#include <cstddef>
#include <cstdint>
#include <random>
#include <vector>
#include "gtest/gtest.h"
#include "absl/random/distributions.h"
#include "absl/random/random.h"
namespace {
template <typename URBG>
void TestUniform(URBG* gen) {
absl::Uniform(*gen, 0, 100); absl::Uniform(*gen, 0, 1.0); absl::Uniform(*gen, 0.0f, 1.0); absl::Uniform(*gen, 0.0, 1.0); absl::Uniform(*gen, -1, 1L);
absl::Uniform(absl::IntervalClosedClosed, *gen, 1, 6);
absl::Uniform(absl::IntervalOpenOpen, *gen, 0.0, 1.0);
std::vector<int> elems = {10, 20, 30, 40, 50};
elems[absl::Uniform(*gen, 0u, elems.size())] = 5;
elems[absl::Uniform<size_t>(*gen, 0, elems.size())] = 3;
absl::Uniform(absl::IntervalOpenOpen, *gen, -1.0, 1.0);
absl::Uniform(absl::IntervalOpenOpen, *gen, 0, 1.0);
absl::Uniform<int>(*gen, 0, 100);
absl::Uniform<int8_t>(*gen, 0, 100);
absl::Uniform<int16_t>(*gen, 0, 100);
absl::Uniform<uint16_t>(*gen, 0, 100);
absl::Uniform<int32_t>(*gen, 0, 1 << 10);
absl::Uniform<uint32_t>(*gen, 0, 1 << 10);
absl::Uniform<int64_t>(*gen, 0, 1 << 10);
absl::Uniform<uint64_t>(*gen, 0, 1 << 10);
absl::Uniform<float>(*gen, 0.0, 1.0);
absl::Uniform<float>(*gen, 0, 1);
absl::Uniform<float>(*gen, -1, 1);
absl::Uniform<double>(*gen, 0.0, 1.0);
absl::Uniform<float>(*gen, -1.0, 0);
absl::Uniform<double>(*gen, -1.0, 0);
absl::Uniform<double>(absl::IntervalClosedClosed, *gen, 0, 1);
absl::Uniform<double>(absl::IntervalClosedOpen, *gen, 0, 1);
absl::Uniform<double>(absl::IntervalOpenOpen, *gen, 0, 1);
absl::Uniform<double>(absl::IntervalOpenClosed, *gen, 0, 1);
absl::Uniform<double>(absl::IntervalClosedClosed, *gen, 0, 1);
absl::Uniform<double>(absl::IntervalOpenOpen, *gen, 0, 1);
absl::Uniform<int>(absl::IntervalClosedClosed, *gen, 0, 100);
absl::Uniform<int>(absl::IntervalClosedOpen, *gen, 0, 100);
absl::Uniform<int>(absl::IntervalOpenOpen, *gen, 0, 100);
absl::Uniform<int>(absl::IntervalOpenClosed, *gen, 0, 100);
absl::Uniform<int>(absl::IntervalClosedClosed, *gen, 0, 100);
absl::Uniform<int>(absl::IntervalOpenOpen, *gen, 0, 100);
absl::Uniform<int>(URBG(), 0, 100);
absl::Uniform<double>(URBG(), 0.0, 1.0);
}
template <typename URBG>
void TestExponential(URBG* gen) {
absl::Exponential<float>(*gen);
absl::Exponential<double>(*gen);
absl::Exponential<double>(URBG());
}
template <typename URBG>
void TestPoisson(URBG* gen) {
absl::Poisson<int>(*gen);
absl::Poisson<int16_t>(*gen);
absl::Poisson<uint16_t>(*gen);
absl::Poisson<int32_t>(*gen);
absl::Poisson<uint32_t>(*gen);
absl::Poisson<int64_t>(*gen);
absl::Poisson<uint64_t>(*gen);
absl::Poisson<uint64_t>(URBG());
absl::Poisson<absl::int128>(*gen);
absl::Poisson<absl::uint128>(*gen);
}
template <typename URBG>
void TestBernoulli(URBG* gen) {
absl::Bernoulli(*gen, 0.5);
absl::Bernoulli(*gen, 0.5);
}
template <typename URBG>
void TestZipf(URBG* gen) {
absl::Zipf<int>(*gen, 100);
absl::Zipf<int8_t>(*gen, 100);
absl::Zipf<int16_t>(*gen, 100);
absl::Zipf<uint16_t>(*gen, 100);
absl::Zipf<int32_t>(*gen, 1 << 10);
absl::Zipf<uint32_t>(*gen, 1 << 10);
absl::Zipf<int64_t>(*gen, 1 << 10);
absl::Zipf<uint64_t>(*gen, 1 << 10);
absl::Zipf<uint64_t>(URBG(), 1 << 10);
absl::Zipf<absl::int128>(*gen, 1 << 10);
absl::Zipf<absl::uint128>(*gen, 1 << 10);
}
template <typename URBG>
void TestGaussian(URBG* gen) {
absl::Gaussian<float>(*gen, 1.0, 1.0);
absl::Gaussian<double>(*gen, 1.0, 1.0);
absl::Gaussian<double>(URBG(), 1.0, 1.0);
}
template <typename URBG>
void TestLogNormal(URBG* gen) {
absl::LogUniform<int>(*gen, 0, 100);
absl::LogUniform<int8_t>(*gen, 0, 100);
absl::LogUniform<int16_t>(*gen, 0, 100);
absl::LogUniform<uint16_t>(*gen, 0, 100);
absl::LogUniform<int32_t>(*gen, 0, 1 << 10);
absl::LogUniform<uint32_t>(*gen, 0, 1 << 10);
absl::LogUniform<int64_t>(*gen, 0, 1 << 10);
absl::LogUniform<uint64_t>(*gen, 0, 1 << 10);
absl::LogUniform<uint64_t>(URBG(), 0, 1 << 10);
absl::LogUniform<absl::int128>(*gen, 0, 1 << 10);
absl::LogUniform<absl::uint128>(*gen, 0, 1 << 10);
}
template <typename URBG>
void CompatibilityTest() {
URBG gen;
TestUniform(&gen);
TestExponential(&gen);
TestPoisson(&gen);
TestBernoulli(&gen);
TestZipf(&gen);
TestGaussian(&gen);
TestLogNormal(&gen);
}
TEST(std_mt19937_64, Compatibility) {
CompatibilityTest<std::mt19937_64>();
}
TEST(BitGen, Compatibility) {
CompatibilityTest<absl::BitGen>();
}
TEST(InsecureBitGen, Compatibility) {
CompatibilityTest<absl::InsecureBitGen>();
}
}