Blender build data
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189
blender-build/build_environment/patches/dpcpp.diff
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189
blender-build/build_environment/patches/dpcpp.diff
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@@ -0,0 +1,189 @@
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diff -Naur llvm-sycl-nightly-20220501.orig\opencl/CMakeLists.txt llvm-sycl-nightly-20220501\opencl/CMakeLists.txt
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--- llvm-sycl-nightly-20220501.orig/opencl/CMakeLists.txt 2022-04-29 13:47:11 -0600
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+++ llvm-sycl-nightly-20220501/opencl/CMakeLists.txt 2022-05-21 15:25:06 -0600
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@@ -11,6 +11,11 @@
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)
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endif()
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+# Blender code below is determined to use FetchContent_Declare
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+# temporarily allow it (but feed it our downloaded tarball
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+# in the OpenCL_HEADERS variable
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+set(FETCHCONTENT_FULLY_DISCONNECTED OFF)
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+
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# Repo URLs
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set(OCL_HEADERS_REPO
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@@ -77,5 +82,6 @@
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FetchContent_MakeAvailable(ocl-icd)
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add_library(OpenCL-ICD ALIAS OpenCL)
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+set(FETCHCONTENT_FULLY_DISCONNECTED ON)
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add_subdirectory(opencl-aot)
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diff -Naur llvm-sycl-nightly-20220208.orig/libdevice/cmake/modules/SYCLLibdevice.cmake llvm-sycl-nightly-20220208/libdevice/cmake/modules/SYCLLibdevice.cmake
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--- llvm-sycl-nightly-20220208.orig/libdevice/cmake/modules/SYCLLibdevice.cmake 2022-02-08 09:17:24 -0700
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+++ llvm-sycl-nightly-20220208/libdevice/cmake/modules/SYCLLibdevice.cmake 2022-05-24 11:35:51 -0600
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@@ -36,7 +36,9 @@
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add_custom_target(libsycldevice-obj)
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add_custom_target(libsycldevice-spv)
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-add_custom_target(libsycldevice DEPENDS
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+# Blender: add ALL here otherwise this target will not build
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+# and cause an error due to missing files during the install phase.
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+add_custom_target(libsycldevice ALL DEPENDS
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libsycldevice-obj
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libsycldevice-spv)
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diff --git a/sycl/source/detail/program_manager/program_manager.cpp b/sycl/source/detail/program_manager/program_manager.cpp
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index 17eeaafae194..09e6d2217aaa 100644
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--- a/sycl/source/detail/program_manager/program_manager.cpp
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+++ b/sycl/source/detail/program_manager/program_manager.cpp
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@@ -1647,46 +1647,120 @@ ProgramManager::getSYCLDeviceImagesWithCompatibleState(
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}
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assert(BinImages.size() > 0 && "Expected to find at least one device image");
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+ // Ignore images with incompatible state. Image is considered compatible
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+ // with a target state if an image is already in the target state or can
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+ // be brought to target state by compiling/linking/building.
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+ //
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+ // Example: an image in "executable" state is not compatible with
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+ // "input" target state - there is no operation to convert the image it
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+ // to "input" state. An image in "input" state is compatible with
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+ // "executable" target state because it can be built to get into
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+ // "executable" state.
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+ for (auto It = BinImages.begin(); It != BinImages.end();) {
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+ if (getBinImageState(*It) > TargetState)
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+ It = BinImages.erase(It);
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+ else
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+ ++It;
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+ }
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+
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std::vector<device_image_plain> SYCLDeviceImages;
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- for (RTDeviceBinaryImage *BinImage : BinImages) {
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- const bundle_state ImgState = getBinImageState(BinImage);
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-
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- // Ignore images with incompatible state. Image is considered compatible
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- // with a target state if an image is already in the target state or can
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- // be brought to target state by compiling/linking/building.
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- //
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- // Example: an image in "executable" state is not compatible with
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- // "input" target state - there is no operation to convert the image it
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- // to "input" state. An image in "input" state is compatible with
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- // "executable" target state because it can be built to get into
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- // "executable" state.
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- if (ImgState > TargetState)
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- continue;
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- for (const sycl::device &Dev : Devs) {
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+ // If a non-input state is requested, we can filter out some compatible
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+ // images and return only those with the highest compatible state for each
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+ // device-kernel pair. This map tracks how many kernel-device pairs need each
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+ // image, so that any unneeded ones are skipped.
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+ // TODO this has no effect if the requested state is input, consider having
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+ // a separate branch for that case to avoid unnecessary tracking work.
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+ struct DeviceBinaryImageInfo {
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+ std::shared_ptr<std::vector<sycl::kernel_id>> KernelIDs;
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+ bundle_state State = bundle_state::input;
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+ int RequirementCounter = 0;
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+ };
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+ std::unordered_map<RTDeviceBinaryImage *, DeviceBinaryImageInfo> ImageInfoMap;
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+
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+ for (const sycl::device &Dev : Devs) {
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+ // Track the highest image state for each requested kernel.
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+ using StateImagesPairT =
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+ std::pair<bundle_state, std::vector<RTDeviceBinaryImage *>>;
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+ using KernelImageMapT =
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+ std::map<kernel_id, StateImagesPairT, LessByNameComp>;
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+ KernelImageMapT KernelImageMap;
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+ if (!KernelIDs.empty())
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+ for (const kernel_id &KernelID : KernelIDs)
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+ KernelImageMap.insert({KernelID, {}});
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+
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+ for (RTDeviceBinaryImage *BinImage : BinImages) {
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if (!compatibleWithDevice(BinImage, Dev) ||
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!doesDevSupportImgAspects(Dev, *BinImage))
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continue;
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- std::shared_ptr<std::vector<sycl::kernel_id>> KernelIDs;
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- // Collect kernel names for the image
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- {
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- std::lock_guard<std::mutex> KernelIDsGuard(m_KernelIDsMutex);
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- KernelIDs = m_BinImg2KernelIDs[BinImage];
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- // If the image does not contain any non-service kernels we can skip it.
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- if (!KernelIDs || KernelIDs->empty())
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- continue;
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+ auto InsertRes = ImageInfoMap.insert({BinImage, {}});
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+ DeviceBinaryImageInfo &ImgInfo = InsertRes.first->second;
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+ if (InsertRes.second) {
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+ ImgInfo.State = getBinImageState(BinImage);
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+ // Collect kernel names for the image
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+ {
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+ std::lock_guard<std::mutex> KernelIDsGuard(m_KernelIDsMutex);
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+ ImgInfo.KernelIDs = m_BinImg2KernelIDs[BinImage];
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+ }
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}
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+ const bundle_state ImgState = ImgInfo.State;
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+ const std::shared_ptr<std::vector<sycl::kernel_id>> &ImageKernelIDs =
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+ ImgInfo.KernelIDs;
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+ int &ImgRequirementCounter = ImgInfo.RequirementCounter;
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- DeviceImageImplPtr Impl = std::make_shared<detail::device_image_impl>(
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- BinImage, Ctx, Devs, ImgState, KernelIDs, /*PIProgram=*/nullptr);
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+ // If the image does not contain any non-service kernels we can skip it.
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+ if (!ImageKernelIDs || ImageKernelIDs->empty())
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+ continue;
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- SYCLDeviceImages.push_back(
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- createSyclObjFromImpl<device_image_plain>(Impl));
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- break;
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+ // Update tracked information.
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+ for (kernel_id &KernelID : *ImageKernelIDs) {
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+ StateImagesPairT *StateImagesPair;
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+ // If only specific kernels are requested, ignore the rest.
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+ if (!KernelIDs.empty()) {
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+ auto It = KernelImageMap.find(KernelID);
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+ if (It == KernelImageMap.end())
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+ continue;
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+ StateImagesPair = &It->second;
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+ } else
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+ StateImagesPair = &KernelImageMap[KernelID];
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+
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+ auto &[KernelImagesState, KernelImages] = *StateImagesPair;
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+
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+ if (KernelImages.empty()) {
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+ KernelImagesState = ImgState;
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+ KernelImages.push_back(BinImage);
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+ ++ImgRequirementCounter;
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+ } else if (KernelImagesState < ImgState) {
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+ for (RTDeviceBinaryImage *Img : KernelImages) {
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+ auto It = ImageInfoMap.find(Img);
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+ assert(It != ImageInfoMap.end());
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+ assert(It->second.RequirementCounter > 0);
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+ --(It->second.RequirementCounter);
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+ }
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+ KernelImages.clear();
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+ KernelImages.push_back(BinImage);
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+ KernelImagesState = ImgState;
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+ ++ImgRequirementCounter;
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+ } else if (KernelImagesState == ImgState) {
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+ KernelImages.push_back(BinImage);
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+ ++ImgRequirementCounter;
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+ }
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+ }
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}
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}
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+ for (const auto &ImgInfoPair : ImageInfoMap) {
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+ if (ImgInfoPair.second.RequirementCounter == 0)
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+ continue;
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+
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+ DeviceImageImplPtr Impl = std::make_shared<detail::device_image_impl>(
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+ ImgInfoPair.first, Ctx, Devs, ImgInfoPair.second.State,
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+ ImgInfoPair.second.KernelIDs, /*PIProgram=*/nullptr);
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+
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+ SYCLDeviceImages.push_back(createSyclObjFromImpl<device_image_plain>(Impl));
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+ }
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+
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return SYCLDeviceImages;
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}
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