test_sequences_and_iterators.cpp revision 12391
111986Sandreas.sandberg@arm.com/*
211986Sandreas.sandberg@arm.com    tests/test_sequences_and_iterators.cpp -- supporting Pythons' sequence protocol, iterators,
311986Sandreas.sandberg@arm.com    etc.
411986Sandreas.sandberg@arm.com
511986Sandreas.sandberg@arm.com    Copyright (c) 2016 Wenzel Jakob <wenzel.jakob@epfl.ch>
611986Sandreas.sandberg@arm.com
711986Sandreas.sandberg@arm.com    All rights reserved. Use of this source code is governed by a
811986Sandreas.sandberg@arm.com    BSD-style license that can be found in the LICENSE file.
911986Sandreas.sandberg@arm.com*/
1011986Sandreas.sandberg@arm.com
1111986Sandreas.sandberg@arm.com#include "pybind11_tests.h"
1211986Sandreas.sandberg@arm.com#include "constructor_stats.h"
1311986Sandreas.sandberg@arm.com#include <pybind11/operators.h>
1411986Sandreas.sandberg@arm.com#include <pybind11/stl.h>
1511986Sandreas.sandberg@arm.com
1611986Sandreas.sandberg@arm.comtemplate<typename T>
1711986Sandreas.sandberg@arm.comclass NonZeroIterator {
1811986Sandreas.sandberg@arm.com    const T* ptr_;
1911986Sandreas.sandberg@arm.compublic:
2011986Sandreas.sandberg@arm.com    NonZeroIterator(const T* ptr) : ptr_(ptr) {}
2111986Sandreas.sandberg@arm.com    const T& operator*() const { return *ptr_; }
2211986Sandreas.sandberg@arm.com    NonZeroIterator& operator++() { ++ptr_; return *this; }
2311986Sandreas.sandberg@arm.com};
2411986Sandreas.sandberg@arm.com
2511986Sandreas.sandberg@arm.comclass NonZeroSentinel {};
2611986Sandreas.sandberg@arm.com
2711986Sandreas.sandberg@arm.comtemplate<typename A, typename B>
2811986Sandreas.sandberg@arm.combool operator==(const NonZeroIterator<std::pair<A, B>>& it, const NonZeroSentinel&) {
2911986Sandreas.sandberg@arm.com    return !(*it).first || !(*it).second;
3011986Sandreas.sandberg@arm.com}
3111986Sandreas.sandberg@arm.com
3212037Sandreas.sandberg@arm.comtemplate <typename PythonType>
3312037Sandreas.sandberg@arm.compy::list test_random_access_iterator(PythonType x) {
3412037Sandreas.sandberg@arm.com    if (x.size() < 5)
3512037Sandreas.sandberg@arm.com        throw py::value_error("Please provide at least 5 elements for testing.");
3612037Sandreas.sandberg@arm.com
3712037Sandreas.sandberg@arm.com    auto checks = py::list();
3812037Sandreas.sandberg@arm.com    auto assert_equal = [&checks](py::handle a, py::handle b) {
3912037Sandreas.sandberg@arm.com        auto result = PyObject_RichCompareBool(a.ptr(), b.ptr(), Py_EQ);
4012037Sandreas.sandberg@arm.com        if (result == -1) { throw py::error_already_set(); }
4112037Sandreas.sandberg@arm.com        checks.append(result != 0);
4212037Sandreas.sandberg@arm.com    };
4312037Sandreas.sandberg@arm.com
4412037Sandreas.sandberg@arm.com    auto it = x.begin();
4512037Sandreas.sandberg@arm.com    assert_equal(x[0], *it);
4612037Sandreas.sandberg@arm.com    assert_equal(x[0], it[0]);
4712037Sandreas.sandberg@arm.com    assert_equal(x[1], it[1]);
4812037Sandreas.sandberg@arm.com
4912037Sandreas.sandberg@arm.com    assert_equal(x[1], *(++it));
5012037Sandreas.sandberg@arm.com    assert_equal(x[1], *(it++));
5112037Sandreas.sandberg@arm.com    assert_equal(x[2], *it);
5212037Sandreas.sandberg@arm.com    assert_equal(x[3], *(it += 1));
5312037Sandreas.sandberg@arm.com    assert_equal(x[2], *(--it));
5412037Sandreas.sandberg@arm.com    assert_equal(x[2], *(it--));
5512037Sandreas.sandberg@arm.com    assert_equal(x[1], *it);
5612037Sandreas.sandberg@arm.com    assert_equal(x[0], *(it -= 1));
5712037Sandreas.sandberg@arm.com
5812037Sandreas.sandberg@arm.com    assert_equal(it->attr("real"), x[0].attr("real"));
5912037Sandreas.sandberg@arm.com    assert_equal((it + 1)->attr("real"), x[1].attr("real"));
6012037Sandreas.sandberg@arm.com
6112037Sandreas.sandberg@arm.com    assert_equal(x[1], *(it + 1));
6212037Sandreas.sandberg@arm.com    assert_equal(x[1], *(1 + it));
6312037Sandreas.sandberg@arm.com    it += 3;
6412037Sandreas.sandberg@arm.com    assert_equal(x[1], *(it - 2));
6512037Sandreas.sandberg@arm.com
6612037Sandreas.sandberg@arm.com    checks.append(static_cast<std::size_t>(x.end() - x.begin()) == x.size());
6712037Sandreas.sandberg@arm.com    checks.append((x.begin() + static_cast<std::ptrdiff_t>(x.size())) == x.end());
6812037Sandreas.sandberg@arm.com    checks.append(x.begin() < x.end());
6912037Sandreas.sandberg@arm.com
7012037Sandreas.sandberg@arm.com    return checks;
7112037Sandreas.sandberg@arm.com}
7212037Sandreas.sandberg@arm.com
7312391Sjason@lowepower.comTEST_SUBMODULE(sequences_and_iterators, m) {
7411986Sandreas.sandberg@arm.com
7512391Sjason@lowepower.com    // test_sequence
7612391Sjason@lowepower.com    class Sequence {
7712391Sjason@lowepower.com    public:
7812391Sjason@lowepower.com        Sequence(size_t size) : m_size(size) {
7912391Sjason@lowepower.com            print_created(this, "of size", m_size);
8012391Sjason@lowepower.com            m_data = new float[size];
8112391Sjason@lowepower.com            memset(m_data, 0, sizeof(float) * size);
8212391Sjason@lowepower.com        }
8312391Sjason@lowepower.com        Sequence(const std::vector<float> &value) : m_size(value.size()) {
8412391Sjason@lowepower.com            print_created(this, "of size", m_size, "from std::vector");
8512391Sjason@lowepower.com            m_data = new float[m_size];
8612391Sjason@lowepower.com            memcpy(m_data, &value[0], sizeof(float) * m_size);
8712391Sjason@lowepower.com        }
8812391Sjason@lowepower.com        Sequence(const Sequence &s) : m_size(s.m_size) {
8912391Sjason@lowepower.com            print_copy_created(this);
9012391Sjason@lowepower.com            m_data = new float[m_size];
9112391Sjason@lowepower.com            memcpy(m_data, s.m_data, sizeof(float)*m_size);
9212391Sjason@lowepower.com        }
9312391Sjason@lowepower.com        Sequence(Sequence &&s) : m_size(s.m_size), m_data(s.m_data) {
9412391Sjason@lowepower.com            print_move_created(this);
9512391Sjason@lowepower.com            s.m_size = 0;
9612391Sjason@lowepower.com            s.m_data = nullptr;
9712391Sjason@lowepower.com        }
9811986Sandreas.sandberg@arm.com
9912391Sjason@lowepower.com        ~Sequence() { print_destroyed(this); delete[] m_data; }
10012391Sjason@lowepower.com
10112391Sjason@lowepower.com        Sequence &operator=(const Sequence &s) {
10212391Sjason@lowepower.com            if (&s != this) {
10312391Sjason@lowepower.com                delete[] m_data;
10412391Sjason@lowepower.com                m_size = s.m_size;
10512391Sjason@lowepower.com                m_data = new float[m_size];
10612391Sjason@lowepower.com                memcpy(m_data, s.m_data, sizeof(float)*m_size);
10712391Sjason@lowepower.com            }
10812391Sjason@lowepower.com            print_copy_assigned(this);
10912391Sjason@lowepower.com            return *this;
11012391Sjason@lowepower.com        }
11112391Sjason@lowepower.com
11212391Sjason@lowepower.com        Sequence &operator=(Sequence &&s) {
11312391Sjason@lowepower.com            if (&s != this) {
11412391Sjason@lowepower.com                delete[] m_data;
11512391Sjason@lowepower.com                m_size = s.m_size;
11612391Sjason@lowepower.com                m_data = s.m_data;
11712391Sjason@lowepower.com                s.m_size = 0;
11812391Sjason@lowepower.com                s.m_data = nullptr;
11912391Sjason@lowepower.com            }
12012391Sjason@lowepower.com            print_move_assigned(this);
12112391Sjason@lowepower.com            return *this;
12212391Sjason@lowepower.com        }
12312391Sjason@lowepower.com
12412391Sjason@lowepower.com        bool operator==(const Sequence &s) const {
12512391Sjason@lowepower.com            if (m_size != s.size()) return false;
12612391Sjason@lowepower.com            for (size_t i = 0; i < m_size; ++i)
12712391Sjason@lowepower.com                if (m_data[i] != s[i])
12812391Sjason@lowepower.com                    return false;
12912391Sjason@lowepower.com            return true;
13012391Sjason@lowepower.com        }
13112391Sjason@lowepower.com        bool operator!=(const Sequence &s) const { return !operator==(s); }
13212391Sjason@lowepower.com
13312391Sjason@lowepower.com        float operator[](size_t index) const { return m_data[index]; }
13412391Sjason@lowepower.com        float &operator[](size_t index) { return m_data[index]; }
13512391Sjason@lowepower.com
13612391Sjason@lowepower.com        bool contains(float v) const {
13712391Sjason@lowepower.com            for (size_t i = 0; i < m_size; ++i)
13812391Sjason@lowepower.com                if (v == m_data[i])
13912391Sjason@lowepower.com                    return true;
14012391Sjason@lowepower.com            return false;
14112391Sjason@lowepower.com        }
14212391Sjason@lowepower.com
14312391Sjason@lowepower.com        Sequence reversed() const {
14412391Sjason@lowepower.com            Sequence result(m_size);
14512391Sjason@lowepower.com            for (size_t i = 0; i < m_size; ++i)
14612391Sjason@lowepower.com                result[m_size - i - 1] = m_data[i];
14712391Sjason@lowepower.com            return result;
14812391Sjason@lowepower.com        }
14912391Sjason@lowepower.com
15012391Sjason@lowepower.com        size_t size() const { return m_size; }
15112391Sjason@lowepower.com
15212391Sjason@lowepower.com        const float *begin() const { return m_data; }
15312391Sjason@lowepower.com        const float *end() const { return m_data+m_size; }
15412391Sjason@lowepower.com
15512391Sjason@lowepower.com    private:
15612391Sjason@lowepower.com        size_t m_size;
15712391Sjason@lowepower.com        float *m_data;
15812391Sjason@lowepower.com    };
15912391Sjason@lowepower.com    py::class_<Sequence>(m, "Sequence")
16012391Sjason@lowepower.com        .def(py::init<size_t>())
16112391Sjason@lowepower.com        .def(py::init<const std::vector<float>&>())
16212391Sjason@lowepower.com        /// Bare bones interface
16312391Sjason@lowepower.com        .def("__getitem__", [](const Sequence &s, size_t i) {
16412391Sjason@lowepower.com            if (i >= s.size()) throw py::index_error();
16511986Sandreas.sandberg@arm.com            return s[i];
16611986Sandreas.sandberg@arm.com        })
16712391Sjason@lowepower.com        .def("__setitem__", [](Sequence &s, size_t i, float v) {
16812391Sjason@lowepower.com            if (i >= s.size()) throw py::index_error();
16911986Sandreas.sandberg@arm.com            s[i] = v;
17011986Sandreas.sandberg@arm.com        })
17112391Sjason@lowepower.com        .def("__len__", &Sequence::size)
17212391Sjason@lowepower.com        /// Optional sequence protocol operations
17312391Sjason@lowepower.com        .def("__iter__", [](const Sequence &s) { return py::make_iterator(s.begin(), s.end()); },
17412391Sjason@lowepower.com                         py::keep_alive<0, 1>() /* Essential: keep object alive while iterator exists */)
17512391Sjason@lowepower.com        .def("__contains__", [](const Sequence &s, float v) { return s.contains(v); })
17612391Sjason@lowepower.com        .def("__reversed__", [](const Sequence &s) -> Sequence { return s.reversed(); })
17712391Sjason@lowepower.com        /// Slicing protocol (optional)
17812391Sjason@lowepower.com        .def("__getitem__", [](const Sequence &s, py::slice slice) -> Sequence* {
17911986Sandreas.sandberg@arm.com            size_t start, stop, step, slicelength;
18011986Sandreas.sandberg@arm.com            if (!slice.compute(s.size(), &start, &stop, &step, &slicelength))
18111986Sandreas.sandberg@arm.com                throw py::error_already_set();
18211986Sandreas.sandberg@arm.com            Sequence *seq = new Sequence(slicelength);
18312391Sjason@lowepower.com            for (size_t i = 0; i < slicelength; ++i) {
18411986Sandreas.sandberg@arm.com                (*seq)[i] = s[start]; start += step;
18511986Sandreas.sandberg@arm.com            }
18611986Sandreas.sandberg@arm.com            return seq;
18711986Sandreas.sandberg@arm.com        })
18812391Sjason@lowepower.com        .def("__setitem__", [](Sequence &s, py::slice slice, const Sequence &value) {
18911986Sandreas.sandberg@arm.com            size_t start, stop, step, slicelength;
19011986Sandreas.sandberg@arm.com            if (!slice.compute(s.size(), &start, &stop, &step, &slicelength))
19111986Sandreas.sandberg@arm.com                throw py::error_already_set();
19211986Sandreas.sandberg@arm.com            if (slicelength != value.size())
19311986Sandreas.sandberg@arm.com                throw std::runtime_error("Left and right hand size of slice assignment have different sizes!");
19412391Sjason@lowepower.com            for (size_t i = 0; i < slicelength; ++i) {
19511986Sandreas.sandberg@arm.com                s[start] = value[i]; start += step;
19611986Sandreas.sandberg@arm.com            }
19711986Sandreas.sandberg@arm.com        })
19812391Sjason@lowepower.com        /// Comparisons
19912391Sjason@lowepower.com        .def(py::self == py::self)
20012391Sjason@lowepower.com        .def(py::self != py::self)
20112391Sjason@lowepower.com        // Could also define py::self + py::self for concatenation, etc.
20212391Sjason@lowepower.com        ;
20311986Sandreas.sandberg@arm.com
20412391Sjason@lowepower.com    // test_map_iterator
20512391Sjason@lowepower.com    // Interface of a map-like object that isn't (directly) an unordered_map, but provides some basic
20612391Sjason@lowepower.com    // map-like functionality.
20712391Sjason@lowepower.com    class StringMap {
20812391Sjason@lowepower.com    public:
20912391Sjason@lowepower.com        StringMap() = default;
21012391Sjason@lowepower.com        StringMap(std::unordered_map<std::string, std::string> init)
21112391Sjason@lowepower.com            : map(std::move(init)) {}
21211986Sandreas.sandberg@arm.com
21312391Sjason@lowepower.com        void set(std::string key, std::string val) { map[key] = val; }
21412391Sjason@lowepower.com        std::string get(std::string key) const { return map.at(key); }
21512391Sjason@lowepower.com        size_t size() const { return map.size(); }
21612391Sjason@lowepower.com    private:
21712391Sjason@lowepower.com        std::unordered_map<std::string, std::string> map;
21812391Sjason@lowepower.com    public:
21912391Sjason@lowepower.com        decltype(map.cbegin()) begin() const { return map.cbegin(); }
22012391Sjason@lowepower.com        decltype(map.cend()) end() const { return map.cend(); }
22112391Sjason@lowepower.com    };
22212391Sjason@lowepower.com    py::class_<StringMap>(m, "StringMap")
22312391Sjason@lowepower.com        .def(py::init<>())
22411986Sandreas.sandberg@arm.com        .def(py::init<std::unordered_map<std::string, std::string>>())
22511986Sandreas.sandberg@arm.com        .def("__getitem__", [](const StringMap &map, std::string key) {
22611986Sandreas.sandberg@arm.com                try { return map.get(key); }
22711986Sandreas.sandberg@arm.com                catch (const std::out_of_range&) {
22811986Sandreas.sandberg@arm.com                    throw py::key_error("key '" + key + "' does not exist");
22911986Sandreas.sandberg@arm.com                }
23012391Sjason@lowepower.com        })
23111986Sandreas.sandberg@arm.com        .def("__setitem__", &StringMap::set)
23211986Sandreas.sandberg@arm.com        .def("__len__", &StringMap::size)
23311986Sandreas.sandberg@arm.com        .def("__iter__", [](const StringMap &map) { return py::make_key_iterator(map.begin(), map.end()); },
23411986Sandreas.sandberg@arm.com                py::keep_alive<0, 1>())
23511986Sandreas.sandberg@arm.com        .def("items", [](const StringMap &map) { return py::make_iterator(map.begin(), map.end()); },
23611986Sandreas.sandberg@arm.com                py::keep_alive<0, 1>())
23711986Sandreas.sandberg@arm.com        ;
23811986Sandreas.sandberg@arm.com
23912391Sjason@lowepower.com    // test_generalized_iterators
24012391Sjason@lowepower.com    class IntPairs {
24112391Sjason@lowepower.com    public:
24212391Sjason@lowepower.com        IntPairs(std::vector<std::pair<int, int>> data) : data_(std::move(data)) {}
24312391Sjason@lowepower.com        const std::pair<int, int>* begin() const { return data_.data(); }
24412391Sjason@lowepower.com    private:
24512391Sjason@lowepower.com        std::vector<std::pair<int, int>> data_;
24612391Sjason@lowepower.com    };
24711986Sandreas.sandberg@arm.com    py::class_<IntPairs>(m, "IntPairs")
24811986Sandreas.sandberg@arm.com        .def(py::init<std::vector<std::pair<int, int>>>())
24911986Sandreas.sandberg@arm.com        .def("nonzero", [](const IntPairs& s) {
25011986Sandreas.sandberg@arm.com                return py::make_iterator(NonZeroIterator<std::pair<int, int>>(s.begin()), NonZeroSentinel());
25112391Sjason@lowepower.com        }, py::keep_alive<0, 1>())
25211986Sandreas.sandberg@arm.com        .def("nonzero_keys", [](const IntPairs& s) {
25311986Sandreas.sandberg@arm.com            return py::make_key_iterator(NonZeroIterator<std::pair<int, int>>(s.begin()), NonZeroSentinel());
25412391Sjason@lowepower.com        }, py::keep_alive<0, 1>())
25512391Sjason@lowepower.com        ;
25611986Sandreas.sandberg@arm.com
25711986Sandreas.sandberg@arm.com
25811986Sandreas.sandberg@arm.com#if 0
25911986Sandreas.sandberg@arm.com    // Obsolete: special data structure for exposing custom iterator types to python
26011986Sandreas.sandberg@arm.com    // kept here for illustrative purposes because there might be some use cases which
26111986Sandreas.sandberg@arm.com    // are not covered by the much simpler py::make_iterator
26211986Sandreas.sandberg@arm.com
26311986Sandreas.sandberg@arm.com    struct PySequenceIterator {
26411986Sandreas.sandberg@arm.com        PySequenceIterator(const Sequence &seq, py::object ref) : seq(seq), ref(ref) { }
26511986Sandreas.sandberg@arm.com
26611986Sandreas.sandberg@arm.com        float next() {
26711986Sandreas.sandberg@arm.com            if (index == seq.size())
26811986Sandreas.sandberg@arm.com                throw py::stop_iteration();
26911986Sandreas.sandberg@arm.com            return seq[index++];
27011986Sandreas.sandberg@arm.com        }
27111986Sandreas.sandberg@arm.com
27211986Sandreas.sandberg@arm.com        const Sequence &seq;
27311986Sandreas.sandberg@arm.com        py::object ref; // keep a reference
27411986Sandreas.sandberg@arm.com        size_t index = 0;
27511986Sandreas.sandberg@arm.com    };
27611986Sandreas.sandberg@arm.com
27711986Sandreas.sandberg@arm.com    py::class_<PySequenceIterator>(seq, "Iterator")
27811986Sandreas.sandberg@arm.com        .def("__iter__", [](PySequenceIterator &it) -> PySequenceIterator& { return it; })
27911986Sandreas.sandberg@arm.com        .def("__next__", &PySequenceIterator::next);
28011986Sandreas.sandberg@arm.com
28111986Sandreas.sandberg@arm.com    On the actual Sequence object, the iterator would be constructed as follows:
28211986Sandreas.sandberg@arm.com    .def("__iter__", [](py::object s) { return PySequenceIterator(s.cast<const Sequence &>(), s); })
28311986Sandreas.sandberg@arm.com#endif
28412037Sandreas.sandberg@arm.com
28512391Sjason@lowepower.com    // test_python_iterator_in_cpp
28612037Sandreas.sandberg@arm.com    m.def("object_to_list", [](py::object o) {
28712037Sandreas.sandberg@arm.com        auto l = py::list();
28812037Sandreas.sandberg@arm.com        for (auto item : o) {
28912037Sandreas.sandberg@arm.com            l.append(item);
29012037Sandreas.sandberg@arm.com        }
29112037Sandreas.sandberg@arm.com        return l;
29212037Sandreas.sandberg@arm.com    });
29312037Sandreas.sandberg@arm.com
29412037Sandreas.sandberg@arm.com    m.def("iterator_to_list", [](py::iterator it) {
29512037Sandreas.sandberg@arm.com        auto l = py::list();
29612037Sandreas.sandberg@arm.com        while (it != py::iterator::sentinel()) {
29712037Sandreas.sandberg@arm.com            l.append(*it);
29812037Sandreas.sandberg@arm.com            ++it;
29912037Sandreas.sandberg@arm.com        }
30012037Sandreas.sandberg@arm.com        return l;
30112037Sandreas.sandberg@arm.com    });
30212037Sandreas.sandberg@arm.com
30312037Sandreas.sandberg@arm.com    // Make sure that py::iterator works with std algorithms
30412037Sandreas.sandberg@arm.com    m.def("count_none", [](py::object o) {
30512037Sandreas.sandberg@arm.com        return std::count_if(o.begin(), o.end(), [](py::handle h) { return h.is_none(); });
30612037Sandreas.sandberg@arm.com    });
30712037Sandreas.sandberg@arm.com
30812037Sandreas.sandberg@arm.com    m.def("find_none", [](py::object o) {
30912037Sandreas.sandberg@arm.com        auto it = std::find_if(o.begin(), o.end(), [](py::handle h) { return h.is_none(); });
31012037Sandreas.sandberg@arm.com        return it->is_none();
31112037Sandreas.sandberg@arm.com    });
31212037Sandreas.sandberg@arm.com
31312037Sandreas.sandberg@arm.com    m.def("count_nonzeros", [](py::dict d) {
31412037Sandreas.sandberg@arm.com       return std::count_if(d.begin(), d.end(), [](std::pair<py::handle, py::handle> p) {
31512037Sandreas.sandberg@arm.com           return p.second.cast<int>() != 0;
31612037Sandreas.sandberg@arm.com       });
31712037Sandreas.sandberg@arm.com    });
31812037Sandreas.sandberg@arm.com
31912391Sjason@lowepower.com    m.def("tuple_iterator", &test_random_access_iterator<py::tuple>);
32012391Sjason@lowepower.com    m.def("list_iterator", &test_random_access_iterator<py::list>);
32112391Sjason@lowepower.com    m.def("sequence_iterator", &test_random_access_iterator<py::sequence>);
32212391Sjason@lowepower.com
32312391Sjason@lowepower.com    // test_iterator_passthrough
32412391Sjason@lowepower.com    // #181: iterator passthrough did not compile
32512391Sjason@lowepower.com    m.def("iterator_passthrough", [](py::iterator s) -> py::iterator {
32612391Sjason@lowepower.com        return py::make_iterator(std::begin(s), std::end(s));
32712391Sjason@lowepower.com    });
32812391Sjason@lowepower.com
32912391Sjason@lowepower.com    // test_iterator_rvp
33012391Sjason@lowepower.com    // #388: Can't make iterators via make_iterator() with different r/v policies
33112391Sjason@lowepower.com    static std::vector<int> list = { 1, 2, 3 };
33212391Sjason@lowepower.com    m.def("make_iterator_1", []() { return py::make_iterator<py::return_value_policy::copy>(list); });
33312391Sjason@lowepower.com    m.def("make_iterator_2", []() { return py::make_iterator<py::return_value_policy::automatic>(list); });
33412391Sjason@lowepower.com}
335