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authorPéter Szilágyi <peterke@gmail.com>2016-09-06 00:07:57 +0800
committerPéter Szilágyi <peterke@gmail.com>2016-11-14 23:56:58 +0800
commit178da7c6a94718389e7192d87df5ee42e7223bc3 (patch)
tree010f49656b5d1656cf24a4ff9bac35788dd9959f /mobile/accounts.go
parentd89ea3e6f90c32a97bad58b82a15af0d81f4250e (diff)
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mobile: initial wrappers for mobile support
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+// Copyright 2016 The go-ethereum Authors
+// This file is part of the go-ethereum library.
+//
+// The go-ethereum library is free software: you can redistribute it and/or modify
+// it under the terms of the GNU Lesser General Public License as published by
+// the Free Software Foundation, either version 3 of the License, or
+// (at your option) any later version.
+//
+// The go-ethereum library is distributed in the hope that it will be useful,
+// but WITHOUT ANY WARRANTY; without even the implied warranty of
+// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+// GNU Lesser General Public License for more details.
+//
+// You should have received a copy of the GNU Lesser General Public License
+// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
+
+// Contains all the wrappers from the accounts package to support client side key
+// management on mobile platforms.
+
+package geth
+
+import (
+ "errors"
+ "time"
+
+ "github.com/ethereum/go-ethereum/accounts"
+)
+
+const (
+ // StandardScryptN is the N parameter of Scrypt encryption algorithm, using 256MB
+ // memory and taking approximately 1s CPU time on a modern processor.
+ StandardScryptN = int(accounts.StandardScryptN)
+
+ // StandardScryptP is the P parameter of Scrypt encryption algorithm, using 256MB
+ // memory and taking approximately 1s CPU time on a modern processor.
+ StandardScryptP = int(accounts.StandardScryptP)
+
+ // LightScryptN is the N parameter of Scrypt encryption algorithm, using 4MB
+ // memory and taking approximately 100ms CPU time on a modern processor.
+ LightScryptN = int(accounts.LightScryptN)
+
+ // LightScryptP is the P parameter of Scrypt encryption algorithm, using 4MB
+ // memory and taking approximately 100ms CPU time on a modern processor.
+ LightScryptP = int(accounts.LightScryptP)
+)
+
+// Account represents a stored key.
+type Account struct{ account accounts.Account }
+
+// Accounts represents a slice of accounts.
+type Accounts struct{ accounts []accounts.Account }
+
+// Size returns the number of accounts in the slice.
+func (a *Accounts) Size() int {
+ return len(a.accounts)
+}
+
+// Get returns the account at the given index from the slice.
+func (a *Accounts) Get(index int) (*Account, error) {
+ if index < 0 || index >= len(a.accounts) {
+ return nil, errors.New("index out of bounds")
+ }
+ return &Account{a.accounts[index]}, nil
+}
+
+// Set sets the account at the given index in the slice.
+func (a *Accounts) Set(index int, account *Account) error {
+ if index < 0 || index >= len(a.accounts) {
+ return errors.New("index out of bounds")
+ }
+ a.accounts[index] = account.account
+ return nil
+}
+
+// GetAddress retrieves the address associated with the account.
+func (a *Account) GetAddress() *Address {
+ return &Address{a.account.Address}
+}
+
+// GetFile retrieves the path of the file containing the account key.
+func (a *Account) GetFile() string {
+ return a.account.File
+}
+
+// AccountManager manages a key storage directory on disk.
+type AccountManager struct{ manager *accounts.Manager }
+
+// NewAccountManager creates a manager for the given directory.
+func NewAccountManager(keydir string, scryptN, scryptP int) *AccountManager {
+ return &AccountManager{manager: accounts.NewManager(keydir, scryptN, scryptP)}
+}
+
+// HasAddress reports whether a key with the given address is present.
+func (am *AccountManager) HasAddress(addr *Address) bool {
+ return am.manager.HasAddress(addr.address)
+}
+
+// GetAccounts returns all key files present in the directory.
+func (am *AccountManager) GetAccounts() *Accounts {
+ return &Accounts{am.manager.Accounts()}
+}
+
+// DeleteAccount deletes the key matched by account if the passphrase is correct.
+// If a contains no filename, the address must match a unique key.
+func (am *AccountManager) DeleteAccount(a *Account, passphrase string) error {
+ return am.manager.DeleteAccount(accounts.Account{
+ Address: a.account.Address,
+ File: a.account.File,
+ }, passphrase)
+}
+
+// Sign signs hash with an unlocked private key matching the given address.
+func (am *AccountManager) Sign(addr *Address, hash []byte) ([]byte, error) {
+ return am.manager.Sign(addr.address, hash)
+}
+
+// SignWithPassphrase signs hash if the private key matching the given address can be
+// decrypted with the given passphrase.
+func (am *AccountManager) SignWithPassphrase(addr *Address, passphrase string, hash []byte) ([]byte, error) {
+ return am.manager.SignWithPassphrase(addr.address, passphrase, hash)
+}
+
+// Unlock unlocks the given account indefinitely.
+func (am *AccountManager) Unlock(a *Account, passphrase string) error {
+ return am.manager.TimedUnlock(a.account, passphrase, 0)
+}
+
+// Lock removes the private key with the given address from memory.
+func (am *AccountManager) Lock(addr *Address) error {
+ return am.manager.Lock(addr.address)
+}
+
+// TimedUnlock unlocks the given account with the passphrase. The account
+// stays unlocked for the duration of timeout. A timeout of 0 unlocks the account
+// until the program exits. The account must match a unique key file.
+//
+// If the account address is already unlocked for a duration, TimedUnlock extends or
+// shortens the active unlock timeout. If the address was previously unlocked
+// indefinitely the timeout is not altered.
+func (am *AccountManager) TimedUnlock(a *Account, passphrase string, timeout int64) error {
+ return am.manager.TimedUnlock(a.account, passphrase, time.Duration(timeout))
+}
+
+// NewAccount generates a new key and stores it into the key directory,
+// encrypting it with the passphrase.
+func (am *AccountManager) NewAccount(passphrase string) (*Account, error) {
+ account, err := am.manager.NewAccount(passphrase)
+ if err != nil {
+ return nil, err
+ }
+ return &Account{account}, nil
+}
+
+// ExportKey exports as a JSON key, encrypted with newPassphrase.
+func (am *AccountManager) ExportKey(a *Account, passphrase, newPassphrase string) ([]byte, error) {
+ return am.manager.Export(a.account, passphrase, newPassphrase)
+}
+
+// ImportKey stores the given encrypted JSON key into the key directory.
+func (am *AccountManager) ImportKey(keyJSON []byte, passphrase, newPassphrase string) (*Account, error) {
+ account, err := am.manager.Import(keyJSON, passphrase, newPassphrase)
+ if err != nil {
+ return nil, err
+ }
+ return &Account{account}, nil
+}
+
+// Update changes the passphrase of an existing account.
+func (am *AccountManager) Update(a *Account, passphrase, newPassphrase string) error {
+ return am.manager.Update(a.account, passphrase, newPassphrase)
+}
+
+// ImportPreSaleKey decrypts the given Ethereum presale wallet and stores
+// a key file in the key directory. The key file is encrypted with the same passphrase.
+func (am *AccountManager) ImportPreSaleKey(keyJSON []byte, passphrase string) (*Account, error) {
+ account, err := am.manager.ImportPreSaleKey(keyJSON, passphrase)
+ if err != nil {
+ return nil, err
+ }
+ return &Account{account}, nil
+}