functionality to decode base64 strings into bytes
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@ -14,6 +14,7 @@ module CPFEM2
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use material
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use lattice
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use IO
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use base64
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use DAMASK_interface
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use results
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use discretization
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@ -42,6 +43,7 @@ subroutine CPFEM_initAll
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call DAMASK_interface_init ! Spectral and FEM interface to commandline
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call prec_init
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call IO_init
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call base64_init
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#ifdef Mesh
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call FEM_quadrature_init
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#endif
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@ -0,0 +1,180 @@
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!--------------------------------------------------------------------------------------------------
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!> @author Martin Diehl, Max-Planck-Institut für Eisenforschung GmbH
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!> @brief Decode Base64 strings
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!--------------------------------------------------------------------------------------------------
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module base64
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use prec
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use IO
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implicit none
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private
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public :: &
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base64_init, &
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base64_to_bytes, &
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base64_nBase64, &
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base64_nByte
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contains
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!--------------------------------------------------------------------------------------------------
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!> @brief do self test
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!--------------------------------------------------------------------------------------------------
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subroutine base64_init
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write(6,'(/,a)') ' <<<+- base64 init -+>>>'; flush(6)
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call selfTest
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end subroutine base64_init
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!--------------------------------------------------------------------------------------------------
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!> @brief calculate number of Base64 characters required for storage of N bytes
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!--------------------------------------------------------------------------------------------------
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pure function base64_nBase64(nByte)
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integer(pLongInt), intent(in) :: nByte
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integer(pLongInt) :: base64_nBase64
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base64_nBase64 = 4_pLongInt * (nByte/3_pLongInt + merge(1_pLongInt,0_pLongInt,mod(nByte,3_pLongInt) /= 0_pLongInt))
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end function base64_nBase64
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!--------------------------------------------------------------------------------------------------
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!> @brief calculate number of bytes required for storage of N Base64 characters
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!--------------------------------------------------------------------------------------------------
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pure function base64_nByte(nBase64)
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integer(pLongInt), intent(in) :: nBase64
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integer(pLongInt) :: base64_nByte
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base64_nByte = 3_pLongInt * (nBase64/4_pLongInt)
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end function base64_nByte
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!--------------------------------------------------------------------------------------------------
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!> @brief return byte-wise binary representation of a (part of a) Base64 ASCII string
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!--------------------------------------------------------------------------------------------------
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pure function base64_to_bytes(base64_str,s,e) result(bytes)
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character(len=*), intent(in) :: base64_str !< Base64 string representation
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integer(pLongInt), intent(in), optional :: &
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s, & !< start (in bytes)
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e !< end (in bytes)
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integer(pLongInt) :: s_, e_
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integer(C_SIGNED_CHAR), dimension(:), allocatable :: bytes, bytes_raw
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allocate(bytes_raw(base64_nByte(len_trim(base64_str,pLongInt))))
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if(present(s)) then
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s_ = s
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else
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s_ = 1
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endif
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if(present(e)) then
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e_ = e
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else
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e_ = size(bytes_raw,kind=pLongInt)
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endif
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! ToDo: inefficient for s_>>1 or e_<<size(bytes_raw)
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call decode_base64(bytes_raw,base64_str)
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bytes = bytes_raw(s_:e_)
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end function base64_to_bytes
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!--------------------------------------------------------------------------------------------------
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!> @brief convert a Base64 ASCII string into its byte-wise binary representation
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!> @details https://en.wikipedia.org/wiki/Base64
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!--------------------------------------------------------------------------------------------------
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pure subroutine decode_base64(bytes,base64_str)
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integer(C_SIGNED_CHAR), intent(out),dimension(:) :: bytes !< byte-wise representation
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character(len=*), intent(in) :: base64_str !< Base64 string representation
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integer(C_SIGNED_CHAR), dimension(0:3) :: charPos
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integer(pLongInt) :: c, b, bytesLen,base64Len, p
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character(len=*), parameter :: encoding='ABCDEFGHIJKLMNOPQRSTUVWXYZ&
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&abcdefghijklmnopqrstuvwxyz0123456789+/'
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bytes = 0_C_SIGNED_CHAR
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bytesLen = size(bytes,kind=pLongInt)
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base64Len = len_trim(base64_str,kind=pLongInt)
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c = 1_pLongInt
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b = 1_pLongInt
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do while(.True.)
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do p=0_pLongInt,3_pLongInt
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if(c+p<=len(base64_str,kind=pLongInt)) then
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charPos(p) = int(merge(index(encoding,base64_str(c+p:c+p))-1, 0, base64_str(c+p:c+p) /= '='),C_SIGNED_CHAR)
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else
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charPos(p) = 0_C_SIGNED_CHAR
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endif
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enddo
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if (b+0<=bytesLen) then
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call mvbits(charPos(0),0,6,bytes(b+0),2)
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call mvbits(charPos(1),4,2,bytes(b+0),0)
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endif
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if (b+1<=bytesLen) then
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call mvbits(charPos(1),0,4,bytes(b+1),4)
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call mvbits(charPos(2),2,4,bytes(b+1),0)
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endif
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if (b+2<=bytesLen) then
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call mvbits(charPos(2),0,2,bytes(b+2),6)
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call mvbits(charPos(3),0,6,bytes(b+2),0)
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endif
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b = b+3_pLongInt
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c = c+4_pLongInt
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if(b>bytesLen+3_pLongInt .or. c > base64Len+4_pLongInt) exit
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enddo
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end subroutine decode_base64
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!--------------------------------------------------------------------------------------------------
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!> @brief check correctness of base64 functions
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!--------------------------------------------------------------------------------------------------
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subroutine selfTest
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integer(C_SIGNED_CHAR), dimension(:), allocatable :: bytes
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character(len=*), parameter :: zero_to_three = 'AAECAw=='
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allocate(bytes(7), source = -1_C_SIGNED_CHAR)
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call decode_base64(bytes,zero_to_three)
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if(any(bytes /= int([0,1,2,3,0,0,0],C_SIGNED_CHAR)) .or. size(bytes) /= 7) call IO_error(0,ext_msg='base64_decode')
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bytes = base64_to_bytes(zero_to_three)
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if(any(bytes /= int([0,1,2,3,0,0],C_SIGNED_CHAR)) .or. size(bytes) /= 6) call IO_error(0,ext_msg='base64_to_bytes')
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bytes = base64_to_bytes(zero_to_three,s=2_pLongInt)
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if(any(bytes /= int([1,2,3,0,0],C_SIGNED_CHAR)) .or. size(bytes) /= 5) call IO_error(0,ext_msg='base64_to_bytes/s')
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bytes = base64_to_bytes(zero_to_three,s=2_pLongInt,e=3_pLongInt)
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if(any(bytes /= int([1,2],C_SIGNED_CHAR)) .or. size(bytes) /= 2) call IO_error(0,ext_msg='base64_to_bytes/s/e')
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bytes = base64_to_bytes(zero_to_three,e=2_pLongInt)
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if(any(bytes /= int([0,1],C_SIGNED_CHAR)) .or. size(bytes) /= 2) call IO_error(0,ext_msg='base64_to_bytes/e')
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! https://en.wikipedia.org/wiki/Base64#Output_padding
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if(base64_nBase64(20_pLongInt) /= 28_pLongInt) call IO_error(0,ext_msg='base64_nBase64/20/28')
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if(base64_nBase64(19_pLongInt) /= 28_pLongInt) call IO_error(0,ext_msg='base64_nBase64/19/28')
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if(base64_nBase64(18_pLongInt) /= 24_pLongInt) call IO_error(0,ext_msg='base64_nBase64/18/24')
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if(base64_nBase64(17_pLongInt) /= 24_pLongInt) call IO_error(0,ext_msg='base64_nBase64/17/24')
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if(base64_nBase64(16_pLongInt) /= 24_pLongInt) call IO_error(0,ext_msg='base64_nBase64/16/24')
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if(base64_nByte(4_pLongInt) /= 3_pLongInt) call IO_error(0,ext_msg='base64_nByte/4/3')
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if(base64_nByte(8_pLongInt) /= 6_pLongInt) call IO_error(0,ext_msg='base64_nByte/8/6')
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end subroutine selfTest
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end module base64
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