mirror of
https://github.com/go-gitea/gitea
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fdf750e4d4
* Update blevesearch v0.8.1 -> v1.0.7 * make vendor Co-authored-by: zeripath <art27@cantab.net>
255 lines
6.9 KiB
Go
Vendored
255 lines
6.9 KiB
Go
Vendored
// Copyright (c) 2017 Couchbase, Inc.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package searcher
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import (
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"github.com/blevesearch/bleve/document"
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"github.com/blevesearch/bleve/geo"
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"github.com/blevesearch/bleve/index"
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"github.com/blevesearch/bleve/numeric"
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"github.com/blevesearch/bleve/search"
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)
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type filterFunc func(key []byte) bool
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var GeoBitsShift1 = (geo.GeoBits << 1)
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var GeoBitsShift1Minus1 = GeoBitsShift1 - 1
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func NewGeoBoundingBoxSearcher(indexReader index.IndexReader, minLon, minLat,
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maxLon, maxLat float64, field string, boost float64,
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options search.SearcherOptions, checkBoundaries bool) (
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search.Searcher, error) {
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// track list of opened searchers, for cleanup on early exit
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var openedSearchers []search.Searcher
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cleanupOpenedSearchers := func() {
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for _, s := range openedSearchers {
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_ = s.Close()
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}
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}
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// do math to produce list of terms needed for this search
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onBoundaryTerms, notOnBoundaryTerms, err := ComputeGeoRange(0, GeoBitsShift1Minus1,
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minLon, minLat, maxLon, maxLat, checkBoundaries, indexReader, field)
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if err != nil {
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return nil, err
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}
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var onBoundarySearcher search.Searcher
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dvReader, err := indexReader.DocValueReader([]string{field})
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if err != nil {
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return nil, err
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}
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if len(onBoundaryTerms) > 0 {
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rawOnBoundarySearcher, err := NewMultiTermSearcherBytes(indexReader,
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onBoundaryTerms, field, boost, options, false)
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if err != nil {
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return nil, err
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}
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// add filter to check points near the boundary
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onBoundarySearcher = NewFilteringSearcher(rawOnBoundarySearcher,
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buildRectFilter(dvReader, field, minLon, minLat, maxLon, maxLat))
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openedSearchers = append(openedSearchers, onBoundarySearcher)
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}
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var notOnBoundarySearcher search.Searcher
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if len(notOnBoundaryTerms) > 0 {
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var err error
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notOnBoundarySearcher, err = NewMultiTermSearcherBytes(indexReader,
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notOnBoundaryTerms, field, boost, options, false)
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if err != nil {
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cleanupOpenedSearchers()
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return nil, err
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}
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openedSearchers = append(openedSearchers, notOnBoundarySearcher)
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}
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if onBoundarySearcher != nil && notOnBoundarySearcher != nil {
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rv, err := NewDisjunctionSearcher(indexReader,
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[]search.Searcher{
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onBoundarySearcher,
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notOnBoundarySearcher,
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},
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0, options)
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if err != nil {
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cleanupOpenedSearchers()
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return nil, err
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}
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return rv, nil
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} else if onBoundarySearcher != nil {
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return onBoundarySearcher, nil
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} else if notOnBoundarySearcher != nil {
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return notOnBoundarySearcher, nil
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}
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return NewMatchNoneSearcher(indexReader)
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}
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var geoMaxShift = document.GeoPrecisionStep * 4
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var geoDetailLevel = ((geo.GeoBits << 1) - geoMaxShift) / 2
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func ComputeGeoRange(term uint64, shift uint,
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sminLon, sminLat, smaxLon, smaxLat float64, checkBoundaries bool,
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indexReader index.IndexReader, field string) (
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onBoundary [][]byte, notOnBoundary [][]byte, err error) {
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preallocBytesLen := 32
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preallocBytes := make([]byte, preallocBytesLen)
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makePrefixCoded := func(in int64, shift uint) (rv numeric.PrefixCoded) {
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if len(preallocBytes) <= 0 {
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preallocBytesLen = preallocBytesLen * 2
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preallocBytes = make([]byte, preallocBytesLen)
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}
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rv, preallocBytes, err =
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numeric.NewPrefixCodedInt64Prealloc(in, shift, preallocBytes)
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return rv
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}
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var fieldDict index.FieldDictContains
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var isIndexed filterFunc
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if irr, ok := indexReader.(index.IndexReaderContains); ok {
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fieldDict, err = irr.FieldDictContains(field)
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if err != nil {
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return nil, nil, err
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}
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isIndexed = func(term []byte) bool {
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found, err := fieldDict.Contains(term)
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return err == nil && found
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}
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}
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defer func() {
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if fieldDict != nil {
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if fd, ok := fieldDict.(index.FieldDict); ok {
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cerr := fd.Close()
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if cerr != nil {
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err = cerr
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}
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}
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}
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}()
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if isIndexed == nil {
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isIndexed = func(term []byte) bool {
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if indexReader != nil {
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reader, err := indexReader.TermFieldReader(term, field, false, false, false)
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if err != nil || reader == nil {
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return false
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}
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if reader.Count() == 0 {
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_ = reader.Close()
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return false
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}
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_ = reader.Close()
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}
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return true
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}
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}
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var computeGeoRange func(term uint64, shift uint) // declare for recursion
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relateAndRecurse := func(start, end uint64, res, level uint) {
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minLon := geo.MortonUnhashLon(start)
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minLat := geo.MortonUnhashLat(start)
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maxLon := geo.MortonUnhashLon(end)
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maxLat := geo.MortonUnhashLat(end)
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within := res%document.GeoPrecisionStep == 0 &&
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geo.RectWithin(minLon, minLat, maxLon, maxLat,
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sminLon, sminLat, smaxLon, smaxLat)
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if within || (level == geoDetailLevel &&
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geo.RectIntersects(minLon, minLat, maxLon, maxLat,
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sminLon, sminLat, smaxLon, smaxLat)) {
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codedTerm := makePrefixCoded(int64(start), res)
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if isIndexed(codedTerm) {
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if !within && checkBoundaries {
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onBoundary = append(onBoundary, codedTerm)
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} else {
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notOnBoundary = append(notOnBoundary, codedTerm)
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}
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}
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} else if level < geoDetailLevel &&
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geo.RectIntersects(minLon, minLat, maxLon, maxLat,
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sminLon, sminLat, smaxLon, smaxLat) {
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computeGeoRange(start, res-1)
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}
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}
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computeGeoRange = func(term uint64, shift uint) {
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if err != nil {
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return
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}
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split := term | uint64(0x1)<<shift
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var upperMax uint64
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if shift < 63 {
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upperMax = term | ((uint64(1) << (shift + 1)) - 1)
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} else {
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upperMax = 0xffffffffffffffff
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}
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lowerMax := split - 1
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level := (GeoBitsShift1 - shift) >> 1
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relateAndRecurse(term, lowerMax, shift, level)
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relateAndRecurse(split, upperMax, shift, level)
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}
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computeGeoRange(term, shift)
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if err != nil {
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return nil, nil, err
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}
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return onBoundary, notOnBoundary, err
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}
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func buildRectFilter(dvReader index.DocValueReader, field string,
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minLon, minLat, maxLon, maxLat float64) FilterFunc {
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return func(d *search.DocumentMatch) bool {
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// check geo matches against all numeric type terms indexed
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var lons, lats []float64
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var found bool
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err := dvReader.VisitDocValues(d.IndexInternalID, func(field string, term []byte) {
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// only consider the values which are shifted 0
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prefixCoded := numeric.PrefixCoded(term)
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shift, err := prefixCoded.Shift()
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if err == nil && shift == 0 {
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var i64 int64
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i64, err = prefixCoded.Int64()
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if err == nil {
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lons = append(lons, geo.MortonUnhashLon(uint64(i64)))
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lats = append(lats, geo.MortonUnhashLat(uint64(i64)))
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found = true
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}
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}
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})
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if err == nil && found {
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for i := range lons {
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if geo.BoundingBoxContains(lons[i], lats[i],
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minLon, minLat, maxLon, maxLat) {
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return true
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}
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}
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}
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return false
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}
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}
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