136 lines
4.4 KiB
Rust
136 lines
4.4 KiB
Rust
use super::base::{decode_fn, AbiError};
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use ethers_core::{
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abi::{Detokenize, Function, InvalidOutputType},
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types::{Address, BlockNumber, Bytes, TransactionRequest, U256},
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};
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use ethers_providers::{Middleware, PendingTransaction};
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use std::{fmt::Debug, marker::PhantomData, sync::Arc};
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use thiserror::Error as ThisError;
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#[derive(ThisError, Debug)]
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/// An Error which is thrown when interacting with a smart contract
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pub enum ContractError<M: Middleware> {
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/// Thrown when the ABI decoding fails
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#[error(transparent)]
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DecodingError(#[from] ethers_core::abi::Error),
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/// Thrown when the internal BaseContract errors
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#[error(transparent)]
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AbiError(#[from] AbiError),
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/// Thrown when detokenizing an argument
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#[error(transparent)]
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DetokenizationError(#[from] InvalidOutputType),
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/// Thrown when a provider call fails
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#[error("{0}")]
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MiddlewareError(M::Error),
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/// Thrown during deployment if a constructor argument was passed in the `deploy`
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/// call but a constructor was not present in the ABI
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#[error("constructor is not defined in the ABI")]
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ConstructorError,
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/// Thrown if a contract address is not found in the deployment transaction's
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/// receipt
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#[error("Contract was not deployed")]
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ContractNotDeployed,
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}
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#[derive(Debug, Clone)]
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#[must_use = "contract calls do nothing unless you `send` or `call` them"]
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/// Helper for managing a transaction before submitting it to a node
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pub struct ContractCall<M, D> {
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/// The raw transaction object
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pub tx: TransactionRequest,
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/// The ABI of the function being called
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pub function: Function,
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/// Optional block number to be used when calculating the transaction's gas and nonce
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pub block: Option<BlockNumber>,
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pub(crate) client: Arc<M>,
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pub(crate) datatype: PhantomData<D>,
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}
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impl<M, D: Detokenize> ContractCall<M, D> {
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/// Sets the `from` field in the transaction to the provided value
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pub fn from<T: Into<Address>>(mut self, from: T) -> Self {
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self.tx.from = Some(from.into());
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self
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}
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/// Sets the `gas` field in the transaction to the provided value
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pub fn gas<T: Into<U256>>(mut self, gas: T) -> Self {
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self.tx.gas = Some(gas.into());
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self
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}
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/// Sets the `gas_price` field in the transaction to the provided value
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pub fn gas_price<T: Into<U256>>(mut self, gas_price: T) -> Self {
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self.tx.gas_price = Some(gas_price.into());
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self
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}
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/// Sets the `value` field in the transaction to the provided value
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pub fn value<T: Into<U256>>(mut self, value: T) -> Self {
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self.tx.value = Some(value.into());
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self
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}
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/// Sets the `block` field for sending the tx to the chain
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pub fn block<T: Into<BlockNumber>>(mut self, block: T) -> Self {
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self.block = Some(block.into());
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self
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}
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}
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impl<M, D> ContractCall<M, D>
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where
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M: Middleware,
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D: Detokenize,
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{
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/// Returns the underlying transaction's ABI encoded data
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pub fn calldata(&self) -> Option<Bytes> {
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self.tx.data.clone()
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}
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/// Returns the estimated gas cost for the underlying transaction to be executed
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pub async fn estimate_gas(&self) -> Result<U256, ContractError<M>> {
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self.client
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.estimate_gas(&self.tx)
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.await
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.map_err(ContractError::MiddlewareError)
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}
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/// Queries the blockchain via an `eth_call` for the provided transaction.
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///
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/// If executed on a non-state mutating smart contract function (i.e. `view`, `pure`)
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/// then it will return the raw data from the chain.
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///
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/// If executed on a mutating smart contract function, it will do a "dry run" of the call
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/// and return the return type of the transaction without mutating the state
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///
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/// Note: this function _does not_ send a transaction from your account
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pub async fn call(&self) -> Result<D, ContractError<M>> {
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let bytes = self
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.client
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.call(&self.tx, self.block)
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.await
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.map_err(ContractError::MiddlewareError)?;
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// decode output
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let data = decode_fn(&self.function, &bytes, false)?;
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Ok(data)
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}
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/// Signs and broadcasts the provided transaction
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pub async fn send(&self) -> Result<PendingTransaction<'_, M::Provider>, ContractError<M>> {
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self.client
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.send_transaction(self.tx.clone(), self.block)
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.await
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.map_err(ContractError::MiddlewareError)
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}
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}
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