pciehp_core.c 15 KB

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  1. /*
  2. * PCI Express Hot Plug Controller Driver
  3. *
  4. * Copyright (C) 1995,2001 Compaq Computer Corporation
  5. * Copyright (C) 2001 Greg Kroah-Hartman (greg@kroah.com)
  6. * Copyright (C) 2001 IBM Corp.
  7. * Copyright (C) 2003-2004 Intel Corporation
  8. *
  9. * All rights reserved.
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU General Public License as published by
  13. * the Free Software Foundation; either version 2 of the License, or (at
  14. * your option) any later version.
  15. *
  16. * This program is distributed in the hope that it will be useful, but
  17. * WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE, GOOD TITLE or
  19. * NON INFRINGEMENT. See the GNU General Public License for more
  20. * details.
  21. *
  22. * You should have received a copy of the GNU General Public License
  23. * along with this program; if not, write to the Free Software
  24. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  25. *
  26. * Send feedback to <greg@kroah.com>, <kristen.c.accardi@intel.com>
  27. *
  28. */
  29. #include <linux/module.h>
  30. #include <linux/moduleparam.h>
  31. #include <linux/kernel.h>
  32. #include <linux/types.h>
  33. #include <linux/pci.h>
  34. #include "pciehp.h"
  35. #include <linux/interrupt.h>
  36. /* Global variables */
  37. int pciehp_debug;
  38. int pciehp_poll_mode;
  39. int pciehp_poll_time;
  40. int pciehp_force;
  41. struct controller *pciehp_ctrl_list;
  42. #define DRIVER_VERSION "0.4"
  43. #define DRIVER_AUTHOR "Dan Zink <dan.zink@compaq.com>, Greg Kroah-Hartman <greg@kroah.com>, Dely Sy <dely.l.sy@intel.com>"
  44. #define DRIVER_DESC "PCI Express Hot Plug Controller Driver"
  45. MODULE_AUTHOR(DRIVER_AUTHOR);
  46. MODULE_DESCRIPTION(DRIVER_DESC);
  47. MODULE_LICENSE("GPL");
  48. module_param(pciehp_debug, bool, 0644);
  49. module_param(pciehp_poll_mode, bool, 0644);
  50. module_param(pciehp_poll_time, int, 0644);
  51. module_param(pciehp_force, bool, 0644);
  52. MODULE_PARM_DESC(pciehp_debug, "Debugging mode enabled or not");
  53. MODULE_PARM_DESC(pciehp_poll_mode, "Using polling mechanism for hot-plug events or not");
  54. MODULE_PARM_DESC(pciehp_poll_time, "Polling mechanism frequency, in seconds");
  55. MODULE_PARM_DESC(pciehp_force, "Force pciehp, even if _OSC and OSHP are missing");
  56. #define PCIE_MODULE_NAME "pciehp"
  57. static int pcie_start_thread (void);
  58. static int set_attention_status (struct hotplug_slot *slot, u8 value);
  59. static int enable_slot (struct hotplug_slot *slot);
  60. static int disable_slot (struct hotplug_slot *slot);
  61. static int get_power_status (struct hotplug_slot *slot, u8 *value);
  62. static int get_attention_status (struct hotplug_slot *slot, u8 *value);
  63. static int get_latch_status (struct hotplug_slot *slot, u8 *value);
  64. static int get_adapter_status (struct hotplug_slot *slot, u8 *value);
  65. static int get_max_bus_speed (struct hotplug_slot *slot, enum pci_bus_speed *value);
  66. static int get_cur_bus_speed (struct hotplug_slot *slot, enum pci_bus_speed *value);
  67. static struct hotplug_slot_ops pciehp_hotplug_slot_ops = {
  68. .owner = THIS_MODULE,
  69. .set_attention_status = set_attention_status,
  70. .enable_slot = enable_slot,
  71. .disable_slot = disable_slot,
  72. .get_power_status = get_power_status,
  73. .get_attention_status = get_attention_status,
  74. .get_latch_status = get_latch_status,
  75. .get_adapter_status = get_adapter_status,
  76. .get_max_bus_speed = get_max_bus_speed,
  77. .get_cur_bus_speed = get_cur_bus_speed,
  78. };
  79. /**
  80. * release_slot - free up the memory used by a slot
  81. * @hotplug_slot: slot to free
  82. */
  83. static void release_slot(struct hotplug_slot *hotplug_slot)
  84. {
  85. struct slot *slot = hotplug_slot->private;
  86. dbg("%s - physical_slot = %s\n", __FUNCTION__, hotplug_slot->name);
  87. kfree(slot->hotplug_slot->info);
  88. kfree(slot->hotplug_slot->name);
  89. kfree(slot->hotplug_slot);
  90. kfree(slot);
  91. }
  92. static int init_slots(struct controller *ctrl)
  93. {
  94. struct slot *new_slot;
  95. u8 number_of_slots;
  96. u8 slot_device;
  97. u32 slot_number;
  98. int result = -ENOMEM;
  99. number_of_slots = ctrl->num_slots;
  100. slot_device = ctrl->slot_device_offset;
  101. slot_number = ctrl->first_slot;
  102. while (number_of_slots) {
  103. new_slot = kmalloc(sizeof(*new_slot), GFP_KERNEL);
  104. if (!new_slot)
  105. goto error;
  106. memset(new_slot, 0, sizeof(struct slot));
  107. new_slot->hotplug_slot =
  108. kmalloc(sizeof(*(new_slot->hotplug_slot)),
  109. GFP_KERNEL);
  110. if (!new_slot->hotplug_slot)
  111. goto error_slot;
  112. memset(new_slot->hotplug_slot, 0, sizeof(struct hotplug_slot));
  113. new_slot->hotplug_slot->info =
  114. kmalloc(sizeof(*(new_slot->hotplug_slot->info)),
  115. GFP_KERNEL);
  116. if (!new_slot->hotplug_slot->info)
  117. goto error_hpslot;
  118. memset(new_slot->hotplug_slot->info, 0,
  119. sizeof(struct hotplug_slot_info));
  120. new_slot->hotplug_slot->name = kmalloc(SLOT_NAME_SIZE,
  121. GFP_KERNEL);
  122. if (!new_slot->hotplug_slot->name)
  123. goto error_info;
  124. new_slot->ctrl = ctrl;
  125. new_slot->bus = ctrl->slot_bus;
  126. new_slot->device = slot_device;
  127. new_slot->hpc_ops = ctrl->hpc_ops;
  128. new_slot->number = ctrl->first_slot;
  129. new_slot->hp_slot = slot_device - ctrl->slot_device_offset;
  130. /* register this slot with the hotplug pci core */
  131. new_slot->hotplug_slot->private = new_slot;
  132. new_slot->hotplug_slot->release = &release_slot;
  133. make_slot_name(new_slot->hotplug_slot->name, SLOT_NAME_SIZE, new_slot);
  134. new_slot->hotplug_slot->ops = &pciehp_hotplug_slot_ops;
  135. new_slot->hpc_ops->get_power_status(new_slot, &(new_slot->hotplug_slot->info->power_status));
  136. new_slot->hpc_ops->get_attention_status(new_slot, &(new_slot->hotplug_slot->info->attention_status));
  137. new_slot->hpc_ops->get_latch_status(new_slot, &(new_slot->hotplug_slot->info->latch_status));
  138. new_slot->hpc_ops->get_adapter_status(new_slot, &(new_slot->hotplug_slot->info->adapter_status));
  139. dbg("Registering bus=%x dev=%x hp_slot=%x sun=%x slot_device_offset=%x\n",
  140. new_slot->bus, new_slot->device, new_slot->hp_slot, new_slot->number, ctrl->slot_device_offset);
  141. result = pci_hp_register (new_slot->hotplug_slot);
  142. if (result) {
  143. err ("pci_hp_register failed with error %d\n", result);
  144. goto error_name;
  145. }
  146. new_slot->next = ctrl->slot;
  147. ctrl->slot = new_slot;
  148. number_of_slots--;
  149. slot_device++;
  150. slot_number += ctrl->slot_num_inc;
  151. }
  152. return 0;
  153. error_name:
  154. kfree(new_slot->hotplug_slot->name);
  155. error_info:
  156. kfree(new_slot->hotplug_slot->info);
  157. error_hpslot:
  158. kfree(new_slot->hotplug_slot);
  159. error_slot:
  160. kfree(new_slot);
  161. error:
  162. return result;
  163. }
  164. static int cleanup_slots (struct controller * ctrl)
  165. {
  166. struct slot *old_slot, *next_slot;
  167. old_slot = ctrl->slot;
  168. ctrl->slot = NULL;
  169. while (old_slot) {
  170. next_slot = old_slot->next;
  171. pci_hp_deregister (old_slot->hotplug_slot);
  172. old_slot = next_slot;
  173. }
  174. return(0);
  175. }
  176. static int get_ctlr_slot_config(struct controller *ctrl)
  177. {
  178. int num_ctlr_slots; /* Not needed; PCI Express has 1 slot per port*/
  179. int first_device_num; /* Not needed */
  180. int physical_slot_num;
  181. u8 ctrlcap;
  182. int rc;
  183. rc = pcie_get_ctlr_slot_config(ctrl, &num_ctlr_slots, &first_device_num, &physical_slot_num, &ctrlcap);
  184. if (rc) {
  185. err("%s: get_ctlr_slot_config fail for b:d (%x:%x)\n", __FUNCTION__, ctrl->bus, ctrl->device);
  186. return (-1);
  187. }
  188. ctrl->num_slots = num_ctlr_slots; /* PCI Express has 1 slot per port */
  189. ctrl->slot_device_offset = first_device_num;
  190. ctrl->first_slot = physical_slot_num;
  191. ctrl->ctrlcap = ctrlcap;
  192. dbg("%s: bus(0x%x) num_slot(0x%x) 1st_dev(0x%x) psn(0x%x) ctrlcap(%x) for b:d (%x:%x)\n",
  193. __FUNCTION__, ctrl->slot_bus, num_ctlr_slots, first_device_num, physical_slot_num, ctrlcap,
  194. ctrl->bus, ctrl->device);
  195. return (0);
  196. }
  197. /*
  198. * set_attention_status - Turns the Amber LED for a slot on, off or blink
  199. */
  200. static int set_attention_status(struct hotplug_slot *hotplug_slot, u8 status)
  201. {
  202. struct slot *slot = hotplug_slot->private;
  203. dbg("%s - physical_slot = %s\n", __FUNCTION__, hotplug_slot->name);
  204. hotplug_slot->info->attention_status = status;
  205. if (ATTN_LED(slot->ctrl->ctrlcap))
  206. slot->hpc_ops->set_attention_status(slot, status);
  207. return 0;
  208. }
  209. static int enable_slot(struct hotplug_slot *hotplug_slot)
  210. {
  211. struct slot *slot = hotplug_slot->private;
  212. dbg("%s - physical_slot = %s\n", __FUNCTION__, hotplug_slot->name);
  213. return pciehp_enable_slot(slot);
  214. }
  215. static int disable_slot(struct hotplug_slot *hotplug_slot)
  216. {
  217. struct slot *slot = hotplug_slot->private;
  218. dbg("%s - physical_slot = %s\n", __FUNCTION__, hotplug_slot->name);
  219. return pciehp_disable_slot(slot);
  220. }
  221. static int get_power_status(struct hotplug_slot *hotplug_slot, u8 *value)
  222. {
  223. struct slot *slot = hotplug_slot->private;
  224. int retval;
  225. dbg("%s - physical_slot = %s\n", __FUNCTION__, hotplug_slot->name);
  226. retval = slot->hpc_ops->get_power_status(slot, value);
  227. if (retval < 0)
  228. *value = hotplug_slot->info->power_status;
  229. return 0;
  230. }
  231. static int get_attention_status(struct hotplug_slot *hotplug_slot, u8 *value)
  232. {
  233. struct slot *slot = hotplug_slot->private;
  234. int retval;
  235. dbg("%s - physical_slot = %s\n", __FUNCTION__, hotplug_slot->name);
  236. retval = slot->hpc_ops->get_attention_status(slot, value);
  237. if (retval < 0)
  238. *value = hotplug_slot->info->attention_status;
  239. return 0;
  240. }
  241. static int get_latch_status(struct hotplug_slot *hotplug_slot, u8 *value)
  242. {
  243. struct slot *slot = hotplug_slot->private;
  244. int retval;
  245. dbg("%s - physical_slot = %s\n", __FUNCTION__, hotplug_slot->name);
  246. retval = slot->hpc_ops->get_latch_status(slot, value);
  247. if (retval < 0)
  248. *value = hotplug_slot->info->latch_status;
  249. return 0;
  250. }
  251. static int get_adapter_status(struct hotplug_slot *hotplug_slot, u8 *value)
  252. {
  253. struct slot *slot = hotplug_slot->private;
  254. int retval;
  255. dbg("%s - physical_slot = %s\n", __FUNCTION__, hotplug_slot->name);
  256. retval = slot->hpc_ops->get_adapter_status(slot, value);
  257. if (retval < 0)
  258. *value = hotplug_slot->info->adapter_status;
  259. return 0;
  260. }
  261. static int get_max_bus_speed(struct hotplug_slot *hotplug_slot, enum pci_bus_speed *value)
  262. {
  263. struct slot *slot = hotplug_slot->private;
  264. int retval;
  265. dbg("%s - physical_slot = %s\n", __FUNCTION__, hotplug_slot->name);
  266. retval = slot->hpc_ops->get_max_bus_speed(slot, value);
  267. if (retval < 0)
  268. *value = PCI_SPEED_UNKNOWN;
  269. return 0;
  270. }
  271. static int get_cur_bus_speed(struct hotplug_slot *hotplug_slot, enum pci_bus_speed *value)
  272. {
  273. struct slot *slot = hotplug_slot->private;
  274. int retval;
  275. dbg("%s - physical_slot = %s\n", __FUNCTION__, hotplug_slot->name);
  276. retval = slot->hpc_ops->get_cur_bus_speed(slot, value);
  277. if (retval < 0)
  278. *value = PCI_SPEED_UNKNOWN;
  279. return 0;
  280. }
  281. static int pciehp_probe(struct pcie_device *dev, const struct pcie_port_service_id *id)
  282. {
  283. int rc;
  284. struct controller *ctrl;
  285. struct slot *t_slot;
  286. int first_device_num = 0 ; /* first PCI device number supported by this PCIE */
  287. int num_ctlr_slots; /* number of slots supported by this HPC */
  288. u8 value;
  289. struct pci_dev *pdev;
  290. ctrl = kmalloc(sizeof(*ctrl), GFP_KERNEL);
  291. if (!ctrl) {
  292. err("%s : out of memory\n", __FUNCTION__);
  293. goto err_out_none;
  294. }
  295. memset(ctrl, 0, sizeof(struct controller));
  296. pdev = dev->port;
  297. ctrl->pci_dev = pdev;
  298. rc = pcie_init(ctrl, dev);
  299. if (rc) {
  300. dbg("%s: controller initialization failed\n", PCIE_MODULE_NAME);
  301. goto err_out_free_ctrl;
  302. }
  303. pci_set_drvdata(pdev, ctrl);
  304. ctrl->pci_bus = kmalloc(sizeof(*ctrl->pci_bus), GFP_KERNEL);
  305. if (!ctrl->pci_bus) {
  306. err("%s: out of memory\n", __FUNCTION__);
  307. rc = -ENOMEM;
  308. goto err_out_unmap_mmio_region;
  309. }
  310. memcpy (ctrl->pci_bus, pdev->bus, sizeof (*ctrl->pci_bus));
  311. ctrl->bus = pdev->bus->number; /* ctrl bus */
  312. ctrl->slot_bus = pdev->subordinate->number; /* bus controlled by this HPC */
  313. ctrl->device = PCI_SLOT(pdev->devfn);
  314. ctrl->function = PCI_FUNC(pdev->devfn);
  315. dbg("%s: ctrl bus=0x%x, device=%x, function=%x, irq=%x\n", __FUNCTION__,
  316. ctrl->bus, ctrl->device, ctrl->function, pdev->irq);
  317. /*
  318. * Save configuration headers for this and subordinate PCI buses
  319. */
  320. rc = get_ctlr_slot_config(ctrl);
  321. if (rc) {
  322. err(msg_initialization_err, rc);
  323. goto err_out_free_ctrl_bus;
  324. }
  325. first_device_num = ctrl->slot_device_offset;
  326. num_ctlr_slots = ctrl->num_slots;
  327. /* Setup the slot information structures */
  328. rc = init_slots(ctrl);
  329. if (rc) {
  330. err(msg_initialization_err, 6);
  331. goto err_out_free_ctrl_slot;
  332. }
  333. t_slot = pciehp_find_slot(ctrl, first_device_num);
  334. /* Finish setting up the hot plug ctrl device */
  335. ctrl->next_event = 0;
  336. if (!pciehp_ctrl_list) {
  337. pciehp_ctrl_list = ctrl;
  338. ctrl->next = NULL;
  339. } else {
  340. ctrl->next = pciehp_ctrl_list;
  341. pciehp_ctrl_list = ctrl;
  342. }
  343. /* Wait for exclusive access to hardware */
  344. down(&ctrl->crit_sect);
  345. t_slot->hpc_ops->get_adapter_status(t_slot, &value); /* Check if slot is occupied */
  346. if ((POWER_CTRL(ctrl->ctrlcap)) && !value) {
  347. rc = t_slot->hpc_ops->power_off_slot(t_slot); /* Power off slot if not occupied*/
  348. if (rc) {
  349. /* Done with exclusive hardware access */
  350. up(&ctrl->crit_sect);
  351. goto err_out_free_ctrl_slot;
  352. } else
  353. /* Wait for the command to complete */
  354. wait_for_ctrl_irq (ctrl);
  355. }
  356. /* Done with exclusive hardware access */
  357. up(&ctrl->crit_sect);
  358. return 0;
  359. err_out_free_ctrl_slot:
  360. cleanup_slots(ctrl);
  361. err_out_free_ctrl_bus:
  362. kfree(ctrl->pci_bus);
  363. err_out_unmap_mmio_region:
  364. ctrl->hpc_ops->release_ctlr(ctrl);
  365. err_out_free_ctrl:
  366. kfree(ctrl);
  367. err_out_none:
  368. return -ENODEV;
  369. }
  370. static int pcie_start_thread(void)
  371. {
  372. int retval = 0;
  373. dbg("Initialize + Start the notification/polling mechanism \n");
  374. retval = pciehp_event_start_thread();
  375. if (retval) {
  376. dbg("pciehp_event_start_thread() failed\n");
  377. return retval;
  378. }
  379. return retval;
  380. }
  381. static void __exit unload_pciehpd(void)
  382. {
  383. struct controller *ctrl;
  384. struct controller *tctrl;
  385. ctrl = pciehp_ctrl_list;
  386. while (ctrl) {
  387. cleanup_slots(ctrl);
  388. kfree (ctrl->pci_bus);
  389. ctrl->hpc_ops->release_ctlr(ctrl);
  390. tctrl = ctrl;
  391. ctrl = ctrl->next;
  392. kfree(tctrl);
  393. }
  394. /* Stop the notification mechanism */
  395. pciehp_event_stop_thread();
  396. }
  397. int hpdriver_context = 0;
  398. static void pciehp_remove (struct pcie_device *device)
  399. {
  400. printk("%s ENTRY\n", __FUNCTION__);
  401. printk("%s -> Call free_irq for irq = %d\n",
  402. __FUNCTION__, device->irq);
  403. free_irq(device->irq, &hpdriver_context);
  404. }
  405. #ifdef CONFIG_PM
  406. static int pciehp_suspend (struct pcie_device *dev, pm_message_t state)
  407. {
  408. printk("%s ENTRY\n", __FUNCTION__);
  409. return 0;
  410. }
  411. static int pciehp_resume (struct pcie_device *dev)
  412. {
  413. printk("%s ENTRY\n", __FUNCTION__);
  414. return 0;
  415. }
  416. #endif
  417. static struct pcie_port_service_id port_pci_ids[] = { {
  418. .vendor = PCI_ANY_ID,
  419. .device = PCI_ANY_ID,
  420. .port_type = PCIE_ANY_PORT,
  421. .service_type = PCIE_PORT_SERVICE_HP,
  422. .driver_data = 0,
  423. }, { /* end: all zeroes */ }
  424. };
  425. static const char device_name[] = "hpdriver";
  426. static struct pcie_port_service_driver hpdriver_portdrv = {
  427. .name = (char *)device_name,
  428. .id_table = &port_pci_ids[0],
  429. .probe = pciehp_probe,
  430. .remove = pciehp_remove,
  431. #ifdef CONFIG_PM
  432. .suspend = pciehp_suspend,
  433. .resume = pciehp_resume,
  434. #endif /* PM */
  435. };
  436. static int __init pcied_init(void)
  437. {
  438. int retval = 0;
  439. #ifdef CONFIG_HOTPLUG_PCI_PCIE_POLL_EVENT_MODE
  440. pciehp_poll_mode = 1;
  441. #endif
  442. retval = pcie_start_thread();
  443. if (retval)
  444. goto error_hpc_init;
  445. retval = pcie_port_service_register(&hpdriver_portdrv);
  446. dbg("pcie_port_service_register = %d\n", retval);
  447. info(DRIVER_DESC " version: " DRIVER_VERSION "\n");
  448. if (retval)
  449. dbg("%s: Failure to register service\n", __FUNCTION__);
  450. error_hpc_init:
  451. if (retval) {
  452. pciehp_event_stop_thread();
  453. };
  454. return retval;
  455. }
  456. static void __exit pcied_cleanup(void)
  457. {
  458. dbg("unload_pciehpd()\n");
  459. unload_pciehpd();
  460. pcie_port_service_unregister(&hpdriver_portdrv);
  461. info(DRIVER_DESC " version: " DRIVER_VERSION " unloaded\n");
  462. }
  463. module_init(pcied_init);
  464. module_exit(pcied_cleanup);