@0x/contracts-zero-ex: Address review feedback.

This commit is contained in:
Lawrence Forman
2020-05-28 11:55:25 -04:00
parent bf84409839
commit ecfbd6280f
8 changed files with 133 additions and 83 deletions

View File

@@ -130,7 +130,13 @@ library LibTransformERC20RichErrors {
);
}
enum InvalidTransformDataErrorCode {
INVALID_TOKENS,
INVALID_ARRAY_LENGTH
}
function InvalidTransformDataError(
InvalidTransformDataErrorCode errorCode,
bytes memory transformData
)
internal
@@ -138,7 +144,8 @@ library LibTransformERC20RichErrors {
returns (bytes memory)
{
return abi.encodeWithSelector(
bytes4(keccak256("InvalidTransformDataError(bytes)")),
bytes4(keccak256("InvalidTransformDataError(uint8,bytes)")),
errorCode,
transformData
);
}

View File

@@ -35,8 +35,16 @@ import "./LibERC20Transformer.sol";
contract FillQuoteTransformer is
Transformer
{
/// @dev Whether we are performing a market sell or buy.
enum Side {
Sell,
Buy
}
/// @dev Transform data to ABI-encode and pass into `transform()`.
struct TransformData {
// Whether we aer performing a market sell or buy.
Side side;
// The token being sold.
// This should be an actual token, not the ETH pseudo-token.
IERC20TokenV06 sellToken;
@@ -52,11 +60,10 @@ contract FillQuoteTransformer is
// For sells, this will be the maximum sell amount (taker asset).
// For buys, this will be the maximum buy amount (maker asset).
uint256[] maxOrderFillAmounts;
// Amount of `sellToken` to sell. May be `uint256(-1)` to sell entire
// amount of `sellToken` received. Zero if performing a market buy.
uint256 sellAmount;
// Amount of `buyToken` to buy. Zero if performing a market sell.
uint256 buyAmount;
// Amount of `sellToken` to sell or `buyToken` to buy.
// For sells, this may be `uint256(-1)` to sell the entire balance of
// `sellToken`.
uint256 fillAmount;
}
/// @dev Results of a call to `_fillOrder()`.
@@ -96,7 +103,6 @@ contract FillQuoteTransformer is
/// @dev Sell this contract's entire balance of of `sellToken` in exchange
/// for `buyToken` by filling `orders`. Protocol fees should be attached
/// to this call. `buyToken` and excess ETH will be transferred back to the caller.
/// This function cannot be re-entered.
/// @param data_ ABI-encoded `TransformData`.
/// @return rlpDeploymentNonce RLP-encoded deployment nonce of the deployer
/// when this transformer was deployed. This is used to verify that
@@ -113,23 +119,29 @@ contract FillQuoteTransformer is
TransformData memory data = abi.decode(data_, (TransformData));
// Validate data fields.
if (data.sellToken.isTokenETH() ||
data.buyToken.isTokenETH() ||
data.orders.length != data.signatures.length)
{
LibTransformERC20RichErrors.InvalidTransformDataError(data_).rrevert();
if (data.sellToken.isTokenETH() || data.buyToken.isTokenETH()) {
LibTransformERC20RichErrors.InvalidTransformDataError(
LibTransformERC20RichErrors.InvalidTransformDataErrorCode.INVALID_TOKENS,
data_
).rrevert();
}
if (data.orders.length != data.signatures.length) {
LibTransformERC20RichErrors.InvalidTransformDataError(
LibTransformERC20RichErrors.InvalidTransformDataErrorCode.INVALID_ARRAY_LENGTH,
data_
).rrevert();
}
// If `sellAmount == -1` and `buyAmount == 0` then we are selling
// the entire balance of `sellToken`. This is useful in cases where
// the exact sell amount is not exactly known in advance, like when
// unwrapping Chai/cUSDC/cDAI.
if (data.sellAmount == uint256(-1) && data.buyAmount == 0) {
data.sellAmount = data.sellToken.getTokenBalanceOf(address(this));
if (data.side == Side.Sell && data.fillAmount == uint256(-1)) {
// If `sellAmount == -1 then we are selling
// the entire balance of `sellToken`. This is useful in cases where
// the exact sell amount is not exactly known in advance, like when
// unwrapping Chai/cUSDC/cDAI.
data.fillAmount = data.sellToken.getTokenBalanceOf(address(this));
}
// Approve the ERC20 proxy to spend `sellToken`.
data.sellToken.approveIfBelow(erc20Proxy, data.sellAmount);
data.sellToken.approveIfBelow(erc20Proxy, data.fillAmount);
// Fill the orders.
uint256 singleProtocolFee = exchange.protocolFeeMultiplier().safeMul(tx.gasprice);
@@ -138,14 +150,14 @@ contract FillQuoteTransformer is
uint256 soldAmount = 0;
for (uint256 i = 0; i < data.orders.length; ++i) {
// Check if we've hit our targets.
if (data.buyAmount == 0) {
if (data.side == Side.Sell) {
// Market sell check.
if (soldAmount >= data.sellAmount) {
if (soldAmount >= data.fillAmount) {
break;
}
} else {
// Market buy check.
if (boughtAmount >= data.buyAmount) {
if (boughtAmount >= data.fillAmount) {
break;
}
}
@@ -159,14 +171,14 @@ contract FillQuoteTransformer is
// Fill the order.
FillOrderResults memory results;
if (data.buyAmount == 0) {
if (data.side == Side.Sell) {
// Market sell.
results = _sellToOrder(
data.buyToken,
data.sellToken,
data.orders[i],
data.signatures[i],
data.sellAmount.safeSub(soldAmount).min256(
data.fillAmount.safeSub(soldAmount).min256(
data.maxOrderFillAmounts.length > i
? data.maxOrderFillAmounts[i]
: uint256(-1)
@@ -180,7 +192,7 @@ contract FillQuoteTransformer is
data.sellToken,
data.orders[i],
data.signatures[i],
data.buyAmount.safeSub(boughtAmount).min256(
data.fillAmount.safeSub(boughtAmount).min256(
data.maxOrderFillAmounts.length > i
? data.maxOrderFillAmounts[i]
: uint256(-1)
@@ -196,24 +208,24 @@ contract FillQuoteTransformer is
}
// Ensure we hit our targets.
if (data.buyAmount == 0) {
if (data.side == Side.Sell) {
// Market sell check.
if (soldAmount < data.sellAmount) {
if (soldAmount < data.fillAmount) {
LibTransformERC20RichErrors
.IncompleteFillSellQuoteError(
address(data.sellToken),
soldAmount,
data.sellAmount
data.fillAmount
).rrevert();
}
} else {
// Market buy check.
if (boughtAmount < data.buyAmount) {
if (boughtAmount < data.fillAmount) {
LibTransformERC20RichErrors
.IncompleteFillBuyQuoteError(
address(data.buyToken),
boughtAmount,
data.buyAmount
data.fillAmount
).rrevert();
}
}
@@ -238,9 +250,8 @@ contract FillQuoteTransformer is
private
returns (FillOrderResults memory results)
{
IERC20TokenV06 takerFeeToken = order.takerFeeAssetData.length == 0
? IERC20TokenV06(address(0))
: _getTokenFromERC20AssetData(order.takerFeeAssetData);
IERC20TokenV06 takerFeeToken =
_getTokenFromERC20AssetData(order.takerFeeAssetData);
uint256 takerTokenFillAmount = sellAmount;
@@ -261,7 +272,7 @@ contract FillQuoteTransformer is
takerTokenFillAmount = LibMathV06.getPartialAmountCeil(
order.takerAssetAmount,
order.takerAssetAmount.safeAdd(order.takerFee),
takerTokenFillAmount
sellAmount
);
} else {
// Only support taker or maker asset denominated taker fees.
@@ -306,24 +317,27 @@ contract FillQuoteTransformer is
private
returns (FillOrderResults memory results)
{
IERC20TokenV06 takerFeeToken = order.takerFeeAssetData.length == 0
? IERC20TokenV06(address(0))
: _getTokenFromERC20AssetData(order.takerFeeAssetData);
uint256 makerTokenFillAmount = buyAmount;
IERC20TokenV06 takerFeeToken =
_getTokenFromERC20AssetData(order.takerFeeAssetData);
// Compute the default taker token fill amount.
uint256 takerTokenFillAmount = LibMathV06.getPartialAmountCeil(
buyAmount,
order.makerAssetAmount,
order.takerAssetAmount
);
if (order.takerFee != 0) {
if (takerFeeToken == makerToken) {
// Taker fee is payable in the maker token.
// Increase the fill amount to account for maker tokens being
// lost to the taker fee.
// makerTokenFillAmount' =
// (order.makerAssetAmount * makerTokenFillAmount) /
// Adjust the taker token fill amount to account for maker
// tokens being lost to the taker fee.
// takerTokenFillAmount' =
// (order.takerAssetAmount * buyAmount) /
// (order.makerAssetAmount - order.takerFee)
makerTokenFillAmount = LibMathV06.getPartialAmountCeil(
order.makerAssetAmount,
takerTokenFillAmount = LibMathV06.getPartialAmountCeil(
buyAmount,
order.makerAssetAmount.safeSub(order.takerFee),
makerTokenFillAmount
order.takerAssetAmount
);
// Approve the proxy to spend the maker token.
// It isn't worth computing the actual taker fee
@@ -338,14 +352,10 @@ contract FillQuoteTransformer is
}
}
// Convert maker fill amount to taker fill amount.
uint256 takerTokenFillAmount = LibSafeMathV06.min256(
// Clamp to order size.
takerTokenFillAmount = LibSafeMathV06.min256(
order.takerAssetAmount,
LibMathV06.getPartialAmountCeil(
makerTokenFillAmount,
order.makerAssetAmount,
order.takerAssetAmount
)
takerTokenFillAmount
);
// Perform the fill.
@@ -380,7 +390,7 @@ contract FillQuoteTransformer is
returns (FillOrderResults memory results)
{
// Track changes in the maker token balance.
results.makerTokenBoughtAmount = makerToken.balanceOf(address(this));
uint256 initialMakerTokenBalance = makerToken.balanceOf(address(this));
try
exchange.fillOrder
{value: protocolFee}
@@ -389,7 +399,7 @@ contract FillQuoteTransformer is
{
// Update maker quantity based on changes in token balances.
results.makerTokenBoughtAmount = makerToken.balanceOf(address(this))
.safeSub(results.makerTokenBoughtAmount);
.safeSub(initialMakerTokenBalance);
// We can trust the other fill result quantities.
results.protocolFeePaid = fillResults.protocolFeePaid;
results.takerTokenSoldAmount = fillResults.takerAssetFilledAmount;
@@ -400,18 +410,21 @@ contract FillQuoteTransformer is
results.takerTokenSoldAmount.safeAdd(fillResults.takerFeePaid);
}
} catch (bytes memory) {
// If the fill fails, zero out fill quantities.
results.makerTokenBoughtAmount = 0;
// Swallow failures, leaving all results as zero.
}
}
/// @dev Extract the token from plain ERC20 asset data.
/// If the asset-data is empty, a zero token address will be returned.
/// @param assetData The order asset data.
function _getTokenFromERC20AssetData(bytes memory assetData)
private
pure
returns (IERC20TokenV06 token)
{
if (assetData.length == 0) {
return IERC20TokenV06(address(0));
}
if (assetData.length != 36 ||
LibBytesV06.readBytes4(assetData, 0) != ERC20_ASSET_PROXY_ID)
{

View File

@@ -49,7 +49,6 @@ contract PayTakerTransformer is
/// @dev Create this contract.
/// @param deploymentNonce_ The nonce of the deployer when deploying this contract.
/// @dev Construct the transformer and store the WETH address in an immutable.
constructor(uint256 deploymentNonce_)
public
Transformer(deploymentNonce_)

View File

@@ -47,10 +47,9 @@ contract WethTransformer is
using LibSafeMathV06 for uint256;
using LibERC20Transformer for IERC20TokenV06;
/// @dev Create this contract.
/// @dev Construct the transformer and store the WETH address in an immutable.
/// @param weth_ The weth token.
/// @param deploymentNonce_ The nonce of the deployer when deploying this contract.
/// @dev Construct the transformer and store the WETH address in an immutable.
constructor(IEtherTokenV06 weth_, uint256 deploymentNonce_)
public
Transformer(deploymentNonce_)
@@ -74,7 +73,10 @@ contract WethTransformer is
{
TransformData memory data = abi.decode(data_, (TransformData));
if (!data.token.isTokenETH() && data.token != weth) {
LibTransformERC20RichErrors.InvalidTransformDataError(data_).rrevert();
LibTransformERC20RichErrors.InvalidTransformDataError(
LibTransformERC20RichErrors.InvalidTransformDataErrorCode.INVALID_TOKENS,
data_
).rrevert();
}
uint256 amount = data.amount;

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@@ -20,7 +20,6 @@ pragma solidity ^0.6.5;
pragma experimental ABIEncoderV2;
contract TestDelegateCaller {
function executeDelegateCall(
address target,

View File

@@ -26,6 +26,7 @@ export const fillQuoteTransformerDataEncoder = AbiEncoder.create([
name: 'data',
type: 'tuple',
components: [
{ name: 'side', type: 'uint8' },
{ name: 'sellToken', type: 'address' },
{ name: 'buyToken', type: 'address' },
{
@@ -35,23 +36,30 @@ export const fillQuoteTransformerDataEncoder = AbiEncoder.create([
},
{ name: 'signatures', type: 'bytes[]' },
{ name: 'maxOrderFillAmounts', type: 'uint256[]' },
{ name: 'sellAmount', type: 'uint256' },
{ name: 'buyAmount', type: 'uint256' },
{ name: 'fillAmount', type: 'uint256' },
],
},
]);
/**
* Market operation for `FillQuoteTransformerData`.
*/
export enum FillQuoteTransformerSide {
Sell,
Buy,
}
/**
* `FillQuoteTransformer.TransformData`
*/
export interface FillQuoteTransformerData {
side: FillQuoteTransformerSide;
sellToken: string;
buyToken: string;
orders: Array<Exclude<Order, ['signature', 'exchangeAddress', 'chainId']>>;
signatures: string[];
maxOrderFillAmounts: BigNumber[];
sellAmount: BigNumber;
buyAmount: BigNumber;
fillAmount: BigNumber;
}
/**

View File

@@ -13,7 +13,11 @@ import { BigNumber, hexUtils, ZeroExRevertErrors } from '@0x/utils';
import * as _ from 'lodash';
import { rlpEncodeNonce } from '../../src/nonce_utils';
import { encodeFillQuoteTransformerData, FillQuoteTransformerData } from '../../src/transformer_data_encoders';
import {
encodeFillQuoteTransformerData,
FillQuoteTransformerData,
FillQuoteTransformerSide,
} from '../../src/transformer_data_encoders';
import { artifacts } from '../artifacts';
import {
FillQuoteTransformerContract,
@@ -217,13 +221,13 @@ blockchainTests.resets('FillQuoteTransformer', env => {
function encodeTransformData(fields: Partial<FillQuoteTransformerData> = {}): string {
return encodeFillQuoteTransformerData({
side: FillQuoteTransformerSide.Sell,
sellToken: takerToken.address,
buyToken: makerToken.address,
orders: [],
signatures: [],
maxOrderFillAmounts: [],
sellAmount: MAX_UINT256,
buyAmount: ZERO_AMOUNT,
fillAmount: MAX_UINT256,
...fields,
});
}
@@ -455,7 +459,7 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
sellAmount: qfr.takerAssetSpent,
fillAmount: qfr.takerAssetSpent,
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -479,7 +483,7 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
sellAmount: qfr.takerAssetSpent,
fillAmount: qfr.takerAssetSpent,
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -614,7 +618,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -636,7 +641,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -661,7 +667,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -684,7 +691,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
}),
)
.awaitTransactionSuccessAsync({ value: maxProtocolFees });
@@ -709,7 +717,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -736,7 +745,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -760,7 +770,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought.plus(1),
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought.plus(1),
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -789,7 +800,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -812,7 +824,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -835,7 +848,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
}),
)
.awaitTransactionSuccessAsync({ value: qfr.protocolFeePaid });
@@ -855,7 +869,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
buyAmount: qfr.makerAssetBought,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
// Skip the first order.
maxOrderFillAmounts: [ZERO_AMOUNT],
}),
@@ -879,6 +894,8 @@ blockchainTests.resets('FillQuoteTransformer', env => {
encodeTransformData({
orders,
signatures,
side: FillQuoteTransformerSide.Buy,
fillAmount: qfr.makerAssetBought,
}),
)
.callAsync({ value: qfr.protocolFeePaid });

View File

@@ -61,7 +61,12 @@ blockchainTests.resets('WethTransformer', env => {
const tx = host
.executeTransform(amount, transformer.address, data)
.awaitTransactionSuccessAsync({ value: amount });
return expect(tx).to.revertWith(new ZeroExRevertErrors.TransformERC20.InvalidTransformDataError(data));
return expect(tx).to.revertWith(
new ZeroExRevertErrors.TransformERC20.InvalidTransformDataError(
ZeroExRevertErrors.TransformERC20.InvalidTransformDataErrorCode.InvalidTokens,
data,
),
);
});
it('can unwrap WETH', async () => {