xref: /freebsd/sys/vm/vm_meter.c (revision 6fd05b64b5b65dd4ba9b86482a0634a5f0b96c29)
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  * 4. Neither the name of the University nor the names of its contributors
14  *    may be used to endorse or promote products derived from this software
15  *    without specific prior written permission.
16  *
17  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
18  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
21  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27  * SUCH DAMAGE.
28  *
29  *	@(#)vm_meter.c	8.4 (Berkeley) 1/4/94
30  */
31 
32 #include <sys/cdefs.h>
33 __FBSDID("$FreeBSD$");
34 
35 #include <sys/param.h>
36 #include <sys/systm.h>
37 #include <sys/kernel.h>
38 #include <sys/lock.h>
39 #include <sys/mutex.h>
40 #include <sys/proc.h>
41 #include <sys/resource.h>
42 #include <sys/sx.h>
43 #include <sys/vmmeter.h>
44 #include <sys/smp.h>
45 
46 #include <vm/vm.h>
47 #include <vm/vm_page.h>
48 #include <vm/vm_extern.h>
49 #include <vm/vm_param.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 vmmeter cnt;
56 
57 int maxslp = MAXSLP;
58 
59 SYSCTL_UINT(_vm, VM_V_FREE_MIN, v_free_min,
60 	CTLFLAG_RW, &cnt.v_free_min, 0, "");
61 SYSCTL_UINT(_vm, VM_V_FREE_TARGET, v_free_target,
62 	CTLFLAG_RW, &cnt.v_free_target, 0, "");
63 SYSCTL_UINT(_vm, VM_V_FREE_RESERVED, v_free_reserved,
64 	CTLFLAG_RW, &cnt.v_free_reserved, 0, "");
65 SYSCTL_UINT(_vm, VM_V_INACTIVE_TARGET, v_inactive_target,
66 	CTLFLAG_RW, &cnt.v_inactive_target, 0, "");
67 SYSCTL_UINT(_vm, VM_V_CACHE_MIN, v_cache_min,
68 	CTLFLAG_RW, &cnt.v_cache_min, 0, "");
69 SYSCTL_UINT(_vm, VM_V_CACHE_MAX, v_cache_max,
70 	CTLFLAG_RW, &cnt.v_cache_max, 0, "");
71 SYSCTL_UINT(_vm, VM_V_PAGEOUT_FREE_MIN, v_pageout_free_min,
72 	CTLFLAG_RW, &cnt.v_pageout_free_min, 0, "");
73 SYSCTL_UINT(_vm, OID_AUTO, v_free_severe,
74 	CTLFLAG_RW, &cnt.v_free_severe, 0, "");
75 
76 SYSCTL_STRUCT(_vm, VM_LOADAVG, loadavg, CTLFLAG_RD,
77     &averunnable, loadavg, "Machine loadaverage history");
78 
79 static int
80 vmtotal(SYSCTL_HANDLER_ARGS)
81 {
82 /* XXXKSE almost completely broken */
83 	struct proc *p;
84 	struct vmtotal total, *totalp;
85 	vm_map_entry_t entry;
86 	vm_object_t object;
87 	vm_map_t map;
88 	int paging;
89 	struct thread *td;
90 
91 	totalp = &total;
92 	bzero(totalp, sizeof *totalp);
93 	/*
94 	 * Mark all objects as inactive.
95 	 */
96 	GIANT_REQUIRED;
97 	mtx_lock(&vm_object_list_mtx);
98 	TAILQ_FOREACH(object, &vm_object_list, object_list) {
99 		if (!VM_OBJECT_TRYLOCK(object)) {
100 			/*
101 			 * Avoid a lock-order reversal.  Consequently,
102 			 * the reported number of active pages may be
103 			 * greater than the actual number.
104 			 */
105 			continue;
106 		}
107 		vm_object_clear_flag(object, OBJ_ACTIVE);
108 		VM_OBJECT_UNLOCK(object);
109 	}
110 	mtx_unlock(&vm_object_list_mtx);
111 	/*
112 	 * Calculate process statistics.
113 	 */
114 	sx_slock(&allproc_lock);
115 	FOREACH_PROC_IN_SYSTEM(p) {
116 		if (p->p_flag & P_SYSTEM)
117 			continue;
118 		mtx_lock_spin(&sched_lock);
119 		switch (p->p_state) {
120 		case PRS_NEW:
121 			mtx_unlock_spin(&sched_lock);
122 			continue;
123 			break;
124 		default:
125 			FOREACH_THREAD_IN_PROC(p, td) {
126 				/* Need new statistics  XXX */
127 				switch (td->td_state) {
128 				case TDS_INHIBITED:
129 					if (TD_ON_LOCK(td) ||
130 					    (td->td_inhibitors ==
131 					    TDI_SWAPPED)) {
132 						totalp->t_sw++;
133 					} else if (TD_IS_SLEEPING(td) ||
134 					   TD_AWAITING_INTR(td) ||
135 					   TD_IS_SUSPENDED(td)) {
136 						if (td->td_priority <= PZERO)
137 							totalp->t_dw++;
138 						else
139 							totalp->t_sl++;
140 					}
141 					break;
142 
143 				case TDS_CAN_RUN:
144 					totalp->t_sw++;
145 					break;
146 				case TDS_RUNQ:
147 				case TDS_RUNNING:
148 					totalp->t_rq++;
149 					continue;
150 				default:
151 					break;
152 				}
153 			}
154 		}
155 		mtx_unlock_spin(&sched_lock);
156 		/*
157 		 * Note active objects.
158 		 */
159 		paging = 0;
160 		map = &p->p_vmspace->vm_map;
161 		vm_map_lock_read(map);
162 		for (entry = map->header.next;
163 		    entry != &map->header; entry = entry->next) {
164 			if ((entry->eflags & MAP_ENTRY_IS_SUB_MAP) ||
165 			    (object = entry->object.vm_object) == NULL)
166 				continue;
167 			VM_OBJECT_LOCK(object);
168 			vm_object_set_flag(object, OBJ_ACTIVE);
169 			paging |= object->paging_in_progress;
170 			VM_OBJECT_UNLOCK(object);
171 		}
172 		vm_map_unlock_read(map);
173 		if (paging)
174 			totalp->t_pw++;
175 	}
176 	sx_sunlock(&allproc_lock);
177 	/*
178 	 * Calculate object memory usage statistics.
179 	 */
180 	mtx_lock(&vm_object_list_mtx);
181 	TAILQ_FOREACH(object, &vm_object_list, object_list) {
182 		/*
183 		 * Perform unsynchronized reads on the object to avoid
184 		 * a lock-order reversal.  In this case, the lack of
185 		 * synchronization should not impair the accuracy of
186 		 * the reported statistics.
187 		 */
188 		if (object->type == OBJT_DEVICE) {
189 			/*
190 			 * Devices, like /dev/mem, will badly skew our totals.
191 			 */
192 			continue;
193 		}
194 		totalp->t_vm += object->size;
195 		totalp->t_rm += object->resident_page_count;
196 		if (object->flags & OBJ_ACTIVE) {
197 			totalp->t_avm += object->size;
198 			totalp->t_arm += object->resident_page_count;
199 		}
200 		if (object->shadow_count > 1) {
201 			/* shared object */
202 			totalp->t_vmshr += object->size;
203 			totalp->t_rmshr += object->resident_page_count;
204 			if (object->flags & OBJ_ACTIVE) {
205 				totalp->t_avmshr += object->size;
206 				totalp->t_armshr += object->resident_page_count;
207 			}
208 		}
209 	}
210 	mtx_unlock(&vm_object_list_mtx);
211 	totalp->t_free = cnt.v_free_count + cnt.v_cache_count;
212 	return (sysctl_handle_opaque(oidp, totalp, sizeof total, req));
213 }
214 
215 /*
216  * vcnt() -	accumulate statistics from all cpus and the global cnt
217  *		structure.
218  *
219  *	The vmmeter structure is now per-cpu as well as global.  Those
220  *	statistics which can be kept on a per-cpu basis (to avoid cache
221  *	stalls between cpus) can be moved to the per-cpu vmmeter.  Remaining
222  *	statistics, such as v_free_reserved, are left in the global
223  *	structure.
224  *
225  * (sysctl_oid *oidp, void *arg1, int arg2, struct sysctl_req *req)
226  */
227 static int
228 vcnt(SYSCTL_HANDLER_ARGS)
229 {
230         int error = 0;
231 	int count = *(int *)arg1;
232 #ifdef SMP
233 	int i;
234 	int offset = (char *)arg1 - (char *)&cnt;
235 
236 	for (i = 0; i < mp_ncpus; ++i) {
237 		struct pcpu *pcpu = pcpu_find(i);
238 		count += *(int *)((char *)&pcpu->pc_cnt + offset);
239 	}
240 #else
241 	int offset = (char *)arg1 - (char *)&cnt;
242 	count += *(int *)((char *)PCPU_PTR(cnt) + offset);
243 #endif
244 	error = SYSCTL_OUT(req, &count, sizeof(int));
245 	return(error);
246 }
247 
248 SYSCTL_PROC(_vm, VM_TOTAL, vmtotal, CTLTYPE_OPAQUE|CTLFLAG_RD,
249     0, sizeof(struct vmtotal), vmtotal, "S,vmtotal",
250     "System virtual memory statistics");
251 SYSCTL_NODE(_vm, OID_AUTO, stats, CTLFLAG_RW, 0, "VM meter stats");
252 SYSCTL_NODE(_vm_stats, OID_AUTO, sys, CTLFLAG_RW, 0, "VM meter sys stats");
253 SYSCTL_NODE(_vm_stats, OID_AUTO, vm, CTLFLAG_RW, 0, "VM meter vm stats");
254 SYSCTL_NODE(_vm_stats, OID_AUTO, misc, CTLFLAG_RW, 0, "VM meter misc stats");
255 
256 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_swtch, CTLTYPE_UINT|CTLFLAG_RD,
257 	&cnt.v_swtch, 0, vcnt, "IU", "Context switches");
258 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_trap, CTLTYPE_UINT|CTLFLAG_RD,
259 	&cnt.v_trap, 0, vcnt, "IU", "Traps");
260 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_syscall, CTLTYPE_UINT|CTLFLAG_RD,
261 	&cnt.v_syscall, 0, vcnt, "IU", "Syscalls");
262 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_intr, CTLTYPE_UINT|CTLFLAG_RD,
263 	&cnt.v_intr, 0, vcnt, "IU", "Hardware interrupts");
264 SYSCTL_PROC(_vm_stats_sys, OID_AUTO, v_soft, CTLTYPE_UINT|CTLFLAG_RD,
265 	&cnt.v_soft, 0, vcnt, "IU", "Software interrupts");
266 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vm_faults, CTLTYPE_UINT|CTLFLAG_RD,
267 	&cnt.v_vm_faults, 0, vcnt, "IU", "VM faults");
268 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_cow_faults, CTLTYPE_UINT|CTLFLAG_RD,
269 	&cnt.v_cow_faults, 0, vcnt, "IU", "COW faults");
270 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_cow_optim, CTLTYPE_UINT|CTLFLAG_RD,
271 	&cnt.v_cow_optim, 0, vcnt, "IU", "Optimized COW faults");
272 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_zfod, CTLTYPE_UINT|CTLFLAG_RD,
273 	&cnt.v_zfod, 0, vcnt, "IU", "Zero fill");
274 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_ozfod, CTLTYPE_UINT|CTLFLAG_RD,
275 	&cnt.v_ozfod, 0, vcnt, "IU", "Optimized zero fill");
276 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_swapin, CTLTYPE_UINT|CTLFLAG_RD,
277 	&cnt.v_swapin, 0, vcnt, "IU", "Swapin operations");
278 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_swapout, CTLTYPE_UINT|CTLFLAG_RD,
279 	&cnt.v_swapout, 0, vcnt, "IU", "Swapout operations");
280 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_swappgsin, CTLTYPE_UINT|CTLFLAG_RD,
281 	&cnt.v_swappgsin, 0, vcnt, "IU", "Swapin pages");
282 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_swappgsout, CTLTYPE_UINT|CTLFLAG_RD,
283 	&cnt.v_swappgsout, 0, vcnt, "IU", "Swapout pages");
284 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vnodein, CTLTYPE_UINT|CTLFLAG_RD,
285 	&cnt.v_vnodein, 0, vcnt, "IU", "Vnodein operations");
286 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vnodeout, CTLTYPE_UINT|CTLFLAG_RD,
287 	&cnt.v_vnodeout, 0, vcnt, "IU", "Vnodeout operations");
288 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vnodepgsin, CTLTYPE_UINT|CTLFLAG_RD,
289 	&cnt.v_vnodepgsin, 0, vcnt, "IU", "Vnodein pages");
290 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vnodepgsout, CTLTYPE_UINT|CTLFLAG_RD,
291 	&cnt.v_vnodepgsout, 0, vcnt, "IU", "Vnodeout pages");
292 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_intrans, CTLTYPE_UINT|CTLFLAG_RD,
293 	&cnt.v_intrans, 0, vcnt, "IU", "In transit page blocking");
294 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_reactivated, CTLTYPE_UINT|CTLFLAG_RD,
295 	&cnt.v_reactivated, 0, vcnt, "IU", "Reactivated pages");
296 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_pdwakeups, CTLTYPE_UINT|CTLFLAG_RD,
297 	&cnt.v_pdwakeups, 0, vcnt, "IU", "Pagedaemon wakeups");
298 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_pdpages, CTLTYPE_UINT|CTLFLAG_RD,
299 	&cnt.v_pdpages, 0, vcnt, "IU", "Pagedaemon page scans");
300 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_dfree, CTLTYPE_UINT|CTLFLAG_RD,
301 	&cnt.v_dfree, 0, vcnt, "IU", "");
302 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_pfree, CTLTYPE_UINT|CTLFLAG_RD,
303 	&cnt.v_pfree, 0, vcnt, "IU", "");
304 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_tfree, CTLTYPE_UINT|CTLFLAG_RD,
305 	&cnt.v_tfree, 0, vcnt, "IU", "");
306 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_page_size, CTLTYPE_UINT|CTLFLAG_RD,
307 	&cnt.v_page_size, 0, vcnt, "IU", "");
308 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_page_count, CTLTYPE_UINT|CTLFLAG_RD,
309 	&cnt.v_page_count, 0, vcnt, "IU", "");
310 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_free_reserved, CTLTYPE_UINT|CTLFLAG_RD,
311 	&cnt.v_free_reserved, 0, vcnt, "IU", "");
312 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_free_target, CTLTYPE_UINT|CTLFLAG_RD,
313 	&cnt.v_free_target, 0, vcnt, "IU", "");
314 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_free_min, CTLTYPE_UINT|CTLFLAG_RD,
315 	&cnt.v_free_min, 0, vcnt, "IU", "");
316 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_free_count, CTLTYPE_UINT|CTLFLAG_RD,
317 	&cnt.v_free_count, 0, vcnt, "IU", "");
318 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_wire_count, CTLTYPE_UINT|CTLFLAG_RD,
319 	&cnt.v_wire_count, 0, vcnt, "IU", "");
320 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_active_count, CTLTYPE_UINT|CTLFLAG_RD,
321 	&cnt.v_active_count, 0, vcnt, "IU", "");
322 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_inactive_target, CTLTYPE_UINT|CTLFLAG_RD,
323 	&cnt.v_inactive_target, 0, vcnt, "IU", "");
324 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_inactive_count, CTLTYPE_UINT|CTLFLAG_RD,
325 	&cnt.v_inactive_count, 0, vcnt, "IU", "");
326 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_cache_count, CTLTYPE_UINT|CTLFLAG_RD,
327 	&cnt.v_cache_count, 0, vcnt, "IU", "");
328 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_cache_min, CTLTYPE_UINT|CTLFLAG_RD,
329 	&cnt.v_cache_min, 0, vcnt, "IU", "");
330 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_cache_max, CTLTYPE_UINT|CTLFLAG_RD,
331 	&cnt.v_cache_max, 0, vcnt, "IU", "");
332 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_pageout_free_min, CTLTYPE_UINT|CTLFLAG_RD,
333 	&cnt.v_pageout_free_min, 0, vcnt, "IU", "");
334 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_interrupt_free_min, CTLTYPE_UINT|CTLFLAG_RD,
335 	&cnt.v_interrupt_free_min, 0, vcnt, "IU", "");
336 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_forks, CTLTYPE_UINT|CTLFLAG_RD,
337 	&cnt.v_forks, 0, vcnt, "IU", "Number of fork() calls");
338 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vforks, CTLTYPE_UINT|CTLFLAG_RD,
339 	&cnt.v_vforks, 0, vcnt, "IU", "Number of vfork() calls");
340 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_rforks, CTLTYPE_UINT|CTLFLAG_RD,
341 	&cnt.v_rforks, 0, vcnt, "IU", "Number of rfork() calls");
342 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_kthreads, CTLTYPE_UINT|CTLFLAG_RD,
343 	&cnt.v_kthreads, 0, vcnt, "IU", "Number of fork() calls by kernel");
344 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_forkpages, CTLTYPE_UINT|CTLFLAG_RD,
345 	&cnt.v_forkpages, 0, vcnt, "IU", "VM pages affected by fork()");
346 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_vforkpages, CTLTYPE_UINT|CTLFLAG_RD,
347 	&cnt.v_vforkpages, 0, vcnt, "IU", "VM pages affected by vfork()");
348 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_rforkpages, CTLTYPE_UINT|CTLFLAG_RD,
349 	&cnt.v_rforkpages, 0, vcnt, "IU", "VM pages affected by rfork()");
350 SYSCTL_PROC(_vm_stats_vm, OID_AUTO, v_kthreadpages, CTLTYPE_UINT|CTLFLAG_RD,
351 	&cnt.v_kthreadpages, 0, vcnt, "IU", "VM pages affected by fork() by kernel");
352 
353 SYSCTL_INT(_vm_stats_misc, OID_AUTO,
354 	zero_page_count, CTLFLAG_RD, &vm_page_zero_count, 0, "");
355 #if 0
356 SYSCTL_INT(_vm_stats_misc, OID_AUTO,
357 	page_mask, CTLFLAG_RD, &page_mask, 0, "");
358 SYSCTL_INT(_vm_stats_misc, OID_AUTO,
359 	page_shift, CTLFLAG_RD, &page_shift, 0, "");
360 SYSCTL_INT(_vm_stats_misc, OID_AUTO,
361 	first_page, CTLFLAG_RD, &first_page, 0, "");
362 SYSCTL_INT(_vm_stats_misc, OID_AUTO,
363 	last_page, CTLFLAG_RD, &last_page, 0, "");
364 #endif
365