# # Minimum version of cmake required # cmake_minimum_required(VERSION 2.8.0) # # GCC 4.8 or higher compiler required. # # # Required Defines on cmake command line # # 1) Set location of ROCR header files # # ROCM_DIR="Root for RocM install" # # 2) Set ROCRTST_BLD_TYPE to either "Debug" or "Release". # If not set, the default value is "Debug" is bound. # # ROCRTST_BLD_TYPE=Debug or ROCRTST_BLD_TYPE=Release # # 3) Set ROCRTST_BLD_BITS to either "32" or "64" # If not set, the default value of "64" is bound. # # ROCRTST_BLD_BITS=32 or ROCRTST_BLD_BITS=64 # # 4) Set TARGET_DEVICES to indicate gpu types for kernel # builds (e.g., "gfx803;gfx900; ...") # # Building rocrtst Suite # # 1) Create build folder e.g. "rocrtst/build" - any name will do # 2) Cd into build folder # 3) Run "cmake .." # 4) Run "make" # set(DEFAULT_TARGET "gfx803") ############################# # COMMON AREA ############################# # # Currently support for Windows platform is not present # if(WIN32) message("This sample is not supported on Windows platform") return() endif() # # Process input variables # # Required Defines first: set(ROCR_INC_DIR ${ROCM_DIR}/include) set(ROCR_LIB_DIR ${ROCM_DIR}/lib) # # Determine ROCR Header files are present # if(NOT EXISTS ${ROCR_INC_DIR}/hsa/hsa.h) message("ERROR: ${ROCR_INC_DIR}/hsa/hsa.h does not exist. Check value of ROCM_DIR define") return() endif() # Determine ROCR Library files are present # if("${ROCRTST_BLD_BITS}" STREQUAL 32) set (ONLY64STR "") set (IS64BIT 0) else() set (ONLY64STR "64") set (IS64BIT 1) endif() # if (${IS64BIT} EQUAL 0) if(NOT EXISTS ${ROCR_LIB_DIR}/libhsa-runtime.so) message("ERROR: ${ROCR_LIB_DIR}/libhsa-runtime.so doesn't exist. Check value of ROCM_DIR define") return() endif() else() if(NOT EXISTS ${ROCR_LIB_DIR}/libhsa-runtime64.so) message("ERROR: Define ROCR_LIB_DIR pointing to ROCR libraries is not set") return() endif() endif() if (DEFINED LLVM_DIR) set(CLANG ${LLVM_DIR}/clang) if (NOT EXISTS ${CLANG}) message("ERROR: path to clang (${CLANG}) is not valid. Is define LLVM_DIR correct?") return() endif() else() message("WARNING: LLVM_DIR define is not set. Kernels will not be built.") endif() if (DEFINED OPENCL_DIR) set(OPENCL_INC_DIR ${OPENCL_DIR}/include) set(OPENCL_LIB_DIR ${OPENCL_DIR}/lib) else() message("WARNING: OPENCL_DIR define is not set. Kernels will not be built.") endif() if (DEFINED OPENCL_VER) set(OPENCL_VER ${OPENCL_VER}) else() message("OPENCL_VER define is not set. Using default") set(OPENCL_VER "2.0") endif() if (NOT DEFINED TARGET_DEVICES) message("WARNING: No targets devices provided on command line") message(" e.g., cmake -DTARGET_DEVICES=\"gfx803;gfx900;gfx...\" ..") message(" Using default target of $DEFAULT_TARGET") list(APPEND TARGET_DEVICES "gfx803") endif() string(TOLOWER "${ROCRTST_BLD_TYPE}" tmp) if("${tmp}" STREQUAL release) set(BUILD_TYPE "Release") set(ISDEBUG 0) else() set(BUILD_TYPE "Debug") set(ISDEBUG 1) endif() if(${EMULATOR_BUILD}) add_definitions(-DROCRTST_EMULATOR_BUILD=1) endif() # Set Name for Samples Project # set(PROJECT_NAME "sample${ONLY64STR}") project (${PROJECT_NAME}) # # Print out the build configuration being used: # # Build Src directory # Build Binary directory # Build Type: Debug Vs Release, 32 Vs 64 # Compiler Version, etc # message("") message("Build Configuration:") message("-------------IS64BIT: " ${IS64BIT}) message("-----------BuildType: " ${BUILD_TYPE}) message("------------Compiler: " ${CMAKE_CXX_COMPILER}) message("-------------Version: " ${CMAKE_CXX_COMPILER_VERSION}) message("--------Proj Src Dir: " ${PROJECT_SOURCE_DIR}) message("--------Proj Bld Dir: " ${PROJECT_BINARY_DIR}) message("--------Proj Lib Dir: " ${PROJECT_BINARY_DIR}/lib) message("--------Proj Exe Dir: " ${PROJECT_BINARY_DIR}/bin) message("------Target Devices: ${TARGET_DEVICES}") message("----------Clang path: " ${CLANG}) message("----------OpenCL Dir: " ${OPENCL_DIR}) message("-------OpenCL version " ${OPENCL_VER}) message("") # # Set the build type based on user input # set(CMAKE_BUILD_TYPE ${BUILD_TYPE}) # # Flag to enable / disable verbose output. # SET( CMAKE_VERBOSE_MAKEFILE on ) # # Compiler pre-processor definitions. # # Define MACRO "DEBUG" if build type is "Debug" if(${BUILD_TYPE} STREQUAL "Debug") add_definitions(-DDEBUG) endif() add_definitions(-D__linux__) add_definitions(-DLITTLEENDIAN_CPU=1) # # Linux Compiler options # set(CMAKE_CXX_FLAGS "-std=c++11 ") set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -fexceptions") set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -fno-rtti") set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -fno-math-errno") set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -fno-threadsafe-statics") set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -fmerge-all-constants") set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -fms-extensions") set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -Werror") set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -Wall") # # Extend the compiler flags for 64-bit builds # if (IS64BIT) set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -m64 -msse -msse2") else() set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -m32") endif() # # Add compiler flags to include symbol information for debug builds # if(ISDEBUG) set(CMAKE_CXX_FLAGS "${CMAKE_CXX_FLAGS} -ggdb -O0") endif() message("ISDEBUG STEP:Done") # # Linux Linker options ## # Specify the directory containing various libraries of ROCR # to be linked against for building ROC Perf applications # link_directories(${ROCR_LIB_DIR}) # # Extend the list of libraries to be used for linking ROC Perf Apps # set(ROCR_LIBS ${ROCR_LIBS} hsa-runtime${ONLY64STR}) include_directories(${ROCR_INC_DIR} ${OPENCL_INC_DIR}) # Use this function to build any samples that have kernels to be built function(process_sample S_NAME TARG_DEV HAS_KERNEL) set(KERNEL_DIR ${PROJECT_BINARY_DIR}/${TARG_DEV}) set(SNAME_KERNEL "${S_NAME}_kernels.hsaco") set(TARG_NAME "${S_NAME}_hsaco.${TARG_DEV}") set (HSACO_TARG_LIST ${HSACO_TARG_LIST} ${TARG_NAME} CACHE INTERNAL HSACO_TARG_LIST) if (${HAS_KERNEL}) # Build the kernel separate_arguments(CLANG_ARG_LIST UNIX_COMMAND "-x cl -Xclang -finclude-default-header -target amdgcn-amdh-amdhsa -mcpu=${TARG_DEV} -mno-code-object-v3 ${BITCODE_LIBS} -cl-std=CL${OPENCL_VER} ${CL_FILE_LIST} -o ${KERNEL_DIR}/${SNAME_KERNEL}") add_custom_target("${TARG_NAME}" ${CLANG} ${CLANG_ARG_LIST} COMMAND ${CMAKE_COMMAND} -E create_symlink "../${SNAME_EXE}" "${KERNEL_DIR}/${SNAME_EXE}" COMMENT "BUILDING KERNEL..." VERBATIM) else() # No kernel to build, but we need to set up symlinks; we'll use the hsaco # targ name, even though we aren't building an hsaco add_custom_target("${TARG_NAME}" ${CMAKE_COMMAND} -E create_symlink "../${SNAME_EXE}" "${KERNEL_DIR}/${SNAME_EXE}" COMMENT "NO KERNEL TO BUILD; SYMLINK ONLY..." VERBATIM) endif() endfunction(process_sample) function(build_sample_for_devices S_NAME HAS_KERNEL) set(SNAME_EXE "${S_NAME}") aux_source_directory(${CMAKE_CURRENT_SOURCE_DIR}/${S_NAME} S_NAME_SOURCES) add_executable(${SNAME_EXE} ${S_NAME_SOURCES}) target_link_libraries(${SNAME_EXE} ${ROCR_LIBS} c stdc++ dl pthread rt) set(HSACO_TARG_LIST PARENT_SCOPE) foreach(t ${TARGET_DEVICES}) process_sample(${S_NAME} ${t} ${HAS_KERNEL}) endforeach(t) endfunction(build_sample_for_devices) function(add_symlink_to_exe DST) foreach(td ${TARGET_DEVICES}) endforeach(td) endfunction(add_symlink_to_exe) # Make directories for each possible target device foreach(td ${TARGET_DEVICES}) file(MAKE_DIRECTORY ${PROJECT_BINARY_DIR}/${td}) endforeach(td) ########################### # SAMPLE SPECIFIC SECTION ########################### set (HSACO_TARG_LIST "" CACHE INTERNAL HSACO_TARG_LIST) set(KERN_SUFFIX "kernels.hsaco") set(BITCODE_PREF "-Xclang -mlink-bitcode-file -Xclang") set(BITCODE_PREF "${BITCODE_PREF} ${OPENCL_LIB_DIR}/bitcode") set(COMMON_BITCODE_LIBS "${BITCODE_PREF}/opencl.amdgcn.bc") set(COMMON_BITCODE_LIBS "${COMMON_BITCODE_LIBS} ${BITCODE_PREF}/ockl.amdgcn.bc") # Binary Search set(BITCODE_LIBS "${COMMON_BITCODE_LIBS}") set(BITCODE_LIBS "${BITCODE_LIBS} ${BITCODE_PREF}/ocml.amdgcn.bc") set(CL_FILE_LIST "${PROJECT_SOURCE_DIR}/binary_search/binary_search_kernels.cl") build_sample_for_devices("binary_search" TRUE) # RocR Info build_sample_for_devices("rocrinfo" FALSE) # IPC build_sample_for_devices("ipc" FALSE) # Async Mem. Copy build_sample_for_devices("async_mem_copy" FALSE) add_custom_target(sample_kernels DEPENDS ${HSACO_TARG_LIST}) install(TARGETS ${SAMPLE_EXE} ARCHIVE DESTINATION ${PROJECT_BINARY_DIR}/lib LIBRARY DESTINATION ${PROJECT_BINARY_DIR}/lib RUNTIME DESTINATION ${PROJECT_BINARY_DIR}/bin)