EXSWHTEC-370 - Implement tests for the hipDrvGraph*MemcpyNode APIs #446
Change-Id: I956dc06157324e9d6971348a70b600c4a9105538
[ROCm/hip-tests commit: 6f9f5c07fe]
This commit is contained in:
committed by
Rakesh Roy
vanhempi
c26a76e4e9
commit
f44575fb94
@@ -151,6 +151,8 @@ set(TEST_SRC
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hipDrvGraphAddMemcpyNode.cc
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hipGraphAddMemAllocNode.cc
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hipGraphAddMemFreeNode.cc
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hipDrvGraphMemcpyNodeGetParams.cc
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hipDrvGraphMemcpyNodeSetParams.cc
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)
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add_custom_target(add_Kernel.code COMMAND ${CMAKE_CXX_COMPILER} --genco ${OFFLOAD_ARCH_STR} ${CMAKE_CURRENT_SOURCE_DIR}/add_Kernel.cpp -o ${CMAKE_CURRENT_BINARY_DIR}/../graph/add_Kernel.code -I${HIP_PATH}/include/ -I${CMAKE_CURRENT_SOURCE_DIR}/../../include --rocm-path=${ROCM_PATH})
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@@ -17,11 +17,28 @@ OUT OF OR INN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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THE SOFTWARE.
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*/
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#include <functional>
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#include <hip_test_common.hh>
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#include <hip_test_defgroups.hh>
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#include <hip_test_checkers.hh>
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#include <memcpy3d_tests_common.hh>
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#include "numeric"
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#include "graph_tests_common.hh"
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#define XSIZE 32
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/**
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* @addtogroup hipDrvGraphAddMemcpyNode hipDrvGraphAddMemcpyNode
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* @{
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* @ingroup GraphTest
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* `hipDrvGraphAddMemcpyNode(hipGraphNode_t *pGraphNode, hipGraph_t graph, const
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* hipGraphNode_t *pDependencies, size_t numDependencies, const HIP_MEMCPY3D* copyParams, hipCtx_t
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ctx)`
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- Creates a memcpy node and adds it to a graph
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*/
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/**
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* Test Description
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* ------------------------
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@@ -362,3 +379,281 @@ TEST_CASE("Unit_hipDrvGraphAddMemcpyNode_MulitDevice") {
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}
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}
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#endif
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/**
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* Test Description
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* ------------------------
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* - Verify basic API behavior. A Memcpy node is created with parameters set according to the
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* test run, after which the graph is run and the memcpy results are verified.
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* The test is run for all possible memcpy directions, with both the corresponding memcpy
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* kind and hipMemcpyDefault, as well as half page and full page allocation sizes.
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* Test source
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* ------------------------
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* - unit/graph/hipDrvGraphAddMemcpyNode.cc
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* Test requirements
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* ------------------------
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* - HIP_VERSION >= 6.0
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*/
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TEST_CASE("Unit_hipDrvGraphAddMemcpyNode_Positive_Basic") {
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using namespace std::placeholders;
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constexpr bool async = false;
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HIP_CHECK(hipInit(0));
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hipDevice_t device;
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hipCtx_t context;
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HIP_CHECK(hipDeviceGet(&device, 0));
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HIP_CHECK(hipCtxCreate(&context, 0, device));
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SECTION("Device to host") {
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Memcpy3DDeviceToHostShell<async>(
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std::bind(DrvMemcpy3DGraphWrapper<>, _1, _2, _3, _4, _5, _6, context, _7));
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}
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SECTION("Host to device") {
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Memcpy3DHostToDeviceShell<async>(
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std::bind(DrvMemcpy3DGraphWrapper<>, _1, _2, _3, _4, _5, _6, context, _7));
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}
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SECTION("Host to host") {
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Memcpy3DHostToHostShell<async>(
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std::bind(DrvMemcpy3DGraphWrapper<>, _1, _2, _3, _4, _5, _6, context, _7));
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}
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SECTION("Device to device") {
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SECTION("Peer access enabled") {
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Memcpy3DDeviceToDeviceShell<async, true>(
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std::bind(DrvMemcpy3DGraphWrapper<>, _1, _2, _3, _4, _5, _6, context, _7));
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}
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SECTION("Peer access disabled") {
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Memcpy3DDeviceToDeviceShell<async, false>(
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std::bind(DrvMemcpy3DGraphWrapper<>, _1, _2, _3, _4, _5, _6, context, _7));
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}
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}
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HIP_CHECK(hipCtxPopCurrent(&context));
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HIP_CHECK(hipCtxDestroy(context));
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}
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TEST_CASE("Unit_hipDrvGraphAddMemcpyNode_Positive_Array") {
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CHECK_IMAGE_SUPPORT
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using namespace std::placeholders;
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constexpr bool async = false;
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HIP_CHECK(hipInit(0));
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hipDevice_t device;
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hipCtx_t context;
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HIP_CHECK(hipDeviceGet(&device, 0));
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HIP_CHECK(hipCtxCreate(&context, 0, device));
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SECTION("Array from/to Host") {
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DrvMemcpy3DArrayHostShell<async>(
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std::bind(DrvMemcpy3DGraphWrapper<>, _1, _2, _3, _4, _5, _6, context, _7));
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}
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SECTION("Array from/to Device") {
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DrvMemcpy3DArrayDeviceShell<async>(
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std::bind(DrvMemcpy3DGraphWrapper<>, _1, _2, _3, _4, _5, _6, context, _7));
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}
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HIP_CHECK(hipCtxPopCurrent(&context));
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HIP_CHECK(hipCtxDestroy(context));
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}
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/**
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* Test Description
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* ------------------------
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* - Verify API behaviour with invalid arguments:
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* -# node is nullptr
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* -# graph is nullptr
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* -# pDependencies is nullptr when numDependencies is not zero
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* -# A node in pDependencies originates from a different graph
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* -# numDependencies is invalid
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* -# A node is duplicated in pDependencies
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* -# dst is nullptr
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* -# src is nullptr
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* -# dstPitch < width
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* -# srcPitch < width
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* -# dstPitch > max pitch
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* -# srcPitch > max pitch
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* -# WidthInBytes + dstXInBytes > dstPitch
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* -# WidthInBytes + srcXInBytes > srcPitch
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* -# dstY out of bounds
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* -# srcY out of bounds
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* -# dstZ out of bounds
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* -# srcZ out of bounds
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* Test source
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* ------------------------
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* - unit/graph/hipDrvGraphAddMemcpyNode.cc
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* Test requirements
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* ------------------------
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* - HIP_VERSION >= 6.0
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*/
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TEST_CASE("Unit_hipDrvGraphAddMemcpyNode_Negative_Parameters") {
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using namespace std::placeholders;
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HIP_CHECK(hipInit(0));
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hipDevice_t device;
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hipCtx_t context;
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HIP_CHECK(hipDeviceGet(&device, 0));
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HIP_CHECK(hipCtxCreate(&context, 0, device));
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constexpr hipExtent extent{128 * sizeof(int), 128, 8};
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constexpr auto NegativeTests = [](hipPitchedPtr dst_ptr, hipPos dst_pos, hipPitchedPtr src_ptr,
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hipPos src_pos, hipExtent extent, hipMemcpyKind kind,
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hipCtx_t context) {
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hipGraph_t graph = nullptr;
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HIP_CHECK(hipGraphCreate(&graph, 0));
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hipGraphNode_t node = nullptr;
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auto params = GetDrvMemcpy3DParms(dst_ptr, dst_pos, src_ptr, src_pos, extent, kind);
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GraphAddNodeCommonNegativeTests(
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std::bind(hipDrvGraphAddMemcpyNode, _1, _2, _3, _4, ¶ms, context), graph);
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SECTION("dst_ptr.ptr == nullptr") {
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hipPitchedPtr invalid_ptr = dst_ptr;
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invalid_ptr.ptr = nullptr;
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auto params = GetDrvMemcpy3DParms(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidValue);
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}
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SECTION("src_ptr.ptr == nullptr") {
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hipPitchedPtr invalid_ptr = src_ptr;
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invalid_ptr.ptr = nullptr;
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auto params = GetDrvMemcpy3DParms(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidValue);
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}
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SECTION("dstPitch < width") {
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hipPitchedPtr invalid_ptr = dst_ptr;
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invalid_ptr.pitch = extent.width - 1;
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auto params = GetDrvMemcpy3DParms(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidPitchValue);
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}
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SECTION("srcPitch < width") {
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hipPitchedPtr invalid_ptr = src_ptr;
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invalid_ptr.pitch = extent.width - 1;
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auto params = GetDrvMemcpy3DParms(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidPitchValue);
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}
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SECTION("dstPitch > max pitch") {
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int attr = 0;
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HIP_CHECK(hipDeviceGetAttribute(&attr, hipDeviceAttributeMaxPitch, 0));
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hipPitchedPtr invalid_ptr = dst_ptr;
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invalid_ptr.pitch = attr;
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auto params = GetDrvMemcpy3DParms(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidValue);
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}
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SECTION("srcPitch > max pitch") {
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int attr = 0;
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HIP_CHECK(hipDeviceGetAttribute(&attr, hipDeviceAttributeMaxPitch, 0));
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hipPitchedPtr invalid_ptr = src_ptr;
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invalid_ptr.pitch = attr;
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auto params = GetDrvMemcpy3DParms(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidValue);
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}
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SECTION("WidthInBytes + dstXInBytes > dstPitch") {
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hipPos invalid_pos = dst_pos;
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invalid_pos.x = dst_ptr.pitch - extent.width + 1;
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auto params = GetDrvMemcpy3DParms(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidValue);
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}
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SECTION("WidthInBytes + srcXInBytes > srcPitch") {
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hipPos invalid_pos = src_pos;
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invalid_pos.x = src_ptr.pitch - extent.width + 1;
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auto params = GetDrvMemcpy3DParms(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidValue);
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}
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SECTION("dstY out of bounds") {
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hipPos invalid_pos = dst_pos;
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invalid_pos.y = 1;
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auto params = GetDrvMemcpy3DParms(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidValue);
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}
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SECTION("srcY out of bounds") {
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hipPos invalid_pos = src_pos;
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invalid_pos.y = 1;
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auto params = GetDrvMemcpy3DParms(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidValue);
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}
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SECTION("dstZ out of bounds") {
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hipPos invalid_pos = dst_pos;
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invalid_pos.z = 1;
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auto params = GetDrvMemcpy3DParms(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidValue);
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}
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SECTION("srcZ out of bounds") {
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hipPos invalid_pos = src_pos;
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invalid_pos.z = 1;
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auto params = GetDrvMemcpy3DParms(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind);
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HIP_CHECK_ERROR(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context),
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hipErrorInvalidValue);
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}
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HIP_CHECK(hipGraphDestroy(graph));
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};
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SECTION("Host to Device") {
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LinearAllocGuard3D<int> device_alloc(extent);
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LinearAllocGuard<int> host_alloc(
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LinearAllocs::hipHostMalloc,
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device_alloc.pitch() * device_alloc.height() * device_alloc.depth());
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NegativeTests(device_alloc.pitched_ptr(), make_hipPos(0, 0, 0),
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make_hipPitchedPtr(host_alloc.ptr(), device_alloc.pitch(), device_alloc.width(),
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device_alloc.height()),
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make_hipPos(0, 0, 0), extent, hipMemcpyHostToDevice, context);
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}
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SECTION("Device to Host") {
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LinearAllocGuard3D<int> device_alloc(extent);
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LinearAllocGuard<int> host_alloc(
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LinearAllocs::hipHostMalloc,
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device_alloc.pitch() * device_alloc.height() * device_alloc.depth());
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NegativeTests(make_hipPitchedPtr(host_alloc.ptr(), device_alloc.pitch(), device_alloc.width(),
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device_alloc.height()),
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make_hipPos(0, 0, 0), device_alloc.pitched_ptr(), make_hipPos(0, 0, 0), extent,
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hipMemcpyDeviceToHost, context);
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}
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SECTION("Host to Host") {
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LinearAllocGuard<int> src_alloc(LinearAllocs::hipHostMalloc,
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extent.width * extent.height * extent.depth);
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LinearAllocGuard<int> dst_alloc(LinearAllocs::hipHostMalloc,
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extent.width * extent.height * extent.depth);
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NegativeTests(make_hipPitchedPtr(dst_alloc.ptr(), extent.width, extent.width, extent.height),
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make_hipPos(0, 0, 0),
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make_hipPitchedPtr(src_alloc.ptr(), extent.width, extent.width, extent.height),
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make_hipPos(0, 0, 0), extent, hipMemcpyHostToHost, context);
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}
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SECTION("Device to Device") {
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LinearAllocGuard3D<int> src_alloc(extent);
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LinearAllocGuard3D<int> dst_alloc(extent);
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NegativeTests(dst_alloc.pitched_ptr(), make_hipPos(0, 0, 0), src_alloc.pitched_ptr(),
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make_hipPos(0, 0, 0), extent, hipMemcpyDeviceToDevice, context);
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}
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HIP_CHECK(hipCtxPopCurrent(&context));
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HIP_CHECK(hipCtxDestroy(context));
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}
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@@ -0,0 +1,91 @@
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/*
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Copyright (c) 2023 Advanced Micro Devices, Inc. All rights reserved.
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Permission is hereby granted, free of charge, to any person obtaining a copy
|
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of this software and associated documentation files (the "Software"), to deal
|
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
|
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
|
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
|
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
|
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
|
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
|
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
|
||||
THE SOFTWARE.
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*/
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#include <hip_test_defgroups.hh>
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#include <hip_test_common.hh>
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#include <memcpy3d_tests_common.hh>
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/**
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* @addtogroup hipDrvGraphMemcpyNodeGetParams hipDrvGraphMemcpyNodeGetParams
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* @{
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* @ingroup GraphTest
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* `hipDrvGraphMemcpyNodeGetParams(hipGraphNode_t hNode, HIP_MEMCPY3D* nodeParams)` -
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* Gets a memcpy node's parameters
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* ________________________
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* Test cases from other APIs:
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* - @ref Unit_hipDrvGraphMemcpyNodeSetParams_Positive_Basic
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*/
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/**
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* Test Description
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* ------------------------
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* - Verify API behaviour with invalid arguments:
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* -# node is nullptr
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* -# pNodeParams is nullptr
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* -# node is destroyed
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* Test source
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* ------------------------
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* - unit/graph/hipDrvGraphMemcpyNodeGetParams.cc
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* Test requirements
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* ------------------------
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* - HIP_VERSION >= 6.0
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*/
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TEST_CASE("Unit_hipDrvGraphMemcpyNodeGetParams_Negative_Parameters") {
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HIP_CHECK(hipInit(0));
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hipDevice_t device;
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hipCtx_t context;
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HIP_CHECK(hipDeviceGet(&device, 0));
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HIP_CHECK(hipCtxCreate(&context, 0, device));
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constexpr hipExtent extent{128 * sizeof(int), 128, 8};
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LinearAllocGuard3D<int> src_alloc(extent);
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LinearAllocGuard3D<int> dst_alloc(extent);
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auto params =
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GetDrvMemcpy3DParms(dst_alloc.pitched_ptr(), make_hipPos(0, 0, 0), src_alloc.pitched_ptr(),
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make_hipPos(0, 0, 0), dst_alloc.extent(), hipMemcpyDeviceToDevice);
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hipGraph_t graph = nullptr;
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hipGraphNode_t node = nullptr;
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SECTION("node == nullptr") {
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HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeGetParams(nullptr, ¶ms), hipErrorInvalidValue);
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}
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SECTION("pNodeParams == nullptr") {
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HIP_CHECK(hipGraphCreate(&graph, 0));
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HIP_CHECK(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context));
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HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeGetParams(node, nullptr), hipErrorInvalidValue);
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HIP_CHECK(hipGraphDestroy(graph));
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}
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SECTION("Node is destroyed") {
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HIP_CHECK(hipGraphCreate(&graph, 0));
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HIP_CHECK(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context));
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HIP_CHECK(hipGraphDestroy(graph));
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HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeGetParams(node, ¶ms), hipErrorInvalidValue);
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}
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HIP_CHECK(hipCtxPopCurrent(&context));
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HIP_CHECK(hipCtxDestroy(context));
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}
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@@ -0,0 +1,314 @@
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/*
|
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Copyright (c) 2023 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.
|
||||
*/
|
||||
|
||||
#include <functional>
|
||||
|
||||
#include <hip_test_common.hh>
|
||||
#include <hip_test_defgroups.hh>
|
||||
#include <memcpy3d_tests_common.hh>
|
||||
|
||||
/**
|
||||
* @addtogroup hipDrvGraphMemcpyNodeSetParams hipDrvGraphMemcpyNodeSetParams
|
||||
* @{
|
||||
* @ingroup GraphTest
|
||||
* `hipDrvGraphMemcpyNodeSetParams(hipGraphNode_t hNode, const HIP_MEMCPY3D* nodeParams)` - Sets a
|
||||
* memcpy node's parameters
|
||||
*/
|
||||
|
||||
/**
|
||||
* Test Description
|
||||
* ------------------------
|
||||
* - Verify that node parameters get updated correctly by creating a node with valid but
|
||||
* incorrect parameters, and then setting them to the correct values after which the graph is
|
||||
* executed and the results of the memcpy verified.
|
||||
* The test is run for all possible memcpy directions, with both the corresponding memcpy
|
||||
* kind and hipMemcpyDefault, as well as half page and full page allocation sizes.
|
||||
* Test source
|
||||
* ------------------------
|
||||
* - unit/graph/hipDrvGraphMemcpyNodeSetParams.cc
|
||||
* Test requirements
|
||||
* ------------------------
|
||||
* - HIP_VERSION >= 6.0
|
||||
*/
|
||||
TEST_CASE("Unit_hipDrvGraphMemcpyNodeSetParams_Positive_Basic") {
|
||||
using namespace std::placeholders;
|
||||
|
||||
constexpr bool async = false;
|
||||
HIP_CHECK(hipInit(0));
|
||||
hipDevice_t device;
|
||||
hipCtx_t context;
|
||||
HIP_CHECK(hipDeviceGet(&device, 0));
|
||||
HIP_CHECK(hipCtxCreate(&context, 0, device));
|
||||
|
||||
SECTION("Device to host") {
|
||||
Memcpy3DDeviceToHostShell<async>(
|
||||
std::bind(DrvMemcpy3DGraphWrapper<true>, _1, _2, _3, _4, _5, _6, context, _7));
|
||||
}
|
||||
|
||||
SECTION("Host to device") {
|
||||
Memcpy3DHostToDeviceShell<async>(
|
||||
std::bind(DrvMemcpy3DGraphWrapper<true>, _1, _2, _3, _4, _5, _6, context, _7));
|
||||
}
|
||||
|
||||
SECTION("Host to host") {
|
||||
Memcpy3DHostToHostShell<async>(
|
||||
std::bind(DrvMemcpy3DGraphWrapper<true>, _1, _2, _3, _4, _5, _6, context, _7));
|
||||
}
|
||||
|
||||
SECTION("Device to device") {
|
||||
SECTION("Peer access enabled") {
|
||||
Memcpy3DDeviceToDeviceShell<async, true>(
|
||||
std::bind(DrvMemcpy3DGraphWrapper<true>, _1, _2, _3, _4, _5, _6, context, _7));
|
||||
}
|
||||
SECTION("Peer access disabled") {
|
||||
Memcpy3DDeviceToDeviceShell<async, false>(
|
||||
std::bind(DrvMemcpy3DGraphWrapper<true>, _1, _2, _3, _4, _5, _6, context, _7));
|
||||
}
|
||||
}
|
||||
|
||||
HIP_CHECK(hipCtxPopCurrent(&context));
|
||||
HIP_CHECK(hipCtxDestroy(context));
|
||||
}
|
||||
|
||||
TEST_CASE("Unit_hipDrvGraphMemcpyNodeSetParams_Positive_Array") {
|
||||
CHECK_IMAGE_SUPPORT
|
||||
|
||||
using namespace std::placeholders;
|
||||
|
||||
constexpr bool async = false;
|
||||
HIP_CHECK(hipInit(0));
|
||||
hipDevice_t device;
|
||||
hipCtx_t context;
|
||||
HIP_CHECK(hipDeviceGet(&device, 0));
|
||||
HIP_CHECK(hipCtxCreate(&context, 0, device));
|
||||
|
||||
SECTION("Array from/to Host") {
|
||||
DrvMemcpy3DArrayHostShell<async>(
|
||||
std::bind(DrvMemcpy3DGraphWrapper<true>, _1, _2, _3, _4, _5, _6, context, _7));
|
||||
}
|
||||
SECTION("Array from/to Device") {
|
||||
DrvMemcpy3DArrayDeviceShell<async>(
|
||||
std::bind(DrvMemcpy3DGraphWrapper<true>, _1, _2, _3, _4, _5, _6, context, _7));
|
||||
}
|
||||
|
||||
HIP_CHECK(hipCtxPopCurrent(&context));
|
||||
HIP_CHECK(hipCtxDestroy(context));
|
||||
}
|
||||
|
||||
|
||||
/**
|
||||
* Test Description
|
||||
* ------------------------
|
||||
* - Verify API behaviour with invalid arguments:
|
||||
* -# node is nullptr
|
||||
* -# dst is nullptr
|
||||
* -# src is nullptr
|
||||
* -# dstPitch < width
|
||||
* -# srcPitch < width
|
||||
* -# dstPitch > max pitch
|
||||
* -# srcPitch > max pitch
|
||||
* -# WidthInBytes + dstXInBytes > dstPitch
|
||||
* -# WidthInBytes + srcXInBytes > srcPitch
|
||||
* -# dstY out of bounds
|
||||
* -# srcY out of bounds
|
||||
* -# dstZ out of bounds
|
||||
* -# srcZ out of bounds
|
||||
* Test source
|
||||
* ------------------------
|
||||
* - unit/graph/hipDrvGraphMemcpyNodeSetParams.cc
|
||||
* Test requirements
|
||||
* ------------------------
|
||||
* - HIP_VERSION >= 6.0
|
||||
*/
|
||||
TEST_CASE("Unit_hipDrvGraphMemcpyNodeSetParams_Negative_Parameters") {
|
||||
using namespace std::placeholders;
|
||||
|
||||
HIP_CHECK(hipInit(0));
|
||||
hipDevice_t device;
|
||||
hipCtx_t context;
|
||||
HIP_CHECK(hipDeviceGet(&device, 0));
|
||||
HIP_CHECK(hipCtxCreate(&context, 0, device));
|
||||
|
||||
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,
|
||||
hipCtx_t context) {
|
||||
hipGraph_t graph = nullptr;
|
||||
HIP_CHECK(hipGraphCreate(&graph, 0));
|
||||
hipGraphNode_t node = nullptr;
|
||||
|
||||
auto params = GetDrvMemcpy3DParms(dst_ptr, dst_pos, src_ptr, src_pos, extent, kind);
|
||||
HIP_CHECK(hipDrvGraphAddMemcpyNode(&node, graph, nullptr, 0, ¶ms, context));
|
||||
|
||||
SECTION("node == nullptr") {
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(nullptr, ¶ms), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
SECTION("dst_ptr.ptr == nullptr") {
|
||||
hipPitchedPtr invalid_ptr = dst_ptr;
|
||||
invalid_ptr.ptr = nullptr;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
SECTION("src_ptr.ptr == nullptr") {
|
||||
hipPitchedPtr invalid_ptr = src_ptr;
|
||||
invalid_ptr.ptr = nullptr;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
SECTION("dstPitch < width") {
|
||||
hipPitchedPtr invalid_ptr = dst_ptr;
|
||||
invalid_ptr.pitch = extent.width - 1;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params),
|
||||
hipErrorInvalidPitchValue);
|
||||
}
|
||||
|
||||
SECTION("srcPitch < width") {
|
||||
hipPitchedPtr invalid_ptr = src_ptr;
|
||||
invalid_ptr.pitch = extent.width - 1;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params),
|
||||
hipErrorInvalidPitchValue);
|
||||
}
|
||||
|
||||
SECTION("dstPitch > max pitch") {
|
||||
int attr = 0;
|
||||
HIP_CHECK(hipDeviceGetAttribute(&attr, hipDeviceAttributeMaxPitch, 0));
|
||||
hipPitchedPtr invalid_ptr = dst_ptr;
|
||||
invalid_ptr.pitch = attr;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(invalid_ptr, dst_pos, src_ptr, src_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
SECTION("srcPitch > max pitch") {
|
||||
int attr = 0;
|
||||
HIP_CHECK(hipDeviceGetAttribute(&attr, hipDeviceAttributeMaxPitch, 0));
|
||||
hipPitchedPtr invalid_ptr = src_ptr;
|
||||
invalid_ptr.pitch = attr;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(dst_ptr, dst_pos, invalid_ptr, src_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
SECTION("WidthInBytes + dstXInBytes > dstPitch") {
|
||||
hipPos invalid_pos = dst_pos;
|
||||
invalid_pos.x = dst_ptr.pitch - extent.width + 1;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
SECTION("WidthInBytes + srcXInBytes > srcPitch") {
|
||||
hipPos invalid_pos = src_pos;
|
||||
invalid_pos.x = src_ptr.pitch - extent.width + 1;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
SECTION("dstY out of bounds") {
|
||||
hipPos invalid_pos = dst_pos;
|
||||
invalid_pos.y = 1;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
SECTION("srcY out of bounds") {
|
||||
hipPos invalid_pos = src_pos;
|
||||
invalid_pos.y = 1;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
SECTION("dstZ out of bounds") {
|
||||
hipPos invalid_pos = dst_pos;
|
||||
invalid_pos.z = 1;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(dst_ptr, invalid_pos, src_ptr, src_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
SECTION("srcZ out of bounds") {
|
||||
hipPos invalid_pos = src_pos;
|
||||
invalid_pos.z = 1;
|
||||
auto invalid_params =
|
||||
GetDrvMemcpy3DParms(dst_ptr, dst_pos, src_ptr, invalid_pos, extent, kind);
|
||||
HIP_CHECK_ERROR(hipDrvGraphMemcpyNodeSetParams(node, &invalid_params), hipErrorInvalidValue);
|
||||
}
|
||||
|
||||
HIP_CHECK(hipGraphDestroy(graph));
|
||||
};
|
||||
|
||||
SECTION("Host to Device") {
|
||||
LinearAllocGuard3D<int> device_alloc(extent);
|
||||
LinearAllocGuard<int> 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, context);
|
||||
}
|
||||
|
||||
SECTION("Device to Host") {
|
||||
LinearAllocGuard3D<int> device_alloc(extent);
|
||||
LinearAllocGuard<int> 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, context);
|
||||
}
|
||||
|
||||
SECTION("Host to Host") {
|
||||
LinearAllocGuard<int> src_alloc(LinearAllocs::hipHostMalloc,
|
||||
extent.width * extent.height * extent.depth);
|
||||
LinearAllocGuard<int> 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, context);
|
||||
}
|
||||
|
||||
SECTION("Device to Device") {
|
||||
LinearAllocGuard3D<int> src_alloc(extent);
|
||||
LinearAllocGuard3D<int> dst_alloc(extent);
|
||||
NegativeTests(dst_alloc.pitched_ptr(), make_hipPos(0, 0, 0), src_alloc.pitched_ptr(),
|
||||
make_hipPos(0, 0, 0), extent, hipMemcpyDeviceToDevice, context);
|
||||
}
|
||||
|
||||
HIP_CHECK(hipCtxPopCurrent(&context));
|
||||
HIP_CHECK(hipCtxDestroy(context));
|
||||
}
|
||||
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