mirror of
https://github.com/featurebasedb/featurebase.git
synced 2026-08-28 10:54:59 +00:00
The "field/view will just synthesize a tx" behavior is awful and also hides a number of fundamental flaws. We distinguish between "we really do mean to work on a single shard here" and "we intend to work on the whole field or view", and the latter now take Qcx instead of Tx. This eliminates a lot of very weird cases where we checked for nil Tx and synthesized them, and also gets us away from field and view taking Tx parameters when no possible Tx can be constructed which is valid, because Tx are inherently shard-specific at this time.
586 lines
15 KiB
Go
586 lines
15 KiB
Go
// Copyright 2022 Molecula Corp. (DBA FeatureBase).
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// SPDX-License-Identifier: Apache-2.0
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package pilosa
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import (
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"context"
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"encoding/json"
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"fmt"
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"reflect"
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"strconv"
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"testing"
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"time"
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"github.com/featurebasedb/featurebase/v3/pql"
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"github.com/featurebasedb/featurebase/v3/testhook"
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"github.com/stretchr/testify/assert"
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)
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func TestExecutor_TranslateRowsOnBool(t *testing.T) {
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path, _ := testhook.TempDirInDir(t, *TempDir, "pilosa-executor-")
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holder := NewHolder(path, mustHolderConfig())
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defer holder.Close()
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e := &executor{
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Holder: holder,
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Cluster: NewTestCluster(t, 1),
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}
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if err := e.Holder.Open(); err != nil {
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t.Fatalf("opening holder: %v", err)
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}
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idx, err := e.Holder.CreateIndex("i", IndexOptions{})
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if err != nil {
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t.Fatalf("creating index: %v", err)
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}
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qcx := idx.Txf().NewWritableQcx()
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defer qcx.Abort()
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fb, errb := idx.CreateField("b", OptFieldTypeBool())
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_, errbk := idx.CreateField("bk", OptFieldTypeBool(), OptFieldKeys())
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if errb != nil || errbk != nil {
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t.Fatalf("creating fields %v, %v", errb, errbk)
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}
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_, err1 := fb.SetBit(qcx, 1, 1, nil)
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_, err2 := fb.SetBit(qcx, 2, 2, nil)
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_, err3 := fb.SetBit(qcx, 3, 3, nil)
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if err1 != nil || err2 != nil || err3 != nil {
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t.Fatalf("setting bit %v, %v, %v", err1, err2, err3)
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}
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tests := []struct {
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pql string
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}{
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{pql: "Rows(b)"},
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{pql: "GroupBy(Rows(b))"},
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{pql: "Set(4, b=true)"},
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}
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for _, test := range tests {
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t.Run(test.pql, func(t *testing.T) {
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query, err := pql.ParseString(test.pql)
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if err != nil {
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t.Fatalf("parsing query: %v", err)
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}
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c := query.Calls[0]
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colTranslations, rowTranslations, err := e.preTranslate(context.Background(), "i", c)
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if err != nil {
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t.Fatalf("pre-translating call: %v", err)
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}
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_, err = e.translateCall(c, "i", colTranslations, rowTranslations)
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if err != nil {
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t.Fatalf("translating call: %v", err)
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}
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})
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}
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}
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func TestFieldRowMarshalJSON(t *testing.T) {
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fr := FieldRow{
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Field: "blah",
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RowID: 0,
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RowKey: "ha",
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}
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b, err := json.Marshal(fr)
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if err != nil {
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t.Fatalf("marshalling fieldrow: %v", err)
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}
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if string(b) != `{"field":"blah","rowKey":"ha"}` {
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t.Fatalf("unexpected json: %s", b)
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}
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fr = FieldRow{
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Field: "blah",
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RowID: 2,
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RowKey: "",
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}
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b, err = json.Marshal(fr)
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if err != nil {
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t.Fatalf("marshalling fieldrow: %v", err)
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}
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if string(b) != `{"field":"blah","rowID":2}` {
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t.Fatalf("unexpected json: %s", b)
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}
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}
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func TestExecutor_GroupCountCondition(t *testing.T) {
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t.Run("satisfiesCondition", func(t *testing.T) {
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type condCheck struct {
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cond string
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exp bool
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}
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tests := []struct {
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groupCount GroupCount
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checks []condCheck
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}{
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{
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groupCount: GroupCount{Count: 100},
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checks: []condCheck{
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{cond: "count == 99", exp: false},
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{cond: "count != 99", exp: true},
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{cond: "count < 99", exp: false},
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{cond: "count <= 99", exp: false},
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{cond: "count > 99", exp: true},
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{cond: "count >= 99", exp: true},
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{cond: "count == 100", exp: true},
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{cond: "count != 100", exp: false},
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{cond: "count < 100", exp: false},
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{cond: "count <= 100", exp: true},
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{cond: "count > 100", exp: false},
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{cond: "count >= 100", exp: true},
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{cond: "count == 101", exp: false},
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{cond: "count != 101", exp: true},
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{cond: "count < 101", exp: true},
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{cond: "count <= 101", exp: true},
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{cond: "count > 101", exp: false},
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{cond: "count >= 101", exp: false},
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{cond: "98 < count < 100", exp: false},
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{cond: "98 < count <= 100", exp: true},
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{cond: "98 < count < 101", exp: true},
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{cond: "100 <= count < 102", exp: true},
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{cond: "100 < count < 102", exp: false},
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{cond: "98 <= count <= 102", exp: true},
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},
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},
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{
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groupCount: GroupCount{Agg: 100},
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checks: []condCheck{
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{cond: "sum == 99", exp: false},
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{cond: "sum != 99", exp: true},
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{cond: "sum < 99", exp: false},
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{cond: "sum <= 99", exp: false},
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{cond: "sum > 99", exp: true},
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{cond: "sum >= 99", exp: true},
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{cond: "sum == 100", exp: true},
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{cond: "sum != 100", exp: false},
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{cond: "sum < 100", exp: false},
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{cond: "sum <= 100", exp: true},
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{cond: "sum > 100", exp: false},
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{cond: "sum >= 100", exp: true},
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{cond: "sum == 101", exp: false},
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{cond: "sum != 101", exp: true},
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{cond: "sum < 101", exp: true},
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{cond: "sum <= 101", exp: true},
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{cond: "sum > 101", exp: false},
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{cond: "sum >= 101", exp: false},
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{cond: "98 < sum < 100", exp: false},
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{cond: "98 < sum <= 100", exp: true},
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{cond: "98 < sum < 101", exp: true},
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{cond: "100 <= sum < 102", exp: true},
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{cond: "100 < sum < 102", exp: false},
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{cond: "98 <= sum <= 102", exp: true},
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},
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},
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{
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groupCount: GroupCount{Agg: -100},
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checks: []condCheck{
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{cond: "sum == -99", exp: false},
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{cond: "sum != -99", exp: true},
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{cond: "sum < -99", exp: true},
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{cond: "sum <= -99", exp: true},
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{cond: "sum > -99", exp: false},
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{cond: "sum >= -99", exp: false},
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{cond: "sum == -100", exp: true},
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{cond: "sum != -100", exp: false},
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{cond: "sum < -100", exp: false},
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{cond: "sum <= -100", exp: true},
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{cond: "sum > -100", exp: false},
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{cond: "sum >= -100", exp: true},
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{cond: "sum == -101", exp: false},
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{cond: "sum != -101", exp: true},
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{cond: "sum < -101", exp: false},
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{cond: "sum <= -101", exp: false},
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{cond: "sum > -101", exp: true},
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{cond: "sum >= -101", exp: true},
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{cond: "-100 < sum < -98", exp: false},
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{cond: "-100 <= sum < -98", exp: true},
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{cond: "-101 < sum < -98", exp: true},
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{cond: "-102 < sum <= -100", exp: true},
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{cond: "-102 < sum < -100", exp: false},
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{cond: "-102 <= sum <= -98", exp: true},
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},
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},
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}
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for i, test := range tests {
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t.Run(fmt.Sprintf("test (#%d):", i), func(t *testing.T) {
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for j, check := range test.checks {
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t.Run(fmt.Sprintf("check (#%d):", j), func(t *testing.T) {
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query, err := pql.ParseString(fmt.Sprintf("GroupBy(Rows(a), having=Condition(%s))", check.cond))
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if err != nil {
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t.Fatalf("parsing query: %v", err)
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}
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c := query.Calls[0]
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having := c.Args["having"].(*pql.Call)
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var got bool
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for subj, cond := range having.Args {
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switch subj {
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case "count", "sum":
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condition, ok := cond.(*pql.Condition)
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if !ok {
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t.Fatalf("not a valid condition")
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}
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got = test.groupCount.satisfiesCondition(subj, condition)
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}
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}
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if got != check.exp {
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t.Fatalf("expected: %v, but got: %v", check.exp, got)
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}
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})
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}
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})
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}
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})
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}
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func TestValCountComparisons(t *testing.T) {
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tests := []struct {
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name string
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vc ValCount
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other ValCount
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expLarger ValCount
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expSmaller ValCount
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}{
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{
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name: "zero",
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},
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{
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name: "ints",
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vc: ValCount{Val: 10, Count: 1},
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other: ValCount{Val: 3, Count: 2},
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expLarger: ValCount{Val: 10, Count: 1},
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expSmaller: ValCount{Val: 3, Count: 2},
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},
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{
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name: "floats",
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vc: ValCount{FloatVal: 10.2, Count: 1},
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other: ValCount{FloatVal: 3.4, Count: 2},
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expLarger: ValCount{FloatVal: 10.2, Count: 1},
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expSmaller: ValCount{FloatVal: 3.4, Count: 2},
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},
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{
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name: "intsEquality",
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vc: ValCount{Val: 10, Count: 1},
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other: ValCount{Val: 10, Count: 2},
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expLarger: ValCount{Val: 10, Count: 3},
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expSmaller: ValCount{Val: 10, Count: 3},
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},
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{
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name: "floatsEquality",
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vc: ValCount{FloatVal: 10.7, Count: 1},
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other: ValCount{FloatVal: 10.7, Count: 2},
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expLarger: ValCount{FloatVal: 10.7, Count: 3},
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expSmaller: ValCount{FloatVal: 10.7, Count: 3},
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},
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{
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name: "timestampEquality",
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vc: ValCount{Val: -17782800, TimestampVal: time.Unix(0, -17782800*int64(time.Second)), Count: 1},
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other: ValCount{Val: -17782800, TimestampVal: time.Unix(0, -17782800*int64(time.Second)), Count: 1},
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expLarger: ValCount{Val: -17782800, TimestampVal: time.Unix(0, -17782800*int64(time.Second)), Count: 2},
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expSmaller: ValCount{Val: -17782800, TimestampVal: time.Unix(0, -17782800*int64(time.Second)), Count: 2},
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},
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{
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name: "timestamp",
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vc: ValCount{Val: -17782800, TimestampVal: time.Unix(0, -17782800*int64(time.Second)), Count: 1},
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other: ValCount{Val: 1587399600, TimestampVal: time.Unix(0, 1587399600*int64(time.Second)), Count: 1},
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expLarger: ValCount{Val: 1587399600, TimestampVal: time.Unix(0, 1587399600*int64(time.Second)), Count: 1},
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expSmaller: ValCount{Val: -17782800, TimestampVal: time.Unix(0, -17782800*int64(time.Second)), Count: 1},
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},
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}
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for i, test := range tests {
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t.Run(test.name+strconv.Itoa(i), func(t *testing.T) {
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gotLarger := test.vc.larger(test.other)
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if gotLarger != test.expLarger {
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t.Fatalf("larger failed, expected:\n%+v\ngot:\n%+v", test.expLarger, gotLarger)
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}
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gotSmaller := test.vc.smaller(test.other)
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if gotSmaller != test.expSmaller {
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t.Fatalf("smaller failed, expected:\n%+v\ngot:\n%+v", test.expSmaller, gotSmaller)
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}
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})
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}
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}
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func TestToNegInt64(t *testing.T) {
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tests := []struct {
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u64 uint64
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i64 int64
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overflow bool
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}{
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{
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u64: uint64(1 << 63),
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i64: int64(-1 << 63),
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},
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{
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u64: uint64(1<<63) - 1,
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i64: int64(-1<<63) + 1,
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},
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{
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u64: uint64(1<<63) + 1,
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overflow: true,
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},
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}
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for _, tc := range tests {
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val, err := toNegInt64(tc.u64)
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if err != nil && !tc.overflow {
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t.Fatalf("error: %+v, expected: %+v", err, tc)
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}
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if val != tc.i64 {
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t.Fatalf("Expected: %+v, Got: %+v", tc.i64, val)
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}
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}
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}
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func TestToInt64(t *testing.T) {
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tests := []struct {
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u64 uint64
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i64 int64
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overflow bool
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}{
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{
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u64: uint64(1<<63) - 1,
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i64: 1<<63 - 1,
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},
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{
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u64: uint64(0),
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i64: 0,
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},
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{
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u64: uint64(1 << 63),
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overflow: true,
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},
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{
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u64: 1<<64 - 1,
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overflow: true,
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},
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}
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for _, tc := range tests {
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val, err := toInt64(tc.u64)
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if err != nil && !tc.overflow {
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t.Fatalf("error: %+v, expected: %+v", err, tc)
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}
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if val != tc.i64 {
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t.Fatalf("Expected: %+v, Got: %+v", tc.i64, val)
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}
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}
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}
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func TestGetSorter(t *testing.T) {
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tests := []struct {
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sortSpec string
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expGCS *groupCountSorter
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expErr string
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}{
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{
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sortSpec: "count asc",
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expGCS: &groupCountSorter{fields: []int{-1}, order: []order{asc}},
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},
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{
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sortSpec: "count asc",
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expGCS: &groupCountSorter{fields: []int{-1}, order: []order{asc}},
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},
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{
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sortSpec: " count asc",
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expGCS: &groupCountSorter{fields: []int{-1}, order: []order{asc}},
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},
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{
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sortSpec: " count asc ",
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expGCS: &groupCountSorter{fields: []int{-1}, order: []order{asc}},
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},
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{
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sortSpec: "count",
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expGCS: &groupCountSorter{fields: []int{-1}, order: []order{desc}},
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},
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{
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sortSpec: "sum asc",
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expGCS: &groupCountSorter{fields: []int{-2}, order: []order{asc}},
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},
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{
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sortSpec: "aggregate asc",
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expGCS: &groupCountSorter{fields: []int{-2}, order: []order{asc}},
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},
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{
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sortSpec: "boondoggle asc",
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expErr: "sorting is only supported on count, aggregate, or sum, not 'boondoggle'",
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},
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{
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sortSpec: "sum asc, count desc",
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expGCS: &groupCountSorter{fields: []int{-2, -1}, order: []order{asc, desc}},
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},
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{
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sortSpec: "count asc, sum desc",
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expGCS: &groupCountSorter{fields: []int{-1, -2}, order: []order{asc, desc}},
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},
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{
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sortSpec: " count asc , sum desc ",
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expGCS: &groupCountSorter{fields: []int{-1, -2}, order: []order{asc, desc}},
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},
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{
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sortSpec: " count asc , sum desc blah",
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expErr: "parsing sort directive: 'sum desc blah': too many elements",
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},
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{
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sortSpec: "count asc, sum fesc",
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expErr: "unknown sort direction 'fesc'",
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},
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{
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sortSpec: " , sum fesc",
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expErr: "invalid sorting directive: ''",
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},
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{
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// weird and useless, but I guess fine?
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sortSpec: "count asc,count asc ",
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expGCS: &groupCountSorter{fields: []int{-1, -1}, order: []order{asc, asc}},
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},
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}
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for i, tst := range tests {
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t.Run(fmt.Sprintf("%s_%d", tst.sortSpec, i), func(t *testing.T) {
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gcs, err := getSorter(tst.sortSpec)
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if err != nil {
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if tst.expErr == "" {
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t.Errorf("unexpected error: %v", err)
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return
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}
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if tst.expErr != err.Error() {
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t.Errorf("mismatched errors got: '%v', exp: '%s'", err, tst.expErr)
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}
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return
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}
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if !reflect.DeepEqual(gcs, tst.expGCS) {
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t.Errorf("exp:\n%+v\ngot:\n%v\n", tst.expGCS, gcs)
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}
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})
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}
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}
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func TestExecutorSafeCopyDistinctTimestamp(t *testing.T) {
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result := DistinctTimestamp{Values: []string{"test", "test"}, Name: "test"}
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results := make([]interface{}, 1)
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results[0] = result
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response := QueryResponse{Results: results, Err: nil, Profile: nil}
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copied := safeCopy(response)
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if !reflect.DeepEqual(copied.Results, response.Results) {
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t.Fatalf("Did not copy results. got %+v, want %+v", copied.Results, response.Results)
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|
}
|
|
}
|
|
|
|
func TestGetScaledInt(t *testing.T) {
|
|
f := OpenField(t, OptFieldTypeTimestamp(time.Now(), "ms"))
|
|
// check that fields with type timestamp return the int64 passed in to getScaledInt with nil err
|
|
v := time.Now().Unix()
|
|
res, err := getScaledInt(f.Field, v)
|
|
if err != nil {
|
|
t.Errorf("got error %v, expected nil", err)
|
|
}
|
|
if !reflect.DeepEqual(res, v) {
|
|
t.Errorf("expected %v, got %v", v, res)
|
|
}
|
|
|
|
}
|
|
|
|
func TestDistinctTimestampUnion(t *testing.T) {
|
|
cases := []struct {
|
|
name string
|
|
a DistinctTimestamp
|
|
b DistinctTimestamp
|
|
expected DistinctTimestamp
|
|
}{
|
|
{
|
|
name: "empty other",
|
|
a: DistinctTimestamp{Name: "a", Values: []string{"a", "b", "c"}},
|
|
b: DistinctTimestamp{Name: "a", Values: []string{}},
|
|
expected: DistinctTimestamp{Name: "a", Values: []string{"a", "b", "c"}},
|
|
},
|
|
{
|
|
name: "one more in other",
|
|
a: DistinctTimestamp{Name: "a", Values: []string{"a", "b", "c"}},
|
|
b: DistinctTimestamp{Name: "a", Values: []string{"a", "b", "c", "d"}},
|
|
expected: DistinctTimestamp{Name: "a", Values: []string{"a", "b", "c", "d"}},
|
|
},
|
|
}
|
|
for _, test := range cases {
|
|
t.Run(test.name, func(t *testing.T) {
|
|
res := test.a.Union(test.b)
|
|
allThere := true
|
|
for _, val := range res.Values {
|
|
here := false
|
|
for _, expected := range test.expected.Values {
|
|
if val == expected {
|
|
here = true
|
|
break
|
|
}
|
|
}
|
|
allThere = allThere && here
|
|
}
|
|
if !allThere {
|
|
t.Errorf("expected %v, got %v", test.expected, res)
|
|
}
|
|
})
|
|
}
|
|
}
|
|
|
|
func TestExecutor_DeleteRows(t *testing.T) {
|
|
path, _ := testhook.TempDir(t, "pilosa-executor-")
|
|
holder := NewHolder(path, mustHolderConfig())
|
|
defer holder.Close()
|
|
|
|
if err := holder.Open(); err != nil {
|
|
t.Fatalf("opening holder: %v", err)
|
|
}
|
|
|
|
idx, err := holder.CreateIndex("i", IndexOptions{TrackExistence: true})
|
|
if err != nil {
|
|
t.Fatalf("creating index: %v", err)
|
|
}
|
|
|
|
f, err := idx.CreateField("f", OptFieldTypeDefault())
|
|
if err != nil {
|
|
t.Fatalf("creating field: %v", err)
|
|
}
|
|
|
|
qcx := idx.Txf().NewWritableQcx()
|
|
defer qcx.Abort()
|
|
if _, err = f.SetBit(qcx, 1, 1, nil); err != nil {
|
|
t.Fatalf("setting bit: %v", err)
|
|
}
|
|
|
|
// We rely here on the fact that write Qcx autocommit constantly.
|
|
row, err := f.Row(qcx, 1)
|
|
if err != nil {
|
|
t.Fatalf("failed to read row: %v", err)
|
|
}
|
|
|
|
ctx := context.Background()
|
|
changed, err := DeleteRows(ctx, row, idx, 0)
|
|
if !changed || err != nil {
|
|
t.Fatalf("failed to delete row: %v", err)
|
|
}
|
|
|
|
changed, err = DeleteRows(ctx, row, idx, 0)
|
|
if changed {
|
|
t.Fatalf("expected delete to not clear bit but it did")
|
|
}
|
|
}
|