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#include <numeric> |
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#include "doctest/doctest.h" |
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#include "mlx/mlx.h" |
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using namespace mlx::core; |
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TEST_CASE("test random key") { |
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auto key = random::key(0); |
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CHECK(array_equal(key, array({0, 0})).item<bool>()); |
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key = random::key(1); |
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CHECK(array_equal(key, array({0, 1})).item<bool>()); |
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int64_t seed = static_cast<int64_t>(1) << 32; |
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key = random::key(seed); |
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CHECK(array_equal(key, array({1, 0})).item<bool>()); |
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key = random::key(seed + 1); |
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CHECK(array_equal(key, array({1, 1})).item<bool>()); |
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} |
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TEST_CASE("test global rng") { |
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random::seed(4); |
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auto x = random::bits({}); |
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auto y = random::bits({}); |
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random::seed(4); |
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auto a = random::bits({}); |
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auto b = random::bits({}); |
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CHECK_EQ(x.item<uint32_t>(), a.item<uint32_t>()); |
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CHECK_EQ(y.item<uint32_t>(), b.item<uint32_t>()); |
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} |
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TEST_CASE("test random split") { |
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auto [key, subkey] = random::split(random::key(0)); |
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CHECK(array_equal(key, array({4146024105u, 967050713u})).item<bool>()); |
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CHECK(array_equal(subkey, array({2718843009u, 1272950319u})).item<bool>()); |
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auto keys = random::split(random::key(0), 3); |
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auto expected = array( |
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{2467461003u, |
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428148500u, |
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3186719485u, |
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3840466878u, |
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2562233961u, |
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1946702221u}, |
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{3, 2}); |
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CHECK(array_equal(keys, expected).item<bool>()); |
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} |
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TEST_CASE("test random bits") { |
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{ |
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auto key = random::key(0); |
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auto x = random::bits({}, key); |
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CHECK_EQ(x.size(), 1); |
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CHECK_EQ(x.dtype(), uint32); |
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x = random::bits({0}, key); |
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CHECK(array_equal(x, array({})).item<bool>()); |
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key = array({0, 0}); |
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CHECK_THROWS_AS(random::uniform({}, key), std::invalid_argument); |
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key = array({0, 0}, {1, 2}); |
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CHECK_THROWS_AS(random::uniform({}, key), std::invalid_argument); |
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key = array({0u, 0u, 0u}, {3, 1}); |
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CHECK_THROWS_AS(random::uniform({}, key), std::invalid_argument); |
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key = array({0u, 0u}, {2, 1}); |
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CHECK_THROWS_AS(random::uniform({}, key), std::invalid_argument); |
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} |
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{ |
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auto key = random::key(0); |
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auto x = random::bits({}, key); |
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auto y = random::bits({}, key); |
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CHECK_EQ(x.item<uint32_t>(), 1797259609u); |
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CHECK_EQ(x.item<uint32_t>(), y.item<uint32_t>()); |
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x = random::bits({}, 2, key); |
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CHECK_EQ(x.item<uint16_t>(), 345); |
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x = random::bits({}, 1, key); |
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CHECK_EQ(x.item<uint8_t>(), 89); |
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} |
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{ |
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auto key = random::key(1); |
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auto x = random::bits({}, key); |
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CHECK_EQ(x.item<uint32_t>(), 507451445u); |
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x = random::bits({}, 2, key); |
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CHECK_EQ(x.item<uint16_t>(), 6197); |
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x = random::bits({}, 1, key); |
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CHECK_EQ(x.item<uint8_t>(), 53); |
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CHECK_THROWS(random::bits({}, 0, key)); |
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CHECK_THROWS(random::bits({}, 5, key)); |
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CHECK_THROWS(random::bits({}, -1, key)); |
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} |
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{ |
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auto key = random::key(0); |
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auto x = random::bits({3, 1}, key); |
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auto expected = array({4146024105u, 1351547692u, 2718843009u}, {3, 1}); |
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CHECK(array_equal(x, expected).item<bool>()); |
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x = random::bits({5}, 2, key); |
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expected = array({20137, 63263, 64300, 20622, 16513}, uint16); |
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CHECK(array_equal(x, expected).item<bool>()); |
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expected = array({20137, 63263, 64300, 20622, 16513, 41486}, uint16); |
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x = random::bits({6}, 2, key); |
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CHECK(array_equal(x, expected).item<bool>()); |
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expected = array({20137, 63263, 1497, 14756, 16513, 41486, 44591}, uint16); |
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x = random::bits({7}, 2, key); |
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CHECK(array_equal(x, expected).item<bool>()); |
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x = random::bits({8}, 2, key); |
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expected = |
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array({20137, 63263, 1497, 14756, 16513, 41486, 44591, 19423}, uint16); |
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CHECK(array_equal(x, expected).item<bool>()); |
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} |
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{ |
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auto key = array({0u, 0u, 1u, 1u}, {2, 2}); |
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auto shape = Shape{3}; |
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auto fn = [&shape](array k) { return random::bits(shape, k); }; |
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auto expected = array( |
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{4146024105u, |
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1351547692u, |
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2718843009u, |
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3725146706u, |
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1802982961u, |
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1349634643u}, |
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{2, 3}); |
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CHECK(array_equal(vmap(fn)(key), expected).item<bool>()); |
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expected = array( |
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{2441914641u, |
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1110694964u, |
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3819641963u, |
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2441914641u, |
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1110694964u, |
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3819641963u}, |
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{2, 3}); |
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CHECK(array_equal(vmap(fn, 1)(key), expected).item<bool>()); |
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key = array( |
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{0u, |
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0u, |
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1u, |
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1u, |
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2u, |
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2u, |
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3u, |
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3u, |
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4u, |
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4u, |
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5u, |
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5u}, |
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{3, 2, 2}); |
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shape = {2}; |
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auto out = vmap(vmap(fn))(key); |
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expected = array( |
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{928981903u, |
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3453687069u, |
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3606183818u, |
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460005496u, |
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2799733733u, |
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856293553u, |
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4081856343u, |
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3445925136u, |
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2775548010u, |
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1430281703u, |
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305173070u, |
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2615843348u}, |
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{3, 2, 2}); |
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CHECK(array_equal(out, expected).item<bool>()); |
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out = vmap(vmap(fn, 1), 0)(key); |
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expected = array( |
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{1948878966u, |
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4237131848u, |
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1948878966u, |
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4237131848u, |
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2531170506u, |
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1858648356u, |
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2531170506u, |
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1858648356u, |
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740561898u, |
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4234094099u, |
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740561898u, |
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4234094099u}, |
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{3, 2, 2}); |
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CHECK(array_equal(out, expected).item<bool>()); |
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} |
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{ |
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auto key = array({0u, 0u, 1u, 1u}, {2, 2}); |
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auto fn = [](array k) { return random::bits({5}, 2, k); }; |
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auto expected = array( |
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{4146024105u, |
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1351547692u, |
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2718843009u, |
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3725146706u, |
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1802982961u, |
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1349634643u}, |
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{2, 3}); |
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auto out = vmap(fn)(key); |
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auto x1 = random::bits({5}, 2, take(key, array(0), 0)); |
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auto x2 = random::bits({5}, 2, take(key, array(1), 0)); |
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CHECK(array_equal(take(out, array(0), 0), x1).item<bool>()); |
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CHECK(array_equal(take(out, array(1), 0), x2).item<bool>()); |
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} |
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} |
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TEST_CASE("test random uniform") { |
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{ |
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auto x = random::uniform({}); |
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CHECK_EQ(x.size(), 1); |
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CHECK_EQ(x.dtype(), float32); |
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x = random::uniform({}, float16); |
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CHECK_EQ(x.size(), 1); |
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CHECK_EQ(x.dtype(), float16); |
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x = random::uniform({0}); |
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CHECK(array_equal(x, array({})).item<bool>()); |
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CHECK_THROWS_AS(random::uniform({}, int32), std::invalid_argument); |
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x = random::uniform(-.1, .1, {0}, bfloat16); |
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CHECK_EQ(x.dtype(), bfloat16); |
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x = random::uniform(zeros({3, 1}), ones({1, 3}), {3, 3}); |
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CHECK_EQ(x.shape(), Shape{3, 3}); |
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CHECK_THROWS_AS( |
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random::uniform(zeros({3, 3}), 1.0, {1, 3}), std::invalid_argument); |
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CHECK_THROWS_AS( |
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random::uniform(zeros({3, 3}), 1.0, {2, 3}), std::invalid_argument); |
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CHECK_THROWS_AS( |
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random::uniform(zeros({3, 1}), ones({1, 3}), {1, 3}), |
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std::invalid_argument); |
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auto key = array({0, 0}); |
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CHECK_THROWS_AS(random::uniform({}, key), std::invalid_argument); |
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key = array({0, 0}, {1, 2}); |
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CHECK_THROWS_AS(random::uniform({}, key), std::invalid_argument); |
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key = array({0u, 0u, 0u}, {3, 1}); |
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CHECK_THROWS_AS(random::uniform({}, key), std::invalid_argument); |
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key = array({0u, 0u}, {2, 1}); |
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CHECK_THROWS_AS(random::uniform({}, key), std::invalid_argument); |
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} |
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constexpr auto to_float = [](uint32_t n) { |
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return static_cast<float>(n) / UINT32_MAX; |
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}; |
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{ |
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auto key = random::key(0); |
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auto x = random::uniform({}, key); |
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auto y = random::uniform({}, key); |
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auto expected = to_float(1797259609); |
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CHECK_EQ(x.item<float>(), expected); |
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CHECK_EQ(x.item<float>(), y.item<float>()); |
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} |
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{ |
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auto key = random::key(1); |
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auto x = random::uniform({}, key); |
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auto expected = to_float(507451445); |
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CHECK_EQ(x.item<float>(), expected); |
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} |
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{ |
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auto key = random::key(0); |
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auto x = random::uniform({3, 1}, key); |
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auto expected = array( |
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{to_float(4146024105), to_float(1351547692), to_float(2718843009)}, |
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{3, 1}); |
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CHECK(array_equal(x, expected).item<bool>()); |
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} |
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{ |
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auto key = random::key(0); |
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auto fun = [](array k, array low) { |
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return random::uniform(low, 1, {3}, float32, k); |
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}; |
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auto out = vmap(fun, -1)(key, zeros({2, 3})); |
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CHECK_EQ(out.shape(), Shape{2, 3}); |
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key = zeros({2, 2}, uint32); |
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out = vmap(fun)(key, zeros({2, 3})); |
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CHECK_EQ(out.shape(), Shape{2, 3}); |
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} |
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{ |
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auto key = random::key(128291); |
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auto out = random::uniform(array(-1.0f), array(1.0f), {100}, float32, key); |
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CHECK(all(less(out, array(1.0f))).item<bool>()); |
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CHECK(all(greater_equal(out, array(-1.0f))).item<bool>()); |
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} |
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{ |
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auto key = random::key(0); |
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auto out = random::uniform({1000}, float16, key); |
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CHECK_EQ(out.dtype(), float16); |
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CHECK(all(less(out, array(1.0f))).item<bool>()); |
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CHECK(all(greater_equal(out, array(0.0f))).item<bool>()); |
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CHECK(!all(equal(out, array(0.0f))).item<bool>()); |
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CHECK(abs(float(mean(out).item<float16_t>()) - 0.5f) < 0.02); |
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} |
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{ |
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auto key = random::key(0); |
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auto out = random::uniform({1000}, bfloat16, key); |
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CHECK_EQ(out.dtype(), bfloat16); |
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CHECK(all(less(out, array(1.0f))).item<bool>()); |
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CHECK(all(greater_equal(out, array(0.0f))).item<bool>()); |
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CHECK(!all(equal(out, array(0.0f))).item<bool>()); |
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CHECK(abs(float(mean(out).item<bfloat16_t>()) - 0.5f) < 0.02); |
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} |
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} |
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TEST_CASE("test random normal") { |
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{ |
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auto x = random::normal({}); |
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CHECK_EQ(x.size(), 1); |
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CHECK_EQ(x.dtype(), float32); |
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x = random::uniform({0}); |
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CHECK(array_equal(x, array({})).item<bool>()); |
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CHECK_THROWS_AS(random::normal({}, int32), std::invalid_argument); |
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auto key = array({0, 0}); |
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CHECK_THROWS_AS(random::normal({}, key), std::invalid_argument); |
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key = array({0, 0}, {1, 2}); |
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CHECK_THROWS_AS(random::normal({}, key), std::invalid_argument); |
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key = array({0u, 0u, 0u}, {3, 1}); |
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CHECK_THROWS_AS(random::normal({}, key), std::invalid_argument); |
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key = array({0u, 0u}, {2, 1}); |
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CHECK_THROWS_AS(random::normal({}, key), std::invalid_argument); |
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} |
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{ |
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constexpr float inf = std::numeric_limits<float>::infinity(); |
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auto key = random::key(128291); |
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auto out = random::normal({100}, key); |
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CHECK(all(less(abs(out), array(inf))).item<bool>()); |
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CHECK(abs(mean(out).item<float>()) < 0.1); |
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} |
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{ |
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constexpr float inf = std::numeric_limits<float>::infinity(); |
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auto key = random::key(128291); |
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auto out = random::normal({200}, float16, key); |
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CHECK_EQ(out.dtype(), float16); |
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CHECK(all(less(abs(out), array(inf))).item<bool>()); |
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CHECK(abs(float(mean(out).item<float16_t>())) < 0.1); |
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} |
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{ |
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constexpr float inf = std::numeric_limits<float>::infinity(); |
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auto key = random::key(128291); |
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auto out = random::normal({200}, bfloat16, key); |
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CHECK_EQ(out.dtype(), bfloat16); |
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CHECK(all(less(abs(out), array(inf))).item<bool>()); |
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CHECK(abs(float(mean(out).item<bfloat16_t>())) < 0.1); |
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} |
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} |
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TEST_CASE("test random multivariate_normal") { |
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StreamContext sc(Device::cpu); |
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{ |
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auto mean = zeros({3}); |
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auto cov = eye(3); |
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auto x = random::multivariate_normal(mean, cov, {1000}, float32); |
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CHECK_EQ(x.shape(), Shape{1000, 3}); |
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CHECK_EQ(x.dtype(), float32); |
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} |
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{ |
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auto mean = array({0, 0}); |
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auto cov = array({1., -1, -.1, 1.}); |
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cov = reshape(cov, {2, 2}); |
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auto x = random::multivariate_normal(mean, cov, {1}, float32); |
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CHECK_EQ(x.shape(), Shape{1, 2}); |
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CHECK_EQ(x.dtype(), float32); |
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} |
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{ |
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auto mean = zeros({3, 1}); |
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auto cov = eye(3); |
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CHECK_THROWS_AS( |
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random::multivariate_normal( |
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mean, |
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cov, |
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{ |
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1000, |
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}, |
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float32), |
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std::invalid_argument); |
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} |
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{ |
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auto mean = zeros({3}); |
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auto cov = zeros({1, 2, 3, 3}); |
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auto x = random::multivariate_normal(mean, cov, {1000, 2}, float32); |
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CHECK_EQ(x.shape(), Shape{1000, 2, 3}); |
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} |
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{ |
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auto mean = zeros({3}); |
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auto cov = eye(4); |
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CHECK_THROWS_AS( |
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random::multivariate_normal(mean, cov, {1000, 3}, float32), |
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std::invalid_argument); |
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} |
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{ |
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auto mean = zeros({3}); |
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auto cov = eye(3); |
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CHECK_THROWS_AS( |
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random::multivariate_normal(mean, cov, {1000, 3}, float16), |
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std::invalid_argument); |
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|
} |
|
|
} |
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|
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TEST_CASE("test random randint") { |
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CHECK_THROWS_AS( |
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random::randint(array(3), array(5), {1}, float32), std::invalid_argument); |
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|
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auto x = random::randint(0, 10, {}, uint32); |
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CHECK_EQ(x.size(), 1); |
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CHECK_EQ(x.dtype(), uint32); |
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|
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x = random::randint(0, 2, {}, bool_); |
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CHECK_EQ(x.size(), 1); |
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CHECK_EQ(x.dtype(), bool_); |
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|
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x = random::randint(0, 2, {}, int32); |
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CHECK_EQ(x.size(), 1); |
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CHECK_EQ(x.dtype(), int32); |
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|
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x = random::randint(0, 2, {}, int64); |
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CHECK_EQ(x.size(), 1); |
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|
CHECK_EQ(x.dtype(), int64); |
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|
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auto low = -10.0; |
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auto high = 20.0; |
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x = random::randint(low, high, {1000, 1000}); |
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CHECK((all(low <= x).item<bool>() && all(x < high).item<bool>())); |
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|
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low = 20.0; |
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|
high = -10.0; |
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x = random::randint(low, high, {3, 3}); |
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CHECK(all(equal(x, array(low))).item<bool>()); |
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|
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auto key = array({0, 0}, {1, 2}); |
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|
CHECK_THROWS_AS( |
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random::randint(low, high, {}, float32, key), std::invalid_argument); |
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|
} |
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|
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TEST_CASE("test random bernoulli") { |
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|
auto x = random::bernoulli(); |
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|
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CHECK_EQ(x.size(), 1); |
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|
CHECK_EQ(x.dtype(), bool_); |
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|
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x = random::bernoulli(array(0.5, float16)); |
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|
CHECK_EQ(x.size(), 1); |
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|
CHECK_EQ(x.dtype(), bool_); |
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|
|
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|
CHECK_THROWS(random::bernoulli(array(1, int32))); |
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|
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x = random::bernoulli(array(-1.0)); |
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|
CHECK_FALSE(x.item<bool>()); |
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|
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|
x = random::bernoulli(array(5.0)); |
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|
CHECK(x.item<bool>()); |
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|
|
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|
x = random::bernoulli(0.5, {3, 3}); |
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|
CHECK_EQ(x.shape(), Shape{3, 3}); |
|
|
|
|
|
|
|
|
x = random::bernoulli(array({})); |
|
|
CHECK_EQ(x.size(), 0); |
|
|
|
|
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|
|
|
auto p = array({0.1, 0.2, 0.3}); |
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|
p = reshape(p, {1, 3}); |
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|
x = random::bernoulli(p, {4, 3}); |
|
|
CHECK_EQ(x.shape(), Shape{4, 3}); |
|
|
|
|
|
CHECK_THROWS_AS(random::bernoulli(array({}), {3, 3}), std::invalid_argument); |
|
|
|
|
|
p = array({0.1, 0.2, 0.3}); |
|
|
|
|
|
CHECK_THROWS_AS(random::bernoulli(p, Shape{2}), std::invalid_argument); |
|
|
|
|
|
|
|
|
auto key = array({0, 0}, {1, 2}); |
|
|
CHECK_THROWS_AS(random::bernoulli(array(0.5), key), std::invalid_argument); |
|
|
} |
|
|
|
|
|
TEST_CASE("Test truncated normal") { |
|
|
auto x = random::truncated_normal(array(-2.0), array(2.0)); |
|
|
|
|
|
CHECK_EQ(x.size(), 1); |
|
|
CHECK_EQ(x.dtype(), float32); |
|
|
|
|
|
x = random::truncated_normal(array(-2.0), array(2.0), {}, float16); |
|
|
CHECK_EQ(x.size(), 1); |
|
|
CHECK_EQ(x.dtype(), float16); |
|
|
|
|
|
|
|
|
x = random::truncated_normal(array(-2.0), array(2.0), {3, 4}); |
|
|
CHECK_EQ(x.shape(), Shape{3, 4}); |
|
|
|
|
|
|
|
|
x = random::truncated_normal(array({}), array({})); |
|
|
CHECK_EQ(x.size(), 0); |
|
|
|
|
|
|
|
|
auto lower = reshape(array({-2.0, -3.0}), {1, 2}); |
|
|
auto higher = reshape(array({0.0, 3.0, 1.5}), {3, 1}); |
|
|
x = random::truncated_normal(lower, higher); |
|
|
|
|
|
|
|
|
CHECK_EQ(x.shape(), Shape{3, 2}); |
|
|
CHECK((all(x <= higher).item<bool>() && all(lower <= x).item<bool>())); |
|
|
|
|
|
|
|
|
x = random::truncated_normal(array(2.0), array(-2.0)); |
|
|
CHECK(all(x == array(2.0)).item<bool>()); |
|
|
|
|
|
|
|
|
CHECK_THROWS_AS( |
|
|
random::truncated_normal(lower, higher, {4, 2}), std::invalid_argument); |
|
|
|
|
|
auto key = array({0, 0}, {1, 2}); |
|
|
CHECK_THROWS_AS( |
|
|
random::truncated_normal(array(-2.0), array(2.0), {1, 1}, float32, key), |
|
|
std::invalid_argument); |
|
|
} |
|
|
|
|
|
TEST_CASE("test categorical") { |
|
|
auto logits = zeros({10, 20}); |
|
|
|
|
|
using random::categorical; |
|
|
|
|
|
|
|
|
CHECK_THROWS(categorical(logits, 2)); |
|
|
CHECK_THROWS(categorical(logits, -3)); |
|
|
|
|
|
|
|
|
CHECK_THROWS(categorical(logits, 1, Shape{1})); |
|
|
CHECK_THROWS(categorical(logits, 1, Shape{11})); |
|
|
CHECK_THROWS(categorical(logits, 1, {10, 1})); |
|
|
|
|
|
CHECK_EQ(categorical(logits, -1).shape(), Shape{10}); |
|
|
CHECK_EQ(categorical(logits, 0).shape(), Shape{20}); |
|
|
CHECK_EQ(categorical(logits, 1).shape(), Shape{10}); |
|
|
|
|
|
auto out = categorical(logits); |
|
|
CHECK_EQ(out.shape(), Shape{10}); |
|
|
CHECK_EQ(out.dtype(), uint32); |
|
|
CHECK(max(out).item<uint32_t>() < 20); |
|
|
|
|
|
out = categorical(logits, 0, {5, 20}); |
|
|
CHECK_EQ(out.shape(), Shape{5, 20}); |
|
|
CHECK(max(out).item<uint32_t>() < 10); |
|
|
|
|
|
float inf = std::numeric_limits<float>::infinity(); |
|
|
logits = array({1.0f, -2.0f, inf, 4.0f, 3.0f}); |
|
|
CHECK_EQ(categorical(logits).item<uint32_t>(), 2); |
|
|
|
|
|
logits = array({-inf, -2.0f, -inf, -inf}); |
|
|
CHECK_EQ(categorical(logits).item<uint32_t>(), 1); |
|
|
|
|
|
logits = zeros({5, 4, 3}); |
|
|
CHECK_EQ(categorical(logits, -1, 7).shape(), Shape{5, 4, 7}); |
|
|
CHECK_EQ(categorical(logits, -2, 7).shape(), Shape{5, 3, 7}); |
|
|
CHECK_EQ(categorical(logits, -3, 7).shape(), Shape{4, 3, 7}); |
|
|
} |
|
|
|
|
|
TEST_CASE("test laplace") { |
|
|
|
|
|
{ |
|
|
auto x = random::laplace({}); |
|
|
CHECK_EQ(x.size(), 1); |
|
|
CHECK_EQ(x.dtype(), float32); |
|
|
|
|
|
|
|
|
CHECK_THROWS_AS(random::laplace({}, int32), std::invalid_argument); |
|
|
|
|
|
|
|
|
auto key = array({0, 0}); |
|
|
CHECK_THROWS_AS(random::laplace({}, key), std::invalid_argument); |
|
|
key = array({0, 0}, {1, 2}); |
|
|
CHECK_THROWS_AS(random::laplace({}, key), std::invalid_argument); |
|
|
key = array({0u, 0u, 0u}, {3, 1}); |
|
|
CHECK_THROWS_AS(random::laplace({}, key), std::invalid_argument); |
|
|
key = array({0u, 0u}, {2, 1}); |
|
|
CHECK_THROWS_AS(random::laplace({}, key), std::invalid_argument); |
|
|
} |
|
|
|
|
|
{ |
|
|
constexpr float inf = std::numeric_limits<float>::infinity(); |
|
|
auto key = random::key(128291); |
|
|
auto out = random::laplace({1000000}, key); |
|
|
float sample_mean = mean(out).item<float>(); |
|
|
float sample_variance = var(out).item<float>(); |
|
|
|
|
|
CHECK(all(less(abs(out), array(inf))).item<bool>()); |
|
|
CHECK(abs(sample_mean) < 0.1); |
|
|
|
|
|
|
|
|
for (int k = 1; k <= 5; ++k) { |
|
|
float prob_above = |
|
|
mean(greater_equal(out, array(k * std::sqrt(sample_variance)))) |
|
|
.item<float>(); |
|
|
float bound = 1 / std::pow(k, 2); |
|
|
CHECK(prob_above < bound); |
|
|
} |
|
|
|
|
|
|
|
|
float expected_variance = 2.0; |
|
|
CHECK(std::abs(sample_variance - expected_variance) < 0.01); |
|
|
|
|
|
|
|
|
array fourth_pows = power(out - sample_mean, array(4)); |
|
|
float sample_kurtosis = |
|
|
mean(fourth_pows).item<float>() / std::pow(sample_variance, 2) - 3; |
|
|
float expected_kurtosis = 3.0; |
|
|
CHECK(std::abs(sample_kurtosis - expected_kurtosis) < 0.1); |
|
|
} |
|
|
|
|
|
{ |
|
|
constexpr float inf = std::numeric_limits<float>::infinity(); |
|
|
auto key = random::key(128291); |
|
|
auto out = random::laplace({10000}, float16, key); |
|
|
CHECK_EQ(out.dtype(), float16); |
|
|
CHECK(all(less(abs(out), array(inf))).item<bool>()); |
|
|
CHECK(abs(float(mean(out).item<float16_t>())) < 0.1); |
|
|
} |
|
|
|
|
|
{ |
|
|
constexpr float inf = std::numeric_limits<float>::infinity(); |
|
|
auto key = random::key(128291); |
|
|
auto out = random::laplace({10000}, bfloat16, key); |
|
|
CHECK_EQ(out.dtype(), bfloat16); |
|
|
CHECK(all(less(abs(out), array(inf))).item<bool>()); |
|
|
CHECK(abs(float(mean(out).item<bfloat16_t>())) < 0.1); |
|
|
} |
|
|
} |
|
|
|