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@@ -58,5 +58,69 @@ BENCHMARK_CAPTURE(BM_Sort, sorted_descending_strings,
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BENCHMARK_CAPTURE(BM_Sort, single_element_strings,
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getDuplicateStringInputs)->Arg(TestNumInputs);
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+template <typename GenInputs, typename Alg>
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+void do_binary_search_benchmark(benchmark::State& st, GenInputs gen, Alg alg)
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+{
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+ using ValueType = typename decltype(gen(0))::value_type;
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+ auto in = gen(st.range(0));
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+ std::sort(in.begin(), in.end());
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+
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+ const auto every_10_percentile = [&]() -> std::vector<ValueType*> {
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+ size_t step = in.size() / 10;
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+
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+ if (step == 0) {
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+ st.SkipWithError("Input doesn't contain enough elements");
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+ return {};
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+ }
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+
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+ std::vector<ValueType*> res;
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+ for (size_t i = 0; i < in.size(); i += step)
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+ res.push_back(&in[i]);
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+
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+ return res;
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+ }();
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+
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+ for (auto _ : st)
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+ {
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+ for (auto* test : every_10_percentile)
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+ benchmark::DoNotOptimize(alg(in.begin(), in.end(), *test));
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+ }
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+}
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+
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+template <typename GenInputs>
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+void BM_LowerBound(benchmark::State& st, GenInputs gen)
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+{
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+ do_binary_search_benchmark(st, gen, [](auto f, auto l, const auto& v) {
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+ return std::lower_bound(f, l, v);
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+ });
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+}
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+
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+BENCHMARK_CAPTURE(BM_LowerBound, random_int32, getRandomIntegerInputs<int32_t>)
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+ ->Arg(TestNumInputs) // Small int32_t vector
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+ ->Arg(TestNumInputs * TestNumInputs); // Big int32_t vector
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+
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+BENCHMARK_CAPTURE(BM_LowerBound, random_int64, getRandomIntegerInputs<int64_t>)
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+ ->Arg(TestNumInputs); // Small int64_t vector. Should also represent pointers.
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+
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+BENCHMARK_CAPTURE(BM_LowerBound, random_strings, getRandomStringInputs)
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+ ->Arg(TestNumInputs); // Small string vector. What happens if the comparison is not very cheap.
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+
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+template <typename GenInputs>
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+void BM_EqualRange(benchmark::State& st, GenInputs gen)
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+{
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+ do_binary_search_benchmark(st, gen, [](auto f, auto l, const auto& v) {
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+ return std::equal_range(f, l, v);
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+ });
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+}
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+
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+BENCHMARK_CAPTURE(BM_EqualRange, random_int32, getRandomIntegerInputs<int32_t>)
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+ ->Arg(TestNumInputs) // Small int32_t vector
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+ ->Arg(TestNumInputs * TestNumInputs); // Big int32_t vector
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+
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+BENCHMARK_CAPTURE(BM_EqualRange, random_int64, getRandomIntegerInputs<int64_t>)
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+ ->Arg(TestNumInputs); // Small int64_t vector. Should also represent pointers.
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+
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+BENCHMARK_CAPTURE(BM_EqualRange, random_strings, getRandomStringInputs)
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+ ->Arg(TestNumInputs); // Small string vector. What happens if the comparison is not very cheap.
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BENCHMARK_MAIN();
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