featurebase/cmd/root_test.go
2017-10-30 09:20:09 -05:00

196 lines
6 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 cmd_test
import (
"fmt"
"io"
"io/ioutil"
"os"
"reflect"
"strings"
"testing"
"time"
"github.com/pilosa/pilosa/cmd"
"github.com/spf13/cobra"
)
// failErr calls t.Fatal if err != nil and adds the optional context to the
// error message.
func failErr(t *testing.T, err error, context ...string) {
ctx := strings.Join(context, "; ")
if err != nil {
t.Fatal(ctx, ": ", err)
}
}
// tExec executes the given `cmd`, which will be writing its output to `w`, and
// can be read from `out`. It will fail the test if the command does not return
// within 1 second. Useful for testing help messages and such.
func tExec(t *testing.T, cmd *cobra.Command, out io.Reader, w io.WriteCloser) (output []byte, err error) {
done := make(chan struct{})
var readErr error
go func() {
output, readErr = ioutil.ReadAll(out)
close(done)
}()
err = cmd.Execute()
if err != nil {
return output, err
}
if err := w.Close(); err != nil {
return output, fmt.Errorf("closing cmd's stdout: %v", err)
}
select {
case <-done:
case <-time.After(time.Second * 1):
t.Fatal("Test failed due to command execution timeout")
}
return output, readErr
}
// ExecNewRootCommand executes the pilosa root command with the given arguments
// and returns it's output. It will fail if the command does not complete within
// 1 second.
func ExecNewRootCommand(t *testing.T, args ...string) (string, error) {
out, w := io.Pipe()
rc := cmd.NewRootCommand(os.Stdin, w, w)
rc.SetArgs(args)
output, err := tExec(t, rc, out, w)
return string(output), err
}
// validator is a simple helper to avoid repeated `if err != nil` checks in
// validation code. One can use it to check that several pairs of things are
// equal, and at the end access an informative error message about the first
// non-equal pair encountered (or nil if all were equal)
type validator struct {
err error
}
// Check that two things are equal, and if not set v.err to a descriptive error
// message.
func (v *validator) Check(actual, expected interface{}) {
if v.err != nil {
return
}
if !reflect.DeepEqual(actual, expected) {
v.err = fmt.Errorf("Actual: '%v' is not equal to '%v'", actual, expected)
}
}
// Error returns the validator's error value if any v.Check call found an error.
func (v *validator) Error() error { return v.err }
// commandTest represents all possible ways to configure a pilosa command, as
// well as a function for validating whether the command worked as expected.
// args should be set to everything that comes after "pilosa" on the comand
// line. See tests like backup_test.go for examples.
type commandTest struct {
args []string
env map[string]string
cfgFileContent string
validation func() error
}
// executeDry sets up and executes each commandTest with the --dry-run flag set
// to true, and then executes the tests validation function. This stops
// execution after PersistentPreRunE (and so before the command's Run or RunE
// function is called). This is useful for verifying that configuration happened
// properly.
func executeDry(t *testing.T, tests []commandTest) {
for i, test := range tests {
test.args = append(test.args[:1], append([]string{"--dry-run"}, test.args[1:]...)...)
com := test.setupCommand(t)
err := com.Execute()
if err.Error() != "dry run" {
t.Fatalf("Problem with test %d, err: '%v'", i, err)
}
if err := test.validation(); err != nil {
t.Fatalf("Failed test %d due to: %v", i, err)
}
test.reset()
}
}
// setupCommand sets up all the configuration specified in the commandTest so
// that it can be run. This includes setting environment variables, and creating
// a temp config file with the cfgFileContent string as its content.
func (ct *commandTest) setupCommand(t *testing.T) *cobra.Command {
// make config file
cfgFile, err := ioutil.TempFile("", "")
failErr(t, err, "making temp file")
_, err = cfgFile.WriteString(ct.cfgFileContent)
failErr(t, err, "writing config to temp file")
// set up config file args/env
ct.env["PILOSA_CONFIG"] = cfgFile.Name()
// set up env
for name, val := range ct.env {
err = os.Setenv(name, val)
failErr(t, err, fmt.Sprintf("setting environment variable '%s' to '%s'", name, val))
}
// make command and set args
rc := cmd.NewRootCommand(strings.NewReader(""), ioutil.Discard, ioutil.Discard)
rc.SetArgs(ct.args)
err = cfgFile.Close()
failErr(t, err, "closing config file")
return rc
}
// reset the environment after setup/run of a commandTest.
func (ct *commandTest) reset() {
for name, _ := range ct.env {
os.Setenv(name, "")
}
}
func TestRootCommand(t *testing.T) {
outStr, err := ExecNewRootCommand(t, "--help")
if !strings.Contains(outStr, "Usage:") ||
!strings.Contains(outStr, "Available Commands:") ||
!strings.Contains(outStr, "--help") || err != nil {
t.Fatalf("Expected standard usage message from RootCommand, but err: '%v', output: '%s'", err, outStr)
}
}
func TestRootCommand_Config(t *testing.T) {
file, err := ioutil.TempFile("", "test.conf")
if err != nil {
panic(err)
}
config := `data-dir = "/tmp/pil5_0"
bind = "127.0.0.1:10101"
[cluster]
replicas = 2
partitions = 128
hosts = [
"127.0.0.1:10101",
"127.0.0.1:10111",
]`
file.Write([]byte(config))
file.Close()
_, err = ExecNewRootCommand(t, "server", "--config", file.Name())
if err.Error() != "invalid option in configuration file: cluster.partitions" {
t.Fatalf("Expected invalid option in configuration file, but err: '%v'", err)
}
}