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Merge pull request #18196 from mpashchenkov:mp/garray-initialization
[G-API]: Add GArray initialization support * Added GArray initialization (CONST_VALUE, GScalar analog) and test for this * Whitespaces * And one more space * Trailing whitespace * Test name changed. Build with magic commands. * GArray works with rvalue initialization * Code cleanup * Ternary operator in the initialization list.
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@ -80,6 +80,7 @@ namespace detail
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protected:
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GArrayU(); // Default constructor
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GArrayU(const detail::VectorRef& vref); // Constant value constructor
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template<class> friend class cv::GArray; // (available to GArray<T> only)
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void setConstructFcn(ConstructVec &&cv); // Store T-aware constructor
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@ -328,6 +329,14 @@ namespace detail
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template<typename T> class GArray
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{
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public:
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// Host type (or Flat type) - the type this GArray is actually
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// specified to.
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using HT = typename detail::flatten_g<typename std::decay<T>::type>::type;
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explicit GArray(const std::vector<HT>& v) // Constant value constructor
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: m_ref(detail::GArrayU(detail::VectorRef(v))) { putDetails(); }
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explicit GArray(std::vector<HT>&& v) // Move-constructor
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: m_ref(detail::GArrayU(detail::VectorRef(std::move(v)))) { putDetails(); }
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GArray() { putDetails(); } // Empty constructor
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explicit GArray(detail::GArrayU &&ref) // GArrayU-based constructor
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: m_ref(ref) { putDetails(); } // (used by GCall, not for users)
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@ -335,10 +344,6 @@ public:
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detail::GArrayU strip() const { return m_ref; }
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private:
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// Host type (or Flat type) - the type this GArray is actually
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// specified to.
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using HT = typename detail::flatten_g<typename std::decay<T>::type>::type;
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static void VCTor(detail::VectorRef& vref) {
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vref.reset<HT>();
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vref.storeKind<HT>();
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@ -20,6 +20,11 @@ cv::detail::GArrayU::GArrayU(const GNode &n, std::size_t out)
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{
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}
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cv::detail::GArrayU::GArrayU(const detail::VectorRef& vref)
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: m_priv(new GOrigin(GShape::GARRAY, cv::gimpl::ConstVal(vref)))
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{
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}
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cv::GOrigin& cv::detail::GArrayU::priv()
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{
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return *m_priv;
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@ -21,7 +21,10 @@ cv::GOrigin::GOrigin(GShape s,
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}
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cv::GOrigin::GOrigin(GShape s, cv::gimpl::ConstVal v)
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: shape(s), node(cv::GNode::Const()), value(v), port(INVALID_PORT), kind(cv::detail::OpaqueKind::CV_UNKNOWN)
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: shape(s), node(cv::GNode::Const()), value(v), port(INVALID_PORT),
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kind(util::holds_alternative<detail::VectorRef>(v)
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? util::get<detail::VectorRef>(v).getKind()
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: cv::detail::OpaqueKind::CV_UNKNOWN)
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{
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}
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@ -79,6 +79,7 @@ cv::GRunArg cv::value_of(const cv::GOrigin &origin)
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switch (origin.shape)
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{
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case GShape::GSCALAR: return GRunArg(util::get<cv::Scalar>(origin.value));
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case GShape::GARRAY: return GRunArg(util::get<cv::detail::VectorRef>(origin.value));
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default: util::throw_error(std::logic_error("Unsupported shape for constant"));
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}
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}
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@ -29,6 +29,7 @@ namespace gimpl
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using ConstVal = util::variant
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< util::monostate
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, cv::Scalar
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, cv::detail::VectorRef
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>;
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struct RcDesc
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@ -114,6 +114,12 @@ void cv::gimpl::GExecutor::initResource(const ade::NodeHandle &orig_nh)
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break;
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case GShape::GARRAY:
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if (d.storage == Data::Storage::CONST_VAL)
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{
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auto rc = RcDesc{d.rc, d.shape, d.ctor};
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magazine::bindInArg(m_res, rc, m_gm.metadata(orig_nh).get<ConstValue>().arg);
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}
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break;
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case GShape::GOPAQUE:
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// Constructed on Reset, do nothing here
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break;
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@ -28,6 +28,10 @@ G_TYPED_KERNEL(CountCorners, <GScalar(GPointArray)>, "test.array.in")
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{
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static GScalarDesc outMeta(const GArrayDesc &) { return empty_scalar_desc(); }
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};
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G_TYPED_KERNEL(PointIncrement, <GPointArray(GMat, GPointArray)>, "test.point_increment")
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{
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static GArrayDesc outMeta(const GMatDesc&, const GArrayDesc&) { return empty_array_desc(); }
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};
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} // namespace ThisTest
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namespace
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@ -57,6 +61,15 @@ GAPI_OCV_KERNEL(OCVCountCorners, ThisTest::CountCorners)
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}
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};
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GAPI_OCV_KERNEL(OCVPointIncrement, ThisTest::PointIncrement)
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{
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static void run(const cv::Mat&, const std::vector<cv::Point>& in, std::vector<cv::Point>& out)
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{
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for (const auto& el : in)
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out.emplace_back(el + Point(1,1));
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}
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};
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cv::Mat cross(int w, int h)
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{
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cv::Mat mat = cv::Mat::eye(h, w, CV_8UC1)*255;
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@ -164,6 +177,45 @@ TEST(GArray, TestIntermediateOutput)
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EXPECT_EQ(10, out_count[0]);
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}
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TEST(GArray, GArrayConstValInitialization)
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{
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std::vector<cv::Point> initial_vec {Point(0,0), Point(1,1), Point(2,2)};
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std::vector<cv::Point> ref_vec {Point(1,1), Point(2,2), Point(3,3)};
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std::vector<cv::Point> out_vec;
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cv::Mat in_mat;
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cv::GComputationT<ThisTest::GPointArray(cv::GMat)> c([&](cv::GMat in)
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{
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// Initialization
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ThisTest::GPointArray test_garray(initial_vec);
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return ThisTest::PointIncrement::on(in, test_garray);
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});
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auto cc = c.compile(cv::descr_of(in_mat),
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cv::compile_args(cv::gapi::kernels<OCVPointIncrement>()));
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cc(in_mat, out_vec);
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EXPECT_EQ(ref_vec, out_vec);
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}
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TEST(GArray, GArrayRValInitialization)
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{
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std::vector<cv::Point> ref_vec {Point(1,1), Point(2,2), Point(3,3)};
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std::vector<cv::Point> out_vec;
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cv::Mat in_mat;
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cv::GComputationT<ThisTest::GPointArray(cv::GMat)> c([&](cv::GMat in)
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{
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// Rvalue initialization
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ThisTest::GPointArray test_garray({Point(0,0), Point(1,1), Point(2,2)});
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return ThisTest::PointIncrement::on(in, test_garray);
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});
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auto cc = c.compile(cv::descr_of(in_mat),
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cv::compile_args(cv::gapi::kernels<OCVPointIncrement>()));
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cc(in_mat, out_vec);
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EXPECT_EQ(ref_vec, out_vec);
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}
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TEST(GArray_VectorRef, TestMov)
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{
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// Warning: this test is testing some not-very-public APIs
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