pmap.c revision 1.11 1 /* $NetBSD: pmap.c,v 1.11 2003/02/22 17:45:04 atatat Exp $ */
2
3 /*
4 * Copyright (c) 2002, 2003 The NetBSD Foundation, Inc.
5 * All rights reserved.
6 *
7 * This code is derived from software contributed to The NetBSD Foundation
8 * by Andrew Brown.
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in the
17 * documentation and/or other materials provided with the distribution.
18 * 3. All advertising materials mentioning features or use of this software
19 * must display the following acknowledgement:
20 * This product includes software developed by the NetBSD
21 * Foundation, Inc. and its contributors.
22 * 4. Neither the name of The NetBSD Foundation nor the names of its
23 * contributors may be used to endorse or promote products derived
24 * from this software without specific prior written permission.
25 *
26 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 * POSSIBILITY OF SUCH DAMAGE.
37 */
38
39 #include <sys/cdefs.h>
40 #ifndef lint
41 __RCSID("$NetBSD: pmap.c,v 1.11 2003/02/22 17:45:04 atatat Exp $");
42 #endif
43
44 #include <string.h>
45
46 #ifndef LOCKDEBUG
47 #define VERSION regular
48 #else /* LOCKDEBUG */
49 #define VERSION lockdebug
50 #endif /* LOCKDEBUG */
51
52 #include "pmap.h"
53 #include "main.h"
54
55 static void dump_vm_map(kvm_t *, pid_t, struct kinfo_proc2 *, struct kbit *,
56 struct kbit *, char *);
57 static size_t dump_vm_map_entry(kvm_t *, pid_t, struct kinfo_proc2 *,
58 struct kbit *, struct kbit *, int);
59 static char *findname(kvm_t *, struct kbit *, struct kbit *, struct kbit *,
60 struct kbit *, struct kbit *);
61 static int search_cache(kvm_t *, struct kbit *, char **, char *, size_t);
62
63 /* when recursing, output is indented */
64 #define indent(n) ((n) * (recurse > 1 ? recurse - 1 : 0))
65
66 void
67 PMAPFUNC(process_map,VERSION)(kvm_t *kd, pid_t pid, struct kinfo_proc2 *proc)
68 {
69 struct kbit kbit[2], *vmspace, *vm_map;
70 char *thing;
71
72 vmspace = &kbit[0];
73 vm_map = &kbit[1];
74
75 A(vmspace) = 0;
76 A(vm_map) = 0;
77
78 if (pid > 0) {
79 heapfound = 0;
80 A(vmspace) = (u_long)proc->p_vmspace;
81 S(vmspace) = sizeof(struct vmspace);
82 KDEREF(kd, vmspace);
83 thing = "proc->p_vmspace.vm_map";
84 } else {
85 heapfound = 1; /* but really, do kernels have a heap? */
86 A(vmspace) = 0;
87 S(vmspace) = 0;
88 thing = "kernel_map";
89 }
90
91 S(vm_map) = sizeof(struct vm_map);
92 if (pid > 0) {
93 A(vm_map) = A(vmspace) + offsetof(struct vmspace, vm_map);
94 memcpy(D(vm_map, vm_map), &D(vmspace, vmspace)->vm_map,
95 S(vm_map));
96 } else {
97 A(vm_map) = kernel_map_addr;
98 KDEREF(kd, vm_map);
99 }
100
101 (*dump_vm_map)(kd, pid, proc, vmspace, vm_map, thing);
102 }
103
104 static void
105 dump_vm_map(kvm_t *kd, pid_t pid, struct kinfo_proc2 *proc,
106 struct kbit *vmspace, struct kbit *vm_map, char *mname)
107 {
108 struct kbit kbit[2], *header, *vm_map_entry;
109 struct vm_map_entry *last, *next;
110 size_t total;
111 u_long addr, end;
112
113 header = &kbit[0];
114 vm_map_entry = &kbit[1];
115 A(header) = 0;
116 A(vm_map_entry) = 0;
117
118 A(header) = A(vm_map) + offsetof(struct vm_map, header);
119 S(header) = sizeof(struct vm_map_entry);
120 memcpy(D(header, vm_map_entry), &D(vm_map, vm_map)->header, S(header));
121
122 if (pid > 0 && (debug & PRINT_VMSPACE)) {
123 printf("proc->p_vmspace %p = {", P(vmspace));
124 printf(" vm_refcnt = %d,", D(vmspace, vmspace)->vm_refcnt);
125 printf(" vm_shm = %p,\n", D(vmspace, vmspace)->vm_shm);
126 printf(" vm_rssize = %d,", D(vmspace, vmspace)->vm_rssize);
127 printf(" vm_swrss = %d,", D(vmspace, vmspace)->vm_swrss);
128 printf(" vm_tsize = %d,", D(vmspace, vmspace)->vm_tsize);
129 printf(" vm_dsize = %d,\n", D(vmspace, vmspace)->vm_dsize);
130 printf(" vm_ssize = %d,", D(vmspace, vmspace)->vm_ssize);
131 printf(" vm_taddr = %p,", D(vmspace, vmspace)->vm_taddr);
132 printf(" vm_daddr = %p,\n", D(vmspace, vmspace)->vm_daddr);
133 printf(" vm_maxsaddr = %p,",
134 D(vmspace, vmspace)->vm_maxsaddr);
135 printf(" vm_minsaddr = %p }\n",
136 D(vmspace, vmspace)->vm_minsaddr);
137 }
138
139 if (debug & PRINT_VM_MAP) {
140 printf("%*s%s %p = {", indent(2), "", mname, P(vm_map));
141 printf(" pmap = %p,\n", D(vm_map, vm_map)->pmap);
142 printf("%*s lock = <struct lock>,", indent(2), "");
143 printf(" header = <struct vm_map_entry>,");
144 printf(" nentries = %d,\n", D(vm_map, vm_map)->nentries);
145 printf("%*s size = %lx,", indent(2), "",
146 D(vm_map, vm_map)->size);
147 printf(" ref_count = %d,", D(vm_map, vm_map)->ref_count);
148 printf(" ref_lock = <struct simplelock>,\n");
149 printf("%*s hint = %p,", indent(2), "",
150 D(vm_map, vm_map)->hint);
151 printf(" hint_lock = <struct simplelock>,\n");
152 printf("%*s first_free = %p,", indent(2), "",
153 D(vm_map, vm_map)->first_free);
154 printf(" flags = %x <%s%s%s%s%s%s%s >,\n", D(vm_map, vm_map)->flags,
155 D(vm_map, vm_map)->flags & VM_MAP_PAGEABLE ? " PAGEABLE" : "",
156 D(vm_map, vm_map)->flags & VM_MAP_INTRSAFE ? " INTRSAFE" : "",
157 D(vm_map, vm_map)->flags & VM_MAP_WIREFUTURE ? " WIREFUTURE" : "",
158 D(vm_map, vm_map)->flags & VM_MAP_BUSY ? " BUSY" : "",
159 D(vm_map, vm_map)->flags & VM_MAP_WANTLOCK ? " WANTLOCK" : "",
160 #ifdef VM_MAP_DYING
161 D(vm_map, vm_map)->flags & VM_MAP_DYING ? " DYING" :
162 #endif
163 "",
164 #ifdef VM_MAP_TOPDOWN
165 D(vm_map, vm_map)->flags & VM_MAP_TOPDOWN ? " TOPDOWN" :
166 #endif
167 "");
168 printf("%*s flags_lock = <struct simplelock>,", indent(2), "");
169 printf(" timestamp = %u }\n", D(vm_map, vm_map)->timestamp);
170 }
171 if (print_ddb) {
172 char *name;
173
174 if (A(vm_map) == kernel_map_addr)
175 name = "kernel_map";
176 else if (P(vm_map) == kmem_map)
177 name = "kmem_map";
178 else if (P(vm_map) == mb_map)
179 name = "mb_map";
180 else if (P(vm_map) == phys_map)
181 name = "phys_map";
182 else if (P(vm_map) == exec_map)
183 name = "exec_map";
184 else if (P(vm_map) == pager_map)
185 name = "pager_map";
186 else
187 name = NULL;
188
189 printf("%*s%s %p: [0x%lx->0x%lx]\n", indent(2), "",
190 recurse < 2 ? "MAP" : "SUBMAP", P(vm_map),
191 D(vm_map, vm_map)->min_offset,
192 D(vm_map, vm_map)->max_offset);
193 printf("\t%*s#ent=%d, sz=%ld, ref=%d, version=%d, flags=0x%x\n",
194 indent(2), "", D(vm_map, vm_map)->nentries,
195 D(vm_map, vm_map)->size, D(vm_map, vm_map)->ref_count,
196 D(vm_map, vm_map)->timestamp, D(vm_map, vm_map)->flags);
197 printf("\t%*spmap=%p(resident=<unknown>)\n", indent(2), "",
198 D(vm_map, vm_map)->pmap);
199 if (verbose && name != NULL)
200 printf("\t%*s([ %s ])\n", indent(2), "", name);
201 }
202
203 (*dump_vm_map_entry)(kd, pid, proc, vmspace, header, 1);
204
205 /*
206 * we're not recursing into a submap, so print headers
207 */
208 if (recurse < 2) {
209 /* headers */
210 #ifdef DISABLED_HEADERS
211 if (print_map)
212 printf("%-*s %-*s rwx RWX CPY NCP I W A\n",
213 (int)sizeof(long) * 2 + 2, "Start",
214 (int)sizeof(long) * 2 + 2, "End");
215 if (print_maps)
216 printf("%-*s %-*s rwxp %-*s Dev Inode File\n",
217 (int)sizeof(long) * 2 + 0, "Start",
218 (int)sizeof(long) * 2 + 0, "End",
219 (int)sizeof(long) * 2 + 0, "Offset");
220 if (print_solaris)
221 printf("%-*s %*s Protection File\n",
222 (int)sizeof(long) * 2 + 0, "Start",
223 (int)sizeof(int) * 2 - 1, "Size ");
224 #endif
225 if (print_all)
226 printf("%-*s %-*s %*s %-*s rwxpc RWX I/W/A Dev %*s"
227 " - File\n",
228 (int)sizeof(long) * 2, "Start",
229 (int)sizeof(long) * 2, "End",
230 (int)sizeof(int) * 2, "Size ",
231 (int)sizeof(long) * 2, "Offset",
232 (int)sizeof(int) * 2, "Inode");
233 }
234
235 /* these are the "sub entries" */
236 total = 0;
237 next = D(header, vm_map_entry)->next;
238 last = P(header);
239 end = 0;
240
241 while (next != 0 && next != last) {
242 addr = (u_long)next;
243 A(vm_map_entry) = addr;
244 S(vm_map_entry) = sizeof(struct vm_map_entry);
245 KDEREF(kd, vm_map_entry);
246 next = D(vm_map_entry, vm_map_entry)->next;
247
248 if (end == 0)
249 end = D(vm_map_entry, vm_map_entry)->start;
250 else if (verbose > 1 &&
251 end != D(vm_map_entry, vm_map_entry)->start)
252 printf("%*s*\n", indent(2), "");
253 total += (*dump_vm_map_entry)(kd, pid, proc, vmspace,
254 vm_map_entry, 0);
255
256 end = D(vm_map_entry, vm_map_entry)->end;
257 }
258
259 /*
260 * we're not recursing into a submap, so print totals
261 */
262 if (recurse < 2) {
263 if (print_solaris)
264 printf("%-*s %8luK\n",
265 (int)sizeof(void *) * 2 - 2, " total",
266 (unsigned long)total);
267 if (print_all)
268 printf("%-*s %9luk\n",
269 (int)sizeof(void *) * 4 - 1, " total",
270 (unsigned long)total);
271 }
272 }
273
274 static size_t
275 dump_vm_map_entry(kvm_t *kd, pid_t pid, struct kinfo_proc2 * proc,
276 struct kbit *vmspace, struct kbit *vm_map_entry, int ishead)
277 {
278 struct kbit kbit[3];
279 struct kbit *uvm_obj, *vp, *vfs;
280 struct vm_map_entry *vme;
281 size_t sz;
282 char *name;
283 dev_t dev;
284 ino_t inode;
285
286 uvm_obj = &kbit[0];
287 vp = &kbit[1];
288 vfs = &kbit[2];
289
290 A(uvm_obj) = 0;
291 A(vp) = 0;
292 A(vfs) = 0;
293
294 vme = D(vm_map_entry, vm_map_entry);
295
296 if ((ishead && (debug & PRINT_VM_MAP_HEADER)) ||
297 (!ishead && (debug & PRINT_VM_MAP_ENTRY))) {
298 printf("%*s%s %p = {", indent(2), "",
299 ishead ? "vm_map.header" : "vm_map_entry",
300 P(vm_map_entry));
301 printf(" prev = %p,", vme->prev);
302 printf(" next = %p,\n", vme->next);
303 printf("%*s start = %lx,", indent(2), "", vme->start);
304 printf(" end = %lx,", vme->end);
305 printf(" object.uvm_obj/sub_map = %p,\n", vme->object.uvm_obj);
306 printf("%*s offset = %" PRIx64 ",", indent(2), "",
307 vme->offset);
308 printf(" etype = %x <%s%s%s%s >,", vme->etype,
309 UVM_ET_ISOBJ(vme) ? " OBJ" : "",
310 UVM_ET_ISSUBMAP(vme) ? " SUBMAP" : "",
311 UVM_ET_ISCOPYONWRITE(vme) ? " COW" : "",
312 UVM_ET_ISNEEDSCOPY(vme) ? " NEEDSCOPY" : "");
313 printf(" protection = %x,\n", vme->protection);
314 printf("%*s max_protection = %x,", indent(2), "",
315 vme->max_protection);
316 printf(" inheritance = %d,", vme->inheritance);
317 printf(" wired_count = %d,\n", vme->wired_count);
318 printf("%*s aref = { ar_pageoff = %x, ar_amap = %p },",
319 indent(2), "", vme->aref.ar_pageoff, vme->aref.ar_amap);
320 printf(" advice = %d,\n", vme->advice);
321 printf("%*s flags = %x <%s%s > }\n", indent(2), "",
322 vme->flags,
323 vme->flags & UVM_MAP_STATIC ? " STATIC" : "",
324 vme->flags & UVM_MAP_KMEM ? " KMEM" : "");
325 }
326
327 if (ishead)
328 return (0);
329
330 A(vp) = 0;
331 A(uvm_obj) = 0;
332
333 if (vme->object.uvm_obj != NULL) {
334 P(uvm_obj) = vme->object.uvm_obj;
335 S(uvm_obj) = sizeof(struct uvm_object);
336 KDEREF(kd, uvm_obj);
337 if (UVM_ET_ISOBJ(vme) &&
338 UVM_OBJ_IS_VNODE(D(uvm_obj, uvm_object))) {
339 P(vp) = P(uvm_obj);
340 S(vp) = sizeof(struct vnode);
341 KDEREF(kd, vp);
342 }
343 }
344
345 A(vfs) = NULL;
346
347 if (P(vp) != NULL && D(vp, vnode)->v_mount != NULL) {
348 P(vfs) = D(vp, vnode)->v_mount;
349 S(vfs) = sizeof(struct mount);
350 KDEREF(kd, vfs);
351 D(vp, vnode)->v_mount = D(vfs, mount);
352 }
353
354 /*
355 * dig out the device number and inode number from certain
356 * file system types.
357 */
358 #define V_DATA_IS(vp, type, d, i) do { \
359 struct kbit data; \
360 P(&data) = D(vp, vnode)->v_data; \
361 S(&data) = sizeof(*D(&data, type)); \
362 KDEREF(kd, &data); \
363 dev = D(&data, type)->d; \
364 inode = D(&data, type)->i; \
365 } while (0/*CONSTCOND*/)
366
367 dev = 0;
368 inode = 0;
369
370 if (A(vp) &&
371 D(vp, vnode)->v_type == VREG &&
372 D(vp, vnode)->v_data != NULL) {
373 switch (D(vp, vnode)->v_tag) {
374 case VT_UFS:
375 case VT_LFS:
376 case VT_EXT2FS:
377 V_DATA_IS(vp, inode, i_dev, i_number);
378 break;
379 case VT_ISOFS:
380 V_DATA_IS(vp, iso_node, i_dev, i_number);
381 break;
382 case VT_NON:
383 case VT_NFS:
384 case VT_MFS:
385 case VT_MSDOSFS:
386 case VT_LOFS:
387 case VT_FDESC:
388 case VT_PORTAL:
389 case VT_NULL:
390 case VT_UMAP:
391 case VT_KERNFS:
392 case VT_PROCFS:
393 case VT_AFS:
394 case VT_UNION:
395 case VT_ADOSFS:
396 case VT_CODA:
397 case VT_FILECORE:
398 case VT_NTFS:
399 case VT_VFS:
400 case VT_OVERLAY:
401 case VT_SMBFS:
402 break;
403 }
404 }
405
406 name = findname(kd, vmspace, vm_map_entry, vp, vfs, uvm_obj);
407
408 if (print_map) {
409 printf("%*s0x%lx 0x%lx %c%c%c %c%c%c %s %s %d %d %d",
410 indent(2), "",
411 vme->start, vme->end,
412 (vme->protection & VM_PROT_READ) ? 'r' : '-',
413 (vme->protection & VM_PROT_WRITE) ? 'w' : '-',
414 (vme->protection & VM_PROT_EXECUTE) ? 'x' : '-',
415 (vme->max_protection & VM_PROT_READ) ? 'r' : '-',
416 (vme->max_protection & VM_PROT_WRITE) ? 'w' : '-',
417 (vme->max_protection & VM_PROT_EXECUTE) ? 'x' : '-',
418 (vme->etype & UVM_ET_COPYONWRITE) ? "COW" : "NCOW",
419 (vme->etype & UVM_ET_NEEDSCOPY) ? "NC" : "NNC",
420 vme->inheritance, vme->wired_count,
421 vme->advice);
422 if (verbose) {
423 if (inode)
424 printf(" %d,%d %d",
425 major(dev), minor(dev), inode);
426 if (name[0])
427 printf(" %s", name);
428 }
429 printf("\n");
430 }
431
432 if (print_maps) {
433 printf("%*s%0*lx-%0*lx %c%c%c%c %0*" PRIx64 " %02x:%02x %d %s\n",
434 indent(2), "",
435 (int)sizeof(void *) * 2, vme->start,
436 (int)sizeof(void *) * 2, vme->end,
437 (vme->protection & VM_PROT_READ) ? 'r' : '-',
438 (vme->protection & VM_PROT_WRITE) ? 'w' : '-',
439 (vme->protection & VM_PROT_EXECUTE) ? 'x' : '-',
440 (vme->etype & UVM_ET_COPYONWRITE) ? 'p' : 's',
441 (int)sizeof(void *) * 2,
442 vme->offset,
443 major(dev), minor(dev), inode,
444 (name[0] != ' ') || verbose ? name : "");
445 }
446
447 if (print_ddb) {
448 printf("%*s - %p: 0x%lx->0x%lx: obj=%p/0x%" PRIx64 ", amap=%p/%d\n",
449 indent(2), "",
450 P(vm_map_entry), vme->start, vme->end,
451 vme->object.uvm_obj, vme->offset,
452 vme->aref.ar_amap, vme->aref.ar_pageoff);
453 printf("\t%*ssubmap=%c, cow=%c, nc=%c, prot(max)=%d/%d, inh=%d, "
454 "wc=%d, adv=%d\n",
455 indent(2), "",
456 UVM_ET_ISSUBMAP(vme) ? 'T' : 'F',
457 UVM_ET_ISCOPYONWRITE(vme) ? 'T' : 'F',
458 UVM_ET_ISNEEDSCOPY(vme) ? 'T' : 'F',
459 vme->protection, vme->max_protection,
460 vme->inheritance, vme->wired_count, vme->advice);
461 if (verbose) {
462 printf("\t%*s", indent(2), "");
463 if (inode)
464 printf("(dev=%d,%d ino=%d [%s] [%p])\n",
465 major(dev), minor(dev), inode,
466 name, P(vp));
467 else if (name[0] == ' ')
468 printf("(%s)\n", &name[2]);
469 else
470 printf("(%s)\n", name);
471 }
472 }
473
474 sz = 0;
475 if (print_solaris) {
476 char prot[30];
477
478 prot[0] = '\0';
479 prot[1] = '\0';
480 if (vme->protection & VM_PROT_READ)
481 strcat(prot, "/read");
482 if (vme->protection & VM_PROT_WRITE)
483 strcat(prot, "/write");
484 if (vme->protection & VM_PROT_EXECUTE)
485 strcat(prot, "/exec");
486
487 sz = (size_t)((vme->end - vme->start) / 1024);
488 printf("%*s%0*lX %6luK %-15s %s\n",
489 indent(2), "",
490 (int)sizeof(void *) * 2,
491 (unsigned long)vme->start,
492 (unsigned long)sz,
493 &prot[1],
494 name);
495 }
496
497 if (print_all) {
498 sz = (size_t)((vme->end - vme->start) / 1024);
499 printf(A(vp) ?
500 "%*s%0*lx-%0*lx %7luk %0*" PRIx64 " %c%c%c%c%c (%c%c%c) %d/%d/%d %02d:%02d %7d - %s [%p]\n" :
501 "%*s%0*lx-%0*lx %7luk %0*" PRIx64 " %c%c%c%c%c (%c%c%c) %d/%d/%d %02d:%02d %7d - %s\n",
502 indent(2), "",
503 (int)sizeof(void *) * 2,
504 vme->start,
505 (int)sizeof(void *) * 2,
506 vme->end - (vme->start != vme->end ? 1 : 0),
507 (unsigned long)sz,
508 (int)sizeof(void *) * 2,
509 vme->offset,
510 (vme->protection & VM_PROT_READ) ? 'r' : '-',
511 (vme->protection & VM_PROT_WRITE) ? 'w' : '-',
512 (vme->protection & VM_PROT_EXECUTE) ? 'x' : '-',
513 (vme->etype & UVM_ET_COPYONWRITE) ? 'p' : 's',
514 (vme->etype & UVM_ET_NEEDSCOPY) ? '+' : '-',
515 (vme->max_protection & VM_PROT_READ) ? 'r' : '-',
516 (vme->max_protection & VM_PROT_WRITE) ? 'w' : '-',
517 (vme->max_protection & VM_PROT_EXECUTE) ? 'x' : '-',
518 vme->inheritance,
519 vme->wired_count,
520 vme->advice,
521 major(dev), minor(dev), inode,
522 name, P(vp));
523 }
524
525 /* no access allowed, don't count space */
526 if ((vme->protection & rwx) == 0)
527 sz = 0;
528
529 if (recurse && UVM_ET_ISSUBMAP(vme)) {
530 struct kbit mkbit, *submap;
531
532 recurse++;
533 submap = &mkbit;
534 P(submap) = vme->object.sub_map;
535 S(submap) = sizeof(*vme->object.sub_map);
536 KDEREF(kd, submap);
537 (*dump_vm_map)(kd, pid, proc, vmspace, submap, "submap");
538 recurse--;
539 }
540
541 return (sz);
542 }
543
544 static char*
545 findname(kvm_t *kd, struct kbit *vmspace,
546 struct kbit *vm_map_entry, struct kbit *vp,
547 struct kbit *vfs, struct kbit *uvm_obj)
548 {
549 static char buf[1024], *name;
550 struct vm_map_entry *vme;
551 size_t l;
552
553 vme = D(vm_map_entry, vm_map_entry);
554
555 if (UVM_ET_ISOBJ(vme)) {
556 if (A(vfs)) {
557 l = (unsigned)strlen(D(vfs, mount)->mnt_stat.f_mntonname);
558 switch (search_cache(kd, vp, &name, buf, sizeof(buf))) {
559 case 0: /* found something */
560 name--;
561 *name = '/';
562 /*FALLTHROUGH*/
563 case 2: /* found nothing */
564 name -= 5;
565 memcpy(name, " -?- ", (size_t)5);
566 name -= l;
567 memcpy(name,
568 D(vfs, mount)->mnt_stat.f_mntonname, l);
569 break;
570 case 1: /* all is well */
571 name--;
572 *name = '/';
573 if (l != 1) {
574 name -= l;
575 memcpy(name,
576 D(vfs, mount)->mnt_stat.f_mntonname, l);
577 }
578 break;
579 }
580 }
581 else if (UVM_OBJ_IS_DEVICE(D(uvm_obj, uvm_object))) {
582 struct kbit kdev;
583 dev_t dev;
584
585 P(&kdev) = P(uvm_obj);
586 S(&kdev) = sizeof(struct uvm_device);
587 KDEREF(kd, &kdev);
588 dev = D(&kdev, uvm_device)->u_device;
589 name = devname(dev, S_IFCHR);
590 if (name != NULL)
591 snprintf(buf, sizeof(buf), "/dev/%s", name);
592 else
593 snprintf(buf, sizeof(buf), " [ device %d,%d ]",
594 major(dev), minor(dev));
595 name = buf;
596 }
597 else if (UVM_OBJ_IS_AOBJ(D(uvm_obj, uvm_object)))
598 name = " [ uvm_aobj ]";
599 else if (UVM_OBJ_IS_UBCPAGER(D(uvm_obj, uvm_object)))
600 name = " [ ubc_pager ]";
601 else if (UVM_OBJ_IS_VNODE(D(uvm_obj, uvm_object)))
602 name = " [ ?VNODE? ]";
603 else {
604 snprintf(buf, sizeof(buf), " [ ?? %p ?? ]",
605 D(uvm_obj, uvm_object)->pgops);
606 name = buf;
607 }
608 }
609
610 else if (D(vmspace, vmspace)->vm_maxsaddr <=
611 (caddr_t)vme->start &&
612 (D(vmspace, vmspace)->vm_maxsaddr + (size_t)maxssiz) >=
613 (caddr_t)vme->end)
614 name = " [ stack ]";
615
616 else if ((vme->protection & rwx) == rwx && !heapfound) {
617 /* XXX this could probably be done better */
618 heapfound = 1;
619 name = " [ heap ]";
620 }
621
622 else
623 name = " [ anon ]";
624
625 return (name);
626 }
627
628 static int
629 search_cache(kvm_t *kd, struct kbit *vp, char **name, char *buf, size_t blen)
630 {
631 char *o, *e;
632 struct cache_entry *ce;
633 struct kbit svp;
634 u_long cid;
635
636 if (nchashtbl == NULL)
637 load_name_cache(kd);
638
639 P(&svp) = P(vp);
640 S(&svp) = sizeof(struct vnode);
641 cid = D(vp, vnode)->v_id;
642
643 e = &buf[blen - 1];
644 o = e;
645 do {
646 LIST_FOREACH(ce, &lcache, ce_next)
647 if (ce->ce_vp == P(&svp) && ce->ce_cid == cid)
648 break;
649 if (ce && ce->ce_vp == P(&svp) && ce->ce_cid == cid) {
650 if (o != e)
651 *(--o) = '/';
652 o -= ce->ce_nlen;
653 memcpy(o, ce->ce_name, (unsigned)ce->ce_nlen);
654 P(&svp) = ce->ce_pvp;
655 cid = ce->ce_pcid;
656 }
657 else
658 break;
659 } while (1/*CONSTCOND*/);
660 *e = '\0';
661 *name = o;
662
663 if (e == o)
664 return (2);
665
666 KDEREF(kd, &svp);
667 return (D(&svp, vnode)->v_flag & VROOT);
668 }
669