493 lines
14 KiB
Go
493 lines
14 KiB
Go
package pairing
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import (
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"fmt"
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"io/ioutil"
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"os"
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"path/filepath"
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"strings"
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"go.uber.org/multierr"
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"go.uber.org/zap"
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"github.com/status-im/status-go/api"
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"github.com/status-im/status-go/multiaccounts"
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"github.com/status-im/status-go/multiaccounts/accounts"
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"github.com/status-im/status-go/params"
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"github.com/status-im/status-go/signal"
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)
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type PayloadReceiver interface {
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PayloadLocker
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// Receive accepts data from an inbound source into the PayloadReceiver's state
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Receive(data []byte) error
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// Received returns a decrypted and parsed payload from an inbound source
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Received() []byte
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}
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type PayloadStorer interface {
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Store() error
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}
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type BasePayloadReceiver struct {
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*PayloadLockPayload
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*PayloadReceived
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encryptor *PayloadEncryptor
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unmarshaller ProtobufUnmarshaller
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storer PayloadStorer
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receiveCallback func()
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}
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func NewBasePayloadReceiver(e *PayloadEncryptor, um ProtobufUnmarshaller, s PayloadStorer, callback func()) *BasePayloadReceiver {
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return &BasePayloadReceiver{
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PayloadLockPayload: &PayloadLockPayload{e},
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PayloadReceived: &PayloadReceived{e},
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encryptor: e,
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unmarshaller: um,
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storer: s,
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receiveCallback: callback,
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}
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}
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// Receive takes a []byte representing raw data, parses and stores the data
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func (bpr *BasePayloadReceiver) Receive(data []byte) error {
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err := bpr.encryptor.decrypt(data)
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if err != nil {
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return err
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}
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err = bpr.unmarshaller.UnmarshalProtobuf(bpr.Received())
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if err != nil {
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return err
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}
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err = bpr.storer.Store()
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if err != nil {
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return err
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}
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if bpr.receiveCallback != nil {
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bpr.receiveCallback()
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}
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return nil
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}
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/*
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|--------------------------------------------------------------------------
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| AccountPayload
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|--------------------------------------------------------------------------
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| AccountPayloadReceiver, AccountPayloadStorer and AccountPayloadMarshaller
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*/
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// NewAccountPayloadReceiver generates a new and initialised AccountPayload flavoured BasePayloadReceiver
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// AccountPayloadReceiver is responsible for the whole receive and store cycle of an AccountPayload
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func NewAccountPayloadReceiver(e *PayloadEncryptor, p *AccountPayload, config *ReceiverConfig, logger *zap.Logger) (*BasePayloadReceiver, error) {
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l := logger.Named("AccountPayloadManager")
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l.Debug("fired", zap.Any("config", config))
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e = e.Renew()
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aps, err := NewAccountPayloadStorer(p, config)
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if err != nil {
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return nil, err
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}
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return NewBasePayloadReceiver(e, NewPairingPayloadMarshaller(p, l), aps,
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func() {
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data := AccountData{Account: p.multiaccount, Password: p.password, ChatKey: p.chatKey}
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signal.SendLocalPairingEvent(Event{Type: EventReceivedAccount, Action: ActionPairingAccount, Data: data})
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},
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), nil
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}
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// AccountPayloadStorer is responsible for parsing, validating and storing AccountPayload data
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type AccountPayloadStorer struct {
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*AccountPayload
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multiaccountsDB *multiaccounts.Database
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keystorePath string
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kdfIterations int
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loggedInKeyUID string
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}
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func NewAccountPayloadStorer(p *AccountPayload, config *ReceiverConfig) (*AccountPayloadStorer, error) {
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ppr := &AccountPayloadStorer{
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AccountPayload: p,
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}
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if config == nil {
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return ppr, nil
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}
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ppr.multiaccountsDB = config.DB
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ppr.kdfIterations = config.KDFIterations
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ppr.keystorePath = config.KeystorePath
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ppr.loggedInKeyUID = config.LoggedInKeyUID
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return ppr, nil
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}
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func (aps *AccountPayloadStorer) Store() error {
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keyUID := aps.multiaccount.KeyUID
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if aps.loggedInKeyUID != "" && aps.loggedInKeyUID != keyUID {
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return ErrLoggedInKeyUIDConflict
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}
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if aps.loggedInKeyUID == keyUID {
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// skip storing keys if user is logged in with the same key
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return nil
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}
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err := validateKeys(aps.keys, aps.password)
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if err != nil {
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return err
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}
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if err = aps.storeKeys(aps.keystorePath); err != nil && err != ErrKeyFileAlreadyExists {
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return err
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}
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// skip storing multiaccount if key already exists
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if err == ErrKeyFileAlreadyExists {
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aps.exist = true
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aps.multiaccount, err = aps.multiaccountsDB.GetAccount(keyUID)
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if 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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return aps.storeMultiAccount()
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}
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func (aps *AccountPayloadStorer) storeKeys(keyStorePath string) error {
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if keyStorePath == "" {
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return fmt.Errorf("keyStorePath can not be empty")
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}
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_, lastDir := filepath.Split(keyStorePath)
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// If lastDir == keystoreDir we presume we need to create the rest of the keystore path
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// else we presume the provided keystore is valid
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if lastDir == keystoreDir {
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if aps.multiaccount == nil || aps.multiaccount.KeyUID == "" {
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return fmt.Errorf("no known Key UID")
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}
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keyStorePath = filepath.Join(keyStorePath, aps.multiaccount.KeyUID)
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_, err := os.Stat(keyStorePath)
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if os.IsNotExist(err) {
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err := os.MkdirAll(keyStorePath, 0700)
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if err != nil {
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return err
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}
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} else if err != nil {
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return err
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} else {
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return ErrKeyFileAlreadyExists
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}
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}
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for name, data := range aps.keys {
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err := ioutil.WriteFile(filepath.Join(keyStorePath, name), data, 0600)
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if err != nil {
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writeErr := fmt.Errorf("failed to write key to path '%s' : %w", filepath.Join(keyStorePath, name), err)
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// If we get an error on any of the key files attempt to revert
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err := emptyDir(keyStorePath)
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if err != nil {
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// If we get an error when trying to empty the dir combine the write error and empty error
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emptyDirErr := fmt.Errorf("failed to revert and cleanup storeKeys : %w", err)
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return multierr.Combine(writeErr, emptyDirErr)
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}
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return writeErr
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}
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}
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return nil
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}
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func (aps *AccountPayloadStorer) storeMultiAccount() error {
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aps.multiaccount.KDFIterations = aps.kdfIterations
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return aps.multiaccountsDB.SaveAccount(*aps.multiaccount)
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}
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/*
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|--------------------------------------------------------------------------
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| RawMessagePayload
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|--------------------------------------------------------------------------
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| RawMessagePayloadReceiver and RawMessageStorer
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*/
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// NewRawMessagePayloadReceiver generates a new and initialised RawMessagesPayload flavoured BasePayloadReceiver
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// RawMessagePayloadReceiver is responsible for the whole receive and store cycle of a RawMessagesPayload
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func NewRawMessagePayloadReceiver(accountPayload *AccountPayload, e *PayloadEncryptor, backend *api.GethStatusBackend, config *ReceiverConfig) *BasePayloadReceiver {
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e = e.Renew()
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payload := NewRawMessagesPayload()
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return NewBasePayloadReceiver(e,
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NewRawMessagePayloadMarshaller(payload),
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NewRawMessageStorer(backend, payload, accountPayload, config), nil)
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}
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type RawMessageStorer struct {
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payload *RawMessagesPayload
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syncRawMessageHandler *SyncRawMessageHandler
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accountPayload *AccountPayload
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nodeConfig *params.NodeConfig
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settingCurrentNetwork string
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deviceType string
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deviceName string
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}
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func NewRawMessageStorer(backend *api.GethStatusBackend, payload *RawMessagesPayload, accountPayload *AccountPayload, config *ReceiverConfig) *RawMessageStorer {
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return &RawMessageStorer{
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syncRawMessageHandler: NewSyncRawMessageHandler(backend),
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payload: payload,
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accountPayload: accountPayload,
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nodeConfig: config.NodeConfig,
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settingCurrentNetwork: config.SettingCurrentNetwork,
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deviceType: config.DeviceType,
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deviceName: config.DeviceName,
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}
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}
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func (r *RawMessageStorer) Store() error {
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if r.accountPayload == nil || r.accountPayload.multiaccount == nil {
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return fmt.Errorf("no known multiaccount when storing raw messages")
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}
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return r.syncRawMessageHandler.HandleRawMessage(r.accountPayload, r.nodeConfig, r.settingCurrentNetwork, r.deviceType, r.deviceName, r.payload)
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}
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/*
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|--------------------------------------------------------------------------
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| InstallationPayload
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|--------------------------------------------------------------------------
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| InstallationPayloadReceiver and InstallationPayloadStorer
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*/
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// NewInstallationPayloadReceiver generates a new and initialised InstallationPayload flavoured BasePayloadReceiver
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// InstallationPayloadReceiver is responsible for the whole receive and store cycle of a RawMessagesPayload specifically
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// for sending / requesting installation data from the Receiver device.
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func NewInstallationPayloadReceiver(e *PayloadEncryptor, backend *api.GethStatusBackend, deviceType string) *BasePayloadReceiver {
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e = e.Renew()
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payload := NewRawMessagesPayload()
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return NewBasePayloadReceiver(e,
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NewRawMessagePayloadMarshaller(payload),
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NewInstallationPayloadStorer(backend, payload, deviceType), nil)
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}
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type InstallationPayloadStorer struct {
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payload *RawMessagesPayload
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syncRawMessageHandler *SyncRawMessageHandler
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deviceType string
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backend *api.GethStatusBackend
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}
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func NewInstallationPayloadStorer(backend *api.GethStatusBackend, payload *RawMessagesPayload, deviceType string) *InstallationPayloadStorer {
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return &InstallationPayloadStorer{
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payload: payload,
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syncRawMessageHandler: NewSyncRawMessageHandler(backend),
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deviceType: deviceType,
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backend: backend,
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}
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}
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func (r *InstallationPayloadStorer) Store() error {
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messenger := r.backend.Messenger()
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if messenger == nil {
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return fmt.Errorf("messenger is nil when invoke InstallationPayloadRepository#Store()")
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}
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err := messenger.SetInstallationDeviceType(r.deviceType)
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if err != nil {
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return err
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}
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installations := GetMessengerInstallationsMap(messenger)
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err = messenger.HandleSyncRawMessages(r.payload.rawMessages)
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if err != nil {
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return err
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}
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if newInstallation := FindNewInstallations(messenger, installations); newInstallation != nil {
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signal.SendLocalPairingEvent(Event{
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Type: EventReceivedInstallation,
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Action: ActionPairingInstallation,
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Data: newInstallation})
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}
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return nil
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}
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/*
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|--------------------------------------------------------------------------
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| PayloadReceivers
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|--------------------------------------------------------------------------
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| Funcs for all PayloadReceivers AccountPayloadReceiver, RawMessagePayloadReceiver and InstallationPayloadMounter
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*/
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func NewPayloadReceivers(logger *zap.Logger, pe *PayloadEncryptor, backend *api.GethStatusBackend, config *ReceiverConfig) (PayloadReceiver, PayloadReceiver, PayloadMounterReceiver, error) {
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// A new SHARED AccountPayload
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p := new(AccountPayload)
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ar, err := NewAccountPayloadReceiver(pe, p, config, logger)
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if err != nil {
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return nil, nil, nil, err
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}
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rmr := NewRawMessagePayloadReceiver(p, pe, backend, config)
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imr := NewInstallationPayloadMounterReceiver(pe, backend, config.DeviceType)
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return ar, rmr, imr, nil
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}
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/*
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|--------------------------------------------------------------------------
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| KeystoreFilesPayload
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|--------------------------------------------------------------------------
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*/
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func NewKeystoreFilesPayloadReceiver(backend *api.GethStatusBackend, e *PayloadEncryptor, config *KeystoreFilesReceiverConfig, logger *zap.Logger) (*BasePayloadReceiver, error) {
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l := logger.Named("KeystoreFilesPayloadManager")
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l.Debug("fired", zap.Any("config", config))
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e = e.Renew()
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// A new SHARED AccountPayload
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p := new(AccountPayload)
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kfps, err := NewKeystoreFilesPayloadStorer(backend, p, config)
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if err != nil {
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return nil, err
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}
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return NewBasePayloadReceiver(e, NewPairingPayloadMarshaller(p, l), kfps,
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func() {
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data := config.KeypairsToImport
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signal.SendLocalPairingEvent(Event{Type: EventReceivedKeystoreFiles, Action: ActionKeystoreFilesTransfer, Data: data})
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},
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), nil
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}
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type KeystoreFilesPayloadStorer struct {
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*AccountPayload
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keystorePath string
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loggedInKeyUID string
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expectedKeypairsToImport []string
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expectedKeystoreFilesToReceive []string
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backend *api.GethStatusBackend
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}
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func NewKeystoreFilesPayloadStorer(backend *api.GethStatusBackend, p *AccountPayload, config *KeystoreFilesReceiverConfig) (*KeystoreFilesPayloadStorer, error) {
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if config == nil {
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return nil, fmt.Errorf("empty keystore files receiver config")
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}
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kfps := &KeystoreFilesPayloadStorer{
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AccountPayload: p,
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keystorePath: config.KeystorePath,
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loggedInKeyUID: config.LoggedInKeyUID,
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expectedKeypairsToImport: config.KeypairsToImport,
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backend: backend,
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}
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accountService := backend.StatusNode().AccountService()
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for _, keyUID := range kfps.expectedKeypairsToImport {
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kp, err := accountService.GetKeypairByKeyUID(keyUID)
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if err != nil {
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return nil, err
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}
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if kp.Type == accounts.KeypairTypeSeed {
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kfps.expectedKeystoreFilesToReceive = append(kfps.expectedKeystoreFilesToReceive, kp.DerivedFrom[2:])
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}
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for _, acc := range kp.Accounts {
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kfps.expectedKeystoreFilesToReceive = append(kfps.expectedKeystoreFilesToReceive, acc.Address.Hex()[2:])
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}
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}
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return kfps, nil
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}
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func (kfps *KeystoreFilesPayloadStorer) Store() error {
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err := validateReceivedKeystoreFiles(kfps.expectedKeystoreFilesToReceive, kfps.keys, kfps.password)
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if err != nil {
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return err
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}
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return kfps.storeKeys(kfps.keystorePath)
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}
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func (kfps *KeystoreFilesPayloadStorer) storeKeys(keyStorePath string) error {
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messenger := kfps.backend.Messenger()
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if messenger == nil {
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return fmt.Errorf("messenger is nil")
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}
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if keyStorePath == "" {
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return fmt.Errorf("keyStorePath can not be empty")
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}
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_, lastDir := filepath.Split(keyStorePath)
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// If lastDir == keystoreDir we presume we need to create the rest of the keystore path
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// else we presume the provided keystore is valid
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if lastDir == keystoreDir {
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keyStorePath = filepath.Join(keyStorePath, kfps.loggedInKeyUID)
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_, err := os.Stat(keyStorePath)
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if os.IsNotExist(err) {
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err := os.MkdirAll(keyStorePath, 0700)
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if err != nil {
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return err
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}
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} else if err != nil {
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return err
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}
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}
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for name, data := range kfps.keys {
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found := false
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for _, key := range kfps.expectedKeystoreFilesToReceive {
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if strings.Contains(name, strings.ToLower(key)) {
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found = true
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}
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}
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if !found {
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continue
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}
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err := ioutil.WriteFile(filepath.Join(keyStorePath, name), data, 0600)
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if err != nil {
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writeErr := fmt.Errorf("failed to write key to path '%s' : %w", filepath.Join(keyStorePath, name), err)
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// If we get an error on any of the key files attempt to revert
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err := emptyDir(keyStorePath)
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if err != nil {
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// If we get an error when trying to empty the dir combine the write error and empty error
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emptyDirErr := fmt.Errorf("failed to revert and cleanup storeKeys : %w", err)
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return multierr.Combine(writeErr, emptyDirErr)
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}
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return writeErr
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}
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}
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for _, keyUID := range kfps.expectedKeypairsToImport {
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err := messenger.MarkKeypairFullyOperable(keyUID)
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if err != nil {
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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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