geocode/lookup.py
2021-04-16 20:24:23 +01:00

466 lines
13 KiB
Python
Executable file

#!/usr/bin/python3
from flask import Flask, render_template, request, jsonify, redirect, url_for
import geocode
import os
import json
import urllib.parse
import random
import psycopg2
from geopy.distance import distance
# select gid, code, name from scotland where st_contains(geom, ST_Transform(ST_SetSRID(ST_MakePoint(-4.177, 55.7644), 4326), 27700));
commons_cat_start = "https://commons.wikimedia.org/wiki/Category:"
use_cache = True
headers = {"User-Agent": "UK gecode/0.1 (edward@4angle.com)"}
wd_entity = "http://www.wikidata.org/entity/Q"
city_of_london_qid = "Q23311"
samples = [
(50.8326, -0.2689, "Adur"),
(52.4914, -0.69645, "Corby"),
(50.893, -4.265, "Newton St Petrock"),
(51.779, 0.128, "Harlow"),
(52.387, 0.294, "Ely"),
(50.9, -1.6, "Minstead"),
(52.43, -1.11, "South Kilworth"),
(53.117, -0.202, "Tattershall Thorpe"),
(53.351, -2.701, "Halton"),
(52.421, -0.651, "Warkton"),
(51.51, -1.547, "Lambourn"),
(52.62, -1.884, "Shenstone"),
(53.309, -1.539, "Sheffield"),
(53.322, 0.032, "Haugham"),
(51.05, -2.598, "Babcary"),
(51.158, -1.906, "Berwick St James"),
(51.867, -1.204, "Weston-on-the-Green"),
(51.034, -2.005, "Ebbesbourne Wake"),
(51.07, -0.718, "Fernhurst"),
(53.059, -0.144, "Wildmore"),
(51.473, 0.221, "Dartford"),
(51.059, 0.05, "Danehill"),
(52.253, -0.122, "Papworth Everard"),
(53.498, -0.415, "West Lindsey"),
(53.392, -0.022, "Brackenborough with Little Grimsby"),
(53.463, -0.027, "Fulstow"),
(52.766, 0.31, "Terrington St Clement"),
(53.1540, -1.8034, "Hartington Town Quarter"),
(51.8532, -0.8829, "Fleet Marston"),
(51.4785, -0.354, "London Borough of Hounslow"),
(51.9687, -0.0327, "Buckland, Hertfordshire"),
(51.0804, -2.3263, "Zeals"),
(55.7644, -4.1770, "East Kilbride"),
(51.4520, -2.6210, "Bristol"),
]
app = Flask(__name__)
app.debug = True
def get_random_lat_lon():
""" Select random lat/lon within the UK """
south, east = 50.8520, 0.3536
north, west = 53.7984, -2.7296
mul = 10000
lat = random.randrange(int(south * mul), int(north * mul)) / mul
lon = random.randrange(int(west * mul), int(east * mul)) / mul
return lat, lon
@app.route("/random")
def random_location():
lat, lon = get_random_lat_lon()
elements = get_osm_elements(lat, lon)
result = do_lookup(elements, lat, lon)
return render_template(
"random.html", lat=lat, lon=lon, result=result, elements=elements
)
@app.route("/wikidata_tag")
def wikidata_tag():
lat = float(request.args.get("lat"))
lon = float(request.args.get("lon"))
scotland_code = get_scotland_code(lat, lon)
if scotland_code:
rows = lookup_scottish_parish_in_wikidata(scotland_code)
hit = commons_from_rows(rows)
elements = []
result = build_dict(hit, lat, lon)
else:
elements = get_osm_elements(lat, lon)
result = do_lookup(elements, lat, lon)
return render_template(
"wikidata_tag.html", lat=lat, lon=lon, result=result, elements=elements
)
@app.route("/detail")
def detail_page():
try:
lat, lon = [float(request.args.get(param)) for param in ("lat", "lon")]
except TypeError:
return redirect(url_for("index"))
reply = lat_lon_to_wikidata(lat, lon)
return render_template("random.html", lat=lat, lon=lon, **reply)
def bounding_box_area(element):
bbox = element["bounds"]
x = distance((bbox["maxlat"], bbox["minlon"]), (bbox["maxlat"], bbox["maxlon"]))
y = distance((bbox["minlat"], bbox["maxlon"]), (bbox["maxlat"], bbox["minlon"]))
return x.km * y.km
def wd_to_qid(wd):
# expecting {"type": "url", "value": "https://www.wikidata.org/wiki/Q30"}
if wd["type"] == "uri":
return wd_uri_to_qid(wd["value"])
def wd_uri_to_qid(value):
assert value.startswith(wd_entity)
return value[len(wd_entity) - 1 :]
def build_dict(hit, lat, lon):
coords = {"lat": lat, "lon": lon}
if hit is None:
return dict(commons_cat=None, missing=True, coords=coords)
commons_cat = hit["commons_cat"]
url = commons_cat_start + urllib.parse.quote(commons_cat.replace(" ", "_"))
return dict(
commons_cat={"title": commons_cat, "url": url},
coords=coords,
admin_level=hit.get("admin_level"),
wikidata=hit["wikidata"],
)
def do_lookup(elements, lat, lon):
try:
hit = osm_lookup(elements, lat, lon)
except geocode.QueryError as e:
return {
"query": e.query,
"error": e.r.text,
"query_url": "https://query.wikidata.org/#" + e.query,
}
return build_dict(hit, lat, lon)
def get_scotland_code(lat, lon):
conn = psycopg2.connect(
dbname="geocode", user="geocode", password="ooK3ohgh", host="localhost"
)
cur = conn.cursor()
point = f"ST_Transform(ST_SetSRID(ST_MakePoint({lon}, {lat}), 4326), 27700)"
cur.execute(f"select code, name from scotland where st_contains(geom, {point});")
row = cur.fetchone()
# expand search, disabled for now 2020-04-20
if not row:
cur.execute(
f"select code, name from scotland where ST_DWithin(geom, {point}, 100);"
)
row = cur.fetchone()
conn.close()
if row:
return row[0]
def wdqs_geosearch_query(lat, lon):
if isinstance(lat, float):
lat = f"{lat:f}"
if isinstance(lon, float):
lon = f"{lon:f}"
query_template = """
SELECT DISTINCT ?item ?distance ?itemLabel ?isa ?isaLabel ?commonsCat ?commonsSiteLink WHERE {
{
SELECT DISTINCT ?item ?location ?distance ?isa WHERE {
?item wdt:P31/wdt:P279* wd:Q486972.
?item wdt:P31 ?isa .
SERVICE wikibase:around {
?item wdt:P625 ?location.
bd:serviceParam wikibase:center "Point(LON LAT)"^^geo:wktLiteral;
wikibase:radius 5;
wikibase:distance ?distance.
}
}
}
MINUS { ?item wdt:P582 ?endTime . }
OPTIONAL { ?item wdt:P373 ?commonsCat. }
OPTIONAL { ?commonsSiteLink schema:about ?item;
schema:isPartOf <https://commons.wikimedia.org/>. }
SERVICE wikibase:label { bd:serviceParam wikibase:language "[AUTO_LANGUAGE],en". }
} ORDER BY (?distance)"""
query = query_template.replace("LAT", lat).replace("LON", lon)
reply = geocode.wdqs(query)
return reply["results"]["bindings"]
def wdqs_geosearch(lat, lon):
default_max_dist = 1
rows = wdqs_geosearch_query(lat, lon)
max_dist = {
"Q188509": 1, # suburb
"Q3957": 2, # town
"Q532": 1, # village
"Q5084": 1, # hamlet
"Q515": 2, # city
"Q1549591": 3, # big city
}
for row in rows:
isa = wd_uri_to_qid(row["isa"]["value"])
if (
"commonsCat" not in row
and "commonsSiteLink" not in row
and isa not in max_dist
):
continue
distance = float(row["distance"]["value"])
if distance > max_dist.get(isa, default_max_dist):
continue
if "commonsCat" not in row and "commonsSiteLink" not in row:
break
return row
def lat_lon_to_wikidata(lat, lon):
scotland_code = get_scotland_code(lat, lon)
if scotland_code:
rows = lookup_scottish_parish_in_wikidata(scotland_code)
hit = commons_from_rows(rows)
elements = []
result = build_dict(hit, lat, lon)
return {"elements": elements, "result": result}
elements = get_osm_elements(lat, lon)
result = do_lookup(elements, lat, lon)
# special case because the City of London is admin_level=6 in OSM
if result["wikidata"] == city_of_london_qid:
return {"elements": elements, "result": result}
admin_level = result["admin_level"]
if not admin_level or admin_level >= 7:
return {"elements": elements, "result": result}
row = wdqs_geosearch(lat, lon)
if row:
hit = commons_from_rows([row])
elements = []
result = build_dict(hit, lat, lon)
return {"elements": elements, "result": result}
@app.route("/")
def index():
q = request.args.get("q")
if q and q.strip():
lat, lon = [v.strip() for v in q.split(",", 1)]
return redirect(url_for("detail_page", lat=lat, lon=lon))
lat = request.args.get("lat")
lon = request.args.get("lon")
if lat is None or lon is None:
samples.sort(key=lambda row: row[2])
return render_template("index.html", samples=samples)
return jsonify(lat_lon_to_wikidata(lat, lon)["result"])
def get_elements(oql):
return geocode.run_query(oql).json()["elements"]
def is_in_lat_lon(lat, lon):
oql = f"""
[out:json][timeout:25];
is_in({lat},{lon})->.a;
(way(pivot.a); rel(pivot.a););
out bb tags qt;"""
return geocode.run_query(oql)
def lookup_scottish_parish_in_wikidata(code):
query = """
SELECT ?item ?itemLabel ?commonsSiteLink ?commonsCat WHERE {
?item wdt:P528 "CODE" .
?item wdt:P31 wd:Q5124673 .
OPTIONAL { ?commonsSiteLink schema:about ?item ;
schema:isPartOf <https://commons.wikimedia.org/> }
OPTIONAL { ?item wdt:P373 ?commonsCat }
SERVICE wikibase:label { bd:serviceParam wikibase:language "[AUTO_LANGUAGE],en". }
}
""".replace(
"CODE", code
)
reply = geocode.wdqs(query)
return reply["results"]["bindings"]
def lookup_gss_in_wikidata(gss):
query = """
SELECT ?item ?itemLabel ?commonsSiteLink ?commonsCat WHERE {
?item wdt:P836 GSS .
OPTIONAL { ?commonsSiteLink schema:about ?item ;
schema:isPartOf <https://commons.wikimedia.org/> }
OPTIONAL { ?item wdt:P373 ?commonsCat }
SERVICE wikibase:label { bd:serviceParam wikibase:language "[AUTO_LANGUAGE],en". }
}
""".replace(
"GSS", repr(gss)
)
reply = geocode.wdqs(query)
return reply["results"]["bindings"]
def lookup_wikidata_by_name(name, lat, lon):
query = (
"""
SELECT DISTINCT ?item ?itemLabel ?commonsSiteLink ?commonsCat WHERE {
?item rdfs:label LABEL@en .
FILTER NOT EXISTS { ?item wdt:P31 wd:Q17362920 } .# ignore Wikimedia duplicated page
OPTIONAL { ?commonsSiteLink schema:about ?item ;
schema:isPartOf <https://commons.wikimedia.org/> }
OPTIONAL { ?item wdt:P373 ?commonsCat }
?item wdt:P625 ?coords .
FILTER(geof:distance(?coords, "Point(LON LAT)"^^geo:wktLiteral) < 10)
FILTER(?commonsCat || ?commonsSiteLink)
SERVICE wikibase:label { bd:serviceParam wikibase:language "[AUTO_LANGUAGE],en". }
}
""".replace(
"LABEL", repr(name)
)
.replace("LAT", str(lat))
.replace("LON", str(lon))
)
reply = geocode.wdqs(query)
return reply["results"]["bindings"]
def unescape_title(t):
return urllib.parse.unquote(t.replace("_", " "))
def commons_from_rows(rows):
for row in rows:
if "commonsCat" in row:
qid = wd_to_qid(row["item"])
return {"wikidata": qid, "commons_cat": row["commonsCat"]["value"]}
if "commonsSiteLink" in row:
site_link = row["commonsSiteLink"]["value"]
qid = wd_to_qid(row["item"])
cat = unescape_title(site_link[len(commons_cat_start) :])
return {"wikidata": qid, "commons_cat": cat}
def get_commons_cat_from_gss(gss):
return commons_from_rows(lookup_gss_in_wikidata(gss))
def get_osm_elements(lat, lon):
filename = f"cache/{lat}_{lon}.json"
if use_cache and os.path.exists(filename):
elements = json.load(open(filename))["elements"]
else:
r = is_in_lat_lon(lat, lon)
if use_cache:
open(filename, "wb").write(r.content)
elements = r.json()["elements"]
return elements
def osm_lookup(elements, lat, lon):
elements.sort(key=lambda e: bounding_box_area(e))
for e in elements:
if "tags" not in e:
continue
tags = e["tags"]
admin_level_tag = tags.get("admin_level")
admin_level = (
int(admin_level_tag)
if admin_level_tag and admin_level_tag.isdigit()
else None
)
if not admin_level and tags.get("boundary") != "political":
continue
if "wikidata" in tags:
qid = tags["wikidata"]
commons = geocode.qid_to_commons_category(qid)
if commons:
return {
"wikidata": qid,
"commons_cat": commons,
"admin_level": admin_level,
}
gss = tags.get("ref:gss")
if gss:
ret = get_commons_cat_from_gss(gss)
if ret:
ret["admin_level"] = admin_level
return ret
name = tags.get("name")
if not name:
continue
if name.endswith(" CP"):
name = name[:-3]
rows = lookup_wikidata_by_name(name, lat, lon)
if len(rows) == 1:
ret = commons_from_rows(rows)
if ret:
ret["admin_level"] = admin_level
return ret
has_wikidata_tag = [e["tags"] for e in elements if "wikidata" in e["tags"]]
if len(has_wikidata_tag) != 1:
return
qid = has_wikidata_tag[0]["wikidata"]
return {
"wikidata": qid,
"commons_cat": geocode.qid_to_commons_category(qid),
"admin_level": admin_level,
}
if __name__ == "__main__":
app.run(host="0.0.0.0")