sas_ata.c 11 KB

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  1. /*
  2. * Support for SATA devices on Serial Attached SCSI (SAS) controllers
  3. *
  4. * Copyright (C) 2006 IBM Corporation
  5. *
  6. * Written by: Darrick J. Wong <djwong@us.ibm.com>, IBM Corporation
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License as
  10. * published by the Free Software Foundation; either version 2 of the
  11. * License, or (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful, but
  14. * WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  16. * General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program; if not, write to the Free Software
  20. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
  21. * USA
  22. */
  23. #include <scsi/sas_ata.h>
  24. #include "sas_internal.h"
  25. #include <scsi/scsi_host.h>
  26. #include <scsi/scsi_device.h>
  27. #include <scsi/scsi_tcq.h>
  28. #include <scsi/scsi.h>
  29. #include <scsi/scsi_transport.h>
  30. #include <scsi/scsi_transport_sas.h>
  31. #include "../scsi_sas_internal.h"
  32. #include "../scsi_transport_api.h"
  33. #include <scsi/scsi_eh.h>
  34. static enum ata_completion_errors sas_to_ata_err(struct task_status_struct *ts)
  35. {
  36. /* Cheesy attempt to translate SAS errors into ATA. Hah! */
  37. /* transport error */
  38. if (ts->resp == SAS_TASK_UNDELIVERED)
  39. return AC_ERR_ATA_BUS;
  40. /* ts->resp == SAS_TASK_COMPLETE */
  41. /* task delivered, what happened afterwards? */
  42. switch (ts->stat) {
  43. case SAS_DEV_NO_RESPONSE:
  44. return AC_ERR_TIMEOUT;
  45. case SAS_INTERRUPTED:
  46. case SAS_PHY_DOWN:
  47. case SAS_NAK_R_ERR:
  48. return AC_ERR_ATA_BUS;
  49. case SAS_DATA_UNDERRUN:
  50. /*
  51. * Some programs that use the taskfile interface
  52. * (smartctl in particular) can cause underrun
  53. * problems. Ignore these errors, perhaps at our
  54. * peril.
  55. */
  56. return 0;
  57. case SAS_DATA_OVERRUN:
  58. case SAS_QUEUE_FULL:
  59. case SAS_DEVICE_UNKNOWN:
  60. case SAS_SG_ERR:
  61. return AC_ERR_INVALID;
  62. case SAM_CHECK_COND:
  63. case SAS_OPEN_TO:
  64. case SAS_OPEN_REJECT:
  65. SAS_DPRINTK("%s: Saw error %d. What to do?\n",
  66. __FUNCTION__, ts->stat);
  67. return AC_ERR_OTHER;
  68. case SAS_ABORTED_TASK:
  69. return AC_ERR_DEV;
  70. case SAS_PROTO_RESPONSE:
  71. /* This means the ending_fis has the error
  72. * value; return 0 here to collect it */
  73. return 0;
  74. default:
  75. return 0;
  76. }
  77. }
  78. static void sas_ata_task_done(struct sas_task *task)
  79. {
  80. struct ata_queued_cmd *qc = task->uldd_task;
  81. struct domain_device *dev;
  82. struct task_status_struct *stat = &task->task_status;
  83. struct ata_task_resp *resp = (struct ata_task_resp *)stat->buf;
  84. struct sas_ha_struct *sas_ha;
  85. enum ata_completion_errors ac;
  86. unsigned long flags;
  87. if (!qc)
  88. goto qc_already_gone;
  89. dev = qc->ap->private_data;
  90. sas_ha = dev->port->ha;
  91. spin_lock_irqsave(dev->sata_dev.ap->lock, flags);
  92. if (stat->stat == SAS_PROTO_RESPONSE || stat->stat == SAM_GOOD) {
  93. ata_tf_from_fis(resp->ending_fis, &dev->sata_dev.tf);
  94. qc->err_mask |= ac_err_mask(dev->sata_dev.tf.command);
  95. dev->sata_dev.sstatus = resp->sstatus;
  96. dev->sata_dev.serror = resp->serror;
  97. dev->sata_dev.scontrol = resp->scontrol;
  98. } else if (stat->stat != SAM_STAT_GOOD) {
  99. ac = sas_to_ata_err(stat);
  100. if (ac) {
  101. SAS_DPRINTK("%s: SAS error %x\n", __FUNCTION__,
  102. stat->stat);
  103. /* We saw a SAS error. Send a vague error. */
  104. qc->err_mask = ac;
  105. dev->sata_dev.tf.feature = 0x04; /* status err */
  106. dev->sata_dev.tf.command = ATA_ERR;
  107. }
  108. }
  109. qc->lldd_task = NULL;
  110. if (qc->scsicmd)
  111. ASSIGN_SAS_TASK(qc->scsicmd, NULL);
  112. ata_qc_complete(qc);
  113. spin_unlock_irqrestore(dev->sata_dev.ap->lock, flags);
  114. /*
  115. * If the sas_task has an ata qc, a scsi_cmnd and the aborted
  116. * flag is set, then we must have come in via the libsas EH
  117. * functions. When we exit this function, we need to put the
  118. * scsi_cmnd on the list of finished errors. The ata_qc_complete
  119. * call cleans up the libata side of things but we're protected
  120. * from the scsi_cmnd going away because the scsi_cmnd is owned
  121. * by the EH, making libata's call to scsi_done a NOP.
  122. */
  123. spin_lock_irqsave(&task->task_state_lock, flags);
  124. if (qc->scsicmd && task->task_state_flags & SAS_TASK_STATE_ABORTED)
  125. scsi_eh_finish_cmd(qc->scsicmd, &sas_ha->eh_done_q);
  126. spin_unlock_irqrestore(&task->task_state_lock, flags);
  127. qc_already_gone:
  128. list_del_init(&task->list);
  129. sas_free_task(task);
  130. }
  131. static unsigned int sas_ata_qc_issue(struct ata_queued_cmd *qc)
  132. {
  133. int res;
  134. struct sas_task *task;
  135. struct domain_device *dev = qc->ap->private_data;
  136. struct sas_ha_struct *sas_ha = dev->port->ha;
  137. struct Scsi_Host *host = sas_ha->core.shost;
  138. struct sas_internal *i = to_sas_internal(host->transportt);
  139. struct scatterlist *sg;
  140. unsigned int num = 0;
  141. unsigned int xfer = 0;
  142. task = sas_alloc_task(GFP_ATOMIC);
  143. if (!task)
  144. return AC_ERR_SYSTEM;
  145. task->dev = dev;
  146. task->task_proto = SAS_PROTOCOL_STP;
  147. task->task_done = sas_ata_task_done;
  148. if (qc->tf.command == ATA_CMD_FPDMA_WRITE ||
  149. qc->tf.command == ATA_CMD_FPDMA_READ) {
  150. /* Need to zero out the tag libata assigned us */
  151. qc->tf.nsect = 0;
  152. }
  153. ata_tf_to_fis(&qc->tf, 1, 0, (u8*)&task->ata_task.fis);
  154. task->uldd_task = qc;
  155. if (is_atapi_taskfile(&qc->tf)) {
  156. memcpy(task->ata_task.atapi_packet, qc->cdb, qc->dev->cdb_len);
  157. task->total_xfer_len = qc->nbytes + qc->pad_len;
  158. task->num_scatter = qc->pad_len ? qc->n_elem + 1 : qc->n_elem;
  159. } else {
  160. ata_for_each_sg(sg, qc) {
  161. num++;
  162. xfer += sg->length;
  163. }
  164. task->total_xfer_len = xfer;
  165. task->num_scatter = num;
  166. }
  167. task->data_dir = qc->dma_dir;
  168. task->scatter = qc->__sg;
  169. task->ata_task.retry_count = 1;
  170. task->task_state_flags = SAS_TASK_STATE_PENDING;
  171. qc->lldd_task = task;
  172. switch (qc->tf.protocol) {
  173. case ATA_PROT_NCQ:
  174. task->ata_task.use_ncq = 1;
  175. /* fall through */
  176. case ATA_PROT_ATAPI_DMA:
  177. case ATA_PROT_DMA:
  178. task->ata_task.dma_xfer = 1;
  179. break;
  180. }
  181. if (qc->scsicmd)
  182. ASSIGN_SAS_TASK(qc->scsicmd, task);
  183. if (sas_ha->lldd_max_execute_num < 2)
  184. res = i->dft->lldd_execute_task(task, 1, GFP_ATOMIC);
  185. else
  186. res = sas_queue_up(task);
  187. /* Examine */
  188. if (res) {
  189. SAS_DPRINTK("lldd_execute_task returned: %d\n", res);
  190. if (qc->scsicmd)
  191. ASSIGN_SAS_TASK(qc->scsicmd, NULL);
  192. sas_free_task(task);
  193. return AC_ERR_SYSTEM;
  194. }
  195. return 0;
  196. }
  197. static u8 sas_ata_check_status(struct ata_port *ap)
  198. {
  199. struct domain_device *dev = ap->private_data;
  200. return dev->sata_dev.tf.command;
  201. }
  202. static void sas_ata_phy_reset(struct ata_port *ap)
  203. {
  204. struct domain_device *dev = ap->private_data;
  205. struct sas_internal *i =
  206. to_sas_internal(dev->port->ha->core.shost->transportt);
  207. int res = 0;
  208. if (i->dft->lldd_I_T_nexus_reset)
  209. res = i->dft->lldd_I_T_nexus_reset(dev);
  210. if (res)
  211. SAS_DPRINTK("%s: Unable to reset I T nexus?\n", __FUNCTION__);
  212. switch (dev->sata_dev.command_set) {
  213. case ATA_COMMAND_SET:
  214. SAS_DPRINTK("%s: Found ATA device.\n", __FUNCTION__);
  215. ap->device[0].class = ATA_DEV_ATA;
  216. break;
  217. case ATAPI_COMMAND_SET:
  218. SAS_DPRINTK("%s: Found ATAPI device.\n", __FUNCTION__);
  219. ap->device[0].class = ATA_DEV_ATAPI;
  220. break;
  221. default:
  222. SAS_DPRINTK("%s: Unknown SATA command set: %d.\n",
  223. __FUNCTION__,
  224. dev->sata_dev.command_set);
  225. ap->device[0].class = ATA_DEV_UNKNOWN;
  226. break;
  227. }
  228. ap->cbl = ATA_CBL_SATA;
  229. }
  230. static void sas_ata_post_internal(struct ata_queued_cmd *qc)
  231. {
  232. if (qc->flags & ATA_QCFLAG_FAILED)
  233. qc->err_mask |= AC_ERR_OTHER;
  234. if (qc->err_mask) {
  235. /*
  236. * Find the sas_task and kill it. By this point,
  237. * libata has decided to kill the qc, so we needn't
  238. * bother with sas_ata_task_done. But we still
  239. * ought to abort the task.
  240. */
  241. struct sas_task *task = qc->lldd_task;
  242. unsigned long flags;
  243. qc->lldd_task = NULL;
  244. if (task) {
  245. /* Should this be a AT(API) device reset? */
  246. spin_lock_irqsave(&task->task_state_lock, flags);
  247. task->task_state_flags |= SAS_TASK_NEED_DEV_RESET;
  248. spin_unlock_irqrestore(&task->task_state_lock, flags);
  249. task->uldd_task = NULL;
  250. __sas_task_abort(task);
  251. }
  252. }
  253. }
  254. static void sas_ata_tf_read(struct ata_port *ap, struct ata_taskfile *tf)
  255. {
  256. struct domain_device *dev = ap->private_data;
  257. memcpy(tf, &dev->sata_dev.tf, sizeof (*tf));
  258. }
  259. static int sas_ata_scr_write(struct ata_port *ap, unsigned int sc_reg_in,
  260. u32 val)
  261. {
  262. struct domain_device *dev = ap->private_data;
  263. SAS_DPRINTK("STUB %s\n", __FUNCTION__);
  264. switch (sc_reg_in) {
  265. case SCR_STATUS:
  266. dev->sata_dev.sstatus = val;
  267. break;
  268. case SCR_CONTROL:
  269. dev->sata_dev.scontrol = val;
  270. break;
  271. case SCR_ERROR:
  272. dev->sata_dev.serror = val;
  273. break;
  274. case SCR_ACTIVE:
  275. dev->sata_dev.ap->sactive = val;
  276. break;
  277. default:
  278. return -EINVAL;
  279. }
  280. return 0;
  281. }
  282. static int sas_ata_scr_read(struct ata_port *ap, unsigned int sc_reg_in,
  283. u32 *val)
  284. {
  285. struct domain_device *dev = ap->private_data;
  286. SAS_DPRINTK("STUB %s\n", __FUNCTION__);
  287. switch (sc_reg_in) {
  288. case SCR_STATUS:
  289. *val = dev->sata_dev.sstatus;
  290. return 0;
  291. case SCR_CONTROL:
  292. *val = dev->sata_dev.scontrol;
  293. return 0;
  294. case SCR_ERROR:
  295. *val = dev->sata_dev.serror;
  296. return 0;
  297. case SCR_ACTIVE:
  298. *val = dev->sata_dev.ap->sactive;
  299. return 0;
  300. default:
  301. return -EINVAL;
  302. }
  303. }
  304. static struct ata_port_operations sas_sata_ops = {
  305. .port_disable = ata_port_disable,
  306. .check_status = sas_ata_check_status,
  307. .check_altstatus = sas_ata_check_status,
  308. .dev_select = ata_noop_dev_select,
  309. .phy_reset = sas_ata_phy_reset,
  310. .post_internal_cmd = sas_ata_post_internal,
  311. .tf_read = sas_ata_tf_read,
  312. .qc_prep = ata_noop_qc_prep,
  313. .qc_issue = sas_ata_qc_issue,
  314. .port_start = ata_sas_port_start,
  315. .port_stop = ata_sas_port_stop,
  316. .scr_read = sas_ata_scr_read,
  317. .scr_write = sas_ata_scr_write
  318. };
  319. static struct ata_port_info sata_port_info = {
  320. .flags = ATA_FLAG_SATA | ATA_FLAG_NO_LEGACY | ATA_FLAG_SATA_RESET |
  321. ATA_FLAG_MMIO | ATA_FLAG_PIO_DMA | ATA_FLAG_NCQ,
  322. .pio_mask = 0x1f, /* PIO0-4 */
  323. .mwdma_mask = 0x07, /* MWDMA0-2 */
  324. .udma_mask = ATA_UDMA6,
  325. .port_ops = &sas_sata_ops
  326. };
  327. int sas_ata_init_host_and_port(struct domain_device *found_dev,
  328. struct scsi_target *starget)
  329. {
  330. struct Scsi_Host *shost = dev_to_shost(&starget->dev);
  331. struct sas_ha_struct *ha = SHOST_TO_SAS_HA(shost);
  332. struct ata_port *ap;
  333. ata_host_init(&found_dev->sata_dev.ata_host,
  334. &ha->pcidev->dev,
  335. sata_port_info.flags,
  336. &sas_sata_ops);
  337. ap = ata_sas_port_alloc(&found_dev->sata_dev.ata_host,
  338. &sata_port_info,
  339. shost);
  340. if (!ap) {
  341. SAS_DPRINTK("ata_sas_port_alloc failed.\n");
  342. return -ENODEV;
  343. }
  344. ap->private_data = found_dev;
  345. ap->cbl = ATA_CBL_SATA;
  346. ap->scsi_host = shost;
  347. found_dev->sata_dev.ap = ap;
  348. return 0;
  349. }
  350. void sas_ata_task_abort(struct sas_task *task)
  351. {
  352. struct ata_queued_cmd *qc = task->uldd_task;
  353. struct completion *waiting;
  354. /* Bounce SCSI-initiated commands to the SCSI EH */
  355. if (qc->scsicmd) {
  356. scsi_req_abort_cmd(qc->scsicmd);
  357. scsi_schedule_eh(qc->scsicmd->device->host);
  358. return;
  359. }
  360. /* Internal command, fake a timeout and complete. */
  361. qc->flags &= ~ATA_QCFLAG_ACTIVE;
  362. qc->flags |= ATA_QCFLAG_FAILED;
  363. qc->err_mask |= AC_ERR_TIMEOUT;
  364. waiting = qc->private_data;
  365. complete(waiting);
  366. }