#include "sh.h"
RCSID("$tcsh: sh.time.c,v 3.33 2006/03/02 18:46:44 christos Exp $")
#ifdef SUNOS4
# include <machine/param.h>
#endif
#ifdef BSDTIMES
# ifndef RUSAGE_SELF
# define RUSAGE_SELF 0
# define RUSAGE_CHILDREN -1
# endif
#else
struct tms times0;
#endif
#if !defined(BSDTIMES) && !defined(_SEQUENT_)
# ifdef POSIX
static void pdtimet (clock_t, clock_t);
# else
static void pdtimet (time_t, time_t);
# endif
#else
static void tvadd (timeval_t *, timeval_t *);
static void pdeltat (timeval_t *, timeval_t *);
#endif
void
settimes(void)
{
#ifdef BSDTIMES
struct sysrusage ruch;
#ifdef convex
memset(&ru0, 0, sizeof(ru0));
memset(&ruch, 0, sizeof(ruch));
#endif
(void) gettimeofday(&time0, NULL);
(void) getrusage(RUSAGE_SELF, (struct rusage *) &ru0);
(void) getrusage(RUSAGE_CHILDREN, (struct rusage *) &ruch);
ruadd(&ru0, &ruch);
#else
# ifdef _SEQUENT_
struct process_stats ruch;
(void) get_process_stats(&time0, PS_SELF, &ru0, &ruch);
ruadd(&ru0, &ruch);
# else
seconds0 = time(NULL);
time0 = times(×0);
times0.tms_stime += times0.tms_cstime;
times0.tms_utime += times0.tms_cutime;
times0.tms_cstime = 0;
times0.tms_cutime = 0;
# endif
#endif
}
void
dotime(Char **v, struct command *c)
{
#ifdef BSDTIMES
timeval_t timedol;
struct sysrusage ru1, ruch;
#ifdef convex
memset(&ru1, 0, sizeof(ru1));
memset(&ruch, 0, sizeof(ruch));
#endif
(void) getrusage(RUSAGE_SELF, (struct rusage *) &ru1);
(void) getrusage(RUSAGE_CHILDREN, (struct rusage *) &ruch);
ruadd(&ru1, &ruch);
(void) gettimeofday(&timedol, NULL);
prusage(&ru0, &ru1, &timedol, &time0);
#else
# ifdef _SEQUENT_
timeval_t timedol;
struct process_stats ru1, ruch;
(void) get_process_stats(&timedol, PS_SELF, &ru1, &ruch);
ruadd(&ru1, &ruch);
prusage(&ru0, &ru1, &timedol, &time0);
# else
# ifndef POSIX
time_t timedol;
# else
clock_t timedol;
# endif
struct tms times_dol;
timedol = times(×_dol);
times_dol.tms_stime += times_dol.tms_cstime;
times_dol.tms_utime += times_dol.tms_cutime;
times_dol.tms_cstime = 0;
times_dol.tms_cutime = 0;
prusage(×0, ×_dol, timedol, time0);
# endif
#endif
USE(c);
USE(v);
}
void
donice(Char **v, struct command *c)
{
Char *cp;
int nval = 0;
USE(c);
v++, cp = *v++;
if (cp == 0)
nval = 4;
else if (*v == 0 && any("+-", cp[0]))
nval = getn(cp);
#ifdef HAVE_SETPRIORITY
if (setpriority(PRIO_PROCESS, 0, nval) == -1 && errno)
stderror(ERR_SYSTEM, "setpriority", strerror(errno));
#else
(void) nice(nval);
#endif
}
#ifdef BSDTIMES
void
ruadd(struct sysrusage *ru, struct sysrusage *ru2)
{
tvadd(&ru->ru_utime, &ru2->ru_utime);
tvadd(&ru->ru_stime, &ru2->ru_stime);
#ifndef _OSD_POSIX
if (ru2->ru_maxrss > ru->ru_maxrss)
ru->ru_maxrss = ru2->ru_maxrss;
ru->ru_ixrss += ru2->ru_ixrss;
ru->ru_idrss += ru2->ru_idrss;
ru->ru_isrss += ru2->ru_isrss;
ru->ru_minflt += ru2->ru_minflt;
ru->ru_majflt += ru2->ru_majflt;
ru->ru_nswap += ru2->ru_nswap;
ru->ru_inblock += ru2->ru_inblock;
ru->ru_oublock += ru2->ru_oublock;
ru->ru_msgsnd += ru2->ru_msgsnd;
ru->ru_msgrcv += ru2->ru_msgrcv;
ru->ru_nsignals += ru2->ru_nsignals;
ru->ru_nvcsw += ru2->ru_nvcsw;
ru->ru_nivcsw += ru2->ru_nivcsw;
#endif
# ifdef convex
tvadd(&ru->ru_exutime, &ru2->ru_exutime);
ru->ru_utotal += ru2->ru_utotal;
ru->ru_usamples += ru2->ru_usamples;
ru->ru_stotal += ru2->ru_stotal;
ru->ru_ssamples += ru2->ru_ssamples;
# endif
}
#else
# ifdef _SEQUENT_
void
ruadd(struct process_stats *ru, struct process_stats *ru2)
{
tvadd(&ru->ps_utime, &ru2->ps_utime);
tvadd(&ru->ps_stime, &ru2->ps_stime);
if (ru2->ps_maxrss > ru->ps_maxrss)
ru->ps_maxrss = ru2->ps_maxrss;
ru->ps_pagein += ru2->ps_pagein;
ru->ps_reclaim += ru2->ps_reclaim;
ru->ps_zerofill += ru2->ps_zerofill;
ru->ps_pffincr += ru2->ps_pffincr;
ru->ps_pffdecr += ru2->ps_pffdecr;
ru->ps_swap += ru2->ps_swap;
ru->ps_syscall += ru2->ps_syscall;
ru->ps_volcsw += ru2->ps_volcsw;
ru->ps_involcsw += ru2->ps_involcsw;
ru->ps_signal += ru2->ps_signal;
ru->ps_lread += ru2->ps_lread;
ru->ps_lwrite += ru2->ps_lwrite;
ru->ps_bread += ru2->ps_bread;
ru->ps_bwrite += ru2->ps_bwrite;
ru->ps_phread += ru2->ps_phread;
ru->ps_phwrite += ru2->ps_phwrite;
}
# endif
#endif
#ifdef BSDTIMES
#define LOG1024 10
#ifdef SUNOS4
# ifndef PGSHIFT
# define pagetok(size) ((size) << 1)
# else
# if PGSHIFT>10
# define pagetok(size) ((size) << (PGSHIFT - LOG1024))
# else
# define pagetok(size) ((size) >> (LOG1024 - PGSHIFT))
# endif
# endif
#endif
#ifdef SUNOS4
# define IADJUST(i) (pagetok(i)/2)
#else
# ifdef convex
# define IADJUST(i) (((i) << 10) / CLK_TCK * 100)
# else
# define IADJUST(i) (i)
# endif
#endif
void
prusage(struct sysrusage *r0, struct sysrusage *r1, timeval_t *e, timeval_t *b)
#else
# ifdef _SEQUENT_
void
prusage(struct process_stats *r0, struct process_stats *r1, timeval_t e,
timeval_t b)
# else
# ifndef POSIX
void
prusage(struct tms *bs, struct tms *es, time_t e, time_t b)
# else
void
prusage(struct tms *bs, struct tms *es, clock_t e, clock_t b)
# endif
# endif
#endif
{
#ifdef BSDTIMES
time_t t =
(r1->ru_utime.tv_sec - r0->ru_utime.tv_sec) * 100 +
(r1->ru_utime.tv_usec - r0->ru_utime.tv_usec) / 10000 +
(r1->ru_stime.tv_sec - r0->ru_stime.tv_sec) * 100 +
(r1->ru_stime.tv_usec - r0->ru_stime.tv_usec) / 10000;
#else
# ifdef _SEQUENT_
time_t t =
(r1->ps_utime.tv_sec - r0->ps_utime.tv_sec) * 100 +
(r1->ps_utime.tv_usec - r0->ps_utime.tv_usec) / 10000 +
(r1->ps_stime.tv_sec - r0->ps_stime.tv_sec) * 100 +
(r1->ps_stime.tv_usec - r0->ps_stime.tv_usec) / 10000;
# else
# ifndef POSIX
time_t t = (es->tms_utime - bs->tms_utime +
es->tms_stime - bs->tms_stime) * 100 / HZ;
# else
clock_t t = (es->tms_utime - bs->tms_utime +
es->tms_stime - bs->tms_stime) * 100 / clk_tck;
# endif
# endif
#endif
const char *cp;
long i;
struct varent *vp = adrof(STRtime);
#ifdef BSDTIMES
# ifdef convex
static struct system_information sysinfo;
long long memtmp;
# endif
int ms = (int)
((e->tv_sec - b->tv_sec) * 100 + (e->tv_usec - b->tv_usec) / 10000);
cp = "%Uu %Ss %E %P %X+%Dk %I+%Oio %Fpf+%Ww";
#else
# ifdef _SEQUENT_
int ms = (int)
((e->tv_sec - b->tv_sec) * 100 + (e->tv_usec - b->tv_usec) / 10000);
cp = "%Uu %Ss %E %P %I+%Oio %Fpf+%Ww";
# else
# ifndef POSIX
time_t ms = ((time_t)((e - b) / HZ) * 100) +
(time_t)(((e - b) % HZ) * 100) / HZ;
# else
clock_t ms = ((clock_t)((e - b) / clk_tck) * 100) +
(clock_t)(((e - b) % clk_tck) * 100) / clk_tck;
# endif
cp = "%Uu %Ss %E %P";
# if 0
if (ms < t && ms != 0)
ms = t;
# endif
# endif
#endif
#ifdef TDEBUG
xprintf("es->tms_utime %lu bs->tms_utime %lu\n",
es->tms_utime, bs->tms_utime);
xprintf("es->tms_stime %lu bs->tms_stime %lu\n",
es->tms_stime, bs->tms_stime);
xprintf("ms %lu e %lu b %lu\n", ms, e, b);
xprintf("t %lu\n", t);
#endif
if (vp && vp->vec && vp->vec[0] && vp->vec[1])
cp = short2str(vp->vec[1]);
for (; *cp; cp++)
if (*cp != '%')
xputchar(*cp);
else if (cp[1])
switch (*++cp) {
case 'U':
#ifdef BSDTIMES
pdeltat(&r1->ru_utime, &r0->ru_utime);
#else
# ifdef _SEQUENT_
pdeltat(&r1->ps_utime, &r0->ps_utime);
# else
# ifndef POSIX
pdtimet(es->tms_utime, bs->tms_utime);
# else
pdtimet(es->tms_utime, bs->tms_utime);
# endif
# endif
#endif
break;
case 'S':
#ifdef BSDTIMES
pdeltat(&r1->ru_stime, &r0->ru_stime);
#else
# ifdef _SEQUENT_
pdeltat(&r1->ps_stime, &r0->ps_stime);
# else
# ifndef POSIX
pdtimet(es->tms_stime, bs->tms_stime);
# else
pdtimet(es->tms_stime, bs->tms_stime);
# endif
# endif
#endif
break;
case 'E':
#ifdef BSDTIMES
pcsecs((long) ms);
#else
pcsecs(ms);
#endif
break;
case 'P':
#ifdef convex
if ((sysinfo.cpu_count == 0) &&
(getsysinfo(SYSINFO_SIZE, &sysinfo) < 0))
sysinfo.cpu_count = 1;
i = (ms == 0) ? 0 : (t * 1000.0 / (ms * sysinfo.cpu_count));
#else
i = (ms == 0) ? 0 : (long)(t * 1000.0 / ms);
#endif
xprintf("%ld.%01ld%%", i / 10, i % 10);
break;
#ifdef BSDTIMES
case 'W':
#ifdef _OSD_POSIX
i = 0;
#else
i = r1->ru_nswap - r0->ru_nswap;
#endif
xprintf("%ld", i);
break;
#ifdef convex
case 'X':
memtmp = (t == 0 ? 0LL : IADJUST((long long)r1->ru_ixrss -
(long long)r0->ru_ixrss) /
(long long)t);
xprintf("%lu", (unsigned long)memtmp);
break;
case 'D':
memtmp = (t == 0 ? 0LL : IADJUST((long long)r1->ru_idrss +
(long long)r1->ru_isrss -
((long long)r0->ru_idrss +
(long long)r0->ru_isrss)) /
(long long)t);
xprintf("%lu", (unsigned long)memtmp);
break;
case 'K':
memtmp = (t == 0 ? 0LL : IADJUST(((long long)r1->ru_ixrss +
(long long)r1->ru_isrss +
(long long)r1->ru_idrss) -
((long long)r0->ru_ixrss +
(long long)r0->ru_idrss +
(long long)r0->ru_isrss)) /
(long long)t);
xprintf("%lu", (unsigned long)memtmp);
break;
#else
case 'X':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", t == 0 ? 0L :
IADJUST(r1->ru_ixrss - r0->ru_ixrss) / t);
#endif
break;
case 'D':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", t == 0 ? 0L :
IADJUST(r1->ru_idrss + r1->ru_isrss -
(r0->ru_idrss + r0->ru_isrss)) / t);
#endif
break;
case 'K':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", t == 0 ? 0L :
IADJUST((r1->ru_ixrss + r1->ru_isrss + r1->ru_idrss) -
(r0->ru_ixrss + r0->ru_idrss + r0->ru_isrss)) / t);
#endif
break;
#endif
case 'M':
#ifdef SUNOS4
xprintf("%ld", pagetok(r1->ru_maxrss));
#else
# ifdef convex
xprintf("%ld", r1->ru_maxrss * 4L);
# else
# ifdef _OSD_POSIX
xprintf("0",0);
# else
xprintf("%ld", r1->ru_maxrss / 2L);
# endif
# endif
#endif
break;
case 'F':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", r1->ru_majflt - r0->ru_majflt);
#endif
break;
case 'R':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", r1->ru_minflt - r0->ru_minflt);
#endif
break;
case 'I':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", r1->ru_inblock - r0->ru_inblock);
#endif
break;
case 'O':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", r1->ru_oublock - r0->ru_oublock);
#endif
break;
# ifdef convex
case 'C':
if (r1->ru_usamples != 0LL) {
long long parr = ((r1->ru_utotal * 100LL) /
r1->ru_usamples);
xprintf("%d.%02d", (int)(parr/100), (int)(parr%100));
} else
xprintf("?");
break;
# endif
case 'r':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", r1->ru_msgrcv - r0->ru_msgrcv);
#endif
break;
case 's':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", r1->ru_msgsnd - r0->ru_msgsnd);
#endif
break;
case 'k':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", r1->ru_nsignals - r0->ru_nsignals);
#endif
break;
case 'w':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", r1->ru_nvcsw - r0->ru_nvcsw);
#endif
break;
case 'c':
#ifdef _OSD_POSIX
xprintf("0",0);
#else
xprintf("%ld", r1->ru_nivcsw - r0->ru_nivcsw);
#endif
break;
#else
# ifdef _SEQUENT_
case 'W':
i = r1->ps_swap - r0->ps_swap;
xprintf("%ld", i);
break;
case 'M':
xprintf("%ld", r1->ps_maxrss / 2);
break;
case 'F':
xprintf("%ld", r1->ps_pagein - r0->ps_pagein);
break;
case 'R':
xprintf("%ld", r1->ps_reclaim - r0->ps_reclaim);
break;
case 'I':
xprintf("%ld", r1->ps_bread - r0->ps_bread);
break;
case 'O':
xprintf("%ld", r1->ps_bwrite - r0->ps_bwrite);
break;
case 'k':
xprintf("%ld", r1->ps_signal - r0->ps_signal);
break;
case 'w':
xprintf("%ld", r1->ps_volcsw - r0->ps_volcsw);
break;
case 'c':
xprintf("%ld", r1->ps_involcsw - r0->ps_involcsw);
break;
case 'Z':
xprintf("%ld", r1->ps_zerofill - r0->ps_zerofill);
break;
case 'i':
xprintf("%ld", r1->ps_pffincr - r0->ps_pffincr);
break;
case 'd':
xprintf("%ld", r1->ps_pffdecr - r0->ps_pffdecr);
break;
case 'Y':
xprintf("%ld", r1->ps_syscall - r0->ps_syscall);
break;
case 'l':
xprintf("%ld", r1->ps_lread - r0->ps_lread);
break;
case 'm':
xprintf("%ld", r1->ps_lwrite - r0->ps_lwrite);
break;
case 'p':
xprintf("%ld", r1->ps_phread - r0->ps_phread);
break;
case 'q':
xprintf("%ld", r1->ps_phwrite - r0->ps_phwrite);
break;
# endif
#endif
default:
break;
}
xputchar('\n');
}
#if defined(BSDTIMES) || defined(_SEQUENT_)
static void
pdeltat(timeval_t *t1, timeval_t *t0)
{
timeval_t td;
tvsub(&td, t1, t0);
xprintf("%ld.%03ld", td.tv_sec, td.tv_usec / 1000L);
}
static void
tvadd(timeval_t *tsum, timeval_t *t0)
{
tsum->tv_sec += t0->tv_sec;
tsum->tv_usec += t0->tv_usec;
if (tsum->tv_usec >= 1000000)
tsum->tv_sec++, tsum->tv_usec -= 1000000;
}
void
tvsub(timeval_t *tdiff, timeval_t *t1, timeval_t *t0)
{
tdiff->tv_sec = t1->tv_sec - t0->tv_sec;
tdiff->tv_usec = t1->tv_usec - t0->tv_usec;
if (tdiff->tv_usec < 0)
tdiff->tv_sec--, tdiff->tv_usec += 1000000;
}
#else
static void
#ifndef POSIX
pdtimet(time_t eval, time_t bval)
#else
pdtimet(clock_t eval, clock_t bval)
#endif
{
#ifndef POSIX
time_t val;
#else
clock_t val;
#endif
#ifndef POSIX
val = (eval - bval) * 100 / HZ;
#else
val = (eval - bval) * 100 / clk_tck;
#endif
xprintf("%ld.%02ld", val / 100, val - (val / 100 * 100));
}
#endif