| 1 | #include <stdio.h> | 
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| 2 | #include "locks.hfa" | 
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| 3 | #include <stdlib.hfa> | 
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| 4 | #include <thread.hfa> | 
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| 5 | #include <containers/array.hfa> | 
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| 6 |  | 
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| 7 | static unsigned int taskCount = 4; | 
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| 8 | static unsigned int threadCount = 2; | 
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| 9 | static unsigned int lockCount = 1; | 
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| 10 | static unsigned int total_times = 320000; | 
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| 11 | static unsigned int num_times; | 
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| 12 | static const int workBufferSize = 16; | 
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| 13 | static unsigned int work_unlocked = 10000; | 
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| 14 | static unsigned int work_locked = 10000; | 
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| 15 |  | 
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| 16 | // taken from martin's thread_test | 
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| 17 | static inline void dowork(volatile int* buffer, unsigned int steps) { | 
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| 18 | int value = 0; | 
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| 19 | for (unsigned int i = 0; i < steps; i += 1) { | 
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| 20 | // a little more work than just a single memory access helps with stability | 
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| 21 | value += (buffer[i % workBufferSize] * 17) / 23 + 55; | 
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| 22 | } | 
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| 23 | buffer[0] += value; | 
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| 24 | } | 
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| 25 |  | 
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| 26 | thread worker { | 
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| 27 | exp_backoff_then_block_lock * locks; | 
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| 28 | bool improved; | 
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| 29 | }; | 
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| 30 |  | 
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| 31 | void ?{}( worker & w, exp_backoff_then_block_lock * locks, bool improved ) { | 
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| 32 | w.locks = locks; | 
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| 33 | w.improved = improved; | 
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| 34 | } | 
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| 35 |  | 
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| 36 |  | 
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| 37 | void main( worker & this ) with(this) { | 
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| 38 | int buffer[workBufferSize]; | 
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| 39 | for (int i = 0; i < workBufferSize; i += 1) buffer[i] = rand() % 1024; | 
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| 40 | unsigned int lck = rand() % lockCount; | 
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| 41 | exp_backoff_then_block_lock * curr_lock = &locks[lck]; | 
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| 42 | for (unsigned int i = 0; i < num_times; i++) { | 
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| 43 | dowork(buffer, work_unlocked); | 
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| 44 | if (improved) lock_improved(*curr_lock); | 
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| 45 | else lock(*curr_lock); | 
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| 46 | dowork(buffer, work_locked); | 
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| 47 | unlock(*curr_lock); | 
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| 48 | lck = rand() % lockCount; | 
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| 49 | curr_lock = &locks[lck]; | 
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| 50 | } | 
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| 51 | } | 
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| 52 |  | 
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| 53 | int doOne = 0; | 
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| 54 | int main(int argc, char* argv[]) { | 
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| 55 | switch (argc) { | 
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| 56 | case 8: | 
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| 57 | doOne = atoi(argv[7]); | 
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| 58 | case 7: | 
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| 59 | work_unlocked = atoi(argv[6]); | 
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| 60 | case 6: | 
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| 61 | work_locked = atoi(argv[5]); | 
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| 62 | case 5: | 
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| 63 | total_times = atoi(argv[4]); | 
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| 64 | case 4: | 
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| 65 | lockCount = atoi(argv[3]); | 
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| 66 | case 3: | 
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| 67 | threadCount = atoi(argv[2]); | 
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| 68 | case 2: | 
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| 69 | taskCount = atoi(argv[1]); | 
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| 70 | case 1: | 
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| 71 | break; | 
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| 72 | default: | 
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| 73 | break; | 
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| 74 | } | 
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| 75 | processor p[threadCount]; | 
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| 76 | exp_backoff_then_block_lock locks[lockCount]; | 
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| 77 | worker * worker_arr[taskCount]; | 
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| 78 | num_times = total_times  / taskCount; | 
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| 79 | //printf("%d\n", doOne); | 
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| 80 | // | 
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| 81 | //clock_t begin = clock(); | 
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| 82 | if (doOne == 1) { | 
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| 83 | printf("Start Test: martin lock simple %d\n", num_times); | 
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| 84 | for (unsigned int i = 0; i < taskCount; i++) { | 
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| 85 | worker_arr[i] = new( locks, false ); | 
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| 86 | } | 
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| 87 | for (unsigned int i = 0; i < taskCount; i++) { | 
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| 88 | delete( worker_arr[i] ); | 
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| 89 | } | 
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| 90 | } | 
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| 91 | //clock_t end = clock(); | 
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| 92 | //double time_spent = (double)(end - begin) / CLOCKS_PER_SEC; | 
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| 93 | //printf("norm: %f\n", time_spent); | 
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| 94 |  | 
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| 95 | //printf("Start Test: martin lock improved\n"); | 
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| 96 | //begin = clock(); | 
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| 97 | if (doOne == 2) { | 
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| 98 | for (unsigned int i = 0; i < taskCount; i++) { | 
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| 99 | worker_arr[i] = new( locks, true ); | 
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| 100 | } | 
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| 101 | for (unsigned int i = 0; i < taskCount; i++) { | 
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| 102 | delete( worker_arr[i] ); | 
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| 103 | } | 
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| 104 | } | 
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| 105 | //end = clock(); | 
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| 106 | //time_spent = (double)(end - begin) / CLOCKS_PER_SEC; | 
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| 107 | //printf("improved: %f\n", time_spent); | 
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| 108 | } | 
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