source: CIVL/mods/dev.civl.abc/examples/mpi/mpi_prime.c

main
Last change on this file was aad342c, checked in by Stephen Siegel <siegel@…>, 3 years ago

Performing huge refactor to incorporate ABC, GMC, and SARL into CIVL repo and use Java modules.

git-svn-id: svn://vsl.cis.udel.edu/civl/trunk@5664 fb995dde-84ed-4084-dfe6-e5aef3e2452c

  • Property mode set to 100644
File size: 3.9 KB
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1/******************************************************************************
2* FILE: mpi_prime.c
3* DESCRIPTION:
4* Generates prime numbers. All tasks distribute the work evenly, taking
5* every nth number, where n is the stride computed as: (rank *2) + 1
6* so that even numbers are automatically skipped. The method of using
7* stride is preferred over contiguous blocks of numbers, since numbers
8* in the higher range require more work to compute and may result in
9* load imbalance. This program demonstrates embarrassing parallelism.
10* Collective communications calls are used to reduce the only two data
11* elements requiring communications: the number of primes found and
12* the largest prime.
13* AUTHOR: Blaise Barney 11/25/95 - adapted from version contributed by
14* Richard Ng & Wong Sze Cheong during MHPCC Singapore Workshop (8/22/95).
15* LAST REVISED: 04/13/05
16******************************************************************************/
17#include <mpi.h>
18#include <civlmpi.cvh>
19#include <stdio.h>
20#include <stdlib.h>
21#include <math.h>
22
23#define LIMIT 8 /* Increase this to find more primes */
24#define FIRST 0 /* Rank of first task */
25
26int isprime(int n) {
27 int i,squareroot;
28 if (n>10) {
29 squareroot = (int) sqrt(n);
30 for (i=3; i<=squareroot; i=i+2)
31 if ((n%i)==0)
32 return 0;
33 return 1;
34 }
35 /* Assume first four primes are counted elsewhere. Forget everything else */
36 else
37 return 0;
38}
39
40
41int main (int argc, char *argv[])
42{
43 int
44 ntasks, /* total number of tasks in partitiion */
45 rank, /* task identifier */
46 n, /* loop variable */
47 pc, /* prime counter */
48 pcsum, /* number of primes found by all tasks */
49 foundone, /* most recent prime found */
50 maxprime, /* largest prime found */
51 mystart, /* where to start calculating */
52 stride; /* calculate every nth number */
53
54 double start_time,end_time;
55
56 MPI_Init(&argc,&argv);
57 MPI_Comm_rank(MPI_COMM_WORLD,&rank);
58 MPI_Comm_size(MPI_COMM_WORLD,&ntasks);
59 if (((ntasks%2) !=0) || ((LIMIT%ntasks) !=0)) {
60 printf("Sorry - this exercise requires an even number of tasks.\n");
61 printf("evenly divisible into %d. Try 4 or 8.\n",LIMIT);
62 MPI_Finalize();
63 exit(0);
64 }
65
66 start_time = MPI_Wtime(); /* Initialize start time */
67 mystart = (rank*2)+1; /* Find my starting point - must be odd number */
68 stride = ntasks*2; /* Determine stride, skipping even numbers */
69 pc=0; /* Initialize prime counter */
70 foundone = 0; /* Initialize */
71
72 /******************** task with rank 0 does this part ********************/
73 if (rank == FIRST) {
74 printf("Using %d tasks to scan %d numbers\n",ntasks,LIMIT);
75 pc = 4; /* Assume first four primes are counted here */
76 for (n=mystart; n<=LIMIT; n=n+stride) {
77 if (isprime(n)) {
78 pc++;
79 foundone = n;
80 /***** Optional: print each prime as it is found
81 printf("%d\n",foundone);
82 *****/
83 }
84 }
85 MPI_Reduce(&pc,&pcsum,1,MPI_INT,MPI_SUM,FIRST,MPI_COMM_WORLD);
86 MPI_Reduce(&foundone,&maxprime,1,MPI_INT,MPI_MAX,FIRST,MPI_COMM_WORLD);
87 end_time=MPI_Wtime();
88 printf("Done. Largest prime is %d Total primes %d\n",maxprime,pcsum);
89 printf("Wallclock time elapsed: %.2lf seconds\n",end_time-start_time);
90 }
91
92
93/******************** all other tasks do this part ***********************/
94if (rank > FIRST) {
95 for (n=mystart; n<=LIMIT; n=n+stride) {
96 if (isprime(n)) {
97 pc++;
98 foundone = n;
99 /***** Optional: print each prime as it is found
100 printf("%d\n",foundone);
101 *****/
102 }
103 }
104 MPI_Reduce(&pc,&pcsum,1,MPI_INT,MPI_SUM,FIRST,MPI_COMM_WORLD);
105 MPI_Reduce(&foundone,&maxprime,1,MPI_INT,MPI_MAX,FIRST,MPI_COMM_WORLD);
106 }
107
108 MPI_Finalize();
109}
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