513 lines
13 KiB
Go
513 lines
13 KiB
Go
package vault
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import (
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"context"
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"fmt"
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"strings"
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"sync"
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"time"
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"github.com/armon/go-metrics"
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"github.com/hashicorp/errwrap"
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log "github.com/hashicorp/go-hclog"
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"github.com/hashicorp/golang-lru"
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"github.com/hashicorp/vault/helper/consts"
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"github.com/hashicorp/vault/helper/strutil"
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"github.com/hashicorp/vault/logical"
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)
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const (
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// policySubPath is the sub-path used for the policy store
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// view. This is nested under the system view.
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policyACLSubPath = "policy/"
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// policyCacheSize is the number of policies that are kept cached
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policyCacheSize = 1024
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// defaultPolicyName is the name of the default policy
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defaultPolicyName = "default"
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// responseWrappingPolicyName is the name of the fixed policy
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responseWrappingPolicyName = "response-wrapping"
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// controlGroupPolicyName is the name of the fixed policy for control group
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// tokens
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controlGroupPolicyName = "control-group"
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// responseWrappingPolicy is the policy that ensures cubbyhole response
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// wrapping can always succeed.
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responseWrappingPolicy = `
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path "cubbyhole/response" {
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capabilities = ["create", "read"]
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}
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path "sys/wrapping/unwrap" {
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capabilities = ["update"]
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}
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`
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// defaultPolicy is the "default" policy
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defaultPolicy = `
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# Allow tokens to look up their own properties
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path "auth/token/lookup-self" {
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capabilities = ["read"]
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}
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# Allow tokens to renew themselves
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path "auth/token/renew-self" {
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capabilities = ["update"]
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}
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# Allow tokens to revoke themselves
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path "auth/token/revoke-self" {
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capabilities = ["update"]
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}
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# Allow a token to look up its own capabilities on a path
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path "sys/capabilities-self" {
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capabilities = ["update"]
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}
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# Allow a token to renew a lease via lease_id in the request body; old path for
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# old clients, new path for newer
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path "sys/renew" {
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capabilities = ["update"]
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}
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path "sys/leases/renew" {
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capabilities = ["update"]
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}
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# Allow looking up lease properties. This requires knowing the lease ID ahead
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# of time and does not divulge any sensitive information.
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path "sys/leases/lookup" {
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capabilities = ["update"]
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}
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# Allow a token to manage its own cubbyhole
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path "cubbyhole/*" {
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capabilities = ["create", "read", "update", "delete", "list"]
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}
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# Allow a token to wrap arbitrary values in a response-wrapping token
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path "sys/wrapping/wrap" {
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capabilities = ["update"]
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}
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# Allow a token to look up the creation time and TTL of a given
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# response-wrapping token
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path "sys/wrapping/lookup" {
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capabilities = ["update"]
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}
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# Allow a token to unwrap a response-wrapping token. This is a convenience to
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# avoid client token swapping since this is also part of the response wrapping
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# policy.
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path "sys/wrapping/unwrap" {
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capabilities = ["update"]
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}
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# Allow general purpose tools
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path "sys/tools/hash" {
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capabilities = ["update"]
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}
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path "sys/tools/hash/*" {
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capabilities = ["update"]
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}
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path "sys/tools/random" {
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capabilities = ["update"]
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}
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path "sys/tools/random/*" {
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capabilities = ["update"]
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}
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`
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)
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var (
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immutablePolicies = []string{
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"root",
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responseWrappingPolicyName,
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controlGroupPolicyName,
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}
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nonAssignablePolicies = []string{
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responseWrappingPolicyName,
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controlGroupPolicyName,
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}
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)
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// PolicyStore is used to provide durable storage of policy, and to
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// manage ACLs associated with them.
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type PolicyStore struct {
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core *Core
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aclView *BarrierView
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tokenPoliciesLRU *lru.TwoQueueCache
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// This is used to ensure that writes to the store (acl/rgp) or to the egp
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// path tree don't happen concurrently. We are okay reading stale data so
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// long as there aren't concurrent writes.
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modifyLock *sync.RWMutex
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// Stores whether a token policy is ACL or RGP
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policyTypeMap sync.Map
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// logger is the server logger copied over from core
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logger log.Logger
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}
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// PolicyEntry is used to store a policy by name
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type PolicyEntry struct {
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Version int
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Raw string
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Type PolicyType
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}
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// NewPolicyStore creates a new PolicyStore that is backed
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// using a given view. It used used to durable store and manage named policy.
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func NewPolicyStore(ctx context.Context, core *Core, baseView *BarrierView, system logical.SystemView, logger log.Logger) *PolicyStore {
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ps := &PolicyStore{
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aclView: baseView.SubView(policyACLSubPath),
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modifyLock: new(sync.RWMutex),
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logger: logger,
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core: core,
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}
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if !system.CachingDisabled() {
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cache, _ := lru.New2Q(policyCacheSize)
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ps.tokenPoliciesLRU = cache
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}
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keys, err := logical.CollectKeys(ctx, ps.aclView)
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if err != nil {
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ps.logger.Error("error collecting acl policy keys", "error", err)
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return nil
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}
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for _, key := range keys {
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ps.policyTypeMap.Store(ps.sanitizeName(key), PolicyTypeACL)
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}
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// Special-case root; doesn't exist on disk but does need to be found
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ps.policyTypeMap.Store("root", PolicyTypeACL)
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return ps
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}
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// setupPolicyStore is used to initialize the policy store
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// when the vault is being unsealed.
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func (c *Core) setupPolicyStore(ctx context.Context) error {
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// Create the policy store
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sysView := &dynamicSystemView{core: c}
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c.policyStore = NewPolicyStore(ctx, c, c.systemBarrierView, sysView, c.logger.ResetNamed("policy"))
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if c.ReplicationState().HasState(consts.ReplicationPerformanceSecondary) {
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// Policies will sync from the primary
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return nil
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}
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// Ensure that the default policy exists, and if not, create it
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if err := c.policyStore.loadACLPolicy(ctx, defaultPolicyName, defaultPolicy); err != nil {
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return err
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}
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// Ensure that the response wrapping policy exists
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if err := c.policyStore.loadACLPolicy(ctx, responseWrappingPolicyName, responseWrappingPolicy); err != nil {
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return err
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}
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return nil
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}
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// teardownPolicyStore is used to reverse setupPolicyStore
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// when the vault is being sealed.
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func (c *Core) teardownPolicyStore() error {
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c.policyStore = nil
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return nil
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}
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func (ps *PolicyStore) invalidate(ctx context.Context, name string, policyType PolicyType) {
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// This may come with a prefixed "/" due to joining the file path
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saneName := strings.TrimPrefix(name, "/")
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// We don't lock before removing from the LRU here because the worst that
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// can happen is we load again if something since added it
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switch policyType {
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case PolicyTypeACL:
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if ps.tokenPoliciesLRU != nil {
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ps.tokenPoliciesLRU.Remove(saneName)
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}
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default:
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// Can't do anything
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return
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}
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// Force a reload
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_, err := ps.GetPolicy(ctx, name, policyType)
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if err != nil {
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ps.logger.Error("error fetching policy after invalidation", "name", saneName)
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}
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}
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// SetPolicy is used to create or update the given policy
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func (ps *PolicyStore) SetPolicy(ctx context.Context, p *Policy) error {
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defer metrics.MeasureSince([]string{"policy", "set_policy"}, time.Now())
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if p == nil {
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return fmt.Errorf("nil policy passed in for storage")
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}
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if p.Name == "" {
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return fmt.Errorf("policy name missing")
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}
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// Policies are normalized to lower-case
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p.Name = ps.sanitizeName(p.Name)
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if strutil.StrListContains(immutablePolicies, p.Name) {
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return fmt.Errorf("cannot update %q policy", p.Name)
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}
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return ps.setPolicyInternal(ctx, p)
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}
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func (ps *PolicyStore) setPolicyInternal(ctx context.Context, p *Policy) error {
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ps.modifyLock.Lock()
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defer ps.modifyLock.Unlock()
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// Create the entry
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entry, err := logical.StorageEntryJSON(p.Name, &PolicyEntry{
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Version: 2,
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Raw: p.Raw,
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Type: p.Type,
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})
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if err != nil {
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return errwrap.Wrapf("failed to create entry: {{err}}", err)
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}
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switch p.Type {
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case PolicyTypeACL:
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if err := ps.aclView.Put(ctx, entry); err != nil {
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return errwrap.Wrapf("failed to persist policy: {{err}}", err)
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}
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ps.policyTypeMap.Store(p.Name, PolicyTypeACL)
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if ps.tokenPoliciesLRU != nil {
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// Update the LRU cache
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ps.tokenPoliciesLRU.Add(p.Name, p)
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}
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default:
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return fmt.Errorf("unknown policy type, cannot set")
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}
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return nil
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}
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// GetPolicy is used to fetch the named policy
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func (ps *PolicyStore) GetPolicy(ctx context.Context, name string, policyType PolicyType) (*Policy, error) {
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defer metrics.MeasureSince([]string{"policy", "get_policy"}, time.Now())
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// Policies are normalized to lower-case
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name = ps.sanitizeName(name)
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var cache *lru.TwoQueueCache
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var view *BarrierView
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switch policyType {
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case PolicyTypeACL:
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cache = ps.tokenPoliciesLRU
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view = ps.aclView
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case PolicyTypeToken:
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cache = ps.tokenPoliciesLRU
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val, ok := ps.policyTypeMap.Load(name)
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if !ok {
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// Doesn't exist
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return nil, nil
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}
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policyType = val.(PolicyType)
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switch policyType {
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case PolicyTypeACL:
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view = ps.aclView
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default:
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return nil, fmt.Errorf("invalid type of policy in type map: %q", policyType)
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}
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}
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if cache != nil {
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// Check for cached policy
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if raw, ok := cache.Get(name); ok {
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return raw.(*Policy), nil
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}
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}
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// Special case the root policy
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if policyType == PolicyTypeACL && name == "root" {
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p := &Policy{Name: "root"}
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if cache != nil {
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cache.Add(p.Name, p)
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}
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return p, nil
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}
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ps.modifyLock.Lock()
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defer ps.modifyLock.Unlock()
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// See if anything has added it since we got the lock
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if cache != nil {
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if raw, ok := cache.Get(name); ok {
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return raw.(*Policy), nil
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}
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}
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out, err := view.Get(ctx, name)
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if err != nil {
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return nil, errwrap.Wrapf("failed to read policy: {{err}}", err)
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}
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if out == nil {
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return nil, nil
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}
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policyEntry := new(PolicyEntry)
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policy := new(Policy)
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err = out.DecodeJSON(policyEntry)
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if err != nil {
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return nil, errwrap.Wrapf("failed to parse policy: {{err}}", err)
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}
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// Set these up here so that they're available for loading into
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// Sentinel
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policy.Name = name
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policy.Raw = policyEntry.Raw
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policy.Type = policyEntry.Type
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switch policyEntry.Type {
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case PolicyTypeACL:
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// Parse normally
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p, err := ParseACLPolicy(policyEntry.Raw)
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if err != nil {
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return nil, errwrap.Wrapf("failed to parse policy: {{err}}", err)
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}
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policy.Paths = p.Paths
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// Reset this in case they set the name in the policy itself
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policy.Name = name
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ps.policyTypeMap.Store(name, PolicyTypeACL)
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default:
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return nil, fmt.Errorf("unknown policy type %q", policyEntry.Type.String())
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}
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if cache != nil {
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// Update the LRU cache
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cache.Add(name, policy)
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}
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return policy, nil
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}
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// ListPolicies is used to list the available policies
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func (ps *PolicyStore) ListPolicies(ctx context.Context, policyType PolicyType) ([]string, error) {
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defer metrics.MeasureSince([]string{"policy", "list_policies"}, time.Now())
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// Scan the view, since the policy names are the same as the
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// key names.
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var keys []string
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var err error
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switch policyType {
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case PolicyTypeACL:
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keys, err = logical.CollectKeys(ctx, ps.aclView)
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default:
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return nil, fmt.Errorf("unknown policy type %q", policyType)
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}
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// We only have non-assignable ACL policies at the moment
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for _, nonAssignable := range nonAssignablePolicies {
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deleteIndex := -1
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//Find indices of non-assignable policies in keys
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for index, key := range keys {
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if key == nonAssignable {
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// Delete collection outside the loop
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deleteIndex = index
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break
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}
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}
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// Remove non-assignable policies when found
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if deleteIndex != -1 {
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keys = append(keys[:deleteIndex], keys[deleteIndex+1:]...)
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}
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}
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return keys, err
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}
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// DeletePolicy is used to delete the named policy
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func (ps *PolicyStore) DeletePolicy(ctx context.Context, name string, policyType PolicyType) error {
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defer metrics.MeasureSince([]string{"policy", "delete_policy"}, time.Now())
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ps.modifyLock.Lock()
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defer ps.modifyLock.Unlock()
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// Policies are normalized to lower-case
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name = ps.sanitizeName(name)
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switch policyType {
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case PolicyTypeACL:
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if strutil.StrListContains(immutablePolicies, name) {
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return fmt.Errorf("cannot delete %q policy", name)
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}
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if name == "default" {
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return fmt.Errorf("cannot delete default policy")
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}
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err := ps.aclView.Delete(ctx, name)
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if err != nil {
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return errwrap.Wrapf("failed to delete policy: {{err}}", err)
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}
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if ps.tokenPoliciesLRU != nil {
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// Clear the cache
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ps.tokenPoliciesLRU.Remove(name)
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}
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ps.policyTypeMap.Delete(name)
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}
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return nil
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}
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// ACL is used to return an ACL which is built using the
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// named policies.
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func (ps *PolicyStore) ACL(ctx context.Context, names ...string) (*ACL, error) {
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// Fetch the policies
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var policies []*Policy
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for _, name := range names {
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p, err := ps.GetPolicy(ctx, name, PolicyTypeToken)
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if err != nil {
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return nil, errwrap.Wrapf("failed to get policy: {{err}}", err)
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}
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policies = append(policies, p)
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}
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// Construct the ACL
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acl, err := NewACL(policies)
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if err != nil {
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return nil, errwrap.Wrapf("failed to construct ACL: {{err}}", err)
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}
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return acl, nil
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}
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func (ps *PolicyStore) loadACLPolicy(ctx context.Context, policyName, policyText string) error {
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// Check if the policy already exists
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policy, err := ps.GetPolicy(ctx, policyName, PolicyTypeACL)
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if err != nil {
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return errwrap.Wrapf(fmt.Sprintf("error fetching %s policy from store: {{err}}", policyName), err)
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}
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if policy != nil {
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if !strutil.StrListContains(immutablePolicies, policyName) || policyText == policy.Raw {
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return nil
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}
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}
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policy, err = ParseACLPolicy(policyText)
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if err != nil {
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return errwrap.Wrapf(fmt.Sprintf("error parsing %s policy: {{err}}", policyName), err)
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}
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if policy == nil {
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return fmt.Errorf("parsing %q policy resulted in nil policy", policyName)
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}
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policy.Name = policyName
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policy.Type = PolicyTypeACL
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return ps.setPolicyInternal(ctx, policy)
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}
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func (ps *PolicyStore) sanitizeName(name string) string {
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return strings.ToLower(strings.TrimSpace(name))
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}
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