xref: /freebsd/sys/kern/kern_shutdown.c (revision 6b35310173482a100304bf9129e1c9ac9e0e6d06)
1ad4240feSJulian Elischer /*-
251369649SPedro F. Giffuni  * SPDX-License-Identifier: BSD-3-Clause
351369649SPedro F. Giffuni  *
4ad4240feSJulian Elischer  * Copyright (c) 1986, 1988, 1991, 1993
5ad4240feSJulian Elischer  *	The Regents of the University of California.  All rights reserved.
6ad4240feSJulian Elischer  * (c) UNIX System Laboratories, Inc.
7ad4240feSJulian Elischer  * All or some portions of this file are derived from material licensed
8ad4240feSJulian Elischer  * to the University of California by American Telephone and Telegraph
9ad4240feSJulian Elischer  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
10ad4240feSJulian Elischer  * the permission of UNIX System Laboratories, Inc.
11ad4240feSJulian Elischer  *
12ad4240feSJulian Elischer  * Redistribution and use in source and binary forms, with or without
13ad4240feSJulian Elischer  * modification, are permitted provided that the following conditions
14ad4240feSJulian Elischer  * are met:
15ad4240feSJulian Elischer  * 1. Redistributions of source code must retain the above copyright
16ad4240feSJulian Elischer  *    notice, this list of conditions and the following disclaimer.
17ad4240feSJulian Elischer  * 2. Redistributions in binary form must reproduce the above copyright
18ad4240feSJulian Elischer  *    notice, this list of conditions and the following disclaimer in the
19ad4240feSJulian Elischer  *    documentation and/or other materials provided with the distribution.
2069a28758SEd Maste  * 3. Neither the name of the University nor the names of its contributors
21ad4240feSJulian Elischer  *    may be used to endorse or promote products derived from this software
22ad4240feSJulian Elischer  *    without specific prior written permission.
23ad4240feSJulian Elischer  *
24ad4240feSJulian Elischer  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25ad4240feSJulian Elischer  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26ad4240feSJulian Elischer  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27ad4240feSJulian Elischer  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28ad4240feSJulian Elischer  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29ad4240feSJulian Elischer  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30ad4240feSJulian Elischer  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31ad4240feSJulian Elischer  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32ad4240feSJulian Elischer  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33ad4240feSJulian Elischer  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34ad4240feSJulian Elischer  * SUCH DAMAGE.
35ad4240feSJulian Elischer  */
36ad4240feSJulian Elischer 
37677b542eSDavid E. O'Brien #include <sys/cdefs.h>
38618c7db3SRobert Watson #include "opt_ddb.h"
39480f31c2SKonrad Witaszczyk #include "opt_ekcd.h"
402d50560aSMarcel Moolenaar #include "opt_kdb.h"
416d58e6cbSBruce Evans #include "opt_panic.h"
426b6e2954SConrad Meyer #include "opt_printf.h"
439923b511SScott Long #include "opt_sched.h"
442be767e0SAttilio Rao #include "opt_watchdog.h"
45ad4240feSJulian Elischer 
46ad4240feSJulian Elischer #include <sys/param.h>
47ad4240feSJulian Elischer #include <sys/systm.h>
489626b608SPoul-Henning Kamp #include <sys/bio.h>
495a8fceb3SMitchell Horne #include <sys/boottrace.h>
50fc8f7066SBruce Evans #include <sys/buf.h>
511d79f1bbSJohn Baldwin #include <sys/conf.h>
5278f57a9cSMark Johnston #include <sys/compressor.h>
531d79f1bbSJohn Baldwin #include <sys/cons.h>
546b6e2954SConrad Meyer #include <sys/disk.h>
551d79f1bbSJohn Baldwin #include <sys/eventhandler.h>
560d3d0cc3SEdward Tomasz Napierala #include <sys/filedesc.h>
5776ca6f88SJamie Gritton #include <sys/jail.h>
582d50560aSMarcel Moolenaar #include <sys/kdb.h>
59ad4240feSJulian Elischer #include <sys/kernel.h>
60e6592ee5SPeter Wemm #include <sys/kerneldump.h>
615e950839SLuoqi Chen #include <sys/kthread.h>
623945a964SAlfred Perlstein #include <sys/ktr.h>
63dcd7d9b7SMaxim Sobolev #include <sys/malloc.h>
64bd92e6b6SMark Johnston #include <sys/mbuf.h>
65ac0ad63fSBruce Evans #include <sys/mount.h>
66acd3428bSRobert Watson #include <sys/priv.h>
671d79f1bbSJohn Baldwin #include <sys/proc.h>
681d79f1bbSJohn Baldwin #include <sys/reboot.h>
691d79f1bbSJohn Baldwin #include <sys/resourcevar.h>
7089f6b863SAttilio Rao #include <sys/rwlock.h>
716b6e2954SConrad Meyer #include <sys/sbuf.h>
7220e25d7dSPeter Wemm #include <sys/sched.h>
73248bb937SAttilio Rao #include <sys/smp.h>
74ad4240feSJulian Elischer #include <sys/sysctl.h>
75ad4240feSJulian Elischer #include <sys/sysproto.h>
76c3982007SKonstantin Belousov #include <sys/taskqueue.h>
77fa2b39a1SAttilio Rao #include <sys/vnode.h>
782be767e0SAttilio Rao #include <sys/watchdog.h>
79ad4240feSJulian Elischer 
8082985292SConrad Meyer #include <crypto/chacha20/chacha.h>
81480f31c2SKonrad Witaszczyk #include <crypto/rijndael/rijndael-api-fst.h>
82480f31c2SKonrad Witaszczyk #include <crypto/sha2/sha256.h>
83480f31c2SKonrad Witaszczyk 
84618c7db3SRobert Watson #include <ddb/ddb.h>
85618c7db3SRobert Watson 
8626502503SMarcel Moolenaar #include <machine/cpu.h>
87bdb9ab0dSMark Johnston #include <machine/dump.h>
88d39e457bSPoul-Henning Kamp #include <machine/pcb.h>
89752dff3dSJake Burkholder #include <machine/smp.h>
90ad4240feSJulian Elischer 
91aed55708SRobert Watson #include <security/mac/mac_framework.h>
92aed55708SRobert Watson 
930909f38aSPawel Jakub Dawidek #include <vm/vm.h>
940909f38aSPawel Jakub Dawidek #include <vm/vm_object.h>
950909f38aSPawel Jakub Dawidek #include <vm/vm_page.h>
960909f38aSPawel Jakub Dawidek #include <vm/vm_pager.h>
970909f38aSPawel Jakub Dawidek #include <vm/swap_pager.h>
980909f38aSPawel Jakub Dawidek 
99ad4240feSJulian Elischer #include <sys/signalvar.h>
100ad4240feSJulian Elischer 
1015dc5dab6SConrad Meyer static MALLOC_DEFINE(M_DUMPER, "dumper", "dumper block buffer");
1025dc5dab6SConrad Meyer 
103ad4240feSJulian Elischer #ifndef PANIC_REBOOT_WAIT_TIME
104ad4240feSJulian Elischer #define PANIC_REBOOT_WAIT_TIME 15 /* default to 15 seconds */
105ad4240feSJulian Elischer #endif
1063b251028SColin Percival static int panic_reboot_wait_time = PANIC_REBOOT_WAIT_TIME;
107af3b2549SHans Petter Selasky SYSCTL_INT(_kern, OID_AUTO, panic_reboot_wait_time, CTLFLAG_RWTUN,
1081cdbb9edSColin Percival     &panic_reboot_wait_time, 0,
1091cdbb9edSColin Percival     "Seconds to wait before rebooting after a panic");
11084ec7df0SColin Percival static int reboot_wait_time = 0;
11184ec7df0SColin Percival SYSCTL_INT(_kern, OID_AUTO, reboot_wait_time, CTLFLAG_RWTUN,
11284ec7df0SColin Percival     &reboot_wait_time, 0,
11384ec7df0SColin Percival     "Seconds to wait before rebooting");
114ad4240feSJulian Elischer 
115ad4240feSJulian Elischer /*
116ad4240feSJulian Elischer  * Note that stdarg.h and the ANSI style va_start macro is used for both
117ad4240feSJulian Elischer  * ANSI and traditional C compilers.
118ad4240feSJulian Elischer  */
119ad4240feSJulian Elischer #include <machine/stdarg.h>
120ad4240feSJulian Elischer 
1212d50560aSMarcel Moolenaar #ifdef KDB
1222d50560aSMarcel Moolenaar #ifdef KDB_UNATTENDED
123ba0ced82SEric van Gyzen int debugger_on_panic = 0;
124ad4240feSJulian Elischer #else
125ba0ced82SEric van Gyzen int debugger_on_panic = 1;
126ad4240feSJulian Elischer #endif
1273d7618d8SDavid E. O'Brien SYSCTL_INT(_debug, OID_AUTO, debugger_on_panic,
128cab10561SMark Johnston     CTLFLAG_RWTUN, &debugger_on_panic, 0,
129cab10561SMark Johnston     "Run debugger on kernel panic");
130e485b64bSJohn Baldwin 
131c8a96cdcSMitchell Horne static bool debugger_on_recursive_panic = false;
132c8a96cdcSMitchell Horne SYSCTL_BOOL(_debug, OID_AUTO, debugger_on_recursive_panic,
133cab10561SMark Johnston     CTLFLAG_RWTUN, &debugger_on_recursive_panic, 0,
134cab10561SMark Johnston     "Run debugger on recursive kernel panic");
135c8a96cdcSMitchell Horne 
136b317cfd4SJohn Baldwin int debugger_on_trap = 0;
137b317cfd4SJohn Baldwin SYSCTL_INT(_debug, OID_AUTO, debugger_on_trap,
138cab10561SMark Johnston     CTLFLAG_RWTUN, &debugger_on_trap, 0,
139cab10561SMark Johnston     "Run debugger on kernel trap before panic");
140b317cfd4SJohn Baldwin 
1412d50560aSMarcel Moolenaar #ifdef KDB_TRACE
14208a9c205SAndriy Gapon static int trace_on_panic = 1;
143ad1fc315SConrad Meyer static bool trace_all_panics = true;
144e485b64bSJohn Baldwin #else
14508a9c205SAndriy Gapon static int trace_on_panic = 0;
146ad1fc315SConrad Meyer static bool trace_all_panics = false;
147e485b64bSJohn Baldwin #endif
1483d7618d8SDavid E. O'Brien SYSCTL_INT(_debug, OID_AUTO, trace_on_panic,
149af3b2549SHans Petter Selasky     CTLFLAG_RWTUN | CTLFLAG_SECURE,
1501c5151f3SDavid E. O'Brien     &trace_on_panic, 0, "Print stack trace on kernel panic");
151ad1fc315SConrad Meyer SYSCTL_BOOL(_debug, OID_AUTO, trace_all_panics, CTLFLAG_RWTUN,
152ad1fc315SConrad Meyer     &trace_all_panics, 0, "Print stack traces on secondary kernel panics");
1532d50560aSMarcel Moolenaar #endif /* KDB */
154ad4240feSJulian Elischer 
15508a9c205SAndriy Gapon static int sync_on_panic = 0;
156af3b2549SHans Petter Selasky SYSCTL_INT(_kern, OID_AUTO, sync_on_panic, CTLFLAG_RWTUN,
157259ed917SPeter Wemm 	&sync_on_panic, 0, "Do a sync before rebooting from a panic");
158259ed917SPeter Wemm 
15948f1a492SWarner Losh static bool poweroff_on_panic = 0;
16048f1a492SWarner Losh SYSCTL_BOOL(_kern, OID_AUTO, poweroff_on_panic, CTLFLAG_RWTUN,
16148f1a492SWarner Losh 	&poweroff_on_panic, 0, "Do a power off instead of a reboot on a panic");
16248f1a492SWarner Losh 
16348f1a492SWarner Losh static bool powercycle_on_panic = 0;
16448f1a492SWarner Losh SYSCTL_BOOL(_kern, OID_AUTO, powercycle_on_panic, CTLFLAG_RWTUN,
16548f1a492SWarner Losh 	&powercycle_on_panic, 0, "Do a power cycle instead of a reboot on a panic");
16648f1a492SWarner Losh 
1677029da5cSPawel Biernacki static SYSCTL_NODE(_kern, OID_AUTO, shutdown, CTLFLAG_RW | CTLFLAG_MPSAFE, 0,
1686472ac3dSEd Schouten     "Shutdown environment");
169db82a982SMike Smith 
170fa2b39a1SAttilio Rao #ifndef DIAGNOSTIC
171fa2b39a1SAttilio Rao static int show_busybufs;
172fa2b39a1SAttilio Rao #else
173fa2b39a1SAttilio Rao static int show_busybufs = 1;
174fa2b39a1SAttilio Rao #endif
175fa2b39a1SAttilio Rao SYSCTL_INT(_kern_shutdown, OID_AUTO, show_busybufs, CTLFLAG_RW,
176b05ca429SPawel Biernacki     &show_busybufs, 0,
177b05ca429SPawel Biernacki     "Show busy buffers during shutdown");
178fa2b39a1SAttilio Rao 
1792eb0015aSColin Percival int suspend_blocked = 0;
1802eb0015aSColin Percival SYSCTL_INT(_kern, OID_AUTO, suspend_blocked, CTLFLAG_RW,
1812eb0015aSColin Percival 	&suspend_blocked, 0, "Block suspend due to a pending shutdown");
1822eb0015aSColin Percival 
183480f31c2SKonrad Witaszczyk #ifdef EKCD
184480f31c2SKonrad Witaszczyk FEATURE(ekcd, "Encrypted kernel crash dumps support");
185480f31c2SKonrad Witaszczyk 
186480f31c2SKonrad Witaszczyk MALLOC_DEFINE(M_EKCD, "ekcd", "Encrypted kernel crash dumps data");
187480f31c2SKonrad Witaszczyk 
188480f31c2SKonrad Witaszczyk struct kerneldumpcrypto {
189480f31c2SKonrad Witaszczyk 	uint8_t			kdc_encryption;
190480f31c2SKonrad Witaszczyk 	uint8_t			kdc_iv[KERNELDUMP_IV_MAX_SIZE];
19182985292SConrad Meyer 	union {
19282985292SConrad Meyer 		struct {
19382985292SConrad Meyer 			keyInstance	aes_ki;
19482985292SConrad Meyer 			cipherInstance	aes_ci;
19582985292SConrad Meyer 		} u_aes;
19682985292SConrad Meyer 		struct chacha_ctx	u_chacha;
19782985292SConrad Meyer 	} u;
19882985292SConrad Meyer #define	kdc_ki	u.u_aes.aes_ki
19982985292SConrad Meyer #define	kdc_ci	u.u_aes.aes_ci
20082985292SConrad Meyer #define	kdc_chacha	u.u_chacha
201480f31c2SKonrad Witaszczyk 	uint32_t		kdc_dumpkeysize;
202480f31c2SKonrad Witaszczyk 	struct kerneldumpkey	kdc_dumpkey[];
203480f31c2SKonrad Witaszczyk };
204480f31c2SKonrad Witaszczyk #endif
205480f31c2SKonrad Witaszczyk 
20678f57a9cSMark Johnston struct kerneldumpcomp {
2076026dcd7SMark Johnston 	uint8_t			kdc_format;
20878f57a9cSMark Johnston 	struct compressor	*kdc_stream;
20978f57a9cSMark Johnston 	uint8_t			*kdc_buf;
21078f57a9cSMark Johnston 	size_t			kdc_resid;
21164a16434SMark Johnston };
21264a16434SMark Johnston 
21378f57a9cSMark Johnston static struct kerneldumpcomp *kerneldumpcomp_create(struct dumperinfo *di,
21464a16434SMark Johnston 		    uint8_t compression);
21578f57a9cSMark Johnston static void	kerneldumpcomp_destroy(struct dumperinfo *di);
21678f57a9cSMark Johnston static int	kerneldumpcomp_write_cb(void *base, size_t len, off_t off, void *arg);
21764a16434SMark Johnston 
21864a16434SMark Johnston static int kerneldump_gzlevel = 6;
21964a16434SMark Johnston SYSCTL_INT(_kern, OID_AUTO, kerneldump_gzlevel, CTLFLAG_RWTUN,
22064a16434SMark Johnston     &kerneldump_gzlevel, 0,
22178f57a9cSMark Johnston     "Kernel crash dump compression level");
22264a16434SMark Johnston 
2235230cfd2SJulian Elischer /*
224ad4240feSJulian Elischer  * Variable panicstr contains argument to first call to panic; used as flag
225ad4240feSJulian Elischer  * to indicate that the kernel has already called panic.
226ad4240feSJulian Elischer  */
227eaed922eSOlivier Certner const char *panicstr __read_mostly;
228*6b353101SOlivier Certner bool scheduler_stopped __read_frequently;
229ad4240feSJulian Elischer 
23012d6a032SOlivier Certner int dumping __read_mostly;		/* system is dumping */
23112d6a032SOlivier Certner int rebooting __read_mostly;		/* system is rebooting */
2326b6e2954SConrad Meyer /*
2336b6e2954SConrad Meyer  * Used to serialize between sysctl kern.shutdown.dumpdevname and list
2346b6e2954SConrad Meyer  * modifications via ioctl.
2356b6e2954SConrad Meyer  */
2366b6e2954SConrad Meyer static struct mtx dumpconf_list_lk;
2376b6e2954SConrad Meyer MTX_SYSINIT(dumper_configs, &dumpconf_list_lk, "dumper config list", MTX_DEF);
2386b6e2954SConrad Meyer 
2396b6e2954SConrad Meyer /* Our selected dumper(s). */
2406b6e2954SConrad Meyer static TAILQ_HEAD(dumpconflist, dumperinfo) dumper_configs =
2416b6e2954SConrad Meyer     TAILQ_HEAD_INITIALIZER(dumper_configs);
2422d50560aSMarcel Moolenaar 
243c3179891SMark Johnston /* Context information for dump-debuggers, saved by the dump_savectx() macro. */
244c3179891SMark Johnston struct pcb dumppcb;			/* Registers. */
245ac6e25ecSHartmut Brandt lwpid_t dumptid;			/* Thread ID. */
24616a011f9SPaul Saab 
2470d3d0cc3SEdward Tomasz Napierala static struct cdevsw reroot_cdevsw = {
2480d3d0cc3SEdward Tomasz Napierala      .d_version = D_VERSION,
2490d3d0cc3SEdward Tomasz Napierala      .d_name    = "reroot",
2500d3d0cc3SEdward Tomasz Napierala };
2510d3d0cc3SEdward Tomasz Napierala 
25282acbcf5SPeter Wemm static void poweroff_wait(void *, int);
25382acbcf5SPeter Wemm static void shutdown_halt(void *junk, int howto);
25482acbcf5SPeter Wemm static void shutdown_panic(void *junk, int howto);
25582acbcf5SPeter Wemm static void shutdown_reset(void *junk, int howto);
2560d3d0cc3SEdward Tomasz Napierala static int kern_reroot(void);
257f06a54f0SPoul-Henning Kamp 
258fcb893a8SMike Smith /* register various local shutdown events */
259fcb893a8SMike Smith static void
260fcb893a8SMike Smith shutdown_conf(void *unused)
261fcb893a8SMike Smith {
262e95499bdSAlfred Perlstein 
263e95499bdSAlfred Perlstein 	EVENTHANDLER_REGISTER(shutdown_final, poweroff_wait, NULL,
264fd104c15SRebecca Cran 	    SHUTDOWN_PRI_FIRST);
265e95499bdSAlfred Perlstein 	EVENTHANDLER_REGISTER(shutdown_final, shutdown_halt, NULL,
266e95499bdSAlfred Perlstein 	    SHUTDOWN_PRI_LAST + 100);
267e95499bdSAlfred Perlstein 	EVENTHANDLER_REGISTER(shutdown_final, shutdown_panic, NULL,
268e95499bdSAlfred Perlstein 	    SHUTDOWN_PRI_LAST + 100);
269fcb893a8SMike Smith }
270ad4240feSJulian Elischer 
271237fdd78SRobert Watson SYSINIT(shutdown_conf, SI_SUB_INTRINSIC, SI_ORDER_ANY, shutdown_conf, NULL);
272fcb893a8SMike Smith 
273ad4240feSJulian Elischer /*
2740d3d0cc3SEdward Tomasz Napierala  * The only reason this exists is to create the /dev/reroot/ directory,
2750d3d0cc3SEdward Tomasz Napierala  * used by reroot code in init(8) as a mountpoint for tmpfs.
2760d3d0cc3SEdward Tomasz Napierala  */
2770d3d0cc3SEdward Tomasz Napierala static void
2780d3d0cc3SEdward Tomasz Napierala reroot_conf(void *unused)
2790d3d0cc3SEdward Tomasz Napierala {
2800d3d0cc3SEdward Tomasz Napierala 	int error;
2810d3d0cc3SEdward Tomasz Napierala 	struct cdev *cdev;
2820d3d0cc3SEdward Tomasz Napierala 
2830d3d0cc3SEdward Tomasz Napierala 	error = make_dev_p(MAKEDEV_CHECKNAME | MAKEDEV_WAITOK, &cdev,
2840d3d0cc3SEdward Tomasz Napierala 	    &reroot_cdevsw, NULL, UID_ROOT, GID_WHEEL, 0600, "reroot/reroot");
2850d3d0cc3SEdward Tomasz Napierala 	if (error != 0) {
2860d3d0cc3SEdward Tomasz Napierala 		printf("%s: failed to create device node, error %d",
2870d3d0cc3SEdward Tomasz Napierala 		    __func__, error);
2880d3d0cc3SEdward Tomasz Napierala 	}
2890d3d0cc3SEdward Tomasz Napierala }
2900d3d0cc3SEdward Tomasz Napierala 
2910d3d0cc3SEdward Tomasz Napierala SYSINIT(reroot_conf, SI_SUB_DEVFS, SI_ORDER_ANY, reroot_conf, NULL);
2920d3d0cc3SEdward Tomasz Napierala 
2930d3d0cc3SEdward Tomasz Napierala /*
2940c14ff0eSRobert Watson  * The system call that results in a reboot.
295ad4240feSJulian Elischer  */
296835a82eeSMatthew Dillon /* ARGSUSED */
297ad4240feSJulian Elischer int
2988451d0ddSKip Macy sys_reboot(struct thread *td, struct reboot_args *uap)
299ad4240feSJulian Elischer {
300ad4240feSJulian Elischer 	int error;
301ad4240feSJulian Elischer 
302a2ecb9b7SRobert Watson 	error = 0;
303a2ecb9b7SRobert Watson #ifdef MAC
30430d239bcSRobert Watson 	error = mac_system_check_reboot(td->td_ucred, uap->opt);
305a2ecb9b7SRobert Watson #endif
306a2ecb9b7SRobert Watson 	if (error == 0)
307acd3428bSRobert Watson 		error = priv_check(td, PRIV_REBOOT);
308a2ecb9b7SRobert Watson 	if (error == 0) {
309d5292812SWarner Losh 		if (uap->opt & RB_REROOT)
3100d3d0cc3SEdward Tomasz Napierala 			error = kern_reroot();
311d5292812SWarner Losh 		else
31276e18b25SMarcel Moolenaar 			kern_reboot(uap->opt);
3130d3d0cc3SEdward Tomasz Napierala 	}
314835a82eeSMatthew Dillon 	return (error);
315ad4240feSJulian Elischer }
316ad4240feSJulian Elischer 
317c3982007SKonstantin Belousov static void
318c3982007SKonstantin Belousov shutdown_nice_task_fn(void *arg, int pending __unused)
319ad4240feSJulian Elischer {
320c3982007SKonstantin Belousov 	int howto;
321e95499bdSAlfred Perlstein 
322c3982007SKonstantin Belousov 	howto = (uintptr_t)arg;
323912d5937SEd Schouten 	/* Send a signal to init(8) and have it shutdown the world. */
32487729a2bSJohn Baldwin 	PROC_LOCK(initproc);
3255a8fceb3SMitchell Horne 	if ((howto & RB_POWEROFF) != 0) {
3265a8fceb3SMitchell Horne 		BOOTTRACE("SIGUSR2 to init(8)");
327912d5937SEd Schouten 		kern_psignal(initproc, SIGUSR2);
3285a8fceb3SMitchell Horne 	} else if ((howto & RB_POWERCYCLE) != 0) {
3295a8fceb3SMitchell Horne 		BOOTTRACE("SIGWINCH to init(8)");
3307d41b6f0SWarner Losh 		kern_psignal(initproc, SIGWINCH);
3315a8fceb3SMitchell Horne 	} else if ((howto & RB_HALT) != 0) {
3325a8fceb3SMitchell Horne 		BOOTTRACE("SIGUSR1 to init(8)");
333912d5937SEd Schouten 		kern_psignal(initproc, SIGUSR1);
3345a8fceb3SMitchell Horne 	} else {
3355a8fceb3SMitchell Horne 		BOOTTRACE("SIGINT to init(8)");
3368451d0ddSKip Macy 		kern_psignal(initproc, SIGINT);
3375a8fceb3SMitchell Horne 	}
33887729a2bSJohn Baldwin 	PROC_UNLOCK(initproc);
339c3982007SKonstantin Belousov }
340c3982007SKonstantin Belousov 
341c3982007SKonstantin Belousov static struct task shutdown_nice_task = TASK_INITIALIZER(0,
342c3982007SKonstantin Belousov     &shutdown_nice_task_fn, NULL);
343c3982007SKonstantin Belousov 
344c3982007SKonstantin Belousov /*
345c3982007SKonstantin Belousov  * Called by events that want to shut down.. e.g  <CTL><ALT><DEL> on a PC
346c3982007SKonstantin Belousov  */
347c3982007SKonstantin Belousov void
348c3982007SKonstantin Belousov shutdown_nice(int howto)
349c3982007SKonstantin Belousov {
350c3982007SKonstantin Belousov 
351c3982007SKonstantin Belousov 	if (initproc != NULL && !SCHEDULER_STOPPED()) {
3525a8fceb3SMitchell Horne 		BOOTTRACE("shutdown initiated");
353c3982007SKonstantin Belousov 		shutdown_nice_task.ta_context = (void *)(uintptr_t)howto;
354c3982007SKonstantin Belousov 		taskqueue_enqueue(taskqueue_fast, &shutdown_nice_task);
355ad4240feSJulian Elischer 	} else {
356c3982007SKonstantin Belousov 		/*
357c3982007SKonstantin Belousov 		 * No init(8) running, or scheduler would not allow it
358c3982007SKonstantin Belousov 		 * to run, so simply reboot.
359c3982007SKonstantin Belousov 		 */
3608f5b107bSEd Schouten 		kern_reboot(howto | RB_NOSYNC);
361ad4240feSJulian Elischer 	}
362ad4240feSJulian Elischer }
363ad4240feSJulian Elischer 
36472dfe7a3SPoul-Henning Kamp static void
36582acbcf5SPeter Wemm print_uptime(void)
36672dfe7a3SPoul-Henning Kamp {
36772dfe7a3SPoul-Henning Kamp 	int f;
36872dfe7a3SPoul-Henning Kamp 	struct timespec ts;
36972dfe7a3SPoul-Henning Kamp 
37072dfe7a3SPoul-Henning Kamp 	getnanouptime(&ts);
37172dfe7a3SPoul-Henning Kamp 	printf("Uptime: ");
37272dfe7a3SPoul-Henning Kamp 	f = 0;
37372dfe7a3SPoul-Henning Kamp 	if (ts.tv_sec >= 86400) {
3744a6404dfSJohn Baldwin 		printf("%ldd", (long)ts.tv_sec / 86400);
37572dfe7a3SPoul-Henning Kamp 		ts.tv_sec %= 86400;
37672dfe7a3SPoul-Henning Kamp 		f = 1;
37772dfe7a3SPoul-Henning Kamp 	}
37872dfe7a3SPoul-Henning Kamp 	if (f || ts.tv_sec >= 3600) {
3794a6404dfSJohn Baldwin 		printf("%ldh", (long)ts.tv_sec / 3600);
38072dfe7a3SPoul-Henning Kamp 		ts.tv_sec %= 3600;
38172dfe7a3SPoul-Henning Kamp 		f = 1;
38272dfe7a3SPoul-Henning Kamp 	}
38372dfe7a3SPoul-Henning Kamp 	if (f || ts.tv_sec >= 60) {
3844a6404dfSJohn Baldwin 		printf("%ldm", (long)ts.tv_sec / 60);
38572dfe7a3SPoul-Henning Kamp 		ts.tv_sec %= 60;
38672dfe7a3SPoul-Henning Kamp 		f = 1;
38772dfe7a3SPoul-Henning Kamp 	}
3884a6404dfSJohn Baldwin 	printf("%lds\n", (long)ts.tv_sec);
38972dfe7a3SPoul-Henning Kamp }
39072dfe7a3SPoul-Henning Kamp 
391299cceefSMarcel Moolenaar int
392299cceefSMarcel Moolenaar doadump(boolean_t textdump)
393d39e457bSPoul-Henning Kamp {
394299cceefSMarcel Moolenaar 	boolean_t coredump;
395f6b4f5caSGavin Atkinson 	int error;
396e95499bdSAlfred Perlstein 
397f6b4f5caSGavin Atkinson 	error = 0;
398299cceefSMarcel Moolenaar 	if (dumping)
399299cceefSMarcel Moolenaar 		return (EBUSY);
4006b6e2954SConrad Meyer 	if (TAILQ_EMPTY(&dumper_configs))
401299cceefSMarcel Moolenaar 		return (ENXIO);
402f6449d9dSJulian Elischer 
403c9114f9fSMitchell Horne 	dump_savectx();
404d39e457bSPoul-Henning Kamp 	dumping++;
405299cceefSMarcel Moolenaar 
406299cceefSMarcel Moolenaar 	coredump = TRUE;
407618c7db3SRobert Watson #ifdef DDB
408299cceefSMarcel Moolenaar 	if (textdump && textdump_pending) {
409299cceefSMarcel Moolenaar 		coredump = FALSE;
4106b6e2954SConrad Meyer 		textdump_dumpsys(TAILQ_FIRST(&dumper_configs));
411299cceefSMarcel Moolenaar 	}
412618c7db3SRobert Watson #endif
4136b6e2954SConrad Meyer 	if (coredump) {
4146b6e2954SConrad Meyer 		struct dumperinfo *di;
4156b6e2954SConrad Meyer 
4166b6e2954SConrad Meyer 		TAILQ_FOREACH(di, &dumper_configs, di_next) {
4176b6e2954SConrad Meyer 			error = dumpsys(di);
4186b6e2954SConrad Meyer 			if (error == 0)
4196b6e2954SConrad Meyer 				break;
4206b6e2954SConrad Meyer 		}
4216b6e2954SConrad Meyer 	}
422299cceefSMarcel Moolenaar 
4239e473363SRuslan Ermilov 	dumping--;
424f6b4f5caSGavin Atkinson 	return (error);
425d39e457bSPoul-Henning Kamp }
426d39e457bSPoul-Henning Kamp 
427ad4240feSJulian Elischer /*
4285a8fceb3SMitchell Horne  * Trace the shutdown reason.
4295a8fceb3SMitchell Horne  */
4305a8fceb3SMitchell Horne static void
4315a8fceb3SMitchell Horne reboottrace(int howto)
4325a8fceb3SMitchell Horne {
4335a8fceb3SMitchell Horne 	if ((howto & RB_DUMP) != 0) {
4345a8fceb3SMitchell Horne 		if ((howto & RB_HALT) != 0)
4355a8fceb3SMitchell Horne 			BOOTTRACE("system panic: halting...");
4365a8fceb3SMitchell Horne 		if ((howto & RB_POWEROFF) != 0)
4375a8fceb3SMitchell Horne 			BOOTTRACE("system panic: powering off...");
4385a8fceb3SMitchell Horne 		if ((howto & (RB_HALT|RB_POWEROFF)) == 0)
4395a8fceb3SMitchell Horne 			BOOTTRACE("system panic: rebooting...");
4405a8fceb3SMitchell Horne 	} else {
4415a8fceb3SMitchell Horne 		if ((howto & RB_HALT) != 0)
4425a8fceb3SMitchell Horne 			BOOTTRACE("system halting...");
4435a8fceb3SMitchell Horne 		if ((howto & RB_POWEROFF) != 0)
4445a8fceb3SMitchell Horne 			BOOTTRACE("system powering off...");
4455a8fceb3SMitchell Horne 		if ((howto & (RB_HALT|RB_POWEROFF)) == 0)
4465a8fceb3SMitchell Horne 			BOOTTRACE("system rebooting...");
4475a8fceb3SMitchell Horne 	}
4485a8fceb3SMitchell Horne }
4495a8fceb3SMitchell Horne 
4505a8fceb3SMitchell Horne /*
451800e7495SMitchell Horne  * kern_reboot(9): Shut down the system cleanly to prepare for reboot, halt, or
452800e7495SMitchell Horne  * power off.
453ad4240feSJulian Elischer  */
45476e18b25SMarcel Moolenaar void
45576e18b25SMarcel Moolenaar kern_reboot(int howto)
456ad4240feSJulian Elischer {
45798082691SJeff Roberson 	static int once = 0;
458ad4240feSJulian Elischer 
4595a8fceb3SMitchell Horne 	if (initproc != NULL && curproc != initproc)
4605a8fceb3SMitchell Horne 		BOOTTRACE("kernel shutdown (dirty) started");
4615a8fceb3SMitchell Horne 	else
4625a8fceb3SMitchell Horne 		BOOTTRACE("kernel shutdown (clean) started");
4635a8fceb3SMitchell Horne 
464f0d847afSWarner Losh 	/*
465f0d847afSWarner Losh 	 * Normal paths here don't hold Giant, but we can wind up here
466f0d847afSWarner Losh 	 * unexpectedly with it held.  Drop it now so we don't have to
467f0d847afSWarner Losh 	 * drop and pick it up elsewhere. The paths it is locking will
468f0d847afSWarner Losh 	 * never be returned to, and it is preferable to preclude
469f0d847afSWarner Losh 	 * deadlock than to lock against code that won't ever
470f0d847afSWarner Losh 	 * continue.
471f0d847afSWarner Losh 	 */
472deacab75SMark Johnston 	while (!SCHEDULER_STOPPED() && mtx_owned(&Giant))
473f0d847afSWarner Losh 		mtx_unlock(&Giant);
474f0d847afSWarner Losh 
475f7ebc7ceSMarcel Moolenaar #if defined(SMP)
47670ce93f4SNate Lawson 	/*
477efe67753SNathan Whitehorn 	 * Bind us to the first CPU so that all shutdown code runs there.  Some
47870ce93f4SNate Lawson 	 * systems don't shutdown properly (i.e., ACPI power off) if we
47970ce93f4SNate Lawson 	 * run on another processor.
48070ce93f4SNate Lawson 	 */
48135370593SAndriy Gapon 	if (!SCHEDULER_STOPPED()) {
482982d11f8SJeff Roberson 		thread_lock(curthread);
483efe67753SNathan Whitehorn 		sched_bind(curthread, CPU_FIRST());
484982d11f8SJeff Roberson 		thread_unlock(curthread);
485efe67753SNathan Whitehorn 		KASSERT(PCPU_GET(cpuid) == CPU_FIRST(),
486800e7495SMitchell Horne 		    ("%s: not running on cpu 0", __func__));
48735370593SAndriy Gapon 	}
48820e25d7dSPeter Wemm #endif
48936a52c3cSJeff Roberson 	/* We're in the process of rebooting. */
49036a52c3cSJeff Roberson 	rebooting = 1;
4915a8fceb3SMitchell Horne 	reboottrace(howto);
49220e25d7dSPeter Wemm 
4935230cfd2SJulian Elischer 	/*
4945230cfd2SJulian Elischer 	 * Do any callouts that should be done BEFORE syncing the filesystems.
4955230cfd2SJulian Elischer 	 */
496fcb893a8SMike Smith 	EVENTHANDLER_INVOKE(shutdown_pre_sync, howto);
4975a8fceb3SMitchell Horne 	BOOTTRACE("shutdown pre sync complete");
4985230cfd2SJulian Elischer 
4995230cfd2SJulian Elischer 	/*
5005230cfd2SJulian Elischer 	 * Now sync filesystems
5015230cfd2SJulian Elischer 	 */
50298082691SJeff Roberson 	if (!cold && (howto & RB_NOSYNC) == 0 && once == 0) {
50398082691SJeff Roberson 		once = 1;
5045a8fceb3SMitchell Horne 		BOOTTRACE("bufshutdown begin");
50598082691SJeff Roberson 		bufshutdown(show_busybufs);
5065a8fceb3SMitchell Horne 		BOOTTRACE("bufshutdown end");
507ad4240feSJulian Elischer 	}
5085230cfd2SJulian Elischer 
50972dfe7a3SPoul-Henning Kamp 	print_uptime();
51072dfe7a3SPoul-Henning Kamp 
511bf8696b4SAndriy Gapon 	cngrab();
512bf8696b4SAndriy Gapon 
5135230cfd2SJulian Elischer 	/*
5145230cfd2SJulian Elischer 	 * Ok, now do things that assume all filesystem activity has
5155230cfd2SJulian Elischer 	 * been completed.
5165230cfd2SJulian Elischer 	 */
517fcb893a8SMike Smith 	EVENTHANDLER_INVOKE(shutdown_post_sync, howto);
5185a8fceb3SMitchell Horne 	BOOTTRACE("shutdown post sync complete");
51970ce93f4SNate Lawson 
520f6449d9dSJulian Elischer 	if ((howto & (RB_HALT|RB_DUMP)) == RB_DUMP && !cold && !dumping)
521299cceefSMarcel Moolenaar 		doadump(TRUE);
5222cfa0a03SJustin T. Gibbs 
5232cfa0a03SJustin T. Gibbs 	/* Now that we're going to really halt the system... */
5245a8fceb3SMitchell Horne 	BOOTTRACE("shutdown final begin");
5255a8fceb3SMitchell Horne 
5265a8fceb3SMitchell Horne 	if (shutdown_trace)
5275a8fceb3SMitchell Horne 		boottrace_dump_console();
5285a8fceb3SMitchell Horne 
529fcb893a8SMike Smith 	EVENTHANDLER_INVOKE(shutdown_final, howto);
5302cfa0a03SJustin T. Gibbs 
531627ca221SMitchell Horne 	/*
532627ca221SMitchell Horne 	 * Call this directly so that reset is attempted even if shutdown
533627ca221SMitchell Horne 	 * handlers are not yet registered.
534627ca221SMitchell Horne 	 */
535627ca221SMitchell Horne 	shutdown_reset(NULL, howto);
536627ca221SMitchell Horne 
537fcb893a8SMike Smith 	for(;;) ;	/* safety against shutdown_reset not working */
538fcb893a8SMike Smith 	/* NOTREACHED */
539fcb893a8SMike Smith }
540fcb893a8SMike Smith 
541fcb893a8SMike Smith /*
5420d3d0cc3SEdward Tomasz Napierala  * The system call that results in changing the rootfs.
5430d3d0cc3SEdward Tomasz Napierala  */
5440d3d0cc3SEdward Tomasz Napierala static int
5450d3d0cc3SEdward Tomasz Napierala kern_reroot(void)
5460d3d0cc3SEdward Tomasz Napierala {
5470d3d0cc3SEdward Tomasz Napierala 	struct vnode *oldrootvnode, *vp;
5480d3d0cc3SEdward Tomasz Napierala 	struct mount *mp, *devmp;
5490d3d0cc3SEdward Tomasz Napierala 	int error;
5500d3d0cc3SEdward Tomasz Napierala 
5510d3d0cc3SEdward Tomasz Napierala 	if (curproc != initproc)
5520d3d0cc3SEdward Tomasz Napierala 		return (EPERM);
5530d3d0cc3SEdward Tomasz Napierala 
5540d3d0cc3SEdward Tomasz Napierala 	/*
5550d3d0cc3SEdward Tomasz Napierala 	 * Mark the filesystem containing currently-running executable
5560d3d0cc3SEdward Tomasz Napierala 	 * (the temporary copy of init(8)) busy.
5570d3d0cc3SEdward Tomasz Napierala 	 */
5580d3d0cc3SEdward Tomasz Napierala 	vp = curproc->p_textvp;
5590d3d0cc3SEdward Tomasz Napierala 	error = vn_lock(vp, LK_SHARED);
5600d3d0cc3SEdward Tomasz Napierala 	if (error != 0)
5610d3d0cc3SEdward Tomasz Napierala 		return (error);
5620d3d0cc3SEdward Tomasz Napierala 	mp = vp->v_mount;
5630d3d0cc3SEdward Tomasz Napierala 	error = vfs_busy(mp, MBF_NOWAIT);
5640d3d0cc3SEdward Tomasz Napierala 	if (error != 0) {
5650d3d0cc3SEdward Tomasz Napierala 		vfs_ref(mp);
566b249ce48SMateusz Guzik 		VOP_UNLOCK(vp);
5670d3d0cc3SEdward Tomasz Napierala 		error = vfs_busy(mp, 0);
5680d3d0cc3SEdward Tomasz Napierala 		vn_lock(vp, LK_SHARED | LK_RETRY);
5690d3d0cc3SEdward Tomasz Napierala 		vfs_rel(mp);
5700d3d0cc3SEdward Tomasz Napierala 		if (error != 0) {
571b249ce48SMateusz Guzik 			VOP_UNLOCK(vp);
5720d3d0cc3SEdward Tomasz Napierala 			return (ENOENT);
5730d3d0cc3SEdward Tomasz Napierala 		}
574abd80ddbSMateusz Guzik 		if (VN_IS_DOOMED(vp)) {
575b249ce48SMateusz Guzik 			VOP_UNLOCK(vp);
5760d3d0cc3SEdward Tomasz Napierala 			vfs_unbusy(mp);
5770d3d0cc3SEdward Tomasz Napierala 			return (ENOENT);
5780d3d0cc3SEdward Tomasz Napierala 		}
5790d3d0cc3SEdward Tomasz Napierala 	}
580b249ce48SMateusz Guzik 	VOP_UNLOCK(vp);
5810d3d0cc3SEdward Tomasz Napierala 
5820d3d0cc3SEdward Tomasz Napierala 	/*
5830d3d0cc3SEdward Tomasz Napierala 	 * Remove the filesystem containing currently-running executable
5840d3d0cc3SEdward Tomasz Napierala 	 * from the mount list, to prevent it from being unmounted
5850d3d0cc3SEdward Tomasz Napierala 	 * by vfs_unmountall(), and to avoid confusing vfs_mountroot().
5860d3d0cc3SEdward Tomasz Napierala 	 *
5870d3d0cc3SEdward Tomasz Napierala 	 * Also preserve /dev - forcibly unmounting it could cause driver
5880d3d0cc3SEdward Tomasz Napierala 	 * reinitialization.
5890d3d0cc3SEdward Tomasz Napierala 	 */
5900d3d0cc3SEdward Tomasz Napierala 
5910d3d0cc3SEdward Tomasz Napierala 	vfs_ref(rootdevmp);
5920d3d0cc3SEdward Tomasz Napierala 	devmp = rootdevmp;
5930d3d0cc3SEdward Tomasz Napierala 	rootdevmp = NULL;
5940d3d0cc3SEdward Tomasz Napierala 
5950d3d0cc3SEdward Tomasz Napierala 	mtx_lock(&mountlist_mtx);
5960d3d0cc3SEdward Tomasz Napierala 	TAILQ_REMOVE(&mountlist, mp, mnt_list);
5970d3d0cc3SEdward Tomasz Napierala 	TAILQ_REMOVE(&mountlist, devmp, mnt_list);
5980d3d0cc3SEdward Tomasz Napierala 	mtx_unlock(&mountlist_mtx);
5990d3d0cc3SEdward Tomasz Napierala 
6000d3d0cc3SEdward Tomasz Napierala 	oldrootvnode = rootvnode;
6010d3d0cc3SEdward Tomasz Napierala 
6020d3d0cc3SEdward Tomasz Napierala 	/*
6030d3d0cc3SEdward Tomasz Napierala 	 * Unmount everything except for the two filesystems preserved above.
6040d3d0cc3SEdward Tomasz Napierala 	 */
6050d3d0cc3SEdward Tomasz Napierala 	vfs_unmountall();
6060d3d0cc3SEdward Tomasz Napierala 
6070d3d0cc3SEdward Tomasz Napierala 	/*
6080d3d0cc3SEdward Tomasz Napierala 	 * Add /dev back; vfs_mountroot() will move it into its new place.
6090d3d0cc3SEdward Tomasz Napierala 	 */
6100d3d0cc3SEdward Tomasz Napierala 	mtx_lock(&mountlist_mtx);
6110d3d0cc3SEdward Tomasz Napierala 	TAILQ_INSERT_HEAD(&mountlist, devmp, mnt_list);
6120d3d0cc3SEdward Tomasz Napierala 	mtx_unlock(&mountlist_mtx);
6130d3d0cc3SEdward Tomasz Napierala 	rootdevmp = devmp;
6140d3d0cc3SEdward Tomasz Napierala 	vfs_rel(rootdevmp);
6150d3d0cc3SEdward Tomasz Napierala 
6160d3d0cc3SEdward Tomasz Napierala 	/*
6170d3d0cc3SEdward Tomasz Napierala 	 * Mount the new rootfs.
6180d3d0cc3SEdward Tomasz Napierala 	 */
6190d3d0cc3SEdward Tomasz Napierala 	vfs_mountroot();
6200d3d0cc3SEdward Tomasz Napierala 
6210d3d0cc3SEdward Tomasz Napierala 	/*
6220d3d0cc3SEdward Tomasz Napierala 	 * Update all references to the old rootvnode.
6230d3d0cc3SEdward Tomasz Napierala 	 */
6240d3d0cc3SEdward Tomasz Napierala 	mountcheckdirs(oldrootvnode, rootvnode);
6250d3d0cc3SEdward Tomasz Napierala 
6260d3d0cc3SEdward Tomasz Napierala 	/*
6270d3d0cc3SEdward Tomasz Napierala 	 * Add the temporary filesystem back and unbusy it.
6280d3d0cc3SEdward Tomasz Napierala 	 */
6290d3d0cc3SEdward Tomasz Napierala 	mtx_lock(&mountlist_mtx);
6300d3d0cc3SEdward Tomasz Napierala 	TAILQ_INSERT_TAIL(&mountlist, mp, mnt_list);
6310d3d0cc3SEdward Tomasz Napierala 	mtx_unlock(&mountlist_mtx);
6320d3d0cc3SEdward Tomasz Napierala 	vfs_unbusy(mp);
6330d3d0cc3SEdward Tomasz Napierala 
6340d3d0cc3SEdward Tomasz Napierala 	return (0);
6350d3d0cc3SEdward Tomasz Napierala }
6360d3d0cc3SEdward Tomasz Napierala 
6370d3d0cc3SEdward Tomasz Napierala /*
638fcb893a8SMike Smith  * If the shutdown was a clean halt, behave accordingly.
639fcb893a8SMike Smith  */
640fcb893a8SMike Smith static void
641fcb893a8SMike Smith shutdown_halt(void *junk, int howto)
642fcb893a8SMike Smith {
643e95499bdSAlfred Perlstein 
644ad4240feSJulian Elischer 	if (howto & RB_HALT) {
645ad4240feSJulian Elischer 		printf("\n");
646ad4240feSJulian Elischer 		printf("The operating system has halted.\n");
647ad4240feSJulian Elischer 		printf("Please press any key to reboot.\n\n");
648387df3b8SAndriy Gapon 
649387df3b8SAndriy Gapon 		wdog_kern_pat(WD_TO_NEVER);
650387df3b8SAndriy Gapon 
651d13d3630SJulian Elischer 		switch (cngetc()) {
652d13d3630SJulian Elischer 		case -1:		/* No console, just die */
653d13d3630SJulian Elischer 			cpu_halt();
654d13d3630SJulian Elischer 			/* NOTREACHED */
655d13d3630SJulian Elischer 		default:
656d13d3630SJulian Elischer 			break;
657d13d3630SJulian Elischer 		}
658fcb893a8SMike Smith 	}
659fcb893a8SMike Smith }
660ad4240feSJulian Elischer 
661fcb893a8SMike Smith /*
662669d5ea4SGordon Bergling  * Check to see if the system panicked, pause and then reboot
663fcb893a8SMike Smith  * according to the specified delay.
664fcb893a8SMike Smith  */
665fcb893a8SMike Smith static void
666fcb893a8SMike Smith shutdown_panic(void *junk, int howto)
667fcb893a8SMike Smith {
668fcb893a8SMike Smith 	int loop;
669fcb893a8SMike Smith 
670fcb893a8SMike Smith 	if (howto & RB_DUMP) {
6711cdbb9edSColin Percival 		if (panic_reboot_wait_time != 0) {
6721cdbb9edSColin Percival 			if (panic_reboot_wait_time != -1) {
6732cfa0a03SJustin T. Gibbs 				printf("Automatic reboot in %d seconds - "
6742cfa0a03SJustin T. Gibbs 				       "press a key on the console to abort\n",
6751cdbb9edSColin Percival 					panic_reboot_wait_time);
6761cdbb9edSColin Percival 				for (loop = panic_reboot_wait_time * 10;
6772cfa0a03SJustin T. Gibbs 				     loop > 0; --loop) {
678ad4240feSJulian Elischer 					DELAY(1000 * 100); /* 1/10th second */
679a7f8f2abSBruce Evans 					/* Did user type a key? */
680a7f8f2abSBruce Evans 					if (cncheckc() != -1)
681ad4240feSJulian Elischer 						break;
682ad4240feSJulian Elischer 				}
683ad4240feSJulian Elischer 				if (!loop)
684fcb893a8SMike Smith 					return;
685ad4240feSJulian Elischer 			}
686ad4240feSJulian Elischer 		} else { /* zero time specified - reboot NOW */
687fcb893a8SMike Smith 			return;
688ad4240feSJulian Elischer 		}
689422702e9SNik Clayton 		printf("--> Press a key on the console to reboot,\n");
690422702e9SNik Clayton 		printf("--> or switch off the system now.\n");
691ad4240feSJulian Elischer 		cngetc();
692ad4240feSJulian Elischer 	}
693fcb893a8SMike Smith }
694fcb893a8SMike Smith 
695fcb893a8SMike Smith /*
696fcb893a8SMike Smith  * Everything done, now reset
697fcb893a8SMike Smith  */
698fcb893a8SMike Smith static void
699fcb893a8SMike Smith shutdown_reset(void *junk, int howto)
700fcb893a8SMike Smith {
701e95499bdSAlfred Perlstein 
702ad4240feSJulian Elischer 	printf("Rebooting...\n");
70384ec7df0SColin Percival 	DELAY(reboot_wait_time * 1000000);
704248bb937SAttilio Rao 
705248bb937SAttilio Rao 	/*
706248bb937SAttilio Rao 	 * Acquiring smp_ipi_mtx here has a double effect:
707248bb937SAttilio Rao 	 * - it disables interrupts avoiding CPU0 preemption
708248bb937SAttilio Rao 	 *   by fast handlers (thus deadlocking  against other CPUs)
709248bb937SAttilio Rao 	 * - it avoids deadlocks against smp_rendezvous() or, more
710248bb937SAttilio Rao 	 *   generally, threads busy-waiting, with this spinlock held,
711248bb937SAttilio Rao 	 *   and waiting for responses by threads on other CPUs
712248bb937SAttilio Rao 	 *   (ie. smp_tlb_shootdown()).
7130a2d5feaSAttilio Rao 	 *
7140a2d5feaSAttilio Rao 	 * For the !SMP case it just needs to handle the former problem.
715248bb937SAttilio Rao 	 */
7160a2d5feaSAttilio Rao #ifdef SMP
717248bb937SAttilio Rao 	mtx_lock_spin(&smp_ipi_mtx);
7180a2d5feaSAttilio Rao #else
7190a2d5feaSAttilio Rao 	spinlock_enter();
7200a2d5feaSAttilio Rao #endif
721248bb937SAttilio Rao 
722ad4240feSJulian Elischer 	cpu_reset();
723fcb893a8SMike Smith 	/* NOTREACHED */ /* assuming reset worked */
724ad4240feSJulian Elischer }
725ad4240feSJulian Elischer 
726a0d20ecbSGleb Smirnoff #if defined(WITNESS) || defined(INVARIANT_SUPPORT)
7273945a964SAlfred Perlstein static int kassert_warn_only = 0;
728a94053baSAlfred Perlstein #ifdef KDB
729a94053baSAlfred Perlstein static int kassert_do_kdb = 0;
730a94053baSAlfred Perlstein #endif
7313945a964SAlfred Perlstein #ifdef KTR
7323945a964SAlfred Perlstein static int kassert_do_ktr = 0;
7333945a964SAlfred Perlstein #endif
7343945a964SAlfred Perlstein static int kassert_do_log = 1;
7353945a964SAlfred Perlstein static int kassert_log_pps_limit = 4;
7363945a964SAlfred Perlstein static int kassert_log_mute_at = 0;
7373945a964SAlfred Perlstein static int kassert_log_panic_at = 0;
73818959b69SJonathan T. Looney static int kassert_suppress_in_panic = 0;
7393945a964SAlfred Perlstein static int kassert_warnings = 0;
7403945a964SAlfred Perlstein 
7417029da5cSPawel Biernacki SYSCTL_NODE(_debug, OID_AUTO, kassert, CTLFLAG_RW | CTLFLAG_MPSAFE, NULL,
7427029da5cSPawel Biernacki     "kassert options");
7433945a964SAlfred Perlstein 
7444ca8c1efSConrad Meyer #ifdef KASSERT_PANIC_OPTIONAL
7454ca8c1efSConrad Meyer #define KASSERT_RWTUN	CTLFLAG_RWTUN
7464ca8c1efSConrad Meyer #else
7474ca8c1efSConrad Meyer #define KASSERT_RWTUN	CTLFLAG_RDTUN
7484ca8c1efSConrad Meyer #endif
7494ca8c1efSConrad Meyer 
7504ca8c1efSConrad Meyer SYSCTL_INT(_debug_kassert, OID_AUTO, warn_only, KASSERT_RWTUN,
7513945a964SAlfred Perlstein     &kassert_warn_only, 0,
7524ca8c1efSConrad Meyer     "KASSERT triggers a panic (0) or just a warning (1)");
7533945a964SAlfred Perlstein 
754a94053baSAlfred Perlstein #ifdef KDB
7554ca8c1efSConrad Meyer SYSCTL_INT(_debug_kassert, OID_AUTO, do_kdb, KASSERT_RWTUN,
756a94053baSAlfred Perlstein     &kassert_do_kdb, 0, "KASSERT will enter the debugger");
757a94053baSAlfred Perlstein #endif
758a94053baSAlfred Perlstein 
7593945a964SAlfred Perlstein #ifdef KTR
7604ca8c1efSConrad Meyer SYSCTL_UINT(_debug_kassert, OID_AUTO, do_ktr, KASSERT_RWTUN,
7613945a964SAlfred Perlstein     &kassert_do_ktr, 0,
7623945a964SAlfred Perlstein     "KASSERT does a KTR, set this to the KTRMASK you want");
7633945a964SAlfred Perlstein #endif
7643945a964SAlfred Perlstein 
7654ca8c1efSConrad Meyer SYSCTL_INT(_debug_kassert, OID_AUTO, do_log, KASSERT_RWTUN,
76607aa6ea6SConrad Meyer     &kassert_do_log, 0,
76707aa6ea6SConrad Meyer     "If warn_only is enabled, log (1) or do not log (0) assertion violations");
7683945a964SAlfred Perlstein 
7693ad1ce46SAndriy Gapon SYSCTL_INT(_debug_kassert, OID_AUTO, warnings, CTLFLAG_RD | CTLFLAG_STATS,
7703945a964SAlfred Perlstein     &kassert_warnings, 0, "number of KASSERTs that have been triggered");
7713945a964SAlfred Perlstein 
7724ca8c1efSConrad Meyer SYSCTL_INT(_debug_kassert, OID_AUTO, log_panic_at, KASSERT_RWTUN,
7733945a964SAlfred Perlstein     &kassert_log_panic_at, 0, "max number of KASSERTS before we will panic");
7743945a964SAlfred Perlstein 
7754ca8c1efSConrad Meyer SYSCTL_INT(_debug_kassert, OID_AUTO, log_pps_limit, KASSERT_RWTUN,
7763945a964SAlfred Perlstein     &kassert_log_pps_limit, 0, "limit number of log messages per second");
7773945a964SAlfred Perlstein 
7784ca8c1efSConrad Meyer SYSCTL_INT(_debug_kassert, OID_AUTO, log_mute_at, KASSERT_RWTUN,
7793945a964SAlfred Perlstein     &kassert_log_mute_at, 0, "max number of KASSERTS to log");
7803945a964SAlfred Perlstein 
7814ca8c1efSConrad Meyer SYSCTL_INT(_debug_kassert, OID_AUTO, suppress_in_panic, KASSERT_RWTUN,
78244b71282SJonathan T. Looney     &kassert_suppress_in_panic, 0,
78344b71282SJonathan T. Looney     "KASSERTs will be suppressed while handling a panic");
7844ca8c1efSConrad Meyer #undef KASSERT_RWTUN
78544b71282SJonathan T. Looney 
7863945a964SAlfred Perlstein static int kassert_sysctl_kassert(SYSCTL_HANDLER_ARGS);
7873945a964SAlfred Perlstein 
7883945a964SAlfred Perlstein SYSCTL_PROC(_debug_kassert, OID_AUTO, kassert,
78967f508dbSAlexander Motin     CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_SECURE | CTLFLAG_MPSAFE, NULL, 0,
7907029da5cSPawel Biernacki     kassert_sysctl_kassert, "I",
7917029da5cSPawel Biernacki     "set to trigger a test kassert");
7923945a964SAlfred Perlstein 
7933945a964SAlfred Perlstein static int
7943945a964SAlfred Perlstein kassert_sysctl_kassert(SYSCTL_HANDLER_ARGS)
7953945a964SAlfred Perlstein {
7963945a964SAlfred Perlstein 	int error, i;
7973945a964SAlfred Perlstein 
7983945a964SAlfred Perlstein 	error = sysctl_wire_old_buffer(req, sizeof(int));
7993945a964SAlfred Perlstein 	if (error == 0) {
8003945a964SAlfred Perlstein 		i = 0;
8013945a964SAlfred Perlstein 		error = sysctl_handle_int(oidp, &i, 0, req);
8023945a964SAlfred Perlstein 	}
8033945a964SAlfred Perlstein 	if (error != 0 || req->newptr == NULL)
8043945a964SAlfred Perlstein 		return (error);
8053945a964SAlfred Perlstein 	KASSERT(0, ("kassert_sysctl_kassert triggered kassert %d", i));
8063945a964SAlfred Perlstein 	return (0);
8073945a964SAlfred Perlstein }
8083945a964SAlfred Perlstein 
8094ca8c1efSConrad Meyer #ifdef KASSERT_PANIC_OPTIONAL
8103945a964SAlfred Perlstein /*
8113945a964SAlfred Perlstein  * Called by KASSERT, this decides if we will panic
8123945a964SAlfred Perlstein  * or if we will log via printf and/or ktr.
8133945a964SAlfred Perlstein  */
8143945a964SAlfred Perlstein void
8153945a964SAlfred Perlstein kassert_panic(const char *fmt, ...)
8163945a964SAlfred Perlstein {
8173945a964SAlfred Perlstein 	static char buf[256];
8183945a964SAlfred Perlstein 	va_list ap;
8193945a964SAlfred Perlstein 
8203945a964SAlfred Perlstein 	va_start(ap, fmt);
8213945a964SAlfred Perlstein 	(void)vsnprintf(buf, sizeof(buf), fmt, ap);
8223945a964SAlfred Perlstein 	va_end(ap);
8233945a964SAlfred Perlstein 
8243945a964SAlfred Perlstein 	/*
82565df1248SConrad Meyer 	 * If we are suppressing secondary panics, log the warning but do not
82665df1248SConrad Meyer 	 * re-enter panic/kdb.
82765df1248SConrad Meyer 	 */
82835eb9b10SMitchell Horne 	if (KERNEL_PANICKED() && kassert_suppress_in_panic) {
82965df1248SConrad Meyer 		if (kassert_do_log) {
83065df1248SConrad Meyer 			printf("KASSERT failed: %s\n", buf);
83165df1248SConrad Meyer #ifdef KDB
83265df1248SConrad Meyer 			if (trace_all_panics && trace_on_panic)
83365df1248SConrad Meyer 				kdb_backtrace();
83465df1248SConrad Meyer #endif
83565df1248SConrad Meyer 		}
83665df1248SConrad Meyer 		return;
83765df1248SConrad Meyer 	}
83865df1248SConrad Meyer 
83965df1248SConrad Meyer 	/*
8403945a964SAlfred Perlstein 	 * panic if we're not just warning, or if we've exceeded
8413945a964SAlfred Perlstein 	 * kassert_log_panic_at warnings.
8423945a964SAlfred Perlstein 	 */
8433945a964SAlfred Perlstein 	if (!kassert_warn_only ||
8443945a964SAlfred Perlstein 	    (kassert_log_panic_at > 0 &&
8453945a964SAlfred Perlstein 	     kassert_warnings >= kassert_log_panic_at)) {
8463945a964SAlfred Perlstein 		va_start(ap, fmt);
8473945a964SAlfred Perlstein 		vpanic(fmt, ap);
8483945a964SAlfred Perlstein 		/* NORETURN */
8493945a964SAlfred Perlstein 	}
8503945a964SAlfred Perlstein #ifdef KTR
8513945a964SAlfred Perlstein 	if (kassert_do_ktr)
8523945a964SAlfred Perlstein 		CTR0(ktr_mask, buf);
8533945a964SAlfred Perlstein #endif /* KTR */
8543945a964SAlfred Perlstein 	/*
8553945a964SAlfred Perlstein 	 * log if we've not yet met the mute limit.
8563945a964SAlfred Perlstein 	 */
8573945a964SAlfred Perlstein 	if (kassert_do_log &&
8583945a964SAlfred Perlstein 	    (kassert_log_mute_at == 0 ||
8593945a964SAlfred Perlstein 	     kassert_warnings < kassert_log_mute_at)) {
8603945a964SAlfred Perlstein 		static  struct timeval lasterr;
8613945a964SAlfred Perlstein 		static  int curerr;
8623945a964SAlfred Perlstein 
8633945a964SAlfred Perlstein 		if (ppsratecheck(&lasterr, &curerr, kassert_log_pps_limit)) {
8643945a964SAlfred Perlstein 			printf("KASSERT failed: %s\n", buf);
8653945a964SAlfred Perlstein 			kdb_backtrace();
8663945a964SAlfred Perlstein 		}
8673945a964SAlfred Perlstein 	}
868a94053baSAlfred Perlstein #ifdef KDB
869a94053baSAlfred Perlstein 	if (kassert_do_kdb) {
870a94053baSAlfred Perlstein 		kdb_enter(KDB_WHY_KASSERT, buf);
871a94053baSAlfred Perlstein 	}
872a94053baSAlfred Perlstein #endif
8733945a964SAlfred Perlstein 	atomic_add_int(&kassert_warnings, 1);
8743945a964SAlfred Perlstein }
8754ca8c1efSConrad Meyer #endif /* KASSERT_PANIC_OPTIONAL */
8763945a964SAlfred Perlstein #endif
8773945a964SAlfred Perlstein 
878ad4240feSJulian Elischer /*
879ad4240feSJulian Elischer  * Panic is called on unresolvable fatal errors.  It prints "panic: mesg",
880ad4240feSJulian Elischer  * and then reboots.  If we are called twice, then we avoid trying to sync
881ad4240feSJulian Elischer  * the disks as this often leads to recursive panics.
882ad4240feSJulian Elischer  */
883ad4240feSJulian Elischer void
8849a6dc4b6SPoul-Henning Kamp panic(const char *fmt, ...)
885ad4240feSJulian Elischer {
8863945a964SAlfred Perlstein 	va_list ap;
8873945a964SAlfred Perlstein 
8883945a964SAlfred Perlstein 	va_start(ap, fmt);
8893945a964SAlfred Perlstein 	vpanic(fmt, ap);
8903945a964SAlfred Perlstein }
8913945a964SAlfred Perlstein 
892da10a603SMark Johnston void
8933945a964SAlfred Perlstein vpanic(const char *fmt, va_list ap)
8943945a964SAlfred Perlstein {
89564dd590eSAndriy Gapon #ifdef SMP
89635370593SAndriy Gapon 	cpuset_t other_cpus;
89764dd590eSAndriy Gapon #endif
898fe799533SAndrew Gallatin 	struct thread *td = curthread;
899e485b64bSJohn Baldwin 	int bootopt, newpanic;
90099237364SAndrey A. Chernov 	static char buf[256];
901ad4240feSJulian Elischer 
902eaed922eSOlivier Certner 	/*
903eaed922eSOlivier Certner 	 * 'fmt' must not be NULL as it is put into 'panicstr' which is then
904eaed922eSOlivier Certner 	 * used as a flag to detect if the kernel has panicked.  Also, although
905eaed922eSOlivier Certner 	 * vsnprintf() supports a NULL 'fmt' argument, use a more informative
906eaed922eSOlivier Certner 	 * message.
907eaed922eSOlivier Certner 	 */
908eaed922eSOlivier Certner 	if (fmt == NULL)
909eaed922eSOlivier Certner 		fmt = "<no panic string!>";
910eaed922eSOlivier Certner 
91135370593SAndriy Gapon 	spinlock_enter();
91235370593SAndriy Gapon 
9130384fff8SJason Evans #ifdef SMP
9141a5333c3SJohn Baldwin 	/*
9156898bee9SAndriy Gapon 	 * stop_cpus_hard(other_cpus) should prevent multiple CPUs from
9166898bee9SAndriy Gapon 	 * concurrently entering panic.  Only the winner will proceed
9176898bee9SAndriy Gapon 	 * further.
9181a5333c3SJohn Baldwin 	 */
919eaed922eSOlivier Certner 	if (!KERNEL_PANICKED() && !kdb_active) {
92035370593SAndriy Gapon 		other_cpus = all_cpus;
92135370593SAndriy Gapon 		CPU_CLR(PCPU_GET(cpuid), &other_cpus);
92235370593SAndriy Gapon 		stop_cpus_hard(other_cpus);
92335370593SAndriy Gapon 	}
92442d33c1fSMark Johnston #endif
92535370593SAndriy Gapon 
92635370593SAndriy Gapon 	/*
9279ad64f27SMark Johnston 	 * Ensure that the scheduler is stopped while panicking, even if panic
9289ad64f27SMark Johnston 	 * has been entered from kdb.
92935370593SAndriy Gapon 	 */
930*6b353101SOlivier Certner 	scheduler_stopped = true;
9310384fff8SJason Evans 
932e3adb685SAttilio Rao 	bootopt = RB_AUTOBOOT;
933e485b64bSJohn Baldwin 	newpanic = 0;
93435eb9b10SMitchell Horne 	if (KERNEL_PANICKED())
935ad4240feSJulian Elischer 		bootopt |= RB_NOSYNC;
936e485b64bSJohn Baldwin 	else {
937e3adb685SAttilio Rao 		bootopt |= RB_DUMP;
938ad4240feSJulian Elischer 		panicstr = fmt;
939e485b64bSJohn Baldwin 		newpanic = 1;
940e485b64bSJohn Baldwin 	}
941ad4240feSJulian Elischer 
9424f1b4577SIan Dowse 	if (newpanic) {
9432127f260SArchie Cobbs 		(void)vsnprintf(buf, sizeof(buf), fmt, ap);
94499237364SAndrey A. Chernov 		panicstr = buf;
945bf8696b4SAndriy Gapon 		cngrab();
9469a6dc4b6SPoul-Henning Kamp 		printf("panic: %s\n", buf);
9474f1b4577SIan Dowse 	} else {
9484f1b4577SIan Dowse 		printf("panic: ");
9494f1b4577SIan Dowse 		vprintf(fmt, ap);
9509a6dc4b6SPoul-Henning Kamp 		printf("\n");
9514f1b4577SIan Dowse 	}
95247d81897SSteve Passe #ifdef SMP
95355c45354SJohn Baldwin 	printf("cpuid = %d\n", PCPU_GET(cpuid));
9542bcc63c5SJohn Baldwin #endif
9556cf0c1dbSGleb Smirnoff 	printf("time = %jd\n", (intmax_t )time_second);
9562d50560aSMarcel Moolenaar #ifdef KDB
957ad1fc315SConrad Meyer 	if ((newpanic || trace_all_panics) && trace_on_panic)
9582d50560aSMarcel Moolenaar 		kdb_backtrace();
959ad4240feSJulian Elischer 	if (debugger_on_panic)
9603de213ccSRobert Watson 		kdb_enter(KDB_WHY_PANIC, "panic");
961c8a96cdcSMitchell Horne 	else if (!newpanic && debugger_on_recursive_panic)
962c8a96cdcSMitchell Horne 		kdb_enter(KDB_WHY_PANIC, "re-panic");
9631432aa0cSJohn Baldwin #endif
964982d11f8SJeff Roberson 	/*thread_lock(td); */
965fe799533SAndrew Gallatin 	td->td_flags |= TDF_INPANIC;
966982d11f8SJeff Roberson 	/* thread_unlock(td); */
967259ed917SPeter Wemm 	if (!sync_on_panic)
968259ed917SPeter Wemm 		bootopt |= RB_NOSYNC;
96948f1a492SWarner Losh 	if (poweroff_on_panic)
97048f1a492SWarner Losh 		bootopt |= RB_POWEROFF;
97148f1a492SWarner Losh 	if (powercycle_on_panic)
97248f1a492SWarner Losh 		bootopt |= RB_POWERCYCLE;
97376e18b25SMarcel Moolenaar 	kern_reboot(bootopt);
974ad4240feSJulian Elischer }
975ad4240feSJulian Elischer 
976e0d898b4SJulian Elischer /*
977db82a982SMike Smith  * Support for poweroff delay.
978b22692bdSNick Hibma  *
979b22692bdSNick Hibma  * Please note that setting this delay too short might power off your machine
980b22692bdSNick Hibma  * before the write cache on your hard disk has been flushed, leading to
981b22692bdSNick Hibma  * soft-updates inconsistencies.
982db82a982SMike Smith  */
9839eec6969SMike Smith #ifndef POWEROFF_DELAY
9849eec6969SMike Smith # define POWEROFF_DELAY 5000
9859eec6969SMike Smith #endif
9869eec6969SMike Smith static int poweroff_delay = POWEROFF_DELAY;
9879eec6969SMike Smith 
988db82a982SMike Smith SYSCTL_INT(_kern_shutdown, OID_AUTO, poweroff_delay, CTLFLAG_RW,
9893eb9ab52SEitan Adler     &poweroff_delay, 0, "Delay before poweroff to write disk caches (msec)");
990db82a982SMike Smith 
991fcb893a8SMike Smith static void
992fcb893a8SMike Smith poweroff_wait(void *junk, int howto)
993db82a982SMike Smith {
994e95499bdSAlfred Perlstein 
9957d41b6f0SWarner Losh 	if ((howto & (RB_POWEROFF | RB_POWERCYCLE)) == 0 || poweroff_delay <= 0)
996db82a982SMike Smith 		return;
997db82a982SMike Smith 	DELAY(poweroff_delay * 1000);
998db82a982SMike Smith }
9995e950839SLuoqi Chen 
10005e950839SLuoqi Chen /*
10015e950839SLuoqi Chen  * Some system processes (e.g. syncer) need to be stopped at appropriate
10025e950839SLuoqi Chen  * points in their main loops prior to a system shutdown, so that they
10035e950839SLuoqi Chen  * won't interfere with the shutdown process (e.g. by holding a disk buf
10045e950839SLuoqi Chen  * to cause sync to fail).  For each of these system processes, register
10055e950839SLuoqi Chen  * shutdown_kproc() as a handler for one of shutdown events.
10065e950839SLuoqi Chen  */
10075e950839SLuoqi Chen static int kproc_shutdown_wait = 60;
10085e950839SLuoqi Chen SYSCTL_INT(_kern_shutdown, OID_AUTO, kproc_shutdown_wait, CTLFLAG_RW,
10093eb9ab52SEitan Adler     &kproc_shutdown_wait, 0, "Max wait time (sec) to stop for each process");
10105e950839SLuoqi Chen 
10115e950839SLuoqi Chen void
1012ffc831daSJohn Baldwin kproc_shutdown(void *arg, int howto)
10135e950839SLuoqi Chen {
10145e950839SLuoqi Chen 	struct proc *p;
10155e950839SLuoqi Chen 	int error;
10165e950839SLuoqi Chen 
1017960612a1SMitchell Horne 	if (SCHEDULER_STOPPED())
10185e950839SLuoqi Chen 		return;
10195e950839SLuoqi Chen 
10205e950839SLuoqi Chen 	p = (struct proc *)arg;
1021b1c81391SNate Lawson 	printf("Waiting (max %d seconds) for system process `%s' to stop... ",
10224f9d48e4SJohn Baldwin 	    kproc_shutdown_wait, p->p_comm);
10233745c395SJulian Elischer 	error = kproc_suspend(p, kproc_shutdown_wait * hz);
10245e950839SLuoqi Chen 
10255e950839SLuoqi Chen 	if (error == EWOULDBLOCK)
1026b1c81391SNate Lawson 		printf("timed out\n");
10275e950839SLuoqi Chen 	else
1028b1c81391SNate Lawson 		printf("done\n");
10295e950839SLuoqi Chen }
103081661c94SPoul-Henning Kamp 
10317ab24ea3SJulian Elischer void
10327ab24ea3SJulian Elischer kthread_shutdown(void *arg, int howto)
10337ab24ea3SJulian Elischer {
10347ab24ea3SJulian Elischer 	struct thread *td;
10357ab24ea3SJulian Elischer 	int error;
10367ab24ea3SJulian Elischer 
1037960612a1SMitchell Horne 	if (SCHEDULER_STOPPED())
10387ab24ea3SJulian Elischer 		return;
10397ab24ea3SJulian Elischer 
10407ab24ea3SJulian Elischer 	td = (struct thread *)arg;
10417ab24ea3SJulian Elischer 	printf("Waiting (max %d seconds) for system thread `%s' to stop... ",
10424f9d48e4SJohn Baldwin 	    kproc_shutdown_wait, td->td_name);
10437ab24ea3SJulian Elischer 	error = kthread_suspend(td, kproc_shutdown_wait * hz);
10447ab24ea3SJulian Elischer 
10457ab24ea3SJulian Elischer 	if (error == EWOULDBLOCK)
10467ab24ea3SJulian Elischer 		printf("timed out\n");
10477ab24ea3SJulian Elischer 	else
10487ab24ea3SJulian Elischer 		printf("done\n");
10497ab24ea3SJulian Elischer }
10507ab24ea3SJulian Elischer 
10516b6e2954SConrad Meyer static int
10526b6e2954SConrad Meyer dumpdevname_sysctl_handler(SYSCTL_HANDLER_ARGS)
10536b6e2954SConrad Meyer {
10546b6e2954SConrad Meyer 	char buf[256];
10556b6e2954SConrad Meyer 	struct dumperinfo *di;
10566b6e2954SConrad Meyer 	struct sbuf sb;
10576b6e2954SConrad Meyer 	int error;
10586b6e2954SConrad Meyer 
10596b6e2954SConrad Meyer 	error = sysctl_wire_old_buffer(req, 0);
10606b6e2954SConrad Meyer 	if (error != 0)
10616b6e2954SConrad Meyer 		return (error);
10626b6e2954SConrad Meyer 
10636b6e2954SConrad Meyer 	sbuf_new_for_sysctl(&sb, buf, sizeof(buf), req);
10646b6e2954SConrad Meyer 
10656b6e2954SConrad Meyer 	mtx_lock(&dumpconf_list_lk);
10666b6e2954SConrad Meyer 	TAILQ_FOREACH(di, &dumper_configs, di_next) {
10676b6e2954SConrad Meyer 		if (di != TAILQ_FIRST(&dumper_configs))
10686b6e2954SConrad Meyer 			sbuf_putc(&sb, ',');
10696b6e2954SConrad Meyer 		sbuf_cat(&sb, di->di_devname);
10706b6e2954SConrad Meyer 	}
10716b6e2954SConrad Meyer 	mtx_unlock(&dumpconf_list_lk);
10726b6e2954SConrad Meyer 
10736b6e2954SConrad Meyer 	error = sbuf_finish(&sb);
10746b6e2954SConrad Meyer 	sbuf_delete(&sb);
10756b6e2954SConrad Meyer 	return (error);
10766b6e2954SConrad Meyer }
10777029da5cSPawel Biernacki SYSCTL_PROC(_kern_shutdown, OID_AUTO, dumpdevname,
107867f508dbSAlexander Motin     CTLTYPE_STRING | CTLFLAG_RD | CTLFLAG_MPSAFE, &dumper_configs, 0,
10797029da5cSPawel Biernacki     dumpdevname_sysctl_handler, "A",
10806b6e2954SConrad Meyer     "Device(s) for kernel dumps");
1081bad7e7f3SAlfred Perlstein 
1082db71383bSMitchell Horne static int _dump_append(struct dumperinfo *di, void *virtual, size_t length);
108364a16434SMark Johnston 
1084480f31c2SKonrad Witaszczyk #ifdef EKCD
1085480f31c2SKonrad Witaszczyk static struct kerneldumpcrypto *
1086480f31c2SKonrad Witaszczyk kerneldumpcrypto_create(size_t blocksize, uint8_t encryption,
1087480f31c2SKonrad Witaszczyk     const uint8_t *key, uint32_t encryptedkeysize, const uint8_t *encryptedkey)
1088480f31c2SKonrad Witaszczyk {
1089480f31c2SKonrad Witaszczyk 	struct kerneldumpcrypto *kdc;
1090480f31c2SKonrad Witaszczyk 	struct kerneldumpkey *kdk;
1091480f31c2SKonrad Witaszczyk 	uint32_t dumpkeysize;
1092480f31c2SKonrad Witaszczyk 
1093480f31c2SKonrad Witaszczyk 	dumpkeysize = roundup2(sizeof(*kdk) + encryptedkeysize, blocksize);
1094480f31c2SKonrad Witaszczyk 	kdc = malloc(sizeof(*kdc) + dumpkeysize, M_EKCD, M_WAITOK | M_ZERO);
1095480f31c2SKonrad Witaszczyk 
1096480f31c2SKonrad Witaszczyk 	arc4rand(kdc->kdc_iv, sizeof(kdc->kdc_iv), 0);
1097480f31c2SKonrad Witaszczyk 
1098480f31c2SKonrad Witaszczyk 	kdc->kdc_encryption = encryption;
1099480f31c2SKonrad Witaszczyk 	switch (kdc->kdc_encryption) {
1100480f31c2SKonrad Witaszczyk 	case KERNELDUMP_ENC_AES_256_CBC:
1101480f31c2SKonrad Witaszczyk 		if (rijndael_makeKey(&kdc->kdc_ki, DIR_ENCRYPT, 256, key) <= 0)
1102480f31c2SKonrad Witaszczyk 			goto failed;
1103480f31c2SKonrad Witaszczyk 		break;
110482985292SConrad Meyer 	case KERNELDUMP_ENC_CHACHA20:
110582985292SConrad Meyer 		chacha_keysetup(&kdc->kdc_chacha, key, 256);
110682985292SConrad Meyer 		break;
1107480f31c2SKonrad Witaszczyk 	default:
1108480f31c2SKonrad Witaszczyk 		goto failed;
1109480f31c2SKonrad Witaszczyk 	}
1110480f31c2SKonrad Witaszczyk 
1111480f31c2SKonrad Witaszczyk 	kdc->kdc_dumpkeysize = dumpkeysize;
1112480f31c2SKonrad Witaszczyk 	kdk = kdc->kdc_dumpkey;
1113480f31c2SKonrad Witaszczyk 	kdk->kdk_encryption = kdc->kdc_encryption;
1114480f31c2SKonrad Witaszczyk 	memcpy(kdk->kdk_iv, kdc->kdc_iv, sizeof(kdk->kdk_iv));
1115480f31c2SKonrad Witaszczyk 	kdk->kdk_encryptedkeysize = htod32(encryptedkeysize);
1116480f31c2SKonrad Witaszczyk 	memcpy(kdk->kdk_encryptedkey, encryptedkey, encryptedkeysize);
1117480f31c2SKonrad Witaszczyk 
1118480f31c2SKonrad Witaszczyk 	return (kdc);
1119480f31c2SKonrad Witaszczyk failed:
11204a711b8dSJohn Baldwin 	zfree(kdc, M_EKCD);
1121480f31c2SKonrad Witaszczyk 	return (NULL);
1122480f31c2SKonrad Witaszczyk }
1123480f31c2SKonrad Witaszczyk 
112450ef60daSMark Johnston static int
1125480f31c2SKonrad Witaszczyk kerneldumpcrypto_init(struct kerneldumpcrypto *kdc)
1126480f31c2SKonrad Witaszczyk {
1127480f31c2SKonrad Witaszczyk 	uint8_t hash[SHA256_DIGEST_LENGTH];
1128480f31c2SKonrad Witaszczyk 	SHA256_CTX ctx;
1129480f31c2SKonrad Witaszczyk 	struct kerneldumpkey *kdk;
1130480f31c2SKonrad Witaszczyk 	int error;
1131480f31c2SKonrad Witaszczyk 
1132480f31c2SKonrad Witaszczyk 	error = 0;
1133480f31c2SKonrad Witaszczyk 
1134480f31c2SKonrad Witaszczyk 	if (kdc == NULL)
1135480f31c2SKonrad Witaszczyk 		return (0);
1136480f31c2SKonrad Witaszczyk 
1137480f31c2SKonrad Witaszczyk 	/*
1138480f31c2SKonrad Witaszczyk 	 * When a user enters ddb it can write a crash dump multiple times.
1139480f31c2SKonrad Witaszczyk 	 * Each time it should be encrypted using a different IV.
1140480f31c2SKonrad Witaszczyk 	 */
1141480f31c2SKonrad Witaszczyk 	SHA256_Init(&ctx);
1142480f31c2SKonrad Witaszczyk 	SHA256_Update(&ctx, kdc->kdc_iv, sizeof(kdc->kdc_iv));
1143480f31c2SKonrad Witaszczyk 	SHA256_Final(hash, &ctx);
1144480f31c2SKonrad Witaszczyk 	bcopy(hash, kdc->kdc_iv, sizeof(kdc->kdc_iv));
1145480f31c2SKonrad Witaszczyk 
1146480f31c2SKonrad Witaszczyk 	switch (kdc->kdc_encryption) {
1147480f31c2SKonrad Witaszczyk 	case KERNELDUMP_ENC_AES_256_CBC:
1148480f31c2SKonrad Witaszczyk 		if (rijndael_cipherInit(&kdc->kdc_ci, MODE_CBC,
1149480f31c2SKonrad Witaszczyk 		    kdc->kdc_iv) <= 0) {
1150480f31c2SKonrad Witaszczyk 			error = EINVAL;
1151480f31c2SKonrad Witaszczyk 			goto out;
1152480f31c2SKonrad Witaszczyk 		}
1153480f31c2SKonrad Witaszczyk 		break;
115482985292SConrad Meyer 	case KERNELDUMP_ENC_CHACHA20:
115582985292SConrad Meyer 		chacha_ivsetup(&kdc->kdc_chacha, kdc->kdc_iv, NULL);
115682985292SConrad Meyer 		break;
1157480f31c2SKonrad Witaszczyk 	default:
1158480f31c2SKonrad Witaszczyk 		error = EINVAL;
1159480f31c2SKonrad Witaszczyk 		goto out;
1160480f31c2SKonrad Witaszczyk 	}
1161480f31c2SKonrad Witaszczyk 
1162480f31c2SKonrad Witaszczyk 	kdk = kdc->kdc_dumpkey;
1163480f31c2SKonrad Witaszczyk 	memcpy(kdk->kdk_iv, kdc->kdc_iv, sizeof(kdk->kdk_iv));
1164480f31c2SKonrad Witaszczyk out:
1165480f31c2SKonrad Witaszczyk 	explicit_bzero(hash, sizeof(hash));
1166480f31c2SKonrad Witaszczyk 	return (error);
1167480f31c2SKonrad Witaszczyk }
1168480f31c2SKonrad Witaszczyk 
116901938d36SMark Johnston static uint32_t
1170480f31c2SKonrad Witaszczyk kerneldumpcrypto_dumpkeysize(const struct kerneldumpcrypto *kdc)
1171480f31c2SKonrad Witaszczyk {
1172480f31c2SKonrad Witaszczyk 
1173480f31c2SKonrad Witaszczyk 	if (kdc == NULL)
1174480f31c2SKonrad Witaszczyk 		return (0);
1175480f31c2SKonrad Witaszczyk 	return (kdc->kdc_dumpkeysize);
1176480f31c2SKonrad Witaszczyk }
117701938d36SMark Johnston #endif /* EKCD */
1178480f31c2SKonrad Witaszczyk 
117978f57a9cSMark Johnston static struct kerneldumpcomp *
118078f57a9cSMark Johnston kerneldumpcomp_create(struct dumperinfo *di, uint8_t compression)
118164a16434SMark Johnston {
118278f57a9cSMark Johnston 	struct kerneldumpcomp *kdcomp;
11836026dcd7SMark Johnston 	int format;
118464a16434SMark Johnston 
11856026dcd7SMark Johnston 	switch (compression) {
11866026dcd7SMark Johnston 	case KERNELDUMP_COMP_GZIP:
11876026dcd7SMark Johnston 		format = COMPRESS_GZIP;
11886026dcd7SMark Johnston 		break;
11896026dcd7SMark Johnston 	case KERNELDUMP_COMP_ZSTD:
11906026dcd7SMark Johnston 		format = COMPRESS_ZSTD;
11916026dcd7SMark Johnston 		break;
11926026dcd7SMark Johnston 	default:
119364a16434SMark Johnston 		return (NULL);
11946026dcd7SMark Johnston 	}
11956026dcd7SMark Johnston 
119678f57a9cSMark Johnston 	kdcomp = malloc(sizeof(*kdcomp), M_DUMPER, M_WAITOK | M_ZERO);
11976026dcd7SMark Johnston 	kdcomp->kdc_format = compression;
119878f57a9cSMark Johnston 	kdcomp->kdc_stream = compressor_init(kerneldumpcomp_write_cb,
11996026dcd7SMark Johnston 	    format, di->maxiosize, kerneldump_gzlevel, di);
120078f57a9cSMark Johnston 	if (kdcomp->kdc_stream == NULL) {
120178f57a9cSMark Johnston 		free(kdcomp, M_DUMPER);
120264a16434SMark Johnston 		return (NULL);
120364a16434SMark Johnston 	}
120478f57a9cSMark Johnston 	kdcomp->kdc_buf = malloc(di->maxiosize, M_DUMPER, M_WAITOK | M_NODUMP);
120578f57a9cSMark Johnston 	return (kdcomp);
120664a16434SMark Johnston }
120764a16434SMark Johnston 
120864a16434SMark Johnston static void
120978f57a9cSMark Johnston kerneldumpcomp_destroy(struct dumperinfo *di)
121064a16434SMark Johnston {
121178f57a9cSMark Johnston 	struct kerneldumpcomp *kdcomp;
121264a16434SMark Johnston 
121378f57a9cSMark Johnston 	kdcomp = di->kdcomp;
121478f57a9cSMark Johnston 	if (kdcomp == NULL)
121564a16434SMark Johnston 		return;
121678f57a9cSMark Johnston 	compressor_fini(kdcomp->kdc_stream);
12174a711b8dSJohn Baldwin 	zfree(kdcomp->kdc_buf, M_DUMPER);
121878f57a9cSMark Johnston 	free(kdcomp, M_DUMPER);
121964a16434SMark Johnston }
122064a16434SMark Johnston 
12216b6e2954SConrad Meyer /*
122259c27ea1SMitchell Horne  * Free a dumper. Must not be present on global list.
12236b6e2954SConrad Meyer  */
122459c27ea1SMitchell Horne void
122559c27ea1SMitchell Horne dumper_destroy(struct dumperinfo *di)
12266b6e2954SConrad Meyer {
12276b6e2954SConrad Meyer 
12286b6e2954SConrad Meyer 	if (di == NULL)
12296b6e2954SConrad Meyer 		return;
12306b6e2954SConrad Meyer 
12314a711b8dSJohn Baldwin 	zfree(di->blockbuf, M_DUMPER);
12326b6e2954SConrad Meyer 	kerneldumpcomp_destroy(di);
12336b6e2954SConrad Meyer #ifdef EKCD
12344a711b8dSJohn Baldwin 	zfree(di->kdcrypto, M_EKCD);
12356b6e2954SConrad Meyer #endif
12364a711b8dSJohn Baldwin 	zfree(di, M_DUMPER);
12376b6e2954SConrad Meyer }
12386b6e2954SConrad Meyer 
123959c27ea1SMitchell Horne /*
124059c27ea1SMitchell Horne  * Allocate and set up a new dumper from the provided template.
124159c27ea1SMitchell Horne  */
124281661c94SPoul-Henning Kamp int
124359c27ea1SMitchell Horne dumper_create(const struct dumperinfo *di_template, const char *devname,
124459c27ea1SMitchell Horne     const struct diocskerneldump_arg *kda, struct dumperinfo **dip)
124581661c94SPoul-Henning Kamp {
124659c27ea1SMitchell Horne 	struct dumperinfo *newdi;
124759c27ea1SMitchell Horne 	int error = 0;
12485ebb15b9SPawel Jakub Dawidek 
124959c27ea1SMitchell Horne 	if (dip == NULL)
125059c27ea1SMitchell Horne 		return (EINVAL);
12516b6e2954SConrad Meyer 
125259c27ea1SMitchell Horne 	/* Allocate a new dumper */
125359c27ea1SMitchell Horne 	newdi = malloc(sizeof(*newdi) + strlen(devname) + 1, M_DUMPER,
125459c27ea1SMitchell Horne 	    M_WAITOK | M_ZERO);
12556b6e2954SConrad Meyer 	memcpy(newdi, di_template, sizeof(*newdi));
12566b6e2954SConrad Meyer 	newdi->blockbuf = NULL;
12576b6e2954SConrad Meyer 	newdi->kdcrypto = NULL;
12586b6e2954SConrad Meyer 	newdi->kdcomp = NULL;
12596b6e2954SConrad Meyer 	strcpy(newdi->di_devname, devname);
1260480f31c2SKonrad Witaszczyk 
12616b6e2954SConrad Meyer 	if (kda->kda_encryption != KERNELDUMP_ENC_NONE) {
1262480f31c2SKonrad Witaszczyk #ifdef EKCD
126359c27ea1SMitchell Horne 		newdi->kdcrypto = kerneldumpcrypto_create(newdi->blocksize,
12646b6e2954SConrad Meyer 		    kda->kda_encryption, kda->kda_key,
12656b6e2954SConrad Meyer 		    kda->kda_encryptedkeysize, kda->kda_encryptedkey);
12666b6e2954SConrad Meyer 		if (newdi->kdcrypto == NULL) {
1267480f31c2SKonrad Witaszczyk 			error = EINVAL;
1268480f31c2SKonrad Witaszczyk 			goto cleanup;
1269480f31c2SKonrad Witaszczyk 		}
1270480f31c2SKonrad Witaszczyk #else
1271480f31c2SKonrad Witaszczyk 		error = EOPNOTSUPP;
1272480f31c2SKonrad Witaszczyk 		goto cleanup;
1273480f31c2SKonrad Witaszczyk #endif
1274480f31c2SKonrad Witaszczyk 	}
12756b6e2954SConrad Meyer 	if (kda->kda_compression != KERNELDUMP_COMP_NONE) {
12767a119578SConrad Meyer #ifdef EKCD
127764a16434SMark Johnston 		/*
127882985292SConrad Meyer 		 * We can't support simultaneous unpadded block cipher
127982985292SConrad Meyer 		 * encryption and compression because there is no guarantee the
128082985292SConrad Meyer 		 * length of the compressed result is exactly a multiple of the
128182985292SConrad Meyer 		 * cipher block size.
128264a16434SMark Johnston 		 */
128382985292SConrad Meyer 		if (kda->kda_encryption == KERNELDUMP_ENC_AES_256_CBC) {
128464a16434SMark Johnston 			error = EOPNOTSUPP;
128564a16434SMark Johnston 			goto cleanup;
128664a16434SMark Johnston 		}
12877a119578SConrad Meyer #endif
12886b6e2954SConrad Meyer 		newdi->kdcomp = kerneldumpcomp_create(newdi,
12896b6e2954SConrad Meyer 		    kda->kda_compression);
12906b6e2954SConrad Meyer 		if (newdi->kdcomp == NULL) {
129164a16434SMark Johnston 			error = EINVAL;
129264a16434SMark Johnston 			goto cleanup;
129364a16434SMark Johnston 		}
129464a16434SMark Johnston 	}
12956b6e2954SConrad Meyer 	newdi->blockbuf = malloc(newdi->blocksize, M_DUMPER, M_WAITOK | M_ZERO);
12966b6e2954SConrad Meyer 
129759c27ea1SMitchell Horne 	*dip = newdi;
129859c27ea1SMitchell Horne 	return (0);
129959c27ea1SMitchell Horne cleanup:
130059c27ea1SMitchell Horne 	dumper_destroy(newdi);
130159c27ea1SMitchell Horne 	return (error);
130259c27ea1SMitchell Horne }
130359c27ea1SMitchell Horne 
130459c27ea1SMitchell Horne /*
130559c27ea1SMitchell Horne  * Create a new dumper and register it in the global list.
130659c27ea1SMitchell Horne  */
130759c27ea1SMitchell Horne int
130859c27ea1SMitchell Horne dumper_insert(const struct dumperinfo *di_template, const char *devname,
130959c27ea1SMitchell Horne     const struct diocskerneldump_arg *kda)
131059c27ea1SMitchell Horne {
131159c27ea1SMitchell Horne 	struct dumperinfo *newdi, *listdi;
131259c27ea1SMitchell Horne 	bool inserted;
131359c27ea1SMitchell Horne 	uint8_t index;
131459c27ea1SMitchell Horne 	int error;
131559c27ea1SMitchell Horne 
131659c27ea1SMitchell Horne 	index = kda->kda_index;
131759c27ea1SMitchell Horne 	MPASS(index != KDA_REMOVE && index != KDA_REMOVE_DEV &&
131859c27ea1SMitchell Horne 	    index != KDA_REMOVE_ALL);
131959c27ea1SMitchell Horne 
132059c27ea1SMitchell Horne 	error = priv_check(curthread, PRIV_SETDUMPER);
132159c27ea1SMitchell Horne 	if (error != 0)
132259c27ea1SMitchell Horne 		return (error);
132359c27ea1SMitchell Horne 
132459c27ea1SMitchell Horne 	error = dumper_create(di_template, devname, kda, &newdi);
132559c27ea1SMitchell Horne 	if (error != 0)
132659c27ea1SMitchell Horne 		return (error);
132759c27ea1SMitchell Horne 
13286b6e2954SConrad Meyer 	/* Add the new configuration to the queue */
13296b6e2954SConrad Meyer 	mtx_lock(&dumpconf_list_lk);
13306b6e2954SConrad Meyer 	inserted = false;
13316b6e2954SConrad Meyer 	TAILQ_FOREACH(listdi, &dumper_configs, di_next) {
13326b6e2954SConrad Meyer 		if (index == 0) {
13336b6e2954SConrad Meyer 			TAILQ_INSERT_BEFORE(listdi, newdi, di_next);
13346b6e2954SConrad Meyer 			inserted = true;
13356b6e2954SConrad Meyer 			break;
13366b6e2954SConrad Meyer 		}
13376b6e2954SConrad Meyer 		index--;
13386b6e2954SConrad Meyer 	}
13396b6e2954SConrad Meyer 	if (!inserted)
13406b6e2954SConrad Meyer 		TAILQ_INSERT_TAIL(&dumper_configs, newdi, di_next);
13416b6e2954SConrad Meyer 	mtx_unlock(&dumpconf_list_lk);
13426b6e2954SConrad Meyer 
134381661c94SPoul-Henning Kamp 	return (0);
1344bd92e6b6SMark Johnston }
1345bd92e6b6SMark Johnston 
1346addccb8cSConrad Meyer #ifdef DDB
1347addccb8cSConrad Meyer void
1348addccb8cSConrad Meyer dumper_ddb_insert(struct dumperinfo *newdi)
1349addccb8cSConrad Meyer {
1350addccb8cSConrad Meyer 	TAILQ_INSERT_HEAD(&dumper_configs, newdi, di_next);
1351addccb8cSConrad Meyer }
1352addccb8cSConrad Meyer 
1353addccb8cSConrad Meyer void
1354addccb8cSConrad Meyer dumper_ddb_remove(struct dumperinfo *di)
1355addccb8cSConrad Meyer {
1356addccb8cSConrad Meyer 	TAILQ_REMOVE(&dumper_configs, di, di_next);
1357addccb8cSConrad Meyer }
1358addccb8cSConrad Meyer #endif
1359addccb8cSConrad Meyer 
13606b6e2954SConrad Meyer static bool
13616b6e2954SConrad Meyer dumper_config_match(const struct dumperinfo *di, const char *devname,
13626b6e2954SConrad Meyer     const struct diocskerneldump_arg *kda)
13636b6e2954SConrad Meyer {
13646b6e2954SConrad Meyer 	if (kda->kda_index == KDA_REMOVE_ALL)
13656b6e2954SConrad Meyer 		return (true);
13666b6e2954SConrad Meyer 
13676b6e2954SConrad Meyer 	if (strcmp(di->di_devname, devname) != 0)
13686b6e2954SConrad Meyer 		return (false);
13696b6e2954SConrad Meyer 
13706b6e2954SConrad Meyer 	/*
13716b6e2954SConrad Meyer 	 * Allow wildcard removal of configs matching a device on g_dev_orphan.
13726b6e2954SConrad Meyer 	 */
13736b6e2954SConrad Meyer 	if (kda->kda_index == KDA_REMOVE_DEV)
13746b6e2954SConrad Meyer 		return (true);
13756b6e2954SConrad Meyer 
13766b6e2954SConrad Meyer 	if (di->kdcomp != NULL) {
13776b6e2954SConrad Meyer 		if (di->kdcomp->kdc_format != kda->kda_compression)
13786b6e2954SConrad Meyer 			return (false);
13796b6e2954SConrad Meyer 	} else if (kda->kda_compression != KERNELDUMP_COMP_NONE)
13806b6e2954SConrad Meyer 		return (false);
13816b6e2954SConrad Meyer #ifdef EKCD
13826b6e2954SConrad Meyer 	if (di->kdcrypto != NULL) {
13836b6e2954SConrad Meyer 		if (di->kdcrypto->kdc_encryption != kda->kda_encryption)
13846b6e2954SConrad Meyer 			return (false);
13856b6e2954SConrad Meyer 		/*
13866b6e2954SConrad Meyer 		 * Do we care to verify keys match to delete?  It seems weird
13876b6e2954SConrad Meyer 		 * to expect multiple fallback dump configurations on the same
13886b6e2954SConrad Meyer 		 * device that only differ in crypto key.
13896b6e2954SConrad Meyer 		 */
13906b6e2954SConrad Meyer 	} else
13916b6e2954SConrad Meyer #endif
13926b6e2954SConrad Meyer 		if (kda->kda_encryption != KERNELDUMP_ENC_NONE)
13936b6e2954SConrad Meyer 			return (false);
13946b6e2954SConrad Meyer 
13956b6e2954SConrad Meyer 	return (true);
13966b6e2954SConrad Meyer }
13976b6e2954SConrad Meyer 
139859c27ea1SMitchell Horne /*
139959c27ea1SMitchell Horne  * Remove and free the requested dumper(s) from the global list.
140059c27ea1SMitchell Horne  */
1401bd92e6b6SMark Johnston int
14026b6e2954SConrad Meyer dumper_remove(const char *devname, const struct diocskerneldump_arg *kda)
1403bd92e6b6SMark Johnston {
14046b6e2954SConrad Meyer 	struct dumperinfo *di, *sdi;
14056b6e2954SConrad Meyer 	bool found;
1406bd92e6b6SMark Johnston 	int error;
1407bd92e6b6SMark Johnston 
14086b6e2954SConrad Meyer 	error = priv_check(curthread, PRIV_SETDUMPER);
1409bd92e6b6SMark Johnston 	if (error != 0)
1410bd92e6b6SMark Johnston 		return (error);
1411bd92e6b6SMark Johnston 
14126b6e2954SConrad Meyer 	/*
14136b6e2954SConrad Meyer 	 * Try to find a matching configuration, and kill it.
14146b6e2954SConrad Meyer 	 *
14156b6e2954SConrad Meyer 	 * NULL 'kda' indicates remove any configuration matching 'devname',
14166b6e2954SConrad Meyer 	 * which may remove multiple configurations in atypical configurations.
14176b6e2954SConrad Meyer 	 */
14186b6e2954SConrad Meyer 	found = false;
14196b6e2954SConrad Meyer 	mtx_lock(&dumpconf_list_lk);
14206b6e2954SConrad Meyer 	TAILQ_FOREACH_SAFE(di, &dumper_configs, di_next, sdi) {
14216b6e2954SConrad Meyer 		if (dumper_config_match(di, devname, kda)) {
14226b6e2954SConrad Meyer 			found = true;
14236b6e2954SConrad Meyer 			TAILQ_REMOVE(&dumper_configs, di, di_next);
142459c27ea1SMitchell Horne 			dumper_destroy(di);
1425480f31c2SKonrad Witaszczyk 		}
1426480f31c2SKonrad Witaszczyk 	}
14276b6e2954SConrad Meyer 	mtx_unlock(&dumpconf_list_lk);
14286b6e2954SConrad Meyer 
14296b6e2954SConrad Meyer 	/* Only produce ENOENT if a more targeted match didn't match. */
14306b6e2954SConrad Meyer 	if (!found && kda->kda_index == KDA_REMOVE)
14316b6e2954SConrad Meyer 		return (ENOENT);
1432bd92e6b6SMark Johnston 	return (0);
143381661c94SPoul-Henning Kamp }
143481661c94SPoul-Henning Kamp 
1435480f31c2SKonrad Witaszczyk static int
1436480f31c2SKonrad Witaszczyk dump_check_bounds(struct dumperinfo *di, off_t offset, size_t length)
1437007b1b7bSRuslan Ermilov {
1438007b1b7bSRuslan Ermilov 
1439bd92e6b6SMark Johnston 	if (di->mediasize > 0 && length != 0 && (offset < di->mediaoffset ||
1440007b1b7bSRuslan Ermilov 	    offset - di->mediaoffset + length > di->mediasize)) {
1441bde3b1e1SMark Johnston 		if (di->kdcomp != NULL && offset >= di->mediaoffset) {
1442bde3b1e1SMark Johnston 			printf(
1443bde3b1e1SMark Johnston 		    "Compressed dump failed to fit in device boundaries.\n");
1444bde3b1e1SMark Johnston 			return (E2BIG);
1445bde3b1e1SMark Johnston 		}
1446bde3b1e1SMark Johnston 
144758379067SAttilio Rao 		printf("Attempt to write outside dump device boundaries.\n"
144858379067SAttilio Rao 	    "offset(%jd), mediaoffset(%jd), length(%ju), mediasize(%jd).\n",
144958379067SAttilio Rao 		    (intmax_t)offset, (intmax_t)di->mediaoffset,
145058379067SAttilio Rao 		    (uintmax_t)length, (intmax_t)di->mediasize);
145158379067SAttilio Rao 		return (ENOSPC);
1452007b1b7bSRuslan Ermilov 	}
145346fcd1afSMark Johnston 	if (length % di->blocksize != 0) {
145446fcd1afSMark Johnston 		printf("Attempt to write partial block of length %ju.\n",
145546fcd1afSMark Johnston 		    (uintmax_t)length);
145646fcd1afSMark Johnston 		return (EINVAL);
145746fcd1afSMark Johnston 	}
145846fcd1afSMark Johnston 	if (offset % di->blocksize != 0) {
145946fcd1afSMark Johnston 		printf("Attempt to write at unaligned offset %jd.\n",
146046fcd1afSMark Johnston 		    (intmax_t)offset);
146146fcd1afSMark Johnston 		return (EINVAL);
1462480f31c2SKonrad Witaszczyk 	}
1463480f31c2SKonrad Witaszczyk 
146446fcd1afSMark Johnston 	return (0);
146501938d36SMark Johnston }
146601938d36SMark Johnston 
1467480f31c2SKonrad Witaszczyk #ifdef EKCD
1468480f31c2SKonrad Witaszczyk static int
1469480f31c2SKonrad Witaszczyk dump_encrypt(struct kerneldumpcrypto *kdc, uint8_t *buf, size_t size)
1470480f31c2SKonrad Witaszczyk {
1471480f31c2SKonrad Witaszczyk 
1472480f31c2SKonrad Witaszczyk 	switch (kdc->kdc_encryption) {
1473480f31c2SKonrad Witaszczyk 	case KERNELDUMP_ENC_AES_256_CBC:
1474480f31c2SKonrad Witaszczyk 		if (rijndael_blockEncrypt(&kdc->kdc_ci, &kdc->kdc_ki, buf,
1475480f31c2SKonrad Witaszczyk 		    8 * size, buf) <= 0) {
1476480f31c2SKonrad Witaszczyk 			return (EIO);
1477480f31c2SKonrad Witaszczyk 		}
1478480f31c2SKonrad Witaszczyk 		if (rijndael_cipherInit(&kdc->kdc_ci, MODE_CBC,
1479480f31c2SKonrad Witaszczyk 		    buf + size - 16 /* IV size for AES-256-CBC */) <= 0) {
1480480f31c2SKonrad Witaszczyk 			return (EIO);
1481480f31c2SKonrad Witaszczyk 		}
1482480f31c2SKonrad Witaszczyk 		break;
148382985292SConrad Meyer 	case KERNELDUMP_ENC_CHACHA20:
148482985292SConrad Meyer 		chacha_encrypt_bytes(&kdc->kdc_chacha, buf, buf, size);
148582985292SConrad Meyer 		break;
1486480f31c2SKonrad Witaszczyk 	default:
1487480f31c2SKonrad Witaszczyk 		return (EINVAL);
1488480f31c2SKonrad Witaszczyk 	}
1489480f31c2SKonrad Witaszczyk 
1490480f31c2SKonrad Witaszczyk 	return (0);
1491480f31c2SKonrad Witaszczyk }
1492480f31c2SKonrad Witaszczyk 
1493480f31c2SKonrad Witaszczyk /* Encrypt data and call dumper. */
1494480f31c2SKonrad Witaszczyk static int
1495db71383bSMitchell Horne dump_encrypted_write(struct dumperinfo *di, void *virtual, off_t offset,
1496db71383bSMitchell Horne     size_t length)
1497480f31c2SKonrad Witaszczyk {
1498480f31c2SKonrad Witaszczyk 	static uint8_t buf[KERNELDUMP_BUFFER_SIZE];
1499480f31c2SKonrad Witaszczyk 	struct kerneldumpcrypto *kdc;
1500480f31c2SKonrad Witaszczyk 	int error;
1501480f31c2SKonrad Witaszczyk 	size_t nbytes;
1502480f31c2SKonrad Witaszczyk 
150378f57a9cSMark Johnston 	kdc = di->kdcrypto;
1504480f31c2SKonrad Witaszczyk 
1505480f31c2SKonrad Witaszczyk 	while (length > 0) {
1506480f31c2SKonrad Witaszczyk 		nbytes = MIN(length, sizeof(buf));
1507480f31c2SKonrad Witaszczyk 		bcopy(virtual, buf, nbytes);
1508480f31c2SKonrad Witaszczyk 
1509480f31c2SKonrad Witaszczyk 		if (dump_encrypt(kdc, buf, nbytes) != 0)
1510480f31c2SKonrad Witaszczyk 			return (EIO);
1511480f31c2SKonrad Witaszczyk 
1512db71383bSMitchell Horne 		error = dump_write(di, buf, offset, nbytes);
1513480f31c2SKonrad Witaszczyk 		if (error != 0)
1514480f31c2SKonrad Witaszczyk 			return (error);
1515480f31c2SKonrad Witaszczyk 
1516480f31c2SKonrad Witaszczyk 		offset += nbytes;
1517480f31c2SKonrad Witaszczyk 		virtual = (void *)((uint8_t *)virtual + nbytes);
1518480f31c2SKonrad Witaszczyk 		length -= nbytes;
1519480f31c2SKonrad Witaszczyk 	}
1520480f31c2SKonrad Witaszczyk 
1521480f31c2SKonrad Witaszczyk 	return (0);
1522480f31c2SKonrad Witaszczyk }
152301938d36SMark Johnston #endif /* EKCD */
1524007b1b7bSRuslan Ermilov 
152564a16434SMark Johnston static int
152678f57a9cSMark Johnston kerneldumpcomp_write_cb(void *base, size_t length, off_t offset, void *arg)
152764a16434SMark Johnston {
152864a16434SMark Johnston 	struct dumperinfo *di;
152964a16434SMark Johnston 	size_t resid, rlength;
153064a16434SMark Johnston 	int error;
153164a16434SMark Johnston 
153264a16434SMark Johnston 	di = arg;
153364a16434SMark Johnston 
153464a16434SMark Johnston 	if (length % di->blocksize != 0) {
153564a16434SMark Johnston 		/*
153664a16434SMark Johnston 		 * This must be the final write after flushing the compression
153764a16434SMark Johnston 		 * stream. Write as many full blocks as possible and stash the
153864a16434SMark Johnston 		 * residual data in the dumper's block buffer. It will be
153964a16434SMark Johnston 		 * padded and written in dump_finish().
154064a16434SMark Johnston 		 */
154164a16434SMark Johnston 		rlength = rounddown(length, di->blocksize);
154264a16434SMark Johnston 		if (rlength != 0) {
1543db71383bSMitchell Horne 			error = _dump_append(di, base, rlength);
154464a16434SMark Johnston 			if (error != 0)
154564a16434SMark Johnston 				return (error);
154664a16434SMark Johnston 		}
154764a16434SMark Johnston 		resid = length - rlength;
154864a16434SMark Johnston 		memmove(di->blockbuf, (uint8_t *)base + rlength, resid);
15496255e8c8SMark Johnston 		bzero((uint8_t *)di->blockbuf + resid, di->blocksize - resid);
155078f57a9cSMark Johnston 		di->kdcomp->kdc_resid = resid;
155164a16434SMark Johnston 		return (EAGAIN);
155264a16434SMark Johnston 	}
1553db71383bSMitchell Horne 	return (_dump_append(di, base, length));
155464a16434SMark Johnston }
155564a16434SMark Johnston 
155664a16434SMark Johnston /*
1557bd92e6b6SMark Johnston  * Write kernel dump headers at the beginning and end of the dump extent.
1558bd92e6b6SMark Johnston  * Write the kernel dump encryption key after the leading header if we were
1559bd92e6b6SMark Johnston  * configured to do so.
156064a16434SMark Johnston  */
1561480f31c2SKonrad Witaszczyk static int
1562bd92e6b6SMark Johnston dump_write_headers(struct dumperinfo *di, struct kerneldumpheader *kdh)
1563480f31c2SKonrad Witaszczyk {
1564bd92e6b6SMark Johnston #ifdef EKCD
1565bd92e6b6SMark Johnston 	struct kerneldumpcrypto *kdc;
1566bd92e6b6SMark Johnston #endif
156713a58148SEric van Gyzen 	void *buf;
1568e9666bf6SMark Johnston 	size_t hdrsz;
1569bd92e6b6SMark Johnston 	uint64_t extent;
1570bd92e6b6SMark Johnston 	uint32_t keysize;
1571bd92e6b6SMark Johnston 	int error;
1572480f31c2SKonrad Witaszczyk 
1573e9666bf6SMark Johnston 	hdrsz = sizeof(*kdh);
1574e9666bf6SMark Johnston 	if (hdrsz > di->blocksize)
1575e9666bf6SMark Johnston 		return (ENOMEM);
1576e9666bf6SMark Johnston 
1577bd92e6b6SMark Johnston #ifdef EKCD
1578bd92e6b6SMark Johnston 	kdc = di->kdcrypto;
1579bd92e6b6SMark Johnston 	keysize = kerneldumpcrypto_dumpkeysize(kdc);
1580bd92e6b6SMark Johnston #else
1581bd92e6b6SMark Johnston 	keysize = 0;
1582bd92e6b6SMark Johnston #endif
1583bd92e6b6SMark Johnston 
1584bd92e6b6SMark Johnston 	/*
1585bd92e6b6SMark Johnston 	 * If the dump device has special handling for headers, let it take care
1586bd92e6b6SMark Johnston 	 * of writing them out.
1587bd92e6b6SMark Johnston 	 */
1588bd92e6b6SMark Johnston 	if (di->dumper_hdr != NULL)
158913a58148SEric van Gyzen 		return (di->dumper_hdr(di, kdh));
1590bd92e6b6SMark Johnston 
1591e9666bf6SMark Johnston 	if (hdrsz == di->blocksize)
1592e9666bf6SMark Johnston 		buf = kdh;
1593e9666bf6SMark Johnston 	else {
1594e9666bf6SMark Johnston 		buf = di->blockbuf;
1595e9666bf6SMark Johnston 		memset(buf, 0, di->blocksize);
1596e9666bf6SMark Johnston 		memcpy(buf, kdh, hdrsz);
1597e9666bf6SMark Johnston 	}
1598e9666bf6SMark Johnston 
1599bd92e6b6SMark Johnston 	extent = dtoh64(kdh->dumpextent);
1600bd92e6b6SMark Johnston #ifdef EKCD
1601bd92e6b6SMark Johnston 	if (kdc != NULL) {
1602db71383bSMitchell Horne 		error = dump_write(di, kdc->kdc_dumpkey,
1603bd92e6b6SMark Johnston 		    di->mediaoffset + di->mediasize - di->blocksize - extent -
1604bd92e6b6SMark Johnston 		    keysize, keysize);
1605bd92e6b6SMark Johnston 		if (error != 0)
1606bd92e6b6SMark Johnston 			return (error);
1607bd92e6b6SMark Johnston 	}
1608bd92e6b6SMark Johnston #endif
1609bd92e6b6SMark Johnston 
1610db71383bSMitchell Horne 	error = dump_write(di, buf,
1611bd92e6b6SMark Johnston 	    di->mediaoffset + di->mediasize - 2 * di->blocksize - extent -
1612bd92e6b6SMark Johnston 	    keysize, di->blocksize);
1613bd92e6b6SMark Johnston 	if (error == 0)
1614db71383bSMitchell Horne 		error = dump_write(di, buf, di->mediaoffset + di->mediasize -
1615bd92e6b6SMark Johnston 		    di->blocksize, di->blocksize);
1616bd92e6b6SMark Johnston 	return (error);
16175dc5dab6SConrad Meyer }
16185dc5dab6SConrad Meyer 
161950ef60daSMark Johnston /*
162050ef60daSMark Johnston  * Don't touch the first SIZEOF_METADATA bytes on the dump device.  This is to
162150ef60daSMark Johnston  * protect us from metadata and metadata from us.
162250ef60daSMark Johnston  */
162350ef60daSMark Johnston #define	SIZEOF_METADATA		(64 * 1024)
162450ef60daSMark Johnston 
162550ef60daSMark Johnston /*
162664a16434SMark Johnston  * Do some preliminary setup for a kernel dump: initialize state for encryption,
162764a16434SMark Johnston  * if requested, and make sure that we have enough space on the dump device.
162864a16434SMark Johnston  *
162964a16434SMark Johnston  * We set things up so that the dump ends before the last sector of the dump
163064a16434SMark Johnston  * device, at which the trailing header is written.
163164a16434SMark Johnston  *
163264a16434SMark Johnston  *     +-----------+------+-----+----------------------------+------+
163364a16434SMark Johnston  *     |           | lhdr | key |    ... kernel dump ...     | thdr |
163464a16434SMark Johnston  *     +-----------+------+-----+----------------------------+------+
163564a16434SMark Johnston  *                   1 blk  opt <------- dump extent --------> 1 blk
163664a16434SMark Johnston  *
163764a16434SMark Johnston  * Dumps written using dump_append() start at the beginning of the extent.
163864a16434SMark Johnston  * Uncompressed dumps will use the entire extent, but compressed dumps typically
163964a16434SMark Johnston  * will not. The true length of the dump is recorded in the leading and trailing
164064a16434SMark Johnston  * headers once the dump has been completed.
1641bd92e6b6SMark Johnston  *
1642bd92e6b6SMark Johnston  * The dump device may provide a callback, in which case it will initialize
1643bd92e6b6SMark Johnston  * dumpoff and take care of laying out the headers.
164450ef60daSMark Johnston  */
164550ef60daSMark Johnston int
164646fcd1afSMark Johnston dump_start(struct dumperinfo *di, struct kerneldumpheader *kdh)
164750ef60daSMark Johnston {
164813a58148SEric van Gyzen #ifdef EKCD
164913a58148SEric van Gyzen 	struct kerneldumpcrypto *kdc;
165013a58148SEric van Gyzen #endif
165113a58148SEric van Gyzen 	void *key;
1652bd92e6b6SMark Johnston 	uint64_t dumpextent, span;
165301938d36SMark Johnston 	uint32_t keysize;
1654bd92e6b6SMark Johnston 	int error;
165550ef60daSMark Johnston 
165601938d36SMark Johnston #ifdef EKCD
165713a58148SEric van Gyzen 	/* Send the key before the dump so a partial dump is still usable. */
165813a58148SEric van Gyzen 	kdc = di->kdcrypto;
165913a58148SEric van Gyzen 	error = kerneldumpcrypto_init(kdc);
166050ef60daSMark Johnston 	if (error != 0)
166150ef60daSMark Johnston 		return (error);
166213a58148SEric van Gyzen 	keysize = kerneldumpcrypto_dumpkeysize(kdc);
166313a58148SEric van Gyzen 	key = keysize > 0 ? kdc->kdc_dumpkey : NULL;
166401938d36SMark Johnston #else
1665bd92e6b6SMark Johnston 	error = 0;
166601938d36SMark Johnston 	keysize = 0;
166713a58148SEric van Gyzen 	key = NULL;
166801938d36SMark Johnston #endif
166950ef60daSMark Johnston 
1670bd92e6b6SMark Johnston 	if (di->dumper_start != NULL) {
167113a58148SEric van Gyzen 		error = di->dumper_start(di, key, keysize);
1672bd92e6b6SMark Johnston 	} else {
167364a16434SMark Johnston 		dumpextent = dtoh64(kdh->dumpextent);
1674bd92e6b6SMark Johnston 		span = SIZEOF_METADATA + dumpextent + 2 * di->blocksize +
1675bd92e6b6SMark Johnston 		    keysize;
1676bd92e6b6SMark Johnston 		if (di->mediasize < span) {
1677bd92e6b6SMark Johnston 			if (di->kdcomp == NULL)
1678bd92e6b6SMark Johnston 				return (E2BIG);
1679bd92e6b6SMark Johnston 
168064a16434SMark Johnston 			/*
168164a16434SMark Johnston 			 * We don't yet know how much space the compressed dump
168264a16434SMark Johnston 			 * will occupy, so try to use the whole swap partition
168364a16434SMark Johnston 			 * (minus the first 64KB) in the hope that the
168464a16434SMark Johnston 			 * compressed dump will fit. If that doesn't turn out to
16856026dcd7SMark Johnston 			 * be enough, the bounds checking in dump_write()
168664a16434SMark Johnston 			 * will catch us and cause the dump to fail.
168764a16434SMark Johnston 			 */
1688bd92e6b6SMark Johnston 			dumpextent = di->mediasize - span + dumpextent;
168964a16434SMark Johnston 			kdh->dumpextent = htod64(dumpextent);
169064a16434SMark Johnston 		}
169164a16434SMark Johnston 
1692bd92e6b6SMark Johnston 		/*
1693bd92e6b6SMark Johnston 		 * The offset at which to begin writing the dump.
1694bd92e6b6SMark Johnston 		 */
169564a16434SMark Johnston 		di->dumpoff = di->mediaoffset + di->mediasize - di->blocksize -
169664a16434SMark Johnston 		    dumpextent;
1697bd92e6b6SMark Johnston 	}
1698bd92e6b6SMark Johnston 	di->origdumpoff = di->dumpoff;
1699bd92e6b6SMark Johnston 	return (error);
170050ef60daSMark Johnston }
170150ef60daSMark Johnston 
170264a16434SMark Johnston static int
1703db71383bSMitchell Horne _dump_append(struct dumperinfo *di, void *virtual, size_t length)
170446fcd1afSMark Johnston {
170546fcd1afSMark Johnston 	int error;
170646fcd1afSMark Johnston 
170746fcd1afSMark Johnston #ifdef EKCD
170878f57a9cSMark Johnston 	if (di->kdcrypto != NULL)
1709db71383bSMitchell Horne 		error = dump_encrypted_write(di, virtual, di->dumpoff, length);
171046fcd1afSMark Johnston 	else
171146fcd1afSMark Johnston #endif
1712db71383bSMitchell Horne 		error = dump_write(di, virtual, di->dumpoff, length);
171346fcd1afSMark Johnston 	if (error == 0)
171446fcd1afSMark Johnston 		di->dumpoff += length;
171546fcd1afSMark Johnston 	return (error);
171646fcd1afSMark Johnston }
171746fcd1afSMark Johnston 
171864a16434SMark Johnston /*
171964a16434SMark Johnston  * Write to the dump device starting at dumpoff. When compression is enabled,
172064a16434SMark Johnston  * writes to the device will be performed using a callback that gets invoked
172164a16434SMark Johnston  * when the compression stream's output buffer is full.
172264a16434SMark Johnston  */
172364a16434SMark Johnston int
1724db71383bSMitchell Horne dump_append(struct dumperinfo *di, void *virtual, size_t length)
172564a16434SMark Johnston {
172664a16434SMark Johnston 	void *buf;
172764a16434SMark Johnston 
172878f57a9cSMark Johnston 	if (di->kdcomp != NULL) {
172978f57a9cSMark Johnston 		/* Bounce through a buffer to avoid CRC errors. */
173064a16434SMark Johnston 		if (length > di->maxiosize)
173164a16434SMark Johnston 			return (EINVAL);
173278f57a9cSMark Johnston 		buf = di->kdcomp->kdc_buf;
173364a16434SMark Johnston 		memmove(buf, virtual, length);
173478f57a9cSMark Johnston 		return (compressor_write(di->kdcomp->kdc_stream, buf, length));
173564a16434SMark Johnston 	}
1736db71383bSMitchell Horne 	return (_dump_append(di, virtual, length));
173764a16434SMark Johnston }
173864a16434SMark Johnston 
173964a16434SMark Johnston /*
174064a16434SMark Johnston  * Write to the dump device at the specified offset.
174164a16434SMark Johnston  */
174246fcd1afSMark Johnston int
1743db71383bSMitchell Horne dump_write(struct dumperinfo *di, void *virtual, off_t offset, size_t length)
174446fcd1afSMark Johnston {
174546fcd1afSMark Johnston 	int error;
174646fcd1afSMark Johnston 
174746fcd1afSMark Johnston 	error = dump_check_bounds(di, offset, length);
174846fcd1afSMark Johnston 	if (error != 0)
174946fcd1afSMark Johnston 		return (error);
1750489ba222SMitchell Horne 	return (di->dumper(di->priv, virtual, offset, length));
175146fcd1afSMark Johnston }
175246fcd1afSMark Johnston 
175350ef60daSMark Johnston /*
175464a16434SMark Johnston  * Perform kernel dump finalization: flush the compression stream, if necessary,
175564a16434SMark Johnston  * write the leading and trailing kernel dump headers now that we know the true
175664a16434SMark Johnston  * length of the dump, and optionally write the encryption key following the
175764a16434SMark Johnston  * leading header.
175850ef60daSMark Johnston  */
175950ef60daSMark Johnston int
176046fcd1afSMark Johnston dump_finish(struct dumperinfo *di, struct kerneldumpheader *kdh)
176150ef60daSMark Johnston {
176250ef60daSMark Johnston 	int error;
176350ef60daSMark Johnston 
176478f57a9cSMark Johnston 	if (di->kdcomp != NULL) {
176578f57a9cSMark Johnston 		error = compressor_flush(di->kdcomp->kdc_stream);
176664a16434SMark Johnston 		if (error == EAGAIN) {
176764a16434SMark Johnston 			/* We have residual data in di->blockbuf. */
1768db71383bSMitchell Horne 			error = _dump_append(di, di->blockbuf, di->blocksize);
17696255e8c8SMark Johnston 			if (error == 0)
17706255e8c8SMark Johnston 				/* Compensate for _dump_append()'s adjustment. */
17716255e8c8SMark Johnston 				di->dumpoff -= di->blocksize - di->kdcomp->kdc_resid;
177278f57a9cSMark Johnston 			di->kdcomp->kdc_resid = 0;
177364a16434SMark Johnston 		}
177464a16434SMark Johnston 		if (error != 0)
177564a16434SMark Johnston 			return (error);
177664a16434SMark Johnston 
177764a16434SMark Johnston 		/*
177864a16434SMark Johnston 		 * We now know the size of the compressed dump, so update the
177964a16434SMark Johnston 		 * header accordingly and recompute parity.
178064a16434SMark Johnston 		 */
1781bd92e6b6SMark Johnston 		kdh->dumplength = htod64(di->dumpoff - di->origdumpoff);
178264a16434SMark Johnston 		kdh->parity = 0;
178364a16434SMark Johnston 		kdh->parity = kerneldump_parity(kdh);
178464a16434SMark Johnston 
178578f57a9cSMark Johnston 		compressor_reset(di->kdcomp->kdc_stream);
178664a16434SMark Johnston 	}
178764a16434SMark Johnston 
1788bd92e6b6SMark Johnston 	error = dump_write_headers(di, kdh);
178950ef60daSMark Johnston 	if (error != 0)
179050ef60daSMark Johnston 		return (error);
179150ef60daSMark Johnston 
1792db71383bSMitchell Horne 	(void)dump_write(di, NULL, 0, 0);
179350ef60daSMark Johnston 	return (0);
179450ef60daSMark Johnston }
179550ef60daSMark Johnston 
1796e6592ee5SPeter Wemm void
179701938d36SMark Johnston dump_init_header(const struct dumperinfo *di, struct kerneldumpheader *kdh,
1798fe20aaecSRyan Libby     const char *magic, uint32_t archver, uint64_t dumplen)
1799e6592ee5SPeter Wemm {
1800ab384d75SMark Johnston 	size_t dstsize;
1801e6592ee5SPeter Wemm 
1802e6592ee5SPeter Wemm 	bzero(kdh, sizeof(*kdh));
18037a9c38e6SAlan Somers 	strlcpy(kdh->magic, magic, sizeof(kdh->magic));
18047a9c38e6SAlan Somers 	strlcpy(kdh->architecture, MACHINE_ARCH, sizeof(kdh->architecture));
1805e6592ee5SPeter Wemm 	kdh->version = htod32(KERNELDUMPVERSION);
1806e6592ee5SPeter Wemm 	kdh->architectureversion = htod32(archver);
1807e6592ee5SPeter Wemm 	kdh->dumplength = htod64(dumplen);
180864a16434SMark Johnston 	kdh->dumpextent = kdh->dumplength;
1809e6592ee5SPeter Wemm 	kdh->dumptime = htod64(time_second);
181001938d36SMark Johnston #ifdef EKCD
181178f57a9cSMark Johnston 	kdh->dumpkeysize = htod32(kerneldumpcrypto_dumpkeysize(di->kdcrypto));
181201938d36SMark Johnston #else
181301938d36SMark Johnston 	kdh->dumpkeysize = 0;
181401938d36SMark Johnston #endif
181501938d36SMark Johnston 	kdh->blocksize = htod32(di->blocksize);
18167a9c38e6SAlan Somers 	strlcpy(kdh->hostname, prison0.pr_hostname, sizeof(kdh->hostname));
1817ab384d75SMark Johnston 	dstsize = sizeof(kdh->versionstring);
1818ab384d75SMark Johnston 	if (strlcpy(kdh->versionstring, version, dstsize) >= dstsize)
1819ab384d75SMark Johnston 		kdh->versionstring[dstsize - 2] = '\n';
1820e6592ee5SPeter Wemm 	if (panicstr != NULL)
18217a9c38e6SAlan Somers 		strlcpy(kdh->panicstring, panicstr, sizeof(kdh->panicstring));
182278f57a9cSMark Johnston 	if (di->kdcomp != NULL)
18236026dcd7SMark Johnston 		kdh->compression = di->kdcomp->kdc_format;
1824e6592ee5SPeter Wemm 	kdh->parity = kerneldump_parity(kdh);
1825e6592ee5SPeter Wemm }
18263af72c11SBjoern A. Zeeb 
18273af72c11SBjoern A. Zeeb #ifdef DDB
1828c84c5e00SMitchell Horne DB_SHOW_COMMAND_FLAGS(panic, db_show_panic, DB_CMD_MEMSAFE)
18293af72c11SBjoern A. Zeeb {
18303af72c11SBjoern A. Zeeb 
18313af72c11SBjoern A. Zeeb 	if (panicstr == NULL)
18323af72c11SBjoern A. Zeeb 		db_printf("panicstr not set\n");
18333af72c11SBjoern A. Zeeb 	else
18343af72c11SBjoern A. Zeeb 		db_printf("panic: %s\n", panicstr);
18353af72c11SBjoern A. Zeeb }
18363af72c11SBjoern A. Zeeb #endif
1837