Révision 295
ETSN/MySteps_openacc.c (revision 295) | ||
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/* Simple SillySum function in C and OpenMP/C */ |
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/* compilation with : gcc -O3 -fopenacc -foffload=nvptx-none -foffload="-O3 -misa=sm_35 -lm" -o MySteps_openacc MySteps_openacc.c -lm */ |
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#include <math.h> |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <sys/time.h> |
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#define PI 3.141592653589793 |
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#define MYFLOAT float |
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#pragma acc routine |
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MYFLOAT MySillyFunction(MYFLOAT x) |
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{ |
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return(pow(sqrt(log(exp(atanh(tanh(asinh(sinh(acosh(cosh(atan(tan(asin(sin(acos(cos(x))))))))))))))),2)); |
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} |
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void MySillySum(MYFLOAT *res, MYFLOAT *a, MYFLOAT *b,int calls, int size) |
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{ |
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for (uint i=0; i<size;i++) |
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{ |
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MYFLOAT ai=a[i]; |
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MYFLOAT bi=b[i]; |
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for (int c=0;c<calls;c++) |
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{ |
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ai=MySillyFunction(ai); |
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bi=MySillyFunction(bi); |
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} |
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res[i] = ai + bi; |
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} |
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} |
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void MySillySumOpenACC(MYFLOAT *res, MYFLOAT *a, MYFLOAT *b,int calls, int size) |
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{ |
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#pragma acc data copyin(a[0:size],b[0:size]),copyout(res[0:size]) |
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#pragma acc parallel loop |
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for (uint i=0; i<size;i++) |
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{ |
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MYFLOAT ai=a[i]; |
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MYFLOAT bi=b[i]; |
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for (int c=0;c<calls;c++) |
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{ |
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ai=MySillyFunction(ai); |
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bi=MySillyFunction(bi); |
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} |
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res[i] = ai + bi; |
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} |
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} |
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MYFLOAT MyNorm(MYFLOAT *a,MYFLOAT *b,int size) |
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{ |
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MYFLOAT norm=0.; |
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for (int i=0;i<size;i++) |
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{ |
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norm+=pow(a[i]-b[i],2); |
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} |
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return(sqrt(norm)); |
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} |
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void MyPrint(MYFLOAT *a,int size) |
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{ |
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printf("["); |
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for (int i=0;i<size;i++) |
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{ |
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printf(" %.8e ",a[i]); |
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} |
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printf("]\n"); |
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} |
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int main(int argc,char *argv[]) |
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{ |
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float *a,*b,*res,*resacc; |
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int size=1024; |
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int calls=1; |
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struct timeval tv1,tv2; |
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if (argc > 1) { |
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size=(int)atoll(argv[1]); |
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calls=(int)atoll(argv[2]); |
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} |
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else { |
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printf("\n\tPi : Estimate SillySum\n\n\t\t#1 : size (default 1024)\n\t\t#2 : calls (default 1)\n\n"); |
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} |
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printf("%i %i\n",size,calls); |
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a=(float*)malloc(size*sizeof(MYFLOAT)); |
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b=(float*)malloc(size*sizeof(MYFLOAT)); |
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res=(float*)malloc(size*sizeof(MYFLOAT)); |
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resacc=(float*)malloc(size*sizeof(MYFLOAT)); |
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srand(110271); |
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for (int i=0;i<size;i++) |
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{ |
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a[i]=(MYFLOAT)rand()/(MYFLOAT)RAND_MAX; |
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b[i]=(MYFLOAT)rand()/(MYFLOAT)RAND_MAX; |
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res[i]=0.; |
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resacc[i]=0.; |
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} |
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gettimeofday(&tv1, NULL); |
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MySillySum(res,a,b,calls,size); |
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gettimeofday(&tv2, NULL); |
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MYFLOAT elapsed=(MYFLOAT)((tv2.tv_sec-tv1.tv_sec) * 1000000L + |
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(tv2.tv_usec-tv1.tv_usec))/1000000; |
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gettimeofday(&tv1, NULL); |
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MySillySumOpenACC(resacc,a,b,calls,size); |
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gettimeofday(&tv2, NULL); |
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MYFLOAT elapsedAcc=(MYFLOAT)((tv2.tv_sec-tv1.tv_sec) * 1000000L + |
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(tv2.tv_usec-tv1.tv_usec))/1000000; |
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MYFLOAT MyChecker=MyNorm(res,resacc,size); |
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printf("Norm: %.8e\n",MyChecker); |
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#ifdef VERBOSE |
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MyPrint(res,size); |
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MyPrint(resacc,size); |
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#endif |
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printf("Elapsed Time: %.3f\n",elapsed); |
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printf("OpenACC Elapsed Time: %.3f\n",elapsedAcc); |
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printf("NaiveRate: %.i\n",(int)((float)size/elapsed)); |
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printf("OpenACCRate: %.i\n",(int)((float)size/elapsedAcc)); |
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printf("OpenACCRatio: %.3f\n",elapsed/elapsedAcc); |
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free(a); |
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free(b); |
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free(res); |
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free(resacc); |
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} |
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Formats disponibles : Unified diff