| [4cedd9f] | 1 | //
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| [2e457d8] | 2 | // Cforall Version 1.0.0 Copyright (C) 2017 University of Waterloo
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 | 3 | // 
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| [9f865d1] | 4 | // The contents of this file are covered under the licence agreement in the
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 | 5 | // file "LICENCE" distributed with Cforall.
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| [4cedd9f] | 6 | //
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 | 7 | // boundedBuffer.c --
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 | 8 | //
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| [9f865d1] | 9 | // Author           : Peter A. Buhr
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 | 10 | // Created On       : Mon Oct 30 12:45:13 2017
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 | 11 | // Last Modified By : Peter A. Buhr
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| [3aa1d22] | 12 | // Last Modified On : Fri Jun 21 08:20:46 2019
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 | 13 | // Update Count     : 90
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| [4cedd9f] | 14 | //
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| [9f865d1] | 15 | 
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| [2e457d8] | 16 | #include <stdlib.hfa>                                                                   // random
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| [73abe95] | 17 | #include <fstream.hfa>
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 | 18 | #include <kernel.hfa>
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 | 19 | #include <thread.hfa>
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| [6c7b1e7] | 20 | #include <unistd.h>                                                                             // getpid
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| [1033f5d] | 21 | 
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| [58caf150] | 22 | //Duration default_preemption() { return 0; }
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 | 23 | 
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 | 24 | enum { BufferSize = 50 };
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 | 25 | 
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| [623c16a] | 26 | forall( otype T ) {
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 | 27 |         monitor Buffer {
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 | 28 |                 condition full, empty;
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 | 29 |                 int front, back, count;
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 | 30 |                 T elements[BufferSize];
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 | 31 |         }; // Buffer
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| [1033f5d] | 32 | 
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| [623c16a] | 33 |         void ?{}( Buffer(T) & buffer ) with( buffer ) { [front, back, count] = 0; }
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| [1033f5d] | 34 | 
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| [623c16a] | 35 |         int query( Buffer(T) & buffer ) { return buffer.count; } // read-only, no mutual exclusion
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| [1033f5d] | 36 | 
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| [623c16a] | 37 |         void insert( Buffer(T) & mutex buffer, T elem ) with( buffer ) {
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 | 38 |                 if ( count == BufferSize ) wait( empty );
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 | 39 |                 elements[back] = elem;
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 | 40 |                 back = ( back + 1 ) % BufferSize;
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 | 41 |                 count += 1;
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 | 42 |                 signal( full );
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 | 43 |         } // insert
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| [a1ecdd1] | 44 | 
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| [623c16a] | 45 |         T remove( Buffer(T) & mutex buffer ) with( buffer ) {
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 | 46 |                 if ( count == 0 ) wait( full );
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 | 47 |                 T elem = elements[front];
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 | 48 |                 front = ( front + 1 ) % BufferSize;
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 | 49 |                 count -= 1;
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 | 50 |                 signal( empty );
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 | 51 |                 return elem;
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 | 52 |         } // remove
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| [1033f5d] | 53 | }
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 | 54 | 
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| [3aa1d22] | 55 | enum { Sentinel = -1 };
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| [58caf150] | 56 | 
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| [1033f5d] | 57 | thread Producer {
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| [58caf150] | 58 |         Buffer(int) & buffer;
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| [9f865d1] | 59 |         unsigned int N;
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| [1033f5d] | 60 | };
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| [58caf150] | 61 | void main( Producer & prod ) with( prod ) {
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| [3aa1d22] | 62 |         for ( i; 1 ~= N ) {
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| [6c7b1e7] | 63 |                 yield( random( 5 ) );
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| [58caf150] | 64 |                 insert( buffer, 1 );
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| [9f865d1] | 65 |         } // for
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| [1033f5d] | 66 | }
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| [58caf150] | 67 | void ?{}( Producer & prod, Buffer(int) * buffer, int N ) {
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| [9f865d1] | 68 |         &prod.buffer = buffer;
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 | 69 |         prod.N = N;
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| [a1ecdd1] | 70 | }
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| [1033f5d] | 71 | 
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 | 72 | thread Consumer {
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| [58caf150] | 73 |         Buffer(int) & buffer;
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 | 74 |         int & sum;                                                                                      // summation of producer values
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| [1033f5d] | 75 | };
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| [58caf150] | 76 | void main( Consumer & cons ) with( cons ) {
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 | 77 |         sum = 0;
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| [adb6b30f] | 78 |         for () {
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| [6c7b1e7] | 79 |                 yield( random( 5 ) );
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| [58caf150] | 80 |                 int item = remove( buffer );
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 | 81 |           if ( item == Sentinel ) break;                                        // sentinel ?
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 | 82 |                 sum += item;
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| [9f865d1] | 83 |         } // for
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| [1033f5d] | 84 | }
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| [58caf150] | 85 | void ?{}( Consumer & cons, Buffer(int) * buffer, int & sum ) {
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| [9f865d1] | 86 |         &cons.buffer = buffer;
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| [58caf150] | 87 |         &cons.sum = ∑
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| [1033f5d] | 88 | }
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 | 89 | 
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 | 90 | int main() {
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| [58caf150] | 91 |         Buffer(int) buffer;
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 | 92 |         enum { Prods = 4, Cons = 5 };
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| [9f865d1] | 93 |         Producer * prods[Prods];
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 | 94 |         Consumer * cons[Cons];
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 | 95 |         int sums[Cons];
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 | 96 |         int i;
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 | 97 |         processor p;
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| [1033f5d] | 98 | 
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| [54aba8d] | 99 |         //srandom( getpid() );
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 | 100 |         srandom( 1003 );
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| [1033f5d] | 101 | 
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| [3aa1d22] | 102 |         for ( i; Cons ) {                                                                       // create consumers
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| [58caf150] | 103 |                 cons[i] = new( &buffer, sums[i] );
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| [9f865d1] | 104 |         } // for
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| [3aa1d22] | 105 |         for ( i; Prods ) {                                                                      // create producers
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| [58caf150] | 106 |                 prods[i] = new( &buffer, 100000 );
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| [9f865d1] | 107 |         } // for
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| [1033f5d] | 108 | 
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| [3aa1d22] | 109 |         for ( i; Prods ) {                                                                      // wait for producers to finish
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| [9f865d1] | 110 |                 delete( prods[i] );
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 | 111 |         } // for
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| [3aa1d22] | 112 |         for ( i; Cons ) {                                                                       // generate sentinal values to stop consumers
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| [9f865d1] | 113 |                 insert( buffer, Sentinel );
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 | 114 |         } // for
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 | 115 |         int sum = 0;
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| [3aa1d22] | 116 |         for ( i; Cons ) {                                                                       // wait for consumers to finish
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| [9f865d1] | 117 |                 delete( cons[i] );
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 | 118 |                 sum += sums[i];
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 | 119 |         } // for
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| [200fcb3] | 120 |         sout | "total:" | sum;
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| [1033f5d] | 121 | }
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| [9f865d1] | 122 | 
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 | 123 | // Local Variables: //
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 | 124 | // tab-width: 4 //
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| [f8cd310] | 125 | // compile-command: "cfa boundedBufferINT.cfa" //
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| [9f865d1] | 126 | // End: //
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