| [1016] | 1 | // **********************************************************************
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 | 2 | //
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 | 3 | // Copyright (c) 2000
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 | 4 | // Object Oriented Concepts, Inc.
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 | 5 | // Billerica, MA, USA
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 | 6 | //
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 | 7 | // All Rights Reserved
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 | 8 | //
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 | 9 | // **********************************************************************
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 | 10 | 
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 | 11 | #include <JTC/JTC.h>
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 | 12 | 
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 | 13 | #include <stdlib.h>
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 | 14 | 
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 | 15 | #ifdef HAVE_STD_IOSTREAM
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 | 16 | using namespace std;
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 | 17 | #endif
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 | 18 | 
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 | 19 | //
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 | 20 | // This example is a port of the CubbyHole example in the java tutorial.
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 | 21 | // See: http://java.sun.com/tutorial.
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 | 22 | //
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 | 23 | // This class acts as a cubby hole for producers and consumers.
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 | 24 | // A producer may not put another item in the cubby until a consumer
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 | 25 | // has retrieved the item.  A consumer may not retrieve an item
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 | 26 | // until a producer has placed a new item in the hole.
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 | 27 | //
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 | 28 | class CubbyHole
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 | 29 | {
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 | 30 |     bool available_; // Item available?
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 | 31 |     int value_; // If so, what is the value of the item?
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 | 32 |     int ref_; // Number of times the cubby hole is referenced.
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 | 33 |     JTCMonitor mon_; // Associated monitor.
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 | 34 | 
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 | 35 | public:
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 | 36 | 
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 | 37 |     //
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 | 38 |     // Constructor.
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 | 39 |     //
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 | 40 |     CubbyHole()
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 | 41 |         : available_(false), ref_(0)
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 | 42 |     {
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 | 43 |     }
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 | 44 | 
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 | 45 |     //
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 | 46 |     // Increment reference count.
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 | 47 |     //
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 | 48 |     void reference()
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 | 49 |     {
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 | 50 |         ++ref_;
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 | 51 |     }
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 | 52 | 
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 | 53 |     //
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 | 54 |     // Decrement reference count.  Delete the cubby if the reference
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 | 55 |     // count drops to zero.
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 | 56 |     //
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 | 57 |     void dereference()
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 | 58 |     {
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 | 59 |         if(--ref_ == 0)
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 | 60 |         {
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 | 61 |             delete this;
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 | 62 |         }
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 | 63 |     }
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 | 64 | 
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 | 65 |     //
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 | 66 |     // Place a new item in the hole.  If the hole is currently
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 | 67 |     // occupied, then block until the hole is empty.
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 | 68 |     //
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 | 69 |     void put(int v, int client)
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 | 70 |     {
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 | 71 |         JTCSynchronized sync(mon_);
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 | 72 | 
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 | 73 |         //
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 | 74 |         // Loop while the hole is filled.
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 | 75 |         //
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 | 76 |         while(available_)
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 | 77 |         {
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 | 78 |             //
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 | 79 |             // Wait to be notified.  The monitor is notified when
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 | 80 |             // the hole is filled, or emptied.
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 | 81 |             //
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 | 82 |             try
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 | 83 |             {
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 | 84 |                 mon_.wait();
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 | 85 |             }
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 | 86 |             catch(const JTCInterruptedException&)
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 | 87 |             {
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 | 88 |             }
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 | 89 |         }
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 | 90 |         //
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 | 91 |         // The hole is now filled, with associated value.
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 | 92 |         // Wake any waiting consumers.
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 | 93 |         //
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 | 94 |         available_ = true;
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 | 95 |         value_ = v;
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 | 96 |         mon_.notifyAll();
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 | 97 | 
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 | 98 |         //
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 | 99 |         // We put this display in here to avoid problems with
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 | 100 |         // corrupting the output stream.
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 | 101 |         //
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 | 102 |         cout << "Producer #" << client << " put: " << value_ << endl;
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 | 103 |     }
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 | 104 | 
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 | 105 |     //
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 | 106 |     // Retrieve an element store in the cubby hole.  If no element
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 | 107 |     // is available for retrieval then wait.
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 | 108 |     //
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 | 109 |     int get(int client)
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 | 110 |     {
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 | 111 |         JTCSynchronized sync(mon_);
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 | 112 |         //
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 | 113 |         // While no element is available for retrieval wait.
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 | 114 |         //
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 | 115 |         while(!available_)
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 | 116 |         {
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 | 117 |             try
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 | 118 |             {
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 | 119 |                 mon_.wait();
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 | 120 |             }
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 | 121 |             catch(const JTCInterruptedException&)
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 | 122 |             {
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 | 123 |             }
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 | 124 |         }
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 | 125 |         //
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 | 126 |         // Retrieve the element.  Mark the state as "no element available".
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 | 127 |         // Notify any waiting producers.
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 | 128 |         //
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 | 129 |         available_ = false;
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 | 130 |         mon_.notifyAll();
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 | 131 |         //
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 | 132 |         // Display the value while the monitor is still locked, since
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 | 133 |         // this will prevent corruption of the output stream.
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 | 134 |         //
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 | 135 |         cout << "Consumer #" << client << " get: " << value_ << endl;
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 | 136 |         
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 | 137 |         return value_;
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 | 138 |     }
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 | 139 | };
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 | 140 | 
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 | 141 | //
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 | 142 | // This class represents a consumer thread.  This class is responsible
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 | 143 | // for retrieving elements from the cubby hole.
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 | 144 | //
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 | 145 | class Consumer : public JTCThread
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 | 146 | {
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 | 147 |     CubbyHole* cubby_; // Pointer to the cubby hole.
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 | 148 |     int number_; // The client number, for debugging.
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 | 149 | public:
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 | 150 |     //
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 | 151 |     // Constructor.
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 | 152 |     //
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 | 153 |     Consumer(CubbyHole* c, int which)
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 | 154 |         : JTCThread("consumer"), cubby_(c), number_(which)
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 | 155 |     {
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 | 156 |         cubby_ -> reference();
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 | 157 |     }
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 | 158 | 
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 | 159 |     //
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 | 160 |     // Destructor.
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 | 161 |     //
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 | 162 |     virtual ~Consumer()
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 | 163 |     {
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 | 164 |         cubby_ -> dereference();
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 | 165 |     }
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 | 166 | 
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 | 167 |     //
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 | 168 |     // This method is called when start is invoked on the thread.
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 | 169 |     //
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 | 170 |     virtual void run()
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 | 171 |     {
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 | 172 |         //
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 | 173 |         // Retrieve 10 numbers from the cubby hole.
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 | 174 |         //
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 | 175 |         for(int i = 0; i < 10; ++i)
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 | 176 |         {
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 | 177 |             cubby_ -> get(number_);
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 | 178 |         }
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 | 179 |     }
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 | 180 | };
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 | 181 | 
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 | 182 | //
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 | 183 | // This class represents the producer thread.  This thread places objects
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 | 184 | // in the cubbyhole for a consumer to retrieve.
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 | 185 | //
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 | 186 | class Producer : public JTCThread
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 | 187 | {
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 | 188 |     CubbyHole* cubby_; // The cubby hole object.
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 | 189 |     int number_; // The client number, for debugging.
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 | 190 | 
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 | 191 | public:
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 | 192 |     //
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 | 193 |     // Constructor.
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 | 194 |     //
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 | 195 |     Producer(CubbyHole* c, int which)
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 | 196 |         : JTCThread("producer"), cubby_(c), number_(which)
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 | 197 |     {
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 | 198 |         cubby_ -> reference();
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 | 199 |     }
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 | 200 | 
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 | 201 |     //
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 | 202 |     // Destructor.
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 | 203 |     //
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 | 204 |     virtual ~Producer()
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 | 205 |     {
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 | 206 |         cubby_ -> dereference();
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 | 207 |     }
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 | 208 | 
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 | 209 |     //
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 | 210 |     // This method represents the main loop for this thread.
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 | 211 |     // It places 10 numbers in the cubby hole.
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 | 212 |     //
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 | 213 |     virtual void run()
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 | 214 |     {
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 | 215 |         for(int i = 0; i < 10; ++i)
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 | 216 |         {
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 | 217 |             cubby_ -> put(i, number_);
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 | 218 |         }
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 | 219 |     }
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 | 220 | };
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 | 221 | 
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 | 222 | int
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 | 223 | main(int argc, char** argv)
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 | 224 | {
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 | 225 |     try
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 | 226 |     {
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 | 227 |         //
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 | 228 |         // A user of the JTC library must create an instance of this
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 | 229 |         // class to initialize the library.
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 | 230 |         //
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 | 231 |         JTCInitialize bootJTC(argc, argv);
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 | 232 | 
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 | 233 |         //
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 | 234 |         // Create an instance of the CubbyHole class.
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 | 235 |         //
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 | 236 |         CubbyHole* c = new CubbyHole;
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 | 237 | 
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 | 238 |         //
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 | 239 |         // Create the producer and the consumer.
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 | 240 |         //
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 | 241 |         JTCThreadHandle producer = new Producer(c, 0);
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 | 242 |         JTCThreadHandle consumer = new Consumer(c, 1);
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 | 243 | 
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 | 244 |         //
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 | 245 |         // Start the threads.
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 | 246 |         //
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 | 247 |         producer -> start();
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 | 248 | 
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 | 249 |         consumer -> start();
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 | 250 |         //
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 | 251 |         // The instance of the JTCInitialize class will ensure that
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 | 252 |         // this block is not exited until all threads terminate.
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 | 253 |         //
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 | 254 |     }
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 | 255 |     catch(const JTCException& e)
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 | 256 |     {
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 | 257 |         cerr << "JTCException: " << e.getMessage() << endl;
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 | 258 |         return EXIT_FAILURE;
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 | 259 |     }
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 | 260 | 
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 | 261 |     return EXIT_SUCCESS;
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 | 262 | }
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