aic94xx_init.c 23 KB

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  1. /*
  2. * Aic94xx SAS/SATA driver 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 file is part of the aic94xx driver.
  10. *
  11. * The aic94xx driver is free software; you can redistribute it and/or
  12. * modify it under the terms of the GNU General Public License as
  13. * published by the Free Software Foundation; version 2 of the
  14. * License.
  15. *
  16. * The aic94xx driver is distributed in the hope that it will be useful,
  17. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  19. * General Public License for more details.
  20. *
  21. * You should have received a copy of the GNU General Public License
  22. * along with the aic94xx driver; if not, write to the Free Software
  23. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
  24. *
  25. */
  26. #include <linux/module.h>
  27. #include <linux/init.h>
  28. #include <linux/kernel.h>
  29. #include <linux/pci.h>
  30. #include <linux/delay.h>
  31. #include <scsi/scsi_host.h>
  32. #include "aic94xx.h"
  33. #include "aic94xx_reg.h"
  34. #include "aic94xx_hwi.h"
  35. #include "aic94xx_seq.h"
  36. /* The format is "version.release.patchlevel" */
  37. #define ASD_DRIVER_VERSION "1.0.3"
  38. static int use_msi = 0;
  39. module_param_named(use_msi, use_msi, int, S_IRUGO);
  40. MODULE_PARM_DESC(use_msi, "\n"
  41. "\tEnable(1) or disable(0) using PCI MSI.\n"
  42. "\tDefault: 0");
  43. static int lldd_max_execute_num = 0;
  44. module_param_named(collector, lldd_max_execute_num, int, S_IRUGO);
  45. MODULE_PARM_DESC(collector, "\n"
  46. "\tIf greater than one, tells the SAS Layer to run in Task Collector\n"
  47. "\tMode. If 1 or 0, tells the SAS Layer to run in Direct Mode.\n"
  48. "\tThe aic94xx SAS LLDD supports both modes.\n"
  49. "\tDefault: 0 (Direct Mode).\n");
  50. char sas_addr_str[2*SAS_ADDR_SIZE + 1] = "";
  51. static struct scsi_transport_template *aic94xx_transport_template;
  52. static int asd_scan_finished(struct Scsi_Host *, unsigned long);
  53. static void asd_scan_start(struct Scsi_Host *);
  54. static struct scsi_host_template aic94xx_sht = {
  55. .module = THIS_MODULE,
  56. /* .name is initialized */
  57. .name = "aic94xx",
  58. .queuecommand = sas_queuecommand,
  59. .target_alloc = sas_target_alloc,
  60. .slave_configure = sas_slave_configure,
  61. .slave_destroy = sas_slave_destroy,
  62. .scan_finished = asd_scan_finished,
  63. .scan_start = asd_scan_start,
  64. .change_queue_depth = sas_change_queue_depth,
  65. .change_queue_type = sas_change_queue_type,
  66. .bios_param = sas_bios_param,
  67. .can_queue = 1,
  68. .cmd_per_lun = 1,
  69. .this_id = -1,
  70. .sg_tablesize = SG_ALL,
  71. .max_sectors = SCSI_DEFAULT_MAX_SECTORS,
  72. .use_clustering = ENABLE_CLUSTERING,
  73. .eh_device_reset_handler = sas_eh_device_reset_handler,
  74. };
  75. static int __devinit asd_map_memio(struct asd_ha_struct *asd_ha)
  76. {
  77. int err, i;
  78. struct asd_ha_addrspace *io_handle;
  79. asd_ha->iospace = 0;
  80. for (i = 0; i < 3; i += 2) {
  81. io_handle = &asd_ha->io_handle[i==0?0:1];
  82. io_handle->start = pci_resource_start(asd_ha->pcidev, i);
  83. io_handle->len = pci_resource_len(asd_ha->pcidev, i);
  84. io_handle->flags = pci_resource_flags(asd_ha->pcidev, i);
  85. err = -ENODEV;
  86. if (!io_handle->start || !io_handle->len) {
  87. asd_printk("MBAR%d start or length for %s is 0.\n",
  88. i==0?0:1, pci_name(asd_ha->pcidev));
  89. goto Err;
  90. }
  91. err = pci_request_region(asd_ha->pcidev, i, ASD_DRIVER_NAME);
  92. if (err) {
  93. asd_printk("couldn't reserve memory region for %s\n",
  94. pci_name(asd_ha->pcidev));
  95. goto Err;
  96. }
  97. if (io_handle->flags & IORESOURCE_CACHEABLE)
  98. io_handle->addr = ioremap(io_handle->start,
  99. io_handle->len);
  100. else
  101. io_handle->addr = ioremap_nocache(io_handle->start,
  102. io_handle->len);
  103. if (!io_handle->addr) {
  104. asd_printk("couldn't map MBAR%d of %s\n", i==0?0:1,
  105. pci_name(asd_ha->pcidev));
  106. goto Err_unreq;
  107. }
  108. }
  109. return 0;
  110. Err_unreq:
  111. pci_release_region(asd_ha->pcidev, i);
  112. Err:
  113. if (i > 0) {
  114. io_handle = &asd_ha->io_handle[0];
  115. iounmap(io_handle->addr);
  116. pci_release_region(asd_ha->pcidev, 0);
  117. }
  118. return err;
  119. }
  120. static void __devexit asd_unmap_memio(struct asd_ha_struct *asd_ha)
  121. {
  122. struct asd_ha_addrspace *io_handle;
  123. io_handle = &asd_ha->io_handle[1];
  124. iounmap(io_handle->addr);
  125. pci_release_region(asd_ha->pcidev, 2);
  126. io_handle = &asd_ha->io_handle[0];
  127. iounmap(io_handle->addr);
  128. pci_release_region(asd_ha->pcidev, 0);
  129. }
  130. static int __devinit asd_map_ioport(struct asd_ha_struct *asd_ha)
  131. {
  132. int i = PCI_IOBAR_OFFSET, err;
  133. struct asd_ha_addrspace *io_handle = &asd_ha->io_handle[0];
  134. asd_ha->iospace = 1;
  135. io_handle->start = pci_resource_start(asd_ha->pcidev, i);
  136. io_handle->len = pci_resource_len(asd_ha->pcidev, i);
  137. io_handle->flags = pci_resource_flags(asd_ha->pcidev, i);
  138. io_handle->addr = (void __iomem *) io_handle->start;
  139. if (!io_handle->start || !io_handle->len) {
  140. asd_printk("couldn't get IO ports for %s\n",
  141. pci_name(asd_ha->pcidev));
  142. return -ENODEV;
  143. }
  144. err = pci_request_region(asd_ha->pcidev, i, ASD_DRIVER_NAME);
  145. if (err) {
  146. asd_printk("couldn't reserve io space for %s\n",
  147. pci_name(asd_ha->pcidev));
  148. }
  149. return err;
  150. }
  151. static void __devexit asd_unmap_ioport(struct asd_ha_struct *asd_ha)
  152. {
  153. pci_release_region(asd_ha->pcidev, PCI_IOBAR_OFFSET);
  154. }
  155. static int __devinit asd_map_ha(struct asd_ha_struct *asd_ha)
  156. {
  157. int err;
  158. u16 cmd_reg;
  159. err = pci_read_config_word(asd_ha->pcidev, PCI_COMMAND, &cmd_reg);
  160. if (err) {
  161. asd_printk("couldn't read command register of %s\n",
  162. pci_name(asd_ha->pcidev));
  163. goto Err;
  164. }
  165. err = -ENODEV;
  166. if (cmd_reg & PCI_COMMAND_MEMORY) {
  167. if ((err = asd_map_memio(asd_ha)))
  168. goto Err;
  169. } else if (cmd_reg & PCI_COMMAND_IO) {
  170. if ((err = asd_map_ioport(asd_ha)))
  171. goto Err;
  172. asd_printk("%s ioport mapped -- upgrade your hardware\n",
  173. pci_name(asd_ha->pcidev));
  174. } else {
  175. asd_printk("no proper device access to %s\n",
  176. pci_name(asd_ha->pcidev));
  177. goto Err;
  178. }
  179. return 0;
  180. Err:
  181. return err;
  182. }
  183. static void __devexit asd_unmap_ha(struct asd_ha_struct *asd_ha)
  184. {
  185. if (asd_ha->iospace)
  186. asd_unmap_ioport(asd_ha);
  187. else
  188. asd_unmap_memio(asd_ha);
  189. }
  190. static const char *asd_dev_rev[30] = {
  191. [0] = "A0",
  192. [1] = "A1",
  193. [8] = "B0",
  194. };
  195. static int __devinit asd_common_setup(struct asd_ha_struct *asd_ha)
  196. {
  197. int err, i;
  198. err = pci_read_config_byte(asd_ha->pcidev, PCI_REVISION_ID,
  199. &asd_ha->revision_id);
  200. if (err) {
  201. asd_printk("couldn't read REVISION ID register of %s\n",
  202. pci_name(asd_ha->pcidev));
  203. goto Err;
  204. }
  205. err = -ENODEV;
  206. if (asd_ha->revision_id < AIC9410_DEV_REV_B0) {
  207. asd_printk("%s is revision %s (%X), which is not supported\n",
  208. pci_name(asd_ha->pcidev),
  209. asd_dev_rev[asd_ha->revision_id],
  210. asd_ha->revision_id);
  211. goto Err;
  212. }
  213. /* Provide some sane default values. */
  214. asd_ha->hw_prof.max_scbs = 512;
  215. asd_ha->hw_prof.max_ddbs = ASD_MAX_DDBS;
  216. asd_ha->hw_prof.num_phys = ASD_MAX_PHYS;
  217. /* All phys are enabled, by default. */
  218. asd_ha->hw_prof.enabled_phys = 0xFF;
  219. for (i = 0; i < ASD_MAX_PHYS; i++) {
  220. asd_ha->hw_prof.phy_desc[i].max_sas_lrate =
  221. SAS_LINK_RATE_3_0_GBPS;
  222. asd_ha->hw_prof.phy_desc[i].min_sas_lrate =
  223. SAS_LINK_RATE_1_5_GBPS;
  224. asd_ha->hw_prof.phy_desc[i].max_sata_lrate =
  225. SAS_LINK_RATE_1_5_GBPS;
  226. asd_ha->hw_prof.phy_desc[i].min_sata_lrate =
  227. SAS_LINK_RATE_1_5_GBPS;
  228. }
  229. return 0;
  230. Err:
  231. return err;
  232. }
  233. static int __devinit asd_aic9410_setup(struct asd_ha_struct *asd_ha)
  234. {
  235. int err = asd_common_setup(asd_ha);
  236. if (err)
  237. return err;
  238. asd_ha->hw_prof.addr_range = 8;
  239. asd_ha->hw_prof.port_name_base = 0;
  240. asd_ha->hw_prof.dev_name_base = 8;
  241. asd_ha->hw_prof.sata_name_base = 16;
  242. return 0;
  243. }
  244. static int __devinit asd_aic9405_setup(struct asd_ha_struct *asd_ha)
  245. {
  246. int err = asd_common_setup(asd_ha);
  247. if (err)
  248. return err;
  249. asd_ha->hw_prof.addr_range = 4;
  250. asd_ha->hw_prof.port_name_base = 0;
  251. asd_ha->hw_prof.dev_name_base = 4;
  252. asd_ha->hw_prof.sata_name_base = 8;
  253. return 0;
  254. }
  255. static ssize_t asd_show_dev_rev(struct device *dev,
  256. struct device_attribute *attr, char *buf)
  257. {
  258. struct asd_ha_struct *asd_ha = dev_to_asd_ha(dev);
  259. return snprintf(buf, PAGE_SIZE, "%s\n",
  260. asd_dev_rev[asd_ha->revision_id]);
  261. }
  262. static DEVICE_ATTR(revision, S_IRUGO, asd_show_dev_rev, NULL);
  263. static ssize_t asd_show_dev_bios_build(struct device *dev,
  264. struct device_attribute *attr,char *buf)
  265. {
  266. struct asd_ha_struct *asd_ha = dev_to_asd_ha(dev);
  267. return snprintf(buf, PAGE_SIZE, "%d\n", asd_ha->hw_prof.bios.bld);
  268. }
  269. static DEVICE_ATTR(bios_build, S_IRUGO, asd_show_dev_bios_build, NULL);
  270. static ssize_t asd_show_dev_pcba_sn(struct device *dev,
  271. struct device_attribute *attr, char *buf)
  272. {
  273. struct asd_ha_struct *asd_ha = dev_to_asd_ha(dev);
  274. return snprintf(buf, PAGE_SIZE, "%s\n", asd_ha->hw_prof.pcba_sn);
  275. }
  276. static DEVICE_ATTR(pcba_sn, S_IRUGO, asd_show_dev_pcba_sn, NULL);
  277. static int asd_create_dev_attrs(struct asd_ha_struct *asd_ha)
  278. {
  279. int err;
  280. err = device_create_file(&asd_ha->pcidev->dev, &dev_attr_revision);
  281. if (err)
  282. return err;
  283. err = device_create_file(&asd_ha->pcidev->dev, &dev_attr_bios_build);
  284. if (err)
  285. goto err_rev;
  286. err = device_create_file(&asd_ha->pcidev->dev, &dev_attr_pcba_sn);
  287. if (err)
  288. goto err_biosb;
  289. return 0;
  290. err_biosb:
  291. device_remove_file(&asd_ha->pcidev->dev, &dev_attr_bios_build);
  292. err_rev:
  293. device_remove_file(&asd_ha->pcidev->dev, &dev_attr_revision);
  294. return err;
  295. }
  296. static void asd_remove_dev_attrs(struct asd_ha_struct *asd_ha)
  297. {
  298. device_remove_file(&asd_ha->pcidev->dev, &dev_attr_revision);
  299. device_remove_file(&asd_ha->pcidev->dev, &dev_attr_bios_build);
  300. device_remove_file(&asd_ha->pcidev->dev, &dev_attr_pcba_sn);
  301. }
  302. /* The first entry, 0, is used for dynamic ids, the rest for devices
  303. * we know about.
  304. */
  305. static struct asd_pcidev_struct {
  306. const char * name;
  307. int (*setup)(struct asd_ha_struct *asd_ha);
  308. } asd_pcidev_data[] = {
  309. /* Id 0 is used for dynamic ids. */
  310. { .name = "Adaptec AIC-94xx SAS/SATA Host Adapter",
  311. .setup = asd_aic9410_setup
  312. },
  313. { .name = "Adaptec AIC-9410W SAS/SATA Host Adapter",
  314. .setup = asd_aic9410_setup
  315. },
  316. { .name = "Adaptec AIC-9405W SAS/SATA Host Adapter",
  317. .setup = asd_aic9405_setup
  318. },
  319. };
  320. static inline int asd_create_ha_caches(struct asd_ha_struct *asd_ha)
  321. {
  322. asd_ha->scb_pool = dma_pool_create(ASD_DRIVER_NAME "_scb_pool",
  323. &asd_ha->pcidev->dev,
  324. sizeof(struct scb),
  325. 8, 0);
  326. if (!asd_ha->scb_pool) {
  327. asd_printk("couldn't create scb pool\n");
  328. return -ENOMEM;
  329. }
  330. return 0;
  331. }
  332. /**
  333. * asd_free_edbs -- free empty data buffers
  334. * asd_ha: pointer to host adapter structure
  335. */
  336. static inline void asd_free_edbs(struct asd_ha_struct *asd_ha)
  337. {
  338. struct asd_seq_data *seq = &asd_ha->seq;
  339. int i;
  340. for (i = 0; i < seq->num_edbs; i++)
  341. asd_free_coherent(asd_ha, seq->edb_arr[i]);
  342. kfree(seq->edb_arr);
  343. seq->edb_arr = NULL;
  344. }
  345. static inline void asd_free_escbs(struct asd_ha_struct *asd_ha)
  346. {
  347. struct asd_seq_data *seq = &asd_ha->seq;
  348. int i;
  349. for (i = 0; i < seq->num_escbs; i++) {
  350. if (!list_empty(&seq->escb_arr[i]->list))
  351. list_del_init(&seq->escb_arr[i]->list);
  352. asd_ascb_free(seq->escb_arr[i]);
  353. }
  354. kfree(seq->escb_arr);
  355. seq->escb_arr = NULL;
  356. }
  357. static inline void asd_destroy_ha_caches(struct asd_ha_struct *asd_ha)
  358. {
  359. int i;
  360. if (asd_ha->hw_prof.ddb_ext)
  361. asd_free_coherent(asd_ha, asd_ha->hw_prof.ddb_ext);
  362. if (asd_ha->hw_prof.scb_ext)
  363. asd_free_coherent(asd_ha, asd_ha->hw_prof.scb_ext);
  364. if (asd_ha->hw_prof.ddb_bitmap)
  365. kfree(asd_ha->hw_prof.ddb_bitmap);
  366. asd_ha->hw_prof.ddb_bitmap = NULL;
  367. for (i = 0; i < ASD_MAX_PHYS; i++) {
  368. struct asd_phy *phy = &asd_ha->phys[i];
  369. asd_free_coherent(asd_ha, phy->id_frm_tok);
  370. }
  371. if (asd_ha->seq.escb_arr)
  372. asd_free_escbs(asd_ha);
  373. if (asd_ha->seq.edb_arr)
  374. asd_free_edbs(asd_ha);
  375. if (asd_ha->hw_prof.ue.area) {
  376. kfree(asd_ha->hw_prof.ue.area);
  377. asd_ha->hw_prof.ue.area = NULL;
  378. }
  379. if (asd_ha->seq.tc_index_array) {
  380. kfree(asd_ha->seq.tc_index_array);
  381. kfree(asd_ha->seq.tc_index_bitmap);
  382. asd_ha->seq.tc_index_array = NULL;
  383. asd_ha->seq.tc_index_bitmap = NULL;
  384. }
  385. if (asd_ha->seq.actual_dl) {
  386. asd_free_coherent(asd_ha, asd_ha->seq.actual_dl);
  387. asd_ha->seq.actual_dl = NULL;
  388. asd_ha->seq.dl = NULL;
  389. }
  390. if (asd_ha->seq.next_scb.vaddr) {
  391. dma_pool_free(asd_ha->scb_pool, asd_ha->seq.next_scb.vaddr,
  392. asd_ha->seq.next_scb.dma_handle);
  393. asd_ha->seq.next_scb.vaddr = NULL;
  394. }
  395. dma_pool_destroy(asd_ha->scb_pool);
  396. asd_ha->scb_pool = NULL;
  397. }
  398. struct kmem_cache *asd_dma_token_cache;
  399. struct kmem_cache *asd_ascb_cache;
  400. static int asd_create_global_caches(void)
  401. {
  402. if (!asd_dma_token_cache) {
  403. asd_dma_token_cache
  404. = kmem_cache_create(ASD_DRIVER_NAME "_dma_token",
  405. sizeof(struct asd_dma_tok),
  406. 0,
  407. SLAB_HWCACHE_ALIGN,
  408. NULL, NULL);
  409. if (!asd_dma_token_cache) {
  410. asd_printk("couldn't create dma token cache\n");
  411. return -ENOMEM;
  412. }
  413. }
  414. if (!asd_ascb_cache) {
  415. asd_ascb_cache = kmem_cache_create(ASD_DRIVER_NAME "_ascb",
  416. sizeof(struct asd_ascb),
  417. 0,
  418. SLAB_HWCACHE_ALIGN,
  419. NULL, NULL);
  420. if (!asd_ascb_cache) {
  421. asd_printk("couldn't create ascb cache\n");
  422. goto Err;
  423. }
  424. }
  425. return 0;
  426. Err:
  427. kmem_cache_destroy(asd_dma_token_cache);
  428. asd_dma_token_cache = NULL;
  429. return -ENOMEM;
  430. }
  431. static void asd_destroy_global_caches(void)
  432. {
  433. if (asd_dma_token_cache)
  434. kmem_cache_destroy(asd_dma_token_cache);
  435. asd_dma_token_cache = NULL;
  436. if (asd_ascb_cache)
  437. kmem_cache_destroy(asd_ascb_cache);
  438. asd_ascb_cache = NULL;
  439. }
  440. static int asd_register_sas_ha(struct asd_ha_struct *asd_ha)
  441. {
  442. int i;
  443. struct asd_sas_phy **sas_phys =
  444. kmalloc(ASD_MAX_PHYS * sizeof(struct asd_sas_phy), GFP_KERNEL);
  445. struct asd_sas_port **sas_ports =
  446. kmalloc(ASD_MAX_PHYS * sizeof(struct asd_sas_port), GFP_KERNEL);
  447. if (!sas_phys || !sas_ports) {
  448. kfree(sas_phys);
  449. kfree(sas_ports);
  450. return -ENOMEM;
  451. }
  452. asd_ha->sas_ha.sas_ha_name = (char *) asd_ha->name;
  453. asd_ha->sas_ha.lldd_module = THIS_MODULE;
  454. asd_ha->sas_ha.sas_addr = &asd_ha->hw_prof.sas_addr[0];
  455. for (i = 0; i < ASD_MAX_PHYS; i++) {
  456. sas_phys[i] = &asd_ha->phys[i].sas_phy;
  457. sas_ports[i] = &asd_ha->ports[i];
  458. }
  459. asd_ha->sas_ha.sas_phy = sas_phys;
  460. asd_ha->sas_ha.sas_port= sas_ports;
  461. asd_ha->sas_ha.num_phys= ASD_MAX_PHYS;
  462. asd_ha->sas_ha.lldd_queue_size = asd_ha->seq.can_queue;
  463. asd_ha->sas_ha.lldd_max_execute_num = lldd_max_execute_num;
  464. return sas_register_ha(&asd_ha->sas_ha);
  465. }
  466. static int asd_unregister_sas_ha(struct asd_ha_struct *asd_ha)
  467. {
  468. int err;
  469. err = sas_unregister_ha(&asd_ha->sas_ha);
  470. sas_remove_host(asd_ha->sas_ha.core.shost);
  471. scsi_remove_host(asd_ha->sas_ha.core.shost);
  472. scsi_host_put(asd_ha->sas_ha.core.shost);
  473. kfree(asd_ha->sas_ha.sas_phy);
  474. kfree(asd_ha->sas_ha.sas_port);
  475. return err;
  476. }
  477. static int __devinit asd_pci_probe(struct pci_dev *dev,
  478. const struct pci_device_id *id)
  479. {
  480. struct asd_pcidev_struct *asd_dev;
  481. unsigned asd_id = (unsigned) id->driver_data;
  482. struct asd_ha_struct *asd_ha;
  483. struct Scsi_Host *shost;
  484. int err;
  485. if (asd_id >= ARRAY_SIZE(asd_pcidev_data)) {
  486. asd_printk("wrong driver_data in PCI table\n");
  487. return -ENODEV;
  488. }
  489. if ((err = pci_enable_device(dev))) {
  490. asd_printk("couldn't enable device %s\n", pci_name(dev));
  491. return err;
  492. }
  493. pci_set_master(dev);
  494. err = -ENOMEM;
  495. shost = scsi_host_alloc(&aic94xx_sht, sizeof(void *));
  496. if (!shost)
  497. goto Err;
  498. asd_dev = &asd_pcidev_data[asd_id];
  499. asd_ha = kzalloc(sizeof(*asd_ha), GFP_KERNEL);
  500. if (!asd_ha) {
  501. asd_printk("out of memory\n");
  502. goto Err;
  503. }
  504. asd_ha->pcidev = dev;
  505. asd_ha->sas_ha.pcidev = asd_ha->pcidev;
  506. asd_ha->sas_ha.lldd_ha = asd_ha;
  507. asd_ha->name = asd_dev->name;
  508. asd_printk("found %s, device %s\n", asd_ha->name, pci_name(dev));
  509. SHOST_TO_SAS_HA(shost) = &asd_ha->sas_ha;
  510. asd_ha->sas_ha.core.shost = shost;
  511. shost->transportt = aic94xx_transport_template;
  512. shost->max_id = ~0;
  513. shost->max_lun = ~0;
  514. shost->max_cmd_len = 16;
  515. err = scsi_add_host(shost, &dev->dev);
  516. if (err) {
  517. scsi_host_put(shost);
  518. goto Err_free;
  519. }
  520. err = asd_dev->setup(asd_ha);
  521. if (err)
  522. goto Err_free;
  523. err = -ENODEV;
  524. if (!pci_set_dma_mask(dev, DMA_64BIT_MASK)
  525. && !pci_set_consistent_dma_mask(dev, DMA_64BIT_MASK))
  526. ;
  527. else if (!pci_set_dma_mask(dev, DMA_32BIT_MASK)
  528. && !pci_set_consistent_dma_mask(dev, DMA_32BIT_MASK))
  529. ;
  530. else {
  531. asd_printk("no suitable DMA mask for %s\n", pci_name(dev));
  532. goto Err_free;
  533. }
  534. pci_set_drvdata(dev, asd_ha);
  535. err = asd_map_ha(asd_ha);
  536. if (err)
  537. goto Err_free;
  538. err = asd_create_ha_caches(asd_ha);
  539. if (err)
  540. goto Err_unmap;
  541. err = asd_init_hw(asd_ha);
  542. if (err)
  543. goto Err_free_cache;
  544. asd_printk("device %s: SAS addr %llx, PCBA SN %s, %d phys, %d enabled "
  545. "phys, flash %s, BIOS %s%d\n",
  546. pci_name(dev), SAS_ADDR(asd_ha->hw_prof.sas_addr),
  547. asd_ha->hw_prof.pcba_sn, asd_ha->hw_prof.max_phys,
  548. asd_ha->hw_prof.num_phys,
  549. asd_ha->hw_prof.flash.present ? "present" : "not present",
  550. asd_ha->hw_prof.bios.present ? "build " : "not present",
  551. asd_ha->hw_prof.bios.bld);
  552. shost->can_queue = asd_ha->seq.can_queue;
  553. if (use_msi)
  554. pci_enable_msi(asd_ha->pcidev);
  555. err = request_irq(asd_ha->pcidev->irq, asd_hw_isr, SA_SHIRQ,
  556. ASD_DRIVER_NAME, asd_ha);
  557. if (err) {
  558. asd_printk("couldn't get irq %d for %s\n",
  559. asd_ha->pcidev->irq, pci_name(asd_ha->pcidev));
  560. goto Err_irq;
  561. }
  562. asd_enable_ints(asd_ha);
  563. err = asd_init_post_escbs(asd_ha);
  564. if (err) {
  565. asd_printk("couldn't post escbs for %s\n",
  566. pci_name(asd_ha->pcidev));
  567. goto Err_escbs;
  568. }
  569. ASD_DPRINTK("escbs posted\n");
  570. err = asd_create_dev_attrs(asd_ha);
  571. if (err)
  572. goto Err_dev_attrs;
  573. err = asd_register_sas_ha(asd_ha);
  574. if (err)
  575. goto Err_reg_sas;
  576. scsi_scan_host(shost);
  577. return 0;
  578. Err_reg_sas:
  579. asd_remove_dev_attrs(asd_ha);
  580. Err_dev_attrs:
  581. Err_escbs:
  582. asd_disable_ints(asd_ha);
  583. free_irq(dev->irq, asd_ha);
  584. Err_irq:
  585. if (use_msi)
  586. pci_disable_msi(dev);
  587. asd_chip_hardrst(asd_ha);
  588. Err_free_cache:
  589. asd_destroy_ha_caches(asd_ha);
  590. Err_unmap:
  591. asd_unmap_ha(asd_ha);
  592. Err_free:
  593. kfree(asd_ha);
  594. scsi_remove_host(shost);
  595. Err:
  596. pci_disable_device(dev);
  597. return err;
  598. }
  599. static void asd_free_queues(struct asd_ha_struct *asd_ha)
  600. {
  601. unsigned long flags;
  602. LIST_HEAD(pending);
  603. struct list_head *n, *pos;
  604. spin_lock_irqsave(&asd_ha->seq.pend_q_lock, flags);
  605. asd_ha->seq.pending = 0;
  606. list_splice_init(&asd_ha->seq.pend_q, &pending);
  607. spin_unlock_irqrestore(&asd_ha->seq.pend_q_lock, flags);
  608. if (!list_empty(&pending))
  609. ASD_DPRINTK("Uh-oh! Pending is not empty!\n");
  610. list_for_each_safe(pos, n, &pending) {
  611. struct asd_ascb *ascb = list_entry(pos, struct asd_ascb, list);
  612. /*
  613. * Delete unexpired ascb timers. This may happen if we issue
  614. * a CONTROL PHY scb to an adapter and rmmod before the scb
  615. * times out. Apparently we don't wait for the CONTROL PHY
  616. * to complete, so it doesn't matter if we kill the timer.
  617. */
  618. del_timer_sync(&ascb->timer);
  619. WARN_ON(ascb->scb->header.opcode != CONTROL_PHY);
  620. list_del_init(pos);
  621. ASD_DPRINTK("freeing from pending\n");
  622. asd_ascb_free(ascb);
  623. }
  624. }
  625. static void asd_turn_off_leds(struct asd_ha_struct *asd_ha)
  626. {
  627. u8 phy_mask = asd_ha->hw_prof.enabled_phys;
  628. u8 i;
  629. for_each_phy(phy_mask, phy_mask, i) {
  630. asd_turn_led(asd_ha, i, 0);
  631. asd_control_led(asd_ha, i, 0);
  632. }
  633. }
  634. static void __devexit asd_pci_remove(struct pci_dev *dev)
  635. {
  636. struct asd_ha_struct *asd_ha = pci_get_drvdata(dev);
  637. if (!asd_ha)
  638. return;
  639. asd_unregister_sas_ha(asd_ha);
  640. asd_disable_ints(asd_ha);
  641. asd_remove_dev_attrs(asd_ha);
  642. /* XXX more here as needed */
  643. free_irq(dev->irq, asd_ha);
  644. if (use_msi)
  645. pci_disable_msi(asd_ha->pcidev);
  646. asd_turn_off_leds(asd_ha);
  647. asd_chip_hardrst(asd_ha);
  648. asd_free_queues(asd_ha);
  649. asd_destroy_ha_caches(asd_ha);
  650. asd_unmap_ha(asd_ha);
  651. kfree(asd_ha);
  652. pci_disable_device(dev);
  653. return;
  654. }
  655. static void asd_scan_start(struct Scsi_Host *shost)
  656. {
  657. struct asd_ha_struct *asd_ha;
  658. int err;
  659. asd_ha = SHOST_TO_SAS_HA(shost)->lldd_ha;
  660. err = asd_enable_phys(asd_ha, asd_ha->hw_prof.enabled_phys);
  661. if (err)
  662. asd_printk("Couldn't enable phys, err:%d\n", err);
  663. }
  664. static int asd_scan_finished(struct Scsi_Host *shost, unsigned long time)
  665. {
  666. /* give the phy enabling interrupt event time to come in (1s
  667. * is empirically about all it takes) */
  668. if (time < HZ)
  669. return 0;
  670. /* Wait for discovery to finish */
  671. scsi_flush_work(shost);
  672. return 1;
  673. }
  674. static ssize_t asd_version_show(struct device_driver *driver, char *buf)
  675. {
  676. return snprintf(buf, PAGE_SIZE, "%s\n", ASD_DRIVER_VERSION);
  677. }
  678. static DRIVER_ATTR(version, S_IRUGO, asd_version_show, NULL);
  679. static int asd_create_driver_attrs(struct device_driver *driver)
  680. {
  681. return driver_create_file(driver, &driver_attr_version);
  682. }
  683. static void asd_remove_driver_attrs(struct device_driver *driver)
  684. {
  685. driver_remove_file(driver, &driver_attr_version);
  686. }
  687. static struct sas_domain_function_template aic94xx_transport_functions = {
  688. .lldd_dev_found = asd_dev_found,
  689. .lldd_dev_gone = asd_dev_gone,
  690. .lldd_execute_task = asd_execute_task,
  691. .lldd_abort_task = asd_abort_task,
  692. .lldd_abort_task_set = asd_abort_task_set,
  693. .lldd_clear_aca = asd_clear_aca,
  694. .lldd_clear_task_set = asd_clear_task_set,
  695. .lldd_I_T_nexus_reset = NULL,
  696. .lldd_lu_reset = asd_lu_reset,
  697. .lldd_query_task = asd_query_task,
  698. .lldd_clear_nexus_port = asd_clear_nexus_port,
  699. .lldd_clear_nexus_ha = asd_clear_nexus_ha,
  700. .lldd_control_phy = asd_control_phy,
  701. };
  702. static const struct pci_device_id aic94xx_pci_table[] __devinitdata = {
  703. {PCI_DEVICE(PCI_VENDOR_ID_ADAPTEC2, PCI_DEVICE_ID_ADAPTEC2_RAZOR10),
  704. 0, 0, 1},
  705. {PCI_DEVICE(PCI_VENDOR_ID_ADAPTEC2, PCI_DEVICE_ID_ADAPTEC2_RAZOR12),
  706. 0, 0, 1},
  707. {PCI_DEVICE(PCI_VENDOR_ID_ADAPTEC2, PCI_DEVICE_ID_ADAPTEC2_RAZOR1E),
  708. 0, 0, 1},
  709. {PCI_DEVICE(PCI_VENDOR_ID_ADAPTEC2, PCI_DEVICE_ID_ADAPTEC2_RAZOR1F),
  710. 0, 0, 1},
  711. {PCI_DEVICE(PCI_VENDOR_ID_ADAPTEC2, PCI_DEVICE_ID_ADAPTEC2_RAZOR30),
  712. 0, 0, 2},
  713. {PCI_DEVICE(PCI_VENDOR_ID_ADAPTEC2, PCI_DEVICE_ID_ADAPTEC2_RAZOR32),
  714. 0, 0, 2},
  715. {PCI_DEVICE(PCI_VENDOR_ID_ADAPTEC2, PCI_DEVICE_ID_ADAPTEC2_RAZOR3E),
  716. 0, 0, 2},
  717. {PCI_DEVICE(PCI_VENDOR_ID_ADAPTEC2, PCI_DEVICE_ID_ADAPTEC2_RAZOR3F),
  718. 0, 0, 2},
  719. {}
  720. };
  721. MODULE_DEVICE_TABLE(pci, aic94xx_pci_table);
  722. static struct pci_driver aic94xx_pci_driver = {
  723. .name = ASD_DRIVER_NAME,
  724. .id_table = aic94xx_pci_table,
  725. .probe = asd_pci_probe,
  726. .remove = __devexit_p(asd_pci_remove),
  727. };
  728. static int __init aic94xx_init(void)
  729. {
  730. int err;
  731. asd_printk("%s version %s loaded\n", ASD_DRIVER_DESCRIPTION,
  732. ASD_DRIVER_VERSION);
  733. err = asd_create_global_caches();
  734. if (err)
  735. return err;
  736. aic94xx_transport_template =
  737. sas_domain_attach_transport(&aic94xx_transport_functions);
  738. if (!aic94xx_transport_template)
  739. goto out_destroy_caches;
  740. err = pci_register_driver(&aic94xx_pci_driver);
  741. if (err)
  742. goto out_release_transport;
  743. err = asd_create_driver_attrs(&aic94xx_pci_driver.driver);
  744. if (err)
  745. goto out_unregister_pcidrv;
  746. return err;
  747. out_unregister_pcidrv:
  748. pci_unregister_driver(&aic94xx_pci_driver);
  749. out_release_transport:
  750. sas_release_transport(aic94xx_transport_template);
  751. out_destroy_caches:
  752. asd_destroy_global_caches();
  753. return err;
  754. }
  755. static void __exit aic94xx_exit(void)
  756. {
  757. asd_remove_driver_attrs(&aic94xx_pci_driver.driver);
  758. pci_unregister_driver(&aic94xx_pci_driver);
  759. sas_release_transport(aic94xx_transport_template);
  760. asd_release_firmware();
  761. asd_destroy_global_caches();
  762. asd_printk("%s version %s unloaded\n", ASD_DRIVER_DESCRIPTION,
  763. ASD_DRIVER_VERSION);
  764. }
  765. module_init(aic94xx_init);
  766. module_exit(aic94xx_exit);
  767. MODULE_AUTHOR("Luben Tuikov <luben_tuikov@adaptec.com>");
  768. MODULE_DESCRIPTION(ASD_DRIVER_DESCRIPTION);
  769. MODULE_LICENSE("GPL v2");
  770. MODULE_VERSION(ASD_DRIVER_VERSION);