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onewire.c revision 1.16.28.2
      1  1.16.28.1    martin /*	$NetBSD: onewire.c,v 1.16.28.2 2020/04/21 18:42:16 martin Exp $	*/
      2        1.1       riz /*	$OpenBSD: onewire.c,v 1.1 2006/03/04 16:27:03 grange Exp $	*/
      3        1.1       riz 
      4  1.16.28.1    martin /*-
      5  1.16.28.1    martin  * Copyright (c) 2019 The NetBSD Foundation, Inc.
      6  1.16.28.1    martin  * All rights reserved.
      7  1.16.28.1    martin  *
      8  1.16.28.1    martin  * This code is derived from software contributed to The NetBSD Foundation
      9  1.16.28.1    martin  * by Andrew Doran.
     10  1.16.28.1    martin  *
     11  1.16.28.1    martin  * Redistribution and use in source and binary forms, with or without
     12  1.16.28.1    martin  * modification, are permitted provided that the following conditions
     13  1.16.28.1    martin  * are met:
     14  1.16.28.1    martin  * 1. Redistributions of source code must retain the above copyright
     15  1.16.28.1    martin  *    notice, this list of conditions and the following disclaimer.
     16  1.16.28.1    martin  * 2. Redistributions in binary form must reproduce the above copyright
     17  1.16.28.1    martin  *    notice, this list of conditions and the following disclaimer in the
     18  1.16.28.1    martin  *    documentation and/or other materials provided with the distribution.
     19  1.16.28.1    martin  *
     20  1.16.28.1    martin  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21  1.16.28.1    martin  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22  1.16.28.1    martin  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23  1.16.28.1    martin  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24  1.16.28.1    martin  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25  1.16.28.1    martin  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26  1.16.28.1    martin  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27  1.16.28.1    martin  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28  1.16.28.1    martin  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29  1.16.28.1    martin  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30  1.16.28.1    martin  * POSSIBILITY OF SUCH DAMAGE.
     31  1.16.28.1    martin  */
     32  1.16.28.1    martin 
     33        1.1       riz /*
     34        1.1       riz  * Copyright (c) 2006 Alexander Yurchenko <grange (at) openbsd.org>
     35        1.1       riz  *
     36        1.1       riz  * Permission to use, copy, modify, and distribute this software for any
     37        1.1       riz  * purpose with or without fee is hereby granted, provided that the above
     38        1.1       riz  * copyright notice and this permission notice appear in all copies.
     39        1.1       riz  *
     40        1.1       riz  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
     41        1.1       riz  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
     42        1.1       riz  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
     43        1.1       riz  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
     44        1.1       riz  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
     45        1.1       riz  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
     46        1.1       riz  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
     47        1.1       riz  */
     48        1.1       riz 
     49        1.1       riz #include <sys/cdefs.h>
     50  1.16.28.1    martin __KERNEL_RCSID(0, "$NetBSD: onewire.c,v 1.16.28.2 2020/04/21 18:42:16 martin Exp $");
     51        1.1       riz 
     52        1.1       riz /*
     53        1.1       riz  * 1-Wire bus driver.
     54        1.1       riz  */
     55        1.1       riz 
     56        1.1       riz #include <sys/param.h>
     57        1.1       riz #include <sys/systm.h>
     58        1.1       riz #include <sys/conf.h>
     59        1.1       riz #include <sys/device.h>
     60        1.1       riz #include <sys/kernel.h>
     61        1.1       riz #include <sys/kthread.h>
     62  1.16.28.1    martin #include <sys/kmem.h>
     63        1.1       riz #include <sys/proc.h>
     64        1.1       riz #include <sys/queue.h>
     65       1.14   mbalmer #include <sys/module.h>
     66        1.1       riz 
     67  1.16.28.2    martin #ifdef _KERNEL_OPT
     68  1.16.28.2    martin #include "opt_onewire.h"
     69  1.16.28.2    martin #endif
     70  1.16.28.2    martin 
     71        1.1       riz #include <dev/onewire/onewirereg.h>
     72        1.1       riz #include <dev/onewire/onewirevar.h>
     73        1.1       riz 
     74        1.1       riz #ifdef ONEWIRE_DEBUG
     75        1.1       riz #define DPRINTF(x) printf x
     76        1.1       riz #else
     77        1.1       riz #define DPRINTF(x)
     78        1.1       riz #endif
     79        1.1       riz 
     80  1.16.28.1    martin int	onewire_maxdevs = 8;
     81  1.16.28.1    martin int	onewire_scantime = 10;	/* was 3 seconds - too often */
     82        1.1       riz 
     83        1.1       riz struct onewire_softc {
     84        1.9   xtraeme 	device_t			sc_dev;
     85        1.1       riz 	struct onewire_bus *		sc_bus;
     86  1.16.28.1    martin 	kmutex_t			sc_lock;
     87  1.16.28.1    martin 	kcondvar_t			sc_scancv;
     88        1.5        ad 	struct lwp *			sc_thread;
     89        1.1       riz 	TAILQ_HEAD(, onewire_device)	sc_devs;
     90        1.1       riz 	int				sc_dying;
     91        1.1       riz };
     92        1.1       riz 
     93        1.1       riz struct onewire_device {
     94        1.1       riz 	TAILQ_ENTRY(onewire_device)	d_list;
     95        1.9   xtraeme 	device_t			d_dev;
     96        1.1       riz 	u_int64_t			d_rom;
     97  1.16.28.1    martin 	bool				d_present;
     98        1.1       riz };
     99        1.1       riz 
    100        1.9   xtraeme static int	onewire_match(device_t, cfdata_t, void *);
    101        1.9   xtraeme static void	onewire_attach(device_t, device_t, void *);
    102        1.9   xtraeme static int	onewire_detach(device_t, int);
    103        1.9   xtraeme static int	onewire_activate(device_t, enum devact);
    104        1.9   xtraeme int		onewire_print(void *, const char *);
    105        1.1       riz 
    106        1.9   xtraeme static void	onewire_thread(void *);
    107        1.9   xtraeme static void	onewire_scan(struct onewire_softc *);
    108        1.1       riz 
    109        1.9   xtraeme CFATTACH_DECL_NEW(onewire, sizeof(struct onewire_softc),
    110        1.1       riz 	onewire_match, onewire_attach, onewire_detach, onewire_activate);
    111        1.1       riz 
    112        1.1       riz extern struct cfdriver onewire_cd;
    113        1.1       riz 
    114        1.9   xtraeme static int
    115        1.9   xtraeme onewire_match(device_t parent, cfdata_t cf, void *aux)
    116        1.1       riz {
    117        1.1       riz 	return 1;
    118        1.1       riz }
    119        1.1       riz 
    120        1.9   xtraeme static void
    121        1.9   xtraeme onewire_attach(device_t parent, device_t self, void *aux)
    122        1.1       riz {
    123        1.1       riz 	struct onewire_softc *sc = device_private(self);
    124        1.1       riz 	struct onewirebus_attach_args *oba = aux;
    125        1.1       riz 
    126        1.9   xtraeme 	sc->sc_dev = self;
    127        1.1       riz 	sc->sc_bus = oba->oba_bus;
    128  1.16.28.1    martin 	mutex_init(&sc->sc_lock, MUTEX_DEFAULT, IPL_NONE);
    129  1.16.28.1    martin 	cv_init(&sc->sc_scancv, "owscan");
    130        1.1       riz 	TAILQ_INIT(&sc->sc_devs);
    131        1.1       riz 
    132        1.6   xtraeme 	aprint_normal("\n");
    133        1.1       riz 
    134  1.16.28.1    martin 	if (kthread_create(PRI_NONE, KTHREAD_MUSTJOIN | KTHREAD_MPSAFE, NULL,
    135  1.16.28.1    martin 	    onewire_thread, sc, &sc->sc_thread, "%s", device_xname(self)) != 0) {
    136        1.9   xtraeme 		aprint_error_dev(self, "can't create kernel thread\n");
    137  1.16.28.1    martin 		/* Normally the kthread destroys these. */
    138  1.16.28.1    martin 		mutex_destroy(&sc->sc_lock);
    139  1.16.28.1    martin 		cv_destroy(&sc->sc_scancv);
    140  1.16.28.1    martin 	}
    141        1.1       riz }
    142        1.1       riz 
    143        1.9   xtraeme static int
    144        1.9   xtraeme onewire_detach(device_t self, int flags)
    145        1.1       riz {
    146        1.1       riz 	struct onewire_softc *sc = device_private(self);
    147        1.1       riz 	int rv;
    148        1.1       riz 
    149        1.1       riz 	if (sc->sc_thread != NULL) {
    150  1.16.28.1    martin 		mutex_enter(&sc->sc_lock);
    151  1.16.28.1    martin 		sc->sc_dying = 1;
    152  1.16.28.1    martin 		cv_broadcast(&sc->sc_scancv);
    153  1.16.28.1    martin 		mutex_exit(&sc->sc_lock);
    154  1.16.28.1    martin 		/* Must no longer touch sc_lock nor sc_scancv. */
    155  1.16.28.1    martin 		kthread_join(sc->sc_thread);
    156        1.1       riz 	}
    157        1.1       riz 
    158        1.1       riz 	//rv = config_detach_children(self, flags);
    159        1.1       riz 	rv = 0;  /* XXX riz */
    160        1.1       riz 
    161        1.6   xtraeme 	return rv;
    162        1.1       riz }
    163        1.1       riz 
    164        1.9   xtraeme static int
    165        1.9   xtraeme onewire_activate(device_t self, enum devact act)
    166        1.1       riz {
    167        1.1       riz 	struct onewire_softc *sc = device_private(self);
    168        1.1       riz 
    169        1.1       riz 	switch (act) {
    170        1.1       riz 	case DVACT_DEACTIVATE:
    171        1.1       riz 		sc->sc_dying = 1;
    172       1.13    dyoung 		return 0;
    173       1.13    dyoung 	default:
    174       1.13    dyoung 		return EOPNOTSUPP;
    175        1.1       riz 	}
    176        1.1       riz }
    177        1.1       riz 
    178        1.1       riz int
    179        1.1       riz onewire_print(void *aux, const char *pnp)
    180        1.1       riz {
    181        1.1       riz 	struct onewire_attach_args *oa = aux;
    182        1.1       riz 	const char *famname;
    183        1.1       riz 
    184        1.1       riz 	if (pnp == NULL)
    185        1.6   xtraeme 		aprint_normal(" ");
    186        1.1       riz 
    187        1.1       riz 	famname = onewire_famname(ONEWIRE_ROM_FAMILY_TYPE(oa->oa_rom));
    188        1.1       riz 	if (famname == NULL)
    189        1.6   xtraeme 		aprint_normal("family 0x%02x",
    190        1.6   xtraeme 		    (uint)ONEWIRE_ROM_FAMILY_TYPE(oa->oa_rom));
    191        1.1       riz 	else
    192        1.6   xtraeme 		aprint_normal("\"%s\"", famname);
    193  1.16.28.1    martin 	aprint_normal(" sn %012" PRIx64, ONEWIRE_ROM_SN(oa->oa_rom));
    194        1.1       riz 
    195        1.1       riz 	if (pnp != NULL)
    196        1.6   xtraeme 		aprint_normal(" at %s", pnp);
    197        1.1       riz 
    198        1.6   xtraeme 	return UNCONF;
    199        1.1       riz }
    200        1.1       riz 
    201        1.1       riz int
    202        1.4  christos onewirebus_print(void *aux, const char *pnp)
    203        1.1       riz {
    204        1.1       riz 	if (pnp != NULL)
    205        1.6   xtraeme 		aprint_normal("onewire at %s", pnp);
    206        1.1       riz 
    207        1.6   xtraeme 	return UNCONF;
    208        1.1       riz }
    209        1.1       riz 
    210        1.7   xtraeme void
    211        1.7   xtraeme onewire_lock(void *arg)
    212        1.1       riz {
    213        1.1       riz 	struct onewire_softc *sc = arg;
    214        1.1       riz 
    215  1.16.28.1    martin 	mutex_enter(&sc->sc_lock);
    216        1.1       riz }
    217        1.1       riz 
    218        1.1       riz void
    219        1.1       riz onewire_unlock(void *arg)
    220        1.1       riz {
    221        1.1       riz 	struct onewire_softc *sc = arg;
    222        1.1       riz 
    223  1.16.28.1    martin 	mutex_exit(&sc->sc_lock);
    224        1.1       riz }
    225        1.1       riz 
    226        1.1       riz int
    227        1.1       riz onewire_reset(void *arg)
    228        1.1       riz {
    229        1.1       riz 	struct onewire_softc *sc = arg;
    230        1.1       riz 	struct onewire_bus *bus = sc->sc_bus;
    231        1.1       riz 
    232  1.16.28.1    martin 	KASSERT(mutex_owned(&sc->sc_lock));
    233  1.16.28.1    martin 
    234        1.6   xtraeme 	return bus->bus_reset(bus->bus_cookie);
    235        1.1       riz }
    236        1.1       riz 
    237        1.1       riz int
    238  1.16.28.1    martin onewire_read_bit(void *arg)
    239        1.1       riz {
    240        1.1       riz 	struct onewire_softc *sc = arg;
    241        1.1       riz 	struct onewire_bus *bus = sc->sc_bus;
    242        1.1       riz 
    243  1.16.28.1    martin 	KASSERT(mutex_owned(&sc->sc_lock));
    244  1.16.28.1    martin 
    245  1.16.28.1    martin 	return bus->bus_read_bit(bus->bus_cookie);
    246  1.16.28.1    martin }
    247  1.16.28.1    martin 
    248  1.16.28.1    martin void
    249  1.16.28.1    martin onewire_write_bit(void *arg, int value)
    250  1.16.28.1    martin {
    251  1.16.28.1    martin 	struct onewire_softc *sc = arg;
    252  1.16.28.1    martin 	struct onewire_bus *bus = sc->sc_bus;
    253  1.16.28.1    martin 
    254  1.16.28.1    martin 	KASSERT(mutex_owned(&sc->sc_lock));
    255  1.16.28.1    martin 
    256  1.16.28.1    martin 	bus->bus_write_bit(bus->bus_cookie, value);
    257        1.1       riz }
    258        1.1       riz 
    259        1.1       riz int
    260        1.1       riz onewire_read_byte(void *arg)
    261        1.1       riz {
    262        1.1       riz 	struct onewire_softc *sc = arg;
    263        1.1       riz 	struct onewire_bus *bus = sc->sc_bus;
    264        1.6   xtraeme 	uint8_t value = 0;
    265        1.1       riz 	int i;
    266        1.1       riz 
    267  1.16.28.1    martin 	KASSERT(mutex_owned(&sc->sc_lock));
    268  1.16.28.1    martin 
    269        1.1       riz 	if (bus->bus_read_byte != NULL)
    270        1.6   xtraeme 		return bus->bus_read_byte(bus->bus_cookie);
    271        1.1       riz 
    272        1.1       riz 	for (i = 0; i < 8; i++)
    273  1.16.28.1    martin 		value |= (bus->bus_read_bit(bus->bus_cookie) << i);
    274        1.1       riz 
    275        1.6   xtraeme 	return value;
    276        1.1       riz }
    277        1.1       riz 
    278        1.1       riz void
    279        1.1       riz onewire_write_byte(void *arg, int value)
    280        1.1       riz {
    281        1.1       riz 	struct onewire_softc *sc = arg;
    282        1.1       riz 	struct onewire_bus *bus = sc->sc_bus;
    283        1.1       riz 	int i;
    284        1.1       riz 
    285  1.16.28.1    martin 	KASSERT(mutex_owned(&sc->sc_lock));
    286  1.16.28.1    martin 
    287        1.1       riz 	if (bus->bus_write_byte != NULL)
    288        1.6   xtraeme 		return bus->bus_write_byte(bus->bus_cookie, value);
    289        1.1       riz 
    290        1.1       riz 	for (i = 0; i < 8; i++)
    291  1.16.28.1    martin 		bus->bus_write_bit(bus->bus_cookie, (value >> i) & 0x1);
    292        1.1       riz }
    293        1.1       riz 
    294        1.1       riz int
    295        1.1       riz onewire_triplet(void *arg, int dir)
    296        1.1       riz {
    297        1.1       riz 	struct onewire_softc *sc = arg;
    298        1.1       riz 	struct onewire_bus *bus = sc->sc_bus;
    299        1.1       riz 	int rv;
    300        1.1       riz 
    301  1.16.28.1    martin 	KASSERT(mutex_owned(&sc->sc_lock));
    302  1.16.28.1    martin 
    303        1.1       riz 	if (bus->bus_triplet != NULL)
    304        1.6   xtraeme 		return bus->bus_triplet(bus->bus_cookie, dir);
    305        1.1       riz 
    306  1.16.28.1    martin 	rv = bus->bus_read_bit(bus->bus_cookie);
    307        1.1       riz 	rv <<= 1;
    308  1.16.28.1    martin 	rv |= bus->bus_read_bit(bus->bus_cookie);
    309        1.1       riz 
    310        1.1       riz 	switch (rv) {
    311        1.1       riz 	case 0x0:
    312  1.16.28.1    martin 		bus->bus_write_bit(bus->bus_cookie, dir);
    313        1.1       riz 		break;
    314        1.1       riz 	case 0x1:
    315  1.16.28.1    martin 		bus->bus_write_bit(bus->bus_cookie, 0);
    316        1.1       riz 		break;
    317        1.1       riz 	default:
    318  1.16.28.1    martin 		bus->bus_write_bit(bus->bus_cookie, 1);
    319        1.1       riz 	}
    320        1.1       riz 
    321        1.6   xtraeme 	return rv;
    322        1.1       riz }
    323        1.1       riz 
    324        1.1       riz void
    325        1.1       riz onewire_read_block(void *arg, void *buf, int len)
    326        1.1       riz {
    327  1.16.28.1    martin 	struct onewire_softc *sc = arg;
    328        1.6   xtraeme 	uint8_t *p = buf;
    329        1.1       riz 
    330  1.16.28.1    martin 	KASSERT(mutex_owned(&sc->sc_lock));
    331  1.16.28.1    martin 
    332        1.1       riz 	while (len--)
    333  1.16.28.1    martin 		*p++ = onewire_read_byte(sc);
    334        1.1       riz }
    335        1.1       riz 
    336        1.1       riz void
    337        1.1       riz onewire_write_block(void *arg, const void *buf, int len)
    338        1.1       riz {
    339  1.16.28.1    martin 	struct onewire_softc *sc = arg;
    340        1.6   xtraeme 	const uint8_t *p = buf;
    341        1.1       riz 
    342  1.16.28.1    martin 	KASSERT(mutex_owned(&sc->sc_lock));
    343  1.16.28.1    martin 
    344        1.1       riz 	while (len--)
    345  1.16.28.1    martin 		onewire_write_byte(sc, *p++);
    346        1.1       riz }
    347        1.1       riz 
    348        1.1       riz void
    349        1.1       riz onewire_matchrom(void *arg, u_int64_t rom)
    350        1.1       riz {
    351  1.16.28.1    martin 	struct onewire_softc *sc = arg;
    352        1.1       riz 	int i;
    353        1.1       riz 
    354  1.16.28.1    martin 	KASSERT(mutex_owned(&sc->sc_lock));
    355  1.16.28.1    martin 
    356  1.16.28.1    martin 	onewire_write_byte(sc, ONEWIRE_CMD_MATCH_ROM);
    357        1.1       riz 	for (i = 0; i < 8; i++)
    358  1.16.28.1    martin 		onewire_write_byte(sc, (rom >> (i * 8)) & 0xff);
    359        1.1       riz }
    360        1.1       riz 
    361        1.9   xtraeme static void
    362        1.1       riz onewire_thread(void *arg)
    363        1.1       riz {
    364        1.1       riz 	struct onewire_softc *sc = arg;
    365  1.16.28.1    martin 	int unit, dly;
    366  1.16.28.1    martin 
    367  1.16.28.1    martin 	/*
    368  1.16.28.1    martin 	 * There can be many onewire busses, potentially funneled through
    369  1.16.28.1    martin 	 * few GPIO controllers.  To avoid a thundering herd of kthreads and
    370  1.16.28.1    martin 	 * resulting contention for the GPIO controller, spread the probes
    371  1.16.28.1    martin 	 * out across an 8 second window.  The kthreads could converge later
    372  1.16.28.1    martin 	 * due to timing effects.
    373  1.16.28.1    martin 	 */
    374  1.16.28.1    martin 	unit = device_unit(sc->sc_dev);
    375  1.16.28.1    martin 	dly = (unit & 0x07) * hz + ((unit >> 3) * hz >> 3) + 1;
    376  1.16.28.1    martin 	(void)kpause("owdly", false, dly, NULL);
    377        1.1       riz 
    378  1.16.28.1    martin 	mutex_enter(&sc->sc_lock);
    379        1.1       riz 	while (!sc->sc_dying) {
    380        1.1       riz 		onewire_scan(sc);
    381  1.16.28.1    martin 		(void)cv_timedwait(&sc->sc_scancv, &sc->sc_lock,
    382  1.16.28.1    martin 		    onewire_scantime * hz);
    383        1.1       riz 	}
    384  1.16.28.1    martin 	mutex_exit(&sc->sc_lock);
    385        1.1       riz 
    386  1.16.28.1    martin 	/* Caller has set sc_dying and will no longer touch these. */
    387  1.16.28.1    martin 	cv_destroy(&sc->sc_scancv);
    388  1.16.28.1    martin 	mutex_destroy(&sc->sc_lock);
    389        1.1       riz 	kthread_exit(0);
    390        1.1       riz }
    391        1.9   xtraeme 
    392        1.9   xtraeme static void
    393        1.1       riz onewire_scan(struct onewire_softc *sc)
    394        1.1       riz {
    395        1.1       riz 	struct onewire_device *d, *next, *nd;
    396        1.1       riz 	struct onewire_attach_args oa;
    397        1.1       riz 	int search = 1, count = 0, present;
    398        1.1       riz 	int dir, rv;
    399        1.6   xtraeme 	uint64_t mask, rom = 0, lastrom;
    400        1.6   xtraeme 	uint8_t data[8];
    401        1.1       riz 	int i, i0 = -1, lastd = -1;
    402        1.1       riz 
    403  1.16.28.1    martin 	TAILQ_FOREACH(d, &sc->sc_devs, d_list) {
    404  1.16.28.1    martin 		d->d_present = false;
    405  1.16.28.1    martin 		KASSERT(d->d_dev != NULL);
    406  1.16.28.1    martin 	}
    407        1.1       riz 
    408  1.16.28.1    martin 	KASSERT(mutex_owned(&sc->sc_lock));
    409  1.16.28.1    martin 	KASSERT(curlwp == sc->sc_thread);
    410        1.1       riz 
    411  1.16.28.1    martin 	while (search && count++ < onewire_maxdevs) {
    412        1.1       riz 		/*
    413  1.16.28.1    martin 		 * Reset the bus, allowing for one retry if reset fails.  If
    414  1.16.28.1    martin 		 * there's no presence pulse don't search for any devices.
    415        1.1       riz 		 */
    416        1.1       riz 		if (onewire_reset(sc) != 0) {
    417        1.1       riz 			DPRINTF(("%s: scan: no presence pulse\n",
    418        1.9   xtraeme 			    device_xname(sc->sc_dev)));
    419  1.16.28.1    martin 			if (onewire_reset(sc) != 0) {
    420  1.16.28.1    martin 				DPRINTF(("%s: scan: retry failed\n",
    421  1.16.28.1    martin 				    device_xname(sc->sc_dev)));
    422  1.16.28.1    martin 				break;
    423  1.16.28.1    martin 			}
    424        1.1       riz 		}
    425        1.1       riz 
    426        1.1       riz 		/*
    427        1.1       riz 		 * Start new search. Go through the previous path to
    428        1.1       riz 		 * the point we made a decision last time and make an
    429        1.1       riz 		 * opposite decision. If we didn't make any decision
    430        1.1       riz 		 * stop searching.
    431        1.1       riz 		 */
    432        1.1       riz 		search = 0;
    433        1.1       riz 		lastrom = rom;
    434        1.1       riz 		rom = 0;
    435        1.1       riz 		onewire_write_byte(sc, ONEWIRE_CMD_SEARCH_ROM);
    436        1.1       riz 		for (i = 0,i0 = -1; i < 64; i++) {
    437        1.1       riz 			dir = (lastrom >> i) & 0x1;
    438        1.1       riz 			if (i == lastd)
    439        1.1       riz 				dir = 1;
    440        1.1       riz 			else if (i > lastd)
    441        1.1       riz 				dir = 0;
    442        1.1       riz 			rv = onewire_triplet(sc, dir);
    443        1.1       riz 			switch (rv) {
    444        1.1       riz 			case 0x0:
    445        1.1       riz 				if (i != lastd) {
    446        1.1       riz 					if (dir == 0)
    447        1.1       riz 						i0 = i;
    448        1.1       riz 					search = 1;
    449        1.1       riz 				}
    450        1.1       riz 				mask = dir;
    451        1.1       riz 				break;
    452        1.1       riz 			case 0x1:
    453        1.1       riz 				mask = 0;
    454        1.1       riz 				break;
    455        1.1       riz 			case 0x2:
    456        1.1       riz 				mask = 1;
    457        1.1       riz 				break;
    458        1.1       riz 			default:
    459        1.1       riz 				DPRINTF(("%s: scan: triplet error 0x%x, "
    460        1.1       riz 				    "step %d\n",
    461        1.9   xtraeme 				    device_xname(sc->sc_dev), rv, i));
    462        1.1       riz 				return;
    463        1.1       riz 			}
    464        1.1       riz 			rom |= (mask << i);
    465        1.1       riz 		}
    466        1.1       riz 		lastd = i0;
    467  1.16.28.1    martin 
    468  1.16.28.1    martin 		/*
    469  1.16.28.1    martin 		 * Yield processor, but continue to hold the lock
    470  1.16.28.1    martin 		 * so that scan is not interrupted.
    471  1.16.28.1    martin 		 */
    472  1.16.28.1    martin 		(void)kpause("owscan", false, 1, NULL);
    473        1.1       riz 
    474        1.1       riz 		if (rom == 0)
    475        1.1       riz 			continue;
    476        1.1       riz 
    477        1.1       riz 		/*
    478        1.1       riz 		 * The last byte of the ROM code contains a CRC calculated
    479        1.1       riz 		 * from the first 7 bytes. Re-calculate it to make sure
    480        1.1       riz 		 * we found a valid device.
    481        1.1       riz 		 */
    482        1.1       riz 		for (i = 0; i < 8; i++)
    483        1.1       riz 			data[i] = (rom >> (i * 8)) & 0xff;
    484        1.1       riz 		if (onewire_crc(data, 7) != data[7])
    485        1.1       riz 			continue;
    486        1.1       riz 
    487        1.1       riz 		/*
    488        1.1       riz 		 * Go through the list of attached devices to see if we
    489        1.1       riz 		 * found a new one.
    490        1.1       riz 		 */
    491        1.1       riz 		present = 0;
    492       1.14   mbalmer 	 	TAILQ_FOREACH(d, &sc->sc_devs, d_list) {
    493        1.1       riz 			if (d->d_rom == rom) {
    494  1.16.28.1    martin 				d->d_present = true;
    495        1.1       riz 				present = 1;
    496        1.1       riz 				break;
    497        1.1       riz 			}
    498        1.1       riz 		}
    499        1.1       riz 		if (!present) {
    500  1.16.28.1    martin 			nd = kmem_alloc(sizeof(*nd), KM_SLEEP);
    501  1.16.28.1    martin 			nd->d_dev = NULL;
    502        1.1       riz 			nd->d_rom = rom;
    503  1.16.28.1    martin 			nd->d_present = true;
    504        1.1       riz 			TAILQ_INSERT_TAIL(&sc->sc_devs, nd, d_list);
    505        1.1       riz 		}
    506        1.1       riz 	}
    507        1.1       riz 
    508  1.16.28.1    martin 	/*
    509  1.16.28.1    martin 	 * Detach disappeared devices, and attach new devices.  Drop the
    510  1.16.28.1    martin 	 * lock when doing this in order to prevent lock order reversal
    511  1.16.28.1    martin 	 * against sysmon.  This is safe because nothing other than this
    512  1.16.28.1    martin 	 * kthread modifies our device list.
    513  1.16.28.1    martin 	 */
    514  1.16.28.1    martin 	for (d = TAILQ_FIRST(&sc->sc_devs); d != NULL; d = next) {
    515        1.1       riz 		next = TAILQ_NEXT(d, d_list);
    516        1.1       riz 		if (!d->d_present) {
    517  1.16.28.1    martin 			mutex_exit(&sc->sc_lock);
    518  1.16.28.1    martin 
    519  1.16.28.1    martin 			KERNEL_LOCK(1, NULL); /* XXXSMP */
    520        1.1       riz 			config_detach(d->d_dev, DETACH_FORCE);
    521  1.16.28.1    martin 			d->d_dev = NULL;
    522  1.16.28.1    martin 			KERNEL_UNLOCK_ONE(NULL); /* XXXSMP */
    523  1.16.28.1    martin 
    524  1.16.28.1    martin 			mutex_enter(&sc->sc_lock);
    525  1.16.28.1    martin 		} else if (d->d_dev == NULL) {
    526  1.16.28.1    martin 			memset(&oa, 0, sizeof(oa));
    527  1.16.28.1    martin 			oa.oa_onewire = sc;
    528  1.16.28.1    martin 			oa.oa_rom = d->d_rom;
    529  1.16.28.1    martin 			mutex_exit(&sc->sc_lock);
    530  1.16.28.1    martin 
    531  1.16.28.1    martin 			KERNEL_LOCK(1, NULL); /* XXXSMP */
    532  1.16.28.1    martin 			d->d_dev = config_found(sc->sc_dev, &oa, onewire_print);
    533  1.16.28.1    martin 			KERNEL_UNLOCK_ONE(NULL); /* XXXSMP */
    534  1.16.28.1    martin 
    535  1.16.28.1    martin 			mutex_enter(&sc->sc_lock);
    536  1.16.28.1    martin 		}
    537  1.16.28.1    martin 		if (d->d_dev == NULL) {
    538        1.1       riz 			TAILQ_REMOVE(&sc->sc_devs, d, d_list);
    539  1.16.28.1    martin 			kmem_free(d, sizeof(*d));
    540        1.1       riz 		}
    541        1.1       riz 	}
    542        1.1       riz }
    543       1.14   mbalmer 
    544       1.14   mbalmer MODULE(MODULE_CLASS_DRIVER, onewire, NULL);
    545       1.14   mbalmer 
    546       1.14   mbalmer #ifdef _MODULE
    547       1.14   mbalmer #include "ioconf.c"
    548       1.14   mbalmer #endif
    549       1.14   mbalmer 
    550       1.14   mbalmer static int
    551       1.14   mbalmer onewire_modcmd(modcmd_t cmd, void *opaque)
    552       1.14   mbalmer {
    553       1.14   mbalmer 	int error;
    554       1.14   mbalmer 
    555       1.14   mbalmer 	error = 0;
    556       1.14   mbalmer 	switch (cmd) {
    557       1.14   mbalmer 	case MODULE_CMD_INIT:
    558       1.14   mbalmer #ifdef _MODULE
    559       1.14   mbalmer 		error = config_init_component(cfdriver_ioconf_onewire,
    560       1.14   mbalmer 		    cfattach_ioconf_onewire, cfdata_ioconf_onewire);
    561       1.14   mbalmer 		if (error)
    562       1.14   mbalmer 			aprint_error("%s: unable to init component\n",
    563       1.14   mbalmer 			    onewire_cd.cd_name);
    564       1.14   mbalmer #endif
    565       1.14   mbalmer 		break;
    566       1.14   mbalmer 	case MODULE_CMD_FINI:
    567       1.14   mbalmer #ifdef _MODULE
    568       1.14   mbalmer 		config_fini_component(cfdriver_ioconf_onewire,
    569       1.14   mbalmer 		    cfattach_ioconf_onewire, cfdata_ioconf_onewire);
    570       1.14   mbalmer #endif
    571       1.14   mbalmer 		break;
    572       1.14   mbalmer 	default:
    573       1.14   mbalmer 		error = ENOTTY;
    574       1.14   mbalmer 	}
    575       1.14   mbalmer 	return error;
    576       1.14   mbalmer }
    577