main.c 12 KB

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  1. /*
  2. * IPWireless 3G PCMCIA Network Driver
  3. *
  4. * Original code
  5. * by Stephen Blackheath <stephen@blacksapphire.com>,
  6. * Ben Martel <benm@symmetric.co.nz>
  7. *
  8. * Copyrighted as follows:
  9. * Copyright (C) 2004 by Symmetric Systems Ltd (NZ)
  10. *
  11. * Various driver changes and rewrites, port to new kernels
  12. * Copyright (C) 2006-2007 Jiri Kosina
  13. *
  14. * Misc code cleanups and updates
  15. * Copyright (C) 2007 David Sterba
  16. */
  17. #include "hardware.h"
  18. #include "network.h"
  19. #include "main.h"
  20. #include "tty.h"
  21. #include <linux/delay.h>
  22. #include <linux/init.h>
  23. #include <linux/io.h>
  24. #include <linux/kernel.h>
  25. #include <linux/module.h>
  26. #include <linux/sched.h>
  27. #include <linux/slab.h>
  28. #include <pcmcia/cisreg.h>
  29. #include <pcmcia/device_id.h>
  30. #include <pcmcia/ss.h>
  31. #include <pcmcia/ds.h>
  32. #include <pcmcia/cs.h>
  33. static struct pcmcia_device_id ipw_ids[] = {
  34. PCMCIA_DEVICE_MANF_CARD(0x02f2, 0x0100),
  35. PCMCIA_DEVICE_MANF_CARD(0x02f2, 0x0200),
  36. PCMCIA_DEVICE_NULL
  37. };
  38. MODULE_DEVICE_TABLE(pcmcia, ipw_ids);
  39. static void ipwireless_detach(struct pcmcia_device *link);
  40. /*
  41. * Module params
  42. */
  43. /* Debug mode: more verbose, print sent/recv bytes */
  44. int ipwireless_debug;
  45. int ipwireless_loopback;
  46. int ipwireless_out_queue = 1;
  47. module_param_named(debug, ipwireless_debug, int, 0);
  48. module_param_named(loopback, ipwireless_loopback, int, 0);
  49. module_param_named(out_queue, ipwireless_out_queue, int, 0);
  50. MODULE_PARM_DESC(debug, "switch on debug messages [0]");
  51. MODULE_PARM_DESC(loopback,
  52. "debug: enable ras_raw channel [0]");
  53. MODULE_PARM_DESC(out_queue, "debug: set size of outgoing queue [1]");
  54. /* Executes in process context. */
  55. static void signalled_reboot_work(struct work_struct *work_reboot)
  56. {
  57. struct ipw_dev *ipw = container_of(work_reboot, struct ipw_dev,
  58. work_reboot);
  59. struct pcmcia_device *link = ipw->link;
  60. int ret = pccard_reset_card(link->socket);
  61. if (ret != CS_SUCCESS)
  62. cs_error(link, ResetCard, ret);
  63. }
  64. static void signalled_reboot_callback(void *callback_data)
  65. {
  66. struct ipw_dev *ipw = (struct ipw_dev *) callback_data;
  67. /* Delegate to process context. */
  68. schedule_work(&ipw->work_reboot);
  69. }
  70. static int config_ipwireless(struct ipw_dev *ipw)
  71. {
  72. struct pcmcia_device *link = ipw->link;
  73. int ret;
  74. config_info_t conf;
  75. tuple_t tuple;
  76. unsigned short buf[64];
  77. cisparse_t parse;
  78. unsigned short cor_value;
  79. win_req_t request_attr_memory;
  80. win_req_t request_common_memory;
  81. memreq_t memreq_attr_memory;
  82. memreq_t memreq_common_memory;
  83. ipw->is_v2_card = 0;
  84. tuple.Attributes = 0;
  85. tuple.TupleData = (cisdata_t *) buf;
  86. tuple.TupleDataMax = sizeof(buf);
  87. tuple.TupleOffset = 0;
  88. tuple.DesiredTuple = RETURN_FIRST_TUPLE;
  89. ret = pcmcia_get_first_tuple(link, &tuple);
  90. while (ret == 0) {
  91. ret = pcmcia_get_tuple_data(link, &tuple);
  92. if (ret != CS_SUCCESS) {
  93. cs_error(link, GetTupleData, ret);
  94. goto exit0;
  95. }
  96. ret = pcmcia_get_next_tuple(link, &tuple);
  97. }
  98. tuple.DesiredTuple = CISTPL_CFTABLE_ENTRY;
  99. ret = pcmcia_get_first_tuple(link, &tuple);
  100. if (ret != CS_SUCCESS) {
  101. cs_error(link, GetFirstTuple, ret);
  102. goto exit0;
  103. }
  104. ret = pcmcia_get_tuple_data(link, &tuple);
  105. if (ret != CS_SUCCESS) {
  106. cs_error(link, GetTupleData, ret);
  107. goto exit0;
  108. }
  109. ret = pcmcia_parse_tuple(link, &tuple, &parse);
  110. if (ret != CS_SUCCESS) {
  111. cs_error(link, ParseTuple, ret);
  112. goto exit0;
  113. }
  114. link->io.Attributes1 = IO_DATA_PATH_WIDTH_AUTO;
  115. link->io.BasePort1 = parse.cftable_entry.io.win[0].base;
  116. link->io.NumPorts1 = parse.cftable_entry.io.win[0].len;
  117. link->io.IOAddrLines = 16;
  118. link->irq.IRQInfo1 = parse.cftable_entry.irq.IRQInfo1;
  119. /* 0x40 causes it to generate level mode interrupts. */
  120. /* 0x04 enables IREQ pin. */
  121. cor_value = parse.cftable_entry.index | 0x44;
  122. link->conf.ConfigIndex = cor_value;
  123. /* IRQ and I/O settings */
  124. tuple.DesiredTuple = CISTPL_CONFIG;
  125. ret = pcmcia_get_first_tuple(link, &tuple);
  126. if (ret != CS_SUCCESS) {
  127. cs_error(link, GetFirstTuple, ret);
  128. goto exit0;
  129. }
  130. ret = pcmcia_get_tuple_data(link, &tuple);
  131. if (ret != CS_SUCCESS) {
  132. cs_error(link, GetTupleData, ret);
  133. goto exit0;
  134. }
  135. ret = pcmcia_parse_tuple(link, &tuple, &parse);
  136. if (ret != CS_SUCCESS) {
  137. cs_error(link, GetTupleData, ret);
  138. goto exit0;
  139. }
  140. link->conf.Attributes = CONF_ENABLE_IRQ;
  141. link->conf.ConfigBase = parse.config.base;
  142. link->conf.Present = parse.config.rmask[0];
  143. link->conf.IntType = INT_MEMORY_AND_IO;
  144. link->irq.Attributes = IRQ_TYPE_DYNAMIC_SHARING | IRQ_HANDLE_PRESENT;
  145. link->irq.Handler = ipwireless_interrupt;
  146. link->irq.Instance = ipw->hardware;
  147. ret = pcmcia_request_io(link, &link->io);
  148. if (ret != CS_SUCCESS) {
  149. cs_error(link, RequestIO, ret);
  150. goto exit0;
  151. }
  152. /* memory settings */
  153. tuple.DesiredTuple = CISTPL_CFTABLE_ENTRY;
  154. ret = pcmcia_get_first_tuple(link, &tuple);
  155. if (ret != CS_SUCCESS) {
  156. cs_error(link, GetFirstTuple, ret);
  157. goto exit1;
  158. }
  159. ret = pcmcia_get_tuple_data(link, &tuple);
  160. if (ret != CS_SUCCESS) {
  161. cs_error(link, GetTupleData, ret);
  162. goto exit1;
  163. }
  164. ret = pcmcia_parse_tuple(link, &tuple, &parse);
  165. if (ret != CS_SUCCESS) {
  166. cs_error(link, ParseTuple, ret);
  167. goto exit1;
  168. }
  169. if (parse.cftable_entry.mem.nwin > 0) {
  170. request_common_memory.Attributes =
  171. WIN_DATA_WIDTH_16 | WIN_MEMORY_TYPE_CM | WIN_ENABLE;
  172. request_common_memory.Base =
  173. parse.cftable_entry.mem.win[0].host_addr;
  174. request_common_memory.Size = parse.cftable_entry.mem.win[0].len;
  175. if (request_common_memory.Size < 0x1000)
  176. request_common_memory.Size = 0x1000;
  177. request_common_memory.AccessSpeed = 0;
  178. ret = pcmcia_request_window(&link, &request_common_memory,
  179. &ipw->handle_common_memory);
  180. if (ret != CS_SUCCESS) {
  181. cs_error(link, RequestWindow, ret);
  182. goto exit1;
  183. }
  184. memreq_common_memory.CardOffset =
  185. parse.cftable_entry.mem.win[0].card_addr;
  186. memreq_common_memory.Page = 0;
  187. ret = pcmcia_map_mem_page(ipw->handle_common_memory,
  188. &memreq_common_memory);
  189. if (ret != CS_SUCCESS) {
  190. cs_error(link, MapMemPage, ret);
  191. goto exit1;
  192. }
  193. ipw->is_v2_card =
  194. parse.cftable_entry.mem.win[0].len == 0x100;
  195. ipw->common_memory = ioremap(request_common_memory.Base,
  196. request_common_memory.Size);
  197. request_attr_memory.Attributes =
  198. WIN_DATA_WIDTH_16 | WIN_MEMORY_TYPE_AM | WIN_ENABLE;
  199. request_attr_memory.Base = 0;
  200. request_attr_memory.Size = 0; /* this used to be 0x1000 */
  201. request_attr_memory.AccessSpeed = 0;
  202. ret = pcmcia_request_window(&link, &request_attr_memory,
  203. &ipw->handle_attr_memory);
  204. if (ret != CS_SUCCESS) {
  205. cs_error(link, RequestWindow, ret);
  206. goto exit2;
  207. }
  208. memreq_attr_memory.CardOffset = 0;
  209. memreq_attr_memory.Page = 0;
  210. ret = pcmcia_map_mem_page(ipw->handle_attr_memory,
  211. &memreq_attr_memory);
  212. if (ret != CS_SUCCESS) {
  213. cs_error(link, MapMemPage, ret);
  214. goto exit2;
  215. }
  216. ipw->attr_memory = ioremap(request_attr_memory.Base,
  217. request_attr_memory.Size);
  218. }
  219. INIT_WORK(&ipw->work_reboot, signalled_reboot_work);
  220. ipwireless_init_hardware_v1(ipw->hardware, link->io.BasePort1,
  221. ipw->attr_memory, ipw->common_memory,
  222. ipw->is_v2_card, signalled_reboot_callback,
  223. ipw);
  224. ret = pcmcia_request_irq(link, &link->irq);
  225. if (ret != CS_SUCCESS) {
  226. cs_error(link, RequestIRQ, ret);
  227. goto exit3;
  228. }
  229. /* Look up current Vcc */
  230. ret = pcmcia_get_configuration_info(link, &conf);
  231. if (ret != CS_SUCCESS) {
  232. cs_error(link, GetConfigurationInfo, ret);
  233. goto exit4;
  234. }
  235. printk(KERN_INFO IPWIRELESS_PCCARD_NAME ": Card type %s\n",
  236. ipw->is_v2_card ? "V2/V3" : "V1");
  237. printk(KERN_INFO IPWIRELESS_PCCARD_NAME
  238. ": I/O ports 0x%04x-0x%04x, irq %d\n",
  239. (unsigned int) link->io.BasePort1,
  240. (unsigned int) (link->io.BasePort1 +
  241. link->io.NumPorts1 - 1),
  242. (unsigned int) link->irq.AssignedIRQ);
  243. if (ipw->attr_memory && ipw->common_memory)
  244. printk(KERN_INFO IPWIRELESS_PCCARD_NAME
  245. ": attr memory 0x%08lx-0x%08lx, common memory 0x%08lx-0x%08lx\n",
  246. request_attr_memory.Base,
  247. request_attr_memory.Base
  248. + request_attr_memory.Size - 1,
  249. request_common_memory.Base,
  250. request_common_memory.Base
  251. + request_common_memory.Size - 1);
  252. ipw->network = ipwireless_network_create(ipw->hardware);
  253. if (!ipw->network)
  254. goto exit3;
  255. ipw->tty = ipwireless_tty_create(ipw->hardware, ipw->network,
  256. ipw->nodes);
  257. if (!ipw->tty)
  258. goto exit3;
  259. ipwireless_init_hardware_v2_v3(ipw->hardware);
  260. /*
  261. * Do the RequestConfiguration last, because it enables interrupts.
  262. * Then we don't get any interrupts before we're ready for them.
  263. */
  264. ret = pcmcia_request_configuration(link, &link->conf);
  265. if (ret != CS_SUCCESS) {
  266. cs_error(link, RequestConfiguration, ret);
  267. goto exit4;
  268. }
  269. link->dev_node = &ipw->nodes[0];
  270. return 0;
  271. exit4:
  272. pcmcia_disable_device(link);
  273. exit3:
  274. if (ipw->attr_memory) {
  275. iounmap(ipw->attr_memory);
  276. pcmcia_release_window(ipw->handle_attr_memory);
  277. pcmcia_disable_device(link);
  278. }
  279. exit2:
  280. if (ipw->common_memory) {
  281. iounmap(ipw->common_memory);
  282. pcmcia_release_window(ipw->handle_common_memory);
  283. }
  284. exit1:
  285. pcmcia_disable_device(link);
  286. exit0:
  287. return -1;
  288. }
  289. static void release_ipwireless(struct ipw_dev *ipw)
  290. {
  291. struct pcmcia_device *link = ipw->link;
  292. pcmcia_disable_device(link);
  293. if (ipw->common_memory)
  294. iounmap(ipw->common_memory);
  295. if (ipw->attr_memory)
  296. iounmap(ipw->attr_memory);
  297. if (ipw->common_memory)
  298. pcmcia_release_window(ipw->handle_common_memory);
  299. if (ipw->attr_memory)
  300. pcmcia_release_window(ipw->handle_attr_memory);
  301. pcmcia_disable_device(link);
  302. }
  303. /*
  304. * ipwireless_attach() creates an "instance" of the driver, allocating
  305. * local data structures for one device (one interface). The device
  306. * is registered with Card Services.
  307. *
  308. * The pcmcia_device structure is initialized, but we don't actually
  309. * configure the card at this point -- we wait until we receive a
  310. * card insertion event.
  311. */
  312. static int ipwireless_attach(struct pcmcia_device *link)
  313. {
  314. struct ipw_dev *ipw;
  315. int ret;
  316. ipw = kzalloc(sizeof(struct ipw_dev), GFP_KERNEL);
  317. if (!ipw)
  318. return -ENOMEM;
  319. ipw->link = link;
  320. link->priv = ipw;
  321. link->irq.Instance = ipw;
  322. /* Link this device into our device list. */
  323. link->dev_node = &ipw->nodes[0];
  324. ipw->hardware = ipwireless_hardware_create();
  325. if (!ipw->hardware) {
  326. kfree(ipw);
  327. return -ENOMEM;
  328. }
  329. /* RegisterClient will call config_ipwireless */
  330. ret = config_ipwireless(ipw);
  331. if (ret != 0) {
  332. cs_error(link, RegisterClient, ret);
  333. ipwireless_detach(link);
  334. return ret;
  335. }
  336. return 0;
  337. }
  338. /*
  339. * This deletes a driver "instance". The device is de-registered with
  340. * Card Services. If it has been released, all local data structures
  341. * are freed. Otherwise, the structures will be freed when the device
  342. * is released.
  343. */
  344. static void ipwireless_detach(struct pcmcia_device *link)
  345. {
  346. struct ipw_dev *ipw = link->priv;
  347. release_ipwireless(ipw);
  348. /* Break the link with Card Services */
  349. if (link)
  350. pcmcia_disable_device(link);
  351. if (ipw->tty != NULL)
  352. ipwireless_tty_free(ipw->tty);
  353. if (ipw->network != NULL)
  354. ipwireless_network_free(ipw->network);
  355. if (ipw->hardware != NULL)
  356. ipwireless_hardware_free(ipw->hardware);
  357. kfree(ipw);
  358. }
  359. static struct pcmcia_driver me = {
  360. .owner = THIS_MODULE,
  361. .probe = ipwireless_attach,
  362. .remove = ipwireless_detach,
  363. .drv = { .name = IPWIRELESS_PCCARD_NAME },
  364. .id_table = ipw_ids
  365. };
  366. /*
  367. * Module insertion : initialisation of the module.
  368. * Register the card with cardmgr...
  369. */
  370. static int __init init_ipwireless(void)
  371. {
  372. int ret;
  373. printk(KERN_INFO IPWIRELESS_PCCARD_NAME " "
  374. IPWIRELESS_PCMCIA_VERSION " by " IPWIRELESS_PCMCIA_AUTHOR "\n");
  375. ret = ipwireless_tty_init();
  376. if (ret != 0)
  377. return ret;
  378. ret = pcmcia_register_driver(&me);
  379. if (ret != 0)
  380. ipwireless_tty_release();
  381. return ret;
  382. }
  383. /*
  384. * Module removal
  385. */
  386. static void __exit exit_ipwireless(void)
  387. {
  388. printk(KERN_INFO IPWIRELESS_PCCARD_NAME " "
  389. IPWIRELESS_PCMCIA_VERSION " removed\n");
  390. pcmcia_unregister_driver(&me);
  391. ipwireless_tty_release();
  392. }
  393. module_init(init_ipwireless);
  394. module_exit(exit_ipwireless);
  395. MODULE_AUTHOR(IPWIRELESS_PCMCIA_AUTHOR);
  396. MODULE_DESCRIPTION(IPWIRELESS_PCCARD_NAME " " IPWIRELESS_PCMCIA_VERSION);
  397. MODULE_LICENSE("GPL");