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@@ -48,7 +48,7 @@ func NewMessage(payload []byte) *Message {
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// Wrap bundles the message into an Envelope to transmit over the network.
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//
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-// Pov (Proof Of Work) controls how much time to spend on hashing the message,
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+// pow (Proof Of Work) controls how much time to spend on hashing the message,
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// inherently controlling its priority through the network (smaller hash, bigger
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// priority).
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//
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@@ -81,7 +81,7 @@ func (self *Message) Wrap(pow time.Duration, options Options) (*Envelope, error)
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return envelope, nil
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}
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-// Sign calculates and sets the cryptographic signature for the message , also
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+// sign calculates and sets the cryptographic signature for the message , also
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// setting the sign flag.
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func (self *Message) sign(key *ecdsa.PrivateKey) (err error) {
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self.Flags |= 1 << 7
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@@ -101,18 +101,18 @@ func (self *Message) Recover() *ecdsa.PublicKey {
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return pub
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}
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-// Encrypt encrypts a message payload with a public key.
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+// encrypt encrypts a message payload with a public key.
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func (self *Message) encrypt(to *ecdsa.PublicKey) (err error) {
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self.Payload, err = crypto.Encrypt(to, self.Payload)
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return
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}
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-// Hash calculates the SHA3 checksum of the message flags and payload.
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+// hash calculates the SHA3 checksum of the message flags and payload.
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func (self *Message) hash() []byte {
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return crypto.Sha3(append([]byte{self.Flags}, self.Payload...))
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}
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-// Bytes flattens the message contents (flags, signature and payload) into a
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+// bytes flattens the message contents (flags, signature and payload) into a
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// single binary blob.
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func (self *Message) bytes() []byte {
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return append([]byte{self.Flags}, append(self.Signature, self.Payload...)...)
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