blob: 8603ae65213d114763795d8479201fc0b7021435 [file] [log] [blame]
James Bottomley2908d772006-08-29 09:22:51 -05001/*
2 * Serial Attached SCSI (SAS) Expander discovery and configuration
3 *
4 * Copyright (C) 2005 Adaptec, Inc. All rights reserved.
5 * Copyright (C) 2005 Luben Tuikov <luben_tuikov@adaptec.com>
6 *
7 * This file is licensed under GPLv2.
8 *
9 * This program is free software; you can redistribute it and/or
10 * modify it under the terms of the GNU General Public License as
11 * published by the Free Software Foundation; either version 2 of the
12 * License, or (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful, but
15 * WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
17 * General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
22 *
23 */
24
James Bottomley2908d772006-08-29 09:22:51 -050025#include <linux/scatterlist.h>
FUJITA Tomonoriba1fc172007-07-09 12:52:08 +090026#include <linux/blkdev.h>
James Bottomley2908d772006-08-29 09:22:51 -050027
28#include "sas_internal.h"
29
30#include <scsi/scsi_transport.h>
31#include <scsi/scsi_transport_sas.h>
32#include "../scsi_sas_internal.h"
33
34static int sas_discover_expander(struct domain_device *dev);
35static int sas_configure_routing(struct domain_device *dev, u8 *sas_addr);
36static int sas_configure_phy(struct domain_device *dev, int phy_id,
37 u8 *sas_addr, int include);
38static int sas_disable_routing(struct domain_device *dev, u8 *sas_addr);
39
James Bottomley2908d772006-08-29 09:22:51 -050040/* ---------- SMP task management ---------- */
41
42static void smp_task_timedout(unsigned long _task)
43{
44 struct sas_task *task = (void *) _task;
45 unsigned long flags;
46
47 spin_lock_irqsave(&task->task_state_lock, flags);
48 if (!(task->task_state_flags & SAS_TASK_STATE_DONE))
49 task->task_state_flags |= SAS_TASK_STATE_ABORTED;
50 spin_unlock_irqrestore(&task->task_state_lock, flags);
51
52 complete(&task->completion);
53}
54
55static void smp_task_done(struct sas_task *task)
56{
57 if (!del_timer(&task->timer))
58 return;
59 complete(&task->completion);
60}
61
62/* Give it some long enough timeout. In seconds. */
63#define SMP_TIMEOUT 10
64
65static int smp_execute_task(struct domain_device *dev, void *req, int req_size,
66 void *resp, int resp_size)
67{
malahal@us.ibm.com42961ee2006-10-04 17:34:03 -070068 int res, retry;
69 struct sas_task *task = NULL;
James Bottomley2908d772006-08-29 09:22:51 -050070 struct sas_internal *i =
71 to_sas_internal(dev->port->ha->core.shost->transportt);
72
malahal@us.ibm.com42961ee2006-10-04 17:34:03 -070073 for (retry = 0; retry < 3; retry++) {
74 task = sas_alloc_task(GFP_KERNEL);
75 if (!task)
76 return -ENOMEM;
James Bottomley2908d772006-08-29 09:22:51 -050077
malahal@us.ibm.com42961ee2006-10-04 17:34:03 -070078 task->dev = dev;
79 task->task_proto = dev->tproto;
80 sg_init_one(&task->smp_task.smp_req, req, req_size);
81 sg_init_one(&task->smp_task.smp_resp, resp, resp_size);
James Bottomley2908d772006-08-29 09:22:51 -050082
malahal@us.ibm.com42961ee2006-10-04 17:34:03 -070083 task->task_done = smp_task_done;
James Bottomley2908d772006-08-29 09:22:51 -050084
malahal@us.ibm.com42961ee2006-10-04 17:34:03 -070085 task->timer.data = (unsigned long) task;
86 task->timer.function = smp_task_timedout;
87 task->timer.expires = jiffies + SMP_TIMEOUT*HZ;
88 add_timer(&task->timer);
James Bottomley2908d772006-08-29 09:22:51 -050089
malahal@us.ibm.com42961ee2006-10-04 17:34:03 -070090 res = i->dft->lldd_execute_task(task, 1, GFP_KERNEL);
James Bottomley2908d772006-08-29 09:22:51 -050091
malahal@us.ibm.com42961ee2006-10-04 17:34:03 -070092 if (res) {
93 del_timer(&task->timer);
94 SAS_DPRINTK("executing SMP task failed:%d\n", res);
James Bottomley2908d772006-08-29 09:22:51 -050095 goto ex_err;
96 }
malahal@us.ibm.com42961ee2006-10-04 17:34:03 -070097
98 wait_for_completion(&task->completion);
99 res = -ETASK;
100 if ((task->task_state_flags & SAS_TASK_STATE_ABORTED)) {
101 SAS_DPRINTK("smp task timed out or aborted\n");
102 i->dft->lldd_abort_task(task);
103 if (!(task->task_state_flags & SAS_TASK_STATE_DONE)) {
104 SAS_DPRINTK("SMP task aborted and not done\n");
105 goto ex_err;
106 }
107 }
108 if (task->task_status.resp == SAS_TASK_COMPLETE &&
109 task->task_status.stat == SAM_GOOD) {
110 res = 0;
111 break;
112 } else {
113 SAS_DPRINTK("%s: task to dev %016llx response: 0x%x "
114 "status 0x%x\n", __FUNCTION__,
115 SAS_ADDR(dev->sas_addr),
116 task->task_status.resp,
117 task->task_status.stat);
118 sas_free_task(task);
119 task = NULL;
120 }
James Bottomley2908d772006-08-29 09:22:51 -0500121 }
James Bottomley2908d772006-08-29 09:22:51 -0500122ex_err:
malahal@us.ibm.com42961ee2006-10-04 17:34:03 -0700123 BUG_ON(retry == 3 && task != NULL);
124 if (task != NULL) {
125 sas_free_task(task);
126 }
James Bottomley2908d772006-08-29 09:22:51 -0500127 return res;
128}
129
130/* ---------- Allocations ---------- */
131
132static inline void *alloc_smp_req(int size)
133{
134 u8 *p = kzalloc(size, GFP_KERNEL);
135 if (p)
136 p[0] = SMP_REQUEST;
137 return p;
138}
139
140static inline void *alloc_smp_resp(int size)
141{
142 return kzalloc(size, GFP_KERNEL);
143}
144
145/* ---------- Expander configuration ---------- */
146
147static void sas_set_ex_phy(struct domain_device *dev, int phy_id,
148 void *disc_resp)
149{
150 struct expander_device *ex = &dev->ex_dev;
151 struct ex_phy *phy = &ex->ex_phy[phy_id];
152 struct smp_resp *resp = disc_resp;
153 struct discover_resp *dr = &resp->disc;
154 struct sas_rphy *rphy = dev->rphy;
155 int rediscover = (phy->phy != NULL);
156
157 if (!rediscover) {
158 phy->phy = sas_phy_alloc(&rphy->dev, phy_id);
159
160 /* FIXME: error_handling */
161 BUG_ON(!phy->phy);
162 }
163
164 switch (resp->result) {
165 case SMP_RESP_PHY_VACANT:
166 phy->phy_state = PHY_VACANT;
167 return;
168 default:
169 phy->phy_state = PHY_NOT_PRESENT;
170 return;
171 case SMP_RESP_FUNC_ACC:
172 phy->phy_state = PHY_EMPTY; /* do not know yet */
173 break;
174 }
175
176 phy->phy_id = phy_id;
177 phy->attached_dev_type = dr->attached_dev_type;
178 phy->linkrate = dr->linkrate;
179 phy->attached_sata_host = dr->attached_sata_host;
180 phy->attached_sata_dev = dr->attached_sata_dev;
181 phy->attached_sata_ps = dr->attached_sata_ps;
182 phy->attached_iproto = dr->iproto << 1;
183 phy->attached_tproto = dr->tproto << 1;
184 memcpy(phy->attached_sas_addr, dr->attached_sas_addr, SAS_ADDR_SIZE);
185 phy->attached_phy_id = dr->attached_phy_id;
186 phy->phy_change_count = dr->change_count;
187 phy->routing_attr = dr->routing_attr;
188 phy->virtual = dr->virtual;
189 phy->last_da_index = -1;
190
191 phy->phy->identify.initiator_port_protocols = phy->attached_iproto;
192 phy->phy->identify.target_port_protocols = phy->attached_tproto;
193 phy->phy->identify.phy_identifier = phy_id;
James Bottomleya01e70e2006-09-06 19:28:07 -0500194 phy->phy->minimum_linkrate_hw = dr->hmin_linkrate;
195 phy->phy->maximum_linkrate_hw = dr->hmax_linkrate;
196 phy->phy->minimum_linkrate = dr->pmin_linkrate;
197 phy->phy->maximum_linkrate = dr->pmax_linkrate;
James Bottomley88edf742006-09-06 17:36:13 -0500198 phy->phy->negotiated_linkrate = phy->linkrate;
James Bottomley2908d772006-08-29 09:22:51 -0500199
200 if (!rediscover)
201 sas_phy_add(phy->phy);
202
203 SAS_DPRINTK("ex %016llx phy%02d:%c attached: %016llx\n",
204 SAS_ADDR(dev->sas_addr), phy->phy_id,
205 phy->routing_attr == TABLE_ROUTING ? 'T' :
206 phy->routing_attr == DIRECT_ROUTING ? 'D' :
207 phy->routing_attr == SUBTRACTIVE_ROUTING ? 'S' : '?',
208 SAS_ADDR(phy->attached_sas_addr));
209
210 return;
211}
212
213#define DISCOVER_REQ_SIZE 16
214#define DISCOVER_RESP_SIZE 56
215
James Bottomley1acce192006-08-22 12:39:19 -0500216static int sas_ex_phy_discover_helper(struct domain_device *dev, u8 *disc_req,
217 u8 *disc_resp, int single)
218{
219 int i, res;
220
221 disc_req[9] = single;
222 for (i = 1 ; i < 3; i++) {
223 struct discover_resp *dr;
224
225 res = smp_execute_task(dev, disc_req, DISCOVER_REQ_SIZE,
226 disc_resp, DISCOVER_RESP_SIZE);
227 if (res)
228 return res;
229 /* This is detecting a failure to transmit inital
230 * dev to host FIS as described in section G.5 of
231 * sas-2 r 04b */
232 dr = &((struct smp_resp *)disc_resp)->disc;
233 if (!(dr->attached_dev_type == 0 &&
234 dr->attached_sata_dev))
235 break;
236 /* In order to generate the dev to host FIS, we
237 * send a link reset to the expander port */
James Bottomley38e2f032006-09-07 15:52:09 -0500238 sas_smp_phy_control(dev, single, PHY_FUNC_LINK_RESET, NULL);
James Bottomley1acce192006-08-22 12:39:19 -0500239 /* Wait for the reset to trigger the negotiation */
240 msleep(500);
241 }
242 sas_set_ex_phy(dev, single, disc_resp);
243 return 0;
244}
245
James Bottomley2908d772006-08-29 09:22:51 -0500246static int sas_ex_phy_discover(struct domain_device *dev, int single)
247{
248 struct expander_device *ex = &dev->ex_dev;
249 int res = 0;
250 u8 *disc_req;
251 u8 *disc_resp;
252
253 disc_req = alloc_smp_req(DISCOVER_REQ_SIZE);
254 if (!disc_req)
255 return -ENOMEM;
256
257 disc_resp = alloc_smp_req(DISCOVER_RESP_SIZE);
258 if (!disc_resp) {
259 kfree(disc_req);
260 return -ENOMEM;
261 }
262
263 disc_req[1] = SMP_DISCOVER;
264
265 if (0 <= single && single < ex->num_phys) {
James Bottomley1acce192006-08-22 12:39:19 -0500266 res = sas_ex_phy_discover_helper(dev, disc_req, disc_resp, single);
James Bottomley2908d772006-08-29 09:22:51 -0500267 } else {
268 int i;
269
270 for (i = 0; i < ex->num_phys; i++) {
James Bottomley1acce192006-08-22 12:39:19 -0500271 res = sas_ex_phy_discover_helper(dev, disc_req,
272 disc_resp, i);
James Bottomley2908d772006-08-29 09:22:51 -0500273 if (res)
274 goto out_err;
James Bottomley2908d772006-08-29 09:22:51 -0500275 }
276 }
277out_err:
278 kfree(disc_resp);
279 kfree(disc_req);
280 return res;
281}
282
283static int sas_expander_discover(struct domain_device *dev)
284{
285 struct expander_device *ex = &dev->ex_dev;
286 int res = -ENOMEM;
287
288 ex->ex_phy = kzalloc(sizeof(*ex->ex_phy)*ex->num_phys, GFP_KERNEL);
289 if (!ex->ex_phy)
290 return -ENOMEM;
291
292 res = sas_ex_phy_discover(dev, -1);
293 if (res)
294 goto out_err;
295
296 return 0;
297 out_err:
298 kfree(ex->ex_phy);
299 ex->ex_phy = NULL;
300 return res;
301}
302
303#define MAX_EXPANDER_PHYS 128
304
305static void ex_assign_report_general(struct domain_device *dev,
306 struct smp_resp *resp)
307{
308 struct report_general_resp *rg = &resp->rg;
309
310 dev->ex_dev.ex_change_count = be16_to_cpu(rg->change_count);
311 dev->ex_dev.max_route_indexes = be16_to_cpu(rg->route_indexes);
312 dev->ex_dev.num_phys = min(rg->num_phys, (u8)MAX_EXPANDER_PHYS);
313 dev->ex_dev.conf_route_table = rg->conf_route_table;
314 dev->ex_dev.configuring = rg->configuring;
315 memcpy(dev->ex_dev.enclosure_logical_id, rg->enclosure_logical_id, 8);
316}
317
318#define RG_REQ_SIZE 8
319#define RG_RESP_SIZE 32
320
321static int sas_ex_general(struct domain_device *dev)
322{
323 u8 *rg_req;
324 struct smp_resp *rg_resp;
325 int res;
326 int i;
327
328 rg_req = alloc_smp_req(RG_REQ_SIZE);
329 if (!rg_req)
330 return -ENOMEM;
331
332 rg_resp = alloc_smp_resp(RG_RESP_SIZE);
333 if (!rg_resp) {
334 kfree(rg_req);
335 return -ENOMEM;
336 }
337
338 rg_req[1] = SMP_REPORT_GENERAL;
339
340 for (i = 0; i < 5; i++) {
341 res = smp_execute_task(dev, rg_req, RG_REQ_SIZE, rg_resp,
342 RG_RESP_SIZE);
343
344 if (res) {
345 SAS_DPRINTK("RG to ex %016llx failed:0x%x\n",
346 SAS_ADDR(dev->sas_addr), res);
347 goto out;
348 } else if (rg_resp->result != SMP_RESP_FUNC_ACC) {
349 SAS_DPRINTK("RG:ex %016llx returned SMP result:0x%x\n",
350 SAS_ADDR(dev->sas_addr), rg_resp->result);
351 res = rg_resp->result;
352 goto out;
353 }
354
355 ex_assign_report_general(dev, rg_resp);
356
357 if (dev->ex_dev.configuring) {
358 SAS_DPRINTK("RG: ex %llx self-configuring...\n",
359 SAS_ADDR(dev->sas_addr));
360 schedule_timeout_interruptible(5*HZ);
361 } else
362 break;
363 }
364out:
365 kfree(rg_req);
366 kfree(rg_resp);
367 return res;
368}
369
370static void ex_assign_manuf_info(struct domain_device *dev, void
371 *_mi_resp)
372{
373 u8 *mi_resp = _mi_resp;
374 struct sas_rphy *rphy = dev->rphy;
375 struct sas_expander_device *edev = rphy_to_expander_device(rphy);
376
377 memcpy(edev->vendor_id, mi_resp + 12, SAS_EXPANDER_VENDOR_ID_LEN);
378 memcpy(edev->product_id, mi_resp + 20, SAS_EXPANDER_PRODUCT_ID_LEN);
379 memcpy(edev->product_rev, mi_resp + 36,
380 SAS_EXPANDER_PRODUCT_REV_LEN);
381
382 if (mi_resp[8] & 1) {
383 memcpy(edev->component_vendor_id, mi_resp + 40,
384 SAS_EXPANDER_COMPONENT_VENDOR_ID_LEN);
385 edev->component_id = mi_resp[48] << 8 | mi_resp[49];
386 edev->component_revision_id = mi_resp[50];
387 }
388}
389
390#define MI_REQ_SIZE 8
391#define MI_RESP_SIZE 64
392
393static int sas_ex_manuf_info(struct domain_device *dev)
394{
395 u8 *mi_req;
396 u8 *mi_resp;
397 int res;
398
399 mi_req = alloc_smp_req(MI_REQ_SIZE);
400 if (!mi_req)
401 return -ENOMEM;
402
403 mi_resp = alloc_smp_resp(MI_RESP_SIZE);
404 if (!mi_resp) {
405 kfree(mi_req);
406 return -ENOMEM;
407 }
408
409 mi_req[1] = SMP_REPORT_MANUF_INFO;
410
411 res = smp_execute_task(dev, mi_req, MI_REQ_SIZE, mi_resp,MI_RESP_SIZE);
412 if (res) {
413 SAS_DPRINTK("MI: ex %016llx failed:0x%x\n",
414 SAS_ADDR(dev->sas_addr), res);
415 goto out;
416 } else if (mi_resp[2] != SMP_RESP_FUNC_ACC) {
417 SAS_DPRINTK("MI ex %016llx returned SMP result:0x%x\n",
418 SAS_ADDR(dev->sas_addr), mi_resp[2]);
419 goto out;
420 }
421
422 ex_assign_manuf_info(dev, mi_resp);
423out:
424 kfree(mi_req);
425 kfree(mi_resp);
426 return res;
427}
428
429#define PC_REQ_SIZE 44
430#define PC_RESP_SIZE 8
431
432int sas_smp_phy_control(struct domain_device *dev, int phy_id,
James Bottomleya01e70e2006-09-06 19:28:07 -0500433 enum phy_func phy_func,
434 struct sas_phy_linkrates *rates)
James Bottomley2908d772006-08-29 09:22:51 -0500435{
436 u8 *pc_req;
437 u8 *pc_resp;
438 int res;
439
440 pc_req = alloc_smp_req(PC_REQ_SIZE);
441 if (!pc_req)
442 return -ENOMEM;
443
444 pc_resp = alloc_smp_resp(PC_RESP_SIZE);
445 if (!pc_resp) {
446 kfree(pc_req);
447 return -ENOMEM;
448 }
449
450 pc_req[1] = SMP_PHY_CONTROL;
451 pc_req[9] = phy_id;
452 pc_req[10]= phy_func;
James Bottomleya01e70e2006-09-06 19:28:07 -0500453 if (rates) {
454 pc_req[32] = rates->minimum_linkrate << 4;
455 pc_req[33] = rates->maximum_linkrate << 4;
456 }
James Bottomley2908d772006-08-29 09:22:51 -0500457
458 res = smp_execute_task(dev, pc_req, PC_REQ_SIZE, pc_resp,PC_RESP_SIZE);
459
460 kfree(pc_resp);
461 kfree(pc_req);
462 return res;
463}
464
465static void sas_ex_disable_phy(struct domain_device *dev, int phy_id)
466{
467 struct expander_device *ex = &dev->ex_dev;
468 struct ex_phy *phy = &ex->ex_phy[phy_id];
469
James Bottomleya01e70e2006-09-06 19:28:07 -0500470 sas_smp_phy_control(dev, phy_id, PHY_FUNC_DISABLE, NULL);
James Bottomley88edf742006-09-06 17:36:13 -0500471 phy->linkrate = SAS_PHY_DISABLED;
James Bottomley2908d772006-08-29 09:22:51 -0500472}
473
474static void sas_ex_disable_port(struct domain_device *dev, u8 *sas_addr)
475{
476 struct expander_device *ex = &dev->ex_dev;
477 int i;
478
479 for (i = 0; i < ex->num_phys; i++) {
480 struct ex_phy *phy = &ex->ex_phy[i];
481
482 if (phy->phy_state == PHY_VACANT ||
483 phy->phy_state == PHY_NOT_PRESENT)
484 continue;
485
486 if (SAS_ADDR(phy->attached_sas_addr) == SAS_ADDR(sas_addr))
487 sas_ex_disable_phy(dev, i);
488 }
489}
490
491static int sas_dev_present_in_domain(struct asd_sas_port *port,
492 u8 *sas_addr)
493{
494 struct domain_device *dev;
495
496 if (SAS_ADDR(port->sas_addr) == SAS_ADDR(sas_addr))
497 return 1;
498 list_for_each_entry(dev, &port->dev_list, dev_list_node) {
499 if (SAS_ADDR(dev->sas_addr) == SAS_ADDR(sas_addr))
500 return 1;
501 }
502 return 0;
503}
504
505#define RPEL_REQ_SIZE 16
506#define RPEL_RESP_SIZE 32
507int sas_smp_get_phy_events(struct sas_phy *phy)
508{
509 int res;
510 struct sas_rphy *rphy = dev_to_rphy(phy->dev.parent);
511 struct domain_device *dev = sas_find_dev_by_rphy(rphy);
512 u8 *req = alloc_smp_req(RPEL_REQ_SIZE);
513 u8 *resp = kzalloc(RPEL_RESP_SIZE, GFP_KERNEL);
514
515 if (!resp)
516 return -ENOMEM;
517
518 req[1] = SMP_REPORT_PHY_ERR_LOG;
519 req[9] = phy->number;
520
521 res = smp_execute_task(dev, req, RPEL_REQ_SIZE,
522 resp, RPEL_RESP_SIZE);
523
524 if (!res)
525 goto out;
526
527 phy->invalid_dword_count = scsi_to_u32(&resp[12]);
528 phy->running_disparity_error_count = scsi_to_u32(&resp[16]);
529 phy->loss_of_dword_sync_count = scsi_to_u32(&resp[20]);
530 phy->phy_reset_problem_count = scsi_to_u32(&resp[24]);
531
532 out:
533 kfree(resp);
534 return res;
535
536}
537
James Bottomleyb9142172007-07-22 13:15:55 -0500538#ifdef CONFIG_SCSI_SAS_ATA
539
James Bottomley2908d772006-08-29 09:22:51 -0500540#define RPS_REQ_SIZE 16
541#define RPS_RESP_SIZE 60
542
543static int sas_get_report_phy_sata(struct domain_device *dev,
544 int phy_id,
545 struct smp_resp *rps_resp)
546{
547 int res;
548 u8 *rps_req = alloc_smp_req(RPS_REQ_SIZE);
James Bottomley1acce192006-08-22 12:39:19 -0500549 u8 *resp = (u8 *)rps_resp;
James Bottomley2908d772006-08-29 09:22:51 -0500550
551 if (!rps_req)
552 return -ENOMEM;
553
554 rps_req[1] = SMP_REPORT_PHY_SATA;
555 rps_req[9] = phy_id;
556
557 res = smp_execute_task(dev, rps_req, RPS_REQ_SIZE,
558 rps_resp, RPS_RESP_SIZE);
559
James Bottomley1acce192006-08-22 12:39:19 -0500560 /* 0x34 is the FIS type for the D2H fis. There's a potential
561 * standards cockup here. sas-2 explicitly specifies the FIS
562 * should be encoded so that FIS type is in resp[24].
563 * However, some expanders endian reverse this. Undo the
564 * reversal here */
565 if (!res && resp[27] == 0x34 && resp[24] != 0x34) {
566 int i;
567
568 for (i = 0; i < 5; i++) {
569 int j = 24 + (i*4);
570 u8 a, b;
571 a = resp[j + 0];
572 b = resp[j + 1];
573 resp[j + 0] = resp[j + 3];
574 resp[j + 1] = resp[j + 2];
575 resp[j + 2] = b;
576 resp[j + 3] = a;
577 }
578 }
579
James Bottomley2908d772006-08-29 09:22:51 -0500580 kfree(rps_req);
James Bottomley1acce192006-08-22 12:39:19 -0500581 return res;
James Bottomley2908d772006-08-29 09:22:51 -0500582}
James Bottomleyb9142172007-07-22 13:15:55 -0500583#endif
James Bottomley2908d772006-08-29 09:22:51 -0500584
585static void sas_ex_get_linkrate(struct domain_device *parent,
586 struct domain_device *child,
587 struct ex_phy *parent_phy)
588{
589 struct expander_device *parent_ex = &parent->ex_dev;
590 struct sas_port *port;
591 int i;
592
593 child->pathways = 0;
594
595 port = parent_phy->port;
596
597 for (i = 0; i < parent_ex->num_phys; i++) {
598 struct ex_phy *phy = &parent_ex->ex_phy[i];
599
600 if (phy->phy_state == PHY_VACANT ||
601 phy->phy_state == PHY_NOT_PRESENT)
602 continue;
603
604 if (SAS_ADDR(phy->attached_sas_addr) ==
605 SAS_ADDR(child->sas_addr)) {
606
607 child->min_linkrate = min(parent->min_linkrate,
608 phy->linkrate);
609 child->max_linkrate = max(parent->max_linkrate,
610 phy->linkrate);
611 child->pathways++;
612 sas_port_add_phy(port, phy->phy);
613 }
614 }
615 child->linkrate = min(parent_phy->linkrate, child->max_linkrate);
616 child->pathways = min(child->pathways, parent->pathways);
617}
618
619static struct domain_device *sas_ex_discover_end_dev(
620 struct domain_device *parent, int phy_id)
621{
622 struct expander_device *parent_ex = &parent->ex_dev;
623 struct ex_phy *phy = &parent_ex->ex_phy[phy_id];
624 struct domain_device *child = NULL;
625 struct sas_rphy *rphy;
626 int res;
627
628 if (phy->attached_sata_host || phy->attached_sata_ps)
629 return NULL;
630
631 child = kzalloc(sizeof(*child), GFP_KERNEL);
632 if (!child)
633 return NULL;
634
635 child->parent = parent;
636 child->port = parent->port;
637 child->iproto = phy->attached_iproto;
638 memcpy(child->sas_addr, phy->attached_sas_addr, SAS_ADDR_SIZE);
639 sas_hash_addr(child->hashed_sas_addr, child->sas_addr);
James Bottomley024879e2006-11-15 18:03:07 -0600640 if (!phy->port) {
641 phy->port = sas_port_alloc(&parent->rphy->dev, phy_id);
642 if (unlikely(!phy->port))
643 goto out_err;
644 if (unlikely(sas_port_add(phy->port) != 0)) {
645 sas_port_free(phy->port);
646 goto out_err;
647 }
648 }
James Bottomley2908d772006-08-29 09:22:51 -0500649 sas_ex_get_linkrate(parent, child, phy);
650
James Bottomleyb9142172007-07-22 13:15:55 -0500651#ifdef CONFIG_SCSI_SAS_ATA
James Bottomley2908d772006-08-29 09:22:51 -0500652 if ((phy->attached_tproto & SAS_PROTO_STP) || phy->attached_sata_dev) {
653 child->dev_type = SATA_DEV;
654 if (phy->attached_tproto & SAS_PROTO_STP)
655 child->tproto = phy->attached_tproto;
656 if (phy->attached_sata_dev)
657 child->tproto |= SATA_DEV;
658 res = sas_get_report_phy_sata(parent, phy_id,
659 &child->sata_dev.rps_resp);
660 if (res) {
661 SAS_DPRINTK("report phy sata to %016llx:0x%x returned "
662 "0x%x\n", SAS_ADDR(parent->sas_addr),
663 phy_id, res);
James Bottomley024879e2006-11-15 18:03:07 -0600664 goto out_free;
James Bottomley2908d772006-08-29 09:22:51 -0500665 }
666 memcpy(child->frame_rcvd, &child->sata_dev.rps_resp.rps.fis,
667 sizeof(struct dev_to_host_fis));
James Bottomley1acce192006-08-22 12:39:19 -0500668
669 rphy = sas_end_device_alloc(phy->port);
James Bottomley528fd552006-10-16 10:57:05 -0500670 if (unlikely(!rphy))
671 goto out_free;
James Bottomley1acce192006-08-22 12:39:19 -0500672
James Bottomley2908d772006-08-29 09:22:51 -0500673 sas_init_dev(child);
James Bottomley1acce192006-08-22 12:39:19 -0500674
675 child->rphy = rphy;
676
James Bottomley9d720d82007-07-16 13:15:51 -0500677 spin_lock_irq(&parent->port->dev_list_lock);
James Bottomley1acce192006-08-22 12:39:19 -0500678 list_add_tail(&child->dev_list_node, &parent->port->dev_list);
James Bottomley9d720d82007-07-16 13:15:51 -0500679 spin_unlock_irq(&parent->port->dev_list_lock);
James Bottomley1acce192006-08-22 12:39:19 -0500680
James Bottomley2908d772006-08-29 09:22:51 -0500681 res = sas_discover_sata(child);
682 if (res) {
683 SAS_DPRINTK("sas_discover_sata() for device %16llx at "
684 "%016llx:0x%x returned 0x%x\n",
685 SAS_ADDR(child->sas_addr),
686 SAS_ADDR(parent->sas_addr), phy_id, res);
James Bottomley1acce192006-08-22 12:39:19 -0500687 goto out_list_del;
James Bottomley2908d772006-08-29 09:22:51 -0500688 }
James Bottomleyb9142172007-07-22 13:15:55 -0500689 } else
690#endif
691 if (phy->attached_tproto & SAS_PROTO_SSP) {
James Bottomley2908d772006-08-29 09:22:51 -0500692 child->dev_type = SAS_END_DEV;
693 rphy = sas_end_device_alloc(phy->port);
694 /* FIXME: error handling */
James Bottomley024879e2006-11-15 18:03:07 -0600695 if (unlikely(!rphy))
696 goto out_free;
James Bottomley2908d772006-08-29 09:22:51 -0500697 child->tproto = phy->attached_tproto;
698 sas_init_dev(child);
699
700 child->rphy = rphy;
701 sas_fill_in_rphy(child, rphy);
702
James Bottomley9d720d82007-07-16 13:15:51 -0500703 spin_lock_irq(&parent->port->dev_list_lock);
James Bottomley2908d772006-08-29 09:22:51 -0500704 list_add_tail(&child->dev_list_node, &parent->port->dev_list);
James Bottomley9d720d82007-07-16 13:15:51 -0500705 spin_unlock_irq(&parent->port->dev_list_lock);
James Bottomley2908d772006-08-29 09:22:51 -0500706
707 res = sas_discover_end_dev(child);
708 if (res) {
709 SAS_DPRINTK("sas_discover_end_dev() for device %16llx "
710 "at %016llx:0x%x returned 0x%x\n",
711 SAS_ADDR(child->sas_addr),
712 SAS_ADDR(parent->sas_addr), phy_id, res);
James Bottomley024879e2006-11-15 18:03:07 -0600713 goto out_list_del;
James Bottomley2908d772006-08-29 09:22:51 -0500714 }
715 } else {
716 SAS_DPRINTK("target proto 0x%x at %016llx:0x%x not handled\n",
717 phy->attached_tproto, SAS_ADDR(parent->sas_addr),
718 phy_id);
James Bottomleyb9142172007-07-22 13:15:55 -0500719 goto out_free;
James Bottomley2908d772006-08-29 09:22:51 -0500720 }
721
722 list_add_tail(&child->siblings, &parent_ex->children);
723 return child;
James Bottomley024879e2006-11-15 18:03:07 -0600724
725 out_list_del:
Darrick J. Wong6f63caa2007-01-26 14:08:43 -0800726 sas_rphy_free(child->rphy);
727 child->rphy = NULL;
James Bottomley024879e2006-11-15 18:03:07 -0600728 list_del(&child->dev_list_node);
James Bottomley024879e2006-11-15 18:03:07 -0600729 out_free:
730 sas_port_delete(phy->port);
731 out_err:
732 phy->port = NULL;
733 kfree(child);
734 return NULL;
James Bottomley2908d772006-08-29 09:22:51 -0500735}
736
Darrick J. Wong423f7cf2007-01-30 12:07:27 -0800737/* See if this phy is part of a wide port */
738static int sas_ex_join_wide_port(struct domain_device *parent, int phy_id)
739{
740 struct ex_phy *phy = &parent->ex_dev.ex_phy[phy_id];
741 int i;
742
743 for (i = 0; i < parent->ex_dev.num_phys; i++) {
744 struct ex_phy *ephy = &parent->ex_dev.ex_phy[i];
745
746 if (ephy == phy)
747 continue;
748
749 if (!memcmp(phy->attached_sas_addr, ephy->attached_sas_addr,
750 SAS_ADDR_SIZE) && ephy->port) {
751 sas_port_add_phy(ephy->port, phy->phy);
752 phy->phy_state = PHY_DEVICE_DISCOVERED;
753 return 0;
754 }
755 }
756
757 return -ENODEV;
758}
759
James Bottomley2908d772006-08-29 09:22:51 -0500760static struct domain_device *sas_ex_discover_expander(
761 struct domain_device *parent, int phy_id)
762{
763 struct sas_expander_device *parent_ex = rphy_to_expander_device(parent->rphy);
764 struct ex_phy *phy = &parent->ex_dev.ex_phy[phy_id];
765 struct domain_device *child = NULL;
766 struct sas_rphy *rphy;
767 struct sas_expander_device *edev;
768 struct asd_sas_port *port;
769 int res;
770
771 if (phy->routing_attr == DIRECT_ROUTING) {
772 SAS_DPRINTK("ex %016llx:0x%x:D <--> ex %016llx:0x%x is not "
773 "allowed\n",
774 SAS_ADDR(parent->sas_addr), phy_id,
775 SAS_ADDR(phy->attached_sas_addr),
776 phy->attached_phy_id);
777 return NULL;
778 }
779 child = kzalloc(sizeof(*child), GFP_KERNEL);
780 if (!child)
781 return NULL;
782
783 phy->port = sas_port_alloc(&parent->rphy->dev, phy_id);
784 /* FIXME: better error handling */
785 BUG_ON(sas_port_add(phy->port) != 0);
786
787
788 switch (phy->attached_dev_type) {
789 case EDGE_DEV:
790 rphy = sas_expander_alloc(phy->port,
791 SAS_EDGE_EXPANDER_DEVICE);
792 break;
793 case FANOUT_DEV:
794 rphy = sas_expander_alloc(phy->port,
795 SAS_FANOUT_EXPANDER_DEVICE);
796 break;
797 default:
798 rphy = NULL; /* shut gcc up */
799 BUG();
800 }
801 port = parent->port;
802 child->rphy = rphy;
803 edev = rphy_to_expander_device(rphy);
804 child->dev_type = phy->attached_dev_type;
805 child->parent = parent;
806 child->port = port;
807 child->iproto = phy->attached_iproto;
808 child->tproto = phy->attached_tproto;
809 memcpy(child->sas_addr, phy->attached_sas_addr, SAS_ADDR_SIZE);
810 sas_hash_addr(child->hashed_sas_addr, child->sas_addr);
811 sas_ex_get_linkrate(parent, child, phy);
812 edev->level = parent_ex->level + 1;
813 parent->port->disc.max_level = max(parent->port->disc.max_level,
814 edev->level);
815 sas_init_dev(child);
816 sas_fill_in_rphy(child, rphy);
817 sas_rphy_add(rphy);
818
James Bottomley9d720d82007-07-16 13:15:51 -0500819 spin_lock_irq(&parent->port->dev_list_lock);
James Bottomley2908d772006-08-29 09:22:51 -0500820 list_add_tail(&child->dev_list_node, &parent->port->dev_list);
James Bottomley9d720d82007-07-16 13:15:51 -0500821 spin_unlock_irq(&parent->port->dev_list_lock);
James Bottomley2908d772006-08-29 09:22:51 -0500822
823 res = sas_discover_expander(child);
824 if (res) {
825 kfree(child);
826 return NULL;
827 }
828 list_add_tail(&child->siblings, &parent->ex_dev.children);
829 return child;
830}
831
832static int sas_ex_discover_dev(struct domain_device *dev, int phy_id)
833{
834 struct expander_device *ex = &dev->ex_dev;
835 struct ex_phy *ex_phy = &ex->ex_phy[phy_id];
836 struct domain_device *child = NULL;
837 int res = 0;
838
839 /* Phy state */
James Bottomley88edf742006-09-06 17:36:13 -0500840 if (ex_phy->linkrate == SAS_SATA_SPINUP_HOLD) {
James Bottomleya01e70e2006-09-06 19:28:07 -0500841 if (!sas_smp_phy_control(dev, phy_id, PHY_FUNC_LINK_RESET, NULL))
James Bottomley2908d772006-08-29 09:22:51 -0500842 res = sas_ex_phy_discover(dev, phy_id);
843 if (res)
844 return res;
845 }
846
847 /* Parent and domain coherency */
848 if (!dev->parent && (SAS_ADDR(ex_phy->attached_sas_addr) ==
849 SAS_ADDR(dev->port->sas_addr))) {
850 sas_add_parent_port(dev, phy_id);
851 return 0;
852 }
853 if (dev->parent && (SAS_ADDR(ex_phy->attached_sas_addr) ==
854 SAS_ADDR(dev->parent->sas_addr))) {
855 sas_add_parent_port(dev, phy_id);
856 if (ex_phy->routing_attr == TABLE_ROUTING)
857 sas_configure_phy(dev, phy_id, dev->port->sas_addr, 1);
858 return 0;
859 }
860
861 if (sas_dev_present_in_domain(dev->port, ex_phy->attached_sas_addr))
862 sas_ex_disable_port(dev, ex_phy->attached_sas_addr);
863
864 if (ex_phy->attached_dev_type == NO_DEVICE) {
865 if (ex_phy->routing_attr == DIRECT_ROUTING) {
866 memset(ex_phy->attached_sas_addr, 0, SAS_ADDR_SIZE);
867 sas_configure_routing(dev, ex_phy->attached_sas_addr);
868 }
869 return 0;
James Bottomley88edf742006-09-06 17:36:13 -0500870 } else if (ex_phy->linkrate == SAS_LINK_RATE_UNKNOWN)
James Bottomley2908d772006-08-29 09:22:51 -0500871 return 0;
872
873 if (ex_phy->attached_dev_type != SAS_END_DEV &&
874 ex_phy->attached_dev_type != FANOUT_DEV &&
875 ex_phy->attached_dev_type != EDGE_DEV) {
876 SAS_DPRINTK("unknown device type(0x%x) attached to ex %016llx "
877 "phy 0x%x\n", ex_phy->attached_dev_type,
878 SAS_ADDR(dev->sas_addr),
879 phy_id);
880 return 0;
881 }
882
883 res = sas_configure_routing(dev, ex_phy->attached_sas_addr);
884 if (res) {
885 SAS_DPRINTK("configure routing for dev %016llx "
886 "reported 0x%x. Forgotten\n",
887 SAS_ADDR(ex_phy->attached_sas_addr), res);
888 sas_disable_routing(dev, ex_phy->attached_sas_addr);
889 return res;
890 }
891
Darrick J. Wong423f7cf2007-01-30 12:07:27 -0800892 res = sas_ex_join_wide_port(dev, phy_id);
893 if (!res) {
894 SAS_DPRINTK("Attaching ex phy%d to wide port %016llx\n",
895 phy_id, SAS_ADDR(ex_phy->attached_sas_addr));
896 return res;
897 }
898
James Bottomley2908d772006-08-29 09:22:51 -0500899 switch (ex_phy->attached_dev_type) {
900 case SAS_END_DEV:
901 child = sas_ex_discover_end_dev(dev, phy_id);
902 break;
903 case FANOUT_DEV:
904 if (SAS_ADDR(dev->port->disc.fanout_sas_addr)) {
905 SAS_DPRINTK("second fanout expander %016llx phy 0x%x "
906 "attached to ex %016llx phy 0x%x\n",
907 SAS_ADDR(ex_phy->attached_sas_addr),
908 ex_phy->attached_phy_id,
909 SAS_ADDR(dev->sas_addr),
910 phy_id);
911 sas_ex_disable_phy(dev, phy_id);
912 break;
913 } else
914 memcpy(dev->port->disc.fanout_sas_addr,
915 ex_phy->attached_sas_addr, SAS_ADDR_SIZE);
916 /* fallthrough */
917 case EDGE_DEV:
918 child = sas_ex_discover_expander(dev, phy_id);
919 break;
920 default:
921 break;
922 }
923
924 if (child) {
925 int i;
926
927 for (i = 0; i < ex->num_phys; i++) {
928 if (ex->ex_phy[i].phy_state == PHY_VACANT ||
929 ex->ex_phy[i].phy_state == PHY_NOT_PRESENT)
930 continue;
931
932 if (SAS_ADDR(ex->ex_phy[i].attached_sas_addr) ==
933 SAS_ADDR(child->sas_addr))
934 ex->ex_phy[i].phy_state= PHY_DEVICE_DISCOVERED;
935 }
936 }
937
938 return res;
939}
940
941static int sas_find_sub_addr(struct domain_device *dev, u8 *sub_addr)
942{
943 struct expander_device *ex = &dev->ex_dev;
944 int i;
945
946 for (i = 0; i < ex->num_phys; i++) {
947 struct ex_phy *phy = &ex->ex_phy[i];
948
949 if (phy->phy_state == PHY_VACANT ||
950 phy->phy_state == PHY_NOT_PRESENT)
951 continue;
952
953 if ((phy->attached_dev_type == EDGE_DEV ||
954 phy->attached_dev_type == FANOUT_DEV) &&
955 phy->routing_attr == SUBTRACTIVE_ROUTING) {
956
957 memcpy(sub_addr, phy->attached_sas_addr,SAS_ADDR_SIZE);
958
959 return 1;
960 }
961 }
962 return 0;
963}
964
965static int sas_check_level_subtractive_boundary(struct domain_device *dev)
966{
967 struct expander_device *ex = &dev->ex_dev;
968 struct domain_device *child;
969 u8 sub_addr[8] = {0, };
970
971 list_for_each_entry(child, &ex->children, siblings) {
972 if (child->dev_type != EDGE_DEV &&
973 child->dev_type != FANOUT_DEV)
974 continue;
975 if (sub_addr[0] == 0) {
976 sas_find_sub_addr(child, sub_addr);
977 continue;
978 } else {
979 u8 s2[8];
980
981 if (sas_find_sub_addr(child, s2) &&
982 (SAS_ADDR(sub_addr) != SAS_ADDR(s2))) {
983
984 SAS_DPRINTK("ex %016llx->%016llx-?->%016llx "
985 "diverges from subtractive "
986 "boundary %016llx\n",
987 SAS_ADDR(dev->sas_addr),
988 SAS_ADDR(child->sas_addr),
989 SAS_ADDR(s2),
990 SAS_ADDR(sub_addr));
991
992 sas_ex_disable_port(child, s2);
993 }
994 }
995 }
996 return 0;
997}
998/**
999 * sas_ex_discover_devices -- discover devices attached to this expander
1000 * dev: pointer to the expander domain device
1001 * single: if you want to do a single phy, else set to -1;
1002 *
1003 * Configure this expander for use with its devices and register the
1004 * devices of this expander.
1005 */
1006static int sas_ex_discover_devices(struct domain_device *dev, int single)
1007{
1008 struct expander_device *ex = &dev->ex_dev;
1009 int i = 0, end = ex->num_phys;
1010 int res = 0;
1011
1012 if (0 <= single && single < end) {
1013 i = single;
1014 end = i+1;
1015 }
1016
1017 for ( ; i < end; i++) {
1018 struct ex_phy *ex_phy = &ex->ex_phy[i];
1019
1020 if (ex_phy->phy_state == PHY_VACANT ||
1021 ex_phy->phy_state == PHY_NOT_PRESENT ||
1022 ex_phy->phy_state == PHY_DEVICE_DISCOVERED)
1023 continue;
1024
1025 switch (ex_phy->linkrate) {
James Bottomley88edf742006-09-06 17:36:13 -05001026 case SAS_PHY_DISABLED:
1027 case SAS_PHY_RESET_PROBLEM:
1028 case SAS_SATA_PORT_SELECTOR:
James Bottomley2908d772006-08-29 09:22:51 -05001029 continue;
1030 default:
1031 res = sas_ex_discover_dev(dev, i);
1032 if (res)
1033 break;
1034 continue;
1035 }
1036 }
1037
1038 if (!res)
1039 sas_check_level_subtractive_boundary(dev);
1040
1041 return res;
1042}
1043
1044static int sas_check_ex_subtractive_boundary(struct domain_device *dev)
1045{
1046 struct expander_device *ex = &dev->ex_dev;
1047 int i;
1048 u8 *sub_sas_addr = NULL;
1049
1050 if (dev->dev_type != EDGE_DEV)
1051 return 0;
1052
1053 for (i = 0; i < ex->num_phys; i++) {
1054 struct ex_phy *phy = &ex->ex_phy[i];
1055
1056 if (phy->phy_state == PHY_VACANT ||
1057 phy->phy_state == PHY_NOT_PRESENT)
1058 continue;
1059
1060 if ((phy->attached_dev_type == FANOUT_DEV ||
1061 phy->attached_dev_type == EDGE_DEV) &&
1062 phy->routing_attr == SUBTRACTIVE_ROUTING) {
1063
1064 if (!sub_sas_addr)
1065 sub_sas_addr = &phy->attached_sas_addr[0];
1066 else if (SAS_ADDR(sub_sas_addr) !=
1067 SAS_ADDR(phy->attached_sas_addr)) {
1068
1069 SAS_DPRINTK("ex %016llx phy 0x%x "
1070 "diverges(%016llx) on subtractive "
1071 "boundary(%016llx). Disabled\n",
1072 SAS_ADDR(dev->sas_addr), i,
1073 SAS_ADDR(phy->attached_sas_addr),
1074 SAS_ADDR(sub_sas_addr));
1075 sas_ex_disable_phy(dev, i);
1076 }
1077 }
1078 }
1079 return 0;
1080}
1081
1082static void sas_print_parent_topology_bug(struct domain_device *child,
1083 struct ex_phy *parent_phy,
1084 struct ex_phy *child_phy)
1085{
1086 static const char ra_char[] = {
1087 [DIRECT_ROUTING] = 'D',
1088 [SUBTRACTIVE_ROUTING] = 'S',
1089 [TABLE_ROUTING] = 'T',
1090 };
1091 static const char *ex_type[] = {
1092 [EDGE_DEV] = "edge",
1093 [FANOUT_DEV] = "fanout",
1094 };
1095 struct domain_device *parent = child->parent;
1096
1097 sas_printk("%s ex %016llx phy 0x%x <--> %s ex %016llx phy 0x%x "
1098 "has %c:%c routing link!\n",
1099
1100 ex_type[parent->dev_type],
1101 SAS_ADDR(parent->sas_addr),
1102 parent_phy->phy_id,
1103
1104 ex_type[child->dev_type],
1105 SAS_ADDR(child->sas_addr),
1106 child_phy->phy_id,
1107
1108 ra_char[parent_phy->routing_attr],
1109 ra_char[child_phy->routing_attr]);
1110}
1111
1112static int sas_check_eeds(struct domain_device *child,
1113 struct ex_phy *parent_phy,
1114 struct ex_phy *child_phy)
1115{
1116 int res = 0;
1117 struct domain_device *parent = child->parent;
1118
1119 if (SAS_ADDR(parent->port->disc.fanout_sas_addr) != 0) {
1120 res = -ENODEV;
1121 SAS_DPRINTK("edge ex %016llx phy S:0x%x <--> edge ex %016llx "
1122 "phy S:0x%x, while there is a fanout ex %016llx\n",
1123 SAS_ADDR(parent->sas_addr),
1124 parent_phy->phy_id,
1125 SAS_ADDR(child->sas_addr),
1126 child_phy->phy_id,
1127 SAS_ADDR(parent->port->disc.fanout_sas_addr));
1128 } else if (SAS_ADDR(parent->port->disc.eeds_a) == 0) {
1129 memcpy(parent->port->disc.eeds_a, parent->sas_addr,
1130 SAS_ADDR_SIZE);
1131 memcpy(parent->port->disc.eeds_b, child->sas_addr,
1132 SAS_ADDR_SIZE);
1133 } else if (((SAS_ADDR(parent->port->disc.eeds_a) ==
1134 SAS_ADDR(parent->sas_addr)) ||
1135 (SAS_ADDR(parent->port->disc.eeds_a) ==
1136 SAS_ADDR(child->sas_addr)))
1137 &&
1138 ((SAS_ADDR(parent->port->disc.eeds_b) ==
1139 SAS_ADDR(parent->sas_addr)) ||
1140 (SAS_ADDR(parent->port->disc.eeds_b) ==
1141 SAS_ADDR(child->sas_addr))))
1142 ;
1143 else {
1144 res = -ENODEV;
1145 SAS_DPRINTK("edge ex %016llx phy 0x%x <--> edge ex %016llx "
1146 "phy 0x%x link forms a third EEDS!\n",
1147 SAS_ADDR(parent->sas_addr),
1148 parent_phy->phy_id,
1149 SAS_ADDR(child->sas_addr),
1150 child_phy->phy_id);
1151 }
1152
1153 return res;
1154}
1155
1156/* Here we spill over 80 columns. It is intentional.
1157 */
1158static int sas_check_parent_topology(struct domain_device *child)
1159{
1160 struct expander_device *child_ex = &child->ex_dev;
1161 struct expander_device *parent_ex;
1162 int i;
1163 int res = 0;
1164
1165 if (!child->parent)
1166 return 0;
1167
1168 if (child->parent->dev_type != EDGE_DEV &&
1169 child->parent->dev_type != FANOUT_DEV)
1170 return 0;
1171
1172 parent_ex = &child->parent->ex_dev;
1173
1174 for (i = 0; i < parent_ex->num_phys; i++) {
1175 struct ex_phy *parent_phy = &parent_ex->ex_phy[i];
1176 struct ex_phy *child_phy;
1177
1178 if (parent_phy->phy_state == PHY_VACANT ||
1179 parent_phy->phy_state == PHY_NOT_PRESENT)
1180 continue;
1181
1182 if (SAS_ADDR(parent_phy->attached_sas_addr) != SAS_ADDR(child->sas_addr))
1183 continue;
1184
1185 child_phy = &child_ex->ex_phy[parent_phy->attached_phy_id];
1186
1187 switch (child->parent->dev_type) {
1188 case EDGE_DEV:
1189 if (child->dev_type == FANOUT_DEV) {
1190 if (parent_phy->routing_attr != SUBTRACTIVE_ROUTING ||
1191 child_phy->routing_attr != TABLE_ROUTING) {
1192 sas_print_parent_topology_bug(child, parent_phy, child_phy);
1193 res = -ENODEV;
1194 }
1195 } else if (parent_phy->routing_attr == SUBTRACTIVE_ROUTING) {
1196 if (child_phy->routing_attr == SUBTRACTIVE_ROUTING) {
1197 res = sas_check_eeds(child, parent_phy, child_phy);
1198 } else if (child_phy->routing_attr != TABLE_ROUTING) {
1199 sas_print_parent_topology_bug(child, parent_phy, child_phy);
1200 res = -ENODEV;
1201 }
1202 } else if (parent_phy->routing_attr == TABLE_ROUTING &&
1203 child_phy->routing_attr != SUBTRACTIVE_ROUTING) {
1204 sas_print_parent_topology_bug(child, parent_phy, child_phy);
1205 res = -ENODEV;
1206 }
1207 break;
1208 case FANOUT_DEV:
1209 if (parent_phy->routing_attr != TABLE_ROUTING ||
1210 child_phy->routing_attr != SUBTRACTIVE_ROUTING) {
1211 sas_print_parent_topology_bug(child, parent_phy, child_phy);
1212 res = -ENODEV;
1213 }
1214 break;
1215 default:
1216 break;
1217 }
1218 }
1219
1220 return res;
1221}
1222
1223#define RRI_REQ_SIZE 16
1224#define RRI_RESP_SIZE 44
1225
1226static int sas_configure_present(struct domain_device *dev, int phy_id,
1227 u8 *sas_addr, int *index, int *present)
1228{
1229 int i, res = 0;
1230 struct expander_device *ex = &dev->ex_dev;
1231 struct ex_phy *phy = &ex->ex_phy[phy_id];
1232 u8 *rri_req;
1233 u8 *rri_resp;
1234
1235 *present = 0;
1236 *index = 0;
1237
1238 rri_req = alloc_smp_req(RRI_REQ_SIZE);
1239 if (!rri_req)
1240 return -ENOMEM;
1241
1242 rri_resp = alloc_smp_resp(RRI_RESP_SIZE);
1243 if (!rri_resp) {
1244 kfree(rri_req);
1245 return -ENOMEM;
1246 }
1247
1248 rri_req[1] = SMP_REPORT_ROUTE_INFO;
1249 rri_req[9] = phy_id;
1250
1251 for (i = 0; i < ex->max_route_indexes ; i++) {
1252 *(__be16 *)(rri_req+6) = cpu_to_be16(i);
1253 res = smp_execute_task(dev, rri_req, RRI_REQ_SIZE, rri_resp,
1254 RRI_RESP_SIZE);
1255 if (res)
1256 goto out;
1257 res = rri_resp[2];
1258 if (res == SMP_RESP_NO_INDEX) {
1259 SAS_DPRINTK("overflow of indexes: dev %016llx "
1260 "phy 0x%x index 0x%x\n",
1261 SAS_ADDR(dev->sas_addr), phy_id, i);
1262 goto out;
1263 } else if (res != SMP_RESP_FUNC_ACC) {
1264 SAS_DPRINTK("%s: dev %016llx phy 0x%x index 0x%x "
1265 "result 0x%x\n", __FUNCTION__,
1266 SAS_ADDR(dev->sas_addr), phy_id, i, res);
1267 goto out;
1268 }
1269 if (SAS_ADDR(sas_addr) != 0) {
1270 if (SAS_ADDR(rri_resp+16) == SAS_ADDR(sas_addr)) {
1271 *index = i;
1272 if ((rri_resp[12] & 0x80) == 0x80)
1273 *present = 0;
1274 else
1275 *present = 1;
1276 goto out;
1277 } else if (SAS_ADDR(rri_resp+16) == 0) {
1278 *index = i;
1279 *present = 0;
1280 goto out;
1281 }
1282 } else if (SAS_ADDR(rri_resp+16) == 0 &&
1283 phy->last_da_index < i) {
1284 phy->last_da_index = i;
1285 *index = i;
1286 *present = 0;
1287 goto out;
1288 }
1289 }
1290 res = -1;
1291out:
1292 kfree(rri_req);
1293 kfree(rri_resp);
1294 return res;
1295}
1296
1297#define CRI_REQ_SIZE 44
1298#define CRI_RESP_SIZE 8
1299
1300static int sas_configure_set(struct domain_device *dev, int phy_id,
1301 u8 *sas_addr, int index, int include)
1302{
1303 int res;
1304 u8 *cri_req;
1305 u8 *cri_resp;
1306
1307 cri_req = alloc_smp_req(CRI_REQ_SIZE);
1308 if (!cri_req)
1309 return -ENOMEM;
1310
1311 cri_resp = alloc_smp_resp(CRI_RESP_SIZE);
1312 if (!cri_resp) {
1313 kfree(cri_req);
1314 return -ENOMEM;
1315 }
1316
1317 cri_req[1] = SMP_CONF_ROUTE_INFO;
1318 *(__be16 *)(cri_req+6) = cpu_to_be16(index);
1319 cri_req[9] = phy_id;
1320 if (SAS_ADDR(sas_addr) == 0 || !include)
1321 cri_req[12] |= 0x80;
1322 memcpy(cri_req+16, sas_addr, SAS_ADDR_SIZE);
1323
1324 res = smp_execute_task(dev, cri_req, CRI_REQ_SIZE, cri_resp,
1325 CRI_RESP_SIZE);
1326 if (res)
1327 goto out;
1328 res = cri_resp[2];
1329 if (res == SMP_RESP_NO_INDEX) {
1330 SAS_DPRINTK("overflow of indexes: dev %016llx phy 0x%x "
1331 "index 0x%x\n",
1332 SAS_ADDR(dev->sas_addr), phy_id, index);
1333 }
1334out:
1335 kfree(cri_req);
1336 kfree(cri_resp);
1337 return res;
1338}
1339
1340static int sas_configure_phy(struct domain_device *dev, int phy_id,
1341 u8 *sas_addr, int include)
1342{
1343 int index;
1344 int present;
1345 int res;
1346
1347 res = sas_configure_present(dev, phy_id, sas_addr, &index, &present);
1348 if (res)
1349 return res;
1350 if (include ^ present)
1351 return sas_configure_set(dev, phy_id, sas_addr, index,include);
1352
1353 return res;
1354}
1355
1356/**
1357 * sas_configure_parent -- configure routing table of parent
1358 * parent: parent expander
1359 * child: child expander
1360 * sas_addr: SAS port identifier of device directly attached to child
1361 */
1362static int sas_configure_parent(struct domain_device *parent,
1363 struct domain_device *child,
1364 u8 *sas_addr, int include)
1365{
1366 struct expander_device *ex_parent = &parent->ex_dev;
1367 int res = 0;
1368 int i;
1369
1370 if (parent->parent) {
1371 res = sas_configure_parent(parent->parent, parent, sas_addr,
1372 include);
1373 if (res)
1374 return res;
1375 }
1376
1377 if (ex_parent->conf_route_table == 0) {
1378 SAS_DPRINTK("ex %016llx has self-configuring routing table\n",
1379 SAS_ADDR(parent->sas_addr));
1380 return 0;
1381 }
1382
1383 for (i = 0; i < ex_parent->num_phys; i++) {
1384 struct ex_phy *phy = &ex_parent->ex_phy[i];
1385
1386 if ((phy->routing_attr == TABLE_ROUTING) &&
1387 (SAS_ADDR(phy->attached_sas_addr) ==
1388 SAS_ADDR(child->sas_addr))) {
1389 res = sas_configure_phy(parent, i, sas_addr, include);
1390 if (res)
1391 return res;
1392 }
1393 }
1394
1395 return res;
1396}
1397
1398/**
1399 * sas_configure_routing -- configure routing
1400 * dev: expander device
1401 * sas_addr: port identifier of device directly attached to the expander device
1402 */
1403static int sas_configure_routing(struct domain_device *dev, u8 *sas_addr)
1404{
1405 if (dev->parent)
1406 return sas_configure_parent(dev->parent, dev, sas_addr, 1);
1407 return 0;
1408}
1409
1410static int sas_disable_routing(struct domain_device *dev, u8 *sas_addr)
1411{
1412 if (dev->parent)
1413 return sas_configure_parent(dev->parent, dev, sas_addr, 0);
1414 return 0;
1415}
1416
James Bottomley2908d772006-08-29 09:22:51 -05001417/**
1418 * sas_discover_expander -- expander discovery
1419 * @ex: pointer to expander domain device
1420 *
1421 * See comment in sas_discover_sata().
1422 */
1423static int sas_discover_expander(struct domain_device *dev)
1424{
1425 int res;
1426
1427 res = sas_notify_lldd_dev_found(dev);
1428 if (res)
1429 return res;
1430
1431 res = sas_ex_general(dev);
1432 if (res)
1433 goto out_err;
1434 res = sas_ex_manuf_info(dev);
1435 if (res)
1436 goto out_err;
1437
1438 res = sas_expander_discover(dev);
1439 if (res) {
1440 SAS_DPRINTK("expander %016llx discovery failed(0x%x)\n",
1441 SAS_ADDR(dev->sas_addr), res);
1442 goto out_err;
1443 }
1444
1445 sas_check_ex_subtractive_boundary(dev);
1446 res = sas_check_parent_topology(dev);
1447 if (res)
1448 goto out_err;
1449 return 0;
1450out_err:
1451 sas_notify_lldd_dev_gone(dev);
1452 return res;
1453}
1454
1455static int sas_ex_level_discovery(struct asd_sas_port *port, const int level)
1456{
1457 int res = 0;
1458 struct domain_device *dev;
1459
1460 list_for_each_entry(dev, &port->dev_list, dev_list_node) {
1461 if (dev->dev_type == EDGE_DEV ||
1462 dev->dev_type == FANOUT_DEV) {
1463 struct sas_expander_device *ex =
1464 rphy_to_expander_device(dev->rphy);
1465
1466 if (level == ex->level)
1467 res = sas_ex_discover_devices(dev, -1);
1468 else if (level > 0)
1469 res = sas_ex_discover_devices(port->port_dev, -1);
1470
1471 }
1472 }
1473
1474 return res;
1475}
1476
1477static int sas_ex_bfs_disc(struct asd_sas_port *port)
1478{
1479 int res;
1480 int level;
1481
1482 do {
1483 level = port->disc.max_level;
1484 res = sas_ex_level_discovery(port, level);
1485 mb();
1486 } while (level < port->disc.max_level);
1487
1488 return res;
1489}
1490
1491int sas_discover_root_expander(struct domain_device *dev)
1492{
1493 int res;
1494 struct sas_expander_device *ex = rphy_to_expander_device(dev->rphy);
1495
Darrick J. Wongbf451202007-01-11 14:14:52 -08001496 res = sas_rphy_add(dev->rphy);
1497 if (res)
1498 goto out_err;
James Bottomley2908d772006-08-29 09:22:51 -05001499
1500 ex->level = dev->port->disc.max_level; /* 0 */
1501 res = sas_discover_expander(dev);
Darrick J. Wongbf451202007-01-11 14:14:52 -08001502 if (res)
1503 goto out_err2;
James Bottomley2908d772006-08-29 09:22:51 -05001504
Darrick J. Wongbf451202007-01-11 14:14:52 -08001505 sas_ex_bfs_disc(dev->port);
1506
1507 return res;
1508
1509out_err2:
Darrick J. Wong6f63caa2007-01-26 14:08:43 -08001510 sas_rphy_remove(dev->rphy);
Darrick J. Wongbf451202007-01-11 14:14:52 -08001511out_err:
James Bottomley2908d772006-08-29 09:22:51 -05001512 return res;
1513}
1514
1515/* ---------- Domain revalidation ---------- */
1516
1517static int sas_get_phy_discover(struct domain_device *dev,
1518 int phy_id, struct smp_resp *disc_resp)
1519{
1520 int res;
1521 u8 *disc_req;
1522
1523 disc_req = alloc_smp_req(DISCOVER_REQ_SIZE);
1524 if (!disc_req)
1525 return -ENOMEM;
1526
1527 disc_req[1] = SMP_DISCOVER;
1528 disc_req[9] = phy_id;
1529
1530 res = smp_execute_task(dev, disc_req, DISCOVER_REQ_SIZE,
1531 disc_resp, DISCOVER_RESP_SIZE);
1532 if (res)
1533 goto out;
1534 else if (disc_resp->result != SMP_RESP_FUNC_ACC) {
1535 res = disc_resp->result;
1536 goto out;
1537 }
1538out:
1539 kfree(disc_req);
1540 return res;
1541}
1542
1543static int sas_get_phy_change_count(struct domain_device *dev,
1544 int phy_id, int *pcc)
1545{
1546 int res;
1547 struct smp_resp *disc_resp;
1548
1549 disc_resp = alloc_smp_resp(DISCOVER_RESP_SIZE);
1550 if (!disc_resp)
1551 return -ENOMEM;
1552
1553 res = sas_get_phy_discover(dev, phy_id, disc_resp);
1554 if (!res)
1555 *pcc = disc_resp->disc.change_count;
1556
1557 kfree(disc_resp);
1558 return res;
1559}
1560
1561static int sas_get_phy_attached_sas_addr(struct domain_device *dev,
1562 int phy_id, u8 *attached_sas_addr)
1563{
1564 int res;
1565 struct smp_resp *disc_resp;
1566 struct discover_resp *dr;
1567
1568 disc_resp = alloc_smp_resp(DISCOVER_RESP_SIZE);
1569 if (!disc_resp)
1570 return -ENOMEM;
1571 dr = &disc_resp->disc;
1572
1573 res = sas_get_phy_discover(dev, phy_id, disc_resp);
1574 if (!res) {
1575 memcpy(attached_sas_addr,disc_resp->disc.attached_sas_addr,8);
1576 if (dr->attached_dev_type == 0)
1577 memset(attached_sas_addr, 0, 8);
1578 }
1579 kfree(disc_resp);
1580 return res;
1581}
1582
1583static int sas_find_bcast_phy(struct domain_device *dev, int *phy_id,
1584 int from_phy)
1585{
1586 struct expander_device *ex = &dev->ex_dev;
1587 int res = 0;
1588 int i;
1589
1590 for (i = from_phy; i < ex->num_phys; i++) {
1591 int phy_change_count = 0;
1592
1593 res = sas_get_phy_change_count(dev, i, &phy_change_count);
1594 if (res)
1595 goto out;
1596 else if (phy_change_count != ex->ex_phy[i].phy_change_count) {
1597 ex->ex_phy[i].phy_change_count = phy_change_count;
1598 *phy_id = i;
1599 return 0;
1600 }
1601 }
1602out:
1603 return res;
1604}
1605
1606static int sas_get_ex_change_count(struct domain_device *dev, int *ecc)
1607{
1608 int res;
1609 u8 *rg_req;
1610 struct smp_resp *rg_resp;
1611
1612 rg_req = alloc_smp_req(RG_REQ_SIZE);
1613 if (!rg_req)
1614 return -ENOMEM;
1615
1616 rg_resp = alloc_smp_resp(RG_RESP_SIZE);
1617 if (!rg_resp) {
1618 kfree(rg_req);
1619 return -ENOMEM;
1620 }
1621
1622 rg_req[1] = SMP_REPORT_GENERAL;
1623
1624 res = smp_execute_task(dev, rg_req, RG_REQ_SIZE, rg_resp,
1625 RG_RESP_SIZE);
1626 if (res)
1627 goto out;
1628 if (rg_resp->result != SMP_RESP_FUNC_ACC) {
1629 res = rg_resp->result;
1630 goto out;
1631 }
1632
1633 *ecc = be16_to_cpu(rg_resp->rg.change_count);
1634out:
1635 kfree(rg_resp);
1636 kfree(rg_req);
1637 return res;
1638}
1639
1640static int sas_find_bcast_dev(struct domain_device *dev,
1641 struct domain_device **src_dev)
1642{
1643 struct expander_device *ex = &dev->ex_dev;
1644 int ex_change_count = -1;
1645 int res;
1646
1647 res = sas_get_ex_change_count(dev, &ex_change_count);
1648 if (res)
1649 goto out;
1650 if (ex_change_count != -1 &&
1651 ex_change_count != ex->ex_change_count) {
1652 *src_dev = dev;
1653 ex->ex_change_count = ex_change_count;
1654 } else {
1655 struct domain_device *ch;
1656
1657 list_for_each_entry(ch, &ex->children, siblings) {
1658 if (ch->dev_type == EDGE_DEV ||
1659 ch->dev_type == FANOUT_DEV) {
1660 res = sas_find_bcast_dev(ch, src_dev);
1661 if (src_dev)
1662 return res;
1663 }
1664 }
1665 }
1666out:
1667 return res;
1668}
1669
1670static void sas_unregister_ex_tree(struct domain_device *dev)
1671{
1672 struct expander_device *ex = &dev->ex_dev;
1673 struct domain_device *child, *n;
1674
1675 list_for_each_entry_safe(child, n, &ex->children, siblings) {
1676 if (child->dev_type == EDGE_DEV ||
1677 child->dev_type == FANOUT_DEV)
1678 sas_unregister_ex_tree(child);
1679 else
1680 sas_unregister_dev(child);
1681 }
1682 sas_unregister_dev(dev);
1683}
1684
1685static void sas_unregister_devs_sas_addr(struct domain_device *parent,
1686 int phy_id)
1687{
1688 struct expander_device *ex_dev = &parent->ex_dev;
1689 struct ex_phy *phy = &ex_dev->ex_phy[phy_id];
1690 struct domain_device *child, *n;
1691
1692 list_for_each_entry_safe(child, n, &ex_dev->children, siblings) {
1693 if (SAS_ADDR(child->sas_addr) ==
1694 SAS_ADDR(phy->attached_sas_addr)) {
1695 if (child->dev_type == EDGE_DEV ||
1696 child->dev_type == FANOUT_DEV)
1697 sas_unregister_ex_tree(child);
1698 else
1699 sas_unregister_dev(child);
1700 break;
1701 }
1702 }
1703 sas_disable_routing(parent, phy->attached_sas_addr);
1704 memset(phy->attached_sas_addr, 0, SAS_ADDR_SIZE);
1705 sas_port_delete_phy(phy->port, phy->phy);
1706 if (phy->port->num_phys == 0)
1707 sas_port_delete(phy->port);
1708 phy->port = NULL;
1709}
1710
1711static int sas_discover_bfs_by_root_level(struct domain_device *root,
1712 const int level)
1713{
1714 struct expander_device *ex_root = &root->ex_dev;
1715 struct domain_device *child;
1716 int res = 0;
1717
1718 list_for_each_entry(child, &ex_root->children, siblings) {
1719 if (child->dev_type == EDGE_DEV ||
1720 child->dev_type == FANOUT_DEV) {
1721 struct sas_expander_device *ex =
1722 rphy_to_expander_device(child->rphy);
1723
1724 if (level > ex->level)
1725 res = sas_discover_bfs_by_root_level(child,
1726 level);
1727 else if (level == ex->level)
1728 res = sas_ex_discover_devices(child, -1);
1729 }
1730 }
1731 return res;
1732}
1733
1734static int sas_discover_bfs_by_root(struct domain_device *dev)
1735{
1736 int res;
1737 struct sas_expander_device *ex = rphy_to_expander_device(dev->rphy);
1738 int level = ex->level+1;
1739
1740 res = sas_ex_discover_devices(dev, -1);
1741 if (res)
1742 goto out;
1743 do {
1744 res = sas_discover_bfs_by_root_level(dev, level);
1745 mb();
1746 level += 1;
1747 } while (level <= dev->port->disc.max_level);
1748out:
1749 return res;
1750}
1751
1752static int sas_discover_new(struct domain_device *dev, int phy_id)
1753{
1754 struct ex_phy *ex_phy = &dev->ex_dev.ex_phy[phy_id];
1755 struct domain_device *child;
1756 int res;
1757
1758 SAS_DPRINTK("ex %016llx phy%d new device attached\n",
1759 SAS_ADDR(dev->sas_addr), phy_id);
1760 res = sas_ex_phy_discover(dev, phy_id);
1761 if (res)
1762 goto out;
1763 res = sas_ex_discover_devices(dev, phy_id);
1764 if (res)
1765 goto out;
1766 list_for_each_entry(child, &dev->ex_dev.children, siblings) {
1767 if (SAS_ADDR(child->sas_addr) ==
1768 SAS_ADDR(ex_phy->attached_sas_addr)) {
1769 if (child->dev_type == EDGE_DEV ||
1770 child->dev_type == FANOUT_DEV)
1771 res = sas_discover_bfs_by_root(child);
1772 break;
1773 }
1774 }
1775out:
1776 return res;
1777}
1778
1779static int sas_rediscover_dev(struct domain_device *dev, int phy_id)
1780{
1781 struct expander_device *ex = &dev->ex_dev;
1782 struct ex_phy *phy = &ex->ex_phy[phy_id];
1783 u8 attached_sas_addr[8];
1784 int res;
1785
1786 res = sas_get_phy_attached_sas_addr(dev, phy_id, attached_sas_addr);
1787 switch (res) {
1788 case SMP_RESP_NO_PHY:
1789 phy->phy_state = PHY_NOT_PRESENT;
1790 sas_unregister_devs_sas_addr(dev, phy_id);
1791 goto out; break;
1792 case SMP_RESP_PHY_VACANT:
1793 phy->phy_state = PHY_VACANT;
1794 sas_unregister_devs_sas_addr(dev, phy_id);
1795 goto out; break;
1796 case SMP_RESP_FUNC_ACC:
1797 break;
1798 }
1799
1800 if (SAS_ADDR(attached_sas_addr) == 0) {
1801 phy->phy_state = PHY_EMPTY;
1802 sas_unregister_devs_sas_addr(dev, phy_id);
1803 } else if (SAS_ADDR(attached_sas_addr) ==
1804 SAS_ADDR(phy->attached_sas_addr)) {
1805 SAS_DPRINTK("ex %016llx phy 0x%x broadcast flutter\n",
1806 SAS_ADDR(dev->sas_addr), phy_id);
James Bottomleya01e70e2006-09-06 19:28:07 -05001807 sas_ex_phy_discover(dev, phy_id);
James Bottomley2908d772006-08-29 09:22:51 -05001808 } else
1809 res = sas_discover_new(dev, phy_id);
1810out:
1811 return res;
1812}
1813
1814static int sas_rediscover(struct domain_device *dev, const int phy_id)
1815{
1816 struct expander_device *ex = &dev->ex_dev;
1817 struct ex_phy *changed_phy = &ex->ex_phy[phy_id];
1818 int res = 0;
1819 int i;
1820
1821 SAS_DPRINTK("ex %016llx phy%d originated BROADCAST(CHANGE)\n",
1822 SAS_ADDR(dev->sas_addr), phy_id);
1823
1824 if (SAS_ADDR(changed_phy->attached_sas_addr) != 0) {
1825 for (i = 0; i < ex->num_phys; i++) {
1826 struct ex_phy *phy = &ex->ex_phy[i];
1827
1828 if (i == phy_id)
1829 continue;
1830 if (SAS_ADDR(phy->attached_sas_addr) ==
1831 SAS_ADDR(changed_phy->attached_sas_addr)) {
1832 SAS_DPRINTK("phy%d part of wide port with "
1833 "phy%d\n", phy_id, i);
1834 goto out;
1835 }
1836 }
1837 res = sas_rediscover_dev(dev, phy_id);
1838 } else
1839 res = sas_discover_new(dev, phy_id);
1840out:
1841 return res;
1842}
1843
1844/**
1845 * sas_revalidate_domain -- revalidate the domain
1846 * @port: port to the domain of interest
1847 *
1848 * NOTE: this process _must_ quit (return) as soon as any connection
1849 * errors are encountered. Connection recovery is done elsewhere.
1850 * Discover process only interrogates devices in order to discover the
1851 * domain.
1852 */
1853int sas_ex_revalidate_domain(struct domain_device *port_dev)
1854{
1855 int res;
1856 struct domain_device *dev = NULL;
1857
1858 res = sas_find_bcast_dev(port_dev, &dev);
1859 if (res)
1860 goto out;
1861 if (dev) {
1862 struct expander_device *ex = &dev->ex_dev;
1863 int i = 0, phy_id;
1864
1865 do {
1866 phy_id = -1;
1867 res = sas_find_bcast_phy(dev, &phy_id, i);
1868 if (phy_id == -1)
1869 break;
1870 res = sas_rediscover(dev, phy_id);
1871 i = phy_id + 1;
1872 } while (i < ex->num_phys);
1873 }
1874out:
1875 return res;
1876}
1877
FUJITA Tomonoriba1fc172007-07-09 12:52:08 +09001878int sas_smp_handler(struct Scsi_Host *shost, struct sas_rphy *rphy,
1879 struct request *req)
1880{
1881 struct domain_device *dev;
Darrick J. Wong2cd614c2007-07-24 09:33:49 -07001882 int ret, type;
FUJITA Tomonoriba1fc172007-07-09 12:52:08 +09001883 struct request *rsp = req->next_rq;
1884
1885 if (!rsp) {
1886 printk("%s: space for a smp response is missing\n",
1887 __FUNCTION__);
1888 return -EINVAL;
1889 }
1890
Darrick J. Wong2cd614c2007-07-24 09:33:49 -07001891 /* no rphy means no smp target support (ie aic94xx host) */
FUJITA Tomonoriba1fc172007-07-09 12:52:08 +09001892 if (!rphy) {
1893 printk("%s: can we send a smp request to a host?\n",
1894 __FUNCTION__);
1895 return -EINVAL;
1896 }
Darrick J. Wong2cd614c2007-07-24 09:33:49 -07001897 type = rphy->identify.device_type;
FUJITA Tomonoriba1fc172007-07-09 12:52:08 +09001898
1899 if (type != SAS_EDGE_EXPANDER_DEVICE &&
1900 type != SAS_FANOUT_EXPANDER_DEVICE) {
1901 printk("%s: can we send a smp request to a device?\n",
1902 __FUNCTION__);
1903 return -EINVAL;
1904 }
1905
1906 dev = sas_find_dev_by_rphy(rphy);
1907 if (!dev) {
1908 printk("%s: fail to find a domain_device?\n", __FUNCTION__);
1909 return -EINVAL;
1910 }
1911
1912 /* do we need to support multiple segments? */
1913 if (req->bio->bi_vcnt > 1 || rsp->bio->bi_vcnt > 1) {
1914 printk("%s: multiple segments req %u %u, rsp %u %u\n",
1915 __FUNCTION__, req->bio->bi_vcnt, req->data_len,
1916 rsp->bio->bi_vcnt, rsp->data_len);
1917 return -EINVAL;
1918 }
1919
1920 ret = smp_execute_task(dev, bio_data(req->bio), req->data_len,
1921 bio_data(rsp->bio), rsp->data_len);
1922
1923 return ret;
1924}