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📄 test_sched.c

📁 FFTW, a collection of fast C routines to compute the Discrete Fourier Transform in one or more dime
💻 C
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/* * Copyright (c) 1997-1999, 2003 Massachusetts Institute of Technology * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 of the License, or * (at your option) any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA * */#include <stdio.h>#include <stdlib.h>#include "sched.h"int main(int argc, char **argv){     int **sched;     int npes = -1, sortpe = -1, steps;     if (argc >= 2) {	  npes = atoi(argv[1]);	  if (npes <= 0) {	       fprintf(stderr,"npes must be positive!");	       return 1;	  }     }     if (argc >= 3) {	  sortpe = atoi(argv[2]);	  if (sortpe < 0 || sortpe >= npes) {	       fprintf(stderr,"sortpe must be between 0 and npes-1.\n");	       return 1;	  }     }     if (npes != -1) {	  printf("Computing schedule for npes = %d:\n",npes);	  sched = make_comm_schedule(npes);	  if (!sched) {	       fprintf(stderr,"Out of memory!");	       return 6;	  }	  	  if (steps = check_comm_schedule(sched,npes))	       printf("schedule OK (takes %d steps to complete).\n", steps);	  else	       printf("schedule not OK.\n");	  print_comm_schedule(sched, npes);	  	  if (sortpe != -1) {	       printf("\nSorting schedule for sortpe = %d...\n", sortpe);	       sort_comm_schedule(sched,npes,sortpe);	       	       if (steps = check_comm_schedule(sched,npes))		    printf("schedule OK (takes %d steps to complete).\n", 			   steps);	       else		    printf("schedule not OK.\n");	       print_comm_schedule(sched, npes);	       	       printf("\nInverting schedule...\n");	       invert_comm_schedule(sched,npes);	       	       if (steps = check_comm_schedule(sched,npes))		    printf("schedule OK (takes %d steps to complete).\n", 			   steps);	       else		    printf("schedule not OK.\n");	       print_comm_schedule(sched, npes);	       	       free_comm_schedule(sched,npes);	  }     }     else {	  printf("Doing infinite tests...\n");	  for (npes = 1; ; ++npes) {	       printf("npes = %d...",npes);	       sched = make_comm_schedule(npes);	       if (!sched) {		    fprintf(stderr,"Out of memory!\n");		    return 5;	       }	       for (sortpe = 0; sortpe < npes; ++sortpe) {		    empty_comm_schedule(sched,npes);		    fill_comm_schedule(sched,npes);		    if (!check_comm_schedule(sched,npes)) {			 fprintf(stderr,				 "\n -- fill error for sortpe = %d!\n",sortpe);			 return 2;		    }		    sort_comm_schedule(sched,npes,sortpe);		    if (!check_comm_schedule(sched,npes)) {			 fprintf(stderr,				 "\n -- sort error for sortpe = %d!\n",sortpe);			 return 3;		    }		    invert_comm_schedule(sched,npes);		    if (!check_comm_schedule(sched,npes)) {			 fprintf(stderr,				 "\n -- invert error for sortpe = %d!\n",				 sortpe);			 return 4;		    }	       }	       free_comm_schedule(sched,npes);	       printf("OK\n");	       if (npes % 50 == 0)		    printf("(...Hit Ctrl-C to stop...)\n");	  }     }     return 0;}

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