accounts.go 9.9 KB

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  1. // Copyright 2017 The go-ethereum Authors
  2. // This file is part of the go-ethereum library.
  3. //
  4. // The go-ethereum library is free software: you can redistribute it and/or modify
  5. // it under the terms of the GNU Lesser General Public License as published by
  6. // the Free Software Foundation, either version 3 of the License, or
  7. // (at your option) any later version.
  8. //
  9. // The go-ethereum library is distributed in the hope that it will be useful,
  10. // but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. // GNU Lesser General Public License for more details.
  13. //
  14. // You should have received a copy of the GNU Lesser General Public License
  15. // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
  16. // Package accounts implements high level Ethereum account management.
  17. package accounts
  18. import (
  19. "fmt"
  20. "math/big"
  21. ethereum "github.com/ethereum/go-ethereum"
  22. "github.com/ethereum/go-ethereum/common"
  23. "github.com/ethereum/go-ethereum/core/types"
  24. "github.com/ethereum/go-ethereum/event"
  25. "golang.org/x/crypto/sha3"
  26. )
  27. // Account represents an Ethereum account located at a specific location defined
  28. // by the optional URL field.
  29. type Account struct {
  30. Address common.Address `json:"address"` // Ethereum account address derived from the key
  31. URL URL `json:"url"` // Optional resource locator within a backend
  32. }
  33. const (
  34. MimetypeDataWithValidator = "data/validator"
  35. MimetypeTypedData = "data/typed"
  36. MimetypeClique = "application/x-clique-header"
  37. MimetypeParlia = "application/x-parlia-header"
  38. MimetypeTextPlain = "text/plain"
  39. )
  40. // Wallet represents a software or hardware wallet that might contain one or more
  41. // accounts (derived from the same seed).
  42. type Wallet interface {
  43. // URL retrieves the canonical path under which this wallet is reachable. It is
  44. // user by upper layers to define a sorting order over all wallets from multiple
  45. // backends.
  46. URL() URL
  47. // Status returns a textual status to aid the user in the current state of the
  48. // wallet. It also returns an error indicating any failure the wallet might have
  49. // encountered.
  50. Status() (string, error)
  51. // Open initializes access to a wallet instance. It is not meant to unlock or
  52. // decrypt account keys, rather simply to establish a connection to hardware
  53. // wallets and/or to access derivation seeds.
  54. //
  55. // The passphrase parameter may or may not be used by the implementation of a
  56. // particular wallet instance. The reason there is no passwordless open method
  57. // is to strive towards a uniform wallet handling, oblivious to the different
  58. // backend providers.
  59. //
  60. // Please note, if you open a wallet, you must close it to release any allocated
  61. // resources (especially important when working with hardware wallets).
  62. Open(passphrase string) error
  63. // Close releases any resources held by an open wallet instance.
  64. Close() error
  65. // Accounts retrieves the list of signing accounts the wallet is currently aware
  66. // of. For hierarchical deterministic wallets, the list will not be exhaustive,
  67. // rather only contain the accounts explicitly pinned during account derivation.
  68. Accounts() []Account
  69. // Contains returns whether an account is part of this particular wallet or not.
  70. Contains(account Account) bool
  71. // Derive attempts to explicitly derive a hierarchical deterministic account at
  72. // the specified derivation path. If requested, the derived account will be added
  73. // to the wallet's tracked account list.
  74. Derive(path DerivationPath, pin bool) (Account, error)
  75. // SelfDerive sets a base account derivation path from which the wallet attempts
  76. // to discover non zero accounts and automatically add them to list of tracked
  77. // accounts.
  78. //
  79. // Note, self derivaton will increment the last component of the specified path
  80. // opposed to decending into a child path to allow discovering accounts starting
  81. // from non zero components.
  82. //
  83. // Some hardware wallets switched derivation paths through their evolution, so
  84. // this method supports providing multiple bases to discover old user accounts
  85. // too. Only the last base will be used to derive the next empty account.
  86. //
  87. // You can disable automatic account discovery by calling SelfDerive with a nil
  88. // chain state reader.
  89. SelfDerive(bases []DerivationPath, chain ethereum.ChainStateReader)
  90. // SignData requests the wallet to sign the hash of the given data
  91. // It looks up the account specified either solely via its address contained within,
  92. // or optionally with the aid of any location metadata from the embedded URL field.
  93. //
  94. // If the wallet requires additional authentication to sign the request (e.g.
  95. // a password to decrypt the account, or a PIN code o verify the transaction),
  96. // an AuthNeededError instance will be returned, containing infos for the user
  97. // about which fields or actions are needed. The user may retry by providing
  98. // the needed details via SignDataWithPassphrase, or by other means (e.g. unlock
  99. // the account in a keystore).
  100. SignData(account Account, mimeType string, data []byte) ([]byte, error)
  101. // SignDataWithPassphrase is identical to SignData, but also takes a password
  102. // NOTE: there's an chance that an erroneous call might mistake the two strings, and
  103. // supply password in the mimetype field, or vice versa. Thus, an implementation
  104. // should never echo the mimetype or return the mimetype in the error-response
  105. SignDataWithPassphrase(account Account, passphrase, mimeType string, data []byte) ([]byte, error)
  106. // SignText requests the wallet to sign the hash of a given piece of data, prefixed
  107. // by the Ethereum prefix scheme
  108. // It looks up the account specified either solely via its address contained within,
  109. // or optionally with the aid of any location metadata from the embedded URL field.
  110. //
  111. // If the wallet requires additional authentication to sign the request (e.g.
  112. // a password to decrypt the account, or a PIN code o verify the transaction),
  113. // an AuthNeededError instance will be returned, containing infos for the user
  114. // about which fields or actions are needed. The user may retry by providing
  115. // the needed details via SignHashWithPassphrase, or by other means (e.g. unlock
  116. // the account in a keystore).
  117. SignText(account Account, text []byte) ([]byte, error)
  118. // SignTextWithPassphrase is identical to Signtext, but also takes a password
  119. SignTextWithPassphrase(account Account, passphrase string, hash []byte) ([]byte, error)
  120. // SignTx requests the wallet to sign the given transaction.
  121. //
  122. // It looks up the account specified either solely via its address contained within,
  123. // or optionally with the aid of any location metadata from the embedded URL field.
  124. //
  125. // If the wallet requires additional authentication to sign the request (e.g.
  126. // a password to decrypt the account, or a PIN code to verify the transaction),
  127. // an AuthNeededError instance will be returned, containing infos for the user
  128. // about which fields or actions are needed. The user may retry by providing
  129. // the needed details via SignTxWithPassphrase, or by other means (e.g. unlock
  130. // the account in a keystore).
  131. SignTx(account Account, tx *types.Transaction, chainID *big.Int) (*types.Transaction, error)
  132. // SignTxWithPassphrase is identical to SignTx, but also takes a password
  133. SignTxWithPassphrase(account Account, passphrase string, tx *types.Transaction, chainID *big.Int) (*types.Transaction, error)
  134. }
  135. // Backend is a "wallet provider" that may contain a batch of accounts they can
  136. // sign transactions with and upon request, do so.
  137. type Backend interface {
  138. // Wallets retrieves the list of wallets the backend is currently aware of.
  139. //
  140. // The returned wallets are not opened by default. For software HD wallets this
  141. // means that no base seeds are decrypted, and for hardware wallets that no actual
  142. // connection is established.
  143. //
  144. // The resulting wallet list will be sorted alphabetically based on its internal
  145. // URL assigned by the backend. Since wallets (especially hardware) may come and
  146. // go, the same wallet might appear at a different positions in the list during
  147. // subsequent retrievals.
  148. Wallets() []Wallet
  149. // Subscribe creates an async subscription to receive notifications when the
  150. // backend detects the arrival or departure of a wallet.
  151. Subscribe(sink chan<- WalletEvent) event.Subscription
  152. }
  153. // TextHash is a helper function that calculates a hash for the given message that can be
  154. // safely used to calculate a signature from.
  155. //
  156. // The hash is calulcated as
  157. // keccak256("\x19Ethereum Signed Message:\n"${message length}${message}).
  158. //
  159. // This gives context to the signed message and prevents signing of transactions.
  160. func TextHash(data []byte) []byte {
  161. hash, _ := TextAndHash(data)
  162. return hash
  163. }
  164. // TextAndHash is a helper function that calculates a hash for the given message that can be
  165. // safely used to calculate a signature from.
  166. //
  167. // The hash is calulcated as
  168. // keccak256("\x19Ethereum Signed Message:\n"${message length}${message}).
  169. //
  170. // This gives context to the signed message and prevents signing of transactions.
  171. func TextAndHash(data []byte) ([]byte, string) {
  172. msg := fmt.Sprintf("\x19Ethereum Signed Message:\n%d%s", len(data), string(data))
  173. hasher := sha3.NewLegacyKeccak256()
  174. hasher.Write([]byte(msg))
  175. return hasher.Sum(nil), msg
  176. }
  177. // WalletEventType represents the different event types that can be fired by
  178. // the wallet subscription subsystem.
  179. type WalletEventType int
  180. const (
  181. // WalletArrived is fired when a new wallet is detected either via USB or via
  182. // a filesystem event in the keystore.
  183. WalletArrived WalletEventType = iota
  184. // WalletOpened is fired when a wallet is successfully opened with the purpose
  185. // of starting any background processes such as automatic key derivation.
  186. WalletOpened
  187. // WalletDropped
  188. WalletDropped
  189. )
  190. // WalletEvent is an event fired by an account backend when a wallet arrival or
  191. // departure is detected.
  192. type WalletEvent struct {
  193. Wallet Wallet // Wallet instance arrived or departed
  194. Kind WalletEventType // Event type that happened in the system
  195. }