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282 lines
5.1 KiB
282 lines
5.1 KiB
package tsdb
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import (
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"sort"
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"strings"
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)
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type memPostings struct {
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m map[term][]uint32
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}
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type term struct {
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name, value string
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}
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// Postings returns an iterator over the postings list for s.
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func (p *memPostings) get(t term) Postings {
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l := p.m[t]
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if l == nil {
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return emptyPostings
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}
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return &listPostings{list: l, idx: -1}
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}
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// add adds a document to the index. The caller has to ensure that no
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// term argument appears twice.
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func (p *memPostings) add(id uint32, terms ...term) {
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for _, t := range terms {
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// We expect IDs to roughly be appended in order but some concurrency
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// related out of order at the end. We do insertion sort from the end
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// to account for it.
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l := p.m[t]
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i := len(l) - 1
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for ; i >= 0; i-- {
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if id > l[i] {
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break
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}
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}
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l = append(l, 0)
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copy(l[i+2:], l[i+1:])
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l[i+1] = id
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p.m[t] = l
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}
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}
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// Postings provides iterative access over a postings list.
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type Postings interface {
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// Next advances the iterator and returns true if another value was found.
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Next() bool
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// Seek advances the iterator to value v or greater and returns
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// true if a value was found.
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Seek(v uint32) bool
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// At returns the value at the current iterator position.
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At() uint32
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// Err returns the last error of the iterator.
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Err() error
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}
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// errPostings is an empty iterator that always errors.
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type errPostings struct {
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err error
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}
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func (e errPostings) Next() bool { return false }
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func (e errPostings) Seek(uint32) bool { return false }
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func (e errPostings) At() uint32 { return 0 }
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func (e errPostings) Err() error { return e.err }
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func expandPostings(p Postings) (res []uint32, err error) {
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for p.Next() {
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res = append(res, p.At())
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}
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return res, p.Err()
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}
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// Intersect returns a new postings list over the intersection of the
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// input postings.
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func Intersect(its ...Postings) Postings {
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if len(its) == 0 {
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return errPostings{err: nil}
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}
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a := its[0]
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for _, b := range its[1:] {
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a = newIntersectPostings(a, b)
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}
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return a
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}
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var emptyPostings = errPostings{}
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type intersectPostings struct {
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a, b Postings
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aok, bok bool
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cur uint32
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}
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func newIntersectPostings(a, b Postings) *intersectPostings {
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it := &intersectPostings{a: a, b: b}
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it.aok = it.a.Next()
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it.bok = it.b.Next()
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return it
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}
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func (it *intersectPostings) At() uint32 {
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return it.cur
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}
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func (it *intersectPostings) Next() bool {
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for {
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if !it.aok || !it.bok {
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return false
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}
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av, bv := it.a.At(), it.b.At()
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if av < bv {
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it.aok = it.a.Seek(bv)
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} else if bv < av {
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it.bok = it.b.Seek(av)
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} else {
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it.cur = av
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it.aok = it.a.Next()
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it.bok = it.b.Next()
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return true
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}
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}
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}
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func (it *intersectPostings) Seek(id uint32) bool {
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it.aok = it.a.Seek(id)
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it.bok = it.b.Seek(id)
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return it.Next()
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}
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func (it *intersectPostings) Err() error {
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if it.a.Err() != nil {
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return it.a.Err()
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}
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return it.b.Err()
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}
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// Merge returns a new iterator over the union of the input iterators.
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func Merge(its ...Postings) Postings {
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if len(its) == 0 {
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return nil
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}
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a := its[0]
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for _, b := range its[1:] {
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a = newMergePostings(a, b)
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}
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return a
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}
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type mergePostings struct {
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a, b Postings
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aok, bok bool
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cur uint32
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}
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func newMergePostings(a, b Postings) *mergePostings {
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it := &mergePostings{a: a, b: b}
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it.aok = it.a.Next()
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it.bok = it.b.Next()
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return it
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}
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func (it *mergePostings) At() uint32 {
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return it.cur
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}
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func (it *mergePostings) Next() bool {
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if !it.aok && !it.bok {
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return false
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}
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if !it.aok {
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it.cur = it.b.At()
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it.bok = it.b.Next()
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return true
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}
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if !it.bok {
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it.cur = it.a.At()
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it.aok = it.a.Next()
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return true
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}
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acur, bcur := it.a.At(), it.b.At()
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if acur < bcur {
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it.cur = acur
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it.aok = it.a.Next()
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return true
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}
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if bcur < acur {
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it.cur = bcur
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it.bok = it.b.Next()
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return true
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}
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it.cur = acur
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it.aok = it.a.Next()
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it.bok = it.b.Next()
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return true
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}
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func (it *mergePostings) Seek(id uint32) bool {
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it.aok = it.a.Seek(id)
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it.bok = it.b.Seek(id)
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return it.Next()
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}
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func (it *mergePostings) Err() error {
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if it.a.Err() != nil {
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return it.a.Err()
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}
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return it.b.Err()
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}
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// listPostings implements the Postings interface over a plain list.
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type listPostings struct {
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list []uint32
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idx int
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}
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func newListPostings(list []uint32) *listPostings {
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return &listPostings{list: list, idx: -1}
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}
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func (it *listPostings) At() uint32 {
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return it.list[it.idx]
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}
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func (it *listPostings) Next() bool {
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it.idx++
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return it.idx < len(it.list)
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}
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func (it *listPostings) Seek(x uint32) bool {
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// Do binary search between current position and end.
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it.idx += sort.Search(len(it.list)-it.idx, func(i int) bool {
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return it.list[i+it.idx] >= x
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})
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return it.idx < len(it.list)
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}
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func (it *listPostings) Err() error {
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return nil
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}
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type stringset map[string]struct{}
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func (ss stringset) set(s string) {
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ss[s] = struct{}{}
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}
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func (ss stringset) has(s string) bool {
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_, ok := ss[s]
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return ok
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}
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func (ss stringset) String() string {
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return strings.Join(ss.slice(), ",")
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}
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func (ss stringset) slice() []string {
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slice := make([]string, 0, len(ss))
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for k := range ss {
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slice = append(slice, k)
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}
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sort.Strings(slice)
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return slice
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}
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