| 1 | #include <fstream.hfa> | 
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| 2 | #include <kernel.hfa> | 
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| 3 | #include <monitor.hfa> | 
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| 4 | #include <thread.hfa> | 
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| 5 | #include <time.hfa> | 
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| 6 |  | 
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| 7 | #include "long_tests.hfa" | 
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| 8 |  | 
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| 9 | #ifndef PREEMPTION_RATE | 
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| 10 | #define PREEMPTION_RATE 10`ms | 
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| 11 | #endif | 
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| 12 |  | 
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| 13 | Duration default_preemption() { | 
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| 14 | return PREEMPTION_RATE; | 
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| 15 | } | 
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| 16 |  | 
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| 17 | #ifdef TEST_LONG | 
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| 18 | static const unsigned long N = 300_000ul; | 
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| 19 | #else | 
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| 20 | static const unsigned long N = 10_000ul; | 
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| 21 | #endif | 
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| 22 |  | 
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| 23 | // This tests checks what happens when someone barges in the midle of the release | 
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| 24 | // of a bulk of monitors. | 
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| 25 |  | 
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| 26 | enum state_t { WAIT, SIGNAL, BARGE }; | 
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| 27 |  | 
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| 28 | monitor global_t {}; | 
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| 29 |  | 
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| 30 | monitor global_data_t; | 
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| 31 | void ?{}( global_data_t & this ); | 
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| 32 | void ^?{} ( global_data_t & mutex this ); | 
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| 33 |  | 
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| 34 | monitor global_data_t { | 
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| 35 | int counter; | 
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| 36 | state_t state; | 
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| 37 | }; | 
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| 38 |  | 
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| 39 | // Use a global struct because the order needs to match with Signaller thread | 
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| 40 | struct { | 
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| 41 | global_t mut; | 
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| 42 | global_data_t data; | 
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| 43 | } globals; | 
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| 44 |  | 
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| 45 | condition cond; | 
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| 46 |  | 
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| 47 | volatile bool all_done; | 
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| 48 |  | 
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| 49 | void ?{}( global_data_t & this ) { | 
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| 50 | this.counter = 0; | 
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| 51 | this.state = BARGE; | 
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| 52 | } | 
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| 53 |  | 
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| 54 | void ^?{} ( global_data_t & mutex this ) {} | 
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| 55 |  | 
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| 56 | //------------------------------------------------------------------------------ | 
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| 57 | // Barging logic | 
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| 58 | void barge( global_data_t & mutex d ) { | 
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| 59 | d.state = BARGE; | 
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| 60 | } | 
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| 61 |  | 
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| 62 | thread Barger {}; | 
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| 63 | void ?{}( Barger & this ) { | 
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| 64 | ((thread&)this){ "Barger Thread" }; | 
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| 65 | } | 
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| 66 |  | 
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| 67 | void main( Barger & this ) { | 
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| 68 | while( !all_done ) { | 
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| 69 | barge( globals.data ); | 
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| 70 | yield(); | 
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| 71 | } | 
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| 72 | } | 
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| 73 |  | 
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| 74 | //------------------------------------------------------------------------------ | 
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| 75 | // Waiting logic | 
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| 76 | bool wait( global_t & mutex m, global_data_t & mutex d ) { | 
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| 77 | wait( cond ); | 
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| 78 | if( d.state != SIGNAL ) { | 
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| 79 | abort | "ERROR barging!"; | 
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| 80 | } | 
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| 81 |  | 
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| 82 | #if !defined(TEST_FOREVER) | 
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| 83 | d.counter++; | 
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| 84 | if( (d.counter % 1000) == 0 ) sout | d.counter; | 
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| 85 | #endif | 
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| 86 |  | 
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| 87 | return TEST(d.counter < N); | 
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| 88 | } | 
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| 89 |  | 
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| 90 | thread Waiter {}; | 
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| 91 | void ?{}( Waiter & this ) { | 
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| 92 | ((thread&)this){ "Waiter Thread" }; | 
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| 93 | } | 
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| 94 |  | 
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| 95 | void main( Waiter & this ) { | 
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| 96 | while( wait( globals.mut, globals.data ) ) { KICK_WATCHDOG; yield(); } | 
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| 97 | } | 
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| 98 |  | 
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| 99 |  | 
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| 100 | //------------------------------------------------------------------------------ | 
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| 101 | // Signalling logic | 
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| 102 | void signal( condition & cond, global_t & mutex a, global_data_t & mutex b ) { | 
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| 103 | b.state = SIGNAL; | 
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| 104 | signal( cond ); | 
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| 105 | } | 
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| 106 |  | 
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| 107 | void logic( global_t & mutex a ) { | 
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| 108 | signal( cond, a, globals.data ); | 
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| 109 |  | 
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| 110 | yield( random( 10 ) ); | 
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| 111 |  | 
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| 112 | //This is technically a mutual exclusion violation but the mutex monitor protects us | 
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| 113 | bool running = TEST(globals.data.counter < N) && globals.data.counter > 0; | 
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| 114 | if( globals.data.state != SIGNAL && running ) { | 
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| 115 | abort | "ERROR Eager signal" | globals.data.state; | 
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| 116 | } | 
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| 117 | } | 
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| 118 |  | 
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| 119 | thread Signaller {}; | 
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| 120 | void ?{}( Signaller & this ) { | 
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| 121 | ((thread&)this){ "Signaller Thread" }; | 
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| 122 | } | 
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| 123 |  | 
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| 124 | void main( Signaller & this ) { | 
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| 125 | while( !all_done ) { | 
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| 126 | logic( globals.mut ); | 
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| 127 | yield(); | 
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| 128 | } | 
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| 129 | } | 
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| 130 |  | 
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| 131 | //------------------------------------------------------------------------------ | 
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| 132 | // Main loop | 
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| 133 | int main(int argc, char* argv[]) { | 
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| 134 | srandom( time( NULL ) ); | 
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| 135 | all_done = false; | 
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| 136 | processor p; | 
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| 137 | { | 
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| 138 | Signaller s; | 
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| 139 | Barger b[17]; | 
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| 140 | { | 
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| 141 | Waiter w[4]; | 
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| 142 | } | 
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| 143 | sout | "All waiter done"; | 
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| 144 | all_done = true; | 
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| 145 | } | 
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| 146 | } | 
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