featurebase/http/client_test.go
Seebs d4b06d077e Import/ImportValue API rework and improvements
Underlying goal: Don't use the http client to send messages back to the
local host. Also, when sending data to other nodes, don't collate it
from an ImportRequest into a completely different format, then immediately
collate that back into an ImportRequest. This does require changing
the logic over in ctl/import to make it create an ImportRequest.

Also, add additional testing to make sure we're actually trying anything
at all with several combinations (such as submitting import requests
which don't match the configuration of index or field), and improve
test coverage for that.

This introduces the ability to tell an http/client InternalClient about
a specific API that it should use for local queries where applicable.
That's not implemented outside of the import stuff, but should probably
be applied eventually to other things that are trying to talk to many
nodes one of which may be the local node. That behavior is contingent
on passing in a Qcx, because it is implicitly tied to an existing
execution context, and it can't assume that it can create a new one,
because that could deadlock.
2021-11-05 13:06:38 -05:00

1544 lines
50 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 http_test
import (
"bufio"
"bytes"
"context"
"encoding/hex"
"fmt"
gohttp "net/http"
"reflect"
"strings"
"testing"
"time"
"github.com/davecgh/go-spew/spew"
"github.com/molecula/featurebase/v2"
"github.com/molecula/featurebase/v2/http"
"github.com/molecula/featurebase/v2/pql"
"github.com/molecula/featurebase/v2/server"
"github.com/molecula/featurebase/v2/test"
"github.com/molecula/featurebase/v2/topology"
"github.com/pkg/errors"
)
// Test distributed TopN Row count across 3 nodes.
func TestClient_MultiNode(t *testing.T) {
c := test.MustRunCluster(t, 3,
[]server.CommandOption{
server.OptCommandServerOptions(pilosa.OptServerNodeID("node0"), pilosa.OptServerClusterHasher(&test.ModHasher{}))},
[]server.CommandOption{
server.OptCommandServerOptions(pilosa.OptServerNodeID("node1"), pilosa.OptServerClusterHasher(&test.ModHasher{}))},
[]server.CommandOption{
server.OptCommandServerOptions(pilosa.OptServerNodeID("node2"), pilosa.OptServerClusterHasher(&test.ModHasher{}))},
)
defer c.Close()
hldr0 := c.GetHolder(0)
hldr1 := c.GetHolder(1)
hldr2 := c.GetHolder(2)
// Create a dispersed set of bitmaps across 3 nodes such that each
// individual node and shard width increment would reveal a different TopN.
shardNums := []uint64{1, 2, 6}
// This was generated with:
// `owns := s[i].Handler.Handler.API.Cluster.OwnsShards("i", 20, s[i].HostURI())`
owns := [][]uint64{
{1, 3, 4, 8, 10, 13, 17, 19},
{2, 5, 7, 11, 12, 14, 18},
{0, 6, 9, 15, 16, 20},
}
for i, num := range shardNums {
ownsNum := false
for _, ownNum := range owns[i] {
if ownNum == num {
ownsNum = true
break
}
}
if !ownsNum {
t.Fatalf("Trying to use shard %d on host %s, but it doesn't own that shard. It owns %v", num, c.GetNode(i).URL(), owns)
}
}
baseBit0 := pilosa.ShardWidth * shardNums[0]
baseBit1 := pilosa.ShardWidth * shardNums[1]
baseBit2 := pilosa.ShardWidth * shardNums[2]
maxShard := uint64(0)
for _, x := range shardNums {
if x > maxShard {
maxShard = x
}
}
_, err := c.GetNode(0).API.CreateIndex(context.Background(), "i", pilosa.IndexOptions{})
if err != nil {
t.Fatalf("creating index: %v", err)
}
_, err = c.GetNode(0).API.CreateField(context.Background(), "i", "f", pilosa.OptFieldTypeSet(pilosa.DefaultCacheType, 100))
if err != nil {
t.Fatalf("creating field: %v", err)
}
hldr0.MustSetBits("i", "f", 100, baseBit0+10)
hldr0.MustSetBits("i", "f", 4, baseBit0+10, baseBit0+11, baseBit0+12)
hldr0.MustSetBits("i", "f", 4, baseBit0+10, baseBit0+11, baseBit0+12, baseBit0+13, baseBit0+14, baseBit0+15)
hldr0.MustSetBits("i", "f", 2, baseBit0+1, baseBit0+2, baseBit0+3, baseBit0+4)
hldr0.MustSetBits("i", "f", 3, baseBit0+1, baseBit0+2, baseBit0+3, baseBit0+4, baseBit0+5)
hldr0.MustSetBits("i", "f", 22, baseBit0+1, baseBit0+2)
hldr1.MustSetBits("i", "f", 99, baseBit1+1, baseBit1+2, baseBit1+3, baseBit1+4)
hldr1.MustSetBits("i", "f", 100, baseBit1+1, baseBit1+2, baseBit1+3, baseBit1+4, baseBit1+5, baseBit1+6, baseBit1+7, baseBit1+8, baseBit1+9, baseBit1+10)
hldr1.MustSetBits("i", "f", 98, baseBit1+1, baseBit1+2, baseBit1+3, baseBit1+4, baseBit1+5, baseBit1+6)
hldr1.MustSetBits("i", "f", 1, baseBit1+4)
hldr1.MustSetBits("i", "f", 22, baseBit1+1, baseBit1+2, baseBit1+3, baseBit1+4, baseBit1+5)
hldr2.MustSetBits("i", "f", 24, baseBit2+10, baseBit2+11, baseBit2+12, baseBit2+13, baseBit2+14)
hldr2.MustSetBits("i", "f", 20, baseBit2+10, baseBit2+11, baseBit2+12, baseBit2+13)
hldr2.MustSetBits("i", "f", 21, baseBit2+10)
hldr2.MustSetBits("i", "f", 100, baseBit2+10)
hldr2.MustSetBits("i", "f", 99, baseBit2+10, baseBit2+11, baseBit2+12)
hldr2.MustSetBits("i", "f", 98, baseBit2+10, baseBit2+11)
hldr2.MustSetBits("i", "f", 22, baseBit2+10, baseBit2+11, baseBit2+12)
// Rebuild the RankCache.
// We have to do this to avoid the 10-second cache invalidation delay
// built into cache.Invalidate()
err = c.GetNode(0).RecalculateCaches(t)
if err != nil {
t.Fatalf("recalculating cache: %v", err)
}
err = c.GetNode(1).RecalculateCaches(t)
if err != nil {
t.Fatalf("recalculating cache: %v", err)
}
err = c.GetNode(2).RecalculateCaches(t)
if err != nil {
t.Fatalf("recalculating cache: %v", err)
}
// Connect to each node to compare results.
client := make([]*Client, 3)
client[0] = MustNewClient(c.GetNode(0).URL(), http.GetHTTPClient(nil))
client[1] = MustNewClient(c.GetNode(1).URL(), http.GetHTTPClient(nil))
client[2] = MustNewClient(c.GetNode(2).URL(), http.GetHTTPClient(nil))
topN := 4
queryRequest := &pilosa.QueryRequest{
Query: fmt.Sprintf(`TopN(f, n=%d)`, topN),
Remote: false,
}
result, err := client[0].Query(context.Background(), "i", queryRequest)
if err != nil {
t.Fatal(err)
}
// Test must return exactly N results.
pairsField := result.Results[0].(*pilosa.PairsField)
if len(pairsField.Pairs) != topN {
t.Fatalf("unexpected number of TopN results: %s", spew.Sdump(result))
}
p := []pilosa.Pair{
{ID: 100, Count: 12},
{ID: 22, Count: 10},
{ID: 98, Count: 8},
{ID: 99, Count: 7}}
// Valdidate the Top 4 result counts.
if !reflect.DeepEqual(pairsField.Pairs, p) {
t.Fatalf("Invalid TopN result set: %s", spew.Sdump(result))
}
result1, err := client[1].Query(context.Background(), "i", queryRequest)
if err != nil {
t.Fatal(err)
}
result2, err := client[2].Query(context.Background(), "i", queryRequest)
if err != nil {
t.Fatal(err)
}
// Compare TopN results across all nodes in the cluster.
if !reflect.DeepEqual(result, result1) {
t.Fatalf("TopN result should be the same on node0 and node1: %s", spew.Sdump(result1))
}
if !reflect.DeepEqual(result, result2) {
t.Fatalf("TopN result should be the same on node0 and node2: %s", spew.Sdump(result2))
}
}
// Ensure client can export data.
func TestClient_Export(t *testing.T) {
cluster := test.MustRunCluster(t, 1)
defer cluster.Close()
cmd := cluster.GetNode(0)
host := cmd.URL()
cmd.MustCreateIndex(t, "keyed", pilosa.IndexOptions{Keys: true})
cmd.MustCreateIndex(t, "unkeyed", pilosa.IndexOptions{Keys: false})
cmd.MustCreateField(t, "keyed", "keyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 1000), pilosa.OptFieldKeys())
cmd.MustCreateField(t, "keyed", "unkeyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 1000))
cmd.MustCreateField(t, "unkeyed", "keyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 1000), pilosa.OptFieldKeys())
cmd.MustCreateField(t, "unkeyed", "unkeyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 1000))
c := MustNewClient(host, http.GetHTTPClient(nil))
data := []pilosa.Bit{
{RowID: 1, ColumnID: 100, RowKey: "row1", ColumnKey: "col100"},
{RowID: 1, ColumnID: 101, RowKey: "row1", ColumnKey: "col101"},
{RowID: 1, ColumnID: 102, RowKey: "row1", ColumnKey: "col102"},
{RowID: 1, ColumnID: 103, RowKey: "row1", ColumnKey: "col103"},
{RowID: 2, ColumnID: 200, RowKey: "row2", ColumnKey: "col200"},
{RowID: 2, ColumnID: 201, RowKey: "row2", ColumnKey: "col201"},
{RowID: 2, ColumnID: 202, RowKey: "row2", ColumnKey: "col202"},
{RowID: 2, ColumnID: 203, RowKey: "row2", ColumnKey: "col203"},
}
t.Run("Export unkeyed,unkeyedf", func(t *testing.T) {
// Populate data.
for _, bit := range data {
_, err := c.Query(context.Background(), "unkeyed", &pilosa.QueryRequest{
Query: fmt.Sprintf(`Set(%d, unkeyedf=%d)`, bit.ColumnID, bit.RowID),
Remote: false,
})
if err != nil {
t.Fatal(err)
}
}
buf := bytes.NewBuffer(nil)
bw := bufio.NewWriter(buf)
// Send export request.
if err := c.ExportCSV(context.Background(), "unkeyed", "unkeyedf", 0, bw); err != nil {
t.Fatal(err)
}
got := buf.String()
// Expected output.
exp := ""
for _, bit := range data {
exp += fmt.Sprintf("%d,%d\n", bit.RowID, bit.ColumnID)
}
// Verify data.
if got != exp {
t.Fatalf("unexpected export data: %s", got)
}
})
t.Run("Export unkeyed,keyedf", func(t *testing.T) {
// Populate data.
for _, bit := range data {
_, err := c.Query(context.Background(), "unkeyed", &pilosa.QueryRequest{
Query: fmt.Sprintf(`Set(%d, keyedf=%s)`, bit.ColumnID, bit.RowKey),
Remote: false,
})
if err != nil {
t.Fatal(err)
}
}
buf := bytes.NewBuffer(nil)
bw := bufio.NewWriter(buf)
// Send export request.
if err := c.ExportCSV(context.Background(), "unkeyed", "keyedf", 0, bw); err != nil {
t.Fatal(err)
}
got := buf.String()
// Expected output.
exp := ""
for _, bit := range data {
exp += fmt.Sprintf("%s,%d\n", bit.RowKey, bit.ColumnID)
}
// Verify data.
if got != exp {
t.Fatalf("unexpected export data: %s", got)
}
})
t.Run("Export keyed,unkeyedf", func(t *testing.T) {
// Populate data.
for _, bit := range data {
_, err := c.Query(context.Background(), "keyed", &pilosa.QueryRequest{
Query: fmt.Sprintf(`Set("%s", unkeyedf=%d)`, bit.ColumnKey, bit.RowID),
Remote: false,
})
if err != nil {
t.Fatal(err)
}
}
buf := bytes.NewBuffer(nil)
bw := bufio.NewWriter(buf)
// Send export request for every partition.
for i := 0; i < topology.DefaultPartitionN; i++ {
if err := c.ExportCSV(context.Background(), "keyed", "unkeyedf", uint64(i), bw); err != nil {
t.Fatal(err)
}
}
got := buf.String()
// Expected output is not sorted because of key sharding.
exp := "" +
"2,col200\n" +
"2,col201\n" +
"2,col202\n" +
"2,col203\n" +
"1,col103\n" +
"1,col102\n" +
"1,col101\n" +
"1,col100\n"
// Verify data.
if got != exp {
t.Fatalf("unexpected export data: %q, expected %q", got, exp)
}
})
t.Run("Export keyed,keyedf", func(t *testing.T) {
// Populate data.
for _, bit := range data {
_, err := c.Query(context.Background(), "keyed", &pilosa.QueryRequest{
Query: fmt.Sprintf(`Set("%s", keyedf=%s)`, bit.ColumnKey, bit.RowKey),
Remote: false,
})
if err != nil {
t.Fatal(err)
}
}
buf := bytes.NewBuffer(nil)
bw := bufio.NewWriter(buf)
// Send export request.
for i := 0; i < topology.DefaultPartitionN; i++ {
if err := c.ExportCSV(context.Background(), "keyed", "keyedf", uint64(i), bw); err != nil {
t.Fatal(err)
}
}
got := buf.String()
// Expected output is unsorted because of key sharding.
exp := "" +
"row2,col200\n" +
"row2,col201\n" +
"row2,col202\n" +
"row2,col203\n" +
"row1,col103\n" +
"row1,col102\n" +
"row1,col101\n" +
"row1,col100\n"
// Verify data.
if got != exp {
t.Fatalf("unexpected export data: %q, expected %q", got, exp)
}
})
}
// Ensure client can bulk import data.
func TestClient_Import(t *testing.T) {
// Need a cluster to verify hitting multiple nodes
cluster := test.MustRunCluster(t, 3)
defer cluster.Close()
cmd := cluster.GetNode(0)
host := cmd.URL()
api := cmd.API
cmd.MustCreateIndex(t, "keyed", pilosa.IndexOptions{Keys: true})
cmd.MustCreateIndex(t, "unkeyed", pilosa.IndexOptions{Keys: false})
cmd.MustCreateField(t, "keyed", "keyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeNone, 0), pilosa.OptFieldKeys())
cmd.MustCreateField(t, "keyed", "unkeyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeNone, 0))
cmd.MustCreateField(t, "unkeyed", "keyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeNone, 0), pilosa.OptFieldKeys())
cmd.MustCreateField(t, "unkeyed", "unkeyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeNone, 0))
indexes := map[bool]string{true: "keyed", false: "unkeyed"}
fields := map[bool]string{true: "keyedf", false: "unkeyedf"}
recKeys := []string{"rec-a", "rec-b", "rec-c"}
valueKeys := []string{"val-a", "val-b", "val-c"}
recIDs := []uint64{0, 3, 7}
valueIDs := []uint64{0, 3, 7}
c := MustNewClient(host, http.GetHTTPClient(nil))
// set API to point at the local node
c.SetInternalAPI(cmd.API)
checkResults := func(results pilosa.QueryResponse, keyed bool, maxN int) {
for i, r := range results.Results {
row, ok := r.(*pilosa.Row)
if !ok {
t.Fatalf("expected row, got %T", r)
}
if i >= maxN {
// we cleared these, so they should be empty
if keyed {
vals := row.Keys
if len(vals) != 0 {
t.Fatalf("expected empty row, got %d result(s) back, first result %q",
len(vals), vals[0])
}
} else {
vals := row.Columns()
if len(vals) != 0 {
t.Fatalf("expected empty row, got %d result(s) back, first result %d",
len(vals), vals[0])
}
}
return
}
if keyed {
vals := row.Keys
if len(vals) != 1 {
t.Fatalf("expected one result, didn't get it")
}
if vals[0] != recKeys[i] {
t.Fatalf("expected %q, got %q", recKeys[i], vals[0])
}
} else {
vals := row.Columns()
if len(vals) != 1 {
t.Fatalf("expected one result, didn't get it")
}
if vals[0] != recIDs[i] {
t.Fatalf("expected %d, got %d", recIDs[i], vals[0])
}
}
}
}
for keyed, indexName := range indexes {
for _, fieldName := range fields {
req := pilosa.ImportRequest{
Index: indexName,
Field: fieldName,
}
if indexName == "keyed" {
req.ColumnKeys = recKeys
req.Shard = ^uint64(0)
} else {
req.ColumnIDs = recIDs
req.Shard = 0
}
if fieldName == "keyedf" {
req.RowKeys = valueKeys
} else {
req.RowIDs = valueIDs
}
// clone request because some imports will modify their input parameters
if err := c.Import(context.Background(), nil, req.Clone(), &pilosa.ImportOptions{}); err != nil {
t.Fatalf("%s/%s: %v",
indexName, fieldName, err)
}
// Now do a query to see whether it worked...
var pql string
if fieldName == "keyedf" {
pql = `Row(keyedf="val-a") Row(keyedf="val-b") Row(keyedf="val-c")`
} else {
pql = `Row(unkeyedf=0) Row(unkeyedf=3) Row(unkeyedf=7)`
}
results, err := api.Query(context.Background(), &pilosa.QueryRequest{Index: indexName, Query: pql})
if err != nil {
t.Fatal(err)
}
checkResults(results, keyed, 3)
// Now clear a bit...
req = pilosa.ImportRequest{
Index: indexName,
Field: fieldName,
}
if indexName == "keyed" {
req.ColumnKeys = recKeys[2:]
req.Shard = ^uint64(0)
} else {
req.ColumnIDs = recIDs[2:]
req.Shard = 0
}
if fieldName == "keyedf" {
req.RowKeys = valueKeys[2:]
} else {
req.RowIDs = valueIDs[2:]
}
// do a clear. also, do the clear with a Qcx.
func() {
// inner function so the deferred abort isn't delayed a lot
qcx := api.Txf().NewQcx()
defer qcx.Abort()
if err := c.Import(context.Background(), qcx, req.Clone(), &pilosa.ImportOptions{Clear: true}); err != nil {
t.Fatalf("%s/%s: %v",
indexName, fieldName, err)
}
if err := qcx.Finish(); err != nil {
t.Fatalf("committing write: %v", err)
}
}()
// Now do a query to see whether it worked...
if fieldName == "keyedf" {
pql = `Row(keyedf="val-a") Row(keyedf="val-b") Row(keyedf="val-c")`
} else {
pql = `Row(unkeyedf=0) Row(unkeyedf=3) Row(unkeyedf=7)`
}
results, err = api.Query(context.Background(), &pilosa.QueryRequest{Index: indexName, Query: pql})
if err != nil {
t.Fatal(err)
}
checkResults(results, keyed, 2)
}
}
}
// Ensure client can bulk import data.
func TestClient_ImportRoaring(t *testing.T) {
cluster := test.MustRunCluster(t, 3,
[]server.CommandOption{
server.OptCommandServerOptions(pilosa.OptServerReplicaN(3))},
[]server.CommandOption{
server.OptCommandServerOptions(pilosa.OptServerReplicaN(3))},
[]server.CommandOption{
server.OptCommandServerOptions(pilosa.OptServerReplicaN(3))},
)
defer cluster.Close()
_, err := cluster.GetNode(0).API.CreateIndex(context.Background(), "i", pilosa.IndexOptions{})
if err != nil {
t.Fatalf("creating index: %v", err)
}
_, err = cluster.GetNode(0).API.CreateField(context.Background(), "i", "f", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 100))
if err != nil {
t.Fatalf("creating field: %v", err)
}
_, err = cluster.GetNode(0).API.Query(context.Background(), &pilosa.QueryRequest{Index: "i", Query: "Set(0, f=1)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
// Send import request.
host := cluster.GetNode(0).URL()
c := MustNewClient(host, http.GetHTTPClient(nil))
// [1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 65537]
roaringReq := makeImportRoaringRequest(false, "3B3001000100000900010000000100010009000100")
if err := c.ImportRoaring(context.Background(), &cluster.GetNode(0).API.Node().URI, "i", "f", 0, false, roaringReq); err != nil {
t.Fatal(err)
}
hldr := test.Holder{Holder: cluster.GetNode(0).Server.Holder()}
// Verify data on node 0.
if a := hldr.Row("i", "f", 0).Columns(); !reflect.DeepEqual(a, []uint64{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 65537}) {
t.Fatalf("unexpected columns: %+v", a)
}
if a := hldr.Row("i", "f", 1).Columns(); !reflect.DeepEqual(a, []uint64{0}) {
t.Fatalf("unexpected columns: %+v", a)
}
hldr2 := test.Holder{Holder: cluster.GetNode(1).Server.Holder()}
// Verify data on node 1.
if a := hldr2.Row("i", "f", 0).Columns(); !reflect.DeepEqual(a, []uint64{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 65537}) {
t.Fatalf("unexpected columns: %+v", a)
}
if a := hldr2.Row("i", "f", 1).Columns(); !reflect.DeepEqual(a, []uint64{0}) {
t.Fatalf("unexpected columns: %+v", a)
}
// Ensure that sending a roaring import with the clear flag works as expected.
// [65539, 65540]
roaringReq = makeImportRoaringRequest(true, "3A30000001000000010001001000000003000400")
if err := c.ImportRoaring(context.Background(), &cluster.GetNode(0).API.Node().URI, "i", "f", 0, false, roaringReq); err != nil {
t.Fatal(err)
}
// Verify data on node 0.
if a := hldr.Row("i", "f", 0).Columns(); !reflect.DeepEqual(a, []uint64{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 65537}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
if a := hldr.Row("i", "f", 1).Columns(); !reflect.DeepEqual(a, []uint64{0}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
// Verify data on node 1.
if a := hldr2.Row("i", "f", 0).Columns(); !reflect.DeepEqual(a, []uint64{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 65537}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
if a := hldr2.Row("i", "f", 1).Columns(); !reflect.DeepEqual(a, []uint64{0}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
// Ensure that sending a roaring import with the clear flag works as expected.
// [4, 6, 65537, 65539]
roaringReq = makeImportRoaringRequest(true, "3A300000020000000000010001000100180000001C0000000400060001000300")
if err := c.ImportRoaring(context.Background(), &cluster.GetNode(0).API.Node().URI, "i", "f", 0, false, roaringReq); err != nil {
t.Fatal(err)
}
// Verify data on node 0.
if a := hldr.Row("i", "f", 0).Columns(); !reflect.DeepEqual(a, []uint64{1, 2, 3, 5, 7, 8, 9, 10}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
if a := hldr.Row("i", "f", 1).Columns(); !reflect.DeepEqual(a, []uint64{0}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
// Verify data on node 1.
if a := hldr2.Row("i", "f", 0).Columns(); !reflect.DeepEqual(a, []uint64{1, 2, 3, 5, 7, 8, 9, 10}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
if a := hldr2.Row("i", "f", 1).Columns(); !reflect.DeepEqual(a, []uint64{0}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
// Ensure that sending a roaring import with the clear flag works as expected.
// [1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 65537]
roaringReq = makeImportRoaringRequest(true, "3B3001000100000900010000000100010009000100")
if err := c.ImportRoaring(context.Background(), &cluster.GetNode(0).API.Node().URI, "i", "f", 0, false, roaringReq); err != nil {
t.Fatal(err)
}
// Verify data on node 0.
if a := hldr.Row("i", "f", 0).Columns(); !reflect.DeepEqual(a, []uint64{}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
if a := hldr.Row("i", "f", 1).Columns(); !reflect.DeepEqual(a, []uint64{0}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
// Verify data on node 1.
if a := hldr2.Row("i", "f", 0).Columns(); !reflect.DeepEqual(a, []uint64{}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
if a := hldr2.Row("i", "f", 1).Columns(); !reflect.DeepEqual(a, []uint64{0}) {
t.Fatalf("unexpected clear columns: %+v", a)
}
}
// Ensure client can bulk import data with multiple views and not deadlock.
func TestClient_ImportRoaring_MultiView(t *testing.T) {
cluster := test.MustNewCluster(t, 2)
for _, c := range cluster.Nodes {
c.Config.Cluster.ReplicaN = 2
}
err := cluster.Start()
if err != nil {
t.Fatalf("starting cluster: %v", err)
}
defer cluster.Close()
api := cluster.GetNode(0).API
_, err = api.CreateIndex(context.Background(), "i", pilosa.IndexOptions{})
if err != nil {
t.Fatalf("creating index: %v", err)
}
_, err = api.CreateField(context.Background(), "i", "f", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 100))
if err != nil {
t.Fatalf("creating field: %v", err)
}
_, err = api.Query(context.Background(), &pilosa.QueryRequest{Index: "i", Query: "Set(0, f=1)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
// Send import request.
host := cluster.GetNode(0).URL()
c := MustNewClient(host, http.GetHTTPClient(nil))
req := &pilosa.ImportRoaringRequest{Views: map[string][]byte{}}
req.Views["a"], _ = hex.DecodeString("3B3001000100000900010000000100010009000100")
req.Views["b"], _ = hex.DecodeString("3B3001000100000900010000000100010009000100")
if err := c.ImportRoaring(context.Background(), &cluster.GetNode(0).API.Node().URI, "i", "f", 0, false, req); err != nil {
t.Fatal(err)
}
}
// Ensure client can bulk import data.
func TestClient_ImportKeys(t *testing.T) {
t.Run("SingleNode", func(t *testing.T) {
cluster := test.MustRunCluster(t, 1)
defer cluster.Close()
cmd := cluster.GetNode(0)
host := cmd.URL()
cmd.MustCreateIndex(t, "keyed", pilosa.IndexOptions{Keys: true})
cmd.MustCreateIndex(t, "unkeyed", pilosa.IndexOptions{Keys: false})
cmd.MustCreateField(t, "keyed", "keyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 1000), pilosa.OptFieldKeys())
cmd.MustCreateField(t, "keyed", "unkeyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 1000))
cmd.MustCreateField(t, "unkeyed", "keyedf", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 1000), pilosa.OptFieldKeys())
// Send import request.
c := MustNewClient(host, http.GetHTTPClient(nil))
baseReq := &pilosa.ImportRequest{
Index: "keyed",
Field: "keyedf",
ColumnKeys: []string{"eve", "alice", "bob", "eve", "alice", "eve"},
ColumnIDs: []uint64{1, 2, 3, 1, 2, 1},
RowKeys: []string{"green", "green", "green", "blue", "blue", "purple"},
RowIDs: []uint64{1, 1, 1, 2, 2, 3},
}
t.Run("Import keyed,keyed", func(t *testing.T) {
req := baseReq.Clone()
req.Index = "keyed"
req.Field = "keyedf"
req.ColumnIDs, req.RowIDs = nil, nil
if err := c.Import(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
resp := cmd.QueryAPI(t, &pilosa.QueryRequest{
Index: "keyed",
Query: "TopN(keyedf)",
})
if pairs, ok := resp.Results[0].(*pilosa.PairsField); !ok {
t.Fatalf("unexpected response type %T", resp.Results[0])
} else if !reflect.DeepEqual(pairs.Pairs, []pilosa.Pair{
{Key: "green", Count: 3},
{Key: "blue", Count: 2},
{Key: "purple", Count: 1},
}) {
t.Fatalf("unexpected topn result: %v", pairs.Pairs)
}
})
t.Run("Import keyed,unkeyedf", func(t *testing.T) {
req := baseReq.Clone()
req.Index = "keyed"
req.Field = "unkeyedf"
req.ColumnIDs, req.RowKeys = nil, nil
if err := c.Import(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
resp := cmd.QueryAPI(t, &pilosa.QueryRequest{
Index: "keyed",
Query: "TopN(unkeyedf)",
})
if pairs, ok := resp.Results[0].(*pilosa.PairsField); !ok {
t.Fatalf("unexpected response type %T", resp.Results[0])
} else if !reflect.DeepEqual(pairs.Pairs, []pilosa.Pair{
{ID: 1, Count: 3},
{ID: 2, Count: 2},
{ID: 3, Count: 1},
}) {
t.Fatalf("unexpected topn result: %v", pairs.Pairs)
}
})
t.Run("Import unkeyed,keyed", func(t *testing.T) {
req := baseReq.Clone()
req.Index = "unkeyed"
req.Field = "keyedf"
req.ColumnKeys, req.RowIDs = nil, nil
if err := c.Import(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
resp := cmd.QueryAPI(t, &pilosa.QueryRequest{
Index: "unkeyed",
Query: "TopN(keyedf)",
})
if pairs, ok := resp.Results[0].(*pilosa.PairsField); !ok {
t.Fatalf("unexpected response type %T", resp.Results[0])
} else if !reflect.DeepEqual(pairs.Pairs, []pilosa.Pair{
{Key: "green", Count: 3},
{Key: "blue", Count: 2},
{Key: "purple", Count: 1},
}) {
t.Fatalf("unexpected topn result: %v", pairs.Pairs)
}
})
})
t.Run("MultiNode", func(t *testing.T) {
cluster := test.MustRunCluster(t, 3)
defer cluster.Close()
cmd0 := cluster.GetNode(0)
cmd1 := cluster.GetNode(1)
host0 := cmd0.URL()
host1 := cmd1.URL()
cmd0.MustCreateIndex(t, "keyed", pilosa.IndexOptions{Keys: true})
cmd0.MustCreateField(t, "keyed", "keyedf0", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 1000), pilosa.OptFieldKeys())
cmd0.MustCreateField(t, "keyed", "keyedf1", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 1000), pilosa.OptFieldKeys())
// Send import request.
c0 := MustNewClient(host0, http.GetHTTPClient(nil))
c1 := MustNewClient(host1, http.GetHTTPClient(nil))
// Import to node0.
t.Run("Import node0", func(t *testing.T) {
req := &pilosa.ImportRequest{
Index: "keyed",
Field: "keyedf0",
ColumnKeys: []string{"eve", "alice", "bob", "eve", "alice", "eve"},
RowKeys: []string{"green", "green", "green", "blue", "blue", "purple"},
}
if err := c0.Import(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
resp := cmd0.QueryAPI(t, &pilosa.QueryRequest{
Index: "keyed",
Query: "TopN(keyedf0)",
})
if pairs, ok := resp.Results[0].(*pilosa.PairsField); !ok {
t.Fatalf("unexpected response type %T", resp.Results[0])
} else if !reflect.DeepEqual(pairs.Pairs, []pilosa.Pair{
{Key: "green", Count: 3},
{Key: "blue", Count: 2},
{Key: "purple", Count: 1},
}) {
t.Fatalf("unexpected topn result: %v", pairs.Pairs)
}
})
// Import to node1 (ensure import is routed to primary for translation).
t.Run("Import node1", func(t *testing.T) {
req := &pilosa.ImportRequest{
Index: "keyed",
Field: "keyedf1",
ColumnKeys: []string{"eve", "alice", "bob", "eve", "alice", "eve"},
RowKeys: []string{"green", "green", "green", "blue", "blue", "purple"},
}
if err := c1.Import(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
// Wait for translation replication.
time.Sleep(500 * time.Millisecond)
resp := cmd1.QueryAPI(t, &pilosa.QueryRequest{
Index: "keyed",
Query: "TopN(keyedf1)",
})
if pairs, ok := resp.Results[0].(*pilosa.PairsField); !ok {
t.Fatalf("unexpected response type %T", resp.Results[0])
} else if !reflect.DeepEqual(pairs.Pairs, []pilosa.Pair{
{Key: "green", Count: 3},
{Key: "blue", Count: 2},
{Key: "purple", Count: 1},
}) {
t.Fatalf("unexpected topn result: %#v", pairs.Pairs)
}
})
})
t.Run("IntegerFieldSingleNode", func(t *testing.T) {
cluster := test.MustRunCluster(t, 1)
defer cluster.Close()
cmd := cluster.GetNode(0)
host := cmd.URL()
holder := cmd.Server.Holder()
hldr := test.Holder{Holder: holder}
fldName := "f"
// Load bitmap into cache to ensure cache gets updated.
index := hldr.MustCreateIndexIfNotExists("i", pilosa.IndexOptions{Keys: true})
_, err := index.CreateFieldIfNotExists(fldName, pilosa.OptFieldTypeInt(-100, 100))
if err != nil {
t.Fatal(err)
}
// Send import request.
c := MustNewClient(host, http.GetHTTPClient(nil))
req := &pilosa.ImportValueRequest{
Index: "i",
Field: "f",
ColumnKeys: []string{"col1", "col2", "col3"},
Values: []int64{-10, 20, 40},
}
if err := c.ImportValue(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
// Verify range.
queryRequest := &pilosa.QueryRequest{
Query: fmt.Sprintf(`Row(%s>10)`, fldName),
Remote: false,
}
result, err := c.Query(context.Background(), "i", queryRequest)
if err != nil {
t.Fatal(err)
}
if !reflect.DeepEqual(result.Results[0].(*pilosa.Row).Keys, []string{"col2", "col3"}) {
t.Fatalf("unexpected column keys: %s", spew.Sdump(result))
}
// Clear data.
req = &pilosa.ImportValueRequest{
Index: "i",
Field: "f",
ColumnKeys: []string{"col2"},
Values: []int64{20},
}
if err := c.ImportValue(context.Background(), nil, req, &pilosa.ImportOptions{Clear: true}); err != nil {
t.Fatal(err)
}
// Verify Range.
queryRequest = &pilosa.QueryRequest{
Query: fmt.Sprintf(`Row(%s>10)`, fldName),
Remote: false,
}
result, err = c.Query(context.Background(), "i", queryRequest)
if err != nil {
t.Fatal(err)
}
if !reflect.DeepEqual(result.Results[0].(*pilosa.Row).Keys, []string{"col3"}) {
t.Fatalf("unexpected column keys: %s", spew.Sdump(result))
}
})
}
func TestClient_ImportIDs(t *testing.T) {
// Ensure that running a query between two imports does
// not affect the result set. It turns out, this is caused
// by the fragment.rowCache failing to be cleared after an
// importValue. This ensures that the rowCache is cleared
// after an import.
t.Run("ImportRangeImport", func(t *testing.T) {
cluster := test.MustRunCluster(t, 1)
defer cluster.Close()
cmd := cluster.GetNode(0)
host := cmd.URL()
holder := cmd.Server.Holder()
hldr := test.Holder{Holder: holder}
idxName := "i"
fldName := "f"
// Load bitmap into cache to ensure cache gets updated.
index := hldr.MustCreateIndexIfNotExists(idxName, pilosa.IndexOptions{Keys: false})
_, err := index.CreateFieldIfNotExists(fldName, pilosa.OptFieldTypeInt(-10000, 10000))
if err != nil {
t.Fatal(err)
}
// Send import request.
c := MustNewClient(host, http.GetHTTPClient(nil))
req := &pilosa.ImportValueRequest{
Index: idxName,
Field: fldName,
ColumnIDs: []uint64{2},
Values: []int64{1},
}
if err := c.ImportValue(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
// Verify range.
queryRequest := &pilosa.QueryRequest{
Query: fmt.Sprintf(`Row(%s>0)`, fldName),
Remote: false,
}
if result, err := c.Query(context.Background(), idxName, queryRequest); err != nil {
t.Fatal(err)
} else {
res := result.Results[0].(*pilosa.Row).Columns()
if !reflect.DeepEqual(res, []uint64{2}) {
t.Fatalf("unexpected column ids: %v", res)
}
}
// Send import request.
req = &pilosa.ImportValueRequest{
Index: idxName,
Field: fldName,
ColumnIDs: []uint64{1000},
Values: []int64{1},
}
if err := c.ImportValue(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
// Verify range.
if result, err := c.Query(context.Background(), idxName, queryRequest); err != nil {
t.Fatal(err)
} else {
res := result.Results[0].(*pilosa.Row).Columns()
if !reflect.DeepEqual(res, []uint64{2, 1000}) {
t.Fatalf("unexpected column ids: %v", res)
}
}
})
}
// Ensure client can bulk import value data.
func TestClient_ImportValue(t *testing.T) {
cluster := test.MustRunCluster(t, 1)
defer cluster.Close()
cmd := cluster.GetNode(0)
host := cmd.URL()
holder := cmd.Server.Holder()
hldr := test.Holder{Holder: holder}
fldName := "f"
// Load bitmap into cache to ensure cache gets updated.
index := hldr.MustCreateIndexIfNotExists("i", pilosa.IndexOptions{})
_, err := index.CreateFieldIfNotExists(fldName, pilosa.OptFieldTypeInt(-100, 100))
if err != nil {
t.Fatal(err)
}
// Send import request.
c := MustNewClient(host, http.GetHTTPClient(nil))
req := &pilosa.ImportValueRequest{
Index: "i",
Field: "f",
ColumnIDs: []uint64{1, 2, 3},
Values: []int64{-10, 20, 40},
}
if err := c.ImportValue(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
// Verify Sum.
if resp, err := c.Query(context.Background(), "i", &pilosa.QueryRequest{Query: `Sum(field=f)`}); err != nil {
t.Fatal(err)
} else if vc, ok := resp.Results[0].(pilosa.ValCount); !ok {
t.Fatalf("expected ValCount; got %T", resp.Results[0])
} else if vc.Val != 50 || vc.Count != 3 {
t.Fatalf("unexpected values: got sum=%v, count=%v; expected sum=50, cnt=3", vc.Val, vc.Count)
}
// Verify Max.
if resp, err := c.Query(context.Background(), "i", &pilosa.QueryRequest{Query: `Max(field=f)`}); err != nil {
t.Fatal(err)
} else if vc, ok := resp.Results[0].(pilosa.ValCount); !ok {
t.Fatalf("expected ValCount; got %T", resp.Results[0])
} else if vc.Val != 40 || vc.Count != 1 {
t.Fatalf("unexpected values: got max=%v, count=%v; expected max=40, cnt=1", vc.Val, vc.Count)
}
// Send import request.
req = &pilosa.ImportValueRequest{
Index: "i",
Field: "f",
ColumnIDs: []uint64{1, 3},
Values: []int64{-10, 40},
}
if err := c.ImportValue(context.Background(), nil, req, &pilosa.ImportOptions{Clear: true}); err != nil {
t.Fatal(err)
}
// Verify Sum.
if resp, err := c.Query(context.Background(), "i", &pilosa.QueryRequest{Query: `Sum(field=f)`}); err != nil {
t.Fatal(err)
} else if vc, ok := resp.Results[0].(pilosa.ValCount); !ok {
t.Fatalf("expected ValCount; got %T", resp.Results[0])
} else if vc.Val != 20 || vc.Count != 1 {
t.Fatalf("unexpected values: got sum=%v, count=%v; expected sum=20, cnt=1", vc.Val, vc.Count)
}
// Verify Max.
if resp, err := c.Query(context.Background(), "i", &pilosa.QueryRequest{Query: `Max(field=f)`}); err != nil {
t.Fatal(err)
} else if vc, ok := resp.Results[0].(pilosa.ValCount); !ok {
t.Fatalf("expected ValCount; got %T", resp.Results[0])
} else if vc.Val != 20 || vc.Count != 1 {
t.Fatalf("unexpected values: got max=%v, count=%v; expected max=20, cnt=1", vc.Val, vc.Count)
}
}
// Ensure client can bulk import data while tracking existence.
func TestClient_ImportExistence(t *testing.T) {
cluster := test.MustRunCluster(t, 1)
defer cluster.Close()
cmd := cluster.GetNode(0)
host := cmd.URL()
holder := cmd.Server.Holder()
hldr := test.Holder{Holder: holder}
t.Run("Set", func(t *testing.T) {
idxName := "iset"
fldName := "fset"
index := hldr.MustCreateIndexIfNotExists(idxName, pilosa.IndexOptions{TrackExistence: true})
_, err := index.CreateFieldIfNotExists(fldName)
if err != nil {
t.Fatal(err)
}
// Send import request.
c := MustNewClient(host, http.GetHTTPClient(nil))
req := &pilosa.ImportRequest{
Index: "iset",
Field: "fset",
ColumnIDs: []uint64{1, 5, 6},
RowIDs: []uint64{0, 0, 200},
}
if err := c.Import(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
// Verify data.
if a := hldr.Row(idxName, fldName, 0).Columns(); !reflect.DeepEqual(a, []uint64{1, 5}) {
t.Fatalf("unexpected columns: %+v", a)
}
if a := hldr.Row(idxName, fldName, 200).Columns(); !reflect.DeepEqual(a, []uint64{6}) {
t.Fatalf("unexpected columns: %+v", a)
}
// Verify existence.
if a := hldr.ReadRow(idxName, "_exists", 0).Columns(); !reflect.DeepEqual(a, []uint64{1, 5, 6}) {
t.Fatalf("unexpected existence columns: %+v", a)
}
})
t.Run("Int", func(t *testing.T) {
idxName := "iint"
fldName := "fint"
index := hldr.MustCreateIndexIfNotExists(idxName, pilosa.IndexOptions{TrackExistence: true})
_, err := index.CreateFieldIfNotExists(fldName, pilosa.OptFieldTypeInt(-100, 100))
if err != nil {
t.Fatal(err)
}
// Send import request.
c := MustNewClient(host, http.GetHTTPClient(nil))
req := &pilosa.ImportValueRequest{
Index: "iint",
Field: "fint",
ColumnIDs: []uint64{1, 2, 3},
Values: []int64{-10, 20, 40},
}
if err := c.ImportValue(context.Background(), nil, req, &pilosa.ImportOptions{}); err != nil {
t.Fatal(err)
}
// Verify Sum.
if resp, err := c.Query(context.Background(), idxName, &pilosa.QueryRequest{Query: fmt.Sprintf(`Sum(field=%s)`, fldName)}); err != nil {
t.Fatal(err)
} else if vc, ok := resp.Results[0].(pilosa.ValCount); !ok {
t.Fatalf("expected ValCount; got %T", resp.Results[0])
} else if vc.Val != 50 || vc.Count != 3 {
t.Fatalf("unexpected values: got sum=%v, count=%v; expected sum=50, cnt=3", vc.Val, vc.Count)
}
// Verify existence.
if a := hldr.ReadRow(idxName, "_exists", 0).Columns(); !reflect.DeepEqual(a, []uint64{1, 2, 3}) {
t.Fatalf("unexpected existence columns: %+v", a)
}
})
}
// Ensure client can retrieve a list of all checksums for blocks in a fragment.
func TestClient_FragmentBlocks(t *testing.T) {
cluster := test.MustRunCluster(t, 1)
defer cluster.Close()
cmd := cluster.GetNode(0)
holder := cmd.Server.Holder()
hldr := test.Holder{Holder: holder}
hldr.SetBit("i", "f", 0, 1)
hldr.SetBit("i", "f", pilosa.HashBlockSize*3, 100)
// Set a bit on a different shard.
hldr.SetBit("i", "f", 0, 1)
c := MustNewClient(cmd.URL(), http.GetHTTPClient(nil))
blocks, err := c.FragmentBlocks(context.Background(), nil, "i", "f", "standard", 0)
if err != nil {
t.Fatal(err)
} else if len(blocks) != 2 {
t.Fatalf("unexpected blocks: %s", spew.Sdump(blocks))
} else if blocks[0].ID != 0 {
t.Fatalf("unexpected block id(0): %d", blocks[0].ID)
} else if blocks[1].ID != 3 {
t.Fatalf("unexpected block id(1): %d", blocks[1].ID)
}
// Verify data matches local blocks.
if a, err := cmd.API.FragmentBlocks(context.Background(), "i", "f", "standard", 0); err != nil {
t.Fatal(err)
} else if !reflect.DeepEqual(a, blocks) {
t.Fatalf("blocks mismatch:\n\nexp=%s\n\ngot=%s\n\n", spew.Sdump(a), spew.Sdump(blocks))
}
}
func TestClient_CreateDecimalField(t *testing.T) {
cluster := test.MustRunCluster(t, 1)
defer cluster.Close()
cmd := cluster.GetNode(0)
c := MustNewClient(cmd.URL(), http.GetHTTPClient(nil))
index := "cdf"
err := c.CreateIndex(context.Background(), index, pilosa.IndexOptions{})
if err != nil {
t.Fatalf("creating index: %v", err)
}
field := "dfield"
err = c.CreateFieldWithOptions(context.Background(), index, field, pilosa.FieldOptions{Type: pilosa.FieldTypeDecimal, Scale: 1, Min: pql.NewDecimal(-1000, 0), Max: pql.NewDecimal(1000, 0)})
if err != nil {
t.Fatalf("creating field: %v", err)
}
fld, err := cmd.API.Field(context.Background(), index, field)
if err != nil {
t.Fatalf("getting field: %v", err)
}
if fld.Options().Scale != 1 {
t.Fatalf("expected Scale 1, got: %+v", fld.Options())
}
err = c.ImportValue(context.Background(), nil, &pilosa.ImportValueRequest{Index: index, Field: field, ColumnIDs: []uint64{1, 2, 3}, Shard: 0, FloatValues: []float64{1.1, 2.2, 3.3}}, &pilosa.ImportOptions{})
if err != nil {
t.Fatalf("importing float values: %v", err)
}
// Integer predicate.
resp, err := c.Query(context.Background(), index, &pilosa.QueryRequest{Index: index, Query: "Row(dfield>2)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
if !reflect.DeepEqual(resp.Results[0].(*pilosa.Row).Columns(), []uint64{2, 3}) {
t.Fatalf("unexpected results: %v", resp.Results[0].(*pilosa.Row).Columns())
}
// Float predicate.
resp, err = c.Query(context.Background(), index, &pilosa.QueryRequest{Index: index, Query: "Row(dfield>2.1)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
if !reflect.DeepEqual(resp.Results[0].(*pilosa.Row).Columns(), []uint64{2, 3}) {
t.Fatalf("unexpected results: %v", resp.Results[0].(*pilosa.Row).Columns())
}
// Integer predicates.
resp, err = c.Query(context.Background(), index, &pilosa.QueryRequest{Index: index, Query: "Row(1<dfield<3)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
if !reflect.DeepEqual(resp.Results[0].(*pilosa.Row).Columns(), []uint64{1, 2}) {
t.Fatalf("unexpected results: %v", resp.Results[0].(*pilosa.Row).Columns())
}
// Float predicates.
resp, err = c.Query(context.Background(), index, &pilosa.QueryRequest{Index: index, Query: "Row(1.1<dfield<3.3)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
if !reflect.DeepEqual(resp.Results[0].(*pilosa.Row).Columns(), []uint64{2}) {
t.Fatalf("unexpected results: %v", resp.Results[0].(*pilosa.Row).Columns())
}
resp, err = c.Query(context.Background(), index, &pilosa.QueryRequest{Index: index, Query: "Row(1.1<=dfield<3.3)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
if !reflect.DeepEqual(resp.Results[0].(*pilosa.Row).Columns(), []uint64{1, 2}) {
t.Fatalf("unexpected results: %v", resp.Results[0].(*pilosa.Row).Columns())
}
resp, err = c.Query(context.Background(), index, &pilosa.QueryRequest{Index: index, Query: "Row(1.1<dfield<=3.3)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
if !reflect.DeepEqual(resp.Results[0].(*pilosa.Row).Columns(), []uint64{2, 3}) {
t.Fatalf("unexpected results: %v", resp.Results[0].(*pilosa.Row).Columns())
}
resp, err = c.Query(context.Background(), index, &pilosa.QueryRequest{Index: index, Query: "Row(dfield<3.3)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
if !reflect.DeepEqual(resp.Results[0].(*pilosa.Row).Columns(), []uint64{1, 2}) {
t.Fatalf("unexpected results: %v", resp.Results[0].(*pilosa.Row).Columns())
}
resp, err = c.Query(context.Background(), index, &pilosa.QueryRequest{Index: index, Query: "Row(dfield>2.2)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
if !reflect.DeepEqual(resp.Results[0].(*pilosa.Row).Columns(), []uint64{3}) {
t.Fatalf("unexpected results: %v", resp.Results[0].(*pilosa.Row).Columns())
}
resp, err = c.Query(context.Background(), index, &pilosa.QueryRequest{Index: index, Query: "Row(dfield>=2.2)"})
if err != nil {
t.Fatalf("querying: %v", err)
}
if !reflect.DeepEqual(resp.Results[0].(*pilosa.Row).Columns(), []uint64{2, 3}) {
t.Fatalf("unexpected results: %v", resp.Results[0].(*pilosa.Row).Columns())
}
}
func TestClientTransactions(t *testing.T) {
c := test.MustRunCluster(t, 3)
defer c.Close()
coord := c.GetPrimary()
other := c.GetNonPrimary()
client0 := MustNewClient(coord.URL(), http.GetHTTPClient(nil))
client1 := MustNewClient(other.URL(), http.GetHTTPClient(nil))
// can create, list, get, and finish a transaction
var expDeadline time.Time
if trns, err := client0.StartTransaction(context.Background(), "blah", time.Minute, false); err != nil {
t.Fatalf("error starting transaction: %v", err)
} else {
expDeadline = time.Now().Add(time.Minute)
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blah", Timeout: time.Minute, Active: true, Deadline: expDeadline},
trns)
}
if trnsMap, err := client0.Transactions(context.Background()); err != nil {
t.Errorf("listing transactions: %v", err)
} else {
if len(trnsMap) != 1 {
t.Errorf("unexpected trnsMap: %+v", trnsMap)
}
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blah", Timeout: time.Minute, Active: true, Deadline: expDeadline},
trnsMap["blah"])
}
if trns, err := client0.GetTransaction(context.Background(), "blah"); err != nil {
t.Fatalf("error getting transaction: %v", err)
} else {
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blah", Timeout: time.Minute, Active: true, Deadline: expDeadline},
trns)
}
if trns, err := client0.FinishTransaction(context.Background(), "blah"); err != nil {
t.Fatalf("error finishing transaction: %v", err)
} else {
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blah", Timeout: time.Minute, Active: true, Deadline: expDeadline},
trns)
}
// can create exclusive transaction
if trns, err := client0.StartTransaction(context.Background(), "blahe", time.Minute, true); err != nil {
t.Fatalf("error starting transaction: %v", err)
} else {
expDeadline = time.Now().Add(time.Minute)
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blahe", Timeout: time.Minute, Active: true, Exclusive: true, Deadline: expDeadline},
trns)
}
// cannot start new transaction - correct error and exclusive transaction are returned
if trns, err := client0.StartTransaction(context.Background(), "blah", time.Minute, false); errors.Cause(err) != pilosa.ErrTransactionExclusive {
t.Fatalf("shouldn't be able to start transaction while an exclusive is running, but got: %+v, %v", trns, err)
} else {
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blahe", Timeout: time.Minute, Active: true, Exclusive: true, Deadline: expDeadline},
trns)
}
// finish exclusive transaction
if trns, err := client0.FinishTransaction(context.Background(), "blahe"); err != nil {
t.Fatalf("error finishing transaction: %v", err)
} else {
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blahe", Timeout: time.Minute, Active: true, Exclusive: true, Deadline: expDeadline},
trns)
}
// start new transaction
if trns, err := client0.StartTransaction(context.Background(), "blah", time.Minute, false); err != nil {
t.Fatalf("error starting transaction: %v", err)
} else {
expDeadline = time.Now().Add(time.Minute)
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blah", Timeout: time.Minute, Active: true, Deadline: expDeadline},
trns)
}
// try to start same transaction
if trns, err := client0.StartTransaction(context.Background(), "blah", time.Minute, false); err == nil ||
!strings.Contains(err.Error(), pilosa.ErrTransactionExists.Error()) {
t.Fatalf("expected ErrTransactionExists, but got: %v", err)
} else {
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blah", Timeout: time.Minute, Active: true, Deadline: expDeadline},
trns)
}
// start an exclusive transaction which can't go active
if trns, err := client0.StartTransaction(context.Background(), "blahe", time.Minute, true); err != nil {
t.Fatalf("error starting transaction: %v", err)
} else {
expDeadline = time.Now().Add(time.Minute)
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blahe", Timeout: time.Minute, Active: false, Exclusive: true, Deadline: expDeadline},
trns)
}
// finish exclusive transaction that never went active
if trns, err := client0.FinishTransaction(context.Background(), "blahe"); err != nil {
t.Fatalf("error finishing transaction: %v", err)
} else {
test.CompareTransactions(t,
&pilosa.Transaction{ID: "blahe", Timeout: time.Minute, Active: false, Exclusive: true, Deadline: expDeadline},
trns)
}
// finish non-existent transaction
if trns, err := client0.FinishTransaction(context.Background(), "zzz"); err == nil ||
!strings.Contains(err.Error(), pilosa.ErrTransactionNotFound.Error()) {
t.Fatalf("unexpected error finishing nonexistent transaction: %v", err)
} else {
test.CompareTransactions(t,
nil,
trns)
}
// get non-existent transaction
if trns, err := client0.GetTransaction(context.Background(), "xxx"); err == nil ||
!strings.Contains(err.Error(), pilosa.ErrTransactionNotFound.Error()) {
t.Fatalf("unexpected error getting nonexistent transaction: %v", err)
} else {
test.CompareTransactions(t,
nil,
trns)
}
// non-primary
if trns, err := client1.StartTransaction(context.Background(), "blah", time.Minute, false); err == nil ||
!strings.Contains(err.Error(), pilosa.ErrNodeNotPrimary.Error()) {
t.Fatalf("unexpected error starting on non-primary: %v", err)
} else {
test.CompareTransactions(t,
nil,
trns)
}
// start transaction with blank id
if trns, err := client0.StartTransaction(context.Background(), "", time.Minute, false); err != nil {
t.Fatalf("error starting transaction: %v", err)
} else {
expDeadline = time.Now().Add(time.Minute)
if len(trns.ID) != 36 {
t.Errorf("expected generated UUID, but got '%s'", trns.ID)
}
test.CompareTransactions(t,
&pilosa.Transaction{ID: trns.ID, Timeout: time.Minute, Active: true, Deadline: expDeadline},
trns)
}
}
// Client represents a test wrapper for pilosa.Client.
type Client struct {
*http.InternalClient
}
// MustNewClient returns a new instance of Client. Panic on error.
func MustNewClient(host string, h *gohttp.Client) *Client {
c, err := http.NewInternalClient(host, h)
if err != nil {
panic(err)
}
return &Client{InternalClient: c}
}
func makeImportRoaringRequest(clear bool, viewData string) *pilosa.ImportRoaringRequest {
roaringData, _ := hex.DecodeString(viewData)
return &pilosa.ImportRoaringRequest{
Clear: clear,
Views: map[string][]byte{
"": roaringData,
},
}
}
// verify that serverInfo has Backend
func TestClient_ServerInfoHasBackend(t *testing.T) {
//srcs := []string{"roaring", "rbf", "lmdb"}
cluster := test.MustRunCluster(t, 1)
defer cluster.Close()
cmd := cluster.GetNode(0)
si := cmd.API.Info()
if si.StorageBackend == "" {
panic("should have gotten a StorageBackend back")
}
pilosa.MustBackendToTxtype(si.StorageBackend) // panics if invalid
}
func TestClient_ImportRoaringExists(t *testing.T) {
cluster := test.MustNewCluster(t, 1)
err := cluster.Start()
if err != nil {
t.Fatalf("starting cluster: %v", err)
}
defer cluster.Close()
node := cluster.GetNode(0)
_, err = node.API.CreateIndex(context.Background(), "i", pilosa.IndexOptions{TrackExistence: true})
if err != nil {
t.Fatalf("creating index: %v", err)
}
_, err = node.API.CreateField(context.Background(), "i", "f", pilosa.OptFieldTypeSet(pilosa.CacheTypeRanked, 100))
if err != nil {
t.Fatalf("creating field: %v", err)
}
// Send import request.
host := node.URL()
c := MustNewClient(host, http.GetHTTPClient(nil))
// [1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 65537]
roaringReq := makeImportRoaringRequest(false, "3B3001000100000900010000000100010009000100")
if err := c.ImportRoaring(context.Background(), &cluster.GetNode(0).API.Node().URI, "i", "f", 0, false, roaringReq); err != nil {
t.Fatal(err)
}
qr, err := node.API.Query(context.Background(), &pilosa.QueryRequest{Index: "i", Query: "All()"})
if err != nil {
t.Fatalf(" %v ", err)
}
got := qr.Results[0].(*pilosa.Row).Columns()
if !reflect.DeepEqual(got, []uint64{}) {
t.Fatalf(" Row unexpected columns: got %+v expected: %+v", got, []uint64{})
}
roaringReq.UpdateExistence = true
if err := c.ImportRoaring(context.Background(), &cluster.GetNode(0).API.Node().URI, "i", "f", 0, false, roaringReq); err != nil {
t.Fatal(err)
}
expected := []uint64{1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 65537}
qr, err = node.API.Query(context.Background(), &pilosa.QueryRequest{Index: "i", Query: "All()"})
if err != nil {
t.Fatalf("Query error: %+v", err)
}
got = qr.Results[0].(*pilosa.Row).Columns()
if !reflect.DeepEqual(got, expected) {
t.Fatalf("All unexpected columns: got %+v expected: %+v", got, expected)
}
}