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1 /*
2  * IDE ATAPI streaming tape driver.
3  *
4  * Copyright (C) 1995-1999  Gadi Oxman <gadio@netvision.net.il>
5  * Copyright (C) 2003-2005  Bartlomiej Zolnierkiewicz
6  *
7  * This driver was constructed as a student project in the software laboratory
8  * of the faculty of electrical engineering in the Technion - Israel's
9  * Institute Of Technology, with the guide of Avner Lottem and Dr. Ilana David.
10  *
11  * It is hereby placed under the terms of the GNU general public license.
12  * (See linux/COPYING).
13  *
14  * For a historical changelog see
15  * Documentation/ide/ChangeLog.ide-tape.1995-2002
16  */
17
18 #define IDETAPE_VERSION "1.20"
19
20 #include <linux/module.h>
21 #include <linux/types.h>
22 #include <linux/string.h>
23 #include <linux/kernel.h>
24 #include <linux/delay.h>
25 #include <linux/timer.h>
26 #include <linux/mm.h>
27 #include <linux/interrupt.h>
28 #include <linux/jiffies.h>
29 #include <linux/major.h>
30 #include <linux/errno.h>
31 #include <linux/genhd.h>
32 #include <linux/slab.h>
33 #include <linux/pci.h>
34 #include <linux/ide.h>
35 #include <linux/smp_lock.h>
36 #include <linux/completion.h>
37 #include <linux/bitops.h>
38 #include <linux/mutex.h>
39 #include <scsi/scsi.h>
40
41 #include <asm/byteorder.h>
42 #include <linux/irq.h>
43 #include <linux/uaccess.h>
44 #include <linux/io.h>
45 #include <asm/unaligned.h>
46 #include <linux/mtio.h>
47
48 enum {
49         /* output errors only */
50         DBG_ERR =               (1 << 0),
51         /* output all sense key/asc */
52         DBG_SENSE =             (1 << 1),
53         /* info regarding all chrdev-related procedures */
54         DBG_CHRDEV =            (1 << 2),
55         /* all remaining procedures */
56         DBG_PROCS =             (1 << 3),
57         /* buffer alloc info (pc_stack & rq_stack) */
58         DBG_PCRQ_STACK =        (1 << 4),
59 };
60
61 /* define to see debug info */
62 #define IDETAPE_DEBUG_LOG               0
63
64 #if IDETAPE_DEBUG_LOG
65 #define debug_log(lvl, fmt, args...)                    \
66 {                                                       \
67         if (tape->debug_mask & lvl)                     \
68         printk(KERN_INFO "ide-tape: " fmt, ## args);    \
69 }
70 #else
71 #define debug_log(lvl, fmt, args...) do {} while (0)
72 #endif
73
74 /**************************** Tunable parameters *****************************/
75 /*
76  * After each failed packet command we issue a request sense command and retry
77  * the packet command IDETAPE_MAX_PC_RETRIES times.
78  *
79  * Setting IDETAPE_MAX_PC_RETRIES to 0 will disable retries.
80  */
81 #define IDETAPE_MAX_PC_RETRIES          3
82
83 /*
84  * With each packet command, we allocate a buffer of IDETAPE_PC_BUFFER_SIZE
85  * bytes. This is used for several packet commands (Not for READ/WRITE commands)
86  */
87 #define IDETAPE_PC_BUFFER_SIZE          256
88
89 /*
90  *      In various places in the driver, we need to allocate storage
91  *      for packet commands and requests, which will remain valid while
92  *      we leave the driver to wait for an interrupt or a timeout event.
93  */
94 #define IDETAPE_PC_STACK                (10 + IDETAPE_MAX_PC_RETRIES)
95
96 /*
97  * Some drives (for example, Seagate STT3401A Travan) require a very long
98  * timeout, because they don't return an interrupt or clear their busy bit
99  * until after the command completes (even retension commands).
100  */
101 #define IDETAPE_WAIT_CMD                (900*HZ)
102
103 /*
104  * The following parameter is used to select the point in the internal tape fifo
105  * in which we will start to refill the buffer. Decreasing the following
106  * parameter will improve the system's latency and interactive response, while
107  * using a high value might improve system throughput.
108  */
109 #define IDETAPE_FIFO_THRESHOLD          2
110
111 /*
112  * DSC polling parameters.
113  *
114  * Polling for DSC (a single bit in the status register) is a very important
115  * function in ide-tape. There are two cases in which we poll for DSC:
116  *
117  * 1. Before a read/write packet command, to ensure that we can transfer data
118  * from/to the tape's data buffers, without causing an actual media access.
119  * In case the tape is not ready yet, we take out our request from the device
120  * request queue, so that ide.c could service requests from the other device
121  * on the same interface in the meantime.
122  *
123  * 2. After the successful initialization of a "media access packet command",
124  * which is a command that can take a long time to complete (the interval can
125  * range from several seconds to even an hour). Again, we postpone our request
126  * in the middle to free the bus for the other device. The polling frequency
127  * here should be lower than the read/write frequency since those media access
128  * commands are slow. We start from a "fast" frequency - IDETAPE_DSC_MA_FAST
129  * (1 second), and if we don't receive DSC after IDETAPE_DSC_MA_THRESHOLD
130  * (5 min), we switch it to a lower frequency - IDETAPE_DSC_MA_SLOW (1 min).
131  *
132  * We also set a timeout for the timer, in case something goes wrong. The
133  * timeout should be longer then the maximum execution time of a tape operation.
134  */
135
136 /* DSC timings. */
137 #define IDETAPE_DSC_RW_MIN              5*HZ/100        /* 50 msec */
138 #define IDETAPE_DSC_RW_MAX              40*HZ/100       /* 400 msec */
139 #define IDETAPE_DSC_RW_TIMEOUT          2*60*HZ         /* 2 minutes */
140 #define IDETAPE_DSC_MA_FAST             2*HZ            /* 2 seconds */
141 #define IDETAPE_DSC_MA_THRESHOLD        5*60*HZ         /* 5 minutes */
142 #define IDETAPE_DSC_MA_SLOW             30*HZ           /* 30 seconds */
143 #define IDETAPE_DSC_MA_TIMEOUT          2*60*60*HZ      /* 2 hours */
144
145 /*************************** End of tunable parameters ***********************/
146
147 /* tape directions */
148 enum {
149         IDETAPE_DIR_NONE  = (1 << 0),
150         IDETAPE_DIR_READ  = (1 << 1),
151         IDETAPE_DIR_WRITE = (1 << 2),
152 };
153
154 struct idetape_bh {
155         u32 b_size;
156         atomic_t b_count;
157         struct idetape_bh *b_reqnext;
158         char *b_data;
159 };
160
161 /* Tape door status */
162 #define DOOR_UNLOCKED                   0
163 #define DOOR_LOCKED                     1
164 #define DOOR_EXPLICITLY_LOCKED          2
165
166 /* Some defines for the SPACE command */
167 #define IDETAPE_SPACE_OVER_FILEMARK     1
168 #define IDETAPE_SPACE_TO_EOD            3
169
170 /* Some defines for the LOAD UNLOAD command */
171 #define IDETAPE_LU_LOAD_MASK            1
172 #define IDETAPE_LU_RETENSION_MASK       2
173 #define IDETAPE_LU_EOT_MASK             4
174
175 /*
176  * Special requests for our block device strategy routine.
177  *
178  * In order to service a character device command, we add special requests to
179  * the tail of our block device request queue and wait for their completion.
180  */
181
182 enum {
183         REQ_IDETAPE_PC1         = (1 << 0), /* packet command (first stage) */
184         REQ_IDETAPE_PC2         = (1 << 1), /* packet command (second stage) */
185         REQ_IDETAPE_READ        = (1 << 2),
186         REQ_IDETAPE_WRITE       = (1 << 3),
187 };
188
189 /* Error codes returned in rq->errors to the higher part of the driver. */
190 #define IDETAPE_ERROR_GENERAL           101
191 #define IDETAPE_ERROR_FILEMARK          102
192 #define IDETAPE_ERROR_EOD               103
193
194 /* Structures related to the SELECT SENSE / MODE SENSE packet commands. */
195 #define IDETAPE_BLOCK_DESCRIPTOR        0
196 #define IDETAPE_CAPABILITIES_PAGE       0x2a
197
198 /* Tape flag bits values. */
199 enum {
200         IDETAPE_FLAG_IGNORE_DSC         = (1 << 0),
201         /* 0 When the tape position is unknown */
202         IDETAPE_FLAG_ADDRESS_VALID      = (1 << 1),
203         /* Device already opened */
204         IDETAPE_FLAG_BUSY               = (1 << 2),
205         /* Attempt to auto-detect the current user block size */
206         IDETAPE_FLAG_DETECT_BS          = (1 << 3),
207         /* Currently on a filemark */
208         IDETAPE_FLAG_FILEMARK           = (1 << 4),
209         /* DRQ interrupt device */
210         IDETAPE_FLAG_DRQ_INTERRUPT      = (1 << 5),
211         /* 0 = no tape is loaded, so we don't rewind after ejecting */
212         IDETAPE_FLAG_MEDIUM_PRESENT     = (1 << 6),
213 };
214
215 /*
216  * Most of our global data which we need to save even as we leave the driver due
217  * to an interrupt or a timer event is stored in the struct defined below.
218  */
219 typedef struct ide_tape_obj {
220         ide_drive_t     *drive;
221         ide_driver_t    *driver;
222         struct gendisk  *disk;
223         struct kref     kref;
224
225         /*
226          *      Since a typical character device operation requires more
227          *      than one packet command, we provide here enough memory
228          *      for the maximum of interconnected packet commands.
229          *      The packet commands are stored in the circular array pc_stack.
230          *      pc_stack_index points to the last used entry, and warps around
231          *      to the start when we get to the last array entry.
232          *
233          *      pc points to the current processed packet command.
234          *
235          *      failed_pc points to the last failed packet command, or contains
236          *      NULL if we do not need to retry any packet command. This is
237          *      required since an additional packet command is needed before the
238          *      retry, to get detailed information on what went wrong.
239          */
240         /* Current packet command */
241         struct ide_atapi_pc *pc;
242         /* Last failed packet command */
243         struct ide_atapi_pc *failed_pc;
244         /* Packet command stack */
245         struct ide_atapi_pc pc_stack[IDETAPE_PC_STACK];
246         /* Next free packet command storage space */
247         int pc_stack_index;
248         struct request rq_stack[IDETAPE_PC_STACK];
249         /* We implement a circular array */
250         int rq_stack_index;
251
252         /*
253          * DSC polling variables.
254          *
255          * While polling for DSC we use postponed_rq to postpone the current
256          * request so that ide.c will be able to service pending requests on the
257          * other device. Note that at most we will have only one DSC (usually
258          * data transfer) request in the device request queue.
259          */
260         struct request *postponed_rq;
261         /* The time in which we started polling for DSC */
262         unsigned long dsc_polling_start;
263         /* Timer used to poll for dsc */
264         struct timer_list dsc_timer;
265         /* Read/Write dsc polling frequency */
266         unsigned long best_dsc_rw_freq;
267         unsigned long dsc_poll_freq;
268         unsigned long dsc_timeout;
269
270         /* Read position information */
271         u8 partition;
272         /* Current block */
273         unsigned int first_frame;
274
275         /* Last error information */
276         u8 sense_key, asc, ascq;
277
278         /* Character device operation */
279         unsigned int minor;
280         /* device name */
281         char name[4];
282         /* Current character device data transfer direction */
283         u8 chrdev_dir;
284
285         /* tape block size, usually 512 or 1024 bytes */
286         unsigned short blk_size;
287         int user_bs_factor;
288
289         /* Copy of the tape's Capabilities and Mechanical Page */
290         u8 caps[20];
291
292         /*
293          * Active data transfer request parameters.
294          *
295          * At most, there is only one ide-tape originated data transfer request
296          * in the device request queue. This allows ide.c to easily service
297          * requests from the other device when we postpone our active request.
298          */
299
300         /* Data buffer size chosen based on the tape's recommendation */
301         int buffer_size;
302         /* merge buffer */
303         struct idetape_bh *merge_bh;
304         /* size of the merge buffer */
305         int merge_bh_size;
306         /* pointer to current buffer head within the merge buffer */
307         struct idetape_bh *bh;
308         char *b_data;
309         int b_count;
310
311         int pages_per_buffer;
312         /* Wasted space in each stage */
313         int excess_bh_size;
314
315         /* Status/Action flags: long for set_bit */
316         unsigned long flags;
317         /* protects the ide-tape queue */
318         spinlock_t lock;
319
320         /* Measures average tape speed */
321         unsigned long avg_time;
322         int avg_size;
323         int avg_speed;
324
325         /* the door is currently locked */
326         int door_locked;
327         /* the tape hardware is write protected */
328         char drv_write_prot;
329         /* the tape is write protected (hardware or opened as read-only) */
330         char write_prot;
331
332         u32 debug_mask;
333 } idetape_tape_t;
334
335 static DEFINE_MUTEX(idetape_ref_mutex);
336
337 static struct class *idetape_sysfs_class;
338
339 #define to_ide_tape(obj) container_of(obj, struct ide_tape_obj, kref)
340
341 #define ide_tape_g(disk) \
342         container_of((disk)->private_data, struct ide_tape_obj, driver)
343
344 static struct ide_tape_obj *ide_tape_get(struct gendisk *disk)
345 {
346         struct ide_tape_obj *tape = NULL;
347
348         mutex_lock(&idetape_ref_mutex);
349         tape = ide_tape_g(disk);
350         if (tape)
351                 kref_get(&tape->kref);
352         mutex_unlock(&idetape_ref_mutex);
353         return tape;
354 }
355
356 static void ide_tape_release(struct kref *);
357
358 static void ide_tape_put(struct ide_tape_obj *tape)
359 {
360         mutex_lock(&idetape_ref_mutex);
361         kref_put(&tape->kref, ide_tape_release);
362         mutex_unlock(&idetape_ref_mutex);
363 }
364
365 /*
366  * The variables below are used for the character device interface. Additional
367  * state variables are defined in our ide_drive_t structure.
368  */
369 static struct ide_tape_obj *idetape_devs[MAX_HWIFS * MAX_DRIVES];
370
371 #define ide_tape_f(file) ((file)->private_data)
372
373 static struct ide_tape_obj *ide_tape_chrdev_get(unsigned int i)
374 {
375         struct ide_tape_obj *tape = NULL;
376
377         mutex_lock(&idetape_ref_mutex);
378         tape = idetape_devs[i];
379         if (tape)
380                 kref_get(&tape->kref);
381         mutex_unlock(&idetape_ref_mutex);
382         return tape;
383 }
384
385 static void idetape_input_buffers(ide_drive_t *drive, struct ide_atapi_pc *pc,
386                                   unsigned int bcount)
387 {
388         struct idetape_bh *bh = pc->bh;
389         int count;
390
391         while (bcount) {
392                 if (bh == NULL) {
393                         printk(KERN_ERR "ide-tape: bh == NULL in "
394                                 "idetape_input_buffers\n");
395                         ide_pad_transfer(drive, 0, bcount);
396                         return;
397                 }
398                 count = min(
399                         (unsigned int)(bh->b_size - atomic_read(&bh->b_count)),
400                         bcount);
401                 drive->hwif->input_data(drive, NULL, bh->b_data +
402                                         atomic_read(&bh->b_count), count);
403                 bcount -= count;
404                 atomic_add(count, &bh->b_count);
405                 if (atomic_read(&bh->b_count) == bh->b_size) {
406                         bh = bh->b_reqnext;
407                         if (bh)
408                                 atomic_set(&bh->b_count, 0);
409                 }
410         }
411         pc->bh = bh;
412 }
413
414 static void idetape_output_buffers(ide_drive_t *drive, struct ide_atapi_pc *pc,
415                                    unsigned int bcount)
416 {
417         struct idetape_bh *bh = pc->bh;
418         int count;
419
420         while (bcount) {
421                 if (bh == NULL) {
422                         printk(KERN_ERR "ide-tape: bh == NULL in %s\n",
423                                         __func__);
424                         return;
425                 }
426                 count = min((unsigned int)pc->b_count, (unsigned int)bcount);
427                 drive->hwif->output_data(drive, NULL, pc->b_data, count);
428                 bcount -= count;
429                 pc->b_data += count;
430                 pc->b_count -= count;
431                 if (!pc->b_count) {
432                         bh = bh->b_reqnext;
433                         pc->bh = bh;
434                         if (bh) {
435                                 pc->b_data = bh->b_data;
436                                 pc->b_count = atomic_read(&bh->b_count);
437                         }
438                 }
439         }
440 }
441
442 static void idetape_update_buffers(ide_drive_t *drive, struct ide_atapi_pc *pc)
443 {
444         struct idetape_bh *bh = pc->bh;
445         int count;
446         unsigned int bcount = pc->xferred;
447
448         if (pc->flags & PC_FLAG_WRITING)
449                 return;
450         while (bcount) {
451                 if (bh == NULL) {
452                         printk(KERN_ERR "ide-tape: bh == NULL in %s\n",
453                                         __func__);
454                         return;
455                 }
456                 count = min((unsigned int)bh->b_size, (unsigned int)bcount);
457                 atomic_set(&bh->b_count, count);
458                 if (atomic_read(&bh->b_count) == bh->b_size)
459                         bh = bh->b_reqnext;
460                 bcount -= count;
461         }
462         pc->bh = bh;
463 }
464
465 /*
466  *      idetape_next_pc_storage returns a pointer to a place in which we can
467  *      safely store a packet command, even though we intend to leave the
468  *      driver. A storage space for a maximum of IDETAPE_PC_STACK packet
469  *      commands is allocated at initialization time.
470  */
471 static struct ide_atapi_pc *idetape_next_pc_storage(ide_drive_t *drive)
472 {
473         idetape_tape_t *tape = drive->driver_data;
474
475         debug_log(DBG_PCRQ_STACK, "pc_stack_index=%d\n", tape->pc_stack_index);
476
477         if (tape->pc_stack_index == IDETAPE_PC_STACK)
478                 tape->pc_stack_index = 0;
479         return (&tape->pc_stack[tape->pc_stack_index++]);
480 }
481
482 /*
483  *      idetape_next_rq_storage is used along with idetape_next_pc_storage.
484  *      Since we queue packet commands in the request queue, we need to
485  *      allocate a request, along with the allocation of a packet command.
486  */
487
488 /**************************************************************
489  *                                                            *
490  *  This should get fixed to use kmalloc(.., GFP_ATOMIC)      *
491  *  followed later on by kfree().   -ml                       *
492  *                                                            *
493  **************************************************************/
494
495 static struct request *idetape_next_rq_storage(ide_drive_t *drive)
496 {
497         idetape_tape_t *tape = drive->driver_data;
498
499         debug_log(DBG_PCRQ_STACK, "rq_stack_index=%d\n", tape->rq_stack_index);
500
501         if (tape->rq_stack_index == IDETAPE_PC_STACK)
502                 tape->rq_stack_index = 0;
503         return (&tape->rq_stack[tape->rq_stack_index++]);
504 }
505
506 /*
507  * called on each failed packet command retry to analyze the request sense. We
508  * currently do not utilize this information.
509  */
510 static void idetape_analyze_error(ide_drive_t *drive, u8 *sense)
511 {
512         idetape_tape_t *tape = drive->driver_data;
513         struct ide_atapi_pc *pc = tape->failed_pc;
514
515         tape->sense_key = sense[2] & 0xF;
516         tape->asc       = sense[12];
517         tape->ascq      = sense[13];
518
519         debug_log(DBG_ERR, "pc = %x, sense key = %x, asc = %x, ascq = %x\n",
520                  pc->c[0], tape->sense_key, tape->asc, tape->ascq);
521
522         /* Correct pc->xferred by asking the tape.       */
523         if (pc->flags & PC_FLAG_DMA_ERROR) {
524                 pc->xferred = pc->req_xfer -
525                         tape->blk_size *
526                         get_unaligned_be32(&sense[3]);
527                 idetape_update_buffers(drive, pc);
528         }
529
530         /*
531          * If error was the result of a zero-length read or write command,
532          * with sense key=5, asc=0x22, ascq=0, let it slide.  Some drives
533          * (i.e. Seagate STT3401A Travan) don't support 0-length read/writes.
534          */
535         if ((pc->c[0] == READ_6 || pc->c[0] == WRITE_6)
536             /* length == 0 */
537             && pc->c[4] == 0 && pc->c[3] == 0 && pc->c[2] == 0) {
538                 if (tape->sense_key == 5) {
539                         /* don't report an error, everything's ok */
540                         pc->error = 0;
541                         /* don't retry read/write */
542                         pc->flags |= PC_FLAG_ABORT;
543                 }
544         }
545         if (pc->c[0] == READ_6 && (sense[2] & 0x80)) {
546                 pc->error = IDETAPE_ERROR_FILEMARK;
547                 pc->flags |= PC_FLAG_ABORT;
548         }
549         if (pc->c[0] == WRITE_6) {
550                 if ((sense[2] & 0x40) || (tape->sense_key == 0xd
551                      && tape->asc == 0x0 && tape->ascq == 0x2)) {
552                         pc->error = IDETAPE_ERROR_EOD;
553                         pc->flags |= PC_FLAG_ABORT;
554                 }
555         }
556         if (pc->c[0] == READ_6 || pc->c[0] == WRITE_6) {
557                 if (tape->sense_key == 8) {
558                         pc->error = IDETAPE_ERROR_EOD;
559                         pc->flags |= PC_FLAG_ABORT;
560                 }
561                 if (!(pc->flags & PC_FLAG_ABORT) &&
562                     pc->xferred)
563                         pc->retries = IDETAPE_MAX_PC_RETRIES + 1;
564         }
565 }
566
567 /* Free data buffers completely. */
568 static void ide_tape_kfree_buffer(idetape_tape_t *tape)
569 {
570         struct idetape_bh *prev_bh, *bh = tape->merge_bh;
571
572         while (bh) {
573                 u32 size = bh->b_size;
574
575                 while (size) {
576                         unsigned int order = fls(size >> PAGE_SHIFT)-1;
577
578                         if (bh->b_data)
579                                 free_pages((unsigned long)bh->b_data, order);
580
581                         size &= (order-1);
582                         bh->b_data += (1 << order) * PAGE_SIZE;
583                 }
584                 prev_bh = bh;
585                 bh = bh->b_reqnext;
586                 kfree(prev_bh);
587         }
588         kfree(tape->merge_bh);
589 }
590
591 static int idetape_end_request(ide_drive_t *drive, int uptodate, int nr_sects)
592 {
593         struct request *rq = HWGROUP(drive)->rq;
594         idetape_tape_t *tape = drive->driver_data;
595         unsigned long flags;
596         int error;
597
598         debug_log(DBG_PROCS, "Enter %s\n", __func__);
599
600         switch (uptodate) {
601         case 0: error = IDETAPE_ERROR_GENERAL; break;
602         case 1: error = 0; break;
603         default: error = uptodate;
604         }
605         rq->errors = error;
606         if (error)
607                 tape->failed_pc = NULL;
608
609         if (!blk_special_request(rq)) {
610                 ide_end_request(drive, uptodate, nr_sects);
611                 return 0;
612         }
613
614         spin_lock_irqsave(&tape->lock, flags);
615
616         ide_end_drive_cmd(drive, 0, 0);
617
618         spin_unlock_irqrestore(&tape->lock, flags);
619         return 0;
620 }
621
622 static void ide_tape_callback(ide_drive_t *drive)
623 {
624         idetape_tape_t *tape = drive->driver_data;
625         struct ide_atapi_pc *pc = tape->pc;
626         int uptodate = pc->error ? 0 : 1;
627
628         debug_log(DBG_PROCS, "Enter %s\n", __func__);
629
630         if (tape->failed_pc == pc)
631                 tape->failed_pc = NULL;
632
633         if (pc->c[0] == REQUEST_SENSE) {
634                 if (uptodate)
635                         idetape_analyze_error(drive, pc->buf);
636                 else
637                         printk(KERN_ERR "ide-tape: Error in REQUEST SENSE "
638                                         "itself - Aborting request!\n");
639         } else if (pc->c[0] == READ_6 || pc->c[0] == WRITE_6) {
640                 struct request *rq = drive->hwif->hwgroup->rq;
641                 int blocks = pc->xferred / tape->blk_size;
642
643                 tape->avg_size += blocks * tape->blk_size;
644
645                 if (time_after_eq(jiffies, tape->avg_time + HZ)) {
646                         tape->avg_speed = tape->avg_size * HZ /
647                                 (jiffies - tape->avg_time) / 1024;
648                         tape->avg_size = 0;
649                         tape->avg_time = jiffies;
650                 }
651
652                 tape->first_frame += blocks;
653                 rq->current_nr_sectors -= blocks;
654
655                 if (pc->error)
656                         uptodate = pc->error;
657         } else if (pc->c[0] == READ_POSITION && uptodate) {
658                 u8 *readpos = tape->pc->buf;
659
660                 debug_log(DBG_SENSE, "BOP - %s\n",
661                                 (readpos[0] & 0x80) ? "Yes" : "No");
662                 debug_log(DBG_SENSE, "EOP - %s\n",
663                                 (readpos[0] & 0x40) ? "Yes" : "No");
664
665                 if (readpos[0] & 0x4) {
666                         printk(KERN_INFO "ide-tape: Block location is unknown"
667                                          "to the tape\n");
668                         clear_bit(IDETAPE_FLAG_ADDRESS_VALID, &tape->flags);
669                         uptodate = 0;
670                 } else {
671                         debug_log(DBG_SENSE, "Block Location - %u\n",
672                                         be32_to_cpu(*(u32 *)&readpos[4]));
673
674                         tape->partition = readpos[1];
675                         tape->first_frame = be32_to_cpu(*(u32 *)&readpos[4]);
676                         set_bit(IDETAPE_FLAG_ADDRESS_VALID, &tape->flags);
677                 }
678         }
679
680         idetape_end_request(drive, uptodate, 0);
681 }
682
683 static void idetape_init_pc(struct ide_atapi_pc *pc)
684 {
685         memset(pc->c, 0, 12);
686         pc->retries = 0;
687         pc->flags = 0;
688         pc->req_xfer = 0;
689         pc->buf = pc->pc_buf;
690         pc->buf_size = IDETAPE_PC_BUFFER_SIZE;
691         pc->bh = NULL;
692         pc->b_data = NULL;
693         pc->callback = ide_tape_callback;
694 }
695
696 static void idetape_create_request_sense_cmd(struct ide_atapi_pc *pc)
697 {
698         idetape_init_pc(pc);
699         pc->c[0] = REQUEST_SENSE;
700         pc->c[4] = 20;
701         pc->req_xfer = 20;
702 }
703
704 static void idetape_init_rq(struct request *rq, u8 cmd)
705 {
706         blk_rq_init(NULL, rq);
707         rq->cmd_type = REQ_TYPE_SPECIAL;
708         rq->cmd[0] = cmd;
709 }
710
711 /*
712  * Generate a new packet command request in front of the request queue, before
713  * the current request, so that it will be processed immediately, on the next
714  * pass through the driver. The function below is called from the request
715  * handling part of the driver (the "bottom" part). Safe storage for the request
716  * should be allocated with ide_tape_next_{pc,rq}_storage() prior to that.
717  *
718  * Memory for those requests is pre-allocated at initialization time, and is
719  * limited to IDETAPE_PC_STACK requests. We assume that we have enough space for
720  * the maximum possible number of inter-dependent packet commands.
721  *
722  * The higher level of the driver - The ioctl handler and the character device
723  * handling functions should queue request to the lower level part and wait for
724  * their completion using idetape_queue_pc_tail or idetape_queue_rw_tail.
725  */
726 static void idetape_queue_pc_head(ide_drive_t *drive, struct ide_atapi_pc *pc,
727                                   struct request *rq)
728 {
729         struct ide_tape_obj *tape = drive->driver_data;
730
731         idetape_init_rq(rq, REQ_IDETAPE_PC1);
732         rq->cmd_flags |= REQ_PREEMPT;
733         rq->buffer = (char *) pc;
734         rq->rq_disk = tape->disk;
735         ide_do_drive_cmd(drive, rq);
736 }
737
738 /*
739  *      idetape_retry_pc is called when an error was detected during the
740  *      last packet command. We queue a request sense packet command in
741  *      the head of the request list.
742  */
743 static void idetape_retry_pc(ide_drive_t *drive)
744 {
745         idetape_tape_t *tape = drive->driver_data;
746         struct ide_atapi_pc *pc;
747         struct request *rq;
748
749         (void)ide_read_error(drive);
750         pc = idetape_next_pc_storage(drive);
751         rq = idetape_next_rq_storage(drive);
752         idetape_create_request_sense_cmd(pc);
753         set_bit(IDETAPE_FLAG_IGNORE_DSC, &tape->flags);
754         idetape_queue_pc_head(drive, pc, rq);
755 }
756
757 /*
758  * Postpone the current request so that ide.c will be able to service requests
759  * from another device on the same hwgroup while we are polling for DSC.
760  */
761 static void idetape_postpone_request(ide_drive_t *drive)
762 {
763         idetape_tape_t *tape = drive->driver_data;
764
765         debug_log(DBG_PROCS, "Enter %s\n", __func__);
766
767         tape->postponed_rq = HWGROUP(drive)->rq;
768         ide_stall_queue(drive, tape->dsc_poll_freq);
769 }
770
771 static void ide_tape_handle_dsc(ide_drive_t *drive)
772 {
773         idetape_tape_t *tape = drive->driver_data;
774
775         /* Media access command */
776         tape->dsc_polling_start = jiffies;
777         tape->dsc_poll_freq = IDETAPE_DSC_MA_FAST;
778         tape->dsc_timeout = jiffies + IDETAPE_DSC_MA_TIMEOUT;
779         /* Allow ide.c to handle other requests */
780         idetape_postpone_request(drive);
781 }
782
783 static void ide_tape_io_buffers(ide_drive_t *drive, struct ide_atapi_pc *pc,
784                                 unsigned int bcount, int write)
785 {
786         if (write)
787                 idetape_output_buffers(drive, pc, bcount);
788         else
789                 idetape_input_buffers(drive, pc, bcount);
790 }
791
792 /*
793  * This is the usual interrupt handler which will be called during a packet
794  * command. We will transfer some of the data (as requested by the drive) and
795  * will re-point interrupt handler to us. When data transfer is finished, we
796  * will act according to the algorithm described before
797  * idetape_issue_pc.
798  */
799 static ide_startstop_t idetape_pc_intr(ide_drive_t *drive)
800 {
801         idetape_tape_t *tape = drive->driver_data;
802
803         return ide_pc_intr(drive, tape->pc, idetape_pc_intr, IDETAPE_WAIT_CMD,
804                            NULL, idetape_update_buffers, idetape_retry_pc,
805                            ide_tape_handle_dsc, ide_tape_io_buffers);
806 }
807
808 /*
809  * Packet Command Interface
810  *
811  * The current Packet Command is available in tape->pc, and will not change
812  * until we finish handling it. Each packet command is associated with a
813  * callback function that will be called when the command is finished.
814  *
815  * The handling will be done in three stages:
816  *
817  * 1. idetape_issue_pc will send the packet command to the drive, and will set
818  * the interrupt handler to idetape_pc_intr.
819  *
820  * 2. On each interrupt, idetape_pc_intr will be called. This step will be
821  * repeated until the device signals us that no more interrupts will be issued.
822  *
823  * 3. ATAPI Tape media access commands have immediate status with a delayed
824  * process. In case of a successful initiation of a media access packet command,
825  * the DSC bit will be set when the actual execution of the command is finished.
826  * Since the tape drive will not issue an interrupt, we have to poll for this
827  * event. In this case, we define the request as "low priority request" by
828  * setting rq_status to IDETAPE_RQ_POSTPONED, set a timer to poll for DSC and
829  * exit the driver.
830  *
831  * ide.c will then give higher priority to requests which originate from the
832  * other device, until will change rq_status to RQ_ACTIVE.
833  *
834  * 4. When the packet command is finished, it will be checked for errors.
835  *
836  * 5. In case an error was found, we queue a request sense packet command in
837  * front of the request queue and retry the operation up to
838  * IDETAPE_MAX_PC_RETRIES times.
839  *
840  * 6. In case no error was found, or we decided to give up and not to retry
841  * again, the callback function will be called and then we will handle the next
842  * request.
843  */
844 static ide_startstop_t idetape_transfer_pc(ide_drive_t *drive)
845 {
846         idetape_tape_t *tape = drive->driver_data;
847
848         return ide_transfer_pc(drive, tape->pc, idetape_pc_intr,
849                                IDETAPE_WAIT_CMD, NULL);
850 }
851
852 static ide_startstop_t idetape_issue_pc(ide_drive_t *drive,
853                 struct ide_atapi_pc *pc)
854 {
855         idetape_tape_t *tape = drive->driver_data;
856
857         if (tape->pc->c[0] == REQUEST_SENSE &&
858             pc->c[0] == REQUEST_SENSE) {
859                 printk(KERN_ERR "ide-tape: possible ide-tape.c bug - "
860                         "Two request sense in serial were issued\n");
861         }
862
863         if (tape->failed_pc == NULL && pc->c[0] != REQUEST_SENSE)
864                 tape->failed_pc = pc;
865         /* Set the current packet command */
866         tape->pc = pc;
867
868         if (pc->retries > IDETAPE_MAX_PC_RETRIES ||
869                 (pc->flags & PC_FLAG_ABORT)) {
870                 /*
871                  * We will "abort" retrying a packet command in case legitimate
872                  * error code was received (crossing a filemark, or end of the
873                  * media, for example).
874                  */
875                 if (!(pc->flags & PC_FLAG_ABORT)) {
876                         if (!(pc->c[0] == TEST_UNIT_READY &&
877                               tape->sense_key == 2 && tape->asc == 4 &&
878                              (tape->ascq == 1 || tape->ascq == 8))) {
879                                 printk(KERN_ERR "ide-tape: %s: I/O error, "
880                                                 "pc = %2x, key = %2x, "
881                                                 "asc = %2x, ascq = %2x\n",
882                                                 tape->name, pc->c[0],
883                                                 tape->sense_key, tape->asc,
884                                                 tape->ascq);
885                         }
886                         /* Giving up */
887                         pc->error = IDETAPE_ERROR_GENERAL;
888                 }
889                 tape->failed_pc = NULL;
890                 pc->callback(drive);
891                 return ide_stopped;
892         }
893         debug_log(DBG_SENSE, "Retry #%d, cmd = %02X\n", pc->retries, pc->c[0]);
894
895         pc->retries++;
896
897         return ide_issue_pc(drive, pc, idetape_transfer_pc,
898                             IDETAPE_WAIT_CMD, NULL);
899 }
900
901 /* A mode sense command is used to "sense" tape parameters. */
902 static void idetape_create_mode_sense_cmd(struct ide_atapi_pc *pc, u8 page_code)
903 {
904         idetape_init_pc(pc);
905         pc->c[0] = MODE_SENSE;
906         if (page_code != IDETAPE_BLOCK_DESCRIPTOR)
907                 /* DBD = 1 - Don't return block descriptors */
908                 pc->c[1] = 8;
909         pc->c[2] = page_code;
910         /*
911          * Changed pc->c[3] to 0 (255 will at best return unused info).
912          *
913          * For SCSI this byte is defined as subpage instead of high byte
914          * of length and some IDE drives seem to interpret it this way
915          * and return an error when 255 is used.
916          */
917         pc->c[3] = 0;
918         /* We will just discard data in that case */
919         pc->c[4] = 255;
920         if (page_code == IDETAPE_BLOCK_DESCRIPTOR)
921                 pc->req_xfer = 12;
922         else if (page_code == IDETAPE_CAPABILITIES_PAGE)
923                 pc->req_xfer = 24;
924         else
925                 pc->req_xfer = 50;
926 }
927
928 static ide_startstop_t idetape_media_access_finished(ide_drive_t *drive)
929 {
930         idetape_tape_t *tape = drive->driver_data;
931         struct ide_atapi_pc *pc = tape->pc;
932         u8 stat;
933
934         stat = ide_read_status(drive);
935
936         if (stat & SEEK_STAT) {
937                 if (stat & ERR_STAT) {
938                         /* Error detected */
939                         if (pc->c[0] != TEST_UNIT_READY)
940                                 printk(KERN_ERR "ide-tape: %s: I/O error, ",
941                                                 tape->name);
942                         /* Retry operation */
943                         idetape_retry_pc(drive);
944                         return ide_stopped;
945                 }
946                 pc->error = 0;
947         } else {
948                 pc->error = IDETAPE_ERROR_GENERAL;
949                 tape->failed_pc = NULL;
950         }
951         pc->callback(drive);
952         return ide_stopped;
953 }
954
955 static void idetape_create_read_cmd(idetape_tape_t *tape,
956                 struct ide_atapi_pc *pc,
957                 unsigned int length, struct idetape_bh *bh)
958 {
959         idetape_init_pc(pc);
960         pc->c[0] = READ_6;
961         put_unaligned(cpu_to_be32(length), (unsigned int *) &pc->c[1]);
962         pc->c[1] = 1;
963         pc->bh = bh;
964         atomic_set(&bh->b_count, 0);
965         pc->buf = NULL;
966         pc->buf_size = length * tape->blk_size;
967         pc->req_xfer = pc->buf_size;
968         if (pc->req_xfer == tape->buffer_size)
969                 pc->flags |= PC_FLAG_DMA_OK;
970 }
971
972 static void idetape_create_write_cmd(idetape_tape_t *tape,
973                 struct ide_atapi_pc *pc,
974                 unsigned int length, struct idetape_bh *bh)
975 {
976         idetape_init_pc(pc);
977         pc->c[0] = WRITE_6;
978         put_unaligned(cpu_to_be32(length), (unsigned int *) &pc->c[1]);
979         pc->c[1] = 1;
980         pc->flags |= PC_FLAG_WRITING;
981         pc->bh = bh;
982         pc->b_data = bh->b_data;
983         pc->b_count = atomic_read(&bh->b_count);
984         pc->buf = NULL;
985         pc->buf_size = length * tape->blk_size;
986         pc->req_xfer = pc->buf_size;
987         if (pc->req_xfer == tape->buffer_size)
988                 pc->flags |= PC_FLAG_DMA_OK;
989 }
990
991 static ide_startstop_t idetape_do_request(ide_drive_t *drive,
992                                           struct request *rq, sector_t block)
993 {
994         idetape_tape_t *tape = drive->driver_data;
995         struct ide_atapi_pc *pc = NULL;
996         struct request *postponed_rq = tape->postponed_rq;
997         u8 stat;
998
999         debug_log(DBG_SENSE, "sector: %ld, nr_sectors: %ld,"
1000                         " current_nr_sectors: %d\n",
1001                         rq->sector, rq->nr_sectors, rq->current_nr_sectors);
1002
1003         if (!blk_special_request(rq)) {
1004                 /* We do not support buffer cache originated requests. */
1005                 printk(KERN_NOTICE "ide-tape: %s: Unsupported request in "
1006                         "request queue (%d)\n", drive->name, rq->cmd_type);
1007                 ide_end_request(drive, 0, 0);
1008                 return ide_stopped;
1009         }
1010
1011         /* Retry a failed packet command */
1012         if (tape->failed_pc && tape->pc->c[0] == REQUEST_SENSE) {
1013                 pc = tape->failed_pc;
1014                 goto out;
1015         }
1016
1017         if (postponed_rq != NULL)
1018                 if (rq != postponed_rq) {
1019                         printk(KERN_ERR "ide-tape: ide-tape.c bug - "
1020                                         "Two DSC requests were queued\n");
1021                         idetape_end_request(drive, 0, 0);
1022                         return ide_stopped;
1023                 }
1024
1025         tape->postponed_rq = NULL;
1026
1027         /*
1028          * If the tape is still busy, postpone our request and service
1029          * the other device meanwhile.
1030          */
1031         stat = ide_read_status(drive);
1032
1033         if (!drive->dsc_overlap && !(rq->cmd[0] & REQ_IDETAPE_PC2))
1034                 set_bit(IDETAPE_FLAG_IGNORE_DSC, &tape->flags);
1035
1036         if (drive->post_reset == 1) {
1037                 set_bit(IDETAPE_FLAG_IGNORE_DSC, &tape->flags);
1038                 drive->post_reset = 0;
1039         }
1040
1041         if (!test_and_clear_bit(IDETAPE_FLAG_IGNORE_DSC, &tape->flags) &&
1042             (stat & SEEK_STAT) == 0) {
1043                 if (postponed_rq == NULL) {
1044                         tape->dsc_polling_start = jiffies;
1045                         tape->dsc_poll_freq = tape->best_dsc_rw_freq;
1046                         tape->dsc_timeout = jiffies + IDETAPE_DSC_RW_TIMEOUT;
1047                 } else if (time_after(jiffies, tape->dsc_timeout)) {
1048                         printk(KERN_ERR "ide-tape: %s: DSC timeout\n",
1049                                 tape->name);
1050                         if (rq->cmd[0] & REQ_IDETAPE_PC2) {
1051                                 idetape_media_access_finished(drive);
1052                                 return ide_stopped;
1053                         } else {
1054                                 return ide_do_reset(drive);
1055                         }
1056                 } else if (time_after(jiffies,
1057                                         tape->dsc_polling_start +
1058                                         IDETAPE_DSC_MA_THRESHOLD))
1059                         tape->dsc_poll_freq = IDETAPE_DSC_MA_SLOW;
1060                 idetape_postpone_request(drive);
1061                 return ide_stopped;
1062         }
1063         if (rq->cmd[0] & REQ_IDETAPE_READ) {
1064                 pc = idetape_next_pc_storage(drive);
1065                 idetape_create_read_cmd(tape, pc, rq->current_nr_sectors,
1066                                         (struct idetape_bh *)rq->special);
1067                 goto out;
1068         }
1069         if (rq->cmd[0] & REQ_IDETAPE_WRITE) {
1070                 pc = idetape_next_pc_storage(drive);
1071                 idetape_create_write_cmd(tape, pc, rq->current_nr_sectors,
1072                                          (struct idetape_bh *)rq->special);
1073                 goto out;
1074         }
1075         if (rq->cmd[0] & REQ_IDETAPE_PC1) {
1076                 pc = (struct ide_atapi_pc *) rq->buffer;
1077                 rq->cmd[0] &= ~(REQ_IDETAPE_PC1);
1078                 rq->cmd[0] |= REQ_IDETAPE_PC2;
1079                 goto out;
1080         }
1081         if (rq->cmd[0] & REQ_IDETAPE_PC2) {
1082                 idetape_media_access_finished(drive);
1083                 return ide_stopped;
1084         }
1085         BUG();
1086 out:
1087         if (test_bit(IDETAPE_FLAG_DRQ_INTERRUPT, &tape->flags))
1088                 pc->flags |= PC_FLAG_DRQ_INTERRUPT;
1089
1090         return idetape_issue_pc(drive, pc);
1091 }
1092
1093 /*
1094  * The function below uses __get_free_pages to allocate a data buffer of size
1095  * tape->buffer_size (or a bit more). We attempt to combine sequential pages as
1096  * much as possible.
1097  *
1098  * It returns a pointer to the newly allocated buffer, or NULL in case of
1099  * failure.
1100  */
1101 static struct idetape_bh *ide_tape_kmalloc_buffer(idetape_tape_t *tape,
1102                                                   int full, int clear)
1103 {
1104         struct idetape_bh *prev_bh, *bh, *merge_bh;
1105         int pages = tape->pages_per_buffer;
1106         unsigned int order, b_allocd;
1107         char *b_data = NULL;
1108
1109         merge_bh = kmalloc(sizeof(struct idetape_bh), GFP_KERNEL);
1110         bh = merge_bh;
1111         if (bh == NULL)
1112                 goto abort;
1113
1114         order = fls(pages) - 1;
1115         bh->b_data = (char *) __get_free_pages(GFP_KERNEL, order);
1116         if (!bh->b_data)
1117                 goto abort;
1118         b_allocd = (1 << order) * PAGE_SIZE;
1119         pages &= (order-1);
1120
1121         if (clear)
1122                 memset(bh->b_data, 0, b_allocd);
1123         bh->b_reqnext = NULL;
1124         bh->b_size = b_allocd;
1125         atomic_set(&bh->b_count, full ? bh->b_size : 0);
1126
1127         while (pages) {
1128                 order = fls(pages) - 1;
1129                 b_data = (char *) __get_free_pages(GFP_KERNEL, order);
1130                 if (!b_data)
1131                         goto abort;
1132                 b_allocd = (1 << order) * PAGE_SIZE;
1133
1134                 if (clear)
1135                         memset(b_data, 0, b_allocd);
1136
1137                 /* newly allocated page frames below buffer header or ...*/
1138                 if (bh->b_data == b_data + b_allocd) {
1139                         bh->b_size += b_allocd;
1140                         bh->b_data -= b_allocd;
1141                         if (full)
1142                                 atomic_add(b_allocd, &bh->b_count);
1143                         continue;
1144                 }
1145                 /* they are above the header */
1146                 if (b_data == bh->b_data + bh->b_size) {
1147                         bh->b_size += b_allocd;
1148                         if (full)
1149                                 atomic_add(b_allocd, &bh->b_count);
1150                         continue;
1151                 }
1152                 prev_bh = bh;
1153                 bh = kmalloc(sizeof(struct idetape_bh), GFP_KERNEL);
1154                 if (!bh) {
1155                         free_pages((unsigned long) b_data, order);
1156                         goto abort;
1157                 }
1158                 bh->b_reqnext = NULL;
1159                 bh->b_data = b_data;
1160                 bh->b_size = b_allocd;
1161                 atomic_set(&bh->b_count, full ? bh->b_size : 0);
1162                 prev_bh->b_reqnext = bh;
1163
1164                 pages &= (order-1);
1165         }
1166
1167         bh->b_size -= tape->excess_bh_size;
1168         if (full)
1169                 atomic_sub(tape->excess_bh_size, &bh->b_count);
1170         return merge_bh;
1171 abort:
1172         ide_tape_kfree_buffer(tape);
1173         return NULL;
1174 }
1175
1176 static int idetape_copy_stage_from_user(idetape_tape_t *tape,
1177                                         const char __user *buf, int n)
1178 {
1179         struct idetape_bh *bh = tape->bh;
1180         int count;
1181         int ret = 0;
1182
1183         while (n) {
1184                 if (bh == NULL) {
1185                         printk(KERN_ERR "ide-tape: bh == NULL in %s\n",
1186                                         __func__);
1187                         return 1;
1188                 }
1189                 count = min((unsigned int)
1190                                 (bh->b_size - atomic_read(&bh->b_count)),
1191                                 (unsigned int)n);
1192                 if (copy_from_user(bh->b_data + atomic_read(&bh->b_count), buf,
1193                                 count))
1194                         ret = 1;
1195                 n -= count;
1196                 atomic_add(count, &bh->b_count);
1197                 buf += count;
1198                 if (atomic_read(&bh->b_count) == bh->b_size) {
1199                         bh = bh->b_reqnext;
1200                         if (bh)
1201                                 atomic_set(&bh->b_count, 0);
1202                 }
1203         }
1204         tape->bh = bh;
1205         return ret;
1206 }
1207
1208 static int idetape_copy_stage_to_user(idetape_tape_t *tape, char __user *buf,
1209                                       int n)
1210 {
1211         struct idetape_bh *bh = tape->bh;
1212         int count;
1213         int ret = 0;
1214
1215         while (n) {
1216                 if (bh == NULL) {
1217                         printk(KERN_ERR "ide-tape: bh == NULL in %s\n",
1218                                         __func__);
1219                         return 1;
1220                 }
1221                 count = min(tape->b_count, n);
1222                 if  (copy_to_user(buf, tape->b_data, count))
1223                         ret = 1;
1224                 n -= count;
1225                 tape->b_data += count;
1226                 tape->b_count -= count;
1227                 buf += count;
1228                 if (!tape->b_count) {
1229                         bh = bh->b_reqnext;
1230                         tape->bh = bh;
1231                         if (bh) {
1232                                 tape->b_data = bh->b_data;
1233                                 tape->b_count = atomic_read(&bh->b_count);
1234                         }
1235                 }
1236         }
1237         return ret;
1238 }
1239
1240 static void idetape_init_merge_buffer(idetape_tape_t *tape)
1241 {
1242         struct idetape_bh *bh = tape->merge_bh;
1243         tape->bh = tape->merge_bh;
1244
1245         if (tape->chrdev_dir == IDETAPE_DIR_WRITE)
1246                 atomic_set(&bh->b_count, 0);
1247         else {
1248                 tape->b_data = bh->b_data;
1249                 tape->b_count = atomic_read(&bh->b_count);
1250         }
1251 }
1252
1253 /*
1254  * Write a filemark if write_filemark=1. Flush the device buffers without
1255  * writing a filemark otherwise.
1256  */
1257 static void idetape_create_write_filemark_cmd(ide_drive_t *drive,
1258                 struct ide_atapi_pc *pc, int write_filemark)
1259 {
1260         idetape_init_pc(pc);
1261         pc->c[0] = WRITE_FILEMARKS;
1262         pc->c[4] = write_filemark;
1263         pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1264 }
1265
1266 static void idetape_create_test_unit_ready_cmd(struct ide_atapi_pc *pc)
1267 {
1268         idetape_init_pc(pc);
1269         pc->c[0] = TEST_UNIT_READY;
1270 }
1271
1272 /*
1273  * We add a special packet command request to the tail of the request queue, and
1274  * wait for it to be serviced. This is not to be called from within the request
1275  * handling part of the driver! We allocate here data on the stack and it is
1276  * valid until the request is finished. This is not the case for the bottom part
1277  * of the driver, where we are always leaving the functions to wait for an
1278  * interrupt or a timer event.
1279  *
1280  * From the bottom part of the driver, we should allocate safe memory using
1281  * idetape_next_pc_storage() and ide_tape_next_rq_storage(), and add the request
1282  * to the request list without waiting for it to be serviced! In that case, we
1283  * usually use idetape_queue_pc_head().
1284  */
1285 static int idetape_queue_pc_tail(ide_drive_t *drive, struct ide_atapi_pc *pc)
1286 {
1287         struct ide_tape_obj *tape = drive->driver_data;
1288         struct request *rq;
1289         int error;
1290
1291         rq = blk_get_request(drive->queue, READ, __GFP_WAIT);
1292         rq->cmd_type = REQ_TYPE_SPECIAL;
1293         rq->cmd[0] = REQ_IDETAPE_PC1;
1294         rq->buffer = (char *)pc;
1295         error = blk_execute_rq(drive->queue, tape->disk, rq, 0);
1296         blk_put_request(rq);
1297         return error;
1298 }
1299
1300 static void idetape_create_load_unload_cmd(ide_drive_t *drive,
1301                 struct ide_atapi_pc *pc, int cmd)
1302 {
1303         idetape_init_pc(pc);
1304         pc->c[0] = START_STOP;
1305         pc->c[4] = cmd;
1306         pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1307 }
1308
1309 static int idetape_wait_ready(ide_drive_t *drive, unsigned long timeout)
1310 {
1311         idetape_tape_t *tape = drive->driver_data;
1312         struct ide_atapi_pc pc;
1313         int load_attempted = 0;
1314
1315         /* Wait for the tape to become ready */
1316         set_bit(IDETAPE_FLAG_MEDIUM_PRESENT, &tape->flags);
1317         timeout += jiffies;
1318         while (time_before(jiffies, timeout)) {
1319                 idetape_create_test_unit_ready_cmd(&pc);
1320                 if (!idetape_queue_pc_tail(drive, &pc))
1321                         return 0;
1322                 if ((tape->sense_key == 2 && tape->asc == 4 && tape->ascq == 2)
1323                     || (tape->asc == 0x3A)) {
1324                         /* no media */
1325                         if (load_attempted)
1326                                 return -ENOMEDIUM;
1327                         idetape_create_load_unload_cmd(drive, &pc,
1328                                                         IDETAPE_LU_LOAD_MASK);
1329                         idetape_queue_pc_tail(drive, &pc);
1330                         load_attempted = 1;
1331                 /* not about to be ready */
1332                 } else if (!(tape->sense_key == 2 && tape->asc == 4 &&
1333                              (tape->ascq == 1 || tape->ascq == 8)))
1334                         return -EIO;
1335                 msleep(100);
1336         }
1337         return -EIO;
1338 }
1339
1340 static int idetape_flush_tape_buffers(ide_drive_t *drive)
1341 {
1342         struct ide_atapi_pc pc;
1343         int rc;
1344
1345         idetape_create_write_filemark_cmd(drive, &pc, 0);
1346         rc = idetape_queue_pc_tail(drive, &pc);
1347         if (rc)
1348                 return rc;
1349         idetape_wait_ready(drive, 60 * 5 * HZ);
1350         return 0;
1351 }
1352
1353 static void idetape_create_read_position_cmd(struct ide_atapi_pc *pc)
1354 {
1355         idetape_init_pc(pc);
1356         pc->c[0] = READ_POSITION;
1357         pc->req_xfer = 20;
1358 }
1359
1360 static int idetape_read_position(ide_drive_t *drive)
1361 {
1362         idetape_tape_t *tape = drive->driver_data;
1363         struct ide_atapi_pc pc;
1364         int position;
1365
1366         debug_log(DBG_PROCS, "Enter %s\n", __func__);
1367
1368         idetape_create_read_position_cmd(&pc);
1369         if (idetape_queue_pc_tail(drive, &pc))
1370                 return -1;
1371         position = tape->first_frame;
1372         return position;
1373 }
1374
1375 static void idetape_create_locate_cmd(ide_drive_t *drive,
1376                 struct ide_atapi_pc *pc,
1377                 unsigned int block, u8 partition, int skip)
1378 {
1379         idetape_init_pc(pc);
1380         pc->c[0] = POSITION_TO_ELEMENT;
1381         pc->c[1] = 2;
1382         put_unaligned(cpu_to_be32(block), (unsigned int *) &pc->c[3]);
1383         pc->c[8] = partition;
1384         pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1385 }
1386
1387 static int idetape_create_prevent_cmd(ide_drive_t *drive,
1388                 struct ide_atapi_pc *pc, int prevent)
1389 {
1390         idetape_tape_t *tape = drive->driver_data;
1391
1392         /* device supports locking according to capabilities page */
1393         if (!(tape->caps[6] & 0x01))
1394                 return 0;
1395
1396         idetape_init_pc(pc);
1397         pc->c[0] = ALLOW_MEDIUM_REMOVAL;
1398         pc->c[4] = prevent;
1399         return 1;
1400 }
1401
1402 static void __ide_tape_discard_merge_buffer(ide_drive_t *drive)
1403 {
1404         idetape_tape_t *tape = drive->driver_data;
1405
1406         if (tape->chrdev_dir != IDETAPE_DIR_READ)
1407                 return;
1408
1409         clear_bit(IDETAPE_FLAG_FILEMARK, &tape->flags);
1410         tape->merge_bh_size = 0;
1411         if (tape->merge_bh != NULL) {
1412                 ide_tape_kfree_buffer(tape);
1413                 tape->merge_bh = NULL;
1414         }
1415
1416         tape->chrdev_dir = IDETAPE_DIR_NONE;
1417 }
1418
1419 /*
1420  * Position the tape to the requested block using the LOCATE packet command.
1421  * A READ POSITION command is then issued to check where we are positioned. Like
1422  * all higher level operations, we queue the commands at the tail of the request
1423  * queue and wait for their completion.
1424  */
1425 static int idetape_position_tape(ide_drive_t *drive, unsigned int block,
1426                 u8 partition, int skip)
1427 {
1428         idetape_tape_t *tape = drive->driver_data;
1429         int retval;
1430         struct ide_atapi_pc pc;
1431
1432         if (tape->chrdev_dir == IDETAPE_DIR_READ)
1433                 __ide_tape_discard_merge_buffer(drive);
1434         idetape_wait_ready(drive, 60 * 5 * HZ);
1435         idetape_create_locate_cmd(drive, &pc, block, partition, skip);
1436         retval = idetape_queue_pc_tail(drive, &pc);
1437         if (retval)
1438                 return (retval);
1439
1440         idetape_create_read_position_cmd(&pc);
1441         return (idetape_queue_pc_tail(drive, &pc));
1442 }
1443
1444 static void ide_tape_discard_merge_buffer(ide_drive_t *drive,
1445                                           int restore_position)
1446 {
1447         idetape_tape_t *tape = drive->driver_data;
1448         int seek, position;
1449
1450         __ide_tape_discard_merge_buffer(drive);
1451         if (restore_position) {
1452                 position = idetape_read_position(drive);
1453                 seek = position > 0 ? position : 0;
1454                 if (idetape_position_tape(drive, seek, 0, 0)) {
1455                         printk(KERN_INFO "ide-tape: %s: position_tape failed in"
1456                                          " %s\n", tape->name, __func__);
1457                         return;
1458                 }
1459         }
1460 }
1461
1462 /*
1463  * Generate a read/write request for the block device interface and wait for it
1464  * to be serviced.
1465  */
1466 static int idetape_queue_rw_tail(ide_drive_t *drive, int cmd, int blocks,
1467                                  struct idetape_bh *bh)
1468 {
1469         idetape_tape_t *tape = drive->driver_data;
1470         struct request *rq;
1471         int ret, errors;
1472
1473         debug_log(DBG_SENSE, "%s: cmd=%d\n", __func__, cmd);
1474
1475         rq = blk_get_request(drive->queue, READ, __GFP_WAIT);
1476         rq->cmd_type = REQ_TYPE_SPECIAL;
1477         rq->cmd[0] = cmd;
1478         rq->rq_disk = tape->disk;
1479         rq->special = (void *)bh;
1480         rq->sector = tape->first_frame;
1481         rq->nr_sectors = blocks;
1482         rq->current_nr_sectors = blocks;
1483         blk_execute_rq(drive->queue, tape->disk, rq, 0);
1484
1485         errors = rq->errors;
1486         ret = tape->blk_size * (blocks - rq->current_nr_sectors);
1487         blk_put_request(rq);
1488
1489         if ((cmd & (REQ_IDETAPE_READ | REQ_IDETAPE_WRITE)) == 0)
1490                 return 0;
1491
1492         if (tape->merge_bh)
1493                 idetape_init_merge_buffer(tape);
1494         if (errors == IDETAPE_ERROR_GENERAL)
1495                 return -EIO;
1496         return ret;
1497 }
1498
1499 static void idetape_create_inquiry_cmd(struct ide_atapi_pc *pc)
1500 {
1501         idetape_init_pc(pc);
1502         pc->c[0] = INQUIRY;
1503         pc->c[4] = 254;
1504         pc->req_xfer = 254;
1505 }
1506
1507 static void idetape_create_rewind_cmd(ide_drive_t *drive,
1508                 struct ide_atapi_pc *pc)
1509 {
1510         idetape_init_pc(pc);
1511         pc->c[0] = REZERO_UNIT;
1512         pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1513 }
1514
1515 static void idetape_create_erase_cmd(struct ide_atapi_pc *pc)
1516 {
1517         idetape_init_pc(pc);
1518         pc->c[0] = ERASE;
1519         pc->c[1] = 1;
1520         pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1521 }
1522
1523 static void idetape_create_space_cmd(struct ide_atapi_pc *pc, int count, u8 cmd)
1524 {
1525         idetape_init_pc(pc);
1526         pc->c[0] = SPACE;
1527         put_unaligned(cpu_to_be32(count), (unsigned int *) &pc->c[1]);
1528         pc->c[1] = cmd;
1529         pc->flags |= PC_FLAG_WAIT_FOR_DSC;
1530 }
1531
1532 /* Queue up a character device originated write request. */
1533 static int idetape_add_chrdev_write_request(ide_drive_t *drive, int blocks)
1534 {
1535         idetape_tape_t *tape = drive->driver_data;
1536
1537         debug_log(DBG_CHRDEV, "Enter %s\n", __func__);
1538
1539         return idetape_queue_rw_tail(drive, REQ_IDETAPE_WRITE,
1540                                      blocks, tape->merge_bh);
1541 }
1542
1543 static void ide_tape_flush_merge_buffer(ide_drive_t *drive)
1544 {
1545         idetape_tape_t *tape = drive->driver_data;
1546         int blocks, min;
1547         struct idetape_bh *bh;
1548
1549         if (tape->chrdev_dir != IDETAPE_DIR_WRITE) {
1550                 printk(KERN_ERR "ide-tape: bug: Trying to empty merge buffer"
1551                                 " but we are not writing.\n");
1552                 return;
1553         }
1554         if (tape->merge_bh_size > tape->buffer_size) {
1555                 printk(KERN_ERR "ide-tape: bug: merge_buffer too big\n");
1556                 tape->merge_bh_size = tape->buffer_size;
1557         }
1558         if (tape->merge_bh_size) {
1559                 blocks = tape->merge_bh_size / tape->blk_size;
1560                 if (tape->merge_bh_size % tape->blk_size) {
1561                         unsigned int i;
1562
1563                         blocks++;
1564                         i = tape->blk_size - tape->merge_bh_size %
1565                                 tape->blk_size;
1566                         bh = tape->bh->b_reqnext;
1567                         while (bh) {
1568                                 atomic_set(&bh->b_count, 0);
1569                                 bh = bh->b_reqnext;
1570                         }
1571                         bh = tape->bh;
1572                         while (i) {
1573                                 if (bh == NULL) {
1574                                         printk(KERN_INFO "ide-tape: bug,"
1575                                                          " bh NULL\n");
1576                                         break;
1577                                 }
1578                                 min = min(i, (unsigned int)(bh->b_size -
1579                                                 atomic_read(&bh->b_count)));
1580                                 memset(bh->b_data + atomic_read(&bh->b_count),
1581                                                 0, min);
1582                                 atomic_add(min, &bh->b_count);
1583                                 i -= min;
1584                                 bh = bh->b_reqnext;
1585                         }
1586                 }
1587                 (void) idetape_add_chrdev_write_request(drive, blocks);
1588                 tape->merge_bh_size = 0;
1589         }
1590         if (tape->merge_bh != NULL) {
1591                 ide_tape_kfree_buffer(tape);
1592                 tape->merge_bh = NULL;
1593         }
1594         tape->chrdev_dir = IDETAPE_DIR_NONE;
1595 }
1596
1597 static int idetape_init_read(ide_drive_t *drive)
1598 {
1599         idetape_tape_t *tape = drive->driver_data;
1600         int bytes_read;
1601
1602         /* Initialize read operation */
1603         if (tape->chrdev_dir != IDETAPE_DIR_READ) {
1604                 if (tape->chrdev_dir == IDETAPE_DIR_WRITE) {
1605                         ide_tape_flush_merge_buffer(drive);
1606                         idetape_flush_tape_buffers(drive);
1607                 }
1608                 if (tape->merge_bh || tape->merge_bh_size) {
1609                         printk(KERN_ERR "ide-tape: merge_bh_size should be"
1610                                          " 0 now\n");
1611                         tape->merge_bh_size = 0;
1612                 }
1613                 tape->merge_bh = ide_tape_kmalloc_buffer(tape, 0, 0);
1614                 if (!tape->merge_bh)
1615                         return -ENOMEM;
1616                 tape->chrdev_dir = IDETAPE_DIR_READ;
1617
1618                 /*
1619                  * Issue a read 0 command to ensure that DSC handshake is
1620                  * switched from completion mode to buffer available mode.
1621                  * No point in issuing this if DSC overlap isn't supported, some
1622                  * drives (Seagate STT3401A) will return an error.
1623                  */
1624                 if (drive->dsc_overlap) {
1625                         bytes_read = idetape_queue_rw_tail(drive,
1626                                                         REQ_IDETAPE_READ, 0,
1627                                                         tape->merge_bh);
1628                         if (bytes_read < 0) {
1629                                 ide_tape_kfree_buffer(tape);
1630                                 tape->merge_bh = NULL;
1631                                 tape->chrdev_dir = IDETAPE_DIR_NONE;
1632                                 return bytes_read;
1633                         }
1634                 }
1635         }
1636
1637         return 0;
1638 }
1639
1640 /* called from idetape_chrdev_read() to service a chrdev read request. */
1641 static int idetape_add_chrdev_read_request(ide_drive_t *drive, int blocks)
1642 {
1643         idetape_tape_t *tape = drive->driver_data;
1644
1645         debug_log(DBG_PROCS, "Enter %s, %d blocks\n", __func__, blocks);
1646
1647         /* If we are at a filemark, return a read length of 0 */
1648         if (test_bit(IDETAPE_FLAG_FILEMARK, &tape->flags))
1649                 return 0;
1650
1651         idetape_init_read(drive);
1652
1653         return idetape_queue_rw_tail(drive, REQ_IDETAPE_READ, blocks,
1654                                      tape->merge_bh);
1655 }
1656
1657 static void idetape_pad_zeros(ide_drive_t *drive, int bcount)
1658 {
1659         idetape_tape_t *tape = drive->driver_data;
1660         struct idetape_bh *bh;
1661         int blocks;
1662
1663         while (bcount) {
1664                 unsigned int count;
1665
1666                 bh = tape->merge_bh;
1667                 count = min(tape->buffer_size, bcount);
1668                 bcount -= count;
1669                 blocks = count / tape->blk_size;
1670                 while (count) {
1671                         atomic_set(&bh->b_count,
1672                                    min(count, (unsigned int)bh->b_size));
1673                         memset(bh->b_data, 0, atomic_read(&bh->b_count));
1674                         count -= atomic_read(&bh->b_count);
1675                         bh = bh->b_reqnext;
1676                 }
1677                 idetape_queue_rw_tail(drive, REQ_IDETAPE_WRITE, blocks,
1678                                       tape->merge_bh);
1679         }
1680 }
1681
1682 /*
1683  * Rewinds the tape to the Beginning Of the current Partition (BOP). We
1684  * currently support only one partition.
1685  */
1686 static int idetape_rewind_tape(ide_drive_t *drive)
1687 {
1688         int retval;
1689         struct ide_atapi_pc pc;
1690         idetape_tape_t *tape;
1691         tape = drive->driver_data;
1692
1693         debug_log(DBG_SENSE, "Enter %s\n", __func__);
1694
1695         idetape_create_rewind_cmd(drive, &pc);
1696         retval = idetape_queue_pc_tail(drive, &pc);
1697         if (retval)
1698                 return retval;
1699
1700         idetape_create_read_position_cmd(&pc);
1701         retval = idetape_queue_pc_tail(drive, &pc);
1702         if (retval)
1703                 return retval;
1704         return 0;
1705 }
1706
1707 /* mtio.h compatible commands should be issued to the chrdev interface. */
1708 static int idetape_blkdev_ioctl(ide_drive_t *drive, unsigned int cmd,
1709                                 unsigned long arg)
1710 {
1711         idetape_tape_t *tape = drive->driver_data;
1712         void __user *argp = (void __user *)arg;
1713
1714         struct idetape_config {
1715                 int dsc_rw_frequency;
1716                 int dsc_media_access_frequency;
1717                 int nr_stages;
1718         } config;
1719
1720         debug_log(DBG_PROCS, "Enter %s\n", __func__);
1721
1722         switch (cmd) {
1723         case 0x0340:
1724                 if (copy_from_user(&config, argp, sizeof(config)))
1725                         return -EFAULT;
1726                 tape->best_dsc_rw_freq = config.dsc_rw_frequency;
1727                 break;
1728         case 0x0350:
1729                 config.dsc_rw_frequency = (int) tape->best_dsc_rw_freq;
1730                 config.nr_stages = 1;
1731                 if (copy_to_user(argp, &config, sizeof(config)))
1732                         return -EFAULT;
1733                 break;
1734         default:
1735                 return -EIO;
1736         }
1737         return 0;
1738 }
1739
1740 static int idetape_space_over_filemarks(ide_drive_t *drive, short mt_op,
1741                                         int mt_count)
1742 {
1743         idetape_tape_t *tape = drive->driver_data;
1744         struct ide_atapi_pc pc;
1745         int retval, count = 0;
1746         int sprev = !!(tape->caps[4] & 0x20);
1747
1748         if (mt_count == 0)
1749                 return 0;
1750         if (MTBSF == mt_op || MTBSFM == mt_op) {
1751                 if (!sprev)
1752                         return -EIO;
1753                 mt_count = -mt_count;
1754         }
1755
1756         if (tape->chrdev_dir == IDETAPE_DIR_READ) {
1757                 tape->merge_bh_size = 0;
1758                 if (test_and_clear_bit(IDETAPE_FLAG_FILEMARK, &tape->flags))
1759                         ++count;
1760                 ide_tape_discard_merge_buffer(drive, 0);
1761         }
1762
1763         switch (mt_op) {
1764         case MTFSF:
1765         case MTBSF:
1766                 idetape_create_space_cmd(&pc, mt_count - count,
1767                                          IDETAPE_SPACE_OVER_FILEMARK);
1768                 return idetape_queue_pc_tail(drive, &pc);
1769         case MTFSFM:
1770         case MTBSFM:
1771                 if (!sprev)
1772                         return -EIO;
1773                 retval = idetape_space_over_filemarks(drive, MTFSF,
1774                                                       mt_count - count);
1775                 if (retval)
1776                         return retval;
1777                 count = (MTBSFM == mt_op ? 1 : -1);
1778                 return idetape_space_over_filemarks(drive, MTFSF, count);
1779         default:
1780                 printk(KERN_ERR "ide-tape: MTIO operation %d not supported\n",
1781                                 mt_op);
1782                 return -EIO;
1783         }
1784 }
1785
1786 /*
1787  * Our character device read / write functions.
1788  *
1789  * The tape is optimized to maximize throughput when it is transferring an
1790  * integral number of the "continuous transfer limit", which is a parameter of
1791  * the specific tape (26kB on my particular tape, 32kB for Onstream).
1792  *
1793  * As of version 1.3 of the driver, the character device provides an abstract
1794  * continuous view of the media - any mix of block sizes (even 1 byte) on the
1795  * same backup/restore procedure is supported. The driver will internally
1796  * convert the requests to the recommended transfer unit, so that an unmatch
1797  * between the user's block size to the recommended size will only result in a
1798  * (slightly) increased driver overhead, but will no longer hit performance.
1799  * This is not applicable to Onstream.
1800  */
1801 static ssize_t idetape_chrdev_read(struct file *file, char __user *buf,
1802                                    size_t count, loff_t *ppos)
1803 {
1804         struct ide_tape_obj *tape = ide_tape_f(file);
1805         ide_drive_t *drive = tape->drive;
1806         ssize_t bytes_read, temp, actually_read = 0, rc;
1807         ssize_t ret = 0;
1808         u16 ctl = *(u16 *)&tape->caps[12];
1809
1810         debug_log(DBG_CHRDEV, "Enter %s, count %Zd\n", __func__, count);
1811
1812         if (tape->chrdev_dir != IDETAPE_DIR_READ) {
1813                 if (test_bit(IDETAPE_FLAG_DETECT_BS, &tape->flags))
1814                         if (count > tape->blk_size &&
1815                             (count % tape->blk_size) == 0)
1816                                 tape->user_bs_factor = count / tape->blk_size;
1817         }
1818         rc = idetape_init_read(drive);
1819         if (rc < 0)
1820                 return rc;
1821         if (count == 0)
1822                 return (0);
1823         if (tape->merge_bh_size) {
1824                 actually_read = min((unsigned int)(tape->merge_bh_size),
1825                                     (unsigned int)count);
1826                 if (idetape_copy_stage_to_user(tape, buf, actually_read))
1827                         ret = -EFAULT;
1828                 buf += actually_read;
1829                 tape->merge_bh_size -= actually_read;
1830                 count -= actually_read;
1831         }
1832         while (count >= tape->buffer_size) {
1833                 bytes_read = idetape_add_chrdev_read_request(drive, ctl);
1834                 if (bytes_read <= 0)
1835                         goto finish;
1836                 if (idetape_copy_stage_to_user(tape, buf, bytes_read))
1837                         ret = -EFAULT;
1838                 buf += bytes_read;
1839                 count -= bytes_read;
1840                 actually_read += bytes_read;
1841         }
1842         if (count) {
1843                 bytes_read = idetape_add_chrdev_read_request(drive, ctl);
1844                 if (bytes_read <= 0)
1845                         goto finish;
1846                 temp = min((unsigned long)count, (unsigned long)bytes_read);
1847                 if (idetape_copy_stage_to_user(tape, buf, temp))
1848                         ret = -EFAULT;
1849                 actually_read += temp;
1850                 tape->merge_bh_size = bytes_read-temp;
1851         }
1852 finish:
1853         if (!actually_read && test_bit(IDETAPE_FLAG_FILEMARK, &tape->flags)) {
1854                 debug_log(DBG_SENSE, "%s: spacing over filemark\n", tape->name);
1855
1856                 idetape_space_over_filemarks(drive, MTFSF, 1);
1857                 return 0;
1858         }
1859
1860         return ret ? ret : actually_read;
1861 }
1862
1863 static ssize_t idetape_chrdev_write(struct file *file, const char __user *buf,
1864                                      size_t count, loff_t *ppos)
1865 {
1866         struct ide_tape_obj *tape = ide_tape_f(file);
1867         ide_drive_t *drive = tape->drive;
1868         ssize_t actually_written = 0;
1869         ssize_t ret = 0;
1870         u16 ctl = *(u16 *)&tape->caps[12];
1871
1872         /* The drive is write protected. */
1873         if (tape->write_prot)
1874                 return -EACCES;
1875
1876         debug_log(DBG_CHRDEV, "Enter %s, count %Zd\n", __func__, count);
1877
1878         /* Initialize write operation */
1879         if (tape->chrdev_dir != IDETAPE_DIR_WRITE) {
1880                 if (tape->chrdev_dir == IDETAPE_DIR_READ)
1881                         ide_tape_discard_merge_buffer(drive, 1);
1882                 if (tape->merge_bh || tape->merge_bh_size) {
1883                         printk(KERN_ERR "ide-tape: merge_bh_size "
1884                                 "should be 0 now\n");
1885                         tape->merge_bh_size = 0;
1886                 }
1887                 tape->merge_bh = ide_tape_kmalloc_buffer(tape, 0, 0);
1888                 if (!tape->merge_bh)
1889                         return -ENOMEM;
1890                 tape->chrdev_dir = IDETAPE_DIR_WRITE;
1891                 idetape_init_merge_buffer(tape);
1892
1893                 /*
1894                  * Issue a write 0 command to ensure that DSC handshake is
1895                  * switched from completion mode to buffer available mode. No
1896                  * point in issuing this if DSC overlap isn't supported, some
1897                  * drives (Seagate STT3401A) will return an error.
1898                  */
1899                 if (drive->dsc_overlap) {
1900                         ssize_t retval = idetape_queue_rw_tail(drive,
1901                                                         REQ_IDETAPE_WRITE, 0,
1902                                                         tape->merge_bh);
1903                         if (retval < 0) {
1904                                 ide_tape_kfree_buffer(tape);
1905                                 tape->merge_bh = NULL;
1906                                 tape->chrdev_dir = IDETAPE_DIR_NONE;
1907                                 return retval;
1908                         }
1909                 }
1910         }
1911         if (count == 0)
1912                 return (0);
1913         if (tape->merge_bh_size) {
1914                 if (tape->merge_bh_size >= tape->buffer_size) {
1915                         printk(KERN_ERR "ide-tape: bug: merge buf too big\n");
1916                         tape->merge_bh_size = 0;
1917                 }
1918                 actually_written = min((unsigned int)
1919                                 (tape->buffer_size - tape->merge_bh_size),
1920                                 (unsigned int)count);
1921                 if (idetape_copy_stage_from_user(tape, buf, actually_written))
1922                                 ret = -EFAULT;
1923                 buf += actually_written;
1924                 tape->merge_bh_size += actually_written;
1925                 count -= actually_written;
1926
1927                 if (tape->merge_bh_size == tape->buffer_size) {
1928                         ssize_t retval;
1929                         tape->merge_bh_size = 0;
1930                         retval = idetape_add_chrdev_write_request(drive, ctl);
1931                         if (retval <= 0)
1932                                 return (retval);
1933                 }
1934         }
1935         while (count >= tape->buffer_size) {
1936                 ssize_t retval;
1937                 if (idetape_copy_stage_from_user(tape, buf, tape->buffer_size))
1938                         ret = -EFAULT;
1939                 buf += tape->buffer_size;
1940                 count -= tape->buffer_size;
1941                 retval = idetape_add_chrdev_write_request(drive, ctl);
1942                 actually_written += tape->buffer_size;
1943                 if (retval <= 0)
1944                         return (retval);
1945         }
1946         if (count) {
1947                 actually_written += count;
1948                 if (idetape_copy_stage_from_user(tape, buf, count))
1949                         ret = -EFAULT;
1950                 tape->merge_bh_size += count;
1951         }
1952         return ret ? ret : actually_written;
1953 }
1954
1955 static int idetape_write_filemark(ide_drive_t *drive)
1956 {
1957         struct ide_atapi_pc pc;
1958
1959         /* Write a filemark */
1960         idetape_create_write_filemark_cmd(drive, &pc, 1);
1961         if (idetape_queue_pc_tail(drive, &pc)) {
1962                 printk(KERN_ERR "ide-tape: Couldn't write a filemark\n");
1963                 return -EIO;
1964         }
1965         return 0;
1966 }
1967
1968 /*
1969  * Called from idetape_chrdev_ioctl when the general mtio MTIOCTOP ioctl is
1970  * requested.
1971  *
1972  * Note: MTBSF and MTBSFM are not supported when the tape doesn't support
1973  * spacing over filemarks in the reverse direction. In this case, MTFSFM is also
1974  * usually not supported.
1975  *
1976  * The following commands are currently not supported:
1977  *
1978  * MTFSS, MTBSS, MTWSM, MTSETDENSITY, MTSETDRVBUFFER, MT_ST_BOOLEANS,
1979  * MT_ST_WRITE_THRESHOLD.
1980  */
1981 static int idetape_mtioctop(ide_drive_t *drive, short mt_op, int mt_count)
1982 {
1983         idetape_tape_t *tape = drive->driver_data;
1984         struct ide_atapi_pc pc;
1985         int i, retval;
1986
1987         debug_log(DBG_ERR, "Handling MTIOCTOP ioctl: mt_op=%d, mt_count=%d\n",
1988                         mt_op, mt_count);
1989
1990         switch (mt_op) {
1991         case MTFSF:
1992         case MTFSFM:
1993         case MTBSF:
1994         case MTBSFM:
1995                 if (!mt_count)
1996                         return 0;
1997                 return idetape_space_over_filemarks(drive, mt_op, mt_count);
1998         default:
1999                 break;
2000         }
2001
2002         switch (mt_op) {
2003         case MTWEOF:
2004                 if (tape->write_prot)
2005                         return -EACCES;
2006                 ide_tape_discard_merge_buffer(drive, 1);
2007                 for (i = 0; i < mt_count; i++) {
2008                         retval = idetape_write_filemark(drive);
2009                         if (retval)
2010                                 return retval;
2011                 }
2012                 return 0;
2013         case MTREW:
2014                 ide_tape_discard_merge_buffer(drive, 0);
2015                 if (idetape_rewind_tape(drive))
2016                         return -EIO;
2017                 return 0;
2018         case MTLOAD:
2019                 ide_tape_discard_merge_buffer(drive, 0);
2020                 idetape_create_load_unload_cmd(drive, &pc,
2021                                                IDETAPE_LU_LOAD_MASK);
2022                 return idetape_queue_pc_tail(drive, &pc);
2023         case MTUNLOAD:
2024         case MTOFFL:
2025                 /*
2026                  * If door is locked, attempt to unlock before
2027                  * attempting to eject.
2028                  */
2029                 if (tape->door_locked) {
2030                         if (idetape_create_prevent_cmd(drive, &pc, 0))
2031                                 if (!idetape_queue_pc_tail(drive, &pc))
2032                                         tape->door_locked = DOOR_UNLOCKED;
2033                 }
2034                 ide_tape_discard_merge_buffer(drive, 0);
2035                 idetape_create_load_unload_cmd(drive, &pc,
2036                                               !IDETAPE_LU_LOAD_MASK);
2037                 retval = idetape_queue_pc_tail(drive, &pc);
2038                 if (!retval)
2039                         clear_bit(IDETAPE_FLAG_MEDIUM_PRESENT, &tape->flags);
2040                 return retval;
2041         case MTNOP:
2042                 ide_tape_discard_merge_buffer(drive, 0);
2043                 return idetape_flush_tape_buffers(drive);
2044         case MTRETEN:
2045                 ide_tape_discard_merge_buffer(drive, 0);
2046                 idetape_create_load_unload_cmd(drive, &pc,
2047                         IDETAPE_LU_RETENSION_MASK | IDETAPE_LU_LOAD_MASK);
2048                 return idetape_queue_pc_tail(drive, &pc);
2049         case MTEOM:
2050                 idetape_create_space_cmd(&pc, 0, IDETAPE_SPACE_TO_EOD);
2051                 return idetape_queue_pc_tail(drive, &pc);
2052         case MTERASE:
2053                 (void)idetape_rewind_tape(drive);
2054                 idetape_create_erase_cmd(&pc);
2055                 return idetape_queue_pc_tail(drive, &pc);
2056         case MTSETBLK:
2057                 if (mt_count) {
2058                         if (mt_count < tape->blk_size ||
2059                             mt_count % tape->blk_size)
2060                                 return -EIO;
2061                         tape->user_bs_factor = mt_count / tape->blk_size;
2062                         clear_bit(IDETAPE_FLAG_DETECT_BS, &tape->flags);
2063                 } else
2064                         set_bit(IDETAPE_FLAG_DETECT_BS, &tape->flags);
2065                 return 0;
2066         case MTSEEK:
2067                 ide_tape_discard_merge_buffer(drive, 0);
2068                 return idetape_position_tape(drive,
2069                         mt_count * tape->user_bs_factor, tape->partition, 0);
2070         case MTSETPART:
2071                 ide_tape_discard_merge_buffer(drive, 0);
2072                 return idetape_position_tape(drive, 0, mt_count, 0);
2073         case MTFSR:
2074         case MTBSR:
2075         case MTLOCK:
2076                 if (!idetape_create_prevent_cmd(drive, &pc, 1))
2077                         return 0;
2078                 retval = idetape_queue_pc_tail(drive, &pc);
2079                 if (retval)
2080                         return retval;
2081                 tape->door_locked = DOOR_EXPLICITLY_LOCKED;
2082                 return 0;
2083         case MTUNLOCK:
2084                 if (!idetape_create_prevent_cmd(drive, &pc, 0))
2085                         return 0;
2086                 retval = idetape_queue_pc_tail(drive, &pc);
2087                 if (retval)
2088                         return retval;
2089                 tape->door_locked = DOOR_UNLOCKED;
2090                 return 0;
2091         default:
2092                 printk(KERN_ERR "ide-tape: MTIO operation %d not supported\n",
2093                                 mt_op);
2094                 return -EIO;
2095         }
2096 }
2097
2098 /*
2099  * Our character device ioctls. General mtio.h magnetic io commands are
2100  * supported here, and not in the corresponding block interface. Our own
2101  * ide-tape ioctls are supported on both interfaces.
2102  */
2103 static int idetape_chrdev_ioctl(struct inode *inode, struct file *file,
2104                                 unsigned int cmd, unsigned long arg)
2105 {
2106         struct ide_tape_obj *tape = ide_tape_f(file);
2107         ide_drive_t *drive = tape->drive;
2108         struct mtop mtop;
2109         struct mtget mtget;
2110         struct mtpos mtpos;
2111         int block_offset = 0, position = tape->first_frame;
2112         void __user *argp = (void __user *)arg;
2113
2114         debug_log(DBG_CHRDEV, "Enter %s, cmd=%u\n", __func__, cmd);
2115
2116         if (tape->chrdev_dir == IDETAPE_DIR_WRITE) {
2117                 ide_tape_flush_merge_buffer(drive);
2118                 idetape_flush_tape_buffers(drive);
2119         }
2120         if (cmd == MTIOCGET || cmd == MTIOCPOS) {
2121                 block_offset = tape->merge_bh_size /
2122                         (tape->blk_size * tape->user_bs_factor);
2123                 position = idetape_read_position(drive);
2124                 if (position < 0)
2125                         return -EIO;
2126         }
2127         switch (cmd) {
2128         case MTIOCTOP:
2129                 if (copy_from_user(&mtop, argp, sizeof(struct mtop)))
2130                         return -EFAULT;
2131                 return idetape_mtioctop(drive, mtop.mt_op, mtop.mt_count);
2132         case MTIOCGET:
2133                 memset(&mtget, 0, sizeof(struct mtget));
2134                 mtget.mt_type = MT_ISSCSI2;
2135                 mtget.mt_blkno = position / tape->user_bs_factor - block_offset;
2136                 mtget.mt_dsreg =
2137                         ((tape->blk_size * tape->user_bs_factor)
2138                          << MT_ST_BLKSIZE_SHIFT) & MT_ST_BLKSIZE_MASK;
2139
2140                 if (tape->drv_write_prot)
2141                         mtget.mt_gstat |= GMT_WR_PROT(0xffffffff);
2142
2143                 if (copy_to_user(argp, &mtget, sizeof(struct mtget)))
2144                         return -EFAULT;
2145                 return 0;
2146         case MTIOCPOS:
2147                 mtpos.mt_blkno = position / tape->user_bs_factor - block_offset;
2148                 if (copy_to_user(argp, &mtpos, sizeof(struct mtpos)))
2149                         return -EFAULT;
2150                 return 0;
2151         default:
2152                 if (tape->chrdev_dir == IDETAPE_DIR_READ)
2153                         ide_tape_discard_merge_buffer(drive, 1);
2154                 return idetape_blkdev_ioctl(drive, cmd, arg);
2155         }
2156 }
2157
2158 /*
2159  * Do a mode sense page 0 with block descriptor and if it succeeds set the tape
2160  * block size with the reported value.
2161  */
2162 static void ide_tape_get_bsize_from_bdesc(ide_drive_t *drive)
2163 {
2164         idetape_tape_t *tape = drive->driver_data;
2165         struct ide_atapi_pc pc;
2166
2167         idetape_create_mode_sense_cmd(&pc, IDETAPE_BLOCK_DESCRIPTOR);
2168         if (idetape_queue_pc_tail(drive, &pc)) {
2169                 printk(KERN_ERR "ide-tape: Can't get block descriptor\n");
2170                 if (tape->blk_size == 0) {
2171                         printk(KERN_WARNING "ide-tape: Cannot deal with zero "
2172                                             "block size, assuming 32k\n");
2173                         tape->blk_size = 32768;
2174                 }
2175                 return;
2176         }
2177         tape->blk_size = (pc.buf[4 + 5] << 16) +
2178                                 (pc.buf[4 + 6] << 8)  +
2179                                  pc.buf[4 + 7];
2180         tape->drv_write_prot = (pc.buf[2] & 0x80) >> 7;
2181 }
2182
2183 static int idetape_chrdev_open(struct inode *inode, struct file *filp)
2184 {
2185         unsigned int minor = iminor(inode), i = minor & ~0xc0;
2186         ide_drive_t *drive;
2187         idetape_tape_t *tape;
2188         struct ide_atapi_pc pc;
2189         int retval;
2190
2191         if (i >= MAX_HWIFS * MAX_DRIVES)
2192                 return -ENXIO;
2193
2194         tape = ide_tape_chrdev_get(i);
2195         if (!tape)
2196                 return -ENXIO;
2197
2198         debug_log(DBG_CHRDEV, "Enter %s\n", __func__);
2199
2200         /*
2201          * We really want to do nonseekable_open(inode, filp); here, but some
2202          * versions of tar incorrectly call lseek on tapes and bail out if that
2203          * fails.  So we disallow pread() and pwrite(), but permit lseeks.
2204          */
2205         filp->f_mode &= ~(FMODE_PREAD | FMODE_PWRITE);
2206
2207         drive = tape->drive;
2208
2209         filp->private_data = tape;
2210
2211         if (test_and_set_bit(IDETAPE_FLAG_BUSY, &tape->flags)) {
2212                 retval = -EBUSY;
2213                 goto out_put_tape;
2214         }
2215
2216         retval = idetape_wait_ready(drive, 60 * HZ);
2217         if (retval) {
2218                 clear_bit(IDETAPE_FLAG_BUSY, &tape->flags);
2219                 printk(KERN_ERR "ide-tape: %s: drive not ready\n", tape->name);
2220                 goto out_put_tape;
2221         }
2222
2223         idetape_read_position(drive);
2224         if (!test_bit(IDETAPE_FLAG_ADDRESS_VALID, &tape->flags))
2225                 (void)idetape_rewind_tape(drive);
2226
2227         /* Read block size and write protect status from drive. */
2228         ide_tape_get_bsize_from_bdesc(drive);
2229
2230         /* Set write protect flag if device is opened as read-only. */
2231         if ((filp->f_flags & O_ACCMODE) == O_RDONLY)
2232                 tape->write_prot = 1;
2233         else
2234                 tape->write_prot = tape->drv_write_prot;
2235
2236         /* Make sure drive isn't write protected if user wants to write. */
2237         if (tape->write_prot) {
2238                 if ((filp->f_flags & O_ACCMODE) == O_WRONLY ||
2239                     (filp->f_flags & O_ACCMODE) == O_RDWR) {
2240                         clear_bit(IDETAPE_FLAG_BUSY, &tape->flags);
2241                         retval = -EROFS;
2242                         goto out_put_tape;
2243                 }
2244         }
2245
2246         /* Lock the tape drive door so user can't eject. */
2247         if (tape->chrdev_dir == IDETAPE_DIR_NONE) {
2248                 if (idetape_create_prevent_cmd(drive, &pc, 1)) {
2249                         if (!idetape_queue_pc_tail(drive, &pc)) {
2250                                 if (tape->door_locked != DOOR_EXPLICITLY_LOCKED)
2251                                         tape->door_locked = DOOR_LOCKED;
2252                         }
2253                 }
2254         }
2255         return 0;
2256
2257 out_put_tape:
2258         ide_tape_put(tape);
2259         return retval;
2260 }
2261
2262 static void idetape_write_release(ide_drive_t *drive, unsigned int minor)
2263 {
2264         idetape_tape_t *tape = drive->driver_data;
2265
2266         ide_tape_flush_merge_buffer(drive);
2267         tape->merge_bh = ide_tape_kmalloc_buffer(tape, 1, 0);
2268         if (tape->merge_bh != NULL) {
2269                 idetape_pad_zeros(drive, tape->blk_size *
2270                                 (tape->user_bs_factor - 1));
2271                 ide_tape_kfree_buffer(tape);
2272                 tape->merge_bh = NULL;
2273         }
2274         idetape_write_filemark(drive);
2275         idetape_flush_tape_buffers(drive);
2276         idetape_flush_tape_buffers(drive);
2277 }
2278
2279 static int idetape_chrdev_release(struct inode *inode, struct file *filp)
2280 {
2281         struct ide_tape_obj *tape = ide_tape_f(filp);
2282         ide_drive_t *drive = tape->drive;
2283         struct ide_atapi_pc pc;
2284         unsigned int minor = iminor(inode);
2285
2286         lock_kernel();
2287         tape = drive->driver_data;
2288
2289         debug_log(DBG_CHRDEV, "Enter %s\n", __func__);
2290
2291         if (tape->chrdev_dir == IDETAPE_DIR_WRITE)
2292                 idetape_write_release(drive, minor);
2293         if (tape->chrdev_dir == IDETAPE_DIR_READ) {
2294                 if (minor < 128)
2295                         ide_tape_discard_merge_buffer(drive, 1);
2296         }
2297
2298         if (minor < 128 && test_bit(IDETAPE_FLAG_MEDIUM_PRESENT, &tape->flags))
2299                 (void) idetape_rewind_tape(drive);
2300         if (tape->chrdev_dir == IDETAPE_DIR_NONE) {
2301                 if (tape->door_locked == DOOR_LOCKED) {
2302                         if (idetape_create_prevent_cmd(drive, &pc, 0)) {
2303                                 if (!idetape_queue_pc_tail(drive, &pc))
2304                                         tape->door_locked = DOOR_UNLOCKED;
2305                         }
2306                 }
2307         }
2308         clear_bit(IDETAPE_FLAG_BUSY, &tape->flags);
2309         ide_tape_put(tape);
2310         unlock_kernel();
2311         return 0;
2312 }
2313
2314 /*
2315  * check the contents of the ATAPI IDENTIFY command results. We return:
2316  *
2317  * 1 - If the tape can be supported by us, based on the information we have so
2318  * far.
2319  *
2320  * 0 - If this tape driver is not currently supported by us.
2321  */
2322 static int idetape_identify_device(ide_drive_t *drive)
2323 {
2324         u8 gcw[2], protocol, device_type, removable, packet_size;
2325
2326         if (drive->id_read == 0)
2327                 return 1;
2328
2329         *((unsigned short *) &gcw) = drive->id->config;
2330
2331         protocol        =   (gcw[1] & 0xC0) >> 6;
2332         device_type     =    gcw[1] & 0x1F;
2333         removable       = !!(gcw[0] & 0x80);
2334         packet_size     =    gcw[0] & 0x3;
2335
2336         /* Check that we can support this device */
2337         if (protocol != 2)
2338                 printk(KERN_ERR "ide-tape: Protocol (0x%02x) is not ATAPI\n",
2339                                 protocol);
2340         else if (device_type != 1)
2341                 printk(KERN_ERR "ide-tape: Device type (0x%02x) is not set "
2342                                 "to tape\n", device_type);
2343         else if (!removable)
2344                 printk(KERN_ERR "ide-tape: The removable flag is not set\n");
2345         else if (packet_size != 0) {
2346                 printk(KERN_ERR "ide-tape: Packet size (0x%02x) is not 12"
2347                                 " bytes\n", packet_size);
2348         } else
2349                 return 1;
2350         return 0;
2351 }
2352
2353 static void idetape_get_inquiry_results(ide_drive_t *drive)
2354 {
2355         idetape_tape_t *tape = drive->driver_data;
2356         struct ide_atapi_pc pc;
2357         char fw_rev[6], vendor_id[10], product_id[18];
2358
2359         idetape_create_inquiry_cmd(&pc);
2360         if (idetape_queue_pc_tail(drive, &pc)) {
2361                 printk(KERN_ERR "ide-tape: %s: can't get INQUIRY results\n",
2362                                 tape->name);
2363                 return;
2364         }
2365         memcpy(vendor_id, &pc.buf[8], 8);
2366         memcpy(product_id, &pc.buf[16], 16);
2367         memcpy(fw_rev, &pc.buf[32], 4);
2368
2369         ide_fixstring(vendor_id, 10, 0);
2370         ide_fixstring(product_id, 18, 0);
2371         ide_fixstring(fw_rev, 6, 0);
2372
2373         printk(KERN_INFO "ide-tape: %s <-> %s: %s %s rev %s\n",
2374                         drive->name, tape->name, vendor_id, product_id, fw_rev);
2375 }
2376
2377 /*
2378  * Ask the tape about its various parameters. In particular, we will adjust our
2379  * data transfer buffer size to the recommended value as returned by the tape.
2380  */
2381 static void idetape_get_mode_sense_results(ide_drive_t *drive)
2382 {
2383         idetape_tape_t *tape = drive->driver_data;
2384         struct ide_atapi_pc pc;
2385         u8 *caps;
2386         u8 speed, max_speed;
2387
2388         idetape_create_mode_sense_cmd(&pc, IDETAPE_CAPABILITIES_PAGE);
2389         if (idetape_queue_pc_tail(drive, &pc)) {
2390                 printk(KERN_ERR "ide-tape: Can't get tape parameters - assuming"
2391                                 " some default values\n");
2392                 tape->blk_size = 512;
2393                 put_unaligned(52,   (u16 *)&tape->caps[12]);
2394                 put_unaligned(540,  (u16 *)&tape->caps[14]);
2395                 put_unaligned(6*52, (u16 *)&tape->caps[16]);
2396                 return;
2397         }
2398         caps = pc.buf + 4 + pc.buf[3];
2399
2400         /* convert to host order and save for later use */
2401         speed = be16_to_cpu(*(u16 *)&caps[14]);
2402         max_speed = be16_to_cpu(*(u16 *)&caps[8]);
2403
2404         put_unaligned(max_speed, (u16 *)&caps[8]);
2405         put_unaligned(be16_to_cpu(*(u16 *)&caps[12]), (u16 *)&caps[12]);
2406         put_unaligned(speed, (u16 *)&caps[14]);
2407         put_unaligned(be16_to_cpu(*(u16 *)&caps[16]), (u16 *)&caps[16]);
2408
2409         if (!speed) {
2410                 printk(KERN_INFO "ide-tape: %s: invalid tape speed "
2411                                 "(assuming 650KB/sec)\n", drive->name);
2412                 put_unaligned(650, (u16 *)&caps[14]);
2413         }
2414         if (!max_speed) {
2415                 printk(KERN_INFO "ide-tape: %s: invalid max_speed "
2416                                 "(assuming 650KB/sec)\n", drive->name);
2417                 put_unaligned(650, (u16 *)&caps[8]);
2418         }
2419
2420         memcpy(&tape->caps, caps, 20);
2421         if (caps[7] & 0x02)
2422                 tape->blk_size = 512;
2423         else if (caps[7] & 0x04)
2424                 tape->blk_size = 1024;
2425 }
2426
2427 #ifdef CONFIG_IDE_PROC_FS
2428 static void idetape_add_settings(ide_drive_t *drive)
2429 {
2430         idetape_tape_t *tape = drive->driver_data;
2431
2432         ide_add_setting(drive, "buffer", SETTING_READ, TYPE_SHORT, 0, 0xffff,
2433                         1, 2, (u16 *)&tape->caps[16], NULL);
2434         ide_add_setting(drive, "speed", SETTING_READ, TYPE_SHORT, 0, 0xffff,
2435                         1, 1, (u16 *)&tape->caps[14], NULL);
2436         ide_add_setting(drive, "buffer_size", SETTING_READ, TYPE_INT, 0, 0xffff,
2437                         1, 1024, &tape->buffer_size, NULL);
2438         ide_add_setting(drive, "tdsc", SETTING_RW, TYPE_INT, IDETAPE_DSC_RW_MIN,
2439                         IDETAPE_DSC_RW_MAX, 1000, HZ, &tape->best_dsc_rw_freq,
2440                         NULL);
2441         ide_add_setting(drive, "dsc_overlap", SETTING_RW, TYPE_BYTE, 0, 1, 1,
2442                         1, &drive->dsc_overlap, NULL);
2443         ide_add_setting(drive, "avg_speed", SETTING_READ, TYPE_INT, 0, 0xffff,
2444                         1, 1, &tape->avg_speed, NULL);
2445         ide_add_setting(drive, "debug_mask", SETTING_RW, TYPE_INT, 0, 0xffff, 1,
2446                         1, &tape->debug_mask, NULL);
2447 }
2448 #else
2449 static inline void idetape_add_settings(ide_drive_t *drive) { ; }
2450 #endif
2451
2452 /*
2453  * The function below is called to:
2454  *
2455  * 1. Initialize our various state variables.
2456  * 2. Ask the tape for its capabilities.
2457  * 3. Allocate a buffer which will be used for data transfer. The buffer size
2458  * is chosen based on the recommendation which we received in step 2.
2459  *
2460  * Note that at this point ide.c already assigned us an irq, so that we can
2461  * queue requests here and wait for their completion.
2462  */
2463 static void idetape_setup(ide_drive_t *drive, idetape_tape_t *tape, int minor)
2464 {
2465         unsigned long t;
2466         int speed;
2467         int buffer_size;
2468         u8 gcw[2];
2469         u16 *ctl = (u16 *)&tape->caps[12];
2470
2471         spin_lock_init(&tape->lock);
2472         drive->dsc_overlap = 1;
2473         if (drive->hwif->host_flags & IDE_HFLAG_NO_DSC) {
2474                 printk(KERN_INFO "ide-tape: %s: disabling DSC overlap\n",
2475                                  tape->name);
2476                 drive->dsc_overlap = 0;
2477         }
2478         /* Seagate Travan drives do not support DSC overlap. */
2479         if (strstr(drive->id->model, "Seagate STT3401"))
2480                 drive->dsc_overlap = 0;
2481         tape->minor = minor;
2482         tape->name[0] = 'h';
2483         tape->name[1] = 't';
2484         tape->name[2] = '0' + minor;
2485         tape->chrdev_dir = IDETAPE_DIR_NONE;
2486         tape->pc = tape->pc_stack;
2487         *((unsigned short *) &gcw) = drive->id->config;
2488
2489         /* Command packet DRQ type */
2490         if (((gcw[0] & 0x60) >> 5) == 1)
2491                 set_bit(IDETAPE_FLAG_DRQ_INTERRUPT, &tape->flags);
2492
2493         idetape_get_inquiry_results(drive);
2494         idetape_get_mode_sense_results(drive);
2495         ide_tape_get_bsize_from_bdesc(drive);
2496         tape->user_bs_factor = 1;
2497         tape->buffer_size = *ctl * tape->blk_size;
2498         while (tape->buffer_size > 0xffff) {
2499                 printk(KERN_NOTICE "ide-tape: decreasing stage size\n");
2500                 *ctl /= 2;
2501                 tape->buffer_size = *ctl * tape->blk_size;
2502         }
2503         buffer_size = tape->buffer_size;
2504         tape->pages_per_buffer = buffer_size / PAGE_SIZE;
2505         if (buffer_size % PAGE_SIZE) {
2506                 tape->pages_per_buffer++;
2507                 tape->excess_bh_size = PAGE_SIZE - buffer_size % PAGE_SIZE;
2508         }
2509
2510         /* select the "best" DSC read/write polling freq */
2511         speed = max(*(u16 *)&tape->caps[14], *(u16 *)&tape->caps[8]);
2512
2513         t = (IDETAPE_FIFO_THRESHOLD * tape->buffer_size * HZ) / (speed * 1000);
2514
2515         /*
2516          * Ensure that the number we got makes sense; limit it within
2517          * IDETAPE_DSC_RW_MIN and IDETAPE_DSC_RW_MAX.
2518          */
2519         tape->best_dsc_rw_freq = clamp_t(unsigned long, t, IDETAPE_DSC_RW_MIN,
2520                                          IDETAPE_DSC_RW_MAX);
2521         printk(KERN_INFO "ide-tape: %s <-> %s: %dKBps, %d*%dkB buffer, "
2522                 "%lums tDSC%s\n",
2523                 drive->name, tape->name, *(u16 *)&tape->caps[14],
2524                 (*(u16 *)&tape->caps[16] * 512) / tape->buffer_size,
2525                 tape->buffer_size / 1024,
2526                 tape->best_dsc_rw_freq * 1000 / HZ,
2527                 drive->using_dma ? ", DMA":"");
2528
2529         idetape_add_settings(drive);
2530 }
2531
2532 static void ide_tape_remove(ide_drive_t *drive)
2533 {
2534         idetape_tape_t *tape = drive->driver_data;
2535
2536         ide_proc_unregister_driver(drive, tape->driver);
2537
2538         ide_unregister_region(tape->disk);
2539
2540         ide_tape_put(tape);
2541 }
2542
2543 static void ide_tape_release(struct kref *kref)
2544 {
2545         struct ide_tape_obj *tape = to_ide_tape(kref);
2546         ide_drive_t *drive = tape->drive;
2547         struct gendisk *g = tape->disk;
2548
2549         BUG_ON(tape->merge_bh_size);
2550
2551         drive->dsc_overlap = 0;
2552         drive->driver_data = NULL;
2553         device_destroy(idetape_sysfs_class, MKDEV(IDETAPE_MAJOR, tape->minor));
2554         device_destroy(idetape_sysfs_class,
2555                         MKDEV(IDETAPE_MAJOR, tape->minor + 128));
2556         idetape_devs[tape->minor] = NULL;
2557         g->private_data = NULL;
2558         put_disk(g);
2559         kfree(tape);
2560 }
2561
2562 #ifdef CONFIG_IDE_PROC_FS
2563 static int proc_idetape_read_name
2564         (char *page, char **start, off_t off, int count, int *eof, void *data)
2565 {
2566         ide_drive_t     *drive = (ide_drive_t *) data;
2567         idetape_tape_t  *tape = drive->driver_data;
2568         char            *out = page;
2569         int             len;
2570
2571         len = sprintf(out, "%s\n", tape->name);
2572         PROC_IDE_READ_RETURN(page, start, off, count, eof, len);
2573 }
2574
2575 static ide_proc_entry_t idetape_proc[] = {
2576         { "capacity",   S_IFREG|S_IRUGO,        proc_ide_read_capacity, NULL },
2577         { "name",       S_IFREG|S_IRUGO,        proc_idetape_read_name, NULL },
2578         { NULL, 0, NULL, NULL }
2579 };
2580 #endif
2581
2582 static int ide_tape_probe(ide_drive_t *);
2583
2584 static ide_driver_t idetape_driver = {
2585         .gen_driver = {
2586                 .owner          = THIS_MODULE,
2587                 .name           = "ide-tape",
2588                 .bus            = &ide_bus_type,
2589         },
2590         .probe                  = ide_tape_probe,
2591         .remove                 = ide_tape_remove,
2592         .version                = IDETAPE_VERSION,
2593         .media                  = ide_tape,
2594         .supports_dsc_overlap   = 1,
2595         .do_request             = idetape_do_request,
2596         .end_request            = idetape_end_request,
2597         .error                  = __ide_error,
2598         .abort                  = __ide_abort,
2599 #ifdef CONFIG_IDE_PROC_FS
2600         .proc                   = idetape_proc,
2601 #endif
2602 };
2603
2604 /* Our character device supporting functions, passed to register_chrdev. */
2605 static const struct file_operations idetape_fops = {
2606         .owner          = THIS_MODULE,
2607         .read           = idetape_chrdev_read,
2608         .write          = idetape_chrdev_write,
2609         .ioctl          = idetape_chrdev_ioctl,
2610         .open           = idetape_chrdev_open,
2611         .release        = idetape_chrdev_release,
2612 };
2613
2614 static int idetape_open(struct inode *inode, struct file *filp)
2615 {
2616         struct gendisk *disk = inode->i_bdev->bd_disk;
2617         struct ide_tape_obj *tape;
2618
2619         tape = ide_tape_get(disk);
2620         if (!tape)
2621                 return -ENXIO;
2622
2623         return 0;
2624 }
2625
2626 static int idetape_release(struct inode *inode, struct file *filp)
2627 {
2628         struct gendisk *disk = inode->i_bdev->bd_disk;
2629         struct ide_tape_obj *tape = ide_tape_g(disk);
2630
2631         ide_tape_put(tape);
2632
2633         return 0;
2634 }
2635
2636 static int idetape_ioctl(struct inode *inode, struct file *file,
2637                         unsigned int cmd, unsigned long arg)
2638 {
2639         struct block_device *bdev = inode->i_bdev;
2640         struct ide_tape_obj *tape = ide_tape_g(bdev->bd_disk);
2641         ide_drive_t *drive = tape->drive;
2642         int err = generic_ide_ioctl(drive, file, bdev, cmd, arg);
2643         if (err == -EINVAL)
2644                 err = idetape_blkdev_ioctl(drive, cmd, arg);
2645         return err;
2646 }
2647
2648 static struct block_device_operations idetape_block_ops = {
2649         .owner          = THIS_MODULE,
2650         .open           = idetape_open,
2651         .release        = idetape_release,
2652         .ioctl          = idetape_ioctl,
2653 };
2654
2655 static int ide_tape_probe(ide_drive_t *drive)
2656 {
2657         idetape_tape_t *tape;
2658         struct gendisk *g;
2659         int minor;
2660
2661         if (!strstr("ide-tape", drive->driver_req))
2662                 goto failed;
2663         if (!drive->present)
2664                 goto failed;
2665         if (drive->media != ide_tape)
2666                 goto failed;
2667         if (!idetape_identify_device(drive)) {
2668                 printk(KERN_ERR "ide-tape: %s: not supported by this version of"
2669                                 " the driver\n", drive->name);
2670                 goto failed;
2671         }
2672         tape = kzalloc(sizeof(idetape_tape_t), GFP_KERNEL);
2673         if (tape == NULL) {
2674                 printk(KERN_ERR "ide-tape: %s: Can't allocate a tape struct\n",
2675                                 drive->name);
2676                 goto failed;
2677         }
2678
2679         g = alloc_disk(1 << PARTN_BITS);
2680         if (!g)
2681                 goto out_free_tape;
2682
2683         ide_init_disk(g, drive);
2684
2685         ide_proc_register_driver(drive, &idetape_driver);
2686
2687         kref_init(&tape->kref);
2688
2689         tape->drive = drive;
2690         tape->driver = &idetape_driver;
2691         tape->disk = g;
2692
2693         g->private_data = &tape->driver;
2694
2695         drive->driver_data = tape;
2696
2697         mutex_lock(&idetape_ref_mutex);
2698         for (minor = 0; idetape_devs[minor]; minor++)
2699                 ;
2700         idetape_devs[minor] = tape;
2701         mutex_unlock(&idetape_ref_mutex);
2702
2703         idetape_setup(drive, tape, minor);
2704
2705         device_create(idetape_sysfs_class, &drive->gendev,
2706                       MKDEV(IDETAPE_MAJOR, minor), "%s", tape->name);
2707         device_create(idetape_sysfs_class, &drive->gendev,
2708                         MKDEV(IDETAPE_MAJOR, minor + 128), "n%s", tape->name);
2709
2710         g->fops = &idetape_block_ops;
2711         ide_register_region(g);
2712
2713         return 0;
2714
2715 out_free_tape:
2716         kfree(tape);
2717 failed:
2718         return -ENODEV;
2719 }
2720
2721 static void __exit idetape_exit(void)
2722 {
2723         driver_unregister(&idetape_driver.gen_driver);
2724         class_destroy(idetape_sysfs_class);
2725         unregister_chrdev(IDETAPE_MAJOR, "ht");
2726 }
2727
2728 static int __init idetape_init(void)
2729 {
2730         int error = 1;
2731         idetape_sysfs_class = class_create(THIS_MODULE, "ide_tape");
2732         if (IS_ERR(idetape_sysfs_class)) {
2733                 idetape_sysfs_class = NULL;
2734                 printk(KERN_ERR "Unable to create sysfs class for ide tapes\n");
2735                 error = -EBUSY;
2736                 goto out;
2737         }
2738
2739         if (register_chrdev(IDETAPE_MAJOR, "ht", &idetape_fops)) {
2740                 printk(KERN_ERR "ide-tape: Failed to register chrdev"
2741                                 " interface\n");
2742                 error = -EBUSY;
2743                 goto out_free_class;
2744         }
2745
2746         error = driver_register(&idetape_driver.gen_driver);
2747         if (error)
2748                 goto out_free_driver;
2749
2750         return 0;
2751
2752 out_free_driver:
2753         driver_unregister(&idetape_driver.gen_driver);
2754 out_free_class:
2755         class_destroy(idetape_sysfs_class);
2756 out:
2757         return error;
2758 }
2759
2760 MODULE_ALIAS("ide:*m-tape*");
2761 module_init(idetape_init);
2762 module_exit(idetape_exit);
2763 MODULE_ALIAS_CHARDEV_MAJOR(IDETAPE_MAJOR);
2764 MODULE_DESCRIPTION("ATAPI Streaming TAPE Driver");
2765 MODULE_LICENSE("GPL");