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! Copyright 2011-13 Max-Planck-Institut für Eisenforschung GmbH
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!
! This file is part of DAMASK,
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! the Düsseldorf Advanced Material Simulation Kit.
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!
! DAMASK is free software: you can redistribute it and/or modify
! it under the terms of the GNU General Public License as published by
! the Free Software Foundation, either version 3 of the License, or
! (at your option) any later version.
!
! DAMASK is distributed in the hope that it will be useful,
! but WITHOUT ANY WARRANTY; without even the implied warranty of
! MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
! GNU General Public License for more details.
!
! You should have received a copy of the GNU General Public License
! along with DAMASK. If not, see <http://www.gnu.org/licenses/>.
!
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!--------------------------------------------------------------------------------------------------
! $Id$
!--------------------------------------------------------------------------------------------------
!> @author Franz Roters, Max-Planck-Institut für Eisenforschung GmbH
!> @author Philip Eisenlohr, Max-Planck-Institut für Eisenforschung GmbH
!> @author Christoph Kords, Max-Planck-Institut für Eisenforschung GmbH
!> @author Martin Diehl, Max-Planck-Institut für Eisenforschung GmbH
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!> @brief setting precision for real and int type depending on makros "FLOAT" and "INT"
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!--------------------------------------------------------------------------------------------------
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module prec
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implicit none
private
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#if (FLOAT==4)
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#ifdef Spectral
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SPECTRAL SOLVER DOES NOT SUPPORT SINGLE PRECISION , STOPPING COMPILATION
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#endif
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integer , parameter , public :: pReal = 4 !< floating point single precition (was selected_real_kind(6,37), number with 6 significant digits, up to 1e+-37)
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#ifdef __INTEL_COMPILER
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real ( pReal ) , parameter , public :: DAMASK_NaN = Z '7F800001' !< quiet NaN for single precision (from http://www.hpc.unimelb.edu.au/doc/f90lrm/dfum_035.html, copy can be found in documentation/Code/Fortran)
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#endif
#ifdef __GFORTRAN__
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real ( pReal ) , parameter , public :: DAMASK_NaN = real ( Z '7F800001' , pReal ) !< quiet NaN for single precision (from http://www.hpc.unimelb.edu.au/doc/f90lrm/dfum_035.html, copy can be found in documentation/Code/Fortran)
#endif
#elif (FLOAT==8)
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integer , parameter , public :: pReal = 8 !< floating point double precision (was selected_real_kind(15,300), number with 15 significant digits, up to 1e+-300)
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#ifdef __INTEL_COMPILER
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real ( pReal ) , parameter , public :: DAMASK_NaN = Z '7FF8000000000000' !< quiet NaN for double precision (from http://www.hpc.unimelb.edu.au/doc/f90lrm/dfum_035.html, copy can be found in documentation/Code/Fortran)
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#endif
#ifdef __GFORTRAN__
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real ( pReal ) , parameter , public :: DAMASK_NaN = real ( Z '7FF8000000000000' , pReal ) !< quiet NaN for double precision (from http://www.hpc.unimelb.edu.au/doc/f90lrm/dfum_035.html, copy can be found in documentation/Code/Fortran)
#endif
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#else
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NO SUITABLE PRECISION SELECTED , STOPPING COMPILATION
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#endif
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#if (INT==4)
integer , parameter , public :: pInt = 4 !< integer representation 32 bit (was selected_int_kind(9), number with at least up to +- 1e9)
#elif (INT==8)
integer , parameter , public :: pInt = 8 !< integer representation 64 bit (was selected_int_kind(12), number with at least up to +- 1e12)
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#else
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NO SUITABLE PRECISION SELECTED , STOPPING COMPILATION
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#endif
integer , parameter , public :: pLongInt = 8 !< integer representation 64 bit (was selected_int_kind(12), number with at least up to +- 1e12)
real ( pReal ) , parameter , public :: tol_math_check = 1.0e-8_pReal
real ( pReal ) , parameter , public :: tol_gravityNodePos = 1.0e-100_pReal
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type , public :: p_vec
real ( pReal ) , dimension ( : ) , pointer :: p
end type p_vec
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type , public :: p_intvec
integer ( pInt ) , dimension ( : ) , pointer :: p
end type p_intvec
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public :: &
prec_init
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contains
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!--------------------------------------------------------------------------------------------------
!> @brief reporting precision and checking if DAMASK_NaN is set correctly
!--------------------------------------------------------------------------------------------------
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subroutine prec_init
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use , intrinsic :: iso_fortran_env ! to get compiler_version and compiler_options (at least for gfortran 4.6 at the moment)
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implicit none
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external :: &
quit
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write ( 6 , '(/,a)' ) ' <<<+- prec init -+>>>'
write ( 6 , '(a)' ) ' $Id$'
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#include "compilation_info.f90"
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write ( 6 , '(a,i3)' ) ' Bytes for pReal: ' , pReal
write ( 6 , '(a,i3)' ) ' Bytes for pInt: ' , pInt
write ( 6 , '(a,i3)' ) ' Bytes for pLongInt: ' , pLongInt
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write ( 6 , '(a,e10.3)' ) ' NaN: ' , DAMASK_NaN
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write ( 6 , '(a,l3,/)' ) ' NaN /= NaN: ' , DAMASK_NaN / = DAMASK_NaN
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if ( DAMASK_NaN == DAMASK_NaN ) call quit ( 9000 )
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end subroutine prec_init
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end module prec