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/*
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Copyright (c) 2015, Project OSRM contributors
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All rights reserved.
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Redistribution and use in source and binary forms, with or without modification,
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are permitted provided that the following conditions are met:
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Redistributions of source code must retain the above copyright notice, this list
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of conditions and the following disclaimer.
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Redistributions in binary form must reproduce the above copyright notice, this
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list of conditions and the following disclaimer in the documentation and/or
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other materials provided with the distribution.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
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ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR
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ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
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ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "raster_source.hpp"
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#include "../util/simple_logger.hpp"
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#include "../util/timing_util.hpp"
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#include <osrm/coordinate.hpp>
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#include <cmath>
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RasterSource::RasterSource(RasterGrid _raster_data,
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std::size_t _width,
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std::size_t _height,
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int _xmin,
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int _xmax,
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int _ymin,
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int _ymax)
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: xstep(calcSize(_xmin, _xmax, _width)), ystep(calcSize(_ymin, _ymax, _height)),
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raster_data(std::move(_raster_data)), width(_width), height(_height), xmin(_xmin),
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xmax(_xmax), ymin(_ymin), ymax(_ymax)
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{
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BOOST_ASSERT(xstep != 0);
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BOOST_ASSERT(ystep != 0);
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}
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float RasterSource::calcSize(int min, int max, std::size_t count) const
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{
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BOOST_ASSERT(count > 0);
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return (max - min) / (static_cast<float>(count) - 1);
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}
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// Query raster source for nearest data point
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RasterDatum RasterSource::getRasterData(const int lon, const int lat) const
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{
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if (lon < xmin || lon > xmax || lat < ymin || lat > ymax)
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{
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return {};
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}
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const std::size_t xth = static_cast<std::size_t>(round((lon - xmin) / xstep));
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const std::size_t yth = static_cast<std::size_t>(round((ymax - lat) / ystep));
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return {raster_data(xth, yth)};
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}
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// Query raster source using bilinear interpolation
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RasterDatum RasterSource::getRasterInterpolate(const int lon, const int lat) const
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{
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if (lon < xmin || lon > xmax || lat < ymin || lat > ymax)
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{
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return {};
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}
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const auto xthP = (lon - xmin) / xstep;
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const auto ythP = (ymax - lat) / ystep;
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const std::size_t top = static_cast<std::size_t>(fmax(floor(ythP), 0));
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const std::size_t bottom = static_cast<std::size_t>(fmin(ceil(ythP), height - 1));
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const std::size_t left = static_cast<std::size_t>(fmax(floor(xthP), 0));
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const std::size_t right = static_cast<std::size_t>(fmin(ceil(xthP), width - 1));
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// Calculate distances from corners for bilinear interpolation
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const float fromLeft = (lon - left * xstep + xmin) / xstep;
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const float fromTop = (ymax - top * ystep - lat) / ystep;
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const float fromRight = 1 - fromLeft;
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const float fromBottom = 1 - fromTop;
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return {static_cast<std::int32_t>(raster_data(left, top) * (fromRight * fromBottom) +
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raster_data(right, top) * (fromLeft * fromBottom) +
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raster_data(left, bottom) * (fromRight * fromTop) +
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raster_data(right, bottom) * (fromLeft * fromTop))};
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}
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// Load raster source into memory
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int SourceContainer::loadRasterSource(const std::string &path_string,
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double xmin,
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double xmax,
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double ymin,
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double ymax,
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std::size_t nrows,
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std::size_t ncols)
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{
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const auto _xmin = static_cast<int>(xmin * COORDINATE_PRECISION);
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const auto _xmax = static_cast<int>(xmax * COORDINATE_PRECISION);
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const auto _ymin = static_cast<int>(ymin * COORDINATE_PRECISION);
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const auto _ymax = static_cast<int>(ymax * COORDINATE_PRECISION);
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const auto itr = LoadedSourcePaths.find(path_string);
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if (itr != LoadedSourcePaths.end())
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{
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SimpleLogger().Write() << "[source loader] Already loaded source '" << path_string
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<< "' at source_id " << itr->second;
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return itr->second;
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}
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int source_id = static_cast<int>(LoadedSources.size());
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SimpleLogger().Write() << "[source loader] Loading from " << path_string << " ... ";
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TIMER_START(loading_source);
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boost::filesystem::path filepath(path_string);
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if (!boost::filesystem::exists(filepath))
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{
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throw osrm::exception("error reading: no such path");
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}
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RasterGrid rasterData{filepath, ncols, nrows};
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RasterSource source{std::move(rasterData), ncols, nrows, _xmin, _xmax, _ymin, _ymax};
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TIMER_STOP(loading_source);
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LoadedSourcePaths.emplace(path_string, source_id);
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LoadedSources.push_back(std::move(source));
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SimpleLogger().Write() << "[source loader] ok, after " << TIMER_SEC(loading_source) << "s";
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return source_id;
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}
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// External function for looking up nearest data point from a specified source
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RasterDatum SourceContainer::getRasterDataFromSource(unsigned int source_id, int lon, int lat)
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{
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if (LoadedSources.size() < source_id + 1)
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{
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throw osrm::exception("error reading: no such loaded source");
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}
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BOOST_ASSERT(lat < (90 * COORDINATE_PRECISION));
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BOOST_ASSERT(lat > (-90 * COORDINATE_PRECISION));
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BOOST_ASSERT(lon < (180 * COORDINATE_PRECISION));
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BOOST_ASSERT(lon > (-180 * COORDINATE_PRECISION));
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const auto &found = LoadedSources[source_id];
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return found.getRasterData(lon, lat);
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}
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// External function for looking up interpolated data from a specified source
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RasterDatum
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SourceContainer::getRasterInterpolateFromSource(unsigned int source_id, int lon, int lat)
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{
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if (LoadedSources.size() < source_id + 1)
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{
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throw osrm::exception("error reading: no such loaded source");
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}
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BOOST_ASSERT(lat < (90 * COORDINATE_PRECISION));
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BOOST_ASSERT(lat > (-90 * COORDINATE_PRECISION));
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BOOST_ASSERT(lon < (180 * COORDINATE_PRECISION));
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BOOST_ASSERT(lon > (-180 * COORDINATE_PRECISION));
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const auto &found = LoadedSources[source_id];
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return found.getRasterInterpolate(lon, lat);
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}
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