668 lines
18 KiB
Go
668 lines
18 KiB
Go
package zookeeper
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import (
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"context"
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"crypto/tls"
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"crypto/x509"
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"fmt"
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"io/ioutil"
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"net"
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"path/filepath"
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"sort"
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"strings"
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"sync"
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"time"
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log "github.com/hashicorp/go-hclog"
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"github.com/hashicorp/go-secure-stdlib/parseutil"
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"github.com/hashicorp/vault/sdk/physical"
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metrics "github.com/armon/go-metrics"
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"github.com/hashicorp/go-secure-stdlib/tlsutil"
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"github.com/samuel/go-zookeeper/zk"
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)
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const (
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// ZKNodeFilePrefix is prefixed to any "files" in ZooKeeper,
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// so that they do not collide with directory entries. Otherwise,
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// we cannot delete a file if the path is a full-prefix of another
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// key.
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ZKNodeFilePrefix = "_"
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)
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// Verify ZooKeeperBackend satisfies the correct interfaces
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var (
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_ physical.Backend = (*ZooKeeperBackend)(nil)
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_ physical.HABackend = (*ZooKeeperBackend)(nil)
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_ physical.Lock = (*ZooKeeperHALock)(nil)
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)
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// ZooKeeperBackend is a physical backend that stores data at specific
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// prefix within ZooKeeper. It is used in production situations as
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// it allows Vault to run on multiple machines in a highly-available manner.
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type ZooKeeperBackend struct {
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path string
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client *zk.Conn
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acl []zk.ACL
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logger log.Logger
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}
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// NewZooKeeperBackend constructs a ZooKeeper backend using the given API client
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// and the prefix in the KV store.
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func NewZooKeeperBackend(conf map[string]string, logger log.Logger) (physical.Backend, error) {
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// Get the path in ZooKeeper
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path, ok := conf["path"]
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if !ok {
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path = "vault/"
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}
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// Ensure path is suffixed and prefixed (zk requires prefix /)
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if !strings.HasSuffix(path, "/") {
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path += "/"
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}
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if !strings.HasPrefix(path, "/") {
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path = "/" + path
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}
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// Configure the client, default to localhost instance
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var machines string
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machines, ok = conf["address"]
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if !ok {
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machines = "localhost:2181"
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}
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// zNode owner and schema.
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var owner string
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var schema string
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var schemaAndOwner string
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schemaAndOwner, ok = conf["znode_owner"]
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if !ok {
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owner = "anyone"
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schema = "world"
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} else {
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parsedSchemaAndOwner := strings.SplitN(schemaAndOwner, ":", 2)
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if len(parsedSchemaAndOwner) != 2 {
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return nil, fmt.Errorf("znode_owner expected format is 'schema:owner'")
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} else {
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schema = parsedSchemaAndOwner[0]
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owner = parsedSchemaAndOwner[1]
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// znode_owner is in config and structured correctly - but does it make any sense?
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// Either 'owner' or 'schema' was set but not both - this seems like a failed attempt
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// (e.g. ':MyUser' which omit the schema, or ':' omitting both)
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if owner == "" || schema == "" {
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return nil, fmt.Errorf("znode_owner expected format is 'schema:auth'")
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}
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}
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}
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acl := []zk.ACL{
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{
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Perms: zk.PermAll,
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Scheme: schema,
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ID: owner,
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},
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}
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// Authentication info
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var schemaAndUser string
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var useAddAuth bool
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schemaAndUser, useAddAuth = conf["auth_info"]
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if useAddAuth {
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parsedSchemaAndUser := strings.SplitN(schemaAndUser, ":", 2)
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if len(parsedSchemaAndUser) != 2 {
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return nil, fmt.Errorf("auth_info expected format is 'schema:auth'")
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} else {
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schema = parsedSchemaAndUser[0]
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owner = parsedSchemaAndUser[1]
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// auth_info is in config and structured correctly - but does it make any sense?
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// Either 'owner' or 'schema' was set but not both - this seems like a failed attempt
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// (e.g. ':MyUser' which omit the schema, or ':' omitting both)
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if owner == "" || schema == "" {
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return nil, fmt.Errorf("auth_info expected format is 'schema:auth'")
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}
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}
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}
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// We have all of the configuration in hand - let's try and connect to ZK
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client, _, err := createClient(conf, machines, time.Second)
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if err != nil {
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return nil, fmt.Errorf("client setup failed: %w", err)
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}
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// ZK AddAuth API if the user asked for it
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if useAddAuth {
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err = client.AddAuth(schema, []byte(owner))
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if err != nil {
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return nil, fmt.Errorf("ZooKeeper rejected authentication information provided at auth_info: %w", err)
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}
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}
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// Setup the backend
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c := &ZooKeeperBackend{
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path: path,
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client: client,
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acl: acl,
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logger: logger,
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}
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return c, nil
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}
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func caseInsenstiveContains(superset, val string) bool {
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return strings.Contains(strings.ToUpper(superset), strings.ToUpper(val))
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}
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// Returns a client for ZK connection. Config value 'tls_enabled' determines if TLS is enabled or not.
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func createClient(conf map[string]string, machines string, timeout time.Duration) (*zk.Conn, <-chan zk.Event, error) {
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// 'tls_enabled' defaults to false
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isTlsEnabled := false
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isTlsEnabledStr, ok := conf["tls_enabled"]
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if ok && isTlsEnabledStr != "" {
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parsedBoolval, err := parseutil.ParseBool(isTlsEnabledStr)
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if err != nil {
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return nil, nil, fmt.Errorf("failed parsing tls_enabled parameter: %w", err)
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}
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isTlsEnabled = parsedBoolval
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}
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if isTlsEnabled {
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// Create a custom Dialer with cert configuration for TLS handshake.
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tlsDialer := customTLSDial(conf, machines)
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options := zk.WithDialer(tlsDialer)
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return zk.Connect(strings.Split(machines, ","), timeout, options)
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} else {
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return zk.Connect(strings.Split(machines, ","), timeout)
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}
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}
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// Vault config file properties:
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// 1. tls_skip_verify: skip host name verification.
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// 2. tls_min_version: minimum supported/acceptable tls version
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// 3. tls_cert_file: Cert file Absolute path
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// 4. tls_key_file: Key file Absolute path
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// 5. tls_ca_file: ca file absolute path
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// 6. tls_verify_ip: If set to true, server's IP is verified in certificate if tls_skip_verify is false.
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func customTLSDial(conf map[string]string, machines string) zk.Dialer {
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return func(network, addr string, timeout time.Duration) (net.Conn, error) {
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// Sets the serverName. *Note* the addr field comes in as an IP address
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serverName, _, sParseErr := net.SplitHostPort(addr)
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if sParseErr != nil {
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// If the address is only missing port, assign the full address anyway
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if strings.Contains(sParseErr.Error(), "missing port") {
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serverName = addr
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} else {
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return nil, fmt.Errorf("failed parsing the server address for 'serverName' setting %w", sParseErr)
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}
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}
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insecureSkipVerify := false
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tlsSkipVerify, ok := conf["tls_skip_verify"]
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if ok && tlsSkipVerify != "" {
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b, err := parseutil.ParseBool(tlsSkipVerify)
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if err != nil {
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return nil, fmt.Errorf("failed parsing tls_skip_verify parameter: %w", err)
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}
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insecureSkipVerify = b
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}
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if !insecureSkipVerify {
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// If tls_verify_ip is set to false, Server's DNS name is verified in the CN/SAN of the certificate.
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// if tls_verify_ip is true, Server's IP is verified in the CN/SAN of the certificate.
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// These checks happen only when tls_skip_verify is set to false.
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// This value defaults to false
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ipSanCheck := false
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configVal, lookupOk := conf["tls_verify_ip"]
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if lookupOk && configVal != "" {
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parsedIpSanCheck, ipSanErr := parseutil.ParseBool(configVal)
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if ipSanErr != nil {
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return nil, fmt.Errorf("failed parsing tls_verify_ip parameter: %w", ipSanErr)
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}
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ipSanCheck = parsedIpSanCheck
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}
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// The addr/serverName parameter to this method comes in as an IP address.
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// Here we lookup the DNS name and assign it to serverName if ipSanCheck is set to false
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if !ipSanCheck {
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lookupAddressMany, lookupErr := net.LookupAddr(serverName)
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if lookupErr == nil {
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for _, lookupAddress := range lookupAddressMany {
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// strip the trailing '.' from lookupAddr
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if lookupAddress[len(lookupAddress)-1] == '.' {
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lookupAddress = lookupAddress[:len(lookupAddress)-1]
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}
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// Allow serverName to be replaced only if the lookupname is part of the
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// supplied machine names
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// If there is no match, the serverName will continue to be an IP value.
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if caseInsenstiveContains(machines, lookupAddress) {
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serverName = lookupAddress
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break
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}
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}
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}
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}
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}
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tlsMinVersionStr, ok := conf["tls_min_version"]
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if !ok {
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// Set the default value
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tlsMinVersionStr = "tls12"
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}
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tlsMinVersion, ok := tlsutil.TLSLookup[tlsMinVersionStr]
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if !ok {
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return nil, fmt.Errorf("invalid 'tls_min_version'")
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}
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tlsClientConfig := &tls.Config{
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MinVersion: tlsMinVersion,
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InsecureSkipVerify: insecureSkipVerify,
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ServerName: serverName,
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}
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_, okCert := conf["tls_cert_file"]
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_, okKey := conf["tls_key_file"]
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if okCert && okKey {
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tlsCert, err := tls.LoadX509KeyPair(conf["tls_cert_file"], conf["tls_key_file"])
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if err != nil {
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return nil, fmt.Errorf("client tls setup failed for ZK: %w", err)
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}
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tlsClientConfig.Certificates = []tls.Certificate{tlsCert}
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}
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if tlsCaFile, ok := conf["tls_ca_file"]; ok {
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caPool := x509.NewCertPool()
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data, err := ioutil.ReadFile(tlsCaFile)
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if err != nil {
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return nil, fmt.Errorf("failed to read ZK CA file: %w", err)
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}
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if !caPool.AppendCertsFromPEM(data) {
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return nil, fmt.Errorf("failed to parse ZK CA certificate")
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}
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tlsClientConfig.RootCAs = caPool
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}
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if network != "tcp" {
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return nil, fmt.Errorf("unsupported network %q", network)
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}
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tcpConn, err := net.DialTimeout("tcp", addr, timeout)
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if err != nil {
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return nil, err
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}
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conn := tls.Client(tcpConn, tlsClientConfig)
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if err := conn.Handshake(); err != nil {
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return nil, fmt.Errorf("Handshake failed with Zookeeper : %v", err)
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}
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return conn, nil
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}
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}
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// ensurePath is used to create each node in the path hierarchy.
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// We avoid calling this optimistically, and invoke it when we get
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// an error during an operation
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func (c *ZooKeeperBackend) ensurePath(path string, value []byte) error {
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nodes := strings.Split(path, "/")
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fullPath := ""
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for index, node := range nodes {
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if strings.TrimSpace(node) != "" {
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fullPath += "/" + node
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isLastNode := index+1 == len(nodes)
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// set parent nodes to nil, leaf to value
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// this block reduces round trips by being smart on the leaf create/set
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if exists, _, _ := c.client.Exists(fullPath); !isLastNode && !exists {
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if _, err := c.client.Create(fullPath, nil, int32(0), c.acl); err != nil {
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return err
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}
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} else if isLastNode && !exists {
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if _, err := c.client.Create(fullPath, value, int32(0), c.acl); err != nil {
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return err
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}
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} else if isLastNode && exists {
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if _, err := c.client.Set(fullPath, value, int32(-1)); err != nil {
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return err
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}
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}
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}
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}
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return nil
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}
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// cleanupLogicalPath is used to remove all empty nodes, beginning with deepest one,
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// aborting on first non-empty one, up to top-level node.
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func (c *ZooKeeperBackend) cleanupLogicalPath(path string) error {
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nodes := strings.Split(path, "/")
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for i := len(nodes) - 1; i > 0; i-- {
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fullPath := c.path + strings.Join(nodes[:i], "/")
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_, stat, err := c.client.Exists(fullPath)
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if err != nil {
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return fmt.Errorf("failed to acquire node data: %w", err)
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}
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if stat.DataLength > 0 && stat.NumChildren > 0 {
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panic(fmt.Sprintf("node %q is both of data and leaf type", fullPath))
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} else if stat.DataLength > 0 {
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panic(fmt.Sprintf("node %q is a data node, this is either a bug or backend data is corrupted", fullPath))
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} else if stat.NumChildren > 0 {
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return nil
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} else {
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// Empty node, lets clean it up!
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if err := c.client.Delete(fullPath, -1); err != nil && err != zk.ErrNoNode {
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return fmt.Errorf("removal of node %q failed: %w", fullPath, err)
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}
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}
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}
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return nil
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}
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// nodePath returns an zk path based on the given key.
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func (c *ZooKeeperBackend) nodePath(key string) string {
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return filepath.Join(c.path, filepath.Dir(key), ZKNodeFilePrefix+filepath.Base(key))
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}
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// Put is used to insert or update an entry
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func (c *ZooKeeperBackend) Put(ctx context.Context, entry *physical.Entry) error {
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defer metrics.MeasureSince([]string{"zookeeper", "put"}, time.Now())
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// Attempt to set the full path
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fullPath := c.nodePath(entry.Key)
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_, err := c.client.Set(fullPath, entry.Value, -1)
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// If we get ErrNoNode, we need to construct the path hierarchy
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if err == zk.ErrNoNode {
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return c.ensurePath(fullPath, entry.Value)
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}
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return err
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}
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// Get is used to fetch an entry
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func (c *ZooKeeperBackend) Get(ctx context.Context, key string) (*physical.Entry, error) {
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defer metrics.MeasureSince([]string{"zookeeper", "get"}, time.Now())
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// Attempt to read the full path
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fullPath := c.nodePath(key)
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value, _, err := c.client.Get(fullPath)
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// Ignore if the node does not exist
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if err == zk.ErrNoNode {
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err = nil
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}
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if err != nil {
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return nil, err
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}
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// Handle a non-existing value
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if value == nil {
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return nil, nil
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}
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ent := &physical.Entry{
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Key: key,
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Value: value,
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}
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return ent, nil
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}
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// Delete is used to permanently delete an entry
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func (c *ZooKeeperBackend) Delete(ctx context.Context, key string) error {
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defer metrics.MeasureSince([]string{"zookeeper", "delete"}, time.Now())
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if key == "" {
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return nil
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}
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// Delete the full path
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fullPath := c.nodePath(key)
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err := c.client.Delete(fullPath, -1)
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// Mask if the node does not exist
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if err != nil && err != zk.ErrNoNode {
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return fmt.Errorf("failed to remove %q: %w", fullPath, err)
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}
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err = c.cleanupLogicalPath(key)
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return err
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}
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// List is used ot list all the keys under a given
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// prefix, up to the next prefix.
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func (c *ZooKeeperBackend) List(ctx context.Context, prefix string) ([]string, error) {
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defer metrics.MeasureSince([]string{"zookeeper", "list"}, time.Now())
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// Query the children at the full path
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fullPath := strings.TrimSuffix(c.path+prefix, "/")
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result, _, err := c.client.Children(fullPath)
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// If the path nodes are missing, no children!
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if err == zk.ErrNoNode {
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return []string{}, nil
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} else if err != nil {
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return []string{}, err
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}
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children := []string{}
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for _, key := range result {
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childPath := fullPath + "/" + key
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_, stat, err := c.client.Exists(childPath)
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if err != nil {
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// Node is ought to exists, so it must be something different
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return []string{}, err
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}
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// Check if this entry is a leaf of a node,
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// and append the slash which is what Vault depends on
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// for iteration
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if stat.DataLength > 0 && stat.NumChildren > 0 {
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if childPath == c.nodePath("core/lock") {
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// go-zookeeper Lock() breaks Vault semantics and creates a directory
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// under the lock file; just treat it like the file Vault expects
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children = append(children, key[1:])
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} else {
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panic(fmt.Sprintf("node %q is both of data and leaf type", childPath))
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}
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} else if stat.DataLength == 0 {
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// No, we cannot differentiate here on number of children as node
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// can have all it leafs removed, and it still is a node.
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children = append(children, key+"/")
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} else {
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children = append(children, key[1:])
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}
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}
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sort.Strings(children)
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return children, nil
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}
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// LockWith is used for mutual exclusion based on the given key.
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func (c *ZooKeeperBackend) LockWith(key, value string) (physical.Lock, error) {
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l := &ZooKeeperHALock{
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in: c,
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key: key,
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value: value,
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logger: c.logger,
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}
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return l, nil
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}
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// HAEnabled indicates whether the HA functionality should be exposed.
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// Currently always returns true.
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func (c *ZooKeeperBackend) HAEnabled() bool {
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return true
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}
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// ZooKeeperHALock is a ZooKeeper Lock implementation for the HABackend
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type ZooKeeperHALock struct {
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in *ZooKeeperBackend
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key string
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value string
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logger log.Logger
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held bool
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localLock sync.Mutex
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leaderCh chan struct{}
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stopCh <-chan struct{}
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zkLock *zk.Lock
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}
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func (i *ZooKeeperHALock) Lock(stopCh <-chan struct{}) (<-chan struct{}, error) {
|
|
i.localLock.Lock()
|
|
defer i.localLock.Unlock()
|
|
if i.held {
|
|
return nil, fmt.Errorf("lock already held")
|
|
}
|
|
|
|
// Attempt an async acquisition
|
|
didLock := make(chan struct{})
|
|
failLock := make(chan error, 1)
|
|
releaseCh := make(chan bool, 1)
|
|
lockpath := i.in.nodePath(i.key)
|
|
go i.attemptLock(lockpath, didLock, failLock, releaseCh)
|
|
|
|
// Wait for lock acquisition, failure, or shutdown
|
|
select {
|
|
case <-didLock:
|
|
releaseCh <- false
|
|
case err := <-failLock:
|
|
return nil, err
|
|
case <-stopCh:
|
|
releaseCh <- true
|
|
return nil, nil
|
|
}
|
|
|
|
// Create the leader channel
|
|
i.held = true
|
|
i.leaderCh = make(chan struct{})
|
|
|
|
// Watch for Events which could result in loss of our zkLock and close(i.leaderCh)
|
|
currentVal, _, lockeventCh, err := i.in.client.GetW(lockpath)
|
|
if err != nil {
|
|
return nil, fmt.Errorf("unable to watch HA lock: %w", err)
|
|
}
|
|
if i.value != string(currentVal) {
|
|
return nil, fmt.Errorf("lost HA lock immediately before watch")
|
|
}
|
|
go i.monitorLock(lockeventCh, i.leaderCh)
|
|
|
|
i.stopCh = stopCh
|
|
|
|
return i.leaderCh, nil
|
|
}
|
|
|
|
func (i *ZooKeeperHALock) attemptLock(lockpath string, didLock chan struct{}, failLock chan error, releaseCh chan bool) {
|
|
// Wait to acquire the lock in ZK
|
|
lock := zk.NewLock(i.in.client, lockpath, i.in.acl)
|
|
err := lock.Lock()
|
|
if err != nil {
|
|
failLock <- err
|
|
return
|
|
}
|
|
// Set node value
|
|
data := []byte(i.value)
|
|
err = i.in.ensurePath(lockpath, data)
|
|
if err != nil {
|
|
failLock <- err
|
|
lock.Unlock()
|
|
return
|
|
}
|
|
i.zkLock = lock
|
|
|
|
// Signal that lock is held
|
|
close(didLock)
|
|
|
|
// Handle an early abort
|
|
release := <-releaseCh
|
|
if release {
|
|
lock.Unlock()
|
|
}
|
|
}
|
|
|
|
func (i *ZooKeeperHALock) monitorLock(lockeventCh <-chan zk.Event, leaderCh chan struct{}) {
|
|
for {
|
|
select {
|
|
case event := <-lockeventCh:
|
|
// Lost connection?
|
|
switch event.State {
|
|
case zk.StateConnected:
|
|
case zk.StateHasSession:
|
|
default:
|
|
close(leaderCh)
|
|
return
|
|
}
|
|
|
|
// Lost lock?
|
|
switch event.Type {
|
|
case zk.EventNodeChildrenChanged:
|
|
case zk.EventSession:
|
|
default:
|
|
close(leaderCh)
|
|
return
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
func (i *ZooKeeperHALock) unlockInternal() error {
|
|
i.localLock.Lock()
|
|
defer i.localLock.Unlock()
|
|
if !i.held {
|
|
return nil
|
|
}
|
|
|
|
err := i.zkLock.Unlock()
|
|
|
|
if err == nil {
|
|
i.held = false
|
|
return nil
|
|
}
|
|
|
|
return err
|
|
}
|
|
|
|
func (i *ZooKeeperHALock) Unlock() error {
|
|
var err error
|
|
|
|
if err = i.unlockInternal(); err != nil {
|
|
i.logger.Error("failed to release distributed lock", "error", err)
|
|
|
|
go func(i *ZooKeeperHALock) {
|
|
attempts := 0
|
|
i.logger.Info("launching automated distributed lock release")
|
|
|
|
for {
|
|
if err := i.unlockInternal(); err == nil {
|
|
i.logger.Info("distributed lock released")
|
|
return
|
|
}
|
|
|
|
select {
|
|
case <-time.After(time.Second):
|
|
attempts := attempts + 1
|
|
if attempts >= 10 {
|
|
i.logger.Error("release lock max attempts reached. Lock may not be released", "error", err)
|
|
return
|
|
}
|
|
continue
|
|
case <-i.stopCh:
|
|
return
|
|
}
|
|
}
|
|
}(i)
|
|
}
|
|
|
|
return err
|
|
}
|
|
|
|
func (i *ZooKeeperHALock) Value() (bool, string, error) {
|
|
lockpath := i.in.nodePath(i.key)
|
|
value, _, err := i.in.client.Get(lockpath)
|
|
return (value != nil), string(value), err
|
|
}
|