204 lines
6.2 KiB
Go
204 lines
6.2 KiB
Go
package handlers
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import (
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"fmt"
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"math/big"
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sdk "github.com/cosmos/cosmos-sdk/types"
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"github.com/cosmos/cosmos-sdk/x/auth"
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"github.com/cosmos/ethermint/types"
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ethcmn "github.com/ethereum/go-ethereum/common"
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)
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const (
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// TODO: Ported from the SDK and may have a different context/value for
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// Ethermint.
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verifySigCost = 100
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)
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// internalAnteHandler reflects a function signature an internal ante handler
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// must implementing. Internal ante handlers will be dependant upon the
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// transaction type.
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type internalAnteHandler func(
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sdkCtx sdk.Context, tx sdk.Tx, accMapper auth.AccountKeeper,
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) (newCtx sdk.Context, res sdk.Result, abort bool)
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// AnteHandler is responsible for attempting to route an Ethereum or SDK
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// transaction to an internal ante handler for performing transaction-level
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// processing (e.g. fee payment, signature verification) before being passed
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// onto it's respective handler.
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func AnteHandler(ak auth.AccountKeeper, _ auth.FeeCollectionKeeper) sdk.AnteHandler {
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return func(sdkCtx sdk.Context, tx sdk.Tx, simulate bool) (newCtx sdk.Context, res sdk.Result, abort bool) {
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var (
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handler internalAnteHandler
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gasLimit int64
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)
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switch tx := tx.(type) {
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case types.Transaction:
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gasLimit = int64(tx.Data().GasLimit)
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handler = handleEthTx
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case auth.StdTx:
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gasLimit = tx.Fee.Gas
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handler = handleEmbeddedTx
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default:
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return sdkCtx, sdk.ErrInternal(fmt.Sprintf("invalid transaction: %T", tx)).Result(), true
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}
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newCtx = sdkCtx.WithGasMeter(sdk.NewGasMeter(gasLimit))
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// AnteHandlers must have their own defer/recover in order for the
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// BaseApp to know how much gas was used! This is because the GasMeter
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// is created in the AnteHandler, but if it panics the context won't be
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// set properly in runTx's recover.
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defer func() {
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if r := recover(); r != nil {
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switch rType := r.(type) {
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case sdk.ErrorOutOfGas:
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log := fmt.Sprintf("out of gas in location: %v", rType.Descriptor)
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res = sdk.ErrOutOfGas(log).Result()
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res.GasWanted = gasLimit
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res.GasUsed = newCtx.GasMeter().GasConsumed()
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abort = true
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default:
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panic(r)
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}
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}
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}()
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return handler(newCtx, tx, ak)
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}
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}
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// handleEthTx implements an ante handler for an Ethereum transaction. It
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// validates the signature and if valid returns an OK result.
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func handleEthTx(sdkCtx sdk.Context, tx sdk.Tx, ak auth.AccountKeeper) (sdk.Context, sdk.Result, bool) {
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ethTx, ok := tx.(types.Transaction)
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if !ok {
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return sdkCtx, sdk.ErrInternal(fmt.Sprintf("invalid transaction: %T", tx)).Result(), true
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}
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// the SDK chainID is a string representation of integer
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chainID, ok := new(big.Int).SetString(sdkCtx.ChainID(), 10)
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if !ok {
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return sdkCtx, sdk.ErrInternal(fmt.Sprintf("invalid chainID: %s", sdkCtx.ChainID())).Result(), true
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}
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sdkCtx.GasMeter().ConsumeGas(verifySigCost, "ante: verify Ethereum signature")
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addr, err := ethTx.VerifySig(chainID)
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if err != nil {
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return sdkCtx, sdk.ErrUnauthorized("signature verification failed").Result(), true
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}
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acc := ak.GetAccount(sdkCtx, addr.Bytes())
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// validate the account nonce (referred to as sequence in the AccountMapper)
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seq := acc.GetSequence()
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if ethTx.Data().AccountNonce != uint64(seq) {
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return sdkCtx, sdk.ErrInvalidSequence(fmt.Sprintf("invalid account nonce; expected: %d", seq)).Result(), true
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}
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// TODO: The EVM will handle incrementing the nonce (sequence number)
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//
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// TODO: Investigate gas consumption models as the EVM instruction set has its
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// own and we should probably not charge for additional gas where we don't have
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// to.
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ak.SetAccount(sdkCtx, acc)
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return sdkCtx, sdk.Result{GasWanted: int64(ethTx.Data().GasLimit)}, false
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}
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// handleEmbeddedTx implements an ante handler for an SDK transaction. It
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// validates the signature and if valid returns an OK result.
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func handleEmbeddedTx(sdkCtx sdk.Context, tx sdk.Tx, ak auth.AccountKeeper) (sdk.Context, sdk.Result, bool) {
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stdTx, ok := tx.(auth.StdTx)
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if !ok {
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return sdkCtx, sdk.ErrInternal(fmt.Sprintf("invalid transaction: %T", tx)).Result(), true
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}
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if err := validateStdTxBasic(stdTx); err != nil {
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return sdkCtx, err.Result(), true
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}
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signerAddrs := stdTx.GetSigners()
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signerAccs := make([]auth.Account, len(signerAddrs))
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// validate signatures
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for i, sig := range stdTx.Signatures {
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signer := ethcmn.BytesToAddress(signerAddrs[i].Bytes())
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acc, err := validateSignature(sdkCtx, stdTx, signer, sig, ak)
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if err != nil {
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return sdkCtx, err.Result(), true
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}
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// TODO: Fees!
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ak.SetAccount(sdkCtx, acc)
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signerAccs[i] = acc
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}
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newCtx := auth.WithSigners(sdkCtx, signerAccs)
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return newCtx, sdk.Result{GasWanted: stdTx.Fee.Gas}, false
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}
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// validateStdTxBasic validates an auth.StdTx based on parameters that do not
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// depend on the context.
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func validateStdTxBasic(stdTx auth.StdTx) (err sdk.Error) {
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sigs := stdTx.Signatures
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if len(sigs) == 0 {
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return sdk.ErrUnauthorized("transaction missing signatures")
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}
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signerAddrs := stdTx.GetSigners()
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if len(sigs) != len(signerAddrs) {
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return sdk.ErrUnauthorized("invalid number of transaction signers")
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}
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return nil
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}
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func validateSignature(
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sdkCtx sdk.Context, stdTx auth.StdTx, signer ethcmn.Address,
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sig auth.StdSignature, ak auth.AccountKeeper,
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) (acc auth.Account, sdkErr sdk.Error) {
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chainID := sdkCtx.ChainID()
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acc = ak.GetAccount(sdkCtx, signer.Bytes())
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if acc == nil {
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return nil, sdk.ErrUnknownAddress(fmt.Sprintf("no account with address %s found", signer))
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}
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accNum := acc.GetAccountNumber()
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if accNum != sig.AccountNumber {
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return nil, sdk.ErrInvalidSequence(
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fmt.Sprintf("invalid account number; got %d, expected %d", sig.AccountNumber, accNum))
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}
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accSeq := acc.GetSequence()
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if accSeq != sig.Sequence {
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return nil, sdk.ErrInvalidSequence(
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fmt.Sprintf("invalid account sequence; got %d, expected %d", sig.Sequence, accSeq))
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}
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err := acc.SetSequence(accSeq + 1)
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if err != nil {
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return nil, sdk.ErrInternal(err.Error())
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}
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signBytes := types.GetStdTxSignBytes(chainID, accNum, accSeq, stdTx.Fee, stdTx.GetMsgs(), stdTx.Memo)
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// consume gas for signature verification
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sdkCtx.GasMeter().ConsumeGas(verifySigCost, "ante signature verification")
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if err := types.ValidateSigner(signBytes, sig.Signature, signer); err != nil {
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return nil, sdk.ErrUnauthorized(err.Error())
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}
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return
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}
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