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Using PostGIS to add some spatial flavor to your applications  Steven Citron-Pousty Developer Evangelist  deCarta
Agenda ,[object Object],[object Object],[object Object],[object Object],[object Object]
Assumptions about you ,[object Object],[object Object],[object Object],[object Object],[object Object]
 
What is PostGIS ,[object Object],[object Object],[object Object]
Competitive Offerings ,[object Object],[object Object],[object Object],[object Object],[object Object]
Installing ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Other Steps ,[object Object],[object Object],[object Object]
Two more things you need to understand Almost there – I promise
 
Shapefiles when is a file not a file
Projections and Datums
 
More Projection Goodness ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Projecting using ogr2ogr ,[object Object],[object Object],[object Object]
Now let’s make some SQL ,[object Object],[object Object],[object Object]
Y’all know what to do with SQL ,[object Object],[object Object]
 
Let’s get this party started ,[object Object],[object Object],[object Object],WTF!
Well Known Text (WKT) ,[object Object],[object Object],[object Object],[object Object]
Lesson Learned ,[object Object],[object Object],[object Object],SELECT asKML(the_geom) FROM  watercourses WHERE gid = 17;
<MultiGeometry> <Polygon> <outerBoundaryIs> <LinearRing> <coordinates>-118.90476592 907,35.4477387779291  -118.904082378315,35.4465853812531  -118.904745088997,35.447 2133838697  -118.90476592907,35.4477387779291</coordinates> </LinearRing> </outerBoundaryIs> </Polygon> </MultiGeometry>
Inserting a new record ,[object Object],INSERT INTO firestations(station_na, the_geom) VALUES('Best LittleFire House in CA', ST_SetSRID(ST_MakePoint(-119.5, 34.5), 4326) );
Select using the geometry
 
Distance  ,[object Object],SELECT gid FROM waterbodies WHERE  ST_DWithin('SRID=4326;POINT (-119.103762382096 35.4122898449297)',  the_geom, 0.005);   gid -----   4   5   6   7   8
Let’s find all the parcels in Agricultural Zones SELECT p.gid FROM parcels AS p,  zoning AS z WHERE z.comb_zn  LIKE 'A%' AND  ST_Within(p.the_geom, z.the_geom);
Do something with the geometry after selection
 
Calculating Area SELECT  sum(ST_Area(z.the_geom))  FROM zoning AS z WHERE z.comb_zn LIKE 'NR%'; sum -------------------- 0.0131834159551545
Turn polygons into points SELECT gid,  asText(ST_Centroid(the_geom))  FROM waterbodies WHERE gid = 124; gid |  geometry -----+------------------------------------------- 124 | POINT(-118.427120958287 35.6702299014044) SELECT gid,  asText(ST_PointOnSurface(the_geom))  FROM waterbodies WHERE gid = 124; gid |  geometry -----+------------------------------------------- 124 | POINT(-118.449967685908 35.6911672413056)
Create new tables using a select CREATE TABLE biglake WITH OIDS AS SELECT gid, the_geom FROM waterbodies WHERE gid = 124; SELECT  ST_AREA(the_geom)  FROM biglake; st_area --------------------- 0.00313986591299908
Buffering
Some SQL to buffer SELECT  ST_Area(ST_Buffer(the_geom, 0.1))  FROM biglake; st_area -------------------- 0.0718529848413709 Remember that is used to be 0.003
 
Spatial Operators
Clip to the bounding box SELECT gid,  ST_Intersection(the_geom, 'SRID=4326;MULTIPOLYGON((( -119.5 35.0, -119.0 35.0, -119.0 35.5, -119.5 35.5, -119.5 35.0)))')   FROM watercourses WHERE  ST_Intersects(the_geom,  'SRID=4326;MULTIPOLYGON((( -119.5 35.0, -119.0 35.0, -119.0 35.5, -119.5 35.5, -119.5 35.0)))');
Simplifying geometries ,[object Object],[object Object],[object Object]
Select  ST_NPoints(the_geom)  FROM  watercourses WHERE gid IN (12, 14, 17); st_npoints ------------ 265 68 48
SELECT  ST_NPoints(ST_Simplify(the_geom, 0.00001))  FROM watercourses WHERE gid IN (12, 14, 17); st_npoints ------------ 65 19 18
SELECT  ST_NPoints(ST_Simplify(the_geom, 0.0001))  FROM watercourses WHERE gid IN (12, 14, 17); st_npoints ------------ 18 6 7
So how do you bring this together in an app ,[object Object],[object Object],[object Object]
Where do you go now - PostGIS ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Where to get Data ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Map API to use ,[object Object],[object Object],[object Object],[object Object]
 

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Using PostGIS To Add Some Spatial Flavor To Your Application

  • 1. Using PostGIS to add some spatial flavor to your applications Steven Citron-Pousty Developer Evangelist deCarta
  • 2.
  • 3.
  • 4.  
  • 5.
  • 6.
  • 7.
  • 8.
  • 9. Two more things you need to understand Almost there – I promise
  • 10.  
  • 11. Shapefiles when is a file not a file
  • 13.  
  • 14.
  • 15.
  • 16.
  • 17.
  • 18.  
  • 19.
  • 20.
  • 21.
  • 22. <MultiGeometry> <Polygon> <outerBoundaryIs> <LinearRing> <coordinates>-118.90476592 907,35.4477387779291 -118.904082378315,35.4465853812531 -118.904745088997,35.447 2133838697 -118.90476592907,35.4477387779291</coordinates> </LinearRing> </outerBoundaryIs> </Polygon> </MultiGeometry>
  • 23.
  • 24. Select using the geometry
  • 25.  
  • 26.
  • 27. Let’s find all the parcels in Agricultural Zones SELECT p.gid FROM parcels AS p, zoning AS z WHERE z.comb_zn LIKE 'A%' AND ST_Within(p.the_geom, z.the_geom);
  • 28. Do something with the geometry after selection
  • 29.  
  • 30. Calculating Area SELECT sum(ST_Area(z.the_geom)) FROM zoning AS z WHERE z.comb_zn LIKE 'NR%'; sum -------------------- 0.0131834159551545
  • 31. Turn polygons into points SELECT gid, asText(ST_Centroid(the_geom)) FROM waterbodies WHERE gid = 124; gid | geometry -----+------------------------------------------- 124 | POINT(-118.427120958287 35.6702299014044) SELECT gid, asText(ST_PointOnSurface(the_geom)) FROM waterbodies WHERE gid = 124; gid | geometry -----+------------------------------------------- 124 | POINT(-118.449967685908 35.6911672413056)
  • 32. Create new tables using a select CREATE TABLE biglake WITH OIDS AS SELECT gid, the_geom FROM waterbodies WHERE gid = 124; SELECT ST_AREA(the_geom) FROM biglake; st_area --------------------- 0.00313986591299908
  • 34. Some SQL to buffer SELECT ST_Area(ST_Buffer(the_geom, 0.1)) FROM biglake; st_area -------------------- 0.0718529848413709 Remember that is used to be 0.003
  • 35.  
  • 37. Clip to the bounding box SELECT gid, ST_Intersection(the_geom, 'SRID=4326;MULTIPOLYGON((( -119.5 35.0, -119.0 35.0, -119.0 35.5, -119.5 35.5, -119.5 35.0)))') FROM watercourses WHERE ST_Intersects(the_geom, 'SRID=4326;MULTIPOLYGON((( -119.5 35.0, -119.0 35.0, -119.0 35.5, -119.5 35.5, -119.5 35.0)))');
  • 38.
  • 39. Select ST_NPoints(the_geom) FROM watercourses WHERE gid IN (12, 14, 17); st_npoints ------------ 265 68 48
  • 40. SELECT ST_NPoints(ST_Simplify(the_geom, 0.00001)) FROM watercourses WHERE gid IN (12, 14, 17); st_npoints ------------ 65 19 18
  • 41. SELECT ST_NPoints(ST_Simplify(the_geom, 0.0001)) FROM watercourses WHERE gid IN (12, 14, 17); st_npoints ------------ 18 6 7
  • 42.
  • 43.
  • 44.
  • 45.
  • 46.