root / ETSN / MySteps_1_openmp.c @ 296
Historique | Voir | Annoter | Télécharger (2,63 ko)
1 |
/* Simple Sum function in C and OpenMP/C */
|
---|---|
2 |
/* compilation with sequential compute : gcc -fopenmp -O3 -o MySteps_1_openmp MySteps_1_openmp.c -lm -lgomp */
|
3 |
/* compilation without sequential compute : gcc -DNOSERIAL -fopenmp -O3 -o MySteps_1_openmp_1_NoSerial MySteps_1_openmp.c -lm -lgomp */
|
4 |
|
5 |
#include <math.h> |
6 |
#include <stdio.h> |
7 |
#include <stdlib.h> |
8 |
#include <sys/time.h> |
9 |
|
10 |
#define PI 3.141592653589793 |
11 |
|
12 |
#define MYFLOAT float |
13 |
|
14 |
void MySum(MYFLOAT *res, MYFLOAT *a, MYFLOAT *b, int size) |
15 |
{ |
16 |
for (uint i=0; i<size;i++) |
17 |
{ |
18 |
res[i] = a[i] + b[i]; |
19 |
} |
20 |
} |
21 |
|
22 |
void MySillySumOMP(MYFLOAT *res, MYFLOAT *a, MYFLOAT *b, int size) |
23 |
{ |
24 |
#pragma omp parallel for |
25 |
for (uint i=0; i<size;i++) |
26 |
{ |
27 |
res[i] = a[i] + b[i]; |
28 |
} |
29 |
} |
30 |
|
31 |
MYFLOAT MyNorm(MYFLOAT *a,MYFLOAT *b,int size)
|
32 |
{ |
33 |
MYFLOAT norm=0.;
|
34 |
|
35 |
for (int i=0;i<size;i++) |
36 |
{ |
37 |
norm+=pow(a[i]-b[i],2);
|
38 |
} |
39 |
|
40 |
return(sqrt(norm));
|
41 |
} |
42 |
|
43 |
void MyPrint(MYFLOAT *a,int size) |
44 |
{ |
45 |
printf("[");
|
46 |
for (int i=0;i<size;i++) |
47 |
{ |
48 |
printf(" %.8e ",a[i]);
|
49 |
} |
50 |
printf("]\n");
|
51 |
} |
52 |
|
53 |
int main(int argc,char *argv[]) |
54 |
{ |
55 |
float *a,*b,*res,*resacc;
|
56 |
int size=1024; |
57 |
struct timeval tv1,tv2;
|
58 |
|
59 |
if (argc > 1) { |
60 |
size=(int)atoll(argv[1]); |
61 |
} |
62 |
else {
|
63 |
printf("\n\tPi : Estimate SillySum\n\n\t\t#1 : size (default 1024)\n\n");
|
64 |
} |
65 |
|
66 |
printf("%i\n",size);
|
67 |
|
68 |
a=(float*)malloc(size*sizeof(MYFLOAT)); |
69 |
b=(float*)malloc(size*sizeof(MYFLOAT)); |
70 |
res=(float*)malloc(size*sizeof(MYFLOAT)); |
71 |
resacc=(float*)malloc(size*sizeof(MYFLOAT)); |
72 |
|
73 |
srand(110271);
|
74 |
|
75 |
for (int i=0;i<size;i++) |
76 |
{ |
77 |
a[i]=(MYFLOAT)rand()/(MYFLOAT)RAND_MAX; |
78 |
b[i]=(MYFLOAT)rand()/(MYFLOAT)RAND_MAX; |
79 |
res[i]=0.;
|
80 |
resacc[i]=0.;
|
81 |
} |
82 |
|
83 |
#ifndef NOSERIAL
|
84 |
gettimeofday(&tv1, NULL);
|
85 |
MySum(res,a,b,size); |
86 |
gettimeofday(&tv2, NULL);
|
87 |
#endif
|
88 |
|
89 |
MYFLOAT elapsed=(MYFLOAT)((tv2.tv_sec-tv1.tv_sec) * 1000000L +
|
90 |
(tv2.tv_usec-tv1.tv_usec))/1000000;
|
91 |
|
92 |
gettimeofday(&tv1, NULL);
|
93 |
MySillySumOMP(resacc,a,b,size); |
94 |
gettimeofday(&tv2, NULL);
|
95 |
|
96 |
MYFLOAT elapsedAcc=(MYFLOAT)((tv2.tv_sec-tv1.tv_sec) * 1000000L +
|
97 |
(tv2.tv_usec-tv1.tv_usec))/1000000;
|
98 |
|
99 |
#ifndef NOSERIAL
|
100 |
MYFLOAT MyChecker=MyNorm(res,resacc,size); |
101 |
printf("Norm: %.8e\n",MyChecker);
|
102 |
#endif
|
103 |
|
104 |
#ifdef VERBOSE
|
105 |
MyPrint(res,size); |
106 |
MyPrint(resacc,size); |
107 |
#endif
|
108 |
|
109 |
#ifndef NOSERIAL
|
110 |
printf("Elapsed Time: %.3f\n",elapsed);
|
111 |
#endif
|
112 |
|
113 |
printf("OMP Elapsed Time: %.3f\n",elapsedAcc);
|
114 |
|
115 |
#ifndef NOSERIAL
|
116 |
printf("NaiveRate: %.lld\n",(unsigned long)((float)size/elapsed)); |
117 |
#endif
|
118 |
printf("OMPRate: %.lld\n",(unsigned long)((float)size/elapsedAcc)); |
119 |
|
120 |
#ifndef NOSERIAL
|
121 |
printf("AccRatio: %.3f\n",elapsed/elapsedAcc);
|
122 |
#endif
|
123 |
|
124 |
free(a); |
125 |
free(b); |
126 |
free(res); |
127 |
free(resacc); |
128 |
} |
129 |
|