377 lines
8.2 KiB
Go
377 lines
8.2 KiB
Go
package acl
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import (
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"github.com/armon/go-radix"
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)
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var (
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// allowAll is a singleton policy which allows all
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// non-management actions
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allowAll ACL
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// denyAll is a singleton policy which denies all actions
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denyAll ACL
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// manageAll is a singleton policy which allows all
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// actions, including management
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manageAll ACL
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)
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func init() {
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// Setup the singletons
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allowAll = &StaticACL{
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allowManage: false,
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defaultAllow: true,
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}
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denyAll = &StaticACL{
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allowManage: false,
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defaultAllow: false,
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}
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manageAll = &StaticACL{
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allowManage: true,
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defaultAllow: true,
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}
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}
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// ACL is the interface for policy enforcement.
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type ACL interface {
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// KeyRead checks for permission to read a given key
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KeyRead(string) bool
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// KeyWrite checks for permission to write a given key
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KeyWrite(string) bool
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// KeyWritePrefix checks for permission to write to an
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// entire key prefix. This means there must be no sub-policies
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// that deny a write.
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KeyWritePrefix(string) bool
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// ServiceWrite checks for permission to read a given service
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ServiceWrite(string) bool
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// ServiceRead checks for permission to read a given service
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ServiceRead(string) bool
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// EventRead determines if a specific event can be queried.
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EventRead(string) bool
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// EventWrite determines if a specific event may be fired.
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EventWrite(string) bool
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// KeyringRead determines if the encryption keyring used in
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// the gossip layer can be read.
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KeyringRead() bool
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// KeyringWrite determines if the keyring can be manipulated
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KeyringWrite() bool
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// ACLList checks for permission to list all the ACLs
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ACLList() bool
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// ACLModify checks for permission to manipulate ACLs
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ACLModify() bool
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}
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// StaticACL is used to implement a base ACL policy. It either
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// allows or denies all requests. This can be used as a parent
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// ACL to act in a blacklist or whitelist mode.
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type StaticACL struct {
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allowManage bool
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defaultAllow bool
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}
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func (s *StaticACL) KeyRead(string) bool {
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return s.defaultAllow
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}
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func (s *StaticACL) KeyWrite(string) bool {
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return s.defaultAllow
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}
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func (s *StaticACL) KeyWritePrefix(string) bool {
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return s.defaultAllow
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}
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func (s *StaticACL) ServiceRead(string) bool {
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return s.defaultAllow
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}
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func (s *StaticACL) ServiceWrite(string) bool {
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return s.defaultAllow
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}
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func (s *StaticACL) EventRead(string) bool {
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return s.defaultAllow
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}
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func (s *StaticACL) EventWrite(string) bool {
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return s.defaultAllow
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}
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func (s *StaticACL) KeyringRead() bool {
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return s.defaultAllow
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}
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func (s *StaticACL) KeyringWrite() bool {
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return s.defaultAllow
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}
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func (s *StaticACL) ACLList() bool {
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return s.allowManage
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}
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func (s *StaticACL) ACLModify() bool {
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return s.allowManage
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}
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// AllowAll returns an ACL rule that allows all operations
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func AllowAll() ACL {
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return allowAll
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}
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// DenyAll returns an ACL rule that denies all operations
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func DenyAll() ACL {
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return denyAll
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}
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// ManageAll returns an ACL rule that can manage all resources
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func ManageAll() ACL {
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return manageAll
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}
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// RootACL returns a possible ACL if the ID matches a root policy
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func RootACL(id string) ACL {
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switch id {
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case "allow":
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return allowAll
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case "deny":
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return denyAll
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case "manage":
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return manageAll
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default:
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return nil
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}
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}
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// PolicyACL is used to wrap a set of ACL policies to provide
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// the ACL interface.
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type PolicyACL struct {
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// parent is used to resolve policy if we have
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// no matching rule.
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parent ACL
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// keyRules contains the key policies
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keyRules *radix.Tree
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// serviceRules contains the service policies
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serviceRules *radix.Tree
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// eventRules contains the user event policies
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eventRules *radix.Tree
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// keyringRules contains the keyring policies. The keyring has
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// a very simple yes/no without prefix matching, so here we
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// don't need to use a radix tree.
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keyringRule string
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}
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// New is used to construct a policy based ACL from a set of policies
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// and a parent policy to resolve missing cases.
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func New(parent ACL, policy *Policy) (*PolicyACL, error) {
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p := &PolicyACL{
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parent: parent,
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keyRules: radix.New(),
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serviceRules: radix.New(),
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eventRules: radix.New(),
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}
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// Load the key policy
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for _, kp := range policy.Keys {
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p.keyRules.Insert(kp.Prefix, kp.Policy)
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}
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// Load the service policy
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for _, sp := range policy.Services {
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p.serviceRules.Insert(sp.Name, sp.Policy)
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}
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// Load the event policy
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for _, ep := range policy.Events {
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p.eventRules.Insert(ep.Event, ep.Policy)
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}
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// Load the keyring policy
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p.keyringRule = policy.Keyring
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return p, nil
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}
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// KeyRead returns if a key is allowed to be read
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func (p *PolicyACL) KeyRead(key string) bool {
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// Look for a matching rule
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_, rule, ok := p.keyRules.LongestPrefix(key)
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if ok {
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switch rule.(string) {
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case KeyPolicyRead:
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return true
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case KeyPolicyWrite:
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return true
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default:
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return false
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}
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}
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// No matching rule, use the parent.
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return p.parent.KeyRead(key)
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}
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// KeyWrite returns if a key is allowed to be written
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func (p *PolicyACL) KeyWrite(key string) bool {
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// Look for a matching rule
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_, rule, ok := p.keyRules.LongestPrefix(key)
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if ok {
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switch rule.(string) {
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case KeyPolicyWrite:
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return true
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default:
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return false
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}
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}
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// No matching rule, use the parent.
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return p.parent.KeyWrite(key)
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}
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// KeyWritePrefix returns if a prefix is allowed to be written
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func (p *PolicyACL) KeyWritePrefix(prefix string) bool {
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// Look for a matching rule that denies
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_, rule, ok := p.keyRules.LongestPrefix(prefix)
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if ok && rule.(string) != KeyPolicyWrite {
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return false
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}
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// Look if any of our children have a deny policy
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deny := false
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p.keyRules.WalkPrefix(prefix, func(path string, rule interface{}) bool {
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// We have a rule to prevent a write in a sub-directory!
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if rule.(string) != KeyPolicyWrite {
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deny = true
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return true
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}
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return false
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})
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// Deny the write if any sub-rules may be violated
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if deny {
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return false
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}
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// If we had a matching rule, done
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if ok {
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return true
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}
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// No matching rule, use the parent.
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return p.parent.KeyWritePrefix(prefix)
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}
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// ServiceRead checks if reading (discovery) of a service is allowed
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func (p *PolicyACL) ServiceRead(name string) bool {
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// Check for an exact rule or catch-all
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_, rule, ok := p.serviceRules.LongestPrefix(name)
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if ok {
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switch rule {
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case ServicePolicyWrite:
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return true
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case ServicePolicyRead:
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return true
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default:
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return false
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}
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}
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// No matching rule, use the parent.
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return p.parent.ServiceRead(name)
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}
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// ServiceWrite checks if writing (registering) a service is allowed
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func (p *PolicyACL) ServiceWrite(name string) bool {
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// Check for an exact rule or catch-all
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_, rule, ok := p.serviceRules.LongestPrefix(name)
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if ok {
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switch rule {
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case ServicePolicyWrite:
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return true
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default:
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return false
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}
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}
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// No matching rule, use the parent.
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return p.parent.ServiceWrite(name)
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}
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// EventRead is used to determine if the policy allows for a
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// specific user event to be read.
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func (p *PolicyACL) EventRead(name string) bool {
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// Longest-prefix match on event names
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if _, rule, ok := p.eventRules.LongestPrefix(name); ok {
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switch rule {
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case EventPolicyRead:
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return true
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case EventPolicyWrite:
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return true
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default:
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return false
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}
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}
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// Nothing matched, use parent
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return p.parent.EventRead(name)
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}
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// EventWrite is used to determine if new events can be created
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// (fired) by the policy.
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func (p *PolicyACL) EventWrite(name string) bool {
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// Longest-prefix match event names
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if _, rule, ok := p.eventRules.LongestPrefix(name); ok {
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return rule == EventPolicyWrite
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}
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// No match, use parent
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return p.parent.EventWrite(name)
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}
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// KeyringRead is used to determine if the keyring can be
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// read by the current ACL token.
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func (p *PolicyACL) KeyringRead() bool {
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switch p.keyringRule {
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case KeyringPolicyRead, KeyringPolicyWrite:
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return true
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case KeyringPolicyDeny:
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return false
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default:
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return p.parent.KeyringRead()
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}
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}
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// KeyringWrite determines if the keyring can be manipulated.
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func (p *PolicyACL) KeyringWrite() bool {
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if p.keyringRule == KeyringPolicyWrite {
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return true
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}
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return p.parent.KeyringWrite()
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}
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// ACLList checks if listing of ACLs is allowed
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func (p *PolicyACL) ACLList() bool {
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return p.parent.ACLList()
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}
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// ACLModify checks if modification of ACLs is allowed
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func (p *PolicyACL) ACLModify() bool {
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return p.parent.ACLModify()
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}
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