484 lines
21 KiB
CMake
484 lines
21 KiB
CMake
########################################################################################
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# Compiler options for building DAMASK
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cmake_minimum_required (VERSION 2.8.8 FATAL_ERROR)
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#---------------------------------------------------------------------------------------
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# Find PETSc from system environment
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set(PETSC_DIR $ENV{PETSC_DIR})
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if ("${PETSC_DIR}" STREQUAL "")
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message (FATAL_ERROR "PETSC_DIR is not defined")
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endif ()
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set (petsc_conf_variables "${PETSC_DIR}/lib/petsc/conf/variables")
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set (petsc_conf_rules "${PETSC_DIR}/lib/petsc/conf/rules" )
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# Use existing variables from PETSc
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# https://github.com/jedbrown/cmake-modules/blob/master/FindPETSc.cmake
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# Generate a temporary makefile to probe the PETSc configuration
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# This file will be deleted
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# once the settings from PETSc are parsed into CMake
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exec_program (mktemp ARGS -d OUTPUT_VARIABLE TEMPDIR)
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set (petsc_config_makefile "${TEMPDIR}/Makefile.petsc")
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file (WRITE
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"${petsc_config_makefile}"
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"## This file was auto generated by CMake
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# PETSC_DIR = ${PETSC_DIR}
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SHELL = /bin/sh
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include ${petsc_conf_rules}
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include ${petsc_conf_variables}
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INCLUDE_DIRS := \${PETSC_FC_INCLUDES}
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LIBRARIES := \${PETSC_WITH_EXTERNAL_LIB}
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COMPILERF := \${FC}
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COMPILERC := \${CC}
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LINKERNAME := \${FLINKER}
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includes:
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\t@echo \${INCLUDE_DIRS}
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extlibs:
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\t@echo \${LIBRARIES}
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compilerf:
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\t@echo \${COMPILERF}
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compilerc:
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\t@echo \${COMPILERC}
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linker:
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\t@echo \${LINKERNAME}
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")
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# CMake will execute each target in the ${petsc_config_makefile}
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# to acquire corresponding PETSc Variables.
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find_program (MAKE_EXECUTABLE NAMES make gmake)
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# Find the PETSc includes directory settings
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execute_process (COMMAND ${MAKE_EXECUTABLE} --no-print-directory -f ${petsc_config_makefile} "includes"
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RESULT_VARIABLE PETSC_INCLUDES_RETURN
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OUTPUT_VARIABLE petsc_includes
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OUTPUT_STRIP_TRAILING_WHITESPACE)
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# Find the PETSc external linking directory settings
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# required for final linking, must be appended after the executable
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execute_process (COMMAND ${MAKE_EXECUTABLE} --no-print-directory -f ${petsc_config_makefile} "extlibs"
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RESULT_VARIABLE PETSC_EXTERNAL_LIB_RETURN
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OUTPUT_VARIABLE petsc_external_lib
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OUTPUT_STRIP_TRAILING_WHITESPACE)
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# PETSc specified fortran compiler
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execute_process (COMMAND ${MAKE_EXECUTABLE} --no-print-directory -f ${petsc_config_makefile} "compilerf"
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RESULT_VARIABLE PETSC_MPIFC_RETURN
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OUTPUT_VARIABLE PETSC_MPIFC
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OUTPUT_STRIP_TRAILING_WHITESPACE)
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# PETSc specified C compiler
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execute_process (COMMAND ${MAKE_EXECUTABLE} --no-print-directory -f ${petsc_config_makefile} "compilerc"
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RESULT_VARIABLE PETSC_MPICC_RETURN
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OUTPUT_VARIABLE PETSC_MPICC
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OUTPUT_STRIP_TRAILING_WHITESPACE)
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# PETSc specified linker (MPIF90 + PETSc linking flags)
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execute_process (COMMAND ${MAKE_EXECUTABLE} --no-print-directory -f ${petsc_config_makefile} "linker"
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RESULT_VARIABLE PETSC_LINKER_RETURN
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OUTPUT_VARIABLE PETSC_LINKER
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OUTPUT_STRIP_TRAILING_WHITESPACE)
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# Remove temporary makefile, no need to keep it anymore.
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file (REMOVE_RECURSE ${TEMPDIR})
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# Remove duplicate compiler and linker flags
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string (REGEX MATCHALL "-I([^\" ]+)" TMP_LIST "${petsc_includes}")
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list (REMOVE_DUPLICATES TMP_LIST)
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foreach (dir ${TMP_LIST})
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set (PETSC_INCLUDES "${PETSC_INCLUDES} ${dir}")
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endforeach (dir)
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string (REGEX MATCHALL "-[lLW]([^\" ]+)" TMP_LIST "${petsc_external_lib}")
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list (REMOVE_DUPLICATES TMP_LIST)
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foreach (exlib ${TMP_LIST})
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set (PETSC_EXTERNAL_LIB "${PETSC_EXTERNAL_LIB} ${exlib}")
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endforeach (exlib)
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message ("Found PETSC_DIR:\n${PETSC_DIR}\n" )
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message ("Found PETSC_INCLUDES:\n${PETSC_INCLUDES}\n" )
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message ("Found PETSC_EXTERNAL_LIB:\n${PETSC_EXTERNAL_LIB}\n")
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message ("Found PETSC_LINKER:\n${PETSC_LINKER}\n" )
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message ("Found MPI Fortran Compiler:\n${PETSC_MPIFC}\n" )
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message ("Found MPI C Compiler:\n${PETSC_MPICC}\n" )
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# set compiler commands to match PETSc (needs to be done before defining the project)
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# https://cmake.org/Wiki/CMake_FAQ#How_do_I_use_a_different_compiler.3F
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set (CMAKE_Fortran_COMPILER "${PETSC_MPIFC}")
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set (CMAKE_C_COMPILER "${PETSC_MPICC}")
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#---------------------------------------------------------------------------------------
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# Now start to care about DAMASK
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# DAMASK solver defines project to build
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if ("${DAMASK_SOLVER}" STREQUAL "SPECTRAL")
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project (DAMASK_spectral Fortran C)
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add_definitions (-DSpectral)
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message ("Building Spectral Solver\n")
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elseif ("${DAMASK_SOLVER}" STREQUAL "FEM")
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project (DAMASK_FEM Fortran C)
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add_definitions (-DFEM)
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message ("Building FEM Solver\n")
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endif ()
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# set linker commands (needs to be done after defining the project)
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set (CMAKE_LINKER "${PETSC_LINKER}")
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if ("${CMAKE_BUILD_TYPE}" STREQUAL "")
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set (CMAKE_BUILD_TYPE "RELEASE")
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endif ()
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# Predefined sets for OPTIMIZATION/OPENMP based on BUILD_TYPE
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if ("${CMAKE_BUILD_TYPE}" STREQUAL "DEBUG" OR "${CMAKE_BUILD_TYPE}" STREQUAL "SYNTAXONLY" )
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set (PARALLEL "OFF")
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set (OPTI "OFF")
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elseif ("${CMAKE_BUILD_TYPE}" STREQUAL "RELEASE")
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set (PARALLEL "ON")
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set (OPTI "DEFENSIVE")
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elseif ("${CMAKE_BUILD_TYPE}" STREQUAL "PERFORMANCE")
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set (PARALLEL "ON")
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set (OPTI "AGGRESSIVE")
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endif ()
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# $OPTIMIZATION takes precedence over $BUILD_TYPE defaults
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if ("${OPTIMIZATION}" STREQUAL "")
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set (OPTIMIZATION "${OPTI}")
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else ()
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set (OPTIMIZATION "${OPTIMIZATION}")
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endif ()
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# $OPENMP takes precedence over $BUILD_TYPE defaults
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if ("${OPENMP}" STREQUAL "")
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set (OPENMP "${PARALLEL}")
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else ()
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set(OPENMP "${OPENMP}")
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endif ()
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# syntax check only (mainly for pre-receive hook, works only with gfortran)
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if ("${CMAKE_BUILD_TYPE}" STREQUAL "SYNTAXONLY" )
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set (BUILDCMD_POST "${BUILDCMD_POST} -fsyntax-only")
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endif ()
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# Parse DAMASK_BIN from CONFIG file
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file (READ "CONFIG" CONFIGFILE)
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string (REGEX REPLACE ";" "\\\\;" CONFIGFILE "${CONFIGFILE}")
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string (REGEX REPLACE "\n" ";" CONFIGFILE "${CONFIGFILE}")
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foreach (item ${CONFIGFILE})
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string (REGEX MATCH ".+DAMASK_BIN.+" item ${item})
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if (item)
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string (REGEX REPLACE "set" "" item "${item}")
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string (REGEX REPLACE "=" " " item "${item}")
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string (REGEX REPLACE "\\\${DAMASK_ROOT}" "${PROJECT_SOURCE_DIR}" item "${item}")
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string (REPLACE "DAMASK_BIN" ";" STRING_LIST ${item})
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list (GET STRING_LIST 1 item)
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string (STRIP "${item}" CMAKE_INSTALL_PREFIX)
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endif ()
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endforeach(item ${CONFIGFILE})
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# Parse DAMASK version from VERSION file
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find_program (CAT_EXECUTABLE NAMES cat)
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execute_process (COMMAND ${CAT_EXECUTABLE} ${PROJECT_SOURCE_DIR}/VERSION
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RESULT_VARIABLE DAMASK_VERSION_RETURN
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OUTPUT_VARIABLE DAMASK_V
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OUTPUT_STRIP_TRAILING_WHITESPACE)
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add_definitions (-DDAMASKVERSION="${DAMASK_V}")
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# definition of other macros
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add_definitions (-DPETSc)
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add_definitions (-DFLOAT=8)
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add_definitions (-DINT=4)
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set (DAMASK_INCLUDE_FLAGS "${DAMASK_INCLUDE_FLAGS} ${PETSC_INCLUDES}")
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###################################################################################################
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# Intel Compiler
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###################################################################################################
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if (${CMAKE_Fortran_COMPILER_ID} STREQUAL "Intel")
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if (OPENMP)
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set (OPENMP_FLAGS "-qopenmp -parallel")
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endif ()
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if ("${OPTIMIZATION}" STREQUAL "OFF")
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set (OPTIMIZATION_FLAGS "-O0 -no-ip")
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elseif ("${OPTIMIZATION}" STREQUAL "DEFENSIVE")
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set (OPTIMIZATION_FLAGS "-O2")
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elseif ("${OPTIMIZATION}" STREQUAL "AGGRESSIVE")
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set (OPTIMIZATION_FLAGS "-ipo -O3 -no-prec-div -fp-model fast=2 -xHost")
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# -fast = -ipo, -O3, -no-prec-div, -static, -fp-model fast=2, and -xHost"
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endif ()
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set (STANDARD_CHECK "-stand f08 -standard-semantics")
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set (LINKER_FLAGS "${LINKER_FLAGS} -shared-intel")
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# Link against shared Intel libraries instead of static ones
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#------------------------------------------------------------------------------------------------
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# Fine tuning compilation options
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -fpp")
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# preprocessor
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -ftz")
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# flush underflow to zero, automatically set if -O[1,2,3]
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -assume")
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# assume ...
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set (COMPILE_FLAGS "${COMPILE_FLAGS} byterecl")
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# ... record length is given in bytes (also set by -standard-semantics)
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set (COMPILE_FLAGS "${COMPILE_FLAGS},fpe_summary")
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# ... print list of floating point exceptions occured during execution
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -diag-disable")
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# disables warnings ...
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set (COMPILE_FLAGS "${COMPILE_FLAGS} 5268")
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# ... the text exceeds right hand column allowed on the line (we have only comments there)
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -warn")
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# enables warnings ...
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set (COMPILE_FLAGS "${COMPILE_FLAGS} declarations")
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# ... any undeclared names (alternative name: -implicitnone)
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set (COMPILE_FLAGS "${COMPILE_FLAGS},general")
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# ... warning messages and informational messages are issued by the compiler
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set (COMPILE_FLAGS "${COMPILE_FLAGS},usage")
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# ... questionable programming practices
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set (COMPILE_FLAGS "${COMPILE_FLAGS},interfaces")
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# ... checks the interfaces of all SUBROUTINEs called and FUNCTIONs invoked in your compilation against an external set of interface blocks
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set (COMPILE_FLAGS "${COMPILE_FLAGS},ignore_loc")
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# ... %LOC is stripped from an actual argument
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set (COMPILE_FLAGS "${COMPILE_FLAGS},alignments")
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# ... data that is not naturally aligned
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set (COMPILE_FLAGS "${COMPILE_FLAGS},unused")
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# ... declared variables that are never used
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# Additional options
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# -warn: enables warnings, where
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# truncated_source: Determines whether warnings occur when source exceeds the maximum column width in fixed-format files.
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# (too many warnings because we have comments beyond character 132)
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# uncalled: Determines whether warnings occur when a statement function is never called
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# all:
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# -name as_is: case sensitive Fortran!
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#------------------------------------------------------------------------------------------------
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# Runtime debugging
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -g")
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# Generate symbolic debugging information in the object file
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -traceback")
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# Generate extra information in the object file to provide source file traceback information when a severe error occurs at run time
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -gen-interfaces")
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# Generate an interface block for each routine. http://software.intel.com/en-us/blogs/2012/01/05/doctor-fortran-gets-explicit-again/
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -fp-stack-check")
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# Generate extra code after every function call to ensure that the floating-point (FP) stack is in the expected state
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -fp-model strict")
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# Trap uninitalized variables
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -check" )
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# Checks at runtime ...
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set (DEBUG_FLAGS "${DEBUG_FLAGS} bounds")
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# ... if an array index is too small (<1) or too large!
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set (DEBUG_FLAGS "${DEBUG_FLAGS},format")
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# ... for the data type of an item being formatted for output.
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set (DEBUG_FLAGS "${DEBUG_FLAGS},output_conversion")
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# ... for the fit of data items within a designated format descriptor field.
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set (DEBUG_FLAGS "${DEBUG_FLAGS},pointers")
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# ... for certain disassociated or uninitialized pointers or unallocated allocatable objects.
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set (DEBUG_FLAGS "${DEBUG_FLAGS},uninit")
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# ... for uninitialized variables.
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -ftrapuv")
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# ... initializes stack local variables to an unusual value to aid error detection
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -fpe-all0")
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# ... capture all floating-point exceptions, sets -ftz automatically
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -warn")
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# enables warnings ...
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set (DEBUG_FLAGS "${DEBUG_FLAGS} errors")
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# ... warnings are changed to errors
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set (DEBUG_FLAGS "${DEBUG_FLAGS},stderrors")
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# ... warnings about Fortran standard violations are changed to errors
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -debug-parameters all")
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# generate debug information for parameters
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# Additional options
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# -heap-arrays: Should not be done for OpenMP, but set "ulimit -s unlimited" on shell. Probably it helps also to unlimit other limits
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# -check: Checks at runtime, where
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# arg_temp_created: will cause a lot of warnings because we create a bunch of temporary arrays (performance?)
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# stack:
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#------------------------------------------------------------------------------------------------
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# precision settings
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set (PRECISION_FLAGS "${PRECISION_FLAGS} -real-size 64")
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# set precision for standard real to 32 | 64 | 128 (= 4 | 8 | 16 bytes, type pReal is always 8 bytes)
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set (PRECISION_FLAGS "${PRECISION_FLAGS} -integer-size 32")
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# set precision for standard int to 16 | 32 | 64 (= 2 | 4 | 8 bytes, type pInt is always 4 bytes)
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###################################################################################################
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# GNU Compiler
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###################################################################################################
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elseif(${CMAKE_Fortran_COMPILER_ID} STREQUAL "GNU")
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if (OPENMP)
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set (OPENMP_FLAGS "-fopenmp")
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endif ()
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if ("${OPTIMIZATION}" STREQUAL "OFF")
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set (OPTIMIZATION_FLAGS "-O0" )
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elseif ("${OPTIMIZATION}" STREQUAL "DEFENSIVE")
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set (OPTIMIZATION_FLAGS "-O2")
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elseif ("${OPTIMIZATION}" STREQUAL "AGGRESSIVE")
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set (OPTIMIZATION_FLAGS "-O3 -ffast-math -funroll-loops -ftree-vectorize")
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endif ()
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set (STANDARD_CHECK "-std=f2008ts -pedantic-errors" )
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set (LINKER_FLAGS "${LINKER_FLAGS} -Wl")
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# options parsed directly to the linker
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set (LINKER_FLAGS "${LINKER_FLAGS},-undefined,dynamic_lookup" )
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# ensure to link against dynamic libraries
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#------------------------------------------------------------------------------------------------
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# Fine tuning compilation options
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -xf95-cpp-input")
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# preprocessor
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -ffree-line-length-132")
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# restrict line length to the standard 132 characters (lattice.f90 require more characters)
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -fimplicit-none")
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# assume "implicit none" even if not present in source
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -fmodule-private")
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# assume "private" even if not present in source
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -Wall")
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# sets the following Fortran options:
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# -Waliasing: warn about possible aliasing of dummy arguments. Specifically, it warns if the same actual argument is associated with a dummy argument with "INTENT(IN)" and a dummy argument with "INTENT(OUT)" in a call with an explicit interface.
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# -Wampersand: checks if a character expression is continued proberly by an ampersand at the end of the line and at the beginning of the new line
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# -Warray-bounds: checks if array reference is out of bounds at compile time. use -fcheck-bounds to also check during runtime
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# -Wconversion: warn about implicit conversions between different type
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# -Wsurprising: warn when "suspicious" code constructs are encountered. While technically legal these usually indicate that an error has been made.
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# -Wc-binding-type:
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# -Wintrinsics-std: only standard intrisics are available, e.g. "call flush(6)" will cause an error
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# -Wno-tabs: do not allow tabs in source
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# -Wintrinsic-shadow: warn if a user-defined procedure or module procedure has the same name as an intrinsic
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# -Wline-truncation:
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# -Wtarget-lifetime:
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# -Wreal-q-constant: warn about real-literal-constants with 'q' exponent-letter
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# -Wunused: a number of unused-xxx warnings
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# and sets the general (non-Fortran options) options:
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# -Waddress
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# -Warray-bounds (only with -O2)
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# -Wc++11-compat
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# -Wchar-subscripts
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# -Wcomment
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# -Wformat
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# -Wmaybe-uninitialized
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# -Wnonnull
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# -Wparentheses
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# -Wpointer-sign
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# -Wreorder
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# -Wreturn-type
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# -Wsequence-point
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# -Wstrict-aliasing
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# -Wstrict-overflow=1
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# -Wswitch
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# -Wtrigraphs
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# -Wuninitialized
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# -Wunknown-pragmas
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# -Wunused-function
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# -Wunused-label
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# -Wunused-value
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# -Wunused-variable
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# -Wvolatile-register-var
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -Wextra")
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# sets the following Fortran options:
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# -Wunuses-parameter:
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# -Wcompare-reals:
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# and sets the general (non-Fortran options) options:
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# -Wclobbered
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# -Wempty-body
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# -Wignored-qualifiers
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# -Wmissing-field-initializers
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# -Woverride-init
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# -Wsign-compare
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# -Wtype-limits
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# -Wuninitialized
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# -Wunused-but-set-parameter (only with -Wunused or -Wall)
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# -Wno-globals
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -Wcharacter-truncation")
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# warn if character expressions (strings) are truncated
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -Wunderflow")
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# produce a warning when numerical constant expressions are encountered, which yield an UNDERFLOW during compilation
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -Wsuggest-attribute=pure")
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -Wsuggest-attribute=noreturn")
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -Wconversion-extra")
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -Wimplicit-procedure")
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -Wno-unused-parameter")
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set (COMPILE_FLAGS "${COMPILE_FLAGS} -ffpe-summary=all")
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# print summary of floating point exeptions (invalid,zero,overflow,underflow,inexact,denormal)
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# Additional options
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# -Warray-temporarieswarnings: because we have many temporary arrays (performance issue?):
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# -Wimplicit-interface: no interfaces for lapack/MPI routines
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# -Wunsafe-loop-optimizations: warn if the loop cannot be optimized due to nontrivial assumptions.
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#------------------------------------------------------------------------------------------------
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# Runtime debugging
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set (DEBUG_FLAGS "${DEBUG_FLAGS} -ffpe-trap=invalid,zero,overflow")
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# stop execution if floating point exception is detected (NaN is silent)
|
|
|
|
set (DEBUG_FLAGS "${DEBUG_FLAGS} -g")
|
|
# Generate symbolic debugging information in the object file
|
|
|
|
set (DEBUG_FLAGS "${DEBUG_FLAGS} -fbacktrace")
|
|
set (DEBUG_FLAGS "${DEBUG_FLAGS} -fdump-core")
|
|
set (DEBUG_FLAGS "${DEBUG_FLAGS} -fcheck=all")
|
|
# checks for (array-temps,bounds,do,mem,pointer,recursion)
|
|
|
|
# Additional options
|
|
# -ffpe-trap=precision,denormal,underflow
|
|
#------------------------------------------------------------------------------------------------
|
|
# precision settings
|
|
set (PRECISION_FLAGS "${PRECISION_FLAGS} -fdefault-real-8")
|
|
# set precision to 8 bytes for standard real (=8 for pReal). Will set size of double to 16 bytes as long as -fdefault-double-8 is not set
|
|
|
|
set (PRECISION_FLAGS "${PRECISION_FLAGS} -fdefault-double-8")
|
|
# set precision to 8 bytes for double real, would be 16 bytes if -fdefault-real-8 is used
|
|
|
|
# Additional options
|
|
# -fdefault-integer-8: Use it to set precision to 8 bytes for integer, don't use it for the standard case of pInt=4 (there is no -fdefault-integer-4)
|
|
endif ()
|
|
|
|
set (CMAKE_Fortran_FLAGS_${CMAKE_BUILD_TYPE} "${BUILDCMD_PRE} ${OPENMP_FLAGS} ${STANDARD_CHECK} ${OPTIMIZATION_FLAGS} ${COMPILE_FLAGS} ${PRECISION_FLAGS}")
|
|
set (CMAKE_Fortran_LINK_EXECUTABLE "${BUILDCMD_PRE} ${CMAKE_LINKER} ${OPENMP_FLAGS} ${OPTIMIZATION_FLAGS} ${LINKER_FLAGS}")
|
|
|
|
if ("${CMAKE_BUILD_TYPE}" STREQUAL "DEBUG")
|
|
set (CMAKE_Fortran_FLAGS_${CMAKE_BUILD_TYPE} "${CMAKE_Fortran_FLAGS_${CMAKE_BUILD_TYPE}} ${DEBUG_FLAGS}")
|
|
set (CMAKE_Fortran_LINK_EXECUTABLE "${CMAKE_Fortran_LINK_EXECUTABLE} ${DEBUG_FLAGS}")
|
|
endif ()
|
|
|
|
set (CMAKE_Fortran_FLAGS_${CMAKE_BUILD_TYPE} "${CMAKE_Fortran_FLAGS_${CMAKE_BUILD_TYPE}} ${DAMASK_INCLUDE_FLAGS} ${BUILDCMD_POST}")
|
|
set (CMAKE_Fortran_LINK_EXECUTABLE "${CMAKE_Fortran_LINK_EXECUTABLE} <OBJECTS> -o <TARGET> <LINK_LIBRARIES> ${PETSC_EXTERNAL_LIB} ${BUILDCMD_POST}")
|
|
|
|
message ("Fortran Compiler Flags:\n${CMAKE_Fortran_FLAGS_${CMAKE_BUILD_TYPE}}\n")
|
|
message ("C Compiler Flags:\n${CMAKE_C_FLAGS_${CMAKE_BUILD_TYPE}}\n")
|
|
message ("Fortran Linker Command:\n${CMAKE_Fortran_LINK_EXECUTABLE}\n")
|
|
|
|
# location of code
|
|
add_subdirectory (src)
|
|
|
|
# INSTALL BUILT BINARIES
|
|
if ("${CMAKE_BUILD_TYPE}" STREQUAL "SYNTAXONLY")
|
|
exec_program (mktemp ARGS -d OUTPUT_VARIABLE BLACK_HOLE)
|
|
install (PROGRAMS ${PROJECT_BINARY_DIR}/src/prec.mod
|
|
DESTINATION ${BLACK_HOLE})
|
|
else ()
|
|
if ("${PROJECT_NAME}" STREQUAL "DAMASK_spectral")
|
|
install (PROGRAMS ${PROJECT_BINARY_DIR}/src/DAMASK_spectral
|
|
DESTINATION ${CMAKE_INSTALL_PREFIX})
|
|
elseif ("${PROJECT_NAME}" STREQUAL "DAMASK_FEM")
|
|
install (PROGRAMS ${PROJECT_BINARY_DIR}/src/DAMASK_FEM
|
|
DESTINATION ${CMAKE_INSTALL_PREFIX})
|
|
endif ()
|
|
endif ()
|