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pre-commit clang-format, NO manual changes.
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@ -13,60 +13,43 @@ namespace test_cases_for_stubgen {
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namespace basics {
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int answer() {
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return 42;
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}
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int answer() { return 42; }
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int sum(int a, int b) {
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return a + b;
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}
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int sum(int a, int b) { return a + b; }
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double midpoint(double left, double right){
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return left + (right - left)/2;
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}
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double midpoint(double left, double right) { return left + (right - left) / 2; }
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double weighted_midpoint(double left, double right, double alpha=0.5) {
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return left + (right - left) * alpha;
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double weighted_midpoint(double left, double right, double alpha = 0.5) {
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return left + (right - left) * alpha;
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}
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struct Point {
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enum class LengthUnit {
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mm=0,
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pixel,
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inch
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};
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enum class LengthUnit { mm = 0, pixel, inch };
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enum class AngleUnit {
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radian=0,
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degree
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};
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enum class AngleUnit { radian = 0, degree };
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Point() : Point(0, 0) {}
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Point(double x, double y) : x(x), y(y) {}
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Point() : Point(0, 0) {}
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Point(double x, double y) : x(x), y(y) {}
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static const Point origin;
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static const Point x_axis;
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static const Point y_axis;
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static const Point origin;
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static const Point x_axis;
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static const Point y_axis;
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static LengthUnit length_unit;
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static AngleUnit angle_unit;
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static LengthUnit length_unit;
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static AngleUnit angle_unit;
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double length() const {
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return std::sqrt(x * x + y * y);
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}
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double length() const { return std::sqrt(x * x + y * y); }
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double distance_to(double other_x, double other_y) const {
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double dx = x - other_x;
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double dy = y - other_y;
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return std::sqrt(dx*dx + dy*dy);
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}
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double distance_to(double other_x, double other_y) const {
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double dx = x - other_x;
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double dy = y - other_y;
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return std::sqrt(dx * dx + dy * dy);
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}
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double distance_to(const Point& other) const {
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return distance_to(other.x, other.y);
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}
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double distance_to(const Point &other) const { return distance_to(other.x, other.y); }
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double x, y;
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double x, y;
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};
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const Point Point::origin = Point(0, 0);
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@ -76,56 +59,63 @@ const Point Point::y_axis = Point(0, 1);
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Point::LengthUnit Point::length_unit = Point::LengthUnit::mm;
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Point::AngleUnit Point::angle_unit = Point::AngleUnit::radian;
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} // namespace: basics
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} // namespace basics
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void bind_basics(py::module& basics) {
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void bind_basics(py::module &basics) {
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using namespace basics;
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using namespace basics;
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// Functions
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basics.def("answer", &answer, "answer docstring, with end quote\""); // tests explicit docstrings
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basics.def("sum", &sum, "multiline docstring test, edge case quotes \"\"\"'''");
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basics.def("midpoint", &midpoint, py::arg("left"), py::arg("right"));
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basics.def("weighted_midpoint", weighted_midpoint, py::arg("left"), py::arg("right"), py::arg("alpha")=0.5);
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// Functions
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basics.def(
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"answer", &answer, "answer docstring, with end quote\""); // tests explicit docstrings
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basics.def("sum", &sum, "multiline docstring test, edge case quotes \"\"\"'''");
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basics.def("midpoint", &midpoint, py::arg("left"), py::arg("right"));
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basics.def("weighted_midpoint",
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weighted_midpoint,
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py::arg("left"),
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py::arg("right"),
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py::arg("alpha") = 0.5);
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// Classes
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py::class_<Point> pyPoint(basics, "Point");
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py::enum_<Point::LengthUnit> pyLengthUnit(pyPoint, "LengthUnit");
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py::enum_<Point::AngleUnit> pyAngleUnit(pyPoint, "AngleUnit");
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// Classes
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py::class_<Point> pyPoint(basics, "Point");
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py::enum_<Point::LengthUnit> pyLengthUnit(pyPoint, "LengthUnit");
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py::enum_<Point::AngleUnit> pyAngleUnit(pyPoint, "AngleUnit");
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pyPoint
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.def(py::init<>())
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.def(py::init<double, double>(), py::arg("x"), py::arg("y"))
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.def("distance_to", py::overload_cast<double, double>(&Point::distance_to, py::const_), py::arg("x"), py::arg("y"))
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.def("distance_to", py::overload_cast<const Point&>(&Point::distance_to, py::const_), py::arg("other"))
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.def_readwrite("x", &Point::x)
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.def_property("y",
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[](Point& self){ return self.y; },
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[](Point& self, double value){ self.y = value; }
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)
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.def_property_readonly("length", &Point::length)
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.def_property_readonly_static("x_axis", [](py::object /*cls*/){return Point::x_axis;})
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.def_property_readonly_static("y_axis", [](py::object /*cls*/){return Point::y_axis;})
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.def_readwrite_static("length_unit", &Point::length_unit)
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.def_property_static("angle_unit",
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[](py::object& /*cls*/){ return Point::angle_unit; },
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[](py::object& /*cls*/, Point::AngleUnit value){ Point::angle_unit = value; }
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);
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pyPoint.def(py::init<>())
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.def(py::init<double, double>(), py::arg("x"), py::arg("y"))
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.def("distance_to",
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py::overload_cast<double, double>(&Point::distance_to, py::const_),
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py::arg("x"),
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py::arg("y"))
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.def("distance_to",
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py::overload_cast<const Point &>(&Point::distance_to, py::const_),
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py::arg("other"))
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.def_readwrite("x", &Point::x)
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.def_property(
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"y",
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[](Point &self) { return self.y; },
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[](Point &self, double value) { self.y = value; })
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.def_property_readonly("length", &Point::length)
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.def_property_readonly_static("x_axis", [](py::object /*cls*/) { return Point::x_axis; })
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.def_property_readonly_static("y_axis", [](py::object /*cls*/) { return Point::y_axis; })
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.def_readwrite_static("length_unit", &Point::length_unit)
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.def_property_static(
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"angle_unit",
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[](py::object & /*cls*/) { return Point::angle_unit; },
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[](py::object & /*cls*/, Point::AngleUnit value) { Point::angle_unit = value; });
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pyPoint.attr("origin") = Point::origin;
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pyPoint.attr("origin") = Point::origin;
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pyLengthUnit
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.value("mm", Point::LengthUnit::mm)
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.value("pixel", Point::LengthUnit::pixel)
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.value("inch", Point::LengthUnit::inch);
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pyLengthUnit.value("mm", Point::LengthUnit::mm)
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.value("pixel", Point::LengthUnit::pixel)
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.value("inch", Point::LengthUnit::inch);
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pyAngleUnit
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.value("radian", Point::AngleUnit::radian)
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.value("degree", Point::AngleUnit::degree);
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pyAngleUnit.value("radian", Point::AngleUnit::radian)
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.value("degree", Point::AngleUnit::degree);
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// Module-level attributes
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basics.attr("PI") = std::acos(-1);
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basics.attr("__version__") = "0.0.1";
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// Module-level attributes
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basics.attr("PI") = std::acos(-1);
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basics.attr("__version__") = "0.0.1";
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}
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struct UserType {
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