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package pushnotificationserver
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import (
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"bytes"
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"context"
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"crypto/ecdsa"
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"encoding/hex"
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"github.com/golang/protobuf/proto"
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"github.com/google/uuid"
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"github.com/pkg/errors"
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"go.uber.org/zap"
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"github.com/status-im/status-go/eth-node/crypto"
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"github.com/status-im/status-go/eth-node/crypto/ecies"
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"github.com/status-im/status-go/eth-node/types"
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"github.com/status-im/status-go/protocol/common"
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"github.com/status-im/status-go/protocol/protobuf"
)
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const encryptedPayloadKeyLength = 16
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const defaultGorushURL = "https://gorush.status.im"
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var errUnhandledPushNotificationType = errors . New ( "unhandled push notification type" )
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type Config struct {
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Enabled bool
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// Identity is our identity key
Identity * ecdsa . PrivateKey
// GorushUrl is the url for the gorush service
GorushURL string
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Logger * zap . Logger
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}
type Server struct {
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persistence Persistence
config * Config
messageProcessor * common . MessageProcessor
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}
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func New ( config * Config , persistence Persistence , messageProcessor * common . MessageProcessor ) * Server {
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if len ( config . GorushURL ) == 0 {
config . GorushURL = defaultGorushURL
}
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return & Server { persistence : persistence , config : config , messageProcessor : messageProcessor }
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}
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func ( s * Server ) Start ( ) error {
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if s . config . Logger == nil {
logger , err := zap . NewDevelopment ( )
if err != nil {
return errors . Wrap ( err , "failed to create a logger" )
}
s . config . Logger = logger
}
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s . config . Logger . Info ( "starting push notification server" )
if s . config . Identity == nil {
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s . config . Logger . Debug ( "Identity nil" )
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// Pull identity from database
identity , err := s . persistence . GetIdentity ( )
if err != nil {
return err
}
if identity == nil {
identity , err = crypto . GenerateKey ( )
if err != nil {
return err
}
if err := s . persistence . SaveIdentity ( identity ) ; err != nil {
return err
}
}
s . config . Identity = identity
}
pks , err := s . persistence . GetPushNotificationRegistrationPublicKeys ( )
if err != nil {
return err
}
// listen to all topics for users registered
for _ , pk := range pks {
if err := s . listenToPublicKeyQueryTopic ( pk ) ; err != nil {
return err
}
}
s . config . Logger . Info ( "started push notification server" , zap . String ( "identity" , types . EncodeHex ( crypto . FromECDSAPub ( & s . config . Identity . PublicKey ) ) ) )
return nil
}
// HandlePushNotificationRegistration builds a response for the registration and sends it back to the user
func ( s * Server ) HandlePushNotificationRegistration ( publicKey * ecdsa . PublicKey , payload [ ] byte ) error {
response := s . buildPushNotificationRegistrationResponse ( publicKey , payload )
if response == nil {
return nil
}
encodedMessage , err := proto . Marshal ( response )
if err != nil {
return err
}
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rawMessage := common . RawMessage {
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Payload : encodedMessage ,
MessageType : protobuf . ApplicationMetadataMessage_PUSH_NOTIFICATION_REGISTRATION_RESPONSE ,
// we skip encryption as might be sent from an ephemeral key
SkipEncryption : true ,
}
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_ , err = s . messageProcessor . SendPrivate ( context . Background ( ) , publicKey , & rawMessage )
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return err
}
// HandlePushNotificationQuery builds a response for the query and sends it back to the user
func ( s * Server ) HandlePushNotificationQuery ( publicKey * ecdsa . PublicKey , messageID [ ] byte , query protobuf . PushNotificationQuery ) error {
response := s . buildPushNotificationQueryResponse ( & query )
if response == nil {
return nil
}
response . MessageId = messageID
encodedMessage , err := proto . Marshal ( response )
if err != nil {
return err
}
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rawMessage := common . RawMessage {
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Payload : encodedMessage ,
MessageType : protobuf . ApplicationMetadataMessage_PUSH_NOTIFICATION_QUERY_RESPONSE ,
// we skip encryption as sent from an ephemeral key
SkipEncryption : true ,
}
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_ , err = s . messageProcessor . SendPrivate ( context . Background ( ) , publicKey , & rawMessage )
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return err
}
// HandlePushNotificationRequest will send a gorush notification and send a response back to the user
func ( s * Server ) HandlePushNotificationRequest ( publicKey * ecdsa . PublicKey ,
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messageID [ ] byte ,
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request protobuf . PushNotificationRequest ) error {
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s . config . Logger . Debug ( "handling pn request" , zap . Binary ( "message-id" , messageID ) )
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// This is at-most-once semantic for now
exists , err := s . persistence . PushNotificationExists ( messageID )
if err != nil {
return err
}
if exists {
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s . config . Logger . Debug ( "already handled" )
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return nil
}
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response , requestsAndRegistrations := s . buildPushNotificationRequestResponse ( & request )
//AndSendNotification(&request)
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if response == nil {
return nil
}
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err = s . sendPushNotification ( requestsAndRegistrations )
if err != nil {
s . config . Logger . Error ( "failed to send go rush notification" , zap . Error ( err ) )
return err
}
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encodedMessage , err := proto . Marshal ( response )
if err != nil {
return err
}
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rawMessage := common . RawMessage {
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Payload : encodedMessage ,
MessageType : protobuf . ApplicationMetadataMessage_PUSH_NOTIFICATION_RESPONSE ,
// We skip encryption here as the message has been sent from an ephemeral key
SkipEncryption : true ,
}
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_ , err = s . messageProcessor . SendPrivate ( context . Background ( ) , publicKey , & rawMessage )
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return err
}
// buildGrantSignatureMaterial builds a grant for a specific server.
// We use 3 components:
// 1) The client public key. Not sure this applies to our signature scheme, but best to be conservative. https://crypto.stackexchange.com/questions/15538/given-a-message-and-signature-find-a-public-key-that-makes-the-signature-valid
// 2) The server public key
// 3) The access token
// By verifying this signature, a client can trust the server was instructed to store this access token.
func ( s * Server ) buildGrantSignatureMaterial ( clientPublicKey * ecdsa . PublicKey , serverPublicKey * ecdsa . PublicKey , accessToken string ) [ ] byte {
var signatureMaterial [ ] byte
signatureMaterial = append ( signatureMaterial , crypto . CompressPubkey ( clientPublicKey ) ... )
signatureMaterial = append ( signatureMaterial , crypto . CompressPubkey ( serverPublicKey ) ... )
signatureMaterial = append ( signatureMaterial , [ ] byte ( accessToken ) ... )
a := crypto . Keccak256 ( signatureMaterial )
return a
}
func ( s * Server ) verifyGrantSignature ( clientPublicKey * ecdsa . PublicKey , accessToken string , grant [ ] byte ) error {
signatureMaterial := s . buildGrantSignatureMaterial ( clientPublicKey , & s . config . Identity . PublicKey , accessToken )
recoveredPublicKey , err := crypto . SigToPub ( signatureMaterial , grant )
if err != nil {
return err
}
if ! common . IsPubKeyEqual ( recoveredPublicKey , clientPublicKey ) {
return errors . New ( "pubkey mismatch" )
}
return nil
}
func ( s * Server ) generateSharedKey ( publicKey * ecdsa . PublicKey ) ( [ ] byte , error ) {
return ecies . ImportECDSA ( s . config . Identity ) . GenerateShared (
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ecies . ImportECDSAPublic ( publicKey ) ,
encryptedPayloadKeyLength ,
encryptedPayloadKeyLength ,
)
}
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func ( s * Server ) validateUUID ( u string ) error {
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if len ( u ) == 0 {
return errors . New ( "empty uuid" )
}
_ , err := uuid . Parse ( u )
return err
}
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func ( s * Server ) decryptRegistration ( publicKey * ecdsa . PublicKey , payload [ ] byte ) ( [ ] byte , error ) {
sharedKey , err := s . generateSharedKey ( publicKey )
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if err != nil {
return nil , err
}
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return common . Decrypt ( payload , sharedKey )
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}
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// validateRegistration validates a new message against the last one received for a given installationID and and public key
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// and return the decrypted message
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func ( s * Server ) validateRegistration ( publicKey * ecdsa . PublicKey , payload [ ] byte ) ( * protobuf . PushNotificationRegistration , error ) {
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if payload == nil {
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return nil , ErrEmptyPushNotificationRegistrationPayload
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}
if publicKey == nil {
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return nil , ErrEmptyPushNotificationRegistrationPublicKey
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}
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decryptedPayload , err := s . decryptRegistration ( publicKey , payload )
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if err != nil {
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return nil , err
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}
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registration := & protobuf . PushNotificationRegistration { }
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if err := proto . Unmarshal ( decryptedPayload , registration ) ; err != nil {
return nil , ErrCouldNotUnmarshalPushNotificationRegistration
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}
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if registration . Version < 1 {
return nil , ErrInvalidPushNotificationRegistrationVersion
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}
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if err := s . validateUUID ( registration . InstallationId ) ; err != nil {
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return nil , ErrMalformedPushNotificationRegistrationInstallationID
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}
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previousVersion , err := s . persistence . GetPushNotificationRegistrationVersion ( common . HashPublicKey ( publicKey ) , registration . InstallationId )
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if err != nil {
return nil , err
}
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if registration . Version <= previousVersion {
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return nil , ErrInvalidPushNotificationRegistrationVersion
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}
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// unregistering message
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if registration . Unregister {
return registration , nil
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}
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if err := s . validateUUID ( registration . AccessToken ) ; err != nil {
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return nil , ErrMalformedPushNotificationRegistrationAccessToken
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}
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if len ( registration . Grant ) == 0 {
return nil , ErrMalformedPushNotificationRegistrationGrant
}
if err := s . verifyGrantSignature ( publicKey , registration . AccessToken , registration . Grant ) ; err != nil {
s . config . Logger . Error ( "failed to verify grant" , zap . Error ( err ) )
return nil , ErrMalformedPushNotificationRegistrationGrant
}
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if len ( registration . DeviceToken ) == 0 {
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return nil , ErrMalformedPushNotificationRegistrationDeviceToken
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}
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if registration . TokenType == protobuf . PushNotificationRegistration_UNKNOWN_TOKEN_TYPE {
return nil , ErrUnknownPushNotificationRegistrationTokenType
}
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return registration , nil
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}
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// buildPushNotificationQueryResponse check if we have the client information and send them back
func ( s * Server ) buildPushNotificationQueryResponse ( query * protobuf . PushNotificationQuery ) * protobuf . PushNotificationQueryResponse {
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s . config . Logger . Debug ( "handling push notification query" )
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response := & protobuf . PushNotificationQueryResponse { }
if query == nil || len ( query . PublicKeys ) == 0 {
return response
}
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registrations , err := s . persistence . GetPushNotificationRegistrationByPublicKeys ( query . PublicKeys )
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if err != nil {
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s . config . Logger . Error ( "failed to retrieve registration" , zap . Error ( err ) )
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return response
}
for _ , idAndResponse := range registrations {
registration := idAndResponse . Registration
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info := & protobuf . PushNotificationQueryInfo {
PublicKey : idAndResponse . ID ,
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Grant : registration . Grant ,
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Version : registration . Version ,
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InstallationId : registration . InstallationId ,
}
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// if instructed to only allow from contacts, send back a list
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if registration . AllowFromContactsOnly {
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info . AllowedKeyList = registration . AllowedKeyList
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} else {
info . AccessToken = registration . AccessToken
}
response . Info = append ( response . Info , info )
}
response . Success = true
return response
}
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func ( s * Server ) contains ( list [ ] [ ] byte , chatID [ ] byte ) bool {
for _ , list := range list {
if bytes . Equal ( list , chatID ) {
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return true
}
}
return false
}
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type reportResult struct {
sendNotification bool
report * protobuf . PushNotificationReport
}
// buildPushNotificationReport checks the request against the registration and
// returns whether we should send the notification and what the response should be
func ( s * Server ) buildPushNotificationReport ( pn * protobuf . PushNotification , registration * protobuf . PushNotificationRegistration ) ( * reportResult , error ) {
response := & reportResult { }
report := & protobuf . PushNotificationReport {
PublicKey : pn . PublicKey ,
InstallationId : pn . InstallationId ,
}
if pn . Type == protobuf . PushNotification_UNKNOWN_PUSH_NOTIFICATION_TYPE {
s . config . Logger . Warn ( "unhandled type" )
return nil , errUnhandledPushNotificationType
}
if registration == nil {
s . config . Logger . Warn ( "empty registration" )
report . Error = protobuf . PushNotificationReport_NOT_REGISTERED
} else if registration . AccessToken != pn . AccessToken {
s . config . Logger . Debug ( "invalid token" )
report . Error = protobuf . PushNotificationReport_WRONG_TOKEN
} else if ( s . isMessageNotification ( pn ) && ! s . isValidMessageNotification ( pn , registration ) ) || ( s . isMentionNotification ( pn ) && ! s . isValidMentionNotification ( pn , registration ) ) {
s . config . Logger . Debug ( "filtered notification" )
// We report as successful but don't send the notification
// for privacy reasons, as otherwise we would disclose that
// the sending client has been blocked or that the registering
// client has not joined a given public chat
report . Success = true
} else {
response . sendNotification = true
s . config . Logger . Debug ( "sending push notification" )
report . Success = true
}
response . report = report
return response , nil
}
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// buildPushNotificationRequestResponse will build a response
func ( s * Server ) buildPushNotificationRequestResponse ( request * protobuf . PushNotificationRequest ) ( * protobuf . PushNotificationResponse , [ ] * RequestAndRegistration ) {
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response := & protobuf . PushNotificationResponse { }
// We don't even send a response in this case
if request == nil || len ( request . MessageId ) == 0 {
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s . config . Logger . Warn ( "empty message id" )
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return nil , nil
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}
response . MessageId = request . MessageId
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// collect successful requests & registrations
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var requestAndRegistrations [ ] * RequestAndRegistration
for _ , pn := range request . Requests {
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registration , err := s . persistence . GetPushNotificationRegistrationByPublicKeyAndInstallationID ( pn . PublicKey , pn . InstallationId )
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var report * protobuf . PushNotificationReport
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if err != nil {
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report = & protobuf . PushNotificationReport {
PublicKey : pn . PublicKey ,
Error : protobuf . PushNotificationReport_UNKNOWN_ERROR_TYPE ,
InstallationId : pn . InstallationId ,
}
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} else {
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response , err := s . buildPushNotificationReport ( pn , registration )
if err != nil {
s . config . Logger . Warn ( "unhandled type" )
continue
}
if response . sendNotification {
requestAndRegistrations = append ( requestAndRegistrations , & RequestAndRegistration {
Request : pn ,
Registration : registration ,
} )
}
report = response . report
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}
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response . Reports = append ( response . Reports , report )
}
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s . config . Logger . Debug ( "built pn request" )
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if len ( requestAndRegistrations ) == 0 {
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s . config . Logger . Warn ( "no request and registration" )
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return response , nil
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}
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return response , requestAndRegistrations
}
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func ( s * Server ) sendPushNotification ( requestAndRegistrations [ ] * RequestAndRegistration ) error {
if len ( requestAndRegistrations ) == 0 {
return nil
}
goRushRequest := PushNotificationRegistrationToGoRushRequest ( requestAndRegistrations )
return sendGoRushNotification ( goRushRequest , s . config . GorushURL , s . config . Logger )
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}
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// listenToPublicKeyQueryTopic listen to a topic derived from the hashed public key
func ( s * Server ) listenToPublicKeyQueryTopic ( hashedPublicKey [ ] byte ) error {
if s . messageProcessor == nil {
return nil
}
encodedPublicKey := hex . EncodeToString ( hashedPublicKey )
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_ , err := s . messageProcessor . JoinPublic ( encodedPublicKey )
return err
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}
// buildPushNotificationRegistrationResponse will check the registration is valid, save it, and listen to the topic for the queries
func ( s * Server ) buildPushNotificationRegistrationResponse ( publicKey * ecdsa . PublicKey , payload [ ] byte ) * protobuf . PushNotificationRegistrationResponse {
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s . config . Logger . Debug ( "handling push notification registration" )
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response := & protobuf . PushNotificationRegistrationResponse {
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RequestId : common . Shake256 ( payload ) ,
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}
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registration , err := s . validateRegistration ( publicKey , payload )
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if err != nil {
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if err == ErrInvalidPushNotificationRegistrationVersion {
response . Error = protobuf . PushNotificationRegistrationResponse_VERSION_MISMATCH
} else {
response . Error = protobuf . PushNotificationRegistrationResponse_MALFORMED_MESSAGE
}
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s . config . Logger . Warn ( "registration did not validate" , zap . Error ( err ) )
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return response
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}
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if registration . Unregister {
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s . config . Logger . Debug ( "unregistering client" )
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// We save an empty registration, only keeping version and installation-id
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if err := s . persistence . UnregisterPushNotificationRegistration ( common . HashPublicKey ( publicKey ) , registration . InstallationId , registration . Version ) ; err != nil {
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response . Error = protobuf . PushNotificationRegistrationResponse_INTERNAL_ERROR
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s . config . Logger . Error ( "failed to unregister " , zap . Error ( err ) )
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return response
}
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} else if err := s . persistence . SavePushNotificationRegistration ( common . HashPublicKey ( publicKey ) , registration ) ; err != nil {
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response . Error = protobuf . PushNotificationRegistrationResponse_INTERNAL_ERROR
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s . config . Logger . Error ( "failed to save registration" , zap . Error ( err ) )
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return response
}
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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
}
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response . Success = true
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s . config . Logger . Debug ( "handled push notification registration successfully" )
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return response
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}
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func ( s * Server ) isMentionNotification ( pn * protobuf . PushNotification ) bool {
return pn . Type == protobuf . PushNotification_MENTION
}
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// isValidMentionNotification checks:
// this is a mention
// mentions are enabled
// the user joined the public chat
// the author is not blocked
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func ( s * Server ) isValidMentionNotification ( pn * protobuf . PushNotification , registration * protobuf . PushNotificationRegistration ) bool {
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return s . isMentionNotification ( pn ) && ! registration . BlockMentions && s . contains ( registration . AllowedMentionsChatList , pn . ChatId ) && ! s . contains ( registration . BlockedChatList , pn . Author )
}
func ( s * Server ) isMessageNotification ( pn * protobuf . PushNotification ) bool {
return pn . Type == protobuf . PushNotification_MESSAGE
}
// isValidMentionNotification checks:
// this is a message
// the chat is not muted
// the author is not blocked
func ( s * Server ) isValidMessageNotification ( pn * protobuf . PushNotification , registration * protobuf . PushNotificationRegistration ) bool {
return s . isMessageNotification ( pn ) && ! s . contains ( registration . BlockedChatList , pn . ChatId ) && ! s . contains ( registration . BlockedChatList , pn . Author )
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}