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kvm.c revision 1.87.10.2
      1  1.87.10.2      matt /*	kvm.c,v 1.87.10.1 2008/01/09 01:36:25 matt Exp	*/
      2       1.42   thorpej 
      3        1.1       cgd /*-
      4       1.35       cgd  * Copyright (c) 1989, 1992, 1993
      5       1.35       cgd  *	The Regents of the University of California.  All rights reserved.
      6       1.35       cgd  *
      7       1.35       cgd  * This code is derived from software developed by the Computer Systems
      8       1.35       cgd  * Engineering group at Lawrence Berkeley Laboratory under DARPA contract
      9       1.35       cgd  * BG 91-66 and contributed to Berkeley.
     10        1.1       cgd  *
     11        1.1       cgd  * Redistribution and use in source and binary forms, with or without
     12        1.1       cgd  * modification, are permitted provided that the following conditions
     13        1.1       cgd  * are met:
     14        1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     15        1.1       cgd  *    notice, this list of conditions and the following disclaimer.
     16        1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     17        1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     18        1.1       cgd  *    documentation and/or other materials provided with the distribution.
     19       1.81       agc  * 3. Neither the name of the University nor the names of its contributors
     20        1.1       cgd  *    may be used to endorse or promote products derived from this software
     21        1.1       cgd  *    without specific prior written permission.
     22        1.1       cgd  *
     23        1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     24        1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     25        1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     26        1.1       cgd  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     27        1.1       cgd  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     28        1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     29        1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     30        1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     31        1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     32        1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     33        1.1       cgd  * SUCH DAMAGE.
     34        1.1       cgd  */
     35        1.1       cgd 
     36       1.53     mikel #include <sys/cdefs.h>
     37        1.1       cgd #if defined(LIBC_SCCS) && !defined(lint)
     38       1.42   thorpej #if 0
     39       1.35       cgd static char sccsid[] = "@(#)kvm.c	8.2 (Berkeley) 2/13/94";
     40       1.42   thorpej #else
     41  1.87.10.2      matt __RCSID("kvm.c,v 1.87.10.1 2008/01/09 01:36:25 matt Exp");
     42       1.42   thorpej #endif
     43        1.1       cgd #endif /* LIBC_SCCS and not lint */
     44        1.1       cgd 
     45        1.1       cgd #include <sys/param.h>
     46        1.1       cgd #include <sys/user.h>
     47       1.79   thorpej #include <sys/lwp.h>
     48        1.1       cgd #include <sys/proc.h>
     49        1.1       cgd #include <sys/ioctl.h>
     50       1.35       cgd #include <sys/stat.h>
     51       1.35       cgd #include <sys/sysctl.h>
     52       1.35       cgd 
     53       1.40       leo #include <sys/core.h>
     54       1.40       leo #include <sys/exec_aout.h>
     55       1.40       leo #include <sys/kcore.h>
     56       1.80     ragge #include <sys/ksyms.h>
     57       1.40       leo 
     58       1.67       mrg #include <uvm/uvm_extern.h>
     59       1.35       cgd 
     60       1.76    atatat #include <machine/cpu.h>
     61       1.76    atatat 
     62       1.35       cgd #include <ctype.h>
     63       1.87      yamt #include <errno.h>
     64        1.1       cgd #include <fcntl.h>
     65        1.1       cgd #include <limits.h>
     66       1.35       cgd #include <nlist.h>
     67        1.1       cgd #include <paths.h>
     68       1.71       wiz #include <stdarg.h>
     69        1.1       cgd #include <stdio.h>
     70       1.35       cgd #include <stdlib.h>
     71        1.1       cgd #include <string.h>
     72       1.35       cgd #include <unistd.h>
     73       1.41       leo #include <kvm.h>
     74        1.1       cgd 
     75       1.35       cgd #include "kvm_private.h"
     76        1.1       cgd 
     77  1.87.10.1      matt static int	_kvm_get_header(kvm_t *);
     78  1.87.10.1      matt static kvm_t	*_kvm_open(kvm_t *, const char *, const char *,
     79  1.87.10.1      matt 		    const char *, int, char *);
     80  1.87.10.1      matt static int	clear_gap(kvm_t *, bool (*)(void *, const void *, size_t),
     81  1.87.10.1      matt 		    void *, size_t);
     82  1.87.10.1      matt static int	open_cloexec(const char *, int, int);
     83  1.87.10.1      matt static off_t	Lseek(kvm_t *, int, off_t, int);
     84  1.87.10.1      matt static ssize_t	Pread(kvm_t *, int, void *, size_t, off_t);
     85       1.19   mycroft 
     86       1.35       cgd char *
     87  1.87.10.1      matt kvm_geterr(kvm_t *kd)
     88       1.35       cgd {
     89       1.35       cgd 	return (kd->errbuf);
     90       1.35       cgd }
     91        1.1       cgd 
     92       1.35       cgd /*
     93       1.35       cgd  * Report an error using printf style arguments.  "program" is kd->program
     94       1.35       cgd  * on hard errors, and 0 on soft errors, so that under sun error emulation,
     95       1.35       cgd  * only hard errors are printed out (otherwise, programs like gdb will
     96       1.35       cgd  * generate tons of error messages when trying to access bogus pointers).
     97       1.35       cgd  */
     98       1.35       cgd void
     99       1.35       cgd _kvm_err(kvm_t *kd, const char *program, const char *fmt, ...)
    100       1.35       cgd {
    101       1.35       cgd 	va_list ap;
    102       1.27      phil 
    103       1.35       cgd 	va_start(ap, fmt);
    104       1.35       cgd 	if (program != NULL) {
    105       1.35       cgd 		(void)fprintf(stderr, "%s: ", program);
    106       1.35       cgd 		(void)vfprintf(stderr, fmt, ap);
    107       1.35       cgd 		(void)fputc('\n', stderr);
    108       1.35       cgd 	} else
    109       1.35       cgd 		(void)vsnprintf(kd->errbuf,
    110       1.60   thorpej 		    sizeof(kd->errbuf), fmt, ap);
    111       1.26        pk 
    112       1.35       cgd 	va_end(ap);
    113       1.35       cgd }
    114       1.26        pk 
    115       1.35       cgd void
    116       1.35       cgd _kvm_syserr(kvm_t *kd, const char *program, const char *fmt, ...)
    117       1.35       cgd {
    118       1.35       cgd 	va_list ap;
    119       1.60   thorpej 	size_t n;
    120       1.26        pk 
    121       1.35       cgd 	va_start(ap, fmt);
    122       1.35       cgd 	if (program != NULL) {
    123       1.35       cgd 		(void)fprintf(stderr, "%s: ", program);
    124       1.35       cgd 		(void)vfprintf(stderr, fmt, ap);
    125       1.35       cgd 		(void)fprintf(stderr, ": %s\n", strerror(errno));
    126       1.35       cgd 	} else {
    127       1.55     perry 		char *cp = kd->errbuf;
    128       1.26        pk 
    129       1.60   thorpej 		(void)vsnprintf(cp, sizeof(kd->errbuf), fmt, ap);
    130       1.35       cgd 		n = strlen(cp);
    131       1.35       cgd 		(void)snprintf(&cp[n], sizeof(kd->errbuf) - n, ": %s",
    132       1.35       cgd 		    strerror(errno));
    133       1.35       cgd 	}
    134       1.35       cgd 	va_end(ap);
    135       1.35       cgd }
    136        1.1       cgd 
    137       1.35       cgd void *
    138  1.87.10.1      matt _kvm_malloc(kvm_t *kd, size_t n)
    139       1.35       cgd {
    140       1.35       cgd 	void *p;
    141       1.35       cgd 
    142       1.35       cgd 	if ((p = malloc(n)) == NULL)
    143       1.68  sommerfe 		_kvm_err(kd, kd->program, "%s", strerror(errno));
    144       1.35       cgd 	return (p);
    145       1.35       cgd }
    146       1.35       cgd 
    147       1.40       leo /*
    148       1.73  christos  * Open a file setting the close on exec bit.
    149       1.73  christos  */
    150       1.73  christos static int
    151  1.87.10.1      matt open_cloexec(const char *fname, int flags, int mode)
    152       1.73  christos {
    153       1.73  christos 	int fd;
    154       1.73  christos 
    155       1.73  christos 	if ((fd = open(fname, flags, mode)) == -1)
    156       1.73  christos 		return fd;
    157       1.77  christos 	if (fcntl(fd, F_SETFD, FD_CLOEXEC) == -1)
    158       1.73  christos 		goto error;
    159       1.73  christos 
    160       1.73  christos 	return fd;
    161       1.73  christos error:
    162       1.73  christos 	flags = errno;
    163       1.73  christos 	(void)close(fd);
    164       1.73  christos 	errno = flags;
    165       1.73  christos 	return -1;
    166       1.73  christos }
    167       1.73  christos 
    168       1.73  christos /*
    169       1.58   thorpej  * Wrapper around the lseek(2) system call; calls _kvm_syserr() for us
    170       1.58   thorpej  * in the event of emergency.
    171       1.40       leo  */
    172       1.40       leo static off_t
    173  1.87.10.1      matt Lseek(kvm_t *kd, int fd, off_t offset, int whence)
    174       1.40       leo {
    175       1.58   thorpej 	off_t off;
    176       1.40       leo 
    177       1.40       leo 	errno = 0;
    178       1.58   thorpej 
    179       1.40       leo 	if ((off = lseek(fd, offset, whence)) == -1 && errno != 0) {
    180       1.40       leo 		_kvm_syserr(kd, kd->program, "Lseek");
    181       1.58   thorpej 		return ((off_t)-1);
    182       1.40       leo 	}
    183       1.40       leo 	return (off);
    184       1.40       leo }
    185       1.40       leo 
    186  1.87.10.2      matt ssize_t
    187  1.87.10.2      matt _kvm_pread(kvm_t *kd, int fd, void *buf, size_t size, off_t off)
    188  1.87.10.2      matt {
    189  1.87.10.2      matt 	ptrdiff_t moff;
    190  1.87.10.2      matt 	void *newbuf;
    191  1.87.10.2      matt 	size_t dsize;
    192  1.87.10.2      matt 	ssize_t rv;
    193  1.87.10.2      matt 	off_t doff;
    194  1.87.10.2      matt 
    195  1.87.10.2      matt 	/* If aligned nothing to do. */
    196  1.87.10.2      matt  	if (((off % kd->fdalign) | (size % kd->fdalign)) == 0) {
    197  1.87.10.2      matt 		return pread(fd, buf, size, off);
    198  1.87.10.2      matt  	}
    199  1.87.10.2      matt 
    200  1.87.10.2      matt 	/*
    201  1.87.10.2      matt 	 * Otherwise must buffer.  We can't tolerate short reads in this
    202  1.87.10.2      matt 	 * case (lazy bum).
    203  1.87.10.2      matt 	 */
    204  1.87.10.2      matt 	moff = (ptrdiff_t)off % kd->fdalign;
    205  1.87.10.2      matt 	doff = off - moff;
    206  1.87.10.2      matt 	dsize = moff + size + kd->fdalign - 1;
    207  1.87.10.2      matt 	dsize -= dsize % kd->fdalign;
    208  1.87.10.2      matt 	if (kd->iobufsz < dsize) {
    209  1.87.10.2      matt 		newbuf = realloc(kd->iobuf, dsize);
    210  1.87.10.2      matt 		if (newbuf == NULL) {
    211  1.87.10.2      matt 			_kvm_syserr(kd, 0, "cannot allocate I/O buffer");
    212  1.87.10.2      matt 			return (-1);
    213  1.87.10.2      matt 		}
    214  1.87.10.2      matt 		kd->iobuf = newbuf;
    215  1.87.10.2      matt 		kd->iobufsz = dsize;
    216  1.87.10.2      matt 	}
    217  1.87.10.2      matt 	rv = pread(fd, kd->iobuf, dsize, doff);
    218  1.87.10.2      matt 	if (rv < dsize)
    219  1.87.10.2      matt 		return -1;
    220  1.87.10.2      matt 	memcpy(buf, kd->iobuf + moff, size);
    221  1.87.10.2      matt 	return size;
    222  1.87.10.2      matt }
    223  1.87.10.2      matt 
    224       1.58   thorpej /*
    225       1.58   thorpej  * Wrapper around the pread(2) system call; calls _kvm_syserr() for us
    226       1.58   thorpej  * in the event of emergency.
    227       1.58   thorpej  */
    228       1.40       leo static ssize_t
    229  1.87.10.1      matt Pread(kvm_t *kd, int fd, void *buf, size_t nbytes, off_t offset)
    230       1.40       leo {
    231       1.58   thorpej 	ssize_t rv;
    232       1.40       leo 
    233       1.40       leo 	errno = 0;
    234       1.40       leo 
    235  1.87.10.2      matt 	if ((rv = _kvm_pread(kd, fd, buf, nbytes, offset)) != nbytes &&
    236       1.58   thorpej 	    errno != 0)
    237       1.58   thorpej 		_kvm_syserr(kd, kd->program, "Pread");
    238       1.40       leo 	return (rv);
    239       1.40       leo }
    240       1.40       leo 
    241       1.35       cgd static kvm_t *
    242  1.87.10.1      matt _kvm_open(kvm_t *kd, const char *uf, const char *mf, const char *sf, int flag,
    243  1.87.10.1      matt     char *errout)
    244       1.35       cgd {
    245       1.35       cgd 	struct stat st;
    246       1.48       cgd 	int ufgiven;
    247       1.35       cgd 
    248       1.37   mycroft 	kd->pmfd = -1;
    249       1.35       cgd 	kd->vmfd = -1;
    250       1.35       cgd 	kd->swfd = -1;
    251       1.35       cgd 	kd->nlfd = -1;
    252       1.65    simonb 	kd->alive = KVM_ALIVE_DEAD;
    253       1.85  christos 	kd->procbase = NULL;
    254       1.85  christos 	kd->procbase_len = 0;
    255       1.85  christos 	kd->procbase2 = NULL;
    256       1.85  christos 	kd->procbase2_len = 0;
    257       1.85  christos 	kd->lwpbase = NULL;
    258       1.85  christos 	kd->lwpbase_len = 0;
    259       1.36   mycroft 	kd->nbpg = getpagesize();
    260       1.85  christos 	kd->swapspc = NULL;
    261       1.85  christos 	kd->argspc = NULL;
    262       1.85  christos 	kd->argspc_len = 0;
    263       1.85  christos 	kd->argbuf = NULL;
    264       1.85  christos 	kd->argv = NULL;
    265       1.85  christos 	kd->vmst = NULL;
    266       1.85  christos 	kd->vm_page_buckets = NULL;
    267       1.85  christos 	kd->kcore_hdr = NULL;
    268       1.43       gwr 	kd->cpu_dsize = 0;
    269       1.85  christos 	kd->cpu_data = NULL;
    270       1.40       leo 	kd->dump_off = 0;
    271  1.87.10.2      matt 	kd->fdalign = 1;
    272  1.87.10.2      matt 	kd->iobuf = NULL;
    273  1.87.10.2      matt 	kd->iobufsz = 0;
    274       1.52       gwr 
    275       1.65    simonb 	if (flag & KVM_NO_FILES) {
    276       1.65    simonb 		kd->alive = KVM_ALIVE_SYSCTL;
    277       1.65    simonb 		return(kd);
    278       1.65    simonb 	}
    279       1.65    simonb 
    280       1.52       gwr 	/*
    281       1.52       gwr 	 * Call the MD open hook.  This sets:
    282       1.52       gwr 	 *	usrstack, min_uva, max_uva
    283       1.52       gwr 	 */
    284       1.52       gwr 	if (_kvm_mdopen(kd)) {
    285       1.52       gwr 		_kvm_err(kd, kd->program, "md init failed");
    286       1.52       gwr 		goto failed;
    287       1.52       gwr 	}
    288       1.35       cgd 
    289       1.48       cgd 	ufgiven = (uf != NULL);
    290       1.76    atatat 	if (!ufgiven) {
    291       1.76    atatat #ifdef CPU_BOOTED_KERNEL
    292       1.76    atatat 		/* 130 is 128 + '/' + '\0' */
    293       1.76    atatat 		static char booted_kernel[130];
    294       1.76    atatat 		int mib[2], rc;
    295       1.76    atatat 		size_t len;
    296       1.76    atatat 
    297       1.76    atatat 		mib[0] = CTL_MACHDEP;
    298       1.76    atatat 		mib[1] = CPU_BOOTED_KERNEL;
    299       1.76    atatat 		booted_kernel[0] = '/';
    300       1.76    atatat 		booted_kernel[1] = '\0';
    301       1.76    atatat 		len = sizeof(booted_kernel) - 2;
    302       1.76    atatat 		rc = sysctl(&mib[0], 2, &booted_kernel[1], &len, NULL, 0);
    303       1.76    atatat 		booted_kernel[sizeof(booted_kernel) - 1] = '\0';
    304       1.76    atatat 		uf = (booted_kernel[1] == '/') ?
    305       1.76    atatat 		    &booted_kernel[1] : &booted_kernel[0];
    306       1.76    atatat 		if (rc != -1)
    307       1.76    atatat 			rc = stat(uf, &st);
    308       1.76    atatat 		if (rc != -1 && !S_ISREG(st.st_mode))
    309       1.76    atatat 			rc = -1;
    310       1.76    atatat 		if (rc == -1)
    311       1.76    atatat #endif /* CPU_BOOTED_KERNEL */
    312       1.76    atatat 			uf = _PATH_UNIX;
    313       1.76    atatat 	}
    314       1.35       cgd 	else if (strlen(uf) >= MAXPATHLEN) {
    315       1.35       cgd 		_kvm_err(kd, kd->program, "exec file name too long");
    316        1.1       cgd 		goto failed;
    317        1.1       cgd 	}
    318       1.35       cgd 	if (flag & ~O_RDWR) {
    319       1.35       cgd 		_kvm_err(kd, kd->program, "bad flags arg");
    320        1.1       cgd 		goto failed;
    321        1.1       cgd 	}
    322       1.35       cgd 	if (mf == 0)
    323       1.35       cgd 		mf = _PATH_MEM;
    324       1.35       cgd 	if (sf == 0)
    325       1.35       cgd 		sf = _PATH_DRUM;
    326       1.35       cgd 
    327       1.73  christos 	if ((kd->pmfd = open_cloexec(mf, flag, 0)) < 0) {
    328       1.35       cgd 		_kvm_syserr(kd, kd->program, "%s", mf);
    329       1.35       cgd 		goto failed;
    330        1.1       cgd 	}
    331       1.35       cgd 	if (fstat(kd->pmfd, &st) < 0) {
    332       1.35       cgd 		_kvm_syserr(kd, kd->program, "%s", mf);
    333        1.1       cgd 		goto failed;
    334        1.1       cgd 	}
    335  1.87.10.2      matt 	if (S_ISCHR(st.st_mode) && strcmp(mf, _PATH_MEM) == 0) {
    336        1.1       cgd 		/*
    337  1.87.10.2      matt 		 * If this is /dev/mem, open kmem too.  (Maybe we should
    338       1.35       cgd 		 * make it work for either /dev/mem or /dev/kmem -- in either
    339       1.35       cgd 		 * case you're working with a live kernel.)
    340        1.1       cgd 		 */
    341       1.73  christos 		if ((kd->vmfd = open_cloexec(_PATH_KMEM, flag, 0)) < 0) {
    342       1.35       cgd 			_kvm_syserr(kd, kd->program, "%s", _PATH_KMEM);
    343       1.35       cgd 			goto failed;
    344        1.1       cgd 		}
    345       1.65    simonb 		kd->alive = KVM_ALIVE_FILES;
    346       1.73  christos 		if ((kd->swfd = open_cloexec(sf, flag, 0)) < 0) {
    347       1.84      yamt 			if (errno != ENXIO) {
    348       1.84      yamt 				_kvm_syserr(kd, kd->program, "%s", sf);
    349       1.84      yamt 				goto failed;
    350       1.84      yamt 			}
    351       1.84      yamt 			/* swap is not configured?  not fatal */
    352        1.1       cgd 		}
    353        1.1       cgd 		/*
    354       1.80     ragge 		 * Open the kernel namelist.  If /dev/ksyms doesn't
    355       1.80     ragge 		 * exist, open the current kernel.
    356        1.1       cgd 		 */
    357       1.80     ragge 		if (ufgiven == 0)
    358       1.80     ragge 			kd->nlfd = open_cloexec(_PATH_KSYMS, O_RDONLY, 0);
    359       1.80     ragge 		if (kd->nlfd < 0) {
    360       1.80     ragge 			if ((kd->nlfd = open_cloexec(uf, O_RDONLY, 0)) < 0) {
    361       1.80     ragge 				_kvm_syserr(kd, kd->program, "%s", uf);
    362       1.80     ragge 				goto failed;
    363       1.80     ragge 			}
    364       1.82      cube 		} else {
    365       1.82      cube 			/*
    366       1.82      cube 			 * We're here because /dev/ksyms was opened
    367       1.82      cube 			 * successfully.  However, we don't want to keep it
    368       1.82      cube 			 * open, so we close it now.  Later, we will open
    369       1.82      cube 			 * it again, since it will be the only case where
    370       1.82      cube 			 * kd->nlfd is negative.
    371       1.82      cube 			 */
    372       1.82      cube 			close(kd->nlfd);
    373       1.82      cube 			kd->nlfd = -1;
    374        1.3       cgd 		}
    375       1.35       cgd 	} else {
    376  1.87.10.2      matt 		kd->fdalign = DEV_BSIZE;	/* XXX */
    377        1.3       cgd 		/*
    378       1.35       cgd 		 * This is a crash dump.
    379       1.70       wiz 		 * Initialize the virtual address translation machinery,
    380       1.35       cgd 		 * but first setup the namelist fd.
    381        1.3       cgd 		 */
    382       1.73  christos 		if ((kd->nlfd = open_cloexec(uf, O_RDONLY, 0)) < 0) {
    383       1.35       cgd 			_kvm_syserr(kd, kd->program, "%s", uf);
    384       1.35       cgd 			goto failed;
    385        1.3       cgd 		}
    386       1.40       leo 
    387       1.40       leo 		/*
    388       1.40       leo 		 * If there is no valid core header, fail silently here.
    389       1.64    simonb 		 * The address translations however will fail without
    390       1.40       leo 		 * header. Things can be made to run by calling
    391       1.40       leo 		 * kvm_dump_mkheader() before doing any translation.
    392       1.40       leo 		 */
    393       1.40       leo 		if (_kvm_get_header(kd) == 0) {
    394       1.40       leo 			if (_kvm_initvtop(kd) < 0)
    395       1.40       leo 				goto failed;
    396       1.40       leo 		}
    397        1.3       cgd 	}
    398       1.35       cgd 	return (kd);
    399       1.35       cgd failed:
    400        1.1       cgd 	/*
    401       1.35       cgd 	 * Copy out the error if doing sane error semantics.
    402        1.1       cgd 	 */
    403       1.35       cgd 	if (errout != 0)
    404       1.78    itojun 		(void)strlcpy(errout, kd->errbuf, _POSIX2_LINE_MAX);
    405       1.35       cgd 	(void)kvm_close(kd);
    406       1.35       cgd 	return (0);
    407        1.1       cgd }
    408        1.1       cgd 
    409       1.43       gwr /*
    410       1.43       gwr  * The kernel dump file (from savecore) contains:
    411       1.43       gwr  *    kcore_hdr_t kcore_hdr;
    412       1.43       gwr  *    kcore_seg_t cpu_hdr;
    413       1.43       gwr  *    (opaque)    cpu_data; (size is cpu_hdr.c_size)
    414       1.43       gwr  *	  kcore_seg_t mem_hdr;
    415       1.43       gwr  *    (memory)    mem_data; (size is mem_hdr.c_size)
    416       1.64    simonb  *
    417       1.43       gwr  * Note: khdr is padded to khdr.c_hdrsize;
    418       1.43       gwr  * cpu_hdr and mem_hdr are padded to khdr.c_seghdrsize
    419       1.43       gwr  */
    420       1.40       leo static int
    421  1.87.10.1      matt _kvm_get_header(kvm_t *kd)
    422       1.40       leo {
    423       1.43       gwr 	kcore_hdr_t	kcore_hdr;
    424       1.43       gwr 	kcore_seg_t	cpu_hdr;
    425       1.43       gwr 	kcore_seg_t	mem_hdr;
    426       1.43       gwr 	size_t		offset;
    427       1.43       gwr 	ssize_t		sz;
    428       1.40       leo 
    429       1.43       gwr 	/*
    430       1.43       gwr 	 * Read the kcore_hdr_t
    431       1.43       gwr 	 */
    432       1.58   thorpej 	sz = Pread(kd, kd->pmfd, &kcore_hdr, sizeof(kcore_hdr), (off_t)0);
    433       1.43       gwr 	if (sz != sizeof(kcore_hdr))
    434       1.40       leo 		return (-1);
    435       1.40       leo 
    436       1.40       leo 	/*
    437       1.40       leo 	 * Currently, we only support dump-files made by the current
    438       1.40       leo 	 * architecture...
    439       1.40       leo 	 */
    440       1.43       gwr 	if ((CORE_GETMAGIC(kcore_hdr) != KCORE_MAGIC) ||
    441       1.43       gwr 	    (CORE_GETMID(kcore_hdr) != MID_MACHINE))
    442       1.43       gwr 		return (-1);
    443       1.40       leo 
    444       1.40       leo 	/*
    445       1.40       leo 	 * Currently, we only support exactly 2 segments: cpu-segment
    446       1.40       leo 	 * and data-segment in exactly that order.
    447       1.40       leo 	 */
    448       1.43       gwr 	if (kcore_hdr.c_nseg != 2)
    449       1.40       leo 		return (-1);
    450       1.40       leo 
    451       1.40       leo 	/*
    452       1.43       gwr 	 * Save away the kcore_hdr.  All errors after this
    453       1.43       gwr 	 * should do a to "goto fail" to deallocate things.
    454       1.43       gwr 	 */
    455       1.43       gwr 	kd->kcore_hdr = _kvm_malloc(kd, sizeof(kcore_hdr));
    456       1.43       gwr 	memcpy(kd->kcore_hdr, &kcore_hdr, sizeof(kcore_hdr));
    457       1.43       gwr 	offset = kcore_hdr.c_hdrsize;
    458       1.43       gwr 
    459       1.43       gwr 	/*
    460       1.43       gwr 	 * Read the CPU segment header
    461       1.40       leo 	 */
    462       1.58   thorpej 	sz = Pread(kd, kd->pmfd, &cpu_hdr, sizeof(cpu_hdr), (off_t)offset);
    463       1.43       gwr 	if (sz != sizeof(cpu_hdr))
    464       1.43       gwr 		goto fail;
    465       1.43       gwr 	if ((CORE_GETMAGIC(cpu_hdr) != KCORESEG_MAGIC) ||
    466       1.43       gwr 	    (CORE_GETFLAG(cpu_hdr) != CORE_CPU))
    467       1.43       gwr 		goto fail;
    468       1.43       gwr 	offset += kcore_hdr.c_seghdrsize;
    469       1.43       gwr 
    470       1.43       gwr 	/*
    471       1.43       gwr 	 * Read the CPU segment DATA.
    472       1.43       gwr 	 */
    473       1.43       gwr 	kd->cpu_dsize = cpu_hdr.c_size;
    474       1.43       gwr 	kd->cpu_data = _kvm_malloc(kd, cpu_hdr.c_size);
    475       1.43       gwr 	if (kd->cpu_data == NULL)
    476       1.43       gwr 		goto fail;
    477       1.58   thorpej 	sz = Pread(kd, kd->pmfd, kd->cpu_data, cpu_hdr.c_size, (off_t)offset);
    478       1.43       gwr 	if (sz != cpu_hdr.c_size)
    479       1.43       gwr 		goto fail;
    480       1.43       gwr 	offset += cpu_hdr.c_size;
    481       1.40       leo 
    482       1.40       leo 	/*
    483       1.40       leo 	 * Read the next segment header: data segment
    484       1.40       leo 	 */
    485       1.58   thorpej 	sz = Pread(kd, kd->pmfd, &mem_hdr, sizeof(mem_hdr), (off_t)offset);
    486       1.43       gwr 	if (sz != sizeof(mem_hdr))
    487       1.43       gwr 		goto fail;
    488       1.43       gwr 	offset += kcore_hdr.c_seghdrsize;
    489       1.43       gwr 
    490       1.43       gwr 	if ((CORE_GETMAGIC(mem_hdr) != KCORESEG_MAGIC) ||
    491       1.43       gwr 	    (CORE_GETFLAG(mem_hdr) != CORE_DATA))
    492       1.43       gwr 		goto fail;
    493       1.40       leo 
    494       1.43       gwr 	kd->dump_off = offset;
    495       1.43       gwr 	return (0);
    496       1.40       leo 
    497       1.43       gwr fail:
    498       1.43       gwr 	if (kd->kcore_hdr != NULL) {
    499       1.43       gwr 		free(kd->kcore_hdr);
    500       1.40       leo 		kd->kcore_hdr = NULL;
    501       1.43       gwr 	}
    502       1.43       gwr 	if (kd->cpu_data != NULL) {
    503       1.43       gwr 		free(kd->cpu_data);
    504       1.43       gwr 		kd->cpu_data = NULL;
    505       1.43       gwr 		kd->cpu_dsize = 0;
    506       1.40       leo 	}
    507       1.54       mrg 	return (-1);
    508       1.40       leo }
    509       1.40       leo 
    510       1.40       leo /*
    511       1.43       gwr  * The format while on the dump device is: (new format)
    512       1.47       cgd  *	kcore_seg_t cpu_hdr;
    513       1.47       cgd  *	(opaque)    cpu_data; (size is cpu_hdr.c_size)
    514       1.47       cgd  *	kcore_seg_t mem_hdr;
    515       1.47       cgd  *	(memory)    mem_data; (size is mem_hdr.c_size)
    516       1.40       leo  */
    517       1.40       leo int
    518  1.87.10.1      matt kvm_dump_mkheader(kvm_t *kd, off_t dump_off)
    519       1.40       leo {
    520       1.43       gwr 	kcore_seg_t	cpu_hdr;
    521       1.60   thorpej 	size_t hdr_size;
    522       1.60   thorpej 	ssize_t sz;
    523       1.40       leo 
    524       1.41       leo 	if (kd->kcore_hdr != NULL) {
    525       1.41       leo 	    _kvm_err(kd, kd->program, "already has a dump header");
    526       1.40       leo 	    return (-1);
    527       1.40       leo 	}
    528       1.41       leo 	if (ISALIVE(kd)) {
    529       1.41       leo 		_kvm_err(kd, kd->program, "don't use on live kernel");
    530       1.40       leo 		return (-1);
    531       1.40       leo 	}
    532       1.40       leo 
    533       1.40       leo 	/*
    534       1.43       gwr 	 * Validate new format crash dump
    535       1.40       leo 	 */
    536       1.58   thorpej 	sz = Pread(kd, kd->pmfd, &cpu_hdr, sizeof(cpu_hdr), dump_off);
    537       1.43       gwr 	if (sz != sizeof(cpu_hdr))
    538       1.43       gwr 		return (-1);
    539       1.44       leo 	if ((CORE_GETMAGIC(cpu_hdr) != KCORE_MAGIC)
    540       1.44       leo 		|| (CORE_GETMID(cpu_hdr) != MID_MACHINE)) {
    541       1.44       leo 		_kvm_err(kd, 0, "invalid magic in cpu_hdr");
    542       1.45       leo 		return (0);
    543       1.44       leo 	}
    544       1.43       gwr 	hdr_size = ALIGN(sizeof(cpu_hdr));
    545       1.43       gwr 
    546       1.43       gwr 	/*
    547       1.43       gwr 	 * Read the CPU segment.
    548       1.43       gwr 	 */
    549       1.43       gwr 	kd->cpu_dsize = cpu_hdr.c_size;
    550       1.43       gwr 	kd->cpu_data = _kvm_malloc(kd, kd->cpu_dsize);
    551       1.43       gwr 	if (kd->cpu_data == NULL)
    552       1.43       gwr 		goto fail;
    553       1.58   thorpej 	sz = Pread(kd, kd->pmfd, kd->cpu_data, cpu_hdr.c_size,
    554       1.58   thorpej 	    dump_off + hdr_size);
    555       1.43       gwr 	if (sz != cpu_hdr.c_size)
    556       1.43       gwr 		goto fail;
    557       1.43       gwr 	hdr_size += kd->cpu_dsize;
    558       1.43       gwr 
    559       1.43       gwr 	/*
    560       1.43       gwr 	 * Leave phys mem pointer at beginning of memory data
    561       1.43       gwr 	 */
    562       1.43       gwr 	kd->dump_off = dump_off + hdr_size;
    563       1.43       gwr 	if (Lseek(kd, kd->pmfd, kd->dump_off, SEEK_SET) == -1)
    564       1.43       gwr 		goto fail;
    565       1.40       leo 
    566       1.40       leo 	/*
    567       1.40       leo 	 * Create a kcore_hdr.
    568       1.40       leo 	 */
    569       1.43       gwr 	kd->kcore_hdr = _kvm_malloc(kd, sizeof(kcore_hdr_t));
    570       1.43       gwr 	if (kd->kcore_hdr == NULL)
    571       1.43       gwr 		goto fail;
    572       1.40       leo 
    573       1.41       leo 	kd->kcore_hdr->c_hdrsize    = ALIGN(sizeof(kcore_hdr_t));
    574       1.41       leo 	kd->kcore_hdr->c_seghdrsize = ALIGN(sizeof(kcore_seg_t));
    575       1.41       leo 	kd->kcore_hdr->c_nseg       = 2;
    576       1.41       leo 	CORE_SETMAGIC(*(kd->kcore_hdr), KCORE_MAGIC, MID_MACHINE,0);
    577       1.40       leo 
    578       1.40       leo 	/*
    579       1.40       leo 	 * Now that we have a valid header, enable translations.
    580       1.40       leo 	 */
    581       1.49        pk 	if (_kvm_initvtop(kd) == 0)
    582       1.49        pk 		/* Success */
    583       1.49        pk 		return (hdr_size);
    584       1.43       gwr 
    585       1.43       gwr fail:
    586       1.43       gwr 	if (kd->kcore_hdr != NULL) {
    587       1.43       gwr 		free(kd->kcore_hdr);
    588       1.43       gwr 		kd->kcore_hdr = NULL;
    589       1.43       gwr 	}
    590       1.43       gwr 	if (kd->cpu_data != NULL) {
    591       1.43       gwr 		free(kd->cpu_data);
    592       1.43       gwr 		kd->cpu_data = NULL;
    593       1.43       gwr 		kd->cpu_dsize = 0;
    594       1.43       gwr 	}
    595       1.43       gwr 	return (-1);
    596       1.40       leo }
    597       1.40       leo 
    598       1.40       leo static int
    599  1.87.10.1      matt clear_gap(kvm_t *kd, bool (*write_buf)(void *, const void *, size_t),
    600  1.87.10.1      matt     void *cookie, size_t size)
    601       1.40       leo {
    602  1.87.10.1      matt 	char buf[1024];
    603  1.87.10.1      matt 	size_t len;
    604  1.87.10.1      matt 
    605  1.87.10.1      matt 	(void)memset(buf, 0, size > sizeof(buf) ? sizeof(buf) : size);
    606  1.87.10.1      matt 
    607  1.87.10.1      matt 	while (size > 0) {
    608  1.87.10.1      matt 		len = size > sizeof(buf) ? sizeof(buf) : size;
    609  1.87.10.1      matt 		if (!(*write_buf)(cookie, buf, len)) {
    610       1.40       leo 			_kvm_syserr(kd, kd->program, "clear_gap");
    611  1.87.10.1      matt 			return -1;
    612       1.40       leo 		}
    613  1.87.10.1      matt 		size -= len;
    614  1.87.10.1      matt 	}
    615  1.87.10.1      matt 
    616  1.87.10.1      matt 	return 0;
    617       1.40       leo }
    618       1.40       leo 
    619       1.40       leo /*
    620  1.87.10.1      matt  * Write the dump header by calling write_buf with cookie as first argument.
    621       1.40       leo  */
    622       1.40       leo int
    623  1.87.10.1      matt kvm_dump_header(kvm_t *kd, bool (*write_buf)(void *, const void *, size_t),
    624  1.87.10.1      matt     void *cookie, int dumpsize)
    625       1.40       leo {
    626       1.40       leo 	kcore_seg_t	seghdr;
    627       1.40       leo 	long		offset;
    628  1.87.10.1      matt 	size_t		gap;
    629       1.40       leo 
    630       1.43       gwr 	if (kd->kcore_hdr == NULL || kd->cpu_data == NULL) {
    631       1.40       leo 		_kvm_err(kd, kd->program, "no valid dump header(s)");
    632       1.40       leo 		return (-1);
    633       1.40       leo 	}
    634       1.40       leo 
    635       1.40       leo 	/*
    636       1.40       leo 	 * Write the generic header
    637       1.40       leo 	 */
    638       1.40       leo 	offset = 0;
    639  1.87.10.1      matt 	if (!(*write_buf)(cookie, kd->kcore_hdr, sizeof(kcore_hdr_t))) {
    640  1.87.10.1      matt 		_kvm_syserr(kd, kd->program, "kvm_dump_header");
    641       1.40       leo 		return (-1);
    642       1.40       leo 	}
    643       1.40       leo 	offset += kd->kcore_hdr->c_hdrsize;
    644       1.40       leo 	gap     = kd->kcore_hdr->c_hdrsize - sizeof(kcore_hdr_t);
    645  1.87.10.1      matt 	if (clear_gap(kd, write_buf, cookie, gap) == -1)
    646       1.40       leo 		return (-1);
    647       1.40       leo 
    648       1.40       leo 	/*
    649       1.83       wiz 	 * Write the CPU header
    650       1.40       leo 	 */
    651       1.40       leo 	CORE_SETMAGIC(seghdr, KCORESEG_MAGIC, 0, CORE_CPU);
    652       1.43       gwr 	seghdr.c_size = ALIGN(kd->cpu_dsize);
    653  1.87.10.1      matt 	if (!(*write_buf)(cookie, &seghdr, sizeof(seghdr))) {
    654  1.87.10.1      matt 		_kvm_syserr(kd, kd->program, "kvm_dump_header");
    655       1.40       leo 		return (-1);
    656       1.40       leo 	}
    657       1.40       leo 	offset += kd->kcore_hdr->c_seghdrsize;
    658       1.40       leo 	gap     = kd->kcore_hdr->c_seghdrsize - sizeof(seghdr);
    659  1.87.10.1      matt 	if (clear_gap(kd, write_buf, cookie, gap) == -1)
    660       1.40       leo 		return (-1);
    661       1.40       leo 
    662  1.87.10.1      matt 	if (!(*write_buf)(cookie, kd->cpu_data, kd->cpu_dsize)) {
    663  1.87.10.1      matt 		_kvm_syserr(kd, kd->program, "kvm_dump_header");
    664       1.40       leo 		return (-1);
    665       1.40       leo 	}
    666       1.40       leo 	offset += seghdr.c_size;
    667       1.43       gwr 	gap     = seghdr.c_size - kd->cpu_dsize;
    668  1.87.10.1      matt 	if (clear_gap(kd, write_buf, cookie, gap) == -1)
    669       1.40       leo 		return (-1);
    670       1.40       leo 
    671       1.40       leo 	/*
    672       1.40       leo 	 * Write the actual dump data segment header
    673       1.40       leo 	 */
    674       1.40       leo 	CORE_SETMAGIC(seghdr, KCORESEG_MAGIC, 0, CORE_DATA);
    675       1.40       leo 	seghdr.c_size = dumpsize;
    676  1.87.10.1      matt 	if (!(*write_buf)(cookie, &seghdr, sizeof(seghdr))) {
    677  1.87.10.1      matt 		_kvm_syserr(kd, kd->program, "kvm_dump_header");
    678       1.40       leo 		return (-1);
    679       1.40       leo 	}
    680       1.40       leo 	offset += kd->kcore_hdr->c_seghdrsize;
    681       1.40       leo 	gap     = kd->kcore_hdr->c_seghdrsize - sizeof(seghdr);
    682  1.87.10.1      matt 	if (clear_gap(kd, write_buf, cookie, gap) == -1)
    683       1.40       leo 		return (-1);
    684       1.40       leo 
    685       1.62  christos 	return (int)offset;
    686       1.40       leo }
    687       1.40       leo 
    688  1.87.10.1      matt static bool
    689  1.87.10.1      matt kvm_dump_header_stdio(void *cookie, const void *buf, size_t len)
    690  1.87.10.1      matt {
    691  1.87.10.1      matt 	return fwrite(buf, len, 1, (FILE *)cookie) == 1;
    692  1.87.10.1      matt }
    693  1.87.10.1      matt 
    694  1.87.10.1      matt int
    695  1.87.10.1      matt kvm_dump_wrtheader(kvm_t *kd, FILE *fp, int dumpsize)
    696  1.87.10.1      matt {
    697  1.87.10.1      matt 	return kvm_dump_header(kd, kvm_dump_header_stdio, fp, dumpsize);
    698  1.87.10.1      matt }
    699  1.87.10.1      matt 
    700       1.35       cgd kvm_t *
    701  1.87.10.1      matt kvm_openfiles(const char *uf, const char *mf, const char *sf,
    702  1.87.10.1      matt     int flag, char *errout)
    703       1.35       cgd {
    704       1.55     perry 	kvm_t *kd;
    705       1.35       cgd 
    706       1.35       cgd 	if ((kd = malloc(sizeof(*kd))) == NULL) {
    707       1.78    itojun 		(void)strlcpy(errout, strerror(errno), _POSIX2_LINE_MAX);
    708       1.35       cgd 		return (0);
    709       1.35       cgd 	}
    710       1.35       cgd 	kd->program = 0;
    711       1.35       cgd 	return (_kvm_open(kd, uf, mf, sf, flag, errout));
    712       1.35       cgd }
    713       1.35       cgd 
    714       1.35       cgd kvm_t *
    715  1.87.10.1      matt kvm_open(const char *uf, const char *mf, const char *sf, int flag,
    716  1.87.10.1      matt     const char *program)
    717       1.35       cgd {
    718       1.55     perry 	kvm_t *kd;
    719       1.35       cgd 
    720       1.86  christos 	if ((kd = malloc(sizeof(*kd))) == NULL) {
    721       1.86  christos 		(void)fprintf(stderr, "%s: %s\n",
    722       1.86  christos 		    program ? program : getprogname(), strerror(errno));
    723       1.35       cgd 		return (0);
    724       1.19   mycroft 	}
    725       1.35       cgd 	kd->program = program;
    726       1.35       cgd 	return (_kvm_open(kd, uf, mf, sf, flag, NULL));
    727        1.8       cgd }
    728        1.8       cgd 
    729        1.8       cgd int
    730  1.87.10.1      matt kvm_close(kvm_t *kd)
    731        1.1       cgd {
    732       1.55     perry 	int error = 0;
    733       1.24   mycroft 
    734       1.35       cgd 	if (kd->pmfd >= 0)
    735       1.35       cgd 		error |= close(kd->pmfd);
    736       1.35       cgd 	if (kd->vmfd >= 0)
    737       1.35       cgd 		error |= close(kd->vmfd);
    738       1.35       cgd 	if (kd->nlfd >= 0)
    739       1.35       cgd 		error |= close(kd->nlfd);
    740       1.35       cgd 	if (kd->swfd >= 0)
    741       1.35       cgd 		error |= close(kd->swfd);
    742       1.35       cgd 	if (kd->vmst)
    743       1.35       cgd 		_kvm_freevtop(kd);
    744       1.43       gwr 	kd->cpu_dsize = 0;
    745       1.43       gwr 	if (kd->cpu_data != NULL)
    746  1.87.10.2      matt 		free(kd->cpu_data);
    747       1.40       leo 	if (kd->kcore_hdr != NULL)
    748  1.87.10.2      matt 		free(kd->kcore_hdr);
    749       1.35       cgd 	if (kd->procbase != 0)
    750  1.87.10.2      matt 		free(kd->procbase);
    751       1.65    simonb 	if (kd->procbase2 != 0)
    752  1.87.10.2      matt 		free(kd->procbase2);
    753       1.79   thorpej 	if (kd->lwpbase != 0)
    754  1.87.10.2      matt 		free(kd->lwpbase);
    755       1.36   mycroft 	if (kd->swapspc != 0)
    756  1.87.10.2      matt 		free(kd->swapspc);
    757       1.36   mycroft 	if (kd->argspc != 0)
    758  1.87.10.2      matt 		free(kd->argspc);
    759       1.38   mycroft 	if (kd->argbuf != 0)
    760  1.87.10.2      matt 		free(kd->argbuf);
    761       1.35       cgd 	if (kd->argv != 0)
    762  1.87.10.2      matt 		free(kd->argv);
    763  1.87.10.2      matt 	if (kd->iobuf != 0)
    764  1.87.10.2      matt 		free(kd->iobuf);
    765  1.87.10.2      matt 	free(kd);
    766       1.19   mycroft 
    767        1.1       cgd 	return (0);
    768        1.1       cgd }
    769        1.1       cgd 
    770       1.18   mycroft int
    771  1.87.10.1      matt kvm_nlist(kvm_t *kd, struct nlist *nl)
    772       1.18   mycroft {
    773       1.82      cube 	int rv, nlfd;
    774       1.82      cube 
    775       1.82      cube 	/*
    776       1.82      cube 	 * kd->nlfd might be negative when we get here, and in that
    777       1.82      cube 	 * case that means that we're using /dev/ksyms.
    778       1.82      cube 	 * So open it again, just for the time we retrieve the list.
    779       1.82      cube 	 */
    780       1.82      cube 	if (kd->nlfd < 0) {
    781       1.82      cube 		nlfd = open_cloexec(_PATH_KSYMS, O_RDONLY, 0);
    782       1.82      cube 		if (nlfd < 0) {
    783       1.82      cube 			_kvm_err(kd, 0, "failed to open %s", _PATH_KSYMS);
    784       1.82      cube 			return (nlfd);
    785       1.82      cube 		}
    786       1.82      cube 	} else
    787       1.82      cube 		nlfd = kd->nlfd;
    788        1.3       cgd 
    789       1.35       cgd 	/*
    790       1.80     ragge 	 * Call the nlist(3) routines to retrieve the given namelist.
    791       1.35       cgd 	 */
    792       1.82      cube 	rv = __fdnlist(nlfd, nl);
    793       1.82      cube 
    794       1.80     ragge 	if (rv == -1)
    795       1.80     ragge 		_kvm_err(kd, 0, "bad namelist");
    796       1.82      cube 
    797       1.82      cube 	if (kd->nlfd < 0)
    798       1.82      cube 		close(nlfd);
    799       1.82      cube 
    800       1.80     ragge 	return (rv);
    801       1.18   mycroft }
    802        1.3       cgd 
    803  1.87.10.1      matt int
    804  1.87.10.1      matt kvm_dump_inval(kvm_t *kd)
    805       1.40       leo {
    806       1.60   thorpej 	struct nlist	nl[2];
    807  1.87.10.2      matt 	u_long		pa;
    808  1.87.10.2      matt 	size_t		dsize;
    809  1.87.10.2      matt 	off_t		doff;
    810  1.87.10.2      matt 	void		*newbuf;
    811       1.40       leo 
    812       1.40       leo 	if (ISALIVE(kd)) {
    813       1.40       leo 		_kvm_err(kd, kd->program, "clearing dump on live kernel");
    814       1.40       leo 		return (-1);
    815       1.40       leo 	}
    816       1.60   thorpej 	nl[0].n_name = "_dumpmag";
    817       1.60   thorpej 	nl[1].n_name = NULL;
    818       1.40       leo 
    819       1.60   thorpej 	if (kvm_nlist(kd, nl) == -1) {
    820       1.40       leo 		_kvm_err(kd, 0, "bad namelist");
    821       1.40       leo 		return (-1);
    822       1.40       leo 	}
    823       1.60   thorpej 	if (_kvm_kvatop(kd, (u_long)nl[0].n_value, &pa) == 0)
    824       1.40       leo 		return (-1);
    825       1.40       leo 
    826       1.40       leo 	errno = 0;
    827  1.87.10.2      matt 	dsize = MAX(kd->fdalign, sizeof(u_long));
    828  1.87.10.2      matt 	if (kd->iobufsz < dsize) {
    829  1.87.10.2      matt 		newbuf = realloc(kd->iobuf, dsize);
    830  1.87.10.2      matt 		if (newbuf == NULL) {
    831  1.87.10.2      matt 			_kvm_syserr(kd, 0, "cannot allocate I/O buffer");
    832  1.87.10.2      matt 			return (-1);
    833  1.87.10.2      matt 		}
    834  1.87.10.2      matt 		kd->iobuf = newbuf;
    835  1.87.10.2      matt 		kd->iobufsz = dsize;
    836  1.87.10.2      matt 	}
    837  1.87.10.2      matt 	memset(kd->iobuf, 0, dsize);
    838  1.87.10.2      matt 	doff = _kvm_pa2off(kd, pa);
    839  1.87.10.2      matt 	doff -= doff % kd->fdalign;
    840  1.87.10.2      matt 	if (pwrite(kd->pmfd, kd->iobuf, dsize, doff) == -1) {
    841       1.57   thorpej 		_kvm_syserr(kd, 0, "cannot invalidate dump - pwrite");
    842       1.40       leo 		return (-1);
    843       1.40       leo 	}
    844       1.40       leo 	return (0);
    845       1.40       leo }
    846       1.40       leo 
    847       1.35       cgd ssize_t
    848  1.87.10.1      matt kvm_read(kvm_t *kd, u_long kva, void *buf, size_t len)
    849        1.3       cgd {
    850       1.55     perry 	int cc;
    851       1.55     perry 	void *cp;
    852        1.3       cgd 
    853       1.65    simonb 	if (ISKMEM(kd)) {
    854       1.35       cgd 		/*
    855       1.35       cgd 		 * We're using /dev/kmem.  Just read straight from the
    856       1.35       cgd 		 * device and let the active kernel do the address translation.
    857       1.35       cgd 		 */
    858       1.35       cgd 		errno = 0;
    859  1.87.10.2      matt 		cc = _kvm_pread(kd, kd->vmfd, buf, len, (off_t)kva);
    860       1.35       cgd 		if (cc < 0) {
    861       1.35       cgd 			_kvm_syserr(kd, 0, "kvm_read");
    862       1.56   msaitoh 			return (-1);
    863       1.35       cgd 		} else if (cc < len)
    864       1.35       cgd 			_kvm_err(kd, kd->program, "short read");
    865       1.35       cgd 		return (cc);
    866       1.65    simonb 	} else if (ISSYSCTL(kd)) {
    867       1.65    simonb 		_kvm_err(kd, kd->program, "kvm_open called with KVM_NO_FILES, "
    868       1.65    simonb 		    "can't use kvm_read");
    869       1.65    simonb 		return (-1);
    870       1.35       cgd 	} else {
    871       1.43       gwr 		if ((kd->kcore_hdr == NULL) || (kd->cpu_data == NULL)) {
    872       1.40       leo 			_kvm_err(kd, kd->program, "no valid dump header");
    873       1.56   msaitoh 			return (-1);
    874       1.40       leo 		}
    875       1.35       cgd 		cp = buf;
    876       1.35       cgd 		while (len > 0) {
    877       1.40       leo 			u_long	pa;
    878       1.40       leo 			off_t	foff;
    879       1.64    simonb 
    880       1.35       cgd 			cc = _kvm_kvatop(kd, kva, &pa);
    881       1.35       cgd 			if (cc == 0)
    882       1.56   msaitoh 				return (-1);
    883       1.35       cgd 			if (cc > len)
    884       1.35       cgd 				cc = len;
    885       1.40       leo 			foff = _kvm_pa2off(kd, pa);
    886       1.35       cgd 			errno = 0;
    887  1.87.10.2      matt 			cc = _kvm_pread(kd, kd->pmfd, cp, (size_t)cc, foff);
    888       1.35       cgd 			if (cc < 0) {
    889       1.35       cgd 				_kvm_syserr(kd, kd->program, "kvm_read");
    890       1.35       cgd 				break;
    891       1.35       cgd 			}
    892       1.35       cgd 			/*
    893       1.35       cgd 			 * If kvm_kvatop returns a bogus value or our core
    894       1.35       cgd 			 * file is truncated, we might wind up seeking beyond
    895       1.35       cgd 			 * the end of the core file in which case the read will
    896       1.35       cgd 			 * return 0 (EOF).
    897       1.35       cgd 			 */
    898       1.35       cgd 			if (cc == 0)
    899       1.35       cgd 				break;
    900       1.39       cgd 			cp = (char *)cp + cc;
    901       1.35       cgd 			kva += cc;
    902       1.35       cgd 			len -= cc;
    903        1.3       cgd 		}
    904       1.35       cgd 		return ((char *)cp - (char *)buf);
    905        1.3       cgd 	}
    906       1.35       cgd 	/* NOTREACHED */
    907        1.3       cgd }
    908        1.3       cgd 
    909       1.35       cgd ssize_t
    910  1.87.10.1      matt kvm_write(kvm_t *kd, u_long kva, const void *buf, size_t len)
    911       1.35       cgd {
    912       1.55     perry 	int cc;
    913       1.26        pk 
    914       1.65    simonb 	if (ISKMEM(kd)) {
    915       1.35       cgd 		/*
    916       1.35       cgd 		 * Just like kvm_read, only we write.
    917       1.35       cgd 		 */
    918       1.35       cgd 		errno = 0;
    919       1.57   thorpej 		cc = pwrite(kd->vmfd, buf, len, (off_t)kva);
    920       1.35       cgd 		if (cc < 0) {
    921       1.35       cgd 			_kvm_syserr(kd, 0, "kvm_write");
    922       1.56   msaitoh 			return (-1);
    923       1.35       cgd 		} else if (cc < len)
    924       1.35       cgd 			_kvm_err(kd, kd->program, "short write");
    925       1.35       cgd 		return (cc);
    926       1.65    simonb 	} else if (ISSYSCTL(kd)) {
    927       1.65    simonb 		_kvm_err(kd, kd->program, "kvm_open called with KVM_NO_FILES, "
    928       1.65    simonb 		    "can't use kvm_write");
    929       1.65    simonb 		return (-1);
    930       1.35       cgd 	} else {
    931       1.35       cgd 		_kvm_err(kd, kd->program,
    932       1.35       cgd 		    "kvm_write not implemented for dead kernels");
    933       1.56   msaitoh 		return (-1);
    934       1.26        pk 	}
    935       1.35       cgd 	/* NOTREACHED */
    936        1.1       cgd }
    937