227 lines
4.8 KiB
C++
227 lines
4.8 KiB
C++
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// HTTPServer.cpp
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// Implements the cHTTPServer class representing a HTTP webserver that uses cListenThread and cSocketThreads for processing
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#include "Globals.h"
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#include "HTTPServer.h"
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#include "HTTPMessageParser.h"
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#include "HTTPServerConnection.h"
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#include "HTTPFormParser.h"
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#include "SslHTTPServerConnection.h"
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// Disable MSVC warnings:
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#if defined(_MSC_VER)
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#pragma warning(push)
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#pragma warning(disable:4355) // 'this' : used in base member initializer list
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#endif
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////////////////////////////////////////////////////////////////////////////////
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// cHTTPServerListenCallbacks:
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class cHTTPServerListenCallbacks:
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public cNetwork::cListenCallbacks
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{
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public:
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cHTTPServerListenCallbacks(cHTTPServer & a_HTTPServer, UInt16 a_Port):
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m_HTTPServer(a_HTTPServer),
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m_Port(a_Port)
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{
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}
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protected:
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/** The HTTP server instance that we're attached to. */
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cHTTPServer & m_HTTPServer;
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/** The port for which this instance is responsible. */
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UInt16 m_Port;
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// cNetwork::cListenCallbacks overrides:
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virtual cTCPLink::cCallbacksPtr OnIncomingConnection(const AString & a_RemoteIPAddress, UInt16 a_RemotePort) override
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{
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return m_HTTPServer.OnIncomingConnection(a_RemoteIPAddress, a_RemotePort);
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}
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virtual void OnAccepted(cTCPLink & a_Link) override {}
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virtual void OnError(int a_ErrorCode, const AString & a_ErrorMsg) override
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{
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LOGWARNING("HTTP server error on port %d: %d (%s)", m_Port, a_ErrorCode, a_ErrorMsg.c_str());
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}
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};
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////////////////////////////////////////////////////////////////////////////////
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// cHTTPServer:
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cHTTPServer::cHTTPServer(void) :
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m_Callbacks(nullptr)
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{
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}
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cHTTPServer::~cHTTPServer()
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{
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Stop();
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}
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bool cHTTPServer::Initialize(void)
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{
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// Read the HTTPS cert + key:
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AString CertFile = cFile::ReadWholeFile("webadmin/httpscert.crt");
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AString KeyFile = cFile::ReadWholeFile("webadmin/httpskey.pem");
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if (!CertFile.empty() && !KeyFile.empty())
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{
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m_Cert.reset(new cX509Cert);
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int res = m_Cert->Parse(CertFile.data(), CertFile.size());
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if (res == 0)
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{
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m_CertPrivKey.reset(new cCryptoKey);
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int res2 = m_CertPrivKey->ParsePrivate(KeyFile.data(), KeyFile.size(), "");
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if (res2 != 0)
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{
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// Reading the private key failed, reset the cert:
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LOGWARNING("WebServer: Cannot read HTTPS certificate private key: -0x%x", -res2);
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m_Cert.reset();
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}
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}
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else
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{
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LOGWARNING("WebServer: Cannot read HTTPS certificate: -0x%x", -res);
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}
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}
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// Notify the admin about the HTTPS / HTTP status
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if (m_Cert.get() == nullptr)
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{
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LOGWARNING("WebServer: The server will run in unsecured HTTP mode.");
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LOGINFO("Put a valid HTTPS certificate in file 'webadmin/httpscert.crt' and its corresponding private key to 'webadmin/httpskey.pem' (without any password) to enable HTTPS support");
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}
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else
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{
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LOGINFO("WebServer: The server will run in secure HTTPS mode.");
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}
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return true;
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}
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bool cHTTPServer::Start(cCallbacks & a_Callbacks, const AStringVector & a_Ports)
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{
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m_Callbacks = &a_Callbacks;
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// Open up requested ports:
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AStringVector ports;
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for (auto port : a_Ports)
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{
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UInt16 PortNum;
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if (!StringToInteger(port, PortNum))
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{
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LOGWARNING("WebServer: Invalid port value: \"%s\". Ignoring.", port.c_str());
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continue;
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}
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auto Handle = cNetwork::Listen(PortNum, std::make_shared<cHTTPServerListenCallbacks>(*this, PortNum));
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if (Handle->IsListening())
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{
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m_ServerHandles.push_back(Handle);
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ports.push_back(port);
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}
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} // for port - a_Ports[]
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// Inform the admin about the ports opened:
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AString reportPorts;
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for (const auto & port: ports)
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{
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if (!reportPorts.empty())
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{
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reportPorts.append(", ");
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}
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reportPorts.append(port);
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}
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LOGINFO("WebAdmin is running on port(s) %s", reportPorts.c_str());
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// Report success if at least one port opened successfully:
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return !m_ServerHandles.empty();
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}
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void cHTTPServer::Stop(void)
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{
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for (auto handle : m_ServerHandles)
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{
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handle->Close();
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}
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m_ServerHandles.clear();
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}
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cTCPLink::cCallbacksPtr cHTTPServer::OnIncomingConnection(const AString & a_RemoteIPAddress, UInt16 a_RemotePort)
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{
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UNUSED(a_RemoteIPAddress);
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UNUSED(a_RemotePort);
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if (m_Cert.get() != nullptr)
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{
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return std::make_shared<cSslHTTPServerConnection>(*this, m_Cert, m_CertPrivKey);
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}
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else
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{
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return std::make_shared<cHTTPServerConnection>(*this);
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}
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}
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void cHTTPServer::NewRequest(cHTTPServerConnection & a_Connection, cHTTPIncomingRequest & a_Request)
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{
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m_Callbacks->OnRequestBegun(a_Connection, a_Request);
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}
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void cHTTPServer::RequestBody(cHTTPServerConnection & a_Connection, cHTTPIncomingRequest & a_Request, const void * a_Data, size_t a_Size)
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{
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m_Callbacks->OnRequestBody(a_Connection, a_Request, reinterpret_cast<const char *>(a_Data), a_Size);
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}
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void cHTTPServer::RequestFinished(cHTTPServerConnection & a_Connection, cHTTPIncomingRequest & a_Request)
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{
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m_Callbacks->OnRequestFinished(a_Connection, a_Request);
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}
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