mirror of
https://github.com/bitcoin/bitcoin.git
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IPv6 node support
This will make bitcoin relay valid routable IPv6 addresses, and when USE_IPV6 is enabled, listen on IPv6 interfaces and attempt connections to IPv6 addresses.
This commit is contained in:
parent
508471bbc0
commit
23aa78c405
11 changed files with 91 additions and 40 deletions
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@ -2,7 +2,7 @@ TEMPLATE = app
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TARGET =
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VERSION = 0.6.99
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INCLUDEPATH += src src/json src/qt
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DEFINES += QT_GUI BOOST_THREAD_USE_LIB
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DEFINES += QT_GUI BOOST_THREAD_USE_LIB USE_IPV6
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CONFIG += no_include_pwd
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# for boost 1.37, add -mt to the boost libraries
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@ -44,7 +44,7 @@ sudo port install qrencode
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4. Now you should be able to build bitcoind:
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cd bitcoin/src
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make -f makefile.osx
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make -f makefile.osx USE_IPV6=1
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Run:
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./bitcoind --help # for a list of command-line options.
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@ -43,6 +43,9 @@ your package manager. Set USE_QRCODE to control this:
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USE_QRCODE=0 (the default) No QRCode support - libarcode not required
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USE_QRCODE=1 QRCode support enabled
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IPv6 support may be enabled by setting
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USE_IPV6=1 Enable IPv6 support
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Licenses of statically linked libraries:
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Berkeley DB New BSD license with additional requirement that linked
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software must be free open source
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@ -80,7 +83,7 @@ emerge -av1 --noreplace boost glib openssl sys-libs/db:4.8
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Take the following steps to build (no UPnP support):
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cd ${BITCOIN_DIR}/src
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make -f makefile.unix USE_UPNP= BDB_INCLUDE_PATH='/usr/include/db4.8'
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make -f makefile.unix USE_UPNP= USE_IPV6=1 BDB_INCLUDE_PATH='/usr/include/db4.8'
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strip bitcoind
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@ -2424,9 +2424,6 @@ bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv)
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{
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if (fShutdown)
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return true;
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// ignore IPv6 for now, since it isn't implemented anyway
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if (!addr.IsIPv4())
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continue;
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if (addr.nTime <= 100000000 || addr.nTime > nNow + 10 * 60)
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addr.nTime = nNow - 5 * 24 * 60 * 60;
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pfrom->AddAddressKnown(addr);
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@ -27,7 +27,7 @@ LIBS= \
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-l ssl \
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-l crypto
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DEFS=-D_MT -DWIN32 -D_WINDOWS -DBOOST_THREAD_USE_LIB
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DEFS=-D_MT -DWIN32 -D_WINDOWS -DBOOST_THREAD_USE_LIB -DUSE_IPV6
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DEBUGFLAGS=-g
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CFLAGS=-O2 -w -Wall -Wextra -Wformat -Wformat-security -Wno-unused-parameter $(DEBUGFLAGS) $(DEFS) $(INCLUDEPATHS)
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@ -23,7 +23,7 @@ LIBS= \
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-l ssl \
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-l crypto
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DEFS=-DWIN32 -D_WINDOWS -DBOOST_THREAD_USE_LIB
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DEFS=-DWIN32 -D_WINDOWS -DBOOST_THREAD_USE_LIB -DUSE_IPV6
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DEBUGFLAGS=-g
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CFLAGS=-mthreads -O2 -w -Wall -Wextra -Wformat -Wformat-security -Wno-unused-parameter $(DEBUGFLAGS) $(DEFS) $(INCLUDEPATHS)
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@ -53,7 +53,7 @@ LIBS += \
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TESTDEFS += -DBOOST_TEST_DYN_LINK
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endif
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DEFS=-DMAC_OSX -DMSG_NOSIGNAL=0
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DEFS=-DMAC_OSX -DMSG_NOSIGNAL=0 -DUSE_IPV6
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ifdef RELEASE
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# Compile for maximum compatibility and smallest size.
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@ -4,7 +4,7 @@
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USE_UPNP:=0
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DEFS=
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DEFS=-DUSE_IPV6
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DEFS += $(addprefix -I,$(CURDIR) $(CURDIR)/obj $(BOOST_INCLUDE_PATH) $(BDB_INCLUDE_PATH) $(OPENSSL_INCLUDE_PATH))
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LIBS = $(addprefix -L,$(BOOST_LIB_PATH) $(BDB_LIB_PATH) $(OPENSSL_LIB_PATH))
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56
src/net.cpp
56
src/net.cpp
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@ -733,7 +733,11 @@ void ThreadSocketHandler2(void* parg)
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//
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if (hListenSocket != INVALID_SOCKET && FD_ISSET(hListenSocket, &fdsetRecv))
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{
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#ifdef USE_IPV6
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struct sockaddr_in6 sockaddr;
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#else
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struct sockaddr_in sockaddr;
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#endif
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socklen_t len = sizeof(sockaddr);
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SOCKET hSocket = accept(hListenSocket, (struct sockaddr*)&sockaddr, &len);
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CAddress addr;
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@ -1390,7 +1394,7 @@ void ThreadOpenConnections2(void* parg)
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CAddress addr = addrman.Select(10 + min(nOutbound,8)*10);
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// if we selected an invalid address, restart
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if (!addr.IsIPv4() || !addr.IsValid() || setConnected.count(addr.GetGroup()) || IsLocal(addr))
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if (!addr.IsValid() || setConnected.count(addr.GetGroup()) || IsLocal(addr))
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break;
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nTries++;
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@ -1620,6 +1624,7 @@ void ThreadMessageHandler2(void* parg)
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bool BindListenPort(string& strError)
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{
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unsigned short nPort = GetListenPort();
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strError = "";
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int nOne = 1;
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@ -1636,7 +1641,12 @@ bool BindListenPort(string& strError)
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#endif
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// Create socket for listening for incoming connections
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hListenSocket = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP);
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#ifdef USE_IPV6
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int nFamily = AF_INET6;
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#else
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int nFamily = AF_INET;
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#endif
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hListenSocket = socket(nFamily, SOCK_STREAM, IPPROTO_TCP);
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if (hListenSocket == INVALID_SOCKET)
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{
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strError = strprintf("Error: Couldn't open socket for incoming connections (socket returned error %d)", WSAGetLastError());
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@ -1669,22 +1679,36 @@ bool BindListenPort(string& strError)
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// The sockaddr_in structure specifies the address family,
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// IP address, and port for the socket that is being bound
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struct sockaddr_in sockaddr;
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#ifdef USE_IPV6
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struct sockaddr_in6 sockaddr = sockaddr_in6();
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memset(&sockaddr, 0, sizeof(sockaddr));
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sockaddr.sin6_family = AF_INET6;
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sockaddr.sin6_addr = in6addr_any; // bind to all IPs on this computer
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sockaddr.sin6_port = htons(nPort);
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# ifdef WIN32
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int nProtLevel = 10 /* PROTECTION_LEVEL_UNRESTRICTED */;
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int nParameterId = 23 /* IPV6_PROTECTION_LEVEl */;
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// this call is allowed to fail
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setsockopt(hListenSocket, IPPROTO_IPV6, nParameterId, (const char*)&nProtLevel, sizeof(int));
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# endif
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#else
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struct sockaddr_in sockaddr = sockaddr_in();
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memset(&sockaddr, 0, sizeof(sockaddr));
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sockaddr.sin_family = AF_INET;
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sockaddr.sin_addr.s_addr = INADDR_ANY; // bind to all IPs on this computer
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sockaddr.sin_port = htons(GetListenPort());
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sockaddr.sin_port = htons(nPort);
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#endif
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if (::bind(hListenSocket, (struct sockaddr*)&sockaddr, sizeof(sockaddr)) == SOCKET_ERROR)
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{
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int nErr = WSAGetLastError();
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if (nErr == WSAEADDRINUSE)
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strError = strprintf(_("Unable to bind to port %d on this computer. Bitcoin is probably already running."), ntohs(sockaddr.sin_port));
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strError = strprintf(_("Unable to bind to port %d on this computer. Bitcoin is probably already running."), nPort);
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else
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strError = strprintf("Error: Unable to bind to port %d on this computer (bind returned error %d)", ntohs(sockaddr.sin_port), nErr);
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strError = strprintf("Error: Unable to bind to port %d on this computer (bind returned error %d, %s)", nPort, nErr, strerror(nErr));
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printf("%s\n", strError.c_str());
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return false;
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}
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printf("Bound to port %d\n", ntohs(sockaddr.sin_port));
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printf("Bound to port %d\n", (int)nPort);
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// Listen for incoming connections
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if (listen(hListenSocket, SOMAXCONN) == SOCKET_ERROR)
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@ -1727,28 +1751,22 @@ void static Discover()
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if ((ifa->ifa_flags & IFF_UP) == 0) continue;
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if (strcmp(ifa->ifa_name, "lo") == 0) continue;
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if (strcmp(ifa->ifa_name, "lo0") == 0) continue;
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char pszIP[100];
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if (ifa->ifa_addr->sa_family == AF_INET)
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{
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struct sockaddr_in* s4 = (struct sockaddr_in*)(ifa->ifa_addr);
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if (inet_ntop(ifa->ifa_addr->sa_family, (void*)&(s4->sin_addr), pszIP, sizeof(pszIP)) != NULL)
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printf("ipv4 %s: %s\n", ifa->ifa_name, pszIP);
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// Take the first IP that isn't loopback 127.x.x.x
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CNetAddr addr(s4->sin_addr);
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AddLocal(addr, LOCAL_IF);
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if (AddLocal(addr, LOCAL_IF))
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printf("ipv4 %s: %s\n", ifa->ifa_name, addr.ToString().c_str());
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}
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#ifdef USE_IPV6
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else if (ifa->ifa_addr->sa_family == AF_INET6)
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{
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struct sockaddr_in6* s6 = (struct sockaddr_in6*)(ifa->ifa_addr);
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if (inet_ntop(ifa->ifa_addr->sa_family, (void*)&(s6->sin6_addr), pszIP, sizeof(pszIP)) != NULL)
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printf("ipv6 %s: %s\n", ifa->ifa_name, pszIP);
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#ifdef USE_IPV6
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CNetAddr addr(s6->sin6_addr);
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AddLocal(addr, LOCAL_IF);
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#endif
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if (AddLocal(addr, LOCAL_IF))
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printf("ipv6 %s: %s\n", ifa->ifa_name, addr.ToString().c_str());
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}
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#endif
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}
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freeifaddrs(myaddrs);
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}
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@ -305,7 +305,37 @@ bool static ConnectSocketDirectly(const CService &addrConnect, SOCKET& hSocketRe
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{
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hSocketRet = INVALID_SOCKET;
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SOCKET hSocket = socket(AF_INET, SOCK_STREAM, IPPROTO_TCP);
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struct sockaddr_storage sockaddr;
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int nFamily = 0;
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size_t nSockAddrLen = 0;
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if (addrConnect.IsIPv4())
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{
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// Use IPv4 stack to connect to IPv4 addresses
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struct sockaddr_in sockaddr4;
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if (!addrConnect.GetSockAddr(&sockaddr4))
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return false;
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memcpy(&sockaddr, &sockaddr4, sizeof(sockaddr4));
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nSockAddrLen = sizeof(sockaddr4);
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nFamily = AF_INET;
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}
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#ifdef USE_IPV6
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else if (addrConnect.IsIPv6())
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{
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struct sockaddr_in6 sockaddr6;
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if (!addrConnect.GetSockAddr6(&sockaddr6))
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return false;
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memcpy(&sockaddr, &sockaddr6, sizeof(sockaddr6));
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nSockAddrLen = sizeof(sockaddr6);
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nFamily = AF_INET6;
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}
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#endif
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else {
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printf("Cannot connect to %s: unsupported network\n", addrConnect.ToString().c_str());
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return false;
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}
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SOCKET hSocket = socket(nFamily, SOCK_STREAM, IPPROTO_TCP);
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if (hSocket == INVALID_SOCKET)
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return false;
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#ifdef SO_NOSIGPIPE
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setsockopt(hSocket, SOL_SOCKET, SO_NOSIGPIPE, (void*)&set, sizeof(int));
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#endif
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struct sockaddr_in sockaddr;
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if (!addrConnect.GetSockAddr(&sockaddr))
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{
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closesocket(hSocket);
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return false;
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}
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#ifdef WIN32
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u_long fNonblock = 1;
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if (ioctlsocket(hSocket, FIONBIO, &fNonblock) == SOCKET_ERROR)
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return false;
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}
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if (connect(hSocket, (struct sockaddr*)&sockaddr, sizeof(sockaddr)) == SOCKET_ERROR)
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if (connect(hSocket, (struct sockaddr*)&sockaddr, nSockAddrLen) == SOCKET_ERROR)
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{
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// WSAEINVAL is here because some legacy version of winsock uses it
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if (WSAGetLastError() == WSAEINPROGRESS || WSAGetLastError() == WSAEWOULDBLOCK || WSAGetLastError() == WSAEINVAL)
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return (memcmp(ip, pchIPv4, sizeof(pchIPv4)) == 0);
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}
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bool CNetAddr::IsIPv6() const
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{
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return (!IsIPv4());
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}
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bool CNetAddr::IsRFC1918() const
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{
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return IsIPv4() && (
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@ -919,12 +947,16 @@ std::vector<unsigned char> CService::GetKey() const
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std::string CService::ToStringPort() const
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{
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return strprintf(":%i", port);
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return strprintf("%i", port);
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}
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std::string CService::ToStringIPPort() const
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{
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return ToStringIP() + ToStringPort();
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if (IsIPv4()) {
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return ToStringIP() + ":" + ToStringPort();
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} else {
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return "[" + ToStringIP() + "]:" + ToStringPort();
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}
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}
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std::string CService::ToString() const
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@ -31,6 +31,7 @@ class CNetAddr
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void Init();
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void SetIP(const CNetAddr& ip);
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bool IsIPv4() const; // IPv4 mapped address (::FFFF:0:0/96, 0.0.0.0/0)
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bool IsIPv6() const; // IPv6 address (not IPv4)
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bool IsRFC1918() const; // IPv4 private networks (10.0.0.0/8, 192.168.0.0/16, 172.16.0.0/12)
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bool IsRFC3849() const; // IPv6 documentation address (2001:0DB8::/32)
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bool IsRFC3927() const; // IPv4 autoconfig (169.254.0.0/16)
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