Program Listing for File StateStorage.h
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/* Author: Ioan Sucan */
#ifndef OMPL_BASE_STATE_STORAGE_
#define OMPL_BASE_STATE_STORAGE_
#include "ompl/base/StateSpace.h"
#include <boost/archive/binary_oarchive.hpp>
#include <boost/archive/binary_iarchive.hpp>
#include <boost/serialization/vector.hpp>
#include <functional>
#include <iostream>
namespace ompl
{
namespace base
{
OMPL_CLASS_FORWARD(StateStorage);
class StateStorage
{
public:
StateStorage(StateSpacePtr space);
virtual ~StateStorage();
const StateSpacePtr &getStateSpace() const
{
return space_;
}
void load(const char *filename);
virtual void load(std::istream &in);
void store(const char *filename);
virtual void store(std::ostream &out);
virtual void addState(const State *state);
virtual void generateSamples(unsigned int count);
virtual void clear();
std::size_t size() const
{
return states_.size();
}
const std::vector<const State *> &getStates() const
{
return states_;
}
State *getState(unsigned int index)
{
assert(states_.size() > index);
return const_cast<State *>(states_[index]);
}
const State *getState(unsigned int index) const
{
assert(states_.size() > index);
return states_[index];
}
bool hasMetadata() const
{
return hasMetadata_;
}
void sort(const std::function<bool(const State *, const State *)> &op);
StateSamplerAllocator getStateSamplerAllocator() const;
StateSamplerAllocator getStateSamplerAllocatorRangeUntil(std::size_t until) const;
StateSamplerAllocator getStateSamplerAllocatorRangeAfter(std::size_t after) const;
virtual StateSamplerAllocator getStateSamplerAllocatorRange(std::size_t from, std::size_t to) const;
virtual void print(std::ostream &out = std::cout) const;
protected:
struct Header
{
std::uint_fast32_t marker;
std::size_t state_count;
std::vector<int> signature;
template <typename Archive>
void serialize(Archive &ar, const unsigned int /*version*/)
{
ar ▮
ar &state_count;
ar &signature;
}
};
virtual void loadStates(const Header &h, boost::archive::binary_iarchive &ia);
virtual void loadMetadata(const Header &h, boost::archive::binary_iarchive &ia);
virtual void storeStates(const Header &h, boost::archive::binary_oarchive &oa);
virtual void storeMetadata(const Header &h, boost::archive::binary_oarchive &oa);
void freeMemory();
StateSpacePtr space_;
std::vector<const State *> states_;
bool hasMetadata_;
};
template <typename M>
class StateStorageWithMetadata : public StateStorage
{
public:
using MetadataType = M;
StateStorageWithMetadata(const StateSpacePtr &space) : StateStorage(space)
{
hasMetadata_ = true;
}
void addState(const State *state) override
{
addState(state, M());
}
virtual void addState(const State *state, const M &metadata)
{
StateStorage::addState(state);
metadata_.push_back(metadata);
}
void clear() override
{
StateStorage::clear();
metadata_.clear();
}
const M &getMetadata(unsigned int index) const
{
assert(metadata_.size() > index);
return metadata_[index];
}
M &getMetadata(unsigned int index)
{
assert(metadata_.size() > index);
return metadata_[index];
}
protected:
void loadMetadata(const Header & /*h*/, boost::archive::binary_iarchive &ia) override
{
// clear default metadata that was added by StateStorage::loadStates()
metadata_.clear();
ia >> metadata_;
}
void storeMetadata(const Header & /*h*/, boost::archive::binary_oarchive &oa) override
{
oa << metadata_;
}
std::vector<M> metadata_;
};
using GraphStateStorage = StateStorageWithMetadata<std::vector<std::size_t>>;
using GraphStateStoragePtr = std::shared_ptr<GraphStateStorage>;
}
}
#endif