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Wenzel Jakob9e0a0562016-05-05 20:33:54 +02001/*
Dean Moldovana0c1ccf2016-08-12 13:50:00 +02002 tests/eigen.cpp -- automatic conversion of Eigen types
Wenzel Jakob9e0a0562016-05-05 20:33:54 +02003
4 Copyright (c) 2016 Wenzel Jakob <wenzel.jakob@epfl.ch>
5
6 All rights reserved. Use of this source code is governed by a
7 BSD-style license that can be found in the LICENSE file.
8*/
9
Dean Moldovana0c1ccf2016-08-12 13:50:00 +020010#include "pybind11_tests.h"
Jason Rhinelander17d02832017-01-16 20:35:14 -050011#include "constructor_stats.h"
Wenzel Jakob9e0a0562016-05-05 20:33:54 +020012#include <pybind11/eigen.h>
Dean Moldovan30f6c3b2017-06-26 23:20:39 +020013#include <pybind11/stl.h>
Jason Rhinelander3be401f2017-12-15 10:15:25 -040014
15#if defined(_MSC_VER)
16# pragma warning(disable: 4996) // C4996: std::unary_negation is deprecated
17#endif
18
Jason Rhinelander5fd50742016-08-03 16:50:22 -040019#include <Eigen/Cholesky>
Wenzel Jakob9e0a0562016-05-05 20:33:54 +020020
Jason Rhinelander17d02832017-01-16 20:35:14 -050021using MatrixXdR = Eigen::Matrix<double, Eigen::Dynamic, Eigen::Dynamic, Eigen::RowMajor>;
Ben Northb063e642016-07-05 20:01:11 +010022
Ben Northb063e642016-07-05 20:01:11 +010023
Ben North3e0e7792016-07-05 21:00:05 +010024
Jason Rhinelander17d02832017-01-16 20:35:14 -050025// Sets/resets a testing reference matrix to have values of 10*r + c, where r and c are the
26// (1-based) row/column number.
27template <typename M> void reset_ref(M &x) {
28 for (int i = 0; i < x.rows(); i++) for (int j = 0; j < x.cols(); j++)
29 x(i, j) = 11 + 10*i + j;
30}
Jason Rhinelander5fd50742016-08-03 16:50:22 -040031
Jason Rhinelander17d02832017-01-16 20:35:14 -050032// Returns a static, column-major matrix
33Eigen::MatrixXd &get_cm() {
34 static Eigen::MatrixXd *x;
35 if (!x) {
36 x = new Eigen::MatrixXd(3, 3);
37 reset_ref(*x);
38 }
39 return *x;
40}
41// Likewise, but row-major
42MatrixXdR &get_rm() {
43 static MatrixXdR *x;
44 if (!x) {
45 x = new MatrixXdR(3, 3);
46 reset_ref(*x);
47 }
48 return *x;
49}
50// Resets the values of the static matrices returned by get_cm()/get_rm()
51void reset_refs() {
52 reset_ref(get_cm());
53 reset_ref(get_rm());
54}
55
56// Returns element 2,1 from a matrix (used to test copy/nocopy)
57double get_elem(Eigen::Ref<const Eigen::MatrixXd> m) { return m(2, 1); };
Ben North3e0e7792016-07-05 21:00:05 +010058
Jason Rhinelanderefa87262017-03-17 14:51:52 -030059
60// Returns a matrix with 10*r + 100*c added to each matrix element (to help test that the matrix
61// reference is referencing rows/columns correctly).
62template <typename MatrixArgType> Eigen::MatrixXd adjust_matrix(MatrixArgType m) {
63 Eigen::MatrixXd ret(m);
64 for (int c = 0; c < m.cols(); c++) for (int r = 0; r < m.rows(); r++)
65 ret(r, c) += 10*r + 100*c;
66 return ret;
67}
68
Dean Moldovan0d765f42017-03-21 01:15:20 +010069struct CustomOperatorNew {
70 CustomOperatorNew() = default;
71
72 Eigen::Matrix4d a = Eigen::Matrix4d::Zero();
73 Eigen::Matrix4d b = Eigen::Matrix4d::Identity();
74
75 EIGEN_MAKE_ALIGNED_OPERATOR_NEW;
76};
77
Jason Rhinelander391c7542017-07-25 16:47:36 -040078TEST_SUBMODULE(eigen, m) {
79 using FixedMatrixR = Eigen::Matrix<float, 5, 6, Eigen::RowMajor>;
80 using FixedMatrixC = Eigen::Matrix<float, 5, 6>;
81 using DenseMatrixR = Eigen::Matrix<float, Eigen::Dynamic, Eigen::Dynamic, Eigen::RowMajor>;
82 using DenseMatrixC = Eigen::Matrix<float, Eigen::Dynamic, Eigen::Dynamic>;
83 using FourRowMatrixC = Eigen::Matrix<float, 4, Eigen::Dynamic>;
84 using FourColMatrixC = Eigen::Matrix<float, Eigen::Dynamic, 4>;
85 using FourRowMatrixR = Eigen::Matrix<float, 4, Eigen::Dynamic>;
86 using FourColMatrixR = Eigen::Matrix<float, Eigen::Dynamic, 4>;
87 using SparseMatrixR = Eigen::SparseMatrix<float, Eigen::RowMajor>;
88 using SparseMatrixC = Eigen::SparseMatrix<float>;
Wenzel Jakob9e0a0562016-05-05 20:33:54 +020089
Jason Rhinelander391c7542017-07-25 16:47:36 -040090 // various tests
Jason Rhinelander17d02832017-01-16 20:35:14 -050091 m.def("double_col", [](const Eigen::VectorXf &x) -> Eigen::VectorXf { return 2.0f * x; });
92 m.def("double_row", [](const Eigen::RowVectorXf &x) -> Eigen::RowVectorXf { return 2.0f * x; });
Dean Moldovan51439892017-02-28 18:07:51 +010093 m.def("double_complex", [](const Eigen::VectorXcf &x) -> Eigen::VectorXcf { return 2.0f * x; });
Jason Rhinelander17d02832017-01-16 20:35:14 -050094 m.def("double_threec", [](py::EigenDRef<Eigen::Vector3f> x) { x *= 2; });
95 m.def("double_threer", [](py::EigenDRef<Eigen::RowVector3f> x) { x *= 2; });
96 m.def("double_mat_cm", [](Eigen::MatrixXf x) -> Eigen::MatrixXf { return 2.0f * x; });
97 m.def("double_mat_rm", [](DenseMatrixR x) -> DenseMatrixR { return 2.0f * x; });
Wenzel Jakob9e0a0562016-05-05 20:33:54 +020098
Jason Rhinelander391c7542017-07-25 16:47:36 -040099 // test_eigen_ref_to_python
Jason Rhinelander17d02832017-01-16 20:35:14 -0500100 // Different ways of passing via Eigen::Ref; the first and second are the Eigen-recommended
101 m.def("cholesky1", [](Eigen::Ref<MatrixXdR> x) -> Eigen::MatrixXd { return x.llt().matrixL(); });
102 m.def("cholesky2", [](const Eigen::Ref<const MatrixXdR> &x) -> Eigen::MatrixXd { return x.llt().matrixL(); });
103 m.def("cholesky3", [](const Eigen::Ref<MatrixXdR> &x) -> Eigen::MatrixXd { return x.llt().matrixL(); });
104 m.def("cholesky4", [](Eigen::Ref<const MatrixXdR> x) -> Eigen::MatrixXd { return x.llt().matrixL(); });
105
Jason Rhinelander391c7542017-07-25 16:47:36 -0400106 // test_eigen_ref_mutators
Jason Rhinelander17d02832017-01-16 20:35:14 -0500107 // Mutators: these add some value to the given element using Eigen, but Eigen should be mapping into
108 // the numpy array data and so the result should show up there. There are three versions: one that
109 // works on a contiguous-row matrix (numpy's default), one for a contiguous-column matrix, and one
110 // for any matrix.
111 auto add_rm = [](Eigen::Ref<MatrixXdR> x, int r, int c, double v) { x(r,c) += v; };
112 auto add_cm = [](Eigen::Ref<Eigen::MatrixXd> x, int r, int c, double v) { x(r,c) += v; };
113
114 // Mutators (Eigen maps into numpy variables):
115 m.def("add_rm", add_rm); // Only takes row-contiguous
116 m.def("add_cm", add_cm); // Only takes column-contiguous
117 // Overloaded versions that will accept either row or column contiguous:
118 m.def("add1", add_rm);
119 m.def("add1", add_cm);
120 m.def("add2", add_cm);
121 m.def("add2", add_rm);
122 // This one accepts a matrix of any stride:
123 m.def("add_any", [](py::EigenDRef<Eigen::MatrixXd> x, int r, int c, double v) { x(r,c) += v; });
124
luz.paz13c08072018-02-21 13:28:55 -0500125 // Return mutable references (numpy maps into eigen variables)
Jason Rhinelander17d02832017-01-16 20:35:14 -0500126 m.def("get_cm_ref", []() { return Eigen::Ref<Eigen::MatrixXd>(get_cm()); });
127 m.def("get_rm_ref", []() { return Eigen::Ref<MatrixXdR>(get_rm()); });
128 // The same references, but non-mutable (numpy maps into eigen variables, but is !writeable)
129 m.def("get_cm_const_ref", []() { return Eigen::Ref<const Eigen::MatrixXd>(get_cm()); });
130 m.def("get_rm_const_ref", []() { return Eigen::Ref<const MatrixXdR>(get_rm()); });
Jason Rhinelander17d02832017-01-16 20:35:14 -0500131
132 m.def("reset_refs", reset_refs); // Restores get_{cm,rm}_ref to original values
133
134 // Increments and returns ref to (same) matrix
135 m.def("incr_matrix", [](Eigen::Ref<Eigen::MatrixXd> m, double v) {
136 m += Eigen::MatrixXd::Constant(m.rows(), m.cols(), v);
137 return m;
138 }, py::return_value_policy::reference);
139
140 // Same, but accepts a matrix of any strides
141 m.def("incr_matrix_any", [](py::EigenDRef<Eigen::MatrixXd> m, double v) {
142 m += Eigen::MatrixXd::Constant(m.rows(), m.cols(), v);
143 return m;
144 }, py::return_value_policy::reference);
145
146 // Returns an eigen slice of even rows
147 m.def("even_rows", [](py::EigenDRef<Eigen::MatrixXd> m) {
148 return py::EigenDMap<Eigen::MatrixXd>(
149 m.data(), (m.rows() + 1) / 2, m.cols(),
150 py::EigenDStride(m.outerStride(), 2 * m.innerStride()));
151 }, py::return_value_policy::reference);
152
153 // Returns an eigen slice of even columns
154 m.def("even_cols", [](py::EigenDRef<Eigen::MatrixXd> m) {
155 return py::EigenDMap<Eigen::MatrixXd>(
156 m.data(), m.rows(), (m.cols() + 1) / 2,
157 py::EigenDStride(2 * m.outerStride(), m.innerStride()));
158 }, py::return_value_policy::reference);
Ben Northb063e642016-07-05 20:01:11 +0100159
Jason Rhinelander8657f302016-08-04 13:21:39 -0400160 // Returns diagonals: a vector-like object with an inner stride != 1
161 m.def("diagonal", [](const Eigen::Ref<const Eigen::MatrixXd> &x) { return x.diagonal(); });
162 m.def("diagonal_1", [](const Eigen::Ref<const Eigen::MatrixXd> &x) { return x.diagonal<1>(); });
163 m.def("diagonal_n", [](const Eigen::Ref<const Eigen::MatrixXd> &x, int index) { return x.diagonal(index); });
164
165 // Return a block of a matrix (gives non-standard strides)
166 m.def("block", [](const Eigen::Ref<const Eigen::MatrixXd> &x, int start_row, int start_col, int block_rows, int block_cols) {
167 return x.block(start_row, start_col, block_rows, block_cols);
168 });
169
Jason Rhinelander391c7542017-07-25 16:47:36 -0400170 // test_eigen_return_references, test_eigen_keepalive
Jason Rhinelander17d02832017-01-16 20:35:14 -0500171 // return value referencing/copying tests:
172 class ReturnTester {
173 Eigen::MatrixXd mat = create();
174 public:
175 ReturnTester() { print_created(this); }
176 ~ReturnTester() { print_destroyed(this); }
177 static Eigen::MatrixXd create() { return Eigen::MatrixXd::Ones(10, 10); }
178 static const Eigen::MatrixXd createConst() { return Eigen::MatrixXd::Ones(10, 10); }
179 Eigen::MatrixXd &get() { return mat; }
180 Eigen::MatrixXd *getPtr() { return &mat; }
181 const Eigen::MatrixXd &view() { return mat; }
182 const Eigen::MatrixXd *viewPtr() { return &mat; }
183 Eigen::Ref<Eigen::MatrixXd> ref() { return mat; }
184 Eigen::Ref<const Eigen::MatrixXd> refConst() { return mat; }
185 Eigen::Block<Eigen::MatrixXd> block(int r, int c, int nrow, int ncol) { return mat.block(r, c, nrow, ncol); }
186 Eigen::Block<const Eigen::MatrixXd> blockConst(int r, int c, int nrow, int ncol) const { return mat.block(r, c, nrow, ncol); }
187 py::EigenDMap<Eigen::Matrix2d> corners() { return py::EigenDMap<Eigen::Matrix2d>(mat.data(),
188 py::EigenDStride(mat.outerStride() * (mat.outerSize()-1), mat.innerStride() * (mat.innerSize()-1))); }
189 py::EigenDMap<const Eigen::Matrix2d> cornersConst() const { return py::EigenDMap<const Eigen::Matrix2d>(mat.data(),
190 py::EigenDStride(mat.outerStride() * (mat.outerSize()-1), mat.innerStride() * (mat.innerSize()-1))); }
191 };
192 using rvp = py::return_value_policy;
193 py::class_<ReturnTester>(m, "ReturnTester")
194 .def(py::init<>())
195 .def_static("create", &ReturnTester::create)
196 .def_static("create_const", &ReturnTester::createConst)
197 .def("get", &ReturnTester::get, rvp::reference_internal)
198 .def("get_ptr", &ReturnTester::getPtr, rvp::reference_internal)
199 .def("view", &ReturnTester::view, rvp::reference_internal)
200 .def("view_ptr", &ReturnTester::view, rvp::reference_internal)
201 .def("copy_get", &ReturnTester::get) // Default rvp: copy
202 .def("copy_view", &ReturnTester::view) // "
203 .def("ref", &ReturnTester::ref) // Default for Ref is to reference
204 .def("ref_const", &ReturnTester::refConst) // Likewise, but const
205 .def("ref_safe", &ReturnTester::ref, rvp::reference_internal)
206 .def("ref_const_safe", &ReturnTester::refConst, rvp::reference_internal)
207 .def("copy_ref", &ReturnTester::ref, rvp::copy)
208 .def("copy_ref_const", &ReturnTester::refConst, rvp::copy)
209 .def("block", &ReturnTester::block)
210 .def("block_safe", &ReturnTester::block, rvp::reference_internal)
211 .def("block_const", &ReturnTester::blockConst, rvp::reference_internal)
212 .def("copy_block", &ReturnTester::block, rvp::copy)
213 .def("corners", &ReturnTester::corners, rvp::reference_internal)
214 .def("corners_const", &ReturnTester::cornersConst, rvp::reference_internal)
215 ;
216
Jason Rhinelander391c7542017-07-25 16:47:36 -0400217 // test_special_matrix_objects
Jason Rhinelander9ffb3dd2016-08-04 15:24:41 -0400218 // Returns a DiagonalMatrix with diagonal (1,2,3,...)
219 m.def("incr_diag", [](int k) {
220 Eigen::DiagonalMatrix<int, Eigen::Dynamic> m(k);
221 for (int i = 0; i < k; i++) m.diagonal()[i] = i+1;
222 return m;
223 });
224
225 // Returns a SelfAdjointView referencing the lower triangle of m
226 m.def("symmetric_lower", [](const Eigen::MatrixXi &m) {
227 return m.selfadjointView<Eigen::Lower>();
228 });
229 // Returns a SelfAdjointView referencing the lower triangle of m
230 m.def("symmetric_upper", [](const Eigen::MatrixXi &m) {
231 return m.selfadjointView<Eigen::Upper>();
232 });
233
Jason Rhinelander17d02832017-01-16 20:35:14 -0500234 // Test matrix for various functions below.
235 Eigen::MatrixXf mat(5, 6);
236 mat << 0, 3, 0, 0, 0, 11,
237 22, 0, 0, 0, 17, 11,
238 7, 5, 0, 1, 0, 11,
239 0, 0, 0, 0, 0, 11,
240 0, 0, 14, 0, 8, 11;
Wenzel Jakob9e0a0562016-05-05 20:33:54 +0200241
Jason Rhinelander391c7542017-07-25 16:47:36 -0400242 // test_fixed, and various other tests
Jason Rhinelander17d02832017-01-16 20:35:14 -0500243 m.def("fixed_r", [mat]() -> FixedMatrixR { return FixedMatrixR(mat); });
244 m.def("fixed_r_const", [mat]() -> const FixedMatrixR { return FixedMatrixR(mat); });
245 m.def("fixed_c", [mat]() -> FixedMatrixC { return FixedMatrixC(mat); });
246 m.def("fixed_copy_r", [](const FixedMatrixR &m) -> FixedMatrixR { return m; });
247 m.def("fixed_copy_c", [](const FixedMatrixC &m) -> FixedMatrixC { return m; });
Jason Rhinelander391c7542017-07-25 16:47:36 -0400248 // test_mutator_descriptors
Jason Rhinelander17d02832017-01-16 20:35:14 -0500249 m.def("fixed_mutator_r", [](Eigen::Ref<FixedMatrixR>) {});
250 m.def("fixed_mutator_c", [](Eigen::Ref<FixedMatrixC>) {});
251 m.def("fixed_mutator_a", [](py::EigenDRef<FixedMatrixC>) {});
Jason Rhinelander391c7542017-07-25 16:47:36 -0400252 // test_dense
Jason Rhinelander17d02832017-01-16 20:35:14 -0500253 m.def("dense_r", [mat]() -> DenseMatrixR { return DenseMatrixR(mat); });
254 m.def("dense_c", [mat]() -> DenseMatrixC { return DenseMatrixC(mat); });
255 m.def("dense_copy_r", [](const DenseMatrixR &m) -> DenseMatrixR { return m; });
256 m.def("dense_copy_c", [](const DenseMatrixC &m) -> DenseMatrixC { return m; });
Jason Rhinelander391c7542017-07-25 16:47:36 -0400257 // test_sparse, test_sparse_signature
Jason Rhinelander17d02832017-01-16 20:35:14 -0500258 m.def("sparse_r", [mat]() -> SparseMatrixR { return Eigen::SparseView<Eigen::MatrixXf>(mat); });
259 m.def("sparse_c", [mat]() -> SparseMatrixC { return Eigen::SparseView<Eigen::MatrixXf>(mat); });
260 m.def("sparse_copy_r", [](const SparseMatrixR &m) -> SparseMatrixR { return m; });
261 m.def("sparse_copy_c", [](const SparseMatrixC &m) -> SparseMatrixC { return m; });
Jason Rhinelander391c7542017-07-25 16:47:36 -0400262 // test_partially_fixed
Jason Rhinelander17d02832017-01-16 20:35:14 -0500263 m.def("partial_copy_four_rm_r", [](const FourRowMatrixR &m) -> FourRowMatrixR { return m; });
264 m.def("partial_copy_four_rm_c", [](const FourColMatrixR &m) -> FourColMatrixR { return m; });
265 m.def("partial_copy_four_cm_r", [](const FourRowMatrixC &m) -> FourRowMatrixC { return m; });
266 m.def("partial_copy_four_cm_c", [](const FourColMatrixC &m) -> FourColMatrixC { return m; });
Wenzel Jakob9e0a0562016-05-05 20:33:54 +0200267
Jason Rhinelander391c7542017-07-25 16:47:36 -0400268 // test_cpp_casting
Jason Rhinelander17d02832017-01-16 20:35:14 -0500269 // Test that we can cast a numpy object to a Eigen::MatrixXd explicitly
270 m.def("cpp_copy", [](py::handle m) { return m.cast<Eigen::MatrixXd>()(1, 0); });
271 m.def("cpp_ref_c", [](py::handle m) { return m.cast<Eigen::Ref<Eigen::MatrixXd>>()(1, 0); });
272 m.def("cpp_ref_r", [](py::handle m) { return m.cast<Eigen::Ref<MatrixXdR>>()(1, 0); });
273 m.def("cpp_ref_any", [](py::handle m) { return m.cast<py::EigenDRef<Eigen::MatrixXd>>()(1, 0); });
Wenzel Jakob9e0a0562016-05-05 20:33:54 +0200274
Wenzel Jakob9e0a0562016-05-05 20:33:54 +0200275
Jason Rhinelander391c7542017-07-25 16:47:36 -0400276 // test_nocopy_wrapper
Jason Rhinelander17d02832017-01-16 20:35:14 -0500277 // Test that we can prevent copying into an argument that would normally copy: First a version
278 // that would allow copying (if types or strides don't match) for comparison:
279 m.def("get_elem", &get_elem);
280 // Now this alternative that calls the tells pybind to fail rather than copy:
281 m.def("get_elem_nocopy", [](Eigen::Ref<const Eigen::MatrixXd> m) -> double { return get_elem(m); },
282 py::arg().noconvert());
283 // Also test a row-major-only no-copy const ref:
284 m.def("get_elem_rm_nocopy", [](Eigen::Ref<const Eigen::Matrix<long, -1, -1, Eigen::RowMajor>> &m) -> long { return m(2, 1); },
285 py::arg().noconvert());
Jason Rhinelanderefa87262017-03-17 14:51:52 -0300286
Jason Rhinelander391c7542017-07-25 16:47:36 -0400287 // test_issue738
Jason Rhinelanderefa87262017-03-17 14:51:52 -0300288 // Issue #738: 1xN or Nx1 2D matrices were neither accepted nor properly copied with an
289 // incompatible stride value on the length-1 dimension--but that should be allowed (without
290 // requiring a copy!) because the stride value can be safely ignored on a size-1 dimension.
291 m.def("iss738_f1", &adjust_matrix<const Eigen::Ref<const Eigen::MatrixXd> &>, py::arg().noconvert());
292 m.def("iss738_f2", &adjust_matrix<const Eigen::Ref<const Eigen::Matrix<double, -1, -1, Eigen::RowMajor>> &>, py::arg().noconvert());
Dean Moldovan0d765f42017-03-21 01:15:20 +0100293
Jason Rhinelander6a81dbb2017-09-21 19:09:39 -0300294 // test_issue1105
295 // Issue #1105: when converting from a numpy two-dimensional (Nx1) or (1xN) value into a dense
296 // eigen Vector or RowVector, the argument would fail to load because the numpy copy would fail:
297 // numpy won't broadcast a Nx1 into a 1-dimensional vector.
298 m.def("iss1105_col", [](Eigen::VectorXd) { return true; });
299 m.def("iss1105_row", [](Eigen::RowVectorXd) { return true; });
300
Jason Rhinelander391c7542017-07-25 16:47:36 -0400301 // test_named_arguments
Jason Rhinelandere9e17742017-04-08 19:26:42 -0400302 // Make sure named arguments are working properly:
303 m.def("matrix_multiply", [](const py::EigenDRef<const Eigen::MatrixXd> A, const py::EigenDRef<const Eigen::MatrixXd> B)
304 -> Eigen::MatrixXd {
305 if (A.cols() != B.rows()) throw std::domain_error("Nonconformable matrices!");
306 return A * B;
307 }, py::arg("A"), py::arg("B"));
308
Jason Rhinelander391c7542017-07-25 16:47:36 -0400309 // test_custom_operator_new
Dean Moldovan0d765f42017-03-21 01:15:20 +0100310 py::class_<CustomOperatorNew>(m, "CustomOperatorNew")
311 .def(py::init<>())
312 .def_readonly("a", &CustomOperatorNew::a)
313 .def_readonly("b", &CustomOperatorNew::b);
Dean Moldovan30f6c3b2017-06-26 23:20:39 +0200314
315 // test_eigen_ref_life_support
316 // In case of a failure (the caster's temp array does not live long enough), creating
317 // a new array (np.ones(10)) increases the chances that the temp array will be garbage
318 // collected and/or that its memory will be overridden with different values.
319 m.def("get_elem_direct", [](Eigen::Ref<const Eigen::VectorXd> v) {
320 py::module::import("numpy").attr("ones")(10);
321 return v(5);
322 });
323 m.def("get_elem_indirect", [](std::vector<Eigen::Ref<const Eigen::VectorXd>> v) {
324 py::module::import("numpy").attr("ones")(10);
325 return v[0](5);
326 });
Jason Rhinelander391c7542017-07-25 16:47:36 -0400327}