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I2P: End-to-End encrypted and anonymous Internet
https://i2pd.website/
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773 lines
21 KiB
773 lines
21 KiB
#include <stdio.h> |
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#include <string.h> |
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#include "I2PEndian.h" |
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#include <fstream> |
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#include <boost/lexical_cast.hpp> |
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#include "version.h" |
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#include "Crypto.h" |
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#include "Base.h" |
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#include "Timestamp.h" |
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#include "Log.h" |
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#include "NetDb.h" |
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#include "RouterInfo.h" |
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namespace i2p |
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{ |
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namespace data |
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{ |
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RouterInfo::RouterInfo (): m_Buffer (nullptr) |
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{ |
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m_Addresses = std::make_shared<Addresses>(); // create empty list |
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} |
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|
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RouterInfo::RouterInfo (const std::string& fullPath): |
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m_FullPath (fullPath), m_IsUpdated (false), m_IsUnreachable (false), |
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m_SupportedTransports (0), m_Caps (0) |
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{ |
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m_Addresses = std::make_shared<Addresses>(); // create empty list |
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m_Buffer = new uint8_t[MAX_RI_BUFFER_SIZE]; |
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ReadFromFile (); |
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} |
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RouterInfo::RouterInfo (const uint8_t * buf, int len): |
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m_IsUpdated (true), m_IsUnreachable (false), m_SupportedTransports (0), m_Caps (0) |
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{ |
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m_Addresses = std::make_shared<Addresses>(); // create empty list |
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m_Buffer = new uint8_t[MAX_RI_BUFFER_SIZE]; |
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memcpy (m_Buffer, buf, len); |
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m_BufferLen = len; |
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ReadFromBuffer (true); |
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} |
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RouterInfo::~RouterInfo () |
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{ |
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delete[] m_Buffer; |
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} |
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void RouterInfo::Update (const uint8_t * buf, int len) |
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{ |
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// verify signature since we have indentity already |
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int l = len - m_RouterIdentity->GetSignatureLen (); |
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if (m_RouterIdentity->Verify (buf, l, buf + l)) |
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{ |
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// clean up |
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m_IsUpdated = true; |
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m_IsUnreachable = false; |
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m_SupportedTransports = 0; |
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m_Caps = 0; |
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// don't clean up m_Addresses, it will be replaced in ReadFromStream |
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m_Properties.clear (); |
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// copy buffer |
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if (!m_Buffer) |
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m_Buffer = new uint8_t[MAX_RI_BUFFER_SIZE]; |
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memcpy (m_Buffer, buf, len); |
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m_BufferLen = len; |
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// skip identity |
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size_t identityLen = m_RouterIdentity->GetFullLen (); |
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// read new RI |
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std::stringstream str (std::string ((char *)m_Buffer + identityLen, m_BufferLen - identityLen)); |
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ReadFromStream (str); |
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// don't delete buffer until saved to the file |
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} |
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else |
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{ |
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LogPrint (eLogError, "RouterInfo: signature verification failed"); |
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m_IsUnreachable = true; |
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} |
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} |
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void RouterInfo::SetRouterIdentity (std::shared_ptr<const IdentityEx> identity) |
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{ |
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m_RouterIdentity = identity; |
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m_Timestamp = i2p::util::GetMillisecondsSinceEpoch (); |
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} |
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bool RouterInfo::LoadFile () |
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{ |
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std::ifstream s(m_FullPath, std::ifstream::binary); |
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if (s.is_open ()) |
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{ |
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s.seekg (0,std::ios::end); |
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m_BufferLen = s.tellg (); |
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if (m_BufferLen < 40 || m_BufferLen > MAX_RI_BUFFER_SIZE) |
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{ |
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LogPrint(eLogError, "RouterInfo: File", m_FullPath, " is malformed"); |
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return false; |
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} |
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s.seekg(0, std::ios::beg); |
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if (!m_Buffer) |
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m_Buffer = new uint8_t[MAX_RI_BUFFER_SIZE]; |
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s.read((char *)m_Buffer, m_BufferLen); |
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} |
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else |
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{ |
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LogPrint (eLogError, "RouterInfo: Can't open file ", m_FullPath); |
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return false; |
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} |
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return true; |
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} |
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void RouterInfo::ReadFromFile () |
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{ |
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if (LoadFile ()) |
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ReadFromBuffer (false); |
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else |
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m_IsUnreachable = true; |
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} |
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void RouterInfo::ReadFromBuffer (bool verifySignature) |
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{ |
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m_RouterIdentity = std::make_shared<IdentityEx>(m_Buffer, m_BufferLen); |
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size_t identityLen = m_RouterIdentity->GetFullLen (); |
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if (identityLen >= m_BufferLen) |
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{ |
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LogPrint (eLogError, "RouterInfo: identity length ", identityLen, " exceeds buffer size ", m_BufferLen); |
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m_IsUnreachable = true; |
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return; |
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} |
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std::stringstream str (std::string ((char *)m_Buffer + identityLen, m_BufferLen - identityLen)); |
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ReadFromStream (str); |
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if (!str) |
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{ |
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LogPrint (eLogError, "RouterInfo: malformed message"); |
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m_IsUnreachable = true; |
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return; |
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} |
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if (verifySignature) |
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{ |
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// verify signature |
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int l = m_BufferLen - m_RouterIdentity->GetSignatureLen (); |
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if (l < 0 || !m_RouterIdentity->Verify ((uint8_t *)m_Buffer, l, (uint8_t *)m_Buffer + l)) |
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{ |
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LogPrint (eLogError, "RouterInfo: signature verification failed"); |
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m_IsUnreachable = true; |
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} |
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m_RouterIdentity->DropVerifier (); |
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} |
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} |
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void RouterInfo::ReadFromStream (std::istream& s) |
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{ |
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s.read ((char *)&m_Timestamp, sizeof (m_Timestamp)); |
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m_Timestamp = be64toh (m_Timestamp); |
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// read addresses |
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auto addresses = std::make_shared<Addresses>(); |
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uint8_t numAddresses; |
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s.read ((char *)&numAddresses, sizeof (numAddresses)); if (!s) return; |
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bool introducers = false; |
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for (int i = 0; i < numAddresses; i++) |
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{ |
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uint8_t supportedTransports = 0; |
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bool isValidAddress = true; |
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Address address; |
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s.read ((char *)&address.cost, sizeof (address.cost)); |
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s.read ((char *)&address.date, sizeof (address.date)); |
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char transportStyle[5]; |
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ReadString (transportStyle, s); |
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if (!strcmp (transportStyle, "NTCP")) |
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address.transportStyle = eTransportNTCP; |
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else if (!strcmp (transportStyle, "SSU")) |
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address.transportStyle = eTransportSSU; |
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else |
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address.transportStyle = eTransportUnknown; |
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address.port = 0; |
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address.mtu = 0; |
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uint16_t size, r = 0; |
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s.read ((char *)&size, sizeof (size)); if (!s) return; |
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size = be16toh (size); |
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while (r < size) |
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{ |
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char key[500], value[500]; |
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r += ReadString (key, s); |
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s.seekg (1, std::ios_base::cur); r++; // = |
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r += ReadString (value, s); |
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s.seekg (1, std::ios_base::cur); r++; // ; |
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if (!strcmp (key, "host")) |
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{ |
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boost::system::error_code ecode; |
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address.host = boost::asio::ip::address::from_string (value, ecode); |
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if (ecode) |
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{ |
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if (address.transportStyle == eTransportNTCP) |
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{ |
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supportedTransports |= eNTCPV4; // TODO: |
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address.addressString = value; |
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} |
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else |
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{ |
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supportedTransports |= eSSUV4; // TODO: |
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address.addressString = value; |
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} |
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} |
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else |
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{ |
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// add supported protocol |
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if (address.host.is_v4 ()) |
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supportedTransports |= (address.transportStyle == eTransportNTCP) ? eNTCPV4 : eSSUV4; |
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else |
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supportedTransports |= (address.transportStyle == eTransportNTCP) ? eNTCPV6 : eSSUV6; |
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} |
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} |
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else if (!strcmp (key, "port")) |
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address.port = boost::lexical_cast<int>(value); |
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else if (!strcmp (key, "mtu")) |
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address.mtu = boost::lexical_cast<int>(value); |
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else if (!strcmp (key, "key")) |
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Base64ToByteStream (value, strlen (value), address.key, 32); |
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else if (!strcmp (key, "caps")) |
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ExtractCaps (value); |
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else if (key[0] == 'i') |
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{ |
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// introducers |
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introducers = true; |
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size_t l = strlen(key); |
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unsigned char index = key[l-1] - '0'; // TODO: |
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key[l-1] = 0; |
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if (index >= address.introducers.size ()) |
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address.introducers.resize (index + 1); |
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Introducer& introducer = address.introducers.at (index); |
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if (!strcmp (key, "ihost")) |
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{ |
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boost::system::error_code ecode; |
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introducer.iHost = boost::asio::ip::address::from_string (value, ecode); |
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} |
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else if (!strcmp (key, "iport")) |
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introducer.iPort = boost::lexical_cast<int>(value); |
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else if (!strcmp (key, "itag")) |
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introducer.iTag = boost::lexical_cast<uint32_t>(value); |
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else if (!strcmp (key, "ikey")) |
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Base64ToByteStream (value, strlen (value), introducer.iKey, 32); |
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} |
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if (!s) return; |
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} |
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if (isValidAddress) |
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{ |
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addresses->push_back(std::make_shared<Address>(address)); |
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m_SupportedTransports |= supportedTransports; |
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} |
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} |
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m_Addresses = addresses; |
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// read peers |
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uint8_t numPeers; |
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s.read ((char *)&numPeers, sizeof (numPeers)); if (!s) return; |
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s.seekg (numPeers*32, std::ios_base::cur); // TODO: read peers |
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// read properties |
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uint16_t size, r = 0; |
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s.read ((char *)&size, sizeof (size)); if (!s) return; |
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size = be16toh (size); |
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while (r < size) |
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{ |
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#ifdef _WIN32 |
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char key[500], value[500]; |
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// TODO: investigate why properties get read as one long string under Windows |
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// length should not be more than 44 |
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#else |
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char key[50], value[50]; |
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#endif |
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r += ReadString (key, s); |
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s.seekg (1, std::ios_base::cur); r++; // = |
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r += ReadString (value, s); |
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s.seekg (1, std::ios_base::cur); r++; // ; |
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m_Properties[key] = value; |
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// extract caps |
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if (!strcmp (key, "caps")) |
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ExtractCaps (value); |
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// check netId |
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else if (!strcmp (key, ROUTER_INFO_PROPERTY_NETID) && atoi (value) != I2PD_NET_ID) |
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{ |
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LogPrint (eLogError, "Unexpected ", ROUTER_INFO_PROPERTY_NETID, "=", value); |
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m_IsUnreachable = true; |
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} |
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// family |
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else if (!strcmp (key, ROUTER_INFO_PROPERTY_FAMILY)) |
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{ |
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m_Family = value; |
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boost::to_lower (m_Family); |
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} |
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else if (!strcmp (key, ROUTER_INFO_PROPERTY_FAMILY_SIG)) |
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{ |
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if (!netdb.GetFamilies ().VerifyFamily (m_Family, GetIdentHash (), value)) |
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{ |
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LogPrint (eLogWarning, "RouterInfo: family signature verification failed"); |
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m_Family.clear (); |
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} |
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} |
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if (!s) return; |
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} |
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if (!m_SupportedTransports || !m_Addresses->size() || (UsesIntroducer () && !introducers)) |
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SetUnreachable (true); |
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} |
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bool RouterInfo::IsFamily(const std::string & fam) const { |
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return m_Family == fam; |
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} |
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void RouterInfo::ExtractCaps (const char * value) |
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{ |
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const char * cap = value; |
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while (*cap) |
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{ |
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switch (*cap) |
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{ |
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case CAPS_FLAG_FLOODFILL: |
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m_Caps |= Caps::eFloodfill; |
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break; |
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case CAPS_FLAG_HIGH_BANDWIDTH1: |
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case CAPS_FLAG_HIGH_BANDWIDTH2: |
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case CAPS_FLAG_HIGH_BANDWIDTH3: |
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m_Caps |= Caps::eHighBandwidth; |
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break; |
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case CAPS_FLAG_EXTRA_BANDWIDTH1: |
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case CAPS_FLAG_EXTRA_BANDWIDTH2: |
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m_Caps |= Caps::eExtraBandwidth; |
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break; |
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case CAPS_FLAG_HIDDEN: |
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m_Caps |= Caps::eHidden; |
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break; |
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case CAPS_FLAG_REACHABLE: |
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m_Caps |= Caps::eReachable; |
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break; |
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case CAPS_FLAG_UNREACHABLE: |
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m_Caps |= Caps::eUnreachable; |
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break; |
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case CAPS_FLAG_SSU_TESTING: |
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m_Caps |= Caps::eSSUTesting; |
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break; |
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case CAPS_FLAG_SSU_INTRODUCER: |
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m_Caps |= Caps::eSSUIntroducer; |
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break; |
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default: ; |
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} |
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cap++; |
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} |
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} |
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void RouterInfo::UpdateCapsProperty () |
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{ |
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std::string caps; |
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if (m_Caps & eFloodfill) { |
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caps += CAPS_FLAG_FLOODFILL; // floodfill |
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caps += (m_Caps & eExtraBandwidth) |
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? CAPS_FLAG_EXTRA_BANDWIDTH1 // 'P' |
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: CAPS_FLAG_HIGH_BANDWIDTH3; // 'O' |
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} else { |
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if (m_Caps & eExtraBandwidth) { |
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caps += CAPS_FLAG_EXTRA_BANDWIDTH1; // 'P' |
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} else if (m_Caps & eHighBandwidth) { |
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caps += CAPS_FLAG_HIGH_BANDWIDTH3; // 'O' |
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} else { |
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caps += CAPS_FLAG_LOW_BANDWIDTH2; // 'L' |
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} |
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} |
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if (m_Caps & eHidden) caps += CAPS_FLAG_HIDDEN; // hidden |
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if (m_Caps & eReachable) caps += CAPS_FLAG_REACHABLE; // reachable |
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if (m_Caps & eUnreachable) caps += CAPS_FLAG_UNREACHABLE; // unreachable |
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SetProperty ("caps", caps); |
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} |
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void RouterInfo::WriteToStream (std::ostream& s) const |
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{ |
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uint64_t ts = htobe64 (m_Timestamp); |
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s.write ((const char *)&ts, sizeof (ts)); |
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// addresses |
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uint8_t numAddresses = m_Addresses->size (); |
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s.write ((char *)&numAddresses, sizeof (numAddresses)); |
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for (const auto& addr_ptr : *m_Addresses) |
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{ |
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const Address& address = *addr_ptr; |
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s.write ((const char *)&address.cost, sizeof (address.cost)); |
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s.write ((const char *)&address.date, sizeof (address.date)); |
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std::stringstream properties; |
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if (address.transportStyle == eTransportNTCP) |
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WriteString ("NTCP", s); |
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else if (address.transportStyle == eTransportSSU) |
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{ |
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WriteString ("SSU", s); |
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// caps |
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WriteString ("caps", properties); |
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properties << '='; |
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std::string caps; |
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if (IsPeerTesting ()) caps += CAPS_FLAG_SSU_TESTING; |
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if (IsIntroducer ()) caps += CAPS_FLAG_SSU_INTRODUCER; |
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WriteString (caps, properties); |
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properties << ';'; |
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} |
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else |
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WriteString ("", s); |
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WriteString ("host", properties); |
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properties << '='; |
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WriteString (address.host.to_string (), properties); |
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properties << ';'; |
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if (address.transportStyle == eTransportSSU) |
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{ |
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// write introducers if any |
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if (address.introducers.size () > 0) |
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{ |
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int i = 0; |
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for (const auto& introducer: address.introducers) |
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{ |
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WriteString ("ihost" + boost::lexical_cast<std::string>(i), properties); |
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properties << '='; |
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WriteString (introducer.iHost.to_string (), properties); |
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properties << ';'; |
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i++; |
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} |
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i = 0; |
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for (const auto& introducer: address.introducers) |
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{ |
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WriteString ("ikey" + boost::lexical_cast<std::string>(i), properties); |
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properties << '='; |
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char value[64]; |
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size_t l = ByteStreamToBase64 (introducer.iKey, 32, value, 64); |
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value[l] = 0; |
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WriteString (value, properties); |
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properties << ';'; |
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i++; |
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} |
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i = 0; |
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for (const auto& introducer: address.introducers) |
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{ |
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WriteString ("iport" + boost::lexical_cast<std::string>(i), properties); |
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properties << '='; |
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WriteString (boost::lexical_cast<std::string>(introducer.iPort), properties); |
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properties << ';'; |
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i++; |
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} |
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i = 0; |
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for (const auto& introducer: address.introducers) |
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{ |
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WriteString ("itag" + boost::lexical_cast<std::string>(i), properties); |
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properties << '='; |
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WriteString (boost::lexical_cast<std::string>(introducer.iTag), properties); |
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properties << ';'; |
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i++; |
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} |
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} |
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// write intro key |
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WriteString ("key", properties); |
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properties << '='; |
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char value[64]; |
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size_t l = ByteStreamToBase64 (address.key, 32, value, 64); |
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value[l] = 0; |
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WriteString (value, properties); |
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properties << ';'; |
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// write mtu |
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if (address.mtu) |
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{ |
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WriteString ("mtu", properties); |
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properties << '='; |
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WriteString (boost::lexical_cast<std::string>(address.mtu), properties); |
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properties << ';'; |
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} |
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} |
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WriteString ("port", properties); |
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properties << '='; |
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WriteString (boost::lexical_cast<std::string>(address.port), properties); |
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properties << ';'; |
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|
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uint16_t size = htobe16 (properties.str ().size ()); |
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s.write ((char *)&size, sizeof (size)); |
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s.write (properties.str ().c_str (), properties.str ().size ()); |
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} |
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|
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// peers |
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uint8_t numPeers = 0; |
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s.write ((char *)&numPeers, sizeof (numPeers)); |
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|
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// properties |
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std::stringstream properties; |
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for (const auto& p : m_Properties) |
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{ |
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WriteString (p.first, properties); |
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properties << '='; |
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WriteString (p.second, properties); |
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properties << ';'; |
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} |
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uint16_t size = htobe16 (properties.str ().size ()); |
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s.write ((char *)&size, sizeof (size)); |
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s.write (properties.str ().c_str (), properties.str ().size ()); |
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} |
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bool RouterInfo::IsNewer (const uint8_t * buf, size_t len) const |
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{ |
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if (!m_RouterIdentity) return false; |
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size_t size = m_RouterIdentity->GetFullLen (); |
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if (size + 8 > len) return false; |
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return bufbe64toh (buf + size) > m_Timestamp; |
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} |
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const uint8_t * RouterInfo::LoadBuffer () |
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{ |
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if (!m_Buffer) |
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{ |
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if (LoadFile ()) |
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LogPrint (eLogDebug, "RouterInfo: Buffer for ", GetIdentHashAbbreviation (GetIdentHash ()), " loaded from file"); |
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} |
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return m_Buffer; |
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} |
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void RouterInfo::CreateBuffer (const PrivateKeys& privateKeys) |
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{ |
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m_Timestamp = i2p::util::GetMillisecondsSinceEpoch (); // refresh timstamp |
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std::stringstream s; |
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uint8_t ident[1024]; |
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auto identLen = privateKeys.GetPublic ()->ToBuffer (ident, 1024); |
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s.write ((char *)ident, identLen); |
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WriteToStream (s); |
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m_BufferLen = s.str ().size (); |
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if (!m_Buffer) |
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m_Buffer = new uint8_t[MAX_RI_BUFFER_SIZE]; |
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memcpy (m_Buffer, s.str ().c_str (), m_BufferLen); |
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// signature |
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privateKeys.Sign ((uint8_t *)m_Buffer, m_BufferLen, (uint8_t *)m_Buffer + m_BufferLen); |
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m_BufferLen += privateKeys.GetPublic ()->GetSignatureLen (); |
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} |
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bool RouterInfo::SaveToFile (const std::string& fullPath) |
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{ |
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m_FullPath = fullPath; |
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if (!m_Buffer) { |
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LogPrint (eLogError, "RouterInfo: Can't save, m_Buffer == NULL"); |
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return false; |
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} |
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std::ofstream f (fullPath, std::ofstream::binary | std::ofstream::out); |
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if (!f.is_open ()) { |
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LogPrint(eLogError, "RouterInfo: Can't save to ", fullPath); |
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return false; |
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} |
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f.write ((char *)m_Buffer, m_BufferLen); |
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return true; |
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} |
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|
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size_t RouterInfo::ReadString (char * str, std::istream& s) |
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{ |
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uint8_t len; |
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s.read ((char *)&len, 1); |
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s.read (str, len); |
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str[len] = 0; |
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return len+1; |
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} |
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|
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void RouterInfo::WriteString (const std::string& str, std::ostream& s) |
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{ |
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uint8_t len = str.size (); |
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s.write ((char *)&len, 1); |
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s.write (str.c_str (), len); |
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} |
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void RouterInfo::AddNTCPAddress (const char * host, int port) |
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{ |
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auto addr = std::make_shared<Address>(); |
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addr->host = boost::asio::ip::address::from_string (host); |
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addr->port = port; |
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addr->transportStyle = eTransportNTCP; |
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addr->cost = 2; |
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addr->date = 0; |
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addr->mtu = 0; |
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for (const auto& it: *m_Addresses) // don't insert same address twice |
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if (*it == *addr) return; |
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m_SupportedTransports |= addr->host.is_v6 () ? eNTCPV6 : eNTCPV4; |
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m_Addresses->push_back(std::move(addr)); |
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} |
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|
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void RouterInfo::AddSSUAddress (const char * host, int port, const uint8_t * key, int mtu) |
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{ |
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auto addr = std::make_shared<Address>(); |
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addr->host = boost::asio::ip::address::from_string (host); |
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addr->port = port; |
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addr->transportStyle = eTransportSSU; |
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addr->cost = 10; // NTCP should have priority over SSU |
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addr->date = 0; |
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addr->mtu = mtu; |
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memcpy (addr->key, key, 32); |
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for (const auto& it: *m_Addresses) // don't insert same address twice |
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if (*it == *addr) return; |
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m_SupportedTransports |= addr->host.is_v6 () ? eSSUV6 : eSSUV4; |
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m_Addresses->push_back(std::move(addr)); |
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|
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m_Caps |= eSSUTesting; |
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m_Caps |= eSSUIntroducer; |
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} |
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|
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bool RouterInfo::AddIntroducer (const Introducer& introducer) |
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{ |
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for (auto& addr : *m_Addresses) |
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{ |
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if (addr->transportStyle == eTransportSSU && addr->host.is_v4 ()) |
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{ |
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for (auto& intro: addr->introducers) |
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if (intro.iTag == introducer.iTag) return false; // already presented |
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addr->introducers.push_back (introducer); |
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return true; |
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} |
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} |
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return false; |
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} |
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|
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bool RouterInfo::RemoveIntroducer (const boost::asio::ip::udp::endpoint& e) |
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{ |
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for (auto& addr: *m_Addresses) |
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{ |
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if (addr->transportStyle == eTransportSSU && addr->host.is_v4 ()) |
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{ |
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for (auto it = addr->introducers.begin (); it != addr->introducers.end (); ++it) |
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if ( boost::asio::ip::udp::endpoint (it->iHost, it->iPort) == e) |
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{ |
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addr->introducers.erase (it); |
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return true; |
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} |
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} |
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} |
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return false; |
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} |
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|
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void RouterInfo::SetCaps (uint8_t caps) |
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{ |
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m_Caps = caps; |
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UpdateCapsProperty (); |
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} |
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|
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void RouterInfo::SetCaps (const char * caps) |
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{ |
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SetProperty ("caps", caps); |
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m_Caps = 0; |
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ExtractCaps (caps); |
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} |
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|
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void RouterInfo::SetProperty (const std::string& key, const std::string& value) |
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{ |
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m_Properties[key] = value; |
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} |
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|
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void RouterInfo::DeleteProperty (const std::string& key) |
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{ |
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m_Properties.erase (key); |
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} |
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|
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std::string RouterInfo::GetProperty (const std::string& key) const |
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{ |
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auto it = m_Properties.find (key); |
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if (it != m_Properties.end ()) |
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return it->second; |
|
return ""; |
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} |
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|
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bool RouterInfo::IsNTCP (bool v4only) const |
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{ |
|
if (v4only) |
|
return m_SupportedTransports & eNTCPV4; |
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else |
|
return m_SupportedTransports & (eNTCPV4 | eNTCPV6); |
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} |
|
|
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bool RouterInfo::IsSSU (bool v4only) const |
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{ |
|
if (v4only) |
|
return m_SupportedTransports & eSSUV4; |
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else |
|
return m_SupportedTransports & (eSSUV4 | eSSUV6); |
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} |
|
|
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bool RouterInfo::IsV6 () const |
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{ |
|
return m_SupportedTransports & (eNTCPV6 | eSSUV6); |
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} |
|
|
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bool RouterInfo::IsV4 () const |
|
{ |
|
return m_SupportedTransports & (eNTCPV4 | eSSUV4); |
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} |
|
|
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void RouterInfo::EnableV6 () |
|
{ |
|
if (!IsV6 ()) |
|
m_SupportedTransports |= eNTCPV6 | eSSUV6; |
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} |
|
|
|
void RouterInfo::EnableV4 () |
|
{ |
|
if (!IsV4 ()) |
|
m_SupportedTransports |= eNTCPV4 | eSSUV4; |
|
} |
|
|
|
|
|
void RouterInfo::DisableV6 () |
|
{ |
|
if (IsV6 ()) |
|
{ |
|
m_SupportedTransports &= ~(eNTCPV6 | eSSUV6); |
|
for (auto it = m_Addresses->begin (); it != m_Addresses->end ();) |
|
{ |
|
auto addr = *it; |
|
if (addr->host.is_v6 ()) |
|
it = m_Addresses->erase (it); |
|
else |
|
++it; |
|
} |
|
} |
|
} |
|
|
|
void RouterInfo::DisableV4 () |
|
{ |
|
if (IsV4 ()) |
|
{ |
|
m_SupportedTransports &= ~(eNTCPV4 | eSSUV4); |
|
for (auto it = m_Addresses->begin (); it != m_Addresses->end ();) |
|
{ |
|
auto addr = *it; |
|
if (addr->host.is_v4 ()) |
|
it = m_Addresses->erase (it); |
|
else |
|
++it; |
|
} |
|
} |
|
} |
|
|
|
|
|
bool RouterInfo::UsesIntroducer () const |
|
{ |
|
return m_Caps & Caps::eUnreachable; // non-reachable |
|
} |
|
|
|
std::shared_ptr<const RouterInfo::Address> RouterInfo::GetNTCPAddress (bool v4only) const |
|
{ |
|
return GetAddress (eTransportNTCP, v4only); |
|
} |
|
|
|
std::shared_ptr<const RouterInfo::Address> RouterInfo::GetSSUAddress (bool v4only) const |
|
{ |
|
return GetAddress (eTransportSSU, v4only); |
|
} |
|
|
|
std::shared_ptr<const RouterInfo::Address> RouterInfo::GetSSUV6Address () const |
|
{ |
|
return GetAddress (eTransportSSU, false, true); |
|
} |
|
|
|
std::shared_ptr<const RouterInfo::Address> RouterInfo::GetAddress (TransportStyle s, bool v4only, bool v6only) const |
|
{ |
|
for (const auto& address : *m_Addresses) |
|
{ |
|
if (address->transportStyle == s) |
|
{ |
|
if ((!v4only || address->host.is_v4 ()) && (!v6only || address->host.is_v6 ())) |
|
return address; |
|
} |
|
} |
|
return nullptr; |
|
} |
|
|
|
std::shared_ptr<RouterProfile> RouterInfo::GetProfile () const |
|
{ |
|
if (!m_Profile) |
|
m_Profile = GetRouterProfile (GetIdentHash ()); |
|
return m_Profile; |
|
} |
|
} |
|
}
|
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