Flawfinder version 2.0.10, (C) 2001-2019 David A. Wheeler.
Number of rules (primarily dangerous function names) in C/C++ ruleset: 223
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_barrier.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_cmdlist.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_cmdqueue.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_context.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_copy.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_core_loader.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_device.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_driver.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_event.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_fence.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_image.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_memory.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_module.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_sampler.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/experimental/tracing/zet_tracing.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/sysman/ze_sysman_loader.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/sysman/zes_sysman.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/tools/ze_tools_loader.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/tools/zet_debug.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/tools/zet_metric.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/api/tools/zet_module.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/additional_kernel_properties.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/builtin/builtin_functions_lib.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/builtin/builtin_functions_lib_impl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/builtin/builtin_functions_lib_impl.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/cmdlist/cmdlist.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/cmdlist/cmdlist.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/cmdlist/cmdlist_hw.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/cmdlist/cmdlist_hw_immediate.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/cmdlist/cmdlist_imp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/cmdlist/cmdlist_imp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/cmdqueue/cmdqueue.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/cmdqueue/cmdqueue.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/cmdqueue/cmdqueue_hw.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/cmdqueue/cmdqueue_imp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/compiler_interface/default_cache_config.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/compiler_interface/default_l0_cache_config.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/compiler_interface/default_l0_cache_config.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/compiler_interface/l0_reg_path.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context_imp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context_imp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/debugger/debug_manager.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/debugger/debugger_l0.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/debugger/debugger_l0.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/debugger/linux/debugger_l0_linux.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/debugger/windows/debugger_l0_windows.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/device/device.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/device/device_imp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/device/device_imp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/dll/disallow_deferred_deleter.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/dll/linux/debugger_l0_linux.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/dll/windows/debugger_l0_windows.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/driver/driver.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/driver/driver.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/driver/driver_handle.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/driver/driver_handle_imp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/driver/driver_handle_imp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/driver/driver_imp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/event/event.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/event/event.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/fence/fence.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/fence/fence.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen11/debugger_gen11.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen11/enable_family_full_l0_gen11.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen11/icllp/cmdlist_icllp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen11/icllp/cmdqueue_icllp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen11/icllp/image_icllp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen11/icllp/kernel_icllp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen11/icllp/sampler_icllp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/cmdlist_gen12lp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/debugger_gen12lp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/dg1/cmdlist_dg1.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/dg1/cmdqueue_dg1.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/dg1/image_dg1.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/dg1/kernel_dg1.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/dg1/sampler_dg1.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/enable_family_full_l0_gen12lp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/tgllp/cmdlist_tgllp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/tgllp/cmdqueue_tgllp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/tgllp/image_tgllp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/tgllp/kernel_tgllp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen12lp/tgllp/sampler_tgllp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen8/debugger_gen8.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen8/enable_family_full_l0_gen8.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/cfl/cmdlist_cfl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/cfl/cmdqueue_cfl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/cfl/image_cfl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/cfl/kernel_cfl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/cfl/sampler_cfl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/cmdlist_gen9.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/debugger_gen9.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/enable_family_full_l0_gen9.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/kbl/cmdlist_kbl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/kbl/cmdqueue_kbl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/kbl/image_kbl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/kbl/kernel_kbl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/kbl/sampler_kbl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/skl/cmdlist_skl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/skl/cmdqueue_skl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/skl/image_skl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/skl/kernel_skl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/gen9/skl/sampler_skl.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/get_extension_function_lookup_map.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/get_extension_function_lookup_map.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/helpers/api_specific_config_l0.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/hw_helpers/hw_helpers.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/image/image.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/image/image_format_desc_helper.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/image/image_format_desc_helper.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/image/image_formats.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/image/image_hw.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/image/image_imp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/image/image_imp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/kernel/kernel.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/kernel/kernel.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/kernel/kernel_hw.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/kernel/kernel_imp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/kernel/kernel_imp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/linux/driver_teardown.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/linux/registry_path.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/memory/cpu_page_fault_memory_manager.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/memory/memory.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/memory/memory_operations_helper.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/memory_manager/compression_selector_l0.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/module/module.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/module/module_build_log.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/module/module_build_log.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/module/module_extra_options.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/module/module_imp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/module/module_imp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/printf_handler/printf_handler.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/printf_handler/printf_handler.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/sampler/sampler.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/sampler/sampler_hw.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/sampler/sampler_imp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/sampler/sampler_imp.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/windows/driver_teardown.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/source/windows/registry_path.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/black_box_tests/zello_timestamp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/black_box_tests/zello_world_gpu.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/fixtures/cmdlist_fixture.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/fixtures/device_fixture.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/fixtures/device_fixture.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/fixtures/module_fixture.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/gen11/enable_l0_mocks_gen11.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/gen11/test_cmdqueue_thread_arbitration_policy_gen11.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/gen12lp/enable_l0_mocks_gen12lp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/gen12lp/test_device_gen12lp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/gen12lp/test_events_gen12lp.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/gen9/enable_l0_mocks_gen9.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/gen9/test_cmdlist_append_launch_kernel_gen9.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/gen9/test_cmdqueue_gen9.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/gen9/test_device_gen9.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/main.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mock.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/debugger_l0_create.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_built_ins.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_built_ins.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_cmdlist.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_cmdlist.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_cmdqueue.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_cmdqueue.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_context.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_device.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_device.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_driver.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_driver.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_driver_handle.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_driver_handle.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_event.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_event.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_gmm_resource_info_l0.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_kernel.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_l0_debugger.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_memory_manager.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_module.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_module.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_sampler.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/builtin/built_in_tests_l0.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/builtin/builtin_functions_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/cmdlist/test_cmdlist_1.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/cmdlist/test_cmdlist_2.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/cmdlist/test_cmdlist_api.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/cmdlist/test_cmdlist_append_barrier.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/cmdlist/test_cmdlist_append_event_reset.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/cmdlist/test_cmdlist_append_launch_kernel.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/cmdlist/test_cmdlist_append_signal_event.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/cmdlist/test_cmdlist_append_wait_on_events.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/cmdlist/test_cmdlist_blit.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/cmdqueue/test_cmdqueue.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/context/test_context.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/debugger/active_debugger_fixture.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/debugger/l0_debugger_fixture.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/debugger/linux/test_l0_debugger_linux.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/debugger/test_l0_debugger.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/debugger/test_module_with_debug.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/debugger/test_source_level_debugger.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/deferred_deleter_test.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/device/test_device.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/driver/test_driver.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/event/test_event.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/fence/test_fence.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/helper/heap_assigner_l0_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/image/test_image.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/kernel/test_kernel.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/memory/test_memory.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/memory_manager/compression_selector_l0_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/ult_configuration.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/white_box.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/ddi/ze_ddi_tables.h
Examining data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/experimental.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing.h
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Examining data/intel-compute-runtime-20.44.18297/level_zero/source/inc/ze_intel_gpu.h
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Examining data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/temperature/windows/os_temperature_imp.cpp
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Examining data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/temperature/linux/mock_sysfs_temperature.h
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Examining data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/temperature/windows/test_zes_temperature.cpp
Examining data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/windows/mock_kmd_sys_manager.h
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Examining data/intel-compute-runtime-20.44.18297/opencl/extensions/public/cl_ext_private.h
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/accelerators/intel_accelerator.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/accelerators/intel_motion_estimation.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/api/additional_extensions.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/dll/create_command_stream.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/dll/linux/allocator_helper.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/dll/linux/create_drm_memory_manager.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/dll/linux/drm_neo_create.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/dll/windows/create_wddm_memory_manager.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/os_interface/windows/performance_counters_win.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/os_interface/windows/performance_counters_win.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/os_interface/windows/platform_teardown_win.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/os_interface/windows/wddm_device_command_stream.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/platform/extensions.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/program/additional_options.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/program/block_kernel_manager.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/program/block_kernel_manager.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/program/build.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/program/kernel_info.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/program/process_device_binary.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/d3d/cl_d3d_api.h
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/d3d/d3d_sharing.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/d3d/d3d_sharing.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/d3d/d3d_surface.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/d3d/d3d_texture.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/d3d/d3d_texture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/d3d/enable_d3d.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/d3d/enable_d3d.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/cl_gl_api_intel.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/gl_arb_sync_event.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/gl_buffer.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/gl_cl_image_format.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/gl_context_guard.h
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/windows/cl_gl_api.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/windows/gl_context_guard_windows.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/windows/gl_library_windows.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/windows/gl_sharing_windows.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/windows/gl_sharing_windows.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/windows/gl_sync_event_windows.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/windows/win_enable_gl.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/windows/win_enable_gl.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/sharing.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/sharing.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/sharing_factory.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/sharing_factory.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/unified/enable_unified.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/unified/enable_unified.h
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/unified/unified_buffer.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/unified/unified_enable_name.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/unified/unified_image.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/unified/unified_image.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/unified/unified_sharing.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/unified/unified_sharing.h
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/cl_va_api.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/cl_va_api.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/enable_va.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/va_device.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/va_extension.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/va_sharing.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/va_sharing.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/va_sharing_defines.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/va_sharing_functions.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/va_sharing_functions.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/va_surface.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/sharings/va/va_surface.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/tracing/tracing_api.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/tracing/tracing_api.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/tracing/tracing_handle.h
Examining data/intel-compute-runtime-20.44.18297/opencl/source/tracing/tracing_notify.h
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Examining data/intel-compute-runtime-20.44.18297/opencl/source/utilities/logger.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/source/utilities/logger.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/black_box_test/hello_world_opencl.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/abort.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/accelerators/media_image_arg_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/additional_extensions_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/api_tests_wrapper1.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_api_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_buffer_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_command_queue_with_properties_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_image_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_program_with_built_in_kernels_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_enqueue_svm_migrate_mem_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_intel_motion_estimation.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/gl/cl_create_from_gl_buffer_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/gl/cl_create_from_gl_renderbuffer_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/gl/cl_gl_intel_tracing_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub/aub_center_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub/aub_center_using_aubstream_stubs_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/built_ins/get_built_ins_file_names.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/built_ins/sip_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/blit_enqueue_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/buffer_operations_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_enqueue_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_queue_fixture.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_queue_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_queue_hw_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_queue_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/dispatch_walker_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_barrier_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_command_without_kernel_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_buffer_event_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_buffer_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_buffer_rect_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_buffer_rect_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_buffer_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_buffer_to_image_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_buffer_to_image_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_image_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_image_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_image_to_buffer_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_copy_image_to_buffer_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_debug_kernel_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_fill_buffer_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_fill_buffer_negative_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_fill_buffer_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_fill_image_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_fill_image_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_fixture.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_handler_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_kernel_1_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_kernel_2_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_kernel_event_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_kernel_global_offset_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_kernel_local_work_size_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_kernel_mt_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_kernel_two_ioq_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_kernel_two_ooq_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_kernel_two_walker_ioq_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_kernel_two_walker_ooq_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_map_buffer_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_map_buffer_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_map_image_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_marker_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_media_kernel.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_migrate_mem_objects_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_read_buffer_event_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_read_buffer_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_read_buffer_rect_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_read_buffer_rect_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_read_buffer_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_read_image_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_read_image_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_resource_barier_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_mem_copy_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_mem_fill_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_unmap_memobject_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_waitlist_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_write_buffer_event_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_write_buffer_rect_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_write_buffer_rect_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_write_buffer_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_write_image_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_write_image_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/finish_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/flattened_id_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/flush_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/get_command_queue_info_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/get_size_required_buffer_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/get_size_required_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/gl/windows/enqueue_kernel_gl_tests_windows.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/ioq_task_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/local_id_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/local_work_size_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/multi_dispatch_info_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/multiple_map_buffer_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/multiple_map_image_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/oom_buffer_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/oom_image_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/ooq_task_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/read_write_buffer_cpu_copy.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/sync_buffer_handler_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/work_group_size_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/zero_size_enqueue_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/aub_command_stream_receiver_1_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/command_stream_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/command_stream_receiver_flush_task_1_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/create_command_stream_receiver_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/linear_stream_fixture.h
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/linear_stream_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/submissions_aggregator_tests.cpp
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Examining data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_gfx_partition.h
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Examining data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/wddm/wddm.cpp
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Examining data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/wddm_additional_context_flags.cpp
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Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/variable_backup.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/image/image_surface_state_fixture.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/image/image_surface_state_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/indirect_heap/indirect_heap_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/kernel/kernel_arg_descriptor_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/kernel/kernel_arg_metadata_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/kernel/kernel_descriptor_from_patchtokens_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/kernel/kernel_descriptor_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/libult/gen11.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/libult/gen12lp.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/libult/gen8.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/libult/gen9.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/memory_manager/multi_graphics_allocation_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/memory_manager/special_heap_pool_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/linux/mock_drm_memory_manager.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/linux/mock_drm_memory_manager.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/mock_command_stream_receiver.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/mock_command_stream_receiver.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/mock_compiler_interface.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/mock_device.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/mock_device.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/mock_direct_submission_diagnostic_collector.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/mock_direct_submission_hw.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/mock_dispatch_kernel_encoder_interface.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/mock_dispatch_kernel_encoder_interface.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/mock_os_library.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/ult_device_factory.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/ult_device_factory.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/mocks/windows/mock_wddm_direct_submission.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/aub_memory_operations_handler_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/aub_memory_operations_handler_tests.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/linux/drm_query_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/linux/drm_special_heap_test.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/windows/gdi_interface_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/windows/gmm_helper_tests_win.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/windows/mock_gdi_interface.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/windows/mock_gdi_interface.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/windows/wddm_preemption_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/windows/wddm_special_heap_test.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/os_interface/windows/wddm_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/page_fault_manager/cpu_page_fault_manager_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/page_fault_manager/cpu_page_fault_manager_tests_fixture.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/page_fault_manager/default_asan_options.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/page_fault_manager/linux/cpu_page_fault_manager_linux_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/page_fault_manager/mock_cpu_page_fault_manager.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/page_fault_manager/windows/cpu_page_fault_manager_windows_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/preamble/preamble_fixture.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/preamble/preamble_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/preemption/preemption_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/program/program_info_from_patchtokens_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/program/program_info_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/program/program_initialization_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/source_level_debugger/source_level_debugger_preamble_test.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/test_macros/header/test.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/test_macros/test_checks_shared.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/test_macros/test_checks_shared.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/test_mode.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/tests_configuration.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/unified_memory/unified_memory_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/base_object_utils.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/const_stringref_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/containers_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/containers_tests_helpers.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/cpuinfo_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/cpuintrinsics.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/cpuintrinsics_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/destructor_counted.h
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/directory_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/heap_allocator_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/io_functions_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/numeric_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/reference_tracked_object_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/spinlock_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/timer_util_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/vec_tests.cpp
Examining data/intel-compute-runtime-20.44.18297/third_party/aub_stream/headers/aub_manager.h
Examining data/intel-compute-runtime-20.44.18297/third_party/aub_stream/headers/aubstream.h
Examining data/intel-compute-runtime-20.44.18297/third_party/aub_stream/headers/engine_node.h
Examining data/intel-compute-runtime-20.44.18297/third_party/aub_stream/headers/hardware_context.h
Examining data/intel-compute-runtime-20.44.18297/third_party/aub_stream/headers/page_info.h
Examining data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc
Examining data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock/gmock.h
Examining data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h
Examining data/intel-compute-runtime-20.44.18297/third_party/metrics_discovery/metrics_discovery_api.h
Examining data/intel-compute-runtime-20.44.18297/third_party/metrics_library/metrics_library_api_1_0.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_d3d10.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_d3d11.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_dx9_media_sharing.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_dx9_media_sharing_intel.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_egl.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_ext.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_ext_intel.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_gl.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_gl_ext.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_platform.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_va_api_media_sharing_intel.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_version.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/opencl.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/gl.h
Examining data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h
Examining data/intel-compute-runtime-20.44.18297/third_party/source_level_debugger/igfx_debug_interchange_types.h
Examining data/intel-compute-runtime-20.44.18297/third_party/uapi/dg1/drm/drm.h
Examining data/intel-compute-runtime-20.44.18297/third_party/uapi/dg1/drm/drm_fourcc.h
Examining data/intel-compute-runtime-20.44.18297/third_party/uapi/dg1/drm/drm_mode.h
Examining data/intel-compute-runtime-20.44.18297/third_party/uapi/dg1/drm/i915_drm.h
Examining data/intel-compute-runtime-20.44.18297/third_party/uapi/drm/drm.h
Examining data/intel-compute-runtime-20.44.18297/third_party/uapi/drm/drm_fourcc.h
Examining data/intel-compute-runtime-20.44.18297/third_party/uapi/drm/drm_mode.h
Examining data/intel-compute-runtime-20.44.18297/third_party/uapi/drm/i915_drm.h

FINAL RESULTS:

data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:209:21:  [5] (race) readlink:
  This accepts filename arguments; if an attacker can move those files or
  change the link content, a race condition results. Also, it does not
  terminate with ASCII NUL. (CWE-362, CWE-20). Reconsider approach.
    ssize_t len = ::readlink(path.c_str(), buf, PATH_MAX - 1);
data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_context.cpp:79:34:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    ze_memory_access_attribute_t access) {
data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_context.cpp:80:97:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    return L0::Context::fromHandle(hContext)->mapVirtualMem(ptr, size, hPhysicalMemory, offset, access);
data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_context.cpp:96:34:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    ze_memory_access_attribute_t access) {
data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_context.cpp:97:87:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    return L0::Context::fromHandle(hContext)->setVirtualMemAccessAttribute(ptr, size, access);
data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_context.cpp:105:35:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    ze_memory_access_attribute_t *access,
data/intel-compute-runtime-20.44.18297/level_zero/api/core/ze_context.cpp:107:87:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    return L0::Context::fromHandle(hContext)->getVirtualMemAccessAttribute(ptr, size, access, outSize);
data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context.h:97:68:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                      ze_memory_access_attribute_t access) = 0;
data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context.h:102:83:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                                     ze_memory_access_attribute_t access) = 0;
data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context.h:105:84:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                                     ze_memory_access_attribute_t *access,
data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context_imp.cpp:237:68:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                      ze_memory_access_attribute_t access) {
data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context_imp.cpp:248:83:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                                     ze_memory_access_attribute_t access) {
data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context_imp.cpp:254:84:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                                     ze_memory_access_attribute_t *access,
data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context_imp.h:92:60:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                              ze_memory_access_attribute_t access) override;
data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context_imp.h:97:75:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                             ze_memory_access_attribute_t access) override;
data/intel-compute-runtime-20.44.18297/level_zero/core/source/context/context_imp.h:100:76:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                             ze_memory_access_attribute_t *access,
data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_context.h:190:47:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                 ze_memory_access_attribute_t access),
data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_context.h:201:47:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                 ze_memory_access_attribute_t access),
data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/mocks/mock_context.h:207:48:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                 ze_memory_access_attribute_t *access,
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.cpp:416:54:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                        ze_memory_access_attribute_t access) {
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.cpp:424:32:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                               access);
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.cpp:432:29:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    tracerParams.paccess = &access;
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.cpp:484:69:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                       ze_memory_access_attribute_t access) {
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.cpp:490:32:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                               access);
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.cpp:496:29:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    tracerParams.paccess = &access;
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.cpp:517:70:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                       ze_memory_access_attribute_t *access,
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.cpp:524:32:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                               access,
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.cpp:531:29:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    tracerParams.paccess = &access;
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.h:91:54:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                        ze_memory_access_attribute_t access);
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.h:102:69:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                       ze_memory_access_attribute_t access);
data/intel-compute-runtime-20.44.18297/level_zero/experimental/source/tracing/tracing_memory_imp.h:108:70:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
                                       ze_memory_access_attribute_t *access,
data/intel-compute-runtime-20.44.18297/level_zero/experimental/test/unit_tests/sources/tracing/test_memory_api_tracing.cpp:217:102:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
        [](ze_context_handle_t hContext, const void *ptr, size_t size, ze_memory_access_attribute_t *access, size_t *outSize) { return ZE_RESULT_SUCCESS; };
data/intel-compute-runtime-20.44.18297/level_zero/experimental/test/unit_tests/sources/tracing/test_memory_api_tracing.cpp:233:158:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
        [](ze_context_handle_t hContext, const void *ptr, size_t size, ze_physical_mem_handle_t hPhysicalMemory, size_t offset, ze_memory_access_attribute_t access) { return ZE_RESULT_SUCCESS; };
data/intel-compute-runtime-20.44.18297/level_zero/experimental/test/unit_tests/sources/tracing/test_memory_api_tracing.cpp:281:101:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
        [](ze_context_handle_t hContext, const void *ptr, size_t size, ze_memory_access_attribute_t access) { return ZE_RESULT_SUCCESS; };
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:171:9:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    if (access(file.c_str(), F_OK)) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:174:9:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    if (access(file.c_str(), R_OK)) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:181:9:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    if (access(file.c_str(), F_OK)) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:184:9:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    if (access(file.c_str(), W_OK)) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:191:9:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
    if (access(file.c_str(), F_OK)) {
data/intel-compute-runtime-20.44.18297/opencl/source/context/context.h:116:9:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
        snprintf(hint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[performanceHint], std::forward<Args>(args)..., 0);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:32:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer), ptr);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:56:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer), addressForReadBuffer);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:58:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_DOESNT_MEET_ALIGNMENT_RESTRICTIONS], addressForReadBuffer, sizeForReadBuffer, MemoryConstants::pageSize, MemoryConstants::pageSize);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:92:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_RECT_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer), addressForReadBufferRect);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:94:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_RECT_DOESNT_MEET_ALIGNMENT_RESTRICTIONS], addressForReadBufferRect, sizeForReadBufferRect, MemoryConstants::pageSize, MemoryConstants::pageSize);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:121:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_RECT_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer), ptr);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:147:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_RECT_DOESNT_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer), address);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:165:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_WRITE_BUFFER_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:183:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_WRITE_BUFFER_DOESNT_REQUIRE_COPY_DATA], static_cast<cl_mem>(buffer), address);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:201:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_WRITE_BUFFER_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:219:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_WRITE_BUFFER_DOESNT_REQUIRE_COPY_DATA], static_cast<cl_mem>(buffer), address);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:237:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer), ptr);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:255:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_DOESNT_REQUIRE_COPY_DATA], static_cast<cl_mem>(buffer), address);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:273:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer), ptr);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:291:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_BUFFER_DOESNT_REQUIRE_COPY_DATA], static_cast<cl_mem>(buffer), address);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:317:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_WRITE_BUFFER_RECT_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:343:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_WRITE_BUFFER_RECT_DOESNT_REQUIRE_COPY_DATA], static_cast<cl_mem>(buffer));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:375:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_IMAGE_DOESNT_MEET_ALIGNMENT_RESTRICTIONS], addressForReadImage, sizeForReadImage, MemoryConstants::pageSize, MemoryConstants::pageSize);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:398:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_WRITE_IMAGE_REQUIRES_COPY_DATA], static_cast<cl_mem>(image));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:421:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_WRITE_IMAGE_DOESNT_REQUIRES_COPY_DATA], static_cast<cl_mem>(zeroCopyImage.get()));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:444:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_READ_IMAGE_DOESNT_REQUIRES_COPY_DATA], static_cast<cl_mem>(zeroCopyImage.get()));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:463:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_MAP_BUFFER_DOESNT_REQUIRE_COPY_DATA], static_cast<cl_mem>(buffer));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:466:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_MAP_BUFFER_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:493:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_MAP_BUFFER_DOESNT_REQUIRE_COPY_DATA], static_cast<cl_mem>(buffer.get()));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:496:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_MAP_BUFFER_REQUIRES_COPY_DATA], static_cast<cl_mem>(buffer.get()));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:531:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_MAP_IMAGE_DOESNT_REQUIRE_COPY_DATA], static_cast<cl_mem>(image));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:534:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_MAP_IMAGE_REQUIRES_COPY_DATA], static_cast<cl_mem>(image));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:571:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_MAP_IMAGE_DOESNT_REQUIRE_COPY_DATA], static_cast<cl_mem>(image.get()));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:574:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_MAP_IMAGE_REQUIRES_COPY_DATA], static_cast<cl_mem>(image.get()));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:594:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_UNMAP_MEM_OBJ_REQUIRES_COPY_DATA], mapPtr, static_cast<cl_mem>(buffer));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:597:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_UNMAP_MEM_OBJ_DOESNT_REQUIRE_COPY_DATA], mapPtr);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:626:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_UNMAP_MEM_OBJ_REQUIRES_COPY_DATA], mapPtr, static_cast<cl_mem>(buffer.get()));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:629:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_UNMAP_MEM_OBJ_DOESNT_REQUIRE_COPY_DATA], mapPtr);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:656:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_UNMAP_MEM_OBJ_REQUIRES_COPY_DATA], mapPtr, static_cast<cl_mem>(image));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:659:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_UNMAP_MEM_OBJ_DOESNT_REQUIRE_COPY_DATA], mapPtr);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:671:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_ENQUEUE_SVM_MAP_DOESNT_REQUIRE_COPY_DATA], svmPtr);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:682:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[NULL_LOCAL_WORKGROUP_SIZE], kernel->getKernelInfo().kernelDescriptor.kernelMetadata.kernelName.c_str(),
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:694:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[NULL_LOCAL_WORKGROUP_SIZE], kernel->getKernelInfo().kernelDescriptor.kernelMetadata.kernelName.c_str(),
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:707:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[NULL_LOCAL_WORKGROUP_SIZE], kernel->getKernelInfo().kernelDescriptor.kernelMetadata.kernelName.c_str(),
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:718:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[NULL_LOCAL_WORKGROUP_SIZE], kernel->getKernelInfo().kernelDescriptor.kernelMetadata.kernelName.c_str(),
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:731:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[NULL_LOCAL_WORKGROUP_SIZE], kernel->getKernelInfo().kernelDescriptor.kernelMetadata.kernelName.c_str(),
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:744:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[NULL_LOCAL_WORKGROUP_SIZE], kernel->getKernelInfo().kernelDescriptor.kernelMetadata.kernelName.c_str(),
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:772:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[BAD_LOCAL_WORKGROUP_SIZE],
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:789:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[PRINTF_DETECTED_IN_KERNEL], kernel->getKernelInfo().kernelDescriptor.kernelMetadata.kernelName.c_str());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_enqueue_tests.cpp:823:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[KERNEL_REQUIRES_COHERENCY], mockKernel.mockKernel->getKernelInfo().kernelDescriptor.kernelMetadata.kernelName.c_str());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:103:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_BUFFER_DOESNT_MEET_ALIGNMENT_RESTRICTIONS], addressForBuffer, sizeForBuffer, MemoryConstants::pageSize, MemoryConstants::pageSize);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:105:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_BUFFER_NEEDS_ALLOCATE_MEMORY], 0);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:119:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[DRIVER_CALLS_INTERNAL_CL_FLUSH], 0);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:122:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[PROFILING_ENABLED], 0);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:125:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[PROFILING_ENABLED_WITH_DISABLED_PREEMPTION], 0);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:144:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[DRIVER_CALLS_INTERNAL_CL_FLUSH], 0);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:147:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[PROFILING_ENABLED], 0);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:150:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[PROFILING_ENABLED_WITH_DISABLED_PREEMPTION], 0);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:173:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[SUBBUFFER_SHARES_MEMORY], buffer);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:194:9:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
        snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_SVM_ALLOC_MEETS_ALIGNMENT_RESTRICTIONS], SVMPtr, size);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:333:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_IMAGE_MEETS_ALIGNMENT_RESTRICTIONS], static_cast<cl_mem>(image.get()));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:342:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[CL_IMAGE_MEETS_ALIGNMENT_RESTRICTIONS], static_cast<cl_mem>(image.get()));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:456:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[KERNEL_ARGUMENT_AUX_TRANSLATION],
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:479:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[BUFFER_IS_COMPRESSED], buffer.get());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:516:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[BUFFER_IS_NOT_COMPRESSED], buffer.get());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:577:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[IMAGE_IS_COMPRESSED], image.get());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:636:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[IMAGE_IS_COMPRESSED], image.get());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:638:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[IMAGE_IS_NOT_COMPRESSED], image.get());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:697:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[IMAGE_IS_NOT_COMPRESSED], image.get());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:721:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[REGISTER_PRESSURE_TOO_HIGH],
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.cpp:749:9:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
        snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[PRIVATE_MEMORY_USAGE_TOO_HIGH],
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.h:56:9:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
        snprintf(expectedHint, DriverDiagnostics::maxHintStringSize, DriverDiagnostics::hintFormat[hintId], 0);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/linux/mock_os_layer.cpp:210:5:  [4] (buffer) strcpy:
  Does not check for buffer overflows when copying to destination [MS-banned]
  (CWE-120). Consider using snprintf, strcpy_s, or strlcpy (warning: strncpy
  easily misused).
    strcpy(version->name, providedDrmVersion);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/main.cpp:200:9:  [4] (shell) execv:
  This causes a new program to execute and is difficult to use safely
  (CWE-78). try using a library call that implements the same functionality
  if available.
        execv(argv[0], argv);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/main.cpp:57:9:  [4] (shell) execv:
  This causes a new program to execute and is difficult to use safely
  (CWE-78). try using a library call that implements the same functionality
  if available.
        execv(argv[0], argv);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/mock_registry_reader.cpp:45:21:  [4] (buffer) strcpy:
  Does not check for buffer overflows when copying to destination [MS-banned]
  (CWE-120). Consider using snprintf, strcpy_s, or strlcpy (warning: strncpy
  easily misused).
                    strcpy(reinterpret_cast<char *>(lpData), settingSource);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/sys_calls.cpp:45:5:  [4] (buffer) lstrcpyW:
  Does not check for buffer overflows when copying to destination [MS-banned]
  (CWE-120). Consider using snprintf, strcpy_s, or strlcpy (warning: strncpy
  easily misused).
    lstrcpyW(lpFilename, currentLibraryPath);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/ult_dxgi_factory.h:26:9:  [4] (format) swprintf:
  Potential format string problem (CWE-134). Make format string constant.
        swprintf(pDesc->Description, 128, description);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:186:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(referenceOutput, sizeof(referenceOutput), input.format.c_str(), input.value);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:226:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(referenceOutput, sizeof(referenceOutput), input.format.c_str(), input.value);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:267:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(referenceOutput, sizeof(referenceOutput), input.format.c_str(), input.value);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:319:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(referenceOutput, sizeof(referenceOutput), input.format.c_str(), input.value);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:362:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(referenceOutput, sizeof(referenceOutput), input.format.c_str(), input.value);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:410:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(referenceOutput, sizeof(referenceOutput), input.format.c_str(), input.value);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:495:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(referenceOutput, sizeof(referenceOutput), input.format.c_str(), input.value.c_str());
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/decoder/binary_decoder.cpp:279:16:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
    argHelper->printf(R"===(Disassembles Intel Compute GPU device binary files.
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/decoder/binary_encoder.cpp:107:16:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
    argHelper->printf(R"===(Assembles Intel Compute GPU device binary from input files.
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/decoder/helper.h:34:10:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
    void printf(const char *message) {
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/decoder/helper.h:42:10:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
    void printf(const char *format, Args... args) {
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/decoder/helper.h:44:15:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
            ::printf(format, std::forward<Args>(args)...);
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/decoder/helper.h:57:43:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
        size_t size = static_cast<size_t>(snprintf(nullptr, 0, format.c_str(), args...) + 1);
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/decoder/helper.h:62:9:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
        snprintf(&*outputString.begin(), size, format.c_str(), args...);
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/multi_command.cpp:155:16:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
    argHelper->printf(R"===(Compiles multiple files using a config file.
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/ocloc_arg_helper.h:81:10:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
    void printf(const char *message) {
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/ocloc_arg_helper.h:82:24:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
        messagePrinter.printf(message);
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/ocloc_arg_helper.h:85:10:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
    void printf(const char *format, Args... args) {
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/ocloc_arg_helper.h:86:24:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
        messagePrinter.printf(format, std::forward<Args>(args)...);
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/offline_compiler.cpp:696:16:  [4] (format) printf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
    argHelper->printf(R"===(Compiles input file to Intel Compute GPU device binary (*.bin).
data/intel-compute-runtime-20.44.18297/shared/source/debug_settings/debug_settings_manager.h:39:9:  [4] (format) fprintf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
        fprintf(std::forward<Args>(args)...);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/drm_neo.cpp:492:5:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    snprintf(buffer, sizeof(buffer), uuidString, parts[1], parts[0]);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/os_memory_linux.cpp:58:9:  [4] (buffer) sscanf:
  The scanf() family's %s operation, without a limit specification, permits
  buffer overflows (CWE-120, CWE-20). Specify a limit to %s, or use a
  different input function. If the scanf format is influenceable by an
  attacker, it's exploitable.
        sscanf(line.c_str(), "%" SCNx64 "-%" SCNx64, &start, &end);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/print.cpp:20:12:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    return snprintf(output, outputSize, format, value);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/print.cpp:24:12:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
    return snprintf(output, outputSize, format, value);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/io_functions.cpp:13:32:  [4] (format) vfprintf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
vfprintfFuncPtr vfprintfPtr = &vfprintf;
data/intel-compute-runtime-20.44.18297/shared/source/utilities/io_functions.h:25:12:  [4] (format) fprintf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
inline int fprintf(FILE *fileDesc, char const *const formatStr, ...) {
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:74:21:  [4] (buffer) strcpy:
  Does not check for buffer overflows when copying to destination [MS-banned]
  (CWE-120). Consider using snprintf, strcpy_s, or strlcpy (warning: strncpy
  easily misused).
TEST(StringHelpers, strcpy) {
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp:197:9:  [4] (shell) execv:
  This causes a new program to execute and is difficult to use safely
  (CWE-78). try using a library call that implements the same functionality
  if available.
        execv(argv[0], argv);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:1601:10:  [4] (format) vsnprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
# define vsnprintf _vsnprintf
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:4507:5:  [4] (format) vprintf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
    vprintf(fmt, args);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:4528:3:  [4] (format) vprintf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
  vprintf(fmt, args);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:4535:3:  [4] (format) vprintf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
  vprintf(fmt, args);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:2337:20:  [4] (buffer) StrNCpy:
  Does not check for buffer overflows when copying to destination [MS-banned]
  (CWE-120). Consider using snprintf, strcpy_s, or strlcpy (warning: strncpy
  easily misused).
inline const char* StrNCpy(char* dest, const char* src, size_t n) {
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:2407:26:  [4] (format) _snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
# define GTEST_SNPRINTF_ _snprintf
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:2409:26:  [4] (format) snprintf:
  If format strings can be influenced by an attacker, they can be exploited,
  and note that sprintf variations do not always \0-terminate (CWE-134). Use
  a constant for the format specification.
# define GTEST_SNPRINTF_ snprintf
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:9917:5:  [4] (format) fprintf:
  If format strings can be influenced by an attacker, they can be exploited
  (CWE-134). Use a constant for the format specification.
    fprintf(\
data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl_platform.h:79:79:  [4] (shell) system:
  This causes a new program to execute and is difficult to use safely
  (CWE-78). try using a library call that implements the same functionality
  if available.
        #warning  This path should never happen outside of internal operating system development.  AvailabilityMacros do not function correctly here!
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:535:69:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void *(APIENTRYP PFNGLMAPBUFFERPROC) (GLenum target, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:555:57:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void *APIENTRY glMapBuffer (GLenum target, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:1198:114:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void *(APIENTRYP PFNGLMAPBUFFERRANGEPROC) (GLenum target, GLintptr offset, GLsizeiptr length, GLbitfield access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:1283:102:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void *APIENTRY glMapBufferRange (GLenum target, GLintptr offset, GLsizeiptr length, GLbitfield access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:2180:134:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void (APIENTRYP PFNGLBINDIMAGETEXTUREPROC) (GLuint unit, GLuint texture, GLint level, GLboolean layered, GLint layer, GLenum access, GLenum format);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:2193:122:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void APIENTRY glBindImageTexture (GLuint unit, GLuint texture, GLint level, GLboolean layered, GLint layer, GLenum access, GLenum format);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:2636:74:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void *(APIENTRYP PFNGLMAPNAMEDBUFFERPROC) (GLuint buffer, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:2637:119:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void *(APIENTRYP PFNGLMAPNAMEDBUFFERRANGEPROC) (GLuint buffer, GLintptr offset, GLsizeiptr length, GLbitfield access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:2759:62:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void *APIENTRY glMapNamedBuffer (GLuint buffer, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:2760:107:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void *APIENTRY glMapNamedBufferRange (GLuint buffer, GLintptr offset, GLsizeiptr length, GLbitfield access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:2910:87:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void (APIENTRYP PFNGLMAKEIMAGEHANDLERESIDENTARBPROC) (GLuint64 handle, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:2927:75:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void APIENTRY glMakeImageHandleResidentARB (GLuint64 handle, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:4700:72:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void *(APIENTRYP PFNGLMAPBUFFERARBPROC) (GLenum target, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:4712:60:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void *APIENTRY glMapBufferARB (GLenum target, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:6751:77:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void *(APIENTRYP PFNGLMAPNAMEDBUFFEREXTPROC) (GLuint buffer, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:6863:122:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void *(APIENTRYP PFNGLMAPNAMEDBUFFERRANGEEXTPROC) (GLuint buffer, GLintptr offset, GLsizeiptr length, GLbitfield access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:7007:65:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void *APIENTRY glMapNamedBufferEXT (GLuint buffer, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:7119:110:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void *APIENTRY glMapNamedBufferRangeEXT (GLuint buffer, GLintptr offset, GLsizeiptr length, GLbitfield access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:7854:138:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void (APIENTRYP PFNGLBINDIMAGETEXTUREEXTPROC) (GLuint index, GLuint texture, GLint level, GLboolean layered, GLint layer, GLenum access, GLint format);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:7857:126:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void APIENTRY glBindImageTextureEXT (GLuint index, GLuint texture, GLint level, GLboolean layered, GLint layer, GLenum access, GLint format);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:8836:95:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void *(APIENTRYP PFNGLMAPTEXTURE2DINTELPROC) (GLuint texture, GLint level, GLbitfield access, GLint *stride, GLenum *layout);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:8840:83:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void *APIENTRY glMapTexture2DINTEL (GLuint texture, GLint level, GLbitfield access, GLint *stride, GLenum *layout);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:9039:86:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void (APIENTRYP PFNGLMAKEIMAGEHANDLERESIDENTNVPROC) (GLuint64 handle, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:9053:74:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void APIENTRY glMakeImageHandleResidentNV (GLuint64 handle, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:10271:79:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void (APIENTRYP PFNGLMAKEBUFFERRESIDENTNVPROC) (GLenum target, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:10274:84:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void (APIENTRYP PFNGLMAKENAMEDBUFFERRESIDENTNVPROC) (GLuint buffer, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:10285:67:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void APIENTRY glMakeBufferResidentNV (GLenum target, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:10288:72:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void APIENTRY glMakeNamedBufferResidentNV (GLuint buffer, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:10606:90:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
typedef void (APIENTRYP PFNGLVDPAUSURFACEACCESSNVPROC) (GLvdpauSurfaceNV surface, GLenum access);
data/intel-compute-runtime-20.44.18297/third_party/opengl_headers/GL/glext.h:10617:78:  [4] (race) access:
  This usually indicates a security flaw. If an attacker can change anything
  along the path between the call to access() and the file's actual use
  (e.g., by moving files), the attacker can exploit the race condition
  (CWE-362/CWE-367!). Set up the correct permissions (e.g., using setuid())
  and try to open the file directly.
GLAPI void APIENTRY glVDPAUSurfaceAccessNV (GLvdpauSurfaceNV surface, GLenum access);
data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/main.cpp:120:5:  [3] (random) srand:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
    srand(static_cast<unsigned int>(time(nullptr)));
data/intel-compute-runtime-20.44.18297/level_zero/source/inc/ze_intel_gpu.h:33:23:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    const char *env = getenv(name);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:221:24:  [3] (buffer) realpath:
  This function does not protect against buffer overflows, and some
  implementations can overflow internally (CWE-120/CWE-785!). Ensure that the
  destination buffer is at least of size MAXPATHLEN, andto protect against
  implementation problems, the input argument should also be checked to
  ensure it is no larger than MAXPATHLEN.
    char *realPath = ::realpath(path.c_str(), buf);
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/black_box_tests/zello_sysman.cpp:628:23:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    const char *env = getenv(name);
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/black_box_tests/zello_sysman.cpp:659:19:  [3] (buffer) getopt_long:
  Some older implementations do not protect against internal buffer overflows
  (CWE-120, CWE-20). Check implementation on installation, or limit the size
  of all string inputs.
    while ((opt = getopt_long(argc, argv, "hpfsectogmrE:", long_opts, nullptr)) != -1) {
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/main.cpp:108:5:  [3] (random) srand:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
    srand(static_cast<unsigned int>(time(nullptr)));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/main.cpp:196:9:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    if (getenv("IGDRCL_TEST_SELF_EXEC") == nullptr) {
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/main.cpp:45:9:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    if (getenv("CLOC_SELFTEST") == nullptr) {
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/main.cpp:48:31:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
        char *ldLibraryPath = getenv("LD_LIBRARY_PATH");
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/registry_reader_tests.h:23:11:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    char *getenv(const char *envVar) override {
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/sys_calls.cpp:51:7:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
char *getenv(const char *variableName) {
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/sys_calls.cpp:55:14:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    return ::getenv(variableName);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/utilities/debug_settings_reader_tests.cpp:107:25:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    auto value = reader.getenv("ThisEnvVarDoesNotExist");
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/settings_reader_create.cpp:16:23:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
char *SettingsReader::getenv(const char *settingName) {
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/settings_reader_create.cpp:17:14:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    return ::getenv(settingName);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/debug_registry_reader.cpp:23:23:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
char *SettingsReader::getenv(const char *settingName) {
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/debug_registry_reader.cpp:24:22:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    return SysCalls::getenv(settingName);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/debug_registry_reader.cpp:83:32:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
        const char *envValue = getenv(settingName);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/debug_registry_reader.cpp:151:75:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
        const char *envValue = strcmp(processName.c_str(), settingName) ? getenv(settingName) : getenv("cl_cache_dir");
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/debug_registry_reader.cpp:151:97:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
        const char *envValue = strcmp(processName.c_str(), settingName) ? getenv(settingName) : getenv("cl_cache_dir");
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/sys_calls.cpp:31:7:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
char *getenv(const char *variableName) {
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/sys_calls.cpp:32:14:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    return ::getenv(variableName);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/sys_calls.h:20:7:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
char *getenv(const char *variableName);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/debug_settings_reader.h:33:28:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    MOCKABLE_VIRTUAL char *getenv(const char *settingName);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/io_functions.cpp:15:28:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
getenvFuncPtr getenvPtr = &getenv;
data/intel-compute-runtime-20.44.18297/shared/source/utilities/io_functions.h:18:33:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
using getenvFuncPtr = decltype(&getenv);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp:110:5:  [3] (random) srand:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
    srand(static_cast<unsigned int>(time(nullptr)));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp:193:9:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
    if (getenv("IGDRCL_TEST_SELF_EXEC") == nullptr) {
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:701:37:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
void ShuffleRange(internal::Random* random, int begin, int end,
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:722:39:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
inline void Shuffle(internal::Random* random, std::vector<E>* v) {
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:723:16:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
  ShuffleRange(random, 0, static_cast<int>(v->size()), v);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:1204:21:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
  internal::Random* random() { return &random_; }
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:4304:48:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
void TestSuite::ShuffleTests(internal::Random* random) {
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:4305:11:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
  Shuffle(random, &test_indices_);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:6695:7:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
      random()->Reseed(random_seed_);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:7040:16:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
  ShuffleRange(random(), 0, last_death_test_suite_ + 1, &test_suite_indices_);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:7043:16:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
  ShuffleRange(random(), last_death_test_suite_ + 1,
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:7048:30:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
    test_suite->ShuffleTests(random());
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:9949:5:  [3] (misc) InitializeCriticalSection:
  Exceptions can be thrown in low-memory situations. Use
  InitializeCriticalSectionAndSpinCount instead.
  ::InitializeCriticalSection(critical_section_);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:9964:5:  [3] (misc) EnterCriticalSection:
  On some versions of Windows, exceptions can be thrown in low-memory
  situations. Use InitializeCriticalSectionAndSpinCount instead.
  ::EnterCriticalSection(critical_section_);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:10037:11:  [3] (misc) InitializeCriticalSection:
  Exceptions can be thrown in low-memory situations. Use
  InitializeCriticalSectionAndSpinCount instead.
        ::InitializeCriticalSection(critical_section_);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:2376:27:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
  const char* const env = getenv(name);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:2379:10:  [3] (buffer) getenv:
  Environment variables are untrustable input if they can be set by an
  attacker. They can have any content and length, and the same variable can
  be set more than once (CWE-807, CWE-20). Check environment variables
  carefully before using them.
  return getenv(name);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:15560:39:  [3] (random) random:
  This function is not sufficiently random for security-related functions
  such as key and nonce creation (CWE-327). Use a more secure technique for
  acquiring random values.
  void ShuffleTests(internal::Random* random);
data/intel-compute-runtime-20.44.18297/level_zero/core/source/debugger/debugger_l0.h:25:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char magic[8] = "sbaarea";
data/intel-compute-runtime-20.44.18297/level_zero/core/source/debugger/debugger_l0.h:39:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char magic[8] = "dbgarea";
data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/main.cpp:92:11:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
        f.open(fileName, std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/main.cpp:147:40:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                    int productValue = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/debugger/test_l0_debugger.cpp:626:9:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
        memcpy(memory->getUnderlyingBuffer(), hostPtr, size.x);
data/intel-compute-runtime-20.44.18297/level_zero/core/test/unit_tests/sources/module/test_module.cpp:312:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char kernelHeap[MemoryConstants::pageSize] = {};
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/metrics/metric.cpp:366:28:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    return MetricStreamer::open(hContext, hDevice, hMetricGroup, *pDesc, hNotificationEvent, phMetricStreamer);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/metrics/metric.h:107:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    static ze_result_t open(zet_context_handle_t hContext, zet_device_handle_t hDevice, zet_metric_group_handle_t hMetricGroup,
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/metrics/metric_streamer_imp.cpp:150:29:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
ze_result_t MetricStreamer::open(zet_context_handle_t hContext, zet_device_handle_t hDevice, zet_metric_group_handle_t hMetricGroup,
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:44:8:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    fs.open(file.c_str());
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:61:8:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    fs.open(file.c_str());
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:78:8:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    fs.open(file.c_str());
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:95:8:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    fs.open(file.c_str());
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:112:8:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    fs.open(file.c_str());
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:135:8:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    fs.open(file.c_str());
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:157:11:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    sysfs.open(file.c_str());
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:208:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buf[PATH_MAX];
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:220:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buf[PATH_MAX];
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/pmt.cpp:57:14:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    int fd = open(static_cast<const char *>(telemetryDeviceEntry.c_str()), O_RDONLY);
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:248:36:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    pProcfsAccess->ourDeviceFd = ::open("/dev/null", 0);
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/linux/test_sysman.cpp:47:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char cwd[PATH_MAX];
data/intel-compute-runtime-20.44.18297/opencl/source/command_stream/aub_command_stream_receiver.cpp:82:21:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
void AubFileStream::open(const char *filePath) {
data/intel-compute-runtime-20.44.18297/opencl/source/command_stream/aub_command_stream_receiver.cpp:83:16:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    fileHandle.open(filePath, std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/source/command_stream/tbx_command_stream_receiver.h:27:10:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    void open(const char *options) override;
data/intel-compute-runtime-20.44.18297/opencl/source/command_stream/tbx_stream.cpp:24:17:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
void TbxStream::open(const char *options) {
data/intel-compute-runtime-20.44.18297/opencl/source/context/context.h:115:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char hint[DriverDiagnostics::maxHintStringSize];
data/intel-compute-runtime-20.44.18297/opencl/source/helpers/string_helpers.h:44:47:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
                localSizes[i] = strlen((const char *)strings[i]);
data/intel-compute-runtime-20.44.18297/opencl/source/os_interface/metrics_library.cpp:26:22:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
bool MetricsLibrary::open() {
data/intel-compute-runtime-20.44.18297/opencl/source/os_interface/metrics_library.h:58:27:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    MOCKABLE_VIRTUAL bool open();
data/intel-compute-runtime-20.44.18297/opencl/source/os_interface/performance_counters.cpp:94:35:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    bool result = metricsLibrary->open();
data/intel-compute-runtime-20.44.18297/opencl/test/black_box_test/hello_world_opencl.cpp:195:33:  [2] (misc) fopen:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
        auto kernelOutputFile = fopen(fileName, "r");
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/accelerators/media_image_arg_tests.cpp:76:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_buffer_tests.cpp:167:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    unsigned char pHostMem[bufferSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_buffer_tests.cpp:286:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    unsigned char pHostMem[bufferSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_image_tests.cpp:196:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char hostPtr[4096];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_image_tests.cpp:215:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char hostPtr[4096];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_image_tests.cpp:230:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char hostPtr[4096];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_image_tests.cpp:263:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char hostPtr[4096];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/cl_create_image_tests.cpp:695:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char ptr[10];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_mem_dump/aub_alloc_dump_tests.cpp:29:9:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
        memcpy(buffer.data(), data, size);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_mem_dump/aub_alloc_dump_tests.cpp:208:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(&cmd, mockAubFileStream->getData(), mockAubFileStream->getSize());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_mem_dump/aub_alloc_dump_tests.cpp:241:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(&cmd, mockAubFileStream->getData(), mockAubFileStream->getSize());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_mem_dump/aub_alloc_dump_tests.cpp:281:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(&cmd, mockAubFileStream->getData(), mockAubFileStream->getSize());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_mem_dump/aub_alloc_dump_tests.cpp:324:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(&cmd, mockAubFileStream->getData(), mockAubFileStream->getSize());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_copy_buffer_rect_aub_tests.cpp:120:13:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
            memcpy(pRef, pSrc, region[0]);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_kernel_aub_tests.cpp:912:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(pBufferSrc->getGraphicsAllocation(device->getRootDeviceIndex())->getUnderlyingBuffer(), bufferDataSrc, bufferSize);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_kernel_aub_tests.cpp:913:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(pBufferDst->getGraphicsAllocation(device->getRootDeviceIndex())->getUnderlyingBuffer(), bufferDataDst, bufferSize);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_kernel_aub_tests.cpp:1015:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(image->getGraphicsAllocation(device->getRootDeviceIndex())->getUnderlyingBuffer(), imageDataDst, imageSize);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_kernel_aub_tests.cpp:1016:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(bufferSrc->getGraphicsAllocation(device->getRootDeviceIndex())->getUnderlyingBuffer(), imageDataSrc, imageSize);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_map_image_aub_tests.cpp:122:9:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
        memcpy(srcMemory + i, &origValue, sizeof(origValue));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_read_buffer_aub_tests.cpp:178:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char dstMemory[bufferSize] = {0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_read_buffer_rect_aub_tests.cpp:136:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char referenceMemory[bufferSize] = {0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_read_image_aub_tests.cpp:135:9:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
        memcpy(srcMemory + i, &origValue, sizeof(origValue));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_read_image_aub_tests.cpp:140:9:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
        memcpy(dstMemoryUnaligned + i, &origValue, sizeof(origValue));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_read_write_image_aub_fixture.h:43:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char referenceMemory[bufferSize] = {0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_read_write_image_aub_fixture.h:137:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char dstMemory[bufferSize + 1] = {0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_read_write_image_aub_fixture.h:139:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char referenceMemory[bufferSize] = {0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_write_buffer_aub_tests.cpp:131:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char dstMemory[bufferSize] = {0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_write_buffer_rect_aub_tests.cpp:133:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char dstMemory[bufferSize] = {0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_write_buffer_rect_aub_tests.cpp:134:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char referenceMemory[bufferSize] = {0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_queue/enqueue_write_image_aub_tests.cpp:128:9:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
        memcpy(srcMemoryUnaligned + i, &origValue, sizeof(origValue));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_stream/aub_mem_dump_tests.cpp:50:13:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.open(fileName.c_str());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_stream/aub_mem_dump_tests.cpp:63:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.fileHandle.open(filePath.c_str(), std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_stream/aub_mem_dump_tests.cpp:78:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.fileHandle.open(filePath.c_str(), std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_stream/aub_mem_dump_tests.cpp:101:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.fileHandle.open(filePath.c_str(), std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_stream/aub_mem_dump_tests.cpp:126:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.fileHandle.open(filePath.c_str(), std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_stream/aub_mem_dump_tests.cpp:149:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.fileHandle.open(filePath.c_str(), std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_stream/aub_mem_dump_tests.cpp:174:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.fileHandle.open(filePath.c_str(), std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/command_stream/aub_mem_dump_tests.h:40:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.fileHandle.open(filePath.c_str(), std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/fixtures/run_kernel_fixture.h:67:24:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        const unsigned char *binaries[1] = {reinterpret_cast<const unsigned char *>(pSource.get())};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/gen11/batch_buffer/aub_batch_buffer_tests_gen11.h:29:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.fileHandle.open(filePath.c_str(), std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/gen12lp/batch_buffer/aub_batch_buffer_tests_gen12lp.h:29:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.fileHandle.open(filePath.c_str(), std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/gen9/batch_buffer/aub_batch_buffer_tests.h:29:24:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    aubFile.fileHandle.open(filePath.c_str(), std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/aub_tests/mem_obj/create_image_aub_tests.cpp:70:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    unsigned char pHostPtr[512 * testImageDimensions * elementSize * 4];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/blit_enqueue_tests.cpp:859:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char cpuBuffer[bufferSize]{};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/blit_enqueue_tests.cpp:1682:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char constantData[128] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_enqueue_fixture.h:92:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char array[MemoryConstants::cacheLineSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_queue_hw_tests.cpp:795:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char array[3 * MemoryConstants::cacheLineSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_queue_hw_tests.cpp:836:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char array[3 * MemoryConstants::cacheLineSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_queue_hw_tests.cpp:877:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char array[3 * MemoryConstants::cacheLineSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_queue_hw_tests.cpp:916:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char array[3 * MemoryConstants::cacheLineSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/command_queue_hw_tests.cpp:1255:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char array[3 * MemoryConstants::cacheLineSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_command_without_kernel_tests.cpp:45:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_command_without_kernel_tests.cpp:80:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_command_without_kernel_tests.cpp:110:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_map_buffer_tests.cpp:52:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char srcMemory[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_map_buffer_tests.cpp:534:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char misaligned[bufferSize] = {1};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_map_image_tests.cpp:52:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char srcMemory[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:286:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char srcHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:307:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char srcHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:323:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char srcHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:354:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dstHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:385:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dstHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:406:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dstHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:483:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dstHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:484:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char srcHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:1785:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dstHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:1806:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char srcHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:1827:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dstHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:1828:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char srcHostPtr[260];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_queue/enqueue_svm_tests.cpp:1870:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pattern[256];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/command_stream_receiver_flush_task_2_tests.cpp:879:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buff[sizeof(PIPE_CONTROL) * 3];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/command_stream_receiver_flush_task_2_tests.cpp:911:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buff[sizeof(PIPE_CONTROL) * 3];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/command_stream_receiver_tests.cpp:829:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char expectedStr[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/command_stream_receiver_tests.cpp:947:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char memory[8] = {1, 2, 3, 4, 5, 6, 7, 8};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/command_stream_receiver_tests.cpp:974:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char memory[8] = {1, 2, 3, 4, 5, 6, 7, 8};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/command_stream_receiver_tests.cpp:1008:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char memory[8] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/command_stream_receiver_tests.cpp:1336:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char memory[8] = {1, 2, 3, 4, 5, 6, 7, 8};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/linear_stream_tests.cpp:97:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[256];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/tbx_command_stream_tests.cpp:107:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[4096];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/command_stream/tbx_command_stream_tests.cpp:116:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[4096];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.h:46:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char userData[maxHintCounter * DriverDiagnostics::maxHintStringSize]{};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/context/driver_diagnostics_tests.h:47:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char expectedHint[DriverDiagnostics::maxHintStringSize]{};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/device_queue/device_queue_hw_tests.cpp:271:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(slbCopy, slb->getUnderlyingBuffer(), slb->getUnderlyingBufferSize());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/device_queue/device_queue_tests.cpp:24:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[20];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/fixtures/device_host_queue_fixture.cpp:34:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(qProps, properties, 5 * sizeof(cl_queue_properties));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/fixtures/device_host_queue_fixture.cpp:66:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(&expectedIgilCmdQueue, deviceQueueIgilCmdQueue, sizeof(IGIL_CommandQueue));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/fixtures/kernel_arg_fixture.h:47:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/fixtures/program_fixture.cpp:32:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {knownSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gen11/coherency_tests_gen11.cpp:66:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buff[MemoryConstants::pageSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gen11/icllp/test_program_media_sampler_icllp.cpp:57:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buff[MemoryConstants::pageSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:646:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:737:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:885:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:1021:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char binary[1024] = {1, 2, 3, 4, 5, 6, 7, 8, 9, '\0'};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:1081:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char binary[1024] = {1, 2, 3, 4, 5, 6, 7, 8, 9, '\0'};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:1113:5:  [2] (buffer) strcpy:
  Does not check for buffer overflows when copying to destination [MS-banned]
  (CWE-120). Consider using snprintf, strcpy_s, or strlcpy (warning: strncpy
  easily misused). Risk is low because the source is a constant string.
    strcpy(pBin, "Tst");
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:1117:5:  [2] (buffer) strcpy:
  Does not check for buffer overflows when copying to destination [MS-banned]
  (CWE-120). Consider using snprintf, strcpy_s, or strlcpy (warning: strncpy
  easily misused). Risk is low because the source is a constant string.
    strcpy(pBin, "fake_ISA_code__");
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:1242:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:1355:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:1478:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:1638:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:1760:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:1953:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:2104:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char binary[1024] = {1, 2, 3, 4, 5, 6, 7, 8, 9, '\0'};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:2201:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:2301:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSource.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/gtpin/gtpin_tests.cpp:2386:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/cmd_buffer_validator_tests.cpp:56:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[8192];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/cmd_buffer_validator_tests.cpp:134:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[8192];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/cmd_buffer_validator_tests.cpp:189:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[8192];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/cmd_buffer_validator_tests.cpp:260:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[8192];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/dispatch_info_builder_tests.cpp:96:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pCrossThreadData[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/dispatch_info_builder_tests.cpp:892:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/dispatch_info_builder_tests.cpp:920:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/dispatch_info_builder_tests.cpp:1004:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/hardware_commands_helper_tests.cpp:717:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char globalBuffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/hardware_commands_helper_tests.cpp:722:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char constBuffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/hardware_commands_helper_tests.cpp:771:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pCrossThreadData[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/hardware_commands_helper_tests.cpp:847:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[256];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/hardware_commands_helper_tests.cpp:902:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[256];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/helpers/hardware_commands_helper_tests.cpp:1213:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buff[MemoryConstants::pageSize * 2];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/clone_kernel_tests.cpp:88:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char pSourceCrossThreadData[64] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/clone_kernel_tests.cpp:93:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char pClonedCrossThreadData[64] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/clone_kernel_tests.cpp:112:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/image_transformer_tests.cpp:47:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char ssh[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_accelerator_arg_tests.cpp:89:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pCrossThreadData[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_arg_buffer_fixture.h:39:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pSshLocal[64]{};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_arg_buffer_fixture.h:40:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pCrossThreadData[64]{};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_arg_pipe_tests.cpp:79:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pSshLocal[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_arg_pipe_tests.cpp:80:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pCrossThreadData[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_arg_svm_tests.cpp:76:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pSshLocal[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_arg_svm_tests.cpp:77:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pCrossThreadData[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_arg_svm_tests.cpp:527:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char svmPtr[256];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_immediate_arg_tests.cpp:80:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pCrossThreadData[0x60];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_immediate_arg_tests.cpp:173:18:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        unsigned char unused[3]; // want to force a gap, ideally unpadded
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:748:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:785:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:903:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:946:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:984:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:996:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1032:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1076:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1118:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1156:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1168:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1204:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1250:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1299:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1454:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1503:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:1638:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pCrossThreadData[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_tests.cpp:3209:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(slbCopy, slb->getUnderlyingBuffer(), slb->getUnderlyingBufferSize());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/kernel_transformable_tests.cpp:76:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/substitute_kernel_heap_tests.cpp:35:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char newHeap[newHeapSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/substitute_kernel_heap_tests.cpp:65:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char newHeap[newHeapSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/substitute_kernel_heap_tests.cpp:94:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char newHeap[newHeapSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/kernel/substitute_kernel_heap_tests.cpp:124:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char newHeap[newHeapSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/linux/main_linux_dll.cpp:416:5:  [2] (buffer) strcpy:
  Does not check for buffer overflows when copying to destination [MS-banned]
  (CWE-120). Consider using snprintf, strcpy_s, or strlcpy (warning: strncpy
  easily misused). Risk is low because the source is a constant string.
    strcpy(providedDrmVersion, "NA");
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/linux/main_linux_dll.cpp:420:5:  [2] (buffer) strcpy:
  Does not check for buffer overflows when copying to destination [MS-banned]
  (CWE-120). Consider using snprintf, strcpy_s, or strlcpy (warning: strncpy
  easily misused). Risk is low because the source is a constant string.
    strcpy(providedDrmVersion, "i915");
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/linux/mock_os_layer.cpp:39:1:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
char providedDrmVersion[5] = {'i', '9', '1', '5', '\0'};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/linux/mock_os_layer.cpp:44:5:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
int open(const char *pathname, int flags, ...) {
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/linux/mock_os_layer.h:22:5:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
int open(const char *pathname, int flags, ...);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/linux/mock_os_layer.h:49:8:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
extern char providedDrmVersion[5];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/main.cpp:80:11:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
        f.open(fileName, std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/main.cpp:233:25:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                revId = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/main.cpp:239:40:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                    int productValue = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/main.cpp:267:30:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                sliceCount = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/main.cpp:272:41:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                subSlicePerSliceCount = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/main.cpp:277:33:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                euPerSubSlice = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/main.cpp:282:31:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                dieRecovery = atoi(argv[i]) ? 1 : 0;
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/buffer_bcs_tests.cpp:265:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char expectedStr[512] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/buffer_set_arg_tests.cpp:101:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/buffer_set_arg_tests.cpp:102:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pCrossThreadData[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/buffer_set_arg_tests.cpp:174:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char sshOriginal[sizeof(surfaceStateHeap)];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/buffer_set_arg_tests.cpp:175:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(sshOriginal, surfaceStateHeap, sizeof(surfaceStateHeap));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/buffer_tests.cpp:707:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    unsigned char pHostPtr[g_scTestBufferSizeInBytes];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/buffer_tests.cpp:1857:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char *hostPtr[MemoryConstants::pageSize]{};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/destructor_callback_tests.cpp:77:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char hostPtr[42];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/image2d_from_buffer_tests.cpp:109:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char ptr[10];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/image_set_arg_tests.cpp:111:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/image_tests.cpp:88:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    unsigned char pHostPtr[testImageDimensions * testImageDimensions * elementSize * 4];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/mem_obj_tests.cpp:65:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[size];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/nv12_image_tests.cpp:396:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char hostPtr[16 * 16 * 16];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mem_obj/sub_buffer_tests.cpp:45:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    unsigned char pHostPtr[sizeTestBufferInBytes];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/memory_manager/memory_manager_tests.cpp:1190:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char ptr[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/memory_manager/memory_manager_tests.cpp:1201:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char ptr[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/memory_manager/memory_manager_tests.cpp:2061:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char memory[10];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/memory_manager/memory_manager_tests.cpp:2087:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char memory[8];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/memory_manager/memory_manager_tests.cpp:2112:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char memory[8];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/memory_manager/surface_tests.cpp:55:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[10];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/memory_manager/surface_tests.cpp:113:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char memory[2];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/memory_manager/surface_tests.cpp:120:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char memory[2];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/memory_manager/surface_tests.cpp:127:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char memory[2];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mock_gl/windows/mock_opengl32.cpp:20:7:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
const char *arrayStringi[2]{"GL_OES_framebuffer_object", "GL_EXT_framebuffer_object"};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_aub_file_stream.h:21:10:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    void open(const char *filePath) override {
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_aub_manager.h:75:10:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    void open(const std::string &aubFileName) override {
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_aub_stream.h:16:10:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    void open(const char *filePath) override{};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_buffer.h:27:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_kernel.h:260:9:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
        memcpy(&executionEnvironment, &newExecutionEnvironment, sizeof(SPatchExecutionEnvironment));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_kernel.h:352:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char crossThreadData[256];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_kernel.h:353:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char sshLocal[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_kernel.h:354:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dshLocal[128];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_pipe.h:24:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[256]{};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_program.cpp:53:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(sipAllocationStorage, globalSipProgramInfo->kernelInfos[0]->heapInfo.pKernelHeap, globalSipProgramInfo->kernelInfos[0]->heapInfo.KernelHeapSize);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/offline_compiler_tests.cpp:1006:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char debugData[10];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/linux/sys_calls_linux_ult.cpp:30:5:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
int open(const char *file, int flags) {
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/mock_performance_counters.cpp:20:26:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
bool MockMetricsLibrary::open() {
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/mock_performance_counters.cpp:98:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(data.Data, &mirpc, sizeof(mirpc));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/mock_performance_counters.h:82:10:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    bool open() override;
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/mock_registry_reader.cpp:68:21:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
                    memcpy(reinterpret_cast<wchar_t *>(lpData), settingSource, size);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/os_library_win_tests.cpp:62:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char fName[MAX_PATH];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/registry_reader_tests.cpp:35:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buff[MAX_PATH];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/wddm_memory_manager_tests.cpp:323:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char hostPtr[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/wddm_memory_manager_tests.cpp:777:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[64u * 64u * 4 * 8];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/wddm_memory_manager_tests.cpp:808:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[64u * 4 * 8];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/perf_tests/perf_test_utils.cpp:38:9:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
        memcpy(bufferDst, bufferSrc1, 128 * 4096);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/perf_tests/perf_test_utils.cpp:43:9:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
        memcpy(bufferDst, bufferSrc2, 128 * 4096);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/perf_tests/perf_test_utils.cpp:48:9:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
        memcpy(bufferDst, bufferSrc3, 128 * 4096);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/perf_tests/perf_test_utils.cpp:72:10:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    file.open(filename);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/perf_tests/perf_test_utils.cpp:91:10:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    file.open(filename);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/kernel_data.cpp:23:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char gshData[8] = "a";
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/kernel_data.cpp:24:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dshData[8] = "bb";
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/kernel_data.cpp:25:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char sshData[8] = "ccc";
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/kernel_data.cpp:26:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char kernelHeapData[8] = "dddd";
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/kernel_info_tests.cpp:114:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char heap[heapSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/kernel_info_tests.cpp:236:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char heap[heapSize];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:181:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char referenceOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:182:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:221:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char referenceOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:222:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:262:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char referenceOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:263:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:280:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char referenceOutput[PrintFormatter::maxPrintfOutputLength] = "";
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:281:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength] = "";
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:314:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char referenceOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:315:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:357:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char referenceOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:358:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:402:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char referenceOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:403:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:433:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:463:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:490:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char referenceOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:491:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:511:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:533:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:554:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:575:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:596:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:617:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:637:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:657:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:677:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:696:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:716:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:736:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:759:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:760:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char referenceOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:787:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:788:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char referenceOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:827:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:835:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char actualOutput[PrintFormatter::maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/printf_helper_tests.cpp:849:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char out[1024] = {7, 0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_data_tests.cpp:205:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char constantData[128] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_data_tests.cpp:223:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char constantData[128] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_data_tests.cpp:242:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char constantData[128] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_data_tests.cpp:265:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char globalData[128] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_data_tests.cpp:283:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char globalData[128] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_data_tests.cpp:306:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char globalData[128] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:617:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char constantData[1024] = {};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:726:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[4] = {0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:1045:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[4];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:1102:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSourceBuffer.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:1213:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *sources[1] = {pSourceBuffer.get()};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:1265:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[4];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:1638:24:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        const unsigned char *binaries[1] = {reinterpret_cast<const unsigned char *>(&binHeader)};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:1982:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char binary[10] = {1, 2, 3, 4, 5, 6, 7, 8, 9, '\0'};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:2002:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char binary[10] = {1, 2, 3, 4, 5, 6, 7, 8, 9, '\0'};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:2020:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char binary[10] = {1, 2, 3, 4, 5, 6, 7, 8, 9, '\0'};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:2338:20:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const unsigned char *binaries[1] = {reinterpret_cast<const unsigned char *>(spirv)};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:2377:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char llvmBc[16] = {'B', 'C', '\xc0', '\xde'};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:2910:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char mockDebugData[32];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/sampler/sampler_set_arg_tests.cpp:105:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char samplerStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/sharings/sharing_tests.cpp:39:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/sharings/sharing_tests.cpp:63:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[64];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/source_level_debugger/source_level_debugger_tests.cpp:253:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char value[2] = {'1', 0};
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/source_level_debugger/source_level_debugger_tests.cpp:294:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char isa[8];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/source_level_debugger/source_level_debugger_tests.cpp:295:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dbgIsa[10];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/source_level_debugger/source_level_debugger_tests.cpp:296:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char visa[12];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/source_level_debugger/source_level_debugger_tests.cpp:336:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char isa[8];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/source_level_debugger/source_level_debugger_tests.cpp:337:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dbgIsa[10];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/source_level_debugger/source_level_debugger_tests.cpp:363:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char isa[8];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/source_level_debugger/source_level_debugger_tests.cpp:364:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char visa[12];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/utilities/file_logger_tests.cpp:316:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    unsigned char binary[4];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/utilities/file_logger_tests.cpp:637:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char surfaceStateHeap[0x80];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/utilities/file_logger_tests.cpp:674:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    unsigned char binary[4];
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/utilities/file_logger_tests.cpp:736:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    unsigned char binary[4];
data/intel-compute-runtime-20.44.18297/shared/generate_cpp_array/source/generate_cpp_array.cpp:103:15:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    inputFile.open(fileName.c_str(), std::ios::in | std::ios::binary | std::ios::ate);
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/decoder/binary_encoder.cpp:38:42:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                        calcSize += std::atoi(&ptmFile[i][1]);
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/ocloc_arg_helper.cpp:69:24:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    *nameOutputs = new char *[outputs.size()];
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/utilities/linux/get_current_dir_linux.cpp:12:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buf[256];
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/utilities/windows/get_current_dir_windows.cpp:13:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buf[256];
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/utilities/windows/seh_exception.cpp:83:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[sizeof(IMAGEHLP_SYMBOL64) + (nameSize + 1) * sizeof(char)];
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/utilities/windows/seh_exception.cpp:134:13:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
            char filename[MAX_PATH + 1];
data/intel-compute-runtime-20.44.18297/shared/source/aub_mem_dump/aub_header.h:89:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char OutputFile[4];
data/intel-compute-runtime-20.44.18297/shared/source/aub_mem_dump/aub_mem_dump.h:105:18:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    virtual void open(const char *filePath) = 0;
data/intel-compute-runtime-20.44.18297/shared/source/aub_mem_dump/aub_mem_dump.h:125:10:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    void open(const char *filePath) override;
data/intel-compute-runtime-20.44.18297/shared/source/aub_mem_dump/aub_services.h:42:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char commandLine[4];
data/intel-compute-runtime-20.44.18297/shared/source/aub_mem_dump/aub_services.h:1008:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char comment[4];
data/intel-compute-runtime-20.44.18297/shared/source/aub_mem_dump/aub_services.h:1100:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char filename[4];
data/intel-compute-runtime-20.44.18297/shared/source/compiler_interface/compiler_options/compiler_options_base.h:137:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char storage[MaxLength + nullterminateSize] = {};
data/intel-compute-runtime-20.44.18297/shared/source/device_binary_format/ar/ar.h:19:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char identifier[16] = {'/', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' '};
data/intel-compute-runtime-20.44.18297/shared/source/device_binary_format/ar/ar.h:20:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char fileModificationTimestamp[12] = {'0', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' '};
data/intel-compute-runtime-20.44.18297/shared/source/device_binary_format/ar/ar.h:21:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char ownerId[6] = {'0', ' ', ' ', ' ', ' ', ' '};
data/intel-compute-runtime-20.44.18297/shared/source/device_binary_format/ar/ar.h:22:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char groupId[6] = {'0', ' ', ' ', ' ', ' ', ' '};
data/intel-compute-runtime-20.44.18297/shared/source/device_binary_format/ar/ar.h:23:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char fileMode[8] = {'6', '4', '4', ' ', ' ', ' ', ' ', ' '};
data/intel-compute-runtime-20.44.18297/shared/source/device_binary_format/ar/ar.h:24:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char fileSizeInBytes[10] = {'0', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ', ' '};
data/intel-compute-runtime-20.44.18297/shared/source/device_binary_format/ar/ar.h:25:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char trailingMagic[2] = {arFileEntryTrailingMagic[0], arFileEntryTrailingMagic[1]};
data/intel-compute-runtime-20.44.18297/shared/source/device_binary_format/elf/elf.h:127:17:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
constexpr const char elfMagic[4] = {0x7f, 'E', 'L', 'F'};
data/intel-compute-runtime-20.44.18297/shared/source/device_binary_format/elf/elf.h:133:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char magic[4] = {elfMagic[0], elfMagic[1], elfMagic[2], elfMagic[3]}; // should match elfMagic
data/intel-compute-runtime-20.44.18297/shared/source/device_binary_format/elf/elf.h:139:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char padding[7] = {};                                                 // pad to 16 bytes
data/intel-compute-runtime-20.44.18297/shared/source/helpers/hw_info.cpp:23:7:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
const char *hardwarePrefix[IGFX_MAX_PRODUCT] = {
data/intel-compute-runtime-20.44.18297/shared/source/helpers/hw_info.cpp:33:7:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
const char *familyName[IGFX_MAX_CORE] = {
data/intel-compute-runtime-20.44.18297/shared/source/helpers/hw_info.h:96:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
extern const char *familyName[IGFX_MAX_CORE];
data/intel-compute-runtime-20.44.18297/shared/source/helpers/hw_info.h:97:14:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
extern const char *hardwarePrefix[IGFX_MAX_PRODUCT];
data/intel-compute-runtime-20.44.18297/shared/source/helpers/stdio.h:21:14:  [2] (misc) fopen:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    *pFile = fopen(filename, mode);
data/intel-compute-runtime-20.44.18297/shared/source/helpers/string.h:28:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(dst, src, length);
data/intel-compute-runtime-20.44.18297/shared/source/helpers/string.h:46:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(dst, src, length);
data/intel-compute-runtime-20.44.18297/shared/source/helpers/string.h:77:5:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
    memcpy(dst, src, count);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/debug_env_reader.cpp:32:17:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
        value = atoi(envValue);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/drm_neo.cpp:343:44:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
            int fileDescriptor = SysCalls::open(path.c_str(), O_RDWR);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/drm_neo.cpp:364:44:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
            int fileDescriptor = SysCalls::open(file->c_str(), O_RDWR);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/drm_neo.cpp:379:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char name[5] = {};
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/drm_neo.cpp:484:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[36 + 1] = "00000000-0000-0000-0000-000000000000";
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/sys_calls.h:13:5:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
int open(const char *file, int flags);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/sys_calls_linux.cpp:19:5:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
int open(const char *file, int flags) {
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/sys_calls_linux.cpp:20:14:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    return ::open(file, flags);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/debug_registry_reader.cpp:33:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buff[MAX_PATH];
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/debug_registry_reader.cpp:85:21:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
            value = atoi(envValue);
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/driver_info_windows.cpp:18:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char path[MAX_PATH];
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/os_library_win.cpp:30:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dllPath[MAX_PATH];
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/wddm/wddm.cpp:303:21:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
                    char deviceId[16];
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.cpp:44:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char output[maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.cpp:59:13:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
            char dataFormat[maxPrintfOutputLength];
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.h:95:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char strippedFormat[1024];
data/intel-compute-runtime-20.44.18297/shared/source/source_level_debugger/source_level_debugger.cpp:145:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char fileName[FILENAME_MAX] = "";
data/intel-compute-runtime-20.44.18297/shared/source/source_level_debugger/source_level_debugger.cpp:165:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char value[optionValueSize] = {0};
data/intel-compute-runtime-20.44.18297/shared/source/utilities/debug_file_reader.cpp:16:22:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
        settingsFile.open(settingsFileName);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/debug_file_reader.cpp:18:22:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
        settingsFile.open(filePath);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/debug_settings_reader.cpp:18:18:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    settingsFile.open(settingsFileName);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/io_functions.cpp:12:26:  [2] (misc) fopen:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
fopenFuncPtr fopenPtr = &fopen;
data/intel-compute-runtime-20.44.18297/shared/source/utilities/perf_profiler.cpp:69:20:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
        logToFile->open(filename.str().c_str(), std::ios::trunc);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/perf_profiler.cpp:83:23:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
        sysLogToFile->open(filename.str().c_str(), std::ios::trunc);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/stackvec.h:378:32:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    alignas(alignof(DataType)) char onStackMemRawBytes[sizeof(DataType[onStackCaps])];
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/compiler_interface/compiler_cache_tests.cpp:123:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char data[4] = "aBc";
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/memory_management.cpp:317:9:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
        char output[1024];
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:16:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dst[1024] = "";
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:17:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char src[1024] = "HelloWorld";
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:54:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dst[1024] = "";
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:55:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char src[1024] = "HelloWorld";
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:75:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dst[1024] = "";
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:76:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char src[1024] = "HelloWorld";
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:112:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char src[1024] = "HelloWorld";
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:124:21:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
TEST(StringHelpers, memcpy) {
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:125:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char dst[1024] = "";
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:126:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char src[1024] = "HelloWorld";
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_to_hash_tests.cpp:160:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *srcStrings[2] = {srcString[0], srcString[1]};
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_to_hash_tests.cpp:193:11:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    const char *srcString[maximalStackSizeSizes + 2];
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_to_hash_tests.cpp:212:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char pBuffer[128];
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp:82:11:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
        f.open(fileName, std::ofstream::binary);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp:230:25:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                revId = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp:236:40:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                    int productValue = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp:264:30:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                sliceCount = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp:269:41:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                subSlicePerSliceCount = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp:274:33:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                euPerSubSlice = atoi(argv[i]);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/main.cpp:279:31:  [2] (integer) atoi:
  Unless checked, the resulting number can exceed the expected range
  (CWE-190). If source untrusted, check both minimum and maximum, even if the
  input had no minus sign (large numbers can roll over into negative number;
  consider saving to an unsigned value if that is intended).
                dieRecovery = atoi(argv[i]) ? 1 : 0;
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/preamble/preamble_tests.cpp:218:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char buffer[64];
data/intel-compute-runtime-20.44.18297/third_party/aub_stream/headers/aub_manager.h:24:18:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
    virtual void open(const std::string &aubFileName) = 0;
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:2363:7:  [2] (buffer) MultiByteToWideChar:
  Requires maximum length in CHARACTERS, not bytes (CWE-120).
      MultiByteToWideChar(CP_ACP, 0, ansi, length, nullptr, 0);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:2365:3:  [2] (buffer) MultiByteToWideChar:
  Requires maximum length in CHARACTERS, not bytes (CWE-120).
  MultiByteToWideChar(CP_ACP, 0, ansi, length,
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:3174:3:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
  char error_text[kBufSize] = { '\0' };
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:3258:3:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
  char str[5];  // Big enough for the largest valid code point.
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:5864:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char tmp[1024];
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:5870:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char line[1024];
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:7881:3:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
  char buffer[256];
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:8304:3:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
  char executable_path[_MAX_PATH + 1];  // NOLINT
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:8838:22:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
  const int cwd_fd = open(".", O_RDONLY);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:9266:3:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
  char cwd[GTEST_PATH_MAX_ + 1] = { '\0' };
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:9269:3:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
  char cwd[GTEST_PATH_MAX_ + 1] = { '\0' };
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:9826:18:  [2] (misc) open:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
  const int fd = open("/proc/self/as", O_RDONLY);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:10605:3:  [2] (buffer) memcpy:
  Does not check for buffer overflows when copying to destination (CWE-120).
  Make sure destination can always hold the source data.
  memcpy(buffer, regex, len);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:10679:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char temp_dir_path[MAX_PATH + 1] = { '\0' };  // NOLINT
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:10680:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char temp_file_path[MAX_PATH + 1] = { '\0' };  // NOLINT
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:10717:29:  [2] (tmpfile) mkstemp:
  Potential for temporary file vulnerability in some circumstances. Some
  older Unix-like systems create temp files with permission to write by all
  by default, so be sure to set the umask to override this. Also, some older
  Unix systems might fail to use O_EXCL when opening the file, so make sure
  that O_EXCL is used by the library (CWE-377).
    const int captured_fd = mkstemp(name_template);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:11064:3:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
  char text[5] = "";
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:2349:10:  [2] (misc) fopen:
  Check when opening files - can an attacker redirect it (via symlinks),
  force the opening of special file type (e.g., device files), move things
  around to create a race condition, control its ancestors, or change its
  contents? (CWE-362).
  return fopen(path, mode);
data/intel-compute-runtime-20.44.18297/third_party/opencl_headers/CL/cl.h:179:5:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
    char                    name[CL_NAME_VERSION_MAX_NAME_SIZE];
data/intel-compute-runtime-20.44.18297/third_party/uapi/dg1/drm/drm.h:126:2:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
	char padding[60];			/**< Pad to cache line */
data/intel-compute-runtime-20.44.18297/third_party/uapi/dg1/drm/drm_mode.h:238:2:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
	char name[DRM_DISPLAY_MODE_LEN];
data/intel-compute-runtime-20.44.18297/third_party/uapi/dg1/drm/drm_mode.h:421:2:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
	char name[DRM_PROP_NAME_LEN];
data/intel-compute-runtime-20.44.18297/third_party/uapi/dg1/drm/drm_mode.h:430:2:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
	char name[DRM_PROP_NAME_LEN];
data/intel-compute-runtime-20.44.18297/third_party/uapi/dg1/drm/i915_drm.h:2119:2:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
	char uuid[36];
data/intel-compute-runtime-20.44.18297/third_party/uapi/dg1/drm/i915_drm.h:2316:3:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
		char uuid[36];
data/intel-compute-runtime-20.44.18297/third_party/uapi/drm/drm.h:132:2:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
	char padding[60];			/**< Pad to cache line */
data/intel-compute-runtime-20.44.18297/third_party/uapi/drm/drm_mode.h:238:2:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
	char name[DRM_DISPLAY_MODE_LEN];
data/intel-compute-runtime-20.44.18297/third_party/uapi/drm/drm_mode.h:420:2:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
	char name[DRM_PROP_NAME_LEN];
data/intel-compute-runtime-20.44.18297/third_party/uapi/drm/drm_mode.h:429:2:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
	char name[DRM_PROP_NAME_LEN];
data/intel-compute-runtime-20.44.18297/third_party/uapi/drm/i915_drm.h:1983:2:  [2] (buffer) char:
  Statically-sized arrays can be improperly restricted, leading to potential
  overflows or other issues (CWE-119!/CWE-120). Perform bounds checking, use
  functions that limit length, or ensure that the size is larger than the
  maximum possible length.
	char uuid[36];
data/intel-compute-runtime-20.44.18297/level_zero/core/source/module/module_imp.cpp:129:106:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    auto singleDeviceBinary = unpackSingleDeviceBinary(archive, NEO::ConstStringRef(productAbbreviation, strlen(productAbbreviation)), targetDevice,
data/intel-compute-runtime-20.44.18297/level_zero/core/test/black_box_tests/zello_timestamp.cpp:30:12:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    stream.read(reinterpret_cast<char *>(binary_file.data()), length);
data/intel-compute-runtime-20.44.18297/level_zero/core/test/black_box_tests/zello_world_gpu.cpp:120:14:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        file.read(spirvInput.get(), length);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/frequency/linux/os_frequency_imp.cpp:147:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(minFreqFile, intval);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/frequency/linux/os_frequency_imp.cpp:172:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(maxFreqFile, intval);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/frequency/linux/os_frequency_imp.cpp:197:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(requestFreqFile, intval);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/frequency/linux/os_frequency_imp.cpp:211:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(tdpFreqFile, intval);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/frequency/linux/os_frequency_imp.cpp:225:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(actualFreqFile, intval);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/frequency/linux/os_frequency_imp.cpp:239:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(efficientFreqFile, intval);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/frequency/linux/os_frequency_imp.cpp:253:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(maxValFreqFile, intval);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/frequency/linux/os_frequency_imp.cpp:267:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(minValFreqFile, intval);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:44:10:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
    std::strncpy(serialNumber, unknown.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:52:10:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
    std::strncpy(boardNumber, unknown.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:57:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(subsystemVendorFile, strVal);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:59:14:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
        std::strncpy(brandName, unknown.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:63:14:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
        std::strncpy(brandName, vendorIntel.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:66:10:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
    std::strncpy(brandName, unknown.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:71:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(deviceFile, strVal);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:73:14:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
        std::strncpy(modelName, unknown.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:76:10:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
    std::strncpy(modelName, strVal.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:81:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(vendorFile, strVal);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:83:14:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
        std::strncpy(vendorName, unknown.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:87:14:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
        std::strncpy(vendorName, vendorIntel.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:90:10:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
    std::strncpy(vendorName, unknown.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:95:37:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pFsAccess->read(agamaVersionFile, strVal);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:97:14:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
        std::strncpy(driverVersion, strVal.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:100:14:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
        std::strncpy(driverVersion, unknown.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:103:29:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pFsAccess->read(srcVersionFile, strVal);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:105:18:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
            std::strncpy(driverVersion, unknown.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:108:14:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
        std::strncpy(driverVersion, strVal.c_str(), ZES_STRING_PROPERTY_SIZE);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:280:32:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pSysfsAccess->read(realClientPidPath, pid);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:306:36:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            result = pSysfsAccess->read(engine, timeSpent);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:329:32:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pSysfsAccess->read(realClientTotalMemoryPath, memSize);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:340:32:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pSysfsAccess->read(realClientTotalSharedMemoryPath, sharedMemSize);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/global_operations/linux/os_global_operations_imp.cpp:379:37:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pFsAccess->read(ueventWedgedFile, valWedged);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:40:23:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t FsAccess::read(const std::string file, uint64_t &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:57:23:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t FsAccess::read(const std::string file, double &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:74:23:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t FsAccess::read(const std::string file, int32_t &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:91:23:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t FsAccess::read(const std::string file, uint32_t &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:107:23:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t FsAccess::read(const std::string file, std::string &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:129:23:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t FsAccess::read(const std::string file, std::vector<std::string> &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:408:26:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t SysfsAccess::read(const std::string file, std::string &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:410:22:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    return FsAccess::read(fullPath(file).c_str(), val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:413:26:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t SysfsAccess::read(const std::string file, int32_t &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:417:24:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    result = FsAccess::read(fullPath(file), str);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:431:26:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t SysfsAccess::read(const std::string file, uint32_t &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:435:24:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    result = FsAccess::read(fullPath(file), str);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:449:26:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t SysfsAccess::read(const std::string file, double &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:453:24:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    result = FsAccess::read(fullPath(file), str);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:467:26:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t SysfsAccess::read(const std::string file, uint64_t &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:471:24:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    result = FsAccess::read(fullPath(file), str);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:485:26:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
ze_result_t SysfsAccess::read(const std::string file, std::vector<std::string> &val) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.cpp:487:22:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    return FsAccess::read(fullPath(file), val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:35:25:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    virtual ze_result_t read(const std::string file, uint64_t &val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:36:25:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    virtual ze_result_t read(const std::string file, std::string &val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:37:25:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    virtual ze_result_t read(const std::string file, std::vector<std::string> &val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:38:25:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    virtual ze_result_t read(const std::string file, double &val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:39:25:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    virtual ze_result_t read(const std::string file, uint32_t &val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:40:25:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    virtual ze_result_t read(const std::string file, int32_t &val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:88:17:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t read(const std::string file, std::string &val) override;
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:89:17:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t read(const std::string file, int32_t &val) override;
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:90:17:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t read(const std::string file, uint32_t &val) override;
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:91:17:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t read(const std::string file, uint64_t &val) override;
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:92:17:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t read(const std::string file, double &val) override;
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/fs_access.h:93:17:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t read(const std::string file, std::vector<std::string> &val) override;
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/pmt.cpp:34:37:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pFsAccess->read(guidPath, guid);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/pmt.cpp:42:25:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    result = pFsAccess->read(sizePath, size);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/pmt.cpp:50:25:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    result = pFsAccess->read(offsetPath, baseOffset);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/pmu/pmu_imp.cpp:39:41:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    if (ZE_RESULT_SUCCESS != pFsAccess->read(eventTypeSysfsNode, eventTypeVal)) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/linux/pmu/pmu_imp.cpp:77:11:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    len = read(fd, data, sizeOfdata);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/pci/linux/os_pci_imp.cpp:63:29:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pfsAccess->read(rootPortPath + '/' + "max_link_speed", maxLinkSpeed);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/pci/linux/os_pci_imp.cpp:69:32:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pSysfsAccess->read(maxLinkSpeedFile, maxLinkSpeed);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/pci/linux/os_pci_imp.cpp:92:29:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pfsAccess->read(rootPortPath + '/' + "max_link_width", maxLinkwidth);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/pci/linux/os_pci_imp.cpp:101:32:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pSysfsAccess->read(maxLinkWidthFile, maxLinkwidth);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/pci/linux/os_pci_imp.cpp:129:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(resourceFile, ReadBytes);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/power/linux/dg1/os_power_imp.cpp:37:33:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    auto result = pSysfsAccess->read(i915HwmonDir + "/" + energyCounterNode, pEnergy->energy);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/power/linux/dg1/os_power_imp.cpp:49:32:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pSysfsAccess->read(i915HwmonDir + "/" + sustainedPowerLimitEnabled, val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/power/linux/dg1/os_power_imp.cpp:57:36:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            result = pSysfsAccess->read(i915HwmonDir + "/" + sustainedPowerLimit, val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/power/linux/dg1/os_power_imp.cpp:65:36:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            result = pSysfsAccess->read(i915HwmonDir + "/" + sustainedPowerLimitInterval, val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/power/linux/dg1/os_power_imp.cpp:73:32:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pSysfsAccess->read(i915HwmonDir + "/" + burstPowerLimitEnabled, val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/power/linux/dg1/os_power_imp.cpp:80:36:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            result = pSysfsAccess->read(i915HwmonDir + "/" + burstPowerLimit, val);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/power/linux/dg1/os_power_imp.cpp:101:32:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        result = pSysfsAccess->read(i915HwmonDir + "/" + sustainedPowerLimitEnabled, isSustainedPowerLimitEnabled);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/power/linux/dg1/os_power_imp.cpp:153:48:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        if (ZE_RESULT_SUCCESS != pSysfsAccess->read(i915NameFile, name)) {
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/scheduler/linux/os_scheduler_imp.cpp:38:36:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            result = pSysfsAccess->read(engineDir + "/" + engineName + "/" + defaultPreemptTimeouttMilliSecs, timeout);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/scheduler/linux/os_scheduler_imp.cpp:40:36:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            result = pSysfsAccess->read(engineDir + "/" + engineName + "/" + preemptTimeoutMilliSecs, timeout);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/scheduler/linux/os_scheduler_imp.cpp:69:36:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            result = pSysfsAccess->read(engineDir + "/" + engineName + "/" + defaultTimesliceDurationMilliSecs, timeslice);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/scheduler/linux/os_scheduler_imp.cpp:71:36:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            result = pSysfsAccess->read(engineDir + "/" + engineName + "/" + timesliceDurationMilliSecs, timeslice);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/scheduler/linux/os_scheduler_imp.cpp:100:36:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            result = pSysfsAccess->read(engineDir + "/" + engineName + "/" + defaultHeartbeatIntervalMilliSecs, heartbeat);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/scheduler/linux/os_scheduler_imp.cpp:102:36:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            result = pSysfsAccess->read(engineDir + "/" + engineName + "/" + heartbeatIntervalMilliSecs, heartbeat);
data/intel-compute-runtime-20.44.18297/level_zero/tools/source/sysman/standby/linux/os_standby_imp.cpp:32:40:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ze_result_t result = pSysfsAccess->read(standbyModeFile, currentMode);
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/engine/linux/mock_engine.h:96:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, uint32_t &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/engine/linux/test_zes_engine.cpp:63:35:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pFsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/engine/linux/test_zes_engine.cpp:162:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/engine/linux/test_zes_engine.cpp:174:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/events/linux/mock_events.h:50:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, std::string &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/events/linux/mock_events.h:51:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, uint32_t &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/events/linux/test_zes_events.cpp:57:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<uint32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/events/linux/test_zes_events.cpp:72:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<uint32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/events/linux/test_zes_events.cpp:81:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<uint32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/events/linux/test_zes_events.cpp:92:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<uint32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/mock_sysfs_frequency.h:36:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, double &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:52:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:178:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:182:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:334:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:338:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:342:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:346:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:350:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:354:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:358:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:362:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:376:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:380:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:388:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:392:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:400:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:404:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:412:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:421:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/frequency/linux/test_zes_frequency.cpp:446:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/mock_global_operations.h:161:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, std::string &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/mock_global_operations.h:162:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, uint64_t &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/mock_global_operations.h:317:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, std::string &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/mock_global_operations.h:318:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, uint32_t &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:55:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pSysfsAccess.get(), read(_, Matcher<std::string &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:57:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pSysfsAccess.get(), read(_, Matcher<uint64_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:61:35:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pFsAccess.get(), read(_, Matcher<std::string &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:101:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<std::string &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:113:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<std::string &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:124:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<std::string &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:135:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<std::string &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:169:48:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    EXPECT_EQ(ZE_RESULT_SUCCESS, pSysfsAccess->read("clients/6/total_device_memory_buffer_objects/created_bytes", memSize));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:177:60:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    EXPECT_EQ(ZE_RESULT_ERROR_NOT_AVAILABLE, pSysfsAccess->read("clients/7/total_device_memory_buffer_objects/imported_bytes", memSize));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:186:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<uint32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:194:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<uint32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:202:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<uint32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/global_operations/linux/test_zes_global_operations.cpp:209:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pFsAccess.get(), read(_, Matcher<uint32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/mock_sysfs_pci.h:51:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, double &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/mock_sysfs_pci.h:52:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, int32_t &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/mock_sysfs_pci.h:81:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, double &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/mock_sysfs_pci.h:82:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, int32_t &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/mock_sysfs_pci.h:83:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, std::vector<std::string> &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/test_zes_pci.cpp:79:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pSysfsAccess.get(), read(_, Matcher<std::vector<std::string> &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/test_zes_pci.cpp:81:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pSysfsAccess.get(), read(_, Matcher<int32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/test_zes_pci.cpp:87:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pSysfsAccess.get(), read(_, Matcher<double &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/test_zes_pci.cpp:89:35:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pfsAccess.get(), read(_, Matcher<double &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/test_zes_pci.cpp:91:35:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pfsAccess.get(), read(_, Matcher<int32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/test_zes_pci.cpp:180:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, Matcher<int32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/pci/linux/test_zes_pci.cpp:182:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pfsAccess.get(), read(_, Matcher<int32_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/mock_sysfs_power.h:192:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, uint64_t &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/mock_sysfs_power.h:193:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, std::string &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/test_zes_power.cpp:32:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pSysfsAccess.get(), read(_, Matcher<std::string &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/test_zes_power.cpp:34:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pSysfsAccess.get(), read(_, Matcher<uint64_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/test_zes_power.cpp:108:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, Matcher<uint64_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/test_zes_power.cpp:171:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, Matcher<uint64_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/test_zes_power.cpp:202:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, Matcher<uint64_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/test_zes_power.cpp:217:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, Matcher<uint64_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/test_zes_power.cpp:232:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, Matcher<uint64_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/test_zes_power.cpp:244:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, Matcher<uint64_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/power/linux/dg1/test_zes_power.cpp:280:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, Matcher<uint64_t &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/scheduler/linux/mock_sysfs_scheduler.h:181:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, uint64_t &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/scheduler/linux/test_zes_scheduler.cpp:53:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/scheduler/linux/test_zes_scheduler.cpp:226:46:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            EXPECT_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/scheduler/linux/test_zes_scheduler.cpp:244:46:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            EXPECT_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/scheduler/linux/test_zes_scheduler.cpp:261:46:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            EXPECT_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/scheduler/linux/test_zes_scheduler.cpp:281:46:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            EXPECT_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/scheduler/linux/test_zes_scheduler.cpp:346:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/scheduler/linux/test_zes_scheduler.cpp:357:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/scheduler/linux/test_zes_scheduler.cpp:368:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*pSysfsAccess.get(), read(_, _))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/standby/linux/mock_sysfs_standby.h:22:30:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    MOCK_METHOD(ze_result_t, read, (const std::string file, int &val), (override));
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/standby/linux/test_zes_sysman_standby.cpp:35:42:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*ptestSysfsAccess.get(), read(_, Matcher<int &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/standby/linux/test_zes_sysman_standby.cpp:146:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    ON_CALL(*ptestSysfsAccess.get(), read(_, Matcher<int &>(_)))
data/intel-compute-runtime-20.44.18297/level_zero/tools/test/unit_tests/sources/sysman/standby/linux/test_zes_sysman_standby.cpp:197:42:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        ON_CALL(*ptestSysfsAccess.get(), read(_, Matcher<int &>(_)))
data/intel-compute-runtime-20.44.18297/opencl/source/cl_device/cl_device_info.cpp:32:22:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    retSize = size = strlen(Map<Param>::getValue(*this)) + 1;
data/intel-compute-runtime-20.44.18297/opencl/source/command_stream/aub_command_stream_receiver.cpp:273:23:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    auto messageLen = strlen(message) + 1;
data/intel-compute-runtime-20.44.18297/opencl/source/helpers/string_helpers.h:44:33:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
                localSizes[i] = strlen((const char *)strings[i]);
data/intel-compute-runtime-20.44.18297/opencl/source/program/compile.cpp:116:105:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
            elfEncoder.appendSection(NEO::Elf::SHT_OPENCL_HEADER, ConstStringRef(headerIncludeNames[i], strlen(headerIncludeNames[i])), includeHeaderSource);
data/intel-compute-runtime-20.44.18297/opencl/source/program/get_info.cpp:118:33:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
            retSize = srcSize = strlen(sourceCode.c_str()) + 1;
data/intel-compute-runtime-20.44.18297/opencl/source/program/get_info.cpp:199:29:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        srcSize = retSize = strlen(options.c_str()) + 1;
data/intel-compute-runtime-20.44.18297/opencl/source/program/get_info.cpp:207:29:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        srcSize = retSize = strlen(pBuildLog) + 1;
data/intel-compute-runtime-20.44.18297/opencl/source/program/kernel_info.cpp:368:18:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        start += strlen("intel_reqd_sub_group_size(");
data/intel-compute-runtime-20.44.18297/opencl/source/program/program.cpp:168:105:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        auto singleDeviceBinary = unpackSingleDeviceBinary(archive, ConstStringRef(productAbbreviation, strlen(productAbbreviation)), targetDevice,
data/intel-compute-runtime-20.44.18297/opencl/source/sharings/gl/windows/gl_sharing_windows.h:26:84:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
typedef GLboolean(OSAPI *PFNOGLMakeCurrent)(GLDisplay hdcHandle, void *draw, void *read, GLContext contextHandle);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/api/gl/cl_get_gl_device_info_tests.cpp:46:20:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    EXPECT_GE(std::strlen(paramValue), 0u);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/built_ins/built_in_tests.cpp:94:18:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        start += strlen("R\"===(");
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/built_ins/sip_tests.cpp:38:19:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    EXPECT_EQ(0U, strlen(opt));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/device/device_caps_tests.cpp:505:16:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    auto len = strlen(caps.deviceExtensions);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/device/get_device_info_size_tests.cpp:69:51:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    {CL_DEVICE_LATEST_CONFORMANCE_VERSION_PASSED, strlen(latestConformanceVersionPassed) + 1},
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/fixtures/kernel_data_fixture.cpp:48:23:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    strcpy_s(pCurPtr, strlen(kernelName.c_str()) + 1, kernelName.c_str());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/fixtures/kernel_data_fixture.h:36:44:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        kernelNameSize = (uint32_t)alignUp(strlen(kernelName.c_str()) + 1, sizeof(uint32_t));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/mocks/mock_compilers.cpp:379:7:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    f.read(reinterpret_cast<char *>(data.get()), s);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/decoder/encoder_tests.cpp:72:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    out.read(reinterpret_cast<char *>(&val1), sizeof(uint8_t));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/decoder/encoder_tests.cpp:76:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    out.read(reinterpret_cast<char *>(&val2), sizeof(uint16_t));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/decoder/encoder_tests.cpp:80:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    out.read(reinterpret_cast<char *>(&val3), sizeof(uint32_t));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/decoder/encoder_tests.cpp:84:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    out.read(reinterpret_cast<char *>(&val4), sizeof(uint64_t));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/decoder/encoder_tests.cpp:107:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    out.read(reinterpret_cast<char *>(&val1), sizeof(uint8_t));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/decoder/encoder_tests.cpp:115:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    out.read(reinterpret_cast<char *>(&val2), sizeof(uint16_t));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/decoder/encoder_tests.cpp:123:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    out.read(reinterpret_cast<char *>(&val3), sizeof(uint32_t));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/decoder/encoder_tests.cpp:131:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    out.read(reinterpret_cast<char *>(&val4), sizeof(uint64_t));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/offline_compiler/ocloc_fatbinary_tests.cpp:96:87:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
            EXPECT_FALSE(NEO::asGfxCoreIdList(ConstStringRef(NEO::familyName[coreId], strlen(NEO::familyName[coreId]))).empty());
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/mock_registry_reader.cpp:47:52:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
                    *lpcbData = static_cast<DWORD>(strlen(settingSource) + 1u);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/mock_registry_reader.cpp:66:29:  [1] (buffer) wcslen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
                auto size = wcslen(settingSource) * sizeof(wchar_t);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/os_interface/windows/os_library_win_tests.cpp:63:18:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    auto lenFn = strlen(lpFileName);
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/perf_tests/api/context_tests.cpp:33:43:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    uint64_t hash = getHash(__FUNCTION__, strlen(__FUNCTION__));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/perf_tests/api/context_tests.cpp:62:43:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    uint64_t hash = getHash(__FUNCTION__, strlen(__FUNCTION__));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/perf_tests/api/context_tests.cpp:93:43:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    uint64_t hash = getHash(__FUNCTION__, strlen(__FUNCTION__));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/kernel_data.cpp:17:40:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    kernelNameSize = (uint32_t)alignUp(strlen(kernelName.c_str()) + 1, sizeof(uint32_t));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/kernel_data.cpp:107:22:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t strSize = strlen(stringValue) + 1;
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/process_elf_binary_tests.cpp:220:26:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t optionsSize = strlen(options.c_str()) + 1;
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_data_tests.cpp:71:28:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        size_t constSize = strlen(constValue) + 1;
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_data_tests.cpp:97:29:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        size_t globalSize = strlen(globalValue) + 1;
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_data_tests.cpp:391:25:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t globalSize = strlen(globalValue) + 1;
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:298:40:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t expectedKernelsStringSize = strlen(KernelName) + 1;
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:1245:25:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        sizes.push_back(strlen(ptr));
data/intel-compute-runtime-20.44.18297/opencl/test/unit_test/program/program_tests.cpp:1752:101:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    auto singleDeviceBinary = unpackSingleDeviceBinary(archive, ConstStringRef(productAbbreviation, strlen(productAbbreviation)), targetDevice,
data/intel-compute-runtime-20.44.18297/shared/generate_cpp_array/source/generate_cpp_array.cpp:110:19:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        inputFile.read(reinterpret_cast<char *>(memblock.get()), size);
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/decoder/helper.cpp:37:14:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        file.read(binary.data(), length);
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/ocloc_fatbinary.cpp:45:62:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        ret.push_back(ConstStringRef(hardwarePrefix[prodId], strlen(hardwarePrefix[prodId])));
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/ocloc_fatbinary.cpp:80:67:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
        if (ConstStringRef(nameSuffix, std::min(coreSuffixLength, strlen(nameSuffix))) == coreSuffix)
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/offline_compiler.cpp:267:14:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    start += strlen("R\"===(");
data/intel-compute-runtime-20.44.18297/shared/offline_compiler/source/offline_compiler.cpp:984:87:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    ret.reserve(directory.size() + (hasTrailingSlash ? 0 : 1) + fileNameBase.size() + strlen(extension) + 1);
data/intel-compute-runtime-20.44.18297/shared/source/aub/aub_subcapture.cpp:122:85:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    std::string baseFileName = initialFileName.substr(0, initialFileName.length() - strlen(".aub"));
data/intel-compute-runtime-20.44.18297/shared/source/aub/aub_subcapture.cpp:136:85:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    std::string baseFileName = initialFileName.substr(0, initialFileName.length() - strlen(".aub"));
data/intel-compute-runtime-20.44.18297/shared/source/built_ins/built_ins_storage.cpp:127:7:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    f.read(ret.data(), s);
data/intel-compute-runtime-20.44.18297/shared/source/compiler_interface/compiler_interface.cpp:314:75:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    auto igcSrc = CIF::Builtins::CreateConstBuffer(igcMain.get(), sipSrc, strlen(sipSrc) + 1);
data/intel-compute-runtime-20.44.18297/shared/source/helpers/file_io.cpp:39:28:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            DEBUG_BREAK_IF(read != nsize);
data/intel-compute-runtime-20.44.18297/shared/source/helpers/file_io.cpp:40:29:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            UNUSED_VARIABLE(read);
data/intel-compute-runtime-20.44.18297/shared/source/helpers/string.h:23:21:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t length = strlen(src);
data/intel-compute-runtime-20.44.18297/shared/source/helpers/string.h:42:21:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t length = strlen(src);
data/intel-compute-runtime-20.44.18297/shared/source/kernel/kernel_arg_metadata.h:164:22:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t minSize = strlen(ret.c_str());
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/linux/drm_neo.cpp:357:106:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
            std::string pciPath = file->substr(devicePrefix.size(), file->size() - devicePrefix.size() - strlen(renderDeviceSuffix));
data/intel-compute-runtime-20.44.18297/shared/source/os_interface/windows/print.cpp:40:18:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t len = strlen(format);
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.cpp:29:5:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    read(&printfOutputBufferSizeRead);
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.cpp:34:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        read(&stringIndex);
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.cpp:97:18:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t len = strlen(format);
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.cpp:106:5:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    read(&type);
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.cpp:144:5:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    read(&type);
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.cpp:145:5:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    read(&index);
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.cpp:155:5:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    read(&value);
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.h:65:10:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    bool read(T *value) {
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.h:84:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        read(&value);
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.h:92:9:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        read(&valueCount);
data/intel-compute-runtime-20.44.18297/shared/source/program/print_formatter.h:101:13:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            read(&value);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/perf_profiler.cpp:114:32:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
void PerfProfiler::LogBuilder::read(std::istream &str, long long &start, long long &end, long long &span, unsigned long long &totalSystem, std::string &function) {
data/intel-compute-runtime-20.44.18297/shared/source/utilities/perf_profiler.cpp:119:13:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        str.read(&c, 1);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/perf_profiler.cpp:148:35:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
void PerfProfiler::SysLogBuilder::read(std::istream &str, long long &start, unsigned long long &time, unsigned int &id) {
data/intel-compute-runtime-20.44.18297/shared/source/utilities/perf_profiler.h:29:21:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        static void read(std::istream &str, long long &start, long long &end, long long &span, unsigned long long &totalSystem, std::string &function);
data/intel-compute-runtime-20.44.18297/shared/source/utilities/perf_profiler.h:34:21:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        static void read(std::istream &str, long long &start, unsigned long long &time, unsigned int &id);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/compiler_interface/compiler_cache_tests.cpp:125:29:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    for (size_t i = 0; i <= strlen(data); i++) {
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/compiler_interface/compiler_cache_tests.cpp:196:54:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
                    src = ArrayRef<char>(buf1.get(), strlen(buf1.get()));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/compiler_interface/compiler_cache_tests.cpp:199:65:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
                        apiOptions = ArrayRef<char>(buf2.get(), strlen(buf2.get()));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/compiler_interface/compiler_cache_tests.cpp:202:74:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
                            internalOptions = ArrayRef<char>(buf3.get(), strlen(buf3.get()));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/compiler_interface/compiler_cache_tests.cpp:261:47:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    inputArgs.src = ArrayRef<const char>(src, strlen(src));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/compiler_interface/compiler_cache_tests.cpp:289:47:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    inputArgs.src = ArrayRef<const char>(src, strlen(src));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/compiler_interface/compiler_cache_tests.cpp:320:47:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    inputArgs.src = ArrayRef<const char>(src, strlen(src));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/compiler_interface/compiler_cache_tests.cpp:352:47:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    inputArgs.src = ArrayRef<const char>(src, strlen(src));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:15:21:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
TEST(StringHelpers, strncpy) {
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:22:15:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    ASSERT_LT(strlen(src), sizeof(src));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:34:37:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    ret = strncpy_s(dst, 1024, src, strlen(src) / 2);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:36:35:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    EXPECT_EQ(0, memcmp(dst, src, strlen(src) / 2));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:37:21:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    for (size_t i = strlen(src) / 2; i < sizeof(dst); i++)
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:41:26:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    ret = strncpy_s(dst, strlen(src) / 2, src, strlen(src) / 2);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:41:48:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    ret = strncpy_s(dst, strlen(src) / 2, src, strlen(src) / 2);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:43:35:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    EXPECT_EQ(0, memcmp(dst, src, strlen(src) / 2));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:44:21:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    for (size_t i = strlen(src) / 2; i < sizeof(dst); i++)
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:48:35:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    EXPECT_EQ(0, memcmp(dst, src, strlen(src)));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:49:21:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    for (size_t i = strlen(src); i < sizeof(dst); i++)
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:95:25:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    ret = strcpy_s(dst, strlen(src) / 2, src);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:98:25:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    ret = strcpy_s(dst, strlen(src), src);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:105:35:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    EXPECT_EQ(0, memcmp(dst, src, strlen(src)));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:106:22:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    EXPECT_EQ(0, dst[strlen(src)]);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:107:21:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    for (size_t i = strlen(src) + 1; i < sizeof(dst); i++)
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:121:20:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    EXPECT_EQ(ret, strlen(src));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:131:15:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    ASSERT_LT(strlen(src), sizeof(src));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:143:43:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    ret = memcpy_s(dst, sizeof(dst), src, strlen(src) / 2);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:145:35:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    EXPECT_EQ(0, memcmp(dst, src, strlen(src) / 2));
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_tests.cpp:146:21:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    for (size_t i = strlen(src) / 2; i < sizeof(dst); i++)
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_to_hash_tests.cpp:22:22:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t lengths = strlen(srcString);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_to_hash_tests.cpp:82:26:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t lengths[2] = {strlen(srcString[0]), strlen(srcString[1])};
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_to_hash_tests.cpp:82:48:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t lengths[2] = {strlen(srcString[0]), strlen(srcString[1])};
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_to_hash_tests.cpp:121:29:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t lengths[2] = {0, strlen(srcString[1])};
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_to_hash_tests.cpp:139:29:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t lengths[2] = {0, strlen(expString[1])};
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/helpers/string_to_hash_tests.cpp:161:29:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    size_t lengths[2] = {0, strlen(srcString[1])};
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:101:39:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            PerfProfiler::LogBuilder::read(logDump, startR, endR, spanR, totalSystemR, functionR);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:103:21:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            logDump.read(&c, 1);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:124:42:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            PerfProfiler::SysLogBuilder::read(sysLogDump, startR, totalSystemR, funcId);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:126:24:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            sysLogDump.read(&c, 1);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:154:39:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            PerfProfiler::LogBuilder::read(logDump, startR, endR, spanR, totalSystemR, functionR);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:183:24:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
            sysLogDump.read(&c, 1);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:248:31:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    PerfProfiler::LogBuilder::read(in, startR, endR, spanR, totalSystemR, functionR);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:251:8:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    in.read(&end, 1);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:270:35:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
        PerfProfiler::LogBuilder::read(in, startR, endR, spanR, totalSystemR, functionR);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:285:34:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    PerfProfiler::SysLogBuilder::read(in, startR, timeR, idR);
data/intel-compute-runtime-20.44.18297/shared/test/unit_test/utilities/perf_profiler_tests.cpp:287:8:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
    in.read(&end, 1);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:2361:22:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
  const int length = strlen(ansi);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:3319:34:  [1] (buffer) wcslen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    num_chars = static_cast<int>(wcslen(str));
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:5179:32:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
      segment = next_segment + strlen("]]>");
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:5768:18:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
  result.reserve(strlen(str) + 1);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:7101:29:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
  const size_t prefix_len = strlen(prefix);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:7510:21:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
  else if (temp_dir[strlen(temp_dir) - 1] == '\\')
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:8457:38:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
          status_zx = stderr_socket_.read(
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:10343:33:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
  const size_t full_regex_len = strlen(regex) + 10;
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:10593:22:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
  const size_t len = strlen(regex);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:11332:29:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    PrintCharsAsStringTo(s, strlen(s), os);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gmock-gtest-all.cc:11349:29:  [1] (buffer) wcslen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    PrintCharsAsStringTo(s, wcslen(s), os);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:2338:10:  [1] (buffer) strncpy:
  Easily used incorrectly; doesn't always \0-terminate or check for invalid
  pointers [MS-banned] (CWE-120).
  return strncpy(dest, src, n);
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:2360:27:  [1] (buffer) read:
  Check buffer boundaries if used in a loop including recursive loops
  (CWE-120, CWE-20).
  return static_cast<int>(read(fd, buf, count));
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:3219:20:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
  if (s.compare(0, strlen(prefix), prefix) == 0) {
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:3220:47:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
    std::string::size_type end = s.find("::", strlen(prefix));
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:3223:15:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
      s.erase(strlen("std"), end - strlen("std"));
data/intel-compute-runtime-20.44.18297/third_party/gtest/gtest/gtest.h:3223:36:  [1] (buffer) strlen:
  Does not handle strings that are not \0-terminated; if given one it may
  perform an over-read (it could cause a crash if unprotected) (CWE-126).
      s.erase(strlen("std"), end - strlen("std"));

ANALYSIS SUMMARY:

Hits = 977
Lines analyzed = 506332 in approximately 13.56 seconds (37339 lines/second)
Physical Source Lines of Code (SLOC) = 377371
Hits@level = [0] 238 [1] 312 [2] 440 [3]  44 [4] 180 [5]   1
Hits@level+ = [0+] 1215 [1+] 977 [2+] 665 [3+] 225 [4+] 181 [5+]   1
Hits/KSLOC@level+ = [0+] 3.21964 [1+] 2.58896 [2+] 1.76219 [3+] 0.59623 [4+] 0.479634 [5+] 0.00264991
Dot directories skipped = 1 (--followdotdir overrides)
Minimum risk level = 1
Not every hit is necessarily a security vulnerability.
There may be other security vulnerabilities; review your code!
See 'Secure Programming HOWTO'
(https://dwheeler.com/secure-programs) for more information.