409 lines
		
	
	
		
			8.6 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			409 lines
		
	
	
		
			8.6 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
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/* Author: Ben Gras <beng@few.vu.nl>  17 march 2006 */
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#define _MINIX 1
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#define _POSIX_SOURCE 1
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#include <stdio.h>
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#include <pwd.h>
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#include <curses.h>
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#include <timers.h>
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#include <unistd.h>
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#include <stdlib.h>
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#include <limits.h>
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#include <termcap.h>
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#include <termios.h>
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#include <time.h>
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#include <string.h>
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#include <signal.h>
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#include <fcntl.h>
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#include <errno.h>
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#include <sys/ioc_tty.h>
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#include <sys/times.h>
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#include <sys/types.h>
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#include <sys/time.h>
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#include <sys/select.h>
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#include <minix/ipc.h>
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#include <minix/com.h>
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#include <minix/sysinfo.h>
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#include <minix/config.h>
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#include <minix/type.h>
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#include <minix/const.h>
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#include <minix/u64.h>
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#include "../../kernel/arch/i386/include/archtypes.h"
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#include "../../servers/pm/mproc.h"
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#include "../../kernel/const.h"
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#include "../../kernel/proc.h"
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u32_t system_hz;
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#define  TC_BUFFER  1024        /* Size of termcap(3) buffer    */
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#define  TC_STRINGS  200        /* Enough room for cm,cl,so,se  */
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char *Tclr_all;
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#if 0
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int print_memory(struct pm_mem_info *pmi)
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{
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        int h;
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        int largest_bytes = 0, total_bytes = 0; 
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        for(h = 0; h < _NR_HOLES; h++) {
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                if(pmi->pmi_holes[h].h_base && pmi->pmi_holes[h].h_len) {
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                        int bytes;
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                        bytes = pmi->pmi_holes[h].h_len << CLICK_SHIFT;
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                        if(bytes > largest_bytes) largest_bytes = bytes;
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                        total_bytes += bytes;
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                }
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        }
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	printf("Mem: %dK Free, %dK Contiguous Free\n",
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		total_bytes/1024, largest_bytes/1024);
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	return 1;
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}
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#endif
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int print_load(double *loads, int nloads)
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{
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	int i;
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	printf("load averages: ");
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	for(i = 0; i < nloads; i++)
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		printf("%s %.2f", (i > 0) ? "," : "", loads[i]);
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	printf("\n");
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	return 1;
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}
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#define PROCS (NR_PROCS+NR_TASKS)
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int print_proc_summary(struct proc *proc)
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{
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	int p, alive, running, sleeping;
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	alive = running = sleeping = 0;
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	for(p = 0; p < PROCS; p++) {
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		if(p - NR_TASKS == IDLE)
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			continue;
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		if(isemptyp(&proc[p]))
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			continue;
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		alive++;
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		if(!proc_is_runnable(&proc[p]))
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			sleeping++;
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		else
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			running++;
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	}
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	printf("%d processes: %d running, %d sleeping\n",
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		alive, running, sleeping);
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	return 1;
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}
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static struct tp {
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	struct proc *p;
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	u64_t ticks;
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} tick_procs[PROCS];
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int cmp_ticks(const void *v1, const void *v2)
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{
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	struct tp *p1 = (struct tp *) v1, *p2 = (struct tp *) v2;
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	if (p1->ticks.hi == p2->ticks.hi) {
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		if(p1->ticks.lo < p2->ticks.lo)
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			return 1;
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		if(p1->ticks.lo > p2->ticks.lo)
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			return -1;
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	}
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	if(p1->ticks.hi < p2->ticks.hi)
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		return 1;
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	if(p1->ticks.hi > p2->ticks.hi)
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		return -1;
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	if(p1->p->p_nr < p2->p->p_nr)
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		return -1;
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	if(p1->p->p_nr > p2->p->p_nr)
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		return 1;
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	return 0;
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}
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/*
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 * since we don't have true div64(u64_t, u64_t) we scale the 64 bit counters to
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 * 32. Since the samplig happens every ~1s and the counters count CPU cycles
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 * during this period, unless we have extremely fast CPU, shifting the counters
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 * by 12 make them 32bit counters which we can use for normal integer
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 * arithmetics
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 */
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#define SCALE	(1 << 12)
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void print_procs(int maxlines,
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	struct proc *proc1, struct proc *proc2,
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	struct mproc *mproc)
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{
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	int p, nprocs, tot=0;
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	u64_t idleticks = cvu64(0);
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	u64_t kernelticks = cvu64(0);
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	u64_t systemticks = cvu64(0);
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	u64_t userticks = cvu64(0);
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	u64_t total_ticks = cvu64(0);
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	unsigned long tcyc;
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	unsigned long tmp;
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	for(p = nprocs = 0; p < PROCS; p++) {
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		if(isemptyp(&proc2[p]))
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			continue;
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		tick_procs[nprocs].p = proc2 + p;
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		if(proc1[p].p_endpoint == proc2[p].p_endpoint) {
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			tick_procs[nprocs].ticks =
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				sub64(proc2[p].p_cycles, proc1[p].p_cycles);
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		} else {
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			tick_procs[nprocs].ticks =
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				proc2[p].p_cycles;
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		}
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		total_ticks = add64(total_ticks, tick_procs[nprocs].ticks);
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		if(p-NR_TASKS == IDLE) {
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			idleticks = tick_procs[nprocs].ticks;
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			continue;
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		}
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		if(p-NR_TASKS == KERNEL) {
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			kernelticks = tick_procs[nprocs].ticks;
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			continue;
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		}
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		if(mproc[proc2[p].p_nr].mp_procgrp == 0)
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			systemticks = add64(systemticks, tick_procs[nprocs].ticks);
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		else if (p > NR_TASKS)
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			userticks = add64(userticks, tick_procs[nprocs].ticks);
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		nprocs++;
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	}
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	if (!cmp64u(total_ticks, 0))
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		return;
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	qsort(tick_procs, nprocs, sizeof(tick_procs[0]), cmp_ticks);
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	tcyc = div64u(total_ticks, SCALE);
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	tmp = div64u(userticks, SCALE);
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	printf("CPU states: %6.2f%% user, ", 100.0*(tmp)/tcyc);
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	tmp = div64u(systemticks, SCALE);
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	printf("%6.2f%% system, ", 100.0*tmp/tcyc);
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	tmp = div64u(kernelticks, SCALE);
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	printf("%6.2f%% kernel, ", 100.0*tmp/tcyc);
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	tmp = div64u(idleticks, SCALE);
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	printf("%6.2f%% idle", 100.0*tmp/tcyc);
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	printf("\n\n");
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	maxlines -= 2;
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	printf("  PID USERNAME PRI NICE   SIZE STATE   TIME     CPU COMMAND\n");
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	maxlines--;
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	for(p = 0; p < nprocs; p++) {
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		int euid = 0;
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		struct proc *pr;
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		int pnr, ticks;
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		char *name = "";
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		static struct passwd *who = NULL;
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		static int last_who = -1;
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		unsigned long pcyc;
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		if(maxlines-- <= 0) break;
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		pnr = tick_procs[p].p->p_nr;
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		pr = tick_procs[p].p;
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		ticks = pr->p_user_time;
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		if(pnr >= 0) {
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			printf("%5d ", mproc[pnr].mp_pid);
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			euid = mproc[pnr].mp_effuid;
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			name = mproc[pnr].mp_name;
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		} else
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			/* skip old kernel tasks as they don't run anymore */
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			continue;
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		if(last_who != euid || !who) {
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			who = getpwuid(euid);
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			last_who = euid;
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		}
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		if(who && who->pw_name) printf("%-8s ", who->pw_name);
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		else if(pnr >= 0) printf("%8d ", mproc[pnr].mp_effuid);
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		else printf("         ");
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		printf(" %2d ", pr->p_priority);
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		if(pnr >= 0) {
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			printf(" %3d ", mproc[pnr].mp_nice);
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		} else printf("     ");
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		printf("%5dK",
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			((pr->p_memmap[T].mem_len + 
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			pr->p_memmap[D].mem_len) << CLICK_SHIFT)/1024);
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		printf("%6s", pr->p_rts_flags ? "" : "RUN");
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		printf(" %3d:%02d ", (ticks/system_hz/60), (ticks/system_hz)%60);
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		pcyc = div64u(tick_procs[p].ticks, SCALE);
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		printf("%6.2f%% %s\n",
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			100.0*pcyc/tcyc, name);
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	}
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}
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void showtop(int r)
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{
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#define NLOADS 3
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	double loads[NLOADS];
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	int nloads, i, p, lines = 0;
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	static struct proc prev_proc[PROCS], proc[PROCS];
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	static int preheated = 0;
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	struct winsize winsize;
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        /*
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	static struct pm_mem_info pmi;
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	*/
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	static struct mproc mproc[NR_PROCS];
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	int mem = 0;
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	if(ioctl(STDIN_FILENO, TIOCGWINSZ, &winsize) != 0) {
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		perror("TIOCGWINSZ");
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		fprintf(stderr, "TIOCGWINSZ failed\n");
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		exit(1);
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	}
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#if 0
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        if(getsysinfo(PM_PROC_NR, SI_MEM_ALLOC, &pmi) < 0) {
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		fprintf(stderr, "getsysinfo() for SI_MEM_ALLOC failed.\n");
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		mem = 0;
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		exit(1);;
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	} else mem = 1;
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#endif
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retry:
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	if(getsysinfo(PM_PROC_NR, SI_KPROC_TAB, proc) < 0) {
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		fprintf(stderr, "getsysinfo() for SI_KPROC_TAB failed.\n");
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		exit(1);
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	}
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	if (!preheated) {
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		preheated = 1;
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		memcpy(prev_proc, proc, sizeof(prev_proc));
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		goto retry;;
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	}
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	if(getsysinfo(PM_PROC_NR, SI_PROC_TAB, mproc) < 0) {
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		fprintf(stderr, "getsysinfo() for SI_PROC_TAB failed.\n");
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		exit(1);
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	}
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	if((nloads = getloadavg(loads, NLOADS)) != NLOADS) {
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		fprintf(stderr, "getloadavg() failed - %d loads\n", nloads);
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		exit(1);
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	}
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	printf("%s", Tclr_all);
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	lines += print_load(loads, NLOADS);
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	lines += print_proc_summary(proc);
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#if 0
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	if(mem) { lines += print_memory(&pmi); }
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#endif
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	if(winsize.ws_row > 0) r = winsize.ws_row;
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	print_procs(r - lines - 2, prev_proc,
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		proc, mproc);
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	memcpy(prev_proc, proc, sizeof(prev_proc));
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}
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void init(int *rows)
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{
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	char  *term;
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	static char   buffer[TC_BUFFER], strings[TC_STRINGS];
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	char *s = strings, *v;
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	*rows = 0;
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	if(!(term = getenv("TERM"))) {
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		fprintf(stderr, "No TERM set\n");
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		exit(1);
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	}
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	if ( tgetent( buffer, term ) != 1 ) {
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		fprintf(stderr, "tgetent failed for term %s\n", term);
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		exit(1);
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	}
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	if ( (Tclr_all = tgetstr( "cl", &s )) == NULL )
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		Tclr_all = "\f";
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	if((v = tgetstr ("li", &s)) != NULL)
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		sscanf(v, "%d", rows);
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	if(*rows < 1) *rows = 24;
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	if(!initscr()) {
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		fprintf(stderr, "initscr() failed\n");
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		exit(1);
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	}
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	cbreak();
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	nl();
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}
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void sigwinch(int sig) { }
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int main(int argc, char *argv[])
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{
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	int r, c, s = 0, orig;
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	getsysinfo_up(PM_PROC_NR, SIU_SYSTEMHZ, sizeof(system_hz), &system_hz);
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	init(&r);
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	while((c=getopt(argc, argv, "s:")) != EOF) {
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		switch(c) {
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			case 's':
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				s = atoi(optarg);
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				break;
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			default:
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				fprintf(stderr,
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					"Usage: %s [-s<secdelay>]\n", argv[0]);
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				return 1;
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		}
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	}
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	if(s < 1) 
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		s = 2;
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	/* Catch window size changes so display is updated properly right away. */
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	signal(SIGWINCH, sigwinch);
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	while(1) {
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		fd_set fds;
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		int ns;
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		struct timeval tv;
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		showtop(r);
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		tv.tv_sec = s;
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		tv.tv_usec = 0;
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		FD_ZERO(&fds);
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		FD_SET(STDIN_FILENO, &fds);
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		if((ns=select(STDIN_FILENO+1, &fds, NULL, NULL, &tv)) < 0
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			&& errno != EINTR) {
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			perror("select");
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			sleep(1);
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		}
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		if(ns > 0 && FD_ISSET(STDIN_FILENO, &fds)) {
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			char c;
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			if(read(STDIN_FILENO, &c, 1) == 1) {
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				switch(c) {
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					case 'q':
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						return 0;
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						break;
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				}
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			}
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		}
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	}
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	return 0;
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}
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