@@ -149,24 +149,24 @@ void mytest_set_fluxeb_exact (
149149 amrex::IntVect iv (AMREX_D_DECL (i,j,k));
150150
151151 if (vbx.contains (iv)) {
152- amrex::EBCellFlag const flag = flag_arr (i,j,k);
152+ const amrex::EBCellFlag flag = flag_arr (i,j,k);
153153
154154 if (flag.isCovered ()) {
155155 fluxeb_exact (i,j,k) = 0.0 ;
156156 } else if (flag.isSingleValued ()) {
157- amrex::Real const bcentx = ebdata.get <amrex::EBData_t::bndrycent>(i,j,k,0 );
158- amrex::Real const bcenty = ebdata.get <amrex::EBData_t::bndrycent>(i,j,k,1 );
157+ const amrex::Real bcentx = ebdata.get <amrex::EBData_t::bndrycent>(i,j,k,0 );
158+ const amrex::Real bcenty = ebdata.get <amrex::EBData_t::bndrycent>(i,j,k,1 );
159159
160160 // Compute boundary area normal vector
161- amrex::Real apxm = ebdata.get <amrex::EBData_t::apx>(i ,j,k);
162- amrex::Real apxp = ebdata.get <amrex::EBData_t::apx>(i+1 ,j,k);
161+ const amrex::Real apxm = ebdata.get <amrex::EBData_t::apx>(i ,j,k);
162+ const amrex::Real apxp = ebdata.get <amrex::EBData_t::apx>(i+1 ,j,k);
163163 amrex::Real dapx = (apxm-apxp)/dx[0 ];
164- amrex::Real apym = ebdata.get <amrex::EBData_t::apy>(i,j ,k);
165- amrex::Real apyp = ebdata.get <amrex::EBData_t::apy>(i,j+1 ,k);
164+ const amrex::Real apym = ebdata.get <amrex::EBData_t::apy>(i,j ,k);
165+ const amrex::Real apyp = ebdata.get <amrex::EBData_t::apy>(i,j+1 ,k);
166166 amrex::Real dapy = (apym-apyp)/dx[1 ];
167167#if (AMREX_SPACEDIM == 3)
168- amrex::Real apzm = ebdata.get <amrex::EBData_t::apz>(i,j,k );
169- amrex::Real apzp = ebdata.get <amrex::EBData_t::apz>(i,j,k+1 );
168+ const amrex::Real apzm = ebdata.get <amrex::EBData_t::apz>(i,j,k );
169+ const amrex::Real apzp = ebdata.get <amrex::EBData_t::apz>(i,j,k+1 );
170170 amrex::Real dapz = (apzm-apzp)/dx[2 ];
171171#endif
172172 amrex::Real anorm = std::sqrt (AMREX_D_TERM (dapx*dapx, + dapy*dapy, + dapz*dapz));
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