use main image describer as reference.
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@ -39,6 +39,7 @@ set (LIBDART_OPENMVG_INCLUDE_DIRS ${CMAKE_CURRENT_SOURCE_DIR}/src)
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find_package(JPEG REQUIRED)
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find_package(TIFF REQUIRED)
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find_package(OpenCV REQUIRED)
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add_subdirectory(${CMAKE_CURRENT_SOURCE_DIR}/extlib/cwalk)
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@ -59,6 +60,7 @@ set(SKIP_INSTALL_ALL OFF CACHE BOOL "" FORCE) # we only want lib
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add_definitions(${PNG_DEFINITIONS})
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add_library(${LIBDART_OPENMVG} SHARED
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"mvg_override/describer/akaze.hpp"
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"frame.cxx"
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"streamingview.cxx"
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"image.cxx"
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@ -67,6 +69,8 @@ add_library(${LIBDART_OPENMVG} SHARED
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set(CEREAL_INCLUDE_DIR ${OpenMVG_DIR}/../../../include/openMVG_dependencies/cereal/include/cereal/)
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dump_cmake_variables("^opencv")
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target_include_directories(
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${LIBDART_OPENMVG}
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PRIVATE
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@ -74,6 +78,7 @@ target_include_directories(
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${PNG_INCLUDE_DIRS}
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${ARCHIMEDES_INCLUDE_DIRS}
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${CEREAL_INCLUDE_DIR}
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${OpenCV_INCLUDE_DIRS}
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)
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target_link_libraries(
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@ -82,6 +87,7 @@ target_link_libraries(
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jpeg
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tiff
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png
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${OpenCV_LIBS}
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OpenMVG::openMVG_image
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OpenMVG::openMVG_numeric
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OpenMVG::openMVG_features
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@ -72,16 +72,18 @@ Frame *new_frame_from_handle(FILE *stream, int w, int h, int depth)
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return f;
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}
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void clean_frame(Frame *f) {
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void clean_frame(Frame *f)
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{
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fclose(f->stream);
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free(f);
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}
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#ifdef __cplusplus
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DartOpenMvg::Frame::Frame(const DartOpenMvg::Frame &frame) {
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DartOpenMvg::Frame::Frame(const DartOpenMvg::Frame &frame)
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{
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cFrame = frame.cFrame;
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mRegions = std::unique_ptr<openMVG::features::Regions>(frame.mRegions.get());
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// mRegions = std::unique_ptr<openMVG::features::Regions>(frame.mRegions.get());
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}
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openMVG::image::Image<u_char> DartOpenMvg::imageFromFrame(const CFrame *frame)
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@ -107,20 +109,15 @@ DartOpenMvg::Frames::Frames(openMVG::sfm::Bundle_Adjustment_Ceres::BA_Ceres_opti
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mAdjustment = openMVG::sfm::Bundle_Adjustment_Ceres(options);
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}
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void DartOpenMvg::Frames::add_frame(FILE *handle, int w, int h, int depth) {
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void DartOpenMvg::Frames::add_frame(FILE *handle, int w, int h, int depth)
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{
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CFrame *f = new_frame_from_handle(handle, w, h, depth);
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mFrames.push_back(
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Frame(f)
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);
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Frame(f));
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}
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void DartOpenMvg::Frames::computeMatches()
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{
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#ifdef OPENMVG_USE_OPENMP
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OPENMVG_LOG_INFO << "Using the OPENMP thread interface";
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const bool b_multithreaded_pair_search = (eMatcherType_ == CASCADE_HASHING_L2);
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// -> set to true for CASCADE_HASHING_L2, since OpenMP instructions are not used in this matcher
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#endif
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// Match the pairs as a sequence
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// Within openMvg::matching_image_collection::Matcher
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@ -129,16 +126,17 @@ void DartOpenMvg::Frames::computeMatches()
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for (size_t i = 0; i < mFrames.size() - 1; ++i)
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{
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const Frame &frame1 = mFrames[i];
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const Frame &frame2 = mFrames[i+1];
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auto *regions1 = frame1.mRegions.get();
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auto *regions2 = frame2.mRegions.get();
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if (!regions1) {
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const Frame &frame2 = mFrames[i + 1];
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auto regions1 = frame1.mRegions.get();
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auto regions2 = frame2.mRegions.get();
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if (!regions1)
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{
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std::string msg = std::string("Did you remember to calculate regions for frame ") + std::to_string(i) + "?";
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throw std::out_of_range(msg);
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}
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regions1->Load();
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std::cerr << "Loading " << std::to_string(regions1->RegionCount()) << " regions" << endl;
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// regions1->Load();
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std::cerr << "Loading " << std::to_string(regions1->RegionCount()) << " regions" << std::endl;
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auto is_binary = regions1->IsBinary();
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@ -147,10 +145,6 @@ void DartOpenMvg::Frames::computeMatches()
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openMVG::matching::RegionMatcherFactory(openMVG::matching::EMatcherType::HNSW_L2, *regions1);
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if (!matcher)
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continue;
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#ifdef OPENMVG_USE_OPENMP
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#pragma omp parallel for schedule(dynamic) if (b_multithreaded_pair_search)
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#endif
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openMVG::matching::IndMatches vec_putative_matches;
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matcher->MatchDistanceRatio(0.5, *regions2, vec_putative_matches);
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if (vec_putative_matches.empty())
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@ -186,12 +180,17 @@ void DartOpenMvg::Frame::calculateFeatures()
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{
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using namespace openMVG::image;
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using namespace openMVG::features;
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auto desc = SIFT_Anatomy_Image_describer(SIFT_Anatomy_Image_describer::Params());
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auto image = imageFromFrame(cFrame);
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mRegions = desc.Describe(image);
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MvgOverride::AKAZE_OCV_Image_describer desc;
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auto im = imageFromFrame(cFrame);
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mRegions = std::make_shared<Regions>(std::move(desc.Describe(im)));
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if (!mRegions.get()) {
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throw std::range_error("Could not set regions member.");
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}
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}
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void DartOpenMvg::Frames::resection() {
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void DartOpenMvg::Frames::resection()
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{
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// openMVG::tracks::TracksUtilsMap::GetFeatIndexPerViewAndTrackId(
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// mTracks;
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// )
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@ -20,6 +20,7 @@
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#include <openMVG/image/image_io.hpp>
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#include <openMVG/numeric/numeric.h>
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#include <openMVG/tracks/tracks.hpp>
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#include <opencv2/opencv.hpp>
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#include <string>
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#include <vector>
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#include <memory>
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@ -36,6 +37,7 @@
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#include <map>
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#include <utility>
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#include "./base.hpp"
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#include "./mvg_override/describer/akaze.hpp"
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#ifndef __FRAME_H
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#define __FRAME_H
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152
src/mvg_override/describer/akaze.hpp
Normal file
152
src/mvg_override/describer/akaze.hpp
Normal file
@ -0,0 +1,152 @@
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// This file is part of OpenMVG, an Open Multiple View Geometry C++ library.
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// Copyright (c) 2012, 2013 Pierre MOULON.
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// This Source Code Form is subject to the terms of the Mozilla Public
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// License, v. 2.0. If a copy of the MPL was not distributed with this
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// file, You can obtain one at http://mozilla.org/MPL/2.0/.
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// The <cereal/archives> headers are special and must be included first.
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#include <cereal/archives/json.hpp>
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#include "openMVG/image/image_io.hpp"
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#include "openMVG/features/regions_factory_io.hpp"
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#include "openMVG/sfm/sfm.hpp"
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#include "openMVG/system/timer.hpp"
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/// OpenCV Includes
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#include <opencv2/opencv.hpp>
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#include <opencv2/core/eigen.hpp>
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#include <cstdlib>
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#include <fstream>
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#ifndef __MVG_OVERRIDE_DESCRIBER_AKAZE_H
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#define __MVG_OVERRIDE_DESCRIBER_AKAZE_H
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namespace MvgOverride
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{
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using namespace openMVG;
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using namespace openMVG::image;
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using namespace openMVG::features;
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using namespace openMVG::sfm;
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enum eGeometricModel
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{
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FUNDAMENTAL_MATRIX = 0,
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ESSENTIAL_MATRIX = 1,
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HOMOGRAPHY_MATRIX = 2
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};
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enum ePairMode
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{
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PAIR_EXHAUSTIVE = 0,
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PAIR_CONTIGUOUS = 1,
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PAIR_FROM_FILE = 2
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};
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///
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//- Create an Image_describer interface that use an OpenCV feature extraction method
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// i.e. with the AKAZE detector+descriptor
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//--/!\ If you use a new Regions type you define and register it in
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// "openMVG/features/regions_factory.hpp" file.
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///
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// Reuse the existing AKAZE floating point Keypoint.
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typedef features::AKAZE_Float_Regions AKAZE_OpenCV_Regions;
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// Define the Interface
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class AKAZE_OCV_Image_describer : public Image_describer
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{
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public:
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using Regions_type = AKAZE_OpenCV_Regions;
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cv::Ptr<cv::Feature2D> extractor;
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AKAZE_OCV_Image_describer() : Image_describer()
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{
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extractor = cv::AKAZE::create(cv::AKAZE::DESCRIPTOR_KAZE);
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}
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bool Set_configuration_preset(EDESCRIBER_PRESET preset) override
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{
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return false;
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}
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/**
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@brief Detect regions on the image and compute their attributes (description)
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@param image Image.
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@param mask 8-bit gray image for keypoint filtering (optional).
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Non-zero values depict the region of interest.
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@return regions The detected regions and attributes (the caller must delete the allocated data)
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*/
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std::unique_ptr<Regions> Describe(
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const Image<unsigned char> &image,
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const Image<unsigned char> *mask = nullptr) override
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{
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return Describe_AKAZE_OCV(image, mask);
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}
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/**
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@brief Detect regions on the image and compute their attributes (description)
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@param image Image.
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@param mask 8-bit gray image for keypoint filtering (optional).
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Non-zero values depict the region of interest.
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@return regions The detected regions and attributes (the caller must delete the allocated data)
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*/
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std::unique_ptr<Regions_type> Describe_AKAZE_OCV(
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const Image<unsigned char> &image,
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const Image<unsigned char> *mask = nullptr)
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{
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auto regions = std::unique_ptr<Regions_type>(new Regions_type);
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cv::Mat img;
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cv::eigen2cv(image.GetMat(), img);
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cv::Mat m_mask;
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if (mask != nullptr)
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{
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cv::eigen2cv(mask->GetMat(), m_mask);
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}
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std::vector<cv::KeyPoint> vec_keypoints;
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cv::Mat m_desc;
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extractor->detectAndCompute(img, m_mask, vec_keypoints, m_desc);
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if (!vec_keypoints.empty())
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{
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// reserve some memory for faster keypoint saving
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regions->Features().reserve(vec_keypoints.size());
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regions->Descriptors().reserve(vec_keypoints.size());
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using DescriptorT = Descriptor<float, 64>;
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DescriptorT descriptor;
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int cpt = 0;
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for (auto i_keypoint = vec_keypoints.begin(); i_keypoint != vec_keypoints.end(); ++i_keypoint, ++cpt)
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{
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const SIOPointFeature feat((*i_keypoint).pt.x, (*i_keypoint).pt.y, (*i_keypoint).size, (*i_keypoint).angle);
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regions->Features().push_back(feat);
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memcpy(descriptor.data(),
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m_desc.ptr<typename DescriptorT::bin_type>(cpt),
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DescriptorT::static_size * sizeof(DescriptorT::bin_type));
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regions->Descriptors().push_back(descriptor);
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}
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}
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return regions;
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};
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/// Allocate Regions type depending of the Image_describer
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std::unique_ptr<Regions> Allocate() const override
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{
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return std::unique_ptr<Regions_type>(new Regions_type);
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}
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template <class Archive>
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void serialize(Archive &ar)
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{
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}
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};
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}
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#endif // __MVG_OVERRIDE_DESCRIBER_AKAZE_H
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