| 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;
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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 |     try {
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| 14 |         for( long long int i = 0;;i++ ) {
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| 15 |             waituntil( A << i ) { inserts++; }
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| 16 |             and waituntil( B << i ) { inserts++; }
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| 17 |         }
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| 18 |     } catch ( channel_closed * e ) {} 
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| 19 | }
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| 20 | 
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| 21 | bool useAnd = false;
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| 22 | thread Consumer {}; // ensures that the changing when states of Server1 don't result in a deadlock
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| 23 | void main( Consumer & this ) {
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| 24 |     long long int in, in2, A_removes = 0, B_removes = 0;
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| 25 |     try {
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| 26 |         for( ;; ) {
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| 27 |             if ( useAnd ) {
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| 28 |                 waituntil( (in << A) ) { __atomic_thread_fence( __ATOMIC_SEQ_CST ); assert( A_removes == in ); A_removes++; removes++; }
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| 29 |                 and waituntil( (in2 << B) ) { __atomic_thread_fence( __ATOMIC_SEQ_CST ); assert( B_removes == in2 ); B_removes++; removes++; }
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| 30 |                 continue;
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| 31 |             }
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| 32 |             waituntil( (in << A) ) { __atomic_thread_fence( __ATOMIC_SEQ_CST ); assert( A_removes == in ); A_removes++; removes++; }
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| 33 |             or waituntil( (in << B) ) { __atomic_thread_fence( __ATOMIC_SEQ_CST ); ( B_removes == in ); B_removes++; removes++; }
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| 34 |         }
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| 35 |     } catchResume ( channel_closed * e ) {} // continue to remove until would block
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| 36 |     catch ( channel_closed * e ) {} 
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| 37 |     try {
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| 38 |         for( ;; )
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| 39 |             waituntil( (in << A) ) { __atomic_thread_fence( __ATOMIC_SEQ_CST ); assert( A_removes == in ); A_removes++; removes++; }
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| 40 |     } catchResume ( channel_closed * e ) {} // continue to remove until would block
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| 41 |     catch ( channel_closed * e ) {} 
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| 42 |     try {
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| 43 |         for( ;; )
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| 44 |             waituntil( (in << B) ) { __atomic_thread_fence( __ATOMIC_SEQ_CST ); assert( B_removes == in ); B_removes++; removes++; }
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| 45 |     } catchResume ( channel_closed * e ) {} // continue to remove until would block
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| 46 |     catch ( channel_closed * e ) {} 
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| 47 | }
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| 48 | 
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| 49 | 
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| 50 | size_t time = 5;
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| 51 | int main( int argc, char * argv[] ) {
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| 52 |     if ( argc == 2 )
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| 53 |         time = atoi( argv[1] );
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| 54 | 
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| 55 |     processor p[2];
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| 56 |     A{5};
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| 57 |     B{5};
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| 58 | 
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| 59 |     printf("start OR\n");
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| 60 |     {
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| 61 |         Producer p;
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| 62 |         Consumer c;
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| 63 |         sleep(time`s);
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| 64 |         printf("done sleep\n");
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| 65 |         printf("closing A\n");
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| 66 |         close(A);
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| 67 |         printf("closing B\n");
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| 68 |         close(B);
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| 69 |     }
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| 70 |     if ( inserts != removes ) 
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| 71 |         printf("CHECKSUM MISMATCH!! Producer got: %lld, Consumer got: %lld\n", inserts, removes);
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| 72 |     printf("done\n");
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| 73 |     ^A{};
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| 74 |     ^B{};
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| 75 | 
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| 76 |     useAnd = true;
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| 77 | 
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| 78 |     inserts = 0;
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| 79 |     removes = 0;
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| 80 |     A{5};
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| 81 |     B{5};
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| 82 |     printf("start AND\n");
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| 83 |     {
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| 84 |         Producer p;
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| 85 |         Consumer c;
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| 86 |         sleep(time`s);
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| 87 |         printf("done sleep\n");
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| 88 |         printf("closing A\n");
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| 89 |         close(A);
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| 90 |         printf("closing B\n");
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| 91 |         close(B);
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| 92 |     }
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| 93 |     if ( inserts != removes ) 
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| 94 |         printf("CHECKSUM MISMATCH!! Producer got: %lld, Consumer got: %lld\n", inserts, removes);
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| 95 |     printf("done\n");
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| 96 | }
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