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348 lines
11 KiB
C
348 lines
11 KiB
C
/*
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* Dropbear - a SSH2 server
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*
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* Copyright (c) 2002,2003 Matt Johnston
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* All rights reserved.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE. */
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#include "includes.h"
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#include "session.h"
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#include "dbutil.h"
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#include "packet.h"
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#include "algo.h"
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#include "buffer.h"
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#include "dss.h"
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#include "ssh.h"
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#include "dbrandom.h"
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#include "kex.h"
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#include "channel.h"
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#include "chansession.h"
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#include "atomicio.h"
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#include "tcpfwd.h"
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#include "service.h"
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#include "auth.h"
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#include "runopts.h"
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#include "crypto_desc.h"
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#include "fuzz.h"
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static void svr_remoteclosed(void);
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static void svr_algos_initialise(void);
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struct serversession svr_ses; /* GLOBAL */
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static const packettype svr_packettypes[] = {
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{SSH_MSG_CHANNEL_DATA, recv_msg_channel_data},
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{SSH_MSG_CHANNEL_WINDOW_ADJUST, recv_msg_channel_window_adjust},
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{SSH_MSG_USERAUTH_REQUEST, recv_msg_userauth_request}, /* server */
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{SSH_MSG_SERVICE_REQUEST, recv_msg_service_request}, /* server */
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{SSH_MSG_KEXINIT, recv_msg_kexinit},
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{SSH_MSG_KEXDH_INIT, recv_msg_kexdh_init}, /* server */
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{SSH_MSG_NEWKEYS, recv_msg_newkeys},
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{SSH_MSG_GLOBAL_REQUEST, recv_msg_global_request_remotetcp},
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{SSH_MSG_CHANNEL_REQUEST, recv_msg_channel_request},
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{SSH_MSG_CHANNEL_OPEN, recv_msg_channel_open},
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{SSH_MSG_CHANNEL_EOF, recv_msg_channel_eof},
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{SSH_MSG_CHANNEL_CLOSE, recv_msg_channel_close},
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{SSH_MSG_CHANNEL_SUCCESS, ignore_recv_response},
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{SSH_MSG_CHANNEL_FAILURE, ignore_recv_response},
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{SSH_MSG_REQUEST_FAILURE, ignore_recv_response}, /* for keepalive */
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{SSH_MSG_REQUEST_SUCCESS, ignore_recv_response}, /* client */
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#if DROPBEAR_LISTENERS
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{SSH_MSG_CHANNEL_OPEN_CONFIRMATION, recv_msg_channel_open_confirmation},
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{SSH_MSG_CHANNEL_OPEN_FAILURE, recv_msg_channel_open_failure},
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#endif
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{0, NULL} /* End */
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};
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static const struct ChanType *svr_chantypes[] = {
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&svrchansess,
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#if DROPBEAR_SVR_LOCALTCPFWD
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&svr_chan_tcpdirect,
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#endif
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NULL /* Null termination is mandatory. */
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};
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static void
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svr_session_cleanup(void) {
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/* free potential public key options */
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svr_pubkey_options_cleanup();
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m_free(svr_ses.addrstring);
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m_free(svr_ses.remotehost);
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m_free(svr_ses.childpids);
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svr_ses.childpidsize = 0;
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#if DROPBEAR_PLUGIN
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if (svr_ses.plugin_handle != NULL) {
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if (svr_ses.plugin_instance) {
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svr_ses.plugin_instance->delete_plugin(svr_ses.plugin_instance);
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svr_ses.plugin_instance = NULL;
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}
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dlclose(svr_ses.plugin_handle);
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svr_ses.plugin_handle = NULL;
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}
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#endif
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}
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void svr_session(int sock, int childpipe) {
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char *host, *port;
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size_t len;
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common_session_init(sock, sock);
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/* Initialise server specific parts of the session */
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svr_ses.childpipe = childpipe;
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#if DROPBEAR_VFORK
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svr_ses.server_pid = getpid();
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#endif
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/* for logging the remote address */
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get_socket_address(ses.sock_in, NULL, NULL, &host, &port, 0);
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len = strlen(host) + strlen(port) + 2;
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svr_ses.addrstring = m_malloc(len);
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snprintf(svr_ses.addrstring, len, "%s:%s", host, port);
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m_free(host);
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m_free(port);
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#if DROPBEAR_PLUGIN
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/* Initializes the PLUGIN Plugin */
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svr_ses.plugin_handle = NULL;
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svr_ses.plugin_instance = NULL;
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if (svr_opts.pubkey_plugin) {
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#if DEBUG_TRACE
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const int verbose = debug_trace;
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#else
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const int verbose = 0;
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#endif
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PubkeyExtPlugin_newFn pluginConstructor;
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/* RTLD_NOW: fails if not all the symbols are resolved now. Better fail now than at run-time */
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svr_ses.plugin_handle = dlopen(svr_opts.pubkey_plugin, RTLD_NOW);
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if (svr_ses.plugin_handle == NULL) {
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dropbear_exit("failed to load external pubkey plugin '%s': %s", svr_opts.pubkey_plugin, dlerror());
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}
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pluginConstructor = (PubkeyExtPlugin_newFn)dlsym(svr_ses.plugin_handle, DROPBEAR_PUBKEY_PLUGIN_FNNAME_NEW);
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if (!pluginConstructor) {
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dropbear_exit("plugin constructor method not found in external pubkey plugin");
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}
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/* Create an instance of the plugin */
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svr_ses.plugin_instance = pluginConstructor(verbose, svr_opts.pubkey_plugin_options, svr_ses.addrstring);
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if (svr_ses.plugin_instance == NULL) {
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dropbear_exit("external plugin initialization failed");
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}
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/* Check if the plugin is compatible */
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if ( (svr_ses.plugin_instance->api_version[0] != DROPBEAR_PLUGIN_VERSION_MAJOR) ||
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(svr_ses.plugin_instance->api_version[1] < DROPBEAR_PLUGIN_VERSION_MINOR) ) {
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dropbear_exit("plugin version check failed: "
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"Dropbear=%d.%d, plugin=%d.%d",
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DROPBEAR_PLUGIN_VERSION_MAJOR, DROPBEAR_PLUGIN_VERSION_MINOR,
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svr_ses.plugin_instance->api_version[0], svr_ses.plugin_instance->api_version[1]);
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}
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if (svr_ses.plugin_instance->api_version[1] > DROPBEAR_PLUGIN_VERSION_MINOR) {
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dropbear_log(LOG_WARNING, "plugin API newer than dropbear API: "
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"Dropbear=%d.%d, plugin=%d.%d",
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DROPBEAR_PLUGIN_VERSION_MAJOR, DROPBEAR_PLUGIN_VERSION_MINOR,
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svr_ses.plugin_instance->api_version[0], svr_ses.plugin_instance->api_version[1]);
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}
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dropbear_log(LOG_INFO, "successfully loaded and initialized pubkey plugin '%s'", svr_opts.pubkey_plugin);
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}
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#endif
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svr_authinitialise();
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chaninitialise(svr_chantypes);
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svr_chansessinitialise();
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svr_algos_initialise();
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get_socket_address(ses.sock_in, NULL, NULL,
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&svr_ses.remotehost, NULL, 1);
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/* set up messages etc */
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ses.remoteclosed = svr_remoteclosed;
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ses.extra_session_cleanup = svr_session_cleanup;
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/* packet handlers */
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ses.packettypes = svr_packettypes;
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ses.isserver = 1;
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/* We're ready to go now */
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ses.init_done = 1;
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/* exchange identification, version etc */
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send_session_identification();
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kexfirstinitialise(); /* initialise the kex state */
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/* start off with key exchange */
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send_msg_kexinit();
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/* Run the main for loop. NULL is for the dispatcher - only the client
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* code makes use of it */
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session_loop(svr_chansess_checksignal);
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/* Not reached */
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}
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/* failure exit - format must be <= 100 chars */
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void svr_dropbear_exit(int exitcode, const char* format, va_list param) {
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char exitmsg[150];
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char fullmsg[300];
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char fromaddr[60];
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int i;
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#if DROPBEAR_PLUGIN
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if ((ses.plugin_session != NULL)) {
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svr_ses.plugin_instance->delete_session(ses.plugin_session);
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}
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ses.plugin_session = NULL;
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#endif
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/* Render the formatted exit message */
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vsnprintf(exitmsg, sizeof(exitmsg), format, param);
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/* svr_ses.addrstring may not be set for some early exits, or for
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the listener process */
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fromaddr[0] = '\0';
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if (svr_ses.addrstring) {
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snprintf(fromaddr, sizeof(fromaddr), " from <%s>", svr_ses.addrstring);
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}
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/* Add the prefix depending on session/auth state */
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if (!ses.init_done) {
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/* before session init */
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snprintf(fullmsg, sizeof(fullmsg), "Early exit%s: %s", fromaddr, exitmsg);
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} else if (ses.authstate.authdone) {
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/* user has authenticated */
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snprintf(fullmsg, sizeof(fullmsg),
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"Exit (%s)%s: %s",
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ses.authstate.pw_name, fromaddr, exitmsg);
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} else if (ses.authstate.pw_name) {
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/* we have a potential user */
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snprintf(fullmsg, sizeof(fullmsg),
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"Exit before auth%s: (user '%s', %u fails): %s",
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fromaddr, ses.authstate.pw_name, ses.authstate.failcount, exitmsg);
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} else {
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/* before userauth */
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snprintf(fullmsg, sizeof(fullmsg), "Exit before auth%s: %s", fromaddr, exitmsg);
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}
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dropbear_log(LOG_INFO, "%s", fullmsg);
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#if DROPBEAR_VFORK
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/* For uclinux only the main server process should cleanup - we don't want
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* forked children doing that */
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if (svr_ses.server_pid == getpid())
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#endif
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{
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/* must be after we've done with username etc */
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session_cleanup();
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}
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#if DROPBEAR_FUZZ
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/* longjmp before cleaning up svr_opts */
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if (fuzz.do_jmp) {
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longjmp(fuzz.jmp, 1);
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}
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#endif
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if (svr_opts.hostkey) {
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sign_key_free(svr_opts.hostkey);
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svr_opts.hostkey = NULL;
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}
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for (i = 0; i < DROPBEAR_MAX_PORTS; i++) {
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m_free(svr_opts.addresses[i]);
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m_free(svr_opts.ports[i]);
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}
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exit(exitcode);
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}
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/* priority is priority as with syslog() */
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void svr_dropbear_log(int priority, const char* format, va_list param) {
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char printbuf[1024];
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char datestr[20];
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time_t timesec;
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int havetrace = 0;
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vsnprintf(printbuf, sizeof(printbuf), format, param);
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#ifndef DISABLE_SYSLOG
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if (opts.usingsyslog) {
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syslog(priority, "%s", printbuf);
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}
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#endif
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/* if we are using DEBUG_TRACE, we want to print to stderr even if
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* syslog is used, so it is included in error reports */
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#if DEBUG_TRACE
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havetrace = debug_trace;
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#endif
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if (!opts.usingsyslog || havetrace) {
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struct tm * local_tm = NULL;
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timesec = time(NULL);
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local_tm = localtime(×ec);
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if (local_tm == NULL
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|| strftime(datestr, sizeof(datestr), "%b %d %H:%M:%S",
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local_tm) == 0)
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{
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/* upon failure, just print the epoch-seconds time. */
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snprintf(datestr, sizeof(datestr), "%d", (int)timesec);
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}
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fprintf(stderr, "[%d] %s %s\n", getpid(), datestr, printbuf);
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}
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}
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/* called when the remote side closes the connection */
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static void svr_remoteclosed() {
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m_close(ses.sock_in);
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if (ses.sock_in != ses.sock_out) {
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m_close(ses.sock_out);
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}
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ses.sock_in = -1;
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ses.sock_out = -1;
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dropbear_close("Exited normally");
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}
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static void svr_algos_initialise(void) {
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algo_type *algo;
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for (algo = sshkex; algo->name; algo++) {
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#if DROPBEAR_DH_GROUP1 && DROPBEAR_DH_GROUP1_CLIENTONLY
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if (strcmp(algo->name, "diffie-hellman-group1-sha1") == 0) {
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algo->usable = 0;
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}
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#endif
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#if DROPBEAR_EXT_INFO
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if (strcmp(algo->name, SSH_EXT_INFO_C) == 0) {
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algo->usable = 0;
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}
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#endif
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}
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}
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