
This commit does a pass of clang-format over files in libc++ that don't require major changes to conform to our style guide, or for which we're not overly concerned about conflicting with in-flight patches or hindering the git blame. This roughly covers: - benchmarks - range algorithms - concepts - type traits I did a manual verification of all the changes, and in particular I applied clang-format on/off annotations in a few places where the result was less readable after than before. This was not necessary in a lot of places, however I did find that clang-format had pretty bad taste when it comes to formatting concepts. Differential Revision: https://reviews.llvm.org/D153140
175 lines
4.8 KiB
C++
175 lines
4.8 KiB
C++
// -*- C++ -*-
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//===----------------------------------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#ifndef BENCHMARK_CONTAINER_BENCHMARKS_H
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#define BENCHMARK_CONTAINER_BENCHMARKS_H
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#include <cassert>
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#include "Utilities.h"
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#include "benchmark/benchmark.h"
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namespace ContainerBenchmarks {
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template <class Container>
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void BM_ConstructSize(benchmark::State& st, Container) {
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auto size = st.range(0);
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for (auto _ : st) {
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Container c(size);
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DoNotOptimizeData(c);
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}
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}
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template <class Container>
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void BM_CopyConstruct(benchmark::State& st, Container) {
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auto size = st.range(0);
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Container c(size);
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for (auto _ : st) {
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auto v = c;
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DoNotOptimizeData(v);
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}
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}
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template <class Container>
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void BM_Assignment(benchmark::State& st, Container) {
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auto size = st.range(0);
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Container c1;
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Container c2(size);
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for (auto _ : st) {
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c1 = c2;
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DoNotOptimizeData(c1);
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DoNotOptimizeData(c2);
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}
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}
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template <class Container>
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void BM_ConstructSizeValue(benchmark::State& st, Container, typename Container::value_type const& val) {
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const auto size = st.range(0);
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for (auto _ : st) {
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Container c(size, val);
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DoNotOptimizeData(c);
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}
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}
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template <class Container, class GenInputs>
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void BM_ConstructIterIter(benchmark::State& st, Container, GenInputs gen) {
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auto in = gen(st.range(0));
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const auto begin = in.begin();
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const auto end = in.end();
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benchmark::DoNotOptimize(&in);
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while (st.KeepRunning()) {
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Container c(begin, end);
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DoNotOptimizeData(c);
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}
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}
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template <class Container, class GenInputs>
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void BM_InsertValue(benchmark::State& st, Container c, GenInputs gen) {
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auto in = gen(st.range(0));
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const auto end = in.end();
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while (st.KeepRunning()) {
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c.clear();
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for (auto it = in.begin(); it != end; ++it) {
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benchmark::DoNotOptimize(&(*c.insert(*it).first));
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}
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benchmark::ClobberMemory();
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}
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}
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template <class Container, class GenInputs>
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void BM_InsertValueRehash(benchmark::State& st, Container c, GenInputs gen) {
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auto in = gen(st.range(0));
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const auto end = in.end();
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while (st.KeepRunning()) {
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c.clear();
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c.rehash(16);
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for (auto it = in.begin(); it != end; ++it) {
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benchmark::DoNotOptimize(&(*c.insert(*it).first));
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}
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benchmark::ClobberMemory();
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}
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}
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template <class Container, class GenInputs>
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void BM_InsertDuplicate(benchmark::State& st, Container c, GenInputs gen) {
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auto in = gen(st.range(0));
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const auto end = in.end();
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c.insert(in.begin(), in.end());
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benchmark::DoNotOptimize(&c);
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benchmark::DoNotOptimize(&in);
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while (st.KeepRunning()) {
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for (auto it = in.begin(); it != end; ++it) {
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benchmark::DoNotOptimize(&(*c.insert(*it).first));
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}
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benchmark::ClobberMemory();
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}
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}
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template <class Container, class GenInputs>
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void BM_EmplaceDuplicate(benchmark::State& st, Container c, GenInputs gen) {
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auto in = gen(st.range(0));
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const auto end = in.end();
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c.insert(in.begin(), in.end());
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benchmark::DoNotOptimize(&c);
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benchmark::DoNotOptimize(&in);
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while (st.KeepRunning()) {
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for (auto it = in.begin(); it != end; ++it) {
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benchmark::DoNotOptimize(&(*c.emplace(*it).first));
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}
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benchmark::ClobberMemory();
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}
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}
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template <class Container, class GenInputs>
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static void BM_Find(benchmark::State& st, Container c, GenInputs gen) {
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auto in = gen(st.range(0));
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c.insert(in.begin(), in.end());
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benchmark::DoNotOptimize(&(*c.begin()));
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const auto end = in.data() + in.size();
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while (st.KeepRunning()) {
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for (auto it = in.data(); it != end; ++it) {
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benchmark::DoNotOptimize(&(*c.find(*it)));
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}
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benchmark::ClobberMemory();
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}
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}
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template <class Container, class GenInputs>
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static void BM_FindRehash(benchmark::State& st, Container c, GenInputs gen) {
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c.rehash(8);
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auto in = gen(st.range(0));
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c.insert(in.begin(), in.end());
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benchmark::DoNotOptimize(&(*c.begin()));
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const auto end = in.data() + in.size();
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while (st.KeepRunning()) {
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for (auto it = in.data(); it != end; ++it) {
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benchmark::DoNotOptimize(&(*c.find(*it)));
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}
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benchmark::ClobberMemory();
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}
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}
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template <class Container, class GenInputs>
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static void BM_Rehash(benchmark::State& st, Container c, GenInputs gen) {
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auto in = gen(st.range(0));
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c.max_load_factor(3.0);
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c.insert(in.begin(), in.end());
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benchmark::DoNotOptimize(c);
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const auto bucket_count = c.bucket_count();
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while (st.KeepRunning()) {
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c.rehash(bucket_count + 1);
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c.rehash(bucket_count);
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benchmark::ClobberMemory();
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}
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}
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} // end namespace ContainerBenchmarks
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#endif // BENCHMARK_CONTAINER_BENCHMARKS_H
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