mirror of
https://github.com/0glabs/0g-chain.git
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09a75bd7c6
* add minAmount, maxAmount * update kava-3 params for compile * fix migration script * update to mainnet params * remove height span validation for incoming swaps * update to sdk.Int, set lock to 220 * update lock range to [220, 270] * update bep3 module docs * update MsgClaim's ValidateBasic * update test comments
777 lines
24 KiB
Go
777 lines
24 KiB
Go
package keeper_test
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import (
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"testing"
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"time"
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"github.com/stretchr/testify/suite"
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abci "github.com/tendermint/tendermint/abci/types"
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tmbytes "github.com/tendermint/tendermint/libs/bytes"
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tmtime "github.com/tendermint/tendermint/types/time"
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sdk "github.com/cosmos/cosmos-sdk/types"
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"github.com/kava-labs/kava/app"
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"github.com/kava-labs/kava/x/bep3"
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"github.com/kava-labs/kava/x/bep3/keeper"
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"github.com/kava-labs/kava/x/bep3/types"
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)
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type AtomicSwapTestSuite struct {
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suite.Suite
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keeper keeper.Keeper
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app app.TestApp
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ctx sdk.Context
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randMacc sdk.AccAddress
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deputy sdk.AccAddress
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addrs []sdk.AccAddress
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timestamps []int64
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randomNumberHashes []tmbytes.HexBytes
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swapIDs []tmbytes.HexBytes
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randomNumbers []tmbytes.HexBytes
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}
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const (
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STARING_BNB_BALANCE = int64(3000000000000)
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BNB_DENOM = "bnb"
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)
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func (suite *AtomicSwapTestSuite) SetupTest() {
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config := sdk.GetConfig()
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app.SetBech32AddressPrefixes(config)
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// Initialize test app and set context
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tApp := app.NewTestApp()
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ctx := tApp.NewContext(true, abci.Header{Height: 1, Time: tmtime.Now()})
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// Create and load 20 accounts with bnb tokens
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coins := []sdk.Coins{}
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for i := 0; i < 20; i++ {
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coins = append(coins, cs(c(BNB_DENOM, STARING_BNB_BALANCE)))
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}
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_, addrs := app.GeneratePrivKeyAddressPairs(20)
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deputy := addrs[0]
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authGS := app.NewAuthGenState(addrs, coins)
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// Initialize genesis state
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tApp.InitializeFromGenesisStates(authGS, NewBep3GenStateMulti(deputy))
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suite.app = tApp
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suite.ctx = ctx
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suite.deputy = deputy
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suite.addrs = addrs
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suite.keeper = suite.app.GetBep3Keeper()
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// Load a random module account to test blacklisting
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i := 0
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var randModuleAcc sdk.AccAddress
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for macc := range suite.keeper.Maccs {
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if i == len(suite.keeper.Maccs)/2 {
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acc, err := sdk.AccAddressFromBech32(macc)
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suite.Nil(err)
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randModuleAcc = acc
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}
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i = i + 1
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}
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suite.randMacc = randModuleAcc
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suite.GenerateSwapDetails()
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}
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func (suite *AtomicSwapTestSuite) GenerateSwapDetails() {
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var timestamps []int64
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var randomNumberHashes []tmbytes.HexBytes
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var randomNumbers []tmbytes.HexBytes
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for i := 0; i < 15; i++ {
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// Set up atomic swap details
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timestamp := ts(i)
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randomNumber, _ := types.GenerateSecureRandomNumber()
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randomNumberHash := types.CalculateRandomHash(randomNumber[:], timestamp)
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timestamps = append(timestamps, timestamp)
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randomNumberHashes = append(randomNumberHashes, randomNumberHash)
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randomNumbers = append(randomNumbers, randomNumber[:])
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}
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suite.timestamps = timestamps
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suite.randomNumberHashes = randomNumberHashes
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suite.randomNumbers = randomNumbers
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}
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func (suite *AtomicSwapTestSuite) TestCreateAtomicSwap() {
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currentTmTime := tmtime.Now()
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type args struct {
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randomNumberHash []byte
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timestamp int64
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heightSpan uint64
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sender sdk.AccAddress
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recipient sdk.AccAddress
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senderOtherChain string
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recipientOtherChain string
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coins sdk.Coins
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crossChain bool
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direction types.SwapDirection
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}
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testCases := []struct {
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name string
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blockTime time.Time
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args args
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expectPass bool
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shouldBeFound bool
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}{
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{
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"incoming swap",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[0],
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timestamp: suite.timestamps[0],
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.deputy,
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recipient: suite.addrs[1],
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 50000)),
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crossChain: true,
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direction: types.Incoming,
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},
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true,
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true,
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},
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{
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"outgoing swap",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[0],
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timestamp: suite.timestamps[0],
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.addrs[1],
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recipient: suite.addrs[2],
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 50000)),
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crossChain: true,
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direction: types.Outgoing,
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},
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true,
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true,
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},
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{
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"outgoing swap amount not greater than fixed fee",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[1],
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timestamp: suite.timestamps[1],
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.addrs[1],
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recipient: suite.addrs[2],
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, suite.keeper.GetBnbDeputyFixedFee(suite.ctx).Int64())),
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crossChain: true,
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direction: types.Outgoing,
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},
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false,
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false,
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},
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{
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"unsupported asset",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[2],
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timestamp: suite.timestamps[2],
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.deputy,
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recipient: suite.addrs[2],
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c("xyz", 50000)),
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crossChain: true,
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direction: types.Incoming,
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},
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false,
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false,
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},
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{
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"outside timestamp range",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[3],
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timestamp: suite.timestamps[3] - 2000,
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.deputy,
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recipient: suite.addrs[3],
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 50000)),
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crossChain: true,
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direction: types.Incoming,
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},
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false,
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false,
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},
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{
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"future timestamp",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[4],
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timestamp: suite.timestamps[4] + 5000,
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.deputy,
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recipient: suite.addrs[4],
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 50000)),
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crossChain: true,
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direction: types.Incoming,
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},
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false,
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false,
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},
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{
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"small height span on outgoing swap",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[5],
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timestamp: suite.timestamps[5],
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heightSpan: uint64(100),
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sender: suite.addrs[5],
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recipient: suite.deputy,
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 50000)),
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crossChain: true,
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direction: types.Outgoing,
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},
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false,
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false,
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},
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{
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"big height span on outgoing swap",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[6],
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timestamp: suite.timestamps[6],
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heightSpan: uint64(300),
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sender: suite.addrs[6],
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recipient: suite.deputy,
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 50000)),
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crossChain: true,
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direction: types.Outgoing,
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},
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false,
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false,
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},
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{
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"zero amount",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[7],
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timestamp: suite.timestamps[7],
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.deputy,
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recipient: suite.addrs[7],
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 0)),
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crossChain: true,
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direction: types.Incoming,
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},
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false,
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false,
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},
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{
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"duplicate swap",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[0],
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timestamp: suite.timestamps[0],
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.deputy,
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recipient: suite.addrs[1],
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 50000)),
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crossChain: true,
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direction: types.Incoming,
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},
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false,
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true,
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},
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{
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"recipient is module account",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[8],
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timestamp: suite.timestamps[8],
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.deputy,
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recipient: suite.randMacc,
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 5000)),
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crossChain: true,
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direction: types.Incoming,
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},
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false,
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false,
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},
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{
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"exactly at maximum amount",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[10],
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timestamp: suite.timestamps[10],
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.deputy,
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recipient: suite.addrs[4],
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 1000000000000)), // 10,000 BNB
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crossChain: true,
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direction: types.Incoming,
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},
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true,
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true,
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},
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{
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"above maximum amount",
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currentTmTime,
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args{
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randomNumberHash: suite.randomNumberHashes[11],
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timestamp: suite.timestamps[11],
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heightSpan: types.DefaultMinBlockLock,
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sender: suite.deputy,
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recipient: suite.addrs[5],
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senderOtherChain: TestSenderOtherChain,
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recipientOtherChain: TestRecipientOtherChain,
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coins: cs(c(BNB_DENOM, 1000000000001)), // 10,001 BNB
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crossChain: true,
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direction: types.Incoming,
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},
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false,
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false,
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},
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}
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for _, tc := range testCases {
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suite.Run(tc.name, func() {
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// Increment current asset supply to support outgoing swaps
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if tc.args.direction == types.Outgoing {
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err := suite.keeper.IncrementCurrentAssetSupply(suite.ctx, tc.args.coins[0])
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suite.Nil(err)
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}
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// Load asset denom (required for zero coins test case)
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var swapAssetDenom string
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if len(tc.args.coins) == 1 {
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swapAssetDenom = tc.args.coins[0].Denom
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} else {
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swapAssetDenom = BNB_DENOM
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}
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// Load sender's account prior to swap creation
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ak := suite.app.GetAccountKeeper()
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senderAccPre := ak.GetAccount(suite.ctx, tc.args.sender)
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senderBalancePre := senderAccPre.GetCoins().AmountOf(swapAssetDenom)
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assetSupplyPre, _ := suite.keeper.GetAssetSupply(suite.ctx, []byte(swapAssetDenom))
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// Create atomic swap
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err := suite.keeper.CreateAtomicSwap(suite.ctx, tc.args.randomNumberHash, tc.args.timestamp,
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tc.args.heightSpan, tc.args.sender, tc.args.recipient, tc.args.senderOtherChain,
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tc.args.recipientOtherChain, tc.args.coins, tc.args.crossChain)
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// Load sender's account after swap creation
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senderAccPost := ak.GetAccount(suite.ctx, tc.args.sender)
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senderBalancePost := senderAccPost.GetCoins().AmountOf(swapAssetDenom)
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assetSupplyPost, _ := suite.keeper.GetAssetSupply(suite.ctx, []byte(swapAssetDenom))
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// Load expected swap ID
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expectedSwapID := types.CalculateSwapID(tc.args.randomNumberHash, tc.args.sender, tc.args.senderOtherChain)
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if tc.expectPass {
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suite.NoError(err)
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// Check coins moved
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suite.Equal(senderBalancePre.Sub(tc.args.coins[0].Amount), senderBalancePost)
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// Check incoming/outgoing asset supply increased
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switch tc.args.direction {
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case types.Incoming:
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suite.Equal(assetSupplyPre.IncomingSupply.Add(tc.args.coins[0]), assetSupplyPost.IncomingSupply)
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case types.Outgoing:
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suite.Equal(assetSupplyPre.OutgoingSupply.Add(tc.args.coins[0]), assetSupplyPost.OutgoingSupply)
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default:
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suite.Fail("should not have invalid direction")
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}
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// Check swap in store
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actualSwap, found := suite.keeper.GetAtomicSwap(suite.ctx, expectedSwapID)
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suite.True(found)
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suite.NotNil(actualSwap)
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// Confirm swap contents
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expectedSwap :=
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types.AtomicSwap{
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Amount: tc.args.coins,
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RandomNumberHash: tc.args.randomNumberHash,
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ExpireHeight: uint64(suite.ctx.BlockHeight()) + tc.args.heightSpan,
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Timestamp: tc.args.timestamp,
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Sender: tc.args.sender,
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Recipient: tc.args.recipient,
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SenderOtherChain: tc.args.senderOtherChain,
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RecipientOtherChain: tc.args.recipientOtherChain,
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ClosedBlock: 0,
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Status: types.Open,
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CrossChain: tc.args.crossChain,
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Direction: tc.args.direction,
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}
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suite.Equal(expectedSwap, actualSwap)
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} else {
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suite.Error(err)
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// Check coins not moved
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suite.Equal(senderBalancePre, senderBalancePost)
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// Check incoming/outgoing asset supply not increased
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switch tc.args.direction {
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case types.Incoming:
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suite.Equal(assetSupplyPre.IncomingSupply, assetSupplyPost.IncomingSupply)
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case types.Outgoing:
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suite.Equal(assetSupplyPre.OutgoingSupply, assetSupplyPost.OutgoingSupply)
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default:
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suite.Fail("should not have invalid direction")
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}
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// Check if swap found in store
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_, found := suite.keeper.GetAtomicSwap(suite.ctx, expectedSwapID)
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if !tc.shouldBeFound {
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suite.False(found)
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} else {
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suite.True(found)
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}
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}
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})
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}
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}
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func (suite *AtomicSwapTestSuite) TestClaimAtomicSwap() {
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suite.SetupTest()
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invalidRandomNumber, _ := types.GenerateSecureRandomNumber()
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type args struct {
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swapID []byte
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randomNumber []byte
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direction types.SwapDirection
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}
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testCases := []struct {
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name string
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claimCtx sdk.Context
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args args
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expectPass bool
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}{
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{
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"normal incoming swap",
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suite.ctx,
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args{
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swapID: []byte{},
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randomNumber: []byte{},
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direction: types.Incoming,
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},
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true,
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},
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{
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"normal outgoing swap",
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suite.ctx,
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args{
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swapID: []byte{},
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randomNumber: []byte{},
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direction: types.Outgoing,
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},
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true,
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},
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{
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"invalid random number",
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suite.ctx,
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args{
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swapID: []byte{},
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randomNumber: invalidRandomNumber[:],
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direction: types.Incoming,
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},
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false,
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},
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{
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"wrong swap ID",
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suite.ctx,
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args{
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swapID: types.CalculateSwapID(suite.randomNumberHashes[3], suite.addrs[6], TestRecipientOtherChain),
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randomNumber: []byte{},
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direction: types.Outgoing,
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},
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false,
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},
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{
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"past expiration",
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suite.ctx.WithBlockHeight(suite.ctx.BlockHeight() + 2000),
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args{
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swapID: []byte{},
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randomNumber: []byte{},
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direction: types.Incoming,
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},
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false,
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},
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}
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for i, tc := range testCases {
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suite.GenerateSwapDetails()
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suite.Run(tc.name, func() {
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expectedRecipient := suite.addrs[5]
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expectedClaimAmount := cs(c(BNB_DENOM, 50000))
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sender := suite.deputy
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// Set sender to other and increment current asset supply for outgoing swap
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if tc.args.direction == types.Outgoing {
|
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sender = suite.addrs[6]
|
|
err := suite.keeper.IncrementCurrentAssetSupply(suite.ctx, expectedClaimAmount[0])
|
|
suite.Nil(err)
|
|
}
|
|
|
|
// Create atomic swap
|
|
err := suite.keeper.CreateAtomicSwap(suite.ctx, suite.randomNumberHashes[i], suite.timestamps[i],
|
|
types.DefaultMinBlockLock, sender, expectedRecipient, TestSenderOtherChain, TestRecipientOtherChain,
|
|
expectedClaimAmount, true)
|
|
suite.NoError(err)
|
|
|
|
realSwapID := types.CalculateSwapID(suite.randomNumberHashes[i], sender, TestSenderOtherChain)
|
|
|
|
// If args contains an invalid swap ID claim attempt will use it instead of the real swap ID
|
|
var claimSwapID []byte
|
|
if len(tc.args.swapID) == 0 {
|
|
claimSwapID = realSwapID
|
|
} else {
|
|
claimSwapID = tc.args.swapID
|
|
}
|
|
|
|
// If args contains an invalid random number claim attempt will use it instead of the real random number
|
|
var claimRandomNumber []byte
|
|
if len(tc.args.randomNumber) == 0 {
|
|
claimRandomNumber = suite.randomNumbers[i]
|
|
} else {
|
|
claimRandomNumber = tc.args.randomNumber
|
|
}
|
|
|
|
// Run the beginblocker before attempting claim
|
|
bep3.BeginBlocker(tc.claimCtx, suite.keeper)
|
|
|
|
// Load expected recipient's account prior to claim attempt
|
|
ak := suite.app.GetAccountKeeper()
|
|
expectedRecipientAccPre := ak.GetAccount(tc.claimCtx, expectedRecipient)
|
|
expectedRecipientBalancePre := expectedRecipientAccPre.GetCoins().AmountOf(expectedClaimAmount[0].Denom)
|
|
// Load asset supplies prior to claim attempt
|
|
assetSupplyPre, _ := suite.keeper.GetAssetSupply(tc.claimCtx, []byte(expectedClaimAmount[0].Denom))
|
|
|
|
// Attempt to claim atomic swap
|
|
err = suite.keeper.ClaimAtomicSwap(tc.claimCtx, expectedRecipient, claimSwapID, claimRandomNumber)
|
|
|
|
// Load expected recipient's account after the claim attempt
|
|
expectedRecipientAccPost := ak.GetAccount(tc.claimCtx, expectedRecipient)
|
|
expectedRecipientBalancePost := expectedRecipientAccPost.GetCoins().AmountOf(expectedClaimAmount[0].Denom)
|
|
// Load asset supplies after the claim attempt
|
|
assetSupplyPost, _ := suite.keeper.GetAssetSupply(tc.claimCtx, []byte(expectedClaimAmount[0].Denom))
|
|
|
|
if tc.expectPass {
|
|
suite.NoError(err)
|
|
// Check coins moved
|
|
suite.Equal(expectedRecipientBalancePre.Add(expectedClaimAmount[0].Amount), expectedRecipientBalancePost)
|
|
|
|
// Check asset supply changes
|
|
switch tc.args.direction {
|
|
case types.Incoming:
|
|
// Check incoming supply decreased
|
|
suite.True(assetSupplyPre.IncomingSupply.Amount.Sub(expectedClaimAmount[0].Amount).Equal(assetSupplyPost.IncomingSupply.Amount))
|
|
// Check current supply increased
|
|
suite.Equal(assetSupplyPre.CurrentSupply.Add(expectedClaimAmount[0]), assetSupplyPost.CurrentSupply)
|
|
// Check outgoing supply not changed
|
|
suite.Equal(assetSupplyPre.OutgoingSupply, assetSupplyPost.OutgoingSupply)
|
|
case types.Outgoing:
|
|
// Check incoming supply not changed
|
|
suite.Equal(assetSupplyPre.IncomingSupply, assetSupplyPost.IncomingSupply)
|
|
// Check current supply decreased
|
|
suite.Equal(assetSupplyPre.CurrentSupply.Sub(expectedClaimAmount[0]), assetSupplyPost.CurrentSupply)
|
|
// Check outgoing supply decreased
|
|
suite.True(assetSupplyPre.OutgoingSupply.Sub(expectedClaimAmount[0]).IsEqual(assetSupplyPost.OutgoingSupply))
|
|
default:
|
|
suite.Fail("should not have invalid direction")
|
|
}
|
|
} else {
|
|
suite.Error(err)
|
|
// Check coins not moved
|
|
suite.Equal(expectedRecipientBalancePre, expectedRecipientBalancePost)
|
|
|
|
// Check asset supply has not changed
|
|
switch tc.args.direction {
|
|
case types.Incoming:
|
|
suite.Equal(assetSupplyPre.IncomingSupply, assetSupplyPost.IncomingSupply)
|
|
suite.Equal(assetSupplyPre.CurrentSupply, assetSupplyPost.CurrentSupply)
|
|
suite.Equal(assetSupplyPre.OutgoingSupply, assetSupplyPost.OutgoingSupply)
|
|
case types.Outgoing:
|
|
suite.Equal(assetSupplyPre.IncomingSupply, assetSupplyPost.IncomingSupply)
|
|
suite.Equal(assetSupplyPre.CurrentSupply, assetSupplyPost.CurrentSupply)
|
|
suite.Equal(assetSupplyPre.OutgoingSupply, assetSupplyPost.OutgoingSupply)
|
|
default:
|
|
suite.Fail("should not have invalid direction")
|
|
}
|
|
}
|
|
})
|
|
}
|
|
}
|
|
|
|
func (suite *AtomicSwapTestSuite) TestRefundAtomicSwap() {
|
|
suite.SetupTest()
|
|
|
|
type args struct {
|
|
swapID []byte
|
|
direction types.SwapDirection
|
|
}
|
|
testCases := []struct {
|
|
name string
|
|
refundCtx sdk.Context
|
|
args args
|
|
expectPass bool
|
|
}{
|
|
{
|
|
"normal incoming swap",
|
|
suite.ctx.WithBlockHeight(suite.ctx.BlockHeight() + 400),
|
|
args{
|
|
swapID: []byte{},
|
|
direction: types.Incoming,
|
|
},
|
|
true,
|
|
},
|
|
{
|
|
"normal outgoing swap",
|
|
suite.ctx.WithBlockHeight(suite.ctx.BlockHeight() + 400),
|
|
args{
|
|
swapID: []byte{},
|
|
direction: types.Outgoing,
|
|
},
|
|
true,
|
|
},
|
|
{
|
|
"before expiration",
|
|
suite.ctx,
|
|
args{
|
|
swapID: []byte{},
|
|
direction: types.Incoming,
|
|
},
|
|
false,
|
|
},
|
|
{
|
|
"wrong swapID",
|
|
suite.ctx,
|
|
args{
|
|
swapID: types.CalculateSwapID(suite.randomNumberHashes[6], suite.addrs[1], TestRecipientOtherChain),
|
|
direction: types.Incoming,
|
|
},
|
|
false,
|
|
},
|
|
}
|
|
|
|
for i, tc := range testCases {
|
|
suite.GenerateSwapDetails()
|
|
suite.Run(tc.name, func() {
|
|
// Create atomic swap
|
|
expectedRefundAmount := cs(c(BNB_DENOM, 50000))
|
|
sender := suite.deputy
|
|
|
|
// Set sender to other and increment current asset supply for outgoing swap
|
|
if tc.args.direction == types.Outgoing {
|
|
sender = suite.addrs[6]
|
|
err := suite.keeper.IncrementCurrentAssetSupply(suite.ctx, expectedRefundAmount[0])
|
|
suite.Nil(err)
|
|
}
|
|
|
|
err := suite.keeper.CreateAtomicSwap(suite.ctx, suite.randomNumberHashes[i], suite.timestamps[i],
|
|
types.DefaultMinBlockLock, sender, suite.addrs[9], TestSenderOtherChain, TestRecipientOtherChain,
|
|
expectedRefundAmount, true)
|
|
suite.NoError(err)
|
|
|
|
realSwapID := types.CalculateSwapID(suite.randomNumberHashes[i], sender, TestSenderOtherChain)
|
|
|
|
// If args contains an invalid swap ID refund attempt will use it instead of the real swap ID
|
|
var refundSwapID []byte
|
|
if len(tc.args.swapID) == 0 {
|
|
refundSwapID = realSwapID
|
|
} else {
|
|
refundSwapID = tc.args.swapID
|
|
}
|
|
|
|
// Run the beginblocker before attempting refund
|
|
bep3.BeginBlocker(tc.refundCtx, suite.keeper)
|
|
|
|
// Load sender's account prior to swap refund
|
|
ak := suite.app.GetAccountKeeper()
|
|
originalSenderAccPre := ak.GetAccount(tc.refundCtx, sender)
|
|
originalSenderBalancePre := originalSenderAccPre.GetCoins().AmountOf(expectedRefundAmount[0].Denom)
|
|
// Load asset supply prior to swap refund
|
|
assetSupplyPre, _ := suite.keeper.GetAssetSupply(tc.refundCtx, []byte(expectedRefundAmount[0].Denom))
|
|
|
|
// Attempt to refund atomic swap
|
|
err = suite.keeper.RefundAtomicSwap(tc.refundCtx, sender, refundSwapID)
|
|
|
|
// Load sender's account after refund
|
|
originalSenderAccPost := ak.GetAccount(tc.refundCtx, sender)
|
|
originalSenderBalancePost := originalSenderAccPost.GetCoins().AmountOf(expectedRefundAmount[0].Denom)
|
|
// Load asset supply after to swap refund
|
|
assetSupplyPost, _ := suite.keeper.GetAssetSupply(tc.refundCtx, []byte(expectedRefundAmount[0].Denom))
|
|
|
|
if tc.expectPass {
|
|
suite.NoError(err)
|
|
// Check coins moved
|
|
suite.Equal(originalSenderBalancePre.Add(expectedRefundAmount[0].Amount), originalSenderBalancePost)
|
|
|
|
// Check asset supply changes
|
|
switch tc.args.direction {
|
|
case types.Incoming:
|
|
// Check incoming supply decreased
|
|
suite.True(assetSupplyPre.IncomingSupply.Sub(expectedRefundAmount[0]).IsEqual(assetSupplyPost.IncomingSupply))
|
|
// Check current, outgoing supply not changed
|
|
suite.Equal(assetSupplyPre.CurrentSupply, assetSupplyPost.CurrentSupply)
|
|
suite.Equal(assetSupplyPre.OutgoingSupply, assetSupplyPost.OutgoingSupply)
|
|
case types.Outgoing:
|
|
// Check incoming, current supply not changed
|
|
suite.Equal(assetSupplyPre.IncomingSupply, assetSupplyPost.IncomingSupply)
|
|
suite.Equal(assetSupplyPre.CurrentSupply, assetSupplyPost.CurrentSupply)
|
|
// Check outgoing supply decreased
|
|
suite.True(assetSupplyPre.OutgoingSupply.Sub(expectedRefundAmount[0]).IsEqual(assetSupplyPost.OutgoingSupply))
|
|
default:
|
|
suite.Fail("should not have invalid direction")
|
|
}
|
|
} else {
|
|
suite.Error(err)
|
|
// Check coins not moved
|
|
suite.Equal(originalSenderBalancePre, originalSenderBalancePost)
|
|
|
|
// Check asset supply has not changed
|
|
switch tc.args.direction {
|
|
case types.Incoming:
|
|
suite.Equal(assetSupplyPre.IncomingSupply, assetSupplyPost.IncomingSupply)
|
|
suite.Equal(assetSupplyPre.CurrentSupply, assetSupplyPost.CurrentSupply)
|
|
suite.Equal(assetSupplyPre.OutgoingSupply, assetSupplyPost.OutgoingSupply)
|
|
case types.Outgoing:
|
|
suite.Equal(assetSupplyPre.IncomingSupply, assetSupplyPost.IncomingSupply)
|
|
suite.Equal(assetSupplyPre.CurrentSupply, assetSupplyPost.CurrentSupply)
|
|
suite.Equal(assetSupplyPre.OutgoingSupply, assetSupplyPost.OutgoingSupply)
|
|
default:
|
|
suite.Fail("should not have invalid direction")
|
|
}
|
|
}
|
|
})
|
|
}
|
|
}
|
|
|
|
func TestAtomicSwapTestSuite(t *testing.T) {
|
|
suite.Run(t, new(AtomicSwapTestSuite))
|
|
}
|