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| #include <cinttypes> |
| #include <random> |
| #include <sstream> |
| #include <vector> |
|
|
| #include "gtest/gtest.h" |
| #include "absl/random/random.h" |
|
|
| template <typename T> |
| void Use(T) {} |
|
|
| TEST(Examples, Basic) { |
| absl::BitGen gen; |
| std::vector<int> objs = {10, 20, 30, 40, 50}; |
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| |
| auto elem = objs[absl::Uniform(gen, 0u, objs.size())]; |
| Use(elem); |
|
|
| |
| auto dice_roll = absl::Uniform<int>(absl::IntervalClosedClosed, gen, 1, 6); |
| Use(dice_roll); |
|
|
| |
| auto byte = absl::Uniform<uint8_t>(gen); |
| Use(byte); |
|
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| |
| auto fraction = absl::Uniform<float>(gen, 0, 1); |
| Use(fraction); |
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| |
| bool coin_toss = absl::Bernoulli(gen, 0.5); |
| Use(coin_toss); |
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| |
| auto file_size = absl::LogUniform<size_t>(gen, 1000, 10 * 1000 * 1000); |
| Use(file_size); |
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| |
| std::shuffle(std::begin(objs), std::end(objs), gen); |
| } |
|
|
| TEST(Examples, CreateingCorrelatedVariateSequences) { |
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|
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| { |
| auto my_seed = absl::MakeSeedSeq(); |
|
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| absl::BitGen gen_1(my_seed); |
| absl::BitGen gen_2(my_seed); |
|
|
| EXPECT_EQ(absl::Bernoulli(gen_1, 0.5), absl::Bernoulli(gen_2, 0.5)); |
| EXPECT_EQ(absl::Uniform<uint32_t>(gen_1), absl::Uniform<uint32_t>(gen_2)); |
| } |
|
|
| |
| { |
| absl::BitGen gen; |
|
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| auto my_seed = absl::CreateSeedSeqFrom(&gen); |
| absl::BitGen gen_1(my_seed); |
| absl::BitGen gen_2(my_seed); |
|
|
| EXPECT_EQ(absl::Bernoulli(gen_1, 0.5), absl::Bernoulli(gen_2, 0.5)); |
| EXPECT_EQ(absl::Uniform<uint32_t>(gen_1), absl::Uniform<uint32_t>(gen_2)); |
| } |
|
|
| |
| |
| { |
| const char kData[] = "A simple seed string"; |
| std::seed_seq my_seed(std::begin(kData), std::end(kData)); |
|
|
| absl::BitGen gen_1(my_seed); |
| absl::BitGen gen_2(my_seed); |
|
|
| EXPECT_EQ(absl::Bernoulli(gen_1, 0.5), absl::Bernoulli(gen_2, 0.5)); |
| EXPECT_EQ(absl::Uniform<uint32_t>(gen_1), absl::Uniform<uint32_t>(gen_2)); |
| } |
| } |
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