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ata.c revision 1.129
      1 /*	$NetBSD: ata.c,v 1.129 2013/10/12 16:49:00 christos Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 1998, 2001 Manuel Bouyer.  All rights reserved.
      5  *
      6  * Redistribution and use in source and binary forms, with or without
      7  * modification, are permitted provided that the following conditions
      8  * are met:
      9  * 1. Redistributions of source code must retain the above copyright
     10  *    notice, this list of conditions and the following disclaimer.
     11  * 2. Redistributions in binary form must reproduce the above copyright
     12  *    notice, this list of conditions and the following disclaimer in the
     13  *    documentation and/or other materials provided with the distribution.
     14  *
     15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     16  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     17  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     18  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     19  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     20  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     21  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     22  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     23  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     24  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     25  */
     26 
     27 #include <sys/cdefs.h>
     28 __KERNEL_RCSID(0, "$NetBSD: ata.c,v 1.129 2013/10/12 16:49:00 christos Exp $");
     29 
     30 #include "opt_ata.h"
     31 
     32 #include <sys/param.h>
     33 #include <sys/systm.h>
     34 #include <sys/kernel.h>
     35 #include <sys/malloc.h>
     36 #include <sys/device.h>
     37 #include <sys/conf.h>
     38 #include <sys/fcntl.h>
     39 #include <sys/proc.h>
     40 #include <sys/pool.h>
     41 #include <sys/kthread.h>
     42 #include <sys/errno.h>
     43 #include <sys/ataio.h>
     44 #include <sys/kmem.h>
     45 #include <sys/intr.h>
     46 #include <sys/bus.h>
     47 #include <sys/once.h>
     48 
     49 #include <dev/ata/ataconf.h>
     50 #include <dev/ata/atareg.h>
     51 #include <dev/ata/atavar.h>
     52 #include <dev/ic/wdcvar.h>	/* for PIOBM */
     53 
     54 #include "locators.h"
     55 
     56 #include "atapibus.h"
     57 #include "ataraid.h"
     58 #include "sata_pmp.h"
     59 
     60 #if NATARAID > 0
     61 #include <dev/ata/ata_raidvar.h>
     62 #endif
     63 #if NSATA_PMP > 0
     64 #include <dev/ata/satapmpvar.h>
     65 #endif
     66 #include <dev/ata/satapmpreg.h>
     67 
     68 #define DEBUG_FUNCS  0x08
     69 #define DEBUG_PROBE  0x10
     70 #define DEBUG_DETACH 0x20
     71 #define	DEBUG_XFERS  0x40
     72 #ifdef ATADEBUG
     73 #ifndef ATADEBUG_MASK
     74 #define ATADEBUG_MASK 0
     75 #endif
     76 int atadebug_mask = ATADEBUG_MASK;
     77 #define ATADEBUG_PRINT(args, level) \
     78 	if (atadebug_mask & (level)) \
     79 		printf args
     80 #else
     81 #define ATADEBUG_PRINT(args, level)
     82 #endif
     83 
     84 static ONCE_DECL(ata_init_ctrl);
     85 static struct pool ata_xfer_pool;
     86 
     87 /*
     88  * A queue of atabus instances, used to ensure the same bus probe order
     89  * for a given hardware configuration at each boot.  Kthread probing
     90  * devices on a atabus.  Only one probing at once.
     91  */
     92 static TAILQ_HEAD(, atabus_initq)	atabus_initq_head;
     93 static kmutex_t				atabus_qlock;
     94 static kcondvar_t			atabus_qcv;
     95 static lwp_t *				atabus_cfg_lwp;
     96 
     97 /*****************************************************************************
     98  * ATA bus layer.
     99  *
    100  * ATA controllers attach an atabus instance, which handles probing the bus
    101  * for drives, etc.
    102  *****************************************************************************/
    103 
    104 dev_type_open(atabusopen);
    105 dev_type_close(atabusclose);
    106 dev_type_ioctl(atabusioctl);
    107 
    108 const struct cdevsw atabus_cdevsw = {
    109 	atabusopen, atabusclose, noread, nowrite, atabusioctl,
    110 	nostop, notty, nopoll, nommap, nokqfilter, D_OTHER
    111 };
    112 
    113 extern struct cfdriver atabus_cd;
    114 
    115 static void atabus_childdetached(device_t, device_t);
    116 static int atabus_rescan(device_t, const char *, const int *);
    117 static bool atabus_resume(device_t, const pmf_qual_t *);
    118 static bool atabus_suspend(device_t, const pmf_qual_t *);
    119 static void atabusconfig_thread(void *);
    120 
    121 /*
    122  * atabus_init:
    123  *
    124  *	Initialize ATA subsystem structures.
    125  */
    126 static int
    127 atabus_init(void)
    128 {
    129 
    130 	pool_init(&ata_xfer_pool, sizeof(struct ata_xfer), 0, 0, 0,
    131 	    "ataspl", NULL, IPL_BIO);
    132 	TAILQ_INIT(&atabus_initq_head);
    133 	mutex_init(&atabus_qlock, MUTEX_DEFAULT, IPL_NONE);
    134 	cv_init(&atabus_qcv, "atainitq");
    135 	return 0;
    136 }
    137 
    138 /*
    139  * atabusprint:
    140  *
    141  *	Autoconfiguration print routine used by ATA controllers when
    142  *	attaching an atabus instance.
    143  */
    144 int
    145 atabusprint(void *aux, const char *pnp)
    146 {
    147 	struct ata_channel *chan = aux;
    148 
    149 	if (pnp)
    150 		aprint_normal("atabus at %s", pnp);
    151 	aprint_normal(" channel %d", chan->ch_channel);
    152 
    153 	return (UNCONF);
    154 }
    155 
    156 /*
    157  * ataprint:
    158  *
    159  *	Autoconfiguration print routine.
    160  */
    161 int
    162 ataprint(void *aux, const char *pnp)
    163 {
    164 	struct ata_device *adev = aux;
    165 
    166 	if (pnp)
    167 		aprint_normal("wd at %s", pnp);
    168 	aprint_normal(" drive %d", adev->adev_drv_data->drive);
    169 
    170 	return (UNCONF);
    171 }
    172 
    173 /*
    174  * ata_channel_attach:
    175  *
    176  *	Common parts of attaching an atabus to an ATA controller channel.
    177  */
    178 void
    179 ata_channel_attach(struct ata_channel *chp)
    180 {
    181 
    182 	if (chp->ch_flags & ATACH_DISABLED)
    183 		return;
    184 
    185 	/* XXX callout_destroy */
    186 	callout_init(&chp->ch_callout, 0);
    187 
    188 	TAILQ_INIT(&chp->ch_queue->queue_xfer);
    189 	chp->ch_queue->queue_freeze = 0;
    190 	chp->ch_queue->queue_flags = 0;
    191 	chp->ch_queue->active_xfer = NULL;
    192 
    193 	chp->atabus = config_found_ia(chp->ch_atac->atac_dev, "ata", chp,
    194 		atabusprint);
    195 }
    196 
    197 static void
    198 atabusconfig(struct atabus_softc *atabus_sc)
    199 {
    200 	struct ata_channel *chp = atabus_sc->sc_chan;
    201 	struct atac_softc *atac = chp->ch_atac;
    202 	struct atabus_initq *atabus_initq = NULL;
    203 	int i, s, error;
    204 
    205 	/* we are in the atabus's thread context */
    206 	s = splbio();
    207 	chp->ch_flags |= ATACH_TH_RUN;
    208 	splx(s);
    209 
    210 	/*
    211 	 * Probe for the drives attached to controller, unless a PMP
    212 	 * is already known
    213 	 */
    214 	/* XXX for SATA devices we will power up all drives at once */
    215 	if (chp->ch_satapmp_nports == 0)
    216 		(*atac->atac_probe)(chp);
    217 
    218 	if (chp->ch_ndrives >= 2) {
    219 		ATADEBUG_PRINT(("atabusattach: ch_drive_type 0x%x 0x%x\n",
    220 		    chp->ch_drive[0].drive_type, chp->ch_drive[1].drive_type),
    221 		    DEBUG_PROBE);
    222 	}
    223 
    224 	/* next operations will occurs in a separate thread */
    225 	s = splbio();
    226 	chp->ch_flags &= ~ATACH_TH_RUN;
    227 	splx(s);
    228 
    229 	/* Make sure the devices probe in atabus order to avoid jitter. */
    230 	mutex_enter(&atabus_qlock);
    231 	for (;;) {
    232 		atabus_initq = TAILQ_FIRST(&atabus_initq_head);
    233 		if (atabus_initq->atabus_sc == atabus_sc)
    234 			break;
    235 		cv_wait(&atabus_qcv, &atabus_qlock);
    236 	}
    237 	mutex_exit(&atabus_qlock);
    238 
    239 	/* If no drives, abort here */
    240 	if (chp->ch_drive == NULL)
    241 		goto out;
    242 	KASSERT(chp->ch_ndrives == 0 || chp->ch_drive != NULL);
    243 	for (i = 0; i < chp->ch_ndrives; i++)
    244 		if (chp->ch_drive[i].drive_type != ATA_DRIVET_NONE)
    245 			break;
    246 	if (i == chp->ch_ndrives)
    247 		goto out;
    248 
    249 	/* Shortcut in case we've been shutdown */
    250 	if (chp->ch_flags & ATACH_SHUTDOWN)
    251 		goto out;
    252 
    253 	if ((error = kthread_create(PRI_NONE, 0, NULL, atabusconfig_thread,
    254 	    atabus_sc, &atabus_cfg_lwp,
    255 	    "%scnf", device_xname(atac->atac_dev))) != 0)
    256 		aprint_error_dev(atac->atac_dev,
    257 		    "unable to create config thread: error %d\n", error);
    258 	return;
    259 
    260  out:
    261 	mutex_enter(&atabus_qlock);
    262 	TAILQ_REMOVE(&atabus_initq_head, atabus_initq, atabus_initq);
    263 	cv_broadcast(&atabus_qcv);
    264 	mutex_exit(&atabus_qlock);
    265 
    266 	free(atabus_initq, M_DEVBUF);
    267 
    268 	ata_delref(chp);
    269 
    270 	config_pending_decr(atac->atac_dev);
    271 }
    272 
    273 /*
    274  * atabus_configthread: finish attach of atabus's childrens, in a separate
    275  * kernel thread.
    276  */
    277 static void
    278 atabusconfig_thread(void *arg)
    279 {
    280 	struct atabus_softc *atabus_sc = arg;
    281 	struct ata_channel *chp = atabus_sc->sc_chan;
    282 	struct atac_softc *atac = chp->ch_atac;
    283 	struct atabus_initq *atabus_initq = NULL;
    284 	int i, s;
    285 
    286 	/* XXX seems wrong */
    287 	mutex_enter(&atabus_qlock);
    288 	atabus_initq = TAILQ_FIRST(&atabus_initq_head);
    289 	KASSERT(atabus_initq->atabus_sc == atabus_sc);
    290 	mutex_exit(&atabus_qlock);
    291 
    292 	/*
    293 	 * First look for a port multiplier
    294 	 */
    295 	if (chp->ch_ndrives == PMP_MAX_DRIVES &&
    296 	    chp->ch_drive[PMP_PORT_CTL].drive_type == ATA_DRIVET_PM) {
    297 #if NSATA_PMP > 0
    298 		satapmp_attach(chp);
    299 #else
    300 		aprint_error_dev(atabus_sc->sc_dev,
    301 		    "SATA port multiplier not supported\n");
    302 		/* no problems going on, all drives are ATA_DRIVET_NONE */
    303 #endif
    304 	}
    305 
    306 	/*
    307 	 * Attach an ATAPI bus, if needed.
    308 	 */
    309 	KASSERT(chp->ch_ndrives == 0 || chp->ch_drive != NULL);
    310 	for (i = 0; i < chp->ch_ndrives && chp->atapibus == NULL; i++) {
    311 		if (chp->ch_drive[i].drive_type == ATA_DRIVET_ATAPI) {
    312 #if NATAPIBUS > 0
    313 			(*atac->atac_atapibus_attach)(atabus_sc);
    314 #else
    315 			/*
    316 			 * Fake the autoconfig "not configured" message
    317 			 */
    318 			aprint_normal("atapibus at %s not configured\n",
    319 			    device_xname(atac->atac_dev));
    320 			chp->atapibus = NULL;
    321 			s = splbio();
    322 			for (i = 0; i < chp->ch_ndrives; i++) {
    323 				if (chp->ch_drive[i].drive_type == ATA_DRIVET_ATAPI)
    324 					chp->ch_drive[i].drive_type = ATA_DRIVET_NONE;
    325 			}
    326 			splx(s);
    327 #endif
    328 			break;
    329 		}
    330 	}
    331 
    332 	for (i = 0; i < chp->ch_ndrives; i++) {
    333 		struct ata_device adev;
    334 		if (chp->ch_drive[i].drive_type != ATA_DRIVET_ATA &&
    335 		    chp->ch_drive[i].drive_type != ATA_DRIVET_OLD) {
    336 			continue;
    337 		}
    338 		if (chp->ch_drive[i].drv_softc != NULL)
    339 			continue;
    340 		memset(&adev, 0, sizeof(struct ata_device));
    341 		adev.adev_bustype = atac->atac_bustype_ata;
    342 		adev.adev_channel = chp->ch_channel;
    343 		adev.adev_openings = 1;
    344 		adev.adev_drv_data = &chp->ch_drive[i];
    345 		chp->ch_drive[i].drv_softc = config_found_ia(atabus_sc->sc_dev,
    346 		    "ata_hl", &adev, ataprint);
    347 		if (chp->ch_drive[i].drv_softc != NULL) {
    348 			ata_probe_caps(&chp->ch_drive[i]);
    349 		} else {
    350 			s = splbio();
    351 			chp->ch_drive[i].drive_type = ATA_DRIVET_NONE;
    352 			splx(s);
    353 		}
    354 	}
    355 
    356 	/* now that we know the drives, the controller can set its modes */
    357 	if (atac->atac_set_modes) {
    358 		(*atac->atac_set_modes)(chp);
    359 		ata_print_modes(chp);
    360 	}
    361 #if NATARAID > 0
    362 	if (atac->atac_cap & ATAC_CAP_RAID) {
    363 		for (i = 0; i < chp->ch_ndrives; i++) {
    364 			if (chp->ch_drive[i].drive_type == ATA_DRIVET_ATA) {
    365 				ata_raid_check_component(
    366 				    chp->ch_drive[i].drv_softc);
    367 			}
    368 		}
    369 	}
    370 #endif /* NATARAID > 0 */
    371 
    372 	/*
    373 	 * reset drive_flags for unattached devices, reset state for attached
    374 	 * ones
    375 	 */
    376 	s = splbio();
    377 	for (i = 0; i < chp->ch_ndrives; i++) {
    378 		if (chp->ch_drive[i].drive_type == ATA_DRIVET_PM)
    379 			continue;
    380 		if (chp->ch_drive[i].drv_softc == NULL) {
    381 			chp->ch_drive[i].drive_flags = 0;
    382 			chp->ch_drive[i].drive_type = ATA_DRIVET_NONE;
    383 		} else
    384 			chp->ch_drive[i].state = 0;
    385 	}
    386 	splx(s);
    387 
    388 	mutex_enter(&atabus_qlock);
    389 	TAILQ_REMOVE(&atabus_initq_head, atabus_initq, atabus_initq);
    390 	cv_broadcast(&atabus_qcv);
    391 	mutex_exit(&atabus_qlock);
    392 
    393 	free(atabus_initq, M_DEVBUF);
    394 
    395 	ata_delref(chp);
    396 
    397 	config_pending_decr(atac->atac_dev);
    398 	kthread_exit(0);
    399 }
    400 
    401 /*
    402  * atabus_thread:
    403  *
    404  *	Worker thread for the ATA bus.
    405  */
    406 static void
    407 atabus_thread(void *arg)
    408 {
    409 	struct atabus_softc *sc = arg;
    410 	struct ata_channel *chp = sc->sc_chan;
    411 	struct ata_xfer *xfer;
    412 	int i, s;
    413 
    414 	s = splbio();
    415 	chp->ch_flags |= ATACH_TH_RUN;
    416 
    417 	/*
    418 	 * Probe the drives.  Reset type to indicate to controllers
    419 	 * that can re-probe that all drives must be probed..
    420 	 *
    421 	 * Note: ch_ndrives may be changed during the probe.
    422 	 */
    423 	KASSERT(chp->ch_ndrives == 0 || chp->ch_drive != NULL);
    424 	for (i = 0; i < chp->ch_ndrives; i++) {
    425 		chp->ch_drive[i].drive_flags = 0;
    426 		chp->ch_drive[i].drive_type = ATA_DRIVET_NONE;
    427 	}
    428 	splx(s);
    429 
    430 	atabusconfig(sc);
    431 
    432 	s = splbio();
    433 	for (;;) {
    434 		if ((chp->ch_flags & (ATACH_TH_RESET | ATACH_SHUTDOWN)) == 0 &&
    435 		    (chp->ch_queue->active_xfer == NULL ||
    436 		     chp->ch_queue->queue_freeze == 0)) {
    437 			chp->ch_flags &= ~ATACH_TH_RUN;
    438 			(void) tsleep(&chp->ch_thread, PRIBIO, "atath", 0);
    439 			chp->ch_flags |= ATACH_TH_RUN;
    440 		}
    441 		if (chp->ch_flags & ATACH_SHUTDOWN) {
    442 			break;
    443 		}
    444 		if (chp->ch_flags & ATACH_TH_RESCAN) {
    445 			atabusconfig(sc);
    446 			chp->ch_flags &= ~ATACH_TH_RESCAN;
    447 		}
    448 		if (chp->ch_flags & ATACH_TH_RESET) {
    449 			/*
    450 			 * ata_reset_channel() will freeze 2 times, so
    451 			 * unfreeze one time. Not a problem as we're at splbio
    452 			 */
    453 			chp->ch_queue->queue_freeze--;
    454 			ata_reset_channel(chp, AT_WAIT | chp->ch_reset_flags);
    455 		} else if (chp->ch_queue->active_xfer != NULL &&
    456 			   chp->ch_queue->queue_freeze == 1) {
    457 			/*
    458 			 * Caller has bumped queue_freeze, decrease it.
    459 			 */
    460 			chp->ch_queue->queue_freeze--;
    461 			xfer = chp->ch_queue->active_xfer;
    462 			KASSERT(xfer != NULL);
    463 			(*xfer->c_start)(xfer->c_chp, xfer);
    464 		} else if (chp->ch_queue->queue_freeze > 1)
    465 			panic("ata_thread: queue_freeze");
    466 	}
    467 	splx(s);
    468 	chp->ch_thread = NULL;
    469 	wakeup(&chp->ch_flags);
    470 	kthread_exit(0);
    471 }
    472 
    473 /*
    474  * atabus_match:
    475  *
    476  *	Autoconfiguration match routine.
    477  */
    478 static int
    479 atabus_match(device_t parent, cfdata_t cf, void *aux)
    480 {
    481 	struct ata_channel *chp = aux;
    482 
    483 	if (chp == NULL)
    484 		return (0);
    485 
    486 	if (cf->cf_loc[ATACF_CHANNEL] != chp->ch_channel &&
    487 	    cf->cf_loc[ATACF_CHANNEL] != ATACF_CHANNEL_DEFAULT)
    488 		return (0);
    489 
    490 	return (1);
    491 }
    492 
    493 /*
    494  * atabus_attach:
    495  *
    496  *	Autoconfiguration attach routine.
    497  */
    498 static void
    499 atabus_attach(device_t parent, device_t self, void *aux)
    500 {
    501 	struct atabus_softc *sc = device_private(self);
    502 	struct ata_channel *chp = aux;
    503 	struct atabus_initq *initq;
    504 	int error;
    505 
    506 	sc->sc_chan = chp;
    507 
    508 	aprint_normal("\n");
    509 	aprint_naive("\n");
    510 
    511 	sc->sc_dev = self;
    512 
    513 	if (ata_addref(chp))
    514 		return;
    515 
    516 	RUN_ONCE(&ata_init_ctrl, atabus_init);
    517 
    518 	initq = malloc(sizeof(*initq), M_DEVBUF, M_WAITOK);
    519 	initq->atabus_sc = sc;
    520 	TAILQ_INSERT_TAIL(&atabus_initq_head, initq, atabus_initq);
    521 	config_pending_incr(sc->sc_dev);
    522 
    523 	if ((error = kthread_create(PRI_NONE, 0, NULL, atabus_thread, sc,
    524 	    &chp->ch_thread, "%s", device_xname(self))) != 0)
    525 		aprint_error_dev(self,
    526 		    "unable to create kernel thread: error %d\n", error);
    527 
    528 	if (!pmf_device_register(self, atabus_suspend, atabus_resume))
    529 		aprint_error_dev(self, "couldn't establish power handler\n");
    530 }
    531 
    532 /*
    533  * atabus_detach:
    534  *
    535  *	Autoconfiguration detach routine.
    536  */
    537 static int
    538 atabus_detach(device_t self, int flags)
    539 {
    540 	struct atabus_softc *sc = device_private(self);
    541 	struct ata_channel *chp = sc->sc_chan;
    542 	device_t dev = NULL;
    543 	int s, i, error = 0;
    544 
    545 	/* Shutdown the channel. */
    546 	s = splbio();		/* XXX ALSO NEED AN INTERLOCK HERE. */
    547 	chp->ch_flags |= ATACH_SHUTDOWN;
    548 	splx(s);
    549 
    550 	wakeup(&chp->ch_thread);
    551 
    552 	while (chp->ch_thread != NULL)
    553 		(void) tsleep(&chp->ch_flags, PRIBIO, "atadown", 0);
    554 
    555 
    556 	/*
    557 	 * Detach atapibus and its children.
    558 	 */
    559 	if ((dev = chp->atapibus) != NULL) {
    560 		ATADEBUG_PRINT(("atabus_detach: %s: detaching %s\n",
    561 		    device_xname(self), device_xname(dev)), DEBUG_DETACH);
    562 
    563 		error = config_detach(dev, flags);
    564 		if (error)
    565 			goto out;
    566 		KASSERT(chp->atapibus == NULL);
    567 	}
    568 
    569 	KASSERT(chp->ch_ndrives == 0 || chp->ch_drive != NULL);
    570 
    571 	/*
    572 	 * Detach our other children.
    573 	 */
    574 	for (i = 0; i < chp->ch_ndrives; i++) {
    575 		if (chp->ch_drive[i].drive_type == ATA_DRIVET_ATAPI)
    576 			continue;
    577 		if (chp->ch_drive[i].drive_type == ATA_DRIVET_PM)
    578 			chp->ch_drive[i].drive_type = ATA_DRIVET_NONE;
    579 		if ((dev = chp->ch_drive[i].drv_softc) != NULL) {
    580 			ATADEBUG_PRINT(("%s.%d: %s: detaching %s\n", __func__,
    581 			    __LINE__, device_xname(self), device_xname(dev)),
    582 			    DEBUG_DETACH);
    583 			error = config_detach(dev, flags);
    584 			if (error)
    585 				goto out;
    586 			KASSERT(chp->ch_drive[i].drv_softc == NULL);
    587 			KASSERT(chp->ch_drive[i].drive_type == 0);
    588 		}
    589 	}
    590 	atabus_free_drives(chp);
    591 
    592  out:
    593 #ifdef ATADEBUG
    594 	if (dev != NULL && error != 0)
    595 		ATADEBUG_PRINT(("%s: %s: error %d detaching %s\n", __func__,
    596 		    device_xname(self), error, device_xname(dev)),
    597 		    DEBUG_DETACH);
    598 #endif /* ATADEBUG */
    599 
    600 	return (error);
    601 }
    602 
    603 void
    604 atabus_childdetached(device_t self, device_t child)
    605 {
    606 	bool found = false;
    607 	struct atabus_softc *sc = device_private(self);
    608 	struct ata_channel *chp = sc->sc_chan;
    609 	int i;
    610 
    611 	KASSERT(chp->ch_ndrives == 0 || chp->ch_drive != NULL);
    612 	/*
    613 	 * atapibus detached.
    614 	 */
    615 	if (child == chp->atapibus) {
    616 		chp->atapibus = NULL;
    617 		found = true;
    618 		for (i = 0; i < chp->ch_ndrives; i++) {
    619 			if (chp->ch_drive[i].drive_type != ATA_DRIVET_ATAPI)
    620 				continue;
    621 			KASSERT(chp->ch_drive[i].drv_softc != NULL);
    622 			chp->ch_drive[i].drv_softc = NULL;
    623 			chp->ch_drive[i].drive_flags = 0;
    624 			chp->ch_drive[i].drive_type = ATA_DRIVET_NONE;
    625 		}
    626 	}
    627 
    628 	/*
    629 	 * Detach our other children.
    630 	 */
    631 	for (i = 0; i < chp->ch_ndrives; i++) {
    632 		if (chp->ch_drive[i].drive_type == ATA_DRIVET_ATAPI)
    633 			continue;
    634 		if (child == chp->ch_drive[i].drv_softc) {
    635 			chp->ch_drive[i].drv_softc = NULL;
    636 			chp->ch_drive[i].drive_flags = 0;
    637 			if (chp->ch_drive[i].drive_type == ATA_DRIVET_PM)
    638 				chp->ch_satapmp_nports = 0;
    639 			chp->ch_drive[i].drive_type = ATA_DRIVET_NONE;
    640 			found = true;
    641 		}
    642 	}
    643 
    644 	if (!found)
    645 		panic("%s: unknown child %p", device_xname(self),
    646 		    (const void *)child);
    647 }
    648 
    649 CFATTACH_DECL3_NEW(atabus, sizeof(struct atabus_softc),
    650     atabus_match, atabus_attach, atabus_detach, NULL, atabus_rescan,
    651     atabus_childdetached, DVF_DETACH_SHUTDOWN);
    652 
    653 /*****************************************************************************
    654  * Common ATA bus operations.
    655  *****************************************************************************/
    656 
    657 /* allocate/free the channel's ch_drive[] array */
    658 int
    659 atabus_alloc_drives(struct ata_channel *chp, int ndrives)
    660 {
    661 	int i;
    662 	if (chp->ch_ndrives != ndrives)
    663 		atabus_free_drives(chp);
    664 	if (chp->ch_drive == NULL) {
    665 		chp->ch_drive = malloc(
    666 		    sizeof(struct ata_drive_datas) * ndrives,
    667 		    M_DEVBUF, M_NOWAIT | M_ZERO);
    668 	}
    669 	if (chp->ch_drive == NULL) {
    670 	    aprint_error_dev(chp->ch_atac->atac_dev,
    671 		"can't alloc drive array\n");
    672 	    chp->ch_ndrives = 0;
    673 	    return ENOMEM;
    674 	};
    675 	for (i = 0; i < ndrives; i++) {
    676 		chp->ch_drive[i].chnl_softc = chp;
    677 		chp->ch_drive[i].drive = i;
    678 	}
    679 	chp->ch_ndrives = ndrives;
    680 	return 0;
    681 }
    682 
    683 void
    684 atabus_free_drives(struct ata_channel *chp)
    685 {
    686 #ifdef DIAGNOSTIC
    687 	int i;
    688 	int dopanic = 0;
    689 	KASSERT(chp->ch_ndrives == 0 || chp->ch_drive != NULL);
    690 	for (i = 0; i < chp->ch_ndrives; i++) {
    691 		if (chp->ch_drive[i].drive_type != ATA_DRIVET_NONE) {
    692 			printf("%s: ch_drive[%d] type %d != ATA_DRIVET_NONE\n",
    693 			    device_xname(chp->atabus), i,
    694 			    chp->ch_drive[i].drive_type);
    695 			dopanic = 1;
    696 		}
    697 		if (chp->ch_drive[i].drv_softc != NULL) {
    698 			printf("%s: ch_drive[%d] attached to %s\n",
    699 			    device_xname(chp->atabus), i,
    700 			    device_xname(chp->ch_drive[i].drv_softc));
    701 			dopanic = 1;
    702 		}
    703 	}
    704 	if (dopanic)
    705 		panic("atabus_free_drives");
    706 #endif
    707 
    708 	if (chp->ch_drive == NULL)
    709 		return;
    710 	chp->ch_ndrives = 0;
    711 	free(chp->ch_drive, M_DEVBUF);
    712 	chp->ch_drive = NULL;
    713 }
    714 
    715 /* Get the disk's parameters */
    716 int
    717 ata_get_params(struct ata_drive_datas *drvp, u_int8_t flags,
    718     struct ataparams *prms)
    719 {
    720 	struct ata_command ata_c;
    721 	struct ata_channel *chp = drvp->chnl_softc;
    722 	struct atac_softc *atac = chp->ch_atac;
    723 	char *tb;
    724 	int i, rv;
    725 	u_int16_t *p;
    726 
    727 	ATADEBUG_PRINT(("%s\n", __func__), DEBUG_FUNCS);
    728 
    729 	tb = kmem_zalloc(DEV_BSIZE, KM_SLEEP);
    730 	memset(prms, 0, sizeof(struct ataparams));
    731 	memset(&ata_c, 0, sizeof(struct ata_command));
    732 
    733 	if (drvp->drive_type == ATA_DRIVET_ATA) {
    734 		ata_c.r_command = WDCC_IDENTIFY;
    735 		ata_c.r_st_bmask = WDCS_DRDY;
    736 		ata_c.r_st_pmask = WDCS_DRQ;
    737 		ata_c.timeout = 3000; /* 3s */
    738 	} else if (drvp->drive_type == ATA_DRIVET_ATAPI) {
    739 		ata_c.r_command = ATAPI_IDENTIFY_DEVICE;
    740 		ata_c.r_st_bmask = 0;
    741 		ata_c.r_st_pmask = WDCS_DRQ;
    742 		ata_c.timeout = 10000; /* 10s */
    743 	} else {
    744 		ATADEBUG_PRINT(("ata_get_parms: no disks\n"),
    745 		    DEBUG_FUNCS|DEBUG_PROBE);
    746 		rv = CMD_ERR;
    747 		goto out;
    748 	}
    749 	ata_c.flags = AT_READ | flags;
    750 	ata_c.data = tb;
    751 	ata_c.bcount = DEV_BSIZE;
    752 	if ((*atac->atac_bustype_ata->ata_exec_command)(drvp,
    753 						&ata_c) != ATACMD_COMPLETE) {
    754 		ATADEBUG_PRINT(("ata_get_parms: wdc_exec_command failed\n"),
    755 		    DEBUG_FUNCS|DEBUG_PROBE);
    756 		rv = CMD_AGAIN;
    757 		goto out;
    758 	}
    759 	if (ata_c.flags & (AT_ERROR | AT_TIMEOU | AT_DF)) {
    760 		ATADEBUG_PRINT(("ata_get_parms: ata_c.flags=0x%x\n",
    761 		    ata_c.flags), DEBUG_FUNCS|DEBUG_PROBE);
    762 		rv = CMD_ERR;
    763 		goto out;
    764 	}
    765 	/* if we didn't read any data something is wrong */
    766 	if ((ata_c.flags & AT_XFDONE) == 0) {
    767 		rv = CMD_ERR;
    768 		goto out;
    769 	}
    770 
    771 	/* Read in parameter block. */
    772 	memcpy(prms, tb, sizeof(struct ataparams));
    773 
    774 	/*
    775 	 * Shuffle string byte order.
    776 	 * ATAPI NEC, Mitsumi and Pioneer drives and
    777 	 * old ATA TDK CompactFlash cards
    778 	 * have different byte order.
    779 	 */
    780 #if BYTE_ORDER == BIG_ENDIAN
    781 # define M(n)	prms->atap_model[(n) ^ 1]
    782 #else
    783 # define M(n)	prms->atap_model[n]
    784 #endif
    785 	if (
    786 #if BYTE_ORDER == BIG_ENDIAN
    787 	    !
    788 #endif
    789 	    ((drvp->drive_type == ATA_DRIVET_ATAPI) ?
    790 	     ((M(0) == 'N' && M(1) == 'E') ||
    791 	      (M(0) == 'F' && M(1) == 'X') ||
    792 	      (M(0) == 'P' && M(1) == 'i')) :
    793 	     ((M(0) == 'T' && M(1) == 'D' && M(2) == 'K')))) {
    794 		rv = CMD_OK;
    795 		goto out;
    796 	     }
    797 #undef M
    798 	for (i = 0; i < sizeof(prms->atap_model); i += 2) {
    799 		p = (u_int16_t *)(prms->atap_model + i);
    800 		*p = bswap16(*p);
    801 	}
    802 	for (i = 0; i < sizeof(prms->atap_serial); i += 2) {
    803 		p = (u_int16_t *)(prms->atap_serial + i);
    804 		*p = bswap16(*p);
    805 	}
    806 	for (i = 0; i < sizeof(prms->atap_revision); i += 2) {
    807 		p = (u_int16_t *)(prms->atap_revision + i);
    808 		*p = bswap16(*p);
    809 	}
    810 
    811 	rv = CMD_OK;
    812  out:
    813 	kmem_free(tb, DEV_BSIZE);
    814 	return rv;
    815 }
    816 
    817 int
    818 ata_set_mode(struct ata_drive_datas *drvp, u_int8_t mode, u_int8_t flags)
    819 {
    820 	struct ata_command ata_c;
    821 	struct ata_channel *chp = drvp->chnl_softc;
    822 	struct atac_softc *atac = chp->ch_atac;
    823 
    824 	ATADEBUG_PRINT(("ata_set_mode=0x%x\n", mode), DEBUG_FUNCS);
    825 	memset(&ata_c, 0, sizeof(struct ata_command));
    826 
    827 	ata_c.r_command = SET_FEATURES;
    828 	ata_c.r_st_bmask = 0;
    829 	ata_c.r_st_pmask = 0;
    830 	ata_c.r_features = WDSF_SET_MODE;
    831 	ata_c.r_count = mode;
    832 	ata_c.flags = flags;
    833 	ata_c.timeout = 1000; /* 1s */
    834 	if ((*atac->atac_bustype_ata->ata_exec_command)(drvp,
    835 						&ata_c) != ATACMD_COMPLETE)
    836 		return CMD_AGAIN;
    837 	if (ata_c.flags & (AT_ERROR | AT_TIMEOU | AT_DF)) {
    838 		return CMD_ERR;
    839 	}
    840 	return CMD_OK;
    841 }
    842 
    843 #if NATA_DMA
    844 void
    845 ata_dmaerr(struct ata_drive_datas *drvp, int flags)
    846 {
    847 	/*
    848 	 * Downgrade decision: if we get NERRS_MAX in NXFER.
    849 	 * We start with n_dmaerrs set to NERRS_MAX-1 so that the
    850 	 * first error within the first NXFER ops will immediatly trigger
    851 	 * a downgrade.
    852 	 * If we got an error and n_xfers is bigger than NXFER reset counters.
    853 	 */
    854 	drvp->n_dmaerrs++;
    855 	if (drvp->n_dmaerrs >= NERRS_MAX && drvp->n_xfers <= NXFER) {
    856 		ata_downgrade_mode(drvp, flags);
    857 		drvp->n_dmaerrs = NERRS_MAX-1;
    858 		drvp->n_xfers = 0;
    859 		return;
    860 	}
    861 	if (drvp->n_xfers > NXFER) {
    862 		drvp->n_dmaerrs = 1; /* just got an error */
    863 		drvp->n_xfers = 1; /* restart counting from this error */
    864 	}
    865 }
    866 #endif	/* NATA_DMA */
    867 
    868 /*
    869  * freeze the queue and wait for the controller to be idle. Caller has to
    870  * unfreeze/restart the queue
    871  */
    872 void
    873 ata_queue_idle(struct ata_queue *queue)
    874 {
    875 	int s = splbio();
    876 	queue->queue_freeze++;
    877 	while (queue->active_xfer != NULL) {
    878 		queue->queue_flags |= QF_IDLE_WAIT;
    879 		tsleep(&queue->queue_flags, PRIBIO, "qidl", 0);
    880 	}
    881 	splx(s);
    882 }
    883 
    884 /*
    885  * Add a command to the queue and start controller.
    886  *
    887  * MUST BE CALLED AT splbio()!
    888  */
    889 void
    890 ata_exec_xfer(struct ata_channel *chp, struct ata_xfer *xfer)
    891 {
    892 
    893 	ATADEBUG_PRINT(("ata_exec_xfer %p channel %d drive %d\n", xfer,
    894 	    chp->ch_channel, xfer->c_drive), DEBUG_XFERS);
    895 
    896 	/* complete xfer setup */
    897 	xfer->c_chp = chp;
    898 
    899 	/* insert at the end of command list */
    900 	TAILQ_INSERT_TAIL(&chp->ch_queue->queue_xfer, xfer, c_xferchain);
    901 	ATADEBUG_PRINT(("atastart from ata_exec_xfer, flags 0x%x\n",
    902 	    chp->ch_flags), DEBUG_XFERS);
    903 	/*
    904 	 * if polling and can sleep, wait for the xfer to be at head of queue
    905 	 */
    906 	if ((xfer->c_flags & (C_POLL | C_WAIT)) ==  (C_POLL | C_WAIT)) {
    907 		while (chp->ch_queue->active_xfer != NULL ||
    908 		    TAILQ_FIRST(&chp->ch_queue->queue_xfer) != xfer) {
    909 			xfer->c_flags |= C_WAITACT;
    910 			tsleep(xfer, PRIBIO, "ataact", 0);
    911 			xfer->c_flags &= ~C_WAITACT;
    912 			if (xfer->c_flags & C_FREE) {
    913 				ata_free_xfer(chp, xfer);
    914 				return;
    915 			}
    916 		}
    917 	}
    918 	atastart(chp);
    919 }
    920 
    921 /*
    922  * Start I/O on a controller, for the given channel.
    923  * The first xfer may be not for our channel if the channel queues
    924  * are shared.
    925  *
    926  * MUST BE CALLED AT splbio()!
    927  */
    928 void
    929 atastart(struct ata_channel *chp)
    930 {
    931 	struct atac_softc *atac = chp->ch_atac;
    932 	struct ata_xfer *xfer;
    933 
    934 #ifdef ATA_DEBUG
    935 	int spl1, spl2;
    936 
    937 	spl1 = splbio();
    938 	spl2 = splbio();
    939 	if (spl2 != spl1) {
    940 		printf("atastart: not at splbio()\n");
    941 		panic("atastart");
    942 	}
    943 	splx(spl2);
    944 	splx(spl1);
    945 #endif /* ATA_DEBUG */
    946 
    947 	/* is there a xfer ? */
    948 	if ((xfer = TAILQ_FIRST(&chp->ch_queue->queue_xfer)) == NULL)
    949 		return;
    950 
    951 	/* adjust chp, in case we have a shared queue */
    952 	chp = xfer->c_chp;
    953 
    954 	if (chp->ch_queue->active_xfer != NULL) {
    955 		return; /* channel aleady active */
    956 	}
    957 	if (__predict_false(chp->ch_queue->queue_freeze > 0)) {
    958 		if (chp->ch_queue->queue_flags & QF_IDLE_WAIT) {
    959 			chp->ch_queue->queue_flags &= ~QF_IDLE_WAIT;
    960 			wakeup(&chp->ch_queue->queue_flags);
    961 		}
    962 		return; /* queue frozen */
    963 	}
    964 	/*
    965 	 * if someone is waiting for the command to be active, wake it up
    966 	 * and let it process the command
    967 	 */
    968 	if (xfer->c_flags & C_WAITACT) {
    969 		ATADEBUG_PRINT(("atastart: xfer %p channel %d drive %d "
    970 		    "wait active\n", xfer, chp->ch_channel, xfer->c_drive),
    971 		    DEBUG_XFERS);
    972 		wakeup(xfer);
    973 		return;
    974 	}
    975 #ifdef DIAGNOSTIC
    976 	if ((chp->ch_flags & ATACH_IRQ_WAIT) != 0)
    977 		panic("atastart: channel waiting for irq");
    978 #endif
    979 	if (atac->atac_claim_hw)
    980 		if (!(*atac->atac_claim_hw)(chp, 0))
    981 			return;
    982 
    983 	ATADEBUG_PRINT(("atastart: xfer %p channel %d drive %d\n", xfer,
    984 	    chp->ch_channel, xfer->c_drive), DEBUG_XFERS);
    985 	if (chp->ch_drive[xfer->c_drive].drive_flags & ATA_DRIVE_RESET) {
    986 		chp->ch_drive[xfer->c_drive].drive_flags &= ~ATA_DRIVE_RESET;
    987 		chp->ch_drive[xfer->c_drive].state = 0;
    988 	}
    989 	chp->ch_queue->active_xfer = xfer;
    990 	TAILQ_REMOVE(&chp->ch_queue->queue_xfer, xfer, c_xferchain);
    991 
    992 	if (atac->atac_cap & ATAC_CAP_NOIRQ)
    993 		KASSERT(xfer->c_flags & C_POLL);
    994 
    995 	xfer->c_start(chp, xfer);
    996 }
    997 
    998 struct ata_xfer *
    999 ata_get_xfer(int flags)
   1000 {
   1001 	struct ata_xfer *xfer;
   1002 	int s;
   1003 
   1004 	s = splbio();
   1005 	xfer = pool_get(&ata_xfer_pool,
   1006 	    ((flags & ATAXF_NOSLEEP) != 0 ? PR_NOWAIT : PR_WAITOK));
   1007 	splx(s);
   1008 	if (xfer != NULL) {
   1009 		memset(xfer, 0, sizeof(struct ata_xfer));
   1010 	}
   1011 	return xfer;
   1012 }
   1013 
   1014 void
   1015 ata_free_xfer(struct ata_channel *chp, struct ata_xfer *xfer)
   1016 {
   1017 	struct atac_softc *atac = chp->ch_atac;
   1018 	int s;
   1019 
   1020 	if (xfer->c_flags & C_WAITACT) {
   1021 		/* Someone is waiting for this xfer, so we can't free now */
   1022 		xfer->c_flags |= C_FREE;
   1023 		wakeup(xfer);
   1024 		return;
   1025 	}
   1026 
   1027 #if NATA_PIOBM		/* XXX wdc dependent code */
   1028 	if (xfer->c_flags & C_PIOBM) {
   1029 		struct wdc_softc *wdc = CHAN_TO_WDC(chp);
   1030 
   1031 		/* finish the busmastering PIO */
   1032 		(*wdc->piobm_done)(wdc->dma_arg,
   1033 		    chp->ch_channel, xfer->c_drive);
   1034 		chp->ch_flags &= ~(ATACH_DMA_WAIT | ATACH_PIOBM_WAIT | ATACH_IRQ_WAIT);
   1035 	}
   1036 #endif
   1037 
   1038 	if (atac->atac_free_hw)
   1039 		(*atac->atac_free_hw)(chp);
   1040 	s = splbio();
   1041 	pool_put(&ata_xfer_pool, xfer);
   1042 	splx(s);
   1043 }
   1044 
   1045 /*
   1046  * Kill off all pending xfers for a ata_channel.
   1047  *
   1048  * Must be called at splbio().
   1049  */
   1050 void
   1051 ata_kill_pending(struct ata_drive_datas *drvp)
   1052 {
   1053 	struct ata_channel *chp = drvp->chnl_softc;
   1054 	struct ata_xfer *xfer, *next_xfer;
   1055 	int s = splbio();
   1056 
   1057 	for (xfer = TAILQ_FIRST(&chp->ch_queue->queue_xfer);
   1058 	    xfer != NULL; xfer = next_xfer) {
   1059 		next_xfer = TAILQ_NEXT(xfer, c_xferchain);
   1060 		if (xfer->c_chp != chp || xfer->c_drive != drvp->drive)
   1061 			continue;
   1062 		TAILQ_REMOVE(&chp->ch_queue->queue_xfer, xfer, c_xferchain);
   1063 		(*xfer->c_kill_xfer)(chp, xfer, KILL_GONE);
   1064 	}
   1065 
   1066 	while ((xfer = chp->ch_queue->active_xfer) != NULL) {
   1067 		if (xfer->c_chp == chp && xfer->c_drive == drvp->drive) {
   1068 			drvp->drive_flags |= ATA_DRIVE_WAITDRAIN;
   1069 			(void) tsleep(&chp->ch_queue->active_xfer,
   1070 			    PRIBIO, "atdrn", 0);
   1071 		} else {
   1072 			/* no more xfer for us */
   1073 			break;
   1074 		}
   1075 	}
   1076 	splx(s);
   1077 }
   1078 
   1079 /*
   1080  * ata_reset_channel:
   1081  *
   1082  *	Reset and ATA channel.
   1083  *
   1084  *	MUST BE CALLED AT splbio()!
   1085  */
   1086 void
   1087 ata_reset_channel(struct ata_channel *chp, int flags)
   1088 {
   1089 	struct atac_softc *atac = chp->ch_atac;
   1090 	int drive;
   1091 
   1092 #ifdef ATA_DEBUG
   1093 	int spl1, spl2;
   1094 
   1095 	spl1 = splbio();
   1096 	spl2 = splbio();
   1097 	if (spl2 != spl1) {
   1098 		printf("ata_reset_channel: not at splbio()\n");
   1099 		panic("ata_reset_channel");
   1100 	}
   1101 	splx(spl2);
   1102 	splx(spl1);
   1103 #endif /* ATA_DEBUG */
   1104 
   1105 	chp->ch_queue->queue_freeze++;
   1106 
   1107 	/*
   1108 	 * If we can poll or wait it's OK, otherwise wake up the
   1109 	 * kernel thread to do it for us.
   1110 	 */
   1111 	ATADEBUG_PRINT(("ata_reset_channel flags 0x%x ch_flags 0x%x\n",
   1112 	    flags, chp->ch_flags), DEBUG_FUNCS | DEBUG_XFERS);
   1113 	if ((flags & (AT_POLL | AT_WAIT)) == 0) {
   1114 		if (chp->ch_flags & ATACH_TH_RESET) {
   1115 			/* No need to schedule a reset more than one time. */
   1116 			chp->ch_queue->queue_freeze--;
   1117 			return;
   1118 		}
   1119 		chp->ch_flags |= ATACH_TH_RESET;
   1120 		chp->ch_reset_flags = flags & (AT_RST_EMERG | AT_RST_NOCMD);
   1121 		wakeup(&chp->ch_thread);
   1122 		return;
   1123 	}
   1124 
   1125 	(*atac->atac_bustype_ata->ata_reset_channel)(chp, flags);
   1126 
   1127 	KASSERT(chp->ch_ndrives == 0 || chp->ch_drive != NULL);
   1128 	for (drive = 0; drive < chp->ch_ndrives; drive++)
   1129 		chp->ch_drive[drive].state = 0;
   1130 
   1131 	chp->ch_flags &= ~ATACH_TH_RESET;
   1132 	if ((flags & AT_RST_EMERG) == 0)  {
   1133 		chp->ch_queue->queue_freeze--;
   1134 		atastart(chp);
   1135 	} else {
   1136 		/* make sure that we can use polled commands */
   1137 		TAILQ_INIT(&chp->ch_queue->queue_xfer);
   1138 		chp->ch_queue->queue_freeze = 0;
   1139 		chp->ch_queue->active_xfer = NULL;
   1140 	}
   1141 }
   1142 
   1143 int
   1144 ata_addref(struct ata_channel *chp)
   1145 {
   1146 	struct atac_softc *atac = chp->ch_atac;
   1147 	struct scsipi_adapter *adapt = &atac->atac_atapi_adapter._generic;
   1148 	int s, error = 0;
   1149 
   1150 	s = splbio();
   1151 	if (adapt->adapt_refcnt++ == 0 &&
   1152 	    adapt->adapt_enable != NULL) {
   1153 		error = (*adapt->adapt_enable)(atac->atac_dev, 1);
   1154 		if (error)
   1155 			adapt->adapt_refcnt--;
   1156 	}
   1157 	splx(s);
   1158 	return (error);
   1159 }
   1160 
   1161 void
   1162 ata_delref(struct ata_channel *chp)
   1163 {
   1164 	struct atac_softc *atac = chp->ch_atac;
   1165 	struct scsipi_adapter *adapt = &atac->atac_atapi_adapter._generic;
   1166 	int s;
   1167 
   1168 	s = splbio();
   1169 	if (adapt->adapt_refcnt-- == 1 &&
   1170 	    adapt->adapt_enable != NULL)
   1171 		(void) (*adapt->adapt_enable)(atac->atac_dev, 0);
   1172 	splx(s);
   1173 }
   1174 
   1175 void
   1176 ata_print_modes(struct ata_channel *chp)
   1177 {
   1178 	struct atac_softc *atac = chp->ch_atac;
   1179 	int drive;
   1180 	struct ata_drive_datas *drvp;
   1181 
   1182 	KASSERT(chp->ch_ndrives == 0 || chp->ch_drive != NULL);
   1183 	for (drive = 0; drive < chp->ch_ndrives; drive++) {
   1184 		drvp = &chp->ch_drive[drive];
   1185 		if (drvp->drive_type == ATA_DRIVET_NONE ||
   1186 		    drvp->drv_softc == NULL)
   1187 			continue;
   1188 		aprint_verbose("%s(%s:%d:%d): using PIO mode %d",
   1189 			device_xname(drvp->drv_softc),
   1190 			device_xname(atac->atac_dev),
   1191 			chp->ch_channel, drvp->drive, drvp->PIO_mode);
   1192 #if NATA_DMA
   1193 		if (drvp->drive_flags & ATA_DRIVE_DMA)
   1194 			aprint_verbose(", DMA mode %d", drvp->DMA_mode);
   1195 #if NATA_UDMA
   1196 		if (drvp->drive_flags & ATA_DRIVE_UDMA) {
   1197 			aprint_verbose(", Ultra-DMA mode %d", drvp->UDMA_mode);
   1198 			if (drvp->UDMA_mode == 2)
   1199 				aprint_verbose(" (Ultra/33)");
   1200 			else if (drvp->UDMA_mode == 4)
   1201 				aprint_verbose(" (Ultra/66)");
   1202 			else if (drvp->UDMA_mode == 5)
   1203 				aprint_verbose(" (Ultra/100)");
   1204 			else if (drvp->UDMA_mode == 6)
   1205 				aprint_verbose(" (Ultra/133)");
   1206 		}
   1207 #endif	/* NATA_UDMA */
   1208 #endif	/* NATA_DMA */
   1209 #if NATA_DMA || NATA_PIOBM
   1210 		if (0
   1211 #if NATA_DMA
   1212 		    || (drvp->drive_flags & (ATA_DRIVE_DMA | ATA_DRIVE_UDMA))
   1213 #endif
   1214 #if NATA_PIOBM
   1215 		    /* PIOBM capable controllers use DMA for PIO commands */
   1216 		    || (atac->atac_cap & ATAC_CAP_PIOBM)
   1217 #endif
   1218 		    )
   1219 			aprint_verbose(" (using DMA)");
   1220 #endif	/* NATA_DMA || NATA_PIOBM */
   1221 		aprint_verbose("\n");
   1222 	}
   1223 }
   1224 
   1225 #if NATA_DMA
   1226 /*
   1227  * downgrade the transfer mode of a drive after an error. return 1 if
   1228  * downgrade was possible, 0 otherwise.
   1229  *
   1230  * MUST BE CALLED AT splbio()!
   1231  */
   1232 int
   1233 ata_downgrade_mode(struct ata_drive_datas *drvp, int flags)
   1234 {
   1235 	struct ata_channel *chp = drvp->chnl_softc;
   1236 	struct atac_softc *atac = chp->ch_atac;
   1237 	device_t drv_dev = drvp->drv_softc;
   1238 	int cf_flags = device_cfdata(drv_dev)->cf_flags;
   1239 
   1240 	/* if drive or controller don't know its mode, we can't do much */
   1241 	if ((drvp->drive_flags & ATA_DRIVE_MODE) == 0 ||
   1242 	    (atac->atac_set_modes == NULL))
   1243 		return 0;
   1244 	/* current drive mode was set by a config flag, let it this way */
   1245 	if ((cf_flags & ATA_CONFIG_PIO_SET) ||
   1246 	    (cf_flags & ATA_CONFIG_DMA_SET) ||
   1247 	    (cf_flags & ATA_CONFIG_UDMA_SET))
   1248 		return 0;
   1249 
   1250 #if NATA_UDMA
   1251 	/*
   1252 	 * If we were using Ultra-DMA mode, downgrade to the next lower mode.
   1253 	 */
   1254 	if ((drvp->drive_flags & ATA_DRIVE_UDMA) && drvp->UDMA_mode >= 2) {
   1255 		drvp->UDMA_mode--;
   1256 		aprint_error_dev(drv_dev,
   1257 		    "transfer error, downgrading to Ultra-DMA mode %d\n",
   1258 		    drvp->UDMA_mode);
   1259 	}
   1260 #endif
   1261 
   1262 	/*
   1263 	 * If we were using ultra-DMA, don't downgrade to multiword DMA.
   1264 	 */
   1265 	else if (drvp->drive_flags & (ATA_DRIVE_DMA | ATA_DRIVE_UDMA)) {
   1266 		drvp->drive_flags &= ~(ATA_DRIVE_DMA | ATA_DRIVE_UDMA);
   1267 		drvp->PIO_mode = drvp->PIO_cap;
   1268 		aprint_error_dev(drv_dev,
   1269 		    "transfer error, downgrading to PIO mode %d\n",
   1270 		    drvp->PIO_mode);
   1271 	} else /* already using PIO, can't downgrade */
   1272 		return 0;
   1273 
   1274 	(*atac->atac_set_modes)(chp);
   1275 	ata_print_modes(chp);
   1276 	/* reset the channel, which will schedule all drives for setup */
   1277 	ata_reset_channel(chp, flags | AT_RST_NOCMD);
   1278 	return 1;
   1279 }
   1280 #endif	/* NATA_DMA */
   1281 
   1282 /*
   1283  * Probe drive's capabilities, for use by the controller later
   1284  * Assumes drvp points to an existing drive.
   1285  */
   1286 void
   1287 ata_probe_caps(struct ata_drive_datas *drvp)
   1288 {
   1289 	struct ataparams params, params2;
   1290 	struct ata_channel *chp = drvp->chnl_softc;
   1291 	struct atac_softc *atac = chp->ch_atac;
   1292 	device_t drv_dev = drvp->drv_softc;
   1293 	int i, printed, s;
   1294 	const char *sep = "";
   1295 	int cf_flags;
   1296 
   1297 	if (ata_get_params(drvp, AT_WAIT, &params) != CMD_OK) {
   1298 		/* IDENTIFY failed. Can't tell more about the device */
   1299 		return;
   1300 	}
   1301 	if ((atac->atac_cap & (ATAC_CAP_DATA16 | ATAC_CAP_DATA32)) ==
   1302 	    (ATAC_CAP_DATA16 | ATAC_CAP_DATA32)) {
   1303 		/*
   1304 		 * Controller claims 16 and 32 bit transfers.
   1305 		 * Re-do an IDENTIFY with 32-bit transfers,
   1306 		 * and compare results.
   1307 		 */
   1308 		s = splbio();
   1309 		drvp->drive_flags |= ATA_DRIVE_CAP32;
   1310 		splx(s);
   1311 		ata_get_params(drvp, AT_WAIT, &params2);
   1312 		if (memcmp(&params, &params2, sizeof(struct ataparams)) != 0) {
   1313 			/* Not good. fall back to 16bits */
   1314 			s = splbio();
   1315 			drvp->drive_flags &= ~ATA_DRIVE_CAP32;
   1316 			splx(s);
   1317 		} else {
   1318 			aprint_verbose_dev(drv_dev, "32-bit data port\n");
   1319 		}
   1320 	}
   1321 #if 0 /* Some ultra-DMA drives claims to only support ATA-3. sigh */
   1322 	if (params.atap_ata_major > 0x01 &&
   1323 	    params.atap_ata_major != 0xffff) {
   1324 		for (i = 14; i > 0; i--) {
   1325 			if (params.atap_ata_major & (1 << i)) {
   1326 				aprint_verbose_dev(drv_dev,
   1327 				    "ATA version %d\n", i);
   1328 				drvp->ata_vers = i;
   1329 				break;
   1330 			}
   1331 		}
   1332 	}
   1333 #endif
   1334 
   1335 	/* An ATAPI device is at last PIO mode 3 */
   1336 	if (drvp->drive_type == ATA_DRIVET_ATAPI)
   1337 		drvp->PIO_mode = 3;
   1338 
   1339 	/*
   1340 	 * It's not in the specs, but it seems that some drive
   1341 	 * returns 0xffff in atap_extensions when this field is invalid
   1342 	 */
   1343 	if (params.atap_extensions != 0xffff &&
   1344 	    (params.atap_extensions & WDC_EXT_MODES)) {
   1345 		printed = 0;
   1346 		/*
   1347 		 * XXX some drives report something wrong here (they claim to
   1348 		 * support PIO mode 8 !). As mode is coded on 3 bits in
   1349 		 * SET FEATURE, limit it to 7 (so limit i to 4).
   1350 		 * If higher mode than 7 is found, abort.
   1351 		 */
   1352 		for (i = 7; i >= 0; i--) {
   1353 			if ((params.atap_piomode_supp & (1 << i)) == 0)
   1354 				continue;
   1355 			if (i > 4)
   1356 				return;
   1357 			/*
   1358 			 * See if mode is accepted.
   1359 			 * If the controller can't set its PIO mode,
   1360 			 * assume the defaults are good, so don't try
   1361 			 * to set it
   1362 			 */
   1363 			if (atac->atac_set_modes)
   1364 				/*
   1365 				 * It's OK to pool here, it's fast enough
   1366 				 * to not bother waiting for interrupt
   1367 				 */
   1368 				if (ata_set_mode(drvp, 0x08 | (i + 3),
   1369 				   AT_WAIT) != CMD_OK)
   1370 					continue;
   1371 			if (!printed) {
   1372 				aprint_verbose_dev(drv_dev,
   1373 				    "drive supports PIO mode %d", i + 3);
   1374 				sep = ",";
   1375 				printed = 1;
   1376 			}
   1377 			/*
   1378 			 * If controller's driver can't set its PIO mode,
   1379 			 * get the highter one for the drive.
   1380 			 */
   1381 			if (atac->atac_set_modes == NULL ||
   1382 			    atac->atac_pio_cap >= i + 3) {
   1383 				drvp->PIO_mode = i + 3;
   1384 				drvp->PIO_cap = i + 3;
   1385 				break;
   1386 			}
   1387 		}
   1388 		if (!printed) {
   1389 			/*
   1390 			 * We didn't find a valid PIO mode.
   1391 			 * Assume the values returned for DMA are buggy too
   1392 			 */
   1393 			return;
   1394 		}
   1395 		s = splbio();
   1396 		drvp->drive_flags |= ATA_DRIVE_MODE;
   1397 		splx(s);
   1398 		printed = 0;
   1399 		for (i = 7; i >= 0; i--) {
   1400 			if ((params.atap_dmamode_supp & (1 << i)) == 0)
   1401 				continue;
   1402 #if NATA_DMA
   1403 			if ((atac->atac_cap & ATAC_CAP_DMA) &&
   1404 			    atac->atac_set_modes != NULL)
   1405 				if (ata_set_mode(drvp, 0x20 | i, AT_WAIT)
   1406 				    != CMD_OK)
   1407 					continue;
   1408 #endif
   1409 			if (!printed) {
   1410 				aprint_verbose("%s DMA mode %d", sep, i);
   1411 				sep = ",";
   1412 				printed = 1;
   1413 			}
   1414 #if NATA_DMA
   1415 			if (atac->atac_cap & ATAC_CAP_DMA) {
   1416 				if (atac->atac_set_modes != NULL &&
   1417 				    atac->atac_dma_cap < i)
   1418 					continue;
   1419 				drvp->DMA_mode = i;
   1420 				drvp->DMA_cap = i;
   1421 				s = splbio();
   1422 				drvp->drive_flags |= ATA_DRIVE_DMA;
   1423 				splx(s);
   1424 			}
   1425 #endif
   1426 			break;
   1427 		}
   1428 		if (params.atap_extensions & WDC_EXT_UDMA_MODES) {
   1429 			printed = 0;
   1430 			for (i = 7; i >= 0; i--) {
   1431 				if ((params.atap_udmamode_supp & (1 << i))
   1432 				    == 0)
   1433 					continue;
   1434 #if NATA_UDMA
   1435 				if (atac->atac_set_modes != NULL &&
   1436 				    (atac->atac_cap & ATAC_CAP_UDMA))
   1437 					if (ata_set_mode(drvp, 0x40 | i,
   1438 					    AT_WAIT) != CMD_OK)
   1439 						continue;
   1440 #endif
   1441 				if (!printed) {
   1442 					aprint_verbose("%s Ultra-DMA mode %d",
   1443 					    sep, i);
   1444 					if (i == 2)
   1445 						aprint_verbose(" (Ultra/33)");
   1446 					else if (i == 4)
   1447 						aprint_verbose(" (Ultra/66)");
   1448 					else if (i == 5)
   1449 						aprint_verbose(" (Ultra/100)");
   1450 					else if (i == 6)
   1451 						aprint_verbose(" (Ultra/133)");
   1452 					sep = ",";
   1453 					printed = 1;
   1454 				}
   1455 #if NATA_UDMA
   1456 				if (atac->atac_cap & ATAC_CAP_UDMA) {
   1457 					if (atac->atac_set_modes != NULL &&
   1458 					    atac->atac_udma_cap < i)
   1459 						continue;
   1460 					drvp->UDMA_mode = i;
   1461 					drvp->UDMA_cap = i;
   1462 					s = splbio();
   1463 					drvp->drive_flags |= ATA_DRIVE_UDMA;
   1464 					splx(s);
   1465 				}
   1466 #endif
   1467 				break;
   1468 			}
   1469 		}
   1470 		aprint_verbose("\n");
   1471 	}
   1472 
   1473 	s = splbio();
   1474 	drvp->drive_flags &= ~ATA_DRIVE_NOSTREAM;
   1475 	if (drvp->drive_type == ATA_DRIVET_ATAPI) {
   1476 		if (atac->atac_cap & ATAC_CAP_ATAPI_NOSTREAM)
   1477 			drvp->drive_flags |= ATA_DRIVE_NOSTREAM;
   1478 	} else {
   1479 		if (atac->atac_cap & ATAC_CAP_ATA_NOSTREAM)
   1480 			drvp->drive_flags |= ATA_DRIVE_NOSTREAM;
   1481 	}
   1482 	splx(s);
   1483 
   1484 	/* Try to guess ATA version here, if it didn't get reported */
   1485 	if (drvp->ata_vers == 0) {
   1486 #if NATA_UDMA
   1487 		if (drvp->drive_flags & ATA_DRIVE_UDMA)
   1488 			drvp->ata_vers = 4; /* should be at last ATA-4 */
   1489 		else
   1490 #endif
   1491 		if (drvp->PIO_cap > 2)
   1492 			drvp->ata_vers = 2; /* should be at last ATA-2 */
   1493 	}
   1494 	cf_flags = device_cfdata(drv_dev)->cf_flags;
   1495 	if (cf_flags & ATA_CONFIG_PIO_SET) {
   1496 		s = splbio();
   1497 		drvp->PIO_mode =
   1498 		    (cf_flags & ATA_CONFIG_PIO_MODES) >> ATA_CONFIG_PIO_OFF;
   1499 		drvp->drive_flags |= ATA_DRIVE_MODE;
   1500 		splx(s);
   1501 	}
   1502 #if NATA_DMA
   1503 	if ((atac->atac_cap & ATAC_CAP_DMA) == 0) {
   1504 		/* don't care about DMA modes */
   1505 		return;
   1506 	}
   1507 	if (cf_flags & ATA_CONFIG_DMA_SET) {
   1508 		s = splbio();
   1509 		if ((cf_flags & ATA_CONFIG_DMA_MODES) ==
   1510 		    ATA_CONFIG_DMA_DISABLE) {
   1511 			drvp->drive_flags &= ~ATA_DRIVE_DMA;
   1512 		} else {
   1513 			drvp->DMA_mode = (cf_flags & ATA_CONFIG_DMA_MODES) >>
   1514 			    ATA_CONFIG_DMA_OFF;
   1515 			drvp->drive_flags |= ATA_DRIVE_DMA | ATA_DRIVE_MODE;
   1516 		}
   1517 		splx(s);
   1518 	}
   1519 #if NATA_UDMA
   1520 	if ((atac->atac_cap & ATAC_CAP_UDMA) == 0) {
   1521 		/* don't care about UDMA modes */
   1522 		return;
   1523 	}
   1524 	if (cf_flags & ATA_CONFIG_UDMA_SET) {
   1525 		s = splbio();
   1526 		if ((cf_flags & ATA_CONFIG_UDMA_MODES) ==
   1527 		    ATA_CONFIG_UDMA_DISABLE) {
   1528 			drvp->drive_flags &= ~ATA_DRIVE_UDMA;
   1529 		} else {
   1530 			drvp->UDMA_mode = (cf_flags & ATA_CONFIG_UDMA_MODES) >>
   1531 			    ATA_CONFIG_UDMA_OFF;
   1532 			drvp->drive_flags |= ATA_DRIVE_UDMA | ATA_DRIVE_MODE;
   1533 		}
   1534 		splx(s);
   1535 	}
   1536 #endif	/* NATA_UDMA */
   1537 #endif	/* NATA_DMA */
   1538 }
   1539 
   1540 /* management of the /dev/atabus* devices */
   1541 int
   1542 atabusopen(dev_t dev, int flag, int fmt, struct lwp *l)
   1543 {
   1544 	struct atabus_softc *sc;
   1545 	int error;
   1546 
   1547 	sc = device_lookup_private(&atabus_cd, minor(dev));
   1548 	if (sc == NULL)
   1549 		return (ENXIO);
   1550 
   1551 	if (sc->sc_flags & ATABUSCF_OPEN)
   1552 		return (EBUSY);
   1553 
   1554 	if ((error = ata_addref(sc->sc_chan)) != 0)
   1555 		return (error);
   1556 
   1557 	sc->sc_flags |= ATABUSCF_OPEN;
   1558 
   1559 	return (0);
   1560 }
   1561 
   1562 
   1563 int
   1564 atabusclose(dev_t dev, int flag, int fmt, struct lwp *l)
   1565 {
   1566 	struct atabus_softc *sc =
   1567 	    device_lookup_private(&atabus_cd, minor(dev));
   1568 
   1569 	ata_delref(sc->sc_chan);
   1570 
   1571 	sc->sc_flags &= ~ATABUSCF_OPEN;
   1572 
   1573 	return (0);
   1574 }
   1575 
   1576 int
   1577 atabusioctl(dev_t dev, u_long cmd, void *addr, int flag, struct lwp *l)
   1578 {
   1579 	struct atabus_softc *sc =
   1580 	    device_lookup_private(&atabus_cd, minor(dev));
   1581 	struct ata_channel *chp = sc->sc_chan;
   1582 	int min_drive, max_drive, drive;
   1583 	int error;
   1584 	int s;
   1585 
   1586 	/*
   1587 	 * Enforce write permission for ioctls that change the
   1588 	 * state of the bus.  Host adapter specific ioctls must
   1589 	 * be checked by the adapter driver.
   1590 	 */
   1591 	switch (cmd) {
   1592 	case ATABUSIOSCAN:
   1593 	case ATABUSIODETACH:
   1594 	case ATABUSIORESET:
   1595 		if ((flag & FWRITE) == 0)
   1596 			return (EBADF);
   1597 	}
   1598 
   1599 	switch (cmd) {
   1600 	case ATABUSIORESET:
   1601 		s = splbio();
   1602 		ata_reset_channel(sc->sc_chan, AT_WAIT | AT_POLL);
   1603 		splx(s);
   1604 		return 0;
   1605 	case ATABUSIOSCAN:
   1606 	{
   1607 #if 0
   1608 		struct atabusioscan_args *a=
   1609 		    (struct atabusioscan_args *)addr;
   1610 #endif
   1611 		if ((chp->ch_drive[0].drive_type == ATA_DRIVET_OLD) ||
   1612 		    (chp->ch_drive[1].drive_type == ATA_DRIVET_OLD))
   1613 			return (EOPNOTSUPP);
   1614 		return (EOPNOTSUPP);
   1615 	}
   1616 	case ATABUSIODETACH:
   1617 	{
   1618 		struct atabusiodetach_args *a=
   1619 		    (struct atabusiodetach_args *)addr;
   1620 		if ((chp->ch_drive[0].drive_type == ATA_DRIVET_OLD) ||
   1621 		    (chp->ch_drive[1].drive_type == ATA_DRIVET_OLD))
   1622 			return (EOPNOTSUPP);
   1623 		switch (a->at_dev) {
   1624 		case -1:
   1625 			min_drive = 0;
   1626 			max_drive = 1;
   1627 			break;
   1628 		case 0:
   1629 		case 1:
   1630 			min_drive = max_drive = a->at_dev;
   1631 			break;
   1632 		default:
   1633 			return (EINVAL);
   1634 		}
   1635 		for (drive = min_drive; drive <= max_drive; drive++) {
   1636 			if (chp->ch_drive[drive].drv_softc != NULL) {
   1637 				error = config_detach(
   1638 				    chp->ch_drive[drive].drv_softc, 0);
   1639 				if (error)
   1640 					return (error);
   1641 				KASSERT(chp->ch_drive[drive].drv_softc == NULL);
   1642 			}
   1643 		}
   1644 		return 0;
   1645 	}
   1646 	default:
   1647 		return ENOTTY;
   1648 	}
   1649 }
   1650 
   1651 static bool
   1652 atabus_suspend(device_t dv, const pmf_qual_t *qual)
   1653 {
   1654 	struct atabus_softc *sc = device_private(dv);
   1655 	struct ata_channel *chp = sc->sc_chan;
   1656 
   1657 	ata_queue_idle(chp->ch_queue);
   1658 
   1659 	return true;
   1660 }
   1661 
   1662 static bool
   1663 atabus_resume(device_t dv, const pmf_qual_t *qual)
   1664 {
   1665 	struct atabus_softc *sc = device_private(dv);
   1666 	struct ata_channel *chp = sc->sc_chan;
   1667 	int s;
   1668 
   1669 	/*
   1670 	 * XXX joerg: with wdc, the first channel unfreezes the controler.
   1671 	 * Move this the reset and queue idling into wdc.
   1672 	 */
   1673 	s = splbio();
   1674 	if (chp->ch_queue->queue_freeze == 0) {
   1675 		splx(s);
   1676 		return true;
   1677 	}
   1678 	KASSERT(chp->ch_queue->queue_freeze > 0);
   1679 	/* unfreeze the queue and reset drives */
   1680 	chp->ch_queue->queue_freeze--;
   1681 
   1682 	/* reset channel only if there are drives attached */
   1683 	if (chp->ch_ndrives > 0)
   1684 		ata_reset_channel(chp, AT_WAIT);
   1685 	splx(s);
   1686 
   1687 	return true;
   1688 }
   1689 
   1690 static int
   1691 atabus_rescan(device_t self, const char *ifattr, const int *locators)
   1692 {
   1693 	struct atabus_softc *sc = device_private(self);
   1694 	struct ata_channel *chp = sc->sc_chan;
   1695 	struct atabus_initq *initq;
   1696 	int i;
   1697 
   1698 	/*
   1699 	 * we can rescan a port multiplier atabus, even if some devices are
   1700 	 * still attached
   1701 	 */
   1702 	if (chp->ch_satapmp_nports == 0) {
   1703 		if (chp->atapibus != NULL) {
   1704 			return EBUSY;
   1705 		}
   1706 
   1707 		KASSERT(chp->ch_ndrives == 0 || chp->ch_drive != NULL);
   1708 		for (i = 0; i < chp->ch_ndrives; i++) {
   1709 			if (chp->ch_drive[i].drv_softc != NULL) {
   1710 				return EBUSY;
   1711 			}
   1712 		}
   1713 	}
   1714 
   1715 	initq = malloc(sizeof(*initq), M_DEVBUF, M_WAITOK);
   1716 	initq->atabus_sc = sc;
   1717 	TAILQ_INSERT_TAIL(&atabus_initq_head, initq, atabus_initq);
   1718 	config_pending_incr(sc->sc_dev);
   1719 
   1720 	chp->ch_flags |= ATACH_TH_RESCAN;
   1721 	wakeup(&chp->ch_thread);
   1722 
   1723 	return 0;
   1724 }
   1725 
   1726 void
   1727 ata_delay(int ms, const char *msg, int flags)
   1728 {
   1729 	if ((flags & (AT_WAIT | AT_POLL)) == AT_POLL) {
   1730 		/*
   1731 		 * can't use tsleep(), we may be in interrupt context
   1732 		 * or taking a crash dump
   1733 		 */
   1734 		delay(ms * 1000);
   1735 	} else {
   1736 		kpause(msg, false, mstohz(ms), NULL);
   1737 	}
   1738 }
   1739