328 lines
9.8 KiB
Nim
328 lines
9.8 KiB
Nim
import std/json
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import std/macros
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import std/sequtils
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import pkg/chronicles
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import pkg/chronos
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import pkg/contractabi
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import ./basics
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import ./provider
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import ./signer
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import ./events
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import ./fields
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export basics
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export provider
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export events
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logScope:
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topics = "ethers contract"
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type
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Contract* = ref object of RootObj
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provider: Provider
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signer: ?Signer
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address: Address
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TransactionOverrides* = ref object of RootObj
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nonce*: ?UInt256
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chainId*: ?UInt256
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gasPrice*: ?UInt256
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maxFee*: ?UInt256
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maxPriorityFee*: ?UInt256
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gasLimit*: ?UInt256
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CallOverrides* = ref object of TransactionOverrides
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blockTag*: ?BlockTag
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ContractError* = object of EthersError
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Confirmable* = ?TransactionResponse
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EventHandler*[E: Event] = proc(event: E) {.gcsafe, raises:[].}
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func new*(ContractType: type Contract,
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address: Address,
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provider: Provider): ContractType =
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ContractType(provider: provider, address: address)
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func new*(ContractType: type Contract,
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address: Address,
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signer: Signer): ContractType =
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ContractType(signer: some signer, provider: signer.provider, address: address)
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func connect*[T: Contract](contract: T, provider: Provider | Signer): T =
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T.new(contract.address, provider)
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func provider*(contract: Contract): Provider =
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contract.provider
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func signer*(contract: Contract): ?Signer =
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contract.signer
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func address*(contract: Contract): Address =
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contract.address
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template raiseContractError(message: string) =
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raise newException(ContractError, message)
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proc createTransaction(contract: Contract,
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function: string,
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parameters: tuple,
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overrides = TransactionOverrides()): Transaction =
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let selector = selector(function, typeof parameters).toArray
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let data = @selector & AbiEncoder.encode(parameters)
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Transaction(
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to: contract.address,
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data: data,
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nonce: overrides.nonce,
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chainId: overrides.chainId,
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gasPrice: overrides.gasPrice,
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maxFee: overrides.maxFee,
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maxPriorityFee: overrides.maxPriorityFee,
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gasLimit: overrides.gasLimit,
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)
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proc decodeResponse(T: type, bytes: seq[byte]): T =
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without decoded =? AbiDecoder.decode(bytes, T):
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raiseContractError "unable to decode return value as " & $T
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return decoded
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proc call(provider: Provider,
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transaction: Transaction,
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overrides: TransactionOverrides): Future[seq[byte]] =
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if overrides of CallOverrides and
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blockTag =? CallOverrides(overrides).blockTag:
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provider.call(transaction, blockTag)
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else:
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provider.call(transaction)
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proc call(contract: Contract,
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function: string,
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parameters: tuple,
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overrides = TransactionOverrides()) {.async.} =
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var transaction = createTransaction(contract, function, parameters, overrides)
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if signer =? contract.signer and transaction.sender.isNone:
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transaction.sender = some(await signer.getAddress())
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discard await contract.provider.call(transaction, overrides)
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proc call(contract: Contract,
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function: string,
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parameters: tuple,
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ReturnType: type,
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overrides = TransactionOverrides()): Future[ReturnType] {.async.} =
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var transaction = createTransaction(contract, function, parameters, overrides)
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if signer =? contract.signer and transaction.sender.isNone:
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transaction.sender = some(await signer.getAddress())
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let response = await contract.provider.call(transaction, overrides)
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return decodeResponse(ReturnType, response)
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proc send(contract: Contract,
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function: string,
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parameters: tuple,
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overrides = TransactionOverrides()):
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Future[?TransactionResponse] {.async.} =
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if signer =? contract.signer:
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let transaction = createTransaction(contract, function, parameters, overrides)
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let populated = await signer.populateTransaction(transaction)
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let txResp = await signer.sendTransaction(populated)
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return txResp.some
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else:
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await call(contract, function, parameters, overrides)
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return TransactionResponse.none
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func getParameterTuple(procedure: NimNode): NimNode =
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let parameters = procedure[3]
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var tupl = newNimNode(nnkTupleConstr, parameters)
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for parameter in parameters[2..^1]:
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for name in parameter[0..^3]:
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tupl.add name
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return tupl
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func isGetter(procedure: NimNode): bool =
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let pragmas = procedure[4]
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for pragma in pragmas:
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if pragma.eqIdent "getter":
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return true
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false
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func isConstant(procedure: NimNode): bool =
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let pragmas = procedure[4]
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for pragma in pragmas:
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if pragma.eqIdent "view":
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return true
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elif pragma.eqIdent "pure":
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return true
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elif pragma.eqIdent "getter":
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return true
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false
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func isMultipleReturn(returnType: NimNode): bool =
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(returnType.kind == nnkPar and returnType.len > 1) or
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(returnType.kind == nnkTupleConstr) or
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(returnType.kind == nnkTupleTy)
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func addOverrides(procedure: var NimNode) =
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procedure[3].add(
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newIdentDefs(
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ident("overrides"),
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newEmptyNode(),
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quote do: TransactionOverrides()
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)
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)
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func addContractCall(procedure: var NimNode) =
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let contract = procedure[3][1][0]
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let function = $basename(procedure[0])
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let parameters = getParameterTuple(procedure)
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let returnType = procedure[3][0]
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let isGetter = procedure.isGetter
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procedure.addOverrides()
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func call: NimNode =
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if returnType.kind == nnkEmpty:
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quote:
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await call(`contract`, `function`, `parameters`, overrides)
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elif returnType.isMultipleReturn or isGetter:
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quote:
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return await call(
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`contract`, `function`, `parameters`, `returnType`, overrides
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)
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else:
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quote:
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# solidity functions return a tuple, so wrap return type in a tuple
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let tupl = await call(
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`contract`, `function`, `parameters`, (`returnType`,), overrides
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)
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return tupl[0]
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func send: NimNode =
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if returnType.kind == nnkEmpty:
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quote:
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discard await send(`contract`, `function`, `parameters`, overrides)
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else:
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quote:
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when typeof(result) isnot Confirmable:
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{.error:
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"unexpected return type, " &
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"missing {.view.}, {.pure.} or {.getter.} ?"
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.}
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return await send(`contract`, `function`, `parameters`, overrides)
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procedure[6] =
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if procedure.isConstant:
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call()
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else:
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send()
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func addFuture(procedure: var NimNode) =
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let returntype = procedure[3][0]
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if returntype.kind != nnkEmpty:
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procedure[3][0] = quote: Future[`returntype`]
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func addAsyncPragma(procedure: var NimNode) =
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let pragmas = procedure[4]
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if pragmas.kind == nnkEmpty:
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procedure[4] = newNimNode(nnkPragma)
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procedure[4].add ident("async")
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macro contract*(procedure: untyped{nkProcDef|nkMethodDef}): untyped =
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let parameters = procedure[3]
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let body = procedure[6]
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parameters.expectMinLen(2) # at least return type and contract instance
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body.expectKind(nnkEmpty)
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var contractcall = copyNimTree(procedure)
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contractcall.addContractCall()
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contractcall.addFuture()
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contractcall.addAsyncPragma()
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contractcall
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template view* {.pragma.}
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template pure* {.pragma.}
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template getter* {.pragma.}
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proc subscribe*[E: Event](contract: Contract,
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_: type E,
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handler: EventHandler[E]):
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Future[Subscription] =
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let topic = topic($E, E.fieldTypes).toArray
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let filter = EventFilter(address: contract.address, topics: @[topic])
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proc logHandler(log: Log) {.raises: [].} =
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if event =? E.decode(log.data, log.topics):
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handler(event)
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contract.provider.subscribe(filter, logHandler)
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proc confirm*(tx: Future[?TransactionResponse],
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confirmations: int = EthersDefaultConfirmations,
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timeout: int = EthersReceiptTimeoutBlks):
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Future[TransactionReceipt] {.async.} =
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## Convenience method that allows confirm to be chained to a contract
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## transaction, eg:
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## `await token.connect(signer0)
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## .mint(accounts[1], 100.u256)
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## .confirm(3)`
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without response =? (await tx):
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raise newException(
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EthersError,
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"Transaction hash required. Possibly was a call instead of a send?"
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)
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return await response.confirm(confirmations, timeout)
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proc queryFilter[E: Event](contract: Contract,
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_: type E,
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filter: EventFilter):
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Future[seq[E]] {.async.} =
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var logs = await contract.provider.getLogs(filter)
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logs.keepItIf(not it.removed)
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var events: seq[E] = @[]
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for log in logs:
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if event =? E.decode(log.data, log.topics):
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events.add event
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return events
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proc queryFilter*[E: Event](contract: Contract,
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_: type E):
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Future[seq[E]] =
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let topic = topic($E, E.fieldTypes).toArray
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let filter = EventFilter(address: contract.address,
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topics: @[topic])
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contract.queryFilter(E, filter)
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proc queryFilter*[E: Event](contract: Contract,
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_: type E,
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blockHash: BlockHash):
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Future[seq[E]] =
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let topic = topic($E, E.fieldTypes).toArray
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let filter = FilterByBlockHash(address: contract.address,
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topics: @[topic],
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blockHash: blockHash)
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contract.queryFilter(E, filter)
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proc queryFilter*[E: Event](contract: Contract,
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_: type E,
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fromBlock: BlockTag,
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toBlock: BlockTag):
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Future[seq[E]] =
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let topic = topic($E, E.fieldTypes).toArray
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let filter = Filter(address: contract.address,
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topics: @[topic],
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fromBlock: fromBlock,
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toBlock: toBlock)
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contract.queryFilter(E, filter)
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