| 1 | #include <locks.hfa>
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| 2 | #include <fstream.hfa>
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| 3 | #include <stdio.h>
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| 4 | #include <string.h>
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| 5 | #include <channel.hfa>
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| 6 | #include <thread.hfa>
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| 7 | #include <time.hfa>
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| 8 | #include <stats.hfa>
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| 9 |
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| 10 | // user defines this
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| 11 | // #define BIG 1
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| 12 |
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| 13 | owner_lock o;
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| 14 |
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| 15 | unsigned long long total_operations = 0;
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| 16 |
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| 17 | struct bigObject {
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| 18 | size_t a;
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| 19 | size_t b;
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| 20 | size_t c;
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| 21 | size_t d;
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| 22 | size_t e;
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| 23 | size_t f;
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| 24 | size_t g;
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| 25 | size_t h;
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| 26 | };
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| 27 |
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| 28 | void ?{}( bigObject & this, size_t i ) with(this) { a = i; b = i; c = i; d = i; e = i; f = i; g = i; h = i; }
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| 29 | void ?{}( bigObject & this ) { this{0}; }
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| 30 |
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| 31 | #ifdef BIG
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| 32 | typedef channel( bigObject ) Channel;
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| 33 | #else
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| 34 | typedef channel( size_t ) Channel;
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| 35 | #endif
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| 36 |
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| 37 | Channel * channels;
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| 38 |
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| 39 | volatile bool cons_done = false, prod_done = false;
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| 40 | volatile int cons_done_count = 0;
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| 41 | size_t cons_check = 0, prod_check = 0;
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| 42 |
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| 43 | thread Consumer {
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| 44 | size_t i;
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| 45 | };
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| 46 | static inline void ?{}( Consumer & c, size_t i, cluster & clu ) {
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| 47 | ((thread &)c){ clu };
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| 48 | c.i = i;
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| 49 | }
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| 50 | void main(Consumer & this) {
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| 51 | unsigned long long runs = 0;
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| 52 | size_t my_check = 0;
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| 53 | for ( ;; ) {
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| 54 | if ( cons_done ) break;
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| 55 | #ifdef BIG
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| 56 | bigObject j = remove( channels[ this.i ] );
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| 57 | my_check = my_check ^ (j.a + j.b + j.c + j.d + j.d + j.e + j.f + j.g + j.h);
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| 58 | #else
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| 59 | size_t j = remove( channels[ this.i ] );
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| 60 | my_check = my_check ^ j;
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| 61 | #endif
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| 62 |
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| 63 | if ( !prod_done ) runs++;
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| 64 | }
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| 65 | lock(o);
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| 66 | total_operations += runs;
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| 67 | cons_done_count++;
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| 68 | cons_check = cons_check ^ my_check;
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| 69 | // sout | "C: " | runs;
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| 70 | unlock(o);
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| 71 | }
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| 72 |
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| 73 | thread Producer {
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| 74 | size_t i;
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| 75 | };
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| 76 | static inline void ?{}( Producer & p, size_t i, cluster & clu ) {
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| 77 | ((thread &)p){ clu };
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| 78 | p.i = i;
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| 79 | }
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| 80 | void main(Producer & this) {
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| 81 | unsigned long long runs = 0;
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| 82 | size_t my_check = 0;
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| 83 | for ( ;; ) {
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| 84 | if ( prod_done ) break;
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| 85 | #ifdef BIG
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| 86 | bigObject j{(size_t)runs};
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| 87 | insert( channels[ this.i ], j );
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| 88 | my_check = my_check ^ (j.a + j.b + j.c + j.d + j.d + j.e + j.f + j.g + j.h);
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| 89 | #else
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| 90 | insert( channels[ this.i ], (size_t)runs );
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| 91 | my_check = my_check ^ ((size_t)runs);
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| 92 | #endif
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| 93 | runs++;
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| 94 | }
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| 95 | lock(o);
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| 96 | total_operations += runs;
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| 97 | prod_check = prod_check ^ my_check;
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| 98 | // sout | "P: " | runs;
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| 99 | unlock(o);
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| 100 | }
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| 101 |
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| 102 |
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| 103 | int test( size_t Processors, size_t Channels, size_t Producers, size_t Consumers, size_t ChannelSize ) {
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| 104 | size_t Clusters = 1;
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| 105 | // create a cluster
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| 106 | cluster clus[Clusters];
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| 107 | processor * proc[Processors];
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| 108 | for ( i; Processors ) {
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| 109 | (*(proc[i] = alloc())){clus[i % Clusters]};
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| 110 | }
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| 111 |
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| 112 | channels = anew( Channels );
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| 113 |
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| 114 | // sout | "Processors: " | Processors | " ProdsPerChan: " | Producers | " ConsPerChan: " | Consumers | "Channels: " | Channels | " Channel Size: " | ChannelSize;
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| 115 |
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| 116 | for ( i; Channels ) {
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| 117 | channels[i]{ ChannelSize };
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| 118 | }
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| 119 |
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| 120 | sout | "start";
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| 121 | Consumer * c[Consumers * Channels];
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| 122 | Producer * p[Producers * Channels];
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| 123 |
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| 124 | for ( i; Consumers * Channels ) {
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| 125 | (*(c[i] = alloc())){ i % Channels, clus[i % Clusters] };
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| 126 | }
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| 127 |
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| 128 | for ( i; Producers * Channels ) {
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| 129 | (*(p[i] = alloc())){ i % Channels, clus[i % Clusters] };
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| 130 | }
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| 131 |
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| 132 | sleep(1`s);
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| 133 | prod_done = true;
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| 134 |
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| 135 | for ( i; Producers * Channels ) {
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| 136 | delete(p[i]);
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| 137 | }
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| 138 |
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| 139 | sout | "prods";
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| 140 | cons_done = true;
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| 141 | while( cons_done_count != Consumers * Channels ) {
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| 142 | for ( i; Channels ) {
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| 143 | if ( has_waiting_consumers( channels[i] ) ){
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| 144 | #ifdef BIG
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| 145 | bigObject b{0};
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| 146 | insert( channels[i], b );
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| 147 | #else
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| 148 | insert( channels[i], 0 );
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| 149 | #endif
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| 150 | }
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| 151 | }
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| 152 |
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| 153 | }
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| 154 | // for ( i; Channels ) {
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| 155 | // // sout | get_count( channels[i] );
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| 156 | // if ( get_count( channels[i] ) < Consumers ){
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| 157 | // #ifdef BIG
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| 158 | // bigObject b{0};
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| 159 | // #endif
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| 160 | // for ( j; Consumers ) {
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| 161 | // #ifdef BIG
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| 162 | // insert( channels[i], b );
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| 163 | // #else
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| 164 | // insert( channels[i], 0 );
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| 165 | // #endif
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| 166 | // }
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| 167 | // }
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| 168 | // }
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| 169 | sout | "cons";
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| 170 | for ( i; Consumers * Channels ) {
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| 171 | delete(c[i]);
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| 172 | }
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| 173 |
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| 174 | sout | "flush";
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| 175 | for ( i; Channels ) {
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| 176 | for ( ;; ) {
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| 177 | if ( get_count( channels[i] ) > 0 ) {
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| 178 | #ifdef BIG
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| 179 | bigObject j = remove( channels[ i ] );
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| 180 | cons_check = cons_check ^ (j.a + j.b + j.c + j.d + j.d + j.e + j.f + j.g + j.h);
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| 181 | #else
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| 182 | size_t j = remove( channels[ i ] );
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| 183 | cons_check = cons_check ^ j;
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| 184 | #endif
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| 185 | } else break;
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| 186 | }
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| 187 | }
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| 188 |
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| 189 | adelete( channels );
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| 190 | // sout | "total channel ops: " | total_operations;
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| 191 | if ( cons_check != prod_check )
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| 192 | sout | "CHECKSUM MISMATCH !!!";
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| 193 | // print_stats_now( *active_cluster(), CFA_STATS_READY_Q);
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| 194 |
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| 195 | for ( i; Processors ) {
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| 196 | delete(proc[i]);
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| 197 | }
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| 198 | sout | "done";
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| 199 | return 0;
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| 200 | }
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