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events.go
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events.go
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package weshnet
import (
"fmt"
cid "github.com/ipfs/go-cid"
"golang.org/x/crypto/nacl/secretbox"
"google.golang.org/protobuf/proto"
ipfslog "berty.tech/go-ipfs-log"
"berty.tech/weshnet/v2/pkg/cryptoutil"
"berty.tech/weshnet/v2/pkg/errcode"
"berty.tech/weshnet/v2/pkg/protocoltypes"
)
var eventTypesMapper = map[protocoltypes.EventType]struct {
Message proto.Message
SigChecker sigChecker
}{
protocoltypes.EventType_EventTypeGroupMemberDeviceAdded: {Message: &protocoltypes.GroupMemberDeviceAdded{}, SigChecker: sigCheckerGroupMemberDeviceAdded},
protocoltypes.EventType_EventTypeGroupDeviceChainKeyAdded: {Message: &protocoltypes.GroupDeviceChainKeyAdded{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountGroupJoined: {Message: &protocoltypes.AccountGroupJoined{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountGroupLeft: {Message: &protocoltypes.AccountGroupLeft{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountContactRequestDisabled: {Message: &protocoltypes.AccountContactRequestDisabled{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountContactRequestEnabled: {Message: &protocoltypes.AccountContactRequestEnabled{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountContactRequestReferenceReset: {Message: &protocoltypes.AccountContactRequestReferenceReset{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountContactRequestOutgoingEnqueued: {Message: &protocoltypes.AccountContactRequestOutgoingEnqueued{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountContactRequestOutgoingSent: {Message: &protocoltypes.AccountContactRequestOutgoingSent{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountContactRequestIncomingReceived: {Message: &protocoltypes.AccountContactRequestIncomingReceived{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountContactRequestIncomingDiscarded: {Message: &protocoltypes.AccountContactRequestIncomingDiscarded{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountContactRequestIncomingAccepted: {Message: &protocoltypes.AccountContactRequestIncomingAccepted{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountContactBlocked: {Message: &protocoltypes.AccountContactBlocked{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountContactUnblocked: {Message: &protocoltypes.AccountContactUnblocked{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeContactAliasKeyAdded: {Message: &protocoltypes.ContactAliasKeyAdded{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeMultiMemberGroupAliasResolverAdded: {Message: &protocoltypes.MultiMemberGroupAliasResolverAdded{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeMultiMemberGroupInitialMemberAnnounced: {Message: &protocoltypes.MultiMemberGroupInitialMemberAnnounced{}, SigChecker: sigCheckerGroupSigned},
protocoltypes.EventType_EventTypeMultiMemberGroupAdminRoleGranted: {Message: &protocoltypes.MultiMemberGroupAdminRoleGranted{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeGroupMetadataPayloadSent: {Message: &protocoltypes.GroupMetadataPayloadSent{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeGroupReplicating: {Message: &protocoltypes.GroupReplicating{}, SigChecker: sigCheckerDeviceSigned},
protocoltypes.EventType_EventTypeAccountVerifiedCredentialRegistered: {Message: &protocoltypes.AccountVerifiedCredentialRegistered{}, SigChecker: sigCheckerDeviceSigned},
}
func newEventContext(eventID cid.Cid, parentIDs []cid.Cid, g *protocoltypes.Group) *protocoltypes.EventContext {
parentIDsBytes := make([][]byte, len(parentIDs))
for i, parentID := range parentIDs {
parentIDsBytes[i] = parentID.Bytes()
}
return &protocoltypes.EventContext{
Id: eventID.Bytes(),
ParentIds: parentIDsBytes,
GroupPk: g.PublicKey,
}
}
// FIXME(gfanton): getParentsCID use a lot of ressources
// nolint:unused
func getParentsForCID(log ipfslog.Log, c cid.Cid) []cid.Cid {
if log == nil {
// TODO: this should not happen
return []cid.Cid{}
}
parent, ok := log.Get(c)
// Can't fetch parent entry
if !ok {
return []cid.Cid{}
}
nextEntries := parent.GetNext()
// Parent has only one or no parents, returning its id
if len(nextEntries) <= 1 {
return []cid.Cid{parent.GetHash()}
}
// Parent has more than one parent, returning parent entries
var ret []cid.Cid
for _, n := range nextEntries {
ret = append(ret, getParentsForCID(log, n)...)
}
return ret
}
func newGroupMetadataEventFromEntry(_ ipfslog.Log, e ipfslog.Entry, metadata *protocoltypes.GroupMetadata, event proto.Message, g *protocoltypes.Group) (*protocoltypes.GroupMetadataEvent, error) {
// TODO: if parent is a merge node we should return the next nodes of it
eventBytes, err := proto.Marshal(event)
if err != nil {
return nil, errcode.ErrCode_ErrSerialization
}
// TODO(gfanton): getParentsCID use a lot of ressources, disable it until we need it
// evtCtx := newEventContext(e.GetHash(), getParentsForCID(log, e.GetHash()), group, attachmentsCIDs)
evtCtx := newEventContext(e.GetHash(), []cid.Cid{}, g)
gme := protocoltypes.GroupMetadataEvent{
EventContext: evtCtx,
Metadata: metadata,
Event: eventBytes,
}
return &gme, nil
}
func openGroupEnvelope(g *protocoltypes.Group, envelopeBytes []byte) (*protocoltypes.GroupMetadata, proto.Message, error) {
env := &protocoltypes.GroupEnvelope{}
if err := proto.Unmarshal(envelopeBytes, env); err != nil {
return nil, nil, errcode.ErrCode_ErrInvalidInput.Wrap(err)
}
nonce, err := cryptoutil.NonceSliceToArray(env.Nonce)
if err != nil {
return nil, nil, errcode.ErrCode_ErrSerialization.Wrap(err)
}
data, ok := secretbox.Open(nil, env.Event, nonce, g.GetSharedSecret())
if !ok {
return nil, nil, errcode.ErrCode_ErrGroupMemberLogEventOpen
}
metadataEvent := &protocoltypes.GroupMetadata{}
err = proto.Unmarshal(data, metadataEvent)
if err != nil {
return nil, nil, errcode.ErrCode_TODO.Wrap(err)
}
et, ok := eventTypesMapper[metadataEvent.EventType]
if !ok {
return nil, nil, errcode.ErrCode_ErrInvalidInput.Wrap(fmt.Errorf("event type not found"))
}
payload := proto.Clone(et.Message)
if err := proto.Unmarshal(metadataEvent.Payload, payload); err != nil {
return nil, nil, errcode.ErrCode_ErrDeserialization.Wrap(err)
}
if err := et.SigChecker(g, metadataEvent, payload); err != nil {
return nil, nil, errcode.ErrCode_ErrCryptoSignatureVerification.Wrap(err)
}
return metadataEvent, payload, nil
}
func sealGroupEnvelope(g *protocoltypes.Group, eventType protocoltypes.EventType, payload proto.Message, payloadSig []byte) ([]byte, error) {
payloadBytes, err := proto.Marshal(payload)
if err != nil {
return nil, errcode.ErrCode_TODO.Wrap(err)
}
nonce, err := cryptoutil.GenerateNonce()
if err != nil {
return nil, errcode.ErrCode_ErrCryptoNonceGeneration.Wrap(err)
}
event := &protocoltypes.GroupMetadata{
EventType: eventType,
Payload: payloadBytes,
Sig: payloadSig,
ProtocolMetadata: &protocoltypes.ProtocolMetadata{},
}
eventClearBytes, err := proto.Marshal(event)
if err != nil {
return nil, errcode.ErrCode_ErrSerialization.Wrap(err)
}
eventBytes := secretbox.Seal(nil, eventClearBytes, nonce, g.GetSharedSecret())
env := &protocoltypes.GroupEnvelope{
Event: eventBytes,
Nonce: nonce[:],
}
return proto.Marshal(env)
}