feat(cpp-object-oriented-modular-refactoring): step 3 - foundation-google-style
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@@ -1,4 +1,4 @@
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#include "fesa/math/matrix.hpp"
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#include "fesa/math/matrix.h"
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#include <gtest/gtest.h>
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@@ -10,100 +10,104 @@ namespace fesa {
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namespace {
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TEST(DenseMath, RowMajorMatrixMatchesKnownGemvGemm) {
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const std::size_t wraparoundRows =
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(std::numeric_limits<std::size_t>::max)() / 2U + 1U;
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EXPECT_THROW(static_cast<void>(Matrix{wraparoundRows, 2}), std::length_error);
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const std::size_t wraparound_rows =
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(std::numeric_limits<std::size_t>::max)() / 2U + 1U;
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EXPECT_THROW(static_cast<void>(Matrix{wraparound_rows, 2}),
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std::length_error);
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Matrix zeroRows{0, 3};
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Vector threeValues{3, 2.0};
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const Vector zeroRowProduct = zeroRows.multiply(threeValues);
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EXPECT_EQ(zeroRowProduct.size(), 0U);
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Matrix zero_rows{0, 3};
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Vector three_values{3, 2.0};
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const Vector zero_row_product = zero_rows.Multiply(three_values);
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EXPECT_EQ(zero_row_product.Size(), 0U);
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Matrix zeroColumns{2, 0};
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const Vector zeroColumnProduct = zeroColumns.multiply(Vector{0});
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ASSERT_EQ(zeroColumnProduct.size(), 2U);
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EXPECT_DOUBLE_EQ(zeroColumnProduct[0], 0.0);
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EXPECT_DOUBLE_EQ(zeroColumnProduct[1], 0.0);
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Matrix zero_columns{2, 0};
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const Vector zero_column_product = zero_columns.Multiply(Vector{0});
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ASSERT_EQ(zero_column_product.Size(), 2U);
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EXPECT_DOUBLE_EQ(zero_column_product[0], 0.0);
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EXPECT_DOUBLE_EQ(zero_column_product[1], 0.0);
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Matrix zeroInnerRight{0, 3};
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const Matrix zeroInnerProduct = zeroColumns.multiply(zeroInnerRight);
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EXPECT_EQ(zeroInnerProduct.rows(), 2U);
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EXPECT_EQ(zeroInnerProduct.columns(), 3U);
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for (std::size_t row = 0; row < zeroInnerProduct.rows(); ++row) {
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for (std::size_t column = 0; column < zeroInnerProduct.columns(); ++column) {
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EXPECT_DOUBLE_EQ(zeroInnerProduct(row, column), 0.0);
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}
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Matrix zero_inner_right{0, 3};
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const Matrix zero_inner_product = zero_columns.Multiply(zero_inner_right);
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EXPECT_EQ(zero_inner_product.Rows(), 2U);
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EXPECT_EQ(zero_inner_product.Columns(), 3U);
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for (std::size_t row = 0; row < zero_inner_product.Rows(); ++row) {
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for (std::size_t column = 0; column < zero_inner_product.Columns();
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++column) {
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EXPECT_DOUBLE_EQ(zero_inner_product(row, column), 0.0);
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}
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}
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Matrix left{2, 3};
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left(0, 0) = 1.0;
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left(0, 1) = 2.0;
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left(0, 2) = 3.0;
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left(1, 0) = 4.0;
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left(1, 1) = 5.0;
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left(1, 2) = 6.0;
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Matrix left{2, 3};
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left(0, 0) = 1.0;
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left(0, 1) = 2.0;
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left(0, 2) = 3.0;
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left(1, 0) = 4.0;
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left(1, 1) = 5.0;
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left(1, 2) = 6.0;
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EXPECT_EQ(&left(0, 0) + 1, &left(0, 1));
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EXPECT_EQ(&left(0, 0) + 2, &left(0, 2));
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EXPECT_EQ(&left(0, 0) + 3, &left(1, 0));
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const Matrix& constLeft = left;
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EXPECT_DOUBLE_EQ(constLeft(1, 2), 6.0);
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EXPECT_EQ(&left(0, 0) + 1, &left(0, 1));
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EXPECT_EQ(&left(0, 0) + 2, &left(0, 2));
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EXPECT_EQ(&left(0, 0) + 3, &left(1, 0));
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const Matrix& const_left = left;
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EXPECT_DOUBLE_EQ(const_left(1, 2), 6.0);
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Matrix copied{left};
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copied(0, 0) = 42.0;
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EXPECT_DOUBLE_EQ(left(0, 0), 1.0);
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Matrix copied{left};
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copied(0, 0) = 42.0;
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EXPECT_DOUBLE_EQ(left(0, 0), 1.0);
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Matrix copyAssigned{0, 0};
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copyAssigned = left;
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copyAssigned(1, 2) = -7.0;
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EXPECT_DOUBLE_EQ(left(1, 2), 6.0);
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Matrix copy_assigned{0, 0};
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copy_assigned = left;
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copy_assigned(1, 2) = -7.0;
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EXPECT_DOUBLE_EQ(left(1, 2), 6.0);
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Matrix moved{std::move(copied)};
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EXPECT_EQ(copied.rows(), 0U);
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EXPECT_EQ(copied.columns(), 0U);
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EXPECT_EQ(moved.rows(), 2U);
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EXPECT_EQ(moved.columns(), 3U);
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EXPECT_DOUBLE_EQ(moved(0, 0), 42.0);
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EXPECT_NO_THROW(static_cast<void>(copied.multiply(Vector{0})));
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Matrix moved{std::move(copied)};
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EXPECT_EQ(copied.Rows(), 0U);
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EXPECT_EQ(copied.Columns(), 0U);
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EXPECT_EQ(moved.Rows(), 2U);
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EXPECT_EQ(moved.Columns(), 3U);
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EXPECT_DOUBLE_EQ(moved(0, 0), 42.0);
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EXPECT_NO_THROW(static_cast<void>(copied.Multiply(Vector{0})));
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Matrix moveAssigned{1, 1, -1.0};
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moveAssigned = std::move(copyAssigned);
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EXPECT_EQ(copyAssigned.rows(), 0U);
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EXPECT_EQ(copyAssigned.columns(), 0U);
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EXPECT_EQ(moveAssigned.rows(), 2U);
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EXPECT_EQ(moveAssigned.columns(), 3U);
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EXPECT_DOUBLE_EQ(moveAssigned(1, 2), -7.0);
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Matrix move_assigned{1, 1, -1.0};
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move_assigned = std::move(copy_assigned);
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EXPECT_EQ(copy_assigned.Rows(), 0U);
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EXPECT_EQ(copy_assigned.Columns(), 0U);
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EXPECT_EQ(move_assigned.Rows(), 2U);
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EXPECT_EQ(move_assigned.Columns(), 3U);
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EXPECT_DOUBLE_EQ(move_assigned(1, 2), -7.0);
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Vector vector{3};
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vector[0] = 7.0;
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vector[1] = 8.0;
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vector[2] = 9.0;
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const Vector matrixVectorProduct = left.multiply(vector);
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ASSERT_EQ(matrixVectorProduct.size(), 2U);
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EXPECT_DOUBLE_EQ(matrixVectorProduct[0], 50.0);
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EXPECT_DOUBLE_EQ(matrixVectorProduct[1], 122.0);
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Vector vector{3};
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vector[0] = 7.0;
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vector[1] = 8.0;
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vector[2] = 9.0;
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const Vector matrix_vector_product = left.Multiply(vector);
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ASSERT_EQ(matrix_vector_product.Size(), 2U);
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EXPECT_DOUBLE_EQ(matrix_vector_product[0], 50.0);
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EXPECT_DOUBLE_EQ(matrix_vector_product[1], 122.0);
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Matrix right{3, 2};
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right(0, 0) = 7.0;
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right(0, 1) = 8.0;
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right(1, 0) = 9.0;
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right(1, 1) = 10.0;
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right(2, 0) = 11.0;
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right(2, 1) = 12.0;
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const Matrix matrixProduct = left.multiply(right);
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ASSERT_EQ(matrixProduct.rows(), 2U);
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ASSERT_EQ(matrixProduct.columns(), 2U);
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EXPECT_DOUBLE_EQ(matrixProduct(0, 0), 58.0);
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EXPECT_DOUBLE_EQ(matrixProduct(0, 1), 64.0);
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EXPECT_DOUBLE_EQ(matrixProduct(1, 0), 139.0);
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EXPECT_DOUBLE_EQ(matrixProduct(1, 1), 154.0);
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Matrix right{3, 2};
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right(0, 0) = 7.0;
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right(0, 1) = 8.0;
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right(1, 0) = 9.0;
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right(1, 1) = 10.0;
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right(2, 0) = 11.0;
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right(2, 1) = 12.0;
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const Matrix matrix_product = left.Multiply(right);
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ASSERT_EQ(matrix_product.Rows(), 2U);
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ASSERT_EQ(matrix_product.Columns(), 2U);
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EXPECT_DOUBLE_EQ(matrix_product(0, 0), 58.0);
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EXPECT_DOUBLE_EQ(matrix_product(0, 1), 64.0);
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EXPECT_DOUBLE_EQ(matrix_product(1, 0), 139.0);
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EXPECT_DOUBLE_EQ(matrix_product(1, 1), 154.0);
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EXPECT_THROW(static_cast<void>(left(2, 0)), std::out_of_range);
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EXPECT_THROW(static_cast<void>(left(0, 3)), std::out_of_range);
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EXPECT_THROW(static_cast<void>(constLeft(2, 0)), std::out_of_range);
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EXPECT_THROW(static_cast<void>(left.multiply(Vector{2})), std::invalid_argument);
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EXPECT_THROW(static_cast<void>(left.multiply(Matrix{4, 1})), std::invalid_argument);
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EXPECT_THROW(static_cast<void>(left(2, 0)), std::out_of_range);
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EXPECT_THROW(static_cast<void>(left(0, 3)), std::out_of_range);
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EXPECT_THROW(static_cast<void>(const_left(2, 0)), std::out_of_range);
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EXPECT_THROW(static_cast<void>(left.Multiply(Vector{2})),
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std::invalid_argument);
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EXPECT_THROW(static_cast<void>(left.Multiply(Matrix{4, 1})),
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std::invalid_argument);
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}
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} // namespace
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} // namespace fesa
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} // namespace
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} // namespace fesa
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