forked from OSchip/llvm-project
422 lines
12 KiB
C++
422 lines
12 KiB
C++
//===-- RNBSocket.cpp -------------------------------------------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// Created by Greg Clayton on 12/12/07.
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//
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//===----------------------------------------------------------------------===//
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#include "RNBSocket.h"
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#include <arpa/inet.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <netdb.h>
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#include <netinet/in.h>
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#include <netinet/tcp.h>
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#include <termios.h>
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#include "DNBLog.h"
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#include "DNBError.h"
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#ifdef WITH_LOCKDOWN
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#include "lockdown.h"
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#endif
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/* Once we have a RNBSocket object with a port # specified,
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this function is called to wait for an incoming connection.
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This function blocks while waiting for that connection. */
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bool
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ResolveIPV4HostName (const char *hostname, in_addr_t &addr)
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{
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if (hostname == NULL ||
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hostname[0] == '\0' ||
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strcmp(hostname, "localhost") == 0 ||
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strcmp(hostname, "127.0.0.1") == 0)
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{
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addr = htonl (INADDR_LOOPBACK);
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return true;
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}
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else if (strcmp(hostname, "*") == 0)
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{
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addr = htonl (INADDR_ANY);
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return true;
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}
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else
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{
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// See if an IP address was specified as numbers
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int inet_pton_result = ::inet_pton (AF_INET, hostname, &addr);
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if (inet_pton_result == 1)
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return true;
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struct hostent *host_entry = gethostbyname (hostname);
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if (host_entry)
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{
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std::string ip_str (::inet_ntoa (*(struct in_addr *)*host_entry->h_addr_list));
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inet_pton_result = ::inet_pton (AF_INET, ip_str.c_str(), &addr);
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if (inet_pton_result == 1)
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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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rnb_err_t
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RNBSocket::Listen (const char *listen_host, uint16_t port, PortBoundCallback callback, const void *callback_baton)
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{
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//DNBLogThreadedIf(LOG_RNB_COMM, "%8u RNBSocket::%s called", (uint32_t)m_timer.ElapsedMicroSeconds(true), __FUNCTION__);
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// Disconnect without saving errno
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Disconnect (false);
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// Now figure out the hostname that will be attaching and palce it into
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struct sockaddr_in listen_addr;
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::memset (&listen_addr, 0, sizeof listen_addr);
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listen_addr.sin_len = sizeof listen_addr;
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listen_addr.sin_family = AF_INET;
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listen_addr.sin_port = htons (port);
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listen_addr.sin_addr.s_addr = INADDR_ANY;
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if (!ResolveIPV4HostName(listen_host, listen_addr.sin_addr.s_addr))
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{
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DNBLogThreaded("error: failed to resolve connecting host '%s'", listen_host);
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return rnb_err;
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}
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DNBError err;
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int listen_fd = ::socket (AF_INET, SOCK_STREAM, IPPROTO_TCP);
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if (listen_fd == -1)
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err.SetError(errno, DNBError::POSIX);
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if (err.Fail() || DNBLogCheckLogBit(LOG_RNB_COMM))
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err.LogThreaded("::socket ( domain = AF_INET, type = SOCK_STREAM, protocol = IPPROTO_TCP ) => socket = %i", listen_fd);
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if (err.Fail())
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return rnb_err;
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// enable local address reuse
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SetSocketOption (listen_fd, SOL_SOCKET, SO_REUSEADDR, 1);
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struct sockaddr_in sa;
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::memset (&sa, 0, sizeof sa);
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sa.sin_len = sizeof sa;
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sa.sin_family = AF_INET;
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sa.sin_port = htons (port);
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sa.sin_addr.s_addr = INADDR_ANY; // Let incoming connections bind to any host network interface (this is NOT who can connect to us)
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int error = ::bind (listen_fd, (struct sockaddr *) &sa, sizeof(sa));
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if (error == -1)
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err.SetError(errno, DNBError::POSIX);
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if (err.Fail() || DNBLogCheckLogBit(LOG_RNB_COMM))
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err.LogThreaded("::bind ( socket = %i, (struct sockaddr *) &sa, sizeof(sa)) )", listen_fd);
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if (err.Fail())
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{
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ClosePort (listen_fd, false);
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return rnb_err;
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}
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error = ::listen (listen_fd, 5);
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if (error == -1)
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err.SetError(errno, DNBError::POSIX);
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if (err.Fail() || DNBLogCheckLogBit(LOG_RNB_COMM))
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err.LogThreaded("::listen ( socket = %i, backlog = 1 )", listen_fd);
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if (err.Fail())
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{
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ClosePort (listen_fd, false);
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return rnb_err;
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}
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if (callback)
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{
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// We were asked to listen on port zero which means we
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// must now read the actual port that was given to us
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// as port zero is a special code for "find an open port
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// for me".
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if (port == 0)
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{
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socklen_t sa_len = sizeof (sa);
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if (getsockname(listen_fd, (struct sockaddr *)&sa, &sa_len) == 0)
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{
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port = ntohs (sa.sin_port);
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callback (callback_baton, port);
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}
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}
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else
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{
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callback (callback_baton, port);
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}
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}
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struct sockaddr_in accept_addr;
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::memset (&accept_addr, 0, sizeof accept_addr);
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accept_addr.sin_len = sizeof accept_addr;
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bool accept_connection = false;
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// Loop until we are happy with our connection
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while (!accept_connection)
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{
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socklen_t accept_addr_len = sizeof accept_addr;
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m_fd = ::accept (listen_fd, (struct sockaddr *)&accept_addr, &accept_addr_len);
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if (m_fd == -1)
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err.SetError(errno, DNBError::POSIX);
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if (err.Fail() || DNBLogCheckLogBit(LOG_RNB_COMM))
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err.LogThreaded("::accept ( socket = %i, address = %p, address_len = %u )", listen_fd, &accept_addr, accept_addr_len);
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if (err.Fail())
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break;
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if (listen_addr.sin_addr.s_addr == INADDR_ANY)
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accept_connection = true;
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else
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{
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if (accept_addr_len == listen_addr.sin_len &&
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accept_addr.sin_addr.s_addr == listen_addr.sin_addr.s_addr)
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{
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accept_connection = true;
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}
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else
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{
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::close (m_fd);
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m_fd = -1;
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const uint8_t *accept_ip = (const uint8_t *)&accept_addr.sin_addr.s_addr;
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const uint8_t *listen_ip = (const uint8_t *)&listen_addr.sin_addr.s_addr;
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::fprintf (stderr,
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"error: rejecting incoming connection from %u.%u.%u.%u (expecting %u.%u.%u.%u)\n",
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accept_ip[0], accept_ip[1], accept_ip[2], accept_ip[3],
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listen_ip[0], listen_ip[1], listen_ip[2], listen_ip[3]);
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DNBLogThreaded ("error: rejecting connection from %u.%u.%u.%u (expecting %u.%u.%u.%u)",
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accept_ip[0], accept_ip[1], accept_ip[2], accept_ip[3],
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listen_ip[0], listen_ip[1], listen_ip[2], listen_ip[3]);
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}
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}
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}
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ClosePort (listen_fd, false);
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if (err.Fail())
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{
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return rnb_err;
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}
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else
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{
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// Keep our TCP packets coming without any delays.
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SetSocketOption (m_fd, IPPROTO_TCP, TCP_NODELAY, 1);
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}
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return rnb_success;
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}
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rnb_err_t
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RNBSocket::Connect (const char *host, uint16_t port)
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{
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Disconnect (false);
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// Create the socket
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m_fd = ::socket (AF_INET, SOCK_STREAM, IPPROTO_TCP);
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if (m_fd == -1)
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return rnb_err;
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// Enable local address reuse
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SetSocketOption (m_fd, SOL_SOCKET, SO_REUSEADDR, 1);
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struct sockaddr_in sa;
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::memset (&sa, 0, sizeof (sa));
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sa.sin_family = AF_INET;
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sa.sin_port = htons (port);
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if (!ResolveIPV4HostName(host, sa.sin_addr.s_addr))
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{
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DNBLogThreaded("error: failed to resolve host '%s'", host);
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Disconnect (false);
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return rnb_err;
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}
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if (-1 == ::connect (m_fd, (const struct sockaddr *)&sa, sizeof(sa)))
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{
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Disconnect (false);
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return rnb_err;
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}
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// Keep our TCP packets coming without any delays.
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SetSocketOption (m_fd, IPPROTO_TCP, TCP_NODELAY, 1);
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return rnb_success;
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}
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rnb_err_t
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RNBSocket::useFD(int fd)
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{
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if (fd < 0) {
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DNBLogThreadedIf(LOG_RNB_COMM, "Bad file descriptor passed in.");
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return rnb_err;
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}
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m_fd = fd;
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return rnb_success;
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}
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#ifdef WITH_LOCKDOWN
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rnb_err_t
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RNBSocket::ConnectToService()
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{
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DNBLog("Connecting to com.apple.%s service...", DEBUGSERVER_PROGRAM_NAME);
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// Disconnect from any previous connections
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Disconnect(false);
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if (::secure_lockdown_checkin (&m_ld_conn, NULL, NULL) != kLDESuccess)
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{
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DNBLogThreadedIf(LOG_RNB_COMM, "::secure_lockdown_checkin(&m_fd, NULL, NULL) failed");
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m_fd = -1;
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return rnb_not_connected;
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}
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m_fd = ::lockdown_get_socket (m_ld_conn);
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if (m_fd == -1)
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{
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DNBLogThreadedIf(LOG_RNB_COMM, "::lockdown_get_socket() failed");
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return rnb_not_connected;
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}
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m_fd_from_lockdown = true;
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return rnb_success;
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}
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#endif
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rnb_err_t
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RNBSocket::OpenFile (const char *path)
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{
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DNBError err;
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m_fd = open (path, O_RDWR);
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if (m_fd == -1)
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{
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err.SetError(errno, DNBError::POSIX);
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err.LogThreaded ("can't open file '%s'", path);
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return rnb_not_connected;
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}
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else
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{
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struct termios stdin_termios;
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if (::tcgetattr (m_fd, &stdin_termios) == 0)
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{
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stdin_termios.c_lflag &= ~ECHO; // Turn off echoing
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stdin_termios.c_lflag &= ~ICANON; // Get one char at a time
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::tcsetattr (m_fd, TCSANOW, &stdin_termios);
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}
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}
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return rnb_success;
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}
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int
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RNBSocket::SetSocketOption(int fd, int level, int option_name, int option_value)
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{
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return ::setsockopt(fd, level, option_name, &option_value, sizeof(option_value));
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}
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rnb_err_t
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RNBSocket::Disconnect (bool save_errno)
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{
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#ifdef WITH_LOCKDOWN
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if (m_fd_from_lockdown)
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{
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m_fd_from_lockdown = false;
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m_fd = -1;
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lockdown_disconnect (m_ld_conn);
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return rnb_success;
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}
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#endif
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return ClosePort (m_fd, save_errno);
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}
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rnb_err_t
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RNBSocket::Read (std::string &p)
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{
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char buf[1024];
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p.clear();
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// Note that BUF is on the stack so we must be careful to keep any
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// writes to BUF from overflowing or we'll have security issues.
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if (m_fd == -1)
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return rnb_err;
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//DNBLogThreadedIf(LOG_RNB_COMM, "%8u RNBSocket::%s calling read()", (uint32_t)m_timer.ElapsedMicroSeconds(true), __FUNCTION__);
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DNBError err;
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int bytesread = read (m_fd, buf, sizeof (buf));
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if (bytesread <= 0)
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err.SetError(errno, DNBError::POSIX);
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else
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p.append(buf, bytesread);
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if (err.Fail() || DNBLogCheckLogBit(LOG_RNB_COMM))
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err.LogThreaded("::read ( %i, %p, %llu ) => %i", m_fd, buf, sizeof (buf), (uint64_t)bytesread);
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// Our port went away - we have to mark this so IsConnected will return the truth.
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if (bytesread == 0)
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{
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m_fd = -1;
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return rnb_not_connected;
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}
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else if (bytesread == -1)
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{
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m_fd = -1;
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return rnb_err;
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}
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// Strip spaces from the end of the buffer
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while (!p.empty() && isspace (p[p.size() - 1]))
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p.erase (p.size () - 1);
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// Most data in the debugserver packets valid printable characters...
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DNBLogThreadedIf(LOG_RNB_COMM, "read: %s", p.c_str());
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return rnb_success;
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}
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rnb_err_t
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RNBSocket::Write (const void *buffer, size_t length)
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{
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if (m_fd == -1)
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return rnb_err;
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DNBError err;
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int bytessent = write (m_fd, buffer, length);
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if (bytessent < 0)
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err.SetError(errno, DNBError::POSIX);
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if (err.Fail() || DNBLogCheckLogBit(LOG_RNB_COMM))
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err.LogThreaded("::write ( socket = %i, buffer = %p, length = %llu) => %i", m_fd, buffer, length, (uint64_t)bytessent);
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if (bytessent < 0)
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return rnb_err;
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if (bytessent != length)
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return rnb_err;
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DNBLogThreadedIf(LOG_RNB_PACKETS, "putpkt: %*s", (int)length, (char *)buffer); // All data is string based in debugserver, so this is safe
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DNBLogThreadedIf(LOG_RNB_COMM, "sent: %*s", (int)length, (char *)buffer);
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return rnb_success;
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}
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rnb_err_t
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RNBSocket::ClosePort (int& fd, bool save_errno)
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{
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int close_err = 0;
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if (fd > 0)
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{
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errno = 0;
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close_err = close (fd);
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fd = -1;
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}
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return close_err != 0 ? rnb_err : rnb_success;
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}
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