mirror of
https://github.com/ciphervance/supercell-wx.git
synced 2025-10-30 08:10:05 +00:00
288 lines
7.3 KiB
C++
288 lines
7.3 KiB
C++
#include <scwx/wsr88d/ar2v_file.hpp>
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#include <scwx/wsr88d/rda/message_factory.hpp>
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#include <scwx/wsr88d/rda/types.hpp>
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#include <scwx/util/rangebuf.hpp>
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#include <fstream>
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#include <sstream>
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#include <boost/iostreams/copy.hpp>
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#include <boost/iostreams/filtering_streambuf.hpp>
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#include <boost/iostreams/filter/bzip2.hpp>
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#include <boost/log/trivial.hpp>
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namespace scwx
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{
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namespace wsr88d
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{
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static const std::string logPrefix_ = "[scwx::wsr88d::ar2v_file] ";
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class Ar2vFileImpl
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{
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public:
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explicit Ar2vFileImpl() :
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tapeFilename_(),
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extensionNumber_(),
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julianDate_ {0},
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milliseconds_ {0},
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icao_(),
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numRecords_ {0},
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rawRecords_(),
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vcpData_ {nullptr},
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radarData_ {} {};
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~Ar2vFileImpl() = default;
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void HandleMessage(std::shared_ptr<rda::Message>& message);
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void LoadLDMRecords(std::ifstream& f);
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void ParseLDMRecords();
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void ProcessRadarData(std::shared_ptr<rda::DigitalRadarData> message);
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void ProcessVcpData();
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std::string tapeFilename_;
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std::string extensionNumber_;
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uint32_t julianDate_;
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uint32_t milliseconds_;
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std::string icao_;
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size_t numRecords_;
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std::shared_ptr<rda::VolumeCoveragePatternData> vcpData_;
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std::unordered_map<
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uint16_t,
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std::unordered_map<uint16_t, std::shared_ptr<rda::DigitalRadarData>>>
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radarData_;
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std::list<std::stringstream> rawRecords_;
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};
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Ar2vFile::Ar2vFile() : p(std::make_unique<Ar2vFileImpl>()) {}
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Ar2vFile::~Ar2vFile() = default;
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Ar2vFile::Ar2vFile(Ar2vFile&&) noexcept = default;
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Ar2vFile& Ar2vFile::operator=(Ar2vFile&&) noexcept = default;
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std::unordered_map<
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uint16_t,
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std::unordered_map<uint16_t, std::shared_ptr<rda::DigitalRadarData>>>
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Ar2vFile::radar_data() const
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{
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return p->radarData_;
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}
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std::shared_ptr<const rda::VolumeCoveragePatternData> Ar2vFile::vcp_data() const
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{
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return p->vcpData_;
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}
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bool Ar2vFile::LoadFile(const std::string& filename)
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{
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BOOST_LOG_TRIVIAL(debug) << logPrefix_ << "LoadFile(" << filename << ")";
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bool fileValid = true;
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std::ifstream f(filename, std::ios_base::in | std::ios_base::binary);
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if (!f.good())
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{
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BOOST_LOG_TRIVIAL(warning)
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<< logPrefix_ << "Could not open file for reading: " << filename;
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fileValid = false;
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}
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if (fileValid)
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{
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// Read Volume Header Record
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p->tapeFilename_.resize(9, ' ');
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p->extensionNumber_.resize(3, ' ');
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p->icao_.resize(4, ' ');
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f.read(&p->tapeFilename_[0], 9);
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f.read(&p->extensionNumber_[0], 3);
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f.read(reinterpret_cast<char*>(&p->julianDate_), 4);
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f.read(reinterpret_cast<char*>(&p->milliseconds_), 4);
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f.read(&p->icao_[0], 4);
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p->julianDate_ = ntohl(p->julianDate_);
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p->milliseconds_ = ntohl(p->milliseconds_);
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}
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if (f.eof())
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{
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BOOST_LOG_TRIVIAL(warning)
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<< logPrefix_ << "Could not read Volume Header Record\n";
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fileValid = false;
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}
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if (fileValid)
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{
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BOOST_LOG_TRIVIAL(debug)
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<< logPrefix_ << "Filename: " << p->tapeFilename_;
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BOOST_LOG_TRIVIAL(debug)
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<< logPrefix_ << "Extension: " << p->extensionNumber_;
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BOOST_LOG_TRIVIAL(debug) << logPrefix_ << "Date: " << p->julianDate_;
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BOOST_LOG_TRIVIAL(debug)
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<< logPrefix_ << "Time: " << p->milliseconds_;
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BOOST_LOG_TRIVIAL(debug) << logPrefix_ << "ICAO: " << p->icao_;
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p->LoadLDMRecords(f);
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}
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return fileValid;
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}
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void Ar2vFileImpl::LoadLDMRecords(std::ifstream& f)
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{
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BOOST_LOG_TRIVIAL(debug) << logPrefix_ << "Loading LDM Records";
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numRecords_ = 0;
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while (f.peek() != EOF)
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{
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std::streampos startPosition = f.tellg();
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int32_t controlWord = 0;
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size_t recordSize;
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f.read(reinterpret_cast<char*>(&controlWord), 4);
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controlWord = ntohl(controlWord);
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recordSize = std::abs(controlWord);
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BOOST_LOG_TRIVIAL(trace)
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<< logPrefix_ << "LDM Record Found: Size = " << recordSize << " bytes";
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boost::iostreams::filtering_streambuf<boost::iostreams::input> in;
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util::rangebuf r(f.rdbuf(), recordSize);
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in.push(boost::iostreams::bzip2_decompressor());
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in.push(r);
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try
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{
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std::stringstream ss;
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std::streamsize bytesCopied = boost::iostreams::copy(in, ss);
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BOOST_LOG_TRIVIAL(trace)
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<< logPrefix_ << "Decompressed record size = " << bytesCopied
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<< " bytes";
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rawRecords_.push_back(std::move(ss));
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}
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catch (const boost::iostreams::bzip2_error& ex)
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{
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int error = ex.error();
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BOOST_LOG_TRIVIAL(warning)
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<< logPrefix_ << "Error decompressing record " << numRecords_;
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f.seekg(startPosition + std::streampos(recordSize));
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}
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++numRecords_;
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}
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ParseLDMRecords();
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BOOST_LOG_TRIVIAL(debug)
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<< logPrefix_ << "Found " << numRecords_ << " LDM Records";
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}
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void Ar2vFileImpl::ParseLDMRecords()
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{
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BOOST_LOG_TRIVIAL(debug) << logPrefix_ << "Parsing LDM Records";
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size_t count = 0;
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for (auto it = rawRecords_.begin(); it != rawRecords_.end(); it++)
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{
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std::stringstream& ss = *it;
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BOOST_LOG_TRIVIAL(trace) << logPrefix_ << "Record " << count++;
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// The communications manager inserts an extra 12 bytes at the beginning
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// of each record
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ss.seekg(12);
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while (!ss.eof())
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{
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rda::MessageInfo msgInfo = rda::MessageFactory::Create(ss);
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if (!msgInfo.headerValid)
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{
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// Invalid message
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break;
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}
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if (msgInfo.messageValid)
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{
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HandleMessage(msgInfo.message);
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}
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off_t offset = 0;
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uint16_t nextSize = 0u;
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do
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{
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ss.read(reinterpret_cast<char*>(&nextSize), 2);
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if (nextSize == 0)
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{
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offset += 2;
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}
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else
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{
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ss.seekg(-2, std::ios_base::cur);
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}
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} while (!ss.eof() && nextSize == 0u);
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if (!ss.eof() && offset != 0)
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{
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BOOST_LOG_TRIVIAL(trace)
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<< logPrefix_ << "Next record offset by " << offset << " bytes";
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}
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}
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}
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rawRecords_.clear();
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}
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void Ar2vFileImpl::HandleMessage(std::shared_ptr<rda::Message>& message)
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{
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switch (message->header().message_type())
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{
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case static_cast<uint8_t>(rda::MessageId::VolumeCoveragePatternData):
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vcpData_ =
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std::static_pointer_cast<rda::VolumeCoveragePatternData>(message);
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ProcessVcpData();
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break;
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case static_cast<uint8_t>(rda::MessageId::DigitalRadarData):
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ProcessRadarData(
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std::static_pointer_cast<rda::DigitalRadarData>(message));
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break;
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default: break;
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}
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}
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void Ar2vFileImpl::ProcessRadarData(
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std::shared_ptr<rda::DigitalRadarData> message)
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{
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uint16_t azimuthIndex = message->azimuth_number() - 1;
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uint16_t elevationIndex = message->elevation_number() - 1;
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radarData_[elevationIndex][azimuthIndex] = message;
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}
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void Ar2vFileImpl::ProcessVcpData()
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{
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uint16_t numberOfElevationCuts = vcpData_->number_of_elevation_cuts();
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radarData_.reserve(numberOfElevationCuts);
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for (uint16_t e = 0; e < numberOfElevationCuts; ++e)
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{
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if (vcpData_->half_degree_azimuth(e))
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{
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radarData_[e].reserve(720);
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}
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else
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{
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radarData_[e].reserve(360);
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}
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}
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}
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} // namespace wsr88d
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} // namespace scwx
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