kvm.c revision 1.102 1 1.102 mrg /* $NetBSD: kvm.c,v 1.102 2016/03/29 06:51:40 mrg 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 1.102 mrg __RCSID("$NetBSD: kvm.c,v 1.102 2016/03/29 06:51:40 mrg 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 1.79 thorpej #include <sys/lwp.h>
47 1.1 cgd #include <sys/proc.h>
48 1.1 cgd #include <sys/ioctl.h>
49 1.35 cgd #include <sys/stat.h>
50 1.35 cgd #include <sys/sysctl.h>
51 1.35 cgd
52 1.40 leo #include <sys/core.h>
53 1.93 he #include <sys/exec.h>
54 1.40 leo #include <sys/kcore.h>
55 1.80 ragge #include <sys/ksyms.h>
56 1.95 jym #include <sys/types.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 1.88 joerg static int _kvm_get_header(kvm_t *);
78 1.88 joerg static kvm_t *_kvm_open(kvm_t *, const char *, const char *,
79 1.88 joerg const char *, int, char *);
80 1.89 joerg static int clear_gap(kvm_t *, bool (*)(void *, const void *, size_t),
81 1.89 joerg void *, size_t);
82 1.88 joerg static off_t Lseek(kvm_t *, int, off_t, int);
83 1.88 joerg static ssize_t Pread(kvm_t *, int, void *, size_t, off_t);
84 1.19 mycroft
85 1.35 cgd char *
86 1.88 joerg kvm_geterr(kvm_t *kd)
87 1.35 cgd {
88 1.35 cgd return (kd->errbuf);
89 1.35 cgd }
90 1.1 cgd
91 1.98 christos const char *
92 1.98 christos kvm_getkernelname(kvm_t *kd)
93 1.98 christos {
94 1.98 christos return kd->kernelname;
95 1.98 christos }
96 1.98 christos
97 1.35 cgd /*
98 1.35 cgd * Report an error using printf style arguments. "program" is kd->program
99 1.35 cgd * on hard errors, and 0 on soft errors, so that under sun error emulation,
100 1.35 cgd * only hard errors are printed out (otherwise, programs like gdb will
101 1.35 cgd * generate tons of error messages when trying to access bogus pointers).
102 1.35 cgd */
103 1.35 cgd void
104 1.35 cgd _kvm_err(kvm_t *kd, const char *program, const char *fmt, ...)
105 1.35 cgd {
106 1.35 cgd va_list ap;
107 1.27 phil
108 1.35 cgd va_start(ap, fmt);
109 1.35 cgd if (program != NULL) {
110 1.35 cgd (void)fprintf(stderr, "%s: ", program);
111 1.35 cgd (void)vfprintf(stderr, fmt, ap);
112 1.35 cgd (void)fputc('\n', stderr);
113 1.35 cgd } else
114 1.35 cgd (void)vsnprintf(kd->errbuf,
115 1.60 thorpej sizeof(kd->errbuf), fmt, ap);
116 1.26 pk
117 1.35 cgd va_end(ap);
118 1.35 cgd }
119 1.26 pk
120 1.35 cgd void
121 1.35 cgd _kvm_syserr(kvm_t *kd, const char *program, const char *fmt, ...)
122 1.35 cgd {
123 1.35 cgd va_list ap;
124 1.60 thorpej size_t n;
125 1.26 pk
126 1.35 cgd va_start(ap, fmt);
127 1.35 cgd if (program != NULL) {
128 1.35 cgd (void)fprintf(stderr, "%s: ", program);
129 1.35 cgd (void)vfprintf(stderr, fmt, ap);
130 1.35 cgd (void)fprintf(stderr, ": %s\n", strerror(errno));
131 1.35 cgd } else {
132 1.55 perry char *cp = kd->errbuf;
133 1.26 pk
134 1.60 thorpej (void)vsnprintf(cp, sizeof(kd->errbuf), fmt, ap);
135 1.35 cgd n = strlen(cp);
136 1.35 cgd (void)snprintf(&cp[n], sizeof(kd->errbuf) - n, ": %s",
137 1.35 cgd strerror(errno));
138 1.35 cgd }
139 1.35 cgd va_end(ap);
140 1.35 cgd }
141 1.1 cgd
142 1.35 cgd void *
143 1.88 joerg _kvm_malloc(kvm_t *kd, size_t n)
144 1.35 cgd {
145 1.35 cgd void *p;
146 1.35 cgd
147 1.35 cgd if ((p = malloc(n)) == NULL)
148 1.68 sommerfe _kvm_err(kd, kd->program, "%s", strerror(errno));
149 1.35 cgd return (p);
150 1.35 cgd }
151 1.35 cgd
152 1.40 leo /*
153 1.58 thorpej * Wrapper around the lseek(2) system call; calls _kvm_syserr() for us
154 1.58 thorpej * in the event of emergency.
155 1.40 leo */
156 1.40 leo static off_t
157 1.88 joerg Lseek(kvm_t *kd, int fd, off_t offset, int whence)
158 1.40 leo {
159 1.58 thorpej off_t off;
160 1.40 leo
161 1.40 leo errno = 0;
162 1.58 thorpej
163 1.40 leo if ((off = lseek(fd, offset, whence)) == -1 && errno != 0) {
164 1.40 leo _kvm_syserr(kd, kd->program, "Lseek");
165 1.58 thorpej return ((off_t)-1);
166 1.40 leo }
167 1.40 leo return (off);
168 1.40 leo }
169 1.40 leo
170 1.91 ad ssize_t
171 1.91 ad _kvm_pread(kvm_t *kd, int fd, void *buf, size_t size, off_t off)
172 1.91 ad {
173 1.91 ad ptrdiff_t moff;
174 1.91 ad void *newbuf;
175 1.91 ad size_t dsize;
176 1.91 ad ssize_t rv;
177 1.91 ad off_t doff;
178 1.91 ad
179 1.91 ad /* If aligned nothing to do. */
180 1.91 ad if (((off % kd->fdalign) | (size % kd->fdalign)) == 0) {
181 1.91 ad return pread(fd, buf, size, off);
182 1.91 ad }
183 1.91 ad
184 1.91 ad /*
185 1.91 ad * Otherwise must buffer. We can't tolerate short reads in this
186 1.91 ad * case (lazy bum).
187 1.91 ad */
188 1.91 ad moff = (ptrdiff_t)off % kd->fdalign;
189 1.91 ad doff = off - moff;
190 1.91 ad dsize = moff + size + kd->fdalign - 1;
191 1.91 ad dsize -= dsize % kd->fdalign;
192 1.91 ad if (kd->iobufsz < dsize) {
193 1.91 ad newbuf = realloc(kd->iobuf, dsize);
194 1.91 ad if (newbuf == NULL) {
195 1.91 ad _kvm_syserr(kd, 0, "cannot allocate I/O buffer");
196 1.91 ad return (-1);
197 1.91 ad }
198 1.91 ad kd->iobuf = newbuf;
199 1.91 ad kd->iobufsz = dsize;
200 1.91 ad }
201 1.91 ad rv = pread(fd, kd->iobuf, dsize, doff);
202 1.96 stacktic if (rv < size + moff)
203 1.91 ad return -1;
204 1.91 ad memcpy(buf, kd->iobuf + moff, size);
205 1.91 ad return size;
206 1.91 ad }
207 1.91 ad
208 1.58 thorpej /*
209 1.58 thorpej * Wrapper around the pread(2) system call; calls _kvm_syserr() for us
210 1.58 thorpej * in the event of emergency.
211 1.58 thorpej */
212 1.40 leo static ssize_t
213 1.88 joerg Pread(kvm_t *kd, int fd, void *buf, size_t nbytes, off_t offset)
214 1.40 leo {
215 1.58 thorpej ssize_t rv;
216 1.40 leo
217 1.40 leo errno = 0;
218 1.40 leo
219 1.91 ad if ((rv = _kvm_pread(kd, fd, buf, nbytes, offset)) != nbytes &&
220 1.58 thorpej errno != 0)
221 1.58 thorpej _kvm_syserr(kd, kd->program, "Pread");
222 1.40 leo return (rv);
223 1.40 leo }
224 1.40 leo
225 1.35 cgd static kvm_t *
226 1.88 joerg _kvm_open(kvm_t *kd, const char *uf, const char *mf, const char *sf, int flag,
227 1.88 joerg char *errout)
228 1.35 cgd {
229 1.35 cgd struct stat st;
230 1.48 cgd int ufgiven;
231 1.35 cgd
232 1.37 mycroft kd->pmfd = -1;
233 1.35 cgd kd->vmfd = -1;
234 1.35 cgd kd->swfd = -1;
235 1.35 cgd kd->nlfd = -1;
236 1.65 simonb kd->alive = KVM_ALIVE_DEAD;
237 1.85 christos kd->procbase = NULL;
238 1.85 christos kd->procbase_len = 0;
239 1.85 christos kd->procbase2 = NULL;
240 1.85 christos kd->procbase2_len = 0;
241 1.85 christos kd->lwpbase = NULL;
242 1.85 christos kd->lwpbase_len = 0;
243 1.36 mycroft kd->nbpg = getpagesize();
244 1.85 christos kd->swapspc = NULL;
245 1.85 christos kd->argspc = NULL;
246 1.85 christos kd->argspc_len = 0;
247 1.85 christos kd->argbuf = NULL;
248 1.85 christos kd->argv = NULL;
249 1.85 christos kd->vmst = NULL;
250 1.85 christos kd->vm_page_buckets = NULL;
251 1.85 christos kd->kcore_hdr = NULL;
252 1.43 gwr kd->cpu_dsize = 0;
253 1.85 christos kd->cpu_data = NULL;
254 1.40 leo kd->dump_off = 0;
255 1.91 ad kd->fdalign = 1;
256 1.91 ad kd->iobuf = NULL;
257 1.91 ad kd->iobufsz = 0;
258 1.52 gwr
259 1.65 simonb if (flag & KVM_NO_FILES) {
260 1.65 simonb kd->alive = KVM_ALIVE_SYSCTL;
261 1.65 simonb return(kd);
262 1.65 simonb }
263 1.65 simonb
264 1.52 gwr /*
265 1.52 gwr * Call the MD open hook. This sets:
266 1.52 gwr * usrstack, min_uva, max_uva
267 1.52 gwr */
268 1.52 gwr if (_kvm_mdopen(kd)) {
269 1.52 gwr _kvm_err(kd, kd->program, "md init failed");
270 1.52 gwr goto failed;
271 1.52 gwr }
272 1.35 cgd
273 1.48 cgd ufgiven = (uf != NULL);
274 1.76 atatat if (!ufgiven) {
275 1.76 atatat #ifdef CPU_BOOTED_KERNEL
276 1.76 atatat /* 130 is 128 + '/' + '\0' */
277 1.76 atatat static char booted_kernel[130];
278 1.76 atatat int mib[2], rc;
279 1.76 atatat size_t len;
280 1.76 atatat
281 1.76 atatat mib[0] = CTL_MACHDEP;
282 1.76 atatat mib[1] = CPU_BOOTED_KERNEL;
283 1.76 atatat booted_kernel[0] = '/';
284 1.76 atatat booted_kernel[1] = '\0';
285 1.76 atatat len = sizeof(booted_kernel) - 2;
286 1.76 atatat rc = sysctl(&mib[0], 2, &booted_kernel[1], &len, NULL, 0);
287 1.76 atatat booted_kernel[sizeof(booted_kernel) - 1] = '\0';
288 1.76 atatat uf = (booted_kernel[1] == '/') ?
289 1.76 atatat &booted_kernel[1] : &booted_kernel[0];
290 1.76 atatat if (rc != -1)
291 1.76 atatat rc = stat(uf, &st);
292 1.76 atatat if (rc != -1 && !S_ISREG(st.st_mode))
293 1.76 atatat rc = -1;
294 1.76 atatat if (rc == -1)
295 1.76 atatat #endif /* CPU_BOOTED_KERNEL */
296 1.76 atatat uf = _PATH_UNIX;
297 1.76 atatat }
298 1.35 cgd else if (strlen(uf) >= MAXPATHLEN) {
299 1.35 cgd _kvm_err(kd, kd->program, "exec file name too long");
300 1.1 cgd goto failed;
301 1.1 cgd }
302 1.35 cgd if (flag & ~O_RDWR) {
303 1.35 cgd _kvm_err(kd, kd->program, "bad flags arg");
304 1.1 cgd goto failed;
305 1.1 cgd }
306 1.35 cgd if (mf == 0)
307 1.35 cgd mf = _PATH_MEM;
308 1.35 cgd if (sf == 0)
309 1.35 cgd sf = _PATH_DRUM;
310 1.35 cgd
311 1.94 apb /*
312 1.94 apb * Open the kernel namelist. If /dev/ksyms doesn't
313 1.94 apb * exist, open the current kernel.
314 1.94 apb */
315 1.94 apb if (ufgiven == 0)
316 1.99 christos kd->nlfd = open(_PATH_KSYMS, O_RDONLY | O_CLOEXEC, 0);
317 1.94 apb if (kd->nlfd < 0) {
318 1.99 christos if ((kd->nlfd = open(uf, O_RDONLY | O_CLOEXEC, 0)) < 0) {
319 1.94 apb _kvm_syserr(kd, kd->program, "%s", uf);
320 1.94 apb goto failed;
321 1.94 apb }
322 1.98 christos strlcpy(kd->kernelname, uf, sizeof(kd->kernelname));
323 1.94 apb } else {
324 1.98 christos strlcpy(kd->kernelname, _PATH_KSYMS, sizeof(kd->kernelname));
325 1.94 apb /*
326 1.94 apb * We're here because /dev/ksyms was opened
327 1.94 apb * successfully. However, we don't want to keep it
328 1.94 apb * open, so we close it now. Later, we will open
329 1.94 apb * it again, since it will be the only case where
330 1.94 apb * kd->nlfd is negative.
331 1.94 apb */
332 1.94 apb close(kd->nlfd);
333 1.94 apb kd->nlfd = -1;
334 1.94 apb }
335 1.94 apb
336 1.99 christos if ((kd->pmfd = open(mf, flag | O_CLOEXEC, 0)) < 0) {
337 1.35 cgd _kvm_syserr(kd, kd->program, "%s", mf);
338 1.35 cgd goto failed;
339 1.1 cgd }
340 1.35 cgd if (fstat(kd->pmfd, &st) < 0) {
341 1.35 cgd _kvm_syserr(kd, kd->program, "%s", mf);
342 1.1 cgd goto failed;
343 1.1 cgd }
344 1.91 ad if (S_ISCHR(st.st_mode) && strcmp(mf, _PATH_MEM) == 0) {
345 1.1 cgd /*
346 1.91 ad * If this is /dev/mem, open kmem too. (Maybe we should
347 1.35 cgd * make it work for either /dev/mem or /dev/kmem -- in either
348 1.35 cgd * case you're working with a live kernel.)
349 1.1 cgd */
350 1.99 christos if ((kd->vmfd = open(_PATH_KMEM, flag | O_CLOEXEC, 0)) < 0) {
351 1.35 cgd _kvm_syserr(kd, kd->program, "%s", _PATH_KMEM);
352 1.35 cgd goto failed;
353 1.1 cgd }
354 1.65 simonb kd->alive = KVM_ALIVE_FILES;
355 1.99 christos if ((kd->swfd = open(sf, flag | O_CLOEXEC, 0)) < 0) {
356 1.84 yamt if (errno != ENXIO) {
357 1.84 yamt _kvm_syserr(kd, kd->program, "%s", sf);
358 1.84 yamt goto failed;
359 1.84 yamt }
360 1.84 yamt /* swap is not configured? not fatal */
361 1.1 cgd }
362 1.35 cgd } else {
363 1.91 ad kd->fdalign = DEV_BSIZE; /* XXX */
364 1.3 cgd /*
365 1.35 cgd * This is a crash dump.
366 1.94 apb * Initialize the virtual address translation machinery.
367 1.94 apb *
368 1.40 leo * If there is no valid core header, fail silently here.
369 1.64 simonb * The address translations however will fail without
370 1.40 leo * header. Things can be made to run by calling
371 1.40 leo * kvm_dump_mkheader() before doing any translation.
372 1.40 leo */
373 1.40 leo if (_kvm_get_header(kd) == 0) {
374 1.40 leo if (_kvm_initvtop(kd) < 0)
375 1.40 leo goto failed;
376 1.40 leo }
377 1.3 cgd }
378 1.35 cgd return (kd);
379 1.35 cgd failed:
380 1.1 cgd /*
381 1.35 cgd * Copy out the error if doing sane error semantics.
382 1.1 cgd */
383 1.35 cgd if (errout != 0)
384 1.78 itojun (void)strlcpy(errout, kd->errbuf, _POSIX2_LINE_MAX);
385 1.35 cgd (void)kvm_close(kd);
386 1.35 cgd return (0);
387 1.1 cgd }
388 1.1 cgd
389 1.43 gwr /*
390 1.43 gwr * The kernel dump file (from savecore) contains:
391 1.43 gwr * kcore_hdr_t kcore_hdr;
392 1.43 gwr * kcore_seg_t cpu_hdr;
393 1.43 gwr * (opaque) cpu_data; (size is cpu_hdr.c_size)
394 1.43 gwr * kcore_seg_t mem_hdr;
395 1.43 gwr * (memory) mem_data; (size is mem_hdr.c_size)
396 1.64 simonb *
397 1.43 gwr * Note: khdr is padded to khdr.c_hdrsize;
398 1.43 gwr * cpu_hdr and mem_hdr are padded to khdr.c_seghdrsize
399 1.43 gwr */
400 1.40 leo static int
401 1.88 joerg _kvm_get_header(kvm_t *kd)
402 1.40 leo {
403 1.43 gwr kcore_hdr_t kcore_hdr;
404 1.43 gwr kcore_seg_t cpu_hdr;
405 1.43 gwr kcore_seg_t mem_hdr;
406 1.43 gwr size_t offset;
407 1.43 gwr ssize_t sz;
408 1.40 leo
409 1.43 gwr /*
410 1.43 gwr * Read the kcore_hdr_t
411 1.43 gwr */
412 1.58 thorpej sz = Pread(kd, kd->pmfd, &kcore_hdr, sizeof(kcore_hdr), (off_t)0);
413 1.43 gwr if (sz != sizeof(kcore_hdr))
414 1.40 leo return (-1);
415 1.40 leo
416 1.40 leo /*
417 1.40 leo * Currently, we only support dump-files made by the current
418 1.40 leo * architecture...
419 1.40 leo */
420 1.43 gwr if ((CORE_GETMAGIC(kcore_hdr) != KCORE_MAGIC) ||
421 1.43 gwr (CORE_GETMID(kcore_hdr) != MID_MACHINE))
422 1.43 gwr return (-1);
423 1.40 leo
424 1.40 leo /*
425 1.40 leo * Currently, we only support exactly 2 segments: cpu-segment
426 1.40 leo * and data-segment in exactly that order.
427 1.40 leo */
428 1.43 gwr if (kcore_hdr.c_nseg != 2)
429 1.40 leo return (-1);
430 1.40 leo
431 1.40 leo /*
432 1.43 gwr * Save away the kcore_hdr. All errors after this
433 1.43 gwr * should do a to "goto fail" to deallocate things.
434 1.43 gwr */
435 1.43 gwr kd->kcore_hdr = _kvm_malloc(kd, sizeof(kcore_hdr));
436 1.43 gwr memcpy(kd->kcore_hdr, &kcore_hdr, sizeof(kcore_hdr));
437 1.43 gwr offset = kcore_hdr.c_hdrsize;
438 1.43 gwr
439 1.43 gwr /*
440 1.43 gwr * Read the CPU segment header
441 1.40 leo */
442 1.58 thorpej sz = Pread(kd, kd->pmfd, &cpu_hdr, sizeof(cpu_hdr), (off_t)offset);
443 1.43 gwr if (sz != sizeof(cpu_hdr))
444 1.43 gwr goto fail;
445 1.43 gwr if ((CORE_GETMAGIC(cpu_hdr) != KCORESEG_MAGIC) ||
446 1.43 gwr (CORE_GETFLAG(cpu_hdr) != CORE_CPU))
447 1.43 gwr goto fail;
448 1.43 gwr offset += kcore_hdr.c_seghdrsize;
449 1.43 gwr
450 1.43 gwr /*
451 1.43 gwr * Read the CPU segment DATA.
452 1.43 gwr */
453 1.43 gwr kd->cpu_dsize = cpu_hdr.c_size;
454 1.43 gwr kd->cpu_data = _kvm_malloc(kd, cpu_hdr.c_size);
455 1.43 gwr if (kd->cpu_data == NULL)
456 1.43 gwr goto fail;
457 1.58 thorpej sz = Pread(kd, kd->pmfd, kd->cpu_data, cpu_hdr.c_size, (off_t)offset);
458 1.43 gwr if (sz != cpu_hdr.c_size)
459 1.43 gwr goto fail;
460 1.43 gwr offset += cpu_hdr.c_size;
461 1.40 leo
462 1.40 leo /*
463 1.40 leo * Read the next segment header: data segment
464 1.40 leo */
465 1.58 thorpej sz = Pread(kd, kd->pmfd, &mem_hdr, sizeof(mem_hdr), (off_t)offset);
466 1.43 gwr if (sz != sizeof(mem_hdr))
467 1.43 gwr goto fail;
468 1.43 gwr offset += kcore_hdr.c_seghdrsize;
469 1.43 gwr
470 1.43 gwr if ((CORE_GETMAGIC(mem_hdr) != KCORESEG_MAGIC) ||
471 1.43 gwr (CORE_GETFLAG(mem_hdr) != CORE_DATA))
472 1.43 gwr goto fail;
473 1.40 leo
474 1.43 gwr kd->dump_off = offset;
475 1.43 gwr return (0);
476 1.40 leo
477 1.43 gwr fail:
478 1.43 gwr if (kd->kcore_hdr != NULL) {
479 1.43 gwr free(kd->kcore_hdr);
480 1.40 leo kd->kcore_hdr = NULL;
481 1.43 gwr }
482 1.43 gwr if (kd->cpu_data != NULL) {
483 1.43 gwr free(kd->cpu_data);
484 1.43 gwr kd->cpu_data = NULL;
485 1.43 gwr kd->cpu_dsize = 0;
486 1.40 leo }
487 1.54 mrg return (-1);
488 1.40 leo }
489 1.40 leo
490 1.40 leo /*
491 1.43 gwr * The format while on the dump device is: (new format)
492 1.47 cgd * kcore_seg_t cpu_hdr;
493 1.47 cgd * (opaque) cpu_data; (size is cpu_hdr.c_size)
494 1.47 cgd * kcore_seg_t mem_hdr;
495 1.47 cgd * (memory) mem_data; (size is mem_hdr.c_size)
496 1.40 leo */
497 1.40 leo int
498 1.88 joerg kvm_dump_mkheader(kvm_t *kd, off_t dump_off)
499 1.40 leo {
500 1.43 gwr kcore_seg_t cpu_hdr;
501 1.60 thorpej size_t hdr_size;
502 1.60 thorpej ssize_t sz;
503 1.40 leo
504 1.41 leo if (kd->kcore_hdr != NULL) {
505 1.41 leo _kvm_err(kd, kd->program, "already has a dump header");
506 1.40 leo return (-1);
507 1.40 leo }
508 1.41 leo if (ISALIVE(kd)) {
509 1.41 leo _kvm_err(kd, kd->program, "don't use on live kernel");
510 1.40 leo return (-1);
511 1.40 leo }
512 1.40 leo
513 1.40 leo /*
514 1.43 gwr * Validate new format crash dump
515 1.40 leo */
516 1.58 thorpej sz = Pread(kd, kd->pmfd, &cpu_hdr, sizeof(cpu_hdr), dump_off);
517 1.100 martin if (sz != sizeof(cpu_hdr)) {
518 1.102 mrg if (sz == -1)
519 1.102 mrg _kvm_err(kd, 0, "read %zx bytes at offset %"PRIx64
520 1.102 mrg " for cpu_hdr failed: %s", sizeof(cpu_hdr),
521 1.102 mrg dump_off, strerror(errno));
522 1.102 mrg else
523 1.102 mrg _kvm_err(kd, 0, "read %zx bytes at offset %"PRIx64
524 1.102 mrg " for cpu_hdr instead of requested %zu",
525 1.102 mrg sz, dump_off, sizeof(cpu_hdr));
526 1.43 gwr return (-1);
527 1.100 martin }
528 1.44 leo if ((CORE_GETMAGIC(cpu_hdr) != KCORE_MAGIC)
529 1.44 leo || (CORE_GETMID(cpu_hdr) != MID_MACHINE)) {
530 1.44 leo _kvm_err(kd, 0, "invalid magic in cpu_hdr");
531 1.45 leo return (0);
532 1.44 leo }
533 1.43 gwr hdr_size = ALIGN(sizeof(cpu_hdr));
534 1.43 gwr
535 1.43 gwr /*
536 1.43 gwr * Read the CPU segment.
537 1.43 gwr */
538 1.43 gwr kd->cpu_dsize = cpu_hdr.c_size;
539 1.43 gwr kd->cpu_data = _kvm_malloc(kd, kd->cpu_dsize);
540 1.100 martin if (kd->cpu_data == NULL) {
541 1.100 martin _kvm_err(kd, kd->program, "no cpu_data");
542 1.43 gwr goto fail;
543 1.100 martin }
544 1.58 thorpej sz = Pread(kd, kd->pmfd, kd->cpu_data, cpu_hdr.c_size,
545 1.58 thorpej dump_off + hdr_size);
546 1.100 martin if (sz != cpu_hdr.c_size) {
547 1.100 martin _kvm_err(kd, kd->program, "size %zu != cpu_hdr.csize %"PRIu32,
548 1.100 martin sz, cpu_hdr.c_size);
549 1.43 gwr goto fail;
550 1.100 martin }
551 1.43 gwr hdr_size += kd->cpu_dsize;
552 1.43 gwr
553 1.43 gwr /*
554 1.43 gwr * Leave phys mem pointer at beginning of memory data
555 1.43 gwr */
556 1.43 gwr kd->dump_off = dump_off + hdr_size;
557 1.100 martin if (Lseek(kd, kd->pmfd, kd->dump_off, SEEK_SET) == -1) {
558 1.100 martin _kvm_err(kd, kd->program, "failed to seek to %" PRId64,
559 1.100 martin (int64_t)kd->dump_off);
560 1.43 gwr goto fail;
561 1.100 martin }
562 1.40 leo
563 1.40 leo /*
564 1.40 leo * Create a kcore_hdr.
565 1.40 leo */
566 1.43 gwr kd->kcore_hdr = _kvm_malloc(kd, sizeof(kcore_hdr_t));
567 1.100 martin if (kd->kcore_hdr == NULL) {
568 1.100 martin _kvm_err(kd, kd->program, "failed to allocate header");
569 1.43 gwr goto fail;
570 1.100 martin }
571 1.40 leo
572 1.41 leo kd->kcore_hdr->c_hdrsize = ALIGN(sizeof(kcore_hdr_t));
573 1.41 leo kd->kcore_hdr->c_seghdrsize = ALIGN(sizeof(kcore_seg_t));
574 1.41 leo kd->kcore_hdr->c_nseg = 2;
575 1.41 leo CORE_SETMAGIC(*(kd->kcore_hdr), KCORE_MAGIC, MID_MACHINE,0);
576 1.40 leo
577 1.40 leo /*
578 1.40 leo * Now that we have a valid header, enable translations.
579 1.40 leo */
580 1.49 pk if (_kvm_initvtop(kd) == 0)
581 1.49 pk /* Success */
582 1.49 pk return (hdr_size);
583 1.43 gwr
584 1.43 gwr fail:
585 1.43 gwr if (kd->kcore_hdr != NULL) {
586 1.43 gwr free(kd->kcore_hdr);
587 1.43 gwr kd->kcore_hdr = NULL;
588 1.43 gwr }
589 1.43 gwr if (kd->cpu_data != NULL) {
590 1.43 gwr free(kd->cpu_data);
591 1.43 gwr kd->cpu_data = NULL;
592 1.43 gwr kd->cpu_dsize = 0;
593 1.43 gwr }
594 1.43 gwr return (-1);
595 1.40 leo }
596 1.40 leo
597 1.40 leo static int
598 1.89 joerg clear_gap(kvm_t *kd, bool (*write_buf)(void *, const void *, size_t),
599 1.89 joerg void *cookie, size_t size)
600 1.40 leo {
601 1.89 joerg char buf[1024];
602 1.89 joerg size_t len;
603 1.89 joerg
604 1.89 joerg (void)memset(buf, 0, size > sizeof(buf) ? sizeof(buf) : size);
605 1.89 joerg
606 1.89 joerg while (size > 0) {
607 1.89 joerg len = size > sizeof(buf) ? sizeof(buf) : size;
608 1.89 joerg if (!(*write_buf)(cookie, buf, len)) {
609 1.40 leo _kvm_syserr(kd, kd->program, "clear_gap");
610 1.89 joerg return -1;
611 1.40 leo }
612 1.89 joerg size -= len;
613 1.89 joerg }
614 1.89 joerg
615 1.89 joerg return 0;
616 1.40 leo }
617 1.40 leo
618 1.40 leo /*
619 1.89 joerg * Write the dump header by calling write_buf with cookie as first argument.
620 1.40 leo */
621 1.40 leo int
622 1.89 joerg kvm_dump_header(kvm_t *kd, bool (*write_buf)(void *, const void *, size_t),
623 1.89 joerg void *cookie, int dumpsize)
624 1.40 leo {
625 1.40 leo kcore_seg_t seghdr;
626 1.40 leo long offset;
627 1.89 joerg size_t gap;
628 1.40 leo
629 1.43 gwr if (kd->kcore_hdr == NULL || kd->cpu_data == NULL) {
630 1.40 leo _kvm_err(kd, kd->program, "no valid dump header(s)");
631 1.40 leo return (-1);
632 1.40 leo }
633 1.40 leo
634 1.40 leo /*
635 1.40 leo * Write the generic header
636 1.40 leo */
637 1.40 leo offset = 0;
638 1.89 joerg if (!(*write_buf)(cookie, kd->kcore_hdr, sizeof(kcore_hdr_t))) {
639 1.89 joerg _kvm_syserr(kd, kd->program, "kvm_dump_header");
640 1.40 leo return (-1);
641 1.40 leo }
642 1.40 leo offset += kd->kcore_hdr->c_hdrsize;
643 1.40 leo gap = kd->kcore_hdr->c_hdrsize - sizeof(kcore_hdr_t);
644 1.89 joerg if (clear_gap(kd, write_buf, cookie, gap) == -1)
645 1.40 leo return (-1);
646 1.40 leo
647 1.40 leo /*
648 1.83 wiz * Write the CPU header
649 1.40 leo */
650 1.40 leo CORE_SETMAGIC(seghdr, KCORESEG_MAGIC, 0, CORE_CPU);
651 1.43 gwr seghdr.c_size = ALIGN(kd->cpu_dsize);
652 1.89 joerg if (!(*write_buf)(cookie, &seghdr, sizeof(seghdr))) {
653 1.89 joerg _kvm_syserr(kd, kd->program, "kvm_dump_header");
654 1.40 leo return (-1);
655 1.40 leo }
656 1.40 leo offset += kd->kcore_hdr->c_seghdrsize;
657 1.40 leo gap = kd->kcore_hdr->c_seghdrsize - sizeof(seghdr);
658 1.89 joerg if (clear_gap(kd, write_buf, cookie, gap) == -1)
659 1.40 leo return (-1);
660 1.40 leo
661 1.89 joerg if (!(*write_buf)(cookie, kd->cpu_data, kd->cpu_dsize)) {
662 1.89 joerg _kvm_syserr(kd, kd->program, "kvm_dump_header");
663 1.40 leo return (-1);
664 1.40 leo }
665 1.40 leo offset += seghdr.c_size;
666 1.43 gwr gap = seghdr.c_size - kd->cpu_dsize;
667 1.90 joerg if (clear_gap(kd, write_buf, cookie, gap) == -1)
668 1.40 leo return (-1);
669 1.40 leo
670 1.40 leo /*
671 1.40 leo * Write the actual dump data segment header
672 1.40 leo */
673 1.40 leo CORE_SETMAGIC(seghdr, KCORESEG_MAGIC, 0, CORE_DATA);
674 1.40 leo seghdr.c_size = dumpsize;
675 1.89 joerg if (!(*write_buf)(cookie, &seghdr, sizeof(seghdr))) {
676 1.89 joerg _kvm_syserr(kd, kd->program, "kvm_dump_header");
677 1.40 leo return (-1);
678 1.40 leo }
679 1.40 leo offset += kd->kcore_hdr->c_seghdrsize;
680 1.40 leo gap = kd->kcore_hdr->c_seghdrsize - sizeof(seghdr);
681 1.89 joerg if (clear_gap(kd, write_buf, cookie, gap) == -1)
682 1.40 leo return (-1);
683 1.40 leo
684 1.62 christos return (int)offset;
685 1.40 leo }
686 1.40 leo
687 1.89 joerg static bool
688 1.89 joerg kvm_dump_header_stdio(void *cookie, const void *buf, size_t len)
689 1.89 joerg {
690 1.89 joerg return fwrite(buf, len, 1, (FILE *)cookie) == 1;
691 1.89 joerg }
692 1.89 joerg
693 1.89 joerg int
694 1.89 joerg kvm_dump_wrtheader(kvm_t *kd, FILE *fp, int dumpsize)
695 1.89 joerg {
696 1.89 joerg return kvm_dump_header(kd, kvm_dump_header_stdio, fp, dumpsize);
697 1.89 joerg }
698 1.89 joerg
699 1.35 cgd kvm_t *
700 1.88 joerg kvm_openfiles(const char *uf, const char *mf, const char *sf,
701 1.88 joerg int flag, char *errout)
702 1.35 cgd {
703 1.55 perry kvm_t *kd;
704 1.35 cgd
705 1.35 cgd if ((kd = malloc(sizeof(*kd))) == NULL) {
706 1.78 itojun (void)strlcpy(errout, strerror(errno), _POSIX2_LINE_MAX);
707 1.35 cgd return (0);
708 1.35 cgd }
709 1.35 cgd kd->program = 0;
710 1.35 cgd return (_kvm_open(kd, uf, mf, sf, flag, errout));
711 1.35 cgd }
712 1.35 cgd
713 1.35 cgd kvm_t *
714 1.88 joerg kvm_open(const char *uf, const char *mf, const char *sf, int flag,
715 1.88 joerg const char *program)
716 1.35 cgd {
717 1.55 perry kvm_t *kd;
718 1.35 cgd
719 1.86 christos if ((kd = malloc(sizeof(*kd))) == NULL) {
720 1.86 christos (void)fprintf(stderr, "%s: %s\n",
721 1.86 christos program ? program : getprogname(), strerror(errno));
722 1.35 cgd return (0);
723 1.19 mycroft }
724 1.35 cgd kd->program = program;
725 1.35 cgd return (_kvm_open(kd, uf, mf, sf, flag, NULL));
726 1.8 cgd }
727 1.8 cgd
728 1.8 cgd int
729 1.88 joerg kvm_close(kvm_t *kd)
730 1.1 cgd {
731 1.55 perry int error = 0;
732 1.24 mycroft
733 1.35 cgd if (kd->pmfd >= 0)
734 1.35 cgd error |= close(kd->pmfd);
735 1.35 cgd if (kd->vmfd >= 0)
736 1.35 cgd error |= close(kd->vmfd);
737 1.35 cgd if (kd->nlfd >= 0)
738 1.35 cgd error |= close(kd->nlfd);
739 1.35 cgd if (kd->swfd >= 0)
740 1.35 cgd error |= close(kd->swfd);
741 1.35 cgd if (kd->vmst)
742 1.35 cgd _kvm_freevtop(kd);
743 1.43 gwr kd->cpu_dsize = 0;
744 1.43 gwr if (kd->cpu_data != NULL)
745 1.91 ad free(kd->cpu_data);
746 1.40 leo if (kd->kcore_hdr != NULL)
747 1.91 ad free(kd->kcore_hdr);
748 1.35 cgd if (kd->procbase != 0)
749 1.91 ad free(kd->procbase);
750 1.65 simonb if (kd->procbase2 != 0)
751 1.91 ad free(kd->procbase2);
752 1.79 thorpej if (kd->lwpbase != 0)
753 1.91 ad free(kd->lwpbase);
754 1.36 mycroft if (kd->swapspc != 0)
755 1.91 ad free(kd->swapspc);
756 1.36 mycroft if (kd->argspc != 0)
757 1.91 ad free(kd->argspc);
758 1.38 mycroft if (kd->argbuf != 0)
759 1.91 ad free(kd->argbuf);
760 1.35 cgd if (kd->argv != 0)
761 1.91 ad free(kd->argv);
762 1.91 ad if (kd->iobuf != 0)
763 1.91 ad free(kd->iobuf);
764 1.91 ad free(kd);
765 1.19 mycroft
766 1.97 dholland return (error);
767 1.1 cgd }
768 1.1 cgd
769 1.18 mycroft int
770 1.88 joerg kvm_nlist(kvm_t *kd, struct nlist *nl)
771 1.18 mycroft {
772 1.82 cube int rv, nlfd;
773 1.82 cube
774 1.82 cube /*
775 1.82 cube * kd->nlfd might be negative when we get here, and in that
776 1.82 cube * case that means that we're using /dev/ksyms.
777 1.82 cube * So open it again, just for the time we retrieve the list.
778 1.82 cube */
779 1.82 cube if (kd->nlfd < 0) {
780 1.99 christos nlfd = open(_PATH_KSYMS, O_RDONLY | O_CLOEXEC, 0);
781 1.82 cube if (nlfd < 0) {
782 1.82 cube _kvm_err(kd, 0, "failed to open %s", _PATH_KSYMS);
783 1.82 cube return (nlfd);
784 1.82 cube }
785 1.82 cube } else
786 1.82 cube nlfd = kd->nlfd;
787 1.3 cgd
788 1.35 cgd /*
789 1.80 ragge * Call the nlist(3) routines to retrieve the given namelist.
790 1.35 cgd */
791 1.82 cube rv = __fdnlist(nlfd, nl);
792 1.82 cube
793 1.80 ragge if (rv == -1)
794 1.80 ragge _kvm_err(kd, 0, "bad namelist");
795 1.82 cube
796 1.82 cube if (kd->nlfd < 0)
797 1.82 cube close(nlfd);
798 1.82 cube
799 1.80 ragge return (rv);
800 1.18 mycroft }
801 1.3 cgd
802 1.88 joerg int
803 1.88 joerg kvm_dump_inval(kvm_t *kd)
804 1.40 leo {
805 1.60 thorpej struct nlist nl[2];
806 1.95 jym paddr_t pa;
807 1.92 ad size_t dsize;
808 1.92 ad off_t doff;
809 1.92 ad void *newbuf;
810 1.40 leo
811 1.40 leo if (ISALIVE(kd)) {
812 1.40 leo _kvm_err(kd, kd->program, "clearing dump on live kernel");
813 1.40 leo return (-1);
814 1.40 leo }
815 1.60 thorpej nl[0].n_name = "_dumpmag";
816 1.60 thorpej nl[1].n_name = NULL;
817 1.40 leo
818 1.60 thorpej if (kvm_nlist(kd, nl) == -1) {
819 1.40 leo _kvm_err(kd, 0, "bad namelist");
820 1.40 leo return (-1);
821 1.40 leo }
822 1.95 jym if (_kvm_kvatop(kd, (vaddr_t)nl[0].n_value, &pa) == 0)
823 1.40 leo return (-1);
824 1.40 leo
825 1.40 leo errno = 0;
826 1.92 ad dsize = MAX(kd->fdalign, sizeof(u_long));
827 1.92 ad if (kd->iobufsz < dsize) {
828 1.92 ad newbuf = realloc(kd->iobuf, dsize);
829 1.92 ad if (newbuf == NULL) {
830 1.92 ad _kvm_syserr(kd, 0, "cannot allocate I/O buffer");
831 1.92 ad return (-1);
832 1.92 ad }
833 1.92 ad kd->iobuf = newbuf;
834 1.92 ad kd->iobufsz = dsize;
835 1.92 ad }
836 1.92 ad memset(kd->iobuf, 0, dsize);
837 1.92 ad doff = _kvm_pa2off(kd, pa);
838 1.92 ad doff -= doff % kd->fdalign;
839 1.92 ad if (pwrite(kd->pmfd, kd->iobuf, dsize, doff) == -1) {
840 1.57 thorpej _kvm_syserr(kd, 0, "cannot invalidate dump - pwrite");
841 1.40 leo return (-1);
842 1.40 leo }
843 1.40 leo return (0);
844 1.40 leo }
845 1.40 leo
846 1.35 cgd ssize_t
847 1.88 joerg kvm_read(kvm_t *kd, u_long kva, void *buf, size_t len)
848 1.3 cgd {
849 1.55 perry int cc;
850 1.55 perry void *cp;
851 1.3 cgd
852 1.65 simonb if (ISKMEM(kd)) {
853 1.35 cgd /*
854 1.35 cgd * We're using /dev/kmem. Just read straight from the
855 1.35 cgd * device and let the active kernel do the address translation.
856 1.35 cgd */
857 1.35 cgd errno = 0;
858 1.91 ad cc = _kvm_pread(kd, kd->vmfd, buf, len, (off_t)kva);
859 1.35 cgd if (cc < 0) {
860 1.35 cgd _kvm_syserr(kd, 0, "kvm_read");
861 1.56 msaitoh return (-1);
862 1.35 cgd } else if (cc < len)
863 1.35 cgd _kvm_err(kd, kd->program, "short read");
864 1.35 cgd return (cc);
865 1.65 simonb } else if (ISSYSCTL(kd)) {
866 1.65 simonb _kvm_err(kd, kd->program, "kvm_open called with KVM_NO_FILES, "
867 1.65 simonb "can't use kvm_read");
868 1.65 simonb return (-1);
869 1.35 cgd } else {
870 1.43 gwr if ((kd->kcore_hdr == NULL) || (kd->cpu_data == NULL)) {
871 1.40 leo _kvm_err(kd, kd->program, "no valid dump header");
872 1.56 msaitoh return (-1);
873 1.40 leo }
874 1.35 cgd cp = buf;
875 1.35 cgd while (len > 0) {
876 1.95 jym paddr_t pa;
877 1.40 leo off_t foff;
878 1.64 simonb
879 1.95 jym cc = _kvm_kvatop(kd, (vaddr_t)kva, &pa);
880 1.35 cgd if (cc == 0)
881 1.56 msaitoh return (-1);
882 1.35 cgd if (cc > len)
883 1.35 cgd cc = len;
884 1.40 leo foff = _kvm_pa2off(kd, pa);
885 1.35 cgd errno = 0;
886 1.91 ad cc = _kvm_pread(kd, kd->pmfd, cp, (size_t)cc, foff);
887 1.35 cgd if (cc < 0) {
888 1.35 cgd _kvm_syserr(kd, kd->program, "kvm_read");
889 1.35 cgd break;
890 1.35 cgd }
891 1.35 cgd /*
892 1.35 cgd * If kvm_kvatop returns a bogus value or our core
893 1.35 cgd * file is truncated, we might wind up seeking beyond
894 1.35 cgd * the end of the core file in which case the read will
895 1.35 cgd * return 0 (EOF).
896 1.35 cgd */
897 1.35 cgd if (cc == 0)
898 1.35 cgd break;
899 1.39 cgd cp = (char *)cp + cc;
900 1.35 cgd kva += cc;
901 1.35 cgd len -= cc;
902 1.3 cgd }
903 1.35 cgd return ((char *)cp - (char *)buf);
904 1.3 cgd }
905 1.35 cgd /* NOTREACHED */
906 1.3 cgd }
907 1.3 cgd
908 1.35 cgd ssize_t
909 1.88 joerg kvm_write(kvm_t *kd, u_long kva, const void *buf, size_t len)
910 1.35 cgd {
911 1.55 perry int cc;
912 1.26 pk
913 1.65 simonb if (ISKMEM(kd)) {
914 1.35 cgd /*
915 1.35 cgd * Just like kvm_read, only we write.
916 1.35 cgd */
917 1.35 cgd errno = 0;
918 1.57 thorpej cc = pwrite(kd->vmfd, buf, len, (off_t)kva);
919 1.35 cgd if (cc < 0) {
920 1.35 cgd _kvm_syserr(kd, 0, "kvm_write");
921 1.56 msaitoh return (-1);
922 1.35 cgd } else if (cc < len)
923 1.35 cgd _kvm_err(kd, kd->program, "short write");
924 1.35 cgd return (cc);
925 1.65 simonb } else if (ISSYSCTL(kd)) {
926 1.65 simonb _kvm_err(kd, kd->program, "kvm_open called with KVM_NO_FILES, "
927 1.65 simonb "can't use kvm_write");
928 1.65 simonb return (-1);
929 1.35 cgd } else {
930 1.35 cgd _kvm_err(kd, kd->program,
931 1.35 cgd "kvm_write not implemented for dead kernels");
932 1.56 msaitoh return (-1);
933 1.26 pk }
934 1.35 cgd /* NOTREACHED */
935 1.1 cgd }
936