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			571 lines
		
	
	
	
		
			15 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			571 lines
		
	
	
	
		
			15 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| #include <scwx/network/ntp_client.hpp>
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| #include <scwx/types/ntp_types.hpp>
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| #include <scwx/util/logger.hpp>
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| #include <scwx/util/threads.hpp>
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| 
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| #include <condition_variable>
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| #include <mutex>
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| #include <optional>
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| 
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| #include <boost/asio/ip/udp.hpp>
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| #include <boost/asio/steady_timer.hpp>
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| #include <boost/asio/thread_pool.hpp>
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| #include <boost/asio/use_future.hpp>
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| #include <fmt/chrono.h>
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| 
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| namespace scwx::network
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| {
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| 
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| static const std::string logPrefix_ = "scwx::network::ntp_client";
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| static const auto        logger_    = scwx::util::Logger::Create(logPrefix_);
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| 
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| static constexpr std::size_t kReceiveBufferSize_ {48u};
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| 
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| // Reasonable min/max values for polling intervals. We don't want to poll too
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| // quickly and upset the server, but we don't want to poll too slowly in the
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| // event of a time jump.
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| static constexpr std::uint32_t kMinPollInterval_ = 6u; // 2^6 = 64 seconds
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| static constexpr std::uint32_t kMaxPollInterval_ = 9u; // 2^9 = 512 seconds
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| 
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| class NtpTimestamp
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| {
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| public:
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|    // NTP epoch: January 1, 1900
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|    // Unix epoch: January 1, 1970
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|    // Difference = 70 years = 2,208,988,800 seconds
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|    static constexpr std::uint32_t kNtpToUnixOffset_ = 2208988800UL;
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| 
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|    // NTP fractional part represents 1/2^32 of a second
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|    static constexpr std::uint64_t kFractionalMultiplier_ = 0x100000000ULL;
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| 
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|    static constexpr std::uint64_t _1e9 = 1000000000ULL;
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| 
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|    std::uint32_t seconds_ {0};
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|    std::uint32_t fraction_ {0};
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| 
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|    explicit NtpTimestamp() = default;
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|    explicit NtpTimestamp(std::uint32_t seconds, std::uint32_t fraction) :
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|        seconds_ {seconds}, fraction_ {fraction}
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|    {
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|    }
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|    ~NtpTimestamp() = default;
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| 
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|    NtpTimestamp(const NtpTimestamp&)            = default;
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|    NtpTimestamp& operator=(const NtpTimestamp&) = default;
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|    NtpTimestamp(NtpTimestamp&&)                 = default;
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|    NtpTimestamp& operator=(NtpTimestamp&&)      = default;
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| 
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|    template<typename Clock = std::chrono::system_clock>
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|    [[nodiscard]] std::chrono::time_point<Clock> ToTimePoint() const
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|    {
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|       // Convert NTP seconds to Unix seconds
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|       // Don't cast to a larger type to account for rollover, and this should
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|       // work until 2106
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|       const std::uint32_t unixSeconds = seconds_ - kNtpToUnixOffset_;
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| 
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|       // Convert NTP fraction to nanoseconds
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|       const auto nanoseconds =
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|          static_cast<std::uint64_t>(fraction_) * _1e9 / kFractionalMultiplier_;
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| 
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|       return std::chrono::time_point<Clock>(
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|          std::chrono::duration_cast<typename Clock::duration>(
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|             std::chrono::seconds {unixSeconds} +
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|             std::chrono::nanoseconds {nanoseconds}));
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|    }
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| 
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|    template<typename Clock = std::chrono::system_clock>
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|    static NtpTimestamp FromTimePoint(std::chrono::time_point<Clock> timePoint)
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|    {
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|       // Convert to duration since Unix epoch
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|       const auto unixDuration = timePoint.time_since_epoch();
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| 
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|       // Extract seconds and nanoseconds
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|       const auto unixSeconds =
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|          std::chrono::duration_cast<std::chrono::seconds>(unixDuration);
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|       const auto nanoseconds =
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|          std::chrono::duration_cast<std::chrono::nanoseconds>(unixDuration -
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|                                                               unixSeconds);
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| 
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|       // Convert Unix seconds to NTP seconds
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|       const auto ntpSeconds =
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|          static_cast<std::uint32_t>(unixSeconds.count() + kNtpToUnixOffset_);
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| 
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|       // Convert nanoseconds to NTP fractional seconds
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|       const auto ntpFraction = static_cast<std::uint32_t>(
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|          nanoseconds.count() * kFractionalMultiplier_ / _1e9);
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| 
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|       return NtpTimestamp(ntpSeconds, ntpFraction);
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|    }
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| };
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| 
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| class NtpClient::Impl
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| {
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| public:
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|    explicit Impl();
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|    ~Impl();
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|    Impl(const Impl&)            = delete;
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|    Impl& operator=(const Impl&) = delete;
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|    Impl(Impl&&)                 = delete;
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|    Impl& operator=(Impl&&)      = delete;
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| 
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|    void        Open(std::string_view host, std::string_view service);
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|    void        OpenCurrentServer();
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|    void        Poll();
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|    void        ReceivePacket(std::size_t length);
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|    std::string RotateServer();
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|    void        Run();
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|    void        RunOnce();
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| 
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|    void FinishInitialization();
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| 
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|    boost::asio::thread_pool threadPool_ {2u};
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| 
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|    boost::asio::steady_timer pollTimer_ {threadPool_};
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|    std::uint32_t             pollInterval_ {kMinPollInterval_};
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| 
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|    bool enabled_ {true};
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|    bool error_ {false};
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|    bool disableServer_ {false};
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|    bool rotateServer_ {false};
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| 
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|    std::mutex              initializationMutex_ {};
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|    std::condition_variable initializationCondition_ {};
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|    std::atomic<bool>       initialized_ {false};
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| 
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|    types::ntp::NtpPacket transmitPacket_ {};
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| 
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|    boost::asio::ip::udp::socket                  socket_ {threadPool_};
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|    std::optional<boost::asio::ip::udp::endpoint> serverEndpoint_ {};
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|    std::array<std::uint8_t, kReceiveBufferSize_> receiveBuffer_ {};
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| 
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|    std::chrono::system_clock::duration timeOffset_ {};
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| 
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|    const std::vector<std::string> serverList_ {"time.nist.gov",
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|                                                "time.cloudflare.com",
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|                                                "pool.ntp.org",
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|                                                "time.aws.com",
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|                                                "time.windows.com",
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|                                                "time.apple.com"};
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|    std::vector<std::string>       disabledServers_ {};
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| 
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|    std::vector<std::string>::const_iterator currentServer_ =
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|       serverList_.begin();
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| };
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| 
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| NtpClient::NtpClient() : p(std::make_unique<Impl>()) {}
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| NtpClient::~NtpClient() = default;
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| 
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| NtpClient::NtpClient(NtpClient&&) noexcept            = default;
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| NtpClient& NtpClient::operator=(NtpClient&&) noexcept = default;
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| 
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| NtpClient::Impl::Impl()
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| {
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|    using namespace std::chrono_literals;
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| 
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|    const auto now =
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|       std::chrono::floor<std::chrono::days>(std::chrono::system_clock::now());
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| 
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|    // The NTP timestamp will overflow in 2036. Overflow is handled in such a way
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|    // that dates prior to 1970 result in a Unix timestamp after 2036. Additional
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|    // handling for the year 2106 and subsequent eras is required.
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|    static constexpr auto kMaxYear_ = 2106y;
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| 
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|    enabled_ = now < kMaxYear_ / 1 / 1;
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| 
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|    transmitPacket_.fields.vn   = 3; // Version
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|    transmitPacket_.fields.mode = 3; // Client (3)
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| 
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|    // If the NTP client is enabled, wait until the first refresh to consider
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|    // "initialized". Otherwise, mark as initialized immediately to prevent a
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|    // deadlock.
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|    if (!enabled_)
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|    {
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|       initialized_ = true;
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|    }
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| }
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| 
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| NtpClient::Impl::~Impl()
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| {
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|    threadPool_.join();
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| }
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| 
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| bool NtpClient::error()
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| {
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|    const bool returnValue = p->error_;
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|    p->error_              = false;
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|    return returnValue;
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| }
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| 
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| std::chrono::system_clock::duration NtpClient::time_offset() const
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| {
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|    return p->timeOffset_;
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| }
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| 
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| void NtpClient::Start()
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| {
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|    if (p->enabled_)
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|    {
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|       boost::asio::post(p->threadPool_, [this]() { p->Run(); });
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|    }
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| }
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| 
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| void NtpClient::Stop()
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| {
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|    p->enabled_ = false;
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|    p->socket_.cancel();
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|    p->pollTimer_.cancel();
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|    p->threadPool_.join();
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| }
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| 
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| void NtpClient::Open(std::string_view host, std::string_view service)
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| {
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|    p->Open(host, service);
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| }
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| 
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| void NtpClient::OpenCurrentServer()
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| {
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|    p->OpenCurrentServer();
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| }
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| 
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| void NtpClient::Poll()
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| {
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|    p->Poll();
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| }
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| 
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| std::string NtpClient::RotateServer()
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| {
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|    return p->RotateServer();
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| }
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| 
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| void NtpClient::RunOnce()
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| {
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|    p->RunOnce();
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| }
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| 
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| void NtpClient::Impl::Open(std::string_view host, std::string_view service)
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| {
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|    boost::asio::ip::udp::resolver resolver(threadPool_);
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|    boost::system::error_code      ec;
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| 
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|    auto results = resolver.resolve(host, service, ec);
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|    if (ec.value() == boost::system::errc::success && !results.empty())
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|    {
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|       logger_->info("Using NTP server: {}", host);
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|       serverEndpoint_ = *results.begin();
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|       socket_.open(serverEndpoint_->protocol());
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|    }
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|    else
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|    {
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|       serverEndpoint_ = std::nullopt;
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|       logger_->warn("Could not resolve host {}: {}", host, ec.message());
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|       rotateServer_ = true;
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|    }
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| }
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| 
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| void NtpClient::Impl::OpenCurrentServer()
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| {
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|    Open(*currentServer_, "123");
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| }
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| 
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| void NtpClient::Impl::Poll()
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| {
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|    using namespace std::chrono_literals;
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| 
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|    static constexpr auto kTimeout_ = 5s;
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| 
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|    if (!serverEndpoint_.has_value())
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|    {
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|       logger_->error("Server endpoint not set");
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|       error_ = true;
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|       return;
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|    }
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| 
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|    try
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|    {
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|       const auto originTimestamp =
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|          NtpTimestamp::FromTimePoint(std::chrono::system_clock::now());
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|       transmitPacket_.txTm_s = ntohl(originTimestamp.seconds_);
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|       transmitPacket_.txTm_f = ntohl(originTimestamp.fraction_);
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| 
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|       const std::size_t transmitPacketSize = sizeof(transmitPacket_);
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|       // Send NTP request
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|       socket_.send_to(boost::asio::buffer(&transmitPacket_, transmitPacketSize),
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|                       *serverEndpoint_);
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| 
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|       // Receive NTP response
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|       auto future =
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|          socket_.async_receive_from(boost::asio::buffer(receiveBuffer_),
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|                                     *serverEndpoint_,
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|                                     boost::asio::use_future);
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|       std::size_t bytesReceived = 0;
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| 
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|       switch (future.wait_for(kTimeout_))
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|       {
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|       case std::future_status::ready:
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|          bytesReceived = future.get();
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|          ReceivePacket(bytesReceived);
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|          break;
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| 
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|       case std::future_status::timeout:
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|       case std::future_status::deferred:
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|          logger_->warn("Timeout waiting for NTP response");
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|          socket_.cancel();
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|          error_ = true;
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|          break;
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|       }
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|    }
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|    catch (const std::exception& ex)
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|    {
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|       logger_->error("Error polling: {}", ex.what());
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|       error_ = true;
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|    }
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| }
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| 
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| void NtpClient::Impl::ReceivePacket(std::size_t length)
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| {
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|    if (length >= sizeof(types::ntp::NtpPacket))
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|    {
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|       const auto destinationTime = std::chrono::system_clock::now();
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| 
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|       const auto packet = types::ntp::NtpPacket::Parse(receiveBuffer_);
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| 
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|       if (packet.stratum == 0)
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|       {
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|          const std::uint32_t refId = ntohl(packet.refId);
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|          const std::string   kod =
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|             std::string(reinterpret_cast<const char*>(&refId), 4);
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| 
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|          logger_->warn("KoD packet received: {}", kod);
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| 
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|          if (kod == "DENY" || kod == "RSTR")
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|          {
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|             // The client MUST demobilize any associations to that server and
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|             // stop sending packets to that server
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|             disableServer_ = true;
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|          }
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|          else if (kod == "RATE")
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|          {
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|             // The client MUST immediately reduce its polling interval to that
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|             // server and continue to reduce it each time it receives a RATE
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|             // kiss code
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|             if (pollInterval_ < kMaxPollInterval_)
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|             {
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|                ++pollInterval_;
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|             }
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|             else
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|             {
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|                // The server wants us to reduce the polling interval lower than
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|                // what we deem useful. Move to the next server.
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|                rotateServer_ = true;
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|             }
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|          }
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| 
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|          // Consider a KoD packet an error
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|          error_ = true;
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|       }
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|       else
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|       {
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|          const auto originTimestamp =
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|             NtpTimestamp(packet.origTm_s, packet.origTm_f);
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|          const auto receiveTimestamp =
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|             NtpTimestamp(packet.rxTm_s, packet.rxTm_f);
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|          const auto transmitTimestamp =
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|             NtpTimestamp(packet.txTm_s, packet.txTm_f);
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| 
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|          const auto originTime   = originTimestamp.ToTimePoint();
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|          const auto receiveTime  = receiveTimestamp.ToTimePoint();
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|          const auto transmitTime = transmitTimestamp.ToTimePoint();
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| 
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|          const auto& t0 = originTime;
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|          const auto& t1 = receiveTime;
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|          const auto& t2 = transmitTime;
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|          const auto& t3 = destinationTime;
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| 
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|          // Update time offset
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|          timeOffset_ = ((t1 - t0) + (t2 - t3)) / 2;
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| 
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|          logger_->debug("Time offset updated: {:%jd %T}", timeOffset_);
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|       }
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|    }
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|    else
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|    {
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|       logger_->warn("Received too few bytes: {}", length);
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|       error_ = true;
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|    }
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| }
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| 
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| std::string NtpClient::Impl::RotateServer()
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| {
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|    socket_.close();
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| 
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|    bool newServerFound = false;
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| 
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|    // Save the current server
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|    const auto oldServer = currentServer_;
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| 
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|    while (!newServerFound)
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|    {
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|       // Increment the current server
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|       ++currentServer_;
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| 
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|       // If we are at the end of the list, start over at the beginning
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|       if (currentServer_ == serverList_.end())
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|       {
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|          currentServer_ = serverList_.begin();
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|       }
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| 
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|       // If we have reached the end of the list, give up
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|       if (currentServer_ == oldServer)
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|       {
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|          enabled_ = false;
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|          break;
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|       }
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| 
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|       // If the current server is disabled, continue searching
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|       while (std::find(disabledServers_.cbegin(),
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|                        disabledServers_.cend(),
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|                        *currentServer_) != disabledServers_.cend())
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|       {
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|          continue;
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|       }
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| 
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|       // A new server has been found
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|       newServerFound = true;
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|    }
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| 
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|    pollInterval_ = kMinPollInterval_;
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|    rotateServer_ = false;
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| 
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|    return *currentServer_;
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| }
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| 
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| void NtpClient::Impl::Run()
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| {
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|    RunOnce();
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| 
 | |
|    if (enabled_)
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|    {
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|       const std::chrono::seconds pollIntervalSeconds {1u << pollInterval_};
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|       pollTimer_.expires_after(pollIntervalSeconds);
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|       pollTimer_.async_wait(
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|          [this](const boost::system::error_code& e)
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|          {
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|             if (e == boost::asio::error::operation_aborted)
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|             {
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|                logger_->debug("Poll timer cancelled");
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|             }
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|             else if (e != boost::system::errc::success)
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|             {
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|                logger_->warn("Poll timer error: {}", e.message());
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|             }
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|             else
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|             {
 | |
|                try
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|                {
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|                   Run();
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|                }
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|                catch (const std::exception& ex)
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|                {
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|                   logger_->error(ex.what());
 | |
|                }
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|             }
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|          });
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|    }
 | |
| }
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| 
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| void NtpClient::Impl::RunOnce()
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| {
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|    if (disableServer_)
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|    {
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|       // Disable the current server
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|       disabledServers_.push_back(*currentServer_);
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| 
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|       // Disable the NTP client if all servers are disabled
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|       enabled_ = disabledServers_.size() == serverList_.size();
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| 
 | |
|       if (!enabled_)
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|       {
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|          error_ = true;
 | |
|       }
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| 
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|       disableServer_ = false;
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|       rotateServer_  = enabled_;
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|    }
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| 
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|    if (!enabled_ && socket_.is_open())
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|    {
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|       // Sockets should be closed if the client is disabled
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|       socket_.close();
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|    }
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| 
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|    if (rotateServer_)
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|    {
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|       // Rotate the server if requested
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|       RotateServer();
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|    }
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| 
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|    if (enabled_ && !socket_.is_open())
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|    {
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|       // Open the current server if it is not open
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|       OpenCurrentServer();
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|    }
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| 
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|    if (socket_.is_open())
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|    {
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|       // Send an NTP message to determine the current time offset
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|       Poll();
 | |
|    }
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|    else if (enabled_)
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|    {
 | |
|       // Did not poll this frame
 | |
|       error_ = true;
 | |
|    }
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| 
 | |
|    FinishInitialization();
 | |
| }
 | |
| 
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| void NtpClient::Impl::FinishInitialization()
 | |
| {
 | |
|    if (!initialized_)
 | |
|    {
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|       // Set initialized to true
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|       std::unique_lock lock(initializationMutex_);
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|       initialized_ = true;
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|       lock.unlock();
 | |
| 
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|       // Notify any threads waiting for initialization
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|       initializationCondition_.notify_all();
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|    }
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| }
 | |
| 
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| void NtpClient::WaitForInitialOffset()
 | |
| {
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|    std::unique_lock lock(p->initializationMutex_);
 | |
| 
 | |
|    // While not yet initialized
 | |
|    while (!p->initialized_)
 | |
|    {
 | |
|       // Wait for initialization
 | |
|       p->initializationCondition_.wait(lock);
 | |
|    }
 | |
| }
 | |
| 
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| std::shared_ptr<NtpClient> NtpClient::Instance()
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| {
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|    static std::weak_ptr<NtpClient> ntpClientReference_ {};
 | |
|    static std::mutex               instanceMutex_ {};
 | |
| 
 | |
|    const std::unique_lock lock(instanceMutex_);
 | |
| 
 | |
|    std::shared_ptr<NtpClient> ntpClient = ntpClientReference_.lock();
 | |
| 
 | |
|    if (ntpClient == nullptr)
 | |
|    {
 | |
|       ntpClient           = std::make_shared<NtpClient>();
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|       ntpClientReference_ = ntpClient;
 | |
|    }
 | |
| 
 | |
|    return ntpClient;
 | |
| }
 | |
| 
 | |
| } // namespace scwx::network
 | 
