cefbaed5cf
Change-Id: Iae7ac9c855ba6e3288257e99e49f8b16cebb1bac
220 wiersze
8.6 KiB
C++
220 wiersze
8.6 KiB
C++
/*
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Copyright (c) 2022 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
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THE SOFTWARE.
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*/
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/**
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Testcase Scenarios :
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Negative -
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1) Pass node as nullptr and verify api returns error code.
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2) Pass un-initialize node and verify api returns error code.
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3) Pass pNodeParams as nullptr and verify api returns error code.
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Functional -
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1) Add Memcpy node to graph, update the Memcpy node params with set and
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launch the graph and check updated params are taking effect.
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2) Add Memcpy node to graph, launch graph, then update the Memcpy node params
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with set and launch the graph and check updated params are taking effect.
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*/
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#include <hip_test_common.hh>
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#include <hip_test_checkers.hh>
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#define SIZE 10
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/* Test verifies hipGraphMemcpyNodeSetParams API Negative scenarios.
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*/
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TEST_CASE("Unit_hipGraphMemcpyNodeSetParams_Negative") {
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CHECK_IMAGE_SUPPORT
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constexpr int width{SIZE}, height{SIZE}, depth{SIZE};
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hipArray_t devArray;
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hipChannelFormatKind formatKind = hipChannelFormatKindSigned;
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hipMemcpy3DParms myparms;
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int* hData;
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uint32_t size = width * height * depth * sizeof(int);
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hData = reinterpret_cast<int*>(malloc(size));
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REQUIRE(hData != nullptr);
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memset(hData, 0, size);
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for (int i = 0; i < depth; i++) {
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for (int j = 0; j < height; j++) {
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for (int k = 0; k < width; k++) {
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hData[i*width*height + j*width + k] = i*width*height + j*width + k;
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}
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}
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}
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hipChannelFormatDesc channelDesc = hipCreateChannelDesc(sizeof(int)*8,
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0, 0, 0, formatKind);
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HIP_CHECK(hipMalloc3DArray(&devArray, &channelDesc, make_hipExtent(width,
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height, depth), hipArrayDefault));
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memset(&myparms, 0x0, sizeof(hipMemcpy3DParms));
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myparms.srcPos = make_hipPos(0, 0, 0);
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myparms.dstPos = make_hipPos(0, 0, 0);
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myparms.extent = make_hipExtent(width , height, depth);
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myparms.srcPtr = make_hipPitchedPtr(hData, width * sizeof(int),
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width, height);
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myparms.dstArray = devArray;
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myparms.kind = hipMemcpyHostToDevice;
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hipGraph_t graph;
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hipError_t ret;
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hipGraphNode_t memcpyNode;
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HIP_CHECK(hipGraphCreate(&graph, 0));
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HIP_CHECK(hipGraphAddMemcpyNode(&memcpyNode, graph, NULL, 0, &myparms));
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SECTION("Pass node as nullptr") {
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ret = hipGraphMemcpyNodeSetParams(nullptr, &myparms);
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REQUIRE(hipErrorInvalidValue == ret);
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}
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SECTION("Pass un-initialize node") {
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hipGraphNode_t memcpyNode_uninit{};
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ret = hipGraphMemcpyNodeSetParams(memcpyNode_uninit, &myparms);
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REQUIRE(hipErrorInvalidValue == ret);
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}
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SECTION("Pass SetNodeParams as nullptr") {
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ret = hipGraphMemcpyNodeSetParams(memcpyNode, nullptr);
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REQUIRE(hipErrorInvalidValue == ret);
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}
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HIP_CHECK(hipFreeArray(devArray));
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free(hData);
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HIP_CHECK(hipGraphDestroy(graph));
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}
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/* Test verifies hipGraphMemcpyNodeSetParams API Functional scenarios.
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*/
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TEST_CASE("Unit_hipGraphMemcpyNodeSetParams_Functional") {
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CHECK_IMAGE_SUPPORT
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constexpr int width{SIZE}, height{SIZE}, depth{SIZE};
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hipArray_t devArray;
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hipChannelFormatKind formatKind = hipChannelFormatKindSigned;
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hipMemcpy3DParms myparms, myparms1;
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uint32_t size = width * height * depth * sizeof(int);
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int *hData = reinterpret_cast<int*>(malloc(size));
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REQUIRE(hData != nullptr);
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memset(hData, 0, size);
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int *hDataTemp = reinterpret_cast<int*>(malloc(size));
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REQUIRE(hDataTemp != nullptr);
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memset(hDataTemp, 0, size);
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int *hOutputData = reinterpret_cast<int *>(malloc(size));
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REQUIRE(hOutputData != nullptr);
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memset(hOutputData, 0, size);
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int *hOutputData1 = reinterpret_cast<int *>(malloc(size));
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REQUIRE(hOutputData1 != nullptr);
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memset(hOutputData1, 0, size);
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for (int i = 0; i < depth; i++) {
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for (int j = 0; j < height; j++) {
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for (int k = 0; k < width; k++) {
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hData[i*width*height + j*width + k] = i*width*height + j*width + k;
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}
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}
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}
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hipChannelFormatDesc channelDesc = hipCreateChannelDesc(sizeof(int)*8,
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0, 0, 0, formatKind);
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HIP_CHECK(hipMalloc3DArray(&devArray, &channelDesc, make_hipExtent(width,
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height, depth), hipArrayDefault));
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memset(&myparms, 0x0, sizeof(hipMemcpy3DParms));
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// Host to Device
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myparms.srcPos = make_hipPos(0, 0, 0);
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myparms.dstPos = make_hipPos(0, 0, 0);
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myparms.extent = make_hipExtent(width , height, depth);
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myparms.srcPtr = make_hipPitchedPtr(hData, width * sizeof(int),
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width, height);
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myparms.dstArray = devArray;
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myparms.kind = hipMemcpyHostToDevice;
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hipGraph_t graph;
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hipGraphNode_t memcpyNode;
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std::vector<hipGraphNode_t> dependencies;
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hipStream_t streamForGraph;
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hipGraphExec_t graphExec;
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HIP_CHECK(hipStreamCreate(&streamForGraph));
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HIP_CHECK(hipGraphCreate(&graph, 0));
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HIP_CHECK(hipGraphAddMemcpyNode(&memcpyNode, graph, NULL, 0, &myparms));
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dependencies.push_back(memcpyNode);
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// Device to host
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memset(&myparms1, 0x0, sizeof(hipMemcpy3DParms));
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myparms1.srcPos = make_hipPos(0, 0, 0);
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myparms1.dstPos = make_hipPos(0, 0, 0);
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myparms1.dstPtr = make_hipPitchedPtr(hDataTemp, width * sizeof(int),
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width, height);
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myparms1.srcArray = devArray;
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myparms1.extent = make_hipExtent(width, height, depth);
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myparms1.kind = hipMemcpyDeviceToHost;
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HIP_CHECK(hipGraphAddMemcpyNode(&memcpyNode, graph, dependencies.data(),
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dependencies.size(), &myparms1));
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SECTION("Update the memcpyNode and check") {
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// Device to host with updated host ptr hDataTemp -> hOutputData
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memset(&myparms1, 0x0, sizeof(hipMemcpy3DParms));
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myparms1.srcPos = make_hipPos(0, 0, 0);
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myparms1.dstPos = make_hipPos(0, 0, 0);
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myparms1.dstPtr = make_hipPitchedPtr(hOutputData, width * sizeof(int),
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width, height);
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myparms1.srcArray = devArray;
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myparms1.extent = make_hipExtent(width, height, depth);
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myparms1.kind = hipMemcpyDeviceToHost;
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HIP_CHECK(hipGraphMemcpyNodeSetParams(memcpyNode, &myparms1));
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// Instantiate and launch the graph
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HIP_CHECK(hipGraphInstantiate(&graphExec, graph, nullptr, nullptr, 0));
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HIP_CHECK(hipGraphLaunch(graphExec, streamForGraph));
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HIP_CHECK(hipStreamSynchronize(streamForGraph));
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// Check result
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HipTest::checkArray(hData, hOutputData, width, height, depth);
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}
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SECTION("Update the memcpyNode again and check") {
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// Device to host with updated host ptr hOutputData -> hOutputData1
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memset(&myparms1, 0x0, sizeof(hipMemcpy3DParms));
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myparms1.srcPos = make_hipPos(0, 0, 0);
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myparms1.dstPos = make_hipPos(0, 0, 0);
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myparms1.dstPtr = make_hipPitchedPtr(hOutputData1, width * sizeof(int),
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width, height);
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myparms1.srcArray = devArray;
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myparms1.extent = make_hipExtent(width, height, depth);
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myparms1.kind = hipMemcpyDeviceToHost;
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HIP_CHECK(hipGraphAddMemcpyNode(&memcpyNode, graph, dependencies.data(),
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dependencies.size(), &myparms1));
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HIP_CHECK(hipGraphMemcpyNodeSetParams(memcpyNode, &myparms1));
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// Instantiate and launch the graph
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HIP_CHECK(hipGraphInstantiate(&graphExec, graph, nullptr, nullptr, 0));
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HIP_CHECK(hipGraphLaunch(graphExec, streamForGraph));
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HIP_CHECK(hipStreamSynchronize(streamForGraph));
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// Check result
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HipTest::checkArray(hData, hOutputData1, width, height, depth);
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}
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HIP_CHECK(hipGraphExecDestroy(graphExec));
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HIP_CHECK(hipGraphDestroy(graph));
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HIP_CHECK(hipStreamDestroy(streamForGraph));
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HIP_CHECK(hipFreeArray(devArray));
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free(hData);
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free(hDataTemp);
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free(hOutputData);
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free(hOutputData1);
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}
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