#ifndef OSRM_EXTRACTOR_IO_HPP #define OSRM_EXTRACTOR_IO_HPP #include "extractor/datasources.hpp" #include "extractor/intersection_bearings_container.hpp" #include "extractor/nbg_to_ebg.hpp" #include "extractor/node_data_container.hpp" #include "extractor/profile_properties.hpp" #include "extractor/restriction.hpp" #include "extractor/segment_data_container.hpp" #include "extractor/turn_data_container.hpp" #include "storage/io.hpp" #include "storage/serialization.hpp" #include namespace osrm { namespace extractor { namespace serialization { // read/write for bearing data template inline void read(storage::io::FileReader &reader, detail::IntersectionBearingsContainer &intersection_bearings) { storage::serialization::read(reader, intersection_bearings.values); storage::serialization::read(reader, intersection_bearings.node_to_class_id); util::serialization::read(reader, intersection_bearings.class_id_to_ranges_table); } template inline void write(storage::io::FileWriter &writer, const detail::IntersectionBearingsContainer &intersection_bearings) { storage::serialization::write(writer, intersection_bearings.values); storage::serialization::write(writer, intersection_bearings.node_to_class_id); util::serialization::write(writer, intersection_bearings.class_id_to_ranges_table); } // read/write for properties file inline void read(storage::io::FileReader &reader, ProfileProperties &properties) { reader.ReadInto(properties); } inline void write(storage::io::FileWriter &writer, const ProfileProperties &properties) { writer.WriteFrom(properties); } // read/write for datasources file inline void read(storage::io::FileReader &reader, Datasources &sources) { reader.ReadInto(sources); } inline void write(storage::io::FileWriter &writer, Datasources &sources) { writer.WriteFrom(sources); } // read/write for segment data file template inline void read(storage::io::FileReader &reader, detail::SegmentDataContainerImpl &segment_data) { storage::serialization::read(reader, segment_data.index); storage::serialization::read(reader, segment_data.nodes); util::serialization::read(reader, segment_data.fwd_weights); util::serialization::read(reader, segment_data.rev_weights); util::serialization::read(reader, segment_data.fwd_durations); util::serialization::read(reader, segment_data.rev_durations); storage::serialization::read(reader, segment_data.datasources); } template inline void write(storage::io::FileWriter &writer, const detail::SegmentDataContainerImpl &segment_data) { storage::serialization::write(writer, segment_data.index); storage::serialization::write(writer, segment_data.nodes); util::serialization::write(writer, segment_data.fwd_weights); util::serialization::write(writer, segment_data.rev_weights); util::serialization::write(writer, segment_data.fwd_durations); util::serialization::write(writer, segment_data.rev_durations); storage::serialization::write(writer, segment_data.datasources); } // read/write for turn data file template inline void read(storage::io::FileReader &reader, detail::TurnDataContainerImpl &turn_data_container) { storage::serialization::read(reader, turn_data_container.turn_instructions); storage::serialization::read(reader, turn_data_container.lane_data_ids); storage::serialization::read(reader, turn_data_container.entry_class_ids); storage::serialization::read(reader, turn_data_container.pre_turn_bearings); storage::serialization::read(reader, turn_data_container.post_turn_bearings); } template inline void write(storage::io::FileWriter &writer, const detail::TurnDataContainerImpl &turn_data_container) { storage::serialization::write(writer, turn_data_container.turn_instructions); storage::serialization::write(writer, turn_data_container.lane_data_ids); storage::serialization::write(writer, turn_data_container.entry_class_ids); storage::serialization::write(writer, turn_data_container.pre_turn_bearings); storage::serialization::write(writer, turn_data_container.post_turn_bearings); } template inline void read(storage::io::FileReader &reader, detail::EdgeBasedNodeDataContainerImpl &node_data_container) { storage::serialization::read(reader, node_data_container.geometry_ids); storage::serialization::read(reader, node_data_container.name_ids); storage::serialization::read(reader, node_data_container.component_ids); storage::serialization::read(reader, node_data_container.travel_modes); storage::serialization::read(reader, node_data_container.classes); } template inline void write(storage::io::FileWriter &writer, const detail::EdgeBasedNodeDataContainerImpl &node_data_container) { storage::serialization::write(writer, node_data_container.geometry_ids); storage::serialization::write(writer, node_data_container.name_ids); storage::serialization::write(writer, node_data_container.component_ids); storage::serialization::write(writer, node_data_container.travel_modes); storage::serialization::write(writer, node_data_container.classes); } // read/write for conditional turn restrictions file inline void read(storage::io::FileReader &reader, std::vector &restrictions) { auto num_indices = reader.ReadElementCount64(); restrictions.reserve(num_indices); TurnRestriction restriction; while (num_indices > 0) { bool is_only; reader.ReadInto(restriction.via); reader.ReadInto(restriction.from); reader.ReadInto(restriction.to); reader.ReadInto(is_only); auto num_conditions = reader.ReadElementCount64(); restriction.condition.resize(num_conditions); for (uint64_t i = 0; i < num_conditions; i++) { reader.ReadInto(restriction.condition[i].modifier); storage::serialization::read(reader, restriction.condition[i].times); storage::serialization::read(reader, restriction.condition[i].weekdays); storage::serialization::read(reader, restriction.condition[i].monthdays); } restriction.flags.is_only = is_only; restrictions.push_back(std::move(restriction)); num_indices--; } } inline void write(storage::io::FileWriter &writer, const TurnRestriction &restriction) { writer.WriteOne(restriction.via); writer.WriteOne(restriction.from); writer.WriteOne(restriction.to); writer.WriteOne(restriction.flags.is_only); writer.WriteElementCount64(restriction.condition.size()); for (const auto &c : restriction.condition) { writer.WriteOne(c.modifier); storage::serialization::write(writer, c.times); storage::serialization::write(writer, c.weekdays); storage::serialization::write(writer, c.monthdays); } } } } } #endif