[b2a37b0] | 1 | #include <algorithm>
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| 2 | #include <array>
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| 3 | #include <chrono>
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| 4 | #include <iostream>
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| 5 | #include <locale>
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| 6 | #include <memory>
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| 7 | #include <string>
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| 8 | #include <vector>
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| 9 |
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| 10 | #include <cassert>
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| 11 |
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| 12 | struct __attribute__((aligned(64))) element {
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| 13 | size_t value;
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| 14 | };
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| 15 |
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| 16 | using block = std::array<element, 100>;
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| 17 |
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| 18 | block * create() {
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| 19 | block * b = new block();
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| 20 | for(auto & e : *b) {
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| 21 | e.value = rand();
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| 22 | }
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| 23 | b->back().value = b->size();
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| 24 |
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| 25 | return b;
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| 26 | }
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| 27 |
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| 28 | static inline size_t find(const block & b) {
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| 29 | size_t r = 0;
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| 30 | for(; r < b.size(); r++) {
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| 31 | if(__builtin_expect(b[r].value == b.size(), false)) break;
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| 32 | }
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| 33 |
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| 34 | return r;
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| 35 | }
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| 36 |
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| 37 | void usage(char * argv[]) {
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| 38 | std::cerr << argv[0] << ": [DURATION (FLOAT:SEC)] [NBLOCKS]" << std::endl;;
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| 39 | std::exit(1);
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| 40 | }
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| 41 |
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| 42 | int main(int argc, char * argv[]) {
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| 43 | size_t nblocks = 1000;
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| 44 | double duration = 5;
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| 45 |
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| 46 | std::cout.imbue(std::locale(""));
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| 47 |
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| 48 | switch (argc)
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| 49 | {
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| 50 | case 3:
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| 51 | nblocks = std::stoul(argv[2]);
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| 52 | [[fallthrough]];
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| 53 | case 2:
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| 54 | duration = std::stod(argv[1]);
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| 55 | if( duration <= 0.0 ) {
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| 56 | std::cerr << "Duration must be positive, was " << argv[1] << "(" << duration << ")" << std::endl;
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| 57 | usage(argv);
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| 58 | }
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| 59 | [[fallthrough]];
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| 60 | case 1:
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| 61 | break;
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| 62 | default:
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| 63 | usage(argv);
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| 64 | break;
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| 65 | }
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| 66 |
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| 67 | std::vector<std::unique_ptr<block>> blocks;
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| 68 | for(size_t i = 0; i < nblocks; i++) {
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| 69 | blocks.emplace_back( create() );
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| 70 | }
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| 71 | std::random_shuffle(blocks.begin(), blocks.end());
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| 72 |
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| 73 | size_t CRC = 0;
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| 74 | size_t count = 0;
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| 75 |
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| 76 | using clock = std::chrono::high_resolution_clock;
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| 77 | auto before = clock::now();
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| 78 |
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| 79 | while(true) {
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| 80 | for(const auto & b : blocks) {
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| 81 | CRC += find(*b);
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| 82 | count++;
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| 83 | }
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| 84 | auto now = clock::now();
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| 85 | std::chrono::duration<double> durr = now - before;
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| 86 | if( durr.count() > duration ) {
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| 87 | break;
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| 88 | }
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| 89 | }
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| 90 |
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| 91 | auto after = clock::now();
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| 92 | std::chrono::duration<double> durr = after - before;
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| 93 | duration = durr.count();
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| 94 |
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| 95 | using std::chrono::duration_cast;
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| 96 | using std::chrono::nanoseconds;
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| 97 |
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| 98 | size_t ops_sec = size_t(double(count) / duration);
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| 99 | auto dur_nano = duration_cast<nanoseconds>(std::chrono::duration<double>(1.0)).count();
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| 100 |
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| 101 | std::cout << "CRC : " << CRC << "\n";
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| 102 | std::cout << "Duration : " << duration << "s\n";
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| 103 | std::cout << "Total ops : " << count << "\n";
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| 104 | std::cout << "Ops/sec : " << ops_sec << "\n";
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| 105 | std::cout << "ns/Op : " << ( dur_nano / ops_sec )<< "\n";
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| 106 | }
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