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compiler: add public key recovering syscalls
Added Secp256r1Recover and Secp256k1Recover syscalls.
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0b87a68210
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2 changed files with 25 additions and 1 deletions
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@ -11,6 +11,10 @@ var syscalls = map[string]map[string]string{
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"GetUsage": "Neo.Attribute.GetUsage",
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"GetData": "Neo.Attribute.GetData",
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},
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"crypto": {
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"Secp256k1Recover": "Neo.Cryptography.Secp256k1Recover",
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"Secp256r1Recover": "Neo.Cryptography.Secp256r1Recover",
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},
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"enumerator": {
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"Concat": "Neo.Enumerator.Concat",
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"Create": "Neo.Enumerator.Create",
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@ -1,5 +1,5 @@
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/*
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Package crypto provides an interface to VM cryptographic instructions.
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Package crypto provides an interface to VM cryptographic instructions and syscalls.
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*/
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package crypto
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@ -30,3 +30,23 @@ func Hash256(b []byte) []byte {
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func VerifySignature(msg []byte, sig []byte, pub []byte) bool {
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return false
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}
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// Secp256k1Recover recovers public key from the given signature (r, s) on the
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// given message hash using Secp256k1 elliptic curve. Flag isEven denotes Y's
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// least significant bit in decompression algorithm. The return value is byte
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// array representation of the public key which is either empty (if it's not
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// possible to recover key) or contains 32 bytes in BE for X point (in case of
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// success). This function uses Neo.Cryptography.Secp256k1Recover syscall.
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func Secp256k1Recover(r []byte, s []byte, messageHash []byte, isEven bool) []byte {
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return nil
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}
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// Secp256r1Recover recovers public key from the given signature (r, s) on the
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// given message hash using Secp256r1 elliptic curve. Flag isEven denotes Y's
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// least significant bit in decompression algorithm. The return value is byte
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// array representation of the public key which is either empty (if it's not
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// possible to recover key) or contains 32 bytes in BE for X point (in case of
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// success). This function uses Neo.Cryptography.Secp256r1Recover syscall.
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func Secp256r1Recover(r []byte, s []byte, messageHash []byte, isEven bool) []byte {
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return nil
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}
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