1b5c33cf33
* WIP implementing state transition function * Error handling and application setup fix * Fixed error comment * Allow creation of state objects with a BaseAccount * Fixed parameters and finalise state after transaction * updated transaction signing and cli signature * Set up consistent account encoding and decoding * Update txbuilder to get sequence before generating eth tx * Added create functionality to the CLI command * Remove need to copy over context for statedb interactions * Updated account retriever * Cleaned up handler code and updated TODO * Make recoverEthSig private again * Add error check for committing to kv store * Remove commented out code * Update evm chain config for state transition * Add time in context for dapps
132 lines
4.0 KiB
Go
132 lines
4.0 KiB
Go
package evm
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import (
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"fmt"
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"math/big"
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"time"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core"
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"github.com/ethereum/go-ethereum/core/vm"
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sdk "github.com/cosmos/cosmos-sdk/types"
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emint "github.com/cosmos/ethermint/types"
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"github.com/cosmos/ethermint/x/evm/types"
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)
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// NewHandler returns a handler for Ethermint type messages.
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func NewHandler(keeper Keeper) sdk.Handler {
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return func(ctx sdk.Context, msg sdk.Msg) sdk.Result {
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switch msg := msg.(type) {
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case types.EthereumTxMsg:
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return handleETHTxMsg(ctx, keeper, msg)
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default:
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errMsg := fmt.Sprintf("Unrecognized ethermint Msg type: %v", msg.Type())
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return sdk.ErrUnknownRequest(errMsg).Result()
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}
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}
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}
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// Handle an Ethereum specific tx
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func handleETHTxMsg(ctx sdk.Context, keeper Keeper, msg types.EthereumTxMsg) sdk.Result {
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if err := msg.ValidateBasic(); err != nil {
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return err.Result()
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}
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// parse the chainID from a string to a base-10 integer
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intChainID, ok := new(big.Int).SetString(ctx.ChainID(), 10)
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if !ok {
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return emint.ErrInvalidChainID(fmt.Sprintf("invalid chainID: %s", ctx.ChainID())).Result()
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}
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// Verify signature and retrieve sender address
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sender, err := msg.VerifySig(intChainID)
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if err != nil {
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return emint.ErrInvalidSender(err.Error()).Result()
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}
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contractCreation := msg.To() == nil
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// Pay intrinsic gas
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// TODO: Check config for homestead enabled
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cost, err := core.IntrinsicGas(msg.Data.Payload, contractCreation, true)
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if err != nil {
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return emint.ErrInvalidIntrinsicGas(err.Error()).Result()
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}
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usableGas := msg.Data.GasLimit - cost
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// Create context for evm
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context := vm.Context{
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CanTransfer: core.CanTransfer,
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Transfer: core.Transfer,
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Origin: sender,
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Coinbase: common.Address{},
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BlockNumber: big.NewInt(ctx.BlockHeight()),
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Time: big.NewInt(time.Now().Unix()),
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Difficulty: big.NewInt(0x30000), // unused
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GasLimit: ctx.GasMeter().Limit(),
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GasPrice: ctx.MinGasPrices().AmountOf(emint.DenomDefault).Int,
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}
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vmenv := vm.NewEVM(context, keeper.csdb.WithContext(ctx), types.GenerateChainConfig(intChainID), vm.Config{})
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var (
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leftOverGas uint64
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addr common.Address
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vmerr error
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senderRef = vm.AccountRef(sender)
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)
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if contractCreation {
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_, addr, leftOverGas, vmerr = vmenv.Create(senderRef, msg.Data.Payload, usableGas, msg.Data.Amount)
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} else {
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// Increment the nonce for the next transaction
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keeper.csdb.SetNonce(sender, keeper.csdb.GetNonce(sender)+1)
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_, leftOverGas, vmerr = vmenv.Call(senderRef, *msg.To(), msg.Data.Payload, usableGas, msg.Data.Amount)
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}
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// handle errors
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if vmerr != nil {
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return emint.ErrVMExecution(vmerr.Error()).Result()
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}
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// Refund remaining gas from tx (Check these values and ensure gas is being consumed correctly)
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refundGas(keeper.csdb, &leftOverGas, msg.Data.GasLimit, context.GasPrice, sender)
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// add balance for the processor of the tx (determine who rewards are being processed to)
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// TODO: Double check nothing needs to be done here
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keeper.csdb.Finalise(true) // Change to depend on config
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// TODO: Remove commit from tx handler (should be done at end of block)
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_, err = keeper.csdb.Commit(true)
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if err != nil {
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return sdk.ErrUnknownRequest("Failed to write data to kv store").Result()
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}
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// TODO: Consume gas from sender
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return sdk.Result{Log: addr.Hex(), GasUsed: msg.Data.GasLimit - leftOverGas}
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}
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func refundGas(
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st vm.StateDB, gasRemaining *uint64, initialGas uint64, gasPrice *big.Int,
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from common.Address,
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) {
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// Apply refund counter, capped to half of the used gas.
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refund := (initialGas - *gasRemaining) / 2
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if refund > st.GetRefund() {
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refund = st.GetRefund()
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}
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*gasRemaining += refund
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// Return ETH for remaining gas, exchanged at the original rate.
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remaining := new(big.Int).Mul(new(big.Int).SetUint64(*gasRemaining), gasPrice)
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st.AddBalance(from, remaining)
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// // Also return remaining gas to the block gas counter so it is
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// // available for the next transaction.
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// TODO: Return gas to block gas meter?
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// st.gp.AddGas(st.gas)
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}
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