170 lines
6.2 KiB
CMake
170 lines
6.2 KiB
CMake
cmake_minimum_required (VERSION 2.6)
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project(testf Fortran C)
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message("CTEST_FULL_OUTPUT ")
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set(CMAKE_VERBOSE_MAKEFILE 1)
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message("ENV_FLAGS = $ENV{FFLAGS}")
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message("CMAKE_Fortran_COMPILER_INIT = ${CMAKE_Fortran_COMPILER_INIT}")
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message("CMAKE_Fortran_COMPILER_FULLPATH = ${CMAKE_Fortran_COMPILER_FULLPATH}")
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message("CMAKE_Fortran_COMPILER = ${CMAKE_Fortran_COMPILER}")
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message("CMAKE_Fortran_FLAGS = ${CMAKE_Fortran_FLAGS}")
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add_executable(testf hello.f)
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function(test_fortran_c_interface_module)
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message(STATUS "Testing FortranCInterface module")
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# test the C to Fortran interface module
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include(FortranCInterface)
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if(CMAKE_Fortran_COMPILER_SUPPORTS_F90)
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if(FORTRAN_C_MODULE_MANGLING_FOUND)
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set(srcs foo.f)
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set(FORTRAN_FUNCTIONS test_mod:sub)
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else(FORTRAN_C_MODULE_MANGLING_FOUND)
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if(CMAKE_Fortran_COMPILER_ID MATCHES "SunPro|MIPSpro")
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message("${CMAKE_Fortran_COMPILER_ID} compilers do not support"
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" linking Fortran module procedures from C")
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else()
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message("This will fail, but let the user see the error")
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set(srcs foo.f)
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set(FORTRAN_FUNCTIONS test_mod:sub)
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endif()
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endif(FORTRAN_C_MODULE_MANGLING_FOUND)
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endif()
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set(FORTRAN_FUNCTIONS ${FORTRAN_FUNCTIONS} my_sub mysub )
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set(srcs ${srcs} mysub.f foo.c)
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create_fortran_c_interface("F_" FORTRAN_FUNCTIONS
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"${testf_BINARY_DIR}/foo.h")
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include_directories("${testf_BINARY_DIR}")
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# if the name mangling is not found for a F90 compiler
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# print out some diagnostic stuff for the dashboard
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if(CMAKE_Fortran_COMPILER_SUPPORTS_F90)
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if(NOT FORTRAN_C_MODULE_MANGLING_FOUND)
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file(GLOB_RECURSE O_OBJFILES
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"${CMAKE_BINARY_DIR}${CMAKE_FILES_DIRECTORY}/CMakeTmp/CheckFortranLink/*.o"
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"*.o" )
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file(GLOB_RECURSE OBJ_OBJFILES
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"${CMAKE_BINARY_DIR}${CMAKE_FILES_DIRECTORY}/CMakeTmp/CheckFortranLink/*.obj")
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find_program(DUMPBIN dumpbin)
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find_program(NM nm)
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foreach(ofile ${O_OBJFILES} ${OBJ_OBJFILES})
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if(DEPENDS)
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execute_process(COMMAND ${DUMPBIN} /symbols "${ofile}"
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OUTPUT_VARIABLE out)
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message("symbols in ${ofile}:\n${out}")
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endif()
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if(NM)
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execute_process(COMMAND ${NM} "${ofile}" OUTPUT_VARIABLE out)
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message("symbols in ${ofile}:\n${out}")
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endif()
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endforeach()
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endif()
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endif()
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message("Fortran = ${CMAKE_Fortran_COMPILER_ID}")
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message("C = ${CMAKE_C_COMPILER_ID}")
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add_executable(foo ${srcs})
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# print out some stuff to help debug on machines via cdash
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file(READ "${testf_BINARY_DIR}/foo.h" fooh)
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message("foo.h contents:\n${fooh}")
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endfunction()
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# if the id's match or the compilers are compatible, then
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# call the test_fortran_c_interface_module function
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if(("${CMAKE_Fortran_COMPILER_ID}" MATCHES "Intel")
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AND
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("${CMAKE_C_COMPILER_ID}" MATCHES "MSVC")
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)
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set(COMPATABLE_COMPILERS TRUE)
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endif()
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if(COMPATABLE_COMPILERS
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OR ("${CMAKE_Fortran_COMPILER_ID}" MATCHES "${CMAKE_C_COMPILER_ID}" ))
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test_fortran_c_interface_module()
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else()
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message("Fortran does not match c compiler")
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message("Fortran = ${CMAKE_Fortran_COMPILER_ID}")
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message("C = ${CMAKE_C_COMPILER_ID}")
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# hack to make g77 work after CL has been enabled
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# as a languge, cmake needs language specific versions
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# of these variables....
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if(WIN32 AND "${CMAKE_Fortran_COMPILER_ID}" MATCHES "GNU")
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set(CMAKE_CREATE_CONSOLE_EXE )
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set(CMAKE_LIBRARY_PATH_FLAG "-L")
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set(CMAKE_LINK_LIBRARY_FLAG "-l")
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set(CMAKE_LINK_LIBRARY_SUFFIX )
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endif()
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# gnu and sunpro do not use the same flags here...
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# however if LDFLAGS is used to set -m64 it causes odd stuf
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# with the fortran build
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if( ("${CMAKE_C_COMPILER_ID}" MATCHES "GNU")
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AND ("${CMAKE_Fortran_COMPILER_ID}" MATCHES "SunPro"))
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set(CMAKE_EXE_LINKER_FLAGS "")
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set(CMAKE_Fortran_FLAGS "")
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endif()
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endif()
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set(TEST_MODULE_DEPENDS 0)
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if(CMAKE_Fortran_COMPILER_SUPPORTS_F90)
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add_executable(test_module
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test_module_main.f90
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test_module_implementation.f90
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test_module_interface.f90)
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add_executable(test_use_in_comment_fixedform
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test_use_in_comment_fixedform.f)
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add_executable(test_use_in_comment_freeform
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test_use_in_comment_freeform.f90)
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add_executable(test_in_interface
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in_interface/main.f90
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in_interface/module.f90)
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add_definitions(-DFOO -DBAR=1)
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include_directories(${testf_SOURCE_DIR}/include)
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add_executable(test_preprocess test_preprocess.F90)
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set(TEST_MODULE_DEPENDS 1)
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endif(CMAKE_Fortran_COMPILER_SUPPORTS_F90)
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if(TEST_MODULE_DEPENDS)
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# Build the external project separately using a custom target.
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# Make sure it uses the same build configuration as this test.
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if(CMAKE_CONFIGURATION_TYPES)
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set(External_CONFIG_TYPE -C "${CMAKE_CFG_INTDIR}")
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else(CMAKE_CONFIGURATION_TYPES)
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set(External_CONFIG_TYPE)
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endif(CMAKE_CONFIGURATION_TYPES)
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add_custom_command(
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OUTPUT ${testf_BINARY_DIR}/ExternalProject
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COMMAND ${CMAKE_CTEST_COMMAND}
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ARGS ${External_CONFIG_TYPE}
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--build-and-test
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${testf_SOURCE_DIR}/External
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${testf_BINARY_DIR}/External
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--build-noclean
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--build-two-config
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--build-project ExtFort
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--build-generator ${CMAKE_GENERATOR}
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--build-makeprogram ${CMAKE_MAKE_PROGRAM}
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--build-options -DCMAKE_Fortran_COMPILER:STRING=${CMAKE_Fortran_COMPILER}
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-DCMAKE_Fortran_FLAGS:STRING=${CMAKE_Fortran_FLAGS}
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-DCMAKE_Fortran_FLAGS_DEBUG:STRING=${CMAKE_Fortran_FLAGS_DEBUG}
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-DCMAKE_Fortran_FLAGS_RELEASE:STRING=${CMAKE_Fortran_FLAGS_RELEASE}
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-DCMAKE_Fortran_FLAGS_MINSIZEREL:STRING=${CMAKE_Fortran_FLAGS_MINSIZEREL}
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-DCMAKE_Fortran_FLAGS_RELWITHDEBINFO:STRING=${CMAKE_Fortran_FLAGS_RELWITHDEBINFO}
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)
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add_custom_target(ExternalTarget ALL DEPENDS ${testf_BINARY_DIR}/ExternalProject)
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# Test module output directory if available.
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if(CMAKE_Fortran_MODDIR_FLAG)
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set(Library_MODDIR "${testf_BINARY_DIR}/Library/modules")
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else(CMAKE_Fortran_MODDIR_FLAG)
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set(Library_MODDIR "${testf_BINARY_DIR}/Library")
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endif(CMAKE_Fortran_MODDIR_FLAG)
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add_subdirectory(Library)
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add_subdirectory(Executable)
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endif(TEST_MODULE_DEPENDS)
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