mirror of
https://github.com/opencv/opencv.git
synced 2024-12-04 00:39:11 +08:00
289 lines
8.6 KiB
C++
289 lines
8.6 KiB
C++
// must be defined before importing numpy headers
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// https://numpy.org/doc/1.17/reference/c-api.array.html#importing-the-api
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#define PY_ARRAY_UNIQUE_SYMBOL opencv_ARRAY_API
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#include "cv2.hpp"
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#include "opencv2/opencv_modules.hpp"
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#include "opencv2/core.hpp"
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#include "opencv2/core/utils/logger.hpp"
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#include "pyopencv_generated_include.h"
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#include "opencv2/core/types_c.h"
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#include "cv2_util.hpp"
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#include "cv2_numpy.hpp"
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#include "cv2_convert.hpp"
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#include "cv2_highgui.hpp"
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using namespace cv;
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typedef std::vector<uchar> vector_uchar;
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typedef std::vector<char> vector_char;
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typedef std::vector<int> vector_int;
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typedef std::vector<float> vector_float;
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typedef std::vector<double> vector_double;
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typedef std::vector<size_t> vector_size_t;
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typedef std::vector<Point> vector_Point;
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typedef std::vector<Point2f> vector_Point2f;
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typedef std::vector<Point3f> vector_Point3f;
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typedef std::vector<Size> vector_Size;
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typedef std::vector<Vec2f> vector_Vec2f;
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typedef std::vector<Vec3f> vector_Vec3f;
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typedef std::vector<Vec4f> vector_Vec4f;
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typedef std::vector<Vec6f> vector_Vec6f;
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typedef std::vector<Vec4i> vector_Vec4i;
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typedef std::vector<Rect> vector_Rect;
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typedef std::vector<Rect2d> vector_Rect2d;
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typedef std::vector<RotatedRect> vector_RotatedRect;
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typedef std::vector<KeyPoint> vector_KeyPoint;
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typedef std::vector<Mat> vector_Mat;
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typedef std::vector<std::vector<Mat> > vector_vector_Mat;
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typedef std::vector<UMat> vector_UMat;
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typedef std::vector<DMatch> vector_DMatch;
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typedef std::vector<String> vector_String;
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typedef std::vector<std::string> vector_string;
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typedef std::vector<Scalar> vector_Scalar;
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typedef std::vector<std::vector<char> > vector_vector_char;
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typedef std::vector<std::vector<Point> > vector_vector_Point;
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typedef std::vector<std::vector<Point2f> > vector_vector_Point2f;
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typedef std::vector<std::vector<Point3f> > vector_vector_Point3f;
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typedef std::vector<std::vector<DMatch> > vector_vector_DMatch;
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typedef std::vector<std::vector<KeyPoint> > vector_vector_KeyPoint;
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// enum { ARG_NONE = 0, ARG_MAT = 1, ARG_SCALAR = 2 };
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///////////////////////////////////////////////////////////////////////////////////////
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static int convert_to_char(PyObject *o, char *dst, const ArgInfo& info)
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{
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std::string str;
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if (getUnicodeString(o, str))
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{
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*dst = str[0];
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return 1;
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}
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(*dst) = 0;
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return failmsg("Expected single character string for argument '%s'", info.name);
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}
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#ifdef __GNUC__
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# pragma GCC diagnostic ignored "-Wunused-parameter"
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# pragma GCC diagnostic ignored "-Wmissing-field-initializers"
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#endif
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#include "pyopencv_generated_enums.h"
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#ifdef CVPY_DYNAMIC_INIT
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#define CVPY_TYPE(WNAME, NAME, STORAGE, SNAME, _1, _2) CVPY_TYPE_DECLARE_DYNAMIC(WNAME, NAME, STORAGE, SNAME)
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#else
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#define CVPY_TYPE(WNAME, NAME, STORAGE, SNAME, _1, _2) CVPY_TYPE_DECLARE(WNAME, NAME, STORAGE, SNAME)
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#endif
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#include "pyopencv_generated_types.h"
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#undef CVPY_TYPE
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#include "pyopencv_custom_headers.h"
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#include "pyopencv_generated_types_content.h"
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#include "pyopencv_generated_funcs.h"
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static PyObject* pycvRegisterMatType(PyObject *self, PyObject *value)
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{
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CV_LOG_DEBUG(NULL, cv::format("pycvRegisterMatType %p %p\n", self, value));
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if (0 == PyType_Check(value))
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{
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PyErr_SetString(PyExc_TypeError, "Type argument is expected");
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return NULL;
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}
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Py_INCREF(value);
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pyopencv_Mat_TypePtr = (PyTypeObject*)value;
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Py_RETURN_NONE;
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}
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static PyMethodDef special_methods[] = {
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{"_registerMatType", (PyCFunction)(pycvRegisterMatType), METH_O, "_registerMatType(cv.Mat) -> None (Internal)"},
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{"redirectError", CV_PY_FN_WITH_KW(pycvRedirectError), "redirectError(onError) -> None"},
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#ifdef HAVE_OPENCV_HIGHGUI
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{"createTrackbar", (PyCFunction)pycvCreateTrackbar, METH_VARARGS, "createTrackbar(trackbarName, windowName, value, count, onChange) -> None"},
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{"createButton", CV_PY_FN_WITH_KW(pycvCreateButton), "createButton(buttonName, onChange [, userData, buttonType, initialButtonState]) -> None"},
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{"setMouseCallback", CV_PY_FN_WITH_KW(pycvSetMouseCallback), "setMouseCallback(windowName, onMouse [, param]) -> None"},
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#endif
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#ifdef HAVE_OPENCV_DNN
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{"dnn_registerLayer", CV_PY_FN_WITH_KW(pyopencv_cv_dnn_registerLayer), "registerLayer(type, class) -> None"},
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{"dnn_unregisterLayer", CV_PY_FN_WITH_KW(pyopencv_cv_dnn_unregisterLayer), "unregisterLayer(type) -> None"},
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#endif
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{NULL, NULL},
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};
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/************************************************************************/
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/* Module init */
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struct ConstDef
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{
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const char * name;
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long long val;
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};
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static void init_submodule(PyObject * root, const char * name, PyMethodDef * methods, ConstDef * consts)
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{
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// traverse and create nested submodules
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std::string s = name;
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size_t i = s.find('.');
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while (i < s.length() && i != std::string::npos)
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{
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size_t j = s.find('.', i);
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if (j == std::string::npos)
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j = s.length();
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std::string short_name = s.substr(i, j-i);
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std::string full_name = s.substr(0, j);
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i = j+1;
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PyObject * d = PyModule_GetDict(root);
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PyObject * submod = PyDict_GetItemString(d, short_name.c_str());
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if (submod == NULL)
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{
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submod = PyImport_AddModule(full_name.c_str());
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PyDict_SetItemString(d, short_name.c_str(), submod);
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}
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if (short_name != "")
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root = submod;
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}
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// populate module's dict
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PyObject * d = PyModule_GetDict(root);
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for (PyMethodDef * m = methods; m->ml_name != NULL; ++m)
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{
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PyObject * method_obj = PyCFunction_NewEx(m, NULL, NULL);
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PyDict_SetItemString(d, m->ml_name, method_obj);
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Py_DECREF(method_obj);
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}
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for (ConstDef * c = consts; c->name != NULL; ++c)
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{
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PyDict_SetItemString(d, c->name, PyLong_FromLongLong(c->val));
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}
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}
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#include "pyopencv_generated_modules_content.h"
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static bool init_body(PyObject * m)
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{
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#define CVPY_MODULE(NAMESTR, NAME) \
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init_submodule(m, MODULESTR NAMESTR, methods_##NAME, consts_##NAME)
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#include "pyopencv_generated_modules.h"
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#undef CVPY_MODULE
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#ifdef CVPY_DYNAMIC_INIT
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#define CVPY_TYPE(WNAME, NAME, _1, _2, BASE, CONSTRUCTOR) CVPY_TYPE_INIT_DYNAMIC(WNAME, NAME, return false, BASE, CONSTRUCTOR)
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PyObject * pyopencv_NoBase_TypePtr = NULL;
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#else
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#define CVPY_TYPE(WNAME, NAME, _1, _2, BASE, CONSTRUCTOR) CVPY_TYPE_INIT_STATIC(WNAME, NAME, return false, BASE, CONSTRUCTOR)
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PyTypeObject * pyopencv_NoBase_TypePtr = NULL;
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#endif
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#include "pyopencv_generated_types.h"
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#undef CVPY_TYPE
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PyObject* d = PyModule_GetDict(m);
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PyDict_SetItemString(d, "__version__", PyString_FromString(CV_VERSION));
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PyObject *opencv_error_dict = PyDict_New();
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PyDict_SetItemString(opencv_error_dict, "file", Py_None);
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PyDict_SetItemString(opencv_error_dict, "func", Py_None);
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PyDict_SetItemString(opencv_error_dict, "line", Py_None);
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PyDict_SetItemString(opencv_error_dict, "code", Py_None);
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PyDict_SetItemString(opencv_error_dict, "msg", Py_None);
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PyDict_SetItemString(opencv_error_dict, "err", Py_None);
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opencv_error = PyErr_NewException((char*)MODULESTR".error", NULL, opencv_error_dict);
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Py_DECREF(opencv_error_dict);
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PyDict_SetItemString(d, "error", opencv_error);
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#define PUBLISH(I) PyDict_SetItemString(d, #I, PyInt_FromLong(I))
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PUBLISH(CV_8U);
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PUBLISH(CV_8UC1);
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PUBLISH(CV_8UC2);
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PUBLISH(CV_8UC3);
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PUBLISH(CV_8UC4);
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PUBLISH(CV_8S);
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PUBLISH(CV_8SC1);
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PUBLISH(CV_8SC2);
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PUBLISH(CV_8SC3);
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PUBLISH(CV_8SC4);
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PUBLISH(CV_16U);
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PUBLISH(CV_16UC1);
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PUBLISH(CV_16UC2);
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PUBLISH(CV_16UC3);
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PUBLISH(CV_16UC4);
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PUBLISH(CV_16S);
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PUBLISH(CV_16SC1);
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PUBLISH(CV_16SC2);
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PUBLISH(CV_16SC3);
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PUBLISH(CV_16SC4);
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PUBLISH(CV_32S);
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PUBLISH(CV_32SC1);
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PUBLISH(CV_32SC2);
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PUBLISH(CV_32SC3);
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PUBLISH(CV_32SC4);
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PUBLISH(CV_32F);
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PUBLISH(CV_32FC1);
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PUBLISH(CV_32FC2);
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PUBLISH(CV_32FC3);
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PUBLISH(CV_32FC4);
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PUBLISH(CV_64F);
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PUBLISH(CV_64FC1);
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PUBLISH(CV_64FC2);
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PUBLISH(CV_64FC3);
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PUBLISH(CV_64FC4);
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#undef PUBLISH
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return true;
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}
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#if defined(__GNUC__)
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#pragma GCC visibility push(default)
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#endif
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#if defined(CV_PYTHON_3)
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// === Python 3
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static struct PyModuleDef cv2_moduledef =
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{
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PyModuleDef_HEAD_INIT,
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MODULESTR,
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"Python wrapper for OpenCV.",
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-1, /* size of per-interpreter state of the module,
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or -1 if the module keeps state in global variables. */
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special_methods
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};
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PyMODINIT_FUNC PyInit_cv2();
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PyObject* PyInit_cv2()
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{
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import_array(); // from numpy
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PyObject* m = PyModule_Create(&cv2_moduledef);
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if (!init_body(m))
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return NULL;
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return m;
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}
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#else
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// === Python 2
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PyMODINIT_FUNC initcv2();
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void initcv2()
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{
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import_array(); // from numpy
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PyObject* m = Py_InitModule(MODULESTR, special_methods);
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init_body(m);
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}
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#endif
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