提交 c733792b 编写于 作者: V Vlad

whsiper: refactoring

上级 014d8d98
......@@ -238,16 +238,17 @@ func (f *Filter) Retrieve() (all []*ReceivedMessage) {
// MatchMessage checks if the filter matches an already decrypted
// message (i.e. a Message that has already been handled by
// MatchEnvelope when checked by a previous filter)
// MatchEnvelope when checked by a previous filter).
// Topics are not checked here, since this is done by topic matchers.
func (f *Filter) MatchMessage(msg *ReceivedMessage) bool {
if f.PoW > 0 && msg.PoW < f.PoW {
return false
}
if f.expectsAsymmetricEncryption() && msg.isAsymmetricEncryption() {
return IsPubKeyEqual(&f.KeyAsym.PublicKey, msg.Dst) && f.MatchTopic(msg.Topic)
return IsPubKeyEqual(&f.KeyAsym.PublicKey, msg.Dst)
} else if f.expectsSymmetricEncryption() && msg.isSymmetricEncryption() {
return f.SymKeyHash == msg.SymKeyHash && f.MatchTopic(msg.Topic)
return f.SymKeyHash == msg.SymKeyHash
}
return false
}
......@@ -255,27 +256,9 @@ func (f *Filter) MatchMessage(msg *ReceivedMessage) bool {
// MatchEnvelope checks if it's worth decrypting the message. If
// it returns `true`, client code is expected to attempt decrypting
// the message and subsequently call MatchMessage.
// Topics are not checked here, since this is done by topic matchers.
func (f *Filter) MatchEnvelope(envelope *Envelope) bool {
if f.PoW > 0 && envelope.pow < f.PoW {
return false
}
return f.MatchTopic(envelope.Topic)
}
// MatchTopic checks that the filter captures a given topic.
func (f *Filter) MatchTopic(topic TopicType) bool {
if len(f.Topics) == 0 {
// any topic matches
return true
}
for _, bt := range f.Topics {
if matchSingleTopic(topic, bt) {
return true
}
}
return false
return f.PoW <= 0 || envelope.pow >= f.PoW
}
func matchSingleTopic(topic TopicType, bt []byte) bool {
......
......@@ -303,9 +303,8 @@ func TestMatchEnvelope(t *testing.T) {
t.Fatalf("failed generateMessageParams with seed %d: %s.", seed, err)
}
params.Topic[0] = 0xFF // ensure mismatch
params.Topic[0] = 0xFF // topic mismatch
// mismatch with pseudo-random data
msg, err := NewSentMessage(params)
if err != nil {
t.Fatalf("failed to create new message with seed %d: %s.", seed, err)
......@@ -315,11 +314,13 @@ func TestMatchEnvelope(t *testing.T) {
t.Fatalf("failed Wrap with seed %d: %s.", seed, err)
}
match := fsym.MatchEnvelope(env)
if match {
if !match {
// topic mismatch should have no affect, as topics are handled by topic matchers
t.Fatalf("failed MatchEnvelope symmetric with seed %d.", seed)
}
match = fasym.MatchEnvelope(env)
if match {
if !match {
// topic mismatch should have no affect, as topics are handled by topic matchers
t.Fatalf("failed MatchEnvelope asymmetric with seed %d.", seed)
}
......@@ -396,7 +397,7 @@ func TestMatchEnvelope(t *testing.T) {
// asymmetric + matching topic: match
fasym.Topics[i] = fasym.Topics[i+1]
match = fasym.MatchEnvelope(env)
if match {
if !match {
t.Fatalf("failed MatchEnvelope(asymmetric + matching topic) with seed %d.", seed)
}
......@@ -431,7 +432,8 @@ func TestMatchEnvelope(t *testing.T) {
// filter with topic + envelope without topic: mismatch
fasym.Topics = fsym.Topics
match = fasym.MatchEnvelope(env)
if match {
if !match {
// topic mismatch should have no affect, as topics are handled by topic matchers
t.Fatalf("failed MatchEnvelope(filter without topic + envelope without topic) with seed %d.", seed)
}
}
......@@ -487,7 +489,8 @@ func TestMatchMessageSym(t *testing.T) {
// topic mismatch
f.Topics[index][0]++
if f.MatchMessage(msg) {
if !f.MatchMessage(msg) {
// topic mismatch should have no affect, as topics are handled by topic matchers
t.Fatalf("failed MatchEnvelope(topic mismatch) with seed %d.", seed)
}
f.Topics[index][0]--
......@@ -580,7 +583,8 @@ func TestMatchMessageAsym(t *testing.T) {
// topic mismatch
f.Topics[index][0]++
if f.MatchMessage(msg) {
if !f.MatchMessage(msg) {
// topic mismatch should have no affect, as topics are handled by topic matchers
t.Fatalf("failed MatchEnvelope(topic mismatch) with seed %d.", seed)
}
f.Topics[index][0]--
......@@ -829,8 +833,9 @@ func TestVariableTopics(t *testing.T) {
f.Topics[i][lastTopicByte]++
match = f.MatchEnvelope(env)
if match {
t.Fatalf("MatchEnvelope symmetric with seed %d, step %d: false positive.", seed, i)
if !match {
// topic mismatch should have no affect, as topics are handled by topic matchers
t.Fatalf("MatchEnvelope symmetric with seed %d, step %d.", seed, i)
}
}
}
......
......@@ -928,24 +928,6 @@ func (whisper *Whisper) Envelopes() []*Envelope {
return all
}
// Messages iterates through all currently floating envelopes
// and retrieves all the messages, that this filter could decrypt.
func (whisper *Whisper) Messages(id string) []*ReceivedMessage {
result := make([]*ReceivedMessage, 0)
whisper.poolMu.RLock()
defer whisper.poolMu.RUnlock()
if filter := whisper.filters.Get(id); filter != nil {
for _, env := range whisper.envelopes {
msg := filter.processEnvelope(env)
if msg != nil {
result = append(result, msg)
}
}
}
return result
}
// isEnvelopeCached checks if envelope with specific hash has already been received and cached.
func (whisper *Whisper) isEnvelopeCached(hash common.Hash) bool {
whisper.poolMu.Lock()
......
......@@ -75,10 +75,6 @@ func TestWhisperBasic(t *testing.T) {
if len(mail) != 0 {
t.Fatalf("failed w.Envelopes().")
}
m := w.Messages("non-existent")
if len(m) != 0 {
t.Fatalf("failed w.Messages.")
}
derived := pbkdf2.Key([]byte(peerID), nil, 65356, aesKeyLength, sha256.New)
if !validateDataIntegrity(derived, aesKeyLength) {
......@@ -593,7 +589,7 @@ func TestCustomization(t *testing.T) {
}
// check w.messages()
id, err := w.Subscribe(f)
_, err = w.Subscribe(f)
if err != nil {
t.Fatalf("failed subscribe with seed %d: %s.", seed, err)
}
......@@ -602,11 +598,6 @@ func TestCustomization(t *testing.T) {
if len(mail) > 0 {
t.Fatalf("received premature mail")
}
mail = w.Messages(id)
if len(mail) != 2 {
t.Fatalf("failed to get whisper messages")
}
}
func TestSymmetricSendCycle(t *testing.T) {
......
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