Jonathan Druart
d2cdd913fa
This patch flushes the L1 cache on each SIP connection (ie every invocation of process_request). This means each SIP connection will fetch values from the L2 cache (ie memcached) and persist the L1 cache (in Perl memory cache) only until a new SIP connection comes in. Without this patch, the L1 cache persists for the length of the server process, which means the L1 cache will become stale very quickly, which can lead to unexpected behaviour. Test plan: 1. Enable IssueLog 2. Start SIP server 2a. change to Koha git directory 2b. koha-shell kohadev 2c. perl C4/SIP/SIPServer.pm /etc/koha/sites/kohadev/SIPconfig.xml 3. Issue book via SIP perl misc/sip_cli_emulator.pl -a 127.0.0.1 -p 6001 -su term1 -sp term1 -l CPL --patron 1 --item 3999900000001 -m checkout 4. Check action_logs for "CIRCULATION ISSUE <borrowernumber> <biblionumber>" line http://localhost:8081/cgi-bin/koha/tools/viewlog.pl 5. Disable IssueLog 6. Check in the book and then check it out again perl misc/sip_cli_emulator.pl -a 127.0.0.1 -p 6001 -su term1 -sp term1 -l CPL --patron 1 --item 3999900000001 -m checkin perl misc/sip_cli_emulator.pl -a 127.0.0.1 -p 6001 -su term1 -sp term1 -l CPL --patron 1 --item 3999900000001 -m checkout 7. Check action_logs for "CIRCULATION ISSUE <borrowernumber> <biblionumber>" line http://localhost:8081/cgi-bin/koha/tools/viewlog.pl 8. Note results Without the patch, you'll see a 2nd checkout. With the patch, you won't see the 2nd checkout. (Note: After applying the patch, you have to restart the SIP server.) Signed-off-by: David Cook <dcook@prosentient.com.au> Signed-off-by: Nick Clemens <nick@bywatersolutions.com> Signed-off-by: Martin Renvoize <martin.renvoize@ptfs-europe.com>
402 lines
12 KiB
Perl
Executable file
402 lines
12 KiB
Perl
Executable file
#!/usr/bin/perl
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package C4::SIP::SIPServer;
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use strict;
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use warnings;
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use FindBin qw($Bin);
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use lib "$Bin";
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use Sys::Syslog qw(syslog);
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use Net::Server::PreFork;
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use IO::Socket::INET;
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use Socket qw(:DEFAULT :crlf);
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require UNIVERSAL::require;
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use C4::Context;
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use C4::SIP::Sip::Constants qw(:all);
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use C4::SIP::Sip::Configuration;
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use C4::SIP::Sip::Checksum qw(checksum verify_cksum);
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use C4::SIP::Sip::MsgType qw( handle login_core );
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use Koha::Caches;
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use base qw(Net::Server::PreFork);
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use constant LOG_SIP => "local6"; # Local alias for the logging facility
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#
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# Main # not really, since package SIPServer
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#
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# FIXME: Is this a module or a script?
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# A script with no MAIN namespace?
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# A module that takes command line args?
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# Set interface to 'sip'
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C4::Context->interface('sip');
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my %transports = (
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RAW => \&raw_transport,
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telnet => \&telnet_transport,
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);
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#
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# Read configuration
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#
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my $config = C4::SIP::Sip::Configuration->new( $ARGV[0] );
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my @parms;
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#
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# Ports to bind
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#
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foreach my $svc (keys %{$config->{listeners}}) {
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push @parms, "port=" . $svc;
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}
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#
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# Logging
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#
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# Log lines look like this:
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# Jun 16 21:21:31 server08 steve_sip[19305]: ILS::Transaction::Checkout performing checkout...
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# [ TIMESTAMP ] [ HOST ] [ IDENT ] PID : Message...
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#
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# The IDENT is determined by config file 'server-params' arguments
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#
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# Server Management: set parameters for the Net::Server::PreFork
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# module. The module silently ignores parameters that it doesn't
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# recognize, and complains about invalid values for parameters
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# that it does.
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#
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if (defined($config->{'server-params'})) {
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while (my ($key, $val) = each %{$config->{'server-params'}}) {
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push @parms, $key . '=' . $val;
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}
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}
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#
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# This is the main event.
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__PACKAGE__ ->run(@parms);
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#
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# Child
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#
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# process_request is the callback used by Net::Server to handle
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# an incoming connection request.
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sub process_request {
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my $self = shift;
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my $service;
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my ($sockaddr, $port, $proto);
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my $transport;
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$self->{config} = $config;
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# Flushing L1 to make sure the request will be processed using the correct data
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Koha::Caches->flush_L1_caches();
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my $sockname = getsockname(STDIN);
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# Check if socket connection is IPv6 before resolving address
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my $family = Socket::sockaddr_family($sockname);
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if ($family == AF_INET6) {
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($port, $sockaddr) = sockaddr_in6($sockname);
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$sockaddr = Socket::inet_ntop(AF_INET6, $sockaddr);
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} else {
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($port, $sockaddr) = sockaddr_in($sockname);
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$sockaddr = inet_ntoa($sockaddr);
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}
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$proto = $self->{server}->{client}->NS_proto();
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$self->{service} = $config->find_service($sockaddr, $port, $proto);
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if (!defined($self->{service})) {
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syslog("LOG_ERR", "process_request: Unknown recognized server connection: %s:%s/%s", $sockaddr, $port, $proto);
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die "process_request: Bad server connection";
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}
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$transport = $transports{$self->{service}->{transport}};
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if (!defined($transport)) {
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syslog("LOG_WARNING", "Unknown transport '%s', dropping", $service->{transport});
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return;
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} else {
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&$transport($self);
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}
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return;
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}
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#
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# Transports
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#
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sub raw_transport {
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my $self = shift;
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my $input;
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my $service = $self->{service};
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# If using Net::Server::PreFork you may already have account set from a previous session
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# Ensure you dont
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if ($self->{account}) {
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delete $self->{account};
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}
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# Timeout the while loop if we get stuck in it
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# In practice it should only iterate once but be prepared
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local $SIG{ALRM} = sub { die 'raw transport Timed Out!' };
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my $timeout = $self->get_timeout({ transport => 1 });
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syslog('LOG_DEBUG', "raw_transport: timeout is $timeout");
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alarm $timeout;
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while (!$self->{account}) {
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$input = read_request();
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if (!$input) {
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# EOF on the socket
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syslog("LOG_INFO", "raw_transport: shutting down: EOF during login");
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return;
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}
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$input =~ s/[\r\n]+$//sm; # Strip off trailing line terminator(s)
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my $reg = qr/^${\(LOGIN)}/;
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last if $input !~ $reg ||
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C4::SIP::Sip::MsgType::handle($input, $self, LOGIN);
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}
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alarm 0;
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syslog("LOG_DEBUG", "raw_transport: uname/inst: '%s/%s'",
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$self->{account}->{id},
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$self->{account}->{institution});
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if (! $self->{account}->{id}) {
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syslog("LOG_ERR","Login failed shutting down");
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return;
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}
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$self->sip_protocol_loop();
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syslog("LOG_INFO", "raw_transport: shutting down");
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return;
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}
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sub get_clean_string {
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my $string = shift;
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if (defined $string) {
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syslog("LOG_DEBUG", "get_clean_string pre-clean(length %s): %s", length($string), $string);
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chomp($string);
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$string =~ s/^[^A-z0-9]+//;
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$string =~ s/[^A-z0-9]+$//;
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syslog("LOG_DEBUG", "get_clean_string post-clean(length %s): %s", length($string), $string);
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} else {
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syslog("LOG_INFO", "get_clean_string called on undefined");
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}
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return $string;
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}
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sub get_clean_input {
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local $/ = "\012";
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my $in = <STDIN>;
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$in = get_clean_string($in);
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while (my $extra = <STDIN>){
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syslog("LOG_ERR", "get_clean_input got extra lines: %s", $extra);
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}
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return $in;
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}
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sub telnet_transport {
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my $self = shift;
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my ($uid, $pwd);
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my $strikes = 3;
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my $account = undef;
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my $input;
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my $config = $self->{config};
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my $timeout = $self->get_timeout({ transport => 1 });
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syslog("LOG_DEBUG", "telnet_transport: timeout is $timeout");
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eval {
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local $SIG{ALRM} = sub { die "telnet_transport: Timed Out ($timeout seconds)!\n"; };
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local $| = 1; # Unbuffered output
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$/ = "\015"; # Internet Record Separator (lax version)
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# Until the terminal has logged in, we don't trust it
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# so use a timeout to protect ourselves from hanging.
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while ($strikes--) {
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print "login: ";
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alarm $timeout;
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# $uid = &get_clean_input;
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$uid = <STDIN>;
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print "password: ";
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# $pwd = &get_clean_input || '';
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$pwd = <STDIN>;
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alarm 0;
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syslog("LOG_DEBUG", "telnet_transport 1: uid length %s, pwd length %s", length($uid), length($pwd));
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$uid = get_clean_string ($uid);
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$pwd = get_clean_string ($pwd);
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syslog("LOG_DEBUG", "telnet_transport 2: uid length %s, pwd length %s", length($uid), length($pwd));
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if (exists ($config->{accounts}->{$uid})
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&& ($pwd eq $config->{accounts}->{$uid}->{password})) {
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$account = $config->{accounts}->{$uid};
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if ( C4::SIP::Sip::MsgType::login_core($self,$uid,$pwd) ) {
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last;
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}
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}
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syslog("LOG_WARNING", "Invalid login attempt: '%s'", ($uid||''));
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print("Invalid login$CRLF");
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}
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}; # End of eval
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if ($@) {
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syslog("LOG_ERR", "telnet_transport: Login timed out");
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die "Telnet Login Timed out";
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} elsif (!defined($account)) {
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syslog("LOG_ERR", "telnet_transport: Login Failed");
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die "Login Failure";
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} else {
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print "Login OK. Initiating SIP$CRLF";
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}
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$self->{account} = $account;
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syslog("LOG_DEBUG", "telnet_transport: uname/inst: '%s/%s'", $account->{id}, $account->{institution});
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$self->sip_protocol_loop();
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syslog("LOG_INFO", "telnet_transport: shutting down");
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return;
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}
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#
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# The terminal has logged in, using either the SIP login process
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# over a raw socket, or via the pseudo-unix login provided by the
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# telnet transport. From that point on, both the raw and the telnet
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# processes are the same:
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sub sip_protocol_loop {
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my $self = shift;
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my $service = $self->{service};
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my $config = $self->{config};
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my $timeout = $self->get_timeout({ client => 1 });
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# The spec says the first message will be:
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# SIP v1: SC_STATUS
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# SIP v2: LOGIN (or SC_STATUS via telnet?)
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# But it might be SC_REQUEST_RESEND. As long as we get
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# SC_REQUEST_RESEND, we keep waiting.
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# Comprise reports that no other ILS actually enforces this
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# constraint, so we'll relax about it too.
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# Using the SIP "raw" login process, rather than telnet,
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# requires the LOGIN message and forces SIP 2.00. In that
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# case, the LOGIN message has already been processed (above).
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# In short, we'll take any valid message here.
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eval {
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local $SIG{ALRM} = sub {
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syslog( 'LOG_DEBUG', 'Inactive: timed out' );
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die "Timed Out!\n";
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};
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my $previous_alarm = alarm($timeout);
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while ( my $inputbuf = read_request() ) {
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if ( !defined $inputbuf ) {
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return; #EOF
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}
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alarm($timeout);
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unless ($inputbuf) {
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syslog( "LOG_ERR", "sip_protocol_loop: empty input skipped" );
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print("96$CR");
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next;
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}
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my $status = C4::SIP::Sip::MsgType::handle( $inputbuf, $self, q{} );
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if ( !$status ) {
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syslog(
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"LOG_ERR",
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"sip_protocol_loop: failed to handle %s",
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substr( $inputbuf, 0, 2 )
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);
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}
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next if $status eq REQUEST_ACS_RESEND;
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}
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alarm($previous_alarm);
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return;
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};
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if ( $@ =~ m/timed out/i ) {
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return;
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}
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return;
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}
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sub read_request {
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my $raw_length;
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local $/ = "\015";
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# proper SPEC: (octal) \015 = (hex) x0D = (dec) 13 = (ascii) carriage return
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my $buffer = <STDIN>;
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if ( defined $buffer ) {
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STDIN->flush(); # clear an extra linefeed
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chomp $buffer;
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$raw_length = length $buffer;
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$buffer =~ s/^\s*[^A-z0-9]+//s;
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# Every line must start with a "real" character. Not whitespace, control chars, etc.
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$buffer =~ s/[^A-z0-9]+$//s;
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# Same for the end. Note this catches the problem some clients have sending empty fields at the end, like |||
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$buffer =~ s/\015?\012//g; # Extra line breaks must die
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$buffer =~ s/\015?\012//s; # Extra line breaks must die
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$buffer =~ s/\015*\012*$//s;
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# treat as one line to include the extra linebreaks we are trying to remove!
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}
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else {
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syslog( 'LOG_DEBUG', 'EOF returned on read' );
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return;
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}
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my $len = length $buffer;
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if ( $len != $raw_length ) {
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my $trim = $raw_length - $len;
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syslog( 'LOG_DEBUG', "read_request trimmed $trim character(s) " );
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}
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syslog( 'LOG_INFO', "INPUT MSG: '$buffer'" );
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return $buffer;
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}
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# $server->get_timeout({ $type => 1, fallback => $fallback });
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# where $type is transport | client | policy
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#
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# Centralizes all timeout logic.
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# Transport refers to login process, client to active connections.
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# Policy timeout is transaction timeout (used in ACS status message).
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#
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# Fallback is optional. If you do not pass transport, client or policy,
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# you will get fallback or hardcoded default.
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sub get_timeout {
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my ( $server, $params ) = @_;
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my $fallback = $params->{fallback} || 30;
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my $service = $server->{service} // {};
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my $config = $server->{config} // {};
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if( $params->{transport} ||
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( $params->{client} && !exists $service->{client_timeout} )) {
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# We do not allow zero values here.
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# Note: config/timeout seems to be deprecated.
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return $service->{timeout} || $config->{timeout} || $fallback;
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} elsif( $params->{client} ) {
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# We know that client_timeout exists now.
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# We do allow zero values here to indicate no timeout.
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return 0 if $service->{client_timeout} =~ /^0+$|\D/;
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return $service->{client_timeout};
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} elsif( $params->{policy} ) {
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my $policy = $server->{policy} // {};
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my $rv = sprintf( "%03d", $policy->{timeout} // 0 );
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if( length($rv) != 3 ) {
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syslog( "LOG_ERR", "Policy timeout has wrong size: '%s'", $rv );
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return '000';
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}
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return $rv;
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} else {
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return $fallback;
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}
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}
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1;
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__END__
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