// SPDX-License-Identifier: Apache-2.0 // // Copyright 2008-2016 Conrad Sanderson (http://conradsanderson.id.au) // Copyright 2008-2016 National ICT Australia (NICTA) // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // http://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. // ------------------------------------------------------------------------ //! \addtogroup fn_approx_equal //! @{ template arma_inline bool internal_approx_equal_abs_diff(const eT& x, const eT& y, const typename get_pod_type::result tol) { typedef typename get_pod_type::result T; if(x != y) { if(is_real::value) // also true for eT = std::complex or eT = std::complex { if( arma_isnan(x) || arma_isnan(y) || (eop_aux::arma_abs(x - y) > tol) ) { return false; } } else { if( eop_aux::arma_abs( ( cond_rel< is_cx::no >::gt(x, y) ) ? (x-y) : (y-x) ) > tol ) { return false; } } } return true; } template arma_inline bool internal_approx_equal_rel_diff(const eT& a, const eT& b, const typename get_pod_type::result tol) { typedef typename get_pod_type::result T; if(a != b) { if(is_real::value) // also true for eT = std::complex or eT = std::complex { if( arma_isnan(a) || arma_isnan(b) ) { return false; } const T abs_a = eop_aux::arma_abs(a); const T abs_b = eop_aux::arma_abs(b); const T max_c = (std::max)(abs_a,abs_b); const T abs_d = eop_aux::arma_abs(a - b); if(max_c >= T(1)) { if( abs_d > (tol * max_c) ) { return false; } } else { if( (abs_d / max_c) > tol ) { return false; } } } else { const T abs_a = eop_aux::arma_abs(a); const T abs_b = eop_aux::arma_abs(b); const T max_c = (std::max)(abs_a,abs_b); const T abs_d = eop_aux::arma_abs( ( cond_rel< is_cx::no >::gt(a, b) ) ? (a-b) : (b-a) ); if( abs_d > (tol * max_c) ) { return false; } } } return true; } template inline bool internal_approx_equal_worker ( const Base& A, const Base& B, const typename T1::pod_type abs_tol, const typename T1::pod_type rel_tol ) { arma_extra_debug_sigprint(); typedef typename T1::elem_type eT; typedef typename T1::pod_type T; arma_debug_check( ((use_abs_diff == false) && (use_rel_diff == false)), "internal_approx_equal_worker(): both 'use_abs_diff' and 'use_rel_diff' are false" ); if(use_abs_diff) { arma_debug_check( cond_rel< is_signed::value >::lt(abs_tol, T(0)), "approx_equal(): argument 'abs_tol' must be >= 0" ); } if(use_rel_diff) { arma_debug_check( cond_rel< is_signed::value >::lt(rel_tol, T(0)), "approx_equal(): argument 'rel_tol' must be >= 0" ); } const Proxy PA(A.get_ref()); const Proxy PB(B.get_ref()); if( (PA.get_n_rows() != PB.get_n_rows()) || (PA.get_n_cols() != PB.get_n_cols()) ) { return false; } if( (Proxy::use_at == false) && (Proxy::use_at == false) ) { const uword N = PA.get_n_elem(); const typename Proxy::ea_type PA_ea = PA.get_ea(); const typename Proxy::ea_type PB_ea = PB.get_ea(); for(uword i=0; i inline bool internal_approx_equal_worker ( const BaseCube& A, const BaseCube& B, const typename T1::pod_type abs_tol, const typename T1::pod_type rel_tol ) { arma_extra_debug_sigprint(); typedef typename T1::elem_type eT; typedef typename T1::pod_type T; arma_debug_check( ((use_abs_diff == false) && (use_rel_diff == false)), "internal_approx_equal_worker(): both 'use_abs_diff' and 'use_rel_diff' are false" ); if(use_abs_diff) { arma_debug_check( cond_rel< is_signed::value >::lt(abs_tol, T(0)), "approx_equal(): argument 'abs_tol' must be >= 0" ); } if(use_rel_diff) { arma_debug_check( cond_rel< is_signed::value >::lt(rel_tol, T(0)), "approx_equal(): argument 'rel_tol' must be >= 0" ); } const ProxyCube PA(A.get_ref()); const ProxyCube PB(B.get_ref()); if( (PA.get_n_rows() != PB.get_n_rows()) || (PA.get_n_cols() != PB.get_n_cols()) || (PA.get_n_slices() != PB.get_n_slices()) ) { return false; } if( (ProxyCube::use_at == false) && (ProxyCube::use_at == false) ) { const uword N = PA.get_n_elem(); const typename ProxyCube::ea_type PA_ea = PA.get_ea(); const typename ProxyCube::ea_type PB_ea = PB.get_ea(); for(uword i=0; i inline bool internal_approx_equal_handler(const T1& A, const T2& B, const char* method, const typename T1::pod_type abs_tol, const typename T1::pod_type rel_tol) { arma_extra_debug_sigprint(); typedef typename T1::pod_type T; const char sig = (method != nullptr) ? method[0] : char(0); arma_debug_check( ((sig != 'a') && (sig != 'r') && (sig != 'b')), "approx_equal(): argument 'method' must be \"absdiff\" or \"reldiff\" or \"both\"" ); bool status = false; if(sig == 'a') { status = internal_approx_equal_worker(A, B, abs_tol, T(0)); } else if(sig == 'r') { status = internal_approx_equal_worker(A, B, T(0), rel_tol); } else if(sig == 'b') { status = internal_approx_equal_worker(A, B, abs_tol, rel_tol); } return status; } template inline bool internal_approx_equal_handler(const T1& A, const T2& B, const char* method, const typename T1::pod_type tol) { arma_extra_debug_sigprint(); typedef typename T1::pod_type T; const char sig = (method != nullptr) ? method[0] : char(0); arma_debug_check( ((sig != 'a') && (sig != 'r') && (sig != 'b')), "approx_equal(): argument 'method' must be \"absdiff\" or \"reldiff\" or \"both\"" ); arma_debug_check( (sig == 'b'), "approx_equal(): argument 'method' is \"both\", but only one 'tol' argument has been given" ); bool status = false; if(sig == 'a') { status = internal_approx_equal_worker(A, B, tol, T(0)); } else if(sig == 'r') { status = internal_approx_equal_worker(A, B, T(0), tol); } return status; } template arma_warn_unused inline bool approx_equal(const Base& A, const Base& B, const char* method, const typename T1::pod_type tol) { arma_extra_debug_sigprint(); return internal_approx_equal_handler(A.get_ref(), B.get_ref(), method, tol); } template arma_warn_unused inline bool approx_equal(const BaseCube& A, const BaseCube& B, const char* method, const typename T1::pod_type tol) { arma_extra_debug_sigprint(); return internal_approx_equal_handler(A.get_ref(), B.get_ref(), method, tol); } template arma_warn_unused inline bool approx_equal(const Base& A, const Base& B, const char* method, const typename T1::pod_type abs_tol, const typename T1::pod_type rel_tol) { arma_extra_debug_sigprint(); return internal_approx_equal_handler(A.get_ref(), B.get_ref(), method, abs_tol, rel_tol); } template arma_warn_unused inline bool approx_equal(const BaseCube& A, const BaseCube& B, const char* method, const typename T1::pod_type abs_tol, const typename T1::pod_type rel_tol) { arma_extra_debug_sigprint(); return internal_approx_equal_handler(A.get_ref(), B.get_ref(), method, abs_tol, rel_tol); } template arma_warn_unused inline bool approx_equal(const SpBase& A, const SpBase& B, const char* method, const typename T1::pod_type tol) { arma_extra_debug_sigprint(); typedef typename T1::elem_type eT; typedef typename T1::pod_type T; const char sig = (method != nullptr) ? method[0] : char(0); arma_debug_check( ((sig != 'a') && (sig != 'r') && (sig != 'b')), "approx_equal(): argument 'method' must be \"absdiff\" or \"reldiff\" or \"both\"" ); arma_debug_check( (sig == 'b'), "approx_equal(): argument 'method' is \"both\", but only one 'tol' argument has been given" ); arma_debug_check( (sig == 'r'), "approx_equal(): only the \"absdiff\" method is currently implemented for sparse matrices" ); arma_debug_check( cond_rel< is_signed::value >::lt(tol, T(0)), "approx_equal(): argument 'tol' must be >= 0" ); const unwrap_spmat UA(A.get_ref()); const unwrap_spmat UB(B.get_ref()); if( (UA.M.n_rows != UB.M.n_rows) || (UA.M.n_cols != UB.M.n_cols) ) { return false; } const SpMat C = UA.M - UB.M; typename SpMat::const_iterator it = C.begin(); typename SpMat::const_iterator it_end = C.end(); while(it != it_end) { const eT val = (*it); if( arma_isnan(val) || (eop_aux::arma_abs(val) > tol) ) { return false; } ++it; } return true; } template arma_warn_unused inline bool approx_equal(const SpBase& A, const SpBase& B, const char* method, const typename T1::pod_type abs_tol, const typename T1::pod_type rel_tol) { arma_extra_debug_sigprint(); typedef typename T1::pod_type T; const char sig = (method != nullptr) ? method[0] : char(0); arma_debug_check( ((sig != 'a') && (sig != 'r') && (sig != 'b')), "approx_equal(): argument 'method' must be \"absdiff\" or \"reldiff\" or \"both\"" ); arma_debug_check( ((sig == 'r') || (sig == 'b')), "approx_equal(): only the \"absdiff\" method is currently implemented for sparse matrices" ); arma_debug_check( cond_rel< is_signed::value >::lt(abs_tol, T(0)), "approx_equal(): argument 'abs_tol' must be >= 0" ); arma_debug_check( cond_rel< is_signed::value >::lt(rel_tol, T(0)), "approx_equal(): argument 'rel_tol' must be >= 0" ); return approx_equal(A.get_ref(), B.get_ref(), "abs", abs_tol); } //! @}