зеркало из https://github.com/github/putty.git
366 строки
11 KiB
C
366 строки
11 KiB
C
/*
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* Server-specific parts of the SSH-1 connection layer.
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*/
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#include <assert.h>
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#include "putty.h"
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#include "ssh.h"
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#include "sshbpp.h"
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#include "sshppl.h"
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#include "sshchan.h"
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#include "sshcr.h"
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#include "ssh1connection.h"
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#include "sshserver.h"
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static size_t ssh1sesschan_write(SshChannel *c, bool is_stderr,
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const void *, size_t);
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static void ssh1sesschan_write_eof(SshChannel *c);
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static void ssh1sesschan_initiate_close(SshChannel *c, const char *err);
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static void ssh1sesschan_send_exit_status(SshChannel *c, int status);
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static void ssh1sesschan_send_exit_signal(
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SshChannel *c, ptrlen signame, bool core_dumped, ptrlen msg);
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static const SshChannelVtable ssh1sesschan_vtable = {
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.write = ssh1sesschan_write,
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.write_eof = ssh1sesschan_write_eof,
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.initiate_close = ssh1sesschan_initiate_close,
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.send_exit_status = ssh1sesschan_send_exit_status,
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.send_exit_signal = ssh1sesschan_send_exit_signal,
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/* everything else is NULL */
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};
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void ssh1connection_server_configure(
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PacketProtocolLayer *ppl, const SshServerConfig *ssc)
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{
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struct ssh1_connection_state *s =
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container_of(ppl, struct ssh1_connection_state, ppl);
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s->ssc = ssc;
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}
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void ssh1_connection_direction_specific_setup(
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struct ssh1_connection_state *s)
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{
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if (!s->mainchan_chan) {
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s->mainchan_sc.vt = &ssh1sesschan_vtable;
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s->mainchan_sc.cl = &s->cl;
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s->mainchan_chan = sesschan_new(
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&s->mainchan_sc, s->ppl.logctx, NULL, s->ssc);
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}
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}
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bool ssh1_handle_direction_specific_packet(
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struct ssh1_connection_state *s, PktIn *pktin)
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{
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PacketProtocolLayer *ppl = &s->ppl; /* for ppl_logevent */
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PktOut *pktout;
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struct ssh1_channel *c;
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unsigned remid;
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ptrlen host, cmd, data;
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char *host_str, *err;
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int port, listenport;
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bool success;
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switch (pktin->type) {
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case SSH1_CMSG_EXEC_SHELL:
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if (s->finished_setup)
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goto unexpected_setup_packet;
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ppl_logevent("Client requested a shell");
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chan_run_shell(s->mainchan_chan);
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s->finished_setup = true;
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return true;
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case SSH1_CMSG_EXEC_CMD:
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if (s->finished_setup)
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goto unexpected_setup_packet;
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cmd = get_string(pktin);
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ppl_logevent("Client sent command '%.*s'", PTRLEN_PRINTF(cmd));
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chan_run_command(s->mainchan_chan, cmd);
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s->finished_setup = true;
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return true;
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case SSH1_CMSG_REQUEST_COMPRESSION:
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if (s->compressing || !s->ssc->ssh1_allow_compression) {
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pktout = ssh_bpp_new_pktout(s->ppl.bpp, SSH1_SMSG_FAILURE);
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pq_push(s->ppl.out_pq, pktout);
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} else {
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pktout = ssh_bpp_new_pktout(s->ppl.bpp, SSH1_SMSG_SUCCESS);
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pq_push(s->ppl.out_pq, pktout);
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/* Synchronous run of output formatting, to ensure that
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* success packet is converted into wire format before we
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* start compressing */
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ssh_bpp_handle_output(s->ppl.bpp);
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/* And now ensure that the _next_ packet will be the first
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* compressed one. */
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ssh1_bpp_start_compression(s->ppl.bpp);
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s->compressing = true;
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}
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return true;
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case SSH1_CMSG_REQUEST_PTY: {
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if (s->finished_setup)
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goto unexpected_setup_packet;
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ptrlen termtype = get_string(pktin);
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unsigned height = get_uint32(pktin);
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unsigned width = get_uint32(pktin);
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unsigned pixwidth = get_uint32(pktin);
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unsigned pixheight = get_uint32(pktin);
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struct ssh_ttymodes modes = read_ttymodes_from_packet(
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BinarySource_UPCAST(pktin), 1);
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if (get_err(pktin)) {
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ppl_logevent("Unable to decode pty request packet");
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success = false;
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} else if (!chan_allocate_pty(
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s->mainchan_chan, termtype, width, height,
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pixwidth, pixheight, modes)) {
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ppl_logevent("Unable to allocate a pty");
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success = false;
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} else {
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success = true;
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}
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pktout = ssh_bpp_new_pktout(
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s->ppl.bpp, (success ? SSH1_SMSG_SUCCESS : SSH1_SMSG_FAILURE));
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pq_push(s->ppl.out_pq, pktout);
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return true;
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}
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case SSH1_CMSG_PORT_FORWARD_REQUEST:
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if (s->finished_setup)
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goto unexpected_setup_packet;
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listenport = toint(get_uint32(pktin));
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host = get_string(pktin);
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port = toint(get_uint32(pktin));
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ppl_logevent("Client requested port %d forward to %.*s:%d",
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listenport, PTRLEN_PRINTF(host), port);
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host_str = mkstr(host);
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success = portfwdmgr_listen(
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s->portfwdmgr, NULL, listenport, host_str, port, s->conf);
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sfree(host_str);
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pktout = ssh_bpp_new_pktout(
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s->ppl.bpp, (success ? SSH1_SMSG_SUCCESS : SSH1_SMSG_FAILURE));
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pq_push(s->ppl.out_pq, pktout);
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return true;
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case SSH1_CMSG_X11_REQUEST_FORWARDING: {
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if (s->finished_setup)
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goto unexpected_setup_packet;
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ptrlen authproto = get_string(pktin);
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ptrlen authdata = get_string(pktin);
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unsigned screen_number = 0;
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if (s->remote_protoflags & SSH1_PROTOFLAG_SCREEN_NUMBER)
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screen_number = get_uint32(pktin);
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success = chan_enable_x11_forwarding(
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s->mainchan_chan, false, authproto, authdata, screen_number);
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pktout = ssh_bpp_new_pktout(
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s->ppl.bpp, (success ? SSH1_SMSG_SUCCESS : SSH1_SMSG_FAILURE));
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pq_push(s->ppl.out_pq, pktout);
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return true;
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}
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case SSH1_CMSG_AGENT_REQUEST_FORWARDING:
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if (s->finished_setup)
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goto unexpected_setup_packet;
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success = chan_enable_agent_forwarding(s->mainchan_chan);
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pktout = ssh_bpp_new_pktout(
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s->ppl.bpp, (success ? SSH1_SMSG_SUCCESS : SSH1_SMSG_FAILURE));
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pq_push(s->ppl.out_pq, pktout);
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return true;
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case SSH1_CMSG_STDIN_DATA:
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data = get_string(pktin);
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chan_send(s->mainchan_chan, false, data.ptr, data.len);
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return true;
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case SSH1_CMSG_EOF:
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chan_send_eof(s->mainchan_chan);
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return true;
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case SSH1_CMSG_WINDOW_SIZE:
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return true;
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case SSH1_MSG_PORT_OPEN:
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remid = get_uint32(pktin);
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host = get_string(pktin);
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port = toint(get_uint32(pktin));
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host_str = mkstr(host);
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ppl_logevent("Received request to connect to port %s:%d",
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host_str, port);
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c = snew(struct ssh1_channel);
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c->connlayer = s;
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err = portfwdmgr_connect(
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s->portfwdmgr, &c->chan, host_str, port,
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&c->sc, ADDRTYPE_UNSPEC);
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sfree(host_str);
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if (err) {
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ppl_logevent("Port open failed: %s", err);
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sfree(err);
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ssh1_channel_free(c);
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pktout = ssh_bpp_new_pktout(
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s->ppl.bpp, SSH1_MSG_CHANNEL_OPEN_FAILURE);
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put_uint32(pktout, remid);
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pq_push(s->ppl.out_pq, pktout);
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} else {
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ssh1_channel_init(c);
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c->remoteid = remid;
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c->halfopen = false;
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pktout = ssh_bpp_new_pktout(
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s->ppl.bpp, SSH1_MSG_CHANNEL_OPEN_CONFIRMATION);
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put_uint32(pktout, c->remoteid);
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put_uint32(pktout, c->localid);
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pq_push(s->ppl.out_pq, pktout);
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ppl_logevent("Forwarded port opened successfully");
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}
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return true;
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case SSH1_CMSG_EXIT_CONFIRMATION:
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if (!s->sent_exit_status) {
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ssh_proto_error(s->ppl.ssh, "Received SSH1_CMSG_EXIT_CONFIRMATION"
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" without having sent SSH1_SMSG_EXIT_STATUS");
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return true;
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}
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ppl_logevent("Client sent exit confirmation");
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return true;
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default:
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return false;
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}
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unexpected_setup_packet:
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ssh_proto_error(s->ppl.ssh, "Received unexpected setup packet after the "
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"setup phase, type %d (%s)", pktin->type,
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ssh1_pkt_type(pktin->type));
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/* FIXME: ensure caller copes with us just having freed the whole layer */
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return true;
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}
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SshChannel *ssh1_session_open(ConnectionLayer *cl, Channel *chan)
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{
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unreachable("Should never be called in the server");
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}
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struct ssh_rportfwd *ssh1_rportfwd_alloc(
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ConnectionLayer *cl,
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const char *shost, int sport, const char *dhost, int dport,
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int addressfamily, const char *log_description, PortFwdRecord *pfr,
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ssh_sharing_connstate *share_ctx)
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{
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unreachable("Should never be called in the server");
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}
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static size_t ssh1sesschan_write(SshChannel *sc, bool is_stderr,
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const void *data, size_t len)
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{
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struct ssh1_connection_state *s =
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container_of(sc, struct ssh1_connection_state, mainchan_sc);
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PktOut *pktout;
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pktout = ssh_bpp_new_pktout(
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s->ppl.bpp,
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(is_stderr ? SSH1_SMSG_STDERR_DATA : SSH1_SMSG_STDOUT_DATA));
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put_string(pktout, data, len);
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pq_push(s->ppl.out_pq, pktout);
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return 0;
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}
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static void ssh1sesschan_write_eof(SshChannel *sc)
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{
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/* SSH-1 can't represent server-side EOF */
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/* FIXME: some kind of check-termination system, whereby once this has been called _and_ we've had an exit status _and_ we've got no other channels open, we send the actual EXIT_STATUS message */
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}
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static void ssh1sesschan_initiate_close(SshChannel *sc, const char *err)
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{
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/* SSH-1 relies on the client to close the connection in the end */
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}
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static void ssh1sesschan_send_exit_status(SshChannel *sc, int status)
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{
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struct ssh1_connection_state *s =
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container_of(sc, struct ssh1_connection_state, mainchan_sc);
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PktOut *pktout;
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pktout = ssh_bpp_new_pktout(s->ppl.bpp, SSH1_SMSG_EXIT_STATUS);
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put_uint32(pktout, status);
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pq_push(s->ppl.out_pq, pktout);
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s->sent_exit_status = true;
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}
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static void ssh1sesschan_send_exit_signal(
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SshChannel *sc, ptrlen signame, bool core_dumped, ptrlen msg)
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{
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/* SSH-1 has no separate representation for signals */
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ssh1sesschan_send_exit_status(sc, 128);
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}
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SshChannel *ssh1_serverside_x11_open(
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ConnectionLayer *cl, Channel *chan, const SocketPeerInfo *pi)
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{
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struct ssh1_connection_state *s =
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container_of(cl, struct ssh1_connection_state, cl);
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PacketProtocolLayer *ppl = &s->ppl; /* for ppl_logevent */
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struct ssh1_channel *c = snew(struct ssh1_channel);
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PktOut *pktout;
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c->connlayer = s;
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ssh1_channel_init(c);
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c->halfopen = true;
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c->chan = chan;
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ppl_logevent("Forwarding X11 connection to client");
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pktout = ssh_bpp_new_pktout(s->ppl.bpp, SSH1_SMSG_X11_OPEN);
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put_uint32(pktout, c->localid);
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pq_push(s->ppl.out_pq, pktout);
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return &c->sc;
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}
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SshChannel *ssh1_serverside_agent_open(ConnectionLayer *cl, Channel *chan)
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{
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struct ssh1_connection_state *s =
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container_of(cl, struct ssh1_connection_state, cl);
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PacketProtocolLayer *ppl = &s->ppl; /* for ppl_logevent */
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struct ssh1_channel *c = snew(struct ssh1_channel);
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PktOut *pktout;
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c->connlayer = s;
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ssh1_channel_init(c);
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c->halfopen = true;
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c->chan = chan;
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ppl_logevent("Forwarding agent connection to client");
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pktout = ssh_bpp_new_pktout(s->ppl.bpp, SSH1_SMSG_AGENT_OPEN);
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put_uint32(pktout, c->localid);
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pq_push(s->ppl.out_pq, pktout);
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return &c->sc;
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}
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bool ssh1_connection_need_antispoof_prompt(struct ssh1_connection_state *s)
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{
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return false;
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}
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