laconicd-deprecated/app/ante/ante.go

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package ante
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import (
"fmt"
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"runtime/debug"
tmlog "github.com/tendermint/tendermint/libs/log"
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sdk "github.com/cosmos/cosmos-sdk/types"
sdkerrors "github.com/cosmos/cosmos-sdk/types/errors"
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"github.com/cosmos/cosmos-sdk/types/tx/signing"
authante "github.com/cosmos/cosmos-sdk/x/auth/ante"
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authtypes "github.com/cosmos/cosmos-sdk/x/auth/types"
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"github.com/evmos/ethermint/crypto/ethsecp256k1"
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)
const (
secp256k1VerifyCost uint64 = 21000
)
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// NewAnteHandler returns an ante handler responsible for attempting to route an
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// Ethereum or SDK transaction to an internal ante handler for performing
// transaction-level processing (e.g. fee payment, signature verification) before
// being passed onto it's respective handler.
func NewAnteHandler(options HandlerOptions) (sdk.AnteHandler, error) {
if err := options.validate(); err != nil {
return nil, err
}
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return func(
ctx sdk.Context, tx sdk.Tx, sim bool,
) (newCtx sdk.Context, err error) {
var anteHandler sdk.AnteHandler
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defer Recover(ctx.Logger(), &err)
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txWithExtensions, ok := tx.(authante.HasExtensionOptionsTx)
if ok {
opts := txWithExtensions.GetExtensionOptions()
if len(opts) > 0 {
switch typeURL := opts[0].GetTypeUrl(); typeURL {
case "/ethermint.evm.v1.ExtensionOptionsEthereumTx":
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// handle as *evmtypes.MsgEthereumTx
anteHandler = newEthAnteHandler(options)
case "/ethermint.types.v1.ExtensionOptionsWeb3Tx":
// handle as normal Cosmos SDK tx, except signature is checked for EIP712 representation
anteHandler = newCosmosAnteHandlerEip712(options)
case "/ethermint.types.v1.ExtensionOptionDynamicFeeTx":
// cosmos-sdk tx with dynamic fee extension
anteHandler = newCosmosAnteHandler(options)
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default:
return ctx, sdkerrors.Wrapf(
sdkerrors.ErrUnknownExtensionOptions,
"rejecting tx with unsupported extension option: %s", typeURL,
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)
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}
return anteHandler(ctx, tx, sim)
}
}
// handle as totally normal Cosmos SDK tx
switch tx.(type) {
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case sdk.Tx:
anteHandler = newCosmosAnteHandler(options)
default:
return ctx, sdkerrors.Wrapf(sdkerrors.ErrUnknownRequest, "invalid transaction type: %T", tx)
}
return anteHandler(ctx, tx, sim)
}, nil
}
func Recover(logger tmlog.Logger, err *error) {
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if r := recover(); r != nil {
*err = sdkerrors.Wrapf(sdkerrors.ErrPanic, "%v", r)
if e, ok := r.(error); ok {
logger.Error(
"ante handler panicked",
"error", e,
"stack trace", string(debug.Stack()),
)
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} else {
logger.Error(
"ante handler panicked",
"recover", fmt.Sprintf("%v", r),
)
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}
}
}
var _ authante.SignatureVerificationGasConsumer = DefaultSigVerificationGasConsumer
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// DefaultSigVerificationGasConsumer is the default implementation of SignatureVerificationGasConsumer. It consumes gas
// for signature verification based upon the public key type. The cost is fetched from the given params and is matched
// by the concrete type.
func DefaultSigVerificationGasConsumer(
meter sdk.GasMeter, sig signing.SignatureV2, params authtypes.Params,
) error {
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// support for ethereum ECDSA secp256k1 keys
_, ok := sig.PubKey.(*ethsecp256k1.PubKey)
if ok {
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meter.ConsumeGas(secp256k1VerifyCost, "ante verify: eth_secp256k1")
return nil
}
return authante.DefaultSigVerificationGasConsumer(meter, sig, params)
}