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pstat.c revision 1.11
      1 /*-
      2  * Copyright (c) 1980, 1991, 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 
     34 #ifndef lint
     35 static char copyright[] =
     36 "@(#) Copyright (c) 1980, 1991, 1993\n\
     37 	The Regents of the University of California.  All rights reserved.\n";
     38 #endif /* not lint */
     39 
     40 #ifndef lint
     41 /* from: static char sccsid[] = "@(#)pstat.c	8.9 (Berkeley) 2/16/94"; */
     42 static char *rcsid = "$Id: pstat.c,v 1.11 1995/03/28 17:28:20 jtc Exp $";
     43 #endif /* not lint */
     44 
     45 #include <sys/param.h>
     46 #include <sys/time.h>
     47 #include <sys/vnode.h>
     48 #include <sys/map.h>
     49 #include <sys/ucred.h>
     50 #define _KERNEL
     51 #include <sys/file.h>
     52 #include <ufs/ufs/quota.h>
     53 #include <ufs/ufs/inode.h>
     54 #define NFS
     55 #include <sys/mount.h>
     56 #undef NFS
     57 #undef _KERNEL
     58 #include <sys/stat.h>
     59 #include <nfs/nfsnode.h>
     60 #include <sys/ioctl.h>
     61 #include <sys/tty.h>
     62 #include <sys/conf.h>
     63 #include <sys/device.h>
     64 
     65 #include <sys/sysctl.h>
     66 
     67 #include <err.h>
     68 #include <kvm.h>
     69 #include <limits.h>
     70 #include <nlist.h>
     71 #include <stdio.h>
     72 #include <stdlib.h>
     73 #include <string.h>
     74 #include <unistd.h>
     75 
     76 struct nlist nl[] = {
     77 #define VM_SWAPMAP	0
     78 	{ "_swapmap" },	/* list of free swap areas */
     79 #define VM_NSWAPMAP	1
     80 	{ "_nswapmap" },/* size of the swap map */
     81 #define VM_SWDEVT	2
     82 	{ "_swdevt" },	/* list of swap devices and sizes */
     83 #define VM_NSWAP	3
     84 	{ "_nswap" },	/* size of largest swap device */
     85 #define VM_NSWDEV	4
     86 	{ "_nswdev" },	/* number of swap devices */
     87 #define VM_DMMAX	5
     88 	{ "_dmmax" },	/* maximum size of a swap block */
     89 #define	V_MOUNTLIST	6
     90 	{ "_mountlist" },	/* address of head of mount list. */
     91 #define V_NUMV		7
     92 	{ "_numvnodes" },
     93 #define	FNL_NFILE	8
     94 	{"_nfiles"},
     95 #define FNL_MAXFILE	9
     96 	{"_maxfiles"},
     97 #define NLMANDATORY FNL_MAXFILE	/* names up to here are mandatory */
     98 #define VM_NISWAP	NLMANDATORY + 1
     99 	{ "_niswap" },
    100 #define VM_NISWDEV	NLMANDATORY + 2
    101 	{ "_niswdev" },
    102 #define	SCONS		NLMANDATORY + 3
    103 	{ "_constty" },
    104 #define	SPTY		NLMANDATORY + 4
    105 	{ "_pt_tty" },
    106 #define	SNPTY		NLMANDATORY + 5
    107 	{ "_npty" },
    108 
    109 #ifdef sparc
    110 #define SZS	(SNPTY+1)
    111 	{ "_zs_tty" },
    112 #define SCZS	(SNPTY+2)
    113 	{ "_zscd" },
    114 #endif
    115 
    116 #ifdef hp300
    117 #define	SDCA	(SNPTY+1)
    118 	{ "_dca_tty" },
    119 #define	SNDCA	(SNPTY+2)
    120 	{ "_ndca" },
    121 #define	SDCM	(SNPTY+3)
    122 	{ "_dcm_tty" },
    123 #define	SNDCM	(SNPTY+4)
    124 	{ "_ndcm" },
    125 #define	SDCL	(SNPTY+5)
    126 	{ "_dcl_tty" },
    127 #define	SNDCL	(SNPTY+6)
    128 	{ "_ndcl" },
    129 #define	SITE	(SNPTY+7)
    130 	{ "_ite_tty" },
    131 #define	SNITE	(SNPTY+8)
    132 	{ "_nite" },
    133 #endif
    134 
    135 #ifdef mips
    136 #define SDC	(SNPTY+1)
    137 	{ "_dc_tty" },
    138 #define SNDC	(SNPTY+2)
    139 	{ "_dc_cnt" },
    140 #endif
    141 
    142 #ifdef i386
    143 #define SPC	(SNPTY+1)
    144 	{ "_pc_tty" },
    145 #define SCPC	(SNPTY+2)
    146 	{ "_pccd" },
    147 #define SCOM	(SNPTY+3)
    148 	{ "_com_tty" },
    149 #define SCCOM	(SNPTY+4)
    150 	{ "_comcd" },
    151 #endif
    152 #ifdef amiga
    153 #define SSER	(SNPTY + 1)
    154 	{ "_ser_tty" },
    155 #define SCSER	(SNPTY + 2)
    156 	{ "_sercd" },
    157 #define SITE	(SNPTY + 3)
    158 	{ "_ite_tty" },
    159 #define SCITE	(SNPTY + 4)
    160 	{ "_itecd" },
    161 #define SMFCS	(SNPTY + 5)
    162 	{ "_mfcs_tty" },
    163 #define SCMFCS	(SNPTY + 6)
    164 	{ "_mfcscd" },
    165 #endif
    166 
    167 	{ "" }
    168 };
    169 
    170 int	usenumflag;
    171 int	totalflag;
    172 int	kflag;
    173 char	*nlistf	= NULL;
    174 char	*memf	= NULL;
    175 kvm_t	*kd;
    176 
    177 #define	SVAR(var) __STRING(var)	/* to force expansion */
    178 #define	KGET(idx, var)							\
    179 	KGET1(idx, &var, sizeof(var), SVAR(var))
    180 #define	KGET1(idx, p, s, msg)						\
    181 	KGET2(nl[idx].n_value, p, s, msg)
    182 #define	KGET2(addr, p, s, msg)						\
    183 	if (kvm_read(kd, (u_long)(addr), p, s) != s)			\
    184 		warnx("cannot read %s: %s", msg, kvm_geterr(kd))
    185 #define	KGETRET(addr, p, s, msg)					\
    186 	if (kvm_read(kd, (u_long)(addr), p, s) != s) {			\
    187 		warnx("cannot read %s: %s", msg, kvm_geterr(kd));	\
    188 		return (0);						\
    189 	}
    190 
    191 void	filemode __P((void));
    192 int	getfiles __P((char **, int *));
    193 struct mount *
    194 	getmnt __P((struct mount *));
    195 struct e_vnode *
    196 	kinfo_vnodes __P((int *));
    197 struct e_vnode *
    198 	loadvnodes __P((int *));
    199 void	mount_print __P((struct mount *));
    200 void	nfs_header __P((void));
    201 int	nfs_print __P((struct vnode *));
    202 void	swapmode __P((void));
    203 void	ttymode __P((void));
    204 void	ttyprt __P((struct tty *, int));
    205 void	ttytype __P((char *, int, int));
    206 void	ttytype_newcf __P((char *, int, int));
    207 void	ttytype_oldcf __P((char *, int, int));
    208 void	ufs_header __P((void));
    209 int	ufs_print __P((struct vnode *));
    210 void	usage __P((void));
    211 void	vnode_header __P((void));
    212 void	vnode_print __P((struct vnode *, struct vnode *));
    213 void	vnodemode __P((void));
    214 
    215 int
    216 main(argc, argv)
    217 	int argc;
    218 	char *argv[];
    219 {
    220 	extern char *optarg;
    221 	extern int optind;
    222 	int ch, i, quit, ret;
    223 	int fileflag, swapflag, ttyflag, vnodeflag;
    224 	char buf[_POSIX2_LINE_MAX];
    225 
    226 	fileflag = swapflag = ttyflag = vnodeflag = 0;
    227 	while ((ch = getopt(argc, argv, "TM:N:fiknstv")) != -1)
    228 		switch (ch) {
    229 		case 'f':
    230 			fileflag = 1;
    231 			break;
    232 		case 'M':
    233 			memf = optarg;
    234 			break;
    235 		case 'N':
    236 			nlistf = optarg;
    237 			break;
    238 		case 'n':
    239 			usenumflag = 1;
    240 			break;
    241 		case 's':
    242 			swapflag = 1;
    243 			break;
    244 		case 'T':
    245 			totalflag = 1;
    246 			break;
    247 		case 't':
    248 			ttyflag = 1;
    249 			break;
    250 		case 'k':
    251 			kflag = 1;
    252 			break;
    253 		case 'v':
    254 		case 'i':		/* Backward compatibility. */
    255 			vnodeflag = 1;
    256 			break;
    257 		default:
    258 			usage();
    259 		}
    260 	argc -= optind;
    261 	argv += optind;
    262 
    263 	/*
    264 	 * Discard setgid privileges if not the running kernel so that bad
    265 	 * guys can't print interesting stuff from kernel memory.
    266 	 */
    267 	if (nlistf != NULL || memf != NULL)
    268 		(void)setgid(getgid());
    269 
    270 	if ((kd = kvm_openfiles(nlistf, memf, NULL, O_RDONLY, buf)) == 0)
    271 		errx(1, "kvm_openfiles: %s", buf);
    272 	if ((ret = kvm_nlist(kd, nl)) != 0) {
    273 		if (ret == -1)
    274 			errx(1, "kvm_nlist: %s", kvm_geterr(kd));
    275 		for (i = quit = 0; i <= NLMANDATORY; i++)
    276 			if (!nl[i].n_value) {
    277 				quit = 1;
    278 				warnx("undefined symbol: %s\n", nl[i].n_name);
    279 			}
    280 		if (quit)
    281 			exit(1);
    282 	}
    283 	if (!(fileflag | vnodeflag | ttyflag | swapflag | totalflag))
    284 		usage();
    285 	if (fileflag || totalflag)
    286 		filemode();
    287 	if (vnodeflag || totalflag)
    288 		vnodemode();
    289 	if (ttyflag)
    290 		ttymode();
    291 	if (swapflag || totalflag)
    292 		swapmode();
    293 	exit (0);
    294 }
    295 
    296 struct e_vnode {
    297 	struct vnode *avnode;
    298 	struct vnode vnode;
    299 };
    300 
    301 void
    302 vnodemode()
    303 {
    304 	register struct e_vnode *e_vnodebase, *endvnode, *evp;
    305 	register struct vnode *vp;
    306 	register struct mount *maddr, *mp;
    307 	int numvnodes;
    308 
    309 	e_vnodebase = loadvnodes(&numvnodes);
    310 	if (totalflag) {
    311 		(void)printf("%7d vnodes\n", numvnodes);
    312 		return;
    313 	}
    314 	endvnode = e_vnodebase + numvnodes;
    315 	(void)printf("%d active vnodes\n", numvnodes);
    316 
    317 
    318 #define ST	mp->mnt_stat
    319 	maddr = NULL;
    320 	for (evp = e_vnodebase; evp < endvnode; evp++) {
    321 		vp = &evp->vnode;
    322 		if (vp->v_mount != maddr) {
    323 			/*
    324 			 * New filesystem
    325 			 */
    326 			if ((mp = getmnt(vp->v_mount)) == NULL)
    327 				continue;
    328 			maddr = vp->v_mount;
    329 			mount_print(mp);
    330 			vnode_header();
    331 			if (!strncmp(ST.f_fstypename, MOUNT_UFS, MFSNAMELEN) ||
    332 			    !strncmp(ST.f_fstypename, MOUNT_MFS, MFSNAMELEN)) {
    333 				ufs_header();
    334 			} else if (!strncmp(ST.f_fstypename, MOUNT_NFS,
    335 			    MFSNAMELEN)) {
    336 				nfs_header();
    337 			}
    338 			(void)printf("\n");
    339 		}
    340 		vnode_print(evp->avnode, vp);
    341 		if (!strncmp(ST.f_fstypename, MOUNT_UFS, MFSNAMELEN) ||
    342 		    !strncmp(ST.f_fstypename, MOUNT_MFS, MFSNAMELEN)) {
    343 			ufs_print(vp);
    344 		} else if (!strncmp(ST.f_fstypename, MOUNT_NFS, MFSNAMELEN)) {
    345 			nfs_print(vp);
    346 		}
    347 		(void)printf("\n");
    348 	}
    349 	free(e_vnodebase);
    350 }
    351 
    352 void
    353 vnode_header()
    354 {
    355 	(void)printf("ADDR     TYP VFLAG  USE HOLD");
    356 }
    357 
    358 void
    359 vnode_print(avnode, vp)
    360 	struct vnode *avnode;
    361 	struct vnode *vp;
    362 {
    363 	char *type, flags[16];
    364 	char *fp = flags;
    365 	register int flag;
    366 
    367 	/*
    368 	 * set type
    369 	 */
    370 	switch(vp->v_type) {
    371 	case VNON:
    372 		type = "non"; break;
    373 	case VREG:
    374 		type = "reg"; break;
    375 	case VDIR:
    376 		type = "dir"; break;
    377 	case VBLK:
    378 		type = "blk"; break;
    379 	case VCHR:
    380 		type = "chr"; break;
    381 	case VLNK:
    382 		type = "lnk"; break;
    383 	case VSOCK:
    384 		type = "soc"; break;
    385 	case VFIFO:
    386 		type = "fif"; break;
    387 	case VBAD:
    388 		type = "bad"; break;
    389 	default:
    390 		type = "unk"; break;
    391 	}
    392 	/*
    393 	 * gather flags
    394 	 */
    395 	flag = vp->v_flag;
    396 	if (flag & VROOT)
    397 		*fp++ = 'R';
    398 	if (flag & VTEXT)
    399 		*fp++ = 'T';
    400 	if (flag & VSYSTEM)
    401 		*fp++ = 'S';
    402 	if (flag & VXLOCK)
    403 		*fp++ = 'L';
    404 	if (flag & VXWANT)
    405 		*fp++ = 'W';
    406 	if (flag & VBWAIT)
    407 		*fp++ = 'B';
    408 	if (flag & VALIASED)
    409 		*fp++ = 'A';
    410 	if (flag == 0)
    411 		*fp++ = '-';
    412 	*fp = '\0';
    413 	(void)printf("%8x %s %5s %4d %4d",
    414 	    avnode, type, flags, vp->v_usecount, vp->v_holdcnt);
    415 }
    416 
    417 void
    418 ufs_header()
    419 {
    420 	(void)printf(" FILEID IFLAG RDEV|SZ");
    421 }
    422 
    423 int
    424 ufs_print(vp)
    425 	struct vnode *vp;
    426 {
    427 	register int flag;
    428 	struct inode inode, *ip = &inode;
    429 	char flagbuf[16], *flags = flagbuf;
    430 	char *name;
    431 	mode_t type;
    432 
    433 	KGETRET(VTOI(vp), &inode, sizeof(struct inode), "vnode's inode");
    434 	flag = ip->i_flag;
    435 	if (flag & IN_LOCKED)
    436 		*flags++ = 'L';
    437 	if (flag & IN_WANTED)
    438 		*flags++ = 'W';
    439 	if (flag & IN_RENAME)
    440 		*flags++ = 'R';
    441 	if (flag & IN_UPDATE)
    442 		*flags++ = 'U';
    443 	if (flag & IN_ACCESS)
    444 		*flags++ = 'A';
    445 	if (flag & IN_CHANGE)
    446 		*flags++ = 'C';
    447 	if (flag & IN_MODIFIED)
    448 		*flags++ = 'M';
    449 	if (flag & IN_SHLOCK)
    450 		*flags++ = 'S';
    451 	if (flag & IN_EXLOCK)
    452 		*flags++ = 'E';
    453 	if (flag & IN_LWAIT)
    454 		*flags++ = 'Z';
    455 	if (flag == 0)
    456 		*flags++ = '-';
    457 	*flags = '\0';
    458 
    459 	(void)printf(" %6d %5s", ip->i_number, flagbuf);
    460 	type = ip->i_mode & S_IFMT;
    461 	if (S_ISCHR(ip->i_mode) || S_ISBLK(ip->i_mode))
    462 		if (usenumflag || ((name = devname(ip->i_rdev, type)) == NULL))
    463 			(void)printf("   %2d,%-2d",
    464 			    major(ip->i_rdev), minor(ip->i_rdev));
    465 		else
    466 			(void)printf(" %7s", name);
    467 	else
    468 		(void)printf(" %7qd", ip->i_size);
    469 	return (0);
    470 }
    471 
    472 void
    473 nfs_header()
    474 {
    475 	(void)printf(" FILEID NFLAG RDEV|SZ");
    476 }
    477 
    478 int
    479 nfs_print(vp)
    480 	struct vnode *vp;
    481 {
    482 	struct nfsnode nfsnode, *np = &nfsnode;
    483 	char flagbuf[16], *flags = flagbuf;
    484 	register int flag;
    485 	char *name;
    486 	mode_t type;
    487 
    488 	KGETRET(VTONFS(vp), &nfsnode, sizeof(nfsnode), "vnode's nfsnode");
    489 	flag = np->n_flag;
    490 	if (flag & NFLUSHWANT)
    491 		*flags++ = 'W';
    492 	if (flag & NFLUSHINPROG)
    493 		*flags++ = 'P';
    494 	if (flag & NMODIFIED)
    495 		*flags++ = 'M';
    496 	if (flag & NWRITEERR)
    497 		*flags++ = 'E';
    498 	if (flag & NQNFSNONCACHE)
    499 		*flags++ = 'X';
    500 	if (flag & NQNFSWRITE)
    501 		*flags++ = 'O';
    502 	if (flag & NQNFSEVICTED)
    503 		*flags++ = 'G';
    504 	if (flag == 0)
    505 		*flags++ = '-';
    506 	*flags = '\0';
    507 
    508 #define VT	np->n_vattr
    509 	(void)printf(" %6d %5s", VT.va_fileid, flagbuf);
    510 	type = VT.va_mode & S_IFMT;
    511 	if (S_ISCHR(VT.va_mode) || S_ISBLK(VT.va_mode))
    512 		if (usenumflag || ((name = devname(VT.va_rdev, type)) == NULL))
    513 			(void)printf("   %2d,%-2d",
    514 			    major(VT.va_rdev), minor(VT.va_rdev));
    515 		else
    516 			(void)printf(" %7s", name);
    517 	else
    518 		(void)printf(" %7qd", np->n_size);
    519 	return (0);
    520 }
    521 
    522 /*
    523  * Given a pointer to a mount structure in kernel space,
    524  * read it in and return a usable pointer to it.
    525  */
    526 struct mount *
    527 getmnt(maddr)
    528 	struct mount *maddr;
    529 {
    530 	static struct mtab {
    531 		struct mtab *next;
    532 		struct mount *maddr;
    533 		struct mount mount;
    534 	} *mhead = NULL;
    535 	register struct mtab *mt;
    536 
    537 	for (mt = mhead; mt != NULL; mt = mt->next)
    538 		if (maddr == mt->maddr)
    539 			return (&mt->mount);
    540 	if ((mt = malloc(sizeof(struct mtab))) == NULL)
    541 		err(1, NULL);
    542 	KGETRET(maddr, &mt->mount, sizeof(struct mount), "mount table");
    543 	mt->maddr = maddr;
    544 	mt->next = mhead;
    545 	mhead = mt;
    546 	return (&mt->mount);
    547 }
    548 
    549 void
    550 mount_print(mp)
    551 	struct mount *mp;
    552 {
    553 	register int flags;
    554 	char *type;
    555 
    556 #define ST	mp->mnt_stat
    557 	(void)printf("*** MOUNT ");
    558 	(void)printf("%s %s on %s", ST.f_fstypename,
    559 	    ST.f_mntfromname, ST.f_mntonname);
    560 	if (flags = mp->mnt_flag) {
    561 		char *comma = "(";
    562 
    563 		putchar(' ');
    564 		/* user visable flags */
    565 		if (flags & MNT_RDONLY) {
    566 			(void)printf("%srdonly", comma);
    567 			flags &= ~MNT_RDONLY;
    568 			comma = ",";
    569 		}
    570 		if (flags & MNT_SYNCHRONOUS) {
    571 			(void)printf("%ssynchronous", comma);
    572 			flags &= ~MNT_SYNCHRONOUS;
    573 			comma = ",";
    574 		}
    575 		if (flags & MNT_NOEXEC) {
    576 			(void)printf("%snoexec", comma);
    577 			flags &= ~MNT_NOEXEC;
    578 			comma = ",";
    579 		}
    580 		if (flags & MNT_NOSUID) {
    581 			(void)printf("%snosuid", comma);
    582 			flags &= ~MNT_NOSUID;
    583 			comma = ",";
    584 		}
    585 		if (flags & MNT_NODEV) {
    586 			(void)printf("%snodev", comma);
    587 			flags &= ~MNT_NODEV;
    588 			comma = ",";
    589 		}
    590 		if (flags & MNT_EXPORTED) {
    591 			(void)printf("%sexport", comma);
    592 			flags &= ~MNT_EXPORTED;
    593 			comma = ",";
    594 		}
    595 		if (flags & MNT_EXRDONLY) {
    596 			(void)printf("%sexrdonly", comma);
    597 			flags &= ~MNT_EXRDONLY;
    598 			comma = ",";
    599 		}
    600 		if (flags & MNT_LOCAL) {
    601 			(void)printf("%slocal", comma);
    602 			flags &= ~MNT_LOCAL;
    603 			comma = ",";
    604 		}
    605 		if (flags & MNT_QUOTA) {
    606 			(void)printf("%squota", comma);
    607 			flags &= ~MNT_QUOTA;
    608 			comma = ",";
    609 		}
    610 		/* filesystem control flags */
    611 		if (flags & MNT_UPDATE) {
    612 			(void)printf("%supdate", comma);
    613 			flags &= ~MNT_UPDATE;
    614 			comma = ",";
    615 		}
    616 		if (flags & MNT_MLOCK) {
    617 			(void)printf("%slock", comma);
    618 			flags &= ~MNT_MLOCK;
    619 			comma = ",";
    620 		}
    621 		if (flags & MNT_MWAIT) {
    622 			(void)printf("%swait", comma);
    623 			flags &= ~MNT_MWAIT;
    624 			comma = ",";
    625 		}
    626 		if (flags & MNT_MPBUSY) {
    627 			(void)printf("%sbusy", comma);
    628 			flags &= ~MNT_MPBUSY;
    629 			comma = ",";
    630 		}
    631 		if (flags & MNT_MPWANT) {
    632 			(void)printf("%swant", comma);
    633 			flags &= ~MNT_MPWANT;
    634 			comma = ",";
    635 		}
    636 		if (flags & MNT_UNMOUNT) {
    637 			(void)printf("%sunmount", comma);
    638 			flags &= ~MNT_UNMOUNT;
    639 			comma = ",";
    640 		}
    641 		if (flags)
    642 			(void)printf("%sunknown_flags:%x", comma, flags);
    643 		(void)printf(")");
    644 	}
    645 	(void)printf("\n");
    646 #undef ST
    647 }
    648 
    649 struct e_vnode *
    650 loadvnodes(avnodes)
    651 	int *avnodes;
    652 {
    653 	int mib[2];
    654 	size_t copysize;
    655 	struct e_vnode *vnodebase;
    656 
    657 	if (memf != NULL) {
    658 		/*
    659 		 * do it by hand
    660 		 */
    661 		return (kinfo_vnodes(avnodes));
    662 	}
    663 	mib[0] = CTL_KERN;
    664 	mib[1] = KERN_VNODE;
    665 	if (sysctl(mib, 2, NULL, &copysize, NULL, 0) == -1)
    666 		err(1, "sysctl: KERN_VNODE");
    667 	if ((vnodebase = malloc(copysize)) == NULL)
    668 		err(1, NULL);
    669 	if (sysctl(mib, 2, vnodebase, &copysize, NULL, 0) == -1)
    670 		err(1, "sysctl: KERN_VNODE");
    671 	if (copysize % sizeof(struct e_vnode))
    672 		errx(1, "vnode size mismatch");
    673 	*avnodes = copysize / sizeof(struct e_vnode);
    674 
    675 	return (vnodebase);
    676 }
    677 
    678 /*
    679  * simulate what a running kernel does in in kinfo_vnode
    680  */
    681 struct e_vnode *
    682 kinfo_vnodes(avnodes)
    683 	int *avnodes;
    684 {
    685 	struct mntlist mountlist;
    686 	struct mount *mp, mount;
    687 	struct vnode *vp, vnode;
    688 	char *vbuf, *evbuf, *bp;
    689 	int num, numvnodes;
    690 
    691 #define VPTRSZ  sizeof(struct vnode *)
    692 #define VNODESZ sizeof(struct vnode)
    693 
    694 	KGET(V_NUMV, numvnodes);
    695 	if ((vbuf = malloc((numvnodes + 20) * (VPTRSZ + VNODESZ))) == NULL)
    696 		err(1, NULL);
    697 	bp = vbuf;
    698 	evbuf = vbuf + (numvnodes + 20) * (VPTRSZ + VNODESZ);
    699 	KGET(V_MOUNTLIST, mountlist);
    700 	for (num = 0, mp = mountlist.cqh_first; ; mp = mp->mnt_list.cqe_next) {
    701 		KGET2(mp, &mount, sizeof(mount), "mount entry");
    702 		for (vp = mount.mnt_vnodelist.lh_first;
    703 		    vp != NULL; vp = vp->v_mntvnodes.le_next) {
    704 			KGET2(vp, &vnode, sizeof(vnode), "vnode");
    705 			if ((bp + VPTRSZ + VNODESZ) > evbuf)
    706 				/* XXX - should realloc */
    707 				errx(1, "no more room for vnodes");
    708 			memmove(bp, &vp, VPTRSZ);
    709 			bp += VPTRSZ;
    710 			memmove(bp, &vnode, VNODESZ);
    711 			bp += VNODESZ;
    712 			num++;
    713 		}
    714 		if (mp == mountlist.cqh_last)
    715 			break;
    716 	}
    717 	*avnodes = num;
    718 	return ((struct e_vnode *)vbuf);
    719 }
    720 
    721 char hdr[]="  LINE  RAW  CAN  OUT  HWT LWT    COL STATE    SESS  PGID DISC\n";
    722 
    723 void
    724 ttymode()
    725 {
    726 
    727 #ifdef sparc
    728 	ttytype("console", SCONS, 1);
    729 	ttytype_newcf("zs", SZS, SCZS);
    730 #endif
    731 
    732 #ifdef vax
    733 	if (nl[SNQD].n_type != 0)
    734 		qdss();
    735 	if (nl[SNDZ].n_type != 0)
    736 		ttytype_oldcf("dz", SDZ, SNDZ);
    737 	if (nl[SNDH].n_type != 0)
    738 		ttytype_oldcf("dh", SDH, SNDH);
    739 	if (nl[SNDMF].n_type != 0)
    740 		ttytype_oldcf("dmf", SDMF, SNDMF);
    741 	if (nl[SNDHU].n_type != 0)
    742 		ttytype_oldcf("dhu", SDHU, SNDHU);
    743 	if (nl[SNDMZ].n_type != 0)
    744 		ttytype_oldcf("dmz", SDMZ, SNDMZ);
    745 #endif
    746 #ifdef tahoe
    747 	if (nl[SNVX].n_type != 0)
    748 		ttytype_oldcf("vx", SVX, SNVX);
    749 	if (nl[SNMP].n_type != 0)
    750 		ttytype_oldcf("mp", SMP, SNMP);
    751 #endif
    752 #ifdef hp300
    753 	if (nl[SNITE].n_type != 0)
    754 		ttytype_oldcf("ite", SITE, SNITE);
    755 	if (nl[SNDCA].n_type != 0)
    756 		ttytype_oldcf("dca", SDCA, SNDCA);
    757 	if (nl[SNDCM].n_type != 0)
    758 		ttytype_oldcf("dcm", SDCM, SNDCM);
    759 	if (nl[SNDCL].n_type != 0)
    760 		ttytype_oldcf("dcl", SDCL, SNDCL);
    761 #endif
    762 #ifdef mips
    763 	if (nl[SNDC].n_type != 0)
    764 		ttytype_oldcf("dc", SDC, SNDC);
    765 #endif
    766 #ifdef i386
    767 	if (nl[SCPC].n_type != 0)
    768 		ttytype_newcf("pc", SPC, SCPC);
    769 	if (nl[SCCOM].n_type != 0)
    770 		ttytype_newcf("com", SCOM, SCCOM);
    771 #endif
    772 #ifdef amiga
    773 	if (nl[SCSER].n_type != 0)
    774 		ttytype_newcf("ser", SSER, SCSER);
    775 	if (nl[SCITE].n_type != 0)
    776 		ttytype_newcf("ite", SITE, SCITE);
    777 	if (nl[SCMFCS].n_type != 0)
    778 		ttytype_newcf("mfcs", SMFCS, SCMFCS);
    779 #endif
    780 	if (nl[SNPTY].n_type != 0)
    781 		ttytype_oldcf("pty", SPTY, SNPTY);
    782 }
    783 
    784 void
    785 ttytype_oldcf(name, type, number)
    786 	char *name;
    787 	int type, number;
    788 {
    789 	int ntty;
    790 
    791 	KGET(number, ntty);
    792 	ttytype(name, type, ntty);
    793 }
    794 
    795 void
    796 ttytype_newcf(name, type, config)
    797 	char *name;
    798 	int type, config;
    799 {
    800 	struct cfdriver cf;
    801 	void **cd;
    802 	int i;
    803 
    804 	KGET(config, cf);
    805 	cd = malloc(cf.cd_ndevs * sizeof(void *));
    806 	if (!cd)
    807 		return;
    808 	KGET2(cf.cd_devs, cd, cf.cd_ndevs * sizeof(void *), "cfdevicep");
    809 	for (i = cf.cd_ndevs - 1; i >= 0; --i)
    810 		if (cd[i])
    811 			break;
    812 	free(cd);
    813 	ttytype(name, type, i + 1);
    814 }
    815 
    816 void
    817 ttytype(name, type, number)
    818 	char *name;
    819 	int type, number;
    820 {
    821 	static struct tty **ttyp;
    822 	static int nttyp;
    823 	static struct tty tty;
    824 	int ntty = number, i;
    825 
    826 	(void)printf("%d %s %s\n", ntty, name, (ntty == 1) ? "line" : "lines");
    827 	if (ntty > nttyp) {
    828 		nttyp = ntty;
    829 		if ((ttyp = realloc(ttyp, nttyp * sizeof(*ttyp))) == 0)
    830 			err(1, NULL);
    831 	}
    832 	KGET1(type, ttyp, nttyp * sizeof(*ttyp), "tty pointers");
    833 	(void)printf(hdr);
    834 	for (i = 0; i < ntty; i++) {
    835 		if (ttyp[i] == NULL)
    836 			continue;
    837 		KGET2(ttyp[i], &tty, sizeof(struct tty), "tty struct");
    838 		ttyprt(&tty, i);
    839 	}
    840 }
    841 
    842 struct {
    843 	int flag;
    844 	char val;
    845 } ttystates[] = {
    846 	{ TS_WOPEN,	'W'},
    847 	{ TS_ISOPEN,	'O'},
    848 	{ TS_CARR_ON,	'C'},
    849 	{ TS_TIMEOUT,	'T'},
    850 	{ TS_FLUSH,	'F'},
    851 	{ TS_BUSY,	'B'},
    852 	{ TS_ASLEEP,	'A'},
    853 	{ TS_XCLUDE,	'X'},
    854 	{ TS_TTSTOP,	'S'},
    855 	{ TS_TBLOCK,	'K'},
    856 	{ TS_ASYNC,	'Y'},
    857 	{ TS_BKSL,	'D'},
    858 	{ TS_ERASE,	'E'},
    859 	{ TS_LNCH,	'L'},
    860 	{ TS_TYPEN,	'P'},
    861 	{ TS_CNTTB,	'N'},
    862 	{ 0,	       '\0'},
    863 };
    864 
    865 void
    866 ttyprt(tp, line)
    867 	register struct tty *tp;
    868 	int line;
    869 {
    870 	register int i, j;
    871 	pid_t pgid;
    872 	char *name, state[20];
    873 
    874 	if (usenumflag || tp->t_dev == 0 ||
    875 	   (name = devname(tp->t_dev, S_IFCHR)) == NULL)
    876 		(void)printf("%7d ", line);
    877 	else
    878 		(void)printf("%-7s ", name);
    879 	(void)printf("%3d %4d ", tp->t_rawq.c_cc, tp->t_canq.c_cc);
    880 	(void)printf("%4d %4d %3d %6d ", tp->t_outq.c_cc,
    881 		tp->t_hiwat, tp->t_lowat, tp->t_column);
    882 	for (i = j = 0; ttystates[i].flag; i++)
    883 		if (tp->t_state&ttystates[i].flag)
    884 			state[j++] = ttystates[i].val;
    885 	if (j == 0)
    886 		state[j++] = '-';
    887 	state[j] = '\0';
    888 	(void)printf("%-6s %6x", state, (u_long)tp->t_session & ~KERNBASE);
    889 	pgid = 0;
    890 	if (tp->t_pgrp != NULL)
    891 		KGET2(&tp->t_pgrp->pg_id, &pgid, sizeof(pid_t), "pgid");
    892 	(void)printf("%6d ", pgid);
    893 	switch (tp->t_line) {
    894 	case TTYDISC:
    895 		(void)printf("term\n");
    896 		break;
    897 	case TABLDISC:
    898 		(void)printf("tab\n");
    899 		break;
    900 	case SLIPDISC:
    901 		(void)printf("slip\n");
    902 		break;
    903 	case PPPDISC:
    904 		(void)printf("ppp\n");
    905 		break;
    906 	default:
    907 		(void)printf("%d\n", tp->t_line);
    908 		break;
    909 	}
    910 }
    911 
    912 void
    913 filemode()
    914 {
    915 	register struct file *fp;
    916 	struct file *addr;
    917 	char *buf, flagbuf[16], *fbp;
    918 	int len, maxfile, nfile;
    919 	static char *dtypes[] = { "???", "inode", "socket" };
    920 
    921 	KGET(FNL_MAXFILE, maxfile);
    922 	if (totalflag) {
    923 		KGET(FNL_NFILE, nfile);
    924 		(void)printf("%3d/%3d files\n", nfile, maxfile);
    925 		return;
    926 	}
    927 	if (getfiles(&buf, &len) == -1)
    928 		return;
    929 	/*
    930 	 * Getfiles returns in malloc'd memory a pointer to the first file
    931 	 * structure, and then an array of file structs (whose addresses are
    932 	 * derivable from the previous entry).
    933 	 */
    934 	addr = ((struct filelist *)buf)->lh_first;
    935 	fp = (struct file *)(buf + sizeof(struct filelist));
    936 	nfile = (len - sizeof(struct filelist)) / sizeof(struct file);
    937 
    938 	(void)printf("%d/%d open files\n", nfile, maxfile);
    939 	(void)printf("   LOC   TYPE    FLG     CNT  MSG    DATA    OFFSET\n");
    940 	for (; (char *)fp < buf + len; addr = fp->f_list.le_next, fp++) {
    941 		if ((unsigned)fp->f_type > DTYPE_SOCKET)
    942 			continue;
    943 		(void)printf("%x ", addr);
    944 		(void)printf("%-8.8s", dtypes[fp->f_type]);
    945 		fbp = flagbuf;
    946 		if (fp->f_flag & FREAD)
    947 			*fbp++ = 'R';
    948 		if (fp->f_flag & FWRITE)
    949 			*fbp++ = 'W';
    950 		if (fp->f_flag & FAPPEND)
    951 			*fbp++ = 'A';
    952 #ifdef FSHLOCK	/* currently gone */
    953 		if (fp->f_flag & FSHLOCK)
    954 			*fbp++ = 'S';
    955 		if (fp->f_flag & FEXLOCK)
    956 			*fbp++ = 'X';
    957 #endif
    958 		if (fp->f_flag & FASYNC)
    959 			*fbp++ = 'I';
    960 		*fbp = '\0';
    961 		(void)printf("%6s  %3d", flagbuf, fp->f_count);
    962 		(void)printf("  %3d", fp->f_msgcount);
    963 		(void)printf("  %8.1x", fp->f_data);
    964 		if (fp->f_offset < 0)
    965 			(void)printf("  %qx\n", fp->f_offset);
    966 		else
    967 			(void)printf("  %qd\n", fp->f_offset);
    968 	}
    969 	free(buf);
    970 }
    971 
    972 int
    973 getfiles(abuf, alen)
    974 	char **abuf;
    975 	int *alen;
    976 {
    977 	size_t len;
    978 	int mib[2];
    979 	char *buf;
    980 
    981 	/*
    982 	 * XXX
    983 	 * Add emulation of KINFO_FILE here.
    984 	 */
    985 	if (memf != NULL)
    986 		errx(1, "files on dead kernel, not implemented\n");
    987 
    988 	mib[0] = CTL_KERN;
    989 	mib[1] = KERN_FILE;
    990 	if (sysctl(mib, 2, NULL, &len, NULL, 0) == -1) {
    991 		warn("sysctl: KERN_FILE");
    992 		return (-1);
    993 	}
    994 	if ((buf = malloc(len)) == NULL)
    995 		err(1, NULL);
    996 	if (sysctl(mib, 2, buf, &len, NULL, 0) == -1) {
    997 		warn("sysctl: KERN_FILE");
    998 		return (-1);
    999 	}
   1000 	*abuf = buf;
   1001 	*alen = len;
   1002 	return (0);
   1003 }
   1004 
   1005 /*
   1006  * swapmode is based on a program called swapinfo written
   1007  * by Kevin Lahey <kml (at) rokkaku.atl.ga.us>.
   1008  */
   1009 void
   1010 swapmode()
   1011 {
   1012 	char *header;
   1013 	int hlen, nswap, nswdev, dmmax, nswapmap, niswap, niswdev;
   1014 	int s, e, div, i, l, avail, nfree, npfree, used;
   1015 	struct swdevt *sw;
   1016 	long blocksize, *perdev;
   1017 	struct map *swapmap, *kswapmap;
   1018 	struct mapent *mp;
   1019 
   1020 	KGET(VM_NSWAP, nswap);
   1021 	KGET(VM_NSWDEV, nswdev);
   1022 	KGET(VM_DMMAX, dmmax);
   1023 	KGET(VM_NSWAPMAP, nswapmap);
   1024 	KGET(VM_SWAPMAP, kswapmap);	/* kernel `swapmap' is a pointer */
   1025 	if ((sw = malloc(nswdev * sizeof(*sw))) == NULL ||
   1026 	    (perdev = malloc(nswdev * sizeof(*perdev))) == NULL ||
   1027 	    (mp = malloc(nswapmap * sizeof(*mp))) == NULL)
   1028 		err(1, "malloc");
   1029 	KGET1(VM_SWDEVT, sw, nswdev * sizeof(*sw), "swdevt");
   1030 	KGET2((long)kswapmap, mp, nswapmap * sizeof(*mp), "swapmap");
   1031 
   1032 	/* Supports sequential swap */
   1033 	if (nl[VM_NISWAP].n_value != 0) {
   1034 		KGET(VM_NISWAP, niswap);
   1035 		KGET(VM_NISWDEV, niswdev);
   1036 	} else {
   1037 		niswap = nswap;
   1038 		niswdev = nswdev;
   1039 	}
   1040 
   1041 	/* First entry in map is `struct map'; rest are mapent's. */
   1042 	swapmap = (struct map *)mp;
   1043 	if (nswapmap != swapmap->m_limit - (struct mapent *)kswapmap)
   1044 		errx(1, "panic: nswapmap goof");
   1045 
   1046 	/* Count up swap space. */
   1047 	nfree = 0;
   1048 	memset(perdev, 0, nswdev * sizeof(*perdev));
   1049 	for (mp++; mp->m_addr != 0; mp++) {
   1050 		s = mp->m_addr;			/* start of swap region */
   1051 		e = mp->m_addr + mp->m_size;	/* end of region */
   1052 		nfree += mp->m_size;
   1053 
   1054 		/*
   1055 		 * Swap space is split up among the configured disks.
   1056 		 *
   1057 		 * For interleaved swap devices, the first dmmax blocks
   1058 		 * of swap space some from the first disk, the next dmmax
   1059 		 * blocks from the next, and so on up to niswap blocks.
   1060 		 *
   1061 		 * Sequential swap devices follow the interleaved devices
   1062 		 * (i.e. blocks starting at niswap) in the order in which
   1063 		 * they appear in the swdev table.  The size of each device
   1064 		 * will be a multiple of dmmax.
   1065 		 *
   1066 		 * The list of free space joins adjacent free blocks,
   1067 		 * ignoring device boundries.  If we want to keep track
   1068 		 * of this information per device, we'll just have to
   1069 		 * extract it ourselves.  We know that dmmax-sized chunks
   1070 		 * cannot span device boundaries (interleaved or sequential)
   1071 		 * so we loop over such chunks assigning them to devices.
   1072 		 */
   1073 		i = -1;
   1074 		while (s < e) {		/* XXX this is inefficient */
   1075 			int bound = roundup(s+1, dmmax);
   1076 
   1077 			if (bound > e)
   1078 				bound = e;
   1079 			if (bound <= niswap) {
   1080 				/* Interleaved swap chunk. */
   1081 				if (i == -1)
   1082 					i = (s / dmmax) % niswdev;
   1083 				perdev[i] += bound - s;
   1084 				if (++i >= niswdev)
   1085 					i = 0;
   1086 			} else {
   1087 				/* Sequential swap chunk. */
   1088 				if (i < niswdev) {
   1089 					i = niswdev;
   1090 					l = niswap + sw[i].sw_nblks;
   1091 				}
   1092 				while (s >= l) {
   1093 					/* XXX don't die on bogus blocks */
   1094 					if (i == nswdev-1)
   1095 						break;
   1096 					l += sw[++i].sw_nblks;
   1097 				}
   1098 				perdev[i] += bound - s;
   1099 			}
   1100 			s = bound;
   1101 		}
   1102 	}
   1103 
   1104 	if (kflag) {
   1105 		header = "1K-blocks";
   1106 		blocksize = 1024;
   1107 		hlen = strlen(header);
   1108 	} else
   1109 		header = getbsize(&hlen, &blocksize);
   1110 	if (!totalflag)
   1111 		(void)printf("%-11s %*s %8s %8s %8s  %s\n",
   1112 		    "Device", hlen, header,
   1113 		    "Used", "Avail", "Capacity", "Type");
   1114 	div = blocksize / 512;
   1115 	avail = npfree = 0;
   1116 	for (i = 0; i < nswdev; i++) {
   1117 		int xsize, xfree;
   1118 
   1119 		if (!totalflag)
   1120 			(void)printf("/dev/%-6s %*d ",
   1121 			    devname(sw[i].sw_dev, S_IFBLK),
   1122 			    hlen, sw[i].sw_nblks / div);
   1123 
   1124 		/*
   1125 		 * Don't report statistics for partitions which have not
   1126 		 * yet been activated via swapon(8).
   1127 		 */
   1128 		if (!(sw[i].sw_flags & SW_FREED)) {
   1129 			if (totalflag)
   1130 				continue;
   1131 			(void)printf(" *** not available for swapping ***\n");
   1132 			continue;
   1133 		}
   1134 		xsize = sw[i].sw_nblks;
   1135 		xfree = perdev[i];
   1136 		used = xsize - xfree;
   1137 		npfree++;
   1138 		avail += xsize;
   1139 		if (totalflag)
   1140 			continue;
   1141 		(void)printf("%8d %8d %5.0f%%    %s\n",
   1142 		    used / div, xfree / div,
   1143 		    (double)used / (double)xsize * 100.0,
   1144 		    (sw[i].sw_flags & SW_SEQUENTIAL) ?
   1145 			     "Sequential" : "Interleaved");
   1146 	}
   1147 
   1148 	/*
   1149 	 * If only one partition has been set up via swapon(8), we don't
   1150 	 * need to bother with totals.
   1151 	 */
   1152 	used = avail - nfree;
   1153 	if (totalflag) {
   1154 		(void)printf("%dM/%dM swap space\n", used / 2048, avail / 2048);
   1155 		return;
   1156 	}
   1157 	if (npfree > 1) {
   1158 		(void)printf("%-11s %*d %8d %8d %5.0f%%\n",
   1159 		    "Total", hlen, avail / div, used / div, nfree / div,
   1160 		    (double)used / (double)avail * 100.0);
   1161 	}
   1162 }
   1163 
   1164 void
   1165 usage()
   1166 {
   1167 	(void)fprintf(stderr,
   1168 	    "usage: pstat [-Tfknstv] [-M core] [-N system]\n");
   1169 	exit(1);
   1170 }
   1171