210 lines
4.3 KiB
C
210 lines
4.3 KiB
C
#include <u.h>
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#include <libc.h>
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#include <bio.h>
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#include <mach.h>
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#define Extern extern
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#include "power.h"
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#define prof profqi
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#define Percent(num, max) (int)(((vlong)(num)*100)/(max))
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Inset *tables[] = { &ops0, &ops19, &ops31, &ops59, &ops63a, &ops63b, 0 };
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void
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isum(void)
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{
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Inst *i;
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int pct, j, k;
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int total, loads, stores, arith, branch;
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int taken, powerreg, syscall, realarith, control;
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total = 0;
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loads = 0;
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stores = 0;
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arith = 0;
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branch = 0;
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taken = 0;
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powerreg = 0;
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syscall = 0;
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realarith = 0;
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control = 0;
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/* Compute the total so we can have percentages */
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for(j = 0; tables[j]; j++)
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for(k = tables[j]->nel; --k >= 0;) {
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i = &tables[j]->tab[k];
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if(i->name && i->func)
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total += i->count;
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}
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Bprint(bioout, "\nInstruction summary.\n\n");
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for(j = 0; tables[j]; j++) {
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for(k =tables[j]->nel; --k>=0; ) {
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i = &tables[j]->tab[k];
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if(i->name && i->func) {
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if(i->count == 0)
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continue;
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pct = Percent(i->count, total);
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if(pct != 0)
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Bprint(bioout, "%-8ud %3d%% %s\n",
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i->count, Percent(i->count, total), i->name);
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else
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Bprint(bioout, "%-8ud %s\n",
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i->count, i->name);
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switch(i->type) {
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default:
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fatal(0, "isum bad stype %d\n", i->type);
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case Iload:
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loads += i->count;
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break;
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case Istore:
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stores += i->count;
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break;
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case Ilog:
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case Iarith:
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arith += i->count;
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break;
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case Ibranch:
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branch += i->count;
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taken += i->taken;
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break;
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case Ireg:
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powerreg += i->count;
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break;
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case Isyscall:
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syscall += i->count;
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break;
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case Ifloat:
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realarith += i->count;
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break;
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case Inop:
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arith += i->count;
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i->count -= nopcount;
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break;
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case Icontrol:
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control += i->count;
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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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Bprint(bioout, "\n%-8ud Memory cycles\n", loads+stores+total);
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if(total == 0)
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return;
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Bprint(bioout, "%-8ud %3d%% Instruction cycles\n",
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total, Percent(total, loads+stores+total));
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Bprint(bioout, "%-8ud %3d%% Data cycles\n\n",
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loads+stores, Percent(loads+stores, loads+stores+total));
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Bprint(bioout, "%-8ud %3d%% Stores\n", stores, Percent(stores, total));
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Bprint(bioout, "%-8ud %3d%% Loads\n", loads, Percent(loads, total));
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Bprint(bioout, " %-8ud Store stall\n", stores*2);
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Bprint(bioout, " %-8lud Load stall\n", loadlock);
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Bprint(bioout, "%-8ud %3d%% Arithmetic\n", arith, Percent(arith, total));
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Bprint(bioout, "%-8ud %3d%% Floating point\n",
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realarith, Percent(realarith, total));
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Bprint(bioout, "%-8ud %3d%% PowerPC special register load/stores\n",
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powerreg, Percent(powerreg, total));
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Bprint(bioout, "%-8ud %3d%% PowerPC control instructions\n",
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control, Percent(control, total));
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Bprint(bioout, "%-8ud %3d%% System calls\n", syscall, Percent(syscall, total));
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Bprint(bioout, "%-8ud %3d%% Branches\n", branch, Percent(branch, total));
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Bprint(bioout, " %-8ud %3d%% Branches taken\n",
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taken, Percent(taken, branch));
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}
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char *stype[] = { "Stack", "Text", "Data", "Bss" };
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void
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segsum(void)
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{
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Segment *s;
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int i;
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Bprint(bioout, "\n\nMemory Summary\n\n");
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Bprint(bioout, " Base End Resident References\n");
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for(i = 0; i < Nseg; i++) {
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s = &memory.seg[i];
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Bprint(bioout, "%-5s %.8lux %.8lux %-8d %-8d\n",
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stype[i], s->base, s->end, s->rss*BY2PG, s->refs);
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}
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}
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typedef struct Prof Prof;
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struct Prof
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{
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Symbol s;
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long count;
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};
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Prof prof[5000];
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int
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profcmp(void *a, void *b)
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{
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return ((Prof*)b)->count - ((Prof*)a)->count;
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}
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void
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iprofile(void)
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{
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Prof *p, *n;
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int i, b, e;
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ulong total;
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extern ulong textbase;
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i = 0;
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p = prof;
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if(textsym(&p->s, i) == 0)
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return;
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i++;
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for(;;) {
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n = p+1;
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if(textsym(&n->s, i) == 0)
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break;
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b = (p->s.value-textbase)/PROFGRAN;
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e = (n->s.value-textbase)/PROFGRAN;
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while(b < e)
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p->count += iprof[b++];
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i++;
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p = n;
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}
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qsort(prof, i, sizeof(Prof), profcmp);
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total = 0;
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for(b = 0; b < i; b++)
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total += prof[b].count;
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Bprint(bioout, " cycles %% symbol file\n");
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for(b = 0; b < i; b++) {
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if(prof[b].count == 0)
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continue;
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Bprint(bioout, "%8ld %3ld.%ld %-15s ",
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prof[b].count,
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100*prof[b].count/total,
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(1000*prof[b].count/total)%10,
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prof[b].s.name);
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printsource(prof[b].s.value);
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Bputc(bioout, '\n');
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}
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memset(prof, 0, sizeof(Prof)*i);
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}
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