floppy_64.h 19 KB

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  1. /* floppy.h: Sparc specific parts of the Floppy driver.
  2. *
  3. * Copyright (C) 1996, 2007, 2008 David S. Miller (davem@davemloft.net)
  4. * Copyright (C) 1997 Jakub Jelinek (jj@sunsite.mff.cuni.cz)
  5. *
  6. * Ultra/PCI support added: Sep 1997 Eddie C. Dost (ecd@skynet.be)
  7. */
  8. #ifndef __ASM_SPARC64_FLOPPY_H
  9. #define __ASM_SPARC64_FLOPPY_H
  10. #include <linux/of.h>
  11. #include <linux/of_device.h>
  12. #include <linux/dma-mapping.h>
  13. #include <asm/auxio.h>
  14. /*
  15. * Define this to enable exchanging drive 0 and 1 if only drive 1 is
  16. * probed on PCI machines.
  17. */
  18. #undef PCI_FDC_SWAP_DRIVES
  19. /* References:
  20. * 1) Netbsd Sun floppy driver.
  21. * 2) NCR 82077 controller manual
  22. * 3) Intel 82077 controller manual
  23. */
  24. struct sun_flpy_controller {
  25. volatile unsigned char status1_82077; /* Auxiliary Status reg. 1 */
  26. volatile unsigned char status2_82077; /* Auxiliary Status reg. 2 */
  27. volatile unsigned char dor_82077; /* Digital Output reg. */
  28. volatile unsigned char tapectl_82077; /* Tape Control reg */
  29. volatile unsigned char status_82077; /* Main Status Register. */
  30. #define drs_82077 status_82077 /* Digital Rate Select reg. */
  31. volatile unsigned char data_82077; /* Data fifo. */
  32. volatile unsigned char ___unused;
  33. volatile unsigned char dir_82077; /* Digital Input reg. */
  34. #define dcr_82077 dir_82077 /* Config Control reg. */
  35. };
  36. /* You'll only ever find one controller on an Ultra anyways. */
  37. static struct sun_flpy_controller *sun_fdc = (struct sun_flpy_controller *)-1;
  38. unsigned long fdc_status;
  39. static struct platform_device *floppy_op = NULL;
  40. struct sun_floppy_ops {
  41. unsigned char (*fd_inb) (unsigned long port);
  42. void (*fd_outb) (unsigned char value, unsigned long port);
  43. void (*fd_enable_dma) (void);
  44. void (*fd_disable_dma) (void);
  45. void (*fd_set_dma_mode) (int);
  46. void (*fd_set_dma_addr) (char *);
  47. void (*fd_set_dma_count) (int);
  48. unsigned int (*get_dma_residue) (void);
  49. int (*fd_request_irq) (void);
  50. void (*fd_free_irq) (void);
  51. int (*fd_eject) (int);
  52. };
  53. static struct sun_floppy_ops sun_fdops;
  54. #define fd_inb(port) sun_fdops.fd_inb(port)
  55. #define fd_outb(value,port) sun_fdops.fd_outb(value,port)
  56. #define fd_enable_dma() sun_fdops.fd_enable_dma()
  57. #define fd_disable_dma() sun_fdops.fd_disable_dma()
  58. #define fd_request_dma() (0) /* nothing... */
  59. #define fd_free_dma() /* nothing... */
  60. #define fd_clear_dma_ff() /* nothing... */
  61. #define fd_set_dma_mode(mode) sun_fdops.fd_set_dma_mode(mode)
  62. #define fd_set_dma_addr(addr) sun_fdops.fd_set_dma_addr(addr)
  63. #define fd_set_dma_count(count) sun_fdops.fd_set_dma_count(count)
  64. #define get_dma_residue(x) sun_fdops.get_dma_residue()
  65. #define fd_cacheflush(addr, size) /* nothing... */
  66. #define fd_request_irq() sun_fdops.fd_request_irq()
  67. #define fd_free_irq() sun_fdops.fd_free_irq()
  68. #define fd_eject(drive) sun_fdops.fd_eject(drive)
  69. /* Super paranoid... */
  70. #undef HAVE_DISABLE_HLT
  71. static int sun_floppy_types[2] = { 0, 0 };
  72. /* Here is where we catch the floppy driver trying to initialize,
  73. * therefore this is where we call the PROM device tree probing
  74. * routine etc. on the Sparc.
  75. */
  76. #define FLOPPY0_TYPE sun_floppy_init()
  77. #define FLOPPY1_TYPE sun_floppy_types[1]
  78. #define FDC1 ((unsigned long)sun_fdc)
  79. #define N_FDC 1
  80. #define N_DRIVE 8
  81. /* No 64k boundary crossing problems on the Sparc. */
  82. #define CROSS_64KB(a,s) (0)
  83. static unsigned char sun_82077_fd_inb(unsigned long port)
  84. {
  85. udelay(5);
  86. switch(port & 7) {
  87. default:
  88. printk("floppy: Asked to read unknown port %lx\n", port);
  89. panic("floppy: Port bolixed.");
  90. case 4: /* FD_STATUS */
  91. return sbus_readb(&sun_fdc->status_82077) & ~STATUS_DMA;
  92. case 5: /* FD_DATA */
  93. return sbus_readb(&sun_fdc->data_82077);
  94. case 7: /* FD_DIR */
  95. /* XXX: Is DCL on 0x80 in sun4m? */
  96. return sbus_readb(&sun_fdc->dir_82077);
  97. }
  98. panic("sun_82072_fd_inb: How did I get here?");
  99. }
  100. static void sun_82077_fd_outb(unsigned char value, unsigned long port)
  101. {
  102. udelay(5);
  103. switch(port & 7) {
  104. default:
  105. printk("floppy: Asked to write to unknown port %lx\n", port);
  106. panic("floppy: Port bolixed.");
  107. case 2: /* FD_DOR */
  108. /* Happily, the 82077 has a real DOR register. */
  109. sbus_writeb(value, &sun_fdc->dor_82077);
  110. break;
  111. case 5: /* FD_DATA */
  112. sbus_writeb(value, &sun_fdc->data_82077);
  113. break;
  114. case 7: /* FD_DCR */
  115. sbus_writeb(value, &sun_fdc->dcr_82077);
  116. break;
  117. case 4: /* FD_STATUS */
  118. sbus_writeb(value, &sun_fdc->status_82077);
  119. break;
  120. }
  121. return;
  122. }
  123. /* For pseudo-dma (Sun floppy drives have no real DMA available to
  124. * them so we must eat the data fifo bytes directly ourselves) we have
  125. * three state variables. doing_pdma tells our inline low-level
  126. * assembly floppy interrupt entry point whether it should sit and eat
  127. * bytes from the fifo or just transfer control up to the higher level
  128. * floppy interrupt c-code. I tried very hard but I could not get the
  129. * pseudo-dma to work in c-code without getting many overruns and
  130. * underruns. If non-zero, doing_pdma encodes the direction of
  131. * the transfer for debugging. 1=read 2=write
  132. */
  133. unsigned char *pdma_vaddr;
  134. unsigned long pdma_size;
  135. volatile int doing_pdma = 0;
  136. /* This is software state */
  137. char *pdma_base = NULL;
  138. unsigned long pdma_areasize;
  139. /* Common routines to all controller types on the Sparc. */
  140. static void sun_fd_disable_dma(void)
  141. {
  142. doing_pdma = 0;
  143. pdma_base = NULL;
  144. }
  145. static void sun_fd_set_dma_mode(int mode)
  146. {
  147. switch(mode) {
  148. case DMA_MODE_READ:
  149. doing_pdma = 1;
  150. break;
  151. case DMA_MODE_WRITE:
  152. doing_pdma = 2;
  153. break;
  154. default:
  155. printk("Unknown dma mode %d\n", mode);
  156. panic("floppy: Giving up...");
  157. }
  158. }
  159. static void sun_fd_set_dma_addr(char *buffer)
  160. {
  161. pdma_vaddr = buffer;
  162. }
  163. static void sun_fd_set_dma_count(int length)
  164. {
  165. pdma_size = length;
  166. }
  167. static void sun_fd_enable_dma(void)
  168. {
  169. pdma_vaddr = pdma_vaddr;
  170. pdma_base = pdma_vaddr;
  171. pdma_areasize = pdma_size;
  172. }
  173. irqreturn_t sparc_floppy_irq(int irq, void *dev_cookie)
  174. {
  175. if (likely(doing_pdma)) {
  176. void __iomem *stat = (void __iomem *) fdc_status;
  177. unsigned char *vaddr = pdma_vaddr;
  178. unsigned long size = pdma_size;
  179. u8 val;
  180. while (size) {
  181. val = readb(stat);
  182. if (unlikely(!(val & 0x80))) {
  183. pdma_vaddr = vaddr;
  184. pdma_size = size;
  185. return IRQ_HANDLED;
  186. }
  187. if (unlikely(!(val & 0x20))) {
  188. pdma_vaddr = vaddr;
  189. pdma_size = size;
  190. doing_pdma = 0;
  191. goto main_interrupt;
  192. }
  193. if (val & 0x40) {
  194. /* read */
  195. *vaddr++ = readb(stat + 1);
  196. } else {
  197. unsigned char data = *vaddr++;
  198. /* write */
  199. writeb(data, stat + 1);
  200. }
  201. size--;
  202. }
  203. pdma_vaddr = vaddr;
  204. pdma_size = size;
  205. /* Send Terminal Count pulse to floppy controller. */
  206. val = readb(auxio_register);
  207. val |= AUXIO_AUX1_FTCNT;
  208. writeb(val, auxio_register);
  209. val &= ~AUXIO_AUX1_FTCNT;
  210. writeb(val, auxio_register);
  211. doing_pdma = 0;
  212. }
  213. main_interrupt:
  214. return floppy_interrupt(irq, dev_cookie);
  215. }
  216. static int sun_fd_request_irq(void)
  217. {
  218. static int once = 0;
  219. int error;
  220. if(!once) {
  221. once = 1;
  222. error = request_irq(FLOPPY_IRQ, sparc_floppy_irq,
  223. IRQF_DISABLED, "floppy", NULL);
  224. return ((error == 0) ? 0 : -1);
  225. }
  226. return 0;
  227. }
  228. static void sun_fd_free_irq(void)
  229. {
  230. }
  231. static unsigned int sun_get_dma_residue(void)
  232. {
  233. /* XXX This isn't really correct. XXX */
  234. return 0;
  235. }
  236. static int sun_fd_eject(int drive)
  237. {
  238. set_dor(0x00, 0xff, 0x90);
  239. udelay(500);
  240. set_dor(0x00, 0x6f, 0x00);
  241. udelay(500);
  242. return 0;
  243. }
  244. #include <asm/ebus_dma.h>
  245. #include <asm/ns87303.h>
  246. static struct ebus_dma_info sun_pci_fd_ebus_dma;
  247. static struct device *sun_floppy_dev;
  248. static int sun_pci_broken_drive = -1;
  249. struct sun_pci_dma_op {
  250. unsigned int addr;
  251. int len;
  252. int direction;
  253. char *buf;
  254. };
  255. static struct sun_pci_dma_op sun_pci_dma_current = { -1U, 0, 0, NULL};
  256. static struct sun_pci_dma_op sun_pci_dma_pending = { -1U, 0, 0, NULL};
  257. extern irqreturn_t floppy_interrupt(int irq, void *dev_id);
  258. static unsigned char sun_pci_fd_inb(unsigned long port)
  259. {
  260. udelay(5);
  261. return inb(port);
  262. }
  263. static void sun_pci_fd_outb(unsigned char val, unsigned long port)
  264. {
  265. udelay(5);
  266. outb(val, port);
  267. }
  268. static void sun_pci_fd_broken_outb(unsigned char val, unsigned long port)
  269. {
  270. udelay(5);
  271. /*
  272. * XXX: Due to SUN's broken floppy connector on AX and AXi
  273. * we need to turn on MOTOR_0 also, if the floppy is
  274. * jumpered to DS1 (like most PC floppies are). I hope
  275. * this does not hurt correct hardware like the AXmp.
  276. * (Eddie, Sep 12 1998).
  277. */
  278. if (port == ((unsigned long)sun_fdc) + 2) {
  279. if (((val & 0x03) == sun_pci_broken_drive) && (val & 0x20)) {
  280. val |= 0x10;
  281. }
  282. }
  283. outb(val, port);
  284. }
  285. #ifdef PCI_FDC_SWAP_DRIVES
  286. static void sun_pci_fd_lde_broken_outb(unsigned char val, unsigned long port)
  287. {
  288. udelay(5);
  289. /*
  290. * XXX: Due to SUN's broken floppy connector on AX and AXi
  291. * we need to turn on MOTOR_0 also, if the floppy is
  292. * jumpered to DS1 (like most PC floppies are). I hope
  293. * this does not hurt correct hardware like the AXmp.
  294. * (Eddie, Sep 12 1998).
  295. */
  296. if (port == ((unsigned long)sun_fdc) + 2) {
  297. if (((val & 0x03) == sun_pci_broken_drive) && (val & 0x10)) {
  298. val &= ~(0x03);
  299. val |= 0x21;
  300. }
  301. }
  302. outb(val, port);
  303. }
  304. #endif /* PCI_FDC_SWAP_DRIVES */
  305. static void sun_pci_fd_enable_dma(void)
  306. {
  307. BUG_ON((NULL == sun_pci_dma_pending.buf) ||
  308. (0 == sun_pci_dma_pending.len) ||
  309. (0 == sun_pci_dma_pending.direction));
  310. sun_pci_dma_current.buf = sun_pci_dma_pending.buf;
  311. sun_pci_dma_current.len = sun_pci_dma_pending.len;
  312. sun_pci_dma_current.direction = sun_pci_dma_pending.direction;
  313. sun_pci_dma_pending.buf = NULL;
  314. sun_pci_dma_pending.len = 0;
  315. sun_pci_dma_pending.direction = 0;
  316. sun_pci_dma_pending.addr = -1U;
  317. sun_pci_dma_current.addr =
  318. dma_map_single(sun_floppy_dev,
  319. sun_pci_dma_current.buf,
  320. sun_pci_dma_current.len,
  321. sun_pci_dma_current.direction);
  322. ebus_dma_enable(&sun_pci_fd_ebus_dma, 1);
  323. if (ebus_dma_request(&sun_pci_fd_ebus_dma,
  324. sun_pci_dma_current.addr,
  325. sun_pci_dma_current.len))
  326. BUG();
  327. }
  328. static void sun_pci_fd_disable_dma(void)
  329. {
  330. ebus_dma_enable(&sun_pci_fd_ebus_dma, 0);
  331. if (sun_pci_dma_current.addr != -1U)
  332. dma_unmap_single(sun_floppy_dev,
  333. sun_pci_dma_current.addr,
  334. sun_pci_dma_current.len,
  335. sun_pci_dma_current.direction);
  336. sun_pci_dma_current.addr = -1U;
  337. }
  338. static void sun_pci_fd_set_dma_mode(int mode)
  339. {
  340. if (mode == DMA_MODE_WRITE)
  341. sun_pci_dma_pending.direction = DMA_TO_DEVICE;
  342. else
  343. sun_pci_dma_pending.direction = DMA_FROM_DEVICE;
  344. ebus_dma_prepare(&sun_pci_fd_ebus_dma, mode != DMA_MODE_WRITE);
  345. }
  346. static void sun_pci_fd_set_dma_count(int length)
  347. {
  348. sun_pci_dma_pending.len = length;
  349. }
  350. static void sun_pci_fd_set_dma_addr(char *buffer)
  351. {
  352. sun_pci_dma_pending.buf = buffer;
  353. }
  354. static unsigned int sun_pci_get_dma_residue(void)
  355. {
  356. return ebus_dma_residue(&sun_pci_fd_ebus_dma);
  357. }
  358. static int sun_pci_fd_request_irq(void)
  359. {
  360. return ebus_dma_irq_enable(&sun_pci_fd_ebus_dma, 1);
  361. }
  362. static void sun_pci_fd_free_irq(void)
  363. {
  364. ebus_dma_irq_enable(&sun_pci_fd_ebus_dma, 0);
  365. }
  366. static int sun_pci_fd_eject(int drive)
  367. {
  368. return -EINVAL;
  369. }
  370. void sun_pci_fd_dma_callback(struct ebus_dma_info *p, int event, void *cookie)
  371. {
  372. floppy_interrupt(0, NULL);
  373. }
  374. /*
  375. * Floppy probing, we'd like to use /dev/fd0 for a single Floppy on PCI,
  376. * even if this is configured using DS1, thus looks like /dev/fd1 with
  377. * the cabling used in Ultras.
  378. */
  379. #define DOR (port + 2)
  380. #define MSR (port + 4)
  381. #define FIFO (port + 5)
  382. static void sun_pci_fd_out_byte(unsigned long port, unsigned char val,
  383. unsigned long reg)
  384. {
  385. unsigned char status;
  386. int timeout = 1000;
  387. while (!((status = inb(MSR)) & 0x80) && --timeout)
  388. udelay(100);
  389. outb(val, reg);
  390. }
  391. static unsigned char sun_pci_fd_sensei(unsigned long port)
  392. {
  393. unsigned char result[2] = { 0x70, 0x00 };
  394. unsigned char status;
  395. int i = 0;
  396. sun_pci_fd_out_byte(port, 0x08, FIFO);
  397. do {
  398. int timeout = 1000;
  399. while (!((status = inb(MSR)) & 0x80) && --timeout)
  400. udelay(100);
  401. if (!timeout)
  402. break;
  403. if ((status & 0xf0) == 0xd0)
  404. result[i++] = inb(FIFO);
  405. else
  406. break;
  407. } while (i < 2);
  408. return result[0];
  409. }
  410. static void sun_pci_fd_reset(unsigned long port)
  411. {
  412. unsigned char mask = 0x00;
  413. unsigned char status;
  414. int timeout = 10000;
  415. outb(0x80, MSR);
  416. do {
  417. status = sun_pci_fd_sensei(port);
  418. if ((status & 0xc0) == 0xc0)
  419. mask |= 1 << (status & 0x03);
  420. else
  421. udelay(100);
  422. } while ((mask != 0x0f) && --timeout);
  423. }
  424. static int sun_pci_fd_test_drive(unsigned long port, int drive)
  425. {
  426. unsigned char status, data;
  427. int timeout = 1000;
  428. int ready;
  429. sun_pci_fd_reset(port);
  430. data = (0x10 << drive) | 0x0c | drive;
  431. sun_pci_fd_out_byte(port, data, DOR);
  432. sun_pci_fd_out_byte(port, 0x07, FIFO);
  433. sun_pci_fd_out_byte(port, drive & 0x03, FIFO);
  434. do {
  435. udelay(100);
  436. status = sun_pci_fd_sensei(port);
  437. } while (((status & 0xc0) == 0x80) && --timeout);
  438. if (!timeout)
  439. ready = 0;
  440. else
  441. ready = (status & 0x10) ? 0 : 1;
  442. sun_pci_fd_reset(port);
  443. return ready;
  444. }
  445. #undef FIFO
  446. #undef MSR
  447. #undef DOR
  448. static int __init ebus_fdthree_p(struct device_node *dp)
  449. {
  450. if (!strcmp(dp->name, "fdthree"))
  451. return 1;
  452. if (!strcmp(dp->name, "floppy")) {
  453. const char *compat;
  454. compat = of_get_property(dp, "compatible", NULL);
  455. if (compat && !strcmp(compat, "fdthree"))
  456. return 1;
  457. }
  458. return 0;
  459. }
  460. static unsigned long __init sun_floppy_init(void)
  461. {
  462. static int initialized = 0;
  463. struct device_node *dp;
  464. struct platform_device *op;
  465. const char *prop;
  466. char state[128];
  467. if (initialized)
  468. return sun_floppy_types[0];
  469. initialized = 1;
  470. op = NULL;
  471. for_each_node_by_name(dp, "SUNW,fdtwo") {
  472. if (strcmp(dp->parent->name, "sbus"))
  473. continue;
  474. op = of_find_device_by_node(dp);
  475. if (op)
  476. break;
  477. }
  478. if (op) {
  479. floppy_op = op;
  480. FLOPPY_IRQ = op->archdata.irqs[0];
  481. } else {
  482. struct device_node *ebus_dp;
  483. void __iomem *auxio_reg;
  484. const char *state_prop;
  485. unsigned long config;
  486. dp = NULL;
  487. for_each_node_by_name(ebus_dp, "ebus") {
  488. for (dp = ebus_dp->child; dp; dp = dp->sibling) {
  489. if (ebus_fdthree_p(dp))
  490. goto found_fdthree;
  491. }
  492. }
  493. found_fdthree:
  494. if (!dp)
  495. return 0;
  496. op = of_find_device_by_node(dp);
  497. if (!op)
  498. return 0;
  499. state_prop = of_get_property(op->dev.of_node, "status", NULL);
  500. if (state_prop && !strncmp(state_prop, "disabled", 8))
  501. return 0;
  502. FLOPPY_IRQ = op->archdata.irqs[0];
  503. /* Make sure the high density bit is set, some systems
  504. * (most notably Ultra5/Ultra10) come up with it clear.
  505. */
  506. auxio_reg = (void __iomem *) op->resource[2].start;
  507. writel(readl(auxio_reg)|0x2, auxio_reg);
  508. sun_floppy_dev = &op->dev;
  509. spin_lock_init(&sun_pci_fd_ebus_dma.lock);
  510. /* XXX ioremap */
  511. sun_pci_fd_ebus_dma.regs = (void __iomem *)
  512. op->resource[1].start;
  513. if (!sun_pci_fd_ebus_dma.regs)
  514. return 0;
  515. sun_pci_fd_ebus_dma.flags = (EBUS_DMA_FLAG_USE_EBDMA_HANDLER |
  516. EBUS_DMA_FLAG_TCI_DISABLE);
  517. sun_pci_fd_ebus_dma.callback = sun_pci_fd_dma_callback;
  518. sun_pci_fd_ebus_dma.client_cookie = NULL;
  519. sun_pci_fd_ebus_dma.irq = FLOPPY_IRQ;
  520. strcpy(sun_pci_fd_ebus_dma.name, "floppy");
  521. if (ebus_dma_register(&sun_pci_fd_ebus_dma))
  522. return 0;
  523. /* XXX ioremap */
  524. sun_fdc = (struct sun_flpy_controller *) op->resource[0].start;
  525. sun_fdops.fd_inb = sun_pci_fd_inb;
  526. sun_fdops.fd_outb = sun_pci_fd_outb;
  527. can_use_virtual_dma = use_virtual_dma = 0;
  528. sun_fdops.fd_enable_dma = sun_pci_fd_enable_dma;
  529. sun_fdops.fd_disable_dma = sun_pci_fd_disable_dma;
  530. sun_fdops.fd_set_dma_mode = sun_pci_fd_set_dma_mode;
  531. sun_fdops.fd_set_dma_addr = sun_pci_fd_set_dma_addr;
  532. sun_fdops.fd_set_dma_count = sun_pci_fd_set_dma_count;
  533. sun_fdops.get_dma_residue = sun_pci_get_dma_residue;
  534. sun_fdops.fd_request_irq = sun_pci_fd_request_irq;
  535. sun_fdops.fd_free_irq = sun_pci_fd_free_irq;
  536. sun_fdops.fd_eject = sun_pci_fd_eject;
  537. fdc_status = (unsigned long) &sun_fdc->status_82077;
  538. /*
  539. * XXX: Find out on which machines this is really needed.
  540. */
  541. if (1) {
  542. sun_pci_broken_drive = 1;
  543. sun_fdops.fd_outb = sun_pci_fd_broken_outb;
  544. }
  545. allowed_drive_mask = 0;
  546. if (sun_pci_fd_test_drive((unsigned long)sun_fdc, 0))
  547. sun_floppy_types[0] = 4;
  548. if (sun_pci_fd_test_drive((unsigned long)sun_fdc, 1))
  549. sun_floppy_types[1] = 4;
  550. /*
  551. * Find NS87303 SuperIO config registers (through ecpp).
  552. */
  553. config = 0;
  554. for (dp = ebus_dp->child; dp; dp = dp->sibling) {
  555. if (!strcmp(dp->name, "ecpp")) {
  556. struct platform_device *ecpp_op;
  557. ecpp_op = of_find_device_by_node(dp);
  558. if (ecpp_op)
  559. config = ecpp_op->resource[1].start;
  560. goto config_done;
  561. }
  562. }
  563. config_done:
  564. /*
  565. * Sanity check, is this really the NS87303?
  566. */
  567. switch (config & 0x3ff) {
  568. case 0x02e:
  569. case 0x15c:
  570. case 0x26e:
  571. case 0x398:
  572. break;
  573. default:
  574. config = 0;
  575. }
  576. if (!config)
  577. return sun_floppy_types[0];
  578. /* Enable PC-AT mode. */
  579. ns87303_modify(config, ASC, 0, 0xc0);
  580. #ifdef PCI_FDC_SWAP_DRIVES
  581. /*
  582. * If only Floppy 1 is present, swap drives.
  583. */
  584. if (!sun_floppy_types[0] && sun_floppy_types[1]) {
  585. /*
  586. * Set the drive exchange bit in FCR on NS87303,
  587. * make sure other bits are sane before doing so.
  588. */
  589. ns87303_modify(config, FER, FER_EDM, 0);
  590. ns87303_modify(config, ASC, ASC_DRV2_SEL, 0);
  591. ns87303_modify(config, FCR, 0, FCR_LDE);
  592. config = sun_floppy_types[0];
  593. sun_floppy_types[0] = sun_floppy_types[1];
  594. sun_floppy_types[1] = config;
  595. if (sun_pci_broken_drive != -1) {
  596. sun_pci_broken_drive = 1 - sun_pci_broken_drive;
  597. sun_fdops.fd_outb = sun_pci_fd_lde_broken_outb;
  598. }
  599. }
  600. #endif /* PCI_FDC_SWAP_DRIVES */
  601. return sun_floppy_types[0];
  602. }
  603. prop = of_get_property(op->dev.of_node, "status", NULL);
  604. if (prop && !strncmp(state, "disabled", 8))
  605. return 0;
  606. /*
  607. * We cannot do of_ioremap here: it does request_region,
  608. * which the generic floppy driver tries to do once again.
  609. * But we must use the sdev resource values as they have
  610. * had parent ranges applied.
  611. */
  612. sun_fdc = (struct sun_flpy_controller *)
  613. (op->resource[0].start +
  614. ((op->resource[0].flags & 0x1ffUL) << 32UL));
  615. /* Last minute sanity check... */
  616. if (sbus_readb(&sun_fdc->status1_82077) == 0xff) {
  617. sun_fdc = (struct sun_flpy_controller *)-1;
  618. return 0;
  619. }
  620. sun_fdops.fd_inb = sun_82077_fd_inb;
  621. sun_fdops.fd_outb = sun_82077_fd_outb;
  622. can_use_virtual_dma = use_virtual_dma = 1;
  623. sun_fdops.fd_enable_dma = sun_fd_enable_dma;
  624. sun_fdops.fd_disable_dma = sun_fd_disable_dma;
  625. sun_fdops.fd_set_dma_mode = sun_fd_set_dma_mode;
  626. sun_fdops.fd_set_dma_addr = sun_fd_set_dma_addr;
  627. sun_fdops.fd_set_dma_count = sun_fd_set_dma_count;
  628. sun_fdops.get_dma_residue = sun_get_dma_residue;
  629. sun_fdops.fd_request_irq = sun_fd_request_irq;
  630. sun_fdops.fd_free_irq = sun_fd_free_irq;
  631. sun_fdops.fd_eject = sun_fd_eject;
  632. fdc_status = (unsigned long) &sun_fdc->status_82077;
  633. /* Success... */
  634. allowed_drive_mask = 0x01;
  635. sun_floppy_types[0] = 4;
  636. sun_floppy_types[1] = 0;
  637. return sun_floppy_types[0];
  638. }
  639. #define EXTRA_FLOPPY_PARAMS
  640. static DEFINE_SPINLOCK(dma_spin_lock);
  641. #define claim_dma_lock() \
  642. ({ unsigned long flags; \
  643. spin_lock_irqsave(&dma_spin_lock, flags); \
  644. flags; \
  645. })
  646. #define release_dma_lock(__flags) \
  647. spin_unlock_irqrestore(&dma_spin_lock, __flags);
  648. #endif /* !(__ASM_SPARC64_FLOPPY_H) */