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Explained in a comment: We default these Max File/Map counts very high. This is basically a backwards compatibility thing where we don't want to cause different behavior for those who had previously set their system limits high, and weren't experiencing any bad behavior. Ideally you want these set a bit below your system limits.
384 lines
12 KiB
Go
384 lines
12 KiB
Go
// Copyright 2017 Pilosa Corp.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package server
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import (
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"context"
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"fmt"
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"log"
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"net"
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"strconv"
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"strings"
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"time"
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"github.com/pilosa/pilosa/gossip"
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"github.com/pilosa/pilosa/toml"
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"github.com/pkg/errors"
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"github.com/uber/jaeger-client-go"
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)
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// TLSConfig contains TLS configuration
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type TLSConfig struct {
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// CertificatePath contains the path to the certificate (.crt or .pem file)
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CertificatePath string `toml:"certificate"`
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// CertificateKeyPath contains the path to the certificate key (.key file)
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CertificateKeyPath string `toml:"key"`
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// SkipVerify disables verification for self-signed certificates
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SkipVerify bool `toml:"skip-verify"`
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}
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// Config represents the configuration for the command.
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type Config struct {
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// DataDir is the directory where Pilosa stores both indexed data and
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// running state such as cluster topology information.
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DataDir string `toml:"data-dir"`
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// Bind is the host:port on which Pilosa will listen.
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Bind string `toml:"bind"`
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// Advertise is the address advertised by the server to other nodes
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// in the cluster. It should be reachable by all other nodes and should
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// route to an interface that Bind is listening on.
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Advertise string `toml:"advertise"`
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// MaxWritesPerRequest limits the number of mutating commands that can be in
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// a single request to the server. This includes Set, Clear,
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// SetRowAttrs & SetColumnAttrs.
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MaxWritesPerRequest int `toml:"max-writes-per-request"`
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// LogPath configures where Pilosa will write logs.
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LogPath string `toml:"log-path"`
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// Verbose toggles verbose logging which can be useful for debugging.
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Verbose bool `toml:"verbose"`
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// HTTP Handler options
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Handler struct {
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// CORS Allowed Origins
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AllowedOrigins []string `toml:"allowed-origins"`
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} `toml:"handler"`
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// MaxMapCount puts an in-process limit on the number of mmaps. After this
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// is exhausted, Pilosa will fall back to reading the file into memory
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// normally.
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MaxMapCount uint64 `toml:"max-map-count"`
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// MaxFileCount puts a soft, in-process limit on the number of open fragment
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// files. Once this limit is passed, Pilosa will only keep files open while
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// actively working with them, and will close them afterward. This has a
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// negative effect on performance for workloads which make small appends to
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// lots of fragments.
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MaxFileCount uint64 `toml:"max-file-count"`
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// TLS
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TLS TLSConfig `toml:"tls"`
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Cluster struct {
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// Disabled controls whether clustering functionality is enabled.
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Disabled bool `toml:"disabled"`
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Coordinator bool `toml:"coordinator"`
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ReplicaN int `toml:"replicas"`
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Hosts []string `toml:"hosts"`
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// TODO(2.0) move this out of cluster. (why is it here??)
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LongQueryTime toml.Duration `toml:"long-query-time"`
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} `toml:"cluster"`
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// Gossip config is based around memberlist.Config.
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Gossip gossip.Config `toml:"gossip"`
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Translation struct {
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MapSize int `toml:"map-size"`
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// DEPRECATED: Translation config supports translation store replication.
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PrimaryURL string `toml:"primary-url"`
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} `toml:"translation"`
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AntiEntropy struct {
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Interval toml.Duration `toml:"interval"`
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} `toml:"anti-entropy"`
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Metric struct {
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// Service can be statsd, expvar, or none.
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Service string `toml:"service"`
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// Host tells the statsd client where to write.
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Host string `toml:"host"`
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PollInterval toml.Duration `toml:"poll-interval"`
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// Diagnostics toggles sending some limited diagnostic information to
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// Pilosa's developers.
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Diagnostics bool `toml:"diagnostics"`
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} `toml:"metric"`
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Tracing struct {
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// SamplerType is the type of sampler to use.
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SamplerType string `toml:"sampler-type"`
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// SamplerParam is the parameter passed to the tracing sampler.
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// Its meaning is dependent on the type of sampler.
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SamplerParam float64 `toml:"sampler-param"`
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// AgentHostPort is the host:port of the local agent.
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AgentHostPort string `toml:"agent-host-port"`
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} `toml:"tracing"`
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Profile struct {
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// BlockRate is passed directly to runtime.SetBlockProfileRate
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BlockRate int `toml:"block-rate"`
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// MutexFraction is passed directly to runtime.SetMutexProfileFraction
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MutexFraction int `toml:"mutex-fraction"`
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} `toml:"profile"`
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}
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// NewConfig returns an instance of Config with default options.
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func NewConfig() *Config {
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c := &Config{
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DataDir: "~/.pilosa",
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Bind: ":10101",
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MaxWritesPerRequest: 5000,
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// We default these Max File/Map counts very high. This is basically a
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// backwards compatibility thing where we don't want to cause different
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// behavior for those who had previously set their system limits high,
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// and weren't experiencing any bad behavior. Ideally you want these set
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// a bit below your system limits.
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MaxMapCount: 1000000,
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MaxFileCount: 1000000,
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TLS: TLSConfig{},
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}
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// Cluster config.
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c.Cluster.Disabled = false
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c.Cluster.ReplicaN = 1
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c.Cluster.Hosts = []string{}
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c.Cluster.LongQueryTime = toml.Duration(time.Minute)
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// Gossip config.
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c.Gossip.Port = "14000"
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c.Gossip.StreamTimeout = toml.Duration(10 * time.Second)
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c.Gossip.SuspicionMult = 4
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c.Gossip.PushPullInterval = toml.Duration(30 * time.Second)
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c.Gossip.ProbeInterval = toml.Duration(1 * time.Second)
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c.Gossip.ProbeTimeout = toml.Duration(500 * time.Millisecond)
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c.Gossip.Interval = toml.Duration(200 * time.Millisecond)
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c.Gossip.Nodes = 3
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c.Gossip.ToTheDeadTime = toml.Duration(30 * time.Second)
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// AntiEntropy config.
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c.AntiEntropy.Interval = toml.Duration(10 * time.Minute)
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// Metric config.
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c.Metric.Service = "none"
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c.Metric.PollInterval = toml.Duration(0 * time.Minute)
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c.Metric.Diagnostics = true
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// Tracing config.
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c.Tracing.SamplerType = jaeger.SamplerTypeRemote
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c.Tracing.SamplerParam = 0.001
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c.Profile.BlockRate = 10000000 // 1 sample per 10 ms
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c.Profile.MutexFraction = 100 // 1% sampling
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return c
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}
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// validateAddrs controls the address fields in the Config object
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// and fills in any blanks.
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// The addresses fields must be guaranteed by the caller to either be
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// completely empty, or have both a host part and a port part
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// separated by a colon. In the latter case either can be empty to
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// indicate it's left unspecified.
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func (cfg *Config) validateAddrs(ctx context.Context) error {
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// Validate the advertise address.
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advScheme, advHost, advPort, err := validateAdvertiseAddr(ctx, cfg.Advertise, cfg.Bind)
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if err != nil {
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return errors.Wrapf(err, "validating advertise address")
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}
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cfg.Advertise = schemeHostPortString(advScheme, advHost, advPort)
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// Validate the listen address.
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listenScheme, listenHost, listenPort, err := validateListenAddr(ctx, cfg.Bind)
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if err != nil {
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return errors.Wrap(err, "validating listen address")
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}
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cfg.Bind = schemeHostPortString(listenScheme, listenHost, listenPort)
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return nil
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}
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// validateAdvertiseAddr validates and normalizes an address accessible
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// Ensures that if the "host" part is empty, it gets filled in with
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// the configured listen address if any, otherwise it makes a best
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// guess at the outbound IP address.
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// Returns scheme, host, port as strings.
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func validateAdvertiseAddr(ctx context.Context, advAddr, listenAddr string) (string, string, string, error) {
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listenScheme, listenHost, listenPort, err := splitAddr(listenAddr)
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if err != nil {
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return "", "", "", errors.Wrap(err, "getting listen address")
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}
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advScheme, advHostPort := splitScheme(advAddr)
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advHost, advPort := "", ""
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if advHostPort != "" {
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var err error
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advHost, advPort, err = net.SplitHostPort(advHostPort)
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if err != nil {
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return "", "", "", errors.Wrapf(err, "splitting host port: %s", advHostPort)
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}
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}
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// If no advertise scheme was specified, use the one from
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// the listen address.
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if advScheme == "" {
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advScheme = listenScheme
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}
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// If there was no port number, reuse the one from the listen
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// address.
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if advPort == "" || advPort == "0" {
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advPort = listenPort
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}
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// Resolve non-numeric to numeric.
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portNumber, err := net.DefaultResolver.LookupPort(ctx, "tcp", advPort)
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if err != nil {
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return "", "", "", errors.Wrapf(err, "looking up non-numeric port: %v", advPort)
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}
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advPort = strconv.Itoa(portNumber)
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// If the advertise host is empty, then we have two cases.
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if advHost == "" {
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if listenHost == "0.0.0.0" {
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advHost = outboundIP().String()
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} else {
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advHost = listenHost
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}
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}
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return advScheme, advHost, advPort, nil
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}
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// outboundIP gets the preferred outbound ip of this machine.
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func outboundIP() net.IP {
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// This is not actually making a connection to 8.8.8.8.
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// net.Dial() selects the IP address that would be used
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// if an actual connection to 8.8.8.8 were made, so this
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// choice of address is just meant to ensure that an
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// external address is returned (as opposed to a local
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// address like 127.0.0.1).
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conn, err := net.Dial("udp", "8.8.8.8:80")
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if err != nil {
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log.Fatal(err)
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}
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defer conn.Close()
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localAddr := conn.LocalAddr().(*net.UDPAddr)
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return localAddr.IP
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}
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// validateListenAddr validates and normalizes an address suitable for
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// use with net.Listen(). This accepts an empty "host" part to signify
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// the default (localhost) should be used. Rresolves host names to IP
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// addresses.
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// Returns scheme, host, port as strings.
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func validateListenAddr(ctx context.Context, addr string) (string, string, string, error) {
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scheme, host, port, err := splitAddr(addr)
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if err != nil {
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return "", "", "", errors.Wrap(err, "getting listen address")
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}
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rHost, rPort, err := resolveAddr(ctx, host, port)
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if err != nil {
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return "", "", "", errors.Wrap(err, "resolving address")
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}
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return scheme, rHost, rPort, nil
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}
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// splitScheme returns two strings: the scheme and the hostPort.
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func splitScheme(addr string) (string, string) {
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parts := strings.SplitN(addr, "://", 2)
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if len(parts) == 1 {
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return "", addr
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}
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return parts[0], parts[1]
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}
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func schemeHostPortString(scheme, host, port string) string {
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var s string
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if scheme != "" {
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s += fmt.Sprintf("%s://", scheme)
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}
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return s + net.JoinHostPort(host, port)
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}
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// splitAddr returns scheme, host, port as strings.
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func splitAddr(addr string) (string, string, string, error) {
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scheme, hostPort := splitScheme(addr)
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host, port := "", ""
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if hostPort != "" {
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var err error
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host, port, err = net.SplitHostPort(hostPort)
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if err != nil {
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return "", "", "", errors.Wrapf(err, "splitting host port: %s", hostPort)
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}
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}
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// It's not ideal to have a default here, but the alterative
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// results in a port of 0, which causes Pilosa to listen on
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// a random port.
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if port == "" {
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port = "10101"
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}
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return scheme, host, port, nil
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}
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// resolveAddr resolves non-numeric addresses to numeric (IP, port) addresses.
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func resolveAddr(ctx context.Context, host, port string) (string, string, error) {
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resolver := net.DefaultResolver
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// Resolve the port number. This may translate service names
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// e.g. "postgresql" to a numeric value.
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portNumber, err := resolver.LookupPort(ctx, "tcp", port)
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if err != nil {
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return "", "", errors.Wrapf(err, "resolving up port: %v", port)
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}
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port = strconv.Itoa(portNumber)
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// Resolve the address.
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if host == "" || host == "localhost" {
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return host, port, nil
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}
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addr, err := lookupAddr(ctx, resolver, host)
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if err != nil {
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return "", "", errors.Wrap(err, "looking up address")
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}
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return addr, port, nil
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}
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// lookupAddr resolves the given address/host to an IP address. If
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// multiple addresses are resolved, it returns the first IPv4 address
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// available if there is one, otherwise the first address.
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func lookupAddr(ctx context.Context, resolver *net.Resolver, host string) (string, error) {
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// Resolve the IP address or hostname to an IP address.
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addrs, err := resolver.LookupIPAddr(ctx, host)
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if err != nil {
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return "", errors.Wrap(err, "looking up IP addresses")
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}
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if len(addrs) == 0 {
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return "", fmt.Errorf("cannot resolve %q to an address", host)
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}
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// LookupIPAddr() can return a mix of IPv6 and IPv4
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// addresses. Return the first IPv4 address if possible.
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for _, addr := range addrs {
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if ip := addr.IP.To4(); ip != nil {
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return ip.String(), nil
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}
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}
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// No IPv4 address, return the first resolved address instead.
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return addrs[0].String(), nil
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}
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