#include "u.h" #include "../port/lib.h" #include "mem.h" #include "dat.h" #include "fns.h" #include "io.h" #include "ureg.h" /* * 8253 timer */ enum { T0cntr= 0x40, /* counter ports */ T1cntr= 0x41, /* ... */ T2cntr= 0x42, /* ... */ Tmode= 0x43, /* mode port */ /* commands */ Latch0= 0x00, /* latch counter 0's value */ Load0= 0x30, /* load counter 0 with 2 bytes */ /* modes */ Square= 0x36, /* perioic square wave */ Trigger= 0x30, /* interrupt on terminal count */ Freq= 1193182, /* Real clock frequency */ }; static int cpufreq = 66000000; static int cpumhz = 66; static int cputype = 486; static int loopconst = 100; static void clock(Ureg *ur, void *arg) { Proc *p; int nrun = 0; USED(arg); m->ticks++; checkalarms(); hardclock(); uartclock(); /* * process time accounting */ p = m->proc; if(p){ nrun = 1; p->pc = ur->pc; if (p->state==Running) p->time[p->insyscall]++; } nrun = (nrdy+nrun)*1000; MACHP(0)->load = (MACHP(0)->load*19+nrun)/20; if(up && up->state == Running){ if(anyready()) sched(); /* user profiling clock */ if((ur->cs&0xffff) == UESEL) (*(ulong*)(USTKTOP-BY2WD)) += TK2MS(1); } mouseclock(); } /* * delay for l milliseconds more or less. delayloop is set by * clockinit() to match the actual CPU speed. */ void delay(int l) { aamloop(l*loopconst); } void printcpufreq(void) { print("CPU is a %ud MHz (%ud Hz) %d\n", cpumhz, cpufreq, cputype); } void clockinit(void) { ulong x, y; /* change in counter */ ulong cycles, loops; switch(cputype = x86()){ case 386: loops = 10000; cycles = 32; break; case 486: loops = 10000; cycles = 22; break; default: loops = 30000; cycles = 23; break; } /* * set vector for clock interrupts */ setvec(Clockvec, clock, 0); /* * set clock for 1/HZ seconds */ outb(Tmode, Load0|Square); outb(T0cntr, (Freq/HZ)); /* low byte */ outb(T0cntr, (Freq/HZ)>>8); /* high byte */ /* * measure time for the loop * * MOVL loops,CX * aaml1: AAM * LOOP aaml1 * * the time for the loop should be independent from external * cache's and memory system since it fits in the execution * prefetch buffer. * */ outb(Tmode, Latch0); x = inb(T0cntr); x |= inb(T0cntr)<<8; aamloop(loops); outb(Tmode, Latch0); y = inb(T0cntr); y |= inb(T0cntr)<<8; x -= y; /* * counter goes at twice the frequency, once per transition, * i.e., twice per square wave */ x >>= 1; /* * figure out clock frequency and a loop multiplier for delay(). */ cpufreq = loops*((cycles*Freq)/x); loopconst = (cpufreq/1000)/cycles; /* AAM+LOOP's for 1 ms */ /* * add in possible .1% error and convert to MHz */ cpumhz = (cpufreq + cpufreq/1000)/1000000; }