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/* -*- Mode:C++; c-file-style:"gnu"; indent-tabs-mode:nil; -*- */
/*
* Copyright (c) 2014-2018, The University of Memphis,
* Regents of the University of California,
* Arizona Board of Regents.
*
* This file is part of NLSR (Named-data Link State Routing).
* See AUTHORS.md for complete list of NLSR authors and contributors.
*
* NLSR is free software: you can redistribute it and/or modify it under the terms
* of the GNU General Public License as published by the Free Software Foundation,
* either version 3 of the License, or (at your option) any later version.
*
* NLSR is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY;
* without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR
* PURPOSE. See the GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License along with
* NLSR, e.g., in COPYING.md file. If not, see <http://www.gnu.org/licenses/>.
*/
#ifndef NLSR_TLV_COORDINATE_LSA_HPP
#define NLSR_TLV_COORDINATE_LSA_HPP
#include "lsa-info.hpp"
#include <ndn-cxx/util/time.hpp>
#include <ndn-cxx/encoding/block.hpp>
#include <ndn-cxx/encoding/encoding-buffer.hpp>
#include <ndn-cxx/encoding/tlv.hpp>
#include <ndn-cxx/name.hpp>
namespace nlsr {
namespace tlv {
/*!
\brief Data abstraction for CoordinateLsa
CoordinateLsa := COORDINATE-LSA-TYPE TLV-LENGTH
LsaInfo
HyperbolicRadius
HyperbolicAngle+
\sa https://redmine.named-data.net/projects/nlsr/wiki/LSDB_DataSet
*/
class CoordinateLsa
{
public:
class Error : public ndn::tlv::Error
{
public:
explicit
Error(const std::string& what)
: ndn::tlv::Error(what)
{
}
};
CoordinateLsa();
explicit
CoordinateLsa(const ndn::Block& block);
const LsaInfo&
getLsaInfo() const
{
return m_lsaInfo;
}
CoordinateLsa&
setLsaInfo(const LsaInfo& lsaInfo)
{
m_lsaInfo = lsaInfo;
m_wire.reset();
return *this;
}
double
getHyperbolicRadius() const
{
return m_hyperbolicRadius;
}
CoordinateLsa&
setHyperbolicRadius(double hyperbolicRadius)
{
m_hyperbolicRadius = hyperbolicRadius;
m_wire.reset();
return *this;
}
const std::vector<double>
getHyperbolicAngle() const
{
return m_hyperbolicAngle;
}
CoordinateLsa&
setHyperbolicAngle(const std::vector<double>& hyperbolicAngle)
{
m_hyperbolicAngle = hyperbolicAngle;
m_wire.reset();
return *this;
}
/*! \brief Encodes the hyperbolic coordinates and some info using the method in TAG.
*
* This function will TLV-format the hyperbolic coordinates objects and some LSA
* info using the implementation speciifed by TAG. Usually this is
* called with an estimator first to guess how long the buffer needs
* to be, then with an encoder to do the real work. This process is
* automated by the other wireEncode.
* \sa CoordinateLsa::wireEncode()
*/
template<ndn::encoding::Tag TAG>
size_t
wireEncode(ndn::EncodingImpl<TAG>& block) const;
/*! \brief Create a TLV encoding of this object.
*
* Create a block containing the TLV encoding of this object. That
* involves two steps: estimating the size that the information will
* take up, and then creating a buffer of that size and encoding the
* information into it. Both steps are accomplished by
* CoordinateLsa::wireEncode(ndn::EncodingImpl<TAG>&)
*/
const ndn::Block&
wireEncode() const;
/*! \brief Populate this object by decoding the one contained in the
* given block.
*/
void
wireDecode(const ndn::Block& wire);
private:
LsaInfo m_lsaInfo;
double m_hyperbolicRadius;
std::vector<double> m_hyperbolicAngle;
mutable ndn::Block m_wire;
};
NDN_CXX_DECLARE_WIRE_ENCODE_INSTANTIATIONS(CoordinateLsa);
std::ostream&
operator<<(std::ostream& os, const CoordinateLsa& coordinateLsa);
} // namespace tlv
} // namespace nlsr
#endif // NLSR_TLV_COORDINATE_LSA_HPP