not needed (is initialized to 0)
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@ -30,7 +30,6 @@ subroutine damage_none_init
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myhomog: if (damage_type(homog) == DAMAGE_NONE_ID) then
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NofMyHomog = count(material_homogenizationAt == homog)
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damageState(homog)%sizeState = 0
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damageState(homog)%sizePostResults = 0
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allocate(damageState(homog)%state0 (0,NofMyHomog))
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allocate(damageState(homog)%subState0(0,NofMyHomog))
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allocate(damageState(homog)%state (0,NofMyHomog))
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@ -160,7 +160,6 @@ module subroutine mech_RGC_init
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+ size(['avg constitutive work ','average penalty energy'])
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homogState(h)%sizeState = sizeState
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homogState(h)%sizePostResults = 0
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allocate(homogState(h)%state0 (sizeState,NofMyHomog), source=0.0_pReal)
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allocate(homogState(h)%subState0(sizeState,NofMyHomog), source=0.0_pReal)
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allocate(homogState(h)%state (sizeState,NofMyHomog), source=0.0_pReal)
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@ -63,7 +63,6 @@ module subroutine mech_isostrain_init
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NofMyHomog = count(material_homogenizationAt == h)
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homogState(h)%sizeState = 0
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homogState(h)%sizePostResults = 0
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allocate(homogState(h)%state0 (0,NofMyHomog))
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allocate(homogState(h)%subState0(0,NofMyHomog))
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allocate(homogState(h)%state (0,NofMyHomog))
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@ -29,7 +29,6 @@ module subroutine mech_none_init
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NofMyHomog = count(material_homogenizationAt == h)
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homogState(h)%sizeState = 0
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homogState(h)%sizePostResults = 0
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allocate(homogState(h)%state0 (0,NofMyHomog))
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allocate(homogState(h)%subState0(0,NofMyHomog))
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allocate(homogState(h)%state (0,NofMyHomog))
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@ -40,8 +40,6 @@ subroutine plastic_none_init
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NipcMyPhase = count(material_phaseAt == p) * discretization_nIP
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call material_allocatePlasticState(p,NipcMyPhase,0,0,0, &
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0,0,0)
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plasticState(p)%sizePostResults = 0
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enddo
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end subroutine plastic_none_init
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@ -31,7 +31,6 @@ subroutine thermal_isothermal_init
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if (thermal_type(homog) /= THERMAL_isothermal_ID) cycle
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NofMyHomog = count(material_homogenizationAt == homog)
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thermalState(homog)%sizeState = 0
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thermalState(homog)%sizePostResults = 0
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allocate(thermalState(homog)%state0 (0,NofMyHomog), source=0.0_pReal)
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allocate(thermalState(homog)%subState0(0,NofMyHomog), source=0.0_pReal)
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allocate(thermalState(homog)%state (0,NofMyHomog), source=0.0_pReal)
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