# File produced by Kranc shares: GenericFD USES CCTK_INT stencil_width USES CCTK_INT stencil_width_x USES CCTK_INT stencil_width_y USES CCTK_INT stencil_width_z USES CCTK_INT boundary_width shares: MethodOfLines USES CCTK_INT MoL_Num_Evolved_Vars restricted: CCTK_INT verbose "verbose" { *:* :: "" } 0 restricted: CCTK_INT ML_WaveToy_MaxNumEvolvedVars "Number of evolved variables used by this thorn" ACCUMULATOR-BASE=MethodofLines::MoL_Num_Evolved_Vars { 2:2 :: "Number of evolved variables used by this thorn" } 2 restricted: CCTK_INT timelevels "Number of active timelevels" { 0:2 :: "" } 2 restricted: CCTK_INT rhs_timelevels "Number of active RHS timelevels" { 0:2 :: "" } 1 restricted: CCTK_INT WT_Gaussian_calc_every "WT_Gaussian_calc_every" { *:* :: "" } 1 restricted: CCTK_INT WT_RHS_calc_every "WT_RHS_calc_every" { *:* :: "" } 1 restricted: CCTK_INT WT_Gaussian_calc_offset "WT_Gaussian_calc_offset" { *:* :: "" } 0 restricted: CCTK_INT WT_RHS_calc_offset "WT_RHS_calc_offset" { *:* :: "" } 0 private: KEYWORD rho_bound "Boundary condition to implement" { "flat" :: "Flat boundary condition" "none" :: "No boundary condition" "static" :: "Boundaries held fixed" "radiative" :: "Radiation boundary condition" "scalar" :: "Dirichlet boundary condition" "newrad" :: "Improved radiative boundary condition" "skip" :: "skip boundary condition code" } "skip" private: KEYWORD u_bound "Boundary condition to implement" { "flat" :: "Flat boundary condition" "none" :: "No boundary condition" "static" :: "Boundaries held fixed" "radiative" :: "Radiation boundary condition" "scalar" :: "Dirichlet boundary condition" "newrad" :: "Improved radiative boundary condition" "skip" :: "skip boundary condition code" } "skip" private: KEYWORD WT_rho_bound "Boundary condition to implement" { "flat" :: "Flat boundary condition" "none" :: "No boundary condition" "static" :: "Boundaries held fixed" "radiative" :: "Radiation boundary condition" "scalar" :: "Dirichlet boundary condition" "newrad" :: "Improved radiative boundary condition" "skip" :: "skip boundary condition code" } "skip" private: KEYWORD WT_u_bound "Boundary condition to implement" { "flat" :: "Flat boundary condition" "none" :: "No boundary condition" "static" :: "Boundaries held fixed" "radiative" :: "Radiation boundary condition" "scalar" :: "Dirichlet boundary condition" "newrad" :: "Improved radiative boundary condition" "skip" :: "skip boundary condition code" } "skip" private: CCTK_REAL rho_bound_speed "characteristic speed at boundary" { "0:*" :: "outgoing characteristic speed > 0" } 1. private: CCTK_REAL u_bound_speed "characteristic speed at boundary" { "0:*" :: "outgoing characteristic speed > 0" } 1. private: CCTK_REAL WT_rho_bound_speed "characteristic speed at boundary" { "0:*" :: "outgoing characteristic speed > 0" } 1. private: CCTK_REAL WT_u_bound_speed "characteristic speed at boundary" { "0:*" :: "outgoing characteristic speed > 0" } 1. private: CCTK_REAL rho_bound_limit "limit value for r -> infinity" { "*:*" :: "value of limit value is unrestricted" } 0. private: CCTK_REAL u_bound_limit "limit value for r -> infinity" { "*:*" :: "value of limit value is unrestricted" } 0. private: CCTK_REAL WT_rho_bound_limit "limit value for r -> infinity" { "*:*" :: "value of limit value is unrestricted" } 0. private: CCTK_REAL WT_u_bound_limit "limit value for r -> infinity" { "*:*" :: "value of limit value is unrestricted" } 0. private: CCTK_REAL rho_bound_scalar "Dirichlet boundary value" { "*:*" :: "unrestricted" } 0. private: CCTK_REAL u_bound_scalar "Dirichlet boundary value" { "*:*" :: "unrestricted" } 0. private: CCTK_REAL WT_rho_bound_scalar "Dirichlet boundary value" { "*:*" :: "unrestricted" } 0. private: CCTK_REAL WT_u_bound_scalar "Dirichlet boundary value" { "*:*" :: "unrestricted" } 0.