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simulacion-permeabilidad/fftma_module/gen/lib_src/Py_kgeneration.c

79 lines
2.0 KiB
C

#include "Py_py-api.h"
#include "genlib.h"
#include "geostat.h"
#include "simpio.h"
#include "toolsFFTMA.h"
#include "toolsIO.h"
#include "log.h"
#include "memory.h"
#include <Python.h>
#include <numpy/arrayobject.h>
#include <stdarg.h>
#include <stddef.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <time.h>
/* kgeneration */
/* Z is the GWN with 0-mean and 1-variance */
/* Y is the realization with mean and variance wanted */
void Py_kgeneration(long seed, struct grid_mod grid, struct statistic_mod stat, struct vario_mod variogram, struct realization_mod* Z, struct realization_mod* Y, int n[3], int cores) {
clock_t t = clock();
int i, N;
int typelog;
/*generate Gaussian white noise*/
N = grid.NX * grid.NY * grid.NZ;
n[0] = 0;
n[1] = 0;
n[2] = 0;
log_info("RESULT = in progress, N = %d", N);
struct cpustat initial[cores];
struct cpustat final[cores];
for (int i = 0; i < cores; i++) {
get_stats(&initial[i], i - 1);
}
generate(&seed, N, Z, cores);
/*FFTMA*/
FFTMA2(variogram, grid, n, Z, Y);
/* make a log normal realization */
if (stat.type == 1 || stat.type == 2) {
typelog = stat.type + 2;
nor2log(Y, typelog, Y);
}
t = clock() - t;
double time_taken = ((double)t)/CLOCKS_PER_SEC; // calculate the elapsed time
for (int i = 0; i < cores; i++) {
get_stats(&final[i], i - 1);
}
for (int i = 0; i < cores; i++) {
log_info("CPU %d: %lf%%\n", i, calculate_load(&initial[i], &final[i]));
}
double* total_ram = malloc(sizeof(double));
getTotalVirtualMem(total_ram);
double* used_ram = malloc(sizeof(double));
getVirtualMemUsed(used_ram);
log_info("TOTAL VIRTUAL MEM = %5.1f MB, USED VIRTUAL MEM = %5.1f MB, USED VIRTUAL MEM BY CURRENT PROCESS = %d MB",
*total_ram, *used_ram, getVirtualMemUsedByCurrentProcess());
free(total_ram);
free(used_ram);
log_info("RESULT = success, ELAPSED = %f seconds", time_taken);
}