Merge tag 'regulator-3.6' of git://git.kernel.org/pub/scm/linux/kernel/git/broonie...
[deliverable/linux.git] / drivers / block / floppy.c
CommitLineData
1da177e4
LT
1/*
2 * linux/drivers/block/floppy.c
3 *
4 * Copyright (C) 1991, 1992 Linus Torvalds
5 * Copyright (C) 1993, 1994 Alain Knaff
6 * Copyright (C) 1998 Alan Cox
7 */
06f748c4 8
1da177e4
LT
9/*
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.
14 */
15
16/*
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.
22 */
23
24/*
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
29 * etc.
30 */
31
32/*
33 * 28.02.92 - made track-buffering routines, based on the routines written
34 * by entropy@wintermute.wpi.edu (Lawrence Foard). Linus.
35 */
36
37/*
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.
41 */
42
43/*
44 * 1992/7/22 -- Hennus Bergman: Added better error reporting, fixed
45 * FDC data overrun bug, added some preliminary stuff for vertical
46 * recording support.
47 *
48 * 1992/9/17: Added DMA allocation & DMA functions. -- hhb.
49 *
50 * TODO: Errors are still not counted properly.
51 */
52
53/* 1992/9/20
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.
61 */
62
63/*
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
66 * work.
67 */
68
69/* 1994/6/24 --bbroad-- added the floppy table entries and made
70 * minor modifications to allow 2.88 floppies to be run.
71 */
72
73/* 1994/7/13 -- Paul Vojta -- modified the probing code to allow three or more
74 * disk types.
75 */
76
77/*
78 * 1994/8/8 -- Alain Knaff -- Switched to fdpatch driver: Support for bigger
79 * format bug fixes, but unfortunately some new bugs too...
80 */
81
82/* 1994/9/17 -- Koen Holtman -- added logging of physical floppy write
83 * errors to allow safe writing by specialized programs.
84 */
85
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").
90 */
91
92/*
93 * 1995/8/26 -- Andreas Busse -- added Mips support.
94 */
95
96/*
97 * 1995/10/18 -- Ralf Baechle -- Portability cleanup; move machine dependent
98 * features to asm/floppy.h.
99 */
100
b88b0985
JN
101/*
102 * 1998/1/21 -- Richard Gooch <rgooch@atnf.csiro.au> -- devfs support
103 */
104
1da177e4
LT
105/*
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.
109 */
110
111/*
112 * 1998/06/07 -- Alan Cox -- Merged the 2.0.34 fixes for resource allocation
113 * failures.
114 */
115
116/*
117 * 1998/09/20 -- David Weinehall -- Added slow-down code for buggy PS/2-drives.
118 */
119
120/*
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).
124 */
125
126/*
127 * 2000/08/28 -- Arnaldo Carvalho de Melo <acme@conectiva.com.br>
128 * - get rid of check_region
129 * - s/suser/capable/
130 */
131
132/*
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.)
135 */
136
137/*
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.
141 */
142
143/* 2003/07/28 -- Daniele Bellucci <bellucda@tiscali.it>.
144 * Better audit of register_blkdev.
145 */
146
1da177e4
LT
147#undef FLOPPY_SILENT_DCL_CLEAR
148
149#define REALLY_SLOW_IO
150
151#define DEBUGT 2
1da177e4 152
891eda80
JP
153#define DPRINT(format, args...) \
154 pr_info("floppy%d: " format, current_drive, ##args)
155
156#define DCL_DEBUG /* debug disk change line */
87f530d8
JP
157#ifdef DCL_DEBUG
158#define debug_dcl(test, fmt, args...) \
159 do { if ((test) & FD_DEBUG) DPRINT(fmt, ##args); } while (0)
160#else
161#define debug_dcl(test, fmt, args...) \
162 do { if (0) DPRINT(fmt, ##args); } while (0)
163#endif
164
1da177e4
LT
165/* do print messages for unexpected interrupts */
166static int print_unex = 1;
167#include <linux/module.h>
168#include <linux/sched.h>
169#include <linux/fs.h>
170#include <linux/kernel.h>
171#include <linux/timer.h>
172#include <linux/workqueue.h>
173#define FDPATCHES
174#include <linux/fdreg.h>
1da177e4
LT
175#include <linux/fd.h>
176#include <linux/hdreg.h>
1da177e4
LT
177#include <linux/errno.h>
178#include <linux/slab.h>
179#include <linux/mm.h>
180#include <linux/bio.h>
181#include <linux/string.h>
50297cbf 182#include <linux/jiffies.h>
1da177e4
LT
183#include <linux/fcntl.h>
184#include <linux/delay.h>
185#include <linux/mc146818rtc.h> /* CMOS defines */
186#include <linux/ioport.h>
187#include <linux/interrupt.h>
188#include <linux/init.h>
d052d1be 189#include <linux/platform_device.h>
83f9ef46 190#include <linux/mod_devicetable.h>
b1c82b5c 191#include <linux/mutex.h>
d4937543
JP
192#include <linux/io.h>
193#include <linux/uaccess.h>
0cc15d03 194#include <linux/async.h>
1da177e4
LT
195
196/*
197 * PS/2 floppies have much slower step rates than regular floppies.
198 * It's been recommended that take about 1/4 of the default speed
199 * in some more extreme cases.
200 */
2a48fc0a 201static DEFINE_MUTEX(floppy_mutex);
1da177e4
LT
202static int slow_floppy;
203
204#include <asm/dma.h>
205#include <asm/irq.h>
1da177e4
LT
206
207static int FLOPPY_IRQ = 6;
208static int FLOPPY_DMA = 2;
209static int can_use_virtual_dma = 2;
210/* =======
211 * can use virtual DMA:
212 * 0 = use of virtual DMA disallowed by config
213 * 1 = use of virtual DMA prescribed by config
214 * 2 = no virtual DMA preference configured. By default try hard DMA,
215 * but fall back on virtual DMA when not enough memory available
216 */
217
218static int use_virtual_dma;
219/* =======
220 * use virtual DMA
221 * 0 using hard DMA
222 * 1 using virtual DMA
223 * This variable is set to virtual when a DMA mem problem arises, and
224 * reset back in floppy_grab_irq_and_dma.
225 * It is not safe to reset it in other circumstances, because the floppy
226 * driver may have several buffers in use at once, and we do currently not
227 * record each buffers capabilities
228 */
229
230static DEFINE_SPINLOCK(floppy_lock);
1da177e4
LT
231
232static unsigned short virtual_dma_port = 0x3f0;
7d12e780 233irqreturn_t floppy_interrupt(int irq, void *dev_id);
1da177e4 234static int set_dor(int fdc, char mask, char data);
1da177e4
LT
235
236#define K_64 0x10000 /* 64KB */
237
238/* the following is the mask of allowed drives. By default units 2 and
239 * 3 of both floppy controllers are disabled, because switching on the
240 * motor of these drives causes system hangs on some PCI computers. drive
241 * 0 is the low bit (0x1), and drive 7 is the high bit (0x80). Bits are on if
242 * a drive is allowed.
243 *
244 * NOTE: This must come before we include the arch floppy header because
245 * some ports reference this variable from there. -DaveM
246 */
247
248static int allowed_drive_mask = 0x33;
249
250#include <asm/floppy.h>
251
252static int irqdma_allocated;
253
1da177e4
LT
254#include <linux/blkdev.h>
255#include <linux/blkpg.h>
256#include <linux/cdrom.h> /* for the compatibility eject ioctl */
257#include <linux/completion.h>
258
259static struct request *current_req;
48c8cee6 260static void do_fd_request(struct request_queue *q);
48821184 261static int set_next_request(void);
1da177e4
LT
262
263#ifndef fd_get_dma_residue
264#define fd_get_dma_residue() get_dma_residue(FLOPPY_DMA)
265#endif
266
267/* Dma Memory related stuff */
268
269#ifndef fd_dma_mem_free
270#define fd_dma_mem_free(addr, size) free_pages(addr, get_order(size))
271#endif
272
273#ifndef fd_dma_mem_alloc
48c8cee6 274#define fd_dma_mem_alloc(size) __get_dma_pages(GFP_KERNEL, get_order(size))
1da177e4
LT
275#endif
276
277static inline void fallback_on_nodma_alloc(char **addr, size_t l)
278{
279#ifdef FLOPPY_CAN_FALLBACK_ON_NODMA
280 if (*addr)
281 return; /* we have the memory */
282 if (can_use_virtual_dma != 2)
283 return; /* no fallback allowed */
b46df356 284 pr_info("DMA memory shortage. Temporarily falling back on virtual DMA\n");
1da177e4
LT
285 *addr = (char *)nodma_mem_alloc(l);
286#else
287 return;
288#endif
289}
290
291/* End dma memory related stuff */
292
293static unsigned long fake_change;
29f1c784 294static bool initialized;
1da177e4 295
48c8cee6
JP
296#define ITYPE(x) (((x) >> 2) & 0x1f)
297#define TOMINOR(x) ((x & 3) | ((x & 4) << 5))
298#define UNIT(x) ((x) & 0x03) /* drive on fdc */
299#define FDC(x) (((x) & 0x04) >> 2) /* fdc of drive */
06f748c4 300 /* reverse mapping from unit and fdc to drive */
1da177e4 301#define REVDRIVE(fdc, unit) ((unit) + ((fdc) << 2))
1da177e4 302
48c8cee6
JP
303#define DP (&drive_params[current_drive])
304#define DRS (&drive_state[current_drive])
305#define DRWE (&write_errors[current_drive])
306#define FDCS (&fdc_state[fdc])
1da177e4 307
48c8cee6
JP
308#define UDP (&drive_params[drive])
309#define UDRS (&drive_state[drive])
310#define UDRWE (&write_errors[drive])
311#define UFDCS (&fdc_state[FDC(drive)])
1da177e4 312
48c8cee6
JP
313#define PH_HEAD(floppy, head) (((((floppy)->stretch & 2) >> 1) ^ head) << 2)
314#define STRETCH(floppy) ((floppy)->stretch & FD_STRETCH)
315
1da177e4 316/* read/write */
48c8cee6
JP
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])
1da177e4
LT
326#define NR_RW 9
327
328/* format */
48c8cee6
JP
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])
1da177e4
LT
333#define NR_F 6
334
335/*
48c8cee6
JP
336 * Maximum disk size (in kilobytes).
337 * This default is used whenever the current disk size is unknown.
1da177e4
LT
338 * [Now it is rather a minimum]
339 */
340#define MAX_DISK_SIZE 4 /* 3984 */
341
342/*
343 * globals used by 'result()'
344 */
345#define MAX_REPLIES 16
346static unsigned char reply_buffer[MAX_REPLIES];
891eda80 347static int inr; /* size of reply buffer, when called from interrupt */
48c8cee6
JP
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
357#define SEL_DLY (2 * HZ / 100)
1da177e4
LT
358
359/*
360 * this struct defines the different floppy drive types.
361 */
362static struct {
363 struct floppy_drive_params params;
364 const char *name; /* name printed while booting */
365} default_drive_params[] = {
366/* NOTE: the time values in jiffies should be in msec!
367 CMOS drive type
368 | Maximum data rate supported by drive type
369 | | Head load time, msec
370 | | | Head unload time, msec (not used)
371 | | | | Step rate interval, usec
372 | | | | | Time needed for spinup time (jiffies)
373 | | | | | | Timeout for spinning down (jiffies)
374 | | | | | | | Spindown offset (where disk stops)
375 | | | | | | | | Select delay
376 | | | | | | | | | RPS
377 | | | | | | | | | | Max number of tracks
378 | | | | | | | | | | | Interrupt timeout
379 | | | | | | | | | | | | Max nonintlv. sectors
380 | | | | | | | | | | | | | -Max Errors- flags */
381{{0, 500, 16, 16, 8000, 1*HZ, 3*HZ, 0, SEL_DLY, 5, 80, 3*HZ, 20, {3,1,2,0,2}, 0,
382 0, { 7, 4, 8, 2, 1, 5, 3,10}, 3*HZ/2, 0 }, "unknown" },
383
384{{1, 300, 16, 16, 8000, 1*HZ, 3*HZ, 0, SEL_DLY, 5, 40, 3*HZ, 17, {3,1,2,0,2}, 0,
385 0, { 1, 0, 0, 0, 0, 0, 0, 0}, 3*HZ/2, 1 }, "360K PC" }, /*5 1/4 360 KB PC*/
386
387{{2, 500, 16, 16, 6000, 4*HZ/10, 3*HZ, 14, SEL_DLY, 6, 83, 3*HZ, 17, {3,1,2,0,2}, 0,
388 0, { 2, 5, 6,23,10,20,12, 0}, 3*HZ/2, 2 }, "1.2M" }, /*5 1/4 HD AT*/
389
390{{3, 250, 16, 16, 3000, 1*HZ, 3*HZ, 0, SEL_DLY, 5, 83, 3*HZ, 20, {3,1,2,0,2}, 0,
391 0, { 4,22,21,30, 3, 0, 0, 0}, 3*HZ/2, 4 }, "720k" }, /*3 1/2 DD*/
392
393{{4, 500, 16, 16, 4000, 4*HZ/10, 3*HZ, 10, SEL_DLY, 5, 83, 3*HZ, 20, {3,1,2,0,2}, 0,
394 0, { 7, 4,25,22,31,21,29,11}, 3*HZ/2, 7 }, "1.44M" }, /*3 1/2 HD*/
395
396{{5, 1000, 15, 8, 3000, 4*HZ/10, 3*HZ, 10, SEL_DLY, 5, 83, 3*HZ, 40, {3,1,2,0,2}, 0,
397 0, { 7, 8, 4,25,28,22,31,21}, 3*HZ/2, 8 }, "2.88M AMI BIOS" }, /*3 1/2 ED*/
398
399{{6, 1000, 15, 8, 3000, 4*HZ/10, 3*HZ, 10, SEL_DLY, 5, 83, 3*HZ, 40, {3,1,2,0,2}, 0,
400 0, { 7, 8, 4,25,28,22,31,21}, 3*HZ/2, 8 }, "2.88M" } /*3 1/2 ED*/
401/* | --autodetected formats--- | | |
402 * read_track | | Name printed when booting
403 * | Native format
404 * Frequency of disk change checks */
405};
406
407static struct floppy_drive_params drive_params[N_DRIVE];
408static struct floppy_drive_struct drive_state[N_DRIVE];
409static struct floppy_write_errors write_errors[N_DRIVE];
410static struct timer_list motor_off_timer[N_DRIVE];
411static struct gendisk *disks[N_DRIVE];
412static struct block_device *opened_bdev[N_DRIVE];
b1c82b5c 413static DEFINE_MUTEX(open_lock);
1da177e4 414static struct floppy_raw_cmd *raw_cmd, default_raw_cmd;
48821184 415static int fdc_queue;
1da177e4
LT
416
417/*
418 * This struct defines the different floppy types.
419 *
420 * Bit 0 of 'stretch' tells if the tracks need to be doubled for some
421 * types (e.g. 360kB diskette in 1.2MB drive, etc.). Bit 1 of 'stretch'
422 * tells if the disk is in Commodore 1581 format, which means side 0 sectors
423 * are located on side 1 of the disk but with a side 0 ID, and vice-versa.
424 * This is the same as the Sharp MZ-80 5.25" CP/M disk format, except that the
425 * 1581's logical side 0 is on physical side 1, whereas the Sharp's logical
426 * side 0 is on physical side 0 (but with the misnamed sector IDs).
427 * 'stretch' should probably be renamed to something more general, like
9e49184c
KW
428 * 'options'.
429 *
430 * Bits 2 through 9 of 'stretch' tell the number of the first sector.
431 * The LSB (bit 2) is flipped. For most disks, the first sector
432 * is 1 (represented by 0x00<<2). For some CP/M and music sampler
433 * disks (such as Ensoniq EPS 16plus) it is 0 (represented as 0x01<<2).
434 * For Amstrad CPC disks it is 0xC1 (represented as 0xC0<<2).
435 *
436 * Other parameters should be self-explanatory (see also setfdprm(8)).
1da177e4
LT
437 */
438/*
439 Size
440 | Sectors per track
441 | | Head
442 | | | Tracks
443 | | | | Stretch
444 | | | | | Gap 1 size
445 | | | | | | Data rate, | 0x40 for perp
446 | | | | | | | Spec1 (stepping rate, head unload
447 | | | | | | | | /fmt gap (gap2) */
448static struct floppy_struct floppy_type[32] = {
449 { 0, 0,0, 0,0,0x00,0x00,0x00,0x00,NULL }, /* 0 no testing */
450 { 720, 9,2,40,0,0x2A,0x02,0xDF,0x50,"d360" }, /* 1 360KB PC */
451 { 2400,15,2,80,0,0x1B,0x00,0xDF,0x54,"h1200" }, /* 2 1.2MB AT */
452 { 720, 9,1,80,0,0x2A,0x02,0xDF,0x50,"D360" }, /* 3 360KB SS 3.5" */
453 { 1440, 9,2,80,0,0x2A,0x02,0xDF,0x50,"D720" }, /* 4 720KB 3.5" */
454 { 720, 9,2,40,1,0x23,0x01,0xDF,0x50,"h360" }, /* 5 360KB AT */
455 { 1440, 9,2,80,0,0x23,0x01,0xDF,0x50,"h720" }, /* 6 720KB AT */
456 { 2880,18,2,80,0,0x1B,0x00,0xCF,0x6C,"H1440" }, /* 7 1.44MB 3.5" */
457 { 5760,36,2,80,0,0x1B,0x43,0xAF,0x54,"E2880" }, /* 8 2.88MB 3.5" */
458 { 6240,39,2,80,0,0x1B,0x43,0xAF,0x28,"E3120" }, /* 9 3.12MB 3.5" */
459
460 { 2880,18,2,80,0,0x25,0x00,0xDF,0x02,"h1440" }, /* 10 1.44MB 5.25" */
461 { 3360,21,2,80,0,0x1C,0x00,0xCF,0x0C,"H1680" }, /* 11 1.68MB 3.5" */
462 { 820,10,2,41,1,0x25,0x01,0xDF,0x2E,"h410" }, /* 12 410KB 5.25" */
463 { 1640,10,2,82,0,0x25,0x02,0xDF,0x2E,"H820" }, /* 13 820KB 3.5" */
464 { 2952,18,2,82,0,0x25,0x00,0xDF,0x02,"h1476" }, /* 14 1.48MB 5.25" */
465 { 3444,21,2,82,0,0x25,0x00,0xDF,0x0C,"H1722" }, /* 15 1.72MB 3.5" */
466 { 840,10,2,42,1,0x25,0x01,0xDF,0x2E,"h420" }, /* 16 420KB 5.25" */
467 { 1660,10,2,83,0,0x25,0x02,0xDF,0x2E,"H830" }, /* 17 830KB 3.5" */
468 { 2988,18,2,83,0,0x25,0x00,0xDF,0x02,"h1494" }, /* 18 1.49MB 5.25" */
469 { 3486,21,2,83,0,0x25,0x00,0xDF,0x0C,"H1743" }, /* 19 1.74 MB 3.5" */
470
471 { 1760,11,2,80,0,0x1C,0x09,0xCF,0x00,"h880" }, /* 20 880KB 5.25" */
472 { 2080,13,2,80,0,0x1C,0x01,0xCF,0x00,"D1040" }, /* 21 1.04MB 3.5" */
473 { 2240,14,2,80,0,0x1C,0x19,0xCF,0x00,"D1120" }, /* 22 1.12MB 3.5" */
474 { 3200,20,2,80,0,0x1C,0x20,0xCF,0x2C,"h1600" }, /* 23 1.6MB 5.25" */
475 { 3520,22,2,80,0,0x1C,0x08,0xCF,0x2e,"H1760" }, /* 24 1.76MB 3.5" */
476 { 3840,24,2,80,0,0x1C,0x20,0xCF,0x00,"H1920" }, /* 25 1.92MB 3.5" */
477 { 6400,40,2,80,0,0x25,0x5B,0xCF,0x00,"E3200" }, /* 26 3.20MB 3.5" */
478 { 7040,44,2,80,0,0x25,0x5B,0xCF,0x00,"E3520" }, /* 27 3.52MB 3.5" */
479 { 7680,48,2,80,0,0x25,0x63,0xCF,0x00,"E3840" }, /* 28 3.84MB 3.5" */
1da177e4 480 { 3680,23,2,80,0,0x1C,0x10,0xCF,0x00,"H1840" }, /* 29 1.84MB 3.5" */
06f748c4 481
1da177e4
LT
482 { 1600,10,2,80,0,0x25,0x02,0xDF,0x2E,"D800" }, /* 30 800KB 3.5" */
483 { 3200,20,2,80,0,0x1C,0x00,0xCF,0x2C,"H1600" }, /* 31 1.6MB 3.5" */
484};
485
1da177e4
LT
486#define SECTSIZE (_FD_SECTSIZE(*floppy))
487
488/* Auto-detection: Disk type used until the next media change occurs. */
489static struct floppy_struct *current_type[N_DRIVE];
490
491/*
492 * User-provided type information. current_type points to
493 * the respective entry of this array.
494 */
495static struct floppy_struct user_params[N_DRIVE];
496
497static sector_t floppy_sizes[256];
498
94fd0db7
HR
499static char floppy_device_name[] = "floppy";
500
1da177e4
LT
501/*
502 * The driver is trying to determine the correct media format
503 * while probing is set. rw_interrupt() clears it after a
504 * successful access.
505 */
506static int probing;
507
508/* Synchronization of FDC access. */
48c8cee6
JP
509#define FD_COMMAND_NONE -1
510#define FD_COMMAND_ERROR 2
511#define FD_COMMAND_OKAY 3
1da177e4
LT
512
513static volatile int command_status = FD_COMMAND_NONE;
514static unsigned long fdc_busy;
515static DECLARE_WAIT_QUEUE_HEAD(fdc_wait);
516static DECLARE_WAIT_QUEUE_HEAD(command_done);
517
1da177e4
LT
518/* Errors during formatting are counted here. */
519static int format_errors;
520
521/* Format request descriptor. */
522static struct format_descr format_req;
523
524/*
525 * Rate is 0 for 500kb/s, 1 for 300kbps, 2 for 250kbps
526 * Spec1 is 0xSH, where S is stepping rate (F=1ms, E=2ms, D=3ms etc),
527 * H is head unload time (1=16ms, 2=32ms, etc)
528 */
529
530/*
531 * Track buffer
532 * Because these are written to by the DMA controller, they must
533 * not contain a 64k byte boundary crossing, or data will be
534 * corrupted/lost.
535 */
536static char *floppy_track_buffer;
537static int max_buffer_sectors;
538
539static int *errors;
06f748c4 540typedef void (*done_f)(int);
3b06c21e 541static const struct cont_t {
48c8cee6
JP
542 void (*interrupt)(void);
543 /* this is called after the interrupt of the
544 * main command */
06f748c4
JJ
545 void (*redo)(void); /* this is called to retry the operation */
546 void (*error)(void); /* this is called to tally an error */
1da177e4
LT
547 done_f done; /* this is called to say if the operation has
548 * succeeded/failed */
549} *cont;
550
551static void floppy_ready(void);
552static void floppy_start(void);
553static void process_fd_request(void);
554static void recalibrate_floppy(void);
070ad7e7 555static void floppy_shutdown(struct work_struct *);
1da177e4 556
5a74db06
PDM
557static int floppy_request_regions(int);
558static void floppy_release_regions(int);
1da177e4
LT
559static int floppy_grab_irq_and_dma(void);
560static void floppy_release_irq_and_dma(void);
561
562/*
563 * The "reset" variable should be tested whenever an interrupt is scheduled,
564 * after the commands have been sent. This is to ensure that the driver doesn't
565 * get wedged when the interrupt doesn't come because of a failed command.
566 * reset doesn't need to be tested before sending commands, because
567 * output_byte is automatically disabled when reset is set.
568 */
1da177e4
LT
569static void reset_fdc(void);
570
571/*
572 * These are global variables, as that's the easiest way to give
573 * information to interrupts. They are the data used for the current
574 * request.
575 */
48c8cee6
JP
576#define NO_TRACK -1
577#define NEED_1_RECAL -2
578#define NEED_2_RECAL -3
1da177e4 579
575cfc67 580static atomic_t usage_count = ATOMIC_INIT(0);
1da177e4
LT
581
582/* buffer related variables */
583static int buffer_track = -1;
584static int buffer_drive = -1;
585static int buffer_min = -1;
586static int buffer_max = -1;
587
588/* fdc related variables, should end up in a struct */
589static struct floppy_fdc_state fdc_state[N_FDC];
590static int fdc; /* current fdc */
591
070ad7e7
JK
592static struct workqueue_struct *floppy_wq;
593
1da177e4
LT
594static struct floppy_struct *_floppy = floppy_type;
595static unsigned char current_drive;
596static long current_count_sectors;
597static unsigned char fsector_t; /* sector in track */
598static unsigned char in_sector_offset; /* offset within physical sector,
599 * expressed in units of 512 bytes */
600
2b51dca7
PE
601static inline bool drive_no_geom(int drive)
602{
603 return !current_type[drive] && !ITYPE(UDRS->fd_device);
604}
605
1da177e4
LT
606#ifndef fd_eject
607static inline int fd_eject(int drive)
608{
609 return -EINVAL;
610}
611#endif
612
613/*
614 * Debugging
615 * =========
616 */
617#ifdef DEBUGT
618static long unsigned debugtimer;
619
620static inline void set_debugt(void)
621{
622 debugtimer = jiffies;
623}
624
ded2863d 625static inline void debugt(const char *func, const char *msg)
1da177e4
LT
626{
627 if (DP->flags & DEBUGT)
ded2863d 628 pr_info("%s:%s dtime=%lu\n", func, msg, jiffies - debugtimer);
1da177e4
LT
629}
630#else
631static inline void set_debugt(void) { }
ded2863d 632static inline void debugt(const char *func, const char *msg) { }
1da177e4
LT
633#endif /* DEBUGT */
634
1da177e4 635
070ad7e7 636static DECLARE_DELAYED_WORK(fd_timeout, floppy_shutdown);
1da177e4
LT
637static const char *timeout_message;
638
275176bc 639static void is_alive(const char *func, const char *message)
1da177e4
LT
640{
641 /* this routine checks whether the floppy driver is "alive" */
c529730a 642 if (test_bit(0, &fdc_busy) && command_status < 2 &&
070ad7e7 643 !delayed_work_pending(&fd_timeout)) {
275176bc 644 DPRINT("%s: timeout handler died. %s\n", func, message);
1da177e4
LT
645 }
646}
1da177e4 647
48c8cee6 648static void (*do_floppy)(void) = NULL;
1da177e4 649
1da177e4
LT
650#define OLOGSIZE 20
651
48c8cee6 652static void (*lasthandler)(void);
1da177e4
LT
653static unsigned long interruptjiffies;
654static unsigned long resultjiffies;
655static int resultsize;
656static unsigned long lastredo;
657
658static struct output_log {
659 unsigned char data;
660 unsigned char status;
661 unsigned long jiffies;
662} output_log[OLOGSIZE];
663
664static int output_log_pos;
1da177e4
LT
665
666#define current_reqD -1
667#define MAXTIMEOUT -2
668
73507e6c 669static void __reschedule_timeout(int drive, const char *message)
1da177e4 670{
070ad7e7
JK
671 unsigned long delay;
672
1da177e4
LT
673 if (drive == current_reqD)
674 drive = current_drive;
dab058fd 675 __cancel_delayed_work(&fd_timeout);
070ad7e7 676
4acb3e2f 677 if (drive < 0 || drive >= N_DRIVE) {
070ad7e7 678 delay = 20UL * HZ;
1da177e4
LT
679 drive = 0;
680 } else
070ad7e7
JK
681 delay = UDP->timeout;
682
683 queue_delayed_work(floppy_wq, &fd_timeout, delay);
a81ee544 684 if (UDP->flags & FD_DEBUG)
73507e6c 685 DPRINT("reschedule timeout %s\n", message);
1da177e4
LT
686 timeout_message = message;
687}
688
73507e6c 689static void reschedule_timeout(int drive, const char *message)
1da177e4
LT
690{
691 unsigned long flags;
692
693 spin_lock_irqsave(&floppy_lock, flags);
73507e6c 694 __reschedule_timeout(drive, message);
1da177e4
LT
695 spin_unlock_irqrestore(&floppy_lock, flags);
696}
697
48c8cee6
JP
698#define INFBOUND(a, b) (a) = max_t(int, a, b)
699#define SUPBOUND(a, b) (a) = min_t(int, a, b)
1da177e4
LT
700
701/*
702 * Bottom half floppy driver.
703 * ==========================
704 *
705 * This part of the file contains the code talking directly to the hardware,
706 * and also the main service loop (seek-configure-spinup-command)
707 */
708
709/*
710 * disk change.
711 * This routine is responsible for maintaining the FD_DISK_CHANGE flag,
712 * and the last_checked date.
713 *
714 * last_checked is the date of the last check which showed 'no disk change'
715 * FD_DISK_CHANGE is set under two conditions:
716 * 1. The floppy has been changed after some i/o to that floppy already
717 * took place.
718 * 2. No floppy disk is in the drive. This is done in order to ensure that
719 * requests are quickly flushed in case there is no disk in the drive. It
720 * follows that FD_DISK_CHANGE can only be cleared if there is a disk in
721 * the drive.
722 *
723 * For 1., maxblock is observed. Maxblock is 0 if no i/o has taken place yet.
724 * For 2., FD_DISK_NEWCHANGE is watched. FD_DISK_NEWCHANGE is cleared on
725 * each seek. If a disk is present, the disk change line should also be
726 * cleared on each seek. Thus, if FD_DISK_NEWCHANGE is clear, but the disk
727 * change line is set, this means either that no disk is in the drive, or
728 * that it has been removed since the last seek.
729 *
730 * This means that we really have a third possibility too:
731 * The floppy has been changed after the last seek.
732 */
733
734static int disk_change(int drive)
735{
736 int fdc = FDC(drive);
06f748c4 737
50297cbf 738 if (time_before(jiffies, UDRS->select_date + UDP->select_delay))
1da177e4
LT
739 DPRINT("WARNING disk change called early\n");
740 if (!(FDCS->dor & (0x10 << UNIT(drive))) ||
741 (FDCS->dor & 3) != UNIT(drive) || fdc != FDC(drive)) {
742 DPRINT("probing disk change on unselected drive\n");
743 DPRINT("drive=%d fdc=%d dor=%x\n", drive, FDC(drive),
744 (unsigned int)FDCS->dor);
745 }
1da177e4 746
87f530d8
JP
747 debug_dcl(UDP->flags,
748 "checking disk change line for drive %d\n", drive);
749 debug_dcl(UDP->flags, "jiffies=%lu\n", jiffies);
750 debug_dcl(UDP->flags, "disk change line=%x\n", fd_inb(FD_DIR) & 0x80);
751 debug_dcl(UDP->flags, "flags=%lx\n", UDRS->flags);
752
1da177e4 753 if (UDP->flags & FD_BROKEN_DCL)
e0298536 754 return test_bit(FD_DISK_CHANGED_BIT, &UDRS->flags);
1da177e4 755 if ((fd_inb(FD_DIR) ^ UDP->flags) & 0x80) {
e0298536
JP
756 set_bit(FD_VERIFY_BIT, &UDRS->flags);
757 /* verify write protection */
758
759 if (UDRS->maxblock) /* mark it changed */
760 set_bit(FD_DISK_CHANGED_BIT, &UDRS->flags);
1da177e4
LT
761
762 /* invalidate its geometry */
763 if (UDRS->keep_data >= 0) {
764 if ((UDP->flags & FTD_MSG) &&
765 current_type[drive] != NULL)
891eda80 766 DPRINT("Disk type is undefined after disk change\n");
1da177e4
LT
767 current_type[drive] = NULL;
768 floppy_sizes[TOMINOR(drive)] = MAX_DISK_SIZE << 1;
769 }
770
1da177e4
LT
771 return 1;
772 } else {
773 UDRS->last_checked = jiffies;
e0298536 774 clear_bit(FD_DISK_NEWCHANGE_BIT, &UDRS->flags);
1da177e4
LT
775 }
776 return 0;
777}
778
779static inline int is_selected(int dor, int unit)
780{
781 return ((dor & (0x10 << unit)) && (dor & 3) == unit);
782}
783
57584c5a
JP
784static bool is_ready_state(int status)
785{
786 int state = status & (STATUS_READY | STATUS_DIR | STATUS_DMA);
787 return state == STATUS_READY;
788}
789
1da177e4
LT
790static int set_dor(int fdc, char mask, char data)
791{
fdc1ca8a
JJ
792 unsigned char unit;
793 unsigned char drive;
794 unsigned char newdor;
795 unsigned char olddor;
1da177e4
LT
796
797 if (FDCS->address == -1)
798 return -1;
799
800 olddor = FDCS->dor;
801 newdor = (olddor & mask) | data;
802 if (newdor != olddor) {
803 unit = olddor & 0x3;
804 if (is_selected(olddor, unit) && !is_selected(newdor, unit)) {
805 drive = REVDRIVE(fdc, unit);
87f530d8
JP
806 debug_dcl(UDP->flags,
807 "calling disk change from set_dor\n");
1da177e4
LT
808 disk_change(drive);
809 }
810 FDCS->dor = newdor;
811 fd_outb(newdor, FD_DOR);
812
813 unit = newdor & 0x3;
814 if (!is_selected(olddor, unit) && is_selected(newdor, unit)) {
815 drive = REVDRIVE(fdc, unit);
816 UDRS->select_date = jiffies;
817 }
818 }
1da177e4
LT
819 return olddor;
820}
821
822static void twaddle(void)
823{
824 if (DP->select_delay)
825 return;
826 fd_outb(FDCS->dor & ~(0x10 << UNIT(current_drive)), FD_DOR);
827 fd_outb(FDCS->dor, FD_DOR);
828 DRS->select_date = jiffies;
829}
830
57584c5a
JP
831/*
832 * Reset all driver information about the current fdc.
833 * This is needed after a reset, and after a raw command.
834 */
1da177e4
LT
835static void reset_fdc_info(int mode)
836{
837 int drive;
838
839 FDCS->spec1 = FDCS->spec2 = -1;
840 FDCS->need_configure = 1;
841 FDCS->perp_mode = 1;
842 FDCS->rawcmd = 0;
843 for (drive = 0; drive < N_DRIVE; drive++)
844 if (FDC(drive) == fdc && (mode || UDRS->track != NEED_1_RECAL))
845 UDRS->track = NEED_2_RECAL;
846}
847
848/* selects the fdc and drive, and enables the fdc's input/dma. */
849static void set_fdc(int drive)
850{
851 if (drive >= 0 && drive < N_DRIVE) {
852 fdc = FDC(drive);
853 current_drive = drive;
854 }
855 if (fdc != 1 && fdc != 0) {
b46df356 856 pr_info("bad fdc value\n");
1da177e4
LT
857 return;
858 }
859 set_dor(fdc, ~0, 8);
860#if N_FDC > 1
861 set_dor(1 - fdc, ~8, 0);
862#endif
863 if (FDCS->rawcmd == 2)
864 reset_fdc_info(1);
865 if (fd_inb(FD_STATUS) != STATUS_READY)
866 FDCS->reset = 1;
867}
868
869/* locks the driver */
b862f26f 870static int lock_fdc(int drive, bool interruptible)
1da177e4 871{
b862f26f
SH
872 if (WARN(atomic_read(&usage_count) == 0,
873 "Trying to lock fdc while usage count=0\n"))
1da177e4 874 return -1;
1da177e4 875
b862f26f
SH
876 if (wait_event_interruptible(fdc_wait, !test_and_set_bit(0, &fdc_busy)))
877 return -EINTR;
1da177e4 878
1da177e4
LT
879 command_status = FD_COMMAND_NONE;
880
070ad7e7 881 reschedule_timeout(drive, "lock fdc");
1da177e4
LT
882 set_fdc(drive);
883 return 0;
884}
885
1da177e4 886/* unlocks the driver */
be7a12bb 887static void unlock_fdc(void)
1da177e4 888{
1da177e4
LT
889 if (!test_bit(0, &fdc_busy))
890 DPRINT("FDC access conflict!\n");
891
070ad7e7 892 raw_cmd = NULL;
1da177e4 893 command_status = FD_COMMAND_NONE;
070ad7e7
JK
894 __cancel_delayed_work(&fd_timeout);
895 do_floppy = NULL;
1da177e4
LT
896 cont = NULL;
897 clear_bit(0, &fdc_busy);
1da177e4
LT
898 wake_up(&fdc_wait);
899}
900
901/* switches the motor off after a given timeout */
902static void motor_off_callback(unsigned long nr)
903{
904 unsigned char mask = ~(0x10 << UNIT(nr));
905
906 set_dor(FDC(nr), mask, 0);
907}
908
909/* schedules motor off */
910static void floppy_off(unsigned int drive)
911{
912 unsigned long volatile delta;
fdc1ca8a 913 int fdc = FDC(drive);
1da177e4
LT
914
915 if (!(FDCS->dor & (0x10 << UNIT(drive))))
916 return;
917
918 del_timer(motor_off_timer + drive);
919
920 /* make spindle stop in a position which minimizes spinup time
921 * next time */
922 if (UDP->rps) {
923 delta = jiffies - UDRS->first_read_date + HZ -
924 UDP->spindown_offset;
925 delta = ((delta * UDP->rps) % HZ) / UDP->rps;
926 motor_off_timer[drive].expires =
927 jiffies + UDP->spindown - delta;
928 }
929 add_timer(motor_off_timer + drive);
930}
931
932/*
933 * cycle through all N_DRIVE floppy drives, for disk change testing.
934 * stopping at current drive. This is done before any long operation, to
935 * be sure to have up to date disk change information.
936 */
937static void scandrives(void)
938{
06f748c4
JJ
939 int i;
940 int drive;
941 int saved_drive;
1da177e4
LT
942
943 if (DP->select_delay)
944 return;
945
946 saved_drive = current_drive;
947 for (i = 0; i < N_DRIVE; i++) {
948 drive = (saved_drive + i + 1) % N_DRIVE;
949 if (UDRS->fd_ref == 0 || UDP->select_delay != 0)
950 continue; /* skip closed drives */
951 set_fdc(drive);
952 if (!(set_dor(fdc, ~3, UNIT(drive) | (0x10 << UNIT(drive))) &
953 (0x10 << UNIT(drive))))
954 /* switch the motor off again, if it was off to
955 * begin with */
956 set_dor(fdc, ~(0x10 << UNIT(drive)), 0);
957 }
958 set_fdc(saved_drive);
959}
960
961static void empty(void)
962{
963}
964
65f27f38 965static DECLARE_WORK(floppy_work, NULL);
1da177e4 966
48c8cee6 967static void schedule_bh(void (*handler)(void))
1da177e4 968{
070ad7e7
JK
969 WARN_ON(work_pending(&floppy_work));
970
65f27f38 971 PREPARE_WORK(&floppy_work, (work_func_t)handler);
070ad7e7 972 queue_work(floppy_wq, &floppy_work);
1da177e4
LT
973}
974
070ad7e7 975static DECLARE_DELAYED_WORK(fd_timer, NULL);
1da177e4
LT
976
977static void cancel_activity(void)
978{
1da177e4 979 do_floppy = NULL;
070ad7e7
JK
980 cancel_delayed_work_sync(&fd_timer);
981 cancel_work_sync(&floppy_work);
1da177e4
LT
982}
983
984/* this function makes sure that the disk stays in the drive during the
985 * transfer */
070ad7e7 986static void fd_watchdog(struct work_struct *arg)
1da177e4 987{
87f530d8 988 debug_dcl(DP->flags, "calling disk change from watchdog\n");
1da177e4
LT
989
990 if (disk_change(current_drive)) {
991 DPRINT("disk removed during i/o\n");
992 cancel_activity();
993 cont->done(0);
994 reset_fdc();
995 } else {
070ad7e7
JK
996 cancel_delayed_work(&fd_timer);
997 PREPARE_DELAYED_WORK(&fd_timer, fd_watchdog);
998 queue_delayed_work(floppy_wq, &fd_timer, HZ / 10);
1da177e4
LT
999 }
1000}
1001
1002static void main_command_interrupt(void)
1003{
070ad7e7 1004 cancel_delayed_work(&fd_timer);
1da177e4
LT
1005 cont->interrupt();
1006}
1007
1008/* waits for a delay (spinup or select) to pass */
070ad7e7 1009static int fd_wait_for_completion(unsigned long expires, work_func_t function)
1da177e4
LT
1010{
1011 if (FDCS->reset) {
1012 reset_fdc(); /* do the reset during sleep to win time
1013 * if we don't need to sleep, it's a good
1014 * occasion anyways */
1015 return 1;
1016 }
1017
070ad7e7
JK
1018 if (time_before(jiffies, expires)) {
1019 cancel_delayed_work(&fd_timer);
1020 PREPARE_DELAYED_WORK(&fd_timer, function);
1021 queue_delayed_work(floppy_wq, &fd_timer, expires - jiffies);
1da177e4
LT
1022 return 1;
1023 }
1024 return 0;
1025}
1026
1da177e4
LT
1027static void setup_DMA(void)
1028{
1029 unsigned long f;
1030
1da177e4
LT
1031 if (raw_cmd->length == 0) {
1032 int i;
1033
b46df356 1034 pr_info("zero dma transfer size:");
1da177e4 1035 for (i = 0; i < raw_cmd->cmd_count; i++)
b46df356
JP
1036 pr_cont("%x,", raw_cmd->cmd[i]);
1037 pr_cont("\n");
1da177e4
LT
1038 cont->done(0);
1039 FDCS->reset = 1;
1040 return;
1041 }
1042 if (((unsigned long)raw_cmd->kernel_data) % 512) {
b46df356 1043 pr_info("non aligned address: %p\n", raw_cmd->kernel_data);
1da177e4
LT
1044 cont->done(0);
1045 FDCS->reset = 1;
1046 return;
1047 }
1da177e4
LT
1048 f = claim_dma_lock();
1049 fd_disable_dma();
1050#ifdef fd_dma_setup
1051 if (fd_dma_setup(raw_cmd->kernel_data, raw_cmd->length,
1052 (raw_cmd->flags & FD_RAW_READ) ?
1053 DMA_MODE_READ : DMA_MODE_WRITE, FDCS->address) < 0) {
1054 release_dma_lock(f);
1055 cont->done(0);
1056 FDCS->reset = 1;
1057 return;
1058 }
1059 release_dma_lock(f);
1060#else
1061 fd_clear_dma_ff();
1062 fd_cacheflush(raw_cmd->kernel_data, raw_cmd->length);
1063 fd_set_dma_mode((raw_cmd->flags & FD_RAW_READ) ?
1064 DMA_MODE_READ : DMA_MODE_WRITE);
1065 fd_set_dma_addr(raw_cmd->kernel_data);
1066 fd_set_dma_count(raw_cmd->length);
1067 virtual_dma_port = FDCS->address;
1068 fd_enable_dma();
1069 release_dma_lock(f);
1070#endif
1da177e4
LT
1071}
1072
1073static void show_floppy(void);
1074
1075/* waits until the fdc becomes ready */
1076static int wait_til_ready(void)
1077{
06f748c4
JJ
1078 int status;
1079 int counter;
1080
1da177e4
LT
1081 if (FDCS->reset)
1082 return -1;
1083 for (counter = 0; counter < 10000; counter++) {
1084 status = fd_inb(FD_STATUS);
1085 if (status & STATUS_READY)
1086 return status;
1087 }
29f1c784 1088 if (initialized) {
1da177e4
LT
1089 DPRINT("Getstatus times out (%x) on fdc %d\n", status, fdc);
1090 show_floppy();
1091 }
1092 FDCS->reset = 1;
1093 return -1;
1094}
1095
1096/* sends a command byte to the fdc */
1097static int output_byte(char byte)
1098{
d7b2b2ec 1099 int status = wait_til_ready();
1da177e4 1100
d7b2b2ec 1101 if (status < 0)
1da177e4 1102 return -1;
57584c5a
JP
1103
1104 if (is_ready_state(status)) {
1da177e4 1105 fd_outb(byte, FD_DATA);
1da177e4
LT
1106 output_log[output_log_pos].data = byte;
1107 output_log[output_log_pos].status = status;
1108 output_log[output_log_pos].jiffies = jiffies;
1109 output_log_pos = (output_log_pos + 1) % OLOGSIZE;
1da177e4
LT
1110 return 0;
1111 }
1112 FDCS->reset = 1;
29f1c784 1113 if (initialized) {
1da177e4
LT
1114 DPRINT("Unable to send byte %x to FDC. Fdc=%x Status=%x\n",
1115 byte, fdc, status);
1116 show_floppy();
1117 }
1118 return -1;
1119}
1120
1da177e4
LT
1121/* gets the response from the fdc */
1122static int result(void)
1123{
06f748c4
JJ
1124 int i;
1125 int status = 0;
1da177e4
LT
1126
1127 for (i = 0; i < MAX_REPLIES; i++) {
d7b2b2ec
JP
1128 status = wait_til_ready();
1129 if (status < 0)
1da177e4
LT
1130 break;
1131 status &= STATUS_DIR | STATUS_READY | STATUS_BUSY | STATUS_DMA;
1132 if ((status & ~STATUS_BUSY) == STATUS_READY) {
1da177e4
LT
1133 resultjiffies = jiffies;
1134 resultsize = i;
1da177e4
LT
1135 return i;
1136 }
1137 if (status == (STATUS_DIR | STATUS_READY | STATUS_BUSY))
1138 reply_buffer[i] = fd_inb(FD_DATA);
1139 else
1140 break;
1141 }
29f1c784
JP
1142 if (initialized) {
1143 DPRINT("get result error. Fdc=%d Last status=%x Read bytes=%d\n",
1144 fdc, status, i);
1da177e4
LT
1145 show_floppy();
1146 }
1147 FDCS->reset = 1;
1148 return -1;
1149}
1150
1151#define MORE_OUTPUT -2
1152/* does the fdc need more output? */
1153static int need_more_output(void)
1154{
d7b2b2ec 1155 int status = wait_til_ready();
06f748c4 1156
d7b2b2ec 1157 if (status < 0)
1da177e4 1158 return -1;
57584c5a
JP
1159
1160 if (is_ready_state(status))
1da177e4 1161 return MORE_OUTPUT;
57584c5a 1162
1da177e4
LT
1163 return result();
1164}
1165
1166/* Set perpendicular mode as required, based on data rate, if supported.
1167 * 82077 Now tested. 1Mbps data rate only possible with 82077-1.
1168 */
be7a12bb 1169static void perpendicular_mode(void)
1da177e4
LT
1170{
1171 unsigned char perp_mode;
1172
1173 if (raw_cmd->rate & 0x40) {
1174 switch (raw_cmd->rate & 3) {
1175 case 0:
1176 perp_mode = 2;
1177 break;
1178 case 3:
1179 perp_mode = 3;
1180 break;
1181 default:
1182 DPRINT("Invalid data rate for perpendicular mode!\n");
1183 cont->done(0);
bb57f0c6
JP
1184 FDCS->reset = 1;
1185 /*
1186 * convenient way to return to
1187 * redo without too much hassle
1188 * (deep stack et al.)
1189 */
1da177e4
LT
1190 return;
1191 }
1192 } else
1193 perp_mode = 0;
1194
1195 if (FDCS->perp_mode == perp_mode)
1196 return;
1197 if (FDCS->version >= FDC_82077_ORIG) {
1198 output_byte(FD_PERPENDICULAR);
1199 output_byte(perp_mode);
1200 FDCS->perp_mode = perp_mode;
1201 } else if (perp_mode) {
1202 DPRINT("perpendicular mode not supported by this FDC.\n");
1203 }
1204} /* perpendicular_mode */
1205
1206static int fifo_depth = 0xa;
1207static int no_fifo;
1208
1209static int fdc_configure(void)
1210{
1211 /* Turn on FIFO */
1212 output_byte(FD_CONFIGURE);
1213 if (need_more_output() != MORE_OUTPUT)
1214 return 0;
1215 output_byte(0);
1216 output_byte(0x10 | (no_fifo & 0x20) | (fifo_depth & 0xf));
1217 output_byte(0); /* pre-compensation from track
1218 0 upwards */
1219 return 1;
1220}
1221
1222#define NOMINAL_DTR 500
1223
1224/* Issue a "SPECIFY" command to set the step rate time, head unload time,
1225 * head load time, and DMA disable flag to values needed by floppy.
1226 *
1227 * The value "dtr" is the data transfer rate in Kbps. It is needed
1228 * to account for the data rate-based scaling done by the 82072 and 82077
1229 * FDC types. This parameter is ignored for other types of FDCs (i.e.
1230 * 8272a).
1231 *
1232 * Note that changing the data transfer rate has a (probably deleterious)
1233 * effect on the parameters subject to scaling for 82072/82077 FDCs, so
1234 * fdc_specify is called again after each data transfer rate
1235 * change.
1236 *
1237 * srt: 1000 to 16000 in microseconds
1238 * hut: 16 to 240 milliseconds
1239 * hlt: 2 to 254 milliseconds
1240 *
1241 * These values are rounded up to the next highest available delay time.
1242 */
1243static void fdc_specify(void)
1244{
06f748c4
JJ
1245 unsigned char spec1;
1246 unsigned char spec2;
1247 unsigned long srt;
1248 unsigned long hlt;
1249 unsigned long hut;
1da177e4
LT
1250 unsigned long dtr = NOMINAL_DTR;
1251 unsigned long scale_dtr = NOMINAL_DTR;
1252 int hlt_max_code = 0x7f;
1253 int hut_max_code = 0xf;
1254
1255 if (FDCS->need_configure && FDCS->version >= FDC_82072A) {
1256 fdc_configure();
1257 FDCS->need_configure = 0;
1da177e4
LT
1258 }
1259
1260 switch (raw_cmd->rate & 0x03) {
1261 case 3:
1262 dtr = 1000;
1263 break;
1264 case 1:
1265 dtr = 300;
1266 if (FDCS->version >= FDC_82078) {
1267 /* chose the default rate table, not the one
1268 * where 1 = 2 Mbps */
1269 output_byte(FD_DRIVESPEC);
1270 if (need_more_output() == MORE_OUTPUT) {
1271 output_byte(UNIT(current_drive));
1272 output_byte(0xc0);
1273 }
1274 }
1275 break;
1276 case 2:
1277 dtr = 250;
1278 break;
1279 }
1280
1281 if (FDCS->version >= FDC_82072) {
1282 scale_dtr = dtr;
1283 hlt_max_code = 0x00; /* 0==256msec*dtr0/dtr (not linear!) */
1284 hut_max_code = 0x0; /* 0==256msec*dtr0/dtr (not linear!) */
1285 }
1286
1287 /* Convert step rate from microseconds to milliseconds and 4 bits */
061837bc 1288 srt = 16 - DIV_ROUND_UP(DP->srt * scale_dtr / 1000, NOMINAL_DTR);
a81ee544 1289 if (slow_floppy)
1da177e4 1290 srt = srt / 4;
a81ee544 1291
1da177e4
LT
1292 SUPBOUND(srt, 0xf);
1293 INFBOUND(srt, 0);
1294
061837bc 1295 hlt = DIV_ROUND_UP(DP->hlt * scale_dtr / 2, NOMINAL_DTR);
1da177e4
LT
1296 if (hlt < 0x01)
1297 hlt = 0x01;
1298 else if (hlt > 0x7f)
1299 hlt = hlt_max_code;
1300
061837bc 1301 hut = DIV_ROUND_UP(DP->hut * scale_dtr / 16, NOMINAL_DTR);
1da177e4
LT
1302 if (hut < 0x1)
1303 hut = 0x1;
1304 else if (hut > 0xf)
1305 hut = hut_max_code;
1306
1307 spec1 = (srt << 4) | hut;
1308 spec2 = (hlt << 1) | (use_virtual_dma & 1);
1309
1310 /* If these parameters did not change, just return with success */
1311 if (FDCS->spec1 != spec1 || FDCS->spec2 != spec2) {
1312 /* Go ahead and set spec1 and spec2 */
1313 output_byte(FD_SPECIFY);
1314 output_byte(FDCS->spec1 = spec1);
1315 output_byte(FDCS->spec2 = spec2);
1316 }
1317} /* fdc_specify */
1318
1319/* Set the FDC's data transfer rate on behalf of the specified drive.
1320 * NOTE: with 82072/82077 FDCs, changing the data rate requires a reissue
1321 * of the specify command (i.e. using the fdc_specify function).
1322 */
1323static int fdc_dtr(void)
1324{
1325 /* If data rate not already set to desired value, set it. */
1326 if ((raw_cmd->rate & 3) == FDCS->dtr)
1327 return 0;
1328
1329 /* Set dtr */
1330 fd_outb(raw_cmd->rate & 3, FD_DCR);
1331
1332 /* TODO: some FDC/drive combinations (C&T 82C711 with TEAC 1.2MB)
1333 * need a stabilization period of several milliseconds to be
1334 * enforced after data rate changes before R/W operations.
1335 * Pause 5 msec to avoid trouble. (Needs to be 2 jiffies)
1336 */
1337 FDCS->dtr = raw_cmd->rate & 3;
d7b2b2ec 1338 return fd_wait_for_completion(jiffies + 2UL * HZ / 100,
070ad7e7 1339 (work_func_t)floppy_ready);
1da177e4
LT
1340} /* fdc_dtr */
1341
1342static void tell_sector(void)
1343{
b46df356
JP
1344 pr_cont(": track %d, head %d, sector %d, size %d",
1345 R_TRACK, R_HEAD, R_SECTOR, R_SIZECODE);
1da177e4
LT
1346} /* tell_sector */
1347
b46df356
JP
1348static void print_errors(void)
1349{
1350 DPRINT("");
1351 if (ST0 & ST0_ECE) {
1352 pr_cont("Recalibrate failed!");
1353 } else if (ST2 & ST2_CRC) {
1354 pr_cont("data CRC error");
1355 tell_sector();
1356 } else if (ST1 & ST1_CRC) {
1357 pr_cont("CRC error");
1358 tell_sector();
1359 } else if ((ST1 & (ST1_MAM | ST1_ND)) ||
1360 (ST2 & ST2_MAM)) {
1361 if (!probing) {
1362 pr_cont("sector not found");
1363 tell_sector();
1364 } else
1365 pr_cont("probe failed...");
1366 } else if (ST2 & ST2_WC) { /* seek error */
1367 pr_cont("wrong cylinder");
1368 } else if (ST2 & ST2_BC) { /* cylinder marked as bad */
1369 pr_cont("bad cylinder");
1370 } else {
1371 pr_cont("unknown error. ST[0..2] are: 0x%x 0x%x 0x%x",
1372 ST0, ST1, ST2);
1373 tell_sector();
1374 }
1375 pr_cont("\n");
1376}
1377
1da177e4
LT
1378/*
1379 * OK, this error interpreting routine is called after a
1380 * DMA read/write has succeeded
1381 * or failed, so we check the results, and copy any buffers.
1382 * hhb: Added better error reporting.
1383 * ak: Made this into a separate routine.
1384 */
1385static int interpret_errors(void)
1386{
1387 char bad;
1388
1389 if (inr != 7) {
891eda80 1390 DPRINT("-- FDC reply error\n");
1da177e4
LT
1391 FDCS->reset = 1;
1392 return 1;
1393 }
1394
1395 /* check IC to find cause of interrupt */
1396 switch (ST0 & ST0_INTR) {
1397 case 0x40: /* error occurred during command execution */
1398 if (ST1 & ST1_EOC)
1399 return 0; /* occurs with pseudo-DMA */
1400 bad = 1;
1401 if (ST1 & ST1_WP) {
1402 DPRINT("Drive is write protected\n");
e0298536 1403 clear_bit(FD_DISK_WRITABLE_BIT, &DRS->flags);
1da177e4
LT
1404 cont->done(0);
1405 bad = 2;
1406 } else if (ST1 & ST1_ND) {
e0298536 1407 set_bit(FD_NEED_TWADDLE_BIT, &DRS->flags);
1da177e4
LT
1408 } else if (ST1 & ST1_OR) {
1409 if (DP->flags & FTD_MSG)
1410 DPRINT("Over/Underrun - retrying\n");
1411 bad = 0;
1412 } else if (*errors >= DP->max_errors.reporting) {
b46df356 1413 print_errors();
1da177e4
LT
1414 }
1415 if (ST2 & ST2_WC || ST2 & ST2_BC)
1416 /* wrong cylinder => recal */
1417 DRS->track = NEED_2_RECAL;
1418 return bad;
1419 case 0x80: /* invalid command given */
1420 DPRINT("Invalid FDC command given!\n");
1421 cont->done(0);
1422 return 2;
1423 case 0xc0:
1424 DPRINT("Abnormal termination caused by polling\n");
1425 cont->error();
1426 return 2;
1427 default: /* (0) Normal command termination */
1428 return 0;
1429 }
1430}
1431
1432/*
1433 * This routine is called when everything should be correctly set up
1434 * for the transfer (i.e. floppy motor is on, the correct floppy is
1435 * selected, and the head is sitting on the right track).
1436 */
1437static void setup_rw_floppy(void)
1438{
06f748c4
JJ
1439 int i;
1440 int r;
1441 int flags;
1442 int dflags;
1da177e4 1443 unsigned long ready_date;
070ad7e7 1444 work_func_t function;
1da177e4
LT
1445
1446 flags = raw_cmd->flags;
1447 if (flags & (FD_RAW_READ | FD_RAW_WRITE))
1448 flags |= FD_RAW_INTR;
1449
1450 if ((flags & FD_RAW_SPIN) && !(flags & FD_RAW_NO_MOTOR)) {
1451 ready_date = DRS->spinup_date + DP->spinup;
1452 /* If spinup will take a long time, rerun scandrives
1453 * again just before spinup completion. Beware that
1454 * after scandrives, we must again wait for selection.
1455 */
50297cbf 1456 if (time_after(ready_date, jiffies + DP->select_delay)) {
1da177e4 1457 ready_date -= DP->select_delay;
070ad7e7 1458 function = (work_func_t)floppy_start;
1da177e4 1459 } else
070ad7e7 1460 function = (work_func_t)setup_rw_floppy;
1da177e4
LT
1461
1462 /* wait until the floppy is spinning fast enough */
1463 if (fd_wait_for_completion(ready_date, function))
1464 return;
1465 }
1466 dflags = DRS->flags;
1467
1468 if ((flags & FD_RAW_READ) || (flags & FD_RAW_WRITE))
1469 setup_DMA();
1470
1471 if (flags & FD_RAW_INTR)
1472 do_floppy = main_command_interrupt;
1473
1474 r = 0;
1475 for (i = 0; i < raw_cmd->cmd_count; i++)
1476 r |= output_byte(raw_cmd->cmd[i]);
1477
ded2863d 1478 debugt(__func__, "rw_command");
1da177e4
LT
1479
1480 if (r) {
1481 cont->error();
1482 reset_fdc();
1483 return;
1484 }
1485
1486 if (!(flags & FD_RAW_INTR)) {
1487 inr = result();
1488 cont->interrupt();
1489 } else if (flags & FD_RAW_NEED_DISK)
070ad7e7 1490 fd_watchdog(NULL);
1da177e4
LT
1491}
1492
1493static int blind_seek;
1494
1495/*
1496 * This is the routine called after every seek (or recalibrate) interrupt
1497 * from the floppy controller.
1498 */
1499static void seek_interrupt(void)
1500{
ded2863d 1501 debugt(__func__, "");
1da177e4
LT
1502 if (inr != 2 || (ST0 & 0xF8) != 0x20) {
1503 DPRINT("seek failed\n");
1504 DRS->track = NEED_2_RECAL;
1505 cont->error();
1506 cont->redo();
1507 return;
1508 }
1509 if (DRS->track >= 0 && DRS->track != ST1 && !blind_seek) {
87f530d8
JP
1510 debug_dcl(DP->flags,
1511 "clearing NEWCHANGE flag because of effective seek\n");
1512 debug_dcl(DP->flags, "jiffies=%lu\n", jiffies);
e0298536
JP
1513 clear_bit(FD_DISK_NEWCHANGE_BIT, &DRS->flags);
1514 /* effective seek */
1da177e4
LT
1515 DRS->select_date = jiffies;
1516 }
1517 DRS->track = ST1;
1518 floppy_ready();
1519}
1520
1521static void check_wp(void)
1522{
e0298536
JP
1523 if (test_bit(FD_VERIFY_BIT, &DRS->flags)) {
1524 /* check write protection */
1da177e4
LT
1525 output_byte(FD_GETSTATUS);
1526 output_byte(UNIT(current_drive));
1527 if (result() != 1) {
1528 FDCS->reset = 1;
1529 return;
1530 }
e0298536
JP
1531 clear_bit(FD_VERIFY_BIT, &DRS->flags);
1532 clear_bit(FD_NEED_TWADDLE_BIT, &DRS->flags);
87f530d8
JP
1533 debug_dcl(DP->flags,
1534 "checking whether disk is write protected\n");
1535 debug_dcl(DP->flags, "wp=%x\n", ST3 & 0x40);
1da177e4 1536 if (!(ST3 & 0x40))
e0298536 1537 set_bit(FD_DISK_WRITABLE_BIT, &DRS->flags);
1da177e4 1538 else
e0298536 1539 clear_bit(FD_DISK_WRITABLE_BIT, &DRS->flags);
1da177e4
LT
1540 }
1541}
1542
1543static void seek_floppy(void)
1544{
1545 int track;
1546
1547 blind_seek = 0;
1548
ded2863d 1549 debug_dcl(DP->flags, "calling disk change from %s\n", __func__);
1da177e4 1550
e0298536 1551 if (!test_bit(FD_DISK_NEWCHANGE_BIT, &DRS->flags) &&
1da177e4
LT
1552 disk_change(current_drive) && (raw_cmd->flags & FD_RAW_NEED_DISK)) {
1553 /* the media changed flag should be cleared after the seek.
1554 * If it isn't, this means that there is really no disk in
1555 * the drive.
1556 */
e0298536 1557 set_bit(FD_DISK_CHANGED_BIT, &DRS->flags);
1da177e4
LT
1558 cont->done(0);
1559 cont->redo();
1560 return;
1561 }
1562 if (DRS->track <= NEED_1_RECAL) {
1563 recalibrate_floppy();
1564 return;
e0298536 1565 } else if (test_bit(FD_DISK_NEWCHANGE_BIT, &DRS->flags) &&
1da177e4
LT
1566 (raw_cmd->flags & FD_RAW_NEED_DISK) &&
1567 (DRS->track <= NO_TRACK || DRS->track == raw_cmd->track)) {
1568 /* we seek to clear the media-changed condition. Does anybody
1569 * know a more elegant way, which works on all drives? */
1570 if (raw_cmd->track)
1571 track = raw_cmd->track - 1;
1572 else {
1573 if (DP->flags & FD_SILENT_DCL_CLEAR) {
1574 set_dor(fdc, ~(0x10 << UNIT(current_drive)), 0);
1575 blind_seek = 1;
1576 raw_cmd->flags |= FD_RAW_NEED_SEEK;
1577 }
1578 track = 1;
1579 }
1580 } else {
1581 check_wp();
1582 if (raw_cmd->track != DRS->track &&
1583 (raw_cmd->flags & FD_RAW_NEED_SEEK))
1584 track = raw_cmd->track;
1585 else {
1586 setup_rw_floppy();
1587 return;
1588 }
1589 }
1590
1591 do_floppy = seek_interrupt;
1592 output_byte(FD_SEEK);
1593 output_byte(UNIT(current_drive));
2300f90e
JP
1594 if (output_byte(track) < 0) {
1595 reset_fdc();
1596 return;
1597 }
ded2863d 1598 debugt(__func__, "");
1da177e4
LT
1599}
1600
1601static void recal_interrupt(void)
1602{
ded2863d 1603 debugt(__func__, "");
1da177e4
LT
1604 if (inr != 2)
1605 FDCS->reset = 1;
1606 else if (ST0 & ST0_ECE) {
1607 switch (DRS->track) {
1608 case NEED_1_RECAL:
ded2863d 1609 debugt(__func__, "need 1 recal");
1da177e4
LT
1610 /* after a second recalibrate, we still haven't
1611 * reached track 0. Probably no drive. Raise an
1612 * error, as failing immediately might upset
1613 * computers possessed by the Devil :-) */
1614 cont->error();
1615 cont->redo();
1616 return;
1617 case NEED_2_RECAL:
ded2863d 1618 debugt(__func__, "need 2 recal");
1da177e4
LT
1619 /* If we already did a recalibrate,
1620 * and we are not at track 0, this
1621 * means we have moved. (The only way
1622 * not to move at recalibration is to
1623 * be already at track 0.) Clear the
1624 * new change flag */
87f530d8
JP
1625 debug_dcl(DP->flags,
1626 "clearing NEWCHANGE flag because of second recalibrate\n");
1da177e4 1627
e0298536 1628 clear_bit(FD_DISK_NEWCHANGE_BIT, &DRS->flags);
1da177e4
LT
1629 DRS->select_date = jiffies;
1630 /* fall through */
1631 default:
ded2863d 1632 debugt(__func__, "default");
1da177e4
LT
1633 /* Recalibrate moves the head by at
1634 * most 80 steps. If after one
1635 * recalibrate we don't have reached
1636 * track 0, this might mean that we
1637 * started beyond track 80. Try
1638 * again. */
1639 DRS->track = NEED_1_RECAL;
1640 break;
1641 }
1642 } else
1643 DRS->track = ST1;
1644 floppy_ready();
1645}
1646
1647static void print_result(char *message, int inr)
1648{
1649 int i;
1650
1651 DPRINT("%s ", message);
1652 if (inr >= 0)
1653 for (i = 0; i < inr; i++)
b46df356
JP
1654 pr_cont("repl[%d]=%x ", i, reply_buffer[i]);
1655 pr_cont("\n");
1da177e4
LT
1656}
1657
1658/* interrupt handler. Note that this can be called externally on the Sparc */
7d12e780 1659irqreturn_t floppy_interrupt(int irq, void *dev_id)
1da177e4 1660{
1da177e4
LT
1661 int do_print;
1662 unsigned long f;
06f748c4 1663 void (*handler)(void) = do_floppy;
1da177e4
LT
1664
1665 lasthandler = handler;
1666 interruptjiffies = jiffies;
1667
1668 f = claim_dma_lock();
1669 fd_disable_dma();
1670 release_dma_lock(f);
1671
1da177e4
LT
1672 do_floppy = NULL;
1673 if (fdc >= N_FDC || FDCS->address == -1) {
1674 /* we don't even know which FDC is the culprit */
b46df356
JP
1675 pr_info("DOR0=%x\n", fdc_state[0].dor);
1676 pr_info("floppy interrupt on bizarre fdc %d\n", fdc);
1ebddd85 1677 pr_info("handler=%pf\n", handler);
275176bc 1678 is_alive(__func__, "bizarre fdc");
1da177e4
LT
1679 return IRQ_NONE;
1680 }
1681
1682 FDCS->reset = 0;
1683 /* We have to clear the reset flag here, because apparently on boxes
1684 * with level triggered interrupts (PS/2, Sparc, ...), it is needed to
1685 * emit SENSEI's to clear the interrupt line. And FDCS->reset blocks the
1686 * emission of the SENSEI's.
1687 * It is OK to emit floppy commands because we are in an interrupt
1688 * handler here, and thus we have to fear no interference of other
1689 * activity.
1690 */
1691
29f1c784 1692 do_print = !handler && print_unex && initialized;
1da177e4
LT
1693
1694 inr = result();
1695 if (do_print)
1696 print_result("unexpected interrupt", inr);
1697 if (inr == 0) {
1698 int max_sensei = 4;
1699 do {
1700 output_byte(FD_SENSEI);
1701 inr = result();
1702 if (do_print)
1703 print_result("sensei", inr);
1704 max_sensei--;
c529730a
JP
1705 } while ((ST0 & 0x83) != UNIT(current_drive) &&
1706 inr == 2 && max_sensei);
1da177e4
LT
1707 }
1708 if (!handler) {
1709 FDCS->reset = 1;
1710 return IRQ_NONE;
1711 }
1712 schedule_bh(handler);
275176bc 1713 is_alive(__func__, "normal interrupt end");
1da177e4
LT
1714
1715 /* FIXME! Was it really for us? */
1716 return IRQ_HANDLED;
1717}
1718
1719static void recalibrate_floppy(void)
1720{
ded2863d 1721 debugt(__func__, "");
1da177e4
LT
1722 do_floppy = recal_interrupt;
1723 output_byte(FD_RECALIBRATE);
15b2630c 1724 if (output_byte(UNIT(current_drive)) < 0)
2300f90e 1725 reset_fdc();
1da177e4
LT
1726}
1727
1728/*
1729 * Must do 4 FD_SENSEIs after reset because of ``drive polling''.
1730 */
1731static void reset_interrupt(void)
1732{
ded2863d 1733 debugt(__func__, "");
1da177e4
LT
1734 result(); /* get the status ready for set_fdc */
1735 if (FDCS->reset) {
1ebddd85 1736 pr_info("reset set in interrupt, calling %pf\n", cont->error);
1da177e4
LT
1737 cont->error(); /* a reset just after a reset. BAD! */
1738 }
1739 cont->redo();
1740}
1741
1742/*
1743 * reset is done by pulling bit 2 of DOR low for a while (old FDCs),
1744 * or by setting the self clearing bit 7 of STATUS (newer FDCs)
1745 */
1746static void reset_fdc(void)
1747{
1748 unsigned long flags;
1749
1750 do_floppy = reset_interrupt;
1751 FDCS->reset = 0;
1752 reset_fdc_info(0);
1753
1754 /* Pseudo-DMA may intercept 'reset finished' interrupt. */
1755 /* Irrelevant for systems with true DMA (i386). */
1756
1757 flags = claim_dma_lock();
1758 fd_disable_dma();
1759 release_dma_lock(flags);
1760
1761 if (FDCS->version >= FDC_82072A)
1762 fd_outb(0x80 | (FDCS->dtr & 3), FD_STATUS);
1763 else {
1764 fd_outb(FDCS->dor & ~0x04, FD_DOR);
1765 udelay(FD_RESET_DELAY);
1766 fd_outb(FDCS->dor, FD_DOR);
1767 }
1768}
1769
1770static void show_floppy(void)
1771{
1772 int i;
1773
b46df356
JP
1774 pr_info("\n");
1775 pr_info("floppy driver state\n");
1776 pr_info("-------------------\n");
1ebddd85 1777 pr_info("now=%lu last interrupt=%lu diff=%lu last called handler=%pf\n",
b46df356
JP
1778 jiffies, interruptjiffies, jiffies - interruptjiffies,
1779 lasthandler);
1da177e4 1780
b46df356
JP
1781 pr_info("timeout_message=%s\n", timeout_message);
1782 pr_info("last output bytes:\n");
1da177e4 1783 for (i = 0; i < OLOGSIZE; i++)
b46df356
JP
1784 pr_info("%2x %2x %lu\n",
1785 output_log[(i + output_log_pos) % OLOGSIZE].data,
1786 output_log[(i + output_log_pos) % OLOGSIZE].status,
1787 output_log[(i + output_log_pos) % OLOGSIZE].jiffies);
1788 pr_info("last result at %lu\n", resultjiffies);
1789 pr_info("last redo_fd_request at %lu\n", lastredo);
1790 print_hex_dump(KERN_INFO, "", DUMP_PREFIX_NONE, 16, 1,
1791 reply_buffer, resultsize, true);
1da177e4 1792
b46df356
JP
1793 pr_info("status=%x\n", fd_inb(FD_STATUS));
1794 pr_info("fdc_busy=%lu\n", fdc_busy);
1da177e4 1795 if (do_floppy)
1ebddd85 1796 pr_info("do_floppy=%pf\n", do_floppy);
365970a1 1797 if (work_pending(&floppy_work))
1ebddd85 1798 pr_info("floppy_work.func=%pf\n", floppy_work.func);
070ad7e7
JK
1799 if (delayed_work_pending(&fd_timer))
1800 pr_info("delayed work.function=%p expires=%ld\n",
1801 fd_timer.work.func,
1802 fd_timer.timer.expires - jiffies);
1803 if (delayed_work_pending(&fd_timeout))
1804 pr_info("timer_function=%p expires=%ld\n",
1805 fd_timeout.work.func,
1806 fd_timeout.timer.expires - jiffies);
1807
b46df356
JP
1808 pr_info("cont=%p\n", cont);
1809 pr_info("current_req=%p\n", current_req);
1810 pr_info("command_status=%d\n", command_status);
1811 pr_info("\n");
1da177e4
LT
1812}
1813
070ad7e7 1814static void floppy_shutdown(struct work_struct *arg)
1da177e4
LT
1815{
1816 unsigned long flags;
1817
29f1c784 1818 if (initialized)
1da177e4
LT
1819 show_floppy();
1820 cancel_activity();
1821
1da177e4
LT
1822 flags = claim_dma_lock();
1823 fd_disable_dma();
1824 release_dma_lock(flags);
1825
1826 /* avoid dma going to a random drive after shutdown */
1827
29f1c784 1828 if (initialized)
1da177e4
LT
1829 DPRINT("floppy timeout called\n");
1830 FDCS->reset = 1;
1831 if (cont) {
1832 cont->done(0);
1833 cont->redo(); /* this will recall reset when needed */
1834 } else {
b46df356 1835 pr_info("no cont in shutdown!\n");
1da177e4
LT
1836 process_fd_request();
1837 }
275176bc 1838 is_alive(__func__, "");
1da177e4
LT
1839}
1840
1da177e4 1841/* start motor, check media-changed condition and write protection */
06f748c4 1842static int start_motor(void (*function)(void))
1da177e4 1843{
06f748c4
JJ
1844 int mask;
1845 int data;
1da177e4
LT
1846
1847 mask = 0xfc;
1848 data = UNIT(current_drive);
1849 if (!(raw_cmd->flags & FD_RAW_NO_MOTOR)) {
1850 if (!(FDCS->dor & (0x10 << UNIT(current_drive)))) {
1851 set_debugt();
1852 /* no read since this drive is running */
1853 DRS->first_read_date = 0;
1854 /* note motor start time if motor is not yet running */
1855 DRS->spinup_date = jiffies;
1856 data |= (0x10 << UNIT(current_drive));
1857 }
1858 } else if (FDCS->dor & (0x10 << UNIT(current_drive)))
1859 mask &= ~(0x10 << UNIT(current_drive));
1860
1861 /* starts motor and selects floppy */
1862 del_timer(motor_off_timer + current_drive);
1863 set_dor(fdc, mask, data);
1864
1865 /* wait_for_completion also schedules reset if needed. */
d7b2b2ec 1866 return fd_wait_for_completion(DRS->select_date + DP->select_delay,
070ad7e7 1867 (work_func_t)function);
1da177e4
LT
1868}
1869
1870static void floppy_ready(void)
1871{
045f9836
JP
1872 if (FDCS->reset) {
1873 reset_fdc();
1874 return;
1875 }
1da177e4
LT
1876 if (start_motor(floppy_ready))
1877 return;
1878 if (fdc_dtr())
1879 return;
1880
87f530d8 1881 debug_dcl(DP->flags, "calling disk change from floppy_ready\n");
1da177e4
LT
1882 if (!(raw_cmd->flags & FD_RAW_NO_MOTOR) &&
1883 disk_change(current_drive) && !DP->select_delay)
bb57f0c6
JP
1884 twaddle(); /* this clears the dcl on certain
1885 * drive/controller combinations */
1da177e4
LT
1886
1887#ifdef fd_chose_dma_mode
1888 if ((raw_cmd->flags & FD_RAW_READ) || (raw_cmd->flags & FD_RAW_WRITE)) {
1889 unsigned long flags = claim_dma_lock();
1890 fd_chose_dma_mode(raw_cmd->kernel_data, raw_cmd->length);
1891 release_dma_lock(flags);
1892 }
1893#endif
1894
1895 if (raw_cmd->flags & (FD_RAW_NEED_SEEK | FD_RAW_NEED_DISK)) {
1896 perpendicular_mode();
1897 fdc_specify(); /* must be done here because of hut, hlt ... */
1898 seek_floppy();
1899 } else {
1900 if ((raw_cmd->flags & FD_RAW_READ) ||
1901 (raw_cmd->flags & FD_RAW_WRITE))
1902 fdc_specify();
1903 setup_rw_floppy();
1904 }
1905}
1906
1907static void floppy_start(void)
1908{
73507e6c 1909 reschedule_timeout(current_reqD, "floppy start");
1da177e4
LT
1910
1911 scandrives();
87f530d8 1912 debug_dcl(DP->flags, "setting NEWCHANGE in floppy_start\n");
e0298536 1913 set_bit(FD_DISK_NEWCHANGE_BIT, &DRS->flags);
1da177e4
LT
1914 floppy_ready();
1915}
1916
1917/*
1918 * ========================================================================
1919 * here ends the bottom half. Exported routines are:
1920 * floppy_start, floppy_off, floppy_ready, lock_fdc, unlock_fdc, set_fdc,
1921 * start_motor, reset_fdc, reset_fdc_info, interpret_errors.
1922 * Initialization also uses output_byte, result, set_dor, floppy_interrupt
1923 * and set_dor.
1924 * ========================================================================
1925 */
1926/*
1927 * General purpose continuations.
1928 * ==============================
1929 */
1930
1931static void do_wakeup(void)
1932{
73507e6c 1933 reschedule_timeout(MAXTIMEOUT, "do wakeup");
1da177e4
LT
1934 cont = NULL;
1935 command_status += 2;
1936 wake_up(&command_done);
1937}
1938
3b06c21e 1939static const struct cont_t wakeup_cont = {
1da177e4
LT
1940 .interrupt = empty,
1941 .redo = do_wakeup,
1942 .error = empty,
06f748c4 1943 .done = (done_f)empty
1da177e4
LT
1944};
1945
3b06c21e 1946static const struct cont_t intr_cont = {
1da177e4
LT
1947 .interrupt = empty,
1948 .redo = process_fd_request,
1949 .error = empty,
06f748c4 1950 .done = (done_f)empty
1da177e4
LT
1951};
1952
74f63f46 1953static int wait_til_done(void (*handler)(void), bool interruptible)
1da177e4
LT
1954{
1955 int ret;
1956
1957 schedule_bh(handler);
1958
b862f26f
SH
1959 if (interruptible)
1960 wait_event_interruptible(command_done, command_status >= 2);
1961 else
1962 wait_event(command_done, command_status >= 2);
1da177e4
LT
1963
1964 if (command_status < 2) {
1965 cancel_activity();
1966 cont = &intr_cont;
1967 reset_fdc();
1968 return -EINTR;
1969 }
1970
1971 if (FDCS->reset)
1972 command_status = FD_COMMAND_ERROR;
1973 if (command_status == FD_COMMAND_OKAY)
1974 ret = 0;
1975 else
1976 ret = -EIO;
1977 command_status = FD_COMMAND_NONE;
1978 return ret;
1979}
1980
1981static void generic_done(int result)
1982{
1983 command_status = result;
1984 cont = &wakeup_cont;
1985}
1986
1987static void generic_success(void)
1988{
1989 cont->done(1);
1990}
1991
1992static void generic_failure(void)
1993{
1994 cont->done(0);
1995}
1996
1997static void success_and_wakeup(void)
1998{
1999 generic_success();
2000 cont->redo();
2001}
2002
2003/*
2004 * formatting and rw support.
2005 * ==========================
2006 */
2007
2008static int next_valid_format(void)
2009{
2010 int probed_format;
2011
2012 probed_format = DRS->probed_format;
2013 while (1) {
2014 if (probed_format >= 8 || !DP->autodetect[probed_format]) {
2015 DRS->probed_format = 0;
2016 return 1;
2017 }
2018 if (floppy_type[DP->autodetect[probed_format]].sect) {
2019 DRS->probed_format = probed_format;
2020 return 0;
2021 }
2022 probed_format++;
2023 }
2024}
2025
2026static void bad_flp_intr(void)
2027{
2028 int err_count;
2029
2030 if (probing) {
2031 DRS->probed_format++;
2032 if (!next_valid_format())
2033 return;
2034 }
2035 err_count = ++(*errors);
2036 INFBOUND(DRWE->badness, err_count);
2037 if (err_count > DP->max_errors.abort)
2038 cont->done(0);
2039 if (err_count > DP->max_errors.reset)
2040 FDCS->reset = 1;
2041 else if (err_count > DP->max_errors.recal)
2042 DRS->track = NEED_2_RECAL;
2043}
2044
2045static void set_floppy(int drive)
2046{
2047 int type = ITYPE(UDRS->fd_device);
06f748c4 2048
1da177e4
LT
2049 if (type)
2050 _floppy = floppy_type + type;
2051 else
2052 _floppy = current_type[drive];
2053}
2054
2055/*
2056 * formatting support.
2057 * ===================
2058 */
2059static void format_interrupt(void)
2060{
2061 switch (interpret_errors()) {
2062 case 1:
2063 cont->error();
2064 case 2:
2065 break;
2066 case 0:
2067 cont->done(1);
2068 }
2069 cont->redo();
2070}
2071
48c8cee6 2072#define FM_MODE(x, y) ((y) & ~(((x)->rate & 0x80) >> 1))
1da177e4 2073#define CT(x) ((x) | 0xc0)
48c8cee6 2074
1da177e4
LT
2075static void setup_format_params(int track)
2076{
06f748c4
JJ
2077 int n;
2078 int il;
2079 int count;
2080 int head_shift;
2081 int track_shift;
1da177e4
LT
2082 struct fparm {
2083 unsigned char track, head, sect, size;
2084 } *here = (struct fparm *)floppy_track_buffer;
1da177e4
LT
2085
2086 raw_cmd = &default_raw_cmd;
2087 raw_cmd->track = track;
2088
48c8cee6
JP
2089 raw_cmd->flags = (FD_RAW_WRITE | FD_RAW_INTR | FD_RAW_SPIN |
2090 FD_RAW_NEED_DISK | FD_RAW_NEED_SEEK);
1da177e4
LT
2091 raw_cmd->rate = _floppy->rate & 0x43;
2092 raw_cmd->cmd_count = NR_F;
2093 COMMAND = FM_MODE(_floppy, FD_FORMAT);
2094 DR_SELECT = UNIT(current_drive) + PH_HEAD(_floppy, format_req.head);
2095 F_SIZECODE = FD_SIZECODE(_floppy);
2096 F_SECT_PER_TRACK = _floppy->sect << 2 >> F_SIZECODE;
2097 F_GAP = _floppy->fmt_gap;
2098 F_FILL = FD_FILL_BYTE;
2099
2100 raw_cmd->kernel_data = floppy_track_buffer;
2101 raw_cmd->length = 4 * F_SECT_PER_TRACK;
2102
2103 /* allow for about 30ms for data transport per track */
2104 head_shift = (F_SECT_PER_TRACK + 5) / 6;
2105
2106 /* a ``cylinder'' is two tracks plus a little stepping time */
2107 track_shift = 2 * head_shift + 3;
2108
2109 /* position of logical sector 1 on this track */
2110 n = (track_shift * format_req.track + head_shift * format_req.head)
2111 % F_SECT_PER_TRACK;
2112
2113 /* determine interleave */
2114 il = 1;
2115 if (_floppy->fmt_gap < 0x22)
2116 il++;
2117
2118 /* initialize field */
2119 for (count = 0; count < F_SECT_PER_TRACK; ++count) {
2120 here[count].track = format_req.track;
2121 here[count].head = format_req.head;
2122 here[count].sect = 0;
2123 here[count].size = F_SIZECODE;
2124 }
2125 /* place logical sectors */
2126 for (count = 1; count <= F_SECT_PER_TRACK; ++count) {
2127 here[n].sect = count;
2128 n = (n + il) % F_SECT_PER_TRACK;
2129 if (here[n].sect) { /* sector busy, find next free sector */
2130 ++n;
2131 if (n >= F_SECT_PER_TRACK) {
2132 n -= F_SECT_PER_TRACK;
2133 while (here[n].sect)
2134 ++n;
2135 }
2136 }
2137 }
9e49184c 2138 if (_floppy->stretch & FD_SECTBASEMASK) {
1da177e4 2139 for (count = 0; count < F_SECT_PER_TRACK; count++)
9e49184c 2140 here[count].sect += FD_SECTBASE(_floppy) - 1;
1da177e4
LT
2141 }
2142}
2143
2144static void redo_format(void)
2145{
2146 buffer_track = -1;
2147 setup_format_params(format_req.track << STRETCH(_floppy));
2148 floppy_start();
ded2863d 2149 debugt(__func__, "queue format request");
1da177e4
LT
2150}
2151
3b06c21e 2152static const struct cont_t format_cont = {
1da177e4
LT
2153 .interrupt = format_interrupt,
2154 .redo = redo_format,
2155 .error = bad_flp_intr,
2156 .done = generic_done
2157};
2158
2159static int do_format(int drive, struct format_descr *tmp_format_req)
2160{
2161 int ret;
2162
74f63f46 2163 if (lock_fdc(drive, true))
52a0d61f
JP
2164 return -EINTR;
2165
1da177e4
LT
2166 set_floppy(drive);
2167 if (!_floppy ||
2168 _floppy->track > DP->tracks ||
2169 tmp_format_req->track >= _floppy->track ||
2170 tmp_format_req->head >= _floppy->head ||
2171 (_floppy->sect << 2) % (1 << FD_SIZECODE(_floppy)) ||
2172 !_floppy->fmt_gap) {
2173 process_fd_request();
2174 return -EINVAL;
2175 }
2176 format_req = *tmp_format_req;
2177 format_errors = 0;
2178 cont = &format_cont;
2179 errors = &format_errors;
74f63f46 2180 ret = wait_til_done(redo_format, true);
55eee80c
JP
2181 if (ret == -EINTR)
2182 return -EINTR;
1da177e4
LT
2183 process_fd_request();
2184 return ret;
2185}
2186
2187/*
2188 * Buffer read/write and support
2189 * =============================
2190 */
2191
1c5093ba 2192static void floppy_end_request(struct request *req, int error)
1da177e4
LT
2193{
2194 unsigned int nr_sectors = current_count_sectors;
1c5093ba 2195 unsigned int drive = (unsigned long)req->rq_disk->private_data;
1da177e4
LT
2196
2197 /* current_count_sectors can be zero if transfer failed */
1c5093ba 2198 if (error)
83096ebf 2199 nr_sectors = blk_rq_cur_sectors(req);
1c5093ba 2200 if (__blk_end_request(req, error, nr_sectors << 9))
1da177e4 2201 return;
1da177e4
LT
2202
2203 /* We're done with the request */
1c5093ba 2204 floppy_off(drive);
1da177e4
LT
2205 current_req = NULL;
2206}
2207
2208/* new request_done. Can handle physical sectors which are smaller than a
2209 * logical buffer */
2210static void request_done(int uptodate)
2211{
1da177e4 2212 struct request *req = current_req;
48821184 2213 struct request_queue *q;
1da177e4
LT
2214 unsigned long flags;
2215 int block;
73507e6c 2216 char msg[sizeof("request done ") + sizeof(int) * 3];
1da177e4
LT
2217
2218 probing = 0;
73507e6c
JP
2219 snprintf(msg, sizeof(msg), "request done %d", uptodate);
2220 reschedule_timeout(MAXTIMEOUT, msg);
1da177e4
LT
2221
2222 if (!req) {
b46df356 2223 pr_info("floppy.c: no request in request_done\n");
1da177e4
LT
2224 return;
2225 }
2226
48821184
JA
2227 q = req->q;
2228
1da177e4
LT
2229 if (uptodate) {
2230 /* maintain values for invalidation on geometry
2231 * change */
83096ebf 2232 block = current_count_sectors + blk_rq_pos(req);
1da177e4
LT
2233 INFBOUND(DRS->maxblock, block);
2234 if (block > _floppy->sect)
2235 DRS->maxtrack = 1;
2236
2237 /* unlock chained buffers */
2238 spin_lock_irqsave(q->queue_lock, flags);
1c5093ba 2239 floppy_end_request(req, 0);
1da177e4
LT
2240 spin_unlock_irqrestore(q->queue_lock, flags);
2241 } else {
2242 if (rq_data_dir(req) == WRITE) {
2243 /* record write error information */
2244 DRWE->write_errors++;
2245 if (DRWE->write_errors == 1) {
83096ebf 2246 DRWE->first_error_sector = blk_rq_pos(req);
1da177e4
LT
2247 DRWE->first_error_generation = DRS->generation;
2248 }
83096ebf 2249 DRWE->last_error_sector = blk_rq_pos(req);
1da177e4
LT
2250 DRWE->last_error_generation = DRS->generation;
2251 }
2252 spin_lock_irqsave(q->queue_lock, flags);
1c5093ba 2253 floppy_end_request(req, -EIO);
1da177e4
LT
2254 spin_unlock_irqrestore(q->queue_lock, flags);
2255 }
2256}
2257
2258/* Interrupt handler evaluating the result of the r/w operation */
2259static void rw_interrupt(void)
2260{
06f748c4
JJ
2261 int eoc;
2262 int ssize;
2263 int heads;
2264 int nr_sectors;
1da177e4
LT
2265
2266 if (R_HEAD >= 2) {
2267 /* some Toshiba floppy controllers occasionnally seem to
2268 * return bogus interrupts after read/write operations, which
2269 * can be recognized by a bad head number (>= 2) */
2270 return;
2271 }
2272
2273 if (!DRS->first_read_date)
2274 DRS->first_read_date = jiffies;
2275
2276 nr_sectors = 0;
712e1de4 2277 ssize = DIV_ROUND_UP(1 << SIZECODE, 4);
1da177e4
LT
2278
2279 if (ST1 & ST1_EOC)
2280 eoc = 1;
2281 else
2282 eoc = 0;
2283
2284 if (COMMAND & 0x80)
2285 heads = 2;
2286 else
2287 heads = 1;
2288
2289 nr_sectors = (((R_TRACK - TRACK) * heads +
2290 R_HEAD - HEAD) * SECT_PER_TRACK +
2291 R_SECTOR - SECTOR + eoc) << SIZECODE >> 2;
2292
1da177e4 2293 if (nr_sectors / ssize >
061837bc 2294 DIV_ROUND_UP(in_sector_offset + current_count_sectors, ssize)) {
1da177e4
LT
2295 DPRINT("long rw: %x instead of %lx\n",
2296 nr_sectors, current_count_sectors);
b46df356
JP
2297 pr_info("rs=%d s=%d\n", R_SECTOR, SECTOR);
2298 pr_info("rh=%d h=%d\n", R_HEAD, HEAD);
2299 pr_info("rt=%d t=%d\n", R_TRACK, TRACK);
2300 pr_info("heads=%d eoc=%d\n", heads, eoc);
2301 pr_info("spt=%d st=%d ss=%d\n",
2302 SECT_PER_TRACK, fsector_t, ssize);
2303 pr_info("in_sector_offset=%d\n", in_sector_offset);
1da177e4 2304 }
1da177e4
LT
2305
2306 nr_sectors -= in_sector_offset;
2307 INFBOUND(nr_sectors, 0);
2308 SUPBOUND(current_count_sectors, nr_sectors);
2309
2310 switch (interpret_errors()) {
2311 case 2:
2312 cont->redo();
2313 return;
2314 case 1:
2315 if (!current_count_sectors) {
2316 cont->error();
2317 cont->redo();
2318 return;
2319 }
2320 break;
2321 case 0:
2322 if (!current_count_sectors) {
2323 cont->redo();
2324 return;
2325 }
2326 current_type[current_drive] = _floppy;
2327 floppy_sizes[TOMINOR(current_drive)] = _floppy->size;
2328 break;
2329 }
2330
2331 if (probing) {
2332 if (DP->flags & FTD_MSG)
2333 DPRINT("Auto-detected floppy type %s in fd%d\n",
2334 _floppy->name, current_drive);
2335 current_type[current_drive] = _floppy;
2336 floppy_sizes[TOMINOR(current_drive)] = _floppy->size;
2337 probing = 0;
2338 }
2339
2340 if (CT(COMMAND) != FD_READ ||
2341 raw_cmd->kernel_data == current_req->buffer) {
2342 /* transfer directly from buffer */
2343 cont->done(1);
2344 } else if (CT(COMMAND) == FD_READ) {
2345 buffer_track = raw_cmd->track;
2346 buffer_drive = current_drive;
2347 INFBOUND(buffer_max, nr_sectors + fsector_t);
2348 }
2349 cont->redo();
2350}
2351
2352/* Compute maximal contiguous buffer size. */
2353static int buffer_chain_size(void)
2354{
1da177e4 2355 struct bio_vec *bv;
5705f702
N
2356 int size;
2357 struct req_iterator iter;
1da177e4
LT
2358 char *base;
2359
2360 base = bio_data(current_req->bio);
2361 size = 0;
2362
5705f702
N
2363 rq_for_each_segment(bv, current_req, iter) {
2364 if (page_address(bv->bv_page) + bv->bv_offset != base + size)
2365 break;
1da177e4 2366
5705f702 2367 size += bv->bv_len;
1da177e4
LT
2368 }
2369
2370 return size >> 9;
2371}
2372
2373/* Compute the maximal transfer size */
2374static int transfer_size(int ssize, int max_sector, int max_size)
2375{
2376 SUPBOUND(max_sector, fsector_t + max_size);
2377
2378 /* alignment */
2379 max_sector -= (max_sector % _floppy->sect) % ssize;
2380
2381 /* transfer size, beginning not aligned */
2382 current_count_sectors = max_sector - fsector_t;
2383
2384 return max_sector;
2385}
2386
2387/*
2388 * Move data from/to the track buffer to/from the buffer cache.
2389 */
2390static void copy_buffer(int ssize, int max_sector, int max_sector_2)
2391{
2392 int remaining; /* number of transferred 512-byte sectors */
2393 struct bio_vec *bv;
06f748c4
JJ
2394 char *buffer;
2395 char *dma_buffer;
5705f702
N
2396 int size;
2397 struct req_iterator iter;
1da177e4
LT
2398
2399 max_sector = transfer_size(ssize,
2400 min(max_sector, max_sector_2),
83096ebf 2401 blk_rq_sectors(current_req));
1da177e4
LT
2402
2403 if (current_count_sectors <= 0 && CT(COMMAND) == FD_WRITE &&
83096ebf 2404 buffer_max > fsector_t + blk_rq_sectors(current_req))
1da177e4 2405 current_count_sectors = min_t(int, buffer_max - fsector_t,
83096ebf 2406 blk_rq_sectors(current_req));
1da177e4
LT
2407
2408 remaining = current_count_sectors << 9;
1011c1b9 2409 if (remaining > blk_rq_bytes(current_req) && CT(COMMAND) == FD_WRITE) {
1da177e4 2410 DPRINT("in copy buffer\n");
b46df356
JP
2411 pr_info("current_count_sectors=%ld\n", current_count_sectors);
2412 pr_info("remaining=%d\n", remaining >> 9);
2413 pr_info("current_req->nr_sectors=%u\n",
2414 blk_rq_sectors(current_req));
2415 pr_info("current_req->current_nr_sectors=%u\n",
2416 blk_rq_cur_sectors(current_req));
2417 pr_info("max_sector=%d\n", max_sector);
2418 pr_info("ssize=%d\n", ssize);
1da177e4 2419 }
1da177e4
LT
2420
2421 buffer_max = max(max_sector, buffer_max);
2422
2423 dma_buffer = floppy_track_buffer + ((fsector_t - buffer_min) << 9);
2424
1011c1b9 2425 size = blk_rq_cur_bytes(current_req);
1da177e4 2426
5705f702
N
2427 rq_for_each_segment(bv, current_req, iter) {
2428 if (!remaining)
2429 break;
1da177e4 2430
5705f702
N
2431 size = bv->bv_len;
2432 SUPBOUND(size, remaining);
1da177e4 2433
5705f702 2434 buffer = page_address(bv->bv_page) + bv->bv_offset;
5705f702
N
2435 if (dma_buffer + size >
2436 floppy_track_buffer + (max_buffer_sectors << 10) ||
2437 dma_buffer < floppy_track_buffer) {
2438 DPRINT("buffer overrun in copy buffer %d\n",
b46df356
JP
2439 (int)((floppy_track_buffer - dma_buffer) >> 9));
2440 pr_info("fsector_t=%d buffer_min=%d\n",
2441 fsector_t, buffer_min);
2442 pr_info("current_count_sectors=%ld\n",
2443 current_count_sectors);
1da177e4 2444 if (CT(COMMAND) == FD_READ)
b46df356 2445 pr_info("read\n");
5705f702 2446 if (CT(COMMAND) == FD_WRITE)
b46df356 2447 pr_info("write\n");
5705f702 2448 break;
1da177e4 2449 }
5705f702
N
2450 if (((unsigned long)buffer) % 512)
2451 DPRINT("%p buffer not aligned\n", buffer);
1a23d133 2452
5705f702
N
2453 if (CT(COMMAND) == FD_READ)
2454 memcpy(buffer, dma_buffer, size);
2455 else
2456 memcpy(dma_buffer, buffer, size);
2457
2458 remaining -= size;
2459 dma_buffer += size;
1da177e4 2460 }
1da177e4
LT
2461 if (remaining) {
2462 if (remaining > 0)
2463 max_sector -= remaining >> 9;
2464 DPRINT("weirdness: remaining %d\n", remaining >> 9);
2465 }
1da177e4
LT
2466}
2467
1da177e4
LT
2468/* work around a bug in pseudo DMA
2469 * (on some FDCs) pseudo DMA does not stop when the CPU stops
2470 * sending data. Hence we need a different way to signal the
2471 * transfer length: We use SECT_PER_TRACK. Unfortunately, this
2472 * does not work with MT, hence we can only transfer one head at
2473 * a time
2474 */
2475static void virtualdmabug_workaround(void)
2476{
06f748c4
JJ
2477 int hard_sectors;
2478 int end_sector;
1da177e4
LT
2479
2480 if (CT(COMMAND) == FD_WRITE) {
2481 COMMAND &= ~0x80; /* switch off multiple track mode */
2482
2483 hard_sectors = raw_cmd->length >> (7 + SIZECODE);
2484 end_sector = SECTOR + hard_sectors - 1;
1da177e4 2485 if (end_sector > SECT_PER_TRACK) {
b46df356
JP
2486 pr_info("too many sectors %d > %d\n",
2487 end_sector, SECT_PER_TRACK);
1da177e4
LT
2488 return;
2489 }
48c8cee6
JP
2490 SECT_PER_TRACK = end_sector;
2491 /* make sure SECT_PER_TRACK
2492 * points to end of transfer */
1da177e4
LT
2493 }
2494}
2495
2496/*
2497 * Formulate a read/write request.
2498 * this routine decides where to load the data (directly to buffer, or to
2499 * tmp floppy area), how much data to load (the size of the buffer, the whole
2500 * track, or a single sector)
2501 * All floppy_track_buffer handling goes in here. If we ever add track buffer
2502 * allocation on the fly, it should be done here. No other part should need
2503 * modification.
2504 */
2505
2506static int make_raw_rw_request(void)
2507{
2508 int aligned_sector_t;
06f748c4
JJ
2509 int max_sector;
2510 int max_size;
2511 int tracksize;
2512 int ssize;
1da177e4 2513
01b6b67e 2514 if (WARN(max_buffer_sectors == 0, "VFS: Block I/O scheduled on unopened device\n"))
1da177e4 2515 return 0;
1da177e4
LT
2516
2517 set_fdc((long)current_req->rq_disk->private_data);
2518
2519 raw_cmd = &default_raw_cmd;
2fb2ca6f 2520 raw_cmd->flags = FD_RAW_SPIN | FD_RAW_NEED_DISK | FD_RAW_NEED_SEEK;
1da177e4
LT
2521 raw_cmd->cmd_count = NR_RW;
2522 if (rq_data_dir(current_req) == READ) {
2523 raw_cmd->flags |= FD_RAW_READ;
2524 COMMAND = FM_MODE(_floppy, FD_READ);
2525 } else if (rq_data_dir(current_req) == WRITE) {
2526 raw_cmd->flags |= FD_RAW_WRITE;
2527 COMMAND = FM_MODE(_floppy, FD_WRITE);
2528 } else {
275176bc 2529 DPRINT("%s: unknown command\n", __func__);
1da177e4
LT
2530 return 0;
2531 }
2532
2533 max_sector = _floppy->sect * _floppy->head;
2534
83096ebf
TH
2535 TRACK = (int)blk_rq_pos(current_req) / max_sector;
2536 fsector_t = (int)blk_rq_pos(current_req) % max_sector;
1da177e4 2537 if (_floppy->track && TRACK >= _floppy->track) {
83096ebf 2538 if (blk_rq_cur_sectors(current_req) & 1) {
1da177e4
LT
2539 current_count_sectors = 1;
2540 return 1;
2541 } else
2542 return 0;
2543 }
2544 HEAD = fsector_t / _floppy->sect;
2545
9e49184c 2546 if (((_floppy->stretch & (FD_SWAPSIDES | FD_SECTBASEMASK)) ||
e0298536
JP
2547 test_bit(FD_NEED_TWADDLE_BIT, &DRS->flags)) &&
2548 fsector_t < _floppy->sect)
1da177e4
LT
2549 max_sector = _floppy->sect;
2550
2551 /* 2M disks have phantom sectors on the first track */
2552 if ((_floppy->rate & FD_2M) && (!TRACK) && (!HEAD)) {
2553 max_sector = 2 * _floppy->sect / 3;
2554 if (fsector_t >= max_sector) {
2555 current_count_sectors =
2556 min_t(int, _floppy->sect - fsector_t,
83096ebf 2557 blk_rq_sectors(current_req));
1da177e4
LT
2558 return 1;
2559 }
2560 SIZECODE = 2;
2561 } else
2562 SIZECODE = FD_SIZECODE(_floppy);
2563 raw_cmd->rate = _floppy->rate & 0x43;
2564 if ((_floppy->rate & FD_2M) && (TRACK || HEAD) && raw_cmd->rate == 2)
2565 raw_cmd->rate = 1;
2566
2567 if (SIZECODE)
2568 SIZECODE2 = 0xff;
2569 else
2570 SIZECODE2 = 0x80;
2571 raw_cmd->track = TRACK << STRETCH(_floppy);
2572 DR_SELECT = UNIT(current_drive) + PH_HEAD(_floppy, HEAD);
2573 GAP = _floppy->gap;
712e1de4 2574 ssize = DIV_ROUND_UP(1 << SIZECODE, 4);
1da177e4
LT
2575 SECT_PER_TRACK = _floppy->sect << 2 >> SIZECODE;
2576 SECTOR = ((fsector_t % _floppy->sect) << 2 >> SIZECODE) +
9e49184c 2577 FD_SECTBASE(_floppy);
1da177e4
LT
2578
2579 /* tracksize describes the size which can be filled up with sectors
2580 * of size ssize.
2581 */
2582 tracksize = _floppy->sect - _floppy->sect % ssize;
2583 if (tracksize < _floppy->sect) {
2584 SECT_PER_TRACK++;
2585 if (tracksize <= fsector_t % _floppy->sect)
2586 SECTOR--;
2587
2588 /* if we are beyond tracksize, fill up using smaller sectors */
2589 while (tracksize <= fsector_t % _floppy->sect) {
2590 while (tracksize + ssize > _floppy->sect) {
2591 SIZECODE--;
2592 ssize >>= 1;
2593 }
2594 SECTOR++;
2595 SECT_PER_TRACK++;
2596 tracksize += ssize;
2597 }
2598 max_sector = HEAD * _floppy->sect + tracksize;
2599 } else if (!TRACK && !HEAD && !(_floppy->rate & FD_2M) && probing) {
2600 max_sector = _floppy->sect;
2601 } else if (!HEAD && CT(COMMAND) == FD_WRITE) {
2602 /* for virtual DMA bug workaround */
2603 max_sector = _floppy->sect;
2604 }
2605
2606 in_sector_offset = (fsector_t % _floppy->sect) % ssize;
2607 aligned_sector_t = fsector_t - in_sector_offset;
83096ebf 2608 max_size = blk_rq_sectors(current_req);
1da177e4
LT
2609 if ((raw_cmd->track == buffer_track) &&
2610 (current_drive == buffer_drive) &&
2611 (fsector_t >= buffer_min) && (fsector_t < buffer_max)) {
2612 /* data already in track buffer */
2613 if (CT(COMMAND) == FD_READ) {
2614 copy_buffer(1, max_sector, buffer_max);
2615 return 1;
2616 }
83096ebf 2617 } else if (in_sector_offset || blk_rq_sectors(current_req) < ssize) {
1da177e4 2618 if (CT(COMMAND) == FD_WRITE) {
d7b2b2ec
JP
2619 unsigned int sectors;
2620
2621 sectors = fsector_t + blk_rq_sectors(current_req);
2622 if (sectors > ssize && sectors < ssize + ssize)
1da177e4
LT
2623 max_size = ssize + ssize;
2624 else
2625 max_size = ssize;
2626 }
2627 raw_cmd->flags &= ~FD_RAW_WRITE;
2628 raw_cmd->flags |= FD_RAW_READ;
2629 COMMAND = FM_MODE(_floppy, FD_READ);
2630 } else if ((unsigned long)current_req->buffer < MAX_DMA_ADDRESS) {
2631 unsigned long dma_limit;
2632 int direct, indirect;
2633
2634 indirect =
2635 transfer_size(ssize, max_sector,
2636 max_buffer_sectors * 2) - fsector_t;
2637
2638 /*
2639 * Do NOT use minimum() here---MAX_DMA_ADDRESS is 64 bits wide
2640 * on a 64 bit machine!
2641 */
2642 max_size = buffer_chain_size();
d7b2b2ec
JP
2643 dma_limit = (MAX_DMA_ADDRESS -
2644 ((unsigned long)current_req->buffer)) >> 9;
a81ee544 2645 if ((unsigned long)max_size > dma_limit)
1da177e4 2646 max_size = dma_limit;
1da177e4
LT
2647 /* 64 kb boundaries */
2648 if (CROSS_64KB(current_req->buffer, max_size << 9))
2649 max_size = (K_64 -
2650 ((unsigned long)current_req->buffer) %
2651 K_64) >> 9;
2652 direct = transfer_size(ssize, max_sector, max_size) - fsector_t;
2653 /*
2654 * We try to read tracks, but if we get too many errors, we
2655 * go back to reading just one sector at a time.
2656 *
2657 * This means we should be able to read a sector even if there
2658 * are other bad sectors on this track.
2659 */
2660 if (!direct ||
2661 (indirect * 2 > direct * 3 &&
d7b2b2ec
JP
2662 *errors < DP->max_errors.read_track &&
2663 ((!probing ||
2664 (DP->read_track & (1 << DRS->probed_format)))))) {
83096ebf 2665 max_size = blk_rq_sectors(current_req);
1da177e4
LT
2666 } else {
2667 raw_cmd->kernel_data = current_req->buffer;
2668 raw_cmd->length = current_count_sectors << 9;
2669 if (raw_cmd->length == 0) {
275176bc 2670 DPRINT("%s: zero dma transfer attempted\n", __func__);
d7b2b2ec 2671 DPRINT("indirect=%d direct=%d fsector_t=%d\n",
1da177e4
LT
2672 indirect, direct, fsector_t);
2673 return 0;
2674 }
1da177e4
LT
2675 virtualdmabug_workaround();
2676 return 2;
2677 }
2678 }
2679
2680 if (CT(COMMAND) == FD_READ)
2681 max_size = max_sector; /* unbounded */
2682
2683 /* claim buffer track if needed */
2684 if (buffer_track != raw_cmd->track || /* bad track */
2685 buffer_drive != current_drive || /* bad drive */
2686 fsector_t > buffer_max ||
2687 fsector_t < buffer_min ||
2688 ((CT(COMMAND) == FD_READ ||
83096ebf 2689 (!in_sector_offset && blk_rq_sectors(current_req) >= ssize)) &&
1da177e4 2690 max_sector > 2 * max_buffer_sectors + buffer_min &&
bb57f0c6
JP
2691 max_size + fsector_t > 2 * max_buffer_sectors + buffer_min)) {
2692 /* not enough space */
1da177e4
LT
2693 buffer_track = -1;
2694 buffer_drive = current_drive;
2695 buffer_max = buffer_min = aligned_sector_t;
2696 }
2697 raw_cmd->kernel_data = floppy_track_buffer +
bb57f0c6 2698 ((aligned_sector_t - buffer_min) << 9);
1da177e4
LT
2699
2700 if (CT(COMMAND) == FD_WRITE) {
2701 /* copy write buffer to track buffer.
2702 * if we get here, we know that the write
2703 * is either aligned or the data already in the buffer
2704 * (buffer will be overwritten) */
1da177e4
LT
2705 if (in_sector_offset && buffer_track == -1)
2706 DPRINT("internal error offset !=0 on write\n");
1da177e4
LT
2707 buffer_track = raw_cmd->track;
2708 buffer_drive = current_drive;
2709 copy_buffer(ssize, max_sector,
2710 2 * max_buffer_sectors + buffer_min);
2711 } else
2712 transfer_size(ssize, max_sector,
2713 2 * max_buffer_sectors + buffer_min -
2714 aligned_sector_t);
2715
2716 /* round up current_count_sectors to get dma xfer size */
2717 raw_cmd->length = in_sector_offset + current_count_sectors;
2718 raw_cmd->length = ((raw_cmd->length - 1) | (ssize - 1)) + 1;
2719 raw_cmd->length <<= 9;
1da177e4
LT
2720 if ((raw_cmd->length < current_count_sectors << 9) ||
2721 (raw_cmd->kernel_data != current_req->buffer &&
2722 CT(COMMAND) == FD_WRITE &&
2723 (aligned_sector_t + (raw_cmd->length >> 9) > buffer_max ||
2724 aligned_sector_t < buffer_min)) ||
2725 raw_cmd->length % (128 << SIZECODE) ||
2726 raw_cmd->length <= 0 || current_count_sectors <= 0) {
2727 DPRINT("fractionary current count b=%lx s=%lx\n",
2728 raw_cmd->length, current_count_sectors);
2729 if (raw_cmd->kernel_data != current_req->buffer)
b46df356
JP
2730 pr_info("addr=%d, length=%ld\n",
2731 (int)((raw_cmd->kernel_data -
2732 floppy_track_buffer) >> 9),
2733 current_count_sectors);
2734 pr_info("st=%d ast=%d mse=%d msi=%d\n",
2735 fsector_t, aligned_sector_t, max_sector, max_size);
2736 pr_info("ssize=%x SIZECODE=%d\n", ssize, SIZECODE);
2737 pr_info("command=%x SECTOR=%d HEAD=%d, TRACK=%d\n",
2738 COMMAND, SECTOR, HEAD, TRACK);
2739 pr_info("buffer drive=%d\n", buffer_drive);
2740 pr_info("buffer track=%d\n", buffer_track);
2741 pr_info("buffer_min=%d\n", buffer_min);
2742 pr_info("buffer_max=%d\n", buffer_max);
1da177e4
LT
2743 return 0;
2744 }
2745
2746 if (raw_cmd->kernel_data != current_req->buffer) {
2747 if (raw_cmd->kernel_data < floppy_track_buffer ||
2748 current_count_sectors < 0 ||
2749 raw_cmd->length < 0 ||
2750 raw_cmd->kernel_data + raw_cmd->length >
2751 floppy_track_buffer + (max_buffer_sectors << 10)) {
2752 DPRINT("buffer overrun in schedule dma\n");
b46df356
JP
2753 pr_info("fsector_t=%d buffer_min=%d current_count=%ld\n",
2754 fsector_t, buffer_min, raw_cmd->length >> 9);
2755 pr_info("current_count_sectors=%ld\n",
2756 current_count_sectors);
1da177e4 2757 if (CT(COMMAND) == FD_READ)
b46df356 2758 pr_info("read\n");
1da177e4 2759 if (CT(COMMAND) == FD_WRITE)
b46df356 2760 pr_info("write\n");
1da177e4
LT
2761 return 0;
2762 }
1011c1b9 2763 } else if (raw_cmd->length > blk_rq_bytes(current_req) ||
83096ebf 2764 current_count_sectors > blk_rq_sectors(current_req)) {
1da177e4
LT
2765 DPRINT("buffer overrun in direct transfer\n");
2766 return 0;
2767 } else if (raw_cmd->length < current_count_sectors << 9) {
2768 DPRINT("more sectors than bytes\n");
b46df356
JP
2769 pr_info("bytes=%ld\n", raw_cmd->length >> 9);
2770 pr_info("sectors=%ld\n", current_count_sectors);
1da177e4
LT
2771 }
2772 if (raw_cmd->length == 0) {
2773 DPRINT("zero dma transfer attempted from make_raw_request\n");
2774 return 0;
2775 }
1da177e4
LT
2776
2777 virtualdmabug_workaround();
2778 return 2;
2779}
2780
48821184
JA
2781/*
2782 * Round-robin between our available drives, doing one request from each
2783 */
2784static int set_next_request(void)
2785{
2786 struct request_queue *q;
2787 int old_pos = fdc_queue;
2788
2789 do {
2790 q = disks[fdc_queue]->queue;
2791 if (++fdc_queue == N_DRIVE)
2792 fdc_queue = 0;
2793 if (q) {
2794 current_req = blk_fetch_request(q);
2795 if (current_req)
2796 break;
2797 }
2798 } while (fdc_queue != old_pos);
2799
2800 return current_req != NULL;
2801}
2802
1da177e4
LT
2803static void redo_fd_request(void)
2804{
1da177e4
LT
2805 int drive;
2806 int tmp;
2807
2808 lastredo = jiffies;
2809 if (current_drive < N_DRIVE)
2810 floppy_off(current_drive);
2811
0da3132f
JP
2812do_request:
2813 if (!current_req) {
48821184
JA
2814 int pending;
2815
2816 spin_lock_irq(&floppy_lock);
2817 pending = set_next_request();
2818 spin_unlock_irq(&floppy_lock);
48821184 2819 if (!pending) {
0da3132f
JP
2820 do_floppy = NULL;
2821 unlock_fdc();
1da177e4 2822 return;
1da177e4 2823 }
0da3132f
JP
2824 }
2825 drive = (long)current_req->rq_disk->private_data;
2826 set_fdc(drive);
73507e6c 2827 reschedule_timeout(current_reqD, "redo fd request");
1da177e4 2828
0da3132f
JP
2829 set_floppy(drive);
2830 raw_cmd = &default_raw_cmd;
2831 raw_cmd->flags = 0;
2832 if (start_motor(redo_fd_request))
1da177e4 2833 return;
0da3132f
JP
2834
2835 disk_change(current_drive);
2836 if (test_bit(current_drive, &fake_change) ||
2837 test_bit(FD_DISK_CHANGED_BIT, &DRS->flags)) {
2838 DPRINT("disk absent or changed during operation\n");
2839 request_done(0);
2840 goto do_request;
2841 }
2842 if (!_floppy) { /* Autodetection */
2843 if (!probing) {
2844 DRS->probed_format = 0;
2845 if (next_valid_format()) {
2846 DPRINT("no autodetectable formats\n");
2847 _floppy = NULL;
2848 request_done(0);
2849 goto do_request;
2850 }
2851 }
2852 probing = 1;
2853 _floppy = floppy_type + DP->autodetect[DRS->probed_format];
2854 } else
2855 probing = 0;
2856 errors = &(current_req->errors);
2857 tmp = make_raw_rw_request();
2858 if (tmp < 2) {
2859 request_done(tmp);
2860 goto do_request;
1da177e4 2861 }
0da3132f
JP
2862
2863 if (test_bit(FD_NEED_TWADDLE_BIT, &DRS->flags))
2864 twaddle();
2865 schedule_bh(floppy_start);
ded2863d 2866 debugt(__func__, "queue fd request");
0da3132f 2867 return;
1da177e4
LT
2868}
2869
3b06c21e 2870static const struct cont_t rw_cont = {
1da177e4
LT
2871 .interrupt = rw_interrupt,
2872 .redo = redo_fd_request,
2873 .error = bad_flp_intr,
2874 .done = request_done
2875};
2876
2877static void process_fd_request(void)
2878{
2879 cont = &rw_cont;
2880 schedule_bh(redo_fd_request);
2881}
2882
d7b2b2ec 2883static void do_fd_request(struct request_queue *q)
1da177e4 2884{
01b6b67e
SH
2885 if (WARN(max_buffer_sectors == 0,
2886 "VFS: %s called on non-open device\n", __func__))
1da177e4 2887 return;
1da177e4 2888
01b6b67e
SH
2889 if (WARN(atomic_read(&usage_count) == 0,
2890 "warning: usage count=0, current_req=%p sect=%ld type=%x flags=%x\n",
2891 current_req, (long)blk_rq_pos(current_req), current_req->cmd_type,
2892 current_req->cmd_flags))
1da177e4 2893 return;
01b6b67e 2894
070ad7e7 2895 if (test_and_set_bit(0, &fdc_busy)) {
1da177e4
LT
2896 /* fdc busy, this new request will be treated when the
2897 current one is done */
275176bc 2898 is_alive(__func__, "old request running");
1da177e4
LT
2899 return;
2900 }
070ad7e7
JK
2901 command_status = FD_COMMAND_NONE;
2902 __reschedule_timeout(MAXTIMEOUT, "fd_request");
2903 set_fdc(0);
1da177e4 2904 process_fd_request();
275176bc 2905 is_alive(__func__, "");
1da177e4
LT
2906}
2907
3b06c21e 2908static const struct cont_t poll_cont = {
1da177e4
LT
2909 .interrupt = success_and_wakeup,
2910 .redo = floppy_ready,
2911 .error = generic_failure,
2912 .done = generic_done
2913};
2914
74f63f46 2915static int poll_drive(bool interruptible, int flag)
1da177e4 2916{
1da177e4
LT
2917 /* no auto-sense, just clear dcl */
2918 raw_cmd = &default_raw_cmd;
2919 raw_cmd->flags = flag;
2920 raw_cmd->track = 0;
2921 raw_cmd->cmd_count = 0;
2922 cont = &poll_cont;
87f530d8 2923 debug_dcl(DP->flags, "setting NEWCHANGE in poll_drive\n");
e0298536 2924 set_bit(FD_DISK_NEWCHANGE_BIT, &DRS->flags);
55eee80c
JP
2925
2926 return wait_til_done(floppy_ready, interruptible);
1da177e4
LT
2927}
2928
2929/*
2930 * User triggered reset
2931 * ====================
2932 */
2933
2934static void reset_intr(void)
2935{
b46df356 2936 pr_info("weird, reset interrupt called\n");
1da177e4
LT
2937}
2938
3b06c21e 2939static const struct cont_t reset_cont = {
1da177e4
LT
2940 .interrupt = reset_intr,
2941 .redo = success_and_wakeup,
2942 .error = generic_failure,
2943 .done = generic_done
2944};
2945
74f63f46 2946static int user_reset_fdc(int drive, int arg, bool interruptible)
1da177e4
LT
2947{
2948 int ret;
2949
52a0d61f
JP
2950 if (lock_fdc(drive, interruptible))
2951 return -EINTR;
2952
1da177e4
LT
2953 if (arg == FD_RESET_ALWAYS)
2954 FDCS->reset = 1;
2955 if (FDCS->reset) {
2956 cont = &reset_cont;
55eee80c
JP
2957 ret = wait_til_done(reset_fdc, interruptible);
2958 if (ret == -EINTR)
2959 return -EINTR;
1da177e4
LT
2960 }
2961 process_fd_request();
52a0d61f 2962 return 0;
1da177e4
LT
2963}
2964
2965/*
2966 * Misc Ioctl's and support
2967 * ========================
2968 */
2969static inline int fd_copyout(void __user *param, const void *address,
2970 unsigned long size)
2971{
2972 return copy_to_user(param, address, size) ? -EFAULT : 0;
2973}
2974
48c8cee6
JP
2975static inline int fd_copyin(void __user *param, void *address,
2976 unsigned long size)
1da177e4
LT
2977{
2978 return copy_from_user(address, param, size) ? -EFAULT : 0;
2979}
2980
be7a12bb 2981static const char *drive_name(int type, int drive)
1da177e4
LT
2982{
2983 struct floppy_struct *floppy;
2984
2985 if (type)
2986 floppy = floppy_type + type;
2987 else {
2988 if (UDP->native_format)
2989 floppy = floppy_type + UDP->native_format;
2990 else
2991 return "(null)";
2992 }
2993 if (floppy->name)
2994 return floppy->name;
2995 else
2996 return "(null)";
2997}
2998
2999/* raw commands */
3000static void raw_cmd_done(int flag)
3001{
3002 int i;
3003
3004 if (!flag) {
3005 raw_cmd->flags |= FD_RAW_FAILURE;
3006 raw_cmd->flags |= FD_RAW_HARDFAILURE;
3007 } else {
3008 raw_cmd->reply_count = inr;
3009 if (raw_cmd->reply_count > MAX_REPLIES)
3010 raw_cmd->reply_count = 0;
3011 for (i = 0; i < raw_cmd->reply_count; i++)
3012 raw_cmd->reply[i] = reply_buffer[i];
3013
3014 if (raw_cmd->flags & (FD_RAW_READ | FD_RAW_WRITE)) {
3015 unsigned long flags;
3016 flags = claim_dma_lock();
3017 raw_cmd->length = fd_get_dma_residue();
3018 release_dma_lock(flags);
3019 }
3020
3021 if ((raw_cmd->flags & FD_RAW_SOFTFAILURE) &&
3022 (!raw_cmd->reply_count || (raw_cmd->reply[0] & 0xc0)))
3023 raw_cmd->flags |= FD_RAW_FAILURE;
3024
3025 if (disk_change(current_drive))
3026 raw_cmd->flags |= FD_RAW_DISK_CHANGE;
3027 else
3028 raw_cmd->flags &= ~FD_RAW_DISK_CHANGE;
3029 if (raw_cmd->flags & FD_RAW_NO_MOTOR_AFTER)
3030 motor_off_callback(current_drive);
3031
3032 if (raw_cmd->next &&
3033 (!(raw_cmd->flags & FD_RAW_FAILURE) ||
3034 !(raw_cmd->flags & FD_RAW_STOP_IF_FAILURE)) &&
3035 ((raw_cmd->flags & FD_RAW_FAILURE) ||
3036 !(raw_cmd->flags & FD_RAW_STOP_IF_SUCCESS))) {
3037 raw_cmd = raw_cmd->next;
3038 return;
3039 }
3040 }
3041 generic_done(flag);
3042}
3043
3b06c21e 3044static const struct cont_t raw_cmd_cont = {
1da177e4
LT
3045 .interrupt = success_and_wakeup,
3046 .redo = floppy_start,
3047 .error = generic_failure,
3048 .done = raw_cmd_done
3049};
3050
be7a12bb 3051static int raw_cmd_copyout(int cmd, void __user *param,
1da177e4
LT
3052 struct floppy_raw_cmd *ptr)
3053{
3054 int ret;
3055
3056 while (ptr) {
ce2f11fe 3057 ret = copy_to_user(param, ptr, sizeof(*ptr));
86b12b48
JP
3058 if (ret)
3059 return -EFAULT;
1da177e4
LT
3060 param += sizeof(struct floppy_raw_cmd);
3061 if ((ptr->flags & FD_RAW_READ) && ptr->buffer_length) {
bb57f0c6
JP
3062 if (ptr->length >= 0 &&
3063 ptr->length <= ptr->buffer_length) {
3064 long length = ptr->buffer_length - ptr->length;
4575b552
JP
3065 ret = fd_copyout(ptr->data, ptr->kernel_data,
3066 length);
3067 if (ret)
3068 return ret;
bb57f0c6 3069 }
1da177e4
LT
3070 }
3071 ptr = ptr->next;
3072 }
7f252717 3073
1da177e4
LT
3074 return 0;
3075}
3076
3077static void raw_cmd_free(struct floppy_raw_cmd **ptr)
3078{
06f748c4
JJ
3079 struct floppy_raw_cmd *next;
3080 struct floppy_raw_cmd *this;
1da177e4
LT
3081
3082 this = *ptr;
3083 *ptr = NULL;
3084 while (this) {
3085 if (this->buffer_length) {
3086 fd_dma_mem_free((unsigned long)this->kernel_data,
3087 this->buffer_length);
3088 this->buffer_length = 0;
3089 }
3090 next = this->next;
3091 kfree(this);
3092 this = next;
3093 }
3094}
3095
be7a12bb 3096static int raw_cmd_copyin(int cmd, void __user *param,
1da177e4
LT
3097 struct floppy_raw_cmd **rcmd)
3098{
3099 struct floppy_raw_cmd *ptr;
3100 int ret;
3101 int i;
3102
3103 *rcmd = NULL;
7f252717
JP
3104
3105loop:
3106 ptr = kmalloc(sizeof(struct floppy_raw_cmd), GFP_USER);
3107 if (!ptr)
3108 return -ENOMEM;
3109 *rcmd = ptr;
3110 ret = copy_from_user(ptr, param, sizeof(*ptr));
3111 if (ret)
3112 return -EFAULT;
3113 ptr->next = NULL;
3114 ptr->buffer_length = 0;
3115 param += sizeof(struct floppy_raw_cmd);
3116 if (ptr->cmd_count > 33)
1da177e4
LT
3117 /* the command may now also take up the space
3118 * initially intended for the reply & the
3119 * reply count. Needed for long 82078 commands
3120 * such as RESTORE, which takes ... 17 command
3121 * bytes. Murphy's law #137: When you reserve
3122 * 16 bytes for a structure, you'll one day
3123 * discover that you really need 17...
3124 */
7f252717
JP
3125 return -EINVAL;
3126
3127 for (i = 0; i < 16; i++)
3128 ptr->reply[i] = 0;
3129 ptr->resultcode = 0;
3130 ptr->kernel_data = NULL;
3131
3132 if (ptr->flags & (FD_RAW_READ | FD_RAW_WRITE)) {
3133 if (ptr->length <= 0)
1da177e4 3134 return -EINVAL;
7f252717
JP
3135 ptr->kernel_data = (char *)fd_dma_mem_alloc(ptr->length);
3136 fallback_on_nodma_alloc(&ptr->kernel_data, ptr->length);
3137 if (!ptr->kernel_data)
3138 return -ENOMEM;
3139 ptr->buffer_length = ptr->length;
3140 }
3141 if (ptr->flags & FD_RAW_WRITE) {
3142 ret = fd_copyin(ptr->data, ptr->kernel_data, ptr->length);
3143 if (ret)
3144 return ret;
3145 }
1da177e4 3146
7f252717 3147 if (ptr->flags & FD_RAW_MORE) {
1da177e4 3148 rcmd = &(ptr->next);
1da177e4 3149 ptr->rate &= 0x43;
7f252717 3150 goto loop;
1da177e4 3151 }
7f252717
JP
3152
3153 return 0;
1da177e4
LT
3154}
3155
3156static int raw_cmd_ioctl(int cmd, void __user *param)
3157{
1da177e4 3158 struct floppy_raw_cmd *my_raw_cmd;
06f748c4
JJ
3159 int drive;
3160 int ret2;
3161 int ret;
1da177e4
LT
3162
3163 if (FDCS->rawcmd <= 1)
3164 FDCS->rawcmd = 1;
3165 for (drive = 0; drive < N_DRIVE; drive++) {
3166 if (FDC(drive) != fdc)
3167 continue;
3168 if (drive == current_drive) {
3169 if (UDRS->fd_ref > 1) {
3170 FDCS->rawcmd = 2;
3171 break;
3172 }
3173 } else if (UDRS->fd_ref) {
3174 FDCS->rawcmd = 2;
3175 break;
3176 }
3177 }
3178
3179 if (FDCS->reset)
3180 return -EIO;
3181
3182 ret = raw_cmd_copyin(cmd, param, &my_raw_cmd);
3183 if (ret) {
3184 raw_cmd_free(&my_raw_cmd);
3185 return ret;
3186 }
3187
3188 raw_cmd = my_raw_cmd;
3189 cont = &raw_cmd_cont;
74f63f46 3190 ret = wait_til_done(floppy_start, true);
87f530d8 3191 debug_dcl(DP->flags, "calling disk change from raw_cmd ioctl\n");
1da177e4
LT
3192
3193 if (ret != -EINTR && FDCS->reset)
3194 ret = -EIO;
3195
3196 DRS->track = NO_TRACK;
3197
3198 ret2 = raw_cmd_copyout(cmd, param, my_raw_cmd);
3199 if (!ret)
3200 ret = ret2;
3201 raw_cmd_free(&my_raw_cmd);
3202 return ret;
3203}
3204
3205static int invalidate_drive(struct block_device *bdev)
3206{
3207 /* invalidate the buffer track to force a reread */
3208 set_bit((long)bdev->bd_disk->private_data, &fake_change);
3209 process_fd_request();
3210 check_disk_change(bdev);
3211 return 0;
3212}
3213
be7a12bb 3214static int set_geometry(unsigned int cmd, struct floppy_struct *g,
1da177e4
LT
3215 int drive, int type, struct block_device *bdev)
3216{
3217 int cnt;
3218
3219 /* sanity checking for parameters. */
3220 if (g->sect <= 0 ||
3221 g->head <= 0 ||
3222 g->track <= 0 || g->track > UDP->tracks >> STRETCH(g) ||
3223 /* check if reserved bits are set */
9e49184c 3224 (g->stretch & ~(FD_STRETCH | FD_SWAPSIDES | FD_SECTBASEMASK)) != 0)
1da177e4
LT
3225 return -EINVAL;
3226 if (type) {
3227 if (!capable(CAP_SYS_ADMIN))
3228 return -EPERM;
b1c82b5c 3229 mutex_lock(&open_lock);
74f63f46 3230 if (lock_fdc(drive, true)) {
8516a500
JS
3231 mutex_unlock(&open_lock);
3232 return -EINTR;
3233 }
1da177e4
LT
3234 floppy_type[type] = *g;
3235 floppy_type[type].name = "user format";
3236 for (cnt = type << 2; cnt < (type << 2) + 4; cnt++)
3237 floppy_sizes[cnt] = floppy_sizes[cnt + 0x80] =
3238 floppy_type[type].size + 1;
3239 process_fd_request();
3240 for (cnt = 0; cnt < N_DRIVE; cnt++) {
3241 struct block_device *bdev = opened_bdev[cnt];
3242 if (!bdev || ITYPE(drive_state[cnt].fd_device) != type)
3243 continue;
93b270f7 3244 __invalidate_device(bdev, true);
1da177e4 3245 }
b1c82b5c 3246 mutex_unlock(&open_lock);
1da177e4
LT
3247 } else {
3248 int oldStretch;
52a0d61f 3249
74f63f46 3250 if (lock_fdc(drive, true))
52a0d61f 3251 return -EINTR;
4575b552 3252 if (cmd != FDDEFPRM) {
1da177e4
LT
3253 /* notice a disk change immediately, else
3254 * we lose our settings immediately*/
74f63f46 3255 if (poll_drive(true, FD_RAW_NEED_DISK) == -EINTR)
4575b552
JP
3256 return -EINTR;
3257 }
1da177e4
LT
3258 oldStretch = g->stretch;
3259 user_params[drive] = *g;
3260 if (buffer_drive == drive)
3261 SUPBOUND(buffer_max, user_params[drive].sect);
3262 current_type[drive] = &user_params[drive];
3263 floppy_sizes[drive] = user_params[drive].size;
3264 if (cmd == FDDEFPRM)
3265 DRS->keep_data = -1;
3266 else
3267 DRS->keep_data = 1;
3268 /* invalidation. Invalidate only when needed, i.e.
3269 * when there are already sectors in the buffer cache
3270 * whose number will change. This is useful, because
3271 * mtools often changes the geometry of the disk after
3272 * looking at the boot block */
3273 if (DRS->maxblock > user_params[drive].sect ||
3274 DRS->maxtrack ||
3275 ((user_params[drive].sect ^ oldStretch) &
9e49184c 3276 (FD_SWAPSIDES | FD_SECTBASEMASK)))
1da177e4
LT
3277 invalidate_drive(bdev);
3278 else
3279 process_fd_request();
3280 }
3281 return 0;
3282}
3283
3284/* handle obsolete ioctl's */
21af5448 3285static unsigned int ioctl_table[] = {
1da177e4
LT
3286 FDCLRPRM,
3287 FDSETPRM,
3288 FDDEFPRM,
3289 FDGETPRM,
3290 FDMSGON,
3291 FDMSGOFF,
3292 FDFMTBEG,
3293 FDFMTTRK,
3294 FDFMTEND,
3295 FDSETEMSGTRESH,
3296 FDFLUSH,
3297 FDSETMAXERRS,
3298 FDGETMAXERRS,
3299 FDGETDRVTYP,
3300 FDSETDRVPRM,
3301 FDGETDRVPRM,
3302 FDGETDRVSTAT,
3303 FDPOLLDRVSTAT,
3304 FDRESET,
3305 FDGETFDCSTAT,
3306 FDWERRORCLR,
3307 FDWERRORGET,
3308 FDRAWCMD,
3309 FDEJECT,
3310 FDTWADDLE
3311};
3312
21af5448 3313static int normalize_ioctl(unsigned int *cmd, int *size)
1da177e4
LT
3314{
3315 int i;
3316
3317 for (i = 0; i < ARRAY_SIZE(ioctl_table); i++) {
3318 if ((*cmd & 0xffff) == (ioctl_table[i] & 0xffff)) {
3319 *size = _IOC_SIZE(*cmd);
3320 *cmd = ioctl_table[i];
3321 if (*size > _IOC_SIZE(*cmd)) {
b46df356 3322 pr_info("ioctl not yet supported\n");
1da177e4
LT
3323 return -EFAULT;
3324 }
3325 return 0;
3326 }
3327 }
3328 return -EINVAL;
3329}
3330
3331static int get_floppy_geometry(int drive, int type, struct floppy_struct **g)
3332{
3333 if (type)
3334 *g = &floppy_type[type];
3335 else {
74f63f46 3336 if (lock_fdc(drive, false))
52a0d61f 3337 return -EINTR;
74f63f46 3338 if (poll_drive(false, 0) == -EINTR)
4575b552 3339 return -EINTR;
1da177e4
LT
3340 process_fd_request();
3341 *g = current_type[drive];
3342 }
3343 if (!*g)
3344 return -ENODEV;
3345 return 0;
3346}
3347
a885c8c4
CH
3348static int fd_getgeo(struct block_device *bdev, struct hd_geometry *geo)
3349{
3350 int drive = (long)bdev->bd_disk->private_data;
3351 int type = ITYPE(drive_state[drive].fd_device);
3352 struct floppy_struct *g;
3353 int ret;
3354
3355 ret = get_floppy_geometry(drive, type, &g);
3356 if (ret)
3357 return ret;
3358
3359 geo->heads = g->head;
3360 geo->sectors = g->sect;
3361 geo->cylinders = g->track;
3362 return 0;
3363}
3364
8a6cfeb6 3365static int fd_locked_ioctl(struct block_device *bdev, fmode_t mode, unsigned int cmd,
1da177e4
LT
3366 unsigned long param)
3367{
a4af9b48 3368 int drive = (long)bdev->bd_disk->private_data;
06f748c4
JJ
3369 int type = ITYPE(UDRS->fd_device);
3370 int i;
1da177e4
LT
3371 int ret;
3372 int size;
3373 union inparam {
3374 struct floppy_struct g; /* geometry */
3375 struct format_descr f;
3376 struct floppy_max_errors max_errors;
3377 struct floppy_drive_params dp;
3378 } inparam; /* parameters coming from user space */
724ee626 3379 const void *outparam; /* parameters passed back to user space */
1da177e4
LT
3380
3381 /* convert compatibility eject ioctls into floppy eject ioctl.
3382 * We do this in order to provide a means to eject floppy disks before
3383 * installing the new fdutils package */
3384 if (cmd == CDROMEJECT || /* CD-ROM eject */
a81ee544 3385 cmd == 0x6470) { /* SunOS floppy eject */
1da177e4
LT
3386 DPRINT("obsolete eject ioctl\n");
3387 DPRINT("please use floppycontrol --eject\n");
3388 cmd = FDEJECT;
3389 }
3390
a81ee544 3391 if (!((cmd & 0xff00) == 0x0200))
1da177e4
LT
3392 return -EINVAL;
3393
a81ee544 3394 /* convert the old style command into a new style command */
4575b552
JP
3395 ret = normalize_ioctl(&cmd, &size);
3396 if (ret)
3397 return ret;
a81ee544 3398
1da177e4 3399 /* permission checks */
0aad92cf 3400 if (((cmd & 0x40) && !(mode & (FMODE_WRITE | FMODE_WRITE_IOCTL))) ||
1da177e4
LT
3401 ((cmd & 0x80) && !capable(CAP_SYS_ADMIN)))
3402 return -EPERM;
3403
2886a8bd
AV
3404 if (WARN_ON(size < 0 || size > sizeof(inparam)))
3405 return -EINVAL;
3406
1da177e4 3407 /* copyin */
b87c9e0a 3408 memset(&inparam, 0, sizeof(inparam));
4575b552
JP
3409 if (_IOC_DIR(cmd) & _IOC_WRITE) {
3410 ret = fd_copyin((void __user *)param, &inparam, size);
3411 if (ret)
3412 return ret;
3413 }
1da177e4 3414
da273653
JP
3415 switch (cmd) {
3416 case FDEJECT:
3417 if (UDRS->fd_ref != 1)
3418 /* somebody else has this drive open */
3419 return -EBUSY;
74f63f46 3420 if (lock_fdc(drive, true))
52a0d61f 3421 return -EINTR;
1da177e4 3422
da273653
JP
3423 /* do the actual eject. Fails on
3424 * non-Sparc architectures */
3425 ret = fd_eject(UNIT(drive));
1da177e4 3426
e0298536
JP
3427 set_bit(FD_DISK_CHANGED_BIT, &UDRS->flags);
3428 set_bit(FD_VERIFY_BIT, &UDRS->flags);
da273653
JP
3429 process_fd_request();
3430 return ret;
3431 case FDCLRPRM:
74f63f46 3432 if (lock_fdc(drive, true))
52a0d61f 3433 return -EINTR;
da273653
JP
3434 current_type[drive] = NULL;
3435 floppy_sizes[drive] = MAX_DISK_SIZE << 1;
3436 UDRS->keep_data = 0;
3437 return invalidate_drive(bdev);
3438 case FDSETPRM:
3439 case FDDEFPRM:
3440 return set_geometry(cmd, &inparam.g, drive, type, bdev);
3441 case FDGETPRM:
4575b552 3442 ret = get_floppy_geometry(drive, type,
724ee626 3443 (struct floppy_struct **)&outparam);
4575b552
JP
3444 if (ret)
3445 return ret;
da273653
JP
3446 break;
3447 case FDMSGON:
3448 UDP->flags |= FTD_MSG;
3449 return 0;
3450 case FDMSGOFF:
3451 UDP->flags &= ~FTD_MSG;
3452 return 0;
3453 case FDFMTBEG:
74f63f46 3454 if (lock_fdc(drive, true))
52a0d61f 3455 return -EINTR;
74f63f46 3456 if (poll_drive(true, FD_RAW_NEED_DISK) == -EINTR)
4575b552 3457 return -EINTR;
da273653
JP
3458 ret = UDRS->flags;
3459 process_fd_request();
3460 if (ret & FD_VERIFY)
3461 return -ENODEV;
3462 if (!(ret & FD_DISK_WRITABLE))
3463 return -EROFS;
3464 return 0;
3465 case FDFMTTRK:
3466 if (UDRS->fd_ref != 1)
3467 return -EBUSY;
3468 return do_format(drive, &inparam.f);
3469 case FDFMTEND:
3470 case FDFLUSH:
74f63f46 3471 if (lock_fdc(drive, true))
52a0d61f 3472 return -EINTR;
da273653
JP
3473 return invalidate_drive(bdev);
3474 case FDSETEMSGTRESH:
3475 UDP->max_errors.reporting = (unsigned short)(param & 0x0f);
3476 return 0;
3477 case FDGETMAXERRS:
724ee626 3478 outparam = &UDP->max_errors;
da273653
JP
3479 break;
3480 case FDSETMAXERRS:
3481 UDP->max_errors = inparam.max_errors;
3482 break;
3483 case FDGETDRVTYP:
3484 outparam = drive_name(type, drive);
724ee626 3485 SUPBOUND(size, strlen((const char *)outparam) + 1);
da273653
JP
3486 break;
3487 case FDSETDRVPRM:
3488 *UDP = inparam.dp;
3489 break;
3490 case FDGETDRVPRM:
724ee626 3491 outparam = UDP;
da273653
JP
3492 break;
3493 case FDPOLLDRVSTAT:
74f63f46 3494 if (lock_fdc(drive, true))
52a0d61f 3495 return -EINTR;
74f63f46 3496 if (poll_drive(true, FD_RAW_NEED_DISK) == -EINTR)
4575b552 3497 return -EINTR;
da273653
JP
3498 process_fd_request();
3499 /* fall through */
3500 case FDGETDRVSTAT:
724ee626 3501 outparam = UDRS;
da273653
JP
3502 break;
3503 case FDRESET:
74f63f46 3504 return user_reset_fdc(drive, (int)param, true);
da273653 3505 case FDGETFDCSTAT:
724ee626 3506 outparam = UFDCS;
da273653
JP
3507 break;
3508 case FDWERRORCLR:
3509 memset(UDRWE, 0, sizeof(*UDRWE));
3510 return 0;
3511 case FDWERRORGET:
724ee626 3512 outparam = UDRWE;
da273653
JP
3513 break;
3514 case FDRAWCMD:
3515 if (type)
1da177e4 3516 return -EINVAL;
74f63f46 3517 if (lock_fdc(drive, true))
52a0d61f 3518 return -EINTR;
da273653 3519 set_floppy(drive);
4575b552
JP
3520 i = raw_cmd_ioctl(cmd, (void __user *)param);
3521 if (i == -EINTR)
3522 return -EINTR;
da273653
JP
3523 process_fd_request();
3524 return i;
3525 case FDTWADDLE:
74f63f46 3526 if (lock_fdc(drive, true))
52a0d61f 3527 return -EINTR;
da273653
JP
3528 twaddle();
3529 process_fd_request();
3530 return 0;
3531 default:
3532 return -EINVAL;
3533 }
1da177e4
LT
3534
3535 if (_IOC_DIR(cmd) & _IOC_READ)
3536 return fd_copyout((void __user *)param, outparam, size);
da273653
JP
3537
3538 return 0;
1da177e4
LT
3539}
3540
8a6cfeb6
AB
3541static int fd_ioctl(struct block_device *bdev, fmode_t mode,
3542 unsigned int cmd, unsigned long param)
3543{
3544 int ret;
3545
2a48fc0a 3546 mutex_lock(&floppy_mutex);
8a6cfeb6 3547 ret = fd_locked_ioctl(bdev, mode, cmd, param);
2a48fc0a 3548 mutex_unlock(&floppy_mutex);
8a6cfeb6
AB
3549
3550 return ret;
3551}
3552
1da177e4
LT
3553static void __init config_types(void)
3554{
b46df356 3555 bool has_drive = false;
1da177e4
LT
3556 int drive;
3557
3558 /* read drive info out of physical CMOS */
3559 drive = 0;
3560 if (!UDP->cmos)
3561 UDP->cmos = FLOPPY0_TYPE;
3562 drive = 1;
3563 if (!UDP->cmos && FLOPPY1_TYPE)
3564 UDP->cmos = FLOPPY1_TYPE;
3565
06f748c4 3566 /* FIXME: additional physical CMOS drive detection should go here */
1da177e4
LT
3567
3568 for (drive = 0; drive < N_DRIVE; drive++) {
3569 unsigned int type = UDP->cmos;
3570 struct floppy_drive_params *params;
3571 const char *name = NULL;
3572 static char temparea[32];
3573
945f390f 3574 if (type < ARRAY_SIZE(default_drive_params)) {
1da177e4
LT
3575 params = &default_drive_params[type].params;
3576 if (type) {
3577 name = default_drive_params[type].name;
3578 allowed_drive_mask |= 1 << drive;
3579 } else
3580 allowed_drive_mask &= ~(1 << drive);
3581 } else {
3582 params = &default_drive_params[0].params;
3583 sprintf(temparea, "unknown type %d (usb?)", type);
3584 name = temparea;
3585 }
3586 if (name) {
b46df356
JP
3587 const char *prepend;
3588 if (!has_drive) {
3589 prepend = "";
3590 has_drive = true;
3591 pr_info("Floppy drive(s):");
3592 } else {
3593 prepend = ",";
1da177e4 3594 }
b46df356
JP
3595
3596 pr_cont("%s fd%d is %s", prepend, drive, name);
1da177e4
LT
3597 }
3598 *UDP = *params;
3599 }
b46df356
JP
3600
3601 if (has_drive)
3602 pr_cont("\n");
1da177e4
LT
3603}
3604
a4af9b48 3605static int floppy_release(struct gendisk *disk, fmode_t mode)
1da177e4 3606{
a4af9b48 3607 int drive = (long)disk->private_data;
1da177e4 3608
2a48fc0a 3609 mutex_lock(&floppy_mutex);
b1c82b5c 3610 mutex_lock(&open_lock);
bfa10b8c 3611 if (!UDRS->fd_ref--) {
1da177e4
LT
3612 DPRINT("floppy_release with fd_ref == 0");
3613 UDRS->fd_ref = 0;
3614 }
3615 if (!UDRS->fd_ref)
3616 opened_bdev[drive] = NULL;
b1c82b5c 3617 mutex_unlock(&open_lock);
2a48fc0a 3618 mutex_unlock(&floppy_mutex);
3e541a4a 3619
1da177e4
LT
3620 return 0;
3621}
3622
3623/*
3624 * floppy_open check for aliasing (/dev/fd0 can be the same as
3625 * /dev/PS0 etc), and disallows simultaneous access to the same
3626 * drive with different device numbers.
3627 */
a4af9b48 3628static int floppy_open(struct block_device *bdev, fmode_t mode)
1da177e4 3629{
a4af9b48
AV
3630 int drive = (long)bdev->bd_disk->private_data;
3631 int old_dev, new_dev;
1da177e4
LT
3632 int try;
3633 int res = -EBUSY;
3634 char *tmp;
3635
2a48fc0a 3636 mutex_lock(&floppy_mutex);
b1c82b5c 3637 mutex_lock(&open_lock);
1da177e4 3638 old_dev = UDRS->fd_device;
a4af9b48 3639 if (opened_bdev[drive] && opened_bdev[drive] != bdev)
1da177e4
LT
3640 goto out2;
3641
3642 if (!UDRS->fd_ref && (UDP->flags & FD_BROKEN_DCL)) {
e0298536
JP
3643 set_bit(FD_DISK_CHANGED_BIT, &UDRS->flags);
3644 set_bit(FD_VERIFY_BIT, &UDRS->flags);
1da177e4
LT
3645 }
3646
bfa10b8c 3647 UDRS->fd_ref++;
1da177e4 3648
a4af9b48 3649 opened_bdev[drive] = bdev;
1da177e4
LT
3650
3651 res = -ENXIO;
3652
3653 if (!floppy_track_buffer) {
3654 /* if opening an ED drive, reserve a big buffer,
3655 * else reserve a small one */
3656 if ((UDP->cmos == 6) || (UDP->cmos == 5))
3657 try = 64; /* Only 48 actually useful */
3658 else
3659 try = 32; /* Only 24 actually useful */
3660
3661 tmp = (char *)fd_dma_mem_alloc(1024 * try);
3662 if (!tmp && !floppy_track_buffer) {
3663 try >>= 1; /* buffer only one side */
3664 INFBOUND(try, 16);
3665 tmp = (char *)fd_dma_mem_alloc(1024 * try);
3666 }
a81ee544 3667 if (!tmp && !floppy_track_buffer)
1da177e4 3668 fallback_on_nodma_alloc(&tmp, 2048 * try);
1da177e4
LT
3669 if (!tmp && !floppy_track_buffer) {
3670 DPRINT("Unable to allocate DMA memory\n");
3671 goto out;
3672 }
3673 if (floppy_track_buffer) {
3674 if (tmp)
3675 fd_dma_mem_free((unsigned long)tmp, try * 1024);
3676 } else {
3677 buffer_min = buffer_max = -1;
3678 floppy_track_buffer = tmp;
3679 max_buffer_sectors = try;
3680 }
3681 }
3682
a4af9b48
AV
3683 new_dev = MINOR(bdev->bd_dev);
3684 UDRS->fd_device = new_dev;
3685 set_capacity(disks[drive], floppy_sizes[new_dev]);
3686 if (old_dev != -1 && old_dev != new_dev) {
1da177e4
LT
3687 if (buffer_drive == drive)
3688 buffer_track = -1;
3689 }
3690
1da177e4
LT
3691 if (UFDCS->rawcmd == 1)
3692 UFDCS->rawcmd = 2;
3693
a4af9b48
AV
3694 if (!(mode & FMODE_NDELAY)) {
3695 if (mode & (FMODE_READ|FMODE_WRITE)) {
1da177e4 3696 UDRS->last_checked = 0;
a4af9b48 3697 check_disk_change(bdev);
e0298536 3698 if (test_bit(FD_DISK_CHANGED_BIT, &UDRS->flags))
1da177e4
LT
3699 goto out;
3700 }
3701 res = -EROFS;
e0298536
JP
3702 if ((mode & FMODE_WRITE) &&
3703 !test_bit(FD_DISK_WRITABLE_BIT, &UDRS->flags))
1da177e4
LT
3704 goto out;
3705 }
b1c82b5c 3706 mutex_unlock(&open_lock);
2a48fc0a 3707 mutex_unlock(&floppy_mutex);
1da177e4
LT
3708 return 0;
3709out:
bfa10b8c
JK
3710 UDRS->fd_ref--;
3711
1da177e4
LT
3712 if (!UDRS->fd_ref)
3713 opened_bdev[drive] = NULL;
1da177e4 3714out2:
b1c82b5c 3715 mutex_unlock(&open_lock);
2a48fc0a 3716 mutex_unlock(&floppy_mutex);
1da177e4
LT
3717 return res;
3718}
3719
3720/*
3721 * Check if the disk has been changed or if a change has been faked.
3722 */
1a8a74f0
TH
3723static unsigned int floppy_check_events(struct gendisk *disk,
3724 unsigned int clearing)
1da177e4
LT
3725{
3726 int drive = (long)disk->private_data;
3727
e0298536
JP
3728 if (test_bit(FD_DISK_CHANGED_BIT, &UDRS->flags) ||
3729 test_bit(FD_VERIFY_BIT, &UDRS->flags))
1a8a74f0 3730 return DISK_EVENT_MEDIA_CHANGE;
1da177e4 3731
50297cbf 3732 if (time_after(jiffies, UDRS->last_checked + UDP->checkfreq)) {
74f63f46
JP
3733 lock_fdc(drive, false);
3734 poll_drive(false, 0);
1da177e4 3735 process_fd_request();
1da177e4
LT
3736 }
3737
e0298536
JP
3738 if (test_bit(FD_DISK_CHANGED_BIT, &UDRS->flags) ||
3739 test_bit(FD_VERIFY_BIT, &UDRS->flags) ||
1da177e4 3740 test_bit(drive, &fake_change) ||
2b51dca7 3741 drive_no_geom(drive))
1a8a74f0 3742 return DISK_EVENT_MEDIA_CHANGE;
1da177e4
LT
3743 return 0;
3744}
3745
3746/*
3747 * This implements "read block 0" for floppy_revalidate().
3748 * Needed for format autodetection, checking whether there is
3749 * a disk in the drive, and whether that disk is writable.
3750 */
3751
bb57f0c6 3752static void floppy_rb0_complete(struct bio *bio, int err)
1da177e4 3753{
1da177e4 3754 complete((struct completion *)bio->bi_private);
1da177e4
LT
3755}
3756
3757static int __floppy_read_block_0(struct block_device *bdev)
3758{
3759 struct bio bio;
3760 struct bio_vec bio_vec;
3761 struct completion complete;
3762 struct page *page;
3763 size_t size;
3764
3765 page = alloc_page(GFP_NOIO);
3766 if (!page) {
3767 process_fd_request();
3768 return -ENOMEM;
3769 }
3770
3771 size = bdev->bd_block_size;
3772 if (!size)
3773 size = 1024;
3774
3775 bio_init(&bio);
3776 bio.bi_io_vec = &bio_vec;
3777 bio_vec.bv_page = page;
3778 bio_vec.bv_len = size;
3779 bio_vec.bv_offset = 0;
3780 bio.bi_vcnt = 1;
3781 bio.bi_idx = 0;
3782 bio.bi_size = size;
3783 bio.bi_bdev = bdev;
3784 bio.bi_sector = 0;
9354f1b8 3785 bio.bi_flags = (1 << BIO_QUIET);
1da177e4
LT
3786 init_completion(&complete);
3787 bio.bi_private = &complete;
3788 bio.bi_end_io = floppy_rb0_complete;
3789
3790 submit_bio(READ, &bio);
1da177e4
LT
3791 process_fd_request();
3792 wait_for_completion(&complete);
3793
3794 __free_page(page);
3795
3796 return 0;
3797}
3798
3799/* revalidate the floppy disk, i.e. trigger format autodetection by reading
3800 * the bootblock (block 0). "Autodetection" is also needed to check whether
3801 * there is a disk in the drive at all... Thus we also do it for fixed
3802 * geometry formats */
3803static int floppy_revalidate(struct gendisk *disk)
3804{
3805 int drive = (long)disk->private_data;
1da177e4
LT
3806 int cf;
3807 int res = 0;
3808
e0298536
JP
3809 if (test_bit(FD_DISK_CHANGED_BIT, &UDRS->flags) ||
3810 test_bit(FD_VERIFY_BIT, &UDRS->flags) ||
2b51dca7
PE
3811 test_bit(drive, &fake_change) ||
3812 drive_no_geom(drive)) {
01b6b67e
SH
3813 if (WARN(atomic_read(&usage_count) == 0,
3814 "VFS: revalidate called on non-open device.\n"))
1da177e4 3815 return -EFAULT;
01b6b67e 3816
74f63f46 3817 lock_fdc(drive, false);
e0298536
JP
3818 cf = (test_bit(FD_DISK_CHANGED_BIT, &UDRS->flags) ||
3819 test_bit(FD_VERIFY_BIT, &UDRS->flags));
2b51dca7 3820 if (!(cf || test_bit(drive, &fake_change) || drive_no_geom(drive))) {
1da177e4
LT
3821 process_fd_request(); /*already done by another thread */
3822 return 0;
3823 }
3824 UDRS->maxblock = 0;
3825 UDRS->maxtrack = 0;
3826 if (buffer_drive == drive)
3827 buffer_track = -1;
3828 clear_bit(drive, &fake_change);
e0298536 3829 clear_bit(FD_DISK_CHANGED_BIT, &UDRS->flags);
1da177e4
LT
3830 if (cf)
3831 UDRS->generation++;
2b51dca7 3832 if (drive_no_geom(drive)) {
1da177e4
LT
3833 /* auto-sensing */
3834 res = __floppy_read_block_0(opened_bdev[drive]);
3835 } else {
3836 if (cf)
74f63f46 3837 poll_drive(false, FD_RAW_NEED_DISK);
1da177e4
LT
3838 process_fd_request();
3839 }
3840 }
3841 set_capacity(disk, floppy_sizes[UDRS->fd_device]);
3842 return res;
3843}
3844
83d5cde4 3845static const struct block_device_operations floppy_fops = {
06f748c4 3846 .owner = THIS_MODULE,
a4af9b48
AV
3847 .open = floppy_open,
3848 .release = floppy_release,
8a6cfeb6 3849 .ioctl = fd_ioctl,
06f748c4 3850 .getgeo = fd_getgeo,
1a8a74f0 3851 .check_events = floppy_check_events,
06f748c4 3852 .revalidate_disk = floppy_revalidate,
1da177e4 3853};
1da177e4 3854
1da177e4
LT
3855/*
3856 * Floppy Driver initialization
3857 * =============================
3858 */
3859
3860/* Determine the floppy disk controller type */
3861/* This routine was written by David C. Niemi */
3862static char __init get_fdc_version(void)
3863{
3864 int r;
3865
3866 output_byte(FD_DUMPREGS); /* 82072 and better know DUMPREGS */
3867 if (FDCS->reset)
3868 return FDC_NONE;
d7b2b2ec
JP
3869 r = result();
3870 if (r <= 0x00)
1da177e4
LT
3871 return FDC_NONE; /* No FDC present ??? */
3872 if ((r == 1) && (reply_buffer[0] == 0x80)) {
b46df356 3873 pr_info("FDC %d is an 8272A\n", fdc);
1da177e4
LT
3874 return FDC_8272A; /* 8272a/765 don't know DUMPREGS */
3875 }
3876 if (r != 10) {
b46df356
JP
3877 pr_info("FDC %d init: DUMPREGS: unexpected return of %d bytes.\n",
3878 fdc, r);
1da177e4
LT
3879 return FDC_UNKNOWN;
3880 }
3881
3882 if (!fdc_configure()) {
b46df356 3883 pr_info("FDC %d is an 82072\n", fdc);
1da177e4
LT
3884 return FDC_82072; /* 82072 doesn't know CONFIGURE */
3885 }
3886
3887 output_byte(FD_PERPENDICULAR);
3888 if (need_more_output() == MORE_OUTPUT) {
3889 output_byte(0);
3890 } else {
b46df356 3891 pr_info("FDC %d is an 82072A\n", fdc);
1da177e4
LT
3892 return FDC_82072A; /* 82072A as found on Sparcs. */
3893 }
3894
3895 output_byte(FD_UNLOCK);
3896 r = result();
3897 if ((r == 1) && (reply_buffer[0] == 0x80)) {
b46df356 3898 pr_info("FDC %d is a pre-1991 82077\n", fdc);
d7b2b2ec 3899 return FDC_82077_ORIG; /* Pre-1991 82077, doesn't know
1da177e4
LT
3900 * LOCK/UNLOCK */
3901 }
3902 if ((r != 1) || (reply_buffer[0] != 0x00)) {
b46df356
JP
3903 pr_info("FDC %d init: UNLOCK: unexpected return of %d bytes.\n",
3904 fdc, r);
1da177e4
LT
3905 return FDC_UNKNOWN;
3906 }
3907 output_byte(FD_PARTID);
3908 r = result();
3909 if (r != 1) {
b46df356
JP
3910 pr_info("FDC %d init: PARTID: unexpected return of %d bytes.\n",
3911 fdc, r);
1da177e4
LT
3912 return FDC_UNKNOWN;
3913 }
3914 if (reply_buffer[0] == 0x80) {
b46df356 3915 pr_info("FDC %d is a post-1991 82077\n", fdc);
1da177e4
LT
3916 return FDC_82077; /* Revised 82077AA passes all the tests */
3917 }
3918 switch (reply_buffer[0] >> 5) {
3919 case 0x0:
3920 /* Either a 82078-1 or a 82078SL running at 5Volt */
b46df356 3921 pr_info("FDC %d is an 82078.\n", fdc);
1da177e4
LT
3922 return FDC_82078;
3923 case 0x1:
b46df356 3924 pr_info("FDC %d is a 44pin 82078\n", fdc);
1da177e4
LT
3925 return FDC_82078;
3926 case 0x2:
b46df356 3927 pr_info("FDC %d is a S82078B\n", fdc);
1da177e4
LT
3928 return FDC_S82078B;
3929 case 0x3:
b46df356 3930 pr_info("FDC %d is a National Semiconductor PC87306\n", fdc);
1da177e4
LT
3931 return FDC_87306;
3932 default:
b46df356
JP
3933 pr_info("FDC %d init: 82078 variant with unknown PARTID=%d.\n",
3934 fdc, reply_buffer[0] >> 5);
1da177e4
LT
3935 return FDC_82078_UNKN;
3936 }
3937} /* get_fdc_version */
3938
3939/* lilo configuration */
3940
3941static void __init floppy_set_flags(int *ints, int param, int param2)
3942{
3943 int i;
3944
3945 for (i = 0; i < ARRAY_SIZE(default_drive_params); i++) {
3946 if (param)
3947 default_drive_params[i].params.flags |= param2;
3948 else
3949 default_drive_params[i].params.flags &= ~param2;
3950 }
3951 DPRINT("%s flag 0x%x\n", param2 ? "Setting" : "Clearing", param);
3952}
3953
3954static void __init daring(int *ints, int param, int param2)
3955{
3956 int i;
3957
3958 for (i = 0; i < ARRAY_SIZE(default_drive_params); i++) {
3959 if (param) {
3960 default_drive_params[i].params.select_delay = 0;
3961 default_drive_params[i].params.flags |=
3962 FD_SILENT_DCL_CLEAR;
3963 } else {
3964 default_drive_params[i].params.select_delay =
3965 2 * HZ / 100;
3966 default_drive_params[i].params.flags &=
3967 ~FD_SILENT_DCL_CLEAR;
3968 }
3969 }
3970 DPRINT("Assuming %s floppy hardware\n", param ? "standard" : "broken");
3971}
3972
3973static void __init set_cmos(int *ints, int dummy, int dummy2)
3974{
3975 int current_drive = 0;
3976
3977 if (ints[0] != 2) {
3978 DPRINT("wrong number of parameters for CMOS\n");
3979 return;
3980 }
3981 current_drive = ints[1];
3982 if (current_drive < 0 || current_drive >= 8) {
3983 DPRINT("bad drive for set_cmos\n");
3984 return;
3985 }
3986#if N_FDC > 1
3987 if (current_drive >= 4 && !FDC2)
3988 FDC2 = 0x370;
3989#endif
3990 DP->cmos = ints[2];
3991 DPRINT("setting CMOS code to %d\n", ints[2]);
3992}
3993
3994static struct param_table {
3995 const char *name;
3996 void (*fn) (int *ints, int param, int param2);
3997 int *var;
3998 int def_param;
3999 int param2;
4000} config_params[] __initdata = {
4001 {"allowed_drive_mask", NULL, &allowed_drive_mask, 0xff, 0}, /* obsolete */
4002 {"all_drives", NULL, &allowed_drive_mask, 0xff, 0}, /* obsolete */
4003 {"asus_pci", NULL, &allowed_drive_mask, 0x33, 0},
4004 {"irq", NULL, &FLOPPY_IRQ, 6, 0},
4005 {"dma", NULL, &FLOPPY_DMA, 2, 0},
4006 {"daring", daring, NULL, 1, 0},
4007#if N_FDC > 1
4008 {"two_fdc", NULL, &FDC2, 0x370, 0},
4009 {"one_fdc", NULL, &FDC2, 0, 0},
4010#endif
4011 {"thinkpad", floppy_set_flags, NULL, 1, FD_INVERTED_DCL},
4012 {"broken_dcl", floppy_set_flags, NULL, 1, FD_BROKEN_DCL},
4013 {"messages", floppy_set_flags, NULL, 1, FTD_MSG},
4014 {"silent_dcl_clear", floppy_set_flags, NULL, 1, FD_SILENT_DCL_CLEAR},
4015 {"debug", floppy_set_flags, NULL, 1, FD_DEBUG},
4016 {"nodma", NULL, &can_use_virtual_dma, 1, 0},
4017 {"omnibook", NULL, &can_use_virtual_dma, 1, 0},
4018 {"yesdma", NULL, &can_use_virtual_dma, 0, 0},
4019 {"fifo_depth", NULL, &fifo_depth, 0xa, 0},
4020 {"nofifo", NULL, &no_fifo, 0x20, 0},
4021 {"usefifo", NULL, &no_fifo, 0, 0},
4022 {"cmos", set_cmos, NULL, 0, 0},
4023 {"slow", NULL, &slow_floppy, 1, 0},
4024 {"unexpected_interrupts", NULL, &print_unex, 1, 0},
4025 {"no_unexpected_interrupts", NULL, &print_unex, 0, 0},
4026 {"L40SX", NULL, &print_unex, 0, 0}
4027
4028 EXTRA_FLOPPY_PARAMS
4029};
4030
4031static int __init floppy_setup(char *str)
4032{
4033 int i;
4034 int param;
4035 int ints[11];
4036
4037 str = get_options(str, ARRAY_SIZE(ints), ints);
4038 if (str) {
4039 for (i = 0; i < ARRAY_SIZE(config_params); i++) {
4040 if (strcmp(str, config_params[i].name) == 0) {
4041 if (ints[0])
4042 param = ints[1];
4043 else
4044 param = config_params[i].def_param;
4045 if (config_params[i].fn)
bb57f0c6
JP
4046 config_params[i].fn(ints, param,
4047 config_params[i].
4048 param2);
1da177e4
LT
4049 if (config_params[i].var) {
4050 DPRINT("%s=%d\n", str, param);
4051 *config_params[i].var = param;
4052 }
4053 return 1;
4054 }
4055 }
4056 }
4057 if (str) {
4058 DPRINT("unknown floppy option [%s]\n", str);
4059
4060 DPRINT("allowed options are:");
4061 for (i = 0; i < ARRAY_SIZE(config_params); i++)
b46df356
JP
4062 pr_cont(" %s", config_params[i].name);
4063 pr_cont("\n");
1da177e4
LT
4064 } else
4065 DPRINT("botched floppy option\n");
31c00fc1 4066 DPRINT("Read Documentation/blockdev/floppy.txt\n");
1da177e4
LT
4067 return 0;
4068}
4069
4070static int have_no_fdc = -ENODEV;
4071
9a8af6b3
AM
4072static ssize_t floppy_cmos_show(struct device *dev,
4073 struct device_attribute *attr, char *buf)
94fd0db7 4074{
71b3e0c1 4075 struct platform_device *p = to_platform_device(dev);
9a8af6b3 4076 int drive;
94fd0db7 4077
9a8af6b3
AM
4078 drive = p->id;
4079 return sprintf(buf, "%X\n", UDP->cmos);
94fd0db7 4080}
48c8cee6 4081
be1c0fbf 4082static DEVICE_ATTR(cmos, S_IRUGO, floppy_cmos_show, NULL);
94fd0db7 4083
1da177e4
LT
4084static void floppy_device_release(struct device *dev)
4085{
1da177e4
LT
4086}
4087
c90cd332 4088static int floppy_resume(struct device *dev)
5e50b9ef
OZ
4089{
4090 int fdc;
4091
4092 for (fdc = 0; fdc < N_FDC; fdc++)
4093 if (FDCS->address != -1)
74f63f46 4094 user_reset_fdc(-1, FD_RESET_ALWAYS, false);
5e50b9ef
OZ
4095
4096 return 0;
4097}
4098
47145210 4099static const struct dev_pm_ops floppy_pm_ops = {
5e50b9ef 4100 .resume = floppy_resume,
c90cd332
FP
4101 .restore = floppy_resume,
4102};
4103
4104static struct platform_driver floppy_driver = {
5e50b9ef 4105 .driver = {
bb57f0c6
JP
4106 .name = "floppy",
4107 .pm = &floppy_pm_ops,
5e50b9ef
OZ
4108 },
4109};
4110
94fd0db7 4111static struct platform_device floppy_device[N_DRIVE];
1da177e4
LT
4112
4113static struct kobject *floppy_find(dev_t dev, int *part, void *data)
4114{
4115 int drive = (*part & 3) | ((*part & 0x80) >> 5);
4116 if (drive >= N_DRIVE ||
4117 !(allowed_drive_mask & (1 << drive)) ||
4118 fdc_state[FDC(drive)].version == FDC_NONE)
4119 return NULL;
945f390f 4120 if (((*part >> 2) & 0x1f) >= ARRAY_SIZE(floppy_type))
1da177e4
LT
4121 return NULL;
4122 *part = 0;
4123 return get_disk(disks[drive]);
4124}
4125
0cc15d03 4126static int __init do_floppy_init(void)
1da177e4
LT
4127{
4128 int i, unit, drive;
4129 int err, dr;
4130
285203c8
SH
4131 set_debugt();
4132 interruptjiffies = resultjiffies = jiffies;
4133
68e1ee62 4134#if defined(CONFIG_PPC)
ef16b519
OH
4135 if (check_legacy_ioport(FDC1))
4136 return -ENODEV;
4137#endif
4138
1da177e4
LT
4139 raw_cmd = NULL;
4140
4141 for (dr = 0; dr < N_DRIVE; dr++) {
4142 disks[dr] = alloc_disk(1);
4143 if (!disks[dr]) {
4144 err = -ENOMEM;
4145 goto out_put_disk;
4146 }
4147
070ad7e7
JK
4148 floppy_wq = alloc_ordered_workqueue("floppy", 0);
4149 if (!floppy_wq) {
4150 err = -ENOMEM;
4151 goto out_put_disk;
4152 }
4153
48821184
JA
4154 disks[dr]->queue = blk_init_queue(do_fd_request, &floppy_lock);
4155 if (!disks[dr]->queue) {
4156 err = -ENOMEM;
070ad7e7 4157 goto out_destroy_workq;
48821184
JA
4158 }
4159
4160 blk_queue_max_hw_sectors(disks[dr]->queue, 64);
1da177e4
LT
4161 disks[dr]->major = FLOPPY_MAJOR;
4162 disks[dr]->first_minor = TOMINOR(dr);
4163 disks[dr]->fops = &floppy_fops;
4164 sprintf(disks[dr]->disk_name, "fd%d", dr);
4165
4166 init_timer(&motor_off_timer[dr]);
4167 motor_off_timer[dr].data = dr;
4168 motor_off_timer[dr].function = motor_off_callback;
4169 }
4170
1da177e4
LT
4171 err = register_blkdev(FLOPPY_MAJOR, "fd");
4172 if (err)
8ab5e4c1 4173 goto out_put_disk;
1da177e4 4174
5e50b9ef
OZ
4175 err = platform_driver_register(&floppy_driver);
4176 if (err)
4177 goto out_unreg_blkdev;
4178
1da177e4
LT
4179 blk_register_region(MKDEV(FLOPPY_MAJOR, 0), 256, THIS_MODULE,
4180 floppy_find, NULL, NULL);
4181
4182 for (i = 0; i < 256; i++)
4183 if (ITYPE(i))
4184 floppy_sizes[i] = floppy_type[ITYPE(i)].size;
4185 else
4186 floppy_sizes[i] = MAX_DISK_SIZE << 1;
4187
73507e6c 4188 reschedule_timeout(MAXTIMEOUT, "floppy init");
1da177e4
LT
4189 config_types();
4190
4191 for (i = 0; i < N_FDC; i++) {
4192 fdc = i;
b87c9e0a 4193 memset(FDCS, 0, sizeof(*FDCS));
1da177e4
LT
4194 FDCS->dtr = -1;
4195 FDCS->dor = 0x4;
4196#if defined(__sparc__) || defined(__mc68000__)
96534f1d 4197 /*sparcs/sun3x don't have a DOR reset which we can fall back on to */
1da177e4
LT
4198#ifdef __mc68000__
4199 if (MACH_IS_SUN3X)
4200#endif
4201 FDCS->version = FDC_82072A;
4202#endif
4203 }
4204
4205 use_virtual_dma = can_use_virtual_dma & 1;
1da177e4
LT
4206 fdc_state[0].address = FDC1;
4207 if (fdc_state[0].address == -1) {
070ad7e7 4208 cancel_delayed_work(&fd_timeout);
1da177e4
LT
4209 err = -ENODEV;
4210 goto out_unreg_region;
4211 }
4212#if N_FDC > 1
4213 fdc_state[1].address = FDC2;
4214#endif
4215
4216 fdc = 0; /* reset fdc in case of unexpected interrupt */
4217 err = floppy_grab_irq_and_dma();
4218 if (err) {
070ad7e7 4219 cancel_delayed_work(&fd_timeout);
1da177e4
LT
4220 err = -EBUSY;
4221 goto out_unreg_region;
4222 }
4223
4224 /* initialise drive state */
4225 for (drive = 0; drive < N_DRIVE; drive++) {
b87c9e0a
JP
4226 memset(UDRS, 0, sizeof(*UDRS));
4227 memset(UDRWE, 0, sizeof(*UDRWE));
e0298536
JP
4228 set_bit(FD_DISK_NEWCHANGE_BIT, &UDRS->flags);
4229 set_bit(FD_DISK_CHANGED_BIT, &UDRS->flags);
4230 set_bit(FD_VERIFY_BIT, &UDRS->flags);
1da177e4
LT
4231 UDRS->fd_device = -1;
4232 floppy_track_buffer = NULL;
4233 max_buffer_sectors = 0;
4234 }
4235 /*
4236 * Small 10 msec delay to let through any interrupt that
4237 * initialization might have triggered, to not
4238 * confuse detection:
4239 */
4240 msleep(10);
4241
4242 for (i = 0; i < N_FDC; i++) {
4243 fdc = i;
4244 FDCS->driver_version = FD_DRIVER_VERSION;
4245 for (unit = 0; unit < 4; unit++)
4246 FDCS->track[unit] = 0;
4247 if (FDCS->address == -1)
4248 continue;
4249 FDCS->rawcmd = 2;
74f63f46 4250 if (user_reset_fdc(-1, FD_RESET_ALWAYS, false)) {
1da177e4 4251 /* free ioports reserved by floppy_grab_irq_and_dma() */
5a74db06 4252 floppy_release_regions(fdc);
1da177e4
LT
4253 FDCS->address = -1;
4254 FDCS->version = FDC_NONE;
4255 continue;
4256 }
4257 /* Try to determine the floppy controller type */
4258 FDCS->version = get_fdc_version();
4259 if (FDCS->version == FDC_NONE) {
4260 /* free ioports reserved by floppy_grab_irq_and_dma() */
5a74db06 4261 floppy_release_regions(fdc);
1da177e4
LT
4262 FDCS->address = -1;
4263 continue;
4264 }
4265 if (can_use_virtual_dma == 2 && FDCS->version < FDC_82072A)
4266 can_use_virtual_dma = 0;
4267
4268 have_no_fdc = 0;
4269 /* Not all FDCs seem to be able to handle the version command
4270 * properly, so force a reset for the standard FDC clones,
4271 * to avoid interrupt garbage.
4272 */
74f63f46 4273 user_reset_fdc(-1, FD_RESET_ALWAYS, false);
1da177e4
LT
4274 }
4275 fdc = 0;
070ad7e7 4276 cancel_delayed_work(&fd_timeout);
1da177e4 4277 current_drive = 0;
29f1c784 4278 initialized = true;
1da177e4
LT
4279 if (have_no_fdc) {
4280 DPRINT("no floppy controllers found\n");
4281 err = have_no_fdc;
070ad7e7 4282 goto out_release_dma;
1da177e4
LT
4283 }
4284
1da177e4
LT
4285 for (drive = 0; drive < N_DRIVE; drive++) {
4286 if (!(allowed_drive_mask & (1 << drive)))
4287 continue;
4288 if (fdc_state[FDC(drive)].version == FDC_NONE)
4289 continue;
94fd0db7
HR
4290
4291 floppy_device[drive].name = floppy_device_name;
4292 floppy_device[drive].id = drive;
4293 floppy_device[drive].dev.release = floppy_device_release;
4294
4295 err = platform_device_register(&floppy_device[drive]);
4296 if (err)
070ad7e7 4297 goto out_release_dma;
94fd0db7 4298
d7b2b2ec
JP
4299 err = device_create_file(&floppy_device[drive].dev,
4300 &dev_attr_cmos);
4ea1b0f4
DM
4301 if (err)
4302 goto out_unreg_platform_dev;
4303
1da177e4
LT
4304 /* to be cleaned up... */
4305 disks[drive]->private_data = (void *)(long)drive;
1da177e4 4306 disks[drive]->flags |= GENHD_FL_REMOVABLE;
94fd0db7 4307 disks[drive]->driverfs_dev = &floppy_device[drive].dev;
1da177e4
LT
4308 add_disk(disks[drive]);
4309 }
4310
4311 return 0;
4312
4ea1b0f4
DM
4313out_unreg_platform_dev:
4314 platform_device_unregister(&floppy_device[drive]);
070ad7e7 4315out_release_dma:
575cfc67 4316 if (atomic_read(&usage_count))
1da177e4
LT
4317 floppy_release_irq_and_dma();
4318out_unreg_region:
4319 blk_unregister_region(MKDEV(FLOPPY_MAJOR, 0), 256);
5e50b9ef 4320 platform_driver_unregister(&floppy_driver);
070ad7e7
JK
4321out_destroy_workq:
4322 destroy_workqueue(floppy_wq);
1da177e4
LT
4323out_unreg_blkdev:
4324 unregister_blkdev(FLOPPY_MAJOR, "fd");
1da177e4
LT
4325out_put_disk:
4326 while (dr--) {
6c4867f6 4327 del_timer_sync(&motor_off_timer[dr]);
3f9a5aab 4328 if (disks[dr]->queue) {
48821184 4329 blk_cleanup_queue(disks[dr]->queue);
3f9a5aab
VG
4330 /*
4331 * put_disk() is not paired with add_disk() and
4332 * will put queue reference one extra time. fix it.
4333 */
4334 disks[dr]->queue = NULL;
4335 }
c093ee4f 4336 put_disk(disks[dr]);
1da177e4
LT
4337 }
4338 return err;
4339}
4340
0cc15d03
AK
4341#ifndef MODULE
4342static __init void floppy_async_init(void *data, async_cookie_t cookie)
4343{
4344 do_floppy_init();
4345}
4346#endif
4347
4348static int __init floppy_init(void)
4349{
4350#ifdef MODULE
4351 return do_floppy_init();
4352#else
4353 /* Don't hold up the bootup by the floppy initialization */
4354 async_schedule(floppy_async_init, NULL);
4355 return 0;
4356#endif
4357}
4358
5a74db06
PDM
4359static const struct io_region {
4360 int offset;
4361 int size;
4362} io_regions[] = {
4363 { 2, 1 },
4364 /* address + 3 is sometimes reserved by pnp bios for motherboard */
4365 { 4, 2 },
4366 /* address + 6 is reserved, and may be taken by IDE.
4367 * Unfortunately, Adaptec doesn't know this :-(, */
4368 { 7, 1 },
4369};
4370
4371static void floppy_release_allocated_regions(int fdc, const struct io_region *p)
4372{
4373 while (p != io_regions) {
4374 p--;
4375 release_region(FDCS->address + p->offset, p->size);
4376 }
4377}
4378
4379#define ARRAY_END(X) (&((X)[ARRAY_SIZE(X)]))
4380
4381static int floppy_request_regions(int fdc)
4382{
4383 const struct io_region *p;
4384
4385 for (p = io_regions; p < ARRAY_END(io_regions); p++) {
bb57f0c6
JP
4386 if (!request_region(FDCS->address + p->offset,
4387 p->size, "floppy")) {
4388 DPRINT("Floppy io-port 0x%04lx in use\n",
4389 FDCS->address + p->offset);
5a74db06
PDM
4390 floppy_release_allocated_regions(fdc, p);
4391 return -EBUSY;
4392 }
4393 }
4394 return 0;
4395}
4396
4397static void floppy_release_regions(int fdc)
4398{
4399 floppy_release_allocated_regions(fdc, ARRAY_END(io_regions));
4400}
4401
1da177e4
LT
4402static int floppy_grab_irq_and_dma(void)
4403{
575cfc67 4404 if (atomic_inc_return(&usage_count) > 1)
1da177e4 4405 return 0;
6dc659d8
IM
4406
4407 /*
4408 * We might have scheduled a free_irq(), wait it to
4409 * drain first:
4410 */
070ad7e7 4411 flush_workqueue(floppy_wq);
6dc659d8 4412
1da177e4
LT
4413 if (fd_request_irq()) {
4414 DPRINT("Unable to grab IRQ%d for the floppy driver\n",
4415 FLOPPY_IRQ);
575cfc67 4416 atomic_dec(&usage_count);
1da177e4
LT
4417 return -1;
4418 }
4419 if (fd_request_dma()) {
4420 DPRINT("Unable to grab DMA%d for the floppy driver\n",
4421 FLOPPY_DMA);
2e9c47cd
JB
4422 if (can_use_virtual_dma & 2)
4423 use_virtual_dma = can_use_virtual_dma = 1;
4424 if (!(can_use_virtual_dma & 1)) {
4425 fd_free_irq();
575cfc67 4426 atomic_dec(&usage_count);
2e9c47cd
JB
4427 return -1;
4428 }
1da177e4
LT
4429 }
4430
4431 for (fdc = 0; fdc < N_FDC; fdc++) {
4432 if (FDCS->address != -1) {
5a74db06
PDM
4433 if (floppy_request_regions(fdc))
4434 goto cleanup;
1da177e4
LT
4435 }
4436 }
4437 for (fdc = 0; fdc < N_FDC; fdc++) {
4438 if (FDCS->address != -1) {
4439 reset_fdc_info(1);
4440 fd_outb(FDCS->dor, FD_DOR);
4441 }
4442 }
4443 fdc = 0;
4444 set_dor(0, ~0, 8); /* avoid immediate interrupt */
4445
4446 for (fdc = 0; fdc < N_FDC; fdc++)
4447 if (FDCS->address != -1)
4448 fd_outb(FDCS->dor, FD_DOR);
4449 /*
06f748c4
JJ
4450 * The driver will try and free resources and relies on us
4451 * to know if they were allocated or not.
1da177e4
LT
4452 */
4453 fdc = 0;
4454 irqdma_allocated = 1;
4455 return 0;
5a74db06 4456cleanup:
1da177e4
LT
4457 fd_free_irq();
4458 fd_free_dma();
5a74db06
PDM
4459 while (--fdc >= 0)
4460 floppy_release_regions(fdc);
575cfc67 4461 atomic_dec(&usage_count);
1da177e4
LT
4462 return -1;
4463}
4464
4465static void floppy_release_irq_and_dma(void)
4466{
4467 int old_fdc;
1da177e4
LT
4468#ifndef __sparc__
4469 int drive;
1da177e4
LT
4470#endif
4471 long tmpsize;
4472 unsigned long tmpaddr;
1da177e4 4473
575cfc67 4474 if (!atomic_dec_and_test(&usage_count))
1da177e4 4475 return;
575cfc67 4476
1da177e4
LT
4477 if (irqdma_allocated) {
4478 fd_disable_dma();
4479 fd_free_dma();
3e541a4a 4480 fd_free_irq();
1da177e4
LT
4481 irqdma_allocated = 0;
4482 }
4483 set_dor(0, ~0, 8);
4484#if N_FDC > 1
4485 set_dor(1, ~8, 0);
4486#endif
1da177e4
LT
4487
4488 if (floppy_track_buffer && max_buffer_sectors) {
4489 tmpsize = max_buffer_sectors * 1024;
4490 tmpaddr = (unsigned long)floppy_track_buffer;
4491 floppy_track_buffer = NULL;
4492 max_buffer_sectors = 0;
4493 buffer_min = buffer_max = -1;
4494 fd_dma_mem_free(tmpaddr, tmpsize);
4495 }
1da177e4
LT
4496#ifndef __sparc__
4497 for (drive = 0; drive < N_FDC * 4; drive++)
4498 if (timer_pending(motor_off_timer + drive))
b46df356 4499 pr_info("motor off timer %d still active\n", drive);
1da177e4
LT
4500#endif
4501
070ad7e7 4502 if (delayed_work_pending(&fd_timeout))
b46df356 4503 pr_info("floppy timer still active:%s\n", timeout_message);
070ad7e7 4504 if (delayed_work_pending(&fd_timer))
b46df356 4505 pr_info("auxiliary floppy timer still active\n");
365970a1 4506 if (work_pending(&floppy_work))
b46df356 4507 pr_info("work still pending\n");
1da177e4
LT
4508 old_fdc = fdc;
4509 for (fdc = 0; fdc < N_FDC; fdc++)
5a74db06
PDM
4510 if (FDCS->address != -1)
4511 floppy_release_regions(fdc);
1da177e4
LT
4512 fdc = old_fdc;
4513}
4514
4515#ifdef MODULE
4516
4517static char *floppy;
4518
1da177e4
LT
4519static void __init parse_floppy_cfg_string(char *cfg)
4520{
4521 char *ptr;
4522
4523 while (*cfg) {
bb57f0c6
JP
4524 ptr = cfg;
4525 while (*cfg && *cfg != ' ' && *cfg != '\t')
4526 cfg++;
1da177e4
LT
4527 if (*cfg) {
4528 *cfg = '\0';
4529 cfg++;
4530 }
4531 if (*ptr)
4532 floppy_setup(ptr);
4533 }
4534}
4535
7afea3bc 4536static int __init floppy_module_init(void)
1da177e4
LT
4537{
4538 if (floppy)
4539 parse_floppy_cfg_string(floppy);
4540 return floppy_init();
4541}
7afea3bc 4542module_init(floppy_module_init);
1da177e4 4543
7afea3bc 4544static void __exit floppy_module_exit(void)
1da177e4
LT
4545{
4546 int drive;
4547
1da177e4
LT
4548 blk_unregister_region(MKDEV(FLOPPY_MAJOR, 0), 256);
4549 unregister_blkdev(FLOPPY_MAJOR, "fd");
5e50b9ef 4550 platform_driver_unregister(&floppy_driver);
1da177e4
LT
4551
4552 for (drive = 0; drive < N_DRIVE; drive++) {
4553 del_timer_sync(&motor_off_timer[drive]);
4554
4555 if ((allowed_drive_mask & (1 << drive)) &&
4556 fdc_state[FDC(drive)].version != FDC_NONE) {
4557 del_gendisk(disks[drive]);
94fd0db7
HR
4558 device_remove_file(&floppy_device[drive].dev, &dev_attr_cmos);
4559 platform_device_unregister(&floppy_device[drive]);
1da177e4 4560 }
48821184 4561 blk_cleanup_queue(disks[drive]->queue);
4609dff6
VG
4562
4563 /*
4564 * These disks have not called add_disk(). Don't put down
4565 * queue reference in put_disk().
4566 */
4567 if (!(allowed_drive_mask & (1 << drive)) ||
4568 fdc_state[FDC(drive)].version == FDC_NONE)
4569 disks[drive]->queue = NULL;
4570
d017bf6b 4571 put_disk(disks[drive]);
1da177e4 4572 }
1da177e4 4573
070ad7e7
JK
4574 cancel_delayed_work_sync(&fd_timeout);
4575 cancel_delayed_work_sync(&fd_timer);
4576 destroy_workqueue(floppy_wq);
1da177e4 4577
575cfc67 4578 if (atomic_read(&usage_count))
1da177e4
LT
4579 floppy_release_irq_and_dma();
4580
4581 /* eject disk, if any */
4582 fd_eject(0);
1da177e4 4583}
48c8cee6 4584
7afea3bc 4585module_exit(floppy_module_exit);
1da177e4
LT
4586
4587module_param(floppy, charp, 0);
4588module_param(FLOPPY_IRQ, int, 0);
4589module_param(FLOPPY_DMA, int, 0);
4590MODULE_AUTHOR("Alain L. Knaff");
4591MODULE_SUPPORTED_DEVICE("fd");
4592MODULE_LICENSE("GPL");
4593
83f9ef46
SJR
4594/* This doesn't actually get used other than for module information */
4595static const struct pnp_device_id floppy_pnpids[] = {
48c8cee6
JP
4596 {"PNP0700", 0},
4597 {}
83f9ef46 4598};
48c8cee6 4599
83f9ef46
SJR
4600MODULE_DEVICE_TABLE(pnp, floppy_pnpids);
4601
1da177e4
LT
4602#else
4603
4604__setup("floppy=", floppy_setup);
4605module_init(floppy_init)
4606#endif
4607
4608MODULE_ALIAS_BLOCKDEV_MAJOR(FLOPPY_MAJOR);
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