#-*- perl -*- # Copyright (C) 2000-2001 Ken'ichi Fukamachi # # $FML: Config.pm,v 1.29 2001/05/18 17:30:09 fukachan Exp $ # package FML::Config; use strict; use Carp; use vars qw($need_expansion_variables %_fml_config_result %_fml_config %_default_fml_config); use ErrorStatus qw(error_set error error_clear); =head1 NAME FML::Config -- manipulate fml5 configuration =head1 SYNOPSIS $config = new FML::Config; # get the current value $config->{recipient_maps}; # set the new value $config->{recipient_maps} = 'mysql:toymodel'; # function style to get/set the value for the key "recipient_maps" $config->get('recipient_maps'); $config->set('recipient_maps', 'mysql:toymodel'); =head1 DESCRIPTION =head2 DATA STRUCTURE C<$curproc> hash holds the CURrent PROCess information. It contains several references to other data structures. $curproc = { # configurations config => { key => value, }, # struct incoming_message holds the mail input from STDIN. incoming_message => $r_msg, article => $r_msg, }; where we use r_variable_name syntax where "r_" implies "reference to" here. For exapmle, this C<$r_msg> is the reference to a hash to represent a mail message. It composes of header, body and several information. $r_msg = { r_header => \$header,p r_body => \$body, info => { mime-version => 1.0, content-type => { charset => ISO-2022-JP, }, size => $size, }, }; where $header is the object returned by Mail::Header class (CPAN module) and the $body is the reference to the mail body region on memory which locates within FML::Parse name space. =head2 DELAYED VALUE EXPANSION data manipulation of set() and get() is assymetric and asynchronous. C saves the value for a key in C<%fml_config>. C returns the value for a key in C<%fml_config_result>, which is value expanded C<%fml_config>. The expansion is done when C is called not when C is called. =head1 METHODS =head2 C special method used only in the fml initialization phase. This method binds $curproc and the %_fml_config hash on memory. Internally this method uses C to get and set a key to a value. For example, C and C described below is a wrapper for tie() IO. =cut sub new { my ($self, $args) = @_; unless (defined %_fml_config) { %_fml_config = ( pid => $$ );} # prepare the tied hash to %_fml_config; # to support $config->{ variable } syntax. my $me = {}; tie %$me, $self; # import variables if (defined $args) { my ($k, $v); while (($k, $v) = each %$args) { set($me, $k, $v);} } return bless $me, $self; } =head2 C =head2 C =cut sub get { my ($self, $key) = @_; $self->{ $key }; } sub set { my ($self, $key, $value) = @_; $self->{ $key } = $value; } =head2 C alias of C. =head2 C read the configuration file, split keys and the values in it and set them to %_fml_config. =cut sub overload { my ($self, $file) = @_; $self->load_file($file); } sub load_file { my ($self, $file) = @_; my $config = \%_fml_config; # open the $file by using FileHandle.pm use FileHandle; my $fh = new FileHandle $file; if (defined $fh) { my ($key, $value, $curkey); while (<$fh>) { last if /^=cut/; # end of postfix format next if /^=/; # ignore special keywords of pod formats next if /^\#/; # ignore comments # here we go chop; if (/^([A-Za-z0-9_]+)\s+=\s*(.*)/) { my ($key, $value) = ($1, $2); $value =~ s/\s*$//o; $curkey = $key; $config->{$key} = $value; } if (/^\s+(.*)/) { my $value = $1; $value =~ s/\s*$//o; $config->{ $curkey } .= " ". $value; } } $fh->close; } else { $self->error_set("Error: cannot open $file"); } # first time unless (%_default_fml_config) { %_default_fml_config = %_fml_config; } # flag on: we need $config->{ key } needs variable expansion $need_expansion_variables = 1; } =head2 C expand all variables in C<%_default_fml_config> and C<%_fml_config>. The expanded result is saved in the same hash. XXX obsolete ? This method is used before hook is introduced. XXX Consider a hook may change the variable. XXX We should expand variables on demand in that case =cut # expand variable name e.g. $dir/xxx -> /var/spool/ml/elena/xxx sub expand_variables { my ($self) = @_; # always expand variables within itself. _expand_variables( \%_default_fml_config ); # XXX 2001/05/05 # XXX %_fml_config has variables before expansion. # XXX %_fml_config_result has variables after expansion. %_fml_config_result = %_fml_config; _expand_variables( \%_fml_config_result ); } sub _expand_variables { my ($config) = @_; my @order = keys %$config; # check whether the variable definition is recursive. # For example, definition "var_a = $var_a/b/c" causes a loop. for my $x ( @order ) { if ($config->{ $x } =~ /\$$x/) { croak("loop1: definition of $x is recursive\n"); } } # main expansion loop my $org = ''; my $max = 0; KEY: for my $x ( @order ) { next KEY if $config->{ $x } !~ /\$/o; # we need a loop to expand nested variables, for example, # "a = $x/y" and "b = $a/c/0" would be "b = $x/y/c/0" $max = 0; EXPANSION_LOOP: while ($max++ < 16) { $org = $config->{ $x }; $config->{$x} =~ s/\$([a-z_]+[a-z0-9])/(defined $config->{$1} ? $config->{$1} : '')/ge; last EXPANSION_LOOP if $config->{ $x } !~ /\$/o; last EXPANSION_LOOP if $org eq $config->{ $x }; if ($config->{ $x } =~ /\$$x/) { croak("loop2: definition of $x is recursive\n"); } } if ($max >= 16) { croak("variable expansion of $x causes infinite loop\n"); } } } =head2 C useful method to return 1 or 0 according the value to the given key. =head2 C useful method to return 1 or 0 according the value to the given key. =head2 C Some types of C has a list as a value. If C has the C in the list, return 1. return 0 if not. =cut sub yes { my ($self, $key) = @_; if (defined $_fml_config{$key}) { $_fml_config{$key} eq 'yes' ? 1 : 0; } else { 0; } } sub no { my ($self, $key) = @_; $_fml_config{$key} eq 'no' ? 1 : 0; } # has_attribute( key, attribute ) # e.g. has_attribute( "available_command_list" , "help" ); sub has_attribute { my ($self, $key, $attribute) = @_; my (@attribute) = split(/\s+/, $_fml_config{$key}); for my $k (@attribute) { return 1 if $k eq $attribute; } return 0; } =head2 C show all {key => value} for debug. =cut sub dump_variables { my ($self, $args) = @_; my ($k, $v); my $len = 0; my $mode = $args->{ mode } || 'all'; $self->expand_variables(); for $k (keys %_fml_config_result) { $len = $len > length($k) ? $len : length($k); } my $format = '%-'. $len. 's = %s'. "\n"; for $k (sort keys %_fml_config_result) { next unless $k =~ /^[a-z0-9]/io; $v = $_fml_config_result{ $k }; # print out all keys if ($mode eq 'all') { printf $format, $k, $v; } # compare the value with the default one # print key if values for the key differs. else { if (defined $_default_fml_config{ $k }) { if ($v ne $_default_fml_config{ $k }) { printf $format, $k, $v; } } else { printf $format, $k, $v; } } } } =head1 TIEED HASH tie() operations for hash are binded to \%_fml_config. For example, C and C described above is a wrapper for tie() IO. =cut sub TIEHASH { my ($self, $args) = @_; my ($type) = ref($self) || $self; my $me = \%_fml_config; return bless $me, $type; } sub FETCH { my ($self, $key) = @_; if ($need_expansion_variables) { $self->expand_variables(); $need_expansion_variables = 0; } defined($_fml_config_result{$key}) ? $_fml_config_result{$key} : undef; } sub STORE { my ($self, $key, $value) = @_; # inform fml we need to expand variable again when FETCH() is # called. if ($value =~ /\$/) { $need_expansion_variables = 1;} $_fml_config{$key} = $value; } sub DELETE { my ($self, $key) = @_; delete $_fml_config_result{$key}; delete $_fml_config{$key}; } sub CLEAR { my ($self) = @_; undef %_fml_config_result; undef %_fml_config; } 1;