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 <linux/uaccess.h>
40 #include <asm/io.h>
41 
42 /**
43  *	generic_id		-	add a generic drive id
44  *	@drive:	drive to make an ID block for
45  *
46  *	Add a fake id field to the drive we are passed. This allows
47  *	use to skip a ton of NULL checks (which people always miss)
48  *	and make drive properties unconditional outside of this file
49  */
50 
generic_id(ide_drive_t * drive)51 static void generic_id(ide_drive_t *drive)
52 {
53 	u16 *id = drive->id;
54 
55 	id[ATA_ID_CUR_CYLS]	= id[ATA_ID_CYLS]	= drive->cyl;
56 	id[ATA_ID_CUR_HEADS]	= id[ATA_ID_HEADS]	= drive->head;
57 	id[ATA_ID_CUR_SECTORS]	= id[ATA_ID_SECTORS]	= drive->sect;
58 }
59 
ide_disk_init_chs(ide_drive_t * drive)60 static void ide_disk_init_chs(ide_drive_t *drive)
61 {
62 	u16 *id = drive->id;
63 
64 	/* Extract geometry if we did not already have one for the drive */
65 	if (!drive->cyl || !drive->head || !drive->sect) {
66 		drive->cyl  = drive->bios_cyl  = id[ATA_ID_CYLS];
67 		drive->head = drive->bios_head = id[ATA_ID_HEADS];
68 		drive->sect = drive->bios_sect = id[ATA_ID_SECTORS];
69 	}
70 
71 	/* Handle logical geometry translation by the drive */
72 	if (ata_id_current_chs_valid(id)) {
73 		drive->cyl  = id[ATA_ID_CUR_CYLS];
74 		drive->head = id[ATA_ID_CUR_HEADS];
75 		drive->sect = id[ATA_ID_CUR_SECTORS];
76 	}
77 
78 	/* Use physical geometry if what we have still makes no sense */
79 	if (drive->head > 16 && id[ATA_ID_HEADS] && id[ATA_ID_HEADS] <= 16) {
80 		drive->cyl  = id[ATA_ID_CYLS];
81 		drive->head = id[ATA_ID_HEADS];
82 		drive->sect = id[ATA_ID_SECTORS];
83 	}
84 }
85 
ide_disk_init_mult_count(ide_drive_t * drive)86 static void ide_disk_init_mult_count(ide_drive_t *drive)
87 {
88 	u16 *id = drive->id;
89 	u8 max_multsect = id[ATA_ID_MAX_MULTSECT] & 0xff;
90 
91 	if (max_multsect) {
92 		if ((max_multsect / 2) > 1)
93 			id[ATA_ID_MULTSECT] = max_multsect | 0x100;
94 		else
95 			id[ATA_ID_MULTSECT] &= ~0x1ff;
96 
97 		drive->mult_req = id[ATA_ID_MULTSECT] & 0xff;
98 
99 		if (drive->mult_req)
100 			drive->special_flags |= IDE_SFLAG_SET_MULTMODE;
101 	}
102 }
103 
ide_classify_ata_dev(ide_drive_t * drive)104 static void ide_classify_ata_dev(ide_drive_t *drive)
105 {
106 	u16 *id = drive->id;
107 	char *m = (char *)&id[ATA_ID_PROD];
108 	int is_cfa = ata_id_is_cfa(id);
109 
110 	/* CF devices are *not* removable in Linux definition of the term */
111 	if (is_cfa == 0 && (id[ATA_ID_CONFIG] & (1 << 7)))
112 		drive->dev_flags |= IDE_DFLAG_REMOVABLE;
113 
114 	drive->media = ide_disk;
115 
116 	if (!ata_id_has_unload(drive->id))
117 		drive->dev_flags |= IDE_DFLAG_NO_UNLOAD;
118 
119 	printk(KERN_INFO "%s: %s, %s DISK drive\n", drive->name, m,
120 		is_cfa ? "CFA" : "ATA");
121 }
122 
ide_classify_atapi_dev(ide_drive_t * drive)123 static void ide_classify_atapi_dev(ide_drive_t *drive)
124 {
125 	u16 *id = drive->id;
126 	char *m = (char *)&id[ATA_ID_PROD];
127 	u8 type = (id[ATA_ID_CONFIG] >> 8) & 0x1f;
128 
129 	printk(KERN_INFO "%s: %s, ATAPI ", drive->name, m);
130 	switch (type) {
131 	case ide_floppy:
132 		if (!strstr(m, "CD-ROM")) {
133 			if (!strstr(m, "oppy") &&
134 			    !strstr(m, "poyp") &&
135 			    !strstr(m, "ZIP"))
136 				printk(KERN_CONT "cdrom or floppy?, assuming ");
137 			if (drive->media != ide_cdrom) {
138 				printk(KERN_CONT "FLOPPY");
139 				drive->dev_flags |= IDE_DFLAG_REMOVABLE;
140 				break;
141 			}
142 		}
143 		/* Early cdrom models used zero */
144 		type = ide_cdrom;
145 		/* fall through */
146 	case ide_cdrom:
147 		drive->dev_flags |= IDE_DFLAG_REMOVABLE;
148 #ifdef CONFIG_PPC
149 		/* kludge for Apple PowerBook internal zip */
150 		if (!strstr(m, "CD-ROM") && strstr(m, "ZIP")) {
151 			printk(KERN_CONT "FLOPPY");
152 			type = ide_floppy;
153 			break;
154 		}
155 #endif
156 		printk(KERN_CONT "CD/DVD-ROM");
157 		break;
158 	case ide_tape:
159 		printk(KERN_CONT "TAPE");
160 		break;
161 	case ide_optical:
162 		printk(KERN_CONT "OPTICAL");
163 		drive->dev_flags |= IDE_DFLAG_REMOVABLE;
164 		break;
165 	default:
166 		printk(KERN_CONT "UNKNOWN (type %d)", type);
167 		break;
168 	}
169 
170 	printk(KERN_CONT " drive\n");
171 	drive->media = type;
172 	/* an ATAPI device ignores DRDY */
173 	drive->ready_stat = 0;
174 	if (ata_id_cdb_intr(id))
175 		drive->atapi_flags |= IDE_AFLAG_DRQ_INTERRUPT;
176 	drive->dev_flags |= IDE_DFLAG_DOORLOCKING;
177 	/* we don't do head unloading on ATAPI devices */
178 	drive->dev_flags |= IDE_DFLAG_NO_UNLOAD;
179 }
180 
181 /**
182  *	do_identify	-	identify a drive
183  *	@drive: drive to identify
184  *	@cmd: command used
185  *	@id: buffer for IDENTIFY data
186  *
187  *	Called when we have issued a drive identify command to
188  *	read and parse the results. This function is run with
189  *	interrupts disabled.
190  */
191 
do_identify(ide_drive_t * drive,u8 cmd,u16 * id)192 static void do_identify(ide_drive_t *drive, u8 cmd, u16 *id)
193 {
194 	ide_hwif_t *hwif = drive->hwif;
195 	char *m = (char *)&id[ATA_ID_PROD];
196 	unsigned long flags;
197 	int bswap = 1;
198 
199 	/* local CPU only; some systems need this */
200 	local_irq_save(flags);
201 	/* read 512 bytes of id info */
202 	hwif->tp_ops->input_data(drive, NULL, id, SECTOR_SIZE);
203 	local_irq_restore(flags);
204 
205 	drive->dev_flags |= IDE_DFLAG_ID_READ;
206 #ifdef DEBUG
207 	printk(KERN_INFO "%s: dumping identify data\n", drive->name);
208 	ide_dump_identify((u8 *)id);
209 #endif
210 	ide_fix_driveid(id);
211 
212 	/*
213 	 *  ATA_CMD_ID_ATA returns little-endian info,
214 	 *  ATA_CMD_ID_ATAPI *usually* returns little-endian info.
215 	 */
216 	if (cmd == ATA_CMD_ID_ATAPI) {
217 		if ((m[0] == 'N' && m[1] == 'E') ||  /* NEC */
218 		    (m[0] == 'F' && m[1] == 'X') ||  /* Mitsumi */
219 		    (m[0] == 'P' && m[1] == 'i'))    /* Pioneer */
220 			/* Vertos drives may still be weird */
221 			bswap ^= 1;
222 	}
223 
224 	ide_fixstring(m, ATA_ID_PROD_LEN, bswap);
225 	ide_fixstring((char *)&id[ATA_ID_FW_REV], ATA_ID_FW_REV_LEN, bswap);
226 	ide_fixstring((char *)&id[ATA_ID_SERNO], ATA_ID_SERNO_LEN, bswap);
227 
228 	/* we depend on this a lot! */
229 	m[ATA_ID_PROD_LEN - 1] = '\0';
230 
231 	if (strstr(m, "E X A B Y T E N E S T"))
232 		drive->dev_flags &= ~IDE_DFLAG_PRESENT;
233 	else
234 		drive->dev_flags |= IDE_DFLAG_PRESENT;
235 }
236 
237 /**
238  *	ide_dev_read_id	-	send ATA/ATAPI IDENTIFY command
239  *	@drive: drive to identify
240  *	@cmd: command to use
241  *	@id: buffer for IDENTIFY data
242  *	@irq_ctx: flag set when called from the IRQ context
243  *
244  *	Sends an ATA(PI) IDENTIFY request to a drive and waits for a response.
245  *
246  *	Returns:	0  device was identified
247  *			1  device timed-out (no response to identify request)
248  *			2  device aborted the command (refused to identify itself)
249  */
250 
ide_dev_read_id(ide_drive_t * drive,u8 cmd,u16 * id,int irq_ctx)251 int ide_dev_read_id(ide_drive_t *drive, u8 cmd, u16 *id, int irq_ctx)
252 {
253 	ide_hwif_t *hwif = drive->hwif;
254 	struct ide_io_ports *io_ports = &hwif->io_ports;
255 	const struct ide_tp_ops *tp_ops = hwif->tp_ops;
256 	int use_altstatus = 0, rc;
257 	unsigned long timeout;
258 	u8 s = 0, a = 0;
259 
260 	/*
261 	 * Disable device IRQ.  Otherwise we'll get spurious interrupts
262 	 * during the identify phase that the IRQ handler isn't expecting.
263 	 */
264 	if (io_ports->ctl_addr)
265 		tp_ops->write_devctl(hwif, ATA_NIEN | ATA_DEVCTL_OBS);
266 
267 	/* take a deep breath */
268 	if (irq_ctx)
269 		mdelay(50);
270 	else
271 		msleep(50);
272 
273 	if (io_ports->ctl_addr &&
274 	    (hwif->host_flags & IDE_HFLAG_BROKEN_ALTSTATUS) == 0) {
275 		a = tp_ops->read_altstatus(hwif);
276 		s = tp_ops->read_status(hwif);
277 		if ((a ^ s) & ~ATA_SENSE)
278 			/* ancient Seagate drives, broken interfaces */
279 			printk(KERN_INFO "%s: probing with STATUS(0x%02x) "
280 					 "instead of ALTSTATUS(0x%02x)\n",
281 					 drive->name, s, a);
282 		else
283 			/* use non-intrusive polling */
284 			use_altstatus = 1;
285 	}
286 
287 	/* set features register for atapi
288 	 * identify command to be sure of reply
289 	 */
290 	if (cmd == ATA_CMD_ID_ATAPI) {
291 		struct ide_taskfile tf;
292 
293 		memset(&tf, 0, sizeof(tf));
294 		/* disable DMA & overlap */
295 		tp_ops->tf_load(drive, &tf, IDE_VALID_FEATURE);
296 	}
297 
298 	/* ask drive for ID */
299 	tp_ops->exec_command(hwif, cmd);
300 
301 	timeout = ((cmd == ATA_CMD_ID_ATA) ? WAIT_WORSTCASE : WAIT_PIDENTIFY) / 2;
302 
303 	/* wait for IRQ and ATA_DRQ */
304 	if (irq_ctx) {
305 		rc = __ide_wait_stat(drive, ATA_DRQ, BAD_R_STAT, timeout, &s);
306 		if (rc)
307 			return 1;
308 	} else {
309 		rc = ide_busy_sleep(drive, timeout, use_altstatus);
310 		if (rc)
311 			return 1;
312 
313 		msleep(50);
314 		s = tp_ops->read_status(hwif);
315 	}
316 
317 	if (OK_STAT(s, ATA_DRQ, BAD_R_STAT)) {
318 		/* drive returned ID */
319 		do_identify(drive, cmd, id);
320 		/* drive responded with ID */
321 		rc = 0;
322 		/* clear drive IRQ */
323 		(void)tp_ops->read_status(hwif);
324 	} else {
325 		/* drive refused ID */
326 		rc = 2;
327 	}
328 	return rc;
329 }
330 
ide_busy_sleep(ide_drive_t * drive,unsigned long timeout,int altstatus)331 int ide_busy_sleep(ide_drive_t *drive, unsigned long timeout, int altstatus)
332 {
333 	ide_hwif_t *hwif = drive->hwif;
334 	u8 stat;
335 
336 	timeout += jiffies;
337 
338 	do {
339 		msleep(50);	/* give drive a breather */
340 		stat = altstatus ? hwif->tp_ops->read_altstatus(hwif)
341 				 : hwif->tp_ops->read_status(hwif);
342 		if ((stat & ATA_BUSY) == 0)
343 			return 0;
344 	} while (time_before(jiffies, timeout));
345 
346 	printk(KERN_ERR "%s: timeout in %s\n", drive->name, __func__);
347 
348 	return 1;	/* drive timed-out */
349 }
350 
ide_read_device(ide_drive_t * drive)351 static u8 ide_read_device(ide_drive_t *drive)
352 {
353 	struct ide_taskfile tf;
354 
355 	drive->hwif->tp_ops->tf_read(drive, &tf, IDE_VALID_DEVICE);
356 
357 	return tf.device;
358 }
359 
360 /**
361  *	do_probe		-	probe an IDE device
362  *	@drive: drive to probe
363  *	@cmd: command to use
364  *
365  *	do_probe() has the difficult job of finding a drive if it exists,
366  *	without getting hung up if it doesn't exist, without trampling on
367  *	ethernet cards, and without leaving any IRQs dangling to haunt us later.
368  *
369  *	If a drive is "known" to exist (from CMOS or kernel parameters),
370  *	but does not respond right away, the probe will "hang in there"
371  *	for the maximum wait time (about 30 seconds), otherwise it will
372  *	exit much more quickly.
373  *
374  * Returns:	0  device was identified
375  *		1  device timed-out (no response to identify request)
376  *		2  device aborted the command (refused to identify itself)
377  *		3  bad status from device (possible for ATAPI drives)
378  *		4  probe was not attempted because failure was obvious
379  */
380 
do_probe(ide_drive_t * drive,u8 cmd)381 static int do_probe (ide_drive_t *drive, u8 cmd)
382 {
383 	ide_hwif_t *hwif = drive->hwif;
384 	const struct ide_tp_ops *tp_ops = hwif->tp_ops;
385 	u16 *id = drive->id;
386 	int rc;
387 	u8 present = !!(drive->dev_flags & IDE_DFLAG_PRESENT), stat;
388 
389 	/* avoid waiting for inappropriate probes */
390 	if (present && drive->media != ide_disk && cmd == ATA_CMD_ID_ATA)
391 		return 4;
392 
393 #ifdef DEBUG
394 	printk(KERN_INFO "probing for %s: present=%d, media=%d, probetype=%s\n",
395 		drive->name, present, drive->media,
396 		(cmd == ATA_CMD_ID_ATA) ? "ATA" : "ATAPI");
397 #endif
398 
399 	/* needed for some systems
400 	 * (e.g. crw9624 as drive0 with disk as slave)
401 	 */
402 	msleep(50);
403 	tp_ops->dev_select(drive);
404 	msleep(50);
405 
406 	if (ide_read_device(drive) != drive->select && present == 0) {
407 		if (drive->dn & 1) {
408 			/* exit with drive0 selected */
409 			tp_ops->dev_select(hwif->devices[0]);
410 			/* allow ATA_BUSY to assert & clear */
411 			msleep(50);
412 		}
413 		/* no i/f present: mmm.. this should be a 4 -ml */
414 		return 3;
415 	}
416 
417 	stat = tp_ops->read_status(hwif);
418 
419 	if (OK_STAT(stat, ATA_DRDY, ATA_BUSY) ||
420 	    present || cmd == ATA_CMD_ID_ATAPI) {
421 		rc = ide_dev_read_id(drive, cmd, id, 0);
422 		if (rc)
423 			/* failed: try again */
424 			rc = ide_dev_read_id(drive, cmd, id, 0);
425 
426 		stat = tp_ops->read_status(hwif);
427 
428 		if (stat == (ATA_BUSY | ATA_DRDY))
429 			return 4;
430 
431 		if (rc == 1 && cmd == ATA_CMD_ID_ATAPI) {
432 			printk(KERN_ERR "%s: no response (status = 0x%02x), "
433 					"resetting drive\n", drive->name, stat);
434 			msleep(50);
435 			tp_ops->dev_select(drive);
436 			msleep(50);
437 			tp_ops->exec_command(hwif, ATA_CMD_DEV_RESET);
438 			(void)ide_busy_sleep(drive, WAIT_WORSTCASE, 0);
439 			rc = ide_dev_read_id(drive, cmd, id, 0);
440 		}
441 
442 		/* ensure drive IRQ is clear */
443 		stat = tp_ops->read_status(hwif);
444 
445 		if (rc == 1)
446 			printk(KERN_ERR "%s: no response (status = 0x%02x)\n",
447 					drive->name, stat);
448 	} else {
449 		/* not present or maybe ATAPI */
450 		rc = 3;
451 	}
452 	if (drive->dn & 1) {
453 		/* exit with drive0 selected */
454 		tp_ops->dev_select(hwif->devices[0]);
455 		msleep(50);
456 		/* ensure drive irq is clear */
457 		(void)tp_ops->read_status(hwif);
458 	}
459 	return rc;
460 }
461 
462 /**
463  *	probe_for_drives	-	upper level drive probe
464  *	@drive: drive to probe for
465  *
466  *	probe_for_drive() tests for existence of a given drive using do_probe()
467  *	and presents things to the user as needed.
468  *
469  *	Returns:	0  no device was found
470  *			1  device was found
471  *			   (note: IDE_DFLAG_PRESENT might still be not set)
472  */
473 
probe_for_drive(ide_drive_t * drive)474 static u8 probe_for_drive(ide_drive_t *drive)
475 {
476 	char *m;
477 	int rc;
478 	u8 cmd;
479 
480 	drive->dev_flags &= ~IDE_DFLAG_ID_READ;
481 
482 	m = (char *)&drive->id[ATA_ID_PROD];
483 	strcpy(m, "UNKNOWN");
484 
485 	/* skip probing? */
486 	if ((drive->dev_flags & IDE_DFLAG_NOPROBE) == 0) {
487 		/* if !(success||timed-out) */
488 		cmd = ATA_CMD_ID_ATA;
489 		rc = do_probe(drive, cmd);
490 		if (rc >= 2) {
491 			/* look for ATAPI device */
492 			cmd = ATA_CMD_ID_ATAPI;
493 			rc = do_probe(drive, cmd);
494 		}
495 
496 		if ((drive->dev_flags & IDE_DFLAG_PRESENT) == 0)
497 			return 0;
498 
499 		/* identification failed? */
500 		if ((drive->dev_flags & IDE_DFLAG_ID_READ) == 0) {
501 			if (drive->media == ide_disk) {
502 				printk(KERN_INFO "%s: non-IDE drive, CHS=%d/%d/%d\n",
503 					drive->name, drive->cyl,
504 					drive->head, drive->sect);
505 			} else if (drive->media == ide_cdrom) {
506 				printk(KERN_INFO "%s: ATAPI cdrom (?)\n", drive->name);
507 			} else {
508 				/* nuke it */
509 				printk(KERN_WARNING "%s: Unknown device on bus refused identification. Ignoring.\n", drive->name);
510 				drive->dev_flags &= ~IDE_DFLAG_PRESENT;
511 			}
512 		} else {
513 			if (cmd == ATA_CMD_ID_ATAPI)
514 				ide_classify_atapi_dev(drive);
515 			else
516 				ide_classify_ata_dev(drive);
517 		}
518 	}
519 
520 	if ((drive->dev_flags & IDE_DFLAG_PRESENT) == 0)
521 		return 0;
522 
523 	/* The drive wasn't being helpful. Add generic info only */
524 	if ((drive->dev_flags & IDE_DFLAG_ID_READ) == 0) {
525 		generic_id(drive);
526 		return 1;
527 	}
528 
529 	if (drive->media == ide_disk) {
530 		ide_disk_init_chs(drive);
531 		ide_disk_init_mult_count(drive);
532 	}
533 
534 	return 1;
535 }
536 
hwif_release_dev(struct device * dev)537 static void hwif_release_dev(struct device *dev)
538 {
539 	ide_hwif_t *hwif = container_of(dev, ide_hwif_t, gendev);
540 
541 	complete(&hwif->gendev_rel_comp);
542 }
543 
ide_register_port(ide_hwif_t * hwif)544 static int ide_register_port(ide_hwif_t *hwif)
545 {
546 	int ret;
547 
548 	/* register with global device tree */
549 	dev_set_name(&hwif->gendev, "%s", hwif->name);
550 	dev_set_drvdata(&hwif->gendev, hwif);
551 	if (hwif->gendev.parent == NULL)
552 		hwif->gendev.parent = hwif->dev;
553 	hwif->gendev.release = hwif_release_dev;
554 
555 	ret = device_register(&hwif->gendev);
556 	if (ret < 0) {
557 		printk(KERN_WARNING "IDE: %s: device_register error: %d\n",
558 			__func__, ret);
559 		goto out;
560 	}
561 
562 	hwif->portdev = device_create(ide_port_class, &hwif->gendev,
563 				      MKDEV(0, 0), hwif, "%s", hwif->name);
564 	if (IS_ERR(hwif->portdev)) {
565 		ret = PTR_ERR(hwif->portdev);
566 		device_unregister(&hwif->gendev);
567 	}
568 out:
569 	return ret;
570 }
571 
572 /**
573  *	ide_port_wait_ready	-	wait for port to become ready
574  *	@hwif: IDE port
575  *
576  *	This is needed on some PPCs and a bunch of BIOS-less embedded
577  *	platforms.  Typical cases are:
578  *
579  *	- The firmware hard reset the disk before booting the kernel,
580  *	  the drive is still doing it's poweron-reset sequence, that
581  *	  can take up to 30 seconds.
582  *
583  *	- The firmware does nothing (or no firmware), the device is
584  *	  still in POST state (same as above actually).
585  *
586  *	- Some CD/DVD/Writer combo drives tend to drive the bus during
587  *	  their reset sequence even when they are non-selected slave
588  *	  devices, thus preventing discovery of the main HD.
589  *
590  *	Doing this wait-for-non-busy should not harm any existing
591  *	configuration and fix some issues like the above.
592  *
593  *	BenH.
594  *
595  *	Returns 0 on success, error code (< 0) otherwise.
596  */
597 
ide_port_wait_ready(ide_hwif_t * hwif)598 static int ide_port_wait_ready(ide_hwif_t *hwif)
599 {
600 	const struct ide_tp_ops *tp_ops = hwif->tp_ops;
601 	ide_drive_t *drive;
602 	int i, rc;
603 
604 	printk(KERN_DEBUG "Probing IDE interface %s...\n", hwif->name);
605 
606 	/* Let HW settle down a bit from whatever init state we
607 	 * come from */
608 	mdelay(2);
609 
610 	/* Wait for BSY bit to go away, spec timeout is 30 seconds,
611 	 * I know of at least one disk who takes 31 seconds, I use 35
612 	 * here to be safe
613 	 */
614 	rc = ide_wait_not_busy(hwif, 35000);
615 	if (rc)
616 		return rc;
617 
618 	/* Now make sure both master & slave are ready */
619 	ide_port_for_each_dev(i, drive, hwif) {
620 		/* Ignore disks that we will not probe for later. */
621 		if ((drive->dev_flags & IDE_DFLAG_NOPROBE) == 0 ||
622 		    (drive->dev_flags & IDE_DFLAG_PRESENT)) {
623 			tp_ops->dev_select(drive);
624 			tp_ops->write_devctl(hwif, ATA_DEVCTL_OBS);
625 			mdelay(2);
626 			rc = ide_wait_not_busy(hwif, 35000);
627 			if (rc)
628 				goto out;
629 		} else
630 			printk(KERN_DEBUG "%s: ide_wait_not_busy() skipped\n",
631 					  drive->name);
632 	}
633 out:
634 	/* Exit function with master reselected (let's be sane) */
635 	if (i)
636 		tp_ops->dev_select(hwif->devices[0]);
637 
638 	return rc;
639 }
640 
641 /**
642  *	ide_undecoded_slave	-	look for bad CF adapters
643  *	@dev1: slave device
644  *
645  *	Analyse the drives on the interface and attempt to decide if we
646  *	have the same drive viewed twice. This occurs with crap CF adapters
647  *	and PCMCIA sometimes.
648  */
649 
ide_undecoded_slave(ide_drive_t * dev1)650 void ide_undecoded_slave(ide_drive_t *dev1)
651 {
652 	ide_drive_t *dev0 = dev1->hwif->devices[0];
653 
654 	if ((dev1->dn & 1) == 0 || (dev0->dev_flags & IDE_DFLAG_PRESENT) == 0)
655 		return;
656 
657 	/* If the models don't match they are not the same product */
658 	if (strcmp((char *)&dev0->id[ATA_ID_PROD],
659 		   (char *)&dev1->id[ATA_ID_PROD]))
660 		return;
661 
662 	/* Serial numbers do not match */
663 	if (strncmp((char *)&dev0->id[ATA_ID_SERNO],
664 		    (char *)&dev1->id[ATA_ID_SERNO], ATA_ID_SERNO_LEN))
665 		return;
666 
667 	/* No serial number, thankfully very rare for CF */
668 	if (*(char *)&dev0->id[ATA_ID_SERNO] == 0)
669 		return;
670 
671 	/* Appears to be an IDE flash adapter with decode bugs */
672 	printk(KERN_WARNING "ide-probe: ignoring undecoded slave\n");
673 
674 	dev1->dev_flags &= ~IDE_DFLAG_PRESENT;
675 }
676 
677 EXPORT_SYMBOL_GPL(ide_undecoded_slave);
678 
ide_probe_port(ide_hwif_t * hwif)679 static int ide_probe_port(ide_hwif_t *hwif)
680 {
681 	ide_drive_t *drive;
682 	unsigned int irqd;
683 	int i, rc = -ENODEV;
684 
685 	BUG_ON(hwif->present);
686 
687 	if ((hwif->devices[0]->dev_flags & IDE_DFLAG_NOPROBE) &&
688 	    (hwif->devices[1]->dev_flags & IDE_DFLAG_NOPROBE))
689 		return -EACCES;
690 
691 	/*
692 	 * We must always disable IRQ, as probe_for_drive will assert IRQ, but
693 	 * we'll install our IRQ driver much later...
694 	 */
695 	irqd = hwif->irq;
696 	if (irqd)
697 		disable_irq(hwif->irq);
698 
699 	if (ide_port_wait_ready(hwif) == -EBUSY)
700 		printk(KERN_DEBUG "%s: Wait for ready failed before probe !\n", hwif->name);
701 
702 	/*
703 	 * Second drive should only exist if first drive was found,
704 	 * but a lot of cdrom drives are configured as single slaves.
705 	 */
706 	ide_port_for_each_dev(i, drive, hwif) {
707 		(void) probe_for_drive(drive);
708 		if (drive->dev_flags & IDE_DFLAG_PRESENT)
709 			rc = 0;
710 	}
711 
712 	/*
713 	 * Use cached IRQ number. It might be (and is...) changed by probe
714 	 * code above
715 	 */
716 	if (irqd)
717 		enable_irq(irqd);
718 
719 	return rc;
720 }
721 
ide_port_tune_devices(ide_hwif_t * hwif)722 static void ide_port_tune_devices(ide_hwif_t *hwif)
723 {
724 	const struct ide_port_ops *port_ops = hwif->port_ops;
725 	ide_drive_t *drive;
726 	int i;
727 
728 	ide_port_for_each_present_dev(i, drive, hwif) {
729 		ide_check_nien_quirk_list(drive);
730 
731 		if (port_ops && port_ops->quirkproc)
732 			port_ops->quirkproc(drive);
733 	}
734 
735 	ide_port_for_each_present_dev(i, drive, hwif) {
736 		ide_set_max_pio(drive);
737 
738 		drive->dev_flags |= IDE_DFLAG_NICE1;
739 
740 		if (hwif->dma_ops)
741 			ide_set_dma(drive);
742 	}
743 }
744 
ide_initialize_rq(struct request * rq)745 static void ide_initialize_rq(struct request *rq)
746 {
747 	struct ide_request *req = blk_mq_rq_to_pdu(rq);
748 
749 	scsi_req_init(&req->sreq);
750 	req->sreq.sense = req->sense;
751 }
752 
753 /*
754  * init request queue
755  */
ide_init_queue(ide_drive_t * drive)756 static int ide_init_queue(ide_drive_t *drive)
757 {
758 	struct request_queue *q;
759 	ide_hwif_t *hwif = drive->hwif;
760 	int max_sectors = 256;
761 	int max_sg_entries = PRD_ENTRIES;
762 
763 	/*
764 	 *	Our default set up assumes the normal IDE case,
765 	 *	that is 64K segmenting, standard PRD setup
766 	 *	and LBA28. Some drivers then impose their own
767 	 *	limits and LBA48 we could raise it but as yet
768 	 *	do not.
769 	 */
770 	q = blk_alloc_queue_node(GFP_KERNEL, hwif_to_node(hwif), NULL);
771 	if (!q)
772 		return 1;
773 
774 	q->request_fn = do_ide_request;
775 	q->initialize_rq_fn = ide_initialize_rq;
776 	q->cmd_size = sizeof(struct ide_request);
777 	blk_queue_flag_set(QUEUE_FLAG_SCSI_PASSTHROUGH, q);
778 	if (blk_init_allocated_queue(q) < 0) {
779 		blk_cleanup_queue(q);
780 		return 1;
781 	}
782 
783 	q->queuedata = drive;
784 	blk_queue_segment_boundary(q, 0xffff);
785 
786 	if (hwif->rqsize < max_sectors)
787 		max_sectors = hwif->rqsize;
788 	blk_queue_max_hw_sectors(q, max_sectors);
789 
790 #ifdef CONFIG_PCI
791 	/* When we have an IOMMU, we may have a problem where pci_map_sg()
792 	 * creates segments that don't completely match our boundary
793 	 * requirements and thus need to be broken up again. Because it
794 	 * doesn't align properly either, we may actually have to break up
795 	 * to more segments than what was we got in the first place, a max
796 	 * worst case is twice as many.
797 	 * This will be fixed once we teach pci_map_sg() about our boundary
798 	 * requirements, hopefully soon. *FIXME*
799 	 */
800 	max_sg_entries >>= 1;
801 #endif /* CONFIG_PCI */
802 
803 	blk_queue_max_segments(q, max_sg_entries);
804 
805 	/* assign drive queue */
806 	drive->queue = q;
807 
808 	return 0;
809 }
810 
811 static DEFINE_MUTEX(ide_cfg_mtx);
812 
813 /*
814  * For any present drive:
815  * - allocate the block device queue
816  */
ide_port_setup_devices(ide_hwif_t * hwif)817 static int ide_port_setup_devices(ide_hwif_t *hwif)
818 {
819 	ide_drive_t *drive;
820 	int i, j = 0;
821 
822 	mutex_lock(&ide_cfg_mtx);
823 	ide_port_for_each_present_dev(i, drive, hwif) {
824 		if (ide_init_queue(drive)) {
825 			printk(KERN_ERR "ide: failed to init %s\n",
826 					drive->name);
827 			drive->dev_flags &= ~IDE_DFLAG_PRESENT;
828 			continue;
829 		}
830 
831 		j++;
832 	}
833 	mutex_unlock(&ide_cfg_mtx);
834 
835 	return j;
836 }
837 
ide_host_enable_irqs(struct ide_host * host)838 static void ide_host_enable_irqs(struct ide_host *host)
839 {
840 	ide_hwif_t *hwif;
841 	int i;
842 
843 	ide_host_for_each_port(i, hwif, host) {
844 		if (hwif == NULL)
845 			continue;
846 
847 		/* clear any pending IRQs */
848 		hwif->tp_ops->read_status(hwif);
849 
850 		/* unmask IRQs */
851 		if (hwif->io_ports.ctl_addr)
852 			hwif->tp_ops->write_devctl(hwif, ATA_DEVCTL_OBS);
853 	}
854 }
855 
856 /*
857  * This routine sets up the IRQ for an IDE interface.
858  */
init_irq(ide_hwif_t * hwif)859 static int init_irq (ide_hwif_t *hwif)
860 {
861 	struct ide_io_ports *io_ports = &hwif->io_ports;
862 	struct ide_host *host = hwif->host;
863 	irq_handler_t irq_handler = host->irq_handler;
864 	int sa = host->irq_flags;
865 
866 	if (irq_handler == NULL)
867 		irq_handler = ide_intr;
868 
869 	if (!host->get_lock)
870 		if (request_irq(hwif->irq, irq_handler, sa, hwif->name, hwif))
871 			goto out_up;
872 
873 #if !defined(__mc68000__)
874 	printk(KERN_INFO "%s at 0x%03lx-0x%03lx,0x%03lx on irq %d", hwif->name,
875 		io_ports->data_addr, io_ports->status_addr,
876 		io_ports->ctl_addr, hwif->irq);
877 #else
878 	printk(KERN_INFO "%s at 0x%08lx on irq %d", hwif->name,
879 		io_ports->data_addr, hwif->irq);
880 #endif /* __mc68000__ */
881 	if (hwif->host->host_flags & IDE_HFLAG_SERIALIZE)
882 		printk(KERN_CONT " (serialized)");
883 	printk(KERN_CONT "\n");
884 
885 	return 0;
886 out_up:
887 	return 1;
888 }
889 
ata_lock(dev_t dev,void * data)890 static int ata_lock(dev_t dev, void *data)
891 {
892 	/* FIXME: we want to pin hwif down */
893 	return 0;
894 }
895 
ata_probe(dev_t dev,int * part,void * data)896 static struct kobject *ata_probe(dev_t dev, int *part, void *data)
897 {
898 	ide_hwif_t *hwif = data;
899 	int unit = *part >> PARTN_BITS;
900 	ide_drive_t *drive = hwif->devices[unit];
901 
902 	if ((drive->dev_flags & IDE_DFLAG_PRESENT) == 0)
903 		return NULL;
904 
905 	if (drive->media == ide_disk)
906 		request_module("ide-disk");
907 	if (drive->media == ide_cdrom || drive->media == ide_optical)
908 		request_module("ide-cd");
909 	if (drive->media == ide_tape)
910 		request_module("ide-tape");
911 	if (drive->media == ide_floppy)
912 		request_module("ide-floppy");
913 
914 	return NULL;
915 }
916 
exact_match(dev_t dev,int * part,void * data)917 static struct kobject *exact_match(dev_t dev, int *part, void *data)
918 {
919 	struct gendisk *p = data;
920 	*part &= (1 << PARTN_BITS) - 1;
921 	return &disk_to_dev(p)->kobj;
922 }
923 
exact_lock(dev_t dev,void * data)924 static int exact_lock(dev_t dev, void *data)
925 {
926 	struct gendisk *p = data;
927 
928 	if (!get_disk_and_module(p))
929 		return -1;
930 	return 0;
931 }
932 
ide_register_region(struct gendisk * disk)933 void ide_register_region(struct gendisk *disk)
934 {
935 	blk_register_region(MKDEV(disk->major, disk->first_minor),
936 			    disk->minors, NULL, exact_match, exact_lock, disk);
937 }
938 
939 EXPORT_SYMBOL_GPL(ide_register_region);
940 
ide_unregister_region(struct gendisk * disk)941 void ide_unregister_region(struct gendisk *disk)
942 {
943 	blk_unregister_region(MKDEV(disk->major, disk->first_minor),
944 			      disk->minors);
945 }
946 
947 EXPORT_SYMBOL_GPL(ide_unregister_region);
948 
ide_init_disk(struct gendisk * disk,ide_drive_t * drive)949 void ide_init_disk(struct gendisk *disk, ide_drive_t *drive)
950 {
951 	ide_hwif_t *hwif = drive->hwif;
952 	unsigned int unit = drive->dn & 1;
953 
954 	disk->major = hwif->major;
955 	disk->first_minor = unit << PARTN_BITS;
956 	sprintf(disk->disk_name, "hd%c", 'a' + hwif->index * MAX_DRIVES + unit);
957 	disk->queue = drive->queue;
958 }
959 
960 EXPORT_SYMBOL_GPL(ide_init_disk);
961 
drive_release_dev(struct device * dev)962 static void drive_release_dev (struct device *dev)
963 {
964 	ide_drive_t *drive = container_of(dev, ide_drive_t, gendev);
965 
966 	ide_proc_unregister_device(drive);
967 
968 	blk_cleanup_queue(drive->queue);
969 	drive->queue = NULL;
970 
971 	drive->dev_flags &= ~IDE_DFLAG_PRESENT;
972 
973 	complete(&drive->gendev_rel_comp);
974 }
975 
hwif_init(ide_hwif_t * hwif)976 static int hwif_init(ide_hwif_t *hwif)
977 {
978 	if (!hwif->irq) {
979 		printk(KERN_ERR "%s: disabled, no IRQ\n", hwif->name);
980 		return 0;
981 	}
982 
983 	if (register_blkdev(hwif->major, hwif->name))
984 		return 0;
985 
986 	if (!hwif->sg_max_nents)
987 		hwif->sg_max_nents = PRD_ENTRIES;
988 
989 	hwif->sg_table = kmalloc_array(hwif->sg_max_nents,
990 				       sizeof(struct scatterlist),
991 				       GFP_KERNEL);
992 	if (!hwif->sg_table) {
993 		printk(KERN_ERR "%s: unable to allocate SG table.\n", hwif->name);
994 		goto out;
995 	}
996 
997 	sg_init_table(hwif->sg_table, hwif->sg_max_nents);
998 
999 	if (init_irq(hwif)) {
1000 		printk(KERN_ERR "%s: disabled, unable to get IRQ %d\n",
1001 			hwif->name, hwif->irq);
1002 		goto out;
1003 	}
1004 
1005 	blk_register_region(MKDEV(hwif->major, 0), MAX_DRIVES << PARTN_BITS,
1006 			    THIS_MODULE, ata_probe, ata_lock, hwif);
1007 	return 1;
1008 
1009 out:
1010 	unregister_blkdev(hwif->major, hwif->name);
1011 	return 0;
1012 }
1013 
hwif_register_devices(ide_hwif_t * hwif)1014 static void hwif_register_devices(ide_hwif_t *hwif)
1015 {
1016 	ide_drive_t *drive;
1017 	unsigned int i;
1018 
1019 	ide_port_for_each_present_dev(i, drive, hwif) {
1020 		struct device *dev = &drive->gendev;
1021 		int ret;
1022 
1023 		dev_set_name(dev, "%u.%u", hwif->index, i);
1024 		dev_set_drvdata(dev, drive);
1025 		dev->parent = &hwif->gendev;
1026 		dev->bus = &ide_bus_type;
1027 		dev->release = drive_release_dev;
1028 
1029 		ret = device_register(dev);
1030 		if (ret < 0)
1031 			printk(KERN_WARNING "IDE: %s: device_register error: "
1032 					    "%d\n", __func__, ret);
1033 	}
1034 }
1035 
ide_port_init_devices(ide_hwif_t * hwif)1036 static void ide_port_init_devices(ide_hwif_t *hwif)
1037 {
1038 	const struct ide_port_ops *port_ops = hwif->port_ops;
1039 	ide_drive_t *drive;
1040 	int i;
1041 
1042 	ide_port_for_each_dev(i, drive, hwif) {
1043 		drive->dn = i + hwif->channel * 2;
1044 
1045 		if (hwif->host_flags & IDE_HFLAG_IO_32BIT)
1046 			drive->io_32bit = 1;
1047 		if (hwif->host_flags & IDE_HFLAG_NO_IO_32BIT)
1048 			drive->dev_flags |= IDE_DFLAG_NO_IO_32BIT;
1049 		if (hwif->host_flags & IDE_HFLAG_UNMASK_IRQS)
1050 			drive->dev_flags |= IDE_DFLAG_UNMASK;
1051 		if (hwif->host_flags & IDE_HFLAG_NO_UNMASK_IRQS)
1052 			drive->dev_flags |= IDE_DFLAG_NO_UNMASK;
1053 
1054 		drive->pio_mode = XFER_PIO_0;
1055 
1056 		if (port_ops && port_ops->init_dev)
1057 			port_ops->init_dev(drive);
1058 	}
1059 }
1060 
ide_init_port(ide_hwif_t * hwif,unsigned int port,const struct ide_port_info * d)1061 static void ide_init_port(ide_hwif_t *hwif, unsigned int port,
1062 			  const struct ide_port_info *d)
1063 {
1064 	hwif->channel = port;
1065 
1066 	hwif->chipset = d->chipset ? d->chipset : ide_pci;
1067 
1068 	if (d->init_iops)
1069 		d->init_iops(hwif);
1070 
1071 	/* ->host_flags may be set by ->init_iops (or even earlier...) */
1072 	hwif->host_flags |= d->host_flags;
1073 	hwif->pio_mask = d->pio_mask;
1074 
1075 	if (d->tp_ops)
1076 		hwif->tp_ops = d->tp_ops;
1077 
1078 	/* ->set_pio_mode for DTC2278 is currently limited to port 0 */
1079 	if ((hwif->host_flags & IDE_HFLAG_DTC2278) == 0 || hwif->channel == 0)
1080 		hwif->port_ops = d->port_ops;
1081 
1082 	hwif->swdma_mask = d->swdma_mask;
1083 	hwif->mwdma_mask = d->mwdma_mask;
1084 	hwif->ultra_mask = d->udma_mask;
1085 
1086 	if ((d->host_flags & IDE_HFLAG_NO_DMA) == 0) {
1087 		int rc;
1088 
1089 		hwif->dma_ops = d->dma_ops;
1090 
1091 		if (d->init_dma)
1092 			rc = d->init_dma(hwif, d);
1093 		else
1094 			rc = ide_hwif_setup_dma(hwif, d);
1095 
1096 		if (rc < 0) {
1097 			printk(KERN_INFO "%s: DMA disabled\n", hwif->name);
1098 
1099 			hwif->dma_ops = NULL;
1100 			hwif->dma_base = 0;
1101 			hwif->swdma_mask = 0;
1102 			hwif->mwdma_mask = 0;
1103 			hwif->ultra_mask = 0;
1104 		}
1105 	}
1106 
1107 	if ((d->host_flags & IDE_HFLAG_SERIALIZE) ||
1108 	    ((d->host_flags & IDE_HFLAG_SERIALIZE_DMA) && hwif->dma_base))
1109 		hwif->host->host_flags |= IDE_HFLAG_SERIALIZE;
1110 
1111 	if (d->max_sectors)
1112 		hwif->rqsize = d->max_sectors;
1113 	else {
1114 		if ((hwif->host_flags & IDE_HFLAG_NO_LBA48) ||
1115 		    (hwif->host_flags & IDE_HFLAG_NO_LBA48_DMA))
1116 			hwif->rqsize = 256;
1117 		else
1118 			hwif->rqsize = 65536;
1119 	}
1120 
1121 	/* call chipset specific routine for each enabled port */
1122 	if (d->init_hwif)
1123 		d->init_hwif(hwif);
1124 }
1125 
ide_port_cable_detect(ide_hwif_t * hwif)1126 static void ide_port_cable_detect(ide_hwif_t *hwif)
1127 {
1128 	const struct ide_port_ops *port_ops = hwif->port_ops;
1129 
1130 	if (port_ops && port_ops->cable_detect && (hwif->ultra_mask & 0x78)) {
1131 		if (hwif->cbl != ATA_CBL_PATA40_SHORT)
1132 			hwif->cbl = port_ops->cable_detect(hwif);
1133 	}
1134 }
1135 
1136 static const u8 ide_hwif_to_major[] =
1137 	{ IDE0_MAJOR, IDE1_MAJOR, IDE2_MAJOR, IDE3_MAJOR, IDE4_MAJOR,
1138 	  IDE5_MAJOR, IDE6_MAJOR, IDE7_MAJOR, IDE8_MAJOR, IDE9_MAJOR };
1139 
ide_port_init_devices_data(ide_hwif_t * hwif)1140 static void ide_port_init_devices_data(ide_hwif_t *hwif)
1141 {
1142 	ide_drive_t *drive;
1143 	int i;
1144 
1145 	ide_port_for_each_dev(i, drive, hwif) {
1146 		u8 j = (hwif->index * MAX_DRIVES) + i;
1147 		u16 *saved_id = drive->id;
1148 		struct request *saved_sense_rq = drive->sense_rq;
1149 
1150 		memset(drive, 0, sizeof(*drive));
1151 		memset(saved_id, 0, SECTOR_SIZE);
1152 		drive->id = saved_id;
1153 		drive->sense_rq = saved_sense_rq;
1154 
1155 		drive->media			= ide_disk;
1156 		drive->select			= (i << 4) | ATA_DEVICE_OBS;
1157 		drive->hwif			= hwif;
1158 		drive->ready_stat		= ATA_DRDY;
1159 		drive->bad_wstat		= BAD_W_STAT;
1160 		drive->special_flags		= IDE_SFLAG_RECALIBRATE |
1161 						  IDE_SFLAG_SET_GEOMETRY;
1162 		drive->name[0]			= 'h';
1163 		drive->name[1]			= 'd';
1164 		drive->name[2]			= 'a' + j;
1165 		drive->max_failures		= IDE_DEFAULT_MAX_FAILURES;
1166 
1167 		INIT_LIST_HEAD(&drive->list);
1168 		init_completion(&drive->gendev_rel_comp);
1169 	}
1170 }
1171 
ide_init_port_data(ide_hwif_t * hwif,unsigned int index)1172 static void ide_init_port_data(ide_hwif_t *hwif, unsigned int index)
1173 {
1174 	/* fill in any non-zero initial values */
1175 	hwif->index	= index;
1176 	hwif->major	= ide_hwif_to_major[index];
1177 
1178 	hwif->name[0]	= 'i';
1179 	hwif->name[1]	= 'd';
1180 	hwif->name[2]	= 'e';
1181 	hwif->name[3]	= '0' + index;
1182 
1183 	spin_lock_init(&hwif->lock);
1184 
1185 	timer_setup(&hwif->timer, ide_timer_expiry, 0);
1186 
1187 	init_completion(&hwif->gendev_rel_comp);
1188 
1189 	hwif->tp_ops = &default_tp_ops;
1190 
1191 	ide_port_init_devices_data(hwif);
1192 }
1193 
ide_init_port_hw(ide_hwif_t * hwif,struct ide_hw * hw)1194 static void ide_init_port_hw(ide_hwif_t *hwif, struct ide_hw *hw)
1195 {
1196 	memcpy(&hwif->io_ports, &hw->io_ports, sizeof(hwif->io_ports));
1197 	hwif->irq = hw->irq;
1198 	hwif->dev = hw->dev;
1199 	hwif->gendev.parent = hw->parent ? hw->parent : hw->dev;
1200 	hwif->config_data = hw->config;
1201 }
1202 
1203 static unsigned int ide_indexes;
1204 
1205 /**
1206  *	ide_find_port_slot	-	find free port slot
1207  *	@d: IDE port info
1208  *
1209  *	Return the new port slot index or -ENOENT if we are out of free slots.
1210  */
1211 
ide_find_port_slot(const struct ide_port_info * d)1212 static int ide_find_port_slot(const struct ide_port_info *d)
1213 {
1214 	int idx = -ENOENT;
1215 	u8 bootable = (d && (d->host_flags & IDE_HFLAG_NON_BOOTABLE)) ? 0 : 1;
1216 	u8 i = (d && (d->host_flags & IDE_HFLAG_QD_2ND_PORT)) ? 1 : 0;
1217 
1218 	/*
1219 	 * Claim an unassigned slot.
1220 	 *
1221 	 * Give preference to claiming other slots before claiming ide0/ide1,
1222 	 * just in case there's another interface yet-to-be-scanned
1223 	 * which uses ports 0x1f0/0x170 (the ide0/ide1 defaults).
1224 	 *
1225 	 * Unless there is a bootable card that does not use the standard
1226 	 * ports 0x1f0/0x170 (the ide0/ide1 defaults).
1227 	 */
1228 	mutex_lock(&ide_cfg_mtx);
1229 	if (bootable) {
1230 		if ((ide_indexes | i) != (1 << MAX_HWIFS) - 1)
1231 			idx = ffz(ide_indexes | i);
1232 	} else {
1233 		if ((ide_indexes | 3) != (1 << MAX_HWIFS) - 1)
1234 			idx = ffz(ide_indexes | 3);
1235 		else if ((ide_indexes & 3) != 3)
1236 			idx = ffz(ide_indexes);
1237 	}
1238 	if (idx >= 0)
1239 		ide_indexes |= (1 << idx);
1240 	mutex_unlock(&ide_cfg_mtx);
1241 
1242 	return idx;
1243 }
1244 
ide_free_port_slot(int idx)1245 static void ide_free_port_slot(int idx)
1246 {
1247 	mutex_lock(&ide_cfg_mtx);
1248 	ide_indexes &= ~(1 << idx);
1249 	mutex_unlock(&ide_cfg_mtx);
1250 }
1251 
ide_port_free_devices(ide_hwif_t * hwif)1252 static void ide_port_free_devices(ide_hwif_t *hwif)
1253 {
1254 	ide_drive_t *drive;
1255 	int i;
1256 
1257 	ide_port_for_each_dev(i, drive, hwif) {
1258 		kfree(drive->sense_rq);
1259 		kfree(drive->id);
1260 		kfree(drive);
1261 	}
1262 }
1263 
ide_port_alloc_devices(ide_hwif_t * hwif,int node)1264 static int ide_port_alloc_devices(ide_hwif_t *hwif, int node)
1265 {
1266 	ide_drive_t *drive;
1267 	int i;
1268 
1269 	for (i = 0; i < MAX_DRIVES; i++) {
1270 		drive = kzalloc_node(sizeof(*drive), GFP_KERNEL, node);
1271 		if (drive == NULL)
1272 			goto out_nomem;
1273 
1274 		/*
1275 		 * In order to keep things simple we have an id
1276 		 * block for all drives at all times. If the device
1277 		 * is pre ATA or refuses ATA/ATAPI identify we
1278 		 * will add faked data to this.
1279 		 *
1280 		 * Also note that 0 everywhere means "can't do X"
1281 		 */
1282 		drive->id = kzalloc_node(SECTOR_SIZE, GFP_KERNEL, node);
1283 		if (drive->id == NULL)
1284 			goto out_free_drive;
1285 
1286 		drive->sense_rq = kmalloc(sizeof(struct request) +
1287 				sizeof(struct ide_request), GFP_KERNEL);
1288 		if (!drive->sense_rq)
1289 			goto out_free_id;
1290 
1291 		hwif->devices[i] = drive;
1292 	}
1293 	return 0;
1294 
1295 out_free_id:
1296 	kfree(drive->id);
1297 out_free_drive:
1298 	kfree(drive);
1299 out_nomem:
1300 	ide_port_free_devices(hwif);
1301 	return -ENOMEM;
1302 }
1303 
ide_host_alloc(const struct ide_port_info * d,struct ide_hw ** hws,unsigned int n_ports)1304 struct ide_host *ide_host_alloc(const struct ide_port_info *d,
1305 				struct ide_hw **hws, unsigned int n_ports)
1306 {
1307 	struct ide_host *host;
1308 	struct device *dev = hws[0] ? hws[0]->dev : NULL;
1309 	int node = dev ? dev_to_node(dev) : -1;
1310 	int i;
1311 
1312 	host = kzalloc_node(sizeof(*host), GFP_KERNEL, node);
1313 	if (host == NULL)
1314 		return NULL;
1315 
1316 	for (i = 0; i < n_ports; i++) {
1317 		ide_hwif_t *hwif;
1318 		int idx;
1319 
1320 		if (hws[i] == NULL)
1321 			continue;
1322 
1323 		hwif = kzalloc_node(sizeof(*hwif), GFP_KERNEL, node);
1324 		if (hwif == NULL)
1325 			continue;
1326 
1327 		if (ide_port_alloc_devices(hwif, node) < 0) {
1328 			kfree(hwif);
1329 			continue;
1330 		}
1331 
1332 		idx = ide_find_port_slot(d);
1333 		if (idx < 0) {
1334 			printk(KERN_ERR "%s: no free slot for interface\n",
1335 					d ? d->name : "ide");
1336 			ide_port_free_devices(hwif);
1337 			kfree(hwif);
1338 			continue;
1339 		}
1340 
1341 		ide_init_port_data(hwif, idx);
1342 
1343 		hwif->host = host;
1344 
1345 		host->ports[i] = hwif;
1346 		host->n_ports++;
1347 	}
1348 
1349 	if (host->n_ports == 0) {
1350 		kfree(host);
1351 		return NULL;
1352 	}
1353 
1354 	host->dev[0] = dev;
1355 
1356 	if (d) {
1357 		host->init_chipset = d->init_chipset;
1358 		host->get_lock     = d->get_lock;
1359 		host->release_lock = d->release_lock;
1360 		host->host_flags = d->host_flags;
1361 		host->irq_flags = d->irq_flags;
1362 	}
1363 
1364 	return host;
1365 }
1366 EXPORT_SYMBOL_GPL(ide_host_alloc);
1367 
ide_port_free(ide_hwif_t * hwif)1368 static void ide_port_free(ide_hwif_t *hwif)
1369 {
1370 	ide_port_free_devices(hwif);
1371 	ide_free_port_slot(hwif->index);
1372 	kfree(hwif);
1373 }
1374 
ide_disable_port(ide_hwif_t * hwif)1375 static void ide_disable_port(ide_hwif_t *hwif)
1376 {
1377 	struct ide_host *host = hwif->host;
1378 	int i;
1379 
1380 	printk(KERN_INFO "%s: disabling port\n", hwif->name);
1381 
1382 	for (i = 0; i < MAX_HOST_PORTS; i++) {
1383 		if (host->ports[i] == hwif) {
1384 			host->ports[i] = NULL;
1385 			host->n_ports--;
1386 		}
1387 	}
1388 
1389 	ide_port_free(hwif);
1390 }
1391 
ide_host_register(struct ide_host * host,const struct ide_port_info * d,struct ide_hw ** hws)1392 int ide_host_register(struct ide_host *host, const struct ide_port_info *d,
1393 		      struct ide_hw **hws)
1394 {
1395 	ide_hwif_t *hwif, *mate = NULL;
1396 	int i, j = 0;
1397 
1398 	ide_host_for_each_port(i, hwif, host) {
1399 		if (hwif == NULL) {
1400 			mate = NULL;
1401 			continue;
1402 		}
1403 
1404 		ide_init_port_hw(hwif, hws[i]);
1405 		ide_port_apply_params(hwif);
1406 
1407 		if ((i & 1) && mate) {
1408 			hwif->mate = mate;
1409 			mate->mate = hwif;
1410 		}
1411 
1412 		mate = (i & 1) ? NULL : hwif;
1413 
1414 		ide_init_port(hwif, i & 1, d);
1415 		ide_port_cable_detect(hwif);
1416 
1417 		hwif->port_flags |= IDE_PFLAG_PROBING;
1418 
1419 		ide_port_init_devices(hwif);
1420 	}
1421 
1422 	ide_host_for_each_port(i, hwif, host) {
1423 		if (hwif == NULL)
1424 			continue;
1425 
1426 		if (ide_probe_port(hwif) == 0)
1427 			hwif->present = 1;
1428 
1429 		hwif->port_flags &= ~IDE_PFLAG_PROBING;
1430 
1431 		if ((hwif->host_flags & IDE_HFLAG_4DRIVES) == 0 ||
1432 		    hwif->mate == NULL || hwif->mate->present == 0) {
1433 			if (ide_register_port(hwif)) {
1434 				ide_disable_port(hwif);
1435 				continue;
1436 			}
1437 		}
1438 
1439 		if (hwif->present)
1440 			ide_port_tune_devices(hwif);
1441 	}
1442 
1443 	ide_host_enable_irqs(host);
1444 
1445 	ide_host_for_each_port(i, hwif, host) {
1446 		if (hwif == NULL)
1447 			continue;
1448 
1449 		if (hwif_init(hwif) == 0) {
1450 			printk(KERN_INFO "%s: failed to initialize IDE "
1451 					 "interface\n", hwif->name);
1452 			device_unregister(hwif->portdev);
1453 			device_unregister(&hwif->gendev);
1454 			ide_disable_port(hwif);
1455 			continue;
1456 		}
1457 
1458 		if (hwif->present)
1459 			if (ide_port_setup_devices(hwif) == 0) {
1460 				hwif->present = 0;
1461 				continue;
1462 			}
1463 
1464 		j++;
1465 
1466 		ide_acpi_init_port(hwif);
1467 
1468 		if (hwif->present)
1469 			ide_acpi_port_init_devices(hwif);
1470 	}
1471 
1472 	ide_host_for_each_port(i, hwif, host) {
1473 		if (hwif == NULL)
1474 			continue;
1475 
1476 		ide_sysfs_register_port(hwif);
1477 		ide_proc_register_port(hwif);
1478 
1479 		if (hwif->present) {
1480 			ide_proc_port_register_devices(hwif);
1481 			hwif_register_devices(hwif);
1482 		}
1483 	}
1484 
1485 	return j ? 0 : -1;
1486 }
1487 EXPORT_SYMBOL_GPL(ide_host_register);
1488 
ide_host_add(const struct ide_port_info * d,struct ide_hw ** hws,unsigned int n_ports,struct ide_host ** hostp)1489 int ide_host_add(const struct ide_port_info *d, struct ide_hw **hws,
1490 		 unsigned int n_ports, struct ide_host **hostp)
1491 {
1492 	struct ide_host *host;
1493 	int rc;
1494 
1495 	host = ide_host_alloc(d, hws, n_ports);
1496 	if (host == NULL)
1497 		return -ENOMEM;
1498 
1499 	rc = ide_host_register(host, d, hws);
1500 	if (rc) {
1501 		ide_host_free(host);
1502 		return rc;
1503 	}
1504 
1505 	if (hostp)
1506 		*hostp = host;
1507 
1508 	return 0;
1509 }
1510 EXPORT_SYMBOL_GPL(ide_host_add);
1511 
__ide_port_unregister_devices(ide_hwif_t * hwif)1512 static void __ide_port_unregister_devices(ide_hwif_t *hwif)
1513 {
1514 	ide_drive_t *drive;
1515 	int i;
1516 
1517 	ide_port_for_each_present_dev(i, drive, hwif) {
1518 		device_unregister(&drive->gendev);
1519 		wait_for_completion(&drive->gendev_rel_comp);
1520 	}
1521 }
1522 
ide_port_unregister_devices(ide_hwif_t * hwif)1523 void ide_port_unregister_devices(ide_hwif_t *hwif)
1524 {
1525 	mutex_lock(&ide_cfg_mtx);
1526 	__ide_port_unregister_devices(hwif);
1527 	hwif->present = 0;
1528 	ide_port_init_devices_data(hwif);
1529 	mutex_unlock(&ide_cfg_mtx);
1530 }
1531 EXPORT_SYMBOL_GPL(ide_port_unregister_devices);
1532 
1533 /**
1534  *	ide_unregister		-	free an IDE interface
1535  *	@hwif: IDE interface
1536  *
1537  *	Perform the final unregister of an IDE interface.
1538  *
1539  *	Locking:
1540  *	The caller must not hold the IDE locks.
1541  *
1542  *	It is up to the caller to be sure there is no pending I/O here,
1543  *	and that the interface will not be reopened (present/vanishing
1544  *	locking isn't yet done BTW).
1545  */
1546 
ide_unregister(ide_hwif_t * hwif)1547 static void ide_unregister(ide_hwif_t *hwif)
1548 {
1549 	BUG_ON(in_interrupt());
1550 	BUG_ON(irqs_disabled());
1551 
1552 	mutex_lock(&ide_cfg_mtx);
1553 
1554 	if (hwif->present) {
1555 		__ide_port_unregister_devices(hwif);
1556 		hwif->present = 0;
1557 	}
1558 
1559 	ide_proc_unregister_port(hwif);
1560 
1561 	if (!hwif->host->get_lock)
1562 		free_irq(hwif->irq, hwif);
1563 
1564 	device_unregister(hwif->portdev);
1565 	device_unregister(&hwif->gendev);
1566 	wait_for_completion(&hwif->gendev_rel_comp);
1567 
1568 	/*
1569 	 * Remove us from the kernel's knowledge
1570 	 */
1571 	blk_unregister_region(MKDEV(hwif->major, 0), MAX_DRIVES<<PARTN_BITS);
1572 	kfree(hwif->sg_table);
1573 	unregister_blkdev(hwif->major, hwif->name);
1574 
1575 	ide_release_dma_engine(hwif);
1576 
1577 	mutex_unlock(&ide_cfg_mtx);
1578 }
1579 
ide_host_free(struct ide_host * host)1580 void ide_host_free(struct ide_host *host)
1581 {
1582 	ide_hwif_t *hwif;
1583 	int i;
1584 
1585 	ide_host_for_each_port(i, hwif, host) {
1586 		if (hwif)
1587 			ide_port_free(hwif);
1588 	}
1589 
1590 	kfree(host);
1591 }
1592 EXPORT_SYMBOL_GPL(ide_host_free);
1593 
ide_host_remove(struct ide_host * host)1594 void ide_host_remove(struct ide_host *host)
1595 {
1596 	ide_hwif_t *hwif;
1597 	int i;
1598 
1599 	ide_host_for_each_port(i, hwif, host) {
1600 		if (hwif)
1601 			ide_unregister(hwif);
1602 	}
1603 
1604 	ide_host_free(host);
1605 }
1606 EXPORT_SYMBOL_GPL(ide_host_remove);
1607 
ide_port_scan(ide_hwif_t * hwif)1608 void ide_port_scan(ide_hwif_t *hwif)
1609 {
1610 	int rc;
1611 
1612 	ide_port_apply_params(hwif);
1613 	ide_port_cable_detect(hwif);
1614 
1615 	hwif->port_flags |= IDE_PFLAG_PROBING;
1616 
1617 	ide_port_init_devices(hwif);
1618 
1619 	rc = ide_probe_port(hwif);
1620 
1621 	hwif->port_flags &= ~IDE_PFLAG_PROBING;
1622 
1623 	if (rc < 0)
1624 		return;
1625 
1626 	hwif->present = 1;
1627 
1628 	ide_port_tune_devices(hwif);
1629 	ide_port_setup_devices(hwif);
1630 	ide_acpi_port_init_devices(hwif);
1631 	hwif_register_devices(hwif);
1632 	ide_proc_port_register_devices(hwif);
1633 }
1634 EXPORT_SYMBOL_GPL(ide_port_scan);
1635