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vmstat.c revision 1.85
      1  1.85  christos /*	$NetBSD: vmstat.c,v 1.85 2019/01/25 15:31:11 christos Exp $	*/
      2   1.2       jtc 
      3   1.1       jtc /*-
      4   1.1       jtc  * Copyright (c) 1983, 1989, 1992, 1993
      5   1.1       jtc  *	The Regents of the University of California.  All rights reserved.
      6   1.1       jtc  *
      7   1.1       jtc  * Redistribution and use in source and binary forms, with or without
      8   1.1       jtc  * modification, are permitted provided that the following conditions
      9   1.1       jtc  * are met:
     10   1.1       jtc  * 1. Redistributions of source code must retain the above copyright
     11   1.1       jtc  *    notice, this list of conditions and the following disclaimer.
     12   1.1       jtc  * 2. Redistributions in binary form must reproduce the above copyright
     13   1.1       jtc  *    notice, this list of conditions and the following disclaimer in the
     14   1.1       jtc  *    documentation and/or other materials provided with the distribution.
     15  1.53       agc  * 3. Neither the name of the University nor the names of its contributors
     16   1.1       jtc  *    may be used to endorse or promote products derived from this software
     17   1.1       jtc  *    without specific prior written permission.
     18   1.1       jtc  *
     19   1.1       jtc  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     20   1.1       jtc  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     21   1.1       jtc  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     22   1.1       jtc  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     23   1.1       jtc  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     24   1.1       jtc  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     25   1.1       jtc  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     26   1.1       jtc  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     27   1.1       jtc  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     28   1.1       jtc  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     29   1.1       jtc  * SUCH DAMAGE.
     30   1.1       jtc  */
     31   1.1       jtc 
     32   1.8       mrg #include <sys/cdefs.h>
     33   1.1       jtc #ifndef lint
     34   1.2       jtc #if 0
     35   1.1       jtc static char sccsid[] = "@(#)vmstat.c	8.2 (Berkeley) 1/12/94";
     36   1.2       jtc #endif
     37  1.85  christos __RCSID("$NetBSD: vmstat.c,v 1.85 2019/01/25 15:31:11 christos Exp $");
     38   1.1       jtc #endif /* not lint */
     39   1.1       jtc 
     40   1.1       jtc /*
     41   1.1       jtc  * Cursed vmstat -- from Robert Elz.
     42   1.1       jtc  */
     43   1.1       jtc 
     44   1.1       jtc #include <sys/param.h>
     45  1.67  christos #include <sys/uio.h>
     46   1.1       jtc #include <sys/namei.h>
     47   1.1       jtc #include <sys/sysctl.h>
     48  1.70    dyoung #include <sys/evcnt.h>
     49   1.1       jtc 
     50  1.11       mrg #include <uvm/uvm_extern.h>
     51  1.11       mrg 
     52  1.66      yamt #include <errno.h>
     53   1.3   mycroft #include <stdlib.h>
     54   1.1       jtc #include <string.h>
     55  1.41       abs #include <util.h>
     56  1.85  christos #include <curses.h>
     57   1.3   mycroft 
     58   1.1       jtc #include "systat.h"
     59   1.1       jtc #include "extern.h"
     60  1.65     blymn #include "drvstats.h"
     61  1.40  christos #include "utmpentry.h"
     62  1.63       dsl #include "vmstat.h"
     63   1.1       jtc 
     64   1.1       jtc static struct Info {
     65  1.34    simonb 	struct	uvmexp_sysctl uvmexp;
     66   1.1       jtc 	struct	vmtotal Total;
     67  1.81    dennis 	struct	nchstats nchstats;
     68   1.1       jtc 	long	nchcount;
     69   1.1       jtc 	long	*intrcnt;
     70  1.44       dsl 	u_int64_t	*evcnt;
     71   1.1       jtc } s, s1, s2, z;
     72   1.1       jtc 
     73  1.63       dsl enum display_mode display_mode = TIME;
     74   1.1       jtc 
     75  1.33        ad static void allocinfo(struct Info *);
     76  1.33        ad static void copyinfo(struct Info *, struct Info *);
     77  1.33        ad static float cputime(int);
     78  1.49       dsl static void dinfo(int, int, int);
     79  1.63       dsl static void getinfo(struct Info *);
     80  1.33        ad static int ucount(void);
     81   1.1       jtc 
     82   1.1       jtc static	char buf[26];
     83  1.59       dsl static	u_int64_t temp;
     84   1.1       jtc static	int nintr;
     85   1.1       jtc static	long *intrloc;
     86   1.1       jtc static	char **intrname;
     87   1.1       jtc static	int nextintsrow;
     88  1.49       dsl static	int disk_horiz = 1;
     89  1.83     sevan static	u_int nbuf;
     90   1.1       jtc 
     91   1.1       jtc WINDOW *
     92  1.33        ad openvmstat(void)
     93   1.1       jtc {
     94   1.1       jtc 	return (stdscr);
     95   1.1       jtc }
     96   1.1       jtc 
     97   1.1       jtc void
     98  1.33        ad closevmstat(WINDOW *w)
     99   1.1       jtc {
    100   1.1       jtc 
    101   1.1       jtc 	if (w == NULL)
    102   1.1       jtc 		return;
    103   1.1       jtc 	wclear(w);
    104   1.1       jtc 	wrefresh(w);
    105   1.1       jtc }
    106   1.1       jtc 
    107   1.1       jtc 
    108   1.1       jtc static struct nlist namelist[] = {
    109  1.79     joerg #define	X_INTRNAMES	0
    110  1.69  christos 	{ .n_name = "_intrnames" },
    111  1.79     joerg #define	X_EINTRNAMES	1
    112  1.69  christos 	{ .n_name = "_eintrnames" },
    113  1.79     joerg #define	X_INTRCNT	2
    114  1.69  christos 	{ .n_name = "_intrcnt" },
    115  1.79     joerg #define	X_EINTRCNT	3
    116  1.69  christos 	{ .n_name = "_eintrcnt" },
    117  1.79     joerg #define	X_ALLEVENTS	4
    118  1.69  christos 	{ .n_name = "_allevents" },
    119  1.69  christos 	{ .n_name = NULL }
    120   1.1       jtc };
    121   1.1       jtc 
    122   1.1       jtc /*
    123   1.1       jtc  * These constants define where the major pieces are laid out
    124   1.1       jtc  */
    125   1.1       jtc #define STATROW		 0	/* uses 1 row and 68 cols */
    126   1.1       jtc #define STATCOL		 2
    127  1.83     sevan #define MEMROW		 9	/* uses 5 rows and 31 cols */
    128   1.1       jtc #define MEMCOL		 0
    129   1.1       jtc #define PAGEROW		 2	/* uses 4 rows and 26 cols */
    130  1.48       dsl #define PAGECOL		54
    131  1.48       dsl #define INTSROW		 9	/* uses all rows to bottom and 17 cols */
    132  1.48       dsl #define INTSCOL		40
    133  1.48       dsl #define INTSCOLEND	(VMSTATCOL - 0)
    134  1.48       dsl #define PROCSROW	 2	/* uses 2 rows and 20 cols */
    135   1.1       jtc #define PROCSCOL	 0
    136  1.48       dsl #define GENSTATROW	 2	/* uses 2 rows and 30 cols */
    137  1.58  christos #define GENSTATCOL	17
    138  1.48       dsl #define VMSTATROW	 7	/* uses 17 rows and 15 cols */
    139  1.48       dsl #define VMSTATCOL	64
    140  1.48       dsl #define GRAPHROW	 5	/* uses 3 rows and 51 cols */
    141   1.1       jtc #define GRAPHCOL	 0
    142  1.83     sevan #define NAMEIROW	15	/* uses 3 rows and 38 cols (must be MEMROW + 5 + 1) */
    143   1.1       jtc #define NAMEICOL	 0
    144  1.83     sevan #define DISKROW		19	/* uses 5 rows and 50 cols (for 9 drives) */
    145   1.1       jtc #define DISKCOL		 0
    146  1.83     sevan #define DISKCOLWIDTH	 8
    147  1.49       dsl #define DISKCOLEND	INTSCOL
    148   1.1       jtc 
    149  1.44       dsl typedef struct intr_evcnt intr_evcnt_t;
    150  1.44       dsl struct intr_evcnt {
    151  1.44       dsl 	char		*ie_group;
    152  1.44       dsl 	char		*ie_name;
    153  1.44       dsl 	u_int64_t	*ie_count;	/* kernel address... */
    154  1.44       dsl 	int		ie_loc;		/* screen row */
    155  1.44       dsl } *ie_head;
    156  1.44       dsl int nevcnt;
    157  1.44       dsl 
    158  1.44       dsl static void
    159  1.44       dsl get_interrupt_events(void)
    160  1.44       dsl {
    161  1.44       dsl 	struct evcntlist allevents;
    162  1.44       dsl 	struct evcnt evcnt, *evptr;
    163  1.44       dsl 	intr_evcnt_t *ie;
    164  1.55    itojun 	intr_evcnt_t *n;
    165  1.44       dsl 
    166  1.44       dsl 	if (!NREAD(X_ALLEVENTS, &allevents, sizeof allevents))
    167  1.44       dsl 		return;
    168  1.60       chs 	evptr = TAILQ_FIRST(&allevents);
    169  1.60       chs 	for (; evptr != NULL; evptr = TAILQ_NEXT(&evcnt, ev_list)) {
    170  1.44       dsl 		if (!KREAD(evptr, &evcnt, sizeof evcnt))
    171  1.44       dsl 			return;
    172  1.44       dsl 		if (evcnt.ev_type != EVCNT_TYPE_INTR)
    173  1.44       dsl 			continue;
    174  1.55    itojun 		n = realloc(ie_head, sizeof *ie * (nevcnt + 1));
    175  1.55    itojun 		if (n == NULL) {
    176  1.44       dsl 			error("realloc failed");
    177  1.44       dsl 			die(0);
    178  1.44       dsl 		}
    179  1.55    itojun 		ie_head = n;
    180  1.44       dsl 		ie = ie_head + nevcnt;
    181  1.44       dsl 		ie->ie_group = malloc(evcnt.ev_grouplen + 1);
    182  1.44       dsl 		ie->ie_name = malloc(evcnt.ev_namelen + 1);
    183  1.44       dsl 		if (ie->ie_group == NULL || ie->ie_name == NULL)
    184  1.44       dsl 			return;
    185  1.46       dsl 		if (!KREAD(evcnt.ev_group, ie->ie_group, evcnt.ev_grouplen + 1))
    186  1.44       dsl 			return;
    187  1.46       dsl 		if (!KREAD(evcnt.ev_name, ie->ie_name, evcnt.ev_namelen + 1))
    188  1.44       dsl 			return;
    189  1.44       dsl 		ie->ie_count = &evptr->ev_count;
    190  1.44       dsl 		ie->ie_loc = 0;
    191  1.44       dsl 		nevcnt++;
    192  1.44       dsl 	}
    193  1.44       dsl }
    194  1.44       dsl 
    195   1.1       jtc int
    196  1.33        ad initvmstat(void)
    197   1.1       jtc {
    198  1.64       dsl 	static char *intrnamebuf;
    199  1.64       dsl 	char *cp;
    200   1.1       jtc 	int i;
    201   1.1       jtc 
    202  1.64       dsl 	if (intrnamebuf)
    203  1.64       dsl 		free(intrnamebuf);
    204  1.64       dsl 	if (intrname)
    205  1.64       dsl 		free(intrname);
    206  1.64       dsl 	if (intrloc)
    207  1.64       dsl 		free(intrloc);
    208  1.64       dsl 
    209   1.1       jtc 	if (namelist[0].n_type == 0) {
    210  1.60       chs 		if (kvm_nlist(kd, namelist) &&
    211  1.79     joerg 		    namelist[X_ALLEVENTS].n_type == 0) {
    212   1.1       jtc 			nlisterr(namelist);
    213   1.1       jtc 			return(0);
    214   1.1       jtc 		}
    215   1.1       jtc 	}
    216   1.1       jtc 	hertz = stathz ? stathz : hz;
    217  1.65     blymn 	if (!drvinit(1))
    218  1.61     blymn 		return(0);
    219  1.44       dsl 
    220  1.44       dsl 	/* Old style interrupt counts - deprecated */
    221  1.44       dsl 	nintr = (namelist[X_EINTRCNT].n_value -
    222  1.44       dsl 		namelist[X_INTRCNT].n_value) / sizeof (long);
    223  1.60       chs 	if (nintr) {
    224  1.60       chs 		intrloc = calloc(nintr, sizeof (long));
    225  1.60       chs 		intrname = calloc(nintr, sizeof (long));
    226  1.60       chs 		intrnamebuf = malloc(namelist[X_EINTRNAMES].n_value -
    227  1.60       chs 				     namelist[X_INTRNAMES].n_value);
    228  1.60       chs 		if (intrnamebuf == NULL || intrname == 0 || intrloc == 0) {
    229  1.60       chs 			error("Out of memory\n");
    230  1.60       chs 			nintr = 0;
    231  1.60       chs 			return(0);
    232  1.60       chs 		}
    233  1.60       chs 		NREAD(X_INTRNAMES, intrnamebuf, NVAL(X_EINTRNAMES) -
    234  1.60       chs 		      NVAL(X_INTRNAMES));
    235  1.60       chs 		for (cp = intrnamebuf, i = 0; i < nintr; i++) {
    236  1.60       chs 			intrname[i] = cp;
    237  1.60       chs 			cp += strlen(cp) + 1;
    238  1.60       chs 		}
    239  1.44       dsl 	}
    240  1.44       dsl 
    241  1.44       dsl 	/* event counter interrupt counts */
    242  1.44       dsl 	get_interrupt_events();
    243  1.44       dsl 
    244  1.48       dsl 	nextintsrow = INTSROW + 1;
    245  1.44       dsl 	allocinfo(&s);
    246  1.44       dsl 	allocinfo(&s1);
    247  1.44       dsl 	allocinfo(&s2);
    248  1.44       dsl 	allocinfo(&z);
    249  1.44       dsl 
    250  1.63       dsl 	getinfo(&s2);
    251   1.1       jtc 	copyinfo(&s2, &s1);
    252   1.1       jtc 	return(1);
    253   1.1       jtc }
    254   1.1       jtc 
    255   1.1       jtc void
    256  1.33        ad fetchvmstat(void)
    257   1.1       jtc {
    258   1.1       jtc 	time_t now;
    259   1.1       jtc 
    260   1.1       jtc 	time(&now);
    261  1.50    itojun 	strlcpy(buf, ctime(&now), sizeof(buf));
    262  1.18      marc 	buf[19] = '\0';
    263  1.63       dsl 	getinfo(&s);
    264   1.1       jtc }
    265   1.1       jtc 
    266  1.44       dsl static void
    267  1.44       dsl print_ie_title(int i)
    268  1.44       dsl {
    269  1.44       dsl 	int width, name_width, group_width;
    270  1.44       dsl 
    271  1.48       dsl 	width = INTSCOLEND - (INTSCOL + 9);
    272  1.44       dsl 	if (width <= 0)
    273  1.44       dsl 		return;
    274  1.44       dsl 
    275  1.44       dsl 	move(ie_head[i].ie_loc, INTSCOL + 9);
    276  1.44       dsl 	group_width = strlen(ie_head[i].ie_group);
    277  1.44       dsl 	name_width = strlen(ie_head[i].ie_name);
    278  1.44       dsl 	width -= group_width + 1 + name_width;
    279  1.44       dsl 	if (width < 0) {
    280  1.47       dsl 		/*
    281  1.47       dsl 		 * Screen to narrow for full strings
    282  1.47       dsl 		 * This is all rather horrid, in some cases there are a lot
    283  1.47       dsl 		 * of events in the same group, and in others the event
    284  1.47       dsl 		 * name is "intr".  There are also names which need 7 or 8
    285  1.47       dsl 		 * columns before they become meaningful.
    286  1.47       dsl 		 * This is a bad compromise.
    287  1.47       dsl 		 */
    288  1.44       dsl 		width = -width;
    289  1.44       dsl 		group_width -= (width + 1) / 2;
    290  1.44       dsl 		name_width -= width / 2;
    291  1.47       dsl 		/* some have the 'useful' name "intr", display their group */
    292  1.47       dsl 		if (strcasecmp(ie_head[i].ie_name, "intr") == 0) {
    293  1.47       dsl 			 group_width += name_width + 1;
    294  1.47       dsl 			 name_width = 0;
    295  1.47       dsl 		} else {
    296  1.47       dsl 			if (group_width <= 3 || name_width < 0) {
    297  1.47       dsl 				/* don't display group */
    298  1.47       dsl 				name_width += group_width + 1;
    299  1.47       dsl 				group_width = 0;
    300  1.47       dsl 			}
    301  1.44       dsl 		}
    302  1.44       dsl 	}
    303  1.44       dsl 
    304  1.47       dsl 	if (group_width != 0) {
    305  1.47       dsl 		printw("%-.*s", group_width, ie_head[i].ie_group);
    306  1.47       dsl 		if (name_width != 0)
    307  1.47       dsl 			printw(" ");
    308  1.47       dsl 	}
    309  1.47       dsl 	if (name_width != 0)
    310  1.47       dsl 		printw("%-.*s", name_width, ie_head[i].ie_name);
    311  1.44       dsl }
    312  1.44       dsl 
    313   1.1       jtc void
    314  1.63       dsl labelvmstat_top(void)
    315   1.1       jtc {
    316   1.1       jtc 
    317   1.1       jtc 	clear();
    318  1.63       dsl 
    319   1.1       jtc 	mvprintw(STATROW, STATCOL + 4, "users    Load");
    320  1.13       mrg 
    321  1.83     sevan 	mvprintw(GENSTATROW, GENSTATCOL, "   Csw  Traps SysCal  Intr   Soft  Fault");
    322  1.63       dsl 
    323  1.63       dsl 	mvprintw(GRAPHROW, GRAPHCOL,
    324  1.63       dsl 		"    . %% Sy    . %% Us    . %% Ni    . %% In    . %% Id");
    325  1.75     rmind 	mvprintw(PROCSROW, PROCSCOL, "Proc:r  d  s");
    326  1.63       dsl 	mvprintw(GRAPHROW + 1, GRAPHCOL,
    327  1.63       dsl 		"|    |    |    |    |    |    |    |    |    |    |");
    328  1.63       dsl 
    329  1.63       dsl 	mvprintw(PAGEROW, PAGECOL + 8, "PAGING   SWAPPING ");
    330  1.13       mrg 	mvprintw(PAGEROW + 1, PAGECOL, "        in  out   in  out ");
    331  1.83     sevan 	mvprintw(PAGEROW + 2, PAGECOL, "  ops                     ");
    332  1.83     sevan 	mvprintw(PAGEROW + 3, PAGECOL, "pages                     ");
    333  1.63       dsl }
    334  1.63       dsl 
    335  1.63       dsl void
    336  1.63       dsl labelvmstat(void)
    337  1.63       dsl {
    338  1.63       dsl 	int i;
    339   1.1       jtc 
    340  1.63       dsl 	/* Top few lines first */
    341   1.1       jtc 
    342  1.63       dsl 	labelvmstat_top();
    343   1.1       jtc 
    344  1.63       dsl 	/* Left hand column */
    345   1.1       jtc 
    346  1.83     sevan 	mvprintw(MEMROW + 0, MEMCOL, "Anon                 %%   zero         ");
    347  1.83     sevan 	mvprintw(MEMROW + 1, MEMCOL, "Exec                 %%   wired        ");
    348  1.83     sevan 	mvprintw(MEMROW + 2, MEMCOL, "File                 %%   inact        ");
    349  1.83     sevan 	mvprintw(MEMROW + 3, MEMCOL, "Meta                 %%   bufs         ");
    350  1.83     sevan 	mvprintw(MEMROW + 4, MEMCOL, " (kB)        real   swaponly      free");
    351  1.83     sevan 	mvprintw(MEMROW + 5, MEMCOL, "Active                                ");
    352   1.1       jtc 
    353   1.1       jtc 	mvprintw(NAMEIROW, NAMEICOL, "Namei         Sys-cache     Proc-cache");
    354   1.1       jtc 	mvprintw(NAMEIROW + 1, NAMEICOL,
    355   1.1       jtc 		"    Calls     hits    %%     hits     %%");
    356  1.63       dsl 
    357  1.83     sevan 	mvprintw(DISKROW, DISKCOL, "%*s", DISKCOLWIDTH, "Disks:");
    358  1.49       dsl 	if (disk_horiz) {
    359  1.49       dsl 		mvprintw(DISKROW + 1, DISKCOL + 1, "seeks");
    360  1.49       dsl 		mvprintw(DISKROW + 2, DISKCOL + 1, "xfers");
    361  1.49       dsl 		mvprintw(DISKROW + 3, DISKCOL + 1, "bytes");
    362  1.49       dsl 		mvprintw(DISKROW + 4, DISKCOL + 1, "%%busy");
    363  1.49       dsl 	} else {
    364  1.83     sevan 		mvprintw(DISKROW, DISKCOL + 1 * DISKCOLWIDTH, "%*s", DISKCOLWIDTH, "seeks");
    365  1.83     sevan 		mvprintw(DISKROW, DISKCOL + 2 * DISKCOLWIDTH, "%*s", DISKCOLWIDTH, "xfers");
    366  1.83     sevan 		mvprintw(DISKROW, DISKCOL + 3 * DISKCOLWIDTH, "%*s", DISKCOLWIDTH, "bytes");
    367  1.84       tih 		mvprintw(DISKROW, DISKCOL + 4 * DISKCOLWIDTH, "%*s", DISKCOLWIDTH, "%busy");
    368  1.49       dsl 	}
    369  1.63       dsl 
    370  1.63       dsl 	/* Middle column */
    371  1.63       dsl 
    372  1.63       dsl 	mvprintw(INTSROW, INTSCOL + 9, "Interrupts");
    373   1.1       jtc 	for (i = 0; i < nintr; i++) {
    374   1.1       jtc 		if (intrloc[i] == 0)
    375   1.1       jtc 			continue;
    376  1.47       dsl 		mvprintw(intrloc[i], INTSCOL + 9, "%-.*s",
    377  1.48       dsl 			INTSCOLEND - (INTSCOL + 9), intrname[i]);
    378   1.1       jtc 	}
    379  1.44       dsl 	for (i = 0; i < nevcnt; i++) {
    380  1.44       dsl 		if (ie_head[i].ie_loc == 0)
    381  1.44       dsl 			continue;
    382  1.44       dsl 		print_ie_title(i);
    383  1.44       dsl 	}
    384  1.63       dsl 
    385  1.63       dsl 	/* Right hand column */
    386  1.63       dsl 
    387  1.63       dsl 	mvprintw(VMSTATROW + 0, VMSTATCOL + 10, "forks");
    388  1.63       dsl 	mvprintw(VMSTATROW + 1, VMSTATCOL + 10, "fkppw");
    389  1.63       dsl 	mvprintw(VMSTATROW + 2, VMSTATCOL + 10, "fksvm");
    390  1.63       dsl 	mvprintw(VMSTATROW + 3, VMSTATCOL + 10, "pwait");
    391  1.63       dsl 	mvprintw(VMSTATROW + 4, VMSTATCOL + 10, "relck");
    392  1.63       dsl 	mvprintw(VMSTATROW + 5, VMSTATCOL + 10, "rlkok");
    393  1.63       dsl 	mvprintw(VMSTATROW + 6, VMSTATCOL + 10, "noram");
    394  1.63       dsl 	mvprintw(VMSTATROW + 7, VMSTATCOL + 10, "ndcpy");
    395  1.63       dsl 	mvprintw(VMSTATROW + 8, VMSTATCOL + 10, "fltcp");
    396  1.63       dsl 	mvprintw(VMSTATROW + 9, VMSTATCOL + 10, "zfod");
    397  1.63       dsl 	mvprintw(VMSTATROW + 10, VMSTATCOL + 10, "cow");
    398  1.63       dsl 	mvprintw(VMSTATROW + 11, VMSTATCOL + 10, "fmin");
    399  1.63       dsl 	mvprintw(VMSTATROW + 12, VMSTATCOL + 10, "ftarg");
    400  1.63       dsl 	mvprintw(VMSTATROW + 13, VMSTATCOL + 10, "itarg");
    401  1.83     sevan 	mvprintw(VMSTATROW + 14, VMSTATCOL + 10, "flnan");
    402  1.63       dsl 	mvprintw(VMSTATROW + 15, VMSTATCOL + 10, "pdfre");
    403  1.63       dsl 
    404  1.63       dsl 	if (LINES - 1 > VMSTATROW + 16)
    405  1.63       dsl 		mvprintw(VMSTATROW + 16, VMSTATCOL + 10, "pdscn");
    406   1.1       jtc }
    407   1.1       jtc 
    408  1.63       dsl #define X(s, s1, fld)	{temp = (s).fld[i]; (s).fld[i] -= (s1).fld[i]; \
    409  1.63       dsl 			if (display_mode == TIME) (s1).fld[i] = temp;}
    410  1.63       dsl #define Z(s, s1, fld)	{temp = (s).nchstats.fld; \
    411  1.63       dsl 			(s).nchstats.fld -= (s1).nchstats.fld; \
    412  1.63       dsl 			if (display_mode == TIME) (s1).nchstats.fld = temp;}
    413  1.63       dsl #define PUTRATE(s, s1, fld, l, c, w) \
    414  1.63       dsl 			{temp = (s).fld; (s).fld -= (s1).fld; \
    415  1.63       dsl 			if (display_mode == TIME) (s1).fld = temp; \
    416  1.63       dsl 			putint((int)((float)(s).fld/etime + 0.5), l, c, w);}
    417   1.1       jtc 
    418  1.25    simonb static	char cpuchar[CPUSTATES] = { '=' , '>', '-', '%', ' ' };
    419  1.25    simonb static	char cpuorder[CPUSTATES] = { CP_SYS, CP_USER, CP_NICE, CP_INTR, CP_IDLE };
    420   1.1       jtc 
    421   1.1       jtc void
    422  1.63       dsl show_vmstat_top(vmtotal_t *Total, uvmexp_sysctl_t *uvm, uvmexp_sysctl_t *uvm1)
    423  1.63       dsl {
    424  1.63       dsl 	float f1, f2;
    425  1.63       dsl 	int psiz;
    426  1.63       dsl 	int i, l, c;
    427  1.63       dsl 	struct {
    428  1.63       dsl 		struct uvmexp_sysctl *uvmexp;
    429  1.63       dsl 	} us, us1;
    430  1.63       dsl 
    431  1.63       dsl 	us.uvmexp = uvm;
    432  1.63       dsl 	us1.uvmexp = uvm1;
    433  1.63       dsl 
    434  1.63       dsl 	putint(ucount(), STATROW, STATCOL, 3);
    435  1.63       dsl 	putfloat(avenrun[0], STATROW, STATCOL + 17, 6, 2, 0);
    436  1.63       dsl 	putfloat(avenrun[1], STATROW, STATCOL + 23, 6, 2, 0);
    437  1.63       dsl 	putfloat(avenrun[2], STATROW, STATCOL + 29, 6, 2, 0);
    438  1.63       dsl 	mvaddstr(STATROW, STATCOL + 53, buf);
    439  1.63       dsl 
    440  1.63       dsl 	putint(Total->t_rq - 1, PROCSROW + 1, PROCSCOL + 3, 3);
    441  1.63       dsl 	putint(Total->t_dw, PROCSROW + 1, PROCSCOL + 6, 3);
    442  1.63       dsl 	putint(Total->t_sl, PROCSROW + 1, PROCSCOL + 9, 3);
    443  1.63       dsl 
    444  1.63       dsl 	PUTRATE(us, us1, uvmexp->swtch, GENSTATROW + 1, GENSTATCOL - 1, 7);
    445  1.68       dsl 	PUTRATE(us, us1, uvmexp->traps, GENSTATROW + 1, GENSTATCOL + 7, 6);
    446  1.68       dsl 	PUTRATE(us, us1, uvmexp->syscalls, GENSTATROW + 1, GENSTATCOL + 14, 6);
    447  1.68       dsl 	PUTRATE(us, us1, uvmexp->intrs, GENSTATROW + 1, GENSTATCOL + 21, 5);
    448  1.72     njoly 	PUTRATE(us, us1, uvmexp->softs, GENSTATROW + 1, GENSTATCOL + 27, 6);
    449  1.72     njoly 	PUTRATE(us, us1, uvmexp->faults, GENSTATROW + 1, GENSTATCOL + 34, 6);
    450  1.63       dsl 
    451  1.83     sevan 	/*
    452  1.83     sevan 	 * XXX it sure would be nice if this did what top(1) does and showed
    453  1.83     sevan 	 * the utilization of each CPU on a separate line, though perhaps IFF
    454  1.83     sevan 	 * the screen is tall enough
    455  1.83     sevan 	 */
    456  1.63       dsl 	/* Last CPU state not calculated yet. */
    457  1.63       dsl 	for (f2 = 0.0, psiz = 0, c = 0; c < CPUSTATES; c++) {
    458  1.63       dsl 		i = cpuorder[c];
    459  1.63       dsl 		f1 = cputime(i);
    460  1.63       dsl 		f2 += f1;
    461  1.63       dsl 		l = (int) ((f2 + 1.0) / 2.0) - psiz;
    462  1.63       dsl 		if (c == 0)
    463  1.63       dsl 			putfloat(f1, GRAPHROW, GRAPHCOL + 1, 5, 1, 0);
    464  1.63       dsl 		else
    465  1.63       dsl 			putfloat(f1, GRAPHROW, GRAPHCOL + 10 * c + 1, 5, 1, 0);
    466  1.63       dsl 		mvhline(GRAPHROW + 2, psiz, cpuchar[c], l);
    467  1.63       dsl 		psiz += l;
    468  1.63       dsl 	}
    469  1.63       dsl 
    470  1.63       dsl 	PUTRATE(us, us1, uvmexp->pageins, PAGEROW + 2, PAGECOL + 5, 5);
    471  1.63       dsl 	PUTRATE(us, us1, uvmexp->pdpageouts, PAGEROW + 2, PAGECOL + 10, 5);
    472  1.63       dsl 	PUTRATE(us, us1, uvmexp->pgswapin, PAGEROW + 3, PAGECOL + 5, 5);
    473  1.63       dsl 	PUTRATE(us, us1, uvmexp->pgswapout, PAGEROW + 3, PAGECOL + 10, 5);
    474  1.63       dsl }
    475  1.63       dsl 
    476  1.63       dsl void
    477  1.33        ad showvmstat(void)
    478   1.1       jtc {
    479  1.63       dsl 	int inttotal;
    480  1.49       dsl 	int i, l, r, c;
    481   1.1       jtc 	static int failcnt = 0;
    482  1.49       dsl 	static int relabel = 0;
    483  1.49       dsl 	static int last_disks = 0;
    484  1.83     sevan 	static u_long bufmem;
    485  1.83     sevan 	struct buf_sysctl *buffers;
    486  1.83     sevan 	int mib[6];
    487  1.83     sevan 	size_t size;
    488  1.83     sevan 	int extraslop = 0;
    489  1.49       dsl 
    490  1.49       dsl 	if (relabel) {
    491  1.49       dsl 		labelvmstat();
    492  1.49       dsl 		relabel = 0;
    493  1.49       dsl 	}
    494  1.39  sommerfe 
    495  1.62       dsl 	cpuswap();
    496  1.63       dsl 	if (display_mode == TIME) {
    497  1.65     blymn 		drvswap();
    498  1.85  christos 		if (toofast(&failcnt))
    499  1.44       dsl 			return;
    500  1.44       dsl 	} else
    501  1.44       dsl 		etime = 1.0;
    502  1.44       dsl 
    503  1.63       dsl 	show_vmstat_top(&s.Total, &s.uvmexp, &s1.uvmexp);
    504   1.1       jtc 
    505  1.63       dsl 	/* Memory totals */
    506  1.17  drochner #define pgtokb(pg)	((pg) * (s.uvmexp.pagesize / 1024))
    507  1.83     sevan 
    508  1.83     sevan 	putint(pgtokb(s.uvmexp.anonpages),				MEMROW + 0, MEMCOL + 7, 10);
    509  1.83     sevan 	putint((s.uvmexp.anonpages * 100 + 0.5) / s.uvmexp.npages,	MEMROW + 0, MEMCOL + 17, 4);
    510  1.83     sevan 
    511  1.83     sevan 	putint(pgtokb(s.uvmexp.zeropages),				MEMROW + 0, MEMCOL + 30, 8);
    512  1.83     sevan 
    513  1.83     sevan 	putint(pgtokb(s.uvmexp.execpages),				MEMROW + 1, MEMCOL + 7, 10);
    514  1.83     sevan 	putint((s.uvmexp.execpages * 100 + 0.5) / s.uvmexp.npages,	MEMROW + 1, MEMCOL + 17, 4);
    515  1.83     sevan 
    516  1.83     sevan 	putint(pgtokb(s.uvmexp.wired),					MEMROW + 1, MEMCOL + 30, 8);
    517  1.83     sevan 
    518  1.83     sevan 	putint(pgtokb(s.uvmexp.filepages),				MEMROW + 2, MEMCOL + 7, 10);
    519  1.83     sevan 	putint((s.uvmexp.filepages * 100 + 0.5) / s.uvmexp.npages,	MEMROW + 2, MEMCOL + 17, 4);
    520  1.83     sevan 
    521  1.83     sevan 	putint(pgtokb(s.uvmexp.inactive),				MEMROW + 2, MEMCOL + 30, 8);
    522  1.83     sevan 
    523  1.83     sevan 	/* Get total size of metadata buffers */
    524  1.83     sevan 	size = sizeof(bufmem);
    525  1.83     sevan 	if (sysctlbyname("vm.bufmem", &bufmem, &size, NULL, 0) < 0) {
    526  1.83     sevan 		error("can't get buffers size: %s\n", strerror(errno));
    527  1.83     sevan 		return;
    528  1.83     sevan 	}
    529  1.83     sevan 
    530  1.83     sevan 	/* Get number of metadata buffers */
    531  1.83     sevan 	size = 0;
    532  1.83     sevan 	buffers = NULL;
    533  1.83     sevan 	mib[0] = CTL_KERN;
    534  1.83     sevan 	mib[1] = KERN_BUF;
    535  1.83     sevan 	mib[2] = KERN_BUF_ALL;
    536  1.83     sevan 	mib[3] = KERN_BUF_ALL;
    537  1.83     sevan 	mib[4] = (int)sizeof(struct buf_sysctl);
    538  1.83     sevan 	mib[5] = INT_MAX; /* we want them all */
    539  1.83     sevan again:
    540  1.83     sevan 	if (sysctl(mib, 6, NULL, &size, NULL, 0) < 0) {
    541  1.83     sevan 		error("can't get buffers size: %s\n", strerror(errno));
    542  1.83     sevan 		return;
    543  1.83     sevan 	}
    544  1.83     sevan 	if (size == 0) {
    545  1.83     sevan 		error("buffers size is zero: %s\n", strerror(errno));
    546  1.83     sevan 		return;
    547  1.83     sevan 	}
    548  1.83     sevan 	size += extraslop * sizeof(struct buf_sysctl);
    549  1.83     sevan 	buffers = malloc(size);
    550  1.83     sevan 	if (buffers == NULL) {
    551  1.83     sevan 		error("can't allocate buffers: %s\n", strerror(errno));
    552  1.83     sevan 		return;
    553  1.83     sevan 	}
    554  1.83     sevan 	if (sysctl(mib, 6, buffers, &size, NULL, 0) < 0) {
    555  1.83     sevan 		free(buffers);
    556  1.83     sevan 		if (extraslop == 0) {
    557  1.83     sevan 			extraslop = 100;
    558  1.83     sevan 			goto again;
    559  1.83     sevan 		}
    560  1.83     sevan 		error("can't get buffers: %s\n", strerror(errno));
    561  1.83     sevan 		return;
    562  1.83     sevan 	}
    563  1.83     sevan 	free(buffers);			/* XXX there must be a better way! */
    564  1.83     sevan 	nbuf = size / sizeof(struct buf_sysctl);
    565  1.83     sevan 
    566  1.83     sevan 	putint((int) (bufmem / 1024),		MEMROW + 3, MEMCOL + 5, 12);
    567  1.83     sevan 	putint((int) ((bufmem * 100) + 0.5) / s.uvmexp.pagesize / s.uvmexp.npages,
    568  1.83     sevan 						MEMROW + 3, MEMCOL + 17, 4);
    569  1.83     sevan 	putint(nbuf,				MEMROW + 3, MEMCOL + 30, 8);
    570  1.83     sevan 
    571  1.83     sevan 	putint(pgtokb(s.uvmexp.active),		MEMROW + 5, MEMCOL + 7, 10);
    572  1.83     sevan 	putint(pgtokb(s.uvmexp.swpgonly),	MEMROW + 5, MEMCOL + 18, 10);
    573  1.83     sevan 	putint(pgtokb(s.uvmexp.free),		MEMROW + 5, MEMCOL + 28, 10);
    574  1.83     sevan 
    575  1.63       dsl #undef pgtokb
    576  1.63       dsl 
    577  1.63       dsl 	/* Namei cache */
    578  1.63       dsl 	Z(s, s1, ncs_goodhits); Z(s, s1, ncs_badhits); Z(s, s1, ncs_miss);
    579  1.63       dsl 	Z(s, s1, ncs_long); Z(s, s1, ncs_pass2); Z(s, s1, ncs_2passes);
    580  1.63       dsl 	s.nchcount = s.nchstats.ncs_goodhits + s.nchstats.ncs_badhits +
    581  1.77     njoly 	    s.nchstats.ncs_miss + s.nchstats.ncs_long +
    582  1.77     njoly 	    s.nchstats.ncs_pass2 + s.nchstats.ncs_2passes;
    583  1.63       dsl 	if (display_mode == TIME)
    584  1.63       dsl 		s1.nchcount = s.nchcount;
    585  1.63       dsl 
    586  1.63       dsl 	putint(s.nchcount, NAMEIROW + 2, NAMEICOL, 9);
    587  1.63       dsl 	putint(s.nchstats.ncs_goodhits, NAMEIROW + 2, NAMEICOL + 9, 9);
    588  1.63       dsl #define nz(x)	((x) ? (x) : 1)
    589  1.63       dsl 	putfloat(s.nchstats.ncs_goodhits * 100.0 / nz(s.nchcount),
    590  1.63       dsl 	   NAMEIROW + 2, NAMEICOL + 19, 4, 0, 1);
    591  1.63       dsl 	putint(s.nchstats.ncs_pass2, NAMEIROW + 2, NAMEICOL + 23, 9);
    592  1.63       dsl 	putfloat(s.nchstats.ncs_pass2 * 100.0 / nz(s.nchcount),
    593  1.63       dsl 	   NAMEIROW + 2, NAMEICOL + 34, 4, 0, 1);
    594  1.63       dsl #undef nz
    595  1.12       mrg 
    596  1.63       dsl 	/* Disks */
    597  1.61     blymn 	for (l = 0, i = 0, r = DISKROW, c = DISKCOL;
    598  1.73     lukem 	     i < (int)ndrive; i++) {
    599  1.65     blymn 		if (!drv_select[i])
    600  1.65     blymn 			continue;
    601  1.61     blymn 
    602  1.49       dsl 		if (disk_horiz)
    603  1.49       dsl 			c += DISKCOLWIDTH;
    604  1.49       dsl 		else
    605  1.49       dsl 			r++;
    606  1.49       dsl 		if (c + DISKCOLWIDTH > DISKCOLEND) {
    607  1.49       dsl 			if (disk_horiz && LINES - 1 - DISKROW >
    608  1.61     blymn 			    (DISKCOLEND - DISKCOL) / DISKCOLWIDTH) {
    609  1.49       dsl 				disk_horiz = 0;
    610  1.49       dsl 				relabel = 1;
    611  1.49       dsl 			}
    612  1.49       dsl 			break;
    613   1.1       jtc 		}
    614  1.49       dsl 		if (r >= LINES - 1) {
    615  1.49       dsl 			if (!disk_horiz && LINES - 1 - DISKROW <
    616  1.61     blymn 			    (DISKCOLEND - DISKCOL) / DISKCOLWIDTH) {
    617  1.49       dsl 				disk_horiz = 1;
    618  1.49       dsl 				relabel = 1;
    619  1.49       dsl 			}
    620  1.49       dsl 			break;
    621  1.49       dsl 		}
    622  1.49       dsl 		l++;
    623  1.49       dsl 
    624  1.65     blymn 		dinfo(i, r, c);
    625  1.49       dsl 	}
    626  1.49       dsl 	/* blank out if we lost any disks */
    627  1.49       dsl 	for (i = l; i < last_disks; i++) {
    628  1.49       dsl 		int j;
    629  1.49       dsl 		if (disk_horiz)
    630  1.49       dsl 			c += DISKCOLWIDTH;
    631  1.49       dsl 		else
    632  1.49       dsl 			r++;
    633  1.49       dsl 		for (j = 0; j < 5; j++) {
    634  1.49       dsl 			if (disk_horiz)
    635  1.56   mycroft 				mvprintw(r+j, c, "%*s", DISKCOLWIDTH, "");
    636  1.49       dsl 			else
    637  1.56   mycroft 				mvprintw(r, c+j*DISKCOLWIDTH, "%*s", DISKCOLWIDTH, "");
    638  1.49       dsl 		}
    639  1.49       dsl 	}
    640  1.49       dsl 	last_disks = l;
    641  1.63       dsl 
    642  1.63       dsl 	/* Interrupts */
    643  1.63       dsl 	failcnt = 0;
    644  1.63       dsl 	inttotal = 0;
    645  1.63       dsl 	for (i = 0; i < nintr; i++) {
    646  1.63       dsl 		if (s.intrcnt[i] == 0)
    647  1.63       dsl 			continue;
    648  1.63       dsl 		if (intrloc[i] == 0) {
    649  1.63       dsl 			if (nextintsrow == LINES)
    650  1.63       dsl 				continue;
    651  1.63       dsl 			intrloc[i] = nextintsrow++;
    652  1.63       dsl 			mvprintw(intrloc[i], INTSCOL + 9, "%-.*s",
    653  1.63       dsl 				INTSCOLEND - (INTSCOL + 9), intrname[i]);
    654  1.63       dsl 		}
    655  1.63       dsl 		X(s, s1, intrcnt);
    656  1.63       dsl 		l = (int)((float)s.intrcnt[i]/etime + 0.5);
    657  1.63       dsl 		inttotal += l;
    658  1.63       dsl 		putint(l, intrloc[i], INTSCOL, 8);
    659  1.63       dsl 	}
    660  1.63       dsl 
    661  1.63       dsl 	for (i = 0; i < nevcnt; i++) {
    662  1.63       dsl 		if (s.evcnt[i] == 0)
    663  1.63       dsl 			continue;
    664  1.63       dsl 		if (ie_head[i].ie_loc == 0) {
    665  1.63       dsl 			if (nextintsrow == LINES)
    666  1.63       dsl 				continue;
    667  1.63       dsl 			ie_head[i].ie_loc = nextintsrow++;
    668  1.63       dsl 			print_ie_title(i);
    669  1.63       dsl 		}
    670  1.63       dsl 		X(s, s1, evcnt);
    671  1.63       dsl 		l = (int)((float)s.evcnt[i]/etime + 0.5);
    672  1.63       dsl 		inttotal += l;
    673  1.63       dsl 		putint(l, ie_head[i].ie_loc, INTSCOL, 8);
    674  1.63       dsl 	}
    675  1.63       dsl 	putint(inttotal, INTSROW, INTSCOL, 8);
    676  1.63       dsl 
    677  1.63       dsl 	PUTRATE(s, s1, uvmexp.forks, VMSTATROW + 0, VMSTATCOL + 3, 6);
    678  1.63       dsl 	PUTRATE(s, s1, uvmexp.forks_ppwait, VMSTATROW + 1, VMSTATCOL + 3, 6);
    679  1.63       dsl 	PUTRATE(s, s1, uvmexp.forks_sharevm, VMSTATROW + 2, VMSTATCOL + 3, 6);
    680  1.63       dsl 	PUTRATE(s, s1, uvmexp.fltpgwait, VMSTATROW + 3, VMSTATCOL + 4, 5);
    681  1.63       dsl 	PUTRATE(s, s1, uvmexp.fltrelck, VMSTATROW + 4, VMSTATCOL + 3, 6);
    682  1.63       dsl 	PUTRATE(s, s1, uvmexp.fltrelckok, VMSTATROW + 5, VMSTATCOL + 3, 6);
    683  1.63       dsl 	PUTRATE(s, s1, uvmexp.fltnoram, VMSTATROW + 6, VMSTATCOL + 3, 6);
    684  1.63       dsl 	PUTRATE(s, s1, uvmexp.fltamcopy, VMSTATROW + 7, VMSTATCOL + 3, 6);
    685  1.63       dsl 	PUTRATE(s, s1, uvmexp.flt_prcopy, VMSTATROW + 8, VMSTATCOL + 3, 6);
    686  1.63       dsl 	PUTRATE(s, s1, uvmexp.flt_przero, VMSTATROW + 9, VMSTATCOL + 3, 6);
    687  1.63       dsl 	PUTRATE(s, s1, uvmexp.flt_acow, VMSTATROW + 10, VMSTATCOL, 9);
    688  1.63       dsl 	putint(s.uvmexp.freemin, VMSTATROW + 11, VMSTATCOL, 9);
    689  1.63       dsl 	putint(s.uvmexp.freetarg, VMSTATROW + 12, VMSTATCOL, 9);
    690  1.63       dsl 	putint(s.uvmexp.inactarg, VMSTATROW + 13, VMSTATCOL, 9);
    691  1.83     sevan 	putint(s.uvmexp.fltnoanon, VMSTATROW + 14, VMSTATCOL, 9);
    692  1.63       dsl 	PUTRATE(s, s1, uvmexp.pdfreed, VMSTATROW + 15, VMSTATCOL, 9);
    693  1.63       dsl 	if (LINES - 1 > VMSTATROW + 16)
    694  1.63       dsl 		PUTRATE(s, s1, uvmexp.pdscans, VMSTATROW + 16, VMSTATCOL, 9);
    695  1.63       dsl 
    696   1.1       jtc }
    697   1.1       jtc 
    698  1.22     jwise void
    699  1.33        ad vmstat_boot(char *args)
    700  1.22     jwise {
    701  1.22     jwise 	copyinfo(&z, &s1);
    702  1.63       dsl 	display_mode = BOOT;
    703  1.22     jwise }
    704  1.22     jwise 
    705  1.22     jwise void
    706  1.33        ad vmstat_run(char *args)
    707  1.22     jwise {
    708  1.22     jwise 	copyinfo(&s1, &s2);
    709  1.63       dsl 	display_mode = RUN;
    710  1.22     jwise }
    711  1.22     jwise 
    712  1.22     jwise void
    713  1.44       dsl vmstat_time(char *args)
    714   1.1       jtc {
    715  1.63       dsl 	display_mode = TIME;
    716  1.22     jwise }
    717   1.1       jtc 
    718  1.22     jwise void
    719  1.33        ad vmstat_zero(char *args)
    720  1.22     jwise {
    721  1.63       dsl 	if (display_mode == RUN)
    722  1.63       dsl 		getinfo(&s1);
    723   1.1       jtc }
    724   1.1       jtc 
    725   1.1       jtc /* calculate number of users on the system */
    726   1.1       jtc static int
    727  1.33        ad ucount(void)
    728   1.1       jtc {
    729  1.40  christos 	static int onusers = -1;
    730  1.40  christos 	int nusers = 0;
    731  1.40  christos 	struct utmpentry *ehead;
    732  1.40  christos 
    733  1.40  christos 	nusers = getutentries(NULL, &ehead);
    734   1.1       jtc 
    735  1.21       mrg 	if (nusers != onusers) {
    736  1.21       mrg 		if (nusers == 1)
    737  1.21       mrg 			mvprintw(STATROW, STATCOL + 8, " ");
    738  1.21       mrg 		else
    739  1.21       mrg 			mvprintw(STATROW, STATCOL + 8, "s");
    740  1.21       mrg 	}
    741  1.21       mrg 	onusers = nusers;
    742   1.1       jtc 	return (nusers);
    743   1.1       jtc }
    744   1.1       jtc 
    745   1.1       jtc static float
    746  1.33        ad cputime(int indx)
    747   1.1       jtc {
    748   1.1       jtc 	double t;
    749  1.10     lukem 	int i;
    750   1.1       jtc 
    751   1.1       jtc 	t = 0;
    752   1.1       jtc 	for (i = 0; i < CPUSTATES; i++)
    753  1.39  sommerfe 		t += cur.cp_time[i];
    754   1.1       jtc 	if (t == 0.0)
    755   1.1       jtc 		t = 1.0;
    756  1.39  sommerfe 	return (cur.cp_time[indx] * 100.0 / t);
    757   1.1       jtc }
    758   1.1       jtc 
    759  1.63       dsl void
    760  1.44       dsl puthumanint(u_int64_t n, int l, int c, int w)
    761  1.41       abs {
    762  1.41       abs 	char b[128];
    763  1.41       abs 
    764  1.48       dsl 	if (move(l, c) != OK)
    765  1.48       dsl 		return;
    766  1.41       abs 	if (n == 0) {
    767  1.41       abs 		hline(' ', w);
    768  1.41       abs 		return;
    769  1.41       abs 	}
    770  1.44       dsl 	if (humanize_number(b, w, n, "", HN_AUTOSCALE, HN_NOSPACE) == -1 ) {
    771  1.41       abs 		hline('*', w);
    772  1.41       abs 		return;
    773  1.41       abs 	}
    774  1.63       dsl 	printw("%*s", w, b);
    775  1.41       abs }
    776  1.41       abs 
    777  1.63       dsl void
    778  1.33        ad putint(int n, int l, int c, int w)
    779   1.1       jtc {
    780   1.1       jtc 	char b[128];
    781   1.1       jtc 
    782  1.48       dsl 	if (move(l, c) != OK)
    783  1.48       dsl 		return;
    784   1.1       jtc 	if (n == 0) {
    785  1.30   mycroft 		hline(' ', w);
    786   1.1       jtc 		return;
    787   1.1       jtc 	}
    788  1.14       mrg 	(void)snprintf(b, sizeof b, "%*d", w, n);
    789  1.73     lukem 	if ((int)strlen(b) > w) {
    790  1.63       dsl 		if (display_mode == TIME)
    791  1.63       dsl 			hline('*', w);
    792  1.63       dsl 		else
    793  1.63       dsl 			puthumanint(n, l, c, w);
    794   1.1       jtc 		return;
    795   1.1       jtc 	}
    796   1.1       jtc 	addstr(b);
    797   1.1       jtc }
    798   1.1       jtc 
    799  1.63       dsl void
    800  1.33        ad putfloat(double f, int l, int c, int w, int d, int nz)
    801   1.1       jtc {
    802   1.1       jtc 	char b[128];
    803   1.1       jtc 
    804  1.48       dsl 	if (move(l, c) != OK)
    805  1.48       dsl 		return;
    806   1.1       jtc 	if (nz && f == 0.0) {
    807  1.30   mycroft 		hline(' ', w);
    808   1.1       jtc 		return;
    809   1.1       jtc 	}
    810  1.14       mrg 	(void)snprintf(b, sizeof b, "%*.*f", w, d, f);
    811  1.73     lukem 	if ((int)strlen(b) > w) {
    812  1.30   mycroft 		hline('*', w);
    813   1.1       jtc 		return;
    814   1.1       jtc 	}
    815   1.1       jtc 	addstr(b);
    816   1.1       jtc }
    817   1.1       jtc 
    818   1.1       jtc static void
    819  1.63       dsl getinfo(struct Info *stats)
    820   1.1       jtc {
    821   1.4       cgd 	int mib[2];
    822   1.4       cgd 	size_t size;
    823  1.44       dsl 	int i;
    824   1.1       jtc 
    825  1.62       dsl 	cpureadstats();
    826  1.65     blymn 	drvreadstats();
    827  1.78     joerg 	size = sizeof(stats->nchstats);
    828  1.78     joerg 	if (sysctlbyname("vfs.namecache_stats", &stats->nchstats, &size,
    829  1.78     joerg 	    NULL, 0) < 0) {
    830  1.78     joerg 		error("can't get namecache statistics: %s\n", strerror(errno));
    831  1.78     joerg 		memset(&stats->nchstats, 0, sizeof(stats->nchstats));
    832  1.78     joerg 	}
    833  1.60       chs 	if (nintr)
    834  1.83     sevan 		NREAD(X_INTRCNT, stats->intrcnt, nintr * sizeof(long));
    835  1.44       dsl 	for (i = 0; i < nevcnt; i++)
    836  1.60       chs 		KREAD(ie_head[i].ie_count, &stats->evcnt[i],
    837  1.60       chs 		      sizeof stats->evcnt[i]);
    838  1.59       dsl 	size = sizeof(stats->uvmexp);
    839  1.11       mrg 	mib[0] = CTL_VM;
    840  1.34    simonb 	mib[1] = VM_UVMEXP2;
    841  1.59       dsl 	if (sysctl(mib, 2, &stats->uvmexp, &size, NULL, 0) < 0) {
    842  1.11       mrg 		error("can't get uvmexp: %s\n", strerror(errno));
    843  1.59       dsl 		memset(&stats->uvmexp, 0, sizeof(stats->uvmexp));
    844  1.11       mrg 	}
    845  1.59       dsl 	size = sizeof(stats->Total);
    846   1.1       jtc 	mib[0] = CTL_VM;
    847   1.1       jtc 	mib[1] = VM_METER;
    848  1.59       dsl 	if (sysctl(mib, 2, &stats->Total, &size, NULL, 0) < 0) {
    849   1.1       jtc 		error("Can't get kernel info: %s\n", strerror(errno));
    850  1.59       dsl 		memset(&stats->Total, 0, sizeof(stats->Total));
    851   1.1       jtc 	}
    852   1.1       jtc }
    853   1.1       jtc 
    854   1.1       jtc static void
    855  1.59       dsl allocinfo(struct Info *stats)
    856   1.1       jtc {
    857   1.1       jtc 
    858  1.60       chs 	if (nintr &&
    859  1.60       chs 	    (stats->intrcnt = calloc(nintr, sizeof(long))) == NULL) {
    860  1.44       dsl 		error("calloc failed");
    861  1.44       dsl 		die(0);
    862  1.44       dsl 	}
    863  1.59       dsl 	if ((stats->evcnt = calloc(nevcnt, sizeof(u_int64_t))) == NULL) {
    864  1.44       dsl 		error("calloc failed");
    865  1.23     jwise 		die(0);
    866  1.23     jwise 	}
    867   1.1       jtc }
    868   1.1       jtc 
    869   1.1       jtc static void
    870  1.33        ad copyinfo(struct Info *from, struct Info *to)
    871   1.1       jtc {
    872   1.1       jtc 	long *intrcnt;
    873  1.44       dsl 	u_int64_t *evcnt;
    874   1.1       jtc 
    875   1.5   thorpej 	intrcnt = to->intrcnt;
    876  1.44       dsl 	evcnt = to->evcnt;
    877   1.1       jtc 	*to = *from;
    878  1.54       dsl 	memmove(to->intrcnt = intrcnt, from->intrcnt, nintr * sizeof *intrcnt);
    879  1.44       dsl 	memmove(to->evcnt = evcnt, from->evcnt, nevcnt * sizeof *evcnt);
    880   1.1       jtc }
    881   1.1       jtc 
    882   1.1       jtc static void
    883  1.49       dsl dinfo(int dn, int r, int c)
    884   1.1       jtc {
    885  1.82   mlelstv 	double atime, dtime;
    886  1.49       dsl #define ADV if (disk_horiz) r++; else c += DISKCOLWIDTH
    887  1.49       dsl 
    888  1.82   mlelstv 	/* elapsed time for disk stats */
    889  1.82   mlelstv 	dtime = etime;
    890  1.82   mlelstv 	if (cur.timestamp[dn].tv_sec || cur.timestamp[dn].tv_usec) {
    891  1.82   mlelstv 		dtime = (double)cur.timestamp[dn].tv_sec +
    892  1.82   mlelstv 			((double)cur.timestamp[dn].tv_usec / (double)1000000);
    893  1.82   mlelstv 	}
    894  1.82   mlelstv 
    895  1.49       dsl 	mvprintw(r, c, "%*.*s", DISKCOLWIDTH, DISKCOLWIDTH, dr_name[dn]);
    896  1.49       dsl 	ADV;
    897   1.1       jtc 
    898  1.82   mlelstv 	putint((int)(cur.seek[dn]/dtime+0.5), r, c, DISKCOLWIDTH);
    899  1.61     blymn 	ADV;
    900  1.82   mlelstv 	putint((int)((cur.rxfer[dn]+cur.wxfer[dn])/dtime+0.5),
    901  1.61     blymn 	    r, c, DISKCOLWIDTH);
    902  1.61     blymn 	ADV;
    903  1.82   mlelstv 	puthumanint((cur.rbytes[dn] + cur.wbytes[dn]) / dtime + 0.5,
    904  1.61     blymn 		    r, c, DISKCOLWIDTH);
    905  1.61     blymn 	ADV;
    906  1.61     blymn 
    907  1.61     blymn 	/* time busy in disk activity */
    908  1.65     blymn 	atime = cur.time[dn].tv_sec + cur.time[dn].tv_usec / 1000000.0;
    909  1.82   mlelstv 	atime = atime * 100.0 / dtime;
    910  1.61     blymn 	if (atime >= 100)
    911  1.61     blymn 		putint(100, r, c, DISKCOLWIDTH);
    912  1.61     blymn 	else
    913  1.61     blymn 		putfloat(atime, r, c, DISKCOLWIDTH, 1, 1);
    914   1.1       jtc }
    915