mirror of
https://github.com/featurebasedb/featurebase.git
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try to fix yml syntax same same same same2 same3 same4 same5 try with shell runner instead of dind remove lattice from dockerfile change path to bin runs after linux arm64 build change dockerfile path same same add dir better test coverage
639 lines
17 KiB
Go
639 lines
17 KiB
Go
// Copyright 2017 Pilosa Corp.
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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 pilosa
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import (
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"context"
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"fmt"
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"math/rand"
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"reflect"
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"strings"
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"testing"
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"testing/quick"
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"time"
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"github.com/davecgh/go-spew/spew"
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pnet "github.com/molecula/featurebase/v2/net"
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"github.com/molecula/featurebase/v2/roaring"
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"github.com/molecula/featurebase/v2/testhook"
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"github.com/molecula/featurebase/v2/topology"
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. "github.com/molecula/featurebase/v2/vprint" // nolint:staticcheck
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)
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// Ensure that fragCombos creates the correct fragment mapping.
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func TestFragCombos(t *testing.T) {
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uri0, err := pnet.NewURIFromAddress("host0")
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if err != nil {
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t.Fatal(err)
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}
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uri1, err := pnet.NewURIFromAddress("host1")
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if err != nil {
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t.Fatal(err)
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}
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node0 := &topology.Node{ID: "node0", URI: *uri0}
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node1 := &topology.Node{ID: "node1", URI: *uri1}
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c := newCluster()
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c.addNodeBasicSorted(node0)
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c.addNodeBasicSorted(node1)
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tests := []struct {
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idx string
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availableShards *roaring.Bitmap
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fieldViews viewsByField
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expected fragsByHost
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}{
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{
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idx: "i",
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availableShards: roaring.NewBitmap(0, 1, 2),
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fieldViews: viewsByField{"f": []string{"v1", "v2"}},
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expected: fragsByHost{
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"node0": []frag{{"f", "v1", uint64(0)}, {"f", "v2", uint64(0)}},
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"node1": []frag{{"f", "v1", uint64(1)}, {"f", "v2", uint64(1)}, {"f", "v1", uint64(2)}, {"f", "v2", uint64(2)}},
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},
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},
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{
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idx: "foo",
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availableShards: roaring.NewBitmap(0, 1, 2, 3),
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fieldViews: viewsByField{"f": []string{"v0"}},
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expected: fragsByHost{
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"node0": []frag{{"f", "v0", uint64(1)}, {"f", "v0", uint64(2)}},
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"node1": []frag{{"f", "v0", uint64(0)}, {"f", "v0", uint64(3)}},
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},
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},
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}
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for _, test := range tests {
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actual := c.fragCombos(test.idx, test.availableShards, test.fieldViews)
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if !reflect.DeepEqual(actual, test.expected) {
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t.Errorf("expected: %v, but got: %v", test.expected, actual)
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}
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}
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}
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// newHolderWithTempPath returns a new instance of Holder.
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func newHolderWithTempPath(tb testing.TB, backend string) *Holder {
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path, err := testhook.TempDirInDir(tb, *TempDir, "pilosa-holder-")
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if err != nil {
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panic(err)
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}
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cfg := mustHolderConfig()
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cfg.StorageConfig.Backend = backend
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h := NewHolder(path, cfg)
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PanicOn(h.Open())
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testhook.Cleanup(tb, func() {
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h.Close()
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})
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return h
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}
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// newIndexWithTempPath returns a new instance of Index.
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func newIndexWithTempPath(tb testing.TB, name string) *Index {
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path, err := testhook.TempDirInDir(tb, *TempDir, "pilosa-index-")
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if err != nil {
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panic(err)
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}
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cfg := DefaultHolderConfig()
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cfg.StorageConfig.FsyncEnabled = false
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cfg.RBFConfig.FsyncEnabled = false
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h := NewHolder(path, cfg)
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PanicOn(h.Open())
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index, err := h.CreateIndex(name, IndexOptions{})
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testhook.Cleanup(tb, func() {
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h.Close()
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})
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if err != nil {
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panic(err)
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}
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return index
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}
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// Ensure that fragSources creates the correct fragment mapping.
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func TestFragSources(t *testing.T) {
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uri0, err := pnet.NewURIFromAddress("host0")
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if err != nil {
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t.Fatal(err)
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}
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uri1, err := pnet.NewURIFromAddress("host1")
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if err != nil {
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t.Fatal(err)
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}
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uri2, err := pnet.NewURIFromAddress("host2")
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if err != nil {
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t.Fatal(err)
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}
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uri3, err := pnet.NewURIFromAddress("host3")
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if err != nil {
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t.Fatal(err)
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}
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node0 := &topology.Node{ID: "node0", URI: *uri0}
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node1 := &topology.Node{ID: "node1", URI: *uri1}
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node2 := &topology.Node{ID: "node2", URI: *uri2}
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node3 := &topology.Node{ID: "node3", URI: *uri3}
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c1 := newCluster()
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c1.ReplicaN = 1
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c1.addNodeBasicSorted(node0)
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c1.addNodeBasicSorted(node1)
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c2 := newCluster()
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c2.ReplicaN = 1
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c2.addNodeBasicSorted(node0)
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c2.addNodeBasicSorted(node1)
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c2.addNodeBasicSorted(node2)
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c3 := newCluster()
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c3.ReplicaN = 2
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c3.addNodeBasicSorted(node0)
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c3.addNodeBasicSorted(node1)
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c4 := newCluster()
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c4.ReplicaN = 2
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c4.addNodeBasicSorted(node0)
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c4.addNodeBasicSorted(node1)
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c4.addNodeBasicSorted(node2)
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c5 := newCluster()
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c5.ReplicaN = 2
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c5.addNodeBasicSorted(node0)
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c5.addNodeBasicSorted(node1)
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c5.addNodeBasicSorted(node2)
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c5.addNodeBasicSorted(node3)
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idx := newIndexWithTempPath(t, "i")
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defer idx.Close()
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field, err := idx.CreateFieldIfNotExists("f", OptFieldTypeDefault())
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if err != nil {
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t.Fatal(err)
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}
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// Obtain transaction.
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var shard uint64
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tx := idx.holder.txf.NewTx(Txo{Write: writable, Index: idx, Shard: shard})
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defer tx.Rollback()
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_, err = field.SetBit(tx, 1, 101, nil)
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if err != nil {
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t.Fatal(err)
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}
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PanicOn(tx.Commit())
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shard = 1
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tx = idx.holder.txf.NewTx(Txo{Write: writable, Index: idx, Shard: shard})
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defer tx.Rollback()
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_, err = field.SetBit(tx, 1, ShardWidth*shard+1, nil)
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if err != nil {
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t.Fatal(err)
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}
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PanicOn(tx.Commit())
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shard = 2
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tx = idx.holder.txf.NewTx(Txo{Write: writable, Index: idx, Shard: shard})
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defer tx.Rollback()
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_, err = field.SetBit(tx, 1, ShardWidth*shard+1, nil)
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if err != nil {
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t.Fatal(err)
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}
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PanicOn(tx.Commit())
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shard = 3
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tx = idx.holder.txf.NewTx(Txo{Write: writable, Index: idx, Shard: shard})
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defer tx.Rollback()
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_, err = field.SetBit(tx, 1, ShardWidth*shard+1, nil)
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if err != nil {
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t.Fatal(err)
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}
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PanicOn(tx.Commit())
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tests := []struct {
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from *cluster
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to *cluster
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idx *Index
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expected map[string][]*ResizeSource
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err string
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}{
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{
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from: c1,
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to: c2,
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idx: idx,
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expected: map[string][]*ResizeSource{
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"node0": {},
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"node1": {},
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"node2": {
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{&topology.Node{ID: "node0", URI: pnet.URI{Scheme: "http", Host: "host0", Port: 10101}, IsPrimary: false}, "i", "f", "standard", uint64(0)},
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{&topology.Node{ID: "node1", URI: pnet.URI{Scheme: "http", Host: "host1", Port: 10101}, IsPrimary: false}, "i", "f", "standard", uint64(2)},
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},
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},
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err: "",
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},
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{
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from: c4,
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to: c3,
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idx: idx,
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expected: map[string][]*ResizeSource{
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"node0": {
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{&topology.Node{ID: "node1", URI: pnet.URI{Scheme: "http", Host: "host1", Port: 10101}, IsPrimary: false}, "i", "f", "standard", uint64(1)},
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},
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"node1": {
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{&topology.Node{ID: "node0", URI: pnet.URI{Scheme: "http", Host: "host0", Port: 10101}, IsPrimary: false}, "i", "f", "standard", uint64(0)},
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{&topology.Node{ID: "node0", URI: pnet.URI{Scheme: "http", Host: "host0", Port: 10101}, IsPrimary: false}, "i", "f", "standard", uint64(2)},
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},
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},
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err: "",
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},
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{
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from: c5,
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to: c4,
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idx: idx,
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expected: map[string][]*ResizeSource{
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"node0": {
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{&topology.Node{ID: "node2", URI: pnet.URI{Scheme: "http", Host: "host2", Port: 10101}, IsPrimary: false}, "i", "f", "standard", uint64(0)},
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{&topology.Node{ID: "node2", URI: pnet.URI{Scheme: "http", Host: "host2", Port: 10101}, IsPrimary: false}, "i", "f", "standard", uint64(2)},
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},
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"node1": {
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{&topology.Node{ID: "node0", URI: pnet.URI{Scheme: "http", Host: "host0", Port: 10101}, IsPrimary: false}, "i", "f", "standard", uint64(3)},
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},
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"node2": {},
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},
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err: "",
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},
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{
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from: c2,
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to: c4,
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idx: idx,
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expected: nil,
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err: "clusters are the same size",
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},
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{
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from: c1,
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to: c5,
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idx: idx,
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expected: nil,
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err: "adding more than one node at a time is not supported",
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},
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{
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from: c5,
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to: c1,
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idx: idx,
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expected: nil,
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err: "removing more than one node at a time is not supported",
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},
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}
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for _, test := range tests {
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actual, err := (test.from).fragSources(test.to, test.idx)
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if test.err != "" {
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if !strings.Contains(err.Error(), test.err) {
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t.Fatalf("expected error: %s, got: %s", test.err, err.Error())
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}
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} else {
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if err != nil {
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t.Fatal(err)
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}
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if !reflect.DeepEqual(actual, test.expected) {
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t.Errorf("expected: %v, but got: %v", test.expected, actual)
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}
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}
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}
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}
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// Ensure that fragSources creates the correct fragment mapping.
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func TestResizeJob(t *testing.T) {
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uri0, err := pnet.NewURIFromAddress("host0")
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if err != nil {
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t.Fatal(err)
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}
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uri1, err := pnet.NewURIFromAddress("host1")
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if err != nil {
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t.Fatal(err)
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}
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uri2, err := pnet.NewURIFromAddress("host2")
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if err != nil {
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t.Fatal(err)
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}
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node0 := &topology.Node{ID: "node0", URI: *uri0}
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node1 := &topology.Node{ID: "node1", URI: *uri1}
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node2 := &topology.Node{ID: "node2", URI: *uri2}
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tests := []struct {
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existingNodes []*topology.Node
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node *topology.Node
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action string
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expectedIDs map[string]bool
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}{
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{
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existingNodes: []*topology.Node{node0, node1},
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node: node2,
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action: resizeJobActionAdd,
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expectedIDs: map[string]bool{node0.ID: false, node1.ID: false, node2.ID: false},
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},
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{
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existingNodes: []*topology.Node{node0, node1, node2},
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node: node2,
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action: resizeJobActionRemove,
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expectedIDs: map[string]bool{node0.ID: false, node1.ID: false},
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},
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}
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for _, test := range tests {
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actual := newResizeJob(test.existingNodes, test.node, test.action)
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if err != nil {
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t.Fatal(err)
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}
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if !reflect.DeepEqual(actual.IDs, test.expectedIDs) {
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t.Errorf("expected: %v, but got: %v", test.expectedIDs, actual.IDs)
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}
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}
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}
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// Ensure the cluster can fairly distribute partitions across the nodes.
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func TestCluster_Owners(t *testing.T) {
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c := cluster{
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noder: topology.NewLocalNoder([]*topology.Node{
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{URI: NewTestURIFromHostPort("serverA", 1000)},
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{URI: NewTestURIFromHostPort("serverB", 1000)},
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{URI: NewTestURIFromHostPort("serverC", 1000)},
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}),
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Hasher: NewTestModHasher(),
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ReplicaN: 2,
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}
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cNodes := c.noder.Nodes()
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// Create a snapshot of the cluster to use for node/partition calculations.
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snap := topology.NewClusterSnapshot(c.noder, c.Hasher, c.ReplicaN)
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// Verify nodes are distributed.
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if a := snap.PartitionNodes(0); !reflect.DeepEqual(a, []*topology.Node{cNodes[0], cNodes[1]}) {
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t.Fatalf("unexpected owners: %s", spew.Sdump(a))
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}
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// Verify nodes go around the ring.
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if a := snap.PartitionNodes(2); !reflect.DeepEqual(a, []*topology.Node{cNodes[2], cNodes[0]}) {
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t.Fatalf("unexpected owners: %s", spew.Sdump(a))
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}
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}
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// Ensure the partitioner can assign a fragment to a partition.
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func TestCluster_Partition(t *testing.T) {
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if err := quick.Check(func(index string, shard uint64, partitionN int) bool {
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c := newCluster()
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c.partitionN = partitionN
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partitionID := topology.ShardToShardPartition(index, shard, partitionN)
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if partitionID < 0 || partitionID >= partitionN {
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t.Errorf("partition out of range: shard=%d, p=%d, n=%d", shard, partitionID, partitionN)
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}
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return true
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}, &quick.Config{
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Values: func(values []reflect.Value, rand *rand.Rand) {
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values[0], _ = quick.Value(reflect.TypeOf(""), rand)
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values[1] = reflect.ValueOf(uint64(rand.Uint32()))
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values[2] = reflect.ValueOf(rand.Intn(1000) + 1)
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},
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}); err != nil {
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t.Fatal(err)
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}
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}
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// Ensure the hasher can hash correctly.
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func TestHasher(t *testing.T) {
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for _, tt := range []struct {
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key uint64
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bucket []int
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}{
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// Generated from the reference C++ code
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{0, []int{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}},
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{1, []int{0, 0, 0, 0, 0, 0, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 6, 17, 17}},
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{0xdeadbeef, []int{0, 1, 2, 3, 3, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 5, 16, 16, 16}},
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{0x0ddc0ffeebadf00d, []int{0, 1, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 15, 15, 15, 15}},
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} {
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for i, v := range tt.bucket {
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hasher := &topology.Jmphasher{}
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if got := hasher.Hash(tt.key, i+1); got != v {
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t.Errorf("hash(%v,%v)=%v, want %v", tt.key, i+1, got, v)
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}
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}
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}
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}
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// Ensure ContainsShards can find the actual shard list for node and index.
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func TestCluster_ContainsShards(t *testing.T) {
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c := NewTestCluster(t, 5)
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c.ReplicaN = 3
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cNodes := c.noder.Nodes()
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// Create a snapshot of the cluster to use for node/partition calculations.
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snap := topology.NewClusterSnapshot(c.noder, c.Hasher, c.ReplicaN)
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shards := snap.ContainsShards("test", roaring.NewBitmap(0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10), cNodes[2])
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if !reflect.DeepEqual(shards, []uint64{0, 2, 3, 5, 6, 9, 10}) {
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t.Fatalf("unexpected shars for node's index: %v", shards)
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}
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}
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func TestCluster_Nodes(t *testing.T) {
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const urisCount = 4
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var uris []pnet.URI
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arbitraryPorts := []int{17384, 17385, 17386, 17387}
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for i := 0; i < urisCount; i++ {
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uris = append(uris, NewTestURIFromHostPort(fmt.Sprintf("node%d", i), uint16(arbitraryPorts[i])))
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}
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node0 := &topology.Node{ID: "node0", URI: uris[0]}
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node1 := &topology.Node{ID: "node1", URI: uris[1]}
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node2 := &topology.Node{ID: "node2", URI: uris[2]}
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node3 := &topology.Node{ID: "node3", URI: uris[3]}
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nodes := []*topology.Node{node0, node1, node2}
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t.Run("NodeIDs", func(t *testing.T) {
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actual := topology.Nodes(nodes).IDs()
|
|
expected := []string{node0.ID, node1.ID, node2.ID}
|
|
if !reflect.DeepEqual(actual, expected) {
|
|
t.Errorf("expected: %v, but got: %v", expected, actual)
|
|
}
|
|
})
|
|
|
|
t.Run("Filter", func(t *testing.T) {
|
|
actual := topology.Nodes(topology.Nodes(nodes).Filter(nodes[1])).URIs()
|
|
expected := []pnet.URI{uris[0], uris[2]}
|
|
if !reflect.DeepEqual(actual, expected) {
|
|
t.Errorf("expected: %v, but got: %v", expected, actual)
|
|
}
|
|
})
|
|
|
|
t.Run("FilterURI", func(t *testing.T) {
|
|
actual := topology.Nodes(topology.Nodes(nodes).FilterURI(uris[1])).URIs()
|
|
expected := []pnet.URI{uris[0], uris[2]}
|
|
if !reflect.DeepEqual(actual, expected) {
|
|
t.Errorf("expected: %v, but got: %v", expected, actual)
|
|
}
|
|
})
|
|
|
|
t.Run("Contains", func(t *testing.T) {
|
|
actualTrue := topology.Nodes(nodes).Contains(node1)
|
|
actualFalse := topology.Nodes(nodes).Contains(node3)
|
|
if !reflect.DeepEqual(actualTrue, true) {
|
|
t.Errorf("expected: %v, but got: %v", true, actualTrue)
|
|
}
|
|
if !reflect.DeepEqual(actualFalse, false) {
|
|
t.Errorf("expected: %v, but got: %v", false, actualTrue)
|
|
}
|
|
})
|
|
|
|
t.Run("Clone", func(t *testing.T) {
|
|
clone := topology.Nodes(nodes).Clone()
|
|
actual := topology.Nodes(clone).URIs()
|
|
expected := []pnet.URI{uris[0], uris[1], uris[2]}
|
|
if !reflect.DeepEqual(actual, expected) {
|
|
t.Errorf("expected: %v, but got: %v", expected, actual)
|
|
}
|
|
})
|
|
}
|
|
|
|
func TestCluster_PreviousNode(t *testing.T) {
|
|
node0 := &topology.Node{ID: "node0"}
|
|
node1 := &topology.Node{ID: "node1"}
|
|
node2 := &topology.Node{ID: "node2"}
|
|
|
|
t.Run("OneNode", func(t *testing.T) {
|
|
c := newCluster()
|
|
c.addNodeBasicSorted(node0)
|
|
|
|
c.Node = node0
|
|
if prev := c.unprotectedPreviousNode(); prev != nil {
|
|
t.Errorf("expected: nil, but got: %v", prev)
|
|
}
|
|
})
|
|
|
|
t.Run("TwoNode", func(t *testing.T) {
|
|
c := newCluster()
|
|
c.addNodeBasicSorted(node0)
|
|
c.addNodeBasicSorted(node1)
|
|
|
|
c.Node = node0
|
|
if prev := c.unprotectedPreviousNode(); prev != node1 {
|
|
t.Errorf("expected: node1, but got: %v", prev)
|
|
}
|
|
|
|
c.Node = node1
|
|
if prev := c.unprotectedPreviousNode(); prev != node0 {
|
|
t.Errorf("expected: node0, but got: %v", prev)
|
|
}
|
|
})
|
|
|
|
t.Run("ThreeNode", func(t *testing.T) {
|
|
c := newCluster()
|
|
c.addNodeBasicSorted(node0)
|
|
c.addNodeBasicSorted(node1)
|
|
c.addNodeBasicSorted(node2)
|
|
|
|
c.Node = node0
|
|
if prev := c.unprotectedPreviousNode(); prev != node2 {
|
|
t.Errorf("expected: node2, but got: %v", prev)
|
|
}
|
|
|
|
c.Node = node1
|
|
if prev := c.unprotectedPreviousNode(); prev != node0 {
|
|
t.Errorf("expected: node0, but got: %v", prev)
|
|
}
|
|
|
|
c.Node = node2
|
|
if prev := c.unprotectedPreviousNode(); prev != node1 {
|
|
t.Errorf("expected: node1, but got: %v", prev)
|
|
}
|
|
})
|
|
}
|
|
|
|
func TestAE(t *testing.T) {
|
|
t.Run("AbortDoesn'tBlockUninitialized", func(t *testing.T) {
|
|
c := newCluster()
|
|
ch := make(chan struct{})
|
|
go func() {
|
|
c.abortAntiEntropy()
|
|
close(ch)
|
|
}()
|
|
defer c.abortAntiEntropyQ() // avoid leaking a goroutine.
|
|
select {
|
|
case <-ch:
|
|
return
|
|
case <-time.After(time.Second):
|
|
t.Fatalf("aborting anti entropy on a new cluster blocked")
|
|
}
|
|
})
|
|
|
|
t.Run("AbortBlocksInitialized", func(t *testing.T) {
|
|
c := newCluster()
|
|
c.initializeAntiEntropy()
|
|
|
|
ch := make(chan struct{})
|
|
go func() {
|
|
c.abortAntiEntropy()
|
|
close(ch)
|
|
}()
|
|
defer c.abortAntiEntropyQ() // avoid leak of goroutine.
|
|
select {
|
|
case <-ch:
|
|
t.Fatalf("aborting anti entropy on an initialized cluster didn't block")
|
|
case <-time.After(time.Microsecond * 100):
|
|
}
|
|
})
|
|
|
|
t.Run("AbortAntiEntropyQ", func(t *testing.T) {
|
|
c := newCluster()
|
|
c.initializeAntiEntropy()
|
|
if c.abortAntiEntropyQ() {
|
|
t.Fatalf("abortAntiEntropyQ should report false when abort not called")
|
|
}
|
|
go func() {
|
|
for {
|
|
if c.abortAntiEntropyQ() {
|
|
break
|
|
}
|
|
}
|
|
}()
|
|
ch := make(chan struct{})
|
|
go func() {
|
|
c.abortAntiEntropy()
|
|
close(ch)
|
|
}()
|
|
select {
|
|
case <-ch:
|
|
case <-time.After(time.Second):
|
|
t.Fatalf("abort should not have blocked this long")
|
|
}
|
|
})
|
|
}
|
|
|
|
func TestTranslateIndexKey(t *testing.T) {
|
|
c := newCluster()
|
|
node0 := &topology.Node{ID: "node0"}
|
|
c.addNodeBasicSorted(node0)
|
|
c.holder = newHolderWithTempPath(t, "rbf")
|
|
_, e := c.translateIndexKey(context.Background(), "i", "a", false)
|
|
if e == nil {
|
|
t.Fatal("expecting error")
|
|
}
|
|
}
|