2016-02-13 00:50:37 +00:00
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package raft
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import (
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"fmt"
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"io"
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"time"
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2019-06-19 12:50:48 +00:00
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"github.com/hashicorp/go-hclog"
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2016-02-13 00:50:37 +00:00
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)
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2020-01-20 12:58:02 +00:00
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// ProtocolVersion is the version of the protocol (which includes RPC messages
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// as well as Raft-specific log entries) that this server can _understand_. Use
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2016-08-09 02:18:43 +00:00
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// the ProtocolVersion member of the Config object to control the version of
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// the protocol to use when _speaking_ to other servers. Note that depending on
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// the protocol version being spoken, some otherwise understood RPC messages
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// may be refused. See dispositionRPC for details of this logic.
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//
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// There are notes about the upgrade path in the description of the versions
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// below. If you are starting a fresh cluster then there's no reason not to
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// jump right to the latest protocol version. If you need to interoperate with
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// older, version 0 Raft servers you'll need to drive the cluster through the
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// different versions in order.
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//
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// The version details are complicated, but here's a summary of what's required
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// to get from a version 0 cluster to version 3:
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//
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// 1. In version N of your app that starts using the new Raft library with
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// versioning, set ProtocolVersion to 1.
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// 2. Make version N+1 of your app require version N as a prerequisite (all
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// servers must be upgraded). For version N+1 of your app set ProtocolVersion
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// to 2.
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// 3. Similarly, make version N+2 of your app require version N+1 as a
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// prerequisite. For version N+2 of your app, set ProtocolVersion to 3.
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//
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// During this upgrade, older cluster members will still have Server IDs equal
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// to their network addresses. To upgrade an older member and give it an ID, it
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// needs to leave the cluster and re-enter:
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//
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// 1. Remove the server from the cluster with RemoveServer, using its network
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// address as its ServerID.
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// 2. Update the server's config to use a UUID or something else that is
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// not tied to the machine as the ServerID (restarting the server).
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2016-08-09 02:18:43 +00:00
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// 3. Add the server back to the cluster with AddVoter, using its new ID.
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//
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// You can do this during the rolling upgrade from N+1 to N+2 of your app, or
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// as a rolling change at any time after the upgrade.
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//
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// Version History
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//
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// 0: Original Raft library before versioning was added. Servers running this
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// version of the Raft library use AddPeerDeprecated/RemovePeerDeprecated
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// for all configuration changes, and have no support for LogConfiguration.
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// 1: First versioned protocol, used to interoperate with old servers, and begin
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// the migration path to newer versions of the protocol. Under this version
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// all configuration changes are propagated using the now-deprecated
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// RemovePeerDeprecated Raft log entry. This means that server IDs are always
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// set to be the same as the server addresses (since the old log entry type
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// cannot transmit an ID), and only AddPeer/RemovePeer APIs are supported.
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// Servers running this version of the protocol can understand the new
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// LogConfiguration Raft log entry but will never generate one so they can
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// remain compatible with version 0 Raft servers in the cluster.
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// 2: Transitional protocol used when migrating an existing cluster to the new
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// server ID system. Server IDs are still set to be the same as server
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// addresses, but all configuration changes are propagated using the new
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// LogConfiguration Raft log entry type, which can carry full ID information.
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// This version supports the old AddPeer/RemovePeer APIs as well as the new
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// ID-based AddVoter/RemoveServer APIs which should be used when adding
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// version 3 servers to the cluster later. This version sheds all
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// interoperability with version 0 servers, but can interoperate with newer
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// Raft servers running with protocol version 1 since they can understand the
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// new LogConfiguration Raft log entry, and this version can still understand
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// their RemovePeerDeprecated Raft log entries. We need this protocol version
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// as an intermediate step between 1 and 3 so that servers will propagate the
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// ID information that will come from newly-added (or -rolled) servers using
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// protocol version 3, but since they are still using their address-based IDs
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// from the previous step they will still be able to track commitments and
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// their own voting status properly. If we skipped this step, servers would
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// be started with their new IDs, but they wouldn't see themselves in the old
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// address-based configuration, so none of the servers would think they had a
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// vote.
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// 3: Protocol adding full support for server IDs and new ID-based server APIs
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// (AddVoter, AddNonvoter, etc.), old AddPeer/RemovePeer APIs are no longer
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// supported. Version 2 servers should be swapped out by removing them from
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// the cluster one-by-one and re-adding them with updated configuration for
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// this protocol version, along with their server ID. The remove/add cycle
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// is required to populate their server ID. Note that removing must be done
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// by ID, which will be the old server's address.
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type ProtocolVersion int
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const (
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// ProtocolVersionMin is the minimum protocol version
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ProtocolVersionMin ProtocolVersion = 0
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// ProtocolVersionMax is the maximum protocol version
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ProtocolVersionMax = 3
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)
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2020-01-20 12:58:02 +00:00
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// SnapshotVersion is the version of snapshots that this server can understand.
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// Currently, it is always assumed that the server generates the latest version,
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// though this may be changed in the future to include a configurable version.
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2016-08-09 02:18:43 +00:00
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//
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// Version History
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//
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// 0: Original Raft library before versioning was added. The peers portion of
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// these snapshots is encoded in the legacy format which requires decodePeers
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// to parse. This version of snapshots should only be produced by the
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// unversioned Raft library.
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// 1: New format which adds support for a full configuration structure and its
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// associated log index, with support for server IDs and non-voting server
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// modes. To ease upgrades, this also includes the legacy peers structure but
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// that will never be used by servers that understand version 1 snapshots.
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// Since the original Raft library didn't enforce any versioning, we must
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// include the legacy peers structure for this version, but we can deprecate
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// it in the next snapshot version.
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type SnapshotVersion int
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const (
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// SnapshotVersionMin is the minimum snapshot version
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SnapshotVersionMin SnapshotVersion = 0
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// SnapshotVersionMax is the maximum snapshot version
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SnapshotVersionMax = 1
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)
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// Config provides any necessary configuration for the Raft server.
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type Config struct {
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// ProtocolVersion allows a Raft server to inter-operate with older
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// Raft servers running an older version of the code. This is used to
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// version the wire protocol as well as Raft-specific log entries that
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// the server uses when _speaking_ to other servers. There is currently
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// no auto-negotiation of versions so all servers must be manually
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// configured with compatible versions. See ProtocolVersionMin and
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// ProtocolVersionMax for the versions of the protocol that this server
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// can _understand_.
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ProtocolVersion ProtocolVersion
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// HeartbeatTimeout specifies the time in follower state without
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// a leader before we attempt an election.
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HeartbeatTimeout time.Duration
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// ElectionTimeout specifies the time in candidate state without
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// a leader before we attempt an election.
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ElectionTimeout time.Duration
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// CommitTimeout controls the time without an Apply() operation
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// before we heartbeat to ensure a timely commit. Due to random
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// staggering, may be delayed as much as 2x this value.
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CommitTimeout time.Duration
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// MaxAppendEntries controls the maximum number of append entries
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// to send at once. We want to strike a balance between efficiency
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// and avoiding waste if the follower is going to reject because of
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// an inconsistent log.
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MaxAppendEntries int
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// If we are a member of a cluster, and RemovePeer is invoked for the
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// local node, then we forget all peers and transition into the follower state.
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// If ShutdownOnRemove is is set, we additional shutdown Raft. Otherwise,
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// we can become a leader of a cluster containing only this node.
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ShutdownOnRemove bool
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// TrailingLogs controls how many logs we leave after a snapshot. This is
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// used so that we can quickly replay logs on a follower instead of being
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// forced to send an entire snapshot.
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TrailingLogs uint64
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// SnapshotInterval controls how often we check if we should perform a snapshot.
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// We randomly stagger between this value and 2x this value to avoid the entire
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// cluster from performing a snapshot at once.
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SnapshotInterval time.Duration
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// SnapshotThreshold controls how many outstanding logs there must be before
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// we perform a snapshot. This is to prevent excessive snapshots when we can
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// just replay a small set of logs.
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SnapshotThreshold uint64
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// LeaderLeaseTimeout is used to control how long the "lease" lasts
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// for being the leader without being able to contact a quorum
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// of nodes. If we reach this interval without contact, we will
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// step down as leader.
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LeaderLeaseTimeout time.Duration
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// StartAsLeader forces Raft to start in the leader state. This should
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// never be used except for testing purposes, as it can cause a split-brain.
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StartAsLeader bool
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// The unique ID for this server across all time. When running with
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// ProtocolVersion < 3, you must set this to be the same as the network
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// address of your transport.
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LocalID ServerID
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2016-02-13 00:50:37 +00:00
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// NotifyCh is used to provide a channel that will be notified of leadership
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// changes. Raft will block writing to this channel, so it should either be
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// buffered or aggressively consumed.
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NotifyCh chan<- bool
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// LogOutput is used as a sink for logs, unless Logger is specified.
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// Defaults to os.Stderr.
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LogOutput io.Writer
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2019-06-19 12:50:48 +00:00
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// LogLevel represents a log level. If a no matching string is specified,
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// hclog.NoLevel is assumed.
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LogLevel string
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// Logger is a user-provided hc-log logger. If nil, a logger writing to
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// LogOutput with LogLevel is used.
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Logger hclog.Logger
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2019-07-24 21:06:39 +00:00
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// NoSnapshotRestoreOnStart controls if raft will restore a snapshot to the
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// FSM on start. This is useful if your FSM recovers from other mechanisms
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// than raft snapshotting. Snapshot metadata will still be used to initialize
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// raft's configuration and index values. This is used in NewRaft and
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// RestoreCluster.
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NoSnapshotRestoreOnStart bool
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// skipStartup allows NewRaft() to bypass all background work goroutines
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skipStartup bool
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}
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// DefaultConfig returns a Config with usable defaults.
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func DefaultConfig() *Config {
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return &Config{
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ProtocolVersion: ProtocolVersionMax,
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HeartbeatTimeout: 1000 * time.Millisecond,
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ElectionTimeout: 1000 * time.Millisecond,
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CommitTimeout: 50 * time.Millisecond,
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MaxAppendEntries: 64,
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ShutdownOnRemove: true,
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TrailingLogs: 10240,
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SnapshotInterval: 120 * time.Second,
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SnapshotThreshold: 8192,
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LeaderLeaseTimeout: 500 * time.Millisecond,
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LogLevel: "DEBUG",
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}
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}
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// ValidateConfig is used to validate a sane configuration
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func ValidateConfig(config *Config) error {
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// We don't actually support running as 0 in the library any more, but
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// we do understand it.
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protocolMin := ProtocolVersionMin
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if protocolMin == 0 {
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protocolMin = 1
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}
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if config.ProtocolVersion < protocolMin ||
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config.ProtocolVersion > ProtocolVersionMax {
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return fmt.Errorf("Protocol version %d must be >= %d and <= %d",
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config.ProtocolVersion, protocolMin, ProtocolVersionMax)
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}
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if len(config.LocalID) == 0 {
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return fmt.Errorf("LocalID cannot be empty")
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}
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2016-02-13 00:50:37 +00:00
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if config.HeartbeatTimeout < 5*time.Millisecond {
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return fmt.Errorf("Heartbeat timeout is too low")
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}
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if config.ElectionTimeout < 5*time.Millisecond {
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return fmt.Errorf("Election timeout is too low")
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}
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if config.CommitTimeout < time.Millisecond {
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return fmt.Errorf("Commit timeout is too low")
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}
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if config.MaxAppendEntries <= 0 {
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return fmt.Errorf("MaxAppendEntries must be positive")
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}
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if config.MaxAppendEntries > 1024 {
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return fmt.Errorf("MaxAppendEntries is too large")
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}
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if config.SnapshotInterval < 5*time.Millisecond {
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return fmt.Errorf("Snapshot interval is too low")
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}
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if config.LeaderLeaseTimeout < 5*time.Millisecond {
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return fmt.Errorf("Leader lease timeout is too low")
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}
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if config.LeaderLeaseTimeout > config.HeartbeatTimeout {
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return fmt.Errorf("Leader lease timeout cannot be larger than heartbeat timeout")
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}
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if config.ElectionTimeout < config.HeartbeatTimeout {
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return fmt.Errorf("Election timeout must be equal or greater than Heartbeat Timeout")
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}
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return nil
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}
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