// python wrapper for vtkCylindricalTransform // #define VTK_WRAPPING_CXX #define VTK_STREAMS_FWD_ONLY #include "vtkPythonArgs.h" #include "vtkPythonOverload.h" #include "vtkConfigure.h" #include #include #include "vtkVariant.h" #include "vtkIndent.h" #include "vtkCylindricalTransform.h" extern "C" { VTK_ABI_EXPORT void PyVTKAddFile_vtkCylindricalTransform(PyObject *); } extern "C" { VTK_ABI_EXPORT PyObject *PyvtkCylindricalTransform_ClassNew(); } #ifndef DECLARED_PyvtkWarpTransform_ClassNew extern "C" { PyObject *PyvtkWarpTransform_ClassNew(); } #define DECLARED_PyvtkWarpTransform_ClassNew #endif static const char *PyvtkCylindricalTransform_Doc = "vtkCylindricalTransform - cylindrical to rectangular coords and back\n\n" "Superclass: vtkWarpTransform\n\n" "vtkCylindricalTransform will convert (r,theta,z) coordinates to\n" "(x,y,z) coordinates and back again. The angles are given in radians.\n" "By default, it converts cylindrical coordinates to rectangular, but\n" "GetInverse() returns a transform that will do the opposite. The\n" "equation that is used is x = r*cos(theta), y = r*sin(theta), z = z.\n" "@warning\n" "This transform is not well behaved along the line x=y=0 (i.e. along\n" "the z-axis)\n" "@sa\n" "vtkSphericalTransform vtkGeneralTransform\n\n"; static PyObject * PyvtkCylindricalTransform_IsTypeOf(PyObject *, PyObject *args) { vtkPythonArgs ap(args, "IsTypeOf"); char *temp0 = nullptr; PyObject *result = nullptr; if (ap.CheckArgCount(1) && ap.GetValue(temp0)) { int tempr = vtkCylindricalTransform::IsTypeOf(temp0); if (!ap.ErrorOccurred()) { result = ap.BuildValue(tempr); } } return result; } static PyObject * PyvtkCylindricalTransform_IsA(PyObject *self, PyObject *args) { vtkPythonArgs ap(self, args, "IsA"); vtkObjectBase *vp = ap.GetSelfPointer(self, args); vtkCylindricalTransform *op = static_cast(vp); char *temp0 = nullptr; PyObject *result = nullptr; if (op && ap.CheckArgCount(1) && ap.GetValue(temp0)) { int tempr = (ap.IsBound() ? op->IsA(temp0) : op->vtkCylindricalTransform::IsA(temp0)); if (!ap.ErrorOccurred()) { result = ap.BuildValue(tempr); } } return result; } static PyObject * PyvtkCylindricalTransform_SafeDownCast(PyObject *, PyObject *args) { vtkPythonArgs ap(args, "SafeDownCast"); vtkObjectBase *temp0 = nullptr; PyObject *result = nullptr; if (ap.CheckArgCount(1) && ap.GetVTKObject(temp0, "vtkObjectBase")) { vtkCylindricalTransform *tempr = vtkCylindricalTransform::SafeDownCast(temp0); if (!ap.ErrorOccurred()) { result = ap.BuildVTKObject(tempr); } } return result; } static PyObject * PyvtkCylindricalTransform_NewInstance(PyObject *self, PyObject *args) { vtkPythonArgs ap(self, args, "NewInstance"); vtkObjectBase *vp = ap.GetSelfPointer(self, args); vtkCylindricalTransform *op = static_cast(vp); PyObject *result = nullptr; if (op && ap.CheckArgCount(0)) { vtkCylindricalTransform *tempr = (ap.IsBound() ? op->NewInstance() : op->vtkCylindricalTransform::NewInstance()); if (!ap.ErrorOccurred()) { result = ap.BuildVTKObject(tempr); if (result && PyVTKObject_Check(result)) { PyVTKObject_GetObject(result)->UnRegister(0); PyVTKObject_SetFlag(result, VTK_PYTHON_IGNORE_UNREGISTER, 1); } } } return result; } static PyObject * PyvtkCylindricalTransform_MakeTransform(PyObject *self, PyObject *args) { vtkPythonArgs ap(self, args, "MakeTransform"); vtkObjectBase *vp = ap.GetSelfPointer(self, args); vtkCylindricalTransform *op = static_cast(vp); PyObject *result = nullptr; if (op && ap.CheckArgCount(0)) { vtkAbstractTransform *tempr = (ap.IsBound() ? op->MakeTransform() : op->vtkCylindricalTransform::MakeTransform()); if (!ap.ErrorOccurred()) { result = ap.BuildVTKObject(tempr); if (result && PyVTKObject_Check(result)) { PyVTKObject_GetObject(result)->UnRegister(0); PyVTKObject_SetFlag(result, VTK_PYTHON_IGNORE_UNREGISTER, 1); } } } return result; } static PyMethodDef PyvtkCylindricalTransform_Methods[] = { {"IsTypeOf", PyvtkCylindricalTransform_IsTypeOf, METH_VARARGS, "V.IsTypeOf(string) -> int\nC++: static vtkTypeBool IsTypeOf(const char *type)\n\nReturn 1 if this class type is the same type of (or a subclass\nof) the named class. Returns 0 otherwise. This method works in\ncombination with vtkTypeMacro found in vtkSetGet.h.\n"}, {"IsA", PyvtkCylindricalTransform_IsA, METH_VARARGS, "V.IsA(string) -> int\nC++: vtkTypeBool IsA(const char *type) override;\n\nReturn 1 if this class is the same type of (or a subclass of) the\nnamed class. Returns 0 otherwise. This method works in\ncombination with vtkTypeMacro found in vtkSetGet.h.\n"}, {"SafeDownCast", PyvtkCylindricalTransform_SafeDownCast, METH_VARARGS, "V.SafeDownCast(vtkObjectBase) -> vtkCylindricalTransform\nC++: static vtkCylindricalTransform *SafeDownCast(\n vtkObjectBase *o)\n\n"}, {"NewInstance", PyvtkCylindricalTransform_NewInstance, METH_VARARGS, "V.NewInstance() -> vtkCylindricalTransform\nC++: vtkCylindricalTransform *NewInstance()\n\n"}, {"MakeTransform", PyvtkCylindricalTransform_MakeTransform, METH_VARARGS, "V.MakeTransform() -> vtkAbstractTransform\nC++: vtkAbstractTransform *MakeTransform() override;\n\nMake another transform of the same type.\n"}, {nullptr, nullptr, 0, nullptr} }; static PyTypeObject PyvtkCylindricalTransform_Type = { PyVarObject_HEAD_INIT(&PyType_Type, 0) "vtkCommonTransformsPython.vtkCylindricalTransform", // tp_name sizeof(PyVTKObject), // tp_basicsize 0, // tp_itemsize PyVTKObject_Delete, // tp_dealloc 0, // tp_print nullptr, // tp_getattr nullptr, // tp_setattr nullptr, // tp_compare PyVTKObject_Repr, // tp_repr nullptr, // tp_as_number nullptr, // tp_as_sequence nullptr, // tp_as_mapping nullptr, // tp_hash nullptr, // tp_call PyVTKObject_String, // tp_str PyObject_GenericGetAttr, // tp_getattro PyObject_GenericSetAttr, // tp_setattro &PyVTKObject_AsBuffer, // tp_as_buffer Py_TPFLAGS_DEFAULT|Py_TPFLAGS_HAVE_GC|Py_TPFLAGS_BASETYPE, // tp_flags PyvtkCylindricalTransform_Doc, // tp_doc PyVTKObject_Traverse, // tp_traverse nullptr, // tp_clear nullptr, // tp_richcompare offsetof(PyVTKObject, vtk_weakreflist), // tp_weaklistoffset nullptr, // tp_iter nullptr, // tp_iternext nullptr, // tp_methods nullptr, // tp_members PyVTKObject_GetSet, // tp_getset nullptr, // tp_base nullptr, // tp_dict nullptr, // tp_descr_get nullptr, // tp_descr_set offsetof(PyVTKObject, vtk_dict), // tp_dictoffset nullptr, // tp_init nullptr, // tp_alloc PyVTKObject_New, // tp_new PyObject_GC_Del, // tp_free nullptr, // tp_is_gc nullptr, // tp_bases nullptr, // tp_mro nullptr, // tp_cache nullptr, // tp_subclasses nullptr, // tp_weaklist VTK_WRAP_PYTHON_SUPPRESS_UNINITIALIZED }; static vtkObjectBase *PyvtkCylindricalTransform_StaticNew() { return vtkCylindricalTransform::New(); } PyObject *PyvtkCylindricalTransform_ClassNew() { PyVTKClass_Add( &PyvtkCylindricalTransform_Type, PyvtkCylindricalTransform_Methods, "vtkCylindricalTransform", &PyvtkCylindricalTransform_StaticNew); PyTypeObject *pytype = &PyvtkCylindricalTransform_Type; if ((pytype->tp_flags & Py_TPFLAGS_READY) != 0) { return (PyObject *)pytype; } #if !defined(VTK_PY3K) && PY_VERSION_HEX >= 0x02060000 pytype->tp_flags |= Py_TPFLAGS_HAVE_NEWBUFFER; #endif pytype->tp_base = (PyTypeObject *)PyvtkWarpTransform_ClassNew(); PyType_Ready(pytype); return (PyObject *)pytype; } void PyVTKAddFile_vtkCylindricalTransform( PyObject *dict) { PyObject *o; o = PyvtkCylindricalTransform_ClassNew(); if (o && PyDict_SetItemString(dict, "vtkCylindricalTransform", o) != 0) { Py_DECREF(o); } }