail);
2454 return ret;
2455}
2456
2457/**
2458 * srpt_xfer_data() - Start data transfer from initiator to target.
2459 */
2460static int srpt_xfer_data(struct srpt_rdma_ch *ch,
2461 struct srpt_send_ioctx *ioctx)
2462{
2463 int ret;
2464
2465 ret = srpt_map_sg_to_ib_sge(ch, ioctx);
2466 if (ret) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002467 pr_err("%s[%d] ret=%d\n", __func__, __LINE__, ret);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002468 goto out;
2469 }
2470
2471 ret = srpt_perform_rdmas(ch, ioctx);
2472 if (ret) {
2473 if (ret == -EAGAIN || ret == -ENOMEM)
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002474 pr_info("%s[%d] queue full -- ret=%d\n",
2475 __func__, __LINE__, ret);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002476 else
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002477 pr_err("%s[%d] fatal error -- ret=%d\n",
Bart Van Asschea42d9852011-10-14 01:30:46 +00002478 __func__, __LINE__, ret);
2479 goto out_unmap;
2480 }
2481
2482out:
2483 return ret;
2484out_unmap:
2485 srpt_unmap_sg_to_ib_sge(ch, ioctx);
2486 goto out;
2487}
2488
2489static int srpt_write_pending_status(struct se_cmd *se_cmd)
2490{
2491 struct srpt_send_ioctx *ioctx;
2492
2493 ioctx = container_of(se_cmd, struct srpt_send_ioctx, cmd);
2494 return srpt_get_cmd_state(ioctx) == SRPT_STATE_NEED_DATA;
2495}
2496
2497/*
2498 * srpt_write_pending() - Start data transfer from initiator to target (write).
2499 */
2500static int srpt_write_pending(struct se_cmd *se_cmd)
2501{
Bart Van Asschefc3af582016-02-11 11:09:10 -08002502 struct srpt_send_ioctx *ioctx =
2503 container_of(se_cmd, struct srpt_send_ioctx, cmd);
2504 struct srpt_rdma_ch *ch = ioctx->ch;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002505 enum srpt_command_state new_state;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002506
2507 new_state = srpt_set_cmd_state(ioctx, SRPT_STATE_NEED_DATA);
2508 WARN_ON(new_state == SRPT_STATE_DONE);
Bart Van Asschefc3af582016-02-11 11:09:10 -08002509 return srpt_xfer_data(ch, ioctx);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002510}
2511
2512static u8 tcm_to_srp_tsk_mgmt_status(const int tcm_mgmt_status)
2513{
2514 switch (tcm_mgmt_status) {
2515 case TMR_FUNCTION_COMPLETE:
2516 return SRP_TSK_MGMT_SUCCESS;
2517 case TMR_FUNCTION_REJECTED:
2518 return SRP_TSK_MGMT_FUNC_NOT_SUPP;
2519 }
2520 return SRP_TSK_MGMT_FAILED;
2521}
2522
2523/**
2524 * srpt_queue_response() - Transmits the response to a SCSI command.
2525 *
2526 * Callback function called by the TCM core. Must not block since it can be
2527 * invoked on the context of the IB completion handler.
2528 */
Joern Engelb79fafa2013-07-03 11:22:17 -04002529static void srpt_queue_response(struct se_cmd *cmd)
Bart Van Asschea42d9852011-10-14 01:30:46 +00002530{
2531 struct srpt_rdma_ch *ch;
2532 struct srpt_send_ioctx *ioctx;
2533 enum srpt_command_state state;
2534 unsigned long flags;
2535 int ret;
2536 enum dma_data_direction dir;
2537 int resp_len;
2538 u8 srp_tm_status;
2539
Bart Van Asschea42d9852011-10-14 01:30:46 +00002540 ioctx = container_of(cmd, struct srpt_send_ioctx, cmd);
2541 ch = ioctx->ch;
2542 BUG_ON(!ch);
2543
2544 spin_lock_irqsave(&ioctx->spinlock, flags);
2545 state = ioctx->state;
2546 switch (state) {
2547 case SRPT_STATE_NEW:
2548 case SRPT_STATE_DATA_IN:
2549 ioctx->state = SRPT_STATE_CMD_RSP_SENT;
2550 break;
2551 case SRPT_STATE_MGMT:
2552 ioctx->state = SRPT_STATE_MGMT_RSP_SENT;
2553 break;
2554 default:
2555 WARN(true, "ch %p; cmd %d: unexpected command state %d\n",
2556 ch, ioctx->ioctx.index, ioctx->state);
2557 break;
2558 }
2559 spin_unlock_irqrestore(&ioctx->spinlock, flags);
2560
2561 if (unlikely(transport_check_aborted_status(&ioctx->cmd, false)
2562 || WARN_ON_ONCE(state == SRPT_STATE_CMD_RSP_SENT))) {
2563 atomic_inc(&ch->req_lim_delta);
2564 srpt_abort_cmd(ioctx);
Joern Engelb79fafa2013-07-03 11:22:17 -04002565 return;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002566 }
2567
2568 dir = ioctx->cmd.data_direction;
2569
2570 /* For read commands, transfer the data to the initiator. */
2571 if (dir == DMA_FROM_DEVICE && ioctx->cmd.data_length &&
2572 !ioctx->queue_status_only) {
2573 ret = srpt_xfer_data(ch, ioctx);
2574 if (ret) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002575 pr_err("xfer_data failed for tag %llu\n",
Bart Van Assche649ee052015-04-14 13:26:44 +02002576 ioctx->cmd.tag);
Joern Engelb79fafa2013-07-03 11:22:17 -04002577 return;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002578 }
2579 }
2580
2581 if (state != SRPT_STATE_MGMT)
Bart Van Assche649ee052015-04-14 13:26:44 +02002582 resp_len = srpt_build_cmd_rsp(ch, ioctx, ioctx->cmd.tag,
Bart Van Asschea42d9852011-10-14 01:30:46 +00002583 cmd->scsi_status);
2584 else {
2585 srp_tm_status
2586 = tcm_to_srp_tsk_mgmt_status(cmd->se_tmr_req->response);
2587 resp_len = srpt_build_tskmgmt_rsp(ch, ioctx, srp_tm_status,
Bart Van Assche649ee052015-04-14 13:26:44 +02002588 ioctx->cmd.tag);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002589 }
2590 ret = srpt_post_send(ch, ioctx, resp_len);
2591 if (ret) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002592 pr_err("sending cmd response failed for tag %llu\n",
Bart Van Assche649ee052015-04-14 13:26:44 +02002593 ioctx->cmd.tag);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002594 srpt_unmap_sg_to_ib_sge(ch, ioctx);
2595 srpt_set_cmd_state(ioctx, SRPT_STATE_DONE);
Bart Van Asscheafc16602015-04-27 13:52:36 +02002596 target_put_sess_cmd(&ioctx->cmd);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002597 }
Joern Engelb79fafa2013-07-03 11:22:17 -04002598}
Bart Van Asschea42d9852011-10-14 01:30:46 +00002599
Joern Engelb79fafa2013-07-03 11:22:17 -04002600static int srpt_queue_data_in(struct se_cmd *cmd)
2601{
2602 srpt_queue_response(cmd);
2603 return 0;
2604}
2605
2606static void srpt_queue_tm_rsp(struct se_cmd *cmd)
2607{
2608 srpt_queue_response(cmd);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002609}
2610
Nicholas Bellinger131e6ab2014-03-22 14:55:56 -07002611static void srpt_aborted_task(struct se_cmd *cmd)
2612{
2613 struct srpt_send_ioctx *ioctx = container_of(cmd,
2614 struct srpt_send_ioctx, cmd);
2615
2616 srpt_unmap_sg_to_ib_sge(ioctx->ch, ioctx);
2617}
2618
Bart Van Asschea42d9852011-10-14 01:30:46 +00002619static int srpt_queue_status(struct se_cmd *cmd)
2620{
2621 struct srpt_send_ioctx *ioctx;
2622
2623 ioctx = container_of(cmd, struct srpt_send_ioctx, cmd);
2624 BUG_ON(ioctx->sense_data != cmd->sense_buffer);
2625 if (cmd->se_cmd_flags &
2626 (SCF_TRANSPORT_TASK_SENSE | SCF_EMULATED_TASK_SENSE))
2627 WARN_ON(cmd->scsi_status != SAM_STAT_CHECK_CONDITION);
2628 ioctx->queue_status_only = true;
Joern Engelb79fafa2013-07-03 11:22:17 -04002629 srpt_queue_response(cmd);
2630 return 0;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002631}
2632
2633static void srpt_refresh_port_work(struct work_struct *work)
2634{
2635 struct srpt_port *sport = container_of(work, struct srpt_port, work);
2636
2637 srpt_refresh_port(sport);
2638}
2639
Bart Van Asschea42d9852011-10-14 01:30:46 +00002640/**
2641 * srpt_release_sdev() - Free the channel resources associated with a target.
2642 */
2643static int srpt_release_sdev(struct srpt_device *sdev)
2644{
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002645 int i, res;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002646
2647 WARN_ON_ONCE(irqs_disabled());
2648
2649 BUG_ON(!sdev);
2650
Bart Van Assche86289912016-02-11 11:08:34 -08002651 mutex_lock(&sdev->mutex);
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002652 for (i = 0; i < ARRAY_SIZE(sdev->port); i++)
2653 sdev->port[i].enabled = false;
2654 __srpt_close_all_ch(sdev);
Bart Van Assche86289912016-02-11 11:08:34 -08002655 mutex_unlock(&sdev->mutex);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002656
2657 res = wait_event_interruptible(sdev->ch_releaseQ,
Bart Van Assche86289912016-02-11 11:08:34 -08002658 list_empty_careful(&sdev->rch_list));
Bart Van Asschea42d9852011-10-14 01:30:46 +00002659 if (res)
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002660 pr_err("%s: interrupted.\n", __func__);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002661
2662 return 0;
2663}
2664
2665static struct srpt_port *__srpt_lookup_port(const char *name)
2666{
2667 struct ib_device *dev;
2668 struct srpt_device *sdev;
2669 struct srpt_port *sport;
2670 int i;
2671
2672 list_for_each_entry(sdev, &srpt_dev_list, list) {
2673 dev = sdev->device;
2674 if (!dev)
2675 continue;
2676
2677 for (i = 0; i < dev->phys_port_cnt; i++) {
2678 sport = &sdev->port[i];
2679
2680 if (!strcmp(sport->port_guid, name))
2681 return sport;
2682 }
2683 }
2684
2685 return NULL;
2686}
2687
2688static struct srpt_port *srpt_lookup_port(const char *name)
2689{
2690 struct srpt_port *sport;
2691
2692 spin_lock(&srpt_dev_lock);
2693 sport = __srpt_lookup_port(name);
2694 spin_unlock(&srpt_dev_lock);
2695
2696 return sport;
2697}
2698
2699/**
2700 * srpt_add_one() - Infiniband device addition callback function.
2701 */
2702static void srpt_add_one(struct ib_device *device)
2703{
2704 struct srpt_device *sdev;
2705 struct srpt_port *sport;
2706 struct ib_srq_init_attr srq_attr;
2707 int i;
2708
2709 pr_debug("device = %p, device->dma_ops = %p\n", device,
2710 device->dma_ops);
2711
Bart Van Assche9d2aa2b2016-02-11 11:03:31 -08002712 sdev = kzalloc(sizeof(*sdev), GFP_KERNEL);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002713 if (!sdev)
2714 goto err;
2715
2716 sdev->device = device;
2717 INIT_LIST_HEAD(&sdev->rch_list);
2718 init_waitqueue_head(&sdev->ch_releaseQ);
Bart Van Assche86289912016-02-11 11:08:34 -08002719 mutex_init(&sdev->mutex);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002720
Bart Van Asschea42d9852011-10-14 01:30:46 +00002721 sdev->pd = ib_alloc_pd(device);
2722 if (IS_ERR(sdev->pd))
2723 goto free_dev;
2724
Or Gerlitz4a061b22015-12-18 10:59:46 +02002725 sdev->srq_size = min(srpt_srq_size, sdev->device->attrs.max_srq_wr);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002726
2727 srq_attr.event_handler = srpt_srq_event;
2728 srq_attr.srq_context = (void *)sdev;
2729 srq_attr.attr.max_wr = sdev->srq_size;
2730 srq_attr.attr.max_sge = 1;
2731 srq_attr.attr.srq_limit = 0;
Roland Dreier6f360332012-04-12 07:51:08 -07002732 srq_attr.srq_type = IB_SRQT_BASIC;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002733
2734 sdev->srq = ib_create_srq(sdev->pd, &srq_attr);
2735 if (IS_ERR(sdev->srq))
Jason Gunthorpe5a783952015-07-30 17:22:24 -06002736 goto err_pd;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002737
2738 pr_debug("%s: create SRQ #wr= %d max_allow=%d dev= %s\n",
Or Gerlitz4a061b22015-12-18 10:59:46 +02002739 __func__, sdev->srq_size, sdev->device->attrs.max_srq_wr,
Bart Van Asschea42d9852011-10-14 01:30:46 +00002740 device->name);
2741
2742 if (!srpt_service_guid)
2743 srpt_service_guid = be64_to_cpu(device->node_guid);
2744
2745 sdev->cm_id = ib_create_cm_id(device, srpt_cm_handler, sdev);
2746 if (IS_ERR(sdev->cm_id))
2747 goto err_srq;
2748
2749 /* print out target login information */
2750 pr_debug("Target login info: id_ext=%016llx,ioc_guid=%016llx,"
2751 "pkey=ffff,service_id=%016llx\n", srpt_service_guid,
2752 srpt_service_guid, srpt_service_guid);
2753
2754 /*
2755 * We do not have a consistent service_id (ie. also id_ext of target_id)
2756 * to identify this target. We currently use the guid of the first HCA
2757 * in the system as service_id; therefore, the target_id will change
2758 * if this HCA is gone bad and replaced by different HCA
2759 */
Haggai Eran73fec7f2015-07-30 17:50:26 +03002760 if (ib_cm_listen(sdev->cm_id, cpu_to_be64(srpt_service_guid), 0))
Bart Van Asschea42d9852011-10-14 01:30:46 +00002761 goto err_cm;
2762
2763 INIT_IB_EVENT_HANDLER(&sdev->event_handler, sdev->device,
2764 srpt_event_handler);
2765 if (ib_register_event_handler(&sdev->event_handler))
2766 goto err_cm;
2767
2768 sdev->ioctx_ring = (struct srpt_recv_ioctx **)
2769 srpt_alloc_ioctx_ring(sdev, sdev->srq_size,
2770 sizeof(*sdev->ioctx_ring[0]),
2771 srp_max_req_size, DMA_FROM_DEVICE);
2772 if (!sdev->ioctx_ring)
2773 goto err_event;
2774
2775 for (i = 0; i < sdev->srq_size; ++i)
2776 srpt_post_recv(sdev, sdev->ioctx_ring[i]);
2777
Roland Dreierf2250662012-02-02 12:55:58 -08002778 WARN_ON(sdev->device->phys_port_cnt > ARRAY_SIZE(sdev->port));
Bart Van Asschea42d9852011-10-14 01:30:46 +00002779
2780 for (i = 1; i <= sdev->device->phys_port_cnt; i++) {
2781 sport = &sdev->port[i - 1];
2782 sport->sdev = sdev;
2783 sport->port = i;
2784 sport->port_attrib.srp_max_rdma_size = DEFAULT_MAX_RDMA_SIZE;
2785 sport->port_attrib.srp_max_rsp_size = DEFAULT_MAX_RSP_SIZE;
2786 sport->port_attrib.srp_sq_size = DEF_SRPT_SQ_SIZE;
2787 INIT_WORK(&sport->work, srpt_refresh_port_work);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002788
2789 if (srpt_refresh_port(sport)) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002790 pr_err("MAD registration failed for %s-%d.\n",
Bart Van Asschef68cba4e92016-02-11 11:04:20 -08002791 sdev->device->name, i);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002792 goto err_ring;
2793 }
2794 snprintf(sport->port_guid, sizeof(sport->port_guid),
2795 "0x%016llx%016llx",
2796 be64_to_cpu(sport->gid.global.subnet_prefix),
2797 be64_to_cpu(sport->gid.global.interface_id));
2798 }
2799
2800 spin_lock(&srpt_dev_lock);
2801 list_add_tail(&sdev->list, &srpt_dev_list);
2802 spin_unlock(&srpt_dev_lock);
2803
2804out:
2805 ib_set_client_data(device, &srpt_client, sdev);
2806 pr_debug("added %s.\n", device->name);
2807 return;
2808
2809err_ring:
2810 srpt_free_ioctx_ring((struct srpt_ioctx **)sdev->ioctx_ring, sdev,
2811 sdev->srq_size, srp_max_req_size,
2812 DMA_FROM_DEVICE);
2813err_event:
2814 ib_unregister_event_handler(&sdev->event_handler);
2815err_cm:
2816 ib_destroy_cm_id(sdev->cm_id);
2817err_srq:
2818 ib_destroy_srq(sdev->srq);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002819err_pd:
2820 ib_dealloc_pd(sdev->pd);
2821free_dev:
2822 kfree(sdev);
2823err:
2824 sdev = NULL;
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002825 pr_info("%s(%s) failed.\n", __func__, device->name);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002826 goto out;
2827}
2828
2829/**
2830 * srpt_remove_one() - InfiniBand device removal callback function.
2831 */
Haggai Eran7c1eb452015-07-30 17:50:14 +03002832static void srpt_remove_one(struct ib_device *device, void *client_data)
Bart Van Asschea42d9852011-10-14 01:30:46 +00002833{
Haggai Eran7c1eb452015-07-30 17:50:14 +03002834 struct srpt_device *sdev = client_data;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002835 int i;
2836
Bart Van Asschea42d9852011-10-14 01:30:46 +00002837 if (!sdev) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04002838 pr_info("%s(%s): nothing to do.\n", __func__, device->name);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002839 return;
2840 }
2841
2842 srpt_unregister_mad_agent(sdev);
2843
2844 ib_unregister_event_handler(&sdev->event_handler);
2845
2846 /* Cancel any work queued by the just unregistered IB event handler. */
2847 for (i = 0; i < sdev->device->phys_port_cnt; i++)
2848 cancel_work_sync(&sdev->port[i].work);
2849
2850 ib_destroy_cm_id(sdev->cm_id);
2851
2852 /*
2853 * Unregistering a target must happen after destroying sdev->cm_id
2854 * such that no new SRP_LOGIN_REQ information units can arrive while
2855 * destroying the target.
2856 */
2857 spin_lock(&srpt_dev_lock);
2858 list_del(&sdev->list);
2859 spin_unlock(&srpt_dev_lock);
2860 srpt_release_sdev(sdev);
2861
2862 ib_destroy_srq(sdev->srq);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002863 ib_dealloc_pd(sdev->pd);
2864
2865 srpt_free_ioctx_ring((struct srpt_ioctx **)sdev->ioctx_ring, sdev,
2866 sdev->srq_size, srp_max_req_size, DMA_FROM_DEVICE);
2867 sdev->ioctx_ring = NULL;
2868 kfree(sdev);
2869}
2870
2871static struct ib_client srpt_client = {
2872 .name = DRV_NAME,
2873 .add = srpt_add_one,
2874 .remove = srpt_remove_one
2875};
2876
2877static int srpt_check_true(struct se_portal_group *se_tpg)
2878{
2879 return 1;
2880}
2881
2882static int srpt_check_false(struct se_portal_group *se_tpg)
2883{
2884 return 0;
2885}
2886
2887static char *srpt_get_fabric_name(void)
2888{
2889 return "srpt";
2890}
2891
Bart Van Asschea42d9852011-10-14 01:30:46 +00002892static char *srpt_get_fabric_wwn(struct se_portal_group *tpg)
2893{
2894 struct srpt_port *sport = container_of(tpg, struct srpt_port, port_tpg_1);
2895
2896 return sport->port_guid;
2897}
2898
2899static u16 srpt_get_tag(struct se_portal_group *tpg)
2900{
2901 return 1;
2902}
2903
Bart Van Asschea42d9852011-10-14 01:30:46 +00002904static u32 srpt_tpg_get_inst_index(struct se_portal_group *se_tpg)
2905{
2906 return 1;
2907}
2908
2909static void srpt_release_cmd(struct se_cmd *se_cmd)
2910{
Nicholas Bellinger9474b042012-11-27 23:55:57 -08002911 struct srpt_send_ioctx *ioctx = container_of(se_cmd,
2912 struct srpt_send_ioctx, cmd);
2913 struct srpt_rdma_ch *ch = ioctx->ch;
2914 unsigned long flags;
2915
2916 WARN_ON(ioctx->state != SRPT_STATE_DONE);
2917 WARN_ON(ioctx->mapped_sg_count != 0);
2918
2919 if (ioctx->n_rbuf > 1) {
2920 kfree(ioctx->rbufs);
2921 ioctx->rbufs = NULL;
2922 ioctx->n_rbuf = 0;
2923 }
2924
2925 spin_lock_irqsave(&ch->spinlock, flags);
2926 list_add(&ioctx->free_list, &ch->free_list);
2927 spin_unlock_irqrestore(&ch->spinlock, flags);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002928}
2929
2930/**
Bart Van Asschea42d9852011-10-14 01:30:46 +00002931 * srpt_close_session() - Forcibly close a session.
2932 *
2933 * Callback function invoked by the TCM core to clean up sessions associated
2934 * with a node ACL when the user invokes
2935 * rmdir /sys/kernel/config/target/$driver/$port/$tpg/acls/$i_port_id
2936 */
2937static void srpt_close_session(struct se_session *se_sess)
2938{
2939 DECLARE_COMPLETION_ONSTACK(release_done);
Bart Van Asschef108f0f2016-02-11 11:06:14 -08002940 struct srpt_rdma_ch *ch = se_sess->fabric_sess_ptr;
2941 struct srpt_device *sdev = ch->sport->sdev;
2942 bool wait;
Bart Van Asschea42d9852011-10-14 01:30:46 +00002943
Bart Van Asschef108f0f2016-02-11 11:06:14 -08002944 pr_debug("ch %s-%d state %d\n", ch->sess_name, ch->qp->qp_num,
2945 ch->state);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002946
Bart Van Assche86289912016-02-11 11:08:34 -08002947 mutex_lock(&sdev->mutex);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002948 BUG_ON(ch->release_done);
2949 ch->release_done = &release_done;
Bart Van Asschef108f0f2016-02-11 11:06:14 -08002950 wait = !list_empty(&ch->list);
Bart Van Asscheaaf45bd2016-02-11 11:08:53 -08002951 srpt_disconnect_ch(ch);
Bart Van Assche86289912016-02-11 11:08:34 -08002952 mutex_unlock(&sdev->mutex);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002953
Bart Van Asschef108f0f2016-02-11 11:06:14 -08002954 if (!wait)
2955 return;
2956
2957 while (wait_for_completion_timeout(&release_done, 180 * HZ) == 0)
2958 pr_info("%s(%s-%d state %d): still waiting ...\n", __func__,
2959 ch->sess_name, ch->qp->qp_num, ch->state);
Bart Van Asschea42d9852011-10-14 01:30:46 +00002960}
2961
2962/**
Bart Van Asschea42d9852011-10-14 01:30:46 +00002963 * srpt_sess_get_index() - Return the value of scsiAttIntrPortIndex (SCSI-MIB).
2964 *
2965 * A quote from RFC 4455 (SCSI-MIB) about this MIB object:
2966 * This object represents an arbitrary integer used to uniquely identify a
2967 * particular attached remote initiator port to a particular SCSI target port
2968 * within a particular SCSI target device within a particular SCSI instance.
2969 */
2970static u32 srpt_sess_get_index(struct se_session *se_sess)
2971{
2972 return 0;
2973}
2974
2975static void srpt_set_default_node_attrs(struct se_node_acl *nacl)
2976{
2977}
2978
Bart Van Asschea42d9852011-10-14 01:30:46 +00002979/* Note: only used from inside debug printk's by the TCM core. */
2980static int srpt_get_tcm_cmd_state(struct se_cmd *se_cmd)
2981{
2982 struct srpt_send_ioctx *ioctx;
2983
2984 ioctx = container_of(se_cmd, struct srpt_send_ioctx, cmd);
2985 return srpt_get_cmd_state(ioctx);
2986}
2987
Bart Van Asschea42d9852011-10-14 01:30:46 +00002988/**
2989 * srpt_parse_i_port_id() - Parse an initiator port ID.
2990 * @name: ASCII representation of a 128-bit initiator port ID.
2991 * @i_port_id: Binary 128-bit port ID.
2992 */
2993static int srpt_parse_i_port_id(u8 i_port_id[16], const char *name)
2994{
2995 const char *p;
2996 unsigned len, count, leading_zero_bytes;
2997 int ret, rc;
2998
2999 p = name;
Rasmus Villemoesb60459f2014-10-13 15:54:46 -07003000 if (strncasecmp(p, "0x", 2) == 0)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003001 p += 2;
3002 ret = -EINVAL;
3003 len = strlen(p);
3004 if (len % 2)
3005 goto out;
3006 count = min(len / 2, 16U);
3007 leading_zero_bytes = 16 - count;
3008 memset(i_port_id, 0, leading_zero_bytes);
3009 rc = hex2bin(i_port_id + leading_zero_bytes, p, count);
3010 if (rc < 0)
3011 pr_debug("hex2bin failed for srpt_parse_i_port_id: %d\n", rc);
3012 ret = 0;
3013out:
3014 return ret;
3015}
3016
3017/*
3018 * configfs callback function invoked for
3019 * mkdir /sys/kernel/config/target/$driver/$port/$tpg/acls/$i_port_id
3020 */
Christoph Hellwigc7d6a802015-04-13 19:51:14 +02003021static int srpt_init_nodeacl(struct se_node_acl *se_nacl, const char *name)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003022{
Bart Van Asschea42d9852011-10-14 01:30:46 +00003023 u8 i_port_id[16];
3024
3025 if (srpt_parse_i_port_id(i_port_id, name) < 0) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04003026 pr_err("invalid initiator port ID %s\n", name);
Christoph Hellwigc7d6a802015-04-13 19:51:14 +02003027 return -EINVAL;
Bart Van Asschea42d9852011-10-14 01:30:46 +00003028 }
Christoph Hellwigc7d6a802015-04-13 19:51:14 +02003029 return 0;
Bart Van Asschea42d9852011-10-14 01:30:46 +00003030}
3031
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003032static ssize_t srpt_tpg_attrib_srp_max_rdma_size_show(struct config_item *item,
3033 char *page)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003034{
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003035 struct se_portal_group *se_tpg = attrib_to_tpg(item);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003036 struct srpt_port *sport = container_of(se_tpg, struct srpt_port, port_tpg_1);
3037
3038 return sprintf(page, "%u\n", sport->port_attrib.srp_max_rdma_size);
3039}
3040
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003041static ssize_t srpt_tpg_attrib_srp_max_rdma_size_store(struct config_item *item,
3042 const char *page, size_t count)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003043{
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003044 struct se_portal_group *se_tpg = attrib_to_tpg(item);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003045 struct srpt_port *sport = container_of(se_tpg, struct srpt_port, port_tpg_1);
3046 unsigned long val;
3047 int ret;
3048
Jingoo Han9d8abf42014-02-05 11:22:05 +09003049 ret = kstrtoul(page, 0, &val);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003050 if (ret < 0) {
Jingoo Han9d8abf42014-02-05 11:22:05 +09003051 pr_err("kstrtoul() failed with ret: %d\n", ret);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003052 return -EINVAL;
3053 }
3054 if (val > MAX_SRPT_RDMA_SIZE) {
3055 pr_err("val: %lu exceeds MAX_SRPT_RDMA_SIZE: %d\n", val,
3056 MAX_SRPT_RDMA_SIZE);
3057 return -EINVAL;
3058 }
3059 if (val < DEFAULT_MAX_RDMA_SIZE) {
3060 pr_err("val: %lu smaller than DEFAULT_MAX_RDMA_SIZE: %d\n",
3061 val, DEFAULT_MAX_RDMA_SIZE);
3062 return -EINVAL;
3063 }
3064 sport->port_attrib.srp_max_rdma_size = val;
3065
3066 return count;
3067}
3068
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003069static ssize_t srpt_tpg_attrib_srp_max_rsp_size_show(struct config_item *item,
3070 char *page)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003071{
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003072 struct se_portal_group *se_tpg = attrib_to_tpg(item);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003073 struct srpt_port *sport = container_of(se_tpg, struct srpt_port, port_tpg_1);
3074
3075 return sprintf(page, "%u\n", sport->port_attrib.srp_max_rsp_size);
3076}
3077
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003078static ssize_t srpt_tpg_attrib_srp_max_rsp_size_store(struct config_item *item,
3079 const char *page, size_t count)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003080{
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003081 struct se_portal_group *se_tpg = attrib_to_tpg(item);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003082 struct srpt_port *sport = container_of(se_tpg, struct srpt_port, port_tpg_1);
3083 unsigned long val;
3084 int ret;
3085
Jingoo Han9d8abf42014-02-05 11:22:05 +09003086 ret = kstrtoul(page, 0, &val);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003087 if (ret < 0) {
Jingoo Han9d8abf42014-02-05 11:22:05 +09003088 pr_err("kstrtoul() failed with ret: %d\n", ret);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003089 return -EINVAL;
3090 }
3091 if (val > MAX_SRPT_RSP_SIZE) {
3092 pr_err("val: %lu exceeds MAX_SRPT_RSP_SIZE: %d\n", val,
3093 MAX_SRPT_RSP_SIZE);
3094 return -EINVAL;
3095 }
3096 if (val < MIN_MAX_RSP_SIZE) {
3097 pr_err("val: %lu smaller than MIN_MAX_RSP_SIZE: %d\n", val,
3098 MIN_MAX_RSP_SIZE);
3099 return -EINVAL;
3100 }
3101 sport->port_attrib.srp_max_rsp_size = val;
3102
3103 return count;
3104}
3105
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003106static ssize_t srpt_tpg_attrib_srp_sq_size_show(struct config_item *item,
3107 char *page)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003108{
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003109 struct se_portal_group *se_tpg = attrib_to_tpg(item);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003110 struct srpt_port *sport = container_of(se_tpg, struct srpt_port, port_tpg_1);
3111
3112 return sprintf(page, "%u\n", sport->port_attrib.srp_sq_size);
3113}
3114
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003115static ssize_t srpt_tpg_attrib_srp_sq_size_store(struct config_item *item,
3116 const char *page, size_t count)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003117{
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003118 struct se_portal_group *se_tpg = attrib_to_tpg(item);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003119 struct srpt_port *sport = container_of(se_tpg, struct srpt_port, port_tpg_1);
3120 unsigned long val;
3121 int ret;
3122
Jingoo Han9d8abf42014-02-05 11:22:05 +09003123 ret = kstrtoul(page, 0, &val);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003124 if (ret < 0) {
Jingoo Han9d8abf42014-02-05 11:22:05 +09003125 pr_err("kstrtoul() failed with ret: %d\n", ret);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003126 return -EINVAL;
3127 }
3128 if (val > MAX_SRPT_SRQ_SIZE) {
3129 pr_err("val: %lu exceeds MAX_SRPT_SRQ_SIZE: %d\n", val,
3130 MAX_SRPT_SRQ_SIZE);
3131 return -EINVAL;
3132 }
3133 if (val < MIN_SRPT_SRQ_SIZE) {
3134 pr_err("val: %lu smaller than MIN_SRPT_SRQ_SIZE: %d\n", val,
3135 MIN_SRPT_SRQ_SIZE);
3136 return -EINVAL;
3137 }
3138 sport->port_attrib.srp_sq_size = val;
3139
3140 return count;
3141}
3142
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003143CONFIGFS_ATTR(srpt_tpg_attrib_, srp_max_rdma_size);
3144CONFIGFS_ATTR(srpt_tpg_attrib_, srp_max_rsp_size);
3145CONFIGFS_ATTR(srpt_tpg_attrib_, srp_sq_size);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003146
3147static struct configfs_attribute *srpt_tpg_attrib_attrs[] = {
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003148 &srpt_tpg_attrib_attr_srp_max_rdma_size,
3149 &srpt_tpg_attrib_attr_srp_max_rsp_size,
3150 &srpt_tpg_attrib_attr_srp_sq_size,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003151 NULL,
3152};
3153
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003154static ssize_t srpt_tpg_enable_show(struct config_item *item, char *page)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003155{
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003156 struct se_portal_group *se_tpg = to_tpg(item);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003157 struct srpt_port *sport = container_of(se_tpg, struct srpt_port, port_tpg_1);
3158
3159 return snprintf(page, PAGE_SIZE, "%d\n", (sport->enabled) ? 1: 0);
3160}
3161
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003162static ssize_t srpt_tpg_enable_store(struct config_item *item,
3163 const char *page, size_t count)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003164{
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003165 struct se_portal_group *se_tpg = to_tpg(item);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003166 struct srpt_port *sport = container_of(se_tpg, struct srpt_port, port_tpg_1);
Bart Van Assche043a6802016-02-11 11:09:28 -08003167 struct srpt_device *sdev = sport->sdev;
3168 struct srpt_rdma_ch *ch;
Bart Van Asschea42d9852011-10-14 01:30:46 +00003169 unsigned long tmp;
3170 int ret;
3171
Jingoo Han9d8abf42014-02-05 11:22:05 +09003172 ret = kstrtoul(page, 0, &tmp);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003173 if (ret < 0) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04003174 pr_err("Unable to extract srpt_tpg_store_enable\n");
Bart Van Asschea42d9852011-10-14 01:30:46 +00003175 return -EINVAL;
3176 }
3177
3178 if ((tmp != 0) && (tmp != 1)) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04003179 pr_err("Illegal value for srpt_tpg_store_enable: %lu\n", tmp);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003180 return -EINVAL;
3181 }
Bart Van Assche043a6802016-02-11 11:09:28 -08003182 if (sport->enabled == tmp)
3183 goto out;
3184 sport->enabled = tmp;
3185 if (sport->enabled)
3186 goto out;
Bart Van Asschea42d9852011-10-14 01:30:46 +00003187
Bart Van Assche043a6802016-02-11 11:09:28 -08003188 mutex_lock(&sdev->mutex);
3189 list_for_each_entry(ch, &sdev->rch_list, list) {
3190 if (ch->sport == sport) {
3191 pr_debug("%s: ch %p %s-%d\n", __func__, ch,
3192 ch->sess_name, ch->qp->qp_num);
3193 srpt_disconnect_ch(ch);
3194 srpt_close_ch(ch);
3195 }
3196 }
3197 mutex_unlock(&sdev->mutex);
3198
3199out:
Bart Van Asschea42d9852011-10-14 01:30:46 +00003200 return count;
3201}
3202
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003203CONFIGFS_ATTR(srpt_tpg_, enable);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003204
3205static struct configfs_attribute *srpt_tpg_attrs[] = {
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003206 &srpt_tpg_attr_enable,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003207 NULL,
3208};
3209
3210/**
3211 * configfs callback invoked for
3212 * mkdir /sys/kernel/config/target/$driver/$port/$tpg
3213 */
3214static struct se_portal_group *srpt_make_tpg(struct se_wwn *wwn,
3215 struct config_group *group,
3216 const char *name)
3217{
3218 struct srpt_port *sport = container_of(wwn, struct srpt_port, port_wwn);
3219 int res;
3220
3221 /* Initialize sport->port_wwn and sport->port_tpg_1 */
Nicholas Bellingerbc0c94b2015-05-20 21:48:03 -07003222 res = core_tpg_register(&sport->port_wwn, &sport->port_tpg_1, SCSI_PROTOCOL_SRP);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003223 if (res)
3224 return ERR_PTR(res);
3225
3226 return &sport->port_tpg_1;
3227}
3228
3229/**
3230 * configfs callback invoked for
3231 * rmdir /sys/kernel/config/target/$driver/$port/$tpg
3232 */
3233static void srpt_drop_tpg(struct se_portal_group *tpg)
3234{
3235 struct srpt_port *sport = container_of(tpg,
3236 struct srpt_port, port_tpg_1);
3237
3238 sport->enabled = false;
3239 core_tpg_deregister(&sport->port_tpg_1);
3240}
3241
3242/**
3243 * configfs callback invoked for
3244 * mkdir /sys/kernel/config/target/$driver/$port
3245 */
3246static struct se_wwn *srpt_make_tport(struct target_fabric_configfs *tf,
3247 struct config_group *group,
3248 const char *name)
3249{
3250 struct srpt_port *sport;
3251 int ret;
3252
3253 sport = srpt_lookup_port(name);
3254 pr_debug("make_tport(%s)\n", name);
3255 ret = -EINVAL;
3256 if (!sport)
3257 goto err;
3258
3259 return &sport->port_wwn;
3260
3261err:
3262 return ERR_PTR(ret);
3263}
3264
3265/**
3266 * configfs callback invoked for
3267 * rmdir /sys/kernel/config/target/$driver/$port
3268 */
3269static void srpt_drop_tport(struct se_wwn *wwn)
3270{
3271 struct srpt_port *sport = container_of(wwn, struct srpt_port, port_wwn);
3272
3273 pr_debug("drop_tport(%s\n", config_item_name(&sport->port_wwn.wwn_group.cg_item));
3274}
3275
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003276static ssize_t srpt_wwn_version_show(struct config_item *item, char *buf)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003277{
3278 return scnprintf(buf, PAGE_SIZE, "%s\n", DRV_VERSION);
3279}
3280
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003281CONFIGFS_ATTR_RO(srpt_wwn_, version);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003282
3283static struct configfs_attribute *srpt_wwn_attrs[] = {
Christoph Hellwig2eafd722015-10-03 15:32:55 +02003284 &srpt_wwn_attr_version,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003285 NULL,
3286};
3287
Christoph Hellwig9ac89282015-04-08 20:01:35 +02003288static const struct target_core_fabric_ops srpt_template = {
3289 .module = THIS_MODULE,
3290 .name = "srpt",
Bart Van Asschea42d9852011-10-14 01:30:46 +00003291 .get_fabric_name = srpt_get_fabric_name,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003292 .tpg_get_wwn = srpt_get_fabric_wwn,
3293 .tpg_get_tag = srpt_get_tag,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003294 .tpg_check_demo_mode = srpt_check_false,
3295 .tpg_check_demo_mode_cache = srpt_check_true,
3296 .tpg_check_demo_mode_write_protect = srpt_check_true,
3297 .tpg_check_prod_mode_write_protect = srpt_check_false,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003298 .tpg_get_inst_index = srpt_tpg_get_inst_index,
3299 .release_cmd = srpt_release_cmd,
3300 .check_stop_free = srpt_check_stop_free,
3301 .shutdown_session = srpt_shutdown_session,
3302 .close_session = srpt_close_session,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003303 .sess_get_index = srpt_sess_get_index,
3304 .sess_get_initiator_sid = NULL,
3305 .write_pending = srpt_write_pending,
3306 .write_pending_status = srpt_write_pending_status,
3307 .set_default_node_attributes = srpt_set_default_node_attrs,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003308 .get_cmd_state = srpt_get_tcm_cmd_state,
Joern Engelb79fafa2013-07-03 11:22:17 -04003309 .queue_data_in = srpt_queue_data_in,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003310 .queue_status = srpt_queue_status,
Joern Engelb79fafa2013-07-03 11:22:17 -04003311 .queue_tm_rsp = srpt_queue_tm_rsp,
Nicholas Bellinger131e6ab2014-03-22 14:55:56 -07003312 .aborted_task = srpt_aborted_task,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003313 /*
3314 * Setup function pointers for generic logic in
3315 * target_core_fabric_configfs.c
3316 */
3317 .fabric_make_wwn = srpt_make_tport,
3318 .fabric_drop_wwn = srpt_drop_tport,
3319 .fabric_make_tpg = srpt_make_tpg,
3320 .fabric_drop_tpg = srpt_drop_tpg,
Christoph Hellwigc7d6a802015-04-13 19:51:14 +02003321 .fabric_init_nodeacl = srpt_init_nodeacl,
Christoph Hellwig9ac89282015-04-08 20:01:35 +02003322
3323 .tfc_wwn_attrs = srpt_wwn_attrs,
3324 .tfc_tpg_base_attrs = srpt_tpg_attrs,
3325 .tfc_tpg_attrib_attrs = srpt_tpg_attrib_attrs,
Bart Van Asschea42d9852011-10-14 01:30:46 +00003326};
3327
3328/**
3329 * srpt_init_module() - Kernel module initialization.
3330 *
3331 * Note: Since ib_register_client() registers callback functions, and since at
3332 * least one of these callback functions (srpt_add_one()) calls target core
3333 * functions, this driver must be registered with the target core before
3334 * ib_register_client() is called.
3335 */
3336static int __init srpt_init_module(void)
3337{
3338 int ret;
3339
3340 ret = -EINVAL;
3341 if (srp_max_req_size < MIN_MAX_REQ_SIZE) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04003342 pr_err("invalid value %d for kernel module parameter"
Bart Van Asschea42d9852011-10-14 01:30:46 +00003343 " srp_max_req_size -- must be at least %d.\n",
3344 srp_max_req_size, MIN_MAX_REQ_SIZE);
3345 goto out;
3346 }
3347
3348 if (srpt_srq_size < MIN_SRPT_SRQ_SIZE
3349 || srpt_srq_size > MAX_SRPT_SRQ_SIZE) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04003350 pr_err("invalid value %d for kernel module parameter"
Bart Van Asschea42d9852011-10-14 01:30:46 +00003351 " srpt_srq_size -- must be in the range [%d..%d].\n",
3352 srpt_srq_size, MIN_SRPT_SRQ_SIZE, MAX_SRPT_SRQ_SIZE);
3353 goto out;
3354 }
3355
Christoph Hellwig9ac89282015-04-08 20:01:35 +02003356 ret = target_register_template(&srpt_template);
3357 if (ret)
Bart Van Asschea42d9852011-10-14 01:30:46 +00003358 goto out;
Bart Van Asschea42d9852011-10-14 01:30:46 +00003359
3360 ret = ib_register_client(&srpt_client);
3361 if (ret) {
Doug Ledford9f5d32a2014-10-20 18:25:15 -04003362 pr_err("couldn't register IB client\n");
Bart Van Asschea42d9852011-10-14 01:30:46 +00003363 goto out_unregister_target;
3364 }
3365
3366 return 0;
3367
3368out_unregister_target:
Christoph Hellwig9ac89282015-04-08 20:01:35 +02003369 target_unregister_template(&srpt_template);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003370out:
3371 return ret;
3372}
3373
3374static void __exit srpt_cleanup_module(void)
3375{
3376 ib_unregister_client(&srpt_client);
Christoph Hellwig9ac89282015-04-08 20:01:35 +02003377 target_unregister_template(&srpt_template);
Bart Van Asschea42d9852011-10-14 01:30:46 +00003378}
3379
3380module_init(srpt_init_module);
3381module_exit(srpt_cleanup_module);