CCCL (CUDA C++ Core Libraries) provides: - CUB: device/block/warp-level GPU primitives (reduce, scan, sort, topk) - Thrust: high-level parallel algorithms (transform_reduce, sort, scan) - libcudacxx: CUDA C++ standard library (atomics, barriers, memory) - cudax: experimental features (memory resources, allocators) - Tuning policies: per-SM hardware-specific algorithm parameters Competition optimization vectors mapped to CCCL: - Output TPS (83% weight): warp_reduce, block_reduce, device_topk - Input TPS (14% weight): device_scan, block_load, prefetch - Cache TPS (3% weight): prefix caching strategy patterns - Memory (0.9 util): pooled/cached/buddy allocators Source: https://github.com/NVIDIA/cccl (shallow clone, HEAD only) License: Apache-2.0
122 lines
7.1 KiB
Plaintext
122 lines
7.1 KiB
Plaintext
#include <thrust/binary_search.h>
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#include <thrust/functional.h>
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#include <thrust/sequence.h>
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#include <thrust/sort.h>
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#include <unittest/unittest.h>
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//////////////////////
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// Scalar Functions //
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//////////////////////
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template <class Vector>
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void TestScalarLowerBoundDescendingSimple()
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{
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using T = typename Vector::value_type;
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Vector vec{8, 7, 5, 2, 0};
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ASSERT_EQUAL_QUIET(vec.begin() + 4, thrust::lower_bound(vec.begin(), vec.end(), T{0}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 4, thrust::lower_bound(vec.begin(), vec.end(), T{1}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 3, thrust::lower_bound(vec.begin(), vec.end(), T{2}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 3, thrust::lower_bound(vec.begin(), vec.end(), T{3}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 3, thrust::lower_bound(vec.begin(), vec.end(), T{4}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 2, thrust::lower_bound(vec.begin(), vec.end(), T{5}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 2, thrust::lower_bound(vec.begin(), vec.end(), T{6}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 1, thrust::lower_bound(vec.begin(), vec.end(), T{7}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 0, thrust::lower_bound(vec.begin(), vec.end(), T{8}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 0, thrust::lower_bound(vec.begin(), vec.end(), T{9}, ::cuda::std::greater<T>()));
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}
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DECLARE_VECTOR_UNITTEST(TestScalarLowerBoundDescendingSimple);
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template <class Vector>
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void TestScalarUpperBoundDescendingSimple()
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{
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using T = typename Vector::value_type;
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Vector vec{8, 7, 5, 2, 0};
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ASSERT_EQUAL_QUIET(vec.begin() + 5, thrust::upper_bound(vec.begin(), vec.end(), T{0}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 4, thrust::upper_bound(vec.begin(), vec.end(), T{1}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 4, thrust::upper_bound(vec.begin(), vec.end(), T{2}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 3, thrust::upper_bound(vec.begin(), vec.end(), T{3}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 3, thrust::upper_bound(vec.begin(), vec.end(), T{4}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 3, thrust::upper_bound(vec.begin(), vec.end(), T{5}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 2, thrust::upper_bound(vec.begin(), vec.end(), T{6}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 2, thrust::upper_bound(vec.begin(), vec.end(), T{7}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 1, thrust::upper_bound(vec.begin(), vec.end(), T{8}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL_QUIET(vec.begin() + 0, thrust::upper_bound(vec.begin(), vec.end(), T{9}, ::cuda::std::greater<T>()));
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}
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DECLARE_VECTOR_UNITTEST(TestScalarUpperBoundDescendingSimple);
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template <class Vector>
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void TestScalarBinarySearchDescendingSimple()
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{
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using T = typename Vector::value_type;
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Vector vec{8, 7, 5, 2, 0};
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ASSERT_EQUAL(true, thrust::binary_search(vec.begin(), vec.end(), T{0}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL(false, thrust::binary_search(vec.begin(), vec.end(), T{1}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL(true, thrust::binary_search(vec.begin(), vec.end(), T{2}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL(false, thrust::binary_search(vec.begin(), vec.end(), T{3}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL(false, thrust::binary_search(vec.begin(), vec.end(), T{4}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL(true, thrust::binary_search(vec.begin(), vec.end(), T{5}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL(false, thrust::binary_search(vec.begin(), vec.end(), T{6}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL(true, thrust::binary_search(vec.begin(), vec.end(), T{7}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL(true, thrust::binary_search(vec.begin(), vec.end(), T{8}, ::cuda::std::greater<T>()));
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ASSERT_EQUAL(false, thrust::binary_search(vec.begin(), vec.end(), T{9}, ::cuda::std::greater<T>()));
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}
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DECLARE_VECTOR_UNITTEST(TestScalarBinarySearchDescendingSimple);
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template <class Vector>
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void TestScalarEqualRangeDescendingSimple()
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{
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using T = typename Vector::value_type;
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Vector vec{8, 7, 5, 2, 0};
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ASSERT_EQUAL_QUIET(vec.begin() + 4,
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thrust::equal_range(vec.begin(), vec.end(), T{0}, ::cuda::std::greater<T>()).first);
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ASSERT_EQUAL_QUIET(vec.begin() + 4,
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thrust::equal_range(vec.begin(), vec.end(), T{1}, ::cuda::std::greater<T>()).first);
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ASSERT_EQUAL_QUIET(vec.begin() + 3,
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thrust::equal_range(vec.begin(), vec.end(), T{2}, ::cuda::std::greater<T>()).first);
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ASSERT_EQUAL_QUIET(vec.begin() + 3,
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thrust::equal_range(vec.begin(), vec.end(), T{3}, ::cuda::std::greater<T>()).first);
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ASSERT_EQUAL_QUIET(vec.begin() + 3,
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thrust::equal_range(vec.begin(), vec.end(), T{4}, ::cuda::std::greater<T>()).first);
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ASSERT_EQUAL_QUIET(vec.begin() + 2,
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thrust::equal_range(vec.begin(), vec.end(), T{5}, ::cuda::std::greater<T>()).first);
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ASSERT_EQUAL_QUIET(vec.begin() + 2,
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thrust::equal_range(vec.begin(), vec.end(), T{6}, ::cuda::std::greater<T>()).first);
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ASSERT_EQUAL_QUIET(vec.begin() + 1,
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thrust::equal_range(vec.begin(), vec.end(), T{7}, ::cuda::std::greater<T>()).first);
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ASSERT_EQUAL_QUIET(vec.begin() + 0,
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thrust::equal_range(vec.begin(), vec.end(), T{8}, ::cuda::std::greater<T>()).first);
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ASSERT_EQUAL_QUIET(vec.begin() + 0,
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thrust::equal_range(vec.begin(), vec.end(), T{9}, ::cuda::std::greater<T>()).first);
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ASSERT_EQUAL_QUIET(vec.begin() + 5,
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thrust::equal_range(vec.begin(), vec.end(), T{0}, ::cuda::std::greater<T>()).second);
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ASSERT_EQUAL_QUIET(vec.begin() + 4,
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thrust::equal_range(vec.begin(), vec.end(), T{1}, ::cuda::std::greater<T>()).second);
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ASSERT_EQUAL_QUIET(vec.begin() + 4,
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thrust::equal_range(vec.begin(), vec.end(), T{2}, ::cuda::std::greater<T>()).second);
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ASSERT_EQUAL_QUIET(vec.begin() + 3,
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thrust::equal_range(vec.begin(), vec.end(), T{3}, ::cuda::std::greater<T>()).second);
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ASSERT_EQUAL_QUIET(vec.begin() + 3,
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thrust::equal_range(vec.begin(), vec.end(), T{4}, ::cuda::std::greater<T>()).second);
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ASSERT_EQUAL_QUIET(vec.begin() + 3,
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thrust::equal_range(vec.begin(), vec.end(), T{5}, ::cuda::std::greater<T>()).second);
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ASSERT_EQUAL_QUIET(vec.begin() + 2,
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thrust::equal_range(vec.begin(), vec.end(), T{6}, ::cuda::std::greater<T>()).second);
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ASSERT_EQUAL_QUIET(vec.begin() + 2,
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thrust::equal_range(vec.begin(), vec.end(), T{7}, ::cuda::std::greater<T>()).second);
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ASSERT_EQUAL_QUIET(vec.begin() + 1,
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thrust::equal_range(vec.begin(), vec.end(), T{8}, ::cuda::std::greater<T>()).second);
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ASSERT_EQUAL_QUIET(vec.begin() + 0,
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thrust::equal_range(vec.begin(), vec.end(), T{9}, ::cuda::std::greater<T>()).second);
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}
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DECLARE_VECTOR_UNITTEST(TestScalarEqualRangeDescendingSimple);
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