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CommitLineData
1da177e4
LT
1/*
2 pf.c (c) 1997-8 Grant R. Guenther <grant@torque.net>
3 Under the terms of the GNU General Public License.
4
5 This is the high-level driver for parallel port ATAPI disk
6 drives based on chips supported by the paride module.
7
8 By default, the driver will autoprobe for a single parallel
9 port ATAPI disk drive, but if their individual parameters are
10 specified, the driver can handle up to 4 drives.
11
12 The behaviour of the pf driver can be altered by setting
13 some parameters from the insmod command line. The following
14 parameters are adjustable:
15
16 drive0 These four arguments can be arrays of
17 drive1 1-7 integers as follows:
18 drive2
19 drive3 <prt>,<pro>,<uni>,<mod>,<slv>,<lun>,<dly>
20
21 Where,
22
23 <prt> is the base of the parallel port address for
24 the corresponding drive. (required)
25
26 <pro> is the protocol number for the adapter that
27 supports this drive. These numbers are
28 logged by 'paride' when the protocol modules
29 are initialised. (0 if not given)
30
31 <uni> for those adapters that support chained
32 devices, this is the unit selector for the
33 chain of devices on the given port. It should
34 be zero for devices that don't support chaining.
35 (0 if not given)
36
37 <mod> this can be -1 to choose the best mode, or one
38 of the mode numbers supported by the adapter.
39 (-1 if not given)
40
41 <slv> ATAPI CDroms can be jumpered to master or slave.
42 Set this to 0 to choose the master drive, 1 to
43 choose the slave, -1 (the default) to choose the
44 first drive found.
45
46 <lun> Some ATAPI devices support multiple LUNs.
47 One example is the ATAPI PD/CD drive from
48 Matshita/Panasonic. This device has a
49 CD drive on LUN 0 and a PD drive on LUN 1.
50 By default, the driver will search for the
51 first LUN with a supported device. Set
52 this parameter to force it to use a specific
53 LUN. (default -1)
54
55 <dly> some parallel ports require the driver to
56 go more slowly. -1 sets a default value that
57 should work with the chosen protocol. Otherwise,
58 set this to a small integer, the larger it is
59 the slower the port i/o. In some cases, setting
60 this to zero will speed up the device. (default -1)
61
62 major You may use this parameter to overide the
63 default major number (47) that this driver
64 will use. Be sure to change the device
65 name as well.
66
67 name This parameter is a character string that
68 contains the name the kernel will use for this
69 device (in /proc output, for instance).
70 (default "pf").
71
72 cluster The driver will attempt to aggregate requests
73 for adjacent blocks into larger multi-block
74 clusters. The maximum cluster size (in 512
75 byte sectors) is set with this parameter.
76 (default 64)
77
78 verbose This parameter controls the amount of logging
79 that the driver will do. Set it to 0 for
80 normal operation, 1 to see autoprobe progress
81 messages, or 2 to see additional debugging
82 output. (default 0)
83
84 nice This parameter controls the driver's use of
85 idle CPU time, at the expense of some speed.
86
87 If this driver is built into the kernel, you can use the
88 following command line parameters, with the same values
89 as the corresponding module parameters listed above:
90
91 pf.drive0
92 pf.drive1
93 pf.drive2
94 pf.drive3
95 pf.cluster
96 pf.nice
97
98 In addition, you can use the parameter pf.disable to disable
99 the driver entirely.
100
101*/
102
103/* Changes:
104
105 1.01 GRG 1998.05.03 Changes for SMP. Eliminate sti().
106 Fix for drives that don't clear STAT_ERR
107 until after next CDB delivered.
108 Small change in pf_completion to round
109 up transfer size.
110 1.02 GRG 1998.06.16 Eliminated an Ugh
111 1.03 GRG 1998.08.16 Use HZ in loop timings, extra debugging
112 1.04 GRG 1998.09.24 Added jumbo support
113
114*/
115
116#define PF_VERSION "1.04"
117#define PF_MAJOR 47
118#define PF_NAME "pf"
119#define PF_UNITS 4
120
121/* Here are things one can override from the insmod command.
122 Most are autoprobed by paride unless set here. Verbose is off
123 by default.
124
125*/
126
127static int verbose = 0;
128static int major = PF_MAJOR;
129static char *name = PF_NAME;
130static int cluster = 64;
131static int nice = 0;
132static int disable = 0;
133
134static int drive0[7] = { 0, 0, 0, -1, -1, -1, -1 };
135static int drive1[7] = { 0, 0, 0, -1, -1, -1, -1 };
136static int drive2[7] = { 0, 0, 0, -1, -1, -1, -1 };
137static int drive3[7] = { 0, 0, 0, -1, -1, -1, -1 };
138
139static int (*drives[4])[7] = {&drive0, &drive1, &drive2, &drive3};
140static int pf_drive_count;
141
142enum {D_PRT, D_PRO, D_UNI, D_MOD, D_SLV, D_LUN, D_DLY};
143
144/* end of parameters */
145
146#include <linux/module.h>
147#include <linux/init.h>
148#include <linux/fs.h>
149#include <linux/delay.h>
150#include <linux/hdreg.h>
151#include <linux/cdrom.h>
152#include <linux/spinlock.h>
153#include <linux/blkdev.h>
154#include <linux/blkpg.h>
2a48fc0a 155#include <linux/mutex.h>
1da177e4
LT
156#include <asm/uaccess.h>
157
2a48fc0a 158static DEFINE_MUTEX(pf_mutex);
671d40f4 159static DEFINE_SPINLOCK(pf_spin_lock);
1da177e4
LT
160
161module_param(verbose, bool, 0644);
162module_param(major, int, 0);
163module_param(name, charp, 0);
164module_param(cluster, int, 0);
165module_param(nice, int, 0);
166module_param_array(drive0, int, NULL, 0);
167module_param_array(drive1, int, NULL, 0);
168module_param_array(drive2, int, NULL, 0);
169module_param_array(drive3, int, NULL, 0);
170
171#include "paride.h"
172#include "pseudo.h"
173
174/* constants for faking geometry numbers */
175
176#define PF_FD_MAX 8192 /* use FD geometry under this size */
177#define PF_FD_HDS 2
178#define PF_FD_SPT 18
179#define PF_HD_HDS 64
180#define PF_HD_SPT 32
181
182#define PF_MAX_RETRIES 5
183#define PF_TMO 800 /* interrupt timeout in jiffies */
184#define PF_SPIN_DEL 50 /* spin delay in micro-seconds */
185
186#define PF_SPIN (1000000*PF_TMO)/(HZ*PF_SPIN_DEL)
187
188#define STAT_ERR 0x00001
189#define STAT_INDEX 0x00002
190#define STAT_ECC 0x00004
191#define STAT_DRQ 0x00008
192#define STAT_SEEK 0x00010
193#define STAT_WRERR 0x00020
194#define STAT_READY 0x00040
195#define STAT_BUSY 0x00080
196
197#define ATAPI_REQ_SENSE 0x03
198#define ATAPI_LOCK 0x1e
199#define ATAPI_DOOR 0x1b
200#define ATAPI_MODE_SENSE 0x5a
201#define ATAPI_CAPACITY 0x25
202#define ATAPI_IDENTIFY 0x12
203#define ATAPI_READ_10 0x28
204#define ATAPI_WRITE_10 0x2a
205
8cfc7ca4 206static int pf_open(struct block_device *bdev, fmode_t mode);
165125e1 207static void do_pf_request(struct request_queue * q);
8cfc7ca4 208static int pf_ioctl(struct block_device *bdev, fmode_t mode,
1da177e4 209 unsigned int cmd, unsigned long arg);
a885c8c4 210static int pf_getgeo(struct block_device *bdev, struct hd_geometry *geo);
1da177e4 211
8cfc7ca4 212static int pf_release(struct gendisk *disk, fmode_t mode);
1da177e4
LT
213
214static int pf_detect(void);
215static void do_pf_read(void);
216static void do_pf_read_start(void);
217static void do_pf_write(void);
218static void do_pf_write_start(void);
219static void do_pf_read_drq(void);
220static void do_pf_write_done(void);
221
222#define PF_NM 0
223#define PF_RO 1
224#define PF_RW 2
225
226#define PF_NAMELEN 8
227
228struct pf_unit {
229 struct pi_adapter pia; /* interface to paride layer */
230 struct pi_adapter *pi;
231 int removable; /* removable media device ? */
232 int media_status; /* media present ? WP ? */
233 int drive; /* drive */
234 int lun;
235 int access; /* count of active opens ... */
236 int present; /* device present ? */
237 char name[PF_NAMELEN]; /* pf0, pf1, ... */
238 struct gendisk *disk;
239};
240
241static struct pf_unit units[PF_UNITS];
242
243static int pf_identify(struct pf_unit *pf);
244static void pf_lock(struct pf_unit *pf, int func);
245static void pf_eject(struct pf_unit *pf);
246static int pf_check_media(struct gendisk *disk);
247
248static char pf_scratch[512]; /* scratch block buffer */
249
250/* the variables below are used mainly in the I/O request engine, which
251 processes only one request at a time.
252*/
253
254static int pf_retries = 0; /* i/o error retry count */
255static int pf_busy = 0; /* request being processed ? */
256static struct request *pf_req; /* current request */
257static int pf_block; /* address of next requested block */
258static int pf_count; /* number of blocks still to do */
259static int pf_run; /* sectors in current cluster */
260static int pf_cmd; /* current command READ/WRITE */
261static struct pf_unit *pf_current;/* unit of current request */
262static int pf_mask; /* stopper for pseudo-int */
263static char *pf_buf; /* buffer for request in progress */
264
265/* kernel glue structures */
266
83d5cde4 267static const struct block_device_operations pf_fops = {
1da177e4 268 .owner = THIS_MODULE,
8cfc7ca4
AV
269 .open = pf_open,
270 .release = pf_release,
8a6cfeb6 271 .ioctl = pf_ioctl,
a885c8c4 272 .getgeo = pf_getgeo,
1da177e4
LT
273 .media_changed = pf_check_media,
274};
275
276static void __init pf_init_units(void)
277{
278 struct pf_unit *pf;
279 int unit;
280
281 pf_drive_count = 0;
282 for (unit = 0, pf = units; unit < PF_UNITS; unit++, pf++) {
283 struct gendisk *disk = alloc_disk(1);
284 if (!disk)
285 continue;
286 pf->disk = disk;
287 pf->pi = &pf->pia;
288 pf->media_status = PF_NM;
289 pf->drive = (*drives[unit])[D_SLV];
290 pf->lun = (*drives[unit])[D_LUN];
291 snprintf(pf->name, PF_NAMELEN, "%s%d", name, unit);
292 disk->major = major;
293 disk->first_minor = unit;
294 strcpy(disk->disk_name, pf->name);
295 disk->fops = &pf_fops;
296 if (!(*drives[unit])[D_PRT])
297 pf_drive_count++;
298 }
299}
300
8cfc7ca4 301static int pf_open(struct block_device *bdev, fmode_t mode)
1da177e4 302{
8cfc7ca4 303 struct pf_unit *pf = bdev->bd_disk->private_data;
6e9624b8 304 int ret;
1da177e4 305
2a48fc0a 306 mutex_lock(&pf_mutex);
1da177e4
LT
307 pf_identify(pf);
308
6e9624b8 309 ret = -ENODEV;
1da177e4 310 if (pf->media_status == PF_NM)
6e9624b8 311 goto out;
1da177e4 312
6e9624b8 313 ret = -EROFS;
8cfc7ca4 314 if ((pf->media_status == PF_RO) && (mode & FMODE_WRITE))
6e9624b8 315 goto out;
1da177e4 316
6e9624b8 317 ret = 0;
1da177e4
LT
318 pf->access++;
319 if (pf->removable)
320 pf_lock(pf, 1);
6e9624b8 321out:
2a48fc0a 322 mutex_unlock(&pf_mutex);
6e9624b8 323 return ret;
1da177e4
LT
324}
325
a885c8c4 326static int pf_getgeo(struct block_device *bdev, struct hd_geometry *geo)
1da177e4 327{
a885c8c4
CH
328 struct pf_unit *pf = bdev->bd_disk->private_data;
329 sector_t capacity = get_capacity(pf->disk);
330
1da177e4 331 if (capacity < PF_FD_MAX) {
a885c8c4
CH
332 geo->cylinders = sector_div(capacity, PF_FD_HDS * PF_FD_SPT);
333 geo->heads = PF_FD_HDS;
334 geo->sectors = PF_FD_SPT;
1da177e4 335 } else {
a885c8c4
CH
336 geo->cylinders = sector_div(capacity, PF_HD_HDS * PF_HD_SPT);
337 geo->heads = PF_HD_HDS;
338 geo->sectors = PF_HD_SPT;
1da177e4 339 }
a885c8c4
CH
340
341 return 0;
342}
343
8cfc7ca4 344static int pf_ioctl(struct block_device *bdev, fmode_t mode, unsigned int cmd, unsigned long arg)
a885c8c4 345{
8cfc7ca4 346 struct pf_unit *pf = bdev->bd_disk->private_data;
a885c8c4
CH
347
348 if (cmd != CDROMEJECT)
349 return -EINVAL;
350
351 if (pf->access != 1)
352 return -EBUSY;
2a48fc0a 353 mutex_lock(&pf_mutex);
a885c8c4 354 pf_eject(pf);
2a48fc0a 355 mutex_unlock(&pf_mutex);
8a6cfeb6 356
1da177e4
LT
357 return 0;
358}
359
8cfc7ca4 360static int pf_release(struct gendisk *disk, fmode_t mode)
1da177e4 361{
8cfc7ca4 362 struct pf_unit *pf = disk->private_data;
1da177e4 363
2a48fc0a 364 mutex_lock(&pf_mutex);
6e9624b8 365 if (pf->access <= 0) {
2a48fc0a 366 mutex_unlock(&pf_mutex);
1da177e4 367 return -EINVAL;
6e9624b8 368 }
1da177e4
LT
369
370 pf->access--;
371
372 if (!pf->access && pf->removable)
373 pf_lock(pf, 0);
374
2a48fc0a 375 mutex_unlock(&pf_mutex);
1da177e4
LT
376 return 0;
377
378}
379
380static int pf_check_media(struct gendisk *disk)
381{
382 return 1;
383}
384
385static inline int status_reg(struct pf_unit *pf)
386{
387 return pi_read_regr(pf->pi, 1, 6);
388}
389
390static inline int read_reg(struct pf_unit *pf, int reg)
391{
392 return pi_read_regr(pf->pi, 0, reg);
393}
394
395static inline void write_reg(struct pf_unit *pf, int reg, int val)
396{
397 pi_write_regr(pf->pi, 0, reg, val);
398}
399
400static int pf_wait(struct pf_unit *pf, int go, int stop, char *fun, char *msg)
401{
402 int j, r, e, s, p;
403
404 j = 0;
405 while ((((r = status_reg(pf)) & go) || (stop && (!(r & stop))))
406 && (j++ < PF_SPIN))
407 udelay(PF_SPIN_DEL);
408
c12ec0a2 409 if ((r & (STAT_ERR & stop)) || (j > PF_SPIN)) {
1da177e4
LT
410 s = read_reg(pf, 7);
411 e = read_reg(pf, 1);
412 p = read_reg(pf, 2);
c12ec0a2 413 if (j > PF_SPIN)
1da177e4
LT
414 e |= 0x100;
415 if (fun)
416 printk("%s: %s %s: alt=0x%x stat=0x%x err=0x%x"
417 " loop=%d phase=%d\n",
418 pf->name, fun, msg, r, s, e, j, p);
419 return (e << 8) + s;
420 }
421 return 0;
422}
423
424static int pf_command(struct pf_unit *pf, char *cmd, int dlen, char *fun)
425{
426 pi_connect(pf->pi);
427
428 write_reg(pf, 6, 0xa0+0x10*pf->drive);
429
430 if (pf_wait(pf, STAT_BUSY | STAT_DRQ, 0, fun, "before command")) {
431 pi_disconnect(pf->pi);
432 return -1;
433 }
434
435 write_reg(pf, 4, dlen % 256);
436 write_reg(pf, 5, dlen / 256);
437 write_reg(pf, 7, 0xa0); /* ATAPI packet command */
438
439 if (pf_wait(pf, STAT_BUSY, STAT_DRQ, fun, "command DRQ")) {
440 pi_disconnect(pf->pi);
441 return -1;
442 }
443
444 if (read_reg(pf, 2) != 1) {
445 printk("%s: %s: command phase error\n", pf->name, fun);
446 pi_disconnect(pf->pi);
447 return -1;
448 }
449
450 pi_write_block(pf->pi, cmd, 12);
451
452 return 0;
453}
454
455static int pf_completion(struct pf_unit *pf, char *buf, char *fun)
456{
457 int r, s, n;
458
459 r = pf_wait(pf, STAT_BUSY, STAT_DRQ | STAT_READY | STAT_ERR,
460 fun, "completion");
461
462 if ((read_reg(pf, 2) & 2) && (read_reg(pf, 7) & STAT_DRQ)) {
463 n = (((read_reg(pf, 4) + 256 * read_reg(pf, 5)) +
464 3) & 0xfffc);
465 pi_read_block(pf->pi, buf, n);
466 }
467
468 s = pf_wait(pf, STAT_BUSY, STAT_READY | STAT_ERR, fun, "data done");
469
470 pi_disconnect(pf->pi);
471
472 return (r ? r : s);
473}
474
475static void pf_req_sense(struct pf_unit *pf, int quiet)
476{
477 char rs_cmd[12] =
478 { ATAPI_REQ_SENSE, pf->lun << 5, 0, 0, 16, 0, 0, 0, 0, 0, 0, 0 };
479 char buf[16];
480 int r;
481
482 r = pf_command(pf, rs_cmd, 16, "Request sense");
483 mdelay(1);
484 if (!r)
485 pf_completion(pf, buf, "Request sense");
486
487 if ((!r) && (!quiet))
488 printk("%s: Sense key: %x, ASC: %x, ASQ: %x\n",
489 pf->name, buf[2] & 0xf, buf[12], buf[13]);
490}
491
492static int pf_atapi(struct pf_unit *pf, char *cmd, int dlen, char *buf, char *fun)
493{
494 int r;
495
496 r = pf_command(pf, cmd, dlen, fun);
497 mdelay(1);
498 if (!r)
499 r = pf_completion(pf, buf, fun);
500 if (r)
501 pf_req_sense(pf, !fun);
502
503 return r;
504}
505
1da177e4
LT
506static void pf_lock(struct pf_unit *pf, int func)
507{
508 char lo_cmd[12] = { ATAPI_LOCK, pf->lun << 5, 0, 0, func, 0, 0, 0, 0, 0, 0, 0 };
509
e62aa046 510 pf_atapi(pf, lo_cmd, 0, pf_scratch, func ? "lock" : "unlock");
1da177e4
LT
511}
512
513static void pf_eject(struct pf_unit *pf)
514{
515 char ej_cmd[12] = { ATAPI_DOOR, pf->lun << 5, 0, 0, 2, 0, 0, 0, 0, 0, 0, 0 };
516
517 pf_lock(pf, 0);
518 pf_atapi(pf, ej_cmd, 0, pf_scratch, "eject");
519}
520
521#define PF_RESET_TMO 30 /* in tenths of a second */
522
523static void pf_sleep(int cs)
524{
86e84862 525 schedule_timeout_interruptible(cs);
1da177e4
LT
526}
527
528/* the ATAPI standard actually specifies the contents of all 7 registers
529 after a reset, but the specification is ambiguous concerning the last
530 two bytes, and different drives interpret the standard differently.
531 */
532
533static int pf_reset(struct pf_unit *pf)
534{
535 int i, k, flg;
536 int expect[5] = { 1, 1, 1, 0x14, 0xeb };
537
538 pi_connect(pf->pi);
539 write_reg(pf, 6, 0xa0+0x10*pf->drive);
540 write_reg(pf, 7, 8);
541
542 pf_sleep(20 * HZ / 1000);
543
544 k = 0;
545 while ((k++ < PF_RESET_TMO) && (status_reg(pf) & STAT_BUSY))
546 pf_sleep(HZ / 10);
547
548 flg = 1;
549 for (i = 0; i < 5; i++)
550 flg &= (read_reg(pf, i + 1) == expect[i]);
551
552 if (verbose) {
553 printk("%s: Reset (%d) signature = ", pf->name, k);
554 for (i = 0; i < 5; i++)
555 printk("%3x", read_reg(pf, i + 1));
556 if (!flg)
557 printk(" (incorrect)");
558 printk("\n");
559 }
560
561 pi_disconnect(pf->pi);
562 return flg - 1;
563}
564
565static void pf_mode_sense(struct pf_unit *pf)
566{
567 char ms_cmd[12] =
568 { ATAPI_MODE_SENSE, pf->lun << 5, 0, 0, 0, 0, 0, 0, 8, 0, 0, 0 };
569 char buf[8];
570
e62aa046 571 pf_atapi(pf, ms_cmd, 8, buf, "mode sense");
1da177e4
LT
572 pf->media_status = PF_RW;
573 if (buf[3] & 0x80)
574 pf->media_status = PF_RO;
575}
576
577static void xs(char *buf, char *targ, int offs, int len)
578{
579 int j, k, l;
580
581 j = 0;
582 l = 0;
583 for (k = 0; k < len; k++)
584 if ((buf[k + offs] != 0x20) || (buf[k + offs] != l))
585 l = targ[j++] = buf[k + offs];
586 if (l == 0x20)
587 j--;
588 targ[j] = 0;
589}
590
591static int xl(char *buf, int offs)
592{
593 int v, k;
594
595 v = 0;
596 for (k = 0; k < 4; k++)
597 v = v * 256 + (buf[k + offs] & 0xff);
598 return v;
599}
600
601static void pf_get_capacity(struct pf_unit *pf)
602{
603 char rc_cmd[12] = { ATAPI_CAPACITY, pf->lun << 5, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
604 char buf[8];
605 int bs;
606
e62aa046 607 if (pf_atapi(pf, rc_cmd, 8, buf, "get capacity")) {
1da177e4
LT
608 pf->media_status = PF_NM;
609 return;
610 }
611 set_capacity(pf->disk, xl(buf, 0) + 1);
612 bs = xl(buf, 4);
613 if (bs != 512) {
614 set_capacity(pf->disk, 0);
615 if (verbose)
616 printk("%s: Drive %d, LUN %d,"
617 " unsupported block size %d\n",
618 pf->name, pf->drive, pf->lun, bs);
619 }
620}
621
622static int pf_identify(struct pf_unit *pf)
623{
624 int dt, s;
625 char *ms[2] = { "master", "slave" };
626 char mf[10], id[18];
627 char id_cmd[12] =
628 { ATAPI_IDENTIFY, pf->lun << 5, 0, 0, 36, 0, 0, 0, 0, 0, 0, 0 };
629 char buf[36];
630
631 s = pf_atapi(pf, id_cmd, 36, buf, "identify");
632 if (s)
633 return -1;
634
635 dt = buf[0] & 0x1f;
636 if ((dt != 0) && (dt != 7)) {
637 if (verbose)
638 printk("%s: Drive %d, LUN %d, unsupported type %d\n",
639 pf->name, pf->drive, pf->lun, dt);
640 return -1;
641 }
642
643 xs(buf, mf, 8, 8);
644 xs(buf, id, 16, 16);
645
646 pf->removable = (buf[1] & 0x80);
647
648 pf_mode_sense(pf);
649 pf_mode_sense(pf);
650 pf_mode_sense(pf);
651
652 pf_get_capacity(pf);
653
654 printk("%s: %s %s, %s LUN %d, type %d",
655 pf->name, mf, id, ms[pf->drive], pf->lun, dt);
656 if (pf->removable)
657 printk(", removable");
658 if (pf->media_status == PF_NM)
659 printk(", no media\n");
660 else {
661 if (pf->media_status == PF_RO)
662 printk(", RO");
663 printk(", %llu blocks\n",
664 (unsigned long long)get_capacity(pf->disk));
665 }
666 return 0;
667}
668
669/* returns 0, with id set if drive is detected
670 -1, if drive detection failed
671*/
672static int pf_probe(struct pf_unit *pf)
673{
674 if (pf->drive == -1) {
675 for (pf->drive = 0; pf->drive <= 1; pf->drive++)
676 if (!pf_reset(pf)) {
677 if (pf->lun != -1)
678 return pf_identify(pf);
679 else
680 for (pf->lun = 0; pf->lun < 8; pf->lun++)
681 if (!pf_identify(pf))
682 return 0;
683 }
684 } else {
685 if (pf_reset(pf))
686 return -1;
687 if (pf->lun != -1)
688 return pf_identify(pf);
689 for (pf->lun = 0; pf->lun < 8; pf->lun++)
690 if (!pf_identify(pf))
691 return 0;
692 }
693 return -1;
694}
695
696static int pf_detect(void)
697{
698 struct pf_unit *pf = units;
699 int k, unit;
700
701 printk("%s: %s version %s, major %d, cluster %d, nice %d\n",
702 name, name, PF_VERSION, major, cluster, nice);
703
704 k = 0;
705 if (pf_drive_count == 0) {
706 if (pi_init(pf->pi, 1, -1, -1, -1, -1, -1, pf_scratch, PI_PF,
707 verbose, pf->name)) {
708 if (!pf_probe(pf) && pf->disk) {
709 pf->present = 1;
710 k++;
711 } else
712 pi_release(pf->pi);
713 }
714
715 } else
716 for (unit = 0; unit < PF_UNITS; unit++, pf++) {
717 int *conf = *drives[unit];
718 if (!conf[D_PRT])
719 continue;
720 if (pi_init(pf->pi, 0, conf[D_PRT], conf[D_MOD],
721 conf[D_UNI], conf[D_PRO], conf[D_DLY],
722 pf_scratch, PI_PF, verbose, pf->name)) {
8e53cfc8 723 if (pf->disk && !pf_probe(pf)) {
1da177e4
LT
724 pf->present = 1;
725 k++;
726 } else
727 pi_release(pf->pi);
728 }
729 }
730 if (k)
731 return 0;
732
733 printk("%s: No ATAPI disk detected\n", name);
734 for (pf = units, unit = 0; unit < PF_UNITS; pf++, unit++)
735 put_disk(pf->disk);
736 return -1;
737}
738
739/* The i/o request engine */
740
741static int pf_start(struct pf_unit *pf, int cmd, int b, int c)
742{
743 int i;
744 char io_cmd[12] = { cmd, pf->lun << 5, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
745
746 for (i = 0; i < 4; i++) {
747 io_cmd[5 - i] = b & 0xff;
748 b = b >> 8;
749 }
750
751 io_cmd[8] = c & 0xff;
752 io_cmd[7] = (c >> 8) & 0xff;
753
754 i = pf_command(pf, io_cmd, c * 512, "start i/o");
755
756 mdelay(1);
757
758 return i;
759}
760
761static int pf_ready(void)
762{
763 return (((status_reg(pf_current) & (STAT_BUSY | pf_mask)) == pf_mask));
764}
765
766static struct request_queue *pf_queue;
767
f06d9a2b 768static void pf_end_request(int err)
9564df1f 769{
b12d4f82 770 if (pf_req && !__blk_end_request_cur(pf_req, err))
9564df1f 771 pf_req = NULL;
9564df1f
JA
772}
773
165125e1 774static void do_pf_request(struct request_queue * q)
1da177e4
LT
775{
776 if (pf_busy)
777 return;
778repeat:
b12d4f82 779 if (!pf_req) {
9934c8c0 780 pf_req = blk_fetch_request(q);
b12d4f82
TH
781 if (!pf_req)
782 return;
b12d4f82 783 }
1da177e4
LT
784
785 pf_current = pf_req->rq_disk->private_data;
83096ebf
TH
786 pf_block = blk_rq_pos(pf_req);
787 pf_run = blk_rq_sectors(pf_req);
788 pf_count = blk_rq_cur_sectors(pf_req);
1da177e4
LT
789
790 if (pf_block + pf_count > get_capacity(pf_req->rq_disk)) {
f06d9a2b 791 pf_end_request(-EIO);
1da177e4
LT
792 goto repeat;
793 }
794
795 pf_cmd = rq_data_dir(pf_req);
796 pf_buf = pf_req->buffer;
797 pf_retries = 0;
798
799 pf_busy = 1;
800 if (pf_cmd == READ)
801 pi_do_claimed(pf_current->pi, do_pf_read);
802 else if (pf_cmd == WRITE)
803 pi_do_claimed(pf_current->pi, do_pf_write);
804 else {
805 pf_busy = 0;
f06d9a2b 806 pf_end_request(-EIO);
1da177e4
LT
807 goto repeat;
808 }
809}
810
811static int pf_next_buf(void)
812{
813 unsigned long saved_flags;
814
815 pf_count--;
816 pf_run--;
817 pf_buf += 512;
818 pf_block++;
819 if (!pf_run)
1da177e4 820 return 1;
e62aa046
OZ
821 if (!pf_count) {
822 spin_lock_irqsave(&pf_spin_lock, saved_flags);
f06d9a2b 823 pf_end_request(0);
e62aa046
OZ
824 spin_unlock_irqrestore(&pf_spin_lock, saved_flags);
825 if (!pf_req)
826 return 1;
83096ebf 827 pf_count = blk_rq_cur_sectors(pf_req);
e62aa046
OZ
828 pf_buf = pf_req->buffer;
829 }
830 return 0;
1da177e4
LT
831}
832
f06d9a2b 833static inline void next_request(int err)
1da177e4
LT
834{
835 unsigned long saved_flags;
836
837 spin_lock_irqsave(&pf_spin_lock, saved_flags);
f06d9a2b 838 pf_end_request(err);
1da177e4
LT
839 pf_busy = 0;
840 do_pf_request(pf_queue);
841 spin_unlock_irqrestore(&pf_spin_lock, saved_flags);
842}
843
844/* detach from the calling context - in case the spinlock is held */
845static void do_pf_read(void)
846{
847 ps_set_intr(do_pf_read_start, NULL, 0, nice);
848}
849
850static void do_pf_read_start(void)
851{
852 pf_busy = 1;
853
854 if (pf_start(pf_current, ATAPI_READ_10, pf_block, pf_run)) {
855 pi_disconnect(pf_current->pi);
856 if (pf_retries < PF_MAX_RETRIES) {
857 pf_retries++;
858 pi_do_claimed(pf_current->pi, do_pf_read_start);
859 return;
860 }
f06d9a2b 861 next_request(-EIO);
1da177e4
LT
862 return;
863 }
864 pf_mask = STAT_DRQ;
865 ps_set_intr(do_pf_read_drq, pf_ready, PF_TMO, nice);
866}
867
868static void do_pf_read_drq(void)
869{
870 while (1) {
871 if (pf_wait(pf_current, STAT_BUSY, STAT_DRQ | STAT_ERR,
872 "read block", "completion") & STAT_ERR) {
873 pi_disconnect(pf_current->pi);
874 if (pf_retries < PF_MAX_RETRIES) {
875 pf_req_sense(pf_current, 0);
876 pf_retries++;
877 pi_do_claimed(pf_current->pi, do_pf_read_start);
878 return;
879 }
f06d9a2b 880 next_request(-EIO);
1da177e4
LT
881 return;
882 }
883 pi_read_block(pf_current->pi, pf_buf, 512);
884 if (pf_next_buf())
885 break;
886 }
887 pi_disconnect(pf_current->pi);
f06d9a2b 888 next_request(0);
1da177e4
LT
889}
890
891static void do_pf_write(void)
892{
893 ps_set_intr(do_pf_write_start, NULL, 0, nice);
894}
895
896static void do_pf_write_start(void)
897{
898 pf_busy = 1;
899
900 if (pf_start(pf_current, ATAPI_WRITE_10, pf_block, pf_run)) {
901 pi_disconnect(pf_current->pi);
902 if (pf_retries < PF_MAX_RETRIES) {
903 pf_retries++;
904 pi_do_claimed(pf_current->pi, do_pf_write_start);
905 return;
906 }
f06d9a2b 907 next_request(-EIO);
1da177e4
LT
908 return;
909 }
910
911 while (1) {
912 if (pf_wait(pf_current, STAT_BUSY, STAT_DRQ | STAT_ERR,
913 "write block", "data wait") & STAT_ERR) {
914 pi_disconnect(pf_current->pi);
915 if (pf_retries < PF_MAX_RETRIES) {
916 pf_retries++;
917 pi_do_claimed(pf_current->pi, do_pf_write_start);
918 return;
919 }
f06d9a2b 920 next_request(-EIO);
1da177e4
LT
921 return;
922 }
923 pi_write_block(pf_current->pi, pf_buf, 512);
924 if (pf_next_buf())
925 break;
926 }
927 pf_mask = 0;
928 ps_set_intr(do_pf_write_done, pf_ready, PF_TMO, nice);
929}
930
931static void do_pf_write_done(void)
932{
933 if (pf_wait(pf_current, STAT_BUSY, 0, "write block", "done") & STAT_ERR) {
934 pi_disconnect(pf_current->pi);
935 if (pf_retries < PF_MAX_RETRIES) {
936 pf_retries++;
937 pi_do_claimed(pf_current->pi, do_pf_write_start);
938 return;
939 }
f06d9a2b 940 next_request(-EIO);
1da177e4
LT
941 return;
942 }
943 pi_disconnect(pf_current->pi);
f06d9a2b 944 next_request(0);
1da177e4
LT
945}
946
947static int __init pf_init(void)
948{ /* preliminary initialisation */
949 struct pf_unit *pf;
950 int unit;
951
952 if (disable)
8bca98ca 953 return -EINVAL;
1da177e4
LT
954
955 pf_init_units();
956
957 if (pf_detect())
8bca98ca 958 return -ENODEV;
1da177e4
LT
959 pf_busy = 0;
960
961 if (register_blkdev(major, name)) {
962 for (pf = units, unit = 0; unit < PF_UNITS; pf++, unit++)
963 put_disk(pf->disk);
8bca98ca 964 return -EBUSY;
1da177e4
LT
965 }
966 pf_queue = blk_init_queue(do_pf_request, &pf_spin_lock);
967 if (!pf_queue) {
968 unregister_blkdev(major, name);
969 for (pf = units, unit = 0; unit < PF_UNITS; pf++, unit++)
970 put_disk(pf->disk);
8bca98ca 971 return -ENOMEM;
1da177e4
LT
972 }
973
8a78362c 974 blk_queue_max_segments(pf_queue, cluster);
1da177e4
LT
975
976 for (pf = units, unit = 0; unit < PF_UNITS; pf++, unit++) {
977 struct gendisk *disk = pf->disk;
978
979 if (!pf->present)
980 continue;
981 disk->private_data = pf;
982 disk->queue = pf_queue;
983 add_disk(disk);
984 }
985 return 0;
986}
987
988static void __exit pf_exit(void)
989{
990 struct pf_unit *pf;
991 int unit;
992 unregister_blkdev(major, name);
993 for (pf = units, unit = 0; unit < PF_UNITS; pf++, unit++) {
994 if (!pf->present)
995 continue;
996 del_gendisk(pf->disk);
997 put_disk(pf->disk);
998 pi_release(pf->pi);
999 }
1000 blk_cleanup_queue(pf_queue);
1001}
1002
1003MODULE_LICENSE("GPL");
1004module_init(pf_init)
1005module_exit(pf_exit)