mirror of https://github.com/status-im/consul.git
391 lines
12 KiB
Go
391 lines
12 KiB
Go
package api
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import (
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"bytes"
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"fmt"
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"io"
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"strconv"
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"strings"
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"time"
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)
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// AutopilotConfiguration is used for querying/setting the Autopilot configuration.
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// Autopilot helps manage operator tasks related to Consul servers like removing
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// failed servers from the Raft quorum.
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type AutopilotConfiguration struct {
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// CleanupDeadServers controls whether to remove dead servers from the Raft
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// peer list when a new server joins
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CleanupDeadServers bool
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// LastContactThreshold is the limit on the amount of time a server can go
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// without leader contact before being considered unhealthy.
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LastContactThreshold *ReadableDuration
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// MaxTrailingLogs is the amount of entries in the Raft Log that a server can
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// be behind before being considered unhealthy.
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MaxTrailingLogs uint64
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// MinQuorum sets the minimum number of servers allowed in a cluster before
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// autopilot can prune dead servers.
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MinQuorum uint
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// ServerStabilizationTime is the minimum amount of time a server must be
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// in a stable, healthy state before it can be added to the cluster. Only
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// applicable with Raft protocol version 3 or higher.
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ServerStabilizationTime *ReadableDuration
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// (Enterprise-only) RedundancyZoneTag is the node tag to use for separating
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// servers into zones for redundancy. If left blank, this feature will be disabled.
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RedundancyZoneTag string
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// (Enterprise-only) DisableUpgradeMigration will disable Autopilot's upgrade migration
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// strategy of waiting until enough newer-versioned servers have been added to the
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// cluster before promoting them to voters.
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DisableUpgradeMigration bool
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// (Enterprise-only) UpgradeVersionTag is the node tag to use for version info when
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// performing upgrade migrations. If left blank, the Consul version will be used.
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UpgradeVersionTag string
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// CreateIndex holds the index corresponding the creation of this configuration.
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// This is a read-only field.
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CreateIndex uint64
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// ModifyIndex will be set to the index of the last update when retrieving the
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// Autopilot configuration. Resubmitting a configuration with
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// AutopilotCASConfiguration will perform a check-and-set operation which ensures
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// there hasn't been a subsequent update since the configuration was retrieved.
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ModifyIndex uint64
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}
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// Defines default values for the AutopilotConfiguration type, consistent with
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// https://www.consul.io/api-docs/operator/autopilot#parameters-1
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func NewAutopilotConfiguration() AutopilotConfiguration {
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cfg := AutopilotConfiguration{
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CleanupDeadServers: true,
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LastContactThreshold: NewReadableDuration(200 * time.Millisecond),
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MaxTrailingLogs: 250,
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MinQuorum: 0,
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ServerStabilizationTime: NewReadableDuration(10 * time.Second),
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RedundancyZoneTag: "",
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DisableUpgradeMigration: false,
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UpgradeVersionTag: "",
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}
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return cfg
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}
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// ServerHealth is the health (from the leader's point of view) of a server.
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type ServerHealth struct {
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// ID is the raft ID of the server.
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ID string
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// Name is the node name of the server.
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Name string
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// Address is the address of the server.
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Address string
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// The status of the SerfHealth check for the server.
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SerfStatus string
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// Version is the Consul version of the server.
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Version string
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// Leader is whether this server is currently the leader.
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Leader bool
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// LastContact is the time since this node's last contact with the leader.
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LastContact *ReadableDuration
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// LastTerm is the highest leader term this server has a record of in its Raft log.
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LastTerm uint64
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// LastIndex is the last log index this server has a record of in its Raft log.
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LastIndex uint64
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// Healthy is whether or not the server is healthy according to the current
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// Autopilot config.
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Healthy bool
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// Voter is whether this is a voting server.
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Voter bool
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// StableSince is the last time this server's Healthy value changed.
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StableSince time.Time
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}
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// OperatorHealthReply is a representation of the overall health of the cluster
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type OperatorHealthReply struct {
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// Healthy is true if all the servers in the cluster are healthy.
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Healthy bool
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// FailureTolerance is the number of healthy servers that could be lost without
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// an outage occurring.
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FailureTolerance int
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// Servers holds the health of each server.
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Servers []ServerHealth
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}
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type AutopilotState struct {
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Healthy bool
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FailureTolerance int
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OptimisticFailureTolerance int
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Servers map[string]AutopilotServer
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Leader string
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Voters []string
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ReadReplicas []string `json:",omitempty"`
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RedundancyZones map[string]AutopilotZone `json:",omitempty"`
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Upgrade *AutopilotUpgrade `json:",omitempty"`
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}
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type AutopilotServer struct {
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ID string
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Name string
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Address string
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NodeStatus string
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Version string
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LastContact *ReadableDuration
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LastTerm uint64
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LastIndex uint64
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Healthy bool
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StableSince time.Time
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RedundancyZone string `json:",omitempty"`
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UpgradeVersion string `json:",omitempty"`
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ReadReplica bool
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Status AutopilotServerStatus
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Meta map[string]string
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NodeType AutopilotServerType
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}
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type AutopilotServerStatus string
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const (
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AutopilotServerNone AutopilotServerStatus = "none"
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AutopilotServerLeader AutopilotServerStatus = "leader"
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AutopilotServerVoter AutopilotServerStatus = "voter"
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AutopilotServerNonVoter AutopilotServerStatus = "non-voter"
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AutopilotServerStaging AutopilotServerStatus = "staging"
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)
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type AutopilotServerType string
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const (
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AutopilotTypeVoter AutopilotServerType = "voter"
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AutopilotTypeReadReplica AutopilotServerType = "read-replica"
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AutopilotTypeZoneVoter AutopilotServerType = "zone-voter"
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AutopilotTypeZoneExtraVoter AutopilotServerType = "zone-extra-voter"
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AutopilotTypeZoneStandby AutopilotServerType = "zone-standby"
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)
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type AutopilotZone struct {
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Servers []string
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Voters []string
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FailureTolerance int
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}
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type AutopilotZoneUpgradeVersions struct {
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TargetVersionVoters []string `json:",omitempty"`
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TargetVersionNonVoters []string `json:",omitempty"`
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OtherVersionVoters []string `json:",omitempty"`
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OtherVersionNonVoters []string `json:",omitempty"`
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}
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type AutopilotUpgrade struct {
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Status AutopilotUpgradeStatus
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TargetVersion string `json:",omitempty"`
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TargetVersionVoters []string `json:",omitempty"`
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TargetVersionNonVoters []string `json:",omitempty"`
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TargetVersionReadReplicas []string `json:",omitempty"`
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OtherVersionVoters []string `json:",omitempty"`
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OtherVersionNonVoters []string `json:",omitempty"`
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OtherVersionReadReplicas []string `json:",omitempty"`
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RedundancyZones map[string]AutopilotZoneUpgradeVersions `json:",omitempty"`
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}
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type AutopilotUpgradeStatus string
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const (
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// AutopilotUpgradeIdle is the status when no upgrade is in progress.
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AutopilotUpgradeIdle AutopilotUpgradeStatus = "idle"
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// AutopilotUpgradeAwaitNewVoters is the status when more servers of
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// the target version must be added in order to start the promotion
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// phase of the upgrade
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AutopilotUpgradeAwaitNewVoters AutopilotUpgradeStatus = "await-new-voters"
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// AutopilotUpgradePromoting is the status when autopilot is promoting
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// servers of the target version.
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AutopilotUpgradePromoting AutopilotUpgradeStatus = "promoting"
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// AutopilotUpgradeDemoting is the status when autopilot is demoting
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// servers not on the target version
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AutopilotUpgradeDemoting AutopilotUpgradeStatus = "demoting"
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// AutopilotUpgradeLeaderTransfer is the status when autopilot is transferring
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// leadership from a server running an older version to a server
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// using the target version.
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AutopilotUpgradeLeaderTransfer AutopilotUpgradeStatus = "leader-transfer"
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// AutopilotUpgradeAwaitNewServers is the status when autpilot has finished
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// transferring leadership and has demoted all the other versioned
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// servers but wants to indicate that more target version servers
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// are needed to replace all the existing other version servers.
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AutopilotUpgradeAwaitNewServers AutopilotUpgradeStatus = "await-new-servers"
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// AutopilotUpgradeAwaitServerRemoval is the status when autopilot is waiting
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// for the servers on non-target versions to be removed
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AutopilotUpgradeAwaitServerRemoval AutopilotUpgradeStatus = "await-server-removal"
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// AutopilotUpgradeDisabled is the status when automated ugprades are
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// disabled in the autopilot configuration
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AutopilotUpgradeDisabled AutopilotUpgradeStatus = "disabled"
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)
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// ReadableDuration is a duration type that is serialized to JSON in human readable format.
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type ReadableDuration time.Duration
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func NewReadableDuration(dur time.Duration) *ReadableDuration {
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d := ReadableDuration(dur)
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return &d
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}
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func (d *ReadableDuration) String() string {
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return d.Duration().String()
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}
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func (d *ReadableDuration) Duration() time.Duration {
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if d == nil {
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return time.Duration(0)
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}
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return time.Duration(*d)
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}
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func (d *ReadableDuration) MarshalJSON() ([]byte, error) {
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return []byte(fmt.Sprintf(`"%s"`, d.Duration().String())), nil
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}
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func (d *ReadableDuration) UnmarshalJSON(raw []byte) (err error) {
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if d == nil {
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return fmt.Errorf("cannot unmarshal to nil pointer")
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}
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var dur time.Duration
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str := string(raw)
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if len(str) >= 2 && str[0] == '"' && str[len(str)-1] == '"' {
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// quoted string
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dur, err = time.ParseDuration(str[1 : len(str)-1])
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if err != nil {
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return err
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}
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} else {
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// no quotes, not a string
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v, err := strconv.ParseFloat(str, 64)
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if err != nil {
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return err
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}
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dur = time.Duration(v)
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}
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*d = ReadableDuration(dur)
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return nil
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}
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// AutopilotGetConfiguration is used to query the current Autopilot configuration.
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func (op *Operator) AutopilotGetConfiguration(q *QueryOptions) (*AutopilotConfiguration, error) {
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r := op.c.newRequest("GET", "/v1/operator/autopilot/configuration")
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r.setQueryOptions(q)
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_, resp, err := requireOK(op.c.doRequest(r))
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if err != nil {
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return nil, err
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}
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defer closeResponseBody(resp)
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var out AutopilotConfiguration
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if err := decodeBody(resp, &out); err != nil {
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return nil, err
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}
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return &out, nil
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}
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// AutopilotSetConfiguration is used to set the current Autopilot configuration.
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func (op *Operator) AutopilotSetConfiguration(conf *AutopilotConfiguration, q *WriteOptions) error {
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r := op.c.newRequest("PUT", "/v1/operator/autopilot/configuration")
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r.setWriteOptions(q)
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r.obj = conf
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_, resp, err := requireOK(op.c.doRequest(r))
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if err != nil {
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return err
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}
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closeResponseBody(resp)
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return nil
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}
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// AutopilotCASConfiguration is used to perform a Check-And-Set update on the
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// Autopilot configuration. The ModifyIndex value will be respected. Returns
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// true on success or false on failures.
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func (op *Operator) AutopilotCASConfiguration(conf *AutopilotConfiguration, q *WriteOptions) (bool, error) {
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r := op.c.newRequest("PUT", "/v1/operator/autopilot/configuration")
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r.setWriteOptions(q)
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r.params.Set("cas", strconv.FormatUint(conf.ModifyIndex, 10))
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r.obj = conf
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_, resp, err := requireOK(op.c.doRequest(r))
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if err != nil {
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return false, err
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}
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defer closeResponseBody(resp)
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var buf bytes.Buffer
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if _, err := io.Copy(&buf, resp.Body); err != nil {
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return false, fmt.Errorf("Failed to read response: %v", err)
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}
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res := strings.Contains(buf.String(), "true")
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return res, nil
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}
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// AutopilotServerHealth
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func (op *Operator) AutopilotServerHealth(q *QueryOptions) (*OperatorHealthReply, error) {
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r := op.c.newRequest("GET", "/v1/operator/autopilot/health")
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r.setQueryOptions(q)
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// we use 429 status to indicate unhealthiness
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d, resp, err := op.c.doRequest(r)
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_, resp, err = requireHttpCodes(d, resp, err, 200, 429)
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if err != nil {
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if resp != nil {
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closeResponseBody(resp)
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}
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return nil, err
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}
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defer closeResponseBody(resp)
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var out OperatorHealthReply
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if err := decodeBody(resp, &out); err != nil {
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return nil, err
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}
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return &out, nil
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}
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func (op *Operator) AutopilotState(q *QueryOptions) (*AutopilotState, error) {
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r := op.c.newRequest("GET", "/v1/operator/autopilot/state")
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r.setQueryOptions(q)
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_, resp, err := requireOK(op.c.doRequest(r))
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if err != nil {
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return nil, err
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}
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defer closeResponseBody(resp)
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var out AutopilotState
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if err := decodeBody(resp, &out); err != nil {
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return nil, err
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}
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return &out, nil
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}
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