kvm.c revision 1.1 1 1.1 cgd /*-
2 1.1 cgd * Copyright (c) 1989 The Regents of the University of California.
3 1.1 cgd * All rights reserved.
4 1.1 cgd *
5 1.1 cgd * Redistribution and use in source and binary forms, with or without
6 1.1 cgd * modification, are permitted provided that the following conditions
7 1.1 cgd * are met:
8 1.1 cgd * 1. Redistributions of source code must retain the above copyright
9 1.1 cgd * notice, this list of conditions and the following disclaimer.
10 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright
11 1.1 cgd * notice, this list of conditions and the following disclaimer in the
12 1.1 cgd * documentation and/or other materials provided with the distribution.
13 1.1 cgd * 3. All advertising materials mentioning features or use of this software
14 1.1 cgd * must display the following acknowledgement:
15 1.1 cgd * This product includes software developed by the University of
16 1.1 cgd * California, Berkeley and its contributors.
17 1.1 cgd * 4. Neither the name of the University nor the names of its contributors
18 1.1 cgd * may be used to endorse or promote products derived from this software
19 1.1 cgd * without specific prior written permission.
20 1.1 cgd *
21 1.1 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
22 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24 1.1 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
25 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31 1.1 cgd * SUCH DAMAGE.
32 1.1 cgd */
33 1.1 cgd
34 1.1 cgd #if defined(LIBC_SCCS) && !defined(lint)
35 1.1 cgd static char sccsid[] = "@(#)kvm.c 5.18 (Berkeley) 5/7/91";
36 1.1 cgd #endif /* LIBC_SCCS and not lint */
37 1.1 cgd
38 1.1 cgd #include <sys/param.h>
39 1.1 cgd #include <sys/user.h>
40 1.1 cgd #include <sys/proc.h>
41 1.1 cgd #include <sys/ioctl.h>
42 1.1 cgd #include <sys/kinfo.h>
43 1.1 cgd #include <sys/tty.h>
44 1.1 cgd #include <machine/vmparam.h>
45 1.1 cgd #include <fcntl.h>
46 1.1 cgd #include <nlist.h>
47 1.1 cgd #include <kvm.h>
48 1.1 cgd #include <ndbm.h>
49 1.1 cgd #include <limits.h>
50 1.1 cgd #include <paths.h>
51 1.1 cgd #include <stdio.h>
52 1.1 cgd #include <string.h>
53 1.1 cgd
54 1.1 cgd #ifdef SPPWAIT
55 1.1 cgd #define NEWVM
56 1.1 cgd #endif
57 1.1 cgd
58 1.1 cgd #ifdef NEWVM
59 1.1 cgd #define btop(x) (((unsigned)(x)) >> PGSHIFT) /* XXX */
60 1.1 cgd #define ptob(x) ((caddr_t)((x) << PGSHIFT)) /* XXX */
61 1.1 cgd #include <vm/vm.h> /* ??? kinfo_proc currently includes this*/
62 1.1 cgd #include <sys/kinfo_proc.h>
63 1.1 cgd #ifdef hp300
64 1.1 cgd #include <hp300/hp300/pte.h>
65 1.1 cgd #endif
66 1.1 cgd #else /* NEWVM */
67 1.1 cgd #include <machine/pte.h>
68 1.1 cgd #include <sys/vmmac.h>
69 1.1 cgd #include <sys/text.h>
70 1.1 cgd #endif /* NEWVM */
71 1.1 cgd
72 1.1 cgd /*
73 1.1 cgd * files
74 1.1 cgd */
75 1.1 cgd static const char *unixf, *memf, *kmemf, *swapf;
76 1.1 cgd static int unixx, mem, kmem, swap;
77 1.1 cgd static DBM *db;
78 1.1 cgd /*
79 1.1 cgd * flags
80 1.1 cgd */
81 1.1 cgd static int deadkernel;
82 1.1 cgd static int kvminit = 0;
83 1.1 cgd static int kvmfilesopen = 0;
84 1.1 cgd /*
85 1.1 cgd * state
86 1.1 cgd */
87 1.1 cgd static struct kinfo_proc *kvmprocbase, *kvmprocptr;
88 1.1 cgd static int kvmnprocs;
89 1.1 cgd /*
90 1.1 cgd * u. buffer
91 1.1 cgd */
92 1.1 cgd static union {
93 1.1 cgd struct user user;
94 1.1 cgd char upages[UPAGES][NBPG];
95 1.1 cgd } user;
96 1.1 cgd /*
97 1.1 cgd * random other stuff
98 1.1 cgd */
99 1.1 cgd #ifndef NEWVM
100 1.1 cgd static struct pte *Usrptmap, *usrpt;
101 1.1 cgd static struct pte *Sysmap;
102 1.1 cgd static int Syssize;
103 1.1 cgd #endif
104 1.1 cgd static int dmmin, dmmax;
105 1.1 cgd static int pcbpf;
106 1.1 cgd static int argaddr0; /* XXX */
107 1.1 cgd static int argaddr1;
108 1.1 cgd static int nswap;
109 1.1 cgd static char *tmp;
110 1.1 cgd #if defined(hp300)
111 1.1 cgd static int lowram;
112 1.1 cgd static struct ste *Sysseg;
113 1.1 cgd #endif
114 1.1 cgd #if defined(i386)
115 1.1 cgd static struct pde *PTD;
116 1.1 cgd #endif
117 1.1 cgd
118 1.1 cgd #define basename(cp) ((tmp=rindex((cp), '/')) ? tmp+1 : (cp))
119 1.1 cgd #define MAXSYMSIZE 256
120 1.1 cgd
121 1.1 cgd #if defined(hp300)
122 1.1 cgd #define pftoc(f) ((f) - lowram)
123 1.1 cgd #define iskva(v) (1)
124 1.1 cgd #endif
125 1.1 cgd
126 1.1 cgd #ifndef pftoc
127 1.1 cgd #define pftoc(f) (f)
128 1.1 cgd #endif
129 1.1 cgd #ifndef iskva
130 1.1 cgd #define iskva(v) ((u_long)(v) & KERNBASE)
131 1.1 cgd #endif
132 1.1 cgd
133 1.1 cgd static struct nlist nl[] = {
134 1.1 cgd { "_Usrptmap" },
135 1.1 cgd #define X_USRPTMAP 0
136 1.1 cgd { "_usrpt" },
137 1.1 cgd #define X_USRPT 1
138 1.1 cgd { "_nswap" },
139 1.1 cgd #define X_NSWAP 2
140 1.1 cgd { "_dmmin" },
141 1.1 cgd #define X_DMMIN 3
142 1.1 cgd { "_dmmax" },
143 1.1 cgd #define X_DMMAX 4
144 1.1 cgd /*
145 1.1 cgd * everything here and down, only if a dead kernel
146 1.1 cgd */
147 1.1 cgd { "_Sysmap" },
148 1.1 cgd #define X_SYSMAP 5
149 1.1 cgd #define X_DEADKERNEL X_SYSMAP
150 1.1 cgd { "_Syssize" },
151 1.1 cgd #define X_SYSSIZE 6
152 1.1 cgd { "_allproc" },
153 1.1 cgd #define X_ALLPROC 7
154 1.1 cgd { "_zombproc" },
155 1.1 cgd #define X_ZOMBPROC 8
156 1.1 cgd { "_nproc" },
157 1.1 cgd #define X_NPROC 9
158 1.1 cgd #define X_LAST 9
159 1.1 cgd #if defined(hp300)
160 1.1 cgd { "_Sysseg" },
161 1.1 cgd #define X_SYSSEG (X_LAST+1)
162 1.1 cgd { "_lowram" },
163 1.1 cgd #define X_LOWRAM (X_LAST+2)
164 1.1 cgd #endif
165 1.1 cgd #if defined(i386)
166 1.1 cgd { "_IdlePTD" },
167 1.1 cgd #define X_IdlePTD (X_LAST+1)
168 1.1 cgd #endif
169 1.1 cgd { "" },
170 1.1 cgd };
171 1.1 cgd
172 1.1 cgd static off_t Vtophys();
173 1.1 cgd static void klseek(), seterr(), setsyserr(), vstodb();
174 1.1 cgd static int getkvars(), kvm_doprocs(), kvm_init();
175 1.1 cgd
176 1.1 cgd /*
177 1.1 cgd * returns 0 if files were opened now,
178 1.1 cgd * 1 if files were already opened,
179 1.1 cgd * -1 if files could not be opened.
180 1.1 cgd */
181 1.1 cgd kvm_openfiles(uf, mf, sf)
182 1.1 cgd const char *uf, *mf, *sf;
183 1.1 cgd {
184 1.1 cgd if (kvmfilesopen)
185 1.1 cgd return (1);
186 1.1 cgd unixx = mem = kmem = swap = -1;
187 1.1 cgd unixf = (uf == NULL) ? _PATH_UNIX : uf;
188 1.1 cgd memf = (mf == NULL) ? _PATH_MEM : mf;
189 1.1 cgd
190 1.1 cgd if ((unixx = open(unixf, O_RDONLY, 0)) == -1) {
191 1.1 cgd setsyserr("can't open %s", unixf);
192 1.1 cgd goto failed;
193 1.1 cgd }
194 1.1 cgd if ((mem = open(memf, O_RDONLY, 0)) == -1) {
195 1.1 cgd setsyserr("can't open %s", memf);
196 1.1 cgd goto failed;
197 1.1 cgd }
198 1.1 cgd if (sf != NULL)
199 1.1 cgd swapf = sf;
200 1.1 cgd if (mf != NULL) {
201 1.1 cgd deadkernel++;
202 1.1 cgd kmemf = mf;
203 1.1 cgd kmem = mem;
204 1.1 cgd swap = -1;
205 1.1 cgd } else {
206 1.1 cgd kmemf = _PATH_KMEM;
207 1.1 cgd if ((kmem = open(kmemf, O_RDONLY, 0)) == -1) {
208 1.1 cgd setsyserr("can't open %s", kmemf);
209 1.1 cgd goto failed;
210 1.1 cgd }
211 1.1 cgd swapf = (sf == NULL) ? _PATH_DRUM : sf;
212 1.1 cgd /*
213 1.1 cgd * live kernel - avoid looking up nlist entries
214 1.1 cgd * past X_DEADKERNEL.
215 1.1 cgd */
216 1.1 cgd nl[X_DEADKERNEL].n_name = "";
217 1.1 cgd }
218 1.1 cgd if (swapf != NULL && ((swap = open(swapf, O_RDONLY, 0)) == -1)) {
219 1.1 cgd seterr("can't open %s", swapf);
220 1.1 cgd goto failed;
221 1.1 cgd }
222 1.1 cgd kvmfilesopen++;
223 1.1 cgd if (kvminit == 0 && kvm_init(NULL, NULL, NULL, 0) == -1) /*XXX*/
224 1.1 cgd return (-1);
225 1.1 cgd return (0);
226 1.1 cgd failed:
227 1.1 cgd kvm_close();
228 1.1 cgd return (-1);
229 1.1 cgd }
230 1.1 cgd
231 1.1 cgd static
232 1.1 cgd kvm_init(uf, mf, sf)
233 1.1 cgd char *uf, *mf, *sf;
234 1.1 cgd {
235 1.1 cgd if (kvmfilesopen == 0 && kvm_openfiles(NULL, NULL, NULL) == -1)
236 1.1 cgd return (-1);
237 1.1 cgd if (getkvars() == -1)
238 1.1 cgd return (-1);
239 1.1 cgd kvminit = 1;
240 1.1 cgd
241 1.1 cgd return (0);
242 1.1 cgd }
243 1.1 cgd
244 1.1 cgd kvm_close()
245 1.1 cgd {
246 1.1 cgd if (unixx != -1) {
247 1.1 cgd close(unixx);
248 1.1 cgd unixx = -1;
249 1.1 cgd }
250 1.1 cgd if (kmem != -1) {
251 1.1 cgd if (kmem != mem)
252 1.1 cgd close(kmem);
253 1.1 cgd /* otherwise kmem is a copy of mem, and will be closed below */
254 1.1 cgd kmem = -1;
255 1.1 cgd }
256 1.1 cgd if (mem != -1) {
257 1.1 cgd close(mem);
258 1.1 cgd mem = -1;
259 1.1 cgd }
260 1.1 cgd if (swap != -1) {
261 1.1 cgd close(swap);
262 1.1 cgd swap = -1;
263 1.1 cgd }
264 1.1 cgd if (db != NULL) {
265 1.1 cgd dbm_close(db);
266 1.1 cgd db = NULL;
267 1.1 cgd }
268 1.1 cgd kvminit = 0;
269 1.1 cgd kvmfilesopen = 0;
270 1.1 cgd deadkernel = 0;
271 1.1 cgd #ifndef NEWVM
272 1.1 cgd if (Sysmap) {
273 1.1 cgd free(Sysmap);
274 1.1 cgd Sysmap = NULL;
275 1.1 cgd }
276 1.1 cgd #endif
277 1.1 cgd }
278 1.1 cgd
279 1.1 cgd kvm_nlist(nl)
280 1.1 cgd struct nlist *nl;
281 1.1 cgd {
282 1.1 cgd datum key, data;
283 1.1 cgd char dbname[MAXPATHLEN];
284 1.1 cgd char dbversion[_POSIX2_LINE_MAX];
285 1.1 cgd char kversion[_POSIX2_LINE_MAX];
286 1.1 cgd int dbversionlen;
287 1.1 cgd char symbuf[MAXSYMSIZE];
288 1.1 cgd struct nlist nbuf, *n;
289 1.1 cgd int num, did;
290 1.1 cgd
291 1.1 cgd if (kvmfilesopen == 0 && kvm_openfiles(NULL, NULL, NULL) == -1)
292 1.1 cgd return (-1);
293 1.1 cgd if (deadkernel)
294 1.1 cgd goto hard2;
295 1.1 cgd /*
296 1.1 cgd * initialize key datum
297 1.1 cgd */
298 1.1 cgd key.dptr = symbuf;
299 1.1 cgd
300 1.1 cgd if (db != NULL)
301 1.1 cgd goto win; /* off to the races */
302 1.1 cgd /*
303 1.1 cgd * open database
304 1.1 cgd */
305 1.1 cgd sprintf(dbname, "%s/kvm_%s", _PATH_VARRUN, basename(unixf));
306 1.1 cgd if ((db = dbm_open(dbname, O_RDONLY, 0)) == NULL)
307 1.1 cgd goto hard2;
308 1.1 cgd /*
309 1.1 cgd * read version out of database
310 1.1 cgd */
311 1.1 cgd bcopy("VERSION", symbuf, sizeof ("VERSION")-1);
312 1.1 cgd key.dsize = (sizeof ("VERSION") - 1) + 1;
313 1.1 cgd data = dbm_fetch(db, key);
314 1.1 cgd if (data.dptr == NULL)
315 1.1 cgd goto hard1;
316 1.1 cgd bcopy(data.dptr, dbversion, data.dsize);
317 1.1 cgd dbversionlen = data.dsize;
318 1.1 cgd /*
319 1.1 cgd * read version string from kernel memory
320 1.1 cgd */
321 1.1 cgd bcopy("_version", symbuf, sizeof ("_version")-1);
322 1.1 cgd key.dsize = (sizeof ("_version")-1) + 1;
323 1.1 cgd data = dbm_fetch(db, key);
324 1.1 cgd if (data.dptr == NULL)
325 1.1 cgd goto hard1;
326 1.1 cgd if (data.dsize != sizeof (struct nlist))
327 1.1 cgd goto hard1;
328 1.1 cgd bcopy(data.dptr, &nbuf, sizeof (struct nlist));
329 1.1 cgd lseek(kmem, nbuf.n_value, 0);
330 1.1 cgd if (read(kmem, kversion, dbversionlen) != dbversionlen)
331 1.1 cgd goto hard1;
332 1.1 cgd /*
333 1.1 cgd * if they match, we win - otherwise do it the hard way
334 1.1 cgd */
335 1.1 cgd if (bcmp(dbversion, kversion, dbversionlen) != 0)
336 1.1 cgd goto hard1;
337 1.1 cgd /*
338 1.1 cgd * getem from the database.
339 1.1 cgd */
340 1.1 cgd win:
341 1.1 cgd num = did = 0;
342 1.1 cgd for (n = nl; n->n_name && n->n_name[0]; n++, num++) {
343 1.1 cgd int len;
344 1.1 cgd /*
345 1.1 cgd * clear out fields from users buffer
346 1.1 cgd */
347 1.1 cgd n->n_type = 0;
348 1.1 cgd n->n_other = 0;
349 1.1 cgd n->n_desc = 0;
350 1.1 cgd n->n_value = 0;
351 1.1 cgd /*
352 1.1 cgd * query db
353 1.1 cgd */
354 1.1 cgd if ((len = strlen(n->n_name)) > MAXSYMSIZE) {
355 1.1 cgd seterr("symbol too large");
356 1.1 cgd return (-1);
357 1.1 cgd }
358 1.1 cgd (void)strcpy(symbuf, n->n_name);
359 1.1 cgd key.dsize = len + 1;
360 1.1 cgd data = dbm_fetch(db, key);
361 1.1 cgd if (data.dptr == NULL || data.dsize != sizeof (struct nlist))
362 1.1 cgd continue;
363 1.1 cgd bcopy(data.dptr, &nbuf, sizeof (struct nlist));
364 1.1 cgd n->n_value = nbuf.n_value;
365 1.1 cgd n->n_type = nbuf.n_type;
366 1.1 cgd n->n_desc = nbuf.n_desc;
367 1.1 cgd n->n_other = nbuf.n_other;
368 1.1 cgd did++;
369 1.1 cgd }
370 1.1 cgd return (num - did);
371 1.1 cgd hard1:
372 1.1 cgd dbm_close(db);
373 1.1 cgd db = NULL;
374 1.1 cgd hard2:
375 1.1 cgd num = nlist(unixf, nl);
376 1.1 cgd if (num == -1)
377 1.1 cgd seterr("nlist (hard way) failed");
378 1.1 cgd return (num);
379 1.1 cgd }
380 1.1 cgd
381 1.1 cgd kvm_getprocs(what, arg)
382 1.1 cgd int what, arg;
383 1.1 cgd {
384 1.1 cgd if (kvminit == 0 && kvm_init(NULL, NULL, NULL, 0) == -1)
385 1.1 cgd return (NULL);
386 1.1 cgd if (!deadkernel) {
387 1.1 cgd int ret, copysize;
388 1.1 cgd
389 1.1 cgd if ((ret = getkerninfo(what, NULL, NULL, arg)) == -1) {
390 1.1 cgd setsyserr("can't get estimate for kerninfo");
391 1.1 cgd return (-1);
392 1.1 cgd }
393 1.1 cgd copysize = ret;
394 1.1 cgd if ((kvmprocbase = (struct kinfo_proc *)malloc(copysize))
395 1.1 cgd == NULL) {
396 1.1 cgd seterr("out of memory");
397 1.1 cgd return (-1);
398 1.1 cgd }
399 1.1 cgd if ((ret = getkerninfo(what, kvmprocbase, ©size,
400 1.1 cgd arg)) == -1) {
401 1.1 cgd setsyserr("can't get proc list");
402 1.1 cgd return (-1);
403 1.1 cgd }
404 1.1 cgd if (copysize % sizeof (struct kinfo_proc)) {
405 1.1 cgd seterr("proc size mismatch (got %d total, kinfo_proc: %d)",
406 1.1 cgd copysize, sizeof (struct kinfo_proc));
407 1.1 cgd return (-1);
408 1.1 cgd }
409 1.1 cgd kvmnprocs = copysize / sizeof (struct kinfo_proc);
410 1.1 cgd } else {
411 1.1 cgd int nproc;
412 1.1 cgd
413 1.1 cgd if (kvm_read((void *) nl[X_NPROC].n_value, &nproc,
414 1.1 cgd sizeof (int)) != sizeof (int)) {
415 1.1 cgd seterr("can't read nproc");
416 1.1 cgd return (-1);
417 1.1 cgd }
418 1.1 cgd if ((kvmprocbase = (struct kinfo_proc *)
419 1.1 cgd malloc(nproc * sizeof (struct kinfo_proc))) == NULL) {
420 1.1 cgd seterr("out of memory (addr: %x nproc = %d)",
421 1.1 cgd nl[X_NPROC].n_value, nproc);
422 1.1 cgd return (-1);
423 1.1 cgd }
424 1.1 cgd kvmnprocs = kvm_doprocs(what, arg, kvmprocbase);
425 1.1 cgd realloc(kvmprocbase, kvmnprocs * sizeof (struct kinfo_proc));
426 1.1 cgd }
427 1.1 cgd kvmprocptr = kvmprocbase;
428 1.1 cgd
429 1.1 cgd return (kvmnprocs);
430 1.1 cgd }
431 1.1 cgd
432 1.1 cgd /*
433 1.1 cgd * XXX - should NOT give up so easily - especially since the kernel
434 1.1 cgd * may be corrupt (it died). Should gather as much information as possible.
435 1.1 cgd * Follows proc ptrs instead of reading table since table may go
436 1.1 cgd * away soon.
437 1.1 cgd */
438 1.1 cgd static
439 1.1 cgd kvm_doprocs(what, arg, buff)
440 1.1 cgd int what, arg;
441 1.1 cgd char *buff;
442 1.1 cgd {
443 1.1 cgd struct proc *p, proc;
444 1.1 cgd register char *bp = buff;
445 1.1 cgd int i = 0;
446 1.1 cgd int doingzomb = 0;
447 1.1 cgd struct eproc eproc;
448 1.1 cgd struct pgrp pgrp;
449 1.1 cgd struct session sess;
450 1.1 cgd struct tty tty;
451 1.1 cgd #ifndef NEWVM
452 1.1 cgd struct text text;
453 1.1 cgd #endif
454 1.1 cgd
455 1.1 cgd /* allproc */
456 1.1 cgd if (kvm_read((void *) nl[X_ALLPROC].n_value, &p,
457 1.1 cgd sizeof (struct proc *)) != sizeof (struct proc *)) {
458 1.1 cgd seterr("can't read allproc");
459 1.1 cgd return (-1);
460 1.1 cgd }
461 1.1 cgd
462 1.1 cgd again:
463 1.1 cgd for (; p; p = proc.p_nxt) {
464 1.1 cgd if (kvm_read(p, &proc, sizeof (struct proc)) !=
465 1.1 cgd sizeof (struct proc)) {
466 1.1 cgd seterr("can't read proc at %x", p);
467 1.1 cgd return (-1);
468 1.1 cgd }
469 1.1 cgd #ifdef NEWVM
470 1.1 cgd if (kvm_read(proc.p_cred, &eproc.e_pcred,
471 1.1 cgd sizeof (struct pcred)) == sizeof (struct pcred))
472 1.1 cgd (void) kvm_read(eproc.e_pcred.pc_ucred, &eproc.e_ucred,
473 1.1 cgd sizeof (struct ucred));
474 1.1 cgd switch(ki_op(what)) {
475 1.1 cgd
476 1.1 cgd case KINFO_PROC_PID:
477 1.1 cgd if (proc.p_pid != (pid_t)arg)
478 1.1 cgd continue;
479 1.1 cgd break;
480 1.1 cgd
481 1.1 cgd
482 1.1 cgd case KINFO_PROC_UID:
483 1.1 cgd if (eproc.e_ucred.cr_uid != (uid_t)arg)
484 1.1 cgd continue;
485 1.1 cgd break;
486 1.1 cgd
487 1.1 cgd case KINFO_PROC_RUID:
488 1.1 cgd if (eproc.e_pcred.p_ruid != (uid_t)arg)
489 1.1 cgd continue;
490 1.1 cgd break;
491 1.1 cgd }
492 1.1 cgd #else
493 1.1 cgd switch(ki_op(what)) {
494 1.1 cgd
495 1.1 cgd case KINFO_PROC_PID:
496 1.1 cgd if (proc.p_pid != (pid_t)arg)
497 1.1 cgd continue;
498 1.1 cgd break;
499 1.1 cgd
500 1.1 cgd
501 1.1 cgd case KINFO_PROC_UID:
502 1.1 cgd if (proc.p_uid != (uid_t)arg)
503 1.1 cgd continue;
504 1.1 cgd break;
505 1.1 cgd
506 1.1 cgd case KINFO_PROC_RUID:
507 1.1 cgd if (proc.p_ruid != (uid_t)arg)
508 1.1 cgd continue;
509 1.1 cgd break;
510 1.1 cgd }
511 1.1 cgd #endif
512 1.1 cgd /*
513 1.1 cgd * gather eproc
514 1.1 cgd */
515 1.1 cgd eproc.e_paddr = p;
516 1.1 cgd if (kvm_read(proc.p_pgrp, &pgrp, sizeof (struct pgrp)) !=
517 1.1 cgd sizeof (struct pgrp)) {
518 1.1 cgd seterr("can't read pgrp at %x", proc.p_pgrp);
519 1.1 cgd return (-1);
520 1.1 cgd }
521 1.1 cgd eproc.e_sess = pgrp.pg_session;
522 1.1 cgd eproc.e_pgid = pgrp.pg_id;
523 1.1 cgd eproc.e_jobc = pgrp.pg_jobc;
524 1.1 cgd if (kvm_read(pgrp.pg_session, &sess, sizeof (struct session))
525 1.1 cgd != sizeof (struct session)) {
526 1.1 cgd seterr("can't read session at %x", pgrp.pg_session);
527 1.1 cgd return (-1);
528 1.1 cgd }
529 1.1 cgd if ((proc.p_flag&SCTTY) && sess.s_ttyp != NULL) {
530 1.1 cgd if (kvm_read(sess.s_ttyp, &tty, sizeof (struct tty))
531 1.1 cgd != sizeof (struct tty)) {
532 1.1 cgd seterr("can't read tty at %x", sess.s_ttyp);
533 1.1 cgd return (-1);
534 1.1 cgd }
535 1.1 cgd eproc.e_tdev = tty.t_dev;
536 1.1 cgd eproc.e_tsess = tty.t_session;
537 1.1 cgd if (tty.t_pgrp != NULL) {
538 1.1 cgd if (kvm_read(tty.t_pgrp, &pgrp, sizeof (struct
539 1.1 cgd pgrp)) != sizeof (struct pgrp)) {
540 1.1 cgd seterr("can't read tpgrp at &x",
541 1.1 cgd tty.t_pgrp);
542 1.1 cgd return (-1);
543 1.1 cgd }
544 1.1 cgd eproc.e_tpgid = pgrp.pg_id;
545 1.1 cgd } else
546 1.1 cgd eproc.e_tpgid = -1;
547 1.1 cgd } else
548 1.1 cgd eproc.e_tdev = NODEV;
549 1.1 cgd if (proc.p_wmesg)
550 1.1 cgd kvm_read(proc.p_wmesg, eproc.e_wmesg, WMESGLEN);
551 1.1 cgd #ifdef NEWVM
552 1.1 cgd (void) kvm_read(proc.p_vmspace, &eproc.e_vm,
553 1.1 cgd sizeof (struct vmspace));
554 1.1 cgd eproc.e_xsize = eproc.e_xrssize =
555 1.1 cgd eproc.e_xccount = eproc.e_xswrss = 0;
556 1.1 cgd #else
557 1.1 cgd if (proc.p_textp) {
558 1.1 cgd kvm_read(proc.p_textp, &text, sizeof (text));
559 1.1 cgd eproc.e_xsize = text.x_size;
560 1.1 cgd eproc.e_xrssize = text.x_rssize;
561 1.1 cgd eproc.e_xccount = text.x_ccount;
562 1.1 cgd eproc.e_xswrss = text.x_swrss;
563 1.1 cgd } else {
564 1.1 cgd eproc.e_xsize = eproc.e_xrssize =
565 1.1 cgd eproc.e_xccount = eproc.e_xswrss = 0;
566 1.1 cgd }
567 1.1 cgd #endif
568 1.1 cgd
569 1.1 cgd switch(ki_op(what)) {
570 1.1 cgd
571 1.1 cgd case KINFO_PROC_PGRP:
572 1.1 cgd if (eproc.e_pgid != (pid_t)arg)
573 1.1 cgd continue;
574 1.1 cgd break;
575 1.1 cgd
576 1.1 cgd case KINFO_PROC_TTY:
577 1.1 cgd if ((proc.p_flag&SCTTY) == 0 ||
578 1.1 cgd eproc.e_tdev != (dev_t)arg)
579 1.1 cgd continue;
580 1.1 cgd break;
581 1.1 cgd }
582 1.1 cgd
583 1.1 cgd i++;
584 1.1 cgd bcopy(&proc, bp, sizeof (struct proc));
585 1.1 cgd bp += sizeof (struct proc);
586 1.1 cgd bcopy(&eproc, bp, sizeof (struct eproc));
587 1.1 cgd bp+= sizeof (struct eproc);
588 1.1 cgd }
589 1.1 cgd if (!doingzomb) {
590 1.1 cgd /* zombproc */
591 1.1 cgd if (kvm_read((void *) nl[X_ZOMBPROC].n_value, &p,
592 1.1 cgd sizeof (struct proc *)) != sizeof (struct proc *)) {
593 1.1 cgd seterr("can't read zombproc");
594 1.1 cgd return (-1);
595 1.1 cgd }
596 1.1 cgd doingzomb = 1;
597 1.1 cgd goto again;
598 1.1 cgd }
599 1.1 cgd
600 1.1 cgd return (i);
601 1.1 cgd }
602 1.1 cgd
603 1.1 cgd struct proc *
604 1.1 cgd kvm_nextproc()
605 1.1 cgd {
606 1.1 cgd
607 1.1 cgd if (!kvmprocbase && kvm_getprocs(0, 0) == -1)
608 1.1 cgd return (NULL);
609 1.1 cgd if (kvmprocptr >= (kvmprocbase + kvmnprocs)) {
610 1.1 cgd seterr("end of proc list");
611 1.1 cgd return (NULL);
612 1.1 cgd }
613 1.1 cgd return((struct proc *)(kvmprocptr++));
614 1.1 cgd }
615 1.1 cgd
616 1.1 cgd struct eproc *
617 1.1 cgd kvm_geteproc(p)
618 1.1 cgd const struct proc *p;
619 1.1 cgd {
620 1.1 cgd return ((struct eproc *)(((char *)p) + sizeof (struct proc)));
621 1.1 cgd }
622 1.1 cgd
623 1.1 cgd kvm_setproc()
624 1.1 cgd {
625 1.1 cgd kvmprocptr = kvmprocbase;
626 1.1 cgd }
627 1.1 cgd
628 1.1 cgd kvm_freeprocs()
629 1.1 cgd {
630 1.1 cgd
631 1.1 cgd if (kvmprocbase) {
632 1.1 cgd free(kvmprocbase);
633 1.1 cgd kvmprocbase = NULL;
634 1.1 cgd }
635 1.1 cgd }
636 1.1 cgd
637 1.1 cgd #ifdef NEWVM
638 1.1 cgd struct user *
639 1.1 cgd kvm_getu(p)
640 1.1 cgd const struct proc *p;
641 1.1 cgd {
642 1.1 cgd register struct kinfo_proc *kp = (struct kinfo_proc *)p;
643 1.1 cgd register int i;
644 1.1 cgd register char *up;
645 1.1 cgd
646 1.1 cgd if (kvminit == 0 && kvm_init(NULL, NULL, NULL, 0) == -1)
647 1.1 cgd return (NULL);
648 1.1 cgd if (p->p_stat == SZOMB) {
649 1.1 cgd seterr("zombie process");
650 1.1 cgd return (NULL);
651 1.1 cgd }
652 1.1 cgd /*
653 1.1 cgd * Reading from swap is too complicated right now.
654 1.1 cgd */
655 1.1 cgd if ((p->p_flag & SLOAD) == 0)
656 1.1 cgd return(NULL);
657 1.1 cgd /*
658 1.1 cgd * Read u-area one page at a time for the benefit of post-mortems
659 1.1 cgd */
660 1.1 cgd up = (char *) p->p_addr;
661 1.1 cgd for (i = 0; i < UPAGES; i++) {
662 1.1 cgd klseek(kmem, (long)up, 0);
663 1.1 cgd if (read(kmem, user.upages[i], CLBYTES) != CLBYTES) {
664 1.1 cgd seterr("cant read page %x of u of pid %d from %s",
665 1.1 cgd up, p->p_pid, kmemf);
666 1.1 cgd return(NULL);
667 1.1 cgd }
668 1.1 cgd up += CLBYTES;
669 1.1 cgd }
670 1.1 cgd pcbpf = (int) btop(p->p_addr); /* what should this be really? */
671 1.1 cgd /*
672 1.1 cgd * Conjure up a physical address for the arguments.
673 1.1 cgd */
674 1.1 cgd argaddr0 = argaddr1 = 0;
675 1.1 cgd #ifdef hp300
676 1.1 cgd if (kp->kp_eproc.e_vm.vm_pmap.pm_ptab) {
677 1.1 cgd struct pte pte[CLSIZE*2];
678 1.1 cgd
679 1.1 cgd klseek(kmem,
680 1.1 cgd (long)&kp->kp_eproc.e_vm.vm_pmap.pm_ptab
681 1.1 cgd [btoc(USRSTACK-CLBYTES*2)], 0);
682 1.1 cgd if (read(kmem, (char *)&pte, sizeof(pte)) == sizeof(pte)) {
683 1.1 cgd #if CLBYTES < 2048
684 1.1 cgd argaddr0 = ctob(pftoc(pte[CLSIZE*0].pg_pfnum));
685 1.1 cgd #endif
686 1.1 cgd argaddr1 = ctob(pftoc(pte[CLSIZE*1].pg_pfnum));
687 1.1 cgd }
688 1.1 cgd }
689 1.1 cgd kp->kp_eproc.e_vm.vm_rssize =
690 1.1 cgd kp->kp_eproc.e_vm.vm_pmap.pm_stats.resident_count; /* XXX */
691 1.1 cgd #endif
692 1.1 cgd
693 1.1 cgd #ifdef i386
694 1.1 cgd if (kp->kp_eproc.e_vm.vm_pmap.pm_pdir) {
695 1.1 cgd struct pde pde;
696 1.1 cgd
697 1.1 cgd klseek(kmem,
698 1.1 cgd (long)(kp->kp_eproc.e_vm.vm_pmap.pm_pdir + UPTDI), 0);
699 1.1 cgd if (read(kmem, (char *)&pde, sizeof pde) == sizeof pde &&
700 1.1 cgd pde.pd_v) {
701 1.1 cgd
702 1.1 cgd struct pte pte;
703 1.1 cgd
704 1.1 cgd lseek(mem, (long)ctob(pde.pd_pfnum) +
705 1.1 cgd (ptei(USRSTACK-CLBYTES) * sizeof pte), 0);
706 1.1 cgd if (read(mem, (char *)&pte, sizeof pte) == sizeof pte && + pte.pg_v) {
707 1.1 cgd argaddr1 = (long)ctob(pte.pg_pfnum);
708 1.1 cgd }
709 1.1 cgd }
710 1.1 cgd }
711 1.1 cgd #endif
712 1.1 cgd return(&user.user);
713 1.1 cgd }
714 1.1 cgd #else
715 1.1 cgd struct user *
716 1.1 cgd kvm_getu(p)
717 1.1 cgd const struct proc *p;
718 1.1 cgd {
719 1.1 cgd struct pte *pteaddr, apte;
720 1.1 cgd struct pte arguutl[HIGHPAGES+(CLSIZE*2)];
721 1.1 cgd register int i;
722 1.1 cgd int ncl;
723 1.1 cgd
724 1.1 cgd if (kvminit == 0 && kvm_init(NULL, NULL, NULL, 0) == -1)
725 1.1 cgd return (NULL);
726 1.1 cgd if (p->p_stat == SZOMB) {
727 1.1 cgd seterr("zombie process");
728 1.1 cgd return (NULL);
729 1.1 cgd }
730 1.1 cgd if ((p->p_flag & SLOAD) == 0) {
731 1.1 cgd if (swap < 0) {
732 1.1 cgd seterr("no swap");
733 1.1 cgd return (NULL);
734 1.1 cgd }
735 1.1 cgd (void) lseek(swap, (long)dtob(p->p_swaddr), 0);
736 1.1 cgd if (read(swap, (char *)&user.user, sizeof (struct user)) !=
737 1.1 cgd sizeof (struct user)) {
738 1.1 cgd seterr("can't read u for pid %d from %s",
739 1.1 cgd p->p_pid, swapf);
740 1.1 cgd return (NULL);
741 1.1 cgd }
742 1.1 cgd pcbpf = 0;
743 1.1 cgd argaddr0 = 0;
744 1.1 cgd argaddr1 = 0;
745 1.1 cgd return (&user.user);
746 1.1 cgd }
747 1.1 cgd pteaddr = &Usrptmap[btokmx(p->p_p0br) + p->p_szpt - 1];
748 1.1 cgd klseek(kmem, (long)pteaddr, 0);
749 1.1 cgd if (read(kmem, (char *)&apte, sizeof(apte)) != sizeof(apte)) {
750 1.1 cgd seterr("can't read indir pte to get u for pid %d from %s",
751 1.1 cgd p->p_pid, kmemf);
752 1.1 cgd return (NULL);
753 1.1 cgd }
754 1.1 cgd lseek(mem, (long)ctob(pftoc(apte.pg_pfnum+1)) - sizeof(arguutl), 0);
755 1.1 cgd if (read(mem, (char *)arguutl, sizeof(arguutl)) != sizeof(arguutl)) {
756 1.1 cgd seterr("can't read page table for u of pid %d from %s",
757 1.1 cgd p->p_pid, memf);
758 1.1 cgd return (NULL);
759 1.1 cgd }
760 1.1 cgd if (arguutl[0].pg_fod == 0 && arguutl[0].pg_pfnum)
761 1.1 cgd argaddr0 = ctob(pftoc(arguutl[0].pg_pfnum));
762 1.1 cgd else
763 1.1 cgd argaddr0 = 0;
764 1.1 cgd if (arguutl[CLSIZE*1].pg_fod == 0 && arguutl[CLSIZE*1].pg_pfnum)
765 1.1 cgd argaddr1 = ctob(pftoc(arguutl[CLSIZE*1].pg_pfnum));
766 1.1 cgd else
767 1.1 cgd argaddr1 = 0;
768 1.1 cgd pcbpf = arguutl[CLSIZE*2].pg_pfnum;
769 1.1 cgd ncl = (sizeof (struct user) + CLBYTES - 1) / CLBYTES;
770 1.1 cgd while (--ncl >= 0) {
771 1.1 cgd i = ncl * CLSIZE;
772 1.1 cgd lseek(mem,
773 1.1 cgd (long)ctob(pftoc(arguutl[(CLSIZE*2)+i].pg_pfnum)), 0);
774 1.1 cgd if (read(mem, user.upages[i], CLBYTES) != CLBYTES) {
775 1.1 cgd seterr("can't read page %d of u of pid %d from %s",
776 1.1 cgd arguutl[(CLSIZE*2)+i].pg_pfnum, p->p_pid, memf);
777 1.1 cgd return(NULL);
778 1.1 cgd }
779 1.1 cgd }
780 1.1 cgd return (&user.user);
781 1.1 cgd }
782 1.1 cgd #endif
783 1.1 cgd
784 1.1 cgd char *
785 1.1 cgd kvm_getargs(p, up)
786 1.1 cgd const struct proc *p;
787 1.1 cgd const struct user *up;
788 1.1 cgd {
789 1.1 cgd static char cmdbuf[CLBYTES*2];
790 1.1 cgd static union {
791 1.1 cgd char argc[CLBYTES*2];
792 1.1 cgd int argi[CLBYTES*2/sizeof (int)];
793 1.1 cgd } argspac;
794 1.1 cgd register char *cp;
795 1.1 cgd register int *ip;
796 1.1 cgd char c;
797 1.1 cgd int nbad;
798 1.1 cgd #ifndef NEWVM
799 1.1 cgd struct dblock db;
800 1.1 cgd #endif
801 1.1 cgd const char *file;
802 1.1 cgd int stkoff = 0;
803 1.1 cgd
804 1.1 cgd #if defined(NEWVM) && defined(hp300)
805 1.1 cgd stkoff = 20; /* XXX for sigcode */
806 1.1 cgd #endif
807 1.1 cgd if (up == NULL || p->p_pid == 0 || p->p_pid == 2)
808 1.1 cgd goto retucomm;
809 1.1 cgd if ((p->p_flag & SLOAD) == 0 || argaddr1 == 0) {
810 1.1 cgd #ifdef NEWVM
811 1.1 cgd goto retucomm; /* XXX for now */
812 1.1 cgd #else
813 1.1 cgd if (swap < 0 || p->p_ssize == 0)
814 1.1 cgd goto retucomm;
815 1.1 cgd vstodb(0, CLSIZE, &up->u_smap, &db, 1);
816 1.1 cgd (void) lseek(swap, (long)dtob(db.db_base), 0);
817 1.1 cgd if (read(swap, (char *)&argspac.argc[CLBYTES], CLBYTES)
818 1.1 cgd != CLBYTES)
819 1.1 cgd goto bad;
820 1.1 cgd vstodb(1, CLSIZE, &up->u_smap, &db, 1);
821 1.1 cgd (void) lseek(swap, (long)dtob(db.db_base), 0);
822 1.1 cgd if (read(swap, (char *)&argspac.argc[0], CLBYTES) != CLBYTES)
823 1.1 cgd goto bad;
824 1.1 cgd file = swapf;
825 1.1 cgd #endif
826 1.1 cgd } else {
827 1.1 cgd if (argaddr0) {
828 1.1 cgd lseek(mem, (long)argaddr0, 0);
829 1.1 cgd if (read(mem, (char *)&argspac, CLBYTES) != CLBYTES)
830 1.1 cgd goto bad;
831 1.1 cgd } else
832 1.1 cgd bzero(&argspac, CLBYTES);
833 1.1 cgd lseek(mem, (long)argaddr1, 0);
834 1.1 cgd if (read(mem, &argspac.argc[CLBYTES], CLBYTES) != CLBYTES)
835 1.1 cgd goto bad;
836 1.1 cgd file = (char *) memf;
837 1.1 cgd }
838 1.1 cgd #ifdef i386
839 1.1 cgd ip = &argspac.argi[(CLBYTES + CLBYTES/2)/sizeof (int)];
840 1.1 cgd #else
841 1.1 cgd ip = &argspac.argi[CLBYTES*2/sizeof (int)];
842 1.1 cgd ip -= 2; /* last arg word and .long 0 */
843 1.1 cgd ip -= stkoff / sizeof (int);
844 1.1 cgd while (*--ip) {
845 1.1 cgd if (ip == argspac.argi)
846 1.1 cgd goto retucomm;
847 1.1 cgd }
848 1.1 cgd *(char *)ip = ' ';
849 1.1 cgd ip++;
850 1.1 cgd nbad = 0;
851 1.1 cgd #endif
852 1.1 cgd for (cp = (char *)ip; cp < &argspac.argc[CLBYTES*2-stkoff]; cp++) {
853 1.1 cgd c = *cp & 0177;
854 1.1 cgd if (c == 0)
855 1.1 cgd *cp = ' ';
856 1.1 cgd else if (c < ' ' || c > 0176) {
857 1.1 cgd if (++nbad >= 5*(0+1)) { /* eflg -> 0 XXX */
858 1.1 cgd *cp++ = ' ';
859 1.1 cgd break;
860 1.1 cgd }
861 1.1 cgd *cp = '?';
862 1.1 cgd } else if (0 == 0 && c == '=') { /* eflg -> 0 XXX */
863 1.1 cgd while (*--cp != ' ')
864 1.1 cgd if (cp <= (char *)ip)
865 1.1 cgd break;
866 1.1 cgd break;
867 1.1 cgd }
868 1.1 cgd }
869 1.1 cgd *cp = 0;
870 1.1 cgd while (*--cp == ' ')
871 1.1 cgd *cp = 0;
872 1.1 cgd cp = (char *)ip;
873 1.1 cgd (void) strncpy(cmdbuf, cp, &argspac.argc[CLBYTES*2] - cp);
874 1.1 cgd if (cp[0] == '-' || cp[0] == '?' || cp[0] <= ' ') {
875 1.1 cgd (void) strcat(cmdbuf, " (");
876 1.1 cgd (void) strncat(cmdbuf, p->p_comm, sizeof(p->p_comm));
877 1.1 cgd (void) strcat(cmdbuf, ")");
878 1.1 cgd }
879 1.1 cgd return (cmdbuf);
880 1.1 cgd
881 1.1 cgd bad:
882 1.1 cgd seterr("error locating command name for pid %d from %s",
883 1.1 cgd p->p_pid, file);
884 1.1 cgd retucomm:
885 1.1 cgd (void) strcpy(cmdbuf, " (");
886 1.1 cgd (void) strncat(cmdbuf, p->p_comm, sizeof (p->p_comm));
887 1.1 cgd (void) strcat(cmdbuf, ")");
888 1.1 cgd return (cmdbuf);
889 1.1 cgd }
890 1.1 cgd
891 1.1 cgd
892 1.1 cgd static
893 1.1 cgd getkvars()
894 1.1 cgd {
895 1.1 cgd if (kvm_nlist(nl) == -1)
896 1.1 cgd return (-1);
897 1.1 cgd if (deadkernel) {
898 1.1 cgd /* We must do the sys map first because klseek uses it */
899 1.1 cgd long addr;
900 1.1 cgd
901 1.1 cgd #ifndef NEWVM
902 1.1 cgd Syssize = nl[X_SYSSIZE].n_value;
903 1.1 cgd Sysmap = (struct pte *)
904 1.1 cgd calloc((unsigned) Syssize, sizeof (struct pte));
905 1.1 cgd if (Sysmap == NULL) {
906 1.1 cgd seterr("out of space for Sysmap");
907 1.1 cgd return (-1);
908 1.1 cgd }
909 1.1 cgd addr = (long) nl[X_SYSMAP].n_value;
910 1.1 cgd addr &= ~KERNBASE;
911 1.1 cgd (void) lseek(kmem, addr, 0);
912 1.1 cgd if (read(kmem, (char *) Sysmap, Syssize * sizeof (struct pte))
913 1.1 cgd != Syssize * sizeof (struct pte)) {
914 1.1 cgd seterr("can't read Sysmap");
915 1.1 cgd return (-1);
916 1.1 cgd }
917 1.1 cgd #endif
918 1.1 cgd #if defined(hp300)
919 1.1 cgd addr = (long) nl[X_LOWRAM].n_value;
920 1.1 cgd (void) lseek(kmem, addr, 0);
921 1.1 cgd if (read(kmem, (char *) &lowram, sizeof (lowram))
922 1.1 cgd != sizeof (lowram)) {
923 1.1 cgd seterr("can't read lowram");
924 1.1 cgd return (-1);
925 1.1 cgd }
926 1.1 cgd lowram = btop(lowram);
927 1.1 cgd Sysseg = (struct ste *) malloc(NBPG);
928 1.1 cgd if (Sysseg == NULL) {
929 1.1 cgd seterr("out of space for Sysseg");
930 1.1 cgd return (-1);
931 1.1 cgd }
932 1.1 cgd addr = (long) nl[X_SYSSEG].n_value;
933 1.1 cgd (void) lseek(kmem, addr, 0);
934 1.1 cgd read(kmem, (char *)&addr, sizeof(addr));
935 1.1 cgd (void) lseek(kmem, (long)addr, 0);
936 1.1 cgd if (read(kmem, (char *) Sysseg, NBPG) != NBPG) {
937 1.1 cgd seterr("can't read Sysseg");
938 1.1 cgd return (-1);
939 1.1 cgd }
940 1.1 cgd #endif
941 1.1 cgd #if defined(i386)
942 1.1 cgd PTD = (struct pde *) malloc(NBPG);
943 1.1 cgd if (PTD == NULL) {
944 1.1 cgd seterr("out of space for PTD");
945 1.1 cgd return (-1);
946 1.1 cgd }
947 1.1 cgd addr = (long) nl[X_IdlePTD].n_value;
948 1.1 cgd (void) lseek(kmem, addr, 0);
949 1.1 cgd read(kmem, (char *)&addr, sizeof(addr));
950 1.1 cgd (void) lseek(kmem, (long)addr, 0);
951 1.1 cgd if (read(kmem, (char *) PTD, NBPG) != NBPG) {
952 1.1 cgd seterr("can't read PTD");
953 1.1 cgd return (-1);
954 1.1 cgd }
955 1.1 cgd #endif
956 1.1 cgd }
957 1.1 cgd #ifndef NEWVM
958 1.1 cgd usrpt = (struct pte *)nl[X_USRPT].n_value;
959 1.1 cgd Usrptmap = (struct pte *)nl[X_USRPTMAP].n_value;
960 1.1 cgd #endif
961 1.1 cgd if (kvm_read((void *) nl[X_NSWAP].n_value, &nswap, sizeof (long)) !=
962 1.1 cgd sizeof (long)) {
963 1.1 cgd seterr("can't read nswap");
964 1.1 cgd return (-1);
965 1.1 cgd }
966 1.1 cgd if (kvm_read((void *) nl[X_DMMIN].n_value, &dmmin, sizeof (long)) !=
967 1.1 cgd sizeof (long)) {
968 1.1 cgd seterr("can't read dmmin");
969 1.1 cgd return (-1);
970 1.1 cgd }
971 1.1 cgd if (kvm_read((void *) nl[X_DMMAX].n_value, &dmmax, sizeof (long)) !=
972 1.1 cgd sizeof (long)) {
973 1.1 cgd seterr("can't read dmmax");
974 1.1 cgd return (-1);
975 1.1 cgd }
976 1.1 cgd return (0);
977 1.1 cgd }
978 1.1 cgd
979 1.1 cgd kvm_read(loc, buf, len)
980 1.1 cgd void *loc;
981 1.1 cgd void *buf;
982 1.1 cgd {
983 1.1 cgd if (kvmfilesopen == 0 && kvm_openfiles(NULL, NULL, NULL) == -1)
984 1.1 cgd return (-1);
985 1.1 cgd if (iskva(loc)) {
986 1.1 cgd klseek(kmem, (off_t) loc, 0);
987 1.1 cgd if (read(kmem, buf, len) != len) {
988 1.1 cgd seterr("error reading kmem at %x", loc);
989 1.1 cgd return (-1);
990 1.1 cgd }
991 1.1 cgd } else {
992 1.1 cgd lseek(mem, (off_t) loc, 0);
993 1.1 cgd if (read(mem, buf, len) != len) {
994 1.1 cgd seterr("error reading mem at %x", loc);
995 1.1 cgd return (-1);
996 1.1 cgd }
997 1.1 cgd }
998 1.1 cgd return (len);
999 1.1 cgd }
1000 1.1 cgd
1001 1.1 cgd static void
1002 1.1 cgd klseek(fd, loc, off)
1003 1.1 cgd int fd;
1004 1.1 cgd off_t loc;
1005 1.1 cgd int off;
1006 1.1 cgd {
1007 1.1 cgd
1008 1.1 cgd if (deadkernel) {
1009 1.1 cgd if ((loc = Vtophys(loc)) == -1)
1010 1.1 cgd return;
1011 1.1 cgd }
1012 1.1 cgd (void) lseek(fd, (off_t)loc, off);
1013 1.1 cgd }
1014 1.1 cgd
1015 1.1 cgd #ifndef NEWVM
1016 1.1 cgd /*
1017 1.1 cgd * Given a base/size pair in virtual swap area,
1018 1.1 cgd * return a physical base/size pair which is the
1019 1.1 cgd * (largest) initial, physically contiguous block.
1020 1.1 cgd */
1021 1.1 cgd static void
1022 1.1 cgd vstodb(vsbase, vssize, dmp, dbp, rev)
1023 1.1 cgd register int vsbase;
1024 1.1 cgd int vssize;
1025 1.1 cgd struct dmap *dmp;
1026 1.1 cgd register struct dblock *dbp;
1027 1.1 cgd {
1028 1.1 cgd register int blk = dmmin;
1029 1.1 cgd register swblk_t *ip = dmp->dm_map;
1030 1.1 cgd
1031 1.1 cgd vsbase = ctod(vsbase);
1032 1.1 cgd vssize = ctod(vssize);
1033 1.1 cgd if (vsbase < 0 || vsbase + vssize > dmp->dm_size)
1034 1.1 cgd /*panic("vstodb")*/;
1035 1.1 cgd while (vsbase >= blk) {
1036 1.1 cgd vsbase -= blk;
1037 1.1 cgd if (blk < dmmax)
1038 1.1 cgd blk *= 2;
1039 1.1 cgd ip++;
1040 1.1 cgd }
1041 1.1 cgd if (*ip <= 0 || *ip + blk > nswap)
1042 1.1 cgd /*panic("vstodb")*/;
1043 1.1 cgd dbp->db_size = MIN(vssize, blk - vsbase);
1044 1.1 cgd dbp->db_base = *ip + (rev ? blk - (vsbase + dbp->db_size) : vsbase);
1045 1.1 cgd }
1046 1.1 cgd #endif
1047 1.1 cgd
1048 1.1 cgd #ifdef NEWVM
1049 1.1 cgd static off_t
1050 1.1 cgd Vtophys(loc)
1051 1.1 cgd u_long loc;
1052 1.1 cgd {
1053 1.1 cgd off_t newloc = (off_t) -1;
1054 1.1 cgd #ifdef hp300
1055 1.1 cgd int p, ste, pte;
1056 1.1 cgd
1057 1.1 cgd ste = *(int *)&Sysseg[loc >> SG_ISHIFT];
1058 1.1 cgd if ((ste & SG_V) == 0) {
1059 1.1 cgd seterr("vtophys: segment not valid");
1060 1.1 cgd return((off_t) -1);
1061 1.1 cgd }
1062 1.1 cgd p = btop(loc & SG_PMASK);
1063 1.1 cgd newloc = (ste & SG_FRAME) + (p * sizeof(struct pte));
1064 1.1 cgd (void) lseek(kmem, (long)(newloc-(off_t)ptob(lowram)), 0);
1065 1.1 cgd if (read(kmem, (char *)&pte, sizeof pte) != sizeof pte) {
1066 1.1 cgd seterr("vtophys: cannot locate pte");
1067 1.1 cgd return((off_t) -1);
1068 1.1 cgd }
1069 1.1 cgd newloc = pte & PG_FRAME;
1070 1.1 cgd if (pte == PG_NV || newloc < (off_t)ptob(lowram)) {
1071 1.1 cgd seterr("vtophys: page not valid");
1072 1.1 cgd return((off_t) -1);
1073 1.1 cgd }
1074 1.1 cgd newloc = (newloc - (off_t)ptob(lowram)) + (loc & PGOFSET);
1075 1.1 cgd #endif
1076 1.1 cgd #ifdef i386
1077 1.1 cgd struct pde pde;
1078 1.1 cgd struct pte pte;
1079 1.1 cgd int p;
1080 1.1 cgd
1081 1.1 cgd pde = PTD[loc >> PD_SHIFT];
1082 1.1 cgd if (pde.pd_v == 0) {
1083 1.1 cgd seterr("vtophys: page directory entry not valid");
1084 1.1 cgd return((off_t) -1);
1085 1.1 cgd }
1086 1.1 cgd p = btop(loc & PT_MASK);
1087 1.1 cgd newloc = pde.pd_pfnum + (p * sizeof(struct pte));
1088 1.1 cgd (void) lseek(kmem, (long)newloc, 0);
1089 1.1 cgd if (read(kmem, (char *)&pte, sizeof pte) != sizeof pte) {
1090 1.1 cgd seterr("vtophys: cannot obtain desired pte");
1091 1.1 cgd return((off_t) -1);
1092 1.1 cgd }
1093 1.1 cgd newloc = pte.pg_pfnum;
1094 1.1 cgd if (pte.pg_v == 0) {
1095 1.1 cgd seterr("vtophys: page table entry not valid");
1096 1.1 cgd return((off_t) -1);
1097 1.1 cgd }
1098 1.1 cgd newloc += (loc & PGOFSET);
1099 1.1 cgd #endif
1100 1.1 cgd return((off_t) newloc);
1101 1.1 cgd }
1102 1.1 cgd #else
1103 1.1 cgd static off_t
1104 1.1 cgd vtophys(loc)
1105 1.1 cgd long loc;
1106 1.1 cgd {
1107 1.1 cgd int p;
1108 1.1 cgd off_t newloc;
1109 1.1 cgd register struct pte *pte;
1110 1.1 cgd
1111 1.1 cgd newloc = loc & ~KERNBASE;
1112 1.1 cgd p = btop(newloc);
1113 1.1 cgd #if defined(vax) || defined(tahoe)
1114 1.1 cgd if ((loc & KERNBASE) == 0) {
1115 1.1 cgd seterr("vtophys: translating non-kernel address");
1116 1.1 cgd return((off_t) -1);
1117 1.1 cgd }
1118 1.1 cgd #endif
1119 1.1 cgd if (p >= Syssize) {
1120 1.1 cgd seterr("vtophys: page out of bound (%d>=%d)", p, Syssize);
1121 1.1 cgd return((off_t) -1);
1122 1.1 cgd }
1123 1.1 cgd pte = &Sysmap[p];
1124 1.1 cgd if (pte->pg_v == 0 && (pte->pg_fod || pte->pg_pfnum == 0)) {
1125 1.1 cgd seterr("vtophys: page not valid");
1126 1.1 cgd return((off_t) -1);
1127 1.1 cgd }
1128 1.1 cgd #if defined(hp300)
1129 1.1 cgd if (pte->pg_pfnum < lowram) {
1130 1.1 cgd seterr("vtophys: non-RAM page (%d<%d)", pte->pg_pfnum, lowram);
1131 1.1 cgd return((off_t) -1);
1132 1.1 cgd }
1133 1.1 cgd #endif
1134 1.1 cgd loc = (long) (ptob(pftoc(pte->pg_pfnum)) + (loc & PGOFSET));
1135 1.1 cgd return(loc);
1136 1.1 cgd }
1137 1.1 cgd #endif
1138 1.1 cgd
1139 1.1 cgd #include <varargs.h>
1140 1.1 cgd static char errbuf[_POSIX2_LINE_MAX];
1141 1.1 cgd
1142 1.1 cgd static void
1143 1.1 cgd seterr(va_alist)
1144 1.1 cgd va_dcl
1145 1.1 cgd {
1146 1.1 cgd char *fmt;
1147 1.1 cgd va_list ap;
1148 1.1 cgd
1149 1.1 cgd va_start(ap);
1150 1.1 cgd fmt = va_arg(ap, char *);
1151 1.1 cgd (void) vsnprintf(errbuf, _POSIX2_LINE_MAX, fmt, ap);
1152 1.1 cgd va_end(ap);
1153 1.1 cgd }
1154 1.1 cgd
1155 1.1 cgd static void
1156 1.1 cgd setsyserr(va_alist)
1157 1.1 cgd va_dcl
1158 1.1 cgd {
1159 1.1 cgd char *fmt, *cp;
1160 1.1 cgd va_list ap;
1161 1.1 cgd extern int errno;
1162 1.1 cgd
1163 1.1 cgd va_start(ap);
1164 1.1 cgd fmt = va_arg(ap, char *);
1165 1.1 cgd (void) vsnprintf(errbuf, _POSIX2_LINE_MAX, fmt, ap);
1166 1.1 cgd for (cp=errbuf; *cp; cp++)
1167 1.1 cgd ;
1168 1.1 cgd snprintf(cp, _POSIX2_LINE_MAX - (cp - errbuf), ": %s", strerror(errno));
1169 1.1 cgd va_end(ap);
1170 1.1 cgd }
1171 1.1 cgd
1172 1.1 cgd char *
1173 1.1 cgd kvm_geterr()
1174 1.1 cgd {
1175 1.1 cgd return (errbuf);
1176 1.1 cgd }
1177