kcapi.c 29 KB

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  1. /* $Id: kcapi.c,v 1.1.2.8 2004/03/26 19:57:20 armin Exp $
  2. *
  3. * Kernel CAPI 2.0 Module
  4. *
  5. * Copyright 1999 by Carsten Paeth <calle@calle.de>
  6. * Copyright 2002 by Kai Germaschewski <kai@germaschewski.name>
  7. *
  8. * This software may be used and distributed according to the terms
  9. * of the GNU General Public License, incorporated herein by reference.
  10. *
  11. */
  12. #define AVMB1_COMPAT
  13. #include "kcapi.h"
  14. #include <linux/module.h>
  15. #include <linux/mm.h>
  16. #include <linux/interrupt.h>
  17. #include <linux/ioport.h>
  18. #include <linux/proc_fs.h>
  19. #include <linux/sched.h>
  20. #include <linux/seq_file.h>
  21. #include <linux/skbuff.h>
  22. #include <linux/workqueue.h>
  23. #include <linux/capi.h>
  24. #include <linux/kernelcapi.h>
  25. #include <linux/init.h>
  26. #include <linux/moduleparam.h>
  27. #include <linux/delay.h>
  28. #include <linux/slab.h>
  29. #include <asm/uaccess.h>
  30. #include <linux/isdn/capicmd.h>
  31. #include <linux/isdn/capiutil.h>
  32. #ifdef AVMB1_COMPAT
  33. #include <linux/b1lli.h>
  34. #endif
  35. #include <linux/mutex.h>
  36. #include <linux/rcupdate.h>
  37. static int showcapimsgs = 0;
  38. MODULE_DESCRIPTION("CAPI4Linux: kernel CAPI layer");
  39. MODULE_AUTHOR("Carsten Paeth");
  40. MODULE_LICENSE("GPL");
  41. module_param(showcapimsgs, uint, 0);
  42. /* ------------------------------------------------------------- */
  43. struct capictr_event {
  44. struct work_struct work;
  45. unsigned int type;
  46. u32 controller;
  47. };
  48. /* ------------------------------------------------------------- */
  49. static struct capi_version driver_version = {2, 0, 1, 1<<4};
  50. static char driver_serial[CAPI_SERIAL_LEN] = "0004711";
  51. static char capi_manufakturer[64] = "AVM Berlin";
  52. #define NCCI2CTRL(ncci) (((ncci) >> 24) & 0x7f)
  53. LIST_HEAD(capi_drivers);
  54. DEFINE_MUTEX(capi_drivers_lock);
  55. struct capi_ctr *capi_controller[CAPI_MAXCONTR];
  56. DEFINE_MUTEX(capi_controller_lock);
  57. struct capi20_appl *capi_applications[CAPI_MAXAPPL];
  58. static int ncontrollers;
  59. static BLOCKING_NOTIFIER_HEAD(ctr_notifier_list);
  60. /* -------- controller ref counting -------------------------------------- */
  61. static inline struct capi_ctr *
  62. capi_ctr_get(struct capi_ctr *ctr)
  63. {
  64. if (!try_module_get(ctr->owner))
  65. return NULL;
  66. return ctr;
  67. }
  68. static inline void
  69. capi_ctr_put(struct capi_ctr *ctr)
  70. {
  71. module_put(ctr->owner);
  72. }
  73. /* ------------------------------------------------------------- */
  74. static inline struct capi_ctr *get_capi_ctr_by_nr(u16 contr)
  75. {
  76. if (contr - 1 >= CAPI_MAXCONTR)
  77. return NULL;
  78. return capi_controller[contr - 1];
  79. }
  80. static inline struct capi20_appl *__get_capi_appl_by_nr(u16 applid)
  81. {
  82. lockdep_assert_held(&capi_controller_lock);
  83. if (applid - 1 >= CAPI_MAXAPPL)
  84. return NULL;
  85. return capi_applications[applid - 1];
  86. }
  87. static inline struct capi20_appl *get_capi_appl_by_nr(u16 applid)
  88. {
  89. if (applid - 1 >= CAPI_MAXAPPL)
  90. return NULL;
  91. return rcu_dereference(capi_applications[applid - 1]);
  92. }
  93. /* -------- util functions ------------------------------------ */
  94. static inline int capi_cmd_valid(u8 cmd)
  95. {
  96. switch (cmd) {
  97. case CAPI_ALERT:
  98. case CAPI_CONNECT:
  99. case CAPI_CONNECT_ACTIVE:
  100. case CAPI_CONNECT_B3_ACTIVE:
  101. case CAPI_CONNECT_B3:
  102. case CAPI_CONNECT_B3_T90_ACTIVE:
  103. case CAPI_DATA_B3:
  104. case CAPI_DISCONNECT_B3:
  105. case CAPI_DISCONNECT:
  106. case CAPI_FACILITY:
  107. case CAPI_INFO:
  108. case CAPI_LISTEN:
  109. case CAPI_MANUFACTURER:
  110. case CAPI_RESET_B3:
  111. case CAPI_SELECT_B_PROTOCOL:
  112. return 1;
  113. }
  114. return 0;
  115. }
  116. static inline int capi_subcmd_valid(u8 subcmd)
  117. {
  118. switch (subcmd) {
  119. case CAPI_REQ:
  120. case CAPI_CONF:
  121. case CAPI_IND:
  122. case CAPI_RESP:
  123. return 1;
  124. }
  125. return 0;
  126. }
  127. /* ------------------------------------------------------------ */
  128. static void
  129. register_appl(struct capi_ctr *ctr, u16 applid, capi_register_params *rparam)
  130. {
  131. ctr = capi_ctr_get(ctr);
  132. if (ctr)
  133. ctr->register_appl(ctr, applid, rparam);
  134. else
  135. printk(KERN_WARNING "%s: cannot get controller resources\n",
  136. __func__);
  137. }
  138. static void release_appl(struct capi_ctr *ctr, u16 applid)
  139. {
  140. DBG("applid %#x", applid);
  141. ctr->release_appl(ctr, applid);
  142. capi_ctr_put(ctr);
  143. }
  144. static void notify_up(u32 contr)
  145. {
  146. struct capi20_appl *ap;
  147. struct capi_ctr *ctr;
  148. u16 applid;
  149. mutex_lock(&capi_controller_lock);
  150. if (showcapimsgs & 1)
  151. printk(KERN_DEBUG "kcapi: notify up contr %d\n", contr);
  152. ctr = get_capi_ctr_by_nr(contr);
  153. if (ctr) {
  154. if (ctr->state == CAPI_CTR_RUNNING)
  155. goto unlock_out;
  156. ctr->state = CAPI_CTR_RUNNING;
  157. for (applid = 1; applid <= CAPI_MAXAPPL; applid++) {
  158. ap = __get_capi_appl_by_nr(applid);
  159. if (ap)
  160. register_appl(ctr, applid, &ap->rparam);
  161. }
  162. wake_up_interruptible_all(&ctr->state_wait_queue);
  163. } else
  164. printk(KERN_WARNING "%s: invalid contr %d\n", __func__, contr);
  165. unlock_out:
  166. mutex_unlock(&capi_controller_lock);
  167. }
  168. static void ctr_down(struct capi_ctr *ctr, int new_state)
  169. {
  170. struct capi20_appl *ap;
  171. u16 applid;
  172. if (ctr->state == CAPI_CTR_DETECTED || ctr->state == CAPI_CTR_DETACHED)
  173. return;
  174. ctr->state = new_state;
  175. memset(ctr->manu, 0, sizeof(ctr->manu));
  176. memset(&ctr->version, 0, sizeof(ctr->version));
  177. memset(&ctr->profile, 0, sizeof(ctr->profile));
  178. memset(ctr->serial, 0, sizeof(ctr->serial));
  179. for (applid = 1; applid <= CAPI_MAXAPPL; applid++) {
  180. ap = __get_capi_appl_by_nr(applid);
  181. if (ap)
  182. capi_ctr_put(ctr);
  183. }
  184. wake_up_interruptible_all(&ctr->state_wait_queue);
  185. }
  186. static void notify_down(u32 contr)
  187. {
  188. struct capi_ctr *ctr;
  189. mutex_lock(&capi_controller_lock);
  190. if (showcapimsgs & 1)
  191. printk(KERN_DEBUG "kcapi: notify down contr %d\n", contr);
  192. ctr = get_capi_ctr_by_nr(contr);
  193. if (ctr)
  194. ctr_down(ctr, CAPI_CTR_DETECTED);
  195. else
  196. printk(KERN_WARNING "%s: invalid contr %d\n", __func__, contr);
  197. mutex_unlock(&capi_controller_lock);
  198. }
  199. static int
  200. notify_handler(struct notifier_block *nb, unsigned long val, void *v)
  201. {
  202. u32 contr = (long)v;
  203. switch (val) {
  204. case CAPICTR_UP:
  205. notify_up(contr);
  206. break;
  207. case CAPICTR_DOWN:
  208. notify_down(contr);
  209. break;
  210. }
  211. return NOTIFY_OK;
  212. }
  213. static void do_notify_work(struct work_struct *work)
  214. {
  215. struct capictr_event *event =
  216. container_of(work, struct capictr_event, work);
  217. blocking_notifier_call_chain(&ctr_notifier_list, event->type,
  218. (void *)(long)event->controller);
  219. kfree(event);
  220. }
  221. /*
  222. * The notifier will result in adding/deleteing of devices. Devices can
  223. * only removed in user process, not in bh.
  224. */
  225. static int notify_push(unsigned int event_type, u32 controller)
  226. {
  227. struct capictr_event *event = kmalloc(sizeof(*event), GFP_ATOMIC);
  228. if (!event)
  229. return -ENOMEM;
  230. INIT_WORK(&event->work, do_notify_work);
  231. event->type = event_type;
  232. event->controller = controller;
  233. schedule_work(&event->work);
  234. return 0;
  235. }
  236. int register_capictr_notifier(struct notifier_block *nb)
  237. {
  238. return blocking_notifier_chain_register(&ctr_notifier_list, nb);
  239. }
  240. EXPORT_SYMBOL_GPL(register_capictr_notifier);
  241. int unregister_capictr_notifier(struct notifier_block *nb)
  242. {
  243. return blocking_notifier_chain_unregister(&ctr_notifier_list, nb);
  244. }
  245. EXPORT_SYMBOL_GPL(unregister_capictr_notifier);
  246. /* -------- Receiver ------------------------------------------ */
  247. static void recv_handler(struct work_struct *work)
  248. {
  249. struct sk_buff *skb;
  250. struct capi20_appl *ap =
  251. container_of(work, struct capi20_appl, recv_work);
  252. if ((!ap) || (ap->release_in_progress))
  253. return;
  254. mutex_lock(&ap->recv_mtx);
  255. while ((skb = skb_dequeue(&ap->recv_queue))) {
  256. if (CAPIMSG_CMD(skb->data) == CAPI_DATA_B3_IND)
  257. ap->nrecvdatapkt++;
  258. else
  259. ap->nrecvctlpkt++;
  260. ap->recv_message(ap, skb);
  261. }
  262. mutex_unlock(&ap->recv_mtx);
  263. }
  264. /**
  265. * capi_ctr_handle_message() - handle incoming CAPI message
  266. * @ctr: controller descriptor structure.
  267. * @appl: application ID.
  268. * @skb: message.
  269. *
  270. * Called by hardware driver to pass a CAPI message to the application.
  271. */
  272. void capi_ctr_handle_message(struct capi_ctr *ctr, u16 appl,
  273. struct sk_buff *skb)
  274. {
  275. struct capi20_appl *ap;
  276. int showctl = 0;
  277. u8 cmd, subcmd;
  278. _cdebbuf *cdb;
  279. if (ctr->state != CAPI_CTR_RUNNING) {
  280. cdb = capi_message2str(skb->data);
  281. if (cdb) {
  282. printk(KERN_INFO "kcapi: controller [%03d] not active, got: %s",
  283. ctr->cnr, cdb->buf);
  284. cdebbuf_free(cdb);
  285. } else
  286. printk(KERN_INFO "kcapi: controller [%03d] not active, cannot trace\n",
  287. ctr->cnr);
  288. goto error;
  289. }
  290. cmd = CAPIMSG_COMMAND(skb->data);
  291. subcmd = CAPIMSG_SUBCOMMAND(skb->data);
  292. if (cmd == CAPI_DATA_B3 && subcmd == CAPI_IND) {
  293. ctr->nrecvdatapkt++;
  294. if (ctr->traceflag > 2)
  295. showctl |= 2;
  296. } else {
  297. ctr->nrecvctlpkt++;
  298. if (ctr->traceflag)
  299. showctl |= 2;
  300. }
  301. showctl |= (ctr->traceflag & 1);
  302. if (showctl & 2) {
  303. if (showctl & 1) {
  304. printk(KERN_DEBUG "kcapi: got [%03d] id#%d %s len=%u\n",
  305. ctr->cnr, CAPIMSG_APPID(skb->data),
  306. capi_cmd2str(cmd, subcmd),
  307. CAPIMSG_LEN(skb->data));
  308. } else {
  309. cdb = capi_message2str(skb->data);
  310. if (cdb) {
  311. printk(KERN_DEBUG "kcapi: got [%03d] %s\n",
  312. ctr->cnr, cdb->buf);
  313. cdebbuf_free(cdb);
  314. } else
  315. printk(KERN_DEBUG "kcapi: got [%03d] id#%d %s len=%u, cannot trace\n",
  316. ctr->cnr, CAPIMSG_APPID(skb->data),
  317. capi_cmd2str(cmd, subcmd),
  318. CAPIMSG_LEN(skb->data));
  319. }
  320. }
  321. rcu_read_lock();
  322. ap = get_capi_appl_by_nr(CAPIMSG_APPID(skb->data));
  323. if (!ap) {
  324. rcu_read_unlock();
  325. cdb = capi_message2str(skb->data);
  326. if (cdb) {
  327. printk(KERN_ERR "kcapi: handle_message: applid %d state released (%s)\n",
  328. CAPIMSG_APPID(skb->data), cdb->buf);
  329. cdebbuf_free(cdb);
  330. } else
  331. printk(KERN_ERR "kcapi: handle_message: applid %d state released (%s) cannot trace\n",
  332. CAPIMSG_APPID(skb->data),
  333. capi_cmd2str(cmd, subcmd));
  334. goto error;
  335. }
  336. skb_queue_tail(&ap->recv_queue, skb);
  337. schedule_work(&ap->recv_work);
  338. rcu_read_unlock();
  339. return;
  340. error:
  341. kfree_skb(skb);
  342. }
  343. EXPORT_SYMBOL(capi_ctr_handle_message);
  344. /**
  345. * capi_ctr_ready() - signal CAPI controller ready
  346. * @ctr: controller descriptor structure.
  347. *
  348. * Called by hardware driver to signal that the controller is up and running.
  349. */
  350. void capi_ctr_ready(struct capi_ctr *ctr)
  351. {
  352. printk(KERN_NOTICE "kcapi: controller [%03d] \"%s\" ready.\n",
  353. ctr->cnr, ctr->name);
  354. notify_push(CAPICTR_UP, ctr->cnr);
  355. }
  356. EXPORT_SYMBOL(capi_ctr_ready);
  357. /**
  358. * capi_ctr_down() - signal CAPI controller not ready
  359. * @ctr: controller descriptor structure.
  360. *
  361. * Called by hardware driver to signal that the controller is down and
  362. * unavailable for use.
  363. */
  364. void capi_ctr_down(struct capi_ctr *ctr)
  365. {
  366. printk(KERN_NOTICE "kcapi: controller [%03d] down.\n", ctr->cnr);
  367. notify_push(CAPICTR_DOWN, ctr->cnr);
  368. }
  369. EXPORT_SYMBOL(capi_ctr_down);
  370. /**
  371. * capi_ctr_suspend_output() - suspend controller
  372. * @ctr: controller descriptor structure.
  373. *
  374. * Called by hardware driver to stop data flow.
  375. *
  376. * Note: The caller is responsible for synchronizing concurrent state changes
  377. * as well as invocations of capi_ctr_handle_message.
  378. */
  379. void capi_ctr_suspend_output(struct capi_ctr *ctr)
  380. {
  381. if (!ctr->blocked) {
  382. printk(KERN_DEBUG "kcapi: controller [%03d] suspend\n",
  383. ctr->cnr);
  384. ctr->blocked = 1;
  385. }
  386. }
  387. EXPORT_SYMBOL(capi_ctr_suspend_output);
  388. /**
  389. * capi_ctr_resume_output() - resume controller
  390. * @ctr: controller descriptor structure.
  391. *
  392. * Called by hardware driver to resume data flow.
  393. *
  394. * Note: The caller is responsible for synchronizing concurrent state changes
  395. * as well as invocations of capi_ctr_handle_message.
  396. */
  397. void capi_ctr_resume_output(struct capi_ctr *ctr)
  398. {
  399. if (ctr->blocked) {
  400. printk(KERN_DEBUG "kcapi: controller [%03d] resumed\n",
  401. ctr->cnr);
  402. ctr->blocked = 0;
  403. }
  404. }
  405. EXPORT_SYMBOL(capi_ctr_resume_output);
  406. /* ------------------------------------------------------------- */
  407. /**
  408. * attach_capi_ctr() - register CAPI controller
  409. * @ctr: controller descriptor structure.
  410. *
  411. * Called by hardware driver to register a controller with the CAPI subsystem.
  412. * Return value: 0 on success, error code < 0 on error
  413. */
  414. int attach_capi_ctr(struct capi_ctr *ctr)
  415. {
  416. int i;
  417. mutex_lock(&capi_controller_lock);
  418. for (i = 0; i < CAPI_MAXCONTR; i++) {
  419. if (!capi_controller[i])
  420. break;
  421. }
  422. if (i == CAPI_MAXCONTR) {
  423. mutex_unlock(&capi_controller_lock);
  424. printk(KERN_ERR "kcapi: out of controller slots\n");
  425. return -EBUSY;
  426. }
  427. capi_controller[i] = ctr;
  428. ctr->nrecvctlpkt = 0;
  429. ctr->nrecvdatapkt = 0;
  430. ctr->nsentctlpkt = 0;
  431. ctr->nsentdatapkt = 0;
  432. ctr->cnr = i + 1;
  433. ctr->state = CAPI_CTR_DETECTED;
  434. ctr->blocked = 0;
  435. ctr->traceflag = showcapimsgs;
  436. init_waitqueue_head(&ctr->state_wait_queue);
  437. sprintf(ctr->procfn, "capi/controllers/%d", ctr->cnr);
  438. ctr->procent = proc_create_data(ctr->procfn, 0, NULL, ctr->proc_fops, ctr);
  439. ncontrollers++;
  440. mutex_unlock(&capi_controller_lock);
  441. printk(KERN_NOTICE "kcapi: controller [%03d]: %s attached\n",
  442. ctr->cnr, ctr->name);
  443. return 0;
  444. }
  445. EXPORT_SYMBOL(attach_capi_ctr);
  446. /**
  447. * detach_capi_ctr() - unregister CAPI controller
  448. * @ctr: controller descriptor structure.
  449. *
  450. * Called by hardware driver to remove the registration of a controller
  451. * with the CAPI subsystem.
  452. * Return value: 0 on success, error code < 0 on error
  453. */
  454. int detach_capi_ctr(struct capi_ctr *ctr)
  455. {
  456. int err = 0;
  457. mutex_lock(&capi_controller_lock);
  458. ctr_down(ctr, CAPI_CTR_DETACHED);
  459. if (capi_controller[ctr->cnr - 1] != ctr) {
  460. err = -EINVAL;
  461. goto unlock_out;
  462. }
  463. capi_controller[ctr->cnr - 1] = NULL;
  464. ncontrollers--;
  465. if (ctr->procent)
  466. remove_proc_entry(ctr->procfn, NULL);
  467. printk(KERN_NOTICE "kcapi: controller [%03d]: %s unregistered\n",
  468. ctr->cnr, ctr->name);
  469. unlock_out:
  470. mutex_unlock(&capi_controller_lock);
  471. return err;
  472. }
  473. EXPORT_SYMBOL(detach_capi_ctr);
  474. /**
  475. * register_capi_driver() - register CAPI driver
  476. * @driver: driver descriptor structure.
  477. *
  478. * Called by hardware driver to register itself with the CAPI subsystem.
  479. */
  480. void register_capi_driver(struct capi_driver *driver)
  481. {
  482. mutex_lock(&capi_drivers_lock);
  483. list_add_tail(&driver->list, &capi_drivers);
  484. mutex_unlock(&capi_drivers_lock);
  485. }
  486. EXPORT_SYMBOL(register_capi_driver);
  487. /**
  488. * unregister_capi_driver() - unregister CAPI driver
  489. * @driver: driver descriptor structure.
  490. *
  491. * Called by hardware driver to unregister itself from the CAPI subsystem.
  492. */
  493. void unregister_capi_driver(struct capi_driver *driver)
  494. {
  495. mutex_lock(&capi_drivers_lock);
  496. list_del(&driver->list);
  497. mutex_unlock(&capi_drivers_lock);
  498. }
  499. EXPORT_SYMBOL(unregister_capi_driver);
  500. /* ------------------------------------------------------------- */
  501. /* -------- CAPI2.0 Interface ---------------------------------- */
  502. /* ------------------------------------------------------------- */
  503. /**
  504. * capi20_isinstalled() - CAPI 2.0 operation CAPI_INSTALLED
  505. *
  506. * Return value: CAPI result code (CAPI_NOERROR if at least one ISDN controller
  507. * is ready for use, CAPI_REGNOTINSTALLED otherwise)
  508. */
  509. u16 capi20_isinstalled(void)
  510. {
  511. u16 ret = CAPI_REGNOTINSTALLED;
  512. int i;
  513. mutex_lock(&capi_controller_lock);
  514. for (i = 0; i < CAPI_MAXCONTR; i++)
  515. if (capi_controller[i] &&
  516. capi_controller[i]->state == CAPI_CTR_RUNNING) {
  517. ret = CAPI_NOERROR;
  518. break;
  519. }
  520. mutex_unlock(&capi_controller_lock);
  521. return ret;
  522. }
  523. EXPORT_SYMBOL(capi20_isinstalled);
  524. /**
  525. * capi20_register() - CAPI 2.0 operation CAPI_REGISTER
  526. * @ap: CAPI application descriptor structure.
  527. *
  528. * Register an application's presence with CAPI.
  529. * A unique application ID is assigned and stored in @ap->applid.
  530. * After this function returns successfully, the message receive
  531. * callback function @ap->recv_message() may be called at any time
  532. * until capi20_release() has been called for the same @ap.
  533. * Return value: CAPI result code
  534. */
  535. u16 capi20_register(struct capi20_appl *ap)
  536. {
  537. int i;
  538. u16 applid;
  539. DBG("");
  540. if (ap->rparam.datablklen < 128)
  541. return CAPI_LOGBLKSIZETOSMALL;
  542. ap->nrecvctlpkt = 0;
  543. ap->nrecvdatapkt = 0;
  544. ap->nsentctlpkt = 0;
  545. ap->nsentdatapkt = 0;
  546. mutex_init(&ap->recv_mtx);
  547. skb_queue_head_init(&ap->recv_queue);
  548. INIT_WORK(&ap->recv_work, recv_handler);
  549. ap->release_in_progress = 0;
  550. mutex_lock(&capi_controller_lock);
  551. for (applid = 1; applid <= CAPI_MAXAPPL; applid++) {
  552. if (capi_applications[applid - 1] == NULL)
  553. break;
  554. }
  555. if (applid > CAPI_MAXAPPL) {
  556. mutex_unlock(&capi_controller_lock);
  557. return CAPI_TOOMANYAPPLS;
  558. }
  559. ap->applid = applid;
  560. capi_applications[applid - 1] = ap;
  561. for (i = 0; i < CAPI_MAXCONTR; i++) {
  562. if (!capi_controller[i] ||
  563. capi_controller[i]->state != CAPI_CTR_RUNNING)
  564. continue;
  565. register_appl(capi_controller[i], applid, &ap->rparam);
  566. }
  567. mutex_unlock(&capi_controller_lock);
  568. if (showcapimsgs & 1) {
  569. printk(KERN_DEBUG "kcapi: appl %d up\n", applid);
  570. }
  571. return CAPI_NOERROR;
  572. }
  573. EXPORT_SYMBOL(capi20_register);
  574. /**
  575. * capi20_release() - CAPI 2.0 operation CAPI_RELEASE
  576. * @ap: CAPI application descriptor structure.
  577. *
  578. * Terminate an application's registration with CAPI.
  579. * After this function returns successfully, the message receive
  580. * callback function @ap->recv_message() will no longer be called.
  581. * Return value: CAPI result code
  582. */
  583. u16 capi20_release(struct capi20_appl *ap)
  584. {
  585. int i;
  586. DBG("applid %#x", ap->applid);
  587. mutex_lock(&capi_controller_lock);
  588. ap->release_in_progress = 1;
  589. capi_applications[ap->applid - 1] = NULL;
  590. synchronize_rcu();
  591. for (i = 0; i < CAPI_MAXCONTR; i++) {
  592. if (!capi_controller[i] ||
  593. capi_controller[i]->state != CAPI_CTR_RUNNING)
  594. continue;
  595. release_appl(capi_controller[i], ap->applid);
  596. }
  597. mutex_unlock(&capi_controller_lock);
  598. flush_scheduled_work();
  599. skb_queue_purge(&ap->recv_queue);
  600. if (showcapimsgs & 1) {
  601. printk(KERN_DEBUG "kcapi: appl %d down\n", ap->applid);
  602. }
  603. return CAPI_NOERROR;
  604. }
  605. EXPORT_SYMBOL(capi20_release);
  606. /**
  607. * capi20_put_message() - CAPI 2.0 operation CAPI_PUT_MESSAGE
  608. * @ap: CAPI application descriptor structure.
  609. * @skb: CAPI message.
  610. *
  611. * Transfer a single message to CAPI.
  612. * Return value: CAPI result code
  613. */
  614. u16 capi20_put_message(struct capi20_appl *ap, struct sk_buff *skb)
  615. {
  616. struct capi_ctr *ctr;
  617. int showctl = 0;
  618. u8 cmd, subcmd;
  619. DBG("applid %#x", ap->applid);
  620. if (ncontrollers == 0)
  621. return CAPI_REGNOTINSTALLED;
  622. if ((ap->applid == 0) || ap->release_in_progress)
  623. return CAPI_ILLAPPNR;
  624. if (skb->len < 12
  625. || !capi_cmd_valid(CAPIMSG_COMMAND(skb->data))
  626. || !capi_subcmd_valid(CAPIMSG_SUBCOMMAND(skb->data)))
  627. return CAPI_ILLCMDORSUBCMDORMSGTOSMALL;
  628. /*
  629. * The controller reference is protected by the existence of the
  630. * application passed to us. We assume that the caller properly
  631. * synchronizes this service with capi20_release.
  632. */
  633. ctr = get_capi_ctr_by_nr(CAPIMSG_CONTROLLER(skb->data));
  634. if (!ctr || ctr->state != CAPI_CTR_RUNNING)
  635. return CAPI_REGNOTINSTALLED;
  636. if (ctr->blocked)
  637. return CAPI_SENDQUEUEFULL;
  638. cmd = CAPIMSG_COMMAND(skb->data);
  639. subcmd = CAPIMSG_SUBCOMMAND(skb->data);
  640. if (cmd == CAPI_DATA_B3 && subcmd== CAPI_REQ) {
  641. ctr->nsentdatapkt++;
  642. ap->nsentdatapkt++;
  643. if (ctr->traceflag > 2)
  644. showctl |= 2;
  645. } else {
  646. ctr->nsentctlpkt++;
  647. ap->nsentctlpkt++;
  648. if (ctr->traceflag)
  649. showctl |= 2;
  650. }
  651. showctl |= (ctr->traceflag & 1);
  652. if (showctl & 2) {
  653. if (showctl & 1) {
  654. printk(KERN_DEBUG "kcapi: put [%03d] id#%d %s len=%u\n",
  655. CAPIMSG_CONTROLLER(skb->data),
  656. CAPIMSG_APPID(skb->data),
  657. capi_cmd2str(cmd, subcmd),
  658. CAPIMSG_LEN(skb->data));
  659. } else {
  660. _cdebbuf *cdb = capi_message2str(skb->data);
  661. if (cdb) {
  662. printk(KERN_DEBUG "kcapi: put [%03d] %s\n",
  663. CAPIMSG_CONTROLLER(skb->data),
  664. cdb->buf);
  665. cdebbuf_free(cdb);
  666. } else
  667. printk(KERN_DEBUG "kcapi: put [%03d] id#%d %s len=%u cannot trace\n",
  668. CAPIMSG_CONTROLLER(skb->data),
  669. CAPIMSG_APPID(skb->data),
  670. capi_cmd2str(cmd, subcmd),
  671. CAPIMSG_LEN(skb->data));
  672. }
  673. }
  674. return ctr->send_message(ctr, skb);
  675. }
  676. EXPORT_SYMBOL(capi20_put_message);
  677. /**
  678. * capi20_get_manufacturer() - CAPI 2.0 operation CAPI_GET_MANUFACTURER
  679. * @contr: controller number.
  680. * @buf: result buffer (64 bytes).
  681. *
  682. * Retrieve information about the manufacturer of the specified ISDN controller
  683. * or (for @contr == 0) the driver itself.
  684. * Return value: CAPI result code
  685. */
  686. u16 capi20_get_manufacturer(u32 contr, u8 *buf)
  687. {
  688. struct capi_ctr *ctr;
  689. u16 ret;
  690. if (contr == 0) {
  691. strlcpy(buf, capi_manufakturer, CAPI_MANUFACTURER_LEN);
  692. return CAPI_NOERROR;
  693. }
  694. mutex_lock(&capi_controller_lock);
  695. ctr = get_capi_ctr_by_nr(contr);
  696. if (ctr && ctr->state == CAPI_CTR_RUNNING) {
  697. strlcpy(buf, ctr->manu, CAPI_MANUFACTURER_LEN);
  698. ret = CAPI_NOERROR;
  699. } else
  700. ret = CAPI_REGNOTINSTALLED;
  701. mutex_unlock(&capi_controller_lock);
  702. return ret;
  703. }
  704. EXPORT_SYMBOL(capi20_get_manufacturer);
  705. /**
  706. * capi20_get_version() - CAPI 2.0 operation CAPI_GET_VERSION
  707. * @contr: controller number.
  708. * @verp: result structure.
  709. *
  710. * Retrieve version information for the specified ISDN controller
  711. * or (for @contr == 0) the driver itself.
  712. * Return value: CAPI result code
  713. */
  714. u16 capi20_get_version(u32 contr, struct capi_version *verp)
  715. {
  716. struct capi_ctr *ctr;
  717. u16 ret;
  718. if (contr == 0) {
  719. *verp = driver_version;
  720. return CAPI_NOERROR;
  721. }
  722. mutex_lock(&capi_controller_lock);
  723. ctr = get_capi_ctr_by_nr(contr);
  724. if (ctr && ctr->state == CAPI_CTR_RUNNING) {
  725. memcpy(verp, &ctr->version, sizeof(capi_version));
  726. ret = CAPI_NOERROR;
  727. } else
  728. ret = CAPI_REGNOTINSTALLED;
  729. mutex_unlock(&capi_controller_lock);
  730. return ret;
  731. }
  732. EXPORT_SYMBOL(capi20_get_version);
  733. /**
  734. * capi20_get_serial() - CAPI 2.0 operation CAPI_GET_SERIAL_NUMBER
  735. * @contr: controller number.
  736. * @serial: result buffer (8 bytes).
  737. *
  738. * Retrieve the serial number of the specified ISDN controller
  739. * or (for @contr == 0) the driver itself.
  740. * Return value: CAPI result code
  741. */
  742. u16 capi20_get_serial(u32 contr, u8 *serial)
  743. {
  744. struct capi_ctr *ctr;
  745. u16 ret;
  746. if (contr == 0) {
  747. strlcpy(serial, driver_serial, CAPI_SERIAL_LEN);
  748. return CAPI_NOERROR;
  749. }
  750. mutex_lock(&capi_controller_lock);
  751. ctr = get_capi_ctr_by_nr(contr);
  752. if (ctr && ctr->state == CAPI_CTR_RUNNING) {
  753. strlcpy(serial, ctr->serial, CAPI_SERIAL_LEN);
  754. ret = CAPI_NOERROR;
  755. } else
  756. ret = CAPI_REGNOTINSTALLED;
  757. mutex_unlock(&capi_controller_lock);
  758. return ret;
  759. }
  760. EXPORT_SYMBOL(capi20_get_serial);
  761. /**
  762. * capi20_get_profile() - CAPI 2.0 operation CAPI_GET_PROFILE
  763. * @contr: controller number.
  764. * @profp: result structure.
  765. *
  766. * Retrieve capability information for the specified ISDN controller
  767. * or (for @contr == 0) the number of installed controllers.
  768. * Return value: CAPI result code
  769. */
  770. u16 capi20_get_profile(u32 contr, struct capi_profile *profp)
  771. {
  772. struct capi_ctr *ctr;
  773. u16 ret;
  774. if (contr == 0) {
  775. profp->ncontroller = ncontrollers;
  776. return CAPI_NOERROR;
  777. }
  778. mutex_lock(&capi_controller_lock);
  779. ctr = get_capi_ctr_by_nr(contr);
  780. if (ctr && ctr->state == CAPI_CTR_RUNNING) {
  781. memcpy(profp, &ctr->profile, sizeof(struct capi_profile));
  782. ret = CAPI_NOERROR;
  783. } else
  784. ret = CAPI_REGNOTINSTALLED;
  785. mutex_unlock(&capi_controller_lock);
  786. return ret;
  787. }
  788. EXPORT_SYMBOL(capi20_get_profile);
  789. /* Must be called with capi_controller_lock held. */
  790. static int wait_on_ctr_state(struct capi_ctr *ctr, unsigned int state)
  791. {
  792. DEFINE_WAIT(wait);
  793. int retval = 0;
  794. ctr = capi_ctr_get(ctr);
  795. if (!ctr)
  796. return -ESRCH;
  797. for (;;) {
  798. prepare_to_wait(&ctr->state_wait_queue, &wait,
  799. TASK_INTERRUPTIBLE);
  800. if (ctr->state == state)
  801. break;
  802. if (ctr->state == CAPI_CTR_DETACHED) {
  803. retval = -ESRCH;
  804. break;
  805. }
  806. if (signal_pending(current)) {
  807. retval = -EINTR;
  808. break;
  809. }
  810. mutex_unlock(&capi_controller_lock);
  811. schedule();
  812. mutex_lock(&capi_controller_lock);
  813. }
  814. finish_wait(&ctr->state_wait_queue, &wait);
  815. capi_ctr_put(ctr);
  816. return retval;
  817. }
  818. #ifdef AVMB1_COMPAT
  819. static int old_capi_manufacturer(unsigned int cmd, void __user *data)
  820. {
  821. avmb1_loadandconfigdef ldef;
  822. avmb1_extcarddef cdef;
  823. avmb1_resetdef rdef;
  824. capicardparams cparams;
  825. struct capi_ctr *ctr;
  826. struct capi_driver *driver = NULL;
  827. capiloaddata ldata;
  828. struct list_head *l;
  829. int retval;
  830. switch (cmd) {
  831. case AVMB1_ADDCARD:
  832. case AVMB1_ADDCARD_WITH_TYPE:
  833. if (cmd == AVMB1_ADDCARD) {
  834. if ((retval = copy_from_user(&cdef, data,
  835. sizeof(avmb1_carddef))))
  836. return -EFAULT;
  837. cdef.cardtype = AVM_CARDTYPE_B1;
  838. } else {
  839. if ((retval = copy_from_user(&cdef, data,
  840. sizeof(avmb1_extcarddef))))
  841. return -EFAULT;
  842. }
  843. cparams.port = cdef.port;
  844. cparams.irq = cdef.irq;
  845. cparams.cardnr = cdef.cardnr;
  846. mutex_lock(&capi_drivers_lock);
  847. switch (cdef.cardtype) {
  848. case AVM_CARDTYPE_B1:
  849. list_for_each(l, &capi_drivers) {
  850. driver = list_entry(l, struct capi_driver, list);
  851. if (strcmp(driver->name, "b1isa") == 0)
  852. break;
  853. }
  854. break;
  855. case AVM_CARDTYPE_T1:
  856. list_for_each(l, &capi_drivers) {
  857. driver = list_entry(l, struct capi_driver, list);
  858. if (strcmp(driver->name, "t1isa") == 0)
  859. break;
  860. }
  861. break;
  862. default:
  863. driver = NULL;
  864. break;
  865. }
  866. if (!driver) {
  867. printk(KERN_ERR "kcapi: driver not loaded.\n");
  868. retval = -EIO;
  869. } else if (!driver->add_card) {
  870. printk(KERN_ERR "kcapi: driver has no add card function.\n");
  871. retval = -EIO;
  872. } else
  873. retval = driver->add_card(driver, &cparams);
  874. mutex_unlock(&capi_drivers_lock);
  875. return retval;
  876. case AVMB1_LOAD:
  877. case AVMB1_LOAD_AND_CONFIG:
  878. if (cmd == AVMB1_LOAD) {
  879. if (copy_from_user(&ldef, data,
  880. sizeof(avmb1_loaddef)))
  881. return -EFAULT;
  882. ldef.t4config.len = 0;
  883. ldef.t4config.data = NULL;
  884. } else {
  885. if (copy_from_user(&ldef, data,
  886. sizeof(avmb1_loadandconfigdef)))
  887. return -EFAULT;
  888. }
  889. mutex_lock(&capi_controller_lock);
  890. ctr = get_capi_ctr_by_nr(ldef.contr);
  891. if (!ctr) {
  892. retval = -EINVAL;
  893. goto load_unlock_out;
  894. }
  895. if (ctr->load_firmware == NULL) {
  896. printk(KERN_DEBUG "kcapi: load: no load function\n");
  897. retval = -ESRCH;
  898. goto load_unlock_out;
  899. }
  900. if (ldef.t4file.len <= 0) {
  901. printk(KERN_DEBUG "kcapi: load: invalid parameter: length of t4file is %d ?\n", ldef.t4file.len);
  902. retval = -EINVAL;
  903. goto load_unlock_out;
  904. }
  905. if (ldef.t4file.data == NULL) {
  906. printk(KERN_DEBUG "kcapi: load: invalid parameter: dataptr is 0\n");
  907. retval = -EINVAL;
  908. goto load_unlock_out;
  909. }
  910. ldata.firmware.user = 1;
  911. ldata.firmware.data = ldef.t4file.data;
  912. ldata.firmware.len = ldef.t4file.len;
  913. ldata.configuration.user = 1;
  914. ldata.configuration.data = ldef.t4config.data;
  915. ldata.configuration.len = ldef.t4config.len;
  916. if (ctr->state != CAPI_CTR_DETECTED) {
  917. printk(KERN_INFO "kcapi: load: contr=%d not in detect state\n", ldef.contr);
  918. retval = -EBUSY;
  919. goto load_unlock_out;
  920. }
  921. ctr->state = CAPI_CTR_LOADING;
  922. retval = ctr->load_firmware(ctr, &ldata);
  923. if (retval) {
  924. ctr->state = CAPI_CTR_DETECTED;
  925. goto load_unlock_out;
  926. }
  927. retval = wait_on_ctr_state(ctr, CAPI_CTR_RUNNING);
  928. load_unlock_out:
  929. mutex_unlock(&capi_controller_lock);
  930. return retval;
  931. case AVMB1_RESETCARD:
  932. if (copy_from_user(&rdef, data, sizeof(avmb1_resetdef)))
  933. return -EFAULT;
  934. retval = 0;
  935. mutex_lock(&capi_controller_lock);
  936. ctr = get_capi_ctr_by_nr(rdef.contr);
  937. if (!ctr) {
  938. retval = -ESRCH;
  939. goto reset_unlock_out;
  940. }
  941. if (ctr->state == CAPI_CTR_DETECTED)
  942. goto reset_unlock_out;
  943. if (ctr->reset_ctr == NULL) {
  944. printk(KERN_DEBUG "kcapi: reset: no reset function\n");
  945. retval = -ESRCH;
  946. goto reset_unlock_out;
  947. }
  948. ctr->reset_ctr(ctr);
  949. retval = wait_on_ctr_state(ctr, CAPI_CTR_DETECTED);
  950. reset_unlock_out:
  951. mutex_unlock(&capi_controller_lock);
  952. return retval;
  953. }
  954. return -EINVAL;
  955. }
  956. #endif
  957. /**
  958. * capi20_manufacturer() - CAPI 2.0 operation CAPI_MANUFACTURER
  959. * @cmd: command.
  960. * @data: parameter.
  961. *
  962. * Perform manufacturer specific command.
  963. * Return value: CAPI result code
  964. */
  965. int capi20_manufacturer(unsigned int cmd, void __user *data)
  966. {
  967. struct capi_ctr *ctr;
  968. int retval;
  969. switch (cmd) {
  970. #ifdef AVMB1_COMPAT
  971. case AVMB1_LOAD:
  972. case AVMB1_LOAD_AND_CONFIG:
  973. case AVMB1_RESETCARD:
  974. case AVMB1_GET_CARDINFO:
  975. case AVMB1_REMOVECARD:
  976. return old_capi_manufacturer(cmd, data);
  977. #endif
  978. case KCAPI_CMD_TRACE:
  979. {
  980. kcapi_flagdef fdef;
  981. if (copy_from_user(&fdef, data, sizeof(kcapi_flagdef)))
  982. return -EFAULT;
  983. mutex_lock(&capi_controller_lock);
  984. ctr = get_capi_ctr_by_nr(fdef.contr);
  985. if (ctr) {
  986. ctr->traceflag = fdef.flag;
  987. printk(KERN_INFO "kcapi: contr [%03d] set trace=%d\n",
  988. ctr->cnr, ctr->traceflag);
  989. retval = 0;
  990. } else
  991. retval = -ESRCH;
  992. mutex_unlock(&capi_controller_lock);
  993. return retval;
  994. }
  995. case KCAPI_CMD_ADDCARD:
  996. {
  997. struct list_head *l;
  998. struct capi_driver *driver = NULL;
  999. capicardparams cparams;
  1000. kcapi_carddef cdef;
  1001. if ((retval = copy_from_user(&cdef, data, sizeof(cdef))))
  1002. return -EFAULT;
  1003. cparams.port = cdef.port;
  1004. cparams.irq = cdef.irq;
  1005. cparams.membase = cdef.membase;
  1006. cparams.cardnr = cdef.cardnr;
  1007. cparams.cardtype = 0;
  1008. cdef.driver[sizeof(cdef.driver)-1] = 0;
  1009. mutex_lock(&capi_drivers_lock);
  1010. list_for_each(l, &capi_drivers) {
  1011. driver = list_entry(l, struct capi_driver, list);
  1012. if (strcmp(driver->name, cdef.driver) == 0)
  1013. break;
  1014. }
  1015. if (driver == NULL) {
  1016. printk(KERN_ERR "kcapi: driver \"%s\" not loaded.\n",
  1017. cdef.driver);
  1018. retval = -ESRCH;
  1019. } else if (!driver->add_card) {
  1020. printk(KERN_ERR "kcapi: driver \"%s\" has no add card function.\n", cdef.driver);
  1021. retval = -EIO;
  1022. } else
  1023. retval = driver->add_card(driver, &cparams);
  1024. mutex_unlock(&capi_drivers_lock);
  1025. return retval;
  1026. }
  1027. default:
  1028. printk(KERN_ERR "kcapi: manufacturer command %d unknown.\n",
  1029. cmd);
  1030. break;
  1031. }
  1032. return -EINVAL;
  1033. }
  1034. EXPORT_SYMBOL(capi20_manufacturer);
  1035. /* ------------------------------------------------------------- */
  1036. /* -------- Init & Cleanup ------------------------------------- */
  1037. /* ------------------------------------------------------------- */
  1038. /*
  1039. * init / exit functions
  1040. */
  1041. static struct notifier_block capictr_nb = {
  1042. .notifier_call = notify_handler,
  1043. .priority = INT_MAX,
  1044. };
  1045. static int __init kcapi_init(void)
  1046. {
  1047. int err;
  1048. register_capictr_notifier(&capictr_nb);
  1049. err = cdebug_init();
  1050. if (!err)
  1051. kcapi_proc_init();
  1052. return err;
  1053. }
  1054. static void __exit kcapi_exit(void)
  1055. {
  1056. kcapi_proc_exit();
  1057. /* make sure all notifiers are finished */
  1058. flush_scheduled_work();
  1059. cdebug_exit();
  1060. }
  1061. module_init(kcapi_init);
  1062. module_exit(kcapi_exit);