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346 lines
13 KiB
C++
346 lines
13 KiB
C++
// Boost.Geometry Index
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// Additional tests
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// Copyright (c) 2011-2013 Adam Wulkiewicz, Lodz, Poland.
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// Use, modification and distribution is subject to the Boost Software License,
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// Version 1.0. (See accompanying file LICENSE_1_0.txt or copy at
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// http://www.boost.org/LICENSE_1_0.txt)
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#define BOOST_GEOMETRY_INDEX_DETAIL_EXPERIMENTAL
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#define BOOST_GEOMETRY_INDEX_DETAIL_ENABLE_TYPE_ERASED_ITERATORS
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#include <iostream>
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#include <boost/chrono.hpp>
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#include <boost/foreach.hpp>
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#include <boost/random.hpp>
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#include <boost/geometry/index/rtree.hpp>
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#include <boost/geometry/geometries/linestring.hpp>
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#include <boost/geometry/geometries/segment.hpp>
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namespace bg = boost::geometry;
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namespace bgi = bg::index;
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typedef bg::model::point<double, 2, bg::cs::cartesian> P;
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typedef bg::model::box<P> B;
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typedef bg::model::linestring<P> LS;
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typedef bg::model::segment<P> S;
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template <typename I1, typename I2, typename O>
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void mycopy(I1 first, I2 last, O o)
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{
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for ( ; first != last ; ++o, ++first )
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*o = *first;
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}
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int main()
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{
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typedef boost::chrono::thread_clock clock_t;
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typedef boost::chrono::duration<float> dur_t;
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size_t values_count = 1000000;
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size_t queries_count = 100000;
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size_t nearest_queries_count = 10000;
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unsigned neighbours_count = 10;
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size_t path_queries_count = 2000;
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size_t path_queries_count2 = 10000;
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unsigned path_values_count = 10;
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float max_val = static_cast<float>(values_count / 2);
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std::vector< std::pair<float, float> > coords;
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//randomize values
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{
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boost::mt19937 rng;
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//rng.seed(static_cast<unsigned int>(std::time(0)));
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boost::uniform_real<float> range(-max_val, max_val);
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boost::variate_generator<boost::mt19937&, boost::uniform_real<float> > rnd(rng, range);
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coords.reserve(values_count);
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std::cout << "randomizing data\n";
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for ( size_t i = 0 ; i < values_count ; ++i )
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{
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coords.push_back(std::make_pair(rnd(), rnd()));
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}
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std::cout << "randomized\n";
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}
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typedef bgi::rtree<B, bgi::linear<16, 4> > RT;
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//typedef bgi::rtree<B, bgi::quadratic<8, 3> > RT;
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//typedef bgi::rtree<B, bgi::rstar<8, 3> > RT;
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std::cout << "sizeof rtree: " << sizeof(RT) << std::endl;
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for (;;)
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{
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RT t;
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// inserting test
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{
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clock_t::time_point start = clock_t::now();
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for (size_t i = 0 ; i < values_count ; ++i )
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{
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float x = coords[i].first;
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float y = coords[i].second;
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B b(P(x - 0.5f, y - 0.5f), P(x + 0.5f, y + 0.5f));
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t.insert(b);
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - insert " << values_count << '\n';
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}
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std::vector<B> result;
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result.reserve(100);
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B result_one;
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{
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < queries_count ; ++i )
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{
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float x = coords[i].first;
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float y = coords[i].second;
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result.clear();
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t.query(bgi::intersects(B(P(x - 10, y - 10), P(x + 10, y + 10))), std::back_inserter(result));
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - query(B) " << queries_count << " found " << temp << '\n';
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}
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#ifdef BOOST_GEOMETRY_INDEX_DETAIL_EXPERIMENTAL
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{
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < queries_count ; ++i )
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{
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float x = coords[i].first;
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float y = coords[i].second;
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result.clear();
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std::copy(
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t.qbegin(bgi::intersects(B(P(x - 10, y - 10), P(x + 10, y + 10)))),
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t.qend(bgi::intersects(B(P(x - 10, y - 10), P(x + 10, y + 10)))),
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std::back_inserter(result));
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - qbegin(B) qend(B) " << queries_count << " found " << temp << '\n';
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}
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{
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < queries_count ; ++i )
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{
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float x = coords[i].first;
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float y = coords[i].second;
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result.clear();
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mycopy(
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t.qbegin(bgi::intersects(B(P(x - 10, y - 10), P(x + 10, y + 10)))),
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t.qend(),
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std::back_inserter(result));
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - qbegin(B) qend() " << queries_count << " found " << temp << '\n';
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}
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#ifdef BOOST_GEOMETRY_INDEX_DETAIL_ENABLE_TYPE_ERASED_ITERATORS
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{
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < queries_count ; ++i )
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{
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float x = coords[i].first;
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float y = coords[i].second;
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result.clear();
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RT::const_query_iterator first = t.qbegin(bgi::intersects(B(P(x - 10, y - 10), P(x + 10, y + 10))));
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RT::const_query_iterator last = t.qend(bgi::intersects(B(P(x - 10, y - 10), P(x + 10, y + 10))));
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std::copy(first, last, std::back_inserter(result));
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - type-erased qbegin(B) qend(B) " << queries_count << " found " << temp << '\n';
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}
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#endif
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#endif
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{
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < queries_count / 2 ; ++i )
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{
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float x1 = coords[i].first;
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float y1 = coords[i].second;
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float x2 = coords[i+1].first;
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float y2 = coords[i+1].second;
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float x3 = coords[i+2].first;
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float y3 = coords[i+2].second;
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result.clear();
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t.query(
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bgi::intersects(B(P(x1 - 10, y1 - 10), P(x1 + 10, y1 + 10)))
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&&
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!bgi::within(B(P(x2 - 10, y2 - 10), P(x2 + 10, y2 + 10)))
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&&
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!bgi::overlaps(B(P(x3 - 10, y3 - 10), P(x3 + 10, y3 + 10)))
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,
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std::back_inserter(result)
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);
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - query(i && !w && !o) " << queries_count << " found " << temp << '\n';
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}
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result.clear();
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{
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < nearest_queries_count ; ++i )
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{
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float x = coords[i].first + 100;
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float y = coords[i].second + 100;
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result.clear();
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temp += t.query(bgi::nearest(P(x, y), neighbours_count), std::back_inserter(result));
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - query(nearest(P, " << neighbours_count << ")) " << nearest_queries_count << " found " << temp << '\n';
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}
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#ifdef BOOST_GEOMETRY_INDEX_DETAIL_EXPERIMENTAL
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{
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < nearest_queries_count ; ++i )
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{
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float x = coords[i].first + 100;
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float y = coords[i].second + 100;
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result.clear();
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std::copy(
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t.qbegin(bgi::nearest(P(x, y), neighbours_count)),
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t.qend(bgi::nearest(P(x, y), neighbours_count)),
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std::back_inserter(result));
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - qbegin(nearest(P, " << neighbours_count << ")) qend(n) " << nearest_queries_count << " found " << temp << '\n';
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}
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{
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < nearest_queries_count ; ++i )
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{
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float x = coords[i].first + 100;
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float y = coords[i].second + 100;
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result.clear();
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mycopy(
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t.qbegin(bgi::nearest(P(x, y), neighbours_count)),
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t.qend(),
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std::back_inserter(result));
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - qbegin(nearest(P, " << neighbours_count << ")) qend() " << nearest_queries_count << " found " << temp << '\n';
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}
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#ifdef BOOST_GEOMETRY_INDEX_DETAIL_ENABLE_TYPE_ERASED_ITERATORS
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{
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < nearest_queries_count ; ++i )
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{
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float x = coords[i].first;
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float y = coords[i].second;
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result.clear();
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RT::const_query_iterator first = t.qbegin(bgi::nearest(P(x, y), neighbours_count));
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RT::const_query_iterator last = t.qend(bgi::nearest(P(x, y), neighbours_count));
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std::copy(first, last, std::back_inserter(result));
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - type-erased qbegin(nearest(P, " << neighbours_count << ")) qend(n) " << nearest_queries_count << " found " << temp << '\n';
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}
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#endif
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{
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LS ls;
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ls.resize(6);
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < path_queries_count ; ++i )
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{
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float x = coords[i].first;
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float y = coords[i].second;
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for ( int i = 0 ; i < 3 ; ++i )
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{
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float foo = i*max_val/300;
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ls[2*i] = P(x, y+foo);
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ls[2*i+1] = P(x+max_val/100, y+foo);
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}
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result.clear();
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t.query(bgi::path(ls, path_values_count), std::back_inserter(result));
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - query(path(LS6, " << path_values_count << ")) " << path_queries_count << " found " << temp << '\n';
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}
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{
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LS ls;
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ls.resize(2);
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < path_queries_count2 ; ++i )
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{
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float x = coords[i].first;
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float y = coords[i].second;
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ls[0] = P(x, y);
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ls[1] = P(x+max_val/100, y+max_val/100);
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result.clear();
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t.query(bgi::path(ls, path_values_count), std::back_inserter(result));
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - query(path(LS2, " << path_values_count << ")) " << path_queries_count2 << " found " << temp << '\n';
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}
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{
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clock_t::time_point start = clock_t::now();
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size_t temp = 0;
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for (size_t i = 0 ; i < path_queries_count2 ; ++i )
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{
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float x = coords[i].first;
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float y = coords[i].second;
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S seg(P(x, y), P(x+max_val/100, y+max_val/100));
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result.clear();
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t.query(bgi::path(seg, path_values_count), std::back_inserter(result));
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temp += result.size();
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - query(path(S, " << path_values_count << ")) " << path_queries_count2 << " found " << temp << '\n';
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}
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#endif
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{
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clock_t::time_point start = clock_t::now();
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for (size_t i = 0 ; i < values_count / 10 ; ++i )
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{
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float x = coords[i].first;
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float y = coords[i].second;
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B b(P(x - 0.5f, y - 0.5f), P(x + 0.5f, y + 0.5f));
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t.remove(b);
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}
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dur_t time = clock_t::now() - start;
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std::cout << time << " - remove " << values_count / 10 << '\n';
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}
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std::cout << "------------------------------------------------\n";
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}
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return 0;
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}
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