72fc3ca3af
* WIP setting up evm tx command and updating emint keys output * Fix linting issue * Wip restructuring to allow for ethereum signing and encoding * WIP setting up keybase and context to use Ethermint keys * Fixed encoding and decoding of emint keys * Adds command for generating explicit ethereum tx * Fixed evm route for handling tx * Fixed tx and msg encoding which allows transactions to be sent * Added relevant documentation for changes and cleaned up code * Added documentation and indicators why code was overriden
111 lines
3.4 KiB
Go
111 lines
3.4 KiB
Go
package crypto
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import (
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"bytes"
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"crypto/ecdsa"
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ethcrypto "github.com/ethereum/go-ethereum/crypto"
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ethsecp256k1 "github.com/ethereum/go-ethereum/crypto/secp256k1"
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tmcrypto "github.com/tendermint/tendermint/crypto"
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)
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// ----------------------------------------------------------------------------
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// secp256k1 Private Key
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var _ tmcrypto.PrivKey = PrivKeySecp256k1{}
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// PrivKeySecp256k1 defines a type alias for an ecdsa.PrivateKey that implements
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// Tendermint's PrivateKey interface.
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type PrivKeySecp256k1 []byte
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// GenerateKey generates a new random private key. It returns an error upon
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// failure.
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func GenerateKey() (PrivKeySecp256k1, error) {
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priv, err := ethcrypto.GenerateKey()
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if err != nil {
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return PrivKeySecp256k1{}, err
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}
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return PrivKeySecp256k1(ethcrypto.FromECDSA(priv)), nil
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}
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// PubKey returns the ECDSA private key's public key.
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func (privkey PrivKeySecp256k1) PubKey() tmcrypto.PubKey {
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ecdsaPKey := privkey.ToECDSA()
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return PubKeySecp256k1(ethcrypto.FromECDSAPub(&ecdsaPKey.PublicKey))
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}
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// Bytes returns the raw ECDSA private key bytes.
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func (privkey PrivKeySecp256k1) Bytes() []byte {
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return cryptoCodec.MustMarshalBinaryBare(privkey)
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}
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// Sign creates a recoverable ECDSA signature on the secp256k1 curve over the
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// Keccak256 hash of the provided message. The produced signature is 65 bytes
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// where the last byte contains the recovery ID.
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func (privkey PrivKeySecp256k1) Sign(msg []byte) ([]byte, error) {
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return ethcrypto.Sign(ethcrypto.Keccak256Hash(msg).Bytes(), privkey.ToECDSA())
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}
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// Equals returns true if two ECDSA private keys are equal and false otherwise.
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func (privkey PrivKeySecp256k1) Equals(other tmcrypto.PrivKey) bool {
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if other, ok := other.(PrivKeySecp256k1); ok {
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return bytes.Equal(privkey.Bytes(), other.Bytes())
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}
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return false
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}
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// ToECDSA returns the ECDSA private key as a reference to ecdsa.PrivateKey type.
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func (privkey PrivKeySecp256k1) ToECDSA() *ecdsa.PrivateKey {
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key, _ := ethcrypto.ToECDSA(privkey)
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return key
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}
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// ----------------------------------------------------------------------------
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// secp256k1 Public Key
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var _ tmcrypto.PubKey = (*PubKeySecp256k1)(nil)
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// PubKeySecp256k1 defines a type alias for an ecdsa.PublicKey that implements
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// Tendermint's PubKey interface.
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type PubKeySecp256k1 []byte
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// Address returns the address of the ECDSA public key.
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func (key PubKeySecp256k1) Address() tmcrypto.Address {
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pubk, _ := ethcrypto.UnmarshalPubkey(key)
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return tmcrypto.Address(ethcrypto.PubkeyToAddress(*pubk).Bytes())
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}
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// Bytes returns the raw bytes of the ECDSA public key.
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func (key PubKeySecp256k1) Bytes() []byte {
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bz, err := cryptoCodec.MarshalBinaryBare(key)
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if err != nil {
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panic(err)
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}
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return bz
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}
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// VerifyBytes verifies that the ECDSA public key created a given signature over
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// the provided message. It will calculate the Keccak256 hash of the message
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// prior to verification.
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func (key PubKeySecp256k1) VerifyBytes(msg []byte, sig []byte) bool {
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if len(sig) == 65 {
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// remove recovery ID if contained in the signature
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sig = sig[:len(sig)-1]
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}
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// the signature needs to be in [R || S] format when provided to VerifySignature
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return ethsecp256k1.VerifySignature(key, ethcrypto.Keccak256Hash(msg).Bytes(), sig)
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}
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// Equals returns true if two ECDSA public keys are equal and false otherwise.
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func (key PubKeySecp256k1) Equals(other tmcrypto.PubKey) bool {
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if other, ok := other.(PubKeySecp256k1); ok {
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return bytes.Equal(key.Bytes(), other.Bytes())
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}
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return false
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}
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