featurebase/test/pilosa.go
2021-01-29 17:48:24 -06:00

366 lines
11 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 test
import (
"bytes"
"context"
"fmt"
"io/ioutil"
gohttp "net/http"
"os"
"reflect"
"strings"
"testing"
"time"
"github.com/pilosa/pilosa/v2"
"github.com/pilosa/pilosa/v2/encoding/proto"
"github.com/pilosa/pilosa/v2/http"
"github.com/pilosa/pilosa/v2/server"
"github.com/pilosa/pilosa/v2/testhook"
)
////////////////////////////////////////////////////////////////////////////////////
// Command represents a test wrapper for server.Command.
type Command struct {
*server.Command
commandOptions []server.CommandOption
}
func OptTxSrc(src string) server.CommandOption {
return func(m *server.Command) error {
m.Config.Txsrc = src
return nil
}
}
func OptAllowedOrigins(origins []string) server.CommandOption {
return func(m *server.Command) error {
m.Config.Handler.AllowedOrigins = origins
return nil
}
}
// newCommand returns a new instance of Main with a temporary data directory and random port.
func newCommand(tb testing.TB, opts ...server.CommandOption) *Command {
path, err := testhook.TempDir(tb, "pilosa-command-")
if err != nil {
panic(err)
}
// Set aggressive close timeout by default to avoid hanging tests. This was
// a problem with PDK tests which used go-pilosa as well. We put it at the
// beginning of the option slice so that it can be overridden by user-passed
// options.
// Also set TranslateFile MapSize to a smaller number so memory allocation
// does not fail on 32-bit systems.
opts = append([]server.CommandOption{
server.OptCommandCloseTimeout(time.Millisecond * 2),
}, opts...)
m := &Command{commandOptions: opts}
m.Command = server.NewCommand(bytes.NewReader(nil), ioutil.Discard, ioutil.Discard, opts...)
m.Config.DataDir = path
defaultConf := server.NewConfig()
if m.Config.Bind == defaultConf.Bind {
m.Config.Bind = "http://localhost:0"
}
if m.Config.BindGRPC == defaultConf.BindGRPC {
m.Config.BindGRPC = "http://localhost:0"
}
m.Config.Translation.MapSize = 140000
m.Config.WorkerPoolSize = 2
if testing.Verbose() {
m.Command.Stdout = os.Stdout
m.Command.Stderr = os.Stderr
}
return m
}
// NewCommandNode returns a new instance of Command with clustering enabled.
func NewCommandNode(tb testing.TB, isCoordinator bool, opts ...server.CommandOption) *Command {
// We want tests to default to using the in-memory translate store, so we
// prepend opts with that functional option. If a different translate store
// has been specified, it will override this one.
opts = prependTestServerOpts(opts)
m := newCommand(tb, opts...)
m.Config.Cluster.Disabled = false
m.Config.Cluster.Coordinator = isCoordinator
return m
}
// RunCommand returns a new, running Main. Panic on error.
func RunCommand(t *testing.T) *Command {
t.Helper()
m := newCommand(t, server.OptCommandServerOptions(pilosa.OptServerOpenTranslateStore(pilosa.OpenInMemTranslateStore)))
m.Config.Metric.Diagnostics = false // Disable diagnostics.
m.Config.Gossip.Port = "0"
if err := m.Start(); err != nil {
t.Fatal(err)
}
return m
}
// GossipAddress returns the address on which gossip is listening after a Main
// has been setup. Useful to pass as a seed to other nodes when creating and
// testing clusters.
func (m *Command) GossipAddress() string {
return m.GossipTransport().URI.String()
}
// Close closes the program and removes the underlying data directory.
func (m *Command) Close() error {
defer os.RemoveAll(m.Config.DataDir)
return m.Command.Close()
}
// Reopen closes the program and reopens it.
func (m *Command) Reopen() error {
if err := m.Command.Close(); err != nil {
return err
}
// Create new main with the same config.
config := m.Command.Config
m.Command = server.NewCommand(bytes.NewReader(nil), ioutil.Discard, ioutil.Discard, m.commandOptions...)
m.Command.Config = config
// Run new program.
return m.Start()
}
// SoftOpen is like Reopen, but doesn't close the program first.
// This is useful in the case where a test needs to decouple the
// close from the re-open (for example, there may need to be
// actions which take place between those two steps).
func (m *Command) SoftOpen() error {
// Create new main with the same config.
config := m.Command.Config
m.Command = server.NewCommand(bytes.NewReader(nil), ioutil.Discard, ioutil.Discard, m.commandOptions...)
m.Command.Config = config
// Run new program.
return m.Start()
}
// MustCreateIndex uses this command's API to create an index and fails the test
// if there is an error.
func (m *Command) MustCreateIndex(tb testing.TB, name string, opts pilosa.IndexOptions) *pilosa.Index {
tb.Helper()
idx, err := m.API.CreateIndex(context.Background(), name, opts)
if err != nil {
tb.Fatalf("creating index: %v with options: %v, err: %v", name, opts, err)
}
return idx
}
// MustCreateField uses this command's API to create the field. The index must
// already exist - it fails the test if there is an error.
func (m *Command) MustCreateField(tb testing.TB, index, field string, opts ...pilosa.FieldOption) *pilosa.Field {
tb.Helper()
f, err := m.API.CreateField(context.Background(), index, field, opts...)
if err != nil {
tb.Fatalf("creating field: %s in index: %s err: %v", field, index, err)
}
return f
}
// QueryAPI uses this command's API to execute the given query request, failing
// if Query returns a non-nil error, otherwise returning the QueryResponse.
func (m *Command) QueryAPI(tb testing.TB, req *pilosa.QueryRequest) pilosa.QueryResponse {
tb.Helper()
resp, err := m.API.Query(context.Background(), req)
if err != nil {
tb.Fatalf("making query: %v, err: %v", req, err)
}
return resp
}
// URL returns the base URL string for accessing the running program.
func (m *Command) URL() string { return m.API.Node().URI.String() }
// ID returns the node ID used by the running program.
func (m *Command) ID() string { return m.API.Node().ID }
// Client returns a client to connect to the program.
func (m *Command) Client() *http.InternalClient {
return m.Server.InternalClient().(*http.InternalClient)
}
// Query executes a query against the program through the HTTP API.
func (m *Command) Query(t testing.TB, index, rawQuery, query string) (string, error) {
resp := Do(t, "POST", fmt.Sprintf("%s/index/%s/query?%s", m.URL(), index, rawQuery), query)
if resp.StatusCode != gohttp.StatusOK {
return "", fmt.Errorf("invalid status: %d, body=%s", resp.StatusCode, resp.Body)
}
return resp.Body, nil
}
// Queryf is like Query, but with a format string.
func (m *Command) Queryf(t *testing.T, index, rawQuery, query string, params ...interface{}) (string, error) {
query = fmt.Sprintf(query, params...)
resp := Do(t, "POST", fmt.Sprintf("%s/index/%s/query?%s", m.URL(), index, rawQuery), query)
if resp.StatusCode != gohttp.StatusOK {
return "", fmt.Errorf("invalid status: %d, body=%s", resp.StatusCode, resp.Body)
}
return resp.Body, nil
}
// QueryExpect executes a query against the program through the HTTP API, and
// confirms that it got an expected response.
func (m *Command) QueryExpect(t *testing.T, index, rawQuery, query string, expected string) {
resp := Do(t, "POST", fmt.Sprintf("%s/index/%s/query?%s", m.URL(), index, rawQuery), query)
if resp.StatusCode != gohttp.StatusOK {
t.Fatalf("invalid status from %s: %d, body=%q", m.ID(), resp.StatusCode, resp.Body)
}
last := len(resp.Body) - 1
// Trim trailing newline so we don't need it to be present in the expected data.
if last >= 0 && resp.Body[last] == '\n' {
resp.Body = resp.Body[:last]
}
if resp.Body != expected {
t.Fatalf("node %s, query %q: expected response %s, got %s", m.ID(), query, expected, resp.Body)
}
}
func (m *Command) QueryProtobuf(indexName string, query string) (*pilosa.QueryResponse, error) {
var ser proto.Serializer
queryReq := &pilosa.QueryRequest{
Index: indexName,
Query: query,
}
body, err := ser.Marshal(queryReq)
if err != nil {
return nil, err
}
req, err := gohttp.NewRequest(
"POST",
fmt.Sprintf("%s/index/%s/query", m.URL(), indexName),
bytes.NewReader(body),
)
if err != nil {
return nil, err
}
req.Header.Set("Content-Type", "application/x-protobuf")
req.Header.Set("Accept", "application/x-protobuf")
resp, err := gohttp.DefaultClient.Do(req)
if err != nil {
return nil, err
}
defer resp.Body.Close()
buf, err := ioutil.ReadAll(resp.Body)
if err != nil {
return nil, err
}
response := &pilosa.QueryResponse{}
err = ser.Unmarshal(buf, response)
if err != nil {
return nil, err
}
return response, nil
}
// RecalculateCaches is deprecated. Use MustRecalculateCaches.
func (m *Command) RecalculateCaches(t *testing.T) error {
resp := Do(t, "POST", fmt.Sprintf("%s/recalculate-caches", m.URL()), "")
if resp.StatusCode != 204 {
return fmt.Errorf("invalid status: %d, body=%s", resp.StatusCode, resp.Body)
}
return nil
}
// Do executes http.Do() with an http.NewRequest().
func Do(t testing.TB, method, urlStr string, body string) *httpResponse {
t.Helper()
req, err := gohttp.NewRequest(
method,
urlStr,
strings.NewReader(body),
)
if err != nil {
t.Fatal(err)
}
req.Header.Set("Content-Type", "application/json")
req.Header.Set("Accept", "application/json")
// set a timeout instead of allowing gohttp.Defaultclient to
// potentially hang forever.
hc := &gohttp.Client{
Timeout: time.Second * 30,
}
resp, err := hc.Do(req)
if err != nil {
fmt.Printf(" hc.Do() err = '%v'\n", err)
t.Fatal(err)
}
defer resp.Body.Close()
buf, err := ioutil.ReadAll(resp.Body)
if err != nil {
t.Fatal(err)
}
return &httpResponse{Response: resp, Body: string(buf)}
}
func CheckGroupBy(t *testing.T, expected, results []pilosa.GroupCount) {
t.Helper()
if len(results) != len(expected) {
t.Fatalf("number of groupings mismatch:\n got:%+v\nwant:%+v\n", results, expected)
}
for i, result := range results {
if !reflect.DeepEqual(expected[i], result) {
t.Fatalf("unexpected result at %d: \n got:%+v\nwant:%+v\n", i, result, expected[i])
}
}
}
// httpResponse is a wrapper for http.Response that holds the Body as a string.
type httpResponse struct {
*gohttp.Response
Body string
}
// RetryUntil repeatedly executes fn until it returns nil or timeout occurs.
func RetryUntil(timeout time.Duration, fn func() error) (err error) {
timer := time.NewTimer(timeout)
defer timer.Stop()
ticker := time.NewTicker(10 * time.Millisecond)
defer ticker.Stop()
for {
if err = fn(); err == nil {
return nil
}
select {
case <-timer.C:
return err
case <-ticker.C:
}
}
}