backport from test_blockchain_json, see issue #666
This commit is contained in:
parent
cbed4a368b
commit
ce8e5511e3
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@ -2,51 +2,11 @@ import options, sets,
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eth/[common, bloom, trie/db], chronicles, nimcrypto,
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../db/[db_chain, accounts_cache],
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../utils, ../constants, ../transaction,
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../vm_state, ../vm_types, ../vm_state_transactions,
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../vm_computation, ../vm_message, ../vm_precompiles,
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../vm_state, ../vm_types,
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../vm_types2,
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./dao, ../config,
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./dao, ./validate, ../config,
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../transaction/call_evm
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proc validateTransaction*(vmState: BaseVMState, tx: Transaction,
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sender: EthAddress, fork: Fork): bool =
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let balance = vmState.readOnlyStateDB.getBalance(sender)
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let nonce = vmState.readOnlyStateDB.getNonce(sender)
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if vmState.cumulativeGasUsed + tx.gasLimit > vmState.blockHeader.gasLimit:
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debug "invalid tx: block header gasLimit reached",
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maxLimit=vmState.blockHeader.gasLimit,
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gasUsed=vmState.cumulativeGasUsed,
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addition=tx.gasLimit
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return
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let gasCost = tx.gasLimit.u256 * tx.gasPrice.u256
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if gasCost > balance:
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debug "invalid tx: not enough cash for gas",
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available=balance,
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require=gasCost
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return
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if tx.value > balance - gasCost:
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debug "invalid tx: not enough cash to send",
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available=balance,
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availableMinusGas=balance-gasCost,
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require=tx.value
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return
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if tx.gasLimit < tx.intrinsicGas(fork):
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debug "invalid tx: not enough gas to perform calculation",
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available=tx.gasLimit,
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require=tx.intrinsicGas(fork)
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return
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if tx.nonce != nonce:
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debug "invalid tx: account nonce mismatch",
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txNonce=tx.nonce,
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accountNonce=nonce
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return
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result = true
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proc processTransaction*(tx: Transaction, sender: EthAddress, vmState: BaseVMState, fork: Fork): GasInt =
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## Process the transaction, write the results to db.
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@ -0,0 +1,345 @@
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# 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,
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../db/[db_chain, accounts_cache],
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../errors,
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../transaction,
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../utils,
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../utils/header,
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../vm_state,
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../vm_types,
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../vm_types2,
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chronicles,
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eth/[common, rlp],
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eth/trie/trie_defs,
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ethash,
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nimcrypto,
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options,
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sets,
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stew/endians2,
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strutils,
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tables,
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times
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type
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MiningHeader = object
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parentHash : Hash256
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ommersHash : Hash256
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coinbase : EthAddress
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stateRoot : Hash256
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txRoot : Hash256
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receiptRoot : Hash256
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bloom : common.BloomFilter
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difficulty : DifficultyInt
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blockNumber : BlockNumber
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gasLimit : GasInt
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gasUsed : GasInt
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timestamp : EthTime
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extraData : Blob
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Hash512 = MDigest[512]
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const
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CACHE_MAX_ITEMS = 10
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var cacheByEpoch = initOrderedTable[uint64, seq[Hash512]]()
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# ------------------------------------------------------------------------------
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# Private functions
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# ------------------------------------------------------------------------------
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proc mkCacheBytes(blockNumber: uint64): seq[Hash512] =
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mkcache(getCacheSize(blockNumber), getSeedhash(blockNumber))
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proc getCache(blockNumber: uint64): seq[Hash512] =
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# TODO: this is very inefficient
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let epochIndex = blockNumber div EPOCH_LENGTH
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# Get the cache if already generated, marking it as recently used
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if epochIndex in cacheByEpoch:
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let c = cacheByEpoch[epochIndex]
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cacheByEpoch.del(epochIndex) # pop and append at end
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cacheByEpoch[epochIndex] = c
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return c
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# Generate the cache if it was not already in memory
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# Simulate requesting mkcache by block number: multiply index by epoch length
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let c = mkCacheBytes(epochIndex * EPOCH_LENGTH)
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cacheByEpoch[epochIndex] = c
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# Limit memory usage for cache
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if cacheByEpoch.len > CACHE_MAX_ITEMS:
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cacheByEpoch.del(epochIndex)
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shallowCopy(result, c)
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func cacheHash(x: openArray[Hash512]): Hash256 =
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var ctx: keccak256
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ctx.init()
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for a in x:
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ctx.update(a.data[0].unsafeAddr, uint(a.data.len))
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ctx.finish result.data
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ctx.clear()
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proc checkPOW(blockNumber: Uint256, miningHash, mixHash: Hash256,
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nonce: BlockNonce, difficulty: DifficultyInt) =
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let blockNumber = blockNumber.truncate(uint64)
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let cache = blockNumber.getCache()
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let size = getDataSize(blockNumber)
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let miningOutput = hashimotoLight(
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size, cache, miningHash, uint64.fromBytesBE(nonce))
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if miningOutput.mixDigest != mixHash:
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echo "actual: ", miningOutput.mixDigest
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echo "expected: ", mixHash
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echo "blockNumber: ", blockNumber
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echo "miningHash: ", miningHash
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echo "nonce: ", nonce.toHex
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echo "difficulty: ", difficulty
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echo "size: ", size
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echo "cache hash: ", cacheHash(cache)
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raise newException(ValidationError, "mixHash mismatch")
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let value = Uint256.fromBytesBE(miningOutput.value.data)
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if value > Uint256.high div difficulty:
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raise newException(ValidationError, "mining difficulty error")
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func toMiningHeader(header: BlockHeader): MiningHeader =
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result.parentHash = header.parentHash
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result.ommersHash = header.ommersHash
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result.coinbase = header.coinbase
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result.stateRoot = header.stateRoot
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result.txRoot = header.txRoot
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result.receiptRoot = header.receiptRoot
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result.bloom = header.bloom
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result.difficulty = header.difficulty
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result.blockNumber = header.blockNumber
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result.gasLimit = header.gasLimit
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result.gasUsed = header.gasUsed
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result.timestamp = header.timestamp
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result.extraData = header.extraData
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func hash(header: MiningHeader): Hash256 =
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keccakHash(rlp.encode(header))
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proc validateSeal(header: BlockHeader) =
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let miningHeader = header.toMiningHeader
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let miningHash = miningHeader.hash
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checkPOW(header.blockNumber, miningHash,
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header.mixDigest, header.nonce, header.difficulty)
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# ------------------------------------------------------------------------------
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# Puplic function, extracted from executor
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# ------------------------------------------------------------------------------
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proc validateTransaction*(vmState: BaseVMState, tx: Transaction,
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sender: EthAddress, fork: Fork): bool =
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let balance = vmState.readOnlyStateDB.getBalance(sender)
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let nonce = vmState.readOnlyStateDB.getNonce(sender)
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if vmState.cumulativeGasUsed + tx.gasLimit > vmState.blockHeader.gasLimit:
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debug "invalid tx: block header gasLimit reached",
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maxLimit=vmState.blockHeader.gasLimit,
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gasUsed=vmState.cumulativeGasUsed,
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addition=tx.gasLimit
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return
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let gasCost = tx.gasLimit.u256 * tx.gasPrice.u256
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if gasCost > balance:
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debug "invalid tx: not enough cash for gas",
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available=balance,
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require=gasCost
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return
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if tx.value > balance - gasCost:
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debug "invalid tx: not enough cash to send",
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available=balance,
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availableMinusGas=balance-gasCost,
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require=tx.value
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return
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if tx.gasLimit < tx.intrinsicGas(fork):
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debug "invalid tx: not enough gas to perform calculation",
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available=tx.gasLimit,
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require=tx.intrinsicGas(fork)
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return
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if tx.nonce != nonce:
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debug "invalid tx: account nonce mismatch",
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txNonce=tx.nonce,
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accountNonce=nonce
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return
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result = true
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# ------------------------------------------------------------------------------
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# Public functions, extracted from test_blockchain_json
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# ------------------------------------------------------------------------------
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func validateGasLimit*(gasLimit, parentGasLimit: GasInt) =
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if gasLimit < GAS_LIMIT_MINIMUM:
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raise newException(ValidationError, "Gas limit is below minimum")
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if gasLimit > GAS_LIMIT_MAXIMUM:
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raise newException(ValidationError, "Gas limit is above maximum")
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let diff = gasLimit - parentGasLimit
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if diff > (parentGasLimit div GAS_LIMIT_ADJUSTMENT_FACTOR):
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raise newException(
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ValidationError, "Gas limit difference to parent is too big")
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proc validateHeader*(header, parentHeader: BlockHeader, checkSeal: bool) =
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if header.extraData.len > 32:
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raise newException(
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ValidationError, "BlockHeader.extraData larger than 32 bytes")
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validateGasLimit(header.gasLimit, parentHeader.gasLimit)
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if header.blockNumber != parentHeader.blockNumber + 1:
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raise newException(
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ValidationError, "Blocks must be numbered consecutively.")
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if header.timestamp.toUnix <= parentHeader.timestamp.toUnix:
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raise newException(
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ValidationError, "timestamp must be strictly later than parent")
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if checkSeal:
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validateSeal(header)
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func validateUncle*(currBlock, uncle, uncleParent: BlockHeader) =
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if uncle.blockNumber >= currBlock.blockNumber:
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raise newException(
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ValidationError, "uncle block number larger than current block number")
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if uncle.blockNumber != uncleParent.blockNumber + 1:
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raise newException(
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ValidationError, "Uncle number is not one above ancestor's number")
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if uncle.timestamp.toUnix < uncleParent.timestamp.toUnix:
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raise newException(
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ValidationError, "Uncle timestamp is before ancestor's timestamp")
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if uncle.gasUsed > uncle.gasLimit:
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raise newException(ValidationError, "Uncle's gas usage is above the limit")
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proc validateGasLimit*(chainDB: BaseChainDB, header: BlockHeader) =
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let parentHeader = chainDB.getBlockHeader(header.parentHash)
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let (lowBound, highBound) = gasLimitBounds(parentHeader)
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if header.gasLimit < lowBound:
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raise newException(ValidationError, "The gas limit is too low")
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elif header.gasLimit > highBound:
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raise newException(ValidationError, "The gas limit is too high")
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proc validateUncles*(chainDB: BaseChainDB,
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currBlock: EthBlock, checkSeal: bool) =
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let hasUncles = currBlock.uncles.len > 0
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let shouldHaveUncles = currBlock.header.ommersHash != EMPTY_UNCLE_HASH
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if not hasUncles and not shouldHaveUncles:
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# optimization to avoid loading ancestors from DB, since the block has
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# no uncles
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return
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elif hasUncles and not shouldHaveUncles:
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raise newException(
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ValidationError,
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"Block has uncles but header suggests uncles should be empty")
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elif shouldHaveUncles and not hasUncles:
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raise newException(
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ValidationError,
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"Header suggests block should have uncles but block has none")
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# Check for duplicates
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var uncleSet = initHashSet[Hash256]()
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for uncle in currBlock.uncles:
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let uncleHash = uncle.hash
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if uncleHash in uncleSet:
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raise newException(ValidationError, "Block contains duplicate uncles")
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else:
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uncleSet.incl uncleHash
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let recentAncestorHashes = chainDB.getAncestorsHashes(
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MAX_UNCLE_DEPTH + 1, currBlock.header)
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let recentUncleHashes = chainDB.getUncleHashes(recentAncestorHashes)
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let blockHash =currBlock.header.hash
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for uncle in currBlock.uncles:
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let uncleHash = uncle.hash
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if uncleHash == blockHash:
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raise newException(ValidationError, "Uncle has same hash as block")
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# ensure the uncle has not already been included.
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if uncleHash in recentUncleHashes:
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raise newException(ValidationError, "Duplicate uncle")
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# ensure that the uncle is not one of the canonical chain blocks.
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if uncleHash in recentAncestorHashes:
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raise newException(ValidationError, "Uncle cannot be an ancestor")
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# ensure that the uncle was built off of one of the canonical chain
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# blocks.
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if (uncle.parentHash notin recentAncestorHashes) or
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(uncle.parentHash == currBlock.header.parentHash):
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raise newException(ValidationError, "Uncle's parent is not an ancestor")
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# Now perform VM level validation of the uncle
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if checkSeal:
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validateSeal(uncle)
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let uncleParent = chainDB.getBlockHeader(uncle.parentHash)
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validateUncle(currBlock.header, uncle, uncleParent)
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func isGenesis*(currBlock: EthBlock): bool =
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result = currBlock.header.blockNumber == 0.u256 and
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currBlock.header.parentHash == GENESIS_PARENT_HASH
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proc validateBlock*(chainDB: BaseChainDB,
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currBlock: EthBlock, checkSeal: bool): bool =
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if currBlock.isGenesis:
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if currBlock.header.extraData.len > 32:
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raise newException(
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ValidationError, "BlockHeader.extraData larger than 32 bytes")
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return true
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let parentHeader = chainDB.getBlockHeader(currBlock.header.parentHash)
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validateHeader(currBlock.header, parentHeader, checkSeal)
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if currBlock.uncles.len > MAX_UNCLES:
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raise newException(ValidationError, "Number of uncles exceed limit.")
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if not chainDB.exists(currBlock.header.stateRoot):
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raise newException(
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ValidationError, "`state_root` was not found in the db.")
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validateUncles(chainDB, currBlock, checkSeal)
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validateGaslimit(chainDB, currBlock.header)
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result = true
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# ------------------------------------------------------------------------------
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# End
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# ------------------------------------------------------------------------------
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@ -6,17 +6,17 @@
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# at your option. This file may not be copied, modified, or distributed except according to those terms.
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import
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unittest2, json, os, tables, strutils, sets, strformat, times,
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unittest2, json, os, tables, strutils, sets,
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options,
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eth/[common, rlp], eth/trie/[db, trie_defs],
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ethash, stew/endians2, nimcrypto,
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stew/endians2, nimcrypto,
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./test_helpers, ./test_allowed_to_fail,
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../premix/parser, test_config,
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../nimbus/[vm_state, utils, vm_types, errors, transaction, constants, vm_types2],
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../nimbus/db/[db_chain, accounts_cache],
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../nimbus/utils/header,
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../nimbus/p2p/[executor, dao],
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../nimbus/[config, chain_config],
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../nimbus/p2p/[executor, validate],
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../nimbus/chain_config,
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../stateless/[tree_from_witness, witness_types]
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type
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@ -40,21 +40,6 @@ type
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debugData : JsonNode
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network : string
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MiningHeader = object
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parentHash : Hash256
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ommersHash : Hash256
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coinbase : EthAddress
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stateRoot : Hash256
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txRoot : Hash256
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receiptRoot : Hash256
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bloom : common.BloomFilter
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difficulty : DifficultyInt
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blockNumber : BlockNumber
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gasLimit : GasInt
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gasUsed : GasInt
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timestamp : EthTime
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extraData : Blob
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proc testFixture(node: JsonNode, testStatusIMPL: var TestStatus, debugMode = false, trace = false)
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func normalizeNumber(n: JsonNode): JsonNode =
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|
@ -229,211 +214,6 @@ proc blockWitness(vmState: BaseVMState, chainDB: BaseChainDB) =
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func validateBlockUnchanged(a, b: EthBlock): bool =
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result = rlp.encode(a) == rlp.encode(b)
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type Hash512 = MDigest[512]
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var cacheByEpoch = initOrderedTable[uint64, seq[Hash512]]()
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const CACHE_MAX_ITEMS = 10
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proc mkCacheBytes(blockNumber: uint64): seq[Hash512] =
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mkcache(getCacheSize(blockNumber), getSeedhash(blockNumber))
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proc getCache(blockNumber: uint64): seq[Hash512] =
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# TODO: this is very inefficient
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let epochIndex = blockNumber div EPOCH_LENGTH
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# Get the cache if already generated, marking it as recently used
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if epochIndex in cacheByEpoch:
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let c = cacheByEpoch[epochIndex]
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cacheByEpoch.del(epochIndex) # pop and append at end
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cacheByEpoch[epochIndex] = c
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return c
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# Generate the cache if it was not already in memory
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# Simulate requesting mkcache by block number: multiply index by epoch length
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let c = mkCacheBytes(epochIndex * EPOCH_LENGTH)
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cacheByEpoch[epochIndex] = c
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# Limit memory usage for cache
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if cacheByEpoch.len > CACHE_MAX_ITEMS:
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cacheByEpoch.del(epochIndex)
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shallowCopy(result, c)
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func cacheHash(x: openArray[Hash512]): Hash256 =
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var ctx: keccak256
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ctx.init()
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for a in x:
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ctx.update(a.data[0].unsafeAddr, uint(a.data.len))
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ctx.finish result.data
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ctx.clear()
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|
||||
proc checkPOW(blockNumber: Uint256, miningHash, mixHash: Hash256, nonce: BlockNonce, difficulty: DifficultyInt) =
|
||||
let blockNumber = blockNumber.truncate(uint64)
|
||||
let cache = blockNumber.getCache()
|
||||
|
||||
let size = getDataSize(blockNumber)
|
||||
let miningOutput = hashimotoLight(size, cache, miningHash, uint64.fromBytesBE(nonce))
|
||||
if miningOutput.mixDigest != mixHash:
|
||||
echo "actual: ", miningOutput.mixDigest
|
||||
echo "expected: ", mixHash
|
||||
echo "blockNumber: ", blockNumber
|
||||
echo "miningHash: ", miningHash
|
||||
echo "nonce: ", nonce.toHex
|
||||
echo "difficulty: ", difficulty
|
||||
echo "size: ", size
|
||||
echo "cache hash: ", cacheHash(cache)
|
||||
raise newException(ValidationError, "mixHash mismatch")
|
||||
|
||||
let value = Uint256.fromBytesBE(miningOutput.value.data)
|
||||
if value > Uint256.high div difficulty:
|
||||
raise newException(ValidationError, "mining difficulty error")
|
||||
|
||||
func toMiningHeader(header: BlockHeader): MiningHeader =
|
||||
result.parentHash = header.parentHash
|
||||
result.ommersHash = header.ommersHash
|
||||
result.coinbase = header.coinbase
|
||||
result.stateRoot = header.stateRoot
|
||||
result.txRoot = header.txRoot
|
||||
result.receiptRoot = header.receiptRoot
|
||||
result.bloom = header.bloom
|
||||
result.difficulty = header.difficulty
|
||||
result.blockNumber = header.blockNumber
|
||||
result.gasLimit = header.gasLimit
|
||||
result.gasUsed = header.gasUsed
|
||||
result.timestamp = header.timestamp
|
||||
result.extraData = header.extraData
|
||||
|
||||
func hash(header: MiningHeader): Hash256 =
|
||||
keccakHash(rlp.encode(header))
|
||||
|
||||
proc validateSeal(header: BlockHeader) =
|
||||
let miningHeader = header.toMiningHeader
|
||||
let miningHash = miningHeader.hash
|
||||
|
||||
checkPOW(header.blockNumber, miningHash,
|
||||
header.mixDigest, header.nonce, header.difficulty)
|
||||
|
||||
func validateGasLimit(gasLimit, parentGasLimit: GasInt) =
|
||||
if gasLimit < GAS_LIMIT_MINIMUM:
|
||||
raise newException(ValidationError, "Gas limit is below minimum")
|
||||
if gasLimit > GAS_LIMIT_MAXIMUM:
|
||||
raise newException(ValidationError, "Gas limit is above maximum")
|
||||
let diff = gasLimit - parentGasLimit
|
||||
if diff > (parentGasLimit div GAS_LIMIT_ADJUSTMENT_FACTOR):
|
||||
raise newException(ValidationError, "Gas limit difference to parent is too big")
|
||||
|
||||
proc validateHeader(header, parentHeader: BlockHeader, checkSeal: bool) =
|
||||
if header.extraData.len > 32:
|
||||
raise newException(ValidationError, "BlockHeader.extraData larger than 32 bytes")
|
||||
|
||||
validateGasLimit(header.gasLimit, parentHeader.gasLimit)
|
||||
|
||||
if header.blockNumber != parentHeader.blockNumber + 1:
|
||||
raise newException(ValidationError, "Blocks must be numbered consecutively.")
|
||||
|
||||
if header.timestamp.toUnix <= parentHeader.timestamp.toUnix:
|
||||
raise newException(ValidationError, "timestamp must be strictly later than parent")
|
||||
|
||||
if checkSeal:
|
||||
validateSeal(header)
|
||||
|
||||
func validateUncle(currBlock, uncle, uncleParent: BlockHeader) =
|
||||
if uncle.blockNumber >= currBlock.blockNumber:
|
||||
raise newException(ValidationError, "uncle block number larger than current block number")
|
||||
|
||||
if uncle.blockNumber != uncleParent.blockNumber + 1:
|
||||
raise newException(ValidationError, "Uncle number is not one above ancestor's number")
|
||||
|
||||
if uncle.timestamp.toUnix < uncleParent.timestamp.toUnix:
|
||||
raise newException(ValidationError, "Uncle timestamp is before ancestor's timestamp")
|
||||
|
||||
if uncle.gasUsed > uncle.gasLimit:
|
||||
raise newException(ValidationError, "Uncle's gas usage is above the limit")
|
||||
|
||||
proc validateGasLimit(chainDB: BaseChainDB, header: BlockHeader) =
|
||||
let parentHeader = chainDB.getBlockHeader(header.parentHash)
|
||||
let (lowBound, highBound) = gasLimitBounds(parentHeader)
|
||||
|
||||
if header.gasLimit < lowBound:
|
||||
raise newException(ValidationError, "The gas limit is too low")
|
||||
elif header.gasLimit > highBound:
|
||||
raise newException(ValidationError, "The gas limit is too high")
|
||||
|
||||
proc validateUncles(chainDB: BaseChainDB, currBlock: EthBlock, checkSeal: bool) =
|
||||
let hasUncles = currBlock.uncles.len > 0
|
||||
let shouldHaveUncles = currBlock.header.ommersHash != EMPTY_UNCLE_HASH
|
||||
|
||||
if not hasUncles and not shouldHaveUncles:
|
||||
# optimization to avoid loading ancestors from DB, since the block has no uncles
|
||||
return
|
||||
elif hasUncles and not shouldHaveUncles:
|
||||
raise newException(ValidationError, "Block has uncles but header suggests uncles should be empty")
|
||||
elif shouldHaveUncles and not hasUncles:
|
||||
raise newException(ValidationError, "Header suggests block should have uncles but block has none")
|
||||
|
||||
# Check for duplicates
|
||||
var uncleSet = initHashSet[Hash256]()
|
||||
for uncle in currBlock.uncles:
|
||||
let uncleHash = uncle.hash
|
||||
if uncleHash in uncleSet:
|
||||
raise newException(ValidationError, "Block contains duplicate uncles")
|
||||
else:
|
||||
uncleSet.incl uncleHash
|
||||
|
||||
let recentAncestorHashes = chainDB.getAncestorsHashes(MAX_UNCLE_DEPTH + 1, currBlock.header)
|
||||
let recentUncleHashes = chainDB.getUncleHashes(recentAncestorHashes)
|
||||
let blockHash =currBlock.header.hash
|
||||
|
||||
for uncle in currBlock.uncles:
|
||||
let uncleHash = uncle.hash
|
||||
|
||||
if uncleHash == blockHash:
|
||||
raise newException(ValidationError, "Uncle has same hash as block")
|
||||
|
||||
# ensure the uncle has not already been included.
|
||||
if uncleHash in recentUncleHashes:
|
||||
raise newException(ValidationError, "Duplicate uncle")
|
||||
|
||||
# ensure that the uncle is not one of the canonical chain blocks.
|
||||
if uncleHash in recentAncestorHashes:
|
||||
raise newException(ValidationError, "Uncle cannot be an ancestor")
|
||||
|
||||
# ensure that the uncle was built off of one of the canonical chain
|
||||
# blocks.
|
||||
if (uncle.parentHash notin recentAncestorHashes) or
|
||||
(uncle.parentHash == currBlock.header.parentHash):
|
||||
raise newException(ValidationError, "Uncle's parent is not an ancestor")
|
||||
|
||||
# Now perform VM level validation of the uncle
|
||||
if checkSeal:
|
||||
validateSeal(uncle)
|
||||
|
||||
let uncleParent = chainDB.getBlockHeader(uncle.parentHash)
|
||||
validateUncle(currBlock.header, uncle, uncleParent)
|
||||
|
||||
func isGenesis(currBlock: EthBlock): bool =
|
||||
result = currBlock.header.blockNumber == 0.u256 and currBlock.header.parentHash == GENESIS_PARENT_HASH
|
||||
|
||||
proc validateBlock(chainDB: BaseChainDB, currBlock: EthBlock, checkSeal: bool): bool =
|
||||
if currBlock.isGenesis:
|
||||
if currBlock.header.extraData.len > 32:
|
||||
raise newException(ValidationError, "BlockHeader.extraData larger than 32 bytes")
|
||||
return true
|
||||
|
||||
let parentHeader = chainDB.getBlockHeader(currBlock.header.parentHash)
|
||||
validateHeader(currBlock.header, parentHeader, checkSeal)
|
||||
|
||||
if currBlock.uncles.len > MAX_UNCLES:
|
||||
raise newException(ValidationError, "Number of uncles exceed limit.")
|
||||
|
||||
if not chainDB.exists(currBlock.header.stateRoot):
|
||||
raise newException(ValidationError, "`state_root` was not found in the db.")
|
||||
|
||||
validateUncles(chainDB, currBlock, checkSeal)
|
||||
validateGaslimit(chainDB, currBlock.header)
|
||||
|
||||
result = true
|
||||
|
||||
proc importBlock(tester: var Tester, chainDB: BaseChainDB,
|
||||
preminedBlock: EthBlock, tb: TestBlock, checkSeal, validation: bool): EthBlock =
|
||||
|
|
Loading…
Reference in New Issue