db1xxx_ss.c 15 KB

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  1. /*
  2. * PCMCIA socket code for the Alchemy Db1xxx/Pb1xxx boards.
  3. *
  4. * Copyright (c) 2009 Manuel Lauss <manuel.lauss@gmail.com>
  5. *
  6. */
  7. /* This is a fairly generic PCMCIA socket driver suitable for the
  8. * following Alchemy Development boards:
  9. * Db1000, Db/Pb1500, Db/Pb1100, Db/Pb1550, Db/Pb1200.
  10. *
  11. * The Db1000 is used as a reference: Per-socket card-, carddetect- and
  12. * statuschange IRQs connected to SoC GPIOs, control and status register
  13. * bits arranged in per-socket groups in an external PLD. All boards
  14. * listed here use this layout, including bit positions and meanings.
  15. * Of course there are exceptions in later boards:
  16. *
  17. * - Pb1100/Pb1500: single socket only; voltage key bits VS are
  18. * at STATUS[5:4] (instead of STATUS[1:0]).
  19. * - Au1200-based: additional card-eject irqs, irqs not gpios!
  20. */
  21. #include <linux/delay.h>
  22. #include <linux/gpio.h>
  23. #include <linux/interrupt.h>
  24. #include <linux/pm.h>
  25. #include <linux/platform_device.h>
  26. #include <linux/resource.h>
  27. #include <linux/slab.h>
  28. #include <linux/spinlock.h>
  29. #include <pcmcia/cs_types.h>
  30. #include <pcmcia/ss.h>
  31. #include <asm/mach-au1x00/au1000.h>
  32. #include <asm/mach-db1x00/bcsr.h>
  33. #define MEM_MAP_SIZE 0x400000
  34. #define IO_MAP_SIZE 0x1000
  35. struct db1x_pcmcia_sock {
  36. struct pcmcia_socket socket;
  37. int nr; /* socket number */
  38. void *virt_io;
  39. phys_addr_t phys_io;
  40. phys_addr_t phys_attr;
  41. phys_addr_t phys_mem;
  42. /* previous flags for set_socket() */
  43. unsigned int old_flags;
  44. /* interrupt sources: linux irq numbers! */
  45. int insert_irq; /* default carddetect irq */
  46. int stschg_irq; /* card-status-change irq */
  47. int card_irq; /* card irq */
  48. int eject_irq; /* db1200/pb1200 have these */
  49. #define BOARD_TYPE_DEFAULT 0 /* most boards */
  50. #define BOARD_TYPE_DB1200 1 /* IRQs aren't gpios */
  51. #define BOARD_TYPE_PB1100 2 /* VS bits slightly different */
  52. int board_type;
  53. };
  54. #define to_db1x_socket(x) container_of(x, struct db1x_pcmcia_sock, socket)
  55. /* DB/PB1200: check CPLD SIGSTATUS register bit 10/12 */
  56. static int db1200_card_inserted(struct db1x_pcmcia_sock *sock)
  57. {
  58. unsigned short sigstat;
  59. sigstat = bcsr_read(BCSR_SIGSTAT);
  60. return sigstat & 1 << (8 + 2 * sock->nr);
  61. }
  62. /* carddetect gpio: low-active */
  63. static int db1000_card_inserted(struct db1x_pcmcia_sock *sock)
  64. {
  65. return !gpio_get_value(irq_to_gpio(sock->insert_irq));
  66. }
  67. static int db1x_card_inserted(struct db1x_pcmcia_sock *sock)
  68. {
  69. switch (sock->board_type) {
  70. case BOARD_TYPE_DB1200:
  71. return db1200_card_inserted(sock);
  72. default:
  73. return db1000_card_inserted(sock);
  74. }
  75. }
  76. /* STSCHG tends to bounce heavily when cards are inserted/ejected.
  77. * To avoid this, the interrupt is normally disabled and only enabled
  78. * after reset to a card has been de-asserted.
  79. */
  80. static inline void set_stschg(struct db1x_pcmcia_sock *sock, int en)
  81. {
  82. if (sock->stschg_irq != -1) {
  83. if (en)
  84. enable_irq(sock->stschg_irq);
  85. else
  86. disable_irq(sock->stschg_irq);
  87. }
  88. }
  89. static irqreturn_t db1000_pcmcia_cdirq(int irq, void *data)
  90. {
  91. struct db1x_pcmcia_sock *sock = data;
  92. pcmcia_parse_events(&sock->socket, SS_DETECT);
  93. return IRQ_HANDLED;
  94. }
  95. static irqreturn_t db1000_pcmcia_stschgirq(int irq, void *data)
  96. {
  97. struct db1x_pcmcia_sock *sock = data;
  98. pcmcia_parse_events(&sock->socket, SS_STSCHG);
  99. return IRQ_HANDLED;
  100. }
  101. static irqreturn_t db1200_pcmcia_cdirq(int irq, void *data)
  102. {
  103. struct db1x_pcmcia_sock *sock = data;
  104. /* Db/Pb1200 have separate per-socket insertion and ejection
  105. * interrupts which stay asserted as long as the card is
  106. * inserted/missing. The one which caused us to be called
  107. * needs to be disabled and the other one enabled.
  108. */
  109. if (irq == sock->insert_irq) {
  110. disable_irq_nosync(sock->insert_irq);
  111. enable_irq(sock->eject_irq);
  112. } else {
  113. disable_irq_nosync(sock->eject_irq);
  114. enable_irq(sock->insert_irq);
  115. }
  116. pcmcia_parse_events(&sock->socket, SS_DETECT);
  117. return IRQ_HANDLED;
  118. }
  119. static int db1x_pcmcia_setup_irqs(struct db1x_pcmcia_sock *sock)
  120. {
  121. int ret;
  122. if (sock->stschg_irq != -1) {
  123. ret = request_irq(sock->stschg_irq, db1000_pcmcia_stschgirq,
  124. 0, "pcmcia_stschg", sock);
  125. if (ret)
  126. return ret;
  127. }
  128. /* Db/Pb1200 have separate per-socket insertion and ejection
  129. * interrupts, which should show edge behaviour but don't.
  130. * So interrupts are disabled until both insertion and
  131. * ejection handler have been registered and the currently
  132. * active one disabled.
  133. */
  134. if (sock->board_type == BOARD_TYPE_DB1200) {
  135. ret = request_irq(sock->insert_irq, db1200_pcmcia_cdirq,
  136. IRQF_DISABLED, "pcmcia_insert", sock);
  137. if (ret)
  138. goto out1;
  139. ret = request_irq(sock->eject_irq, db1200_pcmcia_cdirq,
  140. IRQF_DISABLED, "pcmcia_eject", sock);
  141. if (ret) {
  142. free_irq(sock->insert_irq, sock);
  143. goto out1;
  144. }
  145. /* enable the currently silent one */
  146. if (db1200_card_inserted(sock))
  147. enable_irq(sock->eject_irq);
  148. else
  149. enable_irq(sock->insert_irq);
  150. } else {
  151. /* all other (older) Db1x00 boards use a GPIO to show
  152. * card detection status: use both-edge triggers.
  153. */
  154. set_irq_type(sock->insert_irq, IRQ_TYPE_EDGE_BOTH);
  155. ret = request_irq(sock->insert_irq, db1000_pcmcia_cdirq,
  156. 0, "pcmcia_carddetect", sock);
  157. if (ret)
  158. goto out1;
  159. }
  160. return 0; /* all done */
  161. out1:
  162. if (sock->stschg_irq != -1)
  163. free_irq(sock->stschg_irq, sock);
  164. return ret;
  165. }
  166. static void db1x_pcmcia_free_irqs(struct db1x_pcmcia_sock *sock)
  167. {
  168. if (sock->stschg_irq != -1)
  169. free_irq(sock->stschg_irq, sock);
  170. free_irq(sock->insert_irq, sock);
  171. if (sock->eject_irq != -1)
  172. free_irq(sock->eject_irq, sock);
  173. }
  174. /*
  175. * configure a PCMCIA socket on the Db1x00 series of boards (and
  176. * compatibles).
  177. *
  178. * 2 external registers are involved:
  179. * pcmcia_status (offset 0x04): bits [0:1/2:3]: read card voltage id
  180. * pcmcia_control(offset 0x10):
  181. * bits[0:1] set vcc for card
  182. * bits[2:3] set vpp for card
  183. * bit 4: enable data buffers
  184. * bit 7: reset# for card
  185. * add 8 for second socket.
  186. */
  187. static int db1x_pcmcia_configure(struct pcmcia_socket *skt,
  188. struct socket_state_t *state)
  189. {
  190. struct db1x_pcmcia_sock *sock = to_db1x_socket(skt);
  191. unsigned short cr_clr, cr_set;
  192. unsigned int changed;
  193. int v, p, ret;
  194. /* card voltage setup */
  195. cr_clr = (0xf << (sock->nr * 8)); /* clear voltage settings */
  196. cr_set = 0;
  197. v = p = ret = 0;
  198. switch (state->Vcc) {
  199. case 50:
  200. ++v;
  201. case 33:
  202. ++v;
  203. case 0:
  204. break;
  205. default:
  206. printk(KERN_INFO "pcmcia%d unsupported Vcc %d\n",
  207. sock->nr, state->Vcc);
  208. }
  209. switch (state->Vpp) {
  210. case 12:
  211. ++p;
  212. case 33:
  213. case 50:
  214. ++p;
  215. case 0:
  216. break;
  217. default:
  218. printk(KERN_INFO "pcmcia%d unsupported Vpp %d\n",
  219. sock->nr, state->Vpp);
  220. }
  221. /* sanity check: Vpp must be 0, 12, or Vcc */
  222. if (((state->Vcc == 33) && (state->Vpp == 50)) ||
  223. ((state->Vcc == 50) && (state->Vpp == 33))) {
  224. printk(KERN_INFO "pcmcia%d bad Vcc/Vpp combo (%d %d)\n",
  225. sock->nr, state->Vcc, state->Vpp);
  226. v = p = 0;
  227. ret = -EINVAL;
  228. }
  229. /* create new voltage code */
  230. cr_set |= ((v << 2) | p) << (sock->nr * 8);
  231. changed = state->flags ^ sock->old_flags;
  232. if (changed & SS_RESET) {
  233. if (state->flags & SS_RESET) {
  234. set_stschg(sock, 0);
  235. /* assert reset, disable io buffers */
  236. cr_clr |= (1 << (7 + (sock->nr * 8)));
  237. cr_clr |= (1 << (4 + (sock->nr * 8)));
  238. } else {
  239. /* de-assert reset, enable io buffers */
  240. cr_set |= 1 << (7 + (sock->nr * 8));
  241. cr_set |= 1 << (4 + (sock->nr * 8));
  242. }
  243. }
  244. /* update PCMCIA configuration */
  245. bcsr_mod(BCSR_PCMCIA, cr_clr, cr_set);
  246. sock->old_flags = state->flags;
  247. /* reset was taken away: give card time to initialize properly */
  248. if ((changed & SS_RESET) && !(state->flags & SS_RESET)) {
  249. msleep(500);
  250. set_stschg(sock, 1);
  251. }
  252. return ret;
  253. }
  254. /* VCC bits at [3:2]/[11:10] */
  255. #define GET_VCC(cr, socknr) \
  256. ((((cr) >> 2) >> ((socknr) * 8)) & 3)
  257. /* VS bits at [0:1]/[3:2] */
  258. #define GET_VS(sr, socknr) \
  259. (((sr) >> (2 * (socknr))) & 3)
  260. /* reset bits at [7]/[15] */
  261. #define GET_RESET(cr, socknr) \
  262. ((cr) & (1 << (7 + (8 * (socknr)))))
  263. static int db1x_pcmcia_get_status(struct pcmcia_socket *skt,
  264. unsigned int *value)
  265. {
  266. struct db1x_pcmcia_sock *sock = to_db1x_socket(skt);
  267. unsigned short cr, sr;
  268. unsigned int status;
  269. status = db1x_card_inserted(sock) ? SS_DETECT : 0;
  270. cr = bcsr_read(BCSR_PCMCIA);
  271. sr = bcsr_read(BCSR_STATUS);
  272. /* PB1100/PB1500: voltage key bits are at [5:4] */
  273. if (sock->board_type == BOARD_TYPE_PB1100)
  274. sr >>= 4;
  275. /* determine card type */
  276. switch (GET_VS(sr, sock->nr)) {
  277. case 0:
  278. case 2:
  279. status |= SS_3VCARD; /* 3V card */
  280. case 3:
  281. break; /* 5V card: set nothing */
  282. default:
  283. status |= SS_XVCARD; /* treated as unsupported in core */
  284. }
  285. /* if Vcc is not zero, we have applied power to a card */
  286. status |= GET_VCC(cr, sock->nr) ? SS_POWERON : 0;
  287. /* reset de-asserted? then we're ready */
  288. status |= (GET_RESET(cr, sock->nr)) ? SS_READY : SS_RESET;
  289. *value = status;
  290. return 0;
  291. }
  292. static int db1x_pcmcia_sock_init(struct pcmcia_socket *skt)
  293. {
  294. return 0;
  295. }
  296. static int db1x_pcmcia_sock_suspend(struct pcmcia_socket *skt)
  297. {
  298. return 0;
  299. }
  300. static int au1x00_pcmcia_set_io_map(struct pcmcia_socket *skt,
  301. struct pccard_io_map *map)
  302. {
  303. struct db1x_pcmcia_sock *sock = to_db1x_socket(skt);
  304. map->start = (u32)sock->virt_io;
  305. map->stop = map->start + IO_MAP_SIZE;
  306. return 0;
  307. }
  308. static int au1x00_pcmcia_set_mem_map(struct pcmcia_socket *skt,
  309. struct pccard_mem_map *map)
  310. {
  311. struct db1x_pcmcia_sock *sock = to_db1x_socket(skt);
  312. if (map->flags & MAP_ATTRIB)
  313. map->static_start = sock->phys_attr + map->card_start;
  314. else
  315. map->static_start = sock->phys_mem + map->card_start;
  316. return 0;
  317. }
  318. static struct pccard_operations db1x_pcmcia_operations = {
  319. .init = db1x_pcmcia_sock_init,
  320. .suspend = db1x_pcmcia_sock_suspend,
  321. .get_status = db1x_pcmcia_get_status,
  322. .set_socket = db1x_pcmcia_configure,
  323. .set_io_map = au1x00_pcmcia_set_io_map,
  324. .set_mem_map = au1x00_pcmcia_set_mem_map,
  325. };
  326. static int __devinit db1x_pcmcia_socket_probe(struct platform_device *pdev)
  327. {
  328. struct db1x_pcmcia_sock *sock;
  329. struct resource *r;
  330. int ret, bid;
  331. sock = kzalloc(sizeof(struct db1x_pcmcia_sock), GFP_KERNEL);
  332. if (!sock)
  333. return -ENOMEM;
  334. sock->nr = pdev->id;
  335. bid = BCSR_WHOAMI_BOARD(bcsr_read(BCSR_WHOAMI));
  336. switch (bid) {
  337. case BCSR_WHOAMI_PB1500:
  338. case BCSR_WHOAMI_PB1500R2:
  339. case BCSR_WHOAMI_PB1100:
  340. sock->board_type = BOARD_TYPE_PB1100;
  341. break;
  342. case BCSR_WHOAMI_DB1000 ... BCSR_WHOAMI_PB1550_SDR:
  343. sock->board_type = BOARD_TYPE_DEFAULT;
  344. break;
  345. case BCSR_WHOAMI_PB1200 ... BCSR_WHOAMI_DB1200:
  346. sock->board_type = BOARD_TYPE_DB1200;
  347. break;
  348. default:
  349. printk(KERN_INFO "db1xxx-ss: unknown board %d!\n", bid);
  350. ret = -ENODEV;
  351. goto out0;
  352. };
  353. /*
  354. * gather resources necessary and optional nice-to-haves to
  355. * operate a socket:
  356. * This includes IRQs for Carddetection/ejection, the card
  357. * itself and optional status change detection.
  358. * Also, the memory areas covered by a socket. For these
  359. * we require the real 36bit addresses (see the au1000.h
  360. * header for more information).
  361. */
  362. /* card: irq assigned to the card itself. */
  363. r = platform_get_resource_byname(pdev, IORESOURCE_IRQ, "card");
  364. sock->card_irq = r ? r->start : 0;
  365. /* insert: irq which triggers on card insertion/ejection */
  366. r = platform_get_resource_byname(pdev, IORESOURCE_IRQ, "insert");
  367. sock->insert_irq = r ? r->start : -1;
  368. /* stschg: irq which trigger on card status change (optional) */
  369. r = platform_get_resource_byname(pdev, IORESOURCE_IRQ, "stschg");
  370. sock->stschg_irq = r ? r->start : -1;
  371. /* eject: irq which triggers on ejection (DB1200/PB1200 only) */
  372. r = platform_get_resource_byname(pdev, IORESOURCE_IRQ, "eject");
  373. sock->eject_irq = r ? r->start : -1;
  374. ret = -ENODEV;
  375. /* 36bit PCMCIA Attribute area address */
  376. r = platform_get_resource_byname(pdev, IORESOURCE_MEM, "pcmcia-attr");
  377. if (!r) {
  378. printk(KERN_ERR "pcmcia%d has no 'pseudo-attr' resource!\n",
  379. sock->nr);
  380. goto out0;
  381. }
  382. sock->phys_attr = r->start;
  383. /* 36bit PCMCIA Memory area address */
  384. r = platform_get_resource_byname(pdev, IORESOURCE_MEM, "pcmcia-mem");
  385. if (!r) {
  386. printk(KERN_ERR "pcmcia%d has no 'pseudo-mem' resource!\n",
  387. sock->nr);
  388. goto out0;
  389. }
  390. sock->phys_mem = r->start;
  391. /* 36bit PCMCIA IO area address */
  392. r = platform_get_resource_byname(pdev, IORESOURCE_MEM, "pcmcia-io");
  393. if (!r) {
  394. printk(KERN_ERR "pcmcia%d has no 'pseudo-io' resource!\n",
  395. sock->nr);
  396. goto out0;
  397. }
  398. sock->phys_io = r->start;
  399. /*
  400. * PCMCIA client drivers use the inb/outb macros to access
  401. * the IO registers. Since mips_io_port_base is added
  402. * to the access address of the mips implementation of
  403. * inb/outb, we need to subtract it here because we want
  404. * to access the I/O or MEM address directly, without
  405. * going through this "mips_io_port_base" mechanism.
  406. */
  407. sock->virt_io = (void *)(ioremap(sock->phys_io, IO_MAP_SIZE) -
  408. mips_io_port_base);
  409. if (!sock->virt_io) {
  410. printk(KERN_ERR "pcmcia%d: cannot remap IO area\n",
  411. sock->nr);
  412. ret = -ENOMEM;
  413. goto out0;
  414. }
  415. sock->socket.ops = &db1x_pcmcia_operations;
  416. sock->socket.owner = THIS_MODULE;
  417. sock->socket.pci_irq = sock->card_irq;
  418. sock->socket.features = SS_CAP_STATIC_MAP | SS_CAP_PCCARD;
  419. sock->socket.map_size = MEM_MAP_SIZE;
  420. sock->socket.io_offset = (unsigned long)sock->virt_io;
  421. sock->socket.dev.parent = &pdev->dev;
  422. sock->socket.resource_ops = &pccard_static_ops;
  423. platform_set_drvdata(pdev, sock);
  424. ret = db1x_pcmcia_setup_irqs(sock);
  425. if (ret) {
  426. printk(KERN_ERR "pcmcia%d cannot setup interrupts\n",
  427. sock->nr);
  428. goto out1;
  429. }
  430. set_stschg(sock, 0);
  431. ret = pcmcia_register_socket(&sock->socket);
  432. if (ret) {
  433. printk(KERN_ERR "pcmcia%d failed to register\n", sock->nr);
  434. goto out2;
  435. }
  436. printk(KERN_INFO "Alchemy Db/Pb1xxx pcmcia%d @ io/attr/mem %09llx"
  437. "(%p) %09llx %09llx card/insert/stschg/eject irqs @ %d "
  438. "%d %d %d\n", sock->nr, sock->phys_io, sock->virt_io,
  439. sock->phys_attr, sock->phys_mem, sock->card_irq,
  440. sock->insert_irq, sock->stschg_irq, sock->eject_irq);
  441. return 0;
  442. out2:
  443. db1x_pcmcia_free_irqs(sock);
  444. out1:
  445. iounmap((void *)(sock->virt_io + (u32)mips_io_port_base));
  446. out0:
  447. kfree(sock);
  448. return ret;
  449. }
  450. static int __devexit db1x_pcmcia_socket_remove(struct platform_device *pdev)
  451. {
  452. struct db1x_pcmcia_sock *sock = platform_get_drvdata(pdev);
  453. db1x_pcmcia_free_irqs(sock);
  454. pcmcia_unregister_socket(&sock->socket);
  455. iounmap((void *)(sock->virt_io + (u32)mips_io_port_base));
  456. kfree(sock);
  457. return 0;
  458. }
  459. static struct platform_driver db1x_pcmcia_socket_driver = {
  460. .driver = {
  461. .name = "db1xxx_pcmcia",
  462. .owner = THIS_MODULE,
  463. },
  464. .probe = db1x_pcmcia_socket_probe,
  465. .remove = __devexit_p(db1x_pcmcia_socket_remove),
  466. };
  467. int __init db1x_pcmcia_socket_load(void)
  468. {
  469. return platform_driver_register(&db1x_pcmcia_socket_driver);
  470. }
  471. void __exit db1x_pcmcia_socket_unload(void)
  472. {
  473. platform_driver_unregister(&db1x_pcmcia_socket_driver);
  474. }
  475. module_init(db1x_pcmcia_socket_load);
  476. module_exit(db1x_pcmcia_socket_unload);
  477. MODULE_LICENSE("GPL");
  478. MODULE_DESCRIPTION("PCMCIA Socket Services for Alchemy Db/Pb1x00 boards");
  479. MODULE_AUTHOR("Manuel Lauss");