ide: move ide_remove_port_from_hwgroup() to ide-probe.c
[safe/jmp/linux-2.6] / drivers / ide / ide-probe.c
1 /*
2  *  Copyright (C) 1994-1998   Linus Torvalds & authors (see below)
3  *  Copyright (C) 2005, 2007  Bartlomiej Zolnierkiewicz
4  */
5
6 /*
7  *  Mostly written by Mark Lord <mlord@pobox.com>
8  *                and Gadi Oxman <gadio@netvision.net.il>
9  *                and Andre Hedrick <andre@linux-ide.org>
10  *
11  *  See linux/MAINTAINERS for address of current maintainer.
12  *
13  * This is the IDE probe module, as evolved from hd.c and ide.c.
14  *
15  * -- increase WAIT_PIDENTIFY to avoid CD-ROM locking at boot
16  *       by Andrea Arcangeli
17  */
18
19 #include <linux/module.h>
20 #include <linux/types.h>
21 #include <linux/string.h>
22 #include <linux/kernel.h>
23 #include <linux/timer.h>
24 #include <linux/mm.h>
25 #include <linux/interrupt.h>
26 #include <linux/major.h>
27 #include <linux/errno.h>
28 #include <linux/genhd.h>
29 #include <linux/slab.h>
30 #include <linux/delay.h>
31 #include <linux/ide.h>
32 #include <linux/spinlock.h>
33 #include <linux/kmod.h>
34 #include <linux/pci.h>
35 #include <linux/scatterlist.h>
36
37 #include <asm/byteorder.h>
38 #include <asm/irq.h>
39 #include <asm/uaccess.h>
40 #include <asm/io.h>
41
42 static ide_hwif_t ide_hwifs[MAX_HWIFS]; /* master data repository */
43
44 /**
45  *      generic_id              -       add a generic drive id
46  *      @drive: drive to make an ID block for
47  *      
48  *      Add a fake id field to the drive we are passed. This allows
49  *      use to skip a ton of NULL checks (which people always miss) 
50  *      and make drive properties unconditional outside of this file
51  */
52  
53 static void generic_id(ide_drive_t *drive)
54 {
55         drive->id->cyls = drive->cyl;
56         drive->id->heads = drive->head;
57         drive->id->sectors = drive->sect;
58         drive->id->cur_cyls = drive->cyl;
59         drive->id->cur_heads = drive->head;
60         drive->id->cur_sectors = drive->sect;
61 }
62
63 static void ide_disk_init_chs(ide_drive_t *drive)
64 {
65         struct hd_driveid *id = drive->id;
66
67         /* Extract geometry if we did not already have one for the drive */
68         if (!drive->cyl || !drive->head || !drive->sect) {
69                 drive->cyl  = drive->bios_cyl  = id->cyls;
70                 drive->head = drive->bios_head = id->heads;
71                 drive->sect = drive->bios_sect = id->sectors;
72         }
73
74         /* Handle logical geometry translation by the drive */
75         if ((id->field_valid & 1) && id->cur_cyls &&
76             id->cur_heads && (id->cur_heads <= 16) && id->cur_sectors) {
77                 drive->cyl  = id->cur_cyls;
78                 drive->head = id->cur_heads;
79                 drive->sect = id->cur_sectors;
80         }
81
82         /* Use physical geometry if what we have still makes no sense */
83         if (drive->head > 16 && id->heads && id->heads <= 16) {
84                 drive->cyl  = id->cyls;
85                 drive->head = id->heads;
86                 drive->sect = id->sectors;
87         }
88 }
89
90 static void ide_disk_init_mult_count(ide_drive_t *drive)
91 {
92         struct hd_driveid *id = drive->id;
93
94         drive->mult_count = 0;
95         if (id->max_multsect) {
96 #ifdef CONFIG_IDEDISK_MULTI_MODE
97                 id->multsect = ((id->max_multsect/2) > 1) ? id->max_multsect : 0;
98                 id->multsect_valid = id->multsect ? 1 : 0;
99                 drive->mult_req = id->multsect_valid ? id->max_multsect : 0;
100                 drive->special.b.set_multmode = drive->mult_req ? 1 : 0;
101 #else   /* original, pre IDE-NFG, per request of AC */
102                 drive->mult_req = 0;
103                 if (drive->mult_req > id->max_multsect)
104                         drive->mult_req = id->max_multsect;
105                 if (drive->mult_req || ((id->multsect_valid & 1) && id->multsect))
106                         drive->special.b.set_multmode = 1;
107 #endif
108         }
109 }
110
111 /**
112  *      do_identify     -       identify a drive
113  *      @drive: drive to identify 
114  *      @cmd: command used
115  *
116  *      Called when we have issued a drive identify command to
117  *      read and parse the results. This function is run with
118  *      interrupts disabled. 
119  */
120  
121 static inline void do_identify (ide_drive_t *drive, u8 cmd)
122 {
123         ide_hwif_t *hwif = HWIF(drive);
124         int bswap = 1;
125         struct hd_driveid *id;
126
127         id = drive->id;
128         /* read 512 bytes of id info */
129         hwif->tp_ops->input_data(drive, NULL, id, SECTOR_SIZE);
130
131         drive->id_read = 1;
132         local_irq_enable();
133 #ifdef DEBUG
134         printk(KERN_INFO "%s: dumping identify data\n", drive->name);
135         ide_dump_identify((u8 *)id);
136 #endif
137         ide_fix_driveid(id);
138
139 #if defined (CONFIG_SCSI_EATA_PIO) || defined (CONFIG_SCSI_EATA)
140         /*
141          * EATA SCSI controllers do a hardware ATA emulation:
142          * Ignore them if there is a driver for them available.
143          */
144         if ((id->model[0] == 'P' && id->model[1] == 'M') ||
145             (id->model[0] == 'S' && id->model[1] == 'K')) {
146                 printk("%s: EATA SCSI HBA %.10s\n", drive->name, id->model);
147                 goto err_misc;
148         }
149 #endif /* CONFIG_SCSI_EATA || CONFIG_SCSI_EATA_PIO */
150
151         /*
152          *  WIN_IDENTIFY returns little-endian info,
153          *  WIN_PIDENTIFY *usually* returns little-endian info.
154          */
155         if (cmd == WIN_PIDENTIFY) {
156                 if ((id->model[0] == 'N' && id->model[1] == 'E') /* NEC */
157                  || (id->model[0] == 'F' && id->model[1] == 'X') /* Mitsumi */
158                  || (id->model[0] == 'P' && id->model[1] == 'i'))/* Pioneer */
159                         /* Vertos drives may still be weird */
160                         bswap ^= 1;     
161         }
162         ide_fixstring(id->model,     sizeof(id->model),     bswap);
163         ide_fixstring(id->fw_rev,    sizeof(id->fw_rev),    bswap);
164         ide_fixstring(id->serial_no, sizeof(id->serial_no), bswap);
165
166         /* we depend on this a lot! */
167         id->model[sizeof(id->model)-1] = '\0';
168
169         if (strstr(id->model, "E X A B Y T E N E S T"))
170                 goto err_misc;
171
172         printk("%s: %s, ", drive->name, id->model);
173         drive->present = 1;
174         drive->dead = 0;
175
176         /*
177          * Check for an ATAPI device
178          */
179         if (cmd == WIN_PIDENTIFY) {
180                 u8 type = (id->config >> 8) & 0x1f;
181                 printk("ATAPI ");
182                 switch (type) {
183                         case ide_floppy:
184                                 if (!strstr(id->model, "CD-ROM")) {
185                                         if (!strstr(id->model, "oppy") &&
186                                             !strstr(id->model, "poyp") &&
187                                             !strstr(id->model, "ZIP"))
188                                                 printk("cdrom or floppy?, assuming ");
189                                         if (drive->media != ide_cdrom) {
190                                                 printk ("FLOPPY");
191                                                 drive->removable = 1;
192                                                 break;
193                                         }
194                                 }
195                                 /* Early cdrom models used zero */
196                                 type = ide_cdrom;
197                         case ide_cdrom:
198                                 drive->removable = 1;
199 #ifdef CONFIG_PPC
200                                 /* kludge for Apple PowerBook internal zip */
201                                 if (!strstr(id->model, "CD-ROM") &&
202                                     strstr(id->model, "ZIP")) {
203                                         printk ("FLOPPY");
204                                         type = ide_floppy;
205                                         break;
206                                 }
207 #endif
208                                 printk ("CD/DVD-ROM");
209                                 break;
210                         case ide_tape:
211                                 printk ("TAPE");
212                                 break;
213                         case ide_optical:
214                                 printk ("OPTICAL");
215                                 drive->removable = 1;
216                                 break;
217                         default:
218                                 printk("UNKNOWN (type %d)", type);
219                                 break;
220                 }
221                 printk (" drive\n");
222                 drive->media = type;
223                 /* an ATAPI device ignores DRDY */
224                 drive->ready_stat = 0;
225                 return;
226         }
227
228         /*
229          * Not an ATAPI device: looks like a "regular" hard disk
230          */
231
232         /*
233          * 0x848a = CompactFlash device
234          * These are *not* removable in Linux definition of the term
235          */
236
237         if ((id->config != 0x848a) && (id->config & (1<<7)))
238                 drive->removable = 1;
239
240         drive->media = ide_disk;
241         printk("%s DISK drive\n", (id->config == 0x848a) ? "CFA" : "ATA" );
242
243         return;
244
245 err_misc:
246         kfree(id);
247         drive->present = 0;
248         return;
249 }
250
251 /**
252  *      actual_try_to_identify  -       send ata/atapi identify
253  *      @drive: drive to identify
254  *      @cmd: command to use
255  *
256  *      try_to_identify() sends an ATA(PI) IDENTIFY request to a drive
257  *      and waits for a response.  It also monitors irqs while this is
258  *      happening, in hope of automatically determining which one is
259  *      being used by the interface.
260  *
261  *      Returns:        0  device was identified
262  *                      1  device timed-out (no response to identify request)
263  *                      2  device aborted the command (refused to identify itself)
264  */
265
266 static int actual_try_to_identify (ide_drive_t *drive, u8 cmd)
267 {
268         ide_hwif_t *hwif = HWIF(drive);
269         struct ide_io_ports *io_ports = &hwif->io_ports;
270         const struct ide_tp_ops *tp_ops = hwif->tp_ops;
271         int use_altstatus = 0, rc;
272         unsigned long timeout;
273         u8 s = 0, a = 0;
274
275         /* take a deep breath */
276         msleep(50);
277
278         if (io_ports->ctl_addr) {
279                 a = tp_ops->read_altstatus(hwif);
280                 s = tp_ops->read_status(hwif);
281                 if ((a ^ s) & ~INDEX_STAT)
282                         /* ancient Seagate drives, broken interfaces */
283                         printk(KERN_INFO "%s: probing with STATUS(0x%02x) "
284                                          "instead of ALTSTATUS(0x%02x)\n",
285                                          drive->name, s, a);
286                 else
287                         /* use non-intrusive polling */
288                         use_altstatus = 1;
289         }
290
291         /* set features register for atapi
292          * identify command to be sure of reply
293          */
294         if (cmd == WIN_PIDENTIFY) {
295                 ide_task_t task;
296
297                 memset(&task, 0, sizeof(task));
298                 /* disable DMA & overlap */
299                 task.tf_flags = IDE_TFLAG_OUT_FEATURE;
300
301                 tp_ops->tf_load(drive, &task);
302         }
303
304         /* ask drive for ID */
305         tp_ops->exec_command(hwif, cmd);
306
307         timeout = ((cmd == WIN_IDENTIFY) ? WAIT_WORSTCASE : WAIT_PIDENTIFY) / 2;
308         timeout += jiffies;
309         do {
310                 if (time_after(jiffies, timeout)) {
311                         /* drive timed-out */
312                         return 1;
313                 }
314                 /* give drive a breather */
315                 msleep(50);
316                 s = use_altstatus ? tp_ops->read_altstatus(hwif)
317                                   : tp_ops->read_status(hwif);
318         } while (s & BUSY_STAT);
319
320         /* wait for IRQ and DRQ_STAT */
321         msleep(50);
322         s = tp_ops->read_status(hwif);
323
324         if (OK_STAT(s, DRQ_STAT, BAD_R_STAT)) {
325                 unsigned long flags;
326
327                 /* local CPU only; some systems need this */
328                 local_irq_save(flags);
329                 /* drive returned ID */
330                 do_identify(drive, cmd);
331                 /* drive responded with ID */
332                 rc = 0;
333                 /* clear drive IRQ */
334                 (void)tp_ops->read_status(hwif);
335                 local_irq_restore(flags);
336         } else {
337                 /* drive refused ID */
338                 rc = 2;
339         }
340         return rc;
341 }
342
343 /**
344  *      try_to_identify -       try to identify a drive
345  *      @drive: drive to probe
346  *      @cmd: command to use
347  *
348  *      Issue the identify command and then do IRQ probing to
349  *      complete the identification when needed by finding the
350  *      IRQ the drive is attached to
351  */
352  
353 static int try_to_identify (ide_drive_t *drive, u8 cmd)
354 {
355         ide_hwif_t *hwif = HWIF(drive);
356         const struct ide_tp_ops *tp_ops = hwif->tp_ops;
357         int retval;
358         int autoprobe = 0;
359         unsigned long cookie = 0;
360
361         /*
362          * Disable device irq unless we need to
363          * probe for it. Otherwise we'll get spurious
364          * interrupts during the identify-phase that
365          * the irq handler isn't expecting.
366          */
367         if (hwif->io_ports.ctl_addr) {
368                 if (!hwif->irq) {
369                         autoprobe = 1;
370                         cookie = probe_irq_on();
371                 }
372                 tp_ops->set_irq(hwif, autoprobe);
373         }
374
375         retval = actual_try_to_identify(drive, cmd);
376
377         if (autoprobe) {
378                 int irq;
379
380                 tp_ops->set_irq(hwif, 0);
381                 /* clear drive IRQ */
382                 (void)tp_ops->read_status(hwif);
383                 udelay(5);
384                 irq = probe_irq_off(cookie);
385                 if (!hwif->irq) {
386                         if (irq > 0) {
387                                 hwif->irq = irq;
388                         } else {
389                                 /* Mmmm.. multiple IRQs..
390                                  * don't know which was ours
391                                  */
392                                 printk("%s: IRQ probe failed (0x%lx)\n",
393                                         drive->name, cookie);
394                         }
395                 }
396         }
397         return retval;
398 }
399
400 static int ide_busy_sleep(ide_hwif_t *hwif)
401 {
402         unsigned long timeout = jiffies + WAIT_WORSTCASE;
403         u8 stat;
404
405         do {
406                 msleep(50);
407                 stat = hwif->tp_ops->read_status(hwif);
408                 if ((stat & BUSY_STAT) == 0)
409                         return 0;
410         } while (time_before(jiffies, timeout));
411
412         return 1;
413 }
414
415 static u8 ide_read_device(ide_drive_t *drive)
416 {
417         ide_task_t task;
418
419         memset(&task, 0, sizeof(task));
420         task.tf_flags = IDE_TFLAG_IN_DEVICE;
421
422         drive->hwif->tp_ops->tf_read(drive, &task);
423
424         return task.tf.device;
425 }
426
427 /**
428  *      do_probe                -       probe an IDE device
429  *      @drive: drive to probe
430  *      @cmd: command to use
431  *
432  *      do_probe() has the difficult job of finding a drive if it exists,
433  *      without getting hung up if it doesn't exist, without trampling on
434  *      ethernet cards, and without leaving any IRQs dangling to haunt us later.
435  *
436  *      If a drive is "known" to exist (from CMOS or kernel parameters),
437  *      but does not respond right away, the probe will "hang in there"
438  *      for the maximum wait time (about 30 seconds), otherwise it will
439  *      exit much more quickly.
440  *
441  * Returns:     0  device was identified
442  *              1  device timed-out (no response to identify request)
443  *              2  device aborted the command (refused to identify itself)
444  *              3  bad status from device (possible for ATAPI drives)
445  *              4  probe was not attempted because failure was obvious
446  */
447
448 static int do_probe (ide_drive_t *drive, u8 cmd)
449 {
450         ide_hwif_t *hwif = HWIF(drive);
451         const struct ide_tp_ops *tp_ops = hwif->tp_ops;
452         int rc;
453         u8 stat;
454
455         if (drive->present) {
456                 /* avoid waiting for inappropriate probes */
457                 if ((drive->media != ide_disk) && (cmd == WIN_IDENTIFY))
458                         return 4;
459         }
460 #ifdef DEBUG
461         printk("probing for %s: present=%d, media=%d, probetype=%s\n",
462                 drive->name, drive->present, drive->media,
463                 (cmd == WIN_IDENTIFY) ? "ATA" : "ATAPI");
464 #endif
465
466         /* needed for some systems
467          * (e.g. crw9624 as drive0 with disk as slave)
468          */
469         msleep(50);
470         SELECT_DRIVE(drive);
471         msleep(50);
472
473         if (ide_read_device(drive) != drive->select.all && !drive->present) {
474                 if (drive->select.b.unit != 0) {
475                         /* exit with drive0 selected */
476                         SELECT_DRIVE(&hwif->drives[0]);
477                         /* allow BUSY_STAT to assert & clear */
478                         msleep(50);
479                 }
480                 /* no i/f present: mmm.. this should be a 4 -ml */
481                 return 3;
482         }
483
484         stat = tp_ops->read_status(hwif);
485
486         if (OK_STAT(stat, READY_STAT, BUSY_STAT) ||
487             drive->present || cmd == WIN_PIDENTIFY) {
488                 /* send cmd and wait */
489                 if ((rc = try_to_identify(drive, cmd))) {
490                         /* failed: try again */
491                         rc = try_to_identify(drive,cmd);
492                 }
493
494                 stat = tp_ops->read_status(hwif);
495
496                 if (stat == (BUSY_STAT | READY_STAT))
497                         return 4;
498
499                 if (rc == 1 && cmd == WIN_PIDENTIFY) {
500                         printk(KERN_ERR "%s: no response (status = 0x%02x), "
501                                         "resetting drive\n", drive->name, stat);
502                         msleep(50);
503                         SELECT_DRIVE(drive);
504                         msleep(50);
505                         tp_ops->exec_command(hwif, WIN_SRST);
506                         (void)ide_busy_sleep(hwif);
507                         rc = try_to_identify(drive, cmd);
508                 }
509
510                 /* ensure drive IRQ is clear */
511                 stat = tp_ops->read_status(hwif);
512
513                 if (rc == 1)
514                         printk(KERN_ERR "%s: no response (status = 0x%02x)\n",
515                                         drive->name, stat);
516         } else {
517                 /* not present or maybe ATAPI */
518                 rc = 3;
519         }
520         if (drive->select.b.unit != 0) {
521                 /* exit with drive0 selected */
522                 SELECT_DRIVE(&hwif->drives[0]);
523                 msleep(50);
524                 /* ensure drive irq is clear */
525                 (void)tp_ops->read_status(hwif);
526         }
527         return rc;
528 }
529
530 /*
531  *
532  */
533 static void enable_nest (ide_drive_t *drive)
534 {
535         ide_hwif_t *hwif = HWIF(drive);
536         const struct ide_tp_ops *tp_ops = hwif->tp_ops;
537         u8 stat;
538
539         printk("%s: enabling %s -- ", hwif->name, drive->id->model);
540         SELECT_DRIVE(drive);
541         msleep(50);
542         tp_ops->exec_command(hwif, EXABYTE_ENABLE_NEST);
543
544         if (ide_busy_sleep(hwif)) {
545                 printk(KERN_CONT "failed (timeout)\n");
546                 return;
547         }
548
549         msleep(50);
550
551         stat = tp_ops->read_status(hwif);
552
553         if (!OK_STAT(stat, 0, BAD_STAT))
554                 printk(KERN_CONT "failed (status = 0x%02x)\n", stat);
555         else
556                 printk(KERN_CONT "success\n");
557
558         /* if !(success||timed-out) */
559         if (do_probe(drive, WIN_IDENTIFY) >= 2) {
560                 /* look for ATAPI device */
561                 (void) do_probe(drive, WIN_PIDENTIFY);
562         }
563 }
564
565 /**
566  *      probe_for_drives        -       upper level drive probe
567  *      @drive: drive to probe for
568  *
569  *      probe_for_drive() tests for existence of a given drive using do_probe()
570  *      and presents things to the user as needed.
571  *
572  *      Returns:        0  no device was found
573  *                      1  device was found (note: drive->present might
574  *                         still be 0)
575  */
576  
577 static inline u8 probe_for_drive (ide_drive_t *drive)
578 {
579         /*
580          *      In order to keep things simple we have an id
581          *      block for all drives at all times. If the device
582          *      is pre ATA or refuses ATA/ATAPI identify we
583          *      will add faked data to this.
584          *
585          *      Also note that 0 everywhere means "can't do X"
586          */
587  
588         drive->id = kzalloc(SECTOR_WORDS *4, GFP_KERNEL);
589         drive->id_read = 0;
590         if(drive->id == NULL)
591         {
592                 printk(KERN_ERR "ide: out of memory for id data.\n");
593                 return 0;
594         }
595         strcpy(drive->id->model, "UNKNOWN");
596         
597         /* skip probing? */
598         if (!drive->noprobe)
599         {
600                 /* if !(success||timed-out) */
601                 if (do_probe(drive, WIN_IDENTIFY) >= 2) {
602                         /* look for ATAPI device */
603                         (void) do_probe(drive, WIN_PIDENTIFY);
604                 }
605                 if (!drive->present)
606                         /* drive not found */
607                         return 0;
608                 if (strstr(drive->id->model, "E X A B Y T E N E S T"))
609                         enable_nest(drive);
610         
611                 /* identification failed? */
612                 if (!drive->id_read) {
613                         if (drive->media == ide_disk) {
614                                 printk(KERN_INFO "%s: non-IDE drive, CHS=%d/%d/%d\n",
615                                         drive->name, drive->cyl,
616                                         drive->head, drive->sect);
617                         } else if (drive->media == ide_cdrom) {
618                                 printk(KERN_INFO "%s: ATAPI cdrom (?)\n", drive->name);
619                         } else {
620                                 /* nuke it */
621                                 printk(KERN_WARNING "%s: Unknown device on bus refused identification. Ignoring.\n", drive->name);
622                                 drive->present = 0;
623                         }
624                 }
625                 /* drive was found */
626         }
627         if(!drive->present)
628                 return 0;
629         /* The drive wasn't being helpful. Add generic info only */
630         if (drive->id_read == 0) {
631                 generic_id(drive);
632                 return 1;
633         }
634
635         if (drive->media == ide_disk) {
636                 ide_disk_init_chs(drive);
637                 ide_disk_init_mult_count(drive);
638         }
639
640         return drive->present;
641 }
642
643 static void hwif_release_dev (struct device *dev)
644 {
645         ide_hwif_t *hwif = container_of(dev, ide_hwif_t, gendev);
646
647         complete(&hwif->gendev_rel_comp);
648 }
649
650 static int ide_register_port(ide_hwif_t *hwif)
651 {
652         int ret;
653
654         /* register with global device tree */
655         strlcpy(hwif->gendev.bus_id,hwif->name,BUS_ID_SIZE);
656         hwif->gendev.driver_data = hwif;
657         if (hwif->gendev.parent == NULL) {
658                 if (hwif->dev)
659                         hwif->gendev.parent = hwif->dev;
660                 else
661                         /* Would like to do = &device_legacy */
662                         hwif->gendev.parent = NULL;
663         }
664         hwif->gendev.release = hwif_release_dev;
665         ret = device_register(&hwif->gendev);
666         if (ret < 0) {
667                 printk(KERN_WARNING "IDE: %s: device_register error: %d\n",
668                         __func__, ret);
669                 goto out;
670         }
671
672         hwif->portdev = device_create_drvdata(ide_port_class, &hwif->gendev,
673                                               MKDEV(0, 0), hwif, hwif->name);
674         if (IS_ERR(hwif->portdev)) {
675                 ret = PTR_ERR(hwif->portdev);
676                 device_unregister(&hwif->gendev);
677         }
678 out:
679         return ret;
680 }
681
682 /**
683  *      ide_port_wait_ready     -       wait for port to become ready
684  *      @hwif: IDE port
685  *
686  *      This is needed on some PPCs and a bunch of BIOS-less embedded
687  *      platforms.  Typical cases are:
688  *
689  *      - The firmware hard reset the disk before booting the kernel,
690  *        the drive is still doing it's poweron-reset sequence, that
691  *        can take up to 30 seconds.
692  *
693  *      - The firmware does nothing (or no firmware), the device is
694  *        still in POST state (same as above actually).
695  *
696  *      - Some CD/DVD/Writer combo drives tend to drive the bus during
697  *        their reset sequence even when they are non-selected slave
698  *        devices, thus preventing discovery of the main HD.
699  *
700  *      Doing this wait-for-non-busy should not harm any existing
701  *      configuration and fix some issues like the above.
702  *
703  *      BenH.
704  *
705  *      Returns 0 on success, error code (< 0) otherwise.
706  */
707
708 static int ide_port_wait_ready(ide_hwif_t *hwif)
709 {
710         int unit, rc;
711
712         printk(KERN_DEBUG "Probing IDE interface %s...\n", hwif->name);
713
714         /* Let HW settle down a bit from whatever init state we
715          * come from */
716         mdelay(2);
717
718         /* Wait for BSY bit to go away, spec timeout is 30 seconds,
719          * I know of at least one disk who takes 31 seconds, I use 35
720          * here to be safe
721          */
722         rc = ide_wait_not_busy(hwif, 35000);
723         if (rc)
724                 return rc;
725
726         /* Now make sure both master & slave are ready */
727         for (unit = 0; unit < MAX_DRIVES; unit++) {
728                 ide_drive_t *drive = &hwif->drives[unit];
729
730                 /* Ignore disks that we will not probe for later. */
731                 if (!drive->noprobe || drive->present) {
732                         SELECT_DRIVE(drive);
733                         hwif->tp_ops->set_irq(hwif, 1);
734                         mdelay(2);
735                         rc = ide_wait_not_busy(hwif, 35000);
736                         if (rc)
737                                 goto out;
738                 } else
739                         printk(KERN_DEBUG "%s: ide_wait_not_busy() skipped\n",
740                                           drive->name);
741         }
742 out:
743         /* Exit function with master reselected (let's be sane) */
744         if (unit)
745                 SELECT_DRIVE(&hwif->drives[0]);
746
747         return rc;
748 }
749
750 /**
751  *      ide_undecoded_slave     -       look for bad CF adapters
752  *      @drive1: drive
753  *
754  *      Analyse the drives on the interface and attempt to decide if we
755  *      have the same drive viewed twice. This occurs with crap CF adapters
756  *      and PCMCIA sometimes.
757  */
758
759 void ide_undecoded_slave(ide_drive_t *drive1)
760 {
761         ide_drive_t *drive0 = &drive1->hwif->drives[0];
762
763         if ((drive1->dn & 1) == 0 || drive0->present == 0)
764                 return;
765
766         /* If the models don't match they are not the same product */
767         if (strcmp(drive0->id->model, drive1->id->model))
768                 return;
769
770         /* Serial numbers do not match */
771         if (strncmp(drive0->id->serial_no, drive1->id->serial_no, 20))
772                 return;
773
774         /* No serial number, thankfully very rare for CF */
775         if (drive0->id->serial_no[0] == 0)
776                 return;
777
778         /* Appears to be an IDE flash adapter with decode bugs */
779         printk(KERN_WARNING "ide-probe: ignoring undecoded slave\n");
780
781         drive1->present = 0;
782 }
783
784 EXPORT_SYMBOL_GPL(ide_undecoded_slave);
785
786 static int ide_probe_port(ide_hwif_t *hwif)
787 {
788         unsigned long flags;
789         unsigned int irqd;
790         int unit, rc = -ENODEV;
791
792         BUG_ON(hwif->present);
793
794         if (hwif->drives[0].noprobe && hwif->drives[1].noprobe)
795                 return -EACCES;
796
797         /*
798          * We must always disable IRQ, as probe_for_drive will assert IRQ, but
799          * we'll install our IRQ driver much later...
800          */
801         irqd = hwif->irq;
802         if (irqd)
803                 disable_irq(hwif->irq);
804
805         local_irq_set(flags);
806
807         if (ide_port_wait_ready(hwif) == -EBUSY)
808                 printk(KERN_DEBUG "%s: Wait for ready failed before probe !\n", hwif->name);
809
810         /*
811          * Second drive should only exist if first drive was found,
812          * but a lot of cdrom drives are configured as single slaves.
813          */
814         for (unit = 0; unit < MAX_DRIVES; ++unit) {
815                 ide_drive_t *drive = &hwif->drives[unit];
816                 drive->dn = (hwif->channel ? 2 : 0) + unit;
817                 (void) probe_for_drive(drive);
818                 if (drive->present)
819                         rc = 0;
820         }
821
822         local_irq_restore(flags);
823
824         /*
825          * Use cached IRQ number. It might be (and is...) changed by probe
826          * code above
827          */
828         if (irqd)
829                 enable_irq(irqd);
830
831         return rc;
832 }
833
834 static void ide_port_tune_devices(ide_hwif_t *hwif)
835 {
836         const struct ide_port_ops *port_ops = hwif->port_ops;
837         int unit;
838
839         for (unit = 0; unit < MAX_DRIVES; unit++) {
840                 ide_drive_t *drive = &hwif->drives[unit];
841
842                 if (drive->present && port_ops && port_ops->quirkproc)
843                         port_ops->quirkproc(drive);
844         }
845
846         for (unit = 0; unit < MAX_DRIVES; ++unit) {
847                 ide_drive_t *drive = &hwif->drives[unit];
848
849                 if (drive->present) {
850                         ide_set_max_pio(drive);
851
852                         drive->nice1 = 1;
853
854                         if (hwif->dma_ops)
855                                 ide_set_dma(drive);
856                 }
857         }
858
859         for (unit = 0; unit < MAX_DRIVES; ++unit) {
860                 ide_drive_t *drive = &hwif->drives[unit];
861
862                 if (hwif->host_flags & IDE_HFLAG_NO_IO_32BIT)
863                         drive->no_io_32bit = 1;
864                 else
865                         drive->no_io_32bit = drive->id->dword_io ? 1 : 0;
866         }
867 }
868
869 #if MAX_HWIFS > 1
870 /*
871  * save_match() is used to simplify logic in init_irq() below.
872  *
873  * A loophole here is that we may not know about a particular
874  * hwif's irq until after that hwif is actually probed/initialized..
875  * This could be a problem for the case where an hwif is on a
876  * dual interface that requires serialization (eg. cmd640) and another
877  * hwif using one of the same irqs is initialized beforehand.
878  *
879  * This routine detects and reports such situations, but does not fix them.
880  */
881 static void save_match(ide_hwif_t *hwif, ide_hwif_t *new, ide_hwif_t **match)
882 {
883         ide_hwif_t *m = *match;
884
885         if (m && m->hwgroup && m->hwgroup != new->hwgroup) {
886                 if (!new->hwgroup)
887                         return;
888                 printk("%s: potential irq problem with %s and %s\n",
889                         hwif->name, new->name, m->name);
890         }
891         if (!m || m->irq != hwif->irq) /* don't undo a prior perfect match */
892                 *match = new;
893 }
894 #endif /* MAX_HWIFS > 1 */
895
896 /*
897  * init request queue
898  */
899 static int ide_init_queue(ide_drive_t *drive)
900 {
901         struct request_queue *q;
902         ide_hwif_t *hwif = HWIF(drive);
903         int max_sectors = 256;
904         int max_sg_entries = PRD_ENTRIES;
905
906         /*
907          *      Our default set up assumes the normal IDE case,
908          *      that is 64K segmenting, standard PRD setup
909          *      and LBA28. Some drivers then impose their own
910          *      limits and LBA48 we could raise it but as yet
911          *      do not.
912          */
913
914         q = blk_init_queue_node(do_ide_request, &ide_lock, hwif_to_node(hwif));
915         if (!q)
916                 return 1;
917
918         q->queuedata = drive;
919         blk_queue_segment_boundary(q, 0xffff);
920
921         if (hwif->rqsize < max_sectors)
922                 max_sectors = hwif->rqsize;
923         blk_queue_max_sectors(q, max_sectors);
924
925 #ifdef CONFIG_PCI
926         /* When we have an IOMMU, we may have a problem where pci_map_sg()
927          * creates segments that don't completely match our boundary
928          * requirements and thus need to be broken up again. Because it
929          * doesn't align properly either, we may actually have to break up
930          * to more segments than what was we got in the first place, a max
931          * worst case is twice as many.
932          * This will be fixed once we teach pci_map_sg() about our boundary
933          * requirements, hopefully soon. *FIXME*
934          */
935         if (!PCI_DMA_BUS_IS_PHYS)
936                 max_sg_entries >>= 1;
937 #endif /* CONFIG_PCI */
938
939         blk_queue_max_hw_segments(q, max_sg_entries);
940         blk_queue_max_phys_segments(q, max_sg_entries);
941
942         /* assign drive queue */
943         drive->queue = q;
944
945         /* needs drive->queue to be set */
946         ide_toggle_bounce(drive, 1);
947
948         return 0;
949 }
950
951 static void ide_add_drive_to_hwgroup(ide_drive_t *drive)
952 {
953         ide_hwgroup_t *hwgroup = drive->hwif->hwgroup;
954
955         spin_lock_irq(&ide_lock);
956         if (!hwgroup->drive) {
957                 /* first drive for hwgroup. */
958                 drive->next = drive;
959                 hwgroup->drive = drive;
960                 hwgroup->hwif = HWIF(hwgroup->drive);
961         } else {
962                 drive->next = hwgroup->drive->next;
963                 hwgroup->drive->next = drive;
964         }
965         spin_unlock_irq(&ide_lock);
966 }
967
968 /*
969  * For any present drive:
970  * - allocate the block device queue
971  * - link drive into the hwgroup
972  */
973 static void ide_port_setup_devices(ide_hwif_t *hwif)
974 {
975         int i;
976
977         mutex_lock(&ide_cfg_mtx);
978         for (i = 0; i < MAX_DRIVES; i++) {
979                 ide_drive_t *drive = &hwif->drives[i];
980
981                 if (!drive->present)
982                         continue;
983
984                 if (ide_init_queue(drive)) {
985                         printk(KERN_ERR "ide: failed to init %s\n",
986                                         drive->name);
987                         continue;
988                 }
989
990                 ide_add_drive_to_hwgroup(drive);
991         }
992         mutex_unlock(&ide_cfg_mtx);
993 }
994
995 void ide_remove_port_from_hwgroup(ide_hwif_t *hwif)
996 {
997         ide_hwgroup_t *hwgroup = hwif->hwgroup;
998
999         spin_lock_irq(&ide_lock);
1000         /*
1001          * Remove us from the hwgroup, and free
1002          * the hwgroup if we were the only member
1003          */
1004         if (hwif->next == hwif) {
1005                 BUG_ON(hwgroup->hwif != hwif);
1006                 kfree(hwgroup);
1007         } else {
1008                 /* There is another interface in hwgroup.
1009                  * Unlink us, and set hwgroup->drive and ->hwif to
1010                  * something sane.
1011                  */
1012                 ide_hwif_t *g = hwgroup->hwif;
1013
1014                 while (g->next != hwif)
1015                         g = g->next;
1016                 g->next = hwif->next;
1017                 if (hwgroup->hwif == hwif) {
1018                         /* Chose a random hwif for hwgroup->hwif.
1019                          * It's guaranteed that there are no drives
1020                          * left in the hwgroup.
1021                          */
1022                         BUG_ON(hwgroup->drive != NULL);
1023                         hwgroup->hwif = g;
1024                 }
1025                 BUG_ON(hwgroup->hwif == hwif);
1026         }
1027         spin_unlock_irq(&ide_lock);
1028 }
1029
1030 /*
1031  * This routine sets up the irq for an ide interface, and creates a new
1032  * hwgroup for the irq/hwif if none was previously assigned.
1033  *
1034  * Much of the code is for correctly detecting/handling irq sharing
1035  * and irq serialization situations.  This is somewhat complex because
1036  * it handles static as well as dynamic (PCMCIA) IDE interfaces.
1037  */
1038 static int init_irq (ide_hwif_t *hwif)
1039 {
1040         struct ide_io_ports *io_ports = &hwif->io_ports;
1041         unsigned int index;
1042         ide_hwgroup_t *hwgroup;
1043         ide_hwif_t *match = NULL;
1044
1045
1046         BUG_ON(in_interrupt());
1047         BUG_ON(irqs_disabled());        
1048         BUG_ON(hwif == NULL);
1049
1050         mutex_lock(&ide_cfg_mtx);
1051         hwif->hwgroup = NULL;
1052 #if MAX_HWIFS > 1
1053         /*
1054          * Group up with any other hwifs that share our irq(s).
1055          */
1056         for (index = 0; index < MAX_HWIFS; index++) {
1057                 ide_hwif_t *h = &ide_hwifs[index];
1058                 if (h->hwgroup) {  /* scan only initialized hwif's */
1059                         if (hwif->irq == h->irq) {
1060                                 hwif->sharing_irq = h->sharing_irq = 1;
1061                                 if (hwif->chipset != ide_pci ||
1062                                     h->chipset != ide_pci) {
1063                                         save_match(hwif, h, &match);
1064                                 }
1065                         }
1066                         if (hwif->serialized) {
1067                                 if (hwif->mate && hwif->mate->irq == h->irq)
1068                                         save_match(hwif, h, &match);
1069                         }
1070                         if (h->serialized) {
1071                                 if (h->mate && hwif->irq == h->mate->irq)
1072                                         save_match(hwif, h, &match);
1073                         }
1074                 }
1075         }
1076 #endif /* MAX_HWIFS > 1 */
1077         /*
1078          * If we are still without a hwgroup, then form a new one
1079          */
1080         if (match) {
1081                 hwgroup = match->hwgroup;
1082                 hwif->hwgroup = hwgroup;
1083                 /*
1084                  * Link us into the hwgroup.
1085                  * This must be done early, do ensure that unexpected_intr
1086                  * can find the hwif and prevent irq storms.
1087                  * No drives are attached to the new hwif, choose_drive
1088                  * can't do anything stupid (yet).
1089                  * Add ourself as the 2nd entry to the hwgroup->hwif
1090                  * linked list, the first entry is the hwif that owns
1091                  * hwgroup->handler - do not change that.
1092                  */
1093                 spin_lock_irq(&ide_lock);
1094                 hwif->next = hwgroup->hwif->next;
1095                 hwgroup->hwif->next = hwif;
1096                 BUG_ON(hwif->next == hwif);
1097                 spin_unlock_irq(&ide_lock);
1098         } else {
1099                 hwgroup = kmalloc_node(sizeof(*hwgroup), GFP_KERNEL|__GFP_ZERO,
1100                                        hwif_to_node(hwif));
1101                 if (hwgroup == NULL)
1102                         goto out_up;
1103
1104                 hwif->hwgroup = hwgroup;
1105                 hwgroup->hwif = hwif->next = hwif;
1106
1107                 init_timer(&hwgroup->timer);
1108                 hwgroup->timer.function = &ide_timer_expiry;
1109                 hwgroup->timer.data = (unsigned long) hwgroup;
1110         }
1111
1112         /*
1113          * Allocate the irq, if not already obtained for another hwif
1114          */
1115         if (!match || match->irq != hwif->irq) {
1116                 int sa = 0;
1117 #if defined(__mc68000__)
1118                 sa = IRQF_SHARED;
1119 #endif /* __mc68000__ */
1120
1121                 if (IDE_CHIPSET_IS_PCI(hwif->chipset))
1122                         sa = IRQF_SHARED;
1123
1124                 if (io_ports->ctl_addr)
1125                         hwif->tp_ops->set_irq(hwif, 1);
1126
1127                 if (request_irq(hwif->irq,&ide_intr,sa,hwif->name,hwgroup))
1128                         goto out_unlink;
1129         }
1130
1131         if (!hwif->rqsize) {
1132                 if ((hwif->host_flags & IDE_HFLAG_NO_LBA48) ||
1133                     (hwif->host_flags & IDE_HFLAG_NO_LBA48_DMA))
1134                         hwif->rqsize = 256;
1135                 else
1136                         hwif->rqsize = 65536;
1137         }
1138
1139 #if !defined(__mc68000__)
1140         printk("%s at 0x%03lx-0x%03lx,0x%03lx on irq %d", hwif->name,
1141                 io_ports->data_addr, io_ports->status_addr,
1142                 io_ports->ctl_addr, hwif->irq);
1143 #else
1144         printk("%s at 0x%08lx on irq %d", hwif->name,
1145                 io_ports->data_addr, hwif->irq);
1146 #endif /* __mc68000__ */
1147         if (match)
1148                 printk(" (%sed with %s)",
1149                         hwif->sharing_irq ? "shar" : "serializ", match->name);
1150         printk("\n");
1151
1152         mutex_unlock(&ide_cfg_mtx);
1153         return 0;
1154 out_unlink:
1155         ide_remove_port_from_hwgroup(hwif);
1156 out_up:
1157         mutex_unlock(&ide_cfg_mtx);
1158         return 1;
1159 }
1160
1161 static int ata_lock(dev_t dev, void *data)
1162 {
1163         /* FIXME: we want to pin hwif down */
1164         return 0;
1165 }
1166
1167 static struct kobject *ata_probe(dev_t dev, int *part, void *data)
1168 {
1169         ide_hwif_t *hwif = data;
1170         int unit = *part >> PARTN_BITS;
1171         ide_drive_t *drive = &hwif->drives[unit];
1172         if (!drive->present)
1173                 return NULL;
1174
1175         if (drive->media == ide_disk)
1176                 request_module("ide-disk");
1177         if (drive->scsi)
1178                 request_module("ide-scsi");
1179         if (drive->media == ide_cdrom || drive->media == ide_optical)
1180                 request_module("ide-cd");
1181         if (drive->media == ide_tape)
1182                 request_module("ide-tape");
1183         if (drive->media == ide_floppy)
1184                 request_module("ide-floppy");
1185
1186         return NULL;
1187 }
1188
1189 static struct kobject *exact_match(dev_t dev, int *part, void *data)
1190 {
1191         struct gendisk *p = data;
1192         *part &= (1 << PARTN_BITS) - 1;
1193         return &p->dev.kobj;
1194 }
1195
1196 static int exact_lock(dev_t dev, void *data)
1197 {
1198         struct gendisk *p = data;
1199
1200         if (!get_disk(p))
1201                 return -1;
1202         return 0;
1203 }
1204
1205 void ide_register_region(struct gendisk *disk)
1206 {
1207         blk_register_region(MKDEV(disk->major, disk->first_minor),
1208                             disk->minors, NULL, exact_match, exact_lock, disk);
1209 }
1210
1211 EXPORT_SYMBOL_GPL(ide_register_region);
1212
1213 void ide_unregister_region(struct gendisk *disk)
1214 {
1215         blk_unregister_region(MKDEV(disk->major, disk->first_minor),
1216                               disk->minors);
1217 }
1218
1219 EXPORT_SYMBOL_GPL(ide_unregister_region);
1220
1221 void ide_init_disk(struct gendisk *disk, ide_drive_t *drive)
1222 {
1223         ide_hwif_t *hwif = drive->hwif;
1224         unsigned int unit = (drive->select.all >> 4) & 1;
1225
1226         disk->major = hwif->major;
1227         disk->first_minor = unit << PARTN_BITS;
1228         sprintf(disk->disk_name, "hd%c", 'a' + hwif->index * MAX_DRIVES + unit);
1229         disk->queue = drive->queue;
1230 }
1231
1232 EXPORT_SYMBOL_GPL(ide_init_disk);
1233
1234 static void ide_remove_drive_from_hwgroup(ide_drive_t *drive)
1235 {
1236         ide_hwgroup_t *hwgroup = drive->hwif->hwgroup;
1237
1238         if (drive == drive->next) {
1239                 /* special case: last drive from hwgroup. */
1240                 BUG_ON(hwgroup->drive != drive);
1241                 hwgroup->drive = NULL;
1242         } else {
1243                 ide_drive_t *walk;
1244
1245                 walk = hwgroup->drive;
1246                 while (walk->next != drive)
1247                         walk = walk->next;
1248                 walk->next = drive->next;
1249                 if (hwgroup->drive == drive) {
1250                         hwgroup->drive = drive->next;
1251                         hwgroup->hwif = hwgroup->drive->hwif;
1252                 }
1253         }
1254         BUG_ON(hwgroup->drive == drive);
1255 }
1256
1257 static void drive_release_dev (struct device *dev)
1258 {
1259         ide_drive_t *drive = container_of(dev, ide_drive_t, gendev);
1260
1261         ide_proc_unregister_device(drive);
1262
1263         spin_lock_irq(&ide_lock);
1264         ide_remove_drive_from_hwgroup(drive);
1265         kfree(drive->id);
1266         drive->id = NULL;
1267         drive->present = 0;
1268         /* Messed up locking ... */
1269         spin_unlock_irq(&ide_lock);
1270         blk_cleanup_queue(drive->queue);
1271         spin_lock_irq(&ide_lock);
1272         drive->queue = NULL;
1273         spin_unlock_irq(&ide_lock);
1274
1275         complete(&drive->gendev_rel_comp);
1276 }
1277
1278 static int hwif_init(ide_hwif_t *hwif)
1279 {
1280         int old_irq;
1281
1282         if (!hwif->irq) {
1283                 hwif->irq = __ide_default_irq(hwif->io_ports.data_addr);
1284                 if (!hwif->irq) {
1285                         printk("%s: DISABLED, NO IRQ\n", hwif->name);
1286                         return 0;
1287                 }
1288         }
1289
1290         if (register_blkdev(hwif->major, hwif->name))
1291                 return 0;
1292
1293         if (!hwif->sg_max_nents)
1294                 hwif->sg_max_nents = PRD_ENTRIES;
1295
1296         hwif->sg_table = kmalloc(sizeof(struct scatterlist)*hwif->sg_max_nents,
1297                                  GFP_KERNEL);
1298         if (!hwif->sg_table) {
1299                 printk(KERN_ERR "%s: unable to allocate SG table.\n", hwif->name);
1300                 goto out;
1301         }
1302
1303         sg_init_table(hwif->sg_table, hwif->sg_max_nents);
1304         
1305         if (init_irq(hwif) == 0)
1306                 goto done;
1307
1308         old_irq = hwif->irq;
1309         /*
1310          *      It failed to initialise. Find the default IRQ for 
1311          *      this port and try that.
1312          */
1313         hwif->irq = __ide_default_irq(hwif->io_ports.data_addr);
1314         if (!hwif->irq) {
1315                 printk("%s: Disabled unable to get IRQ %d.\n",
1316                         hwif->name, old_irq);
1317                 goto out;
1318         }
1319         if (init_irq(hwif)) {
1320                 printk("%s: probed IRQ %d and default IRQ %d failed.\n",
1321                         hwif->name, old_irq, hwif->irq);
1322                 goto out;
1323         }
1324         printk("%s: probed IRQ %d failed, using default.\n",
1325                 hwif->name, hwif->irq);
1326
1327 done:
1328         blk_register_region(MKDEV(hwif->major, 0), MAX_DRIVES << PARTN_BITS,
1329                             THIS_MODULE, ata_probe, ata_lock, hwif);
1330         return 1;
1331
1332 out:
1333         unregister_blkdev(hwif->major, hwif->name);
1334         return 0;
1335 }
1336
1337 static void hwif_register_devices(ide_hwif_t *hwif)
1338 {
1339         unsigned int i;
1340
1341         for (i = 0; i < MAX_DRIVES; i++) {
1342                 ide_drive_t *drive = &hwif->drives[i];
1343                 struct device *dev = &drive->gendev;
1344                 int ret;
1345
1346                 if (!drive->present)
1347                         continue;
1348
1349                 ide_add_generic_settings(drive);
1350
1351                 snprintf(dev->bus_id, BUS_ID_SIZE, "%u.%u", hwif->index, i);
1352                 dev->parent = &hwif->gendev;
1353                 dev->bus = &ide_bus_type;
1354                 dev->driver_data = drive;
1355                 dev->release = drive_release_dev;
1356
1357                 ret = device_register(dev);
1358                 if (ret < 0)
1359                         printk(KERN_WARNING "IDE: %s: device_register error: "
1360                                             "%d\n", __func__, ret);
1361         }
1362 }
1363
1364 static void ide_port_init_devices(ide_hwif_t *hwif)
1365 {
1366         const struct ide_port_ops *port_ops = hwif->port_ops;
1367         int i;
1368
1369         for (i = 0; i < MAX_DRIVES; i++) {
1370                 ide_drive_t *drive = &hwif->drives[i];
1371
1372                 if (hwif->host_flags & IDE_HFLAG_IO_32BIT)
1373                         drive->io_32bit = 1;
1374                 if (hwif->host_flags & IDE_HFLAG_UNMASK_IRQS)
1375                         drive->unmask = 1;
1376                 if (hwif->host_flags & IDE_HFLAG_NO_UNMASK_IRQS)
1377                         drive->no_unmask = 1;
1378
1379                 if (port_ops && port_ops->init_dev)
1380                         port_ops->init_dev(drive);
1381         }
1382 }
1383
1384 static void ide_init_port(ide_hwif_t *hwif, unsigned int port,
1385                           const struct ide_port_info *d)
1386 {
1387         hwif->channel = port;
1388
1389         if (d->chipset)
1390                 hwif->chipset = d->chipset;
1391
1392         if (d->init_iops)
1393                 d->init_iops(hwif);
1394
1395         if ((!hwif->irq && (d->host_flags & IDE_HFLAG_LEGACY_IRQS)) ||
1396             (d->host_flags & IDE_HFLAG_FORCE_LEGACY_IRQS))
1397                 hwif->irq = port ? 15 : 14;
1398
1399         /* ->host_flags may be set by ->init_iops (or even earlier...) */
1400         hwif->host_flags |= d->host_flags;
1401         hwif->pio_mask = d->pio_mask;
1402
1403         if (d->tp_ops)
1404                 hwif->tp_ops = d->tp_ops;
1405
1406         /* ->set_pio_mode for DTC2278 is currently limited to port 0 */
1407         if (hwif->chipset != ide_dtc2278 || hwif->channel == 0)
1408                 hwif->port_ops = d->port_ops;
1409
1410         hwif->swdma_mask = d->swdma_mask;
1411         hwif->mwdma_mask = d->mwdma_mask;
1412         hwif->ultra_mask = d->udma_mask;
1413
1414         if ((d->host_flags & IDE_HFLAG_NO_DMA) == 0) {
1415                 int rc;
1416
1417                 if (d->init_dma)
1418                         rc = d->init_dma(hwif, d);
1419                 else
1420                         rc = ide_hwif_setup_dma(hwif, d);
1421
1422                 if (rc < 0) {
1423                         printk(KERN_INFO "%s: DMA disabled\n", hwif->name);
1424                         hwif->dma_base = 0;
1425                         hwif->swdma_mask = 0;
1426                         hwif->mwdma_mask = 0;
1427                         hwif->ultra_mask = 0;
1428                 } else if (d->dma_ops)
1429                         hwif->dma_ops = d->dma_ops;
1430         }
1431
1432         if ((d->host_flags & IDE_HFLAG_SERIALIZE) ||
1433             ((d->host_flags & IDE_HFLAG_SERIALIZE_DMA) && hwif->dma_base)) {
1434                 if (hwif->mate)
1435                         hwif->mate->serialized = hwif->serialized = 1;
1436         }
1437
1438         if (d->host_flags & IDE_HFLAG_RQSIZE_256)
1439                 hwif->rqsize = 256;
1440
1441         /* call chipset specific routine for each enabled port */
1442         if (d->init_hwif)
1443                 d->init_hwif(hwif);
1444 }
1445
1446 static void ide_port_cable_detect(ide_hwif_t *hwif)
1447 {
1448         const struct ide_port_ops *port_ops = hwif->port_ops;
1449
1450         if (port_ops && port_ops->cable_detect && (hwif->ultra_mask & 0x78)) {
1451                 if (hwif->cbl != ATA_CBL_PATA40_SHORT)
1452                         hwif->cbl = port_ops->cable_detect(hwif);
1453         }
1454 }
1455
1456 static ssize_t store_delete_devices(struct device *portdev,
1457                                     struct device_attribute *attr,
1458                                     const char *buf, size_t n)
1459 {
1460         ide_hwif_t *hwif = dev_get_drvdata(portdev);
1461
1462         if (strncmp(buf, "1", n))
1463                 return -EINVAL;
1464
1465         ide_port_unregister_devices(hwif);
1466
1467         return n;
1468 };
1469
1470 static DEVICE_ATTR(delete_devices, S_IWUSR, NULL, store_delete_devices);
1471
1472 static ssize_t store_scan(struct device *portdev,
1473                           struct device_attribute *attr,
1474                           const char *buf, size_t n)
1475 {
1476         ide_hwif_t *hwif = dev_get_drvdata(portdev);
1477
1478         if (strncmp(buf, "1", n))
1479                 return -EINVAL;
1480
1481         ide_port_unregister_devices(hwif);
1482         ide_port_scan(hwif);
1483
1484         return n;
1485 };
1486
1487 static DEVICE_ATTR(scan, S_IWUSR, NULL, store_scan);
1488
1489 static struct device_attribute *ide_port_attrs[] = {
1490         &dev_attr_delete_devices,
1491         &dev_attr_scan,
1492         NULL
1493 };
1494
1495 static int ide_sysfs_register_port(ide_hwif_t *hwif)
1496 {
1497         int i, rc;
1498
1499         for (i = 0; ide_port_attrs[i]; i++) {
1500                 rc = device_create_file(hwif->portdev, ide_port_attrs[i]);
1501                 if (rc)
1502                         break;
1503         }
1504
1505         return rc;
1506 }
1507
1508 static unsigned int ide_indexes;
1509
1510 /**
1511  *      ide_find_port_slot      -       find free port slot
1512  *      @d: IDE port info
1513  *
1514  *      Return the new port slot index or -ENOENT if we are out of free slots.
1515  */
1516
1517 static int ide_find_port_slot(const struct ide_port_info *d)
1518 {
1519         int idx = -ENOENT;
1520         u8 bootable = (d && (d->host_flags & IDE_HFLAG_NON_BOOTABLE)) ? 0 : 1;
1521         u8 i = (d && (d->host_flags & IDE_HFLAG_QD_2ND_PORT)) ? 1 : 0;;
1522
1523         /*
1524          * Claim an unassigned slot.
1525          *
1526          * Give preference to claiming other slots before claiming ide0/ide1,
1527          * just in case there's another interface yet-to-be-scanned
1528          * which uses ports 0x1f0/0x170 (the ide0/ide1 defaults).
1529          *
1530          * Unless there is a bootable card that does not use the standard
1531          * ports 0x1f0/0x170 (the ide0/ide1 defaults).
1532          */
1533         mutex_lock(&ide_cfg_mtx);
1534         if (MAX_HWIFS == 1) {
1535                 if (ide_indexes == 0 && i == 0)
1536                         idx = 1;
1537         } else {
1538                 if (bootable) {
1539                         if ((ide_indexes | i) != (1 << MAX_HWIFS) - 1)
1540                                 idx = ffz(ide_indexes | i);
1541                 } else {
1542                         if ((ide_indexes | 3) != (1 << MAX_HWIFS) - 1)
1543                                 idx = ffz(ide_indexes | 3);
1544                         else if ((ide_indexes & 3) != 3)
1545                                 idx = ffz(ide_indexes);
1546                 }
1547         }
1548         if (idx >= 0)
1549                 ide_indexes |= (1 << idx);
1550         mutex_unlock(&ide_cfg_mtx);
1551
1552         return idx;
1553 }
1554
1555 static void ide_free_port_slot(int idx)
1556 {
1557         mutex_lock(&ide_cfg_mtx);
1558         ide_indexes &= ~(1 << idx);
1559         mutex_unlock(&ide_cfg_mtx);
1560 }
1561
1562 struct ide_host *ide_host_alloc_all(const struct ide_port_info *d,
1563                                     hw_regs_t **hws)
1564 {
1565         struct ide_host *host;
1566         int i;
1567
1568         host = kzalloc(sizeof(*host), GFP_KERNEL);
1569         if (host == NULL)
1570                 return NULL;
1571
1572         for (i = 0; i < MAX_HWIFS; i++) {
1573                 ide_hwif_t *hwif;
1574                 int idx;
1575
1576                 if (hws[i] == NULL)
1577                         continue;
1578
1579                 idx = ide_find_port_slot(d);
1580                 if (idx < 0) {
1581                         printk(KERN_ERR "%s: no free slot for interface\n",
1582                                         d ? d->name : "ide");
1583                         continue;
1584                 }
1585
1586                 hwif = &ide_hwifs[idx];
1587
1588                 ide_init_port_data(hwif, idx);
1589
1590                 host->ports[i] = hwif;
1591                 host->n_ports++;
1592         }
1593
1594         if (host->n_ports == 0) {
1595                 kfree(host);
1596                 return NULL;
1597         }
1598
1599         return host;
1600 }
1601 EXPORT_SYMBOL_GPL(ide_host_alloc_all);
1602
1603 struct ide_host *ide_host_alloc(const struct ide_port_info *d, hw_regs_t **hws)
1604 {
1605         hw_regs_t *hws_all[MAX_HWIFS];
1606         int i;
1607
1608         for (i = 0; i < MAX_HWIFS; i++)
1609                 hws_all[i] = (i < 4) ? hws[i] : NULL;
1610
1611         return ide_host_alloc_all(d, hws_all);
1612 }
1613 EXPORT_SYMBOL_GPL(ide_host_alloc);
1614
1615 int ide_host_register(struct ide_host *host, const struct ide_port_info *d,
1616                       hw_regs_t **hws)
1617 {
1618         ide_hwif_t *hwif, *mate = NULL;
1619         int i, j = 0;
1620
1621         for (i = 0; i < MAX_HWIFS; i++) {
1622                 hwif = host->ports[i];
1623
1624                 if (hwif == NULL) {
1625                         mate = NULL;
1626                         continue;
1627                 }
1628
1629                 ide_init_port_hw(hwif, hws[i]);
1630                 ide_port_apply_params(hwif);
1631
1632                 if (d == NULL) {
1633                         mate = NULL;
1634                         continue;
1635                 }
1636
1637                 if ((i & 1) && mate) {
1638                         hwif->mate = mate;
1639                         mate->mate = hwif;
1640                 }
1641
1642                 mate = (i & 1) ? NULL : hwif;
1643
1644                 ide_init_port(hwif, i & 1, d);
1645                 ide_port_cable_detect(hwif);
1646                 ide_port_init_devices(hwif);
1647         }
1648
1649         for (i = 0; i < MAX_HWIFS; i++) {
1650                 hwif = host->ports[i];
1651
1652                 if (hwif == NULL)
1653                         continue;
1654
1655                 if (ide_probe_port(hwif) == 0)
1656                         hwif->present = 1;
1657
1658                 if (hwif->chipset != ide_4drives || !hwif->mate ||
1659                     !hwif->mate->present)
1660                         ide_register_port(hwif);
1661
1662                 if (hwif->present)
1663                         ide_port_tune_devices(hwif);
1664         }
1665
1666         for (i = 0; i < MAX_HWIFS; i++) {
1667                 hwif = host->ports[i];
1668
1669                 if (hwif == NULL)
1670                         continue;
1671
1672                 if (hwif_init(hwif) == 0) {
1673                         printk(KERN_INFO "%s: failed to initialize IDE "
1674                                          "interface\n", hwif->name);
1675                         hwif->present = 0;
1676                         continue;
1677                 }
1678
1679                 j++;
1680
1681                 if (hwif->present)
1682                         ide_port_setup_devices(hwif);
1683
1684                 ide_acpi_init(hwif);
1685
1686                 if (hwif->present)
1687                         ide_acpi_port_init_devices(hwif);
1688         }
1689
1690         for (i = 0; i < MAX_HWIFS; i++) {
1691                 hwif = host->ports[i];
1692
1693                 if (hwif == NULL)
1694                         continue;
1695
1696                 if (hwif->chipset == ide_unknown)
1697                         hwif->chipset = ide_generic;
1698
1699                 if (hwif->present)
1700                         hwif_register_devices(hwif);
1701         }
1702
1703         for (i = 0; i < MAX_HWIFS; i++) {
1704                 hwif = host->ports[i];
1705
1706                 if (hwif == NULL)
1707                         continue;
1708
1709                 ide_sysfs_register_port(hwif);
1710                 ide_proc_register_port(hwif);
1711
1712                 if (hwif->present)
1713                         ide_proc_port_register_devices(hwif);
1714         }
1715
1716         return j ? 0 : -1;
1717 }
1718 EXPORT_SYMBOL_GPL(ide_host_register);
1719
1720 int ide_host_add(const struct ide_port_info *d, hw_regs_t **hws,
1721                  struct ide_host **hostp)
1722 {
1723         struct ide_host *host;
1724
1725         host = ide_host_alloc(d, hws);
1726         if (host == NULL)
1727                 return -ENOMEM;
1728
1729         ide_host_register(host, d, hws);
1730
1731         if (hostp)
1732                 *hostp = host;
1733
1734         return 0;
1735 }
1736 EXPORT_SYMBOL_GPL(ide_host_add);
1737
1738 void ide_host_remove(struct ide_host *host)
1739 {
1740         ide_hwif_t *hwif;
1741         int i;
1742
1743         for (i = 0; i < MAX_HWIFS; i++) {
1744                 hwif = host->ports[i];
1745
1746                 if (hwif == NULL)
1747                         continue;
1748
1749                 ide_unregister(hwif);
1750                 ide_free_port_slot(hwif->index);
1751         }
1752
1753         kfree(host);
1754 }
1755 EXPORT_SYMBOL_GPL(ide_host_remove);
1756
1757 void ide_port_scan(ide_hwif_t *hwif)
1758 {
1759         ide_port_apply_params(hwif);
1760         ide_port_cable_detect(hwif);
1761         ide_port_init_devices(hwif);
1762
1763         if (ide_probe_port(hwif) < 0)
1764                 return;
1765
1766         hwif->present = 1;
1767
1768         ide_port_tune_devices(hwif);
1769         ide_acpi_port_init_devices(hwif);
1770         ide_port_setup_devices(hwif);
1771         hwif_register_devices(hwif);
1772         ide_proc_port_register_devices(hwif);
1773 }
1774 EXPORT_SYMBOL_GPL(ide_port_scan);
1775
1776 static void ide_legacy_init_one(hw_regs_t **hws, hw_regs_t *hw,
1777                                 u8 port_no, const struct ide_port_info *d,
1778                                 unsigned long config)
1779 {
1780         unsigned long base, ctl;
1781         int irq;
1782
1783         if (port_no == 0) {
1784                 base = 0x1f0;
1785                 ctl  = 0x3f6;
1786                 irq  = 14;
1787         } else {
1788                 base = 0x170;
1789                 ctl  = 0x376;
1790                 irq  = 15;
1791         }
1792
1793         if (!request_region(base, 8, d->name)) {
1794                 printk(KERN_ERR "%s: I/O resource 0x%lX-0x%lX not free.\n",
1795                                 d->name, base, base + 7);
1796                 return;
1797         }
1798
1799         if (!request_region(ctl, 1, d->name)) {
1800                 printk(KERN_ERR "%s: I/O resource 0x%lX not free.\n",
1801                                 d->name, ctl);
1802                 release_region(base, 8);
1803                 return;
1804         }
1805
1806         ide_std_init_ports(hw, base, ctl);
1807         hw->irq = irq;
1808         hw->chipset = d->chipset;
1809         hw->config = config;
1810
1811         hws[port_no] = hw;
1812 }
1813
1814 int ide_legacy_device_add(const struct ide_port_info *d, unsigned long config)
1815 {
1816         hw_regs_t hw[2], *hws[] = { NULL, NULL, NULL, NULL };
1817
1818         memset(&hw, 0, sizeof(hw));
1819
1820         if ((d->host_flags & IDE_HFLAG_QD_2ND_PORT) == 0)
1821                 ide_legacy_init_one(hws, &hw[0], 0, d, config);
1822         ide_legacy_init_one(hws, &hw[1], 1, d, config);
1823
1824         if (hws[0] == NULL && hws[1] == NULL &&
1825             (d->host_flags & IDE_HFLAG_SINGLE))
1826                 return -ENOENT;
1827
1828         return ide_host_add(d, hws, NULL);
1829 }
1830 EXPORT_SYMBOL_GPL(ide_legacy_device_add);