sgi_hotplug.c 18 KB

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  1. /*
  2. * This file is subject to the terms and conditions of the GNU General Public
  3. * License. See the file "COPYING" in the main directory of this archive
  4. * for more details.
  5. *
  6. * Copyright (C) 2005-2006 Silicon Graphics, Inc. All rights reserved.
  7. *
  8. * This work was based on the 2.4/2.6 kernel development by Dick Reigner.
  9. * Work to add BIOS PROM support was completed by Mike Habeck.
  10. */
  11. #include <linux/init.h>
  12. #include <linux/kernel.h>
  13. #include <linux/module.h>
  14. #include <linux/pci.h>
  15. #include <linux/pci_hotplug.h>
  16. #include <linux/proc_fs.h>
  17. #include <linux/types.h>
  18. #include <linux/mutex.h>
  19. #include <asm/sn/addrs.h>
  20. #include <asm/sn/geo.h>
  21. #include <asm/sn/l1.h>
  22. #include <asm/sn/module.h>
  23. #include <asm/sn/pcibr_provider.h>
  24. #include <asm/sn/pcibus_provider_defs.h>
  25. #include <asm/sn/pcidev.h>
  26. #include <asm/sn/sn_feature_sets.h>
  27. #include <asm/sn/sn_sal.h>
  28. #include <asm/sn/types.h>
  29. #include <linux/acpi.h>
  30. #include <asm/sn/acpi.h>
  31. #include "../pci.h"
  32. MODULE_LICENSE("GPL");
  33. MODULE_AUTHOR("SGI (prarit@sgi.com, dickie@sgi.com, habeck@sgi.com)");
  34. MODULE_DESCRIPTION("SGI Altix Hot Plug PCI Controller Driver");
  35. /* SAL call error codes. Keep in sync with prom header io/include/pcibr.h */
  36. #define PCI_SLOT_ALREADY_UP 2 /* slot already up */
  37. #define PCI_SLOT_ALREADY_DOWN 3 /* slot already down */
  38. #define PCI_L1_ERR 7 /* L1 console command error */
  39. #define PCI_EMPTY_33MHZ 15 /* empty 33 MHz bus */
  40. #define PCIIO_ASIC_TYPE_TIOCA 4
  41. #define PCI_L1_QSIZE 128 /* our L1 message buffer size */
  42. #define SN_MAX_HP_SLOTS 32 /* max hotplug slots */
  43. #define SN_SLOT_NAME_SIZE 33 /* size of name string */
  44. /* internal list head */
  45. static struct list_head sn_hp_list;
  46. /* hotplug_slot struct's private pointer */
  47. struct slot {
  48. int device_num;
  49. struct pci_bus *pci_bus;
  50. /* this struct for glue internal only */
  51. struct hotplug_slot *hotplug_slot;
  52. struct list_head hp_list;
  53. char physical_path[SN_SLOT_NAME_SIZE];
  54. };
  55. struct pcibr_slot_enable_resp {
  56. int resp_sub_errno;
  57. char resp_l1_msg[PCI_L1_QSIZE + 1];
  58. };
  59. struct pcibr_slot_disable_resp {
  60. int resp_sub_errno;
  61. char resp_l1_msg[PCI_L1_QSIZE + 1];
  62. };
  63. enum sn_pci_req_e {
  64. PCI_REQ_SLOT_ELIGIBLE,
  65. PCI_REQ_SLOT_DISABLE
  66. };
  67. static int enable_slot(struct hotplug_slot *slot);
  68. static int disable_slot(struct hotplug_slot *slot);
  69. static inline int get_power_status(struct hotplug_slot *slot, u8 *value);
  70. static struct hotplug_slot_ops sn_hotplug_slot_ops = {
  71. .owner = THIS_MODULE,
  72. .enable_slot = enable_slot,
  73. .disable_slot = disable_slot,
  74. .get_power_status = get_power_status,
  75. };
  76. static DEFINE_MUTEX(sn_hotplug_mutex);
  77. static ssize_t path_show (struct hotplug_slot *bss_hotplug_slot,
  78. char *buf)
  79. {
  80. int retval = -ENOENT;
  81. struct slot *slot = bss_hotplug_slot->private;
  82. if (!slot)
  83. return retval;
  84. retval = sprintf (buf, "%s\n", slot->physical_path);
  85. return retval;
  86. }
  87. static struct hotplug_slot_attribute sn_slot_path_attr = __ATTR_RO(path);
  88. static int sn_pci_slot_valid(struct pci_bus *pci_bus, int device)
  89. {
  90. struct pcibus_info *pcibus_info;
  91. u16 busnum, segment, ioboard_type;
  92. pcibus_info = SN_PCIBUS_BUSSOFT_INFO(pci_bus);
  93. /* Check to see if this is a valid slot on 'pci_bus' */
  94. if (!(pcibus_info->pbi_valid_devices & (1 << device)))
  95. return -EPERM;
  96. ioboard_type = sn_ioboard_to_pci_bus(pci_bus);
  97. busnum = pcibus_info->pbi_buscommon.bs_persist_busnum;
  98. segment = pci_domain_nr(pci_bus) & 0xf;
  99. /* Do not allow hotplug operations on base I/O cards */
  100. if ((ioboard_type == L1_BRICKTYPE_IX ||
  101. ioboard_type == L1_BRICKTYPE_IA) &&
  102. (segment == 1 && busnum == 0 && device != 1))
  103. return -EPERM;
  104. return 1;
  105. }
  106. static int sn_pci_bus_valid(struct pci_bus *pci_bus)
  107. {
  108. struct pcibus_info *pcibus_info;
  109. u32 asic_type;
  110. u16 ioboard_type;
  111. /* Don't register slots hanging off the TIOCA bus */
  112. pcibus_info = SN_PCIBUS_BUSSOFT_INFO(pci_bus);
  113. asic_type = pcibus_info->pbi_buscommon.bs_asic_type;
  114. if (asic_type == PCIIO_ASIC_TYPE_TIOCA)
  115. return -EPERM;
  116. /* Only register slots in I/O Bricks that support hotplug */
  117. ioboard_type = sn_ioboard_to_pci_bus(pci_bus);
  118. switch (ioboard_type) {
  119. case L1_BRICKTYPE_IX:
  120. case L1_BRICKTYPE_PX:
  121. case L1_BRICKTYPE_IA:
  122. case L1_BRICKTYPE_PA:
  123. case L1_BOARDTYPE_PCIX3SLOT:
  124. return 1;
  125. break;
  126. default:
  127. return -EPERM;
  128. break;
  129. }
  130. return -EIO;
  131. }
  132. static int sn_hp_slot_private_alloc(struct hotplug_slot *bss_hotplug_slot,
  133. struct pci_bus *pci_bus, int device,
  134. char *name)
  135. {
  136. struct pcibus_info *pcibus_info;
  137. struct slot *slot;
  138. pcibus_info = SN_PCIBUS_BUSSOFT_INFO(pci_bus);
  139. slot = kzalloc(sizeof(*slot), GFP_KERNEL);
  140. if (!slot)
  141. return -ENOMEM;
  142. bss_hotplug_slot->private = slot;
  143. slot->device_num = device;
  144. slot->pci_bus = pci_bus;
  145. sprintf(name, "%04x:%02x:%02x",
  146. pci_domain_nr(pci_bus),
  147. ((u16)pcibus_info->pbi_buscommon.bs_persist_busnum),
  148. device + 1);
  149. sn_generate_path(pci_bus, slot->physical_path);
  150. slot->hotplug_slot = bss_hotplug_slot;
  151. list_add(&slot->hp_list, &sn_hp_list);
  152. return 0;
  153. }
  154. static struct hotplug_slot * sn_hp_destroy(void)
  155. {
  156. struct slot *slot;
  157. struct pci_slot *pci_slot;
  158. struct hotplug_slot *bss_hotplug_slot = NULL;
  159. list_for_each_entry(slot, &sn_hp_list, hp_list) {
  160. bss_hotplug_slot = slot->hotplug_slot;
  161. pci_slot = bss_hotplug_slot->pci_slot;
  162. list_del(&((struct slot *)bss_hotplug_slot->private)->
  163. hp_list);
  164. sysfs_remove_file(&pci_slot->kobj,
  165. &sn_slot_path_attr.attr);
  166. break;
  167. }
  168. return bss_hotplug_slot;
  169. }
  170. static void sn_bus_free_data(struct pci_dev *dev)
  171. {
  172. struct pci_bus *subordinate_bus;
  173. struct pci_dev *child;
  174. /* Recursively clean up sn_irq_info structs */
  175. if (dev->subordinate) {
  176. subordinate_bus = dev->subordinate;
  177. list_for_each_entry(child, &subordinate_bus->devices, bus_list)
  178. sn_bus_free_data(child);
  179. }
  180. /*
  181. * Some drivers may use dma accesses during the
  182. * driver remove function. We release the sysdata
  183. * areas after the driver remove functions have
  184. * been called.
  185. */
  186. sn_bus_store_sysdata(dev);
  187. sn_pci_unfixup_slot(dev);
  188. }
  189. static int sn_slot_enable(struct hotplug_slot *bss_hotplug_slot,
  190. int device_num, char **ssdt)
  191. {
  192. struct slot *slot = bss_hotplug_slot->private;
  193. struct pcibus_info *pcibus_info;
  194. struct pcibr_slot_enable_resp resp;
  195. int rc;
  196. pcibus_info = SN_PCIBUS_BUSSOFT_INFO(slot->pci_bus);
  197. /*
  198. * Power-on and initialize the slot in the SN
  199. * PCI infrastructure.
  200. */
  201. rc = sal_pcibr_slot_enable(pcibus_info, device_num, &resp, ssdt);
  202. if (rc == PCI_SLOT_ALREADY_UP) {
  203. dev_dbg(&slot->pci_bus->self->dev, "is already active\n");
  204. return 1; /* return 1 to user */
  205. }
  206. if (rc == PCI_L1_ERR) {
  207. dev_dbg(&slot->pci_bus->self->dev,
  208. "L1 failure %d with message: %s",
  209. resp.resp_sub_errno, resp.resp_l1_msg);
  210. return -EPERM;
  211. }
  212. if (rc) {
  213. dev_dbg(&slot->pci_bus->self->dev,
  214. "insert failed with error %d sub-error %d\n",
  215. rc, resp.resp_sub_errno);
  216. return -EIO;
  217. }
  218. pcibus_info = SN_PCIBUS_BUSSOFT_INFO(slot->pci_bus);
  219. pcibus_info->pbi_enabled_devices |= (1 << device_num);
  220. return 0;
  221. }
  222. static int sn_slot_disable(struct hotplug_slot *bss_hotplug_slot,
  223. int device_num, int action)
  224. {
  225. struct slot *slot = bss_hotplug_slot->private;
  226. struct pcibus_info *pcibus_info;
  227. struct pcibr_slot_disable_resp resp;
  228. int rc;
  229. pcibus_info = SN_PCIBUS_BUSSOFT_INFO(slot->pci_bus);
  230. rc = sal_pcibr_slot_disable(pcibus_info, device_num, action, &resp);
  231. if ((action == PCI_REQ_SLOT_ELIGIBLE) &&
  232. (rc == PCI_SLOT_ALREADY_DOWN)) {
  233. dev_dbg(&slot->pci_bus->self->dev, "Slot %s already inactive\n", slot->physical_path);
  234. return 1; /* return 1 to user */
  235. }
  236. if ((action == PCI_REQ_SLOT_ELIGIBLE) && (rc == PCI_EMPTY_33MHZ)) {
  237. dev_dbg(&slot->pci_bus->self->dev,
  238. "Cannot remove last 33MHz card\n");
  239. return -EPERM;
  240. }
  241. if ((action == PCI_REQ_SLOT_ELIGIBLE) && (rc == PCI_L1_ERR)) {
  242. dev_dbg(&slot->pci_bus->self->dev,
  243. "L1 failure %d with message \n%s\n",
  244. resp.resp_sub_errno, resp.resp_l1_msg);
  245. return -EPERM;
  246. }
  247. if ((action == PCI_REQ_SLOT_ELIGIBLE) && rc) {
  248. dev_dbg(&slot->pci_bus->self->dev,
  249. "remove failed with error %d sub-error %d\n",
  250. rc, resp.resp_sub_errno);
  251. return -EIO;
  252. }
  253. if ((action == PCI_REQ_SLOT_ELIGIBLE) && !rc)
  254. return 0;
  255. if ((action == PCI_REQ_SLOT_DISABLE) && !rc) {
  256. pcibus_info = SN_PCIBUS_BUSSOFT_INFO(slot->pci_bus);
  257. pcibus_info->pbi_enabled_devices &= ~(1 << device_num);
  258. dev_dbg(&slot->pci_bus->self->dev, "remove successful\n");
  259. return 0;
  260. }
  261. if ((action == PCI_REQ_SLOT_DISABLE) && rc) {
  262. dev_dbg(&slot->pci_bus->self->dev,"remove failed rc = %d\n", rc);
  263. }
  264. return rc;
  265. }
  266. /*
  267. * Power up and configure the slot via a SAL call to PROM.
  268. * Scan slot (and any children), do any platform specific fixup,
  269. * and find device driver.
  270. */
  271. static int enable_slot(struct hotplug_slot *bss_hotplug_slot)
  272. {
  273. struct slot *slot = bss_hotplug_slot->private;
  274. struct pci_bus *new_bus = NULL;
  275. struct pci_dev *dev;
  276. int func, num_funcs;
  277. int new_ppb = 0;
  278. int rc;
  279. char *ssdt = NULL;
  280. void pcibios_fixup_device_resources(struct pci_dev *);
  281. /* Serialize the Linux PCI infrastructure */
  282. mutex_lock(&sn_hotplug_mutex);
  283. /*
  284. * Power-on and initialize the slot in the SN
  285. * PCI infrastructure. Also, retrieve the ACPI SSDT
  286. * table for the slot (if ACPI capable PROM).
  287. */
  288. rc = sn_slot_enable(bss_hotplug_slot, slot->device_num, &ssdt);
  289. if (rc) {
  290. mutex_unlock(&sn_hotplug_mutex);
  291. return rc;
  292. }
  293. if (ssdt)
  294. ssdt = __va(ssdt);
  295. /* Add the new SSDT for the slot to the ACPI namespace */
  296. if (SN_ACPI_BASE_SUPPORT() && ssdt) {
  297. acpi_status ret;
  298. ret = acpi_load_table((struct acpi_table_header *)ssdt);
  299. if (ACPI_FAILURE(ret)) {
  300. printk(KERN_ERR "%s: acpi_load_table failed (0x%x)\n",
  301. __func__, ret);
  302. /* try to continue on */
  303. }
  304. }
  305. num_funcs = pci_scan_slot(slot->pci_bus,
  306. PCI_DEVFN(slot->device_num + 1, 0));
  307. if (!num_funcs) {
  308. dev_dbg(&slot->pci_bus->self->dev, "no device in slot\n");
  309. mutex_unlock(&sn_hotplug_mutex);
  310. return -ENODEV;
  311. }
  312. /*
  313. * Map SN resources for all functions on the card
  314. * to the Linux PCI interface and tell the drivers
  315. * about them.
  316. */
  317. for (func = 0; func < num_funcs; func++) {
  318. dev = pci_get_slot(slot->pci_bus,
  319. PCI_DEVFN(slot->device_num + 1,
  320. PCI_FUNC(func)));
  321. if (dev) {
  322. /* Need to do slot fixup on PPB before fixup of children
  323. * (PPB's pcidev_info needs to be in pcidev_info list
  324. * before child's SN_PCIDEV_INFO() call to setup
  325. * pdi_host_pcidev_info).
  326. */
  327. pcibios_fixup_device_resources(dev);
  328. if (SN_ACPI_BASE_SUPPORT())
  329. sn_acpi_slot_fixup(dev);
  330. else
  331. sn_io_slot_fixup(dev);
  332. if (dev->hdr_type == PCI_HEADER_TYPE_BRIDGE) {
  333. unsigned char sec_bus;
  334. pci_read_config_byte(dev, PCI_SECONDARY_BUS,
  335. &sec_bus);
  336. new_bus = pci_add_new_bus(dev->bus, dev,
  337. sec_bus);
  338. pci_scan_child_bus(new_bus);
  339. new_ppb = 1;
  340. }
  341. pci_dev_put(dev);
  342. }
  343. }
  344. /*
  345. * Add the slot's devices to the ACPI infrastructure */
  346. if (SN_ACPI_BASE_SUPPORT() && ssdt) {
  347. unsigned long long adr;
  348. struct acpi_device *pdevice;
  349. struct acpi_device *device;
  350. acpi_handle phandle;
  351. acpi_handle chandle = NULL;
  352. acpi_handle rethandle;
  353. acpi_status ret;
  354. phandle = PCI_CONTROLLER(slot->pci_bus)->acpi_handle;
  355. if (acpi_bus_get_device(phandle, &pdevice)) {
  356. dev_dbg(&slot->pci_bus->self->dev,
  357. "no parent device, assuming NULL\n");
  358. pdevice = NULL;
  359. }
  360. /*
  361. * Walk the rootbus node's immediate children looking for
  362. * the slot's device node(s). There can be more than
  363. * one for multifunction devices.
  364. */
  365. for (;;) {
  366. rethandle = NULL;
  367. ret = acpi_get_next_object(ACPI_TYPE_DEVICE,
  368. phandle, chandle,
  369. &rethandle);
  370. if (ret == AE_NOT_FOUND || rethandle == NULL)
  371. break;
  372. chandle = rethandle;
  373. ret = acpi_evaluate_integer(chandle, METHOD_NAME__ADR,
  374. NULL, &adr);
  375. if (ACPI_SUCCESS(ret) &&
  376. (adr>>16) == (slot->device_num + 1)) {
  377. ret = acpi_bus_add(&device, pdevice, chandle,
  378. ACPI_BUS_TYPE_DEVICE);
  379. if (ACPI_FAILURE(ret)) {
  380. printk(KERN_ERR "%s: acpi_bus_add "
  381. "failed (0x%x) for slot %d "
  382. "func %d\n", __func__,
  383. ret, (int)(adr>>16),
  384. (int)(adr&0xffff));
  385. /* try to continue on */
  386. } else {
  387. acpi_bus_start(device);
  388. }
  389. }
  390. }
  391. }
  392. /* Call the driver for the new device */
  393. pci_bus_add_devices(slot->pci_bus);
  394. /* Call the drivers for the new devices subordinate to PPB */
  395. if (new_ppb)
  396. pci_bus_add_devices(new_bus);
  397. mutex_unlock(&sn_hotplug_mutex);
  398. if (rc == 0)
  399. dev_dbg(&slot->pci_bus->self->dev,
  400. "insert operation successful\n");
  401. else
  402. dev_dbg(&slot->pci_bus->self->dev,
  403. "insert operation failed rc = %d\n", rc);
  404. return rc;
  405. }
  406. static int disable_slot(struct hotplug_slot *bss_hotplug_slot)
  407. {
  408. struct slot *slot = bss_hotplug_slot->private;
  409. struct pci_dev *dev;
  410. int func;
  411. int rc;
  412. acpi_owner_id ssdt_id = 0;
  413. /* Acquire update access to the bus */
  414. mutex_lock(&sn_hotplug_mutex);
  415. /* is it okay to bring this slot down? */
  416. rc = sn_slot_disable(bss_hotplug_slot, slot->device_num,
  417. PCI_REQ_SLOT_ELIGIBLE);
  418. if (rc)
  419. goto leaving;
  420. /* free the ACPI resources for the slot */
  421. if (SN_ACPI_BASE_SUPPORT() &&
  422. PCI_CONTROLLER(slot->pci_bus)->acpi_handle) {
  423. unsigned long long adr;
  424. struct acpi_device *device;
  425. acpi_handle phandle;
  426. acpi_handle chandle = NULL;
  427. acpi_handle rethandle;
  428. acpi_status ret;
  429. /* Get the rootbus node pointer */
  430. phandle = PCI_CONTROLLER(slot->pci_bus)->acpi_handle;
  431. /*
  432. * Walk the rootbus node's immediate children looking for
  433. * the slot's device node(s). There can be more than
  434. * one for multifunction devices.
  435. */
  436. for (;;) {
  437. rethandle = NULL;
  438. ret = acpi_get_next_object(ACPI_TYPE_DEVICE,
  439. phandle, chandle,
  440. &rethandle);
  441. if (ret == AE_NOT_FOUND || rethandle == NULL)
  442. break;
  443. chandle = rethandle;
  444. ret = acpi_evaluate_integer(chandle,
  445. METHOD_NAME__ADR,
  446. NULL, &adr);
  447. if (ACPI_SUCCESS(ret) &&
  448. (adr>>16) == (slot->device_num + 1)) {
  449. /* retain the owner id */
  450. acpi_get_id(chandle, &ssdt_id);
  451. ret = acpi_bus_get_device(chandle,
  452. &device);
  453. if (ACPI_SUCCESS(ret))
  454. acpi_bus_trim(device, 1);
  455. }
  456. }
  457. }
  458. /* Free the SN resources assigned to the Linux device.*/
  459. for (func = 0; func < 8; func++) {
  460. dev = pci_get_slot(slot->pci_bus,
  461. PCI_DEVFN(slot->device_num + 1,
  462. PCI_FUNC(func)));
  463. if (dev) {
  464. sn_bus_free_data(dev);
  465. pci_remove_bus_device(dev);
  466. pci_dev_put(dev);
  467. }
  468. }
  469. /* Remove the SSDT for the slot from the ACPI namespace */
  470. if (SN_ACPI_BASE_SUPPORT() && ssdt_id) {
  471. acpi_status ret;
  472. ret = acpi_unload_table_id(ssdt_id);
  473. if (ACPI_FAILURE(ret)) {
  474. printk(KERN_ERR "%s: acpi_unload_table_id "
  475. "failed (0x%x) for id %d\n",
  476. __func__, ret, ssdt_id);
  477. /* try to continue on */
  478. }
  479. }
  480. /* free the collected sysdata pointers */
  481. sn_bus_free_sysdata();
  482. /* Deactivate slot */
  483. rc = sn_slot_disable(bss_hotplug_slot, slot->device_num,
  484. PCI_REQ_SLOT_DISABLE);
  485. leaving:
  486. /* Release the bus lock */
  487. mutex_unlock(&sn_hotplug_mutex);
  488. return rc;
  489. }
  490. static inline int get_power_status(struct hotplug_slot *bss_hotplug_slot,
  491. u8 *value)
  492. {
  493. struct slot *slot = bss_hotplug_slot->private;
  494. struct pcibus_info *pcibus_info;
  495. u32 power;
  496. pcibus_info = SN_PCIBUS_BUSSOFT_INFO(slot->pci_bus);
  497. mutex_lock(&sn_hotplug_mutex);
  498. power = pcibus_info->pbi_enabled_devices & (1 << slot->device_num);
  499. *value = power ? 1 : 0;
  500. mutex_unlock(&sn_hotplug_mutex);
  501. return 0;
  502. }
  503. static void sn_release_slot(struct hotplug_slot *bss_hotplug_slot)
  504. {
  505. kfree(bss_hotplug_slot->info);
  506. kfree(bss_hotplug_slot->private);
  507. kfree(bss_hotplug_slot);
  508. }
  509. static int sn_hotplug_slot_register(struct pci_bus *pci_bus)
  510. {
  511. int device;
  512. struct pci_slot *pci_slot;
  513. struct hotplug_slot *bss_hotplug_slot;
  514. char name[SN_SLOT_NAME_SIZE];
  515. int rc = 0;
  516. /*
  517. * Currently only four devices are supported,
  518. * in the future there maybe more -- up to 32.
  519. */
  520. for (device = 0; device < SN_MAX_HP_SLOTS ; device++) {
  521. if (sn_pci_slot_valid(pci_bus, device) != 1)
  522. continue;
  523. bss_hotplug_slot = kzalloc(sizeof(*bss_hotplug_slot),
  524. GFP_KERNEL);
  525. if (!bss_hotplug_slot) {
  526. rc = -ENOMEM;
  527. goto alloc_err;
  528. }
  529. bss_hotplug_slot->info =
  530. kzalloc(sizeof(struct hotplug_slot_info),
  531. GFP_KERNEL);
  532. if (!bss_hotplug_slot->info) {
  533. rc = -ENOMEM;
  534. goto alloc_err;
  535. }
  536. if (sn_hp_slot_private_alloc(bss_hotplug_slot,
  537. pci_bus, device, name)) {
  538. rc = -ENOMEM;
  539. goto alloc_err;
  540. }
  541. bss_hotplug_slot->ops = &sn_hotplug_slot_ops;
  542. bss_hotplug_slot->release = &sn_release_slot;
  543. rc = pci_hp_register(bss_hotplug_slot, pci_bus, device, name);
  544. if (rc)
  545. goto register_err;
  546. pci_slot = bss_hotplug_slot->pci_slot;
  547. rc = sysfs_create_file(&pci_slot->kobj,
  548. &sn_slot_path_attr.attr);
  549. if (rc)
  550. goto register_err;
  551. }
  552. dev_dbg(&pci_bus->self->dev, "Registered bus with hotplug\n");
  553. return rc;
  554. register_err:
  555. dev_dbg(&pci_bus->self->dev, "bus failed to register with err = %d\n",
  556. rc);
  557. alloc_err:
  558. if (rc == -ENOMEM)
  559. dev_dbg(&pci_bus->self->dev, "Memory allocation error\n");
  560. /* destroy THIS element */
  561. if (bss_hotplug_slot)
  562. sn_release_slot(bss_hotplug_slot);
  563. /* destroy anything else on the list */
  564. while ((bss_hotplug_slot = sn_hp_destroy()))
  565. pci_hp_deregister(bss_hotplug_slot);
  566. return rc;
  567. }
  568. static int sn_pci_hotplug_init(void)
  569. {
  570. struct pci_bus *pci_bus = NULL;
  571. int rc;
  572. int registered = 0;
  573. if (!sn_prom_feature_available(PRF_HOTPLUG_SUPPORT)) {
  574. printk(KERN_ERR "%s: PROM version does not support hotplug.\n",
  575. __func__);
  576. return -EPERM;
  577. }
  578. INIT_LIST_HEAD(&sn_hp_list);
  579. while ((pci_bus = pci_find_next_bus(pci_bus))) {
  580. if (!pci_bus->sysdata)
  581. continue;
  582. rc = sn_pci_bus_valid(pci_bus);
  583. if (rc != 1) {
  584. dev_dbg(&pci_bus->self->dev, "not a valid hotplug bus\n");
  585. continue;
  586. }
  587. dev_dbg(&pci_bus->self->dev, "valid hotplug bus\n");
  588. rc = sn_hotplug_slot_register(pci_bus);
  589. if (!rc) {
  590. registered = 1;
  591. } else {
  592. registered = 0;
  593. break;
  594. }
  595. }
  596. return registered == 1 ? 0 : -ENODEV;
  597. }
  598. static void sn_pci_hotplug_exit(void)
  599. {
  600. struct hotplug_slot *bss_hotplug_slot;
  601. while ((bss_hotplug_slot = sn_hp_destroy()))
  602. pci_hp_deregister(bss_hotplug_slot);
  603. if (!list_empty(&sn_hp_list))
  604. printk(KERN_ERR "%s: internal list is not empty\n", __FILE__);
  605. }
  606. module_init(sn_pci_hotplug_init);
  607. module_exit(sn_pci_hotplug_exit);