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@@ -333,28 +333,19 @@ func (s *PrivateAccountAPI) LockAccount(addr common.Address) bool {
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return fetchKeystore(s.am).Lock(addr) == nil
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return fetchKeystore(s.am).Lock(addr) == nil
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}
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}
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-// SendTransaction will create a transaction from the given arguments and
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-// tries to sign it with the key associated with args.To. If the given passwd isn't
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-// able to decrypt the key it fails.
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-func (s *PrivateAccountAPI) SendTransaction(ctx context.Context, args SendTxArgs, passwd string) (common.Hash, error) {
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+// signTransactions sets defaults and signs the given transation
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+// NOTE: the caller needs to ensure that the nonceLock is held, if applicable,
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+// and release it after the transaction has been submitted to the tx pool
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+func (s *PrivateAccountAPI) signTransaction(ctx context.Context, args SendTxArgs, passwd string) (*types.Transaction, error) {
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// Look up the wallet containing the requested signer
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// Look up the wallet containing the requested signer
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account := accounts.Account{Address: args.From}
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account := accounts.Account{Address: args.From}
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-
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wallet, err := s.am.Find(account)
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wallet, err := s.am.Find(account)
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if err != nil {
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if err != nil {
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- return common.Hash{}, err
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- }
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-
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- if args.Nonce == nil {
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- // Hold the addresse's mutex around signing to prevent concurrent assignment of
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- // the same nonce to multiple accounts.
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- s.nonceLock.LockAddr(args.From)
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- defer s.nonceLock.UnlockAddr(args.From)
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+ return nil, err
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}
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}
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-
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// Set some sanity defaults and terminate on failure
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// Set some sanity defaults and terminate on failure
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if err := args.setDefaults(ctx, s.b); err != nil {
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if err := args.setDefaults(ctx, s.b); err != nil {
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- return common.Hash{}, err
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+ return nil, err
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}
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}
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// Assemble the transaction and sign with the wallet
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// Assemble the transaction and sign with the wallet
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tx := args.toTransaction()
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tx := args.toTransaction()
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@@ -363,13 +354,53 @@ func (s *PrivateAccountAPI) SendTransaction(ctx context.Context, args SendTxArgs
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if config := s.b.ChainConfig(); config.IsEIP155(s.b.CurrentBlock().Number()) {
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if config := s.b.ChainConfig(); config.IsEIP155(s.b.CurrentBlock().Number()) {
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chainID = config.ChainId
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chainID = config.ChainId
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}
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}
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- signed, err := wallet.SignTxWithPassphrase(account, passwd, tx, chainID)
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+ return wallet.SignTxWithPassphrase(account, passwd, tx, chainID)
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+}
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+
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+// SendTransaction will create a transaction from the given arguments and
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+// tries to sign it with the key associated with args.To. If the given passwd isn't
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+// able to decrypt the key it fails.
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+func (s *PrivateAccountAPI) SendTransaction(ctx context.Context, args SendTxArgs, passwd string) (common.Hash, error) {
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+ if args.Nonce == nil {
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+ // Hold the addresse's mutex around signing to prevent concurrent assignment of
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+ // the same nonce to multiple accounts.
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+ s.nonceLock.LockAddr(args.From)
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+ defer s.nonceLock.UnlockAddr(args.From)
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+ }
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+ signed, err := s.signTransaction(ctx, args, passwd)
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if err != nil {
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if err != nil {
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return common.Hash{}, err
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return common.Hash{}, err
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}
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}
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return submitTransaction(ctx, s.b, signed)
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return submitTransaction(ctx, s.b, signed)
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}
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}
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+// SignTransaction will create a transaction from the given arguments and
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+// tries to sign it with the key associated with args.To. If the given passwd isn't
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+// able to decrypt the key it fails. The transaction is returned in RLP-form, not broadcast
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+// to other nodes
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+func (s *PrivateAccountAPI) SignTransaction(ctx context.Context, args SendTxArgs, passwd string) (*SignTransactionResult, error) {
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+ // No need to obtain the noncelock mutex, since we won't be sending this
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+ // tx into the transaction pool, but right back to the user
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+ if args.Gas == nil {
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+ return nil, fmt.Errorf("gas not specified")
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+ }
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+ if args.GasPrice == nil {
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+ return nil, fmt.Errorf("gasPrice not specified")
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+ }
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+ if args.Nonce == nil {
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+ return nil, fmt.Errorf("nonce not specified")
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+ }
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+ signed, err := s.signTransaction(ctx, args, passwd)
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+ if err != nil {
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+ return nil, err
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+ }
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+ data, err := rlp.EncodeToBytes(signed)
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+ if err != nil {
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+ return nil, err
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+ }
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+ return &SignTransactionResult{data, signed}, nil
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+}
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+
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// signHash is a helper function that calculates a hash for the given message that can be
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// signHash is a helper function that calculates a hash for the given message that can be
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// safely used to calculate a signature from.
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// safely used to calculate a signature from.
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//
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//
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@@ -1221,11 +1252,14 @@ type SignTransactionResult struct {
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// The node needs to have the private key of the account corresponding with
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// The node needs to have the private key of the account corresponding with
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// the given from address and it needs to be unlocked.
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// the given from address and it needs to be unlocked.
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func (s *PublicTransactionPoolAPI) SignTransaction(ctx context.Context, args SendTxArgs) (*SignTransactionResult, error) {
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func (s *PublicTransactionPoolAPI) SignTransaction(ctx context.Context, args SendTxArgs) (*SignTransactionResult, error) {
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+ if args.Gas == nil {
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+ return nil, fmt.Errorf("gas not specified")
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+ }
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+ if args.GasPrice == nil {
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+ return nil, fmt.Errorf("gasPrice not specified")
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+ }
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if args.Nonce == nil {
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if args.Nonce == nil {
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- // Hold the addresse's mutex around signing to prevent concurrent assignment of
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- // the same nonce to multiple accounts.
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- s.nonceLock.LockAddr(args.From)
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- defer s.nonceLock.UnlockAddr(args.From)
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+ return nil, fmt.Errorf("nonce not specified")
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}
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}
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if err := args.setDefaults(ctx, s.b); err != nil {
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if err := args.setDefaults(ctx, s.b); err != nil {
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return nil, err
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return nil, err
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