use std::{collections::HashMap, str::FromStr};
use alloy::{primitives::Address, sol_types::SolValue};
use tycho_common::{models::Chain, Bytes};
use crate::encoding::{
errors::EncodingError,
evm::utils::{bytes_to_address, get_static_attribute, pad_or_truncate_to_size},
models::{EncodingContext, Swap},
swap_encoder::SwapEncoder,
};
#[derive(Clone)]
pub struct SlipstreamsSwapEncoder {
executor_address: Bytes,
}
impl SlipstreamsSwapEncoder {
fn get_zero_to_one(sell_token_address: Address, buy_token_address: Address) -> bool {
sell_token_address < buy_token_address
}
}
impl SwapEncoder for SlipstreamsSwapEncoder {
fn new(
executor_address: Bytes,
_chain: Chain,
_config: Option<HashMap<String, String>>,
) -> Result<Self, EncodingError> {
Ok(Self { executor_address })
}
fn encode_swap(
&self,
swap: &Swap,
_encoding_context: &EncodingContext,
) -> Result<Vec<u8>, EncodingError> {
let token_in_address = bytes_to_address(&swap.token_in().address)?;
let token_out_address = bytes_to_address(&swap.token_out().address)?;
let zero_to_one = Self::get_zero_to_one(token_in_address, token_out_address);
let component_id = Address::from_str(&swap.component().id).map_err(|_| {
EncodingError::FatalError("Invalid Slipstreams component id".to_string())
})?;
let tick_spacing_bytes = get_static_attribute(swap, "tick_spacing")?;
let tick_spacing_bytes_u24 =
pad_or_truncate_to_size::<3>(&tick_spacing_bytes).map_err(|_| {
EncodingError::FatalError("Failed to extract tick_spacing bytes".to_string())
})?;
let args = (
token_in_address,
token_out_address,
tick_spacing_bytes_u24,
component_id,
zero_to_one,
);
Ok(args.abi_encode_packed())
}
fn executor_address(&self) -> &Bytes {
&self.executor_address
}
fn clone_box(&self) -> Box<dyn SwapEncoder> {
Box::new(self.clone())
}
}
#[cfg(test)]
mod tests {
use alloy::hex::encode;
use num_bigint::{BigInt, BigUint};
use tycho_common::models::protocol::ProtocolComponent;
use super::*;
use crate::encoding::models::{default_token, Swap};
#[test]
fn test_encode_slipstreams() {
let tick_spacing = BigInt::from(50);
let pool = ProtocolComponent {
id: String::from("0x88e6A0c2dDD26FEEb64F039a2c41296FcB3f5640"),
static_attributes: [(
"tick_spacing".into(),
Bytes::from(tick_spacing.to_signed_bytes_be()),
)]
.into(),
..Default::default()
};
let token_in = Bytes::from("0x1111111111111111111111111111111111111111");
let token_out = Bytes::from("0x2222222222222222222222222222222222222222");
let swap = Swap::new(
pool,
default_token(token_in.clone()),
default_token(token_out.clone()),
BigUint::ZERO,
);
let encoding_context = EncodingContext {
router_address: Some(Bytes::zero(20)),
group_token_in: token_in.clone(),
group_token_out: token_out.clone(),
};
let encoder = SlipstreamsSwapEncoder::new(
Bytes::from("0x543778987b293C7E8Cf0722BB2e935ba6f4068D4"),
Chain::Ethereum,
None,
)
.unwrap();
let encoded_swap = encoder
.encode_swap(&swap, &encoding_context)
.unwrap();
let hex_swap = encode(&encoded_swap);
assert_eq!(
hex_swap,
String::from(concat!(
"1111111111111111111111111111111111111111",
"2222222222222222222222222222222222222222",
"000032",
"88e6a0c2ddd26feeb64f039a2c41296fcb3f5640",
"01",
))
);
}
}