config

package
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Published: Nov 11, 2017 License: MPL-2.0 Imports: 26 Imported by: 0

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Index

Constants

View Source
const (
	SerfLANKeyring = "serf/local.keyring"
	SerfWANKeyring = "serf/remote.keyring"
)

Variables

This section is empty.

Functions

func AddFlags

func AddFlags(fs *flag.FlagSet, f *Flags)

AddFlags adds the command line flags for the agent.

func DefaultRPCProtocol

func DefaultRPCProtocol() (int, error)

func FormatFrom

func FormatFrom(name string) string

func TranslateKeys

func TranslateKeys(v map[string]interface{}, dict map[string]string)

TranslateKeys recursively translates all keys from m in-place to their canonical form as defined in dict which maps an alias name to the canonical name. If m already has a value for the canonical name then that one is used and the value for the alias name is discarded. Alias names are matched case-insensitive.

Example:

m = TranslateKeys(m, map[string]string{"CamelCase": "snake_case"})

Types

type Addresses

type Addresses struct {
	DNS   *string `json:"dns,omitempty" hcl:"dns" mapstructure:"dns"`
	HTTP  *string `json:"http,omitempty" hcl:"http" mapstructure:"http"`
	HTTPS *string `json:"https,omitempty" hcl:"https" mapstructure:"https"`
}

type AdvertiseAddrsConfig

type AdvertiseAddrsConfig struct {
	RPC     *string `json:"rpc,omitempty" hcl:"rpc" mapstructure:"rpc"`
	SerfLAN *string `json:"serf_lan,omitempty" hcl:"serf_lan" mapstructure:"serf_lan"`
	SerfWAN *string `json:"serf_wan,omitempty" hcl:"serf_wan" mapstructure:"serf_wan"`
}

type Autopilot

type Autopilot struct {
	CleanupDeadServers      *bool   `json:"cleanup_dead_servers,omitempty" hcl:"cleanup_dead_servers" mapstructure:"cleanup_dead_servers"`
	DisableUpgradeMigration *bool   `json:"disable_upgrade_migration,omitempty" hcl:"disable_upgrade_migration" mapstructure:"disable_upgrade_migration"`
	LastContactThreshold    *string `json:"last_contact_threshold,omitempty" hcl:"last_contact_threshold" mapstructure:"last_contact_threshold"`
	MaxTrailingLogs         *int    `json:"max_trailing_logs,omitempty" hcl:"max_trailing_logs" mapstructure:"max_trailing_logs"`
	RedundancyZoneTag       *string `json:"redundancy_zone_tag,omitempty" hcl:"redundancy_zone_tag" mapstructure:"redundancy_zone_tag"`
	ServerStabilizationTime *string `json:"server_stabilization_time,omitempty" hcl:"server_stabilization_time" mapstructure:"server_stabilization_time"`
	UpgradeVersionTag       *string `json:"upgrade_version_tag,omitempty" hcl:"upgrade_version_tag" mapstructure:"upgrade_version_tag"`
}

type Builder

type Builder struct {
	// Flags contains the parsed command line arguments.
	Flags Flags

	// Head, Sources, and Tail are used to manage the order of the
	// config sources, as described in the comments above.
	Head    []Source
	Sources []Source
	Tail    []Source

	// Warnings contains the warnings encountered when
	// parsing the configuration.
	Warnings []string

	// Hostname returns the hostname of the machine. If nil, os.Hostname
	// is called.
	Hostname func() (string, error)

	// GetPrivateIPv4 and GetPublicIPv6 return suitable default addresses
	// for cases when the user doesn't supply them.
	GetPrivateIPv4 func() ([]*net.IPAddr, error)
	GetPublicIPv6  func() ([]*net.IPAddr, error)
	// contains filtered or unexported fields
}

Builder constructs a valid runtime configuration from multiple configuration sources.

To build the runtime configuration first call Build() which merges the sources in a pre-defined order, converts the data types and structures into their final form and performs the syntactic validation.

The sources are merged in the following order:

  • default configuration
  • config files in alphabetical order
  • command line arguments

The config sources are merged sequentially and later values overwrite previously set values. Slice values are merged by concatenating the two slices.

Then call Validate() to perform the semantic validation to ensure that the configuration is ready to be used.

Splitting the construction into two phases greatly simplifies testing since not all pre-conditions have to be satisfied when performing syntactical tests.

func NewBuilder

func NewBuilder(flags Flags) (*Builder, error)

NewBuilder returns a new configuration builder based on the given command line flags.

func (*Builder) Build

func (b *Builder) Build() (rt RuntimeConfig, err error)

Build constructs the runtime configuration from the config sources and the command line flags. The config sources are processed in the order they were added with the flags being processed last to give precedence over the other sources. If the error is nil then warnings can still contain deprecation or format warnings that should be presented to the user.

func (*Builder) BuildAndValidate

func (b *Builder) BuildAndValidate() (RuntimeConfig, error)

func (*Builder) ReadFile

func (b *Builder) ReadFile(path string) (Source, error)

ReadFile parses a JSON or HCL config file and appends it to the list of config sources.

func (*Builder) ReadPath

func (b *Builder) ReadPath(path string) ([]Source, error)

ReadPath reads a single config file or all files in a directory (but not its sub-directories) and appends them to the list of config sources.

func (*Builder) Validate

func (b *Builder) Validate(rt RuntimeConfig) error

Validate performs semantical validation of the runtime configuration.

type CheckDefinition

type CheckDefinition struct {
	ID                             *string             `json:"id,omitempty" hcl:"id" mapstructure:"id"`
	Name                           *string             `json:"name,omitempty" hcl:"name" mapstructure:"name"`
	Notes                          *string             `json:"notes,omitempty" hcl:"notes" mapstructure:"notes"`
	ServiceID                      *string             `json:"service_id,omitempty" hcl:"service_id" mapstructure:"service_id"`
	Token                          *string             `json:"token,omitempty" hcl:"token" mapstructure:"token"`
	Status                         *string             `json:"status,omitempty" hcl:"status" mapstructure:"status"`
	Script                         *string             `json:"script,omitempty" hcl:"script" mapstructure:"script"`
	ScriptArgs                     []string            `json:"args,omitempty" hcl:"args" mapstructure:"args"`
	HTTP                           *string             `json:"http,omitempty" hcl:"http" mapstructure:"http"`
	Header                         map[string][]string `json:"header,omitempty" hcl:"header" mapstructure:"header"`
	Method                         *string             `json:"method,omitempty" hcl:"method" mapstructure:"method"`
	TCP                            *string             `json:"tcp,omitempty" hcl:"tcp" mapstructure:"tcp"`
	Interval                       *string             `json:"interval,omitempty" hcl:"interval" mapstructure:"interval"`
	DockerContainerID              *string             `json:"docker_container_id,omitempty" hcl:"docker_container_id" mapstructure:"docker_container_id"`
	Shell                          *string             `json:"shell,omitempty" hcl:"shell" mapstructure:"shell"`
	TLSSkipVerify                  *bool               `json:"tls_skip_verify,omitempty" hcl:"tls_skip_verify" mapstructure:"tls_skip_verify"`
	Timeout                        *string             `json:"timeout,omitempty" hcl:"timeout" mapstructure:"timeout"`
	TTL                            *string             `json:"ttl,omitempty" hcl:"ttl" mapstructure:"ttl"`
	DeregisterCriticalServiceAfter *string             `` /* 139-byte string literal not displayed */
}

type Config

type Config struct {
	ACLAgentMasterToken         *string                  `json:"acl_agent_master_token,omitempty" hcl:"acl_agent_master_token" mapstructure:"acl_agent_master_token"`
	ACLAgentToken               *string                  `json:"acl_agent_token,omitempty" hcl:"acl_agent_token" mapstructure:"acl_agent_token"`
	ACLDatacenter               *string                  `json:"acl_datacenter,omitempty" hcl:"acl_datacenter" mapstructure:"acl_datacenter"`
	ACLDefaultPolicy            *string                  `json:"acl_default_policy,omitempty" hcl:"acl_default_policy" mapstructure:"acl_default_policy"`
	ACLDownPolicy               *string                  `json:"acl_down_policy,omitempty" hcl:"acl_down_policy" mapstructure:"acl_down_policy"`
	ACLEnableKeyListPolicy      *bool                    `json:"acl_enable_key_list_policy,omitempty" hcl:"acl_enable_key_list_policy" mapstructure:"acl_enable_key_list_policy"`
	ACLEnforceVersion8          *bool                    `json:"acl_enforce_version_8,omitempty" hcl:"acl_enforce_version_8" mapstructure:"acl_enforce_version_8"`
	ACLMasterToken              *string                  `json:"acl_master_token,omitempty" hcl:"acl_master_token" mapstructure:"acl_master_token"`
	ACLReplicationToken         *string                  `json:"acl_replication_token,omitempty" hcl:"acl_replication_token" mapstructure:"acl_replication_token"`
	ACLTTL                      *string                  `json:"acl_ttl,omitempty" hcl:"acl_ttl" mapstructure:"acl_ttl"`
	ACLToken                    *string                  `json:"acl_token,omitempty" hcl:"acl_token" mapstructure:"acl_token"`
	Addresses                   Addresses                `json:"addresses,omitempty" hcl:"addresses" mapstructure:"addresses"`
	AdvertiseAddrLAN            *string                  `json:"advertise_addr,omitempty" hcl:"advertise_addr" mapstructure:"advertise_addr"`
	AdvertiseAddrWAN            *string                  `json:"advertise_addr_wan,omitempty" hcl:"advertise_addr_wan" mapstructure:"advertise_addr_wan"`
	Autopilot                   Autopilot                `json:"autopilot,omitempty" hcl:"autopilot" mapstructure:"autopilot"`
	BindAddr                    *string                  `json:"bind_addr,omitempty" hcl:"bind_addr" mapstructure:"bind_addr"`
	Bootstrap                   *bool                    `json:"bootstrap,omitempty" hcl:"bootstrap" mapstructure:"bootstrap"`
	BootstrapExpect             *int                     `json:"bootstrap_expect,omitempty" hcl:"bootstrap_expect" mapstructure:"bootstrap_expect"`
	CAFile                      *string                  `json:"ca_file,omitempty" hcl:"ca_file" mapstructure:"ca_file"`
	CAPath                      *string                  `json:"ca_path,omitempty" hcl:"ca_path" mapstructure:"ca_path"`
	CertFile                    *string                  `json:"cert_file,omitempty" hcl:"cert_file" mapstructure:"cert_file"`
	Check                       *CheckDefinition         `json:"check,omitempty" hcl:"check" mapstructure:"check"` // needs to be a pointer to avoid partial merges
	CheckUpdateInterval         *string                  `json:"check_update_interval,omitempty" hcl:"check_update_interval" mapstructure:"check_update_interval"`
	Checks                      []CheckDefinition        `json:"checks,omitempty" hcl:"checks" mapstructure:"checks"`
	ClientAddr                  *string                  `json:"client_addr,omitempty" hcl:"client_addr" mapstructure:"client_addr"`
	DNS                         DNS                      `json:"dns_config,omitempty" hcl:"dns_config" mapstructure:"dns_config"`
	DNSDomain                   *string                  `json:"domain,omitempty" hcl:"domain" mapstructure:"domain"`
	DNSRecursors                []string                 `json:"recursors,omitempty" hcl:"recursors" mapstructure:"recursors"`
	DataDir                     *string                  `json:"data_dir,omitempty" hcl:"data_dir" mapstructure:"data_dir"`
	Datacenter                  *string                  `json:"datacenter,omitempty" hcl:"datacenter" mapstructure:"datacenter"`
	DisableAnonymousSignature   *bool                    `json:"disable_anonymous_signature,omitempty" hcl:"disable_anonymous_signature" mapstructure:"disable_anonymous_signature"`
	DisableCoordinates          *bool                    `json:"disable_coordinates,omitempty" hcl:"disable_coordinates" mapstructure:"disable_coordinates"`
	DisableHostNodeID           *bool                    `json:"disable_host_node_id,omitempty" hcl:"disable_host_node_id" mapstructure:"disable_host_node_id"`
	DisableKeyringFile          *bool                    `json:"disable_keyring_file,omitempty" hcl:"disable_keyring_file" mapstructure:"disable_keyring_file"`
	DisableRemoteExec           *bool                    `json:"disable_remote_exec,omitempty" hcl:"disable_remote_exec" mapstructure:"disable_remote_exec"`
	DisableUpdateCheck          *bool                    `json:"disable_update_check,omitempty" hcl:"disable_update_check" mapstructure:"disable_update_check"`
	DiscardCheckOutput          *bool                    `json:"discard_check_output" hcl:"discard_check_output" mapstructure:"discard_check_output"`
	EnableACLReplication        *bool                    `json:"enable_acl_replication,omitempty" hcl:"enable_acl_replication" mapstructure:"enable_acl_replication"`
	EnableAgentTLSForChecks     *bool                    `json:"enable_agent_tls_for_checks,omitempty" hcl:"enable_agent_tls_for_checks" mapstructure:"enable_agent_tls_for_checks"`
	EnableDebug                 *bool                    `json:"enable_debug,omitempty" hcl:"enable_debug" mapstructure:"enable_debug"`
	EnableScriptChecks          *bool                    `json:"enable_script_checks,omitempty" hcl:"enable_script_checks" mapstructure:"enable_script_checks"`
	EnableSyslog                *bool                    `json:"enable_syslog,omitempty" hcl:"enable_syslog" mapstructure:"enable_syslog"`
	EncryptKey                  *string                  `json:"encrypt,omitempty" hcl:"encrypt" mapstructure:"encrypt"`
	EncryptVerifyIncoming       *bool                    `json:"encrypt_verify_incoming,omitempty" hcl:"encrypt_verify_incoming" mapstructure:"encrypt_verify_incoming"`
	EncryptVerifyOutgoing       *bool                    `json:"encrypt_verify_outgoing,omitempty" hcl:"encrypt_verify_outgoing" mapstructure:"encrypt_verify_outgoing"`
	HTTPConfig                  HTTPConfig               `json:"http_config,omitempty" hcl:"http_config" mapstructure:"http_config"`
	KeyFile                     *string                  `json:"key_file,omitempty" hcl:"key_file" mapstructure:"key_file"`
	LeaveOnTerm                 *bool                    `json:"leave_on_terminate,omitempty" hcl:"leave_on_terminate" mapstructure:"leave_on_terminate"`
	Limits                      Limits                   `json:"limits,omitempty" hcl:"limits" mapstructure:"limits"`
	LogLevel                    *string                  `json:"log_level,omitempty" hcl:"log_level" mapstructure:"log_level"`
	NodeID                      *string                  `json:"node_id,omitempty" hcl:"node_id" mapstructure:"node_id"`
	NodeMeta                    map[string]string        `json:"node_meta,omitempty" hcl:"node_meta" mapstructure:"node_meta"`
	NodeName                    *string                  `json:"node_name,omitempty" hcl:"node_name" mapstructure:"node_name"`
	NonVotingServer             *bool                    `json:"non_voting_server,omitempty" hcl:"non_voting_server" mapstructure:"non_voting_server"`
	Performance                 Performance              `json:"performance,omitempty" hcl:"performance" mapstructure:"performance"`
	PidFile                     *string                  `json:"pid_file,omitempty" hcl:"pid_file" mapstructure:"pid_file"`
	Ports                       Ports                    `json:"ports,omitempty" hcl:"ports" mapstructure:"ports"`
	RPCProtocol                 *int                     `json:"protocol,omitempty" hcl:"protocol" mapstructure:"protocol"`
	RaftProtocol                *int                     `json:"raft_protocol,omitempty" hcl:"raft_protocol" mapstructure:"raft_protocol"`
	ReconnectTimeoutLAN         *string                  `json:"reconnect_timeout,omitempty" hcl:"reconnect_timeout" mapstructure:"reconnect_timeout"`
	ReconnectTimeoutWAN         *string                  `json:"reconnect_timeout_wan,omitempty" hcl:"reconnect_timeout_wan" mapstructure:"reconnect_timeout_wan"`
	RejoinAfterLeave            *bool                    `json:"rejoin_after_leave,omitempty" hcl:"rejoin_after_leave" mapstructure:"rejoin_after_leave"`
	RetryJoinIntervalLAN        *string                  `json:"retry_interval,omitempty" hcl:"retry_interval" mapstructure:"retry_interval"`
	RetryJoinIntervalWAN        *string                  `json:"retry_interval_wan,omitempty" hcl:"retry_interval_wan" mapstructure:"retry_interval_wan"`
	RetryJoinLAN                []string                 `json:"retry_join,omitempty" hcl:"retry_join" mapstructure:"retry_join"`
	RetryJoinMaxAttemptsLAN     *int                     `json:"retry_max,omitempty" hcl:"retry_max" mapstructure:"retry_max"`
	RetryJoinMaxAttemptsWAN     *int                     `json:"retry_max_wan,omitempty" hcl:"retry_max_wan" mapstructure:"retry_max_wan"`
	RetryJoinWAN                []string                 `json:"retry_join_wan,omitempty" hcl:"retry_join_wan" mapstructure:"retry_join_wan"`
	SegmentName                 *string                  `json:"segment,omitempty" hcl:"segment" mapstructure:"segment"`
	Segments                    []Segment                `json:"segments,omitempty" hcl:"segments" mapstructure:"segments"`
	SerfBindAddrLAN             *string                  `json:"serf_lan,omitempty" hcl:"serf_lan" mapstructure:"serf_lan"`
	SerfBindAddrWAN             *string                  `json:"serf_wan,omitempty" hcl:"serf_wan" mapstructure:"serf_wan"`
	ServerMode                  *bool                    `json:"server,omitempty" hcl:"server" mapstructure:"server"`
	ServerName                  *string                  `json:"server_name,omitempty" hcl:"server_name" mapstructure:"server_name"`
	Service                     *ServiceDefinition       `json:"service,omitempty" hcl:"service" mapstructure:"service"`
	Services                    []ServiceDefinition      `json:"services,omitempty" hcl:"services" mapstructure:"services"`
	SessionTTLMin               *string                  `json:"session_ttl_min,omitempty" hcl:"session_ttl_min" mapstructure:"session_ttl_min"`
	SkipLeaveOnInt              *bool                    `json:"skip_leave_on_interrupt,omitempty" hcl:"skip_leave_on_interrupt" mapstructure:"skip_leave_on_interrupt"`
	StartJoinAddrsLAN           []string                 `json:"start_join,omitempty" hcl:"start_join" mapstructure:"start_join"`
	StartJoinAddrsWAN           []string                 `json:"start_join_wan,omitempty" hcl:"start_join_wan" mapstructure:"start_join_wan"`
	SyslogFacility              *string                  `json:"syslog_facility,omitempty" hcl:"syslog_facility" mapstructure:"syslog_facility"`
	TLSCipherSuites             *string                  `json:"tls_cipher_suites,omitempty" hcl:"tls_cipher_suites" mapstructure:"tls_cipher_suites"`
	TLSMinVersion               *string                  `json:"tls_min_version,omitempty" hcl:"tls_min_version" mapstructure:"tls_min_version"`
	TLSPreferServerCipherSuites *bool                    `` /* 133-byte string literal not displayed */
	TaggedAddresses             map[string]string        `json:"tagged_addresses,omitempty" hcl:"tagged_addresses" mapstructure:"tagged_addresses"`
	Telemetry                   Telemetry                `json:"telemetry,omitempty" hcl:"telemetry" mapstructure:"telemetry"`
	TranslateWANAddrs           *bool                    `json:"translate_wan_addrs,omitempty" hcl:"translate_wan_addrs" mapstructure:"translate_wan_addrs"`
	UI                          *bool                    `json:"ui,omitempty" hcl:"ui" mapstructure:"ui"`
	UIDir                       *string                  `json:"ui_dir,omitempty" hcl:"ui_dir" mapstructure:"ui_dir"`
	UnixSocket                  UnixSocket               `json:"unix_sockets,omitempty" hcl:"unix_sockets" mapstructure:"unix_sockets"`
	VerifyIncoming              *bool                    `json:"verify_incoming,omitempty" hcl:"verify_incoming" mapstructure:"verify_incoming"`
	VerifyIncomingHTTPS         *bool                    `json:"verify_incoming_https,omitempty" hcl:"verify_incoming_https" mapstructure:"verify_incoming_https"`
	VerifyIncomingRPC           *bool                    `json:"verify_incoming_rpc,omitempty" hcl:"verify_incoming_rpc" mapstructure:"verify_incoming_rpc"`
	VerifyOutgoing              *bool                    `json:"verify_outgoing,omitempty" hcl:"verify_outgoing" mapstructure:"verify_outgoing"`
	VerifyServerHostname        *bool                    `json:"verify_server_hostname,omitempty" hcl:"verify_server_hostname" mapstructure:"verify_server_hostname"`
	Watches                     []map[string]interface{} `json:"watches,omitempty" hcl:"watches" mapstructure:"watches"`

	// This isn't used by Consul but we've documented a feature where users
	// can deploy their snapshot agent configs alongside their Consul configs
	// so we have a placeholder here so it can be parsed but this doesn't
	// manifest itself in any way inside the runtime config.
	SnapshotAgent map[string]interface{} `json:"snapshot_agent,omitempty" hcl:"snapshot_agent" mapstructure:"snapshot_agent"`

	// non-user configurable values
	ACLDisabledTTL             *string  `json:"acl_disabled_ttl,omitempty" hcl:"acl_disabled_ttl" mapstructure:"acl_disabled_ttl"`
	AEInterval                 *string  `json:"ae_interval,omitempty" hcl:"ae_interval" mapstructure:"ae_interval"`
	CheckDeregisterIntervalMin *string  `` /* 127-byte string literal not displayed */
	CheckReapInterval          *string  `json:"check_reap_interval,omitempty" hcl:"check_reap_interval" mapstructure:"check_reap_interval"`
	Consul                     Consul   `json:"consul,omitempty" hcl:"consul" mapstructure:"consul"`
	Revision                   *string  `json:"revision,omitempty" hcl:"revision" mapstructure:"revision"`
	SegmentLimit               *int     `json:"segment_limit,omitempty" hcl:"segment_limit" mapstructure:"segment_limit"`
	SegmentNameLimit           *int     `json:"segment_name_limit,omitempty" hcl:"segment_name_limit" mapstructure:"segment_name_limit"`
	SyncCoordinateIntervalMin  *string  `json:"sync_coordinate_interval_min,omitempty" hcl:"sync_coordinate_interval_min" mapstructure:"sync_coordinate_interval_min"`
	SyncCoordinateRateTarget   *float64 `json:"sync_coordinate_rate_target,omitempty" hcl:"sync_coordinate_rate_target" mapstructure:"sync_coordinate_rate_target"`
	Version                    *string  `json:"version,omitempty" hcl:"version" mapstructure:"version"`
	VersionPrerelease          *string  `json:"version_prerelease,omitempty" hcl:"version_prerelease" mapstructure:"version_prerelease"`
}

Config defines the format of a configuration file in either JSON or HCL format.

It must contain only pointer values, slices and maps to support standardized merging of multiple Config structs into one.

Since this is the format which users use to specify their configuration it should be treated as an external API which cannot be changed and refactored at will since this will break existing setups.

func Merge

func Merge(files ...Config) Config

Merge recursively combines a set of config file structures into a single structure according to the following rules:

* only values of type struct, slice, map and pointer to simple types are allowed. Other types panic. * when merging two structs the result is the recursive merge of all fields according to the rules below * when merging two slices the result is the second slice appended to the first * when merging two maps the result is the second map if it is not empty, otherwise the first * when merging two pointer values the result is the second value if it is not nil, otherwise the first

func Parse

func Parse(data string, format string) (c Config, err error)

Parse parses a config fragment in either JSON or HCL format.

type Consul

type Consul struct {
	Coordinate struct {
		UpdateBatchSize  *int    `json:"update_batch_size,omitempty" hcl:"update_batch_size" mapstructure:"update_batch_size"`
		UpdateMaxBatches *int    `json:"update_max_batches,omitempty" hcl:"update_max_batches" mapstructure:"update_max_batches"`
		UpdatePeriod     *string `json:"update_period,omitempty" hcl:"update_period" mapstructure:"update_period"`
	} `json:"coordinate,omitempty" hcl:"coordinate" mapstructure:"coordinate"`

	Raft struct {
		ElectionTimeout    *string `json:"election_timeout,omitempty" hcl:"election_timeout" mapstructure:"election_timeout"`
		HeartbeatTimeout   *string `json:"heartbeat_timeout,omitempty" hcl:"heartbeat_timeout" mapstructure:"heartbeat_timeout"`
		LeaderLeaseTimeout *string `json:"leader_lease_timeout,omitempty" hcl:"leader_lease_timeout" mapstructure:"leader_lease_timeout"`
	} `json:"raft,omitempty" hcl:"raft" mapstructure:"raft"`

	SerfLAN struct {
		Memberlist struct {
			GossipInterval *string `json:"gossip_interval,omitempty" hcl:"gossip_interval" mapstructure:"gossip_interval"`
			ProbeInterval  *string `json:"probe_interval,omitempty" hcl:"probe_interval" mapstructure:"probe_interval"`
			ProbeTimeout   *string `json:"probe_timeout,omitempty" hcl:"probe_timeout" mapstructure:"probe_timeout"`
			SuspicionMult  *int    `json:"suspicion_mult,omitempty" hcl:"suspicion_mult" mapstructure:"suspicion_mult"`
		} `json:"memberlist,omitempty" hcl:"memberlist" mapstructure:"memberlist"`
	} `json:"serf_lan,omitempty" hcl:"serf_lan" mapstructure:"serf_lan"`

	SerfWAN struct {
		Memberlist struct {
			GossipInterval *string `json:"gossip_interval,omitempty" hcl:"gossip_interval" mapstructure:"gossip_interval"`
			ProbeInterval  *string `json:"probe_interval,omitempty" hcl:"probe_interval" mapstructure:"probe_interval"`
			ProbeTimeout   *string `json:"probe_timeout,omitempty" hcl:"probe_timeout" mapstructure:"probe_timeout"`
			SuspicionMult  *int    `json:"suspicion_mult,omitempty" hcl:"suspicion_mult" mapstructure:"suspicion_mult"`
		} `json:"memberlist,omitempty" hcl:"memberlist" mapstructure:"memberlist"`
	} `json:"serf_wan,omitempty" hcl:"serf_wan" mapstructure:"serf_wan"`

	Server struct {
		HealthInterval *string `json:"health_interval,omitempty" hcl:"health_interval" mapstructure:"health_interval"`
	} `json:"server,omitempty" hcl:"server" mapstructure:"server"`
}

type DNS

type DNS struct {
	AllowStale         *bool             `json:"allow_stale,omitempty" hcl:"allow_stale" mapstructure:"allow_stale"`
	DisableCompression *bool             `json:"disable_compression,omitempty" hcl:"disable_compression" mapstructure:"disable_compression"`
	EnableTruncate     *bool             `json:"enable_truncate,omitempty" hcl:"enable_truncate" mapstructure:"enable_truncate"`
	MaxStale           *string           `json:"max_stale,omitempty" hcl:"max_stale" mapstructure:"max_stale"`
	NodeTTL            *string           `json:"node_ttl,omitempty" hcl:"node_ttl" mapstructure:"node_ttl"`
	OnlyPassing        *bool             `json:"only_passing,omitempty" hcl:"only_passing" mapstructure:"only_passing"`
	RecursorTimeout    *string           `json:"recursor_timeout,omitempty" hcl:"recursor_timeout" mapstructure:"recursor_timeout"`
	ServiceTTL         map[string]string `json:"service_ttl,omitempty" hcl:"service_ttl" mapstructure:"service_ttl"`
	UDPAnswerLimit     *int              `json:"udp_answer_limit,omitempty" hcl:"udp_answer_limit" mapstructure:"udp_answer_limit"`
}

type Flags

type Flags struct {
	// Config contains the command line arguments that can also be set
	// in a config file.
	Config Config

	// ConfigFiles contains the list of config files and directories
	// that should be read.
	ConfigFiles []string

	// ConfigFormat forces all config files to be interpreted as this
	// format independent of their extension.
	ConfigFormat *string

	// HCL contains an arbitrary config in hcl format.
	// DevMode indicates whether the agent should be started in development
	// mode. This cannot be configured in a config file.
	DevMode *bool

	HCL []string

	// Args contains the remaining unparsed flags.
	Args []string
}

Flags defines the command line flags.

type HTTPConfig

type HTTPConfig struct {
	BlockEndpoints  []string          `json:"block_endpoints,omitempty" hcl:"block_endpoints" mapstructure:"block_endpoints"`
	ResponseHeaders map[string]string `json:"response_headers,omitempty" hcl:"response_headers" mapstructure:"response_headers"`
}

type Limits

type Limits struct {
	RPCMaxBurst *int     `json:"rpc_max_burst,omitempty" hcl:"rpc_max_burst" mapstructure:"rpc_max_burst"`
	RPCRate     *float64 `json:"rpc_rate,omitempty" hcl:"rpc_rate" mapstructure:"rpc_rate"`
}

type Performance

type Performance struct {
	LeaveDrainTime *string `json:"leave_drain_time,omitempty" hcl:"leave_drain_time" mapstructure:"leave_drain_time"`
	RaftMultiplier *int    `json:"raft_multiplier,omitempty" hcl:"raft_multiplier" mapstructure:"raft_multiplier"` // todo(fs): validate as uint
	RPCHoldTimeout *string `json:"rpc_hold_timeout" hcl:"rpc_hold_timeout" mapstructure:"rpc_hold_timeout"`
}

type Ports

type Ports struct {
	DNS     *int `json:"dns,omitempty" hcl:"dns" mapstructure:"dns"`
	HTTP    *int `json:"http,omitempty" hcl:"http" mapstructure:"http"`
	HTTPS   *int `json:"https,omitempty" hcl:"https" mapstructure:"https"`
	SerfLAN *int `json:"serf_lan,omitempty" hcl:"serf_lan" mapstructure:"serf_lan"`
	SerfWAN *int `json:"serf_wan,omitempty" hcl:"serf_wan" mapstructure:"serf_wan"`
	Server  *int `json:"server,omitempty" hcl:"server" mapstructure:"server"`
}

type RetryJoinAzure

type RetryJoinAzure struct {
	ClientID        *string `json:"client_id,omitempty" hcl:"client_id" mapstructure:"client_id"`
	SecretAccessKey *string `json:"secret_access_key,omitempty" hcl:"secret_access_key" mapstructure:"secret_access_key"`
	SubscriptionID  *string `json:"subscription_id,omitempty" hcl:"subscription_id" mapstructure:"subscription_id"`
	TagName         *string `json:"tag_name,omitempty" hcl:"tag_name" mapstructure:"tag_name"`
	TagValue        *string `json:"tag_value,omitempty" hcl:"tag_value" mapstructure:"tag_value"`
	TenantID        *string `json:"tenant_id,omitempty" hcl:"tenant_id" mapstructure:"tenant_id"`
}

type RetryJoinEC2

type RetryJoinEC2 struct {
	AccessKeyID     *string `json:"access_key_id,omitempty" hcl:"access_key_id" mapstructure:"access_key_id"`
	Region          *string `json:"region,omitempty" hcl:"region" mapstructure:"region"`
	SecretAccessKey *string `json:"secret_access_key,omitempty" hcl:"secret_access_key" mapstructure:"secret_access_key"`
	TagKey          *string `json:"tag_key,omitempty" hcl:"tag_key" mapstructure:"tag_key"`
	TagValue        *string `json:"tag_value,omitempty" hcl:"tag_value" mapstructure:"tag_value"`
}

type RetryJoinGCE

type RetryJoinGCE struct {
	CredentialsFile *string `json:"credentials_file,omitempty" hcl:"credentials_file" mapstructure:"credentials_file"`
	ProjectName     *string `json:"project_name,omitempty" hcl:"project_name" mapstructure:"project_name"`
	TagValue        *string `json:"tag_value,omitempty" hcl:"tag_value" mapstructure:"tag_value"`
	ZonePattern     *string `json:"zone_pattern,omitempty" hcl:"zone_pattern" mapstructure:"zone_pattern"`
}

type RuntimeConfig

type RuntimeConfig struct {
	// non-user configurable values
	AEInterval time.Duration

	// ACLDisabledTTL is used by clients to determine how long they will
	// wait to check again with the servers if they discover ACLs are not
	// enabled. (not user configurable)
	//
	// hcl: acl_disabled_ttl = "duration"
	ACLDisabledTTL time.Duration

	CheckDeregisterIntervalMin time.Duration
	CheckReapInterval          time.Duration
	SegmentLimit               int
	SegmentNameLimit           int
	SyncCoordinateRateTarget   float64
	SyncCoordinateIntervalMin  time.Duration
	Revision                   string
	Version                    string
	VersionPrerelease          string

	// consul config
	ConsulCoordinateUpdateMaxBatches int
	ConsulCoordinateUpdateBatchSize  int
	ConsulCoordinateUpdatePeriod     time.Duration
	ConsulRaftElectionTimeout        time.Duration
	ConsulRaftHeartbeatTimeout       time.Duration
	ConsulRaftLeaderLeaseTimeout     time.Duration
	ConsulSerfLANGossipInterval      time.Duration
	ConsulSerfLANProbeInterval       time.Duration
	ConsulSerfLANProbeTimeout        time.Duration
	ConsulSerfLANSuspicionMult       int
	ConsulSerfWANGossipInterval      time.Duration
	ConsulSerfWANProbeInterval       time.Duration
	ConsulSerfWANProbeTimeout        time.Duration
	ConsulSerfWANSuspicionMult       int
	ConsulServerHealthInterval       time.Duration

	// ACLAgentMasterToken is a special token that has full read and write
	// privileges for this agent, and can be used to call agent endpoints
	// when no servers are available.
	//
	// hcl: acl_agent_master_token = string
	ACLAgentMasterToken string

	// ACLAgentToken is the default token used to make requests for the agent
	// itself, such as for registering itself with the catalog. If not
	// configured, the 'acl_token' will be used.
	//
	// hcl: acl_agent_token = string
	ACLAgentToken string

	// ACLDatacenter is the central datacenter that holds authoritative
	// ACL records. This must be the same for the entire cluster.
	// If this is not set, ACLs are not enabled. Off by default.
	//
	// hcl: acl_datacenter = string
	ACLDatacenter string

	// ACLDefaultPolicy is used to control the ACL interaction when
	// there is no defined policy. This can be "allow" which means
	// ACLs are used to black-list, or "deny" which means ACLs are
	// white-lists.
	//
	// hcl: acl_default_policy = ("allow"|"deny")
	ACLDefaultPolicy string

	// ACLDownPolicy is used to control the ACL interaction when we cannot
	// reach the ACLDatacenter and the token is not in the cache.
	// There are the following modes:
	//   * allow - Allow all requests
	//   * deny - Deny all requests
	//   * extend-cache - Ignore the cache expiration, and allow cached
	//                    ACL's to be used to service requests. This
	//                    is the default. If the ACL is not in the cache,
	//                    this acts like deny.
	//
	// hcl: acl_down_policy = ("allow"|"deny"|"extend-cache")
	ACLDownPolicy string

	// ACLEnforceVersion8 is used to gate a set of ACL policy features that
	// are opt-in prior to Consul 0.8 and opt-out in Consul 0.8 and later.
	//
	// hcl: acl_enforce_version_8 = (true|false)
	ACLEnforceVersion8 bool

	// ACLEnableKeyListPolicy is used to opt-in to the "list" policy added to
	// KV ACLs in Consul 1.0.
	//
	// See https://www.consul.io/docs/guides/acl.html#list-policy-for-keys for
	// more details.
	//
	// hcl: acl_enable_key_list_policy = (true|false)
	ACLEnableKeyListPolicy bool

	// ACLMasterToken is used to bootstrap the ACL system. It should be specified
	// on the servers in the ACLDatacenter. When the leader comes online, it ensures
	// that the Master token is available. This provides the initial token.
	//
	// hcl: acl_master_token = string
	ACLMasterToken string

	// ACLReplicationToken is used to fetch ACLs from the ACLDatacenter in
	// order to replicate them locally. Setting this to a non-empty value
	// also enables replication. Replication is only available in datacenters
	// other than the ACLDatacenter.
	//
	// hcl: acl_replication_token = string
	ACLReplicationToken string

	// ACLTTL is used to control the time-to-live of cached ACLs . This has
	// a major impact on performance. By default, it is set to 30 seconds.
	//
	// hcl: acl_ttl = "duration"
	ACLTTL time.Duration

	// ACLToken is the default token used to make requests if a per-request
	// token is not provided. If not configured the 'anonymous' token is used.
	//
	// hcl: acl_token = string
	ACLToken string

	// AutopilotCleanupDeadServers enables the automatic cleanup of dead servers when new ones
	// are added to the peer list. Defaults to true.
	//
	// hcl: autopilot { cleanup_dead_servers = (true|false) }
	AutopilotCleanupDeadServers bool

	// AutopilotDisableUpgradeMigration will disable Autopilot's upgrade migration
	// strategy of waiting until enough newer-versioned servers have been added to the
	// cluster before promoting them to voters. (Enterprise-only)
	//
	// hcl: autopilot { disable_upgrade_migration = (true|false)
	AutopilotDisableUpgradeMigration bool

	// AutopilotLastContactThreshold is the limit on the amount of time a server can go
	// without leader contact before being considered unhealthy.
	//
	// hcl: autopilot { last_contact_threshold = "duration" }
	AutopilotLastContactThreshold time.Duration

	// AutopilotMaxTrailingLogs is the amount of entries in the Raft Log that a server can
	// be behind before being considered unhealthy. The value must be positive.
	//
	// hcl: autopilot { max_trailing_logs = int }
	AutopilotMaxTrailingLogs int

	// AutopilotRedundancyZoneTag is the Meta tag to use for separating servers
	// into zones for redundancy. If left blank, this feature will be disabled.
	// (Enterprise-only)
	//
	// hcl: autopilot { redundancy_zone_tag = string }
	AutopilotRedundancyZoneTag string

	// AutopilotServerStabilizationTime is the minimum amount of time a server must be
	// in a stable, healthy state before it can be added to the cluster. Only
	// applicable with Raft protocol version 3 or higher.
	//
	// hcl: autopilot { server_stabilization_time = "duration" }
	AutopilotServerStabilizationTime time.Duration

	// AutopilotUpgradeVersionTag is the node tag to use for version info when
	// performing upgrade migrations. If left blank, the Consul version will be used.
	//
	// (Entrprise-only)
	//
	// hcl: autopilot { upgrade_version_tag = string }
	AutopilotUpgradeVersionTag string

	// DNSAllowStale is used to enable lookups with stale
	// data. This gives horizontal read scalability since
	// any Consul server can service the query instead of
	// only the leader.
	//
	// hcl: dns_config { allow_stale = (true|false) }
	DNSAllowStale bool

	// DNSDisableCompression is used to control whether DNS responses are
	// compressed. In Consul 0.7 this was turned on by default and this
	// config was added as an opt-out.
	//
	// hcl: dns_config { disable_compression = (true|false) }
	DNSDisableCompression bool

	// DNSDomain is the DNS domain for the records. Should end with a dot.
	// Defaults to "consul."
	//
	// hcl: domain = string
	// flag: -domain string
	DNSDomain string

	// DNSEnableTruncate is used to enable setting the truncate
	// flag for UDP DNS queries.  This allows unmodified
	// clients to re-query the consul server using TCP
	// when the total number of records exceeds the number
	// returned by default for UDP.
	//
	// hcl: dns_config { enable_truncate = (true|false) }
	DNSEnableTruncate bool

	// DNSMaxStale is used to bound how stale of a result is
	// accepted for a DNS lookup. This can be used with
	// AllowStale to limit how old of a value is served up.
	// If the stale result exceeds this, another non-stale
	// stale read is performed.
	//
	// hcl: dns_config { max_stale = "duration" }
	DNSMaxStale time.Duration

	// DNSNodeTTL provides the TTL value for a node query.
	//
	// hcl: dns_config { node_ttl = "duration" }
	DNSNodeTTL time.Duration

	// DNSOnlyPassing is used to determine whether to filter nodes
	// whose health checks are in any non-passing state. By
	// default, only nodes in a critical state are excluded.
	//
	// hcl: dns_config { only_passing = "duration" }
	DNSOnlyPassing bool

	// DNSRecursorTimeout specifies the timeout in seconds
	// for Consul's internal dns client used for recursion.
	// This value is used for the connection, read and write timeout.
	//
	// hcl: dns_config { recursor_timeout = "duration" }
	DNSRecursorTimeout time.Duration

	// DNSServiceTTL provides the TTL value for a service
	// query for given service. The "*" wildcard can be used
	// to set a default for all services.
	//
	// hcl: dns_config { service_ttl = map[string]"duration" }
	DNSServiceTTL map[string]time.Duration

	// DNSUDPAnswerLimit is used to limit the maximum number of DNS Resource
	// Records returned in the ANSWER section of a DNS response. This is
	// not normally useful and will be limited based on the querying
	// protocol, however systems that implemented §6 Rule 9 in RFC3484
	// may want to set this to `1` in order to subvert §6 Rule 9 and
	// re-obtain the effect of randomized resource records (i.e. each
	// answer contains only one IP, but the IP changes every request).
	// RFC3484 sorts answers in a deterministic order, which defeats the
	// purpose of randomized DNS responses.  This RFC has been obsoleted
	// by RFC6724 and restores the desired behavior of randomized
	// responses, however a large number of Linux hosts using glibc(3)
	// implemented §6 Rule 9 and may need this option (e.g. CentOS 5-6,
	// Debian Squeeze, etc).
	//
	// hcl: dns_config { udp_answer_limit = int }
	DNSUDPAnswerLimit int

	// DNSRecursors can be set to allow the DNS servers to recursively
	// resolve non-consul domains.
	//
	// hcl: recursors = []string
	// flag: -recursor string [-recursor string]
	DNSRecursors []string

	// HTTPBlockEndpoints is a list of endpoint prefixes to block in the
	// HTTP API. Any requests to these will get a 403 response.
	//
	// hcl: http_config { block_endpoints = []string }
	HTTPBlockEndpoints []string

	// HTTPResponseHeaders are used to add HTTP header response fields to the HTTP API responses.
	//
	// hcl: http_config { response_headers = map[string]string }
	HTTPResponseHeaders map[string]string

	// TelemetryCirconusAPIApp is an app name associated with API token.
	// Default: "consul"
	//
	// hcl: telemetry { circonus_api_app = string }
	TelemetryCirconusAPIApp string

	// TelemetryCirconusAPIToken is a valid API Token used to create/manage check. If provided,
	// metric management is enabled.
	// Default: none
	//
	// hcl: telemetry { circonous_api_token = string }
	TelemetryCirconusAPIToken string

	// TelemetryCirconusAPIURL is the base URL to use for contacting the Circonus API.
	// Default: "https://api.circonus.com/v2"
	//
	// hcl: telemetry { circonus_api_url = string }
	TelemetryCirconusAPIURL string

	// TelemetryCirconusBrokerID is an explicit broker to use when creating a new check. The numeric portion
	// of broker._cid. If metric management is enabled and neither a Submission URL nor Check ID
	// is provided, an attempt will be made to search for an existing check using Instance ID and
	// Search Tag. If one is not found, a new HTTPTRAP check will be created.
	// Default: use Select Tag if provided, otherwise, a random Enterprise Broker associated
	// with the specified API token or the default Circonus Broker.
	// Default: none
	//
	// hcl: telemetry { circonus_broker_id = string }
	TelemetryCirconusBrokerID string

	// TelemetryCirconusBrokerSelectTag is a special tag which will be used to select a broker when
	// a Broker ID is not provided. The best use of this is to as a hint for which broker
	// should be used based on *where* this particular instance is running.
	// (e.g. a specific geo location or datacenter, dc:sfo)
	// Default: none
	//
	// hcl: telemetry { circonus_broker_select_tag = string }
	TelemetryCirconusBrokerSelectTag string

	// TelemetryCirconusCheckDisplayName is the name for the check which will be displayed in the Circonus UI.
	// Default: value of CirconusCheckInstanceID
	//
	// hcl: telemetry { circonus_check_display_name = string }
	TelemetryCirconusCheckDisplayName string

	// TelemetryCirconusCheckForceMetricActivation will force enabling metrics, as they are encountered,
	// if the metric already exists and is NOT active. If check management is enabled, the default
	// behavior is to add new metrics as they are encoutered. If the metric already exists in the
	// check, it will *NOT* be activated. This setting overrides that behavior.
	// Default: "false"
	//
	// hcl: telemetry { circonus_check_metrics_activation = (true|false)
	TelemetryCirconusCheckForceMetricActivation string

	// TelemetryCirconusCheckID is the check id (not check bundle id) from a previously created
	// HTTPTRAP check. The numeric portion of the check._cid field.
	// Default: none
	//
	// hcl: telemetry { circonus_check_id = string }
	TelemetryCirconusCheckID string

	// TelemetryCirconusCheckInstanceID serves to uniquely identify the metrics coming from this "instance".
	// It can be used to maintain metric continuity with transient or ephemeral instances as
	// they move around within an infrastructure.
	// Default: hostname:app
	//
	// hcl: telemetry { circonus_check_instance_id = string }
	TelemetryCirconusCheckInstanceID string

	// TelemetryCirconusCheckSearchTag is a special tag which, when coupled with the instance id, helps to
	// narrow down the search results when neither a Submission URL or Check ID is provided.
	// Default: service:app (e.g. service:consul)
	//
	// hcl: telemetry { circonus_check_search_tag = string }
	TelemetryCirconusCheckSearchTag string

	// TelemetryCirconusCheckSearchTag is a special tag which, when coupled with the instance id, helps to
	// narrow down the search results when neither a Submission URL or Check ID is provided.
	// Default: service:app (e.g. service:consul)
	//
	// hcl: telemetry { circonus_check_tags = string }
	TelemetryCirconusCheckTags string

	// TelemetryCirconusSubmissionInterval is the interval at which metrics are submitted to Circonus.
	// Default: 10s
	//
	// hcl: telemetry { circonus_submission_interval = "duration" }
	TelemetryCirconusSubmissionInterval string

	// TelemetryCirconusCheckSubmissionURL is the check.config.submission_url field from a
	// previously created HTTPTRAP check.
	// Default: none
	//
	// hcl: telemetry { circonus_submission_url = string }
	TelemetryCirconusSubmissionURL string

	// DisableHostname will disable hostname prefixing for all metrics.
	//
	// hcl: telemetry { disable_hostname = (true|false)
	TelemetryDisableHostname bool

	// TelemetryDogStatsdAddr is the address of a dogstatsd instance. If provided,
	// metrics will be sent to that instance
	//
	// hcl: telemetry { dogstatsd_addr = string }
	TelemetryDogstatsdAddr string

	// TelemetryDogStatsdTags are the global tags that should be sent with each packet to dogstatsd
	// It is a list of strings, where each string looks like "my_tag_name:my_tag_value"
	//
	// hcl: telemetry { dogstatsd_tags = []string }
	TelemetryDogstatsdTags []string

	// TelemetryFilterDefault is the default for whether to allow a metric that's not
	// covered by the filter.
	//
	// hcl: telemetry { filter_default = (true|false) }
	TelemetryFilterDefault bool

	// TelemetryAllowedPrefixes is a list of filter rules to apply for allowing metrics
	// by prefix. Use the 'prefix_filter' option and prefix rules with '+' to be
	// included.
	//
	// hcl: telemetry { prefix_filter = []string{"+<expr>", "+<expr>", ...} }
	TelemetryAllowedPrefixes []string

	// TelemetryBlockedPrefixes is a list of filter rules to apply for blocking metrics
	// by prefix. Use the 'prefix_filter' option and prefix rules with '-' to be
	// excluded.
	//
	// hcl: telemetry { prefix_filter = []string{"-<expr>", "-<expr>", ...} }
	TelemetryBlockedPrefixes []string

	// TelemetryMetricsPrefix is the prefix used to write stats values to.
	// Default: "consul."
	//
	// hcl: telemetry { metrics_prefix = string }
	TelemetryMetricsPrefix string

	// TelemetryStatsdAddr is the address of a statsd instance. If provided,
	// metrics will be sent to that instance.
	//
	// hcl: telemetry { statsd_addr = string }
	TelemetryStatsdAddr string

	// TelemetryStatsiteAddr is the address of a statsite instance. If provided,
	// metrics will be streamed to that instance.
	//
	// hcl: telemetry { statsite_addr = string }
	TelemetryStatsiteAddr string

	// Datacenter is the datacenter this node is in. Defaults to "dc1".
	//
	// Datacenter is exposed via /v1/agent/self from here and
	// used in lots of places like CLI commands. Treat this as an interface
	// that must be stable.
	//
	// hcl: datacenter = string
	// flag: -datacenter string
	Datacenter string

	// Node name is the name we use to advertise. Defaults to hostname.
	//
	// NodeName is exposed via /v1/agent/self from here and
	// used in lots of places like CLI commands. Treat this as an interface
	// that must be stable.
	//
	// hcl: node_name = string
	// flag: -node string
	NodeName string

	// AdvertiseAddrLAN is the address we use for advertising our Serf, and
	// Consul RPC IP. The address can be specified as an ip address or as a
	// go-sockaddr template which resolves to a single ip address. If not
	// specified, the bind address is used.
	//
	// hcl: advertise_addr = string
	AdvertiseAddrLAN *net.IPAddr

	// AdvertiseAddrWAN is the address we use for advertising our Serf, and
	// Consul RPC IP. The address can be specified as an ip address or as a
	// go-sockaddr template which resolves to a single ip address. If not
	// specified, the bind address is used.
	//
	// hcl: advertise_addr_wan = string
	AdvertiseAddrWAN *net.IPAddr

	// BindAddr is used to control the address we bind to.
	// If not specified, the first private IP we find is used.
	// This controls the address we use for cluster facing
	// services (Gossip, Server RPC)
	//
	// The value can be either an ip address or a go-sockaddr
	// template which resolves to a single ip address.
	//
	// hcl: bind_addr = string
	// flag: -bind string
	BindAddr *net.IPAddr

	// Bootstrap is used to bring up the first Consul server, and
	// permits that node to elect itself leader
	//
	// hcl: bootstrap = (true|false)
	// flag: -bootstrap
	Bootstrap bool

	// BootstrapExpect tries to automatically bootstrap the Consul cluster, by
	// having servers wait to bootstrap until enough servers join, and then
	// performing the bootstrap process automatically. They will disable their
	// automatic bootstrap process if they detect any servers that are part of
	// an existing cluster, so it's safe to leave this set to a non-zero value.
	//
	// hcl: bootstrap_expect = int
	// flag: -bootstrap-expect=int
	BootstrapExpect int

	// CAFile is a path to a certificate authority file. This is used with
	// VerifyIncoming or VerifyOutgoing to verify the TLS connection.
	//
	// hcl: ca_file = string
	CAFile string

	// CAPath is a path to a directory of certificate authority files. This is
	// used with VerifyIncoming or VerifyOutgoing to verify the TLS connection.
	//
	// hcl: ca_path = string
	CAPath string

	// CertFile is used to provide a TLS certificate that is used for serving
	// TLS connections. Must be provided to serve TLS connections.
	//
	// hcl: cert_file = string
	CertFile string

	// CheckUpdateInterval controls the interval on which the output of a health check
	// is updated if there is no change to the state. For example, a check in a steady
	// state may run every 5 second generating a unique output (timestamp, etc), forcing
	// constant writes. This allows Consul to defer the write for some period of time,
	// reducing the write pressure when the state is steady.
	//
	// See also: DiscardCheckOutput
	//
	// hcl: check_update_interval = "duration"
	CheckUpdateInterval time.Duration

	// Checks contains the provided check definitions.
	//
	// hcl: checks = [
	//   {
	//     id = string
	//     name = string
	//     notes = string
	//     service_id = string
	//     token = string
	//     status = string
	//     script = string
	//     args = string
	//     http = string
	//     header = map[string][]string
	//     method = string
	//     tcp = string
	//     interval = string
	//     docker_container_id = string
	//     shell = string
	//     tls_skip_verify = (true|false)
	//     timeout = "duration"
	//     ttl = "duration"
	//     deregister_critical_service_after = "duration"
	//   },
	//   ...
	// ]
	Checks []*structs.CheckDefinition

	// ClientAddrs contains the list of ip addresses the DNS, HTTP and HTTPS
	// endpoints will bind to if the endpoints are enabled (ports > 0) and the
	// addresses are not overwritten.
	//
	// The ip addresses must be provided as a space separated list of ip
	// addresses and go-sockaddr templates.
	//
	// Client addresses cannot contain UNIX socket addresses since a socket
	// cannot be shared across multiple endpoints (no ports). To use UNIX
	// sockets configure it in 'addresses'.
	//
	// hcl: client_addr = string
	// flag: -client string
	ClientAddrs []*net.IPAddr

	// DNSAddrs contains the list of TCP and UDP addresses the DNS server will
	// bind to. If the DNS endpoint is disabled (ports.dns <= 0) the list is
	// empty.
	//
	// The ip addresses are taken from 'addresses.dns' which should contain a
	// space separated list of ip addresses and/or go-sockaddr templates.
	//
	// If 'addresses.dns' was not provided the 'client_addr' addresses are
	// used.
	//
	// The DNS server cannot be bound to UNIX sockets.
	//
	// hcl: client_addr = string addresses { dns = string } ports { dns = int }
	DNSAddrs []net.Addr

	// DNSPort is the port the DNS server listens on. The default is 8600.
	// Setting this to a value <= 0 disables the endpoint.
	//
	// hcl: ports { dns = int }
	// flags: -dns-port int
	DNSPort int

	// DataDir is the path to the directory where the local state is stored.
	//
	// hcl: data_dir = string
	// flag: -data-dir string
	DataDir string

	// DevMode enables a fast-path mode of operation to bring up an in-memory
	// server with minimal configuration. Useful for developing Consul.
	//
	// flag: -dev
	DevMode bool

	// DisableAnonymousSignature is used to turn off the anonymous signature
	// send with the update check. This is used to deduplicate messages.
	//
	// hcl: disable_anonymous_signature = (true|false)
	DisableAnonymousSignature bool

	// DisableCoordinates controls features related to network coordinates.
	//
	// hcl: disable_coordinates = (true|false)
	DisableCoordinates bool

	// DisableHostNodeID will prevent Consul from using information from the
	// host to generate a node ID, and will cause Consul to generate a
	// random ID instead.
	//
	// hcl: disable_host_node_id = (true|false)
	// flag: -disable-host-node-id
	DisableHostNodeID bool

	// DisableKeyringFile disables writing the keyring to a file.
	//
	// hcl: disable_keyring_file = (true|false)
	// flag: -disable-keyring-file
	DisableKeyringFile bool

	// DisableRemoteExec is used to turn off the remote execution
	// feature. This is for security to prevent unknown scripts from running.
	//
	// hcl: disable_remote_exec = (true|false)
	DisableRemoteExec bool

	// DisableUpdateCheck is used to turn off the automatic update and
	// security bulletin checking.
	//
	// hcl: disable_update_check = (true|false)
	DisableUpdateCheck bool

	// DiscardCheckOutput is used to turn off storing and comparing the
	// output of health checks. This reduces the write rate on the server
	// for checks with highly volatile output. (reloadable)
	//
	// See also: CheckUpdateInterval
	//
	// hcl: discard_check_output = (true|false)
	DiscardCheckOutput bool

	// EnableACLReplication is used to turn on ACL replication when using
	// /v1/agent/token/acl_replication_token to introduce the token, instead
	// of setting acl_replication_token in the config. Setting the token via
	// config will also set this to true for backward compatibility.
	//
	// hcl: enable_acl_replication = (true|false)
	// todo(fs): rename to ACLEnableReplication
	EnableACLReplication bool

	// EnableAgentTLSForChecks is used to apply the agent's TLS settings in
	// order to configure the HTTP client used for health checks. Enabling
	// this allows HTTP checks to present a client certificate and verify
	// the server using the same TLS configuration as the agent (CA, cert,
	// and key).
	EnableAgentTLSForChecks bool

	// EnableDebug is used to enable various debugging features.
	//
	// hcl: enable_debug = (true|false)
	EnableDebug bool

	// EnableScriptChecks controls whether health checks which execute
	// scripts are enabled. This includes regular script checks and Docker
	// checks.
	//
	// hcl: enable_script_checks = (true|false)
	// flag: -enable-script-checks
	EnableScriptChecks bool

	// EnableSyslog is used to also tee all the logs over to syslog. Only supported
	// on linux and OSX. Other platforms will generate an error.
	//
	// hcl: enable_syslog = (true|false)
	// flag: -syslog
	EnableSyslog bool

	// EnableUI enables the statically-compiled assets for the Consul web UI and
	// serves them at the default /ui/ endpoint automatically.
	//
	// hcl: enable_ui = (true|false)
	// flag: -ui
	EnableUI bool

	// EncryptKey contains the encryption key to use for the Serf communication.
	//
	// hcl: encrypt = string
	// flag: -encrypt string
	EncryptKey string

	// EncryptVerifyIncoming enforces incoming gossip encryption and can be
	// used to upshift to encrypted gossip on a running cluster.
	//
	// hcl: encrypt_verify_incoming = (true|false)
	EncryptVerifyIncoming bool

	// EncryptVerifyOutgoing enforces outgoing gossip encryption and can be
	// used to upshift to encrypted gossip on a running cluster.
	//
	// hcl: encrypt_verify_outgoing = (true|false)
	EncryptVerifyOutgoing bool

	// HTTPAddrs contains the list of TCP addresses and UNIX sockets the HTTP
	// server will bind to. If the HTTP endpoint is disabled (ports.http <= 0)
	// the list is empty.
	//
	// The addresses are taken from 'addresses.http' which should contain a
	// space separated list of ip addresses, UNIX socket paths and/or
	// go-sockaddr templates. UNIX socket paths must be written as
	// 'unix://<full path>', e.g. 'unix:///var/run/consul-http.sock'.
	//
	// If 'addresses.http' was not provided the 'client_addr' addresses are
	// used.
	//
	// hcl: client_addr = string addresses { http = string } ports { http = int }
	HTTPAddrs []net.Addr

	// HTTPPort is the port the HTTP server listens on. The default is 8500.
	// Setting this to a value <= 0 disables the endpoint.
	//
	// hcl: ports { http = int }
	// flags: -http-port int
	HTTPPort int

	// HTTPSAddrs contains the list of TCP addresses and UNIX sockets the HTTPS
	// server will bind to. If the HTTPS endpoint is disabled (ports.https <=
	// 0) the list is empty.
	//
	// The addresses are taken from 'addresses.https' which should contain a
	// space separated list of ip addresses, UNIX socket paths and/or
	// go-sockaddr templates. UNIX socket paths must be written as
	// 'unix://<full path>', e.g. 'unix:///var/run/consul-https.sock'.
	//
	// If 'addresses.https' was not provided the 'client_addr' addresses are
	// used.
	//
	// hcl: client_addr = string addresses { https = string } ports { https = int }
	HTTPSAddrs []net.Addr

	// HTTPSPort is the port the HTTP server listens on. The default is -1.
	// Setting this to a value <= 0 disables the endpoint.
	//
	// hcl: ports { https = int }
	HTTPSPort int

	// KeyFile is used to provide a TLS key that is used for serving TLS
	// connections. Must be provided to serve TLS connections.
	//
	// hcl: key_file = string
	KeyFile string

	// LeaveDrainTime is used to wait after a server has left the LAN Serf
	// pool for RPCs to drain and new requests to be sent to other servers.
	//
	// hcl: performance { leave_drain_time = "duration" }
	LeaveDrainTime time.Duration

	// LeaveOnTerm controls if Serf does a graceful leave when receiving
	// the TERM signal. Defaults true on clients, false on servers. (reloadable)
	//
	// hcl: leave_on_terminate = (true|false)
	LeaveOnTerm bool

	// LogLevel is the level of the logs to write. Defaults to "INFO".
	//
	// hcl: log_level = string
	LogLevel string

	// Node ID is a unique ID for this node across space and time. Defaults
	// to a randomly-generated ID that persists in the data-dir.
	//
	// todo(fs): don't we have a requirement for this to be a UUID in a specific format?
	//
	// hcl: node_id = string
	// flag: -node-id string
	NodeID types.NodeID

	// NodeMeta contains metadata key/value pairs. These are excluded from JSON output
	// because they can be reloaded and might be stale when shown from the
	// config instead of the local state.
	// todo(fs): should the sanitizer omit them from output as well since they could be stale?
	//
	// hcl: node_meta = map[string]string
	// flag: -node-meta "key:value" -node-meta "key:value" ...
	NodeMeta map[string]string

	// NonVotingServer is whether this server will act as a non-voting member
	// of the cluster to help provide read scalability. (Enterprise-only)
	//
	// hcl: non_voting_server = (true|false)
	// flag: -non-voting-server
	NonVotingServer bool

	// PidFile is the file to store our PID in.
	//
	// hcl: pid_file = string
	PidFile string

	// RPCAdvertiseAddr is the TCP address Consul advertises for its RPC endpoint.
	// By default this is the bind address on the default RPC Server port. If the
	// advertise address is specified then it is used.
	//
	// hcl: bind_addr = string advertise_addr = string ports { server = int }
	RPCAdvertiseAddr *net.TCPAddr

	// RPCBindAddr is the TCP address Consul will bind to for its RPC endpoint.
	// By default this is the bind address on the default RPC Server port.
	//
	// hcl: bind_addr = string ports { server = int }
	RPCBindAddr *net.TCPAddr

	// RPCHoldTimeout is how long an RPC can be "held" before it is errored.
	// This is used to paper over a loss of leadership by instead holding RPCs,
	// so that the caller experiences a slow response rather than an error.
	// This period is meant to be long enough for a leader election to take
	// place, and a small jitter is applied to avoid a thundering herd.
	//
	// hcl: performance { rpc_hold_timeout = "duration" }
	RPCHoldTimeout time.Duration

	// RPCRateLimit and RPCMaxBurst control how frequently RPC calls are allowed
	// to happen. In any large enough time interval, rate limiter limits the
	// rate to RPCRate tokens per second, with a maximum burst size of
	// RPCMaxBurst events. As a special case, if RPCRate == Inf (the infinite
	// rate), RPCMaxBurst is ignored.
	//
	// See https://en.wikipedia.org/wiki/Token_bucket for more about token
	// buckets.
	//
	// hcl: limit { rpc_rate = (float64|MaxFloat64) rpc_max_burst = int }
	RPCRateLimit rate.Limit
	RPCMaxBurst  int

	// RPCProtocol is the Consul protocol version to use.
	//
	// hcl: protocol = int
	RPCProtocol int

	// RaftProtocol sets the Raft protocol version to use on this server.
	// Defaults to 3.
	//
	// hcl: raft_protocol = int
	RaftProtocol int

	// ReconnectTimeoutLAN specifies the amount of time to wait to reconnect with
	// another agent before deciding it's permanently gone. This can be used to
	// control the time it takes to reap failed nodes from the cluster.
	//
	// hcl: reconnect_timeout = "duration"
	ReconnectTimeoutLAN time.Duration

	// ReconnectTimeoutWAN specifies the amount of time to wait to reconnect with
	// another agent before deciding it's permanently gone. This can be used to
	// control the time it takes to reap failed nodes from the cluster.
	//
	// hcl: reconnect_timeout = "duration"
	ReconnectTimeoutWAN time.Duration

	// RejoinAfterLeave controls our interaction with the cluster after leave.
	// When set to false (default), a leave causes Consul to not rejoin
	// the cluster until an explicit join is received. If this is set to
	// true, we ignore the leave, and rejoin the cluster on start.
	//
	// hcl: rejoin_after_leave = (true|false)
	// flag: -rejoin
	RejoinAfterLeave bool

	// RetryJoinIntervalLAN specifies the amount of time to wait in between join
	// attempts on agent start. The minimum allowed value is 1 second and
	// the default is 30s.
	//
	// hcl: retry_join = "duration"
	RetryJoinIntervalLAN time.Duration

	// RetryJoinIntervalWAN specifies the amount of time to wait in between join
	// attempts on agent start. The minimum allowed value is 1 second and
	// the default is 30s.
	//
	// hcl: retry_join_wan = "duration"
	RetryJoinIntervalWAN time.Duration

	// RetryJoinLAN is a list of addresses and/or go-discover expressions to
	// join with retry enabled. See
	// https://www.consul.io/docs/agent/options.html#cloud-auto-joining for
	// details.
	//
	// hcl: retry_join = []string
	// flag: -retry-join string -retry-join string
	RetryJoinLAN []string

	// RetryJoinMaxAttemptsLAN specifies the maximum number of times to retry
	// joining a host on startup. This is useful for cases where we know the
	// node will be online eventually.
	//
	// hcl: retry_max = int
	// flag: -retry-max int
	RetryJoinMaxAttemptsLAN int

	// RetryJoinMaxAttemptsWAN specifies the maximum number of times to retry
	// joining a host on startup. This is useful for cases where we know the
	// node will be online eventually.
	//
	// hcl: retry_max_wan = int
	// flag: -retry-max-wan int
	RetryJoinMaxAttemptsWAN int

	// RetryJoinWAN is a list of addresses and/or go-discover expressions to
	// join -wan with retry enabled. See
	// https://www.consul.io/docs/agent/options.html#cloud-auto-joining for
	// details.
	//
	// hcl: retry_join_wan = []string
	// flag: -retry-join-wan string -retry-join-wan string
	RetryJoinWAN []string

	// SegmentName is the network segment for this client to join.
	// (Enterprise-only)
	//
	// hcl: segment = string
	SegmentName string

	// Segments is the list of network segments for this server to
	// initialize.
	//
	// hcl: segment = [
	//   {
	//     # name is the name of the segment
	//     name = string
	//
	//     # bind is the bind ip address for this segment.
	//     bind = string
	//
	//     # port is the bind port for this segment.
	//     port = int
	//
	//     # advertise is the advertise ip address for this segment.
	//     # Defaults to the bind address if not set.
	//     advertise = string
	//
	//     # rpc_listener controls whether or not to bind a separate
	//     # RPC listener to the bind address.
	//     rpc_listener = (true|false)
	//   },
	//   ...
	// ]
	Segments []structs.NetworkSegment

	// SerfAdvertiseAddrLAN is the TCP address which is used for advertising
	// the LAN Gossip pool for both client and server. The address is the
	// combination of AdvertiseAddrLAN and the SerfPortLAN. If the advertise
	// address is not given the bind address is used.
	//
	// hcl: bind_addr = string advertise_addr = string ports { serf_lan = int }
	SerfAdvertiseAddrLAN *net.TCPAddr

	// SerfAdvertiseAddrWAN is the TCP address which is used for advertising
	// the WAN Gossip pool on the server only. The address is the combination
	// of AdvertiseAddrWAN and the SerfPortWAN. If the advertise address is not
	// given the bind address is used.
	//
	// hcl: bind_addr = string advertise_addr_wan = string ports { serf_wan = int }
	SerfAdvertiseAddrWAN *net.TCPAddr

	// SerfBindAddrLAN is the address to bind the Serf LAN TCP and UDP
	// listeners to. The ip address is either the default bind address or the
	// 'serf_lan' address which can be either an ip address or a go-sockaddr
	// template which resolves to a single ip address.
	//
	// hcl: bind_addr = string serf_lan = string ports { serf_lan = int }
	// flag: -serf-lan string
	SerfBindAddrLAN *net.TCPAddr

	// SerfBindAddrWAN is the address to bind the Serf WAN TCP and UDP
	// listeners to. The ip address is either the default bind address or the
	// 'serf_wan' address which can be either an ip address or a go-sockaddr
	// template which resolves to a single ip address.
	//
	// hcl: bind_addr = string serf_wan = string ports { serf_wan = int }
	// flag: -serf-wan string
	SerfBindAddrWAN *net.TCPAddr

	// SerfPortLAN is the port used for the LAN Gossip pool for both client and server.
	// The default is 8301.
	//
	// hcl: ports { serf_lan = int }
	SerfPortLAN int

	// SerfPortWAN is the port used for the WAN Gossip pool for the server only.
	// The default is 8302.
	//
	// hcl: ports { serf_wan = int }
	SerfPortWAN int

	// ServerMode controls if this agent acts like a Consul server,
	// or merely as a client. Servers have more state, take part
	// in leader election, etc.
	//
	// hcl: server = (true|false)
	// flag: -server
	ServerMode bool

	// ServerName is used with the TLS certificates to ensure the name we
	// provide matches the certificate.
	//
	// hcl: server_name = string
	ServerName string

	// ServerPort is the port the RPC server will bind to.
	// The default is 8300.
	//
	// hcl: ports { server = int }
	ServerPort int

	// Services contains the provided service definitions:
	//
	// hcl: services = [
	//   {
	//     id = string
	//     name = string
	//     tags = []string
	//     address = string
	//     check = { check definiton }
	//     checks = [ { check definition}, ... ]
	//     token = string
	//     enable_tag_override = (true|false)
	//   },
	//   ...
	// ]
	Services []*structs.ServiceDefinition

	// Minimum Session TTL.
	//
	// hcl: session_ttl_min = "duration"
	SessionTTLMin time.Duration

	// SkipLeaveOnInt controls if Serf skips a graceful leave when
	// receiving the INT signal. Defaults false on clients, true on
	// servers. (reloadable)
	//
	// hcl: skip_leave_on_interrupt = (true|false)
	SkipLeaveOnInt bool

	// StartJoinLAN is a list of addresses to attempt to join -wan when the
	// agent starts. If Serf is unable to communicate with any of these
	// addresses, then the agent will error and exit.
	//
	// hcl: start_join = []string
	// flag: -join string -join string
	StartJoinAddrsLAN []string

	// StartJoinWAN is a list of addresses to attempt to join -wan when the
	// agent starts. If Serf is unable to communicate with any of these
	// addresses, then the agent will error and exit.
	//
	// hcl: start_join_wan = []string
	// flag: -join-wan string -join-wan string
	StartJoinAddrsWAN []string

	// SyslogFacility is used to control where the syslog messages go
	// By default, goes to LOCAL0
	//
	// hcl: syslog_facility = string
	SyslogFacility string

	// TLSCipherSuites is used to specify the list of supported ciphersuites.
	//
	// The values should be a list of the following values:
	//
	//   TLS_RSA_WITH_RC4_128_SHA
	//   TLS_RSA_WITH_3DES_EDE_CBC_SHA
	//   TLS_RSA_WITH_AES_128_CBC_SHA
	//   TLS_RSA_WITH_AES_256_CBC_SHA
	//   TLS_RSA_WITH_AES_128_GCM_SHA256
	//   TLS_RSA_WITH_AES_256_GCM_SHA384
	//   TLS_ECDHE_ECDSA_WITH_RC4_128_SHA
	//   TLS_ECDHE_ECDSA_WITH_AES_128_CBC_SHA
	//   TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA
	//   TLS_ECDHE_RSA_WITH_RC4_128_SHA
	//   TLS_ECDHE_RSA_WITH_3DES_EDE_CBC_SHA
	//   TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA
	//   TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA
	//   TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256
	//   TLS_ECDHE_ECDSA_WITH_AES_128_GCM_SHA256
	//   TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384
	//   TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384
	//
	// todo(fs): IMHO, we should also support the raw 0xNNNN values from
	// todo(fs): https://golang.org/pkg/crypto/tls/#pkg-constants
	// todo(fs): since they are standardized by IANA.
	//
	// hcl: tls_cipher_suites = []string
	TLSCipherSuites []uint16

	// TLSMinVersion is used to set the minimum TLS version used for TLS
	// connections. Should be either "tls10", "tls11", or "tls12".
	//
	// hcl: tls_min_version = string
	TLSMinVersion string

	// TLSPreferServerCipherSuites specifies whether to prefer the server's
	// cipher suite over the client cipher suites.
	//
	// hcl: tls_prefer_server_cipher_suites = (true|false)
	TLSPreferServerCipherSuites bool

	// TaggedAddresses are used to publish a set of addresses for
	// for a node, which can be used by the remote agent. We currently
	// populate only the "wan" tag based on the SerfWan advertise address,
	// but this structure is here for possible future features with other
	// user-defined tags. The "wan" tag will be used by remote agents if
	// they are configured with TranslateWANAddrs set to true.
	//
	// hcl: tagged_addresses = map[string]string
	TaggedAddresses map[string]string

	// TranslateWANAddrs controls whether or not Consul should prefer
	// the "wan" tagged address when doing lookups in remote datacenters.
	// See TaggedAddresses below for more details.
	//
	// hcl: translate_wan_addrs = (true|false)
	TranslateWANAddrs bool

	// UIDir is the directory containing the Web UI resources.
	// If provided, the UI endpoints will be enabled.
	//
	// hcl: ui_dir = string
	// flag: -ui-dir string
	UIDir string

	// UnixSocketGroup contains the group of the file permissions when
	// Consul binds to UNIX sockets.
	//
	// hcl: unix_sockets { group = string }
	UnixSocketGroup string

	// UnixSocketMode contains the mode of the file permissions when
	// Consul binds to UNIX sockets.
	//
	// hcl: unix_sockets { mode = string }
	UnixSocketMode string

	// UnixSocketUser contains the user of the file permissions when
	// Consul binds to UNIX sockets.
	//
	// hcl: unix_sockets { user = string }
	UnixSocketUser string

	// VerifyIncoming is used to verify the authenticity of incoming
	// connections. This means that TCP requests are forbidden, only allowing
	// for TLS. TLS connections must match a provided certificate authority.
	// This can be used to force client auth.
	//
	// hcl: verify_incoming = (true|false)
	VerifyIncoming bool

	// VerifyIncomingHTTPS is used to verify the authenticity of incoming HTTPS
	// connections. This means that TCP requests are forbidden, only allowing
	// for TLS. TLS connections must match a provided certificate authority.
	// This can be used to force client auth.
	//
	// hcl: verify_incoming_https = (true|false)
	VerifyIncomingHTTPS bool

	// VerifyIncomingRPC is used to verify the authenticity of incoming RPC
	// connections. This means that TCP requests are forbidden, only allowing
	// for TLS. TLS connections must match a provided certificate authority.
	// This can be used to force client auth.
	//
	// hcl: verify_incoming_rpc = (true|false)
	VerifyIncomingRPC bool

	// VerifyOutgoing is used to verify the authenticity of outgoing
	// connections. This means that TLS requests are used. TLS connections must
	// match a provided certificate authority. This is used to verify
	// authenticity of server nodes.
	//
	// hcl: verify_outgoing = (true|false)
	VerifyOutgoing bool

	// VerifyServerHostname is used to enable hostname verification of servers.
	// This ensures that the certificate presented is valid for
	// server.<datacenter>.<domain>. This prevents a compromised client from
	// being restarted as a server, and then intercepting request traffic as
	// well as being added as a raft peer. This should be enabled by default
	// with VerifyOutgoing, but for legacy reasons we cannot break existing
	// clients.
	//
	// hcl: verify_server_hostname = (true|false)
	VerifyServerHostname bool

	// Watches are used to monitor various endpoints and to invoke a
	// handler to act appropriately. These are managed entirely in the
	// agent layer using the standard APIs.
	//
	// See https://www.consul.io/docs/agent/watches.html for details.
	//
	// hcl: watches = [
	//   { type=string ... },
	//   { type=string ... },
	//   ...
	// ]
	//
	Watches []map[string]interface{}
}

RuntimeConfig specifies the configuration the consul agent actually uses. Is is derived from one or more Config structures which can come from files, flags and/or environment variables.

func DefaultRuntimeConfig

func DefaultRuntimeConfig(hcl string) *RuntimeConfig

func (*RuntimeConfig) IncomingHTTPSConfig

func (c *RuntimeConfig) IncomingHTTPSConfig() (*tls.Config, error)

IncomingHTTPSConfig returns the TLS configuration for HTTPS connections to consul.

func (*RuntimeConfig) Sanitized

func (c *RuntimeConfig) Sanitized() map[string]interface{}

Sanitized returns a JSON/HCL compatible representation of the runtime configuration where all fields with potential secrets had their values replaced by 'hidden'. In addition, network addresses and time.Duration values are formatted to improve readability.

type Segment

type Segment struct {
	Advertise   *string `json:"advertise,omitempty" hcl:"advertise" mapstructure:"advertise"`
	Bind        *string `json:"bind,omitempty" hcl:"bind" mapstructure:"bind"`
	Name        *string `json:"name,omitempty" hcl:"name" mapstructure:"name"`
	Port        *int    `json:"port,omitempty" hcl:"port" mapstructure:"port"`
	RPCListener *bool   `json:"rpc_listener,omitempty" hcl:"rpc_listener" mapstructure:"rpc_listener"`
}

type ServiceDefinition

type ServiceDefinition struct {
	ID                *string           `json:"id,omitempty" hcl:"id" mapstructure:"id"`
	Name              *string           `json:"name,omitempty" hcl:"name" mapstructure:"name"`
	Tags              []string          `json:"tags,omitempty" hcl:"tags" mapstructure:"tags"`
	Address           *string           `json:"address,omitempty" hcl:"address" mapstructure:"address"`
	Port              *int              `json:"port,omitempty" hcl:"port" mapstructure:"port"`
	Check             *CheckDefinition  `json:"check,omitempty" hcl:"check" mapstructure:"check"`
	Checks            []CheckDefinition `json:"checks,omitempty" hcl:"checks" mapstructure:"checks"`
	Token             *string           `json:"token,omitempty" hcl:"token" mapstructure:"token"`
	EnableTagOverride *bool             `json:"enable_tag_override,omitempty" hcl:"enable_tag_override" mapstructure:"enable_tag_override"`
}

type Source

type Source struct {
	Name   string
	Format string
	Data   string
}

func DefaultConsulSource

func DefaultConsulSource() Source

DefaultConsulSource returns the default configuration for the consul agent. This should be merged in the tail since these values are not user configurable.

func DefaultSource

func DefaultSource() Source

DefaultSource is the default agent configuration. This needs to be merged first in the head. todo(fs): The values are sourced from multiple sources. todo(fs): IMO, this should be the definitive default for all configurable values todo(fs): and whatever is in here should clobber every default value. Hence, no sourcing.

func DefaultVersionSource

func DefaultVersionSource() Source

DefaultVersionSource returns the version config source for the embedded version numbers.

func DevConsulSource

func DevConsulSource() Source

DevConsulSource returns the consul agent configuration for the dev mode. This should be merged in the tail after the DefaultConsulSource.

func DevSource

func DevSource() Source

DevSource is the additional default configuration for dev mode. This should be merged in the head after the default configuration.

func NonUserSource

func NonUserSource() Source

NonUserSource contains the values the user cannot configure. This needs to be merged in the tail.

func VersionSource

func VersionSource(rev, ver, verPre string) Source

VersionSource creates a config source for the version parameters. This should be merged in the tail since these values are not user configurable.

type Telemetry

type Telemetry struct {
	CirconusAPIApp                     *string  `json:"circonus_api_app,omitempty" hcl:"circonus_api_app" mapstructure:"circonus_api_app"`
	CirconusAPIToken                   *string  `json:"circonus_api_token,omitempty" json:"-" hcl:"circonus_api_token" mapstructure:"circonus_api_token" json:"-"`
	CirconusAPIURL                     *string  `json:"circonus_api_url,omitempty" hcl:"circonus_api_url" mapstructure:"circonus_api_url"`
	CirconusBrokerID                   *string  `json:"circonus_broker_id,omitempty" hcl:"circonus_broker_id" mapstructure:"circonus_broker_id"`
	CirconusBrokerSelectTag            *string  `json:"circonus_broker_select_tag,omitempty" hcl:"circonus_broker_select_tag" mapstructure:"circonus_broker_select_tag"`
	CirconusCheckDisplayName           *string  `json:"circonus_check_display_name,omitempty" hcl:"circonus_check_display_name" mapstructure:"circonus_check_display_name"`
	CirconusCheckForceMetricActivation *string  `` /* 154-byte string literal not displayed */
	CirconusCheckID                    *string  `json:"circonus_check_id,omitempty" hcl:"circonus_check_id" mapstructure:"circonus_check_id"`
	CirconusCheckInstanceID            *string  `json:"circonus_check_instance_id,omitempty" hcl:"circonus_check_instance_id" mapstructure:"circonus_check_instance_id"`
	CirconusCheckSearchTag             *string  `json:"circonus_check_search_tag,omitempty" hcl:"circonus_check_search_tag" mapstructure:"circonus_check_search_tag"`
	CirconusCheckTags                  *string  `json:"circonus_check_tags,omitempty" hcl:"circonus_check_tags" mapstructure:"circonus_check_tags"`
	CirconusSubmissionInterval         *string  `json:"circonus_submission_interval,omitempty" hcl:"circonus_submission_interval" mapstructure:"circonus_submission_interval"`
	CirconusSubmissionURL              *string  `json:"circonus_submission_url,omitempty" hcl:"circonus_submission_url" mapstructure:"circonus_submission_url"`
	DisableHostname                    *bool    `json:"disable_hostname,omitempty" hcl:"disable_hostname" mapstructure:"disable_hostname"`
	DogstatsdAddr                      *string  `json:"dogstatsd_addr,omitempty" hcl:"dogstatsd_addr" mapstructure:"dogstatsd_addr"`
	DogstatsdTags                      []string `json:"dogstatsd_tags,omitempty" hcl:"dogstatsd_tags" mapstructure:"dogstatsd_tags"`
	FilterDefault                      *bool    `json:"filter_default,omitempty" hcl:"filter_default" mapstructure:"filter_default"`
	PrefixFilter                       []string `json:"prefix_filter,omitempty" hcl:"prefix_filter" mapstructure:"prefix_filter"`
	MetricsPrefix                      *string  `json:"metrics_prefix,omitempty" hcl:"metrics_prefix" mapstructure:"metrics_prefix"`
	StatsdAddr                         *string  `json:"statsd_address,omitempty" hcl:"statsd_address" mapstructure:"statsd_address"`
	StatsiteAddr                       *string  `json:"statsite_address,omitempty" hcl:"statsite_address" mapstructure:"statsite_address"`
	EnableDeprecatedNames              *bool    `json:"enable_deprecated_names" hcl:"enable_deprecated_names" mapstructure:"enable_deprecated_names"`
}

type UnixSocket

type UnixSocket struct {
	Group *string `json:"group,omitempty" hcl:"group" mapstructure:"group"`
	Mode  *string `json:"mode,omitempty" hcl:"mode" mapstructure:"mode"`
	User  *string `json:"user,omitempty" hcl:"user" mapstructure:"user"`
}

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