139 lines
4.7 KiB
Fortran
139 lines
4.7 KiB
Fortran
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!##############################################################
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MODULE debug
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!##############################################################
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use prec
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implicit none
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integer(pInt), dimension(:), allocatable :: debug_StressLoopDistribution
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integer(pInt), dimension(:), allocatable :: debug_StateLoopDistribution
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integer(pInt), dimension(:), allocatable :: debug_StiffnessStateLoopDistribution
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integer(pInt), dimension(:), allocatable :: debug_CrystalliteLoopDistribution
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integer(pLongInt) :: debug_cumLpTicks = 0_pInt
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integer(pLongInt) :: debug_cumDotStateTicks = 0_pInt
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integer(pInt) :: debug_cumLpCalls = 0_pInt
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integer(pInt) :: debug_cumDotStateCalls = 0_pInt
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logical :: debugger = .false.
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logical :: distribution_init = .false.
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CONTAINS
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subroutine debug_init()
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use prec, only: pInt
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use numerics, only: nStress, &
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nState, &
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nCryst
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implicit none
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write(6,*)
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write(6,*) '<<<+- debug init -+>>>'
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write(6,*)
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allocate(debug_StressLoopDistribution(nStress)) ; debug_StressLoopDistribution = 0_pInt
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allocate(debug_StateLoopDistribution(nState)) ; debug_StateLoopDistribution = 0_pInt
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allocate(debug_StiffnessStateLoopDistribution(nState)) ; debug_StiffnessStateLoopDistribution = 0_pInt
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allocate(debug_CrystalliteLoopDistribution(nCryst)) ; debug_CrystalliteLoopDistribution = 0_pInt
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endsubroutine
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!********************************************************************
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! reset debug distributions
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!********************************************************************
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subroutine debug_reset()
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use prec
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implicit none
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debug_StressLoopDistribution = 0_pInt ! initialize debugging data
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debug_StateLoopDistribution = 0_pInt
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debug_StiffnessStateLoopDistribution = 0_pInt
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debug_CrystalliteLoopDistribution = 0_pInt
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debug_cumLpTicks = 0_pInt
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debug_cumDotStateTicks = 0_pInt
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debug_cumLpCalls = 0_pInt
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debug_cumDotStateCalls = 0_pInt
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endsubroutine
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!********************************************************************
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! write debug statements to standard out
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!********************************************************************
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subroutine debug_info()
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use prec
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use numerics, only: nStress, &
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nState, &
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nCryst
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implicit none
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integer(pInt) i,integral
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integer(pLongInt) tickrate
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write(6,*)
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write(6,*) 'DEBUG Info'
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write(6,*)
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write(6,'(a33,x,i12)') 'total calls to LpAndItsTangent :',debug_cumLpCalls
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if (debug_cumLpCalls > 0_pInt) then
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call system_clock(count_rate=tickrate)
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write(6,'(a33,x,f12.6)') 'avg CPU time/microsecs per call :',dble(debug_cumLpTicks)/tickrate/1.0e-6_pReal/debug_cumLpCalls
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write(6,'(a33,x,i12)') 'total CPU ticks :',debug_cumLpTicks
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endif
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write(6,*)
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write(6,'(a33,x,i12)') 'total calls to dotState :',debug_cumDotStateCalls
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if (debug_cumdotStateCalls > 0_pInt) then
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call system_clock(count_rate=tickrate)
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write(6,'(a33,x,f12.6)') 'avg CPU time/microsecs per call :',&
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dble(debug_cumDotStateTicks)/tickrate/1.0e-6_pReal/debug_cumDotStateCalls
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write(6,'(a33,x,i12)') 'total CPU ticks :',debug_cumDotStateTicks
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endif
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integral = 0_pInt
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write(6,*)
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write(6,*) 'distribution_StressLoop :'
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do i=1,nStress
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if (debug_StressLoopDistribution(i) /= 0) then
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integral = integral + i*debug_StressLoopDistribution(i)
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write(6,'(i25,i10)') i,debug_StressLoopDistribution(i)
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endif
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enddo
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write(6,'(a15,i10,i10)') ' total',sum(debug_StressLoopDistribution),integral
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integral = 0_pInt
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write(6,*)
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write(6,*) 'distribution_StateLoop :'
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do i=1,nState
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if (debug_StateLoopDistribution(i) /= 0) then
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integral = integral + i*debug_StateLoopDistribution(i)
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write(6,'(i25,i10)') i,debug_StateLoopDistribution(i)
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endif
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enddo
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write(6,'(a15,i10,i10)') ' total',sum(debug_StateLoopDistribution),integral
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integral = 0_pInt
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write(6,*)
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write(6,*) 'distribution_StiffnessStateLoop :'
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do i=1,nState
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if (debug_StiffnessStateLoopDistribution(i) /= 0) then
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integral = integral + i*debug_StiffnessStateLoopDistribution(i)
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write(6,'(i25,i10)') i,debug_StiffnessStateLoopDistribution(i)
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endif
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enddo
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write(6,'(a15,i10,i10)') ' total',sum(debug_StiffnessStateLoopDistribution),integral
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integral = 0_pInt
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write(6,*)
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write(6,*) 'distribution_CrystalliteLoop :'
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do i=1,nCryst
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if (debug_CrystalliteLoopDistribution(i) /= 0) then
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integral = integral + i*debug_CrystalliteLoopDistribution(i)
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write(6,'(i25,i10)') i,debug_CrystalliteLoopDistribution(i)
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endif
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enddo
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write(6,'(a15,i10,i10)') ' total',sum(debug_CrystalliteLoopDistribution),integral
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write(6,*)
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endsubroutine
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END MODULE debug
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