Add ERC20 opt-in migration contract (#1054)
* Extract standard token behaviuor to reuse it in other tests * Add opt in ERC20 migration contract * Make migration contract not to depend from standard token * Changes based on feedback * Improve MigratableERC20 inline documentation * move behaviors to behaviors directory * refactor MigratableERC20 into ERC20Migrator * fix errors * change expectEvent to support multiple events with same name * fix tests * update documentation * rename MigratableERC20 files to ERC20Migrator * move to drafts * test beginMigration * rename to ERC20Migrator * missing semicolon (╯°□°)╯︵ ┻━┻ * add non-zero check * improve documentation based on review comments * improve test descriptions * improve docs * add getters * fix contract * improve tests
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Francisco Giordano
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101
contracts/drafts/ERC20Migrator.sol
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101
contracts/drafts/ERC20Migrator.sol
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pragma solidity ^0.4.24;
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import "../token/ERC20/IERC20.sol";
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import "../token/ERC20/ERC20Mintable.sol";
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import "../token/ERC20/SafeERC20.sol";
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import "../math/Math.sol";
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/**
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* @title ERC20Migrator
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* @dev This contract can be used to migrate an ERC20 token from one
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* contract to another, where each token holder has to opt-in to the migration.
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* To opt-in, users must approve for this contract the number of tokens they
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* want to migrate. Once the allowance is set up, anyone can trigger the
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* migration to the new token contract. In this way, token holders "turn in"
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* their old balance and will be minted an equal amount in the new token.
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* The new token contract must be mintable. For the precise interface refer to
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* OpenZeppelin's ERC20Mintable, but the only functions that are needed are
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* `isMinter(address)` and `mint(address, amount)`. The migrator will check
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* that it is a minter for the token.
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* The balance from the legacy token will be transfered to the migrator, as it
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* is migrated, and remain there forever.
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* Although this contract can be used in many different scenarios, the main
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* motivation was to provide a way to migrate ERC20 tokens into an upgradeable
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* version of it using ZeppelinOS. To read more about how this can be done
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* using this implementation, please follow the official documentation site of
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* ZeppelinOS: https://docs.zeppelinos.org/docs/erc20_onboarding.html
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* Example of usage:
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* ```
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* const migrator = await ERC20Migrator.new(legacyToken.address);
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* await newToken.addMinter(migrator.address);
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* await migrator.beginMigration(newToken.address);
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* ```
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*/
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contract ERC20Migrator {
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using SafeERC20 for IERC20;
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/// Address of the old token contract
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IERC20 private _legacyToken;
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/// Address of the new token contract
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ERC20Mintable private _newToken;
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/**
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* @param legacyToken address of the old token contract
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*/
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constructor(IERC20 legacyToken) public {
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require(legacyToken != address(0));
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_legacyToken = legacyToken;
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}
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/**
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* @dev Returns the legacy token that is being migrated.
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*/
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function legacyToken() public view returns (IERC20) {
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return _legacyToken;
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}
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/**
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* @dev Returns the new token to which we are migrating.
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*/
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function newToken() public view returns (IERC20) {
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return _newToken;
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}
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/**
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* @dev Begins the migration by setting which is the new token that will be
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* minted. This contract must be a minter for the new token.
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* @param newToken the token that will be minted
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*/
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function beginMigration(ERC20Mintable newToken) public {
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require(_newToken == address(0));
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require(newToken != address(0));
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require(newToken.isMinter(this));
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_newToken = newToken;
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}
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/**
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* @dev Transfers part of an account's balance in the old token to this
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* contract, and mints the same amount of new tokens for that account.
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* @param account whose tokens will be migrated
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* @param amount amount of tokens to be migrated
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*/
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function migrate(address account, uint256 amount) public {
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_legacyToken.safeTransferFrom(account, this, amount);
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_newToken.mint(account, amount);
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}
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/**
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* @dev Transfers all of an account's allowed balance in the old token to
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* this contract, and mints the same amount of new tokens for that account.
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* @param account whose tokens will be migrated
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*/
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function migrateAll(address account) public {
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uint256 balance = _legacyToken.balanceOf(account);
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uint256 allowance = _legacyToken.allowance(account, this);
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uint256 amount = Math.min(balance, allowance);
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migrate(account, amount);
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}
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}
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156
test/drafts/ERC20Migrator.test.js
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156
test/drafts/ERC20Migrator.test.js
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const { assertRevert } = require('../helpers/assertRevert');
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const ERC20Mock = artifacts.require('ERC20Mock');
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const ERC20Mintable = artifacts.require('ERC20Mintable');
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const ERC20Migrator = artifacts.require('ERC20Migrator');
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const BigNumber = web3.eth.BigNumber;
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require('chai')
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.use(require('chai-bignumber')(BigNumber))
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.should();
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contract('ERC20Migrator', function ([_, owner, recipient, anotherAccount]) {
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const ZERO_ADDRESS = '0x0000000000000000000000000000000000000000';
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const totalSupply = 200;
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it('reverts with a null legacy token address', async function () {
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await assertRevert(ERC20Migrator.new(ZERO_ADDRESS));
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});
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describe('with tokens and migrator', function () {
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beforeEach('deploying tokens and migrator', async function () {
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this.legacyToken = await ERC20Mock.new(owner, totalSupply);
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this.migrator = await ERC20Migrator.new(this.legacyToken.address);
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this.newToken = await ERC20Mintable.new();
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});
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it('returns legacy token', async function () {
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(await this.migrator.legacyToken()).should.be.equal(this.legacyToken.address);
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});
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describe('beginMigration', function () {
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it('reverts with a null new token address', async function () {
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await assertRevert(this.migrator.beginMigration(ZERO_ADDRESS));
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});
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it('reverts if not a minter of the token', async function () {
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await assertRevert(this.migrator.beginMigration(this.newToken.address));
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});
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it('succeeds if it is a minter of the token', async function () {
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await this.newToken.addMinter(this.migrator.address);
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await this.migrator.beginMigration(this.newToken.address);
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});
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it('reverts the second time it is called', async function () {
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await this.newToken.addMinter(this.migrator.address);
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await this.migrator.beginMigration(this.newToken.address);
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await assertRevert(this.migrator.beginMigration(this.newToken.address));
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});
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});
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describe('once migration began', function () {
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beforeEach('beginning migration', async function () {
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await this.newToken.addMinter(this.migrator.address);
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await this.migrator.beginMigration(this.newToken.address);
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});
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it('returns new token', async function () {
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(await this.migrator.newToken()).should.be.equal(this.newToken.address);
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});
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describe('migrateAll', function () {
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const baseAmount = totalSupply;
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describe('when the approved balance is equal to the owned balance', function () {
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const amount = baseAmount;
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beforeEach('approving the whole balance to the new contract', async function () {
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await this.legacyToken.approve(this.migrator.address, amount, { from: owner });
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});
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beforeEach('migrating token', async function () {
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const tx = await this.migrator.migrateAll(owner);
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this.logs = tx.receipt.logs;
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});
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it('mints the same balance of the new token', async function () {
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const currentBalance = await this.newToken.balanceOf(owner);
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currentBalance.should.be.bignumber.equal(amount);
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});
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it('burns a given amount of old tokens', async function () {
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const currentBurnedBalance = await this.legacyToken.balanceOf(this.migrator.address);
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currentBurnedBalance.should.be.bignumber.equal(amount);
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const currentLegacyTokenBalance = await this.legacyToken.balanceOf(owner);
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currentLegacyTokenBalance.should.be.bignumber.equal(0);
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});
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it('updates the total supply', async function () {
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const currentSupply = await this.newToken.totalSupply();
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currentSupply.should.be.bignumber.equal(amount);
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});
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});
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describe('when the approved balance is lower than the owned balance', function () {
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const amount = baseAmount - 1;
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beforeEach('approving part of the balance to the new contract', async function () {
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await this.legacyToken.approve(this.migrator.address, amount, { from: owner });
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await this.migrator.migrateAll(owner);
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});
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it('migrates only approved amount', async function () {
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const currentBalance = await this.newToken.balanceOf(owner);
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currentBalance.should.be.bignumber.equal(amount);
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});
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});
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});
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describe('migrate', function () {
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const baseAmount = 50;
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beforeEach('approving tokens to the new contract', async function () {
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await this.legacyToken.approve(this.migrator.address, baseAmount, { from: owner });
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});
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describe('when the amount is equal to the one approved', function () {
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const amount = baseAmount;
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beforeEach('migrate token', async function () {
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({ logs: this.logs } = await this.migrator.migrate(owner, amount));
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});
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it('mints that amount of the new token', async function () {
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const currentBalance = await this.newToken.balanceOf(owner);
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currentBalance.should.be.bignumber.equal(amount);
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});
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it('burns a given amount of old tokens', async function () {
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const currentBurnedBalance = await this.legacyToken.balanceOf(this.migrator.address);
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currentBurnedBalance.should.be.bignumber.equal(amount);
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const currentLegacyTokenBalance = await this.legacyToken.balanceOf(owner);
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currentLegacyTokenBalance.should.be.bignumber.equal(totalSupply - amount);
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});
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it('updates the total supply', async function () {
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const currentSupply = await this.newToken.totalSupply();
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currentSupply.should.be.bignumber.equal(amount);
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});
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});
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describe('when the given amount is higher than the one approved', function () {
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const amount = baseAmount + 1;
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it('reverts', async function () {
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await assertRevert(this.migrator.migrate(owner, amount));
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});
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});
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});
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});
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});
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});
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@ -1,12 +1,24 @@
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const should = require('chai').should();
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function inLogs (logs, eventName, eventArgs = {}) {
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const event = logs.find(e => e.event === eventName);
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const event = logs.find(function (e) {
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if (e.event === eventName) {
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let matches = true;
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for (const [k, v] of Object.entries(eventArgs)) {
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if (e.args[k] !== v) {
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matches = false;
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}
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}
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if (matches) {
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return true;
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}
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}
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});
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should.exist(event);
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for (const [k, v] of Object.entries(eventArgs)) {
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should.exist(event.args[k]);
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event.args[k].should.equal(v);
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}
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return event;
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}
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@ -1,4 +1,4 @@
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const { shouldBehaveLikeERC20Burnable } = require('./ERC20Burnable.behavior');
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const { shouldBehaveLikeERC20Burnable } = require('./behaviors/ERC20Burnable.behavior');
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const ERC20BurnableMock = artifacts.require('ERC20BurnableMock');
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contract('ERC20Burnable', function ([_, owner, ...otherAccounts]) {
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const { assertRevert } = require('../../helpers/assertRevert');
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const { ether } = require('../../helpers/ether');
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const { shouldBehaveLikeERC20Mintable } = require('./ERC20Mintable.behavior');
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const { shouldBehaveLikeERC20Capped } = require('./ERC20Capped.behavior');
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const { shouldBehaveLikeERC20Mintable } = require('./behaviors/ERC20Mintable.behavior');
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const { shouldBehaveLikeERC20Capped } = require('./behaviors/ERC20Capped.behavior');
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const ERC20Capped = artifacts.require('ERC20Capped');
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@ -1,4 +1,4 @@
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const { shouldBehaveLikeERC20Mintable } = require('./ERC20Mintable.behavior');
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const { shouldBehaveLikeERC20Mintable } = require('./behaviors/ERC20Mintable.behavior');
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const ERC20MintableMock = artifacts.require('ERC20MintableMock');
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const { shouldBehaveLikePublicRole } = require('../../access/roles/PublicRole.behavior');
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@ -1,5 +1,5 @@
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const { assertRevert } = require('../../helpers/assertRevert');
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const expectEvent = require('../../helpers/expectEvent');
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const { assertRevert } = require('../../../helpers/assertRevert');
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const expectEvent = require('../../../helpers/expectEvent');
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const BigNumber = web3.BigNumber;
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const ZERO_ADDRESS = '0x0000000000000000000000000000000000000000';
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const { expectThrow } = require('../../helpers/expectThrow');
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const { expectThrow } = require('../../../helpers/expectThrow');
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const expectEvent = require('../../../helpers/expectEvent');
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const BigNumber = web3.BigNumber;
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@ -1,5 +1,5 @@
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const { assertRevert } = require('../../helpers/assertRevert');
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const expectEvent = require('../../helpers/expectEvent');
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const { assertRevert } = require('../../../helpers/assertRevert');
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const expectEvent = require('../../../helpers/expectEvent');
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const BigNumber = web3.BigNumber;
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