mirror of https://github.com/hashicorp/consul
722 lines
19 KiB
Go
722 lines
19 KiB
Go
package structs
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import (
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"encoding/binary"
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"errors"
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"fmt"
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"hash/fnv"
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"sort"
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"strings"
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"time"
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"github.com/hashicorp/consul/acl"
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"github.com/hashicorp/consul/sentinel"
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"golang.org/x/crypto/blake2b"
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)
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type ACLMode string
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const (
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// ACLs are disabled by configuration
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ACLModeDisabled ACLMode = "0"
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// ACLs are enabled
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ACLModeEnabled ACLMode = "1"
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// DEPRECATED (ACL-Legacy-Compat) - only needed while legacy ACLs are supported
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// ACLs are enabled and using legacy ACLs
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ACLModeLegacy ACLMode = "2"
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// DEPRECATED (ACL-Legacy-Compat) - only needed while legacy ACLs are supported
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// ACLs are assumed enabled but not being advertised
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ACLModeUnknown ACLMode = "3"
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)
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// ACLOp is used in RPCs to encode ACL operations.
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type ACLOp string
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type ACLTokenIDType string
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const (
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ACLTokenSecret ACLTokenIDType = "secret"
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ACLTokenAccessor ACLTokenIDType = "accessor"
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)
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type ACLPolicyIDType string
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const (
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ACLPolicyName ACLPolicyIDType = "name"
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ACLPolicyID ACLPolicyIDType = "id"
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)
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const (
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// All policy ids with the first 120 bits set to all zeroes are
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// reserved for builtin policies. Policy creation will ensure we
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// dont accidentally create them when autogenerating uuids.
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// This policy gives unlimited access to everything. Users
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// may rename if desired but cannot delete or modify the rules.
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ACLPolicyGlobalManagementID = "00000000-0000-0000-0000-000000000001"
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ACLPolicyGlobalManagement = `
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acl = "write"
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agent_prefix "" {
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policy = "write"
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}
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event_prefix "" {
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policy = "write"
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}
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key_prefix "" {
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policy = "write"
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}
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keyring = "write"
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node_prefix "" {
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policy = "write"
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}
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operator = "write"
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query_prefix "" {
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policy = "write"
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}
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service_prefix "" {
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policy = "write"
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intentions = "write"
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}
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session_prefix "" {
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policy = "write"
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}`
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// This is the policy ID for anonymous access. This is configurable by the
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// user.
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ACLTokenAnonymousID = "00000000-0000-0000-0000-000000000002"
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)
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func ACLIDReserved(id string) bool {
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return strings.HasPrefix(id, "00000000-0000-0000-0000-0000000000")
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}
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const (
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// ACLSet creates or updates a token.
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ACLSet ACLOp = "set"
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// ACLDelete deletes a token.
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ACLDelete ACLOp = "delete"
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)
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// ACLBootstrapNotAllowedErr is returned once we know that a bootstrap can no
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// longer be done since the cluster was bootstrapped
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var ACLBootstrapNotAllowedErr = errors.New("ACL bootstrap no longer allowed")
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// ACLBootstrapInvalidResetIndexErr is returned when bootstrap is requested with a non-zero
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// reset index but the index doesn't match the bootstrap index
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var ACLBootstrapInvalidResetIndexErr = errors.New("Invalid ACL bootstrap reset index")
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type ACLIdentity interface {
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// ID returns a string that can be used for logging and telemetry. This should not
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// contain any secret data used for authentication
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ID() string
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SecretToken() string
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PolicyIDs() []string
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EmbeddedPolicy() *ACLPolicy
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}
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type ACLTokenPolicyLink struct {
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ID string
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Name string `hash:"ignore"`
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}
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type ACLToken struct {
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// This is the UUID used for tracking and management purposes
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AccessorID string
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// This is the UUID used as the api token by clients
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SecretID string
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// Human readable string to display for the token (Optional)
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Description string
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// List of policy links - nil/empty for legacy tokens
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// Note this is the list of IDs and not the names. Prior to token creation
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// the list of policy names gets validated and the policy IDs get stored herein
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Policies []ACLTokenPolicyLink
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// Type is the V1 Token Type
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// DEPRECATED (ACL-Legacy-Compat) - remove once we no longer support v1 ACL compat
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// Even though we are going to auto upgrade management tokens we still
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// want to be able to have the old APIs operate on the upgraded management tokens
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// so this field is being kept to identify legacy tokens even after an auto-upgrade
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Type string `json:"-"`
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// Rules is the V1 acl rules associated with
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// DEPRECATED (ACL-Legacy-Compat) - remove once we no longer support v1 ACL compat
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Rules string `json:",omitempty"`
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// Whether this token is DC local. This means that it will not be synced
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// to the ACL datacenter and replicated to others.
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Local bool
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// The time when this token was created
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CreateTime time.Time `json:",omitempty"`
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// Hash of the contents of the token
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//
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// This is needed mainly for replication purposes. When replicating from
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// one DC to another keeping the content Hash will allow us to avoid
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// unnecessary calls to the authoritative DC
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Hash []byte
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// Embedded Raft Metadata
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RaftIndex
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}
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func (t *ACLToken) Clone() *ACLToken {
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t2 := *t
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t2.Policies = nil
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if len(t.Policies) > 0 {
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t2.Policies = make([]ACLTokenPolicyLink, len(t.Policies))
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copy(t2.Policies, t.Policies)
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}
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return &t2
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}
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func (t *ACLToken) ID() string {
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return t.AccessorID
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}
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func (t *ACLToken) SecretToken() string {
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return t.SecretID
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}
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func (t *ACLToken) PolicyIDs() []string {
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var ids []string
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for _, link := range t.Policies {
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ids = append(ids, link.ID)
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}
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return ids
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}
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func (t *ACLToken) EmbeddedPolicy() *ACLPolicy {
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// DEPRECATED (ACL-Legacy-Compat)
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//
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// For legacy tokens with embedded rules this provides a way to map those
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// rules to an ACLPolicy. This function can just return nil once legacy
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// acl compatibility is no longer needed.
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//
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// Additionally for management tokens we must embed the policy rules
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// as well
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policy := &ACLPolicy{}
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if t.Type == ACLTokenTypeManagement {
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hasher := fnv.New128a()
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policy.ID = fmt.Sprintf("%x", hasher.Sum([]byte(ACLPolicyGlobalManagement)))
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policy.Name = "legacy-management"
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policy.Rules = ACLPolicyGlobalManagement
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policy.Syntax = acl.SyntaxCurrent
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} else if t.Rules != "" || t.Type == ACLTokenTypeClient {
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hasher := fnv.New128a()
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policy.ID = fmt.Sprintf("%x", hasher.Sum([]byte(t.Rules)))
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policy.Name = fmt.Sprintf("legacy-policy-%s", policy.ID)
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policy.Rules = t.Rules
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policy.Syntax = acl.SyntaxLegacy
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} else {
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return nil
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}
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policy.SetHash(true)
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return policy
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}
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func (t *ACLToken) SetHash(force bool) []byte {
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if force || t.Hash == nil {
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// Initialize a 256bit Blake2 hash (32 bytes)
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hash, err := blake2b.New256(nil)
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if err != nil {
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panic(err)
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}
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// Write all the user set fields
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hash.Write([]byte(t.Description))
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hash.Write([]byte(t.Type))
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hash.Write([]byte(t.Rules))
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if t.Local {
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hash.Write([]byte("local"))
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} else {
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hash.Write([]byte("global"))
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}
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for _, link := range t.Policies {
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hash.Write([]byte(link.ID))
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}
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// Finalize the hash
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hashVal := hash.Sum(nil)
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// Set and return the hash
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t.Hash = hashVal
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}
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return t.Hash
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}
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func (t *ACLToken) EstimateSize() int {
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// 33 = 16 (RaftIndex) + 8 (Hash) + 8 (CreateTime) + 1 (Local)
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size := 33 + len(t.AccessorID) + len(t.SecretID) + len(t.Description) + len(t.Type) + len(t.Rules)
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for _, link := range t.Policies {
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size += len(link.ID) + len(link.Name)
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}
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return size
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}
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// ACLTokens is a slice of ACLTokens.
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type ACLTokens []*ACLToken
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type ACLTokenListStub struct {
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AccessorID string
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Description string
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Policies []ACLTokenPolicyLink
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Local bool
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CreateTime time.Time `json:",omitempty"`
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Hash []byte
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CreateIndex uint64
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ModifyIndex uint64
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Legacy bool `json:",omitempty"`
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}
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type ACLTokenListStubs []*ACLTokenListStub
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func (token *ACLToken) Stub() *ACLTokenListStub {
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return &ACLTokenListStub{
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AccessorID: token.AccessorID,
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Description: token.Description,
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Policies: token.Policies,
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Local: token.Local,
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CreateTime: token.CreateTime,
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Hash: token.Hash,
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CreateIndex: token.CreateIndex,
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ModifyIndex: token.ModifyIndex,
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Legacy: token.Rules != "",
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}
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}
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func (tokens ACLTokens) Sort() {
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sort.Slice(tokens, func(i, j int) bool {
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return tokens[i].AccessorID < tokens[j].AccessorID
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})
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}
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func (tokens ACLTokenListStubs) Sort() {
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sort.Slice(tokens, func(i, j int) bool {
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return tokens[i].AccessorID < tokens[j].AccessorID
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})
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}
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type ACLPolicy struct {
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// This is the internal UUID associated with the policy
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ID string
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// Unique name to reference the policy by.
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// - Valid Characters: [a-zA-Z0-9-]
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// - Valid Lengths: 1 - 128
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Name string
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// Human readable description (Optional)
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Description string
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// The rule set (using the updated rule syntax)
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Rules string
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// DEPRECATED (ACL-Legacy-Compat) - This is only needed while we support the legacy ACLs
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Syntax acl.SyntaxVersion `json:"-"`
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// Datacenters that the policy is valid within.
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// - No wildcards allowed
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// - If empty then the policy is valid within all datacenters
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Datacenters []string `json:",omitempty"`
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// Hash of the contents of the policy
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// This does not take into account the ID (which is immutable)
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// nor the raft metadata.
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//
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// This is needed mainly for replication purposes. When replicating from
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// one DC to another keeping the content Hash will allow us to avoid
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// unnecessary calls to the authoritative DC
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Hash []byte
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// Embedded Raft Metadata
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RaftIndex `hash:"ignore"`
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}
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func (p *ACLPolicy) Clone() *ACLPolicy {
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p2 := *p
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p2.Datacenters = nil
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if len(p.Datacenters) > 0 {
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p2.Datacenters = make([]string, len(p.Datacenters))
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copy(p2.Datacenters, p.Datacenters)
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}
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return &p2
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}
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type ACLPolicyListStub struct {
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ID string
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Name string
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Description string
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Datacenters []string
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Hash []byte
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CreateIndex uint64
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ModifyIndex uint64
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}
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func (p *ACLPolicy) Stub() *ACLPolicyListStub {
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return &ACLPolicyListStub{
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ID: p.ID,
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Name: p.Name,
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Description: p.Description,
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Datacenters: p.Datacenters,
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Hash: p.Hash,
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CreateIndex: p.CreateIndex,
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ModifyIndex: p.ModifyIndex,
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}
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}
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type ACLPolicies []*ACLPolicy
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type ACLPolicyListStubs []*ACLPolicyListStub
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func (p *ACLPolicy) SetHash(force bool) []byte {
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if force || p.Hash == nil {
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// Initialize a 256bit Blake2 hash (32 bytes)
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hash, err := blake2b.New256(nil)
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if err != nil {
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panic(err)
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}
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// Write all the user set fields
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hash.Write([]byte(p.Name))
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hash.Write([]byte(p.Description))
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hash.Write([]byte(p.Rules))
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for _, dc := range p.Datacenters {
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hash.Write([]byte(dc))
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}
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// Finalize the hash
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hashVal := hash.Sum(nil)
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// Set and return the hash
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p.Hash = hashVal
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}
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return p.Hash
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}
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func (p *ACLPolicy) EstimateSize() int {
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// This is just an estimate. There is other data structure overhead
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// pointers etc that this does not account for.
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// 64 = 36 (uuid) + 16 (RaftIndex) + 8 (Hash) + 4 (Syntax)
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size := 64 + len(p.Name) + len(p.Description) + len(p.Rules)
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for _, dc := range p.Datacenters {
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size += len(dc)
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}
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return size
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}
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// ACLPolicyListHash returns a consistent hash for a set of policies.
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func (policies ACLPolicies) HashKey() string {
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cacheKeyHash, err := blake2b.New256(nil)
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if err != nil {
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panic(err)
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}
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for _, policy := range policies {
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cacheKeyHash.Write([]byte(policy.ID))
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// including the modify index prevents a policy set from being
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// cached if one of the policies has changed
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binary.Write(cacheKeyHash, binary.BigEndian, policy.ModifyIndex)
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}
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return fmt.Sprintf("%x", cacheKeyHash.Sum(nil))
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}
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func (policies ACLPolicies) Sort() {
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sort.Slice(policies, func(i, j int) bool {
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return policies[i].ID < policies[j].ID
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})
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}
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func (policies ACLPolicyListStubs) Sort() {
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sort.Slice(policies, func(i, j int) bool {
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return policies[i].ID < policies[j].ID
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})
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}
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func (policies ACLPolicies) resolveWithCache(cache *ACLCaches, sentinel sentinel.Evaluator) ([]*acl.Policy, error) {
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// Parse the policies
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parsed := make([]*acl.Policy, 0, len(policies))
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for _, policy := range policies {
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policy.SetHash(false)
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cacheKey := fmt.Sprintf("%x", policy.Hash)
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cachedPolicy := cache.GetParsedPolicy(cacheKey)
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if cachedPolicy != nil {
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// policies are content hashed so no need to check the age
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parsed = append(parsed, cachedPolicy.Policy)
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continue
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}
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p, err := acl.NewPolicyFromSource(policy.ID, policy.ModifyIndex, policy.Rules, policy.Syntax, sentinel)
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if err != nil {
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return nil, fmt.Errorf("failed to parse %q: %v", policy.Name, err)
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}
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cache.PutParsedPolicy(cacheKey, p)
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parsed = append(parsed, p)
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}
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return parsed, nil
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}
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func (policies ACLPolicies) Compile(parent acl.Authorizer, cache *ACLCaches, sentinel sentinel.Evaluator) (acl.Authorizer, error) {
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// Determine the cache key
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cacheKey := policies.HashKey()
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entry := cache.GetAuthorizer(cacheKey)
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if entry != nil {
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// the hash key takes into account the policy contents. There is no reason to expire this cache or check its age.
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return entry.Authorizer, nil
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}
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parsed, err := policies.resolveWithCache(cache, sentinel)
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if err != nil {
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return nil, fmt.Errorf("failed to parse the ACL policies: %v", err)
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}
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// Create the ACL object
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authorizer, err := acl.NewPolicyAuthorizer(parent, parsed, sentinel)
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if err != nil {
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return nil, fmt.Errorf("failed to construct ACL Authorizer: %v", err)
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}
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// Update the cache
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cache.PutAuthorizer(cacheKey, authorizer)
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return authorizer, nil
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}
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func (policies ACLPolicies) Merge(cache *ACLCaches, sentinel sentinel.Evaluator) (*acl.Policy, error) {
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parsed, err := policies.resolveWithCache(cache, sentinel)
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if err != nil {
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return nil, err
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}
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return acl.MergePolicies(parsed), nil
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}
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type ACLReplicationType string
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const (
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ACLReplicateLegacy ACLReplicationType = "legacy"
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ACLReplicatePolicies ACLReplicationType = "policies"
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ACLReplicateTokens ACLReplicationType = "tokens"
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)
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// ACLReplicationStatus provides information about the health of the ACL
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// replication system.
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type ACLReplicationStatus struct {
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Enabled bool
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Running bool
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SourceDatacenter string
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ReplicationType ACLReplicationType
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ReplicatedIndex uint64
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ReplicatedTokenIndex uint64
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LastSuccess time.Time
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LastError time.Time
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}
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// ACLTokenSetRequest is used for token creation and update operations
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// at the RPC layer
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type ACLTokenSetRequest struct {
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ACLToken ACLToken // Token to manipulate - I really dislike this name but "Token" is taken in the WriteRequest
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Datacenter string // The datacenter to perform the request within
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WriteRequest
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}
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func (r *ACLTokenSetRequest) RequestDatacenter() string {
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return r.Datacenter
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}
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// ACLTokenGetRequest is used for token read operations at the RPC layer
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type ACLTokenGetRequest struct {
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TokenID string // id used for the token lookup
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TokenIDType ACLTokenIDType // The Type of ID used to lookup the token
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Datacenter string // The datacenter to perform the request within
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QueryOptions
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}
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func (r *ACLTokenGetRequest) RequestDatacenter() string {
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return r.Datacenter
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}
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// ACLTokenDeleteRequest is used for token deletion operations at the RPC layer
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type ACLTokenDeleteRequest struct {
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TokenID string // ID of the token to delete
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Datacenter string // The datacenter to perform the request within
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WriteRequest
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}
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func (r *ACLTokenDeleteRequest) RequestDatacenter() string {
|
|
return r.Datacenter
|
|
}
|
|
|
|
// ACLTokenListRequest is used for token listing operations at the RPC layer
|
|
type ACLTokenListRequest struct {
|
|
IncludeLocal bool // Whether local tokens should be included
|
|
IncludeGlobal bool // Whether global tokens should be included
|
|
Policy string // Policy filter
|
|
Datacenter string // The datacenter to perform the request within
|
|
QueryOptions
|
|
}
|
|
|
|
func (r *ACLTokenListRequest) RequestDatacenter() string {
|
|
return r.Datacenter
|
|
}
|
|
|
|
// ACLTokenListResponse is used to return the secret data free stubs
|
|
// of the tokens
|
|
type ACLTokenListResponse struct {
|
|
Tokens ACLTokenListStubs
|
|
QueryMeta
|
|
}
|
|
|
|
// ACLTokenBatchGetRequest is used for reading multiple tokens, this is
|
|
// different from the the token list request in that only tokens with the
|
|
// the requested ids are returned
|
|
type ACLTokenBatchGetRequest struct {
|
|
AccessorIDs []string // List of accessor ids to fetch
|
|
Datacenter string // The datacenter to perform the request within
|
|
QueryOptions
|
|
}
|
|
|
|
func (r *ACLTokenBatchGetRequest) RequestDatacenter() string {
|
|
return r.Datacenter
|
|
}
|
|
|
|
// ACLTokenBatchSetRequest is used only at the Raft layer
|
|
// for batching multiple token creation/update operations
|
|
//
|
|
// This is particularly useful during token replication and during
|
|
// automatic legacy token upgrades.
|
|
type ACLTokenBatchSetRequest struct {
|
|
Tokens ACLTokens
|
|
CAS bool
|
|
}
|
|
|
|
// ACLTokenBatchDeleteRequest is used only at the Raft layer
|
|
// for batching multiple token deletions.
|
|
//
|
|
// This is particularly useful during token replication when
|
|
// multiple tokens need to be removed from the local DCs state.
|
|
type ACLTokenBatchDeleteRequest struct {
|
|
TokenIDs []string // Tokens to delete
|
|
}
|
|
|
|
// ACLTokenBootstrapRequest is used only at the Raft layer
|
|
// for ACL bootstrapping
|
|
//
|
|
// The RPC layer will use a generic DCSpecificRequest to indicate
|
|
// that bootstrapping must be performed but the actual token
|
|
// and the resetIndex will be generated by that RPC endpoint
|
|
type ACLTokenBootstrapRequest struct {
|
|
Token ACLToken // Token to use for bootstrapping
|
|
ResetIndex uint64 // Reset index
|
|
}
|
|
|
|
// ACLTokenResponse returns a single Token + metadata
|
|
type ACLTokenResponse struct {
|
|
Token *ACLToken
|
|
Redacted bool // whether the token's secret was redacted
|
|
QueryMeta
|
|
}
|
|
|
|
// ACLTokenBatchResponse returns multiple Tokens associated with the same metadata
|
|
type ACLTokenBatchResponse struct {
|
|
Tokens []*ACLToken
|
|
Redacted bool // whether the token secrets were redacted.
|
|
QueryMeta
|
|
}
|
|
|
|
// ACLPolicySetRequest is used at the RPC layer for creation and update requests
|
|
type ACLPolicySetRequest struct {
|
|
Policy ACLPolicy // The policy to upsert
|
|
Datacenter string // The datacenter to perform the request within
|
|
WriteRequest
|
|
}
|
|
|
|
func (r *ACLPolicySetRequest) RequestDatacenter() string {
|
|
return r.Datacenter
|
|
}
|
|
|
|
// ACLPolicyDeleteRequest is used at the RPC layer deletion requests
|
|
type ACLPolicyDeleteRequest struct {
|
|
PolicyID string // The id of the policy to delete
|
|
Datacenter string // The datacenter to perform the request within
|
|
WriteRequest
|
|
}
|
|
|
|
func (r *ACLPolicyDeleteRequest) RequestDatacenter() string {
|
|
return r.Datacenter
|
|
}
|
|
|
|
// ACLPolicyGetRequest is used at the RPC layer to perform policy read operations
|
|
type ACLPolicyGetRequest struct {
|
|
PolicyID string // id used for the policy lookup
|
|
Datacenter string // The datacenter to perform the request within
|
|
QueryOptions
|
|
}
|
|
|
|
func (r *ACLPolicyGetRequest) RequestDatacenter() string {
|
|
return r.Datacenter
|
|
}
|
|
|
|
// ACLPolicyListRequest is used at the RPC layer to request a listing of policies
|
|
type ACLPolicyListRequest struct {
|
|
Datacenter string // The datacenter to perform the request within
|
|
QueryOptions
|
|
}
|
|
|
|
func (r *ACLPolicyListRequest) RequestDatacenter() string {
|
|
return r.Datacenter
|
|
}
|
|
|
|
type ACLPolicyListResponse struct {
|
|
Policies ACLPolicyListStubs
|
|
QueryMeta
|
|
}
|
|
|
|
// ACLPolicyBatchGetRequest is used at the RPC layer to request a subset of
|
|
// the policies associated with the token used for retrieval
|
|
type ACLPolicyBatchGetRequest struct {
|
|
PolicyIDs []string // List of policy ids to fetch
|
|
Datacenter string // The datacenter to perform the request within
|
|
QueryOptions
|
|
}
|
|
|
|
func (r *ACLPolicyBatchGetRequest) RequestDatacenter() string {
|
|
return r.Datacenter
|
|
}
|
|
|
|
// ACLPolicyResponse returns a single policy + metadata
|
|
type ACLPolicyResponse struct {
|
|
Policy *ACLPolicy
|
|
QueryMeta
|
|
}
|
|
|
|
type ACLPolicyBatchResponse struct {
|
|
Policies []*ACLPolicy
|
|
QueryMeta
|
|
}
|
|
|
|
// ACLPolicyBatchSetRequest is used at the Raft layer for batching
|
|
// multiple policy creations and updates
|
|
//
|
|
// This is particularly useful during replication
|
|
type ACLPolicyBatchSetRequest struct {
|
|
Policies ACLPolicies
|
|
}
|
|
|
|
// ACLPolicyBatchDeleteRequest is used at the Raft layer for batching
|
|
// multiple policy deletions
|
|
//
|
|
// This is particularly useful during replication
|
|
type ACLPolicyBatchDeleteRequest struct {
|
|
PolicyIDs []string
|
|
}
|