| 1 | #include <select.hfa>
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| 2 | #include <thread.hfa>
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| 3 | #include <channel.hfa>
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| 4 | #include <time.hfa>
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| 5 |
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| 6 | channel(long long int) A, B, C, D, E, F;
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| 7 |
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| 8 | volatile long long int inserts = 0;
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| 9 | volatile long long int removes = 0;
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| 10 |
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| 11 | thread Producer {};
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| 12 | void main( Producer & this ) {
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| 13 | long long int my_inserts = 0;
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| 14 | long long int A_i = 0, B_i = 0, C_i = 0, D_i = 0, E_i = 0, F_i = 0;
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| 15 | try {
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| 16 | for( long long int i = 0;;i++ ) {
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| 17 | waituntil( (i >> A) ) { A_i++; }
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| 18 | and waituntil( (i >> B) ) { B_i++; }
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| 19 | and waituntil( (i >> C) ) { C_i++; }
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| 20 | and waituntil( (i >> D) ) { D_i++; }
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| 21 | and waituntil( (i >> E) ) { E_i++; }
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| 22 | and waituntil( (i >> F) ) { F_i++; }
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| 23 | }
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| 24 | } catch ( channel_closed * e ) {}
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| 25 | __atomic_fetch_add( &inserts, A_i + B_i + C_i + D_i + E_i + F_i, __ATOMIC_SEQ_CST );
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| 26 | }
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| 27 |
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| 28 |
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| 29 | thread Consumer {};
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| 30 | void main( Consumer & this ) {
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| 31 | long long int in, A_removes = 0, B_removes = 0, C_removes = 0, D_removes = 0, E_removes = 0, F_removes = 0;
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| 32 | try {
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| 33 | for( ;; ) {
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| 34 | waituntil( (in << F) ) { F_removes++; }
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| 35 | or waituntil( (in << E) ) { E_removes++; }
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| 36 | or waituntil( (in << D) ) { D_removes++; }
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| 37 | or waituntil( (in << C) ) { C_removes++; }
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| 38 | or waituntil( (in << B) ) { B_removes++; }
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| 39 | or waituntil( (in << A) ) { A_removes++; }
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| 40 | }
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| 41 | } catchResume ( channel_closed * e ) { } // continue to remove until would block
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| 42 | catch ( channel_closed * e ) {}
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| 43 | try {
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| 44 | for( ;; )
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| 45 | waituntil( (in << A) ) { A_removes++; }
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| 46 | } catchResume ( channel_closed * e ) {} // continue to remove until would block
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| 47 | catch ( channel_closed * e ) {}
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| 48 | try {
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| 49 | for( ;; )
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| 50 | waituntil( (in << B) ) { B_removes++; }
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| 51 | } catchResume ( channel_closed * e ) {} // continue to remove until would block
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| 52 | catch ( channel_closed * e ) {}
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| 53 | try {
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| 54 | for( ;; )
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| 55 | waituntil( (in << C) ) { C_removes++; }
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| 56 | } catchResume ( channel_closed * e ) {} // continue to remove until would block
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| 57 | catch ( channel_closed * e ) {}
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| 58 | try {
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| 59 | for( ;; )
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| 60 | waituntil( (in << D) ) { D_removes++; }
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| 61 | } catchResume ( channel_closed * e ) {} // continue to remove until would block
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| 62 | catch ( channel_closed * e ) {}
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| 63 | try {
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| 64 | for( ;; )
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| 65 | waituntil( (in << E) ) { E_removes++; }
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| 66 | } catchResume ( channel_closed * e ) {} // continue to remove until would block
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| 67 | catch ( channel_closed * e ) {}
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| 68 | try {
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| 69 | for( ;; )
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| 70 | waituntil( (in << F) ) { F_removes++; }
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| 71 | } catchResume ( channel_closed * e ) {} // continue to remove until would block
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| 72 | catch ( channel_closed * e ) {}
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| 73 | __atomic_fetch_add( &removes, A_removes + B_removes + C_removes + D_removes + E_removes + F_removes, __ATOMIC_SEQ_CST );
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| 74 | }
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| 75 |
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| 76 |
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| 77 | size_t time = 3, num_times = 10, chan_size = 0, num_thds = 2;
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| 78 | int main( int argc, char * argv[] ) {
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| 79 | if ( argc == 2 )
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| 80 | time = atoi( argv[1] );
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| 81 |
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| 82 | processor p[ num_thds - 1 ];
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| 83 |
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| 84 | printf("Start\n");
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| 85 | for ( i; num_times ) {
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| 86 | printf("%lu\n", i);
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| 87 | A{chan_size};
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| 88 | B{chan_size};
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| 89 | C{chan_size};
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| 90 | D{chan_size};
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| 91 | E{chan_size};
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| 92 | F{chan_size};
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| 93 | {
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| 94 | Producer p[ num_thds / 2 ];
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| 95 | Consumer c[ 1 ];
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| 96 | sleep(time`s);
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| 97 | close(A);
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| 98 | close(B);
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| 99 | close(C);
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| 100 | close(D);
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| 101 | close(E);
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| 102 | close(F);
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| 103 | }
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| 104 | if ( inserts != removes ) {
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| 105 | printf("\n");
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| 106 | printf("CHECKSUM MISMATCH!! Producer got: %lld, Consumer got: %lld\n", inserts, removes);
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| 107 | assert(false);
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| 108 | }
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| 109 | ^A{};
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| 110 | ^B{};
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| 111 | ^C{};
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| 112 | ^D{};
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| 113 | ^E{};
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| 114 | ^F{};
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| 115 |
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| 116 | inserts = 0;
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| 117 | removes = 0;
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| 118 | }
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| 119 |
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| 120 | A{5};
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| 121 | B{5};
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| 122 | C{5};
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| 123 | D{5};
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| 124 | E{5};
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| 125 | F{5};
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| 126 | printf("Done\n");
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| 127 | }
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