// SPDX-License-Identifier: Apache-2.0 // // Copyright 2015 Conrad Sanderson (http://conradsanderson.id.au) // Copyright 2015 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. // ------------------------------------------------------------------------ #include #include "catch.hpp" #include "utils.hpp" using namespace arma; TEST_CASE("fn_interp1_1", "[interp1]") { mat A = "\ 0.061198 0.201990 0.019678 -0.493936 -0.126745 0.051408;\ 0.437242 0.058956 -0.149362 -0.045465 0.296153 0.035437;\ -0.492474 -0.031309 0.314156 0.419733 0.068317 -0.454499;\ 0.336352 0.411541 0.458476 -0.393139 -0.135040 0.373833;\ 0.239585 -0.428913 -0.406953 -0.291020 -0.353768 0.258704;\ "; vec x = vectorise(A(0,0,size(5,3))); vec y = vectorise(A(0,3,size(5,3))); vec xi_a = linspace( x.min(), x.max(), 10 ); vec xi_b = flipud( linspace( x.min(), x.max(), 11 ) ); vec yi_a; vec yi_b; interp1(x, y, xi_a, yi_a); interp1(x, y, xi_b, yi_b); vec yi_a_gt = { 0.419733, 0.241248, 0.149666, 0.058084, 0.057588, 0.152062, -0.284524, -0.307613, -0.336627, 0.373833 }; vec yi_b_gt = { 0.373833, -0.300357, -0.353940, -0.201854, -0.449865, 0.063571, 0.045817, 0.085559, 0.167982, 0.250406, 0.419733 }; REQUIRE( accu(abs( yi_a - yi_a_gt )) == Approx(0.0).margin(0.001) ); REQUIRE( accu(abs( yi_b - yi_b_gt )) == Approx(0.0).margin(0.001) ); // REQUIRE_THROWS( ); } TEMPLATE_TEST_CASE("fn_interp1_fp_randu", "[interp1]", TEST_FLOAT_TYPES) { typedef TestType eT; Col x = linspace>(0, 1, 101); Col y = square(x); Col x2 = linspace>(0, 2, 201); Col z1, z2, z3, z4; vec x_ref = conv_to::from(x); vec y_ref = conv_to::from(y); vec x2_ref = conv_to::from(x2); vec z1_ref, z2_ref, z3_ref, z4_ref; interp1(x, y, x2, z1, "nearest", eT(5)); interp1(x, y, x2, z2, "linear", eT(5)); interp1(x, y, x2, z3, "*nearest", eT(5)); interp1(x, y, x2, z4, "*linear", eT(5)); interp1(x_ref, y_ref, x2_ref, z1_ref, "nearest", 5.0); interp1(x_ref, y_ref, x2_ref, z2_ref, "linear", 5.0); interp1(x_ref, y_ref, x2_ref, z3_ref, "*nearest", 5.0); interp1(x_ref, y_ref, x2_ref, z4_ref, "*linear", 5.0); constexpr const eT margin = is_blas_real::value ? eT(0.001) : eT(0.1); REQUIRE( z1.n_elem == z1_ref.n_elem ); REQUIRE( z2.n_elem == z2_ref.n_elem ); REQUIRE( z3.n_elem == z3_ref.n_elem ); REQUIRE( z4.n_elem == z4_ref.n_elem ); for (uword i = 0; i < z1.n_elem; ++i) { REQUIRE( z1[i] == Approx(eT(z1_ref[i])).margin(margin) ); REQUIRE( z2[i] == Approx(eT(z2_ref[i])).margin(margin) ); REQUIRE( z3[i] == Approx(eT(z3_ref[i])).margin(margin) ); REQUIRE( z4[i] == Approx(eT(z4_ref[i])).margin(margin) ); } }