status-go/protocol/push_notification_server/server.go

341 lines
10 KiB
Go

package push_notification_server
import (
"context"
"crypto/ecdsa"
"encoding/hex"
"errors"
"github.com/golang/protobuf/proto"
"github.com/google/uuid"
"github.com/status-im/status-go/eth-node/crypto/ecies"
"github.com/status-im/status-go/protocol/common"
"github.com/status-im/status-go/protocol/protobuf"
"go.uber.org/zap"
)
const encryptedPayloadKeyLength = 16
type Config struct {
// Identity is our identity key
Identity *ecdsa.PrivateKey
// GorushUrl is the url for the gorush service
GorushURL string
Logger *zap.Logger
}
type Server struct {
persistence Persistence
config *Config
messageProcessor *common.MessageProcessor
}
func New(config *Config, persistence Persistence, messageProcessor *common.MessageProcessor) *Server {
return &Server{persistence: persistence, config: config, messageProcessor: messageProcessor}
}
func (p *Server) generateSharedKey(publicKey *ecdsa.PublicKey) ([]byte, error) {
return ecies.ImportECDSA(p.config.Identity).GenerateShared(
ecies.ImportECDSAPublic(publicKey),
encryptedPayloadKeyLength,
encryptedPayloadKeyLength,
)
}
func (p *Server) validateUUID(u string) error {
if len(u) == 0 {
return errors.New("empty uuid")
}
_, err := uuid.Parse(u)
return err
}
func (p *Server) decryptRegistration(publicKey *ecdsa.PublicKey, payload []byte) ([]byte, error) {
sharedKey, err := p.generateSharedKey(publicKey)
if err != nil {
return nil, err
}
return common.Decrypt(payload, sharedKey)
}
// ValidateRegistration validates a new message against the last one received for a given installationID and and public key
// and return the decrypted message
func (p *Server) ValidateRegistration(publicKey *ecdsa.PublicKey, payload []byte) (*protobuf.PushNotificationRegistration, error) {
if payload == nil {
return nil, ErrEmptyPushNotificationRegistrationPayload
}
if publicKey == nil {
return nil, ErrEmptyPushNotificationRegistrationPublicKey
}
decryptedPayload, err := p.decryptRegistration(publicKey, payload)
if err != nil {
return nil, err
}
registration := &protobuf.PushNotificationRegistration{}
if err := proto.Unmarshal(decryptedPayload, registration); err != nil {
return nil, ErrCouldNotUnmarshalPushNotificationRegistration
}
if registration.Version < 1 {
return nil, ErrInvalidPushNotificationRegistrationVersion
}
if err := p.validateUUID(registration.InstallationId); err != nil {
return nil, ErrMalformedPushNotificationRegistrationInstallationID
}
previousRegistration, err := p.persistence.GetPushNotificationRegistrationByPublicKeyAndInstallationID(common.HashPublicKey(publicKey), registration.InstallationId)
if err != nil {
return nil, err
}
if previousRegistration != nil && registration.Version <= previousRegistration.Version {
return nil, ErrInvalidPushNotificationRegistrationVersion
}
// Unregistering message
if registration.Unregister {
return registration, nil
}
if err := p.validateUUID(registration.AccessToken); err != nil {
return nil, ErrMalformedPushNotificationRegistrationAccessToken
}
if len(registration.Token) == 0 {
return nil, ErrMalformedPushNotificationRegistrationDeviceToken
}
if registration.TokenType == protobuf.PushNotificationRegistration_UNKNOWN_TOKEN_TYPE {
return nil, ErrUnknownPushNotificationRegistrationTokenType
}
return registration, nil
}
func (p *Server) HandlePushNotificationQuery(query *protobuf.PushNotificationQuery) *protobuf.PushNotificationQueryResponse {
p.config.Logger.Debug("handling push notification query")
response := &protobuf.PushNotificationQueryResponse{}
if query == nil || len(query.PublicKeys) == 0 {
return response
}
registrations, err := p.persistence.GetPushNotificationRegistrationByPublicKeys(query.PublicKeys)
if err != nil {
// TODO: log errors
return response
}
for _, idAndResponse := range registrations {
registration := idAndResponse.Registration
info := &protobuf.PushNotificationQueryInfo{
PublicKey: idAndResponse.ID,
InstallationId: registration.InstallationId,
}
if len(registration.AllowedUserList) > 0 {
info.AllowedUserList = registration.AllowedUserList
} else {
info.AccessToken = registration.AccessToken
}
response.Info = append(response.Info, info)
}
response.Success = true
return response
}
func (p *Server) HandlePushNotificationRequest(request *protobuf.PushNotificationRequest) *protobuf.PushNotificationResponse {
response := &protobuf.PushNotificationResponse{}
// We don't even send a response in this case
if request == nil || len(request.MessageId) == 0 {
return nil
}
response.MessageId = request.MessageId
// TODO: filter by chat id
// Collect successful requests & registrations
var requestAndRegistrations []*RequestAndRegistration
for _, pn := range request.Requests {
registration, err := p.persistence.GetPushNotificationRegistrationByPublicKeyAndInstallationID(pn.PublicKey, pn.InstallationId)
report := &protobuf.PushNotificationReport{
PublicKey: pn.PublicKey,
InstallationId: pn.InstallationId,
}
if err != nil {
// TODO: log error
report.Error = protobuf.PushNotificationReport_UNKNOWN_ERROR_TYPE
} else if registration == nil {
report.Error = protobuf.PushNotificationReport_NOT_REGISTERED
} else if registration.AccessToken != pn.AccessToken {
report.Error = protobuf.PushNotificationReport_WRONG_TOKEN
} else {
// For now we just assume that the notification will be successful
requestAndRegistrations = append(requestAndRegistrations, &RequestAndRegistration{
Request: pn,
Registration: registration,
})
report.Success = true
}
response.Reports = append(response.Reports, report)
}
if len(requestAndRegistrations) == 0 {
return response
}
// This can be done asynchronously
goRushRequest := PushNotificationRegistrationToGoRushRequest(requestAndRegistrations)
err := sendGoRushNotification(goRushRequest, p.config.GorushURL)
if err != nil {
// TODO: handle this error?
}
return response
}
func (s *Server) HandlePushNotificationRegistration(publicKey *ecdsa.PublicKey, payload []byte) *protobuf.PushNotificationRegistrationResponse {
s.config.Logger.Debug("handling push notification registration")
response := &protobuf.PushNotificationRegistrationResponse{
RequestId: common.Shake256(payload),
}
registration, err := s.ValidateRegistration(publicKey, payload)
if err != nil {
if err == ErrInvalidPushNotificationRegistrationVersion {
response.Error = protobuf.PushNotificationRegistrationResponse_VERSION_MISMATCH
} else {
response.Error = protobuf.PushNotificationRegistrationResponse_MALFORMED_MESSAGE
}
s.config.Logger.Warn("registration did not validate", zap.Error(err))
return response
}
if registration.Unregister {
// We save an empty registration, only keeping version and installation-id
emptyRegistration := &protobuf.PushNotificationRegistration{
Version: registration.Version,
InstallationId: registration.InstallationId,
}
if err := s.persistence.SavePushNotificationRegistration(common.HashPublicKey(publicKey), emptyRegistration); err != nil {
response.Error = protobuf.PushNotificationRegistrationResponse_INTERNAL_ERROR
s.config.Logger.Error("failed to unregister ", zap.Error(err))
return response
}
} else if err := s.persistence.SavePushNotificationRegistration(common.HashPublicKey(publicKey), registration); err != nil {
response.Error = protobuf.PushNotificationRegistrationResponse_INTERNAL_ERROR
s.config.Logger.Error("failed to save registration", zap.Error(err))
return response
}
if err := s.listenToPublicKeyQueryTopic(common.HashPublicKey(publicKey)); err != nil {
response.Error = protobuf.PushNotificationRegistrationResponse_INTERNAL_ERROR
s.config.Logger.Error("failed to listen to topic", zap.Error(err))
return response
}
response.Success = true
s.config.Logger.Debug("handled push notification registration successfully")
return response
}
func (s *Server) Start() error {
pks, err := s.persistence.GetPushNotificationRegistrationPublicKeys()
if err != nil {
return err
}
for _, pk := range pks {
if err := s.listenToPublicKeyQueryTopic(pk); err != nil {
return err
}
}
return nil
}
func (s *Server) listenToPublicKeyQueryTopic(hashedPublicKey []byte) error {
if s.messageProcessor == nil {
return nil
}
encodedPublicKey := hex.EncodeToString(hashedPublicKey)
return s.messageProcessor.JoinPublic(encodedPublicKey)
}
func (p *Server) HandlePushNotificationRegistration2(publicKey *ecdsa.PublicKey, payload []byte) error {
response := p.HandlePushNotificationRegistration(publicKey, payload)
if response == nil {
return nil
}
encodedMessage, err := proto.Marshal(response)
if err != nil {
return err
}
rawMessage := &common.RawMessage{
Payload: encodedMessage,
MessageType: protobuf.ApplicationMetadataMessage_PUSH_NOTIFICATION_REGISTRATION_RESPONSE,
}
_, err = p.messageProcessor.SendPrivate(context.Background(), publicKey, rawMessage)
return err
}
func (p *Server) HandlePushNotificationQuery2(publicKey *ecdsa.PublicKey, messageID []byte, query protobuf.PushNotificationQuery) error {
response := p.HandlePushNotificationQuery(&query)
if response == nil {
return nil
}
response.MessageId = messageID
encodedMessage, err := proto.Marshal(response)
if err != nil {
return err
}
rawMessage := &common.RawMessage{
Payload: encodedMessage,
MessageType: protobuf.ApplicationMetadataMessage_PUSH_NOTIFICATION_QUERY_RESPONSE,
}
_, err = p.messageProcessor.SendPrivate(context.Background(), publicKey, rawMessage)
return err
}
func (p *Server) HandlePushNotificationRequest2(publicKey *ecdsa.PublicKey,
request protobuf.PushNotificationRequest) error {
response := p.HandlePushNotificationRequest(&request)
if response == nil {
return nil
}
encodedMessage, err := proto.Marshal(response)
if err != nil {
return err
}
rawMessage := &common.RawMessage{
Payload: encodedMessage,
MessageType: protobuf.ApplicationMetadataMessage_PUSH_NOTIFICATION_RESPONSE,
}
_, err = p.messageProcessor.SendPrivate(context.Background(), publicKey, rawMessage)
return err
}