routing second shot
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scripts/create_osm_roads.sh
Executable file
70
scripts/create_osm_roads.sh
Executable file
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#!/bin/sh
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# 1. export du tracé depuis la base redadeg
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pg_dump --file data/redadeg_trace.sql --host localhost --username redadeg --no-password --format=p --no-owner --section=pre-data --section=data --no-privileges --no-tablespaces --no-unlogged-table-data --no-comments --table public.phase_1_trace redadeg
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# 2. import dans la base OSM
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psql -U osmbr -d osm -c "DROP TABLE public.phase_1_trace;"
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psql -U osmbr -d osm < data/redadeg_trace.sql
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# 3. calcul de la couche osm_roads = intersection buffer trace et routes OSM
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psql -U osmbr -d osm -c "TRUNCATE TABLE osm_roads ;"
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psql -U osmbr -d osm -c "WITH trace_buffer AS (
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SELECT
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secteur_id,
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ST_Union(ST_Buffer(the_geom, 25, 'quad_segs=2')) AS the_geom
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FROM phase_1_trace
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GROUP BY secteur_id
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ORDER BY secteur_id
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)
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INSERT INTO osm_roads
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(
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SELECT
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row_number() over() as id,
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osm_id,
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highway,
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CASE
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WHEN highway IN ('motorway', 'trunk') THEN 'motorway'
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WHEN highway IN ('primary', 'secondary') THEN 'mainroad'
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WHEN highway IN ('motorway_link', 'trunk_link', 'primary_link', 'secondary_link', 'tertiary', 'tertiary_link', 'residential', 'unclassified', 'road', 'living_street') THEN 'minorroad'
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WHEN highway IN ('service', 'track') THEN 'service'
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WHEN highway IN ('path', 'cycleway', 'footway', 'pedestrian', 'steps', 'bridleway') THEN 'noauto'
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ELSE 'other'
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END AS type,
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oneway,
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ref,
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name AS name_fr,
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COALESCE(tags -> 'name:br'::text) as name_br,
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ST_Intersection(ST_Transform(o.way,2154), t.the_geom) AS the_geom
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FROM planet_osm_line o, trace_buffer t
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WHERE highway IS NOT NULL AND ST_INTERSECTS(t.the_geom, ST_Transform(o.way,2154))
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) ;"
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# 4. export de osm_roads depuis la base OSM
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pg_dump --file data/osm_roads.sql --host localhost --username osmbr --no-password --format=p --no-owner --section=pre-data --section=data --no-privileges --no-tablespaces --no-unlogged-table-data --no-comments --table public.osm_roads osm
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# 5. import dans la base redadeg
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psql -U redadeg -d redadeg -c "DROP TABLE public.phase_1_trace;"
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psql -U redadeg -d redadeg < data/redadeg_trace.sql
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psql -U redadeg -d redadeg -c "TRUNCATE TABLE public.osm_roads;"
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psql -U redadeg -d redadeg < data/osm_roads.sql
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echo "fini"
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@ -22,6 +22,7 @@
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-- pg_dump --file redadeg_trace.sql --host localhost --username redadeg --no-password --format=p --no-owner --section=pre-data --section=data --no-privileges --no-tablespaces --no-unlogged-table-data --no-comments --table public.phase_1_trace redadeg
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-- import dans la base osm
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-- psql -U osmbr -d osm -c "DROP TABLE public.phase_1_trace;"
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-- psql -U osmbr -d osm < redadeg_trace.sql
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@ -92,6 +93,7 @@ INSERT INTO osm_roads
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-- pg_dump --file osm_roads.sql --host localhost --username osmbr --no-password --format=p --no-owner --section=pre-data --section=data --no-privileges --no-tablespaces --no-unlogged-table-data --no-comments --table public.osm_roads osm
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-- commande d'import
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-- psql -U redadeg -d redadeg -c "DROP TABLE public.osm_roads;"
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-- psql -U redadeg -d redadeg < osm_roads.sql
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@ -200,6 +200,8 @@ CREATE TABLE osm_roads_pgr
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name_br text,
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source bigint,
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target bigint,
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cost double precision,
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reverse_cost double precision,
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the_geom geometry,
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CONSTRAINT osm_roads_pgr_pkey PRIMARY KEY (id),
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CONSTRAINT enforce_geotype_the_geom CHECK (geometrytype(the_geom) = 'LINESTRING'::text OR geometrytype(the_geom) = 'MULTILINESTRING'::text),
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@ -30,6 +30,19 @@ SELECT topology.AddTopoGeometryColumn('osm_roads_topo', 'public', 'osm_roads', '
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-- le 2e chiffre est la tolérance en mètres
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UPDATE osm_roads SET topo_geom = topology.toTopoGeom(the_geom, 'osm_roads_topo', 1, 0.01);
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/*
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DO $$DECLARE r record;
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BEGIN
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FOR r IN SELECT * FROM osm_roads LOOP
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BEGIN
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UPDATE osm_roads SET topo_geom = topology.toTopoGeom(the_geom, 'osm_roads_topo', 1, 0.01);
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EXCEPTION
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WHEN OTHERS THEN
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RAISE WARNING 'Loading of record % failed: %', r.id, SQLERRM;
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END;
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END LOOP;
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END$$;
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*/
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-- à ce stade on a un graphe topolgique dans le schema osm_roads_topo
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@ -37,7 +50,7 @@ UPDATE osm_roads SET topo_geom = topology.toTopoGeom(the_geom, 'osm_roads_topo',
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-- 4. remplissage de la couche routable depuis la couche d'origine et la topologie
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INSERT INTO osm_roads_pgr
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( SELECT
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e.edge_id as id,
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row_number() over() as id,
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o.osm_id,
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o.highway,
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o.type,
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o.ref,
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o.name_fr,
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o.name_br,
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o.source,
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o.target,
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NULL as source,
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NULL as target,
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NULL as cost,
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NULL as reverse_cost,
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e.geom as the_geom
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FROM osm_roads_topo.edge e,
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osm_roads_topo.relation rel,
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AND rel.topogeo_id = (o.topo_geom).id
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);
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-- calcul des 2 attributs de coût (= longueur)
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UPDATE osm_roads_pgr SET cost = st_length(the_geom);
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UPDATE osm_roads_pgr SET reverse_cost = st_length(the_geom);
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-- 5. calcul du graphe routier par pgRouting
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SELECT pgr_createTopology('osm_roads_pgr', 1.0);
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-- il ne reste plus qu'à faire des calculs d'itinéraires
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-- test de calcul de plus court chemin
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SELECT * FROM pgr_dijkstra(
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'SELECT id, source, target, st_length(the_geom) as cost FROM osm_roads_pgr',
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6, 1
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'SELECT id, source, target, cost, reverse_cost FROM osm_roads_pgr',
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12872, 12810
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);
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-- avec la géométrie
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SELECT
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a.seq AS id,
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a.path_seq,
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a.node,
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a.cost,
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a.agg_cost,
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b.osm_id,
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b.highway,
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b.ref,
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b.name_fr,
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b.name_br,
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b.the_geom
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FROM pgr_dijkstra(
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'SELECT id, source, target, cost, reverse_cost FROM osm_roads_pgr',
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12872, 12145) as a
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JOIN osm_roads_pgr b
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ON a.edge = b.id
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-- si besoin : nettoyage par Drop du schéma
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@ -20,9 +20,9 @@ SELECT topology.AddTopoGeometryColumn('osm_roads_topo', 'public', 'osm_roads', '
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-- en remplissant le nouvel attribut géométrique
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-- le 1er chiffre est l'identifiant du layer dans la table topology.layer
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-- le 2e chiffre est la tolérance en mètres
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UPDATE osm_roads SET topo_geom = topology.toTopoGeom(the_geom, 'osm_roads_topo', 1, 1.0);
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-- 18 min
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UPDATE osm_roads SET topo_geom = topology.toTopoGeom(the_geom, 'osm_roads_topo', 1, 0.00001);
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-- 1.0 = 18 min
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-- 0.00001 = 18 min
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-- à ce stade on a un graphe topologique dans le schema osm_roads_topo
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-- 4. remplissage de la couche routable depuis la couche d'origine et la topologie
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-- on commence par vider avant de remplir
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TRUNCATE TABLE osm_roads_pgr ;
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--TRUNCATE TABLE osm_roads_pgr_noded ;
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TRUNCATE TABLE osm_roads_pgr_vertices_pgr ;
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-- reset des séquences
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ALTER SEQUENCE osm_roads_pgr_vertices_pgr_id_seq RESTART WITH 1;
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ALTER SEQUENCE osm_roads_pgr_noded_id_seq RESTART WITH 1;
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--ALTER SEQUENCE osm_roads_pgr_noded_id_seq RESTART WITH 1;
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INSERT INTO osm_roads_pgr
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( SELECT
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o.name_br,
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NULL as source,
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NULL as target,
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NULL as cost,
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NULL as reverse_cost,
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e.geom as the_geom
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FROM osm_roads_topo.edge e,
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osm_roads_topo.relation rel,
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AND rel.topogeo_id = (o.topo_geom).id
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);
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-- calcul des 2 attributs de coût (= longueur)
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UPDATE osm_roads_pgr SET cost = st_length(the_geom);
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UPDATE osm_roads_pgr SET reverse_cost = st_length(the_geom);
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-- 5. calcul du graphe routier par pgRouting
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SELECT pgr_createTopology('osm_roads_pgr', 1.0);
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-- il ne reste plus qu'à faire des calculs d'itinéraires
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SELECT
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a.seq AS id,
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a.path_seq,
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a.node,
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a.cost,
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a.agg_cost,
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b.osm_id,
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b.highway,
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b.ref,
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b.name_fr,
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b.name_br,
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b.the_geom
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FROM pgr_dijkstra(
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'SELECT id, source, target, cost, reverse_cost FROM osm_roads_pgr',
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12872, 12145) as a
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JOIN osm_roads_pgr b
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ON a.edge = b.id
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