client.c 14.4 KB
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/* client.c
 *
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 *
 *
 * $Id$ */

/* lsh, an implementation of the ssh protocol
 *
 * Copyright (C) 1998 Niels Mller
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License as
 * published by the Free Software Foundation; either version 2 of the
 * License, or (at your option) any later version.
 *
 * This program is distributed in the hope that it will be useful, but
 * WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
 * General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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 */

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/* FIXME: Why include stdio? */
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/* #include <stdio.h> */
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#include "client.h"
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#include "abstract_io.h"
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#include "channel.h"
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#include "connection.h"
#include "crypto.h"
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#include "debug.h"
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#include "encrypt.h"
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#include "format.h"
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#include "pad.h"
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#include "parse.h"
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#include "read_line.h"
#include "read_packet.h"
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#include "service.h"
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#include "ssh.h"
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#include "translate_signal.h"
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#include "unpad.h"
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#include "version.h"
#include "werror.h"
#include "xalloc.h"
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#include <string.h>
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#include <assert.h>
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#include "client.c.x"

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/* Handle connection and initial handshaking. */
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/* CLASS:
   (class
     (name client_callback)
     (super fd_callback)
     (vars
       (backend object io_backend)
       (block_size simple UINT32)
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       (id_comment simple "const char *")
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       (random object randomness)
       (init object make_kexinit)
       (kexinit_handler object packet_handler)))
*/

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static int client_initiate(struct fd_callback **c,
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			   int fd)
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{
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  struct client_callback *closure
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    = (struct client_callback *) *c;
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  int res;
  
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  struct ssh_connection *connection
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    = make_ssh_connection(closure->kexinit_handler);
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  connection_init_io(connection,
		     io_read_write(closure->backend, fd,
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				   make_client_read_line(connection),
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				   closure->block_size,
				   make_client_close_handler()),
		     closure->random);
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  connection->client_version
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    = ssh_format("SSH-%lz-%lz %lz",
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		 PROTOCOL_VERSION,
		 SOFTWARE_CLIENT_VERSION,
		 closure->id_comment);
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  res = A_WRITE(connection->raw,
		ssh_format("%lS\r\n", connection->client_version));
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  if (LSH_CLOSEDP(res))
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    return res;

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  return res | initiate_keyexchange(connection, CONNECTION_CLIENT,
				    MAKE_KEXINIT(closure->init),
				    NULL);
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}

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/* CLASS:
   (class
     (name client_line_handler)
     (super line_handler)
     (vars
       (connection object ssh_connection)))
*/

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static struct read_handler *do_line(struct line_handler **h,
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				    UINT32 length,
				    UINT8 *line)
{
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  CAST(client_line_handler, closure, *h);
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  if ( (length >= 4) && !memcmp(line, "SSH-", 4))
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    {
      /* Parse and remember format string */
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      if ( ((length >= 8) && !memcmp(line + 4, "2.0-", 4))
	   || ((length >= 9) && !memcmp(line + 4, "1.99-", 5)))
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	{
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	  struct read_handler *new = make_read_packet
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	    (make_packet_unpad
	     (make_packet_debug
	      (&closure->connection->super,
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	       "")),
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	     closure->connection);
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	  closure->connection->server_version
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	    = ssh_format("%ls", length, line);
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	  verbose("Client version: ");
	  verbose_safe(closure->connection->client_version->length,
		       closure->connection->client_version->data);
	  verbose("\nServer version: ");
	  verbose_safe(closure->connection->server_version->length,
		       closure->connection->server_version->data);
	  verbose("\n");
	  
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	  /* FIXME: Cleanup properly. */
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	  KILL(closure);
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	  return new;
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	}
      else
	{
	  werror("Unsupported protocol version: ");
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	  werror_safe(length, line);
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	  werror("\n");
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	  /* FIXME: Clean up properly */
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	  KILL(closure);
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	  *h = NULL;
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	  return 0;
	}
    }
  else
    {
      /* Display line */
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      werror_safe(length, line);
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      /* Read next line */
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      return 0;
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    }
}

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struct read_handler *make_client_read_line(struct ssh_connection *c)
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{
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  NEW(client_line_handler, closure);
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  closure->super.handler = do_line;
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  closure->connection = c;
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  return make_read_line(&closure->super);
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}
  
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struct fd_callback *
make_client_callback(struct io_backend *b,
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		     const char *comment,
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		     UINT32 block_size,
		     struct randomness *random,
		     struct make_kexinit *init,
		     struct packet_handler *kexinit_handler)
  
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{
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  NEW(client_callback, connected);
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  connected->super.f = client_initiate;
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  connected->backend = b;
  connected->block_size = block_size;
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  connected->id_comment = comment;
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  connected->random = random;
  connected->init = init;
  connected->kexinit_handler = kexinit_handler;

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  return &connected->super;
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}
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static int client_close_die(struct close_callback *closure, int reason)
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{
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  verbose("Connection died, for reason %d.\n", reason);
  if (reason != CLOSE_EOF)
    werror("Connection died.\n");
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  /* FIXME: Return value is not used. */
  return 4711;
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}

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struct close_callback *make_client_close_handler(void)
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{
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  NEW(close_callback, c);
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  c->f = client_close_die;
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  return c;
}
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/* Start a service that the server has accepted (for instance ssh-userauth). */
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/* CLASS:
   (class
     (name accept_service_handler)
     (super packet_handler)
     (vars
       (service_name simple int)
       (service object ssh_service)))
*/

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static int do_accept_service(struct packet_handler *c,
			     struct ssh_connection *connection,
			     struct lsh_string *packet)
{
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  CAST(accept_service_handler, closure, c);
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  struct simple_buffer buffer;
  int msg_number;
  int name;

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  simple_buffer_init(&buffer, packet->length, packet->data);
  
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  if (parse_uint8(&buffer, &msg_number)
      && (msg_number == SSH_MSG_SERVICE_ACCEPT)
      && parse_atom(&buffer, &name)
      && parse_eod(&buffer)
      && (name == closure->service_name))
    {
      lsh_string_free(packet);
      connection->dispatch[SSH_MSG_SERVICE_ACCEPT] = connection->fail;
      
      return SERVICE_INIT(closure->service, connection);
    }

  lsh_string_free(packet);
  return LSH_FAIL | LSH_DIE;
}

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struct packet_handler *make_accept_service_handler(int service_name,
						   struct ssh_service *service)
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{
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  NEW(accept_service_handler, closure);
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  closure->super.handler = do_accept_service;
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  closure->service_name = service_name;
  closure->service = service;

  return &closure->super;
}

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/* CLASS:
   (class
     (name service_request)
     (super ssh_service)
     (vars
       (service_name simple int)
       (service object ssh_service)))
*/

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static int do_request_service(struct ssh_service *c,
			      struct ssh_connection *connection)
{
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  CAST(service_request, closure, c);
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  connection->dispatch[SSH_MSG_SERVICE_ACCEPT]
    = make_accept_service_handler(closure->service_name,
				  closure->service);
  
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  return A_WRITE(connection->write, format_service_request(closure->service_name));
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}

struct ssh_service *request_service(int service_name,
				    struct ssh_service *service)
{
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  NEW(service_request, closure);
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  closure->super.init = do_request_service;
  closure->service_name = service_name;
  closure->service = service;

  return &closure->super;
}

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/* Initiate and manage a session */
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/* CLASS:
   (class
     (name client_session)
     (super ssh_channel)
     (vars
       ; Exec or shell request. 
       (final_request simple int)
       (args string)
  
       ; To access stdio
       (in object io_fd)
       (out object io_fd)
       (err object io_fd)

       ; Where to save the exit code.
       (exit_status simple "int *")))
*/

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static int close_client_session(struct ssh_channel *c)
{
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  CAST(client_session, session, c);
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  close_fd(&session->in->super, 0);
#if 0
  close_fd(&session->out->super, 0);
  close_fd(&session->err->super, 0);
#endif
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  return LSH_OK | LSH_CHANNEL_PENDING_CLOSE;
}  

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static int client_session_die(struct ssh_channel *c)
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{
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  CAST(client_session, closure, c);
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  /* FIXME: Don't die this hard. */
  if ( (closure->super.flags & (CHANNEL_SENT_CLOSE | CHANNEL_RECIEVED_CLOSE))
       ==  (CHANNEL_SENT_CLOSE | CHANNEL_RECIEVED_CLOSE))
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    exit(EXIT_SUCCESS);

  exit(EXIT_FAILURE);
}

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/* CLASS:
   (class
     (name exit_handler)
     (super channel_request)
     (vars
       (exit_status simple "int *")))
*/

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static int do_exit_status(struct channel_request *c,
			  struct ssh_channel *channel,
			  int want_reply,
			  struct simple_buffer *args)
{
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  CAST(exit_handler, closure, c);
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  int status;

  if (!want_reply
      && parse_uint32(args, &status)
      && parse_eod(args))
    {
      *closure->exit_status = status;

      ALIST_SET(channel->request_types, ATOM_EXIT_STATUS, NULL);;
      ALIST_SET(channel->request_types, ATOM_EXIT_SIGNAL, NULL);;

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      /* Sent EOF, if we haven't done that already. */
      /* FIXME: Make this behaviour configurable, there may be some
       * child process alive that we could talk to. */

      if (!(channel->flags && CHANNEL_SENT_EOF))
	return channel_eof(channel);
      
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      return LSH_OK | LSH_GOON;
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    }
  
  /* Invalid request */
  return LSH_FAIL | LSH_DIE;
}

static int do_exit_signal(struct channel_request *c,
			  struct ssh_channel *channel,
			  int want_reply,
			  struct simple_buffer *args)
{
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  CAST(exit_handler, closure, c);

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  int signal;
  int core;

  UINT8 *msg;
  UINT32 length;

  UINT8 *language;
  UINT32 language_length;
  
  if (!want_reply
      && parse_uint32(args, &signal)
      && parse_boolean(args, &core)
      && parse_string(args, &length, &msg)
      && parse_string(args, &language_length, &language)
      && parse_eod(args))
    {
      /* FIXME: What exit status should be returned when the remote
       * process dies violently? */

      *closure->exit_status = 7;

      signal = signal_network_to_local(signal);

      werror_utf8(length, msg);
      werror("Remote process was killed by %s.\n",
	     signal ? strsignal(signal) : "an unknown signal");
      if (core)
	werror("(core dumped remotely)\n");

      ALIST_SET(channel->request_types, ATOM_EXIT_STATUS, NULL);;
      ALIST_SET(channel->request_types, ATOM_EXIT_SIGNAL, NULL);;

      return close_client_session(channel);
    }
  
  /* Invalid request */
  return LSH_FAIL | LSH_DIE;
}

struct channel_request *make_handle_exit_status(int *exit_status)
{
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  NEW(exit_handler, self);
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  self->super.handler = do_exit_status;

  self->exit_status = exit_status;

  return &self->super;
}

struct channel_request *make_handle_exit_signal(int *exit_status)
{
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  NEW(exit_handler, self);
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  self->super.handler = do_exit_signal;

  self->exit_status = exit_status;

  return &self->super;
}

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/* Recieve channel data */
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static int do_recieve(struct ssh_channel *c,
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		      int type, struct lsh_string *data)
{
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  CAST(client_session, closure, c);
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  switch(type)
    {
    case CHANNEL_DATA:
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      return A_WRITE(&closure->out->buffer->super, data);
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    case CHANNEL_STDERR_DATA:
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      return A_WRITE(&closure->err->buffer->super, data);
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    default:
      fatal("Internal error!\n");
    }
}
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/* We may send more data */
static int do_send(struct ssh_channel *c)
{
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  CAST(client_session, closure, c);
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  assert(closure->in->super.read);
  assert(closure->in->handler);
  closure->in->super.want_read = 1;
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  return LSH_OK | LSH_GOON;
}

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/* We have a remote shell */
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static int do_io(struct ssh_channel *channel)
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{
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  CAST(client_session, closure, channel);
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  channel->recieve = do_recieve;
  
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  closure->out->super.close_callback
    = closure->err->super.close_callback = make_channel_close(channel);
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  closure->in->handler = make_channel_read_data(&closure->super);
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  channel->send = do_send;
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  ALIST_SET(channel->request_types, ATOM_EXIT_STATUS,
	    make_handle_exit_status(closure->exit_status));
  ALIST_SET(channel->request_types, ATOM_EXIT_SIGNAL,
	    make_handle_exit_signal(closure->exit_status));
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  channel->eof = close_client_session;

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  return LSH_OK | LSH_CHANNEL_READY_SEND;
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}

/* We have opened a channel of type "session" */
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static int do_open_confirm(struct ssh_channel *c)
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{
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  CAST(client_session, closure, c);
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  struct lsh_string *args;
  
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  closure->super.open_confirm = NULL;
  closure->super.open_failure = NULL;

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  closure->super.channel_success = do_io;
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  closure->super.channel_failure = client_session_die;

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  args = closure->args;
  closure->args = NULL; /* for gc */

  return A_WRITE(closure->super.write,
		 format_channel_request(closure->final_request, c, 1,
					"%lfS", args));
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}

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static struct ssh_channel *make_client_session(struct io_fd *in,
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					       struct io_fd *out,
					       struct io_fd *err,
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					       UINT32 max_window,
					       int final_request,
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					       struct lsh_string *args,
					       int *exit_status)
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{
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  NEW(client_session, self);
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  init_channel(&self->super);

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  self->super.max_window = max_window;
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  self->super.rec_window_size = max_window;

  /* FIXME: Make maximum packet size configurable */
  self->super.rec_max_packet = SSH_MAX_PACKET;
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  self->super.request_types = make_alist(0, -1);
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  /* self->expect_close = 0; */
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  self->in = in;
  self->out = out;
  self->err = err;

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  self->final_request = final_request;
  self->args = args;
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  self->exit_status = exit_status;
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  return &self->super;
}

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/* CLASS:
   (class
     (name client_startup)
     (super connection_startup)
     (vars
       (session object ssh_channel)
       
       ; Exec or shell request. 
       ;; (final_request simple int)
       ;; (args string)
  
       ; To access stdio 
       ;; (in object io_fd)
       ;; (out object io_fd)
       ;; (err object io_fd)
       ))
*/

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static int do_client_startup(struct connection_startup *c,
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			     struct channel_table *table,
			     struct abstract_write *write)
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{
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  CAST(client_startup, closure, c);
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  struct lsh_string *s;
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  closure->session->write = write;
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  closure->session->open_confirm = do_open_confirm;
  closure->session->open_failure = client_session_die;

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  s = prepare_channel_open(table, ATOM_SESSION,
			   closure->session, "");
  if (!s)
    fatal("Couldn't allocate a channel number!\n");

  return A_WRITE(write, s);
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}

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#define WINDOW_SIZE (SSH_MAX_PACKET << 3)

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/* Request opening a session. */
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struct connection_startup *make_client_startup(struct io_fd *in,
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					       struct io_fd *out,
					       struct io_fd *err,
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					       int final_request,
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					       struct lsh_string *args,
					       int *exit_status)
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{
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  NEW(client_startup, closure);
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  closure->super.start = do_client_startup;
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  closure->session = make_client_session(in, out, err,
					 WINDOW_SIZE,
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					 final_request, args,
					 exit_status);
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  return &closure->super;
}