149 lines
		
	
	
		
			3.8 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
		
		
			
		
	
	
			149 lines
		
	
	
		
			3.8 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
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								package main
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								import (
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									"encoding/hex"
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									"fmt"
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									"io/ioutil"
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									"os"
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									"strings"
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									"github.com/ethereum/go-ethereum/accounts/keystore"
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									"github.com/ethereum/go-ethereum/cmd/utils"
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									"github.com/ethereum/go-ethereum/common"
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									"github.com/ethereum/go-ethereum/crypto"
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									"gopkg.in/urfave/cli.v1"
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								)
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								type outputSign struct {
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									Signature string
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								}
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								var commandSignMessage = cli.Command{
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									Name:      "signmessage",
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									Usage:     "sign a message",
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									ArgsUsage: "<keyfile> <message/file>",
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									Description: `
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								Sign the message with a keyfile.
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								It is possible to refer to a file containing the message.`,
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									Flags: []cli.Flag{
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										passphraseFlag,
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										jsonFlag,
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									},
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									Action: func(ctx *cli.Context) error {
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										keyfilepath := ctx.Args().First()
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										message := []byte(ctx.Args().Get(1))
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										// Load the keyfile.
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										keyjson, err := ioutil.ReadFile(keyfilepath)
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										if err != nil {
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											utils.Fatalf("Failed to read the keyfile at '%s': %v",
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												keyfilepath, err)
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										}
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										// Decrypt key with passphrase.
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										passphrase := getPassPhrase(ctx, false)
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										key, err := keystore.DecryptKey(keyjson, passphrase)
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										if err != nil {
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											utils.Fatalf("Error decrypting key: %v", err)
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										}
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										if len(message) == 0 {
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											utils.Fatalf("A message must be provided")
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										}
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										// Read message if file.
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										if _, err := os.Stat(string(message)); err == nil {
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											message, err = ioutil.ReadFile(string(message))
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											if err != nil {
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												utils.Fatalf("Failed to read the message file: %v", err)
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											}
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										}
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										signature, err := crypto.Sign(signHash(message), key.PrivateKey)
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										if err != nil {
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											utils.Fatalf("Failed to sign message: %v", err)
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										}
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										out := outputSign{
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											Signature: hex.EncodeToString(signature),
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										}
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										if ctx.Bool(jsonFlag.Name) {
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											mustPrintJSON(out)
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										} else {
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											fmt.Println("Signature: ", out.Signature)
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										}
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										return nil
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									},
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								}
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								type outputVerify struct {
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									Success            bool
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									RecoveredAddress   string
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									RecoveredPublicKey string
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								}
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								var commandVerifyMessage = cli.Command{
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									Name:      "verifymessage",
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									Usage:     "verify the signature of a signed message",
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									ArgsUsage: "<address> <signature> <message/file>",
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									Description: `
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								Verify the signature of the message.
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								It is possible to refer to a file containing the message.`,
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									Flags: []cli.Flag{
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										jsonFlag,
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									},
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									Action: func(ctx *cli.Context) error {
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										addressStr := ctx.Args().First()
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										signatureHex := ctx.Args().Get(1)
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										message := []byte(ctx.Args().Get(2))
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										// Determine whether it is a keyfile, public key or address.
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										if !common.IsHexAddress(addressStr) {
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											utils.Fatalf("Invalid address: %s", addressStr)
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										}
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										address := common.HexToAddress(addressStr)
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										signature, err := hex.DecodeString(signatureHex)
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										if err != nil {
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											utils.Fatalf("Signature encoding is not hexadecimal: %v", err)
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										}
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										if len(message) == 0 {
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											utils.Fatalf("A message must be provided")
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										}
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										// Read message if file.
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										if _, err := os.Stat(string(message)); err == nil {
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											message, err = ioutil.ReadFile(string(message))
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											if err != nil {
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												utils.Fatalf("Failed to read the message file: %v", err)
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											}
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										}
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										recoveredPubkey, err := crypto.SigToPub(signHash(message), signature)
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										if err != nil || recoveredPubkey == nil {
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											utils.Fatalf("Signature verification failed: %v", err)
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										}
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										recoveredPubkeyBytes := crypto.FromECDSAPub(recoveredPubkey)
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										recoveredAddress := crypto.PubkeyToAddress(*recoveredPubkey)
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										success := address == recoveredAddress
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										out := outputVerify{
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											Success:            success,
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											RecoveredPublicKey: hex.EncodeToString(recoveredPubkeyBytes),
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											RecoveredAddress:   strings.ToLower(recoveredAddress.Hex()),
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										}
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										if ctx.Bool(jsonFlag.Name) {
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											mustPrintJSON(out)
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										} else {
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											if out.Success {
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												fmt.Println("Signature verification successful!")
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											} else {
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												fmt.Println("Signature verification failed!")
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											}
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											fmt.Println("Recovered public key: ", out.RecoveredPublicKey)
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											fmt.Println("Recovered address: ", out.RecoveredAddress)
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										}
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										return nil
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									},
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								}
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