This commit is contained in:
Barak Michener 2014-08-11 02:54:14 -04:00
parent 664b37b9a6
commit d261e5d870
4 changed files with 998 additions and 0 deletions

176
graph/bolt/all_iterator.go Normal file
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// Copyright 2014 The Cayley Authors. All rights reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package bolt
import (
"bytes"
"fmt"
"strings"
"github.com/google/cayley/graph"
"github.com/google/cayley/graph/iterator"
"github.com/google/cayley/quad"
)
type AllIterator struct {
uid uint64
tags graph.Tagger
prefix []byte
dir quad.Direction
open bool
qs *QuadStore
result graph.Value
}
func NewAllIterator(prefix string, d quad.Direction, ts *QuadStore) *AllIterator {
opts := &opt.ReadOptions{
DontFillCache: true,
}
it := AllIterator{
uid: iterator.NextUID(),
ro: opts,
iter: ts.db.NewIterator(nil, opts),
prefix: []byte(prefix),
dir: d,
open: true,
ts: ts,
}
it.iter.Seek(it.prefix)
if !it.iter.Valid() {
// FIXME(kortschak) What are the semantics here? Is this iterator usable?
// If not, we should return nil *Iterator and an error.
it.open = false
it.iter.Release()
}
return &it
}
func (it *AllIterator) UID() uint64 {
return it.uid
}
func (it *AllIterator) Reset() {
if !it.open {
it.iter = it.ts.db.NewIterator(nil, it.ro)
it.open = true
}
it.iter.Seek(it.prefix)
if !it.iter.Valid() {
it.open = false
it.iter.Release()
}
}
func (it *AllIterator) Tagger() *graph.Tagger {
return &it.tags
}
func (it *AllIterator) TagResults(dst map[string]graph.Value) {
for _, tag := range it.tags.Tags() {
dst[tag] = it.Result()
}
for tag, value := range it.tags.Fixed() {
dst[tag] = value
}
}
func (it *AllIterator) Clone() graph.Iterator {
out := NewAllIterator(string(it.prefix), it.dir, it.ts)
out.tags.CopyFrom(it)
return out
}
func (it *AllIterator) Next() bool {
if !it.open {
it.result = nil
return false
}
var out []byte
out = make([]byte, len(it.iter.Key()))
copy(out, it.iter.Key())
it.iter.Next()
if !it.iter.Valid() {
it.Close()
}
if !bytes.HasPrefix(out, it.prefix) {
it.Close()
return false
}
it.result = Token(out)
return true
}
func (it *AllIterator) ResultTree() *graph.ResultTree {
return graph.NewResultTree(it.Result())
}
func (it *AllIterator) Result() graph.Value {
return it.result
}
func (it *AllIterator) NextPath() bool {
return false
}
// No subiterators.
func (it *AllIterator) SubIterators() []graph.Iterator {
return nil
}
func (it *AllIterator) Contains(v graph.Value) bool {
it.result = v
return true
}
func (it *AllIterator) Close() {
if it.open {
it.iter.Release()
it.open = false
}
}
func (it *AllIterator) Size() (int64, bool) {
size, err := it.ts.SizeOfPrefix(it.prefix)
if err == nil {
return size, false
}
// INT64_MAX
return int64(^uint64(0) >> 1), false
}
func (it *AllIterator) DebugString(indent int) string {
size, _ := it.Size()
return fmt.Sprintf("%s(%s tags: %v leveldb size:%d %s %p)", strings.Repeat(" ", indent), it.Type(), it.tags.Tags(), size, it.dir, it)
}
func (it *AllIterator) Type() graph.Type { return graph.All }
func (it *AllIterator) Sorted() bool { return false }
func (it *AllIterator) Optimize() (graph.Iterator, bool) {
return it, false
}
func (it *AllIterator) Stats() graph.IteratorStats {
s, _ := it.Size()
return graph.IteratorStats{
ContainsCost: 1,
NextCost: 2,
Size: s,
}
}

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// Copyright 2014 The Cayley Authors. All rights reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package bolt
import (
"bytes"
"encoding/json"
"fmt"
"strings"
"github.com/barakmich/glog"
ldbit "github.com/syndtr/goleveldb/leveldb/iterator"
"github.com/syndtr/goleveldb/leveldb/opt"
"github.com/google/cayley/graph"
"github.com/google/cayley/graph/iterator"
"github.com/google/cayley/quad"
)
type Iterator struct {
uid uint64
tags graph.Tagger
nextPrefix []byte
checkId []byte
dir quad.Direction
open bool
iter ldbit.Iterator
qs *QuadStore
ro *opt.ReadOptions
originalPrefix string
result graph.Value
}
func NewIterator(prefix string, d quad.Direction, value graph.Value, qs *QuadStore) graph.Iterator {
vb := value.(Token)
p := make([]byte, 0, 2+qs.hasher.Size())
p = append(p, []byte(prefix)...)
p = append(p, []byte(vb[1:])...)
opts := &opt.ReadOptions{
DontFillCache: true,
}
it := Iterator{
uid: iterator.NextUID(),
nextPrefix: p,
checkId: vb,
dir: d,
originalPrefix: prefix,
ro: opts,
iter: qs.db.NewIterator(nil, opts),
open: true,
qs: qs,
}
ok := it.iter.Seek(it.nextPrefix)
if !ok {
it.open = false
it.iter.Release()
glog.Error("Opening LevelDB iterator couldn't seek to location ", it.nextPrefix)
return &iterator.Null{}
}
return &it
}
func (it *Iterator) UID() uint64 {
return it.uid
}
func (it *Iterator) Reset() {
if !it.open {
it.iter = it.qs.db.NewIterator(nil, it.ro)
it.open = true
}
ok := it.iter.Seek(it.nextPrefix)
if !ok {
it.open = false
it.iter.Release()
}
}
func (it *Iterator) Tagger() *graph.Tagger {
return &it.tags
}
func (it *Iterator) TagResults(dst map[string]graph.Value) {
for _, tag := range it.tags.Tags() {
dst[tag] = it.Result()
}
for tag, value := range it.tags.Fixed() {
dst[tag] = value
}
}
func (it *Iterator) Clone() graph.Iterator {
out := NewIterator(it.originalPrefix, it.dir, Token(it.checkId), it.qs)
out.Tagger().CopyFrom(it)
return out
}
func (it *Iterator) Close() {
if it.open {
it.iter.Release()
it.open = false
}
}
func (it *Iterator) isLiveValue(val []byte) bool {
var entry IndexEntry
json.Unmarshal(val, &entry)
return len(entry.History)%2 != 0
}
func (it *Iterator) Next() bool {
if it.iter == nil {
it.result = nil
return false
}
if !it.open {
it.result = nil
return false
}
if !it.iter.Valid() {
it.result = nil
it.Close()
return false
}
if bytes.HasPrefix(it.iter.Key(), it.nextPrefix) {
if !it.isLiveValue(it.iter.Value()) {
return it.Next()
}
out := make([]byte, len(it.iter.Key()))
copy(out, it.iter.Key())
it.result = Token(out)
ok := it.iter.Next()
if !ok {
it.Close()
}
return true
}
it.Close()
it.result = nil
return false
}
func (it *Iterator) ResultTree() *graph.ResultTree {
return graph.NewResultTree(it.Result())
}
func (it *Iterator) Result() graph.Value {
return it.result
}
func (it *Iterator) NextPath() bool {
return false
}
// No subiterators.
func (it *Iterator) SubIterators() []graph.Iterator {
return nil
}
func PositionOf(prefix []byte, d quad.Direction, qs *QuadStore) int {
if bytes.Equal(prefix, []byte("sp")) {
switch d {
case quad.Subject:
return 2
case quad.Predicate:
return qs.hasher.Size() + 2
case quad.Object:
return 2*qs.hasher.Size() + 2
case quad.Label:
return 3*qs.hasher.Size() + 2
}
}
if bytes.Equal(prefix, []byte("po")) {
switch d {
case quad.Subject:
return 2*qs.hasher.Size() + 2
case quad.Predicate:
return 2
case quad.Object:
return qs.hasher.Size() + 2
case quad.Label:
return 3*qs.hasher.Size() + 2
}
}
if bytes.Equal(prefix, []byte("os")) {
switch d {
case quad.Subject:
return qs.hasher.Size() + 2
case quad.Predicate:
return 2*qs.hasher.Size() + 2
case quad.Object:
return 2
case quad.Label:
return 3*qs.hasher.Size() + 2
}
}
if bytes.Equal(prefix, []byte("cp")) {
switch d {
case quad.Subject:
return 2*qs.hasher.Size() + 2
case quad.Predicate:
return qs.hasher.Size() + 2
case quad.Object:
return 3*qs.hasher.Size() + 2
case quad.Label:
return 2
}
}
panic("unreachable")
}
func (it *Iterator) Contains(v graph.Value) bool {
val := v.(Token)
if val[0] == 'z' {
return false
}
offset := PositionOf(val[0:2], it.dir, it.qs)
if bytes.HasPrefix(val[offset:], it.checkId[1:]) {
// You may ask, why don't we check to see if it's a valid (not deleted) triple
// again?
//
// We've already done that -- in order to get the graph.Value token in the
// first place, we had to have done the check already; it came from a Next().
//
// However, if it ever starts coming from somewhere else, it'll be more
// efficient to change the interface of the graph.Value for LevelDB to a
// struct with a flag for isValid, to save another random read.
return true
}
return false
}
func (it *Iterator) Size() (int64, bool) {
return it.qs.SizeOf(Token(it.checkId)), true
}
func (it *Iterator) DebugString(indent int) string {
size, _ := it.Size()
return fmt.Sprintf("%s(%s %d tags: %v dir: %s size:%d %s)",
strings.Repeat(" ", indent),
it.Type(),
it.UID(),
it.tags.Tags(),
it.dir,
size,
it.qs.NameOf(Token(it.checkId)),
)
}
var levelDBType graph.Type
func init() {
levelDBType = graph.RegisterIterator("leveldb")
}
func Type() graph.Type { return levelDBType }
func (it *Iterator) Type() graph.Type { return levelDBType }
func (it *Iterator) Sorted() bool { return false }
func (it *Iterator) Optimize() (graph.Iterator, bool) {
return it, false
}
func (it *Iterator) Stats() graph.IteratorStats {
s, _ := it.Size()
return graph.IteratorStats{
ContainsCost: 1,
NextCost: 2,
Size: s,
}
}

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// Copyright 2014 The Cayley Authors. All rights reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package bolt
import (
"bytes"
"crypto/sha1"
"encoding/binary"
"encoding/json"
"fmt"
"hash"
"github.com/barakmich/glog"
"github.com/boltdb/bolt"
"github.com/google/cayley/graph"
"github.com/google/cayley/graph/iterator"
"github.com/google/cayley/quad"
)
func init() {
graph.RegisterTripleStore("bolt", true, newQuadStore, createNewLevelDB)
}
type Token struct {
bucket []byte
key []byte
}
func (t *Token) Key() interface{} {
return fmt.Sprint(t.bucket, t.data)
}
type QuadStore struct {
db *bolt.DB
path string
open bool
size int64
horizon int64
hasher hash.Hash
}
func createNewBolt(path string, _ graph.Options) error {
opts := &opt.Options{}
db, err := bolt.Open(path, 0600, nil)
if err != nil {
glog.Errorf("Error: couldn't create Bolt database: %v", err)
return err
}
defer db.Close()
qs := &QuadStore{}
qs.db = db
qs.writeopts = &opt.WriteOptions{
Sync: true,
}
err = qs.createBuckets()
if err != nil {
return err
}
qs.Close()
return nil
}
func newQuadStore(path string, options graph.Options) (graph.TripleStore, error) {
var qs QuadStore
var err error
qs.hasher = sha1.New()
db, err := bolt.Open(path, 0600, nil)
if err != nil {
glog.Errorln("Error, couldn't open! ", err)
return nil, err
}
qs.db = db
err = qs.getMetadata()
if err != nil {
return nil, err
}
return &qs, nil
}
func (qs *QuadStore) createBuckets() error {
return db.Update(func(tx *bolt.Tx) error {
var err error
for _, bucket := range [][]byte{spo, osp, pos, cps} {
_, err = tx.CreateBucket(bucketFor(bucket))
if err != nil {
return fmt.Errorf("Couldn't create bucket: %s", err)
}
}
_, err = tx.CreateBucket(logBucket)
if err != nil {
return fmt.Errorf("Couldn't create bucket: %s", err)
}
_, err = tx.CreateBucket(nodeBucket)
if err != nil {
return fmt.Errorf("Couldn't create bucket: %s", err)
}
_, err = tx.CreateBucket(metaBucket)
if err != nil {
return fmt.Errorf("Couldn't create bucket: %s", err)
}
})
}
func (qs *QuadStore) Size() int64 {
return qs.size
}
func (qs *QuadStore) Horizon() int64 {
return qs.horizon
}
func (qa *QuadStore) createDeltaKeyFor(d *graph.Delta) []byte {
return []byte(fmt.Sprintf("%018x", d.ID))
}
func bucketFor(d [4]quad.Direction) []byte {
return []byte{d[0].Prefix(), d[1].Prefix(), d[2].Prefix(), d[3].Prefix()}
}
func (qs *QuadStore) createKeyFor(d [4]quad.Direction, triple quad.Quad) []byte {
key := make([]byte, 0, (qs.hasher.Size() * 4))
key = append(key, qs.convertStringToByteHash(triple.Get(d[0]))...)
key = append(key, qs.convertStringToByteHash(triple.Get(d[1]))...)
key = append(key, qs.convertStringToByteHash(triple.Get(d[2]))...)
key = append(key, qs.convertStringToByteHash(triple.Get(d[3]))...)
return key
}
func (qs *QuadStore) createValueKeyFor(s string) []byte {
key := make([]byte, 0, qs.hasher.Size())
key = append(key, qs.convertStringToByteHash(s)...)
return key
}
type IndexEntry struct {
quad.Quad
History []int64
}
// Short hand for direction permutations.
var (
spo = bucketFor([4]quad.Direction{quad.Subject, quad.Predicate, quad.Object, quad.Label})
osp = bucketFor([4]quad.Direction{quad.Object, quad.Subject, quad.Predicate, quad.Label})
pos = bucketFor([4]quad.Direction{quad.Predicate, quad.Object, quad.Subject, quad.Label})
cps = bucketFor([4]quad.Direction{quad.Label, quad.Predicate, quad.Subject, quad.Object})
)
var logBucket = []byte("log")
var nodeBucket = []byte("node")
var metaBucket = []byte("meta")
func (qs *QuadStore) ApplyDeltas(deltas []*graph.Delta) error {
batch := &leveldb.Batch{}
var size_change int64
var new_horizon int64
err := qs.db.Update(func(tx *bolt.Tx) error {
var b *bolt.Bucket
var err error
resizeMap := make(map[string]int64)
size_change = int64(0)
for _, d := range deltas {
bytes, err := json.Marshal(d)
if err != nil {
return err
}
b = tx.Bucket(logBucket)
err = b.Put(qs.createDeltaKeyFor(d), bytes)
if err != nil {
return err
}
err = qs.buildQuadWrite(tx, d.Quad, d.ID, d.Action == graph.Add)
if err != nil {
return err
}
delta := int64(1)
if d.Action == graph.Delete {
delta = int64(-1)
}
resizeMap[d.Quad.Subject] += delta
resizeMap[d.Quad.Predicate] += delta
resizeMap[d.Quad.Object] += delta
if d.Quad.Label != "" {
resizeMap[d.Quad.Label] += delta
}
size_change += delta
new_horizon = d.ID
}
for k, v := range resizeMap {
if v != 0 {
err := qs.UpdateValueKeyBy(k, v, tx)
if err != nil {
return err
}
}
}
return nil
})
if err != nil {
glog.Error("Couldn't write to DB for Delta set. Error: ", err)
return err
}
qs.size += size_change
qs.horizon = new_horizon
return nil
}
func (qs *QuadStore) buildQuadWrite(tx *bolt.Tx, q quad.Quad, id int64, isAdd bool) error {
var entry IndexEntry
b := tx.Bucket(bucketFor(spo))
data := b.Get(qs.createKeyFor(spo, q))
if data != nil {
// We got something.
err = json.Unmarshal(data, &entry)
if err != nil {
return err
}
} else {
entry.Quad = q
}
if isAdd && len(entry.History)%2 == 1 {
glog.Error("Adding a valid triple ", entry)
return graph.ErrQuadExists
}
if !isAdd && len(entry.History)%2 == 0 {
glog.Error("Deleting an invalid triple ", entry)
return graph.ErrQuadNotExist
}
entry.History = append(entry.History, id)
bytes, err := json.Marshal(entry)
if err != nil {
glog.Errorf("Couldn't write to buffer for entry %#v: %s", entry, err)
return err
}
for _, bucket := range [][4]quad.Direction{spo, osp, pos, cps} {
if bucket == cps && q.Get(quad.Label) == "" {
continue
}
b := tx.Bucket(bucketFor(bucket))
err = b.Put(qs.createKeyFor(bucket, q), bytes)
if err != nil {
return err
}
}
return nil
}
type ValueData struct {
Name string
Size int64
}
func (qs *QuadStore) UpdateValueKeyBy(name string, amount int64, tx *bolt.Tx) error {
value := &ValueData{name, amount}
b := tx.Bucket(nodeBucket)
key := qs.createValueKeyFor(name)
data := b.Get(key)
if data != nil {
// Node exists in the database -- unmarshal and update.
err = json.Unmarshal(b, value)
if err != nil {
glog.Errorf("Error: couldn't reconstruct value: %v", err)
return err
}
value.Size += amount
}
// Are we deleting something?
if value.Size <= 0 {
value.Size = 0
}
// Repackage and rewrite.
bytes, err := json.Marshal(&value)
if err != nil {
glog.Errorf("Couldn't write to buffer for value %s: %s", name, err)
return err
}
err = b.Put(key, bytes)
return err
}
func (qs *QuadStore) Close() {
qs.db.Update(func(tx *bolt.Tx) error {
buf := new(bytes.Buffer)
err := binary.Write(buf, binary.LittleEndian, qs.size)
if err == nil {
b := tx.Bucket(metaBucket)
werr := b.Put([]byte("size"), buf.Bytes())
if werr != nil {
glog.Error("Couldn't write size before closing!")
return werr
}
} else {
glog.Errorf("Couldn't convert size before closing!")
return err
}
buf.Reset()
err = binary.Write(buf, binary.LittleEndian, qs.horizon)
if err == nil {
b := tx.Bucket(metaBucket)
werr := b.Put([]byte("horizon"), buf.Bytes())
if werr != nil {
glog.Error("Couldn't write horizon before closing!")
return werr
}
} else {
glog.Errorf("Couldn't convert horizon before closing!")
}
return err
})
qs.db.Close()
qs.open = false
}
func (qs *QuadStore) Quad(k graph.Value) quad.Quad {
var q quad.Quad
tok := k.(*Token)
err := qs.db.View(func(tx *bolt.Tx) error {
b := tx.Bucket(tok.bucket)
data := qs.db.Get(tok.key, qs.readopts)
if data == nil {
// No harm, no foul.
return nil
}
err = json.Unmarshal(data, &q)
return err
})
if err != nil {
glog.Error("Error getting triple: ", err)
return quad.Quad{}
}
return q
}
func (qs *QuadStore) convertStringToByteHash(s string) []byte {
qs.hasher.Reset()
key := make([]byte, 0, qs.hasher.Size())
qs.hasher.Write([]byte(s))
key = qs.hasher.Sum(key)
return key
}
func (qs *QuadStore) ValueOf(s string) graph.Value {
return &Token{
bucket: nodeBucket,
key: qs.createValueKeyFor(s),
}
}
func (qs *QuadStore) valueData(t *Token) ValueData {
var out ValueData
if glog.V(3) {
glog.V(3).Infof("%s %v", string(t.bucket), t.key)
}
err := qs.db.View(func(tx *bolt.Tx) error {
b := tx.Bucket(t.bucket)
data := b.Get(t.key)
if data != nil {
return json.Unmarshal(data, &out)
}
return nil
})
if err != nil {
glog.Errorln("Error: couldn't get value")
return ValueData{}
}
return out
}
func (qs *QuadStore) NameOf(k graph.Value) string {
if k == nil {
glog.V(2).Info("k was nil")
return ""
}
return qs.valueData(k.(*Token)).Name
}
func (qs *QuadStore) SizeOf(k graph.Value) int64 {
if k == nil {
return 0
}
return int64(qs.valueData(k.(*Token)).Size)
}
func (qs *QuadStore) getInt64ForKey(tx *bolt.Tx, key string, empty int64) (int64, error) {
var out int64
b := tx.Bucket(metaBucket)
data := b.Get([]byte(key))
if data == nil {
return empty, nil
}
buf := bytes.NewBuffer(data)
err = binary.Read(buf, binary.LittleEndian, &out)
if err != nil {
return 0, err
}
return out, nil
}
func (qs *QuadStore) getMetadata() error {
err := qs.db.View(func(tx *bolt.Tx) error {
var err error
qs.size, err = qs.getInt64ForKey("size", 0)
if err != nil {
return err
}
qs.horizon, err = qs.getInt64ForKey("horizon", 0)
return err
})
return err
}
func (qs *QuadStore) TripleIterator(d quad.Direction, val graph.Value) graph.Iterator {
var prefix []byte
switch d {
case quad.Subject:
prefix = spo
case quad.Predicate:
prefix = pos
case quad.Object:
prefix = osp
case quad.Label:
prefix = cps
default:
panic("unreachable " + d.String())
}
return NewIterator(prefix, d, val, qs)
}
func (qs *QuadStore) NodesAllIterator() graph.Iterator {
return NewAllIterator(nodeBucket, quad.Any, qs)
}
func (qs *QuadStore) TriplesAllIterator() graph.Iterator {
return NewAllIterator(pos, quad.Predicate, qs)
}
func (qs *QuadStore) TripleDirection(val graph.Value, d quad.Direction) graph.Value {
v := val.(*Token)
offset := PositionOf(v, d, qs)
if offset != -1 {
return &Token{
bucket: nodeBucket,
key: v[offset : offset+qs.hasher.Size()],
}
} else {
return qs.ValueOf(qs.Quad(v).Get(d))
}
}
func compareTokens(a, b graph.Value) bool {
atok := a.(*Token)
btok := b.(*Token)
return bytes.Equal(atok.key, btok.key) && atok.bucket == btok.bucket
}
func (qs *QuadStore) FixedIterator() graph.FixedIterator {
return iterator.NewFixedIteratorWithCompare(compareTokens)
}

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// Copyright 2014 The Cayley Authors. All rights reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package bolt
import (
"github.com/google/cayley/graph"
"github.com/google/cayley/graph/iterator"
)
func (ts *QuadStore) OptimizeIterator(it graph.Iterator) (graph.Iterator, bool) {
switch it.Type() {
case graph.LinksTo:
return ts.optimizeLinksTo(it.(*iterator.LinksTo))
}
return it, false
}
func (ts *QuadStore) optimizeLinksTo(it *iterator.LinksTo) (graph.Iterator, bool) {
subs := it.SubIterators()
if len(subs) != 1 {
return it, false
}
primary := subs[0]
if primary.Type() == graph.Fixed {
size, _ := primary.Size()
if size == 1 {
if !graph.Next(primary) {
panic("unexpected size during optimize")
}
val := primary.Result()
newIt := ts.TripleIterator(it.Direction(), val)
nt := newIt.Tagger()
nt.CopyFrom(it)
for _, tag := range primary.Tagger().Tags() {
nt.AddFixed(tag, val)
}
it.Close()
return newIt, true
}
}
return it, false
}