268 lines
6.4 KiB
C++
268 lines
6.4 KiB
C++
// Copyright 2008-2016 Conrad Sanderson (http://conradsanderson.id.au)
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// Copyright 2008-2016 National ICT Australia (NICTA)
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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// ------------------------------------------------------------------------
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//! \addtogroup glue_max
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//! @{
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template<typename T1, typename T2>
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inline
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void
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glue_max::apply(Mat<typename T1::elem_type>& out, const Glue<T1, T2, glue_max>& X)
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{
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arma_extra_debug_sigprint();
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typedef typename T1::elem_type eT;
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const Proxy<T1> PA(X.A);
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const Proxy<T2> PB(X.B);
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if( (PA.is_alias(out) && PA.has_subview) || (PB.is_alias(out) && PB.has_subview) )
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{
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Mat<eT> tmp;
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glue_max::apply(tmp, PA, PB);
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out.steal_mem(tmp);
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}
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else
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{
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glue_max::apply(out, PA, PB);
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}
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}
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template<typename eT, typename T1, typename T2>
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inline
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void
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glue_max::apply(Mat<eT>& out, const Proxy<T1>& PA, const Proxy<T2>& PB)
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{
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arma_extra_debug_sigprint();
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const uword n_rows = PA.get_n_rows();
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const uword n_cols = PA.get_n_cols();
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arma_debug_assert_same_size(n_rows, n_cols, PB.get_n_rows(), PB.get_n_cols(), "element-wise maximum");
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out.set_size(n_rows, n_cols);
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eT* out_mem = out.memptr();
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if( (Proxy<T1>::use_at == false) && (Proxy<T2>::use_at == false) )
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{
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typename Proxy<T1>::ea_type A = PA.get_ea();
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typename Proxy<T2>::ea_type B = PB.get_ea();
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const uword N = PA.get_n_elem();
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for(uword i=0; i<N; ++i)
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{
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out_mem[i] = (std::max)(A[i], B[i]);
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}
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}
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else
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{
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for(uword col=0; col < n_cols; ++col)
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for(uword row=0; row < n_rows; ++row)
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{
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*out_mem = (std::max)( PA.at(row,col), PB.at(row,col) );
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++out_mem;
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}
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}
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}
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template<typename T, typename T1, typename T2>
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inline
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void
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glue_max::apply(Mat< std::complex<T> >& out, const Proxy<T1>& PA, const Proxy<T2>& PB)
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{
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arma_extra_debug_sigprint();
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typedef typename std::complex<T> eT;
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const uword n_rows = PA.get_n_rows();
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const uword n_cols = PA.get_n_cols();
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arma_debug_assert_same_size(n_rows, n_cols, PB.get_n_rows(), PB.get_n_cols(), "element-wise maximum");
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out.set_size(n_rows, n_cols);
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eT* out_mem = out.memptr();
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if( (Proxy<T1>::use_at == false) && (Proxy<T2>::use_at == false) )
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{
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typename Proxy<T1>::ea_type A = PA.get_ea();
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typename Proxy<T2>::ea_type B = PB.get_ea();
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const uword N = PA.get_n_elem();
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for(uword i=0; i<N; ++i)
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{
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const eT A_val = A[i];
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const eT B_val = B[i];
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out_mem[i] = ( std::abs(A_val) > std::abs(B_val) ) ? A_val : B_val;
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}
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}
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else
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{
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for(uword col=0; col < n_cols; ++col)
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for(uword row=0; row < n_rows; ++row)
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{
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const eT A_val = PA.at(row,col);
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const eT B_val = PB.at(row,col);
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*out_mem = ( std::abs(A_val) > std::abs(B_val) ) ? A_val : B_val;
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++out_mem;
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}
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}
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}
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template<typename T1, typename T2>
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inline
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void
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glue_max::apply(Cube<typename T1::elem_type>& out, const GlueCube<T1, T2, glue_max>& X)
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{
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arma_extra_debug_sigprint();
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typedef typename T1::elem_type eT;
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const ProxyCube<T1> PA(X.A);
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const ProxyCube<T2> PB(X.B);
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if( (PA.is_alias(out) && PA.has_subview) || (PB.is_alias(out) && PB.has_subview) )
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{
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Cube<eT> tmp;
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glue_max::apply(tmp, PA, PB);
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out.steal_mem(tmp);
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}
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else
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{
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glue_max::apply(out, PA, PB);
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}
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}
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template<typename eT, typename T1, typename T2>
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inline
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void
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glue_max::apply(Cube<eT>& out, const ProxyCube<T1>& PA, const ProxyCube<T2>& PB)
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{
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arma_extra_debug_sigprint();
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const uword n_rows = PA.get_n_rows();
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const uword n_cols = PA.get_n_cols();
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const uword n_slices = PA.get_n_slices();
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arma_debug_assert_same_size(n_rows, n_cols, n_slices, PB.get_n_rows(), PB.get_n_cols(), PB.get_n_slices(), "element-wise maximum");
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out.set_size(n_rows, n_cols, n_slices);
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eT* out_mem = out.memptr();
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if( (ProxyCube<T1>::use_at == false) && (ProxyCube<T2>::use_at == false) )
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{
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typename ProxyCube<T1>::ea_type A = PA.get_ea();
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typename ProxyCube<T2>::ea_type B = PB.get_ea();
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const uword N = PA.get_n_elem();
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for(uword i=0; i<N; ++i)
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{
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out_mem[i] = (std::max)(A[i], B[i]);
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}
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}
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else
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{
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for(uword slice=0; slice < n_slices; ++slice)
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for(uword col=0; col < n_cols; ++col )
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for(uword row=0; row < n_rows; ++row )
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{
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*out_mem = (std::max)( PA.at(row,col,slice), PB.at(row,col,slice) );
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++out_mem;
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}
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}
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}
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template<typename T, typename T1, typename T2>
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inline
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void
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glue_max::apply(Cube< std::complex<T> >& out, const ProxyCube<T1>& PA, const ProxyCube<T2>& PB)
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{
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arma_extra_debug_sigprint();
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typedef typename std::complex<T> eT;
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const uword n_rows = PA.get_n_rows();
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const uword n_cols = PA.get_n_cols();
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const uword n_slices = PA.get_n_slices();
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arma_debug_assert_same_size(n_rows, n_cols, n_slices, PB.get_n_rows(), PB.get_n_cols(), PB.get_n_slices(), "element-wise maximum");
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out.set_size(n_rows, n_cols, n_slices);
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eT* out_mem = out.memptr();
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if( (ProxyCube<T1>::use_at == false) && (ProxyCube<T2>::use_at == false) )
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{
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typename ProxyCube<T1>::ea_type A = PA.get_ea();
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typename ProxyCube<T2>::ea_type B = PB.get_ea();
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const uword N = PA.get_n_elem();
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for(uword i=0; i<N; ++i)
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{
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const eT A_val = A[i];
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const eT B_val = B[i];
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out_mem[i] = ( std::abs(A_val) > std::abs(B_val) ) ? A_val : B_val;
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}
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}
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else
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{
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for(uword slice=0; slice < n_slices; ++slice)
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for(uword col=0; col < n_cols; ++col )
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for(uword row=0; row < n_rows; ++row )
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{
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const eT A_val = PA.at(row,col,slice);
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const eT B_val = PB.at(row,col,slice);
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*out_mem = ( std::abs(A_val) > std::abs(B_val) ) ? A_val : B_val;
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++out_mem;
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}
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}
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}
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//! @}
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