workqueue: Make worker_attach/detach_pool() update worker->pool
[linux/fpc-iii.git] / drivers / scsi / scsi_transport_sas.c
blob08acbabfae07912e125b97e5df3228881b7c9b86
1 /*
2 * Copyright (C) 2005-2006 Dell Inc.
3 * Released under GPL v2.
5 * Serial Attached SCSI (SAS) transport class.
7 * The SAS transport class contains common code to deal with SAS HBAs,
8 * an aproximated representation of SAS topologies in the driver model,
9 * and various sysfs attributes to expose these topologies and management
10 * interfaces to userspace.
12 * In addition to the basic SCSI core objects this transport class
13 * introduces two additional intermediate objects: The SAS PHY
14 * as represented by struct sas_phy defines an "outgoing" PHY on
15 * a SAS HBA or Expander, and the SAS remote PHY represented by
16 * struct sas_rphy defines an "incoming" PHY on a SAS Expander or
17 * end device. Note that this is purely a software concept, the
18 * underlying hardware for a PHY and a remote PHY is the exactly
19 * the same.
21 * There is no concept of a SAS port in this code, users can see
22 * what PHYs form a wide port based on the port_identifier attribute,
23 * which is the same for all PHYs in a port.
26 #include <linux/init.h>
27 #include <linux/module.h>
28 #include <linux/jiffies.h>
29 #include <linux/err.h>
30 #include <linux/slab.h>
31 #include <linux/string.h>
32 #include <linux/blkdev.h>
33 #include <linux/bsg.h>
35 #include <scsi/scsi.h>
36 #include <scsi/scsi_cmnd.h>
37 #include <scsi/scsi_request.h>
38 #include <scsi/scsi_device.h>
39 #include <scsi/scsi_host.h>
40 #include <scsi/scsi_transport.h>
41 #include <scsi/scsi_transport_sas.h>
43 #include "scsi_sas_internal.h"
44 struct sas_host_attrs {
45 struct list_head rphy_list;
46 struct mutex lock;
47 struct request_queue *q;
48 u32 next_target_id;
49 u32 next_expander_id;
50 int next_port_id;
52 #define to_sas_host_attrs(host) ((struct sas_host_attrs *)(host)->shost_data)
56 * Hack to allow attributes of the same name in different objects.
58 #define SAS_DEVICE_ATTR(_prefix,_name,_mode,_show,_store) \
59 struct device_attribute dev_attr_##_prefix##_##_name = \
60 __ATTR(_name,_mode,_show,_store)
64 * Pretty printing helpers
67 #define sas_bitfield_name_match(title, table) \
68 static ssize_t \
69 get_sas_##title##_names(u32 table_key, char *buf) \
70 { \
71 char *prefix = ""; \
72 ssize_t len = 0; \
73 int i; \
75 for (i = 0; i < ARRAY_SIZE(table); i++) { \
76 if (table[i].value & table_key) { \
77 len += sprintf(buf + len, "%s%s", \
78 prefix, table[i].name); \
79 prefix = ", "; \
80 } \
81 } \
82 len += sprintf(buf + len, "\n"); \
83 return len; \
86 #define sas_bitfield_name_set(title, table) \
87 static ssize_t \
88 set_sas_##title##_names(u32 *table_key, const char *buf) \
89 { \
90 ssize_t len = 0; \
91 int i; \
93 for (i = 0; i < ARRAY_SIZE(table); i++) { \
94 len = strlen(table[i].name); \
95 if (strncmp(buf, table[i].name, len) == 0 && \
96 (buf[len] == '\n' || buf[len] == '\0')) { \
97 *table_key = table[i].value; \
98 return 0; \
99 } \
101 return -EINVAL; \
104 #define sas_bitfield_name_search(title, table) \
105 static ssize_t \
106 get_sas_##title##_names(u32 table_key, char *buf) \
108 ssize_t len = 0; \
109 int i; \
111 for (i = 0; i < ARRAY_SIZE(table); i++) { \
112 if (table[i].value == table_key) { \
113 len += sprintf(buf + len, "%s", \
114 table[i].name); \
115 break; \
118 len += sprintf(buf + len, "\n"); \
119 return len; \
122 static struct {
123 u32 value;
124 char *name;
125 } sas_device_type_names[] = {
126 { SAS_PHY_UNUSED, "unused" },
127 { SAS_END_DEVICE, "end device" },
128 { SAS_EDGE_EXPANDER_DEVICE, "edge expander" },
129 { SAS_FANOUT_EXPANDER_DEVICE, "fanout expander" },
131 sas_bitfield_name_search(device_type, sas_device_type_names)
134 static struct {
135 u32 value;
136 char *name;
137 } sas_protocol_names[] = {
138 { SAS_PROTOCOL_SATA, "sata" },
139 { SAS_PROTOCOL_SMP, "smp" },
140 { SAS_PROTOCOL_STP, "stp" },
141 { SAS_PROTOCOL_SSP, "ssp" },
143 sas_bitfield_name_match(protocol, sas_protocol_names)
145 static struct {
146 u32 value;
147 char *name;
148 } sas_linkspeed_names[] = {
149 { SAS_LINK_RATE_UNKNOWN, "Unknown" },
150 { SAS_PHY_DISABLED, "Phy disabled" },
151 { SAS_LINK_RATE_FAILED, "Link Rate failed" },
152 { SAS_SATA_SPINUP_HOLD, "Spin-up hold" },
153 { SAS_LINK_RATE_1_5_GBPS, "1.5 Gbit" },
154 { SAS_LINK_RATE_3_0_GBPS, "3.0 Gbit" },
155 { SAS_LINK_RATE_6_0_GBPS, "6.0 Gbit" },
156 { SAS_LINK_RATE_12_0_GBPS, "12.0 Gbit" },
158 sas_bitfield_name_search(linkspeed, sas_linkspeed_names)
159 sas_bitfield_name_set(linkspeed, sas_linkspeed_names)
161 static struct sas_end_device *sas_sdev_to_rdev(struct scsi_device *sdev)
163 struct sas_rphy *rphy = target_to_rphy(sdev->sdev_target);
164 struct sas_end_device *rdev;
166 BUG_ON(rphy->identify.device_type != SAS_END_DEVICE);
168 rdev = rphy_to_end_device(rphy);
169 return rdev;
172 static int sas_smp_dispatch(struct bsg_job *job)
174 struct Scsi_Host *shost = dev_to_shost(job->dev);
175 struct sas_rphy *rphy = NULL;
177 if (!scsi_is_host_device(job->dev))
178 rphy = dev_to_rphy(job->dev);
180 if (!job->reply_payload.payload_len) {
181 dev_warn(job->dev, "space for a smp response is missing\n");
182 bsg_job_done(job, -EINVAL, 0);
183 return 0;
186 to_sas_internal(shost->transportt)->f->smp_handler(job, shost, rphy);
187 return 0;
190 static void sas_host_release(struct device *dev)
192 struct Scsi_Host *shost = dev_to_shost(dev);
193 struct sas_host_attrs *sas_host = to_sas_host_attrs(shost);
194 struct request_queue *q = sas_host->q;
196 if (q)
197 blk_cleanup_queue(q);
200 static int sas_bsg_initialize(struct Scsi_Host *shost, struct sas_rphy *rphy)
202 struct request_queue *q;
204 if (!to_sas_internal(shost->transportt)->f->smp_handler) {
205 printk("%s can't handle SMP requests\n", shost->hostt->name);
206 return 0;
209 if (rphy) {
210 q = bsg_setup_queue(&rphy->dev, dev_name(&rphy->dev),
211 sas_smp_dispatch, 0, NULL);
212 if (IS_ERR(q))
213 return PTR_ERR(q);
214 rphy->q = q;
215 } else {
216 char name[20];
218 snprintf(name, sizeof(name), "sas_host%d", shost->host_no);
219 q = bsg_setup_queue(&shost->shost_gendev, name,
220 sas_smp_dispatch, 0, sas_host_release);
221 if (IS_ERR(q))
222 return PTR_ERR(q);
223 to_sas_host_attrs(shost)->q = q;
227 * by default assume old behaviour and bounce for any highmem page
229 blk_queue_bounce_limit(q, BLK_BOUNCE_HIGH);
230 blk_queue_flag_set(QUEUE_FLAG_BIDI, q);
231 return 0;
235 * SAS host attributes
238 static int sas_host_setup(struct transport_container *tc, struct device *dev,
239 struct device *cdev)
241 struct Scsi_Host *shost = dev_to_shost(dev);
242 struct sas_host_attrs *sas_host = to_sas_host_attrs(shost);
244 INIT_LIST_HEAD(&sas_host->rphy_list);
245 mutex_init(&sas_host->lock);
246 sas_host->next_target_id = 0;
247 sas_host->next_expander_id = 0;
248 sas_host->next_port_id = 0;
250 if (sas_bsg_initialize(shost, NULL))
251 dev_printk(KERN_ERR, dev, "fail to a bsg device %d\n",
252 shost->host_no);
254 return 0;
257 static int sas_host_remove(struct transport_container *tc, struct device *dev,
258 struct device *cdev)
260 struct Scsi_Host *shost = dev_to_shost(dev);
261 struct request_queue *q = to_sas_host_attrs(shost)->q;
263 if (q)
264 bsg_unregister_queue(q);
265 return 0;
268 static DECLARE_TRANSPORT_CLASS(sas_host_class,
269 "sas_host", sas_host_setup, sas_host_remove, NULL);
271 static int sas_host_match(struct attribute_container *cont,
272 struct device *dev)
274 struct Scsi_Host *shost;
275 struct sas_internal *i;
277 if (!scsi_is_host_device(dev))
278 return 0;
279 shost = dev_to_shost(dev);
281 if (!shost->transportt)
282 return 0;
283 if (shost->transportt->host_attrs.ac.class !=
284 &sas_host_class.class)
285 return 0;
287 i = to_sas_internal(shost->transportt);
288 return &i->t.host_attrs.ac == cont;
291 static int do_sas_phy_delete(struct device *dev, void *data)
293 int pass = (int)(unsigned long)data;
295 if (pass == 0 && scsi_is_sas_port(dev))
296 sas_port_delete(dev_to_sas_port(dev));
297 else if (pass == 1 && scsi_is_sas_phy(dev))
298 sas_phy_delete(dev_to_phy(dev));
299 return 0;
303 * sas_remove_children - tear down a devices SAS data structures
304 * @dev: device belonging to the sas object
306 * Removes all SAS PHYs and remote PHYs for a given object
308 void sas_remove_children(struct device *dev)
310 device_for_each_child(dev, (void *)0, do_sas_phy_delete);
311 device_for_each_child(dev, (void *)1, do_sas_phy_delete);
313 EXPORT_SYMBOL(sas_remove_children);
316 * sas_remove_host - tear down a Scsi_Host's SAS data structures
317 * @shost: Scsi Host that is torn down
319 * Removes all SAS PHYs and remote PHYs for a given Scsi_Host and remove the
320 * Scsi_Host as well.
322 * Note: Do not call scsi_remove_host() on the Scsi_Host any more, as it is
323 * already removed.
325 void sas_remove_host(struct Scsi_Host *shost)
327 sas_remove_children(&shost->shost_gendev);
328 scsi_remove_host(shost);
330 EXPORT_SYMBOL(sas_remove_host);
333 * sas_get_address - return the SAS address of the device
334 * @sdev: scsi device
336 * Returns the SAS address of the scsi device
338 u64 sas_get_address(struct scsi_device *sdev)
340 struct sas_end_device *rdev = sas_sdev_to_rdev(sdev);
342 return rdev->rphy.identify.sas_address;
344 EXPORT_SYMBOL(sas_get_address);
347 * sas_tlr_supported - checking TLR bit in vpd 0x90
348 * @sdev: scsi device struct
350 * Check Transport Layer Retries are supported or not.
351 * If vpd page 0x90 is present, TRL is supported.
354 unsigned int
355 sas_tlr_supported(struct scsi_device *sdev)
357 const int vpd_len = 32;
358 struct sas_end_device *rdev = sas_sdev_to_rdev(sdev);
359 char *buffer = kzalloc(vpd_len, GFP_KERNEL);
360 int ret = 0;
362 if (!buffer)
363 goto out;
365 if (scsi_get_vpd_page(sdev, 0x90, buffer, vpd_len))
366 goto out;
369 * Magic numbers: the VPD Protocol page (0x90)
370 * has a 4 byte header and then one entry per device port
371 * the TLR bit is at offset 8 on each port entry
372 * if we take the first port, that's at total offset 12
374 ret = buffer[12] & 0x01;
376 out:
377 kfree(buffer);
378 rdev->tlr_supported = ret;
379 return ret;
382 EXPORT_SYMBOL_GPL(sas_tlr_supported);
385 * sas_disable_tlr - setting TLR flags
386 * @sdev: scsi device struct
388 * Seting tlr_enabled flag to 0.
391 void
392 sas_disable_tlr(struct scsi_device *sdev)
394 struct sas_end_device *rdev = sas_sdev_to_rdev(sdev);
396 rdev->tlr_enabled = 0;
398 EXPORT_SYMBOL_GPL(sas_disable_tlr);
401 * sas_enable_tlr - setting TLR flags
402 * @sdev: scsi device struct
404 * Seting tlr_enabled flag 1.
407 void sas_enable_tlr(struct scsi_device *sdev)
409 unsigned int tlr_supported = 0;
410 tlr_supported = sas_tlr_supported(sdev);
412 if (tlr_supported) {
413 struct sas_end_device *rdev = sas_sdev_to_rdev(sdev);
415 rdev->tlr_enabled = 1;
418 return;
420 EXPORT_SYMBOL_GPL(sas_enable_tlr);
422 unsigned int sas_is_tlr_enabled(struct scsi_device *sdev)
424 struct sas_end_device *rdev = sas_sdev_to_rdev(sdev);
425 return rdev->tlr_enabled;
427 EXPORT_SYMBOL_GPL(sas_is_tlr_enabled);
430 * SAS Phy attributes
433 #define sas_phy_show_simple(field, name, format_string, cast) \
434 static ssize_t \
435 show_sas_phy_##name(struct device *dev, \
436 struct device_attribute *attr, char *buf) \
438 struct sas_phy *phy = transport_class_to_phy(dev); \
440 return snprintf(buf, 20, format_string, cast phy->field); \
443 #define sas_phy_simple_attr(field, name, format_string, type) \
444 sas_phy_show_simple(field, name, format_string, (type)) \
445 static DEVICE_ATTR(name, S_IRUGO, show_sas_phy_##name, NULL)
447 #define sas_phy_show_protocol(field, name) \
448 static ssize_t \
449 show_sas_phy_##name(struct device *dev, \
450 struct device_attribute *attr, char *buf) \
452 struct sas_phy *phy = transport_class_to_phy(dev); \
454 if (!phy->field) \
455 return snprintf(buf, 20, "none\n"); \
456 return get_sas_protocol_names(phy->field, buf); \
459 #define sas_phy_protocol_attr(field, name) \
460 sas_phy_show_protocol(field, name) \
461 static DEVICE_ATTR(name, S_IRUGO, show_sas_phy_##name, NULL)
463 #define sas_phy_show_linkspeed(field) \
464 static ssize_t \
465 show_sas_phy_##field(struct device *dev, \
466 struct device_attribute *attr, char *buf) \
468 struct sas_phy *phy = transport_class_to_phy(dev); \
470 return get_sas_linkspeed_names(phy->field, buf); \
473 /* Fudge to tell if we're minimum or maximum */
474 #define sas_phy_store_linkspeed(field) \
475 static ssize_t \
476 store_sas_phy_##field(struct device *dev, \
477 struct device_attribute *attr, \
478 const char *buf, size_t count) \
480 struct sas_phy *phy = transport_class_to_phy(dev); \
481 struct Scsi_Host *shost = dev_to_shost(phy->dev.parent); \
482 struct sas_internal *i = to_sas_internal(shost->transportt); \
483 u32 value; \
484 struct sas_phy_linkrates rates = {0}; \
485 int error; \
487 error = set_sas_linkspeed_names(&value, buf); \
488 if (error) \
489 return error; \
490 rates.field = value; \
491 error = i->f->set_phy_speed(phy, &rates); \
493 return error ? error : count; \
496 #define sas_phy_linkspeed_rw_attr(field) \
497 sas_phy_show_linkspeed(field) \
498 sas_phy_store_linkspeed(field) \
499 static DEVICE_ATTR(field, S_IRUGO, show_sas_phy_##field, \
500 store_sas_phy_##field)
502 #define sas_phy_linkspeed_attr(field) \
503 sas_phy_show_linkspeed(field) \
504 static DEVICE_ATTR(field, S_IRUGO, show_sas_phy_##field, NULL)
507 #define sas_phy_show_linkerror(field) \
508 static ssize_t \
509 show_sas_phy_##field(struct device *dev, \
510 struct device_attribute *attr, char *buf) \
512 struct sas_phy *phy = transport_class_to_phy(dev); \
513 struct Scsi_Host *shost = dev_to_shost(phy->dev.parent); \
514 struct sas_internal *i = to_sas_internal(shost->transportt); \
515 int error; \
517 error = i->f->get_linkerrors ? i->f->get_linkerrors(phy) : 0; \
518 if (error) \
519 return error; \
520 return snprintf(buf, 20, "%u\n", phy->field); \
523 #define sas_phy_linkerror_attr(field) \
524 sas_phy_show_linkerror(field) \
525 static DEVICE_ATTR(field, S_IRUGO, show_sas_phy_##field, NULL)
528 static ssize_t
529 show_sas_device_type(struct device *dev,
530 struct device_attribute *attr, char *buf)
532 struct sas_phy *phy = transport_class_to_phy(dev);
534 if (!phy->identify.device_type)
535 return snprintf(buf, 20, "none\n");
536 return get_sas_device_type_names(phy->identify.device_type, buf);
538 static DEVICE_ATTR(device_type, S_IRUGO, show_sas_device_type, NULL);
540 static ssize_t do_sas_phy_enable(struct device *dev,
541 size_t count, int enable)
543 struct sas_phy *phy = transport_class_to_phy(dev);
544 struct Scsi_Host *shost = dev_to_shost(phy->dev.parent);
545 struct sas_internal *i = to_sas_internal(shost->transportt);
546 int error;
548 error = i->f->phy_enable(phy, enable);
549 if (error)
550 return error;
551 phy->enabled = enable;
552 return count;
555 static ssize_t
556 store_sas_phy_enable(struct device *dev, struct device_attribute *attr,
557 const char *buf, size_t count)
559 if (count < 1)
560 return -EINVAL;
562 switch (buf[0]) {
563 case '0':
564 do_sas_phy_enable(dev, count, 0);
565 break;
566 case '1':
567 do_sas_phy_enable(dev, count, 1);
568 break;
569 default:
570 return -EINVAL;
573 return count;
576 static ssize_t
577 show_sas_phy_enable(struct device *dev, struct device_attribute *attr,
578 char *buf)
580 struct sas_phy *phy = transport_class_to_phy(dev);
582 return snprintf(buf, 20, "%d", phy->enabled);
585 static DEVICE_ATTR(enable, S_IRUGO | S_IWUSR, show_sas_phy_enable,
586 store_sas_phy_enable);
588 static ssize_t
589 do_sas_phy_reset(struct device *dev, size_t count, int hard_reset)
591 struct sas_phy *phy = transport_class_to_phy(dev);
592 struct Scsi_Host *shost = dev_to_shost(phy->dev.parent);
593 struct sas_internal *i = to_sas_internal(shost->transportt);
594 int error;
596 error = i->f->phy_reset(phy, hard_reset);
597 if (error)
598 return error;
599 phy->enabled = 1;
600 return count;
603 static ssize_t
604 store_sas_link_reset(struct device *dev, struct device_attribute *attr,
605 const char *buf, size_t count)
607 return do_sas_phy_reset(dev, count, 0);
609 static DEVICE_ATTR(link_reset, S_IWUSR, NULL, store_sas_link_reset);
611 static ssize_t
612 store_sas_hard_reset(struct device *dev, struct device_attribute *attr,
613 const char *buf, size_t count)
615 return do_sas_phy_reset(dev, count, 1);
617 static DEVICE_ATTR(hard_reset, S_IWUSR, NULL, store_sas_hard_reset);
619 sas_phy_protocol_attr(identify.initiator_port_protocols,
620 initiator_port_protocols);
621 sas_phy_protocol_attr(identify.target_port_protocols,
622 target_port_protocols);
623 sas_phy_simple_attr(identify.sas_address, sas_address, "0x%016llx\n",
624 unsigned long long);
625 sas_phy_simple_attr(identify.phy_identifier, phy_identifier, "%d\n", u8);
626 //sas_phy_simple_attr(port_identifier, port_identifier, "%d\n", int);
627 sas_phy_linkspeed_attr(negotiated_linkrate);
628 sas_phy_linkspeed_attr(minimum_linkrate_hw);
629 sas_phy_linkspeed_rw_attr(minimum_linkrate);
630 sas_phy_linkspeed_attr(maximum_linkrate_hw);
631 sas_phy_linkspeed_rw_attr(maximum_linkrate);
632 sas_phy_linkerror_attr(invalid_dword_count);
633 sas_phy_linkerror_attr(running_disparity_error_count);
634 sas_phy_linkerror_attr(loss_of_dword_sync_count);
635 sas_phy_linkerror_attr(phy_reset_problem_count);
637 static int sas_phy_setup(struct transport_container *tc, struct device *dev,
638 struct device *cdev)
640 struct sas_phy *phy = dev_to_phy(dev);
641 struct Scsi_Host *shost = dev_to_shost(phy->dev.parent);
642 struct sas_internal *i = to_sas_internal(shost->transportt);
644 if (i->f->phy_setup)
645 i->f->phy_setup(phy);
647 return 0;
650 static DECLARE_TRANSPORT_CLASS(sas_phy_class,
651 "sas_phy", sas_phy_setup, NULL, NULL);
653 static int sas_phy_match(struct attribute_container *cont, struct device *dev)
655 struct Scsi_Host *shost;
656 struct sas_internal *i;
658 if (!scsi_is_sas_phy(dev))
659 return 0;
660 shost = dev_to_shost(dev->parent);
662 if (!shost->transportt)
663 return 0;
664 if (shost->transportt->host_attrs.ac.class !=
665 &sas_host_class.class)
666 return 0;
668 i = to_sas_internal(shost->transportt);
669 return &i->phy_attr_cont.ac == cont;
672 static void sas_phy_release(struct device *dev)
674 struct sas_phy *phy = dev_to_phy(dev);
675 struct Scsi_Host *shost = dev_to_shost(phy->dev.parent);
676 struct sas_internal *i = to_sas_internal(shost->transportt);
678 if (i->f->phy_release)
679 i->f->phy_release(phy);
680 put_device(dev->parent);
681 kfree(phy);
685 * sas_phy_alloc - allocates and initialize a SAS PHY structure
686 * @parent: Parent device
687 * @number: Phy index
689 * Allocates an SAS PHY structure. It will be added in the device tree
690 * below the device specified by @parent, which has to be either a Scsi_Host
691 * or sas_rphy.
693 * Returns:
694 * SAS PHY allocated or %NULL if the allocation failed.
696 struct sas_phy *sas_phy_alloc(struct device *parent, int number)
698 struct Scsi_Host *shost = dev_to_shost(parent);
699 struct sas_phy *phy;
701 phy = kzalloc(sizeof(*phy), GFP_KERNEL);
702 if (!phy)
703 return NULL;
705 phy->number = number;
706 phy->enabled = 1;
708 device_initialize(&phy->dev);
709 phy->dev.parent = get_device(parent);
710 phy->dev.release = sas_phy_release;
711 INIT_LIST_HEAD(&phy->port_siblings);
712 if (scsi_is_sas_expander_device(parent)) {
713 struct sas_rphy *rphy = dev_to_rphy(parent);
714 dev_set_name(&phy->dev, "phy-%d:%d:%d", shost->host_no,
715 rphy->scsi_target_id, number);
716 } else
717 dev_set_name(&phy->dev, "phy-%d:%d", shost->host_no, number);
719 transport_setup_device(&phy->dev);
721 return phy;
723 EXPORT_SYMBOL(sas_phy_alloc);
726 * sas_phy_add - add a SAS PHY to the device hierarchy
727 * @phy: The PHY to be added
729 * Publishes a SAS PHY to the rest of the system.
731 int sas_phy_add(struct sas_phy *phy)
733 int error;
735 error = device_add(&phy->dev);
736 if (!error) {
737 transport_add_device(&phy->dev);
738 transport_configure_device(&phy->dev);
741 return error;
743 EXPORT_SYMBOL(sas_phy_add);
746 * sas_phy_free - free a SAS PHY
747 * @phy: SAS PHY to free
749 * Frees the specified SAS PHY.
751 * Note:
752 * This function must only be called on a PHY that has not
753 * successfully been added using sas_phy_add().
755 void sas_phy_free(struct sas_phy *phy)
757 transport_destroy_device(&phy->dev);
758 put_device(&phy->dev);
760 EXPORT_SYMBOL(sas_phy_free);
763 * sas_phy_delete - remove SAS PHY
764 * @phy: SAS PHY to remove
766 * Removes the specified SAS PHY. If the SAS PHY has an
767 * associated remote PHY it is removed before.
769 void
770 sas_phy_delete(struct sas_phy *phy)
772 struct device *dev = &phy->dev;
774 /* this happens if the phy is still part of a port when deleted */
775 BUG_ON(!list_empty(&phy->port_siblings));
777 transport_remove_device(dev);
778 device_del(dev);
779 transport_destroy_device(dev);
780 put_device(dev);
782 EXPORT_SYMBOL(sas_phy_delete);
785 * scsi_is_sas_phy - check if a struct device represents a SAS PHY
786 * @dev: device to check
788 * Returns:
789 * %1 if the device represents a SAS PHY, %0 else
791 int scsi_is_sas_phy(const struct device *dev)
793 return dev->release == sas_phy_release;
795 EXPORT_SYMBOL(scsi_is_sas_phy);
798 * SAS Port attributes
800 #define sas_port_show_simple(field, name, format_string, cast) \
801 static ssize_t \
802 show_sas_port_##name(struct device *dev, \
803 struct device_attribute *attr, char *buf) \
805 struct sas_port *port = transport_class_to_sas_port(dev); \
807 return snprintf(buf, 20, format_string, cast port->field); \
810 #define sas_port_simple_attr(field, name, format_string, type) \
811 sas_port_show_simple(field, name, format_string, (type)) \
812 static DEVICE_ATTR(name, S_IRUGO, show_sas_port_##name, NULL)
814 sas_port_simple_attr(num_phys, num_phys, "%d\n", int);
816 static DECLARE_TRANSPORT_CLASS(sas_port_class,
817 "sas_port", NULL, NULL, NULL);
819 static int sas_port_match(struct attribute_container *cont, struct device *dev)
821 struct Scsi_Host *shost;
822 struct sas_internal *i;
824 if (!scsi_is_sas_port(dev))
825 return 0;
826 shost = dev_to_shost(dev->parent);
828 if (!shost->transportt)
829 return 0;
830 if (shost->transportt->host_attrs.ac.class !=
831 &sas_host_class.class)
832 return 0;
834 i = to_sas_internal(shost->transportt);
835 return &i->port_attr_cont.ac == cont;
839 static void sas_port_release(struct device *dev)
841 struct sas_port *port = dev_to_sas_port(dev);
843 BUG_ON(!list_empty(&port->phy_list));
845 put_device(dev->parent);
846 kfree(port);
849 static void sas_port_create_link(struct sas_port *port,
850 struct sas_phy *phy)
852 int res;
854 res = sysfs_create_link(&port->dev.kobj, &phy->dev.kobj,
855 dev_name(&phy->dev));
856 if (res)
857 goto err;
858 res = sysfs_create_link(&phy->dev.kobj, &port->dev.kobj, "port");
859 if (res)
860 goto err;
861 return;
862 err:
863 printk(KERN_ERR "%s: Cannot create port links, err=%d\n",
864 __func__, res);
867 static void sas_port_delete_link(struct sas_port *port,
868 struct sas_phy *phy)
870 sysfs_remove_link(&port->dev.kobj, dev_name(&phy->dev));
871 sysfs_remove_link(&phy->dev.kobj, "port");
874 /** sas_port_alloc - allocate and initialize a SAS port structure
876 * @parent: parent device
877 * @port_id: port number
879 * Allocates a SAS port structure. It will be added to the device tree
880 * below the device specified by @parent which must be either a Scsi_Host
881 * or a sas_expander_device.
883 * Returns %NULL on error
885 struct sas_port *sas_port_alloc(struct device *parent, int port_id)
887 struct Scsi_Host *shost = dev_to_shost(parent);
888 struct sas_port *port;
890 port = kzalloc(sizeof(*port), GFP_KERNEL);
891 if (!port)
892 return NULL;
894 port->port_identifier = port_id;
896 device_initialize(&port->dev);
898 port->dev.parent = get_device(parent);
899 port->dev.release = sas_port_release;
901 mutex_init(&port->phy_list_mutex);
902 INIT_LIST_HEAD(&port->phy_list);
904 if (scsi_is_sas_expander_device(parent)) {
905 struct sas_rphy *rphy = dev_to_rphy(parent);
906 dev_set_name(&port->dev, "port-%d:%d:%d", shost->host_no,
907 rphy->scsi_target_id, port->port_identifier);
908 } else
909 dev_set_name(&port->dev, "port-%d:%d", shost->host_no,
910 port->port_identifier);
912 transport_setup_device(&port->dev);
914 return port;
916 EXPORT_SYMBOL(sas_port_alloc);
918 /** sas_port_alloc_num - allocate and initialize a SAS port structure
920 * @parent: parent device
922 * Allocates a SAS port structure and a number to go with it. This
923 * interface is really for adapters where the port number has no
924 * meansing, so the sas class should manage them. It will be added to
925 * the device tree below the device specified by @parent which must be
926 * either a Scsi_Host or a sas_expander_device.
928 * Returns %NULL on error
930 struct sas_port *sas_port_alloc_num(struct device *parent)
932 int index;
933 struct Scsi_Host *shost = dev_to_shost(parent);
934 struct sas_host_attrs *sas_host = to_sas_host_attrs(shost);
936 /* FIXME: use idr for this eventually */
937 mutex_lock(&sas_host->lock);
938 if (scsi_is_sas_expander_device(parent)) {
939 struct sas_rphy *rphy = dev_to_rphy(parent);
940 struct sas_expander_device *exp = rphy_to_expander_device(rphy);
942 index = exp->next_port_id++;
943 } else
944 index = sas_host->next_port_id++;
945 mutex_unlock(&sas_host->lock);
946 return sas_port_alloc(parent, index);
948 EXPORT_SYMBOL(sas_port_alloc_num);
951 * sas_port_add - add a SAS port to the device hierarchy
952 * @port: port to be added
954 * publishes a port to the rest of the system
956 int sas_port_add(struct sas_port *port)
958 int error;
960 /* No phys should be added until this is made visible */
961 BUG_ON(!list_empty(&port->phy_list));
963 error = device_add(&port->dev);
965 if (error)
966 return error;
968 transport_add_device(&port->dev);
969 transport_configure_device(&port->dev);
971 return 0;
973 EXPORT_SYMBOL(sas_port_add);
976 * sas_port_free - free a SAS PORT
977 * @port: SAS PORT to free
979 * Frees the specified SAS PORT.
981 * Note:
982 * This function must only be called on a PORT that has not
983 * successfully been added using sas_port_add().
985 void sas_port_free(struct sas_port *port)
987 transport_destroy_device(&port->dev);
988 put_device(&port->dev);
990 EXPORT_SYMBOL(sas_port_free);
993 * sas_port_delete - remove SAS PORT
994 * @port: SAS PORT to remove
996 * Removes the specified SAS PORT. If the SAS PORT has an
997 * associated phys, unlink them from the port as well.
999 void sas_port_delete(struct sas_port *port)
1001 struct device *dev = &port->dev;
1002 struct sas_phy *phy, *tmp_phy;
1004 if (port->rphy) {
1005 sas_rphy_delete(port->rphy);
1006 port->rphy = NULL;
1009 mutex_lock(&port->phy_list_mutex);
1010 list_for_each_entry_safe(phy, tmp_phy, &port->phy_list,
1011 port_siblings) {
1012 sas_port_delete_link(port, phy);
1013 list_del_init(&phy->port_siblings);
1015 mutex_unlock(&port->phy_list_mutex);
1017 if (port->is_backlink) {
1018 struct device *parent = port->dev.parent;
1020 sysfs_remove_link(&port->dev.kobj, dev_name(parent));
1021 port->is_backlink = 0;
1024 transport_remove_device(dev);
1025 device_del(dev);
1026 transport_destroy_device(dev);
1027 put_device(dev);
1029 EXPORT_SYMBOL(sas_port_delete);
1032 * scsi_is_sas_port - check if a struct device represents a SAS port
1033 * @dev: device to check
1035 * Returns:
1036 * %1 if the device represents a SAS Port, %0 else
1038 int scsi_is_sas_port(const struct device *dev)
1040 return dev->release == sas_port_release;
1042 EXPORT_SYMBOL(scsi_is_sas_port);
1045 * sas_port_get_phy - try to take a reference on a port member
1046 * @port: port to check
1048 struct sas_phy *sas_port_get_phy(struct sas_port *port)
1050 struct sas_phy *phy;
1052 mutex_lock(&port->phy_list_mutex);
1053 if (list_empty(&port->phy_list))
1054 phy = NULL;
1055 else {
1056 struct list_head *ent = port->phy_list.next;
1058 phy = list_entry(ent, typeof(*phy), port_siblings);
1059 get_device(&phy->dev);
1061 mutex_unlock(&port->phy_list_mutex);
1063 return phy;
1065 EXPORT_SYMBOL(sas_port_get_phy);
1068 * sas_port_add_phy - add another phy to a port to form a wide port
1069 * @port: port to add the phy to
1070 * @phy: phy to add
1072 * When a port is initially created, it is empty (has no phys). All
1073 * ports must have at least one phy to operated, and all wide ports
1074 * must have at least two. The current code makes no difference
1075 * between ports and wide ports, but the only object that can be
1076 * connected to a remote device is a port, so ports must be formed on
1077 * all devices with phys if they're connected to anything.
1079 void sas_port_add_phy(struct sas_port *port, struct sas_phy *phy)
1081 mutex_lock(&port->phy_list_mutex);
1082 if (unlikely(!list_empty(&phy->port_siblings))) {
1083 /* make sure we're already on this port */
1084 struct sas_phy *tmp;
1086 list_for_each_entry(tmp, &port->phy_list, port_siblings)
1087 if (tmp == phy)
1088 break;
1089 /* If this trips, you added a phy that was already
1090 * part of a different port */
1091 if (unlikely(tmp != phy)) {
1092 dev_printk(KERN_ERR, &port->dev, "trying to add phy %s fails: it's already part of another port\n",
1093 dev_name(&phy->dev));
1094 BUG();
1096 } else {
1097 sas_port_create_link(port, phy);
1098 list_add_tail(&phy->port_siblings, &port->phy_list);
1099 port->num_phys++;
1101 mutex_unlock(&port->phy_list_mutex);
1103 EXPORT_SYMBOL(sas_port_add_phy);
1106 * sas_port_delete_phy - remove a phy from a port or wide port
1107 * @port: port to remove the phy from
1108 * @phy: phy to remove
1110 * This operation is used for tearing down ports again. It must be
1111 * done to every port or wide port before calling sas_port_delete.
1113 void sas_port_delete_phy(struct sas_port *port, struct sas_phy *phy)
1115 mutex_lock(&port->phy_list_mutex);
1116 sas_port_delete_link(port, phy);
1117 list_del_init(&phy->port_siblings);
1118 port->num_phys--;
1119 mutex_unlock(&port->phy_list_mutex);
1121 EXPORT_SYMBOL(sas_port_delete_phy);
1123 void sas_port_mark_backlink(struct sas_port *port)
1125 int res;
1126 struct device *parent = port->dev.parent->parent->parent;
1128 if (port->is_backlink)
1129 return;
1130 port->is_backlink = 1;
1131 res = sysfs_create_link(&port->dev.kobj, &parent->kobj,
1132 dev_name(parent));
1133 if (res)
1134 goto err;
1135 return;
1136 err:
1137 printk(KERN_ERR "%s: Cannot create port backlink, err=%d\n",
1138 __func__, res);
1141 EXPORT_SYMBOL(sas_port_mark_backlink);
1144 * SAS remote PHY attributes.
1147 #define sas_rphy_show_simple(field, name, format_string, cast) \
1148 static ssize_t \
1149 show_sas_rphy_##name(struct device *dev, \
1150 struct device_attribute *attr, char *buf) \
1152 struct sas_rphy *rphy = transport_class_to_rphy(dev); \
1154 return snprintf(buf, 20, format_string, cast rphy->field); \
1157 #define sas_rphy_simple_attr(field, name, format_string, type) \
1158 sas_rphy_show_simple(field, name, format_string, (type)) \
1159 static SAS_DEVICE_ATTR(rphy, name, S_IRUGO, \
1160 show_sas_rphy_##name, NULL)
1162 #define sas_rphy_show_protocol(field, name) \
1163 static ssize_t \
1164 show_sas_rphy_##name(struct device *dev, \
1165 struct device_attribute *attr, char *buf) \
1167 struct sas_rphy *rphy = transport_class_to_rphy(dev); \
1169 if (!rphy->field) \
1170 return snprintf(buf, 20, "none\n"); \
1171 return get_sas_protocol_names(rphy->field, buf); \
1174 #define sas_rphy_protocol_attr(field, name) \
1175 sas_rphy_show_protocol(field, name) \
1176 static SAS_DEVICE_ATTR(rphy, name, S_IRUGO, \
1177 show_sas_rphy_##name, NULL)
1179 static ssize_t
1180 show_sas_rphy_device_type(struct device *dev,
1181 struct device_attribute *attr, char *buf)
1183 struct sas_rphy *rphy = transport_class_to_rphy(dev);
1185 if (!rphy->identify.device_type)
1186 return snprintf(buf, 20, "none\n");
1187 return get_sas_device_type_names(
1188 rphy->identify.device_type, buf);
1191 static SAS_DEVICE_ATTR(rphy, device_type, S_IRUGO,
1192 show_sas_rphy_device_type, NULL);
1194 static ssize_t
1195 show_sas_rphy_enclosure_identifier(struct device *dev,
1196 struct device_attribute *attr, char *buf)
1198 struct sas_rphy *rphy = transport_class_to_rphy(dev);
1199 struct sas_phy *phy = dev_to_phy(rphy->dev.parent);
1200 struct Scsi_Host *shost = dev_to_shost(phy->dev.parent);
1201 struct sas_internal *i = to_sas_internal(shost->transportt);
1202 u64 identifier;
1203 int error;
1205 error = i->f->get_enclosure_identifier(rphy, &identifier);
1206 if (error)
1207 return error;
1208 return sprintf(buf, "0x%llx\n", (unsigned long long)identifier);
1211 static SAS_DEVICE_ATTR(rphy, enclosure_identifier, S_IRUGO,
1212 show_sas_rphy_enclosure_identifier, NULL);
1214 static ssize_t
1215 show_sas_rphy_bay_identifier(struct device *dev,
1216 struct device_attribute *attr, char *buf)
1218 struct sas_rphy *rphy = transport_class_to_rphy(dev);
1219 struct sas_phy *phy = dev_to_phy(rphy->dev.parent);
1220 struct Scsi_Host *shost = dev_to_shost(phy->dev.parent);
1221 struct sas_internal *i = to_sas_internal(shost->transportt);
1222 int val;
1224 val = i->f->get_bay_identifier(rphy);
1225 if (val < 0)
1226 return val;
1227 return sprintf(buf, "%d\n", val);
1230 static SAS_DEVICE_ATTR(rphy, bay_identifier, S_IRUGO,
1231 show_sas_rphy_bay_identifier, NULL);
1233 sas_rphy_protocol_attr(identify.initiator_port_protocols,
1234 initiator_port_protocols);
1235 sas_rphy_protocol_attr(identify.target_port_protocols, target_port_protocols);
1236 sas_rphy_simple_attr(identify.sas_address, sas_address, "0x%016llx\n",
1237 unsigned long long);
1238 sas_rphy_simple_attr(identify.phy_identifier, phy_identifier, "%d\n", u8);
1239 sas_rphy_simple_attr(scsi_target_id, scsi_target_id, "%d\n", u32);
1241 /* only need 8 bytes of data plus header (4 or 8) */
1242 #define BUF_SIZE 64
1244 int sas_read_port_mode_page(struct scsi_device *sdev)
1246 char *buffer = kzalloc(BUF_SIZE, GFP_KERNEL), *msdata;
1247 struct sas_end_device *rdev = sas_sdev_to_rdev(sdev);
1248 struct scsi_mode_data mode_data;
1249 int res, error;
1251 if (!buffer)
1252 return -ENOMEM;
1254 res = scsi_mode_sense(sdev, 1, 0x19, buffer, BUF_SIZE, 30*HZ, 3,
1255 &mode_data, NULL);
1257 error = -EINVAL;
1258 if (!scsi_status_is_good(res))
1259 goto out;
1261 msdata = buffer + mode_data.header_length +
1262 mode_data.block_descriptor_length;
1264 if (msdata - buffer > BUF_SIZE - 8)
1265 goto out;
1267 error = 0;
1269 rdev->ready_led_meaning = msdata[2] & 0x10 ? 1 : 0;
1270 rdev->I_T_nexus_loss_timeout = (msdata[4] << 8) + msdata[5];
1271 rdev->initiator_response_timeout = (msdata[6] << 8) + msdata[7];
1273 out:
1274 kfree(buffer);
1275 return error;
1277 EXPORT_SYMBOL(sas_read_port_mode_page);
1279 static DECLARE_TRANSPORT_CLASS(sas_end_dev_class,
1280 "sas_end_device", NULL, NULL, NULL);
1282 #define sas_end_dev_show_simple(field, name, format_string, cast) \
1283 static ssize_t \
1284 show_sas_end_dev_##name(struct device *dev, \
1285 struct device_attribute *attr, char *buf) \
1287 struct sas_rphy *rphy = transport_class_to_rphy(dev); \
1288 struct sas_end_device *rdev = rphy_to_end_device(rphy); \
1290 return snprintf(buf, 20, format_string, cast rdev->field); \
1293 #define sas_end_dev_simple_attr(field, name, format_string, type) \
1294 sas_end_dev_show_simple(field, name, format_string, (type)) \
1295 static SAS_DEVICE_ATTR(end_dev, name, S_IRUGO, \
1296 show_sas_end_dev_##name, NULL)
1298 sas_end_dev_simple_attr(ready_led_meaning, ready_led_meaning, "%d\n", int);
1299 sas_end_dev_simple_attr(I_T_nexus_loss_timeout, I_T_nexus_loss_timeout,
1300 "%d\n", int);
1301 sas_end_dev_simple_attr(initiator_response_timeout, initiator_response_timeout,
1302 "%d\n", int);
1303 sas_end_dev_simple_attr(tlr_supported, tlr_supported,
1304 "%d\n", int);
1305 sas_end_dev_simple_attr(tlr_enabled, tlr_enabled,
1306 "%d\n", int);
1308 static DECLARE_TRANSPORT_CLASS(sas_expander_class,
1309 "sas_expander", NULL, NULL, NULL);
1311 #define sas_expander_show_simple(field, name, format_string, cast) \
1312 static ssize_t \
1313 show_sas_expander_##name(struct device *dev, \
1314 struct device_attribute *attr, char *buf) \
1316 struct sas_rphy *rphy = transport_class_to_rphy(dev); \
1317 struct sas_expander_device *edev = rphy_to_expander_device(rphy); \
1319 return snprintf(buf, 20, format_string, cast edev->field); \
1322 #define sas_expander_simple_attr(field, name, format_string, type) \
1323 sas_expander_show_simple(field, name, format_string, (type)) \
1324 static SAS_DEVICE_ATTR(expander, name, S_IRUGO, \
1325 show_sas_expander_##name, NULL)
1327 sas_expander_simple_attr(vendor_id, vendor_id, "%s\n", char *);
1328 sas_expander_simple_attr(product_id, product_id, "%s\n", char *);
1329 sas_expander_simple_attr(product_rev, product_rev, "%s\n", char *);
1330 sas_expander_simple_attr(component_vendor_id, component_vendor_id,
1331 "%s\n", char *);
1332 sas_expander_simple_attr(component_id, component_id, "%u\n", unsigned int);
1333 sas_expander_simple_attr(component_revision_id, component_revision_id, "%u\n",
1334 unsigned int);
1335 sas_expander_simple_attr(level, level, "%d\n", int);
1337 static DECLARE_TRANSPORT_CLASS(sas_rphy_class,
1338 "sas_device", NULL, NULL, NULL);
1340 static int sas_rphy_match(struct attribute_container *cont, struct device *dev)
1342 struct Scsi_Host *shost;
1343 struct sas_internal *i;
1345 if (!scsi_is_sas_rphy(dev))
1346 return 0;
1347 shost = dev_to_shost(dev->parent->parent);
1349 if (!shost->transportt)
1350 return 0;
1351 if (shost->transportt->host_attrs.ac.class !=
1352 &sas_host_class.class)
1353 return 0;
1355 i = to_sas_internal(shost->transportt);
1356 return &i->rphy_attr_cont.ac == cont;
1359 static int sas_end_dev_match(struct attribute_container *cont,
1360 struct device *dev)
1362 struct Scsi_Host *shost;
1363 struct sas_internal *i;
1364 struct sas_rphy *rphy;
1366 if (!scsi_is_sas_rphy(dev))
1367 return 0;
1368 shost = dev_to_shost(dev->parent->parent);
1369 rphy = dev_to_rphy(dev);
1371 if (!shost->transportt)
1372 return 0;
1373 if (shost->transportt->host_attrs.ac.class !=
1374 &sas_host_class.class)
1375 return 0;
1377 i = to_sas_internal(shost->transportt);
1378 return &i->end_dev_attr_cont.ac == cont &&
1379 rphy->identify.device_type == SAS_END_DEVICE;
1382 static int sas_expander_match(struct attribute_container *cont,
1383 struct device *dev)
1385 struct Scsi_Host *shost;
1386 struct sas_internal *i;
1387 struct sas_rphy *rphy;
1389 if (!scsi_is_sas_rphy(dev))
1390 return 0;
1391 shost = dev_to_shost(dev->parent->parent);
1392 rphy = dev_to_rphy(dev);
1394 if (!shost->transportt)
1395 return 0;
1396 if (shost->transportt->host_attrs.ac.class !=
1397 &sas_host_class.class)
1398 return 0;
1400 i = to_sas_internal(shost->transportt);
1401 return &i->expander_attr_cont.ac == cont &&
1402 (rphy->identify.device_type == SAS_EDGE_EXPANDER_DEVICE ||
1403 rphy->identify.device_type == SAS_FANOUT_EXPANDER_DEVICE);
1406 static void sas_expander_release(struct device *dev)
1408 struct sas_rphy *rphy = dev_to_rphy(dev);
1409 struct sas_expander_device *edev = rphy_to_expander_device(rphy);
1411 if (rphy->q)
1412 blk_cleanup_queue(rphy->q);
1414 put_device(dev->parent);
1415 kfree(edev);
1418 static void sas_end_device_release(struct device *dev)
1420 struct sas_rphy *rphy = dev_to_rphy(dev);
1421 struct sas_end_device *edev = rphy_to_end_device(rphy);
1423 if (rphy->q)
1424 blk_cleanup_queue(rphy->q);
1426 put_device(dev->parent);
1427 kfree(edev);
1431 * sas_rphy_initialize - common rphy initialization
1432 * @rphy: rphy to initialise
1434 * Used by both sas_end_device_alloc() and sas_expander_alloc() to
1435 * initialise the common rphy component of each.
1437 static void sas_rphy_initialize(struct sas_rphy *rphy)
1439 INIT_LIST_HEAD(&rphy->list);
1443 * sas_end_device_alloc - allocate an rphy for an end device
1444 * @parent: which port
1446 * Allocates an SAS remote PHY structure, connected to @parent.
1448 * Returns:
1449 * SAS PHY allocated or %NULL if the allocation failed.
1451 struct sas_rphy *sas_end_device_alloc(struct sas_port *parent)
1453 struct Scsi_Host *shost = dev_to_shost(&parent->dev);
1454 struct sas_end_device *rdev;
1456 rdev = kzalloc(sizeof(*rdev), GFP_KERNEL);
1457 if (!rdev) {
1458 return NULL;
1461 device_initialize(&rdev->rphy.dev);
1462 rdev->rphy.dev.parent = get_device(&parent->dev);
1463 rdev->rphy.dev.release = sas_end_device_release;
1464 if (scsi_is_sas_expander_device(parent->dev.parent)) {
1465 struct sas_rphy *rphy = dev_to_rphy(parent->dev.parent);
1466 dev_set_name(&rdev->rphy.dev, "end_device-%d:%d:%d",
1467 shost->host_no, rphy->scsi_target_id,
1468 parent->port_identifier);
1469 } else
1470 dev_set_name(&rdev->rphy.dev, "end_device-%d:%d",
1471 shost->host_no, parent->port_identifier);
1472 rdev->rphy.identify.device_type = SAS_END_DEVICE;
1473 sas_rphy_initialize(&rdev->rphy);
1474 transport_setup_device(&rdev->rphy.dev);
1476 return &rdev->rphy;
1478 EXPORT_SYMBOL(sas_end_device_alloc);
1481 * sas_expander_alloc - allocate an rphy for an end device
1482 * @parent: which port
1483 * @type: SAS_EDGE_EXPANDER_DEVICE or SAS_FANOUT_EXPANDER_DEVICE
1485 * Allocates an SAS remote PHY structure, connected to @parent.
1487 * Returns:
1488 * SAS PHY allocated or %NULL if the allocation failed.
1490 struct sas_rphy *sas_expander_alloc(struct sas_port *parent,
1491 enum sas_device_type type)
1493 struct Scsi_Host *shost = dev_to_shost(&parent->dev);
1494 struct sas_expander_device *rdev;
1495 struct sas_host_attrs *sas_host = to_sas_host_attrs(shost);
1497 BUG_ON(type != SAS_EDGE_EXPANDER_DEVICE &&
1498 type != SAS_FANOUT_EXPANDER_DEVICE);
1500 rdev = kzalloc(sizeof(*rdev), GFP_KERNEL);
1501 if (!rdev) {
1502 return NULL;
1505 device_initialize(&rdev->rphy.dev);
1506 rdev->rphy.dev.parent = get_device(&parent->dev);
1507 rdev->rphy.dev.release = sas_expander_release;
1508 mutex_lock(&sas_host->lock);
1509 rdev->rphy.scsi_target_id = sas_host->next_expander_id++;
1510 mutex_unlock(&sas_host->lock);
1511 dev_set_name(&rdev->rphy.dev, "expander-%d:%d",
1512 shost->host_no, rdev->rphy.scsi_target_id);
1513 rdev->rphy.identify.device_type = type;
1514 sas_rphy_initialize(&rdev->rphy);
1515 transport_setup_device(&rdev->rphy.dev);
1517 return &rdev->rphy;
1519 EXPORT_SYMBOL(sas_expander_alloc);
1522 * sas_rphy_add - add a SAS remote PHY to the device hierarchy
1523 * @rphy: The remote PHY to be added
1525 * Publishes a SAS remote PHY to the rest of the system.
1527 int sas_rphy_add(struct sas_rphy *rphy)
1529 struct sas_port *parent = dev_to_sas_port(rphy->dev.parent);
1530 struct Scsi_Host *shost = dev_to_shost(parent->dev.parent);
1531 struct sas_host_attrs *sas_host = to_sas_host_attrs(shost);
1532 struct sas_identify *identify = &rphy->identify;
1533 int error;
1535 if (parent->rphy)
1536 return -ENXIO;
1537 parent->rphy = rphy;
1539 error = device_add(&rphy->dev);
1540 if (error)
1541 return error;
1542 transport_add_device(&rphy->dev);
1543 transport_configure_device(&rphy->dev);
1544 if (sas_bsg_initialize(shost, rphy))
1545 printk("fail to a bsg device %s\n", dev_name(&rphy->dev));
1548 mutex_lock(&sas_host->lock);
1549 list_add_tail(&rphy->list, &sas_host->rphy_list);
1550 if (identify->device_type == SAS_END_DEVICE &&
1551 (identify->target_port_protocols &
1552 (SAS_PROTOCOL_SSP|SAS_PROTOCOL_STP|SAS_PROTOCOL_SATA)))
1553 rphy->scsi_target_id = sas_host->next_target_id++;
1554 else if (identify->device_type == SAS_END_DEVICE)
1555 rphy->scsi_target_id = -1;
1556 mutex_unlock(&sas_host->lock);
1558 if (identify->device_type == SAS_END_DEVICE &&
1559 rphy->scsi_target_id != -1) {
1560 int lun;
1562 if (identify->target_port_protocols & SAS_PROTOCOL_SSP)
1563 lun = SCAN_WILD_CARD;
1564 else
1565 lun = 0;
1567 scsi_scan_target(&rphy->dev, 0, rphy->scsi_target_id, lun,
1568 SCSI_SCAN_INITIAL);
1571 return 0;
1573 EXPORT_SYMBOL(sas_rphy_add);
1576 * sas_rphy_free - free a SAS remote PHY
1577 * @rphy: SAS remote PHY to free
1579 * Frees the specified SAS remote PHY.
1581 * Note:
1582 * This function must only be called on a remote
1583 * PHY that has not successfully been added using
1584 * sas_rphy_add() (or has been sas_rphy_remove()'d)
1586 void sas_rphy_free(struct sas_rphy *rphy)
1588 struct device *dev = &rphy->dev;
1589 struct Scsi_Host *shost = dev_to_shost(rphy->dev.parent->parent);
1590 struct sas_host_attrs *sas_host = to_sas_host_attrs(shost);
1592 mutex_lock(&sas_host->lock);
1593 list_del(&rphy->list);
1594 mutex_unlock(&sas_host->lock);
1596 transport_destroy_device(dev);
1598 put_device(dev);
1600 EXPORT_SYMBOL(sas_rphy_free);
1603 * sas_rphy_delete - remove and free SAS remote PHY
1604 * @rphy: SAS remote PHY to remove and free
1606 * Removes the specified SAS remote PHY and frees it.
1608 void
1609 sas_rphy_delete(struct sas_rphy *rphy)
1611 sas_rphy_remove(rphy);
1612 sas_rphy_free(rphy);
1614 EXPORT_SYMBOL(sas_rphy_delete);
1617 * sas_rphy_unlink - unlink SAS remote PHY
1618 * @rphy: SAS remote phy to unlink from its parent port
1620 * Removes port reference to an rphy
1622 void sas_rphy_unlink(struct sas_rphy *rphy)
1624 struct sas_port *parent = dev_to_sas_port(rphy->dev.parent);
1626 parent->rphy = NULL;
1628 EXPORT_SYMBOL(sas_rphy_unlink);
1631 * sas_rphy_remove - remove SAS remote PHY
1632 * @rphy: SAS remote phy to remove
1634 * Removes the specified SAS remote PHY.
1636 void
1637 sas_rphy_remove(struct sas_rphy *rphy)
1639 struct device *dev = &rphy->dev;
1641 switch (rphy->identify.device_type) {
1642 case SAS_END_DEVICE:
1643 scsi_remove_target(dev);
1644 break;
1645 case SAS_EDGE_EXPANDER_DEVICE:
1646 case SAS_FANOUT_EXPANDER_DEVICE:
1647 sas_remove_children(dev);
1648 break;
1649 default:
1650 break;
1653 sas_rphy_unlink(rphy);
1654 if (rphy->q)
1655 bsg_unregister_queue(rphy->q);
1656 transport_remove_device(dev);
1657 device_del(dev);
1659 EXPORT_SYMBOL(sas_rphy_remove);
1662 * scsi_is_sas_rphy - check if a struct device represents a SAS remote PHY
1663 * @dev: device to check
1665 * Returns:
1666 * %1 if the device represents a SAS remote PHY, %0 else
1668 int scsi_is_sas_rphy(const struct device *dev)
1670 return dev->release == sas_end_device_release ||
1671 dev->release == sas_expander_release;
1673 EXPORT_SYMBOL(scsi_is_sas_rphy);
1677 * SCSI scan helper
1680 static int sas_user_scan(struct Scsi_Host *shost, uint channel,
1681 uint id, u64 lun)
1683 struct sas_host_attrs *sas_host = to_sas_host_attrs(shost);
1684 struct sas_rphy *rphy;
1686 mutex_lock(&sas_host->lock);
1687 list_for_each_entry(rphy, &sas_host->rphy_list, list) {
1688 if (rphy->identify.device_type != SAS_END_DEVICE ||
1689 rphy->scsi_target_id == -1)
1690 continue;
1692 if ((channel == SCAN_WILD_CARD || channel == 0) &&
1693 (id == SCAN_WILD_CARD || id == rphy->scsi_target_id)) {
1694 scsi_scan_target(&rphy->dev, 0, rphy->scsi_target_id,
1695 lun, SCSI_SCAN_MANUAL);
1698 mutex_unlock(&sas_host->lock);
1700 return 0;
1705 * Setup / Teardown code
1708 #define SETUP_TEMPLATE(attrb, field, perm, test) \
1709 i->private_##attrb[count] = dev_attr_##field; \
1710 i->private_##attrb[count].attr.mode = perm; \
1711 i->attrb[count] = &i->private_##attrb[count]; \
1712 if (test) \
1713 count++
1715 #define SETUP_TEMPLATE_RW(attrb, field, perm, test, ro_test, ro_perm) \
1716 i->private_##attrb[count] = dev_attr_##field; \
1717 i->private_##attrb[count].attr.mode = perm; \
1718 if (ro_test) { \
1719 i->private_##attrb[count].attr.mode = ro_perm; \
1720 i->private_##attrb[count].store = NULL; \
1722 i->attrb[count] = &i->private_##attrb[count]; \
1723 if (test) \
1724 count++
1726 #define SETUP_RPORT_ATTRIBUTE(field) \
1727 SETUP_TEMPLATE(rphy_attrs, field, S_IRUGO, 1)
1729 #define SETUP_OPTIONAL_RPORT_ATTRIBUTE(field, func) \
1730 SETUP_TEMPLATE(rphy_attrs, field, S_IRUGO, i->f->func)
1732 #define SETUP_PHY_ATTRIBUTE(field) \
1733 SETUP_TEMPLATE(phy_attrs, field, S_IRUGO, 1)
1735 #define SETUP_PHY_ATTRIBUTE_RW(field) \
1736 SETUP_TEMPLATE_RW(phy_attrs, field, S_IRUGO | S_IWUSR, 1, \
1737 !i->f->set_phy_speed, S_IRUGO)
1739 #define SETUP_OPTIONAL_PHY_ATTRIBUTE_RW(field, func) \
1740 SETUP_TEMPLATE_RW(phy_attrs, field, S_IRUGO | S_IWUSR, 1, \
1741 !i->f->func, S_IRUGO)
1743 #define SETUP_PORT_ATTRIBUTE(field) \
1744 SETUP_TEMPLATE(port_attrs, field, S_IRUGO, 1)
1746 #define SETUP_OPTIONAL_PHY_ATTRIBUTE(field, func) \
1747 SETUP_TEMPLATE(phy_attrs, field, S_IRUGO, i->f->func)
1749 #define SETUP_PHY_ATTRIBUTE_WRONLY(field) \
1750 SETUP_TEMPLATE(phy_attrs, field, S_IWUSR, 1)
1752 #define SETUP_OPTIONAL_PHY_ATTRIBUTE_WRONLY(field, func) \
1753 SETUP_TEMPLATE(phy_attrs, field, S_IWUSR, i->f->func)
1755 #define SETUP_END_DEV_ATTRIBUTE(field) \
1756 SETUP_TEMPLATE(end_dev_attrs, field, S_IRUGO, 1)
1758 #define SETUP_EXPANDER_ATTRIBUTE(field) \
1759 SETUP_TEMPLATE(expander_attrs, expander_##field, S_IRUGO, 1)
1762 * sas_attach_transport - instantiate SAS transport template
1763 * @ft: SAS transport class function template
1765 struct scsi_transport_template *
1766 sas_attach_transport(struct sas_function_template *ft)
1768 struct sas_internal *i;
1769 int count;
1771 i = kzalloc(sizeof(struct sas_internal), GFP_KERNEL);
1772 if (!i)
1773 return NULL;
1775 i->t.user_scan = sas_user_scan;
1777 i->t.host_attrs.ac.attrs = &i->host_attrs[0];
1778 i->t.host_attrs.ac.class = &sas_host_class.class;
1779 i->t.host_attrs.ac.match = sas_host_match;
1780 transport_container_register(&i->t.host_attrs);
1781 i->t.host_size = sizeof(struct sas_host_attrs);
1783 i->phy_attr_cont.ac.class = &sas_phy_class.class;
1784 i->phy_attr_cont.ac.attrs = &i->phy_attrs[0];
1785 i->phy_attr_cont.ac.match = sas_phy_match;
1786 transport_container_register(&i->phy_attr_cont);
1788 i->port_attr_cont.ac.class = &sas_port_class.class;
1789 i->port_attr_cont.ac.attrs = &i->port_attrs[0];
1790 i->port_attr_cont.ac.match = sas_port_match;
1791 transport_container_register(&i->port_attr_cont);
1793 i->rphy_attr_cont.ac.class = &sas_rphy_class.class;
1794 i->rphy_attr_cont.ac.attrs = &i->rphy_attrs[0];
1795 i->rphy_attr_cont.ac.match = sas_rphy_match;
1796 transport_container_register(&i->rphy_attr_cont);
1798 i->end_dev_attr_cont.ac.class = &sas_end_dev_class.class;
1799 i->end_dev_attr_cont.ac.attrs = &i->end_dev_attrs[0];
1800 i->end_dev_attr_cont.ac.match = sas_end_dev_match;
1801 transport_container_register(&i->end_dev_attr_cont);
1803 i->expander_attr_cont.ac.class = &sas_expander_class.class;
1804 i->expander_attr_cont.ac.attrs = &i->expander_attrs[0];
1805 i->expander_attr_cont.ac.match = sas_expander_match;
1806 transport_container_register(&i->expander_attr_cont);
1808 i->f = ft;
1810 count = 0;
1811 SETUP_PHY_ATTRIBUTE(initiator_port_protocols);
1812 SETUP_PHY_ATTRIBUTE(target_port_protocols);
1813 SETUP_PHY_ATTRIBUTE(device_type);
1814 SETUP_PHY_ATTRIBUTE(sas_address);
1815 SETUP_PHY_ATTRIBUTE(phy_identifier);
1816 //SETUP_PHY_ATTRIBUTE(port_identifier);
1817 SETUP_PHY_ATTRIBUTE(negotiated_linkrate);
1818 SETUP_PHY_ATTRIBUTE(minimum_linkrate_hw);
1819 SETUP_PHY_ATTRIBUTE_RW(minimum_linkrate);
1820 SETUP_PHY_ATTRIBUTE(maximum_linkrate_hw);
1821 SETUP_PHY_ATTRIBUTE_RW(maximum_linkrate);
1823 SETUP_PHY_ATTRIBUTE(invalid_dword_count);
1824 SETUP_PHY_ATTRIBUTE(running_disparity_error_count);
1825 SETUP_PHY_ATTRIBUTE(loss_of_dword_sync_count);
1826 SETUP_PHY_ATTRIBUTE(phy_reset_problem_count);
1827 SETUP_OPTIONAL_PHY_ATTRIBUTE_WRONLY(link_reset, phy_reset);
1828 SETUP_OPTIONAL_PHY_ATTRIBUTE_WRONLY(hard_reset, phy_reset);
1829 SETUP_OPTIONAL_PHY_ATTRIBUTE_RW(enable, phy_enable);
1830 i->phy_attrs[count] = NULL;
1832 count = 0;
1833 SETUP_PORT_ATTRIBUTE(num_phys);
1834 i->port_attrs[count] = NULL;
1836 count = 0;
1837 SETUP_RPORT_ATTRIBUTE(rphy_initiator_port_protocols);
1838 SETUP_RPORT_ATTRIBUTE(rphy_target_port_protocols);
1839 SETUP_RPORT_ATTRIBUTE(rphy_device_type);
1840 SETUP_RPORT_ATTRIBUTE(rphy_sas_address);
1841 SETUP_RPORT_ATTRIBUTE(rphy_phy_identifier);
1842 SETUP_RPORT_ATTRIBUTE(rphy_scsi_target_id);
1843 SETUP_OPTIONAL_RPORT_ATTRIBUTE(rphy_enclosure_identifier,
1844 get_enclosure_identifier);
1845 SETUP_OPTIONAL_RPORT_ATTRIBUTE(rphy_bay_identifier,
1846 get_bay_identifier);
1847 i->rphy_attrs[count] = NULL;
1849 count = 0;
1850 SETUP_END_DEV_ATTRIBUTE(end_dev_ready_led_meaning);
1851 SETUP_END_DEV_ATTRIBUTE(end_dev_I_T_nexus_loss_timeout);
1852 SETUP_END_DEV_ATTRIBUTE(end_dev_initiator_response_timeout);
1853 SETUP_END_DEV_ATTRIBUTE(end_dev_tlr_supported);
1854 SETUP_END_DEV_ATTRIBUTE(end_dev_tlr_enabled);
1855 i->end_dev_attrs[count] = NULL;
1857 count = 0;
1858 SETUP_EXPANDER_ATTRIBUTE(vendor_id);
1859 SETUP_EXPANDER_ATTRIBUTE(product_id);
1860 SETUP_EXPANDER_ATTRIBUTE(product_rev);
1861 SETUP_EXPANDER_ATTRIBUTE(component_vendor_id);
1862 SETUP_EXPANDER_ATTRIBUTE(component_id);
1863 SETUP_EXPANDER_ATTRIBUTE(component_revision_id);
1864 SETUP_EXPANDER_ATTRIBUTE(level);
1865 i->expander_attrs[count] = NULL;
1867 return &i->t;
1869 EXPORT_SYMBOL(sas_attach_transport);
1872 * sas_release_transport - release SAS transport template instance
1873 * @t: transport template instance
1875 void sas_release_transport(struct scsi_transport_template *t)
1877 struct sas_internal *i = to_sas_internal(t);
1879 transport_container_unregister(&i->t.host_attrs);
1880 transport_container_unregister(&i->phy_attr_cont);
1881 transport_container_unregister(&i->port_attr_cont);
1882 transport_container_unregister(&i->rphy_attr_cont);
1883 transport_container_unregister(&i->end_dev_attr_cont);
1884 transport_container_unregister(&i->expander_attr_cont);
1886 kfree(i);
1888 EXPORT_SYMBOL(sas_release_transport);
1890 static __init int sas_transport_init(void)
1892 int error;
1894 error = transport_class_register(&sas_host_class);
1895 if (error)
1896 goto out;
1897 error = transport_class_register(&sas_phy_class);
1898 if (error)
1899 goto out_unregister_transport;
1900 error = transport_class_register(&sas_port_class);
1901 if (error)
1902 goto out_unregister_phy;
1903 error = transport_class_register(&sas_rphy_class);
1904 if (error)
1905 goto out_unregister_port;
1906 error = transport_class_register(&sas_end_dev_class);
1907 if (error)
1908 goto out_unregister_rphy;
1909 error = transport_class_register(&sas_expander_class);
1910 if (error)
1911 goto out_unregister_end_dev;
1913 return 0;
1915 out_unregister_end_dev:
1916 transport_class_unregister(&sas_end_dev_class);
1917 out_unregister_rphy:
1918 transport_class_unregister(&sas_rphy_class);
1919 out_unregister_port:
1920 transport_class_unregister(&sas_port_class);
1921 out_unregister_phy:
1922 transport_class_unregister(&sas_phy_class);
1923 out_unregister_transport:
1924 transport_class_unregister(&sas_host_class);
1925 out:
1926 return error;
1930 static void __exit sas_transport_exit(void)
1932 transport_class_unregister(&sas_host_class);
1933 transport_class_unregister(&sas_phy_class);
1934 transport_class_unregister(&sas_port_class);
1935 transport_class_unregister(&sas_rphy_class);
1936 transport_class_unregister(&sas_end_dev_class);
1937 transport_class_unregister(&sas_expander_class);
1940 MODULE_AUTHOR("Christoph Hellwig");
1941 MODULE_DESCRIPTION("SAS Transport Attributes");
1942 MODULE_LICENSE("GPL");
1944 module_init(sas_transport_init);
1945 module_exit(sas_transport_exit);