Linux-2.6.12-rc2
[linux-2.6/linux-acpi-2.6/ibm-acpi-2.6.git] / drivers / block / paride / pf.c
blob060b1f2a91ddcec82c36d70d3ea383080b58033e
1 /*
2 pf.c (c) 1997-8 Grant R. Guenther <grant@torque.net>
3 Under the terms of the GNU General Public License.
5 This is the high-level driver for parallel port ATAPI disk
6 drives based on chips supported by the paride module.
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.
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:
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>
21 Where,
23 <prt> is the base of the parallel port address for
24 the corresponding drive. (required)
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)
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)
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)
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.
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)
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)
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.
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").
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)
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)
84 nice This parameter controls the driver's use of
85 idle CPU time, at the expense of some speed.
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:
91 pf.drive0
92 pf.drive1
93 pf.drive2
94 pf.drive3
95 pf.cluster
96 pf.nice
98 In addition, you can use the parameter pf.disable to disable
99 the driver entirely.
103 /* Changes:
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
116 #define PF_VERSION "1.04"
117 #define PF_MAJOR 47
118 #define PF_NAME "pf"
119 #define PF_UNITS 4
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.
127 static int verbose = 0;
128 static int major = PF_MAJOR;
129 static char *name = PF_NAME;
130 static int cluster = 64;
131 static int nice = 0;
132 static int disable = 0;
134 static int drive0[7] = { 0, 0, 0, -1, -1, -1, -1 };
135 static int drive1[7] = { 0, 0, 0, -1, -1, -1, -1 };
136 static int drive2[7] = { 0, 0, 0, -1, -1, -1, -1 };
137 static int drive3[7] = { 0, 0, 0, -1, -1, -1, -1 };
139 static int (*drives[4])[7] = {&drive0, &drive1, &drive2, &drive3};
140 static int pf_drive_count;
142 enum {D_PRT, D_PRO, D_UNI, D_MOD, D_SLV, D_LUN, D_DLY};
144 /* end of parameters */
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>
155 #include <asm/uaccess.h>
157 static spinlock_t pf_spin_lock;
159 module_param(verbose, bool, 0644);
160 module_param(major, int, 0);
161 module_param(name, charp, 0);
162 module_param(cluster, int, 0);
163 module_param(nice, int, 0);
164 module_param_array(drive0, int, NULL, 0);
165 module_param_array(drive1, int, NULL, 0);
166 module_param_array(drive2, int, NULL, 0);
167 module_param_array(drive3, int, NULL, 0);
169 #include "paride.h"
170 #include "pseudo.h"
172 /* constants for faking geometry numbers */
174 #define PF_FD_MAX 8192 /* use FD geometry under this size */
175 #define PF_FD_HDS 2
176 #define PF_FD_SPT 18
177 #define PF_HD_HDS 64
178 #define PF_HD_SPT 32
180 #define PF_MAX_RETRIES 5
181 #define PF_TMO 800 /* interrupt timeout in jiffies */
182 #define PF_SPIN_DEL 50 /* spin delay in micro-seconds */
184 #define PF_SPIN (1000000*PF_TMO)/(HZ*PF_SPIN_DEL)
186 #define STAT_ERR 0x00001
187 #define STAT_INDEX 0x00002
188 #define STAT_ECC 0x00004
189 #define STAT_DRQ 0x00008
190 #define STAT_SEEK 0x00010
191 #define STAT_WRERR 0x00020
192 #define STAT_READY 0x00040
193 #define STAT_BUSY 0x00080
195 #define ATAPI_REQ_SENSE 0x03
196 #define ATAPI_LOCK 0x1e
197 #define ATAPI_DOOR 0x1b
198 #define ATAPI_MODE_SENSE 0x5a
199 #define ATAPI_CAPACITY 0x25
200 #define ATAPI_IDENTIFY 0x12
201 #define ATAPI_READ_10 0x28
202 #define ATAPI_WRITE_10 0x2a
204 static int pf_open(struct inode *inode, struct file *file);
205 static void do_pf_request(request_queue_t * q);
206 static int pf_ioctl(struct inode *inode, struct file *file,
207 unsigned int cmd, unsigned long arg);
209 static int pf_release(struct inode *inode, struct file *file);
211 static int pf_detect(void);
212 static void do_pf_read(void);
213 static void do_pf_read_start(void);
214 static void do_pf_write(void);
215 static void do_pf_write_start(void);
216 static void do_pf_read_drq(void);
217 static void do_pf_write_done(void);
219 #define PF_NM 0
220 #define PF_RO 1
221 #define PF_RW 2
223 #define PF_NAMELEN 8
225 struct pf_unit {
226 struct pi_adapter pia; /* interface to paride layer */
227 struct pi_adapter *pi;
228 int removable; /* removable media device ? */
229 int media_status; /* media present ? WP ? */
230 int drive; /* drive */
231 int lun;
232 int access; /* count of active opens ... */
233 int present; /* device present ? */
234 char name[PF_NAMELEN]; /* pf0, pf1, ... */
235 struct gendisk *disk;
238 static struct pf_unit units[PF_UNITS];
240 static int pf_identify(struct pf_unit *pf);
241 static void pf_lock(struct pf_unit *pf, int func);
242 static void pf_eject(struct pf_unit *pf);
243 static int pf_check_media(struct gendisk *disk);
245 static char pf_scratch[512]; /* scratch block buffer */
247 /* the variables below are used mainly in the I/O request engine, which
248 processes only one request at a time.
251 static int pf_retries = 0; /* i/o error retry count */
252 static int pf_busy = 0; /* request being processed ? */
253 static struct request *pf_req; /* current request */
254 static int pf_block; /* address of next requested block */
255 static int pf_count; /* number of blocks still to do */
256 static int pf_run; /* sectors in current cluster */
257 static int pf_cmd; /* current command READ/WRITE */
258 static struct pf_unit *pf_current;/* unit of current request */
259 static int pf_mask; /* stopper for pseudo-int */
260 static char *pf_buf; /* buffer for request in progress */
262 /* kernel glue structures */
264 static struct block_device_operations pf_fops = {
265 .owner = THIS_MODULE,
266 .open = pf_open,
267 .release = pf_release,
268 .ioctl = pf_ioctl,
269 .media_changed = pf_check_media,
272 static void __init pf_init_units(void)
274 struct pf_unit *pf;
275 int unit;
277 pf_drive_count = 0;
278 for (unit = 0, pf = units; unit < PF_UNITS; unit++, pf++) {
279 struct gendisk *disk = alloc_disk(1);
280 if (!disk)
281 continue;
282 pf->disk = disk;
283 pf->pi = &pf->pia;
284 pf->media_status = PF_NM;
285 pf->drive = (*drives[unit])[D_SLV];
286 pf->lun = (*drives[unit])[D_LUN];
287 snprintf(pf->name, PF_NAMELEN, "%s%d", name, unit);
288 disk->major = major;
289 disk->first_minor = unit;
290 strcpy(disk->disk_name, pf->name);
291 disk->fops = &pf_fops;
292 if (!(*drives[unit])[D_PRT])
293 pf_drive_count++;
297 static int pf_open(struct inode *inode, struct file *file)
299 struct pf_unit *pf = inode->i_bdev->bd_disk->private_data;
301 pf_identify(pf);
303 if (pf->media_status == PF_NM)
304 return -ENODEV;
306 if ((pf->media_status == PF_RO) && (file->f_mode & 2))
307 return -EROFS;
309 pf->access++;
310 if (pf->removable)
311 pf_lock(pf, 1);
313 return 0;
316 static int pf_ioctl(struct inode *inode, struct file *file, unsigned int cmd, unsigned long arg)
318 struct pf_unit *pf = inode->i_bdev->bd_disk->private_data;
319 struct hd_geometry __user *geo = (struct hd_geometry __user *) arg;
320 struct hd_geometry g;
321 sector_t capacity;
323 if (cmd == CDROMEJECT) {
324 if (pf->access == 1) {
325 pf_eject(pf);
326 return 0;
328 return -EBUSY;
330 if (cmd != HDIO_GETGEO)
331 return -EINVAL;
332 capacity = get_capacity(pf->disk);
333 if (capacity < PF_FD_MAX) {
334 g.cylinders = sector_div(capacity, PF_FD_HDS * PF_FD_SPT);
335 g.heads = PF_FD_HDS;
336 g.sectors = PF_FD_SPT;
337 } else {
338 g.cylinders = sector_div(capacity, PF_HD_HDS * PF_HD_SPT);
339 g.heads = PF_HD_HDS;
340 g.sectors = PF_HD_SPT;
342 if (copy_to_user(geo, &g, sizeof(g)))
343 return -EFAULT;
344 return 0;
347 static int pf_release(struct inode *inode, struct file *file)
349 struct pf_unit *pf = inode->i_bdev->bd_disk->private_data;
351 if (pf->access <= 0)
352 return -EINVAL;
354 pf->access--;
356 if (!pf->access && pf->removable)
357 pf_lock(pf, 0);
359 return 0;
363 static int pf_check_media(struct gendisk *disk)
365 return 1;
368 static inline int status_reg(struct pf_unit *pf)
370 return pi_read_regr(pf->pi, 1, 6);
373 static inline int read_reg(struct pf_unit *pf, int reg)
375 return pi_read_regr(pf->pi, 0, reg);
378 static inline void write_reg(struct pf_unit *pf, int reg, int val)
380 pi_write_regr(pf->pi, 0, reg, val);
383 static int pf_wait(struct pf_unit *pf, int go, int stop, char *fun, char *msg)
385 int j, r, e, s, p;
387 j = 0;
388 while ((((r = status_reg(pf)) & go) || (stop && (!(r & stop))))
389 && (j++ < PF_SPIN))
390 udelay(PF_SPIN_DEL);
392 if ((r & (STAT_ERR & stop)) || (j >= PF_SPIN)) {
393 s = read_reg(pf, 7);
394 e = read_reg(pf, 1);
395 p = read_reg(pf, 2);
396 if (j >= PF_SPIN)
397 e |= 0x100;
398 if (fun)
399 printk("%s: %s %s: alt=0x%x stat=0x%x err=0x%x"
400 " loop=%d phase=%d\n",
401 pf->name, fun, msg, r, s, e, j, p);
402 return (e << 8) + s;
404 return 0;
407 static int pf_command(struct pf_unit *pf, char *cmd, int dlen, char *fun)
409 pi_connect(pf->pi);
411 write_reg(pf, 6, 0xa0+0x10*pf->drive);
413 if (pf_wait(pf, STAT_BUSY | STAT_DRQ, 0, fun, "before command")) {
414 pi_disconnect(pf->pi);
415 return -1;
418 write_reg(pf, 4, dlen % 256);
419 write_reg(pf, 5, dlen / 256);
420 write_reg(pf, 7, 0xa0); /* ATAPI packet command */
422 if (pf_wait(pf, STAT_BUSY, STAT_DRQ, fun, "command DRQ")) {
423 pi_disconnect(pf->pi);
424 return -1;
427 if (read_reg(pf, 2) != 1) {
428 printk("%s: %s: command phase error\n", pf->name, fun);
429 pi_disconnect(pf->pi);
430 return -1;
433 pi_write_block(pf->pi, cmd, 12);
435 return 0;
438 static int pf_completion(struct pf_unit *pf, char *buf, char *fun)
440 int r, s, n;
442 r = pf_wait(pf, STAT_BUSY, STAT_DRQ | STAT_READY | STAT_ERR,
443 fun, "completion");
445 if ((read_reg(pf, 2) & 2) && (read_reg(pf, 7) & STAT_DRQ)) {
446 n = (((read_reg(pf, 4) + 256 * read_reg(pf, 5)) +
447 3) & 0xfffc);
448 pi_read_block(pf->pi, buf, n);
451 s = pf_wait(pf, STAT_BUSY, STAT_READY | STAT_ERR, fun, "data done");
453 pi_disconnect(pf->pi);
455 return (r ? r : s);
458 static void pf_req_sense(struct pf_unit *pf, int quiet)
460 char rs_cmd[12] =
461 { ATAPI_REQ_SENSE, pf->lun << 5, 0, 0, 16, 0, 0, 0, 0, 0, 0, 0 };
462 char buf[16];
463 int r;
465 r = pf_command(pf, rs_cmd, 16, "Request sense");
466 mdelay(1);
467 if (!r)
468 pf_completion(pf, buf, "Request sense");
470 if ((!r) && (!quiet))
471 printk("%s: Sense key: %x, ASC: %x, ASQ: %x\n",
472 pf->name, buf[2] & 0xf, buf[12], buf[13]);
475 static int pf_atapi(struct pf_unit *pf, char *cmd, int dlen, char *buf, char *fun)
477 int r;
479 r = pf_command(pf, cmd, dlen, fun);
480 mdelay(1);
481 if (!r)
482 r = pf_completion(pf, buf, fun);
483 if (r)
484 pf_req_sense(pf, !fun);
486 return r;
489 #define DBMSG(msg) ((verbose>1)?(msg):NULL)
491 static void pf_lock(struct pf_unit *pf, int func)
493 char lo_cmd[12] = { ATAPI_LOCK, pf->lun << 5, 0, 0, func, 0, 0, 0, 0, 0, 0, 0 };
495 pf_atapi(pf, lo_cmd, 0, pf_scratch, func ? "unlock" : "lock");
498 static void pf_eject(struct pf_unit *pf)
500 char ej_cmd[12] = { ATAPI_DOOR, pf->lun << 5, 0, 0, 2, 0, 0, 0, 0, 0, 0, 0 };
502 pf_lock(pf, 0);
503 pf_atapi(pf, ej_cmd, 0, pf_scratch, "eject");
506 #define PF_RESET_TMO 30 /* in tenths of a second */
508 static void pf_sleep(int cs)
510 current->state = TASK_INTERRUPTIBLE;
511 schedule_timeout(cs);
514 /* the ATAPI standard actually specifies the contents of all 7 registers
515 after a reset, but the specification is ambiguous concerning the last
516 two bytes, and different drives interpret the standard differently.
519 static int pf_reset(struct pf_unit *pf)
521 int i, k, flg;
522 int expect[5] = { 1, 1, 1, 0x14, 0xeb };
524 pi_connect(pf->pi);
525 write_reg(pf, 6, 0xa0+0x10*pf->drive);
526 write_reg(pf, 7, 8);
528 pf_sleep(20 * HZ / 1000);
530 k = 0;
531 while ((k++ < PF_RESET_TMO) && (status_reg(pf) & STAT_BUSY))
532 pf_sleep(HZ / 10);
534 flg = 1;
535 for (i = 0; i < 5; i++)
536 flg &= (read_reg(pf, i + 1) == expect[i]);
538 if (verbose) {
539 printk("%s: Reset (%d) signature = ", pf->name, k);
540 for (i = 0; i < 5; i++)
541 printk("%3x", read_reg(pf, i + 1));
542 if (!flg)
543 printk(" (incorrect)");
544 printk("\n");
547 pi_disconnect(pf->pi);
548 return flg - 1;
551 static void pf_mode_sense(struct pf_unit *pf)
553 char ms_cmd[12] =
554 { ATAPI_MODE_SENSE, pf->lun << 5, 0, 0, 0, 0, 0, 0, 8, 0, 0, 0 };
555 char buf[8];
557 pf_atapi(pf, ms_cmd, 8, buf, DBMSG("mode sense"));
558 pf->media_status = PF_RW;
559 if (buf[3] & 0x80)
560 pf->media_status = PF_RO;
563 static void xs(char *buf, char *targ, int offs, int len)
565 int j, k, l;
567 j = 0;
568 l = 0;
569 for (k = 0; k < len; k++)
570 if ((buf[k + offs] != 0x20) || (buf[k + offs] != l))
571 l = targ[j++] = buf[k + offs];
572 if (l == 0x20)
573 j--;
574 targ[j] = 0;
577 static int xl(char *buf, int offs)
579 int v, k;
581 v = 0;
582 for (k = 0; k < 4; k++)
583 v = v * 256 + (buf[k + offs] & 0xff);
584 return v;
587 static void pf_get_capacity(struct pf_unit *pf)
589 char rc_cmd[12] = { ATAPI_CAPACITY, pf->lun << 5, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
590 char buf[8];
591 int bs;
593 if (pf_atapi(pf, rc_cmd, 8, buf, DBMSG("get capacity"))) {
594 pf->media_status = PF_NM;
595 return;
597 set_capacity(pf->disk, xl(buf, 0) + 1);
598 bs = xl(buf, 4);
599 if (bs != 512) {
600 set_capacity(pf->disk, 0);
601 if (verbose)
602 printk("%s: Drive %d, LUN %d,"
603 " unsupported block size %d\n",
604 pf->name, pf->drive, pf->lun, bs);
608 static int pf_identify(struct pf_unit *pf)
610 int dt, s;
611 char *ms[2] = { "master", "slave" };
612 char mf[10], id[18];
613 char id_cmd[12] =
614 { ATAPI_IDENTIFY, pf->lun << 5, 0, 0, 36, 0, 0, 0, 0, 0, 0, 0 };
615 char buf[36];
617 s = pf_atapi(pf, id_cmd, 36, buf, "identify");
618 if (s)
619 return -1;
621 dt = buf[0] & 0x1f;
622 if ((dt != 0) && (dt != 7)) {
623 if (verbose)
624 printk("%s: Drive %d, LUN %d, unsupported type %d\n",
625 pf->name, pf->drive, pf->lun, dt);
626 return -1;
629 xs(buf, mf, 8, 8);
630 xs(buf, id, 16, 16);
632 pf->removable = (buf[1] & 0x80);
634 pf_mode_sense(pf);
635 pf_mode_sense(pf);
636 pf_mode_sense(pf);
638 pf_get_capacity(pf);
640 printk("%s: %s %s, %s LUN %d, type %d",
641 pf->name, mf, id, ms[pf->drive], pf->lun, dt);
642 if (pf->removable)
643 printk(", removable");
644 if (pf->media_status == PF_NM)
645 printk(", no media\n");
646 else {
647 if (pf->media_status == PF_RO)
648 printk(", RO");
649 printk(", %llu blocks\n",
650 (unsigned long long)get_capacity(pf->disk));
652 return 0;
655 /* returns 0, with id set if drive is detected
656 -1, if drive detection failed
658 static int pf_probe(struct pf_unit *pf)
660 if (pf->drive == -1) {
661 for (pf->drive = 0; pf->drive <= 1; pf->drive++)
662 if (!pf_reset(pf)) {
663 if (pf->lun != -1)
664 return pf_identify(pf);
665 else
666 for (pf->lun = 0; pf->lun < 8; pf->lun++)
667 if (!pf_identify(pf))
668 return 0;
670 } else {
671 if (pf_reset(pf))
672 return -1;
673 if (pf->lun != -1)
674 return pf_identify(pf);
675 for (pf->lun = 0; pf->lun < 8; pf->lun++)
676 if (!pf_identify(pf))
677 return 0;
679 return -1;
682 static int pf_detect(void)
684 struct pf_unit *pf = units;
685 int k, unit;
687 printk("%s: %s version %s, major %d, cluster %d, nice %d\n",
688 name, name, PF_VERSION, major, cluster, nice);
690 k = 0;
691 if (pf_drive_count == 0) {
692 if (pi_init(pf->pi, 1, -1, -1, -1, -1, -1, pf_scratch, PI_PF,
693 verbose, pf->name)) {
694 if (!pf_probe(pf) && pf->disk) {
695 pf->present = 1;
696 k++;
697 } else
698 pi_release(pf->pi);
701 } else
702 for (unit = 0; unit < PF_UNITS; unit++, pf++) {
703 int *conf = *drives[unit];
704 if (!conf[D_PRT])
705 continue;
706 if (pi_init(pf->pi, 0, conf[D_PRT], conf[D_MOD],
707 conf[D_UNI], conf[D_PRO], conf[D_DLY],
708 pf_scratch, PI_PF, verbose, pf->name)) {
709 if (!pf_probe(pf) && pf->disk) {
710 pf->present = 1;
711 k++;
712 } else
713 pi_release(pf->pi);
716 if (k)
717 return 0;
719 printk("%s: No ATAPI disk detected\n", name);
720 for (pf = units, unit = 0; unit < PF_UNITS; pf++, unit++)
721 put_disk(pf->disk);
722 return -1;
725 /* The i/o request engine */
727 static int pf_start(struct pf_unit *pf, int cmd, int b, int c)
729 int i;
730 char io_cmd[12] = { cmd, pf->lun << 5, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
732 for (i = 0; i < 4; i++) {
733 io_cmd[5 - i] = b & 0xff;
734 b = b >> 8;
737 io_cmd[8] = c & 0xff;
738 io_cmd[7] = (c >> 8) & 0xff;
740 i = pf_command(pf, io_cmd, c * 512, "start i/o");
742 mdelay(1);
744 return i;
747 static int pf_ready(void)
749 return (((status_reg(pf_current) & (STAT_BUSY | pf_mask)) == pf_mask));
752 static struct request_queue *pf_queue;
754 static void do_pf_request(request_queue_t * q)
756 if (pf_busy)
757 return;
758 repeat:
759 pf_req = elv_next_request(q);
760 if (!pf_req)
761 return;
763 pf_current = pf_req->rq_disk->private_data;
764 pf_block = pf_req->sector;
765 pf_run = pf_req->nr_sectors;
766 pf_count = pf_req->current_nr_sectors;
768 if (pf_block + pf_count > get_capacity(pf_req->rq_disk)) {
769 end_request(pf_req, 0);
770 goto repeat;
773 pf_cmd = rq_data_dir(pf_req);
774 pf_buf = pf_req->buffer;
775 pf_retries = 0;
777 pf_busy = 1;
778 if (pf_cmd == READ)
779 pi_do_claimed(pf_current->pi, do_pf_read);
780 else if (pf_cmd == WRITE)
781 pi_do_claimed(pf_current->pi, do_pf_write);
782 else {
783 pf_busy = 0;
784 end_request(pf_req, 0);
785 goto repeat;
789 static int pf_next_buf(void)
791 unsigned long saved_flags;
793 pf_count--;
794 pf_run--;
795 pf_buf += 512;
796 pf_block++;
797 if (!pf_run)
798 return 0;
799 if (!pf_count)
800 return 1;
801 spin_lock_irqsave(&pf_spin_lock, saved_flags);
802 end_request(pf_req, 1);
803 pf_count = pf_req->current_nr_sectors;
804 pf_buf = pf_req->buffer;
805 spin_unlock_irqrestore(&pf_spin_lock, saved_flags);
806 return 1;
809 static inline void next_request(int success)
811 unsigned long saved_flags;
813 spin_lock_irqsave(&pf_spin_lock, saved_flags);
814 end_request(pf_req, success);
815 pf_busy = 0;
816 do_pf_request(pf_queue);
817 spin_unlock_irqrestore(&pf_spin_lock, saved_flags);
820 /* detach from the calling context - in case the spinlock is held */
821 static void do_pf_read(void)
823 ps_set_intr(do_pf_read_start, NULL, 0, nice);
826 static void do_pf_read_start(void)
828 pf_busy = 1;
830 if (pf_start(pf_current, ATAPI_READ_10, pf_block, pf_run)) {
831 pi_disconnect(pf_current->pi);
832 if (pf_retries < PF_MAX_RETRIES) {
833 pf_retries++;
834 pi_do_claimed(pf_current->pi, do_pf_read_start);
835 return;
837 next_request(0);
838 return;
840 pf_mask = STAT_DRQ;
841 ps_set_intr(do_pf_read_drq, pf_ready, PF_TMO, nice);
844 static void do_pf_read_drq(void)
846 while (1) {
847 if (pf_wait(pf_current, STAT_BUSY, STAT_DRQ | STAT_ERR,
848 "read block", "completion") & STAT_ERR) {
849 pi_disconnect(pf_current->pi);
850 if (pf_retries < PF_MAX_RETRIES) {
851 pf_req_sense(pf_current, 0);
852 pf_retries++;
853 pi_do_claimed(pf_current->pi, do_pf_read_start);
854 return;
856 next_request(0);
857 return;
859 pi_read_block(pf_current->pi, pf_buf, 512);
860 if (pf_next_buf())
861 break;
863 pi_disconnect(pf_current->pi);
864 next_request(1);
867 static void do_pf_write(void)
869 ps_set_intr(do_pf_write_start, NULL, 0, nice);
872 static void do_pf_write_start(void)
874 pf_busy = 1;
876 if (pf_start(pf_current, ATAPI_WRITE_10, pf_block, pf_run)) {
877 pi_disconnect(pf_current->pi);
878 if (pf_retries < PF_MAX_RETRIES) {
879 pf_retries++;
880 pi_do_claimed(pf_current->pi, do_pf_write_start);
881 return;
883 next_request(0);
884 return;
887 while (1) {
888 if (pf_wait(pf_current, STAT_BUSY, STAT_DRQ | STAT_ERR,
889 "write block", "data wait") & STAT_ERR) {
890 pi_disconnect(pf_current->pi);
891 if (pf_retries < PF_MAX_RETRIES) {
892 pf_retries++;
893 pi_do_claimed(pf_current->pi, do_pf_write_start);
894 return;
896 next_request(0);
897 return;
899 pi_write_block(pf_current->pi, pf_buf, 512);
900 if (pf_next_buf())
901 break;
903 pf_mask = 0;
904 ps_set_intr(do_pf_write_done, pf_ready, PF_TMO, nice);
907 static void do_pf_write_done(void)
909 if (pf_wait(pf_current, STAT_BUSY, 0, "write block", "done") & STAT_ERR) {
910 pi_disconnect(pf_current->pi);
911 if (pf_retries < PF_MAX_RETRIES) {
912 pf_retries++;
913 pi_do_claimed(pf_current->pi, do_pf_write_start);
914 return;
916 next_request(0);
917 return;
919 pi_disconnect(pf_current->pi);
920 next_request(1);
923 static int __init pf_init(void)
924 { /* preliminary initialisation */
925 struct pf_unit *pf;
926 int unit;
928 if (disable)
929 return -1;
931 pf_init_units();
933 if (pf_detect())
934 return -1;
935 pf_busy = 0;
937 if (register_blkdev(major, name)) {
938 for (pf = units, unit = 0; unit < PF_UNITS; pf++, unit++)
939 put_disk(pf->disk);
940 return -1;
942 pf_queue = blk_init_queue(do_pf_request, &pf_spin_lock);
943 if (!pf_queue) {
944 unregister_blkdev(major, name);
945 for (pf = units, unit = 0; unit < PF_UNITS; pf++, unit++)
946 put_disk(pf->disk);
947 return -1;
950 blk_queue_max_phys_segments(pf_queue, cluster);
951 blk_queue_max_hw_segments(pf_queue, cluster);
953 for (pf = units, unit = 0; unit < PF_UNITS; pf++, unit++) {
954 struct gendisk *disk = pf->disk;
956 if (!pf->present)
957 continue;
958 disk->private_data = pf;
959 disk->queue = pf_queue;
960 add_disk(disk);
962 return 0;
965 static void __exit pf_exit(void)
967 struct pf_unit *pf;
968 int unit;
969 unregister_blkdev(major, name);
970 for (pf = units, unit = 0; unit < PF_UNITS; pf++, unit++) {
971 if (!pf->present)
972 continue;
973 del_gendisk(pf->disk);
974 put_disk(pf->disk);
975 pi_release(pf->pi);
977 blk_cleanup_queue(pf_queue);
980 MODULE_LICENSE("GPL");
981 module_init(pf_init)
982 module_exit(pf_exit)