init.c 13 KB

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  1. /*
  2. * This software may be used and distributed according to the terms
  3. * of the GNU General Public License, incorporated herein by reference.
  4. *
  5. */
  6. #include <linux/module.h>
  7. #include <linux/init.h>
  8. #include <linux/interrupt.h>
  9. #include <linux/delay.h>
  10. #include "includes.h"
  11. #include "hardware.h"
  12. #include "card.h"
  13. MODULE_DESCRIPTION("ISDN4Linux: Driver for Spellcaster card");
  14. MODULE_AUTHOR("Spellcaster Telecommunications Inc.");
  15. MODULE_LICENSE("GPL");
  16. board *sc_adapter[MAX_CARDS];
  17. int cinst;
  18. static char devname[] = "scX";
  19. static const char version[] = "2.0b1";
  20. static const char *boardname[] = { "DataCommute/BRI", "DataCommute/PRI", "TeleCommute/BRI" };
  21. /* insmod set parameters */
  22. static unsigned int io[] = {0,0,0,0};
  23. static unsigned char irq[] = {0,0,0,0};
  24. static unsigned long ram[] = {0,0,0,0};
  25. static int do_reset = 0;
  26. module_param_array(io, int, NULL, 0);
  27. module_param_array(irq, int, NULL, 0);
  28. module_param_array(ram, int, NULL, 0);
  29. module_param(do_reset, bool, 0);
  30. extern irqreturn_t interrupt_handler(int, void *);
  31. extern int sndpkt(int, int, int, struct sk_buff *);
  32. extern int command(isdn_ctrl *);
  33. extern int indicate_status(int, int, ulong, char*);
  34. extern int reset(int);
  35. static int identify_board(unsigned long, unsigned int);
  36. static int __init sc_init(void)
  37. {
  38. int b = -1;
  39. int i, j;
  40. int status = -ENODEV;
  41. unsigned long memsize = 0;
  42. unsigned long features = 0;
  43. isdn_if *interface;
  44. unsigned char channels;
  45. unsigned char pgport;
  46. unsigned long magic;
  47. int model;
  48. int last_base = IOBASE_MIN;
  49. int probe_exhasted = 0;
  50. #ifdef MODULE
  51. pr_info("SpellCaster ISA ISDN Adapter Driver rev. %s Loaded\n", version);
  52. #else
  53. pr_info("SpellCaster ISA ISDN Adapter Driver rev. %s\n", version);
  54. #endif
  55. pr_info("Copyright (C) 1996 SpellCaster Telecommunications Inc.\n");
  56. while(b++ < MAX_CARDS - 1) {
  57. pr_debug("Probing for adapter #%d\n", b);
  58. /*
  59. * Initialize reusable variables
  60. */
  61. model = -1;
  62. magic = 0;
  63. channels = 0;
  64. pgport = 0;
  65. /*
  66. * See if we should probe for IO base
  67. */
  68. pr_debug("I/O Base for board %d is 0x%x, %s probe\n", b, io[b],
  69. io[b] == 0 ? "will" : "won't");
  70. if(io[b]) {
  71. /*
  72. * No, I/O Base has been provided
  73. */
  74. for (i = 0 ; i < MAX_IO_REGS - 1 ; i++) {
  75. if(!request_region(io[b] + i * 0x400, 1, "sc test")) {
  76. pr_debug("request_region for 0x%x failed\n", io[b] + i * 0x400);
  77. io[b] = 0;
  78. break;
  79. } else
  80. release_region(io[b] + i * 0x400, 1);
  81. }
  82. /*
  83. * Confirm the I/O Address with a test
  84. */
  85. if(io[b] == 0) {
  86. pr_debug("I/O Address invalid.\n");
  87. continue;
  88. }
  89. outb(0x18, io[b] + 0x400 * EXP_PAGE0);
  90. if(inb(io[b] + 0x400 * EXP_PAGE0) != 0x18) {
  91. pr_debug("I/O Base 0x%x fails test\n",
  92. io[b] + 0x400 * EXP_PAGE0);
  93. continue;
  94. }
  95. }
  96. else {
  97. /*
  98. * Yes, probe for I/O Base
  99. */
  100. if(probe_exhasted) {
  101. pr_debug("All probe addresses exhasted, skipping\n");
  102. continue;
  103. }
  104. pr_debug("Probing for I/O...\n");
  105. for (i = last_base ; i <= IOBASE_MAX ; i += IOBASE_OFFSET) {
  106. int found_io = 1;
  107. if (i == IOBASE_MAX) {
  108. probe_exhasted = 1; /* No more addresses to probe */
  109. pr_debug("End of Probes\n");
  110. }
  111. last_base = i + IOBASE_OFFSET;
  112. pr_debug(" checking 0x%x...", i);
  113. for ( j = 0 ; j < MAX_IO_REGS - 1 ; j++) {
  114. if(!request_region(i + j * 0x400, 1, "sc test")) {
  115. pr_debug("Failed\n");
  116. found_io = 0;
  117. break;
  118. } else
  119. release_region(i + j * 0x400, 1);
  120. }
  121. if(found_io) {
  122. io[b] = i;
  123. outb(0x18, io[b] + 0x400 * EXP_PAGE0);
  124. if(inb(io[b] + 0x400 * EXP_PAGE0) != 0x18) {
  125. pr_debug("Failed by test\n");
  126. continue;
  127. }
  128. pr_debug("Passed\n");
  129. break;
  130. }
  131. }
  132. if(probe_exhasted) {
  133. continue;
  134. }
  135. }
  136. /*
  137. * See if we should probe for shared RAM
  138. */
  139. if(do_reset) {
  140. pr_debug("Doing a SAFE probe reset\n");
  141. outb(0xFF, io[b] + RESET_OFFSET);
  142. msleep_interruptible(10000);
  143. }
  144. pr_debug("RAM Base for board %d is 0x%lx, %s probe\n", b,
  145. ram[b], ram[b] == 0 ? "will" : "won't");
  146. if(ram[b]) {
  147. /*
  148. * No, the RAM base has been provided
  149. * Just look for a signature and ID the
  150. * board model
  151. */
  152. if(request_region(ram[b], SRAM_PAGESIZE, "sc test")) {
  153. pr_debug("request_region for RAM base 0x%lx succeeded\n", ram[b]);
  154. model = identify_board(ram[b], io[b]);
  155. release_region(ram[b], SRAM_PAGESIZE);
  156. }
  157. }
  158. else {
  159. /*
  160. * Yes, probe for free RAM and look for
  161. * a signature and id the board model
  162. */
  163. for (i = SRAM_MIN ; i < SRAM_MAX ; i += SRAM_PAGESIZE) {
  164. pr_debug("Checking RAM address 0x%x...\n", i);
  165. if(request_region(i, SRAM_PAGESIZE, "sc test")) {
  166. pr_debug(" request_region succeeded\n");
  167. model = identify_board(i, io[b]);
  168. release_region(i, SRAM_PAGESIZE);
  169. if (model >= 0) {
  170. pr_debug(" Identified a %s\n",
  171. boardname[model]);
  172. ram[b] = i;
  173. break;
  174. }
  175. pr_debug(" Unidentifed or inaccessible\n");
  176. continue;
  177. }
  178. pr_debug(" request failed\n");
  179. }
  180. }
  181. /*
  182. * See if we found free RAM and the board model
  183. */
  184. if(!ram[b] || model < 0) {
  185. /*
  186. * Nope, there was no place in RAM for the
  187. * board, or it couldn't be identified
  188. */
  189. pr_debug("Failed to find an adapter at 0x%lx\n", ram[b]);
  190. continue;
  191. }
  192. /*
  193. * Set the board's magic number, memory size and page register
  194. */
  195. switch(model) {
  196. case PRI_BOARD:
  197. channels = 23;
  198. magic = 0x20000;
  199. memsize = 0x100000;
  200. features = PRI_FEATURES;
  201. break;
  202. case BRI_BOARD:
  203. case POTS_BOARD:
  204. channels = 2;
  205. magic = 0x60000;
  206. memsize = 0x10000;
  207. features = BRI_FEATURES;
  208. break;
  209. }
  210. switch(ram[b] >> 12 & 0x0F) {
  211. case 0x0:
  212. pr_debug("RAM Page register set to EXP_PAGE0\n");
  213. pgport = EXP_PAGE0;
  214. break;
  215. case 0x4:
  216. pr_debug("RAM Page register set to EXP_PAGE1\n");
  217. pgport = EXP_PAGE1;
  218. break;
  219. case 0x8:
  220. pr_debug("RAM Page register set to EXP_PAGE2\n");
  221. pgport = EXP_PAGE2;
  222. break;
  223. case 0xC:
  224. pr_debug("RAM Page register set to EXP_PAGE3\n");
  225. pgport = EXP_PAGE3;
  226. break;
  227. default:
  228. pr_debug("RAM base address doesn't fall on 16K boundary\n");
  229. continue;
  230. }
  231. pr_debug("current IRQ: %d b: %d\n",irq[b],b);
  232. /*
  233. * Make sure we got an IRQ
  234. */
  235. if(!irq[b]) {
  236. /*
  237. * No interrupt could be used
  238. */
  239. pr_debug("Failed to acquire an IRQ line\n");
  240. continue;
  241. }
  242. /*
  243. * Horray! We found a board, Make sure we can register
  244. * it with ISDN4Linux
  245. */
  246. interface = kzalloc(sizeof(isdn_if), GFP_KERNEL);
  247. if (interface == NULL) {
  248. /*
  249. * Oops, can't malloc isdn_if
  250. */
  251. continue;
  252. }
  253. interface->owner = THIS_MODULE;
  254. interface->hl_hdrlen = 0;
  255. interface->channels = channels;
  256. interface->maxbufsize = BUFFER_SIZE;
  257. interface->features = features;
  258. interface->writebuf_skb = sndpkt;
  259. interface->writecmd = NULL;
  260. interface->command = command;
  261. strcpy(interface->id, devname);
  262. interface->id[2] = '0' + cinst;
  263. /*
  264. * Allocate the board structure
  265. */
  266. sc_adapter[cinst] = kzalloc(sizeof(board), GFP_KERNEL);
  267. if (sc_adapter[cinst] == NULL) {
  268. /*
  269. * Oops, can't alloc memory for the board
  270. */
  271. kfree(interface);
  272. continue;
  273. }
  274. spin_lock_init(&sc_adapter[cinst]->lock);
  275. if(!register_isdn(interface)) {
  276. /*
  277. * Oops, couldn't register for some reason
  278. */
  279. kfree(interface);
  280. kfree(sc_adapter[cinst]);
  281. continue;
  282. }
  283. sc_adapter[cinst]->card = interface;
  284. sc_adapter[cinst]->driverId = interface->channels;
  285. strcpy(sc_adapter[cinst]->devicename, interface->id);
  286. sc_adapter[cinst]->nChannels = channels;
  287. sc_adapter[cinst]->ramsize = memsize;
  288. sc_adapter[cinst]->shmem_magic = magic;
  289. sc_adapter[cinst]->shmem_pgport = pgport;
  290. sc_adapter[cinst]->StartOnReset = 1;
  291. /*
  292. * Allocate channels status structures
  293. */
  294. sc_adapter[cinst]->channel = kzalloc(sizeof(bchan) * channels, GFP_KERNEL);
  295. if (sc_adapter[cinst]->channel == NULL) {
  296. /*
  297. * Oops, can't alloc memory for the channels
  298. */
  299. indicate_status(cinst, ISDN_STAT_UNLOAD, 0, NULL); /* Fix me */
  300. kfree(interface);
  301. kfree(sc_adapter[cinst]);
  302. continue;
  303. }
  304. /*
  305. * Lock down the hardware resources
  306. */
  307. sc_adapter[cinst]->interrupt = irq[b];
  308. if (request_irq(sc_adapter[cinst]->interrupt, interrupt_handler,
  309. IRQF_DISABLED, interface->id, NULL))
  310. {
  311. kfree(sc_adapter[cinst]->channel);
  312. indicate_status(cinst, ISDN_STAT_UNLOAD, 0, NULL); /* Fix me */
  313. kfree(interface);
  314. kfree(sc_adapter[cinst]);
  315. continue;
  316. }
  317. sc_adapter[cinst]->iobase = io[b];
  318. for(i = 0 ; i < MAX_IO_REGS - 1 ; i++) {
  319. sc_adapter[cinst]->ioport[i] = io[b] + i * 0x400;
  320. request_region(sc_adapter[cinst]->ioport[i], 1,
  321. interface->id);
  322. pr_debug("Requesting I/O Port %#x\n",
  323. sc_adapter[cinst]->ioport[i]);
  324. }
  325. sc_adapter[cinst]->ioport[IRQ_SELECT] = io[b] + 0x2;
  326. request_region(sc_adapter[cinst]->ioport[IRQ_SELECT], 1,
  327. interface->id);
  328. pr_debug("Requesting I/O Port %#x\n",
  329. sc_adapter[cinst]->ioport[IRQ_SELECT]);
  330. sc_adapter[cinst]->rambase = ram[b];
  331. request_region(sc_adapter[cinst]->rambase, SRAM_PAGESIZE,
  332. interface->id);
  333. pr_info(" %s (%d) - %s %d channels IRQ %d, I/O Base 0x%x, RAM Base 0x%lx\n",
  334. sc_adapter[cinst]->devicename,
  335. sc_adapter[cinst]->driverId,
  336. boardname[model], channels, irq[b], io[b], ram[b]);
  337. /*
  338. * reset the adapter to put things in motion
  339. */
  340. reset(cinst);
  341. cinst++;
  342. status = 0;
  343. }
  344. if (status)
  345. pr_info("Failed to find any adapters, driver unloaded\n");
  346. return status;
  347. }
  348. static void __exit sc_exit(void)
  349. {
  350. int i, j;
  351. for(i = 0 ; i < cinst ; i++) {
  352. pr_debug("Cleaning up after adapter %d\n", i);
  353. /*
  354. * kill the timers
  355. */
  356. del_timer(&(sc_adapter[i]->reset_timer));
  357. del_timer(&(sc_adapter[i]->stat_timer));
  358. /*
  359. * Tell I4L we're toast
  360. */
  361. indicate_status(i, ISDN_STAT_STOP, 0, NULL);
  362. indicate_status(i, ISDN_STAT_UNLOAD, 0, NULL);
  363. /*
  364. * Release shared RAM
  365. */
  366. release_region(sc_adapter[i]->rambase, SRAM_PAGESIZE);
  367. /*
  368. * Release the IRQ
  369. */
  370. FREE_IRQ(sc_adapter[i]->interrupt, NULL);
  371. /*
  372. * Reset for a clean start
  373. */
  374. outb(0xFF, sc_adapter[i]->ioport[SFT_RESET]);
  375. /*
  376. * Release the I/O Port regions
  377. */
  378. for(j = 0 ; j < MAX_IO_REGS - 1; j++) {
  379. release_region(sc_adapter[i]->ioport[j], 1);
  380. pr_debug("Releasing I/O Port %#x\n",
  381. sc_adapter[i]->ioport[j]);
  382. }
  383. release_region(sc_adapter[i]->ioport[IRQ_SELECT], 1);
  384. pr_debug("Releasing I/O Port %#x\n",
  385. sc_adapter[i]->ioport[IRQ_SELECT]);
  386. /*
  387. * Release any memory we alloced
  388. */
  389. kfree(sc_adapter[i]->channel);
  390. kfree(sc_adapter[i]->card);
  391. kfree(sc_adapter[i]);
  392. }
  393. pr_info("SpellCaster ISA ISDN Adapter Driver Unloaded.\n");
  394. }
  395. static int identify_board(unsigned long rambase, unsigned int iobase)
  396. {
  397. unsigned int pgport;
  398. unsigned long sig;
  399. DualPortMemory *dpm;
  400. RspMessage rcvmsg;
  401. ReqMessage sndmsg;
  402. HWConfig_pl hwci;
  403. int x;
  404. pr_debug("Attempting to identify adapter @ 0x%lx io 0x%x\n",
  405. rambase, iobase);
  406. /*
  407. * Enable the base pointer
  408. */
  409. outb(rambase >> 12, iobase + 0x2c00);
  410. switch(rambase >> 12 & 0x0F) {
  411. case 0x0:
  412. pgport = iobase + PG0_OFFSET;
  413. pr_debug("Page Register offset is 0x%x\n", PG0_OFFSET);
  414. break;
  415. case 0x4:
  416. pgport = iobase + PG1_OFFSET;
  417. pr_debug("Page Register offset is 0x%x\n", PG1_OFFSET);
  418. break;
  419. case 0x8:
  420. pgport = iobase + PG2_OFFSET;
  421. pr_debug("Page Register offset is 0x%x\n", PG2_OFFSET);
  422. break;
  423. case 0xC:
  424. pgport = iobase + PG3_OFFSET;
  425. pr_debug("Page Register offset is 0x%x\n", PG3_OFFSET);
  426. break;
  427. default:
  428. pr_debug("Invalid rambase 0x%lx\n", rambase);
  429. return -1;
  430. }
  431. /*
  432. * Try to identify a PRI card
  433. */
  434. outb(PRI_BASEPG_VAL, pgport);
  435. msleep_interruptible(1000);
  436. sig = readl(rambase + SIG_OFFSET);
  437. pr_debug("Looking for a signature, got 0x%lx\n", sig);
  438. if(sig == SIGNATURE)
  439. return PRI_BOARD;
  440. /*
  441. * Try to identify a PRI card
  442. */
  443. outb(BRI_BASEPG_VAL, pgport);
  444. msleep_interruptible(1000);
  445. sig = readl(rambase + SIG_OFFSET);
  446. pr_debug("Looking for a signature, got 0x%lx\n", sig);
  447. if(sig == SIGNATURE)
  448. return BRI_BOARD;
  449. return -1;
  450. /*
  451. * Try to spot a card
  452. */
  453. sig = readl(rambase + SIG_OFFSET);
  454. pr_debug("Looking for a signature, got 0x%lx\n", sig);
  455. if(sig != SIGNATURE)
  456. return -1;
  457. dpm = (DualPortMemory *) rambase;
  458. memset(&sndmsg, 0, MSG_LEN);
  459. sndmsg.msg_byte_cnt = 3;
  460. sndmsg.type = cmReqType1;
  461. sndmsg.class = cmReqClass0;
  462. sndmsg.code = cmReqHWConfig;
  463. memcpy_toio(&(dpm->req_queue[dpm->req_head++]), &sndmsg, MSG_LEN);
  464. outb(0, iobase + 0x400);
  465. pr_debug("Sent HWConfig message\n");
  466. /*
  467. * Wait for the response
  468. */
  469. x = 0;
  470. while((inb(iobase + FIFOSTAT_OFFSET) & RF_HAS_DATA) && x < 100) {
  471. schedule_timeout_interruptible(1);
  472. x++;
  473. }
  474. if(x == 100) {
  475. pr_debug("Timeout waiting for response\n");
  476. return -1;
  477. }
  478. memcpy_fromio(&rcvmsg, &(dpm->rsp_queue[dpm->rsp_tail]), MSG_LEN);
  479. pr_debug("Got HWConfig response, status = 0x%x\n", rcvmsg.rsp_status);
  480. memcpy(&hwci, &(rcvmsg.msg_data.HWCresponse), sizeof(HWConfig_pl));
  481. pr_debug("Hardware Config: Interface: %s, RAM Size: %ld, Serial: %s\n"
  482. " Part: %s, Rev: %s\n",
  483. hwci.st_u_sense ? "S/T" : "U", hwci.ram_size,
  484. hwci.serial_no, hwci.part_no, hwci.rev_no);
  485. if(!strncmp(PRI_PARTNO, hwci.part_no, 6))
  486. return PRI_BOARD;
  487. if(!strncmp(BRI_PARTNO, hwci.part_no, 6))
  488. return BRI_BOARD;
  489. return -1;
  490. }
  491. module_init(sc_init);
  492. module_exit(sc_exit);