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cctp_receive_message_test.go
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cctp_receive_message_test.go
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package interchaintest_test
import (
"bytes"
"context"
"crypto/ecdsa"
"crypto/elliptic"
"encoding/hex"
"sort"
"testing"
"time"
cosmossdk_io_math "cosmossdk.io/math"
cctptypes "github.com/circlefin/noble-cctp/x/cctp/types"
sdkclient "github.com/cosmos/cosmos-sdk/client"
"github.com/cosmos/cosmos-sdk/client/flags"
sdk "github.com/cosmos/cosmos-sdk/types"
"github.com/cosmos/cosmos-sdk/types/bech32"
authtypes "github.com/cosmos/cosmos-sdk/x/auth/types"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/crypto"
"github.com/noble-assets/noble/v7/cmd"
"github.com/strangelove-ventures/interchaintest/v4"
"github.com/strangelove-ventures/interchaintest/v4/chain/cosmos"
"github.com/strangelove-ventures/interchaintest/v4/testreporter"
"github.com/stretchr/testify/require"
"go.uber.org/zap/zaptest"
)
// run `make local-image`to rebuild updated binary before running test
func TestCCTP_ReceiveMessage(t *testing.T) {
if testing.Short() {
t.Skip()
}
t.Parallel()
ctx := context.Background()
rep := testreporter.NewNopReporter()
eRep := rep.RelayerExecReporter(t)
client, network := interchaintest.DockerSetup(t)
var gw genesisWrapper
nv := 1
nf := 0
cf := interchaintest.NewBuiltinChainFactory(zaptest.NewLogger(t), []*interchaintest.ChainSpec{
nobleChainSpec(ctx, &gw, "noble-1", nv, nf, true, false, true, false),
})
chains, err := cf.Chains(t.Name())
require.NoError(t, err)
gw.chain = chains[0].(*cosmos.CosmosChain)
noble := gw.chain
ic := interchaintest.NewInterchain().AddChain(noble)
require.NoError(t, ic.Build(ctx, eRep, interchaintest.InterchainBuildOptions{
TestName: t.Name(),
Client: client,
NetworkID: network,
// BlockDatabaseFile: interchaintest.DefaultBlockDatabaseFilepath(),
SkipPathCreation: false,
}))
t.Cleanup(func() {
_ = ic.Close()
})
nobleChainCfg := noble.Config()
cmd.SetPrefixes(nobleChainCfg.Bech32Prefix)
attesters := make([]*ecdsa.PrivateKey, 2)
msgs := make([]sdk.Msg, 2)
// attester - ECDSA public key (Circle will own these keys for mainnet)
for i := range attesters {
p, err := crypto.GenerateKey() // private key
require.NoError(t, err)
attesters[i] = p
pubKey := elliptic.Marshal(p.PublicKey, p.PublicKey.X, p.PublicKey.Y) //public key
attesterPub := hex.EncodeToString(pubKey)
// Adding an attester to protocal
msgs[i] = &cctptypes.MsgEnableAttester{
From: gw.fiatTfRoles.Owner.FormattedAddress(),
Attester: attesterPub,
}
}
broadcaster := cosmos.NewBroadcaster(t, noble)
broadcaster.ConfigureClientContextOptions(func(clientContext sdkclient.Context) sdkclient.Context {
return clientContext.WithBroadcastMode(flags.BroadcastBlock)
})
t.Log("preparing to submit add public keys tx")
burnToken := make([]byte, 32)
copy(burnToken[12:], common.FromHex("0x07865c6E87B9F70255377e024ace6630C1Eaa37F"))
msgs = append(msgs, &cctptypes.MsgLinkTokenPair{
From: gw.fiatTfRoles.Owner.FormattedAddress(),
RemoteDomain: 0,
RemoteToken: burnToken,
LocalToken: denomMetadataUsdc.Base,
})
tokenMessenger := make([]byte, 32)
copy(tokenMessenger[12:], common.FromHex("0xBd3fa81B58Ba92a82136038B25aDec7066af3155"))
msgs = append(msgs, &cctptypes.MsgAddRemoteTokenMessenger{
From: gw.fiatTfRoles.Owner.FormattedAddress(),
DomainId: 0,
Address: tokenMessenger,
})
bCtx, bCancel := context.WithTimeout(ctx, 20*time.Second)
defer bCancel()
tx, err := cosmos.BroadcastTx(
bCtx,
broadcaster,
gw.fiatTfRoles.Owner,
msgs...,
)
require.NoError(t, err, "error submitting add public keys tx")
require.Zero(t, tx.Code, "cctp add pub keys transaction failed: %s - %s - %s", tx.Codespace, tx.RawLog, tx.Data)
t.Logf("Submitted add public keys tx: %s", tx.TxHash)
_, bCancel = context.WithTimeout(ctx, 20*time.Second)
defer bCancel()
nobleValidator := noble.Validators[0]
cctpModuleAccount := authtypes.NewModuleAddress(cctptypes.ModuleName).String()
_, err = nobleValidator.ExecTx(ctx, gw.fiatTfRoles.MasterMinter.KeyName(),
"fiat-tokenfactory", "configure-minter-controller", gw.fiatTfRoles.MinterController.FormattedAddress(), cctpModuleAccount, "-b", "block",
)
require.NoError(t, err, "failed to execute configure minter controller tx")
_, err = nobleValidator.ExecTx(ctx, gw.fiatTfRoles.MinterController.KeyName(),
"fiat-tokenfactory", "configure-minter", cctpModuleAccount, "1000000"+denomMetadataUsdc.Base, "-b", "block",
)
require.NoError(t, err, "failed to execute configure minter tx")
const receiver = "9B6CA0C13EB603EF207C4657E1E619EF531A4D27" //account
receiverBz, err := hex.DecodeString(receiver)
require.NoError(t, err)
nobleReceiver, err := bech32.ConvertAndEncode(nobleChainCfg.Bech32Prefix, receiverBz)
require.NoError(t, err)
burnRecipientPadded := append([]byte{0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0}, receiverBz...)
// someone burned USDC on Ethereum -> Mint on Noble
depositForBurn := cctptypes.BurnMessage{
BurnToken: burnToken,
MintRecipient: burnRecipientPadded,
Amount: cosmossdk_io_math.NewInt(1000000),
MessageSender: burnRecipientPadded,
}
depositForBurnBz, err := depositForBurn.Bytes()
require.NoError(t, err)
emptyDestinationCaller := make([]byte, 32)
wrappedDepositForBurn := cctptypes.Message{
Version: 0,
SourceDomain: 0,
DestinationDomain: 4, // Noble is 4
Nonce: 0, // dif per message
Sender: tokenMessenger,
Recipient: cctptypes.PaddedModuleAddress,
DestinationCaller: emptyDestinationCaller,
MessageBody: depositForBurnBz,
}
wrappedDepositForBurnBz, err := wrappedDepositForBurn.Bytes()
require.NoError(t, err)
digestBurn := crypto.Keccak256(wrappedDepositForBurnBz) // hashed message is the key to the attestation
attestationBurn := make([]byte, 0, len(attesters)*65) //65 byte
// CCTP requires attestations to have signatures sorted by address
sort.Slice(attesters, func(i, j int) bool {
return bytes.Compare(
crypto.PubkeyToAddress(attesters[i].PublicKey).Bytes(),
crypto.PubkeyToAddress(attesters[j].PublicKey).Bytes(),
) < 0
})
for i := range attesters {
sig, err := crypto.Sign(digestBurn, attesters[i])
require.NoError(t, err)
attestationBurn = append(attestationBurn, sig...)
}
t.Logf("Attested to messages: %s", tx.TxHash)
bCtx, bCancel = context.WithTimeout(ctx, 20*time.Second)
defer bCancel()
tx, err = cosmos.BroadcastTx(
bCtx,
broadcaster,
gw.fiatTfRoles.Owner,
&cctptypes.MsgReceiveMessage{ //note: all messages that go to noble go through MsgReceiveMessage
From: gw.fiatTfRoles.Owner.FormattedAddress(),
Message: wrappedDepositForBurnBz,
Attestation: attestationBurn,
},
)
require.NoError(t, err, "error submitting cctp burn recv tx")
require.Zerof(t, tx.Code, "cctp burn recv transaction failed: %s - %s - %s", tx.Codespace, tx.RawLog, tx.Data)
t.Logf("CCTP burn message successfully received: %s", tx.TxHash)
balance, err := noble.GetBalance(ctx, nobleReceiver, denomMetadataUsdc.Base)
require.NoError(t, err)
require.Equal(t, int64(1000000), balance)
}