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8a7e74673e
* Support GArray as input in fluid kernels * Create tests on GArray input in fluid * Some fixes to fully support GArray * Refactor code and change the kernel according to review * Add histogram calculation as a G-API kernel Add assert that input GArgs in fluid contain at least one GMat
139 lines
3.7 KiB
C++
139 lines
3.7 KiB
C++
// This file is part of OpenCV project.
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// It is subject to the license terms in the LICENSE file found in the top-level directory
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// of this distribution and at http://opencv.org/license.html.
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//
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// Copyright (C) 2018 Intel Corporation
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#ifndef GAPI_FLUID_TEST_KERNELS_HPP
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#define GAPI_FLUID_TEST_KERNELS_HPP
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#include <opencv2/gapi/fluid/gfluidkernel.hpp>
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namespace cv
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{
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namespace gapi_test_kernels
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{
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using cv::gapi::core::GMat3;
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using GMat2 = std::tuple<GMat, GMat>;
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G_TYPED_KERNEL(TAddSimple, <GMat(GMat, GMat)>, "test.fluid.add_simple") {
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static cv::GMatDesc outMeta(cv::GMatDesc a, cv::GMatDesc) {
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return a;
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}
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};
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G_TYPED_KERNEL(TAddCSimple, <GMat(GMat,int)>, "test.fluid.addc_simple")
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{
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static GMatDesc outMeta(const cv::GMatDesc &in, int) {
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return in;
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}
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};
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G_TYPED_KERNEL(TAddScalar, <GMat(GMat,GScalar)>, "test.fluid.addc_scalar")
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{
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static GMatDesc outMeta(const cv::GMatDesc &in, const cv::GScalarDesc&) {
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return in;
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}
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};
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G_TYPED_KERNEL(TAddScalarToMat, <GMat(GScalar,GMat)>, "test.fluid.add_scalar_to_mat")
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{
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static GMatDesc outMeta(const cv::GScalarDesc&, const cv::GMatDesc &in) {
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return in;
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}
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};
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G_TYPED_KERNEL(TBlur1x1, <GMat(GMat,int,Scalar)>, "org.opencv.imgproc.filters.blur1x1"){
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static GMatDesc outMeta(GMatDesc in, int, Scalar) {
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return in;
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}
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};
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G_TYPED_KERNEL(TBlur3x3, <GMat(GMat,int,Scalar)>, "org.opencv.imgproc.filters.blur3x3"){
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static GMatDesc outMeta(GMatDesc in, int, Scalar) {
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return in;
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}
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};
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G_TYPED_KERNEL(TBlur5x5, <GMat(GMat,int,Scalar)>, "org.opencv.imgproc.filters.blur5x5"){
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static GMatDesc outMeta(GMatDesc in, int, Scalar) {
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return in;
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}
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};
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G_TYPED_KERNEL(TBlur3x3_2lpi, <GMat(GMat,int,Scalar)>, "org.opencv.imgproc.filters.blur3x3_2lpi"){
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static GMatDesc outMeta(GMatDesc in, int, Scalar) {
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return in;
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}
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};
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G_TYPED_KERNEL(TBlur5x5_2lpi, <GMat(GMat,int,Scalar)>, "org.opencv.imgproc.filters.blur5x5_2lpi"){
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static GMatDesc outMeta(GMatDesc in, int, Scalar) {
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return in;
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}
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};
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G_TYPED_KERNEL(TId, <GMat(GMat)>, "test.fluid.identity") {
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static cv::GMatDesc outMeta(cv::GMatDesc a) {
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return a;
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}
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};
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G_TYPED_KERNEL(TId7x7, <GMat(GMat)>, "test.fluid.identity7x7") {
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static cv::GMatDesc outMeta(cv::GMatDesc a) {
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return a;
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}
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};
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G_TYPED_KERNEL(TMerge3_4lpi, <GMat(GMat,GMat,GMat)>, "test.fluid.merge3_4lpi") {
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static GMatDesc outMeta(GMatDesc in, GMatDesc, GMatDesc) {
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return in.withType(in.depth, 3);
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}
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};
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G_TYPED_KERNEL(TPlusRow0, <GMat(GMat)>, "test.fluid.plus_row0") {
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static cv::GMatDesc outMeta(cv::GMatDesc a) {
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return a;
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}
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};
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G_TYPED_KERNEL(TSum2MatsAndScalar, <GMat(GMat,GScalar,GMat)>, "test.fluid.sum_2_mats_and_scalar")
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{
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static GMatDesc outMeta(const cv::GMatDesc &in, const cv::GScalarDesc&, const cv::GMatDesc&) {
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return in;
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}
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};
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G_TYPED_KERNEL_M(TSplit3_4lpi, <GMat3(GMat)>, "test.fluid.split3_4lpi") {
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static std::tuple<GMatDesc, GMatDesc, GMatDesc> outMeta(GMatDesc in) {
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const auto out_depth = in.depth;
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const auto out_desc = in.withType(out_depth, 1);
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return std::make_tuple(out_desc, out_desc, out_desc);
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}
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};
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G_TYPED_KERNEL(TEqualizeHist, <GMat(GMat, GArray<int>)>, "test.fluid.equalize_hist")
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{
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static GMatDesc outMeta(GMatDesc in, const cv::GArrayDesc&) {
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return in;
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}
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};
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G_TYPED_KERNEL(TCalcHist, <GArray<int>(GMat)>, "test.ocv.calc_hist")
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{
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static GArrayDesc outMeta(GMatDesc) {
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return {};
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}
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};
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GMat merge3_4lpi(const GMat& src1, const GMat& src2, const GMat& src3);
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std::tuple<GMat, GMat, GMat> split3_4lpi(const GMat& src);
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extern cv::gapi::GKernelPackage fluidTestPackage;
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} // namespace gapi_test_kernels
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} // namespace cv
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#endif // GAPI_FLUID_TEST_KERNELS_HPP
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