featurebase/server/server.go
Seebs 7d1fde7438 drop anti-entropy feature, since it doesn't work
The anti-entropy feature has never actually worked. We've been
talking about removing it or replacing it for ages, but haven't
had a concrete motivation.

But the anti-entropy interface is the sole user of several components
of the Tx interface, and now that we're trying to replace that
interface, being able to drop those components has some appeal, so
let's remove the one thing that used them, in the hopes that this
will simplify life.

This also lets us drop ForEach and ForEachRange, which were
barely used at all. The one surviving usage (CSV export) can be
handled by using the container iterator we already have, and
making ContainerCallback exported so we can use it to just call
things for every bit.

(cherry picked from commit fff9ddc1f5)
2022-11-15 11:31:13 -08:00

734 lines
22 KiB
Go

// Copyright 2022 Molecula Corp. (DBA FeatureBase).
// SPDX-License-Identifier: Apache-2.0
//
// Package server contains the `pilosa server` subcommand which runs Pilosa
// itself. The purpose of this package is to define an easily tested Command
// object which handles interpreting configuration and setting up all the
// objects that Pilosa needs.
package server
import (
"context"
"crypto/tls"
"fmt"
"io"
"log"
"math/rand"
"net"
"os"
"os/signal"
"path/filepath"
"runtime"
"strconv"
"strings"
"sync"
"syscall"
"time"
"golang.org/x/sync/errgroup"
pilosa "github.com/featurebasedb/featurebase/v3"
"github.com/featurebasedb/featurebase/v3/authn"
"github.com/featurebasedb/featurebase/v3/authz"
"github.com/featurebasedb/featurebase/v3/boltdb"
"github.com/featurebasedb/featurebase/v3/encoding/proto"
petcd "github.com/featurebasedb/featurebase/v3/etcd"
"github.com/featurebasedb/featurebase/v3/gcnotify"
"github.com/featurebasedb/featurebase/v3/gopsutil"
"github.com/featurebasedb/featurebase/v3/logger"
pnet "github.com/featurebasedb/featurebase/v3/net"
"github.com/featurebasedb/featurebase/v3/prometheus"
"github.com/featurebasedb/featurebase/v3/sql3"
"github.com/featurebasedb/featurebase/v3/sql3/planner"
"github.com/featurebasedb/featurebase/v3/statik"
"github.com/featurebasedb/featurebase/v3/stats"
"github.com/featurebasedb/featurebase/v3/statsd"
"github.com/featurebasedb/featurebase/v3/syswrap"
"github.com/featurebasedb/featurebase/v3/testhook"
"github.com/pelletier/go-toml"
"github.com/pkg/errors"
)
type loggerLogger interface {
logger.Logger
Logger() *log.Logger
}
// Command represents the state of the pilosa server command.
type Command struct {
Server *pilosa.Server
// Configuration.
Config *Config
// Standard input/output
*pilosa.CmdIO
// Started will be closed once Command.Start is finished.
Started chan struct{}
// done will be closed when Command.Close() is called
done chan struct{}
logOutput io.Writer
queryLogOutput io.Writer
logger loggerLogger
queryLogger loggerLogger
Handler pilosa.HandlerI
grpcServer *grpcServer
grpcLn net.Listener
API *pilosa.API
ln net.Listener
listenURI *pnet.URI
tlsConfig *tls.Config
closeTimeout time.Duration
serverOptions []pilosa.ServerOption
auth *authn.Auth
}
type CommandOption func(c *Command) error
func OptCommandServerOptions(opts ...pilosa.ServerOption) CommandOption {
return func(c *Command) error {
c.serverOptions = append(c.serverOptions, opts...)
return nil
}
}
func OptCommandCloseTimeout(d time.Duration) CommandOption {
return func(c *Command) error {
c.closeTimeout = d
return nil
}
}
func OptCommandConfig(config *Config) CommandOption {
return func(c *Command) error {
defer c.Config.MustValidate()
if c.Config != nil {
c.Config.Etcd = config.Etcd
c.Config.Auth = config.Auth
c.Config.TLS = config.TLS
return nil
}
c.Config = config
return nil
}
}
// NewCommand returns a new instance of Main.
func NewCommand(stdin io.Reader, stdout, stderr io.Writer, opts ...CommandOption) *Command {
c := &Command{
Config: NewConfig(),
CmdIO: pilosa.NewCmdIO(stdin, stdout, stderr),
Started: make(chan struct{}),
done: make(chan struct{}),
}
for _, opt := range opts {
err := opt(c)
if err != nil {
panic(err)
// TODO: Return error instead of panic?
}
}
return c
}
// defaultFileLimit is a suggested open file count limit for Pilosa to run with
const (
defaultFileLimit = uint64(256 * 1024)
)
// we want to set resource limits *exactly once*, and then be able
// to report on whether or not that succeeded.
var setupResourceLimitsOnce sync.Once
var setupResourceLimitsErr error
// doSetupResourceLimits is the function which actually does the
// resource limit setup, possibly yielding an error. it's a Command
// method because it uses the command's logger, but is in fact
// expected to work globally.
func (m *Command) doSetupResourceLimits() error {
oldLimit := &syscall.Rlimit{}
if err := syscall.Getrlimit(syscall.RLIMIT_NOFILE, oldLimit); err != nil {
return fmt.Errorf("checking open file limit: %w", err)
}
// inherit existing limit
targetFileLimit := defaultFileLimit
if targetFileLimit > oldLimit.Max {
m.logger.Warnf("open file maximum (%d) lower than suggested open files (%d)",
oldLimit.Max, defaultFileLimit)
targetFileLimit = oldLimit.Max
}
// If the soft limit is lower than the defaultFileLimit constant, we will try to change it.
if oldLimit.Cur < targetFileLimit {
newLimit := &syscall.Rlimit{
Cur: targetFileLimit,
Max: oldLimit.Max,
}
// Try to set the limit
if err := syscall.Setrlimit(syscall.RLIMIT_NOFILE, newLimit); err != nil {
return fmt.Errorf("setting open file limit: %w", err)
}
// Check the limit after setting it. OS may not obey Setrlimit call.
if err := syscall.Getrlimit(syscall.RLIMIT_NOFILE, oldLimit); err != nil {
return fmt.Errorf("checking open file limit: %w", err)
} else {
if oldLimit.Cur != targetFileLimit {
m.logger.Warnf("tried to set open file limit to %d, but it is %d; see https://docs.featurebase.com/reference/hostsystem#operating-system-configuration", targetFileLimit, oldLimit.Cur)
}
}
}
// We don't have corresponding options for non-Linux right now, but probably should.
if runtime.GOOS == "linux" {
result, err := os.ReadFile("/proc/sys/vm/max_map_count")
if err != nil {
m.logger.Infof("Tried unsuccessfully to check system mmap limit: %w", err)
} else {
sysMmapLimit, err := strconv.ParseUint(strings.TrimSuffix(string(result), "\n"), 10, 64)
if err != nil {
m.logger.Infof("Tried unsuccessfully to check system mmap limit: %w", err)
} else if m.Config.MaxMapCount > sysMmapLimit {
m.logger.Warnf("Config max map limit (%v) is greater than current system limits (%v)", m.Config.MaxMapCount, sysMmapLimit)
}
}
}
return nil
}
// setupResourceLimits tries to set up resource limits, like mmap limits
// and open files, if that hasn't been done already, and returns an error
// if the attempt failed in a way that we didn't anticipate. Mere permission
// denied errors are not that concerning.
func (m *Command) setupResourceLimits() error {
setupResourceLimitsOnce.Do(func() {
setupResourceLimitsErr = m.doSetupResourceLimits()
})
return setupResourceLimitsErr
}
// Start starts the pilosa server - it returns once the server is running.
func (m *Command) Start() (err error) {
// Seed random number generator
rand.Seed(time.Now().UTC().UnixNano())
// SetupServer
err = m.SetupServer()
if err != nil {
return errors.Wrap(err, "setting up server")
}
err = m.setupResourceLimits()
if err != nil {
return errors.Wrap(err, "setting resource limits")
}
// Initialize server.
if err = m.Server.Open(); err != nil {
return errors.Wrap(err, "opening server")
}
// Initialize HTTP.
go func() {
if err := m.Handler.Serve(); err != nil {
m.logger.Errorf("handler serve error: %v", err)
}
}()
m.logger.Printf("listening as %s\n", m.listenURI)
// Initialize gRPC.
go func() {
if err := m.grpcServer.Serve(); err != nil {
m.logger.Errorf("grpc server error: %v", err)
}
}()
_ = testhook.Opened(pilosa.NewAuditor(), m, nil)
close(m.Started)
return nil
}
func (m *Command) UpAndDown() (err error) {
// Seed random number generator
rand.Seed(time.Now().UTC().UnixNano())
// SetupServer
err = m.SetupServer()
if err != nil {
return errors.Wrap(err, "setting up server")
}
m.logger.Infof("bringing server up and shutting it down immediately")
go func() {
err := m.Handler.Serve()
if err != nil {
m.logger.Errorf("handler serve error: %v", err)
}
}()
// Bring the server up, and back down again.
if err = m.Server.UpAndDown(); err != nil {
return errors.Wrap(err, "bringing server up and down")
}
m.logger.Infof("teardown complete")
return nil
}
// Wait waits for the server to be closed or interrupted.
func (m *Command) Wait() error {
// First SIGKILL causes server to shut down gracefully.
c := make(chan os.Signal, 2)
signal.Notify(c, os.Interrupt, syscall.SIGTERM)
select {
case sig := <-c:
m.logger.Infof("received signal '%s', gracefully shutting down...\n", sig.String())
// Second signal causes a hard shutdown.
go func() { <-c; os.Exit(1) }()
return errors.Wrap(m.Close(), "closing command")
case <-m.done:
m.logger.Infof("server closed externally")
return nil
}
}
// SetupServer uses the cluster configuration to set up this server.
func (m *Command) SetupServer() error {
runtime.SetBlockProfileRate(m.Config.Profile.BlockRate)
runtime.SetMutexProfileFraction(m.Config.Profile.MutexFraction)
_ = syswrap.SetMaxMapCount(m.Config.MaxMapCount)
_ = syswrap.SetMaxFileCount(m.Config.MaxFileCount)
err := m.setupLogger()
if err != nil {
return errors.Wrap(err, "setting up logger")
}
version := pilosa.VersionInfo(m.Config.Future.Rename)
m.logger.Infof("%s", version)
handleTrialDeadline(m.logger)
// validateAddrs sets the appropriate values for Bind and Advertise
// based on the inputs. It is not responsible for applying defaults, although
// it does provide a non-zero port (10101) in the case where no port is specified.
// The alternative would be to use port 0, which would choose a random port, but
// currently that's not what we want.
if err := m.Config.validateAddrs(context.Background()); err != nil {
return errors.Wrap(err, "validating addresses")
}
uri, err := pilosa.AddressWithDefaults(m.Config.Bind)
if err != nil {
return errors.Wrap(err, "processing bind address")
}
grpcURI, err := pnet.NewURIFromAddress(m.Config.BindGRPC)
if err != nil {
return errors.Wrap(err, "processing bind grpc address")
}
if m.Config.GRPCListener == nil {
// create gRPC listener
m.grpcLn, err = net.Listen("tcp", grpcURI.HostPort())
if err != nil {
return errors.Wrap(err, "creating grpc listener")
}
// If grpc port is 0, get auto-allocated port from listener
if grpcURI.Port == 0 {
grpcURI.SetPort(uint16(m.grpcLn.Addr().(*net.TCPAddr).Port))
}
} else {
m.grpcLn = m.Config.GRPCListener
}
// Setup TLS
if uri.Scheme == "https" {
m.tlsConfig, err = GetTLSConfig(&m.Config.TLS, m.logger)
if err != nil {
return errors.Wrap(err, "get tls config")
}
}
diagnosticsInterval := time.Duration(0)
if m.Config.Metric.Diagnostics {
diagnosticsInterval = defaultDiagnosticsInterval
}
statsClient, err := newStatsClient(m.Config.Metric.Service, m.Config.Metric.Host, m.Config.Namespace())
if err != nil {
return errors.Wrap(err, "new stats client")
}
m.ln, err = getListener(*uri, m.tlsConfig)
if err != nil {
return errors.Wrap(err, "getting listener")
}
// If port is 0, get auto-allocated port from listener
if uri.Port == 0 {
uri.SetPort(uint16(m.ln.Addr().(*net.TCPAddr).Port))
}
// Save listenURI for later reference.
m.listenURI = uri
c := pilosa.GetHTTPClient(m.tlsConfig)
// Get advertise address as uri.
advertiseURI, err := pilosa.AddressWithDefaults(m.Config.Advertise)
if err != nil {
return errors.Wrap(err, "processing advertise address")
}
if advertiseURI.Port == 0 {
advertiseURI.SetPort(uri.Port)
}
// Get grpc advertise address as uri.
advertiseGRPCURI, err := pnet.NewURIFromAddress(m.Config.AdvertiseGRPC)
if err != nil {
return errors.Wrap(err, "processing grpc advertise address")
}
if advertiseGRPCURI.Port == 0 {
advertiseGRPCURI.SetPort(grpcURI.Port)
}
// Primary store configuration is handled automatically now.
if m.Config.Translation.PrimaryURL != "" {
m.logger.Infof("DEPRECATED: The primary-url configuration option is no longer used.")
}
if m.Config.AntiEntropy.Interval != 0 {
m.logger.Infof("DEPRECATED: The anti-entropy configuration option is no longer used.")
}
// Handle renamed and deprecated config parameter
longQueryTime := m.Config.LongQueryTime
if m.Config.Cluster.LongQueryTime >= 0 {
longQueryTime = m.Config.Cluster.LongQueryTime
m.logger.Infof("DEPRECATED: Configuration parameter cluster.long-query-time has been renamed to long-query-time")
}
// Use other config parameters to set Etcd parameters which we don't want to
// expose in the user-facing config.
//
// Use cluster.name for etcd.cluster-name
m.Config.Etcd.ClusterName = m.Config.Cluster.Name
//
// Use name for etcd.name
m.Config.Etcd.Name = m.Config.Name
// use the pilosa provided tls credentials if available
m.Config.Etcd.TrustedCAFile = m.Config.TLS.CACertPath
m.Config.Etcd.ClientCertFile = m.Config.TLS.CertificatePath
m.Config.Etcd.ClientKeyFile = m.Config.TLS.CertificateKeyPath
m.Config.Etcd.PeerCertFile = m.Config.TLS.CertificatePath
m.Config.Etcd.PeerKeyFile = m.Config.TLS.CertificateKeyPath
//
// If an Etcd.Dir is not provided, nest a default under the pilosa data dir.
if m.Config.Etcd.Dir == "" {
path, err := expandDirName(m.Config.DataDir)
if err != nil {
return errors.Wrapf(err, "expanding directory name: %s", m.Config.DataDir)
}
m.Config.Etcd.Dir = filepath.Join(path, pilosa.DiscoDir)
}
m.Config.Etcd.Id = m.Config.Name // TODO(twg) rethink this
e := petcd.NewEtcd(m.Config.Etcd, m.logger, m.Config.Cluster.ReplicaN, version)
executionPlannerFn := func(e pilosa.Executor, api *pilosa.API, sql string) sql3.CompilePlanner {
fapi := &pilosa.FeatureBaseSchemaAPI{API: api}
fimp := &batch.FeaturebaseImporter{API: api}
return planner.NewExecutionPlanner(e, fapi, api, fimp, m.logger, sql)
}
serverOptions := []pilosa.ServerOption{
pilosa.OptServerLongQueryTime(time.Duration(longQueryTime)),
pilosa.OptServerDataDir(m.Config.DataDir),
pilosa.OptServerReplicaN(m.Config.Cluster.ReplicaN),
pilosa.OptServerMaxWritesPerRequest(m.Config.MaxWritesPerRequest),
pilosa.OptServerMetricInterval(time.Duration(m.Config.Metric.PollInterval)),
pilosa.OptServerDiagnosticsInterval(diagnosticsInterval),
pilosa.OptServerExecutorPoolSize(m.Config.WorkerPoolSize),
pilosa.OptServerOpenTranslateStore(boltdb.OpenTranslateStore),
pilosa.OptServerOpenTranslateReader(pilosa.GetOpenTranslateReaderWithLockerFunc(c, &sync.Mutex{})),
pilosa.OptServerOpenIDAllocator(pilosa.OpenIDAllocator),
pilosa.OptServerLogger(m.logger),
pilosa.OptServerQueryLogger(m.queryLogger),
pilosa.OptServerSystemInfo(gopsutil.NewSystemInfo()),
pilosa.OptServerGCNotifier(gcnotify.NewActiveGCNotifier()),
pilosa.OptServerStatsClient(statsClient),
pilosa.OptServerURI(advertiseURI),
pilosa.OptServerGRPCURI(advertiseGRPCURI),
pilosa.OptServerClusterName(m.Config.Cluster.Name),
pilosa.OptServerSerializer(proto.Serializer{}),
pilosa.OptServerStorageConfig(m.Config.Storage),
pilosa.OptServerRBFConfig(m.Config.RBFConfig),
pilosa.OptServerMaxQueryMemory(m.Config.MaxQueryMemory),
pilosa.OptServerQueryHistoryLength(m.Config.QueryHistoryLength),
pilosa.OptServerPartitionAssigner(m.Config.Cluster.PartitionToNodeAssignment),
pilosa.OptServerDisCo(e, e, e, e),
pilosa.OptServerExecutionPlannerFn(executionPlannerFn),
}
if m.Config.LookupDBDSN != "" {
serverOptions = append(serverOptions, pilosa.OptServerLookupDB(m.Config.LookupDBDSN))
}
serverOptions = append(serverOptions, m.serverOptions...)
if m.Config.Auth.Enable {
serverOptions = append(serverOptions, pilosa.OptServerInternalClient(pilosa.NewInternalClientFromURI(uri, c, pilosa.WithSecretKey(m.Config.Auth.SecretKey), pilosa.WithSerializer(proto.Serializer{}))))
} else {
serverOptions = append(serverOptions, pilosa.OptServerInternalClient(pilosa.NewInternalClientFromURI(uri, c, pilosa.WithSerializer(proto.Serializer{}))))
}
m.Server, err = pilosa.NewServer(serverOptions...)
if err != nil {
return errors.Wrap(err, "new server")
}
m.API, err = pilosa.NewAPI(
pilosa.OptAPIServer(m.Server),
pilosa.OptAPIImportWorkerPoolSize(m.Config.ImportWorkerPoolSize),
)
if err != nil {
return errors.Wrap(err, "new api")
}
// Tell server about its new API, which its client will need.
m.Server.SetAPI(m.API)
var p authz.GroupPermissions
if m.Config.Auth.Enable {
m.Config.MustValidateAuth()
permsFile, err := os.Open(m.Config.Auth.PermissionsFile)
if err != nil {
return err
}
defer permsFile.Close()
if err = p.ReadPermissionsFile(permsFile); err != nil {
return err
}
ac := m.Config.Auth
m.auth, err = authn.NewAuth(m.logger, ac.RedirectBaseURL, ac.Scopes, ac.AuthorizeURL, ac.TokenURL, ac.GroupEndpointURL, ac.LogoutURL, ac.ClientId, ac.ClientSecret, ac.SecretKey, ac.ConfiguredIPs)
if err != nil {
return errors.Wrap(err, "instantiating authN object")
}
err = m.setupQueryLogger()
if err != nil {
return errors.Wrap(err, "setting up queryLogger")
}
m.queryLogger.Infof("Starting Featurebase...")
m.queryLogger.Infof("Group with admin level access: %v", p.Admin)
m.queryLogger.Infof("Permissions: %+v", p.Permissions)
if len(ac.ConfiguredIPs) > 0 {
m.queryLogger.Infof("Configured IPs for allowed networks: %v", ac.ConfiguredIPs)
}
// TLS must be enabled if auth is
if m.Config.TLS.CertificatePath == "" || m.Config.TLS.CertificateKeyPath == "" {
return fmt.Errorf("transport layer security (TLS) is not configured properly. TLS is required when AuthN/Z is enabled, current configuration: %v", m.Config.TLS)
}
}
m.grpcServer, err = NewGRPCServer(
OptGRPCServerAPI(m.API),
OptGRPCServerListener(m.grpcLn),
OptGRPCServerTLSConfig(m.tlsConfig),
OptGRPCServerLogger(m.logger),
OptGRPCServerStats(statsClient),
OptGRPCServerAuth(m.auth),
OptGRPCServerPerm(&p),
OptGRPCServerQueryLogger(m.queryLogger),
)
if err != nil {
return errors.Wrap(err, "getting grpcServer")
}
m.Handler, err = pilosa.NewHandler(
pilosa.OptHandlerAllowedOrigins(m.Config.Handler.AllowedOrigins),
pilosa.OptHandlerAPI(m.API),
pilosa.OptHandlerLogger(m.logger),
pilosa.OptHandlerQueryLogger(m.queryLogger),
pilosa.OptHandlerFileSystem(&statik.FileSystem{}),
pilosa.OptHandlerListener(m.ln, m.Config.Advertise),
pilosa.OptHandlerCloseTimeout(m.closeTimeout),
pilosa.OptHandlerMiddleware(m.grpcServer.middleware(m.Config.Handler.AllowedOrigins)),
pilosa.OptHandlerAuthN(m.auth),
pilosa.OptHandlerAuthZ(&p),
pilosa.OptHandlerSerializer(proto.Serializer{}),
pilosa.OptHandlerRoaringSerializer(proto.RoaringSerializer),
pilosa.OptHandlerSQLEnabled(m.Config.SQL.EndpointEnabled),
)
return errors.Wrap(err, "new handler")
}
// setupLogger sets up the logger based on the configuration.
func (m *Command) setupLogger() error {
var f *logger.FileWriter
var err error
if m.Config.LogPath == "" {
m.logOutput = m.Stderr
} else {
f, err = logger.NewFileWriter(m.Config.LogPath)
if err != nil {
return errors.Wrap(err, "opening file")
}
m.logOutput = f
}
if m.Config.Verbose {
m.logger = logger.NewVerboseLogger(m.logOutput)
} else {
m.logger = logger.NewStandardLogger(m.logOutput)
}
if m.Config.LogPath != "" {
sighup := make(chan os.Signal, 1)
signal.Notify(sighup, syscall.SIGHUP)
go func() {
for {
// duplicate stderr onto log file
err := m.dup(int(f.Fd()), int(os.Stderr.Fd()))
if err != nil {
m.logger.Errorf("syscall dup: %s\n", err.Error())
}
// reopen log file on SIGHUP
<-sighup
err = f.Reopen()
if err != nil {
m.logger.Infof("reopen: %s\n", err.Error())
}
}
}()
}
return nil
}
func (m *Command) setupQueryLogger() error {
var f *logger.FileWriter
var err error
if m.Config.Auth.QueryLogPath == "" {
f, err = logger.NewFileWriterMode("queries/query.log", 0o600)
if err != nil {
return errors.Wrap(err, "opening file")
}
} else {
f, err = logger.NewFileWriterMode(m.Config.Auth.QueryLogPath, 0o600)
if err != nil {
return errors.Wrap(err, "opening file")
}
}
m.queryLogOutput = f
m.queryLogger = logger.NewStandardLogger(m.queryLogOutput)
sighup := make(chan os.Signal, 1)
signal.Notify(sighup, syscall.SIGHUP)
go func() {
for range sighup {
if err := f.Reopen(); err != nil {
m.queryLogger.Infof("reopen: %s\n", err.Error())
}
}
}()
return nil
}
// Close shuts down the server.
func (m *Command) Close() error {
select {
case <-m.done:
return nil
default:
eg := errgroup.Group{}
m.grpcServer.Stop()
eg.Go(m.Handler.Close)
eg.Go(m.Server.Close)
eg.Go(m.API.Close)
if closer, ok := m.logOutput.(io.Closer); ok {
// If closer is os.Stdout or os.Stderr, don't close it.
if closer != os.Stdout && closer != os.Stderr {
eg.Go(closer.Close)
}
}
err := eg.Wait()
_ = testhook.Closed(pilosa.NewAuditor(), m, nil)
close(m.done)
return errors.Wrap(err, "closing everything")
}
}
// newStatsClient creates a stats client from the config
func newStatsClient(name string, host string, namespace string) (stats.StatsClient, error) {
switch name {
case "expvar":
return stats.NewExpvarStatsClient(), nil
case "statsd":
return statsd.NewStatsClient(host, namespace)
case "prometheus":
return prometheus.NewPrometheusClient(
prometheus.OptClientNamespace(namespace),
)
case "nop", "none":
return stats.NopStatsClient, nil
default:
return nil, errors.Errorf("'%v' not a valid stats client, choose from [expvar, statsd, prometheus, none].", name)
}
}
// getListener gets a net.Listener based on the config.
func getListener(uri pnet.URI, tlsconf *tls.Config) (ln net.Listener, err error) {
// If bind URI has the https scheme, enable TLS
if uri.Scheme == "https" && tlsconf != nil {
ln, err = tls.Listen("tcp", uri.HostPort(), tlsconf)
if err != nil {
return nil, errors.Wrap(err, "tls.Listener")
}
} else if uri.Scheme == "http" {
// Open HTTP listener to determine port (if specified as :0).
ln, err = net.Listen("tcp", uri.HostPort())
if err != nil {
return nil, errors.Wrap(err, "net.Listen")
}
} else {
return nil, errors.Errorf("unsupported scheme: %s", uri.Scheme)
}
return ln, nil
}
// ParseConfig parses s into a Config.
func ParseConfig(s string) (Config, error) {
var c Config
err := toml.Unmarshal([]byte(s), &c)
return c, err
}
// expandDirName was copied from pilosa/server.go.
// TODO: consider centralizing this if we need this across packages.
func expandDirName(path string) (string, error) {
prefix := "~" + string(filepath.Separator)
if strings.HasPrefix(path, prefix) {
HomeDir := os.Getenv("HOME")
if HomeDir == "" {
return "", errors.New("data directory not specified and no home dir available")
}
return filepath.Join(HomeDir, strings.TrimPrefix(path, prefix)), nil
}
return path, nil
}