pcmciamtd.c 21 KB

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  1. /*
  2. * pcmciamtd.c - MTD driver for PCMCIA flash memory cards
  3. *
  4. * Author: Simon Evans <spse@secret.org.uk>
  5. *
  6. * Copyright (C) 2002 Simon Evans
  7. *
  8. * Licence: GPL
  9. *
  10. */
  11. #include <linux/module.h>
  12. #include <linux/slab.h>
  13. #include <linux/timer.h>
  14. #include <linux/init.h>
  15. #include <asm/io.h>
  16. #include <asm/system.h>
  17. #include <pcmcia/cs_types.h>
  18. #include <pcmcia/cs.h>
  19. #include <pcmcia/cistpl.h>
  20. #include <pcmcia/ds.h>
  21. #include <linux/mtd/map.h>
  22. #include <linux/mtd/mtd.h>
  23. #ifdef CONFIG_MTD_DEBUG
  24. static int debug = CONFIG_MTD_DEBUG_VERBOSE;
  25. module_param(debug, int, 0);
  26. MODULE_PARM_DESC(debug, "Set Debug Level 0=quiet, 5=noisy");
  27. #undef DEBUG
  28. #define DEBUG(n, format, arg...) \
  29. if (n <= debug) { \
  30. printk(KERN_DEBUG __FILE__ ":%s(): " format "\n", __func__ , ## arg); \
  31. }
  32. #else
  33. #undef DEBUG
  34. #define DEBUG(n, arg...)
  35. static const int debug = 0;
  36. #endif
  37. #define err(format, arg...) printk(KERN_ERR "pcmciamtd: " format "\n" , ## arg)
  38. #define info(format, arg...) printk(KERN_INFO "pcmciamtd: " format "\n" , ## arg)
  39. #define warn(format, arg...) printk(KERN_WARNING "pcmciamtd: " format "\n" , ## arg)
  40. #define DRIVER_DESC "PCMCIA Flash memory card driver"
  41. /* Size of the PCMCIA address space: 26 bits = 64 MB */
  42. #define MAX_PCMCIA_ADDR 0x4000000
  43. struct pcmciamtd_dev {
  44. struct pcmcia_device *p_dev;
  45. dev_node_t node; /* device node */
  46. caddr_t win_base; /* ioremapped address of PCMCIA window */
  47. unsigned int win_size; /* size of window */
  48. unsigned int offset; /* offset into card the window currently points at */
  49. struct map_info pcmcia_map;
  50. struct mtd_info *mtd_info;
  51. int vpp;
  52. char mtd_name[sizeof(struct cistpl_vers_1_t)];
  53. };
  54. /* Module parameters */
  55. /* 2 = do 16-bit transfers, 1 = do 8-bit transfers */
  56. static int bankwidth = 2;
  57. /* Speed of memory accesses, in ns */
  58. static int mem_speed;
  59. /* Force the size of an SRAM card */
  60. static int force_size;
  61. /* Force Vpp */
  62. static int vpp;
  63. /* Set Vpp */
  64. static int setvpp;
  65. /* Force card to be treated as FLASH, ROM or RAM */
  66. static int mem_type;
  67. MODULE_LICENSE("GPL");
  68. MODULE_AUTHOR("Simon Evans <spse@secret.org.uk>");
  69. MODULE_DESCRIPTION(DRIVER_DESC);
  70. module_param(bankwidth, int, 0);
  71. MODULE_PARM_DESC(bankwidth, "Set bankwidth (1=8 bit, 2=16 bit, default=2)");
  72. module_param(mem_speed, int, 0);
  73. MODULE_PARM_DESC(mem_speed, "Set memory access speed in ns");
  74. module_param(force_size, int, 0);
  75. MODULE_PARM_DESC(force_size, "Force size of card in MiB (1-64)");
  76. module_param(setvpp, int, 0);
  77. MODULE_PARM_DESC(setvpp, "Set Vpp (0=Never, 1=On writes, 2=Always on, default=0)");
  78. module_param(vpp, int, 0);
  79. MODULE_PARM_DESC(vpp, "Vpp value in 1/10ths eg 33=3.3V 120=12V (Dangerous)");
  80. module_param(mem_type, int, 0);
  81. MODULE_PARM_DESC(mem_type, "Set Memory type (0=Flash, 1=RAM, 2=ROM, default=0)");
  82. /* read/write{8,16} copy_{from,to} routines with window remapping to access whole card */
  83. static caddr_t remap_window(struct map_info *map, unsigned long to)
  84. {
  85. struct pcmciamtd_dev *dev = (struct pcmciamtd_dev *)map->map_priv_1;
  86. window_handle_t win = (window_handle_t)map->map_priv_2;
  87. memreq_t mrq;
  88. int ret;
  89. if (!pcmcia_dev_present(dev->p_dev)) {
  90. DEBUG(1, "device removed");
  91. return 0;
  92. }
  93. mrq.CardOffset = to & ~(dev->win_size-1);
  94. if(mrq.CardOffset != dev->offset) {
  95. DEBUG(2, "Remapping window from 0x%8.8x to 0x%8.8x",
  96. dev->offset, mrq.CardOffset);
  97. mrq.Page = 0;
  98. ret = pcmcia_map_mem_page(dev->p_dev, win, &mrq);
  99. if (ret != 0)
  100. return NULL;
  101. dev->offset = mrq.CardOffset;
  102. }
  103. return dev->win_base + (to & (dev->win_size-1));
  104. }
  105. static map_word pcmcia_read8_remap(struct map_info *map, unsigned long ofs)
  106. {
  107. caddr_t addr;
  108. map_word d = {{0}};
  109. addr = remap_window(map, ofs);
  110. if(!addr)
  111. return d;
  112. d.x[0] = readb(addr);
  113. DEBUG(3, "ofs = 0x%08lx (%p) data = 0x%02x", ofs, addr, d.x[0]);
  114. return d;
  115. }
  116. static map_word pcmcia_read16_remap(struct map_info *map, unsigned long ofs)
  117. {
  118. caddr_t addr;
  119. map_word d = {{0}};
  120. addr = remap_window(map, ofs);
  121. if(!addr)
  122. return d;
  123. d.x[0] = readw(addr);
  124. DEBUG(3, "ofs = 0x%08lx (%p) data = 0x%04x", ofs, addr, d.x[0]);
  125. return d;
  126. }
  127. static void pcmcia_copy_from_remap(struct map_info *map, void *to, unsigned long from, ssize_t len)
  128. {
  129. struct pcmciamtd_dev *dev = (struct pcmciamtd_dev *)map->map_priv_1;
  130. unsigned long win_size = dev->win_size;
  131. DEBUG(3, "to = %p from = %lu len = %u", to, from, len);
  132. while(len) {
  133. int toread = win_size - (from & (win_size-1));
  134. caddr_t addr;
  135. if(toread > len)
  136. toread = len;
  137. addr = remap_window(map, from);
  138. if(!addr)
  139. return;
  140. DEBUG(4, "memcpy from %p to %p len = %d", addr, to, toread);
  141. memcpy_fromio(to, addr, toread);
  142. len -= toread;
  143. to += toread;
  144. from += toread;
  145. }
  146. }
  147. static void pcmcia_write8_remap(struct map_info *map, map_word d, unsigned long adr)
  148. {
  149. caddr_t addr = remap_window(map, adr);
  150. if(!addr)
  151. return;
  152. DEBUG(3, "adr = 0x%08lx (%p) data = 0x%02x", adr, addr, d.x[0]);
  153. writeb(d.x[0], addr);
  154. }
  155. static void pcmcia_write16_remap(struct map_info *map, map_word d, unsigned long adr)
  156. {
  157. caddr_t addr = remap_window(map, adr);
  158. if(!addr)
  159. return;
  160. DEBUG(3, "adr = 0x%08lx (%p) data = 0x%04x", adr, addr, d.x[0]);
  161. writew(d.x[0], addr);
  162. }
  163. static void pcmcia_copy_to_remap(struct map_info *map, unsigned long to, const void *from, ssize_t len)
  164. {
  165. struct pcmciamtd_dev *dev = (struct pcmciamtd_dev *)map->map_priv_1;
  166. unsigned long win_size = dev->win_size;
  167. DEBUG(3, "to = %lu from = %p len = %u", to, from, len);
  168. while(len) {
  169. int towrite = win_size - (to & (win_size-1));
  170. caddr_t addr;
  171. if(towrite > len)
  172. towrite = len;
  173. addr = remap_window(map, to);
  174. if(!addr)
  175. return;
  176. DEBUG(4, "memcpy from %p to %p len = %d", from, addr, towrite);
  177. memcpy_toio(addr, from, towrite);
  178. len -= towrite;
  179. to += towrite;
  180. from += towrite;
  181. }
  182. }
  183. /* read/write{8,16} copy_{from,to} routines with direct access */
  184. #define DEV_REMOVED(x) (!(pcmcia_dev_present(((struct pcmciamtd_dev *)map->map_priv_1)->p_dev)))
  185. static map_word pcmcia_read8(struct map_info *map, unsigned long ofs)
  186. {
  187. caddr_t win_base = (caddr_t)map->map_priv_2;
  188. map_word d = {{0}};
  189. if(DEV_REMOVED(map))
  190. return d;
  191. d.x[0] = readb(win_base + ofs);
  192. DEBUG(3, "ofs = 0x%08lx (%p) data = 0x%02x", ofs, win_base + ofs, d.x[0]);
  193. return d;
  194. }
  195. static map_word pcmcia_read16(struct map_info *map, unsigned long ofs)
  196. {
  197. caddr_t win_base = (caddr_t)map->map_priv_2;
  198. map_word d = {{0}};
  199. if(DEV_REMOVED(map))
  200. return d;
  201. d.x[0] = readw(win_base + ofs);
  202. DEBUG(3, "ofs = 0x%08lx (%p) data = 0x%04x", ofs, win_base + ofs, d.x[0]);
  203. return d;
  204. }
  205. static void pcmcia_copy_from(struct map_info *map, void *to, unsigned long from, ssize_t len)
  206. {
  207. caddr_t win_base = (caddr_t)map->map_priv_2;
  208. if(DEV_REMOVED(map))
  209. return;
  210. DEBUG(3, "to = %p from = %lu len = %u", to, from, len);
  211. memcpy_fromio(to, win_base + from, len);
  212. }
  213. static void pcmcia_write8(struct map_info *map, u8 d, unsigned long adr)
  214. {
  215. caddr_t win_base = (caddr_t)map->map_priv_2;
  216. if(DEV_REMOVED(map))
  217. return;
  218. DEBUG(3, "adr = 0x%08lx (%p) data = 0x%02x", adr, win_base + adr, d);
  219. writeb(d, win_base + adr);
  220. }
  221. static void pcmcia_write16(struct map_info *map, u16 d, unsigned long adr)
  222. {
  223. caddr_t win_base = (caddr_t)map->map_priv_2;
  224. if(DEV_REMOVED(map))
  225. return;
  226. DEBUG(3, "adr = 0x%08lx (%p) data = 0x%04x", adr, win_base + adr, d);
  227. writew(d, win_base + adr);
  228. }
  229. static void pcmcia_copy_to(struct map_info *map, unsigned long to, const void *from, ssize_t len)
  230. {
  231. caddr_t win_base = (caddr_t)map->map_priv_2;
  232. if(DEV_REMOVED(map))
  233. return;
  234. DEBUG(3, "to = %lu from = %p len = %u", to, from, len);
  235. memcpy_toio(win_base + to, from, len);
  236. }
  237. static void pcmciamtd_set_vpp(struct map_info *map, int on)
  238. {
  239. struct pcmciamtd_dev *dev = (struct pcmciamtd_dev *)map->map_priv_1;
  240. struct pcmcia_device *link = dev->p_dev;
  241. modconf_t mod;
  242. int ret;
  243. mod.Attributes = CONF_VPP1_CHANGE_VALID | CONF_VPP2_CHANGE_VALID;
  244. mod.Vcc = 0;
  245. mod.Vpp1 = mod.Vpp2 = on ? dev->vpp : 0;
  246. DEBUG(2, "dev = %p on = %d vpp = %d\n", dev, on, dev->vpp);
  247. ret = pcmcia_modify_configuration(link, &mod);
  248. }
  249. /* After a card is removed, pcmciamtd_release() will unregister the
  250. * device, and release the PCMCIA configuration. If the device is
  251. * still open, this will be postponed until it is closed.
  252. */
  253. static void pcmciamtd_release(struct pcmcia_device *link)
  254. {
  255. struct pcmciamtd_dev *dev = link->priv;
  256. DEBUG(3, "link = 0x%p", link);
  257. if (link->win) {
  258. if(dev->win_base) {
  259. iounmap(dev->win_base);
  260. dev->win_base = NULL;
  261. }
  262. pcmcia_release_window(link, link->win);
  263. }
  264. pcmcia_disable_device(link);
  265. }
  266. #ifdef CONFIG_MTD_DEBUG
  267. static int pcmciamtd_cistpl_format(struct pcmcia_device *p_dev,
  268. tuple_t *tuple,
  269. void *priv_data)
  270. {
  271. cisparse_t parse;
  272. if (!pcmcia_parse_tuple(tuple, &parse)) {
  273. cistpl_format_t *t = &parse.format;
  274. (void)t; /* Shut up, gcc */
  275. DEBUG(2, "Format type: %u, Error Detection: %u, offset = %u, length =%u",
  276. t->type, t->edc, t->offset, t->length);
  277. }
  278. return -ENOSPC;
  279. }
  280. static int pcmciamtd_cistpl_jedec(struct pcmcia_device *p_dev,
  281. tuple_t *tuple,
  282. void *priv_data)
  283. {
  284. cisparse_t parse;
  285. int i;
  286. if (!pcmcia_parse_tuple(tuple, &parse)) {
  287. cistpl_jedec_t *t = &parse.jedec;
  288. for (i = 0; i < t->nid; i++)
  289. DEBUG(2, "JEDEC: 0x%02x 0x%02x", t->id[i].mfr, t->id[i].info);
  290. }
  291. return -ENOSPC;
  292. }
  293. #endif
  294. static int pcmciamtd_cistpl_device(struct pcmcia_device *p_dev,
  295. tuple_t *tuple,
  296. void *priv_data)
  297. {
  298. struct pcmciamtd_dev *dev = priv_data;
  299. cisparse_t parse;
  300. cistpl_device_t *t = &parse.device;
  301. int i;
  302. if (pcmcia_parse_tuple(tuple, &parse))
  303. return -EINVAL;
  304. DEBUG(2, "Common memory:");
  305. dev->pcmcia_map.size = t->dev[0].size;
  306. /* from here on: DEBUG only */
  307. for (i = 0; i < t->ndev; i++) {
  308. DEBUG(2, "Region %d, type = %u", i, t->dev[i].type);
  309. DEBUG(2, "Region %d, wp = %u", i, t->dev[i].wp);
  310. DEBUG(2, "Region %d, speed = %u ns", i, t->dev[i].speed);
  311. DEBUG(2, "Region %d, size = %u bytes", i, t->dev[i].size);
  312. }
  313. return 0;
  314. }
  315. static int pcmciamtd_cistpl_geo(struct pcmcia_device *p_dev,
  316. tuple_t *tuple,
  317. void *priv_data)
  318. {
  319. struct pcmciamtd_dev *dev = priv_data;
  320. cisparse_t parse;
  321. cistpl_device_geo_t *t = &parse.device_geo;
  322. int i;
  323. if (pcmcia_parse_tuple(tuple, &parse))
  324. return -EINVAL;
  325. dev->pcmcia_map.bankwidth = t->geo[0].buswidth;
  326. /* from here on: DEBUG only */
  327. for (i = 0; i < t->ngeo; i++) {
  328. DEBUG(2, "region: %d bankwidth = %u", i, t->geo[i].buswidth);
  329. DEBUG(2, "region: %d erase_block = %u", i, t->geo[i].erase_block);
  330. DEBUG(2, "region: %d read_block = %u", i, t->geo[i].read_block);
  331. DEBUG(2, "region: %d write_block = %u", i, t->geo[i].write_block);
  332. DEBUG(2, "region: %d partition = %u", i, t->geo[i].partition);
  333. DEBUG(2, "region: %d interleave = %u", i, t->geo[i].interleave);
  334. }
  335. return 0;
  336. }
  337. static void card_settings(struct pcmciamtd_dev *dev, struct pcmcia_device *link, int *new_name)
  338. {
  339. int i;
  340. if (p_dev->prod_id[0]) {
  341. dev->mtd_name[0] = '\0';
  342. for (i = 0; i < 4; i++) {
  343. if (i)
  344. strcat(dev->mtd_name, " ");
  345. if (p_dev->prod_id[i])
  346. strcat(dev->mtd_name, p_dev->prod_id[i]);
  347. }
  348. DEBUG(2, "Found name: %s", dev->mtd_name);
  349. }
  350. #ifdef CONFIG_MTD_DEBUG
  351. pcmcia_loop_tuple(p_dev, CISTPL_FORMAT, pcmciamtd_cistpl_format, NULL);
  352. pcmcia_loop_tuple(p_dev, CISTPL_JEDEC_C, pcmciamtd_cistpl_jedec, NULL);
  353. #endif
  354. pcmcia_loop_tuple(p_dev, CISTPL_DEVICE, pcmciamtd_cistpl_device, dev);
  355. pcmcia_loop_tuple(p_dev, CISTPL_DEVICE_GEO, pcmciamtd_cistpl_geo, dev);
  356. if(!dev->pcmcia_map.size)
  357. dev->pcmcia_map.size = MAX_PCMCIA_ADDR;
  358. if(!dev->pcmcia_map.bankwidth)
  359. dev->pcmcia_map.bankwidth = 2;
  360. if(force_size) {
  361. dev->pcmcia_map.size = force_size << 20;
  362. DEBUG(2, "size forced to %dM", force_size);
  363. }
  364. if(bankwidth) {
  365. dev->pcmcia_map.bankwidth = bankwidth;
  366. DEBUG(2, "bankwidth forced to %d", bankwidth);
  367. }
  368. dev->pcmcia_map.name = dev->mtd_name;
  369. if(!dev->mtd_name[0]) {
  370. strcpy(dev->mtd_name, "PCMCIA Memory card");
  371. *new_name = 1;
  372. }
  373. DEBUG(1, "Device: Size: %lu Width:%d Name: %s",
  374. dev->pcmcia_map.size, dev->pcmcia_map.bankwidth << 3, dev->mtd_name);
  375. }
  376. /* pcmciamtd_config() is scheduled to run after a CARD_INSERTION event
  377. * is received, to configure the PCMCIA socket, and to make the
  378. * MTD device available to the system.
  379. */
  380. static int pcmciamtd_config(struct pcmcia_device *link)
  381. {
  382. struct pcmciamtd_dev *dev = link->priv;
  383. struct mtd_info *mtd = NULL;
  384. cs_status_t status;
  385. win_req_t req;
  386. int ret;
  387. int i;
  388. static char *probes[] = { "jedec_probe", "cfi_probe" };
  389. int new_name = 0;
  390. DEBUG(3, "link=0x%p", link);
  391. card_settings(dev, link, &new_name);
  392. dev->pcmcia_map.phys = NO_XIP;
  393. dev->pcmcia_map.copy_from = pcmcia_copy_from_remap;
  394. dev->pcmcia_map.copy_to = pcmcia_copy_to_remap;
  395. if (dev->pcmcia_map.bankwidth == 1) {
  396. dev->pcmcia_map.read = pcmcia_read8_remap;
  397. dev->pcmcia_map.write = pcmcia_write8_remap;
  398. } else {
  399. dev->pcmcia_map.read = pcmcia_read16_remap;
  400. dev->pcmcia_map.write = pcmcia_write16_remap;
  401. }
  402. if(setvpp == 1)
  403. dev->pcmcia_map.set_vpp = pcmciamtd_set_vpp;
  404. /* Request a memory window for PCMCIA. Some architeures can map windows upto the maximum
  405. that PCMCIA can support (64MiB) - this is ideal and we aim for a window the size of the
  406. whole card - otherwise we try smaller windows until we succeed */
  407. req.Attributes = WIN_MEMORY_TYPE_CM | WIN_ENABLE;
  408. req.Attributes |= (dev->pcmcia_map.bankwidth == 1) ? WIN_DATA_WIDTH_8 : WIN_DATA_WIDTH_16;
  409. req.Base = 0;
  410. req.AccessSpeed = mem_speed;
  411. link->win = (window_handle_t)link;
  412. req.Size = (force_size) ? force_size << 20 : MAX_PCMCIA_ADDR;
  413. dev->win_size = 0;
  414. do {
  415. int ret;
  416. DEBUG(2, "requesting window with size = %dKiB memspeed = %d",
  417. req.Size >> 10, req.AccessSpeed);
  418. ret = pcmcia_request_window(link, &req, &link->win);
  419. DEBUG(2, "ret = %d dev->win_size = %d", ret, dev->win_size);
  420. if(ret) {
  421. req.Size >>= 1;
  422. } else {
  423. DEBUG(2, "Got window of size %dKiB", req.Size >> 10);
  424. dev->win_size = req.Size;
  425. break;
  426. }
  427. } while(req.Size >= 0x1000);
  428. DEBUG(2, "dev->win_size = %d", dev->win_size);
  429. if(!dev->win_size) {
  430. err("Cant allocate memory window");
  431. pcmciamtd_release(link);
  432. return -ENODEV;
  433. }
  434. DEBUG(1, "Allocated a window of %dKiB", dev->win_size >> 10);
  435. /* Get write protect status */
  436. DEBUG(2, "window handle = 0x%8.8lx", (unsigned long)link->win);
  437. dev->win_base = ioremap(req.Base, req.Size);
  438. if(!dev->win_base) {
  439. err("ioremap(%lu, %u) failed", req.Base, req.Size);
  440. pcmciamtd_release(link);
  441. return -ENODEV;
  442. }
  443. DEBUG(1, "mapped window dev = %p req.base = 0x%lx base = %p size = 0x%x",
  444. dev, req.Base, dev->win_base, req.Size);
  445. dev->offset = 0;
  446. dev->pcmcia_map.map_priv_1 = (unsigned long)dev;
  447. dev->pcmcia_map.map_priv_2 = (unsigned long)link->win;
  448. dev->vpp = (vpp) ? vpp : link->socket.socket.Vpp;
  449. link->conf.Attributes = 0;
  450. if(setvpp == 2) {
  451. link->conf.Vpp = dev->vpp;
  452. } else {
  453. link->conf.Vpp = 0;
  454. }
  455. link->conf.IntType = INT_MEMORY;
  456. link->conf.ConfigIndex = 0;
  457. DEBUG(2, "Setting Configuration");
  458. ret = pcmcia_request_configuration(link, &link->conf);
  459. if (ret != 0) {
  460. if (dev->win_base) {
  461. iounmap(dev->win_base);
  462. dev->win_base = NULL;
  463. }
  464. return -ENODEV;
  465. }
  466. if(mem_type == 1) {
  467. mtd = do_map_probe("map_ram", &dev->pcmcia_map);
  468. } else if(mem_type == 2) {
  469. mtd = do_map_probe("map_rom", &dev->pcmcia_map);
  470. } else {
  471. for(i = 0; i < ARRAY_SIZE(probes); i++) {
  472. DEBUG(1, "Trying %s", probes[i]);
  473. mtd = do_map_probe(probes[i], &dev->pcmcia_map);
  474. if(mtd)
  475. break;
  476. DEBUG(1, "FAILED: %s", probes[i]);
  477. }
  478. }
  479. if(!mtd) {
  480. DEBUG(1, "Cant find an MTD");
  481. pcmciamtd_release(link);
  482. return -ENODEV;
  483. }
  484. dev->mtd_info = mtd;
  485. mtd->owner = THIS_MODULE;
  486. if(new_name) {
  487. int size = 0;
  488. char unit = ' ';
  489. /* Since we are using a default name, make it better by adding in the
  490. size */
  491. if(mtd->size < 1048576) { /* <1MiB in size, show size in KiB */
  492. size = mtd->size >> 10;
  493. unit = 'K';
  494. } else {
  495. size = mtd->size >> 20;
  496. unit = 'M';
  497. }
  498. snprintf(dev->mtd_name, sizeof(dev->mtd_name), "%d%ciB %s", size, unit, "PCMCIA Memory card");
  499. }
  500. /* If the memory found is fits completely into the mapped PCMCIA window,
  501. use the faster non-remapping read/write functions */
  502. if(mtd->size <= dev->win_size) {
  503. DEBUG(1, "Using non remapping memory functions");
  504. dev->pcmcia_map.map_priv_2 = (unsigned long)dev->win_base;
  505. if (dev->pcmcia_map.bankwidth == 1) {
  506. dev->pcmcia_map.read = pcmcia_read8;
  507. dev->pcmcia_map.write = pcmcia_write8;
  508. } else {
  509. dev->pcmcia_map.read = pcmcia_read16;
  510. dev->pcmcia_map.write = pcmcia_write16;
  511. }
  512. dev->pcmcia_map.copy_from = pcmcia_copy_from;
  513. dev->pcmcia_map.copy_to = pcmcia_copy_to;
  514. }
  515. if(add_mtd_device(mtd)) {
  516. map_destroy(mtd);
  517. dev->mtd_info = NULL;
  518. err("Couldnt register MTD device");
  519. pcmciamtd_release(link);
  520. return -ENODEV;
  521. }
  522. snprintf(dev->node.dev_name, sizeof(dev->node.dev_name), "mtd%d", mtd->index);
  523. info("mtd%d: %s", mtd->index, mtd->name);
  524. link->dev_node = &dev->node;
  525. return 0;
  526. failed:
  527. err("CS Error, exiting");
  528. pcmciamtd_release(link);
  529. return -ENODEV;
  530. }
  531. static int pcmciamtd_suspend(struct pcmcia_device *dev)
  532. {
  533. DEBUG(2, "EVENT_PM_RESUME");
  534. /* get_lock(link); */
  535. return 0;
  536. }
  537. static int pcmciamtd_resume(struct pcmcia_device *dev)
  538. {
  539. DEBUG(2, "EVENT_PM_SUSPEND");
  540. /* free_lock(link); */
  541. return 0;
  542. }
  543. /* This deletes a driver "instance". The device is de-registered
  544. * with Card Services. If it has been released, all local data
  545. * structures are freed. Otherwise, the structures will be freed
  546. * when the device is released.
  547. */
  548. static void pcmciamtd_detach(struct pcmcia_device *link)
  549. {
  550. struct pcmciamtd_dev *dev = link->priv;
  551. DEBUG(3, "link=0x%p", link);
  552. if(dev->mtd_info) {
  553. del_mtd_device(dev->mtd_info);
  554. map_destroy(dev->mtd_info);
  555. info("mtd%d: Removed", dev->mtd_info->index);
  556. }
  557. pcmciamtd_release(link);
  558. }
  559. /* pcmciamtd_attach() creates an "instance" of the driver, allocating
  560. * local data structures for one device. The device is registered
  561. * with Card Services.
  562. */
  563. static int pcmciamtd_probe(struct pcmcia_device *link)
  564. {
  565. struct pcmciamtd_dev *dev;
  566. /* Create new memory card device */
  567. dev = kzalloc(sizeof(*dev), GFP_KERNEL);
  568. if (!dev) return -ENOMEM;
  569. DEBUG(1, "dev=0x%p", dev);
  570. dev->p_dev = link;
  571. link->priv = dev;
  572. link->conf.Attributes = 0;
  573. link->conf.IntType = INT_MEMORY;
  574. return pcmciamtd_config(link);
  575. }
  576. static struct pcmcia_device_id pcmciamtd_ids[] = {
  577. PCMCIA_DEVICE_FUNC_ID(1),
  578. PCMCIA_DEVICE_PROD_ID123("IO DATA", "PCS-2M", "2MB SRAM", 0x547e66dc, 0x1fed36cd, 0x36eadd21),
  579. PCMCIA_DEVICE_PROD_ID12("IBM", "2MB SRAM", 0xb569a6e5, 0x36eadd21),
  580. PCMCIA_DEVICE_PROD_ID12("IBM", "4MB FLASH", 0xb569a6e5, 0x8bc54d2a),
  581. PCMCIA_DEVICE_PROD_ID12("IBM", "8MB FLASH", 0xb569a6e5, 0x6df1be3e),
  582. PCMCIA_DEVICE_PROD_ID12("Intel", "S2E20SW", 0x816cc815, 0xd14c9dcf),
  583. PCMCIA_DEVICE_PROD_ID12("Intel", "S2E8 SW", 0x816cc815, 0xa2d7dedb),
  584. PCMCIA_DEVICE_PROD_ID12("intel", "SERIES2-02 ", 0x40ade711, 0x145cea5c),
  585. PCMCIA_DEVICE_PROD_ID12("intel", "SERIES2-04 ", 0x40ade711, 0x42064dda),
  586. PCMCIA_DEVICE_PROD_ID12("intel", "SERIES2-20 ", 0x40ade711, 0x25ee5cb0),
  587. PCMCIA_DEVICE_PROD_ID12("intel", "VALUE SERIES 100 ", 0x40ade711, 0xdf8506d8),
  588. PCMCIA_DEVICE_PROD_ID12("KINGMAX TECHNOLOGY INC.", "SRAM 256K Bytes", 0x54d0c69c, 0xad12c29c),
  589. PCMCIA_DEVICE_PROD_ID12("Maxtor", "MAXFL MobileMax Flash Memory Card", 0xb68968c8, 0x2dfb47b0),
  590. PCMCIA_DEVICE_PROD_ID12("SEIKO EPSON", "WWB101EN20", 0xf9876baf, 0xad0b207b),
  591. PCMCIA_DEVICE_PROD_ID12("SEIKO EPSON", "WWB513EN20", 0xf9876baf, 0xe8d884ad),
  592. PCMCIA_DEVICE_PROD_ID12("Starfish, Inc.", "REX-3000", 0x05ddca47, 0xe7d67bca),
  593. PCMCIA_DEVICE_PROD_ID12("Starfish, Inc.", "REX-4100", 0x05ddca47, 0x7bc32944),
  594. /* the following was commented out in pcmcia-cs-3.2.7 */
  595. /* PCMCIA_DEVICE_PROD_ID12("RATOC Systems,Inc.", "SmartMedia ADAPTER PC Card", 0xf4a2fefe, 0x5885b2ae), */
  596. #ifdef CONFIG_MTD_PCMCIA_ANONYMOUS
  597. { .match_flags = PCMCIA_DEV_ID_MATCH_ANONYMOUS, },
  598. #endif
  599. PCMCIA_DEVICE_NULL
  600. };
  601. MODULE_DEVICE_TABLE(pcmcia, pcmciamtd_ids);
  602. static struct pcmcia_driver pcmciamtd_driver = {
  603. .drv = {
  604. .name = "pcmciamtd"
  605. },
  606. .probe = pcmciamtd_probe,
  607. .remove = pcmciamtd_detach,
  608. .owner = THIS_MODULE,
  609. .id_table = pcmciamtd_ids,
  610. .suspend = pcmciamtd_suspend,
  611. .resume = pcmciamtd_resume,
  612. };
  613. static int __init init_pcmciamtd(void)
  614. {
  615. info(DRIVER_DESC);
  616. if(bankwidth && bankwidth != 1 && bankwidth != 2) {
  617. info("bad bankwidth (%d), using default", bankwidth);
  618. bankwidth = 2;
  619. }
  620. if(force_size && (force_size < 1 || force_size > 64)) {
  621. info("bad force_size (%d), using default", force_size);
  622. force_size = 0;
  623. }
  624. if(mem_type && mem_type != 1 && mem_type != 2) {
  625. info("bad mem_type (%d), using default", mem_type);
  626. mem_type = 0;
  627. }
  628. return pcmcia_register_driver(&pcmciamtd_driver);
  629. }
  630. static void __exit exit_pcmciamtd(void)
  631. {
  632. DEBUG(1, DRIVER_DESC " unloading");
  633. pcmcia_unregister_driver(&pcmciamtd_driver);
  634. }
  635. module_init(init_pcmciamtd);
  636. module_exit(exit_pcmciamtd);