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project_6/cccl_upstream/thrust/testing/cuda/uninitialized_copy.cu
EngineX CI 56fd68e7dd [INFRA] Import NVIDIA/CCCL upstream as optimization reference library
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
2026-07-30 09:35:51 +00:00

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#include <thrust/execution_policy.h>
#include <thrust/uninitialized_copy.h>
#include <unittest/unittest.h>
#ifdef THRUST_TEST_DEVICE_SIDE
template <typename ExecutionPolicy, typename Iterator1, typename Iterator2>
__global__ void uninitialized_copy_kernel(ExecutionPolicy exec, Iterator1 first, Iterator1 last, Iterator2 result)
{
thrust::uninitialized_copy(exec, first, last, result);
}
template <typename ExecutionPolicy>
void TestUninitializedCopyDevice(ExecutionPolicy exec)
{
using Vector = thrust::device_vector<int>;
Vector v1{0, 1, 2, 3, 4};
// copy to Vector
Vector v2(5);
uninitialized_copy_kernel<<<1, 1>>>(exec, v1.begin(), v1.end(), v2.begin());
cudaError_t const err = cudaDeviceSynchronize();
ASSERT_EQUAL(cudaSuccess, err);
Vector ref{0, 1, 2, 3, 4};
ASSERT_EQUAL(v2, ref);
}
void TestUninitializedCopyDeviceSeq()
{
TestUninitializedCopyDevice(thrust::seq);
}
DECLARE_UNITTEST(TestUninitializedCopyDeviceSeq);
void TestUninitializedCopyDeviceDevice()
{
TestUninitializedCopyDevice(thrust::device);
}
DECLARE_UNITTEST(TestUninitializedCopyDeviceDevice);
#endif
void TestUninitializedCopyCudaStreams()
{
using Vector = thrust::device_vector<int>;
Vector v1{0, 1, 2, 3, 4};
// copy to Vector
Vector v2(5);
cudaStream_t s;
cudaStreamCreate(&s);
thrust::uninitialized_copy(thrust::cuda::par.on(s), v1.begin(), v1.end(), v2.begin());
cudaStreamSynchronize(s);
ASSERT_EQUAL(v2, v1);
cudaStreamDestroy(s);
}
DECLARE_UNITTEST(TestUninitializedCopyCudaStreams);
#ifdef THRUST_TEST_DEVICE_SIDE
template <typename ExecutionPolicy, typename Iterator1, typename Size, typename Iterator2>
__global__ void uninitialized_copy_n_kernel(ExecutionPolicy exec, Iterator1 first, Size n, Iterator2 result)
{
thrust::uninitialized_copy_n(exec, first, n, result);
}
template <typename ExecutionPolicy>
void TestUninitializedCopyNDevice(ExecutionPolicy exec)
{
using Vector = thrust::device_vector<int>;
Vector v1{0, 1, 2, 3, 4};
// copy to Vector
Vector v2(5);
uninitialized_copy_n_kernel<<<1, 1>>>(exec, v1.begin(), v1.size(), v2.begin());
cudaError_t const err = cudaDeviceSynchronize();
ASSERT_EQUAL(cudaSuccess, err);
ASSERT_EQUAL(v2, v1);
}
void TestUninitializedCopyNDeviceSeq()
{
TestUninitializedCopyNDevice(thrust::seq);
}
DECLARE_UNITTEST(TestUninitializedCopyNDeviceSeq);
void TestUninitializedCopyNDeviceDevice()
{
TestUninitializedCopyNDevice(thrust::device);
}
DECLARE_UNITTEST(TestUninitializedCopyNDeviceDevice);
#endif
void TestUninitializedCopyNCudaStreams()
{
using Vector = thrust::device_vector<int>;
Vector v1{0, 1, 2, 3, 4};
// copy to Vector
Vector v2(5);
cudaStream_t s;
cudaStreamCreate(&s);
thrust::uninitialized_copy_n(thrust::cuda::par.on(s), v1.begin(), v1.size(), v2.begin());
cudaStreamSynchronize(s);
ASSERT_EQUAL(v2, v1);
cudaStreamDestroy(s);
}
DECLARE_UNITTEST(TestUninitializedCopyNCudaStreams);