cs.c 22 KB

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  1. /*
  2. * cs.c -- Kernel Card Services - core services
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License version 2 as
  6. * published by the Free Software Foundation.
  7. *
  8. * The initial developer of the original code is David A. Hinds
  9. * <dahinds@users.sourceforge.net>. Portions created by David A. Hinds
  10. * are Copyright (C) 1999 David A. Hinds. All Rights Reserved.
  11. *
  12. * (C) 1999 David A. Hinds
  13. */
  14. #include <linux/module.h>
  15. #include <linux/moduleparam.h>
  16. #include <linux/init.h>
  17. #include <linux/kernel.h>
  18. #include <linux/string.h>
  19. #include <linux/major.h>
  20. #include <linux/errno.h>
  21. #include <linux/slab.h>
  22. #include <linux/mm.h>
  23. #include <linux/interrupt.h>
  24. #include <linux/timer.h>
  25. #include <linux/ioport.h>
  26. #include <linux/delay.h>
  27. #include <linux/pm.h>
  28. #include <linux/pci.h>
  29. #include <linux/device.h>
  30. #include <asm/system.h>
  31. #include <asm/irq.h>
  32. #define IN_CARD_SERVICES
  33. #include <pcmcia/cs_types.h>
  34. #include <pcmcia/ss.h>
  35. #include <pcmcia/cs.h>
  36. #include <pcmcia/bulkmem.h>
  37. #include <pcmcia/cistpl.h>
  38. #include <pcmcia/cisreg.h>
  39. #include <pcmcia/ds.h>
  40. #include "cs_internal.h"
  41. /* Module parameters */
  42. MODULE_AUTHOR("David Hinds <dahinds@users.sourceforge.net>");
  43. MODULE_DESCRIPTION("Linux Kernel Card Services");
  44. MODULE_LICENSE("GPL");
  45. #define INT_MODULE_PARM(n, v) static int n = v; module_param(n, int, 0444)
  46. INT_MODULE_PARM(setup_delay, 10); /* centiseconds */
  47. INT_MODULE_PARM(resume_delay, 20); /* centiseconds */
  48. INT_MODULE_PARM(shutdown_delay, 3); /* centiseconds */
  49. INT_MODULE_PARM(vcc_settle, 40); /* centiseconds */
  50. INT_MODULE_PARM(reset_time, 10); /* usecs */
  51. INT_MODULE_PARM(unreset_delay, 10); /* centiseconds */
  52. INT_MODULE_PARM(unreset_check, 10); /* centiseconds */
  53. INT_MODULE_PARM(unreset_limit, 30); /* unreset_check's */
  54. /* Access speed for attribute memory windows */
  55. INT_MODULE_PARM(cis_speed, 300); /* ns */
  56. #ifdef DEBUG
  57. static int pc_debug;
  58. module_param(pc_debug, int, 0644);
  59. int cs_debug_level(int level)
  60. {
  61. return pc_debug > level;
  62. }
  63. #endif
  64. socket_state_t dead_socket = {
  65. .csc_mask = SS_DETECT,
  66. };
  67. EXPORT_SYMBOL(dead_socket);
  68. /* List of all sockets, protected by a rwsem */
  69. LIST_HEAD(pcmcia_socket_list);
  70. EXPORT_SYMBOL(pcmcia_socket_list);
  71. DECLARE_RWSEM(pcmcia_socket_list_rwsem);
  72. EXPORT_SYMBOL(pcmcia_socket_list_rwsem);
  73. /**
  74. * Low-level PCMCIA socket drivers need to register with the PCCard
  75. * core using pcmcia_register_socket.
  76. *
  77. * socket drivers are expected to use the following callbacks in their
  78. * .drv struct:
  79. * - pcmcia_socket_dev_suspend
  80. * - pcmcia_socket_dev_resume
  81. * These functions check for the appropriate struct pcmcia_soket arrays,
  82. * and pass them to the low-level functions pcmcia_{suspend,resume}_socket
  83. */
  84. static int socket_resume(struct pcmcia_socket *skt);
  85. static int socket_suspend(struct pcmcia_socket *skt);
  86. int pcmcia_socket_dev_suspend(struct device *dev, pm_message_t state)
  87. {
  88. struct pcmcia_socket *socket;
  89. down_read(&pcmcia_socket_list_rwsem);
  90. list_for_each_entry(socket, &pcmcia_socket_list, socket_list) {
  91. if (socket->dev.dev != dev)
  92. continue;
  93. mutex_lock(&socket->skt_mutex);
  94. socket_suspend(socket);
  95. mutex_unlock(&socket->skt_mutex);
  96. }
  97. up_read(&pcmcia_socket_list_rwsem);
  98. return 0;
  99. }
  100. EXPORT_SYMBOL(pcmcia_socket_dev_suspend);
  101. int pcmcia_socket_dev_resume(struct device *dev)
  102. {
  103. struct pcmcia_socket *socket;
  104. down_read(&pcmcia_socket_list_rwsem);
  105. list_for_each_entry(socket, &pcmcia_socket_list, socket_list) {
  106. if (socket->dev.dev != dev)
  107. continue;
  108. mutex_lock(&socket->skt_mutex);
  109. socket_resume(socket);
  110. mutex_unlock(&socket->skt_mutex);
  111. }
  112. up_read(&pcmcia_socket_list_rwsem);
  113. return 0;
  114. }
  115. EXPORT_SYMBOL(pcmcia_socket_dev_resume);
  116. struct pcmcia_socket * pcmcia_get_socket(struct pcmcia_socket *skt)
  117. {
  118. struct class_device *cl_dev = class_device_get(&skt->dev);
  119. if (!cl_dev)
  120. return NULL;
  121. skt = class_get_devdata(cl_dev);
  122. if (!try_module_get(skt->owner)) {
  123. class_device_put(&skt->dev);
  124. return NULL;
  125. }
  126. return (skt);
  127. }
  128. EXPORT_SYMBOL(pcmcia_get_socket);
  129. void pcmcia_put_socket(struct pcmcia_socket *skt)
  130. {
  131. module_put(skt->owner);
  132. class_device_put(&skt->dev);
  133. }
  134. EXPORT_SYMBOL(pcmcia_put_socket);
  135. static void pcmcia_release_socket(struct class_device *class_dev)
  136. {
  137. struct pcmcia_socket *socket = class_get_devdata(class_dev);
  138. complete(&socket->socket_released);
  139. }
  140. static int pccardd(void *__skt);
  141. /**
  142. * pcmcia_register_socket - add a new pcmcia socket device
  143. */
  144. int pcmcia_register_socket(struct pcmcia_socket *socket)
  145. {
  146. int ret;
  147. if (!socket || !socket->ops || !socket->dev.dev || !socket->resource_ops)
  148. return -EINVAL;
  149. cs_dbg(socket, 0, "pcmcia_register_socket(0x%p)\n", socket->ops);
  150. spin_lock_init(&socket->lock);
  151. if (socket->resource_ops->init) {
  152. ret = socket->resource_ops->init(socket);
  153. if (ret)
  154. return (ret);
  155. }
  156. /* try to obtain a socket number [yes, it gets ugly if we
  157. * register more than 2^sizeof(unsigned int) pcmcia
  158. * sockets... but the socket number is deprecated
  159. * anyways, so I don't care] */
  160. down_write(&pcmcia_socket_list_rwsem);
  161. if (list_empty(&pcmcia_socket_list))
  162. socket->sock = 0;
  163. else {
  164. unsigned int found, i = 1;
  165. struct pcmcia_socket *tmp;
  166. do {
  167. found = 1;
  168. list_for_each_entry(tmp, &pcmcia_socket_list, socket_list) {
  169. if (tmp->sock == i)
  170. found = 0;
  171. }
  172. i++;
  173. } while (!found);
  174. socket->sock = i - 1;
  175. }
  176. list_add_tail(&socket->socket_list, &pcmcia_socket_list);
  177. up_write(&pcmcia_socket_list_rwsem);
  178. #ifndef CONFIG_CARDBUS
  179. /*
  180. * If we do not support Cardbus, ensure that
  181. * the Cardbus socket capability is disabled.
  182. */
  183. socket->features &= ~SS_CAP_CARDBUS;
  184. #endif
  185. /* set proper values in socket->dev */
  186. socket->dev.class_data = socket;
  187. socket->dev.class = &pcmcia_socket_class;
  188. snprintf(socket->dev.class_id, BUS_ID_SIZE, "pcmcia_socket%u", socket->sock);
  189. /* base address = 0, map = 0 */
  190. socket->cis_mem.flags = 0;
  191. socket->cis_mem.speed = cis_speed;
  192. INIT_LIST_HEAD(&socket->cis_cache);
  193. init_completion(&socket->socket_released);
  194. init_completion(&socket->thread_done);
  195. init_waitqueue_head(&socket->thread_wait);
  196. mutex_init(&socket->skt_mutex);
  197. spin_lock_init(&socket->thread_lock);
  198. ret = kernel_thread(pccardd, socket, CLONE_KERNEL);
  199. if (ret < 0)
  200. goto err;
  201. wait_for_completion(&socket->thread_done);
  202. if(!socket->thread) {
  203. printk(KERN_WARNING "PCMCIA: warning: socket thread for socket %p did not start\n", socket);
  204. return -EIO;
  205. }
  206. pcmcia_parse_events(socket, SS_DETECT);
  207. return 0;
  208. err:
  209. down_write(&pcmcia_socket_list_rwsem);
  210. list_del(&socket->socket_list);
  211. up_write(&pcmcia_socket_list_rwsem);
  212. return ret;
  213. } /* pcmcia_register_socket */
  214. EXPORT_SYMBOL(pcmcia_register_socket);
  215. /**
  216. * pcmcia_unregister_socket - remove a pcmcia socket device
  217. */
  218. void pcmcia_unregister_socket(struct pcmcia_socket *socket)
  219. {
  220. if (!socket)
  221. return;
  222. cs_dbg(socket, 0, "pcmcia_unregister_socket(0x%p)\n", socket->ops);
  223. if (socket->thread) {
  224. init_completion(&socket->thread_done);
  225. socket->thread = NULL;
  226. wake_up(&socket->thread_wait);
  227. wait_for_completion(&socket->thread_done);
  228. }
  229. release_cis_mem(socket);
  230. /* remove from our own list */
  231. down_write(&pcmcia_socket_list_rwsem);
  232. list_del(&socket->socket_list);
  233. up_write(&pcmcia_socket_list_rwsem);
  234. /* wait for sysfs to drop all references */
  235. release_resource_db(socket);
  236. wait_for_completion(&socket->socket_released);
  237. } /* pcmcia_unregister_socket */
  238. EXPORT_SYMBOL(pcmcia_unregister_socket);
  239. struct pcmcia_socket * pcmcia_get_socket_by_nr(unsigned int nr)
  240. {
  241. struct pcmcia_socket *s;
  242. down_read(&pcmcia_socket_list_rwsem);
  243. list_for_each_entry(s, &pcmcia_socket_list, socket_list)
  244. if (s->sock == nr) {
  245. up_read(&pcmcia_socket_list_rwsem);
  246. return s;
  247. }
  248. up_read(&pcmcia_socket_list_rwsem);
  249. return NULL;
  250. }
  251. EXPORT_SYMBOL(pcmcia_get_socket_by_nr);
  252. /**
  253. * The central event handler. Send_event() sends an event to the
  254. * 16-bit subsystem, which then calls the relevant device drivers.
  255. * Parse_events() interprets the event bits from
  256. * a card status change report. Do_shutdown() handles the high
  257. * priority stuff associated with a card removal.
  258. */
  259. /* NOTE: send_event needs to be called with skt->sem held. */
  260. static int send_event(struct pcmcia_socket *s, event_t event, int priority)
  261. {
  262. int ret;
  263. if (s->state & SOCKET_CARDBUS)
  264. return 0;
  265. cs_dbg(s, 1, "send_event(event %d, pri %d, callback 0x%p)\n",
  266. event, priority, s->callback);
  267. if (!s->callback)
  268. return 0;
  269. if (!try_module_get(s->callback->owner))
  270. return 0;
  271. ret = s->callback->event(s, event, priority);
  272. module_put(s->callback->owner);
  273. return ret;
  274. }
  275. static void socket_remove_drivers(struct pcmcia_socket *skt)
  276. {
  277. cs_dbg(skt, 4, "remove_drivers\n");
  278. send_event(skt, CS_EVENT_CARD_REMOVAL, CS_EVENT_PRI_HIGH);
  279. }
  280. static int socket_reset(struct pcmcia_socket *skt)
  281. {
  282. int status, i;
  283. cs_dbg(skt, 4, "reset\n");
  284. skt->socket.flags |= SS_OUTPUT_ENA | SS_RESET;
  285. skt->ops->set_socket(skt, &skt->socket);
  286. udelay((long)reset_time);
  287. skt->socket.flags &= ~SS_RESET;
  288. skt->ops->set_socket(skt, &skt->socket);
  289. msleep(unreset_delay * 10);
  290. for (i = 0; i < unreset_limit; i++) {
  291. skt->ops->get_status(skt, &status);
  292. if (!(status & SS_DETECT))
  293. return CS_NO_CARD;
  294. if (status & SS_READY)
  295. return CS_SUCCESS;
  296. msleep(unreset_check * 10);
  297. }
  298. cs_err(skt, "time out after reset.\n");
  299. return CS_GENERAL_FAILURE;
  300. }
  301. /**
  302. * socket_setup() and socket_shutdown() are called by the main event handler
  303. * when card insertion and removal events are received.
  304. * socket_setup() turns on socket power and resets the socket, in two stages.
  305. * socket_shutdown() unconfigures a socket and turns off socket power.
  306. */
  307. static void socket_shutdown(struct pcmcia_socket *s)
  308. {
  309. int status;
  310. cs_dbg(s, 4, "shutdown\n");
  311. socket_remove_drivers(s);
  312. s->state &= SOCKET_INUSE | SOCKET_PRESENT;
  313. msleep(shutdown_delay * 10);
  314. s->state &= SOCKET_INUSE;
  315. /* Blank out the socket state */
  316. s->socket = dead_socket;
  317. s->ops->init(s);
  318. s->ops->set_socket(s, &s->socket);
  319. s->irq.AssignedIRQ = s->irq.Config = 0;
  320. s->lock_count = 0;
  321. destroy_cis_cache(s);
  322. #ifdef CONFIG_CARDBUS
  323. cb_free(s);
  324. #endif
  325. s->functions = 0;
  326. s->ops->get_status(s, &status);
  327. if (status & SS_POWERON) {
  328. printk(KERN_ERR "PCMCIA: socket %p: *** DANGER *** unable to remove socket power\n", s);
  329. }
  330. cs_socket_put(s);
  331. }
  332. static int socket_setup(struct pcmcia_socket *skt, int initial_delay)
  333. {
  334. int status, i;
  335. cs_dbg(skt, 4, "setup\n");
  336. skt->ops->get_status(skt, &status);
  337. if (!(status & SS_DETECT))
  338. return CS_NO_CARD;
  339. msleep(initial_delay * 10);
  340. for (i = 0; i < 100; i++) {
  341. skt->ops->get_status(skt, &status);
  342. if (!(status & SS_DETECT))
  343. return CS_NO_CARD;
  344. if (!(status & SS_PENDING))
  345. break;
  346. msleep(100);
  347. }
  348. if (status & SS_PENDING) {
  349. cs_err(skt, "voltage interrogation timed out.\n");
  350. return CS_GENERAL_FAILURE;
  351. }
  352. if (status & SS_CARDBUS) {
  353. if (!(skt->features & SS_CAP_CARDBUS)) {
  354. cs_err(skt, "cardbus cards are not supported.\n");
  355. return CS_BAD_TYPE;
  356. }
  357. skt->state |= SOCKET_CARDBUS;
  358. }
  359. /*
  360. * Decode the card voltage requirements, and apply power to the card.
  361. */
  362. if (status & SS_3VCARD)
  363. skt->socket.Vcc = skt->socket.Vpp = 33;
  364. else if (!(status & SS_XVCARD))
  365. skt->socket.Vcc = skt->socket.Vpp = 50;
  366. else {
  367. cs_err(skt, "unsupported voltage key.\n");
  368. return CS_BAD_TYPE;
  369. }
  370. if (skt->power_hook)
  371. skt->power_hook(skt, HOOK_POWER_PRE);
  372. skt->socket.flags = 0;
  373. skt->ops->set_socket(skt, &skt->socket);
  374. /*
  375. * Wait "vcc_settle" for the supply to stabilise.
  376. */
  377. msleep(vcc_settle * 10);
  378. skt->ops->get_status(skt, &status);
  379. if (!(status & SS_POWERON)) {
  380. cs_err(skt, "unable to apply power.\n");
  381. return CS_BAD_TYPE;
  382. }
  383. status = socket_reset(skt);
  384. if (skt->power_hook)
  385. skt->power_hook(skt, HOOK_POWER_POST);
  386. return status;
  387. }
  388. /*
  389. * Handle card insertion. Setup the socket, reset the card,
  390. * and then tell the rest of PCMCIA that a card is present.
  391. */
  392. static int socket_insert(struct pcmcia_socket *skt)
  393. {
  394. int ret;
  395. cs_dbg(skt, 4, "insert\n");
  396. if (!cs_socket_get(skt))
  397. return CS_NO_CARD;
  398. ret = socket_setup(skt, setup_delay);
  399. if (ret == CS_SUCCESS) {
  400. skt->state |= SOCKET_PRESENT;
  401. printk(KERN_NOTICE "pccard: %s card inserted into slot %d\n",
  402. (skt->state & SOCKET_CARDBUS) ? "CardBus" : "PCMCIA",
  403. skt->sock);
  404. #ifdef CONFIG_CARDBUS
  405. if (skt->state & SOCKET_CARDBUS) {
  406. cb_alloc(skt);
  407. skt->state |= SOCKET_CARDBUS_CONFIG;
  408. }
  409. #endif
  410. cs_dbg(skt, 4, "insert done\n");
  411. send_event(skt, CS_EVENT_CARD_INSERTION, CS_EVENT_PRI_LOW);
  412. } else {
  413. socket_shutdown(skt);
  414. }
  415. return ret;
  416. }
  417. static int socket_suspend(struct pcmcia_socket *skt)
  418. {
  419. if (skt->state & SOCKET_SUSPEND)
  420. return CS_IN_USE;
  421. send_event(skt, CS_EVENT_PM_SUSPEND, CS_EVENT_PRI_LOW);
  422. skt->socket = dead_socket;
  423. skt->ops->set_socket(skt, &skt->socket);
  424. if (skt->ops->suspend)
  425. skt->ops->suspend(skt);
  426. skt->state |= SOCKET_SUSPEND;
  427. return CS_SUCCESS;
  428. }
  429. /*
  430. * Resume a socket. If a card is present, verify its CIS against
  431. * our cached copy. If they are different, the card has been
  432. * replaced, and we need to tell the drivers.
  433. */
  434. static int socket_resume(struct pcmcia_socket *skt)
  435. {
  436. int ret;
  437. if (!(skt->state & SOCKET_SUSPEND))
  438. return CS_IN_USE;
  439. skt->socket = dead_socket;
  440. skt->ops->init(skt);
  441. skt->ops->set_socket(skt, &skt->socket);
  442. if (!(skt->state & SOCKET_PRESENT)) {
  443. skt->state &= ~SOCKET_SUSPEND;
  444. return socket_insert(skt);
  445. }
  446. ret = socket_setup(skt, resume_delay);
  447. if (ret == CS_SUCCESS) {
  448. /*
  449. * FIXME: need a better check here for cardbus cards.
  450. */
  451. if (verify_cis_cache(skt) != 0) {
  452. cs_dbg(skt, 4, "cis mismatch - different card\n");
  453. socket_remove_drivers(skt);
  454. destroy_cis_cache(skt);
  455. /*
  456. * Workaround: give DS time to schedule removal.
  457. * Remove me once the 100ms delay is eliminated
  458. * in ds.c
  459. */
  460. msleep(200);
  461. send_event(skt, CS_EVENT_CARD_INSERTION, CS_EVENT_PRI_LOW);
  462. } else {
  463. cs_dbg(skt, 4, "cis matches cache\n");
  464. send_event(skt, CS_EVENT_PM_RESUME, CS_EVENT_PRI_LOW);
  465. }
  466. } else {
  467. socket_shutdown(skt);
  468. }
  469. skt->state &= ~SOCKET_SUSPEND;
  470. return CS_SUCCESS;
  471. }
  472. static void socket_remove(struct pcmcia_socket *skt)
  473. {
  474. printk(KERN_NOTICE "pccard: card ejected from slot %d\n", skt->sock);
  475. socket_shutdown(skt);
  476. }
  477. /*
  478. * Process a socket card detect status change.
  479. *
  480. * If we don't have a card already present, delay the detect event for
  481. * about 20ms (to be on the safe side) before reading the socket status.
  482. *
  483. * Some i82365-based systems send multiple SS_DETECT events during card
  484. * insertion, and the "card present" status bit seems to bounce. This
  485. * will probably be true with GPIO-based card detection systems after
  486. * the product has aged.
  487. */
  488. static void socket_detect_change(struct pcmcia_socket *skt)
  489. {
  490. if (!(skt->state & SOCKET_SUSPEND)) {
  491. int status;
  492. if (!(skt->state & SOCKET_PRESENT))
  493. msleep(20);
  494. skt->ops->get_status(skt, &status);
  495. if ((skt->state & SOCKET_PRESENT) &&
  496. !(status & SS_DETECT))
  497. socket_remove(skt);
  498. if (!(skt->state & SOCKET_PRESENT) &&
  499. (status & SS_DETECT))
  500. socket_insert(skt);
  501. }
  502. }
  503. static int pccardd(void *__skt)
  504. {
  505. struct pcmcia_socket *skt = __skt;
  506. DECLARE_WAITQUEUE(wait, current);
  507. int ret;
  508. daemonize("pccardd");
  509. skt->thread = current;
  510. skt->socket = dead_socket;
  511. skt->ops->init(skt);
  512. skt->ops->set_socket(skt, &skt->socket);
  513. /* register with the device core */
  514. ret = class_device_register(&skt->dev);
  515. if (ret) {
  516. printk(KERN_WARNING "PCMCIA: unable to register socket 0x%p\n",
  517. skt);
  518. skt->thread = NULL;
  519. complete_and_exit(&skt->thread_done, 0);
  520. }
  521. add_wait_queue(&skt->thread_wait, &wait);
  522. complete(&skt->thread_done);
  523. for (;;) {
  524. unsigned long flags;
  525. unsigned int events;
  526. set_current_state(TASK_INTERRUPTIBLE);
  527. spin_lock_irqsave(&skt->thread_lock, flags);
  528. events = skt->thread_events;
  529. skt->thread_events = 0;
  530. spin_unlock_irqrestore(&skt->thread_lock, flags);
  531. if (events) {
  532. mutex_lock(&skt->skt_mutex);
  533. if (events & SS_DETECT)
  534. socket_detect_change(skt);
  535. if (events & SS_BATDEAD)
  536. send_event(skt, CS_EVENT_BATTERY_DEAD, CS_EVENT_PRI_LOW);
  537. if (events & SS_BATWARN)
  538. send_event(skt, CS_EVENT_BATTERY_LOW, CS_EVENT_PRI_LOW);
  539. if (events & SS_READY)
  540. send_event(skt, CS_EVENT_READY_CHANGE, CS_EVENT_PRI_LOW);
  541. mutex_unlock(&skt->skt_mutex);
  542. continue;
  543. }
  544. if (!skt->thread)
  545. break;
  546. schedule();
  547. try_to_freeze();
  548. }
  549. /* make sure we are running before we exit */
  550. set_current_state(TASK_RUNNING);
  551. remove_wait_queue(&skt->thread_wait, &wait);
  552. /* remove from the device core */
  553. class_device_unregister(&skt->dev);
  554. complete_and_exit(&skt->thread_done, 0);
  555. }
  556. /*
  557. * Yenta (at least) probes interrupts before registering the socket and
  558. * starting the handler thread.
  559. */
  560. void pcmcia_parse_events(struct pcmcia_socket *s, u_int events)
  561. {
  562. cs_dbg(s, 4, "parse_events: events %08x\n", events);
  563. if (s->thread) {
  564. spin_lock(&s->thread_lock);
  565. s->thread_events |= events;
  566. spin_unlock(&s->thread_lock);
  567. wake_up(&s->thread_wait);
  568. }
  569. } /* pcmcia_parse_events */
  570. EXPORT_SYMBOL(pcmcia_parse_events);
  571. /* register pcmcia_callback */
  572. int pccard_register_pcmcia(struct pcmcia_socket *s, struct pcmcia_callback *c)
  573. {
  574. int ret = 0;
  575. /* s->skt_mutex also protects s->callback */
  576. mutex_lock(&s->skt_mutex);
  577. if (c) {
  578. /* registration */
  579. if (s->callback) {
  580. ret = -EBUSY;
  581. goto err;
  582. }
  583. s->callback = c;
  584. if ((s->state & (SOCKET_PRESENT|SOCKET_CARDBUS)) == SOCKET_PRESENT)
  585. send_event(s, CS_EVENT_CARD_INSERTION, CS_EVENT_PRI_LOW);
  586. } else
  587. s->callback = NULL;
  588. err:
  589. mutex_unlock(&s->skt_mutex);
  590. return ret;
  591. }
  592. EXPORT_SYMBOL(pccard_register_pcmcia);
  593. /* I'm not sure which "reset" function this is supposed to use,
  594. * but for now, it uses the low-level interface's reset, not the
  595. * CIS register.
  596. */
  597. int pccard_reset_card(struct pcmcia_socket *skt)
  598. {
  599. int ret;
  600. cs_dbg(skt, 1, "resetting socket\n");
  601. mutex_lock(&skt->skt_mutex);
  602. do {
  603. if (!(skt->state & SOCKET_PRESENT)) {
  604. ret = CS_NO_CARD;
  605. break;
  606. }
  607. if (skt->state & SOCKET_SUSPEND) {
  608. ret = CS_IN_USE;
  609. break;
  610. }
  611. if (skt->state & SOCKET_CARDBUS) {
  612. ret = CS_UNSUPPORTED_FUNCTION;
  613. break;
  614. }
  615. ret = send_event(skt, CS_EVENT_RESET_REQUEST, CS_EVENT_PRI_LOW);
  616. if (ret == 0) {
  617. send_event(skt, CS_EVENT_RESET_PHYSICAL, CS_EVENT_PRI_LOW);
  618. if (skt->callback)
  619. skt->callback->suspend(skt);
  620. if (socket_reset(skt) == CS_SUCCESS) {
  621. send_event(skt, CS_EVENT_CARD_RESET, CS_EVENT_PRI_LOW);
  622. if (skt->callback)
  623. skt->callback->resume(skt);
  624. }
  625. }
  626. ret = CS_SUCCESS;
  627. } while (0);
  628. mutex_unlock(&skt->skt_mutex);
  629. return ret;
  630. } /* reset_card */
  631. EXPORT_SYMBOL(pccard_reset_card);
  632. /* These shut down or wake up a socket. They are sort of user
  633. * initiated versions of the APM suspend and resume actions.
  634. */
  635. int pcmcia_suspend_card(struct pcmcia_socket *skt)
  636. {
  637. int ret;
  638. cs_dbg(skt, 1, "suspending socket\n");
  639. mutex_lock(&skt->skt_mutex);
  640. do {
  641. if (!(skt->state & SOCKET_PRESENT)) {
  642. ret = CS_NO_CARD;
  643. break;
  644. }
  645. if (skt->state & SOCKET_CARDBUS) {
  646. ret = CS_UNSUPPORTED_FUNCTION;
  647. break;
  648. }
  649. if (skt->callback) {
  650. ret = skt->callback->suspend(skt);
  651. if (ret)
  652. break;
  653. }
  654. ret = socket_suspend(skt);
  655. } while (0);
  656. mutex_unlock(&skt->skt_mutex);
  657. return ret;
  658. } /* suspend_card */
  659. EXPORT_SYMBOL(pcmcia_suspend_card);
  660. int pcmcia_resume_card(struct pcmcia_socket *skt)
  661. {
  662. int ret;
  663. cs_dbg(skt, 1, "waking up socket\n");
  664. mutex_lock(&skt->skt_mutex);
  665. do {
  666. if (!(skt->state & SOCKET_PRESENT)) {
  667. ret = CS_NO_CARD;
  668. break;
  669. }
  670. if (skt->state & SOCKET_CARDBUS) {
  671. ret = CS_UNSUPPORTED_FUNCTION;
  672. break;
  673. }
  674. ret = socket_resume(skt);
  675. if (!ret && skt->callback)
  676. skt->callback->resume(skt);
  677. } while (0);
  678. mutex_unlock(&skt->skt_mutex);
  679. return ret;
  680. } /* resume_card */
  681. EXPORT_SYMBOL(pcmcia_resume_card);
  682. /* These handle user requests to eject or insert a card. */
  683. int pcmcia_eject_card(struct pcmcia_socket *skt)
  684. {
  685. int ret;
  686. cs_dbg(skt, 1, "user eject request\n");
  687. mutex_lock(&skt->skt_mutex);
  688. do {
  689. if (!(skt->state & SOCKET_PRESENT)) {
  690. ret = -ENODEV;
  691. break;
  692. }
  693. ret = send_event(skt, CS_EVENT_EJECTION_REQUEST, CS_EVENT_PRI_LOW);
  694. if (ret != 0) {
  695. ret = -EINVAL;
  696. break;
  697. }
  698. socket_remove(skt);
  699. ret = 0;
  700. } while (0);
  701. mutex_unlock(&skt->skt_mutex);
  702. return ret;
  703. } /* eject_card */
  704. EXPORT_SYMBOL(pcmcia_eject_card);
  705. int pcmcia_insert_card(struct pcmcia_socket *skt)
  706. {
  707. int ret;
  708. cs_dbg(skt, 1, "user insert request\n");
  709. mutex_lock(&skt->skt_mutex);
  710. do {
  711. if (skt->state & SOCKET_PRESENT) {
  712. ret = -EBUSY;
  713. break;
  714. }
  715. if (socket_insert(skt) == CS_NO_CARD) {
  716. ret = -ENODEV;
  717. break;
  718. }
  719. ret = 0;
  720. } while (0);
  721. mutex_unlock(&skt->skt_mutex);
  722. return ret;
  723. } /* insert_card */
  724. EXPORT_SYMBOL(pcmcia_insert_card);
  725. static int pcmcia_socket_uevent(struct class_device *dev, char **envp,
  726. int num_envp, char *buffer, int buffer_size)
  727. {
  728. struct pcmcia_socket *s = container_of(dev, struct pcmcia_socket, dev);
  729. int i = 0, length = 0;
  730. if (add_uevent_var(envp, num_envp, &i, buffer, buffer_size,
  731. &length, "SOCKET_NO=%u", s->sock))
  732. return -ENOMEM;
  733. envp[i] = NULL;
  734. return 0;
  735. }
  736. static struct completion pcmcia_unload;
  737. static void pcmcia_release_socket_class(struct class *data)
  738. {
  739. complete(&pcmcia_unload);
  740. }
  741. struct class pcmcia_socket_class = {
  742. .name = "pcmcia_socket",
  743. .uevent = pcmcia_socket_uevent,
  744. .release = pcmcia_release_socket,
  745. .class_release = pcmcia_release_socket_class,
  746. };
  747. EXPORT_SYMBOL(pcmcia_socket_class);
  748. static int __init init_pcmcia_cs(void)
  749. {
  750. int ret;
  751. init_completion(&pcmcia_unload);
  752. ret = class_register(&pcmcia_socket_class);
  753. if (ret)
  754. return (ret);
  755. return class_interface_register(&pccard_sysfs_interface);
  756. }
  757. static void __exit exit_pcmcia_cs(void)
  758. {
  759. class_interface_unregister(&pccard_sysfs_interface);
  760. class_unregister(&pcmcia_socket_class);
  761. wait_for_completion(&pcmcia_unload);
  762. }
  763. subsys_initcall(init_pcmcia_cs);
  764. module_exit(exit_pcmcia_cs);