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* Added basic async capabilities for vm2. This is a whole new Git branch, not the same one as last time (https://github.com/status-im/nimbus-eth1/pull/1250) - there wasn't much worth salvaging. Main differences: I didn't do the "each opcode has to specify an async handler" junk that I put in last time. Instead, in oph_memory.nim you can see sloadOp calling asyncChainTo and passing in an async operation. That async operation is then run by the execCallOrCreate (or asyncExecCallOrCreate) code in interpreter_dispatch.nim. In the test code, the (previously existing) macro called "assembler" now allows you to add a section called "initialStorage", specifying fake data to be used by the EVM computation run by that test. (In the long run we'll obviously want to write tests that for-real use the JSON-RPC API to asynchronously fetch data; for now, this was just an expedient way to write a basic unit test that exercises the async-EVM code pathway.) There's also a new macro called "concurrentAssemblers" that allows you to write a test that runs multiple assemblers concurrently (and then waits for them all to finish). There's one example test using this, in test_op_memory_lazy.nim, though you can't actually see it doing so unless you uncomment some echo statements in async_operations.nim (in which case you can see the two concurrently running EVM computations each printing out what they're doing, and you'll see that they interleave). A question: is it possible to make EVMC work asynchronously? (For now, this code compiles and "make test" passes even if ENABLE_EVMC is turned on, but it doesn't actually work asynchronously, it just falls back on doing the usual synchronous EVMC thing. See FIXME-asyncAndEvmc.) * Moved the AsyncOperationFactory to the BaseVMState object. * Made the AsyncOperationFactory into a table of fn pointers. Also ditched the plain-data Vm2AsyncOperation type; it wasn't really serving much purpose. Instead, the pendingAsyncOperation field directly contains the Future. * Removed the hasStorage idea. It's not the right solution to the "how do we know whether we still need to fetch the storage value or not?" problem. I haven't implemented the right solution yet, but at least we're better off not putting in a wrong one. * Added/modified/removed some comments. (Based on feedback on the PR.) * Removed the waitFor from execCallOrCreate. There was some back-and-forth in the PR regarding whether nested waitFor calls are acceptable: https://github.com/status-im/nimbus-eth1/pull/1260#discussion_r998587449 The eventual decision was to just change the waitFor to a doAssert (since we probably won't want this extra functionality when running synchronously anyway) to make sure that the Future is already finished.
373 lines
12 KiB
Nim
373 lines
12 KiB
Nim
# Nimbus
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# Copyright (c) 2018 Status Research & Development GmbH
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# Licensed under either of
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# * Apache License, version 2.0, ([LICENSE-APACHE](LICENSE-APACHE) or
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# http://www.apache.org/licenses/LICENSE-2.0)
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# * MIT license ([LICENSE-MIT](LICENSE-MIT) or
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# http://opensource.org/licenses/MIT)
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# at your option. This file may not be copied, modified, or distributed except
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# according to those terms.
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import
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../constants, ../forks,
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../db/accounts_cache,
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../utils,
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./code_stream,
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./interpreter/[gas_meter, gas_costs, op_codes],
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./memory,
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./message,
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./stack,
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./state,
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./transaction_tracer,
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./types,
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chronicles,
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chronos,
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eth/[common, keys],
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options,
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sets
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logScope:
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topics = "vm computation"
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when defined(chronicles_log_level):
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import stew/byteutils
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when defined(evmc_enabled):
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import
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evmc/evmc,
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evmc_helpers,
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evmc_api,
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stew/ranges/ptr_arith
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export
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evmc,
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evmc_helpers,
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evmc_api,
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ptr_arith
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const
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evmc_enabled* = defined(evmc_enabled)
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# ------------------------------------------------------------------------------
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# Helpers
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# ------------------------------------------------------------------------------
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proc generateContractAddress(c: Computation, salt: ContractSalt): EthAddress =
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if c.msg.kind == evmcCreate:
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let creationNonce = c.vmState.readOnlyStateDB().getNonce(c.msg.sender)
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result = generateAddress(c.msg.sender, creationNonce)
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else:
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result = generateSafeAddress(c.msg.sender, salt, c.msg.data)
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# ------------------------------------------------------------------------------
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# Public functions
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# ------------------------------------------------------------------------------
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template getCoinbase*(c: Computation): EthAddress =
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when evmc_enabled:
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c.host.getTxContext().block_coinbase
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else:
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c.vmState.coinbase
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template getTimestamp*(c: Computation): int64 =
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when evmc_enabled:
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c.host.getTxContext().block_timestamp
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else:
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c.vmState.timestamp.toUnix
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template getBlockNumber*(c: Computation): UInt256 =
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when evmc_enabled:
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c.host.getTxContext().block_number.u256
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else:
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c.vmState.blockNumber.blockNumberToVmWord
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template getDifficulty*(c: Computation): DifficultyInt =
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when evmc_enabled:
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UInt256.fromEvmc c.host.getTxContext().block_prev_randao
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else:
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c.vmState.difficulty
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template getGasLimit*(c: Computation): GasInt =
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when evmc_enabled:
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c.host.getTxContext().block_gas_limit.GasInt
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else:
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c.vmState.gasLimit
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template getBaseFee*(c: Computation): UInt256 =
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when evmc_enabled:
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UInt256.fromEvmc c.host.getTxContext().block_base_fee
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else:
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c.vmState.baseFee
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template getChainId*(c: Computation): uint =
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when evmc_enabled:
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UInt256.fromEvmc(c.host.getTxContext().chain_id).truncate(uint)
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else:
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c.vmState.chainDB.config.chainId.uint
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template getOrigin*(c: Computation): EthAddress =
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when evmc_enabled:
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c.host.getTxContext().tx_origin
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else:
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c.vmState.txOrigin
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template getGasPrice*(c: Computation): GasInt =
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when evmc_enabled:
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UInt256.fromEvmc(c.host.getTxContext().tx_gas_price).truncate(GasInt)
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else:
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c.vmState.txGasPrice
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template getBlockHash*(c: Computation, blockNumber: UInt256): Hash256 =
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when evmc_enabled:
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c.host.getBlockHash(blockNumber)
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else:
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c.vmState.getAncestorHash(blockNumber.vmWordToBlockNumber)
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template accountExists*(c: Computation, address: EthAddress): bool =
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when evmc_enabled:
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c.host.accountExists(address)
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else:
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if c.fork >= FkSpurious:
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not c.vmState.readOnlyStateDB.isDeadAccount(address)
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else:
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c.vmState.readOnlyStateDB.accountExists(address)
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template getStorage*(c: Computation, slot: UInt256): UInt256 =
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when evmc_enabled:
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c.host.getStorage(c.msg.contractAddress, slot)
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else:
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c.vmState.readOnlyStateDB.getStorage(c.msg.contractAddress, slot)
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template getBalance*(c: Computation, address: EthAddress): UInt256 =
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when evmc_enabled:
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c.host.getBalance(address)
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else:
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c.vmState.readOnlyStateDB.getBalance(address)
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template getCodeSize*(c: Computation, address: EthAddress): uint =
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when evmc_enabled:
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c.host.getCodeSize(address)
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else:
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uint(c.vmState.readOnlyStateDB.getCodeSize(address))
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template getCodeHash*(c: Computation, address: EthAddress): Hash256 =
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when evmc_enabled:
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c.host.getCodeHash(address)
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else:
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let
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db = c.vmState.readOnlyStateDB
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if not db.accountExists(address) or db.isEmptyAccount(address):
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default(Hash256)
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else:
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db.getCodeHash(address)
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template selfDestruct*(c: Computation, address: EthAddress) =
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when evmc_enabled:
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c.host.selfDestruct(c.msg.contractAddress, address)
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else:
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c.execSelfDestruct(address)
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template getCode*(c: Computation, address: EthAddress): seq[byte] =
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when evmc_enabled:
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c.host.copyCode(address)
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else:
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c.vmState.readOnlyStateDB.getCode(address)
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proc newComputation*(vmState: BaseVMState, message: Message,
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salt: ContractSalt = ZERO_CONTRACTSALT): Computation =
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new result
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result.vmState = vmState
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result.msg = message
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result.memory = Memory()
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result.stack = newStack()
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result.returnStack = @[]
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result.gasMeter.init(message.gas)
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result.touchedAccounts = initHashSet[EthAddress]()
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result.selfDestructs = initHashSet[EthAddress]()
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if result.msg.isCreate():
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result.msg.contractAddress = result.generateContractAddress(salt)
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result.code = newCodeStream(message.data)
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message.data = @[]
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else:
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result.code = newCodeStream(
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vmState.readOnlyStateDB.getCode(message.codeAddress))
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proc newComputation*(vmState: BaseVMState, message: Message, code: seq[byte]): Computation =
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new result
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result.vmState = vmState
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result.msg = message
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result.memory = Memory()
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result.stack = newStack()
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result.returnStack = @[]
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result.gasMeter.init(message.gas)
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result.touchedAccounts = initHashSet[EthAddress]()
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result.selfDestructs = initHashSet[EthAddress]()
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result.code = newCodeStream(code)
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template gasCosts*(c: Computation): untyped =
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c.vmState.gasCosts
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template fork*(c: Computation): untyped =
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c.vmState.fork
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proc isOriginComputation*(c: Computation): bool =
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# Is this computation the computation initiated by a transaction
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c.msg.sender == c.vmState.txOrigin
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template isSuccess*(c: Computation): bool =
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c.error.isNil
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template isError*(c: Computation): bool =
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not c.isSuccess
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func shouldBurnGas*(c: Computation): bool =
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c.isError and c.error.burnsGas
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proc isSelfDestructed*(c: Computation, address: EthAddress): bool =
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result = address in c.selfDestructs
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proc snapshot*(c: Computation) =
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c.savePoint = c.vmState.stateDB.beginSavepoint()
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proc commit*(c: Computation) =
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c.vmState.stateDB.commit(c.savePoint)
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proc dispose*(c: Computation) {.inline.} =
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c.vmState.stateDB.safeDispose(c.savePoint)
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c.savePoint = nil
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proc rollback*(c: Computation) =
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c.vmState.stateDB.rollback(c.savePoint)
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proc setError*(c: Computation, msg: string, burnsGas = false) {.inline.} =
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c.error = Error(info: msg, burnsGas: burnsGas)
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proc writeContract*(c: Computation) =
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template withExtra(tracer: untyped, args: varargs[untyped]) =
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tracer args, newContract=($c.msg.contractAddress),
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blockNumber=c.vmState.blockNumber,
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parentHash=($c.vmState.parent.blockHash)
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# In each check below, they are guarded by `len > 0`. This includes writing
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# out the code, because the account already has zero-length code to handle
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# nested calls (this is specified). May as well simplify other branches.
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let (len, fork) = (c.output.len, c.fork)
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if len == 0:
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return
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# EIP-3541 constraint (https://eips.ethereum.org/EIPS/eip-3541).
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if fork >= FkLondon and c.output[0] == 0xEF.byte:
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withExtra trace, "New contract code starts with 0xEF byte, not allowed by EIP-3541"
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# TODO: Return `EVMC_CONTRACT_VALIDATION_FAILURE` (like Silkworm).
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c.setError("EVMC_CONTRACT_VALIDATION_FAILURE", true)
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return
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# EIP-170 constraint (https://eips.ethereum.org/EIPS/eip-3541).
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if fork >= FkSpurious and len > EIP170_MAX_CODE_SIZE:
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withExtra trace, "New contract code exceeds EIP-170 limit",
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codeSize=len, maxSize=EIP170_MAX_CODE_SIZE
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# TODO: Return `EVMC_OUT_OF_GAS` (like Silkworm).
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c.setError("EVMC_OUT_OF_GAS", true)
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return
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# Charge gas and write the code even if the code address is self-destructed.
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# Non-empty code in a newly created, self-destructed account is possible if
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# the init code calls `DELEGATECALL` or `CALLCODE` to other code which uses
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# `SELFDESTRUCT`. This shows on Mainnet blocks 6001128..6001204, where the
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# gas difference matters. The new code can be called later in the
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# transaction too, before self-destruction wipes the account at the end.
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let gasParams = GasParams(kind: Create, cr_memLength: len)
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let codeCost = c.gasCosts[Create].c_handler(0.u256, gasParams).gasCost
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if codeCost <= c.gasMeter.gasRemaining:
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c.gasMeter.consumeGas(codeCost, reason = "Write new contract code")
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c.vmState.mutateStateDB:
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db.setCode(c.msg.contractAddress, c.output)
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withExtra trace, "Writing new contract code"
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return
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if fork >= FkHomestead:
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# EIP-2 (https://eips.ethereum.org/EIPS/eip-2).
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# TODO: Return `EVMC_OUT_OF_GAS` (like Silkworm).
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c.setError("EVMC_OUT_OF_GAS", true)
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else:
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# Before EIP-2, when out of gas for code storage, the account ends up with
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# zero-length code and no error. No gas is charged. Code cited in EIP-2:
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# https://github.com/ethereum/pyethereum/blob/d117c8f3fd93/ethereum/processblock.py#L304
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# https://github.com/ethereum/go-ethereum/blob/401354976bb4/core/vm/instructions.go#L586
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# The account already has zero-length code to handle nested calls.
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withExtra trace, "New contract given empty code by pre-Homestead rules"
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template chainTo*(c: Computation, toChild: typeof(c.child), after: untyped) =
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c.child = toChild
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c.continuation = proc() =
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c.continuation = nil
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after
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# Register an async operation to be performed before the continuation is called.
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template asyncChainTo*(c: Computation, asyncOperation: Future[void], after: untyped) =
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c.pendingAsyncOperation = asyncOperation
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c.continuation = proc() =
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c.continuation = nil
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after
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proc merge*(c, child: Computation) =
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c.logEntries.add child.logEntries
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c.gasMeter.refundGas(child.gasMeter.gasRefunded)
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c.selfDestructs.incl child.selfDestructs
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c.touchedAccounts.incl child.touchedAccounts
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proc execSelfDestruct*(c: Computation, beneficiary: EthAddress) =
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c.vmState.mutateStateDB:
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let
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localBalance = c.getBalance(c.msg.contractAddress)
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beneficiaryBalance = c.getBalance(beneficiary)
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# Transfer to beneficiary
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db.setBalance(beneficiary, localBalance + beneficiaryBalance)
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# Zero the balance of the address being deleted.
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# This must come after sending to beneficiary in case the
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# contract named itself as the beneficiary.
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db.setBalance(c.msg.contractAddress, 0.u256)
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trace "SELFDESTRUCT",
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contractAddress = c.msg.contractAddress.toHex,
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localBalance = localBalance.toString,
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beneficiary = beneficiary.toHex
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c.touchedAccounts.incl beneficiary
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# Register the account to be deleted
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c.selfDestructs.incl(c.msg.contractAddress)
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proc addLogEntry*(c: Computation, log: Log) {.inline.} =
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c.logEntries.add(log)
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proc getGasRefund*(c: Computation): GasInt =
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if c.isSuccess:
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result = c.gasMeter.gasRefunded
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proc refundSelfDestruct*(c: Computation) =
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let cost = gasFees[c.fork][RefundSelfDestruct]
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c.gasMeter.refundGas(cost * c.selfDestructs.len)
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proc tracingEnabled*(c: Computation): bool {.inline.} =
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TracerFlags.EnableTracing in c.vmState.tracer.flags
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proc traceOpCodeStarted*(c: Computation, op: Op): int {.inline.} =
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c.vmState.tracer.traceOpCodeStarted(c, op)
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proc traceOpCodeEnded*(c: Computation, op: Op, lastIndex: int) {.inline.} =
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c.vmState.tracer.traceOpCodeEnded(c, op, lastIndex)
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proc traceError*(c: Computation) {.inline.} =
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c.vmState.tracer.traceError(c)
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proc prepareTracer*(c: Computation) {.inline.} =
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c.vmState.tracer.prepare(c.msg.depth)
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# ------------------------------------------------------------------------------
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# End
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# ------------------------------------------------------------------------------
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