/usr/share/postgresql/9.4/extension/postgis_topology--2.1.0--2.1.4.sql is in postgresql-9.4-postgis-scripts 2.1.4+dfsg-3.
This file is owned by root:root, with mode 0o644.
The actual contents of the file can be viewed below.
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--
-- $Id: postgis_extension_helper.sql 12288 2014-03-03 03:01:35Z robe $
----
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.net
--
-- Copyright (C) 2011 Regina Obe <lr@pcorp.us>
-- Copyright (C) 2005 Refractions Research Inc.
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- Author: Regina Obe <lr@pcorp.us>
--
-- This is a suite of SQL helper functions for use during a PostGIS extension install/upgrade
-- The functions get uninstalled after the extention install/upgrade process
---------------------------
-- postgis_extension_remove_objects: This function removes objects of a particular class from an extension
-- this is needed because there is no ALTER EXTENSION DROP FUNCTION/AGGREGATE command
-- and we can't CREATE OR REPALCe functions whose signatures have changed and we can drop them if they are part of an extention
-- So we use this to remove it from extension first before we drop
CREATE OR REPLACE FUNCTION postgis_extension_remove_objects(param_extension text, param_type text)
RETURNS boolean AS
$$
DECLARE
var_sql text := '';
var_r record;
var_result boolean := false;
var_class text := '';
var_is_aggregate boolean := false;
var_sql_list text := '';
BEGIN
var_class := CASE WHEN lower(param_type) = 'function' OR lower(param_type) = 'aggregate' THEN 'pg_proc' ELSE '' END;
var_is_aggregate := CASE WHEN lower(param_type) = 'aggregate' THEN true ELSE false END;
var_sql_list := 'SELECT ''ALTER EXTENSION '' || e.extname || '' DROP '' || $3 || '' '' || COALESCE(proc.proname || ''('' || oidvectortypes(proc.proargtypes) || '')'',typ.typname, cd.relname, op.oprname,
cs.typname || '' AS '' || ct.typname || '') '', opcname, opfname) || '';'' AS remove_command
FROM pg_depend As d INNER JOIN pg_extension As e
ON d.refobjid = e.oid INNER JOIN pg_class As c ON
c.oid = d.classid
LEFT JOIN pg_proc AS proc ON proc.oid = d.objid
LEFT JOIN pg_type AS typ ON typ.oid = d.objid
LEFT JOIN pg_class As cd ON cd.oid = d.objid
LEFT JOIN pg_operator As op ON op.oid = d.objid
LEFT JOIN pg_cast AS ca ON ca.oid = d.objid
LEFT JOIN pg_type AS cs ON ca.castsource = cs.oid
LEFT JOIN pg_type AS ct ON ca.casttarget = ct.oid
LEFT JOIN pg_opclass As oc ON oc.oid = d.objid
LEFT JOIN pg_opfamily As ofa ON ofa.oid = d.objid
WHERE d.deptype = ''e'' and e.extname = $1 and c.relname = $2 AND COALESCE(proc.proisagg, false) = $4;';
FOR var_r IN EXECUTE var_sql_list USING param_extension, var_class, param_type, var_is_aggregate
LOOP
var_sql := var_sql || var_r.remove_command || ';';
END LOOP;
IF var_sql > '' THEN
EXECUTE var_sql;
var_result := true;
END IF;
RETURN var_result;
END;
$$
LANGUAGE plpgsql VOLATILE;
CREATE OR REPLACE FUNCTION postgis_extension_drop_if_exists(param_extension text, param_statement text)
RETURNS boolean AS
$$
DECLARE
var_sql_ext text := 'ALTER EXTENSION ' || quote_ident(param_extension) || ' ' || replace(param_statement, 'IF EXISTS', '');
var_result boolean := false;
BEGIN
BEGIN
EXECUTE var_sql_ext;
var_result := true;
EXCEPTION
WHEN OTHERS THEN
--this is to allow ignoring if the object does not exist in extension
var_result := false;
END;
RETURN var_result;
END;
$$
LANGUAGE plpgsql VOLATILE;
CREATE OR REPLACE FUNCTION postgis_extension_AddToSearchPath(a_schema_name varchar)
RETURNS text
AS
$$
DECLARE
var_result text;
var_cur_search_path text;
BEGIN
SELECT reset_val INTO var_cur_search_path FROM pg_settings WHERE name = 'search_path';
IF var_cur_search_path LIKE '%' || quote_ident(a_schema_name) || '%' THEN
var_result := a_schema_name || ' already in database search_path';
ELSE
EXECUTE 'ALTER DATABASE ' || quote_ident(current_database()) || ' SET search_path = ' || var_cur_search_path || ', ' || quote_ident(a_schema_name);
var_result := a_schema_name || ' has been added to end of database search_path ';
END IF;
RETURN var_result;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- $Id: remove_from_extension.sql.in 12288 2014-03-03 03:01:35Z robe $
----
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.net
--
-- Copyright (C) 2011 Regina Obe <lr@pcorp.us>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- Author: Regina Obe <lr@pcorp.us>
--
-- This drops extension helper functions
-- and should be called at the end of the extension upgrade file
-- removes all postgis_topology functions from postgis_topology extension since they will be readded
-- during upgrade
SELECT postgis_extension_remove_objects('postgis_topology', 'FUNCTION');
SELECT postgis_extension_remove_objects('postgis_topology', 'AGGREGATE');
-- $Id: topology_drop_before.sql.in 12013 2013-10-09 06:45:26Z strk $
-- PostGIS - Spatial Types for PostgreSQL
-- http://www.postgis.org
--
-- Copyright (C) 2012 Regina Obe <lr@pcorp.us>
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-- These are functions where the argument names may have changed --
-- so have to be dropped before upgrade can happen for 9.0+ --
-- argument names changed --
-- we might want to take toTopoGeom one out before release since
-- I don't think too many people installed the bad name
DROP FUNCTION IF EXISTS topology.toTopoGeom(Geometry, varchar, int, float8);
-- used to be in public, will now be moved to topology
DROP FUNCTION IF EXISTS postgis_topology_scripts_installed();
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- $Id: topology.sql.in 12013 2013-10-09 06:45:26Z strk $
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2010, 2011 Sandro Santilli <strk@keybit.net>
-- Copyright (C) 2005 Refractions Research Inc.
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- Author: Sandro Santilli <strk@keybit.net>
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- STATUS:
--
-- All objects are created in the 'topology' schema.
--
-- We have PostGIS-specific objects and SQL/MM objects.
-- PostGIS-specific objects have no prefix, SQL/MM ones
-- have the ``ST_' prefix.
--
-- [PostGIS-specific]
--
-- TABLE topology
-- Table storing topology info (name, srid, precision)
--
-- TYPE TopoGeometry
-- Complex type storing topology_id, layer_id, geometry type
-- and topogeometry id.
--
-- DOMAIN TopoElement
-- An array of two elements: element_id and element_type.
-- In fact, an array of integers.
--
-- DOMAIN TopoElementArray
-- An array of element_id,element_type values.
-- In fact, a bidimensional array of integers:
-- '{{id,type}, {id,type}, ...}'
--
-- FUNCTION CreateTopology(name, [srid], [precision])
-- Initialize a new topology (creating schema with
-- edge,face,node,relation) and add a record into
-- the topology.topology table.
-- TODO: add triggers (or rules, or whatever) enforcing
-- precision to the edge and node tables.
--
-- FUNCTION DropTopology(name)
-- Delete a topology removing reference from the
-- topology.topology table
--
-- FUNCTION GetTopologyId(name)
-- FUNCTION GetTopologySRID(name)
-- FUNCTION GetTopologyName(id)
-- Return info about a Topology
--
-- FUNCTION AddTopoGeometryColumn(toponame, schema, table, column, geomtype)
-- Add a TopoGeometry column to a table, making it a topology layer.
-- Returns created layer id.
--
-- FUNCTION DropTopoGeometryColumn(schema, table, column)
-- Drop a TopoGeometry column, unregister the associated layer,
-- cleanup the relation table.
--
-- FUNCTION CreateTopoGeom(toponame, geomtype, layer_id, topo_objects)
-- Create a TopoGeometry object from existing Topology elements.
-- The "topo_objects" parameter is of TopoElementArray type.
--
-- FUNCTION GetTopoGeomElementArray(toponame, layer_id, topogeom_id)
-- FUNCTION GetTopoGeomElementArray(TopoGeometry)
-- Returns a TopoElementArray object containing the topological
-- elements of the given TopoGeometry.
--
-- FUNCTION GetTopoGeomElements(toponame, layer_id, topogeom_id)
-- FUNCTION GetTopoGeomElements(TopoGeometry)
-- Returns a set of TopoElement objects containing the
-- topological elements of the given TopoGeometry (primitive
-- elements)
--
-- FUNCTION ValidateTopology(toponame)
-- Run validity checks on the topology, returning, for each
-- detected error, a 3-columns row containing error string
-- and references to involved topo elements: error, id1, id2
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- Overloaded functions for TopoGeometry inputs
--
-- FUNCTION intersects(TopoGeometry, TopoGeometry)
-- FUNCTION equals(TopoGeometry, TopoGeometry)
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- FUNCTION TopoGeo_AddPoint(toponame, point)
-- Add a Point geometry to the topology
-- TODO: accept a topology/layer id
-- rework to use existing node if existent
--
-- FUNCTION TopoGeo_AddLinestring(toponame, line)
-- Add a LineString geometry to the topology
-- TODO: accept a topology/layer id
-- rework to use existing nodes/edges
-- splitting them if required
--
-- FUNCTION TopoGeo_AddPolygon(toponame, polygon)
-- Add a Polygon geometry to the topology
-- TODO: implement
--
-- TYPE GetFaceEdges_ReturnType
-- Complex type used to return tuples from ST_GetFaceEdges
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- [SQL/MM]
--
-- ST_InitTopoGeo
-- Done, can be modified to include explicit sequences or
-- more constraints. Very noisy due to implicit index creations
-- for primary keys and sequences for serial fields...
--
-- ST_CreateTopoGeo
-- Complete
--
-- ST_AddIsoNode
-- Complete
--
-- ST_RemoveIsoNode
-- Complete
--
-- ST_MoveIsoNode
-- Complete
--
-- ST_AddIsoEdge
-- Complete
--
-- ST_RemoveIsoEdge
-- Complete, exceptions untested
--
-- ST_ChangeEdgeGeom
-- Complete
--
-- ST_NewEdgesSplit
-- Complete
-- Also updates the Relation table
--
-- ST_ModEdgeSplit
-- Complete
-- Also updates the Relation table
--
-- ST_AddEdgeNewFaces
-- Complete
-- Also updates the Relation table
--
-- ST_AddEdgeModFace
-- Complete
-- Also updates the Relation table
--
-- ST_GetFaceEdges
-- Complete
--
-- ST_ModEdgeHeal
-- Complete
-- Also updates the Relation table
--
-- ST_NewEdgeHeal
-- Complete
-- Also updates the Relation table
--
-- ST_GetFaceGeometry
-- Implemented using ST_BuildArea()
--
-- ST_RemEdgeNewFace
-- Complete
-- Also updates the Relation table
--
-- ST_RemEdgeModFace
-- Complete
-- Also updates the Relation table
--
-- ST_ValidateTopoGeo
-- Unimplemented (probably a wrapper around ValidateTopology)
--
--
-- Uninstalling previous installation isn't really a good habit ...
-- Let people decide about that
-- DROP SCHEMA topology CASCADE;
-- Doing everything outside of a transaction helps
-- upgrading in the best case.
--={ ----------------------------------------------------------------
-- POSTGIS-SPECIFIC block
--
-- This part contains function NOT in the SQL/MM specification
--
---------------------------------------------------------------------
--
-- Topology table.
-- Stores id,name,precision and SRID of topologies.
--
--{ LayerTrigger()
--
-- Layer integrity trigger
--
CREATE OR REPLACE FUNCTION topology.LayerTrigger()
RETURNS trigger
AS
$$
DECLARE
rec RECORD;
ok BOOL;
toponame varchar;
query TEXT;
BEGIN
--RAISE NOTICE 'LayerTrigger called % % at % level', TG_WHEN, TG_OP, TG_LEVEL;
IF TG_OP = 'INSERT' THEN
RAISE EXCEPTION 'LayerTrigger not meant to be called on INSERT';
ELSIF TG_OP = 'UPDATE' THEN
RAISE EXCEPTION 'The topology.layer table cannot be updated';
END IF;
-- Check for existance of any feature column referencing
-- this layer
FOR rec IN SELECT * FROM pg_namespace n, pg_class c, pg_attribute a
WHERE text(n.nspname) = OLD.schema_name
AND c.relnamespace = n.oid
AND text(c.relname) = OLD.table_name
AND a.attrelid = c.oid
AND text(a.attname) = OLD.feature_column
LOOP
query = 'SELECT * '
|| ' FROM ' || quote_ident(OLD.schema_name)
|| '.' || quote_ident(OLD.table_name)
|| ' WHERE layer_id('
|| quote_ident(OLD.feature_column)||') '
|| '=' || OLD.layer_id
|| ' LIMIT 1';
--RAISE NOTICE '%', query;
FOR rec IN EXECUTE query
LOOP
RAISE NOTICE 'A feature referencing layer % of topology % still exists in %.%.%', OLD.layer_id, OLD.topology_id, OLD.schema_name, OLD.table_name, OLD.feature_column;
RETURN NULL;
END LOOP;
END LOOP;
-- Get topology name
SELECT name FROM topology.topology INTO toponame
WHERE id = OLD.topology_id;
IF toponame IS NULL THEN
RAISE NOTICE 'Could not find name of topology with id %',
OLD.layer_id;
END IF;
-- Check if any record in the relation table references this layer
FOR rec IN SELECT * FROM pg_namespace
WHERE text(nspname) = toponame
LOOP
query = 'SELECT * '
|| ' FROM ' || quote_ident(toponame)
|| '.relation '
|| ' WHERE layer_id = '|| OLD.layer_id
|| ' LIMIT 1';
--RAISE NOTICE '%', query;
FOR rec IN EXECUTE query
LOOP
RAISE NOTICE 'A record in %.relation still references layer %', toponame, OLD.layer_id;
RETURN NULL;
END LOOP;
END LOOP;
RETURN OLD;
END;
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
--} LayerTrigger()
--{
-- Layer table.
-- Stores topology layer informations
--
--} Layer table.
--
-- Type returned by ValidateTopology
--
--
-- TopoGeometry type
--
--
-- TopoElement domain
--
-- This is an array of two elements: element_id and element_type.
--
-- When used to define _simple_ TopoGeometries,
-- element_type can be:
-- 0: a node
-- 1: an edge
-- 2: a face
-- and element_id will be the node, edge or face identifier
--
-- When used to define _hierarchical_ TopoGeometries,
-- element_type will be the child layer identifier and
-- element_id will be composing TopoGoemetry identifier
--
--
-- TopoElementArray domain
--
--{ RelationTrigger()
--
-- Relation integrity trigger
--
CREATE OR REPLACE FUNCTION topology.RelationTrigger()
RETURNS trigger
AS
$$
DECLARE
toponame varchar;
topoid integer;
plyr RECORD; -- parent layer
rec RECORD;
ok BOOL;
BEGIN
IF TG_NARGS != 2 THEN
RAISE EXCEPTION 'RelationTrigger called with wrong number of arguments';
END IF;
topoid = TG_ARGV[0];
toponame = TG_ARGV[1];
--RAISE NOTICE 'RelationTrigger called % % on %.relation for a %', TG_WHEN, TG_OP, toponame, TG_LEVEL;
IF TG_OP = 'DELETE' THEN
RAISE EXCEPTION 'RelationTrigger not meant to be called on DELETE';
END IF;
-- Get layer info (and verify it exists)
ok = false;
FOR plyr IN EXECUTE 'SELECT * FROM topology.layer '
|| 'WHERE '
|| ' topology_id = ' || topoid
|| ' AND'
|| ' layer_id = ' || NEW.layer_id
LOOP
ok = true;
EXIT;
END LOOP;
IF NOT ok THEN
RAISE EXCEPTION 'Layer % does not exist in topology %',
NEW.layer_id, topoid;
RETURN NULL;
END IF;
IF plyr.level > 0 THEN -- this is hierarchical layer
-- ElementType must be the layer child id
IF NEW.element_type != plyr.child_id THEN
RAISE EXCEPTION 'Type of elements in layer % must be set to its child layer id %', plyr.layer_id, plyr.child_id;
RETURN NULL;
END IF;
-- ElementId must be an existent TopoGeometry in child layer
ok = false;
FOR rec IN EXECUTE 'SELECT topogeo_id FROM '
|| quote_ident(toponame) || '.relation '
|| ' WHERE layer_id = ' || plyr.child_id
|| ' AND topogeo_id = ' || NEW.element_id
LOOP
ok = true;
EXIT;
END LOOP;
IF NOT ok THEN
RAISE EXCEPTION 'TopoGeometry % does not exist in the child layer %', NEW.element_id, plyr.child_id;
RETURN NULL;
END IF;
ELSE -- this is a basic layer
-- ElementType must be compatible with layer type
IF plyr.feature_type != 4
AND plyr.feature_type != NEW.element_type
THEN
RAISE EXCEPTION 'Element of type % is not compatible with layer of type %', NEW.element_type, plyr.feature_type;
RETURN NULL;
END IF;
--
-- Now lets see if the element is consistent, which
-- is it exists in the topology tables.
--
--
-- Element is a Node
--
IF NEW.element_type = 1
THEN
ok = false;
FOR rec IN EXECUTE 'SELECT node_id FROM '
|| quote_ident(toponame) || '.node '
|| ' WHERE node_id = ' || NEW.element_id
LOOP
ok = true;
EXIT;
END LOOP;
IF NOT ok THEN
RAISE EXCEPTION 'Node % does not exist in topology %', NEW.element_id, toponame;
RETURN NULL;
END IF;
--
-- Element is an Edge
--
ELSIF NEW.element_type = 2
THEN
ok = false;
FOR rec IN EXECUTE 'SELECT edge_id FROM '
|| quote_ident(toponame) || '.edge_data '
|| ' WHERE edge_id = ' || abs(NEW.element_id)
LOOP
ok = true;
EXIT;
END LOOP;
IF NOT ok THEN
RAISE EXCEPTION 'Edge % does not exist in topology %', NEW.element_id, toponame;
RETURN NULL;
END IF;
--
-- Element is a Face
--
ELSIF NEW.element_type = 3
THEN
IF NEW.element_id = 0 THEN
RAISE EXCEPTION 'Face % cannot be associated with any feature', NEW.element_id;
RETURN NULL;
END IF;
ok = false;
FOR rec IN EXECUTE 'SELECT face_id FROM '
|| quote_ident(toponame) || '.face '
|| ' WHERE face_id = ' || NEW.element_id
LOOP
ok = true;
EXIT;
END LOOP;
IF NOT ok THEN
RAISE EXCEPTION 'Face % does not exist in topology %', NEW.element_id, toponame;
RETURN NULL;
END IF;
END IF;
END IF;
RETURN NEW;
END;
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
--} RelationTrigger()
--{
-- AddTopoGeometryColumn(toponame, schema, table, colum, type, [child])
--
-- Add a TopoGeometry column to a table, making it a topology layer.
-- Returns created layer id.
--
--
CREATE OR REPLACE FUNCTION topology.AddTopoGeometryColumn(toponame varchar, schema varchar, tbl varchar, col varchar, ltype varchar, child integer)
RETURNS integer
AS
$$
DECLARE
intltype integer;
newlevel integer;
topoid integer;
rec RECORD;
newlayer_id integer;
query text;
BEGIN
-- Get topology id
SELECT id FROM topology.topology into topoid
WHERE name = toponame;
IF topoid IS NULL THEN
RAISE EXCEPTION 'Topology % does not exist', toponame;
END IF;
IF ltype ILIKE '%POINT%' OR ltype ILIKE 'PUNTAL' THEN
intltype = 1;
ELSIF ltype ILIKE '%LINE%' OR ltype ILIKE 'LINEAL' THEN
intltype = 2;
ELSIF ltype ILIKE '%POLYGON%' OR ltype ILIKE 'AREAL' THEN
intltype = 3;
ELSIF ltype ILIKE '%COLLECTION%' OR ltype ILIKE 'GEOMETRY' THEN
intltype = 4;
ELSE
RAISE EXCEPTION 'Layer type must be one of POINT,LINE,POLYGON,COLLECTION';
END IF;
--
-- Add new TopoGeometry column in schema.table
--
EXECUTE 'ALTER TABLE ' || quote_ident(schema)
|| '.' || quote_ident(tbl)
|| ' ADD COLUMN ' || quote_ident(col)
|| ' topology.TopoGeometry;';
--
-- See if child id exists and extract its level
--
IF child IS NOT NULL THEN
SELECT level + 1 FROM topology.layer
WHERE layer_id = child
INTO newlevel;
IF newlevel IS NULL THEN
RAISE EXCEPTION 'Child layer % does not exist in topology "%"', child, toponame;
END IF;
END IF;
--
-- Get new layer id from sequence
--
EXECUTE 'SELECT nextval(' ||
quote_literal(
quote_ident(toponame) || '.layer_id_seq'
) || ')' INTO STRICT newlayer_id;
EXECUTE 'INSERT INTO '
|| 'topology.layer(topology_id, '
|| 'layer_id, level, child_id, schema_name, '
|| 'table_name, feature_column, feature_type) '
|| 'VALUES ('
|| topoid || ','
|| newlayer_id || ',' || COALESCE(newlevel, 0) || ','
|| COALESCE(child::text, 'NULL') || ','
|| quote_literal(schema) || ','
|| quote_literal(tbl) || ','
|| quote_literal(col) || ','
|| intltype || ');';
--
-- Create a sequence for TopoGeometries in this new layer
--
EXECUTE 'CREATE SEQUENCE ' || quote_ident(toponame)
|| '.topogeo_s_' || newlayer_id;
--
-- Add constraints on TopoGeom column
--
EXECUTE 'ALTER TABLE ' || quote_ident(schema)
|| '.' || quote_ident(tbl)
|| ' ADD CONSTRAINT "check_topogeom_' || col || '" CHECK ('
|| 'topology_id(' || quote_ident(col) || ') = ' || topoid
|| ' AND '
|| 'layer_id(' || quote_ident(col) || ') = ' || newlayer_id
|| ' AND '
|| 'type(' || quote_ident(col) || ') = ' || intltype
|| ');';
--
-- Add dependency of the feature column on the topology schema
--
query = 'INSERT INTO pg_catalog.pg_depend SELECT '
|| 'fcat.oid, fobj.oid, fsub.attnum, tcat.oid, '
|| 'tobj.oid, 0, ''n'' '
|| 'FROM pg_class fcat, pg_namespace fnsp, '
|| ' pg_class fobj, pg_attribute fsub, '
|| ' pg_class tcat, pg_namespace tobj '
|| ' WHERE fcat.relname = ''pg_class'' '
|| ' AND fnsp.nspname = ' || quote_literal(schema)
|| ' AND fobj.relnamespace = fnsp.oid '
|| ' AND fobj.relname = ' || quote_literal(tbl)
|| ' AND fsub.attrelid = fobj.oid '
|| ' AND fsub.attname = ' || quote_literal(col)
|| ' AND tcat.relname = ''pg_namespace'' '
|| ' AND tobj.nspname = ' || quote_literal(toponame);
--
-- The only reason to add this dependency is to avoid
-- simple drop of a feature column. Still, drop cascade
-- will remove both the feature column and the sequence
-- corrupting the topology anyway ...
--
RETURN newlayer_id;
END;
$$
LANGUAGE 'plpgsql' VOLATILE;
--}{ AddTopoGeometryColumn
CREATE OR REPLACE FUNCTION topology.AddTopoGeometryColumn(varchar, varchar, varchar, varchar, varchar)
RETURNS integer
AS
$$
SELECT topology.AddTopoGeometryColumn($1, $2, $3, $4, $5, NULL);
$$
LANGUAGE 'sql' VOLATILE;
--
--} AddTopoGeometryColumn
--{
-- DropTopoGeometryColumn(schema, table, colum)
--
-- Drop a TopoGeometry column, unregister the associated layer,
-- cleanup the relation table.
--
--
CREATE OR REPLACE FUNCTION topology.DropTopoGeometryColumn(schema varchar, tbl varchar, col varchar)
RETURNS text
AS
$$
DECLARE
rec RECORD;
lyrinfo RECORD;
ok BOOL;
result text;
BEGIN
-- Get layer and topology info
ok = false;
FOR rec IN EXECUTE 'SELECT t.name as toponame, l.* FROM '
|| 'topology.topology t, topology.layer l '
|| ' WHERE l.topology_id = t.id'
|| ' AND l.schema_name = ' || quote_literal(schema)
|| ' AND l.table_name = ' || quote_literal(tbl)
|| ' AND l.feature_column = ' || quote_literal(col)
LOOP
ok = true;
lyrinfo = rec;
END LOOP;
-- Layer not found
IF NOT ok THEN
RAISE EXCEPTION 'No layer registered on %.%.%',
schema,tbl,col;
END IF;
-- Clean up the topology schema
FOR rec IN SELECT * FROM pg_namespace
WHERE text(nspname) = lyrinfo.toponame
LOOP
-- Cleanup the relation table
EXECUTE 'DELETE FROM ' || quote_ident(lyrinfo.toponame)
|| '.relation '
|| ' WHERE '
|| 'layer_id = ' || lyrinfo.layer_id;
-- Drop the sequence for topogeoms in this layer
EXECUTE 'DROP SEQUENCE ' || quote_ident(lyrinfo.toponame)
|| '.topogeo_s_' || lyrinfo.layer_id;
END LOOP;
ok = false;
FOR rec IN SELECT * FROM pg_namespace n, pg_class c, pg_attribute a
WHERE text(n.nspname) = schema
AND c.relnamespace = n.oid
AND text(c.relname) = tbl
AND a.attrelid = c.oid
AND text(a.attname) = col
LOOP
ok = true;
EXIT;
END LOOP;
IF ok THEN
-- Set feature column to NULL to bypass referential integrity
-- checks
EXECUTE 'UPDATE ' || quote_ident(schema) || '.'
|| quote_ident(tbl)
|| ' SET ' || quote_ident(col)
|| ' = NULL';
END IF;
-- Delete the layer record
EXECUTE 'DELETE FROM topology.layer '
|| ' WHERE topology_id = ' || lyrinfo.topology_id
|| ' AND layer_id = ' || lyrinfo.layer_id;
IF ok THEN
-- Drop the layer column
EXECUTE 'ALTER TABLE ' || quote_ident(schema) || '.'
|| quote_ident(tbl)
|| ' DROP ' || quote_ident(col)
|| ' cascade';
END IF;
result = 'Layer ' || lyrinfo.layer_id || ' ('
|| schema || '.' || tbl || '.' || col
|| ') dropped';
RETURN result;
END;
$$
LANGUAGE 'plpgsql' VOLATILE;
--
--} DropTopoGeometryColumn
--{
-- CreateTopoGeom(topology_name, topogeom_type, layer_id, elements)
--
-- Create a TopoGeometry object from Topology elements.
-- The elements parameter is a two-dimensional array.
-- Every element of the array is either a Topology element represented by
-- (id, type) or a TopoGeometry element represented by (id, layer).
-- The actual semantic depends on the TopoGeometry layer, either at
-- level 0 (elements are topological primitives) or higer (elements
-- are TopoGeoms from child layer).
--
-- @param toponame Topology name
--
-- @param tg_type Spatial type of geometry
-- 1:[multi]point (puntal)
-- 2:[multi]line (lineal)
-- 3:[multi]poly (areal)
-- 4:collection (mixed)
--
-- @param layer_id Layer identifier
--
-- @param tg_objs Array of components
--
-- Return a topology.TopoGeometry object.
--
CREATE OR REPLACE FUNCTION topology.CreateTopoGeom(toponame varchar, tg_type integer, layer_id integer, tg_objs topology.TopoElementArray)
RETURNS topology.TopoGeometry
AS
$$
DECLARE
i integer;
dims varchar;
outerdims varchar;
innerdims varchar;
obj_type integer;
obj_id integer;
ret topology.TopoGeometry;
rec RECORD;
layertype integer;
layerlevel integer;
layerchild integer;
BEGIN
IF tg_type < 1 OR tg_type > 4 THEN
RAISE EXCEPTION 'Invalid TopoGeometry type % (must be in the range 1..4)', tg_type;
END IF;
-- Get topology id into return TopoGeometry
SELECT id FROM topology.topology into ret.topology_id
WHERE name = toponame;
--
-- Get layer info
--
layertype := NULL;
FOR rec IN EXECUTE 'SELECT * FROM topology.layer'
|| ' WHERE topology_id = ' || ret.topology_id
|| ' AND layer_id = ' || layer_id
LOOP
layertype = rec.feature_type;
layerlevel = rec.level;
layerchild = rec.child_id;
END LOOP;
-- Check for existence of given layer id
IF layertype IS NULL THEN
RAISE EXCEPTION 'No layer with id % is registered with topology %', layer_id, toponame;
END IF;
-- Verify compatibility between layer geometry type and
-- TopoGeom requested geometry type
IF layertype != 4 and layertype != tg_type THEN
RAISE EXCEPTION 'A Layer of type % cannot contain a TopoGeometry of type %', layertype, tg_type;
END IF;
-- Set layer id and type in return object
ret.layer_id = layer_id;
ret.type = tg_type;
--
-- Get new TopoGeo id from sequence
--
FOR rec IN EXECUTE 'SELECT nextval(' ||
quote_literal(
quote_ident(toponame) || '.topogeo_s_' || layer_id
) || ')'
LOOP
ret.id = rec.nextval;
END LOOP;
-- Loop over outer dimension
i = array_lower(tg_objs, 1);
LOOP
obj_id = tg_objs[i][1];
obj_type = tg_objs[i][2];
-- Elements of type 0 represent emptiness, just skip them
IF obj_type = 0 THEN
IF obj_id != 0 THEN
RAISE EXCEPTION 'Malformed empty topo element {0,%} -- id must be 0 as well', obj_id;
END IF;
ELSE
IF layerlevel = 0 THEN -- array specifies lower-level objects
IF tg_type != 4 and tg_type != obj_type THEN
RAISE EXCEPTION 'A TopoGeometry of type % cannot contain topology elements of type %', tg_type, obj_type;
END IF;
ELSE -- array specifies lower-level topogeometries
IF obj_type != layerchild THEN
RAISE EXCEPTION 'TopoGeom element layer do not match TopoGeom child layer';
END IF;
-- TODO: verify that the referred TopoGeometry really
-- exists in the relation table ?
END IF;
--RAISE NOTICE 'obj:% type:% id:%', i, obj_type, obj_id;
--
-- Insert record into the Relation table
--
EXECUTE 'INSERT INTO '||quote_ident(toponame)
|| '.relation(topogeo_id, layer_id, '
|| 'element_id,element_type) '
|| ' VALUES ('||ret.id
||','||ret.layer_id
|| ',' || obj_id || ',' || obj_type || ');';
END IF;
i = i+1;
IF i > array_upper(tg_objs, 1) THEN
EXIT;
END IF;
END LOOP;
RETURN ret;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
--} CreateTopoGeom(toponame,topogeom_type, layer_id, TopoElementArray)
--{
-- CreateTopoGeom(topology_name, topogeom_type, layer_id) - creates the empty topogeom
CREATE OR REPLACE FUNCTION topology.CreateTopoGeom(toponame varchar, tg_type integer, layer_id integer)
RETURNS topology.TopoGeometry
AS
$$
SELECT topology.CreateTopoGeom($1,$2,$3,'{{0,0}}');
$$ LANGUAGE 'sql' VOLATILE STRICT;
--} CreateTopoGeom(toponame, topogeom_type, layer_id)
--{
-- GetTopologyName(topology_id)
--
-- TODO: rewrite in SQL ?
--
CREATE OR REPLACE FUNCTION topology.GetTopologyName(topoid integer)
RETURNS varchar
AS
$$
DECLARE
ret varchar;
BEGIN
SELECT name FROM topology.topology into ret
WHERE id = topoid;
RETURN ret;
END
$$
LANGUAGE 'plpgsql' STABLE STRICT;
--} GetTopologyName(topoid)
--{
-- GetTopologyId(toponame)
--
-- TODO: rewrite in SQL ?
--
CREATE OR REPLACE FUNCTION topology.GetTopologyId(toponame varchar)
RETURNS integer
AS
$$
DECLARE
ret integer;
BEGIN
SELECT id FROM topology.topology into ret
WHERE name = toponame;
RETURN ret;
END
$$
LANGUAGE 'plpgsql' STABLE STRICT;
--} GetTopologyId(toponame)
--{
-- GetTopologySRID(toponame)
--
CREATE OR REPLACE FUNCTION topology.GetTopologySRID(toponame varchar)
RETURNS integer
AS $$
SELECT SRID FROM topology.topology WHERE name = $1;
$$ LANGUAGE 'sql' STABLE STRICT;
--} GetTopologySRID(toponame)
--{
-- GetTopoGeomElementArray(toponame, layer_id, topogeom_id)
-- GetTopoGeomElementArray(TopoGeometry)
--
-- Returns a set of element_id,element_type
--
CREATE OR REPLACE FUNCTION topology.GetTopoGeomElementArray(toponame varchar, layer_id integer, tgid integer)
RETURNS topology.TopoElementArray
AS
$$
DECLARE
rec RECORD;
tg_objs varchar := '{';
i integer;
query text;
BEGIN
query = 'SELECT * FROM topology.GetTopoGeomElements('
|| quote_literal(toponame) || ','
|| quote_literal(layer_id) || ','
|| quote_literal(tgid)
|| ') as obj ORDER BY obj';
-- TODO: why not using array_agg here ?
i = 1;
FOR rec IN EXECUTE query
LOOP
IF i > 1 THEN
tg_objs = tg_objs || ',';
END IF;
tg_objs = tg_objs || '{'
|| rec.obj[1] || ',' || rec.obj[2]
|| '}';
i = i+1;
END LOOP;
tg_objs = tg_objs || '}';
RETURN tg_objs;
END;
$$
LANGUAGE 'plpgsql' STABLE STRICT;
CREATE OR REPLACE FUNCTION topology.GetTopoGeomElementArray(tg topology.TopoGeometry)
RETURNS topology.TopoElementArray
AS
$$
DECLARE
toponame varchar;
BEGIN
toponame = topology.GetTopologyName(tg.topology_id);
RETURN topology.GetTopoGeomElementArray(toponame, tg.layer_id, tg.id);
END;
$$
LANGUAGE 'plpgsql' STABLE STRICT;
--} GetTopoGeomElementArray()
--{
-- GetTopoGeomElements(toponame, layer_id, topogeom_id)
-- GetTopoGeomElements(TopoGeometry)
--
-- Returns a set of element_id,element_type
--
CREATE OR REPLACE FUNCTION topology.GetTopoGeomElements(toponame varchar, layerid integer, tgid integer)
RETURNS SETOF topology.TopoElement
AS
$$
DECLARE
ret topology.TopoElement;
rec RECORD;
rec2 RECORD;
query text;
query2 text;
lyr RECORD;
ok bool;
BEGIN
-- Get layer info
ok = false;
FOR rec IN EXECUTE 'SELECT * FROM '
|| ' topology.layer '
|| ' WHERE layer_id = ' || layerid
LOOP
lyr = rec;
ok = true;
END LOOP;
IF NOT ok THEN
RAISE EXCEPTION 'Layer % does not exist', layerid;
END IF;
query = 'SELECT abs(element_id) as element_id, element_type FROM '
|| quote_ident(toponame) || '.relation WHERE '
|| ' layer_id = ' || layerid
|| ' AND topogeo_id = ' || quote_literal(tgid)
|| ' ORDER BY element_type, element_id';
--RAISE NOTICE 'Query: %', query;
FOR rec IN EXECUTE query
LOOP
IF lyr.level > 0 THEN
query2 = 'SELECT * from topology.GetTopoGeomElements('
|| quote_literal(toponame) || ','
|| rec.element_type
|| ','
|| rec.element_id
|| ') as ret;';
--RAISE NOTICE 'Query2: %', query2;
FOR rec2 IN EXECUTE query2
LOOP
RETURN NEXT rec2.ret;
END LOOP;
ELSE
ret = '{' || rec.element_id || ',' || rec.element_type || '}';
RETURN NEXT ret;
END IF;
END LOOP;
RETURN;
END;
$$
LANGUAGE 'plpgsql' STABLE STRICT;
CREATE OR REPLACE FUNCTION topology.GetTopoGeomElements(tg topology.TopoGeometry)
RETURNS SETOF topology.TopoElement
AS
$$
DECLARE
toponame varchar;
rec RECORD;
BEGIN
toponame = topology.GetTopologyName(tg.topology_id);
FOR rec IN SELECT * FROM topology.GetTopoGeomElements(toponame,
tg.layer_id,tg.id) as ret
LOOP
RETURN NEXT rec.ret;
END LOOP;
RETURN;
END;
$$
LANGUAGE 'plpgsql' STABLE STRICT;
--} GetTopoGeomElements()
--{
-- Geometry(TopoGeometry)
--
-- Construct a Geometry from a TopoGeometry.
--
-- }{
CREATE OR REPLACE FUNCTION topology.Geometry(topogeom topology.TopoGeometry)
RETURNS Geometry
AS $$
DECLARE
toponame varchar;
geom geometry;
rec RECORD;
plyr RECORD;
clyr RECORD;
sql TEXT;
BEGIN
-- Get topology name
SELECT name FROM topology.topology
WHERE id = topogeom.topology_id
INTO toponame;
IF toponame IS NULL THEN
RAISE EXCEPTION 'Invalid TopoGeometry (unexistent topology id %)', topogeom.topology_id;
END IF;
-- Get layer info
SELECT * FROM topology.layer
WHERE topology_id = topogeom.topology_id
AND layer_id = topogeom.layer_id
INTO plyr;
IF plyr IS NULL THEN
RAISE EXCEPTION 'Could not find TopoGeometry layer % in topology %', topogeom.layer_id, topogeom.topology_id;
END IF;
--
-- If this feature layer is on any level > 0 we will
-- compute the topological union of all child features
-- in fact recursing.
--
IF plyr.level > 0 THEN -- {
-- Get child layer info
SELECT * FROM topology.layer WHERE layer_id = plyr.child_id
AND topology_id = topogeom.topology_id
INTO clyr;
IF clyr IS NULL THEN
RAISE EXCEPTION 'Invalid layer % in topology % (unexistent child layer %)', topogeom.layer_id, topogeom.topology_id, plyr.child_id;
END IF;
sql := 'SELECT st_multi(st_union(topology.Geometry('
|| quote_ident(clyr.feature_column)
|| '))) as geom FROM '
|| quote_ident(clyr.schema_name) || '.'
|| quote_ident(clyr.table_name)
|| ', ' || quote_ident(toponame) || '.relation pr'
|| ' WHERE '
|| ' pr.topogeo_id = ' || topogeom.id
|| ' AND '
|| ' pr.layer_id = ' || topogeom.layer_id
|| ' AND '
|| ' id('||quote_ident(clyr.feature_column)
|| ') = pr.element_id '
|| ' AND '
|| 'layer_id('||quote_ident(clyr.feature_column)
|| ') = pr.element_type ';
--RAISE DEBUG '%', query;
EXECUTE sql INTO geom;
ELSIF topogeom.type = 3 THEN -- [multi]polygon -- }{
sql := 'SELECT st_multi(st_union('
|| 'topology.ST_GetFaceGeometry('
|| quote_literal(toponame) || ','
|| 'element_id))) as g FROM '
|| quote_ident(toponame)
|| '.relation WHERE topogeo_id = '
|| topogeom.id || ' AND layer_id = '
|| topogeom.layer_id || ' AND element_type = 3 ';
EXECUTE sql INTO geom;
ELSIF topogeom.type = 2 THEN -- [multi]line -- }{
sql :=
'SELECT st_multi(ST_LineMerge(ST_Collect(e.geom))) as g FROM '
|| quote_ident(toponame) || '.edge e, '
|| quote_ident(toponame) || '.relation r '
|| ' WHERE r.topogeo_id = ' || topogeom.id
|| ' AND r.layer_id = ' || topogeom.layer_id
|| ' AND r.element_type = 2 '
|| ' AND abs(r.element_id) = e.edge_id';
EXECUTE sql INTO geom;
ELSIF topogeom.type = 1 THEN -- [multi]point -- }{
sql :=
'SELECT st_multi(st_union(n.geom)) as g FROM '
|| quote_ident(toponame) || '.node n, '
|| quote_ident(toponame) || '.relation r '
|| ' WHERE r.topogeo_id = ' || topogeom.id
|| ' AND r.layer_id = ' || topogeom.layer_id
|| ' AND r.element_type = 1 '
|| ' AND r.element_id = n.node_id';
EXECUTE sql INTO geom;
ELSIF topogeom.type = 4 THEN -- mixed collection -- }{
sql := 'WITH areas AS ( SELECT ST_Union('
|| 'topology.ST_GetFaceGeometry('
|| quote_literal(toponame) || ','
|| 'element_id)) as g FROM '
|| quote_ident(toponame)
|| '.relation WHERE topogeo_id = '
|| topogeom.id || ' AND layer_id = '
|| topogeom.layer_id || ' AND element_type = 3), '
|| 'lines AS ( SELECT ST_LineMerge(ST_Collect(e.geom)) as g FROM '
|| quote_ident(toponame) || '.edge e, '
|| quote_ident(toponame) || '.relation r '
|| ' WHERE r.topogeo_id = ' || topogeom.id
|| ' AND r.layer_id = ' || topogeom.layer_id
|| ' AND r.element_type = 2 '
|| ' AND abs(r.element_id) = e.edge_id ), '
|| ' points as ( SELECT st_union(n.geom) as g FROM '
|| quote_ident(toponame) || '.node n, '
|| quote_ident(toponame) || '.relation r '
|| ' WHERE r.topogeo_id = ' || topogeom.id
|| ' AND r.layer_id = ' || topogeom.layer_id
|| ' AND r.element_type = 1 '
|| ' AND r.element_id = n.node_id ), '
|| ' un as ( SELECT g FROM areas UNION ALL SELECT g FROM lines '
|| ' UNION ALL SELECT g FROM points ) '
|| 'SELECT ST_Multi(ST_Collect(g)) FROM un';
EXECUTE sql INTO geom;
ELSE -- }{
RAISE EXCEPTION 'Invalid TopoGeometries (unknown type %)', topogeom.type;
END IF; -- }
IF geom IS NULL THEN
IF topogeom.type = 3 THEN -- [multi]polygon
geom := 'MULTIPOLYGON EMPTY';
ELSIF topogeom.type = 2 THEN -- [multi]line
geom := 'MULTILINESTRING EMPTY';
ELSIF topogeom.type = 1 THEN -- [multi]point
geom := 'MULTIPOINT EMPTY';
ELSE
geom := 'GEOMETRYCOLLECTION EMPTY';
END IF;
END IF;
RETURN geom;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
--} Geometry(TopoGeometry)
-- 7.3+ explicit cast
--{
-- ValidateTopology(toponame)
--
-- Return a Set of ValidateTopology_ReturnType containing
-- informations on all topology inconsistencies
--
CREATE OR REPLACE FUNCTION topology.ValidateTopology(toponame varchar)
RETURNS setof topology.ValidateTopology_ReturnType
AS
$$
DECLARE
retrec topology.ValidateTopology_ReturnType;
rec RECORD;
rec2 RECORD;
i integer;
invalid_edges integer[];
invalid_faces integer[];
sql text;
BEGIN
-- Check for coincident nodes
FOR rec IN EXECUTE 'SELECT a.node_id as id1, b.node_id as id2 FROM '
|| quote_ident(toponame) || '.node a, '
|| quote_ident(toponame) || '.node b '
|| 'WHERE a.node_id < b.node_id '
|| ' AND ST_DWithin(a.geom, b.geom, 0)' -- NOTE: see #1625 and #1789
LOOP
retrec.error = 'coincident nodes';
retrec.id1 = rec.id1;
retrec.id2 = rec.id2;
RETURN NEXT retrec;
END LOOP;
-- Check for edge crossed nodes
-- TODO: do this in the single edge loop
FOR rec IN EXECUTE 'SELECT n.node_id as id1, e.edge_id as id2 FROM '
|| quote_ident(toponame) || '.node n, '
|| quote_ident(toponame) || '.edge e '
|| 'WHERE e.start_node != n.node_id '
|| 'AND e.end_node != n.node_id '
|| 'AND ST_Within(n.geom, e.geom)'
LOOP
retrec.error = 'edge crosses node';
retrec.id1 = rec.id1;
retrec.id2 = rec.id2;
RETURN NEXT retrec;
END LOOP;
-- Scan all edges
FOR rec IN EXECUTE 'SELECT e.geom, e.edge_id as id1, e.left_face, e.right_face FROM '
|| quote_ident(toponame) || '.edge e ORDER BY edge_id'
LOOP
-- Any invalid edge becomes a cancer for higher level complexes
IF NOT ST_IsValid(rec.geom) THEN
retrec.error = 'invalid edge';
retrec.id1 = rec.id1;
retrec.id2 = NULL;
RETURN NEXT retrec;
invalid_edges := array_append(invalid_edges, rec.id1);
IF invalid_faces IS NULL OR NOT rec.left_face = ANY ( invalid_faces )
THEN
invalid_faces := array_append(invalid_faces, rec.left_face);
END IF;
IF rec.right_face != rec.left_face AND ( invalid_faces IS NULL OR
NOT rec.right_face = ANY ( invalid_faces ) )
THEN
invalid_faces := array_append(invalid_faces, rec.right_face);
END IF;
CONTINUE;
END IF;
IF NOT ST_IsSimple(rec.geom) THEN
retrec.error = 'edge not simple';
retrec.id1 = rec.id1;
retrec.id2 = NULL;
RETURN NEXT retrec;
END IF;
END LOOP;
-- Check for edge crossing
sql := 'SELECT e1.edge_id as id1, e2.edge_id as id2, '
|| ' e1.geom as g1, e2.geom as g2, '
|| 'ST_Relate(e1.geom, e2.geom) as im FROM '
|| quote_ident(toponame) || '.edge e1, '
|| quote_ident(toponame) || '.edge e2 '
|| 'WHERE e1.edge_id < e2.edge_id '
|| ' AND e1.geom && e2.geom ';
IF invalid_edges IS NOT NULL THEN
sql := sql || ' AND NOT e1.edge_id = ANY ('
|| quote_literal(invalid_edges) || ')'
|| ' AND NOT e2.edge_id = ANY ('
|| quote_literal(invalid_edges) || ')';
END IF;
FOR rec IN EXECUTE sql
LOOP
IF ST_RelateMatch(rec.im, 'FF1F**1*2') THEN
CONTINUE; -- no interior intersection
END IF;
--
-- Closed lines have no boundary, so endpoint
-- intersection would be considered interior
-- See http://trac.osgeo.org/postgis/ticket/770
-- See also full explanation in topology.AddEdge
--
IF ST_RelateMatch(rec.im, 'FF10F01F2') THEN
-- first line (g1) is open, second (g2) is closed
-- first boundary has puntual intersection with second interior
--
-- compute intersection, check it equals second endpoint
IF ST_Equals(ST_Intersection(rec.g2, rec.g1),
ST_StartPoint(rec.g2))
THEN
CONTINUE;
END IF;
END IF;
IF ST_RelateMatch(rec.im, 'F01FFF102') THEN
-- second line (g2) is open, first (g1) is closed
-- second boundary has puntual intersection with first interior
--
-- compute intersection, check it equals first endpoint
IF ST_Equals(ST_Intersection(rec.g2, rec.g1),
ST_StartPoint(rec.g1))
THEN
CONTINUE;
END IF;
END IF;
IF ST_RelateMatch(rec.im, '0F1FFF1F2') THEN
-- both lines are closed (boundary intersects nothing)
-- they have puntual intersection between interiors
--
-- compute intersection, check it's a single point
-- and equals first StartPoint _and_ second StartPoint
IF ST_Equals(ST_Intersection(rec.g1, rec.g2),
ST_StartPoint(rec.g1)) AND
ST_Equals(ST_StartPoint(rec.g1), ST_StartPoint(rec.g2))
THEN
CONTINUE;
END IF;
END IF;
retrec.error = 'edge crosses edge';
retrec.id1 = rec.id1;
retrec.id2 = rec.id2;
RETURN NEXT retrec;
END LOOP;
-- Check for edge start_node geometry mis-match
-- TODO: move this in the first edge table scan
FOR rec IN EXECUTE 'SELECT e.edge_id as id1, n.node_id as id2 FROM '
|| quote_ident(toponame) || '.edge e, '
|| quote_ident(toponame) || '.node n '
|| 'WHERE e.start_node = n.node_id '
|| 'AND NOT ST_Equals(ST_StartPoint(e.geom), n.geom)'
LOOP
retrec.error = 'edge start node geometry mis-match';
retrec.id1 = rec.id1;
retrec.id2 = rec.id2;
RETURN NEXT retrec;
END LOOP;
-- Check for edge end_node geometry mis-match
-- TODO: move this in the first edge table scan
FOR rec IN EXECUTE 'SELECT e.edge_id as id1, n.node_id as id2 FROM '
|| quote_ident(toponame) || '.edge e, '
|| quote_ident(toponame) || '.node n '
|| 'WHERE e.end_node = n.node_id '
|| 'AND NOT ST_Equals(ST_EndPoint(e.geom), n.geom)'
LOOP
retrec.error = 'edge end node geometry mis-match';
retrec.id1 = rec.id1;
retrec.id2 = rec.id2;
RETURN NEXT retrec;
END LOOP;
-- Check for faces w/out edges
FOR rec IN EXECUTE 'SELECT face_id as id1 FROM '
|| quote_ident(toponame) || '.face '
|| 'WHERE face_id > 0 EXCEPT ( SELECT left_face FROM '
|| quote_ident(toponame) || '.edge '
|| ' UNION SELECT right_face FROM '
|| quote_ident(toponame) || '.edge '
|| ')'
LOOP
retrec.error = 'face without edges';
retrec.id1 = rec.id1;
retrec.id2 = NULL;
RETURN NEXT retrec;
END LOOP;
-- Now create a temporary table to construct all face geometries
-- for checking their consistency
sql := 'CREATE TEMP TABLE face_check ON COMMIT DROP AS '
|| 'SELECT face_id, topology.ST_GetFaceGeometry('
|| quote_literal(toponame) || ', face_id) as geom, mbr FROM '
|| quote_ident(toponame) || '.face WHERE face_id > 0';
IF invalid_faces IS NOT NULL THEN
sql := sql || ' AND NOT face_id = ANY ('
|| quote_literal(invalid_faces) || ')';
END IF;
EXECUTE sql;
-- Build a gist index on geom
EXECUTE 'CREATE INDEX "face_check_gist" ON '
|| 'face_check USING gist (geom);';
-- Build a btree index on id
EXECUTE 'CREATE INDEX "face_check_bt" ON '
|| 'face_check (face_id);';
-- Scan the table looking for NULL geometries
FOR rec IN EXECUTE
'SELECT f1.face_id FROM '
|| 'face_check f1 WHERE f1.geom IS NULL'
LOOP
-- Face missing !
retrec.error := 'face has no rings';
retrec.id1 := rec.face_id;
retrec.id2 := NULL;
RETURN NEXT retrec;
END LOOP;
-- Scan the table looking for overlap or containment
-- TODO: also check for MBR consistency
FOR rec IN EXECUTE
'SELECT f1.geom, f1.face_id as id1, f2.face_id as id2, '
|| ' ST_Relate(f1.geom, f2.geom) as im'
|| ' FROM '
|| 'face_check f1, '
|| 'face_check f2 '
|| 'WHERE f1.face_id < f2.face_id'
|| ' AND f1.geom && f2.geom'
LOOP
-- Face overlap
IF ST_RelateMatch(rec.im, 'T*T***T**') THEN
retrec.error = 'face overlaps face';
retrec.id1 = rec.id1;
retrec.id2 = rec.id2;
RETURN NEXT retrec;
END IF;
-- Face 1 is within face 2
IF ST_RelateMatch(rec.im, 'T*F**F***') THEN
retrec.error = 'face within face';
retrec.id1 = rec.id1;
retrec.id2 = rec.id2;
RETURN NEXT retrec;
END IF;
-- Face 1 contains face 2
IF ST_RelateMatch(rec.im, 'T*****FF*') THEN
retrec.error = 'face within face';
retrec.id1 = rec.id2;
retrec.id2 = rec.id1;
RETURN NEXT retrec;
END IF;
END LOOP;
DROP TABLE face_check;
RETURN;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
-- } ValidateTopology(toponame)
--{
-- CreateTopology(name, SRID, precision, hasZ)
--
-- Create a topology schema, add a topology info record
-- in the topology.topology relation, return it's numeric
-- id.
--
CREATE OR REPLACE FUNCTION topology.CreateTopology(atopology varchar, srid integer, prec float8, hasZ boolean)
RETURNS integer
AS
$$
DECLARE
rec RECORD;
topology_id integer;
ndims integer;
BEGIN
-- FOR rec IN SELECT * FROM pg_namespace WHERE text(nspname) = atopology
-- LOOP
-- RAISE EXCEPTION 'SQL/MM Spatial exception - schema already exists';
-- END LOOP;
ndims = 2;
IF hasZ THEN ndims = 3; END IF;
------ Fetch next id for the new topology
FOR rec IN SELECT nextval('topology.topology_id_seq')
LOOP
topology_id = rec.nextval;
END LOOP;
EXECUTE 'CREATE SCHEMA ' || quote_ident(atopology);
-------------{ face CREATION
EXECUTE
'CREATE TABLE ' || quote_ident(atopology) || '.face ('
|| 'face_id SERIAL,'
|| ' CONSTRAINT face_primary_key PRIMARY KEY(face_id)'
|| ');';
-- Add mbr column to the face table
EXECUTE
'SELECT AddGeometryColumn('||quote_literal(atopology)
||',''face'',''mbr'','||quote_literal(srid)
||',''POLYGON'',2)'; -- 2d only mbr is good enough
-------------} END OF face CREATION
--------------{ node CREATION
EXECUTE
'CREATE TABLE ' || quote_ident(atopology) || '.node ('
|| 'node_id SERIAL,'
--|| 'geom GEOMETRY,'
|| 'containing_face INTEGER,'
|| 'CONSTRAINT node_primary_key PRIMARY KEY(node_id),'
--|| 'CONSTRAINT node_geometry_type CHECK '
--|| '( GeometryType(geom) = ''POINT'' ),'
|| 'CONSTRAINT face_exists FOREIGN KEY(containing_face) '
|| 'REFERENCES ' || quote_ident(atopology) || '.face(face_id)'
|| ');';
-- Add geometry column to the node table
EXECUTE
'SELECT AddGeometryColumn('||quote_literal(atopology)
||',''node'',''geom'','||quote_literal(srid)
||',''POINT'',' || ndims || ')';
--------------} END OF node CREATION
--------------{ edge CREATION
-- edge_data table
EXECUTE
'CREATE TABLE ' || quote_ident(atopology) || '.edge_data ('
|| 'edge_id SERIAL NOT NULL PRIMARY KEY,'
|| 'start_node INTEGER NOT NULL,'
|| 'end_node INTEGER NOT NULL,'
|| 'next_left_edge INTEGER NOT NULL,'
|| 'abs_next_left_edge INTEGER NOT NULL,'
|| 'next_right_edge INTEGER NOT NULL,'
|| 'abs_next_right_edge INTEGER NOT NULL,'
|| 'left_face INTEGER NOT NULL,'
|| 'right_face INTEGER NOT NULL,'
--|| 'geom GEOMETRY NOT NULL,'
--|| 'CONSTRAINT edge_geometry_type CHECK '
--|| '( GeometryType(geom) = ''LINESTRING'' ),'
|| 'CONSTRAINT start_node_exists FOREIGN KEY(start_node)'
|| ' REFERENCES ' || quote_ident(atopology) || '.node(node_id),'
|| 'CONSTRAINT end_node_exists FOREIGN KEY(end_node) '
|| ' REFERENCES ' || quote_ident(atopology) || '.node(node_id),'
|| 'CONSTRAINT left_face_exists FOREIGN KEY(left_face) '
|| 'REFERENCES ' || quote_ident(atopology) || '.face(face_id),'
|| 'CONSTRAINT right_face_exists FOREIGN KEY(right_face) '
|| 'REFERENCES ' || quote_ident(atopology) || '.face(face_id),'
|| 'CONSTRAINT next_left_edge_exists FOREIGN KEY(abs_next_left_edge)'
|| ' REFERENCES ' || quote_ident(atopology)
|| '.edge_data(edge_id)'
|| ' DEFERRABLE INITIALLY DEFERRED,'
|| 'CONSTRAINT next_right_edge_exists '
|| 'FOREIGN KEY(abs_next_right_edge)'
|| ' REFERENCES ' || quote_ident(atopology)
|| '.edge_data(edge_id) '
|| ' DEFERRABLE INITIALLY DEFERRED'
|| ');';
-- Add geometry column to the edge_data table
EXECUTE
'SELECT AddGeometryColumn('||quote_literal(atopology)
||',''edge_data'',''geom'','||quote_literal(srid)
||',''LINESTRING'',' || ndims || ')';
-- edge standard view (select rule)
EXECUTE 'CREATE VIEW ' || quote_ident(atopology)
|| '.edge AS SELECT '
|| ' edge_id, start_node, end_node, next_left_edge, '
|| ' next_right_edge, '
|| ' left_face, right_face, geom FROM '
|| quote_ident(atopology) || '.edge_data';
-- edge standard view description
EXECUTE 'COMMENT ON VIEW ' || quote_ident(atopology)
|| '.edge IS '
|| '''Contains edge topology primitives''';
EXECUTE 'COMMENT ON COLUMN ' || quote_ident(atopology)
|| '.edge.edge_id IS '
|| '''Unique identifier of the edge''';
EXECUTE 'COMMENT ON COLUMN ' || quote_ident(atopology)
|| '.edge.start_node IS '
|| '''Unique identifier of the node at the start of the edge''';
EXECUTE 'COMMENT ON COLUMN ' || quote_ident(atopology)
|| '.edge.end_node IS '
|| '''Unique identifier of the node at the end of the edge''';
EXECUTE 'COMMENT ON COLUMN ' || quote_ident(atopology)
|| '.edge.next_left_edge IS '
|| '''Unique identifier of the next edge of the face on the left (when looking in the direction from START_NODE to END_NODE), moving counterclockwise around the face boundary''';
EXECUTE 'COMMENT ON COLUMN ' || quote_ident(atopology)
|| '.edge.next_right_edge IS '
|| '''Unique identifier of the next edge of the face on the right (when looking in the direction from START_NODE to END_NODE), moving counterclockwise around the face boundary''';
EXECUTE 'COMMENT ON COLUMN ' || quote_ident(atopology)
|| '.edge.left_face IS '
|| '''Unique identifier of the face on the left side of the edge when looking in the direction from START_NODE to END_NODE''';
EXECUTE 'COMMENT ON COLUMN ' || quote_ident(atopology)
|| '.edge.right_face IS '
|| '''Unique identifier of the face on the right side of the edge when looking in the direction from START_NODE to END_NODE''';
EXECUTE 'COMMENT ON COLUMN ' || quote_ident(atopology)
|| '.edge.geom IS '
|| '''The geometry of the edge''';
-- edge standard view (insert rule)
EXECUTE 'CREATE RULE edge_insert_rule AS ON INSERT '
|| 'TO ' || quote_ident(atopology)
|| '.edge DO INSTEAD '
|| ' INSERT into ' || quote_ident(atopology)
|| '.edge_data '
|| ' VALUES (NEW.edge_id, NEW.start_node, NEW.end_node, '
|| ' NEW.next_left_edge, abs(NEW.next_left_edge), '
|| ' NEW.next_right_edge, abs(NEW.next_right_edge), '
|| ' NEW.left_face, NEW.right_face, NEW.geom);';
--------------} END OF edge CREATION
--------------{ layer sequence
EXECUTE 'CREATE SEQUENCE '
|| quote_ident(atopology) || '.layer_id_seq;';
--------------} layer sequence
--------------{ relation CREATION
--
EXECUTE
'CREATE TABLE ' || quote_ident(atopology) || '.relation ('
|| ' topogeo_id integer NOT NULL, '
|| ' layer_id integer NOT NULL, '
|| ' element_id integer NOT NULL, '
|| ' element_type integer NOT NULL, '
|| ' UNIQUE(layer_id,topogeo_id,element_id,element_type));';
EXECUTE
'CREATE TRIGGER relation_integrity_checks '
||'BEFORE UPDATE OR INSERT ON '
|| quote_ident(atopology) || '.relation FOR EACH ROW '
|| ' EXECUTE PROCEDURE topology.RelationTrigger('
||topology_id||','||quote_literal(atopology)||')';
--------------} END OF relation CREATION
------- Default (world) face
EXECUTE 'INSERT INTO ' || quote_ident(atopology) || '.face(face_id) VALUES(0);';
------- GiST index on face
EXECUTE 'CREATE INDEX face_gist ON '
|| quote_ident(atopology)
|| '.face using gist (mbr);';
------- GiST index on node
EXECUTE 'CREATE INDEX node_gist ON '
|| quote_ident(atopology)
|| '.node using gist (geom);';
------- GiST index on edge
EXECUTE 'CREATE INDEX edge_gist ON '
|| quote_ident(atopology)
|| '.edge_data using gist (geom);';
------- Indexes on left_face and right_face of edge_data
------- NOTE: these indexes speed up GetFaceGeometry (and thus
------- TopoGeometry::Geometry) by a factor of 10 !
------- See http://trac.osgeo.org/postgis/ticket/806
EXECUTE 'CREATE INDEX edge_left_face_idx ON '
|| quote_ident(atopology)
|| '.edge_data (left_face);';
EXECUTE 'CREATE INDEX edge_right_face_idx ON '
|| quote_ident(atopology)
|| '.edge_data (right_face);';
------- Indexes on start_node and end_node of edge_data
------- NOTE: this indexes speed up node deletion
------- by a factor of 1000 !
------- See http://trac.osgeo.org/postgis/ticket/2082
EXECUTE 'CREATE INDEX edge_start_node_idx ON '
|| quote_ident(atopology)
|| '.edge_data (start_node);';
EXECUTE 'CREATE INDEX edge_end_node_idx ON '
|| quote_ident(atopology)
|| '.edge_data (end_node);';
-- TODO: consider also adding an index on node.containing_face
------- Add record to the "topology" metadata table
EXECUTE 'INSERT INTO topology.topology '
|| '(id, name, srid, precision, hasZ) VALUES ('
|| quote_literal(topology_id) || ','
|| quote_literal(atopology) || ','
|| quote_literal(srid) || ',' || quote_literal(prec)
|| ',' || hasZ
|| ')';
RETURN topology_id;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
--} CreateTopology
--{ CreateTopology wrappers for unspecified srid or precision or hasZ
-- CreateTopology(name, SRID, precision) -- hasZ = false
CREATE OR REPLACE FUNCTION topology.CreateTopology(toponame varchar, srid integer, prec float8)
RETURNS integer AS
' SELECT topology.CreateTopology($1, $2, $3, false);'
LANGUAGE 'sql' VOLATILE STRICT;
-- CreateTopology(name, SRID) -- precision = 0
CREATE OR REPLACE FUNCTION topology.CreateTopology(varchar, integer)
RETURNS integer AS
' SELECT topology.CreateTopology($1, $2, 0); '
LANGUAGE 'sql' VOLATILE STRICT;
-- CreateTopology(name) -- srid = unknown, precision = 0
CREATE OR REPLACE FUNCTION topology.CreateTopology(varchar)
RETURNS integer AS
$$ SELECT topology.CreateTopology($1, ST_SRID('POINT EMPTY'::geometry), 0); $$
LANGUAGE 'sql' VOLATILE STRICT;
--} CreateTopology
--{
-- DropTopology(name)
--
-- Drops a topology schema getting rid of every dependent object.
--
CREATE OR REPLACE FUNCTION topology.DropTopology(atopology varchar)
RETURNS text
AS
$$
DECLARE
topoid integer;
rec RECORD;
BEGIN
-- Get topology id
SELECT id FROM topology.topology into topoid
WHERE name = atopology;
IF topoid IS NOT NULL THEN
RAISE NOTICE 'Dropping all layers from topology % (%)',
atopology, topoid;
-- Drop all layers in the topology
FOR rec IN EXECUTE 'SELECT * FROM topology.layer WHERE '
|| ' topology_id = ' || topoid
LOOP
EXECUTE 'SELECT topology.DropTopoGeometryColumn('
|| quote_literal(rec.schema_name)
|| ','
|| quote_literal(rec.table_name)
|| ','
|| quote_literal(rec.feature_column)
|| ')';
END LOOP;
-- Delete record from topology.topology
EXECUTE 'DELETE FROM topology.topology WHERE id = '
|| topoid;
END IF;
-- Drop the schema (if it exists)
FOR rec IN SELECT * FROM pg_namespace WHERE text(nspname) = atopology
LOOP
EXECUTE 'DROP SCHEMA '||quote_ident(atopology)||' CASCADE';
END LOOP;
RETURN 'Topology ' || quote_literal(atopology) || ' dropped';
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
--} DropTopology
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2011 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
-- TopologySummary(name)
--
-- Print an overview about a topology
--
CREATE OR REPLACE FUNCTION topology.TopologySummary(atopology varchar)
RETURNS text
AS
$$
DECLARE
rec RECORD;
rec2 RECORD;
var_topology_id integer;
n int4;
missing int4;
sql text;
ret text;
BEGIN
ret := 'Topology ' || quote_ident(atopology) ;
BEGIN
SELECT * FROM topology.topology WHERE name = atopology INTO STRICT rec;
-- TODO: catch <no_rows> to give a nice error message
var_topology_id := rec.id;
ret := ret || ' (' || rec.id || '), ';
ret := ret || 'SRID ' || rec.srid || ', '
|| 'precision ' || rec.precision;
IF rec.hasz THEN ret := ret || ', has Z'; END IF;
ret := ret || E'\n';
EXCEPTION
WHEN NO_DATA_FOUND THEN
ret := ret || E' (X)\n';
END;
BEGIN
BEGIN
EXECUTE 'SELECT count(node_id) FROM ' || quote_ident(atopology)
|| '.node ' INTO STRICT n;
ret = ret || n || ' nodes, ';
EXCEPTION
WHEN UNDEFINED_TABLE OR INVALID_SCHEMA_NAME THEN
ret = ret || 'X nodes, ';
END;
BEGIN
EXECUTE 'SELECT count(edge_id) FROM ' || quote_ident(atopology)
|| '.edge_data ' INTO STRICT n;
ret = ret || n || ' edges, ';
EXCEPTION
WHEN UNDEFINED_TABLE OR INVALID_SCHEMA_NAME THEN
ret = ret || 'X edges, ';
END;
BEGIN
EXECUTE 'SELECT count(face_id) FROM ' || quote_ident(atopology)
|| '.face WHERE face_id != 0' INTO STRICT n;
ret = ret || n || ' faces, ';
EXCEPTION
WHEN UNDEFINED_TABLE OR INVALID_SCHEMA_NAME THEN
ret = ret || 'X faces, ';
END;
BEGIN
EXECUTE 'SELECT count(*) FROM (SELECT DISTINCT layer_id,topogeo_id FROM '
|| quote_ident(atopology) || '.relation ) foo ' INTO STRICT n;
ret = ret || n || ' topogeoms in ';
EXECUTE 'SELECT count(*) FROM (SELECT DISTINCT layer_id FROM '
|| quote_ident(atopology) || '.relation ) foo ' INTO STRICT n;
ret = ret || n || ' layers' || E'\n';
EXCEPTION
WHEN UNDEFINED_TABLE OR INVALID_SCHEMA_NAME THEN
ret = ret || 'X topogeoms in X layers' || E'\n';
END;
-- print information about registered layers
FOR rec IN SELECT * FROM topology.layer l
WHERE l.topology_id = var_topology_id
ORDER by layer_id
LOOP -- {
ret = ret || 'Layer ' || rec.layer_id || ', type ';
CASE
WHEN rec.feature_type = 1 THEN
ret = ret || 'Puntal';
WHEN rec.feature_type = 2 THEN
ret = ret || 'Lineal';
WHEN rec.feature_type = 3 THEN
ret = ret || 'Polygonal';
WHEN rec.feature_type = 4 THEN
ret = ret || 'Mixed';
ELSE
ret = ret || '???';
END CASE;
ret = ret || ' (' || rec.feature_type || '), ';
BEGIN
EXECUTE 'SELECT count(*) FROM ( SELECT DISTINCT topogeo_id FROM '
|| quote_ident(atopology)
|| '.relation r WHERE r.layer_id = ' || rec.layer_id
|| ' ) foo ' INTO STRICT n;
ret = ret || n || ' topogeoms' || E'\n';
EXCEPTION WHEN UNDEFINED_TABLE THEN
ret = ret || 'X topogeoms' || E'\n';
END;
IF rec.level > 0 THEN
ret = ret || ' Hierarchy level ' || rec.level
|| ', child layer ' || rec.child_id || E'\n';
END IF;
ret = ret || ' Deploy: ';
IF rec.feature_column != '' THEN
ret = ret || quote_ident(rec.schema_name) || '.'
|| quote_ident(rec.table_name) || '.'
|| quote_ident(rec.feature_column);
IF n > 0 THEN
sql := 'SELECT count(*) FROM ( SELECT topogeo_id FROM '
|| quote_ident(atopology)
|| '.relation r WHERE r.layer_id = ' || rec.layer_id
|| ' EXCEPT SELECT DISTINCT id('
|| quote_ident(rec.feature_column) || ') FROM '
|| quote_ident(rec.schema_name) || '.'
|| quote_ident(rec.table_name) || ') as foo';
EXECUTE sql INTO STRICT missing;
IF missing > 0 THEN
ret = ret || ' (' || missing || ' missing topogeoms)';
END IF;
END IF;
ret = ret || E'\n';
ELSE
ret = ret || E'NONE (detached)\n';
END IF;
END LOOP; -- }
-- print information about unregistered layers containing topogeoms
sql := 'SELECT layer_id FROM '
|| quote_ident(atopology) || '.relation EXCEPT SELECT layer_id'
|| ' FROM topology.layer WHERE topology_id = '
|| var_topology_id || 'ORDER BY layer_id';
--RAISE DEBUG '%', sql;
FOR rec IN EXECUTE sql
LOOP -- {
ret = ret || 'Layer ' || rec.layer_id::text || ', UNREGISTERED, ';
EXECUTE 'SELECT count(*) FROM ( SELECT DISTINCT topogeo_id FROM '
|| quote_ident(atopology)
|| '.relation r WHERE r.layer_id = ' || rec.layer_id
|| ' ) foo ' INTO STRICT n;
ret = ret || n || ' topogeoms' || E'\n';
END LOOP; -- }
EXCEPTION
WHEN INVALID_SCHEMA_NAME THEN
ret = ret || E'\n- missing schema - ';
WHEN OTHERS THEN
RAISE EXCEPTION 'Got % (%)', SQLERRM, SQLSTATE;
END;
RETURN ret;
END
$$
LANGUAGE 'plpgsql' STABLE STRICT;
--} TopologySummary
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2011 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
-- CopyTopology(name_source, name_target)
--
-- Makes a copy of a topology (primitives + topogeometry collections) .
-- Returns the new topology id.
--
CREATE OR REPLACE FUNCTION topology.CopyTopology(atopology varchar, newtopo varchar)
RETURNS int
AS
$$
DECLARE
rec RECORD;
rec2 RECORD;
oldtopo_id integer;
newtopo_id integer;
n int4;
ret text;
BEGIN
SELECT * FROM topology.topology where name = atopology
INTO strict rec;
oldtopo_id = rec.id;
-- TODO: more gracefully handle unexistent topology
SELECT topology.CreateTopology(newtopo, rec.SRID, rec.precision, rec.hasZ)
INTO strict newtopo_id;
-- Copy faces
EXECUTE 'INSERT INTO ' || quote_ident(newtopo)
|| '.face SELECT * FROM ' || quote_ident(atopology)
|| '.face WHERE face_id != 0';
-- Update faces sequence
EXECUTE 'SELECT setval(' || quote_literal(
quote_ident(newtopo) || '.face_face_id_seq'
) || ', (SELECT last_value FROM '
|| quote_ident(atopology) || '.face_face_id_seq))';
-- Copy nodes
EXECUTE 'INSERT INTO ' || quote_ident(newtopo)
|| '.node SELECT * FROM ' || quote_ident(atopology)
|| '.node';
-- Update node sequence
EXECUTE 'SELECT setval(' || quote_literal(
quote_ident(newtopo) || '.node_node_id_seq'
) || ', (SELECT last_value FROM '
|| quote_ident(atopology) || '.node_node_id_seq))';
-- Copy edges
EXECUTE 'INSERT INTO ' || quote_ident(newtopo)
|| '.edge_data SELECT * FROM ' || quote_ident(atopology)
|| '.edge_data';
-- Update edge sequence
EXECUTE 'SELECT setval(' || quote_literal(
quote_ident(newtopo) || '.edge_data_edge_id_seq'
) || ', (SELECT last_value FROM '
|| quote_ident(atopology) || '.edge_data_edge_id_seq))';
-- Copy layers and their TopoGeometry sequences
FOR rec IN SELECT * FROM topology.layer WHERE topology_id = oldtopo_id
LOOP
INSERT INTO topology.layer (topology_id, layer_id, feature_type,
level, child_id, schema_name, table_name, feature_column)
VALUES (newtopo_id, rec.layer_id, rec.feature_type,
rec.level, rec.child_id, newtopo,
'LAYER' || rec.layer_id, '');
-- Create layer's TopoGeometry sequences
EXECUTE 'SELECT last_value FROM '
|| quote_ident(atopology) || '.topogeo_s_' || rec.layer_id
INTO STRICT n;
EXECUTE 'CREATE SEQUENCE ' || quote_ident(newtopo)
|| '.topogeo_s_' || rec.layer_id;
EXECUTE 'SELECT setval(' || quote_literal(
quote_ident(newtopo) || '.topogeo_s_' || rec.layer_id
) || ', ' || n || ')';
END LOOP;
-- Copy TopoGeometry definitions
EXECUTE 'INSERT INTO ' || quote_ident(newtopo)
|| '.relation SELECT * FROM ' || quote_ident(atopology)
|| '.relation';
RETURN newtopo_id;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
--} TopologySummary
-- Spatial predicates
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2011-2012 Sandro Santilli <strk@keybit.net>
-- Copyright (C) 2005 Refractions Research Inc.
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- Author: Sandro Santilli <strk@keybit.net>
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- Overloaded spatial predicates for TopoGeometry inputs
--
-- FUNCTION intersects(TopoGeometry, TopoGeometry)
-- FUNCTION equals(TopoGeometry, TopoGeometry)
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
-- intersects(TopoGeometry, TopoGeometry)
--
CREATE OR REPLACE FUNCTION topology.intersects(tg1 topology.TopoGeometry, tg2 topology.TopoGeometry)
RETURNS bool
AS
$$
DECLARE
tgbuf topology.TopoGeometry;
rec RECORD;
toponame varchar;
query text;
BEGIN
IF tg1.topology_id != tg2.topology_id THEN
-- TODO: revert to ::geometry instead ?
RAISE EXCEPTION 'Cannot compute intersection between TopoGeometries from different topologies';
END IF;
-- Order TopoGeometries so that tg1 has less-or-same
-- dimensionality of tg1 (point,line,polygon,collection)
IF tg1.type > tg2.type THEN
tgbuf := tg2;
tg2 := tg1;
tg1 := tgbuf;
END IF;
--RAISE NOTICE 'tg1.id:% tg2.id:%', tg1.id, tg2.id;
-- Geometry collection are not currently supported
IF tg2.type = 4 THEN
RAISE EXCEPTION 'GeometryCollection are not supported by intersects()';
END IF;
-- Get topology name
SELECT name FROM topology.topology into toponame
WHERE id = tg1.topology_id;
-- Hierarchical TopoGeometries are not currently supported
query = 'SELECT level FROM topology.layer'
|| ' WHERE '
|| ' topology_id = ' || tg1.topology_id
|| ' AND '
|| '( layer_id = ' || tg1.layer_id
|| ' OR layer_id = ' || tg2.layer_id
|| ' ) '
|| ' AND level > 0 ';
--RAISE NOTICE '%', query;
FOR rec IN EXECUTE query
LOOP
-- TODO: revert to ::geometry instead ?
RAISE EXCEPTION 'Hierarchical TopoGeometries are not currently supported by intersects()';
END LOOP;
IF tg1.type = 1 THEN -- [multi]point
IF tg2.type = 1 THEN -- point/point
---------------------------------------------------------
--
-- Two [multi]point features intersect if they share
-- any Node
--
--
--
query =
'SELECT a.topogeo_id FROM '
|| quote_ident(toponame) ||
'.relation a, '
|| quote_ident(toponame) ||
'.relation b '
|| 'WHERE a.layer_id = ' || tg1.layer_id
|| ' AND b.layer_id = ' || tg2.layer_id
|| ' AND a.topogeo_id = ' || tg1.id
|| ' AND b.topogeo_id = ' || tg2.id
|| ' AND a.element_id = b.element_id '
|| ' LIMIT 1';
--RAISE NOTICE '%', query;
FOR rec IN EXECUTE query
LOOP
RETURN TRUE; -- they share an element
END LOOP;
RETURN FALSE; -- no elements shared
--
---------------------------------------------------------
ELSIF tg2.type = 2 THEN -- point/line
---------------------------------------------------------
--
-- A [multi]point intersects a [multi]line if they share
-- any Node.
--
--
--
query =
'SELECT a.topogeo_id FROM '
|| quote_ident(toponame) ||
'.relation a, '
|| quote_ident(toponame) ||
'.relation b, '
|| quote_ident(toponame) ||
'.edge_data e '
|| 'WHERE a.layer_id = ' || tg1.layer_id
|| ' AND b.layer_id = ' || tg2.layer_id
|| ' AND a.topogeo_id = ' || tg1.id
|| ' AND b.topogeo_id = ' || tg2.id
|| ' AND abs(b.element_id) = e.edge_id '
|| ' AND ( '
|| ' e.start_node = a.element_id '
|| ' OR '
|| ' e.end_node = a.element_id '
|| ' )'
|| ' LIMIT 1';
--RAISE NOTICE '%', query;
FOR rec IN EXECUTE query
LOOP
RETURN TRUE; -- they share an element
END LOOP;
RETURN FALSE; -- no elements shared
--
---------------------------------------------------------
ELSIF tg2.type = 3 THEN -- point/polygon
---------------------------------------------------------
--
-- A [multi]point intersects a [multi]polygon if any
-- Node of the point is contained in any face of the
-- polygon OR ( is end_node or start_node of any edge
-- of any polygon face ).
--
-- We assume the Node-in-Face check is faster becasue
-- there will be less Faces then Edges in any polygon.
--
--
--
--
-- Check if any node is contained in a face
query =
'SELECT n.node_id as id FROM '
|| quote_ident(toponame) ||
'.relation r1, '
|| quote_ident(toponame) ||
'.relation r2, '
|| quote_ident(toponame) ||
'.node n '
|| 'WHERE r1.layer_id = ' || tg1.layer_id
|| ' AND r2.layer_id = ' || tg2.layer_id
|| ' AND r1.topogeo_id = ' || tg1.id
|| ' AND r2.topogeo_id = ' || tg2.id
|| ' AND n.node_id = r1.element_id '
|| ' AND r2.element_id = n.containing_face '
|| ' LIMIT 1';
--RAISE NOTICE '%', query;
FOR rec IN EXECUTE query
LOOP
--RAISE NOTICE 'Node % in polygon face', rec.id;
RETURN TRUE; -- one (or more) nodes are
-- contained in a polygon face
END LOOP;
-- Check if any node is start or end of any polygon
-- face edge
query =
'SELECT n.node_id as nid, e.edge_id as eid '
|| ' FROM '
|| quote_ident(toponame) ||
'.relation r1, '
|| quote_ident(toponame) ||
'.relation r2, '
|| quote_ident(toponame) ||
'.edge_data e, '
|| quote_ident(toponame) ||
'.node n '
|| 'WHERE r1.layer_id = ' || tg1.layer_id
|| ' AND r2.layer_id = ' || tg2.layer_id
|| ' AND r1.topogeo_id = ' || tg1.id
|| ' AND r2.topogeo_id = ' || tg2.id
|| ' AND n.node_id = r1.element_id '
|| ' AND ( '
|| ' e.left_face = r2.element_id '
|| ' OR '
|| ' e.right_face = r2.element_id '
|| ' ) '
|| ' AND ( '
|| ' e.start_node = r1.element_id '
|| ' OR '
|| ' e.end_node = r1.element_id '
|| ' ) '
|| ' LIMIT 1';
--RAISE NOTICE '%', query;
FOR rec IN EXECUTE query
LOOP
--RAISE NOTICE 'Node % on edge % bound', rec.nid, rec.eid;
RETURN TRUE; -- one node is start or end
-- of a face edge
END LOOP;
RETURN FALSE; -- no intersection
--
---------------------------------------------------------
ELSIF tg2.type = 4 THEN -- point/collection
RAISE EXCEPTION 'Intersection point/collection not implemented yet';
ELSE
RAISE EXCEPTION 'Invalid TopoGeometry type', tg2.type;
END IF;
ELSIF tg1.type = 2 THEN -- [multi]line
IF tg2.type = 2 THEN -- line/line
---------------------------------------------------------
--
-- A [multi]line intersects a [multi]line if they share
-- any Node.
--
--
--
query =
'SELECT e1.start_node FROM '
|| quote_ident(toponame) ||
'.relation r1, '
|| quote_ident(toponame) ||
'.relation r2, '
|| quote_ident(toponame) ||
'.edge_data e1, '
|| quote_ident(toponame) ||
'.edge_data e2 '
|| 'WHERE r1.layer_id = ' || tg1.layer_id
|| ' AND r2.layer_id = ' || tg2.layer_id
|| ' AND r1.topogeo_id = ' || tg1.id
|| ' AND r2.topogeo_id = ' || tg2.id
|| ' AND abs(r1.element_id) = e1.edge_id '
|| ' AND abs(r2.element_id) = e2.edge_id '
|| ' AND ( '
|| ' e1.start_node = e2.start_node '
|| ' OR '
|| ' e1.start_node = e2.end_node '
|| ' OR '
|| ' e1.end_node = e2.start_node '
|| ' OR '
|| ' e1.end_node = e2.end_node '
|| ' )'
|| ' LIMIT 1';
--RAISE NOTICE '%', query;
FOR rec IN EXECUTE query
LOOP
RETURN TRUE; -- they share an element
END LOOP;
RETURN FALSE; -- no elements shared
--
---------------------------------------------------------
ELSIF tg2.type = 3 THEN -- line/polygon
---------------------------------------------------------
--
-- A [multi]line intersects a [multi]polygon if they share
-- any Node (touch-only case), or if any line edge has any
-- polygon face on the left or right (full-containment case
-- + edge crossing case).
--
--
-- E1 are line edges, E2 are polygon edges
-- R1 are line relations.
-- R2 are polygon relations.
-- R2.element_id are FACE ids
query =
'SELECT e1.edge_id'
|| ' FROM '
|| quote_ident(toponame) ||
'.relation r1, '
|| quote_ident(toponame) ||
'.relation r2, '
|| quote_ident(toponame) ||
'.edge_data e1, '
|| quote_ident(toponame) ||
'.edge_data e2 '
|| 'WHERE r1.layer_id = ' || tg1.layer_id
|| ' AND r2.layer_id = ' || tg2.layer_id
|| ' AND r1.topogeo_id = ' || tg1.id
|| ' AND r2.topogeo_id = ' || tg2.id
-- E1 are line edges
|| ' AND e1.edge_id = abs(r1.element_id) '
-- E2 are face edges
|| ' AND ( e2.left_face = r2.element_id '
|| ' OR e2.right_face = r2.element_id ) '
|| ' AND ( '
-- Check if E1 have left-or-right face
-- being part of R2.element_id
|| ' e1.left_face = r2.element_id '
|| ' OR '
|| ' e1.right_face = r2.element_id '
-- Check if E1 share start-or-end node
-- with any E2.
|| ' OR '
|| ' e1.start_node = e2.start_node '
|| ' OR '
|| ' e1.start_node = e2.end_node '
|| ' OR '
|| ' e1.end_node = e2.start_node '
|| ' OR '
|| ' e1.end_node = e2.end_node '
|| ' ) '
|| ' LIMIT 1';
--RAISE NOTICE '%', query;
FOR rec IN EXECUTE query
LOOP
RETURN TRUE; -- either common node
-- or edge-in-face
END LOOP;
RETURN FALSE; -- no intersection
--
---------------------------------------------------------
ELSIF tg2.type = 4 THEN -- line/collection
RAISE EXCEPTION 'Intersection line/collection not implemented yet', tg1.type, tg2.type;
ELSE
RAISE EXCEPTION 'Invalid TopoGeometry type', tg2.type;
END IF;
ELSIF tg1.type = 3 THEN -- [multi]polygon
IF tg2.type = 3 THEN -- polygon/polygon
---------------------------------------------------------
--
-- A [multi]polygon intersects a [multi]polygon if they share
-- any Node (touch-only case), or if any face edge has any of the
-- other polygon face on the left or right (full-containment case
-- + edge crossing case).
--
--
-- E1 are poly1 edges.
-- E2 are poly2 edges
-- R1 are poly1 relations.
-- R2 are poly2 relations.
-- R1.element_id are poly1 FACE ids
-- R2.element_id are poly2 FACE ids
query =
'SELECT e1.edge_id'
|| ' FROM '
|| quote_ident(toponame) ||
'.relation r1, '
|| quote_ident(toponame) ||
'.relation r2, '
|| quote_ident(toponame) ||
'.edge_data e1, '
|| quote_ident(toponame) ||
'.edge_data e2 '
|| 'WHERE r1.layer_id = ' || tg1.layer_id
|| ' AND r2.layer_id = ' || tg2.layer_id
|| ' AND r1.topogeo_id = ' || tg1.id
|| ' AND r2.topogeo_id = ' || tg2.id
-- E1 are poly1 edges
|| ' AND ( e1.left_face = r1.element_id '
|| ' OR e1.right_face = r1.element_id ) '
-- E2 are poly2 edges
|| ' AND ( e2.left_face = r2.element_id '
|| ' OR e2.right_face = r2.element_id ) '
|| ' AND ( '
-- Check if any edge from a polygon face
-- has any of the other polygon face
-- on the left or right
|| ' e1.left_face = r2.element_id '
|| ' OR '
|| ' e1.right_face = r2.element_id '
|| ' OR '
|| ' e2.left_face = r1.element_id '
|| ' OR '
|| ' e2.right_face = r1.element_id '
-- Check if E1 share start-or-end node
-- with any E2.
|| ' OR '
|| ' e1.start_node = e2.start_node '
|| ' OR '
|| ' e1.start_node = e2.end_node '
|| ' OR '
|| ' e1.end_node = e2.start_node '
|| ' OR '
|| ' e1.end_node = e2.end_node '
|| ' ) '
|| ' LIMIT 1';
--RAISE NOTICE '%', query;
FOR rec IN EXECUTE query
LOOP
RETURN TRUE; -- either common node
-- or edge-in-face
END LOOP;
RETURN FALSE; -- no intersection
--
---------------------------------------------------------
ELSIF tg2.type = 4 THEN -- polygon/collection
RAISE EXCEPTION 'Intersection poly/collection not implemented yet', tg1.type, tg2.type;
ELSE
RAISE EXCEPTION 'Invalid TopoGeometry type', tg2.type;
END IF;
ELSIF tg1.type = 4 THEN -- collection
IF tg2.type = 4 THEN -- collection/collection
RAISE EXCEPTION 'Intersection collection/collection not implemented yet', tg1.type, tg2.type;
ELSE
RAISE EXCEPTION 'Invalid TopoGeometry type', tg2.type;
END IF;
ELSE
RAISE EXCEPTION 'Invalid TopoGeometry type %', tg1.type;
END IF;
END
$$
LANGUAGE 'plpgsql' STABLE STRICT;
--} intersects(TopoGeometry, TopoGeometry)
--{
-- equals(TopoGeometry, TopoGeometry)
--
CREATE OR REPLACE FUNCTION topology.equals(tg1 topology.TopoGeometry, tg2 topology.TopoGeometry)
RETURNS bool
AS
$$
DECLARE
rec RECORD;
toponame varchar;
query text;
BEGIN
IF tg1.topology_id != tg2.topology_id THEN
-- TODO: revert to ::geometry instead ?
RAISE EXCEPTION 'Cannot compare TopoGeometries from different topologies';
END IF;
-- Not the same type, not equal
IF tg1.type != tg2.type THEN
RETURN FALSE;
END IF;
-- Geometry collection are not currently supported
IF tg2.type = 4 THEN
RAISE EXCEPTION 'GeometryCollection are not supported by equals()';
END IF;
-- Get topology name
SELECT name FROM topology.topology into toponame
WHERE id = tg1.topology_id;
-- Two geometries are equal if they are composed by
-- the same TopoElements
FOR rec IN EXECUTE 'SELECT * FROM '
|| ' topology.GetTopoGeomElements('
|| quote_literal(toponame) || ', '
|| tg1.layer_id || ',' || tg1.id || ') '
|| ' EXCEPT SELECT * FROM '
|| ' topology.GetTopogeomElements('
|| quote_literal(toponame) || ', '
|| tg2.layer_id || ',' || tg2.id || ');'
LOOP
RETURN FALSE;
END LOOP;
FOR rec IN EXECUTE 'SELECT * FROM '
|| ' topology.GetTopoGeomElements('
|| quote_literal(toponame) || ', '
|| tg2.layer_id || ',' || tg2.id || ')'
|| ' EXCEPT SELECT * FROM '
|| ' topology.GetTopogeomElements('
|| quote_literal(toponame) || ', '
|| tg1.layer_id || ',' || tg1.id || '); '
LOOP
RETURN FALSE;
END LOOP;
RETURN TRUE;
END
$$
LANGUAGE 'plpgsql' STABLE STRICT;
--} equals(TopoGeometry, TopoGeometry)
-- Querying
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2011 Andrea Peri <aperi2007@gmail.com>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-- {
--
-- Andrea Peri (19 Jan 2011) creation
-- Andrea Peri (14 Feb 2011) minor issues
--
-- getnodebypoint(atopology, point, tolerance)
--
-- Retrieve a Node ID given a POINT and a tolerance
-- tolerance = 0 mean exactly intersection
--
-- Returns the integer ID if there is a Node on the Point.
--
-- If there isn't any node in the Point, GetNodeByPoint return 0.
--
-- if near the point there are two or more nodes it throw an exception.
--
CREATE OR REPLACE FUNCTION topology.GetNodeByPoint(atopology varchar, apoint geometry, tol1 float8)
RETURNS int
AS
$$
DECLARE
sql text;
idnode int;
BEGIN
--
-- Atopology and apoint are required
--
IF atopology IS NULL OR apoint IS NULL THEN
RAISE EXCEPTION 'Invalid null argument';
END IF;
--
-- Apoint must be a point
--
IF substring(geometrytype(apoint), 1, 5) != 'POINT'
THEN
RAISE EXCEPTION 'Node geometry must be a point';
END IF;
--
-- Tolerance must be >= 0
--
IF tol1 < 0
THEN
RAISE EXCEPTION 'Tolerance must be >=0';
END IF;
if tol1 = 0 then
sql := 'SELECT a.node_id FROM '
|| quote_ident(atopology)
|| '.node as a WHERE '
|| '(a.geom && ' || quote_literal(apoint::text)||'::geometry) '
|| ' AND (ST_Intersects(a.geom,' || quote_literal(apoint::text)||'::geometry) );';
else
sql := 'SELECT a.node_id FROM '
|| quote_ident(atopology)
|| '.node as a WHERE '
|| '(ST_DWithin(a.geom,' || quote_literal(apoint::text)||'::geometry,' || tol1::text || ') );';
end if;
BEGIN
EXECUTE sql INTO STRICT idnode;
EXCEPTION
WHEN NO_DATA_FOUND THEN
idnode = 0;
WHEN TOO_MANY_ROWS THEN
RAISE EXCEPTION 'Two or more nodes found';
END;
RETURN idnode;
END
$$
LANGUAGE 'plpgsql' STABLE STRICT;
--} GetNodeByPoint
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2011 Andrea Peri <aperi2007@gmail.com>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
--
-- Andrea Peri (19 Jan 2011) creation
-- Andrea Peri (14 Feb 2011) minor issues
--
-- GetEdgeByPoint(atopology, point, tol)
--
-- Retrieve an Edge ID given a POINT and a tolerance
-- tolerance = 0 mean exactly intersection
--
-- Returns return the integer ID if there is an edge on the Point.
--
-- When the Point is even a Node it raise an exception.
-- This case is testable with the GetNodeByPoint(atopology, apoint, tol)
--
-- If there isn't any edge in the Point, GetEdgeByPoint return 0.
--
-- if near the point there are two or more edges it throw an exception.
--
CREATE OR REPLACE FUNCTION topology.GetEdgeByPoint(atopology varchar, apoint geometry, tol1 float8)
RETURNS int
AS
$$
DECLARE
sql text;
idedge int;
BEGIN
--
-- Atopology and apoint are required
--
IF atopology IS NULL OR apoint IS NULL THEN
RAISE EXCEPTION 'Invalid null argument';
END IF;
--
-- Apoint must be a point
--
IF substring(geometrytype(apoint), 1, 5) != 'POINT'
THEN
RAISE EXCEPTION 'Node geometry must be a point';
END IF;
--
-- Tolerance must be >= 0
--
IF tol1 < 0
THEN
RAISE EXCEPTION 'Tolerance must be >=0';
END IF;
if tol1 = 0 then
sql := 'SELECT a.edge_id FROM '
|| quote_ident(atopology)
|| '.edge_data as a WHERE '
|| '(a.geom && ' || quote_literal(apoint::text)||'::geometry) '
|| ' AND (ST_Intersects(a.geom,' || quote_literal(apoint::text)||'::geometry) );';
else
sql := 'SELECT a.edge_id FROM '
|| quote_ident(atopology)
|| '.edge_data as a WHERE '
|| '(ST_DWithin(a.geom,' || quote_literal(apoint::text)||'::geometry,' || tol1::text || ') );';
end if;
BEGIN
EXECUTE sql INTO STRICT idedge;
EXCEPTION
WHEN NO_DATA_FOUND THEN
idedge = 0;
WHEN TOO_MANY_ROWS THEN
RAISE EXCEPTION 'Two or more edges found';
END;
RETURN idedge;
END
$$
LANGUAGE 'plpgsql' STABLE STRICT;
--} GetEdgeByPoint
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2011 Andrea Peri <aperi2007@gmail.com>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
--
-- Andrea Peri (27 Feb 2011) creation
--
-- GetFaceByPoint(atopology, point, tol)
--
-- Retrieve a Face ID given a POINT and a tolerance
-- tolerance = 0 mean exactly intersection
--
-- Returns return the integer ID if there is a face on the Point.
--
-- When the Point is even a Node it raise an exception.
-- This case is testable with the GetNodeByPoint(atopology, apoint, tol)
--
-- If there isn't any face in the Point, GetFaceByPoint return 0.
--
-- if near the point there are two or more faces it throw an exception.
--
CREATE OR REPLACE FUNCTION topology.GetFaceByPoint(atopology varchar, apoint geometry, tol1 float8)
RETURNS int
AS
$$
DECLARE
sql text;
idface int;
BEGIN
idface := -1;
--
-- Atopology and apoint are required
--
IF atopology IS NULL OR apoint IS NULL THEN
RAISE EXCEPTION 'Invalid null argument';
END IF;
--
-- Apoint must be a point
--
IF substring(geometrytype(apoint), 1, 5) != 'POINT'
THEN
RAISE EXCEPTION 'Node geometry must be a point';
END IF;
--
-- Tolerance must be >= 0
--
IF tol1 < 0
THEN
RAISE EXCEPTION 'Tolerance must be >=0';
END IF;
--
-- first test is to check if there is inside an mbr
--
if tol1 = 0 then
sql := 'SELECT a.face_id FROM '
|| quote_ident(atopology)
|| '.face as a WHERE '
|| '(a.mbr && ' || quote_literal(apoint::text)||'::geometry) '
|| 'LIMIT 1;';
else
sql := 'SELECT a.face_id FROM '
|| quote_ident(atopology)
|| '.face as a WHERE '
|| '(ST_DWithin(a.mbr,' || quote_literal(apoint::text)||'::geometry,' || tol1::text || ') ) '
|| 'LIMIT 1;';
end if;
BEGIN
EXECUTE sql INTO STRICT idface;
EXCEPTION
WHEN NO_DATA_FOUND THEN
idface = 0;
END;
if idface > 0 then
--
-- probably there is something so now check the exact test
--
if tol1 = 0 then
sql := 'SELECT e.face_id FROM ('
|| 'SELECT d.face_id,ST_BuildArea(ST_Union(geom)) as geom FROM ('
|| 'SELECT b.edge_id as edge_id,b.left_face as face_id,b.geom as geom FROM '
|| quote_ident(atopology) || '.edge_data as b,'
|| '(SELECT a.face_id FROM '
|| quote_ident(atopology) || '.face as a '
|| 'WHERE ST_Intersects(a.mbr,' || quote_literal(apoint::text)||'::geometry)=true'
|| ') as c '
|| 'WHERE (b.left_face = c.face_id) '
|| ' UNION ALL '
|| 'SELECT b.edge_id as edge_id, b.right_face as face_id, b.geom as geom FROM '
|| quote_ident(atopology) || '.edge_data as b,'
|| '(SELECT a.face_id FROM '
|| quote_ident(atopology) || '.face as a '
|| 'WHERE ST_Intersects(a.mbr,' || quote_literal(apoint::text)||'::geometry)=true'
|| ') as c '
|| 'WHERE (b.right_face = c.face_id) '
|| ') as d '
|| 'GROUP BY face_id '
|| ') as e '
|| 'WHERE ST_Intersects(e.geom, ' || quote_literal(apoint::text)||'::geometry)=true;';
else
sql := 'SELECT e.face_id FROM ('
|| 'SELECT d.face_id,ST_BuildArea(ST_Union(geom)) as geom FROM ('
|| 'SELECT b.edge_id as edge_id,b.left_face as face_id,b.geom as geom FROM '
|| quote_ident(atopology) || '.edge_data as b,'
|| '(SELECT a.face_id FROM '
|| quote_ident(atopology) || '.face as a '
|| 'WHERE ST_DWithin(a.mbr,' || quote_literal(apoint::text)||'::geometry,' || tol1::text || ')=true'
|| ') as c '
|| 'WHERE (b.left_face = c.face_id) '
|| ' UNION ALL '
|| 'SELECT b.edge_id as edge_id, b.right_face as face_id, b.geom as geom FROM '
|| quote_ident(atopology) || '.edge_data as b,'
|| '(SELECT a.face_id FROM '
|| quote_ident(atopology) || '.face as a '
|| 'WHERE ST_DWithin(a.mbr,' || quote_literal(apoint::text)||'::geometry,' || tol1::text || ')=true'
|| ') as c '
|| 'WHERE (b.right_face = c.face_id) '
|| ') as d '
|| 'GROUP BY face_id '
|| ') as e '
|| 'WHERE ST_DWithin(e.geom, ' || quote_literal(apoint::text)||'::geometry,' || tol1::text || ')=true;';
end if;
RAISE DEBUG ' ==> %',sql;
BEGIN
EXECUTE sql INTO STRICT idface;
EXCEPTION
WHEN NO_DATA_FOUND THEN
idface = 0;
WHEN TOO_MANY_ROWS THEN
RAISE EXCEPTION 'Two or more faces found';
END;
end if;
RETURN idface;
END
$$
LANGUAGE 'plpgsql' STABLE STRICT;
--} GetFaceByPoint
-- Populating
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2010-2012 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- Functions used to populate a topology
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-- {
-- Compute the max size of the double-precision floating point grid
-- cell required to cover the given geometry
--
--
-- A pragmatic test conducted using algoritm shown here:
-- http://stackoverflow.com/questions/7408407/generate-next-largest-or-smallest-representable-floating-point-number-without-bi
-- showed the "tolerance" growing by an order of magnitude proportionally
-- with the order of magnitude of the input, starting with something like
-- 3.5527136788005009294e-15 for the starting value of 9.0
--
-- }{
CREATE OR REPLACE FUNCTION topology._st_mintolerance(ageom Geometry)
RETURNS float8
AS $$
SELECT 3.6 * power(10, - ( 15 - log(coalesce(
nullif(
greatest(abs(ST_xmin($1)), abs(ST_ymin($1)),
abs(ST_xmax($1)), abs(ST_ymax($1))),
0),
1)) ));
$$ LANGUAGE 'sql' IMMUTABLE STRICT;
-- }
-- {
-- Get tolerance for a given topology
-- and if zero the minimum for the given geometry
--
-- }{
CREATE OR REPLACE FUNCTION topology._st_mintolerance(atopology varchar, ageom Geometry)
RETURNS float8
AS $$
DECLARE
ret FLOAT8;
BEGIN
SELECT COALESCE(
NULLIF(precision, 0),
topology._st_mintolerance($2))
FROM topology.topology
WHERE name = $1 INTO ret;
IF NOT FOUND THEN
RAISE EXCEPTION
'No topology with name "%" in topology.topology', atopology;
END IF;
return ret;
END;
$$ LANGUAGE 'plpgsql' STABLE STRICT;
-- }
--{
--
-- AddNode(atopology, point, allowEdgeSplitting, setContainingFace)
--
-- Add a node primitive to a topology and get its identifier.
-- Returns an existing node at the same location, if any.
--
-- When adding a _new_ node it checks for the existance of any
-- edge crossing the given point, raising an exception if found.
--
-- The newly added nodes have no containing face.
--
-- Developed by Sandro Santilli <strk@keybit.net>
-- for Faunalia (http://www.faunalia.it) with funding from
-- Regione Toscana - Sistema Informativo per la Gestione del Territorio
-- e dell' Ambiente [RT-SIGTA].
-- For the project: "Sviluppo strumenti software per il trattamento di dati
-- geografici basati su QuantumGIS e Postgis (CIG 0494241492)"
--
-- }{
CREATE OR REPLACE FUNCTION topology.AddNode(atopology varchar, apoint geometry, allowEdgeSplitting boolean, setContainingFace boolean DEFAULT false)
RETURNS int
AS
$$
DECLARE
nodeid int;
rec RECORD;
containing_face int;
BEGIN
--
-- Atopology and apoint are required
--
IF atopology IS NULL OR apoint IS NULL THEN
RAISE EXCEPTION 'Invalid null argument';
END IF;
--
-- Apoint must be a point
--
IF substring(geometrytype(apoint), 1, 5) != 'POINT'
THEN
RAISE EXCEPTION 'Node geometry must be a point';
END IF;
--
-- Check if a coincident node already exists
--
-- We use index AND x/y equality
--
FOR rec IN EXECUTE 'SELECT node_id FROM '
|| quote_ident(atopology) || '.node ' ||
'WHERE geom && ' || quote_literal(apoint::text) || '::geometry'
||' AND ST_X(geom) = ST_X('||quote_literal(apoint::text)||'::geometry)'
||' AND ST_Y(geom) = ST_Y('||quote_literal(apoint::text)||'::geometry)'
LOOP
RETURN rec.node_id;
END LOOP;
--
-- Check if any edge crosses this node
-- (endpoints are fine)
--
FOR rec IN EXECUTE 'SELECT edge_id FROM '
|| quote_ident(atopology) || '.edge '
|| 'WHERE ST_DWithin('
|| quote_literal(apoint::text)
|| ', geom, 0) AND NOT ST_Equals('
|| quote_literal(apoint::text)
|| ', ST_StartPoint(geom)) AND NOT ST_Equals('
|| quote_literal(apoint::text)
|| ', ST_EndPoint(geom))'
LOOP
IF allowEdgeSplitting THEN
RETURN topology.ST_ModEdgeSplit(atopology, rec.edge_id, apoint);
ELSE
RAISE EXCEPTION 'An edge crosses the given node.';
END IF;
END LOOP;
IF setContainingFace THEN
containing_face := topology.GetFaceByPoint(atopology, apoint, 0);
ELSE
containing_face := NULL;
END IF;
--
-- Get new node id from sequence
--
FOR rec IN EXECUTE 'SELECT nextval(' ||
quote_literal(
quote_ident(atopology) || '.node_node_id_seq'
) || ')'
LOOP
nodeid = rec.nextval;
END LOOP;
--
-- Insert the new row
--
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.node(node_id, containing_face, geom)
VALUES(' || nodeid || ',' || coalesce(containing_face::text, 'NULL') || ','
|| quote_literal(apoint::text) || ')';
RETURN nodeid;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} AddNode
--{
--
-- AddNode(atopology, point)
--
CREATE OR REPLACE FUNCTION topology.AddNode(atopology varchar, apoint geometry)
RETURNS int
AS
$$
SELECT topology.AddNode($1, $2, false, false);
$$
LANGUAGE 'sql' VOLATILE;
--} AddNode
--{
--
-- AddEdge(atopology, line)
--
-- Add an edge primitive to a topology and get its identifier.
-- Edge endpoints will be added as nodes if missing.
-- Returns an existing edge at the same location, if any.
--
-- An exception is raised if the given line crosses an existing
-- node or interects with an existing edge on anything but endnodes.
--
-- The newly added edge has "universe" face on both sides
-- and links to itself as per next left/right edge.
-- Calling code is expected to do further linking.
--
-- Developed by Sandro Santilli <strk@keybit.net>
-- for Faunalia (http://www.faunalia.it) with funding from
-- Regione Toscana - Sistema Informativo per la Gestione del Territorio
-- e dell' Ambiente [RT-SIGTA].
-- For the project: "Sviluppo strumenti software per il trattamento di dati
-- geografici basati su QuantumGIS e Postgis (CIG 0494241492)"
--
CREATE OR REPLACE FUNCTION topology.AddEdge(atopology varchar, aline geometry)
RETURNS int
AS
$$
DECLARE
edgeid int;
rec RECORD;
ix geometry;
BEGIN
--
-- Atopology and apoint are required
--
IF atopology IS NULL OR aline IS NULL THEN
RAISE EXCEPTION 'Invalid null argument';
END IF;
--
-- Aline must be a linestring
--
IF substring(geometrytype(aline), 1, 4) != 'LINE'
THEN
RAISE EXCEPTION 'Edge geometry must be a linestring';
END IF;
--
-- Check there's no face registered in the topology
--
FOR rec IN EXECUTE 'SELECT count(face_id) FROM '
|| quote_ident(atopology) || '.face '
|| ' WHERE face_id != 0 LIMIT 1'
LOOP
IF rec.count > 0 THEN
RAISE EXCEPTION 'AddEdge can only be used against topologies with no faces defined';
END IF;
END LOOP;
--
-- Check if the edge crosses an existing node
--
FOR rec IN EXECUTE 'SELECT node_id FROM '
|| quote_ident(atopology) || '.node '
|| 'WHERE ST_Crosses('
|| quote_literal(aline::text) || '::geometry, geom'
|| ')'
LOOP
RAISE EXCEPTION 'Edge crosses node %', rec.node_id;
END LOOP;
--
-- Check if the edge intersects an existing edge
-- on anything but endpoints
--
-- Following DE-9 Intersection Matrix represent
-- the only relation we accept.
--
-- F F 1
-- F * *
-- 1 * 2
--
-- Example1: linestrings touching at one endpoint
-- FF1 F00 102
-- FF1 F** 1*2 <-- our match
--
-- Example2: linestrings touching at both endpoints
-- FF1 F0F 1F2
-- FF1 F** 1*2 <-- our match
--
FOR rec IN EXECUTE 'SELECT edge_id, geom, ST_Relate('
|| quote_literal(aline::text)
|| '::geometry, geom, 2) as im'
|| ' FROM '
|| quote_ident(atopology) || '.edge '
|| 'WHERE '
|| quote_literal(aline::text) || '::geometry && geom'
LOOP
IF ST_RelateMatch(rec.im, 'FF1F**1*2') THEN
CONTINUE; -- no interior intersection
END IF;
-- Reuse an EQUAL edge (be it closed or not)
IF ST_RelateMatch(rec.im, '1FFF*FFF2') THEN
RETURN rec.edge_id;
END IF;
-- WARNING: the constructive operation might throw an exception
BEGIN
ix = ST_Intersection(rec.geom, aline);
EXCEPTION
WHEN OTHERS THEN
RAISE NOTICE 'Could not compute intersection between input edge (%) and edge % (%)', aline::text, rec.edge_id, rec.geom::text;
END;
RAISE EXCEPTION 'Edge intersects (not on endpoints) with existing edge % at or near point %', rec.edge_id, ST_AsText(ST_PointOnSurface(ix));
END LOOP;
--
-- Get new edge id from sequence
--
FOR rec IN EXECUTE 'SELECT nextval(' ||
quote_literal(
quote_ident(atopology) || '.edge_data_edge_id_seq'
) || ')'
LOOP
edgeid = rec.nextval;
END LOOP;
--
-- Insert the new row
--
EXECUTE 'INSERT INTO '
|| quote_ident(atopology)
|| '.edge(edge_id, start_node, end_node, '
|| 'next_left_edge, next_right_edge, '
|| 'left_face, right_face, '
|| 'geom) '
|| ' VALUES('
-- edge_id
|| edgeid ||','
-- start_node
|| 'topology.addNode('
|| quote_literal(atopology)
|| ', ST_StartPoint('
|| quote_literal(aline::text)
|| ')) ,'
-- end_node
|| 'topology.addNode('
|| quote_literal(atopology)
|| ', ST_EndPoint('
|| quote_literal(aline::text)
|| ')) ,'
-- next_left_edge
|| -edgeid ||','
-- next_right_edge
|| edgeid ||','
-- left_face
|| '0,'
-- right_face
|| '0,'
-- geom
||quote_literal(aline::text)
|| ')';
RETURN edgeid;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} AddEdge
--{
--
-- AddFace(atopology, poly, [<force_new>=true])
--
-- Add a face primitive to a topology and get its identifier.
-- Returns an existing face at the same location, if any, unless
-- true is passed as the force_new argument
--
-- For a newly added face, its edges will be appropriately
-- linked (marked as left-face or right-face), and any contained
-- edges and nodes would also be marked as such.
--
-- When forcing re-registration of an existing face, no action will be
-- taken to deal with the face being substituted. Which means
-- a record about the old face and any record in the relation table
-- referencing the existing face will remain untouched, effectively
-- leaving the topology in a possibly invalid state.
-- It is up to the caller to deal with that.
--
-- The target topology is assumed to be valid (containing no
-- self-intersecting edges).
--
-- An exception is raised if:
-- o The polygon boundary is not fully defined by existing edges.
-- o The polygon overlaps an existing face.
--
-- Developed by Sandro Santilli <strk@keybit.net>
-- for Faunalia (http://www.faunalia.it) with funding from
-- Regione Toscana - Sistema Informativo per la Gestione del Territorio
-- e dell' Ambiente [RT-SIGTA].
-- For the project: "Sviluppo strumenti software per il trattamento di dati
-- geografici basati su QuantumGIS e Postgis (CIG 0494241492)"
--
CREATE OR REPLACE FUNCTION topology.AddFace(atopology varchar, apoly geometry, force_new boolean DEFAULT FALSE)
RETURNS int
AS
$$
DECLARE
bounds geometry;
symdif geometry;
faceid int;
rec RECORD;
rrec RECORD;
relate text;
right_edges int[];
left_edges int[];
all_edges geometry;
old_faceid int;
old_edgeid int;
sql text;
right_side bool;
edgeseg geometry;
p1 geometry;
p2 geometry;
p3 geometry;
loc float8;
segnum int;
numsegs int;
BEGIN
--
-- Atopology and apoly are required
--
IF atopology IS NULL OR apoly IS NULL THEN
RAISE EXCEPTION 'Invalid null argument';
END IF;
--
-- Aline must be a polygon
--
IF substring(geometrytype(apoly), 1, 4) != 'POLY'
THEN
RAISE EXCEPTION 'Face geometry must be a polygon';
END IF;
for rrec IN SELECT (ST_DumpRings(ST_ForceRHR(apoly))).geom
LOOP -- {
--
-- Find all bounds edges, forcing right-hand-rule
-- to know what's left and what's right...
--
bounds = ST_Boundary(rrec.geom);
sql := 'SELECT e.geom, e.edge_id, '
|| 'e.left_face, e.right_face FROM '
|| quote_ident(atopology) || '.edge e, (SELECT '
|| quote_literal(bounds::text)
|| '::geometry as geom) r WHERE '
|| 'r.geom && e.geom'
;
-- RAISE DEBUG 'SQL: %', sql;
FOR rec IN EXECUTE sql
LOOP -- {
--RAISE DEBUG 'Edge % has bounding box intersection', rec.edge_id;
-- Find first non-empty segment of the edge
numsegs = ST_NumPoints(rec.geom);
segnum = 1;
WHILE segnum < numsegs LOOP
p1 = ST_PointN(rec.geom, segnum);
p2 = ST_PointN(rec.geom, segnum+1);
IF ST_Distance(p1, p2) > 0 THEN
EXIT;
END IF;
segnum = segnum + 1;
END LOOP;
IF segnum = numsegs THEN
RAISE WARNING 'Edge % is collapsed', rec.edge_id;
CONTINUE; -- we don't want to spend time on it
END IF;
edgeseg = ST_MakeLine(p1, p2);
-- Skip non-covered edges
IF NOT ST_Equals(p2, ST_EndPoint(rec.geom)) THEN
IF NOT ( _ST_Intersects(bounds, p1) AND _ST_Intersects(bounds, p2) )
THEN
--RAISE DEBUG 'Edge % has points % and % not intersecting with ring bounds', rec.edge_id, st_astext(p1), st_astext(p2);
CONTINUE;
END IF;
ELSE
-- must be a 2-points only edge, let's use Covers (more expensive)
IF NOT _ST_Covers(bounds, edgeseg) THEN
--RAISE DEBUG 'Edge % is not covered by ring', rec.edge_id;
CONTINUE;
END IF;
END IF;
p3 = ST_StartPoint(bounds);
IF ST_DWithin(edgeseg, p3, 0) THEN
-- Edge segment covers ring endpoint, See bug #874
loc = ST_LineLocatePoint(edgeseg, p3);
-- WARNING: this is as robust as length of edgeseg allows...
IF loc > 0.9 THEN
-- shift last point down
p2 = ST_LineInterpolatePoint(edgeseg, loc - 0.1);
ELSIF loc < 0.1 THEN
-- shift first point up
p1 = ST_LineInterpolatePoint(edgeseg, loc + 0.1);
ELSE
-- when ring start point is in between, we swap the points
p3 = p1; p1 = p2; p2 = p3;
END IF;
END IF;
right_side = ST_LineLocatePoint(bounds, p1) <
ST_LineLocatePoint(bounds, p2);
IF right_side THEN
right_edges := array_append(right_edges, rec.edge_id);
old_faceid = rec.right_face;
ELSE
left_edges := array_append(left_edges, rec.edge_id);
old_faceid = rec.left_face;
END IF;
IF faceid IS NULL OR faceid = 0 THEN
faceid = old_faceid;
old_edgeid = rec.edge_id;
ELSIF faceid != old_faceid THEN
RAISE EXCEPTION 'Edge % has face % registered on the side of this face, while edge % has face % on the same side', rec.edge_id, old_faceid, old_edgeid, faceid;
END IF;
-- Collect all edges for final full coverage check
all_edges = ST_Collect(all_edges, rec.geom);
END LOOP; -- }
END LOOP; -- }
IF all_edges IS NULL THEN
RAISE EXCEPTION 'Found no edges on the polygon boundary';
END IF;
--
-- Check that all edges found, taken togheter,
-- fully match the ring boundary and nothing more
--
-- If the test fail either we need to add more edges
-- from the polygon ring or we need to split
-- some of the existing ones.
--
bounds = ST_Boundary(apoly);
IF NOT ST_isEmpty(ST_SymDifference(bounds, all_edges)) THEN
IF NOT ST_isEmpty(ST_Difference(bounds, all_edges)) THEN
RAISE EXCEPTION 'Polygon boundary is not fully defined by existing edges at or near point %', ST_AsText(ST_PointOnSurface(ST_Difference(bounds, all_edges)));
ELSE
RAISE EXCEPTION 'Existing edges cover polygon boundary and more at or near point % (invalid topology?)', ST_AsText(ST_PointOnSurface(ST_Difference(all_edges, bounds)));
END IF;
END IF;
IF faceid IS NOT NULL AND faceid != 0 THEN
IF NOT force_new THEN
RETURN faceid;
ELSE
END IF;
END IF;
--
-- Get new face id from sequence
--
FOR rec IN EXECUTE 'SELECT nextval(' ||
quote_literal(
quote_ident(atopology) || '.face_face_id_seq'
) || ')'
LOOP
faceid = rec.nextval;
END LOOP;
--
-- Insert new face
--
EXECUTE 'INSERT INTO '
|| quote_ident(atopology)
|| '.face(face_id, mbr) VALUES('
-- face_id
|| faceid || ','
-- minimum bounding rectangle
|| quote_literal(ST_Envelope(apoly)::text)
|| ')';
--
-- Update all edges having this face on the left
--
IF left_edges IS NOT NULL THEN
EXECUTE 'UPDATE '
|| quote_ident(atopology)
|| '.edge_data SET left_face = '
|| quote_literal(faceid)
|| ' WHERE edge_id = ANY('
|| quote_literal(left_edges)
|| ') ';
END IF;
--
-- Update all edges having this face on the right
--
IF right_edges IS NOT NULL THEN
EXECUTE 'UPDATE '
|| quote_ident(atopology)
|| '.edge_data SET right_face = '
|| quote_literal(faceid)
|| ' WHERE edge_id = ANY('
|| quote_literal(right_edges)
|| ') ';
END IF;
--
-- Set left_face/right_face of any contained edge
--
EXECUTE 'UPDATE '
|| quote_ident(atopology)
|| '.edge_data SET right_face = '
|| quote_literal(faceid)
|| ', left_face = '
|| quote_literal(faceid)
|| ' WHERE ST_Contains('
|| quote_literal(apoly::text)
|| ', geom)';
--
-- Set containing_face of any contained node
--
EXECUTE 'UPDATE '
|| quote_ident(atopology)
|| '.node SET containing_face = '
|| quote_literal(faceid)
|| ' WHERE containing_face IS NOT NULL AND ST_Contains('
|| quote_literal(apoly::text)
|| ', geom)';
RETURN faceid;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} AddFace
-- ----------------------------------------------------------------------------
--
-- Functions to incrementally populate a topology
--
-- ----------------------------------------------------------------------------
--{
-- TopoGeo_AddPoint(toponame, pointgeom, tolerance)
--
-- Add a Point into a topology, with an optional tolerance
--
CREATE OR REPLACE FUNCTION topology.TopoGeo_AddPoint(atopology varchar, apoint geometry, tolerance float8 DEFAULT 0)
RETURNS int AS
$$
DECLARE
id integer;
rec RECORD;
sql text;
prj GEOMETRY;
snapedge GEOMETRY;
snaptol FLOAT8;
tol FLOAT8;
z FLOAT8;
BEGIN
-- 0. Check arguments
IF geometrytype(apoint) != 'POINT' THEN
RAISE EXCEPTION 'Invalid geometry type (%) passed to TopoGeo_AddPoint, expected POINT', geometrytype(apoint);
END IF;
-- Get tolerance, if 0 was given
tol := COALESCE( NULLIF(tolerance, 0), topology._st_mintolerance(atopology, apoint) );
-- 1. Check if any existing node is closer than the given precision
-- and if so pick the closest
sql := 'SELECT a.node_id FROM '
|| quote_ident(atopology)
|| '.node as a WHERE ST_DWithin(a.geom,'
|| quote_literal(apoint::text) || '::geometry,'
|| tol || ') AND ST_Distance('
|| quote_literal(apoint::text)
|| '::geometry, a.geom) < ' || tol || ' ORDER BY ST_Distance('
|| quote_literal(apoint::text)
|| '::geometry, a.geom) LIMIT 1;';
EXECUTE sql INTO id;
IF id IS NOT NULL THEN
RETURN id;
END IF;
-- 2. Check if any existing edge falls within tolerance
-- and if so split it by a point projected on it
sql := 'SELECT a.edge_id, a.geom FROM '
|| quote_ident(atopology)
|| '.edge as a WHERE ST_DWithin(a.geom,'
|| quote_literal(apoint::text) || '::geometry,'
|| tol || ') ORDER BY ST_Distance('
|| quote_literal(apoint::text)
|| '::geometry, a.geom) LIMIT 1;';
EXECUTE sql INTO rec;
IF rec IS NOT NULL THEN
-- project point to line, split edge by point
prj := ST_ClosestPoint(rec.geom, apoint);
-- This is a workaround for ClosestPoint lack of Z support:
-- http://trac.osgeo.org/postgis/ticket/2033
z := ST_Z(apoint);
IF z IS NOT NULL THEN
prj := ST_Translate(ST_Force_3DZ(prj), 0, 0, z); -- no ST_SetZ ...
END IF;
IF NOT ST_Contains(rec.geom, prj) THEN
-- The tolerance must be big enough for snapping to happen
-- and small enough to snap only to the projected point.
-- Unfortunately ST_Distance returns 0 because it also uses
-- a projected point internally, so we need another way.
snaptol := topology._st_mintolerance(prj);
snapedge := ST_Snap(rec.geom, prj, snaptol);
-- Snapping currently snaps the first point below tolerance
-- so may possibly move first point. See ticket #1631
IF NOT ST_Equals(ST_StartPoint(rec.geom), ST_StartPoint(snapedge))
THEN
snapedge := ST_MakeLine(ST_StartPoint(rec.geom), snapedge);
END IF;
PERFORM topology.ST_ChangeEdgeGeom(atopology, rec.edge_id, snapedge);
END IF;
id := topology.ST_ModEdgeSplit(atopology, rec.edge_id, prj);
ELSE
id := topology.ST_AddIsoNode(atopology, NULL, apoint);
END IF;
RETURN id;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} TopoGeo_AddPoint
--{
-- TopoGeo_addLinestring(toponame, linegeom, tolerance)
--
-- Add a LineString into a topology
--
-- }{
CREATE OR REPLACE FUNCTION topology.TopoGeo_addLinestring(atopology varchar, aline geometry, tolerance float8 DEFAULT 0)
RETURNS SETOF int AS
$$
DECLARE
rec RECORD;
rec2 RECORD;
sql TEXT;
set1 GEOMETRY;
set2 GEOMETRY;
snapped GEOMETRY;
noded GEOMETRY;
start_node INTEGER;
end_node INTEGER;
id INTEGER;
inodes GEOMETRY;
iedges GEOMETRY;
tol float8;
BEGIN
-- 0. Check arguments
IF geometrytype(aline) != 'LINESTRING' THEN
RAISE EXCEPTION 'Invalid geometry type (%) passed to TopoGeo_AddLinestring, expected LINESTRING', geometrytype(aline);
END IF;
-- Get tolerance, if 0 was given
tol := COALESCE( NULLIF(tolerance, 0), topology._st_mintolerance(atopology, aline) );
-- 1. Self-node
noded := ST_UnaryUnion(aline);
-- 2. Node to edges falling within tol distance
sql := 'WITH nearby AS ( SELECT e.geom FROM '
|| quote_ident(atopology)
|| '.edge e WHERE ST_DWithin(e.geom, '
|| quote_literal(noded::text)
|| '::geometry, '
|| tol || ') ) SELECT st_collect(geom) FROM nearby;';
EXECUTE sql INTO iedges;
IF iedges IS NOT NULL THEN
snapped := ST_Snap(noded, iedges, tol);
noded := ST_Difference(snapped, iedges);
set1 := ST_Intersection(snapped, iedges);
set2 := ST_LineMerge(set1);
noded := ST_Union(noded, set2);
END IF;
-- 2.1. Node with existing nodes within tol
-- TODO: check if we should be only considering _isolated_ nodes!
sql := 'WITH nearby AS ( SELECT n.geom FROM '
|| quote_ident(atopology)
|| '.node n WHERE ST_DWithin(n.geom, '
|| quote_literal(noded::text)
|| '::geometry, '
|| tol || ') ) SELECT st_collect(geom) FROM nearby;';
EXECUTE sql INTO inodes;
IF inodes IS NOT NULL THEN -- {
-- TODO: consider snapping once against all elements
--- (rather than once with edges and once with nodes)
noded := ST_Snap(noded, inodes, tol);
FOR rec IN SELECT (ST_Dump(inodes)).geom
LOOP
-- Use the node to split edges
SELECT ST_Collect(geom)
FROM ST_Dump(ST_Split(noded, rec.geom))
INTO STRICT noded;
END LOOP;
-- re-node to account for ST_Snap introduced self-intersections
-- See http://trac.osgeo.org/postgis/ticket/1714
-- TODO: consider running UnaryUnion once after all noding
noded := ST_UnaryUnion(noded);
END IF; -- }
-- 3. For each (now-noded) segment, insert an edge
FOR rec IN SELECT (ST_Dump(noded)).geom LOOP
-- TODO: skip point elements ?
start_node := topology.TopoGeo_AddPoint(atopology,
ST_StartPoint(rec.geom),
tol);
end_node := topology.TopoGeo_AddPoint(atopology,
ST_EndPoint(rec.geom),
tol);
-- Added endpoints may have drifted due to tolerance, so
-- we need to re-snap the edge to the new nodes before adding it
sql := 'SELECT n1.geom as sn, n2.geom as en FROM ' || quote_ident(atopology)
|| '.node n1, ' || quote_ident(atopology)
|| '.node n2 WHERE n1.node_id = '
|| start_node || ' AND n2.node_id = ' || end_node;
EXECUTE sql INTO STRICT rec2;
snapped := ST_SetPoint(
ST_SetPoint(rec.geom, ST_NPoints(rec.geom)-1, rec2.en),
0, rec2.sn);
snapped := ST_CollectionExtract(ST_MakeValid(snapped), 2);
-- Check if the so-snapped edge collapsed (see #1650)
IF ST_IsEmpty(snapped) THEN
CONTINUE;
END IF;
-- Check if the so-snapped edge _now_ exists
sql := 'SELECT edge_id FROM ' || quote_ident(atopology)
|| '.edge_data WHERE ST_Equals(geom, ' || quote_literal(snapped::text)
|| '::geometry)';
EXECUTE sql INTO id;
IF id IS NULL THEN
id := topology.ST_AddEdgeModFace(atopology, start_node, end_node,
snapped);
ELSE
END IF;
RETURN NEXT id;
END LOOP;
RETURN;
END
$$
LANGUAGE 'plpgsql';
--} TopoGeo_addLinestring
--{
-- TopoGeo_AddPolygon(toponame, polygeom, tolerance)
--
-- Add a Polygon into a topology
--
-- }{
CREATE OR REPLACE FUNCTION topology.TopoGeo_AddPolygon(atopology varchar, apoly geometry, tolerance float8 DEFAULT 0)
RETURNS SETOF int AS
$$
DECLARE
boundary GEOMETRY;
fgeom GEOMETRY;
rec RECORD;
edges INTEGER[];
sql TEXT;
tol FLOAT8;
BEGIN
-- 0. Check arguments
IF geometrytype(apoly) != 'POLYGON' THEN
RAISE EXCEPTION 'Invalid geometry type (%) passed to TopoGeo_AddPolygon, expected POLYGON', geometrytype(apoly);
END IF;
-- Get tolerance, if 0 was given
tol := COALESCE( NULLIF(tolerance, 0), topology._st_mintolerance(atopology, apoly) );
-- 1. Extract boundary
boundary := ST_Boundary(apoly);
-- 2. Add boundaries as edges
FOR rec IN SELECT (ST_Dump(boundary)).geom LOOP
edges := array_cat(edges, array_agg(x)) FROM ( select topology.TopoGeo_addLinestring(atopology, rec.geom, tol) as x ) as foo;
END LOOP;
-- 3. Find faces covered by input polygon
-- NOTE: potential snapping changed polygon edges
sql := 'SELECT f.face_id FROM ' || quote_ident(atopology)
|| '.face f WHERE f.mbr && '
|| quote_literal(apoly::text)
|| '::geometry';
FOR rec IN EXECUTE sql LOOP
-- check for actual containment
fgeom := ST_PointOnSurface(topology.ST_GetFaceGeometry(atopology, rec.face_id));
IF NOT ST_Covers(apoly, fgeom) THEN
CONTINUE;
END IF;
RETURN NEXT rec.face_id;
END LOOP;
END
$$
LANGUAGE 'plpgsql';
--} TopoGeo_AddPolygon
--{
-- TopoGeo_AddGeometry(toponame, geom, tolerance)
--
-- Add a Geometry into a topology
--
CREATE OR REPLACE FUNCTION topology.TopoGeo_AddGeometry(atopology varchar, ageom geometry, tolerance float8 DEFAULT 0)
RETURNS void AS
$$
DECLARE
BEGIN
RAISE EXCEPTION 'TopoGeo_AddGeometry not implemented yet';
END
$$
LANGUAGE 'plpgsql';
--} TopoGeo_AddGeometry
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2011 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- Functions used to polygonize topology edges
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
--
-- int Polygonize(toponame)
--
-- TODO: allow restricting polygonization to a bounding box
--
-- }{
CREATE OR REPLACE FUNCTION topology.polygonize(toponame varchar)
RETURNS text
AS
$$
DECLARE
sql text;
rec RECORD;
faces int;
BEGIN
sql := 'SELECT (st_dump(st_polygonize(geom))).geom from '
|| quote_ident(toponame) || '.edge_data';
faces = 0;
FOR rec in EXECUTE sql LOOP
BEGIN
PERFORM topology.AddFace(toponame, rec.geom);
faces = faces + 1;
EXCEPTION
WHEN OTHERS THEN
RAISE WARNING 'Error registering face % (%)', rec.geom, SQLERRM;
END;
END LOOP;
RETURN faces || ' faces registered';
END
$$
LANGUAGE 'plpgsql';
--} Polygonize(toponame)
-- TopoElement
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2010, 2011 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- TopoElement management functions
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- Developed by Sandro Santilli <strk@keybit.net>
-- for Faunalia (http://www.faunalia.it) with funding from
-- Regione Toscana - Sistema Informativo per la Gestione del Territorio
-- e dell' Ambiente [RT-SIGTA].
-- For the project: "Sviluppo strumenti software per il trattamento di dati
-- geografici basati su QuantumGIS e Postgis (CIG 0494241492)"
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
--
-- TopoElementArray TopoElementArray_append(<TopoElement>)
--
-- Append a TopoElement to a TopoElementArray
--
CREATE OR REPLACE FUNCTION topology.TopoElementArray_append(topology.TopoElementArray, topology.TopoElement)
RETURNS topology.TopoElementArray
AS
$$
SELECT CASE
WHEN $1 IS NULL THEN
topology.TopoElementArray('{' || $2::text || '}')
ELSE
topology.TopoElementArray($1::int[][]||$2::int[])
END;
$$
LANGUAGE 'sql' IMMUTABLE;
--} TopoElementArray_append
--{
--
-- TopoElementArray TopoElementArray_agg(<setof TopoElement>)
--
-- Aggregates a set of TopoElement values into a TopoElementArray
--
-- Availability: 2.0.0
DROP AGGREGATE IF EXISTS topology.TopoElementArray_agg(topology.TopoElement);
CREATE AGGREGATE topology.TopoElementArray_agg(
sfunc = topology.TopoElementArray_append,
basetype = topology.TopoElement,
stype = topology.TopoElementArray
);
--} TopoElementArray_agg
-- TopoGeometry
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2011 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-- {
-- Override geometrytype() for topogeometry objects
--
-- Note: For performance reasons, this function always assumes
-- TopoGeometry are of the MULTI type. This may not always
-- be the case if you convert the TopoGeometry to an actual
-- Geometry.
--
-- }{
CREATE OR REPLACE FUNCTION topology.GeometryType(tg topology.TopoGeometry)
RETURNS text
AS
$$
SELECT CASE
WHEN type($1) = 1 THEN 'MULTIPOINT'
WHEN type($1) = 2 THEN 'MULTILINESTRING'
WHEN type($1) = 3 THEN 'MULTIPOLYGON'
WHEN type($1) = 4 THEN 'GEOMETRYCOLLECTION'
ELSE 'UNEXPECTED'
END;
$$
LANGUAGE 'sql' STABLE STRICT;
-- }
-- {
-- Override st_geometrytype() for topogeometry objects
--
-- Note: For performance reasons, this function always assumes
-- TopoGeometry are of the MULTI type. This may not always
-- be the case if you convert the TopoGeometry to an actual
-- Geometry.
--
-- }{
CREATE OR REPLACE FUNCTION topology.ST_GeometryType(tg topology.TopoGeometry)
RETURNS text
AS
$$
SELECT CASE
WHEN type($1) = 1 THEN 'ST_MultiPoint'
WHEN type($1) = 2 THEN 'ST_MultiLinestring'
WHEN type($1) = 3 THEN 'ST_MultiPolygon'
WHEN type($1) = 4 THEN 'ST_GeometryCollection'
ELSE 'ST_Unexpected'
END;
$$
LANGUAGE 'sql' STABLE STRICT;
-- }
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2012 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-- {
-- Clear the contents of a TopoGeometry
--
-- }{
CREATE OR REPLACE FUNCTION topology.clearTopoGeom(tg topology.TopoGeometry)
RETURNS topology.TopoGeometry
AS
$$
DECLARE
topology_info RECORD;
sql TEXT;
BEGIN
-- Get topology information
SELECT id, name FROM topology.topology
INTO topology_info
WHERE id = topology_id(tg);
IF NOT FOUND THEN
RAISE EXCEPTION 'No topology with id "%" in topology.topology', topology_id(tg);
END IF;
-- Clear the TopoGeometry contents
sql := 'DELETE FROM ' || quote_ident(topology_info.name)
|| '.relation WHERE layer_id = '
|| layer_id(tg)
|| ' AND topogeo_id = '
|| id(tg);
EXECUTE sql;
RETURN tg;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
-- }
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2012 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-- {
-- Get a simplified geometry version from a TopoGeometry
--
-- Performs Douglas Peucker algorithm on each edge composing
-- the given TopoGeometry
--
-- }{
CREATE OR REPLACE FUNCTION topology.ST_Simplify(tg topology.TopoGeometry, tolerance float8)
RETURNS geometry
AS
$$
DECLARE
topology_info RECORD;
layer_info RECORD;
child_layer_info RECORD;
geom geometry;
sql TEXT;
BEGIN
-- Get topology information
SELECT id, name FROM topology.topology
INTO topology_info
WHERE id = tg.topology_id;
IF NOT FOUND THEN
RAISE EXCEPTION 'No topology with id "%" in topology.topology', tg.topology_id;
END IF;
-- Get layer info
SELECT * FROM topology.layer
WHERE topology_id = tg.topology_id
AND layer_id = tg.layer_id
INTO layer_info;
IF NOT FOUND THEN
RAISE EXCEPTION 'Could not find TopoGeometry layer % in topology %', tg.layer_id, tg.topology_id;
END IF;
--
-- If this feature layer is on any level > 0 we will
-- compute the topological union of all simplified child
-- features in fact recursing.
--
IF layer_info.level > 0 THEN -- {
-- Get child layer info
SELECT * FROM topology.layer WHERE layer_id = layer_info.child_id
AND topology_id = tg.topology_id
INTO child_layer_info;
IF NOT FOUND THEN
RAISE EXCEPTION 'Invalid layer % in topology % (unexistent child layer %)', tg.layer_id, tg.topology_id, layer_info.child_id;
END IF;
sql := 'SELECT st_multi(st_union(topology.ST_Simplify('
|| quote_ident(child_layer_info.feature_column)
|| ',' || tolerance || '))) as geom FROM '
|| quote_ident(child_layer_info.schema_name) || '.'
|| quote_ident(child_layer_info.table_name)
|| ', ' || quote_ident(topology_info.name) || '.relation pr'
|| ' WHERE '
|| ' pr.topogeo_id = ' || tg.id
|| ' AND '
|| ' pr.layer_id = ' || tg.layer_id
|| ' AND '
|| ' id('||quote_ident(child_layer_info.feature_column)
|| ') = pr.element_id '
|| ' AND '
|| 'layer_id('||quote_ident(child_layer_info.feature_column)
|| ') = pr.element_type ';
RAISE DEBUG '%', sql;
EXECUTE sql INTO geom;
ELSIF tg.type = 3 THEN -- [multi]polygon -- }{
-- TODO: use ST_GetFaceEdges
-- TODO: is st_unaryunion needed?
sql := 'SELECT st_multi(st_unaryunion(ST_BuildArea(ST_Node(ST_Collect(ST_Simplify(geom, '
|| tolerance || ')))))) as geom FROM '
|| quote_ident(topology_info.name)
|| '.edge_data e, '
|| quote_ident(topology_info.name)
|| '.relation r WHERE ( e.left_face = r.element_id'
|| ' OR e.right_face = r.element_id )'
|| ' AND r.topogeo_id = ' || tg.id
|| ' AND r.layer_id = ' || tg.layer_id
|| ' AND element_type = 3 ';
RAISE DEBUG '%', sql;
EXECUTE sql INTO geom;
ELSIF tg.type = 2 THEN -- [multi]line -- }{
sql :=
'SELECT st_multi(ST_LineMerge(ST_Node(ST_Collect(ST_Simplify(e.geom,'
|| tolerance || '))))) as g FROM '
|| quote_ident(topology_info.name) || '.edge e, '
|| quote_ident(topology_info.name) || '.relation r '
|| ' WHERE r.topogeo_id = ' || tg.id
|| ' AND r.layer_id = ' || tg.layer_id
|| ' AND r.element_type = 2 '
|| ' AND abs(r.element_id) = e.edge_id';
EXECUTE sql INTO geom;
ELSIF tg.type = 1 THEN -- [multi]point -- }{
-- Can't simplify points...
geom := topology.Geometry(tg);
ELSIF tg.type = 4 THEN -- mixed collection -- }{
sql := 'WITH areas AS ( '
|| 'SELECT st_multi(st_union(ST_BuildArea(ST_Node(ST_Collect(ST_Simplify(geom, '
|| tolerance || ')))) as geom FROM '
|| quote_ident(topology_info.name)
|| '.edge_data e, '
|| quote_ident(topology_info.name)
|| '.relation r WHERE ( e.left_face = r.element_id'
|| ' OR e.right_face = r.element_id )'
|| ' AND r.topogeo_id = ' || tg.id
|| ' AND r.layer_id = ' || tg.layer_id
|| ' AND element_type = 3 ), '
|| 'lines AS ( '
|| 'SELECT st_multi(ST_LineMerge(ST_Collect(ST_Simplify(e.geom,'
|| tolerance || ')))) as g FROM '
|| quote_ident(topology_info.name) || '.edge e, '
|| quote_ident(topology_info.name) || '.relation r '
|| ' WHERE r.topogeo_id = ' || tg.id
|| ' AND r.layer_id = ' || tg.layer_id
|| ' AND r.element_type = 2 '
|| ' AND abs(r.element_id) = e.edge_id ), '
|| ' points as ( SELECT st_union(n.geom) as g FROM '
|| quote_ident(topology_info.name) || '.node n, '
|| quote_ident(topology_info.name) || '.relation r '
|| ' WHERE r.topogeo_id = ' || tg.id
|| ' AND r.layer_id = ' || tg.layer_id
|| ' AND r.element_type = 1 '
|| ' AND r.element_id = n.node_id ), '
|| ' un as ( SELECT g FROM areas UNION ALL SELECT g FROM lines '
|| ' UNION ALL SELECT g FROM points ) '
|| 'SELECT ST_Multi(ST_Collect(g)) FROM un';
EXECUTE sql INTO geom;
ELSE -- }{
RAISE EXCEPTION 'Invalid TopoGeometries (unknown type %)', tg.type;
END IF; -- }
RETURN geom;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
-- }
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2011-2012 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-- {
-- Convert a simple geometry to a topologically-defined one
--
-- See http://trac.osgeo.org/postgis/ticket/1017
--
-- }{
CREATE OR REPLACE FUNCTION topology.toTopoGeom(ageom Geometry, atopology varchar, alayer int, atolerance float8 DEFAULT 0)
RETURNS topology.TopoGeometry
AS
$$
DECLARE
layer_info RECORD;
topology_info RECORD;
rec RECORD;
rec2 RECORD;
tg topology.TopoGeometry;
elems INT[][];
elem INT[];
sql TEXT;
typ TEXT;
BEGIN
-- Get topology information
BEGIN
SELECT *
FROM topology.topology
INTO STRICT topology_info WHERE name = atopology;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'No topology with name "%" in topology.topology',
atopology;
END;
-- Get layer information
BEGIN
SELECT *, CASE
WHEN feature_type = 1 THEN 'puntal'
WHEN feature_type = 2 THEN 'lineal'
WHEN feature_type = 3 THEN 'areal'
WHEN feature_type = 4 THEN 'mixed'
ELSE 'unexpected_'||feature_type
END as typename
FROM topology.layer l
INTO STRICT layer_info
WHERE l.layer_id = alayer
AND l.topology_id = topology_info.id;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'No layer with id "%" in topology "%"',
alayer, atopology;
END;
-- Can't convert to a hierarchical topogeometry
IF layer_info.level > 0 THEN
RAISE EXCEPTION 'Layer "%" of topology "%" is hierarchical, cannot convert to it.',
alayer, atopology;
END IF;
--
-- Check type compatibility and create empty TopoGeometry
-- 1:puntal, 2:lineal, 3:areal, 4:collection
--
typ = geometrytype(ageom);
IF typ = 'GEOMETRYCOLLECTION' THEN
-- A collection can only go collection layer
IF layer_info.feature_type != 4 THEN
RAISE EXCEPTION
'Layer "%" of topology "%" is %, cannot hold a collection feature.',
layer_info.layer_id, topology_info.name, layer_info.typename;
END IF;
tg := topology.CreateTopoGeom(atopology, 4, alayer);
ELSIF typ = 'POINT' OR typ = 'MULTIPOINT' THEN -- puntal
-- A point can go in puntal or collection layer
IF layer_info.feature_type != 4 and layer_info.feature_type != 1 THEN
RAISE EXCEPTION
'Layer "%" of topology "%" is %, cannot hold a puntal feature.',
layer_info.layer_id, topology_info.name, layer_info.typename;
END IF;
tg := topology.CreateTopoGeom(atopology, 1, alayer);
ELSIF typ = 'LINESTRING' or typ = 'MULTILINESTRING' THEN -- lineal
-- A line can go in lineal or collection layer
IF layer_info.feature_type != 4 and layer_info.feature_type != 2 THEN
RAISE EXCEPTION
'Layer "%" of topology "%" is %, cannot hold a lineal feature.',
layer_info.layer_id, topology_info.name, layer_info.typename;
END IF;
tg := topology.CreateTopoGeom(atopology, 2, alayer);
ELSIF typ = 'POLYGON' OR typ = 'MULTIPOLYGON' THEN -- areal
-- An area can go in areal or collection layer
IF layer_info.feature_type != 4 and layer_info.feature_type != 3 THEN
RAISE EXCEPTION
'Layer "%" of topology "%" is %, cannot hold an areal feature.',
layer_info.layer_id, topology_info.name, layer_info.typename;
END IF;
tg := topology.CreateTopoGeom(atopology, 3, alayer);
ELSE
-- Should never happen
RAISE EXCEPTION
'Unsupported feature type %', typ;
END IF;
tg := topology.toTopoGeom(ageom, tg, atolerance);
RETURN tg;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
-- }
-- {
-- Convert a simple geometry to a topologically-defined one
-- adding its components to a pre-existing TopoGeometry
--
-- }{
CREATE OR REPLACE FUNCTION topology.toTopoGeom(ageom Geometry, tg topology.TopoGeometry, atolerance float8 DEFAULT 0)
RETURNS topology.TopoGeometry
AS
$$
DECLARE
layer_info RECORD;
topology_info RECORD;
rec RECORD;
rec2 RECORD;
elem INT[];
elems INT[][];
sql TEXT;
typ TEXT;
tolerance FLOAT8;
alayer INT;
atopology TEXT;
BEGIN
RAISE NOTICE 'TopoGeometry is "%", its topology_id is "%"', tg, topology_id(tg);
-- Get topology information
SELECT id, name FROM topology.topology
INTO topology_info
WHERE id = topology_id(tg);
IF NOT FOUND THEN
RAISE EXCEPTION 'No topology with id "%" in topology.topology',
topology_id(tg);
END IF;
alayer := layer_id(tg);
atopology := topology_info.name;
-- Get tolerance, if 0 was given
tolerance := COALESCE( NULLIF(atolerance, 0), topology._st_mintolerance(topology_info.name, ageom) );
-- Get layer information
BEGIN
SELECT *, CASE
WHEN feature_type = 1 THEN 'puntal'
WHEN feature_type = 2 THEN 'lineal'
WHEN feature_type = 3 THEN 'areal'
WHEN feature_type = 4 THEN 'mixed'
ELSE 'unexpected_'||feature_type
END as typename
FROM topology.layer l
INTO STRICT layer_info
WHERE l.layer_id = layer_id(tg)
AND l.topology_id = topology_info.id;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'No layer with id "%" in topology "%"',
alayer, atopology;
END;
-- Can't convert to a hierarchical topogeometry
IF layer_info.level > 0 THEN
RAISE EXCEPTION 'Layer "%" of topology "%" is hierarchical, cannot convert a simple geometry to it.',
alayer, atopology;
END IF;
--
-- Check type compatibility and set TopoGeometry type
-- 1:puntal, 2:lineal, 3:areal, 4:collection
--
typ = geometrytype(ageom);
IF typ = 'GEOMETRYCOLLECTION' THEN
-- A collection can only go to collection layer
IF layer_info.feature_type != 4 THEN
RAISE EXCEPTION
'Layer "%" of topology "%" is %, cannot hold a collection feature.',
layer_info.layer_id, topology_info.name, layer_info.typename;
END IF;
tg.type := 4;
ELSIF typ = 'POINT' OR typ = 'MULTIPOINT' THEN -- puntal
-- A point can go in puntal or collection layer
IF layer_info.feature_type != 4 and layer_info.feature_type != 1 THEN
RAISE EXCEPTION
'Layer "%" of topology "%" is %, cannot hold a puntal feature.',
layer_info.layer_id, topology_info.name, layer_info.typename;
END IF;
tg.type := 1;
ELSIF typ = 'LINESTRING' or typ = 'MULTILINESTRING' THEN -- lineal
-- A line can go in lineal or collection layer
IF layer_info.feature_type != 4 and layer_info.feature_type != 2 THEN
RAISE EXCEPTION
'Layer "%" of topology "%" is %, cannot hold a lineal feature.',
layer_info.layer_id, topology_info.name, layer_info.typename;
END IF;
tg.type := 2;
ELSIF typ = 'POLYGON' OR typ = 'MULTIPOLYGON' THEN -- areal
-- An area can go in areal or collection layer
IF layer_info.feature_type != 4 and layer_info.feature_type != 3 THEN
RAISE EXCEPTION
'Layer "%" of topology "%" is %, cannot hold an areal feature.',
layer_info.layer_id, topology_info.name, layer_info.typename;
END IF;
tg.type := 3;
ELSE
-- Should never happen
RAISE EXCEPTION
'Unexpected feature dimension %', ST_Dimension(ageom);
END IF;
-- Now that we have an empty topogeometry, we loop over distinct components
-- and add them to the definition of it. We add them as soon
-- as possible so that each element can further edit the
-- definition by splitting
FOR rec IN SELECT id(tg), alayer as lyr,
geom, ST_Dimension(geom) as dims
FROM (SELECT (ST_Dump(ageom)).geom) as f
WHERE NOT ST_IsEmpty(geom)
LOOP
FOR rec2 IN SELECT CASE
WHEN rec.dims = 0 THEN
topology.topogeo_addPoint(atopology, rec.geom, tolerance)
WHEN rec.dims = 1 THEN
topology.topogeo_addLineString(atopology, rec.geom, tolerance)
WHEN rec.dims = 2 THEN
topology.topogeo_addPolygon(atopology, rec.geom, tolerance)
END as primitive
LOOP
elem := ARRAY[rec.dims+1, rec2.primitive];
IF elems @> ARRAY[elem] THEN
ELSE
elems := elems || elem;
-- TODO: consider use a single INSERT statement for the whole thing
sql := 'INSERT INTO ' || quote_ident(atopology)
|| '.relation(topogeo_id, layer_id, element_type, element_id) VALUES ('
|| rec.id || ',' || rec.lyr || ',' || rec.dims+1
|| ',' || rec2.primitive || ')'
-- NOTE: we're avoiding duplicated rows here
|| ' EXCEPT SELECT ' || rec.id || ', ' || rec.lyr
|| ', element_type, element_id FROM '
|| quote_ident(topology_info.name)
|| '.relation WHERE layer_id = ' || rec.lyr
|| ' AND topogeo_id = ' || rec.id;
EXECUTE sql;
END IF;
END LOOP;
END LOOP;
RETURN tg;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
-- }
-- Exports
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2010, 2011 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- Functions used for topology GML output
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- Developed by Sandro Santilli <strk@keybit.net>
-- for Faunalia (http://www.faunalia.it) with funding from
-- Regione Toscana - Sistema Informativo per la Gestione del Territorio
-- e dell' Ambiente [RT-SIGTA].
-- For the project: "Sviluppo strumenti software per il trattamento di dati
-- geografici basati su QuantumGIS e Postgis (CIG 0494241492)"
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
--
-- INTERNAL FUNCTION
-- text _AsGMLNode(id, point, nsprefix, precision, options, idprefix, gmlver)
--
-- }{
CREATE OR REPLACE FUNCTION topology._AsGMLNode(id int, point geometry, nsprefix_in text, prec int, options int, idprefix text, gmlver int)
RETURNS text
AS
$$
DECLARE
nsprefix text;
gml text;
BEGIN
nsprefix := 'gml:';
IF NOT nsprefix_in IS NULL THEN
IF nsprefix_in = '' THEN
nsprefix = nsprefix_in;
ELSE
nsprefix = nsprefix_in || ':';
END IF;
END IF;
gml := '<' || nsprefix || 'Node ' || nsprefix
|| 'id="' || idprefix || 'N' || id || '"';
IF point IS NOT NULL THEN
gml = gml || '>'
|| '<' || nsprefix || 'pointProperty>'
|| ST_AsGML(gmlver, point, prec, options, nsprefix_in)
|| '</' || nsprefix || 'pointProperty>'
|| '</' || nsprefix || 'Node>';
ELSE
gml = gml || '/>';
END IF;
RETURN gml;
END
$$
LANGUAGE 'plpgsql' IMMUTABLE;
--} _AsGMLNode(id, point, nsprefix, precision, options, idprefix, gmlVersion)
--{
--
-- INTERNAL FUNCTION
-- text _AsGMLEdge(edge_id, start_node, end_node, line, visitedTable,
-- nsprefix, precision, options, idprefix, gmlVersion)
--
-- }{
CREATE OR REPLACE FUNCTION topology._AsGMLEdge(edge_id int, start_node int,end_node int, line geometry, visitedTable regclass, nsprefix_in text, prec int, options int, idprefix text, gmlver int)
RETURNS text
AS
$$
DECLARE
visited bool;
nsprefix text;
gml text;
BEGIN
nsprefix := 'gml:';
IF nsprefix_in IS NOT NULL THEN
IF nsprefix_in = '' THEN
nsprefix = nsprefix_in;
ELSE
nsprefix = nsprefix_in || ':';
END IF;
END IF;
gml := '<' || nsprefix || 'Edge ' || nsprefix
|| 'id="' || idprefix || 'E' || edge_id || '">';
-- Start node
gml = gml || '<' || nsprefix || 'directedNode orientation="-"';
-- Do visited bookkeeping if visitedTable was given
visited = NULL;
IF visitedTable IS NOT NULL THEN
EXECUTE 'SELECT true FROM '
|| visitedTable::text
|| ' WHERE element_type = 1 AND element_id = '
|| start_node LIMIT 1 INTO visited;
IF visited IS NOT NULL THEN
gml = gml || ' xlink:href="#' || idprefix || 'N' || start_node || '" />';
ELSE
-- Mark as visited
EXECUTE 'INSERT INTO ' || visitedTable::text
|| '(element_type, element_id) VALUES (1, '
|| start_node || ')';
END IF;
END IF;
IF visited IS NULL THEN
gml = gml || '>';
gml = gml || topology._AsGMLNode(start_node, NULL, nsprefix_in,
prec, options, idprefix, gmlver);
gml = gml || '</' || nsprefix || 'directedNode>';
END IF;
-- End node
gml = gml || '<' || nsprefix || 'directedNode';
-- Do visited bookkeeping if visitedTable was given
visited = NULL;
IF visitedTable IS NOT NULL THEN
EXECUTE 'SELECT true FROM '
|| visitedTable::text
|| ' WHERE element_type = 1 AND element_id = '
|| end_node LIMIT 1 INTO visited;
IF visited IS NOT NULL THEN
gml = gml || ' xlink:href="#' || idprefix || 'N' || end_node || '" />';
ELSE
-- Mark as visited
EXECUTE 'INSERT INTO ' || visitedTable::text
|| '(element_type, element_id) VALUES (1, '
|| end_node || ')';
END IF;
END IF;
IF visited IS NULL THEN
gml = gml || '>';
gml = gml || topology._AsGMLNode(end_node, NULL, nsprefix_in,
prec, options, idprefix, gmlver);
gml = gml || '</' || nsprefix || 'directedNode>';
END IF;
IF line IS NOT NULL THEN
gml = gml || '<' || nsprefix || 'curveProperty>'
|| ST_AsGML(gmlver, line, prec, options, nsprefix_in)
|| '</' || nsprefix || 'curveProperty>';
END IF;
gml = gml || '</' || nsprefix || 'Edge>';
RETURN gml;
END
$$
LANGUAGE 'plpgsql' VOLATILE; -- writes into visitedTable
--} _AsGMLEdge(id, start_node, end_node, line, visitedTable, nsprefix, precision, options, idprefix, gmlver)
--{
--
-- INTERNAL FUNCTION
-- text _AsGMLFace(toponame, face_id, visitedTable,
-- nsprefix, precision, options, idprefix, gmlVersion)
--
-- }{
CREATE OR REPLACE FUNCTION topology._AsGMLFace(toponame text, face_id int, visitedTable regclass, nsprefix_in text, prec int, options int, idprefix text, gmlver int)
RETURNS text
AS
$$
DECLARE
visited bool;
nsprefix text;
gml text;
rec RECORD;
rec2 RECORD;
bounds geometry;
BEGIN
nsprefix := 'gml:';
IF nsprefix_in IS NOT NULL THEN
IF nsprefix_in = '' THEN
nsprefix = nsprefix_in;
ELSE
nsprefix = nsprefix_in || ':';
END IF;
END IF;
gml := '<' || nsprefix || 'Face ' || nsprefix
|| 'id="' || idprefix || 'F' || face_id || '">';
-- Construct the face geometry, then for each polygon:
FOR rec IN SELECT (ST_DumpRings((ST_Dump(ST_ForceRHR(
topology.ST_GetFaceGeometry(toponame, face_id)))).geom)).geom
LOOP
-- Contents of a directed face are the list of edges
-- that cover the specific ring
bounds = ST_Boundary(rec.geom);
FOR rec2 IN EXECUTE
'SELECT e.*, ST_LineLocatePoint('
|| quote_literal(bounds::text)
|| ', ST_LineInterpolatePoint(e.geom, 0.2)) as pos'
|| ', ST_LineLocatePoint('
|| quote_literal(bounds::text)
|| ', ST_LineInterpolatePoint(e.geom, 0.8)) as pos2 FROM '
|| quote_ident(toponame)
|| '.edge e WHERE ( e.left_face = ' || face_id
|| ' OR e.right_face = ' || face_id
|| ') AND ST_Covers('
|| quote_literal(bounds::text)
|| ', e.geom) ORDER BY pos'
LOOP
gml = gml || '<' || nsprefix || 'directedEdge';
-- if this edge goes in same direction to the
-- ring bounds, make it with negative orientation
IF rec2.pos2 > rec2.pos THEN -- edge goes in same direction
gml = gml || ' orientation="-"';
END IF;
-- Do visited bookkeeping if visitedTable was given
IF visitedTable IS NOT NULL THEN
EXECUTE 'SELECT true FROM '
|| visitedTable::text
|| ' WHERE element_type = 2 AND element_id = '
|| rec2.edge_id LIMIT 1 INTO visited;
IF visited THEN
-- Use xlink:href if visited
gml = gml || ' xlink:href="#' || idprefix || 'E'
|| rec2.edge_id || '" />';
CONTINUE;
ELSE
-- Mark as visited otherwise
EXECUTE 'INSERT INTO ' || visitedTable::text
|| '(element_type, element_id) VALUES (2, '
|| rec2.edge_id || ')';
END IF;
END IF;
gml = gml || '>';
gml = gml || topology._AsGMLEdge(rec2.edge_id, rec2.start_node,
rec2.end_node, rec2.geom,
visitedTable, nsprefix_in,
prec, options, idprefix, gmlver);
gml = gml || '</' || nsprefix || 'directedEdge>';
END LOOP;
END LOOP;
gml = gml || '</' || nsprefix || 'Face>';
RETURN gml;
END
$$
LANGUAGE 'plpgsql' VOLATILE; -- writes into visited table
--} _AsGMLFace(toponame, id, visitedTable, nsprefix, precision, options, idprefix, gmlver)
--{
--
-- API FUNCTION
--
-- text AsGML(TopoGeometry, nsprefix, precision, options, visitedTable, idprefix, gmlver)
--
-- }{
CREATE OR REPLACE FUNCTION topology.AsGML(tg topology.TopoGeometry, nsprefix_in text, precision_in int, options_in int, visitedTable regclass, idprefix text, gmlver int)
RETURNS text
AS
$$
DECLARE
nsprefix text;
precision int;
options int;
visited bool;
toponame text;
gml text;
sql text;
rec RECORD;
rec2 RECORD;
BEGIN
nsprefix := 'gml:';
IF nsprefix_in IS NOT NULL THEN
IF nsprefix_in = '' THEN
nsprefix = nsprefix_in;
ELSE
nsprefix = nsprefix_in || ':';
END IF;
END IF;
precision := 15;
IF precision_in IS NOT NULL THEN
precision = precision_in;
END IF;
options := 1;
IF options_in IS NOT NULL THEN
options = options_in;
END IF;
-- Get topology name (for subsequent queries)
SELECT name FROM topology.topology into toponame
WHERE id = tg.topology_id;
-- Puntual TopoGeometry
IF tg.type = 1 THEN
gml = '<' || nsprefix || 'TopoPoint>';
-- For each defining node, print a directedNode
FOR rec IN EXECUTE 'SELECT r.element_id, n.geom from '
|| quote_ident(toponame) || '.relation r LEFT JOIN '
|| quote_ident(toponame) || '.node n ON (r.element_id = n.node_id)'
|| ' WHERE r.layer_id = ' || tg.layer_id
|| ' AND r.topogeo_id = ' || tg.id
LOOP
gml = gml || '<' || nsprefix || 'directedNode';
-- Do visited bookkeeping if visitedTable was given
IF visitedTable IS NOT NULL THEN
EXECUTE 'SELECT true FROM '
|| visitedTable::text
|| ' WHERE element_type = 1 AND element_id = '
|| rec.element_id LIMIT 1 INTO visited;
IF visited IS NOT NULL THEN
gml = gml || ' xlink:href="#' || idprefix || 'N' || rec.element_id || '" />';
CONTINUE;
ELSE
-- Mark as visited
EXECUTE 'INSERT INTO ' || visitedTable::text
|| '(element_type, element_id) VALUES (1, '
|| rec.element_id || ')';
END IF;
END IF;
gml = gml || '>';
gml = gml || topology._AsGMLNode(rec.element_id, rec.geom, nsprefix_in, precision, options, idprefix, gmlver);
gml = gml || '</' || nsprefix || 'directedNode>';
END LOOP;
gml = gml || '</' || nsprefix || 'TopoPoint>';
RETURN gml;
ELSIF tg.type = 2 THEN -- lineal
gml = '<' || nsprefix || 'TopoCurve>';
FOR rec IN SELECT (ST_Dump(topology.Geometry(tg))).geom
LOOP
FOR rec2 IN EXECUTE
'SELECT e.*, ST_LineLocatePoint('
|| quote_literal(rec.geom::text)
|| ', ST_LineInterpolatePoint(e.geom, 0.2)) as pos'
|| ', ST_LineLocatePoint('
|| quote_literal(rec.geom::text)
|| ', ST_LineInterpolatePoint(e.geom, 0.8)) as pos2 FROM '
|| quote_ident(toponame)
|| '.edge e WHERE ST_Covers('
|| quote_literal(rec.geom::text)
|| ', e.geom) ORDER BY pos'
-- TODO: add relation to the conditional, to reduce load ?
LOOP
gml = gml || '<' || nsprefix || 'directedEdge';
-- if this edge goes in opposite direction to the
-- line, make it with negative orientation
IF rec2.pos2 < rec2.pos THEN -- edge goes in opposite direction
gml = gml || ' orientation="-"';
END IF;
-- Do visited bookkeeping if visitedTable was given
IF visitedTable IS NOT NULL THEN
EXECUTE 'SELECT true FROM '
|| visitedTable::text
|| ' WHERE element_type = 2 AND element_id = '
|| rec2.edge_id LIMIT 1 INTO visited;
IF visited THEN
-- Use xlink:href if visited
gml = gml || ' xlink:href="#' || idprefix || 'E' || rec2.edge_id || '" />';
CONTINUE;
ELSE
-- Mark as visited otherwise
EXECUTE 'INSERT INTO ' || visitedTable::text
|| '(element_type, element_id) VALUES (2, '
|| rec2.edge_id || ')';
END IF;
END IF;
gml = gml || '>';
gml = gml || topology._AsGMLEdge(rec2.edge_id,
rec2.start_node,
rec2.end_node, rec2.geom,
visitedTable,
nsprefix_in, precision,
options, idprefix, gmlver);
gml = gml || '</' || nsprefix || 'directedEdge>';
END LOOP;
END LOOP;
gml = gml || '</' || nsprefix || 'TopoCurve>';
return gml;
ELSIF tg.type = 3 THEN -- areal
gml = '<' || nsprefix || 'TopoSurface>';
-- For each defining face, print a directedFace
FOR rec IN EXECUTE 'SELECT f.face_id from '
|| quote_ident(toponame) || '.relation r LEFT JOIN '
|| quote_ident(toponame) || '.face f ON (r.element_id = f.face_id)'
|| ' WHERE r.layer_id = ' || tg.layer_id
|| ' AND r.topogeo_id = ' || tg.id
LOOP
gml = gml || '<' || nsprefix || 'directedFace';
-- Do visited bookkeeping if visitedTable was given
IF visitedTable IS NOT NULL THEN
EXECUTE 'SELECT true FROM '
|| visitedTable::text
|| ' WHERE element_type = 3 AND element_id = '
|| rec.face_id LIMIT 1 INTO visited;
IF visited IS NOT NULL THEN
gml = gml || ' xlink:href="#' || idprefix || 'F' || rec.face_id || '" />';
CONTINUE;
ELSE
-- Mark as visited
EXECUTE 'INSERT INTO ' || visitedTable::text
|| '(element_type, element_id) VALUES (3, '
|| rec.face_id || ')';
END IF;
END IF;
gml = gml || '>';
gml = gml || topology._AsGMLFace(toponame, rec.face_id, visitedTable,
nsprefix_in, precision,
options, idprefix, gmlver);
gml = gml || '</' || nsprefix || 'directedFace>';
END LOOP;
gml = gml || '</' || nsprefix || 'TopoSurface>';
RETURN gml;
ELSIF tg.type = 4 THEN -- collection
RAISE EXCEPTION 'Collection TopoGeometries are not supported by AsGML';
END IF;
RETURN gml;
END
$$
LANGUAGE 'plpgsql' VOLATILE; -- writes into visited table
--} AsGML(TopoGeometry, nsprefix, precision, options, visitedTable, idprefix, gmlver)
--{
--
-- API FUNCTION
--
-- text AsGML(TopoGeometry, nsprefix, precision, options, visitedTable,
-- idprefix)
--
-- }{
CREATE OR REPLACE FUNCTION topology.AsGML(tg topology.TopoGeometry,nsprefix text, prec int, options int, visitedTable regclass, idprefix text)
RETURNS text
AS
$$
SELECT topology.AsGML($1, $2, $3, $4, $5, $6, 3);
$$
LANGUAGE 'sql' VOLATILE; -- writes into visited table
--} AsGML(TopoGeometry, nsprefix, precision, options, visitedTable, idprefix)
--{
--
-- API FUNCTION
--
-- text AsGML(TopoGeometry, nsprefix, precision, options, visitedTable)
--
-- }{
CREATE OR REPLACE FUNCTION topology.AsGML(tg topology.TopoGeometry, nsprefix text, prec int, options int, vis regclass)
RETURNS text AS
$$
SELECT topology.AsGML($1, $2, $3, $4, $5, '');
$$ LANGUAGE 'sql' VOLATILE; -- writes into visited table
-- } AsGML(TopoGeometry, nsprefix, precision, options)
--{
--
-- API FUNCTION
--
-- text AsGML(TopoGeometry, nsprefix, precision, options)
--
-- }{
CREATE OR REPLACE FUNCTION topology.AsGML(tg topology.TopoGeometry, nsprefix text, prec int, opts int)
RETURNS text AS
$$
SELECT topology.AsGML($1, $2, $3, $4, NULL);
$$ LANGUAGE 'sql' STABLE; -- does NOT write into visited table
-- } AsGML(TopoGeometry, nsprefix, precision, options)
--{
--
-- API FUNCTION
--
-- text AsGML(TopoGeometry, nsprefix)
--
-- }{
CREATE OR REPLACE FUNCTION topology.AsGML(tg topology.TopoGeometry, nsprefix text)
RETURNS text AS
$$
SELECT topology.AsGML($1, $2, 15, 1, NULL);
$$ LANGUAGE 'sql' STABLE; -- does NOT write into visited table
-- } AsGML(TopoGeometry, nsprefix)
--{
--
-- API FUNCTION
--
-- text AsGML(TopoGeometry, visited_table)
--
-- }{
CREATE OR REPLACE FUNCTION topology.AsGML(tg topology.TopoGeometry, visitedTable regclass)
RETURNS text AS
$$
SELECT topology.AsGML($1, 'gml', 15, 1, $2);
$$ LANGUAGE 'sql' VOLATILE; -- writes into visited table
-- } AsGML(TopoGeometry, visited_table)
--{
--
-- API FUNCTION
--
-- text AsGML(TopoGeometry, visited_table, nsprefix)
--
-- }{
CREATE OR REPLACE FUNCTION topology.AsGML(tg topology.TopoGeometry, visitedTable regclass, nsprefix text)
RETURNS text AS
$$
SELECT topology.AsGML($1, $3, 15, 1, $2);
$$ LANGUAGE 'sql' VOLATILE; -- writes into visited table
-- } AsGML(TopoGeometry, visited_table, nsprefix)
--{
--
-- API FUNCTION
--
-- text AsGML(TopoGeometry)
--
-- }{
CREATE OR REPLACE FUNCTION topology.AsGML(tg topology.TopoGeometry)
RETURNS text AS
$$
SELECT topology.AsGML($1, 'gml');
$$ LANGUAGE 'sql' STABLE; -- does NOT write into visited table
-- } AsGML(TopoGeometry)
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2013 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- Functions used for TopoJSON export
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
--
-- API FUNCTION
--
-- text AsTopoJSON(TopoGeometry, edgeMapTable)
--
-- }{
CREATE OR REPLACE FUNCTION topology.AsTopoJSON(tg topology.TopoGeometry, edgeMapTable regclass)
RETURNS text AS
$$
DECLARE
toponame text;
json text;
sql text;
bounds GEOMETRY;
rec RECORD;
rec2 RECORD;
side int;
arcid int;
arcs int[];
ringtxt TEXT[];
comptxt TEXT[];
edges_found BOOLEAN;
old_search_path TEXT;
all_faces int[];
faces int[];
visited_face int;
shell_faces int[];
visited_edges int[];
looking_for_holes BOOLEAN;
BEGIN
IF tg IS NULL THEN
RETURN NULL;
END IF;
-- Get topology name (for subsequent queries)
SELECT name FROM topology.topology into toponame
WHERE id = tg.topology_id;
-- Puntual TopoGeometry
IF tg.type = 1 THEN
-- TODO: implement scale ?
--json := ST_AsGeoJSON(topology.Geometry(tg));
--return json;
RAISE EXCEPTION 'TopoJSON export does not support puntual objects';
ELSIF tg.type = 2 THEN -- lineal
FOR rec IN SELECT (ST_Dump(topology.Geometry(tg))).geom
LOOP -- {
sql := 'SELECT e.*, ST_LineLocatePoint('
|| quote_literal(rec.geom::text)
|| ', ST_LineInterpolatePoint(e.geom, 0.2)) as pos'
|| ', ST_LineLocatePoint('
|| quote_literal(rec.geom::text)
|| ', ST_LineInterpolatePoint(e.geom, 0.8)) as pos2 FROM '
|| quote_ident(toponame)
|| '.edge e WHERE ST_Covers('
|| quote_literal(rec.geom::text)
|| ', e.geom) ORDER BY pos';
-- TODO: add relation to the conditional, to reduce load ?
FOR rec2 IN EXECUTE sql
LOOP -- {
IF edgeMapTable IS NOT NULL THEN
sql := 'SELECT arc_id-1 FROM ' || edgeMapTable::text || ' WHERE edge_id = ' || rec2.edge_id;
EXECUTE sql INTO arcid;
IF arcid IS NULL THEN
EXECUTE 'INSERT INTO ' || edgeMapTable::text
|| '(edge_id) VALUES (' || rec2.edge_id || ') RETURNING arc_id-1'
INTO arcid;
END IF;
ELSE
arcid := rec2.edge_id;
END IF;
-- edge goes in opposite direction
IF rec2.pos2 < rec2.pos THEN
arcid := -(arcid+1);
END IF;
arcs := arcs || arcid;
END LOOP; -- }
comptxt := comptxt || ( '[' || array_to_string(arcs, ',') || ']' );
arcs := NULL;
END LOOP; -- }
json := '{ "type": "MultiLineString", "arcs": [' || array_to_string(comptxt,',') || ']}';
return json;
ELSIF tg.type = 3 THEN -- areal
json := '{ "type": "MultiPolygon", "arcs": [';
EXECUTE 'SHOW search_path' INTO old_search_path;
EXECUTE 'SET search_path TO ' || quote_ident(toponame) || ',' || old_search_path;
SELECT array_agg(id) as f
FROM ( SELECT (topology.GetTopoGeomElements(tg))[1] as id ) as f
INTO all_faces;
visited_edges := ARRAY[]::int[];
faces := all_faces;
looking_for_holes := false;
shell_faces := ARRAY[]::int[];
LOOP -- {
arcs := NULL;
edges_found := false;
FOR rec in -- {
WITH RECURSIVE
_edges AS (
SELECT e.*,
e.left_face = ANY ( faces ) as lf,
e.right_face = ANY ( faces ) as rf
FROM edge e
WHERE ( e.left_face = ANY ( faces ) OR
e.right_face = ANY ( faces ) )
),
_leftmost_non_dangling_edge AS (
SELECT * FROM _edges e
WHERE ( e.lf or e.rf ) AND ( e.lf != e.rf )
AND NOT e.edge_id = ANY ( visited_edges )
-- TODO: and not in visited ?
ORDER BY geom LIMIT 1
),
_edgepath AS (
SELECT
CASE
WHEN e.lf THEN lme.edge_id
ELSE -lme.edge_id
END as signed_edge_id,
false as back,
e.lf = e.rf as dangling,
e.left_face, e.right_face,
e.lf, e.rf,
e.next_right_edge, e.next_left_edge
FROM _edges e, _leftmost_non_dangling_edge lme
WHERE e.edge_id = abs(lme.edge_id)
UNION
SELECT
CASE
WHEN p.dangling AND NOT p.back THEN -p.signed_edge_id
WHEN p.signed_edge_id < 0 THEN p.next_right_edge
ELSE p.next_left_edge
END, -- signed_edge_id
CASE
WHEN p.dangling AND NOT p.back THEN true
ELSE false
END, -- back
e.lf = e.rf, -- dangling
e.left_face, e.right_face,
e.lf, e.rf,
e.next_right_edge, e.next_left_edge
FROM _edges e, _edgepath p
WHERE
e.edge_id = CASE
WHEN p.dangling AND NOT p.back THEN abs(p.signed_edge_id)
WHEN p.signed_edge_id < 0 THEN abs(p.next_right_edge)
ELSE abs(p.next_left_edge)
END
)
SELECT abs(signed_edge_id) as edge_id, signed_edge_id, dangling,
lf, rf, left_face, right_face
FROM _edgepath
LOOP -- }{
IF rec.left_face = ANY (all_faces) AND NOT rec.left_face = ANY (shell_faces) THEN
shell_faces := shell_faces || rec.left_face;
END IF;
IF rec.right_face = ANY (all_faces) AND NOT rec.right_face = ANY (shell_faces) THEN
shell_faces := shell_faces || rec.right_face;
END IF;
visited_edges := visited_edges || rec.edge_id;
edges_found := true;
-- TODO: drop ?
IF rec.dangling THEN
CONTINUE;
END IF;
IF rec.left_face = ANY (all_faces) AND rec.right_face = ANY (all_faces) THEN
CONTINUE;
END IF;
IF edgeMapTable IS NOT NULL THEN
sql := 'SELECT arc_id-1 FROM ' || edgeMapTable::text || ' WHERE edge_id = ' || rec.edge_id;
EXECUTE sql INTO arcid;
IF arcid IS NULL THEN
EXECUTE 'INSERT INTO ' || edgeMapTable::text
|| '(edge_id) VALUES (' || rec.edge_id || ') RETURNING arc_id-1'
INTO arcid;
END IF;
ELSE
arcid := rec.edge_id-1;
END IF;
-- Swap sign, use two's complement for negative edges
IF rec.signed_edge_id >= 0 THEN
arcid := - ( arcid + 1 );
END IF;
arcs := arcid || arcs;
END LOOP; -- }
IF NOT edges_found THEN
IF looking_for_holes THEN
looking_for_holes := false;
comptxt := comptxt || ( '[' || array_to_string(ringtxt, ',') || ']' );
ringtxt := NULL;
faces := all_faces;
shell_faces := ARRAY[]::int[];
ELSE
EXIT; -- end of loop
END IF;
ELSE
faces := shell_faces;
IF arcs IS NOT NULL THEN
ringtxt := ringtxt || ( '[' || array_to_string(arcs,',') || ']' );
END IF;
looking_for_holes := true;
END IF;
END LOOP; -- }
json := json || array_to_string(comptxt, ',') || ']}';
EXECUTE 'SET search_path TO ' || old_search_path;
ELSIF tg.type = 4 THEN -- collection
RAISE EXCEPTION 'Collection TopoGeometries are not supported by AsTopoJSON';
END IF;
RETURN json;
END
$$ LANGUAGE 'plpgsql' VOLATILE; -- writes into visited table
-- } AsTopoJSON(TopoGeometry, visited_table)
--=} POSTGIS-SPECIFIC block
-- SQL/MM block
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.net
--
-- Copyright (C) 2010, 2011, 2012, 2013 Sandro Santilli <strk@keybit.net>
-- Copyright (C) 2005 Refractions Research Inc.
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- Author: Sandro Santilli <strk@keybit.net>
--
--
--={ ----------------------------------------------------------------
-- SQL/MM block
--
-- This part contains function in the SQL/MM specification
--
---------------------------------------------------------------------
--
-- Type returned by ST_GetFaceEdges
--
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.5
--
-- ST_GetFaceEdges(atopology, aface)
--
--
--
CREATE OR REPLACE FUNCTION topology.ST_GetFaceEdges(toponame varchar, face_id integer)
RETURNS SETOF topology.GetFaceEdges_ReturnType
AS
$$
DECLARE
rec RECORD;
bounds geometry;
retrec topology.GetFaceEdges_ReturnType;
n int;
sql TEXT;
BEGIN
--
-- toponame and face_id are required
--
IF toponame IS NULL OR face_id IS NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - null argument';
END IF;
IF NOT EXISTS(SELECT name FROM topology.topology WHERE name = toponame) THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END IF;
n := 1;
-- Construct the face geometry, then for each ring of each polygon:
sql := 'SELECT (ST_DumpRings((ST_Dump(ST_ForceRHR('
|| 'ST_BuildArea(ST_Collect(geom))))).geom)).geom FROM '
|| quote_ident(toponame) || '.edge_data WHERE left_face = '
|| face_id || ' OR right_face = ' || face_id;
FOR rec IN EXECUTE sql
LOOP -- {
-- Find the edges constituting its boundary
bounds = ST_Boundary(rec.geom);
sql := 'WITH er2 AS ( '
|| 'WITH er AS ( SELECT '
|| 'min(e.edge_id) over (), count(*) over () as cnt, e.edge_id, '
|| 'ST_LineLocatePoint('
|| quote_literal(bounds::text)
|| ', ST_LineInterpolatePoint(e.geom, 0.2)) as pos'
|| ', ST_LineLocatePoint('
|| quote_literal(bounds::text)
|| ', ST_LineInterpolatePoint(e.geom, 0.8)) as pos2 FROM '
|| quote_ident(toponame)
|| '.edge e WHERE ( e.left_face = ' || face_id
|| ' OR e.right_face = ' || face_id
|| ') AND ST_Covers('
|| quote_literal(bounds::text)
|| ', e.geom)';
IF face_id = 0 THEN
sql := sql || ' ORDER BY POS ASC) ';
ELSE
sql := sql || ' ORDER BY POS DESC) ';
END IF;
-- Reorder rows so to start with the one with smaller edge_id
sql := sql || 'SELECT row_number() over () - 1 as rn, * FROM er ) '
|| 'SELECT *, ( rn + cnt - ( select rn FROM er2 WHERE edge_id = min ) ) % cnt AS reord FROM er2 ORDER BY reord';
--RAISE DEBUG 'SQL: %', sql;
FOR rec IN EXECUTE sql
LOOP
retrec.sequence = n;
retrec.edge = rec.edge_id;
IF face_id = 0 THEN
-- if this edge goes in opposite direction to the
-- ring bounds, make it with negative orientation
IF rec.pos2 < rec.pos THEN -- edge goes in opposite direction
retrec.edge = -retrec.edge;
END IF;
ELSE
-- if this edge goes in same direction to the
-- ring bounds, make it with negative orientation
IF rec.pos2 > rec.pos THEN -- edge goes in same direction
retrec.edge = -retrec.edge;
END IF;
END IF;
RETURN NEXT retrec;
n = n+1;
END LOOP;
END LOOP; -- }
RETURN;
EXCEPTION
WHEN INVALID_SCHEMA_NAME THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END
$$
LANGUAGE 'plpgsql' STABLE;
--} ST_GetFaceEdges
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.10
--
-- ST_NewEdgeHeal(atopology, anedge, anotheredge)
--
-- Not in the specs:
-- * Refuses to heal two edges if any of the two is closed
-- * Raise an exception when trying to heal an edge with itself
-- * Raise an exception if any TopoGeometry is defined by only one
-- of the two edges
-- * Update references in the Relation table.
--
CREATE OR REPLACE FUNCTION topology.ST_NewEdgeHeal(toponame varchar, e1id integer, e2id integer)
RETURNS int
AS
$$
DECLARE
e1rec RECORD;
e2rec RECORD;
rec RECORD;
newedgeid int;
connectededges int[];
commonnode int;
caseno int;
topoid int;
sql text;
e2sign int;
eidary int[];
BEGIN
--
-- toponame and face_id are required
--
IF toponame IS NULL OR e1id IS NULL OR e2id IS NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - null argument';
END IF;
-- NOT IN THE SPECS: see if the same edge is given twice..
IF e1id = e2id THEN
RAISE EXCEPTION 'Cannot heal edge % with itself, try with another', e1id;
END IF;
-- Get topology id
BEGIN
SELECT id FROM topology.topology
INTO STRICT topoid WHERE name = toponame;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END;
BEGIN
EXECUTE 'SELECT * FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e1id
INTO STRICT e1rec;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent edge %', e1id;
WHEN INVALID_SCHEMA_NAME THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
WHEN UNDEFINED_TABLE THEN
RAISE EXCEPTION 'corrupted topology "%" (missing edge_data table)',
toponame;
END;
BEGIN
EXECUTE 'SELECT * FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e2id
INTO STRICT e2rec;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent edge %', e2id;
-- NOTE: checks for INVALID_SCHEMA_NAME or UNDEFINED_TABLE done before
END;
-- NOT IN THE SPECS: See if any of the two edges are closed.
IF e1rec.start_node = e1rec.end_node THEN
RAISE EXCEPTION 'Edge % is closed, cannot heal to edge %', e1id, e2id;
END IF;
IF e2rec.start_node = e2rec.end_node THEN
RAISE EXCEPTION 'Edge % is closed, cannot heal to edge %', e2id, e1id;
END IF;
-- Find common node
IF e1rec.end_node = e2rec.start_node THEN
commonnode = e1rec.end_node;
caseno = 1;
ELSIF e1rec.end_node = e2rec.end_node THEN
commonnode = e1rec.end_node;
caseno = 2;
END IF;
-- Check if any other edge is connected to the common node
IF commonnode IS NOT NULL THEN
FOR rec IN EXECUTE 'SELECT edge_id FROM ' || quote_ident(toponame)
|| '.edge_data WHERE ( edge_id != ' || e1id
|| ' AND edge_id != ' || e2id || ') AND ( start_node = '
|| commonnode || ' OR end_node = ' || commonnode || ' )'
LOOP
commonnode := NULL;
connectededges = connectededges || rec.edge_id;
END LOOP;
END IF;
IF commonnode IS NULL THEN
IF e1rec.start_node = e2rec.start_node THEN
commonnode = e1rec.start_node;
caseno = 3;
ELSIF e1rec.start_node = e2rec.end_node THEN
commonnode = e1rec.start_node;
caseno = 4;
END IF;
-- Check if any other edge is connected to the common node
IF commonnode IS NOT NULL THEN
FOR rec IN EXECUTE 'SELECT edge_id FROM ' || quote_ident(toponame)
|| '.edge_data WHERE ( edge_id != ' || e1id
|| ' AND edge_id != ' || e2id || ') AND ( start_node = '
|| commonnode || ' OR end_node = ' || commonnode || ' )'
LOOP
commonnode := NULL;
connectededges = connectededges || rec.edge_id;
END LOOP;
END IF;
END IF;
IF commonnode IS NULL THEN
IF connectededges IS NOT NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - other edges connected (%)', array_to_string(connectededges, ',');
ELSE
RAISE EXCEPTION 'SQL/MM Spatial exception - non-connected edges';
END IF;
END IF;
-- NOT IN THE SPECS:
-- check if any topo_geom is defined only by one of the
-- input edges. In such case there would be no way to adapt
-- the definition in case of healing, so we'd have to bail out
eidary = ARRAY[e1id, e2id];
sql := 'SELECT t.* from ('
|| 'SELECT r.topogeo_id, r.layer_id'
|| ', l.schema_name, l.table_name, l.feature_column'
|| ', array_agg(abs(r.element_id)) as elems '
|| 'FROM topology.layer l INNER JOIN '
|| quote_ident(toponame)
|| '.relation r ON (l.layer_id = r.layer_id) '
|| 'WHERE l.level = 0 AND l.feature_type = 2 '
|| ' AND l.topology_id = ' || topoid
|| ' AND abs(r.element_id) IN (' || e1id || ',' || e2id || ') '
|| 'group by r.topogeo_id, r.layer_id, l.schema_name, l.table_name, '
|| ' l.feature_column ) t WHERE NOT t.elems @> '
|| quote_literal(eidary);
--RAISE DEBUG 'SQL: %', sql;
FOR rec IN EXECUTE sql LOOP
RAISE EXCEPTION 'TopoGeom % in layer % (%.%.%) cannot be represented healing edges % and %',
rec.topogeo_id, rec.layer_id,
rec.schema_name, rec.table_name, rec.feature_column,
e1id, e2id;
END LOOP;
-- Create new edge {
rec := e1rec;
IF caseno = 1 THEN -- e1.end = e2.start
rec.geom = ST_MakeLine(e1rec.geom, e2rec.geom);
rec.end_node = e2rec.end_node;
rec.next_left_edge = e2rec.next_left_edge;
e2sign = 1;
ELSIF caseno = 2 THEN -- e1.end = e2.end
rec.geom = ST_MakeLine(e1rec.geom, st_reverse(e2rec.geom));
rec.end_node = e2rec.start_node;
rec.next_left_edge = e2rec.next_right_edge;
e2sign = -1;
ELSIF caseno = 3 THEN -- e1.start = e2.start
rec.geom = ST_MakeLine(st_reverse(e2rec.geom), e1rec.geom);
rec.start_node = e2rec.end_node;
rec.next_right_edge = e2rec.next_left_edge;
e2sign = -1;
ELSIF caseno = 4 THEN -- e1.start = e2.end
rec.geom = ST_MakeLine(e2rec.geom, e1rec.geom);
rec.start_node = e2rec.start_node;
rec.next_right_edge = e2rec.next_right_edge;
e2sign = 1;
END IF;
-- }
-- Insert new edge {
EXECUTE 'SELECT nextval(' || quote_literal(
quote_ident(toponame) || '.edge_data_edge_id_seq'
) || ')' INTO STRICT newedgeid;
EXECUTE 'INSERT INTO ' || quote_ident(toponame)
|| '.edge VALUES(' || newedgeid
|| ',' || rec.start_node
|| ',' || rec.end_node
|| ',' || rec.next_left_edge
|| ',' || rec.next_right_edge
|| ',' || rec.left_face
|| ',' || rec.right_face
|| ',' || quote_literal(rec.geom::text)
|| ')';
-- End of new edge insertion }
-- Update next_left_edge/next_right_edge for
-- any edge having them still pointing at the edges being removed
-- (e2id)
--
-- NOTE:
-- *(next_XXX_edge/e2id) serves the purpose of extracting existing
-- sign from the value, while *e2sign changes that sign again if we
-- reverted edge2 direction
--
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET abs_next_left_edge = ' || newedgeid
|| ', next_left_edge = ' || e2sign*newedgeid
|| '*(next_left_edge/'
|| e2id || ') WHERE abs_next_left_edge = ' || e2id;
--RAISE DEBUG 'SQL: %', sql;
EXECUTE sql;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET abs_next_right_edge = ' || newedgeid
|| ', next_right_edge = ' || e2sign*newedgeid
|| '*(next_right_edge/'
|| e2id || ') WHERE abs_next_right_edge = ' || e2id;
--RAISE DEBUG 'SQL: %', sql;
EXECUTE sql;
-- New edge has the same direction as old edge 1
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET abs_next_left_edge = ' || newedgeid
|| ', next_left_edge = ' || newedgeid
|| '*(next_left_edge/'
|| e1id || ') WHERE abs_next_left_edge = ' || e1id;
--RAISE DEBUG 'SQL: %', sql;
EXECUTE sql;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET abs_next_right_edge = ' || newedgeid
|| ', next_right_edge = ' || newedgeid
|| '*(next_right_edge/'
|| e1id || ') WHERE abs_next_right_edge = ' || e1id;
--RAISE DEBUG 'SQL: %', sql;
EXECUTE sql;
--
-- NOT IN THE SPECS:
-- Replace composition rows involving the two
-- edges as one involving the new edge.
-- It takes a DELETE and an UPDATE to do all
sql := 'DELETE FROM ' || quote_ident(toponame)
|| '.relation r USING topology.layer l '
|| 'WHERE l.level = 0 AND l.feature_type = 2'
|| ' AND l.topology_id = ' || topoid
|| ' AND l.layer_id = r.layer_id AND abs(r.element_id) = '
|| e2id;
--RAISE DEBUG 'SQL: %', sql;
EXECUTE sql;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.relation r '
|| ' SET element_id = ' || newedgeid || '*(element_id/'
|| e1id
|| ') FROM topology.layer l WHERE l.level = 0 AND l.feature_type = 2'
|| ' AND l.topology_id = ' || topoid
|| ' AND l.layer_id = r.layer_id AND abs(r.element_id) = '
|| e1id
;
EXECUTE sql;
-- Delete both edges
EXECUTE 'DELETE FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e2id;
EXECUTE 'DELETE FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e1id;
-- Delete the common node
BEGIN
EXECUTE 'DELETE FROM ' || quote_ident(toponame)
|| '.node WHERE node_id = ' || commonnode;
EXCEPTION
WHEN UNDEFINED_TABLE THEN
RAISE EXCEPTION 'corrupted topology "%" (missing node table)',
toponame;
END;
RETURN newedgeid;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_NewEdgeHeal
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.11
--
-- ST_ModEdgeHeal(atopology, anedge, anotheredge)
--
-- Not in the specs:
-- * Returns the id of the node being removed
-- * Refuses to heal two edges if any of the two is closed
-- * Raise an exception when trying to heal an edge with itself
-- * Raise an exception if any TopoGeometry is defined by only one
-- of the two edges
-- * Update references in the Relation table.
--
CREATE OR REPLACE FUNCTION topology.ST_ModEdgeHeal(toponame varchar, e1id integer, e2id integer)
RETURNS int
AS
$$
DECLARE
e1rec RECORD;
e2rec RECORD;
rec RECORD;
connectededges int[];
commonnode int;
caseno int;
topoid int;
sql text;
e2sign int;
eidary int[];
BEGIN
--
-- toponame and face_id are required
--
IF toponame IS NULL OR e1id IS NULL OR e2id IS NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - null argument';
END IF;
-- NOT IN THE SPECS: see if the same edge is given twice..
IF e1id = e2id THEN
RAISE EXCEPTION 'Cannot heal edge % with itself, try with another', e1id;
END IF;
-- Get topology id
BEGIN
SELECT id FROM topology.topology
INTO STRICT topoid WHERE name = toponame;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END;
BEGIN
EXECUTE 'SELECT * FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e1id
INTO STRICT e1rec;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent edge %', e1id;
WHEN INVALID_SCHEMA_NAME THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
WHEN UNDEFINED_TABLE THEN
RAISE EXCEPTION 'corrupted topology "%" (missing edge_data table)',
toponame;
END;
BEGIN
EXECUTE 'SELECT * FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e2id
INTO STRICT e2rec;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent edge %', e2id;
-- NOTE: checks for INVALID_SCHEMA_NAME or UNDEFINED_TABLE done before
END;
-- NOT IN THE SPECS: See if any of the two edges are closed.
IF e1rec.start_node = e1rec.end_node THEN
RAISE EXCEPTION 'Edge % is closed, cannot heal to edge %', e1id, e2id;
END IF;
IF e2rec.start_node = e2rec.end_node THEN
RAISE EXCEPTION 'Edge % is closed, cannot heal to edge %', e2id, e1id;
END IF;
-- Find common node
IF e1rec.end_node = e2rec.start_node THEN
commonnode = e1rec.end_node;
caseno = 1;
ELSIF e1rec.end_node = e2rec.end_node THEN
commonnode = e1rec.end_node;
caseno = 2;
END IF;
-- Check if any other edge is connected to the common node
IF commonnode IS NOT NULL THEN
FOR rec IN EXECUTE 'SELECT edge_id FROM ' || quote_ident(toponame)
|| '.edge_data WHERE ( edge_id != ' || e1id
|| ' AND edge_id != ' || e2id || ') AND ( start_node = '
|| commonnode || ' OR end_node = ' || commonnode || ' )'
LOOP
commonnode := NULL;
connectededges = connectededges || rec.edge_id;
END LOOP;
END IF;
IF commonnode IS NULL THEN
IF e1rec.start_node = e2rec.start_node THEN
commonnode = e1rec.start_node;
caseno = 3;
ELSIF e1rec.start_node = e2rec.end_node THEN
commonnode = e1rec.start_node;
caseno = 4;
END IF;
-- Check if any other edge is connected to the common node
IF commonnode IS NOT NULL THEN
FOR rec IN EXECUTE 'SELECT edge_id FROM ' || quote_ident(toponame)
|| '.edge_data WHERE ( edge_id != ' || e1id
|| ' AND edge_id != ' || e2id || ') AND ( start_node = '
|| commonnode || ' OR end_node = ' || commonnode || ' )'
LOOP
commonnode := NULL;
connectededges = connectededges || rec.edge_id;
END LOOP;
END IF;
END IF;
IF commonnode IS NULL THEN
IF connectededges IS NOT NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - other edges connected (%)', array_to_string(connectededges, ',');
ELSE
RAISE EXCEPTION 'SQL/MM Spatial exception - non-connected edges';
END IF;
END IF;
-- NOT IN THE SPECS:
-- check if any topo_geom is defined only by one of the
-- input edges. In such case there would be no way to adapt
-- the definition in case of healing, so we'd have to bail out
eidary = ARRAY[e1id, e2id];
sql := 'SELECT t.* from ('
|| 'SELECT r.topogeo_id, r.layer_id'
|| ', l.schema_name, l.table_name, l.feature_column'
|| ', array_agg(abs(r.element_id)) as elems '
|| 'FROM topology.layer l INNER JOIN '
|| quote_ident(toponame)
|| '.relation r ON (l.layer_id = r.layer_id) '
|| 'WHERE l.level = 0 AND l.feature_type = 2 '
|| ' AND l.topology_id = ' || topoid
|| ' AND abs(r.element_id) IN (' || e1id || ',' || e2id || ') '
|| 'group by r.topogeo_id, r.layer_id, l.schema_name, l.table_name, '
|| ' l.feature_column ) t WHERE NOT t.elems @> '
|| quote_literal(eidary);
--RAISE DEBUG 'SQL: %', sql;
FOR rec IN EXECUTE sql LOOP
RAISE EXCEPTION 'TopoGeom % in layer % (%.%.%) cannot be represented healing edges % and %',
rec.topogeo_id, rec.layer_id,
rec.schema_name, rec.table_name, rec.feature_column,
e1id, e2id;
END LOOP;
-- Update data of the first edge {
rec := e1rec;
IF caseno = 1 THEN -- e1.end = e2.start
rec.geom = ST_MakeLine(e1rec.geom, e2rec.geom);
rec.end_node = e2rec.end_node;
rec.next_left_edge = e2rec.next_left_edge;
e2sign = 1;
ELSIF caseno = 2 THEN -- e1.end = e2.end
rec.geom = ST_MakeLine(e1rec.geom, st_reverse(e2rec.geom));
rec.end_node = e2rec.start_node;
rec.next_left_edge = e2rec.next_right_edge;
e2sign = -1;
ELSIF caseno = 3 THEN -- e1.start = e2.start
rec.geom = ST_MakeLine(st_reverse(e2rec.geom), e1rec.geom);
rec.start_node = e2rec.end_node;
rec.next_right_edge = e2rec.next_left_edge;
e2sign = -1;
ELSIF caseno = 4 THEN -- e1.start = e2.end
rec.geom = ST_MakeLine(e2rec.geom, e1rec.geom);
rec.start_node = e2rec.start_node;
rec.next_right_edge = e2rec.next_right_edge;
e2sign = 1;
END IF;
EXECUTE 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET geom = ' || quote_literal(rec.geom::text)
|| ', start_node = ' || rec.start_node
|| ', end_node = ' || rec.end_node
|| ', next_left_edge = ' || rec.next_left_edge
|| ', abs_next_left_edge = ' || abs(rec.next_left_edge)
|| ', next_right_edge = ' || rec.next_right_edge
|| ', abs_next_right_edge = ' || abs(rec.next_right_edge)
|| ' WHERE edge_id = ' || e1id;
-- End of first edge update }
-- Update next_left_edge/next_right_edge for
-- any edge having them still pointing at the edge being removed (e2id)
--
-- NOTE:
-- *(next_XXX_edge/e2id) serves the purpose of extracting existing
-- sign from the value, while *e2sign changes that sign again if we
-- reverted edge2 direction
--
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET abs_next_left_edge = ' || e1id
|| ', next_left_edge = ' || e2sign*e1id
|| '*(next_left_edge/'
|| e2id || ') WHERE abs_next_left_edge = ' || e2id;
--RAISE DEBUG 'SQL: %', sql;
EXECUTE sql;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET abs_next_right_edge = ' || e1id
|| ', next_right_edge = ' || e2sign*e1id
|| '*(next_right_edge/'
|| e2id || ') WHERE abs_next_right_edge = ' || e2id;
--RAISE DEBUG 'SQL: %', sql;
EXECUTE sql;
-- Delete the second edge
EXECUTE 'DELETE FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e2id;
-- Delete the common node
BEGIN
EXECUTE 'DELETE FROM ' || quote_ident(toponame)
|| '.node WHERE node_id = ' || commonnode;
EXCEPTION
WHEN UNDEFINED_TABLE THEN
RAISE EXCEPTION 'corrupted topology "%" (missing node table)',
toponame;
END;
--
-- NOT IN THE SPECS:
-- Drop composition rows involving second
-- edge, as the first edge took its space,
-- and all affected TopoGeom have been previously checked
-- for being composed by both edges.
sql := 'DELETE FROM ' || quote_ident(toponame)
|| '.relation r USING topology.layer l '
|| 'WHERE l.level = 0 AND l.feature_type = 2'
|| ' AND l.topology_id = ' || topoid
|| ' AND l.layer_id = r.layer_id AND abs(r.element_id) = '
|| e2id;
--RAISE DEBUG 'SQL: %', sql;
EXECUTE sql;
RETURN commonnode;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_ModEdgeHeal
-- {
-- _ST_RemEdgeCheck - check that the given edge is not needed
-- by the definition of any TopoGeometry
--
CREATE OR REPLACE FUNCTION topology._ST_RemEdgeCheck(tname varchar, tid integer, eid integer, lf integer, rf integer)
RETURNS VOID
AS
$$
DECLARE
sql text;
fidary int[];
rec RECORD;
BEGIN
-- Check that no TopoGeometry references the edge being removed
sql := 'SELECT r.topogeo_id, r.layer_id'
|| ', l.schema_name, l.table_name, l.feature_column '
|| 'FROM topology.layer l INNER JOIN '
|| quote_ident(tname)
|| '.relation r ON (l.layer_id = r.layer_id) '
|| 'WHERE l.level = 0 AND l.feature_type = 2 '
|| ' AND l.topology_id = ' || tid
|| ' AND abs(r.element_id) = ' || eid ;
FOR rec IN EXECUTE sql LOOP
RAISE EXCEPTION 'TopoGeom % in layer % (%.%.%) cannot be represented dropping edge %',
rec.topogeo_id, rec.layer_id,
rec.schema_name, rec.table_name, rec.feature_column,
eid;
END LOOP;
IF lf != rf THEN -- {
RAISE NOTICE 'Deletion of edge % joins faces % and %',
eid, lf, rf;
-- check if any topo_geom is defined only by one of the
-- joined faces. In such case there would be no way to adapt
-- the definition in case of healing, so we'd have to bail out
--
fidary = ARRAY[lf, rf];
sql := 'SELECT t.* from ('
|| 'SELECT r.topogeo_id, r.layer_id'
|| ', l.schema_name, l.table_name, l.feature_column'
|| ', array_agg(r.element_id) as elems '
|| 'FROM topology.layer l INNER JOIN '
|| quote_ident(tname)
|| '.relation r ON (l.layer_id = r.layer_id) '
|| 'WHERE l.level = 0 AND l.feature_type = 3 '
|| ' AND l.topology_id = ' || tid
|| ' AND r.element_id = ANY (' || quote_literal(fidary)
|| ') group by r.topogeo_id, r.layer_id, l.schema_name, l.table_name, '
|| ' l.feature_column ) t';
-- No surface can be defined by universal face
IF lf != 0 AND rf != 0 THEN -- {
sql := sql || ' WHERE NOT t.elems @> ' || quote_literal(fidary);
END IF; -- }
FOR rec IN EXECUTE sql LOOP
RAISE EXCEPTION 'TopoGeom % in layer % (%.%.%) cannot be represented healing faces % and %',
rec.topogeo_id, rec.layer_id,
rec.schema_name, rec.table_name, rec.feature_column,
rf, lf;
END LOOP;
END IF; -- } two faces healed...
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} _ST_RemEdgeCheck
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.14
--
-- ST_RemEdgeNewFace(atopology, anedge)
--
-- Not in the specs:
-- * Raise an exception if any TopoGeometry is defined by only one
-- of the two faces that will dissolve.
-- * Raise an exception if any TopoGeometry is defined by
-- the edge being removed.
-- * Properly set containg_face on nodes that remains isolated by the drop
-- * Update containg_face for isolated nodes in the dissolved faces
-- * Update references in the Relation table
--
-- }{
CREATE OR REPLACE FUNCTION topology.ST_RemEdgeNewFace(toponame varchar, e1id integer)
RETURNS int
AS
$$
DECLARE
e1rec RECORD;
rec RECORD;
fidary int[];
topoid int;
sql text;
newfaceid int;
newfacecreated bool;
elink int;
BEGIN
--
-- toponame and face_id are required
--
IF toponame IS NULL OR e1id IS NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - null argument';
END IF;
-- Get topology id
BEGIN
SELECT id FROM topology.topology
INTO STRICT topoid WHERE name = toponame;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END;
BEGIN
EXECUTE 'SELECT * FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e1id
INTO STRICT e1rec;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent edge %', e1id;
WHEN INVALID_SCHEMA_NAME THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
WHEN UNDEFINED_TABLE THEN
RAISE EXCEPTION 'corrupted topology "%" (missing edge_data table)',
toponame;
END;
-- NOT IN THE SPECS:
-- Check that no TopoGeometry references the edge being removed
PERFORM topology._ST_RemEdgeCheck(toponame, topoid, e1id, e1rec.left_face, e1rec.right_face);
-- Update next_left_edge and next_right_edge face
-- for all edges bounding the new face
RAISE NOTICE 'Updating next_{right,left}_face of ring edges...';
-- TODO: reduce the following to 2 UPDATE rather than 4
-- Update next_left_edge of previous edges in left face -- {
elink := e1rec.next_left_edge;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET next_left_edge = '
|| elink
|| ', abs_next_left_edge = '
|| abs(elink)
|| ' WHERE next_left_edge < 0 AND abs(next_left_edge) = '
|| e1id;
EXECUTE sql;
-- If the edge being removed links to self,
-- we use the other face
IF e1rec.abs_next_right_edge = e1rec.edge_id THEN
elink := e1rec.next_left_edge;
ELSE
elink := e1rec.next_right_edge;
END IF;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET next_left_edge = '
|| elink
|| ', abs_next_left_edge = '
|| abs(elink)
|| ' WHERE next_left_edge > 0 AND abs(next_left_edge) = '
|| e1id;
EXECUTE sql;
-- }
-- Update next_right_edge of previous edges in right face -- {
elink := e1rec.next_left_edge;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET next_right_edge = '
|| elink
|| ', abs_next_right_edge = '
|| abs(elink)
|| ' WHERE next_right_edge < 0 AND abs(next_right_edge) = '
|| e1id;
EXECUTE sql;
-- If the edge being removed links to self,
-- we use the other face
IF e1rec.abs_next_right_edge = e1rec.edge_id THEN
elink := e1rec.next_left_edge;
ELSE
elink := e1rec.next_right_edge;
END IF;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET next_right_edge = '
|| elink
|| ', abs_next_right_edge = '
|| abs(elink)
|| ' WHERE next_right_edge > 0 AND abs(next_right_edge) = '
|| e1id;
EXECUTE sql;
-- }
IF e1rec.left_face = e1rec.right_face THEN -- {
newfaceid := e1rec.left_face; -- TODO: or what should we return ?
newfacecreated := false;
ELSE -- }{
IF e1rec.left_face = 0 OR e1rec.right_face = 0 THEN -- {
--
-- We won't add any new face, but rather let the universe
-- flood the removed face.
--
newfaceid := 0;
newfacecreated := false;
ELSE -- }{
--
-- Insert the new face
--
sql := 'SELECT nextval(' || quote_literal(
quote_ident(toponame) || '.face_face_id_seq'
) || ')';
EXECUTE sql INTO STRICT newfaceid;
newfacecreated := true;
sql := 'INSERT INTO '
|| quote_ident(toponame)
|| '.face(face_id, mbr) SELECT '
-- face_id
|| newfaceid || ', '
-- minimum bounding rectangle is the union of the old faces mbr
-- (doing this without GEOS would be faster)
|| 'ST_Envelope(ST_Union(mbr)) FROM '
|| quote_ident(toponame)
|| '.face WHERE face_id IN ('
|| e1rec.left_face || ',' || e1rec.right_face
|| ')';
EXECUTE sql;
END IF; -- }
-- Update left_face for all edges still referencing old faces
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET left_face = ' || newfaceid
|| ' WHERE left_face IN ('
|| e1rec.left_face || ',' || e1rec.right_face
|| ')';
EXECUTE sql;
-- Update right_face for all edges still referencing old faces
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET right_face = ' || newfaceid
|| ' WHERE right_face IN ('
|| e1rec.left_face || ',' || e1rec.right_face
|| ')';
EXECUTE sql;
-- Update containing_face for all nodes still referencing old faces
sql := 'UPDATE ' || quote_ident(toponame)
|| '.node SET containing_face = ' || newfaceid
|| ' WHERE containing_face IN ('
|| e1rec.left_face || ',' || e1rec.right_face
|| ')';
EXECUTE sql;
-- NOT IN THE SPECS:
-- Replace composition rows involving the two
-- faces as one involving the new face.
-- It takes a DELETE and an UPDATE to do all
sql := 'DELETE FROM ' || quote_ident(toponame)
|| '.relation r USING topology.layer l '
|| 'WHERE l.level = 0 AND l.feature_type = 3'
|| ' AND l.topology_id = ' || topoid
|| ' AND l.layer_id = r.layer_id AND abs(r.element_id) = '
|| e1rec.left_face;
EXECUTE sql;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.relation r '
|| ' SET element_id = ' || newfaceid
|| ' FROM topology.layer l WHERE l.level = 0 AND l.feature_type = 3'
|| ' AND l.topology_id = ' || topoid
|| ' AND l.layer_id = r.layer_id AND r.element_id = '
|| e1rec.right_face;
EXECUTE sql;
END IF; -- } two faces healed...
-- Delete the edge
sql := 'DELETE FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e1id;
EXECUTE sql;
-- Check if any of the edge nodes remains isolated,
-- set containing_face = newfaceid in that case
sql := 'UPDATE ' || quote_ident(toponame)
|| '.node n SET containing_face = ' || newfaceid
|| ' WHERE node_id IN ('
|| e1rec.start_node || ','
|| e1rec.end_node || ') AND NOT EXISTS (SELECT edge_id FROM '
|| quote_ident(toponame)
|| '.edge_data WHERE start_node = n.node_id OR end_node = n.node_id)';
EXECUTE sql;
IF e1rec.right_face != e1rec.left_face THEN -- {
-- Delete left face, if not universe
IF e1rec.left_face != 0 THEN
sql := 'DELETE FROM ' || quote_ident(toponame)
|| '.face WHERE face_id = ' || e1rec.left_face;
EXECUTE sql;
END IF;
-- Delete right face, if not universe
IF e1rec.right_face != 0
THEN
sql := 'DELETE FROM ' || quote_ident(toponame)
|| '.face WHERE face_id = ' || e1rec.right_face;
EXECUTE sql;
END IF;
END IF; -- }
IF newfacecreated THEN
RETURN newfaceid;
ELSE
RETURN NULL; -- -newfaceid;
END IF;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_RemEdgeNewFace
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.15
--
-- ST_RemEdgeModFace(atopology, anedge)
--
-- Not in the specs:
-- * Raise an exception if any TopoGeometry is defined by only one
-- of the two faces that will dissolve.
-- * Raise an exception if any TopoGeometry is defined by
-- the edge being removed.
-- * Properly set containg_face on nodes that remains isolated by the drop
-- * Update containg_face for isolated nodes in the dissolved faces
-- * Update references in the Relation table
-- * Return id of the face taking up the removed edge space
--
-- }{
CREATE OR REPLACE FUNCTION topology.ST_RemEdgeModFace(toponame varchar, e1id integer)
RETURNS int
AS
$$
DECLARE
e1rec RECORD;
rec RECORD;
fidary int[];
topoid int;
sql text;
floodfaceid int;
elink int;
BEGIN
--
-- toponame and face_id are required
--
IF toponame IS NULL OR e1id IS NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - null argument';
END IF;
-- Get topology id
BEGIN
SELECT id FROM topology.topology
INTO STRICT topoid WHERE name = toponame;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END;
BEGIN
EXECUTE 'SELECT * FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e1id
INTO STRICT e1rec;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent edge %', e1id;
WHEN INVALID_SCHEMA_NAME THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
WHEN UNDEFINED_TABLE THEN
RAISE EXCEPTION 'corrupted topology "%" (missing edge_data table)',
toponame;
END;
-- NOT IN THE SPECS:
-- Check that no TopoGeometry references the edge being removed
PERFORM topology._ST_RemEdgeCheck(toponame, topoid, e1id, e1rec.left_face, e1rec.right_face);
-- Update next_left_edge and next_right_edge face
-- for all edges bounding the new face
RAISE NOTICE 'Updating next_{right,left}_face of ring edges...';
-- TODO: reduce the following to 2 UPDATE rather than 4
-- Update next_left_edge of previous edges in left face -- {
elink := e1rec.next_left_edge;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET next_left_edge = '
|| elink
|| ', abs_next_left_edge = '
|| abs(elink)
|| ' WHERE next_left_edge < 0 AND abs(next_left_edge) = '
|| e1id;
EXECUTE sql;
-- If the edge being removed links to self,
-- we use the other face
IF e1rec.abs_next_right_edge = e1rec.edge_id THEN
elink := e1rec.next_left_edge;
ELSE
elink := e1rec.next_right_edge;
END IF;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET next_left_edge = '
|| elink
|| ', abs_next_left_edge = '
|| abs(elink)
|| ' WHERE next_left_edge > 0 AND abs(next_left_edge) = '
|| e1id;
EXECUTE sql;
-- }
-- Update next_right_edge of previous edges in right face -- {
elink := e1rec.next_left_edge;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET next_right_edge = '
|| elink
|| ', abs_next_right_edge = '
|| abs(elink)
|| ' WHERE next_right_edge < 0 AND abs(next_right_edge) = '
|| e1id;
EXECUTE sql;
-- If the edge being removed links to self,
-- we use the other face
IF e1rec.abs_next_right_edge = e1rec.edge_id THEN
elink := e1rec.next_left_edge;
ELSE
elink := e1rec.next_right_edge;
END IF;
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET next_right_edge = '
|| elink
|| ', abs_next_right_edge = '
|| abs(elink)
|| ' WHERE next_right_edge > 0 AND abs(next_right_edge) = '
|| e1id;
EXECUTE sql;
-- }
IF e1rec.left_face = e1rec.right_face THEN -- {
floodfaceid = e1rec.left_face;
ELSE -- }{
IF e1rec.left_face = 0 OR e1rec.right_face = 0 THEN -- {
--
-- We won't add any new face, but rather let the universe
-- flood the removed face.
--
floodfaceid = 0;
ELSE -- }{
-- we choose right face as the face that will remain
-- to be symmetric with ST_AddEdgeModFace
floodfaceid = e1rec.right_face;
sql := 'UPDATE '
|| quote_ident(toponame)
|| '.face SET mbr = (SELECT '
-- minimum bounding rectangle is the union of the old faces mbr
-- (doing this without GEOS would be faster)
|| 'ST_Envelope(ST_Union(mbr)) FROM '
|| quote_ident(toponame)
|| '.face WHERE face_id IN ('
|| e1rec.left_face || ',' || e1rec.right_face
|| ') ) WHERE face_id = ' || floodfaceid ;
EXECUTE sql;
END IF; -- }
-- Update left_face for all edges still referencing old faces
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET left_face = ' || floodfaceid
|| ' WHERE left_face IN ('
|| e1rec.left_face || ',' || e1rec.right_face
|| ')';
EXECUTE sql;
-- Update right_face for all edges still referencing old faces
sql := 'UPDATE ' || quote_ident(toponame)
|| '.edge_data SET right_face = ' || floodfaceid
|| ' WHERE right_face IN ('
|| e1rec.left_face || ',' || e1rec.right_face
|| ')';
EXECUTE sql;
-- Update containing_face for all nodes still referencing old faces
sql := 'UPDATE ' || quote_ident(toponame)
|| '.node SET containing_face = ' || floodfaceid
|| ' WHERE containing_face IN ('
|| e1rec.left_face || ',' || e1rec.right_face
|| ')';
EXECUTE sql;
-- NOT IN THE SPECS:
-- Replace composition rows involving the two
-- faces as one involving the new face.
-- It takes a single DELETE to do that.
sql := 'DELETE FROM ' || quote_ident(toponame)
|| '.relation r USING topology.layer l '
|| 'WHERE l.level = 0 AND l.feature_type = 3'
|| ' AND l.topology_id = ' || topoid
|| ' AND l.layer_id = r.layer_id AND abs(r.element_id) IN ('
|| e1rec.left_face || ',' || e1rec.right_face
|| ') AND abs(r.element_id) != '
|| floodfaceid; -- could be optimized..
EXECUTE sql;
END IF; -- } two faces healed...
-- Delete the edge
sql := 'DELETE FROM ' || quote_ident(toponame)
|| '.edge_data WHERE edge_id = ' || e1id;
EXECUTE sql;
-- Check if any of the edge nodes remains isolated,
-- set containing_face = floodfaceid in that case
sql := 'UPDATE ' || quote_ident(toponame)
|| '.node n SET containing_face = ' || floodfaceid
|| ' WHERE node_id IN ('
|| e1rec.start_node || ','
|| e1rec.end_node || ') AND NOT EXISTS (SELECT edge_id FROM '
|| quote_ident(toponame)
|| '.edge_data WHERE start_node = n.node_id OR end_node = n.node_id)';
EXECUTE sql;
IF e1rec.right_face != e1rec.left_face THEN -- {
-- Delete left face, if not universe and not "flood" face
IF e1rec.left_face != 0 AND e1rec.left_face != floodfaceid
THEN
sql := 'DELETE FROM ' || quote_ident(toponame)
|| '.face WHERE face_id = ' || e1rec.left_face;
EXECUTE sql;
END IF;
-- Delete right face, if not universe and not "flood" face
IF e1rec.right_face != 0 AND e1rec.right_face != floodfaceid
THEN
sql := 'DELETE FROM ' || quote_ident(toponame)
|| '.face WHERE face_id = ' || e1rec.right_face;
EXECUTE sql;
END IF;
END IF; -- }
RETURN floodfaceid;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_RemEdgeModFace
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.16
--
-- ST_GetFaceGeometry(atopology, aface)
--
CREATE OR REPLACE FUNCTION topology.ST_GetFaceGeometry(toponame varchar, aface integer)
RETURNS GEOMETRY AS
$$
DECLARE
rec RECORD;
sql TEXT;
BEGIN
--
-- toponame and aface are required
--
IF toponame IS NULL OR aface IS NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - null argument';
END IF;
IF NOT EXISTS(SELECT name FROM topology.topology WHERE name = toponame) THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END IF;
IF aface = 0 THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - universal face has no geometry';
END IF;
BEGIN
-- No such face
sql := 'SELECT NOT EXISTS (SELECT * from ' || quote_ident(toponame)
|| '.face WHERE face_id = ' || aface
|| ') as none';
EXECUTE sql INTO rec;
IF rec.none THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent face.';
END IF;
--
-- Construct face
--
sql :=
'SELECT ST_BuildArea(ST_Collect(geom)) as geom FROM '
|| quote_ident(toponame)
|| '.edge_data WHERE left_face = ' || aface
|| ' OR right_face = ' || aface;
FOR rec IN EXECUTE sql
LOOP
RETURN rec.geom;
END LOOP;
EXCEPTION
WHEN INVALID_SCHEMA_NAME THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
WHEN UNDEFINED_TABLE THEN
RAISE EXCEPTION 'corrupted topology "%"', toponame;
END;
RETURN NULL;
END
$$
LANGUAGE 'plpgsql' STABLE;
--} ST_GetFaceGeometry
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.1
--
-- ST_AddIsoNode(atopology, aface, apoint)
--
CREATE OR REPLACE FUNCTION topology.ST_AddIsoNode(atopology varchar, aface integer, apoint geometry)
RETURNS INTEGER AS
$$
DECLARE
rec RECORD;
nodeid integer;
sql text;
containingface integer;
BEGIN
--
-- Atopology and apoint are required
--
IF atopology IS NULL OR apoint IS NULL THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - null argument';
END IF;
--
-- Atopology must be registered
--
IF NOT EXISTS(SELECT name FROM topology.topology WHERE topology.name = atopology) THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - invalid topology name';
END IF;
--
-- Apoint must be a point
--
IF substring(geometrytype(apoint), 1, 5) != 'POINT'
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - invalid point';
END IF;
--
-- Check if a coincident node already exists
--
-- We use index AND x/y equality
--
FOR rec IN EXECUTE 'SELECT node_id FROM '
|| quote_ident(atopology) || '.node ' ||
'WHERE ST_Equals(geom, ' || quote_literal(apoint::text) || '::geometry)'
LOOP
RAISE EXCEPTION
'SQL/MM Spatial exception - coincident node';
END LOOP;
--
-- Check if any edge crosses (intersects) this node
-- I used _intersects_ here to include boundaries (endpoints)
--
FOR rec IN EXECUTE 'SELECT edge_id FROM '
|| quote_ident(atopology) || '.edge '
|| 'WHERE ST_Intersects(geom, ' || quote_literal(apoint::text)
|| '::geometry)'
LOOP
RAISE EXCEPTION
'SQL/MM Spatial exception - edge crosses node.';
END LOOP;
-- retrieve the face that contains (eventually) the point
--
-- first test is to check if there is inside an mbr (more fast)
--
sql := 'SELECT f.face_id FROM '
|| quote_ident(atopology)
|| '.face f WHERE f.face_id > 0 AND f.mbr && '
|| quote_literal(apoint::text)
|| '::geometry AND ST_Contains(topology.ST_GetFaceGeometry('
|| quote_literal(atopology)
|| ', f.face_id), '
|| quote_literal(apoint::text)
|| '::geometry)';
IF aface IS NOT NULL AND aface != 0 THEN
sql := sql || ' AND f.face_id = ' || aface;
END IF;
EXECUTE sql INTO containingface;
-- If aface was specified, check that it was correct
IF aface IS NOT NULL THEN -- {
IF aface = 0 THEN -- {
IF containingface IS NOT NULL THEN -- {
RAISE EXCEPTION
'SQL/MM Spatial exception - within face % (not universe)',
containingface;
ELSE -- }{
containingface := 0;
END IF; -- }
ELSE -- }{ -- aface != 0
IF containingface IS NULL OR containingface != aface THEN -- {
RAISE EXCEPTION 'SQL/MM Spatial exception - not within face';
END IF; -- }
END IF; -- }
ELSE -- }{ -- aface is null
containingface := COALESCE(containingface, 0);
END IF; -- }
--
-- Insert the new row
--
sql := 'INSERT INTO '
|| quote_ident(atopology)
|| '.node(node_id, geom, containing_face) SELECT nextval('
|| quote_literal( quote_ident(atopology) || '.node_node_id_seq' )
|| '),'
||quote_literal(apoint::text)
|| '::geometry,' || containingface
|| ' RETURNING node_id';
EXECUTE sql INTO nodeid;
RETURN nodeid;
EXCEPTION
-- TODO: avoid the EXCEPTION handling here ?
WHEN INVALID_SCHEMA_NAME THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_AddIsoNode
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.2
--
-- ST_MoveIsoNode(atopology, anode, apoint)
--
CREATE OR REPLACE FUNCTION topology.ST_MoveIsoNode(atopology character varying, anode integer, apoint geometry)
RETURNS text AS
$$
DECLARE
rec RECORD;
BEGIN
--
-- All arguments are required
--
IF atopology IS NULL OR anode IS NULL OR apoint IS NULL THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - null argument';
END IF;
--
-- Apoint must be a point
--
IF substring(geometrytype(apoint), 1, 5) != 'POINT'
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - invalid point';
END IF;
--
-- Check node isolation.
--
FOR rec IN EXECUTE 'SELECT edge_id FROM '
|| quote_ident(atopology) || '.edge ' ||
' WHERE start_node = ' || anode ||
' OR end_node = ' || anode
LOOP
RAISE EXCEPTION
'SQL/MM Spatial exception - not isolated node';
END LOOP;
--
-- Check if a coincident node already exists
--
-- We use index AND x/y equality
--
FOR rec IN EXECUTE 'SELECT node_id FROM '
|| quote_ident(atopology) || '.node ' ||
'WHERE geom && ' || quote_literal(apoint::text) || '::geometry'
||' AND ST_X(geom) = ST_X('||quote_literal(apoint::text)||'::geometry)'
||' AND ST_Y(geom) = ST_Y('||quote_literal(apoint::text)||'::geometry)'
LOOP
RAISE EXCEPTION
'SQL/MM Spatial exception - coincident node';
END LOOP;
--
-- Check if any edge crosses (intersects) this node
-- I used _intersects_ here to include boundaries (endpoints)
--
FOR rec IN EXECUTE 'SELECT edge_id FROM '
|| quote_ident(atopology) || '.edge '
|| 'WHERE geom && ' || quote_literal(apoint::text)
|| ' AND ST_Intersects(geom, ' || quote_literal(apoint::text)
|| '::geometry)'
LOOP
RAISE EXCEPTION
'SQL/MM Spatial exception - edge crosses node.';
END LOOP;
--
-- Update node point
--
EXECUTE 'UPDATE ' || quote_ident(atopology) || '.node '
|| ' SET geom = ' || quote_literal(apoint::text)
|| ' WHERE node_id = ' || anode;
RETURN 'Isolated Node ' || anode || ' moved to location '
|| ST_X(apoint) || ',' || ST_Y(apoint);
END
$$
LANGUAGE plpgsql VOLATILE;
--} ST_MoveIsoNode
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.3
--
-- ST_RemoveIsoNode(atopology, anode)
--
CREATE OR REPLACE FUNCTION topology.ST_RemoveIsoNode(atopology varchar, anode integer)
RETURNS TEXT AS
$$
DECLARE
rec RECORD;
BEGIN
--
-- Atopology and apoint are required
--
IF atopology IS NULL OR anode IS NULL THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - null argument';
END IF;
--
-- Check node isolation.
--
FOR rec IN EXECUTE 'SELECT edge_id FROM '
|| quote_ident(atopology) || '.edge_data ' ||
' WHERE start_node = ' || anode ||
' OR end_node = ' || anode
LOOP
RAISE EXCEPTION
'SQL/MM Spatial exception - not isolated node';
END LOOP;
EXECUTE 'DELETE FROM ' || quote_ident(atopology) || '.node '
|| ' WHERE node_id = ' || anode;
RETURN 'Isolated node ' || anode || ' removed';
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_RemoveIsoNode
--{
-- According to http://trac.osgeo.org/postgis/ticket/798
-- ST_RemoveIsoNode was renamed to ST_RemIsoNode in the final ISO
-- document
--
CREATE OR REPLACE FUNCTION topology.ST_RemIsoNode(varchar, integer)
RETURNS TEXT AS
$$
SELECT topology.ST_RemoveIsoNode($1, $2)
$$ LANGUAGE 'sql' VOLATILE;
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.7
--
-- ST_RemoveIsoEdge(atopology, anedge)
--
CREATE OR REPLACE FUNCTION topology.ST_RemoveIsoEdge(atopology varchar, anedge integer)
RETURNS TEXT AS
$$
DECLARE
edge RECORD;
rec RECORD;
ok BOOL;
BEGIN
--
-- Atopology and anedge are required
--
IF atopology IS NULL OR anedge IS NULL THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - null argument';
END IF;
--
-- Check node existance
--
ok = false;
FOR edge IN EXECUTE 'SELECT * FROM '
|| quote_ident(atopology) || '.edge_data ' ||
' WHERE edge_id = ' || anedge
LOOP
ok = true;
END LOOP;
IF NOT ok THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - non-existent edge';
END IF;
--
-- Check node isolation
--
IF edge.left_face != edge.right_face THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - not isolated edge';
END IF;
FOR rec IN EXECUTE 'SELECT * FROM '
|| quote_ident(atopology) || '.edge_data '
|| ' WHERE edge_id != ' || anedge
|| ' AND ( start_node = ' || edge.start_node
|| ' OR start_node = ' || edge.end_node
|| ' OR end_node = ' || edge.start_node
|| ' OR end_node = ' || edge.end_node
|| ' ) '
LOOP
RAISE EXCEPTION
'SQL/MM Spatial exception - not isolated edge';
END LOOP;
--
-- Delete the edge
--
EXECUTE 'DELETE FROM ' || quote_ident(atopology) || '.edge_data '
|| ' WHERE edge_id = ' || anedge;
RETURN 'Isolated edge ' || anedge || ' removed';
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_RemoveIsoEdge
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.8
--
-- ST_NewEdgesSplit(atopology, anedge, apoint)
--
-- Not in the specs:
-- * Update references in the Relation table.
--
CREATE OR REPLACE FUNCTION topology.ST_NewEdgesSplit(atopology varchar, anedge integer, apoint geometry)
RETURNS INTEGER AS
$$
DECLARE
oldedge RECORD;
rec RECORD;
tmp integer;
topoid integer;
nodeid integer;
nodepos float8;
edgeid1 integer;
edgeid2 integer;
edge1 geometry;
edge2 geometry;
ok BOOL;
BEGIN
--
-- All args required
--
IF atopology IS NULL OR anedge IS NULL OR apoint IS NULL THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - null argument';
END IF;
-- Get topology id
BEGIN
SELECT id FROM topology.topology
INTO STRICT topoid WHERE name = atopology;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END;
--
-- Check node existance
--
ok = false;
FOR oldedge IN EXECUTE 'SELECT * FROM '
|| quote_ident(atopology) || '.edge_data ' ||
' WHERE edge_id = ' || anedge
LOOP
ok = true;
END LOOP;
IF NOT ok THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - non-existent edge';
END IF;
--
-- Check that given point is Within(anedge.geom)
--
IF NOT ST_Within(apoint, oldedge.geom) THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - point not on edge';
END IF;
--
-- Check if a coincident node already exists
--
FOR rec IN EXECUTE 'SELECT node_id FROM '
|| quote_ident(atopology) || '.node '
|| 'WHERE geom && '
|| quote_literal(apoint::text) || '::geometry'
|| ' AND ST_X(geom) = ST_X('
|| quote_literal(apoint::text) || '::geometry)'
|| ' AND ST_Y(geom) = ST_Y('
|| quote_literal(apoint::text) || '::geometry)'
LOOP
RAISE EXCEPTION
'SQL/MM Spatial exception - coincident node';
END LOOP;
--
-- Get new node id
--
FOR rec IN EXECUTE 'SELECT nextval(''' ||
atopology || '.node_node_id_seq'')'
LOOP
nodeid = rec.nextval;
END LOOP;
--RAISE NOTICE 'Next node id = % ', nodeid;
--
-- Add the new node
--
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.node(node_id, geom)
VALUES(' || nodeid || ','
|| quote_literal(apoint::text)
|| ')';
--
-- Delete the old edge
--
EXECUTE 'DELETE FROM ' || quote_ident(atopology) || '.edge_data '
|| ' WHERE edge_id = ' || anedge;
--
-- Compute new edges
--
edge2 := ST_Split(oldedge.geom, apoint);
edge1 := ST_GeometryN(edge2, 1);
edge2 := ST_GeometryN(edge2, 2);
--
-- Get ids for the new edges
--
FOR rec IN EXECUTE 'SELECT nextval(''' ||
atopology || '.edge_data_edge_id_seq'')'
LOOP
edgeid1 = rec.nextval;
END LOOP;
FOR rec IN EXECUTE 'SELECT nextval(''' ||
atopology || '.edge_data_edge_id_seq'')'
LOOP
edgeid2 = rec.nextval;
END LOOP;
--RAISE NOTICE 'EdgeId1 % EdgeId2 %', edgeid1, edgeid2;
--RAISE DEBUG 'oldedge.next_left_edge: %', oldedge.next_left_edge;
--RAISE DEBUG 'oldedge.next_right_edge: %', oldedge.next_right_edge;
--
-- Insert the two new edges
--
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.edge VALUES('
|| edgeid1 -- edge_id
|| ',' || oldedge.start_node -- start_node
|| ',' || nodeid -- end_node
|| ',' || edgeid2 -- next_left_edge
|| ',' || CASE -- next_right_edge
WHEN
oldedge.next_right_edge = anedge
THEN edgeid1
WHEN
oldedge.next_right_edge = -anedge
THEN -edgeid2
ELSE oldedge.next_right_edge
END
|| ',' || oldedge.left_face -- left_face
|| ',' || oldedge.right_face -- right_face
|| ',' || quote_literal(edge1::text) -- geom
||')';
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.edge VALUES('
|| edgeid2 -- edge_id
|| ',' || nodeid -- start_node
|| ',' || oldedge.end_node -- end_node
|| ',' || CASE -- next_left_edge
WHEN
oldedge.next_left_edge =
-anedge
THEN -edgeid2
WHEN
oldedge.next_left_edge =
anedge
THEN edgeid1
ELSE oldedge.next_left_edge
END
|| ',' || -edgeid1 -- next_right_edge
|| ',' || oldedge.left_face -- left_face
|| ',' || oldedge.right_face -- right_face
|| ',' || quote_literal(edge2::text) -- geom
||')';
--
-- Update all next edge references to match new layout
--
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_right_edge = '
|| edgeid2
|| ','
|| ' abs_next_right_edge = ' || edgeid2
|| ' WHERE next_right_edge = ' || anedge
|| ' AND edge_id NOT IN (' || edgeid1 || ',' || edgeid2 || ')'
;
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_right_edge = '
|| -edgeid1
|| ','
|| ' abs_next_right_edge = ' || edgeid1
|| ' WHERE next_right_edge = ' || -anedge
|| ' AND edge_id NOT IN (' || edgeid1 || ',' || edgeid2 || ')'
;
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_left_edge = '
|| edgeid1
|| ','
|| ' abs_next_left_edge = ' || edgeid1
|| ' WHERE next_left_edge = ' || anedge
|| ' AND edge_id NOT IN (' || edgeid1 || ',' || edgeid2 || ')'
;
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET '
|| ' next_left_edge = ' || -edgeid2
|| ','
|| ' abs_next_left_edge = ' || edgeid2
|| ' WHERE next_left_edge = ' || -anedge
|| ' AND edge_id NOT IN (' || edgeid1 || ',' || edgeid2 || ')'
;
--
-- Update references in the Relation table.
-- We only take into considerations non-hierarchical
-- TopoGeometry here, for obvious reasons.
--
FOR rec IN EXECUTE 'SELECT r.* FROM '
|| quote_ident(atopology)
|| '.relation r, topology.layer l '
|| ' WHERE '
|| ' l.topology_id = ' || topoid
|| ' AND l.level = 0 '
|| ' AND l.layer_id = r.layer_id '
|| ' AND abs(r.element_id) = ' || anedge
|| ' AND r.element_type = 2'
LOOP
--RAISE NOTICE 'TopoGeometry % in layer % contains the edge being split', rec.topogeo_id, rec.layer_id;
-- Delete old reference
EXECUTE 'DELETE FROM ' || quote_ident(atopology)
|| '.relation '
|| ' WHERE '
|| 'layer_id = ' || rec.layer_id
|| ' AND '
|| 'topogeo_id = ' || rec.topogeo_id
|| ' AND '
|| 'element_type = ' || rec.element_type
|| ' AND '
|| 'abs(element_id) = ' || anedge;
-- Add new reference to edge1
IF rec.element_id < 0 THEN
tmp = -edgeid1;
ELSE
tmp = edgeid1;
END IF;
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.relation '
|| ' VALUES( '
|| rec.topogeo_id
|| ','
|| rec.layer_id
|| ','
|| tmp
|| ','
|| rec.element_type
|| ')';
-- Add new reference to edge2
IF rec.element_id < 0 THEN
tmp = -edgeid2;
ELSE
tmp = edgeid2;
END IF;
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.relation '
|| ' VALUES( '
|| rec.topogeo_id
|| ','
|| rec.layer_id
|| ','
|| tmp
|| ','
|| rec.element_type
|| ')';
END LOOP;
--RAISE NOTICE 'Edge % split in edges % and % by node %',
-- anedge, edgeid1, edgeid2, nodeid;
RETURN nodeid;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_NewEdgesSplit
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.9
--
-- ST_ModEdgeSplit(atopology, anedge, apoint)
--
-- Not in the specs:
-- * Update references in the Relation table.
--
CREATE OR REPLACE FUNCTION topology.ST_ModEdgeSplit(atopology varchar, anedge integer, apoint geometry)
RETURNS INTEGER AS
$$
DECLARE
oldedge RECORD;
rec RECORD;
tmp integer;
topoid integer;
nodeid integer;
nodepos float8;
newedgeid integer;
newedge1 geometry;
newedge2 geometry;
query text;
ok BOOL;
BEGIN
--
-- All args required
--
IF atopology IS NULL OR anedge IS NULL OR apoint IS NULL THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - null argument';
END IF;
-- Get topology id
BEGIN
SELECT id FROM topology.topology
INTO STRICT topoid WHERE name = atopology;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END;
--
-- Check node existance
--
ok = false;
FOR oldedge IN EXECUTE 'SELECT * FROM '
|| quote_ident(atopology) || '.edge_data ' ||
' WHERE edge_id = ' || anedge
LOOP
ok = true;
END LOOP;
IF NOT ok THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - non-existent edge';
END IF;
--
-- Check that given point is Within(anedge.geom)
--
IF NOT ST_Within(apoint, oldedge.geom) THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - point not on edge';
END IF;
--
-- Check if a coincident node already exists
--
FOR rec IN EXECUTE 'SELECT node_id FROM '
|| quote_ident(atopology) || '.node ' ||
'WHERE geom && '
|| quote_literal(apoint::text) || '::geometry'
||' AND ST_X(geom) = ST_X('
|| quote_literal(apoint::text) || '::geometry)'
||' AND ST_Y(geom) = ST_Y('
||quote_literal(apoint::text)||'::geometry)'
LOOP
RAISE EXCEPTION
'SQL/MM Spatial exception - coincident node';
END LOOP;
--
-- Get new node id
--
FOR rec IN EXECUTE 'SELECT nextval(''' ||
atopology || '.node_node_id_seq'')'
LOOP
nodeid = rec.nextval;
END LOOP;
--RAISE NOTICE 'Next node id = % ', nodeid;
--
-- Add the new node
--
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.node(node_id, geom)
VALUES('||nodeid||','||quote_literal(apoint::text)||
')';
--
-- Compute new edge
--
newedge2 := ST_Split(oldedge.geom, apoint);
newedge1 := ST_GeometryN(newedge2, 1);
newedge2 := ST_GeometryN(newedge2, 2);
--
-- Get ids for the new edge
--
FOR rec IN EXECUTE 'SELECT nextval(''' ||
atopology || '.edge_data_edge_id_seq'')'
LOOP
newedgeid = rec.nextval;
END LOOP;
--
-- Insert the new edge
--
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.edge '
|| '(edge_id, start_node, end_node,'
|| 'next_left_edge, next_right_edge,'
|| 'left_face, right_face, geom) '
|| 'VALUES('
|| newedgeid
|| ',' || nodeid
|| ',' || oldedge.end_node
|| ',' || COALESCE( -- next_left_edge
NULLIF(
oldedge.next_left_edge,
-anedge
),
-newedgeid
)
|| ',' || -anedge -- next_right_edge
|| ',' || oldedge.left_face -- left_face
|| ',' || oldedge.right_face -- right_face
|| ',' || quote_literal(newedge2::text) -- geom
||')';
--
-- Update the old edge
--
EXECUTE 'UPDATE ' || quote_ident(atopology) || '.edge_data '
|| ' SET geom = ' || quote_literal(newedge1::text)
|| ','
|| ' next_left_edge = ' || newedgeid
|| ', abs_next_left_edge = ' || newedgeid
|| ','
|| ' end_node = ' || nodeid
|| ' WHERE edge_id = ' || anedge;
--
-- Update all next edge references to match new layout
--
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_right_edge = '
|| -newedgeid
|| ','
|| ' abs_next_right_edge = ' || newedgeid
|| ' WHERE edge_id != ' || newedgeid
|| ' AND next_right_edge = ' || -anedge;
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET '
|| ' next_left_edge = ' || -newedgeid
|| ','
|| ' abs_next_left_edge = ' || newedgeid
|| ' WHERE edge_id != ' || newedgeid
|| ' AND next_left_edge = ' || -anedge;
--
-- Update references in the Relation table.
-- We only take into considerations non-hierarchical
-- TopoGeometry here, for obvious reasons.
--
FOR rec IN EXECUTE 'SELECT r.* FROM '
|| quote_ident(atopology)
|| '.relation r, topology.layer l '
|| ' WHERE '
|| ' l.topology_id = ' || topoid
|| ' AND l.level = 0 '
|| ' AND l.layer_id = r.layer_id '
|| ' AND abs(r.element_id) = ' || anedge
|| ' AND r.element_type = 2'
LOOP
--RAISE NOTICE 'TopoGeometry % in layer % contains the edge being split (%) - updating to add new edge %', rec.topogeo_id, rec.layer_id, anedge, newedgeid;
-- Add new reference to edge1
IF rec.element_id < 0 THEN
tmp = -newedgeid;
ELSE
tmp = newedgeid;
END IF;
query = 'INSERT INTO ' || quote_ident(atopology)
|| '.relation '
|| ' VALUES( '
|| rec.topogeo_id
|| ','
|| rec.layer_id
|| ','
|| tmp
|| ','
|| rec.element_type
|| ')';
--RAISE NOTICE '%', query;
EXECUTE query;
END LOOP;
--RAISE NOTICE 'Edge % split in edges % and % by node %',
-- anedge, anedge, newedgeid, nodeid;
RETURN nodeid;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_ModEdgesSplit
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.4
--
-- ST_AddIsoEdge(atopology, anode, anothernode, acurve)
--
-- Not in the specs:
-- * Reset containing_face for starting and ending point,
-- as they stop being isolated nodes
-- * Refuse to add a closed edge, as it would not be isolated
-- (ie: would create a ring)
--
-- }{
--
CREATE OR REPLACE FUNCTION topology.ST_AddIsoEdge(atopology varchar, anode integer, anothernode integer, acurve geometry)
RETURNS INTEGER AS
$$
DECLARE
aface INTEGER;
face GEOMETRY;
snodegeom GEOMETRY;
enodegeom GEOMETRY;
count INTEGER;
rec RECORD;
edgeid INTEGER;
BEGIN
--
-- All arguments required
--
IF atopology IS NULL
OR anode IS NULL
OR anothernode IS NULL
OR acurve IS NULL
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - null argument';
END IF;
-- NOT IN THE SPECS:
-- A closed edge is never isolated (as it forms a face)
IF anode = anothernode THEN
RAISE EXCEPTION
'Closed edges would not be isolated, try ST_AddEdgeNewFaces';
END IF;
--
-- Acurve must be a LINESTRING
--
IF substring(geometrytype(acurve), 1, 4) != 'LINE'
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - invalid curve';
END IF;
--
-- Acurve must be simple
--
IF NOT ST_IsSimple(acurve)
THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - curve not simple';
END IF;
--
-- Check for:
-- existence of nodes
-- nodes faces match
-- Extract:
-- nodes face id
-- nodes geoms
--
aface := NULL;
count := 0;
FOR rec IN EXECUTE 'SELECT geom, containing_face, node_id FROM '
|| quote_ident(atopology) || '.node
WHERE node_id = ' || anode ||
' OR node_id = ' || anothernode
LOOP
IF rec.containing_face IS NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - not isolated node';
END IF;
IF aface IS NULL THEN
aface := rec.containing_face;
ELSE
IF aface != rec.containing_face THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - nodes in different faces';
END IF;
END IF;
-- Get nodes geom
IF rec.node_id = anode THEN
snodegeom = rec.geom;
ELSE
enodegeom = rec.geom;
END IF;
count = count+1;
END LOOP;
-- TODO: don't need count, can do with snodegeom/enodegeom instead..
IF count < 2 THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent node';
END IF;
--
-- l) Check that start point of acurve match start node
-- geoms.
--
IF ST_X(snodegeom) != ST_X(ST_StartPoint(acurve)) OR
ST_Y(snodegeom) != ST_Y(ST_StartPoint(acurve))
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - start node not geometry start point.';
END IF;
--
-- m) Check that end point of acurve match end node
-- geoms.
--
IF ST_X(enodegeom) != ST_X(ST_EndPoint(acurve)) OR
ST_Y(enodegeom) != ST_Y(ST_EndPoint(acurve))
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - end node not geometry end point.';
END IF;
--
-- n) Check if curve crosses (contains) any node
-- I used _contains_ here to leave endpoints out
--
FOR rec IN EXECUTE 'SELECT node_id FROM '
|| quote_ident(atopology) || '.node '
|| ' WHERE geom && ' || quote_literal(acurve::text)
|| ' AND ST_Contains(' || quote_literal(acurve::text)
|| ',geom)'
LOOP
RAISE EXCEPTION
'SQL/MM Spatial exception - geometry crosses a node';
END LOOP;
--
-- o) Check if curve intersects any other edge
--
FOR rec IN EXECUTE 'SELECT * FROM '
|| quote_ident(atopology) || '.edge_data
WHERE ST_Intersects(geom, ' || quote_literal(acurve::text) || '::geometry)'
LOOP
RAISE EXCEPTION 'SQL/MM Spatial exception - geometry intersects an edge';
END LOOP;
--
-- Get new edge id from sequence
--
FOR rec IN EXECUTE 'SELECT nextval(''' ||
atopology || '.edge_data_edge_id_seq'')'
LOOP
edgeid = rec.nextval;
END LOOP;
-- TODO: this should likely be an exception instead !
IF aface IS NULL THEN
aface := 0;
END IF;
--
-- Insert the new row
--
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.edge VALUES(' || edgeid || ',' || anode
|| ',' || anothernode || ',' || (-edgeid)
|| ',' || edgeid || ','
|| aface || ',' || aface || ','
|| quote_literal(acurve::text) || ')';
--
-- Update Node containing_face values
--
-- the nodes anode and anothernode are no more isolated
-- because now there is an edge connecting them
--
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.node SET containing_face = NULL where (node_id ='
|| anode
|| ' OR node_id='
|| anothernode
|| ')';
RETURN edgeid;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_AddIsoEdge
-- Internal function used by ST_ChangeEdgeGeom to compare
-- adjacent edges of an edge endpoint
--
-- @param anode the node to use edge end star of
-- @param anedge the directed edge to get adjacents from
-- if positive `anode' is assumed to be its start node
-- if negative `anode' is assumed to be its end node
--
-- {
CREATE OR REPLACE FUNCTION topology._ST_AdjacentEdges(atopology varchar, anode integer, anedge integer)
RETURNS integer[] AS
$$
DECLARE
ret integer[];
BEGIN
WITH edgestar AS (
SELECT *, count(*) over () AS cnt
FROM topology.GetNodeEdges(atopology, anode)
)
SELECT ARRAY[ (
SELECT p.edge AS prev FROM edgestar p
WHERE p.sequence = CASE WHEN m.sequence-1 < 1 THEN cnt
ELSE m.sequence-1 END
), (
SELECT p.edge AS prev FROM edgestar p WHERE p.sequence = ((m.sequence)%cnt)+1
) ]
FROM edgestar m
WHERE edge = anedge
INTO ret;
RETURN ret;
END
$$
LANGUAGE 'plpgsql' STABLE;
--}
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.6
--
-- ST_ChangeEdgeGeom(atopology, anedge, acurve)
--
-- Not in the specs:
-- * Raise an exception if given a non-existent edge
-- * Raise an exception if movement is not topologically isomorphic
--
-- }{
CREATE OR REPLACE FUNCTION topology.ST_ChangeEdgeGeom(atopology varchar, anedge integer, acurve geometry)
RETURNS TEXT AS
$$
DECLARE
rec RECORD;
rng_info RECORD; -- movement range info
oldedge RECORD;
range GEOMETRY; -- movement range
tmp1 GEOMETRY;
snode_info RECORD;
enode_info RECORD;
sql TEXT;
iscw BOOLEAN;
BEGIN
--
-- All arguments required
--
IF atopology IS NULL
OR anedge IS NULL
OR acurve IS NULL
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - null argument';
END IF;
--
-- Acurve must be a LINESTRING
--
IF substring(geometrytype(acurve), 1, 4) != 'LINE'
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - invalid curve';
END IF;
--
-- Acurve must be a simple
--
IF NOT ST_IsSimple(acurve)
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - curve not simple';
END IF;
--
-- Get data about existing edge
--
BEGIN
EXECUTE 'SELECT * FROM ' || quote_ident(atopology) || '.edge_data '
|| ' WHERE edge_id = ' || anedge
INTO STRICT oldedge;
EXCEPTION
-- NOT IN THE SPECS: check given edge existance
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent edge %', anedge;
END;
--
-- e) Check StartPoint consistency
--
IF NOT ST_Equals(ST_StartPoint(acurve), ST_StartPoint(oldedge.geom)) THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - start node not geometry start point.';
END IF;
IF oldedge.start_node = oldedge.end_node THEN -- {
-- Not in the specs:
-- if the edge is closed, check we didn't change winding !
-- (should be part of isomorphism checking)
range := ST_MakePolygon(oldedge.geom);
iscw := ST_OrderingEquals(range, ST_ForceRHR(range));
IF ST_NumPoints(ST_RemoveRepeatedPoints(acurve)) < 3 THEN
RAISE EXCEPTION 'Invalid edge (no two distinct vertices exist)';
END IF;
range := ST_MakePolygon(acurve);
IF iscw != ST_OrderingEquals(range, ST_ForceRHR(range)) THEN
RAISE EXCEPTION 'Edge twist at node %',
ST_AsText(ST_StartPoint(oldedge.geom));
END IF;
ELSE -- }{
--
-- f) Check EndPoint consistency
--
IF NOT ST_Equals(ST_EndPoint(acurve), ST_EndPoint(oldedge.geom)) THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - end node not geometry end point.';
END IF;
END IF; -- }
--
-- g) Check if curve crosses any node
--
FOR rec IN EXECUTE
'SELECT node_id, ST_Relate(geom, '
|| quote_literal(acurve::text) || '::geometry, 2) as relate FROM '
|| quote_ident(atopology)
|| '.node WHERE geom && '
|| quote_literal(acurve::text)
|| '::geometry AND node_id NOT IN ('
|| oldedge.start_node || ',' || oldedge.end_node
|| ')'
LOOP
IF ST_RelateMatch(rec.relate, 'T********') THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - geometry crosses a node';
END IF;
END LOOP;
--
-- h) Check if this geometry has any interaction with any existing edge
--
sql := 'SELECT edge_id, ST_Relate(geom,'
|| quote_literal(acurve::text)
|| '::geometry, 2) as im FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE edge_id != ' || anedge || ' AND geom && '
|| quote_literal(acurve::text) || '::geometry';
FOR rec IN EXECUTE sql LOOP -- {
--RAISE DEBUG 'IM=%',rec.im;
IF ST_RelateMatch(rec.im, 'F********') THEN
CONTINUE; -- no interior-interior intersection
END IF;
IF ST_RelateMatch(rec.im, '1FFF*FFF2') THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - coincident edge %', rec.edge_id;
END IF;
-- NOT IN THE SPECS: geometry touches an edge
IF ST_RelateMatch(rec.im, '1********') THEN
RAISE EXCEPTION
'Spatial exception - geometry intersects edge %', rec.edge_id;
END IF;
IF ST_RelateMatch(rec.im, 'T********') THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - geometry crosses edge %', rec.edge_id;
END IF;
END LOOP; -- }
--
-- Not in the specs:
-- Check topological isomorphism
--
-- Check that the "motion range" doesn't include any node
--{
sql := 'SELECT ST_Collect(geom) as nodes, '
|| 'null::geometry as r1, null::geometry as r2 FROM '
|| quote_ident(atopology)
|| '.node WHERE geom && '
|| quote_literal(ST_Collect(ST_Envelope(oldedge.geom),
ST_Envelope(acurve))::text)
|| '::geometry AND node_id NOT IN ( '
|| oldedge.start_node || ',' || oldedge.end_node || ')';
EXECUTE sql INTO rng_info;
-- There's no collision if there's no nodes in the combined
-- bbox of old and new edges.
--
IF NOT ST_IsEmpty(rng_info.nodes) THEN -- {
tmp1 := ST_MakeLine(ST_EndPoint(oldedge.geom), ST_StartPoint(oldedge.geom));
rng_info.r1 := ST_MakeLine(oldedge.geom, tmp1);
IF ST_NumPoints(rng_info.r1) < 4 THEN
rng_info.r1 := ST_AddPoint(rng_info.r1, ST_StartPoint(oldedge.geom));
END IF;
rng_info.r1 := ST_CollectionExtract(
ST_MakeValid(ST_MakePolygon(rng_info.r1)), 3);
rng_info.r2 := ST_MakeLine(acurve, tmp1);
IF ST_NumPoints(rng_info.r2) < 4 THEN
rng_info.r2 := ST_AddPoint(rng_info.r2, ST_StartPoint(oldedge.geom));
END IF;
rng_info.r2 := ST_CollectionExtract(
ST_MakeValid(ST_MakePolygon(rng_info.r2)), 3);
FOR rec IN WITH
nodes AS ( SELECT * FROM ST_Dump(rng_info.nodes) ),
inr1 AS ( SELECT path[1] FROM nodes WHERE ST_Contains(rng_info.r1, geom) ),
inr2 AS ( SELECT path[1] FROM nodes WHERE ST_Contains(rng_info.r2, geom) )
( SELECT * FROM inr1
EXCEPT
SELECT * FROM inr2
) UNION
( SELECT * FROM inr2
EXCEPT
SELECT * FROM inr1
)
LOOP
RAISE EXCEPTION 'Edge motion collision at %',
ST_AsText(ST_GeometryN(rng_info.nodes, rec.path));
END LOOP;
END IF; -- }
--} motion range checking end
--
-- Check edge adjacency before
--{
SELECT topology._ST_AdjacentEdges(
atopology, oldedge.start_node, anedge
) as pre, NULL::integer[] as post
INTO STRICT snode_info;
SELECT topology._ST_AdjacentEdges(
atopology, oldedge.end_node, -anedge
) as pre, NULL::integer[] as post
INTO STRICT enode_info;
--}
--
-- Update edge geometry
--
EXECUTE 'UPDATE ' || quote_ident(atopology) || '.edge_data '
|| ' SET geom = ' || quote_literal(acurve::text)
|| ' WHERE edge_id = ' || anedge;
--
-- Check edge adjacency after
--{
snode_info.post := topology._ST_AdjacentEdges(
atopology, oldedge.start_node, anedge
);
enode_info.post := topology._ST_AdjacentEdges(
atopology, oldedge.end_node, -anedge
);
IF snode_info.pre != snode_info.post THEN
RAISE EXCEPTION 'Edge changed disposition around start node %',
oldedge.start_node;
END IF;
IF enode_info.pre != enode_info.post THEN
RAISE EXCEPTION 'Edge changed disposition around end node %',
oldedge.end_node;
END IF;
--}
-- Update faces MBR of left and right faces
-- TODO: think about ways to optimize this part, like see if
-- the old edge geometry partecipated in the definition
-- of the current MBR (for shrinking) or the new edge MBR
-- would be larger than the old face MBR...
--
IF oldedge.left_face != 0 THEN
sql := 'UPDATE ' || quote_ident(atopology) || '.face '
|| ' SET mbr = ' || quote_literal(
ST_Envelope(topology.ST_GetFaceGeometry(atopology, oldedge.left_face))::text
)
|| '::geometry WHERE face_id = ' || oldedge.left_face;
EXECUTE sql;
END IF;
IF oldedge.right_face != 0 AND oldedge.right_face != oldedge.left_face THEN
sql := 'UPDATE ' || quote_ident(atopology) || '.face '
|| ' SET mbr = ' || quote_literal(
ST_Envelope(topology.ST_GetFaceGeometry(atopology, oldedge.right_face))::text
)
|| '::geometry WHERE face_id = ' || oldedge.right_face;
EXECUTE sql;
END IF;
RETURN 'Edge ' || anedge || ' changed';
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_ChangeEdgeGeom
--
-- _ST_AddFaceSplit
--
-- Add a split face by walking on the edge side.
--
-- @param atopology topology name
-- @param anedge edge id and walking side (left:positive right:negative)
-- @param oface the face in which the edge identifier is known to be
-- @param mbr_only do not create a new face but update MBR of the current
--
-- The created face, if any, will be at the left hand of the walking path
--
-- Return:
-- NULL: if mbr_only was requested
-- 0: if the edge does not form a ring
-- NULL: if it is impossible to create a face on the requested side
-- ( new face on the side is the universe )
-- >0 : id of newly added face
--
-- {
CREATE OR REPLACE FUNCTION topology._ST_AddFaceSplit(atopology varchar, anedge integer, oface integer, mbr_only bool)
RETURNS INTEGER AS
$$
DECLARE
fan RECORD;
newface INTEGER;
sql TEXT;
isccw BOOLEAN;
ishole BOOLEAN;
BEGIN
IF oface = 0 AND mbr_only THEN
RETURN NULL;
END IF;
SELECT null::int[] as newring_edges,
null::geometry as shell
INTO fan;
SELECT array_agg(edge)
FROM topology.getringedges(atopology, anedge)
INTO STRICT fan.newring_edges;
-- You can't get to the other side of an edge forming a ring
IF fan.newring_edges @> ARRAY[-anedge] THEN
RETURN 0;
END IF;
sql := 'WITH ids as ( select row_number() over () as seq, edge from unnest('
|| quote_literal(fan.newring_edges::text)
|| '::int[] ) u(edge) ), edges AS ( select CASE WHEN i.edge < 0 THEN ST_Reverse(e.geom) ELSE e.geom END as g FROM ids i left join '
|| quote_ident(atopology) || '.edge_data e ON(e.edge_id = abs(i.edge)) ORDER BY seq) SELECT ST_MakePolygon(ST_MakeLine(g.g)) FROM edges g;';
EXECUTE sql INTO fan.shell;
isccw := NOT ST_OrderingEquals(fan.shell, ST_ForceRHR(fan.shell));
IF oface = 0 THEN
IF NOT isccw THEN
RETURN NULL;
END IF;
END IF;
IF mbr_only AND oface != 0 THEN
-- Update old face mbr (nothing to do if we're opening an hole)
IF isccw THEN -- {
sql := 'UPDATE '
|| quote_ident(atopology) || '.face SET mbr = '
|| quote_literal(ST_Envelope(fan.shell)::text)
|| '::geometry WHERE face_id = ' || oface;
EXECUTE sql;
END IF; -- }
RETURN NULL;
END IF;
IF oface != 0 AND NOT isccw THEN -- {
-- Face created an hole in an outer face
sql := 'INSERT INTO '
|| quote_ident(atopology) || '.face(mbr) SELECT mbr FROM '
|| quote_ident(atopology)
|| '.face WHERE face_id = ' || oface
|| ' RETURNING face_id';
ELSE
sql := 'INSERT INTO '
|| quote_ident(atopology) || '.face(mbr) VALUES ('
|| quote_literal(ST_Envelope(fan.shell)::text)
|| '::geometry) RETURNING face_id';
END IF; -- }
-- Insert new face
EXECUTE sql INTO STRICT newface;
-- Update forward edges
sql := 'UPDATE '
|| quote_ident(atopology) || '.edge_data SET left_face = ' || newface
|| ' WHERE left_face = ' || oface || ' AND edge_id = ANY ('
|| quote_literal(array( select +(x) from unnest(fan.newring_edges) u(x) )::text)
|| ')';
EXECUTE sql;
-- Update backward edges
sql := 'UPDATE '
|| quote_ident(atopology) || '.edge_data SET right_face = ' || newface
|| ' WHERE right_face = ' || oface || ' AND edge_id = ANY ('
|| quote_literal(array( select -(x) from unnest(fan.newring_edges) u(x) )::text)
|| ')';
EXECUTE sql;
IF oface != 0 AND NOT isccw THEN -- {
-- face shrinked, must update all non-contained edges and nodes
ishole := true;
ELSE
ishole := false;
END IF; -- }
-- Update edges bounding the old face
sql := 'UPDATE '
|| quote_ident(atopology)
|| '.edge_data SET left_face = CASE WHEN left_face = '
|| oface || ' THEN ' || newface
|| ' ELSE left_face END, right_face = CASE WHEN right_face = '
|| oface || ' THEN ' || newface
|| ' ELSE right_face END WHERE ( left_face = ' || oface
|| ' OR right_face = ' || oface
|| ') AND NOT edge_id = ANY ('
|| quote_literal( array(
select abs(x) from unnest(fan.newring_edges) u(x)
)::text )
|| ') AND ';
IF ishole THEN sql := sql || 'NOT '; END IF;
sql := sql || '( ' || quote_literal(fan.shell::text)
|| ' && geom AND _ST_Contains(' || quote_literal(fan.shell::text)
-- We only need to check a single point, but must not be an endpoint
|| '::geometry, ST_LineInterpolatePoint(geom, 0.2)) )';
EXECUTE sql;
-- Update isolated nodes in new new face
sql := 'UPDATE '
|| quote_ident(atopology) || '.node SET containing_face = ' || newface
|| ' WHERE containing_face = ' || oface
|| ' AND ';
IF ishole THEN sql := sql || 'NOT '; END IF;
sql := sql || 'ST_Contains(' || quote_literal(fan.shell::text) || '::geometry, geom)';
EXECUTE sql;
RETURN newface;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--}
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.12
--
-- ST_AddEdgeNewFaces(atopology, anode, anothernode, acurve)
--
-- Not in the specs:
-- * Reset containing_face for starting and ending point,
-- as they stop being isolated nodes
-- * Update references in the Relation table.
--
CREATE OR REPLACE FUNCTION topology.ST_AddEdgeNewFaces(atopology varchar, anode integer, anothernode integer, acurve geometry)
RETURNS INTEGER AS
$$
DECLARE
rec RECORD;
i INTEGER;
topoid INTEGER;
az FLOAT8;
span RECORD; -- start point analysis data
epan RECORD; -- end point analysis data
fan RECORD; -- face analisys
newedge RECORD; -- informations about new edge
sql TEXT;
newfaces INTEGER[];
newface INTEGER;
BEGIN
--
-- All args required
--
IF atopology IS NULL
OR anode IS NULL
OR anothernode IS NULL
OR acurve IS NULL
THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - null argument';
END IF;
--
-- Acurve must be a LINESTRING
--
IF substring(geometrytype(acurve), 1, 4) != 'LINE'
THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid curve';
END IF;
--
-- Curve must be simple
--
IF NOT ST_IsSimple(acurve) THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - curve not simple';
END IF;
--
-- Get topology id
--
BEGIN
SELECT id FROM topology.topology
INTO STRICT topoid WHERE name = atopology;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END;
-- Initialize new edge info (will be filled up more later)
SELECT anode as start_node, anothernode as end_node, acurve as geom,
NULL::int as next_left_edge, NULL::int as next_right_edge,
NULL::int as left_face, NULL::int as right_face, NULL::int as edge_id,
NULL::int as prev_left_edge, NULL::int as prev_right_edge, -- convenience
anode = anothernode as isclosed, -- convenience
false as start_node_isolated, -- convenience
false as end_node_isolated, -- convenience
NULL::geometry as start_node_geom, -- convenience
NULL::geometry as end_node_geom, -- convenience
ST_RemoveRepeatedPoints(acurve) as cleangeom -- convenience
INTO newedge;
-- Compute azimuth of first edge end on start node
SELECT null::int AS nextCW, null::int AS nextCCW,
null::float8 AS minaz, null::float8 AS maxaz,
false AS was_isolated,
ST_Azimuth(ST_StartPoint(newedge.cleangeom),
ST_PointN(newedge.cleangeom, 2)) AS myaz
INTO span;
IF span.myaz IS NULL THEN
RAISE EXCEPTION 'Invalid edge (no two distinct vertices exist)';
END IF;
-- Compute azimuth of last edge end on end node
SELECT null::int AS nextCW, null::int AS nextCCW,
null::float8 AS minaz, null::float8 AS maxaz,
false AS was_isolated,
ST_Azimuth(ST_EndPoint(newedge.cleangeom),
ST_PointN(newedge.cleangeom,
ST_NumPoints(newedge.cleangeom)-1)) AS myaz
INTO epan;
IF epan.myaz IS NULL THEN
RAISE EXCEPTION 'Invalid edge (no two distinct vertices exist)';
END IF;
--
-- Check endpoints existance, match with Curve geometry
-- and get face information (if any)
--
i := 0;
FOR rec IN EXECUTE 'SELECT node_id, containing_face, geom FROM '
|| quote_ident(atopology)
|| '.node WHERE node_id IN ( '
|| anode || ',' || anothernode
|| ')'
LOOP
IF rec.containing_face IS NOT NULL THEN
IF newedge.left_face IS NULL THEN
newedge.left_face := rec.containing_face;
newedge.right_face := rec.containing_face;
ELSE
IF newedge.left_face != rec.containing_face THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - geometry crosses an edge (endnodes in faces % and %)', newedge.left_face, rec.containing_face;
END IF;
END IF;
END IF;
IF rec.node_id = anode THEN
newedge.start_node_geom = rec.geom;
END IF;
IF rec.node_id = anothernode THEN
newedge.end_node_geom = rec.geom;
END IF;
i := i + 1;
END LOOP;
IF newedge.start_node_geom IS NULL
THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent node';
ELSIF NOT ST_Equals(newedge.start_node_geom, ST_StartPoint(acurve))
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - start node not geometry start point.';
END IF;
IF newedge.end_node_geom IS NULL
THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent node';
ELSIF NOT ST_Equals(newedge.end_node_geom, ST_EndPoint(acurve))
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - end node not geometry end point.';
END IF;
RAISE DEBUG 'All Checked !';
--
-- Check if this geometry crosses any node
--
FOR rec IN EXECUTE
'SELECT node_id, ST_Relate(geom, '
|| quote_literal(acurve::text) || '::geometry, 2) as relate FROM '
|| quote_ident(atopology)
|| '.node WHERE geom && '
|| quote_literal(acurve::text)
|| '::geometry'
LOOP
IF ST_RelateMatch(rec.relate, 'T********') THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - geometry crosses a node';
END IF;
END LOOP;
--
-- Check if this geometry has any interaction with any existing edge
--
FOR rec IN EXECUTE 'SELECT edge_id, ST_Relate(geom,'
|| quote_literal(acurve::text)
|| '::geometry, 2) as im FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE geom && '
|| quote_literal(acurve::text) || '::geometry'
LOOP
--RAISE DEBUG 'IM=%',rec.im;
IF ST_RelateMatch(rec.im, 'F********') THEN
CONTINUE; -- no interior intersection
END IF;
IF ST_RelateMatch(rec.im, '1FFF*FFF2') THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - coincident edge %', rec.edge_id;
END IF;
-- NOT IN THE SPECS: geometry touches an edge
IF ST_RelateMatch(rec.im, '1********') THEN
RAISE EXCEPTION
'Spatial exception - geometry intersects edge %', rec.edge_id;
END IF;
IF ST_RelateMatch(rec.im, 'T********') THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - geometry crosses edge %', rec.edge_id;
END IF;
END LOOP;
---------------------------------------------------------------
--
-- All checks passed, time to prepare the new edge
--
---------------------------------------------------------------
EXECUTE 'SELECT nextval(' || quote_literal(
quote_ident(atopology) || '.edge_data_edge_id_seq') || ')'
INTO STRICT newedge.edge_id;
-- Find links on start node -- {
sql :=
'SELECT edge_id, -1 AS end_node, start_node, left_face, right_face, '
|| 'ST_RemoveRepeatedPoints(geom) as geom FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE start_node = ' || anode
|| ' UNION SELECT edge_id, end_node, -1, left_face, right_face, '
|| 'ST_RemoveRepeatedPoints(geom) FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE end_node = ' || anode;
IF newedge.isclosed THEN
sql := sql || ' UNION SELECT '
|| newedge.edge_id || ',' || newedge.end_node
|| ',-1,0,0,' -- pretend we start elsewhere
|| quote_literal(newedge.cleangeom::text);
END IF;
i := 0;
FOR rec IN EXECUTE sql
LOOP -- incident edges {
i := i + 1;
IF rec.start_node = anode THEN
--
-- Edge starts at our node, we compute
-- azimuth from node to its second point
--
az := ST_Azimuth(ST_StartPoint(rec.geom), ST_PointN(rec.geom, 2));
ELSE
--
-- Edge ends at our node, we compute
-- azimuth from node to its second-last point
--
az := ST_Azimuth(ST_EndPoint(rec.geom),
ST_PointN(rec.geom, ST_NumPoints(rec.geom)-1));
rec.edge_id := -rec.edge_id;
END IF;
IF az IS NULL THEN
RAISE EXCEPTION 'Invalid edge % found (no two distinct nodes exist)',
rec.edge_id;
END IF;
az = az - span.myaz;
IF az < 0 THEN
az := az + 2*PI();
END IF;
-- RAISE DEBUG ' normalized az %', az;
IF span.maxaz IS NULL OR az > span.maxaz THEN
span.maxaz := az;
span.nextCCW := rec.edge_id;
IF abs(rec.edge_id) != newedge.edge_id THEN
IF rec.edge_id < 0 THEN
-- TODO: check for mismatch ?
newedge.left_face := rec.left_face;
ELSE
-- TODO: check for mismatch ?
newedge.left_face := rec.right_face;
END IF;
END IF;
END IF;
IF span.minaz IS NULL OR az < span.minaz THEN
span.minaz := az;
span.nextCW := rec.edge_id;
IF abs(rec.edge_id) != newedge.edge_id THEN
IF rec.edge_id < 0 THEN
-- TODO: check for mismatch ?
newedge.right_face := rec.right_face;
ELSE
-- TODO: check for mismatch ?
newedge.right_face := rec.left_face;
END IF;
END IF;
END IF;
--RAISE DEBUG 'Closest edges: CW:%(%) CCW:%(%)', span.nextCW, span.minaz, span.nextCCW, span.maxaz;
END LOOP; -- incident edges }
IF newedge.isclosed THEN
IF i < 2 THEN span.was_isolated = true; END IF;
ELSE
IF i < 1 THEN span.was_isolated = true; END IF;
END IF;
IF span.nextCW IS NULL THEN
-- This happens if the destination node is isolated
newedge.next_right_edge := newedge.edge_id;
newedge.prev_left_edge := -newedge.edge_id;
ELSE
newedge.next_right_edge := span.nextCW;
newedge.prev_left_edge := -span.nextCCW;
END IF;
-- } start_node analysis
-- Find links on end_node {
sql :=
'SELECT edge_id, -1 as end_node, start_node, left_face, right_face, '
|| 'ST_RemoveRepeatedPoints(geom) as geom FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE start_node = ' || anothernode
|| 'UNION SELECT edge_id, end_node, -1, left_face, right_face, '
|| 'ST_RemoveRepeatedPoints(geom) FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE end_node = ' || anothernode;
IF newedge.isclosed THEN
sql := sql || ' UNION SELECT '
|| newedge.edge_id || ',' || -1 -- pretend we end elsewhere
|| ',' || newedge.start_node || ',0,0,'
|| quote_literal(newedge.cleangeom::text);
END IF;
i := 0;
FOR rec IN EXECUTE sql
LOOP -- incident edges {
i := i + 1;
IF rec.start_node = anothernode THEN
--
-- Edge starts at our node, we compute
-- azimuth from node to its second point
--
az := ST_Azimuth(ST_StartPoint(rec.geom),
ST_PointN(rec.geom, 2));
ELSE
--
-- Edge ends at our node, we compute
-- azimuth from node to its second-last point
--
az := ST_Azimuth(ST_EndPoint(rec.geom),
ST_PointN(rec.geom, ST_NumPoints(rec.geom)-1));
rec.edge_id := -rec.edge_id;
END IF;
az := az - epan.myaz;
IF az < 0 THEN
az := az + 2*PI();
END IF;
-- RAISE DEBUG ' normalized az %', az;
IF epan.maxaz IS NULL OR az > epan.maxaz THEN
epan.maxaz := az;
epan.nextCCW := rec.edge_id;
IF abs(rec.edge_id) != newedge.edge_id THEN
IF rec.edge_id < 0 THEN
-- TODO: check for mismatch ?
newedge.right_face := rec.left_face;
ELSE
-- TODO: check for mismatch ?
newedge.right_face := rec.right_face;
END IF;
END IF;
END IF;
IF epan.minaz IS NULL OR az < epan.minaz THEN
epan.minaz := az;
epan.nextCW := rec.edge_id;
IF abs(rec.edge_id) != newedge.edge_id THEN
IF rec.edge_id < 0 THEN
-- TODO: check for mismatch ?
newedge.left_face := rec.right_face;
ELSE
-- TODO: check for mismatch ?
newedge.left_face := rec.left_face;
END IF;
END IF;
END IF;
--RAISE DEBUG 'Closest edges: CW:%(%) CCW:%(%)', epan.nextCW, epan.minaz, epan.nextCCW, epan.maxaz;
END LOOP; -- incident edges }
IF newedge.isclosed THEN
IF i < 2 THEN epan.was_isolated = true; END IF;
ELSE
IF i < 1 THEN epan.was_isolated = true; END IF;
END IF;
IF epan.nextCW IS NULL THEN
-- This happens if the destination node is isolated
newedge.next_left_edge := -newedge.edge_id;
newedge.prev_right_edge := newedge.edge_id;
ELSE
newedge.next_left_edge := epan.nextCW;
newedge.prev_right_edge := -epan.nextCCW;
END IF;
-- } end_node analysis
----------------------------------------------------------------------
--
-- If we don't have faces setup by now we must have encountered
-- a malformed topology (no containing_face on isolated nodes, no
-- left/right faces on adjacent edges or mismatching values)
--
----------------------------------------------------------------------
IF newedge.left_face != newedge.right_face THEN
RAISE EXCEPTION 'Left(%)/right(%) faces mismatch: invalid topology ?',
newedge.left_face, newedge.right_face;
END IF;
IF newedge.left_face IS NULL THEN
RAISE EXCEPTION 'Could not derive edge face from linked primitives: invalid topology ?';
END IF;
----------------------------------------------------------------------
--
-- Insert the new edge, and update all linking
--
----------------------------------------------------------------------
-- Insert the new edge with what we have so far
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.edge VALUES(' || newedge.edge_id
|| ',' || newedge.start_node
|| ',' || newedge.end_node
|| ',' || newedge.next_left_edge
|| ',' || newedge.next_right_edge
|| ',' || newedge.left_face
|| ',' || newedge.right_face
|| ',' || quote_literal(newedge.geom::geometry::text)
|| ')';
-- Link prev_left_edge to us
-- (if it's not us already)
IF abs(newedge.prev_left_edge) != newedge.edge_id THEN
IF newedge.prev_left_edge > 0 THEN
-- its next_left_edge is us
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_left_edge = '
|| newedge.edge_id
|| ', abs_next_left_edge = '
|| newedge.edge_id
|| ' WHERE edge_id = '
|| newedge.prev_left_edge;
ELSE
-- its next_right_edge is us
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_right_edge = '
|| newedge.edge_id
|| ', abs_next_right_edge = '
|| newedge.edge_id
|| ' WHERE edge_id = '
|| -newedge.prev_left_edge;
END IF;
END IF;
-- Link prev_right_edge to us
-- (if it's not us already)
IF abs(newedge.prev_right_edge) != newedge.edge_id THEN
IF newedge.prev_right_edge > 0 THEN
-- its next_left_edge is -us
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_left_edge = '
|| -newedge.edge_id
|| ', abs_next_left_edge = '
|| newedge.edge_id
|| ' WHERE edge_id = '
|| newedge.prev_right_edge;
ELSE
-- its next_right_edge is -us
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_right_edge = '
|| -newedge.edge_id
|| ', abs_next_right_edge = '
|| newedge.edge_id
|| ' WHERE edge_id = '
|| -newedge.prev_right_edge;
END IF;
END IF;
-- NOT IN THE SPECS...
-- set containing_face = null for start_node and end_node
-- if they where isolated
IF span.was_isolated OR epan.was_isolated THEN
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.node SET containing_face = null WHERE node_id IN ('
|| anode || ',' || anothernode || ')';
END IF;
--------------------------------------------
-- Check face splitting
--------------------------------------------
SELECT topology._ST_AddFaceSplit(atopology, -newedge.edge_id, newedge.left_face, false)
INTO newface;
IF newface = 0 THEN
RETURN newedge.edge_id;
END IF;
newfaces[1] := newface;
SELECT topology._ST_AddFaceSplit(atopology, newedge.edge_id, newedge.left_face, false)
INTO newface;
newfaces[2] := newface;
IF newedge.left_face != 0 THEN -- {
-- NOT IN THE SPECS:
-- update TopoGeometry compositions to substitute oldface with newfaces
sql := 'UPDATE '
|| quote_ident(atopology)
|| '.relation r set element_id = ' || newfaces[1]
|| ' FROM topology.layer l '
|| ' WHERE l.topology_id = ' || topoid
|| ' AND l.level = 0 '
|| ' AND l.layer_id = r.layer_id '
|| ' AND r.element_id = ' || newedge.left_face
|| ' AND r.element_type = 3 RETURNING r.topogeo_id, r.layer_id';
--RAISE DEBUG 'SQL: %', sql;
FOR rec IN EXECUTE sql
LOOP
-- Add reference to the other face
sql := 'INSERT INTO ' || quote_ident(atopology)
|| '.relation VALUES( ' || rec.topogeo_id
|| ',' || rec.layer_id || ',' || newfaces[2] || ', 3)';
--RAISE DEBUG 'SQL: %', sql;
EXECUTE sql;
END LOOP;
-- drop old face from faces table
sql := 'DELETE FROM ' || quote_ident(atopology)
|| '.face WHERE face_id = ' || newedge.left_face;
EXECUTE sql;
END IF; -- }
RETURN newedge.edge_id;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_AddEdgeNewFaces
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.13
--
-- ST_AddEdgeModFace(atopology, anode, anothernode, acurve)
--
-- Not in the specs:
-- * Reset containing_face for starting and ending point,
-- as they stop being isolated nodes
-- * Update references in the Relation table.
--
CREATE OR REPLACE FUNCTION topology.ST_AddEdgeModFace(atopology varchar, anode integer, anothernode integer, acurve geometry)
RETURNS INTEGER AS
$$
DECLARE
rec RECORD;
rrec RECORD;
i INTEGER;
topoid INTEGER;
az FLOAT8;
span RECORD; -- start point analysis data
epan RECORD; -- end point analysis data
fan RECORD; -- face analisys
newedge RECORD; -- informations about new edge
sql TEXT;
newfaces INTEGER[];
newface INTEGER;
BEGIN
--
-- All args required
--
IF atopology IS NULL
OR anode IS NULL
OR anothernode IS NULL
OR acurve IS NULL
THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - null argument';
END IF;
--
-- Acurve must be a LINESTRING
--
IF substring(geometrytype(acurve), 1, 4) != 'LINE'
THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid curve';
END IF;
--
-- Curve must be simple
--
IF NOT ST_IsSimple(acurve) THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - curve not simple';
END IF;
--
-- Get topology id
--
BEGIN
SELECT id FROM topology.topology
INTO STRICT topoid WHERE name = atopology;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END;
-- Initialize new edge info (will be filled up more later)
SELECT anode as start_node, anothernode as end_node, acurve as geom,
NULL::int as next_left_edge, NULL::int as next_right_edge,
NULL::int as left_face, NULL::int as right_face, NULL::int as edge_id,
NULL::int as prev_left_edge, NULL::int as prev_right_edge, -- convenience
anode = anothernode as isclosed, -- convenience
false as start_node_isolated, -- convenience
false as end_node_isolated, -- convenience
NULL::geometry as start_node_geom, -- convenience
NULL::geometry as end_node_geom, -- convenience
ST_RemoveRepeatedPoints(acurve) as cleangeom -- convenience
INTO newedge;
-- Compute azimut of first edge end on start node
SELECT null::int AS nextCW, null::int AS nextCCW,
null::float8 AS minaz, null::float8 AS maxaz,
false AS was_isolated,
ST_Azimuth(ST_StartPoint(newedge.cleangeom),
ST_PointN(newedge.cleangeom, 2)) AS myaz
INTO span;
IF span.myaz IS NULL THEN
RAISE EXCEPTION 'Invalid edge (no two distinct vertices exist)';
END IF;
-- Compute azimuth of last edge end on end node
SELECT null::int AS nextCW, null::int AS nextCCW,
null::float8 AS minaz, null::float8 AS maxaz,
false AS was_isolated,
ST_Azimuth(ST_EndPoint(newedge.cleangeom),
ST_PointN(newedge.cleangeom,
ST_NumPoints(newedge.cleangeom)-1)) AS myaz
INTO epan;
IF epan.myaz IS NULL THEN
RAISE EXCEPTION 'Invalid edge (no two distinct vertices exist)';
END IF;
--
-- Check endpoints existance, match with Curve geometry
-- and get face information (if any)
--
i := 0;
FOR rec IN EXECUTE 'SELECT node_id, containing_face, geom FROM '
|| quote_ident(atopology)
|| '.node WHERE node_id IN ( '
|| anode || ',' || anothernode
|| ')'
LOOP
IF rec.containing_face IS NOT NULL THEN
IF newedge.left_face IS NULL THEN
newedge.left_face := rec.containing_face;
newedge.right_face := rec.containing_face;
ELSE
IF newedge.left_face != rec.containing_face THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - geometry crosses an edge (endnodes in faces % and %)', newedge.left_face, rec.containing_face;
END IF;
END IF;
END IF;
IF rec.node_id = anode THEN
newedge.start_node_geom = rec.geom;
END IF;
IF rec.node_id = anothernode THEN
newedge.end_node_geom = rec.geom;
END IF;
i := i + 1;
END LOOP;
IF newedge.start_node_geom IS NULL
THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent node';
ELSIF NOT ST_Equals(newedge.start_node_geom, ST_StartPoint(acurve))
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - start node not geometry start point.';
END IF;
IF newedge.end_node_geom IS NULL
THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent node';
ELSIF NOT ST_Equals(newedge.end_node_geom, ST_EndPoint(acurve))
THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - end node not geometry end point.';
END IF;
--
-- Check if this geometry crosses any node
--
FOR rec IN EXECUTE
'SELECT node_id, ST_Relate(geom, '
|| quote_literal(acurve::text) || '::geometry, 2) as relate FROM '
|| quote_ident(atopology)
|| '.node WHERE geom && '
|| quote_literal(acurve::text)
|| '::geometry'
LOOP
IF ST_RelateMatch(rec.relate, 'T********') THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - geometry crosses a node';
END IF;
END LOOP;
--
-- Check if this geometry has any interaction with any existing edge
--
FOR rec IN EXECUTE 'SELECT edge_id, ST_Relate(geom,'
|| quote_literal(acurve::text)
|| '::geometry, 2) as im FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE geom && '
|| quote_literal(acurve::text) || '::geometry'
LOOP
--RAISE DEBUG 'IM=%',rec.im;
IF ST_RelateMatch(rec.im, 'F********') THEN
CONTINUE; -- no interior intersection
END IF;
IF ST_RelateMatch(rec.im, '1FFF*FFF2') THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - coincident edge %', rec.edge_id;
END IF;
-- NOT IN THE SPECS: geometry touches an edge
IF ST_RelateMatch(rec.im, '1********') THEN
RAISE EXCEPTION
'Spatial exception - geometry intersects edge %', rec.edge_id;
END IF;
IF ST_RelateMatch(rec.im, 'T********') THEN
RAISE EXCEPTION
'SQL/MM Spatial exception - geometry crosses edge %', rec.edge_id;
END IF;
END LOOP;
---------------------------------------------------------------
--
-- All checks passed, time to prepare the new edge
--
---------------------------------------------------------------
EXECUTE 'SELECT nextval(' || quote_literal(
quote_ident(atopology) || '.edge_data_edge_id_seq') || ')'
INTO STRICT newedge.edge_id;
-- Find links on start node -- {
sql :=
'SELECT edge_id, -1 AS end_node, start_node, left_face, right_face, '
|| 'ST_RemoveRepeatedPoints(geom) as geom FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE start_node = ' || anode
|| ' UNION SELECT edge_id, end_node, -1, left_face, right_face, '
|| 'ST_RemoveRepeatedPoints(geom) FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE end_node = ' || anode;
IF newedge.isclosed THEN
sql := sql || ' UNION SELECT '
|| newedge.edge_id || ',' || newedge.end_node
|| ',-1,0,0,' -- pretend we start elsewhere
|| quote_literal(newedge.cleangeom::text);
END IF;
i := 0;
FOR rec IN EXECUTE sql
LOOP -- incident edges {
i := i + 1;
IF rec.start_node = anode THEN
--
-- Edge starts at our node, we compute
-- azimuth from node to its second point
--
az := ST_Azimuth(ST_StartPoint(rec.geom), ST_PointN(rec.geom, 2));
ELSE
--
-- Edge ends at our node, we compute
-- azimuth from node to its second-last point
--
az := ST_Azimuth(ST_EndPoint(rec.geom),
ST_PointN(rec.geom, ST_NumPoints(rec.geom)-1));
rec.edge_id := -rec.edge_id;
END IF;
IF az IS NULL THEN
RAISE EXCEPTION 'Invalid edge % found (no two distinct nodes exist)',
rec.edge_id;
END IF;
az = az - span.myaz;
IF az < 0 THEN
az := az + 2*PI();
END IF;
-- RAISE DEBUG ' normalized az %', az;
IF span.maxaz IS NULL OR az > span.maxaz THEN
span.maxaz := az;
span.nextCCW := rec.edge_id;
IF abs(rec.edge_id) != newedge.edge_id THEN
IF rec.edge_id < 0 THEN
-- TODO: check for mismatch ?
newedge.left_face := rec.left_face;
ELSE
-- TODO: check for mismatch ?
newedge.left_face := rec.right_face;
END IF;
END IF;
END IF;
IF span.minaz IS NULL OR az < span.minaz THEN
span.minaz := az;
span.nextCW := rec.edge_id;
IF abs(rec.edge_id) != newedge.edge_id THEN
IF rec.edge_id < 0 THEN
-- TODO: check for mismatch ?
newedge.right_face := rec.right_face;
ELSE
-- TODO: check for mismatch ?
newedge.right_face := rec.left_face;
END IF;
END IF;
END IF;
--RAISE DEBUG 'Closest edges: CW:%(%) CCW:%(%)', span.nextCW, span.minaz, span.nextCCW, span.maxaz;
END LOOP; -- incident edges }
IF newedge.isclosed THEN
IF i < 2 THEN span.was_isolated = true; END IF;
ELSE
IF i < 1 THEN span.was_isolated = true; END IF;
END IF;
IF span.nextCW IS NULL THEN
-- This happens if the destination node is isolated
newedge.next_right_edge := newedge.edge_id;
newedge.prev_left_edge := -newedge.edge_id;
ELSE
newedge.next_right_edge := span.nextCW;
newedge.prev_left_edge := -span.nextCCW;
END IF;
-- } start_node analysis
-- Find links on end_node {
sql :=
'SELECT edge_id, -1 as end_node, start_node, left_face, right_face, '
|| 'ST_RemoveRepeatedPoints(geom) as geom FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE start_node = ' || anothernode
|| 'UNION SELECT edge_id, end_node, -1, left_face, right_face, '
|| 'ST_RemoveRepeatedPoints(geom) FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE end_node = ' || anothernode;
IF newedge.isclosed THEN
sql := sql || ' UNION SELECT '
|| newedge.edge_id || ',' || -1 -- pretend we end elsewhere
|| ',' || newedge.start_node || ',0,0,'
|| quote_literal(newedge.cleangeom::text);
END IF;
i := 0;
FOR rec IN EXECUTE sql
LOOP -- incident edges {
i := i + 1;
IF rec.start_node = anothernode THEN
--
-- Edge starts at our node, we compute
-- azimuth from node to its second point
--
az := ST_Azimuth(ST_StartPoint(rec.geom),
ST_PointN(rec.geom, 2));
ELSE
--
-- Edge ends at our node, we compute
-- azimuth from node to its second-last point
--
az := ST_Azimuth(ST_EndPoint(rec.geom),
ST_PointN(rec.geom, ST_NumPoints(rec.geom)-1));
rec.edge_id := -rec.edge_id;
END IF;
az := az - epan.myaz;
IF az < 0 THEN
az := az + 2*PI();
END IF;
-- RAISE DEBUG ' normalized az %', az;
IF epan.maxaz IS NULL OR az > epan.maxaz THEN
epan.maxaz := az;
epan.nextCCW := rec.edge_id;
IF abs(rec.edge_id) != newedge.edge_id THEN
IF rec.edge_id < 0 THEN
-- TODO: check for mismatch ?
newedge.right_face := rec.left_face;
ELSE
-- TODO: check for mismatch ?
newedge.right_face := rec.right_face;
END IF;
END IF;
END IF;
IF epan.minaz IS NULL OR az < epan.minaz THEN
epan.minaz := az;
epan.nextCW := rec.edge_id;
IF abs(rec.edge_id) != newedge.edge_id THEN
IF rec.edge_id < 0 THEN
-- TODO: check for mismatch ?
newedge.left_face := rec.right_face;
ELSE
-- TODO: check for mismatch ?
newedge.left_face := rec.left_face;
END IF;
END IF;
END IF;
--RAISE DEBUG 'Closest edges: CW:%(%) CCW:%(%)', epan.nextCW, epan.minaz, epan.nextCCW, epan.maxaz;
END LOOP; -- incident edges }
IF newedge.isclosed THEN
IF i < 2 THEN epan.was_isolated = true; END IF;
ELSE
IF i < 1 THEN epan.was_isolated = true; END IF;
END IF;
IF epan.nextCW IS NULL THEN
-- This happens if the destination node is isolated
newedge.next_left_edge := -newedge.edge_id;
newedge.prev_right_edge := newedge.edge_id;
ELSE
newedge.next_left_edge := epan.nextCW;
newedge.prev_right_edge := -epan.nextCCW;
END IF;
-- } end_node analysis
----------------------------------------------------------------------
--
-- If we don't have faces setup by now we must have encountered
-- a malformed topology (no containing_face on isolated nodes, no
-- left/right faces on adjacent edges or mismatching values)
--
----------------------------------------------------------------------
IF newedge.left_face != newedge.right_face THEN
RAISE EXCEPTION 'Left(%)/right(%) faces mismatch: invalid topology ?',
newedge.left_face, newedge.right_face;
END IF;
IF newedge.left_face IS NULL THEN
RAISE EXCEPTION 'Could not derive edge face from linked primitives: invalid topology ?';
END IF;
----------------------------------------------------------------------
--
-- Insert the new edge, and update all linking
--
----------------------------------------------------------------------
-- Insert the new edge with what we have so far
EXECUTE 'INSERT INTO ' || quote_ident(atopology)
|| '.edge VALUES(' || newedge.edge_id
|| ',' || newedge.start_node
|| ',' || newedge.end_node
|| ',' || newedge.next_left_edge
|| ',' || newedge.next_right_edge
|| ',' || newedge.left_face
|| ',' || newedge.right_face
|| ',' || quote_literal(newedge.geom::geometry::text)
|| ')';
-- Link prev_left_edge to us
-- (if it's not us already)
IF abs(newedge.prev_left_edge) != newedge.edge_id THEN
IF newedge.prev_left_edge > 0 THEN
-- its next_left_edge is us
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_left_edge = '
|| newedge.edge_id
|| ', abs_next_left_edge = '
|| newedge.edge_id
|| ' WHERE edge_id = '
|| newedge.prev_left_edge;
ELSE
-- its next_right_edge is us
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_right_edge = '
|| newedge.edge_id
|| ', abs_next_right_edge = '
|| newedge.edge_id
|| ' WHERE edge_id = '
|| -newedge.prev_left_edge;
END IF;
END IF;
-- Link prev_right_edge to us
-- (if it's not us already)
IF abs(newedge.prev_right_edge) != newedge.edge_id THEN
IF newedge.prev_right_edge > 0 THEN
-- its next_left_edge is -us
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_left_edge = '
|| -newedge.edge_id
|| ', abs_next_left_edge = '
|| newedge.edge_id
|| ' WHERE edge_id = '
|| newedge.prev_right_edge;
ELSE
-- its next_right_edge is -us
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.edge_data SET next_right_edge = '
|| -newedge.edge_id
|| ', abs_next_right_edge = '
|| newedge.edge_id
|| ' WHERE edge_id = '
|| -newedge.prev_right_edge;
END IF;
END IF;
-- NOT IN THE SPECS...
-- set containing_face = null for start_node and end_node
-- if they where isolated
IF span.was_isolated OR epan.was_isolated THEN
EXECUTE 'UPDATE ' || quote_ident(atopology)
|| '.node SET containing_face = null WHERE node_id IN ('
|| anode || ',' || anothernode || ')';
END IF;
--------------------------------------------
-- Check face splitting
--------------------------------------------
SELECT topology._ST_AddFaceSplit(atopology, newedge.edge_id, newedge.left_face, false)
INTO newface;
IF newface = 0 THEN
RETURN newedge.edge_id;
END IF;
IF newface IS NULL THEN -- must be forming a maximal ring in universal face
SELECT topology._ST_AddFaceSplit(atopology, -newedge.edge_id, newedge.left_face, false)
INTO newface;
ELSE
PERFORM topology._ST_AddFaceSplit(atopology, -newedge.edge_id, newedge.left_face, true);
END IF;
IF newface IS NULL THEN
RETURN newedge.edge_id;
END IF;
--------------------------------------------
-- Update topogeometries, if needed
--------------------------------------------
IF newedge.left_face != 0 THEN -- {
-- NOT IN THE SPECS:
-- update TopoGeometry compositions to add newface
sql := 'SELECT r.topogeo_id, r.layer_id FROM '
|| quote_ident(atopology)
|| '.relation r, topology.layer l '
|| ' WHERE l.topology_id = ' || topoid
|| ' AND l.level = 0 '
|| ' AND l.layer_id = r.layer_id '
|| ' AND r.element_id = ' || newedge.left_face
|| ' AND r.element_type = 3 ';
--RAISE DEBUG 'SQL: %', sql;
FOR rec IN EXECUTE sql
LOOP
-- Add reference to the other face
sql := 'INSERT INTO ' || quote_ident(atopology)
|| '.relation VALUES( ' || rec.topogeo_id
|| ',' || rec.layer_id || ',' || newface || ', 3)';
--RAISE DEBUG 'SQL: %', sql;
EXECUTE sql;
END LOOP;
END IF; -- }
RETURN newedge.edge_id;
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_AddEdgeModFace
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.17
--
-- ST_InitTopoGeo(atopology)
--
CREATE OR REPLACE FUNCTION topology.ST_InitTopoGeo(atopology varchar)
RETURNS text
AS
$$
DECLARE
rec RECORD;
topology_id numeric;
BEGIN
IF atopology IS NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - null argument';
END IF;
FOR rec IN SELECT * FROM pg_namespace WHERE text(nspname) = atopology
LOOP
RAISE EXCEPTION 'SQL/MM Spatial exception - schema already exists';
END LOOP;
FOR rec IN EXECUTE 'SELECT topology.CreateTopology('
||quote_literal(atopology)|| ') as id'
LOOP
topology_id := rec.id;
END LOOP;
RETURN 'Topology-Geometry ' || quote_literal(atopology)
|| ' (id:' || topology_id || ') created.';
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_InitTopoGeo
--{
-- Topo-Geo and Topo-Net 3: Routine Details
-- X.3.18
--
-- ST_CreateTopoGeo(atopology, acollection)
--}{
CREATE OR REPLACE FUNCTION topology.ST_CreateTopoGeo(atopology varchar, acollection geometry)
RETURNS text
AS
$$
DECLARE
typ char(4);
rec RECORD;
ret int;
nodededges GEOMETRY;
points GEOMETRY;
snode_id int;
enode_id int;
tolerance FLOAT8;
topoinfo RECORD;
BEGIN
IF atopology IS NULL OR acollection IS NULL THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - null argument';
END IF;
-- Get topology information
BEGIN
SELECT * FROM topology.topology
INTO STRICT topoinfo WHERE name = atopology;
EXCEPTION
WHEN NO_DATA_FOUND THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
END;
-- Check SRID compatibility
IF ST_SRID(acollection) != topoinfo.SRID THEN
RAISE EXCEPTION 'Geometry SRID (%) does not match topology SRID (%)',
ST_SRID(acollection), topoinfo.SRID;
END IF;
-- Verify pre-conditions (valid, empty topology schema exists)
BEGIN -- {
-- Verify the topology views in the topology schema to be empty
FOR rec in EXECUTE
'SELECT count(*) FROM '
|| quote_ident(atopology) || '.edge_data '
|| ' UNION ' ||
'SELECT count(*) FROM '
|| quote_ident(atopology) || '.node '
LOOP
IF rec.count > 0 THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-empty view';
END IF;
END LOOP;
-- face check is separated as it will contain a single (world)
-- face record
FOR rec in EXECUTE
'SELECT count(*) FROM '
|| quote_ident(atopology) || '.face '
LOOP
IF rec.count != 1 THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-empty face view';
END IF;
END LOOP;
EXCEPTION
WHEN INVALID_SCHEMA_NAME THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - invalid topology name';
WHEN UNDEFINED_TABLE THEN
RAISE EXCEPTION 'SQL/MM Spatial exception - non-existent view';
END; -- }
--
-- Node input linework with itself
--
WITH components AS ( SELECT geom FROM ST_Dump(acollection) )
SELECT ST_UnaryUnion(ST_Collect(geom)) FROM (
SELECT geom FROM components
WHERE ST_Dimension(geom) = 1
UNION ALL
SELECT ST_Boundary(geom) FROM components
WHERE ST_Dimension(geom) = 2
) as linework INTO STRICT nodededges;
--
-- Linemerge the resulting edges, to reduce the working set
-- NOTE: this is more of a workaround for GEOS splitting overlapping
-- lines to each of the segments.
--
SELECT ST_LineMerge(nodededges) INTO STRICT nodededges;
--
-- Collect input points and input lines endpoints
--
WITH components AS ( SELECT geom FROM ST_Dump(acollection) )
SELECT ST_Union(geom) FROM (
SELECT geom FROM components
WHERE ST_Dimension(geom) = 0
UNION ALL
SELECT ST_Boundary(geom) FROM components
WHERE ST_Dimension(geom) = 1
) as nodes INTO STRICT points;
--
-- Further split edges by points
-- TODO: optimize this adding ST_Split support for multiline/multipoint
--
FOR rec IN SELECT geom FROM ST_Dump(points)
LOOP
-- Use the node to split edges
SELECT ST_Collect(geom)
FROM ST_Dump(ST_Split(nodededges, rec.geom))
INTO STRICT nodededges;
END LOOP;
SELECT ST_UnaryUnion(nodededges) INTO STRICT nodededges;
--
-- Collect all nodes (from points and noded linework endpoints)
--
WITH edges AS ( SELECT geom FROM ST_Dump(nodededges) )
SELECT ST_Union( -- TODO: ST_UnaryUnion ?
COALESCE(ST_UnaryUnion(ST_Collect(geom)),
ST_SetSRID('POINT EMPTY'::geometry, topoinfo.SRID)),
COALESCE(points,
ST_SetSRID('POINT EMPTY'::geometry, topoinfo.SRID))
)
FROM (
SELECT ST_StartPoint(geom) as geom FROM edges
UNION ALL
SELECT ST_EndPoint(geom) FROM edges
) as endpoints INTO points;
--
-- Add all nodes as isolated so that
-- later calls to AddEdgeModFace will tweak their being
-- isolated or not...
--
FOR rec IN SELECT geom FROM ST_Dump(points)
LOOP
PERFORM topology.ST_AddIsoNode(atopology, 0, rec.geom);
END LOOP;
FOR rec IN SELECT geom FROM ST_Dump(nodededges)
LOOP
SELECT topology.GetNodeByPoint(atopology, st_startpoint(rec.geom), 0)
INTO STRICT snode_id;
SELECT topology.GetNodeByPoint(atopology, st_endpoint(rec.geom), 0)
INTO STRICT enode_id;
PERFORM topology.ST_AddEdgeModFace(atopology, snode_id, enode_id, rec.geom);
END LOOP;
RETURN 'Topology ' || atopology || ' populated';
END
$$
LANGUAGE 'plpgsql' VOLATILE;
--} ST_CreateTopoGeo
--=} SQL/MM block
-- The following files needs getfaceedges_returntype, defined in sqlmm.sql
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2011 2012 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- Developed by Sandro Santilli <strk@keybit.net>
-- for Faunalia (http://www.faunalia.it) with funding from
-- Regione Toscana - Sistema Informativo per la Gestione del Territorio
-- e dell' Ambiente [RT-SIGTA].
-- For the project: "Sviluppo strumenti software per il trattamento di dati
-- geografici basati su QuantumGIS e Postgis (CIG 0494241492)"
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
--
-- Return a list of edges (sequence, id) resulting by starting from the
-- given edge and following the leftmost turn at each encountered node.
--
-- Edge ids are signed, they are negative if traversed backward.
-- Sequence numbers start with 1.
--
-- Use a negative starting_edge to follow its rigth face rather than
-- left face (to start traversing it in reverse).
--
-- Optionally pass a limit on the number of edges to traverse. This is a
-- safety measure against not-properly linked topologies, where you may
-- end up looping forever (single edge loops edge are detected but longer
-- ones are not). Default is no limit (good luck!)
--
-- GetRingEdges(atopology, anedge, [maxedges])
--
CREATE OR REPLACE FUNCTION topology.GetRingEdges(atopology varchar, anedge int, maxedges int DEFAULT null)
RETURNS SETOF topology.GetFaceEdges_ReturnType
AS
$$
DECLARE
rec RECORD;
retrec topology.GetFaceEdges_ReturnType;
n int;
sql text;
BEGIN
sql := 'WITH RECURSIVE edgering AS ( SELECT '
|| anedge
|| ' as signed_edge_id, edge_id, next_left_edge, next_right_edge FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE edge_id = '
|| abs(anedge)
|| ' UNION '
|| ' SELECT CASE WHEN p.signed_edge_id < 0 THEN p.next_right_edge '
|| ' ELSE p.next_left_edge END, e.edge_id, e.next_left_edge, e.next_right_edge '
|| ' FROM ' || quote_ident(atopology)
|| '.edge_data e, edgering p WHERE e.edge_id = CASE WHEN p.signed_edge_id < 0 '
|| 'THEN abs(p.next_right_edge) ELSE abs(p.next_left_edge) END ) SELECT * FROM edgering';
n := 1;
FOR rec IN EXECUTE sql
LOOP
retrec.sequence := n;
retrec.edge := rec.signed_edge_id;
RETURN NEXT retrec;
n := n + 1;
IF n > maxedges THEN
RAISE EXCEPTION 'Max traversing limit hit: %', maxedges;
END IF;
END LOOP;
END
$$
LANGUAGE 'plpgsql' STABLE;
--} GetRingEdges
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.refractions.net
--
-- Copyright (C) 2012 Sandro Santilli <strk@keybit.net>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
--
-- Return a list of edges (sequence, id) incident to the given node.
--
-- Edge ids are signed, they are negative if the node is their endpoint.
-- Sequence numbers start with 1 ordering edges by azimuth (clockwise).
--
-- GetNodeEdges(atopology, anode)
--
CREATE OR REPLACE FUNCTION topology.GetNodeEdges(atopology varchar, anode int)
RETURNS SETOF topology.GetFaceEdges_ReturnType
AS
$$
DECLARE
curedge int;
nextedge int;
rec RECORD;
retrec topology.GetFaceEdges_ReturnType;
n int;
sql text;
BEGIN
n := 0;
sql :=
'WITH incident_edges AS ( SELECT edge_id, start_node, end_node, ST_RemoveRepeatedPoints(geom) as geom FROM '
|| quote_ident(atopology)
|| '.edge_data WHERE start_node = ' || anode
|| ' or end_node = ' || anode
|| ') SELECT edge_id, ST_Azimuth(ST_StartPoint(geom), ST_PointN(geom, 2)) as az FROM incident_edges WHERE start_node = ' || anode
|| ' UNION ALL SELECT -edge_id, ST_Azimuth(ST_EndPoint(geom), ST_PointN(geom, ST_NumPoints(geom)-1)) FROM incident_edges WHERE end_node = ' || anode
|| ' ORDER BY az';
FOR rec IN EXECUTE sql
LOOP -- incident edges {
n := n + 1;
retrec.sequence := n;
retrec.edge := rec.edge_id;
RETURN NEXT retrec;
END LOOP; -- incident edges }
END
$$
LANGUAGE 'plpgsql' STABLE;
--} GetRingEdges
--general management --
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- PostGIS - Spatial Types for PostgreSQL
-- http://www.postgis.org
--
-- Copyright (C) 2011 Regina Obe <lr@pcorp.us>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--{
-- AddToSearchPath(schema_name)
--
-- Adds the specified schema to the database search path
-- if it is not already in the database search path
-- This is a helper function for upgrade/install
-- We may want to move this function as a generic helper
CREATE OR REPLACE FUNCTION topology.AddToSearchPath(a_schema_name varchar)
RETURNS text
AS
$$
DECLARE
var_result text;
var_cur_search_path text;
BEGIN
SELECT reset_val INTO var_cur_search_path FROM pg_settings WHERE name = 'search_path';
IF var_cur_search_path LIKE '%' || quote_ident(a_schema_name) || '%' THEN
var_result := a_schema_name || ' already in database search_path';
ELSE
EXECUTE 'ALTER DATABASE ' || quote_ident(current_database()) || ' SET search_path = ' || var_cur_search_path || ', ' || quote_ident(a_schema_name);
var_result := a_schema_name || ' has been added to end of database search_path ';
END IF;
RETURN var_result;
END
$$
LANGUAGE 'plpgsql' VOLATILE STRICT;
--} AddToSearchPath
CREATE OR REPLACE FUNCTION topology.postgis_topology_scripts_installed() RETURNS text
AS $$ SELECT '2.1.4'::text || ' r' || 12966::text AS version $$
LANGUAGE 'sql' IMMUTABLE;
-- Make sure topology is in database search path --
SELECT topology.AddToSearchPath('topology');
-- $Id: topology_drop_after.sql.in 11180 2013-03-19 09:53:17Z strk $
-- PostGIS - Spatial Types for PostgreSQL
-- http://www.postgis.org
--
-- Copyright (C) 2012 Regina Obe <lr@pcorp.us>
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
--
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-- These are reserved for functions where the they are changed to use default args
-- This is installed after the new functions are installed
-- We don't have any of these yet for topology
-- The reason we put these after install is
-- you can't drop a function that is used by sql functions
-- without forcing a drop on those as well which may cause issues with user functions.
-- This allows us to CREATE OR REPLACE those in general topology.sql
-- without dropping them.
SELECT pg_catalog.pg_extension_config_dump('topology', '');
SELECT pg_catalog.pg_extension_config_dump('layer', '');
COMMENT ON TYPE topology.getfaceedges_returntype IS 'postgis type: A composite type that consists of a sequence number and edge number. This is the return type for ST_GetFaceEdges';
COMMENT ON TYPE topology.TopoGeometry IS 'postgis type: A composite type representing a topologically defined geometry';
COMMENT ON TYPE topology.validatetopology_returntype IS 'postgis type: A composite type that consists of an error message and id1 and id2 to denote location of error. This is the return type for ValidateTopology';
COMMENT ON DOMAIN topology.TopoElement IS 'postgis domain: An array of 2 integers generally used to identify a TopoGeometry component.';
COMMENT ON DOMAIN topology.TopoElementArray IS 'postgis domain: An array of TopoElement objects';
COMMENT ON FUNCTION topology.AddTopoGeometryColumn(varchar , varchar , varchar , varchar , varchar ) IS 'args: topology_name, schema_name, table_name, column_name, feature_type - Adds a topogeometry column to an existing table, registers this new column as a layer in topology.layer and returns the new layer_id.';
COMMENT ON FUNCTION topology.AddTopoGeometryColumn(varchar , varchar , varchar , varchar , varchar , integer ) IS 'args: topology_name, schema_name, table_name, column_name, feature_type, child_layer - Adds a topogeometry column to an existing table, registers this new column as a layer in topology.layer and returns the new layer_id.';
COMMENT ON FUNCTION topology.DropTopology(varchar ) IS 'args: topology_schema_name - Use with caution: Drops a topology schema and deletes its reference from topology.topology table and references to tables in that schema from the geometry_columns table.';
COMMENT ON FUNCTION topology.DropTopoGeometryColumn(varchar , varchar , varchar ) IS 'args: schema_name, table_name, column_name - Drops the topogeometry column from the table named table_name in schema schema_name and unregisters the columns from topology.layer table.';
COMMENT ON FUNCTION topology.TopologySummary(varchar ) IS 'args: topology_schema_name - Takes a topology name and provides summary totals of types of objects in topology';
COMMENT ON FUNCTION topology.ValidateTopology(varchar ) IS 'args: topology_schema_name - Returns a set of validatetopology_returntype objects detailing issues with topology';
COMMENT ON FUNCTION topology.CreateTopology(varchar ) IS 'args: topology_schema_name - Creates a new topology schema and registers this new schema in the topology.topology table.';
COMMENT ON FUNCTION topology.CreateTopology(varchar , integer ) IS 'args: topology_schema_name, srid - Creates a new topology schema and registers this new schema in the topology.topology table.';
COMMENT ON FUNCTION topology.CreateTopology(varchar , integer , double precision ) IS 'args: topology_schema_name, srid, tolerance - Creates a new topology schema and registers this new schema in the topology.topology table.';
COMMENT ON FUNCTION topology.CreateTopology(varchar , integer , double precision , boolean ) IS 'args: topology_schema_name, srid, tolerance, hasz - Creates a new topology schema and registers this new schema in the topology.topology table.';
COMMENT ON FUNCTION topology.CopyTopology(varchar , varchar ) IS 'args: existing_topology_name, new_name - Makes a copy of a topology structure (nodes, edges, faces, layers and TopoGeometries).';
COMMENT ON FUNCTION topology.ST_InitTopoGeo(varchar ) IS 'args: topology_schema_name - Creates a new topology schema and registers this new schema in the topology.topology table and details summary of process.';
COMMENT ON FUNCTION topology.ST_CreateTopoGeo(varchar , geometry ) IS 'args: atopology, acollection - Adds a collection of geometries to a given empty topology and returns a message detailing success.';
COMMENT ON FUNCTION topology.TopoGeo_AddPoint(varchar , geometry , float8 ) IS 'args: toponame, apoint, tolerance - Adds a point to an existing topology using a tolerance and possibly splitting an existing edge.';
COMMENT ON FUNCTION topology.TopoGeo_AddLineString(varchar , geometry , float8 ) IS 'args: toponame, aline, tolerance - Adds a linestring to an existing topology using a tolerance and possibly splitting existing edges/faces. Returns edge identifiers';
COMMENT ON FUNCTION topology.TopoGeo_AddPolygon(varchar , geometry , float8 ) IS 'args: atopology, apoly, atolerance - Adds a polygon to an existing topology using a tolerance and possibly splitting existing edges/faces.';
COMMENT ON FUNCTION topology.ST_AddIsoNode(varchar , integer , geometry ) IS 'args: atopology, aface, apoint - Adds an isolated node to a face in a topology and returns the nodeid of the new node. If face is null, the node is still created.';
COMMENT ON FUNCTION topology.ST_AddIsoEdge(varchar , integer , integer , geometry ) IS 'args: atopology, anode, anothernode, alinestring - Adds an isolated edge defined by geometry alinestring to a topology connecting two existing isolated nodes anode and anothernode and returns the edge id of the new edge.';
COMMENT ON FUNCTION topology.ST_AddEdgeNewFaces(varchar , integer , integer , geometry ) IS 'args: atopology, anode, anothernode, acurve - Add a new edge and, if in doing so it splits a face, delete the original face and replace it with two new faces.';
COMMENT ON FUNCTION topology.ST_AddEdgeModFace(varchar , integer , integer , geometry ) IS 'args: atopology, anode, anothernode, acurve - Add a new edge and, if in doing so it splits a face, modify the original face and add a new face.';
COMMENT ON FUNCTION topology.ST_RemEdgeNewFace(varchar , integer ) IS 'args: atopology, anedge - Removes an edge and, if the removed edge separated two faces,delete the original faces and replace them with a new face.';
COMMENT ON FUNCTION topology.ST_RemEdgeModFace(varchar , integer ) IS 'args: atopology, anedge - Removes an edge and, if the removed edge separated two faces,delete one of the them and modify the other to take the space of both.';
COMMENT ON FUNCTION topology.ST_ChangeEdgeGeom(varchar , integer , geometry ) IS 'args: atopology, anedge, acurve - Changes the shape of an edge without affecting the topology structure.';
COMMENT ON FUNCTION topology.ST_ModEdgeSplit(varchar , integer , geometry ) IS 'args: atopology, anedge, apoint - Split an edge by creating a new node along an existing edge, modifying the original edge and adding a new edge.';
COMMENT ON FUNCTION topology.ST_ModEdgeHeal(varchar , integer , integer ) IS 'args: atopology, anedge, anotheredge - Heal two edges by deleting the node connecting them, modifying the first edgeand deleting the second edge. Returns the id of the deleted node.';
COMMENT ON FUNCTION topology.ST_NewEdgeHeal(varchar , integer , integer ) IS 'args: atopology, anedge, anotheredge - Heal two edges by deleting the node connecting them, deleting both edges,and replacing them with an edge whose direction is the same as the firstedge provided.';
COMMENT ON FUNCTION topology.ST_MoveIsoNode(varchar , integer , geometry ) IS 'args: atopology, anedge, apoint - Moves an isolated node in a topology from one point to another. If new apoint geometry exists as a node an error is thrown. REturns description of move.';
COMMENT ON FUNCTION topology.ST_NewEdgesSplit(varchar , integer , geometry ) IS 'args: atopology, anedge, apoint - Split an edge by creating a new node along an existing edge, deleting the original edge and replacing it with two new edges. Returns the id of the new node created that joins the new edges.';
COMMENT ON FUNCTION topology.ST_RemoveIsoNode(varchar , integer ) IS 'args: atopology, anode - Removes an isolated node and returns description of action. If the node is not isolated (is start or end of an edge), then an exception is thrown.';
COMMENT ON FUNCTION topology.GetEdgeByPoint(varchar , geometry , float8 ) IS 'args: atopology, apoint, tol - Find the edge-id of an edge that intersects a given point';
COMMENT ON FUNCTION topology.GetFaceByPoint(varchar , geometry , float8 ) IS 'args: atopology, apoint, tol - Find the face-id of a face that intersects a given point';
COMMENT ON FUNCTION topology.GetNodeByPoint(varchar , geometry , float8 ) IS 'args: atopology, point, tol - Find the id of a node at a point location';
COMMENT ON FUNCTION topology.GetTopologyID(varchar) IS 'args: toponame - Returns the id of a topology in the topology.topology table given the name of the topology.';
COMMENT ON FUNCTION topology.GetTopologyID(varchar) IS 'args: toponame - Returns the SRID of a topology in the topology.topology table given the name of the topology.';
COMMENT ON FUNCTION topology.GetTopologyName(integer) IS 'args: topology_id - Returns the name of a topology (schema) given the id of the topology.';
COMMENT ON FUNCTION topology.ST_GetFaceEdges(varchar , integer ) IS 'args: atopology, aface - Returns a set of ordered edges that bound aface.';
COMMENT ON FUNCTION topology.ST_GetFaceGeometry(varchar , integer ) IS 'args: atopology, aface - Returns the polygon in the given topology with the specified face id.';
COMMENT ON FUNCTION topology.GetRingEdges(varchar , integer , integer ) IS 'args: atopology, aring, max_edges=null - Returns an ordered set of edges forming a ring with the given edge .';
COMMENT ON FUNCTION topology.GetNodeEdges(varchar , integer ) IS 'args: atopology, anode - Returns an ordered set of edges incident to the given node.';
COMMENT ON FUNCTION topology.Polygonize(varchar ) IS 'args: toponame - Find and register all faces defined by topology edges';
COMMENT ON FUNCTION topology.AddNode(varchar , geometry , boolean , boolean ) IS 'args: toponame, apoint, allowEdgeSplitting=false, computeContainingFace=false - Adds a point node to the node table in the specified topology schema and returns the nodeid of new node. If point already exists as node, the existing nodeid is returned.';
COMMENT ON FUNCTION topology.AddEdge(varchar , geometry ) IS 'args: toponame, aline - Adds a linestring edge to the edge table and associated start and end points to the point nodes table of the specified topology schema using the specified linestring geometry and returns the edgeid of the new (or existing) edge.';
COMMENT ON FUNCTION topology.AddFace(varchar , geometry , boolean ) IS 'args: toponame, apolygon, force_new=false - Registers a face primitive to a topology and get its identifier.';
COMMENT ON FUNCTION topology.ST_Simplify(TopoGeometry, float) IS 'args: geomA, tolerance - Returns a "simplified" geometry version of the given TopoGeometry using the Douglas-Peucker algorithm.';
COMMENT ON FUNCTION topology.CreateTopoGeom(varchar , integer , integer, topoelementarray) IS 'args: toponame, tg_type, layer_id, tg_objs - Creates a new topo geometry object from topo element array - tg_type: 1:[multi]point, 2:[multi]line, 3:[multi]poly, 4:collection';
COMMENT ON FUNCTION topology.CreateTopoGeom(varchar , integer , integer) IS 'args: toponame, tg_type, layer_id - Creates a new topo geometry object from topo element array - tg_type: 1:[multi]point, 2:[multi]line, 3:[multi]poly, 4:collection';
COMMENT ON FUNCTION topology.toTopoGeom(geometry , varchar , integer, float8) IS 'args: geom, toponame, layer_id, tolerance - Converts a simple Geometry into a topo geometry';
COMMENT ON FUNCTION topology.toTopoGeom(geometry , topogeometry , float8) IS 'args: geom, topogeom, tolerance - Converts a simple Geometry into a topo geometry';
COMMENT ON AGGREGATE topology.TopoElementArray_Agg(topoelement) IS 'args: tefield - Returns a topoelementarray for a set of element_id, type arrays (topoelements)';
COMMENT ON FUNCTION topology.clearTopoGeom(topogeometry ) IS 'args: topogeom - Clears the content of a topo geometry';
COMMENT ON FUNCTION topology.GetTopoGeomElementArray(varchar , integer , integer) IS 'args: toponame, layer_id, tg_id - Returns a topoelementarray (an array of topoelements) containing the topological elements and type of the given TopoGeometry (primitive elements)';
COMMENT ON FUNCTION topology.GetTopoGeomElementArray(topogeometry ) IS 'args: tg - Returns a topoelementarray (an array of topoelements) containing the topological elements and type of the given TopoGeometry (primitive elements)';
COMMENT ON FUNCTION topology.GetTopoGeomElements(varchar , integer , integer) IS 'args: toponame, layer_id, tg_id - Returns a set of topoelement objects containing the topological element_id,element_type of the given TopoGeometry (primitive elements)';
COMMENT ON FUNCTION topology.GetTopoGeomElements(topogeometry ) IS 'args: tg - Returns a set of topoelement objects containing the topological element_id,element_type of the given TopoGeometry (primitive elements)';
COMMENT ON FUNCTION topology.AsGML(topogeometry ) IS 'args: tg - Returns the GML representation of a topogeometry.';
COMMENT ON FUNCTION topology.AsGML(topogeometry , text ) IS 'args: tg, nsprefix_in - Returns the GML representation of a topogeometry.';
COMMENT ON FUNCTION topology.AsGML(topogeometry , regclass ) IS 'args: tg, visitedTable - Returns the GML representation of a topogeometry.';
COMMENT ON FUNCTION topology.AsGML(topogeometry , regclass , text ) IS 'args: tg, visitedTable, nsprefix - Returns the GML representation of a topogeometry.';
COMMENT ON FUNCTION topology.AsGML(topogeometry , text , integer , integer ) IS 'args: tg, nsprefix_in, precision, options - Returns the GML representation of a topogeometry.';
COMMENT ON FUNCTION topology.AsGML(topogeometry , text , integer , integer , regclass ) IS 'args: tg, nsprefix_in, precision, options, visitedTable - Returns the GML representation of a topogeometry.';
COMMENT ON FUNCTION topology.AsGML(topogeometry , text , integer , integer , regclass , text ) IS 'args: tg, nsprefix_in, precision, options, visitedTable, idprefix - Returns the GML representation of a topogeometry.';
COMMENT ON FUNCTION topology.AsGML(topogeometry , text , integer , integer , regclass , text , int ) IS 'args: tg, nsprefix_in, precision, options, visitedTable, idprefix, gmlversion - Returns the GML representation of a topogeometry.';
COMMENT ON FUNCTION topology.AsTopoJSON(topogeometry , regclass ) IS 'args: tg, edgeMapTable - Returns the TopoJSON representation of a topogeometry.';
COMMENT ON FUNCTION topology.Equals(topogeometry , topogeometry ) IS 'args: tg1, tg2 - Returns true if two topogeometries are composed of the same topology primitives.';
COMMENT ON FUNCTION topology.Equals(topogeometry , topogeometry ) IS 'args: tg1, tg2 - Returns true if two topogeometries are composed of the same topology primitives.';
-- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
--
-- $Id: postgis_extension_helper_uninstall.sql 12288 2014-03-03 03:01:35Z robe $
----
-- PostGIS - Spatial Types for PostgreSQL
-- http://postgis.net
--
-- Copyright (C) 2011 Regina Obe <lr@pcorp.us>
--
-- This is free software; you can redistribute and/or modify it under
-- the terms of the GNU General Public Licence. See the COPYING file.
--
-- Author: Regina Obe <lr@pcorp.us>
--
-- This drops extension helper functions
-- and should be called at the end of the extension upgrade file
DROP FUNCTION postgis_extension_remove_objects(text, text);
DROP FUNCTION postgis_extension_drop_if_exists(text, text);
DROP FUNCTION postgis_extension_AddToSearchPath(varchar);
|