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[unix-history] / usr / src / sys / kern / kern_acct.c
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1/*-
2 * Copyright (c) 1982, 1986, 1989 The Regents of the University of California.
3 * All rights reserved.
4 *
5 * %sccs.include.proprietary.c%
da7c5cc6 6 *
79583d0d 7 * @(#)kern_acct.c 7.20 (Berkeley) %G%
da7c5cc6 8 */
06138e31 9
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10#include "param.h"
11#include "systm.h"
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12#include "namei.h"
13#include "resourcevar.h"
556dc220 14#include "proc.h"
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15#include "ioctl.h"
16#include "termios.h"
17#include "tty.h"
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18#include "vnode.h"
19#include "mount.h"
94368568 20#include "kernel.h"
46e4c6f8 21#include "file.h"
94368568 22#include "acct.h"
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23#include "syslog.h"
24
25/*
26 * Values associated with enabling and disabling accounting
27 */
28int acctsuspend = 2; /* stop accounting when < 2% free space left */
29int acctresume = 4; /* resume when free space risen to > 4% */
30struct timeval chk = { 15, 0 };/* frequency to check space for accounting */
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31
32/*
33 * SHOULD REPLACE THIS WITH A DRIVER THAT CAN BE READ TO SIMPLIFY.
34 */
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35struct vnode *acctp;
36struct vnode *savacctp;
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37
38/*
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39 * Enable or disable process accounting.
40 *
41 * If a non-null filename is given, that file is used to store accounting
42 * records on process exit. If a null filename is given process accounting
43 * is suspended. If accounting is enabled, the system checks the amount
44 * of freespace on the filesystem at timeval intervals. If the amount of
45 * freespace is below acctsuspend percent, accounting is suspended. If
46 * accounting has been suspended, and freespace rises above acctresume,
47 * accounting is resumed.
06138e31 48 */
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49/* ARGSUSED */
50sysacct(p, uap, retval)
51 struct proc *p;
52 struct args {
53 char *fname;
54 } *uap;
55 int *retval;
06138e31 56{
c4ec2128 57 register struct vnode *vp;
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58 extern int acctwatch();
59 struct vnode *oacctp;
8c7d0e2a 60 int error;
3789a403 61 struct nameidata nd;
06138e31 62
3789a403 63 if (error = suser(p->p_ucred, &p->p_acflag))
d9c2f47f 64 return (error);
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65 if (savacctp) {
66 acctp = savacctp;
67 savacctp = NULL;
68 }
46e4c6f8 69 if (uap->fname == NULL) {
c4ec2128 70 if (vp = acctp) {
849cbd39 71 acctp = NULL;
79583d0d 72 error = vn_close(vp, FWRITE, p->p_ucred, p);
c4ec2128 73 untimeout(acctwatch, (caddr_t)&chk);
dbba2129 74 }
79583d0d 75 return (error);
849cbd39 76 }
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77 nd.ni_segflg = UIO_USERSPACE;
78 nd.ni_dirp = uap->fname;
79 if (error = vn_open(&nd, p, FWRITE, 0644))
d9c2f47f 80 return (error);
3789a403 81 vp = nd.ni_vp;
c130850a 82 VOP_UNLOCK(vp);
c4ec2128 83 if (vp->v_type != VREG) {
79583d0d 84 (void) vn_close(vp, FWRITE, p->p_ucred, p);
d9c2f47f 85 return (EACCES);
849cbd39 86 }
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87 oacctp = acctp;
88 acctp = vp;
89 if (oacctp)
79583d0d 90 error = vn_close(oacctp, FWRITE, p->p_ucred, p);
c4ec2128 91 acctwatch(&chk);
79583d0d 92 return (error);
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93}
94
06138e31 95/*
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96 * Periodically check the file system to see if accounting
97 * should be turned on or off.
06138e31 98 */
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99acctwatch(resettime)
100 struct timeval *resettime;
06138e31 101{
c4ec2128 102 struct statfs sb;
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103
104 if (savacctp) {
6bcdc4f3 105 (void)VFS_STATFS(savacctp->v_mount, &sb, (struct proc *)0);
c4ec2128 106 if (sb.f_bavail > acctresume * sb.f_blocks / 100) {
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107 acctp = savacctp;
108 savacctp = NULL;
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109 log(LOG_NOTICE, "Accounting resumed\n");
110 return;
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111 }
112 }
c4ec2128 113 if (acctp == NULL)
06138e31 114 return;
6bcdc4f3 115 (void)VFS_STATFS(acctp->v_mount, &sb, (struct proc *)0);
c4ec2128 116 if (sb.f_bavail <= acctsuspend * sb.f_blocks / 100) {
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117 savacctp = acctp;
118 acctp = NULL;
c4ec2128 119 log(LOG_NOTICE, "Accounting suspended\n");
06138e31 120 }
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121 timeout(acctwatch, (caddr_t)resettime, hzto(resettime));
122}
123
124/*
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125 * This routine calculates an accounting record for a process and,
126 * if accounting is enabled, writes it to the accounting file.
c4ec2128 127 */
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128acct(p)
129 register struct proc *p;
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130{
131 register struct rusage *ru;
132 struct vnode *vp;
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133 struct timeval t, ut, st;
134 int i, s;
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135 struct acct acctbuf;
136 register struct acct *ap = &acctbuf;
137
138 if ((vp = acctp) == NULL)
8c7d0e2a 139 return (0);
1cab08e7 140 bcopy(p->p_comm, ap->ac_comm, sizeof(ap->ac_comm));
3789a403 141 ru = &p->p_stats->p_ru;
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142 s = splclock();
143 ut = p->p_utime;
144 st = p->p_stime;
032146e9 145 t = time;
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146 splx(s);
147 ap->ac_utime = compress(ut.tv_sec, ut.tv_usec);
148 ap->ac_stime = compress(st.tv_sec, st.tv_usec);
3789a403 149 timevalsub(&t, &p->p_stats->p_start);
032146e9 150 ap->ac_etime = compress(t.tv_sec, t.tv_usec);
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151 ap->ac_btime = p->p_stats->p_start.tv_sec;
152 ap->ac_uid = p->p_cred->p_ruid;
153 ap->ac_gid = p->p_cred->p_rgid;
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154 t = st;
155 timevaladd(&t, &ut);
350f5463 156 if (i = t.tv_sec * hz + t.tv_usec / tick)
3789a403 157 ap->ac_mem = (ru->ru_ixrss + ru->ru_idrss + ru->ru_isrss) / i;
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158 else
159 ap->ac_mem = 0;
01b0e233 160 ap->ac_io = compress(ru->ru_inblock + ru->ru_oublock, (long)0);
42ee521d 161 if (p->p_flag&SCTTY && p->p_session->s_ttyp)
1cab08e7 162 ap->ac_tty = p->p_session->s_ttyp->t_dev;
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163 else
164 ap->ac_tty = NODEV;
3789a403 165 ap->ac_flag = p->p_acflag;
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166 return (vn_rdwr(UIO_WRITE, vp, (caddr_t)ap, sizeof (acctbuf), (off_t)0,
167 UIO_SYSSPACE, IO_UNIT|IO_APPEND, p->p_ucred, (int *)0,
168 (struct proc *)0));
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169}
170
171/*
172 * Produce a pseudo-floating point representation
173 * with 3 bits base-8 exponent, 13 bits fraction.
174 */
032146e9 175compress(t, ut)
06138e31 176 register long t;
032146e9 177 long ut;
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178{
179 register exp = 0, round = 0;
180
5d10e647 181 t = t * AHZ; /* compiler will convert only this format to a shift */
032146e9 182 if (ut)
5d10e647 183 t += ut / (1000000 / AHZ);
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184 while (t >= 8192) {
185 exp++;
186 round = t&04;
187 t >>= 3;
188 }
189 if (round) {
190 t++;
191 if (t >= 8192) {
192 t >>= 3;
193 exp++;
194 }
195 }
196 return ((exp<<13) + t);
197}