featurebase/api_test.go
Seebs cecaf99ee4 testhook: leak auditing infrastructure
The testhook/ package provides an easy way to set up multiple
hooks to run before/after tests are run.

The audit hooks track open and closes of storage backends,
files, indexes, and holders, for example. A tempdir wrapper
creates temporary directories which are automatically cleaned up
when the test ends. Any kind of resource creation that
should be closed at test conclusion can be tracked. We
will complain at the end of the TestMain if resources are
leaking.

Leaks under go1.13:

We use a wrapper function which is a no-op for go 1.13, but actually
calls testing.TB.Cleanup in go1.14, so we can still build with 1.13 even though
tests will leak files all over the place there. Because of this,
don't run the testhook tests when using 1.13, as they'll always fail.

- the test/pilosa.go http client now times out after 10 seconds
to help diagnose hung server situations.

- Makefile targets added to get better progress reports.
2020-08-24 11:26:39 -05:00

600 lines
17 KiB
Go

// Copyright 2017 Pilosa Corp.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package pilosa_test
import (
"context"
"fmt"
"math"
"reflect"
"strconv"
"strings"
"testing"
"time"
"github.com/pilosa/pilosa/v2"
"github.com/pilosa/pilosa/v2/boltdb"
"github.com/pilosa/pilosa/v2/http"
"github.com/pilosa/pilosa/v2/server"
"github.com/pilosa/pilosa/v2/test"
)
// attrFun defines a mapping from columnID -> attr value
func attrFun(id uint64) string {
//return fmt.Sprintf("%x", md5.Sum([]byte(strconv.FormatInt(int64(id), 10))))
return strconv.FormatInt(int64(id), 10)
}
func TestAPI_ImportColumnAttrs(t *testing.T) {
/*
columns seconds
100 1.150
1000 1.568
10000 5.156
100000 38.179
*/
c := test.MustRunCluster(t, 2,
[]server.CommandOption{
server.OptCommandServerOptions(
pilosa.OptServerNodeID("node0"),
pilosa.OptServerClusterHasher(&offsetModHasher{}),
)},
[]server.CommandOption{
server.OptCommandServerOptions(
pilosa.OptServerNodeID("node1"),
pilosa.OptServerClusterHasher(&offsetModHasher{}),
)},
)
defer c.Close()
m0 := c.GetNode(0)
m1 := c.GetNode(1)
t.Run("ImportColumnAttrs", func(t *testing.T) {
ctx := context.Background()
indexName := "i"
fieldName := "f"
attrKey := "k"
index, err := m0.API.CreateIndex(ctx, indexName, pilosa.IndexOptions{})
if err != nil {
t.Fatalf("creating index: %v", err)
}
_, err = m0.API.CreateField(ctx, indexName, fieldName)
if err != nil {
t.Fatalf("creating field: %v", err)
}
// Generate some attrs for two shards
numAttrs := 100
columnIDs0 := make([]uint64, 0, numAttrs)
attrVals0 := make([]string, 0, numAttrs)
columnIDs1 := make([]uint64, 0, numAttrs)
attrVals1 := make([]string, 0, numAttrs)
for n := 0; n < 1000000; n += 1000000 / numAttrs {
columnIDs0 = append(columnIDs0, uint64(n))
val0 := attrFun(uint64(n))
attrVals0 = append(attrVals0, val0)
setPql0 := fmt.Sprintf("Set(%d, %s=0) ", n, fieldName)
if _, err := m0.API.Query(ctx, &pilosa.QueryRequest{Index: indexName, Query: setPql0}); err != nil {
t.Fatal(err)
}
columnIDs1 = append(columnIDs1, uint64(n+ShardWidth))
val1 := attrFun(uint64(n + ShardWidth))
attrVals1 = append(attrVals1, val1)
setPql1 := fmt.Sprintf("Set(%d, %s=0) ", n+ShardWidth, fieldName)
if _, err := m1.API.Query(ctx, &pilosa.QueryRequest{Index: indexName, Query: setPql1}); err != nil {
t.Fatal(err)
}
}
// send shard0 to node1
req := &pilosa.ImportColumnAttrsRequest{
AttrKey: attrKey,
ColumnIDs: columnIDs0,
AttrVals: attrVals0,
Shard: 0,
Index: indexName,
IndexCreatedAt: index.CreatedAt(),
}
if err := m1.API.ImportColumnAttrs(ctx, req); err != nil {
t.Fatal(err)
}
// send shard1 to node0
req = &pilosa.ImportColumnAttrsRequest{
AttrKey: attrKey,
ColumnIDs: columnIDs1,
AttrVals: attrVals1,
Shard: 1,
Index: indexName,
IndexCreatedAt: index.CreatedAt(),
}
if err := m0.API.ImportColumnAttrs(ctx, req); err != nil {
t.Fatal(err)
}
// Query node0.
pql := fmt.Sprintf("Options(Row(%s=0), columnAttrs=true)", fieldName)
res, err := m0.API.Query(ctx, &pilosa.QueryRequest{Index: indexName, Query: pql})
if err != nil {
t.Fatal(err)
}
m := len(res.ColumnAttrSets)
if m != 100 {
t.Fatalf("incorrect number of column attrs set; m = %v", m)
}
for _, v := range res.ColumnAttrSets {
attrVal := attrFun(v.ID)
if attrVal != v.Attrs[attrKey] {
t.Fatal(err)
}
}
// Query node1.
pql = fmt.Sprintf("Options(Row(%s=0), columnAttrs=true)", fieldName)
res, err = m1.API.Query(ctx, &pilosa.QueryRequest{Index: indexName, Query: pql})
if err != nil {
t.Fatal(err)
}
if len(res.ColumnAttrSets) != 100 {
t.Fatal("incorrect number of column attrs set")
}
for _, v := range res.ColumnAttrSets {
attrVal := attrFun(v.ID)
if attrVal != v.Attrs[attrKey] {
t.Fatal(err)
}
}
})
}
func TestAPI_Import(t *testing.T) {
c := test.MustRunCluster(t, 2,
[]server.CommandOption{
server.OptCommandServerOptions(
pilosa.OptServerNodeID("node0"),
pilosa.OptServerClusterHasher(&offsetModHasher{}),
pilosa.OptServerOpenTranslateStore(boltdb.OpenTranslateStore),
pilosa.OptServerOpenTranslateReader(http.GetOpenTranslateReaderFunc(nil)),
)},
[]server.CommandOption{
server.OptCommandServerOptions(
pilosa.OptServerNodeID("node1"),
pilosa.OptServerClusterHasher(&offsetModHasher{}),
pilosa.OptServerOpenTranslateStore(boltdb.OpenTranslateStore),
pilosa.OptServerOpenTranslateReader(http.GetOpenTranslateReaderFunc(nil)),
)},
)
defer c.Close()
m0 := c.GetNode(0)
m1 := c.GetNode(1)
t.Run("RowIDColumnKey", func(t *testing.T) {
ctx := context.Background()
indexName := "rick"
fieldName := "f"
index, err := m0.API.CreateIndex(ctx, indexName, pilosa.IndexOptions{Keys: true, TrackExistence: true})
if err != nil {
t.Fatalf("creating index: %v", err)
}
if index.CreatedAt() == 0 {
t.Fatal("index createdAt is empty")
}
field, err := m0.API.CreateField(ctx, indexName, fieldName, pilosa.OptFieldTypeSet(pilosa.DefaultCacheType, 100))
if err != nil {
t.Fatalf("creating field: %v", err)
}
if field.CreatedAt() == 0 {
t.Fatal("field createdAt is empty")
}
rowID := uint64(1)
timestamp := int64(0)
// Generate some keyed records.
rowIDs := []uint64{}
timestamps := []int64{}
for i := 1; i <= 10; i++ {
rowIDs = append(rowIDs, rowID)
timestamps = append(timestamps, timestamp)
}
// Keys are sharded so ordering is not guaranteed.
colKeys := []string{"col10", "col8", "col9", "col6", "col7", "col4", "col5", "col2", "col3", "col1"}
// Import data with keys to the coordinator (node0) and verify that it gets
// translated and forwarded to the owner of shard 0 (node1; because of offsetModHasher)
req := &pilosa.ImportRequest{
Index: indexName,
IndexCreatedAt: index.CreatedAt(),
Field: fieldName,
FieldCreatedAt: field.CreatedAt(),
Shard: 0,
RowIDs: rowIDs,
ColumnKeys: colKeys,
Timestamps: timestamps,
}
if err := m0.API.Import(ctx, req); err != nil {
t.Fatal(err)
}
pql := fmt.Sprintf("Row(%s=%d)", fieldName, rowID)
// Query node0.
if res, err := m0.API.Query(ctx, &pilosa.QueryRequest{Index: indexName, Query: pql}); err != nil {
t.Fatal(err)
} else if keys := res.Results[0].(*pilosa.Row).Keys; !reflect.DeepEqual(keys, colKeys) {
t.Fatalf("unexpected column keys: %#v", keys)
}
// Query node1.
if err := test.RetryUntil(5*time.Second, func() error {
if res, err := m1.API.Query(ctx, &pilosa.QueryRequest{Index: indexName, Query: pql}); err != nil {
return err
} else if keys := res.Results[0].(*pilosa.Row).Keys; !reflect.DeepEqual(keys, colKeys) {
return fmt.Errorf("unexpected column keys: %#v", keys)
}
return nil
}); err != nil {
t.Fatal(err)
}
})
// Relies on the previous test creating an index with TrackExistence and
// adding some data.
t.Run("SchemaHasNoExists", func(t *testing.T) {
schema := m1.API.Schema(context.Background())
for _, f := range schema[0].Fields {
if f.Name == "_exists" {
t.Fatalf("found _exists field in schema")
}
if strings.HasPrefix(f.Name, "_") {
t.Fatalf("found internal field '%s' in schema output", f.Name)
}
}
})
}
func TestAPI_ImportValue(t *testing.T) {
c := test.MustRunCluster(t, 2,
[]server.CommandOption{
server.OptCommandServerOptions(
pilosa.OptServerNodeID("node0"),
pilosa.OptServerClusterHasher(&offsetModHasher{}),
pilosa.OptServerOpenTranslateReader(http.GetOpenTranslateReaderFunc(nil)),
)},
[]server.CommandOption{
server.OptCommandServerOptions(
pilosa.OptServerNodeID("node1"),
pilosa.OptServerClusterHasher(&offsetModHasher{}),
pilosa.OptServerOpenTranslateReader(http.GetOpenTranslateReaderFunc(nil)),
)},
)
defer c.Close()
m0 := c.GetNode(0)
m1 := c.GetNode(1)
t.Run("ValColumnKey", func(t *testing.T) {
ctx := context.Background()
index := "valck"
field := "f"
_, err := m0.API.CreateIndex(ctx, index, pilosa.IndexOptions{Keys: true})
if err != nil {
t.Fatalf("creating index: %v", err)
}
_, err = m0.API.CreateField(ctx, index, field, pilosa.OptFieldTypeInt(math.MinInt64, math.MaxInt64))
if err != nil {
t.Fatalf("creating field: %v", err)
}
// Generate some keyed records.
values := []int64{}
for i := 1; i <= 10; i++ {
values = append(values, int64(i))
}
// Column keys are sharded so their order is not guaranteed.
colKeys := []string{"col10", "col8", "col9", "col6", "col7", "col4", "col5", "col2", "col3", "col1"}
// Import data with keys to the coordinator (node0) and verify that it gets
// translated and forwarded to the owner of shard 0 (node1; because of offsetModHasher)
req := &pilosa.ImportValueRequest{
Index: index,
Field: field,
ColumnKeys: colKeys,
Values: values,
}
if err := m0.API.ImportValue(ctx, req); err != nil {
t.Fatal(err)
}
pql := fmt.Sprintf("Row(%s>0)", field)
// Query node0.
if res, err := m0.API.Query(ctx, &pilosa.QueryRequest{Index: index, Query: pql}); err != nil {
t.Fatal(err)
} else if keys := res.Results[0].(*pilosa.Row).Keys; !reflect.DeepEqual(keys, colKeys) {
t.Fatalf("unexpected column keys: %+v", keys)
}
// Query node1.
if err := test.RetryUntil(5*time.Second, func() error {
if res, err := m1.API.Query(ctx, &pilosa.QueryRequest{Index: index, Query: pql}); err != nil {
return err
} else if keys := res.Results[0].(*pilosa.Row).Keys; !reflect.DeepEqual(keys, colKeys) {
return fmt.Errorf("unexpected column keys: %+v", keys)
}
return nil
}); err != nil {
t.Fatal(err)
}
})
t.Run("ValDecimalField", func(t *testing.T) {
ctx := context.Background()
index := "valdec"
field := "fdec"
_, err := m1.API.CreateIndex(ctx, index, pilosa.IndexOptions{})
if err != nil {
t.Fatalf("creating index: %v", err)
}
_, err = m1.API.CreateField(ctx, index, field, pilosa.OptFieldTypeDecimal(1))
if err != nil {
t.Fatalf("creating field: %v", err)
}
// Generate some keyed records.
values := []float64{}
colIDs := []uint64{}
for i := 0; i < 10; i++ {
values = append(values, float64(i)+0.1)
colIDs = append(colIDs, uint64(i))
}
// Import data with keys to the coordinator (node0) and verify that it gets
// translated and forwarded to the owner of shard 0 (node1; because of offsetModHasher)
req := &pilosa.ImportValueRequest{
Index: index,
Field: field,
ColumnIDs: colIDs,
FloatValues: values,
}
if err := m1.API.ImportValue(ctx, req); err != nil {
t.Fatal(err)
}
query := fmt.Sprintf("Row(%s>6)", field)
// Query node0.
if res, err := m0.API.Query(ctx, &pilosa.QueryRequest{Index: index, Query: query}); err != nil {
t.Fatal(err)
} else if ids := res.Results[0].(*pilosa.Row).Columns(); !reflect.DeepEqual(ids, colIDs[6:]) {
t.Fatalf("unexpected column keys: %+v", ids)
}
})
t.Run("ValDecimalFieldNegativeScale", func(t *testing.T) {
ctx := context.Background()
index := "valdecneg"
field := "fdecneg"
_, err := m0.API.CreateIndex(ctx, index, pilosa.IndexOptions{})
if err != nil {
t.Fatalf("creating index: %v", err)
}
_, err = m0.API.CreateField(ctx, index, field, pilosa.OptFieldTypeDecimal(-1))
if err == nil {
t.Fatal("expected error creating field")
}
})
t.Run("ValStringField", func(t *testing.T) {
ctx := context.Background()
index := "valstr"
field := "fstr"
fgnIndex := "fgnvalstr"
_, err := m0.API.CreateIndex(ctx, index, pilosa.IndexOptions{})
if err != nil {
t.Fatalf("creating index: %v", err)
}
_, err = m0.API.CreateIndex(ctx, fgnIndex, pilosa.IndexOptions{Keys: true})
if err != nil {
t.Fatalf("creating foreign index: %v", err)
}
_, err = m0.API.CreateField(ctx, index, field,
pilosa.OptFieldTypeInt(0, math.MaxInt64),
pilosa.OptFieldForeignIndex(fgnIndex),
)
if err != nil {
t.Fatalf("creating field: %v", err)
}
// Generate some keyed records.
values := []string{}
colIDs := []uint64{}
for i := 0; i < 10; i++ {
value := fmt.Sprintf("strval-%d", (i)*100+10)
values = append(values, value)
colIDs = append(colIDs, uint64(i))
}
// Import data with keys to the coordinator (node0) and verify that it gets
// translated and forwarded to the owner of shard 0 (node1; because of offsetModHasher)
req := &pilosa.ImportValueRequest{
Index: index,
Field: field,
ColumnIDs: colIDs,
StringValues: values,
}
if err := m0.API.ImportValue(ctx, req); err != nil {
t.Fatal(err)
}
pql := fmt.Sprintf(`Row(%s=="strval-110")`, field)
// Query node0.
if res, err := m0.API.Query(ctx, &pilosa.QueryRequest{Index: index, Query: pql}); err != nil {
t.Fatal(err)
} else if ids := res.Results[0].(*pilosa.Row).Columns(); !reflect.DeepEqual(ids, []uint64{1}) {
t.Fatalf("unexpected columns: %+v", ids)
}
})
}
// offsetModHasher represents a simple, mod-based hashing offset by 1.
type offsetModHasher struct{}
func (*offsetModHasher) Hash(key uint64, n int) int {
return int(key+1) % n
}
func TestAPI_ClearFlagForImportAndImportValues(t *testing.T) {
c := test.MustRunCluster(t, 1,
[]server.CommandOption{
server.OptCommandServerOptions(
pilosa.OptServerNodeID("node0"),
pilosa.OptServerClusterHasher(&offsetModHasher{}),
pilosa.OptServerOpenTranslateReader(http.GetOpenTranslateReaderFunc(nil)),
)},
)
defer c.Close()
// plan:
// 1. set a bit
// 2. clear with Import() using the ImportRequest.Clear flag
// 3. verifiy the clear is done.
// repeat for ImportValueRequest and ImportValues()
m0 := c.GetNode(0)
m0api := m0.API
ctx := context.Background()
index := "i"
fieldAcct0 := "acct0"
opts := pilosa.OptFieldTypeInt(-1000, 1000)
_, err := m0api.CreateIndex(ctx, index, pilosa.IndexOptions{})
if err != nil {
t.Fatalf("creating index: %v", err)
}
_, err = m0api.CreateField(ctx, index, fieldAcct0, opts)
if err != nil {
t.Fatalf("creating fieldAcct0: %v", err)
}
iraField := "ira" // set field.
iraRowID := uint64(3)
_, err = m0api.CreateField(ctx, index, iraField)
if err != nil {
t.Fatalf("creating fieldIRA: %v", err)
}
acctOwnerID := uint64(78) // ColumnID
shard := acctOwnerID / ShardWidth
acct0bal := int64(500)
ivr0 := &pilosa.ImportValueRequest{
Index: index,
Field: fieldAcct0,
Shard: shard,
ColumnIDs: []uint64{acctOwnerID},
Values: []int64{acct0bal},
}
ir0 := &pilosa.ImportRequest{
Index: index,
Field: iraField,
Shard: shard,
ColumnIDs: []uint64{acctOwnerID},
RowIDs: []uint64{iraRowID},
}
if err := m0api.Import(ctx, ir0); err != nil {
t.Fatal(err)
}
if err := m0api.ImportValue(ctx, ivr0); err != nil {
t.Fatal(err)
}
bitIsSet := func() bool {
query := fmt.Sprintf("Row(%v=%v)", iraField, iraRowID)
res, err := m0api.Query(context.Background(), &pilosa.QueryRequest{Index: index, Query: query})
panicOn(err)
cols := res.Results[0].(*pilosa.Row).Columns()
for i := range cols {
if cols[i] == acctOwnerID {
return true
}
}
return false
}
if !bitIsSet() {
panic("IRA bit should have been set")
}
queryAcct := func(m0api *pilosa.API, acctOwnerID uint64, fieldAcct0, index string) (acctBal int64) {
query := fmt.Sprintf("FieldValue(field=%v, column=%v)", fieldAcct0, acctOwnerID)
res, err := m0api.Query(context.Background(), &pilosa.QueryRequest{Index: index, Query: query})
panicOn(err)
if len(res.Results) == 0 {
return 0
}
valCount := res.Results[0].(pilosa.ValCount)
return valCount.Val
}
bal := queryAcct(m0api, acctOwnerID, fieldAcct0, index)
if bal != acct0bal {
panic(fmt.Sprintf("expected %v, observed %v starting acct0 balance", acct0bal, bal))
}
// clear the bit
ir0.Clear = true
if err := m0api.Import(ctx, ir0); err != nil {
t.Fatal(err)
}
if bitIsSet() {
panic("IRA bit should have been cleared")
}
// clear the BSI
ivr0.Clear = true
if err := m0api.ImportValue(ctx, ivr0); err != nil {
t.Fatal(err)
}
bal = queryAcct(m0api, acctOwnerID, fieldAcct0, index)
if bal != 0 {
panic(fmt.Sprintf("expected %v, observed %v starting acct0 balance", acct0bal, 0))
}
}