201 lines
6.0 KiB
Go
201 lines
6.0 KiB
Go
package ante_test
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import (
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"errors"
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"fmt"
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"testing"
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minttypes "github.com/cosmos/cosmos-sdk/x/mint/types"
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"github.com/stretchr/testify/suite"
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tmproto "github.com/tendermint/tendermint/proto/tendermint/types"
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"github.com/cosmos/cosmos-sdk/client"
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"github.com/cosmos/cosmos-sdk/client/tx"
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cryptotypes "github.com/cosmos/cosmos-sdk/crypto/types"
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"github.com/cosmos/cosmos-sdk/simapp"
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"github.com/cosmos/cosmos-sdk/testutil/testdata"
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sdk "github.com/cosmos/cosmos-sdk/types"
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"github.com/cosmos/cosmos-sdk/types/tx/signing"
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"github.com/cosmos/cosmos-sdk/x/auth/ante"
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xauthsigning "github.com/cosmos/cosmos-sdk/x/auth/signing"
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"github.com/cosmos/cosmos-sdk/x/auth/types"
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authtypes "github.com/cosmos/cosmos-sdk/x/auth/types"
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)
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// TestAccount represents an account used in the tests in x/auth/ante.
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type TestAccount struct {
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acc types.AccountI
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priv cryptotypes.PrivKey
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}
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// AnteTestSuite is a test suite to be used with ante handler tests.
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type AnteTestSuite struct {
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suite.Suite
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app *simapp.SimApp
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anteHandler sdk.AnteHandler
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ctx sdk.Context
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clientCtx client.Context
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txBuilder client.TxBuilder
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}
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// returns context and app with params set on account keeper
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func createTestApp(isCheckTx bool) (*simapp.SimApp, sdk.Context) {
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app := simapp.Setup(isCheckTx)
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ctx := app.BaseApp.NewContext(isCheckTx, tmproto.Header{})
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app.AccountKeeper.SetParams(ctx, authtypes.DefaultParams())
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return app, ctx
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}
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// SetupTest setups a new test, with new app, context, and anteHandler.
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func (suite *AnteTestSuite) SetupTest(isCheckTx bool) {
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suite.app, suite.ctx = createTestApp(isCheckTx)
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suite.ctx = suite.ctx.WithBlockHeight(1)
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// Set up TxConfig.
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encodingConfig := simapp.MakeTestEncodingConfig()
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// We're using TestMsg encoding in some tests, so register it here.
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encodingConfig.Amino.RegisterConcrete(&testdata.TestMsg{}, "testdata.TestMsg", nil)
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testdata.RegisterInterfaces(encodingConfig.InterfaceRegistry)
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suite.clientCtx = client.Context{}.
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WithTxConfig(encodingConfig.TxConfig)
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anteHandler, err := ante.NewAnteHandler(
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ante.HandlerOptions{
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AccountKeeper: suite.app.AccountKeeper,
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BankKeeper: suite.app.BankKeeper,
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FeegrantKeeper: suite.app.FeeGrantKeeper,
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SignModeHandler: encodingConfig.TxConfig.SignModeHandler(),
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SigGasConsumer: ante.DefaultSigVerificationGasConsumer,
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},
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)
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suite.Require().NoError(err)
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suite.anteHandler = anteHandler
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}
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// CreateTestAccounts creates `numAccs` accounts, and return all relevant
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// information about them including their private keys.
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func (suite *AnteTestSuite) CreateTestAccounts(numAccs int) []TestAccount {
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var accounts []TestAccount
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for i := 0; i < numAccs; i++ {
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priv, _, addr := testdata.KeyTestPubAddr()
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acc := suite.app.AccountKeeper.NewAccountWithAddress(suite.ctx, addr)
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err := acc.SetAccountNumber(uint64(i))
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suite.Require().NoError(err)
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suite.app.AccountKeeper.SetAccount(suite.ctx, acc)
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someCoins := sdk.Coins{
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sdk.NewInt64Coin("atom", 10000000),
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}
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err = suite.app.BankKeeper.MintCoins(suite.ctx, minttypes.ModuleName, someCoins)
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suite.Require().NoError(err)
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err = suite.app.BankKeeper.SendCoinsFromModuleToAccount(suite.ctx, minttypes.ModuleName, addr, someCoins)
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suite.Require().NoError(err)
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accounts = append(accounts, TestAccount{acc, priv})
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}
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return accounts
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}
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// CreateTestTx is a helper function to create a tx given multiple inputs.
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func (suite *AnteTestSuite) CreateTestTx(privs []cryptotypes.PrivKey, accNums []uint64, accSeqs []uint64, chainID string) (xauthsigning.Tx, error) {
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// First round: we gather all the signer infos. We use the "set empty
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// signature" hack to do that.
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var sigsV2 []signing.SignatureV2
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for i, priv := range privs {
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sigV2 := signing.SignatureV2{
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PubKey: priv.PubKey(),
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Data: &signing.SingleSignatureData{
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SignMode: suite.clientCtx.TxConfig.SignModeHandler().DefaultMode(),
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Signature: nil,
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},
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Sequence: accSeqs[i],
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}
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sigsV2 = append(sigsV2, sigV2)
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}
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err := suite.txBuilder.SetSignatures(sigsV2...)
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if err != nil {
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return nil, err
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}
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// Second round: all signer infos are set, so each signer can sign.
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sigsV2 = []signing.SignatureV2{}
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for i, priv := range privs {
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signerData := xauthsigning.SignerData{
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ChainID: chainID,
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AccountNumber: accNums[i],
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Sequence: accSeqs[i],
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}
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sigV2, err := tx.SignWithPrivKey(
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suite.clientCtx.TxConfig.SignModeHandler().DefaultMode(), signerData,
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suite.txBuilder, priv, suite.clientCtx.TxConfig, accSeqs[i])
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if err != nil {
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return nil, err
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}
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sigsV2 = append(sigsV2, sigV2)
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}
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err = suite.txBuilder.SetSignatures(sigsV2...)
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if err != nil {
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return nil, err
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}
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return suite.txBuilder.GetTx(), nil
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}
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// TestCase represents a test case used in test tables.
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type TestCase struct {
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desc string
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malleate func()
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simulate bool
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expPass bool
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expErr error
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}
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// CreateTestTx is a helper function to create a tx given multiple inputs.
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func (suite *AnteTestSuite) RunTestCase(privs []cryptotypes.PrivKey, msgs []sdk.Msg, feeAmount sdk.Coins, gasLimit uint64, accNums, accSeqs []uint64, chainID string, tc TestCase) {
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suite.Run(fmt.Sprintf("Case %s", tc.desc), func() {
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suite.Require().NoError(suite.txBuilder.SetMsgs(msgs...))
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suite.txBuilder.SetFeeAmount(feeAmount)
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suite.txBuilder.SetGasLimit(gasLimit)
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// Theoretically speaking, ante handler unit tests should only test
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// ante handlers, but here we sometimes also test the tx creation
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// process.
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tx, txErr := suite.CreateTestTx(privs, accNums, accSeqs, chainID)
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newCtx, anteErr := suite.anteHandler(suite.ctx, tx, tc.simulate)
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if tc.expPass {
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suite.Require().NoError(txErr)
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suite.Require().NoError(anteErr)
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suite.Require().NotNil(newCtx)
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suite.ctx = newCtx
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} else {
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switch {
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case txErr != nil:
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suite.Require().Error(txErr)
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suite.Require().True(errors.Is(txErr, tc.expErr))
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case anteErr != nil:
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suite.Require().Error(anteErr)
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suite.Require().True(errors.Is(anteErr, tc.expErr))
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default:
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suite.Fail("expected one of txErr,anteErr to be an error")
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}
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}
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})
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}
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func TestAnteTestSuite(t *testing.T) {
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suite.Run(t, new(AnteTestSuite))
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}
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