261 lines
7.7 KiB
Perl
Executable file
261 lines
7.7 KiB
Perl
Executable file
#!/usr/bin/env perl
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use strict;
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use warnings FATAL => 'all';
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use DBI;
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use Getopt::Long;
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use Const::Fast;
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use Term::ReadPassword;
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use Template;
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use Getopt::Long;
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const my %IGNORE_TABLE => (
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cached_reports => 1,
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crispr_off_targets => 1,
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summaries => 1,
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fixture_md5 => 1,
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crispr_off_target_summaries => 1,
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design_attempts => 1,
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crisprs => 1,
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project_alleles => 1,
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);
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const my $MAIN_SCHEMA => 'public';
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const my $AUDIT_SCHEMA => 'audit';
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const my $CREATE_AUDIT_TABLE_TT => <<'EOT';
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CREATE TABLE [% audit_schema %].[% table_name %] (
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audit_op CHAR(1) NOT NULL CHECK (audit_op IN ('D','I','U')),
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audit_user TEXT NOT NULL,
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audit_stamp TIMESTAMP NOT NULL,
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audit_txid INTEGER NOT NULL,
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[% column_spec.join(",\n") %]
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);
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EOT
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const my $CREATE_AUDIT_FUNCTION_TT => <<'EOT';
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CREATE OR REPLACE FUNCTION [% main_schema %].process_[% table_name %]_audit()
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RETURNS TRIGGER AS $[% table_name %]_audit$
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BEGIN
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IF (TG_OP = 'DELETE') THEN
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INSERT INTO [% audit_schema %].[% table_name %] SELECT 'D', user, now(), txid_current(), OLD.*;
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ELSIF (TG_OP = 'UPDATE') THEN
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INSERT INTO [% audit_schema %].[% table_name %] SELECT 'U', user, now(), txid_current(), NEW.*;
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ELSIF (TG_OP = 'INSERT') THEN
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INSERT INTO [% audit_schema %].[% table_name %] SELECT 'I', user, now(), txid_current(), NEW.*;
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END IF;
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RETURN NULL;
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END;
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$[% table_name %]_audit$ LANGUAGE plpgsql;
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EOT
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const my $CREATE_AUDIT_TRIGGER_TT => <<'EOT';
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CREATE TRIGGER [% table_name %]_audit
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AFTER INSERT OR UPDATE OR DELETE ON [% main_schema %].[% table_name %]
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FOR EACH ROW EXECUTE PROCEDURE [% main_schema %].process_[% table_name %]_audit();
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EOT
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const my $DROP_AUDIT_TABLE_COLUMN_TT => <<'EOT';
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ALTER TABLE [% audit_schema %].[% table_name %] DROP COLUMN [% column_name %];
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EOT
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const my $ADD_AUDIT_TABLE_COLUMN_TT => <<'EOT';
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ALTER TABLE [% audit_schema %].[% table_name %] ADD COLUMN [% column_name %] [% column_type %];
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EOT
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const my $DROP_AUDIT_TABLE_TT => <<'EOT';
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DROP TABLE [% audit_schema %].[% table_name %];
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EOT
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const my %IS_AUDIT_COL => map { $_ => 1 } qw( audit_op audit_user audit_stamp audit_txid );
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const my %NEEDS_SIZE => map { $_ => 1 } qw( char character varchar );
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{
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my $pg_host = $ENV{PGHOST};
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my $pg_port = $ENV{PGPORT};
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my $pg_dbname = $ENV{PGDATABASE};
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my $pg_user = 'lims2';
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GetOptions(
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'host=s' => \$pg_host,
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'port=s' => \$pg_port,
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'dbname=s' => \$pg_dbname,
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'user=s' => \$pg_user
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) or die "Usage: $0 [OPTIONS]\n";
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my $pg_password;
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while ( not defined $pg_password ) {
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$pg_password = read_password("Enter PostgreSQL password for $pg_user: ");
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}
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my $dsn = 'dbi:Pg:dbname=' . $pg_dbname;
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if ( defined $pg_host ) {
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$dsn .= ";host=" . $pg_host;
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}
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if ( defined $pg_port ) {
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$dsn .= ";port=" . $pg_port;
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}
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my $dbh = DBI->connect( $dsn, $pg_user, $pg_password, { AutoCommit => 1, RaiseError => 1, PrintError => 0 } )
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or die "Failed to connect to $dsn: $DBI::errstr\n";
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const my %VARS => (
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main_schema => $MAIN_SCHEMA,
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audit_schema => $AUDIT_SCHEMA,
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);
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my $tt = Template->new;
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my $main_tables = get_tables( $dbh, $MAIN_SCHEMA );
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my $audit_tables = get_tables( $dbh, $AUDIT_SCHEMA );
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while ( my ( $table_name, $main_table ) = each %{$main_tables} ) {
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next if exists $IGNORE_TABLE{$table_name};
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my $audit_table = $audit_tables->{$table_name};
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if ($audit_table) {
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diff_tables( $table_name, $main_table, $audit_table, $tt, \%VARS );
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}
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else {
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initialize_auditing( $table_name, $main_table, $tt, \%VARS );
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}
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}
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for my $table_name ( keys %{$audit_tables} ) {
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unless ( $main_tables->{$table_name} ) {
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$tt->process( \$DROP_AUDIT_TABLE_TT, { %VARS, table_name => $table_name } );
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}
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}
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}
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sub diff_tables {
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my ( $table_name, $col_spec, $audit_col_spec, $tt, $VARS ) = @_;
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my %vars = ( %{$VARS}, table_name => $table_name );
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my %cols = map { @{$_} } @{$col_spec};
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my %audit_cols = map { @{$_} } @{$audit_col_spec};
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for my $cs ( @{$col_spec} ) {
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my ( $column_name, $column_type ) = @{$cs};
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my $audit_column_type = $audit_cols{$column_name};
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if ($audit_column_type) {
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if ( $audit_column_type ne $column_type ) {
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warn "Table $table_name column $column_name type mismatch ($column_type vs $audit_column_type)\n";
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}
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}
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else {
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$tt->process( \$ADD_AUDIT_TABLE_COLUMN_TT,
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{ %vars, column_name => $column_name, column_type => $column_type } );
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}
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}
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for my $audit_column_name ( keys %audit_cols ) {
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unless ( $cols{$audit_column_name} or exists $IS_AUDIT_COL{$audit_column_name} ) {
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$tt->process( \$DROP_AUDIT_TABLE_COLUMN_TT, { %vars, column_name => $audit_column_name } );
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}
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}
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return;
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}
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sub initialize_auditing {
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my ( $table_name, $col_spec, $tt, $VARS ) = @_;
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my %vars = (
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%{$VARS},
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table_name => $table_name,
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column_spec => [ map { join q{ }, @{$_} } @{$col_spec} ]
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);
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$tt->process( \$CREATE_AUDIT_TABLE_TT, \%vars );
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$tt->process( \$CREATE_AUDIT_FUNCTION_TT, \%vars );
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$tt->process( \$CREATE_AUDIT_TRIGGER_TT, \%vars );
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return;
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}
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sub get_tables {
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my ( $dbh, $schema_name ) = @_;
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my $sth = $dbh->table_info( undef, $schema_name, undef, 'TABLE' );
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my %tables;
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while ( my $r = $sth->fetchrow_hashref ) {
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$tables{ $r->{TABLE_NAME} } = get_column_info( $dbh, $schema_name, $r->{TABLE_NAME} );
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}
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return \%tables;
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}
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sub get_column_info {
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my ( $dbh, $schema_name, $table_name ) = @_;
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my @column_info;
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my $sth = $dbh->column_info( undef, $schema_name, $table_name, undef );
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while ( my $r = $sth->fetchrow_hashref ) {
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my $type = $r->{TYPE_NAME};
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if ( exists $NEEDS_SIZE{$type} ) {
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# HACK for bpchar type columns in qc_template_well_genotyping_primers and
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# qc_template_well_crispr_primers tables ( qc_run_id column )
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my $col_size = $r->{COLUMN_SIZE} ? $r->{COLUMN_SIZE} : '36';
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$type = $type . '(' . $col_size . ')';
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}
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push @column_info, [ $r->{COLUMN_NAME}, $type ];
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}
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return \@column_info;
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}
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__END__
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=pod
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=head1 NAME
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generate-pg-audit-ddl
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=head1 SYNOPSIS
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generate-pg-audit-ddl --host pgsrv5 --port 5437 --dbname lims2_devel --user lims2
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=head1 DESCRIPTION
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This script interrogates the database specified by the C<--dbname>
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command-line option and compares the I<public> schema with the
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I<audit> schema. It emits SQL to create a table in the I<audit> schema
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shadowing each table in the B<public> schema, a function to insert a
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row in the corresponding I<audit> table for each C<INSERT>, C<UPDATE>
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or C<DELETE> in the I<public> schema, and a trigger that calls this
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function.
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=head1 LIMITATIONS
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This script assumes that the I<audit> schema already exists. It
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attempts to create SQL that will transition the current state of the
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I<audit> schema to the desired state (shadowing the current state of
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the I<public> schema). Note, however, that it cannot accurately detect
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column and table renames.
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If you have renamed a column or table in the main schema, this script
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will emit C<DROP> and C<CREATE> statements that will B<delete data
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from your audit schema>. Please review the generated SQL carefully in
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case this is not what you intended.
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=head1 SEE ALSO
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The I<audit> tables, functions, and triggers are derived from an
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example described here:
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L<http://www.postgresql.org/docs/9.0/static/plpgsql-trigger.html>
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=head1 AUTHOR
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Ray Miller E<lt>rm7@sanger.ac.ukE<gt>
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=cut
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