430 lines
12 KiB
Plaintext
430 lines
12 KiB
Plaintext
This directory contains the source files for libmilter.
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The sendmail Mail Filter API (Milter) is designed to allow third-party
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programs access to mail messages as they are being processed in order to
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filter meta-information and content.
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This README file describes the steps needed to compile and run a filter,
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through reference to a sample filter which is attached at the end of this
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file. It is necessary to first build libmilter.a, which can be done by
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issuing the './Build' command in SRCDIR/libmilter .
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NOTE: Both libmilter and the callouts in sendmail are marked as an FFR (For
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Future Release). If you intend to use them in 8.11.X, you must compiled
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both libmilter and sendmail with -D_FFR_MILTER defined. You can do this by
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adding the following to your devtools/Site/site.config.m4 file:
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dnl Milter
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APPENDDEF(`conf_sendmail_ENVDEF', `-D_FFR_MILTER=1')
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APPENDDEF(`conf_libmilter_ENVDEF', `-D_FFR_MILTER=1')
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You will also need to define _FFR_MILTER when building your .cf file using
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m4.
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+-------------------+
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| BUILDING A FILTER |
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+-------------------+
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The following command presumes that the sample code from the end of this
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README is saved to a file named 'sample.c' and built in the local platform-
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specific build subdirectory (SRCDIR/obj.*/libmilter).
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cc -I../../sendmail -I../../include -o sample sample.c libmilter.a ../libsmutil/libsmutil.a -pthread
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It is recommended that you build your filters in a location outside of
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the sendmail source tree. Modify the compiler include references (-I)
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and the library locations accordingly. Also, some operating systems may
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require additional libraries. For example, SunOS 5.X requires '-lresolv
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-lsocket -lnsl'. Depending on your OS you may need a library instead
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of the option -pthread, e.g., -lpthread.
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Filters must be thread-safe! Many operating systems now provide support for
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POSIX threads in the standard C libraries. The compiler flag to link with
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threading support differs according to the compiler and linker used. Check
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the Makefile in your appropriate obj.*/libmilter build subdirectory if you
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are unsure of the local flag used.
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Note that since filters use threads, it may be necessary to alter per
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process limits in your filter. For example, you might look at using
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setrlimit() to increase the number of open file descriptors if your filter
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is going to be busy.
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+----------------------------------------+
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| SPECIFYING FILTERS IN SENDMAIL CONFIGS |
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+----------------------------------------+
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Filters are specified with a key letter ``X'' (for ``eXternal'').
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For example:
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Xfilter1, S=local:/var/run/f1.sock, F=R
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Xfilter2, S=inet6:999@localhost, F=T, T=C:10m;S:1s;R:1s;E:5m
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Xfilter3, S=inet:3333@localhost
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specifies three filters. Filters can be specified in your .mc file using
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the following:
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INPUT_MAIL_FILTER(`filter1', `S=local:/var/run/f1.sock, F=R')
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INPUT_MAIL_FILTER(`filter2', `S=inet6:999@localhost, F=T, T=C:10m;S:1s;R:1s;E:5m')
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INPUT_MAIL_FILTER(`filter3', `S=inet:3333@localhost')
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The first attaches to a Unix-domain socket in the /var/run directory; the
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second uses an IPv6 socket on port 999 of localhost, and the third uses an
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IPv4 socket on port 3333 of localhost. The current flags (F=) are:
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R Reject connection if filter unavailable
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T Temporary fail connection if filter unavailable
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If neither F=R nor F=T is specified, the message is passed through sendmail
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as if the filter were not present.
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Finally, you can override the default timeouts used by sendmail when
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talking to the filters using the T= equate. There are four fields inside
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of the T= equate:
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Letter Meaning
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C Timeout for connecting to a filter (if 0, use system timeout)
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S Timeout for sending information from the MTA to a filter
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R Timeout for reading reply from the filter
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E Overall timeout between sending end-of-message to filter
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and waiting for the final acknowledgment
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Note the separator between each is a ';' as a ',' already separates equates
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and therefore can't separate timeouts. The default values (if not set in
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the config) are:
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T=C:0m;S:10s;R:10s;E:5m
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where 's' is seconds and 'm' is minutes.
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Which filters are invoked and their sequencing is handled by the
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InputMailFilters option. Note: if InputMailFilters is not defined no filters
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will be used.
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O InputMailFilters=filter1, filter2, filter3
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This is is set automatically according to the order of the
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INPUT_MAIL_FILTER commands in your .mc file. Alternatively, you can
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reset its value by setting confINPUT_MAIL_FILTERS in your .mc file.
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This options causes the three filters to be called in the same order
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they were specified. It allows for possible future filtering on output
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(although this is not intended for this release).
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Also note that a filter can be defined without adding it to the input
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filter list by using MAIL_FILTER() instead of INPUT_MAIL_FILTER() in your
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.mc file.
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To test sendmail with the sample filter, the following might be added (in
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the appropriate locations) to your .mc file:
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INPUT_MAIL_FILTER(`sample', `S=local:/var/run/f1.sock')
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+------------------+
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| TESTING A FILTER |
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+------------------+
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Once you have compiled a filter, modified your .mc file and restarted
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the sendmail process, you will want to test that the filter performs as
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intended.
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The sample filter takes one argument -p, which indicates the local port
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on which to create a listening socket for the filter. Maintaining
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consistency with the suggested options for sendmail.cf, this would be the
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UNIX domain socket located in /var/run/f1.sock.
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% ./sample -p local:/var/run/f1.sock
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If the sample filter returns immediately to a command line, there was either
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an error with your command or a problem creating the specified socket.
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Further logging can be captured through the syslogd daemon. Using the
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'netstat -a' command can ensure that your filter process is listening on
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the appropriate local socket.
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Email messages must be injected via SMTP to be filtered. There are two
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simple means of doing this; either using the 'sendmail -bs' command, or
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by telnetting to port 25 of the machine configured for milter. Once
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connected via one of these options, the session can be continued through
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the use of standard SMTP commands.
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% sendmail -bs
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220 test.sendmail.com ESMTP Sendmail 8.11.0/8.11.0; Tue, 10 Nov 1970 13:05:23 -0500 (EST)
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HELO localhost
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250 test.sendmail.com Hello testy@localhost, pleased to meet you
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MAIL From:<testy>
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250 2.1.0 <testy>... Sender ok
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RCPT To:<root>
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250 2.1.5 <root>... Recipient ok
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DATA
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354 Enter mail, end with "." on a line by itself
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From: testy@test.sendmail.com
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To: root@test.sendmail.com
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Subject: testing sample filter
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Sample body
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.
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250 2.0.0 dB73Zxi25236 Message accepted for delivery
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QUIT
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221 2.0.0 test.sendmail.com closing connection
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In the above example, the lines beginning with numbers are output by the
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mail server, and those without are your input. If everything is working
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properly, you will find a file in /tmp by the name of msg.XXXXXXXX (where
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the Xs represent any combination of letters and numbers). This file should
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contain the message body and headers from the test email entered above.
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If the sample filter did not log your test email, there are a number of
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methods to narrow down the source of the problem. Check your system
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logs written by syslogd and see if there are any pertinent lines. You
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may need to reconfigure syslogd to capture all relevant data. Additionally,
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the logging level of sendmail can be raised with the LogLevel option.
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See the sendmail(8) manual page for more information.
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+--------------------------+
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| SOURCE FOR SAMPLE FILTER |
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+--------------------------+
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Note that the filter below may not be thread safe on some operating
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systems. You should check your system man pages for the functions used
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below to verify the functions are thread safe.
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/* A trivial filter that logs all email to a file. */
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#include <sys/types.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sysexits.h>
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#include <unistd.h>
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#include "libmilter/mfapi.h"
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typedef int bool;
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#ifndef FALSE
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# define FALSE 0
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#endif /* ! FALSE*/
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#ifndef TRUE
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# define TRUE 1
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#endif /* ! TRUE*/
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struct mlfiPriv
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{
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char *mlfi_fname;
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FILE *mlfi_fp;
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};
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#define MLFIPRIV ((struct mlfiPriv *) smfi_getpriv(ctx))
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extern sfsistat mlfi_cleanup(SMFICTX *, bool);
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sfsistat
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mlfi_envfrom(ctx, envfrom)
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SMFICTX *ctx;
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char **envfrom;
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{
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struct mlfiPriv *priv;
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int fd = -1;
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/* allocate some private memory */
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priv = malloc(sizeof *priv);
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if (priv == NULL)
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{
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/* can't accept this message right now */
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return SMFIS_TEMPFAIL;
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}
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memset(priv, '\0', sizeof *priv);
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/* open a file to store this message */
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priv->mlfi_fname = strdup("/tmp/msg.XXXXXXXX");
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if (priv->mlfi_fname == NULL)
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{
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free(priv);
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return SMFIS_TEMPFAIL;
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}
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if ((fd = mkstemp(priv->mlfi_fname)) < 0 ||
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(priv->mlfi_fp = fdopen(fd, "w+")) == NULL)
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{
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if (fd >= 0)
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(void) close(fd);
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free(priv->mlfi_fname);
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free(priv);
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return SMFIS_TEMPFAIL;
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}
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/* save the private data */
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smfi_setpriv(ctx, priv);
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/* continue processing */
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return SMFIS_CONTINUE;
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}
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sfsistat
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mlfi_header(ctx, headerf, headerv)
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SMFICTX *ctx;
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char *headerf;
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char *headerv;
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{
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/* write the header to the log file */
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fprintf(MLFIPRIV->mlfi_fp, "%s: %s\r\n", headerf, headerv);
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/* continue processing */
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return SMFIS_CONTINUE;
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}
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sfsistat
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mlfi_eoh(ctx)
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SMFICTX *ctx;
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{
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/* output the blank line between the header and the body */
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fprintf(MLFIPRIV->mlfi_fp, "\r\n");
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/* continue processing */
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return SMFIS_CONTINUE;
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}
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sfsistat
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mlfi_body(ctx, bodyp, bodylen)
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SMFICTX *ctx;
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u_char *bodyp;
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size_t bodylen;
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{
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/* output body block to log file */
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if (fwrite(bodyp, bodylen, 1, MLFIPRIV->mlfi_fp) <= 0)
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{
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/* write failed */
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(void) mlfi_cleanup(ctx, FALSE);
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return SMFIS_TEMPFAIL;
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}
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/* continue processing */
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return SMFIS_CONTINUE;
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}
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sfsistat
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mlfi_eom(ctx)
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SMFICTX *ctx;
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{
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return mlfi_cleanup(ctx, TRUE);
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}
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sfsistat
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mlfi_close(ctx)
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SMFICTX *ctx;
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{
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return SMFIS_ACCEPT;
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}
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sfsistat
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mlfi_abort(ctx)
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SMFICTX *ctx;
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{
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return mlfi_cleanup(ctx, FALSE);
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}
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sfsistat
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mlfi_cleanup(ctx, ok)
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SMFICTX *ctx;
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bool ok;
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{
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sfsistat rstat = SMFIS_CONTINUE;
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struct mlfiPriv *priv = MLFIPRIV;
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char *p;
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char host[512];
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char hbuf[1024];
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if (priv == NULL)
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return rstat;
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/* close the archive file */
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if (priv->mlfi_fp != NULL && fclose(priv->mlfi_fp) == EOF)
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{
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/* failed; we have to wait until later */
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rstat = SMFIS_TEMPFAIL;
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(void) unlink(priv->mlfi_fname);
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}
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else if (ok)
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{
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/* add a header to the message announcing our presence */
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if (gethostname(host, sizeof host) < 0)
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strlcpy(host, "localhost", sizeof host);
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p = strrchr(priv->mlfi_fname, '/');
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if (p == NULL)
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p = priv->mlfi_fname;
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else
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p++;
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snprintf(hbuf, sizeof hbuf, "%s@%s", p, host);
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smfi_addheader(ctx, "X-Archived", hbuf);
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}
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else
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{
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/* message was aborted -- delete the archive file */
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(void) unlink(priv->mlfi_fname);
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}
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/* release private memory */
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free(priv->mlfi_fname);
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free(priv);
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smfi_setpriv(ctx, NULL);
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/* return status */
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return rstat;
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}
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struct smfiDesc smfilter =
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{
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"SampleFilter", /* filter name */
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SMFI_VERSION, /* version code -- do not change */
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SMFIF_ADDHDRS, /* flags */
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NULL, /* connection info filter */
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NULL, /* SMTP HELO command filter */
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mlfi_envfrom, /* envelope sender filter */
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NULL, /* envelope recipient filter */
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mlfi_header, /* header filter */
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mlfi_eoh, /* end of header */
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mlfi_body, /* body block filter */
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mlfi_eom, /* end of message */
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mlfi_abort, /* message aborted */
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mlfi_close /* connection cleanup */
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};
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int
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main(argc, argv)
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int argc;
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char *argv[];
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{
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int c;
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const char *args = "p:";
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/* Process command line options */
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while ((c = getopt(argc, argv, args)) != -1)
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{
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switch (c)
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{
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case 'p':
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if (optarg == NULL || *optarg == '\0')
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{
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(void) fprintf(stderr, "Illegal conn: %s\n",
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optarg);
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exit(EX_USAGE);
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}
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(void) smfi_setconn(optarg);
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break;
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}
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}
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if (smfi_register(smfilter) == MI_FAILURE)
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{
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fprintf(stderr, "smfi_register failed\n");
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exit(EX_UNAVAILABLE);
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}
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return smfi_main();
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}
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/* eof */
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Revision: 8.9.2.1.2.19, Last updated Date: 2001/06/28 22:25:14
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