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| #include "absl/random/internal/pool_urbg.h" |
|
|
| #include <algorithm> |
| #include <bitset> |
| #include <cmath> |
| #include <cstdint> |
| #include <iterator> |
|
|
| #include "gtest/gtest.h" |
| #include "absl/meta/type_traits.h" |
| #include "absl/types/span.h" |
|
|
| using absl::random_internal::PoolURBG; |
| using absl::random_internal::RandenPool; |
|
|
| namespace { |
|
|
| |
| template <typename T> |
| using is_randen_pool = typename absl::disjunction< |
| std::is_same<T, RandenPool<uint8_t>>, |
| std::is_same<T, RandenPool<uint16_t>>, |
| std::is_same<T, RandenPool<uint32_t>>, |
| std::is_same<T, RandenPool<uint64_t>>>; |
|
|
| |
| template <typename T, typename V> |
| typename absl::enable_if_t<absl::negation<is_randen_pool<T>>::value, void> |
| MyFill(T& rng, absl::Span<V> data) { |
| std::generate(std::begin(data), std::end(data), rng); |
| } |
|
|
| template <typename T, typename V> |
| typename absl::enable_if_t<is_randen_pool<T>::value, void> |
| MyFill(T& rng, absl::Span<V> data) { |
| rng.Fill(data); |
| } |
|
|
| template <typename EngineType> |
| class PoolURBGTypedTest : public ::testing::Test {}; |
|
|
| using EngineTypes = ::testing::Types< |
| RandenPool<uint8_t>, |
| RandenPool<uint16_t>, |
| RandenPool<uint32_t>, |
| RandenPool<uint64_t>, |
| PoolURBG<uint8_t, 2>, |
| PoolURBG<uint16_t, 2>, |
| PoolURBG<uint32_t, 2>, |
| PoolURBG<uint64_t, 2>, |
| PoolURBG<unsigned int, 8>, |
| PoolURBG<unsigned long, 8>, |
| PoolURBG<unsigned long int, 4>, |
| PoolURBG<unsigned long long, 4>>; |
|
|
| TYPED_TEST_SUITE(PoolURBGTypedTest, EngineTypes); |
|
|
| |
| |
| TYPED_TEST(PoolURBGTypedTest, URBGInterface) { |
| using E = TypeParam; |
| using T = typename E::result_type; |
|
|
| static_assert(std::is_copy_constructible<E>::value, |
| "engine must be copy constructible"); |
|
|
| static_assert(absl::is_copy_assignable<E>::value, |
| "engine must be copy assignable"); |
|
|
| E e; |
| const E x; |
|
|
| e(); |
|
|
| static_assert(std::is_same<decltype(e()), T>::value, |
| "return type of operator() must be result_type"); |
|
|
| E u0(x); |
| u0(); |
|
|
| E u1 = e; |
| u1(); |
| } |
|
|
| |
| TYPED_TEST(PoolURBGTypedTest, VerifySequences) { |
| using E = TypeParam; |
| using result_type = typename E::result_type; |
|
|
| E rng; |
| (void)rng(); |
|
|
| constexpr int kNumOutputs = 64; |
| result_type a[kNumOutputs]; |
| result_type b[kNumOutputs]; |
| std::fill(std::begin(b), std::end(b), 0); |
|
|
| |
| { |
| E x = rng; |
| MyFill(x, absl::MakeSpan(a)); |
| } |
|
|
| |
| { |
| E x = rng; |
| std::generate(std::begin(b), std::end(b), x); |
| } |
|
|
| |
| |
| size_t changed_bits = 0; |
| size_t unchanged_bits = 0; |
| size_t total_set = 0; |
| size_t total_bits = 0; |
| size_t equal_count = 0; |
| for (size_t i = 0; i < kNumOutputs; ++i) { |
| equal_count += (a[i] == b[i]) ? 1 : 0; |
| std::bitset<sizeof(result_type) * 8> bitset(a[i] ^ b[i]); |
| changed_bits += bitset.count(); |
| unchanged_bits += bitset.size() - bitset.count(); |
|
|
| std::bitset<sizeof(result_type) * 8> a_set(a[i]); |
| std::bitset<sizeof(result_type) * 8> b_set(b[i]); |
| total_set += a_set.count() + b_set.count(); |
| total_bits += 2 * 8 * sizeof(result_type); |
| } |
| |
| EXPECT_LE(changed_bits, 0.60 * (changed_bits + unchanged_bits)); |
| EXPECT_GE(changed_bits, 0.40 * (changed_bits + unchanged_bits)); |
|
|
| |
| EXPECT_NEAR(total_set, total_bits * 0.5, 4 * std::sqrt(total_bits)) |
| << "@" << total_set / static_cast<double>(total_bits); |
|
|
| |
| |
| const double kExpected = kNumOutputs / (1.0 * sizeof(result_type) * 8); |
| EXPECT_LE(equal_count, 1.0 + kExpected); |
| } |
|
|
| } |
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