source: tests/concurrency/actors/matrixMultiply.cfa @ d923fca

Last change on this file since d923fca was d923fca, checked in by Andrew Beach <ajbeach@…>, 6 weeks ago

Clean-up the warnings of the concurrency tests. A lot of little test level fixes, the most interesting repeated one is some formally redundent fallthough statements. pthread_attr_test had to be rewritten because of library restrictions. Changed some types so they would always be pointer sized. There was a library change, there was a function that could not be implemented; I trust that it is included for a reason so I just put it in a comment. There is a change to the compiler, wait-until now uses goto. The labelled breaks were code generated as unlabelled breaks and although it worked out slipped through some checks. Finally, there is one warning that I cannot solve at this time so tests that produce it have been put in their own lax group.

  • Property mode set to 100644
File size: 2.6 KB
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1#include <actor.hfa>
2#include <fstream.hfa>
3#include <stdlib.hfa>
4#include <string.h>
5#include <stdio.h>
6
7ssize_t xr = 500, xc = 500, yc = 500, Processors = 1; // default values, must be signed
8
9struct derived_actor { inline actor; };
10
11struct derived_msg {
12        inline message;
13        int * Z;
14        int * X;
15        int ** Y;
16};
17
18void ?{}( derived_msg & this ) {}
19void ?{}( derived_msg & this, int * Z, int * X, int ** Y ) {
20        set_allocation( this, Nodelete );
21        this.Z = Z;
22        this.X = X;
23        this.Y = Y;
24}
25
26allocation receive( derived_actor &, derived_msg & msg ) {
27        for ( i; yc ) {                                                                         // multiply X_row by Y_col and sum products
28                msg.Z[i] = 0;
29                for ( j; xc ) {
30                        msg.Z[i] += msg.X[j] * msg.Y[j][i];
31                } // for
32        } // for
33        return Finished;
34}
35
36int main( int argc, char * argv[] ) {
37        switch ( argc ) {
38          case 5:
39                if ( strcmp( argv[4], "d" ) != 0 ) {                    // default ?
40                        Processors = ato( argv[4] );
41                        if ( Processors < 1 ) fallthrough default;
42                } // if
43        fallthrough;
44          case 4:
45                if ( strcmp( argv[3], "d" ) != 0 ) {                    // default ?
46                        xr = ato( argv[3] );
47                        if ( xr < 1 ) fallthrough default;
48                } // if
49        fallthrough;
50          case 3:
51                if ( strcmp( argv[2], "d" ) != 0 ) {                    // default ?
52                        xc = ato( argv[2] );
53                        if ( xc < 1 ) fallthrough default;
54                } // if
55        fallthrough;
56          case 2:
57                if ( strcmp( argv[1], "d" ) != 0 ) {                    // default ?
58                        yc = ato( argv[1] );
59                        if ( yc < 1 ) fallthrough default;
60                } // if
61        fallthrough;
62          case 1:                                                                                       // use defaults
63                break;
64          default:
65                exit | "Usage: " | argv[0]
66                         | " [ yc (> 0) | 'd' (default " | yc
67                         | ") ] [ xc (> 0) | 'd' (default " | xc
68                         | ") ] [ xr (> 0) | 'd' (default " | xr
69                         | ") ] [ processors (> 0) | 'd' (default " | Processors
70                         | ") ]" ;
71        } // switch
72
73        int * Z[xr], * X[xr], * Y[xc];
74
75        for ( r; xr ) {                                                                         // create/initialize X matrix
76                X[r] = aalloc( xc );
77                for ( c; xc ) {
78                        X[r][c] = r * c % 37;                                           // for timing
79                } // for
80        } // for
81        for ( r; xc ) {                                                                         // create/initialize Y matrix
82                Y[r] = aalloc( yc );
83                for ( c; yc ) {
84                        Y[r][c] = r * c % 37;                                           // for timing
85                } // for
86        } // for
87        for ( r; xr ) {                                                                         // create Z matrix
88                Z[r] = aalloc( yc );
89        } // for
90
91        executor e{ Processors, Processors, Processors == 1 ? 1 : Processors * 16, true };
92
93        sout | "starting";
94        actor_start( e );
95        sout | "started";
96        derived_msg messages[xr];
97        derived_actor actors[xr];
98
99        for ( r; xr ) {
100                messages[r]{ Z[r], X[r], Y };
101        } // for
102        for ( r; xr ) {
103                actors[r] | messages[r];
104        } // for
105
106        sout | "stopping";
107        actor_stop();
108        sout | "stopped";
109
110        for ( r; xr ) {                                                                         // deallocate X and Z matrices
111                free( X[r] );
112                free( Z[r] );
113        } // for
114        for ( r; xc ) {                                                                         // deallocate Y matrix
115                free( Y[r] );
116        } // for
117}
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