10#include <pybind11/numpy.h> 
   11#include <pybind11/stl.h> 
   26    py::module_ np = py::module_::import(
"numpy");
 
   28    check.numpy = np.attr(
"dtype")(np.attr(
name));
 
   29    check.pybind11 = py::dtype::of<T>();
 
   35            get_dtype_check<std::int8_t>(
"int8"),
 
   36            get_dtype_check<std::uint8_t>(
"uint8"),
 
   37            get_dtype_check<std::int16_t>(
"int16"),
 
   38            get_dtype_check<std::uint16_t>(
"uint16"),
 
   39            get_dtype_check<std::int32_t>(
"int32"),
 
   40            get_dtype_check<std::uint32_t>(
"uint32"),
 
   41            get_dtype_check<std::int64_t>(
"int64"),
 
   42            get_dtype_check<std::uint64_t>(
"uint64")};
 
   56    check.name = py::type_id<T>();
 
   57    check.size_cpp = 
sizeof(T);
 
   58    check.dtype = py::dtype::of<T>();
 
   59    check.size_numpy = check.dtype.attr(
"itemsize").template cast<int>();
 
   65        get_dtype_size_check<short>(),
 
   66        get_dtype_size_check<unsigned short>(),
 
   67        get_dtype_size_check<int>(),
 
   68        get_dtype_size_check<unsigned int>(),
 
   69        get_dtype_size_check<long>(),
 
   70        get_dtype_size_check<unsigned long>(),
 
   71        get_dtype_size_check<long long>(),
 
   72        get_dtype_size_check<unsigned long long>(),
 
   78using arr_t = py::array_t<uint16_t, 0>;
 
   79static_assert(std::is_same<arr_t::value_type, uint16_t>::value, 
"");
 
   81template <
typename... Ix>
 
   83    return arr(a.nbytes() - a.offset_at(index...), (
const uint8_t *) a.data(index...));
 
   86template <
typename... Ix>
 
   88    return arr(a.size() - a.index_at(index...), a.data(index...));
 
   91template <
typename... Ix>
 
   93    auto *ptr = (uint8_t *) a.mutable_data(index...);
 
   94    for (py::ssize_t i = 0; i < a.nbytes() - a.offset_at(index...); i++) {
 
   95        ptr[i] = (uint8_t) (ptr[i] * 2);
 
  100template <
typename... Ix>
 
  102    auto ptr = a.mutable_data(index...);
 
  103    for (py::ssize_t i = 0; i < a.size() - a.index_at(index...); i++) {
 
  109template <
typename... Ix>
 
  111    return a.index_at(idx...);
 
  113template <
typename... Ix>
 
  115    return a.index_at(idx...);
 
  117template <
typename... Ix>
 
  119    return a.offset_at(idx...);
 
  121template <
typename... Ix>
 
  123    return a.offset_at(idx...);
 
  125template <
typename... Ix>
 
  129template <
typename... Ix>
 
  131    a.mutable_at(idx...)++;
 
  135#define def_index_fn(name, type)                                                                  \ 
  136    sm.def(#name, [](type a) { return name(a); });                                                \ 
  137    sm.def(#name, [](type a, int i) { return name(a, i); });                                      \ 
  138    sm.def(#name, [](type a, int i, int j) { return name(a, i, j); });                            \ 
  139    sm.def(#name, [](type a, int i, int j, int k) { return name(a, i, j, k); }); 
  141template <
typename T, 
typename T2>
 
  144        throw std::domain_error(
"error: ndim != 2");
 
  147    l.append(*r.data(0, 0));
 
  148    l.append(*r2.mutable_data(0, 0));
 
  149    l.append(r.data(0, 1) == r2.mutable_data(0, 1));
 
  151    l.append(r.itemsize());
 
  152    l.append(r.shape(0));
 
  153    l.append(r.shape(1));
 
  155    l.append(r.nbytes());
 
  164        py::module_::import(
"numpy");
 
  170    py::class_<DtypeCheck>(sm, 
"DtypeCheck")
 
  174            return py::str(
"<DtypeCheck numpy={} pybind11={}>").format(
self.numpy, 
self.pybind11);
 
  178    py::class_<DtypeSizeCheck>(sm, 
"DtypeSizeCheck")
 
  183            return py::str(
"<DtypeSizeCheck name='{}' size_cpp={} size_numpy={} dtype={}>")
 
  189    sm.def(
"ndim", [](
const arr &a) { 
return a.ndim(); });
 
  190    sm.def(
"shape", [](
const arr &a) { 
return arr(a.ndim(), a.shape()); });
 
  191    sm.def(
"shape", [](
const arr &a, py::ssize_t dim) { 
return a.shape(dim); });
 
  192    sm.def(
"strides", [](
const arr &a) { 
return arr(a.ndim(), a.strides()); });
 
  193    sm.def(
"strides", [](
const arr &a, py::ssize_t dim) { 
return a.strides(dim); });
 
  194    sm.def(
"writeable", [](
const arr &a) { 
return a.writeable(); });
 
  195    sm.def(
"size", [](
const arr &a) { 
return a.size(); });
 
  196    sm.def(
"itemsize", [](
const arr &a) { 
return a.itemsize(); });
 
  197    sm.def(
"nbytes", [](
const arr &a) { 
return a.nbytes(); });
 
  198    sm.def(
"owndata", [](
const arr &a) { 
return a.owndata(); });
 
  215    sm.def(
"make_f_array", [] { 
return py::array_t<float>({2, 2}, {4, 8}); });
 
  216    sm.def(
"make_c_array", [] { 
return py::array_t<float>({2, 2}, {8, 4}); });
 
  219    sm.def(
"make_empty_shaped_array", [] { 
return py::array(py::dtype(
"f"), {}, {}); });
 
  221    sm.def(
"scalar_int", []() { 
return py::array(py::dtype(
"i"), {}, {}, &
data_i); });
 
  224    sm.def(
"wrap", [](
const py::array &a) {
 
  225        return py::array(a.dtype(),
 
  226                         {a.shape(), a.shape() + a.ndim()},
 
  227                         {a.strides(), a.strides() + a.ndim()},
 
  234        int data[2] = {1, 2};
 
  235        ArrayClass() { py::print(
"ArrayClass()"); }
 
  236        ~ArrayClass() { py::print(
"~ArrayClass()"); }
 
  238    py::class_<ArrayClass>(sm, 
"ArrayClass")
 
  240        .def(
"numpy_view", [](py::object &obj) {
 
  241            py::print(
"ArrayClass::numpy_view()");
 
  242            auto &a = obj.cast<ArrayClass &>();
 
  243            return py::array_t<int>({2}, {4}, a.data, obj);
 
  247    sm.def(
"function_taking_uint64", [](uint64_t) {});
 
  250    sm.def(
"isinstance_untyped", [](py::object yes, py::object no) {
 
  251        return py::isinstance<py::array>(std::move(yes))
 
  252               && !py::isinstance<py::array>(std::move(no));
 
  254    sm.def(
"isinstance_typed", [](
const py::object &o) {
 
  255        return py::isinstance<py::array_t<double>>(o) && !py::isinstance<py::array_t<int>>(o);
 
  259    sm.def(
"default_constructors", []() {
 
  260        return py::dict(
"array"_a = py::array(),
 
  261                        "array_t<int32>"_a = py::array_t<std::int32_t>(),
 
  262                        "array_t<double>"_a = py::array_t<double>());
 
  264    sm.def(
"converting_constructors", [](
const py::object &o) {
 
  265        return py::dict(
"array"_a = py::array(o),
 
  266                        "array_t<int32>"_a = py::array_t<std::int32_t>(o),
 
  267                        "array_t<double>"_a = py::array_t<double>(o));
 
  271    sm.def(
"overloaded", [](
const py::array_t<double> &) { 
return "double"; });
 
  272    sm.def(
"overloaded", [](
const py::array_t<float> &) { 
return "float"; });
 
  273    sm.def(
"overloaded", [](
const py::array_t<int> &) { 
return "int"; });
 
  274    sm.def(
"overloaded", [](
const py::array_t<unsigned short> &) { 
return "unsigned short"; });
 
  275    sm.def(
"overloaded", [](
const py::array_t<long long> &) { 
return "long long"; });
 
  277           [](
const py::array_t<std::complex<double>> &) { 
return "double complex"; });
 
  278    sm.def(
"overloaded", [](
const py::array_t<std::complex<float>> &) { 
return "float complex"; });
 
  280    sm.def(
"overloaded2",
 
  281           [](
const py::array_t<std::complex<double>> &) { 
return "double complex"; });
 
  282    sm.def(
"overloaded2", [](
const py::array_t<double> &) { 
return "double"; });
 
  283    sm.def(
"overloaded2",
 
  284           [](
const py::array_t<std::complex<float>> &) { 
return "float complex"; });
 
  285    sm.def(
"overloaded2", [](
const py::array_t<float> &) { 
return "float"; });
 
  291        "overloaded3", [](
const py::array_t<int> &) { 
return "int"; }, py::arg{}.noconvert());
 
  294        [](
const py::array_t<double> &) { 
return "double"; },
 
  295        py::arg{}.noconvert());
 
  299    sm.def(
"overloaded4", [](
const py::array_t<long long, 0> &) { 
return "long long"; });
 
  300    sm.def(
"overloaded4", [](
const py::array_t<double, 0> &) { 
return "double"; });
 
  304    sm.def(
"overloaded5", [](
const py::array_t<unsigned int> &) { 
return "unsigned int"; });
 
  305    sm.def(
"overloaded5", [](
const py::array_t<double> &) { 
return "double"; });
 
  309    sm.def(
"issue685", [](
const std::string &) { 
return "string"; });
 
  310    sm.def(
"issue685", [](
const py::array &) { 
return "array"; });
 
  311    sm.def(
"issue685", [](
const py::object &) { 
return "other"; });
 
  316        [](py::array_t<double> a, 
double v) {
 
  317            auto r = a.mutable_unchecked<2>();
 
  318            for (py::ssize_t i = 0; i < r.shape(0); i++) {
 
  319                for (py::ssize_t j = 0; j < r.shape(1); j++) {
 
  324        py::arg{}.noconvert(),
 
  327    sm.def(
"proxy_init3", [](
double start) {
 
  328        py::array_t<double, py::array::c_style> a({3, 3, 3});
 
  329        auto r = a.mutable_unchecked<3>();
 
  330        for (py::ssize_t i = 0; i < r.shape(0); i++) {
 
  331            for (py::ssize_t j = 0; j < r.shape(1); j++) {
 
  332                for (py::ssize_t k = 0; k < r.shape(2); k++) {
 
  333                    r(i, j, k) = start++;
 
  339    sm.def(
"proxy_init3F", [](
double start) {
 
  340        py::array_t<double, py::array::f_style> a({3, 3, 3});
 
  341        auto r = a.mutable_unchecked<3>();
 
  342        for (py::ssize_t k = 0; k < r.shape(2); k++) {
 
  343            for (py::ssize_t j = 0; j < r.shape(1); j++) {
 
  344                for (py::ssize_t i = 0; i < r.shape(0); i++) {
 
  345                    r(i, j, k) = start++;
 
  351    sm.def(
"proxy_squared_L2_norm", [](
const py::array_t<double> &a) {
 
  352        auto r = a.unchecked<1>();
 
  354        for (py::ssize_t i = 0; i < r.shape(0); i++) {
 
  355            sumsq += r[i] * r(i); 
 
  360    sm.def(
"proxy_auxiliaries2", [](py::array_t<double> a) {
 
  361        auto r = a.unchecked<2>();
 
  362        auto r2 = a.mutable_unchecked<2>();
 
  366    sm.def(
"proxy_auxiliaries1_const_ref", [](py::array_t<double> a) {
 
  367        const auto &r = a.unchecked<1>();
 
  368        const auto &r2 = a.mutable_unchecked<1>();
 
  369        return r(0) == r2(0) && r[0] == r2[0];
 
  372    sm.def(
"proxy_auxiliaries2_const_ref", [](py::array_t<double> a) {
 
  373        const auto &r = a.unchecked<2>();
 
  374        const auto &r2 = a.mutable_unchecked<2>();
 
  375        return r(0, 0) == r2(0, 0);
 
  382        [](py::array_t<double> a, 
double v) {
 
  383            auto r = a.mutable_unchecked();
 
  385                throw std::domain_error(
"error: ndim != 2");
 
  387            for (py::ssize_t i = 0; i < r.shape(0); i++) {
 
  388                for (py::ssize_t j = 0; j < r.shape(1); j++) {
 
  393        py::arg{}.noconvert(),
 
  395    sm.def(
"proxy_init3_dyn", [](
double start) {
 
  396        py::array_t<double, py::array::c_style> a({3, 3, 3});
 
  397        auto r = a.mutable_unchecked();
 
  399            throw std::domain_error(
"error: ndim != 3");
 
  401        for (py::ssize_t i = 0; i < r.shape(0); i++) {
 
  402            for (py::ssize_t j = 0; j < r.shape(1); j++) {
 
  403                for (py::ssize_t k = 0; k < r.shape(2); k++) {
 
  404                    r(i, j, k) = start++;
 
  410    sm.def(
"proxy_auxiliaries2_dyn", [](py::array_t<double> a) {
 
  411        return auxiliaries(a.unchecked(), a.mutable_unchecked());
 
  414    sm.def(
"array_auxiliaries2", [](py::array_t<double> a) { 
return auxiliaries(a, a); });
 
  419    sm.def(
"array_fail_test", []() { 
return py::array(py::object()); });
 
  420    sm.def(
"array_t_fail_test", []() { 
return py::array_t<double>(py::object()); });
 
  422    sm.def(
"array_fail_test_negative_size", []() {
 
  424        return py::array(-1, &c);
 
  429    sm.def(
"array_initializer_list1", []() { 
return py::array_t<float>(1); });
 
  431    sm.def(
"array_initializer_list2", []() { 
return py::array_t<float>({1, 2}); });
 
  432    sm.def(
"array_initializer_list3", []() { 
return py::array_t<float>({1, 2, 3}); });
 
  433    sm.def(
"array_initializer_list4", []() { 
return py::array_t<float>({1, 2, 3, 4}); });
 
  437    sm.def(
"array_reshape2", [](py::array_t<double> a) {
 
  438        const auto dim_sz = (py::ssize_t) std::sqrt(a.size());
 
  439        if (dim_sz * dim_sz != a.size()) {
 
  440            throw std::domain_error(
 
  441                "array_reshape2: input array total size is not a squared integer");
 
  443        a.resize({dim_sz, dim_sz});
 
  447    sm.def(
"array_resize3", [](py::array_t<double> a, 
size_t N, 
bool refcheck) {
 
  448        a.resize({N, N, N}, refcheck);
 
  453    sm.def(
"create_and_resize", [](
size_t N) {
 
  454        py::array_t<double> a;
 
  456        std::fill(a.mutable_data(), a.mutable_data() + a.size(), 42.);
 
  461           [](py::array_t<uint8_t> a, 
const std::string &
dtype) { 
return a.view(
dtype); });
 
  463    sm.def(
"reshape_initializer_list", [](py::array_t<int> a, 
size_t N, 
size_t M, 
size_t O) {
 
  464        return a.reshape({N, M, O});
 
  466    sm.def(
"reshape_tuple", [](py::array_t<int> a, 
const std::vector<int> &new_shape) {
 
  467        return a.reshape(new_shape);
 
  470    sm.def(
"index_using_ellipsis",
 
  471           [](
const py::array &a) { 
return a[py::make_tuple(0, py::ellipsis(), 0)]; });
 
  475        "accept_double", [](
const py::array_t<double, 0> &) {}, py::arg(
"a"));
 
  477        "accept_double_forcecast",
 
  478        [](
const py::array_t<double, py::array::forcecast> &) {},
 
  481        "accept_double_c_style",
 
  482        [](
const py::array_t<double, py::array::c_style> &) {},
 
  485        "accept_double_c_style_forcecast",
 
  486        [](
const py::array_t<double, py::array::forcecast | py::array::c_style> &) {},
 
  489        "accept_double_f_style",
 
  490        [](
const py::array_t<double, py::array::f_style> &) {},
 
  493        "accept_double_f_style_forcecast",
 
  494        [](
const py::array_t<double, py::array::forcecast | py::array::f_style> &) {},
 
  497        "accept_double_noconvert", [](
const py::array_t<double, 0> &) {}, 
"a"_a.noconvert());
 
  499        "accept_double_forcecast_noconvert",
 
  500        [](
const py::array_t<double, py::array::forcecast> &) {},
 
  503        "accept_double_c_style_noconvert",
 
  504        [](
const py::array_t<double, py::array::c_style> &) {},
 
  507        "accept_double_c_style_forcecast_noconvert",
 
  508        [](
const py::array_t<double, py::array::forcecast | py::array::c_style> &) {},
 
  511        "accept_double_f_style_noconvert",
 
  512        [](
const py::array_t<double, py::array::f_style> &) {},
 
  515        "accept_double_f_style_forcecast_noconvert",
 
  516        [](
const py::array_t<double, py::array::forcecast | py::array::f_style> &) {},
 
  520    sm.def(
"test_fmt_desc_float", [](
const py::array_t<float> &) {});
 
  521    sm.def(
"test_fmt_desc_double", [](
const py::array_t<double> &) {});
 
  522    sm.def(
"test_fmt_desc_const_float", [](
const py::array_t<const float> &) {});
 
  523    sm.def(
"test_fmt_desc_const_double", [](
const py::array_t<const double> &) {});
 
#define TEST_SUBMODULE(name, variable)
 
DtypeSizeCheck get_dtype_size_check()
 
py::array_t< uint16_t, 0 > arr_t
 
arr data(const arr &a, Ix... index)
 
DtypeCheck get_dtype_check(const char *name)
 
py::ssize_t offset_at_t(const arr_t &a, Ix... idx)
 
py::ssize_t at_t(const arr_t &a, Ix... idx)
 
py::ssize_t index_at_t(const arr_t &a, Ix... idx)
 
py::ssize_t offset_at(const arr &a, Ix... idx)
 
std::vector< DtypeSizeCheck > get_platform_dtype_size_checks()
 
arr & mutate_data(arr &a, Ix... index)
 
arr data_t(const arr_t &a, Ix... index)
 
py::handle auxiliaries(T &&r, T2 &&r2)
 
py::ssize_t index_at(const arr &a, Ix... idx)
 
arr_t & mutate_at_t(arr_t &a, Ix... idx)
 
#define def_index_fn(name, type)
 
std::vector< DtypeCheck > get_concrete_dtype_checks()
 
arr_t & mutate_data_t(arr_t &a, Ix... index)
 
Annotation for function names.