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wdc.c revision 1.158
      1  1.158        he /*	$NetBSD: wdc.c,v 1.158 2003/11/29 16:17:31 he Exp $ */
      2   1.31    bouyer 
      3   1.31    bouyer /*
      4  1.137    bouyer  * Copyright (c) 1998, 2001, 2003 Manuel Bouyer.  All rights reserved.
      5   1.31    bouyer  *
      6   1.31    bouyer  * Redistribution and use in source and binary forms, with or without
      7   1.31    bouyer  * modification, are permitted provided that the following conditions
      8   1.31    bouyer  * are met:
      9   1.31    bouyer  * 1. Redistributions of source code must retain the above copyright
     10   1.31    bouyer  *    notice, this list of conditions and the following disclaimer.
     11   1.31    bouyer  * 2. Redistributions in binary form must reproduce the above copyright
     12   1.31    bouyer  *    notice, this list of conditions and the following disclaimer in the
     13   1.31    bouyer  *    documentation and/or other materials provided with the distribution.
     14   1.31    bouyer  * 3. All advertising materials mentioning features or use of this software
     15   1.31    bouyer  *    must display the following acknowledgement:
     16   1.31    bouyer  *  This product includes software developed by Manuel Bouyer.
     17   1.31    bouyer  * 4. The name of the author may not be used to endorse or promote products
     18   1.31    bouyer  *    derived from this software without specific prior written permission.
     19   1.31    bouyer  *
     20   1.31    bouyer  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     21   1.31    bouyer  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     22   1.31    bouyer  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     23   1.31    bouyer  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     24   1.31    bouyer  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     25   1.31    bouyer  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     26   1.31    bouyer  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     27   1.31    bouyer  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     28   1.31    bouyer  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     29   1.31    bouyer  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     30   1.31    bouyer  */
     31    1.2    bouyer 
     32   1.27   mycroft /*-
     33  1.125   mycroft  * Copyright (c) 1998, 2003 The NetBSD Foundation, Inc.
     34   1.27   mycroft  * All rights reserved.
     35    1.2    bouyer  *
     36   1.27   mycroft  * This code is derived from software contributed to The NetBSD Foundation
     37   1.27   mycroft  * by Charles M. Hannum, by Onno van der Linden and by Manuel Bouyer.
     38   1.12       cgd  *
     39    1.2    bouyer  * Redistribution and use in source and binary forms, with or without
     40    1.2    bouyer  * modification, are permitted provided that the following conditions
     41    1.2    bouyer  * are met:
     42    1.2    bouyer  * 1. Redistributions of source code must retain the above copyright
     43    1.2    bouyer  *    notice, this list of conditions and the following disclaimer.
     44    1.2    bouyer  * 2. Redistributions in binary form must reproduce the above copyright
     45    1.2    bouyer  *    notice, this list of conditions and the following disclaimer in the
     46    1.2    bouyer  *    documentation and/or other materials provided with the distribution.
     47    1.2    bouyer  * 3. All advertising materials mentioning features or use of this software
     48    1.2    bouyer  *    must display the following acknowledgement:
     49   1.27   mycroft  *        This product includes software developed by the NetBSD
     50   1.27   mycroft  *        Foundation, Inc. and its contributors.
     51   1.27   mycroft  * 4. Neither the name of The NetBSD Foundation nor the names of its
     52   1.27   mycroft  *    contributors may be used to endorse or promote products derived
     53   1.27   mycroft  *    from this software without specific prior written permission.
     54    1.2    bouyer  *
     55   1.27   mycroft  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     56   1.27   mycroft  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     57   1.27   mycroft  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     58   1.27   mycroft  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     59   1.27   mycroft  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     60   1.27   mycroft  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     61   1.27   mycroft  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     62   1.27   mycroft  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     63   1.27   mycroft  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     64   1.27   mycroft  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     65   1.27   mycroft  * POSSIBILITY OF SUCH DAMAGE.
     66    1.2    bouyer  */
     67    1.2    bouyer 
     68   1.12       cgd /*
     69   1.12       cgd  * CODE UNTESTED IN THE CURRENT REVISION:
     70   1.12       cgd  */
     71  1.100     lukem 
     72  1.100     lukem #include <sys/cdefs.h>
     73  1.158        he __KERNEL_RCSID(0, "$NetBSD: wdc.c,v 1.158 2003/11/29 16:17:31 he Exp $");
     74   1.12       cgd 
     75   1.59   hubertf #ifndef WDCDEBUG
     76   1.31    bouyer #define WDCDEBUG
     77   1.59   hubertf #endif /* WDCDEBUG */
     78   1.31    bouyer 
     79    1.2    bouyer #include <sys/param.h>
     80    1.2    bouyer #include <sys/systm.h>
     81    1.2    bouyer #include <sys/kernel.h>
     82  1.137    bouyer #include <sys/kthread.h>
     83    1.2    bouyer #include <sys/conf.h>
     84    1.2    bouyer #include <sys/buf.h>
     85   1.31    bouyer #include <sys/device.h>
     86    1.2    bouyer #include <sys/malloc.h>
     87   1.71    bouyer #include <sys/pool.h>
     88    1.2    bouyer #include <sys/syslog.h>
     89    1.2    bouyer #include <sys/proc.h>
     90    1.2    bouyer 
     91    1.2    bouyer #include <machine/intr.h>
     92    1.2    bouyer #include <machine/bus.h>
     93    1.2    bouyer 
     94   1.17  sakamoto #ifndef __BUS_SPACE_HAS_STREAM_METHODS
     95   1.31    bouyer #define bus_space_write_multi_stream_2	bus_space_write_multi_2
     96   1.31    bouyer #define bus_space_write_multi_stream_4	bus_space_write_multi_4
     97   1.31    bouyer #define bus_space_read_multi_stream_2	bus_space_read_multi_2
     98   1.31    bouyer #define bus_space_read_multi_stream_4	bus_space_read_multi_4
     99   1.17  sakamoto #endif /* __BUS_SPACE_HAS_STREAM_METHODS */
    100   1.16  sakamoto 
    101  1.103    bouyer #include <dev/ata/atavar.h>
    102  1.102    bouyer #include <dev/ata/wdvar.h>
    103   1.31    bouyer #include <dev/ata/atareg.h>
    104   1.12       cgd #include <dev/ic/wdcreg.h>
    105   1.12       cgd #include <dev/ic/wdcvar.h>
    106   1.31    bouyer 
    107  1.137    bouyer #include "locators.h"
    108  1.137    bouyer 
    109  1.122   thorpej #include "ataraid.h"
    110    1.2    bouyer #include "atapibus.h"
    111  1.106    bouyer #include "wd.h"
    112    1.2    bouyer 
    113  1.122   thorpej #if NATARAID > 0
    114  1.122   thorpej #include <dev/ata/ata_raidvar.h>
    115  1.122   thorpej #endif
    116  1.122   thorpej 
    117   1.31    bouyer #define WDCDELAY  100 /* 100 microseconds */
    118   1.31    bouyer #define WDCNDELAY_RST (WDC_RESET_WAIT * 1000 / WDCDELAY)
    119    1.2    bouyer #if 0
    120   1.31    bouyer /* If you enable this, it will report any delays more than WDCDELAY * N long. */
    121    1.2    bouyer #define WDCNDELAY_DEBUG	50
    122    1.2    bouyer #endif
    123    1.2    bouyer 
    124  1.137    bouyer /* When polling wait that much and then tsleep for 1/hz seconds */
    125  1.137    bouyer #define WDCDELAY_POLL 1 /* ms */
    126  1.137    bouyer 
    127  1.137    bouyer /* timeout for the control commands */
    128  1.137    bouyer #define WDC_CTRL_DELAY 10000 /* 10s, for the recall command */
    129  1.137    bouyer 
    130   1.71    bouyer struct pool wdc_xfer_pool;
    131    1.2    bouyer 
    132  1.106    bouyer #if NWD > 0
    133  1.103    bouyer extern const struct ata_bustype wdc_ata_bustype; /* in ata_wdc.c */
    134  1.106    bouyer #else
    135  1.106    bouyer /* A fake one, the autoconfig will print "wd at foo ... not configured */
    136  1.106    bouyer const struct ata_bustype wdc_ata_bustype = {
    137  1.106    bouyer 	SCSIPI_BUSTYPE_ATA,
    138  1.106    bouyer 	NULL,
    139  1.106    bouyer 	NULL,
    140  1.106    bouyer 	NULL,
    141  1.106    bouyer 	NULL,
    142  1.106    bouyer 	NULL,
    143  1.106    bouyer 	NULL,
    144  1.106    bouyer 	NULL
    145  1.106    bouyer };
    146  1.106    bouyer #endif
    147  1.102    bouyer 
    148  1.137    bouyer int	atabusmatch __P((struct device *, struct cfdata *, void *));
    149  1.137    bouyer void	atabusattach __P((struct device *, struct device *, void *));
    150  1.137    bouyer void	atabus_create_thread __P((void *));
    151  1.137    bouyer void	atabus_thread __P((void *));
    152  1.137    bouyer void	atabusconfig __P((struct atabus_softc *));
    153  1.137    bouyer int	atabusactivate __P((struct device *, enum devact));
    154  1.137    bouyer int	atabusdetach __P((struct device *, int flags));
    155  1.137    bouyer int	atabusprint __P((void *, const char *));
    156  1.137    bouyer 
    157  1.137    bouyer CFATTACH_DECL(atabus, sizeof(struct atabus_softc),
    158  1.137    bouyer     atabusmatch, atabusattach, atabusdetach, atabusactivate);
    159  1.137    bouyer 
    160  1.137    bouyer struct atabus_initq {
    161  1.137    bouyer         struct atabus_softc *atabus_sc;
    162  1.137    bouyer         TAILQ_ENTRY(atabus_initq) atabus_initq;
    163  1.137    bouyer };
    164  1.137    bouyer static TAILQ_HEAD(, atabus_initq) atabus_initq_head =
    165  1.137    bouyer     TAILQ_HEAD_INITIALIZER(atabus_initq_head);
    166  1.137    bouyer static struct simplelock atabus_interlock = SIMPLELOCK_INITIALIZER;
    167  1.137    bouyer 
    168  1.137    bouyer int __wdcprobe __P((struct channel_softc*, int));
    169   1.31    bouyer static void  __wdcerror	  __P((struct channel_softc*, char *));
    170  1.137    bouyer static int   __wdcwait_reset  __P((struct channel_softc *, int, int));
    171   1.31    bouyer void  __wdccommand_done __P((struct channel_softc *, struct wdc_xfer *));
    172   1.31    bouyer void  __wdccommand_start __P((struct channel_softc *, struct wdc_xfer *));
    173   1.66    bouyer int   __wdccommand_intr __P((struct channel_softc *, struct wdc_xfer *, int));
    174  1.137    bouyer int   __wdcwait __P((struct channel_softc *, int, int, int));
    175   1.31    bouyer int   wdprint __P((void *, const char *));
    176  1.134   mycroft void wdc_finish_attach __P((struct device *));
    177  1.125   mycroft void wdc_channel_attach __P((struct channel_softc *));
    178   1.31    bouyer 
    179   1.31    bouyer #define DEBUG_INTR   0x01
    180   1.31    bouyer #define DEBUG_XFERS  0x02
    181   1.31    bouyer #define DEBUG_STATUS 0x04
    182   1.31    bouyer #define DEBUG_FUNCS  0x08
    183   1.31    bouyer #define DEBUG_PROBE  0x10
    184   1.74     enami #define DEBUG_DETACH 0x20
    185   1.87    bouyer #define DEBUG_DELAY  0x40
    186   1.31    bouyer #ifdef WDCDEBUG
    187   1.32    bouyer int wdcdebug_mask = 0;
    188   1.31    bouyer int wdc_nxfer = 0;
    189   1.31    bouyer #define WDCDEBUG_PRINT(args, level)  if (wdcdebug_mask & (level)) printf args
    190    1.2    bouyer #else
    191   1.31    bouyer #define WDCDEBUG_PRINT(args, level)
    192    1.2    bouyer #endif
    193    1.2    bouyer 
    194   1.31    bouyer int
    195  1.137    bouyer atabusprint(aux, pnp)
    196  1.137    bouyer 	void *aux;
    197  1.137    bouyer 	const char *pnp;
    198  1.137    bouyer {
    199  1.137    bouyer 	struct channel_softc *chan = aux;
    200  1.137    bouyer 	if (pnp)
    201  1.137    bouyer 		aprint_normal("atabus at %s", pnp);
    202  1.137    bouyer 	aprint_normal(" channel %d", chan->channel);
    203  1.137    bouyer 	return (UNCONF);
    204  1.137    bouyer }
    205  1.137    bouyer 
    206  1.137    bouyer int
    207  1.137    bouyer atabusmatch(parent, cf, aux)
    208  1.137    bouyer 	struct device *parent;
    209  1.137    bouyer 	struct cfdata *cf;
    210  1.137    bouyer 	void *aux;
    211  1.137    bouyer {
    212  1.137    bouyer 	struct channel_softc *chp = aux;
    213  1.137    bouyer 
    214  1.137    bouyer 	if (chp == NULL)
    215  1.137    bouyer 		return (0);
    216  1.137    bouyer 
    217  1.138    bouyer 	if (cf->cf_loc[ATACF_CHANNEL] != chp->channel &&
    218  1.138    bouyer 	    cf->cf_loc[ATACF_CHANNEL] != ATACF_CHANNEL_DEFAULT)
    219  1.137    bouyer 		return (0);
    220  1.137    bouyer 
    221  1.137    bouyer 	return (1);
    222  1.137    bouyer }
    223  1.137    bouyer 
    224  1.137    bouyer void
    225  1.137    bouyer atabusattach(parent, self, aux)
    226  1.137    bouyer 	struct device *parent, *self;
    227  1.137    bouyer 	void *aux;
    228  1.137    bouyer {
    229  1.137    bouyer 	struct atabus_softc *atabus_sc = (struct atabus_softc *)self;
    230  1.137    bouyer 	struct channel_softc *chp = aux;
    231  1.137    bouyer 	struct atabus_initq *atabus_initq;
    232  1.137    bouyer 
    233  1.137    bouyer 	atabus_sc->sc_chan = chp;
    234  1.137    bouyer 
    235  1.151    briggs 	aprint_normal("\n");
    236  1.151    briggs 	aprint_naive("\n");
    237  1.137    bouyer 	atabus_initq  = malloc(sizeof(struct atabus_initq), M_DEVBUF, M_NOWAIT);
    238  1.137    bouyer 	atabus_initq->atabus_sc = atabus_sc;
    239  1.137    bouyer 	TAILQ_INSERT_TAIL(&atabus_initq_head, atabus_initq, atabus_initq);
    240  1.137    bouyer 	config_pending_incr();
    241  1.137    bouyer 	kthread_create(atabus_create_thread, atabus_sc);
    242  1.137    bouyer 
    243  1.137    bouyer }
    244  1.137    bouyer 
    245  1.137    bouyer void
    246  1.137    bouyer atabus_create_thread(arg)
    247  1.137    bouyer 	void *arg;
    248  1.137    bouyer {
    249  1.137    bouyer 	struct atabus_softc *atabus_sc = arg;
    250  1.137    bouyer 	struct channel_softc *chp = atabus_sc->sc_chan;
    251  1.137    bouyer 	int error;
    252  1.137    bouyer 
    253  1.137    bouyer 	if ((error = kthread_create1(atabus_thread, atabus_sc, &chp->thread,
    254  1.137    bouyer 	    "%s", atabus_sc->sc_dev.dv_xname)) != 0)
    255  1.137    bouyer 		printf("unable to create kernel thread for %s: error %d\n",
    256  1.137    bouyer 		    atabus_sc->sc_dev.dv_xname, error);
    257  1.137    bouyer }
    258  1.137    bouyer 
    259  1.137    bouyer void
    260  1.137    bouyer atabus_thread(arg)
    261  1.137    bouyer 	void *arg;
    262  1.137    bouyer {
    263  1.137    bouyer 	struct atabus_softc *atabus_sc = arg;
    264  1.137    bouyer 	struct channel_softc *chp = atabus_sc->sc_chan;
    265  1.137    bouyer 	struct wdc_xfer *xfer;
    266  1.137    bouyer 	int s;
    267  1.137    bouyer 
    268  1.137    bouyer 	s = splbio();
    269  1.137    bouyer 	chp->ch_flags |= WDCF_TH_RUN;
    270  1.137    bouyer 	splx(s);
    271  1.137    bouyer 	atabusconfig(atabus_sc);
    272  1.147    bouyer 	for(;;) {
    273  1.137    bouyer 		s = splbio();
    274  1.147    bouyer 		if ((chp->ch_flags & (WDCF_TH_RESET | WDCF_SHUTDOWN)) == 0 &&
    275  1.147    bouyer 		    ((chp->ch_flags & WDCF_ACTIVE) == 0 ||
    276  1.148    bouyer 		     chp->ch_queue->queue_freeze == 0)) {
    277  1.147    bouyer 			chp->ch_flags &= ~WDCF_TH_RUN;
    278  1.147    bouyer 			tsleep(&chp->thread, PRIBIO, "atath", 0);
    279  1.147    bouyer 			chp->ch_flags |= WDCF_TH_RUN;
    280  1.147    bouyer 		}
    281  1.137    bouyer 		splx(s);
    282  1.137    bouyer 		if (chp->ch_flags & WDCF_SHUTDOWN)
    283  1.137    bouyer 			break;
    284  1.137    bouyer 		s = splbio();
    285  1.137    bouyer 		if (chp->ch_flags & WDCF_TH_RESET) {
    286  1.137    bouyer 			int drive;
    287  1.137    bouyer 			(void) wdcreset(chp, RESET_SLEEP);
    288  1.137    bouyer 			for (drive = 0; drive < 2; drive++) {
    289  1.137    bouyer 				chp->ch_drive[drive].state = 0;
    290  1.137    bouyer 			}
    291  1.137    bouyer 			chp->ch_flags &= ~WDCF_TH_RESET;
    292  1.148    bouyer 			chp->ch_queue->queue_freeze--;
    293  1.137    bouyer 			wdcstart(chp);
    294  1.137    bouyer 		} else if ((chp->ch_flags & WDCF_ACTIVE) != 0 &&
    295  1.148    bouyer 		    chp->ch_queue->queue_freeze == 1) {
    296  1.137    bouyer 			/*
    297  1.148    bouyer 			 * caller has bumped queue_freeze, decrease it
    298  1.137    bouyer 			 */
    299  1.148    bouyer 			chp->ch_queue->queue_freeze--;
    300  1.137    bouyer 			xfer = chp->ch_queue->sc_xfer.tqh_first;
    301  1.137    bouyer #ifdef DIAGNOSTIC
    302  1.137    bouyer 			if (xfer == NULL)
    303  1.137    bouyer 				panic("channel active with no xfer ?");
    304  1.137    bouyer #endif
    305  1.137    bouyer 			xfer->c_start(chp, xfer);
    306  1.148    bouyer 		} else if (chp->ch_queue->queue_freeze > 1) {
    307  1.148    bouyer 			panic("queue_freeze");
    308  1.137    bouyer 		}
    309  1.137    bouyer 		splx(s);
    310  1.137    bouyer 	}
    311  1.137    bouyer 	chp->thread = NULL;
    312  1.137    bouyer 	wakeup(&chp->ch_flags);
    313  1.137    bouyer 	kthread_exit(0);
    314  1.137    bouyer }
    315  1.137    bouyer 
    316  1.137    bouyer void
    317  1.137    bouyer atabusconfig(atabus_sc)
    318  1.137    bouyer 	struct atabus_softc *atabus_sc;
    319  1.137    bouyer {
    320  1.137    bouyer 	struct channel_softc *chp = atabus_sc->sc_chan;
    321  1.150    simonb 	int i, error, need_delref = 0;
    322  1.137    bouyer 	struct ataparams params;
    323  1.137    bouyer 	struct atabus_initq *atabus_initq = NULL;
    324  1.145  christos 	u_int8_t st0 = 0, st1 = 0;
    325  1.137    bouyer 
    326  1.137    bouyer 	if ((error = wdc_addref(chp)) != 0) {
    327  1.137    bouyer 		aprint_error("%s: unable to enable controller\n",
    328  1.137    bouyer 		    chp->wdc->sc_dev.dv_xname);
    329  1.144    briggs 		goto out;
    330  1.137    bouyer 	}
    331  1.144    briggs 	need_delref = 1;
    332  1.137    bouyer 
    333  1.137    bouyer 	if (__wdcprobe(chp, 0) == 0)
    334  1.137    bouyer 		/* If no drives, abort attach here. */
    335  1.137    bouyer 		goto out;
    336  1.137    bouyer 
    337  1.137    bouyer 	/* for ATA/OLD drives, wait for DRDY, 3s timeout */
    338  1.137    bouyer 	for (i = 0; i < mstohz(3000); i++) {
    339  1.137    bouyer 		if (chp->wdc && (chp->wdc->cap & WDC_CAPABILITY_SELECT))
    340  1.137    bouyer 			chp->wdc->select(chp,0);
    341  1.157      fvdl 		bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
    342  1.137    bouyer 		    WDSD_IBM);
    343  1.137    bouyer 		delay(10);	/* 400ns delay */
    344  1.157      fvdl 		st0 = bus_space_read_1(chp->cmd_iot,
    345  1.157      fvdl 		    chp->cmd_iohs[wd_status], 0);
    346  1.137    bouyer 
    347  1.137    bouyer 		if (chp->wdc && (chp->wdc->cap & WDC_CAPABILITY_SELECT))
    348  1.137    bouyer 			chp->wdc->select(chp,1);
    349  1.157      fvdl 		bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
    350  1.137    bouyer 		    WDSD_IBM | 0x10);
    351  1.137    bouyer 		delay(10);	/* 400ns delay */
    352  1.157      fvdl 		st1 = bus_space_read_1(chp->cmd_iot,
    353  1.157      fvdl 		    chp->cmd_iohs[wd_status], 0);
    354  1.137    bouyer 
    355  1.137    bouyer 		if (((chp->ch_drive[0].drive_flags & (DRIVE_ATA|DRIVE_OLD))
    356  1.137    bouyer 			== 0 ||
    357  1.137    bouyer 		    (st0 & WDCS_DRDY)) &&
    358  1.137    bouyer 		    ((chp->ch_drive[1].drive_flags & (DRIVE_ATA|DRIVE_OLD))
    359  1.137    bouyer 			== 0 ||
    360  1.137    bouyer 		    (st1 & WDCS_DRDY)))
    361  1.137    bouyer 			break;
    362  1.137    bouyer 		tsleep(&atabus_sc, PRIBIO, "atadrdy", 1);
    363  1.137    bouyer 	}
    364  1.137    bouyer 	if ((st0 & WDCS_DRDY) == 0)
    365  1.137    bouyer 		chp->ch_drive[0].drive_flags &= ~(DRIVE_ATA|DRIVE_OLD);
    366  1.137    bouyer 	if ((st1 & WDCS_DRDY) == 0)
    367  1.137    bouyer 		chp->ch_drive[1].drive_flags &= ~(DRIVE_ATA|DRIVE_OLD);
    368  1.137    bouyer 
    369  1.137    bouyer 	WDCDEBUG_PRINT(("%s:%d: wait DRDY st0 0x%x st1 0x%x\n",
    370  1.137    bouyer 	    chp->wdc->sc_dev.dv_xname,
    371  1.137    bouyer 	    chp->channel, st0, st1), DEBUG_PROBE);
    372  1.137    bouyer 
    373  1.137    bouyer 	/* Wait a bit, some devices are weird just after a reset. */
    374  1.137    bouyer 	delay(5000);
    375  1.137    bouyer 
    376  1.137    bouyer 	for (i = 0; i < 2; i++) {
    377  1.137    bouyer 		chp->ch_drive[i].chnl_softc = chp;
    378  1.137    bouyer 		chp->ch_drive[i].drive = i;
    379  1.137    bouyer 		/*
    380  1.137    bouyer 		 * Init error counter so that an error withing the first xfers
    381  1.137    bouyer 		 * will trigger a downgrade
    382  1.137    bouyer 		 */
    383  1.137    bouyer 		chp->ch_drive[i].n_dmaerrs = NERRS_MAX-1;
    384  1.137    bouyer 
    385  1.137    bouyer 		/* If controller can't do 16bit flag the drives as 32bit */
    386  1.137    bouyer 		if ((chp->wdc->cap &
    387  1.137    bouyer 		    (WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32)) ==
    388  1.137    bouyer 		    WDC_CAPABILITY_DATA32)
    389  1.137    bouyer 			chp->ch_drive[i].drive_flags |= DRIVE_CAP32;
    390  1.137    bouyer 		if ((chp->ch_drive[i].drive_flags & DRIVE) == 0)
    391  1.137    bouyer 			continue;
    392  1.137    bouyer 
    393  1.144    briggs 		/* Shortcut in case we've been shutdown */
    394  1.144    briggs 		if (chp->ch_flags & WDCF_SHUTDOWN)
    395  1.144    briggs 			goto out;
    396  1.144    briggs 
    397  1.137    bouyer 		/* issue an identify, to try to detect ghosts */
    398  1.137    bouyer 		error = ata_get_params(&chp->ch_drive[i],
    399  1.137    bouyer 		    AT_WAIT | AT_POLL, &params);
    400  1.137    bouyer 		if (error != CMD_OK) {
    401  1.137    bouyer 			tsleep(&atabus_sc, PRIBIO, "atacnf", mstohz(1000));
    402  1.144    briggs 
    403  1.144    briggs 			/* Shortcut in case we've been shutdown */
    404  1.144    briggs 			if (chp->ch_flags & WDCF_SHUTDOWN)
    405  1.144    briggs 				goto out;
    406  1.144    briggs 
    407  1.137    bouyer 			error = ata_get_params(&chp->ch_drive[i],
    408  1.137    bouyer 			    AT_WAIT | AT_POLL, &params);
    409  1.137    bouyer 		}
    410  1.137    bouyer 		if (error == CMD_OK) {
    411  1.152       wiz 			/* If IDENTIFY succeeded, this is not an OLD ctrl */
    412  1.137    bouyer 			chp->ch_drive[0].drive_flags &= ~DRIVE_OLD;
    413  1.137    bouyer 			chp->ch_drive[1].drive_flags &= ~DRIVE_OLD;
    414  1.137    bouyer 		} else {
    415  1.155    bouyer 			chp->ch_drive[i].drive_flags &=
    416  1.137    bouyer 			    ~(DRIVE_ATA | DRIVE_ATAPI);
    417  1.137    bouyer 			WDCDEBUG_PRINT(("%s:%d:%d: IDENTIFY failed (%d)\n",
    418  1.137    bouyer 			    chp->wdc->sc_dev.dv_xname,
    419  1.137    bouyer 			    chp->channel, i, error), DEBUG_PROBE);
    420  1.137    bouyer 			if ((chp->ch_drive[i].drive_flags & DRIVE_OLD) == 0)
    421  1.137    bouyer 				continue;
    422  1.137    bouyer 			/*
    423  1.137    bouyer 			 * Pre-ATA drive ?
    424  1.137    bouyer 			 * Test registers writability (Error register not
    425  1.137    bouyer 			 * writable, but cyllo is), then try an ATA command.
    426  1.137    bouyer 			 */
    427  1.137    bouyer 			if (chp->wdc->cap & WDC_CAPABILITY_SELECT)
    428  1.137    bouyer 				chp->wdc->select(chp,i);
    429  1.157      fvdl 			bus_space_write_1(chp->cmd_iot,
    430  1.157      fvdl 			    chp->cmd_iohs[wd_sdh], 0, WDSD_IBM | (i << 4));
    431  1.137    bouyer 			delay(10);	/* 400ns delay */
    432  1.157      fvdl 			bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_error],
    433  1.157      fvdl 			    0, 0x58);
    434  1.157      fvdl 			bus_space_write_1(chp->cmd_iot,
    435  1.157      fvdl 			    chp->cmd_iohs[wd_cyl_lo], 0, 0xa5);
    436  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    437  1.157      fvdl 				chp->cmd_iohs[wd_error], 0) == 0x58 ||
    438  1.157      fvdl 			    bus_space_read_1(chp->cmd_iot,
    439  1.157      fvdl 				chp->cmd_iohs[wd_cyl_lo], 0) != 0xa5) {
    440  1.137    bouyer 				WDCDEBUG_PRINT(("%s:%d:%d: register "
    441  1.137    bouyer 				    "writability failed\n",
    442  1.137    bouyer 				    chp->wdc->sc_dev.dv_xname,
    443  1.137    bouyer 				    chp->channel, i), DEBUG_PROBE);
    444  1.137    bouyer 				    chp->ch_drive[i].drive_flags &= ~DRIVE_OLD;
    445  1.155    bouyer 				    continue;
    446  1.137    bouyer 			}
    447  1.137    bouyer 			if (wait_for_ready(chp, 10000, 0) == WDCWAIT_TOUT) {
    448  1.137    bouyer 				WDCDEBUG_PRINT(("%s:%d:%d: not ready\n",
    449  1.137    bouyer 				    chp->wdc->sc_dev.dv_xname,
    450  1.137    bouyer 				    chp->channel, i), DEBUG_PROBE);
    451  1.137    bouyer 				chp->ch_drive[i].drive_flags &= ~DRIVE_OLD;
    452  1.137    bouyer 				continue;
    453  1.137    bouyer 			}
    454  1.157      fvdl 			bus_space_write_1(chp->cmd_iot,
    455  1.157      fvdl 			    chp->cmd_iohs[wd_command], 0, WDCC_RECAL);
    456  1.137    bouyer 			delay(10);	/* 400ns delay */
    457  1.137    bouyer 			if (wait_for_ready(chp, 10000, 0) == WDCWAIT_TOUT) {
    458  1.137    bouyer 				WDCDEBUG_PRINT(("%s:%d:%d: WDCC_RECAL failed\n",
    459  1.137    bouyer 				    chp->wdc->sc_dev.dv_xname,
    460  1.137    bouyer 				    chp->channel, i), DEBUG_PROBE);
    461  1.137    bouyer 				chp->ch_drive[i].drive_flags &= ~DRIVE_OLD;
    462  1.155    bouyer 			} else {
    463  1.155    bouyer 				chp->ch_drive[0].drive_flags &=
    464  1.155    bouyer 				    ~(DRIVE_ATA | DRIVE_ATAPI);
    465  1.155    bouyer 				chp->ch_drive[1].drive_flags &=
    466  1.155    bouyer 				    ~(DRIVE_ATA | DRIVE_ATAPI);
    467  1.137    bouyer 			}
    468  1.137    bouyer 		}
    469  1.137    bouyer 	}
    470  1.137    bouyer 
    471  1.137    bouyer 	WDCDEBUG_PRINT(("atabusattach: ch_drive_flags 0x%x 0x%x\n",
    472  1.137    bouyer 	    chp->ch_drive[0].drive_flags, chp->ch_drive[1].drive_flags),
    473  1.137    bouyer 	    DEBUG_PROBE);
    474  1.137    bouyer 
    475  1.137    bouyer 	/* If no drives, abort here */
    476  1.137    bouyer 	if ((chp->ch_drive[0].drive_flags & DRIVE) == 0 &&
    477  1.137    bouyer 	    (chp->ch_drive[1].drive_flags & DRIVE) == 0)
    478  1.137    bouyer 		goto out;
    479  1.137    bouyer 
    480  1.137    bouyer 	/* Make sure the devices probe in atabus order to avoid jitter. */
    481  1.137    bouyer 	simple_lock(&atabus_interlock);
    482  1.137    bouyer 	while(1) {
    483  1.137    bouyer 		atabus_initq = TAILQ_FIRST(&atabus_initq_head);
    484  1.137    bouyer 		if (atabus_initq->atabus_sc == atabus_sc)
    485  1.137    bouyer 			break;
    486  1.137    bouyer 		ltsleep(&atabus_initq_head, PRIBIO, "ata_initq", 0,
    487  1.137    bouyer 		    &atabus_interlock);
    488  1.137    bouyer 	}
    489  1.137    bouyer 	simple_unlock(&atabus_interlock);
    490  1.137    bouyer 
    491  1.137    bouyer 	/*
    492  1.137    bouyer 	 * Attach an ATAPI bus, if needed.
    493  1.137    bouyer 	 */
    494  1.137    bouyer 	if ((chp->ch_drive[0].drive_flags & DRIVE_ATAPI) ||
    495  1.137    bouyer 	    (chp->ch_drive[1].drive_flags & DRIVE_ATAPI)) {
    496  1.137    bouyer #if NATAPIBUS > 0
    497  1.137    bouyer 		wdc_atapibus_attach(atabus_sc);
    498  1.137    bouyer #else
    499  1.137    bouyer 		/*
    500  1.137    bouyer 		 * Fake the autoconfig "not configured" message
    501  1.137    bouyer 		 */
    502  1.137    bouyer 		aprint_normal("atapibus at %s not configured\n",
    503  1.137    bouyer 		    chp->wdc->sc_dev.dv_xname);
    504  1.137    bouyer 		chp->atapibus = NULL;
    505  1.141    bouyer 		chp->ch_drive[0].drive_flags &= ~DRIVE_ATAPI;
    506  1.141    bouyer 		chp->ch_drive[1].drive_flags &= ~DRIVE_ATAPI;
    507  1.137    bouyer #endif
    508  1.137    bouyer 	}
    509  1.137    bouyer 
    510  1.137    bouyer 	for (i = 0; i < 2; i++) {
    511  1.137    bouyer 		struct ata_device adev;
    512  1.137    bouyer 		if ((chp->ch_drive[i].drive_flags &
    513  1.137    bouyer 		    (DRIVE_ATA | DRIVE_OLD)) == 0) {
    514  1.137    bouyer 			continue;
    515  1.137    bouyer 		}
    516  1.137    bouyer 		memset(&adev, 0, sizeof(struct ata_device));
    517  1.137    bouyer 		adev.adev_bustype = &wdc_ata_bustype;
    518  1.137    bouyer 		adev.adev_channel = chp->channel;
    519  1.137    bouyer 		adev.adev_openings = 1;
    520  1.137    bouyer 		adev.adev_drv_data = &chp->ch_drive[i];
    521  1.137    bouyer 		chp->ata_drives[i] = config_found(&atabus_sc->sc_dev,
    522  1.137    bouyer 		    &adev, wdprint);
    523  1.141    bouyer 		if (chp->ata_drives[i] != NULL)
    524  1.137    bouyer 			wdc_probe_caps(&chp->ch_drive[i]);
    525  1.141    bouyer 		else
    526  1.141    bouyer 			chp->ch_drive[i].drive_flags &=
    527  1.141    bouyer 			    ~(DRIVE_ATA | DRIVE_OLD);
    528  1.137    bouyer 	}
    529  1.137    bouyer 
    530  1.137    bouyer 	/* now that we know the drives, the controller can set its modes */
    531  1.137    bouyer 	if (chp->wdc->cap & WDC_CAPABILITY_MODE) {
    532  1.137    bouyer 		chp->wdc->set_modes(chp);
    533  1.137    bouyer 		wdc_print_modes(chp);
    534  1.137    bouyer 	}
    535  1.137    bouyer #if NATARAID > 0
    536  1.137    bouyer 	if (chp->wdc->cap & WDC_CAPABILITY_RAID)
    537  1.137    bouyer 		for (i = 0; i < 2; i++)
    538  1.137    bouyer 			if (chp->ata_drives[i] != NULL)
    539  1.137    bouyer 				ata_raid_check_component(chp->ata_drives[i]);
    540  1.137    bouyer #endif /* NATARAID > 0 */
    541  1.137    bouyer 
    542  1.137    bouyer 	/*
    543  1.152       wiz 	 * reset drive_flags for unattached devices, reset state for attached
    544  1.137    bouyer 	 *  ones
    545  1.137    bouyer 	 */
    546  1.137    bouyer 	for (i = 0; i < 2; i++) {
    547  1.137    bouyer 		if (chp->ch_drive[i].drv_softc == NULL)
    548  1.137    bouyer 			chp->ch_drive[i].drive_flags = 0;
    549  1.137    bouyer 		else
    550  1.137    bouyer 			chp->ch_drive[i].state = 0;
    551  1.137    bouyer 	}
    552  1.137    bouyer 
    553  1.137    bouyer out:
    554  1.137    bouyer 	if (atabus_initq == NULL) {
    555  1.137    bouyer 		simple_lock(&atabus_interlock);
    556  1.137    bouyer 		while(1) {
    557  1.137    bouyer 			atabus_initq = TAILQ_FIRST(&atabus_initq_head);
    558  1.137    bouyer 			if (atabus_initq->atabus_sc == atabus_sc)
    559  1.137    bouyer 				break;
    560  1.137    bouyer 			ltsleep(&atabus_initq_head, PRIBIO, "ata_initq", 0,
    561  1.137    bouyer 			    &atabus_interlock);
    562  1.137    bouyer 		}
    563  1.137    bouyer 		simple_unlock(&atabus_interlock);
    564  1.137    bouyer 	}
    565  1.137    bouyer         simple_lock(&atabus_interlock);
    566  1.137    bouyer         TAILQ_REMOVE(&atabus_initq_head, atabus_initq, atabus_initq);
    567  1.137    bouyer         simple_unlock(&atabus_interlock);
    568  1.137    bouyer 
    569  1.137    bouyer         free(atabus_initq, M_DEVBUF);
    570  1.137    bouyer         wakeup(&atabus_initq_head);
    571  1.137    bouyer 
    572  1.137    bouyer 	config_pending_decr();
    573  1.144    briggs 	if (need_delref)
    574  1.144    briggs 		wdc_delref(chp);
    575  1.137    bouyer }
    576  1.137    bouyer 
    577  1.137    bouyer 
    578  1.137    bouyer int
    579   1.31    bouyer wdprint(aux, pnp)
    580   1.31    bouyer 	void *aux;
    581   1.31    bouyer 	const char *pnp;
    582   1.31    bouyer {
    583  1.102    bouyer 	struct ata_device *adev = aux;
    584   1.31    bouyer 	if (pnp)
    585  1.120   thorpej 		aprint_normal("wd at %s", pnp);
    586  1.137    bouyer 	aprint_normal(" drive %d", adev->adev_drv_data->drive);
    587   1.31    bouyer 	return (UNCONF);
    588   1.31    bouyer }
    589   1.31    bouyer 
    590   1.31    bouyer /* Test to see controller with at last one attached drive is there.
    591   1.31    bouyer  * Returns a bit for each possible drive found (0x01 for drive 0,
    592   1.31    bouyer  * 0x02 for drive 1).
    593   1.31    bouyer  * Logic:
    594   1.31    bouyer  * - If a status register is at 0xff, assume there is no drive here
    595   1.97     bjh21  *   (ISA has pull-up resistors).  Similarly if the status register has
    596   1.97     bjh21  *   the value we last wrote to the bus (for IDE interfaces without pullups).
    597   1.97     bjh21  *   If no drive at all -> return.
    598   1.31    bouyer  * - reset the controller, wait for it to complete (may take up to 31s !).
    599   1.31    bouyer  *   If timeout -> return.
    600   1.31    bouyer  * - test ATA/ATAPI signatures. If at last one drive found -> return.
    601   1.31    bouyer  * - try an ATA command on the master.
    602   1.12       cgd  */
    603   1.31    bouyer 
    604    1.2    bouyer int
    605   1.31    bouyer wdcprobe(chp)
    606   1.31    bouyer 	struct channel_softc *chp;
    607   1.12       cgd {
    608  1.137    bouyer 	return __wdcprobe(chp, 1);
    609  1.137    bouyer }
    610  1.137    bouyer 
    611  1.137    bouyer int
    612  1.137    bouyer __wdcprobe(chp, poll)
    613  1.137    bouyer 	struct channel_softc *chp;
    614  1.137    bouyer 	int poll;
    615  1.137    bouyer {
    616   1.31    bouyer 	u_int8_t st0, st1, sc, sn, cl, ch;
    617   1.31    bouyer 	u_int8_t ret_value = 0x03;
    618   1.31    bouyer 	u_int8_t drive;
    619  1.156    bouyer 	int s;
    620   1.31    bouyer 
    621   1.31    bouyer 	/*
    622   1.31    bouyer 	 * Sanity check to see if the wdc channel responds at all.
    623   1.31    bouyer 	 */
    624   1.31    bouyer 
    625   1.43      kenh 	if (chp->wdc == NULL ||
    626   1.43      kenh 	    (chp->wdc->cap & WDC_CAPABILITY_NO_EXTRA_RESETS) == 0) {
    627  1.107       dbj 
    628  1.107       dbj 		if (chp->wdc && (chp->wdc->cap & WDC_CAPABILITY_SELECT))
    629  1.107       dbj 			chp->wdc->select(chp,0);
    630  1.137    bouyer 
    631  1.157      fvdl 		bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
    632   1.43      kenh 		    WDSD_IBM);
    633  1.131   mycroft 		delay(10);	/* 400ns delay */
    634  1.157      fvdl 		st0 = bus_space_read_1(chp->cmd_iot,
    635  1.157      fvdl 		    chp->cmd_iohs[wd_status], 0);
    636  1.107       dbj 
    637  1.107       dbj 		if (chp->wdc && (chp->wdc->cap & WDC_CAPABILITY_SELECT))
    638  1.107       dbj 			chp->wdc->select(chp,1);
    639  1.137    bouyer 
    640  1.157      fvdl 		bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
    641   1.43      kenh 		    WDSD_IBM | 0x10);
    642  1.131   mycroft 		delay(10);	/* 400ns delay */
    643  1.157      fvdl 		st1 = bus_space_read_1(chp->cmd_iot,
    644  1.157      fvdl 		    chp->cmd_iohs[wd_status], 0);
    645   1.43      kenh 
    646   1.43      kenh 		WDCDEBUG_PRINT(("%s:%d: before reset, st0=0x%x, st1=0x%x\n",
    647   1.43      kenh 		    chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe",
    648   1.43      kenh 		    chp->channel, st0, st1), DEBUG_PROBE);
    649   1.43      kenh 
    650  1.142    bouyer 		if (st0 == 0xff || st0 == WDSD_IBM)
    651   1.43      kenh 			ret_value &= ~0x01;
    652  1.142    bouyer 		if (st1 == 0xff || st1 == (WDSD_IBM | 0x10))
    653   1.43      kenh 			ret_value &= ~0x02;
    654  1.125   mycroft 		/* Register writability test, drive 0. */
    655  1.125   mycroft 		if (ret_value & 0x01) {
    656  1.125   mycroft 			if (chp->wdc && (chp->wdc->cap & WDC_CAPABILITY_SELECT))
    657  1.125   mycroft 				chp->wdc->select(chp,0);
    658  1.157      fvdl 			bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh],
    659  1.157      fvdl 			    0, WDSD_IBM);
    660  1.157      fvdl 			bus_space_write_1(chp->cmd_iot,
    661  1.157      fvdl 			    chp->cmd_iohs[wd_cyl_lo], 0, 0x02);
    662  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    663  1.157      fvdl 			    chp->cmd_iohs[wd_cyl_lo], 0) != 0x02)
    664  1.125   mycroft 				ret_value &= ~0x01;
    665  1.157      fvdl 			bus_space_write_1(chp->cmd_iot,
    666  1.157      fvdl 			    chp->cmd_iohs[wd_cyl_lo], 0, 0x01);
    667  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    668  1.157      fvdl 			    chp->cmd_iohs[wd_cyl_lo], 0) != 0x01)
    669  1.125   mycroft 				ret_value &= ~0x01;
    670  1.157      fvdl 			bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sector],
    671  1.157      fvdl 			    0, 0x01);
    672  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    673  1.157      fvdl 			    chp->cmd_iohs[wd_sector], 0) != 0x01)
    674  1.125   mycroft 				ret_value &= ~0x01;
    675  1.157      fvdl 			bus_space_write_1(chp->cmd_iot,
    676  1.157      fvdl 			    chp->cmd_iohs[wd_sector], 0, 0x02);
    677  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    678  1.157      fvdl 			    chp->cmd_iohs[wd_sector], 0) != 0x02)
    679  1.125   mycroft 				ret_value &= ~0x01;
    680  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    681  1.157      fvdl 			    chp->cmd_iohs[wd_cyl_lo], 0) != 0x01)
    682  1.131   mycroft 				ret_value &= ~0x01;
    683  1.125   mycroft 		}
    684  1.125   mycroft 		/* Register writability test, drive 1. */
    685  1.125   mycroft 		if (ret_value & 0x02) {
    686  1.125   mycroft 			if (chp->wdc && (chp->wdc->cap & WDC_CAPABILITY_SELECT))
    687  1.137    bouyer 			     chp->wdc->select(chp,1);
    688  1.157      fvdl 			bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh],
    689  1.157      fvdl 			     0, WDSD_IBM | 0x10);
    690  1.157      fvdl 			bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_cyl_lo],
    691  1.157      fvdl 			    0, 0x02);
    692  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    693  1.157      fvdl 			     chp->cmd_iohs[wd_cyl_lo], 0) != 0x02)
    694  1.125   mycroft 				ret_value &= ~0x02;
    695  1.157      fvdl 			bus_space_write_1(chp->cmd_iot,
    696  1.157      fvdl 			    chp->cmd_iohs[wd_cyl_lo], 0, 0x01);
    697  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    698  1.157      fvdl 			     chp->cmd_iohs[wd_cyl_lo], 0) != 0x01)
    699  1.125   mycroft 				ret_value &= ~0x02;
    700  1.157      fvdl 			bus_space_write_1(chp->cmd_iot,
    701  1.157      fvdl 			    chp->cmd_iohs[wd_sector], 0, 0x01);
    702  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    703  1.157      fvdl 			    chp->cmd_iohs[wd_sector], 0) != 0x01)
    704  1.125   mycroft 				ret_value &= ~0x02;
    705  1.157      fvdl 			bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sector],
    706  1.157      fvdl 			    0, 0x02);
    707  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    708  1.157      fvdl 			    chp->cmd_iohs[wd_sector], 0) != 0x02)
    709  1.125   mycroft 				ret_value &= ~0x02;
    710  1.157      fvdl 			if (bus_space_read_1(chp->cmd_iot,
    711  1.157      fvdl 			    chp->cmd_iohs[wd_cyl_lo], 0) != 0x01)
    712  1.131   mycroft 				ret_value &= ~0x02;
    713  1.125   mycroft 		}
    714  1.137    bouyer 
    715  1.137    bouyer 		if (ret_value == 0)
    716  1.137    bouyer 			return 0;
    717   1.62    bouyer 	}
    718   1.31    bouyer 
    719  1.156    bouyer 	s = splbio();
    720  1.156    bouyer 
    721  1.137    bouyer 	if (chp->wdc && (chp->wdc->cap & WDC_CAPABILITY_SELECT))
    722  1.137    bouyer 		chp->wdc->select(chp,0);
    723  1.137    bouyer 	/* assert SRST, wait for reset to complete */
    724  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0, WDSD_IBM);
    725  1.137    bouyer 	delay(10);	/* 400ns delay */
    726  1.137    bouyer 	bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr,
    727  1.137    bouyer 	    WDCTL_RST | WDCTL_IDS | WDCTL_4BIT);
    728  1.137    bouyer 	DELAY(2000);
    729  1.157      fvdl 	(void) bus_space_read_1(chp->cmd_iot, chp->cmd_iohs[wd_error], 0);
    730  1.137    bouyer 	bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr, WDCTL_4BIT);
    731  1.137    bouyer 	delay(10);	/* 400ns delay */
    732  1.156    bouyer 	/* ACK interrupt in case there is one pending left (Promise ATA100) */
    733  1.158        he 	if (chp->wdc && (chp->wdc->cap & WDC_CAPABILITY_IRQACK))
    734  1.156    bouyer 		chp->wdc->irqack(chp);
    735  1.156    bouyer 	splx(s);
    736  1.137    bouyer 
    737  1.137    bouyer 	ret_value = __wdcwait_reset(chp, ret_value, poll);
    738  1.137    bouyer 	WDCDEBUG_PRINT(("%s:%d: after reset, ret_value=0x%d\n",
    739  1.137    bouyer 	    chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe", chp->channel,
    740  1.137    bouyer 	    ret_value), DEBUG_PROBE);
    741   1.12       cgd 
    742  1.137    bouyer 	/* if reset failed, there's nothing here */
    743  1.137    bouyer 	if (ret_value == 0)
    744  1.137    bouyer 		return 0;
    745   1.67    bouyer 
    746   1.12       cgd 	/*
    747  1.137    bouyer 	 * Test presence of drives. First test register signatures looking for
    748  1.137    bouyer 	 * ATAPI devices. If it's not an ATAPI and reset said there may be
    749  1.137    bouyer 	 * something here assume it's ATA or OLD. Ghost will be killed later in
    750  1.137    bouyer 	 * attach routine.
    751   1.12       cgd 	 */
    752  1.137    bouyer 	for (drive = 0; drive < 2; drive++) {
    753  1.137    bouyer 		if ((ret_value & (0x01 << drive)) == 0)
    754  1.137    bouyer 			continue;
    755  1.137    bouyer 		if (chp->wdc && chp->wdc->cap & WDC_CAPABILITY_SELECT)
    756  1.137    bouyer 			chp->wdc->select(chp,drive);
    757  1.157      fvdl 		bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
    758  1.137    bouyer 		    WDSD_IBM | (drive << 4));
    759  1.137    bouyer 		delay(10);	/* 400ns delay */
    760  1.137    bouyer 		/* Save registers contents */
    761  1.157      fvdl 		sc = bus_space_read_1(chp->cmd_iot,
    762  1.157      fvdl 		    chp->cmd_iohs[wd_seccnt], 0);
    763  1.157      fvdl 		sn = bus_space_read_1(chp->cmd_iot,
    764  1.157      fvdl 		    chp->cmd_iohs[wd_sector], 0);
    765  1.157      fvdl 		cl = bus_space_read_1(chp->cmd_iot,
    766  1.157      fvdl 		    chp->cmd_iohs[wd_cyl_lo], 0);
    767  1.157      fvdl 		ch = bus_space_read_1(chp->cmd_iot,
    768  1.157      fvdl 		     chp->cmd_iohs[wd_cyl_hi], 0);
    769  1.137    bouyer 
    770  1.137    bouyer 		WDCDEBUG_PRINT(("%s:%d:%d: after reset, sc=0x%x sn=0x%x "
    771  1.137    bouyer 		    "cl=0x%x ch=0x%x\n",
    772  1.137    bouyer 		    chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe",
    773  1.137    bouyer 	    	    chp->channel, drive, sc, sn, cl, ch), DEBUG_PROBE);
    774   1.31    bouyer 		/*
    775  1.137    bouyer 		 * sc & sn are supposted to be 0x1 for ATAPI but in some cases
    776  1.137    bouyer 		 * we get wrong values here, so ignore it.
    777   1.31    bouyer 		 */
    778  1.137    bouyer 		if (cl == 0x14 && ch == 0xeb) {
    779  1.137    bouyer 			chp->ch_drive[drive].drive_flags |= DRIVE_ATAPI;
    780  1.137    bouyer 		} else {
    781  1.137    bouyer 			chp->ch_drive[drive].drive_flags |= DRIVE_ATA;
    782  1.137    bouyer 			if (chp->wdc == NULL ||
    783  1.137    bouyer 			    (chp->wdc->cap & WDC_CAPABILITY_PREATA) != 0)
    784  1.137    bouyer 				chp->ch_drive[drive].drive_flags |= DRIVE_OLD;
    785  1.137    bouyer 		}
    786   1.31    bouyer 	}
    787  1.137    bouyer 	return (ret_value);
    788  1.137    bouyer }
    789   1.31    bouyer 
    790  1.137    bouyer void
    791  1.137    bouyer wdcattach(chp)
    792  1.137    bouyer 	struct channel_softc *chp;
    793  1.137    bouyer {
    794  1.137    bouyer 	static int inited = 0;
    795   1.32    bouyer 
    796  1.137    bouyer 	if (chp->ch_flags & WDCF_DISABLED)
    797  1.137    bouyer 		return;
    798   1.74     enami 
    799  1.137    bouyer 	/* initialise global data */
    800  1.137    bouyer 	callout_init(&chp->ch_callout);
    801  1.137    bouyer 	if (inited == 0) {
    802  1.137    bouyer 		/* Initialize the wdc_xfer pool. */
    803  1.137    bouyer 		pool_init(&wdc_xfer_pool, sizeof(struct wdc_xfer), 0,
    804  1.137    bouyer 		    0, 0, "wdcspl", NULL);
    805  1.137    bouyer 		inited++;
    806  1.133    bouyer 	}
    807  1.137    bouyer 	TAILQ_INIT(&chp->ch_queue->sc_xfer);
    808  1.148    bouyer 	chp->ch_queue->queue_freeze = 0;
    809  1.126     enami 
    810  1.143    bouyer 	chp->atabus = config_found(&chp->wdc->sc_dev, chp, atabusprint);
    811   1.74     enami }
    812   1.74     enami 
    813   1.74     enami /*
    814   1.74     enami  * Call activate routine of underlying devices.
    815   1.74     enami  */
    816   1.74     enami int
    817  1.137    bouyer atabusactivate(self, act)
    818   1.74     enami 	struct device *self;
    819   1.74     enami 	enum devact act;
    820   1.74     enami {
    821  1.137    bouyer 	struct atabus_softc *atabus_sc = (struct atabus_softc *)self;
    822  1.137    bouyer 	struct channel_softc *chp = atabus_sc->sc_chan;
    823   1.88       mrg 	struct device *sc = 0;
    824  1.137    bouyer 	int s, i, error = 0;
    825   1.74     enami 
    826   1.74     enami 	s = splbio();
    827   1.74     enami 	switch (act) {
    828   1.74     enami 	case DVACT_ACTIVATE:
    829   1.74     enami 		error = EOPNOTSUPP;
    830   1.74     enami 		break;
    831   1.74     enami 
    832   1.74     enami 	case DVACT_DEACTIVATE:
    833  1.137    bouyer 		/*
    834  1.137    bouyer 		 * We might call deactivate routine for
    835  1.137    bouyer 		 * the children of atapibus twice (once via
    836  1.137    bouyer 		 * atapibus, once directly), but since
    837  1.137    bouyer 		 * config_deactivate maintains DVF_ACTIVE flag,
    838  1.137    bouyer 		 * it's safe.
    839  1.137    bouyer 		 */
    840  1.137    bouyer 		sc = chp->atapibus;
    841  1.137    bouyer 		if (sc != NULL) {
    842  1.137    bouyer 			error = config_deactivate(sc);
    843  1.137    bouyer 			if (error != 0)
    844  1.137    bouyer 				goto out;
    845  1.137    bouyer 		}
    846   1.74     enami 
    847  1.137    bouyer 		for (i = 0; i < 2; i++) {
    848  1.137    bouyer 			sc = chp->ch_drive[i].drv_softc;
    849  1.137    bouyer 			WDCDEBUG_PRINT(("atabusactivate: %s:"
    850  1.137    bouyer 			    " deactivating %s\n", atabus_sc->sc_dev.dv_xname,
    851  1.137    bouyer 			    sc == NULL ? "nodrv" : sc->dv_xname),
    852  1.137    bouyer 			    DEBUG_DETACH);
    853   1.74     enami 			if (sc != NULL) {
    854   1.74     enami 				error = config_deactivate(sc);
    855   1.74     enami 				if (error != 0)
    856   1.74     enami 					goto out;
    857   1.74     enami 			}
    858   1.74     enami 		}
    859   1.74     enami 		break;
    860   1.74     enami 	}
    861   1.74     enami 
    862   1.74     enami out:
    863   1.74     enami 	splx(s);
    864   1.74     enami 
    865   1.74     enami #ifdef WDCDEBUG
    866   1.88       mrg 	if (sc && error != 0)
    867  1.137    bouyer 		WDCDEBUG_PRINT(("atabusactivate: %s: "
    868  1.137    bouyer 		    "error %d deactivating %s\n", atabus_sc->sc_dev.dv_xname,
    869  1.137    bouyer 		    error, sc->dv_xname), DEBUG_DETACH);
    870   1.74     enami #endif
    871   1.74     enami 	return (error);
    872   1.74     enami }
    873   1.74     enami 
    874  1.137    bouyer int wdcactivate(self, act)
    875  1.137    bouyer 	struct device *self;
    876  1.137    bouyer 	enum devact act;
    877  1.137    bouyer {
    878  1.137    bouyer 	struct wdc_softc *wdc = (struct wdc_softc *)self;
    879  1.137    bouyer 	int s, i, error = 0;
    880  1.137    bouyer 
    881  1.137    bouyer 	s = splbio();
    882  1.137    bouyer 	switch (act) {
    883  1.137    bouyer 	case DVACT_ACTIVATE:
    884  1.137    bouyer 		error = EOPNOTSUPP;
    885  1.137    bouyer 		break;
    886  1.137    bouyer 
    887  1.137    bouyer 	case DVACT_DEACTIVATE:
    888  1.137    bouyer 		for (i = 0; i < wdc->nchannels; i++) {
    889  1.137    bouyer 			error = config_deactivate(wdc->channels[i]->atabus);
    890  1.137    bouyer 			if (error)
    891  1.137    bouyer 				break;
    892  1.137    bouyer 		}
    893  1.137    bouyer 		break;
    894  1.137    bouyer 	}
    895  1.137    bouyer 	splx(s);
    896  1.137    bouyer 	return (error);
    897  1.137    bouyer }
    898  1.137    bouyer 
    899  1.137    bouyer 
    900   1.74     enami int
    901  1.137    bouyer atabusdetach(self, flags)
    902   1.74     enami 	struct device *self;
    903   1.74     enami 	int flags;
    904   1.74     enami {
    905  1.137    bouyer 	struct atabus_softc *atabus_sc = (struct atabus_softc *)self;
    906  1.137    bouyer 	struct channel_softc *chp = atabus_sc->sc_chan;
    907   1.88       mrg 	struct device *sc = 0;
    908  1.137    bouyer 	int i, error = 0;
    909  1.137    bouyer 
    910  1.137    bouyer 	/* shutdown channel */
    911  1.137    bouyer 	chp->ch_flags |= WDCF_SHUTDOWN;
    912  1.143    bouyer 	wakeup(&chp->thread);
    913  1.137    bouyer 	while (chp->thread != NULL)
    914  1.137    bouyer 		tsleep(&chp->ch_flags, PRIBIO, "atadown", 0);
    915   1.74     enami 
    916  1.137    bouyer 	/*
    917  1.137    bouyer 	 * Detach atapibus and its children.
    918  1.137    bouyer 	 */
    919  1.137    bouyer 	sc = chp->atapibus;
    920  1.137    bouyer 	if (sc != NULL) {
    921  1.137    bouyer 		WDCDEBUG_PRINT(("atabusdetach: %s: detaching %s\n",
    922  1.137    bouyer 		    atabus_sc->sc_dev.dv_xname, sc->dv_xname), DEBUG_DETACH);
    923  1.137    bouyer 		error = config_detach(sc, flags);
    924  1.137    bouyer 		if (error != 0)
    925  1.137    bouyer 			goto out;
    926  1.137    bouyer 	}
    927   1.74     enami 
    928  1.137    bouyer 	/*
    929  1.137    bouyer 	 * Detach our other children.
    930  1.137    bouyer 	 */
    931  1.137    bouyer 	for (i = 0; i < 2; i++) {
    932  1.137    bouyer 		if (chp->ch_drive[i].drive_flags & DRIVE_ATAPI)
    933  1.137    bouyer 			continue;
    934  1.137    bouyer 		sc = chp->ch_drive[i].drv_softc;
    935  1.137    bouyer 		WDCDEBUG_PRINT(("atabusdetach: %s: detaching %s\n",
    936  1.137    bouyer 		    atabus_sc->sc_dev.dv_xname,
    937  1.137    bouyer 		    sc == NULL ? "nodrv" : sc->dv_xname),
    938  1.137    bouyer 		    DEBUG_DETACH);
    939   1.74     enami 		if (sc != NULL) {
    940   1.74     enami 			error = config_detach(sc, flags);
    941   1.74     enami 			if (error != 0)
    942   1.74     enami 				goto out;
    943   1.74     enami 		}
    944  1.137    bouyer 	}
    945   1.74     enami 
    946  1.137    bouyer 	wdc_kill_pending(chp);
    947   1.74     enami 
    948   1.74     enami out:
    949   1.74     enami #ifdef WDCDEBUG
    950   1.88       mrg 	if (sc && error != 0)
    951  1.137    bouyer 		WDCDEBUG_PRINT(("atabusdetach: %s: error %d detaching %s\n",
    952  1.137    bouyer 		    atabus_sc->sc_dev.dv_xname, error, sc->dv_xname),
    953  1.137    bouyer 		    DEBUG_DETACH);
    954   1.74     enami #endif
    955   1.74     enami 	return (error);
    956   1.31    bouyer }
    957   1.31    bouyer 
    958  1.137    bouyer int
    959  1.137    bouyer wdcdetach(self, flags)
    960  1.137    bouyer 	struct device *self;
    961  1.137    bouyer 	int flags;
    962  1.137    bouyer {
    963  1.137    bouyer 	struct wdc_softc *wdc = (struct wdc_softc *)self;
    964  1.137    bouyer 	struct channel_softc *chp;
    965  1.137    bouyer 	int i, error = 0;
    966  1.137    bouyer 
    967  1.137    bouyer 	for (i = 0; i < wdc->nchannels; i++) {
    968  1.137    bouyer 		chp = wdc->channels[i];
    969  1.137    bouyer 		WDCDEBUG_PRINT(("wdcdetach: %s: detaching %s\n",
    970  1.137    bouyer 		    wdc->sc_dev.dv_xname, chp->atabus->dv_xname), DEBUG_DETACH);
    971  1.137    bouyer 		error = config_detach(chp->atabus, flags);
    972  1.137    bouyer 		if (error)
    973  1.137    bouyer 			break;
    974  1.137    bouyer 	}
    975  1.137    bouyer 	return (error);
    976  1.137    bouyer }
    977  1.137    bouyer 
    978   1.31    bouyer /*
    979   1.31    bouyer  * Start I/O on a controller, for the given channel.
    980   1.31    bouyer  * The first xfer may be not for our channel if the channel queues
    981   1.31    bouyer  * are shared.
    982   1.31    bouyer  */
    983   1.31    bouyer void
    984   1.45  drochner wdcstart(chp)
    985   1.45  drochner 	struct channel_softc *chp;
    986   1.31    bouyer {
    987   1.31    bouyer 	struct wdc_xfer *xfer;
    988   1.38    bouyer 
    989   1.38    bouyer #ifdef WDC_DIAGNOSTIC
    990   1.38    bouyer 	int spl1, spl2;
    991   1.38    bouyer 
    992   1.38    bouyer 	spl1 = splbio();
    993   1.38    bouyer 	spl2 = splbio();
    994   1.38    bouyer 	if (spl2 != spl1) {
    995   1.38    bouyer 		printf("wdcstart: not at splbio()\n");
    996   1.38    bouyer 		panic("wdcstart");
    997   1.38    bouyer 	}
    998   1.38    bouyer 	splx(spl2);
    999   1.38    bouyer 	splx(spl1);
   1000   1.38    bouyer #endif /* WDC_DIAGNOSTIC */
   1001   1.12       cgd 
   1002   1.31    bouyer 	/* is there a xfer ? */
   1003   1.45  drochner 	if ((xfer = chp->ch_queue->sc_xfer.tqh_first) == NULL)
   1004   1.31    bouyer 		return;
   1005   1.47    bouyer 
   1006   1.47    bouyer 	/* adjust chp, in case we have a shared queue */
   1007   1.49    bouyer 	chp = xfer->chp;
   1008   1.47    bouyer 
   1009   1.31    bouyer 	if ((chp->ch_flags & WDCF_ACTIVE) != 0 ) {
   1010   1.31    bouyer 		return; /* channel aleady active */
   1011   1.31    bouyer 	}
   1012  1.148    bouyer 	if (__predict_false(chp->ch_queue->queue_freeze > 0)) {
   1013  1.147    bouyer 		return; /* queue froozen */
   1014  1.137    bouyer 	}
   1015   1.31    bouyer #ifdef DIAGNOSTIC
   1016   1.31    bouyer 	if ((chp->ch_flags & WDCF_IRQ_WAIT) != 0)
   1017  1.118    provos 		panic("wdcstart: channel waiting for irq");
   1018   1.31    bouyer #endif
   1019   1.45  drochner 	if (chp->wdc->cap & WDC_CAPABILITY_HWLOCK)
   1020   1.45  drochner 		if (!(*chp->wdc->claim_hw)(chp, 0))
   1021   1.31    bouyer 			return;
   1022   1.12       cgd 
   1023   1.31    bouyer 	WDCDEBUG_PRINT(("wdcstart: xfer %p channel %d drive %d\n", xfer,
   1024   1.49    bouyer 	    chp->channel, xfer->drive), DEBUG_XFERS);
   1025   1.31    bouyer 	chp->ch_flags |= WDCF_ACTIVE;
   1026   1.37    bouyer 	if (chp->ch_drive[xfer->drive].drive_flags & DRIVE_RESET) {
   1027   1.37    bouyer 		chp->ch_drive[xfer->drive].drive_flags &= ~DRIVE_RESET;
   1028   1.37    bouyer 		chp->ch_drive[xfer->drive].state = 0;
   1029   1.37    bouyer 	}
   1030   1.98     bjh21 	if (chp->wdc->cap & WDC_CAPABILITY_NOIRQ)
   1031   1.98     bjh21 		KASSERT(xfer->c_flags & C_POLL);
   1032   1.31    bouyer 	xfer->c_start(chp, xfer);
   1033   1.31    bouyer }
   1034    1.2    bouyer 
   1035   1.31    bouyer /* restart an interrupted I/O */
   1036   1.31    bouyer void
   1037   1.31    bouyer wdcrestart(v)
   1038   1.31    bouyer 	void *v;
   1039   1.31    bouyer {
   1040   1.31    bouyer 	struct channel_softc *chp = v;
   1041   1.31    bouyer 	int s;
   1042    1.2    bouyer 
   1043   1.31    bouyer 	s = splbio();
   1044   1.45  drochner 	wdcstart(chp);
   1045   1.31    bouyer 	splx(s);
   1046    1.2    bouyer }
   1047   1.31    bouyer 
   1048    1.2    bouyer 
   1049   1.31    bouyer /*
   1050   1.31    bouyer  * Interrupt routine for the controller.  Acknowledge the interrupt, check for
   1051   1.31    bouyer  * errors on the current operation, mark it done if necessary, and start the
   1052   1.31    bouyer  * next request.  Also check for a partially done transfer, and continue with
   1053   1.31    bouyer  * the next chunk if so.
   1054   1.31    bouyer  */
   1055   1.12       cgd int
   1056   1.31    bouyer wdcintr(arg)
   1057   1.31    bouyer 	void *arg;
   1058   1.12       cgd {
   1059   1.31    bouyer 	struct channel_softc *chp = arg;
   1060   1.31    bouyer 	struct wdc_xfer *xfer;
   1061   1.76    bouyer 	int ret;
   1062   1.12       cgd 
   1063   1.80     enami 	if ((chp->wdc->sc_dev.dv_flags & DVF_ACTIVE) == 0) {
   1064   1.80     enami 		WDCDEBUG_PRINT(("wdcintr: deactivated controller\n"),
   1065   1.80     enami 		    DEBUG_INTR);
   1066   1.80     enami 		return (0);
   1067   1.80     enami 	}
   1068   1.31    bouyer 	if ((chp->ch_flags & WDCF_IRQ_WAIT) == 0) {
   1069   1.31    bouyer 		WDCDEBUG_PRINT(("wdcintr: inactive controller\n"), DEBUG_INTR);
   1070  1.113    bouyer 		/* try to clear the pending interrupt anyway */
   1071  1.157      fvdl 		(void)bus_space_read_1(chp->cmd_iot,
   1072  1.157      fvdl 		    chp->cmd_iohs[wd_status], 0);
   1073   1.80     enami 		return (0);
   1074   1.31    bouyer 	}
   1075   1.12       cgd 
   1076   1.31    bouyer 	WDCDEBUG_PRINT(("wdcintr\n"), DEBUG_INTR);
   1077   1.84    bouyer 	xfer = chp->ch_queue->sc_xfer.tqh_first;
   1078   1.84    bouyer 	if (chp->ch_flags & WDCF_DMA_WAIT) {
   1079   1.84    bouyer 		chp->wdc->dma_status =
   1080   1.84    bouyer 		    (*chp->wdc->dma_finish)(chp->wdc->dma_arg, chp->channel,
   1081   1.84    bouyer 			xfer->drive, 0);
   1082   1.84    bouyer 		if (chp->wdc->dma_status & WDC_DMAST_NOIRQ) {
   1083   1.84    bouyer 			/* IRQ not for us, not detected by DMA engine */
   1084   1.84    bouyer 			return 0;
   1085   1.84    bouyer 		}
   1086   1.84    bouyer 		chp->ch_flags &= ~WDCF_DMA_WAIT;
   1087   1.84    bouyer 	}
   1088   1.31    bouyer 	chp->ch_flags &= ~WDCF_IRQ_WAIT;
   1089   1.76    bouyer 	ret = xfer->c_intr(chp, xfer, 1);
   1090   1.76    bouyer 	if (ret == 0) /* irq was not for us, still waiting for irq */
   1091   1.76    bouyer 		chp->ch_flags |= WDCF_IRQ_WAIT;
   1092   1.76    bouyer 	return (ret);
   1093   1.12       cgd }
   1094   1.12       cgd 
   1095   1.31    bouyer /* Put all disk in RESET state */
   1096  1.125   mycroft void
   1097  1.137    bouyer wdc_reset_channel(drvp, flags)
   1098   1.31    bouyer 	struct ata_drive_datas *drvp;
   1099  1.137    bouyer 	int flags;
   1100    1.2    bouyer {
   1101   1.31    bouyer 	struct channel_softc *chp = drvp->chnl_softc;
   1102    1.2    bouyer 	int drive;
   1103   1.34    bouyer 	WDCDEBUG_PRINT(("ata_reset_channel %s:%d for drive %d\n",
   1104   1.34    bouyer 	    chp->wdc->sc_dev.dv_xname, chp->channel, drvp->drive),
   1105   1.34    bouyer 	    DEBUG_FUNCS);
   1106  1.147    bouyer 	if ((flags & AT_POLL) == 0) {
   1107  1.153    bouyer 		if (chp->ch_flags & WDCF_TH_RESET) {
   1108  1.153    bouyer 			/* no need to schedule a reset more than one time */
   1109  1.153    bouyer 			return;
   1110  1.153    bouyer 		}
   1111  1.137    bouyer 		chp->ch_flags |= WDCF_TH_RESET;
   1112  1.148    bouyer 		chp->ch_queue->queue_freeze++;
   1113  1.137    bouyer 		wakeup(&chp->thread);
   1114  1.137    bouyer 		return;
   1115  1.137    bouyer 	}
   1116  1.147    bouyer 	(void) wdcreset(chp, RESET_POLL);
   1117   1.31    bouyer 	for (drive = 0; drive < 2; drive++) {
   1118   1.31    bouyer 		chp->ch_drive[drive].state = 0;
   1119   1.12       cgd 	}
   1120   1.31    bouyer }
   1121   1.12       cgd 
   1122   1.31    bouyer int
   1123  1.137    bouyer wdcreset(chp, poll)
   1124   1.31    bouyer 	struct channel_softc *chp;
   1125  1.137    bouyer 	int poll;
   1126   1.31    bouyer {
   1127   1.31    bouyer 	int drv_mask1, drv_mask2;
   1128  1.156    bouyer 	int s = 0;
   1129    1.2    bouyer 
   1130  1.107       dbj 	if (chp->wdc->cap & WDC_CAPABILITY_SELECT)
   1131  1.107       dbj 		chp->wdc->select(chp,0);
   1132  1.156    bouyer 	if (poll != RESET_SLEEP)
   1133  1.156    bouyer 		s = splbio();
   1134  1.157      fvdl 	/* master */
   1135  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0, WDSD_IBM);
   1136  1.131   mycroft 	delay(10);	/* 400ns delay */
   1137   1.31    bouyer 	bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr,
   1138  1.131   mycroft 	    WDCTL_RST | WDCTL_IDS | WDCTL_4BIT);
   1139  1.131   mycroft 	delay(2000);
   1140  1.157      fvdl 	(void) bus_space_read_1(chp->cmd_iot, chp->cmd_iohs[wd_error], 0);
   1141  1.137    bouyer 	bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr,
   1142  1.137    bouyer 	    WDCTL_4BIT | WDCTL_IDS);
   1143  1.131   mycroft 	delay(10);	/* 400ns delay */
   1144  1.156    bouyer 	if (poll != RESET_SLEEP) {
   1145  1.156    bouyer 		if (chp->wdc->cap & WDC_CAPABILITY_IRQACK)
   1146  1.156    bouyer 			chp->wdc->irqack(chp);
   1147  1.156    bouyer 		splx(s);
   1148  1.156    bouyer 	}
   1149    1.2    bouyer 
   1150   1.31    bouyer 	drv_mask1 = (chp->ch_drive[0].drive_flags & DRIVE) ? 0x01:0x00;
   1151   1.31    bouyer 	drv_mask1 |= (chp->ch_drive[1].drive_flags & DRIVE) ? 0x02:0x00;
   1152  1.137    bouyer 	drv_mask2 = __wdcwait_reset(chp, drv_mask1,
   1153  1.137    bouyer 	    (poll == RESET_SLEEP) ? 0 : 1);
   1154  1.137    bouyer 	if (drv_mask2 != drv_mask1) {
   1155   1.31    bouyer 		printf("%s channel %d: reset failed for",
   1156   1.31    bouyer 		    chp->wdc->sc_dev.dv_xname, chp->channel);
   1157   1.31    bouyer 		if ((drv_mask1 & 0x01) != 0 && (drv_mask2 & 0x01) == 0)
   1158   1.31    bouyer 			printf(" drive 0");
   1159   1.31    bouyer 		if ((drv_mask1 & 0x02) != 0 && (drv_mask2 & 0x02) == 0)
   1160   1.31    bouyer 			printf(" drive 1");
   1161   1.31    bouyer 		printf("\n");
   1162   1.31    bouyer 	}
   1163  1.137    bouyer 	bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr, WDCTL_4BIT);
   1164   1.31    bouyer 	return  (drv_mask1 != drv_mask2) ? 1 : 0;
   1165   1.31    bouyer }
   1166   1.31    bouyer 
   1167   1.31    bouyer static int
   1168  1.137    bouyer __wdcwait_reset(chp, drv_mask, poll)
   1169   1.31    bouyer 	struct channel_softc *chp;
   1170   1.31    bouyer 	int drv_mask;
   1171   1.31    bouyer {
   1172  1.137    bouyer 	int timeout, nloop;
   1173  1.149    bouyer 	u_int8_t st0 = 0, st1 = 0;
   1174   1.70    bouyer #ifdef WDCDEBUG
   1175  1.146  christos 	u_int8_t sc0 = 0, sn0 = 0, cl0 = 0, ch0 = 0;
   1176  1.146  christos 	u_int8_t sc1 = 0, sn1 = 0, cl1 = 0, ch1 = 0;
   1177   1.70    bouyer #endif
   1178  1.137    bouyer 
   1179  1.137    bouyer 	if (poll)
   1180  1.137    bouyer 		nloop = WDCNDELAY_RST;
   1181  1.137    bouyer 	else
   1182  1.137    bouyer 		nloop = WDC_RESET_WAIT * hz / 1000;
   1183   1.31    bouyer 	/* wait for BSY to deassert */
   1184  1.137    bouyer 	for (timeout = 0; timeout < nloop; timeout++) {
   1185  1.109    bouyer 		if (chp->wdc && chp->wdc->cap & WDC_CAPABILITY_SELECT)
   1186  1.107       dbj 			chp->wdc->select(chp,0);
   1187  1.157      fvdl 		bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
   1188   1.31    bouyer 		    WDSD_IBM); /* master */
   1189   1.65    bouyer 		delay(10);
   1190  1.157      fvdl 		st0 = bus_space_read_1(chp->cmd_iot,
   1191  1.157      fvdl 		    chp->cmd_iohs[wd_status], 0);
   1192   1.70    bouyer #ifdef WDCDEBUG
   1193  1.157      fvdl 		sc0 = bus_space_read_1(chp->cmd_iot,
   1194  1.157      fvdl 		    chp->cmd_iohs[wd_seccnt], 0);
   1195  1.157      fvdl 		sn0 = bus_space_read_1(chp->cmd_iot,
   1196  1.157      fvdl 		    chp->cmd_iohs[wd_sector], 0);
   1197  1.157      fvdl 		cl0 = bus_space_read_1(chp->cmd_iot,
   1198  1.157      fvdl 		    chp->cmd_iohs[wd_cyl_lo], 0);
   1199  1.157      fvdl 		ch0 = bus_space_read_1(chp->cmd_iot,
   1200  1.157      fvdl 		    chp->cmd_iohs[wd_cyl_hi], 0);
   1201   1.70    bouyer #endif
   1202  1.109    bouyer 		if (chp->wdc && chp->wdc->cap & WDC_CAPABILITY_SELECT)
   1203  1.107       dbj 			chp->wdc->select(chp,1);
   1204  1.157      fvdl 		bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
   1205   1.31    bouyer 		    WDSD_IBM | 0x10); /* slave */
   1206   1.65    bouyer 		delay(10);
   1207  1.157      fvdl 		st1 = bus_space_read_1(chp->cmd_iot,
   1208  1.157      fvdl 		    chp->cmd_iohs[wd_status], 0);
   1209   1.70    bouyer #ifdef WDCDEBUG
   1210  1.157      fvdl 		sc1 = bus_space_read_1(chp->cmd_iot,
   1211  1.157      fvdl 		    chp->cmd_iohs[wd_seccnt], 0);
   1212  1.157      fvdl 		sn1 = bus_space_read_1(chp->cmd_iot,
   1213  1.157      fvdl 		    chp->cmd_iohs[wd_sector], 0);
   1214  1.157      fvdl 		cl1 = bus_space_read_1(chp->cmd_iot,
   1215  1.157      fvdl 		    chp->cmd_iohs[wd_cyl_lo], 0);
   1216  1.157      fvdl 		ch1 = bus_space_read_1(chp->cmd_iot,
   1217  1.157      fvdl 		    chp->cmd_iohs[wd_cyl_hi], 0);
   1218   1.70    bouyer #endif
   1219   1.31    bouyer 
   1220   1.31    bouyer 		if ((drv_mask & 0x01) == 0) {
   1221   1.31    bouyer 			/* no master */
   1222   1.31    bouyer 			if ((drv_mask & 0x02) != 0 && (st1 & WDCS_BSY) == 0) {
   1223   1.31    bouyer 				/* No master, slave is ready, it's done */
   1224   1.65    bouyer 				goto end;
   1225   1.31    bouyer 			}
   1226   1.31    bouyer 		} else if ((drv_mask & 0x02) == 0) {
   1227   1.31    bouyer 			/* no slave */
   1228   1.31    bouyer 			if ((drv_mask & 0x01) != 0 && (st0 & WDCS_BSY) == 0) {
   1229   1.31    bouyer 				/* No slave, master is ready, it's done */
   1230   1.65    bouyer 				goto end;
   1231   1.31    bouyer 			}
   1232    1.2    bouyer 		} else {
   1233   1.31    bouyer 			/* Wait for both master and slave to be ready */
   1234   1.31    bouyer 			if ((st0 & WDCS_BSY) == 0 && (st1 & WDCS_BSY) == 0) {
   1235   1.65    bouyer 				goto end;
   1236    1.2    bouyer 			}
   1237    1.2    bouyer 		}
   1238  1.137    bouyer 		if (poll)
   1239  1.137    bouyer 			delay(WDCDELAY);
   1240  1.137    bouyer 		else
   1241  1.137    bouyer 			tsleep(&nloop, PRIBIO, "atarst", 1);
   1242    1.2    bouyer 	}
   1243  1.116       wiz 	/* Reset timed out. Maybe it's because drv_mask was not right */
   1244   1.31    bouyer 	if (st0 & WDCS_BSY)
   1245   1.31    bouyer 		drv_mask &= ~0x01;
   1246   1.31    bouyer 	if (st1 & WDCS_BSY)
   1247   1.31    bouyer 		drv_mask &= ~0x02;
   1248   1.65    bouyer end:
   1249   1.70    bouyer 	WDCDEBUG_PRINT(("%s:%d:0: after reset, sc=0x%x sn=0x%x "
   1250   1.70    bouyer 	    "cl=0x%x ch=0x%x\n",
   1251   1.70    bouyer 	     chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe",
   1252   1.70    bouyer 	     chp->channel, sc0, sn0, cl0, ch0), DEBUG_PROBE);
   1253   1.70    bouyer 	WDCDEBUG_PRINT(("%s:%d:1: after reset, sc=0x%x sn=0x%x "
   1254   1.70    bouyer 	    "cl=0x%x ch=0x%x\n",
   1255   1.70    bouyer 	     chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe",
   1256   1.70    bouyer 	     chp->channel, sc1, sn1, cl1, ch1), DEBUG_PROBE);
   1257   1.70    bouyer 
   1258  1.149    bouyer 	WDCDEBUG_PRINT(("%s:%d: wdcwait_reset() end, st0=0x%x st1=0x%x\n",
   1259   1.65    bouyer 	    chp->wdc ? chp->wdc->sc_dev.dv_xname : "wdcprobe", chp->channel,
   1260  1.149    bouyer 	    st0, st1), DEBUG_PROBE);
   1261   1.65    bouyer 
   1262   1.31    bouyer 	return drv_mask;
   1263    1.2    bouyer }
   1264    1.2    bouyer 
   1265    1.2    bouyer /*
   1266   1.31    bouyer  * Wait for a drive to be !BSY, and have mask in its status register.
   1267   1.31    bouyer  * return -1 for a timeout after "timeout" ms.
   1268    1.2    bouyer  */
   1269   1.31    bouyer int
   1270  1.137    bouyer __wdcwait(chp, mask, bits, timeout)
   1271   1.31    bouyer 	struct channel_softc *chp;
   1272   1.31    bouyer 	int mask, bits, timeout;
   1273    1.2    bouyer {
   1274   1.31    bouyer 	u_char status;
   1275   1.31    bouyer 	int time = 0;
   1276   1.60       abs 
   1277  1.137    bouyer 	WDCDEBUG_PRINT(("__wdcwait %s:%d\n", chp->wdc ?chp->wdc->sc_dev.dv_xname
   1278   1.60       abs 	    :"none", chp->channel), DEBUG_STATUS);
   1279   1.31    bouyer 	chp->ch_error = 0;
   1280   1.31    bouyer 
   1281   1.31    bouyer 	timeout = timeout * 1000 / WDCDELAY; /* delay uses microseconds */
   1282    1.2    bouyer 
   1283   1.31    bouyer 	for (;;) {
   1284   1.31    bouyer 		chp->ch_status = status =
   1285  1.157      fvdl 		    bus_space_read_1(chp->cmd_iot, chp->cmd_iohs[wd_status], 0);
   1286  1.131   mycroft 		if ((status & (WDCS_BSY | mask)) == bits)
   1287   1.31    bouyer 			break;
   1288   1.31    bouyer 		if (++time > timeout) {
   1289  1.137    bouyer 			WDCDEBUG_PRINT(("__wdcwait: timeout (time=%d), "
   1290   1.87    bouyer 			    "status %x error %x (mask 0x%x bits 0x%x)\n",
   1291   1.87    bouyer 			    time, status,
   1292  1.157      fvdl 			    bus_space_read_1(chp->cmd_iot,
   1293  1.157      fvdl 				chp->cmd_iohs[wd_error], 0), mask, bits),
   1294   1.87    bouyer 			    DEBUG_STATUS | DEBUG_PROBE | DEBUG_DELAY);
   1295  1.137    bouyer 			return(WDCWAIT_TOUT);
   1296   1.31    bouyer 		}
   1297   1.31    bouyer 		delay(WDCDELAY);
   1298    1.2    bouyer 	}
   1299   1.87    bouyer #ifdef WDCDEBUG
   1300   1.87    bouyer 	if (time > 0 && (wdcdebug_mask & DEBUG_DELAY))
   1301  1.137    bouyer 		printf("__wdcwait: did busy-wait, time=%d\n", time);
   1302   1.87    bouyer #endif
   1303   1.31    bouyer 	if (status & WDCS_ERR)
   1304  1.157      fvdl 		chp->ch_error = bus_space_read_1(chp->cmd_iot,
   1305  1.157      fvdl 		    chp->cmd_iohs[wd_error], 0);
   1306   1.31    bouyer #ifdef WDCNDELAY_DEBUG
   1307   1.31    bouyer 	/* After autoconfig, there should be no long delays. */
   1308   1.31    bouyer 	if (!cold && time > WDCNDELAY_DEBUG) {
   1309   1.31    bouyer 		struct wdc_xfer *xfer = chp->ch_queue->sc_xfer.tqh_first;
   1310   1.31    bouyer 		if (xfer == NULL)
   1311   1.31    bouyer 			printf("%s channel %d: warning: busy-wait took %dus\n",
   1312   1.31    bouyer 			    chp->wdc->sc_dev.dv_xname, chp->channel,
   1313   1.31    bouyer 			    WDCDELAY * time);
   1314   1.31    bouyer 		else
   1315   1.31    bouyer 			printf("%s:%d:%d: warning: busy-wait took %dus\n",
   1316   1.49    bouyer 			    chp->wdc->sc_dev.dv_xname, chp->channel,
   1317   1.31    bouyer 			    xfer->drive,
   1318   1.31    bouyer 			    WDCDELAY * time);
   1319    1.2    bouyer 	}
   1320    1.2    bouyer #endif
   1321  1.137    bouyer 	return(WDCWAIT_OK);
   1322  1.137    bouyer }
   1323  1.137    bouyer 
   1324  1.137    bouyer /*
   1325  1.137    bouyer  * Call __wdcwait(), polling using tsleep() or waking up the kernel
   1326  1.137    bouyer  * thread if possible
   1327  1.137    bouyer  */
   1328  1.137    bouyer int
   1329  1.137    bouyer wdcwait(chp, mask, bits, timeout, flags)
   1330  1.137    bouyer 	struct channel_softc *chp;
   1331  1.137    bouyer 	int mask, bits, timeout, flags;
   1332  1.137    bouyer {
   1333  1.137    bouyer 	int error, i, timeout_hz = mstohz(timeout);
   1334  1.137    bouyer 
   1335  1.137    bouyer 	if (timeout_hz == 0 ||
   1336  1.137    bouyer 	    (flags & (AT_WAIT | AT_POLL)) == AT_POLL)
   1337  1.137    bouyer 		error = __wdcwait(chp, mask, bits, timeout);
   1338  1.137    bouyer 	else {
   1339  1.137    bouyer 		error = __wdcwait(chp, mask, bits, WDCDELAY_POLL);
   1340  1.137    bouyer 		if (error != 0) {
   1341  1.147    bouyer 			if ((chp->ch_flags & WDCF_TH_RUN) ||
   1342  1.147    bouyer 			    (flags & AT_WAIT)) {
   1343  1.137    bouyer 				/*
   1344  1.147    bouyer 				 * we're running in the channel thread
   1345  1.147    bouyer 				 * or some userland thread context
   1346  1.137    bouyer 				 */
   1347  1.137    bouyer 				for (i = 0; i < timeout_hz; i++) {
   1348  1.137    bouyer 					if (__wdcwait(chp, mask, bits,
   1349  1.137    bouyer 					    WDCDELAY_POLL) == 0) {
   1350  1.137    bouyer 						error = 0;
   1351  1.137    bouyer 						break;
   1352  1.137    bouyer 					}
   1353  1.137    bouyer 					tsleep(&chp, PRIBIO, "atapoll", 1);
   1354  1.137    bouyer 				}
   1355  1.137    bouyer 			} else {
   1356  1.137    bouyer 				/*
   1357  1.137    bouyer 				 * we're probably in interrupt context,
   1358  1.137    bouyer 				 * ask the thread to come back here
   1359  1.137    bouyer 				 */
   1360  1.147    bouyer #ifdef DIAGNOSTIC
   1361  1.148    bouyer 				if (chp->ch_queue->queue_freeze > 0)
   1362  1.148    bouyer 					panic("wdcwait: queue_freeze");
   1363  1.147    bouyer #endif
   1364  1.148    bouyer 				chp->ch_queue->queue_freeze++;
   1365  1.137    bouyer 				wakeup(&chp->thread);
   1366  1.137    bouyer 				return(WDCWAIT_THR);
   1367  1.137    bouyer 			}
   1368  1.137    bouyer 		}
   1369  1.137    bouyer 	}
   1370  1.137    bouyer 	return(error);
   1371    1.2    bouyer }
   1372    1.2    bouyer 
   1373  1.137    bouyer 
   1374   1.84    bouyer /*
   1375   1.84    bouyer  * Busy-wait for DMA to complete
   1376   1.84    bouyer  */
   1377   1.84    bouyer int
   1378   1.84    bouyer wdc_dmawait(chp, xfer, timeout)
   1379   1.84    bouyer 	struct channel_softc *chp;
   1380   1.84    bouyer 	struct wdc_xfer *xfer;
   1381   1.84    bouyer 	int timeout;
   1382   1.84    bouyer {
   1383   1.84    bouyer 	int time;
   1384   1.84    bouyer 	for (time = 0;  time < timeout * 1000 / WDCDELAY; time++) {
   1385   1.84    bouyer 		chp->wdc->dma_status =
   1386   1.84    bouyer 		    (*chp->wdc->dma_finish)(chp->wdc->dma_arg,
   1387   1.84    bouyer 			chp->channel, xfer->drive, 0);
   1388   1.84    bouyer 		if ((chp->wdc->dma_status & WDC_DMAST_NOIRQ) == 0)
   1389   1.84    bouyer 			return 0;
   1390   1.84    bouyer 		delay(WDCDELAY);
   1391   1.84    bouyer 	}
   1392   1.84    bouyer 	/* timeout, force a DMA halt */
   1393   1.84    bouyer 	chp->wdc->dma_status = (*chp->wdc->dma_finish)(chp->wdc->dma_arg,
   1394   1.84    bouyer 	    chp->channel, xfer->drive, 1);
   1395   1.84    bouyer 	return 1;
   1396   1.84    bouyer }
   1397   1.84    bouyer 
   1398   1.31    bouyer void
   1399   1.31    bouyer wdctimeout(arg)
   1400   1.31    bouyer 	void *arg;
   1401    1.2    bouyer {
   1402   1.31    bouyer 	struct channel_softc *chp = (struct channel_softc *)arg;
   1403   1.31    bouyer 	struct wdc_xfer *xfer = chp->ch_queue->sc_xfer.tqh_first;
   1404   1.31    bouyer 	int s;
   1405    1.2    bouyer 
   1406   1.31    bouyer 	WDCDEBUG_PRINT(("wdctimeout\n"), DEBUG_FUNCS);
   1407   1.31    bouyer 
   1408   1.31    bouyer 	s = splbio();
   1409   1.31    bouyer 	if ((chp->ch_flags & WDCF_IRQ_WAIT) != 0) {
   1410   1.31    bouyer 		__wdcerror(chp, "lost interrupt");
   1411   1.88       mrg 		printf("\ttype: %s tc_bcount: %d tc_skip: %d\n",
   1412   1.88       mrg 		    (xfer->c_flags & C_ATAPI) ?  "atapi" : "ata",
   1413   1.88       mrg 		    xfer->c_bcount,
   1414   1.88       mrg 		    xfer->c_skip);
   1415   1.84    bouyer 		if (chp->ch_flags & WDCF_DMA_WAIT) {
   1416   1.84    bouyer 			chp->wdc->dma_status =
   1417   1.84    bouyer 			    (*chp->wdc->dma_finish)(chp->wdc->dma_arg,
   1418   1.84    bouyer 				chp->channel, xfer->drive, 1);
   1419   1.84    bouyer 			chp->ch_flags &= ~WDCF_DMA_WAIT;
   1420   1.84    bouyer 		}
   1421   1.31    bouyer 		/*
   1422  1.119  drochner 		 * Call the interrupt routine. If we just missed an interrupt,
   1423   1.31    bouyer 		 * it will do what's needed. Else, it will take the needed
   1424   1.31    bouyer 		 * action (reset the device).
   1425   1.70    bouyer 		 * Before that we need to reinstall the timeout callback,
   1426   1.70    bouyer 		 * in case it will miss another irq while in this transfer
   1427   1.70    bouyer 		 * We arbitray chose it to be 1s
   1428   1.31    bouyer 		 */
   1429   1.81   thorpej 		callout_reset(&chp->ch_callout, hz, wdctimeout, chp);
   1430   1.31    bouyer 		xfer->c_flags |= C_TIMEOU;
   1431   1.31    bouyer 		chp->ch_flags &= ~WDCF_IRQ_WAIT;
   1432   1.66    bouyer 		xfer->c_intr(chp, xfer, 1);
   1433   1.31    bouyer 	} else
   1434   1.31    bouyer 		__wdcerror(chp, "missing untimeout");
   1435   1.31    bouyer 	splx(s);
   1436    1.2    bouyer }
   1437    1.2    bouyer 
   1438   1.31    bouyer /*
   1439  1.152       wiz  * Probe drive's capabilities, for use by the controller later
   1440   1.31    bouyer  * Assumes drvp points to an existing drive.
   1441   1.31    bouyer  * XXX this should be a controller-indep function
   1442   1.31    bouyer  */
   1443    1.2    bouyer void
   1444   1.31    bouyer wdc_probe_caps(drvp)
   1445   1.31    bouyer 	struct ata_drive_datas *drvp;
   1446    1.2    bouyer {
   1447   1.31    bouyer 	struct ataparams params, params2;
   1448   1.31    bouyer 	struct channel_softc *chp = drvp->chnl_softc;
   1449   1.31    bouyer 	struct device *drv_dev = drvp->drv_softc;
   1450   1.31    bouyer 	struct wdc_softc *wdc = chp->wdc;
   1451   1.31    bouyer 	int i, printed;
   1452   1.31    bouyer 	char *sep = "";
   1453   1.48    bouyer 	int cf_flags;
   1454   1.31    bouyer 
   1455  1.125   mycroft 	if (ata_get_params(drvp, AT_WAIT, &params) != CMD_OK) {
   1456   1.31    bouyer 		/* IDENTIFY failed. Can't tell more about the device */
   1457    1.2    bouyer 		return;
   1458    1.2    bouyer 	}
   1459   1.31    bouyer 	if ((wdc->cap & (WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32)) ==
   1460   1.31    bouyer 	    (WDC_CAPABILITY_DATA16 | WDC_CAPABILITY_DATA32)) {
   1461    1.2    bouyer 		/*
   1462   1.39    bouyer 		 * Controller claims 16 and 32 bit transfers.
   1463   1.39    bouyer 		 * Re-do an IDENTIFY with 32-bit transfers,
   1464   1.31    bouyer 		 * and compare results.
   1465    1.2    bouyer 		 */
   1466   1.31    bouyer 		drvp->drive_flags |= DRIVE_CAP32;
   1467  1.125   mycroft 		ata_get_params(drvp, AT_WAIT, &params2);
   1468   1.31    bouyer 		if (memcmp(&params, &params2, sizeof(struct ataparams)) != 0) {
   1469   1.31    bouyer 			/* Not good. fall back to 16bits */
   1470   1.31    bouyer 			drvp->drive_flags &= ~DRIVE_CAP32;
   1471   1.31    bouyer 		} else {
   1472  1.125   mycroft 			aprint_normal("%s: 32-bit data port\n",
   1473  1.123   thorpej 			    drv_dev->dv_xname);
   1474    1.2    bouyer 		}
   1475    1.2    bouyer 	}
   1476   1.55    bouyer #if 0 /* Some ultra-DMA drives claims to only support ATA-3. sigh */
   1477   1.55    bouyer 	if (params.atap_ata_major > 0x01 &&
   1478   1.55    bouyer 	    params.atap_ata_major != 0xffff) {
   1479   1.55    bouyer 		for (i = 14; i > 0; i--) {
   1480   1.55    bouyer 			if (params.atap_ata_major & (1 << i)) {
   1481  1.125   mycroft 				aprint_normal("%s: ATA version %d\n",
   1482  1.125   mycroft 				    drv_dev->dv_xname, i);
   1483   1.55    bouyer 				drvp->ata_vers = i;
   1484   1.55    bouyer 				break;
   1485   1.55    bouyer 			}
   1486   1.55    bouyer 		}
   1487  1.125   mycroft 	}
   1488   1.55    bouyer #endif
   1489    1.2    bouyer 
   1490   1.31    bouyer 	/* An ATAPI device is at last PIO mode 3 */
   1491   1.31    bouyer 	if (drvp->drive_flags & DRIVE_ATAPI)
   1492   1.31    bouyer 		drvp->PIO_mode = 3;
   1493    1.2    bouyer 
   1494    1.2    bouyer 	/*
   1495   1.31    bouyer 	 * It's not in the specs, but it seems that some drive
   1496   1.31    bouyer 	 * returns 0xffff in atap_extensions when this field is invalid
   1497    1.2    bouyer 	 */
   1498   1.31    bouyer 	if (params.atap_extensions != 0xffff &&
   1499   1.31    bouyer 	    (params.atap_extensions & WDC_EXT_MODES)) {
   1500   1.31    bouyer 		printed = 0;
   1501   1.31    bouyer 		/*
   1502   1.31    bouyer 		 * XXX some drives report something wrong here (they claim to
   1503   1.31    bouyer 		 * support PIO mode 8 !). As mode is coded on 3 bits in
   1504   1.31    bouyer 		 * SET FEATURE, limit it to 7 (so limit i to 4).
   1505  1.116       wiz 		 * If higher mode than 7 is found, abort.
   1506   1.31    bouyer 		 */
   1507   1.39    bouyer 		for (i = 7; i >= 0; i--) {
   1508   1.31    bouyer 			if ((params.atap_piomode_supp & (1 << i)) == 0)
   1509   1.31    bouyer 				continue;
   1510   1.39    bouyer 			if (i > 4)
   1511   1.39    bouyer 				return;
   1512   1.31    bouyer 			/*
   1513   1.31    bouyer 			 * See if mode is accepted.
   1514   1.31    bouyer 			 * If the controller can't set its PIO mode,
   1515   1.31    bouyer 			 * assume the defaults are good, so don't try
   1516   1.31    bouyer 			 * to set it
   1517   1.31    bouyer 			 */
   1518   1.31    bouyer 			if ((wdc->cap & WDC_CAPABILITY_MODE) != 0)
   1519  1.137    bouyer 				/*
   1520  1.137    bouyer 				 * It's OK to pool here, it's fast enouth
   1521  1.137    bouyer 				 * to not bother waiting for interrupt
   1522  1.137    bouyer 				 */
   1523   1.31    bouyer 				if (ata_set_mode(drvp, 0x08 | (i + 3),
   1524  1.125   mycroft 				   AT_WAIT) != CMD_OK)
   1525    1.2    bouyer 					continue;
   1526   1.31    bouyer 			if (!printed) {
   1527  1.123   thorpej 				aprint_normal("%s: drive supports PIO mode %d",
   1528   1.39    bouyer 				    drv_dev->dv_xname, i + 3);
   1529   1.31    bouyer 				sep = ",";
   1530   1.31    bouyer 				printed = 1;
   1531   1.31    bouyer 			}
   1532   1.31    bouyer 			/*
   1533   1.31    bouyer 			 * If controller's driver can't set its PIO mode,
   1534   1.31    bouyer 			 * get the highter one for the drive.
   1535   1.31    bouyer 			 */
   1536   1.31    bouyer 			if ((wdc->cap & WDC_CAPABILITY_MODE) == 0 ||
   1537   1.52    bouyer 			    wdc->PIO_cap >= i + 3) {
   1538   1.31    bouyer 				drvp->PIO_mode = i + 3;
   1539   1.48    bouyer 				drvp->PIO_cap = i + 3;
   1540    1.2    bouyer 				break;
   1541    1.2    bouyer 			}
   1542    1.2    bouyer 		}
   1543   1.31    bouyer 		if (!printed) {
   1544   1.31    bouyer 			/*
   1545   1.31    bouyer 			 * We didn't find a valid PIO mode.
   1546   1.31    bouyer 			 * Assume the values returned for DMA are buggy too
   1547   1.31    bouyer 			 */
   1548   1.31    bouyer 			return;
   1549    1.2    bouyer 		}
   1550   1.35    bouyer 		drvp->drive_flags |= DRIVE_MODE;
   1551   1.31    bouyer 		printed = 0;
   1552   1.31    bouyer 		for (i = 7; i >= 0; i--) {
   1553   1.31    bouyer 			if ((params.atap_dmamode_supp & (1 << i)) == 0)
   1554   1.31    bouyer 				continue;
   1555   1.31    bouyer 			if ((wdc->cap & WDC_CAPABILITY_DMA) &&
   1556   1.31    bouyer 			    (wdc->cap & WDC_CAPABILITY_MODE))
   1557  1.125   mycroft 				if (ata_set_mode(drvp, 0x20 | i, AT_WAIT)
   1558   1.31    bouyer 				    != CMD_OK)
   1559   1.31    bouyer 					continue;
   1560   1.31    bouyer 			if (!printed) {
   1561  1.123   thorpej 				aprint_normal("%s DMA mode %d", sep, i);
   1562   1.31    bouyer 				sep = ",";
   1563   1.31    bouyer 				printed = 1;
   1564   1.31    bouyer 			}
   1565   1.31    bouyer 			if (wdc->cap & WDC_CAPABILITY_DMA) {
   1566   1.31    bouyer 				if ((wdc->cap & WDC_CAPABILITY_MODE) &&
   1567   1.52    bouyer 				    wdc->DMA_cap < i)
   1568   1.31    bouyer 					continue;
   1569   1.31    bouyer 				drvp->DMA_mode = i;
   1570   1.48    bouyer 				drvp->DMA_cap = i;
   1571   1.31    bouyer 				drvp->drive_flags |= DRIVE_DMA;
   1572   1.31    bouyer 			}
   1573    1.2    bouyer 			break;
   1574    1.2    bouyer 		}
   1575   1.31    bouyer 		if (params.atap_extensions & WDC_EXT_UDMA_MODES) {
   1576   1.71    bouyer 			printed = 0;
   1577   1.31    bouyer 			for (i = 7; i >= 0; i--) {
   1578   1.31    bouyer 				if ((params.atap_udmamode_supp & (1 << i))
   1579   1.31    bouyer 				    == 0)
   1580   1.31    bouyer 					continue;
   1581   1.31    bouyer 				if ((wdc->cap & WDC_CAPABILITY_MODE) &&
   1582   1.31    bouyer 				    (wdc->cap & WDC_CAPABILITY_UDMA))
   1583   1.31    bouyer 					if (ata_set_mode(drvp, 0x40 | i,
   1584  1.125   mycroft 					    AT_WAIT) != CMD_OK)
   1585   1.31    bouyer 						continue;
   1586   1.71    bouyer 				if (!printed) {
   1587  1.123   thorpej 					aprint_normal("%s Ultra-DMA mode %d",
   1588  1.123   thorpej 					    sep, i);
   1589   1.93  wrstuden 					if (i == 2)
   1590  1.123   thorpej 						aprint_normal(" (Ultra/33)");
   1591   1.93  wrstuden 					else if (i == 4)
   1592  1.123   thorpej 						aprint_normal(" (Ultra/66)");
   1593   1.93  wrstuden 					else if (i == 5)
   1594  1.123   thorpej 						aprint_normal(" (Ultra/100)");
   1595  1.117    bouyer 					else if (i == 6)
   1596  1.123   thorpej 						aprint_normal(" (Ultra/133)");
   1597   1.71    bouyer 					sep = ",";
   1598   1.71    bouyer 					printed = 1;
   1599   1.71    bouyer 				}
   1600   1.31    bouyer 				if (wdc->cap & WDC_CAPABILITY_UDMA) {
   1601   1.50    bouyer 					if ((wdc->cap & WDC_CAPABILITY_MODE) &&
   1602   1.52    bouyer 					    wdc->UDMA_cap < i)
   1603   1.50    bouyer 						continue;
   1604   1.31    bouyer 					drvp->UDMA_mode = i;
   1605   1.48    bouyer 					drvp->UDMA_cap = i;
   1606   1.31    bouyer 					drvp->drive_flags |= DRIVE_UDMA;
   1607   1.31    bouyer 				}
   1608   1.31    bouyer 				break;
   1609   1.31    bouyer 			}
   1610   1.31    bouyer 		}
   1611  1.123   thorpej 		aprint_normal("\n");
   1612   1.55    bouyer 	}
   1613   1.55    bouyer 
   1614   1.55    bouyer 	/* Try to guess ATA version here, if it didn't get reported */
   1615   1.55    bouyer 	if (drvp->ata_vers == 0) {
   1616   1.55    bouyer 		if (drvp->drive_flags & DRIVE_UDMA)
   1617   1.55    bouyer 			drvp->ata_vers = 4; /* should be at last ATA-4 */
   1618   1.55    bouyer 		else if (drvp->PIO_cap > 2)
   1619   1.55    bouyer 			drvp->ata_vers = 2; /* should be at last ATA-2 */
   1620   1.48    bouyer 	}
   1621   1.48    bouyer 	cf_flags = drv_dev->dv_cfdata->cf_flags;
   1622   1.48    bouyer 	if (cf_flags & ATA_CONFIG_PIO_SET) {
   1623   1.48    bouyer 		drvp->PIO_mode =
   1624   1.48    bouyer 		    (cf_flags & ATA_CONFIG_PIO_MODES) >> ATA_CONFIG_PIO_OFF;
   1625   1.48    bouyer 		drvp->drive_flags |= DRIVE_MODE;
   1626   1.48    bouyer 	}
   1627   1.48    bouyer 	if ((wdc->cap & WDC_CAPABILITY_DMA) == 0) {
   1628   1.48    bouyer 		/* don't care about DMA modes */
   1629   1.48    bouyer 		return;
   1630   1.48    bouyer 	}
   1631   1.48    bouyer 	if (cf_flags & ATA_CONFIG_DMA_SET) {
   1632   1.48    bouyer 		if ((cf_flags & ATA_CONFIG_DMA_MODES) ==
   1633   1.48    bouyer 		    ATA_CONFIG_DMA_DISABLE) {
   1634   1.48    bouyer 			drvp->drive_flags &= ~DRIVE_DMA;
   1635   1.48    bouyer 		} else {
   1636   1.48    bouyer 			drvp->DMA_mode = (cf_flags & ATA_CONFIG_DMA_MODES) >>
   1637   1.48    bouyer 			    ATA_CONFIG_DMA_OFF;
   1638   1.48    bouyer 			drvp->drive_flags |= DRIVE_DMA | DRIVE_MODE;
   1639   1.48    bouyer 		}
   1640  1.101    bouyer 	}
   1641  1.101    bouyer 	if ((wdc->cap & WDC_CAPABILITY_UDMA) == 0) {
   1642  1.101    bouyer 		/* don't care about UDMA modes */
   1643  1.101    bouyer 		return;
   1644   1.48    bouyer 	}
   1645   1.48    bouyer 	if (cf_flags & ATA_CONFIG_UDMA_SET) {
   1646   1.48    bouyer 		if ((cf_flags & ATA_CONFIG_UDMA_MODES) ==
   1647   1.48    bouyer 		    ATA_CONFIG_UDMA_DISABLE) {
   1648   1.48    bouyer 			drvp->drive_flags &= ~DRIVE_UDMA;
   1649   1.48    bouyer 		} else {
   1650   1.48    bouyer 			drvp->UDMA_mode = (cf_flags & ATA_CONFIG_UDMA_MODES) >>
   1651   1.48    bouyer 			    ATA_CONFIG_UDMA_OFF;
   1652   1.48    bouyer 			drvp->drive_flags |= DRIVE_UDMA | DRIVE_MODE;
   1653   1.48    bouyer 		}
   1654    1.2    bouyer 	}
   1655   1.54    bouyer }
   1656   1.54    bouyer 
   1657   1.54    bouyer /*
   1658   1.56    bouyer  * downgrade the transfer mode of a drive after an error. return 1 if
   1659   1.54    bouyer  * downgrade was possible, 0 otherwise.
   1660   1.54    bouyer  */
   1661   1.54    bouyer int
   1662  1.137    bouyer wdc_downgrade_mode(drvp, flags)
   1663   1.54    bouyer 	struct ata_drive_datas *drvp;
   1664   1.54    bouyer {
   1665   1.54    bouyer 	struct channel_softc *chp = drvp->chnl_softc;
   1666   1.54    bouyer 	struct device *drv_dev = drvp->drv_softc;
   1667   1.54    bouyer 	struct wdc_softc *wdc = chp->wdc;
   1668   1.54    bouyer 	int cf_flags = drv_dev->dv_cfdata->cf_flags;
   1669   1.54    bouyer 
   1670   1.54    bouyer 	/* if drive or controller don't know its mode, we can't do much */
   1671   1.54    bouyer 	if ((drvp->drive_flags & DRIVE_MODE) == 0 ||
   1672   1.54    bouyer 	    (wdc->cap & WDC_CAPABILITY_MODE) == 0)
   1673   1.54    bouyer 		return 0;
   1674   1.54    bouyer 	/* current drive mode was set by a config flag, let it this way */
   1675   1.54    bouyer 	if ((cf_flags & ATA_CONFIG_PIO_SET) ||
   1676   1.54    bouyer 	    (cf_flags & ATA_CONFIG_DMA_SET) ||
   1677   1.54    bouyer 	    (cf_flags & ATA_CONFIG_UDMA_SET))
   1678   1.54    bouyer 		return 0;
   1679   1.54    bouyer 
   1680   1.61    bouyer 	/*
   1681   1.73    bouyer 	 * If we were using Ultra-DMA mode > 2, downgrade to mode 2 first.
   1682   1.73    bouyer 	 * Maybe we didn't properly notice the cable type
   1683   1.78    bouyer 	 * If we were using Ultra-DMA mode 2, downgrade to mode 1 first.
   1684   1.78    bouyer 	 * It helps in some cases.
   1685   1.73    bouyer 	 */
   1686   1.78    bouyer 	if ((drvp->drive_flags & DRIVE_UDMA) && drvp->UDMA_mode >= 2) {
   1687   1.78    bouyer 		drvp->UDMA_mode = (drvp->UDMA_mode == 2) ? 1 : 2;
   1688   1.78    bouyer 		printf("%s: transfer error, downgrading to Ultra-DMA mode %d\n",
   1689   1.73    bouyer 		    drv_dev->dv_xname, drvp->UDMA_mode);
   1690   1.73    bouyer 	}
   1691   1.73    bouyer 
   1692   1.73    bouyer 	/*
   1693   1.61    bouyer 	 * If we were using ultra-DMA, don't downgrade to multiword DMA
   1694   1.61    bouyer 	 * if we noticed a CRC error. It has been noticed that CRC errors
   1695   1.61    bouyer 	 * in ultra-DMA lead to silent data corruption in multiword DMA.
   1696   1.61    bouyer 	 * Data corruption is less likely to occur in PIO mode.
   1697   1.61    bouyer 	 */
   1698   1.73    bouyer 	else if ((drvp->drive_flags & DRIVE_UDMA) &&
   1699   1.61    bouyer 	    (drvp->drive_flags & DRIVE_DMAERR) == 0) {
   1700   1.54    bouyer 		drvp->drive_flags &= ~DRIVE_UDMA;
   1701   1.54    bouyer 		drvp->drive_flags |= DRIVE_DMA;
   1702   1.54    bouyer 		drvp->DMA_mode = drvp->DMA_cap;
   1703   1.56    bouyer 		printf("%s: transfer error, downgrading to DMA mode %d\n",
   1704   1.54    bouyer 		    drv_dev->dv_xname, drvp->DMA_mode);
   1705   1.61    bouyer 	} else if (drvp->drive_flags & (DRIVE_DMA | DRIVE_UDMA)) {
   1706   1.61    bouyer 		drvp->drive_flags &= ~(DRIVE_DMA | DRIVE_UDMA);
   1707   1.54    bouyer 		drvp->PIO_mode = drvp->PIO_cap;
   1708   1.56    bouyer 		printf("%s: transfer error, downgrading to PIO mode %d\n",
   1709   1.54    bouyer 		    drv_dev->dv_xname, drvp->PIO_mode);
   1710   1.54    bouyer 	} else /* already using PIO, can't downgrade */
   1711   1.54    bouyer 		return 0;
   1712   1.54    bouyer 
   1713   1.54    bouyer 	wdc->set_modes(chp);
   1714  1.137    bouyer 	wdc_print_modes(chp);
   1715  1.137    bouyer 	/* reset the channel, which will shedule all drives for setup */
   1716  1.137    bouyer 	wdc_reset_channel(drvp, flags);
   1717   1.54    bouyer 	return 1;
   1718    1.2    bouyer }
   1719    1.2    bouyer 
   1720    1.2    bouyer int
   1721   1.31    bouyer wdc_exec_command(drvp, wdc_c)
   1722   1.31    bouyer 	struct ata_drive_datas *drvp;
   1723   1.31    bouyer 	struct wdc_command *wdc_c;
   1724   1.31    bouyer {
   1725   1.31    bouyer 	struct channel_softc *chp = drvp->chnl_softc;
   1726    1.2    bouyer 	struct wdc_xfer *xfer;
   1727   1.31    bouyer 	int s, ret;
   1728    1.2    bouyer 
   1729   1.34    bouyer 	WDCDEBUG_PRINT(("wdc_exec_command %s:%d:%d\n",
   1730   1.34    bouyer 	    chp->wdc->sc_dev.dv_xname, chp->channel, drvp->drive),
   1731   1.34    bouyer 	    DEBUG_FUNCS);
   1732    1.2    bouyer 
   1733   1.31    bouyer 	/* set up an xfer and queue. Wait for completion */
   1734   1.31    bouyer 	xfer = wdc_get_xfer(wdc_c->flags & AT_WAIT ? WDC_CANSLEEP :
   1735   1.31    bouyer 	    WDC_NOSLEEP);
   1736   1.31    bouyer 	if (xfer == NULL) {
   1737   1.31    bouyer 		return WDC_TRY_AGAIN;
   1738   1.31    bouyer 	 }
   1739    1.2    bouyer 
   1740   1.98     bjh21 	if (chp->wdc->cap & WDC_CAPABILITY_NOIRQ)
   1741   1.98     bjh21 		wdc_c->flags |= AT_POLL;
   1742   1.31    bouyer 	if (wdc_c->flags & AT_POLL)
   1743   1.31    bouyer 		xfer->c_flags |= C_POLL;
   1744   1.31    bouyer 	xfer->drive = drvp->drive;
   1745   1.31    bouyer 	xfer->databuf = wdc_c->data;
   1746   1.31    bouyer 	xfer->c_bcount = wdc_c->bcount;
   1747   1.31    bouyer 	xfer->cmd = wdc_c;
   1748   1.31    bouyer 	xfer->c_start = __wdccommand_start;
   1749   1.31    bouyer 	xfer->c_intr = __wdccommand_intr;
   1750   1.75     enami 	xfer->c_kill_xfer = __wdccommand_done;
   1751    1.2    bouyer 
   1752   1.31    bouyer 	s = splbio();
   1753   1.31    bouyer 	wdc_exec_xfer(chp, xfer);
   1754   1.31    bouyer #ifdef DIAGNOSTIC
   1755   1.31    bouyer 	if ((wdc_c->flags & AT_POLL) != 0 &&
   1756   1.31    bouyer 	    (wdc_c->flags & AT_DONE) == 0)
   1757  1.118    provos 		panic("wdc_exec_command: polled command not done");
   1758    1.2    bouyer #endif
   1759   1.31    bouyer 	if (wdc_c->flags & AT_DONE) {
   1760   1.31    bouyer 		ret = WDC_COMPLETE;
   1761   1.31    bouyer 	} else {
   1762   1.31    bouyer 		if (wdc_c->flags & AT_WAIT) {
   1763   1.69    bouyer 			while ((wdc_c->flags & AT_DONE) == 0) {
   1764   1.69    bouyer 				tsleep(wdc_c, PRIBIO, "wdccmd", 0);
   1765   1.69    bouyer 			}
   1766   1.31    bouyer 			ret = WDC_COMPLETE;
   1767   1.31    bouyer 		} else {
   1768   1.31    bouyer 			ret = WDC_QUEUED;
   1769    1.2    bouyer 		}
   1770    1.2    bouyer 	}
   1771   1.31    bouyer 	splx(s);
   1772   1.31    bouyer 	return ret;
   1773    1.2    bouyer }
   1774    1.2    bouyer 
   1775    1.2    bouyer void
   1776   1.31    bouyer __wdccommand_start(chp, xfer)
   1777   1.31    bouyer 	struct channel_softc *chp;
   1778    1.2    bouyer 	struct wdc_xfer *xfer;
   1779   1.31    bouyer {
   1780   1.31    bouyer 	int drive = xfer->drive;
   1781   1.31    bouyer 	struct wdc_command *wdc_c = xfer->cmd;
   1782   1.31    bouyer 
   1783   1.34    bouyer 	WDCDEBUG_PRINT(("__wdccommand_start %s:%d:%d\n",
   1784   1.34    bouyer 	    chp->wdc->sc_dev.dv_xname, chp->channel, xfer->drive),
   1785   1.34    bouyer 	    DEBUG_FUNCS);
   1786   1.31    bouyer 
   1787  1.107       dbj 	if (chp->wdc->cap & WDC_CAPABILITY_SELECT)
   1788  1.107       dbj 		chp->wdc->select(chp,drive);
   1789  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
   1790   1.31    bouyer 	    WDSD_IBM | (drive << 4));
   1791  1.137    bouyer 	switch(wdcwait(chp, wdc_c->r_st_bmask | WDCS_DRQ,
   1792  1.137    bouyer 	    wdc_c->r_st_bmask, wdc_c->timeout, wdc_c->flags)) {
   1793  1.137    bouyer 	case WDCWAIT_OK:
   1794  1.137    bouyer 		break;
   1795  1.137    bouyer 	case WDCWAIT_TOUT:
   1796   1.31    bouyer 		wdc_c->flags |= AT_TIMEOU;
   1797   1.31    bouyer 		__wdccommand_done(chp, xfer);
   1798   1.53    bouyer 		return;
   1799  1.137    bouyer 	case WDCWAIT_THR:
   1800  1.137    bouyer 		return;
   1801   1.31    bouyer 	}
   1802  1.135    bouyer 	if (wdc_c->flags & AT_POLL) {
   1803  1.135    bouyer 		/* polled command, disable interrupts */
   1804  1.135    bouyer 		bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr,
   1805  1.135    bouyer 		    WDCTL_4BIT | WDCTL_IDS);
   1806  1.135    bouyer 	}
   1807   1.31    bouyer 	wdccommand(chp, drive, wdc_c->r_command, wdc_c->r_cyl, wdc_c->r_head,
   1808   1.31    bouyer 	    wdc_c->r_sector, wdc_c->r_count, wdc_c->r_precomp);
   1809  1.139    bouyer 
   1810   1.31    bouyer 	if ((wdc_c->flags & AT_POLL) == 0) {
   1811   1.31    bouyer 		chp->ch_flags |= WDCF_IRQ_WAIT; /* wait for interrupt */
   1812   1.81   thorpej 		callout_reset(&chp->ch_callout, wdc_c->timeout / 1000 * hz,
   1813   1.81   thorpej 		    wdctimeout, chp);
   1814   1.31    bouyer 		return;
   1815    1.2    bouyer 	}
   1816    1.2    bouyer 	/*
   1817   1.31    bouyer 	 * Polled command. Wait for drive ready or drq. Done in intr().
   1818   1.31    bouyer 	 * Wait for at last 400ns for status bit to be valid.
   1819    1.2    bouyer 	 */
   1820  1.134   mycroft 	delay(10);	/* 400ns delay */
   1821   1.66    bouyer 	__wdccommand_intr(chp, xfer, 0);
   1822    1.2    bouyer }
   1823    1.2    bouyer 
   1824    1.2    bouyer int
   1825   1.66    bouyer __wdccommand_intr(chp, xfer, irq)
   1826   1.31    bouyer 	struct channel_softc *chp;
   1827   1.31    bouyer 	struct wdc_xfer *xfer;
   1828   1.66    bouyer 	int irq;
   1829    1.2    bouyer {
   1830   1.31    bouyer 	struct wdc_command *wdc_c = xfer->cmd;
   1831   1.31    bouyer 	int bcount = wdc_c->bcount;
   1832   1.31    bouyer 	char *data = wdc_c->data;
   1833  1.137    bouyer 	int wflags;
   1834  1.137    bouyer 
   1835  1.137    bouyer 	if ((wdc_c->flags & (AT_WAIT | AT_POLL)) == (AT_WAIT | AT_POLL)) {
   1836  1.137    bouyer 		/* both wait and poll, we can tsleep here */
   1837  1.147    bouyer 		wflags = AT_WAIT | AT_POLL;
   1838  1.137    bouyer 	} else {
   1839  1.137    bouyer 		wflags = AT_POLL;
   1840  1.137    bouyer 	}
   1841   1.31    bouyer 
   1842  1.114    bouyer again:
   1843   1.34    bouyer 	WDCDEBUG_PRINT(("__wdccommand_intr %s:%d:%d\n",
   1844   1.34    bouyer 	    chp->wdc->sc_dev.dv_xname, chp->channel, xfer->drive), DEBUG_INTR);
   1845  1.137    bouyer 	/*
   1846  1.137    bouyer 	 * after a ATAPI_SOFT_RESET, the device will have released the bus.
   1847  1.137    bouyer 	 * Reselect again, it doesn't hurt for others commands, and the time
   1848  1.137    bouyer 	 * penalty for the extra regiter write is acceptable,
   1849  1.137    bouyer 	 * wdc_exec_command() isn't called often (mosly for autoconfig)
   1850  1.137    bouyer 	 */
   1851  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
   1852  1.137    bouyer 	    WDSD_IBM | (xfer->drive << 4));
   1853  1.114    bouyer 	if ((wdc_c->flags & AT_XFDONE) != 0) {
   1854  1.114    bouyer 		/*
   1855  1.114    bouyer 		 * We have completed a data xfer. The drive should now be
   1856  1.114    bouyer 		 * in its initial state
   1857  1.114    bouyer 		 */
   1858  1.114    bouyer 		if (wdcwait(chp, wdc_c->r_st_bmask | WDCS_DRQ,
   1859  1.137    bouyer 		    wdc_c->r_st_bmask, (irq == 0)  ? wdc_c->timeout : 0,
   1860  1.137    bouyer 		    wflags) ==  WDCWAIT_TOUT) {
   1861  1.114    bouyer 			if (irq && (xfer->c_flags & C_TIMEOU) == 0)
   1862  1.114    bouyer 				return 0; /* IRQ was not for us */
   1863  1.114    bouyer 			wdc_c->flags |= AT_TIMEOU;
   1864  1.114    bouyer 		}
   1865  1.131   mycroft 		goto out;
   1866  1.114    bouyer 	}
   1867   1.31    bouyer 	if (wdcwait(chp, wdc_c->r_st_pmask, wdc_c->r_st_pmask,
   1868  1.137    bouyer 	     (irq == 0)  ? wdc_c->timeout : 0, wflags) == WDCWAIT_TOUT) {
   1869   1.66    bouyer 		if (irq && (xfer->c_flags & C_TIMEOU) == 0)
   1870   1.63    bouyer 			return 0; /* IRQ was not for us */
   1871   1.63    bouyer 		wdc_c->flags |= AT_TIMEOU;
   1872  1.131   mycroft 		goto out;
   1873    1.2    bouyer 	}
   1874   1.91    bouyer 	if (chp->wdc->cap & WDC_CAPABILITY_IRQACK)
   1875   1.91    bouyer 		chp->wdc->irqack(chp);
   1876   1.31    bouyer 	if (wdc_c->flags & AT_READ) {
   1877  1.131   mycroft 		if ((chp->ch_status & WDCS_DRQ) == 0) {
   1878  1.131   mycroft 			wdc_c->flags |= AT_TIMEOU;
   1879  1.131   mycroft 			goto out;
   1880  1.131   mycroft 		}
   1881   1.31    bouyer 		if (chp->ch_drive[xfer->drive].drive_flags & DRIVE_CAP32) {
   1882   1.31    bouyer 			bus_space_read_multi_4(chp->data32iot, chp->data32ioh,
   1883   1.31    bouyer 			    0, (u_int32_t*)data, bcount >> 2);
   1884   1.31    bouyer 			data += bcount & 0xfffffffc;
   1885   1.31    bouyer 			bcount = bcount & 0x03;
   1886   1.31    bouyer 		}
   1887   1.31    bouyer 		if (bcount > 0)
   1888  1.157      fvdl 			bus_space_read_multi_2(chp->cmd_iot,
   1889  1.157      fvdl 			    chp->cmd_iohs[wd_data], 0,
   1890  1.157      fvdl 			    (u_int16_t *)data, bcount >> 1);
   1891  1.114    bouyer 		/* at this point the drive should be in its initial state */
   1892  1.114    bouyer 		wdc_c->flags |= AT_XFDONE;
   1893  1.137    bouyer 		/* XXX should read status register here ? */
   1894  1.131   mycroft 	} else if (wdc_c->flags & AT_WRITE) {
   1895  1.131   mycroft 		if ((chp->ch_status & WDCS_DRQ) == 0) {
   1896  1.114    bouyer 			wdc_c->flags |= AT_TIMEOU;
   1897  1.131   mycroft 			goto out;
   1898  1.131   mycroft 		}
   1899   1.31    bouyer 		if (chp->ch_drive[xfer->drive].drive_flags & DRIVE_CAP32) {
   1900   1.31    bouyer 			bus_space_write_multi_4(chp->data32iot, chp->data32ioh,
   1901   1.31    bouyer 			    0, (u_int32_t*)data, bcount >> 2);
   1902   1.31    bouyer 			data += bcount & 0xfffffffc;
   1903   1.31    bouyer 			bcount = bcount & 0x03;
   1904   1.31    bouyer 		}
   1905   1.31    bouyer 		if (bcount > 0)
   1906  1.157      fvdl 			bus_space_write_multi_2(chp->cmd_iot,
   1907  1.157      fvdl 			    chp->cmd_iohs[wd_data], 0,
   1908  1.157      fvdl 			    (u_int16_t *)data, bcount >> 1);
   1909  1.114    bouyer 		wdc_c->flags |= AT_XFDONE;
   1910  1.114    bouyer 		if ((wdc_c->flags & AT_POLL) == 0) {
   1911  1.114    bouyer 			chp->ch_flags |= WDCF_IRQ_WAIT; /* wait for interrupt */
   1912  1.114    bouyer 			callout_reset(&chp->ch_callout,
   1913  1.114    bouyer 			    wdc_c->timeout / 1000 * hz, wdctimeout, chp);
   1914  1.114    bouyer 			return 1;
   1915  1.114    bouyer 		} else {
   1916  1.114    bouyer 			goto again;
   1917  1.114    bouyer 		}
   1918    1.2    bouyer 	}
   1919  1.131   mycroft out:
   1920   1.31    bouyer 	__wdccommand_done(chp, xfer);
   1921   1.31    bouyer 	return 1;
   1922    1.2    bouyer }
   1923    1.2    bouyer 
   1924    1.2    bouyer void
   1925   1.31    bouyer __wdccommand_done(chp, xfer)
   1926   1.31    bouyer 	struct channel_softc *chp;
   1927   1.31    bouyer 	struct wdc_xfer *xfer;
   1928    1.2    bouyer {
   1929   1.31    bouyer 	struct wdc_command *wdc_c = xfer->cmd;
   1930    1.2    bouyer 
   1931   1.34    bouyer 	WDCDEBUG_PRINT(("__wdccommand_done %s:%d:%d\n",
   1932   1.34    bouyer 	    chp->wdc->sc_dev.dv_xname, chp->channel, xfer->drive), DEBUG_FUNCS);
   1933   1.70    bouyer 
   1934   1.81   thorpej 	callout_stop(&chp->ch_callout);
   1935   1.70    bouyer 
   1936   1.31    bouyer 	if (chp->ch_status & WDCS_DWF)
   1937   1.31    bouyer 		wdc_c->flags |= AT_DF;
   1938   1.31    bouyer 	if (chp->ch_status & WDCS_ERR) {
   1939   1.31    bouyer 		wdc_c->flags |= AT_ERROR;
   1940   1.31    bouyer 		wdc_c->r_error = chp->ch_error;
   1941   1.31    bouyer 	}
   1942   1.31    bouyer 	wdc_c->flags |= AT_DONE;
   1943   1.80     enami 	if ((wdc_c->flags & AT_READREG) != 0 &&
   1944   1.80     enami 	    (chp->wdc->sc_dev.dv_flags & DVF_ACTIVE) != 0 &&
   1945   1.75     enami 	    (wdc_c->flags & (AT_ERROR | AT_DF)) == 0) {
   1946  1.157      fvdl 		wdc_c->r_head = bus_space_read_1(chp->cmd_iot,
   1947  1.157      fvdl 		    chp->cmd_iohs[wd_sdh], 0);
   1948  1.157      fvdl 		wdc_c->r_cyl = bus_space_read_1(chp->cmd_iot,
   1949  1.157      fvdl 		    chp->cmd_iohs[wd_cyl_hi], 0) << 8;
   1950  1.157      fvdl 		wdc_c->r_cyl |= bus_space_read_1(chp->cmd_iot,
   1951  1.157      fvdl 		    chp->cmd_iohs[wd_cyl_lo], 0);
   1952  1.157      fvdl 		wdc_c->r_sector = bus_space_read_1(chp->cmd_iot,
   1953  1.157      fvdl 		    chp->cmd_iohs[wd_sector], 0);
   1954  1.157      fvdl 		wdc_c->r_count = bus_space_read_1(chp->cmd_iot,
   1955  1.157      fvdl 		    chp->cmd_iohs[wd_seccnt], 0);
   1956  1.157      fvdl 		wdc_c->r_error = bus_space_read_1(chp->cmd_iot,
   1957  1.157      fvdl 		    chp->cmd_iohs[wd_error], 0);
   1958  1.157      fvdl 		wdc_c->r_precomp = bus_space_read_1(chp->cmd_iot,
   1959  1.157      fvdl 		    chp->cmd_iohs[wd_precomp], 0);
   1960  1.135    bouyer 	}
   1961  1.137    bouyer 
   1962  1.135    bouyer 	if (wdc_c->flags & AT_POLL) {
   1963  1.135    bouyer 		/* enable interrupts */
   1964  1.135    bouyer 		bus_space_write_1(chp->ctl_iot, chp->ctl_ioh, wd_aux_ctlr,
   1965  1.135    bouyer 		    WDCTL_4BIT);
   1966   1.46      kenh 	}
   1967   1.31    bouyer 	wdc_free_xfer(chp, xfer);
   1968   1.71    bouyer 	if (wdc_c->flags & AT_WAIT)
   1969   1.71    bouyer 		wakeup(wdc_c);
   1970   1.71    bouyer 	else if (wdc_c->callback)
   1971   1.71    bouyer 		wdc_c->callback(wdc_c->callback_arg);
   1972   1.45  drochner 	wdcstart(chp);
   1973   1.31    bouyer 	return;
   1974    1.2    bouyer }
   1975    1.2    bouyer 
   1976    1.2    bouyer /*
   1977   1.31    bouyer  * Send a command. The drive should be ready.
   1978    1.2    bouyer  * Assumes interrupts are blocked.
   1979    1.2    bouyer  */
   1980   1.31    bouyer void
   1981   1.31    bouyer wdccommand(chp, drive, command, cylin, head, sector, count, precomp)
   1982   1.31    bouyer 	struct channel_softc *chp;
   1983   1.31    bouyer 	u_int8_t drive;
   1984   1.31    bouyer 	u_int8_t command;
   1985   1.31    bouyer 	u_int16_t cylin;
   1986   1.31    bouyer 	u_int8_t head, sector, count, precomp;
   1987   1.31    bouyer {
   1988   1.31    bouyer 	WDCDEBUG_PRINT(("wdccommand %s:%d:%d: command=0x%x cylin=%d head=%d "
   1989   1.31    bouyer 	    "sector=%d count=%d precomp=%d\n", chp->wdc->sc_dev.dv_xname,
   1990   1.31    bouyer 	    chp->channel, drive, command, cylin, head, sector, count, precomp),
   1991   1.31    bouyer 	    DEBUG_FUNCS);
   1992   1.31    bouyer 
   1993  1.107       dbj 	if (chp->wdc->cap & WDC_CAPABILITY_SELECT)
   1994  1.107       dbj 		chp->wdc->select(chp,drive);
   1995  1.107       dbj 
   1996   1.31    bouyer 	/* Select drive, head, and addressing mode. */
   1997  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
   1998   1.31    bouyer 	    WDSD_IBM | (drive << 4) | head);
   1999   1.31    bouyer 	/* Load parameters. wd_features(ATA/ATAPI) = wd_precomp(ST506) */
   2000  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_precomp], 0,
   2001   1.31    bouyer 	    precomp);
   2002  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_cyl_lo], 0, cylin);
   2003  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_cyl_hi],
   2004  1.157      fvdl 	    0, cylin >> 8);
   2005  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sector], 0, sector);
   2006  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_seccnt], 0, count);
   2007  1.108  christos 
   2008  1.108  christos 	/* Send command. */
   2009  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_command], 0, command);
   2010  1.108  christos 	return;
   2011  1.108  christos }
   2012  1.108  christos 
   2013  1.108  christos /*
   2014  1.108  christos  * Send a 48-bit addressing command. The drive should be ready.
   2015  1.108  christos  * Assumes interrupts are blocked.
   2016  1.108  christos  */
   2017  1.108  christos void
   2018  1.108  christos wdccommandext(chp, drive, command, blkno, count)
   2019  1.108  christos 	struct channel_softc *chp;
   2020  1.108  christos 	u_int8_t drive;
   2021  1.108  christos 	u_int8_t command;
   2022  1.108  christos 	u_int64_t blkno;
   2023  1.108  christos 	u_int16_t count;
   2024  1.108  christos {
   2025  1.108  christos 	WDCDEBUG_PRINT(("wdccommandext %s:%d:%d: command=0x%x blkno=%d "
   2026  1.108  christos 	    "count=%d\n", chp->wdc->sc_dev.dv_xname,
   2027  1.108  christos 	    chp->channel, drive, command, (u_int32_t) blkno, count),
   2028  1.108  christos 	    DEBUG_FUNCS);
   2029  1.108  christos 
   2030  1.108  christos 	if (chp->wdc->cap & WDC_CAPABILITY_SELECT)
   2031  1.108  christos 		chp->wdc->select(chp,drive);
   2032  1.108  christos 
   2033  1.108  christos 	/* Select drive, head, and addressing mode. */
   2034  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
   2035  1.108  christos 	    (drive << 4) | WDSD_LBA);
   2036  1.108  christos 
   2037  1.108  christos 	/* previous */
   2038  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_features], 0, 0);
   2039  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_seccnt],
   2040  1.157      fvdl 	    0, count >> 8);
   2041  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_lba_hi],
   2042  1.157      fvdl 	    0, blkno >> 40);
   2043  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_lba_mi],
   2044  1.157      fvdl 	    0, blkno >> 32);
   2045  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_lba_lo],
   2046  1.157      fvdl 	    0, blkno >> 24);
   2047  1.108  christos 
   2048  1.108  christos 	/* current */
   2049  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_features], 0, 0);
   2050  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_seccnt], 0, count);
   2051  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_lba_hi],
   2052  1.157      fvdl 	    0, blkno >> 16);
   2053  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_lba_mi],
   2054  1.157      fvdl 	    0, blkno >> 8);
   2055  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_lba_lo], 0, blkno);
   2056    1.2    bouyer 
   2057   1.31    bouyer 	/* Send command. */
   2058  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_command], 0, command);
   2059   1.31    bouyer 	return;
   2060    1.2    bouyer }
   2061    1.2    bouyer 
   2062    1.2    bouyer /*
   2063   1.31    bouyer  * Simplified version of wdccommand().  Unbusy/ready/drq must be
   2064   1.31    bouyer  * tested by the caller.
   2065    1.2    bouyer  */
   2066   1.31    bouyer void
   2067   1.31    bouyer wdccommandshort(chp, drive, command)
   2068   1.31    bouyer 	struct channel_softc *chp;
   2069   1.31    bouyer 	int drive;
   2070   1.31    bouyer 	int command;
   2071    1.2    bouyer {
   2072    1.2    bouyer 
   2073   1.31    bouyer 	WDCDEBUG_PRINT(("wdccommandshort %s:%d:%d command 0x%x\n",
   2074   1.31    bouyer 	    chp->wdc->sc_dev.dv_xname, chp->channel, drive, command),
   2075   1.31    bouyer 	    DEBUG_FUNCS);
   2076  1.107       dbj 
   2077  1.107       dbj 	if (chp->wdc->cap & WDC_CAPABILITY_SELECT)
   2078  1.107       dbj 		chp->wdc->select(chp,drive);
   2079    1.2    bouyer 
   2080   1.31    bouyer 	/* Select drive. */
   2081  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_sdh], 0,
   2082   1.31    bouyer 	    WDSD_IBM | (drive << 4));
   2083    1.2    bouyer 
   2084  1.157      fvdl 	bus_space_write_1(chp->cmd_iot, chp->cmd_iohs[wd_command], 0, command);
   2085   1.31    bouyer }
   2086    1.2    bouyer 
   2087   1.31    bouyer /* Add a command to the queue and start controller. Must be called at splbio */
   2088    1.2    bouyer 
   2089    1.2    bouyer void
   2090   1.31    bouyer wdc_exec_xfer(chp, xfer)
   2091   1.31    bouyer 	struct channel_softc *chp;
   2092    1.2    bouyer 	struct wdc_xfer *xfer;
   2093    1.2    bouyer {
   2094   1.33    bouyer 	WDCDEBUG_PRINT(("wdc_exec_xfer %p channel %d drive %d\n", xfer,
   2095   1.33    bouyer 	    chp->channel, xfer->drive), DEBUG_XFERS);
   2096    1.2    bouyer 
   2097   1.31    bouyer 	/* complete xfer setup */
   2098   1.49    bouyer 	xfer->chp = chp;
   2099    1.2    bouyer 
   2100   1.31    bouyer 	/*
   2101   1.31    bouyer 	 * If we are a polled command, and the list is not empty,
   2102   1.31    bouyer 	 * we are doing a dump. Drop the list to allow the polled command
   2103   1.31    bouyer 	 * to complete, we're going to reboot soon anyway.
   2104   1.31    bouyer 	 */
   2105   1.31    bouyer 	if ((xfer->c_flags & C_POLL) != 0 &&
   2106   1.31    bouyer 	    chp->ch_queue->sc_xfer.tqh_first != NULL) {
   2107   1.31    bouyer 		TAILQ_INIT(&chp->ch_queue->sc_xfer);
   2108   1.31    bouyer 	}
   2109    1.2    bouyer 	/* insert at the end of command list */
   2110   1.31    bouyer 	TAILQ_INSERT_TAIL(&chp->ch_queue->sc_xfer,xfer , c_xferchain);
   2111   1.31    bouyer 	WDCDEBUG_PRINT(("wdcstart from wdc_exec_xfer, flags 0x%x\n",
   2112   1.33    bouyer 	    chp->ch_flags), DEBUG_XFERS);
   2113   1.45  drochner 	wdcstart(chp);
   2114   1.31    bouyer }
   2115    1.2    bouyer 
   2116    1.2    bouyer struct wdc_xfer *
   2117    1.2    bouyer wdc_get_xfer(flags)
   2118    1.2    bouyer 	int flags;
   2119    1.2    bouyer {
   2120    1.2    bouyer 	struct wdc_xfer *xfer;
   2121   1.72    bouyer 	int s;
   2122    1.2    bouyer 
   2123   1.72    bouyer 	s = splbio();
   2124   1.71    bouyer 	xfer = pool_get(&wdc_xfer_pool,
   2125   1.71    bouyer 	    ((flags & WDC_NOSLEEP) != 0 ? PR_NOWAIT : PR_WAITOK));
   2126   1.72    bouyer 	splx(s);
   2127   1.99       chs 	if (xfer != NULL) {
   2128   1.99       chs 		memset(xfer, 0, sizeof(struct wdc_xfer));
   2129   1.99       chs 	}
   2130    1.2    bouyer 	return xfer;
   2131    1.2    bouyer }
   2132    1.2    bouyer 
   2133    1.2    bouyer void
   2134   1.31    bouyer wdc_free_xfer(chp, xfer)
   2135   1.31    bouyer 	struct channel_softc *chp;
   2136    1.2    bouyer 	struct wdc_xfer *xfer;
   2137    1.2    bouyer {
   2138   1.31    bouyer 	struct wdc_softc *wdc = chp->wdc;
   2139    1.2    bouyer 	int s;
   2140    1.2    bouyer 
   2141   1.31    bouyer 	if (wdc->cap & WDC_CAPABILITY_HWLOCK)
   2142   1.31    bouyer 		(*wdc->free_hw)(chp);
   2143    1.2    bouyer 	s = splbio();
   2144   1.31    bouyer 	chp->ch_flags &= ~WDCF_ACTIVE;
   2145   1.31    bouyer 	TAILQ_REMOVE(&chp->ch_queue->sc_xfer, xfer, c_xferchain);
   2146   1.72    bouyer 	pool_put(&wdc_xfer_pool, xfer);
   2147    1.2    bouyer 	splx(s);
   2148   1.75     enami }
   2149   1.75     enami 
   2150   1.75     enami /*
   2151   1.75     enami  * Kill off all pending xfers for a channel_softc.
   2152   1.75     enami  *
   2153   1.75     enami  * Must be called at splbio().
   2154   1.75     enami  */
   2155   1.75     enami void
   2156   1.75     enami wdc_kill_pending(chp)
   2157   1.75     enami 	struct channel_softc *chp;
   2158   1.75     enami {
   2159   1.75     enami 	struct wdc_xfer *xfer;
   2160   1.75     enami 
   2161   1.75     enami 	while ((xfer = TAILQ_FIRST(&chp->ch_queue->sc_xfer)) != NULL) {
   2162   1.75     enami 		chp = xfer->chp;
   2163   1.75     enami 		(*xfer->c_kill_xfer)(chp, xfer);
   2164   1.75     enami 	}
   2165    1.2    bouyer }
   2166    1.2    bouyer 
   2167   1.31    bouyer static void
   2168   1.31    bouyer __wdcerror(chp, msg)
   2169   1.31    bouyer 	struct channel_softc *chp;
   2170    1.2    bouyer 	char *msg;
   2171    1.2    bouyer {
   2172   1.31    bouyer 	struct wdc_xfer *xfer = chp->ch_queue->sc_xfer.tqh_first;
   2173   1.88       mrg 
   2174    1.2    bouyer 	if (xfer == NULL)
   2175   1.31    bouyer 		printf("%s:%d: %s\n", chp->wdc->sc_dev.dv_xname, chp->channel,
   2176   1.31    bouyer 		    msg);
   2177    1.2    bouyer 	else
   2178   1.31    bouyer 		printf("%s:%d:%d: %s\n", chp->wdc->sc_dev.dv_xname,
   2179   1.49    bouyer 		    chp->channel, xfer->drive, msg);
   2180    1.2    bouyer }
   2181    1.2    bouyer 
   2182    1.2    bouyer /*
   2183    1.2    bouyer  * the bit bucket
   2184    1.2    bouyer  */
   2185    1.2    bouyer void
   2186   1.31    bouyer wdcbit_bucket(chp, size)
   2187   1.31    bouyer 	struct channel_softc *chp;
   2188    1.2    bouyer 	int size;
   2189    1.2    bouyer {
   2190    1.2    bouyer 
   2191   1.12       cgd 	for (; size >= 2; size -= 2)
   2192  1.157      fvdl 		(void)bus_space_read_2(chp->cmd_iot, chp->cmd_iohs[wd_data], 0);
   2193   1.12       cgd 	if (size)
   2194  1.157      fvdl 		(void)bus_space_read_1(chp->cmd_iot, chp->cmd_iohs[wd_data], 0);
   2195   1.44   thorpej }
   2196   1.44   thorpej 
   2197   1.44   thorpej int
   2198   1.44   thorpej wdc_addref(chp)
   2199   1.44   thorpej 	struct channel_softc *chp;
   2200   1.44   thorpej {
   2201   1.44   thorpej 	struct wdc_softc *wdc = chp->wdc;
   2202   1.96    bouyer 	struct scsipi_adapter *adapt = &wdc->sc_atapi_adapter._generic;
   2203   1.44   thorpej 	int s, error = 0;
   2204   1.44   thorpej 
   2205   1.44   thorpej 	s = splbio();
   2206   1.96    bouyer 	if (adapt->adapt_refcnt++ == 0 &&
   2207   1.96    bouyer 	    adapt->adapt_enable != NULL) {
   2208   1.96    bouyer 		error = (*adapt->adapt_enable)(&wdc->sc_dev, 1);
   2209   1.44   thorpej 		if (error)
   2210   1.96    bouyer 			adapt->adapt_refcnt--;
   2211   1.44   thorpej 	}
   2212   1.44   thorpej 	splx(s);
   2213   1.44   thorpej 	return (error);
   2214   1.44   thorpej }
   2215   1.44   thorpej 
   2216   1.44   thorpej void
   2217   1.44   thorpej wdc_delref(chp)
   2218   1.44   thorpej 	struct channel_softc *chp;
   2219   1.44   thorpej {
   2220   1.44   thorpej 	struct wdc_softc *wdc = chp->wdc;
   2221   1.96    bouyer 	struct scsipi_adapter *adapt = &wdc->sc_atapi_adapter._generic;
   2222   1.44   thorpej 	int s;
   2223   1.44   thorpej 
   2224   1.44   thorpej 	s = splbio();
   2225   1.96    bouyer 	if (adapt->adapt_refcnt-- == 1 &&
   2226   1.96    bouyer 	    adapt->adapt_enable != NULL)
   2227   1.96    bouyer 		(void) (*adapt->adapt_enable)(&wdc->sc_dev, 0);
   2228   1.44   thorpej 	splx(s);
   2229   1.93  wrstuden }
   2230   1.93  wrstuden 
   2231   1.93  wrstuden void
   2232   1.93  wrstuden wdc_print_modes(struct channel_softc *chp)
   2233   1.93  wrstuden {
   2234   1.93  wrstuden 	int drive;
   2235   1.93  wrstuden 	struct ata_drive_datas *drvp;
   2236   1.93  wrstuden 
   2237   1.93  wrstuden 	for (drive = 0; drive < 2; drive++) {
   2238   1.93  wrstuden 		drvp = &chp->ch_drive[drive];
   2239   1.93  wrstuden 		if ((drvp->drive_flags & DRIVE) == 0)
   2240   1.93  wrstuden 			continue;
   2241  1.123   thorpej 		aprint_normal("%s(%s:%d:%d): using PIO mode %d",
   2242   1.93  wrstuden 			drvp->drv_softc->dv_xname,
   2243   1.93  wrstuden 			chp->wdc->sc_dev.dv_xname,
   2244   1.93  wrstuden 			chp->channel, drive, drvp->PIO_mode);
   2245   1.93  wrstuden 		if (drvp->drive_flags & DRIVE_DMA)
   2246  1.123   thorpej 			aprint_normal(", DMA mode %d", drvp->DMA_mode);
   2247   1.93  wrstuden 		if (drvp->drive_flags & DRIVE_UDMA) {
   2248  1.123   thorpej 			aprint_normal(", Ultra-DMA mode %d", drvp->UDMA_mode);
   2249   1.93  wrstuden 			if (drvp->UDMA_mode == 2)
   2250  1.123   thorpej 				aprint_normal(" (Ultra/33)");
   2251   1.93  wrstuden 			else if (drvp->UDMA_mode == 4)
   2252  1.123   thorpej 				aprint_normal(" (Ultra/66)");
   2253   1.93  wrstuden 			else if (drvp->UDMA_mode == 5)
   2254  1.123   thorpej 				aprint_normal(" (Ultra/100)");
   2255  1.123   thorpej 			else if (drvp->UDMA_mode == 6)
   2256  1.123   thorpej 				aprint_normal(" (Ultra/133)");
   2257   1.93  wrstuden 		}
   2258   1.93  wrstuden 		if (drvp->drive_flags & (DRIVE_DMA | DRIVE_UDMA))
   2259  1.123   thorpej 			aprint_normal(" (using DMA data transfers)");
   2260  1.123   thorpej 		aprint_normal("\n");
   2261   1.93  wrstuden 	}
   2262    1.2    bouyer }
   2263