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subr_autoconf.c revision 1.203.2.3
      1  1.203.2.3     rmind /* $NetBSD: subr_autoconf.c,v 1.203.2.3 2011/03/05 20:55:17 rmind Exp $ */
      2       1.53       cgd 
      3       1.53       cgd /*
      4       1.53       cgd  * Copyright (c) 1996, 2000 Christopher G. Demetriou
      5       1.53       cgd  * All rights reserved.
      6       1.93     perry  *
      7       1.53       cgd  * Redistribution and use in source and binary forms, with or without
      8       1.53       cgd  * modification, are permitted provided that the following conditions
      9       1.53       cgd  * are met:
     10       1.53       cgd  * 1. Redistributions of source code must retain the above copyright
     11       1.53       cgd  *    notice, this list of conditions and the following disclaimer.
     12       1.53       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     13       1.53       cgd  *    notice, this list of conditions and the following disclaimer in the
     14       1.53       cgd  *    documentation and/or other materials provided with the distribution.
     15       1.53       cgd  * 3. All advertising materials mentioning features or use of this software
     16       1.53       cgd  *    must display the following acknowledgement:
     17       1.54       cgd  *          This product includes software developed for the
     18       1.88    keihan  *          NetBSD Project.  See http://www.NetBSD.org/ for
     19       1.54       cgd  *          information about NetBSD.
     20       1.53       cgd  * 4. The name of the author may not be used to endorse or promote products
     21       1.54       cgd  *    derived from this software without specific prior written permission.
     22       1.93     perry  *
     23       1.53       cgd  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     24       1.53       cgd  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     25       1.53       cgd  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     26       1.53       cgd  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     27       1.53       cgd  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     28       1.53       cgd  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     29       1.53       cgd  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     30       1.53       cgd  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     31       1.53       cgd  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     32       1.53       cgd  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     33       1.93     perry  *
     34       1.54       cgd  * --(license Id: LICENSE.proto,v 1.1 2000/06/13 21:40:26 cgd Exp )--
     35       1.53       cgd  */
     36        1.9       cgd 
     37        1.1     glass /*
     38        1.7     glass  * Copyright (c) 1992, 1993
     39        1.7     glass  *	The Regents of the University of California.  All rights reserved.
     40        1.1     glass  *
     41        1.1     glass  * This software was developed by the Computer Systems Engineering group
     42        1.1     glass  * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
     43        1.1     glass  * contributed to Berkeley.
     44        1.1     glass  *
     45        1.1     glass  * All advertising materials mentioning features or use of this software
     46        1.1     glass  * must display the following acknowledgement:
     47        1.1     glass  *	This product includes software developed by the University of
     48        1.1     glass  *	California, Lawrence Berkeley Laboratories.
     49        1.1     glass  *
     50        1.7     glass  * Redistribution and use in source and binary forms, with or without
     51        1.7     glass  * modification, are permitted provided that the following conditions
     52        1.7     glass  * are met:
     53        1.7     glass  * 1. Redistributions of source code must retain the above copyright
     54        1.7     glass  *    notice, this list of conditions and the following disclaimer.
     55        1.7     glass  * 2. Redistributions in binary form must reproduce the above copyright
     56        1.7     glass  *    notice, this list of conditions and the following disclaimer in the
     57        1.7     glass  *    documentation and/or other materials provided with the distribution.
     58       1.87       agc  * 3. Neither the name of the University nor the names of its contributors
     59        1.7     glass  *    may be used to endorse or promote products derived from this software
     60        1.7     glass  *    without specific prior written permission.
     61        1.1     glass  *
     62        1.7     glass  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     63        1.7     glass  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     64        1.7     glass  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     65        1.7     glass  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     66        1.7     glass  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     67        1.7     glass  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     68        1.7     glass  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     69        1.7     glass  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     70        1.7     glass  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     71        1.7     glass  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     72        1.7     glass  * SUCH DAMAGE.
     73        1.1     glass  *
     74        1.8       cgd  * from: Header: subr_autoconf.c,v 1.12 93/02/01 19:31:48 torek Exp  (LBL)
     75        1.9       cgd  *
     76       1.28      fvdl  *	@(#)subr_autoconf.c	8.3 (Berkeley) 5/17/94
     77        1.1     glass  */
     78        1.1     glass 
     79       1.51       cgd #include <sys/cdefs.h>
     80  1.203.2.3     rmind __KERNEL_RCSID(0, "$NetBSD: subr_autoconf.c,v 1.203.2.3 2011/03/05 20:55:17 rmind Exp $");
     81       1.62    simonb 
     82      1.180     pooka #ifdef _KERNEL_OPT
     83       1.62    simonb #include "opt_ddb.h"
     84      1.180     pooka #endif
     85       1.51       cgd 
     86        1.4   mycroft #include <sys/param.h>
     87        1.4   mycroft #include <sys/device.h>
     88      1.118    dyoung #include <sys/disklabel.h>
     89      1.118    dyoung #include <sys/conf.h>
     90      1.118    dyoung #include <sys/kauth.h>
     91        1.4   mycroft #include <sys/malloc.h>
     92      1.159      matt #include <sys/kmem.h>
     93       1.17  christos #include <sys/systm.h>
     94       1.43   thorpej #include <sys/kernel.h>
     95       1.33   thorpej #include <sys/errno.h>
     96       1.47   thorpej #include <sys/proc.h>
     97       1.82       mrg #include <sys/reboot.h>
     98      1.142        ad #include <sys/kthread.h>
     99      1.118    dyoung #include <sys/buf.h>
    100      1.118    dyoung #include <sys/dirent.h>
    101      1.118    dyoung #include <sys/mount.h>
    102      1.118    dyoung #include <sys/namei.h>
    103      1.118    dyoung #include <sys/unistd.h>
    104      1.118    dyoung #include <sys/fcntl.h>
    105      1.118    dyoung #include <sys/lockf.h>
    106      1.124  jmcneill #include <sys/callout.h>
    107      1.149  jmcneill #include <sys/devmon.h>
    108      1.153    cegger #include <sys/cpu.h>
    109      1.174    dyoung #include <sys/sysctl.h>
    110      1.118    dyoung 
    111      1.118    dyoung #include <sys/disk.h>
    112      1.118    dyoung 
    113       1.16   mycroft #include <machine/limits.h>
    114        1.1     glass 
    115        1.1     glass /*
    116        1.1     glass  * Autoconfiguration subroutines.
    117        1.1     glass  */
    118        1.1     glass 
    119        1.1     glass /*
    120        1.1     glass  * ioconf.c exports exactly two names: cfdata and cfroots.  All system
    121        1.1     glass  * devices and drivers are found via these tables.
    122        1.1     glass  */
    123        1.1     glass extern struct cfdata cfdata[];
    124       1.84      matt extern const short cfroots[];
    125        1.1     glass 
    126       1.65   thorpej /*
    127       1.67   thorpej  * List of all cfdriver structures.  We use this to detect duplicates
    128       1.67   thorpej  * when other cfdrivers are loaded.
    129       1.67   thorpej  */
    130       1.69   thorpej struct cfdriverlist allcfdrivers = LIST_HEAD_INITIALIZER(&allcfdrivers);
    131       1.69   thorpej extern struct cfdriver * const cfdriver_list_initial[];
    132       1.67   thorpej 
    133       1.67   thorpej /*
    134       1.76   thorpej  * Initial list of cfattach's.
    135       1.76   thorpej  */
    136       1.76   thorpej extern const struct cfattachinit cfattachinit[];
    137       1.76   thorpej 
    138       1.76   thorpej /*
    139       1.65   thorpej  * List of cfdata tables.  We always have one such list -- the one
    140       1.65   thorpej  * built statically when the kernel was configured.
    141       1.65   thorpej  */
    142      1.121      matt struct cftablelist allcftables = TAILQ_HEAD_INITIALIZER(allcftables);
    143       1.65   thorpej static struct cftable initcftable;
    144       1.65   thorpej 
    145      1.102   thorpej #define	ROOT ((device_t)NULL)
    146        1.1     glass 
    147       1.16   mycroft struct matchinfo {
    148       1.99  drochner 	cfsubmatch_t fn;
    149       1.16   mycroft 	struct	device *parent;
    150       1.99  drochner 	const int *locs;
    151       1.25       cgd 	void	*aux;
    152       1.25       cgd 	struct	cfdata *match;
    153       1.25       cgd 	int	pri;
    154       1.16   mycroft };
    155       1.17  christos 
    156      1.198    dyoung struct alldevs_foray {
    157      1.198    dyoung 	int			af_s;
    158      1.198    dyoung 	struct devicelist	af_garbage;
    159      1.198    dyoung };
    160      1.198    dyoung 
    161       1.51       cgd static char *number(char *, int);
    162      1.102   thorpej static void mapply(struct matchinfo *, cfdata_t);
    163      1.117  drochner static device_t config_devalloc(const device_t, const cfdata_t, const int *);
    164      1.187    dyoung static void config_devdelete(device_t);
    165      1.190    dyoung static void config_devunlink(device_t, struct devicelist *);
    166      1.117  drochner static void config_makeroom(int, struct cfdriver *);
    167      1.117  drochner static void config_devlink(device_t);
    168      1.187    dyoung static void config_alldevs_unlock(int);
    169      1.187    dyoung static int config_alldevs_lock(void);
    170      1.198    dyoung static void config_alldevs_enter(struct alldevs_foray *);
    171      1.198    dyoung static void config_alldevs_exit(struct alldevs_foray *);
    172      1.197     rmind 
    173      1.197     rmind static void config_collect_garbage(struct devicelist *);
    174      1.197     rmind static void config_dump_garbage(struct devicelist *);
    175      1.197     rmind 
    176      1.139    dyoung static void pmflock_debug(device_t, const char *, int);
    177      1.139    dyoung 
    178      1.136    dyoung static device_t deviter_next1(deviter_t *);
    179      1.136    dyoung static void deviter_reinit(deviter_t *);
    180      1.136    dyoung 
    181       1.29   thorpej struct deferred_config {
    182       1.29   thorpej 	TAILQ_ENTRY(deferred_config) dc_queue;
    183      1.102   thorpej 	device_t dc_dev;
    184      1.102   thorpej 	void (*dc_func)(device_t);
    185       1.29   thorpej };
    186       1.29   thorpej 
    187       1.42   thorpej TAILQ_HEAD(deferred_config_head, deferred_config);
    188       1.29   thorpej 
    189      1.121      matt struct deferred_config_head deferred_config_queue =
    190      1.121      matt 	TAILQ_HEAD_INITIALIZER(deferred_config_queue);
    191      1.121      matt struct deferred_config_head interrupt_config_queue =
    192      1.121      matt 	TAILQ_HEAD_INITIALIZER(interrupt_config_queue);
    193      1.142        ad int interrupt_config_threads = 8;
    194  1.203.2.2     rmind struct deferred_config_head mountroot_config_queue =
    195  1.203.2.2     rmind 	TAILQ_HEAD_INITIALIZER(mountroot_config_queue);
    196  1.203.2.2     rmind int mountroot_config_threads = 2;
    197  1.203.2.2     rmind static bool root_is_mounted = false;
    198       1.42   thorpej 
    199      1.102   thorpej static void config_process_deferred(struct deferred_config_head *, device_t);
    200       1.29   thorpej 
    201       1.75   thorpej /* Hooks to finalize configuration once all real devices have been found. */
    202       1.75   thorpej struct finalize_hook {
    203       1.75   thorpej 	TAILQ_ENTRY(finalize_hook) f_list;
    204      1.102   thorpej 	int (*f_func)(device_t);
    205      1.102   thorpej 	device_t f_dev;
    206       1.75   thorpej };
    207      1.121      matt static TAILQ_HEAD(, finalize_hook) config_finalize_list =
    208      1.121      matt 	TAILQ_HEAD_INITIALIZER(config_finalize_list);
    209       1.75   thorpej static int config_finalize_done;
    210       1.75   thorpej 
    211       1.56   thorpej /* list of all devices */
    212      1.187    dyoung static struct devicelist alldevs = TAILQ_HEAD_INITIALIZER(alldevs);
    213      1.187    dyoung static kmutex_t alldevs_mtx;
    214      1.187    dyoung static volatile bool alldevs_garbage = false;
    215      1.187    dyoung static volatile devgen_t alldevs_gen = 1;
    216      1.187    dyoung static volatile int alldevs_nread = 0;
    217      1.187    dyoung static volatile int alldevs_nwrite = 0;
    218       1.56   thorpej 
    219      1.151        ad static int config_pending;		/* semaphore for mountroot */
    220      1.151        ad static kmutex_t config_misc_lock;
    221      1.151        ad static kcondvar_t config_misc_cv;
    222       1.47   thorpej 
    223  1.203.2.3     rmind static bool detachall = false;
    224      1.174    dyoung 
    225       1.67   thorpej #define	STREQ(s1, s2)			\
    226       1.70   thorpej 	(*(s1) == *(s2) && strcmp((s1), (s2)) == 0)
    227       1.67   thorpej 
    228      1.185     pooka static bool config_initialized = false;	/* config_init() has been called. */
    229       1.74   thorpej 
    230       1.80   thorpej static int config_do_twiddle;
    231      1.176        ad static callout_t config_twiddle_ch;
    232       1.80   thorpej 
    233      1.182     pooka static void sysctl_detach_setup(struct sysctllog **);
    234      1.182     pooka 
    235  1.203.2.1     rmind typedef int (*cfdriver_fn)(struct cfdriver *);
    236  1.203.2.1     rmind static int
    237  1.203.2.1     rmind frob_cfdrivervec(struct cfdriver * const *cfdriverv,
    238  1.203.2.1     rmind 	cfdriver_fn drv_do, cfdriver_fn drv_undo,
    239  1.203.2.1     rmind 	const char *style, bool dopanic)
    240  1.203.2.1     rmind {
    241  1.203.2.1     rmind 	void (*pr)(const char *, ...) = dopanic ? panic : printf;
    242  1.203.2.1     rmind 	int i = 0, error = 0, e2;
    243  1.203.2.1     rmind 
    244  1.203.2.1     rmind 	for (i = 0; cfdriverv[i] != NULL; i++) {
    245  1.203.2.1     rmind 		if ((error = drv_do(cfdriverv[i])) != 0) {
    246  1.203.2.1     rmind 			pr("configure: `%s' driver %s failed: %d",
    247  1.203.2.1     rmind 			    cfdriverv[i]->cd_name, style, error);
    248  1.203.2.1     rmind 			goto bad;
    249  1.203.2.1     rmind 		}
    250  1.203.2.1     rmind 	}
    251  1.203.2.1     rmind 
    252  1.203.2.1     rmind 	KASSERT(error == 0);
    253  1.203.2.1     rmind 	return 0;
    254  1.203.2.1     rmind 
    255  1.203.2.1     rmind  bad:
    256  1.203.2.1     rmind 	printf("\n");
    257  1.203.2.1     rmind 	for (i--; i >= 0; i--) {
    258  1.203.2.1     rmind 		e2 = drv_undo(cfdriverv[i]);
    259  1.203.2.1     rmind 		KASSERT(e2 == 0);
    260  1.203.2.1     rmind 	}
    261  1.203.2.1     rmind 
    262  1.203.2.1     rmind 	return error;
    263  1.203.2.1     rmind }
    264  1.203.2.1     rmind 
    265  1.203.2.1     rmind typedef int (*cfattach_fn)(const char *, struct cfattach *);
    266  1.203.2.1     rmind static int
    267  1.203.2.1     rmind frob_cfattachvec(const struct cfattachinit *cfattachv,
    268  1.203.2.1     rmind 	cfattach_fn att_do, cfattach_fn att_undo,
    269  1.203.2.1     rmind 	const char *style, bool dopanic)
    270  1.203.2.1     rmind {
    271  1.203.2.1     rmind 	const struct cfattachinit *cfai = NULL;
    272  1.203.2.1     rmind 	void (*pr)(const char *, ...) = dopanic ? panic : printf;
    273  1.203.2.1     rmind 	int j = 0, error = 0, e2;
    274  1.203.2.1     rmind 
    275  1.203.2.1     rmind 	for (cfai = &cfattachv[0]; cfai->cfai_name != NULL; cfai++) {
    276  1.203.2.1     rmind 		for (j = 0; cfai->cfai_list[j] != NULL; j++) {
    277  1.203.2.1     rmind 			if ((error = att_do(cfai->cfai_name,
    278  1.203.2.1     rmind 			    cfai->cfai_list[j]) != 0)) {
    279  1.203.2.1     rmind 				pr("configure: attachment `%s' "
    280  1.203.2.1     rmind 				    "of `%s' driver %s failed: %d",
    281  1.203.2.1     rmind 				    cfai->cfai_list[j]->ca_name,
    282  1.203.2.1     rmind 				    cfai->cfai_name, style, error);
    283  1.203.2.1     rmind 				goto bad;
    284  1.203.2.1     rmind 			}
    285  1.203.2.1     rmind 		}
    286  1.203.2.1     rmind 	}
    287  1.203.2.1     rmind 
    288  1.203.2.1     rmind 	KASSERT(error == 0);
    289  1.203.2.1     rmind 	return 0;
    290  1.203.2.1     rmind 
    291  1.203.2.1     rmind  bad:
    292  1.203.2.1     rmind 	/*
    293  1.203.2.1     rmind 	 * Rollback in reverse order.  dunno if super-important, but
    294  1.203.2.1     rmind 	 * do that anyway.  Although the code looks a little like
    295  1.203.2.1     rmind 	 * someone did a little integration (in the math sense).
    296  1.203.2.1     rmind 	 */
    297  1.203.2.1     rmind 	printf("\n");
    298  1.203.2.1     rmind 	if (cfai) {
    299  1.203.2.1     rmind 		bool last;
    300  1.203.2.1     rmind 
    301  1.203.2.1     rmind 		for (last = false; last == false; ) {
    302  1.203.2.1     rmind 			if (cfai == &cfattachv[0])
    303  1.203.2.1     rmind 				last = true;
    304  1.203.2.1     rmind 			for (j--; j >= 0; j--) {
    305  1.203.2.1     rmind 				e2 = att_undo(cfai->cfai_name,
    306  1.203.2.1     rmind 				    cfai->cfai_list[j]);
    307  1.203.2.1     rmind 				KASSERT(e2 == 0);
    308  1.203.2.1     rmind 			}
    309  1.203.2.1     rmind 			if (!last) {
    310  1.203.2.1     rmind 				cfai--;
    311  1.203.2.1     rmind 				for (j = 0; cfai->cfai_list[j] != NULL; j++)
    312  1.203.2.1     rmind 					;
    313  1.203.2.1     rmind 			}
    314  1.203.2.1     rmind 		}
    315  1.203.2.1     rmind 	}
    316  1.203.2.1     rmind 
    317  1.203.2.1     rmind 	return error;
    318  1.203.2.1     rmind }
    319  1.203.2.1     rmind 
    320       1.20       cgd /*
    321       1.74   thorpej  * Initialize the autoconfiguration data structures.  Normally this
    322       1.74   thorpej  * is done by configure(), but some platforms need to do this very
    323       1.74   thorpej  * early (to e.g. initialize the console).
    324       1.20       cgd  */
    325       1.20       cgd void
    326       1.74   thorpej config_init(void)
    327       1.20       cgd {
    328       1.67   thorpej 
    329      1.185     pooka 	KASSERT(config_initialized == false);
    330       1.74   thorpej 
    331      1.199    dyoung 	mutex_init(&alldevs_mtx, MUTEX_DEFAULT, IPL_VM);
    332      1.136    dyoung 
    333      1.151        ad 	mutex_init(&config_misc_lock, MUTEX_DEFAULT, IPL_NONE);
    334      1.151        ad 	cv_init(&config_misc_cv, "cfgmisc");
    335      1.151        ad 
    336      1.176        ad 	callout_init(&config_twiddle_ch, CALLOUT_MPSAFE);
    337      1.176        ad 
    338  1.203.2.1     rmind 	frob_cfdrivervec(cfdriver_list_initial,
    339  1.203.2.1     rmind 	    config_cfdriver_attach, NULL, "bootstrap", true);
    340  1.203.2.1     rmind 	frob_cfattachvec(cfattachinit,
    341  1.203.2.1     rmind 	    config_cfattach_attach, NULL, "bootstrap", true);
    342       1.20       cgd 
    343       1.65   thorpej 	initcftable.ct_cfdata = cfdata;
    344       1.65   thorpej 	TAILQ_INSERT_TAIL(&allcftables, &initcftable, ct_list);
    345      1.185     pooka 
    346      1.185     pooka 	config_initialized = true;
    347      1.185     pooka }
    348      1.185     pooka 
    349  1.203.2.1     rmind /*
    350  1.203.2.1     rmind  * Init or fini drivers and attachments.  Either all or none
    351  1.203.2.1     rmind  * are processed (via rollback).  It would be nice if this were
    352  1.203.2.1     rmind  * atomic to outside consumers, but with the current state of
    353  1.203.2.1     rmind  * locking ...
    354  1.203.2.1     rmind  */
    355  1.203.2.1     rmind int
    356  1.203.2.1     rmind config_init_component(struct cfdriver * const *cfdriverv,
    357  1.203.2.1     rmind 	const struct cfattachinit *cfattachv, struct cfdata *cfdatav)
    358  1.203.2.1     rmind {
    359  1.203.2.1     rmind 	int error;
    360  1.203.2.1     rmind 
    361  1.203.2.1     rmind 	if ((error = frob_cfdrivervec(cfdriverv,
    362  1.203.2.1     rmind 	    config_cfdriver_attach, config_cfdriver_detach, "init", false))!= 0)
    363  1.203.2.1     rmind 		return error;
    364  1.203.2.1     rmind 	if ((error = frob_cfattachvec(cfattachv,
    365  1.203.2.1     rmind 	    config_cfattach_attach, config_cfattach_detach,
    366  1.203.2.1     rmind 	    "init", false)) != 0) {
    367  1.203.2.1     rmind 		frob_cfdrivervec(cfdriverv,
    368  1.203.2.1     rmind 	            config_cfdriver_detach, NULL, "init rollback", true);
    369  1.203.2.1     rmind 		return error;
    370  1.203.2.1     rmind 	}
    371  1.203.2.1     rmind 	if ((error = config_cfdata_attach(cfdatav, 1)) != 0) {
    372  1.203.2.1     rmind 		frob_cfattachvec(cfattachv,
    373  1.203.2.1     rmind 		    config_cfattach_detach, NULL, "init rollback", true);
    374  1.203.2.1     rmind 		frob_cfdrivervec(cfdriverv,
    375  1.203.2.1     rmind 	            config_cfdriver_detach, NULL, "init rollback", true);
    376  1.203.2.1     rmind 		return error;
    377  1.203.2.1     rmind 	}
    378  1.203.2.1     rmind 
    379  1.203.2.1     rmind 	return 0;
    380  1.203.2.1     rmind }
    381  1.203.2.1     rmind 
    382  1.203.2.1     rmind int
    383  1.203.2.1     rmind config_fini_component(struct cfdriver * const *cfdriverv,
    384  1.203.2.1     rmind 	const struct cfattachinit *cfattachv, struct cfdata *cfdatav)
    385  1.203.2.1     rmind {
    386  1.203.2.1     rmind 	int error;
    387  1.203.2.1     rmind 
    388  1.203.2.1     rmind 	if ((error = config_cfdata_detach(cfdatav)) != 0)
    389  1.203.2.1     rmind 		return error;
    390  1.203.2.1     rmind 	if ((error = frob_cfattachvec(cfattachv,
    391  1.203.2.1     rmind 	    config_cfattach_detach, config_cfattach_attach,
    392  1.203.2.1     rmind 	    "fini", false)) != 0) {
    393  1.203.2.1     rmind 		if (config_cfdata_attach(cfdatav, 0) != 0)
    394  1.203.2.1     rmind 			panic("config_cfdata fini rollback failed");
    395  1.203.2.1     rmind 		return error;
    396  1.203.2.1     rmind 	}
    397  1.203.2.1     rmind 	if ((error = frob_cfdrivervec(cfdriverv,
    398  1.203.2.1     rmind 	    config_cfdriver_detach, config_cfdriver_attach,
    399  1.203.2.1     rmind 	    "fini", false)) != 0) {
    400  1.203.2.1     rmind 		frob_cfattachvec(cfattachv,
    401  1.203.2.1     rmind 	            config_cfattach_attach, NULL, "fini rollback", true);
    402  1.203.2.1     rmind 		if (config_cfdata_attach(cfdatav, 0) != 0)
    403  1.203.2.1     rmind 			panic("config_cfdata fini rollback failed");
    404  1.203.2.1     rmind 		return error;
    405  1.203.2.1     rmind 	}
    406  1.203.2.1     rmind 
    407  1.203.2.1     rmind 	return 0;
    408  1.203.2.1     rmind }
    409  1.203.2.1     rmind 
    410      1.185     pooka void
    411      1.185     pooka config_init_mi(void)
    412      1.185     pooka {
    413      1.185     pooka 
    414      1.185     pooka 	if (!config_initialized)
    415      1.185     pooka 		config_init();
    416      1.185     pooka 
    417      1.182     pooka 	sysctl_detach_setup(NULL);
    418       1.74   thorpej }
    419       1.74   thorpej 
    420      1.126    dyoung void
    421      1.126    dyoung config_deferred(device_t dev)
    422      1.126    dyoung {
    423      1.126    dyoung 	config_process_deferred(&deferred_config_queue, dev);
    424      1.126    dyoung 	config_process_deferred(&interrupt_config_queue, dev);
    425  1.203.2.2     rmind 	config_process_deferred(&mountroot_config_queue, dev);
    426      1.126    dyoung }
    427      1.126    dyoung 
    428      1.142        ad static void
    429      1.142        ad config_interrupts_thread(void *cookie)
    430      1.142        ad {
    431      1.142        ad 	struct deferred_config *dc;
    432      1.142        ad 
    433      1.142        ad 	while ((dc = TAILQ_FIRST(&interrupt_config_queue)) != NULL) {
    434      1.142        ad 		TAILQ_REMOVE(&interrupt_config_queue, dc, dc_queue);
    435      1.142        ad 		(*dc->dc_func)(dc->dc_dev);
    436      1.159      matt 		kmem_free(dc, sizeof(*dc));
    437      1.142        ad 		config_pending_decr();
    438      1.142        ad 	}
    439      1.142        ad 	kthread_exit(0);
    440      1.142        ad }
    441      1.142        ad 
    442       1.74   thorpej void
    443      1.180     pooka config_create_interruptthreads()
    444       1.74   thorpej {
    445      1.180     pooka 	int i;
    446      1.144        ad 
    447      1.142        ad 	for (i = 0; i < interrupt_config_threads; i++) {
    448      1.142        ad 		(void)kthread_create(PRI_NONE, 0, NULL,
    449      1.142        ad 		    config_interrupts_thread, NULL, NULL, "config");
    450      1.142        ad 	}
    451       1.20       cgd }
    452       1.20       cgd 
    453  1.203.2.2     rmind static void
    454  1.203.2.2     rmind config_mountroot_thread(void *cookie)
    455  1.203.2.2     rmind {
    456  1.203.2.2     rmind 	struct deferred_config *dc;
    457  1.203.2.2     rmind 
    458  1.203.2.2     rmind 	while ((dc = TAILQ_FIRST(&mountroot_config_queue)) != NULL) {
    459  1.203.2.2     rmind 		TAILQ_REMOVE(&mountroot_config_queue, dc, dc_queue);
    460  1.203.2.2     rmind 		(*dc->dc_func)(dc->dc_dev);
    461  1.203.2.2     rmind 		kmem_free(dc, sizeof(*dc));
    462  1.203.2.2     rmind 	}
    463  1.203.2.2     rmind 	kthread_exit(0);
    464  1.203.2.2     rmind }
    465  1.203.2.2     rmind 
    466  1.203.2.2     rmind void
    467  1.203.2.2     rmind config_create_mountrootthreads()
    468  1.203.2.2     rmind {
    469  1.203.2.2     rmind 	int i;
    470  1.203.2.2     rmind 
    471  1.203.2.2     rmind 	if (!root_is_mounted)
    472  1.203.2.2     rmind 		root_is_mounted = true;
    473  1.203.2.2     rmind 
    474  1.203.2.2     rmind 	for (i = 0; i < mountroot_config_threads; i++) {
    475  1.203.2.2     rmind 		(void)kthread_create(PRI_NONE, 0, NULL,
    476  1.203.2.2     rmind 		    config_mountroot_thread, NULL, NULL, "config");
    477  1.203.2.2     rmind 	}
    478  1.203.2.2     rmind }
    479  1.203.2.2     rmind 
    480        1.1     glass /*
    481      1.149  jmcneill  * Announce device attach/detach to userland listeners.
    482      1.149  jmcneill  */
    483      1.149  jmcneill static void
    484      1.149  jmcneill devmon_report_device(device_t dev, bool isattach)
    485      1.149  jmcneill {
    486      1.149  jmcneill #if NDRVCTL > 0
    487      1.149  jmcneill 	prop_dictionary_t ev;
    488      1.149  jmcneill 	const char *parent;
    489      1.149  jmcneill 	const char *what;
    490      1.149  jmcneill 	device_t pdev = device_parent(dev);
    491      1.149  jmcneill 
    492      1.149  jmcneill 	ev = prop_dictionary_create();
    493      1.149  jmcneill 	if (ev == NULL)
    494      1.149  jmcneill 		return;
    495      1.149  jmcneill 
    496      1.149  jmcneill 	what = (isattach ? "device-attach" : "device-detach");
    497      1.149  jmcneill 	parent = (pdev == NULL ? "root" : device_xname(pdev));
    498      1.149  jmcneill 	if (!prop_dictionary_set_cstring(ev, "device", device_xname(dev)) ||
    499      1.149  jmcneill 	    !prop_dictionary_set_cstring(ev, "parent", parent)) {
    500      1.149  jmcneill 		prop_object_release(ev);
    501      1.149  jmcneill 		return;
    502      1.149  jmcneill 	}
    503      1.149  jmcneill 
    504      1.149  jmcneill 	devmon_insert(what, ev);
    505      1.149  jmcneill #endif
    506      1.149  jmcneill }
    507      1.149  jmcneill 
    508      1.149  jmcneill /*
    509       1.67   thorpej  * Add a cfdriver to the system.
    510       1.67   thorpej  */
    511       1.67   thorpej int
    512       1.67   thorpej config_cfdriver_attach(struct cfdriver *cd)
    513       1.67   thorpej {
    514       1.67   thorpej 	struct cfdriver *lcd;
    515       1.67   thorpej 
    516       1.67   thorpej 	/* Make sure this driver isn't already in the system. */
    517       1.67   thorpej 	LIST_FOREACH(lcd, &allcfdrivers, cd_list) {
    518       1.67   thorpej 		if (STREQ(lcd->cd_name, cd->cd_name))
    519      1.175    cegger 			return EEXIST;
    520       1.67   thorpej 	}
    521       1.67   thorpej 
    522       1.76   thorpej 	LIST_INIT(&cd->cd_attach);
    523       1.67   thorpej 	LIST_INSERT_HEAD(&allcfdrivers, cd, cd_list);
    524       1.67   thorpej 
    525      1.175    cegger 	return 0;
    526       1.67   thorpej }
    527       1.67   thorpej 
    528       1.67   thorpej /*
    529       1.67   thorpej  * Remove a cfdriver from the system.
    530       1.67   thorpej  */
    531       1.67   thorpej int
    532       1.67   thorpej config_cfdriver_detach(struct cfdriver *cd)
    533       1.67   thorpej {
    534      1.198    dyoung 	struct alldevs_foray af;
    535      1.198    dyoung 	int i, rc = 0;
    536       1.67   thorpej 
    537      1.198    dyoung 	config_alldevs_enter(&af);
    538       1.67   thorpej 	/* Make sure there are no active instances. */
    539       1.67   thorpej 	for (i = 0; i < cd->cd_ndevs; i++) {
    540      1.187    dyoung 		if (cd->cd_devs[i] != NULL) {
    541      1.187    dyoung 			rc = EBUSY;
    542      1.187    dyoung 			break;
    543      1.187    dyoung 		}
    544       1.67   thorpej 	}
    545      1.198    dyoung 	config_alldevs_exit(&af);
    546      1.187    dyoung 
    547      1.187    dyoung 	if (rc != 0)
    548      1.187    dyoung 		return rc;
    549       1.67   thorpej 
    550       1.76   thorpej 	/* ...and no attachments loaded. */
    551       1.76   thorpej 	if (LIST_EMPTY(&cd->cd_attach) == 0)
    552      1.175    cegger 		return EBUSY;
    553       1.76   thorpej 
    554       1.67   thorpej 	LIST_REMOVE(cd, cd_list);
    555       1.67   thorpej 
    556       1.67   thorpej 	KASSERT(cd->cd_devs == NULL);
    557       1.67   thorpej 
    558      1.175    cegger 	return 0;
    559       1.67   thorpej }
    560       1.67   thorpej 
    561       1.67   thorpej /*
    562       1.67   thorpej  * Look up a cfdriver by name.
    563       1.67   thorpej  */
    564       1.78     isaki struct cfdriver *
    565       1.67   thorpej config_cfdriver_lookup(const char *name)
    566       1.67   thorpej {
    567       1.67   thorpej 	struct cfdriver *cd;
    568       1.69   thorpej 
    569       1.67   thorpej 	LIST_FOREACH(cd, &allcfdrivers, cd_list) {
    570       1.67   thorpej 		if (STREQ(cd->cd_name, name))
    571      1.175    cegger 			return cd;
    572       1.67   thorpej 	}
    573       1.67   thorpej 
    574      1.175    cegger 	return NULL;
    575       1.67   thorpej }
    576       1.67   thorpej 
    577       1.67   thorpej /*
    578       1.76   thorpej  * Add a cfattach to the specified driver.
    579       1.76   thorpej  */
    580       1.76   thorpej int
    581       1.76   thorpej config_cfattach_attach(const char *driver, struct cfattach *ca)
    582       1.76   thorpej {
    583       1.76   thorpej 	struct cfattach *lca;
    584       1.76   thorpej 	struct cfdriver *cd;
    585       1.76   thorpej 
    586       1.76   thorpej 	cd = config_cfdriver_lookup(driver);
    587       1.76   thorpej 	if (cd == NULL)
    588      1.175    cegger 		return ESRCH;
    589       1.76   thorpej 
    590       1.76   thorpej 	/* Make sure this attachment isn't already on this driver. */
    591       1.76   thorpej 	LIST_FOREACH(lca, &cd->cd_attach, ca_list) {
    592       1.76   thorpej 		if (STREQ(lca->ca_name, ca->ca_name))
    593      1.175    cegger 			return EEXIST;
    594       1.76   thorpej 	}
    595       1.76   thorpej 
    596       1.76   thorpej 	LIST_INSERT_HEAD(&cd->cd_attach, ca, ca_list);
    597       1.76   thorpej 
    598      1.175    cegger 	return 0;
    599       1.76   thorpej }
    600       1.76   thorpej 
    601       1.76   thorpej /*
    602       1.76   thorpej  * Remove a cfattach from the specified driver.
    603       1.76   thorpej  */
    604       1.76   thorpej int
    605       1.76   thorpej config_cfattach_detach(const char *driver, struct cfattach *ca)
    606       1.76   thorpej {
    607      1.198    dyoung 	struct alldevs_foray af;
    608       1.76   thorpej 	struct cfdriver *cd;
    609      1.102   thorpej 	device_t dev;
    610      1.198    dyoung 	int i, rc = 0;
    611       1.76   thorpej 
    612       1.76   thorpej 	cd = config_cfdriver_lookup(driver);
    613       1.76   thorpej 	if (cd == NULL)
    614      1.175    cegger 		return ESRCH;
    615       1.76   thorpej 
    616      1.198    dyoung 	config_alldevs_enter(&af);
    617       1.76   thorpej 	/* Make sure there are no active instances. */
    618       1.76   thorpej 	for (i = 0; i < cd->cd_ndevs; i++) {
    619       1.76   thorpej 		if ((dev = cd->cd_devs[i]) == NULL)
    620       1.76   thorpej 			continue;
    621      1.187    dyoung 		if (dev->dv_cfattach == ca) {
    622      1.187    dyoung 			rc = EBUSY;
    623      1.187    dyoung 			break;
    624      1.187    dyoung 		}
    625       1.76   thorpej 	}
    626      1.198    dyoung 	config_alldevs_exit(&af);
    627      1.187    dyoung 
    628      1.187    dyoung 	if (rc != 0)
    629      1.187    dyoung 		return rc;
    630       1.76   thorpej 
    631       1.76   thorpej 	LIST_REMOVE(ca, ca_list);
    632       1.76   thorpej 
    633      1.175    cegger 	return 0;
    634       1.76   thorpej }
    635       1.76   thorpej 
    636       1.76   thorpej /*
    637       1.76   thorpej  * Look up a cfattach by name.
    638       1.76   thorpej  */
    639       1.76   thorpej static struct cfattach *
    640       1.76   thorpej config_cfattach_lookup_cd(struct cfdriver *cd, const char *atname)
    641       1.76   thorpej {
    642       1.76   thorpej 	struct cfattach *ca;
    643       1.76   thorpej 
    644       1.76   thorpej 	LIST_FOREACH(ca, &cd->cd_attach, ca_list) {
    645       1.76   thorpej 		if (STREQ(ca->ca_name, atname))
    646      1.175    cegger 			return ca;
    647       1.76   thorpej 	}
    648       1.76   thorpej 
    649      1.175    cegger 	return NULL;
    650       1.76   thorpej }
    651       1.76   thorpej 
    652       1.76   thorpej /*
    653       1.76   thorpej  * Look up a cfattach by driver/attachment name.
    654       1.76   thorpej  */
    655       1.76   thorpej struct cfattach *
    656       1.76   thorpej config_cfattach_lookup(const char *name, const char *atname)
    657       1.76   thorpej {
    658       1.76   thorpej 	struct cfdriver *cd;
    659       1.76   thorpej 
    660       1.76   thorpej 	cd = config_cfdriver_lookup(name);
    661       1.76   thorpej 	if (cd == NULL)
    662      1.175    cegger 		return NULL;
    663       1.76   thorpej 
    664      1.175    cegger 	return config_cfattach_lookup_cd(cd, atname);
    665       1.76   thorpej }
    666       1.76   thorpej 
    667       1.76   thorpej /*
    668        1.1     glass  * Apply the matching function and choose the best.  This is used
    669        1.1     glass  * a few times and we want to keep the code small.
    670        1.1     glass  */
    671       1.16   mycroft static void
    672      1.102   thorpej mapply(struct matchinfo *m, cfdata_t cf)
    673        1.1     glass {
    674       1.50  augustss 	int pri;
    675        1.1     glass 
    676       1.99  drochner 	if (m->fn != NULL) {
    677       1.99  drochner 		pri = (*m->fn)(m->parent, cf, m->locs, m->aux);
    678       1.90  drochner 	} else {
    679      1.100  drochner 		pri = config_match(m->parent, cf, m->aux);
    680        1.3     glass 	}
    681        1.1     glass 	if (pri > m->pri) {
    682       1.25       cgd 		m->match = cf;
    683        1.1     glass 		m->pri = pri;
    684        1.1     glass 	}
    685        1.1     glass }
    686        1.1     glass 
    687       1.98  drochner int
    688      1.102   thorpej config_stdsubmatch(device_t parent, cfdata_t cf, const int *locs, void *aux)
    689       1.98  drochner {
    690       1.98  drochner 	const struct cfiattrdata *ci;
    691       1.98  drochner 	const struct cflocdesc *cl;
    692       1.98  drochner 	int nlocs, i;
    693       1.98  drochner 
    694      1.201    dyoung 	ci = cfiattr_lookup(cfdata_ifattr(cf), parent->dv_cfdriver);
    695       1.98  drochner 	KASSERT(ci);
    696       1.98  drochner 	nlocs = ci->ci_loclen;
    697      1.154  drochner 	KASSERT(!nlocs || locs);
    698       1.98  drochner 	for (i = 0; i < nlocs; i++) {
    699       1.98  drochner 		cl = &ci->ci_locdesc[i];
    700       1.98  drochner 		/* !cld_defaultstr means no default value */
    701       1.98  drochner 		if ((!(cl->cld_defaultstr)
    702       1.98  drochner 		     || (cf->cf_loc[i] != cl->cld_default))
    703       1.98  drochner 		    && cf->cf_loc[i] != locs[i])
    704      1.175    cegger 			return 0;
    705       1.98  drochner 	}
    706       1.98  drochner 
    707      1.175    cegger 	return config_match(parent, cf, aux);
    708       1.98  drochner }
    709       1.98  drochner 
    710        1.1     glass /*
    711       1.96  drochner  * Helper function: check whether the driver supports the interface attribute
    712       1.96  drochner  * and return its descriptor structure.
    713       1.91  drochner  */
    714       1.96  drochner static const struct cfiattrdata *
    715       1.96  drochner cfdriver_get_iattr(const struct cfdriver *cd, const char *ia)
    716       1.91  drochner {
    717       1.96  drochner 	const struct cfiattrdata * const *cpp;
    718       1.91  drochner 
    719       1.91  drochner 	if (cd->cd_attrs == NULL)
    720      1.175    cegger 		return 0;
    721       1.91  drochner 
    722       1.91  drochner 	for (cpp = cd->cd_attrs; *cpp; cpp++) {
    723       1.96  drochner 		if (STREQ((*cpp)->ci_name, ia)) {
    724       1.91  drochner 			/* Match. */
    725      1.175    cegger 			return *cpp;
    726       1.91  drochner 		}
    727       1.91  drochner 	}
    728      1.175    cegger 	return 0;
    729       1.91  drochner }
    730       1.91  drochner 
    731       1.91  drochner /*
    732       1.96  drochner  * Lookup an interface attribute description by name.
    733       1.96  drochner  * If the driver is given, consider only its supported attributes.
    734       1.96  drochner  */
    735       1.96  drochner const struct cfiattrdata *
    736       1.96  drochner cfiattr_lookup(const char *name, const struct cfdriver *cd)
    737       1.96  drochner {
    738       1.96  drochner 	const struct cfdriver *d;
    739       1.96  drochner 	const struct cfiattrdata *ia;
    740       1.96  drochner 
    741       1.96  drochner 	if (cd)
    742      1.175    cegger 		return cfdriver_get_iattr(cd, name);
    743       1.96  drochner 
    744       1.96  drochner 	LIST_FOREACH(d, &allcfdrivers, cd_list) {
    745       1.96  drochner 		ia = cfdriver_get_iattr(d, name);
    746       1.96  drochner 		if (ia)
    747      1.175    cegger 			return ia;
    748       1.96  drochner 	}
    749      1.175    cegger 	return 0;
    750       1.96  drochner }
    751       1.96  drochner 
    752       1.96  drochner /*
    753       1.66   thorpej  * Determine if `parent' is a potential parent for a device spec based
    754       1.66   thorpej  * on `cfp'.
    755       1.66   thorpej  */
    756       1.66   thorpej static int
    757      1.102   thorpej cfparent_match(const device_t parent, const struct cfparent *cfp)
    758       1.66   thorpej {
    759       1.67   thorpej 	struct cfdriver *pcd;
    760       1.70   thorpej 
    761       1.70   thorpej 	/* We don't match root nodes here. */
    762       1.70   thorpej 	if (cfp == NULL)
    763      1.175    cegger 		return 0;
    764       1.66   thorpej 
    765       1.77   thorpej 	pcd = parent->dv_cfdriver;
    766       1.67   thorpej 	KASSERT(pcd != NULL);
    767       1.67   thorpej 
    768       1.66   thorpej 	/*
    769       1.66   thorpej 	 * First, ensure this parent has the correct interface
    770       1.66   thorpej 	 * attribute.
    771       1.66   thorpej 	 */
    772       1.96  drochner 	if (!cfdriver_get_iattr(pcd, cfp->cfp_iattr))
    773      1.175    cegger 		return 0;
    774       1.66   thorpej 
    775       1.66   thorpej 	/*
    776       1.66   thorpej 	 * If no specific parent device instance was specified (i.e.
    777       1.66   thorpej 	 * we're attaching to the attribute only), we're done!
    778       1.66   thorpej 	 */
    779       1.66   thorpej 	if (cfp->cfp_parent == NULL)
    780      1.175    cegger 		return 1;
    781       1.66   thorpej 
    782       1.66   thorpej 	/*
    783       1.66   thorpej 	 * Check the parent device's name.
    784       1.66   thorpej 	 */
    785       1.71   thorpej 	if (STREQ(pcd->cd_name, cfp->cfp_parent) == 0)
    786      1.175    cegger 		return 0;	/* not the same parent */
    787       1.66   thorpej 
    788       1.66   thorpej 	/*
    789       1.66   thorpej 	 * Make sure the unit number matches.
    790       1.66   thorpej 	 */
    791       1.77   thorpej 	if (cfp->cfp_unit == DVUNIT_ANY ||	/* wildcard */
    792       1.66   thorpej 	    cfp->cfp_unit == parent->dv_unit)
    793      1.175    cegger 		return 1;
    794       1.66   thorpej 
    795       1.66   thorpej 	/* Unit numbers don't match. */
    796      1.175    cegger 	return 0;
    797       1.68   thorpej }
    798       1.68   thorpej 
    799       1.68   thorpej /*
    800       1.90  drochner  * Helper for config_cfdata_attach(): check all devices whether it could be
    801       1.90  drochner  * parent any attachment in the config data table passed, and rescan.
    802       1.90  drochner  */
    803       1.90  drochner static void
    804       1.90  drochner rescan_with_cfdata(const struct cfdata *cf)
    805       1.90  drochner {
    806      1.102   thorpej 	device_t d;
    807       1.90  drochner 	const struct cfdata *cf1;
    808      1.136    dyoung 	deviter_t di;
    809      1.136    dyoung 
    810       1.90  drochner 
    811       1.90  drochner 	/*
    812      1.164        ad 	 * "alldevs" is likely longer than a modules's cfdata, so make it
    813       1.90  drochner 	 * the outer loop.
    814       1.90  drochner 	 */
    815      1.136    dyoung 	for (d = deviter_first(&di, 0); d != NULL; d = deviter_next(&di)) {
    816       1.90  drochner 
    817       1.90  drochner 		if (!(d->dv_cfattach->ca_rescan))
    818       1.90  drochner 			continue;
    819       1.90  drochner 
    820       1.90  drochner 		for (cf1 = cf; cf1->cf_name; cf1++) {
    821       1.90  drochner 
    822       1.90  drochner 			if (!cfparent_match(d, cf1->cf_pspec))
    823       1.90  drochner 				continue;
    824       1.90  drochner 
    825       1.90  drochner 			(*d->dv_cfattach->ca_rescan)(d,
    826      1.201    dyoung 				cfdata_ifattr(cf1), cf1->cf_loc);
    827  1.203.2.3     rmind 
    828  1.203.2.3     rmind 			config_deferred(d);
    829       1.90  drochner 		}
    830       1.90  drochner 	}
    831      1.136    dyoung 	deviter_release(&di);
    832       1.90  drochner }
    833       1.90  drochner 
    834       1.90  drochner /*
    835       1.90  drochner  * Attach a supplemental config data table and rescan potential
    836       1.90  drochner  * parent devices if required.
    837       1.90  drochner  */
    838       1.90  drochner int
    839      1.102   thorpej config_cfdata_attach(cfdata_t cf, int scannow)
    840       1.90  drochner {
    841       1.90  drochner 	struct cftable *ct;
    842       1.90  drochner 
    843      1.159      matt 	ct = kmem_alloc(sizeof(*ct), KM_SLEEP);
    844       1.90  drochner 	ct->ct_cfdata = cf;
    845       1.90  drochner 	TAILQ_INSERT_TAIL(&allcftables, ct, ct_list);
    846       1.90  drochner 
    847       1.90  drochner 	if (scannow)
    848       1.90  drochner 		rescan_with_cfdata(cf);
    849       1.90  drochner 
    850      1.175    cegger 	return 0;
    851       1.90  drochner }
    852       1.90  drochner 
    853       1.90  drochner /*
    854       1.90  drochner  * Helper for config_cfdata_detach: check whether a device is
    855       1.90  drochner  * found through any attachment in the config data table.
    856       1.90  drochner  */
    857       1.90  drochner static int
    858       1.90  drochner dev_in_cfdata(const struct device *d, const struct cfdata *cf)
    859       1.90  drochner {
    860       1.90  drochner 	const struct cfdata *cf1;
    861       1.90  drochner 
    862       1.90  drochner 	for (cf1 = cf; cf1->cf_name; cf1++)
    863       1.90  drochner 		if (d->dv_cfdata == cf1)
    864      1.175    cegger 			return 1;
    865       1.90  drochner 
    866      1.175    cegger 	return 0;
    867       1.90  drochner }
    868       1.90  drochner 
    869       1.90  drochner /*
    870       1.90  drochner  * Detach a supplemental config data table. Detach all devices found
    871       1.90  drochner  * through that table (and thus keeping references to it) before.
    872       1.90  drochner  */
    873       1.90  drochner int
    874      1.102   thorpej config_cfdata_detach(cfdata_t cf)
    875       1.90  drochner {
    876      1.102   thorpej 	device_t d;
    877      1.136    dyoung 	int error = 0;
    878       1.90  drochner 	struct cftable *ct;
    879      1.136    dyoung 	deviter_t di;
    880       1.90  drochner 
    881      1.136    dyoung 	for (d = deviter_first(&di, DEVITER_F_RW); d != NULL;
    882      1.136    dyoung 	     d = deviter_next(&di)) {
    883      1.136    dyoung 		if (!dev_in_cfdata(d, cf))
    884      1.136    dyoung 			continue;
    885      1.136    dyoung 		if ((error = config_detach(d, 0)) != 0)
    886      1.136    dyoung 			break;
    887      1.136    dyoung 	}
    888      1.136    dyoung 	deviter_release(&di);
    889      1.136    dyoung 	if (error) {
    890      1.136    dyoung 		aprint_error_dev(d, "unable to detach instance\n");
    891      1.136    dyoung 		return error;
    892       1.90  drochner 	}
    893       1.90  drochner 
    894       1.90  drochner 	TAILQ_FOREACH(ct, &allcftables, ct_list) {
    895       1.90  drochner 		if (ct->ct_cfdata == cf) {
    896       1.90  drochner 			TAILQ_REMOVE(&allcftables, ct, ct_list);
    897      1.159      matt 			kmem_free(ct, sizeof(*ct));
    898      1.175    cegger 			return 0;
    899       1.90  drochner 		}
    900       1.90  drochner 	}
    901       1.90  drochner 
    902       1.90  drochner 	/* not found -- shouldn't happen */
    903      1.175    cegger 	return EINVAL;
    904       1.90  drochner }
    905       1.90  drochner 
    906       1.90  drochner /*
    907       1.68   thorpej  * Invoke the "match" routine for a cfdata entry on behalf of
    908       1.68   thorpej  * an external caller, usually a "submatch" routine.
    909       1.68   thorpej  */
    910       1.68   thorpej int
    911      1.102   thorpej config_match(device_t parent, cfdata_t cf, void *aux)
    912       1.68   thorpej {
    913       1.76   thorpej 	struct cfattach *ca;
    914       1.76   thorpej 
    915       1.76   thorpej 	ca = config_cfattach_lookup(cf->cf_name, cf->cf_atname);
    916       1.76   thorpej 	if (ca == NULL) {
    917       1.76   thorpej 		/* No attachment for this entry, oh well. */
    918      1.175    cegger 		return 0;
    919       1.76   thorpej 	}
    920       1.68   thorpej 
    921      1.175    cegger 	return (*ca->ca_match)(parent, cf, aux);
    922       1.66   thorpej }
    923       1.66   thorpej 
    924       1.66   thorpej /*
    925        1.1     glass  * Iterate over all potential children of some device, calling the given
    926        1.1     glass  * function (default being the child's match function) for each one.
    927        1.1     glass  * Nonzero returns are matches; the highest value returned is considered
    928        1.1     glass  * the best match.  Return the `found child' if we got a match, or NULL
    929        1.1     glass  * otherwise.  The `aux' pointer is simply passed on through.
    930        1.1     glass  *
    931        1.1     glass  * Note that this function is designed so that it can be used to apply
    932        1.1     glass  * an arbitrary function to all potential children (its return value
    933        1.1     glass  * can be ignored).
    934        1.1     glass  */
    935      1.102   thorpej cfdata_t
    936      1.102   thorpej config_search_loc(cfsubmatch_t fn, device_t parent,
    937       1.99  drochner 		  const char *ifattr, const int *locs, void *aux)
    938       1.90  drochner {
    939       1.90  drochner 	struct cftable *ct;
    940      1.102   thorpej 	cfdata_t cf;
    941       1.90  drochner 	struct matchinfo m;
    942       1.90  drochner 
    943       1.90  drochner 	KASSERT(config_initialized);
    944       1.96  drochner 	KASSERT(!ifattr || cfdriver_get_iattr(parent->dv_cfdriver, ifattr));
    945       1.90  drochner 
    946       1.99  drochner 	m.fn = fn;
    947        1.1     glass 	m.parent = parent;
    948       1.99  drochner 	m.locs = locs;
    949       1.25       cgd 	m.aux = aux;
    950       1.14   mycroft 	m.match = NULL;
    951        1.1     glass 	m.pri = 0;
    952       1.65   thorpej 
    953       1.65   thorpej 	TAILQ_FOREACH(ct, &allcftables, ct_list) {
    954       1.67   thorpej 		for (cf = ct->ct_cfdata; cf->cf_name; cf++) {
    955       1.90  drochner 
    956       1.90  drochner 			/* We don't match root nodes here. */
    957       1.90  drochner 			if (!cf->cf_pspec)
    958       1.90  drochner 				continue;
    959       1.90  drochner 
    960       1.65   thorpej 			/*
    961       1.65   thorpej 			 * Skip cf if no longer eligible, otherwise scan
    962       1.65   thorpej 			 * through parents for one matching `parent', and
    963       1.65   thorpej 			 * try match function.
    964       1.65   thorpej 			 */
    965       1.65   thorpej 			if (cf->cf_fstate == FSTATE_FOUND)
    966       1.65   thorpej 				continue;
    967       1.65   thorpej 			if (cf->cf_fstate == FSTATE_DNOTFOUND ||
    968       1.65   thorpej 			    cf->cf_fstate == FSTATE_DSTAR)
    969       1.65   thorpej 				continue;
    970       1.90  drochner 
    971       1.90  drochner 			/*
    972       1.90  drochner 			 * If an interface attribute was specified,
    973       1.90  drochner 			 * consider only children which attach to
    974       1.90  drochner 			 * that attribute.
    975       1.90  drochner 			 */
    976      1.201    dyoung 			if (ifattr && !STREQ(ifattr, cfdata_ifattr(cf)))
    977       1.90  drochner 				continue;
    978       1.90  drochner 
    979       1.66   thorpej 			if (cfparent_match(parent, cf->cf_pspec))
    980       1.66   thorpej 				mapply(&m, cf);
    981       1.65   thorpej 		}
    982        1.1     glass 	}
    983      1.175    cegger 	return m.match;
    984        1.1     glass }
    985        1.1     glass 
    986      1.102   thorpej cfdata_t
    987      1.102   thorpej config_search_ia(cfsubmatch_t fn, device_t parent, const char *ifattr,
    988      1.102   thorpej     void *aux)
    989      1.102   thorpej {
    990      1.102   thorpej 
    991      1.175    cegger 	return config_search_loc(fn, parent, ifattr, NULL, aux);
    992      1.102   thorpej }
    993      1.102   thorpej 
    994       1.16   mycroft /*
    995        1.1     glass  * Find the given root device.
    996        1.1     glass  * This is much like config_search, but there is no parent.
    997       1.65   thorpej  * Don't bother with multiple cfdata tables; the root node
    998       1.65   thorpej  * must always be in the initial table.
    999        1.1     glass  */
   1000      1.102   thorpej cfdata_t
   1001       1.95  drochner config_rootsearch(cfsubmatch_t fn, const char *rootname, void *aux)
   1002        1.1     glass {
   1003      1.102   thorpej 	cfdata_t cf;
   1004       1.84      matt 	const short *p;
   1005        1.1     glass 	struct matchinfo m;
   1006        1.1     glass 
   1007       1.99  drochner 	m.fn = fn;
   1008        1.1     glass 	m.parent = ROOT;
   1009       1.25       cgd 	m.aux = aux;
   1010       1.14   mycroft 	m.match = NULL;
   1011        1.1     glass 	m.pri = 0;
   1012      1.114  christos 	m.locs = 0;
   1013        1.1     glass 	/*
   1014        1.1     glass 	 * Look at root entries for matching name.  We do not bother
   1015        1.1     glass 	 * with found-state here since only one root should ever be
   1016        1.1     glass 	 * searched (and it must be done first).
   1017        1.1     glass 	 */
   1018        1.1     glass 	for (p = cfroots; *p >= 0; p++) {
   1019        1.1     glass 		cf = &cfdata[*p];
   1020       1.67   thorpej 		if (strcmp(cf->cf_name, rootname) == 0)
   1021       1.16   mycroft 			mapply(&m, cf);
   1022        1.1     glass 	}
   1023      1.175    cegger 	return m.match;
   1024        1.1     glass }
   1025        1.1     glass 
   1026       1.83  jdolecek static const char * const msgs[3] = { "", " not configured\n", " unsupported\n" };
   1027        1.1     glass 
   1028        1.1     glass /*
   1029        1.1     glass  * The given `aux' argument describes a device that has been found
   1030        1.1     glass  * on the given parent, but not necessarily configured.  Locate the
   1031       1.18       cgd  * configuration data for that device (using the submatch function
   1032       1.18       cgd  * provided, or using candidates' cd_match configuration driver
   1033       1.18       cgd  * functions) and attach it, and return true.  If the device was
   1034        1.1     glass  * not configured, call the given `print' function and return 0.
   1035        1.1     glass  */
   1036      1.102   thorpej device_t
   1037      1.102   thorpej config_found_sm_loc(device_t parent,
   1038       1.99  drochner 		const char *ifattr, const int *locs, void *aux,
   1039       1.95  drochner 		cfprint_t print, cfsubmatch_t submatch)
   1040       1.90  drochner {
   1041      1.102   thorpej 	cfdata_t cf;
   1042       1.90  drochner 
   1043       1.99  drochner 	if ((cf = config_search_loc(submatch, parent, ifattr, locs, aux)))
   1044       1.99  drochner 		return(config_attach_loc(parent, cf, locs, aux, print));
   1045       1.90  drochner 	if (print) {
   1046      1.176        ad 		if (config_do_twiddle && cold)
   1047       1.90  drochner 			twiddle();
   1048      1.143    cegger 		aprint_normal("%s", msgs[(*print)(aux, device_xname(parent))]);
   1049       1.90  drochner 	}
   1050      1.105  jmcneill 
   1051      1.175    cegger 	return NULL;
   1052       1.90  drochner }
   1053       1.90  drochner 
   1054      1.102   thorpej device_t
   1055      1.102   thorpej config_found_ia(device_t parent, const char *ifattr, void *aux,
   1056      1.102   thorpej     cfprint_t print)
   1057      1.102   thorpej {
   1058      1.102   thorpej 
   1059      1.175    cegger 	return config_found_sm_loc(parent, ifattr, NULL, aux, print, NULL);
   1060      1.102   thorpej }
   1061      1.102   thorpej 
   1062      1.102   thorpej device_t
   1063      1.102   thorpej config_found(device_t parent, void *aux, cfprint_t print)
   1064      1.102   thorpej {
   1065      1.102   thorpej 
   1066      1.175    cegger 	return config_found_sm_loc(parent, NULL, NULL, aux, print, NULL);
   1067      1.102   thorpej }
   1068      1.102   thorpej 
   1069        1.1     glass /*
   1070        1.1     glass  * As above, but for root devices.
   1071        1.1     glass  */
   1072      1.102   thorpej device_t
   1073       1.52       cgd config_rootfound(const char *rootname, void *aux)
   1074        1.1     glass {
   1075      1.102   thorpej 	cfdata_t cf;
   1076       1.25       cgd 
   1077       1.95  drochner 	if ((cf = config_rootsearch((cfsubmatch_t)NULL, rootname, aux)) != NULL)
   1078      1.175    cegger 		return config_attach(ROOT, cf, aux, (cfprint_t)NULL);
   1079       1.80   thorpej 	aprint_error("root device %s not configured\n", rootname);
   1080      1.175    cegger 	return NULL;
   1081        1.1     glass }
   1082        1.1     glass 
   1083        1.1     glass /* just like sprintf(buf, "%d") except that it works from the end */
   1084        1.1     glass static char *
   1085       1.51       cgd number(char *ep, int n)
   1086        1.1     glass {
   1087        1.1     glass 
   1088        1.1     glass 	*--ep = 0;
   1089        1.1     glass 	while (n >= 10) {
   1090        1.1     glass 		*--ep = (n % 10) + '0';
   1091        1.1     glass 		n /= 10;
   1092        1.1     glass 	}
   1093        1.1     glass 	*--ep = n + '0';
   1094      1.175    cegger 	return ep;
   1095        1.1     glass }
   1096        1.1     glass 
   1097        1.1     glass /*
   1098       1.59  augustss  * Expand the size of the cd_devs array if necessary.
   1099      1.187    dyoung  *
   1100      1.187    dyoung  * The caller must hold alldevs_mtx. config_makeroom() may release and
   1101      1.187    dyoung  * re-acquire alldevs_mtx, so callers should re-check conditions such
   1102      1.187    dyoung  * as alldevs_nwrite == 0 and alldevs_nread == 0 when config_makeroom()
   1103      1.187    dyoung  * returns.
   1104       1.59  augustss  */
   1105      1.117  drochner static void
   1106       1.59  augustss config_makeroom(int n, struct cfdriver *cd)
   1107       1.59  augustss {
   1108       1.59  augustss 	int old, new;
   1109      1.190    dyoung 	device_t *osp, *nsp;
   1110       1.59  augustss 
   1111      1.187    dyoung 	alldevs_nwrite++;
   1112      1.187    dyoung 
   1113      1.190    dyoung 	for (new = MAX(4, cd->cd_ndevs); new <= n; new += new)
   1114      1.190    dyoung 		;
   1115      1.190    dyoung 
   1116      1.190    dyoung 	while (n >= cd->cd_ndevs) {
   1117      1.190    dyoung 		/*
   1118      1.190    dyoung 		 * Need to expand the array.
   1119      1.190    dyoung 		 */
   1120      1.190    dyoung 		old = cd->cd_ndevs;
   1121      1.190    dyoung 		osp = cd->cd_devs;
   1122      1.190    dyoung 
   1123      1.190    dyoung 		/* Release alldevs_mtx around allocation, which may
   1124      1.190    dyoung 		 * sleep.
   1125      1.190    dyoung 		 */
   1126      1.190    dyoung 		mutex_exit(&alldevs_mtx);
   1127      1.190    dyoung 		nsp = kmem_alloc(sizeof(device_t[new]), KM_SLEEP);
   1128      1.190    dyoung 		if (nsp == NULL)
   1129      1.190    dyoung 			panic("%s: could not expand cd_devs", __func__);
   1130      1.190    dyoung 		mutex_enter(&alldevs_mtx);
   1131      1.190    dyoung 
   1132      1.190    dyoung 		/* If another thread moved the array while we did
   1133      1.190    dyoung 		 * not hold alldevs_mtx, try again.
   1134      1.190    dyoung 		 */
   1135      1.190    dyoung 		if (cd->cd_devs != osp) {
   1136  1.203.2.1     rmind 			mutex_exit(&alldevs_mtx);
   1137      1.190    dyoung 			kmem_free(nsp, sizeof(device_t[new]));
   1138  1.203.2.1     rmind 			mutex_enter(&alldevs_mtx);
   1139      1.190    dyoung 			continue;
   1140      1.190    dyoung 		}
   1141       1.59  augustss 
   1142      1.190    dyoung 		memset(nsp + old, 0, sizeof(device_t[new - old]));
   1143      1.190    dyoung 		if (old != 0)
   1144      1.190    dyoung 			memcpy(nsp, cd->cd_devs, sizeof(device_t[old]));
   1145      1.190    dyoung 
   1146      1.190    dyoung 		cd->cd_ndevs = new;
   1147      1.190    dyoung 		cd->cd_devs = nsp;
   1148  1.203.2.1     rmind 		if (old != 0) {
   1149  1.203.2.1     rmind 			mutex_exit(&alldevs_mtx);
   1150      1.190    dyoung 			kmem_free(osp, sizeof(device_t[old]));
   1151  1.203.2.1     rmind 			mutex_enter(&alldevs_mtx);
   1152  1.203.2.1     rmind 		}
   1153       1.59  augustss 	}
   1154      1.187    dyoung 	alldevs_nwrite--;
   1155       1.59  augustss }
   1156       1.59  augustss 
   1157      1.190    dyoung /*
   1158      1.190    dyoung  * Put dev into the devices list.
   1159      1.190    dyoung  */
   1160      1.117  drochner static void
   1161      1.117  drochner config_devlink(device_t dev)
   1162      1.117  drochner {
   1163      1.187    dyoung 	int s;
   1164      1.117  drochner 
   1165      1.187    dyoung 	s = config_alldevs_lock();
   1166      1.117  drochner 
   1167      1.190    dyoung 	KASSERT(device_cfdriver(dev)->cd_devs[dev->dv_unit] == dev);
   1168      1.190    dyoung 
   1169      1.190    dyoung 	dev->dv_add_gen = alldevs_gen;
   1170      1.136    dyoung 	/* It is safe to add a device to the tail of the list while
   1171      1.187    dyoung 	 * readers and writers are in the list.
   1172      1.136    dyoung 	 */
   1173      1.190    dyoung 	TAILQ_INSERT_TAIL(&alldevs, dev, dv_list);
   1174      1.187    dyoung 	config_alldevs_unlock(s);
   1175      1.117  drochner }
   1176      1.117  drochner 
   1177      1.190    dyoung static void
   1178      1.190    dyoung config_devfree(device_t dev)
   1179      1.190    dyoung {
   1180      1.190    dyoung 	int priv = (dev->dv_flags & DVF_PRIV_ALLOC);
   1181      1.190    dyoung 
   1182      1.190    dyoung 	if (dev->dv_cfattach->ca_devsize > 0)
   1183      1.190    dyoung 		kmem_free(dev->dv_private, dev->dv_cfattach->ca_devsize);
   1184      1.190    dyoung 	if (priv)
   1185      1.190    dyoung 		kmem_free(dev, sizeof(*dev));
   1186      1.190    dyoung }
   1187      1.190    dyoung 
   1188      1.187    dyoung /*
   1189      1.197     rmind  * Caller must hold alldevs_mtx.
   1190      1.187    dyoung  */
   1191      1.117  drochner static void
   1192      1.190    dyoung config_devunlink(device_t dev, struct devicelist *garbage)
   1193      1.117  drochner {
   1194      1.190    dyoung 	struct device_garbage *dg = &dev->dv_garbage;
   1195      1.190    dyoung 	cfdriver_t cd = device_cfdriver(dev);
   1196      1.190    dyoung 	int i;
   1197      1.187    dyoung 
   1198      1.187    dyoung 	KASSERT(mutex_owned(&alldevs_mtx));
   1199      1.117  drochner 
   1200      1.190    dyoung  	/* Unlink from device list.  Link to garbage list. */
   1201      1.117  drochner 	TAILQ_REMOVE(&alldevs, dev, dv_list);
   1202      1.190    dyoung 	TAILQ_INSERT_TAIL(garbage, dev, dv_list);
   1203      1.117  drochner 
   1204      1.117  drochner 	/* Remove from cfdriver's array. */
   1205      1.117  drochner 	cd->cd_devs[dev->dv_unit] = NULL;
   1206      1.117  drochner 
   1207      1.117  drochner 	/*
   1208      1.190    dyoung 	 * If the device now has no units in use, unlink its softc array.
   1209      1.117  drochner 	 */
   1210      1.159      matt 	for (i = 0; i < cd->cd_ndevs; i++) {
   1211      1.117  drochner 		if (cd->cd_devs[i] != NULL)
   1212      1.187    dyoung 			break;
   1213      1.187    dyoung 	}
   1214      1.190    dyoung 	/* Nothing found.  Unlink, now.  Deallocate, later. */
   1215      1.187    dyoung 	if (i == cd->cd_ndevs) {
   1216      1.190    dyoung 		dg->dg_ndevs = cd->cd_ndevs;
   1217      1.190    dyoung 		dg->dg_devs = cd->cd_devs;
   1218      1.187    dyoung 		cd->cd_devs = NULL;
   1219      1.187    dyoung 		cd->cd_ndevs = 0;
   1220      1.187    dyoung 	}
   1221      1.190    dyoung }
   1222      1.187    dyoung 
   1223      1.190    dyoung static void
   1224      1.190    dyoung config_devdelete(device_t dev)
   1225      1.190    dyoung {
   1226      1.190    dyoung 	struct device_garbage *dg = &dev->dv_garbage;
   1227      1.190    dyoung 	device_lock_t dvl = device_getlock(dev);
   1228      1.187    dyoung 
   1229      1.190    dyoung 	if (dg->dg_devs != NULL)
   1230      1.190    dyoung 		kmem_free(dg->dg_devs, sizeof(device_t[dg->dg_ndevs]));
   1231      1.187    dyoung 
   1232      1.187    dyoung 	cv_destroy(&dvl->dvl_cv);
   1233      1.187    dyoung 	mutex_destroy(&dvl->dvl_mtx);
   1234      1.187    dyoung 
   1235      1.187    dyoung 	KASSERT(dev->dv_properties != NULL);
   1236      1.187    dyoung 	prop_object_release(dev->dv_properties);
   1237      1.187    dyoung 
   1238      1.197     rmind 	if (dev->dv_activity_handlers)
   1239      1.197     rmind 		panic("%s with registered handlers", __func__);
   1240      1.187    dyoung 
   1241      1.187    dyoung 	if (dev->dv_locators) {
   1242      1.187    dyoung 		size_t amount = *--dev->dv_locators;
   1243      1.187    dyoung 		kmem_free(dev->dv_locators, amount);
   1244      1.117  drochner 	}
   1245      1.197     rmind 
   1246      1.190    dyoung 	config_devfree(dev);
   1247      1.190    dyoung }
   1248      1.190    dyoung 
   1249      1.190    dyoung static int
   1250      1.190    dyoung config_unit_nextfree(cfdriver_t cd, cfdata_t cf)
   1251      1.190    dyoung {
   1252      1.190    dyoung 	int unit;
   1253      1.190    dyoung 
   1254      1.190    dyoung 	if (cf->cf_fstate == FSTATE_STAR) {
   1255      1.190    dyoung 		for (unit = cf->cf_unit; unit < cd->cd_ndevs; unit++)
   1256      1.190    dyoung 			if (cd->cd_devs[unit] == NULL)
   1257      1.190    dyoung 				break;
   1258      1.190    dyoung 		/*
   1259      1.190    dyoung 		 * unit is now the unit of the first NULL device pointer,
   1260      1.190    dyoung 		 * or max(cd->cd_ndevs,cf->cf_unit).
   1261      1.190    dyoung 		 */
   1262      1.190    dyoung 	} else {
   1263      1.190    dyoung 		unit = cf->cf_unit;
   1264      1.190    dyoung 		if (unit < cd->cd_ndevs && cd->cd_devs[unit] != NULL)
   1265      1.190    dyoung 			unit = -1;
   1266      1.190    dyoung 	}
   1267      1.190    dyoung 	return unit;
   1268      1.190    dyoung }
   1269      1.190    dyoung 
   1270      1.190    dyoung static int
   1271      1.190    dyoung config_unit_alloc(device_t dev, cfdriver_t cd, cfdata_t cf)
   1272      1.190    dyoung {
   1273      1.198    dyoung 	struct alldevs_foray af;
   1274      1.198    dyoung 	int unit;
   1275      1.187    dyoung 
   1276      1.198    dyoung 	config_alldevs_enter(&af);
   1277      1.190    dyoung 	for (;;) {
   1278      1.190    dyoung 		unit = config_unit_nextfree(cd, cf);
   1279      1.190    dyoung 		if (unit == -1)
   1280      1.190    dyoung 			break;
   1281      1.190    dyoung 		if (unit < cd->cd_ndevs) {
   1282      1.190    dyoung 			cd->cd_devs[unit] = dev;
   1283      1.190    dyoung 			dev->dv_unit = unit;
   1284      1.190    dyoung 			break;
   1285      1.190    dyoung 		}
   1286      1.190    dyoung 		config_makeroom(unit, cd);
   1287      1.190    dyoung 	}
   1288      1.198    dyoung 	config_alldevs_exit(&af);
   1289      1.187    dyoung 
   1290      1.190    dyoung 	return unit;
   1291      1.117  drochner }
   1292      1.187    dyoung 
   1293      1.117  drochner static device_t
   1294      1.117  drochner config_devalloc(const device_t parent, const cfdata_t cf, const int *locs)
   1295       1.25       cgd {
   1296      1.190    dyoung 	cfdriver_t cd;
   1297      1.190    dyoung 	cfattach_t ca;
   1298       1.50  augustss 	size_t lname, lunit;
   1299       1.52       cgd 	const char *xunit;
   1300      1.189     pooka 	int myunit;
   1301       1.25       cgd 	char num[10];
   1302      1.117  drochner 	device_t dev;
   1303      1.120     joerg 	void *dev_private;
   1304       1.96  drochner 	const struct cfiattrdata *ia;
   1305      1.174    dyoung 	device_lock_t dvl;
   1306       1.25       cgd 
   1307       1.67   thorpej 	cd = config_cfdriver_lookup(cf->cf_name);
   1308      1.117  drochner 	if (cd == NULL)
   1309      1.175    cegger 		return NULL;
   1310       1.76   thorpej 
   1311       1.76   thorpej 	ca = config_cfattach_lookup_cd(cd, cf->cf_atname);
   1312      1.117  drochner 	if (ca == NULL)
   1313      1.175    cegger 		return NULL;
   1314       1.76   thorpej 
   1315      1.120     joerg 	if ((ca->ca_flags & DVF_PRIV_ALLOC) == 0 &&
   1316      1.120     joerg 	    ca->ca_devsize < sizeof(struct device))
   1317      1.140      matt 		panic("config_devalloc: %s", cf->cf_atname);
   1318       1.66   thorpej 
   1319       1.25       cgd 	/* get memory for all device vars */
   1320      1.132      matt 	KASSERT((ca->ca_flags & DVF_PRIV_ALLOC) || ca->ca_devsize >= sizeof(struct device));
   1321      1.132      matt 	if (ca->ca_devsize > 0) {
   1322      1.166        ad 		dev_private = kmem_zalloc(ca->ca_devsize, KM_SLEEP);
   1323      1.132      matt 		if (dev_private == NULL)
   1324      1.132      matt 			panic("config_devalloc: memory allocation for device softc failed");
   1325      1.132      matt 	} else {
   1326      1.132      matt 		KASSERT(ca->ca_flags & DVF_PRIV_ALLOC);
   1327      1.132      matt 		dev_private = NULL;
   1328      1.132      matt 	}
   1329      1.120     joerg 
   1330      1.120     joerg 	if ((ca->ca_flags & DVF_PRIV_ALLOC) != 0) {
   1331      1.166        ad 		dev = kmem_zalloc(sizeof(*dev), KM_SLEEP);
   1332      1.120     joerg 	} else {
   1333      1.120     joerg 		dev = dev_private;
   1334      1.120     joerg 	}
   1335      1.120     joerg 	if (dev == NULL)
   1336      1.120     joerg 		panic("config_devalloc: memory allocation for device_t failed");
   1337      1.124  jmcneill 
   1338      1.202    dyoung 	dev->dv_class = cd->cd_class;
   1339      1.202    dyoung 	dev->dv_cfdata = cf;
   1340      1.202    dyoung 	dev->dv_cfdriver = cd;
   1341      1.202    dyoung 	dev->dv_cfattach = ca;
   1342      1.202    dyoung 	dev->dv_activity_count = 0;
   1343      1.202    dyoung 	dev->dv_activity_handlers = NULL;
   1344      1.202    dyoung 	dev->dv_private = dev_private;
   1345      1.202    dyoung 	dev->dv_flags = ca->ca_flags;	/* inherit flags from class */
   1346      1.202    dyoung 
   1347      1.190    dyoung 	myunit = config_unit_alloc(dev, cd, cf);
   1348      1.190    dyoung 	if (myunit == -1) {
   1349      1.190    dyoung 		config_devfree(dev);
   1350      1.190    dyoung 		return NULL;
   1351      1.190    dyoung 	}
   1352      1.190    dyoung 
   1353      1.190    dyoung 	/* compute length of name and decimal expansion of unit number */
   1354      1.190    dyoung 	lname = strlen(cd->cd_name);
   1355      1.190    dyoung 	xunit = number(&num[sizeof(num)], myunit);
   1356      1.190    dyoung 	lunit = &num[sizeof(num)] - xunit;
   1357      1.190    dyoung 	if (lname + lunit > sizeof(dev->dv_xname))
   1358      1.190    dyoung 		panic("config_devalloc: device name too long");
   1359      1.190    dyoung 
   1360      1.174    dyoung 	dvl = device_getlock(dev);
   1361      1.174    dyoung 
   1362      1.174    dyoung 	mutex_init(&dvl->dvl_mtx, MUTEX_DEFAULT, IPL_NONE);
   1363      1.174    dyoung 	cv_init(&dvl->dvl_cv, "pmfsusp");
   1364      1.174    dyoung 
   1365       1.31     perry 	memcpy(dev->dv_xname, cd->cd_name, lname);
   1366       1.31     perry 	memcpy(dev->dv_xname + lname, xunit, lunit);
   1367       1.25       cgd 	dev->dv_parent = parent;
   1368      1.124  jmcneill 	if (parent != NULL)
   1369      1.124  jmcneill 		dev->dv_depth = parent->dv_depth + 1;
   1370      1.124  jmcneill 	else
   1371      1.124  jmcneill 		dev->dv_depth = 0;
   1372      1.202    dyoung 	dev->dv_flags |= DVF_ACTIVE;	/* always initially active */
   1373       1.97  drochner 	if (locs) {
   1374       1.96  drochner 		KASSERT(parent); /* no locators at root */
   1375      1.201    dyoung 		ia = cfiattr_lookup(cfdata_ifattr(cf), parent->dv_cfdriver);
   1376      1.159      matt 		dev->dv_locators =
   1377      1.166        ad 		    kmem_alloc(sizeof(int [ia->ci_loclen + 1]), KM_SLEEP);
   1378      1.159      matt 		*dev->dv_locators++ = sizeof(int [ia->ci_loclen + 1]);
   1379      1.159      matt 		memcpy(dev->dv_locators, locs, sizeof(int [ia->ci_loclen]));
   1380       1.90  drochner 	}
   1381      1.112   thorpej 	dev->dv_properties = prop_dictionary_create();
   1382      1.112   thorpej 	KASSERT(dev->dv_properties != NULL);
   1383       1.29   thorpej 
   1384      1.150  jmcneill 	prop_dictionary_set_cstring_nocopy(dev->dv_properties,
   1385      1.150  jmcneill 	    "device-driver", dev->dv_cfdriver->cd_name);
   1386      1.150  jmcneill 	prop_dictionary_set_uint16(dev->dv_properties,
   1387      1.150  jmcneill 	    "device-unit", dev->dv_unit);
   1388      1.150  jmcneill 
   1389      1.175    cegger 	return dev;
   1390      1.117  drochner }
   1391      1.117  drochner 
   1392      1.117  drochner /*
   1393      1.117  drochner  * Attach a found device.
   1394      1.117  drochner  */
   1395      1.117  drochner device_t
   1396      1.117  drochner config_attach_loc(device_t parent, cfdata_t cf,
   1397      1.117  drochner 	const int *locs, void *aux, cfprint_t print)
   1398      1.117  drochner {
   1399      1.117  drochner 	device_t dev;
   1400      1.117  drochner 	struct cftable *ct;
   1401      1.117  drochner 	const char *drvname;
   1402      1.117  drochner 
   1403      1.117  drochner 	dev = config_devalloc(parent, cf, locs);
   1404      1.117  drochner 	if (!dev)
   1405      1.117  drochner 		panic("config_attach: allocation of device softc failed");
   1406      1.117  drochner 
   1407      1.117  drochner 	/* XXX redundant - see below? */
   1408      1.117  drochner 	if (cf->cf_fstate != FSTATE_STAR) {
   1409      1.117  drochner 		KASSERT(cf->cf_fstate == FSTATE_NOTFOUND);
   1410      1.117  drochner 		cf->cf_fstate = FSTATE_FOUND;
   1411      1.117  drochner 	}
   1412      1.117  drochner 
   1413      1.117  drochner 	config_devlink(dev);
   1414      1.117  drochner 
   1415      1.176        ad 	if (config_do_twiddle && cold)
   1416       1.80   thorpej 		twiddle();
   1417       1.80   thorpej 	else
   1418       1.80   thorpej 		aprint_naive("Found ");
   1419       1.80   thorpej 	/*
   1420       1.80   thorpej 	 * We want the next two printfs for normal, verbose, and quiet,
   1421       1.80   thorpej 	 * but not silent (in which case, we're twiddling, instead).
   1422       1.80   thorpej 	 */
   1423       1.80   thorpej 	if (parent == ROOT) {
   1424      1.143    cegger 		aprint_naive("%s (root)", device_xname(dev));
   1425      1.143    cegger 		aprint_normal("%s (root)", device_xname(dev));
   1426       1.80   thorpej 	} else {
   1427      1.143    cegger 		aprint_naive("%s at %s", device_xname(dev), device_xname(parent));
   1428      1.143    cegger 		aprint_normal("%s at %s", device_xname(dev), device_xname(parent));
   1429       1.25       cgd 		if (print)
   1430       1.52       cgd 			(void) (*print)(aux, NULL);
   1431       1.25       cgd 	}
   1432       1.25       cgd 
   1433       1.25       cgd 	/*
   1434       1.25       cgd 	 * Before attaching, clobber any unfound devices that are
   1435       1.45       cgd 	 * otherwise identical.
   1436      1.117  drochner 	 * XXX code above is redundant?
   1437       1.25       cgd 	 */
   1438      1.117  drochner 	drvname = dev->dv_cfdriver->cd_name;
   1439       1.65   thorpej 	TAILQ_FOREACH(ct, &allcftables, ct_list) {
   1440       1.67   thorpej 		for (cf = ct->ct_cfdata; cf->cf_name; cf++) {
   1441      1.117  drochner 			if (STREQ(cf->cf_name, drvname) &&
   1442       1.65   thorpej 			    cf->cf_unit == dev->dv_unit) {
   1443       1.65   thorpej 				if (cf->cf_fstate == FSTATE_NOTFOUND)
   1444       1.65   thorpej 					cf->cf_fstate = FSTATE_FOUND;
   1445       1.65   thorpej 			}
   1446       1.25       cgd 		}
   1447       1.65   thorpej 	}
   1448       1.25       cgd 	device_register(dev, aux);
   1449      1.124  jmcneill 
   1450      1.149  jmcneill 	/* Let userland know */
   1451      1.149  jmcneill 	devmon_report_device(dev, true);
   1452      1.149  jmcneill 
   1453      1.117  drochner 	(*dev->dv_cfattach->ca_attach)(parent, dev, aux);
   1454      1.124  jmcneill 
   1455      1.124  jmcneill 	if (!device_pmf_is_registered(dev))
   1456      1.125  jmcneill 		aprint_debug_dev(dev, "WARNING: power management not supported\n");
   1457      1.124  jmcneill 
   1458       1.42   thorpej 	config_process_deferred(&deferred_config_queue, dev);
   1459      1.196    martin 
   1460      1.196    martin 	device_register_post_config(dev, aux);
   1461      1.175    cegger 	return dev;
   1462       1.25       cgd }
   1463       1.29   thorpej 
   1464      1.102   thorpej device_t
   1465      1.102   thorpej config_attach(device_t parent, cfdata_t cf, void *aux, cfprint_t print)
   1466      1.102   thorpej {
   1467      1.102   thorpej 
   1468      1.175    cegger 	return config_attach_loc(parent, cf, NULL, aux, print);
   1469      1.102   thorpej }
   1470      1.102   thorpej 
   1471       1.29   thorpej /*
   1472       1.77   thorpej  * As above, but for pseudo-devices.  Pseudo-devices attached in this
   1473       1.77   thorpej  * way are silently inserted into the device tree, and their children
   1474       1.77   thorpej  * attached.
   1475       1.77   thorpej  *
   1476       1.77   thorpej  * Note that because pseudo-devices are attached silently, any information
   1477       1.77   thorpej  * the attach routine wishes to print should be prefixed with the device
   1478       1.77   thorpej  * name by the attach routine.
   1479       1.77   thorpej  */
   1480      1.102   thorpej device_t
   1481      1.102   thorpej config_attach_pseudo(cfdata_t cf)
   1482       1.77   thorpej {
   1483      1.102   thorpej 	device_t dev;
   1484       1.77   thorpej 
   1485      1.117  drochner 	dev = config_devalloc(ROOT, cf, NULL);
   1486      1.117  drochner 	if (!dev)
   1487      1.175    cegger 		return NULL;
   1488       1.77   thorpej 
   1489      1.117  drochner 	/* XXX mark busy in cfdata */
   1490       1.77   thorpej 
   1491      1.170    dyoung 	if (cf->cf_fstate != FSTATE_STAR) {
   1492      1.170    dyoung 		KASSERT(cf->cf_fstate == FSTATE_NOTFOUND);
   1493      1.170    dyoung 		cf->cf_fstate = FSTATE_FOUND;
   1494      1.170    dyoung 	}
   1495      1.170    dyoung 
   1496      1.117  drochner 	config_devlink(dev);
   1497       1.77   thorpej 
   1498       1.77   thorpej #if 0	/* XXXJRT not yet */
   1499       1.77   thorpej 	device_register(dev, NULL);	/* like a root node */
   1500       1.77   thorpej #endif
   1501      1.117  drochner 	(*dev->dv_cfattach->ca_attach)(ROOT, dev, NULL);
   1502       1.77   thorpej 	config_process_deferred(&deferred_config_queue, dev);
   1503      1.175    cegger 	return dev;
   1504       1.77   thorpej }
   1505       1.77   thorpej 
   1506       1.77   thorpej /*
   1507      1.197     rmind  * Caller must hold alldevs_mtx.
   1508      1.197     rmind  */
   1509      1.197     rmind static void
   1510      1.197     rmind config_collect_garbage(struct devicelist *garbage)
   1511      1.197     rmind {
   1512      1.197     rmind 	device_t dv;
   1513      1.197     rmind 
   1514      1.197     rmind 	KASSERT(!cpu_intr_p());
   1515      1.197     rmind 	KASSERT(!cpu_softintr_p());
   1516      1.197     rmind 	KASSERT(mutex_owned(&alldevs_mtx));
   1517      1.197     rmind 
   1518      1.197     rmind 	while (alldevs_nwrite == 0 && alldevs_nread == 0 && alldevs_garbage) {
   1519      1.197     rmind 		TAILQ_FOREACH(dv, &alldevs, dv_list) {
   1520      1.197     rmind 			if (dv->dv_del_gen != 0)
   1521      1.197     rmind 				break;
   1522      1.197     rmind 		}
   1523      1.197     rmind 		if (dv == NULL) {
   1524      1.197     rmind 			alldevs_garbage = false;
   1525      1.197     rmind 			break;
   1526      1.197     rmind 		}
   1527      1.197     rmind 		config_devunlink(dv, garbage);
   1528      1.197     rmind 	}
   1529      1.197     rmind 	KASSERT(mutex_owned(&alldevs_mtx));
   1530      1.197     rmind }
   1531      1.197     rmind 
   1532      1.197     rmind static void
   1533      1.197     rmind config_dump_garbage(struct devicelist *garbage)
   1534      1.197     rmind {
   1535      1.197     rmind 	device_t dv;
   1536      1.197     rmind 
   1537      1.197     rmind 	while ((dv = TAILQ_FIRST(garbage)) != NULL) {
   1538      1.197     rmind 		TAILQ_REMOVE(garbage, dv, dv_list);
   1539      1.197     rmind 		config_devdelete(dv);
   1540      1.197     rmind 	}
   1541      1.197     rmind }
   1542      1.197     rmind 
   1543      1.197     rmind /*
   1544       1.33   thorpej  * Detach a device.  Optionally forced (e.g. because of hardware
   1545       1.33   thorpej  * removal) and quiet.  Returns zero if successful, non-zero
   1546       1.33   thorpej  * (an error code) otherwise.
   1547       1.33   thorpej  *
   1548       1.33   thorpej  * Note that this code wants to be run from a process context, so
   1549       1.33   thorpej  * that the detach can sleep to allow processes which have a device
   1550       1.33   thorpej  * open to run and unwind their stacks.
   1551       1.33   thorpej  */
   1552       1.33   thorpej int
   1553      1.102   thorpej config_detach(device_t dev, int flags)
   1554       1.33   thorpej {
   1555      1.198    dyoung 	struct alldevs_foray af;
   1556       1.65   thorpej 	struct cftable *ct;
   1557      1.102   thorpej 	cfdata_t cf;
   1558       1.73   thorpej 	const struct cfattach *ca;
   1559       1.33   thorpej 	struct cfdriver *cd;
   1560       1.33   thorpej #ifdef DIAGNOSTIC
   1561      1.102   thorpej 	device_t d;
   1562       1.33   thorpej #endif
   1563      1.187    dyoung 	int rv = 0, s;
   1564       1.33   thorpej 
   1565       1.33   thorpej #ifdef DIAGNOSTIC
   1566      1.161  christos 	cf = dev->dv_cfdata;
   1567      1.161  christos 	if (cf != NULL && cf->cf_fstate != FSTATE_FOUND &&
   1568      1.161  christos 	    cf->cf_fstate != FSTATE_STAR)
   1569      1.161  christos 		panic("config_detach: %s: bad device fstate %d",
   1570      1.161  christos 		    device_xname(dev), cf ? cf->cf_fstate : -1);
   1571       1.33   thorpej #endif
   1572       1.77   thorpej 	cd = dev->dv_cfdriver;
   1573       1.67   thorpej 	KASSERT(cd != NULL);
   1574       1.76   thorpej 
   1575       1.77   thorpej 	ca = dev->dv_cfattach;
   1576       1.76   thorpej 	KASSERT(ca != NULL);
   1577       1.33   thorpej 
   1578      1.187    dyoung 	s = config_alldevs_lock();
   1579      1.187    dyoung 	if (dev->dv_del_gen != 0) {
   1580      1.187    dyoung 		config_alldevs_unlock(s);
   1581      1.187    dyoung #ifdef DIAGNOSTIC
   1582      1.187    dyoung 		printf("%s: %s is already detached\n", __func__,
   1583      1.187    dyoung 		    device_xname(dev));
   1584      1.187    dyoung #endif /* DIAGNOSTIC */
   1585      1.187    dyoung 		return ENOENT;
   1586      1.187    dyoung 	}
   1587      1.187    dyoung 	alldevs_nwrite++;
   1588      1.187    dyoung 	config_alldevs_unlock(s);
   1589      1.136    dyoung 
   1590      1.174    dyoung 	if (!detachall &&
   1591      1.174    dyoung 	    (flags & (DETACH_SHUTDOWN|DETACH_FORCE)) == DETACH_SHUTDOWN &&
   1592      1.174    dyoung 	    (dev->dv_flags & DVF_DETACH_SHUTDOWN) == 0) {
   1593      1.183    dyoung 		rv = EOPNOTSUPP;
   1594      1.187    dyoung 	} else if (ca->ca_detach != NULL) {
   1595      1.187    dyoung 		rv = (*ca->ca_detach)(dev, flags);
   1596      1.187    dyoung 	} else
   1597      1.187    dyoung 		rv = EOPNOTSUPP;
   1598       1.33   thorpej 
   1599       1.33   thorpej 	/*
   1600      1.187    dyoung 	 * If it was not possible to detach the device, then we either
   1601      1.187    dyoung 	 * panic() (for the forced but failed case), or return an error.
   1602      1.187    dyoung 	 *
   1603      1.187    dyoung 	 * If it was possible to detach the device, ensure that the
   1604      1.187    dyoung 	 * device is deactivated.
   1605       1.33   thorpej 	 */
   1606      1.187    dyoung 	if (rv == 0)
   1607      1.187    dyoung 		dev->dv_flags &= ~DVF_ACTIVE;
   1608      1.187    dyoung 	else if ((flags & DETACH_FORCE) == 0)
   1609      1.187    dyoung 		goto out;
   1610      1.187    dyoung 	else {
   1611      1.187    dyoung 		panic("config_detach: forced detach of %s failed (%d)",
   1612      1.187    dyoung 		    device_xname(dev), rv);
   1613       1.33   thorpej 	}
   1614       1.33   thorpej 
   1615       1.33   thorpej 	/*
   1616       1.33   thorpej 	 * The device has now been successfully detached.
   1617       1.33   thorpej 	 */
   1618       1.33   thorpej 
   1619      1.149  jmcneill 	/* Let userland know */
   1620      1.149  jmcneill 	devmon_report_device(dev, false);
   1621      1.149  jmcneill 
   1622       1.33   thorpej #ifdef DIAGNOSTIC
   1623       1.33   thorpej 	/*
   1624       1.33   thorpej 	 * Sanity: If you're successfully detached, you should have no
   1625       1.33   thorpej 	 * children.  (Note that because children must be attached
   1626       1.33   thorpej 	 * after parents, we only need to search the latter part of
   1627       1.33   thorpej 	 * the list.)
   1628       1.33   thorpej 	 */
   1629       1.33   thorpej 	for (d = TAILQ_NEXT(dev, dv_list); d != NULL;
   1630       1.48     enami 	    d = TAILQ_NEXT(d, dv_list)) {
   1631      1.187    dyoung 		if (d->dv_parent == dev && d->dv_del_gen == 0) {
   1632       1.48     enami 			printf("config_detach: detached device %s"
   1633      1.143    cegger 			    " has children %s\n", device_xname(dev), device_xname(d));
   1634       1.48     enami 			panic("config_detach");
   1635       1.48     enami 		}
   1636       1.33   thorpej 	}
   1637       1.33   thorpej #endif
   1638       1.33   thorpej 
   1639       1.90  drochner 	/* notify the parent that the child is gone */
   1640       1.90  drochner 	if (dev->dv_parent) {
   1641      1.102   thorpej 		device_t p = dev->dv_parent;
   1642       1.90  drochner 		if (p->dv_cfattach->ca_childdetached)
   1643       1.90  drochner 			(*p->dv_cfattach->ca_childdetached)(p, dev);
   1644       1.90  drochner 	}
   1645       1.90  drochner 
   1646       1.33   thorpej 	/*
   1647       1.33   thorpej 	 * Mark cfdata to show that the unit can be reused, if possible.
   1648       1.33   thorpej 	 */
   1649       1.65   thorpej 	TAILQ_FOREACH(ct, &allcftables, ct_list) {
   1650       1.67   thorpej 		for (cf = ct->ct_cfdata; cf->cf_name; cf++) {
   1651       1.67   thorpej 			if (STREQ(cf->cf_name, cd->cd_name)) {
   1652       1.65   thorpej 				if (cf->cf_fstate == FSTATE_FOUND &&
   1653       1.65   thorpej 				    cf->cf_unit == dev->dv_unit)
   1654       1.65   thorpej 					cf->cf_fstate = FSTATE_NOTFOUND;
   1655       1.65   thorpej 			}
   1656       1.33   thorpej 		}
   1657       1.33   thorpej 	}
   1658       1.33   thorpej 
   1659       1.77   thorpej 	if (dev->dv_cfdata != NULL && (flags & DETACH_QUIET) == 0)
   1660      1.136    dyoung 		aprint_normal_dev(dev, "detached\n");
   1661       1.33   thorpej 
   1662      1.136    dyoung out:
   1663      1.198    dyoung 	config_alldevs_enter(&af);
   1664      1.178    dyoung 	KASSERT(alldevs_nwrite != 0);
   1665      1.187    dyoung 	--alldevs_nwrite;
   1666  1.203.2.3     rmind 	if (rv == 0 && dev->dv_del_gen == 0) {
   1667  1.203.2.3     rmind 		if (alldevs_nwrite == 0 && alldevs_nread == 0)
   1668  1.203.2.3     rmind 			config_devunlink(dev, &af.af_garbage);
   1669  1.203.2.3     rmind 		else {
   1670  1.203.2.3     rmind 			dev->dv_del_gen = alldevs_gen;
   1671  1.203.2.3     rmind 			alldevs_garbage = true;
   1672  1.203.2.3     rmind 		}
   1673  1.203.2.3     rmind 	}
   1674      1.198    dyoung 	config_alldevs_exit(&af);
   1675      1.187    dyoung 
   1676      1.136    dyoung 	return rv;
   1677       1.33   thorpej }
   1678       1.33   thorpej 
   1679      1.126    dyoung int
   1680      1.126    dyoung config_detach_children(device_t parent, int flags)
   1681      1.126    dyoung {
   1682      1.130  drochner 	device_t dv;
   1683      1.136    dyoung 	deviter_t di;
   1684      1.136    dyoung 	int error = 0;
   1685      1.126    dyoung 
   1686      1.136    dyoung 	for (dv = deviter_first(&di, DEVITER_F_RW); dv != NULL;
   1687      1.136    dyoung 	     dv = deviter_next(&di)) {
   1688      1.136    dyoung 		if (device_parent(dv) != parent)
   1689      1.136    dyoung 			continue;
   1690      1.136    dyoung 		if ((error = config_detach(dv, flags)) != 0)
   1691      1.130  drochner 			break;
   1692      1.136    dyoung 	}
   1693      1.136    dyoung 	deviter_release(&di);
   1694      1.130  drochner 	return error;
   1695      1.126    dyoung }
   1696      1.126    dyoung 
   1697      1.178    dyoung device_t
   1698      1.178    dyoung shutdown_first(struct shutdown_state *s)
   1699      1.178    dyoung {
   1700      1.178    dyoung 	if (!s->initialized) {
   1701      1.178    dyoung 		deviter_init(&s->di, DEVITER_F_SHUTDOWN|DEVITER_F_LEAVES_FIRST);
   1702      1.178    dyoung 		s->initialized = true;
   1703      1.178    dyoung 	}
   1704      1.178    dyoung 	return shutdown_next(s);
   1705      1.178    dyoung }
   1706      1.178    dyoung 
   1707      1.178    dyoung device_t
   1708      1.178    dyoung shutdown_next(struct shutdown_state *s)
   1709      1.178    dyoung {
   1710      1.178    dyoung 	device_t dv;
   1711      1.178    dyoung 
   1712      1.178    dyoung 	while ((dv = deviter_next(&s->di)) != NULL && !device_is_active(dv))
   1713      1.178    dyoung 		;
   1714      1.178    dyoung 
   1715      1.178    dyoung 	if (dv == NULL)
   1716      1.178    dyoung 		s->initialized = false;
   1717      1.178    dyoung 
   1718      1.178    dyoung 	return dv;
   1719      1.178    dyoung }
   1720      1.178    dyoung 
   1721      1.178    dyoung bool
   1722      1.178    dyoung config_detach_all(int how)
   1723      1.178    dyoung {
   1724      1.178    dyoung 	static struct shutdown_state s;
   1725      1.178    dyoung 	device_t curdev;
   1726      1.178    dyoung 	bool progress = false;
   1727      1.178    dyoung 
   1728      1.178    dyoung 	if ((how & RB_NOSYNC) != 0)
   1729      1.178    dyoung 		return false;
   1730      1.178    dyoung 
   1731      1.178    dyoung 	for (curdev = shutdown_first(&s); curdev != NULL;
   1732      1.178    dyoung 	     curdev = shutdown_next(&s)) {
   1733      1.178    dyoung 		aprint_debug(" detaching %s, ", device_xname(curdev));
   1734      1.178    dyoung 		if (config_detach(curdev, DETACH_SHUTDOWN) == 0) {
   1735      1.178    dyoung 			progress = true;
   1736      1.178    dyoung 			aprint_debug("success.");
   1737      1.178    dyoung 		} else
   1738      1.178    dyoung 			aprint_debug("failed.");
   1739      1.178    dyoung 	}
   1740      1.178    dyoung 	return progress;
   1741      1.178    dyoung }
   1742      1.178    dyoung 
   1743      1.187    dyoung static bool
   1744      1.187    dyoung device_is_ancestor_of(device_t ancestor, device_t descendant)
   1745      1.187    dyoung {
   1746      1.187    dyoung 	device_t dv;
   1747      1.187    dyoung 
   1748      1.187    dyoung 	for (dv = descendant; dv != NULL; dv = device_parent(dv)) {
   1749      1.187    dyoung 		if (device_parent(dv) == ancestor)
   1750      1.187    dyoung 			return true;
   1751      1.187    dyoung 	}
   1752      1.187    dyoung 	return false;
   1753      1.187    dyoung }
   1754      1.187    dyoung 
   1755       1.33   thorpej int
   1756      1.102   thorpej config_deactivate(device_t dev)
   1757       1.33   thorpej {
   1758      1.187    dyoung 	deviter_t di;
   1759      1.187    dyoung 	const struct cfattach *ca;
   1760      1.187    dyoung 	device_t descendant;
   1761      1.187    dyoung 	int s, rv = 0, oflags;
   1762       1.33   thorpej 
   1763      1.187    dyoung 	for (descendant = deviter_first(&di, DEVITER_F_ROOT_FIRST);
   1764      1.187    dyoung 	     descendant != NULL;
   1765      1.187    dyoung 	     descendant = deviter_next(&di)) {
   1766      1.187    dyoung 		if (dev != descendant &&
   1767      1.187    dyoung 		    !device_is_ancestor_of(dev, descendant))
   1768      1.187    dyoung 			continue;
   1769      1.187    dyoung 
   1770      1.187    dyoung 		if ((descendant->dv_flags & DVF_ACTIVE) == 0)
   1771      1.187    dyoung 			continue;
   1772       1.33   thorpej 
   1773      1.187    dyoung 		ca = descendant->dv_cfattach;
   1774      1.187    dyoung 		oflags = descendant->dv_flags;
   1775      1.187    dyoung 
   1776      1.187    dyoung 		descendant->dv_flags &= ~DVF_ACTIVE;
   1777      1.187    dyoung 		if (ca->ca_activate == NULL)
   1778      1.187    dyoung 			continue;
   1779      1.187    dyoung 		s = splhigh();
   1780      1.187    dyoung 		rv = (*ca->ca_activate)(descendant, DVACT_DEACTIVATE);
   1781      1.187    dyoung 		splx(s);
   1782      1.187    dyoung 		if (rv != 0)
   1783      1.187    dyoung 			descendant->dv_flags = oflags;
   1784       1.33   thorpej 	}
   1785      1.187    dyoung 	deviter_release(&di);
   1786      1.175    cegger 	return rv;
   1787       1.33   thorpej }
   1788       1.33   thorpej 
   1789       1.33   thorpej /*
   1790       1.29   thorpej  * Defer the configuration of the specified device until all
   1791       1.29   thorpej  * of its parent's devices have been attached.
   1792       1.29   thorpej  */
   1793       1.29   thorpej void
   1794      1.102   thorpej config_defer(device_t dev, void (*func)(device_t))
   1795       1.29   thorpej {
   1796       1.29   thorpej 	struct deferred_config *dc;
   1797       1.29   thorpej 
   1798       1.29   thorpej 	if (dev->dv_parent == NULL)
   1799       1.29   thorpej 		panic("config_defer: can't defer config of a root device");
   1800       1.29   thorpej 
   1801       1.29   thorpej #ifdef DIAGNOSTIC
   1802      1.188    dyoung 	TAILQ_FOREACH(dc, &deferred_config_queue, dc_queue) {
   1803       1.29   thorpej 		if (dc->dc_dev == dev)
   1804       1.29   thorpej 			panic("config_defer: deferred twice");
   1805       1.29   thorpej 	}
   1806       1.29   thorpej #endif
   1807       1.29   thorpej 
   1808      1.166        ad 	dc = kmem_alloc(sizeof(*dc), KM_SLEEP);
   1809       1.43   thorpej 	if (dc == NULL)
   1810       1.43   thorpej 		panic("config_defer: unable to allocate callback");
   1811       1.29   thorpej 
   1812       1.29   thorpej 	dc->dc_dev = dev;
   1813       1.29   thorpej 	dc->dc_func = func;
   1814       1.29   thorpej 	TAILQ_INSERT_TAIL(&deferred_config_queue, dc, dc_queue);
   1815       1.47   thorpej 	config_pending_incr();
   1816       1.29   thorpej }
   1817       1.29   thorpej 
   1818       1.29   thorpej /*
   1819       1.42   thorpej  * Defer some autoconfiguration for a device until after interrupts
   1820       1.42   thorpej  * are enabled.
   1821       1.42   thorpej  */
   1822       1.42   thorpej void
   1823      1.102   thorpej config_interrupts(device_t dev, void (*func)(device_t))
   1824       1.42   thorpej {
   1825       1.42   thorpej 	struct deferred_config *dc;
   1826       1.42   thorpej 
   1827       1.42   thorpej 	/*
   1828       1.42   thorpej 	 * If interrupts are enabled, callback now.
   1829       1.42   thorpej 	 */
   1830       1.43   thorpej 	if (cold == 0) {
   1831       1.42   thorpej 		(*func)(dev);
   1832       1.42   thorpej 		return;
   1833       1.42   thorpej 	}
   1834       1.42   thorpej 
   1835       1.42   thorpej #ifdef DIAGNOSTIC
   1836      1.188    dyoung 	TAILQ_FOREACH(dc, &interrupt_config_queue, dc_queue) {
   1837       1.42   thorpej 		if (dc->dc_dev == dev)
   1838       1.42   thorpej 			panic("config_interrupts: deferred twice");
   1839       1.42   thorpej 	}
   1840       1.42   thorpej #endif
   1841       1.42   thorpej 
   1842      1.166        ad 	dc = kmem_alloc(sizeof(*dc), KM_SLEEP);
   1843       1.43   thorpej 	if (dc == NULL)
   1844       1.43   thorpej 		panic("config_interrupts: unable to allocate callback");
   1845       1.42   thorpej 
   1846       1.42   thorpej 	dc->dc_dev = dev;
   1847       1.42   thorpej 	dc->dc_func = func;
   1848       1.42   thorpej 	TAILQ_INSERT_TAIL(&interrupt_config_queue, dc, dc_queue);
   1849       1.47   thorpej 	config_pending_incr();
   1850       1.42   thorpej }
   1851       1.42   thorpej 
   1852       1.42   thorpej /*
   1853  1.203.2.2     rmind  * Defer some autoconfiguration for a device until after root file system
   1854  1.203.2.2     rmind  * is mounted (to load firmware etc).
   1855  1.203.2.2     rmind  */
   1856  1.203.2.2     rmind void
   1857  1.203.2.2     rmind config_mountroot(device_t dev, void (*func)(device_t))
   1858  1.203.2.2     rmind {
   1859  1.203.2.2     rmind 	struct deferred_config *dc;
   1860  1.203.2.2     rmind 
   1861  1.203.2.2     rmind 	/*
   1862  1.203.2.2     rmind 	 * If root file system is mounted, callback now.
   1863  1.203.2.2     rmind 	 */
   1864  1.203.2.2     rmind 	if (root_is_mounted) {
   1865  1.203.2.2     rmind 		(*func)(dev);
   1866  1.203.2.2     rmind 		return;
   1867  1.203.2.2     rmind 	}
   1868  1.203.2.2     rmind 
   1869  1.203.2.2     rmind #ifdef DIAGNOSTIC
   1870  1.203.2.2     rmind 	TAILQ_FOREACH(dc, &mountroot_config_queue, dc_queue) {
   1871  1.203.2.2     rmind 		if (dc->dc_dev == dev)
   1872  1.203.2.2     rmind 			panic("%s: deferred twice", __func__);
   1873  1.203.2.2     rmind 	}
   1874  1.203.2.2     rmind #endif
   1875  1.203.2.2     rmind 
   1876  1.203.2.2     rmind 	dc = kmem_alloc(sizeof(*dc), KM_SLEEP);
   1877  1.203.2.2     rmind 	if (dc == NULL)
   1878  1.203.2.2     rmind 		panic("%s: unable to allocate callback", __func__);
   1879  1.203.2.2     rmind 
   1880  1.203.2.2     rmind 	dc->dc_dev = dev;
   1881  1.203.2.2     rmind 	dc->dc_func = func;
   1882  1.203.2.2     rmind 	TAILQ_INSERT_TAIL(&mountroot_config_queue, dc, dc_queue);
   1883  1.203.2.2     rmind }
   1884  1.203.2.2     rmind 
   1885  1.203.2.2     rmind /*
   1886       1.42   thorpej  * Process a deferred configuration queue.
   1887       1.29   thorpej  */
   1888       1.29   thorpej static void
   1889       1.51       cgd config_process_deferred(struct deferred_config_head *queue,
   1890      1.102   thorpej     device_t parent)
   1891       1.29   thorpej {
   1892       1.29   thorpej 	struct deferred_config *dc, *ndc;
   1893       1.29   thorpej 
   1894       1.42   thorpej 	for (dc = TAILQ_FIRST(queue); dc != NULL; dc = ndc) {
   1895       1.29   thorpej 		ndc = TAILQ_NEXT(dc, dc_queue);
   1896       1.42   thorpej 		if (parent == NULL || dc->dc_dev->dv_parent == parent) {
   1897       1.42   thorpej 			TAILQ_REMOVE(queue, dc, dc_queue);
   1898       1.29   thorpej 			(*dc->dc_func)(dc->dc_dev);
   1899      1.159      matt 			kmem_free(dc, sizeof(*dc));
   1900       1.47   thorpej 			config_pending_decr();
   1901       1.29   thorpej 		}
   1902       1.29   thorpej 	}
   1903       1.47   thorpej }
   1904       1.47   thorpej 
   1905       1.47   thorpej /*
   1906       1.47   thorpej  * Manipulate the config_pending semaphore.
   1907       1.47   thorpej  */
   1908       1.47   thorpej void
   1909       1.51       cgd config_pending_incr(void)
   1910       1.47   thorpej {
   1911       1.47   thorpej 
   1912      1.151        ad 	mutex_enter(&config_misc_lock);
   1913       1.47   thorpej 	config_pending++;
   1914      1.151        ad 	mutex_exit(&config_misc_lock);
   1915       1.47   thorpej }
   1916       1.47   thorpej 
   1917       1.47   thorpej void
   1918       1.51       cgd config_pending_decr(void)
   1919       1.47   thorpej {
   1920       1.47   thorpej 
   1921       1.47   thorpej #ifdef DIAGNOSTIC
   1922       1.47   thorpej 	if (config_pending == 0)
   1923       1.47   thorpej 		panic("config_pending_decr: config_pending == 0");
   1924       1.47   thorpej #endif
   1925      1.151        ad 	mutex_enter(&config_misc_lock);
   1926       1.47   thorpej 	config_pending--;
   1927       1.47   thorpej 	if (config_pending == 0)
   1928      1.151        ad 		cv_broadcast(&config_misc_cv);
   1929      1.151        ad 	mutex_exit(&config_misc_lock);
   1930       1.75   thorpej }
   1931       1.75   thorpej 
   1932       1.75   thorpej /*
   1933       1.75   thorpej  * Register a "finalization" routine.  Finalization routines are
   1934       1.75   thorpej  * called iteratively once all real devices have been found during
   1935       1.75   thorpej  * autoconfiguration, for as long as any one finalizer has done
   1936       1.75   thorpej  * any work.
   1937       1.75   thorpej  */
   1938       1.75   thorpej int
   1939      1.102   thorpej config_finalize_register(device_t dev, int (*fn)(device_t))
   1940       1.75   thorpej {
   1941       1.75   thorpej 	struct finalize_hook *f;
   1942       1.75   thorpej 
   1943       1.75   thorpej 	/*
   1944       1.75   thorpej 	 * If finalization has already been done, invoke the
   1945       1.75   thorpej 	 * callback function now.
   1946       1.75   thorpej 	 */
   1947       1.75   thorpej 	if (config_finalize_done) {
   1948       1.75   thorpej 		while ((*fn)(dev) != 0)
   1949       1.75   thorpej 			/* loop */ ;
   1950       1.75   thorpej 	}
   1951       1.75   thorpej 
   1952       1.75   thorpej 	/* Ensure this isn't already on the list. */
   1953       1.75   thorpej 	TAILQ_FOREACH(f, &config_finalize_list, f_list) {
   1954       1.75   thorpej 		if (f->f_func == fn && f->f_dev == dev)
   1955      1.175    cegger 			return EEXIST;
   1956       1.75   thorpej 	}
   1957       1.75   thorpej 
   1958      1.159      matt 	f = kmem_alloc(sizeof(*f), KM_SLEEP);
   1959       1.75   thorpej 	f->f_func = fn;
   1960       1.75   thorpej 	f->f_dev = dev;
   1961       1.75   thorpej 	TAILQ_INSERT_TAIL(&config_finalize_list, f, f_list);
   1962       1.75   thorpej 
   1963      1.175    cegger 	return 0;
   1964       1.75   thorpej }
   1965       1.75   thorpej 
   1966       1.75   thorpej void
   1967       1.75   thorpej config_finalize(void)
   1968       1.75   thorpej {
   1969       1.75   thorpej 	struct finalize_hook *f;
   1970      1.142        ad 	struct pdevinit *pdev;
   1971      1.142        ad 	extern struct pdevinit pdevinit[];
   1972      1.142        ad 	int errcnt, rv;
   1973      1.142        ad 
   1974      1.142        ad 	/*
   1975      1.142        ad 	 * Now that device driver threads have been created, wait for
   1976      1.142        ad 	 * them to finish any deferred autoconfiguration.
   1977      1.142        ad 	 */
   1978      1.151        ad 	mutex_enter(&config_misc_lock);
   1979      1.151        ad 	while (config_pending != 0)
   1980      1.151        ad 		cv_wait(&config_misc_cv, &config_misc_lock);
   1981      1.151        ad 	mutex_exit(&config_misc_lock);
   1982      1.142        ad 
   1983      1.167        ad 	KERNEL_LOCK(1, NULL);
   1984      1.167        ad 
   1985      1.142        ad 	/* Attach pseudo-devices. */
   1986      1.142        ad 	for (pdev = pdevinit; pdev->pdev_attach != NULL; pdev++)
   1987      1.142        ad 		(*pdev->pdev_attach)(pdev->pdev_count);
   1988       1.75   thorpej 
   1989       1.75   thorpej 	/* Run the hooks until none of them does any work. */
   1990       1.75   thorpej 	do {
   1991       1.75   thorpej 		rv = 0;
   1992       1.75   thorpej 		TAILQ_FOREACH(f, &config_finalize_list, f_list)
   1993       1.75   thorpej 			rv |= (*f->f_func)(f->f_dev);
   1994       1.75   thorpej 	} while (rv != 0);
   1995       1.75   thorpej 
   1996       1.75   thorpej 	config_finalize_done = 1;
   1997       1.75   thorpej 
   1998       1.75   thorpej 	/* Now free all the hooks. */
   1999       1.75   thorpej 	while ((f = TAILQ_FIRST(&config_finalize_list)) != NULL) {
   2000       1.75   thorpej 		TAILQ_REMOVE(&config_finalize_list, f, f_list);
   2001      1.159      matt 		kmem_free(f, sizeof(*f));
   2002       1.79   thorpej 	}
   2003      1.142        ad 
   2004      1.167        ad 	KERNEL_UNLOCK_ONE(NULL);
   2005      1.167        ad 
   2006      1.142        ad 	errcnt = aprint_get_error_count();
   2007      1.142        ad 	if ((boothowto & (AB_QUIET|AB_SILENT)) != 0 &&
   2008      1.142        ad 	    (boothowto & AB_VERBOSE) == 0) {
   2009      1.176        ad 		mutex_enter(&config_misc_lock);
   2010      1.142        ad 		if (config_do_twiddle) {
   2011      1.142        ad 			config_do_twiddle = 0;
   2012      1.169        ad 			printf_nolog(" done.\n");
   2013      1.142        ad 		}
   2014      1.176        ad 		mutex_exit(&config_misc_lock);
   2015      1.142        ad 		if (errcnt != 0) {
   2016      1.142        ad 			printf("WARNING: %d error%s while detecting hardware; "
   2017      1.142        ad 			    "check system log.\n", errcnt,
   2018      1.142        ad 			    errcnt == 1 ? "" : "s");
   2019      1.142        ad 		}
   2020      1.142        ad 	}
   2021       1.79   thorpej }
   2022       1.79   thorpej 
   2023      1.176        ad void
   2024      1.180     pooka config_twiddle_init()
   2025      1.180     pooka {
   2026      1.180     pooka 
   2027      1.180     pooka 	if ((boothowto & (AB_SILENT|AB_VERBOSE)) == AB_SILENT) {
   2028      1.180     pooka 		config_do_twiddle = 1;
   2029      1.180     pooka 	}
   2030      1.180     pooka 	callout_setfunc(&config_twiddle_ch, config_twiddle_fn, NULL);
   2031      1.180     pooka }
   2032      1.180     pooka 
   2033      1.180     pooka void
   2034      1.176        ad config_twiddle_fn(void *cookie)
   2035      1.176        ad {
   2036      1.176        ad 
   2037      1.176        ad 	mutex_enter(&config_misc_lock);
   2038      1.176        ad 	if (config_do_twiddle) {
   2039      1.176        ad 		twiddle();
   2040      1.176        ad 		callout_schedule(&config_twiddle_ch, mstohz(100));
   2041      1.176        ad 	}
   2042      1.176        ad 	mutex_exit(&config_misc_lock);
   2043      1.176        ad }
   2044      1.176        ad 
   2045      1.187    dyoung static int
   2046      1.187    dyoung config_alldevs_lock(void)
   2047      1.187    dyoung {
   2048      1.187    dyoung 	mutex_enter(&alldevs_mtx);
   2049  1.203.2.1     rmind 	return 0;
   2050      1.187    dyoung }
   2051      1.187    dyoung 
   2052      1.187    dyoung static void
   2053      1.198    dyoung config_alldevs_enter(struct alldevs_foray *af)
   2054      1.198    dyoung {
   2055      1.198    dyoung 	TAILQ_INIT(&af->af_garbage);
   2056      1.198    dyoung 	af->af_s = config_alldevs_lock();
   2057      1.198    dyoung 	config_collect_garbage(&af->af_garbage);
   2058      1.198    dyoung }
   2059      1.198    dyoung 
   2060      1.198    dyoung static void
   2061      1.198    dyoung config_alldevs_exit(struct alldevs_foray *af)
   2062      1.198    dyoung {
   2063      1.198    dyoung 	config_alldevs_unlock(af->af_s);
   2064      1.198    dyoung 	config_dump_garbage(&af->af_garbage);
   2065      1.198    dyoung }
   2066      1.198    dyoung 
   2067  1.203.2.1     rmind /*ARGSUSED*/
   2068      1.198    dyoung static void
   2069      1.187    dyoung config_alldevs_unlock(int s)
   2070      1.187    dyoung {
   2071      1.187    dyoung 	mutex_exit(&alldevs_mtx);
   2072      1.187    dyoung }
   2073      1.187    dyoung 
   2074      1.104   thorpej /*
   2075      1.107   thorpej  * device_lookup:
   2076      1.107   thorpej  *
   2077      1.107   thorpej  *	Look up a device instance for a given driver.
   2078      1.107   thorpej  */
   2079      1.156  drochner device_t
   2080      1.107   thorpej device_lookup(cfdriver_t cd, int unit)
   2081      1.107   thorpej {
   2082      1.187    dyoung 	device_t dv;
   2083      1.187    dyoung 	int s;
   2084      1.107   thorpej 
   2085      1.187    dyoung 	s = config_alldevs_lock();
   2086      1.187    dyoung 	KASSERT(mutex_owned(&alldevs_mtx));
   2087      1.107   thorpej 	if (unit < 0 || unit >= cd->cd_ndevs)
   2088      1.187    dyoung 		dv = NULL;
   2089      1.191    dyoung 	else if ((dv = cd->cd_devs[unit]) != NULL && dv->dv_del_gen != 0)
   2090      1.191    dyoung 		dv = NULL;
   2091      1.187    dyoung 	config_alldevs_unlock(s);
   2092      1.187    dyoung 
   2093      1.187    dyoung 	return dv;
   2094      1.107   thorpej }
   2095      1.107   thorpej 
   2096      1.107   thorpej /*
   2097      1.191    dyoung  * device_lookup_private:
   2098      1.140      matt  *
   2099      1.191    dyoung  *	Look up a softc instance for a given driver.
   2100      1.140      matt  */
   2101      1.140      matt void *
   2102      1.140      matt device_lookup_private(cfdriver_t cd, int unit)
   2103      1.140      matt {
   2104      1.140      matt 
   2105      1.198    dyoung 	return device_private(device_lookup(cd, unit));
   2106      1.140      matt }
   2107      1.140      matt 
   2108      1.140      matt /*
   2109      1.131     joerg  * device_find_by_xname:
   2110      1.131     joerg  *
   2111      1.131     joerg  *	Returns the device of the given name or NULL if it doesn't exist.
   2112      1.131     joerg  */
   2113      1.131     joerg device_t
   2114      1.131     joerg device_find_by_xname(const char *name)
   2115      1.131     joerg {
   2116      1.131     joerg 	device_t dv;
   2117      1.136    dyoung 	deviter_t di;
   2118      1.131     joerg 
   2119      1.136    dyoung 	for (dv = deviter_first(&di, 0); dv != NULL; dv = deviter_next(&di)) {
   2120      1.131     joerg 		if (strcmp(device_xname(dv), name) == 0)
   2121      1.131     joerg 			break;
   2122      1.131     joerg 	}
   2123      1.136    dyoung 	deviter_release(&di);
   2124      1.131     joerg 
   2125      1.131     joerg 	return dv;
   2126      1.131     joerg }
   2127      1.131     joerg 
   2128      1.131     joerg /*
   2129      1.131     joerg  * device_find_by_driver_unit:
   2130      1.131     joerg  *
   2131      1.131     joerg  *	Returns the device of the given driver name and unit or
   2132      1.131     joerg  *	NULL if it doesn't exist.
   2133      1.131     joerg  */
   2134      1.131     joerg device_t
   2135      1.131     joerg device_find_by_driver_unit(const char *name, int unit)
   2136      1.131     joerg {
   2137      1.131     joerg 	struct cfdriver *cd;
   2138      1.131     joerg 
   2139      1.131     joerg 	if ((cd = config_cfdriver_lookup(name)) == NULL)
   2140      1.131     joerg 		return NULL;
   2141      1.131     joerg 	return device_lookup(cd, unit);
   2142      1.131     joerg }
   2143      1.131     joerg 
   2144      1.131     joerg /*
   2145      1.124  jmcneill  * Power management related functions.
   2146      1.124  jmcneill  */
   2147      1.124  jmcneill 
   2148      1.124  jmcneill bool
   2149      1.124  jmcneill device_pmf_is_registered(device_t dev)
   2150      1.124  jmcneill {
   2151      1.124  jmcneill 	return (dev->dv_flags & DVF_POWER_HANDLERS) != 0;
   2152      1.124  jmcneill }
   2153      1.124  jmcneill 
   2154      1.124  jmcneill bool
   2155      1.203    dyoung device_pmf_driver_suspend(device_t dev, const pmf_qual_t *qual)
   2156      1.124  jmcneill {
   2157      1.124  jmcneill 	if ((dev->dv_flags & DVF_DRIVER_SUSPENDED) != 0)
   2158      1.124  jmcneill 		return true;
   2159      1.124  jmcneill 	if ((dev->dv_flags & DVF_CLASS_SUSPENDED) == 0)
   2160      1.124  jmcneill 		return false;
   2161      1.195    dyoung 	if (pmf_qual_depth(qual) <= DEVACT_LEVEL_DRIVER &&
   2162      1.183    dyoung 	    dev->dv_driver_suspend != NULL &&
   2163      1.195    dyoung 	    !(*dev->dv_driver_suspend)(dev, qual))
   2164      1.124  jmcneill 		return false;
   2165      1.124  jmcneill 
   2166      1.124  jmcneill 	dev->dv_flags |= DVF_DRIVER_SUSPENDED;
   2167      1.124  jmcneill 	return true;
   2168      1.124  jmcneill }
   2169      1.124  jmcneill 
   2170      1.124  jmcneill bool
   2171      1.203    dyoung device_pmf_driver_resume(device_t dev, const pmf_qual_t *qual)
   2172      1.124  jmcneill {
   2173      1.124  jmcneill 	if ((dev->dv_flags & DVF_DRIVER_SUSPENDED) == 0)
   2174      1.124  jmcneill 		return true;
   2175      1.124  jmcneill 	if ((dev->dv_flags & DVF_BUS_SUSPENDED) != 0)
   2176      1.124  jmcneill 		return false;
   2177      1.195    dyoung 	if (pmf_qual_depth(qual) <= DEVACT_LEVEL_DRIVER &&
   2178      1.183    dyoung 	    dev->dv_driver_resume != NULL &&
   2179      1.195    dyoung 	    !(*dev->dv_driver_resume)(dev, qual))
   2180      1.124  jmcneill 		return false;
   2181      1.124  jmcneill 
   2182      1.124  jmcneill 	dev->dv_flags &= ~DVF_DRIVER_SUSPENDED;
   2183      1.124  jmcneill 	return true;
   2184      1.124  jmcneill }
   2185      1.124  jmcneill 
   2186      1.133  drochner bool
   2187      1.133  drochner device_pmf_driver_shutdown(device_t dev, int how)
   2188      1.133  drochner {
   2189      1.133  drochner 
   2190      1.133  drochner 	if (*dev->dv_driver_shutdown != NULL &&
   2191      1.133  drochner 	    !(*dev->dv_driver_shutdown)(dev, how))
   2192      1.133  drochner 		return false;
   2193      1.133  drochner 	return true;
   2194      1.133  drochner }
   2195      1.133  drochner 
   2196      1.135    dyoung bool
   2197      1.124  jmcneill device_pmf_driver_register(device_t dev,
   2198      1.203    dyoung     bool (*suspend)(device_t, const pmf_qual_t *),
   2199      1.203    dyoung     bool (*resume)(device_t, const pmf_qual_t *),
   2200      1.133  drochner     bool (*shutdown)(device_t, int))
   2201      1.124  jmcneill {
   2202      1.124  jmcneill 	dev->dv_driver_suspend = suspend;
   2203      1.124  jmcneill 	dev->dv_driver_resume = resume;
   2204      1.133  drochner 	dev->dv_driver_shutdown = shutdown;
   2205      1.124  jmcneill 	dev->dv_flags |= DVF_POWER_HANDLERS;
   2206      1.135    dyoung 	return true;
   2207      1.124  jmcneill }
   2208      1.124  jmcneill 
   2209      1.139    dyoung static const char *
   2210      1.139    dyoung curlwp_name(void)
   2211      1.139    dyoung {
   2212      1.139    dyoung 	if (curlwp->l_name != NULL)
   2213      1.139    dyoung 		return curlwp->l_name;
   2214      1.139    dyoung 	else
   2215      1.139    dyoung 		return curlwp->l_proc->p_comm;
   2216      1.139    dyoung }
   2217      1.139    dyoung 
   2218      1.124  jmcneill void
   2219      1.124  jmcneill device_pmf_driver_deregister(device_t dev)
   2220      1.124  jmcneill {
   2221      1.174    dyoung 	device_lock_t dvl = device_getlock(dev);
   2222      1.157  drochner 
   2223      1.124  jmcneill 	dev->dv_driver_suspend = NULL;
   2224      1.124  jmcneill 	dev->dv_driver_resume = NULL;
   2225      1.139    dyoung 
   2226      1.174    dyoung 	mutex_enter(&dvl->dvl_mtx);
   2227      1.124  jmcneill 	dev->dv_flags &= ~DVF_POWER_HANDLERS;
   2228      1.174    dyoung 	while (dvl->dvl_nlock > 0 || dvl->dvl_nwait > 0) {
   2229      1.139    dyoung 		/* Wake a thread that waits for the lock.  That
   2230      1.139    dyoung 		 * thread will fail to acquire the lock, and then
   2231      1.139    dyoung 		 * it will wake the next thread that waits for the
   2232      1.139    dyoung 		 * lock, or else it will wake us.
   2233      1.139    dyoung 		 */
   2234      1.174    dyoung 		cv_signal(&dvl->dvl_cv);
   2235      1.139    dyoung 		pmflock_debug(dev, __func__, __LINE__);
   2236      1.174    dyoung 		cv_wait(&dvl->dvl_cv, &dvl->dvl_mtx);
   2237      1.139    dyoung 		pmflock_debug(dev, __func__, __LINE__);
   2238      1.139    dyoung 	}
   2239      1.174    dyoung 	mutex_exit(&dvl->dvl_mtx);
   2240      1.124  jmcneill }
   2241      1.124  jmcneill 
   2242      1.124  jmcneill bool
   2243      1.124  jmcneill device_pmf_driver_child_register(device_t dev)
   2244      1.124  jmcneill {
   2245      1.124  jmcneill 	device_t parent = device_parent(dev);
   2246      1.124  jmcneill 
   2247      1.124  jmcneill 	if (parent == NULL || parent->dv_driver_child_register == NULL)
   2248      1.124  jmcneill 		return true;
   2249      1.124  jmcneill 	return (*parent->dv_driver_child_register)(dev);
   2250      1.124  jmcneill }
   2251      1.124  jmcneill 
   2252      1.124  jmcneill void
   2253      1.124  jmcneill device_pmf_driver_set_child_register(device_t dev,
   2254      1.124  jmcneill     bool (*child_register)(device_t))
   2255      1.124  jmcneill {
   2256      1.124  jmcneill 	dev->dv_driver_child_register = child_register;
   2257      1.124  jmcneill }
   2258      1.124  jmcneill 
   2259      1.139    dyoung static void
   2260      1.139    dyoung pmflock_debug(device_t dev, const char *func, int line)
   2261      1.139    dyoung {
   2262      1.174    dyoung 	device_lock_t dvl = device_getlock(dev);
   2263      1.139    dyoung 
   2264      1.174    dyoung 	aprint_debug_dev(dev, "%s.%d, %s dvl_nlock %d dvl_nwait %d dv_flags %x\n",
   2265      1.174    dyoung 	    func, line, curlwp_name(), dvl->dvl_nlock, dvl->dvl_nwait,
   2266      1.139    dyoung 	    dev->dv_flags);
   2267      1.139    dyoung }
   2268      1.139    dyoung 
   2269      1.139    dyoung static bool
   2270      1.183    dyoung device_pmf_lock1(device_t dev)
   2271      1.139    dyoung {
   2272      1.174    dyoung 	device_lock_t dvl = device_getlock(dev);
   2273      1.139    dyoung 
   2274      1.155    dyoung 	while (device_pmf_is_registered(dev) &&
   2275      1.174    dyoung 	    dvl->dvl_nlock > 0 && dvl->dvl_holder != curlwp) {
   2276      1.174    dyoung 		dvl->dvl_nwait++;
   2277      1.183    dyoung 		pmflock_debug(dev, __func__, __LINE__);
   2278      1.174    dyoung 		cv_wait(&dvl->dvl_cv, &dvl->dvl_mtx);
   2279      1.183    dyoung 		pmflock_debug(dev, __func__, __LINE__);
   2280      1.174    dyoung 		dvl->dvl_nwait--;
   2281      1.139    dyoung 	}
   2282      1.139    dyoung 	if (!device_pmf_is_registered(dev)) {
   2283      1.183    dyoung 		pmflock_debug(dev, __func__, __LINE__);
   2284      1.139    dyoung 		/* We could not acquire the lock, but some other thread may
   2285      1.139    dyoung 		 * wait for it, also.  Wake that thread.
   2286      1.139    dyoung 		 */
   2287      1.174    dyoung 		cv_signal(&dvl->dvl_cv);
   2288      1.139    dyoung 		return false;
   2289      1.139    dyoung 	}
   2290      1.174    dyoung 	dvl->dvl_nlock++;
   2291      1.174    dyoung 	dvl->dvl_holder = curlwp;
   2292      1.183    dyoung 	pmflock_debug(dev, __func__, __LINE__);
   2293      1.139    dyoung 	return true;
   2294      1.139    dyoung }
   2295      1.139    dyoung 
   2296      1.139    dyoung bool
   2297      1.183    dyoung device_pmf_lock(device_t dev)
   2298      1.139    dyoung {
   2299      1.139    dyoung 	bool rc;
   2300      1.174    dyoung 	device_lock_t dvl = device_getlock(dev);
   2301      1.139    dyoung 
   2302      1.174    dyoung 	mutex_enter(&dvl->dvl_mtx);
   2303      1.183    dyoung 	rc = device_pmf_lock1(dev);
   2304      1.174    dyoung 	mutex_exit(&dvl->dvl_mtx);
   2305      1.139    dyoung 
   2306      1.139    dyoung 	return rc;
   2307      1.139    dyoung }
   2308      1.139    dyoung 
   2309      1.139    dyoung void
   2310      1.183    dyoung device_pmf_unlock(device_t dev)
   2311      1.139    dyoung {
   2312      1.174    dyoung 	device_lock_t dvl = device_getlock(dev);
   2313      1.139    dyoung 
   2314      1.174    dyoung 	KASSERT(dvl->dvl_nlock > 0);
   2315      1.174    dyoung 	mutex_enter(&dvl->dvl_mtx);
   2316      1.174    dyoung 	if (--dvl->dvl_nlock == 0)
   2317      1.174    dyoung 		dvl->dvl_holder = NULL;
   2318      1.174    dyoung 	cv_signal(&dvl->dvl_cv);
   2319      1.183    dyoung 	pmflock_debug(dev, __func__, __LINE__);
   2320      1.174    dyoung 	mutex_exit(&dvl->dvl_mtx);
   2321      1.139    dyoung }
   2322      1.139    dyoung 
   2323      1.174    dyoung device_lock_t
   2324      1.174    dyoung device_getlock(device_t dev)
   2325      1.139    dyoung {
   2326      1.174    dyoung 	return &dev->dv_lock;
   2327      1.139    dyoung }
   2328      1.139    dyoung 
   2329      1.124  jmcneill void *
   2330      1.124  jmcneill device_pmf_bus_private(device_t dev)
   2331      1.124  jmcneill {
   2332      1.124  jmcneill 	return dev->dv_bus_private;
   2333      1.124  jmcneill }
   2334      1.124  jmcneill 
   2335      1.124  jmcneill bool
   2336      1.203    dyoung device_pmf_bus_suspend(device_t dev, const pmf_qual_t *qual)
   2337      1.124  jmcneill {
   2338      1.124  jmcneill 	if ((dev->dv_flags & DVF_BUS_SUSPENDED) != 0)
   2339      1.124  jmcneill 		return true;
   2340      1.124  jmcneill 	if ((dev->dv_flags & DVF_CLASS_SUSPENDED) == 0 ||
   2341      1.124  jmcneill 	    (dev->dv_flags & DVF_DRIVER_SUSPENDED) == 0)
   2342      1.124  jmcneill 		return false;
   2343      1.195    dyoung 	if (pmf_qual_depth(qual) <= DEVACT_LEVEL_BUS &&
   2344      1.183    dyoung 	    dev->dv_bus_suspend != NULL &&
   2345      1.195    dyoung 	    !(*dev->dv_bus_suspend)(dev, qual))
   2346      1.124  jmcneill 		return false;
   2347      1.124  jmcneill 
   2348      1.124  jmcneill 	dev->dv_flags |= DVF_BUS_SUSPENDED;
   2349      1.124  jmcneill 	return true;
   2350      1.124  jmcneill }
   2351      1.124  jmcneill 
   2352      1.124  jmcneill bool
   2353      1.203    dyoung device_pmf_bus_resume(device_t dev, const pmf_qual_t *qual)
   2354      1.124  jmcneill {
   2355      1.124  jmcneill 	if ((dev->dv_flags & DVF_BUS_SUSPENDED) == 0)
   2356      1.124  jmcneill 		return true;
   2357      1.195    dyoung 	if (pmf_qual_depth(qual) <= DEVACT_LEVEL_BUS &&
   2358      1.183    dyoung 	    dev->dv_bus_resume != NULL &&
   2359      1.195    dyoung 	    !(*dev->dv_bus_resume)(dev, qual))
   2360      1.124  jmcneill 		return false;
   2361      1.124  jmcneill 
   2362      1.124  jmcneill 	dev->dv_flags &= ~DVF_BUS_SUSPENDED;
   2363      1.124  jmcneill 	return true;
   2364      1.124  jmcneill }
   2365      1.124  jmcneill 
   2366      1.133  drochner bool
   2367      1.133  drochner device_pmf_bus_shutdown(device_t dev, int how)
   2368      1.133  drochner {
   2369      1.133  drochner 
   2370      1.133  drochner 	if (*dev->dv_bus_shutdown != NULL &&
   2371      1.133  drochner 	    !(*dev->dv_bus_shutdown)(dev, how))
   2372      1.133  drochner 		return false;
   2373      1.133  drochner 	return true;
   2374      1.133  drochner }
   2375      1.133  drochner 
   2376      1.124  jmcneill void
   2377      1.124  jmcneill device_pmf_bus_register(device_t dev, void *priv,
   2378      1.203    dyoung     bool (*suspend)(device_t, const pmf_qual_t *),
   2379      1.203    dyoung     bool (*resume)(device_t, const pmf_qual_t *),
   2380      1.133  drochner     bool (*shutdown)(device_t, int), void (*deregister)(device_t))
   2381      1.124  jmcneill {
   2382      1.124  jmcneill 	dev->dv_bus_private = priv;
   2383      1.124  jmcneill 	dev->dv_bus_resume = resume;
   2384      1.124  jmcneill 	dev->dv_bus_suspend = suspend;
   2385      1.133  drochner 	dev->dv_bus_shutdown = shutdown;
   2386      1.124  jmcneill 	dev->dv_bus_deregister = deregister;
   2387      1.124  jmcneill }
   2388      1.124  jmcneill 
   2389      1.124  jmcneill void
   2390      1.124  jmcneill device_pmf_bus_deregister(device_t dev)
   2391      1.124  jmcneill {
   2392      1.124  jmcneill 	if (dev->dv_bus_deregister == NULL)
   2393      1.124  jmcneill 		return;
   2394      1.124  jmcneill 	(*dev->dv_bus_deregister)(dev);
   2395      1.124  jmcneill 	dev->dv_bus_private = NULL;
   2396      1.124  jmcneill 	dev->dv_bus_suspend = NULL;
   2397      1.124  jmcneill 	dev->dv_bus_resume = NULL;
   2398      1.124  jmcneill 	dev->dv_bus_deregister = NULL;
   2399      1.124  jmcneill }
   2400      1.124  jmcneill 
   2401      1.124  jmcneill void *
   2402      1.124  jmcneill device_pmf_class_private(device_t dev)
   2403      1.124  jmcneill {
   2404      1.124  jmcneill 	return dev->dv_class_private;
   2405      1.124  jmcneill }
   2406      1.124  jmcneill 
   2407      1.124  jmcneill bool
   2408      1.203    dyoung device_pmf_class_suspend(device_t dev, const pmf_qual_t *qual)
   2409      1.124  jmcneill {
   2410      1.124  jmcneill 	if ((dev->dv_flags & DVF_CLASS_SUSPENDED) != 0)
   2411      1.124  jmcneill 		return true;
   2412      1.195    dyoung 	if (pmf_qual_depth(qual) <= DEVACT_LEVEL_CLASS &&
   2413      1.183    dyoung 	    dev->dv_class_suspend != NULL &&
   2414      1.195    dyoung 	    !(*dev->dv_class_suspend)(dev, qual))
   2415      1.124  jmcneill 		return false;
   2416      1.124  jmcneill 
   2417      1.124  jmcneill 	dev->dv_flags |= DVF_CLASS_SUSPENDED;
   2418      1.124  jmcneill 	return true;
   2419      1.124  jmcneill }
   2420      1.124  jmcneill 
   2421      1.124  jmcneill bool
   2422      1.203    dyoung device_pmf_class_resume(device_t dev, const pmf_qual_t *qual)
   2423      1.124  jmcneill {
   2424      1.124  jmcneill 	if ((dev->dv_flags & DVF_CLASS_SUSPENDED) == 0)
   2425      1.124  jmcneill 		return true;
   2426      1.124  jmcneill 	if ((dev->dv_flags & DVF_BUS_SUSPENDED) != 0 ||
   2427      1.124  jmcneill 	    (dev->dv_flags & DVF_DRIVER_SUSPENDED) != 0)
   2428      1.124  jmcneill 		return false;
   2429      1.195    dyoung 	if (pmf_qual_depth(qual) <= DEVACT_LEVEL_CLASS &&
   2430      1.183    dyoung 	    dev->dv_class_resume != NULL &&
   2431      1.195    dyoung 	    !(*dev->dv_class_resume)(dev, qual))
   2432      1.124  jmcneill 		return false;
   2433      1.124  jmcneill 
   2434      1.124  jmcneill 	dev->dv_flags &= ~DVF_CLASS_SUSPENDED;
   2435      1.124  jmcneill 	return true;
   2436      1.124  jmcneill }
   2437      1.124  jmcneill 
   2438      1.124  jmcneill void
   2439      1.124  jmcneill device_pmf_class_register(device_t dev, void *priv,
   2440      1.203    dyoung     bool (*suspend)(device_t, const pmf_qual_t *),
   2441      1.203    dyoung     bool (*resume)(device_t, const pmf_qual_t *),
   2442      1.124  jmcneill     void (*deregister)(device_t))
   2443      1.124  jmcneill {
   2444      1.124  jmcneill 	dev->dv_class_private = priv;
   2445      1.124  jmcneill 	dev->dv_class_suspend = suspend;
   2446      1.124  jmcneill 	dev->dv_class_resume = resume;
   2447      1.124  jmcneill 	dev->dv_class_deregister = deregister;
   2448      1.124  jmcneill }
   2449      1.124  jmcneill 
   2450      1.124  jmcneill void
   2451      1.124  jmcneill device_pmf_class_deregister(device_t dev)
   2452      1.124  jmcneill {
   2453      1.124  jmcneill 	if (dev->dv_class_deregister == NULL)
   2454      1.124  jmcneill 		return;
   2455      1.124  jmcneill 	(*dev->dv_class_deregister)(dev);
   2456      1.124  jmcneill 	dev->dv_class_private = NULL;
   2457      1.124  jmcneill 	dev->dv_class_suspend = NULL;
   2458      1.124  jmcneill 	dev->dv_class_resume = NULL;
   2459      1.124  jmcneill 	dev->dv_class_deregister = NULL;
   2460      1.124  jmcneill }
   2461      1.124  jmcneill 
   2462      1.124  jmcneill bool
   2463      1.124  jmcneill device_active(device_t dev, devactive_t type)
   2464      1.124  jmcneill {
   2465      1.124  jmcneill 	size_t i;
   2466      1.124  jmcneill 
   2467      1.124  jmcneill 	if (dev->dv_activity_count == 0)
   2468      1.124  jmcneill 		return false;
   2469      1.124  jmcneill 
   2470      1.160      matt 	for (i = 0; i < dev->dv_activity_count; ++i) {
   2471      1.160      matt 		if (dev->dv_activity_handlers[i] == NULL)
   2472      1.160      matt 			break;
   2473      1.124  jmcneill 		(*dev->dv_activity_handlers[i])(dev, type);
   2474      1.160      matt 	}
   2475      1.124  jmcneill 
   2476      1.124  jmcneill 	return true;
   2477      1.124  jmcneill }
   2478      1.124  jmcneill 
   2479      1.124  jmcneill bool
   2480      1.124  jmcneill device_active_register(device_t dev, void (*handler)(device_t, devactive_t))
   2481      1.124  jmcneill {
   2482      1.124  jmcneill 	void (**new_handlers)(device_t, devactive_t);
   2483      1.124  jmcneill 	void (**old_handlers)(device_t, devactive_t);
   2484      1.159      matt 	size_t i, old_size, new_size;
   2485      1.124  jmcneill 	int s;
   2486      1.124  jmcneill 
   2487      1.124  jmcneill 	old_handlers = dev->dv_activity_handlers;
   2488      1.159      matt 	old_size = dev->dv_activity_count;
   2489      1.124  jmcneill 
   2490      1.159      matt 	for (i = 0; i < old_size; ++i) {
   2491      1.159      matt 		KASSERT(old_handlers[i] != handler);
   2492      1.159      matt 		if (old_handlers[i] == NULL) {
   2493      1.159      matt 			old_handlers[i] = handler;
   2494      1.159      matt 			return true;
   2495      1.159      matt 		}
   2496      1.124  jmcneill 	}
   2497      1.124  jmcneill 
   2498      1.159      matt 	new_size = old_size + 4;
   2499      1.159      matt 	new_handlers = kmem_alloc(sizeof(void *[new_size]), KM_SLEEP);
   2500      1.124  jmcneill 
   2501      1.159      matt 	memcpy(new_handlers, old_handlers, sizeof(void *[old_size]));
   2502      1.159      matt 	new_handlers[old_size] = handler;
   2503      1.159      matt 	memset(new_handlers + old_size + 1, 0,
   2504      1.159      matt 	    sizeof(int [new_size - (old_size+1)]));
   2505      1.124  jmcneill 
   2506      1.124  jmcneill 	s = splhigh();
   2507      1.124  jmcneill 	dev->dv_activity_count = new_size;
   2508      1.124  jmcneill 	dev->dv_activity_handlers = new_handlers;
   2509      1.124  jmcneill 	splx(s);
   2510      1.124  jmcneill 
   2511      1.124  jmcneill 	if (old_handlers != NULL)
   2512      1.165  macallan 		kmem_free(old_handlers, sizeof(void * [old_size]));
   2513      1.124  jmcneill 
   2514      1.124  jmcneill 	return true;
   2515      1.124  jmcneill }
   2516      1.124  jmcneill 
   2517      1.124  jmcneill void
   2518      1.124  jmcneill device_active_deregister(device_t dev, void (*handler)(device_t, devactive_t))
   2519      1.124  jmcneill {
   2520      1.124  jmcneill 	void (**old_handlers)(device_t, devactive_t);
   2521      1.159      matt 	size_t i, old_size;
   2522      1.124  jmcneill 	int s;
   2523      1.124  jmcneill 
   2524      1.124  jmcneill 	old_handlers = dev->dv_activity_handlers;
   2525      1.159      matt 	old_size = dev->dv_activity_count;
   2526      1.124  jmcneill 
   2527      1.159      matt 	for (i = 0; i < old_size; ++i) {
   2528      1.124  jmcneill 		if (old_handlers[i] == handler)
   2529      1.124  jmcneill 			break;
   2530      1.159      matt 		if (old_handlers[i] == NULL)
   2531      1.159      matt 			return; /* XXX panic? */
   2532      1.124  jmcneill 	}
   2533      1.124  jmcneill 
   2534      1.159      matt 	if (i == old_size)
   2535      1.124  jmcneill 		return; /* XXX panic? */
   2536      1.124  jmcneill 
   2537      1.159      matt 	for (; i < old_size - 1; ++i) {
   2538      1.159      matt 		if ((old_handlers[i] = old_handlers[i + 1]) != NULL)
   2539      1.159      matt 			continue;
   2540      1.124  jmcneill 
   2541      1.159      matt 		if (i == 0) {
   2542      1.159      matt 			s = splhigh();
   2543      1.159      matt 			dev->dv_activity_count = 0;
   2544      1.159      matt 			dev->dv_activity_handlers = NULL;
   2545      1.159      matt 			splx(s);
   2546      1.159      matt 			kmem_free(old_handlers, sizeof(void *[old_size]));
   2547      1.159      matt 		}
   2548      1.159      matt 		return;
   2549      1.124  jmcneill 	}
   2550      1.159      matt 	old_handlers[i] = NULL;
   2551      1.124  jmcneill }
   2552      1.136    dyoung 
   2553      1.187    dyoung /* Return true iff the device_t `dev' exists at generation `gen'. */
   2554      1.187    dyoung static bool
   2555      1.187    dyoung device_exists_at(device_t dv, devgen_t gen)
   2556      1.187    dyoung {
   2557      1.187    dyoung 	return (dv->dv_del_gen == 0 || dv->dv_del_gen > gen) &&
   2558      1.187    dyoung 	    dv->dv_add_gen <= gen;
   2559      1.187    dyoung }
   2560      1.187    dyoung 
   2561      1.187    dyoung static bool
   2562      1.187    dyoung deviter_visits(const deviter_t *di, device_t dv)
   2563      1.187    dyoung {
   2564      1.187    dyoung 	return device_exists_at(dv, di->di_gen);
   2565      1.187    dyoung }
   2566      1.187    dyoung 
   2567      1.136    dyoung /*
   2568      1.136    dyoung  * Device Iteration
   2569      1.136    dyoung  *
   2570      1.136    dyoung  * deviter_t: a device iterator.  Holds state for a "walk" visiting
   2571      1.136    dyoung  *     each device_t's in the device tree.
   2572      1.136    dyoung  *
   2573      1.136    dyoung  * deviter_init(di, flags): initialize the device iterator `di'
   2574      1.136    dyoung  *     to "walk" the device tree.  deviter_next(di) will return
   2575      1.136    dyoung  *     the first device_t in the device tree, or NULL if there are
   2576      1.136    dyoung  *     no devices.
   2577      1.136    dyoung  *
   2578      1.136    dyoung  *     `flags' is one or more of DEVITER_F_RW, indicating that the
   2579      1.136    dyoung  *     caller intends to modify the device tree by calling
   2580      1.136    dyoung  *     config_detach(9) on devices in the order that the iterator
   2581      1.136    dyoung  *     returns them; DEVITER_F_ROOT_FIRST, asking for the devices
   2582      1.136    dyoung  *     nearest the "root" of the device tree to be returned, first;
   2583      1.136    dyoung  *     DEVITER_F_LEAVES_FIRST, asking for the devices furthest from
   2584      1.136    dyoung  *     the root of the device tree, first; and DEVITER_F_SHUTDOWN,
   2585      1.136    dyoung  *     indicating both that deviter_init() should not respect any
   2586      1.136    dyoung  *     locks on the device tree, and that deviter_next(di) may run
   2587      1.136    dyoung  *     in more than one LWP before the walk has finished.
   2588      1.136    dyoung  *
   2589      1.136    dyoung  *     Only one DEVITER_F_RW iterator may be in the device tree at
   2590      1.136    dyoung  *     once.
   2591      1.136    dyoung  *
   2592      1.136    dyoung  *     DEVITER_F_SHUTDOWN implies DEVITER_F_RW.
   2593      1.136    dyoung  *
   2594      1.136    dyoung  *     Results are undefined if the flags DEVITER_F_ROOT_FIRST and
   2595      1.136    dyoung  *     DEVITER_F_LEAVES_FIRST are used in combination.
   2596      1.136    dyoung  *
   2597      1.136    dyoung  * deviter_first(di, flags): initialize the device iterator `di'
   2598      1.136    dyoung  *     and return the first device_t in the device tree, or NULL
   2599      1.136    dyoung  *     if there are no devices.  The statement
   2600      1.136    dyoung  *
   2601      1.136    dyoung  *         dv = deviter_first(di);
   2602      1.136    dyoung  *
   2603      1.136    dyoung  *     is shorthand for
   2604      1.136    dyoung  *
   2605      1.136    dyoung  *         deviter_init(di);
   2606      1.136    dyoung  *         dv = deviter_next(di);
   2607      1.136    dyoung  *
   2608      1.136    dyoung  * deviter_next(di): return the next device_t in the device tree,
   2609      1.136    dyoung  *     or NULL if there are no more devices.  deviter_next(di)
   2610      1.136    dyoung  *     is undefined if `di' was not initialized with deviter_init() or
   2611      1.136    dyoung  *     deviter_first().
   2612      1.136    dyoung  *
   2613      1.136    dyoung  * deviter_release(di): stops iteration (subsequent calls to
   2614      1.136    dyoung  *     deviter_next() will return NULL), releases any locks and
   2615      1.136    dyoung  *     resources held by the device iterator.
   2616      1.136    dyoung  *
   2617      1.136    dyoung  * Device iteration does not return device_t's in any particular
   2618      1.136    dyoung  * order.  An iterator will never return the same device_t twice.
   2619      1.136    dyoung  * Device iteration is guaranteed to complete---i.e., if deviter_next(di)
   2620      1.136    dyoung  * is called repeatedly on the same `di', it will eventually return
   2621      1.136    dyoung  * NULL.  It is ok to attach/detach devices during device iteration.
   2622      1.136    dyoung  */
   2623      1.136    dyoung void
   2624      1.136    dyoung deviter_init(deviter_t *di, deviter_flags_t flags)
   2625      1.136    dyoung {
   2626      1.136    dyoung 	device_t dv;
   2627      1.187    dyoung 	int s;
   2628      1.136    dyoung 
   2629      1.187    dyoung 	memset(di, 0, sizeof(*di));
   2630      1.187    dyoung 
   2631      1.187    dyoung 	s = config_alldevs_lock();
   2632      1.187    dyoung 	if ((flags & DEVITER_F_SHUTDOWN) != 0)
   2633      1.136    dyoung 		flags |= DEVITER_F_RW;
   2634      1.187    dyoung 
   2635      1.187    dyoung 	if ((flags & DEVITER_F_RW) != 0)
   2636      1.136    dyoung 		alldevs_nwrite++;
   2637      1.187    dyoung 	else
   2638      1.187    dyoung 		alldevs_nread++;
   2639      1.187    dyoung 	di->di_gen = alldevs_gen++;
   2640      1.187    dyoung 	config_alldevs_unlock(s);
   2641      1.136    dyoung 
   2642      1.136    dyoung 	di->di_flags = flags;
   2643      1.136    dyoung 
   2644      1.136    dyoung 	switch (di->di_flags & (DEVITER_F_LEAVES_FIRST|DEVITER_F_ROOT_FIRST)) {
   2645      1.136    dyoung 	case DEVITER_F_LEAVES_FIRST:
   2646      1.187    dyoung 		TAILQ_FOREACH(dv, &alldevs, dv_list) {
   2647      1.187    dyoung 			if (!deviter_visits(di, dv))
   2648      1.187    dyoung 				continue;
   2649      1.136    dyoung 			di->di_curdepth = MAX(di->di_curdepth, dv->dv_depth);
   2650      1.187    dyoung 		}
   2651      1.136    dyoung 		break;
   2652      1.136    dyoung 	case DEVITER_F_ROOT_FIRST:
   2653      1.187    dyoung 		TAILQ_FOREACH(dv, &alldevs, dv_list) {
   2654      1.187    dyoung 			if (!deviter_visits(di, dv))
   2655      1.187    dyoung 				continue;
   2656      1.136    dyoung 			di->di_maxdepth = MAX(di->di_maxdepth, dv->dv_depth);
   2657      1.187    dyoung 		}
   2658      1.136    dyoung 		break;
   2659      1.136    dyoung 	default:
   2660      1.136    dyoung 		break;
   2661      1.136    dyoung 	}
   2662      1.136    dyoung 
   2663      1.136    dyoung 	deviter_reinit(di);
   2664      1.136    dyoung }
   2665      1.136    dyoung 
   2666      1.136    dyoung static void
   2667      1.136    dyoung deviter_reinit(deviter_t *di)
   2668      1.136    dyoung {
   2669      1.136    dyoung 	if ((di->di_flags & DEVITER_F_RW) != 0)
   2670      1.136    dyoung 		di->di_prev = TAILQ_LAST(&alldevs, devicelist);
   2671      1.136    dyoung 	else
   2672      1.136    dyoung 		di->di_prev = TAILQ_FIRST(&alldevs);
   2673      1.136    dyoung }
   2674      1.136    dyoung 
   2675      1.136    dyoung device_t
   2676      1.136    dyoung deviter_first(deviter_t *di, deviter_flags_t flags)
   2677      1.136    dyoung {
   2678      1.136    dyoung 	deviter_init(di, flags);
   2679      1.136    dyoung 	return deviter_next(di);
   2680      1.136    dyoung }
   2681      1.136    dyoung 
   2682      1.136    dyoung static device_t
   2683      1.187    dyoung deviter_next2(deviter_t *di)
   2684      1.136    dyoung {
   2685      1.136    dyoung 	device_t dv;
   2686      1.136    dyoung 
   2687      1.136    dyoung 	dv = di->di_prev;
   2688      1.136    dyoung 
   2689      1.136    dyoung 	if (dv == NULL)
   2690      1.191    dyoung 		return NULL;
   2691      1.191    dyoung 
   2692      1.191    dyoung 	if ((di->di_flags & DEVITER_F_RW) != 0)
   2693      1.136    dyoung 		di->di_prev = TAILQ_PREV(dv, devicelist, dv_list);
   2694      1.136    dyoung 	else
   2695      1.136    dyoung 		di->di_prev = TAILQ_NEXT(dv, dv_list);
   2696      1.136    dyoung 
   2697      1.136    dyoung 	return dv;
   2698      1.136    dyoung }
   2699      1.136    dyoung 
   2700      1.187    dyoung static device_t
   2701      1.187    dyoung deviter_next1(deviter_t *di)
   2702      1.187    dyoung {
   2703      1.187    dyoung 	device_t dv;
   2704      1.187    dyoung 
   2705      1.187    dyoung 	do {
   2706      1.187    dyoung 		dv = deviter_next2(di);
   2707      1.187    dyoung 	} while (dv != NULL && !deviter_visits(di, dv));
   2708      1.187    dyoung 
   2709      1.187    dyoung 	return dv;
   2710      1.187    dyoung }
   2711      1.187    dyoung 
   2712      1.136    dyoung device_t
   2713      1.136    dyoung deviter_next(deviter_t *di)
   2714      1.136    dyoung {
   2715      1.136    dyoung 	device_t dv = NULL;
   2716      1.136    dyoung 
   2717      1.136    dyoung 	switch (di->di_flags & (DEVITER_F_LEAVES_FIRST|DEVITER_F_ROOT_FIRST)) {
   2718      1.136    dyoung 	case 0:
   2719      1.136    dyoung 		return deviter_next1(di);
   2720      1.136    dyoung 	case DEVITER_F_LEAVES_FIRST:
   2721      1.136    dyoung 		while (di->di_curdepth >= 0) {
   2722      1.136    dyoung 			if ((dv = deviter_next1(di)) == NULL) {
   2723      1.136    dyoung 				di->di_curdepth--;
   2724      1.136    dyoung 				deviter_reinit(di);
   2725      1.136    dyoung 			} else if (dv->dv_depth == di->di_curdepth)
   2726      1.136    dyoung 				break;
   2727      1.136    dyoung 		}
   2728      1.136    dyoung 		return dv;
   2729      1.136    dyoung 	case DEVITER_F_ROOT_FIRST:
   2730      1.136    dyoung 		while (di->di_curdepth <= di->di_maxdepth) {
   2731      1.136    dyoung 			if ((dv = deviter_next1(di)) == NULL) {
   2732      1.136    dyoung 				di->di_curdepth++;
   2733      1.136    dyoung 				deviter_reinit(di);
   2734      1.136    dyoung 			} else if (dv->dv_depth == di->di_curdepth)
   2735      1.136    dyoung 				break;
   2736      1.136    dyoung 		}
   2737      1.136    dyoung 		return dv;
   2738      1.136    dyoung 	default:
   2739      1.136    dyoung 		return NULL;
   2740      1.136    dyoung 	}
   2741      1.136    dyoung }
   2742      1.136    dyoung 
   2743      1.136    dyoung void
   2744      1.136    dyoung deviter_release(deviter_t *di)
   2745      1.136    dyoung {
   2746      1.136    dyoung 	bool rw = (di->di_flags & DEVITER_F_RW) != 0;
   2747      1.187    dyoung 	int s;
   2748      1.136    dyoung 
   2749      1.187    dyoung 	s = config_alldevs_lock();
   2750      1.187    dyoung 	if (rw)
   2751      1.187    dyoung 		--alldevs_nwrite;
   2752      1.187    dyoung 	else
   2753      1.178    dyoung 		--alldevs_nread;
   2754      1.187    dyoung 	/* XXX wake a garbage-collection thread */
   2755      1.187    dyoung 	config_alldevs_unlock(s);
   2756      1.136    dyoung }
   2757      1.174    dyoung 
   2758      1.201    dyoung const char *
   2759      1.201    dyoung cfdata_ifattr(const struct cfdata *cf)
   2760      1.201    dyoung {
   2761      1.201    dyoung 	return cf->cf_pspec->cfp_iattr;
   2762      1.201    dyoung }
   2763      1.201    dyoung 
   2764      1.193    dyoung bool
   2765      1.193    dyoung ifattr_match(const char *snull, const char *t)
   2766      1.193    dyoung {
   2767      1.193    dyoung 	return (snull == NULL) || strcmp(snull, t) == 0;
   2768      1.193    dyoung }
   2769      1.193    dyoung 
   2770      1.192    dyoung void
   2771      1.192    dyoung null_childdetached(device_t self, device_t child)
   2772      1.192    dyoung {
   2773      1.192    dyoung 	/* do nothing */
   2774      1.192    dyoung }
   2775      1.192    dyoung 
   2776      1.182     pooka static void
   2777      1.182     pooka sysctl_detach_setup(struct sysctllog **clog)
   2778      1.174    dyoung {
   2779      1.174    dyoung 	const struct sysctlnode *node = NULL;
   2780      1.174    dyoung 
   2781      1.174    dyoung 	sysctl_createv(clog, 0, NULL, &node,
   2782      1.174    dyoung 		CTLFLAG_PERMANENT,
   2783      1.174    dyoung 		CTLTYPE_NODE, "kern", NULL,
   2784      1.174    dyoung 		NULL, 0, NULL, 0,
   2785      1.174    dyoung 		CTL_KERN, CTL_EOL);
   2786      1.174    dyoung 
   2787      1.174    dyoung 	if (node == NULL)
   2788      1.174    dyoung 		return;
   2789      1.174    dyoung 
   2790      1.174    dyoung 	sysctl_createv(clog, 0, &node, NULL,
   2791      1.174    dyoung 		CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
   2792  1.203.2.1     rmind 		CTLTYPE_BOOL, "detachall",
   2793      1.174    dyoung 		SYSCTL_DESCR("Detach all devices at shutdown"),
   2794      1.174    dyoung 		NULL, 0, &detachall, 0,
   2795      1.174    dyoung 		CTL_CREATE, CTL_EOL);
   2796      1.174    dyoung }
   2797