sas_init.c 8.2 KB

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  1. /*
  2. * Serial Attached SCSI (SAS) Transport Layer initialization
  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., 59 Temple Place, Suite 330, Boston, MA 02111-1307
  22. * USA
  23. *
  24. */
  25. #include <linux/module.h>
  26. #include <linux/init.h>
  27. #include <linux/device.h>
  28. #include <linux/spinlock.h>
  29. #include <scsi/scsi_host.h>
  30. #include <scsi/scsi_device.h>
  31. #include <scsi/scsi_transport.h>
  32. #include <scsi/scsi_transport_sas.h>
  33. #include "sas_internal.h"
  34. #include "../scsi_sas_internal.h"
  35. struct kmem_cache *sas_task_cache;
  36. /*------------ SAS addr hash -----------*/
  37. void sas_hash_addr(u8 *hashed, const u8 *sas_addr)
  38. {
  39. const u32 poly = 0x00DB2777;
  40. u32 r = 0;
  41. int i;
  42. for (i = 0; i < 8; i++) {
  43. int b;
  44. for (b = 7; b >= 0; b--) {
  45. r <<= 1;
  46. if ((1 << b) & sas_addr[i]) {
  47. if (!(r & 0x01000000))
  48. r ^= poly;
  49. } else if (r & 0x01000000)
  50. r ^= poly;
  51. }
  52. }
  53. hashed[0] = (r >> 16) & 0xFF;
  54. hashed[1] = (r >> 8) & 0xFF ;
  55. hashed[2] = r & 0xFF;
  56. }
  57. /* ---------- HA events ---------- */
  58. void sas_hae_reset(struct work_struct *work)
  59. {
  60. struct sas_ha_event *ev =
  61. container_of(work, struct sas_ha_event, work);
  62. struct sas_ha_struct *ha = ev->ha;
  63. sas_begin_event(HAE_RESET, &ha->event_lock,
  64. &ha->pending);
  65. }
  66. int sas_register_ha(struct sas_ha_struct *sas_ha)
  67. {
  68. int error = 0;
  69. spin_lock_init(&sas_ha->phy_port_lock);
  70. sas_hash_addr(sas_ha->hashed_sas_addr, sas_ha->sas_addr);
  71. if (sas_ha->lldd_queue_size == 0)
  72. sas_ha->lldd_queue_size = 1;
  73. else if (sas_ha->lldd_queue_size == -1)
  74. sas_ha->lldd_queue_size = 128; /* Sanity */
  75. sas_ha->state = SAS_HA_REGISTERED;
  76. spin_lock_init(&sas_ha->state_lock);
  77. error = sas_register_phys(sas_ha);
  78. if (error) {
  79. printk(KERN_NOTICE "couldn't register sas phys:%d\n", error);
  80. return error;
  81. }
  82. error = sas_register_ports(sas_ha);
  83. if (error) {
  84. printk(KERN_NOTICE "couldn't register sas ports:%d\n", error);
  85. goto Undo_phys;
  86. }
  87. error = sas_init_events(sas_ha);
  88. if (error) {
  89. printk(KERN_NOTICE "couldn't start event thread:%d\n", error);
  90. goto Undo_ports;
  91. }
  92. if (sas_ha->lldd_max_execute_num > 1) {
  93. error = sas_init_queue(sas_ha);
  94. if (error) {
  95. printk(KERN_NOTICE "couldn't start queue thread:%d, "
  96. "running in direct mode\n", error);
  97. sas_ha->lldd_max_execute_num = 1;
  98. }
  99. }
  100. INIT_LIST_HEAD(&sas_ha->eh_done_q);
  101. return 0;
  102. Undo_ports:
  103. sas_unregister_ports(sas_ha);
  104. Undo_phys:
  105. return error;
  106. }
  107. int sas_unregister_ha(struct sas_ha_struct *sas_ha)
  108. {
  109. unsigned long flags;
  110. /* Set the state to unregistered to avoid further
  111. * events to be queued */
  112. spin_lock_irqsave(&sas_ha->state_lock, flags);
  113. sas_ha->state = SAS_HA_UNREGISTERED;
  114. spin_unlock_irqrestore(&sas_ha->state_lock, flags);
  115. scsi_flush_work(sas_ha->core.shost);
  116. sas_unregister_ports(sas_ha);
  117. if (sas_ha->lldd_max_execute_num > 1) {
  118. sas_shutdown_queue(sas_ha);
  119. sas_ha->lldd_max_execute_num = 1;
  120. }
  121. return 0;
  122. }
  123. static int sas_get_linkerrors(struct sas_phy *phy)
  124. {
  125. if (scsi_is_sas_phy_local(phy))
  126. /* FIXME: we have no local phy stats
  127. * gathering at this time */
  128. return -EINVAL;
  129. return sas_smp_get_phy_events(phy);
  130. }
  131. int sas_phy_enable(struct sas_phy *phy, int enable)
  132. {
  133. int ret;
  134. enum phy_func command;
  135. if (enable)
  136. command = PHY_FUNC_LINK_RESET;
  137. else
  138. command = PHY_FUNC_DISABLE;
  139. if (scsi_is_sas_phy_local(phy)) {
  140. struct Scsi_Host *shost = dev_to_shost(phy->dev.parent);
  141. struct sas_ha_struct *sas_ha = SHOST_TO_SAS_HA(shost);
  142. struct asd_sas_phy *asd_phy = sas_ha->sas_phy[phy->number];
  143. struct sas_internal *i =
  144. to_sas_internal(sas_ha->core.shost->transportt);
  145. if (!enable) {
  146. sas_phy_disconnected(asd_phy);
  147. sas_ha->notify_phy_event(asd_phy, PHYE_LOSS_OF_SIGNAL);
  148. }
  149. ret = i->dft->lldd_control_phy(asd_phy, command, NULL);
  150. } else {
  151. struct sas_rphy *rphy = dev_to_rphy(phy->dev.parent);
  152. struct domain_device *ddev = sas_find_dev_by_rphy(rphy);
  153. ret = sas_smp_phy_control(ddev, phy->number, command, NULL);
  154. }
  155. return ret;
  156. }
  157. int sas_phy_reset(struct sas_phy *phy, int hard_reset)
  158. {
  159. int ret;
  160. enum phy_func reset_type;
  161. if (hard_reset)
  162. reset_type = PHY_FUNC_HARD_RESET;
  163. else
  164. reset_type = PHY_FUNC_LINK_RESET;
  165. if (scsi_is_sas_phy_local(phy)) {
  166. struct Scsi_Host *shost = dev_to_shost(phy->dev.parent);
  167. struct sas_ha_struct *sas_ha = SHOST_TO_SAS_HA(shost);
  168. struct asd_sas_phy *asd_phy = sas_ha->sas_phy[phy->number];
  169. struct sas_internal *i =
  170. to_sas_internal(sas_ha->core.shost->transportt);
  171. ret = i->dft->lldd_control_phy(asd_phy, reset_type, NULL);
  172. } else {
  173. struct sas_rphy *rphy = dev_to_rphy(phy->dev.parent);
  174. struct domain_device *ddev = sas_find_dev_by_rphy(rphy);
  175. ret = sas_smp_phy_control(ddev, phy->number, reset_type, NULL);
  176. }
  177. return ret;
  178. }
  179. int sas_set_phy_speed(struct sas_phy *phy,
  180. struct sas_phy_linkrates *rates)
  181. {
  182. int ret;
  183. if ((rates->minimum_linkrate &&
  184. rates->minimum_linkrate > phy->maximum_linkrate) ||
  185. (rates->maximum_linkrate &&
  186. rates->maximum_linkrate < phy->minimum_linkrate))
  187. return -EINVAL;
  188. if (rates->minimum_linkrate &&
  189. rates->minimum_linkrate < phy->minimum_linkrate_hw)
  190. rates->minimum_linkrate = phy->minimum_linkrate_hw;
  191. if (rates->maximum_linkrate &&
  192. rates->maximum_linkrate > phy->maximum_linkrate_hw)
  193. rates->maximum_linkrate = phy->maximum_linkrate_hw;
  194. if (scsi_is_sas_phy_local(phy)) {
  195. struct Scsi_Host *shost = dev_to_shost(phy->dev.parent);
  196. struct sas_ha_struct *sas_ha = SHOST_TO_SAS_HA(shost);
  197. struct asd_sas_phy *asd_phy = sas_ha->sas_phy[phy->number];
  198. struct sas_internal *i =
  199. to_sas_internal(sas_ha->core.shost->transportt);
  200. ret = i->dft->lldd_control_phy(asd_phy, PHY_FUNC_SET_LINK_RATE,
  201. rates);
  202. } else {
  203. struct sas_rphy *rphy = dev_to_rphy(phy->dev.parent);
  204. struct domain_device *ddev = sas_find_dev_by_rphy(rphy);
  205. ret = sas_smp_phy_control(ddev, phy->number,
  206. PHY_FUNC_LINK_RESET, rates);
  207. }
  208. return ret;
  209. }
  210. static struct sas_function_template sft = {
  211. .phy_enable = sas_phy_enable,
  212. .phy_reset = sas_phy_reset,
  213. .set_phy_speed = sas_set_phy_speed,
  214. .get_linkerrors = sas_get_linkerrors,
  215. .smp_handler = sas_smp_handler,
  216. };
  217. struct scsi_transport_template *
  218. sas_domain_attach_transport(struct sas_domain_function_template *dft)
  219. {
  220. struct scsi_transport_template *stt = sas_attach_transport(&sft);
  221. struct sas_internal *i;
  222. if (!stt)
  223. return stt;
  224. i = to_sas_internal(stt);
  225. i->dft = dft;
  226. stt->create_work_queue = 1;
  227. stt->eh_timed_out = sas_scsi_timed_out;
  228. stt->eh_strategy_handler = sas_scsi_recover_host;
  229. return stt;
  230. }
  231. EXPORT_SYMBOL_GPL(sas_domain_attach_transport);
  232. void sas_domain_release_transport(struct scsi_transport_template *stt)
  233. {
  234. sas_release_transport(stt);
  235. }
  236. EXPORT_SYMBOL_GPL(sas_domain_release_transport);
  237. /* ---------- SAS Class register/unregister ---------- */
  238. static int __init sas_class_init(void)
  239. {
  240. sas_task_cache = kmem_cache_create("sas_task", sizeof(struct sas_task),
  241. 0, SLAB_HWCACHE_ALIGN, NULL);
  242. if (!sas_task_cache)
  243. return -ENOMEM;
  244. return 0;
  245. }
  246. static void __exit sas_class_exit(void)
  247. {
  248. kmem_cache_destroy(sas_task_cache);
  249. }
  250. MODULE_AUTHOR("Luben Tuikov <luben_tuikov@adaptec.com>");
  251. MODULE_DESCRIPTION("SAS Transport Layer");
  252. MODULE_LICENSE("GPL v2");
  253. module_init(sas_class_init);
  254. module_exit(sas_class_exit);
  255. EXPORT_SYMBOL_GPL(sas_register_ha);
  256. EXPORT_SYMBOL_GPL(sas_unregister_ha);