mirror of
https://github.com/ZLMediaKit/ZLMediaKit.git
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237 lines
6.4 KiB
C++
237 lines
6.4 KiB
C++
#ifndef MS_RTC_DTLS_TRANSPORT_HPP
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#define MS_RTC_DTLS_TRANSPORT_HPP
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#include "SrtpSession.hpp"
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#include <openssl/bio.h>
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#include <openssl/ssl.h>
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#include <openssl/x509.h>
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#include <map>
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#include <string>
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#include <vector>
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#include "Poller/Timer.h"
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#include "Poller/EventPoller.h"
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using namespace toolkit;
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namespace RTC
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{
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class DtlsTransport : public std::enable_shared_from_this<DtlsTransport>
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{
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public:
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enum class DtlsState
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{
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NEW = 1,
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CONNECTING,
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CONNECTED,
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FAILED,
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CLOSED
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};
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public:
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enum class Role
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{
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NONE = 0,
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AUTO = 1,
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CLIENT,
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SERVER
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};
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public:
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enum class FingerprintAlgorithm
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{
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NONE = 0,
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SHA1 = 1,
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SHA224,
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SHA256,
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SHA384,
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SHA512
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};
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public:
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struct Fingerprint
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{
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FingerprintAlgorithm algorithm{ FingerprintAlgorithm::NONE };
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std::string value;
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};
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private:
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struct SrtpCryptoSuiteMapEntry
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{
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RTC::SrtpSession::CryptoSuite cryptoSuite;
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const char* name;
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};
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class DtlsEnvironment : public std::enable_shared_from_this<DtlsEnvironment>
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{
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public:
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using Ptr = std::shared_ptr<DtlsEnvironment>;
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~DtlsEnvironment();
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static DtlsEnvironment& Instance();
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private:
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DtlsEnvironment();
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void GenerateCertificateAndPrivateKey();
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void ReadCertificateAndPrivateKeyFromFiles();
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void CreateSslCtx();
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void GenerateFingerprints();
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public:
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X509* certificate{ nullptr };
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EVP_PKEY* privateKey{ nullptr };
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SSL_CTX* sslCtx{ nullptr };
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std::vector<Fingerprint> localFingerprints;
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};
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public:
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class Listener
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{
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public:
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// DTLS is in the process of negotiating a secure connection. Incoming
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// media can flow through.
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// NOTE: The caller MUST NOT call any method during this callback.
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virtual void OnDtlsTransportConnecting(const RTC::DtlsTransport* dtlsTransport) = 0;
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// DTLS has completed negotiation of a secure connection (including DTLS-SRTP
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// and remote fingerprint verification). Outgoing media can now flow through.
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// NOTE: The caller MUST NOT call any method during this callback.
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virtual void OnDtlsTransportConnected(
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const RTC::DtlsTransport* dtlsTransport,
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RTC::SrtpSession::CryptoSuite srtpCryptoSuite,
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uint8_t* srtpLocalKey,
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size_t srtpLocalKeyLen,
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uint8_t* srtpRemoteKey,
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size_t srtpRemoteKeyLen,
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std::string& remoteCert) = 0;
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// The DTLS connection has been closed as the result of an error (such as a
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// DTLS alert or a failure to validate the remote fingerprint).
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virtual void OnDtlsTransportFailed(const RTC::DtlsTransport* dtlsTransport) = 0;
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// The DTLS connection has been closed due to receipt of a close_notify alert.
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virtual void OnDtlsTransportClosed(const RTC::DtlsTransport* dtlsTransport) = 0;
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// Need to send DTLS data to the peer.
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virtual void OnDtlsTransportSendData(
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const RTC::DtlsTransport* dtlsTransport, const uint8_t* data, size_t len) = 0;
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// DTLS application data received.
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virtual void OnDtlsTransportApplicationDataReceived(
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const RTC::DtlsTransport* dtlsTransport, const uint8_t* data, size_t len) = 0;
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};
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public:
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static Role StringToRole(const std::string& role)
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{
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auto it = DtlsTransport::string2Role.find(role);
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if (it != DtlsTransport::string2Role.end())
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return it->second;
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else
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return DtlsTransport::Role::NONE;
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}
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static FingerprintAlgorithm GetFingerprintAlgorithm(const std::string& fingerprint)
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{
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auto it = DtlsTransport::string2FingerprintAlgorithm.find(fingerprint);
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if (it != DtlsTransport::string2FingerprintAlgorithm.end())
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return it->second;
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else
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return DtlsTransport::FingerprintAlgorithm::NONE;
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}
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static std::string& GetFingerprintAlgorithmString(FingerprintAlgorithm fingerprint)
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{
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auto it = DtlsTransport::fingerprintAlgorithm2String.find(fingerprint);
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return it->second;
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}
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static bool IsDtls(const uint8_t* data, size_t len)
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{
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// clang-format off
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return (
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// Minimum DTLS record length is 13 bytes.
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(len >= 13) &&
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// DOC: https://tools.ietf.org/html/draft-ietf-avtcore-rfc5764-mux-fixes
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(data[0] > 19 && data[0] < 64)
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);
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// clang-format on
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}
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private:
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static std::map<std::string, Role> string2Role;
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static std::map<std::string, FingerprintAlgorithm> string2FingerprintAlgorithm;
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static std::map<FingerprintAlgorithm, std::string> fingerprintAlgorithm2String;
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static std::vector<SrtpCryptoSuiteMapEntry> srtpCryptoSuites;
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public:
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DtlsTransport(EventPoller::Ptr poller, Listener* listener);
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~DtlsTransport();
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public:
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void Dump() const;
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void Run(Role localRole);
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std::vector<Fingerprint>& GetLocalFingerprints() const
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{
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return env->localFingerprints;
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}
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bool SetRemoteFingerprint(Fingerprint fingerprint);
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void ProcessDtlsData(const uint8_t* data, size_t len);
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DtlsState GetState() const
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{
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return this->state;
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}
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Role GetLocalRole() const
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{
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return this->localRole;
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}
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void SendApplicationData(const uint8_t* data, size_t len);
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private:
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bool IsRunning() const
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{
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switch (this->state)
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{
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case DtlsState::NEW:
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return false;
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case DtlsState::CONNECTING:
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case DtlsState::CONNECTED:
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return true;
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case DtlsState::FAILED:
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case DtlsState::CLOSED:
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return false;
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}
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// Make GCC 4.9 happy.
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return false;
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}
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void Reset();
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bool CheckStatus(int returnCode);
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void SendPendingOutgoingDtlsData();
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bool SetTimeout();
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bool ProcessHandshake();
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bool CheckRemoteFingerprint();
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void ExtractSrtpKeys(RTC::SrtpSession::CryptoSuite srtpCryptoSuite);
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RTC::SrtpSession::CryptoSuite GetNegotiatedSrtpCryptoSuite();
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private:
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void OnSslInfo(int where, int ret);
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void OnTimer();
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private:
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DtlsEnvironment::Ptr env;
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EventPoller::Ptr poller;
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// Passed by argument.
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Listener* listener{ nullptr };
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// Allocated by this.
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SSL* ssl{ nullptr };
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BIO* sslBioFromNetwork{ nullptr }; // The BIO from which ssl reads.
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BIO* sslBioToNetwork{ nullptr }; // The BIO in which ssl writes.
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Timer::Ptr timer;
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// Others.
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DtlsState state{ DtlsState::NEW };
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Role localRole{ Role::NONE };
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Fingerprint remoteFingerprint;
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bool handshakeDone{ false };
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bool handshakeDoneNow{ false };
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std::string remoteCert;
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//最大不超过mtu
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static constexpr int SslReadBufferSize{ 2000 };
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uint8_t sslReadBuffer[SslReadBufferSize];
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};
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} // namespace RTC
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#endif
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