2 * linux/drivers/block/floppy.c
4 * Copyright (C) 1991, 1992 Linus Torvalds
5 * Copyright (C) 1993, 1994 Alain Knaff
6 * Copyright (C) 1998 Alan Cox
10 * 02.12.91 - Changed to static variables to indicate need for reset
11 * and recalibrate. This makes some things easier (output_byte reset
12 * checking etc), and means less interrupt jumping in case of errors,
13 * so the code is hopefully easier to understand.
17 * This file is certainly a mess. I've tried my best to get it working,
18 * but I don't like programming floppies, and I have only one anyway.
19 * Urgel. I should check for more errors, and do more graceful error
20 * recovery. Seems there are problems with several drives. I've tried to
21 * correct them. No promises.
25 * As with hd.c, all routines within this file can (and will) be called
26 * by interrupts, so extreme caution is needed. A hardware interrupt
27 * handler may not sleep, or a kernel panic will happen. Thus I cannot
28 * call "floppy-on" directly, but have to set a special timer interrupt
33 * 28.02.92 - made track-buffering routines, based on the routines written
34 * by entropy@wintermute.wpi.edu (Lawrence Foard). Linus.
38 * Automatic floppy-detection and formatting written by Werner Almesberger
39 * (almesber@nessie.cs.id.ethz.ch), who also corrected some problems with
40 * the floppy-change signal detection.
44 * 1992/7/22 -- Hennus Bergman: Added better error reporting, fixed
45 * FDC data overrun bug, added some preliminary stuff for vertical
48 * 1992/9/17: Added DMA allocation & DMA functions. -- hhb.
50 * TODO: Errors are still not counted properly.
54 * Modifications for ``Sector Shifting'' by Rob Hooft (hooft@chem.ruu.nl)
55 * modeled after the freeware MS-DOS program fdformat/88 V1.8 by
56 * Christoph H. Hochst\"atter.
57 * I have fixed the shift values to the ones I always use. Maybe a new
58 * ioctl() should be created to be able to modify them.
59 * There is a bug in the driver that makes it impossible to format a
60 * floppy as the first thing after bootup.
64 * 1993/4/29 -- Linus -- cleaned up the timer handling in the kernel, and
65 * this helped the floppy driver as well. Much cleaner, and still seems to
69 /* 1994/6/24 --bbroad-- added the floppy table entries and made
70 * minor modifications to allow 2.88 floppies to be run.
73 /* 1994/7/13 -- Paul Vojta -- modified the probing code to allow three or more
78 * 1994/8/8 -- Alain Knaff -- Switched to fdpatch driver: Support for bigger
79 * format bug fixes, but unfortunately some new bugs too...
82 /* 1994/9/17 -- Koen Holtman -- added logging of physical floppy write
83 * errors to allow safe writing by specialized programs.
86 /* 1995/4/24 -- Dan Fandrich -- added support for Commodore 1581 3.5" disks
87 * by defining bit 1 of the "stretch" parameter to mean put sectors on the
88 * opposite side of the disk, leaving the sector IDs alone (i.e. Commodore's
89 * drives are "upside-down").
93 * 1995/8/26 -- Andreas Busse -- added Mips support.
97 * 1995/10/18 -- Ralf Baechle -- Portability cleanup; move machine dependent
98 * features to asm/floppy.h.
102 * 1998/1/21 -- Richard Gooch <rgooch@atnf.csiro.au> -- devfs support
106 * 1998/05/07 -- Russell King -- More portability cleanups; moved definition of
107 * interrupt and dma channel to asm/floppy.h. Cleaned up some formatting &
108 * use of '0' for NULL.
112 * 1998/06/07 -- Alan Cox -- Merged the 2.0.34 fixes for resource allocation
117 * 1998/09/20 -- David Weinehall -- Added slow-down code for buggy PS/2-drives.
121 * 1999/08/13 -- Paul Slootman -- floppy stopped working on Alpha after 24
122 * days, 6 hours, 32 minutes and 32 seconds (i.e. MAXINT jiffies; ints were
123 * being used to store jiffies, which are unsigned longs).
127 * 2000/08/28 -- Arnaldo Carvalho de Melo <acme@conectiva.com.br>
128 * - get rid of check_region
133 * 2001/08/26 -- Paul Gortmaker - fix insmod oops on machines with no
134 * floppy controller (lingering task on list after module is gone... boom.)
138 * 2002/02/07 -- Anton Altaparmakov - Fix io ports reservation to correct range
139 * (0x3f2-0x3f5, 0x3f7). This fix is a bit of a hack but the proper fix
140 * requires many non-obvious changes in arch dependent code.
143 /* 2003/07/28 -- Daniele Bellucci <bellucda@tiscali.it>.
144 * Better audit of register_blkdev.
147 #define FLOPPY_SANITY_CHECK
148 #undef FLOPPY_SILENT_DCL_CLEAR
150 #define REALLY_SLOW_IO
153 #define DCL_DEBUG /* debug disk change line */
155 /* do print messages for unexpected interrupts */
156 static int print_unex = 1;
157 #include <linux/module.h>
158 #include <linux/sched.h>
159 #include <linux/fs.h>
160 #include <linux/kernel.h>
161 #include <linux/timer.h>
162 #include <linux/workqueue.h>
164 #include <linux/fdreg.h>
165 #include <linux/fd.h>
166 #include <linux/hdreg.h>
167 #include <linux/errno.h>
168 #include <linux/slab.h>
169 #include <linux/mm.h>
170 #include <linux/bio.h>
171 #include <linux/string.h>
172 #include <linux/jiffies.h>
173 #include <linux/fcntl.h>
174 #include <linux/delay.h>
175 #include <linux/mc146818rtc.h> /* CMOS defines */
176 #include <linux/ioport.h>
177 #include <linux/interrupt.h>
178 #include <linux/init.h>
179 #include <linux/platform_device.h>
180 #include <linux/buffer_head.h> /* for invalidate_buffers() */
181 #include <linux/mutex.h>
184 * PS/2 floppies have much slower step rates than regular floppies.
185 * It's been recommended that take about 1/4 of the default speed
186 * in some more extreme cases.
188 static int slow_floppy;
192 #include <asm/system.h>
194 #include <asm/uaccess.h>
196 static int FLOPPY_IRQ = 6;
197 static int FLOPPY_DMA = 2;
198 static int can_use_virtual_dma = 2;
200 * can use virtual DMA:
201 * 0 = use of virtual DMA disallowed by config
202 * 1 = use of virtual DMA prescribed by config
203 * 2 = no virtual DMA preference configured. By default try hard DMA,
204 * but fall back on virtual DMA when not enough memory available
207 static int use_virtual_dma;
211 * 1 using virtual DMA
212 * This variable is set to virtual when a DMA mem problem arises, and
213 * reset back in floppy_grab_irq_and_dma.
214 * It is not safe to reset it in other circumstances, because the floppy
215 * driver may have several buffers in use at once, and we do currently not
216 * record each buffers capabilities
219 static DEFINE_SPINLOCK(floppy_lock);
221 static unsigned short virtual_dma_port = 0x3f0;
222 irqreturn_t floppy_interrupt(int irq, void *dev_id);
223 static int set_dor(int fdc, char mask, char data);
225 #define K_64 0x10000 /* 64KB */
227 /* the following is the mask of allowed drives. By default units 2 and
228 * 3 of both floppy controllers are disabled, because switching on the
229 * motor of these drives causes system hangs on some PCI computers. drive
230 * 0 is the low bit (0x1), and drive 7 is the high bit (0x80). Bits are on if
231 * a drive is allowed.
233 * NOTE: This must come before we include the arch floppy header because
234 * some ports reference this variable from there. -DaveM
237 static int allowed_drive_mask = 0x33;
239 #include <asm/floppy.h>
241 static int irqdma_allocated;
243 #define DEVICE_NAME "floppy"
245 #include <linux/blkdev.h>
246 #include <linux/blkpg.h>
247 #include <linux/cdrom.h> /* for the compatibility eject ioctl */
248 #include <linux/completion.h>
250 static struct request *current_req;
251 static struct request_queue *floppy_queue;
252 static void do_fd_request(struct request_queue * q);
254 #ifndef fd_get_dma_residue
255 #define fd_get_dma_residue() get_dma_residue(FLOPPY_DMA)
258 /* Dma Memory related stuff */
260 #ifndef fd_dma_mem_free
261 #define fd_dma_mem_free(addr, size) free_pages(addr, get_order(size))
264 #ifndef fd_dma_mem_alloc
265 #define fd_dma_mem_alloc(size) __get_dma_pages(GFP_KERNEL,get_order(size))
268 static inline void fallback_on_nodma_alloc(char **addr, size_t l)
270 #ifdef FLOPPY_CAN_FALLBACK_ON_NODMA
272 return; /* we have the memory */
273 if (can_use_virtual_dma != 2)
274 return; /* no fallback allowed */
275 printk("DMA memory shortage. Temporarily falling back on virtual DMA\n");
276 *addr = (char *)nodma_mem_alloc(l);
282 /* End dma memory related stuff */
284 static unsigned long fake_change;
285 static int initialising = 1;
287 #define ITYPE(x) (((x)>>2) & 0x1f)
288 #define TOMINOR(x) ((x & 3) | ((x & 4) << 5))
289 #define UNIT(x) ((x) & 0x03) /* drive on fdc */
290 #define FDC(x) (((x) & 0x04) >> 2) /* fdc of drive */
291 /* reverse mapping from unit and fdc to drive */
292 #define REVDRIVE(fdc, unit) ((unit) + ((fdc) << 2))
293 #define DP (&drive_params[current_drive])
294 #define DRS (&drive_state[current_drive])
295 #define DRWE (&write_errors[current_drive])
296 #define FDCS (&fdc_state[fdc])
297 #define CLEARF(x) clear_bit(x##_BIT, &DRS->flags)
298 #define SETF(x) set_bit(x##_BIT, &DRS->flags)
299 #define TESTF(x) test_bit(x##_BIT, &DRS->flags)
301 #define UDP (&drive_params[drive])
302 #define UDRS (&drive_state[drive])
303 #define UDRWE (&write_errors[drive])
304 #define UFDCS (&fdc_state[FDC(drive)])
305 #define UCLEARF(x) clear_bit(x##_BIT, &UDRS->flags)
306 #define USETF(x) set_bit(x##_BIT, &UDRS->flags)
307 #define UTESTF(x) test_bit(x##_BIT, &UDRS->flags)
309 #define DPRINT(format, args...) printk(DEVICE_NAME "%d: " format, current_drive , ## args)
311 #define PH_HEAD(floppy,head) (((((floppy)->stretch & 2) >>1) ^ head) << 2)
312 #define STRETCH(floppy) ((floppy)->stretch & FD_STRETCH)
314 #define CLEARSTRUCT(x) memset((x), 0, sizeof(*(x)))
317 #define COMMAND raw_cmd->cmd[0]
318 #define DR_SELECT raw_cmd->cmd[1]
319 #define TRACK raw_cmd->cmd[2]
320 #define HEAD raw_cmd->cmd[3]
321 #define SECTOR raw_cmd->cmd[4]
322 #define SIZECODE raw_cmd->cmd[5]
323 #define SECT_PER_TRACK raw_cmd->cmd[6]
324 #define GAP raw_cmd->cmd[7]
325 #define SIZECODE2 raw_cmd->cmd[8]
329 #define F_SIZECODE raw_cmd->cmd[2]
330 #define F_SECT_PER_TRACK raw_cmd->cmd[3]
331 #define F_GAP raw_cmd->cmd[4]
332 #define F_FILL raw_cmd->cmd[5]
336 * Maximum disk size (in kilobytes). This default is used whenever the
337 * current disk size is unknown.
338 * [Now it is rather a minimum]
340 #define MAX_DISK_SIZE 4 /* 3984 */
343 * globals used by 'result()'
345 #define MAX_REPLIES 16
346 static unsigned char reply_buffer[MAX_REPLIES];
347 static int inr; /* size of reply buffer, when called from interrupt */
348 #define ST0 (reply_buffer[0])
349 #define ST1 (reply_buffer[1])
350 #define ST2 (reply_buffer[2])
351 #define ST3 (reply_buffer[0]) /* result of GETSTATUS */
352 #define R_TRACK (reply_buffer[3])
353 #define R_HEAD (reply_buffer[4])
354 #define R_SECTOR (reply_buffer[5])
355 #define R_SIZECODE (reply_buffer[6])
356 #define SEL_DLY (2*HZ/100)
359 * this struct defines the different floppy drive types.
362 struct floppy_drive_params params;
363 const char *name; /* name printed while booting */
364 } default_drive_params[] = {
365 /* NOTE: the time values in jiffies should be in msec!
367 | Maximum data rate supported by drive type
368 | | Head load time, msec
369 | | | Head unload time, msec (not used)
370 | | | | Step rate interval, usec
371 | | | | | Time needed for spinup time (jiffies)
372 | | | | | | Timeout for spinning down (jiffies)
373 | | | | | | | Spindown offset (where disk stops)
374 | | | | | | | | Select delay
375 | | | | | | | | | RPS
376 | | | | | | | | | | Max number of tracks
377 | | | | | | | | | | | Interrupt timeout
378 | | | | | | | | | | | | Max nonintlv. sectors
379 | | | | | | | | | | | | | -Max Errors- flags */
380 {{0, 500, 16, 16, 8000, 1*HZ, 3*HZ, 0, SEL_DLY, 5, 80, 3*HZ, 20, {3,1,2,0,2}, 0,
381 0, { 7, 4, 8, 2, 1, 5, 3,10}, 3*HZ/2, 0 }, "unknown" },
383 {{1, 300, 16, 16, 8000, 1*HZ, 3*HZ, 0, SEL_DLY, 5, 40, 3*HZ, 17, {3,1,2,0,2}, 0,
384 0, { 1, 0, 0, 0, 0, 0, 0, 0}, 3*HZ/2, 1 }, "360K PC" }, /*5 1/4 360 KB PC*/
386 {{2, 500, 16, 16, 6000, 4*HZ/10, 3*HZ, 14, SEL_DLY, 6, 83, 3*HZ, 17, {3,1,2,0,2}, 0,
387 0, { 2, 5, 6,23,10,20,12, 0}, 3*HZ/2, 2 }, "1.2M" }, /*5 1/4 HD AT*/
389 {{3, 250, 16, 16, 3000, 1*HZ, 3*HZ, 0, SEL_DLY, 5, 83, 3*HZ, 20, {3,1,2,0,2}, 0,
390 0, { 4,22,21,30, 3, 0, 0, 0}, 3*HZ/2, 4 }, "720k" }, /*3 1/2 DD*/
392 {{4, 500, 16, 16, 4000, 4*HZ/10, 3*HZ, 10, SEL_DLY, 5, 83, 3*HZ, 20, {3,1,2,0,2}, 0,
393 0, { 7, 4,25,22,31,21,29,11}, 3*HZ/2, 7 }, "1.44M" }, /*3 1/2 HD*/
395 {{5, 1000, 15, 8, 3000, 4*HZ/10, 3*HZ, 10, SEL_DLY, 5, 83, 3*HZ, 40, {3,1,2,0,2}, 0,
396 0, { 7, 8, 4,25,28,22,31,21}, 3*HZ/2, 8 }, "2.88M AMI BIOS" }, /*3 1/2 ED*/
398 {{6, 1000, 15, 8, 3000, 4*HZ/10, 3*HZ, 10, SEL_DLY, 5, 83, 3*HZ, 40, {3,1,2,0,2}, 0,
399 0, { 7, 8, 4,25,28,22,31,21}, 3*HZ/2, 8 }, "2.88M" } /*3 1/2 ED*/
400 /* | --autodetected formats--- | | |
401 * read_track | | Name printed when booting
403 * Frequency of disk change checks */
406 static struct floppy_drive_params drive_params[N_DRIVE];
407 static struct floppy_drive_struct drive_state[N_DRIVE];
408 static struct floppy_write_errors write_errors[N_DRIVE];
409 static struct timer_list motor_off_timer[N_DRIVE];
410 static struct gendisk *disks[N_DRIVE];
411 static struct block_device *opened_bdev[N_DRIVE];
412 static DEFINE_MUTEX(open_lock);
413 static struct floppy_raw_cmd *raw_cmd, default_raw_cmd;
416 * This struct defines the different floppy types.
418 * Bit 0 of 'stretch' tells if the tracks need to be doubled for some
419 * types (e.g. 360kB diskette in 1.2MB drive, etc.). Bit 1 of 'stretch'
420 * tells if the disk is in Commodore 1581 format, which means side 0 sectors
421 * are located on side 1 of the disk but with a side 0 ID, and vice-versa.
422 * This is the same as the Sharp MZ-80 5.25" CP/M disk format, except that the
423 * 1581's logical side 0 is on physical side 1, whereas the Sharp's logical
424 * side 0 is on physical side 0 (but with the misnamed sector IDs).
425 * 'stretch' should probably be renamed to something more general, like
428 * Bits 2 through 9 of 'stretch' tell the number of the first sector.
429 * The LSB (bit 2) is flipped. For most disks, the first sector
430 * is 1 (represented by 0x00<<2). For some CP/M and music sampler
431 * disks (such as Ensoniq EPS 16plus) it is 0 (represented as 0x01<<2).
432 * For Amstrad CPC disks it is 0xC1 (represented as 0xC0<<2).
434 * Other parameters should be self-explanatory (see also setfdprm(8)).
443 | | | | | | Data rate, | 0x40 for perp
444 | | | | | | | Spec1 (stepping rate, head unload
445 | | | | | | | | /fmt gap (gap2) */
446 static struct floppy_struct floppy_type[32] = {
447 { 0, 0,0, 0,0,0x00,0x00,0x00,0x00,NULL }, /* 0 no testing */
448 { 720, 9,2,40,0,0x2A,0x02,0xDF,0x50,"d360" }, /* 1 360KB PC */
449 { 2400,15,2,80,0,0x1B,0x00,0xDF,0x54,"h1200" }, /* 2 1.2MB AT */
450 { 720, 9,1,80,0,0x2A,0x02,0xDF,0x50,"D360" }, /* 3 360KB SS 3.5" */
451 { 1440, 9,2,80,0,0x2A,0x02,0xDF,0x50,"D720" }, /* 4 720KB 3.5" */
452 { 720, 9,2,40,1,0x23,0x01,0xDF,0x50,"h360" }, /* 5 360KB AT */
453 { 1440, 9,2,80,0,0x23,0x01,0xDF,0x50,"h720" }, /* 6 720KB AT */
454 { 2880,18,2,80,0,0x1B,0x00,0xCF,0x6C,"H1440" }, /* 7 1.44MB 3.5" */
455 { 5760,36,2,80,0,0x1B,0x43,0xAF,0x54,"E2880" }, /* 8 2.88MB 3.5" */
456 { 6240,39,2,80,0,0x1B,0x43,0xAF,0x28,"E3120" }, /* 9 3.12MB 3.5" */
458 { 2880,18,2,80,0,0x25,0x00,0xDF,0x02,"h1440" }, /* 10 1.44MB 5.25" */
459 { 3360,21,2,80,0,0x1C,0x00,0xCF,0x0C,"H1680" }, /* 11 1.68MB 3.5" */
460 { 820,10,2,41,1,0x25,0x01,0xDF,0x2E,"h410" }, /* 12 410KB 5.25" */
461 { 1640,10,2,82,0,0x25,0x02,0xDF,0x2E,"H820" }, /* 13 820KB 3.5" */
462 { 2952,18,2,82,0,0x25,0x00,0xDF,0x02,"h1476" }, /* 14 1.48MB 5.25" */
463 { 3444,21,2,82,0,0x25,0x00,0xDF,0x0C,"H1722" }, /* 15 1.72MB 3.5" */
464 { 840,10,2,42,1,0x25,0x01,0xDF,0x2E,"h420" }, /* 16 420KB 5.25" */
465 { 1660,10,2,83,0,0x25,0x02,0xDF,0x2E,"H830" }, /* 17 830KB 3.5" */
466 { 2988,18,2,83,0,0x25,0x00,0xDF,0x02,"h1494" }, /* 18 1.49MB 5.25" */
467 { 3486,21,2,83,0,0x25,0x00,0xDF,0x0C,"H1743" }, /* 19 1.74 MB 3.5" */
469 { 1760,11,2,80,0,0x1C,0x09,0xCF,0x00,"h880" }, /* 20 880KB 5.25" */
470 { 2080,13,2,80,0,0x1C,0x01,0xCF,0x00,"D1040" }, /* 21 1.04MB 3.5" */
471 { 2240,14,2,80,0,0x1C,0x19,0xCF,0x00,"D1120" }, /* 22 1.12MB 3.5" */
472 { 3200,20,2,80,0,0x1C,0x20,0xCF,0x2C,"h1600" }, /* 23 1.6MB 5.25" */
473 { 3520,22,2,80,0,0x1C,0x08,0xCF,0x2e,"H1760" }, /* 24 1.76MB 3.5" */
474 { 3840,24,2,80,0,0x1C,0x20,0xCF,0x00,"H1920" }, /* 25 1.92MB 3.5" */
475 { 6400,40,2,80,0,0x25,0x5B,0xCF,0x00,"E3200" }, /* 26 3.20MB 3.5" */
476 { 7040,44,2,80,0,0x25,0x5B,0xCF,0x00,"E3520" }, /* 27 3.52MB 3.5" */
477 { 7680,48,2,80,0,0x25,0x63,0xCF,0x00,"E3840" }, /* 28 3.84MB 3.5" */
478 { 3680,23,2,80,0,0x1C,0x10,0xCF,0x00,"H1840" }, /* 29 1.84MB 3.5" */
480 { 1600,10,2,80,0,0x25,0x02,0xDF,0x2E,"D800" }, /* 30 800KB 3.5" */
481 { 3200,20,2,80,0,0x1C,0x00,0xCF,0x2C,"H1600" }, /* 31 1.6MB 3.5" */
484 #define SECTSIZE (_FD_SECTSIZE(*floppy))
486 /* Auto-detection: Disk type used until the next media change occurs. */
487 static struct floppy_struct *current_type[N_DRIVE];
490 * User-provided type information. current_type points to
491 * the respective entry of this array.
493 static struct floppy_struct user_params[N_DRIVE];
495 static sector_t floppy_sizes[256];
497 static char floppy_device_name[] = "floppy";
500 * The driver is trying to determine the correct media format
501 * while probing is set. rw_interrupt() clears it after a
506 /* Synchronization of FDC access. */
507 #define FD_COMMAND_NONE -1
508 #define FD_COMMAND_ERROR 2
509 #define FD_COMMAND_OKAY 3
511 static volatile int command_status = FD_COMMAND_NONE;
512 static unsigned long fdc_busy;
513 static DECLARE_WAIT_QUEUE_HEAD(fdc_wait);
514 static DECLARE_WAIT_QUEUE_HEAD(command_done);
516 #define NO_SIGNAL (!interruptible || !signal_pending(current))
517 #define CALL(x) if ((x) == -EINTR) return -EINTR
518 #define ECALL(x) if ((ret = (x))) return ret;
519 #define _WAIT(x,i) CALL(ret=wait_til_done((x),i))
520 #define WAIT(x) _WAIT((x),interruptible)
521 #define IWAIT(x) _WAIT((x),1)
523 /* Errors during formatting are counted here. */
524 static int format_errors;
526 /* Format request descriptor. */
527 static struct format_descr format_req;
530 * Rate is 0 for 500kb/s, 1 for 300kbps, 2 for 250kbps
531 * Spec1 is 0xSH, where S is stepping rate (F=1ms, E=2ms, D=3ms etc),
532 * H is head unload time (1=16ms, 2=32ms, etc)
537 * Because these are written to by the DMA controller, they must
538 * not contain a 64k byte boundary crossing, or data will be
541 static char *floppy_track_buffer;
542 static int max_buffer_sectors;
545 typedef void (*done_f)(int);
546 static struct cont_t {
547 void (*interrupt)(void); /* this is called after the interrupt of the
549 void (*redo)(void); /* this is called to retry the operation */
550 void (*error)(void); /* this is called to tally an error */
551 done_f done; /* this is called to say if the operation has
552 * succeeded/failed */
555 static void floppy_ready(void);
556 static void floppy_start(void);
557 static void process_fd_request(void);
558 static void recalibrate_floppy(void);
559 static void floppy_shutdown(unsigned long);
561 static int floppy_request_regions(int);
562 static void floppy_release_regions(int);
563 static int floppy_grab_irq_and_dma(void);
564 static void floppy_release_irq_and_dma(void);
567 * The "reset" variable should be tested whenever an interrupt is scheduled,
568 * after the commands have been sent. This is to ensure that the driver doesn't
569 * get wedged when the interrupt doesn't come because of a failed command.
570 * reset doesn't need to be tested before sending commands, because
571 * output_byte is automatically disabled when reset is set.
573 #define CHECK_RESET { if (FDCS->reset){ reset_fdc(); return; } }
574 static void reset_fdc(void);
577 * These are global variables, as that's the easiest way to give
578 * information to interrupts. They are the data used for the current
582 #define NEED_1_RECAL -2
583 #define NEED_2_RECAL -3
585 static int usage_count;
587 /* buffer related variables */
588 static int buffer_track = -1;
589 static int buffer_drive = -1;
590 static int buffer_min = -1;
591 static int buffer_max = -1;
593 /* fdc related variables, should end up in a struct */
594 static struct floppy_fdc_state fdc_state[N_FDC];
595 static int fdc; /* current fdc */
597 static struct floppy_struct *_floppy = floppy_type;
598 static unsigned char current_drive;
599 static long current_count_sectors;
600 static unsigned char fsector_t; /* sector in track */
601 static unsigned char in_sector_offset; /* offset within physical sector,
602 * expressed in units of 512 bytes */
605 static inline int fd_eject(int drive)
616 static long unsigned debugtimer;
618 static inline void set_debugt(void)
620 debugtimer = jiffies;
623 static inline void debugt(const char *message)
625 if (DP->flags & DEBUGT)
626 printk("%s dtime=%lu\n", message, jiffies - debugtimer);
629 static inline void set_debugt(void) { }
630 static inline void debugt(const char *message) { }
633 typedef void (*timeout_fn) (unsigned long);
634 static DEFINE_TIMER(fd_timeout, floppy_shutdown, 0, 0);
636 static const char *timeout_message;
638 #ifdef FLOPPY_SANITY_CHECK
639 static void is_alive(const char *message)
641 /* this routine checks whether the floppy driver is "alive" */
642 if (test_bit(0, &fdc_busy) && command_status < 2
643 && !timer_pending(&fd_timeout)) {
644 DPRINT("timeout handler died: %s\n", message);
649 static void (*do_floppy) (void) = NULL;
651 #ifdef FLOPPY_SANITY_CHECK
655 static void (*lasthandler) (void);
656 static unsigned long interruptjiffies;
657 static unsigned long resultjiffies;
658 static int resultsize;
659 static unsigned long lastredo;
661 static struct output_log {
663 unsigned char status;
664 unsigned long jiffies;
665 } output_log[OLOGSIZE];
667 static int output_log_pos;
670 #define current_reqD -1
671 #define MAXTIMEOUT -2
673 static void __reschedule_timeout(int drive, const char *message, int marg)
675 if (drive == current_reqD)
676 drive = current_drive;
677 del_timer(&fd_timeout);
678 if (drive < 0 || drive >= N_DRIVE) {
679 fd_timeout.expires = jiffies + 20UL * HZ;
682 fd_timeout.expires = jiffies + UDP->timeout;
683 add_timer(&fd_timeout);
684 if (UDP->flags & FD_DEBUG) {
685 DPRINT("reschedule timeout ");
686 printk(message, marg);
689 timeout_message = message;
692 static void reschedule_timeout(int drive, const char *message, int marg)
696 spin_lock_irqsave(&floppy_lock, flags);
697 __reschedule_timeout(drive, message, marg);
698 spin_unlock_irqrestore(&floppy_lock, flags);
701 #define INFBOUND(a,b) (a)=max_t(int, a, b)
702 #define SUPBOUND(a,b) (a)=min_t(int, a, b)
705 * Bottom half floppy driver.
706 * ==========================
708 * This part of the file contains the code talking directly to the hardware,
709 * and also the main service loop (seek-configure-spinup-command)
714 * This routine is responsible for maintaining the FD_DISK_CHANGE flag,
715 * and the last_checked date.
717 * last_checked is the date of the last check which showed 'no disk change'
718 * FD_DISK_CHANGE is set under two conditions:
719 * 1. The floppy has been changed after some i/o to that floppy already
721 * 2. No floppy disk is in the drive. This is done in order to ensure that
722 * requests are quickly flushed in case there is no disk in the drive. It
723 * follows that FD_DISK_CHANGE can only be cleared if there is a disk in
726 * For 1., maxblock is observed. Maxblock is 0 if no i/o has taken place yet.
727 * For 2., FD_DISK_NEWCHANGE is watched. FD_DISK_NEWCHANGE is cleared on
728 * each seek. If a disk is present, the disk change line should also be
729 * cleared on each seek. Thus, if FD_DISK_NEWCHANGE is clear, but the disk
730 * change line is set, this means either that no disk is in the drive, or
731 * that it has been removed since the last seek.
733 * This means that we really have a third possibility too:
734 * The floppy has been changed after the last seek.
737 static int disk_change(int drive)
739 int fdc = FDC(drive);
741 #ifdef FLOPPY_SANITY_CHECK
742 if (time_before(jiffies, UDRS->select_date + UDP->select_delay))
743 DPRINT("WARNING disk change called early\n");
744 if (!(FDCS->dor & (0x10 << UNIT(drive))) ||
745 (FDCS->dor & 3) != UNIT(drive) || fdc != FDC(drive)) {
746 DPRINT("probing disk change on unselected drive\n");
747 DPRINT("drive=%d fdc=%d dor=%x\n", drive, FDC(drive),
748 (unsigned int)FDCS->dor);
753 if (UDP->flags & FD_DEBUG) {
754 DPRINT("checking disk change line for drive %d\n", drive);
755 DPRINT("jiffies=%lu\n", jiffies);
756 DPRINT("disk change line=%x\n", fd_inb(FD_DIR) & 0x80);
757 DPRINT("flags=%lx\n", UDRS->flags);
760 if (UDP->flags & FD_BROKEN_DCL)
761 return UTESTF(FD_DISK_CHANGED);
762 if ((fd_inb(FD_DIR) ^ UDP->flags) & 0x80) {
763 USETF(FD_VERIFY); /* verify write protection */
764 if (UDRS->maxblock) {
765 /* mark it changed */
766 USETF(FD_DISK_CHANGED);
769 /* invalidate its geometry */
770 if (UDRS->keep_data >= 0) {
771 if ((UDP->flags & FTD_MSG) &&
772 current_type[drive] != NULL)
773 DPRINT("Disk type is undefined after "
775 current_type[drive] = NULL;
776 floppy_sizes[TOMINOR(drive)] = MAX_DISK_SIZE << 1;
781 UDRS->last_checked = jiffies;
782 UCLEARF(FD_DISK_NEWCHANGE);
787 static inline int is_selected(int dor, int unit)
789 return ((dor & (0x10 << unit)) && (dor & 3) == unit);
792 static int set_dor(int fdc, char mask, char data)
796 unsigned char newdor;
797 unsigned char olddor;
799 if (FDCS->address == -1)
803 newdor = (olddor & mask) | data;
804 if (newdor != olddor) {
806 if (is_selected(olddor, unit) && !is_selected(newdor, unit)) {
807 drive = REVDRIVE(fdc, unit);
809 if (UDP->flags & FD_DEBUG) {
810 DPRINT("calling disk change from set_dor\n");
816 fd_outb(newdor, FD_DOR);
819 if (!is_selected(olddor, unit) && is_selected(newdor, unit)) {
820 drive = REVDRIVE(fdc, unit);
821 UDRS->select_date = jiffies;
827 static void twaddle(void)
829 if (DP->select_delay)
831 fd_outb(FDCS->dor & ~(0x10 << UNIT(current_drive)), FD_DOR);
832 fd_outb(FDCS->dor, FD_DOR);
833 DRS->select_date = jiffies;
836 /* reset all driver information about the current fdc. This is needed after
837 * a reset, and after a raw command. */
838 static void reset_fdc_info(int mode)
842 FDCS->spec1 = FDCS->spec2 = -1;
843 FDCS->need_configure = 1;
846 for (drive = 0; drive < N_DRIVE; drive++)
847 if (FDC(drive) == fdc && (mode || UDRS->track != NEED_1_RECAL))
848 UDRS->track = NEED_2_RECAL;
851 /* selects the fdc and drive, and enables the fdc's input/dma. */
852 static void set_fdc(int drive)
854 if (drive >= 0 && drive < N_DRIVE) {
856 current_drive = drive;
858 if (fdc != 1 && fdc != 0) {
859 printk("bad fdc value\n");
864 set_dor(1 - fdc, ~8, 0);
866 if (FDCS->rawcmd == 2)
868 if (fd_inb(FD_STATUS) != STATUS_READY)
872 /* locks the driver */
873 static int _lock_fdc(int drive, int interruptible, int line)
877 "Trying to lock fdc while usage count=0 at line %d\n",
882 if (test_and_set_bit(0, &fdc_busy)) {
883 DECLARE_WAITQUEUE(wait, current);
884 add_wait_queue(&fdc_wait, &wait);
887 set_current_state(TASK_INTERRUPTIBLE);
889 if (!test_and_set_bit(0, &fdc_busy))
895 remove_wait_queue(&fdc_wait, &wait);
900 set_current_state(TASK_RUNNING);
901 remove_wait_queue(&fdc_wait, &wait);
902 flush_scheduled_work();
904 command_status = FD_COMMAND_NONE;
906 __reschedule_timeout(drive, "lock fdc", 0);
911 #define lock_fdc(drive,interruptible) _lock_fdc(drive,interruptible, __LINE__)
913 #define LOCK_FDC(drive,interruptible) \
914 if (lock_fdc(drive,interruptible)) return -EINTR;
916 /* unlocks the driver */
917 static inline void unlock_fdc(void)
922 if (!test_bit(0, &fdc_busy))
923 DPRINT("FDC access conflict!\n");
926 DPRINT("device interrupt still active at FDC release: %p!\n",
928 command_status = FD_COMMAND_NONE;
929 spin_lock_irqsave(&floppy_lock, flags);
930 del_timer(&fd_timeout);
932 clear_bit(0, &fdc_busy);
933 if (elv_next_request(floppy_queue))
934 do_fd_request(floppy_queue);
935 spin_unlock_irqrestore(&floppy_lock, flags);
939 /* switches the motor off after a given timeout */
940 static void motor_off_callback(unsigned long nr)
942 unsigned char mask = ~(0x10 << UNIT(nr));
944 set_dor(FDC(nr), mask, 0);
947 /* schedules motor off */
948 static void floppy_off(unsigned int drive)
950 unsigned long volatile delta;
951 int fdc = FDC(drive);
953 if (!(FDCS->dor & (0x10 << UNIT(drive))))
956 del_timer(motor_off_timer + drive);
958 /* make spindle stop in a position which minimizes spinup time
961 delta = jiffies - UDRS->first_read_date + HZ -
962 UDP->spindown_offset;
963 delta = ((delta * UDP->rps) % HZ) / UDP->rps;
964 motor_off_timer[drive].expires =
965 jiffies + UDP->spindown - delta;
967 add_timer(motor_off_timer + drive);
971 * cycle through all N_DRIVE floppy drives, for disk change testing.
972 * stopping at current drive. This is done before any long operation, to
973 * be sure to have up to date disk change information.
975 static void scandrives(void)
981 if (DP->select_delay)
984 saved_drive = current_drive;
985 for (i = 0; i < N_DRIVE; i++) {
986 drive = (saved_drive + i + 1) % N_DRIVE;
987 if (UDRS->fd_ref == 0 || UDP->select_delay != 0)
988 continue; /* skip closed drives */
990 if (!(set_dor(fdc, ~3, UNIT(drive) | (0x10 << UNIT(drive))) &
991 (0x10 << UNIT(drive))))
992 /* switch the motor off again, if it was off to
994 set_dor(fdc, ~(0x10 << UNIT(drive)), 0);
996 set_fdc(saved_drive);
999 static void empty(void)
1003 static DECLARE_WORK(floppy_work, NULL);
1005 static void schedule_bh(void (*handler) (void))
1007 PREPARE_WORK(&floppy_work, (work_func_t)handler);
1008 schedule_work(&floppy_work);
1011 static DEFINE_TIMER(fd_timer, NULL, 0, 0);
1013 static void cancel_activity(void)
1015 unsigned long flags;
1017 spin_lock_irqsave(&floppy_lock, flags);
1019 PREPARE_WORK(&floppy_work, (work_func_t)empty);
1020 del_timer(&fd_timer);
1021 spin_unlock_irqrestore(&floppy_lock, flags);
1024 /* this function makes sure that the disk stays in the drive during the
1026 static void fd_watchdog(void)
1029 if (DP->flags & FD_DEBUG) {
1030 DPRINT("calling disk change from watchdog\n");
1034 if (disk_change(current_drive)) {
1035 DPRINT("disk removed during i/o\n");
1040 del_timer(&fd_timer);
1041 fd_timer.function = (timeout_fn) fd_watchdog;
1042 fd_timer.expires = jiffies + HZ / 10;
1043 add_timer(&fd_timer);
1047 static void main_command_interrupt(void)
1049 del_timer(&fd_timer);
1053 /* waits for a delay (spinup or select) to pass */
1054 static int fd_wait_for_completion(unsigned long delay, timeout_fn function)
1057 reset_fdc(); /* do the reset during sleep to win time
1058 * if we don't need to sleep, it's a good
1059 * occasion anyways */
1063 if (time_before(jiffies, delay)) {
1064 del_timer(&fd_timer);
1065 fd_timer.function = function;
1066 fd_timer.expires = delay;
1067 add_timer(&fd_timer);
1073 static DEFINE_SPINLOCK(floppy_hlt_lock);
1074 static int hlt_disabled;
1075 static void floppy_disable_hlt(void)
1077 unsigned long flags;
1079 spin_lock_irqsave(&floppy_hlt_lock, flags);
1080 if (!hlt_disabled) {
1082 #ifdef HAVE_DISABLE_HLT
1086 spin_unlock_irqrestore(&floppy_hlt_lock, flags);
1089 static void floppy_enable_hlt(void)
1091 unsigned long flags;
1093 spin_lock_irqsave(&floppy_hlt_lock, flags);
1096 #ifdef HAVE_DISABLE_HLT
1100 spin_unlock_irqrestore(&floppy_hlt_lock, flags);
1103 static void setup_DMA(void)
1107 #ifdef FLOPPY_SANITY_CHECK
1108 if (raw_cmd->length == 0) {
1111 printk("zero dma transfer size:");
1112 for (i = 0; i < raw_cmd->cmd_count; i++)
1113 printk("%x,", raw_cmd->cmd[i]);
1119 if (((unsigned long)raw_cmd->kernel_data) % 512) {
1120 printk("non aligned address: %p\n", raw_cmd->kernel_data);
1126 f = claim_dma_lock();
1129 if (fd_dma_setup(raw_cmd->kernel_data, raw_cmd->length,
1130 (raw_cmd->flags & FD_RAW_READ) ?
1131 DMA_MODE_READ : DMA_MODE_WRITE, FDCS->address) < 0) {
1132 release_dma_lock(f);
1137 release_dma_lock(f);
1140 fd_cacheflush(raw_cmd->kernel_data, raw_cmd->length);
1141 fd_set_dma_mode((raw_cmd->flags & FD_RAW_READ) ?
1142 DMA_MODE_READ : DMA_MODE_WRITE);
1143 fd_set_dma_addr(raw_cmd->kernel_data);
1144 fd_set_dma_count(raw_cmd->length);
1145 virtual_dma_port = FDCS->address;
1147 release_dma_lock(f);
1149 floppy_disable_hlt();
1152 static void show_floppy(void);
1154 /* waits until the fdc becomes ready */
1155 static int wait_til_ready(void)
1162 for (counter = 0; counter < 10000; counter++) {
1163 status = fd_inb(FD_STATUS);
1164 if (status & STATUS_READY)
1167 if (!initialising) {
1168 DPRINT("Getstatus times out (%x) on fdc %d\n", status, fdc);
1175 /* sends a command byte to the fdc */
1176 static int output_byte(char byte)
1180 if ((status = wait_til_ready()) < 0)
1182 if ((status & (STATUS_READY | STATUS_DIR | STATUS_DMA)) == STATUS_READY) {
1183 fd_outb(byte, FD_DATA);
1184 #ifdef FLOPPY_SANITY_CHECK
1185 output_log[output_log_pos].data = byte;
1186 output_log[output_log_pos].status = status;
1187 output_log[output_log_pos].jiffies = jiffies;
1188 output_log_pos = (output_log_pos + 1) % OLOGSIZE;
1193 if (!initialising) {
1194 DPRINT("Unable to send byte %x to FDC. Fdc=%x Status=%x\n",
1201 #define LAST_OUT(x) if (output_byte(x)<0){ reset_fdc();return;}
1203 /* gets the response from the fdc */
1204 static int result(void)
1209 for (i = 0; i < MAX_REPLIES; i++) {
1210 if ((status = wait_til_ready()) < 0)
1212 status &= STATUS_DIR | STATUS_READY | STATUS_BUSY | STATUS_DMA;
1213 if ((status & ~STATUS_BUSY) == STATUS_READY) {
1214 #ifdef FLOPPY_SANITY_CHECK
1215 resultjiffies = jiffies;
1220 if (status == (STATUS_DIR | STATUS_READY | STATUS_BUSY))
1221 reply_buffer[i] = fd_inb(FD_DATA);
1225 if (!initialising) {
1227 ("get result error. Fdc=%d Last status=%x Read bytes=%d\n",
1235 #define MORE_OUTPUT -2
1236 /* does the fdc need more output? */
1237 static int need_more_output(void)
1241 if ((status = wait_til_ready()) < 0)
1243 if ((status & (STATUS_READY | STATUS_DIR | STATUS_DMA)) == STATUS_READY)
1248 /* Set perpendicular mode as required, based on data rate, if supported.
1249 * 82077 Now tested. 1Mbps data rate only possible with 82077-1.
1251 static inline void perpendicular_mode(void)
1253 unsigned char perp_mode;
1255 if (raw_cmd->rate & 0x40) {
1256 switch (raw_cmd->rate & 3) {
1264 DPRINT("Invalid data rate for perpendicular mode!\n");
1266 FDCS->reset = 1; /* convenient way to return to
1267 * redo without to much hassle (deep
1274 if (FDCS->perp_mode == perp_mode)
1276 if (FDCS->version >= FDC_82077_ORIG) {
1277 output_byte(FD_PERPENDICULAR);
1278 output_byte(perp_mode);
1279 FDCS->perp_mode = perp_mode;
1280 } else if (perp_mode) {
1281 DPRINT("perpendicular mode not supported by this FDC.\n");
1283 } /* perpendicular_mode */
1285 static int fifo_depth = 0xa;
1288 static int fdc_configure(void)
1291 output_byte(FD_CONFIGURE);
1292 if (need_more_output() != MORE_OUTPUT)
1295 output_byte(0x10 | (no_fifo & 0x20) | (fifo_depth & 0xf));
1296 output_byte(0); /* pre-compensation from track
1301 #define NOMINAL_DTR 500
1303 /* Issue a "SPECIFY" command to set the step rate time, head unload time,
1304 * head load time, and DMA disable flag to values needed by floppy.
1306 * The value "dtr" is the data transfer rate in Kbps. It is needed
1307 * to account for the data rate-based scaling done by the 82072 and 82077
1308 * FDC types. This parameter is ignored for other types of FDCs (i.e.
1311 * Note that changing the data transfer rate has a (probably deleterious)
1312 * effect on the parameters subject to scaling for 82072/82077 FDCs, so
1313 * fdc_specify is called again after each data transfer rate
1316 * srt: 1000 to 16000 in microseconds
1317 * hut: 16 to 240 milliseconds
1318 * hlt: 2 to 254 milliseconds
1320 * These values are rounded up to the next highest available delay time.
1322 static void fdc_specify(void)
1324 unsigned char spec1;
1325 unsigned char spec2;
1329 unsigned long dtr = NOMINAL_DTR;
1330 unsigned long scale_dtr = NOMINAL_DTR;
1331 int hlt_max_code = 0x7f;
1332 int hut_max_code = 0xf;
1334 if (FDCS->need_configure && FDCS->version >= FDC_82072A) {
1336 FDCS->need_configure = 0;
1339 switch (raw_cmd->rate & 0x03) {
1345 if (FDCS->version >= FDC_82078) {
1346 /* chose the default rate table, not the one
1347 * where 1 = 2 Mbps */
1348 output_byte(FD_DRIVESPEC);
1349 if (need_more_output() == MORE_OUTPUT) {
1350 output_byte(UNIT(current_drive));
1360 if (FDCS->version >= FDC_82072) {
1362 hlt_max_code = 0x00; /* 0==256msec*dtr0/dtr (not linear!) */
1363 hut_max_code = 0x0; /* 0==256msec*dtr0/dtr (not linear!) */
1366 /* Convert step rate from microseconds to milliseconds and 4 bits */
1367 srt = 16 - DIV_ROUND_UP(DP->srt * scale_dtr / 1000, NOMINAL_DTR);
1374 hlt = DIV_ROUND_UP(DP->hlt * scale_dtr / 2, NOMINAL_DTR);
1377 else if (hlt > 0x7f)
1380 hut = DIV_ROUND_UP(DP->hut * scale_dtr / 16, NOMINAL_DTR);
1386 spec1 = (srt << 4) | hut;
1387 spec2 = (hlt << 1) | (use_virtual_dma & 1);
1389 /* If these parameters did not change, just return with success */
1390 if (FDCS->spec1 != spec1 || FDCS->spec2 != spec2) {
1391 /* Go ahead and set spec1 and spec2 */
1392 output_byte(FD_SPECIFY);
1393 output_byte(FDCS->spec1 = spec1);
1394 output_byte(FDCS->spec2 = spec2);
1398 /* Set the FDC's data transfer rate on behalf of the specified drive.
1399 * NOTE: with 82072/82077 FDCs, changing the data rate requires a reissue
1400 * of the specify command (i.e. using the fdc_specify function).
1402 static int fdc_dtr(void)
1404 /* If data rate not already set to desired value, set it. */
1405 if ((raw_cmd->rate & 3) == FDCS->dtr)
1409 fd_outb(raw_cmd->rate & 3, FD_DCR);
1411 /* TODO: some FDC/drive combinations (C&T 82C711 with TEAC 1.2MB)
1412 * need a stabilization period of several milliseconds to be
1413 * enforced after data rate changes before R/W operations.
1414 * Pause 5 msec to avoid trouble. (Needs to be 2 jiffies)
1416 FDCS->dtr = raw_cmd->rate & 3;
1417 return (fd_wait_for_completion(jiffies + 2UL * HZ / 100,
1418 (timeout_fn) floppy_ready));
1421 static void tell_sector(void)
1423 printk(": track %d, head %d, sector %d, size %d",
1424 R_TRACK, R_HEAD, R_SECTOR, R_SIZECODE);
1428 * OK, this error interpreting routine is called after a
1429 * DMA read/write has succeeded
1430 * or failed, so we check the results, and copy any buffers.
1431 * hhb: Added better error reporting.
1432 * ak: Made this into a separate routine.
1434 static int interpret_errors(void)
1439 DPRINT("-- FDC reply error");
1444 /* check IC to find cause of interrupt */
1445 switch (ST0 & ST0_INTR) {
1446 case 0x40: /* error occurred during command execution */
1448 return 0; /* occurs with pseudo-DMA */
1451 DPRINT("Drive is write protected\n");
1452 CLEARF(FD_DISK_WRITABLE);
1455 } else if (ST1 & ST1_ND) {
1456 SETF(FD_NEED_TWADDLE);
1457 } else if (ST1 & ST1_OR) {
1458 if (DP->flags & FTD_MSG)
1459 DPRINT("Over/Underrun - retrying\n");
1461 } else if (*errors >= DP->max_errors.reporting) {
1463 if (ST0 & ST0_ECE) {
1464 printk("Recalibrate failed!");
1465 } else if (ST2 & ST2_CRC) {
1466 printk("data CRC error");
1468 } else if (ST1 & ST1_CRC) {
1469 printk("CRC error");
1471 } else if ((ST1 & (ST1_MAM | ST1_ND))
1472 || (ST2 & ST2_MAM)) {
1474 printk("sector not found");
1477 printk("probe failed...");
1478 } else if (ST2 & ST2_WC) { /* seek error */
1479 printk("wrong cylinder");
1480 } else if (ST2 & ST2_BC) { /* cylinder marked as bad */
1481 printk("bad cylinder");
1484 ("unknown error. ST[0..2] are: 0x%x 0x%x 0x%x",
1490 if (ST2 & ST2_WC || ST2 & ST2_BC)
1491 /* wrong cylinder => recal */
1492 DRS->track = NEED_2_RECAL;
1494 case 0x80: /* invalid command given */
1495 DPRINT("Invalid FDC command given!\n");
1499 DPRINT("Abnormal termination caused by polling\n");
1502 default: /* (0) Normal command termination */
1508 * This routine is called when everything should be correctly set up
1509 * for the transfer (i.e. floppy motor is on, the correct floppy is
1510 * selected, and the head is sitting on the right track).
1512 static void setup_rw_floppy(void)
1518 unsigned long ready_date;
1519 timeout_fn function;
1521 flags = raw_cmd->flags;
1522 if (flags & (FD_RAW_READ | FD_RAW_WRITE))
1523 flags |= FD_RAW_INTR;
1525 if ((flags & FD_RAW_SPIN) && !(flags & FD_RAW_NO_MOTOR)) {
1526 ready_date = DRS->spinup_date + DP->spinup;
1527 /* If spinup will take a long time, rerun scandrives
1528 * again just before spinup completion. Beware that
1529 * after scandrives, we must again wait for selection.
1531 if (time_after(ready_date, jiffies + DP->select_delay)) {
1532 ready_date -= DP->select_delay;
1533 function = (timeout_fn) floppy_start;
1535 function = (timeout_fn) setup_rw_floppy;
1537 /* wait until the floppy is spinning fast enough */
1538 if (fd_wait_for_completion(ready_date, function))
1541 dflags = DRS->flags;
1543 if ((flags & FD_RAW_READ) || (flags & FD_RAW_WRITE))
1546 if (flags & FD_RAW_INTR)
1547 do_floppy = main_command_interrupt;
1550 for (i = 0; i < raw_cmd->cmd_count; i++)
1551 r |= output_byte(raw_cmd->cmd[i]);
1553 debugt("rw_command: ");
1561 if (!(flags & FD_RAW_INTR)) {
1564 } else if (flags & FD_RAW_NEED_DISK)
1568 static int blind_seek;
1571 * This is the routine called after every seek (or recalibrate) interrupt
1572 * from the floppy controller.
1574 static void seek_interrupt(void)
1576 debugt("seek interrupt:");
1577 if (inr != 2 || (ST0 & 0xF8) != 0x20) {
1578 DPRINT("seek failed\n");
1579 DRS->track = NEED_2_RECAL;
1584 if (DRS->track >= 0 && DRS->track != ST1 && !blind_seek) {
1586 if (DP->flags & FD_DEBUG) {
1588 ("clearing NEWCHANGE flag because of effective seek\n");
1589 DPRINT("jiffies=%lu\n", jiffies);
1592 CLEARF(FD_DISK_NEWCHANGE); /* effective seek */
1593 DRS->select_date = jiffies;
1599 static void check_wp(void)
1601 if (TESTF(FD_VERIFY)) {
1602 /* check write protection */
1603 output_byte(FD_GETSTATUS);
1604 output_byte(UNIT(current_drive));
1605 if (result() != 1) {
1610 CLEARF(FD_NEED_TWADDLE);
1612 if (DP->flags & FD_DEBUG) {
1613 DPRINT("checking whether disk is write protected\n");
1614 DPRINT("wp=%x\n", ST3 & 0x40);
1618 SETF(FD_DISK_WRITABLE);
1620 CLEARF(FD_DISK_WRITABLE);
1624 static void seek_floppy(void)
1631 if (DP->flags & FD_DEBUG) {
1632 DPRINT("calling disk change from seek\n");
1636 if (!TESTF(FD_DISK_NEWCHANGE) &&
1637 disk_change(current_drive) && (raw_cmd->flags & FD_RAW_NEED_DISK)) {
1638 /* the media changed flag should be cleared after the seek.
1639 * If it isn't, this means that there is really no disk in
1642 SETF(FD_DISK_CHANGED);
1647 if (DRS->track <= NEED_1_RECAL) {
1648 recalibrate_floppy();
1650 } else if (TESTF(FD_DISK_NEWCHANGE) &&
1651 (raw_cmd->flags & FD_RAW_NEED_DISK) &&
1652 (DRS->track <= NO_TRACK || DRS->track == raw_cmd->track)) {
1653 /* we seek to clear the media-changed condition. Does anybody
1654 * know a more elegant way, which works on all drives? */
1656 track = raw_cmd->track - 1;
1658 if (DP->flags & FD_SILENT_DCL_CLEAR) {
1659 set_dor(fdc, ~(0x10 << UNIT(current_drive)), 0);
1661 raw_cmd->flags |= FD_RAW_NEED_SEEK;
1667 if (raw_cmd->track != DRS->track &&
1668 (raw_cmd->flags & FD_RAW_NEED_SEEK))
1669 track = raw_cmd->track;
1676 do_floppy = seek_interrupt;
1677 output_byte(FD_SEEK);
1678 output_byte(UNIT(current_drive));
1680 debugt("seek command:");
1683 static void recal_interrupt(void)
1685 debugt("recal interrupt:");
1688 else if (ST0 & ST0_ECE) {
1689 switch (DRS->track) {
1691 debugt("recal interrupt need 1 recal:");
1692 /* after a second recalibrate, we still haven't
1693 * reached track 0. Probably no drive. Raise an
1694 * error, as failing immediately might upset
1695 * computers possessed by the Devil :-) */
1700 debugt("recal interrupt need 2 recal:");
1701 /* If we already did a recalibrate,
1702 * and we are not at track 0, this
1703 * means we have moved. (The only way
1704 * not to move at recalibration is to
1705 * be already at track 0.) Clear the
1706 * new change flag */
1708 if (DP->flags & FD_DEBUG) {
1710 ("clearing NEWCHANGE flag because of second recalibrate\n");
1714 CLEARF(FD_DISK_NEWCHANGE);
1715 DRS->select_date = jiffies;
1718 debugt("recal interrupt default:");
1719 /* Recalibrate moves the head by at
1720 * most 80 steps. If after one
1721 * recalibrate we don't have reached
1722 * track 0, this might mean that we
1723 * started beyond track 80. Try
1725 DRS->track = NEED_1_RECAL;
1733 static void print_result(char *message, int inr)
1737 DPRINT("%s ", message);
1739 for (i = 0; i < inr; i++)
1740 printk("repl[%d]=%x ", i, reply_buffer[i]);
1744 /* interrupt handler. Note that this can be called externally on the Sparc */
1745 irqreturn_t floppy_interrupt(int irq, void *dev_id)
1749 void (*handler)(void) = do_floppy;
1751 lasthandler = handler;
1752 interruptjiffies = jiffies;
1754 f = claim_dma_lock();
1756 release_dma_lock(f);
1758 floppy_enable_hlt();
1760 if (fdc >= N_FDC || FDCS->address == -1) {
1761 /* we don't even know which FDC is the culprit */
1762 printk("DOR0=%x\n", fdc_state[0].dor);
1763 printk("floppy interrupt on bizarre fdc %d\n", fdc);
1764 printk("handler=%p\n", handler);
1765 is_alive("bizarre fdc");
1770 /* We have to clear the reset flag here, because apparently on boxes
1771 * with level triggered interrupts (PS/2, Sparc, ...), it is needed to
1772 * emit SENSEI's to clear the interrupt line. And FDCS->reset blocks the
1773 * emission of the SENSEI's.
1774 * It is OK to emit floppy commands because we are in an interrupt
1775 * handler here, and thus we have to fear no interference of other
1779 do_print = !handler && print_unex && !initialising;
1783 print_result("unexpected interrupt", inr);
1787 output_byte(FD_SENSEI);
1790 print_result("sensei", inr);
1792 } while ((ST0 & 0x83) != UNIT(current_drive) && inr == 2
1799 schedule_bh(handler);
1800 is_alive("normal interrupt end");
1802 /* FIXME! Was it really for us? */
1806 static void recalibrate_floppy(void)
1808 debugt("recalibrate floppy:");
1809 do_floppy = recal_interrupt;
1810 output_byte(FD_RECALIBRATE);
1811 LAST_OUT(UNIT(current_drive));
1815 * Must do 4 FD_SENSEIs after reset because of ``drive polling''.
1817 static void reset_interrupt(void)
1819 debugt("reset interrupt:");
1820 result(); /* get the status ready for set_fdc */
1822 printk("reset set in interrupt, calling %p\n", cont->error);
1823 cont->error(); /* a reset just after a reset. BAD! */
1829 * reset is done by pulling bit 2 of DOR low for a while (old FDCs),
1830 * or by setting the self clearing bit 7 of STATUS (newer FDCs)
1832 static void reset_fdc(void)
1834 unsigned long flags;
1836 do_floppy = reset_interrupt;
1840 /* Pseudo-DMA may intercept 'reset finished' interrupt. */
1841 /* Irrelevant for systems with true DMA (i386). */
1843 flags = claim_dma_lock();
1845 release_dma_lock(flags);
1847 if (FDCS->version >= FDC_82072A)
1848 fd_outb(0x80 | (FDCS->dtr & 3), FD_STATUS);
1850 fd_outb(FDCS->dor & ~0x04, FD_DOR);
1851 udelay(FD_RESET_DELAY);
1852 fd_outb(FDCS->dor, FD_DOR);
1856 static void show_floppy(void)
1861 printk("floppy driver state\n");
1862 printk("-------------------\n");
1863 printk("now=%lu last interrupt=%lu diff=%lu last called handler=%p\n",
1864 jiffies, interruptjiffies, jiffies - interruptjiffies,
1867 #ifdef FLOPPY_SANITY_CHECK
1868 printk("timeout_message=%s\n", timeout_message);
1869 printk("last output bytes:\n");
1870 for (i = 0; i < OLOGSIZE; i++)
1871 printk("%2x %2x %lu\n",
1872 output_log[(i + output_log_pos) % OLOGSIZE].data,
1873 output_log[(i + output_log_pos) % OLOGSIZE].status,
1874 output_log[(i + output_log_pos) % OLOGSIZE].jiffies);
1875 printk("last result at %lu\n", resultjiffies);
1876 printk("last redo_fd_request at %lu\n", lastredo);
1877 for (i = 0; i < resultsize; i++) {
1878 printk("%2x ", reply_buffer[i]);
1883 printk("status=%x\n", fd_inb(FD_STATUS));
1884 printk("fdc_busy=%lu\n", fdc_busy);
1886 printk("do_floppy=%p\n", do_floppy);
1887 if (work_pending(&floppy_work))
1888 printk("floppy_work.func=%p\n", floppy_work.func);
1889 if (timer_pending(&fd_timer))
1890 printk("fd_timer.function=%p\n", fd_timer.function);
1891 if (timer_pending(&fd_timeout)) {
1892 printk("timer_function=%p\n", fd_timeout.function);
1893 printk("expires=%lu\n", fd_timeout.expires - jiffies);
1894 printk("now=%lu\n", jiffies);
1896 printk("cont=%p\n", cont);
1897 printk("current_req=%p\n", current_req);
1898 printk("command_status=%d\n", command_status);
1902 static void floppy_shutdown(unsigned long data)
1904 unsigned long flags;
1910 floppy_enable_hlt();
1912 flags = claim_dma_lock();
1914 release_dma_lock(flags);
1916 /* avoid dma going to a random drive after shutdown */
1919 DPRINT("floppy timeout called\n");
1923 cont->redo(); /* this will recall reset when needed */
1925 printk("no cont in shutdown!\n");
1926 process_fd_request();
1928 is_alive("floppy shutdown");
1931 /* start motor, check media-changed condition and write protection */
1932 static int start_motor(void (*function)(void))
1938 data = UNIT(current_drive);
1939 if (!(raw_cmd->flags & FD_RAW_NO_MOTOR)) {
1940 if (!(FDCS->dor & (0x10 << UNIT(current_drive)))) {
1942 /* no read since this drive is running */
1943 DRS->first_read_date = 0;
1944 /* note motor start time if motor is not yet running */
1945 DRS->spinup_date = jiffies;
1946 data |= (0x10 << UNIT(current_drive));
1948 } else if (FDCS->dor & (0x10 << UNIT(current_drive)))
1949 mask &= ~(0x10 << UNIT(current_drive));
1951 /* starts motor and selects floppy */
1952 del_timer(motor_off_timer + current_drive);
1953 set_dor(fdc, mask, data);
1955 /* wait_for_completion also schedules reset if needed. */
1956 return (fd_wait_for_completion(DRS->select_date + DP->select_delay,
1957 (timeout_fn) function));
1960 static void floppy_ready(void)
1963 if (start_motor(floppy_ready))
1969 if (DP->flags & FD_DEBUG) {
1970 DPRINT("calling disk change from floppy_ready\n");
1973 if (!(raw_cmd->flags & FD_RAW_NO_MOTOR) &&
1974 disk_change(current_drive) && !DP->select_delay)
1975 twaddle(); /* this clears the dcl on certain drive/controller
1978 #ifdef fd_chose_dma_mode
1979 if ((raw_cmd->flags & FD_RAW_READ) || (raw_cmd->flags & FD_RAW_WRITE)) {
1980 unsigned long flags = claim_dma_lock();
1981 fd_chose_dma_mode(raw_cmd->kernel_data, raw_cmd->length);
1982 release_dma_lock(flags);
1986 if (raw_cmd->flags & (FD_RAW_NEED_SEEK | FD_RAW_NEED_DISK)) {
1987 perpendicular_mode();
1988 fdc_specify(); /* must be done here because of hut, hlt ... */
1991 if ((raw_cmd->flags & FD_RAW_READ) ||
1992 (raw_cmd->flags & FD_RAW_WRITE))
1998 static void floppy_start(void)
2000 reschedule_timeout(current_reqD, "floppy start", 0);
2004 if (DP->flags & FD_DEBUG) {
2005 DPRINT("setting NEWCHANGE in floppy_start\n");
2008 SETF(FD_DISK_NEWCHANGE);
2013 * ========================================================================
2014 * here ends the bottom half. Exported routines are:
2015 * floppy_start, floppy_off, floppy_ready, lock_fdc, unlock_fdc, set_fdc,
2016 * start_motor, reset_fdc, reset_fdc_info, interpret_errors.
2017 * Initialization also uses output_byte, result, set_dor, floppy_interrupt
2019 * ========================================================================
2022 * General purpose continuations.
2023 * ==============================
2026 static void do_wakeup(void)
2028 reschedule_timeout(MAXTIMEOUT, "do wakeup", 0);
2030 command_status += 2;
2031 wake_up(&command_done);
2034 static struct cont_t wakeup_cont = {
2038 .done = (done_f)empty
2041 static struct cont_t intr_cont = {
2043 .redo = process_fd_request,
2045 .done = (done_f)empty
2048 static int wait_til_done(void (*handler)(void), int interruptible)
2052 schedule_bh(handler);
2054 if (command_status < 2 && NO_SIGNAL) {
2055 DECLARE_WAITQUEUE(wait, current);
2057 add_wait_queue(&command_done, &wait);
2059 set_current_state(interruptible ?
2060 TASK_INTERRUPTIBLE :
2061 TASK_UNINTERRUPTIBLE);
2063 if (command_status >= 2 || !NO_SIGNAL)
2066 is_alive("wait_til_done");
2070 set_current_state(TASK_RUNNING);
2071 remove_wait_queue(&command_done, &wait);
2074 if (command_status < 2) {
2082 command_status = FD_COMMAND_ERROR;
2083 if (command_status == FD_COMMAND_OKAY)
2087 command_status = FD_COMMAND_NONE;
2091 static void generic_done(int result)
2093 command_status = result;
2094 cont = &wakeup_cont;
2097 static void generic_success(void)
2102 static void generic_failure(void)
2107 static void success_and_wakeup(void)
2114 * formatting and rw support.
2115 * ==========================
2118 static int next_valid_format(void)
2122 probed_format = DRS->probed_format;
2124 if (probed_format >= 8 || !DP->autodetect[probed_format]) {
2125 DRS->probed_format = 0;
2128 if (floppy_type[DP->autodetect[probed_format]].sect) {
2129 DRS->probed_format = probed_format;
2136 static void bad_flp_intr(void)
2141 DRS->probed_format++;
2142 if (!next_valid_format())
2145 err_count = ++(*errors);
2146 INFBOUND(DRWE->badness, err_count);
2147 if (err_count > DP->max_errors.abort)
2149 if (err_count > DP->max_errors.reset)
2151 else if (err_count > DP->max_errors.recal)
2152 DRS->track = NEED_2_RECAL;
2155 static void set_floppy(int drive)
2157 int type = ITYPE(UDRS->fd_device);
2160 _floppy = floppy_type + type;
2162 _floppy = current_type[drive];
2166 * formatting support.
2167 * ===================
2169 static void format_interrupt(void)
2171 switch (interpret_errors()) {
2182 #define CODE2SIZE (ssize = ((1 << SIZECODE) + 3) >> 2)
2183 #define FM_MODE(x,y) ((y) & ~(((x)->rate & 0x80) >>1))
2184 #define CT(x) ((x) | 0xc0)
2185 static void setup_format_params(int track)
2193 unsigned char track, head, sect, size;
2194 } *here = (struct fparm *)floppy_track_buffer;
2196 raw_cmd = &default_raw_cmd;
2197 raw_cmd->track = track;
2199 raw_cmd->flags = FD_RAW_WRITE | FD_RAW_INTR | FD_RAW_SPIN |
2200 FD_RAW_NEED_DISK | FD_RAW_NEED_SEEK;
2201 raw_cmd->rate = _floppy->rate & 0x43;
2202 raw_cmd->cmd_count = NR_F;
2203 COMMAND = FM_MODE(_floppy, FD_FORMAT);
2204 DR_SELECT = UNIT(current_drive) + PH_HEAD(_floppy, format_req.head);
2205 F_SIZECODE = FD_SIZECODE(_floppy);
2206 F_SECT_PER_TRACK = _floppy->sect << 2 >> F_SIZECODE;
2207 F_GAP = _floppy->fmt_gap;
2208 F_FILL = FD_FILL_BYTE;
2210 raw_cmd->kernel_data = floppy_track_buffer;
2211 raw_cmd->length = 4 * F_SECT_PER_TRACK;
2213 /* allow for about 30ms for data transport per track */
2214 head_shift = (F_SECT_PER_TRACK + 5) / 6;
2216 /* a ``cylinder'' is two tracks plus a little stepping time */
2217 track_shift = 2 * head_shift + 3;
2219 /* position of logical sector 1 on this track */
2220 n = (track_shift * format_req.track + head_shift * format_req.head)
2223 /* determine interleave */
2225 if (_floppy->fmt_gap < 0x22)
2228 /* initialize field */
2229 for (count = 0; count < F_SECT_PER_TRACK; ++count) {
2230 here[count].track = format_req.track;
2231 here[count].head = format_req.head;
2232 here[count].sect = 0;
2233 here[count].size = F_SIZECODE;
2235 /* place logical sectors */
2236 for (count = 1; count <= F_SECT_PER_TRACK; ++count) {
2237 here[n].sect = count;
2238 n = (n + il) % F_SECT_PER_TRACK;
2239 if (here[n].sect) { /* sector busy, find next free sector */
2241 if (n >= F_SECT_PER_TRACK) {
2242 n -= F_SECT_PER_TRACK;
2243 while (here[n].sect)
2248 if (_floppy->stretch & FD_SECTBASEMASK) {
2249 for (count = 0; count < F_SECT_PER_TRACK; count++)
2250 here[count].sect += FD_SECTBASE(_floppy) - 1;
2254 static void redo_format(void)
2257 setup_format_params(format_req.track << STRETCH(_floppy));
2259 debugt("queue format request");
2262 static struct cont_t format_cont = {
2263 .interrupt = format_interrupt,
2264 .redo = redo_format,
2265 .error = bad_flp_intr,
2266 .done = generic_done
2269 static int do_format(int drive, struct format_descr *tmp_format_req)
2276 _floppy->track > DP->tracks ||
2277 tmp_format_req->track >= _floppy->track ||
2278 tmp_format_req->head >= _floppy->head ||
2279 (_floppy->sect << 2) % (1 << FD_SIZECODE(_floppy)) ||
2280 !_floppy->fmt_gap) {
2281 process_fd_request();
2284 format_req = *tmp_format_req;
2286 cont = &format_cont;
2287 errors = &format_errors;
2289 process_fd_request();
2294 * Buffer read/write and support
2295 * =============================
2298 static void floppy_end_request(struct request *req, int error)
2300 unsigned int nr_sectors = current_count_sectors;
2301 unsigned int drive = (unsigned long)req->rq_disk->private_data;
2303 /* current_count_sectors can be zero if transfer failed */
2305 nr_sectors = req->current_nr_sectors;
2306 if (__blk_end_request(req, error, nr_sectors << 9))
2309 /* We're done with the request */
2314 /* new request_done. Can handle physical sectors which are smaller than a
2316 static void request_done(int uptodate)
2318 struct request_queue *q = floppy_queue;
2319 struct request *req = current_req;
2320 unsigned long flags;
2324 reschedule_timeout(MAXTIMEOUT, "request done %d", uptodate);
2327 printk("floppy.c: no request in request_done\n");
2332 /* maintain values for invalidation on geometry
2334 block = current_count_sectors + req->sector;
2335 INFBOUND(DRS->maxblock, block);
2336 if (block > _floppy->sect)
2339 /* unlock chained buffers */
2340 spin_lock_irqsave(q->queue_lock, flags);
2341 floppy_end_request(req, 0);
2342 spin_unlock_irqrestore(q->queue_lock, flags);
2344 if (rq_data_dir(req) == WRITE) {
2345 /* record write error information */
2346 DRWE->write_errors++;
2347 if (DRWE->write_errors == 1) {
2348 DRWE->first_error_sector = req->sector;
2349 DRWE->first_error_generation = DRS->generation;
2351 DRWE->last_error_sector = req->sector;
2352 DRWE->last_error_generation = DRS->generation;
2354 spin_lock_irqsave(q->queue_lock, flags);
2355 floppy_end_request(req, -EIO);
2356 spin_unlock_irqrestore(q->queue_lock, flags);
2360 /* Interrupt handler evaluating the result of the r/w operation */
2361 static void rw_interrupt(void)
2369 /* some Toshiba floppy controllers occasionnally seem to
2370 * return bogus interrupts after read/write operations, which
2371 * can be recognized by a bad head number (>= 2) */
2375 if (!DRS->first_read_date)
2376 DRS->first_read_date = jiffies;
2391 nr_sectors = (((R_TRACK - TRACK) * heads +
2392 R_HEAD - HEAD) * SECT_PER_TRACK +
2393 R_SECTOR - SECTOR + eoc) << SIZECODE >> 2;
2395 #ifdef FLOPPY_SANITY_CHECK
2396 if (nr_sectors / ssize >
2397 DIV_ROUND_UP(in_sector_offset + current_count_sectors, ssize)) {
2398 DPRINT("long rw: %x instead of %lx\n",
2399 nr_sectors, current_count_sectors);
2400 printk("rs=%d s=%d\n", R_SECTOR, SECTOR);
2401 printk("rh=%d h=%d\n", R_HEAD, HEAD);
2402 printk("rt=%d t=%d\n", R_TRACK, TRACK);
2403 printk("heads=%d eoc=%d\n", heads, eoc);
2404 printk("spt=%d st=%d ss=%d\n", SECT_PER_TRACK,
2406 printk("in_sector_offset=%d\n", in_sector_offset);
2410 nr_sectors -= in_sector_offset;
2411 INFBOUND(nr_sectors, 0);
2412 SUPBOUND(current_count_sectors, nr_sectors);
2414 switch (interpret_errors()) {
2419 if (!current_count_sectors) {
2426 if (!current_count_sectors) {
2430 current_type[current_drive] = _floppy;
2431 floppy_sizes[TOMINOR(current_drive)] = _floppy->size;
2436 if (DP->flags & FTD_MSG)
2437 DPRINT("Auto-detected floppy type %s in fd%d\n",
2438 _floppy->name, current_drive);
2439 current_type[current_drive] = _floppy;
2440 floppy_sizes[TOMINOR(current_drive)] = _floppy->size;
2444 if (CT(COMMAND) != FD_READ ||
2445 raw_cmd->kernel_data == current_req->buffer) {
2446 /* transfer directly from buffer */
2448 } else if (CT(COMMAND) == FD_READ) {
2449 buffer_track = raw_cmd->track;
2450 buffer_drive = current_drive;
2451 INFBOUND(buffer_max, nr_sectors + fsector_t);
2456 /* Compute maximal contiguous buffer size. */
2457 static int buffer_chain_size(void)
2461 struct req_iterator iter;
2464 base = bio_data(current_req->bio);
2467 rq_for_each_segment(bv, current_req, iter) {
2468 if (page_address(bv->bv_page) + bv->bv_offset != base + size)
2477 /* Compute the maximal transfer size */
2478 static int transfer_size(int ssize, int max_sector, int max_size)
2480 SUPBOUND(max_sector, fsector_t + max_size);
2483 max_sector -= (max_sector % _floppy->sect) % ssize;
2485 /* transfer size, beginning not aligned */
2486 current_count_sectors = max_sector - fsector_t;
2492 * Move data from/to the track buffer to/from the buffer cache.
2494 static void copy_buffer(int ssize, int max_sector, int max_sector_2)
2496 int remaining; /* number of transferred 512-byte sectors */
2501 struct req_iterator iter;
2503 max_sector = transfer_size(ssize,
2504 min(max_sector, max_sector_2),
2505 current_req->nr_sectors);
2507 if (current_count_sectors <= 0 && CT(COMMAND) == FD_WRITE &&
2508 buffer_max > fsector_t + current_req->nr_sectors)
2509 current_count_sectors = min_t(int, buffer_max - fsector_t,
2510 current_req->nr_sectors);
2512 remaining = current_count_sectors << 9;
2513 #ifdef FLOPPY_SANITY_CHECK
2514 if ((remaining >> 9) > current_req->nr_sectors &&
2515 CT(COMMAND) == FD_WRITE) {
2516 DPRINT("in copy buffer\n");
2517 printk("current_count_sectors=%ld\n", current_count_sectors);
2518 printk("remaining=%d\n", remaining >> 9);
2519 printk("current_req->nr_sectors=%ld\n",
2520 current_req->nr_sectors);
2521 printk("current_req->current_nr_sectors=%u\n",
2522 current_req->current_nr_sectors);
2523 printk("max_sector=%d\n", max_sector);
2524 printk("ssize=%d\n", ssize);
2528 buffer_max = max(max_sector, buffer_max);
2530 dma_buffer = floppy_track_buffer + ((fsector_t - buffer_min) << 9);
2532 size = current_req->current_nr_sectors << 9;
2534 rq_for_each_segment(bv, current_req, iter) {
2539 SUPBOUND(size, remaining);
2541 buffer = page_address(bv->bv_page) + bv->bv_offset;
2542 #ifdef FLOPPY_SANITY_CHECK
2543 if (dma_buffer + size >
2544 floppy_track_buffer + (max_buffer_sectors << 10) ||
2545 dma_buffer < floppy_track_buffer) {
2546 DPRINT("buffer overrun in copy buffer %d\n",
2547 (int)((floppy_track_buffer -
2549 printk("fsector_t=%d buffer_min=%d\n",
2550 fsector_t, buffer_min);
2551 printk("current_count_sectors=%ld\n",
2552 current_count_sectors);
2553 if (CT(COMMAND) == FD_READ)
2555 if (CT(COMMAND) == FD_WRITE)
2559 if (((unsigned long)buffer) % 512)
2560 DPRINT("%p buffer not aligned\n", buffer);
2562 if (CT(COMMAND) == FD_READ)
2563 memcpy(buffer, dma_buffer, size);
2565 memcpy(dma_buffer, buffer, size);
2570 #ifdef FLOPPY_SANITY_CHECK
2573 max_sector -= remaining >> 9;
2574 DPRINT("weirdness: remaining %d\n", remaining >> 9);
2579 /* work around a bug in pseudo DMA
2580 * (on some FDCs) pseudo DMA does not stop when the CPU stops
2581 * sending data. Hence we need a different way to signal the
2582 * transfer length: We use SECT_PER_TRACK. Unfortunately, this
2583 * does not work with MT, hence we can only transfer one head at
2586 static void virtualdmabug_workaround(void)
2591 if (CT(COMMAND) == FD_WRITE) {
2592 COMMAND &= ~0x80; /* switch off multiple track mode */
2594 hard_sectors = raw_cmd->length >> (7 + SIZECODE);
2595 end_sector = SECTOR + hard_sectors - 1;
2596 #ifdef FLOPPY_SANITY_CHECK
2597 if (end_sector > SECT_PER_TRACK) {
2598 printk("too many sectors %d > %d\n",
2599 end_sector, SECT_PER_TRACK);
2603 SECT_PER_TRACK = end_sector; /* make sure SECT_PER_TRACK points
2604 * to end of transfer */
2609 * Formulate a read/write request.
2610 * this routine decides where to load the data (directly to buffer, or to
2611 * tmp floppy area), how much data to load (the size of the buffer, the whole
2612 * track, or a single sector)
2613 * All floppy_track_buffer handling goes in here. If we ever add track buffer
2614 * allocation on the fly, it should be done here. No other part should need
2618 static int make_raw_rw_request(void)
2620 int aligned_sector_t;
2626 if (max_buffer_sectors == 0) {
2627 printk("VFS: Block I/O scheduled on unopened device\n");
2631 set_fdc((long)current_req->rq_disk->private_data);
2633 raw_cmd = &default_raw_cmd;
2634 raw_cmd->flags = FD_RAW_SPIN | FD_RAW_NEED_DISK | FD_RAW_NEED_DISK |
2636 raw_cmd->cmd_count = NR_RW;
2637 if (rq_data_dir(current_req) == READ) {
2638 raw_cmd->flags |= FD_RAW_READ;
2639 COMMAND = FM_MODE(_floppy, FD_READ);
2640 } else if (rq_data_dir(current_req) == WRITE) {
2641 raw_cmd->flags |= FD_RAW_WRITE;
2642 COMMAND = FM_MODE(_floppy, FD_WRITE);
2644 DPRINT("make_raw_rw_request: unknown command\n");
2648 max_sector = _floppy->sect * _floppy->head;
2650 TRACK = (int)current_req->sector / max_sector;
2651 fsector_t = (int)current_req->sector % max_sector;
2652 if (_floppy->track && TRACK >= _floppy->track) {
2653 if (current_req->current_nr_sectors & 1) {
2654 current_count_sectors = 1;
2659 HEAD = fsector_t / _floppy->sect;
2661 if (((_floppy->stretch & (FD_SWAPSIDES | FD_SECTBASEMASK)) ||
2662 TESTF(FD_NEED_TWADDLE)) && fsector_t < _floppy->sect)
2663 max_sector = _floppy->sect;
2665 /* 2M disks have phantom sectors on the first track */
2666 if ((_floppy->rate & FD_2M) && (!TRACK) && (!HEAD)) {
2667 max_sector = 2 * _floppy->sect / 3;
2668 if (fsector_t >= max_sector) {
2669 current_count_sectors =
2670 min_t(int, _floppy->sect - fsector_t,
2671 current_req->nr_sectors);
2676 SIZECODE = FD_SIZECODE(_floppy);
2677 raw_cmd->rate = _floppy->rate & 0x43;
2678 if ((_floppy->rate & FD_2M) && (TRACK || HEAD) && raw_cmd->rate == 2)
2685 raw_cmd->track = TRACK << STRETCH(_floppy);
2686 DR_SELECT = UNIT(current_drive) + PH_HEAD(_floppy, HEAD);
2689 SECT_PER_TRACK = _floppy->sect << 2 >> SIZECODE;
2690 SECTOR = ((fsector_t % _floppy->sect) << 2 >> SIZECODE) +
2691 FD_SECTBASE(_floppy);
2693 /* tracksize describes the size which can be filled up with sectors
2696 tracksize = _floppy->sect - _floppy->sect % ssize;
2697 if (tracksize < _floppy->sect) {
2699 if (tracksize <= fsector_t % _floppy->sect)
2702 /* if we are beyond tracksize, fill up using smaller sectors */
2703 while (tracksize <= fsector_t % _floppy->sect) {
2704 while (tracksize + ssize > _floppy->sect) {
2712 max_sector = HEAD * _floppy->sect + tracksize;
2713 } else if (!TRACK && !HEAD && !(_floppy->rate & FD_2M) && probing) {
2714 max_sector = _floppy->sect;
2715 } else if (!HEAD && CT(COMMAND) == FD_WRITE) {
2716 /* for virtual DMA bug workaround */
2717 max_sector = _floppy->sect;
2720 in_sector_offset = (fsector_t % _floppy->sect) % ssize;
2721 aligned_sector_t = fsector_t - in_sector_offset;
2722 max_size = current_req->nr_sectors;
2723 if ((raw_cmd->track == buffer_track) &&
2724 (current_drive == buffer_drive) &&
2725 (fsector_t >= buffer_min) && (fsector_t < buffer_max)) {
2726 /* data already in track buffer */
2727 if (CT(COMMAND) == FD_READ) {
2728 copy_buffer(1, max_sector, buffer_max);
2731 } else if (in_sector_offset || current_req->nr_sectors < ssize) {
2732 if (CT(COMMAND) == FD_WRITE) {
2733 if (fsector_t + current_req->nr_sectors > ssize &&
2734 fsector_t + current_req->nr_sectors < ssize + ssize)
2735 max_size = ssize + ssize;
2739 raw_cmd->flags &= ~FD_RAW_WRITE;
2740 raw_cmd->flags |= FD_RAW_READ;
2741 COMMAND = FM_MODE(_floppy, FD_READ);
2742 } else if ((unsigned long)current_req->buffer < MAX_DMA_ADDRESS) {
2743 unsigned long dma_limit;
2744 int direct, indirect;
2747 transfer_size(ssize, max_sector,
2748 max_buffer_sectors * 2) - fsector_t;
2751 * Do NOT use minimum() here---MAX_DMA_ADDRESS is 64 bits wide
2752 * on a 64 bit machine!
2754 max_size = buffer_chain_size();
2757 ((unsigned long)current_req->buffer)) >> 9;
2758 if ((unsigned long)max_size > dma_limit) {
2759 max_size = dma_limit;
2761 /* 64 kb boundaries */
2762 if (CROSS_64KB(current_req->buffer, max_size << 9))
2764 ((unsigned long)current_req->buffer) %
2766 direct = transfer_size(ssize, max_sector, max_size) - fsector_t;
2768 * We try to read tracks, but if we get too many errors, we
2769 * go back to reading just one sector at a time.
2771 * This means we should be able to read a sector even if there
2772 * are other bad sectors on this track.
2775 (indirect * 2 > direct * 3 &&
2776 *errors < DP->max_errors.read_track && ((!probing
2777 || (DP->read_track & (1 << DRS->probed_format)))))) {
2778 max_size = current_req->nr_sectors;
2780 raw_cmd->kernel_data = current_req->buffer;
2781 raw_cmd->length = current_count_sectors << 9;
2782 if (raw_cmd->length == 0) {
2784 ("zero dma transfer attempted from make_raw_request\n");
2785 DPRINT("indirect=%d direct=%d fsector_t=%d",
2786 indirect, direct, fsector_t);
2789 virtualdmabug_workaround();
2794 if (CT(COMMAND) == FD_READ)
2795 max_size = max_sector; /* unbounded */
2797 /* claim buffer track if needed */
2798 if (buffer_track != raw_cmd->track || /* bad track */
2799 buffer_drive != current_drive || /* bad drive */
2800 fsector_t > buffer_max ||
2801 fsector_t < buffer_min ||
2802 ((CT(COMMAND) == FD_READ ||
2803 (!in_sector_offset && current_req->nr_sectors >= ssize)) &&
2804 max_sector > 2 * max_buffer_sectors + buffer_min &&
2805 max_size + fsector_t > 2 * max_buffer_sectors + buffer_min)
2806 /* not enough space */
2809 buffer_drive = current_drive;
2810 buffer_max = buffer_min = aligned_sector_t;
2812 raw_cmd->kernel_data = floppy_track_buffer +
2813 ((aligned_sector_t - buffer_min) << 9);
2815 if (CT(COMMAND) == FD_WRITE) {
2816 /* copy write buffer to track buffer.
2817 * if we get here, we know that the write
2818 * is either aligned or the data already in the buffer
2819 * (buffer will be overwritten) */
2820 #ifdef FLOPPY_SANITY_CHECK
2821 if (in_sector_offset && buffer_track == -1)
2822 DPRINT("internal error offset !=0 on write\n");
2824 buffer_track = raw_cmd->track;
2825 buffer_drive = current_drive;
2826 copy_buffer(ssize, max_sector,
2827 2 * max_buffer_sectors + buffer_min);
2829 transfer_size(ssize, max_sector,
2830 2 * max_buffer_sectors + buffer_min -
2833 /* round up current_count_sectors to get dma xfer size */
2834 raw_cmd->length = in_sector_offset + current_count_sectors;
2835 raw_cmd->length = ((raw_cmd->length - 1) | (ssize - 1)) + 1;
2836 raw_cmd->length <<= 9;
2837 #ifdef FLOPPY_SANITY_CHECK
2838 if ((raw_cmd->length < current_count_sectors << 9) ||
2839 (raw_cmd->kernel_data != current_req->buffer &&
2840 CT(COMMAND) == FD_WRITE &&
2841 (aligned_sector_t + (raw_cmd->length >> 9) > buffer_max ||
2842 aligned_sector_t < buffer_min)) ||
2843 raw_cmd->length % (128 << SIZECODE) ||
2844 raw_cmd->length <= 0 || current_count_sectors <= 0) {
2845 DPRINT("fractionary current count b=%lx s=%lx\n",
2846 raw_cmd->length, current_count_sectors);
2847 if (raw_cmd->kernel_data != current_req->buffer)
2848 printk("addr=%d, length=%ld\n",
2849 (int)((raw_cmd->kernel_data -
2850 floppy_track_buffer) >> 9),
2851 current_count_sectors);
2852 printk("st=%d ast=%d mse=%d msi=%d\n",
2853 fsector_t, aligned_sector_t, max_sector, max_size);
2854 printk("ssize=%x SIZECODE=%d\n", ssize, SIZECODE);
2855 printk("command=%x SECTOR=%d HEAD=%d, TRACK=%d\n",
2856 COMMAND, SECTOR, HEAD, TRACK);
2857 printk("buffer drive=%d\n", buffer_drive);
2858 printk("buffer track=%d\n", buffer_track);
2859 printk("buffer_min=%d\n", buffer_min);
2860 printk("buffer_max=%d\n", buffer_max);
2864 if (raw_cmd->kernel_data != current_req->buffer) {
2865 if (raw_cmd->kernel_data < floppy_track_buffer ||
2866 current_count_sectors < 0 ||
2867 raw_cmd->length < 0 ||
2868 raw_cmd->kernel_data + raw_cmd->length >
2869 floppy_track_buffer + (max_buffer_sectors << 10)) {
2870 DPRINT("buffer overrun in schedule dma\n");
2871 printk("fsector_t=%d buffer_min=%d current_count=%ld\n",
2872 fsector_t, buffer_min, raw_cmd->length >> 9);
2873 printk("current_count_sectors=%ld\n",
2874 current_count_sectors);
2875 if (CT(COMMAND) == FD_READ)
2877 if (CT(COMMAND) == FD_WRITE)
2881 } else if (raw_cmd->length > current_req->nr_sectors << 9 ||
2882 current_count_sectors > current_req->nr_sectors) {
2883 DPRINT("buffer overrun in direct transfer\n");
2885 } else if (raw_cmd->length < current_count_sectors << 9) {
2886 DPRINT("more sectors than bytes\n");
2887 printk("bytes=%ld\n", raw_cmd->length >> 9);
2888 printk("sectors=%ld\n", current_count_sectors);
2890 if (raw_cmd->length == 0) {
2891 DPRINT("zero dma transfer attempted from make_raw_request\n");
2896 virtualdmabug_workaround();
2900 static void redo_fd_request(void)
2902 #define REPEAT {request_done(0); continue; }
2907 if (current_drive < N_DRIVE)
2908 floppy_off(current_drive);
2912 struct request *req;
2914 spin_lock_irq(floppy_queue->queue_lock);
2915 req = elv_next_request(floppy_queue);
2916 spin_unlock_irq(floppy_queue->queue_lock);
2924 drive = (long)current_req->rq_disk->private_data;
2926 reschedule_timeout(current_reqD, "redo fd request", 0);
2929 raw_cmd = &default_raw_cmd;
2931 if (start_motor(redo_fd_request))
2933 disk_change(current_drive);
2934 if (test_bit(current_drive, &fake_change) ||
2935 TESTF(FD_DISK_CHANGED)) {
2936 DPRINT("disk absent or changed during operation\n");
2939 if (!_floppy) { /* Autodetection */
2941 DRS->probed_format = 0;
2942 if (next_valid_format()) {
2943 DPRINT("no autodetectable formats\n");
2950 floppy_type + DP->autodetect[DRS->probed_format];
2953 errors = &(current_req->errors);
2954 tmp = make_raw_rw_request();
2960 if (TESTF(FD_NEED_TWADDLE))
2962 schedule_bh(floppy_start);
2963 debugt("queue fd request");
2969 static struct cont_t rw_cont = {
2970 .interrupt = rw_interrupt,
2971 .redo = redo_fd_request,
2972 .error = bad_flp_intr,
2973 .done = request_done
2976 static void process_fd_request(void)
2979 schedule_bh(redo_fd_request);
2982 static void do_fd_request(struct request_queue * q)
2984 if (max_buffer_sectors == 0) {
2985 printk("VFS: do_fd_request called on non-open device\n");
2989 if (usage_count == 0) {
2990 printk("warning: usage count=0, current_req=%p exiting\n",
2992 printk("sect=%ld type=%x flags=%x\n", (long)current_req->sector,
2993 current_req->cmd_type, current_req->cmd_flags);
2996 if (test_bit(0, &fdc_busy)) {
2997 /* fdc busy, this new request will be treated when the
2998 current one is done */
2999 is_alive("do fd request, old request running");
3002 lock_fdc(MAXTIMEOUT, 0);
3003 process_fd_request();
3004 is_alive("do fd request");
3007 static struct cont_t poll_cont = {
3008 .interrupt = success_and_wakeup,
3009 .redo = floppy_ready,
3010 .error = generic_failure,
3011 .done = generic_done
3014 static int poll_drive(int interruptible, int flag)
3018 /* no auto-sense, just clear dcl */
3019 raw_cmd = &default_raw_cmd;
3020 raw_cmd->flags = flag;
3022 raw_cmd->cmd_count = 0;
3025 if (DP->flags & FD_DEBUG) {
3026 DPRINT("setting NEWCHANGE in poll_drive\n");
3029 SETF(FD_DISK_NEWCHANGE);
3035 * User triggered reset
3036 * ====================
3039 static void reset_intr(void)
3041 printk("weird, reset interrupt called\n");
3044 static struct cont_t reset_cont = {
3045 .interrupt = reset_intr,
3046 .redo = success_and_wakeup,
3047 .error = generic_failure,
3048 .done = generic_done
3051 static int user_reset_fdc(int drive, int arg, int interruptible)
3056 LOCK_FDC(drive, interruptible);
3057 if (arg == FD_RESET_ALWAYS)
3063 process_fd_request();
3068 * Misc Ioctl's and support
3069 * ========================
3071 static inline int fd_copyout(void __user *param, const void *address,
3074 return copy_to_user(param, address, size) ? -EFAULT : 0;
3077 static inline int fd_copyin(void __user *param, void *address, unsigned long size)
3079 return copy_from_user(address, param, size) ? -EFAULT : 0;
3082 #define _COPYOUT(x) (copy_to_user((void __user *)param, &(x), sizeof(x)) ? -EFAULT : 0)
3083 #define _COPYIN(x) (copy_from_user(&(x), (void __user *)param, sizeof(x)) ? -EFAULT : 0)
3085 #define COPYOUT(x) ECALL(_COPYOUT(x))
3086 #define COPYIN(x) ECALL(_COPYIN(x))
3088 static inline const char *drive_name(int type, int drive)
3090 struct floppy_struct *floppy;
3093 floppy = floppy_type + type;
3095 if (UDP->native_format)
3096 floppy = floppy_type + UDP->native_format;
3101 return floppy->name;
3107 static void raw_cmd_done(int flag)
3112 raw_cmd->flags |= FD_RAW_FAILURE;
3113 raw_cmd->flags |= FD_RAW_HARDFAILURE;
3115 raw_cmd->reply_count = inr;
3116 if (raw_cmd->reply_count > MAX_REPLIES)
3117 raw_cmd->reply_count = 0;
3118 for (i = 0; i < raw_cmd->reply_count; i++)
3119 raw_cmd->reply[i] = reply_buffer[i];
3121 if (raw_cmd->flags & (FD_RAW_READ | FD_RAW_WRITE)) {
3122 unsigned long flags;
3123 flags = claim_dma_lock();
3124 raw_cmd->length = fd_get_dma_residue();
3125 release_dma_lock(flags);
3128 if ((raw_cmd->flags & FD_RAW_SOFTFAILURE) &&
3129 (!raw_cmd->reply_count || (raw_cmd->reply[0] & 0xc0)))
3130 raw_cmd->flags |= FD_RAW_FAILURE;
3132 if (disk_change(current_drive))
3133 raw_cmd->flags |= FD_RAW_DISK_CHANGE;
3135 raw_cmd->flags &= ~FD_RAW_DISK_CHANGE;
3136 if (raw_cmd->flags & FD_RAW_NO_MOTOR_AFTER)
3137 motor_off_callback(current_drive);
3139 if (raw_cmd->next &&
3140 (!(raw_cmd->flags & FD_RAW_FAILURE) ||
3141 !(raw_cmd->flags & FD_RAW_STOP_IF_FAILURE)) &&
3142 ((raw_cmd->flags & FD_RAW_FAILURE) ||
3143 !(raw_cmd->flags & FD_RAW_STOP_IF_SUCCESS))) {
3144 raw_cmd = raw_cmd->next;
3151 static struct cont_t raw_cmd_cont = {
3152 .interrupt = success_and_wakeup,
3153 .redo = floppy_start,
3154 .error = generic_failure,
3155 .done = raw_cmd_done
3158 static inline int raw_cmd_copyout(int cmd, char __user *param,
3159 struct floppy_raw_cmd *ptr)
3165 param += sizeof(struct floppy_raw_cmd);
3166 if ((ptr->flags & FD_RAW_READ) && ptr->buffer_length) {
3167 if (ptr->length >= 0
3168 && ptr->length <= ptr->buffer_length)
3170 (ptr->data, ptr->kernel_data,
3171 ptr->buffer_length - ptr->length));
3178 static void raw_cmd_free(struct floppy_raw_cmd **ptr)
3180 struct floppy_raw_cmd *next;
3181 struct floppy_raw_cmd *this;
3186 if (this->buffer_length) {
3187 fd_dma_mem_free((unsigned long)this->kernel_data,
3188 this->buffer_length);
3189 this->buffer_length = 0;
3197 static inline int raw_cmd_copyin(int cmd, char __user *param,
3198 struct floppy_raw_cmd **rcmd)
3200 struct floppy_raw_cmd *ptr;
3206 ptr = (struct floppy_raw_cmd *)
3207 kmalloc(sizeof(struct floppy_raw_cmd), GFP_USER);
3213 ptr->buffer_length = 0;
3214 param += sizeof(struct floppy_raw_cmd);
3215 if (ptr->cmd_count > 33)
3216 /* the command may now also take up the space
3217 * initially intended for the reply & the
3218 * reply count. Needed for long 82078 commands
3219 * such as RESTORE, which takes ... 17 command
3220 * bytes. Murphy's law #137: When you reserve
3221 * 16 bytes for a structure, you'll one day
3222 * discover that you really need 17...
3226 for (i = 0; i < 16; i++)
3228 ptr->resultcode = 0;
3229 ptr->kernel_data = NULL;
3231 if (ptr->flags & (FD_RAW_READ | FD_RAW_WRITE)) {
3232 if (ptr->length <= 0)
3235 (char *)fd_dma_mem_alloc(ptr->length);
3236 fallback_on_nodma_alloc(&ptr->kernel_data, ptr->length);
3237 if (!ptr->kernel_data)
3239 ptr->buffer_length = ptr->length;
3241 if (ptr->flags & FD_RAW_WRITE)
3242 ECALL(fd_copyin(ptr->data, ptr->kernel_data,
3244 rcmd = &(ptr->next);
3245 if (!(ptr->flags & FD_RAW_MORE))
3251 static int raw_cmd_ioctl(int cmd, void __user *param)
3253 struct floppy_raw_cmd *my_raw_cmd;
3258 if (FDCS->rawcmd <= 1)
3260 for (drive = 0; drive < N_DRIVE; drive++) {
3261 if (FDC(drive) != fdc)
3263 if (drive == current_drive) {
3264 if (UDRS->fd_ref > 1) {
3268 } else if (UDRS->fd_ref) {
3277 ret = raw_cmd_copyin(cmd, param, &my_raw_cmd);
3279 raw_cmd_free(&my_raw_cmd);
3283 raw_cmd = my_raw_cmd;
3284 cont = &raw_cmd_cont;
3285 ret = wait_til_done(floppy_start, 1);
3287 if (DP->flags & FD_DEBUG) {
3288 DPRINT("calling disk change from raw_cmd ioctl\n");
3292 if (ret != -EINTR && FDCS->reset)
3295 DRS->track = NO_TRACK;
3297 ret2 = raw_cmd_copyout(cmd, param, my_raw_cmd);
3300 raw_cmd_free(&my_raw_cmd);
3304 static int invalidate_drive(struct block_device *bdev)
3306 /* invalidate the buffer track to force a reread */
3307 set_bit((long)bdev->bd_disk->private_data, &fake_change);
3308 process_fd_request();
3309 check_disk_change(bdev);
3313 static inline int set_geometry(unsigned int cmd, struct floppy_struct *g,
3314 int drive, int type, struct block_device *bdev)
3318 /* sanity checking for parameters. */
3321 g->track <= 0 || g->track > UDP->tracks >> STRETCH(g) ||
3322 /* check if reserved bits are set */
3323 (g->stretch & ~(FD_STRETCH | FD_SWAPSIDES | FD_SECTBASEMASK)) != 0)
3326 if (!capable(CAP_SYS_ADMIN))
3328 mutex_lock(&open_lock);
3330 floppy_type[type] = *g;
3331 floppy_type[type].name = "user format";
3332 for (cnt = type << 2; cnt < (type << 2) + 4; cnt++)
3333 floppy_sizes[cnt] = floppy_sizes[cnt + 0x80] =
3334 floppy_type[type].size + 1;
3335 process_fd_request();
3336 for (cnt = 0; cnt < N_DRIVE; cnt++) {
3337 struct block_device *bdev = opened_bdev[cnt];
3338 if (!bdev || ITYPE(drive_state[cnt].fd_device) != type)
3340 __invalidate_device(bdev);
3342 mutex_unlock(&open_lock);
3346 if (cmd != FDDEFPRM)
3347 /* notice a disk change immediately, else
3348 * we lose our settings immediately*/
3349 CALL(poll_drive(1, FD_RAW_NEED_DISK));
3350 oldStretch = g->stretch;
3351 user_params[drive] = *g;
3352 if (buffer_drive == drive)
3353 SUPBOUND(buffer_max, user_params[drive].sect);
3354 current_type[drive] = &user_params[drive];
3355 floppy_sizes[drive] = user_params[drive].size;
3356 if (cmd == FDDEFPRM)
3357 DRS->keep_data = -1;
3360 /* invalidation. Invalidate only when needed, i.e.
3361 * when there are already sectors in the buffer cache
3362 * whose number will change. This is useful, because
3363 * mtools often changes the geometry of the disk after
3364 * looking at the boot block */
3365 if (DRS->maxblock > user_params[drive].sect ||
3367 ((user_params[drive].sect ^ oldStretch) &
3368 (FD_SWAPSIDES | FD_SECTBASEMASK)))
3369 invalidate_drive(bdev);
3371 process_fd_request();
3376 /* handle obsolete ioctl's */
3377 static int ioctl_table[] = {
3405 static inline int normalize_ioctl(int *cmd, int *size)
3409 for (i = 0; i < ARRAY_SIZE(ioctl_table); i++) {
3410 if ((*cmd & 0xffff) == (ioctl_table[i] & 0xffff)) {
3411 *size = _IOC_SIZE(*cmd);
3412 *cmd = ioctl_table[i];
3413 if (*size > _IOC_SIZE(*cmd)) {
3414 printk("ioctl not yet supported\n");
3423 static int get_floppy_geometry(int drive, int type, struct floppy_struct **g)
3426 *g = &floppy_type[type];
3429 CALL(poll_drive(0, 0));
3430 process_fd_request();
3431 *g = current_type[drive];
3438 static int fd_getgeo(struct block_device *bdev, struct hd_geometry *geo)
3440 int drive = (long)bdev->bd_disk->private_data;
3441 int type = ITYPE(drive_state[drive].fd_device);
3442 struct floppy_struct *g;
3445 ret = get_floppy_geometry(drive, type, &g);
3449 geo->heads = g->head;
3450 geo->sectors = g->sect;
3451 geo->cylinders = g->track;
3455 static int fd_ioctl(struct block_device *bdev, fmode_t mode, unsigned int cmd,
3456 unsigned long param)
3458 #define FD_IOCTL_ALLOWED (mode & (FMODE_WRITE|FMODE_WRITE_IOCTL))
3459 #define OUT(c,x) case c: outparam = (const char *) (x); break
3460 #define IN(c,x,tag) case c: *(x) = inparam. tag ; return 0
3462 int drive = (long)bdev->bd_disk->private_data;
3463 int type = ITYPE(UDRS->fd_device);
3468 struct floppy_struct g; /* geometry */
3469 struct format_descr f;
3470 struct floppy_max_errors max_errors;
3471 struct floppy_drive_params dp;
3472 } inparam; /* parameters coming from user space */
3473 const char *outparam; /* parameters passed back to user space */
3475 /* convert compatibility eject ioctls into floppy eject ioctl.
3476 * We do this in order to provide a means to eject floppy disks before
3477 * installing the new fdutils package */
3478 if (cmd == CDROMEJECT || /* CD-ROM eject */
3479 cmd == 0x6470 /* SunOS floppy eject */ ) {
3480 DPRINT("obsolete eject ioctl\n");
3481 DPRINT("please use floppycontrol --eject\n");
3485 /* convert the old style command into a new style command */
3486 if ((cmd & 0xff00) == 0x0200) {
3487 ECALL(normalize_ioctl(&cmd, &size));
3491 /* permission checks */
3492 if (((cmd & 0x40) && !FD_IOCTL_ALLOWED) ||
3493 ((cmd & 0x80) && !capable(CAP_SYS_ADMIN)))
3497 CLEARSTRUCT(&inparam);
3498 if (_IOC_DIR(cmd) & _IOC_WRITE)
3499 ECALL(fd_copyin((void __user *)param, &inparam, size))
3503 if (UDRS->fd_ref != 1)
3504 /* somebody else has this drive open */
3508 /* do the actual eject. Fails on
3509 * non-Sparc architectures */
3510 ret = fd_eject(UNIT(drive));
3512 USETF(FD_DISK_CHANGED);
3514 process_fd_request();
3518 current_type[drive] = NULL;
3519 floppy_sizes[drive] = MAX_DISK_SIZE << 1;
3520 UDRS->keep_data = 0;
3521 return invalidate_drive(bdev);
3524 return set_geometry(cmd, &inparam.g,
3527 ECALL(get_floppy_geometry(drive, type,
3528 (struct floppy_struct **)
3533 UDP->flags |= FTD_MSG;
3536 UDP->flags &= ~FTD_MSG;
3541 CALL(poll_drive(1, FD_RAW_NEED_DISK));
3543 process_fd_request();
3544 if (ret & FD_VERIFY)
3546 if (!(ret & FD_DISK_WRITABLE))
3550 if (UDRS->fd_ref != 1)
3552 return do_format(drive, &inparam.f);
3556 return invalidate_drive(bdev);
3558 case FDSETEMSGTRESH:
3559 UDP->max_errors.reporting =
3560 (unsigned short)(param & 0x0f);
3562 OUT(FDGETMAXERRS, &UDP->max_errors);
3563 IN(FDSETMAXERRS, &UDP->max_errors, max_errors);
3566 outparam = drive_name(type, drive);
3567 SUPBOUND(size, strlen(outparam) + 1);
3570 IN(FDSETDRVPRM, UDP, dp);
3571 OUT(FDGETDRVPRM, UDP);
3575 CALL(poll_drive(1, FD_RAW_NEED_DISK));
3576 process_fd_request();
3578 OUT(FDGETDRVSTAT, UDRS);
3581 return user_reset_fdc(drive, (int)param, 1);
3583 OUT(FDGETFDCSTAT, UFDCS);
3588 OUT(FDWERRORGET, UDRWE);
3595 CALL(i = raw_cmd_ioctl(cmd, (void __user *)param));
3596 process_fd_request();
3602 process_fd_request();
3609 if (_IOC_DIR(cmd) & _IOC_READ)
3610 return fd_copyout((void __user *)param, outparam, size);
3617 static void __init config_types(void)
3622 /* read drive info out of physical CMOS */
3625 UDP->cmos = FLOPPY0_TYPE;
3627 if (!UDP->cmos && FLOPPY1_TYPE)
3628 UDP->cmos = FLOPPY1_TYPE;
3630 /* FIXME: additional physical CMOS drive detection should go here */
3632 for (drive = 0; drive < N_DRIVE; drive++) {
3633 unsigned int type = UDP->cmos;
3634 struct floppy_drive_params *params;
3635 const char *name = NULL;
3636 static char temparea[32];
3638 if (type < ARRAY_SIZE(default_drive_params)) {
3639 params = &default_drive_params[type].params;
3641 name = default_drive_params[type].name;
3642 allowed_drive_mask |= 1 << drive;
3644 allowed_drive_mask &= ~(1 << drive);
3646 params = &default_drive_params[0].params;
3647 sprintf(temparea, "unknown type %d (usb?)", type);
3651 const char *prepend = ",";
3653 prepend = KERN_INFO "Floppy drive(s):";
3656 printk("%s fd%d is %s", prepend, drive, name);
3664 static int floppy_release(struct gendisk *disk, fmode_t mode)
3666 int drive = (long)disk->private_data;
3668 mutex_lock(&open_lock);
3669 if (UDRS->fd_ref < 0)
3671 else if (!UDRS->fd_ref--) {
3672 DPRINT("floppy_release with fd_ref == 0");
3676 opened_bdev[drive] = NULL;
3677 mutex_unlock(&open_lock);
3683 * floppy_open check for aliasing (/dev/fd0 can be the same as
3684 * /dev/PS0 etc), and disallows simultaneous access to the same
3685 * drive with different device numbers.
3687 static int floppy_open(struct block_device *bdev, fmode_t mode)
3689 int drive = (long)bdev->bd_disk->private_data;
3690 int old_dev, new_dev;
3695 mutex_lock(&open_lock);
3696 old_dev = UDRS->fd_device;
3697 if (opened_bdev[drive] && opened_bdev[drive] != bdev)
3700 if (!UDRS->fd_ref && (UDP->flags & FD_BROKEN_DCL)) {
3701 USETF(FD_DISK_CHANGED);
3705 if (UDRS->fd_ref == -1 || (UDRS->fd_ref && (mode & FMODE_EXCL)))
3708 if (mode & FMODE_EXCL)
3713 opened_bdev[drive] = bdev;
3717 if (!floppy_track_buffer) {
3718 /* if opening an ED drive, reserve a big buffer,
3719 * else reserve a small one */
3720 if ((UDP->cmos == 6) || (UDP->cmos == 5))
3721 try = 64; /* Only 48 actually useful */
3723 try = 32; /* Only 24 actually useful */
3725 tmp = (char *)fd_dma_mem_alloc(1024 * try);
3726 if (!tmp && !floppy_track_buffer) {
3727 try >>= 1; /* buffer only one side */
3729 tmp = (char *)fd_dma_mem_alloc(1024 * try);
3731 if (!tmp && !floppy_track_buffer) {
3732 fallback_on_nodma_alloc(&tmp, 2048 * try);
3734 if (!tmp && !floppy_track_buffer) {
3735 DPRINT("Unable to allocate DMA memory\n");
3738 if (floppy_track_buffer) {
3740 fd_dma_mem_free((unsigned long)tmp, try * 1024);
3742 buffer_min = buffer_max = -1;
3743 floppy_track_buffer = tmp;
3744 max_buffer_sectors = try;
3748 new_dev = MINOR(bdev->bd_dev);
3749 UDRS->fd_device = new_dev;
3750 set_capacity(disks[drive], floppy_sizes[new_dev]);
3751 if (old_dev != -1 && old_dev != new_dev) {
3752 if (buffer_drive == drive)
3756 if (UFDCS->rawcmd == 1)
3759 if (!(mode & FMODE_NDELAY)) {
3760 if (mode & (FMODE_READ|FMODE_WRITE)) {
3761 UDRS->last_checked = 0;
3762 check_disk_change(bdev);
3763 if (UTESTF(FD_DISK_CHANGED))
3767 if ((mode & FMODE_WRITE) && !(UTESTF(FD_DISK_WRITABLE)))
3770 mutex_unlock(&open_lock);
3773 if (UDRS->fd_ref < 0)
3778 opened_bdev[drive] = NULL;
3780 mutex_unlock(&open_lock);
3785 * Check if the disk has been changed or if a change has been faked.
3787 static int check_floppy_change(struct gendisk *disk)
3789 int drive = (long)disk->private_data;
3791 if (UTESTF(FD_DISK_CHANGED) || UTESTF(FD_VERIFY))
3794 if (time_after(jiffies, UDRS->last_checked + UDP->checkfreq)) {
3797 process_fd_request();
3800 if (UTESTF(FD_DISK_CHANGED) ||
3801 UTESTF(FD_VERIFY) ||
3802 test_bit(drive, &fake_change) ||
3803 (!ITYPE(UDRS->fd_device) && !current_type[drive]))
3809 * This implements "read block 0" for floppy_revalidate().
3810 * Needed for format autodetection, checking whether there is
3811 * a disk in the drive, and whether that disk is writable.
3814 static void floppy_rb0_complete(struct bio *bio,
3817 complete((struct completion *)bio->bi_private);
3820 static int __floppy_read_block_0(struct block_device *bdev)
3823 struct bio_vec bio_vec;
3824 struct completion complete;
3828 page = alloc_page(GFP_NOIO);
3830 process_fd_request();
3834 size = bdev->bd_block_size;
3839 bio.bi_io_vec = &bio_vec;
3840 bio_vec.bv_page = page;
3841 bio_vec.bv_len = size;
3842 bio_vec.bv_offset = 0;
3848 init_completion(&complete);
3849 bio.bi_private = &complete;
3850 bio.bi_end_io = floppy_rb0_complete;
3852 submit_bio(READ, &bio);
3853 generic_unplug_device(bdev_get_queue(bdev));
3854 process_fd_request();
3855 wait_for_completion(&complete);
3862 /* revalidate the floppy disk, i.e. trigger format autodetection by reading
3863 * the bootblock (block 0). "Autodetection" is also needed to check whether
3864 * there is a disk in the drive at all... Thus we also do it for fixed
3865 * geometry formats */
3866 static int floppy_revalidate(struct gendisk *disk)
3868 int drive = (long)disk->private_data;
3869 #define NO_GEOM (!current_type[drive] && !ITYPE(UDRS->fd_device))
3873 if (UTESTF(FD_DISK_CHANGED) ||
3874 UTESTF(FD_VERIFY) || test_bit(drive, &fake_change) || NO_GEOM) {
3875 if (usage_count == 0) {
3876 printk("VFS: revalidate called on non-open device.\n");
3880 cf = UTESTF(FD_DISK_CHANGED) || UTESTF(FD_VERIFY);
3881 if (!(cf || test_bit(drive, &fake_change) || NO_GEOM)) {
3882 process_fd_request(); /*already done by another thread */
3887 if (buffer_drive == drive)
3889 clear_bit(drive, &fake_change);
3890 UCLEARF(FD_DISK_CHANGED);
3895 res = __floppy_read_block_0(opened_bdev[drive]);
3898 poll_drive(0, FD_RAW_NEED_DISK);
3899 process_fd_request();
3902 set_capacity(disk, floppy_sizes[UDRS->fd_device]);
3906 static struct block_device_operations floppy_fops = {
3907 .owner = THIS_MODULE,
3908 .open = floppy_open,
3909 .release = floppy_release,
3910 .locked_ioctl = fd_ioctl,
3911 .getgeo = fd_getgeo,
3912 .media_changed = check_floppy_change,
3913 .revalidate_disk = floppy_revalidate,
3917 * Floppy Driver initialization
3918 * =============================
3921 /* Determine the floppy disk controller type */
3922 /* This routine was written by David C. Niemi */
3923 static char __init get_fdc_version(void)
3927 output_byte(FD_DUMPREGS); /* 82072 and better know DUMPREGS */
3930 if ((r = result()) <= 0x00)
3931 return FDC_NONE; /* No FDC present ??? */
3932 if ((r == 1) && (reply_buffer[0] == 0x80)) {
3933 printk(KERN_INFO "FDC %d is an 8272A\n", fdc);
3934 return FDC_8272A; /* 8272a/765 don't know DUMPREGS */
3938 ("FDC %d init: DUMPREGS: unexpected return of %d bytes.\n",
3943 if (!fdc_configure()) {
3944 printk(KERN_INFO "FDC %d is an 82072\n", fdc);
3945 return FDC_82072; /* 82072 doesn't know CONFIGURE */
3948 output_byte(FD_PERPENDICULAR);
3949 if (need_more_output() == MORE_OUTPUT) {
3952 printk(KERN_INFO "FDC %d is an 82072A\n", fdc);
3953 return FDC_82072A; /* 82072A as found on Sparcs. */
3956 output_byte(FD_UNLOCK);
3958 if ((r == 1) && (reply_buffer[0] == 0x80)) {
3959 printk(KERN_INFO "FDC %d is a pre-1991 82077\n", fdc);
3960 return FDC_82077_ORIG; /* Pre-1991 82077, doesn't know
3963 if ((r != 1) || (reply_buffer[0] != 0x00)) {
3964 printk("FDC %d init: UNLOCK: unexpected return of %d bytes.\n",
3968 output_byte(FD_PARTID);
3971 printk("FDC %d init: PARTID: unexpected return of %d bytes.\n",
3975 if (reply_buffer[0] == 0x80) {
3976 printk(KERN_INFO "FDC %d is a post-1991 82077\n", fdc);
3977 return FDC_82077; /* Revised 82077AA passes all the tests */
3979 switch (reply_buffer[0] >> 5) {
3981 /* Either a 82078-1 or a 82078SL running at 5Volt */
3982 printk(KERN_INFO "FDC %d is an 82078.\n", fdc);
3985 printk(KERN_INFO "FDC %d is a 44pin 82078\n", fdc);
3988 printk(KERN_INFO "FDC %d is a S82078B\n", fdc);
3991 printk(KERN_INFO "FDC %d is a National Semiconductor PC87306\n",
3996 "FDC %d init: 82078 variant with unknown PARTID=%d.\n",
3997 fdc, reply_buffer[0] >> 5);
3998 return FDC_82078_UNKN;
4000 } /* get_fdc_version */
4002 /* lilo configuration */
4004 static void __init floppy_set_flags(int *ints, int param, int param2)
4008 for (i = 0; i < ARRAY_SIZE(default_drive_params); i++) {
4010 default_drive_params[i].params.flags |= param2;
4012 default_drive_params[i].params.flags &= ~param2;
4014 DPRINT("%s flag 0x%x\n", param2 ? "Setting" : "Clearing", param);
4017 static void __init daring(int *ints, int param, int param2)
4021 for (i = 0; i < ARRAY_SIZE(default_drive_params); i++) {
4023 default_drive_params[i].params.select_delay = 0;
4024 default_drive_params[i].params.flags |=
4025 FD_SILENT_DCL_CLEAR;
4027 default_drive_params[i].params.select_delay =
4029 default_drive_params[i].params.flags &=
4030 ~FD_SILENT_DCL_CLEAR;
4033 DPRINT("Assuming %s floppy hardware\n", param ? "standard" : "broken");
4036 static void __init set_cmos(int *ints, int dummy, int dummy2)
4038 int current_drive = 0;
4041 DPRINT("wrong number of parameters for CMOS\n");
4044 current_drive = ints[1];
4045 if (current_drive < 0 || current_drive >= 8) {
4046 DPRINT("bad drive for set_cmos\n");
4050 if (current_drive >= 4 && !FDC2)
4054 DPRINT("setting CMOS code to %d\n", ints[2]);
4057 static struct param_table {
4059 void (*fn) (int *ints, int param, int param2);
4063 } config_params[] __initdata = {
4064 {"allowed_drive_mask", NULL, &allowed_drive_mask, 0xff, 0}, /* obsolete */
4065 {"all_drives", NULL, &allowed_drive_mask, 0xff, 0}, /* obsolete */
4066 {"asus_pci", NULL, &allowed_drive_mask, 0x33, 0},
4067 {"irq", NULL, &FLOPPY_IRQ, 6, 0},
4068 {"dma", NULL, &FLOPPY_DMA, 2, 0},
4069 {"daring", daring, NULL, 1, 0},
4071 {"two_fdc", NULL, &FDC2, 0x370, 0},
4072 {"one_fdc", NULL, &FDC2, 0, 0},
4074 {"thinkpad", floppy_set_flags, NULL, 1, FD_INVERTED_DCL},
4075 {"broken_dcl", floppy_set_flags, NULL, 1, FD_BROKEN_DCL},
4076 {"messages", floppy_set_flags, NULL, 1, FTD_MSG},
4077 {"silent_dcl_clear", floppy_set_flags, NULL, 1, FD_SILENT_DCL_CLEAR},
4078 {"debug", floppy_set_flags, NULL, 1, FD_DEBUG},
4079 {"nodma", NULL, &can_use_virtual_dma, 1, 0},
4080 {"omnibook", NULL, &can_use_virtual_dma, 1, 0},
4081 {"yesdma", NULL, &can_use_virtual_dma, 0, 0},
4082 {"fifo_depth", NULL, &fifo_depth, 0xa, 0},
4083 {"nofifo", NULL, &no_fifo, 0x20, 0},
4084 {"usefifo", NULL, &no_fifo, 0, 0},
4085 {"cmos", set_cmos, NULL, 0, 0},
4086 {"slow", NULL, &slow_floppy, 1, 0},
4087 {"unexpected_interrupts", NULL, &print_unex, 1, 0},
4088 {"no_unexpected_interrupts", NULL, &print_unex, 0, 0},
4089 {"L40SX", NULL, &print_unex, 0, 0}
4094 static int __init floppy_setup(char *str)
4100 str = get_options(str, ARRAY_SIZE(ints), ints);
4102 for (i = 0; i < ARRAY_SIZE(config_params); i++) {
4103 if (strcmp(str, config_params[i].name) == 0) {
4107 param = config_params[i].def_param;
4108 if (config_params[i].fn)
4111 config_params[i].param2);
4112 if (config_params[i].var) {
4113 DPRINT("%s=%d\n", str, param);
4114 *config_params[i].var = param;
4121 DPRINT("unknown floppy option [%s]\n", str);
4123 DPRINT("allowed options are:");
4124 for (i = 0; i < ARRAY_SIZE(config_params); i++)
4125 printk(" %s", config_params[i].name);
4128 DPRINT("botched floppy option\n");
4129 DPRINT("Read Documentation/blockdev/floppy.txt\n");
4133 static int have_no_fdc = -ENODEV;
4135 static ssize_t floppy_cmos_show(struct device *dev,
4136 struct device_attribute *attr, char *buf)
4138 struct platform_device *p;
4141 p = container_of(dev, struct platform_device,dev);
4143 return sprintf(buf, "%X\n", UDP->cmos);
4145 DEVICE_ATTR(cmos,S_IRUGO,floppy_cmos_show,NULL);
4147 static void floppy_device_release(struct device *dev)
4151 static struct platform_device floppy_device[N_DRIVE];
4153 static struct kobject *floppy_find(dev_t dev, int *part, void *data)
4155 int drive = (*part & 3) | ((*part & 0x80) >> 5);
4156 if (drive >= N_DRIVE ||
4157 !(allowed_drive_mask & (1 << drive)) ||
4158 fdc_state[FDC(drive)].version == FDC_NONE)
4160 if (((*part >> 2) & 0x1f) >= ARRAY_SIZE(floppy_type))
4163 return get_disk(disks[drive]);
4166 static int __init floppy_init(void)
4171 #if defined(CONFIG_PPC)
4172 if (check_legacy_ioport(FDC1))
4178 for (dr = 0; dr < N_DRIVE; dr++) {
4179 disks[dr] = alloc_disk(1);
4185 disks[dr]->major = FLOPPY_MAJOR;
4186 disks[dr]->first_minor = TOMINOR(dr);
4187 disks[dr]->fops = &floppy_fops;
4188 sprintf(disks[dr]->disk_name, "fd%d", dr);
4190 init_timer(&motor_off_timer[dr]);
4191 motor_off_timer[dr].data = dr;
4192 motor_off_timer[dr].function = motor_off_callback;
4195 err = register_blkdev(FLOPPY_MAJOR, "fd");
4199 floppy_queue = blk_init_queue(do_fd_request, &floppy_lock);
4200 if (!floppy_queue) {
4202 goto out_unreg_blkdev;
4204 blk_queue_max_sectors(floppy_queue, 64);
4206 blk_register_region(MKDEV(FLOPPY_MAJOR, 0), 256, THIS_MODULE,
4207 floppy_find, NULL, NULL);
4209 for (i = 0; i < 256; i++)
4211 floppy_sizes[i] = floppy_type[ITYPE(i)].size;
4213 floppy_sizes[i] = MAX_DISK_SIZE << 1;
4215 reschedule_timeout(MAXTIMEOUT, "floppy init", MAXTIMEOUT);
4218 for (i = 0; i < N_FDC; i++) {
4223 #if defined(__sparc__) || defined(__mc68000__)
4224 /*sparcs/sun3x don't have a DOR reset which we can fall back on to */
4228 FDCS->version = FDC_82072A;
4232 use_virtual_dma = can_use_virtual_dma & 1;
4233 fdc_state[0].address = FDC1;
4234 if (fdc_state[0].address == -1) {
4235 del_timer(&fd_timeout);
4237 goto out_unreg_region;
4240 fdc_state[1].address = FDC2;
4243 fdc = 0; /* reset fdc in case of unexpected interrupt */
4244 err = floppy_grab_irq_and_dma();
4246 del_timer(&fd_timeout);
4248 goto out_unreg_region;
4251 /* initialise drive state */
4252 for (drive = 0; drive < N_DRIVE; drive++) {
4255 USETF(FD_DISK_NEWCHANGE);
4256 USETF(FD_DISK_CHANGED);
4258 UDRS->fd_device = -1;
4259 floppy_track_buffer = NULL;
4260 max_buffer_sectors = 0;
4263 * Small 10 msec delay to let through any interrupt that
4264 * initialization might have triggered, to not
4265 * confuse detection:
4269 for (i = 0; i < N_FDC; i++) {
4271 FDCS->driver_version = FD_DRIVER_VERSION;
4272 for (unit = 0; unit < 4; unit++)
4273 FDCS->track[unit] = 0;
4274 if (FDCS->address == -1)
4277 if (user_reset_fdc(-1, FD_RESET_ALWAYS, 0)) {
4278 /* free ioports reserved by floppy_grab_irq_and_dma() */
4279 floppy_release_regions(fdc);
4281 FDCS->version = FDC_NONE;
4284 /* Try to determine the floppy controller type */
4285 FDCS->version = get_fdc_version();
4286 if (FDCS->version == FDC_NONE) {
4287 /* free ioports reserved by floppy_grab_irq_and_dma() */
4288 floppy_release_regions(fdc);
4292 if (can_use_virtual_dma == 2 && FDCS->version < FDC_82072A)
4293 can_use_virtual_dma = 0;
4296 /* Not all FDCs seem to be able to handle the version command
4297 * properly, so force a reset for the standard FDC clones,
4298 * to avoid interrupt garbage.
4300 user_reset_fdc(-1, FD_RESET_ALWAYS, 0);
4303 del_timer(&fd_timeout);
4307 DPRINT("no floppy controllers found\n");
4309 goto out_flush_work;
4312 for (drive = 0; drive < N_DRIVE; drive++) {
4313 if (!(allowed_drive_mask & (1 << drive)))
4315 if (fdc_state[FDC(drive)].version == FDC_NONE)
4318 floppy_device[drive].name = floppy_device_name;
4319 floppy_device[drive].id = drive;
4320 floppy_device[drive].dev.release = floppy_device_release;
4322 err = platform_device_register(&floppy_device[drive]);
4324 goto out_flush_work;
4326 err = device_create_file(&floppy_device[drive].dev,&dev_attr_cmos);
4328 goto out_unreg_platform_dev;
4330 /* to be cleaned up... */
4331 disks[drive]->private_data = (void *)(long)drive;
4332 disks[drive]->queue = floppy_queue;
4333 disks[drive]->flags |= GENHD_FL_REMOVABLE;
4334 disks[drive]->driverfs_dev = &floppy_device[drive].dev;
4335 add_disk(disks[drive]);
4340 out_unreg_platform_dev:
4341 platform_device_unregister(&floppy_device[drive]);
4343 flush_scheduled_work();
4345 floppy_release_irq_and_dma();
4347 blk_unregister_region(MKDEV(FLOPPY_MAJOR, 0), 256);
4348 blk_cleanup_queue(floppy_queue);
4350 unregister_blkdev(FLOPPY_MAJOR, "fd");
4353 del_timer(&motor_off_timer[dr]);
4354 put_disk(disks[dr]);
4359 static DEFINE_SPINLOCK(floppy_usage_lock);
4361 static const struct io_region {
4366 /* address + 3 is sometimes reserved by pnp bios for motherboard */
4368 /* address + 6 is reserved, and may be taken by IDE.
4369 * Unfortunately, Adaptec doesn't know this :-(, */
4373 static void floppy_release_allocated_regions(int fdc, const struct io_region *p)
4375 while (p != io_regions) {
4377 release_region(FDCS->address + p->offset, p->size);
4381 #define ARRAY_END(X) (&((X)[ARRAY_SIZE(X)]))
4383 static int floppy_request_regions(int fdc)
4385 const struct io_region *p;
4387 for (p = io_regions; p < ARRAY_END(io_regions); p++) {
4388 if (!request_region(FDCS->address + p->offset, p->size, "floppy")) {
4389 DPRINT("Floppy io-port 0x%04lx in use\n", FDCS->address + p->offset);
4390 floppy_release_allocated_regions(fdc, p);
4397 static void floppy_release_regions(int fdc)
4399 floppy_release_allocated_regions(fdc, ARRAY_END(io_regions));
4402 static int floppy_grab_irq_and_dma(void)
4404 unsigned long flags;
4406 spin_lock_irqsave(&floppy_usage_lock, flags);
4407 if (usage_count++) {
4408 spin_unlock_irqrestore(&floppy_usage_lock, flags);
4411 spin_unlock_irqrestore(&floppy_usage_lock, flags);
4414 * We might have scheduled a free_irq(), wait it to
4417 flush_scheduled_work();
4419 if (fd_request_irq()) {
4420 DPRINT("Unable to grab IRQ%d for the floppy driver\n",
4422 spin_lock_irqsave(&floppy_usage_lock, flags);
4424 spin_unlock_irqrestore(&floppy_usage_lock, flags);
4427 if (fd_request_dma()) {
4428 DPRINT("Unable to grab DMA%d for the floppy driver\n",
4430 if (can_use_virtual_dma & 2)
4431 use_virtual_dma = can_use_virtual_dma = 1;
4432 if (!(can_use_virtual_dma & 1)) {
4434 spin_lock_irqsave(&floppy_usage_lock, flags);
4436 spin_unlock_irqrestore(&floppy_usage_lock, flags);
4441 for (fdc = 0; fdc < N_FDC; fdc++) {
4442 if (FDCS->address != -1) {
4443 if (floppy_request_regions(fdc))
4447 for (fdc = 0; fdc < N_FDC; fdc++) {
4448 if (FDCS->address != -1) {
4450 fd_outb(FDCS->dor, FD_DOR);
4454 set_dor(0, ~0, 8); /* avoid immediate interrupt */
4456 for (fdc = 0; fdc < N_FDC; fdc++)
4457 if (FDCS->address != -1)
4458 fd_outb(FDCS->dor, FD_DOR);
4460 * The driver will try and free resources and relies on us
4461 * to know if they were allocated or not.
4464 irqdma_allocated = 1;
4470 floppy_release_regions(fdc);
4471 spin_lock_irqsave(&floppy_usage_lock, flags);
4473 spin_unlock_irqrestore(&floppy_usage_lock, flags);
4477 static void floppy_release_irq_and_dma(void)
4480 #ifdef FLOPPY_SANITY_CHECK
4486 unsigned long tmpaddr;
4487 unsigned long flags;
4489 spin_lock_irqsave(&floppy_usage_lock, flags);
4490 if (--usage_count) {
4491 spin_unlock_irqrestore(&floppy_usage_lock, flags);
4494 spin_unlock_irqrestore(&floppy_usage_lock, flags);
4495 if (irqdma_allocated) {
4499 irqdma_allocated = 0;
4505 floppy_enable_hlt();
4507 if (floppy_track_buffer && max_buffer_sectors) {
4508 tmpsize = max_buffer_sectors * 1024;
4509 tmpaddr = (unsigned long)floppy_track_buffer;
4510 floppy_track_buffer = NULL;
4511 max_buffer_sectors = 0;
4512 buffer_min = buffer_max = -1;
4513 fd_dma_mem_free(tmpaddr, tmpsize);
4515 #ifdef FLOPPY_SANITY_CHECK
4517 for (drive = 0; drive < N_FDC * 4; drive++)
4518 if (timer_pending(motor_off_timer + drive))
4519 printk("motor off timer %d still active\n", drive);
4522 if (timer_pending(&fd_timeout))
4523 printk("floppy timer still active:%s\n", timeout_message);
4524 if (timer_pending(&fd_timer))
4525 printk("auxiliary floppy timer still active\n");
4526 if (work_pending(&floppy_work))
4527 printk("work still pending\n");
4530 for (fdc = 0; fdc < N_FDC; fdc++)
4531 if (FDCS->address != -1)
4532 floppy_release_regions(fdc);
4538 static char *floppy;
4540 static void __init parse_floppy_cfg_string(char *cfg)
4545 for (ptr = cfg; *cfg && *cfg != ' ' && *cfg != '\t'; cfg++) ;
4555 static int __init floppy_module_init(void)
4558 parse_floppy_cfg_string(floppy);
4559 return floppy_init();
4561 module_init(floppy_module_init);
4563 static void __exit floppy_module_exit(void)
4567 blk_unregister_region(MKDEV(FLOPPY_MAJOR, 0), 256);
4568 unregister_blkdev(FLOPPY_MAJOR, "fd");
4570 for (drive = 0; drive < N_DRIVE; drive++) {
4571 del_timer_sync(&motor_off_timer[drive]);
4573 if ((allowed_drive_mask & (1 << drive)) &&
4574 fdc_state[FDC(drive)].version != FDC_NONE) {
4575 del_gendisk(disks[drive]);
4576 device_remove_file(&floppy_device[drive].dev, &dev_attr_cmos);
4577 platform_device_unregister(&floppy_device[drive]);
4579 put_disk(disks[drive]);
4582 del_timer_sync(&fd_timeout);
4583 del_timer_sync(&fd_timer);
4584 blk_cleanup_queue(floppy_queue);
4587 floppy_release_irq_and_dma();
4589 /* eject disk, if any */
4592 module_exit(floppy_module_exit);
4594 module_param(floppy, charp, 0);
4595 module_param(FLOPPY_IRQ, int, 0);
4596 module_param(FLOPPY_DMA, int, 0);
4597 MODULE_AUTHOR("Alain L. Knaff");
4598 MODULE_SUPPORTED_DEVICE("fd");
4599 MODULE_LICENSE("GPL");
4603 __setup("floppy=", floppy_setup);
4604 module_init(floppy_init)
4607 MODULE_ALIAS_BLOCKDEV_MAJOR(FLOPPY_MAJOR);