// This file is part of OpenCV project. // It is subject to the license terms in the LICENSE file found in the top-level directory // of this distribution and at http://opencv.org/license.html. // // Copyright (C) 2018-2020 Intel Corporation #ifndef OPENCV_GAPI_GARG_HPP #define OPENCV_GAPI_GARG_HPP #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include namespace cv { class GArg; namespace detail { template using is_garg = std::is_same::type>; } // Parameter holder class for a node // Depending on platform capabilities, can either support arbitrary types // (as `boost::any`) or a limited number of types (as `boot::variant`). // FIXME: put into "details" as a user shouldn't use it in his code class GAPI_EXPORTS GArg { public: GArg() {} template::value, int>::type = 0> explicit GArg(const T &t) : kind(detail::GTypeTraits::kind) , opaque_kind(detail::GOpaqueTraits::kind) , value(detail::wrap_gapi_helper::wrap(t)) { } template::value, int>::type = 0> explicit GArg(T &&t) : kind(detail::GTypeTraits::type>::kind) , opaque_kind(detail::GOpaqueTraits::type>::kind) , value(detail::wrap_gapi_helper::wrap(t)) { } template inline T& get() { return util::any_cast::type>(value); } template inline const T& get() const { return util::any_cast::type>(value); } template inline T& unsafe_get() { return util::unsafe_any_cast::type>(value); } template inline const T& unsafe_get() const { return util::unsafe_any_cast::type>(value); } detail::ArgKind kind = detail::ArgKind::OPAQUE_VAL; detail::OpaqueKind opaque_kind = detail::OpaqueKind::CV_UNKNOWN; protected: util::any value; }; using GArgs = std::vector; // FIXME: Express as M::type // FIXME: Move to a separate file! using GRunArg = util::variant< #if !defined(GAPI_STANDALONE) cv::UMat, #endif // !defined(GAPI_STANDALONE) cv::RMat, cv::gapi::wip::IStreamSource::Ptr, cv::Mat, cv::Scalar, cv::detail::VectorRef, cv::detail::OpaqueRef, cv::MediaFrame >; using GRunArgs = std::vector; // TODO: Think about the addition operator /** * @brief This operator allows to complement the input vector at runtime. * * It's an ordinary overload of addition assignment operator. * * Example of usage: * @snippet dynamic_graph.cpp GRunArgs usage * */ inline GRunArgs& operator += (GRunArgs &lhs, const GRunArgs &rhs) { lhs.reserve(lhs.size() + rhs.size()); lhs.insert(lhs.end(), rhs.begin(), rhs.end()); return lhs; } namespace gapi { namespace wip { /** * @brief This aggregate type represents all types which G-API can handle (via variant). * * It only exists to overcome C++ language limitations (where a `using`-defined class can't be forward-declared). */ struct Data: public GRunArg { using GRunArg::GRunArg; template Data& operator= (const T& t) { GRunArg::operator=(t); return *this; } template Data& operator= (T&& t) { GRunArg::operator=(std::move(t)); return *this; } }; } // namespace wip } // namespace gapi using GRunArgP = util::variant< #if !defined(GAPI_STANDALONE) cv::UMat*, #endif // !defined(GAPI_STANDALONE) cv::Mat*, cv::RMat*, cv::Scalar*, cv::detail::VectorRef, cv::detail::OpaqueRef >; using GRunArgsP = std::vector; // TODO: Think about the addition operator /** * @brief This operator allows to complement the output vector at runtime. * * It's an ordinary overload of addition assignment operator. * * Example of usage: * @snippet dynamic_graph.cpp GRunArgsP usage * */ inline GRunArgsP& operator += (GRunArgsP &lhs, const GRunArgsP &rhs) { lhs.reserve(lhs.size() + rhs.size()); lhs.insert(lhs.end(), rhs.begin(), rhs.end()); return lhs; } namespace gapi { GAPI_EXPORTS cv::GRunArgsP bind(cv::GRunArgs &results); GAPI_EXPORTS cv::GRunArg bind(cv::GRunArgP &out); // FIXME: think more about it } template inline GRunArgs gin(const Ts&... args) { return GRunArgs{ GRunArg(detail::wrap_host_helper::wrap_in(args))... }; } template inline GRunArgsP gout(Ts&... args) { return GRunArgsP{ GRunArgP(detail::wrap_host_helper::wrap_out(args))... }; } } // namespace cv #endif // OPENCV_GAPI_GARG_HPP