Merge branch 'vendor/EXPAT'
[dragonfly.git] / sys / vm / vm_meter.c
1 /*
2  * Copyright (c) 1982, 1986, 1989, 1993
3  *      The Regents of the University of California.  All rights reserved.
4  *
5  * Redistribution and use in source and binary forms, with or without
6  * modification, are permitted provided that the following conditions
7  * are met:
8  * 1. Redistributions of source code must retain the above copyright
9  *    notice, this list of conditions and the following disclaimer.
10  * 2. Redistributions in binary form must reproduce the above copyright
11  *    notice, this list of conditions and the following disclaimer in the
12  *    documentation and/or other materials provided with the distribution.
13  * 3. All advertising materials mentioning features or use of this software
14  *    must display the following acknowledgement:
15  *      This product includes software developed by the University of
16  *      California, Berkeley and its contributors.
17  * 4. Neither the name of the University nor the names of its contributors
18  *    may be used to endorse or promote products derived from this software
19  *    without specific prior written permission.
20  *
21  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
22  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
25  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31  * SUCH DAMAGE.
32  *
33  *      @(#)vm_meter.c  8.4 (Berkeley) 1/4/94
34  * $FreeBSD: src/sys/vm/vm_meter.c,v 1.34.2.7 2002/10/10 19:28:22 dillon Exp $
35  * $DragonFly: src/sys/vm/vm_meter.c,v 1.15 2008/04/28 18:04:08 dillon Exp $
36  */
37
38 #include <sys/param.h>
39 #include <sys/proc.h>
40 #include <sys/systm.h>
41 #include <sys/kernel.h>
42 #include <sys/resource.h>
43 #include <sys/vmmeter.h>
44
45 #include <vm/vm.h>
46 #include <vm/vm_page.h>
47 #include <vm/vm_extern.h>
48 #include <vm/vm_param.h>
49 #include <sys/lock.h>
50 #include <vm/pmap.h>
51 #include <vm/vm_map.h>
52 #include <vm/vm_object.h>
53 #include <sys/sysctl.h>
54
55 struct vmstats vmstats;
56
57 static int maxslp = MAXSLP;
58
59 SYSCTL_UINT(_vm, VM_V_FREE_MIN, v_free_min,
60         CTLFLAG_RW, &vmstats.v_free_min, 0, "");
61 SYSCTL_UINT(_vm, VM_V_FREE_TARGET, v_free_target,
62         CTLFLAG_RW, &vmstats.v_free_target, 0, "");
63 SYSCTL_UINT(_vm, VM_V_FREE_RESERVED, v_free_reserved,
64         CTLFLAG_RW, &vmstats.v_free_reserved, 0, "");
65 SYSCTL_UINT(_vm, VM_V_INACTIVE_TARGET, v_inactive_target,
66         CTLFLAG_RW, &vmstats.v_inactive_target, 0, "");
67 SYSCTL_UINT(_vm, VM_V_CACHE_MIN, v_cache_min,
68         CTLFLAG_RW, &vmstats.v_cache_min, 0, "");
69 SYSCTL_UINT(_vm, VM_V_CACHE_MAX, v_cache_max,
70         CTLFLAG_RW, &vmstats.v_cache_max, 0, "");
71 SYSCTL_UINT(_vm, VM_V_PAGEOUT_FREE_MIN, v_pageout_free_min,
72         CTLFLAG_RW, &vmstats.v_pageout_free_min, 0, "");
73 SYSCTL_UINT(_vm, OID_AUTO, v_free_severe,
74         CTLFLAG_RW, &vmstats.v_free_severe, 0, "");
75
76 SYSCTL_STRUCT(_vm, VM_LOADAVG, loadavg, CTLFLAG_RD, 
77     &averunnable, loadavg, "Machine loadaverage history");
78
79 static int do_vmtotal_callback(struct proc *p, void *data);
80
81 static int
82 do_vmtotal(SYSCTL_HANDLER_ARGS)
83 {
84         struct vmtotal total;
85         struct vmtotal *totalp;
86         vm_object_t object;
87
88         totalp = &total;
89         bzero(totalp, sizeof *totalp);
90
91         /*
92          * Mark all objects as inactive.
93          */
94         for (object = TAILQ_FIRST(&vm_object_list);
95             object != NULL;
96             object = TAILQ_NEXT(object,object_list)) {
97                 if (object->type == OBJT_MARKER)
98                         continue;
99                 vm_object_clear_flag(object, OBJ_ACTIVE);
100         }
101
102         /*
103          * Calculate process statistics.
104          */
105         allproc_scan(do_vmtotal_callback, totalp);
106
107         /*
108          * Calculate object memory usage statistics.
109          */
110         for (object = TAILQ_FIRST(&vm_object_list);
111             object != NULL;
112             object = TAILQ_NEXT(object, object_list)) {
113                 /*
114                  * devices, like /dev/mem, will badly skew our totals.
115                  * markers aren't real objects.
116                  */
117                 if (object->type == OBJT_MARKER)
118                         continue;
119                 if (object->type == OBJT_DEVICE)
120                         continue;
121                 totalp->t_vm += object->size;
122                 totalp->t_rm += object->resident_page_count;
123                 if (object->flags & OBJ_ACTIVE) {
124                         totalp->t_avm += object->size;
125                         totalp->t_arm += object->resident_page_count;
126                 }
127                 if (object->shadow_count > 1) {
128                         /* shared object */
129                         totalp->t_vmshr += object->size;
130                         totalp->t_rmshr += object->resident_page_count;
131                         if (object->flags & OBJ_ACTIVE) {
132                                 totalp->t_avmshr += object->size;
133                                 totalp->t_armshr += object->resident_page_count;
134                         }
135                 }
136         }
137         totalp->t_free = vmstats.v_free_count + vmstats.v_cache_count;
138         return (sysctl_handle_opaque(oidp, totalp, sizeof total, req));
139 }
140
141 static int
142 do_vmtotal_callback(struct proc *p, void *data)
143 {
144         struct vmtotal *totalp = data;
145         struct lwp *lp;
146         vm_map_entry_t entry;
147         vm_map_t map;
148         int paging;
149
150         if (p->p_flag & P_SYSTEM)
151                 return(0);
152
153         FOREACH_LWP_IN_PROC(lp, p) {
154                 switch (lp->lwp_stat) {
155                 case LSSTOP:
156                 case LSSLEEP:
157                         if ((p->p_flag & P_SWAPPEDOUT) == 0) {
158                                 if ((lp->lwp_flag & LWP_SINTR) == 0)
159                                         totalp->t_dw++;
160                                 else if (lp->lwp_slptime < maxslp)
161                                         totalp->t_sl++;
162                         } else if (lp->lwp_slptime < maxslp) {
163                                 totalp->t_sw++;
164                         }
165                         if (lp->lwp_slptime >= maxslp)
166                                 return(0);
167                         break;
168
169                 case LSRUN:
170                         if (p->p_flag & P_SWAPPEDOUT)
171                                 totalp->t_sw++;
172                         else
173                                 totalp->t_rq++;
174                         if (p->p_stat == SIDL)
175                                 return(0);
176                         break;
177
178                 default:
179                         return (0);
180                 }
181         }
182         /*
183          * Note active objects.
184          */
185         paging = 0;
186         if (p->p_vmspace) {
187                 for (map = &p->p_vmspace->vm_map, entry = map->header.next;
188                     entry != &map->header; entry = entry->next) {
189                         if (entry->maptype != VM_MAPTYPE_NORMAL &&
190                             entry->maptype != VM_MAPTYPE_VPAGETABLE) {
191                                 continue;
192                         }
193                         if (entry->object.vm_object == NULL)
194                                 continue;
195                         vm_object_set_flag(entry->object.vm_object, OBJ_ACTIVE);
196                         paging |= entry->object.vm_object->paging_in_progress;
197                 }
198         }
199         if (paging)
200                 totalp->t_pw++;
201         return(0);
202 }
203
204
205 static int
206 do_vmstats(SYSCTL_HANDLER_ARGS)
207 {
208         struct vmstats vms = vmstats;
209         return (sysctl_handle_opaque(oidp, &vms, sizeof(vms), req));
210 }
211
212 static int
213 do_vmmeter(SYSCTL_HANDLER_ARGS)
214 {
215         int boffset = offsetof(struct vmmeter, vmmeter_uint_begin);
216         int eoffset = offsetof(struct vmmeter, vmmeter_uint_end);
217         struct vmmeter vmm;
218         int i;
219
220         bzero(&vmm, sizeof(vmm));
221         for (i = 0; i < ncpus; ++i) {
222                 int off;
223                 struct globaldata *gd = globaldata_find(i);
224
225                 for (off = boffset; off <= eoffset; off += sizeof(u_int)) {
226                         *(u_int *)((char *)&vmm + off) +=
227                                 *(u_int *)((char *)&gd->gd_cnt + off);
228                 }
229                 
230         }
231         vmm.v_intr += vmm.v_ipi + vmm.v_timer;
232         return (sysctl_handle_opaque(oidp, &vmm, sizeof(vmm), req));
233 }
234
235 /*
236  * vcnt() -     accumulate statistics from the cnt structure for each cpu
237  *
238  *      The vmmeter structure is now per-cpu as well as global.  Those
239  *      statistics which can be kept on a per-cpu basis (to avoid cache
240  *      stalls between cpus) can be moved to the per-cpu vmmeter.  Remaining
241  *      statistics, such as v_free_reserved, are left in the global
242  *      structure.
243  *
244  * (sysctl_oid *oidp, void *arg1, int arg2, struct sysctl_req *req)
245  */
246 static int
247 vcnt(SYSCTL_HANDLER_ARGS)
248 {
249         int i;
250         int count = 0;
251         int offset = arg2;
252
253         for (i = 0; i < ncpus; ++i) {
254                 struct globaldata *gd = globaldata_find(i);
255                 count += *(int *)((char *)&gd->gd_cnt + offset);
256         }
257         return(SYSCTL_OUT(req, &count, sizeof(int)));
258 }
259
260 static int
261 vcnt_intr(SYSCTL_HANDLER_ARGS)
262 {
263         int i;
264         int count = 0;
265
266         for (i = 0; i < ncpus; ++i) {
267                 struct globaldata *gd = globaldata_find(i);
268
269                 count += gd->gd_cnt.v_intr + gd->gd_cnt.v_ipi +
270                          gd->gd_cnt.v_timer;
271         }
272         return(SYSCTL_OUT(req, &count, sizeof(int)));
273 }
274
275 #define VMMETEROFF(var) offsetof(struct vmmeter, var)
276
277 SYSCTL_PROC(_vm, OID_AUTO, vmtotal, CTLTYPE_OPAQUE|CTLFLAG_RD,
278     0, sizeof(struct vmtotal), do_vmtotal, "S,vmtotal", 
279     "System virtual memory aggregate");
280 SYSCTL_PROC(_vm, OID_AUTO, vmstats, CTLTYPE_OPAQUE|CTLFLAG_RD,
281     0, sizeof(struct vmstats), do_vmstats, "S,vmstats", 
282     "System virtual memory statistics");
283 SYSCTL_PROC(_vm, OID_AUTO, vmmeter, CTLTYPE_OPAQUE|CTLFLAG_RD,
284     0, sizeof(struct vmmeter), do_vmmeter, "S,vmmeter", 
285     "System statistics");
286 SYSCTL_NODE(_vm, OID_AUTO, stats, CTLFLAG_RW, 0, "VM meter stats");
287 SYSCTL_NODE(_vm_stats, OID_AUTO, sys, CTLFLAG_RW, 0, "VM meter sys stats");
288 SYSCTL_NODE(_vm_stats, OID_AUTO, vm, CTLFLAG_RW, 0, "VM meter vm stats");
289 SYSCTL_NODE(_vm_stats, OID_AUTO, misc, CTLFLAG_RW, 0, "VM meter misc stats");
290
291 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_swtch, CTLTYPE_UINT|CTLFLAG_RD,
292         0, VMMETEROFF(v_swtch), vcnt, "IU", "Context switches");
293 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_intrans_coll, CTLTYPE_UINT|CTLFLAG_RD,
294         0, VMMETEROFF(v_intrans_coll), vcnt, "IU", "");
295 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_intrans_wait, CTLTYPE_UINT|CTLFLAG_RD,
296         0, VMMETEROFF(v_intrans_wait), vcnt, "IU", "");
297 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_forwarded_ints, CTLTYPE_UINT|CTLFLAG_RD,
298         0, VMMETEROFF(v_forwarded_ints), vcnt, "IU", "");
299 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_forwarded_hits, CTLTYPE_UINT|CTLFLAG_RD,
300         0, VMMETEROFF(v_forwarded_hits), vcnt, "IU", "");
301 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_forwarded_misses, CTLTYPE_UINT|CTLFLAG_RD,
302         0, VMMETEROFF(v_forwarded_misses), vcnt, "IU", "");
303 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_trap, CTLTYPE_UINT|CTLFLAG_RD,
304         0, VMMETEROFF(v_trap), vcnt, "IU", "Traps");
305 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_syscall, CTLTYPE_UINT|CTLFLAG_RD,
306         0, VMMETEROFF(v_syscall), vcnt, "IU", "Syscalls");
307 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_intr, CTLTYPE_UINT|CTLFLAG_RD,
308         0, VMMETEROFF(v_intr), vcnt_intr, "IU", "Hardware interrupts");
309 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_ipi, CTLTYPE_UINT|CTLFLAG_RD,
310         0, VMMETEROFF(v_ipi), vcnt, "IU", "Inter-processor interrupts");
311 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_timer, CTLTYPE_UINT|CTLFLAG_RD,
312         0, VMMETEROFF(v_timer), vcnt, "IU", "LAPIC timer interrupts");
313 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_soft, CTLTYPE_UINT|CTLFLAG_RD,
314         0, VMMETEROFF(v_soft), vcnt, "IU", "Software interrupts");
315 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vm_faults, CTLTYPE_UINT|CTLFLAG_RD,
316         0, VMMETEROFF(v_vm_faults), vcnt, "IU", "VM faults");
317 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_cow_faults, CTLTYPE_UINT|CTLFLAG_RD,
318         0, VMMETEROFF(v_cow_faults), vcnt, "IU", "COW faults");
319 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_cow_optim, CTLTYPE_UINT|CTLFLAG_RD,
320         0, VMMETEROFF(v_cow_optim), vcnt, "IU", "Optimized COW faults");
321 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_zfod, CTLTYPE_UINT|CTLFLAG_RD,
322         0, VMMETEROFF(v_zfod), vcnt, "IU", "Zero fill");
323 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_ozfod, CTLTYPE_UINT|CTLFLAG_RD,
324         0, VMMETEROFF(v_ozfod), vcnt, "IU", "Optimized zero fill");
325 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_swapin, CTLTYPE_UINT|CTLFLAG_RD,
326         0, VMMETEROFF(v_swapin), vcnt, "IU", "Swapin operations");
327 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_swapout, CTLTYPE_UINT|CTLFLAG_RD,
328         0, VMMETEROFF(v_swapout), vcnt, "IU", "Swapout operations");
329 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_swappgsin, CTLTYPE_UINT|CTLFLAG_RD,
330         0, VMMETEROFF(v_swappgsin), vcnt, "IU", "Swapin pages");
331 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_swappgsout, CTLTYPE_UINT|CTLFLAG_RD,
332         0, VMMETEROFF(v_swappgsout), vcnt, "IU", "Swapout pages");
333 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vnodein, CTLTYPE_UINT|CTLFLAG_RD,
334         0, VMMETEROFF(v_vnodein), vcnt, "IU", "Vnodein operations");
335 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vnodeout, CTLTYPE_UINT|CTLFLAG_RD,
336         0, VMMETEROFF(v_vnodeout), vcnt, "IU", "Vnodeout operations");
337 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vnodepgsin, CTLTYPE_UINT|CTLFLAG_RD,
338         0, VMMETEROFF(v_vnodepgsin), vcnt, "IU", "Vnodein pages");
339 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vnodepgsout, CTLTYPE_UINT|CTLFLAG_RD,
340         0, VMMETEROFF(v_vnodepgsout), vcnt, "IU", "Vnodeout pages");
341 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_intrans, CTLTYPE_UINT|CTLFLAG_RD,
342         0, VMMETEROFF(v_intrans), vcnt, "IU", "In transit page blocking");
343 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_reactivated, CTLTYPE_UINT|CTLFLAG_RD,
344         0, VMMETEROFF(v_reactivated), vcnt, "IU", "Reactivated pages");
345 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_pdwakeups, CTLTYPE_UINT|CTLFLAG_RD,
346         0, VMMETEROFF(v_pdwakeups), vcnt, "IU", "Pagedaemon wakeups");
347 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_pdpages, CTLTYPE_UINT|CTLFLAG_RD,
348         0, VMMETEROFF(v_pdpages), vcnt, "IU", "Pagedaemon page scans");
349 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_dfree, CTLTYPE_UINT|CTLFLAG_RD,
350         0, VMMETEROFF(v_dfree), vcnt, "IU", "");
351 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_pfree, CTLTYPE_UINT|CTLFLAG_RD,
352         0, VMMETEROFF(v_pfree), vcnt, "IU", "");
353 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_tfree, CTLTYPE_UINT|CTLFLAG_RD,
354         0, VMMETEROFF(v_tfree), vcnt, "IU", "");
355 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_forks, CTLTYPE_UINT|CTLFLAG_RD,
356         0, VMMETEROFF(v_forks), vcnt, "IU", "Number of fork() calls");
357 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vforks, CTLTYPE_UINT|CTLFLAG_RD,
358         0, VMMETEROFF(v_vforks), vcnt, "IU", "Number of vfork() calls");
359 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_rforks, CTLTYPE_UINT|CTLFLAG_RD,
360         0, VMMETEROFF(v_rforks), vcnt, "IU", "Number of rfork() calls");
361 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_kthreads, CTLTYPE_UINT|CTLFLAG_RD,
362         0, VMMETEROFF(v_kthreads), vcnt, "IU", "Number of fork() calls by kernel");
363 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_forkpages, CTLTYPE_UINT|CTLFLAG_RD,
364         0, VMMETEROFF(v_forkpages), vcnt, "IU", "VM pages affected by fork()");
365 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vforkpages, CTLTYPE_UINT|CTLFLAG_RD,
366         0, VMMETEROFF(v_vforkpages), vcnt, "IU", "VM pages affected by vfork()");
367 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_rforkpages, CTLTYPE_UINT|CTLFLAG_RD,
368         0, VMMETEROFF(v_rforkpages), vcnt, "IU", "VM pages affected by rfork()");
369 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_kthreadpages, CTLTYPE_UINT|CTLFLAG_RD,
370         0, VMMETEROFF(v_kthreadpages), vcnt, "IU", "VM pages affected by fork() by kernel");
371
372 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
373         v_page_size, CTLFLAG_RD, &vmstats.v_page_size, 0, "");
374 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
375         v_page_count, CTLFLAG_RD, &vmstats.v_page_count, 0, "");
376 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
377         v_free_reserved, CTLFLAG_RD, &vmstats.v_free_reserved, 0, "");
378 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
379         v_free_target, CTLFLAG_RD, &vmstats.v_free_target, 0, "");
380 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
381         v_free_min, CTLFLAG_RD, &vmstats.v_free_min, 0, "");
382 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
383         v_free_count, CTLFLAG_RD, &vmstats.v_free_count, 0, "");
384 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
385         v_wire_count, CTLFLAG_RD, &vmstats.v_wire_count, 0, "");
386 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
387         v_active_count, CTLFLAG_RD, &vmstats.v_active_count, 0, "");
388 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
389         v_inactive_target, CTLFLAG_RD, &vmstats.v_inactive_target, 0, "");
390 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
391         v_inactive_count, CTLFLAG_RD, &vmstats.v_inactive_count, 0, "");
392 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
393         v_cache_count, CTLFLAG_RD, &vmstats.v_cache_count, 0, "");
394 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
395         v_cache_min, CTLFLAG_RD, &vmstats.v_cache_min, 0, "");
396 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
397         v_cache_max, CTLFLAG_RD, &vmstats.v_cache_max, 0, "");
398 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
399         v_pageout_free_min, CTLFLAG_RD, &vmstats.v_pageout_free_min, 0, "");
400 SYSCTL_UINT(_vm_stats_vm, OID_AUTO,
401         v_interrupt_free_min, CTLFLAG_RD, &vmstats.v_interrupt_free_min, 0, "");
402 SYSCTL_INT(_vm_stats_misc, OID_AUTO,
403         zero_page_count, CTLFLAG_RD, &vm_page_zero_count, 0, "");
404
405 static int
406 do_vmmeter_pcpu(SYSCTL_HANDLER_ARGS)
407 {
408         int boffset = offsetof(struct vmmeter, vmmeter_uint_begin);
409         int eoffset = offsetof(struct vmmeter, vmmeter_uint_end);
410         struct globaldata *gd = arg1;
411         struct vmmeter vmm;
412         int off;
413
414         bzero(&vmm, sizeof(vmm));
415         for (off = boffset; off <= eoffset; off += sizeof(u_int)) {
416                 *(u_int *)((char *)&vmm + off) +=
417                         *(u_int *)((char *)&gd->gd_cnt + off);
418         }
419         vmm.v_intr += vmm.v_ipi + vmm.v_timer;
420         return (sysctl_handle_opaque(oidp, &vmm, sizeof(vmm), req));
421 }
422
423 static void
424 vmmeter_init(void *dummy __unused)
425 {
426         int i;
427
428         for (i = 0; i < ncpus; ++i) {
429                 struct sysctl_ctx_list *ctx;
430                 struct sysctl_oid *oid;
431                 struct globaldata *gd;
432                 char name[32];
433
434                 ksnprintf(name, sizeof(name), "cpu%d", i);
435
436                 ctx = kmalloc(sizeof(*ctx), M_TEMP, M_WAITOK);
437                 sysctl_ctx_init(ctx);
438                 oid = SYSCTL_ADD_NODE(ctx, SYSCTL_STATIC_CHILDREN(_vm),
439                                       OID_AUTO, name, CTLFLAG_RD, 0, "");
440
441                 gd = globaldata_find(i);
442                 SYSCTL_ADD_PROC(ctx, SYSCTL_CHILDREN(oid), OID_AUTO,
443                                 "vmmeter", CTLTYPE_OPAQUE|CTLFLAG_RD,
444                                 gd, sizeof(struct vmmeter), do_vmmeter_pcpu,
445                                 "S,vmmeter", "System per-cpu statistics");
446         }
447 }
448 SYSINIT(vmmeter, SI_SUB_PSEUDO, SI_ORDER_ANY, vmmeter_init, 0);