1993-08-04 23:30:29 +04:00
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/* trans.h
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Header file for file and command transfer routines.
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1994-10-25 01:15:56 +03:00
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Copyright (C) 1992, 1993, 1994 Ian Lance Taylor
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1993-08-04 23:30:29 +04:00
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This file is part of the Taylor UUCP package.
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation; either version 2 of the
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License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful, but
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WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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1995-08-24 09:18:33 +04:00
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Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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1993-08-04 23:30:29 +04:00
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The author of the program may be contacted at ian@airs.com or
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1995-08-24 09:18:33 +04:00
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c/o Cygnus Support, 48 Grove Street, Somerville, MA 02144.
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1993-08-04 23:30:29 +04:00
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*/
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/* The maximum possible number of channels. */
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#define IMAX_CHAN (16)
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/* The ifeatures field of the sdaemon structure is an or of the
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following values. These values are sent during the uucico
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handshake, and MUST NOT CHANGE. */
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/* File size negotiation. */
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#define FEATURE_SIZES (01)
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/* File transfer restart. */
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#define FEATURE_RESTART (02)
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/* The E (execute) command. */
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#define FEATURE_EXEC (04)
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/* Version 1.03: requires decimal size in S and R command. Needless
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to say, this should not be used by any new programs. */
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#define FEATURE_V103 (010)
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/* SVR4 UUCP: expects dummy string between notify field and size field
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in send command. There is probably some meaning to this string,
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but I don't know what it is. If I ever find out, this flag will
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still be used to indicate it. */
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#define FEATURE_SVR4 (020)
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/* This structure is used to hold information concerning the
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communication link established with the remote system. */
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struct sdaemon
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{
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/* Global uuconf pointer. */
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pointer puuconf;
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1994-10-25 01:15:56 +03:00
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/* Configuration file name argument (from -I option). */
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const char *zconfig;
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/* How often to spawn uuxqt (from uuconf_runuuxqt). */
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int irunuuxqt;
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1993-08-04 23:30:29 +04:00
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/* Remote system information. */
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const struct uuconf_system *qsys;
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/* Local name being used. */
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const char *zlocalname;
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/* Connection structure. */
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struct sconnection *qconn;
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/* Protocol being used. */
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const struct sprotocol *qproto;
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1994-10-25 01:15:56 +03:00
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/* Number of channels being used. */
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int cchans;
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1993-08-04 23:30:29 +04:00
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/* The largest file size permitted for a local request. */
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long clocal_size;
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/* The largest file size permitted for a remote request. */
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long cremote_size;
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/* The largest file size that may ever be transferred. */
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long cmax_ever;
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/* The remote system ulimit. */
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long cmax_receive;
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1994-10-25 01:15:56 +03:00
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/* Number of bytes sent. */
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long csent;
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/* Number of bytes received. */
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long creceived;
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/* Number of execution files received since the last time we spawned
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uuxqt. */
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long cxfiles_received;
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1993-08-04 23:30:29 +04:00
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/* Features supported by the remote side. */
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int ifeatures;
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/* TRUE if we should request the remote side to hang up. */
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boolean frequest_hangup;
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/* TRUE if the remote side requested a hangup. */
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boolean fhangup_requested;
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/* TRUE if we are hanging up. */
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boolean fhangup;
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/* TRUE if the local system is currently the master. */
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boolean fmaster;
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/* TRUE if the local system placed the call. */
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boolean fcaller;
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/* UUCONF_RELIABLE_* flags for the connection. */
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int ireliable;
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/* If fcaller is FALSE, the lowest grade which may be transferred
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during this call. */
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char bgrade;
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};
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/* This structure is used to hold a file or command transfer which is
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in progress. */
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struct stransfer
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{
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/* Next file transfer in queue. */
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struct stransfer *qnext;
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/* Previous file transfer in queue. */
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struct stransfer *qprev;
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/* Points to the queue this structure is on. */
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struct stransfer **pqqueue;
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/* The function to call to send some data. */
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boolean (*psendfn) P((struct stransfer *qtrans, struct sdaemon *qdaemon));
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/* The function to call when data is received. */
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boolean (*precfn) P((struct stransfer *qtrans, struct sdaemon *qdaemon,
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const char *zdata, size_t cdata));
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/* Type specific information. */
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pointer pinfo;
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/* TRUE if we are sending the file e (this is used to avoid a call
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to psendfn). */
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boolean fsendfile;
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/* TRUE if we are receiving the file e (this is used to avoid a call
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to precfn). */
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boolean frecfile;
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/* The file to read or write. */
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openfile_t e;
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/* The position we are at in the file. */
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long ipos;
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/* TRUE if we are waiting for a command string. */
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boolean fcmd;
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/* The command string we have so far. */
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char *zcmd;
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/* The length of the command string we have so far. */
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size_t ccmd;
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/* Local destination number. */
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int ilocal;
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/* Remote destination number. */
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int iremote;
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/* The command. */
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struct scmd s;
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/* A message to log when work starts. */
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char *zlog;
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/* The process time; imicros can be negative. */
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long isecs;
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long imicros;
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/* Number of bytes sent or received. */
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long cbytes;
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};
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/* Reasons that a file transfer might fail. */
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enum tfailure
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{
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/* No failure. */
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FAILURE_NONE,
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/* No permission for operation. */
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FAILURE_PERM,
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/* Can't open necessary file. */
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FAILURE_OPEN,
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/* Not enough space to receive file. */
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FAILURE_SIZE,
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/* File was received in a previous conversation. */
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FAILURE_RECEIVED
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};
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/* The main loop which talks to the remote system, passing transfer
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requests and file back and forth. */
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extern boolean floop P((struct sdaemon *qdaemon));
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/* Allocate a new transfer structure. */
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extern struct stransfer *qtransalc P((struct scmd *qcmd));
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/* Free a transfer structure. */
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extern void utransfree P((struct stransfer *qtrans));
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/* Queue up local requests. If pfany is not NULL, this sets *pfany to
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TRUE if there are, in fact, any local requests which can be done at
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this point. */
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extern boolean fqueue P((struct sdaemon *qdaemon, boolean *pfany));
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/* Clear away any queued requests. This may be called more than once
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at the end of a call. */
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extern void uclear_queue P((struct sdaemon *qdaemon));
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/* Queue a new transfer request made by the local system. */
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extern boolean fqueue_local P((struct sdaemon *qdaemon,
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struct stransfer *qtrans));
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/* Queue a new transfer request made by the remote system. */
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extern boolean fqueue_remote P((struct sdaemon *qdaemon,
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struct stransfer *qtrans));
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/* Queue a transfer request which wants to send something. */
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extern boolean fqueue_send P((struct sdaemon *qdaemon,
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struct stransfer *qtrans));
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/* Queue a transfer request which wants to receiving something. */
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extern boolean fqueue_receive P((struct sdaemon *qdaemon,
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struct stransfer *qtrans));
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/* Prepare to send a file by local or remote request. */
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extern boolean flocal_send_file_init P((struct sdaemon *qdaemon,
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struct scmd *qcmd));
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extern boolean fremote_send_file_init P((struct sdaemon *qdaemon,
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struct scmd *qcmd,
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int iremote));
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/* Prepare to receive a file by local or remote request. */
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extern boolean flocal_rec_file_init P((struct sdaemon *qdaemon,
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struct scmd *qcmd));
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extern boolean fremote_rec_file_init P((struct sdaemon *qdaemon,
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struct scmd *qcmd,
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int iremote));
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/* Prepare to request work by local or remote request. */
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extern boolean flocal_xcmd_init P((struct sdaemon *qdaemon,
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struct scmd *qcmd));
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extern boolean fremote_xcmd_init P((struct sdaemon *qdaemon,
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struct scmd *qcmd,
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int iremote));
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/* We have lost the connection; record any in progress file transfers
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in the statistics file and discard any temporary files. */
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extern void ufailed P((struct sdaemon *qdaemon));
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/* Check that there is enough disk space for a file receive. Return
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FALSE if there is not. */
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extern boolean frec_check_free P((struct stransfer *qtrans,
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long cfree_space));
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/* Discard the temporary file being used to receive a file, if
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appropriate. */
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extern boolean frec_discard_temp P((struct sdaemon *qdaemon,
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struct stransfer *qtrans));
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/* Handle data received by a protocol. This is called by the protocol
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specific routines as data comes in. The data is passed as two
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buffers because that is convenient for packet based protocols, but
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normally csecond will be 0. The ilocal argument is the local
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channel number, and the iremote argument is the remote channel
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number. Either may be -1, if the protocol does not have channels.
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The ipos argument is the position in the file, if the protocol
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knows it; for most protocols, this will be -1. The fallacked
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argument should be set to TRUE if the remote has acknowledged all
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outstanding data; see uwindow_acked, below, for details. This will
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set *pfexit to TRUE if there is something for the main loop to do.
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A file is complete is when a zero length buffer is passed (cfirst
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== 0). A command is complete when data containing a null byte is
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passed. This will return FALSE on error. If the protocol pfwait
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entry point should exit and let the top level loop continue,
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*pfexit will be set to TRUE (if pfexit is not NULL). This will not
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set *pfexit to FALSE, so the caller must do that. */
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extern boolean fgot_data P((struct sdaemon *qdaemon,
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const char *zfirst, size_t cfirst,
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const char *zsecond, size_t csecond,
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int ilocal, int iremote,
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long ipos, boolean fallacked,
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boolean *pfexit));
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/* This routine is called when an ack is sent for a file receive. */
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extern void usent_receive_ack P((struct sdaemon *qdaemon,
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struct stransfer *qtrans));
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/* A protocol may call this routine to indicate the packets have been
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acknowledged by the remote system. If the fallacked argument is
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TRUE, then all outstanding packets have been acknowledged; for
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convenience, this may also be indicated by passing fallacked as
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TRUE to fgot_data, above. Otherwise this routine should be called
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each time a complete window is acked by the remote system. The
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transfer code uses this information to keep track of when an
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acknowledgement of a file receive has been seen by the other side,
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so that file receives may be handled cleanly if the connection is
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lost. */
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extern void uwindow_acked P((struct sdaemon *qdaemon,
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boolean fallacked));
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1994-10-25 01:15:56 +03:00
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/* Spawn a uuxqt process. The ffork argument is passed to
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fsysdep_run. If the zsys argument is not NULL, then -s zsys is
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passed to uuxqt. The zconfig argument is the name of the
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configuration file, from the -I option. */
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extern boolean fspawn_uuxqt P((boolean ffork, const char *zsys,
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const char *zconfig));
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