laconicd-deprecated/handlers/ante_test.go

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package handlers
import (
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"crypto/ecdsa"
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"fmt"
"math/big"
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"testing"
sdk "github.com/cosmos/cosmos-sdk/types"
"github.com/cosmos/cosmos-sdk/x/auth"
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"github.com/cosmos/cosmos-sdk/x/stake"
"github.com/cosmos/ethermint/types"
ethcrypto "github.com/ethereum/go-ethereum/crypto"
"github.com/stretchr/testify/require"
abci "github.com/tendermint/tendermint/abci/types"
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"github.com/tendermint/tendermint/libs/log"
)
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// TODO: These tests will radically change as the ante handler develops
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func TestEthTxBadSig(t *testing.T) {
tx := types.NewTransaction(uint64(0), types.TestAddr1, big.NewInt(10), 1000, big.NewInt(100), []byte{})
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// create bad signature
tx.Sign(big.NewInt(100), types.TestPrivKey2)
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ms, key := createTestMultiStore()
ctx := sdk.NewContext(ms, abci.Header{ChainID: types.TestChainID.String()}, false, nil)
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accMapper := auth.NewAccountMapper(types.NewTestCodec(), key, auth.ProtoBaseAccount)
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handler := AnteHandler(accMapper, auth.FeeCollectionKeeper{})
_, res, abort := handler(ctx, *tx)
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require.True(t, abort, "expected ante handler to abort")
require.Equal(t, sdk.ABCICodeType(0x10004), res.Code, fmt.Sprintf("invalid code returned on bad tx: %s", res.Log))
}
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func TestEthTxInsufficientGas(t *testing.T) {
tx := types.NewTransaction(uint64(0), types.TestAddr1, big.NewInt(0), 0, big.NewInt(0), []byte{})
tx.Sign(types.TestChainID, types.TestPrivKey1)
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ms, key := createTestMultiStore()
ctx := sdk.NewContext(ms, abci.Header{ChainID: types.TestChainID.String()}, false, nil)
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accMapper := auth.NewAccountMapper(types.NewTestCodec(), key, auth.ProtoBaseAccount)
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handler := AnteHandler(accMapper, auth.FeeCollectionKeeper{})
_, res, abort := handler(ctx, *tx)
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require.True(t, abort, "expected ante handler to abort")
require.Equal(t, sdk.ABCICodeType(0x1000c), res.Code, fmt.Sprintf("invalid code returned on bad tx: %s", res.Log))
}
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func TestEthTxIncorrectNonce(t *testing.T) {
// create transaction with wrong nonce 12
tx := types.NewTransaction(12, types.TestAddr2, big.NewInt(50), 1000, big.NewInt(1000), []byte("test_bytes"))
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tx.Sign(types.TestChainID, types.TestPrivKey1)
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ms, key := createTestMultiStore()
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ctx := sdk.NewContext(ms, abci.Header{ChainID: types.TestChainID.String()}, false, log.NewNopLogger())
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accMapper := auth.NewAccountMapper(types.NewTestCodec(), key, auth.ProtoBaseAccount)
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// set account in accountMapper
acc := accMapper.NewAccountWithAddress(ctx, types.TestAddr1.Bytes())
accMapper.SetAccount(ctx, acc)
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handler := AnteHandler(accMapper, auth.FeeCollectionKeeper{})
_, res, abort := handler(ctx, *tx)
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require.True(t, abort, "expected ante handler to abort")
require.Equal(t, sdk.ABCICodeType(0x10003), res.Code, fmt.Sprintf("invalid code returned on bad tx: %s", res.Log))
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}
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func TestEmbeddedTxBadSig(t *testing.T) {
testCodec := types.NewTestCodec()
testFee := types.NewTestStdFee()
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msgs := []sdk.Msg{sdk.NewTestMsg()}
tx := types.NewTestStdTx(
types.TestChainID, msgs, []int64{0}, []int64{0}, []*ecdsa.PrivateKey{types.TestPrivKey1}, testFee,
)
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// create bad signature
signBytes := types.GetStdTxSignBytes(big.NewInt(100).String(), 1, 1, testFee, msgs, "")
sig, _ := ethcrypto.Sign(signBytes, types.TestPrivKey1)
(tx.(auth.StdTx)).Signatures[0].Signature = sig
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ms, key := createTestMultiStore()
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ctx := sdk.NewContext(ms, abci.Header{ChainID: types.TestChainID.String()}, false, nil)
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accMapper := auth.NewAccountMapper(testCodec, key, auth.ProtoBaseAccount)
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// set account in accountMapper
acc := accMapper.NewAccountWithAddress(ctx, types.TestAddr1.Bytes())
accMapper.SetAccount(ctx, acc)
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handler := AnteHandler(accMapper, auth.FeeCollectionKeeper{})
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_, res, abort := handler(ctx, tx)
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require.True(t, abort, "expected ante handler to abort")
require.Equal(t, sdk.ABCICodeType(0x10004), res.Code, fmt.Sprintf("invalid code returned on bad tx: %s", res.Log))
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}
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func TestEmbeddedTxInvalidMultiMsg(t *testing.T) {
testCodec := types.NewTestCodec()
testCodec.RegisterConcrete(stake.MsgDelegate{}, "test/MsgDelegate", nil)
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msgs := []sdk.Msg{
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stake.NewMsgDelegate(types.TestAddr1.Bytes(), types.TestAddr2.Bytes(), sdk.NewCoin("steak", sdk.NewInt(50))),
stake.NewMsgDelegate(types.TestAddr2.Bytes(), types.TestAddr2.Bytes(), sdk.NewCoin("steak", sdk.NewInt(50))),
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}
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// create transaction with only one signer
tx := types.NewTestStdTx(
types.TestChainID, msgs, []int64{0}, []int64{0}, []*ecdsa.PrivateKey{types.TestPrivKey1}, types.NewTestStdFee(),
)
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ms, key := createTestMultiStore()
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ctx := sdk.NewContext(ms, abci.Header{ChainID: types.TestChainID.String()}, false, nil)
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accMapper := auth.NewAccountMapper(testCodec, key, auth.ProtoBaseAccount)
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// set accounts in accountMapper
acc1 := accMapper.NewAccountWithAddress(ctx, types.TestAddr1.Bytes())
accMapper.SetAccount(ctx, acc1)
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acc2 := accMapper.NewAccountWithAddress(ctx, types.TestAddr1.Bytes())
accMapper.SetAccount(ctx, acc2)
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handler := AnteHandler(accMapper, auth.FeeCollectionKeeper{})
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_, res, abort := handler(ctx, tx)
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require.True(t, abort, "expected ante handler to abort")
require.Equal(t, sdk.ABCICodeType(0x10004), res.Code, fmt.Sprintf("invalid code returned on bad tx: %s", res.Log))
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}
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func TestEmbeddedTxInvalidAccountNumber(t *testing.T) {
testCodec := types.NewTestCodec()
testCodec.RegisterConcrete(stake.MsgDelegate{}, "test/MsgDelegate", nil)
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msgs := []sdk.Msg{
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stake.NewMsgDelegate(types.TestAddr1.Bytes(), types.TestAddr2.Bytes(), sdk.NewCoin("steak", sdk.NewInt(50))),
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}
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// create a transaction with an invalid account number
tx := types.NewTestStdTx(
types.TestChainID, msgs, []int64{3}, []int64{0}, []*ecdsa.PrivateKey{types.TestPrivKey1}, types.NewTestStdFee(),
)
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ms, key := createTestMultiStore()
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ctx := sdk.NewContext(ms, abci.Header{ChainID: types.TestChainID.String()}, false, nil)
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accMapper := auth.NewAccountMapper(testCodec, key, auth.ProtoBaseAccount)
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// set account in accountMapper
acc := accMapper.NewAccountWithAddress(ctx, types.TestAddr1.Bytes())
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acc.SetAccountNumber(4)
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accMapper.SetAccount(ctx, acc)
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handler := AnteHandler(accMapper, auth.FeeCollectionKeeper{})
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_, res, abort := handler(ctx, tx)
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require.True(t, abort, "expected ante handler to abort")
require.Equal(t, sdk.ABCICodeType(0x10003), res.Code, fmt.Sprintf("invalid code returned on bad tx: %s", res.Log))
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}
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func TestEmbeddedTxInvalidSequence(t *testing.T) {
testCodec := types.NewTestCodec()
testCodec.RegisterConcrete(stake.MsgDelegate{}, "test/MsgDelegate", nil)
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msgs := []sdk.Msg{
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stake.NewMsgDelegate(types.TestAddr1.Bytes(), types.TestAddr2.Bytes(), sdk.NewCoin("steak", sdk.NewInt(50))),
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}
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// create transaction with an invalid sequence (nonce)
tx := types.NewTestStdTx(
types.TestChainID, msgs, []int64{4}, []int64{2}, []*ecdsa.PrivateKey{types.TestPrivKey1}, types.NewTestStdFee(),
)
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ms, key := createTestMultiStore()
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ctx := sdk.NewContext(ms, abci.Header{ChainID: types.TestChainID.String()}, false, nil)
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accMapper := auth.NewAccountMapper(types.NewTestCodec(), key, auth.ProtoBaseAccount)
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// set account in accountMapper
acc := accMapper.NewAccountWithAddress(ctx, types.TestAddr1.Bytes())
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acc.SetAccountNumber(4)
acc.SetSequence(3)
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accMapper.SetAccount(ctx, acc)
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handler := AnteHandler(accMapper, auth.FeeCollectionKeeper{})
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_, res, abort := handler(ctx, tx)
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require.True(t, abort, "expected ante handler to abort")
require.Equal(t, sdk.ABCICodeType(0x10003), res.Code, fmt.Sprintf("invalid code returned on bad tx: %s", res.Log))
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}
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func TestEmbeddedTxValid(t *testing.T) {
testCodec := types.NewTestCodec()
testCodec.RegisterConcrete(stake.MsgDelegate{}, "test/MsgDelegate", nil)
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msgs := []sdk.Msg{
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stake.NewMsgDelegate(types.TestAddr1.Bytes(), types.TestAddr2.Bytes(), sdk.NewCoin("steak", sdk.NewInt(50))),
stake.NewMsgDelegate(types.TestAddr2.Bytes(), types.TestAddr2.Bytes(), sdk.NewCoin("steak", sdk.NewInt(50))),
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}
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// create a valid transaction
tx := types.NewTestStdTx(
types.TestChainID, msgs, []int64{4, 5}, []int64{3, 1},
[]*ecdsa.PrivateKey{types.TestPrivKey1, types.TestPrivKey2}, types.NewTestStdFee(),
)
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ms, key := createTestMultiStore()
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ctx := sdk.NewContext(ms, abci.Header{ChainID: types.TestChainID.String()}, false, nil)
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accMapper := auth.NewAccountMapper(types.NewTestCodec(), key, auth.ProtoBaseAccount)
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// set accounts in the accountMapper
acc1 := accMapper.NewAccountWithAddress(ctx, types.TestAddr1.Bytes())
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acc1.SetAccountNumber(4)
acc1.SetSequence(3)
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accMapper.SetAccount(ctx, acc1)
acc2 := accMapper.NewAccountWithAddress(ctx, types.TestAddr2.Bytes())
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acc2.SetAccountNumber(5)
acc2.SetSequence(1)
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accMapper.SetAccount(ctx, acc2)
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handler := AnteHandler(accMapper, auth.FeeCollectionKeeper{})
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_, res, abort := handler(ctx, tx)
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require.False(t, abort, "expected ante handler to not abort")
require.True(t, res.IsOK(), fmt.Sprintf("result not OK on valid Tx: %s", res.Log))
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// Ensure account state updated correctly
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seq1, _ := accMapper.GetSequence(ctx, types.TestAddr1.Bytes())
seq2, _ := accMapper.GetSequence(ctx, types.TestAddr2.Bytes())
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require.Equal(t, int64(4), seq1, "account nonce did not increment correctly")
require.Equal(t, int64(2), seq2, "account nonce did not increment correctly")
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}