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subr_devsw.c revision 1.53
      1  1.53       chs /*	$NetBSD: subr_devsw.c,v 1.53 2024/10/13 22:25:38 chs Exp $	*/
      2  1.11        ad 
      3   1.2   gehenna /*-
      4  1.20        ad  * Copyright (c) 2001, 2002, 2007, 2008 The NetBSD Foundation, Inc.
      5   1.2   gehenna  * All rights reserved.
      6   1.2   gehenna  *
      7   1.2   gehenna  * This code is derived from software contributed to The NetBSD Foundation
      8  1.11        ad  * by MAEKAWA Masahide <gehenna (at) NetBSD.org>, and by Andrew Doran.
      9   1.2   gehenna  *
     10   1.2   gehenna  * Redistribution and use in source and binary forms, with or without
     11   1.2   gehenna  * modification, are permitted provided that the following conditions
     12   1.2   gehenna  * are met:
     13   1.2   gehenna  * 1. Redistributions of source code must retain the above copyright
     14   1.2   gehenna  *    notice, this list of conditions and the following disclaimer.
     15   1.2   gehenna  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.2   gehenna  *    notice, this list of conditions and the following disclaimer in the
     17   1.2   gehenna  *    documentation and/or other materials provided with the distribution.
     18   1.2   gehenna  *
     19   1.2   gehenna  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20   1.2   gehenna  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21   1.2   gehenna  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22   1.2   gehenna  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23   1.2   gehenna  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24   1.2   gehenna  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25   1.2   gehenna  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26   1.2   gehenna  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27   1.2   gehenna  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28   1.2   gehenna  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29   1.2   gehenna  * POSSIBILITY OF SUCH DAMAGE.
     30   1.2   gehenna  */
     31  1.45  riastrad 
     32  1.11        ad /*
     33  1.11        ad  * Overview
     34  1.11        ad  *
     35  1.11        ad  *	subr_devsw.c: registers device drivers by name and by major
     36  1.11        ad  *	number, and provides wrapper methods for performing I/O and
     37  1.11        ad  *	other tasks on device drivers, keying on the device number
     38  1.11        ad  *	(dev_t).
     39  1.11        ad  *
     40  1.11        ad  *	When the system is built, the config(8) command generates
     41  1.11        ad  *	static tables of device drivers built into the kernel image
     42  1.11        ad  *	along with their associated methods.  These are recorded in
     43  1.11        ad  *	the cdevsw0 and bdevsw0 tables.  Drivers can also be added to
     44  1.11        ad  *	and removed from the system dynamically.
     45  1.11        ad  *
     46  1.11        ad  * Allocation
     47  1.11        ad  *
     48  1.11        ad  *	When the system initially boots only the statically allocated
     49  1.11        ad  *	indexes (bdevsw0, cdevsw0) are used.  If these overflow due to
     50  1.11        ad  *	allocation, we allocate a fixed block of memory to hold the new,
     51  1.11        ad  *	expanded index.  This "fork" of the table is only ever performed
     52  1.11        ad  *	once in order to guarantee that other threads may safely access
     53  1.11        ad  *	the device tables:
     54  1.11        ad  *
     55  1.11        ad  *	o Once a thread has a "reference" to the table via an earlier
     56  1.11        ad  *	  open() call, we know that the entry in the table must exist
     57  1.11        ad  *	  and so it is safe to access it.
     58  1.11        ad  *
     59  1.11        ad  *	o Regardless of whether other threads see the old or new
     60  1.11        ad  *	  pointers, they will point to a correct device switch
     61  1.11        ad  *	  structure for the operation being performed.
     62  1.11        ad  *
     63  1.11        ad  *	XXX Currently, the wrapper methods such as cdev_read() verify
     64  1.11        ad  *	that a device driver does in fact exist before calling the
     65  1.11        ad  *	associated driver method.  This should be changed so that
     66  1.11        ad  *	once the device is has been referenced by a vnode (opened),
     67  1.11        ad  *	calling	the other methods should be valid until that reference
     68  1.11        ad  *	is dropped.
     69  1.11        ad  */
     70   1.7     lukem 
     71   1.7     lukem #include <sys/cdefs.h>
     72  1.53       chs __KERNEL_RCSID(0, "$NetBSD: subr_devsw.c,v 1.53 2024/10/13 22:25:38 chs Exp $");
     73  1.34       riz 
     74  1.34       riz #ifdef _KERNEL_OPT
     75  1.34       riz #include "opt_dtrace.h"
     76  1.34       riz #endif
     77   1.2   gehenna 
     78   1.2   gehenna #include <sys/param.h>
     79   1.2   gehenna #include <sys/conf.h>
     80  1.11        ad #include <sys/kmem.h>
     81   1.2   gehenna #include <sys/systm.h>
     82  1.11        ad #include <sys/poll.h>
     83  1.11        ad #include <sys/tty.h>
     84  1.15      matt #include <sys/cpu.h>
     85  1.11        ad #include <sys/buf.h>
     86  1.29       mrg #include <sys/reboot.h>
     87  1.34       riz #include <sys/sdt.h>
     88  1.40  riastrad #include <sys/atomic.h>
     89  1.40  riastrad #include <sys/localcount.h>
     90  1.40  riastrad #include <sys/pserialize.h>
     91  1.40  riastrad #include <sys/xcall.h>
     92  1.41  riastrad #include <sys/device.h>
     93   1.2   gehenna 
     94   1.2   gehenna #ifdef DEVSW_DEBUG
     95   1.2   gehenna #define	DPRINTF(x)	printf x
     96   1.2   gehenna #else /* DEVSW_DEBUG */
     97   1.2   gehenna #define	DPRINTF(x)
     98   1.2   gehenna #endif /* DEVSW_DEBUG */
     99   1.2   gehenna 
    100  1.11        ad #define	MAXDEVSW	512	/* the maximum of major device number */
    101   1.2   gehenna #define	BDEVSW_SIZE	(sizeof(struct bdevsw *))
    102   1.2   gehenna #define	CDEVSW_SIZE	(sizeof(struct cdevsw *))
    103   1.2   gehenna #define	DEVSWCONV_SIZE	(sizeof(struct devsw_conv))
    104   1.2   gehenna 
    105  1.40  riastrad struct devswref {
    106  1.40  riastrad 	struct localcount	*dr_lc;
    107  1.40  riastrad };
    108  1.40  riastrad 
    109  1.40  riastrad /* XXX bdevsw, cdevsw, max_bdevsws, and max_cdevsws should be volatile */
    110   1.2   gehenna extern const struct bdevsw **bdevsw, *bdevsw0[];
    111   1.2   gehenna extern const struct cdevsw **cdevsw, *cdevsw0[];
    112   1.2   gehenna extern struct devsw_conv *devsw_conv, devsw_conv0[];
    113   1.2   gehenna extern const int sys_bdevsws, sys_cdevsws;
    114   1.2   gehenna extern int max_bdevsws, max_cdevsws, max_devsw_convs;
    115   1.2   gehenna 
    116  1.40  riastrad static struct devswref *cdevswref;
    117  1.40  riastrad static struct devswref *bdevswref;
    118  1.40  riastrad static kcondvar_t devsw_cv;
    119  1.40  riastrad 
    120  1.24  drochner static int bdevsw_attach(const struct bdevsw *, devmajor_t *);
    121  1.24  drochner static int cdevsw_attach(const struct cdevsw *, devmajor_t *);
    122  1.11        ad static void devsw_detach_locked(const struct bdevsw *, const struct cdevsw *);
    123  1.11        ad 
    124  1.23     pooka kmutex_t device_lock;
    125  1.23     pooka 
    126  1.31     pooka void (*biodone_vfs)(buf_t *) = (void *)nullop;
    127  1.31     pooka 
    128  1.49  riastrad /*
    129  1.49  riastrad  * bdev probes
    130  1.49  riastrad  */
    131  1.49  riastrad SDT_PROBE_DEFINE6(sdt, bdev, open, acquire,
    132  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    133  1.49  riastrad     "dev_t"/*dev*/,
    134  1.49  riastrad     "int"/*flag*/,
    135  1.49  riastrad     "int"/*devtype*/,
    136  1.49  riastrad     "int"/*unit*/,
    137  1.49  riastrad     "device_t"/*dv*/);
    138  1.49  riastrad SDT_PROBE_DEFINE4(sdt, bdev, open, entry,
    139  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    140  1.49  riastrad     "dev_t"/*dev*/,
    141  1.49  riastrad     "int"/*flag*/,
    142  1.49  riastrad     "int"/*devtype*/);
    143  1.49  riastrad SDT_PROBE_DEFINE5(sdt, bdev, open, return,
    144  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    145  1.49  riastrad     "dev_t"/*dev*/,
    146  1.49  riastrad     "int"/*flag*/,
    147  1.49  riastrad     "int"/*devtype*/,
    148  1.49  riastrad     "int"/*error*/);
    149  1.49  riastrad SDT_PROBE_DEFINE6(sdt, bdev, open, release,
    150  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    151  1.49  riastrad     "dev_t"/*dev*/,
    152  1.49  riastrad     "int"/*flag*/,
    153  1.49  riastrad     "int"/*devtype*/,
    154  1.49  riastrad     "int"/*unit*/,
    155  1.49  riastrad     "device_t"/*dv*/);
    156  1.49  riastrad 
    157  1.49  riastrad SDT_PROBE_DEFINE4(sdt, bdev, cancel, entry,
    158  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    159  1.49  riastrad     "dev_t"/*dev*/,
    160  1.49  riastrad     "int"/*flag*/,
    161  1.49  riastrad     "int"/*devtype*/);
    162  1.49  riastrad SDT_PROBE_DEFINE5(sdt, bdev, cancel, return,
    163  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    164  1.49  riastrad     "dev_t"/*dev*/,
    165  1.49  riastrad     "int"/*flag*/,
    166  1.49  riastrad     "int"/*devtype*/,
    167  1.49  riastrad     "int"/*error*/);
    168  1.49  riastrad 
    169  1.49  riastrad SDT_PROBE_DEFINE4(sdt, bdev, close, entry,
    170  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    171  1.49  riastrad     "dev_t"/*dev*/,
    172  1.49  riastrad     "int"/*flag*/,
    173  1.49  riastrad     "int"/*devtype*/);
    174  1.49  riastrad SDT_PROBE_DEFINE5(sdt, bdev, close, return,
    175  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    176  1.49  riastrad     "dev_t"/*dev*/,
    177  1.49  riastrad     "int"/*flag*/,
    178  1.49  riastrad     "int"/*devtype*/,
    179  1.49  riastrad     "int"/*error*/);
    180  1.49  riastrad 
    181  1.49  riastrad SDT_PROBE_DEFINE3(sdt, bdev, strategy, entry,
    182  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    183  1.49  riastrad     "dev_t"/*dev*/,
    184  1.49  riastrad     "struct buf *"/*bp*/);
    185  1.49  riastrad SDT_PROBE_DEFINE3(sdt, bdev, strategy, return,
    186  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    187  1.49  riastrad     "dev_t"/*dev*/,
    188  1.49  riastrad     "struct buf *"/*bp*/);
    189  1.49  riastrad 
    190  1.49  riastrad SDT_PROBE_DEFINE5(sdt, bdev, ioctl, entry,
    191  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    192  1.49  riastrad     "dev_t"/*dev*/,
    193  1.49  riastrad     "unsigned long"/*cmd*/,
    194  1.49  riastrad     "void *"/*data*/,
    195  1.49  riastrad     "int"/*flag*/);
    196  1.49  riastrad SDT_PROBE_DEFINE6(sdt, bdev, ioctl, return,
    197  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    198  1.49  riastrad     "dev_t"/*dev*/,
    199  1.49  riastrad     "unsigned long"/*cmd*/,
    200  1.49  riastrad     "void *"/*data*/,
    201  1.49  riastrad     "int"/*flag*/,
    202  1.49  riastrad     "int"/*error*/);
    203  1.49  riastrad 
    204  1.49  riastrad SDT_PROBE_DEFINE2(sdt, bdev, psize, entry,
    205  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    206  1.49  riastrad     "dev_t"/*dev*/);
    207  1.49  riastrad SDT_PROBE_DEFINE3(sdt, bdev, psize, return,
    208  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    209  1.49  riastrad     "dev_t"/*dev*/,
    210  1.49  riastrad     "int"/*psize*/);
    211  1.49  riastrad 
    212  1.49  riastrad SDT_PROBE_DEFINE4(sdt, bdev, discard, entry,
    213  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    214  1.49  riastrad     "dev_t"/*dev*/,
    215  1.49  riastrad     "off_t"/*pos*/,
    216  1.49  riastrad     "off_t"/*len*/);
    217  1.49  riastrad SDT_PROBE_DEFINE5(sdt, bdev, discard, return,
    218  1.49  riastrad     "struct bdevsw *"/*bdevsw*/,
    219  1.49  riastrad     "dev_t"/*dev*/,
    220  1.49  riastrad     "off_t"/*pos*/,
    221  1.49  riastrad     "off_t"/*len*/,
    222  1.49  riastrad     "int"/*error*/);
    223  1.49  riastrad 
    224  1.49  riastrad /*
    225  1.49  riastrad  * cdev probes
    226  1.49  riastrad  */
    227  1.49  riastrad SDT_PROBE_DEFINE6(sdt, cdev, open, acquire,
    228  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    229  1.49  riastrad     "dev_t"/*dev*/,
    230  1.49  riastrad     "int"/*flag*/,
    231  1.49  riastrad     "int"/*devtype*/,
    232  1.49  riastrad     "int"/*unit*/,
    233  1.49  riastrad     "device_t"/*dv*/);
    234  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, open, entry,
    235  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    236  1.49  riastrad     "dev_t"/*dev*/,
    237  1.49  riastrad     "int"/*flag*/,
    238  1.49  riastrad     "int"/*devtype*/);
    239  1.49  riastrad SDT_PROBE_DEFINE5(sdt, cdev, open, return,
    240  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    241  1.49  riastrad     "dev_t"/*dev*/,
    242  1.49  riastrad     "int"/*flag*/,
    243  1.49  riastrad     "int"/*devtype*/,
    244  1.49  riastrad     "int"/*error*/);
    245  1.49  riastrad SDT_PROBE_DEFINE6(sdt, cdev, open, release,
    246  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    247  1.49  riastrad     "dev_t"/*dev*/,
    248  1.49  riastrad     "int"/*flag*/,
    249  1.49  riastrad     "int"/*devtype*/,
    250  1.49  riastrad     "int"/*unit*/,
    251  1.49  riastrad     "device_t"/*dv*/);
    252  1.49  riastrad 
    253  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, cancel, entry,
    254  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    255  1.49  riastrad     "dev_t"/*dev*/,
    256  1.49  riastrad     "int"/*flag*/,
    257  1.49  riastrad     "int"/*devtype*/);
    258  1.49  riastrad SDT_PROBE_DEFINE5(sdt, cdev, cancel, return,
    259  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    260  1.49  riastrad     "dev_t"/*dev*/,
    261  1.49  riastrad     "int"/*flag*/,
    262  1.49  riastrad     "int"/*devtype*/,
    263  1.49  riastrad     "int"/*error*/);
    264  1.49  riastrad 
    265  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, close, entry,
    266  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    267  1.49  riastrad     "dev_t"/*dev*/,
    268  1.49  riastrad     "int"/*flag*/,
    269  1.49  riastrad     "int"/*devtype*/);
    270  1.49  riastrad SDT_PROBE_DEFINE5(sdt, cdev, close, return,
    271  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    272  1.49  riastrad     "dev_t"/*dev*/,
    273  1.49  riastrad     "int"/*flag*/,
    274  1.49  riastrad     "int"/*devtype*/,
    275  1.49  riastrad     "int"/*error*/);
    276  1.49  riastrad 
    277  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, read, entry,
    278  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    279  1.49  riastrad     "dev_t"/*dev*/,
    280  1.49  riastrad     "struct uio *"/*uio*/,
    281  1.49  riastrad     "int"/*flag*/);
    282  1.49  riastrad SDT_PROBE_DEFINE5(sdt, cdev, read, return,
    283  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    284  1.49  riastrad     "dev_t"/*dev*/,
    285  1.49  riastrad     "struct uio *"/*uio*/,
    286  1.49  riastrad     "int"/*flag*/,
    287  1.49  riastrad     "int"/*error*/);
    288  1.49  riastrad 
    289  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, write, entry,
    290  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    291  1.49  riastrad     "dev_t"/*dev*/,
    292  1.49  riastrad     "struct uio *"/*uio*/,
    293  1.49  riastrad     "int"/*flag*/);
    294  1.49  riastrad SDT_PROBE_DEFINE5(sdt, cdev, write, return,
    295  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    296  1.49  riastrad     "dev_t"/*dev*/,
    297  1.49  riastrad     "struct uio *"/*uio*/,
    298  1.49  riastrad     "int"/*flag*/,
    299  1.49  riastrad     "int"/*error*/);
    300  1.49  riastrad 
    301  1.49  riastrad SDT_PROBE_DEFINE5(sdt, cdev, ioctl, entry,
    302  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    303  1.49  riastrad     "dev_t"/*dev*/,
    304  1.49  riastrad     "unsigned long"/*cmd*/,
    305  1.49  riastrad     "void *"/*data*/,
    306  1.49  riastrad     "int"/*flag*/);
    307  1.49  riastrad SDT_PROBE_DEFINE6(sdt, cdev, ioctl, return,
    308  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    309  1.49  riastrad     "dev_t"/*dev*/,
    310  1.49  riastrad     "unsigned long"/*cmd*/,
    311  1.49  riastrad     "void *"/*data*/,
    312  1.49  riastrad     "int"/*flag*/,
    313  1.49  riastrad     "int"/*error*/);
    314  1.49  riastrad 
    315  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, stop, entry,
    316  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    317  1.49  riastrad     "dev_t"/*dev*/,
    318  1.49  riastrad     "struct tty *"/*tp*/,
    319  1.49  riastrad     "int"/*flag*/);
    320  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, stop, return,
    321  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    322  1.49  riastrad     "dev_t"/*dev*/,
    323  1.49  riastrad     "struct tty *"/*tp*/,
    324  1.49  riastrad     "int"/*flag*/);
    325  1.49  riastrad 
    326  1.49  riastrad SDT_PROBE_DEFINE3(sdt, cdev, poll, entry,
    327  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    328  1.49  riastrad     "dev_t"/*dev*/,
    329  1.49  riastrad     "int"/*events*/);
    330  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, poll, return,
    331  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    332  1.49  riastrad     "dev_t"/*dev*/,
    333  1.49  riastrad     "int"/*events*/,
    334  1.49  riastrad     "int"/*revents*/);
    335  1.49  riastrad 
    336  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, mmap, entry,
    337  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    338  1.49  riastrad     "dev_t"/*dev*/,
    339  1.49  riastrad     "off_t"/*off*/,
    340  1.49  riastrad     "int"/*flag*/);
    341  1.49  riastrad SDT_PROBE_DEFINE5(sdt, cdev, mmap, return,
    342  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    343  1.49  riastrad     "dev_t"/*dev*/,
    344  1.49  riastrad     "off_t"/*off*/,
    345  1.49  riastrad     "int"/*flag*/,
    346  1.49  riastrad     "paddr_t"/*mmapcookie*/);
    347  1.49  riastrad 
    348  1.49  riastrad SDT_PROBE_DEFINE3(sdt, cdev, kqfilter, entry,
    349  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    350  1.49  riastrad     "dev_t"/*dev*/,
    351  1.49  riastrad     "struct knote *"/*kn*/);
    352  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, kqfilter, return,
    353  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    354  1.49  riastrad     "dev_t"/*dev*/,
    355  1.49  riastrad     "struct knote *"/*kn*/,
    356  1.49  riastrad     "int"/*error*/);
    357  1.49  riastrad 
    358  1.49  riastrad SDT_PROBE_DEFINE4(sdt, cdev, discard, entry,
    359  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    360  1.49  riastrad     "dev_t"/*dev*/,
    361  1.49  riastrad     "off_t"/*pos*/,
    362  1.49  riastrad     "off_t"/*len*/);
    363  1.49  riastrad SDT_PROBE_DEFINE5(sdt, cdev, discard, return,
    364  1.49  riastrad     "struct cdevsw *"/*cdevsw*/,
    365  1.49  riastrad     "dev_t"/*dev*/,
    366  1.49  riastrad     "off_t"/*pos*/,
    367  1.49  riastrad     "off_t"/*len*/,
    368  1.49  riastrad     "int"/*error*/);
    369  1.49  riastrad 
    370  1.11        ad void
    371  1.11        ad devsw_init(void)
    372  1.11        ad {
    373  1.11        ad 
    374  1.11        ad 	KASSERT(sys_bdevsws < MAXDEVSW - 1);
    375  1.11        ad 	KASSERT(sys_cdevsws < MAXDEVSW - 1);
    376  1.23     pooka 	mutex_init(&device_lock, MUTEX_DEFAULT, IPL_NONE);
    377  1.40  riastrad 
    378  1.40  riastrad 	cv_init(&devsw_cv, "devsw");
    379  1.11        ad }
    380   1.2   gehenna 
    381   1.2   gehenna int
    382  1.24  drochner devsw_attach(const char *devname,
    383  1.24  drochner 	     const struct bdevsw *bdev, devmajor_t *bmajor,
    384  1.24  drochner 	     const struct cdevsw *cdev, devmajor_t *cmajor)
    385   1.2   gehenna {
    386   1.2   gehenna 	struct devsw_conv *conv;
    387   1.2   gehenna 	char *name;
    388   1.2   gehenna 	int error, i;
    389   1.2   gehenna 
    390   1.2   gehenna 	if (devname == NULL || cdev == NULL)
    391  1.45  riastrad 		return EINVAL;
    392   1.2   gehenna 
    393  1.23     pooka 	mutex_enter(&device_lock);
    394  1.11        ad 
    395  1.45  riastrad 	for (i = 0; i < max_devsw_convs; i++) {
    396   1.2   gehenna 		conv = &devsw_conv[i];
    397   1.2   gehenna 		if (conv->d_name == NULL || strcmp(devname, conv->d_name) != 0)
    398   1.2   gehenna 			continue;
    399   1.2   gehenna 
    400  1.51  riastrad 		if ((bdev != NULL) && (*bmajor < 0))
    401   1.2   gehenna 			*bmajor = conv->d_bmajor;
    402   1.2   gehenna 		if (*cmajor < 0)
    403   1.2   gehenna 			*cmajor = conv->d_cmajor;
    404   1.2   gehenna 
    405  1.11        ad 		if (*bmajor != conv->d_bmajor || *cmajor != conv->d_cmajor) {
    406  1.11        ad 			error = EINVAL;
    407  1.45  riastrad 			goto out;
    408  1.11        ad 		}
    409  1.11        ad 		if ((*bmajor >= 0 && bdev == NULL) || *cmajor < 0) {
    410  1.11        ad 			error = EINVAL;
    411  1.45  riastrad 			goto out;
    412  1.11        ad 		}
    413   1.2   gehenna 
    414   1.2   gehenna 		if ((*bmajor >= 0 && bdevsw[*bmajor] != NULL) ||
    415  1.11        ad 		    cdevsw[*cmajor] != NULL) {
    416  1.11        ad 			error = EEXIST;
    417  1.45  riastrad 			goto out;
    418  1.11        ad 		}
    419  1.40  riastrad 		break;
    420   1.2   gehenna 	}
    421   1.2   gehenna 
    422  1.40  riastrad 	/*
    423  1.40  riastrad 	 * XXX This should allocate what it needs up front so we never
    424  1.40  riastrad 	 * need to flail around trying to unwind.
    425  1.40  riastrad 	 */
    426  1.14     pooka 	error = bdevsw_attach(bdev, bmajor);
    427  1.45  riastrad 	if (error != 0)
    428  1.45  riastrad 		goto out;
    429  1.14     pooka 	error = cdevsw_attach(cdev, cmajor);
    430   1.2   gehenna 	if (error != 0) {
    431  1.11        ad 		devsw_detach_locked(bdev, NULL);
    432  1.45  riastrad 		goto out;
    433   1.2   gehenna 	}
    434   1.2   gehenna 
    435  1.40  riastrad 	/*
    436  1.40  riastrad 	 * If we already found a conv, we're done.  Otherwise, find an
    437  1.40  riastrad 	 * empty slot or extend the table.
    438  1.40  riastrad 	 */
    439  1.48  riastrad 	if (i < max_devsw_convs) {
    440  1.47  riastrad 		error = 0;
    441  1.45  riastrad 		goto out;
    442  1.47  riastrad 	}
    443  1.40  riastrad 
    444  1.45  riastrad 	for (i = 0; i < max_devsw_convs; i++) {
    445   1.2   gehenna 		if (devsw_conv[i].d_name == NULL)
    446   1.2   gehenna 			break;
    447   1.2   gehenna 	}
    448   1.2   gehenna 	if (i == max_devsw_convs) {
    449   1.2   gehenna 		struct devsw_conv *newptr;
    450  1.33      matt 		int old_convs, new_convs;
    451   1.2   gehenna 
    452  1.33      matt 		old_convs = max_devsw_convs;
    453  1.33      matt 		new_convs = old_convs + 1;
    454   1.2   gehenna 
    455  1.33      matt 		newptr = kmem_zalloc(new_convs * DEVSWCONV_SIZE, KM_NOSLEEP);
    456   1.2   gehenna 		if (newptr == NULL) {
    457  1.11        ad 			devsw_detach_locked(bdev, cdev);
    458  1.11        ad 			error = ENOMEM;
    459  1.45  riastrad 			goto out;
    460   1.2   gehenna 		}
    461  1.33      matt 		newptr[old_convs].d_name = NULL;
    462  1.33      matt 		newptr[old_convs].d_bmajor = -1;
    463  1.33      matt 		newptr[old_convs].d_cmajor = -1;
    464  1.33      matt 		memcpy(newptr, devsw_conv, old_convs * DEVSWCONV_SIZE);
    465   1.2   gehenna 		if (devsw_conv != devsw_conv0)
    466  1.33      matt 			kmem_free(devsw_conv, old_convs * DEVSWCONV_SIZE);
    467   1.2   gehenna 		devsw_conv = newptr;
    468  1.33      matt 		max_devsw_convs = new_convs;
    469   1.2   gehenna 	}
    470   1.2   gehenna 
    471  1.38  christos 	name = kmem_strdupsize(devname, NULL, KM_NOSLEEP);
    472   1.2   gehenna 	if (name == NULL) {
    473  1.11        ad 		devsw_detach_locked(bdev, cdev);
    474  1.25     enami 		error = ENOMEM;
    475  1.45  riastrad 		goto out;
    476   1.2   gehenna 	}
    477   1.2   gehenna 
    478   1.2   gehenna 	devsw_conv[i].d_name = name;
    479   1.2   gehenna 	devsw_conv[i].d_bmajor = *bmajor;
    480   1.2   gehenna 	devsw_conv[i].d_cmajor = *cmajor;
    481  1.45  riastrad 	error = 0;
    482  1.45  riastrad out:
    483  1.23     pooka 	mutex_exit(&device_lock);
    484  1.45  riastrad 	return error;
    485   1.2   gehenna }
    486   1.2   gehenna 
    487   1.2   gehenna static int
    488  1.24  drochner bdevsw_attach(const struct bdevsw *devsw, devmajor_t *devmajor)
    489   1.2   gehenna {
    490  1.40  riastrad 	const struct bdevsw **newbdevsw = NULL;
    491  1.40  riastrad 	struct devswref *newbdevswref = NULL;
    492  1.40  riastrad 	struct localcount *lc;
    493  1.24  drochner 	devmajor_t bmajor;
    494  1.24  drochner 	int i;
    495   1.2   gehenna 
    496  1.23     pooka 	KASSERT(mutex_owned(&device_lock));
    497  1.11        ad 
    498   1.2   gehenna 	if (devsw == NULL)
    499  1.45  riastrad 		return 0;
    500   1.2   gehenna 
    501   1.2   gehenna 	if (*devmajor < 0) {
    502  1.45  riastrad 		for (bmajor = sys_bdevsws; bmajor < max_bdevsws; bmajor++) {
    503   1.2   gehenna 			if (bdevsw[bmajor] != NULL)
    504   1.2   gehenna 				continue;
    505  1.45  riastrad 			for (i = 0; i < max_devsw_convs; i++) {
    506   1.2   gehenna 				if (devsw_conv[i].d_bmajor == bmajor)
    507   1.2   gehenna 					break;
    508   1.2   gehenna 			}
    509   1.2   gehenna 			if (i != max_devsw_convs)
    510   1.2   gehenna 				continue;
    511   1.2   gehenna 			break;
    512   1.2   gehenna 		}
    513   1.3   gehenna 		*devmajor = bmajor;
    514   1.2   gehenna 	}
    515  1.11        ad 
    516   1.2   gehenna 	if (*devmajor >= MAXDEVSW) {
    517  1.45  riastrad 		printf("%s: block majors exhausted\n", __func__);
    518  1.45  riastrad 		return ENOMEM;
    519   1.2   gehenna 	}
    520   1.2   gehenna 
    521  1.40  riastrad 	if (bdevswref == NULL) {
    522  1.40  riastrad 		newbdevswref = kmem_zalloc(MAXDEVSW * sizeof(newbdevswref[0]),
    523  1.40  riastrad 		    KM_NOSLEEP);
    524  1.40  riastrad 		if (newbdevswref == NULL)
    525  1.40  riastrad 			return ENOMEM;
    526  1.40  riastrad 		atomic_store_release(&bdevswref, newbdevswref);
    527  1.40  riastrad 	}
    528  1.40  riastrad 
    529   1.2   gehenna 	if (*devmajor >= max_bdevsws) {
    530  1.11        ad 		KASSERT(bdevsw == bdevsw0);
    531  1.40  riastrad 		newbdevsw = kmem_zalloc(MAXDEVSW * sizeof(newbdevsw[0]),
    532  1.40  riastrad 		    KM_NOSLEEP);
    533  1.40  riastrad 		if (newbdevsw == NULL)
    534  1.40  riastrad 			return ENOMEM;
    535  1.40  riastrad 		memcpy(newbdevsw, bdevsw, max_bdevsws * sizeof(bdevsw[0]));
    536  1.40  riastrad 		atomic_store_release(&bdevsw, newbdevsw);
    537  1.40  riastrad 		atomic_store_release(&max_bdevsws, MAXDEVSW);
    538   1.2   gehenna 	}
    539   1.2   gehenna 
    540   1.2   gehenna 	if (bdevsw[*devmajor] != NULL)
    541  1.45  riastrad 		return EEXIST;
    542   1.2   gehenna 
    543  1.40  riastrad 	KASSERT(bdevswref[*devmajor].dr_lc == NULL);
    544  1.40  riastrad 	lc = kmem_zalloc(sizeof(*lc), KM_SLEEP);
    545  1.40  riastrad 	localcount_init(lc);
    546  1.40  riastrad 	bdevswref[*devmajor].dr_lc = lc;
    547  1.40  riastrad 
    548  1.40  riastrad 	atomic_store_release(&bdevsw[*devmajor], devsw);
    549   1.2   gehenna 
    550  1.45  riastrad 	return 0;
    551   1.2   gehenna }
    552   1.2   gehenna 
    553   1.2   gehenna static int
    554  1.24  drochner cdevsw_attach(const struct cdevsw *devsw, devmajor_t *devmajor)
    555   1.2   gehenna {
    556  1.40  riastrad 	const struct cdevsw **newcdevsw = NULL;
    557  1.40  riastrad 	struct devswref *newcdevswref = NULL;
    558  1.40  riastrad 	struct localcount *lc;
    559  1.24  drochner 	devmajor_t cmajor;
    560  1.24  drochner 	int i;
    561   1.2   gehenna 
    562  1.23     pooka 	KASSERT(mutex_owned(&device_lock));
    563  1.11        ad 
    564   1.2   gehenna 	if (*devmajor < 0) {
    565  1.45  riastrad 		for (cmajor = sys_cdevsws; cmajor < max_cdevsws; cmajor++) {
    566   1.2   gehenna 			if (cdevsw[cmajor] != NULL)
    567   1.2   gehenna 				continue;
    568  1.45  riastrad 			for (i = 0; i < max_devsw_convs; i++) {
    569   1.2   gehenna 				if (devsw_conv[i].d_cmajor == cmajor)
    570   1.2   gehenna 					break;
    571   1.2   gehenna 			}
    572   1.2   gehenna 			if (i != max_devsw_convs)
    573   1.2   gehenna 				continue;
    574   1.2   gehenna 			break;
    575   1.2   gehenna 		}
    576   1.3   gehenna 		*devmajor = cmajor;
    577   1.2   gehenna 	}
    578  1.11        ad 
    579   1.2   gehenna 	if (*devmajor >= MAXDEVSW) {
    580  1.45  riastrad 		printf("%s: character majors exhausted\n", __func__);
    581  1.45  riastrad 		return ENOMEM;
    582   1.2   gehenna 	}
    583   1.2   gehenna 
    584  1.40  riastrad 	if (cdevswref == NULL) {
    585  1.40  riastrad 		newcdevswref = kmem_zalloc(MAXDEVSW * sizeof(newcdevswref[0]),
    586  1.40  riastrad 		    KM_NOSLEEP);
    587  1.40  riastrad 		if (newcdevswref == NULL)
    588  1.40  riastrad 			return ENOMEM;
    589  1.40  riastrad 		atomic_store_release(&cdevswref, newcdevswref);
    590  1.40  riastrad 	}
    591  1.40  riastrad 
    592   1.2   gehenna 	if (*devmajor >= max_cdevsws) {
    593  1.11        ad 		KASSERT(cdevsw == cdevsw0);
    594  1.40  riastrad 		newcdevsw = kmem_zalloc(MAXDEVSW * sizeof(newcdevsw[0]),
    595  1.40  riastrad 		    KM_NOSLEEP);
    596  1.40  riastrad 		if (newcdevsw == NULL)
    597  1.40  riastrad 			return ENOMEM;
    598  1.40  riastrad 		memcpy(newcdevsw, cdevsw, max_cdevsws * sizeof(cdevsw[0]));
    599  1.40  riastrad 		atomic_store_release(&cdevsw, newcdevsw);
    600  1.40  riastrad 		atomic_store_release(&max_cdevsws, MAXDEVSW);
    601   1.2   gehenna 	}
    602   1.2   gehenna 
    603   1.2   gehenna 	if (cdevsw[*devmajor] != NULL)
    604  1.45  riastrad 		return EEXIST;
    605   1.2   gehenna 
    606  1.40  riastrad 	KASSERT(cdevswref[*devmajor].dr_lc == NULL);
    607  1.40  riastrad 	lc = kmem_zalloc(sizeof(*lc), KM_SLEEP);
    608  1.40  riastrad 	localcount_init(lc);
    609  1.40  riastrad 	cdevswref[*devmajor].dr_lc = lc;
    610  1.40  riastrad 
    611  1.40  riastrad 	atomic_store_release(&cdevsw[*devmajor], devsw);
    612   1.2   gehenna 
    613  1.45  riastrad 	return 0;
    614   1.2   gehenna }
    615   1.2   gehenna 
    616  1.11        ad static void
    617  1.11        ad devsw_detach_locked(const struct bdevsw *bdev, const struct cdevsw *cdev)
    618   1.2   gehenna {
    619  1.53       chs 	int bi = -1, ci = -1/*XXXGCC*/, di;
    620  1.46  riastrad 	struct cfdriver *cd;
    621  1.46  riastrad 	device_t dv;
    622   1.2   gehenna 
    623  1.23     pooka 	KASSERT(mutex_owned(&device_lock));
    624  1.11        ad 
    625  1.46  riastrad 	/*
    626  1.46  riastrad 	 * If this is wired to an autoconf device, make sure the device
    627  1.46  riastrad 	 * has no more instances.  No locking here because under
    628  1.46  riastrad 	 * correct use of devsw_detach, none of this state can change
    629  1.46  riastrad 	 * at this point.
    630  1.46  riastrad 	 */
    631  1.46  riastrad 	if (cdev != NULL && (cd = cdev->d_cfdriver) != NULL) {
    632  1.46  riastrad 		for (di = 0; di < cd->cd_ndevs; di++) {
    633  1.46  riastrad 			KASSERTMSG((dv = cd->cd_devs[di]) == NULL,
    634  1.46  riastrad 			    "detaching character device driver %s"
    635  1.46  riastrad 			    " still has attached unit %s",
    636  1.46  riastrad 			    cd->cd_name, device_xname(dv));
    637  1.46  riastrad 		}
    638  1.46  riastrad 	}
    639  1.46  riastrad 	if (bdev != NULL && (cd = bdev->d_cfdriver) != NULL) {
    640  1.46  riastrad 		for (di = 0; di < cd->cd_ndevs; di++) {
    641  1.46  riastrad 			KASSERTMSG((dv = cd->cd_devs[di]) == NULL,
    642  1.46  riastrad 			    "detaching block device driver %s"
    643  1.46  riastrad 			    " still has attached unit %s",
    644  1.46  riastrad 			    cd->cd_name, device_xname(dv));
    645  1.46  riastrad 		}
    646  1.46  riastrad 	}
    647  1.46  riastrad 
    648  1.40  riastrad 	/* Prevent new references.  */
    649   1.2   gehenna 	if (bdev != NULL) {
    650  1.40  riastrad 		for (bi = 0; bi < max_bdevsws; bi++) {
    651  1.40  riastrad 			if (bdevsw[bi] != bdev)
    652   1.2   gehenna 				continue;
    653  1.40  riastrad 			atomic_store_relaxed(&bdevsw[bi], NULL);
    654   1.2   gehenna 			break;
    655   1.2   gehenna 		}
    656  1.40  riastrad 		KASSERT(bi < max_bdevsws);
    657   1.2   gehenna 	}
    658   1.2   gehenna 	if (cdev != NULL) {
    659  1.40  riastrad 		for (ci = 0; ci < max_cdevsws; ci++) {
    660  1.40  riastrad 			if (cdevsw[ci] != cdev)
    661   1.2   gehenna 				continue;
    662  1.40  riastrad 			atomic_store_relaxed(&cdevsw[ci], NULL);
    663   1.2   gehenna 			break;
    664   1.2   gehenna 		}
    665  1.40  riastrad 		KASSERT(ci < max_cdevsws);
    666  1.40  riastrad 	}
    667  1.40  riastrad 
    668  1.40  riastrad 	if (bdev == NULL && cdev == NULL) /* XXX possible? */
    669  1.40  riastrad 		return;
    670  1.40  riastrad 
    671  1.40  riastrad 	/*
    672  1.40  riastrad 	 * Wait for all bdevsw_lookup_acquire, cdevsw_lookup_acquire
    673  1.40  riastrad 	 * calls to notice that the devsw is gone.
    674  1.40  riastrad 	 *
    675  1.40  riastrad 	 * XXX Despite the use of the pserialize_read_enter/exit API
    676  1.40  riastrad 	 * elsewhere in this file, we use xc_barrier here instead of
    677  1.40  riastrad 	 * pserialize_perform -- because devsw_init is too early for
    678  1.40  riastrad 	 * pserialize_create.  Either pserialize_create should be made
    679  1.40  riastrad 	 * to work earlier, or it should be nixed altogether.  Until
    680  1.40  riastrad 	 * that is fixed, xc_barrier will serve the same purpose.
    681  1.40  riastrad 	 */
    682  1.40  riastrad 	xc_barrier(0);
    683  1.40  riastrad 
    684  1.40  riastrad 	/*
    685  1.40  riastrad 	 * Wait for all references to drain.  It is the caller's
    686  1.40  riastrad 	 * responsibility to ensure that at this point, there are no
    687  1.40  riastrad 	 * extant open instances and all new d_open calls will fail.
    688  1.40  riastrad 	 *
    689  1.40  riastrad 	 * Note that localcount_drain may release and reacquire
    690  1.40  riastrad 	 * device_lock.
    691  1.40  riastrad 	 */
    692  1.40  riastrad 	if (bdev != NULL) {
    693  1.40  riastrad 		localcount_drain(bdevswref[bi].dr_lc,
    694  1.40  riastrad 		    &devsw_cv, &device_lock);
    695  1.40  riastrad 		localcount_fini(bdevswref[bi].dr_lc);
    696  1.40  riastrad 		kmem_free(bdevswref[bi].dr_lc, sizeof(*bdevswref[bi].dr_lc));
    697  1.40  riastrad 		bdevswref[bi].dr_lc = NULL;
    698  1.40  riastrad 	}
    699  1.40  riastrad 	if (cdev != NULL) {
    700  1.40  riastrad 		localcount_drain(cdevswref[ci].dr_lc,
    701  1.40  riastrad 		    &devsw_cv, &device_lock);
    702  1.40  riastrad 		localcount_fini(cdevswref[ci].dr_lc);
    703  1.40  riastrad 		kmem_free(cdevswref[ci].dr_lc, sizeof(*cdevswref[ci].dr_lc));
    704  1.40  riastrad 		cdevswref[ci].dr_lc = NULL;
    705   1.2   gehenna 	}
    706   1.2   gehenna }
    707   1.2   gehenna 
    708  1.39  riastrad void
    709  1.11        ad devsw_detach(const struct bdevsw *bdev, const struct cdevsw *cdev)
    710  1.11        ad {
    711  1.11        ad 
    712  1.23     pooka 	mutex_enter(&device_lock);
    713  1.11        ad 	devsw_detach_locked(bdev, cdev);
    714  1.23     pooka 	mutex_exit(&device_lock);
    715  1.11        ad }
    716  1.11        ad 
    717  1.11        ad /*
    718  1.11        ad  * Look up a block device by number.
    719  1.11        ad  *
    720  1.11        ad  * => Caller must ensure that the device is attached.
    721  1.11        ad  */
    722   1.2   gehenna const struct bdevsw *
    723   1.2   gehenna bdevsw_lookup(dev_t dev)
    724   1.2   gehenna {
    725  1.24  drochner 	devmajor_t bmajor;
    726   1.2   gehenna 
    727   1.2   gehenna 	if (dev == NODEV)
    728  1.45  riastrad 		return NULL;
    729   1.2   gehenna 	bmajor = major(dev);
    730  1.40  riastrad 	if (bmajor < 0 || bmajor >= atomic_load_relaxed(&max_bdevsws))
    731  1.45  riastrad 		return NULL;
    732   1.2   gehenna 
    733  1.40  riastrad 	return atomic_load_consume(&bdevsw)[bmajor];
    734  1.40  riastrad }
    735  1.40  riastrad 
    736  1.40  riastrad static const struct bdevsw *
    737  1.40  riastrad bdevsw_lookup_acquire(dev_t dev, struct localcount **lcp)
    738  1.40  riastrad {
    739  1.40  riastrad 	devmajor_t bmajor;
    740  1.40  riastrad 	const struct bdevsw *bdev = NULL, *const *curbdevsw;
    741  1.40  riastrad 	struct devswref *curbdevswref;
    742  1.40  riastrad 	int s;
    743  1.40  riastrad 
    744  1.40  riastrad 	if (dev == NODEV)
    745  1.40  riastrad 		return NULL;
    746  1.40  riastrad 	bmajor = major(dev);
    747  1.40  riastrad 	if (bmajor < 0)
    748  1.40  riastrad 		return NULL;
    749  1.40  riastrad 
    750  1.40  riastrad 	s = pserialize_read_enter();
    751  1.40  riastrad 
    752  1.40  riastrad 	/*
    753  1.40  riastrad 	 * max_bdevsws never goes down, so it is safe to rely on this
    754  1.40  riastrad 	 * condition without any locking for the array access below.
    755  1.40  riastrad 	 * Test sys_bdevsws first so we can avoid the memory barrier in
    756  1.40  riastrad 	 * that case.
    757  1.40  riastrad 	 */
    758  1.40  riastrad 	if (bmajor >= sys_bdevsws &&
    759  1.40  riastrad 	    bmajor >= atomic_load_acquire(&max_bdevsws))
    760  1.40  riastrad 		goto out;
    761  1.40  riastrad 	curbdevsw = atomic_load_consume(&bdevsw);
    762  1.40  riastrad 	if ((bdev = atomic_load_consume(&curbdevsw[bmajor])) == NULL)
    763  1.40  riastrad 		goto out;
    764  1.40  riastrad 
    765  1.40  riastrad 	curbdevswref = atomic_load_consume(&bdevswref);
    766  1.40  riastrad 	if (curbdevswref == NULL) {
    767  1.40  riastrad 		*lcp = NULL;
    768  1.40  riastrad 	} else if ((*lcp = curbdevswref[bmajor].dr_lc) != NULL) {
    769  1.40  riastrad 		localcount_acquire(*lcp);
    770  1.40  riastrad 	}
    771  1.40  riastrad out:
    772  1.40  riastrad 	pserialize_read_exit(s);
    773  1.40  riastrad 	return bdev;
    774  1.40  riastrad }
    775  1.40  riastrad 
    776  1.40  riastrad static void
    777  1.40  riastrad bdevsw_release(const struct bdevsw *bdev, struct localcount *lc)
    778  1.40  riastrad {
    779  1.40  riastrad 
    780  1.40  riastrad 	if (lc == NULL)
    781  1.40  riastrad 		return;
    782  1.40  riastrad 	localcount_release(lc, &devsw_cv, &device_lock);
    783   1.2   gehenna }
    784   1.2   gehenna 
    785  1.11        ad /*
    786  1.11        ad  * Look up a character device by number.
    787  1.11        ad  *
    788  1.11        ad  * => Caller must ensure that the device is attached.
    789  1.11        ad  */
    790   1.2   gehenna const struct cdevsw *
    791   1.2   gehenna cdevsw_lookup(dev_t dev)
    792   1.2   gehenna {
    793  1.24  drochner 	devmajor_t cmajor;
    794   1.2   gehenna 
    795   1.2   gehenna 	if (dev == NODEV)
    796  1.45  riastrad 		return NULL;
    797   1.2   gehenna 	cmajor = major(dev);
    798  1.40  riastrad 	if (cmajor < 0 || cmajor >= atomic_load_relaxed(&max_cdevsws))
    799  1.45  riastrad 		return NULL;
    800   1.2   gehenna 
    801  1.40  riastrad 	return atomic_load_consume(&cdevsw)[cmajor];
    802  1.40  riastrad }
    803  1.40  riastrad 
    804  1.40  riastrad static const struct cdevsw *
    805  1.40  riastrad cdevsw_lookup_acquire(dev_t dev, struct localcount **lcp)
    806  1.40  riastrad {
    807  1.40  riastrad 	devmajor_t cmajor;
    808  1.40  riastrad 	const struct cdevsw *cdev = NULL, *const *curcdevsw;
    809  1.40  riastrad 	struct devswref *curcdevswref;
    810  1.40  riastrad 	int s;
    811  1.40  riastrad 
    812  1.40  riastrad 	if (dev == NODEV)
    813  1.40  riastrad 		return NULL;
    814  1.40  riastrad 	cmajor = major(dev);
    815  1.40  riastrad 	if (cmajor < 0)
    816  1.40  riastrad 		return NULL;
    817  1.40  riastrad 
    818  1.40  riastrad 	s = pserialize_read_enter();
    819  1.40  riastrad 
    820  1.40  riastrad 	/*
    821  1.40  riastrad 	 * max_cdevsws never goes down, so it is safe to rely on this
    822  1.40  riastrad 	 * condition without any locking for the array access below.
    823  1.40  riastrad 	 * Test sys_cdevsws first so we can avoid the memory barrier in
    824  1.40  riastrad 	 * that case.
    825  1.40  riastrad 	 */
    826  1.40  riastrad 	if (cmajor >= sys_cdevsws &&
    827  1.40  riastrad 	    cmajor >= atomic_load_acquire(&max_cdevsws))
    828  1.40  riastrad 		goto out;
    829  1.40  riastrad 	curcdevsw = atomic_load_consume(&cdevsw);
    830  1.40  riastrad 	if ((cdev = atomic_load_consume(&curcdevsw[cmajor])) == NULL)
    831  1.40  riastrad 		goto out;
    832  1.40  riastrad 
    833  1.40  riastrad 	curcdevswref = atomic_load_consume(&cdevswref);
    834  1.40  riastrad 	if (curcdevswref == NULL) {
    835  1.40  riastrad 		*lcp = NULL;
    836  1.40  riastrad 	} else if ((*lcp = curcdevswref[cmajor].dr_lc) != NULL) {
    837  1.40  riastrad 		localcount_acquire(*lcp);
    838  1.40  riastrad 	}
    839  1.40  riastrad out:
    840  1.40  riastrad 	pserialize_read_exit(s);
    841  1.40  riastrad 	return cdev;
    842  1.40  riastrad }
    843  1.40  riastrad 
    844  1.40  riastrad static void
    845  1.40  riastrad cdevsw_release(const struct cdevsw *cdev, struct localcount *lc)
    846  1.40  riastrad {
    847  1.40  riastrad 
    848  1.40  riastrad 	if (lc == NULL)
    849  1.40  riastrad 		return;
    850  1.40  riastrad 	localcount_release(lc, &devsw_cv, &device_lock);
    851   1.2   gehenna }
    852   1.2   gehenna 
    853  1.11        ad /*
    854  1.11        ad  * Look up a block device by reference to its operations set.
    855  1.11        ad  *
    856  1.11        ad  * => Caller must ensure that the device is not detached, and therefore
    857  1.11        ad  *    that the returned major is still valid when dereferenced.
    858  1.11        ad  */
    859  1.24  drochner devmajor_t
    860   1.2   gehenna bdevsw_lookup_major(const struct bdevsw *bdev)
    861   1.2   gehenna {
    862  1.40  riastrad 	const struct bdevsw *const *curbdevsw;
    863  1.40  riastrad 	devmajor_t bmajor, bmax;
    864   1.2   gehenna 
    865  1.40  riastrad 	bmax = atomic_load_acquire(&max_bdevsws);
    866  1.40  riastrad 	curbdevsw = atomic_load_consume(&bdevsw);
    867  1.40  riastrad 	for (bmajor = 0; bmajor < bmax; bmajor++) {
    868  1.40  riastrad 		if (atomic_load_relaxed(&curbdevsw[bmajor]) == bdev)
    869  1.45  riastrad 			return bmajor;
    870   1.2   gehenna 	}
    871   1.2   gehenna 
    872  1.45  riastrad 	return NODEVMAJOR;
    873   1.2   gehenna }
    874   1.2   gehenna 
    875  1.11        ad /*
    876  1.11        ad  * Look up a character device by reference to its operations set.
    877  1.11        ad  *
    878  1.11        ad  * => Caller must ensure that the device is not detached, and therefore
    879  1.11        ad  *    that the returned major is still valid when dereferenced.
    880  1.11        ad  */
    881  1.24  drochner devmajor_t
    882   1.2   gehenna cdevsw_lookup_major(const struct cdevsw *cdev)
    883   1.2   gehenna {
    884  1.40  riastrad 	const struct cdevsw *const *curcdevsw;
    885  1.40  riastrad 	devmajor_t cmajor, cmax;
    886   1.2   gehenna 
    887  1.40  riastrad 	cmax = atomic_load_acquire(&max_cdevsws);
    888  1.40  riastrad 	curcdevsw = atomic_load_consume(&cdevsw);
    889  1.40  riastrad 	for (cmajor = 0; cmajor < cmax; cmajor++) {
    890  1.40  riastrad 		if (atomic_load_relaxed(&curcdevsw[cmajor]) == cdev)
    891  1.45  riastrad 			return cmajor;
    892   1.2   gehenna 	}
    893   1.2   gehenna 
    894  1.45  riastrad 	return NODEVMAJOR;
    895   1.2   gehenna }
    896   1.2   gehenna 
    897   1.2   gehenna /*
    898   1.2   gehenna  * Convert from block major number to name.
    899  1.11        ad  *
    900  1.11        ad  * => Caller must ensure that the device is not detached, and therefore
    901  1.11        ad  *    that the name pointer is still valid when dereferenced.
    902   1.2   gehenna  */
    903   1.2   gehenna const char *
    904  1.24  drochner devsw_blk2name(devmajor_t bmajor)
    905   1.2   gehenna {
    906  1.11        ad 	const char *name;
    907  1.24  drochner 	devmajor_t cmajor;
    908  1.24  drochner 	int i;
    909   1.2   gehenna 
    910  1.11        ad 	name = NULL;
    911  1.11        ad 	cmajor = -1;
    912  1.11        ad 
    913  1.23     pooka 	mutex_enter(&device_lock);
    914  1.11        ad 	if (bmajor < 0 || bmajor >= max_bdevsws || bdevsw[bmajor] == NULL) {
    915  1.23     pooka 		mutex_exit(&device_lock);
    916  1.45  riastrad 		return NULL;
    917   1.2   gehenna 	}
    918  1.45  riastrad 	for (i = 0; i < max_devsw_convs; i++) {
    919  1.11        ad 		if (devsw_conv[i].d_bmajor == bmajor) {
    920  1.11        ad 			cmajor = devsw_conv[i].d_cmajor;
    921  1.11        ad 			break;
    922  1.11        ad 		}
    923  1.11        ad 	}
    924  1.11        ad 	if (cmajor >= 0 && cmajor < max_cdevsws && cdevsw[cmajor] != NULL)
    925  1.11        ad 		name = devsw_conv[i].d_name;
    926  1.23     pooka 	mutex_exit(&device_lock);
    927   1.2   gehenna 
    928  1.45  riastrad 	return name;
    929   1.2   gehenna }
    930   1.2   gehenna 
    931   1.2   gehenna /*
    932  1.26      haad  * Convert char major number to device driver name.
    933  1.26      haad  */
    934  1.27      yamt const char *
    935  1.26      haad cdevsw_getname(devmajor_t major)
    936  1.26      haad {
    937  1.26      haad 	const char *name;
    938  1.26      haad 	int i;
    939  1.26      haad 
    940  1.26      haad 	name = NULL;
    941  1.26      haad 
    942  1.26      haad 	if (major < 0)
    943  1.45  riastrad 		return NULL;
    944  1.45  riastrad 
    945  1.26      haad 	mutex_enter(&device_lock);
    946  1.45  riastrad 	for (i = 0; i < max_devsw_convs; i++) {
    947  1.26      haad 		if (devsw_conv[i].d_cmajor == major) {
    948  1.26      haad 			name = devsw_conv[i].d_name;
    949  1.26      haad 			break;
    950  1.26      haad 		}
    951  1.26      haad 	}
    952  1.26      haad 	mutex_exit(&device_lock);
    953  1.45  riastrad 	return name;
    954  1.26      haad }
    955  1.26      haad 
    956  1.26      haad /*
    957  1.26      haad  * Convert block major number to device driver name.
    958  1.26      haad  */
    959  1.27      yamt const char *
    960  1.26      haad bdevsw_getname(devmajor_t major)
    961  1.26      haad {
    962  1.26      haad 	const char *name;
    963  1.26      haad 	int i;
    964  1.26      haad 
    965  1.26      haad 	name = NULL;
    966  1.26      haad 
    967  1.26      haad 	if (major < 0)
    968  1.45  riastrad 		return NULL;
    969  1.45  riastrad 
    970  1.26      haad 	mutex_enter(&device_lock);
    971  1.45  riastrad 	for (i = 0; i < max_devsw_convs; i++) {
    972  1.26      haad 		if (devsw_conv[i].d_bmajor == major) {
    973  1.26      haad 			name = devsw_conv[i].d_name;
    974  1.26      haad 			break;
    975  1.26      haad 		}
    976  1.26      haad 	}
    977  1.26      haad 	mutex_exit(&device_lock);
    978  1.45  riastrad 	return name;
    979  1.26      haad }
    980  1.26      haad 
    981  1.26      haad /*
    982   1.2   gehenna  * Convert from device name to block major number.
    983  1.11        ad  *
    984  1.11        ad  * => Caller must ensure that the device is not detached, and therefore
    985  1.11        ad  *    that the major number is still valid when dereferenced.
    986   1.2   gehenna  */
    987  1.24  drochner devmajor_t
    988   1.2   gehenna devsw_name2blk(const char *name, char *devname, size_t devnamelen)
    989   1.2   gehenna {
    990   1.2   gehenna 	struct devsw_conv *conv;
    991  1.24  drochner 	devmajor_t bmajor;
    992  1.24  drochner 	int i;
    993   1.2   gehenna 
    994   1.2   gehenna 	if (name == NULL)
    995  1.45  riastrad 		return NODEVMAJOR;
    996   1.2   gehenna 
    997  1.23     pooka 	mutex_enter(&device_lock);
    998  1.45  riastrad 	for (i = 0; i < max_devsw_convs; i++) {
    999   1.5       mrg 		size_t len;
   1000   1.5       mrg 
   1001   1.2   gehenna 		conv = &devsw_conv[i];
   1002   1.2   gehenna 		if (conv->d_name == NULL)
   1003   1.2   gehenna 			continue;
   1004   1.5       mrg 		len = strlen(conv->d_name);
   1005   1.5       mrg 		if (strncmp(conv->d_name, name, len) != 0)
   1006   1.5       mrg 			continue;
   1007  1.45  riastrad 		if (name[len] != '\0' && !isdigit((unsigned char)name[len]))
   1008   1.2   gehenna 			continue;
   1009   1.2   gehenna 		bmajor = conv->d_bmajor;
   1010   1.2   gehenna 		if (bmajor < 0 || bmajor >= max_bdevsws ||
   1011   1.2   gehenna 		    bdevsw[bmajor] == NULL)
   1012   1.5       mrg 			break;
   1013   1.2   gehenna 		if (devname != NULL) {
   1014   1.2   gehenna #ifdef DEVSW_DEBUG
   1015   1.2   gehenna 			if (strlen(conv->d_name) >= devnamelen)
   1016  1.45  riastrad 				printf("%s: too short buffer\n", __func__);
   1017   1.2   gehenna #endif /* DEVSW_DEBUG */
   1018   1.4   tsutsui 			strncpy(devname, conv->d_name, devnamelen);
   1019   1.2   gehenna 			devname[devnamelen - 1] = '\0';
   1020   1.2   gehenna 		}
   1021  1.23     pooka 		mutex_exit(&device_lock);
   1022  1.45  riastrad 		return bmajor;
   1023   1.2   gehenna 	}
   1024   1.2   gehenna 
   1025  1.23     pooka 	mutex_exit(&device_lock);
   1026  1.45  riastrad 	return NODEVMAJOR;
   1027   1.2   gehenna }
   1028   1.2   gehenna 
   1029   1.2   gehenna /*
   1030  1.16    plunky  * Convert from device name to char major number.
   1031  1.16    plunky  *
   1032  1.16    plunky  * => Caller must ensure that the device is not detached, and therefore
   1033  1.16    plunky  *    that the major number is still valid when dereferenced.
   1034  1.16    plunky  */
   1035  1.24  drochner devmajor_t
   1036  1.16    plunky devsw_name2chr(const char *name, char *devname, size_t devnamelen)
   1037  1.16    plunky {
   1038  1.16    plunky 	struct devsw_conv *conv;
   1039  1.24  drochner 	devmajor_t cmajor;
   1040  1.24  drochner 	int i;
   1041  1.16    plunky 
   1042  1.16    plunky 	if (name == NULL)
   1043  1.45  riastrad 		return NODEVMAJOR;
   1044  1.16    plunky 
   1045  1.23     pooka 	mutex_enter(&device_lock);
   1046  1.45  riastrad 	for (i = 0; i < max_devsw_convs; i++) {
   1047  1.16    plunky 		size_t len;
   1048  1.16    plunky 
   1049  1.16    plunky 		conv = &devsw_conv[i];
   1050  1.16    plunky 		if (conv->d_name == NULL)
   1051  1.16    plunky 			continue;
   1052  1.16    plunky 		len = strlen(conv->d_name);
   1053  1.16    plunky 		if (strncmp(conv->d_name, name, len) != 0)
   1054  1.16    plunky 			continue;
   1055  1.45  riastrad 		if (name[len] != '\0' && !isdigit((unsigned char)name[len]))
   1056  1.16    plunky 			continue;
   1057  1.16    plunky 		cmajor = conv->d_cmajor;
   1058  1.16    plunky 		if (cmajor < 0 || cmajor >= max_cdevsws ||
   1059  1.16    plunky 		    cdevsw[cmajor] == NULL)
   1060  1.16    plunky 			break;
   1061  1.16    plunky 		if (devname != NULL) {
   1062  1.16    plunky #ifdef DEVSW_DEBUG
   1063  1.16    plunky 			if (strlen(conv->d_name) >= devnamelen)
   1064  1.37  pgoyette 				printf("%s: too short buffer", __func__);
   1065  1.16    plunky #endif /* DEVSW_DEBUG */
   1066  1.16    plunky 			strncpy(devname, conv->d_name, devnamelen);
   1067  1.16    plunky 			devname[devnamelen - 1] = '\0';
   1068  1.16    plunky 		}
   1069  1.23     pooka 		mutex_exit(&device_lock);
   1070  1.45  riastrad 		return cmajor;
   1071  1.16    plunky 	}
   1072  1.16    plunky 
   1073  1.23     pooka 	mutex_exit(&device_lock);
   1074  1.45  riastrad 	return NODEVMAJOR;
   1075  1.16    plunky }
   1076  1.16    plunky 
   1077  1.16    plunky /*
   1078   1.2   gehenna  * Convert from character dev_t to block dev_t.
   1079  1.11        ad  *
   1080  1.11        ad  * => Caller must ensure that the device is not detached, and therefore
   1081  1.11        ad  *    that the major number is still valid when dereferenced.
   1082   1.2   gehenna  */
   1083   1.2   gehenna dev_t
   1084   1.2   gehenna devsw_chr2blk(dev_t cdev)
   1085   1.2   gehenna {
   1086  1.24  drochner 	devmajor_t bmajor, cmajor;
   1087  1.24  drochner 	int i;
   1088  1.11        ad 	dev_t rv;
   1089   1.2   gehenna 
   1090   1.2   gehenna 	cmajor = major(cdev);
   1091  1.24  drochner 	bmajor = NODEVMAJOR;
   1092  1.11        ad 	rv = NODEV;
   1093   1.2   gehenna 
   1094  1.23     pooka 	mutex_enter(&device_lock);
   1095  1.11        ad 	if (cmajor < 0 || cmajor >= max_cdevsws || cdevsw[cmajor] == NULL) {
   1096  1.23     pooka 		mutex_exit(&device_lock);
   1097  1.45  riastrad 		return NODEV;
   1098  1.11        ad 	}
   1099  1.45  riastrad 	for (i = 0; i < max_devsw_convs; i++) {
   1100  1.11        ad 		if (devsw_conv[i].d_cmajor == cmajor) {
   1101  1.11        ad 			bmajor = devsw_conv[i].d_bmajor;
   1102  1.11        ad 			break;
   1103  1.11        ad 		}
   1104   1.2   gehenna 	}
   1105  1.11        ad 	if (bmajor >= 0 && bmajor < max_bdevsws && bdevsw[bmajor] != NULL)
   1106  1.11        ad 		rv = makedev(bmajor, minor(cdev));
   1107  1.23     pooka 	mutex_exit(&device_lock);
   1108   1.2   gehenna 
   1109  1.45  riastrad 	return rv;
   1110   1.2   gehenna }
   1111   1.2   gehenna 
   1112   1.2   gehenna /*
   1113   1.2   gehenna  * Convert from block dev_t to character dev_t.
   1114  1.11        ad  *
   1115  1.11        ad  * => Caller must ensure that the device is not detached, and therefore
   1116  1.11        ad  *    that the major number is still valid when dereferenced.
   1117   1.2   gehenna  */
   1118   1.2   gehenna dev_t
   1119   1.2   gehenna devsw_blk2chr(dev_t bdev)
   1120   1.2   gehenna {
   1121  1.24  drochner 	devmajor_t bmajor, cmajor;
   1122  1.24  drochner 	int i;
   1123  1.11        ad 	dev_t rv;
   1124   1.2   gehenna 
   1125  1.11        ad 	bmajor = major(bdev);
   1126  1.24  drochner 	cmajor = NODEVMAJOR;
   1127  1.11        ad 	rv = NODEV;
   1128  1.11        ad 
   1129  1.23     pooka 	mutex_enter(&device_lock);
   1130  1.11        ad 	if (bmajor < 0 || bmajor >= max_bdevsws || bdevsw[bmajor] == NULL) {
   1131  1.23     pooka 		mutex_exit(&device_lock);
   1132  1.45  riastrad 		return NODEV;
   1133  1.11        ad 	}
   1134  1.45  riastrad 	for (i = 0; i < max_devsw_convs; i++) {
   1135  1.11        ad 		if (devsw_conv[i].d_bmajor == bmajor) {
   1136  1.11        ad 			cmajor = devsw_conv[i].d_cmajor;
   1137  1.11        ad 			break;
   1138  1.11        ad 		}
   1139  1.11        ad 	}
   1140  1.11        ad 	if (cmajor >= 0 && cmajor < max_cdevsws && cdevsw[cmajor] != NULL)
   1141  1.11        ad 		rv = makedev(cmajor, minor(bdev));
   1142  1.23     pooka 	mutex_exit(&device_lock);
   1143   1.2   gehenna 
   1144  1.45  riastrad 	return rv;
   1145  1.11        ad }
   1146  1.11        ad 
   1147  1.11        ad /*
   1148  1.11        ad  * Device access methods.
   1149  1.11        ad  */
   1150  1.11        ad 
   1151  1.11        ad #define	DEV_LOCK(d)						\
   1152  1.17        ad 	if ((mpflag = (d->d_flag & D_MPSAFE)) == 0) {		\
   1153  1.17        ad 		KERNEL_LOCK(1, NULL);				\
   1154  1.11        ad 	}
   1155   1.2   gehenna 
   1156  1.11        ad #define	DEV_UNLOCK(d)						\
   1157  1.17        ad 	if (mpflag == 0) {					\
   1158  1.17        ad 		KERNEL_UNLOCK_ONE(NULL);			\
   1159   1.2   gehenna 	}
   1160   1.2   gehenna 
   1161  1.11        ad int
   1162  1.11        ad bdev_open(dev_t dev, int flag, int devtype, lwp_t *l)
   1163  1.11        ad {
   1164  1.11        ad 	const struct bdevsw *d;
   1165  1.40  riastrad 	struct localcount *lc;
   1166  1.41  riastrad 	device_t dv = NULL/*XXXGCC*/;
   1167  1.49  riastrad 	int unit = -1/*XXXGCC*/, rv, mpflag;
   1168  1.11        ad 
   1169  1.40  riastrad 	d = bdevsw_lookup_acquire(dev, &lc);
   1170  1.11        ad 	if (d == NULL)
   1171  1.11        ad 		return ENXIO;
   1172  1.11        ad 
   1173  1.41  riastrad 	if (d->d_devtounit) {
   1174  1.41  riastrad 		/*
   1175  1.41  riastrad 		 * If the device node corresponds to an autoconf device
   1176  1.41  riastrad 		 * instance, acquire a reference to it so that during
   1177  1.41  riastrad 		 * d_open, device_lookup is stable.
   1178  1.41  riastrad 		 *
   1179  1.41  riastrad 		 * XXX This should also arrange to instantiate cloning
   1180  1.41  riastrad 		 * pseudo-devices if appropriate, but that requires
   1181  1.41  riastrad 		 * reviewing them all to find and verify a common
   1182  1.41  riastrad 		 * pattern.
   1183  1.41  riastrad 		 */
   1184  1.52  riastrad 		if ((unit = (*d->d_devtounit)(dev)) == -1) {
   1185  1.52  riastrad 			rv = ENXIO;
   1186  1.52  riastrad 			goto out;
   1187  1.52  riastrad 		}
   1188  1.52  riastrad 		if ((dv = device_lookup_acquire(d->d_cfdriver, unit)) ==
   1189  1.52  riastrad 		    NULL) {
   1190  1.52  riastrad 			rv = ENXIO;
   1191  1.52  riastrad 			goto out;
   1192  1.52  riastrad 		}
   1193  1.49  riastrad 		SDT_PROBE6(sdt, bdev, open, acquire,
   1194  1.49  riastrad 		    d, dev, flag, devtype, unit, dv);
   1195  1.41  riastrad 	}
   1196  1.41  riastrad 
   1197  1.11        ad 	DEV_LOCK(d);
   1198  1.49  riastrad 	SDT_PROBE4(sdt, bdev, open, entry,  d, dev, flag, devtype);
   1199  1.11        ad 	rv = (*d->d_open)(dev, flag, devtype, l);
   1200  1.49  riastrad 	SDT_PROBE5(sdt, bdev, open, return,  d, dev, flag, devtype, rv);
   1201  1.11        ad 	DEV_UNLOCK(d);
   1202  1.11        ad 
   1203  1.41  riastrad 	if (d->d_devtounit) {
   1204  1.49  riastrad 		SDT_PROBE6(sdt, bdev, open, release,
   1205  1.49  riastrad 		    d, dev, flag, devtype, unit, dv);
   1206  1.41  riastrad 		device_release(dv);
   1207  1.41  riastrad 	}
   1208  1.41  riastrad 
   1209  1.52  riastrad out:	bdevsw_release(d, lc);
   1210  1.40  riastrad 
   1211  1.11        ad 	return rv;
   1212  1.11        ad }
   1213  1.11        ad 
   1214  1.11        ad int
   1215  1.44  riastrad bdev_cancel(dev_t dev, int flag, int devtype, struct lwp *l)
   1216  1.44  riastrad {
   1217  1.44  riastrad 	const struct bdevsw *d;
   1218  1.44  riastrad 	int rv, mpflag;
   1219  1.44  riastrad 
   1220  1.44  riastrad 	if ((d = bdevsw_lookup(dev)) == NULL)
   1221  1.44  riastrad 		return ENXIO;
   1222  1.44  riastrad 	if (d->d_cancel == NULL)
   1223  1.44  riastrad 		return ENODEV;
   1224  1.44  riastrad 
   1225  1.44  riastrad 	DEV_LOCK(d);
   1226  1.49  riastrad 	SDT_PROBE4(sdt, bdev, cancel, entry,  d, dev, flag, devtype);
   1227  1.44  riastrad 	rv = (*d->d_cancel)(dev, flag, devtype, l);
   1228  1.49  riastrad 	SDT_PROBE5(sdt, bdev, cancel, return,  d, dev, flag, devtype, rv);
   1229  1.44  riastrad 	DEV_UNLOCK(d);
   1230  1.44  riastrad 
   1231  1.44  riastrad 	return rv;
   1232  1.44  riastrad }
   1233  1.44  riastrad 
   1234  1.44  riastrad int
   1235  1.11        ad bdev_close(dev_t dev, int flag, int devtype, lwp_t *l)
   1236  1.11        ad {
   1237  1.11        ad 	const struct bdevsw *d;
   1238  1.17        ad 	int rv, mpflag;
   1239  1.11        ad 
   1240  1.11        ad 	if ((d = bdevsw_lookup(dev)) == NULL)
   1241  1.11        ad 		return ENXIO;
   1242  1.11        ad 
   1243  1.11        ad 	DEV_LOCK(d);
   1244  1.49  riastrad 	SDT_PROBE4(sdt, bdev, close, entry,  d, dev, flag, devtype);
   1245  1.11        ad 	rv = (*d->d_close)(dev, flag, devtype, l);
   1246  1.49  riastrad 	SDT_PROBE5(sdt, bdev, close, return,  d, dev, flag, devtype, rv);
   1247  1.11        ad 	DEV_UNLOCK(d);
   1248  1.11        ad 
   1249  1.11        ad 	return rv;
   1250  1.11        ad }
   1251  1.11        ad 
   1252  1.34       riz SDT_PROVIDER_DECLARE(io);
   1253  1.34       riz SDT_PROBE_DEFINE1(io, kernel, , start, "struct buf *"/*bp*/);
   1254  1.34       riz 
   1255  1.11        ad void
   1256  1.11        ad bdev_strategy(struct buf *bp)
   1257  1.11        ad {
   1258  1.11        ad 	const struct bdevsw *d;
   1259  1.17        ad 	int mpflag;
   1260  1.11        ad 
   1261  1.34       riz 	SDT_PROBE1(io, kernel, , start, bp);
   1262  1.34       riz 
   1263  1.28  jmcneill 	if ((d = bdevsw_lookup(bp->b_dev)) == NULL) {
   1264  1.28  jmcneill 		bp->b_error = ENXIO;
   1265  1.28  jmcneill 		bp->b_resid = bp->b_bcount;
   1266  1.31     pooka 		biodone_vfs(bp); /* biodone() iff vfs present */
   1267  1.28  jmcneill 		return;
   1268  1.28  jmcneill 	}
   1269  1.11        ad 
   1270  1.11        ad 	DEV_LOCK(d);
   1271  1.49  riastrad 	SDT_PROBE3(sdt, bdev, strategy, entry,  d, bp->b_dev, bp);
   1272  1.11        ad 	(*d->d_strategy)(bp);
   1273  1.49  riastrad 	SDT_PROBE3(sdt, bdev, strategy, return,  d, bp->b_dev, bp);
   1274  1.11        ad 	DEV_UNLOCK(d);
   1275  1.11        ad }
   1276  1.11        ad 
   1277  1.11        ad int
   1278  1.11        ad bdev_ioctl(dev_t dev, u_long cmd, void *data, int flag, lwp_t *l)
   1279  1.11        ad {
   1280  1.11        ad 	const struct bdevsw *d;
   1281  1.17        ad 	int rv, mpflag;
   1282  1.11        ad 
   1283  1.11        ad 	if ((d = bdevsw_lookup(dev)) == NULL)
   1284  1.11        ad 		return ENXIO;
   1285  1.11        ad 
   1286  1.11        ad 	DEV_LOCK(d);
   1287  1.49  riastrad 	SDT_PROBE5(sdt, bdev, ioctl, entry,  d, dev, cmd, data, flag);
   1288  1.11        ad 	rv = (*d->d_ioctl)(dev, cmd, data, flag, l);
   1289  1.49  riastrad 	SDT_PROBE6(sdt, bdev, ioctl, return,  d, dev, cmd, data, flag, rv);
   1290  1.11        ad 	DEV_UNLOCK(d);
   1291  1.11        ad 
   1292  1.11        ad 	return rv;
   1293  1.11        ad }
   1294  1.11        ad 
   1295  1.11        ad int
   1296  1.11        ad bdev_dump(dev_t dev, daddr_t addr, void *data, size_t sz)
   1297  1.11        ad {
   1298  1.11        ad 	const struct bdevsw *d;
   1299  1.11        ad 	int rv;
   1300  1.11        ad 
   1301  1.11        ad 	/*
   1302  1.11        ad 	 * Dump can be called without the device open.  Since it can
   1303  1.11        ad 	 * currently only be called with the system paused (and in a
   1304  1.11        ad 	 * potentially unstable state), we don't perform any locking.
   1305  1.11        ad 	 */
   1306  1.11        ad 	if ((d = bdevsw_lookup(dev)) == NULL)
   1307  1.11        ad 		return ENXIO;
   1308  1.11        ad 
   1309  1.11        ad 	/* DEV_LOCK(d); */
   1310  1.11        ad 	rv = (*d->d_dump)(dev, addr, data, sz);
   1311  1.11        ad 	/* DEV_UNLOCK(d); */
   1312  1.11        ad 
   1313  1.11        ad 	return rv;
   1314  1.11        ad }
   1315  1.11        ad 
   1316  1.11        ad int
   1317  1.35       nat bdev_flags(dev_t dev)
   1318  1.35       nat {
   1319  1.35       nat 	const struct bdevsw *d;
   1320  1.35       nat 
   1321  1.35       nat 	if ((d = bdevsw_lookup(dev)) == NULL)
   1322  1.35       nat 		return 0;
   1323  1.35       nat 	return d->d_flag & ~D_TYPEMASK;
   1324  1.35       nat }
   1325  1.35       nat 
   1326  1.35       nat int
   1327  1.11        ad bdev_type(dev_t dev)
   1328  1.11        ad {
   1329  1.11        ad 	const struct bdevsw *d;
   1330  1.11        ad 
   1331  1.11        ad 	if ((d = bdevsw_lookup(dev)) == NULL)
   1332  1.11        ad 		return D_OTHER;
   1333  1.11        ad 	return d->d_flag & D_TYPEMASK;
   1334  1.11        ad }
   1335  1.11        ad 
   1336  1.11        ad int
   1337  1.29       mrg bdev_size(dev_t dev)
   1338  1.29       mrg {
   1339  1.29       mrg 	const struct bdevsw *d;
   1340  1.29       mrg 	int rv, mpflag = 0;
   1341  1.29       mrg 
   1342  1.29       mrg 	if ((d = bdevsw_lookup(dev)) == NULL ||
   1343  1.29       mrg 	    d->d_psize == NULL)
   1344  1.29       mrg 		return -1;
   1345  1.29       mrg 
   1346  1.29       mrg 	/*
   1347  1.29       mrg 	 * Don't to try lock the device if we're dumping.
   1348  1.30       mrg 	 * XXX: is there a better way to test this?
   1349  1.29       mrg 	 */
   1350  1.29       mrg 	if ((boothowto & RB_DUMP) == 0)
   1351  1.29       mrg 		DEV_LOCK(d);
   1352  1.49  riastrad 	SDT_PROBE2(sdt, bdev, psize, entry,  d, dev);
   1353  1.29       mrg 	rv = (*d->d_psize)(dev);
   1354  1.49  riastrad 	SDT_PROBE3(sdt, bdev, psize, return,  d, dev, rv);
   1355  1.29       mrg 	if ((boothowto & RB_DUMP) == 0)
   1356  1.29       mrg 		DEV_UNLOCK(d);
   1357  1.29       mrg 
   1358  1.29       mrg 	return rv;
   1359  1.29       mrg }
   1360  1.29       mrg 
   1361  1.29       mrg int
   1362  1.32  dholland bdev_discard(dev_t dev, off_t pos, off_t len)
   1363  1.32  dholland {
   1364  1.32  dholland 	const struct bdevsw *d;
   1365  1.32  dholland 	int rv, mpflag;
   1366  1.32  dholland 
   1367  1.32  dholland 	if ((d = bdevsw_lookup(dev)) == NULL)
   1368  1.32  dholland 		return ENXIO;
   1369  1.32  dholland 
   1370  1.32  dholland 	DEV_LOCK(d);
   1371  1.49  riastrad 	SDT_PROBE4(sdt, bdev, discard, entry,  d, dev, pos, len);
   1372  1.32  dholland 	rv = (*d->d_discard)(dev, pos, len);
   1373  1.49  riastrad 	SDT_PROBE5(sdt, bdev, discard, return,  d, dev, pos, len, rv);
   1374  1.32  dholland 	DEV_UNLOCK(d);
   1375  1.32  dholland 
   1376  1.32  dholland 	return rv;
   1377  1.32  dholland }
   1378  1.32  dholland 
   1379  1.43  riastrad void
   1380  1.43  riastrad bdev_detached(dev_t dev)
   1381  1.43  riastrad {
   1382  1.43  riastrad 	const struct bdevsw *d;
   1383  1.43  riastrad 	device_t dv;
   1384  1.43  riastrad 	int unit;
   1385  1.43  riastrad 
   1386  1.43  riastrad 	if ((d = bdevsw_lookup(dev)) == NULL)
   1387  1.43  riastrad 		return;
   1388  1.43  riastrad 	if (d->d_devtounit == NULL)
   1389  1.43  riastrad 		return;
   1390  1.43  riastrad 	if ((unit = (*d->d_devtounit)(dev)) == -1)
   1391  1.43  riastrad 		return;
   1392  1.43  riastrad 	if ((dv = device_lookup(d->d_cfdriver, unit)) == NULL)
   1393  1.43  riastrad 		return;
   1394  1.43  riastrad 	config_detach_commit(dv);
   1395  1.43  riastrad }
   1396  1.43  riastrad 
   1397  1.32  dholland int
   1398  1.11        ad cdev_open(dev_t dev, int flag, int devtype, lwp_t *l)
   1399  1.11        ad {
   1400  1.11        ad 	const struct cdevsw *d;
   1401  1.40  riastrad 	struct localcount *lc;
   1402  1.41  riastrad 	device_t dv = NULL/*XXXGCC*/;
   1403  1.49  riastrad 	int unit = -1/*XXXGCC*/, rv, mpflag;
   1404  1.11        ad 
   1405  1.40  riastrad 	d = cdevsw_lookup_acquire(dev, &lc);
   1406  1.11        ad 	if (d == NULL)
   1407  1.11        ad 		return ENXIO;
   1408  1.11        ad 
   1409  1.41  riastrad 	if (d->d_devtounit) {
   1410  1.41  riastrad 		/*
   1411  1.41  riastrad 		 * If the device node corresponds to an autoconf device
   1412  1.41  riastrad 		 * instance, acquire a reference to it so that during
   1413  1.41  riastrad 		 * d_open, device_lookup is stable.
   1414  1.41  riastrad 		 *
   1415  1.41  riastrad 		 * XXX This should also arrange to instantiate cloning
   1416  1.41  riastrad 		 * pseudo-devices if appropriate, but that requires
   1417  1.41  riastrad 		 * reviewing them all to find and verify a common
   1418  1.41  riastrad 		 * pattern.
   1419  1.41  riastrad 		 */
   1420  1.52  riastrad 		if ((unit = (*d->d_devtounit)(dev)) == -1) {
   1421  1.52  riastrad 			rv = ENXIO;
   1422  1.52  riastrad 			goto out;
   1423  1.52  riastrad 		}
   1424  1.52  riastrad 		if ((dv = device_lookup_acquire(d->d_cfdriver, unit)) ==
   1425  1.52  riastrad 		    NULL) {
   1426  1.52  riastrad 			rv = ENXIO;
   1427  1.52  riastrad 			goto out;
   1428  1.52  riastrad 		}
   1429  1.49  riastrad 		SDT_PROBE6(sdt, cdev, open, acquire,
   1430  1.49  riastrad 		    d, dev, flag, devtype, unit, dv);
   1431  1.41  riastrad 	}
   1432  1.41  riastrad 
   1433  1.11        ad 	DEV_LOCK(d);
   1434  1.49  riastrad 	SDT_PROBE4(sdt, cdev, open, entry,  d, dev, flag, devtype);
   1435  1.11        ad 	rv = (*d->d_open)(dev, flag, devtype, l);
   1436  1.49  riastrad 	SDT_PROBE5(sdt, cdev, open, return,  d, dev, flag, devtype, rv);
   1437  1.11        ad 	DEV_UNLOCK(d);
   1438  1.11        ad 
   1439  1.41  riastrad 	if (d->d_devtounit) {
   1440  1.49  riastrad 		SDT_PROBE6(sdt, cdev, open, release,
   1441  1.49  riastrad 		    d, dev, flag, devtype, unit, dv);
   1442  1.41  riastrad 		device_release(dv);
   1443  1.41  riastrad 	}
   1444  1.41  riastrad 
   1445  1.52  riastrad out:	cdevsw_release(d, lc);
   1446  1.40  riastrad 
   1447  1.11        ad 	return rv;
   1448  1.11        ad }
   1449  1.11        ad 
   1450  1.11        ad int
   1451  1.44  riastrad cdev_cancel(dev_t dev, int flag, int devtype, struct lwp *l)
   1452  1.44  riastrad {
   1453  1.44  riastrad 	const struct cdevsw *d;
   1454  1.44  riastrad 	int rv, mpflag;
   1455  1.44  riastrad 
   1456  1.44  riastrad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1457  1.44  riastrad 		return ENXIO;
   1458  1.44  riastrad 	if (d->d_cancel == NULL)
   1459  1.44  riastrad 		return ENODEV;
   1460  1.44  riastrad 
   1461  1.44  riastrad 	DEV_LOCK(d);
   1462  1.49  riastrad 	SDT_PROBE4(sdt, cdev, cancel, entry,  d, dev, flag, devtype);
   1463  1.44  riastrad 	rv = (*d->d_cancel)(dev, flag, devtype, l);
   1464  1.49  riastrad 	SDT_PROBE5(sdt, cdev, cancel, return,  d, dev, flag, devtype, rv);
   1465  1.44  riastrad 	DEV_UNLOCK(d);
   1466  1.44  riastrad 
   1467  1.44  riastrad 	return rv;
   1468  1.44  riastrad }
   1469  1.44  riastrad 
   1470  1.44  riastrad int
   1471  1.11        ad cdev_close(dev_t dev, int flag, int devtype, lwp_t *l)
   1472  1.11        ad {
   1473  1.11        ad 	const struct cdevsw *d;
   1474  1.17        ad 	int rv, mpflag;
   1475  1.11        ad 
   1476  1.11        ad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1477  1.11        ad 		return ENXIO;
   1478  1.11        ad 
   1479  1.11        ad 	DEV_LOCK(d);
   1480  1.49  riastrad 	SDT_PROBE4(sdt, cdev, close, entry,  d, dev, flag, devtype);
   1481  1.11        ad 	rv = (*d->d_close)(dev, flag, devtype, l);
   1482  1.49  riastrad 	SDT_PROBE5(sdt, cdev, close, return,  d, dev, flag, devtype, rv);
   1483  1.11        ad 	DEV_UNLOCK(d);
   1484  1.11        ad 
   1485  1.11        ad 	return rv;
   1486  1.11        ad }
   1487  1.11        ad 
   1488  1.11        ad int
   1489  1.11        ad cdev_read(dev_t dev, struct uio *uio, int flag)
   1490  1.11        ad {
   1491  1.11        ad 	const struct cdevsw *d;
   1492  1.17        ad 	int rv, mpflag;
   1493  1.11        ad 
   1494  1.11        ad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1495  1.11        ad 		return ENXIO;
   1496  1.11        ad 
   1497  1.11        ad 	DEV_LOCK(d);
   1498  1.49  riastrad 	SDT_PROBE4(sdt, cdev, read, entry,  d, dev, uio, flag);
   1499  1.11        ad 	rv = (*d->d_read)(dev, uio, flag);
   1500  1.49  riastrad 	SDT_PROBE5(sdt, cdev, read, return,  d, dev, uio, flag, rv);
   1501  1.11        ad 	DEV_UNLOCK(d);
   1502  1.11        ad 
   1503  1.11        ad 	return rv;
   1504  1.11        ad }
   1505  1.11        ad 
   1506  1.11        ad int
   1507  1.11        ad cdev_write(dev_t dev, struct uio *uio, int flag)
   1508  1.11        ad {
   1509  1.11        ad 	const struct cdevsw *d;
   1510  1.17        ad 	int rv, mpflag;
   1511  1.11        ad 
   1512  1.11        ad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1513  1.11        ad 		return ENXIO;
   1514  1.11        ad 
   1515  1.11        ad 	DEV_LOCK(d);
   1516  1.49  riastrad 	SDT_PROBE4(sdt, cdev, write, entry,  d, dev, uio, flag);
   1517  1.11        ad 	rv = (*d->d_write)(dev, uio, flag);
   1518  1.49  riastrad 	SDT_PROBE5(sdt, cdev, write, return,  d, dev, uio, flag, rv);
   1519  1.11        ad 	DEV_UNLOCK(d);
   1520  1.11        ad 
   1521  1.11        ad 	return rv;
   1522  1.11        ad }
   1523  1.11        ad 
   1524  1.11        ad int
   1525  1.11        ad cdev_ioctl(dev_t dev, u_long cmd, void *data, int flag, lwp_t *l)
   1526  1.11        ad {
   1527  1.11        ad 	const struct cdevsw *d;
   1528  1.17        ad 	int rv, mpflag;
   1529  1.11        ad 
   1530  1.11        ad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1531  1.11        ad 		return ENXIO;
   1532  1.11        ad 
   1533  1.11        ad 	DEV_LOCK(d);
   1534  1.49  riastrad 	SDT_PROBE5(sdt, cdev, ioctl, entry,  d, dev, cmd, data, flag);
   1535  1.11        ad 	rv = (*d->d_ioctl)(dev, cmd, data, flag, l);
   1536  1.49  riastrad 	SDT_PROBE6(sdt, cdev, ioctl, return,  d, dev, cmd, data, flag, rv);
   1537  1.11        ad 	DEV_UNLOCK(d);
   1538  1.11        ad 
   1539  1.11        ad 	return rv;
   1540  1.11        ad }
   1541  1.11        ad 
   1542  1.11        ad void
   1543  1.11        ad cdev_stop(struct tty *tp, int flag)
   1544  1.11        ad {
   1545  1.11        ad 	const struct cdevsw *d;
   1546  1.17        ad 	int mpflag;
   1547  1.11        ad 
   1548  1.11        ad 	if ((d = cdevsw_lookup(tp->t_dev)) == NULL)
   1549  1.11        ad 		return;
   1550  1.11        ad 
   1551  1.11        ad 	DEV_LOCK(d);
   1552  1.49  riastrad 	SDT_PROBE4(sdt, cdev, stop, entry,  d, tp->t_dev, tp, flag);
   1553  1.11        ad 	(*d->d_stop)(tp, flag);
   1554  1.49  riastrad 	SDT_PROBE4(sdt, cdev, stop, return,  d, tp->t_dev, tp, flag);
   1555  1.11        ad 	DEV_UNLOCK(d);
   1556  1.11        ad }
   1557  1.11        ad 
   1558  1.11        ad struct tty *
   1559  1.11        ad cdev_tty(dev_t dev)
   1560  1.11        ad {
   1561  1.11        ad 	const struct cdevsw *d;
   1562  1.11        ad 
   1563  1.11        ad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1564  1.11        ad 		return NULL;
   1565  1.11        ad 
   1566  1.12        ad 	/* XXX Check if necessary. */
   1567  1.12        ad 	if (d->d_tty == NULL)
   1568  1.12        ad 		return NULL;
   1569  1.12        ad 
   1570  1.21        ad 	return (*d->d_tty)(dev);
   1571  1.11        ad }
   1572  1.11        ad 
   1573  1.11        ad int
   1574  1.11        ad cdev_poll(dev_t dev, int flag, lwp_t *l)
   1575  1.11        ad {
   1576  1.11        ad 	const struct cdevsw *d;
   1577  1.17        ad 	int rv, mpflag;
   1578  1.11        ad 
   1579  1.11        ad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1580  1.11        ad 		return POLLERR;
   1581  1.11        ad 
   1582  1.11        ad 	DEV_LOCK(d);
   1583  1.49  riastrad 	SDT_PROBE3(sdt, cdev, poll, entry,  d, dev, flag);
   1584  1.11        ad 	rv = (*d->d_poll)(dev, flag, l);
   1585  1.49  riastrad 	SDT_PROBE4(sdt, cdev, poll, return,  d, dev, flag, rv);
   1586  1.11        ad 	DEV_UNLOCK(d);
   1587  1.11        ad 
   1588  1.11        ad 	return rv;
   1589  1.11        ad }
   1590  1.11        ad 
   1591  1.11        ad paddr_t
   1592  1.11        ad cdev_mmap(dev_t dev, off_t off, int flag)
   1593  1.11        ad {
   1594  1.11        ad 	const struct cdevsw *d;
   1595  1.11        ad 	paddr_t rv;
   1596  1.17        ad 	int mpflag;
   1597  1.11        ad 
   1598  1.11        ad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1599  1.11        ad 		return (paddr_t)-1LL;
   1600  1.11        ad 
   1601  1.11        ad 	DEV_LOCK(d);
   1602  1.49  riastrad 	SDT_PROBE4(sdt, cdev, mmap, entry,  d, dev, off, flag);
   1603  1.11        ad 	rv = (*d->d_mmap)(dev, off, flag);
   1604  1.49  riastrad 	SDT_PROBE5(sdt, cdev, mmap, return,  d, dev, off, flag, rv);
   1605  1.11        ad 	DEV_UNLOCK(d);
   1606  1.11        ad 
   1607  1.11        ad 	return rv;
   1608  1.11        ad }
   1609  1.11        ad 
   1610  1.11        ad int
   1611  1.11        ad cdev_kqfilter(dev_t dev, struct knote *kn)
   1612  1.11        ad {
   1613  1.11        ad 	const struct cdevsw *d;
   1614  1.17        ad 	int rv, mpflag;
   1615  1.11        ad 
   1616  1.11        ad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1617  1.11        ad 		return ENXIO;
   1618  1.11        ad 
   1619  1.11        ad 	DEV_LOCK(d);
   1620  1.49  riastrad 	SDT_PROBE3(sdt, cdev, kqfilter, entry,  d, dev, kn);
   1621  1.11        ad 	rv = (*d->d_kqfilter)(dev, kn);
   1622  1.49  riastrad 	SDT_PROBE4(sdt, cdev, kqfilter, return,  d, dev, kn, rv);
   1623  1.11        ad 	DEV_UNLOCK(d);
   1624  1.11        ad 
   1625  1.11        ad 	return rv;
   1626  1.11        ad }
   1627  1.11        ad 
   1628  1.11        ad int
   1629  1.32  dholland cdev_discard(dev_t dev, off_t pos, off_t len)
   1630  1.32  dholland {
   1631  1.32  dholland 	const struct cdevsw *d;
   1632  1.32  dholland 	int rv, mpflag;
   1633  1.32  dholland 
   1634  1.32  dholland 	if ((d = cdevsw_lookup(dev)) == NULL)
   1635  1.32  dholland 		return ENXIO;
   1636  1.32  dholland 
   1637  1.32  dholland 	DEV_LOCK(d);
   1638  1.49  riastrad 	SDT_PROBE4(sdt, cdev, discard, entry,  d, dev, pos, len);
   1639  1.32  dholland 	rv = (*d->d_discard)(dev, pos, len);
   1640  1.49  riastrad 	SDT_PROBE5(sdt, cdev, discard, return,  d, dev, pos, len, rv);
   1641  1.32  dholland 	DEV_UNLOCK(d);
   1642  1.32  dholland 
   1643  1.32  dholland 	return rv;
   1644  1.32  dholland }
   1645  1.32  dholland 
   1646  1.32  dholland int
   1647  1.35       nat cdev_flags(dev_t dev)
   1648  1.35       nat {
   1649  1.35       nat 	const struct cdevsw *d;
   1650  1.35       nat 
   1651  1.35       nat 	if ((d = cdevsw_lookup(dev)) == NULL)
   1652  1.35       nat 		return 0;
   1653  1.35       nat 	return d->d_flag & ~D_TYPEMASK;
   1654  1.35       nat }
   1655  1.35       nat 
   1656  1.35       nat int
   1657  1.11        ad cdev_type(dev_t dev)
   1658  1.11        ad {
   1659  1.11        ad 	const struct cdevsw *d;
   1660  1.11        ad 
   1661  1.11        ad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1662  1.11        ad 		return D_OTHER;
   1663  1.11        ad 	return d->d_flag & D_TYPEMASK;
   1664   1.2   gehenna }
   1665  1.36  riastrad 
   1666  1.43  riastrad void
   1667  1.43  riastrad cdev_detached(dev_t dev)
   1668  1.43  riastrad {
   1669  1.43  riastrad 	const struct cdevsw *d;
   1670  1.43  riastrad 	device_t dv;
   1671  1.43  riastrad 	int unit;
   1672  1.43  riastrad 
   1673  1.43  riastrad 	if ((d = cdevsw_lookup(dev)) == NULL)
   1674  1.43  riastrad 		return;
   1675  1.43  riastrad 	if (d->d_devtounit == NULL)
   1676  1.43  riastrad 		return;
   1677  1.43  riastrad 	if ((unit = (*d->d_devtounit)(dev)) == -1)
   1678  1.43  riastrad 		return;
   1679  1.43  riastrad 	if ((dv = device_lookup(d->d_cfdriver, unit)) == NULL)
   1680  1.43  riastrad 		return;
   1681  1.43  riastrad 	config_detach_commit(dv);
   1682  1.43  riastrad }
   1683  1.43  riastrad 
   1684  1.36  riastrad /*
   1685  1.36  riastrad  * nommap(dev, off, prot)
   1686  1.36  riastrad  *
   1687  1.36  riastrad  *	mmap routine that always fails, for non-mmappable devices.
   1688  1.36  riastrad  */
   1689  1.36  riastrad paddr_t
   1690  1.36  riastrad nommap(dev_t dev, off_t off, int prot)
   1691  1.36  riastrad {
   1692  1.36  riastrad 
   1693  1.36  riastrad 	return (paddr_t)-1;
   1694  1.36  riastrad }
   1695  1.42  riastrad 
   1696  1.42  riastrad /*
   1697  1.42  riastrad  * dev_minor_unit(dev)
   1698  1.42  riastrad  *
   1699  1.42  riastrad  *	Returns minor(dev) as an int.  Intended for use with struct
   1700  1.42  riastrad  *	bdevsw, cdevsw::d_devtounit for drivers whose /dev nodes are
   1701  1.42  riastrad  *	implemented by reference to an autoconf instance with the minor
   1702  1.42  riastrad  *	number.
   1703  1.42  riastrad  */
   1704  1.42  riastrad int
   1705  1.42  riastrad dev_minor_unit(dev_t dev)
   1706  1.42  riastrad {
   1707  1.42  riastrad 
   1708  1.42  riastrad 	return minor(dev);
   1709  1.42  riastrad }
   1710