mirror of
https://github.com/featurebasedb/featurebase.git
synced 2026-08-28 10:54:59 +00:00
961 lines
26 KiB
Go
961 lines
26 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"
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"os"
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"path/filepath"
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"reflect"
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"strconv"
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"strings"
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"testing"
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"time"
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"github.com/pilosa/pilosa/v2/pql"
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"github.com/pilosa/pilosa/v2/roaring"
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"github.com/pilosa/pilosa/v2/testhook"
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)
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// Ensure a bsiGroup can adjust to its baseValue.
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func TestBSIGroup_BaseValue(t *testing.T) {
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b0 := &bsiGroup{
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Name: "b0",
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Type: bsiGroupTypeInt,
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Base: -100,
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BitDepth: 10,
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Min: -1000,
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Max: 1000,
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}
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b1 := &bsiGroup{
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Name: "b1",
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Type: bsiGroupTypeInt,
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Base: 0,
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BitDepth: 8,
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Min: -255,
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Max: 255,
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}
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b2 := &bsiGroup{
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Name: "b2",
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Type: bsiGroupTypeInt,
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Base: 100,
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BitDepth: 11,
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Min: math.MinInt64,
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Max: math.MaxInt64,
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}
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t.Run("Normal Condition", func(t *testing.T) {
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for i, tt := range []struct {
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f *bsiGroup
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op pql.Token
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val int64
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expBaseValue int64
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expOutOfRange bool
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}{
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// LT
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{b0, pql.LT, 5, 105, false},
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{b0, pql.LT, -8, 92, false},
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{b0, pql.LT, -108, -8, false},
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{b0, pql.LT, 1005, 1024, false},
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{b0, pql.LT, 0, 100, false},
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{b1, pql.LT, 5, 5, false},
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{b1, pql.LT, -8, -8, false},
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{b1, pql.LT, 1005, 256, false},
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{b1, pql.LT, 0, 0, false},
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{b2, pql.LT, 5, -95, false},
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{b2, pql.LT, -8, -108, false},
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{b2, pql.LT, 105, 5, false},
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{b2, pql.LT, 1105, 1005, false},
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// GT
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{b0, pql.GT, -5, 95, false},
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{b0, pql.GT, 5, 105, false},
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{b0, pql.GT, 905, 1005, false},
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{b0, pql.GT, 0, 100, false},
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{b1, pql.GT, 5, 5, false},
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{b1, pql.GT, -8, -8, false},
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{b1, pql.GT, 1005, 0, true},
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{b1, pql.GT, 0, 0, false},
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{b1, pql.GT, -300, -256, false},
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{b2, pql.GT, 5, -95, false},
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{b2, pql.GT, -8, -108, false},
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{b2, pql.GT, 105, 5, false},
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{b2, pql.GT, 1105, 1005, false},
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// EQ
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{b0, pql.EQ, -105, -5, false},
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{b0, pql.EQ, 5, 105, false},
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{b0, pql.EQ, 905, 1005, false},
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{b0, pql.EQ, 0, 100, false},
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{b1, pql.EQ, 5, 5, false},
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{b1, pql.EQ, -8, -8, false},
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{b1, pql.EQ, 1005, 0, true},
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{b1, pql.EQ, 0, 0, false},
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{b2, pql.EQ, 5, -95, false},
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{b2, pql.EQ, -8, -108, false},
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{b2, pql.EQ, 105, 5, false},
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{b2, pql.EQ, 1105, 1005, false},
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} {
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t.Run(fmt.Sprint(i), func(t *testing.T) {
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bv, oor := tt.f.baseValue(tt.op, tt.val)
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if oor != tt.expOutOfRange || !reflect.DeepEqual(bv, tt.expBaseValue) {
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t.Errorf("%s) baseValue(%s, %v)=(%v, %v), expected (%v, %v)", tt.f.Name, tt.op, tt.val, bv, oor, tt.expBaseValue, tt.expOutOfRange)
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}
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})
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}
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})
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t.Run("Between Condition", func(t *testing.T) {
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for i, tt := range []struct {
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f *bsiGroup
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predMin int64
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predMax int64
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expBaseValueMin int64
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expBaseValueMax int64
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expOutOfRange bool
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}{
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{b0, -205, -105, -105, -5, false},
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{b0, -105, 80, -5, 180, false},
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{b0, 5, 20, 105, 120, false},
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{b0, 20, 1005, 120, 1023, false},
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{b0, 1005, 2000, 0, 0, true},
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{b1, -105, -5, -105, -5, false},
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{b1, -5, 20, -5, 20, false},
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{b1, 5, 20, 5, 20, false},
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{b1, 20, 1005, 20, 255, false},
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{b1, 1005, 2000, 0, 0, true},
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{b1, 0, -1, 0, 0, true},
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{b2, 5, 95, -95, -5, false},
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{b2, 95, 120, -5, 20, false},
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{b2, 105, 120, 5, 20, false},
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{b2, 120, 1105, 20, 1005, false},
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{b2, 1105, 2000, 1005, 1900, false},
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} {
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min, max, oor := tt.f.baseValueBetween(tt.predMin, tt.predMax)
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if !reflect.DeepEqual(min, tt.expBaseValueMin) || !reflect.DeepEqual(max, tt.expBaseValueMax) || oor != tt.expOutOfRange {
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t.Errorf("%d. %s) baseValueBetween(%v, %v)=(%v, %v, %v), expected (%v, %v, %v)", i, tt.f.Name, tt.predMin, tt.predMax, min, max, oor, tt.expBaseValueMin, tt.expBaseValueMax, tt.expOutOfRange)
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}
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}
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})
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}
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// Ensure field can open and retrieve a view.
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func TestField_DeleteView(t *testing.T) {
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f := OpenField(t, OptFieldTypeDefault())
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defer f.Close()
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viewName := viewStandard + "_v"
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// Create view.
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view, err := f.createViewIfNotExists(viewName)
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if err != nil {
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t.Fatal(err)
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} else if view == nil {
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t.Fatal("expected view")
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}
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err = f.deleteView(viewName)
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if err != nil {
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t.Fatal(err)
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}
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if f.view(viewName) != nil {
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t.Fatal("view still exists in field")
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}
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// Recreate view with same name, verify that the old view was not reused.
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view2, err := f.createViewIfNotExists(viewName)
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if err != nil {
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t.Fatal(err)
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} else if view == view2 {
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t.Fatal("failed to create new view")
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}
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}
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// TestField represents a test wrapper for Field.
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type TestField struct {
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*Field
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parent *Index
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tb testing.TB
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}
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// NewTestField returns a new instance of TestField d/0.
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func NewTestField(t *testing.T, opts FieldOption) *TestField {
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path, err := testhook.TempDirInDir(t, *TempDir, "pilosa-field-")
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if err != nil {
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t.Fatal(err)
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}
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cfg := DefaultHolderConfig()
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cfg.StorageConfig.Backend = CurrentBackendOrDefault()
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h := NewHolder(path, cfg)
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panicOn(h.Open())
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idx, err := h.CreateIndex("i", IndexOptions{})
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if err != nil {
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panic(err)
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}
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field, err := idx.CreateField("f", opts)
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if err != nil {
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t.Fatal(err)
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}
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tf := &TestField{Field: field, parent: idx, tb: t}
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testhook.Cleanup(t, func() {
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h.Close()
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})
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return tf
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}
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// OpenField returns a new, opened field at a temporary path.
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func OpenField(t *testing.T, opts FieldOption) *TestField {
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f := NewTestField(t, opts)
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return f
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}
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// Close closes the field and removes the underlying data.
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func (f *TestField) Close() error {
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if f.idx != nil {
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panicOn(f.idx.holder.txf.CloseIndex(f.idx))
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}
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defer os.RemoveAll(f.Path())
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return f.Field.Close()
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}
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// Reopen closes the index and reopens it.
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func (f *TestField) Reopen() error {
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name := f.Field.Name()
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if err := f.parent.Close(); err != nil {
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f.parent = nil
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return err
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}
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schema, err := f.parent.Schemator.Schema(context.Background())
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if err != nil {
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return err
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}
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if err := f.parent.OpenWithSchema(schema[f.parent.name]); err != nil {
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f.parent = nil
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return err
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}
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f.Field = f.parent.Field(name)
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return nil
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}
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func (f *TestField) MustSetBit(tx Tx, row, col uint64, ts ...time.Time) {
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if len(ts) == 0 {
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_, err := f.Field.SetBit(tx, row, col, nil)
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if err != nil {
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panic(err)
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}
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}
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for _, t := range ts {
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_, err := f.Field.SetBit(tx, row, col, &t)
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if err != nil {
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panic(err)
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}
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}
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}
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// Ensure field can open and retrieve a view.
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func TestField_CreateViewIfNotExists(t *testing.T) {
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f := OpenField(t, OptFieldTypeDefault())
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defer f.Close()
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// Create view.
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view, err := f.createViewIfNotExists("v")
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if err != nil {
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t.Fatal(err)
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} else if view == nil {
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t.Fatal("expected view")
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}
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// Retrieve existing view.
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view2, err := f.createViewIfNotExists("v")
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if err != nil {
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t.Fatal(err)
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} else if view != view2 {
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t.Fatal("view mismatch")
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}
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if view != f.view("v") {
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t.Fatal("view mismatch")
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}
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}
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func TestField_SetTimeQuantum(t *testing.T) {
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f := OpenField(t, OptFieldTypeTime(TimeQuantum("YMDH")))
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defer f.Close()
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// Retrieve time quantum.
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if q := f.TimeQuantum(); q != TimeQuantum("YMDH") {
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t.Fatalf("unexpected quantum: %s", q)
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}
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// Reload field and verify that it is persisted.
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if err := f.Reopen(); err != nil {
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t.Fatal(err)
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} else if q := f.TimeQuantum(); q != TimeQuantum("YMDH") {
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t.Fatalf("unexpected quantum (reopen): %s", q)
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}
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}
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func TestField_RowTime(t *testing.T) {
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f := OpenField(t, OptFieldTypeTime(TimeQuantum("YMDH")))
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defer f.Close()
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// Obtain transaction.
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tx := f.idx.holder.txf.NewTx(Txo{Write: writable, Index: f.idx, Field: f.Field, Shard: 0})
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defer tx.Rollback()
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f.MustSetBit(tx, 1, 1, time.Date(2010, time.January, 5, 12, 0, 0, 0, time.UTC))
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f.MustSetBit(tx, 1, 2, time.Date(2011, time.January, 5, 12, 0, 0, 0, time.UTC))
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f.MustSetBit(tx, 1, 3, time.Date(2010, time.February, 5, 12, 0, 0, 0, time.UTC))
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f.MustSetBit(tx, 1, 4, time.Date(2010, time.January, 6, 12, 0, 0, 0, time.UTC))
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f.MustSetBit(tx, 1, 5, time.Date(2010, time.January, 5, 13, 0, 0, 0, time.UTC))
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panicOn(tx.Commit())
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// obtain 2nd transaction to read it back.
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tx = f.idx.holder.txf.NewTx(Txo{Write: !writable, Index: f.idx, Field: f.Field, Shard: 0})
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defer tx.Rollback()
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if r, err := f.RowTime(tx, 1, time.Date(2010, time.November, 5, 12, 0, 0, 0, time.UTC), "Y"); err != nil {
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t.Fatal(err)
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} else if !reflect.DeepEqual(r.Columns(), []uint64{1, 3, 4, 5}) {
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t.Fatalf("wrong columns: %#v", r.Columns())
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}
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if r, err := f.RowTime(tx, 1, time.Date(2010, time.February, 7, 13, 0, 0, 0, time.UTC), "YM"); err != nil {
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t.Fatal(err)
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} else if !reflect.DeepEqual(r.Columns(), []uint64{3}) {
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t.Fatalf("wrong columns: %#v", r.Columns())
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}
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if r, err := f.RowTime(tx, 1, time.Date(2010, time.February, 7, 13, 0, 0, 0, time.UTC), "M"); err != nil {
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t.Fatal(err)
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} else if !reflect.DeepEqual(r.Columns(), []uint64{3}) {
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t.Fatalf("wrong columns: %#v", r.Columns())
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}
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if r, err := f.RowTime(tx, 1, time.Date(2010, time.January, 5, 12, 0, 0, 0, time.UTC), "MD"); err != nil {
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t.Fatal(err)
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} else if !reflect.DeepEqual(r.Columns(), []uint64{1, 5}) {
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t.Fatalf("wrong columns: %#v", r.Columns())
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}
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if r, err := f.RowTime(tx, 1, time.Date(2010, time.January, 5, 13, 0, 0, 0, time.UTC), "MDH"); err != nil {
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t.Fatal(err)
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} else if !reflect.DeepEqual(r.Columns(), []uint64{5}) {
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t.Fatalf("wrong columns: %#v", r.Columns())
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}
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}
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func TestField_PersistAvailableShards(t *testing.T) {
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availableShardFileFlushDuration.Set(200 * time.Millisecond) //shorten the default time to force a file write
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f := OpenField(t, OptFieldTypeDefault())
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defer f.Close()
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// bm represents remote available shards.
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bm := roaring.NewBitmap(1, 2, 3)
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if err := f.AddRemoteAvailableShards(bm); err != nil {
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t.Fatal(err)
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}
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time.Sleep(2 * availableShardFileFlushDuration.Get())
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// Reload field and verify that shard data is persisted.
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if err := f.Reopen(); err != nil {
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t.Fatal(err)
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} else if !reflect.DeepEqual(f.remoteAvailableShards.Slice(), bm.Slice()) {
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t.Fatalf("unexpected available shards (reopen). expected: %v, but got: %v", bm.Slice(), f.remoteAvailableShards.Slice())
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}
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}
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func TestField_CorruptAvailableShards(t *testing.T) {
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availableShardFileFlushDuration.Set(200 * time.Millisecond) //shorten the default time to force a file write
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f := OpenField(t, OptFieldTypeDefault())
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defer f.Close()
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// bm represents remote available shards.
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bm := roaring.NewBitmap(1, 2, 3)
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if err := f.AddRemoteAvailableShards(bm); err != nil {
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t.Fatal(err)
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}
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time.Sleep(2 * availableShardFileFlushDuration.Get())
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path := filepath.Join(f.path, ".available.shards")
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avail, err := os.OpenFile(path, os.O_APPEND|os.O_WRONLY, 0644)
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if err != nil {
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t.Fatal(err)
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}
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n, err := avail.Write([]byte{23})
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if err != nil || n != 1 {
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t.Fatal(err)
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}
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avail.Close()
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// Reload field and verify that shard data is persisted.
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if err := f.Reopen(); err != nil {
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t.Fatal(err)
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} else if !reflect.DeepEqual(f.remoteAvailableShards.Slice(), []uint64(nil)) {
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t.Fatalf("unexpected available shards (reopen). expected: %#v, but got: %#v", []uint64{}, f.remoteAvailableShards.Slice())
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}
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}
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func TestField_TruncatedAvailableShards(t *testing.T) {
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availableShardFileFlushDuration.Set(200 * time.Millisecond) //shorten the default time to force a file write
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f := OpenField(t, OptFieldTypeDefault())
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defer f.Close()
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// bm represents remote available shards.
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bm := roaring.NewBitmap(1, 2, 3)
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if err := f.AddRemoteAvailableShards(bm); err != nil {
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t.Fatal(err)
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}
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time.Sleep(2 * availableShardFileFlushDuration.Get())
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path := filepath.Join(f.path, ".available.shards")
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avail, err := os.OpenFile(path, os.O_TRUNC|os.O_WRONLY, 0644)
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if err != nil {
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t.Fatal(err)
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}
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avail.Close()
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// Reload field and verify that shard data is persisted.
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if err := f.Reopen(); err != nil {
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t.Fatal(err)
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} else if !reflect.DeepEqual(f.remoteAvailableShards.Slice(), []uint64(nil)) {
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t.Fatalf("unexpected available shards (reopen). expected: %#v, but got: %#v", []uint64{}, f.remoteAvailableShards.Slice())
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}
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}
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// Ensure that persisting available shards having a smaller footprint (for example,
|
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// when going from a bitmap to a smaller, RLE representation) succeeds.
|
|
func TestField_PersistAvailableShardsFootprint(t *testing.T) {
|
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availableShardFileFlushDuration.Set(200 * time.Millisecond) //shorten the default time to force a file write
|
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f := OpenField(t, OptFieldTypeDefault())
|
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defer f.Close()
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|
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// bm represents remote available shards.
|
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bm := roaring.NewBitmap()
|
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for i := uint64(0); i < 1204; i += 2 {
|
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_, err := bm.Add(i)
|
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if err != nil {
|
|
t.Fatalf("adding bits: %v", err)
|
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}
|
|
}
|
|
|
|
if err := f.AddRemoteAvailableShards(bm); err != nil {
|
|
t.Fatal(err)
|
|
}
|
|
time.Sleep(2 * availableShardFileFlushDuration.Get())
|
|
|
|
// Reload field and verify that shard data is persisted.
|
|
if err := f.Reopen(); err != nil {
|
|
t.Fatal(err)
|
|
} else if !reflect.DeepEqual(f.remoteAvailableShards.Slice(), bm.Slice()) {
|
|
t.Fatalf("unexpected available shards (reopen). expected: %v, \n but got: %v", bm.Slice(), f.remoteAvailableShards.Slice())
|
|
|
|
}
|
|
|
|
bm1 := roaring.NewBitmap()
|
|
for i := uint64(1); i < 1204; i += 2 {
|
|
_, err := bm1.Add(i)
|
|
if err != nil {
|
|
t.Fatalf("adding bits: %v", err)
|
|
}
|
|
}
|
|
|
|
if err := f.AddRemoteAvailableShards(bm1); err != nil {
|
|
t.Fatal(err)
|
|
}
|
|
|
|
// Reload field and verify that shard data is persisted.
|
|
result := bm.Union(bm1)
|
|
if err := f.Reopen(); err != nil {
|
|
t.Fatal(err)
|
|
} else if !reflect.DeepEqual(f.remoteAvailableShards.Slice(), result.Slice()) {
|
|
t.Fatalf("unexpected available shards (reopen). expected: %v, but got: %v", bm.Slice(), f.remoteAvailableShards.Slice())
|
|
}
|
|
|
|
}
|
|
|
|
// Ensure that FieldOptions.Base defaults to the correct value.
|
|
func TestBSIGroup_BaseDefaultValue(t *testing.T) {
|
|
for i, tt := range []struct {
|
|
min int64
|
|
max int64
|
|
expBase int64
|
|
}{
|
|
{100, 200, 100},
|
|
{-100, 100, 0},
|
|
{-200, -100, -100},
|
|
} {
|
|
fn := OptFieldTypeInt(tt.min, tt.max)
|
|
|
|
// Apply functional option.
|
|
fo := FieldOptions{}
|
|
err := fn(&fo)
|
|
if err != nil {
|
|
t.Fatalf("test %d, applying functional option: %s", i, err.Error())
|
|
}
|
|
|
|
if fo.Base != tt.expBase {
|
|
t.Fatalf("test %d, unexpected FieldOptions.Base value. expected: %d, but got: %d", i, tt.expBase, fo.Base)
|
|
}
|
|
}
|
|
}
|
|
|
|
func TestField_ApplyOptions(t *testing.T) {
|
|
for i, tt := range []struct {
|
|
opts FieldOptions
|
|
expOpts FieldOptions
|
|
}{
|
|
{
|
|
FieldOptions{
|
|
Type: FieldTypeSet,
|
|
CacheType: CacheTypeNone,
|
|
CacheSize: 0,
|
|
},
|
|
FieldOptions{
|
|
Type: FieldTypeSet,
|
|
CacheType: CacheTypeNone,
|
|
CacheSize: 0,
|
|
},
|
|
},
|
|
} {
|
|
|
|
fld := &Field{}
|
|
fld.options = applyDefaultOptions(&FieldOptions{})
|
|
|
|
if err := fld.applyOptions(tt.opts); err != nil {
|
|
t.Fatal(err)
|
|
}
|
|
|
|
if fld.options.CacheType != tt.expOpts.CacheType {
|
|
t.Fatalf("test %d, unexpected FieldOptions.CacheType value. expected: %s, but got: %s", i, tt.expOpts.CacheType, fld.options.CacheType)
|
|
} else if fld.options.CacheSize != tt.expOpts.CacheSize {
|
|
t.Fatalf("test %d, unexpected FieldOptions.CacheSize value. expected: %d, but got: %d", i, tt.expOpts.CacheSize, fld.options.CacheSize)
|
|
}
|
|
}
|
|
}
|
|
|
|
// Ensure that importValue handles requiredDepth correctly.
|
|
// This test sets the same column value to 1, then 8, then 1.
|
|
// A previous bug was incorrectly determining bitDepth based
|
|
// on the values in the import, and not taking existing values
|
|
// into consideration. This would cause an import of 1/8/1
|
|
// to result in a value of 9 instead of 1.
|
|
func TestBSIGroup_importValue(t *testing.T) {
|
|
f := OpenField(t, OptFieldTypeInt(-100, 200))
|
|
defer f.Close()
|
|
|
|
qcx := f.idx.holder.txf.NewQcx()
|
|
defer qcx.Abort()
|
|
|
|
options := &ImportOptions{}
|
|
for i, tt := range []struct {
|
|
columnIDs []uint64
|
|
values []int64
|
|
checkVal int64
|
|
expCols []uint64
|
|
}{
|
|
{
|
|
[]uint64{100},
|
|
[]int64{1},
|
|
1,
|
|
[]uint64{100},
|
|
},
|
|
{
|
|
[]uint64{100},
|
|
[]int64{8},
|
|
8,
|
|
[]uint64{100},
|
|
},
|
|
{
|
|
[]uint64{100},
|
|
[]int64{1},
|
|
1,
|
|
[]uint64{100},
|
|
},
|
|
} {
|
|
if err := f.importValue(qcx, tt.columnIDs, tt.values, options); err != nil {
|
|
t.Fatalf("test %d, importing values: %s", i, err.Error())
|
|
}
|
|
panicOn(qcx.Finish())
|
|
qcx.Reset()
|
|
if row, err := f.Range(qcx, f.name, pql.EQ, tt.checkVal); err != nil {
|
|
t.Fatalf("test %d, getting range: %s", i, err.Error())
|
|
} else if !reflect.DeepEqual(row.Columns(), tt.expCols) {
|
|
t.Fatalf("test %d, expected columns: %v, but got: %v", i, tt.expCols, row.Columns())
|
|
}
|
|
panicOn(qcx.Finish())
|
|
qcx.Reset()
|
|
} // loop
|
|
}
|
|
|
|
func TestIntField_MinMaxForShard(t *testing.T) {
|
|
f := OpenField(t, OptFieldTypeInt(-100, 200))
|
|
defer f.Close()
|
|
|
|
qcx := f.idx.holder.txf.NewQcx()
|
|
defer qcx.Abort()
|
|
|
|
options := &ImportOptions{}
|
|
for i, test := range []struct {
|
|
name string
|
|
columnIDs []uint64
|
|
values []int64
|
|
expMax ValCount
|
|
expMin ValCount
|
|
}{
|
|
{
|
|
name: "zero",
|
|
columnIDs: []uint64{},
|
|
values: []int64{},
|
|
},
|
|
{
|
|
name: "single",
|
|
columnIDs: []uint64{1},
|
|
values: []int64{10},
|
|
expMax: ValCount{Val: 10, Count: 1},
|
|
expMin: ValCount{Val: 10, Count: 1},
|
|
},
|
|
{
|
|
name: "twovals",
|
|
columnIDs: []uint64{1, 2},
|
|
values: []int64{10, 20},
|
|
expMax: ValCount{Val: 20, Count: 1},
|
|
expMin: ValCount{Val: 10, Count: 1},
|
|
},
|
|
{
|
|
name: "multiplecounts",
|
|
columnIDs: []uint64{1, 2, 3, 4, 5},
|
|
values: []int64{10, 20, 10, 10, 20},
|
|
expMax: ValCount{Val: 20, Count: 2},
|
|
expMin: ValCount{Val: 10, Count: 3},
|
|
},
|
|
{
|
|
name: "middlevals",
|
|
columnIDs: []uint64{1, 2, 3, 4, 5, 6, 7, 8, 9, 10},
|
|
values: []int64{10, 20, 10, 10, 20, 11, 12, 11, 13, 11},
|
|
expMax: ValCount{Val: 20, Count: 2},
|
|
expMin: ValCount{Val: 10, Count: 3},
|
|
},
|
|
{
|
|
name: "middlevals",
|
|
columnIDs: []uint64{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 100000000, 100000001},
|
|
values: []int64{10, 20, 10, 10, 20, 11, 12, 11, 13, 11, 44, 1},
|
|
expMax: ValCount{Val: 20, Count: 2},
|
|
expMin: ValCount{Val: 10, Count: 3},
|
|
},
|
|
} {
|
|
t.Run(test.name+strconv.Itoa(i), func(t *testing.T) {
|
|
if err := f.importValue(qcx, test.columnIDs, test.values, options); err != nil {
|
|
t.Fatalf("test %d, importing values: %s", i, err.Error())
|
|
}
|
|
panicOn(qcx.Finish())
|
|
qcx.Reset()
|
|
|
|
shard := uint64(0)
|
|
tx := f.idx.holder.txf.NewTx(Txo{Write: !writable, Index: f.idx, Field: f.Field, Shard: shard})
|
|
// Rollback below manually, because we are in a loop.
|
|
|
|
maxvc, err := f.MaxForShard(tx, shard, nil)
|
|
if err != nil {
|
|
t.Fatalf("getting max for shard: %v", err)
|
|
}
|
|
if maxvc != test.expMax {
|
|
t.Fatalf("max expected:\n%+v\ngot:\n%+v", test.expMax, maxvc)
|
|
}
|
|
|
|
minvc, err := f.MinForShard(tx, shard, nil)
|
|
if err != nil {
|
|
t.Fatalf("getting min for shard: %v", err)
|
|
}
|
|
if minvc != test.expMin {
|
|
t.Fatalf("min expected:\n%+v\ngot:\n%+v", test.expMin, minvc)
|
|
}
|
|
tx.Rollback()
|
|
})
|
|
}
|
|
}
|
|
|
|
// Ensure we get errors when they are expected.
|
|
func TestDecimalField_MinMaxBoundaries(t *testing.T) {
|
|
th := newTestHolder(t)
|
|
|
|
for i, test := range []struct {
|
|
scale int64
|
|
min pql.Decimal
|
|
max pql.Decimal
|
|
expErr bool
|
|
}{
|
|
{
|
|
scale: 3,
|
|
min: pql.NewDecimal(math.MinInt64, 0),
|
|
max: pql.NewDecimal(math.MaxInt64, 0),
|
|
expErr: true,
|
|
},
|
|
{
|
|
scale: 3,
|
|
min: pql.NewDecimal(math.MinInt64, 3),
|
|
max: pql.NewDecimal(math.MaxInt64, 3),
|
|
expErr: false,
|
|
},
|
|
{
|
|
scale: 3,
|
|
min: pql.NewDecimal(44, 0),
|
|
max: pql.NewDecimal(88, 0),
|
|
expErr: false,
|
|
},
|
|
{
|
|
scale: 3,
|
|
min: pql.NewDecimal(-44, 0),
|
|
max: pql.NewDecimal(88, 0),
|
|
expErr: false,
|
|
},
|
|
{
|
|
scale: 19,
|
|
min: pql.NewDecimal(1, 0),
|
|
max: pql.NewDecimal(2, 0),
|
|
expErr: true,
|
|
},
|
|
{
|
|
scale: 19,
|
|
min: pql.NewDecimal(math.MinInt64, 18),
|
|
max: pql.NewDecimal(math.MaxInt64, 18),
|
|
expErr: true,
|
|
},
|
|
{
|
|
scale: 0,
|
|
min: pql.NewDecimal(1, 20),
|
|
max: pql.NewDecimal(2, 20),
|
|
expErr: true,
|
|
},
|
|
{
|
|
scale: 0,
|
|
min: pql.NewDecimal(1, -1),
|
|
max: pql.NewDecimal(2, -1),
|
|
expErr: false,
|
|
},
|
|
{
|
|
scale: 0,
|
|
min: pql.NewDecimal(1, -19),
|
|
max: pql.NewDecimal(2, -19),
|
|
expErr: true,
|
|
},
|
|
} {
|
|
t.Run("minmax"+strconv.Itoa(i), func(t *testing.T) {
|
|
_, err := NewField(th, "no-path", "i", "f", OptFieldTypeDecimal(test.scale, test.min, test.max))
|
|
if err != nil && test.expErr {
|
|
if !strings.Contains(err.Error(), "is not supported") {
|
|
t.Fatal(err)
|
|
}
|
|
} else if err != nil && !test.expErr {
|
|
t.Fatalf("did not expect error, but got: %s", err)
|
|
} else if err == nil && test.expErr {
|
|
t.Fatal("expected error, but got none")
|
|
}
|
|
})
|
|
}
|
|
}
|
|
|
|
func TestDecimalField_MinMaxForShard(t *testing.T) {
|
|
f := OpenField(t, OptFieldTypeDecimal(3))
|
|
defer f.Close()
|
|
|
|
qcx := f.idx.holder.txf.NewQcx()
|
|
defer qcx.Abort()
|
|
|
|
options := &ImportOptions{}
|
|
for i, test := range []struct {
|
|
name string
|
|
columnIDs []uint64
|
|
values []float64
|
|
expMax ValCount
|
|
expMin ValCount
|
|
}{
|
|
{
|
|
name: "zero",
|
|
columnIDs: []uint64{},
|
|
values: []float64{},
|
|
},
|
|
{
|
|
name: "single",
|
|
columnIDs: []uint64{1},
|
|
values: []float64{10.1},
|
|
expMax: ValCount{DecimalVal: &pql.Decimal{Value: 10100, Scale: 3}, Count: 1},
|
|
expMin: ValCount{DecimalVal: &pql.Decimal{Value: 10100, Scale: 3}, Count: 1},
|
|
},
|
|
{
|
|
name: "twovals",
|
|
columnIDs: []uint64{1, 2},
|
|
values: []float64{10.1, 20.2},
|
|
expMax: ValCount{DecimalVal: &pql.Decimal{Value: 20200, Scale: 3}, Count: 1},
|
|
expMin: ValCount{DecimalVal: &pql.Decimal{Value: 10100, Scale: 3}, Count: 1},
|
|
},
|
|
{
|
|
name: "multiplecounts",
|
|
columnIDs: []uint64{1, 2, 3, 4, 5},
|
|
values: []float64{10.1, 20.2, 10.1, 10.1, 20.2},
|
|
expMax: ValCount{DecimalVal: &pql.Decimal{Value: 20200, Scale: 3}, Count: 2},
|
|
expMin: ValCount{DecimalVal: &pql.Decimal{Value: 10100, Scale: 3}, Count: 3},
|
|
},
|
|
{
|
|
name: "middlevals",
|
|
columnIDs: []uint64{1, 2, 3, 4, 5, 6, 7, 8, 9, 10},
|
|
values: []float64{10.1, 20.2, 10.1, 10.1, 20.2, 11, 12, 11, 13, 11},
|
|
expMax: ValCount{DecimalVal: &pql.Decimal{Value: 20200, Scale: 3}, Count: 2},
|
|
expMin: ValCount{DecimalVal: &pql.Decimal{Value: 10100, Scale: 3}, Count: 3},
|
|
},
|
|
{
|
|
name: "another shard",
|
|
columnIDs: []uint64{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 100000000, 100000001},
|
|
values: []float64{10.1, 20.2, 10.1, 10.1, 20.2, 11, 12, 11, 13, 11, 44.39, 0.23},
|
|
expMax: ValCount{DecimalVal: &pql.Decimal{Value: 20200, Scale: 3}, Count: 2},
|
|
expMin: ValCount{DecimalVal: &pql.Decimal{Value: 10100, Scale: 3}, Count: 3},
|
|
},
|
|
} {
|
|
t.Run(test.name+strconv.Itoa(i), func(t *testing.T) {
|
|
if err := f.importFloatValue(qcx, test.columnIDs, test.values, options); err != nil {
|
|
t.Fatalf("test %d, importing values: %s", i, err.Error())
|
|
}
|
|
|
|
shard := uint64(0)
|
|
tx := f.idx.holder.txf.NewTx(Txo{Write: !writable, Index: f.idx, Field: f.Field, Shard: shard})
|
|
defer tx.Rollback()
|
|
|
|
maxvc, err := f.MaxForShard(tx, shard, nil)
|
|
if err != nil {
|
|
t.Fatalf("getting max for shard: %v", err)
|
|
}
|
|
if !reflect.DeepEqual(maxvc, test.expMax) {
|
|
t.Fatalf("max expected:\n%+v\ngot:\n%+v", test.expMax, maxvc)
|
|
}
|
|
|
|
minvc, err := f.MinForShard(tx, shard, nil)
|
|
if err != nil {
|
|
t.Fatalf("getting min for shard: %v", err)
|
|
}
|
|
if !reflect.DeepEqual(minvc, test.expMin) {
|
|
t.Fatalf("min expected:\n%+v\ngot:\n%+v", test.expMin, minvc)
|
|
}
|
|
})
|
|
}
|
|
}
|
|
|
|
func TestBSIGroup_TxReopenDB(t *testing.T) {
|
|
f := OpenField(t, OptFieldTypeInt(-100, 200))
|
|
defer f.Close()
|
|
|
|
qcx := f.idx.holder.txf.NewQcx()
|
|
defer qcx.Abort()
|
|
|
|
options := &ImportOptions{}
|
|
for i, tt := range []struct {
|
|
columnIDs []uint64
|
|
values []int64
|
|
checkVal int64
|
|
expCols []uint64
|
|
}{
|
|
{
|
|
[]uint64{100},
|
|
[]int64{1},
|
|
1,
|
|
[]uint64{100},
|
|
},
|
|
{
|
|
[]uint64{100},
|
|
[]int64{8},
|
|
8,
|
|
[]uint64{100},
|
|
},
|
|
{
|
|
[]uint64{100},
|
|
[]int64{1},
|
|
1,
|
|
[]uint64{100},
|
|
},
|
|
} {
|
|
if err := f.importValue(qcx, tt.columnIDs, tt.values, options); err != nil {
|
|
t.Fatalf("test %d, importing values: %s", i, err.Error())
|
|
}
|
|
panicOn(qcx.Finish())
|
|
qcx.Reset()
|
|
|
|
if row, err := f.Range(qcx, f.name, pql.EQ, tt.checkVal); err != nil {
|
|
t.Fatalf("test %d, getting range: %s", i, err.Error())
|
|
} else if !reflect.DeepEqual(row.Columns(), tt.expCols) {
|
|
t.Fatalf("test %d, expected columns: %v, but got: %v", i, tt.expCols, row.Columns())
|
|
}
|
|
panicOn(qcx.Finish())
|
|
qcx.Reset()
|
|
} // loop
|
|
|
|
// the test: can we re-open a BSI fragment under Tx store
|
|
_ = f.Reopen()
|
|
}
|
|
|
|
// Ensure that an integer field has the same BitDepth after reopening.
|
|
func TestField_SaveMeta(t *testing.T) {
|
|
f := OpenField(t, OptFieldTypeInt(-10, 1000))
|
|
defer f.Close()
|
|
|
|
colID := uint64(1)
|
|
val := int64(88)
|
|
expBitDepth := uint64(7)
|
|
|
|
// Obtain transaction.
|
|
tx := f.idx.holder.txf.NewTx(Txo{Write: writable, Index: f.idx, Field: f.Field, Shard: 0})
|
|
defer tx.Rollback()
|
|
|
|
if changed, err := f.SetValue(tx, colID, val); err != nil {
|
|
t.Fatal(err)
|
|
} else if !changed {
|
|
t.Fatal("expected SetValue to return changed = true")
|
|
} else if err := tx.Commit(); err != nil {
|
|
t.Fatal(err)
|
|
}
|
|
|
|
if f.options.BitDepth != expBitDepth {
|
|
t.Fatalf("expected BitDepth after set to be: %d, got: %d", expBitDepth, f.options.BitDepth)
|
|
}
|
|
|
|
// Reload field and verify that it is persisted.
|
|
if err := f.Reopen(); err != nil {
|
|
t.Fatal(err)
|
|
}
|
|
|
|
if f.options.BitDepth != expBitDepth {
|
|
t.Fatalf("expected BitDepth after reopen to be: %d, got: %d", expBitDepth, f.options.BitDepth)
|
|
}
|
|
}
|