| 1 | #include <stdlib.h>                                                                             // prototype: rand
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| 2 | #include <fstream.hfa>
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| 3 | #include <thread.hfa>
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| 4 | #include <pthread.h>
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| 5 | #include <errno.h>
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| 6 | // tested pthread mutex related routines, pthread cond related routines
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| 7 | // tested pthread_create/join
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| 8 | 
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| 9 | enum { BufferSize = 50 };
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| 10 | 
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| 11 | volatile int producer_val_total;
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| 12 | volatile int consumer_val_total;
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| 13 | 
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| 14 | pthread_mutex_t producer_cnt_lock, consumer_cnt_lock;
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| 15 | 
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| 16 | 
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| 17 | forall( T ){
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| 18 |     struct Buffer
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| 19 |     {
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| 20 |         int front, back, count;
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| 21 |                 T elements[BufferSize];
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| 22 |         pthread_mutex_t _mutex;
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| 23 |             pthread_cond_t Full, Empty;                                                 // waiting consumers & producers
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| 24 |     };
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| 25 | 
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| 26 |     void ?{}( Buffer(T) & buffer ) with( buffer ) {
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| 27 |          [front, back, count] = 0; 
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| 28 |          pthread_mutex_init(&_mutex, NULL);
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| 29 |          pthread_cond_init(&Full, NULL);
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| 30 |          pthread_cond_init(&Empty, NULL);
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| 31 |     }
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| 32 | 
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| 33 |     void ^?{}( Buffer(T) & buffer ) with( buffer ){
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| 34 |         pthread_mutex_destroy(&_mutex);
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| 35 |         pthread_cond_destroy(&Full);
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| 36 |         pthread_cond_destroy(&Empty);
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| 37 |     }
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| 38 | 
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| 39 |     int query( Buffer(T) & buffer ) { return buffer.count; } // read-only, no mutual exclusion
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| 40 |     
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| 41 |     void insert( Buffer(T) & buffer, T elem ) with(buffer) {
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| 42 |                 pthread_mutex_lock(&_mutex);
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| 43 |                 while ( count == 20 ) pthread_cond_wait( &Empty, &_mutex ); // block producer
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| 44 |                 elements[back] = elem;
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| 45 |                 back = ( back + 1 ) % 20;
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| 46 |                 count += 1;
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| 47 |                 pthread_cond_signal( &Full );                                   // unblock consumer
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| 48 |         pthread_mutex_unlock(&_mutex);
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| 49 |         }
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| 50 | 
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| 51 |     T remove(Buffer(T) & buffer) with(buffer) {
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| 52 |                 pthread_mutex_lock(&_mutex);
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| 53 |                 while ( count == 0 ) pthread_cond_wait( &Full, &_mutex ); // block consumer
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| 54 |                 T elem = elements[front];
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| 55 |                 front = ( front + 1 ) % 20;
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| 56 |                 count -= 1;
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| 57 |                 pthread_cond_signal( &Empty );                                  // unblock producer
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| 58 |         pthread_mutex_unlock(&_mutex);
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| 59 |                 return elem;
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| 60 |         }
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| 61 | 
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| 62 | }
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| 63 | 
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| 64 | void *producer( void *arg ) {
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| 65 |     Buffer(int) &buf = *(Buffer(int)*)arg;
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| 66 |         const int NoOfItems = prng(*active_thread(), 40);
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| 67 |         int item;
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| 68 |         for ( int i = 1; i <= NoOfItems; i += 1 ) {                     // produce a bunch of items
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| 69 |                 item = prng(*active_thread(), 1, 101);                  // produce a random number
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| 70 |                 //sout | "Producer:" | pthread_self() | " value:" | item;
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| 71 |                 insert( buf,item );                                                             // insert element into queue
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| 72 |         pthread_mutex_lock(&producer_cnt_lock);
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| 73 |         producer_val_total += item;
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| 74 |         pthread_mutex_unlock(&producer_cnt_lock);
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| 75 |         } // for
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| 76 |         //sout | "Producer:" | pthread_self() | " is finished";
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| 77 |         return NULL;
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| 78 | } // producer
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| 79 | 
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| 80 | void *consumer( void *arg ) {
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| 81 |         Buffer(int) &buf = *(Buffer(int) *)arg;
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| 82 |         int item;
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| 83 |         for ( ;; ) {                                                                            // consume until a negative element appears
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| 84 |                 item = remove(buf);                                                     // remove from front of queue
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| 85 |                 //sout | "Consumer:" | pthread_self() | " value:" | item;
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| 86 |           if ( item == -1 ) break;
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| 87 |         pthread_mutex_lock(&consumer_cnt_lock);
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| 88 |         consumer_val_total += item;
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| 89 |         pthread_mutex_unlock(&consumer_cnt_lock);
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| 90 |         } // for
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| 91 |         //sout | "Consumer:" | pthread_self() | " is finished";
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| 92 |         return NULL;
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| 93 | } // consumer
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| 94 | 
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| 95 | int main() {
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| 96 |         const int NoOfCons = 20, NoOfProds = 30;
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| 97 |         Buffer(int) buf;                                                                // create a buffer monitor
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| 98 |         pthread_t cons[NoOfCons];                                                       // pointer to an array of consumers
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| 99 |         pthread_t prods[NoOfProds];                                                     // pointer to an array of producers
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| 100 |     pthread_mutex_init(&producer_cnt_lock, NULL);
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| 101 |     pthread_mutex_init(&consumer_cnt_lock, NULL);
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| 102 |         // parallelism
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| 103 |     set_seed( 1003 );
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| 104 | 
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| 105 |         processor p[5];
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| 106 |     {
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| 107 |         // create/join and mutex/condition test
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| 108 |         //sout | "create/join and mutex/condition test";
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| 109 |         for ( int i = 0; i < NoOfCons; i += 1 ) {                       // create consumers
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| 110 |             if ( pthread_create( &cons[i], NULL, consumer, (void*)&buf ) != 0 ) {
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| 111 |                 sout | "create thread failure, errno:" | errno;
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| 112 |                 exit( EXIT_FAILURE );
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| 113 |             } // if
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| 114 |         } // for
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| 115 |         for ( int i = 0; i < NoOfProds; i += 1 ) {                      //      create producers
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| 116 |             if ( pthread_create( &prods[i], NULL, producer, (void*)&buf ) != 0 ) {
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| 117 |                 sout | "create thread failure";
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| 118 |                 exit( EXIT_FAILURE );
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| 119 |             } // if
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| 120 |         } // for
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| 121 | 
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| 122 |         void *result;
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| 123 |         for ( int i = 0; i < NoOfProds; i += 1 ) {                      // wait for producers to end
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| 124 |             if ( pthread_join( prods[i], &result ) != 0 ) {
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| 125 |                 sout | " producers join thread failure";
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| 126 |                 exit( EXIT_FAILURE );
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| 127 |             } // if
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| 128 |             if ( (uint64_t)result != 0 ) {
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| 129 |                 sout | "producers" | prods[i] |" bad return value " | result;
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| 130 |                 exit( EXIT_FAILURE );
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| 131 |             } // if
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| 132 |             //sout | "join prods[" | i | "]:" | prods[i] | " result:" | result;
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| 133 |         } // for
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| 134 | 
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| 135 |         for ( int i = 0; i < NoOfCons; i += 1 ) {                       // terminate each consumer
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| 136 |             insert(buf, -1 );
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| 137 |         } // for
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| 138 | 
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| 139 |         for ( int i = 0; i < NoOfCons; i += 1 ) {                       // wait for consumer to end
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| 140 |             if ( pthread_join( cons[i], &result ) != 0 ) {
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| 141 |                 sout| "consumers join thread failure" ;
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| 142 |                 exit( EXIT_FAILURE );
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| 143 |             } // if
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| 144 |             if ( (uint64_t)result != 0 ) {
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| 145 |                 sout| "consumers bad return value" | result;
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| 146 |                 exit( EXIT_FAILURE );
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| 147 |             } // if
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| 148 |         } // for
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| 149 |         sout | "producer total value is " | producer_val_total;
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| 150 |         sout | "consumer total value is " | consumer_val_total;
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| 151 |     }
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| 152 | 
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| 153 |         
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| 154 | 
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| 155 |         
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| 156 | }
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