mirror of
https://github.com/kremalicious/metamask-extension.git
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c022d2eb9a
* MMI adds actions and background files to the institution/ folder * MMI lint fix * MMI lint fix * MMI import path fixed to be relative * MMI import path fixed * MMI adds the relative path to isErrorWithMessage * MMI adds the tests for mmi actions * MMI lint fix * adds tests to mmi actions * prettier fix * MMI prettier and adds test * MMI prettier * MMI lint fix * MMI prettier fix * MMI rename folder
468 lines
15 KiB
TypeScript
468 lines
15 KiB
TypeScript
import { AccessList } from '@ethereumjs/tx';
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export enum TransactionType {
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/**
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* A transaction submitted with the same nonce as a previous transaction, a
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* higher gas price and a zeroed out send amount. Useful for users who
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* accidentally send to erroneous addresses or if they send too much.
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*/
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cancel = 'cancel',
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/**
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* A transaction that is interacting with a smart contract's methods that we
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* have not treated as a special case, such as approve, transfer, and
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* transferfrom
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*/
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contractInteraction = 'contractInteraction',
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/**
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* A transaction that deployed a smart contract
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*/
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deployContract = 'contractDeployment',
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ethDecrypt = 'eth_decrypt',
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ethGetEncryptionPublicKey = 'eth_getEncryptionPublicKey',
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/**
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* An incoming (deposit) transaction
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*/
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incoming = 'incoming',
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personalSign = 'personal_sign',
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/**
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* When a transaction is failed it can be retried by
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* resubmitting the same transaction with a higher gas fee. This type is also used
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* to speed up pending transactions. This is accomplished by creating a new tx with
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* the same nonce and higher gas fees.
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*/
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retry = 'retry',
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sign = 'eth_sign',
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signTypedData = 'eth_signTypedData',
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/** A transaction sending a network's native asset to a recipient */
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simpleSend = 'simpleSend',
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smart = 'smart',
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/**
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* A transaction swapping one token for another through MetaMask Swaps
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*/
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swap = 'swap',
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/**
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* Similar to the approve type, a swap approval is a special case of ERC20
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* approve method that requests an allowance of the token to spend on behalf
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* of the user for the MetaMask Swaps contract. The first swap for any token
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* will have an accompanying swapApproval transaction.
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*/
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swapApproval = 'swapApproval',
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/**
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* A token transaction requesting an allowance of the token to spend on
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* behalf of the user
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*/
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tokenMethodApprove = 'approve',
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/**
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* A token transaction transferring tokens from an account that the sender
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* has an allowance of. The method is prefixed with safe because when calling
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* this method the contract checks to ensure that the receiver is an address
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* capable of handling with the token being sent.
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*/
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tokenMethodSafeTransferFrom = 'safetransferfrom',
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/**
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* A token transaction where the user is sending tokens that they own to
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* another address
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*/
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tokenMethodTransfer = 'transfer',
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/**
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* A token transaction transferring tokens from an account that the sender
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* has an allowance of. For more information on allowances, see the approve
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* type.
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*/
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tokenMethodTransferFrom = 'transferfrom',
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/**
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* A token transaction requesting an allowance of all of a user's token to
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* spend on behalf of the user
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*/
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tokenMethodSetApprovalForAll = 'setapprovalforall',
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}
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/**
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* In EIP-2718 typed transaction envelopes were specified, with the very first
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* typed envelope being 'legacy' and describing the shape of the base
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* transaction params that were hitherto the only transaction type sent on
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* Ethereum.
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*/
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export enum TransactionEnvelopeType {
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/**
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* A legacy transaction, the very first type.
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*/
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legacy = '0x0',
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/**
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* EIP-2930 defined the access list transaction type that allowed for
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* specifying the state that a transaction would act upon in advance and
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* theoretically save on gas fees.
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*/
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accessList = '0x1',
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/**
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* The type introduced comes from EIP-1559, Fee Market describes the addition
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* of a baseFee to blocks that will be burned instead of distributed to
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* miners. Transactions of this type have both a maxFeePerGas (maximum total
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* amount in gwei per gas to spend on the transaction) which is inclusive of
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* the maxPriorityFeePerGas (maximum amount of gwei per gas from the
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* transaction fee to distribute to miner).
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*/
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feeMarket = '0x2',
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}
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/**
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* Transaction Status is a mix of Ethereum and MetaMask terminology, used internally
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* for transaction processing.
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*/
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export enum TransactionStatus {
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/**
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* A new transaction that the user has not approved or rejected
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*/
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unapproved = 'unapproved',
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/**
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* The user has approved the transaction in the MetaMask UI
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*/
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approved = 'approved',
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/**
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* The user has rejected the transaction in the MetaMask UI
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*/
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rejected = 'rejected',
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/**
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* The transaction has been signed
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*/
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signed = 'signed',
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/**
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* The transaction has been submitted to network
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*/
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submitted = 'submitted',
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/**
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* The transaction has failed for some reason
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*/
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failed = 'failed',
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/**
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* The transaction was dropped due to a tx with same nonce being accepted
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*/
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dropped = 'dropped',
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/**
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* The transaction was confirmed by the network
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*/
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confirmed = 'confirmed',
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/**
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* The transaction has been signed and is waiting to either be confirmed,
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* dropped or failed. This is a "fake" status that we use to group statuses
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* that are very similar from the user's perspective (approved,
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* signed, submitted). The only notable case where approve and signed are
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* different from user perspective is in hardware wallets where the
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* transaction is signed on an external device. Otherwise signing happens
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* transparently to users.
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*/
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pending = 'pending',
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}
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/**
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* With this list we can detect if a transaction is still in progress.
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*/
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export const IN_PROGRESS_TRANSACTION_STATUSES = [
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TransactionStatus.unapproved,
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TransactionStatus.approved,
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TransactionStatus.signed,
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TransactionStatus.submitted,
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TransactionStatus.pending,
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];
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/**
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* Transaction Group Status is a MetaMask construct to track the status of groups
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* of transactions.
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*/
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export enum TransactionGroupStatus {
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/**
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* A cancel type transaction in the group was confirmed
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*/
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cancelled = 'cancelled',
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/**
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* The primaryTransaction of the group has a status that is one of
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* TransactionStatus.approved, TransactionStatus.unapproved or
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* TransactionStatus.submitted
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*/
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pending = 'pending',
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}
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/**
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* Statuses that are specific to Smart Transactions.
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*/
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export enum SmartTransactionStatus {
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/** It can be cancelled for various reasons. */
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cancelled = 'cancelled',
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/** Smart transaction is being processed. */
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pending = 'pending',
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/** Smart transaction was successfully mined. */
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success = 'success',
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}
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/**
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* Types that are specific to the transaction approval amount.
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*/
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export enum TransactionApprovalAmountType {
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/** The user has edited the token amount. */
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custom = 'custom',
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/** The selected amount (either custom or dappProposed) is 0. */
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revoke = 'revoke',
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/** The dapp proposed token amount. */
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dappProposed = 'dapp_proposed',
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}
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/**
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* Transaction Group Category is a MetaMask construct to categorize the intent
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* of a group of transactions for purposes of displaying in the UI
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*/
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export enum TransactionGroupCategory {
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/**
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* Transaction group representing a request for an allowance of a token to
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* spend on the user's behalf.
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*/
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approval = 'approval',
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/**
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* Transaction group representing an interaction with a smart contract's methods.
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*/
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interaction = 'interaction',
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/**
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* Transaction group representing a deposit/incoming transaction. This
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* category maps 1:1 with TransactionType.incoming.
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*/
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receive = 'receive',
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/**
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* Transaction group representing the network native currency being sent from
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* the user.
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*/
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send = 'send',
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/**
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* Transaction group representing a signature request This currently only
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* shows up in the UI when its pending user approval in the UI. Once the user
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* approves or rejects it will no longer show in activity.
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*/
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signatureRequest = 'signature-request',
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/**
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* Transaction group representing a token swap through MetaMask Swaps. This
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* transaction group's primary currency changes depending on context. If the
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* user is viewing an asset page for a token received from a swap, the
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* primary currency will be the received token. Otherwise the token exchanged
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* will be shown.
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*/
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swap = 'swap',
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}
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/**
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* An object representing parameters of a transaction to submit to the network
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*/
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export interface TxParams {
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/** The address the transaction is sent from */
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from: string;
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/** The address the transaction is sent to */
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to: string;
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/** The amount of wei, in hexadecimal, to send */
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value: string;
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/** The transaction count for the current account/network */
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nonce: number;
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/** The amount of gwei, in hexadecimal, per unit of gas */
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gasPrice?: string;
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/** The max amount of gwei, in hexadecimal, the user is willing to pay */
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gas: string;
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/** Hexadecimal encoded string representing calls to the EVM's ABI */
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data?: string;
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/**
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* EIP-2930 https://eips.ethereum.org/EIPS/eip-2930 added the ability for
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* transactions to specify which addresses they will interact with and allows
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* for lower gas fees on specific opcodes. See the EIP for more details.
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*/
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accessList?: AccessList;
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maxFeePerGas?: string;
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maxPriorityFeePerGas?: string;
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}
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export interface TxReceipt {
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blockHash?: string;
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blockNumber?: string;
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transactionIndex?: string;
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}
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export interface TxError {
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/** The message from the encountered error. */
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message: string;
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/** The "value" of the error. */
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rpc: any;
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/** the stack trace from the error, if available. */
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stack?: string;
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}
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/**
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* We attach an object to transactions proposed by dapps to show the values
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* that the dapp suggested for gas fees. This is used to compare to what our
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* internal gas price logic would have the transaction priced at for metrics
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* with the aim of improving our suggestions as well as giving the user the
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* option to return to the defaults suggested by the dapp if they have edited
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* the gas fees on the confirmation screen.
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*/
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interface DappSuggestedGasFees {
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gasPrice?: string;
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maxFeePerGas?: string;
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maxPriorityFeePerGas?: string;
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gas?: string;
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}
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/**
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* An object representing a transaction, in whatever state it is in.
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*/
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export interface TransactionMeta {
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///: BEGIN:ONLY_INCLUDE_IN(mmi)
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custodyStatus: string;
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custodyId?: string;
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///: END:ONLY_INCLUDE_IN
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/**
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* The block number this transaction was included in. Currently only present
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* on incoming transactions!
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*/
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blockNumber?: string;
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/** An internally unique tx identifier. */
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id: number;
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/** Time the transaction was first suggested, in unix epoch time (ms). */
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time: number;
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/** A string representing a name of transaction contract method. */
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contractMethodName: string;
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/** The custom token amount is the amount set by the user */
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customTokenAmount: string;
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/** The dapp proposed token amount */
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dappProposedTokenAmount: string;
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/** The original gas fees suggested by the dapp that proposed this transaction */
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dappSuggestedGasFees?: DappSuggestedGasFees;
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/** The balance of the token that is being sent */
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currentTokenBalance: string;
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/** The original dapp proposed token approval amount before edit by user */
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originalApprovalAmount: string;
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/**
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* The chosen amount which will be the same as the originally proposed token
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* amount if the user does not edit the amount or will be a custom token
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* amount set by the user
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*/
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finalApprovalAmount: string;
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/** The type of transaction this txMeta represents. */
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type: TransactionType;
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/**
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* When we speed up a transaction, we set the type as Retry and we lose
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* information about type of transaction that is being set up, so we use
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* original type to track that information.
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*/
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originalType: TransactionType;
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/** The current status of the transaction. */
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status: TransactionStatus;
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/** The transaction's network ID, used for EIP-155 compliance. */
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metamaskNetworkId: string;
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/** TODO: Find out what this is and document it */
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loadingDefaults: boolean;
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/** The transaction params as passed to the network provider. */
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txParams: TxParams;
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txReceipt: TxReceipt;
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/** A history of mutations to this TransactionMeta object. */
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history: Record<string, any>[];
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/** A string representing the interface that suggested the transaction. */
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origin: string;
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/**
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* A string representing the original gas estimation on the transaction
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* metadata.
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*/
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originalGasEstimate: string;
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/** A boolean representing when the user manually edited the gas limit. */
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userEditedGasLimit: boolean;
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/**
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* A metadata object containing information used to derive the suggested
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* nonce, useful for debugging nonce issues.
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*/
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nonceDetails: Record<string, any>;
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/**
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* A hex string of the final signed transaction, ready to submit to the
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* network.
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*/
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rawTx: string;
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/**
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* A hex string of the transaction hash, used to identify the transaction
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* on the network.
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*/
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hash: string;
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v?: string;
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r?: string;
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s?: string;
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/**
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* The time the transaction was submitted to the network, in Unix epoch time
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* (ms).
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*/
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submittedTime?: number;
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/** The error encountered during the transaction */
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txErr?: TxError;
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}
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/**
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* Defines the possible types
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*/
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export enum TransactionMetaMetricsEvent {
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/**
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* All transactions, except incoming ones, are added to the controller state
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* in an unapproved status. When this happens we fire the Transaction Added
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* event to show that the transaction has been added to the user's MetaMask.
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*/
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added = 'Transaction Added',
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/**
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* When an unapproved transaction is in the controller state, MetaMask will
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* render a confirmation screen for that transaction. If the user approves
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* the transaction we fire this event to indicate that the user has approved
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* the transaction for submission to the network.
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*/
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approved = 'Transaction Approved',
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/**
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* All transactions that are submitted will finalized (eventually) by either
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* being dropped, failing or being confirmed. When this happens we track this
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* event, along with the status.
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*/
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finalized = 'Transaction Finalized',
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/**
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* When an unapproved transaction is in the controller state, MetaMask will
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* render a confirmation screen for that transaction. If the user rejects the
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* transaction we fire this event to indicate that the user has rejected the
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* transaction. It will be removed from state as a result.
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*/
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rejected = 'Transaction Rejected',
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/**
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* After a transaction is approved by the user, it is then submitted to the
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* network for inclusion in a block. When this happens we fire the
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* Transaction Submitted event to indicate that MetaMask is submitting a
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* transaction at the user's request.
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*/
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submitted = 'Transaction Submitted',
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}
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/**
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* The types of assets that a user can send
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*
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* @type {AssetTypes}
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*/
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export enum AssetType {
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/** The native asset for the current network, such as ETH */
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native = 'NATIVE',
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/** An ERC20 token */
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token = 'TOKEN',
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/** An ERC721 or ERC1155 token. */
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NFT = 'NFT',
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/**
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* A transaction interacting with a contract that isn't a token method
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* interaction will be marked as dealing with an unknown asset type.
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*/
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unknown = 'UNKNOWN',
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}
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/**
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* Describes the standard which a token conforms to.
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*/
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export enum TokenStandard {
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/** A token that conforms to the ERC20 standard. */
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ERC20 = 'ERC20',
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/** A token that conforms to the ERC721 standard. */
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ERC721 = 'ERC721',
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/** A token that conforms to the ERC1155 standard. */
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ERC1155 = 'ERC1155',
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/** Not a token, but rather the base asset of the selected chain. */
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none = 'NONE',
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}
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