174 lines
5.6 KiB
Rust
174 lines
5.6 KiB
Rust
use std::{
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env,
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fs::OpenOptions,
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io::{BufRead, BufReader, Write},
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sync::{Arc, Mutex},
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};
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use alloy::{
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primitives::{aliases::U24, Address, U256, U8},
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providers::{
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fillers::{BlobGasFiller, ChainIdFiller, FillProvider, GasFiller, JoinFill, NonceFiller},
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ProviderBuilder, RootProvider,
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},
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sol_types::SolValue,
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};
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use num_bigint::BigUint;
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use once_cell::sync::Lazy;
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use tokio::runtime::{Handle, Runtime};
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use tycho_common::Bytes;
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use crate::encoding::{errors::EncodingError, models::Swap};
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/// Safely converts a `Bytes` object to an `Address` object.
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///
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/// Checks the length of the `Bytes` before attempting to convert, and returns an `EncodingError`
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/// if not 20 bytes long.
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pub fn bytes_to_address(address: &Bytes) -> Result<Address, EncodingError> {
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if address.len() == 20 {
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Ok(Address::from_slice(address))
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} else {
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Err(EncodingError::InvalidInput(format!("Invalid address: {address}",)))
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}
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}
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/// Converts a general `BigUint` to an EVM-specific `U256` value.
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pub fn biguint_to_u256(value: &BigUint) -> U256 {
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let bytes = value.to_bytes_be();
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U256::from_be_slice(&bytes)
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}
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/// Converts a decimal to a `U24` value. The percentage is a `f64` value between 0 and 1.
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/// MAX_UINT24 corresponds to 100%.
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pub fn percentage_to_uint24(decimal: f64) -> U24 {
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const MAX_UINT24: u32 = 16_777_215; // 2^24 - 1
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let scaled = (decimal / 1.0) * (MAX_UINT24 as f64);
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U24::from(scaled.round())
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}
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/// Gets the position of a token in a list of tokens.
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pub fn get_token_position(tokens: &Vec<&Bytes>, token: &Bytes) -> Result<U8, EncodingError> {
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let position = U8::from(
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tokens
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.iter()
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.position(|t| *t == token)
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.ok_or_else(|| {
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EncodingError::InvalidInput(format!("Token {token} not found in tokens array"))
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})?,
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);
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Ok(position)
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}
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/// Pads a byte slice to a fixed size array of N bytes.
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pub fn pad_to_fixed_size<const N: usize>(input: &[u8]) -> Result<[u8; N], EncodingError> {
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let mut padded = [0u8; N];
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let start = N - input.len();
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padded[start..].copy_from_slice(input);
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Ok(padded)
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}
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/// Extracts a static attribute from a swap.
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pub fn get_static_attribute(swap: &Swap, attribute_name: &str) -> Result<Vec<u8>, EncodingError> {
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Ok(swap
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.component
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.static_attributes
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.get(attribute_name)
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.ok_or_else(|| EncodingError::FatalError(format!("Attribute {attribute_name} not found")))?
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.to_vec())
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}
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pub fn get_runtime() -> Result<(Handle, Option<Arc<Runtime>>), EncodingError> {
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match Handle::try_current() {
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Ok(h) => Ok((h, None)),
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Err(_) => {
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let rt = Arc::new(Runtime::new().map_err(|_| {
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EncodingError::FatalError("Failed to create a new tokio runtime".to_string())
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})?);
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Ok((rt.handle().clone(), Some(rt)))
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}
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}
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}
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pub type EVMProvider = Arc<
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FillProvider<
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JoinFill<
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alloy::providers::Identity,
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JoinFill<GasFiller, JoinFill<BlobGasFiller, JoinFill<NonceFiller, ChainIdFiller>>>,
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>,
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RootProvider,
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>,
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>;
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/// Gets the client used for interacting with the EVM-compatible network.
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pub async fn get_client() -> Result<EVMProvider, EncodingError> {
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dotenv::dotenv().ok();
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let eth_rpc_url = env::var("RPC_URL")
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.map_err(|_| EncodingError::FatalError("Missing RPC_URL in environment".to_string()))?;
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let client = ProviderBuilder::new()
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.connect(ð_rpc_url)
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.await
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.map_err(|_| EncodingError::FatalError("Failed to build provider".to_string()))?;
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Ok(Arc::new(client))
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}
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/// Uses prefix-length encoding to efficient encode action data.
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///
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/// Prefix-length encoding is a data encoding method where the beginning of a data segment
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/// (the "prefix") contains information about the length of the following data.
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pub fn ple_encode(action_data_array: Vec<Vec<u8>>) -> Vec<u8> {
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let mut encoded_action_data: Vec<u8> = Vec::new();
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for action_data in action_data_array {
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let args = (encoded_action_data, action_data.len() as u16, action_data);
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encoded_action_data = args.abi_encode_packed();
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}
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encoded_action_data
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}
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static CALLDATA_WRITE_MUTEX: Lazy<Mutex<()>> = Lazy::new(|| Mutex::new(()));
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// Function used in tests to write calldata to a file that then is used by the corresponding
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// solidity tests.
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pub fn write_calldata_to_file(test_identifier: &str, hex_calldata: &str) {
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let _lock = CALLDATA_WRITE_MUTEX
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.lock()
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.expect("Couldn't acquire lock");
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let file_path = "foundry/test/assets/calldata.txt";
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let file = OpenOptions::new()
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.read(true)
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.open(file_path)
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.expect("Failed to open calldata file for reading");
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let reader = BufReader::new(file);
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let mut lines = Vec::new();
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let mut found = false;
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for line in reader.lines().map_while(Result::ok) {
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let mut parts = line.splitn(2, ':'); // split at the :
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let key = parts.next().unwrap_or("");
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if key == test_identifier {
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lines.push(format!("{test_identifier}:{hex_calldata}"));
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found = true;
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} else {
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lines.push(line);
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}
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}
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// If the test identifier wasn't found, append a new line
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if !found {
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lines.push(format!("{test_identifier}:{hex_calldata}"));
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}
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// Write the updated contents back to the file
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let mut file = OpenOptions::new()
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.write(true)
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.truncate(true)
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.open(file_path)
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.expect("Failed to open calldata file for writing");
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for line in lines {
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writeln!(file, "{line}").expect("Failed to write calldata");
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}
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}
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