Bearing calculation on matching short segments fix.
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@ -25,7 +25,7 @@ std::pair<short, short> getDepartBearings(const LegGeometry &leg_geometry,
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const auto turn_coordinate = leg_geometry.locations.front();
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const auto post_turn_coordinate = *(leg_geometry.locations.begin() + 1);
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if (turn_coordinate == post_turn_coordinate)
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if (util::coordinate_calculation::haversineDistance(turn_coordinate, post_turn_coordinate) <= 1)
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{
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return std::make_pair<short, short>(0, source_node.GetBearing(traversed_in_reverse));
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}
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@ -41,7 +41,7 @@ std::pair<short, short> getArriveBearings(const LegGeometry &leg_geometry,
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BOOST_ASSERT(leg_geometry.locations.size() >= 2);
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const auto turn_coordinate = leg_geometry.locations.back();
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const auto pre_turn_coordinate = *(leg_geometry.locations.end() - 2);
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if (turn_coordinate == pre_turn_coordinate)
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if (util::coordinate_calculation::haversineDistance(turn_coordinate, pre_turn_coordinate) <= 1)
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{
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return std::make_pair<short, short>(target_node.GetBearing(traversed_in_reverse), 0);
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}
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@ -283,6 +283,7 @@ void trimShortSegments(std::vector<RouteStep> &steps, LegGeometry &geometry)
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geometry.osm_node_ids.begin() + offset);
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}
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auto const first_bearing = steps.front().maneuver.bearing_after;
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// We have to adjust the first step both for its name and the bearings
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if (zero_length_step)
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{
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@ -339,10 +340,14 @@ void trimShortSegments(std::vector<RouteStep> &steps, LegGeometry &geometry)
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});
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auto &first_step = steps.front();
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auto bearing = first_bearing;
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// we changed the geometry, we need to recalculate the bearing
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auto bearing = std::round(util::coordinate_calculation::bearing(
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if (geometry.locations[first_step.geometry_begin] != geometry.locations[first_step.geometry_begin + 1])
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{
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bearing = std::round(util::coordinate_calculation::bearing(
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geometry.locations[first_step.geometry_begin],
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geometry.locations[first_step.geometry_begin + 1]));
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}
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first_step.maneuver.bearing_after = bearing;
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first_step.intersections.front().bearings.front() = bearing;
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}
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