diff --git a/projects/hip-tests/catch/hipTestMain/config/config_amd_linux_common.json b/projects/hip-tests/catch/hipTestMain/config/config_amd_linux_common.json index 9640959961..7a1b5c1f20 100644 --- a/projects/hip-tests/catch/hipTestMain/config/config_amd_linux_common.json +++ b/projects/hip-tests/catch/hipTestMain/config/config_amd_linux_common.json @@ -23,6 +23,9 @@ "Unit_hipGraphDestroyNode_Complx_ChkNumOfNodesNDep_ClonedGrph", "Unit_hipGraphDestroyNode_Complx_ChkNumOfNodesNDep_ChldNode", "Unit_hipMemGetAddressRange_Negative", + "NOTE: The following 2 tests are disabled due to defect - EXSWHTEC-238", + "Unit_hipDrvMemcpy3D_Positive_Array", + "Unit_hipDrvMemcpy3DAsync_Positive_Array", "Unit_hipMemRangeGetAttribute_Positive_AccessedBy_Basic", "Unit_hipMemRangeGetAttribute_Positive_AccessedBy_Partial_Range", "Unit_hipMemRangeGetAttributes_Negative_Parameters", diff --git a/projects/hip-tests/catch/hipTestMain/config/config_amd_windows_common.json b/projects/hip-tests/catch/hipTestMain/config/config_amd_windows_common.json index 311d6ee70a..6b7c976792 100644 --- a/projects/hip-tests/catch/hipTestMain/config/config_amd_windows_common.json +++ b/projects/hip-tests/catch/hipTestMain/config/config_amd_windows_common.json @@ -109,6 +109,9 @@ "Unit_hipGraphDestroyNode_Complx_ChkNumOfNodesNDep_ClonedGrph", "Unit_hipGraphDestroyNode_Complx_ChkNumOfNodesNDep_ChldNode", "Unit_hipMemGetAddressRange_Negative", + "NOTE: The following 2 tests are disabled due to defect - EXSWHTEC-238", + "Unit_hipDrvMemcpy3D_Positive_Array", + "Unit_hipDrvMemcpy3DAsync_Positive_Array", "Unit_hipMemGetAddressRange_Positive", "Note: devicelib hangs and failures", "Unit_deviceAllocation_Malloc_PerThread_PrimitiveDataType", diff --git a/projects/hip-tests/catch/include/memcpy3d_tests_common.hh b/projects/hip-tests/catch/include/memcpy3d_tests_common.hh index eff00712ce..49f09c1e50 100644 --- a/projects/hip-tests/catch/include/memcpy3d_tests_common.hh +++ b/projects/hip-tests/catch/include/memcpy3d_tests_common.hh @@ -582,4 +582,219 @@ void Memcpy3DZeroWidthHeightDepth(F memcpy_func, const hipStream_t stream = null } ArrayFindIfNot(dst_alloc.ptr(), static_cast(42), alloc_size); } +} + +constexpr auto MemTypeHost() { +#if HT_AMD + return hipMemoryTypeHost; +#else + return CU_MEMORYTYPE_HOST; +#endif +} + +constexpr auto MemTypeDevice() { +#if HT_AMD + return hipMemoryTypeDevice; +#else + return CU_MEMORYTYPE_DEVICE; +#endif +} + +constexpr auto MemTypeArray() { +#if HT_AMD + return hipMemoryTypeArray; +#else + return CU_MEMORYTYPE_ARRAY; +#endif +} + +constexpr auto MemTypeUnified() { +#if HT_AMD + return hipMemoryTypeUnified; +#else + return CU_MEMORYTYPE_UNIFIED; +#endif +} + +using DrvPtrVariant = std::variant; + +template +hipError_t DrvMemcpy3DWrapper(DrvPtrVariant dst_ptr, hipPos dst_pos, DrvPtrVariant src_ptr, + hipPos src_pos, hipExtent extent, hipMemcpyKind kind, + hipStream_t stream = nullptr) { + HIP_MEMCPY3D parms = {0}; + + if (std::holds_alternative(dst_ptr)) { + parms.dstMemoryType = MemTypeArray(); + parms.dstArray = std::get(dst_ptr); + } else { + auto ptr = std::get(dst_ptr); + parms.dstPitch = ptr.pitch; + switch (kind) { + case hipMemcpyDeviceToHost: + case hipMemcpyHostToHost: + parms.dstMemoryType = MemTypeHost(); + parms.dstHost = ptr.ptr; + break; + case hipMemcpyDeviceToDevice: + case hipMemcpyHostToDevice: + parms.dstMemoryType = MemTypeDevice(); + parms.dstDevice = reinterpret_cast(ptr.ptr); + break; + case hipMemcpyDefault: + parms.dstMemoryType = MemTypeUnified(); + parms.dstDevice = reinterpret_cast(ptr.ptr); + break; + default: + assert(false); + } + } + + if (std::holds_alternative(src_ptr)) { + parms.srcMemoryType = MemTypeArray(); + parms.srcArray = std::get(src_ptr); + } else { + auto ptr = std::get(src_ptr); + parms.srcPitch = ptr.pitch; + switch (kind) { + case hipMemcpyDeviceToHost: + case hipMemcpyDeviceToDevice: + parms.srcMemoryType = MemTypeDevice(); + parms.srcDevice = reinterpret_cast(ptr.ptr); + break; + case hipMemcpyHostToDevice: + case hipMemcpyHostToHost: + parms.srcMemoryType = MemTypeHost(); + parms.srcHost = ptr.ptr; + break; + case hipMemcpyDefault: + parms.srcMemoryType = MemTypeUnified(); + parms.srcDevice = reinterpret_cast(ptr.ptr); + break; + default: + assert(false); + } + } + + parms.WidthInBytes = extent.width; + parms.Height = extent.height; + parms.Depth = extent.depth; + parms.srcXInBytes = src_pos.x; + parms.srcY = src_pos.y; + parms.srcZ = src_pos.z; + parms.dstXInBytes = dst_pos.x; + parms.dstY = dst_pos.y; + parms.dstZ = dst_pos.z; + + if constexpr (async) { + return hipDrvMemcpy3DAsync(&parms, stream); + } else { + return hipDrvMemcpy3D(&parms); + } +} + +template +void DrvMemcpy3DArrayHostShell(F memcpy_func, const hipStream_t kernel_stream = nullptr) { + constexpr hipExtent extent{127 * sizeof(int), 128, 8}; + + LinearAllocGuard src_host(LinearAllocs::hipHostMalloc, + extent.width * extent.height * extent.depth); + LinearAllocGuard dst_host(LinearAllocs::hipHostMalloc, + extent.width * extent.height * extent.depth); + + DrvArrayAllocGuard src_array(extent); + DrvArrayAllocGuard dst_array(extent); + + const auto f = [extent](size_t x, size_t y, size_t z) { + constexpr auto width_logical = extent.width / sizeof(int); + return z * width_logical * extent.height + y * width_logical + x; + }; + PitchedMemorySet(src_host.ptr(), extent.width, extent.width / sizeof(int), extent.height, + extent.depth, f); + + // Host -> Array + HIP_CHECK( + memcpy_func(src_array.ptr(), make_hipPos(0, 0, 0), + make_hipPitchedPtr(src_host.ptr(), extent.width, extent.width, extent.height), + make_hipPos(0, 0, 0), extent, hipMemcpyHostToDevice, kernel_stream)); + if constexpr (should_synchronize) { + HIP_CHECK(hipStreamSynchronize(kernel_stream)); + } + + // Array -> Array + HIP_CHECK(memcpy_func(dst_array.ptr(), make_hipPos(0, 0, 0), src_array.ptr(), + make_hipPos(0, 0, 0), extent, hipMemcpyDeviceToDevice, kernel_stream)); + if constexpr (should_synchronize) { + HIP_CHECK(hipStreamSynchronize(kernel_stream)); + } + + // Array -> Host + HIP_CHECK( + memcpy_func(make_hipPitchedPtr(dst_host.ptr(), extent.width, extent.width, extent.height), + make_hipPos(0, 0, 0), dst_array.ptr(), make_hipPos(0, 0, 0), extent, + hipMemcpyDeviceToHost, kernel_stream)); + if constexpr (should_synchronize) { + HIP_CHECK(hipStreamSynchronize(kernel_stream)); + } + + PitchedMemoryVerify(dst_host.ptr(), extent.width, extent.width / sizeof(int), extent.height, + extent.depth, f); +} + +template +void DrvMemcpy3DArrayDeviceShell(F memcpy_func, const hipStream_t kernel_stream = nullptr) { + constexpr hipExtent extent{127 * sizeof(int), 128, 8}; + + LinearAllocGuard host_alloc(LinearAllocs::hipHostMalloc, + extent.width * extent.height * extent.depth); + + DrvArrayAllocGuard src_array(extent); + DrvArrayAllocGuard dst_array(extent); + + LinearAllocGuard3D src_device(extent); + LinearAllocGuard3D dst_device(extent); + + const dim3 threads_per_block(32, 32); + const dim3 blocks(src_device.width_logical() / threads_per_block.x + 1, + src_device.height() / threads_per_block.y + 1, src_device.depth()); + Iota<<>>(src_device.ptr(), src_device.pitch(), + src_device.width_logical(), src_device.height(), + src_device.depth()); + HIP_CHECK(hipGetLastError()); + + // Device -> Array + HIP_CHECK(memcpy_func(src_array.ptr(), make_hipPos(0, 0, 0), src_device.pitched_ptr(), + make_hipPos(0, 0, 0), extent, hipMemcpyDeviceToDevice, kernel_stream)); + if constexpr (should_synchronize) { + HIP_CHECK(hipStreamSynchronize(kernel_stream)); + } + + // Array -> Array + HIP_CHECK(memcpy_func(dst_array.ptr(), make_hipPos(0, 0, 0), src_array.ptr(), + make_hipPos(0, 0, 0), extent, hipMemcpyDeviceToDevice, kernel_stream)); + if constexpr (should_synchronize) { + HIP_CHECK(hipStreamSynchronize(kernel_stream)); + } + + // Array -> Device + HIP_CHECK(memcpy_func(dst_device.pitched_ptr(), make_hipPos(0, 0, 0), dst_array.ptr(), + make_hipPos(0, 0, 0), extent, hipMemcpyDeviceToDevice, kernel_stream)); + if constexpr (should_synchronize) { + HIP_CHECK(hipStreamSynchronize(kernel_stream)); + } + + HIP_CHECK( + memcpy_func(make_hipPitchedPtr(host_alloc.ptr(), extent.width, extent.width, extent.height), + make_hipPos(0, 0, 0), dst_device.pitched_ptr(), make_hipPos(0, 0, 0), + dst_device.extent(), hipMemcpyDeviceToHost, kernel_stream)); + if constexpr (should_synchronize) { + HIP_CHECK(hipStreamSynchronize(kernel_stream)); + } + + const auto f = [extent](size_t x, size_t y, size_t z) { + constexpr auto width_logical = extent.width / sizeof(int); + return z * width_logical * extent.height + y * width_logical + x; + }; + PitchedMemoryVerify(host_alloc.ptr(), extent.width, extent.width / sizeof(int), extent.height, + extent.depth, f); } \ No newline at end of file diff --git a/projects/hip-tests/catch/unit/memory/CMakeLists.txt b/projects/hip-tests/catch/unit/memory/CMakeLists.txt index 585f749fed..f09f0579f4 100644 --- a/projects/hip-tests/catch/unit/memory/CMakeLists.txt +++ b/projects/hip-tests/catch/unit/memory/CMakeLists.txt @@ -92,7 +92,9 @@ set(TEST_SRC hipArrayCreate.cc hipArray3DCreate.cc hipDrvMemcpy3D.cc + hipDrvMemcpy3D_old.cc hipDrvMemcpy3DAsync.cc + hipDrvMemcpy3DAsync_old.cc hipPointerGetAttribute.cc hipDrvPtrGetAttributes.cc hipMemPrefetchAsync.cc diff --git a/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3D.cc b/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3D.cc index 0b524655a9..beed5b3ba8 100644 --- a/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3D.cc +++ b/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3D.cc @@ -1,13 +1,16 @@ /* Copyright (c) 2022 Advanced Micro Devices, Inc. All rights reserved. + Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: + The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. + THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE @@ -16,558 +19,209 @@ LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */ -/* - * Test Scenarios - * 1. Verifying hipDrvMemcpy3D API for H2A,A2A,A2H scenarios - * 2. Verifying hipDrvMemcpy3D API for H2D,D2D,D2H scenarios - * 3. Verifying Negative Scenarios - * 4. Verifying Extent validation scenarios by passing 0 - * 5. Verifying hipDrvMemcpy3D API by allocating Memory in - * one GPU and trigger hipDrvMemcpy3D from peer GPU for - * H2D,D2D,D2H scenarios - * 6. Verifying hipDrvMemcpy3D API by allocating Memory in - * one GPU and trigger hipDrvMemcpy3D from peer GPU for - * H2A,A2A,A2H scenarios - * - * Scenarios 3 is temporarily suspended on AMD - * Scenario 5&6 are not supported in CUDA platform - */ -#include "hip_test_common.hh" -#include "hip_test_checkers.hh" +#include +#include -template -class DrvMemcpy3D { - int width, height, depth; - unsigned int size; - hipArray_Format formatKind; - hiparray arr, arr1; - size_t pitch_D, pitch_E; - HIP_MEMCPY3D myparms; - hipDeviceptr_t D_m, E_m; - T* hData{nullptr}; - public: - DrvMemcpy3D(int l_width, int l_height, int l_depth, - hipArray_Format l_format); - DrvMemcpy3D() = delete; - void AllocateMemory(); - void SetDefaultData(); - void HostArray_DrvMemcpy3D(bool device_context_change = false); - void HostDevice_DrvMemcpy3D(bool device_context_change = false); - void Extent_Validation(); - void NegativeTests(); - void DeAllocateMemory(); -}; +#include +#include +#include +#include -/* Intializes class variables */ -template -DrvMemcpy3D::DrvMemcpy3D(int l_width, int l_height, int l_depth, - hipArray_Format l_format) { - width = l_width; - height = l_height; - depth = l_depth; - formatKind = l_format; -} +TEST_CASE("Unit_hipDrvMemcpy3D_Positive_Basic") { + constexpr bool async = false; -/* Allocating Memory */ -template -void DrvMemcpy3D::AllocateMemory() { - size = width * height * depth * sizeof(T); - hData = reinterpret_cast(malloc(size)); - memset(hData, 0, size); - for (int i = 0; i < depth; i++) { - for (int j = 0; j < height; j++) { - for (int k = 0; k < width; k++) { - hData[i*width*height + j*width +k] = i*width*height + j*width + k; - } +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-236 + SECTION("Device to Host") { Memcpy3DDeviceToHostShell(DrvMemcpy3DWrapper<>); } +#endif + + SECTION("Device to Device") { + SECTION("Peer access disabled") { + Memcpy3DDeviceToDeviceShell(DrvMemcpy3DWrapper<>); + } + SECTION("Peer access enabled") { + Memcpy3DDeviceToDeviceShell(DrvMemcpy3DWrapper<>); } } - HIP_CHECK(hipMallocPitch(reinterpret_cast(&D_m), - &pitch_D, width*sizeof(T), height)); - HIP_CHECK(hipMallocPitch(reinterpret_cast(&E_m), - &pitch_E, width*sizeof(T), height)); - HIP_ARRAY3D_DESCRIPTOR *desc; - desc = reinterpret_cast - (malloc(sizeof(HIP_ARRAY3D_DESCRIPTOR))); - desc->Format = formatKind; - desc->NumChannels = 1; - desc->Width = width; - desc->Height = height; - desc->Depth = depth; - desc->Flags = hipArrayDefault; - HIP_CHECK(hipArray3DCreate(&arr, desc)); - HIP_CHECK(hipArray3DCreate(&arr1, desc)); + + SECTION("Host to Device") { Memcpy3DHostToDeviceShell(DrvMemcpy3DWrapper<>); } + +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-236 + SECTION("Host to Host") { Memcpy3DHostToHostShell(DrvMemcpy3DWrapper<>); } +#endif } -/* Setting the default data */ -template -void DrvMemcpy3D::SetDefaultData() { - memset(&myparms, 0x0, sizeof(HIP_MEMCPY3D)); - myparms.srcXInBytes = 0; - myparms.srcY = 0; - myparms.srcZ = 0; - myparms.srcLOD = 0; - myparms.dstXInBytes = 0; - myparms.dstY = 0; - myparms.dstZ = 0; - myparms.dstLOD = 0; - myparms.WidthInBytes = width*sizeof(T); - myparms.Height = height; - myparms.Depth = depth; +TEST_CASE("Unit_hipDrvMemcpy3D_Positive_Synchronization_Behavior") { + HIP_CHECK(hipDeviceSynchronize()); + + SECTION("Host to Device") { Memcpy3DHtoDSyncBehavior(DrvMemcpy3DWrapper<>, true); } + + SECTION("Device to Pageable Host") { + Memcpy3DDtoHPageableSyncBehavior(DrvMemcpy3DWrapper<>, true); + } + +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-236 + SECTION("Device to Pinned Host") { Memcpy3DDtoHPinnedSyncBehavior(DrvMemcpy3DWrapper<>, true); } +#endif + + SECTION("Device to Device") { +#if HT_NVIDIA + Memcpy3DDtoDSyncBehavior(DrvMemcpy3DWrapper<>, false); +#else + Memcpy3DDtoDSyncBehavior(DrvMemcpy3DWrapper<>, true); +#endif + } + +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-232 + SECTION("Host to Host") { Memcpy3DHtoHSyncBehavior(DrvMemcpy3DWrapper<>, true); } +#endif } -/* -This function verifies the negative scenarios of -hipDrvMemcpy3D API -*/ -template -void DrvMemcpy3D::NegativeTests() { - HIP_CHECK(hipSetDevice(0)); - AllocateMemory(); - SetDefaultData(); - int deviceId; - HIP_CHECK(hipGetDevice(&deviceId)); - unsigned int MaxPitch; - HIP_CHECK(hipDeviceGetAttribute(reinterpret_cast(&MaxPitch), - hipDeviceAttributeMaxPitch, deviceId)); - myparms.srcHost = hData; - myparms.dstArray = arr; - myparms.srcPitch = width * sizeof(T); - myparms.srcHeight = height; -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_HOST; - myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; -#else - myparms.srcMemoryType = hipMemoryTypeHost; - myparms.dstMemoryType = hipMemoryTypeArray; -#endif - - SECTION("Passing nullptr to Source Host") { - myparms.srcHost = nullptr; - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("Passing both dst host and device") { - myparms.dstHost = hData; - myparms.dstArray = nullptr; - myparms.dstDevice = D_m; - myparms.WidthInBytes = pitch_D; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("Passing max value to WidthInBytes") { - myparms.WidthInBytes = std::numeric_limits::max(); - myparms.Height = std::numeric_limits::max(); - myparms.Depth = std::numeric_limits::max(); - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("Passing width > max width size") { - myparms.WidthInBytes = width*sizeof(T) + 1; - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("Passing height > max height size") { - myparms.Height = height + 1; - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("Passing depth > max depth size") { - myparms.Depth = depth + 1; - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("widthinbytes + srcXinBytes is out of bound") { - myparms.srcXInBytes = 1; - myparms.dstArray = nullptr; - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("widthinbytes + dstXinBytes is out of bound") { - myparms.dstXInBytes = pitch_D; - myparms.dstArray = nullptr; - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("srcY + height is out of bound") { - myparms.srcY = 1; - myparms.dstArray = nullptr; - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("dstY + height out of bounds") { - myparms.dstY = 1; - myparms.dstArray = nullptr; - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("src pitch greater than Max allowed pitch") { -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; - myparms.dstMemoryType = CU_MEMORYTYPE_HOST; -#else - myparms.srcMemoryType = hipMemoryTypeDevice; - myparms.dstMemoryType = hipMemoryTypeHost; -#endif - myparms.srcDevice = D_m; - myparms.srcHost = nullptr; - myparms.srcPitch = MaxPitch; - myparms.srcHeight = height; - myparms.dstHost = hData; - myparms.dstArray = nullptr; - myparms.dstPitch = width*sizeof(T); - myparms.dstHeight = height; - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("dst pitch greater than Max allowed pitch") { - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstArray = nullptr; - myparms.dstPitch = MaxPitch+1; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("Nullptr to src/dst device") { - myparms.dstDevice = hipDeviceptr_t(nullptr); - myparms.dstArray = nullptr; - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("Nullptr to src/dst array") { - myparms.dstArray = nullptr; - REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); - } - - SECTION("Nullptr to hipDrvMemcpy3D") { - REQUIRE(hipDrvMemcpy3D(nullptr) != hipSuccess); - } - - DeAllocateMemory(); +TEST_CASE("Unit_hipDrvMemcpy3D_Positive_Parameters") { + constexpr bool async = false; + Memcpy3DZeroWidthHeightDepth(DrvMemcpy3DWrapper); } -/* -This function verifies the Extent validation scenarios of -hipDrvMemcpy3D API -*/ -template -void DrvMemcpy3D::Extent_Validation() { - HIP_CHECK(hipSetDevice(0)); - // Allocating the memory - AllocateMemory(); - // Setting default data - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_HOST; - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.srcMemoryType = hipMemoryTypeHost; - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - myparms.srcHost = hData; - myparms.srcPitch = width * sizeof(T); - myparms.srcHeight = height; - myparms.dstDevice = D_m; - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; - - SECTION("WidthInBytes is 0") { - myparms.WidthInBytes = 0; - HIP_CHECK(hipDrvMemcpy3D(&myparms)); - } - - SECTION("Height is 0") { - myparms.Height = 0; - HIP_CHECK(hipDrvMemcpy3D(&myparms)); - } - - SECTION("Depth is 0") { - myparms.Depth = 0; - HIP_CHECK(hipDrvMemcpy3D(&myparms)); - } - - DeAllocateMemory(); +// Disabled on AMD due to defect - EXSWHTEC-238 +TEST_CASE("Unit_hipDrvMemcpy3D_Positive_Array") { + constexpr bool async = false; + SECTION("Array from/to Host") { DrvMemcpy3DArrayHostShell(DrvMemcpy3DWrapper); } + SECTION("Array from/to Device") { DrvMemcpy3DArrayDeviceShell(DrvMemcpy3DWrapper); } } -/* -This Function verifies following functionalities of hipDrvMemcpy3D API -1. Host to Device copy -2. Device to Device -3. Device to Host -In the end validates the results. -This functionality is verified in 2 scenarios -1. Basic scenario on same GPU device -2. Device context change scenario where memory is allocated in 1 GPU - and hipDrvMemcpy3D API is trigerred from another GPU -*/ -template -void DrvMemcpy3D::HostDevice_DrvMemcpy3D(bool device_context_change) { - HIP_CHECK(hipSetDevice(0)); - bool skip_test = false; - int peerAccess = 0; - AllocateMemory(); - if (device_context_change) { - HIP_CHECK(hipDeviceCanAccessPeer(&peerAccess, 0, 1)); - if (!peerAccess) { - WARN("skipped the testcase as no peer access"); - skip_test = true; - } else { - HIP_CHECK(hipSetDevice(1)); +TEST_CASE("Unit_hipDrvMemcpy3D_Negative_Parameters") { + constexpr hipExtent extent{128 * sizeof(int), 128, 8}; + + constexpr auto NegativeTests = [](hipPitchedPtr dst_ptr, hipPos dst_pos, hipPitchedPtr src_ptr, + hipPos src_pos, hipExtent extent, hipMemcpyKind kind) { + SECTION("dst_ptr.ptr == nullptr") { + hipPitchedPtr invalid_ptr = dst_ptr; + invalid_ptr.ptr = nullptr; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); } - } - if (!skip_test) { - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_HOST; - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.srcMemoryType = hipMemoryTypeHost; - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - myparms.srcHost = hData; - myparms.srcPitch = width * sizeof(T); - myparms.srcHeight = height; - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; - HIP_CHECK(hipDrvMemcpy3D(&myparms)); - // Device to Device - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.srcMemoryType = hipMemoryTypeDevice; - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - myparms.srcDevice = hipDeviceptr_t(D_m); - myparms.srcPitch = pitch_D; - myparms.srcHeight = height; - myparms.dstDevice = hipDeviceptr_t(E_m); - myparms.dstPitch = pitch_E; - myparms.dstHeight = height; - HIP_CHECK(hipDrvMemcpy3D(&myparms)); - T *hOutputData = reinterpret_cast(malloc(size)); - memset(hOutputData, 0, size); - - // Device to host - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; - myparms.dstMemoryType = CU_MEMORYTYPE_HOST; -#else - myparms.srcMemoryType = hipMemoryTypeDevice; - myparms.dstMemoryType = hipMemoryTypeHost; -#endif - myparms.srcDevice = hipDeviceptr_t(E_m); - myparms.srcPitch = pitch_E; - myparms.srcHeight = height; - myparms.dstHost = hOutputData; - myparms.dstPitch = width * sizeof(T); - myparms.dstHeight = height; - HIP_CHECK(hipDrvMemcpy3D(&myparms)); - - HipTest::checkArray(hData, hOutputData, width, height, depth); - free(hOutputData); - } - DeAllocateMemory(); -} - -/* -This Function verifies following functionalities of hipDrvMemcpy3D API -1. Host to Array copy -2. Array to Array -3. Array to Host -In the end validates the results. - -This functionality is verified in 2 scenarios -1. Basic scenario on same GPU device -2. Device context change scenario where memory is allocated in 1 GPU - and hipDrvMemcpy3D API is trigerred from another GPU -*/ -template -void DrvMemcpy3D::HostArray_DrvMemcpy3D(bool device_context_change) { - HIP_CHECK(hipSetDevice(0)); - bool skip_test = false; - int peerAccess = 0; - AllocateMemory(); - if (device_context_change) { - HIP_CHECK(hipDeviceCanAccessPeer(&peerAccess, 0, 1)); - if (!peerAccess) { - WARN("skipped the testcase as no peer access"); - skip_test = true; - } else { - HIP_CHECK(hipSetDevice(1)); + SECTION("src_ptr.ptr == nullptr") { + hipPitchedPtr invalid_ptr = src_ptr; + invalid_ptr.ptr = nullptr; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind), + hipErrorInvalidValue); } - } - if (!skip_test) { - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_HOST; - myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; -#else - myparms.srcMemoryType = hipMemoryTypeHost; - myparms.dstMemoryType = hipMemoryTypeArray; -#endif - myparms.srcHost = hData; - myparms.srcPitch = width * sizeof(T); - myparms.srcHeight = height; - myparms.dstArray = arr; - HIP_CHECK(hipDrvMemcpy3D(&myparms)); - // Array to Array - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_ARRAY; - myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; -#else - myparms.srcMemoryType = hipMemoryTypeArray; - myparms.dstMemoryType = hipMemoryTypeArray; -#endif - myparms.srcArray = arr; - myparms.dstArray = arr1; - HIP_CHECK(hipDrvMemcpy3D(&myparms)); - T *hOutputData = reinterpret_cast(malloc(size)); - memset(hOutputData, 0, size); - SetDefaultData(); - // Device to host -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_ARRAY; - myparms.dstMemoryType = CU_MEMORYTYPE_HOST; -#else - myparms.srcMemoryType = hipMemoryTypeArray; - myparms.dstMemoryType = hipMemoryTypeHost; -#endif - myparms.srcArray = arr1; - myparms.dstHost = hOutputData; - myparms.dstPitch = width * sizeof(T); - myparms.dstHeight = height; - HIP_CHECK(hipDrvMemcpy3D(&myparms)); - HipTest::checkArray(hData, hOutputData, width, height, depth); - free(hOutputData); - } - DeAllocateMemory(); -} -/* DeAllocating the memory */ -template -void DrvMemcpy3D::DeAllocateMemory() { - HIP_CHECK(hipArrayDestroy(arr)); - HIP_CHECK(hipArrayDestroy(arr1)); - free(hData); -} - -/* Verifying hipDrvMemcpy3D API Host to Array for different datatypes */ -TEMPLATE_TEST_CASE("Unit_hipDrvMemcpy3D_MultipleDataTypes", "", - uint8_t, int, float) { - for (int i = 1; i < 25; i++) { - if (std::is_same::value) { - DrvMemcpy3D memcpy3d_float(i, i, i, HIP_AD_FORMAT_FLOAT); - memcpy3d_float.HostArray_DrvMemcpy3D(); - } else if (std::is_same::value) { - DrvMemcpy3D memcpy3d_intx(i, i, i, HIP_AD_FORMAT_UNSIGNED_INT8); - memcpy3d_intx.HostArray_DrvMemcpy3D(); - } else if (std::is_same::value) { - DrvMemcpy3D memcpy3d_inty(i, i, i, HIP_AD_FORMAT_SIGNED_INT32); - memcpy3d_inty.HostArray_DrvMemcpy3D(); + SECTION("dst_ptr.pitch < width") { + hipPitchedPtr invalid_ptr = dst_ptr; + invalid_ptr.pitch = extent.width - 1; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); } - } -} -/* This testcase verifies H2D copy of hipDrvMemcpy3D API */ -TEST_CASE("Unit_hipDrvMemcpy3D_HosttoDevice") { - DrvMemcpy3D memcpy3d_D2H_float(10, 10, 1, HIP_AD_FORMAT_FLOAT); - memcpy3d_D2H_float.HostDevice_DrvMemcpy3D(); -} + SECTION("src_ptr.pitch < width") { + hipPitchedPtr invalid_ptr = src_ptr; + invalid_ptr.pitch = extent.width - 1; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } -/* This testcase verifies negative scenarios of hipDrvMemcpy3D API */ -#if HT_NVIDIA -TEST_CASE("Unit_hipDrvMemcpy3D_Negative") { - DrvMemcpy3D memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); - memcpy3d.NegativeTests(); -} + SECTION("dst_ptr.pitch > max pitch") { + int attr = 0; + HIP_CHECK(hipDeviceGetAttribute(&attr, hipDeviceAttributeMaxPitch, 0)); + hipPitchedPtr invalid_ptr = dst_ptr; + invalid_ptr.pitch = attr; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("src_ptr.pitch > max pitch") { + int attr = 0; + HIP_CHECK(hipDeviceGetAttribute(&attr, hipDeviceAttributeMaxPitch, 0)); + hipPitchedPtr invalid_ptr = src_ptr; + invalid_ptr.pitch = attr; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } + +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-237 + SECTION("extent.width + dst_pos.x > dst_ptr.pitch") { + hipPos invalid_pos = dst_pos; + invalid_pos.x = dst_ptr.pitch - extent.width + 1; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("extent.width + src_pos.x > src_ptr.pitch") { + hipPos invalid_pos = src_pos; + invalid_pos.x = src_ptr.pitch - extent.width + 1; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("dst_pos.y out of bounds") { + hipPos invalid_pos = dst_pos; + invalid_pos.y = 1; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("src_pos.y out of bounds") { + hipPos invalid_pos = src_pos; + invalid_pos.y = 1; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("dst_pos.z out of bounds") { + hipPos invalid_pos = dst_pos; + invalid_pos.z = 1; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("src_pos.z out of bounds") { + hipPos invalid_pos = src_pos; + invalid_pos.z = 1; + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind), + hipErrorInvalidValue); + } #endif + }; -/* This testcase verifies extent validation scenarios of hipDrvMemcpy3D API */ -TEST_CASE("Unit_hipDrvMemcpy3D_ExtentValidation") { - DrvMemcpy3D memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); - memcpy3d.Extent_Validation(); -} - -#if HT_AMD -/* This testcase verifies H2D copy in device context -change scenario for hipDrvMemcpy3D API */ -TEST_CASE("Unit_hipDrvMemcpy3D_H2DDeviceContextChange") { - int numDevices = 0; - HIP_CHECK(hipGetDeviceCount(&numDevices)); - if (numDevices > 1) { - DrvMemcpy3D memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); - memcpy3d.HostDevice_DrvMemcpy3D(true); - } else { - SUCCEED("skipped testcase as Device count is < 2"); + SECTION("Host to Device") { + LinearAllocGuard3D device_alloc(extent); + LinearAllocGuard host_alloc( + LinearAllocs::hipHostMalloc, + device_alloc.pitch() * device_alloc.height() * device_alloc.depth()); + NegativeTests(device_alloc.pitched_ptr(), make_hipPos(0, 0, 0), + make_hipPitchedPtr(host_alloc.ptr(), device_alloc.pitch(), device_alloc.width(), + device_alloc.height()), + make_hipPos(0, 0, 0), extent, hipMemcpyHostToDevice); } -} - -/* This testcase verifies Host to Array copy in device context -change scenario for hipDrvMemcpy3D API */ -TEST_CASE("Unit_hipDrvMemcpy3D_Host2ArrayDeviceContextChange") { - int numDevices = 0; - HIP_CHECK(hipGetDeviceCount(&numDevices)); - if (numDevices > 1) { - DrvMemcpy3D memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); - memcpy3d.HostArray_DrvMemcpy3D(true); - } else { - SUCCEED("skipped testcase as Device count is < 2"); + SECTION("Device to Host") { + LinearAllocGuard3D device_alloc(extent); + LinearAllocGuard host_alloc( + LinearAllocs::hipHostMalloc, + device_alloc.pitch() * device_alloc.height() * device_alloc.depth()); + NegativeTests(make_hipPitchedPtr(host_alloc.ptr(), device_alloc.pitch(), device_alloc.width(), + device_alloc.height()), + make_hipPos(0, 0, 0), device_alloc.pitched_ptr(), make_hipPos(0, 0, 0), extent, + hipMemcpyDeviceToHost); } -} -#endif + + SECTION("Host to Host") { + LinearAllocGuard src_alloc(LinearAllocs::hipHostMalloc, + extent.width * extent.height * extent.depth); + LinearAllocGuard dst_alloc(LinearAllocs::hipHostMalloc, + extent.width * extent.height * extent.depth); + NegativeTests(make_hipPitchedPtr(dst_alloc.ptr(), extent.width, extent.width, extent.height), + make_hipPos(0, 0, 0), + make_hipPitchedPtr(src_alloc.ptr(), extent.width, extent.width, extent.height), + make_hipPos(0, 0, 0), extent, hipMemcpyHostToHost); + } + + SECTION("Device to Device") { + LinearAllocGuard3D src_alloc(extent); + LinearAllocGuard3D dst_alloc(extent); + NegativeTests(dst_alloc.pitched_ptr(), make_hipPos(0, 0, 0), src_alloc.pitched_ptr(), + make_hipPos(0, 0, 0), extent, hipMemcpyDeviceToDevice); + } +} \ No newline at end of file diff --git a/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3DAsync.cc b/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3DAsync.cc index 9f81da6250..746fdcae6b 100644 --- a/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3DAsync.cc +++ b/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3DAsync.cc @@ -1,13 +1,16 @@ /* Copyright (c) 2022 Advanced Micro Devices, Inc. All rights reserved. + Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: + The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. + THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE @@ -16,579 +19,236 @@ LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */ -/* - * Test Scenarios - * 1. Verifying hipDrvMemcpy3DAsync API for H2A,A2A,A2H scenarios - * 2. Verifying hipDrvMemcpy3DAsync API for H2D,D2D,D2H scenarios - * 3. Verifying Negative Scenarios - * 4. Verifying Extent validation scenarios by passing 0 - * 5. Verifying hipDrvMemcpy3DAsync API by allocating Memory in - * one GPU and trigger hipDrvMemcpy3DAsync from peer GPU for - * H2D,D2D,D2H scenarios - * 6. Verifying hipDrvMemcpy3DAsync API by allocating Memory in - * one GPU and trigger hipDrvMemcpy3DAsync from peer GPU for - * H2A,A2A,A2H scenarios - * - * Scenarios 3 is temporarily excluded in AMD platform - * Scenario 5&6 are excluded in CUDA platform - */ -#include "hip_test_common.hh" -#include "hip_test_checkers.hh" +#include +#include -template -class DrvMemcpy3DAsync { - int width, height, depth; - unsigned int size; - hipArray_Format formatKind; - hiparray arr, arr1; - hipStream_t stream; - size_t pitch_D, pitch_E; - HIP_MEMCPY3D myparms; - hipDeviceptr_t D_m, E_m; - T* hData{nullptr}; - public: - DrvMemcpy3DAsync(int l_width, int l_height, int l_depth, - hipArray_Format l_format); - DrvMemcpy3DAsync() = delete; - void AllocateMemory(); - void SetDefaultData(); - void HostArray_DrvMemcpy3DAsync(bool device_context_change = false); - void HostDevice_DrvMemcpy3DAsync(bool device_context_change = false); - void Extent_Validation(); - void NegativeTests(); - void DeAllocateMemory(); -}; +#include +#include +#include +#include -/* Intializes class variables */ -template -DrvMemcpy3DAsync::DrvMemcpy3DAsync(int l_width, int l_height, int l_depth, - hipArray_Format l_format) { - width = l_width; - height = l_height; - depth = l_depth; - formatKind = l_format; -} +TEST_CASE("Unit_hipDrvMemcpy3DAsync_Positive_Basic") { + constexpr bool async = true; -/* Allocating Memory */ -template -void DrvMemcpy3DAsync::AllocateMemory() { - size = width * height * depth * sizeof(T); - hData = reinterpret_cast(malloc(size)); - memset(hData, 0, size); - for (int i = 0; i < depth; i++) { - for (int j = 0; j < height; j++) { - for (int k = 0; k < width; k++) { - hData[i*width*height + j*width +k] = i*width*height + j*width + k; - } + const auto stream_type = GENERATE(Streams::nullstream, Streams::perThread, Streams::created); + const StreamGuard stream_guard(stream_type); + const hipStream_t stream = stream_guard.stream(); + +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-236 + SECTION("Device to Host") { Memcpy3DDeviceToHostShell(DrvMemcpy3DWrapper, stream); } +#endif + + SECTION("Device to Device") { + SECTION("Peer access disabled") { + Memcpy3DDeviceToDeviceShell(DrvMemcpy3DWrapper, stream); + } + SECTION("Peer access enabled") { + Memcpy3DDeviceToDeviceShell(DrvMemcpy3DWrapper, stream); } } - HIP_CHECK(hipStreamCreate(&stream)); - HIP_CHECK(hipMallocPitch(reinterpret_cast(&D_m), - &pitch_D, width*sizeof(T), height)); - HIP_CHECK(hipMallocPitch(reinterpret_cast(&E_m), - &pitch_E, width*sizeof(T), height)); - HIP_ARRAY3D_DESCRIPTOR *desc; - desc = reinterpret_cast - (malloc(sizeof(HIP_ARRAY3D_DESCRIPTOR))); - desc->Format = formatKind; - desc->NumChannels = 1; - desc->Width = width; - desc->Height = height; - desc->Depth = depth; - desc->Flags = hipArrayDefault; - HIP_CHECK(hipArray3DCreate(&arr, desc)); - HIP_CHECK(hipArray3DCreate(&arr1, desc)); + + SECTION("Host to Device") { Memcpy3DHostToDeviceShell(DrvMemcpy3DWrapper, stream); } + +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-236 + SECTION("Host to Host") { Memcpy3DHostToHostShell(DrvMemcpy3DWrapper, stream); } +#endif } -/* Setting the default data */ -template -void DrvMemcpy3DAsync::SetDefaultData() { - memset(&myparms, 0x0, sizeof(HIP_MEMCPY3D)); - myparms.srcXInBytes = 0; - myparms.srcY = 0; - myparms.srcZ = 0; - myparms.srcLOD = 0; - myparms.dstXInBytes = 0; - myparms.dstY = 0; - myparms.dstZ = 0; - myparms.dstLOD = 0; - myparms.WidthInBytes = width*sizeof(T); - myparms.Height = height; - myparms.Depth = depth; +TEST_CASE("Unit_hipDrvMemcpy3DAsync_Positive_Synchronization_Behavior") { + constexpr bool async = true; + + HIP_CHECK(hipDeviceSynchronize()); + + SECTION("Host to Device") { Memcpy3DHtoDSyncBehavior(DrvMemcpy3DWrapper, false); } + +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-233 + SECTION("Device to Pageable Host") { + Memcpy3DDtoHPageableSyncBehavior(DrvMemcpy3DWrapper, true); + } +#endif + +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-236 + SECTION("Device to Pinned Host") { + Memcpy3DDtoHPinnedSyncBehavior(DrvMemcpy3DWrapper, false); + } +#endif + + SECTION("Device to Device") { Memcpy3DDtoDSyncBehavior(DrvMemcpy3DWrapper, false); } + +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-233 + SECTION("Host to Host") { Memcpy3DHtoHSyncBehavior(DrvMemcpy3DWrapper, true); } +#endif } -/* -This function verifies the negative scenarios of -hipDrvMemcpy3DAsync API -*/ -template -void DrvMemcpy3DAsync::NegativeTests() { - HIP_CHECK(hipSetDevice(0)); - AllocateMemory(); - SetDefaultData(); - int deviceId; - HIP_CHECK(hipGetDevice(&deviceId)); - unsigned int MaxPitch; - HIP_CHECK(hipDeviceGetAttribute(reinterpret_cast(&MaxPitch), - hipDeviceAttributeMaxPitch, deviceId)); - myparms.srcHost = hData; - myparms.dstArray = arr; - myparms.srcPitch = width * sizeof(T); - myparms.srcHeight = height; -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_HOST; - myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; -#else - myparms.srcMemoryType = hipMemoryTypeHost; - myparms.dstMemoryType = hipMemoryTypeArray; -#endif - - SECTION("Passing nullptr to Source Host") { - myparms.srcHost = nullptr; - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("Passing both dst host and device") { - myparms.dstHost = hData; - myparms.dstArray = nullptr; - myparms.dstDevice = D_m; - myparms.WidthInBytes = pitch_D; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("Passing max value to WidthInBytes") { - myparms.WidthInBytes = std::numeric_limits::max(); - myparms.Height = std::numeric_limits::max(); - myparms.Depth = std::numeric_limits::max(); - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("Passing width > max width size") { - myparms.WidthInBytes = width*sizeof(T) + 1; - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("Passing height > max height size") { - myparms.Height = height + 1; - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("Passing depth > max depth size") { - myparms.Depth = depth + 1; - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("widthinbytes + srcXinBytes is out of bound") { - myparms.srcXInBytes = 1; - myparms.dstArray = nullptr; - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("widthinbytes + dstXinBytes is out of bound") { - myparms.dstXInBytes = pitch_D; - myparms.dstArray = nullptr; - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("srcY + height is out of bound") { - myparms.srcY = 1; - myparms.dstArray = nullptr; - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("dstY + height out of bounds") { - myparms.dstY = 1; - myparms.dstArray = nullptr; - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("src pitch greater than Max allowed pitch") { -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; - myparms.dstMemoryType = CU_MEMORYTYPE_HOST; -#else - myparms.srcMemoryType = hipMemoryTypeDevice; - myparms.dstMemoryType = hipMemoryTypeHost; -#endif - myparms.srcDevice = D_m; - myparms.srcHost = nullptr; - myparms.srcPitch = MaxPitch; - myparms.srcHeight = height; - myparms.dstHost = hData; - myparms.dstArray = nullptr; - myparms.dstPitch = width*sizeof(T); - myparms.dstHeight = height; - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("dst pitch greater than Max allowed pitch") { - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstArray = nullptr; - myparms.dstPitch = MaxPitch+1; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("Nullptr to src/dst device") { - myparms.dstDevice = hipDeviceptr_t(nullptr); - myparms.dstArray = nullptr; - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; -#if HT_NVIDIA - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("Nullptr to src/dst array") { - myparms.dstArray = nullptr; - REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); - } - - SECTION("Nullptr to hipDrvMemcpy3DAsync") { - REQUIRE(hipDrvMemcpy3DAsync(nullptr, stream) != hipSuccess); - } - - DeAllocateMemory(); +TEST_CASE("Unit_hipDrvMemcpy3DAsync_Positive_Parameters") { + constexpr bool async = true; + Memcpy3DZeroWidthHeightDepth(DrvMemcpy3DWrapper); } -/* -This function verifies the Extent validation scenarios of -hipDrvMemcpy3DAsync API -*/ -template -void DrvMemcpy3DAsync::Extent_Validation() { - HIP_CHECK(hipSetDevice(0)); - // Allocating the memory - AllocateMemory(); - // Setting default data - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_HOST; - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.srcMemoryType = hipMemoryTypeHost; - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - myparms.srcHost = hData; - myparms.srcPitch = width * sizeof(T); - myparms.srcHeight = height; - myparms.dstDevice = D_m; - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; - - SECTION("WidthInBytes is 0") { - myparms.WidthInBytes = 0; - HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); - HIP_CHECK(hipStreamSynchronize(stream)); - } - - SECTION("Height is 0") { - myparms.Height = 0; - HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); - HIP_CHECK(hipStreamSynchronize(stream)); - } - - SECTION("Depth is 0") { - myparms.Depth = 0; - HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); - HIP_CHECK(hipStreamSynchronize(stream)); - } - - DeAllocateMemory(); +// Disabled on AMD due to defect - EXSWHTEC-238 +TEST_CASE("Unit_hipDrvMemcpy3DAsync_Positive_Array") { + constexpr bool async = true; + SECTION("Array from/to Host") { DrvMemcpy3DArrayHostShell(DrvMemcpy3DWrapper); } + SECTION("Array from/to Device") { DrvMemcpy3DArrayDeviceShell(DrvMemcpy3DWrapper); } } -/* -This Function verifies following functionalities of hipDrvMemcpy3DAsync API -1. Host to Device copy -2. Device to Device -3. Device to Host -In the end validates the results. -This functionality is verified in 2 scenarios -1. Basic scenario on same GPU device -2. Device context change scenario where memory is allocated in 1 GPU - and hipDrvMemcpy3DAsync API is trigerred from another GPU -*/ -template -void DrvMemcpy3DAsync::HostDevice_DrvMemcpy3DAsync - (bool device_context_change) { - HIP_CHECK(hipSetDevice(0)); - bool skip_test = false; - int peerAccess = 0; - AllocateMemory(); - if (device_context_change) { - HIP_CHECK(hipDeviceCanAccessPeer(&peerAccess, 0, 1)); - if (!peerAccess) { - WARN("skipped the testcase as no peer access"); - skip_test = true; - } else { - HIP_CHECK(hipSetDevice(1)); +TEST_CASE("Unit_hipDrvMemcpy3DAsync_Negative_Parameters") { + constexpr bool async = true; + constexpr hipExtent extent{128 * sizeof(int), 128, 8}; + + constexpr auto NegativeTests = [](hipPitchedPtr dst_ptr, hipPos dst_pos, hipPitchedPtr src_ptr, + hipPos src_pos, hipExtent extent, hipMemcpyKind kind) { + SECTION("dst_ptr.ptr == nullptr") { + hipPitchedPtr invalid_ptr = dst_ptr; + invalid_ptr.ptr = nullptr; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); } - } - if (!skip_test) { - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_HOST; - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.srcMemoryType = hipMemoryTypeHost; - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - myparms.srcHost = hData; - myparms.srcPitch = width * sizeof(T); - myparms.srcHeight = height; - myparms.dstDevice = hipDeviceptr_t(D_m); - myparms.dstPitch = pitch_D; - myparms.dstHeight = height; - HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); - HIP_CHECK(hipStreamSynchronize(stream)); - // Device to Device - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; - myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; -#else - myparms.srcMemoryType = hipMemoryTypeDevice; - myparms.dstMemoryType = hipMemoryTypeDevice; -#endif - myparms.srcDevice = hipDeviceptr_t(D_m); - myparms.srcPitch = pitch_D; - myparms.srcHeight = height; - myparms.dstDevice = hipDeviceptr_t(E_m); - myparms.dstPitch = pitch_E; - myparms.dstHeight = height; - HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); - HIP_CHECK(hipStreamSynchronize(stream)); - T *hOutputData = reinterpret_cast(malloc(size)); - memset(hOutputData, 0, size); - - // Device to host - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; - myparms.dstMemoryType = CU_MEMORYTYPE_HOST; -#else - myparms.srcMemoryType = hipMemoryTypeDevice; - myparms.dstMemoryType = hipMemoryTypeHost; -#endif - myparms.srcDevice = hipDeviceptr_t(E_m); - myparms.srcPitch = pitch_E; - myparms.srcHeight = height; - myparms.dstHost = hOutputData; - myparms.dstPitch = width * sizeof(T); - myparms.dstHeight = height; - HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); - HIP_CHECK(hipStreamSynchronize(stream)); - - HipTest::checkArray(hData, hOutputData, width, height, depth); - free(hOutputData); - } - DeAllocateMemory(); -} - -/* -This Function verifies following functionalities of hipDrvMemcpy3DAsync API -1. Host to Array copy -2. Array to Array -3. Array to Host -In the end validates the results. - -This functionality is verified in 2 scenarios -1. Basic scenario on same GPU device -2. Device context change scenario where memory is allocated in 1 GPU - and hipDrvMemcpy3DAsync API is trigerred from another GPU -*/ -template -void DrvMemcpy3DAsync::HostArray_DrvMemcpy3DAsync - (bool device_context_change) { - HIP_CHECK(hipSetDevice(0)); - bool skip_test = false; - int peerAccess = 0; - AllocateMemory(); - if (device_context_change) { - HIP_CHECK(hipDeviceCanAccessPeer(&peerAccess, 0, 1)); - if (!peerAccess) { - WARN("skipped the testcase as no peer access"); - skip_test = true; - } else { - HIP_CHECK(hipSetDevice(1)); + SECTION("src_ptr.ptr == nullptr") { + hipPitchedPtr invalid_ptr = src_ptr; + invalid_ptr.ptr = nullptr; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind), + hipErrorInvalidValue); } - } - if (!skip_test) { - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_HOST; - myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; -#else - myparms.srcMemoryType = hipMemoryTypeHost; - myparms.dstMemoryType = hipMemoryTypeArray; -#endif - myparms.srcHost = hData; - myparms.srcPitch = width * sizeof(T); - myparms.srcHeight = height; - myparms.dstArray = arr; - HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); - HIP_CHECK(hipStreamSynchronize(stream)); - // Array to Array - SetDefaultData(); -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_ARRAY; - myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; -#else - myparms.srcMemoryType = hipMemoryTypeArray; - myparms.dstMemoryType = hipMemoryTypeArray; -#endif - myparms.srcArray = arr; - myparms.dstArray = arr1; - HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); - HIP_CHECK(hipStreamSynchronize(stream)); - T *hOutputData = reinterpret_cast(malloc(size)); - memset(hOutputData, 0, size); - SetDefaultData(); - // Device to host -#if HT_NVIDIA - myparms.srcMemoryType = CU_MEMORYTYPE_ARRAY; - myparms.dstMemoryType = CU_MEMORYTYPE_HOST; -#else - myparms.srcMemoryType = hipMemoryTypeArray; - myparms.dstMemoryType = hipMemoryTypeHost; -#endif - myparms.srcArray = arr1; - myparms.dstHost = hOutputData; - myparms.dstPitch = width * sizeof(T); - myparms.dstHeight = height; - HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); - HIP_CHECK(hipStreamSynchronize(stream)); - HipTest::checkArray(hData, hOutputData, width, height, depth); - free(hOutputData); - } - DeAllocateMemory(); -} - -/* DeAllocating the memory */ -template -void DrvMemcpy3DAsync::DeAllocateMemory() { - HIP_CHECK(hipArrayDestroy(arr)); - HIP_CHECK(hipArrayDestroy(arr1)); - HIP_CHECK(hipStreamDestroy(stream)); - free(hData); -} - -/* Verifying hipDrvMemcpy3DAsync API Host to Array for different datatypes */ -TEMPLATE_TEST_CASE("Unit_hipDrvMemcpy3DAsync_MultipleDataTypes", "", - uint8_t, int, float) { - for (int i = 1; i < 25; i++) { - if (std::is_same::value) { - DrvMemcpy3DAsync memcpy3d_float(i, i, i, - HIP_AD_FORMAT_FLOAT); - memcpy3d_float.HostArray_DrvMemcpy3DAsync(); - } else if (std::is_same::value) { - DrvMemcpy3DAsync memcpy3d_intx(i, i, i, - HIP_AD_FORMAT_UNSIGNED_INT8); - memcpy3d_intx.HostArray_DrvMemcpy3DAsync(); - } else if (std::is_same::value) { - DrvMemcpy3DAsync memcpy3d_inty(i, i, i, - HIP_AD_FORMAT_SIGNED_INT32); - memcpy3d_inty.HostArray_DrvMemcpy3DAsync(); + SECTION("dst_ptr.pitch < width") { + hipPitchedPtr invalid_ptr = dst_ptr; + invalid_ptr.pitch = extent.width - 1; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); } - } -} -/* This testcase verifies H2D copy of hipDrvMemcpy3DAsync API */ -TEST_CASE("Unit_hipDrvMemcpy3DAsync_HosttoDevice") { - DrvMemcpy3DAsync memcpy3d_D2H_float(10, 10, 1, HIP_AD_FORMAT_FLOAT); - memcpy3d_D2H_float.HostDevice_DrvMemcpy3DAsync(); -} + SECTION("src_ptr.pitch < width") { + hipPitchedPtr invalid_ptr = src_ptr; + invalid_ptr.pitch = extent.width - 1; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } -/* This testcase verifies negative scenarios of hipDrvMemcpy3DAsync API */ -#if HT_NVIDIA -TEST_CASE("Unit_hipDrvMemcpy3DAsync_Negative") { - DrvMemcpy3DAsync memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); - memcpy3d.NegativeTests(); -} + SECTION("dst_ptr.pitch > max pitch") { + int attr = 0; + HIP_CHECK(hipDeviceGetAttribute(&attr, hipDeviceAttributeMaxPitch, 0)); + hipPitchedPtr invalid_ptr = dst_ptr; + invalid_ptr.pitch = attr; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("src_ptr.pitch > max pitch") { + int attr = 0; + HIP_CHECK(hipDeviceGetAttribute(&attr, hipDeviceAttributeMaxPitch, 0)); + hipPitchedPtr invalid_ptr = src_ptr; + invalid_ptr.pitch = attr; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } + +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-237 + SECTION("extent.width + dst_pos.x > dst_ptr.pitch") { + hipPos invalid_pos = dst_pos; + invalid_pos.x = dst_ptr.pitch - extent.width + 1; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("extent.width + src_pos.x > src_ptr.pitch") { + hipPos invalid_pos = src_pos; + invalid_pos.x = src_ptr.pitch - extent.width + 1; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("dst_pos.y out of bounds") { + hipPos invalid_pos = dst_pos; + invalid_pos.y = 1; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("src_pos.y out of bounds") { + hipPos invalid_pos = src_pos; + invalid_pos.y = 1; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("dst_pos.z out of bounds") { + hipPos invalid_pos = dst_pos; + invalid_pos.z = 1; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind), + hipErrorInvalidValue); + } + + SECTION("src_pos.z out of bounds") { + hipPos invalid_pos = src_pos; + invalid_pos.z = 1; + HIP_CHECK_ERROR( + DrvMemcpy3DWrapper(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind), + hipErrorInvalidValue); + } #endif -/* This testcase verifies extent validation scenarios of - hipDrvMemcpy3DAsync API */ -TEST_CASE("Unit_hipDrvMemcpy3DAsync_ExtentValidation") { - DrvMemcpy3DAsync memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); - memcpy3d.Extent_Validation(); -} - -/* This testcase verifies H2D copy in device context -change scenario for hipDrvMemcpy3DAsync API */ -#if HT_AMD -TEST_CASE("Unit_hipDrvMemcpy3DAsync_H2DDeviceContextChange") { - int numDevices = 0; - HIP_CHECK(hipGetDeviceCount(&numDevices)); - if (numDevices > 1) { - DrvMemcpy3DAsync memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); - memcpy3d.HostDevice_DrvMemcpy3DAsync(true); - } else { - SUCCEED("skipped testcase as Device count is < 2"); - } -} - - -/* This testcase verifies Host to Array copy in device context -change scenario for hipDrvMemcpy3DAsync API */ -TEST_CASE("Unit_hipDrvMemcpy3DAsync_Host2ArrayDeviceContextChange") { - int numDevices = 0; - HIP_CHECK(hipGetDeviceCount(&numDevices)); - if (numDevices > 1) { - DrvMemcpy3DAsync memcpy3d(10, 10, 10, HIP_AD_FORMAT_FLOAT); - memcpy3d.HostArray_DrvMemcpy3DAsync(true); - } else { - SUCCEED("skipped testcase as Device count is < 2"); - } -} +#if HT_NVIDIA // Disabled on AMD due to defect - EXSWHTEC-235 + SECTION("Invalid stream") { + StreamGuard stream_guard(Streams::created); + HIP_CHECK(hipStreamDestroy(stream_guard.stream())); + HIP_CHECK_ERROR(DrvMemcpy3DWrapper(dst_ptr, dst_pos, src_ptr, src_pos, extent, kind, + stream_guard.stream()), + hipErrorContextIsDestroyed); + } #endif + }; + SECTION("Host to Device") { + LinearAllocGuard3D device_alloc(extent); + LinearAllocGuard host_alloc( + LinearAllocs::hipHostMalloc, + device_alloc.pitch() * device_alloc.height() * device_alloc.depth()); + NegativeTests(device_alloc.pitched_ptr(), make_hipPos(0, 0, 0), + make_hipPitchedPtr(host_alloc.ptr(), device_alloc.pitch(), device_alloc.width(), + device_alloc.height()), + make_hipPos(0, 0, 0), extent, hipMemcpyHostToDevice); + } + SECTION("Device to Host") { + LinearAllocGuard3D device_alloc(extent); + LinearAllocGuard host_alloc( + LinearAllocs::hipHostMalloc, + device_alloc.pitch() * device_alloc.height() * device_alloc.depth()); + NegativeTests(make_hipPitchedPtr(host_alloc.ptr(), device_alloc.pitch(), device_alloc.width(), + device_alloc.height()), + make_hipPos(0, 0, 0), device_alloc.pitched_ptr(), make_hipPos(0, 0, 0), extent, + hipMemcpyDeviceToHost); + } + + SECTION("Host to Host") { + LinearAllocGuard src_alloc(LinearAllocs::hipHostMalloc, + extent.width * extent.height * extent.depth); + LinearAllocGuard dst_alloc(LinearAllocs::hipHostMalloc, + extent.width * extent.height * extent.depth); + NegativeTests(make_hipPitchedPtr(dst_alloc.ptr(), extent.width, extent.width, extent.height), + make_hipPos(0, 0, 0), + make_hipPitchedPtr(src_alloc.ptr(), extent.width, extent.width, extent.height), + make_hipPos(0, 0, 0), extent, hipMemcpyHostToHost); + } + + SECTION("Device to Device") { + LinearAllocGuard3D src_alloc(extent); + LinearAllocGuard3D dst_alloc(extent); + NegativeTests(dst_alloc.pitched_ptr(), make_hipPos(0, 0, 0), src_alloc.pitched_ptr(), + make_hipPos(0, 0, 0), extent, hipMemcpyDeviceToDevice); + } +} \ No newline at end of file diff --git a/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3DAsync_old.cc b/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3DAsync_old.cc new file mode 100644 index 0000000000..9f81da6250 --- /dev/null +++ b/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3DAsync_old.cc @@ -0,0 +1,594 @@ +/* +Copyright (c) 2022 Advanced Micro Devices, Inc. All rights reserved. +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: +The above copyright notice and this permission notice shall be included in +all copies or substantial portions of the Software. +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN +THE SOFTWARE. +*/ +/* + * Test Scenarios + * 1. Verifying hipDrvMemcpy3DAsync API for H2A,A2A,A2H scenarios + * 2. Verifying hipDrvMemcpy3DAsync API for H2D,D2D,D2H scenarios + * 3. Verifying Negative Scenarios + * 4. Verifying Extent validation scenarios by passing 0 + * 5. Verifying hipDrvMemcpy3DAsync API by allocating Memory in + * one GPU and trigger hipDrvMemcpy3DAsync from peer GPU for + * H2D,D2D,D2H scenarios + * 6. Verifying hipDrvMemcpy3DAsync API by allocating Memory in + * one GPU and trigger hipDrvMemcpy3DAsync from peer GPU for + * H2A,A2A,A2H scenarios + * + * Scenarios 3 is temporarily excluded in AMD platform + * Scenario 5&6 are excluded in CUDA platform + */ + +#include "hip_test_common.hh" +#include "hip_test_checkers.hh" + +template +class DrvMemcpy3DAsync { + int width, height, depth; + unsigned int size; + hipArray_Format formatKind; + hiparray arr, arr1; + hipStream_t stream; + size_t pitch_D, pitch_E; + HIP_MEMCPY3D myparms; + hipDeviceptr_t D_m, E_m; + T* hData{nullptr}; + public: + DrvMemcpy3DAsync(int l_width, int l_height, int l_depth, + hipArray_Format l_format); + DrvMemcpy3DAsync() = delete; + void AllocateMemory(); + void SetDefaultData(); + void HostArray_DrvMemcpy3DAsync(bool device_context_change = false); + void HostDevice_DrvMemcpy3DAsync(bool device_context_change = false); + void Extent_Validation(); + void NegativeTests(); + void DeAllocateMemory(); +}; + +/* Intializes class variables */ +template +DrvMemcpy3DAsync::DrvMemcpy3DAsync(int l_width, int l_height, int l_depth, + hipArray_Format l_format) { + width = l_width; + height = l_height; + depth = l_depth; + formatKind = l_format; +} + +/* Allocating Memory */ +template +void DrvMemcpy3DAsync::AllocateMemory() { + size = width * height * depth * sizeof(T); + hData = reinterpret_cast(malloc(size)); + memset(hData, 0, size); + for (int i = 0; i < depth; i++) { + for (int j = 0; j < height; j++) { + for (int k = 0; k < width; k++) { + hData[i*width*height + j*width +k] = i*width*height + j*width + k; + } + } + } + HIP_CHECK(hipStreamCreate(&stream)); + HIP_CHECK(hipMallocPitch(reinterpret_cast(&D_m), + &pitch_D, width*sizeof(T), height)); + HIP_CHECK(hipMallocPitch(reinterpret_cast(&E_m), + &pitch_E, width*sizeof(T), height)); + HIP_ARRAY3D_DESCRIPTOR *desc; + desc = reinterpret_cast + (malloc(sizeof(HIP_ARRAY3D_DESCRIPTOR))); + desc->Format = formatKind; + desc->NumChannels = 1; + desc->Width = width; + desc->Height = height; + desc->Depth = depth; + desc->Flags = hipArrayDefault; + HIP_CHECK(hipArray3DCreate(&arr, desc)); + HIP_CHECK(hipArray3DCreate(&arr1, desc)); +} + +/* Setting the default data */ +template +void DrvMemcpy3DAsync::SetDefaultData() { + memset(&myparms, 0x0, sizeof(HIP_MEMCPY3D)); + myparms.srcXInBytes = 0; + myparms.srcY = 0; + myparms.srcZ = 0; + myparms.srcLOD = 0; + myparms.dstXInBytes = 0; + myparms.dstY = 0; + myparms.dstZ = 0; + myparms.dstLOD = 0; + myparms.WidthInBytes = width*sizeof(T); + myparms.Height = height; + myparms.Depth = depth; +} + +/* +This function verifies the negative scenarios of +hipDrvMemcpy3DAsync API +*/ +template +void DrvMemcpy3DAsync::NegativeTests() { + HIP_CHECK(hipSetDevice(0)); + AllocateMemory(); + SetDefaultData(); + int deviceId; + HIP_CHECK(hipGetDevice(&deviceId)); + unsigned int MaxPitch; + HIP_CHECK(hipDeviceGetAttribute(reinterpret_cast(&MaxPitch), + hipDeviceAttributeMaxPitch, deviceId)); + myparms.srcHost = hData; + myparms.dstArray = arr; + myparms.srcPitch = width * sizeof(T); + myparms.srcHeight = height; +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_HOST; + myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; +#else + myparms.srcMemoryType = hipMemoryTypeHost; + myparms.dstMemoryType = hipMemoryTypeArray; +#endif + + SECTION("Passing nullptr to Source Host") { + myparms.srcHost = nullptr; + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("Passing both dst host and device") { + myparms.dstHost = hData; + myparms.dstArray = nullptr; + myparms.dstDevice = D_m; + myparms.WidthInBytes = pitch_D; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("Passing max value to WidthInBytes") { + myparms.WidthInBytes = std::numeric_limits::max(); + myparms.Height = std::numeric_limits::max(); + myparms.Depth = std::numeric_limits::max(); + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("Passing width > max width size") { + myparms.WidthInBytes = width*sizeof(T) + 1; + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("Passing height > max height size") { + myparms.Height = height + 1; + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("Passing depth > max depth size") { + myparms.Depth = depth + 1; + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("widthinbytes + srcXinBytes is out of bound") { + myparms.srcXInBytes = 1; + myparms.dstArray = nullptr; + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("widthinbytes + dstXinBytes is out of bound") { + myparms.dstXInBytes = pitch_D; + myparms.dstArray = nullptr; + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("srcY + height is out of bound") { + myparms.srcY = 1; + myparms.dstArray = nullptr; + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("dstY + height out of bounds") { + myparms.dstY = 1; + myparms.dstArray = nullptr; + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("src pitch greater than Max allowed pitch") { +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; + myparms.dstMemoryType = CU_MEMORYTYPE_HOST; +#else + myparms.srcMemoryType = hipMemoryTypeDevice; + myparms.dstMemoryType = hipMemoryTypeHost; +#endif + myparms.srcDevice = D_m; + myparms.srcHost = nullptr; + myparms.srcPitch = MaxPitch; + myparms.srcHeight = height; + myparms.dstHost = hData; + myparms.dstArray = nullptr; + myparms.dstPitch = width*sizeof(T); + myparms.dstHeight = height; + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("dst pitch greater than Max allowed pitch") { + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstArray = nullptr; + myparms.dstPitch = MaxPitch+1; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("Nullptr to src/dst device") { + myparms.dstDevice = hipDeviceptr_t(nullptr); + myparms.dstArray = nullptr; + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("Nullptr to src/dst array") { + myparms.dstArray = nullptr; + REQUIRE(hipDrvMemcpy3DAsync(&myparms, stream) != hipSuccess); + } + + SECTION("Nullptr to hipDrvMemcpy3DAsync") { + REQUIRE(hipDrvMemcpy3DAsync(nullptr, stream) != hipSuccess); + } + + DeAllocateMemory(); +} +/* +This function verifies the Extent validation scenarios of +hipDrvMemcpy3DAsync API +*/ +template +void DrvMemcpy3DAsync::Extent_Validation() { + HIP_CHECK(hipSetDevice(0)); + // Allocating the memory + AllocateMemory(); + + // Setting default data + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_HOST; + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.srcMemoryType = hipMemoryTypeHost; + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + myparms.srcHost = hData; + myparms.srcPitch = width * sizeof(T); + myparms.srcHeight = height; + myparms.dstDevice = D_m; + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; + + SECTION("WidthInBytes is 0") { + myparms.WidthInBytes = 0; + HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); + HIP_CHECK(hipStreamSynchronize(stream)); + } + + SECTION("Height is 0") { + myparms.Height = 0; + HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); + HIP_CHECK(hipStreamSynchronize(stream)); + } + + SECTION("Depth is 0") { + myparms.Depth = 0; + HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); + HIP_CHECK(hipStreamSynchronize(stream)); + } + + DeAllocateMemory(); +} +/* +This Function verifies following functionalities of hipDrvMemcpy3DAsync API +1. Host to Device copy +2. Device to Device +3. Device to Host +In the end validates the results. + +This functionality is verified in 2 scenarios +1. Basic scenario on same GPU device +2. Device context change scenario where memory is allocated in 1 GPU + and hipDrvMemcpy3DAsync API is trigerred from another GPU +*/ +template +void DrvMemcpy3DAsync::HostDevice_DrvMemcpy3DAsync + (bool device_context_change) { + HIP_CHECK(hipSetDevice(0)); + bool skip_test = false; + int peerAccess = 0; + AllocateMemory(); + if (device_context_change) { + HIP_CHECK(hipDeviceCanAccessPeer(&peerAccess, 0, 1)); + if (!peerAccess) { + WARN("skipped the testcase as no peer access"); + skip_test = true; + } else { + HIP_CHECK(hipSetDevice(1)); + } + } + if (!skip_test) { + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_HOST; + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.srcMemoryType = hipMemoryTypeHost; + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + myparms.srcHost = hData; + myparms.srcPitch = width * sizeof(T); + myparms.srcHeight = height; + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; + HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); + HIP_CHECK(hipStreamSynchronize(stream)); + + // Device to Device + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.srcMemoryType = hipMemoryTypeDevice; + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + myparms.srcDevice = hipDeviceptr_t(D_m); + myparms.srcPitch = pitch_D; + myparms.srcHeight = height; + myparms.dstDevice = hipDeviceptr_t(E_m); + myparms.dstPitch = pitch_E; + myparms.dstHeight = height; + HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); + HIP_CHECK(hipStreamSynchronize(stream)); + T *hOutputData = reinterpret_cast(malloc(size)); + memset(hOutputData, 0, size); + + // Device to host + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; + myparms.dstMemoryType = CU_MEMORYTYPE_HOST; +#else + myparms.srcMemoryType = hipMemoryTypeDevice; + myparms.dstMemoryType = hipMemoryTypeHost; +#endif + myparms.srcDevice = hipDeviceptr_t(E_m); + myparms.srcPitch = pitch_E; + myparms.srcHeight = height; + myparms.dstHost = hOutputData; + myparms.dstPitch = width * sizeof(T); + myparms.dstHeight = height; + HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); + HIP_CHECK(hipStreamSynchronize(stream)); + + HipTest::checkArray(hData, hOutputData, width, height, depth); + free(hOutputData); + } + DeAllocateMemory(); +} + +/* +This Function verifies following functionalities of hipDrvMemcpy3DAsync API +1. Host to Array copy +2. Array to Array +3. Array to Host +In the end validates the results. + +This functionality is verified in 2 scenarios +1. Basic scenario on same GPU device +2. Device context change scenario where memory is allocated in 1 GPU + and hipDrvMemcpy3DAsync API is trigerred from another GPU +*/ +template +void DrvMemcpy3DAsync::HostArray_DrvMemcpy3DAsync + (bool device_context_change) { + HIP_CHECK(hipSetDevice(0)); + bool skip_test = false; + int peerAccess = 0; + AllocateMemory(); + if (device_context_change) { + HIP_CHECK(hipDeviceCanAccessPeer(&peerAccess, 0, 1)); + if (!peerAccess) { + WARN("skipped the testcase as no peer access"); + skip_test = true; + } else { + HIP_CHECK(hipSetDevice(1)); + } + } + if (!skip_test) { + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_HOST; + myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; +#else + myparms.srcMemoryType = hipMemoryTypeHost; + myparms.dstMemoryType = hipMemoryTypeArray; +#endif + myparms.srcHost = hData; + myparms.srcPitch = width * sizeof(T); + myparms.srcHeight = height; + myparms.dstArray = arr; + HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); + HIP_CHECK(hipStreamSynchronize(stream)); + // Array to Array + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_ARRAY; + myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; +#else + myparms.srcMemoryType = hipMemoryTypeArray; + myparms.dstMemoryType = hipMemoryTypeArray; +#endif + myparms.srcArray = arr; + myparms.dstArray = arr1; + HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); + HIP_CHECK(hipStreamSynchronize(stream)); + T *hOutputData = reinterpret_cast(malloc(size)); + memset(hOutputData, 0, size); + SetDefaultData(); + // Device to host +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_ARRAY; + myparms.dstMemoryType = CU_MEMORYTYPE_HOST; +#else + myparms.srcMemoryType = hipMemoryTypeArray; + myparms.dstMemoryType = hipMemoryTypeHost; +#endif + myparms.srcArray = arr1; + myparms.dstHost = hOutputData; + myparms.dstPitch = width * sizeof(T); + myparms.dstHeight = height; + HIP_CHECK(hipDrvMemcpy3DAsync(&myparms, stream)); + HIP_CHECK(hipStreamSynchronize(stream)); + + HipTest::checkArray(hData, hOutputData, width, height, depth); + free(hOutputData); + } + DeAllocateMemory(); +} + +/* DeAllocating the memory */ +template +void DrvMemcpy3DAsync::DeAllocateMemory() { + HIP_CHECK(hipArrayDestroy(arr)); + HIP_CHECK(hipArrayDestroy(arr1)); + HIP_CHECK(hipStreamDestroy(stream)); + free(hData); +} + +/* Verifying hipDrvMemcpy3DAsync API Host to Array for different datatypes */ +TEMPLATE_TEST_CASE("Unit_hipDrvMemcpy3DAsync_MultipleDataTypes", "", + uint8_t, int, float) { + for (int i = 1; i < 25; i++) { + if (std::is_same::value) { + DrvMemcpy3DAsync memcpy3d_float(i, i, i, + HIP_AD_FORMAT_FLOAT); + memcpy3d_float.HostArray_DrvMemcpy3DAsync(); + } else if (std::is_same::value) { + DrvMemcpy3DAsync memcpy3d_intx(i, i, i, + HIP_AD_FORMAT_UNSIGNED_INT8); + memcpy3d_intx.HostArray_DrvMemcpy3DAsync(); + } else if (std::is_same::value) { + DrvMemcpy3DAsync memcpy3d_inty(i, i, i, + HIP_AD_FORMAT_SIGNED_INT32); + memcpy3d_inty.HostArray_DrvMemcpy3DAsync(); + } + } +} + +/* This testcase verifies H2D copy of hipDrvMemcpy3DAsync API */ +TEST_CASE("Unit_hipDrvMemcpy3DAsync_HosttoDevice") { + DrvMemcpy3DAsync memcpy3d_D2H_float(10, 10, 1, HIP_AD_FORMAT_FLOAT); + memcpy3d_D2H_float.HostDevice_DrvMemcpy3DAsync(); +} + +/* This testcase verifies negative scenarios of hipDrvMemcpy3DAsync API */ +#if HT_NVIDIA +TEST_CASE("Unit_hipDrvMemcpy3DAsync_Negative") { + DrvMemcpy3DAsync memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); + memcpy3d.NegativeTests(); +} +#endif + +/* This testcase verifies extent validation scenarios of + hipDrvMemcpy3DAsync API */ +TEST_CASE("Unit_hipDrvMemcpy3DAsync_ExtentValidation") { + DrvMemcpy3DAsync memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); + memcpy3d.Extent_Validation(); +} + +/* This testcase verifies H2D copy in device context +change scenario for hipDrvMemcpy3DAsync API */ +#if HT_AMD +TEST_CASE("Unit_hipDrvMemcpy3DAsync_H2DDeviceContextChange") { + int numDevices = 0; + HIP_CHECK(hipGetDeviceCount(&numDevices)); + if (numDevices > 1) { + DrvMemcpy3DAsync memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); + memcpy3d.HostDevice_DrvMemcpy3DAsync(true); + } else { + SUCCEED("skipped testcase as Device count is < 2"); + } +} + + +/* This testcase verifies Host to Array copy in device context +change scenario for hipDrvMemcpy3DAsync API */ +TEST_CASE("Unit_hipDrvMemcpy3DAsync_Host2ArrayDeviceContextChange") { + int numDevices = 0; + HIP_CHECK(hipGetDeviceCount(&numDevices)); + if (numDevices > 1) { + DrvMemcpy3DAsync memcpy3d(10, 10, 10, HIP_AD_FORMAT_FLOAT); + memcpy3d.HostArray_DrvMemcpy3DAsync(true); + } else { + SUCCEED("skipped testcase as Device count is < 2"); + } +} +#endif + + diff --git a/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3D_old.cc b/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3D_old.cc new file mode 100644 index 0000000000..0b524655a9 --- /dev/null +++ b/projects/hip-tests/catch/unit/memory/hipDrvMemcpy3D_old.cc @@ -0,0 +1,573 @@ +/* +Copyright (c) 2022 Advanced Micro Devices, Inc. All rights reserved. +Permission is hereby granted, free of charge, to any person obtaining a copy +of this software and associated documentation files (the "Software"), to deal +in the Software without restriction, including without limitation the rights +to use, copy, modify, merge, publish, distribute, sublicense, and/or sell +copies of the Software, and to permit persons to whom the Software is +furnished to do so, subject to the following conditions: +The above copyright notice and this permission notice shall be included in +all copies or substantial portions of the Software. +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, +FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE +AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER +LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, +OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN +THE SOFTWARE. +*/ +/* + * Test Scenarios + * 1. Verifying hipDrvMemcpy3D API for H2A,A2A,A2H scenarios + * 2. Verifying hipDrvMemcpy3D API for H2D,D2D,D2H scenarios + * 3. Verifying Negative Scenarios + * 4. Verifying Extent validation scenarios by passing 0 + * 5. Verifying hipDrvMemcpy3D API by allocating Memory in + * one GPU and trigger hipDrvMemcpy3D from peer GPU for + * H2D,D2D,D2H scenarios + * 6. Verifying hipDrvMemcpy3D API by allocating Memory in + * one GPU and trigger hipDrvMemcpy3D from peer GPU for + * H2A,A2A,A2H scenarios + * + * Scenarios 3 is temporarily suspended on AMD + * Scenario 5&6 are not supported in CUDA platform + */ + +#include "hip_test_common.hh" +#include "hip_test_checkers.hh" + +template +class DrvMemcpy3D { + int width, height, depth; + unsigned int size; + hipArray_Format formatKind; + hiparray arr, arr1; + size_t pitch_D, pitch_E; + HIP_MEMCPY3D myparms; + hipDeviceptr_t D_m, E_m; + T* hData{nullptr}; + public: + DrvMemcpy3D(int l_width, int l_height, int l_depth, + hipArray_Format l_format); + DrvMemcpy3D() = delete; + void AllocateMemory(); + void SetDefaultData(); + void HostArray_DrvMemcpy3D(bool device_context_change = false); + void HostDevice_DrvMemcpy3D(bool device_context_change = false); + void Extent_Validation(); + void NegativeTests(); + void DeAllocateMemory(); +}; + +/* Intializes class variables */ +template +DrvMemcpy3D::DrvMemcpy3D(int l_width, int l_height, int l_depth, + hipArray_Format l_format) { + width = l_width; + height = l_height; + depth = l_depth; + formatKind = l_format; +} + +/* Allocating Memory */ +template +void DrvMemcpy3D::AllocateMemory() { + size = width * height * depth * sizeof(T); + hData = reinterpret_cast(malloc(size)); + memset(hData, 0, size); + for (int i = 0; i < depth; i++) { + for (int j = 0; j < height; j++) { + for (int k = 0; k < width; k++) { + hData[i*width*height + j*width +k] = i*width*height + j*width + k; + } + } + } + HIP_CHECK(hipMallocPitch(reinterpret_cast(&D_m), + &pitch_D, width*sizeof(T), height)); + HIP_CHECK(hipMallocPitch(reinterpret_cast(&E_m), + &pitch_E, width*sizeof(T), height)); + HIP_ARRAY3D_DESCRIPTOR *desc; + desc = reinterpret_cast + (malloc(sizeof(HIP_ARRAY3D_DESCRIPTOR))); + desc->Format = formatKind; + desc->NumChannels = 1; + desc->Width = width; + desc->Height = height; + desc->Depth = depth; + desc->Flags = hipArrayDefault; + HIP_CHECK(hipArray3DCreate(&arr, desc)); + HIP_CHECK(hipArray3DCreate(&arr1, desc)); +} + +/* Setting the default data */ +template +void DrvMemcpy3D::SetDefaultData() { + memset(&myparms, 0x0, sizeof(HIP_MEMCPY3D)); + myparms.srcXInBytes = 0; + myparms.srcY = 0; + myparms.srcZ = 0; + myparms.srcLOD = 0; + myparms.dstXInBytes = 0; + myparms.dstY = 0; + myparms.dstZ = 0; + myparms.dstLOD = 0; + myparms.WidthInBytes = width*sizeof(T); + myparms.Height = height; + myparms.Depth = depth; +} + +/* +This function verifies the negative scenarios of +hipDrvMemcpy3D API +*/ +template +void DrvMemcpy3D::NegativeTests() { + HIP_CHECK(hipSetDevice(0)); + AllocateMemory(); + SetDefaultData(); + int deviceId; + HIP_CHECK(hipGetDevice(&deviceId)); + unsigned int MaxPitch; + HIP_CHECK(hipDeviceGetAttribute(reinterpret_cast(&MaxPitch), + hipDeviceAttributeMaxPitch, deviceId)); + myparms.srcHost = hData; + myparms.dstArray = arr; + myparms.srcPitch = width * sizeof(T); + myparms.srcHeight = height; +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_HOST; + myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; +#else + myparms.srcMemoryType = hipMemoryTypeHost; + myparms.dstMemoryType = hipMemoryTypeArray; +#endif + + SECTION("Passing nullptr to Source Host") { + myparms.srcHost = nullptr; + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("Passing both dst host and device") { + myparms.dstHost = hData; + myparms.dstArray = nullptr; + myparms.dstDevice = D_m; + myparms.WidthInBytes = pitch_D; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("Passing max value to WidthInBytes") { + myparms.WidthInBytes = std::numeric_limits::max(); + myparms.Height = std::numeric_limits::max(); + myparms.Depth = std::numeric_limits::max(); + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("Passing width > max width size") { + myparms.WidthInBytes = width*sizeof(T) + 1; + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("Passing height > max height size") { + myparms.Height = height + 1; + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("Passing depth > max depth size") { + myparms.Depth = depth + 1; + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("widthinbytes + srcXinBytes is out of bound") { + myparms.srcXInBytes = 1; + myparms.dstArray = nullptr; + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("widthinbytes + dstXinBytes is out of bound") { + myparms.dstXInBytes = pitch_D; + myparms.dstArray = nullptr; + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("srcY + height is out of bound") { + myparms.srcY = 1; + myparms.dstArray = nullptr; + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("dstY + height out of bounds") { + myparms.dstY = 1; + myparms.dstArray = nullptr; + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("src pitch greater than Max allowed pitch") { +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; + myparms.dstMemoryType = CU_MEMORYTYPE_HOST; +#else + myparms.srcMemoryType = hipMemoryTypeDevice; + myparms.dstMemoryType = hipMemoryTypeHost; +#endif + myparms.srcDevice = D_m; + myparms.srcHost = nullptr; + myparms.srcPitch = MaxPitch; + myparms.srcHeight = height; + myparms.dstHost = hData; + myparms.dstArray = nullptr; + myparms.dstPitch = width*sizeof(T); + myparms.dstHeight = height; + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("dst pitch greater than Max allowed pitch") { + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstArray = nullptr; + myparms.dstPitch = MaxPitch+1; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("Nullptr to src/dst device") { + myparms.dstDevice = hipDeviceptr_t(nullptr); + myparms.dstArray = nullptr; + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; +#if HT_NVIDIA + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("Nullptr to src/dst array") { + myparms.dstArray = nullptr; + REQUIRE(hipDrvMemcpy3D(&myparms) != hipSuccess); + } + + SECTION("Nullptr to hipDrvMemcpy3D") { + REQUIRE(hipDrvMemcpy3D(nullptr) != hipSuccess); + } + + DeAllocateMemory(); +} +/* +This function verifies the Extent validation scenarios of +hipDrvMemcpy3D API +*/ +template +void DrvMemcpy3D::Extent_Validation() { + HIP_CHECK(hipSetDevice(0)); + // Allocating the memory + AllocateMemory(); + + // Setting default data + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_HOST; + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.srcMemoryType = hipMemoryTypeHost; + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + myparms.srcHost = hData; + myparms.srcPitch = width * sizeof(T); + myparms.srcHeight = height; + myparms.dstDevice = D_m; + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; + + SECTION("WidthInBytes is 0") { + myparms.WidthInBytes = 0; + HIP_CHECK(hipDrvMemcpy3D(&myparms)); + } + + SECTION("Height is 0") { + myparms.Height = 0; + HIP_CHECK(hipDrvMemcpy3D(&myparms)); + } + + SECTION("Depth is 0") { + myparms.Depth = 0; + HIP_CHECK(hipDrvMemcpy3D(&myparms)); + } + + DeAllocateMemory(); +} +/* +This Function verifies following functionalities of hipDrvMemcpy3D API +1. Host to Device copy +2. Device to Device +3. Device to Host +In the end validates the results. + +This functionality is verified in 2 scenarios +1. Basic scenario on same GPU device +2. Device context change scenario where memory is allocated in 1 GPU + and hipDrvMemcpy3D API is trigerred from another GPU +*/ +template +void DrvMemcpy3D::HostDevice_DrvMemcpy3D(bool device_context_change) { + HIP_CHECK(hipSetDevice(0)); + bool skip_test = false; + int peerAccess = 0; + AllocateMemory(); + if (device_context_change) { + HIP_CHECK(hipDeviceCanAccessPeer(&peerAccess, 0, 1)); + if (!peerAccess) { + WARN("skipped the testcase as no peer access"); + skip_test = true; + } else { + HIP_CHECK(hipSetDevice(1)); + } + } + if (!skip_test) { + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_HOST; + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.srcMemoryType = hipMemoryTypeHost; + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + myparms.srcHost = hData; + myparms.srcPitch = width * sizeof(T); + myparms.srcHeight = height; + myparms.dstDevice = hipDeviceptr_t(D_m); + myparms.dstPitch = pitch_D; + myparms.dstHeight = height; + HIP_CHECK(hipDrvMemcpy3D(&myparms)); + + // Device to Device + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; + myparms.dstMemoryType = CU_MEMORYTYPE_DEVICE; +#else + myparms.srcMemoryType = hipMemoryTypeDevice; + myparms.dstMemoryType = hipMemoryTypeDevice; +#endif + myparms.srcDevice = hipDeviceptr_t(D_m); + myparms.srcPitch = pitch_D; + myparms.srcHeight = height; + myparms.dstDevice = hipDeviceptr_t(E_m); + myparms.dstPitch = pitch_E; + myparms.dstHeight = height; + HIP_CHECK(hipDrvMemcpy3D(&myparms)); + T *hOutputData = reinterpret_cast(malloc(size)); + memset(hOutputData, 0, size); + + // Device to host + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_DEVICE; + myparms.dstMemoryType = CU_MEMORYTYPE_HOST; +#else + myparms.srcMemoryType = hipMemoryTypeDevice; + myparms.dstMemoryType = hipMemoryTypeHost; +#endif + myparms.srcDevice = hipDeviceptr_t(E_m); + myparms.srcPitch = pitch_E; + myparms.srcHeight = height; + myparms.dstHost = hOutputData; + myparms.dstPitch = width * sizeof(T); + myparms.dstHeight = height; + HIP_CHECK(hipDrvMemcpy3D(&myparms)); + + HipTest::checkArray(hData, hOutputData, width, height, depth); + free(hOutputData); + } + DeAllocateMemory(); +} + +/* +This Function verifies following functionalities of hipDrvMemcpy3D API +1. Host to Array copy +2. Array to Array +3. Array to Host +In the end validates the results. + +This functionality is verified in 2 scenarios +1. Basic scenario on same GPU device +2. Device context change scenario where memory is allocated in 1 GPU + and hipDrvMemcpy3D API is trigerred from another GPU +*/ +template +void DrvMemcpy3D::HostArray_DrvMemcpy3D(bool device_context_change) { + HIP_CHECK(hipSetDevice(0)); + bool skip_test = false; + int peerAccess = 0; + AllocateMemory(); + if (device_context_change) { + HIP_CHECK(hipDeviceCanAccessPeer(&peerAccess, 0, 1)); + if (!peerAccess) { + WARN("skipped the testcase as no peer access"); + skip_test = true; + } else { + HIP_CHECK(hipSetDevice(1)); + } + } + if (!skip_test) { + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_HOST; + myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; +#else + myparms.srcMemoryType = hipMemoryTypeHost; + myparms.dstMemoryType = hipMemoryTypeArray; +#endif + myparms.srcHost = hData; + myparms.srcPitch = width * sizeof(T); + myparms.srcHeight = height; + myparms.dstArray = arr; + HIP_CHECK(hipDrvMemcpy3D(&myparms)); + // Array to Array + SetDefaultData(); +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_ARRAY; + myparms.dstMemoryType = CU_MEMORYTYPE_ARRAY; +#else + myparms.srcMemoryType = hipMemoryTypeArray; + myparms.dstMemoryType = hipMemoryTypeArray; +#endif + myparms.srcArray = arr; + myparms.dstArray = arr1; + HIP_CHECK(hipDrvMemcpy3D(&myparms)); + T *hOutputData = reinterpret_cast(malloc(size)); + memset(hOutputData, 0, size); + SetDefaultData(); + // Device to host +#if HT_NVIDIA + myparms.srcMemoryType = CU_MEMORYTYPE_ARRAY; + myparms.dstMemoryType = CU_MEMORYTYPE_HOST; +#else + myparms.srcMemoryType = hipMemoryTypeArray; + myparms.dstMemoryType = hipMemoryTypeHost; +#endif + myparms.srcArray = arr1; + myparms.dstHost = hOutputData; + myparms.dstPitch = width * sizeof(T); + myparms.dstHeight = height; + HIP_CHECK(hipDrvMemcpy3D(&myparms)); + + HipTest::checkArray(hData, hOutputData, width, height, depth); + free(hOutputData); + } + DeAllocateMemory(); +} +/* DeAllocating the memory */ +template +void DrvMemcpy3D::DeAllocateMemory() { + HIP_CHECK(hipArrayDestroy(arr)); + HIP_CHECK(hipArrayDestroy(arr1)); + free(hData); +} + +/* Verifying hipDrvMemcpy3D API Host to Array for different datatypes */ +TEMPLATE_TEST_CASE("Unit_hipDrvMemcpy3D_MultipleDataTypes", "", + uint8_t, int, float) { + for (int i = 1; i < 25; i++) { + if (std::is_same::value) { + DrvMemcpy3D memcpy3d_float(i, i, i, HIP_AD_FORMAT_FLOAT); + memcpy3d_float.HostArray_DrvMemcpy3D(); + } else if (std::is_same::value) { + DrvMemcpy3D memcpy3d_intx(i, i, i, HIP_AD_FORMAT_UNSIGNED_INT8); + memcpy3d_intx.HostArray_DrvMemcpy3D(); + } else if (std::is_same::value) { + DrvMemcpy3D memcpy3d_inty(i, i, i, HIP_AD_FORMAT_SIGNED_INT32); + memcpy3d_inty.HostArray_DrvMemcpy3D(); + } + } +} + +/* This testcase verifies H2D copy of hipDrvMemcpy3D API */ +TEST_CASE("Unit_hipDrvMemcpy3D_HosttoDevice") { + DrvMemcpy3D memcpy3d_D2H_float(10, 10, 1, HIP_AD_FORMAT_FLOAT); + memcpy3d_D2H_float.HostDevice_DrvMemcpy3D(); +} + +/* This testcase verifies negative scenarios of hipDrvMemcpy3D API */ +#if HT_NVIDIA +TEST_CASE("Unit_hipDrvMemcpy3D_Negative") { + DrvMemcpy3D memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); + memcpy3d.NegativeTests(); +} +#endif + +/* This testcase verifies extent validation scenarios of hipDrvMemcpy3D API */ +TEST_CASE("Unit_hipDrvMemcpy3D_ExtentValidation") { + DrvMemcpy3D memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); + memcpy3d.Extent_Validation(); +} + +#if HT_AMD +/* This testcase verifies H2D copy in device context +change scenario for hipDrvMemcpy3D API */ +TEST_CASE("Unit_hipDrvMemcpy3D_H2DDeviceContextChange") { + int numDevices = 0; + HIP_CHECK(hipGetDeviceCount(&numDevices)); + if (numDevices > 1) { + DrvMemcpy3D memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); + memcpy3d.HostDevice_DrvMemcpy3D(true); + } else { + SUCCEED("skipped testcase as Device count is < 2"); + } +} + + +/* This testcase verifies Host to Array copy in device context +change scenario for hipDrvMemcpy3D API */ +TEST_CASE("Unit_hipDrvMemcpy3D_Host2ArrayDeviceContextChange") { + int numDevices = 0; + HIP_CHECK(hipGetDeviceCount(&numDevices)); + if (numDevices > 1) { + DrvMemcpy3D memcpy3d(10, 10, 1, HIP_AD_FORMAT_FLOAT); + memcpy3d.HostArray_DrvMemcpy3D(true); + } else { + SUCCEED("skipped testcase as Device count is < 2"); + } +} +#endif