mirror of
https://git.tartarus.org/simon/putty.git
synced 2025-01-08 08:58:00 +00:00
b4e1bca2c3
This is a sweeping change applied across the whole code base by a spot of Emacs Lisp. Now, everywhere I declare a vtable filled with function pointers (and the occasional const data member), all the members of the vtable structure are initialised by name using the '.fieldname = value' syntax introduced in C99. We were already using this syntax for a handful of things in the new key-generation progress report system, so it's not new to the code base as a whole. The advantage is that now, when a vtable only declares a subset of the available fields, I can initialise the rest to NULL or zero just by leaving them out. This is most dramatic in a couple of the outlying vtables in things like psocks (which has a ConnectionLayerVtable containing only one non-NULL method), but less dramatically, it means that the new 'flags' field in BackendVtable can be completely left out of every backend definition except for the SUPDUP one which defines it to a nonzero value. Similarly, the test_for_upstream method only used by SSH doesn't have to be mentioned in the rest of the backends; network Plugs for listening sockets don't have to explicitly null out 'receive' and 'sent', and vice versa for 'accepting', and so on. While I'm at it, I've normalised the declarations so they don't use the unnecessarily verbose 'struct' keyword. Also a handful of them weren't const; now they are.
366 lines
11 KiB
C
366 lines
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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