blob: 4c064e2bb3b7af41a851f4b13132248cc38c16bc [file]
// This file is part of Eigen, a lightweight C++ template library
// for linear algebra.
//
// Copyright (C) 2014 Benoit Steiner <benoit.steiner.goog@gmail.com>
//
// This Source Code Form is subject to the terms of the Mozilla
// Public License v. 2.0. If a copy of the MPL was not distributed
// with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
// SPDX-License-Identifier: MPL-2.0
#include "main.h"
#include <Eigen/Tensor>
using Eigen::Tensor;
static void test_dynamic_size() {
Eigen::DSizes<int, 3> dimensions(2, 3, 7);
VERIFY_IS_EQUAL((int)Eigen::internal::array_get<0>(dimensions), 2);
VERIFY_IS_EQUAL((int)Eigen::internal::array_get<1>(dimensions), 3);
VERIFY_IS_EQUAL((int)Eigen::internal::array_get<2>(dimensions), 7);
VERIFY_IS_EQUAL((int)dimensions.TotalSize(), 2 * 3 * 7);
VERIFY_IS_EQUAL((int)dimensions[0], 2);
VERIFY_IS_EQUAL((int)dimensions[1], 3);
VERIFY_IS_EQUAL((int)dimensions[2], 7);
}
static void test_fixed_size() {
Eigen::Sizes<2, 3, 7> dimensions;
VERIFY_IS_EQUAL((int)Eigen::internal::array_get<0>(dimensions), 2);
VERIFY_IS_EQUAL((int)Eigen::internal::array_get<1>(dimensions), 3);
VERIFY_IS_EQUAL((int)Eigen::internal::array_get<2>(dimensions), 7);
VERIFY_IS_EQUAL((int)dimensions.TotalSize(), 2 * 3 * 7);
}
static void test_match() {
Eigen::DSizes<unsigned int, 3> dyn((unsigned int)2, (unsigned int)3, (unsigned int)7);
Eigen::Sizes<2, 3, 7> stat;
VERIFY_IS_EQUAL(Eigen::dimensions_match(dyn, stat), true);
Eigen::DSizes<int, 3> dyn1(2, 3, 7);
Eigen::DSizes<int, 2> dyn2(2, 3);
VERIFY_IS_EQUAL(Eigen::dimensions_match(dyn1, dyn2), false);
}
static void test_rank_zero() {
Eigen::Sizes<> scalar;
VERIFY_IS_EQUAL((int)scalar.TotalSize(), 1);
VERIFY_IS_EQUAL((int)scalar.rank(), 0);
VERIFY_IS_EQUAL((int)internal::array_prod(scalar), 1);
Eigen::DSizes<ptrdiff_t, 0> dscalar;
VERIFY_IS_EQUAL((int)dscalar.TotalSize(), 1);
VERIFY_IS_EQUAL((int)dscalar.rank(), 0);
}
static void test_index_type_promotion() {
Eigen::DSizes<int, 3> src0(1, 2, 3);
Eigen::array<int, 3> src1;
src1[0] = 4;
src1[1] = 5;
src1[2] = 6;
Eigen::DSizes<long, 3> dst0(src0);
Eigen::DSizes<long, 3> dst1(src1);
VERIFY_IS_EQUAL(dst0[0], 1L);
VERIFY_IS_EQUAL(dst0[1], 2L);
VERIFY_IS_EQUAL(dst0[2], 3L);
VERIFY_IS_EQUAL(dst1[0], 4L);
VERIFY_IS_EQUAL(dst1[1], 5L);
VERIFY_IS_EQUAL(dst1[2], 6L);
}
// Regression test for issue #1616: unsigned dimension types must not trigger
// narrowing errors in the variadic constructor.
static void test_unsigned_dimensions() {
Eigen::DSizes<int, 3> dimensions(2u, 3ul, std::size_t(7));
VERIFY_IS_EQUAL((int)dimensions[0], 2);
VERIFY_IS_EQUAL((int)dimensions[1], 3);
VERIFY_IS_EQUAL((int)dimensions[2], 7);
}
// A dimension the index type cannot represent must assert rather than silently truncate.
static void test_narrowing_dimensions() {
// Fixed width: on ILP32 targets shifting std::size_t by 40 is undefined, and GCC folds it to an in-range 0.
VERIFY_RAISES_ASSERT((Eigen::DSizes<int, 3>(2, 3, std::uint64_t(1) << 40)));
VERIFY_RAISES_ASSERT((Eigen::DSizes<std::ptrdiff_t, 3>(2, 3, std::size_t(-1))));
}
EIGEN_DECLARE_TEST(tensor_dimension) {
CALL_SUBTEST(test_dynamic_size());
CALL_SUBTEST(test_fixed_size());
CALL_SUBTEST(test_match());
CALL_SUBTEST(test_rank_zero());
CALL_SUBTEST(test_index_type_promotion());
CALL_SUBTEST(test_unsigned_dimensions());
CALL_SUBTEST(test_narrowing_dimensions());
}