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order near searches by distance instead of importance
[nominatim.git] / nominatim / api / search / db_searches.py
1 # SPDX-License-Identifier: GPL-3.0-or-later
2 #
3 # This file is part of Nominatim. (https://nominatim.org)
4 #
5 # Copyright (C) 2023 by the Nominatim developer community.
6 # For a full list of authors see the git log.
7 """
8 Implementation of the acutal database accesses for forward search.
9 """
10 from typing import List, Tuple, AsyncIterator, Dict, Any, Callable
11 import abc
12
13 import sqlalchemy as sa
14 from sqlalchemy.dialects.postgresql import ARRAY, array_agg
15
16 from nominatim.typing import SaFromClause, SaScalarSelect, SaColumn, \
17                              SaExpression, SaSelect, SaLambdaSelect, SaRow, SaBind
18 from nominatim.api.connection import SearchConnection
19 from nominatim.api.types import SearchDetails, DataLayer, GeometryFormat, Bbox
20 import nominatim.api.results as nres
21 from nominatim.api.search.db_search_fields import SearchData, WeightedCategories
22 from nominatim.db.sqlalchemy_types import Geometry
23
24 #pylint: disable=singleton-comparison,not-callable
25 #pylint: disable=too-many-branches,too-many-arguments,too-many-locals,too-many-statements
26
27 def no_index(expr: SaColumn) -> SaColumn:
28     """ Wrap the given expression, so that the query planner will
29         refrain from using the expression for index lookup.
30     """
31     return sa.func.coalesce(sa.null(), expr) # pylint: disable=not-callable
32
33
34 def _details_to_bind_params(details: SearchDetails) -> Dict[str, Any]:
35     """ Create a dictionary from search parameters that can be used
36         as bind parameter for SQL execute.
37     """
38     return {'limit': details.max_results,
39             'min_rank': details.min_rank,
40             'max_rank': details.max_rank,
41             'viewbox': details.viewbox,
42             'viewbox2': details.viewbox_x2,
43             'near': details.near,
44             'near_radius': details.near_radius,
45             'excluded': details.excluded,
46             'countries': details.countries}
47
48
49 LIMIT_PARAM: SaBind = sa.bindparam('limit')
50 MIN_RANK_PARAM: SaBind = sa.bindparam('min_rank')
51 MAX_RANK_PARAM: SaBind = sa.bindparam('max_rank')
52 VIEWBOX_PARAM: SaBind = sa.bindparam('viewbox', type_=Geometry)
53 VIEWBOX2_PARAM: SaBind = sa.bindparam('viewbox2', type_=Geometry)
54 NEAR_PARAM: SaBind = sa.bindparam('near', type_=Geometry)
55 NEAR_RADIUS_PARAM: SaBind = sa.bindparam('near_radius')
56 COUNTRIES_PARAM: SaBind = sa.bindparam('countries')
57
58 def _within_near(t: SaFromClause) -> Callable[[], SaExpression]:
59     return lambda: t.c.geometry.ST_DWithin(NEAR_PARAM, NEAR_RADIUS_PARAM)
60
61 def _exclude_places(t: SaFromClause) -> Callable[[], SaExpression]:
62     return lambda: t.c.place_id.not_in(sa.bindparam('excluded'))
63
64 def _select_placex(t: SaFromClause) -> SaSelect:
65     return sa.select(t.c.place_id, t.c.osm_type, t.c.osm_id, t.c.name,
66                      t.c.class_, t.c.type,
67                      t.c.address, t.c.extratags,
68                      t.c.housenumber, t.c.postcode, t.c.country_code,
69                      t.c.wikipedia,
70                      t.c.parent_place_id, t.c.rank_address, t.c.rank_search,
71                      t.c.linked_place_id, t.c.admin_level,
72                      t.c.centroid,
73                      t.c.geometry.ST_Expand(0).label('bbox'))
74
75
76 def _add_geometry_columns(sql: SaLambdaSelect, col: SaColumn, details: SearchDetails) -> SaSelect:
77     out = []
78
79     if details.geometry_simplification > 0.0:
80         col = sa.func.ST_SimplifyPreserveTopology(col, details.geometry_simplification)
81
82     if details.geometry_output & GeometryFormat.GEOJSON:
83         out.append(sa.func.ST_AsGeoJSON(col, 7).label('geometry_geojson'))
84     if details.geometry_output & GeometryFormat.TEXT:
85         out.append(sa.func.ST_AsText(col).label('geometry_text'))
86     if details.geometry_output & GeometryFormat.KML:
87         out.append(sa.func.ST_AsKML(col, 7).label('geometry_kml'))
88     if details.geometry_output & GeometryFormat.SVG:
89         out.append(sa.func.ST_AsSVG(col, 0, 7).label('geometry_svg'))
90
91     return sql.add_columns(*out)
92
93
94 def _make_interpolation_subquery(table: SaFromClause, inner: SaFromClause,
95                                  numerals: List[int], details: SearchDetails) -> SaScalarSelect:
96     all_ids = array_agg(table.c.place_id) # type: ignore[no-untyped-call]
97     sql = sa.select(all_ids).where(table.c.parent_place_id == inner.c.place_id)
98
99     if len(numerals) == 1:
100         sql = sql.where(sa.between(numerals[0], table.c.startnumber, table.c.endnumber))\
101                  .where((numerals[0] - table.c.startnumber) % table.c.step == 0)
102     else:
103         sql = sql.where(sa.or_(
104                 *(sa.and_(sa.between(n, table.c.startnumber, table.c.endnumber),
105                           (n - table.c.startnumber) % table.c.step == 0)
106                   for n in numerals)))
107
108     if details.excluded:
109         sql = sql.where(_exclude_places(table))
110
111     return sql.scalar_subquery()
112
113
114 def _filter_by_layer(table: SaFromClause, layers: DataLayer) -> SaColumn:
115     orexpr: List[SaExpression] = []
116     if layers & DataLayer.ADDRESS and layers & DataLayer.POI:
117         orexpr.append(no_index(table.c.rank_address).between(1, 30))
118     elif layers & DataLayer.ADDRESS:
119         orexpr.append(no_index(table.c.rank_address).between(1, 29))
120         orexpr.append(sa.and_(no_index(table.c.rank_address) == 30,
121                               sa.or_(table.c.housenumber != None,
122                                      table.c.address.has_key('addr:housename'))))
123     elif layers & DataLayer.POI:
124         orexpr.append(sa.and_(no_index(table.c.rank_address) == 30,
125                               table.c.class_.not_in(('place', 'building'))))
126
127     if layers & DataLayer.MANMADE:
128         exclude = []
129         if not layers & DataLayer.RAILWAY:
130             exclude.append('railway')
131         if not layers & DataLayer.NATURAL:
132             exclude.extend(('natural', 'water', 'waterway'))
133         orexpr.append(sa.and_(table.c.class_.not_in(tuple(exclude)),
134                               no_index(table.c.rank_address) == 0))
135     else:
136         include = []
137         if layers & DataLayer.RAILWAY:
138             include.append('railway')
139         if layers & DataLayer.NATURAL:
140             include.extend(('natural', 'water', 'waterway'))
141         orexpr.append(sa.and_(table.c.class_.in_(tuple(include)),
142                               no_index(table.c.rank_address) == 0))
143
144     if len(orexpr) == 1:
145         return orexpr[0]
146
147     return sa.or_(*orexpr)
148
149
150 def _interpolated_position(table: SaFromClause, nr: SaColumn) -> SaColumn:
151     pos = sa.cast(nr - table.c.startnumber, sa.Float) / (table.c.endnumber - table.c.startnumber)
152     return sa.case(
153             (table.c.endnumber == table.c.startnumber, table.c.linegeo.ST_Centroid()),
154             else_=table.c.linegeo.ST_LineInterpolatePoint(pos)).label('centroid')
155
156
157 async def _get_placex_housenumbers(conn: SearchConnection,
158                                    place_ids: List[int],
159                                    details: SearchDetails) -> AsyncIterator[nres.SearchResult]:
160     t = conn.t.placex
161     sql = _select_placex(t).add_columns(t.c.importance)\
162                            .where(t.c.place_id.in_(place_ids))
163
164     if details.geometry_output:
165         sql = _add_geometry_columns(sql, t.c.geometry, details)
166
167     for row in await conn.execute(sql):
168         result = nres.create_from_placex_row(row, nres.SearchResult)
169         assert result
170         result.bbox = Bbox.from_wkb(row.bbox)
171         yield result
172
173
174 async def _get_osmline(conn: SearchConnection, place_ids: List[int],
175                        numerals: List[int],
176                        details: SearchDetails) -> AsyncIterator[nres.SearchResult]:
177     t = conn.t.osmline
178     values = sa.values(sa.Column('nr', sa.Integer()), name='housenumber')\
179                .data([(n,) for n in numerals])
180     sql = sa.select(t.c.place_id, t.c.osm_id,
181                     t.c.parent_place_id, t.c.address,
182                     values.c.nr.label('housenumber'),
183                     _interpolated_position(t, values.c.nr),
184                     t.c.postcode, t.c.country_code)\
185             .where(t.c.place_id.in_(place_ids))\
186             .join(values, values.c.nr.between(t.c.startnumber, t.c.endnumber))
187
188     if details.geometry_output:
189         sub = sql.subquery()
190         sql = _add_geometry_columns(sa.select(sub), sub.c.centroid, details)
191
192     for row in await conn.execute(sql):
193         result = nres.create_from_osmline_row(row, nres.SearchResult)
194         assert result
195         yield result
196
197
198 async def _get_tiger(conn: SearchConnection, place_ids: List[int],
199                      numerals: List[int], osm_id: int,
200                      details: SearchDetails) -> AsyncIterator[nres.SearchResult]:
201     t = conn.t.tiger
202     values = sa.values(sa.Column('nr', sa.Integer()), name='housenumber')\
203                .data([(n,) for n in numerals])
204     sql = sa.select(t.c.place_id, t.c.parent_place_id,
205                     sa.literal('W').label('osm_type'),
206                     sa.literal(osm_id).label('osm_id'),
207                     values.c.nr.label('housenumber'),
208                     _interpolated_position(t, values.c.nr),
209                     t.c.postcode)\
210             .where(t.c.place_id.in_(place_ids))\
211             .join(values, values.c.nr.between(t.c.startnumber, t.c.endnumber))
212
213     if details.geometry_output:
214         sub = sql.subquery()
215         sql = _add_geometry_columns(sa.select(sub), sub.c.centroid, details)
216
217     for row in await conn.execute(sql):
218         result = nres.create_from_tiger_row(row, nres.SearchResult)
219         assert result
220         yield result
221
222
223 class AbstractSearch(abc.ABC):
224     """ Encapuslation of a single lookup in the database.
225     """
226
227     def __init__(self, penalty: float) -> None:
228         self.penalty = penalty
229
230     @abc.abstractmethod
231     async def lookup(self, conn: SearchConnection,
232                      details: SearchDetails) -> nres.SearchResults:
233         """ Find results for the search in the database.
234         """
235
236
237 class NearSearch(AbstractSearch):
238     """ Category search of a place type near the result of another search.
239     """
240     def __init__(self, penalty: float, categories: WeightedCategories,
241                  search: AbstractSearch) -> None:
242         super().__init__(penalty)
243         self.search = search
244         self.categories = categories
245
246
247     async def lookup(self, conn: SearchConnection,
248                      details: SearchDetails) -> nres.SearchResults:
249         """ Find results for the search in the database.
250         """
251         results = nres.SearchResults()
252         base = await self.search.lookup(conn, details)
253
254         if not base:
255             return results
256
257         base.sort(key=lambda r: (r.accuracy, r.rank_search))
258         max_accuracy = base[0].accuracy + 0.5
259         base = nres.SearchResults(r for r in base if r.source_table == nres.SourceTable.PLACEX
260                                                      and r.accuracy <= max_accuracy
261                                                      and r.bbox and r.bbox.area < 20)
262
263         if base:
264             baseids = [b.place_id for b in base[:5] if b.place_id]
265
266             for category, penalty in self.categories:
267                 await self.lookup_category(results, conn, baseids, category, penalty, details)
268                 if len(results) >= details.max_results:
269                     break
270
271         return results
272
273
274     async def lookup_category(self, results: nres.SearchResults,
275                               conn: SearchConnection, ids: List[int],
276                               category: Tuple[str, str], penalty: float,
277                               details: SearchDetails) -> None:
278         """ Find places of the given category near the list of
279             place ids and add the results to 'results'.
280         """
281         table = await conn.get_class_table(*category)
282
283         tgeom = conn.t.placex.alias('pgeom')
284
285         if table is None:
286             # No classtype table available, do a simplified lookup in placex.
287             table = conn.t.placex.alias('inner')
288             sql = sa.select(table.c.place_id,
289                             sa.func.min(tgeom.c.centroid.ST_Distance(table.c.centroid))
290                               .label('dist'))\
291                     .join(tgeom, table.c.geometry.intersects(tgeom.c.centroid.ST_Expand(0.01)))\
292                     .where(table.c.class_ == category[0])\
293                     .where(table.c.type == category[1])
294         else:
295             # Use classtype table. We can afford to use a larger
296             # radius for the lookup.
297             sql = sa.select(table.c.place_id,
298                             sa.func.min(tgeom.c.centroid.ST_Distance(table.c.centroid))
299                               .label('dist'))\
300                     .join(tgeom,
301                           table.c.centroid.ST_CoveredBy(
302                               sa.case((sa.and_(tgeom.c.rank_address > 9,
303                                                 tgeom.c.geometry.is_area()),
304                                        tgeom.c.geometry),
305                                       else_ = tgeom.c.centroid.ST_Expand(0.05))))
306
307         inner = sql.where(tgeom.c.place_id.in_(ids))\
308                    .group_by(table.c.place_id).subquery()
309
310         t = conn.t.placex
311         sql = _select_placex(t).add_columns((-inner.c.dist).label('importance'))\
312                                .join(inner, inner.c.place_id == t.c.place_id)\
313                                .order_by(inner.c.dist)
314
315         sql = sql.where(no_index(t.c.rank_address).between(MIN_RANK_PARAM, MAX_RANK_PARAM))
316         if details.countries:
317             sql = sql.where(t.c.country_code.in_(COUNTRIES_PARAM))
318         if details.excluded:
319             sql = sql.where(_exclude_places(t))
320         if details.layers is not None:
321             sql = sql.where(_filter_by_layer(t, details.layers))
322
323         sql = sql.limit(LIMIT_PARAM)
324         for row in await conn.execute(sql, _details_to_bind_params(details)):
325             result = nres.create_from_placex_row(row, nres.SearchResult)
326             assert result
327             result.accuracy = self.penalty + penalty
328             result.bbox = Bbox.from_wkb(row.bbox)
329             results.append(result)
330
331
332
333 class PoiSearch(AbstractSearch):
334     """ Category search in a geographic area.
335     """
336     def __init__(self, sdata: SearchData) -> None:
337         super().__init__(sdata.penalty)
338         self.qualifiers = sdata.qualifiers
339         self.countries = sdata.countries
340
341
342     async def lookup(self, conn: SearchConnection,
343                      details: SearchDetails) -> nres.SearchResults:
344         """ Find results for the search in the database.
345         """
346         bind_params = _details_to_bind_params(details)
347         t = conn.t.placex
348
349         rows: List[SaRow] = []
350
351         if details.near and details.near_radius is not None and details.near_radius < 0.2:
352             # simply search in placex table
353             def _base_query() -> SaSelect:
354                 return _select_placex(t) \
355                            .add_columns((-t.c.centroid.ST_Distance(NEAR_PARAM))
356                                          .label('importance'))\
357                            .where(t.c.linked_place_id == None) \
358                            .where(t.c.geometry.ST_DWithin(NEAR_PARAM, NEAR_RADIUS_PARAM)) \
359                            .order_by(t.c.centroid.ST_Distance(NEAR_PARAM)) \
360                            .limit(LIMIT_PARAM)
361
362             classtype = self.qualifiers.values
363             if len(classtype) == 1:
364                 cclass, ctype = classtype[0]
365                 sql: SaLambdaSelect = sa.lambda_stmt(lambda: _base_query()
366                                                  .where(t.c.class_ == cclass)
367                                                  .where(t.c.type == ctype))
368             else:
369                 sql = _base_query().where(sa.or_(*(sa.and_(t.c.class_ == cls, t.c.type == typ)
370                                                    for cls, typ in classtype)))
371
372             if self.countries:
373                 sql = sql.where(t.c.country_code.in_(self.countries.values))
374
375             if details.viewbox is not None and details.bounded_viewbox:
376                 sql = sql.where(t.c.geometry.intersects(VIEWBOX_PARAM))
377
378             rows.extend(await conn.execute(sql, bind_params))
379         else:
380             # use the class type tables
381             for category in self.qualifiers.values:
382                 table = await conn.get_class_table(*category)
383                 if table is not None:
384                     sql = _select_placex(t)\
385                                .add_columns(t.c.importance)\
386                                .join(table, t.c.place_id == table.c.place_id)\
387                                .where(t.c.class_ == category[0])\
388                                .where(t.c.type == category[1])
389
390                     if details.viewbox is not None and details.bounded_viewbox:
391                         sql = sql.where(table.c.centroid.intersects(VIEWBOX_PARAM))
392
393                     if details.near and details.near_radius is not None:
394                         sql = sql.order_by(table.c.centroid.ST_Distance(NEAR_PARAM))\
395                                  .where(table.c.centroid.ST_DWithin(NEAR_PARAM,
396                                                                     NEAR_RADIUS_PARAM))
397
398                     if self.countries:
399                         sql = sql.where(t.c.country_code.in_(self.countries.values))
400
401                     sql = sql.limit(LIMIT_PARAM)
402                     rows.extend(await conn.execute(sql, bind_params))
403
404         results = nres.SearchResults()
405         for row in rows:
406             result = nres.create_from_placex_row(row, nres.SearchResult)
407             assert result
408             result.accuracy = self.penalty + self.qualifiers.get_penalty((row.class_, row.type))
409             result.bbox = Bbox.from_wkb(row.bbox)
410             results.append(result)
411
412         return results
413
414
415 class CountrySearch(AbstractSearch):
416     """ Search for a country name or country code.
417     """
418     def __init__(self, sdata: SearchData) -> None:
419         super().__init__(sdata.penalty)
420         self.countries = sdata.countries
421
422
423     async def lookup(self, conn: SearchConnection,
424                      details: SearchDetails) -> nres.SearchResults:
425         """ Find results for the search in the database.
426         """
427         t = conn.t.placex
428
429         ccodes = self.countries.values
430         sql = _select_placex(t)\
431                 .add_columns(t.c.importance)\
432                 .where(t.c.country_code.in_(ccodes))\
433                 .where(t.c.rank_address == 4)
434
435         if details.geometry_output:
436             sql = _add_geometry_columns(sql, t.c.geometry, details)
437
438         if details.excluded:
439             sql = sql.where(_exclude_places(t))
440
441         if details.viewbox is not None and details.bounded_viewbox:
442             sql = sql.where(lambda: t.c.geometry.intersects(VIEWBOX_PARAM))
443
444         if details.near is not None and details.near_radius is not None:
445             sql = sql.where(_within_near(t))
446
447         results = nres.SearchResults()
448         for row in await conn.execute(sql, _details_to_bind_params(details)):
449             result = nres.create_from_placex_row(row, nres.SearchResult)
450             assert result
451             result.accuracy = self.penalty + self.countries.get_penalty(row.country_code, 5.0)
452             result.bbox = Bbox.from_wkb(row.bbox)
453             results.append(result)
454
455         return results or await self.lookup_in_country_table(conn, details)
456
457
458     async def lookup_in_country_table(self, conn: SearchConnection,
459                                       details: SearchDetails) -> nres.SearchResults:
460         """ Look up the country in the fallback country tables.
461         """
462         # Avoid the fallback search when this is a more search. Country results
463         # usually are in the first batch of results and it is not possible
464         # to exclude these fallbacks.
465         if details.excluded:
466             return nres.SearchResults()
467
468         t = conn.t.country_name
469         tgrid = conn.t.country_grid
470
471         sql = sa.select(tgrid.c.country_code,
472                         tgrid.c.geometry.ST_Centroid().ST_Collect().ST_Centroid()
473                               .label('centroid'),
474                         tgrid.c.geometry.ST_Collect().ST_Expand(0).label('bbox'))\
475                 .where(tgrid.c.country_code.in_(self.countries.values))\
476                 .group_by(tgrid.c.country_code)
477
478         if details.viewbox is not None and details.bounded_viewbox:
479             sql = sql.where(tgrid.c.geometry.intersects(VIEWBOX_PARAM))
480         if details.near is not None and details.near_radius is not None:
481             sql = sql.where(_within_near(tgrid))
482
483         sub = sql.subquery('grid')
484
485         sql = sa.select(t.c.country_code,
486                         (t.c.name
487                          + sa.func.coalesce(t.c.derived_name,
488                                             sa.cast('', type_=conn.t.types.Composite))
489                         ).label('name'),
490                         sub.c.centroid, sub.c.bbox)\
491                 .join(sub, t.c.country_code == sub.c.country_code)
492
493         if details.geometry_output:
494             sql = _add_geometry_columns(sql, sub.c.centroid, details)
495
496         results = nres.SearchResults()
497         for row in await conn.execute(sql, _details_to_bind_params(details)):
498             result = nres.create_from_country_row(row, nres.SearchResult)
499             assert result
500             result.bbox = Bbox.from_wkb(row.bbox)
501             result.accuracy = self.penalty + self.countries.get_penalty(row.country_code, 5.0)
502             results.append(result)
503
504         return results
505
506
507
508 class PostcodeSearch(AbstractSearch):
509     """ Search for a postcode.
510     """
511     def __init__(self, extra_penalty: float, sdata: SearchData) -> None:
512         super().__init__(sdata.penalty + extra_penalty)
513         self.countries = sdata.countries
514         self.postcodes = sdata.postcodes
515         self.lookups = sdata.lookups
516         self.rankings = sdata.rankings
517
518
519     async def lookup(self, conn: SearchConnection,
520                      details: SearchDetails) -> nres.SearchResults:
521         """ Find results for the search in the database.
522         """
523         t = conn.t.postcode
524         pcs = self.postcodes.values
525
526         sql = sa.select(t.c.place_id, t.c.parent_place_id,
527                         t.c.rank_search, t.c.rank_address,
528                         t.c.postcode, t.c.country_code,
529                         t.c.geometry.label('centroid'))\
530                 .where(t.c.postcode.in_(pcs))
531
532         if details.geometry_output:
533             sql = _add_geometry_columns(sql, t.c.geometry, details)
534
535         penalty: SaExpression = sa.literal(self.penalty)
536
537         if details.viewbox is not None:
538             if details.bounded_viewbox:
539                 sql = sql.where(t.c.geometry.intersects(VIEWBOX_PARAM))
540             else:
541                 penalty += sa.case((t.c.geometry.intersects(VIEWBOX_PARAM), 0.0),
542                                    (t.c.geometry.intersects(VIEWBOX2_PARAM), 0.5),
543                                    else_=1.0)
544
545         if details.near is not None:
546             if details.near_radius is not None:
547                 sql = sql.where(_within_near(t))
548             sql = sql.order_by(t.c.geometry.ST_Distance(NEAR_PARAM))
549
550         if self.countries:
551             sql = sql.where(t.c.country_code.in_(self.countries.values))
552
553         if details.excluded:
554             sql = sql.where(_exclude_places(t))
555
556         if self.lookups:
557             assert len(self.lookups) == 1
558             assert self.lookups[0].lookup_type == 'restrict'
559             tsearch = conn.t.search_name
560             sql = sql.where(tsearch.c.place_id == t.c.parent_place_id)\
561                      .where(sa.func.array_cat(tsearch.c.name_vector,
562                                               tsearch.c.nameaddress_vector,
563                                               type_=ARRAY(sa.Integer))
564                                     .contains(self.lookups[0].tokens))
565
566         for ranking in self.rankings:
567             penalty += ranking.sql_penalty(conn.t.search_name)
568         penalty += sa.case(*((t.c.postcode == v, p) for v, p in self.postcodes),
569                        else_=1.0)
570
571
572         sql = sql.add_columns(penalty.label('accuracy'))
573         sql = sql.order_by('accuracy').limit(LIMIT_PARAM)
574
575         results = nres.SearchResults()
576         for row in await conn.execute(sql, _details_to_bind_params(details)):
577             result = nres.create_from_postcode_row(row, nres.SearchResult)
578             assert result
579             result.accuracy = row.accuracy
580             results.append(result)
581
582         return results
583
584
585
586 class PlaceSearch(AbstractSearch):
587     """ Generic search for an address or named place.
588     """
589     def __init__(self, extra_penalty: float, sdata: SearchData, expected_count: int) -> None:
590         super().__init__(sdata.penalty + extra_penalty)
591         self.countries = sdata.countries
592         self.postcodes = sdata.postcodes
593         self.housenumbers = sdata.housenumbers
594         self.qualifiers = sdata.qualifiers
595         self.lookups = sdata.lookups
596         self.rankings = sdata.rankings
597         self.expected_count = expected_count
598
599
600     async def lookup(self, conn: SearchConnection,
601                      details: SearchDetails) -> nres.SearchResults:
602         """ Find results for the search in the database.
603         """
604         t = conn.t.placex
605         tsearch = conn.t.search_name
606
607         sql: SaLambdaSelect = sa.lambda_stmt(lambda:
608                   _select_placex(t).where(t.c.place_id == tsearch.c.place_id))
609
610
611         if details.geometry_output:
612             sql = _add_geometry_columns(sql, t.c.geometry, details)
613
614         penalty: SaExpression = sa.literal(self.penalty)
615         for ranking in self.rankings:
616             penalty += ranking.sql_penalty(tsearch)
617
618         for lookup in self.lookups:
619             sql = sql.where(lookup.sql_condition(tsearch))
620
621         if self.countries:
622             sql = sql.where(tsearch.c.country_code.in_(self.countries.values))
623
624         if self.postcodes:
625             # if a postcode is given, don't search for state or country level objects
626             sql = sql.where(tsearch.c.address_rank > 9)
627             tpc = conn.t.postcode
628             pcs = self.postcodes.values
629             if self.expected_count > 1000:
630                 # Many results expected. Restrict by postcode.
631                 sql = sql.where(sa.select(tpc.c.postcode)
632                                   .where(tpc.c.postcode.in_(pcs))
633                                   .where(tsearch.c.centroid.ST_DWithin(tpc.c.geometry, 0.12))
634                                   .exists())
635
636             # Less results, only have a preference for close postcodes
637             pc_near = sa.select(sa.func.min(tpc.c.geometry.ST_Distance(tsearch.c.centroid)))\
638                       .where(tpc.c.postcode.in_(pcs))\
639                       .scalar_subquery()
640             penalty += sa.case((t.c.postcode.in_(pcs), 0.0),
641                                else_=sa.func.coalesce(pc_near, 2.0))
642
643         if details.viewbox is not None:
644             if details.bounded_viewbox:
645                 if details.viewbox.area < 0.2:
646                     sql = sql.where(tsearch.c.centroid.intersects(VIEWBOX_PARAM))
647                 else:
648                     sql = sql.where(tsearch.c.centroid.ST_Intersects_no_index(VIEWBOX_PARAM))
649             elif self.expected_count >= 10000:
650                 if details.viewbox.area < 0.5:
651                     sql = sql.where(tsearch.c.centroid.intersects(VIEWBOX2_PARAM))
652                 else:
653                     sql = sql.where(tsearch.c.centroid.ST_Intersects_no_index(VIEWBOX2_PARAM))
654             else:
655                 penalty += sa.case((t.c.geometry.intersects(VIEWBOX_PARAM), 0.0),
656                                    (t.c.geometry.intersects(VIEWBOX2_PARAM), 0.5),
657                                    else_=1.0)
658
659         if details.near is not None:
660             if details.near_radius is not None:
661                 if details.near_radius < 0.1:
662                     sql = sql.where(tsearch.c.centroid.ST_DWithin(NEAR_PARAM, NEAR_RADIUS_PARAM))
663                 else:
664                     sql = sql.where(tsearch.c.centroid.ST_DWithin_no_index(NEAR_PARAM,
665                                                                            NEAR_RADIUS_PARAM))
666             sql = sql.add_columns((-tsearch.c.centroid.ST_Distance(NEAR_PARAM))
667                                       .label('importance'))
668             sql = sql.order_by(sa.desc(sa.text('importance')))
669         else:
670             if self.expected_count < 10000\
671                or (details.viewbox is not None and details.viewbox.area < 0.5):
672                 sql = sql.order_by(
673                         penalty - sa.case((tsearch.c.importance > 0, tsearch.c.importance),
674                                     else_=0.75001-(sa.cast(tsearch.c.search_rank, sa.Float())/40)))
675             sql = sql.add_columns(t.c.importance)
676
677
678         sql = sql.add_columns(penalty.label('accuracy'))
679
680         if self.expected_count < 10000:
681             sql = sql.order_by(sa.text('accuracy'))
682
683         if self.housenumbers:
684             hnr_regexp = f"\\m({'|'.join(self.housenumbers.values)})\\M"
685             sql = sql.where(tsearch.c.address_rank.between(16, 30))\
686                      .where(sa.or_(tsearch.c.address_rank < 30,
687                                    t.c.housenumber.op('~*')(hnr_regexp)))
688
689             # Cross check for housenumbers, need to do that on a rather large
690             # set. Worst case there are 40.000 main streets in OSM.
691             inner = sql.limit(10000).subquery()
692
693             # Housenumbers from placex
694             thnr = conn.t.placex.alias('hnr')
695             pid_list = array_agg(thnr.c.place_id) # type: ignore[no-untyped-call]
696             place_sql = sa.select(pid_list)\
697                           .where(thnr.c.parent_place_id == inner.c.place_id)\
698                           .where(thnr.c.housenumber.op('~*')(hnr_regexp))\
699                           .where(thnr.c.linked_place_id == None)\
700                           .where(thnr.c.indexed_status == 0)
701
702             if details.excluded:
703                 place_sql = place_sql.where(thnr.c.place_id.not_in(sa.bindparam('excluded')))
704             if self.qualifiers:
705                 place_sql = place_sql.where(self.qualifiers.sql_restrict(thnr))
706
707             numerals = [int(n) for n in self.housenumbers.values
708                         if n.isdigit() and len(n) < 8]
709             interpol_sql: SaColumn
710             tiger_sql: SaColumn
711             if numerals and \
712                (not self.qualifiers or ('place', 'house') in self.qualifiers.values):
713                 # Housenumbers from interpolations
714                 interpol_sql = _make_interpolation_subquery(conn.t.osmline, inner,
715                                                             numerals, details)
716                 # Housenumbers from Tiger
717                 tiger_sql = sa.case((inner.c.country_code == 'us',
718                                      _make_interpolation_subquery(conn.t.tiger, inner,
719                                                                   numerals, details)
720                                     ), else_=None)
721             else:
722                 interpol_sql = sa.null()
723                 tiger_sql = sa.null()
724
725             unsort = sa.select(inner, place_sql.scalar_subquery().label('placex_hnr'),
726                                interpol_sql.label('interpol_hnr'),
727                                tiger_sql.label('tiger_hnr')).subquery('unsort')
728             sql = sa.select(unsort)\
729                     .order_by(sa.case((unsort.c.placex_hnr != None, 1),
730                                       (unsort.c.interpol_hnr != None, 2),
731                                       (unsort.c.tiger_hnr != None, 3),
732                                       else_=4),
733                               unsort.c.accuracy)
734         else:
735             sql = sql.where(t.c.linked_place_id == None)\
736                      .where(t.c.indexed_status == 0)
737             if self.qualifiers:
738                 sql = sql.where(self.qualifiers.sql_restrict(t))
739             if details.excluded:
740                 sql = sql.where(_exclude_places(tsearch))
741             if details.min_rank > 0:
742                 sql = sql.where(sa.or_(tsearch.c.address_rank >= MIN_RANK_PARAM,
743                                        tsearch.c.search_rank >= MIN_RANK_PARAM))
744             if details.max_rank < 30:
745                 sql = sql.where(sa.or_(tsearch.c.address_rank <= MAX_RANK_PARAM,
746                                        tsearch.c.search_rank <= MAX_RANK_PARAM))
747             if details.layers is not None:
748                 sql = sql.where(_filter_by_layer(t, details.layers))
749
750         sql = sql.limit(LIMIT_PARAM)
751
752         results = nres.SearchResults()
753         for row in await conn.execute(sql, _details_to_bind_params(details)):
754             result = nres.create_from_placex_row(row, nres.SearchResult)
755             assert result
756             result.bbox = Bbox.from_wkb(row.bbox)
757             result.accuracy = row.accuracy
758             if not details.excluded or not result.place_id in details.excluded:
759                 results.append(result)
760
761             if self.housenumbers and row.rank_address < 30:
762                 if row.placex_hnr:
763                     subs = _get_placex_housenumbers(conn, row.placex_hnr, details)
764                 elif row.interpol_hnr:
765                     subs = _get_osmline(conn, row.interpol_hnr, numerals, details)
766                 elif row.tiger_hnr:
767                     subs = _get_tiger(conn, row.tiger_hnr, numerals, row.osm_id, details)
768                 else:
769                     subs = None
770
771                 if subs is not None:
772                     async for sub in subs:
773                         assert sub.housenumber
774                         sub.accuracy = result.accuracy
775                         if not any(nr in self.housenumbers.values
776                                    for nr in sub.housenumber.split(';')):
777                             sub.accuracy += 0.6
778                         results.append(sub)
779
780                 result.accuracy += 1.0 # penalty for missing housenumber
781
782         return results