mirror of
https://github.com/netbirdio/netbird.git
synced 2024-11-07 16:54:16 +01:00
539 lines
15 KiB
Go
539 lines
15 KiB
Go
package server
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import (
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"os"
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"path/filepath"
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"strings"
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"sync"
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"time"
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"github.com/rs/xid"
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log "github.com/sirupsen/logrus"
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"github.com/netbirdio/netbird/management/server/status"
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"github.com/netbirdio/netbird/util"
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)
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// storeFileName Store file name. Stored in the datadir
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const storeFileName = "store.json"
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// FileStore represents an account storage backed by a file persisted to disk
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type FileStore struct {
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Accounts map[string]*Account
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SetupKeyID2AccountID map[string]string `json:"-"`
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PeerKeyID2AccountID map[string]string `json:"-"`
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PeerID2AccountID map[string]string `json:"-"`
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UserID2AccountID map[string]string `json:"-"`
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PrivateDomain2AccountID map[string]string `json:"-"`
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HashedPAT2TokenID map[string]string `json:"-"`
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TokenID2UserID map[string]string `json:"-"`
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InstallationID string
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// mutex to synchronise Store read/write operations
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mux sync.Mutex `json:"-"`
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storeFile string `json:"-"`
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// sync.Mutex indexed by accountID
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accountLocks sync.Map `json:"-"`
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globalAccountLock sync.Mutex `json:"-"`
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}
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type StoredAccount struct{}
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// NewFileStore restores a store from the file located in the datadir
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func NewFileStore(dataDir string) (*FileStore, error) {
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return restore(filepath.Join(dataDir, storeFileName))
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}
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// restore the state of the store from the file.
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// Creates a new empty store file if doesn't exist
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func restore(file string) (*FileStore, error) {
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if _, err := os.Stat(file); os.IsNotExist(err) {
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// create a new FileStore if previously didn't exist (e.g. first run)
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s := &FileStore{
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Accounts: make(map[string]*Account),
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mux: sync.Mutex{},
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globalAccountLock: sync.Mutex{},
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SetupKeyID2AccountID: make(map[string]string),
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PeerKeyID2AccountID: make(map[string]string),
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UserID2AccountID: make(map[string]string),
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PrivateDomain2AccountID: make(map[string]string),
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PeerID2AccountID: make(map[string]string),
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HashedPAT2TokenID: make(map[string]string),
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TokenID2UserID: make(map[string]string),
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storeFile: file,
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}
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err = s.persist(file)
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if err != nil {
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return nil, err
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}
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return s, nil
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}
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read, err := util.ReadJson(file, &FileStore{})
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if err != nil {
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return nil, err
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}
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store := read.(*FileStore)
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store.storeFile = file
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store.SetupKeyID2AccountID = make(map[string]string)
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store.PeerKeyID2AccountID = make(map[string]string)
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store.UserID2AccountID = make(map[string]string)
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store.PrivateDomain2AccountID = make(map[string]string)
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store.PeerID2AccountID = make(map[string]string)
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store.HashedPAT2TokenID = make(map[string]string)
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store.TokenID2UserID = make(map[string]string)
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for accountID, account := range store.Accounts {
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if account.Settings == nil {
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account.Settings = &Settings{
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PeerLoginExpirationEnabled: false,
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PeerLoginExpiration: DefaultPeerLoginExpiration,
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}
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}
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for setupKeyId := range account.SetupKeys {
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store.SetupKeyID2AccountID[strings.ToUpper(setupKeyId)] = accountID
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}
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for _, peer := range account.Peers {
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store.PeerKeyID2AccountID[peer.Key] = accountID
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store.PeerID2AccountID[peer.ID] = accountID
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// reset all peers to status = Disconnected
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if peer.Status != nil && peer.Status.Connected {
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peer.Status.Connected = false
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}
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}
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for _, user := range account.Users {
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store.UserID2AccountID[user.Id] = accountID
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for _, pat := range user.PATs {
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store.TokenID2UserID[pat.ID] = user.Id
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store.HashedPAT2TokenID[pat.HashedToken] = pat.ID
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}
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}
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if account.Domain != "" && account.DomainCategory == PrivateCategory &&
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account.IsDomainPrimaryAccount {
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store.PrivateDomain2AccountID[account.Domain] = accountID
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}
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// if no policies are defined, that means we need to migrate Rules to policies
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if len(account.Policies) == 0 {
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account.Policies = make([]*Policy, 0)
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for _, rule := range account.Rules {
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policy, err := RuleToPolicy(rule)
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if err != nil {
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log.Errorf("unable to migrate rule to policy: %v", err)
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continue
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}
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account.Policies = append(account.Policies, policy)
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}
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}
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// for data migration. Can be removed once most base will be with labels
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existingLabels := account.getPeerDNSLabels()
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if len(existingLabels) != len(account.Peers) {
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addPeerLabelsToAccount(account, existingLabels)
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}
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allGroup, err := account.GetGroupAll()
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if err != nil {
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log.Errorf("unable to find the All group, this should happen only when migrate from a version that didn't support groups. Error: %v", err)
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// if the All group didn't exist we probably don't have routes to update
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continue
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}
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for _, route := range account.Routes {
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if len(route.Groups) == 0 {
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route.Groups = []string{allGroup.ID}
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}
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}
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// migration to Peer.ID from Peer.Key.
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// Old peers that require migration have an empty Peer.ID in the store.json.
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// Generate new ID with xid for these peers.
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// Set the Peer.ID to the newly generated value.
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// Replace all the mentions of Peer.Key as ID (groups and routes).
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// Swap Peer.Key with Peer.ID in the Account.Peers map.
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migrationPeers := make(map[string]*Peer) // key to Peer
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for key, peer := range account.Peers {
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// set LastLogin for the peers that were onboarded before the peer login expiration feature
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if peer.LastLogin.IsZero() {
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peer.LastLogin = time.Now()
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}
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if peer.ID != "" {
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continue
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}
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id := xid.New().String()
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peer.ID = id
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migrationPeers[key] = peer
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}
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if len(migrationPeers) > 0 {
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// swap Peer.Key with Peer.ID in the Account.Peers map.
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for key, peer := range migrationPeers {
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delete(account.Peers, key)
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account.Peers[peer.ID] = peer
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store.PeerID2AccountID[peer.ID] = accountID
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}
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// detect groups that have Peer.Key as a reference and replace it with ID.
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for _, group := range account.Groups {
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for i, peer := range group.Peers {
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if p, ok := migrationPeers[peer]; ok {
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group.Peers[i] = p.ID
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}
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}
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}
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// detect routes that have Peer.Key as a reference and replace it with ID.
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for _, route := range account.Routes {
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if peer, ok := migrationPeers[route.Peer]; ok {
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route.Peer = peer.ID
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}
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}
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}
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}
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// we need this persist to apply changes we made to account.Peers (we set them to Disconnected)
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err = store.persist(store.storeFile)
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if err != nil {
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return nil, err
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}
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return store, nil
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}
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// persist account data to a file
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// It is recommended to call it with locking FileStore.mux
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func (s *FileStore) persist(file string) error {
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return util.WriteJson(file, s)
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}
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// AcquireGlobalLock acquires global lock across all the accounts and returns a function that releases the lock
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func (s *FileStore) AcquireGlobalLock() (unlock func()) {
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log.Debugf("acquiring global lock")
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start := time.Now()
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s.globalAccountLock.Lock()
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unlock = func() {
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s.globalAccountLock.Unlock()
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log.Debugf("released global lock in %v", time.Since(start))
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}
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return unlock
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}
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// AcquireAccountLock acquires account lock and returns a function that releases the lock
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func (s *FileStore) AcquireAccountLock(accountID string) (unlock func()) {
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log.Debugf("acquiring lock for account %s", accountID)
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start := time.Now()
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value, _ := s.accountLocks.LoadOrStore(accountID, &sync.Mutex{})
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mtx := value.(*sync.Mutex)
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mtx.Lock()
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unlock = func() {
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mtx.Unlock()
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log.Debugf("released lock for account %s in %v", accountID, time.Since(start))
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}
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return unlock
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}
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func (s *FileStore) SaveAccount(account *Account) error {
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s.mux.Lock()
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defer s.mux.Unlock()
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accountCopy := account.Copy()
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s.Accounts[accountCopy.Id] = accountCopy
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// todo check that account.Id and keyId are not exist already
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// because if keyId exists for other accounts this can be bad
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for keyID := range accountCopy.SetupKeys {
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s.SetupKeyID2AccountID[strings.ToUpper(keyID)] = accountCopy.Id
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}
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// enforce peer to account index and delete peer to route indexes for rebuild
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for _, peer := range accountCopy.Peers {
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s.PeerKeyID2AccountID[peer.Key] = accountCopy.Id
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s.PeerID2AccountID[peer.ID] = accountCopy.Id
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}
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for _, user := range accountCopy.Users {
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s.UserID2AccountID[user.Id] = accountCopy.Id
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for _, pat := range user.PATs {
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s.TokenID2UserID[pat.ID] = user.Id
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s.HashedPAT2TokenID[pat.HashedToken] = pat.ID
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}
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}
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if accountCopy.DomainCategory == PrivateCategory && accountCopy.IsDomainPrimaryAccount {
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s.PrivateDomain2AccountID[accountCopy.Domain] = accountCopy.Id
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}
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if accountCopy.Rules == nil {
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accountCopy.Rules = make(map[string]*Rule)
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}
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for _, policy := range accountCopy.Policies {
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for _, rule := range policy.Rules {
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accountCopy.Rules[rule.ID] = rule.ToRule()
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}
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}
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return s.persist(s.storeFile)
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}
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// DeleteHashedPAT2TokenIDIndex removes an entry from the indexing map HashedPAT2TokenID
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func (s *FileStore) DeleteHashedPAT2TokenIDIndex(hashedToken string) error {
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s.mux.Lock()
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defer s.mux.Unlock()
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delete(s.HashedPAT2TokenID, hashedToken)
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return s.persist(s.storeFile)
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}
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// DeleteTokenID2UserIDIndex removes an entry from the indexing map TokenID2UserID
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func (s *FileStore) DeleteTokenID2UserIDIndex(tokenID string) error {
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s.mux.Lock()
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defer s.mux.Unlock()
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delete(s.TokenID2UserID, tokenID)
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return s.persist(s.storeFile)
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}
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// GetAccountByPrivateDomain returns account by private domain
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func (s *FileStore) GetAccountByPrivateDomain(domain string) (*Account, error) {
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s.mux.Lock()
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defer s.mux.Unlock()
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accountID, ok := s.PrivateDomain2AccountID[strings.ToLower(domain)]
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if !ok {
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return nil, status.Errorf(status.NotFound, "account not found: provided domain is not registered or is not private")
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}
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account, err := s.getAccount(accountID)
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if err != nil {
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return nil, err
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}
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return account.Copy(), nil
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}
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// GetAccountBySetupKey returns account by setup key id
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func (s *FileStore) GetAccountBySetupKey(setupKey string) (*Account, error) {
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s.mux.Lock()
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defer s.mux.Unlock()
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accountID, ok := s.SetupKeyID2AccountID[strings.ToUpper(setupKey)]
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if !ok {
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return nil, status.Errorf(status.NotFound, "account not found: provided setup key doesn't exists")
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}
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account, err := s.getAccount(accountID)
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if err != nil {
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return nil, err
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}
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return account.Copy(), nil
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}
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// GetTokenIDByHashedToken returns the id of a personal access token by its hashed secret
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func (s *FileStore) GetTokenIDByHashedToken(token string) (string, error) {
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s.mux.Lock()
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defer s.mux.Unlock()
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tokenID, ok := s.HashedPAT2TokenID[token]
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if !ok {
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return "", status.Errorf(status.NotFound, "tokenID not found: provided token doesn't exists")
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}
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return tokenID, nil
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}
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// GetUserByTokenID returns a User object a tokenID belongs to
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func (s *FileStore) GetUserByTokenID(tokenID string) (*User, error) {
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s.mux.Lock()
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defer s.mux.Unlock()
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userID, ok := s.TokenID2UserID[tokenID]
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if !ok {
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return nil, status.Errorf(status.NotFound, "user not found: provided tokenID doesn't exists")
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}
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accountID, ok := s.UserID2AccountID[userID]
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if !ok {
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return nil, status.Errorf(status.NotFound, "accountID not found: provided userID doesn't exists")
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}
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account, err := s.getAccount(accountID)
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if err != nil {
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return nil, err
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}
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return account.Users[userID].Copy(), nil
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}
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// GetAllAccounts returns all accounts
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func (s *FileStore) GetAllAccounts() (all []*Account) {
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s.mux.Lock()
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defer s.mux.Unlock()
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for _, a := range s.Accounts {
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all = append(all, a.Copy())
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}
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return all
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}
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// getAccount returns a reference to the Account. Should not return a copy.
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func (s *FileStore) getAccount(accountID string) (*Account, error) {
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account, ok := s.Accounts[accountID]
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if !ok {
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return nil, status.Errorf(status.NotFound, "account not found")
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}
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return account, nil
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}
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// GetAccount returns an account for ID
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func (s *FileStore) GetAccount(accountID string) (*Account, error) {
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s.mux.Lock()
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defer s.mux.Unlock()
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account, err := s.getAccount(accountID)
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if err != nil {
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return nil, err
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}
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return account.Copy(), nil
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}
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// GetAccountByUser returns a user account
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func (s *FileStore) GetAccountByUser(userID string) (*Account, error) {
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s.mux.Lock()
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defer s.mux.Unlock()
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accountID, ok := s.UserID2AccountID[userID]
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if !ok {
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return nil, status.Errorf(status.NotFound, "account not found")
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}
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account, err := s.getAccount(accountID)
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if err != nil {
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return nil, err
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}
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return account.Copy(), nil
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}
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// GetAccountByPeerID returns an account for a given peer ID
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func (s *FileStore) GetAccountByPeerID(peerID string) (*Account, error) {
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s.mux.Lock()
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defer s.mux.Unlock()
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accountID, ok := s.PeerID2AccountID[peerID]
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if !ok {
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return nil, status.Errorf(status.NotFound, "provided peer ID doesn't exists %s", peerID)
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}
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account, err := s.getAccount(accountID)
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if err != nil {
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return nil, err
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}
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// this protection is needed because when we delete a peer, we don't really remove index peerID -> accountID.
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// check Account.Peers for a match
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if _, ok := account.Peers[peerID]; !ok {
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delete(s.PeerID2AccountID, peerID)
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log.Warnf("removed stale peerID %s to accountID %s index", peerID, accountID)
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return nil, status.Errorf(status.NotFound, "provided peer doesn't exists %s", peerID)
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}
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return account.Copy(), nil
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}
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// GetAccountByPeerPubKey returns an account for a given peer WireGuard public key
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func (s *FileStore) GetAccountByPeerPubKey(peerKey string) (*Account, error) {
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s.mux.Lock()
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defer s.mux.Unlock()
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accountID, ok := s.PeerKeyID2AccountID[peerKey]
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if !ok {
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return nil, status.Errorf(status.NotFound, "provided peer key doesn't exists %s", peerKey)
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}
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account, err := s.getAccount(accountID)
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if err != nil {
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return nil, err
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}
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// this protection is needed because when we delete a peer, we don't really remove index peerKey -> accountID.
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// check Account.Peers for a match
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stale := true
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for _, peer := range account.Peers {
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if peer.Key == peerKey {
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stale = false
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break
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}
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}
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if stale {
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delete(s.PeerKeyID2AccountID, peerKey)
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log.Warnf("removed stale peerKey %s to accountID %s index", peerKey, accountID)
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return nil, status.Errorf(status.NotFound, "provided peer doesn't exists %s", peerKey)
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}
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return account.Copy(), nil
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}
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// GetInstallationID returns the installation ID from the store
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func (s *FileStore) GetInstallationID() string {
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return s.InstallationID
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}
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// SaveInstallationID saves the installation ID
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func (s *FileStore) SaveInstallationID(ID string) error {
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s.mux.Lock()
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defer s.mux.Unlock()
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s.InstallationID = ID
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return s.persist(s.storeFile)
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}
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// SavePeerStatus stores the PeerStatus in memory. It doesn't attempt to persist data to speed up things.
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// PeerStatus will be saved eventually when some other changes occur.
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func (s *FileStore) SavePeerStatus(accountID, peerID string, peerStatus PeerStatus) error {
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s.mux.Lock()
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defer s.mux.Unlock()
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account, err := s.getAccount(accountID)
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if err != nil {
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return err
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}
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peer := account.Peers[peerID]
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if peer == nil {
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return status.Errorf(status.NotFound, "peer %s not found", peerID)
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}
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peer.Status = &peerStatus
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return nil
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}
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// Close the FileStore persisting data to disk
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func (s *FileStore) Close() error {
|
|
s.mux.Lock()
|
|
defer s.mux.Unlock()
|
|
|
|
log.Infof("closing FileStore")
|
|
|
|
return s.persist(s.storeFile)
|
|
}
|