ea3ec3b7c6
* testnet docs * more changes * testnet and validators
41 lines
1.9 KiB
Markdown
41 lines
1.9 KiB
Markdown
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order: 3
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# Transaction Lifecycle
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This document describes the lifecycle of a transaction from creation to committed state changes on the EVM. {synopsis}
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### Pre-requisite Readings
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- [SDK transaction lifecycle](https://docs.cosmos.network/master/basics/tx-lifecycle.html) {prereq}
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<!-- TODO: rewrite. This is not a lifecycle doc -->
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## Routing
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Ethermint needs to parse and handle transactions routed for both the EVM and for Cosmos SDK modules. We
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attempt to achieve this by mimicking [geth's](https://github.com/ethereum/go-ethereum) `Transaction`
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structure and treat it as a unique Cosmos SDK message type. An Ethereum transaction is a single
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[`sdk.Msg`](https://godoc.org/github.com/cosmos/cosmos-sdk/types#Msg). All relevant Ethereum
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transaction information is contained in this message. This includes the signature, gas, payload,
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amount, etc.
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Being that Ethermint implements the Tendermint ABCI application interface, as transactions are
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consumed, they are passed through a series of handlers. Once such handler, the `AnteHandler`, is
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responsible for performing preliminary message execution business logic such as fee payment,
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signature verification, etc. This is particular to Cosmos SDK routed transactions. Ethereum routed
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transactions will bypass this as the EVM handles the same business logic.
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All EVM transactions are [RLP](./../core/encoding.md#rlp) encoded using a custom tx encoder.
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## Signers
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The signature processing and verification in Ethereum is performed by the `Signer` interface. The
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protocol supports different signer types based on the chain configuration params and the block number.
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+++ https://github.com/ethereum/go-ethereum/blob/v1.10.3/core/types/transaction_signing.go#L145-L166
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Ethermint supports all Ethereum `Signer`s up to the latest go-ethereum version (London, Berlin,
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EIP155, Homestead and Frontier). The chain will generate the latest `Signer` type depending on the
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`ChainConfig`.
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