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https://github.com/go-gitea/gitea
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8ea1d32bea
* update github.com/caddyserver/certmagic v0.12.0 -> v0.13.0 * migrate
288 lines
9.0 KiB
Go
Vendored
288 lines
9.0 KiB
Go
Vendored
// Copyright 2015 Matthew Holt
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package certmagic
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import (
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"context"
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"path"
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"regexp"
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"strings"
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"sync"
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"time"
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"go.uber.org/zap"
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)
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// Storage is a type that implements a key-value store.
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// Keys are prefix-based, with forward slash '/' as separators
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// and without a leading slash.
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//
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// Processes running in a cluster will wish to use the
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// same Storage value (its implementation and configuration)
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// in order to share certificates and other TLS resources
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// with the cluster.
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//
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// The Load, Delete, List, and Stat methods should return
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// ErrNotExist if the key does not exist.
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//
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// Implementations of Storage must be safe for concurrent use.
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type Storage interface {
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// Locker provides atomic synchronization
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// operations, making Storage safe to share.
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Locker
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// Store puts value at key.
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Store(key string, value []byte) error
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// Load retrieves the value at key.
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Load(key string) ([]byte, error)
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// Delete deletes key. An error should be
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// returned only if the key still exists
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// when the method returns.
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Delete(key string) error
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// Exists returns true if the key exists
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// and there was no error checking.
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Exists(key string) bool
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// List returns all keys that match prefix.
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// If recursive is true, non-terminal keys
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// will be enumerated (i.e. "directories"
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// should be walked); otherwise, only keys
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// prefixed exactly by prefix will be listed.
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List(prefix string, recursive bool) ([]string, error)
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// Stat returns information about key.
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Stat(key string) (KeyInfo, error)
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}
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// Locker facilitates synchronization of certificate tasks across
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// machines and networks.
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type Locker interface {
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// Lock acquires the lock for key, blocking until the lock
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// can be obtained or an error is returned. Note that, even
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// after acquiring a lock, an idempotent operation may have
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// already been performed by another process that acquired
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// the lock before - so always check to make sure idempotent
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// operations still need to be performed after acquiring the
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// lock.
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//
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// The actual implementation of obtaining of a lock must be
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// an atomic operation so that multiple Lock calls at the
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// same time always results in only one caller receiving the
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// lock at any given time.
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//
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// To prevent deadlocks, all implementations (where this concern
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// is relevant) should put a reasonable expiration on the lock in
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// case Unlock is unable to be called due to some sort of network
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// failure or system crash. Additionally, implementations should
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// honor context cancellation as much as possible (in case the
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// caller wishes to give up and free resources before the lock
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// can be obtained).
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Lock(ctx context.Context, key string) error
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// Unlock releases the lock for key. This method must ONLY be
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// called after a successful call to Lock, and only after the
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// critical section is finished, even if it errored or timed
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// out. Unlock cleans up any resources allocated during Lock.
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Unlock(key string) error
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}
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// KeyInfo holds information about a key in storage.
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// Key and IsTerminal are required; Modified and Size
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// are optional if the storage implementation is not
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// able to get that information. Setting them will
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// make certain operations more consistent or
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// predictable, but it is not crucial to basic
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// functionality.
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type KeyInfo struct {
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Key string
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Modified time.Time
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Size int64
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IsTerminal bool // false for keys that only contain other keys (like directories)
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}
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// storeTx stores all the values or none at all.
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func storeTx(s Storage, all []keyValue) error {
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for i, kv := range all {
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err := s.Store(kv.key, kv.value)
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if err != nil {
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for j := i - 1; j >= 0; j-- {
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s.Delete(all[j].key)
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}
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return err
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}
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}
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return nil
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}
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// keyValue pairs a key and a value.
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type keyValue struct {
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key string
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value []byte
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}
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// KeyBuilder provides a namespace for methods that
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// build keys and key prefixes, for addressing items
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// in a Storage implementation.
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type KeyBuilder struct{}
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// CertsPrefix returns the storage key prefix for
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// the given certificate issuer.
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func (keys KeyBuilder) CertsPrefix(issuerKey string) string {
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return path.Join(prefixCerts, keys.Safe(issuerKey))
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}
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// CertsSitePrefix returns a key prefix for items associated with
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// the site given by domain using the given issuer key.
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func (keys KeyBuilder) CertsSitePrefix(issuerKey, domain string) string {
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return path.Join(keys.CertsPrefix(issuerKey), keys.Safe(domain))
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}
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// SiteCert returns the path to the certificate file for domain
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// that is associated with the issuer with the given issuerKey.
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func (keys KeyBuilder) SiteCert(issuerKey, domain string) string {
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safeDomain := keys.Safe(domain)
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return path.Join(keys.CertsSitePrefix(issuerKey, domain), safeDomain+".crt")
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}
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// SitePrivateKey returns the path to the private key file for domain
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// that is associated with the certificate from the given issuer with
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// the given issuerKey.
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func (keys KeyBuilder) SitePrivateKey(issuerKey, domain string) string {
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safeDomain := keys.Safe(domain)
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return path.Join(keys.CertsSitePrefix(issuerKey, domain), safeDomain+".key")
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}
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// SiteMeta returns the path to the metadata file for domain that
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// is associated with the certificate from the given issuer with
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// the given issuerKey.
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func (keys KeyBuilder) SiteMeta(issuerKey, domain string) string {
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safeDomain := keys.Safe(domain)
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return path.Join(keys.CertsSitePrefix(issuerKey, domain), safeDomain+".json")
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}
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// OCSPStaple returns a key for the OCSP staple associated
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// with the given certificate. If you have the PEM bundle
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// handy, pass that in to save an extra encoding step.
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func (keys KeyBuilder) OCSPStaple(cert *Certificate, pemBundle []byte) string {
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var ocspFileName string
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if len(cert.Names) > 0 {
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firstName := keys.Safe(cert.Names[0])
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ocspFileName = firstName + "-"
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}
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ocspFileName += fastHash(pemBundle)
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return path.Join(prefixOCSP, ocspFileName)
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}
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// Safe standardizes and sanitizes str for use as
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// a single component of a storage key. This method
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// is idempotent.
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func (keys KeyBuilder) Safe(str string) string {
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str = strings.ToLower(str)
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str = strings.TrimSpace(str)
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// replace a few specific characters
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repl := strings.NewReplacer(
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" ", "_",
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"+", "_plus_",
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"*", "wildcard_",
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":", "-",
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"..", "", // prevent directory traversal (regex allows single dots)
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)
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str = repl.Replace(str)
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// finally remove all non-word characters
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return safeKeyRE.ReplaceAllLiteralString(str, "")
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}
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// CleanUpOwnLocks immediately cleans up all
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// current locks obtained by this process. Since
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// this does not cancel the operations that
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// the locks are synchronizing, this should be
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// called only immediately before process exit.
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// Errors are only reported if a logger is given.
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func CleanUpOwnLocks(logger *zap.Logger) {
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locksMu.Lock()
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defer locksMu.Unlock()
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for lockKey, storage := range locks {
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err := storage.Unlock(lockKey)
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if err == nil {
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delete(locks, lockKey)
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} else if logger != nil {
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logger.Error("unable to clean up lock in storage backend",
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zap.Any("storage", storage),
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zap.String("lock_key", lockKey),
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zap.Error(err),
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)
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}
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}
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}
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func acquireLock(ctx context.Context, storage Storage, lockKey string) error {
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err := storage.Lock(ctx, lockKey)
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if err == nil {
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locksMu.Lock()
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locks[lockKey] = storage
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locksMu.Unlock()
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}
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return err
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}
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func releaseLock(storage Storage, lockKey string) error {
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err := storage.Unlock(lockKey)
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if err == nil {
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locksMu.Lock()
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delete(locks, lockKey)
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locksMu.Unlock()
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}
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return err
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}
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// locks stores a reference to all the current
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// locks obtained by this process.
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var locks = make(map[string]Storage)
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var locksMu sync.Mutex
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// StorageKeys provides methods for accessing
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// keys and key prefixes for items in a Storage.
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// Typically, you will not need to use this
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// because accessing storage is abstracted away
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// for most cases. Only use this if you need to
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// directly access TLS assets in your application.
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var StorageKeys KeyBuilder
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const (
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prefixCerts = "certificates"
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prefixOCSP = "ocsp"
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)
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// safeKeyRE matches any undesirable characters in storage keys.
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// Note that this allows dots, so you'll have to strip ".." manually.
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var safeKeyRE = regexp.MustCompile(`[^\w@.-]`)
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// ErrNotExist is returned by Storage implementations when
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// a resource is not found. It is similar to os.IsNotExist
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// except this is a type, not a variable.
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// TODO: use new Go error wrapping conventions
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type ErrNotExist interface {
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error
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}
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// defaultFileStorage is a convenient, default storage
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// implementation using the local file system.
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var defaultFileStorage = &FileStorage{Path: dataDir()}
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