chore: merge main
This commit is contained in:
@@ -42,17 +42,35 @@ impl EVMEncoderBuilder {
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self
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}
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/// Shortcut method to initialize a `SplitSwapStrategyEncoder` with a given `swapper_pk`.
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/// **Note**: Should not be used at the same time as `strategy_encoder`.
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pub fn tycho_router(
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self,
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swapper_pk: String,
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executors_file_path: Option<String>,
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) -> Result<Self, EncodingError> {
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/// Shortcut method to initialize a `SplitSwapStrategyEncoder` without any approval nor token in
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/// transfer. **Note**: Should not be used at the same time as `strategy_encoder`.
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pub fn tycho_router(self, executors_file_path: Option<String>) -> Result<Self, EncodingError> {
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if let Some(chain) = self.chain {
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let swap_encoder_registry = SwapEncoderRegistry::new(executors_file_path, chain)?;
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let strategy =
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Box::new(SplitSwapStrategyEncoder::new(swapper_pk, chain, swap_encoder_registry)?);
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Box::new(SplitSwapStrategyEncoder::new(chain, swap_encoder_registry, None)?);
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Ok(EVMEncoderBuilder { chain: Some(chain), strategy: Some(strategy) })
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} else {
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Err(EncodingError::FatalError(
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"Please set the chain before setting the tycho router".to_string(),
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))
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}
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}
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/// Shortcut method to initialize a `SplitSwapStrategyEncoder` with Permit2 approval and token
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/// in transfer. **Note**: Should not be used at the same time as `strategy_encoder`.
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pub fn tycho_router_with_permit2(
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self,
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executors_file_path: Option<String>,
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swapper_pk: String,
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) -> Result<Self, EncodingError> {
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if let Some(chain) = self.chain {
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let swap_encoder_registry = SwapEncoderRegistry::new(executors_file_path, chain)?;
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let strategy = Box::new(SplitSwapStrategyEncoder::new(
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chain,
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swap_encoder_registry,
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Some(swapper_pk),
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)?);
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Ok(EVMEncoderBuilder { chain: Some(chain), strategy: Some(strategy) })
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} else {
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Err(EncodingError::FatalError(
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@@ -79,7 +79,7 @@ pub trait EVMStrategyEncoder: StrategyEncoder {
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#[derive(Clone)]
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pub struct SplitSwapStrategyEncoder {
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swap_encoder_registry: SwapEncoderRegistry,
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permit2: Permit2,
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permit2: Option<Permit2>,
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selector: String,
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native_address: Bytes,
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wrapped_address: Bytes,
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@@ -88,14 +88,21 @@ pub struct SplitSwapStrategyEncoder {
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impl SplitSwapStrategyEncoder {
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pub fn new(
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swapper_pk: String,
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blockchain: tycho_core::models::Chain,
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swap_encoder_registry: SwapEncoderRegistry,
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swapper_pk: Option<String>,
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) -> Result<Self, EncodingError> {
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let chain = Chain::from(blockchain);
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let selector = "swapPermit2(uint256,address,address,uint256,bool,bool,uint256,address,((address,uint160,uint48,uint48),address,uint256),bytes,bytes)".to_string();
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let (permit2, selector) = if let Some(swapper_pk) = swapper_pk {
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(Some(Permit2::new(swapper_pk, chain.clone())?), "swapPermit2(uint256,address,address,uint256,bool,bool,uint256,address,((address,uint160,uint48,uint48),address,uint256),bytes,bytes)".to_string())
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} else {
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(
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None,
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"swap(uint256,address,address,uint256,bool,bool,uint256,address,bytes)".to_string(),
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)
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};
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Ok(Self {
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permit2: Permit2::new(swapper_pk, chain.clone())?,
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permit2,
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selector,
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swap_encoder_registry,
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native_address: chain.native_token()?,
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@@ -122,12 +129,7 @@ impl StrategyEncoder for SplitSwapStrategyEncoder {
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&self.native_address,
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&self.wrapped_address,
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)?;
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let (permit, signature) = self.permit2.get_permit(
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&solution.router_address,
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&solution.sender,
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&solution.given_token,
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&solution.given_amount,
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)?;
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let min_amount_out = get_min_amount_for_solution(solution.clone());
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// The tokens array is composed of the given token, the checked token and all the
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@@ -214,20 +216,41 @@ impl StrategyEncoder for SplitSwapStrategyEncoder {
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}
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let encoded_swaps = self.ple_encode(swaps);
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let method_calldata = (
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biguint_to_u256(&solution.given_amount),
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bytes_to_address(&solution.given_token)?,
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bytes_to_address(&solution.checked_token)?,
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biguint_to_u256(&min_amount_out),
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wrap,
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unwrap,
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U256::from(tokens.len()),
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bytes_to_address(&solution.receiver)?,
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permit,
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signature.as_bytes().to_vec(),
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encoded_swaps,
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)
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.abi_encode();
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let method_calldata = if let Some(permit2) = self.permit2.clone() {
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let (permit, signature) = permit2.get_permit(
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&solution.router_address,
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&solution.sender,
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&solution.given_token,
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&solution.given_amount,
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)?;
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(
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biguint_to_u256(&solution.given_amount),
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bytes_to_address(&solution.given_token)?,
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bytes_to_address(&solution.checked_token)?,
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biguint_to_u256(&min_amount_out),
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wrap,
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unwrap,
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U256::from(tokens.len()),
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bytes_to_address(&solution.receiver)?,
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permit,
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signature.as_bytes().to_vec(),
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encoded_swaps,
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)
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.abi_encode()
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} else {
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(
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biguint_to_u256(&solution.given_amount),
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bytes_to_address(&solution.given_token)?,
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bytes_to_address(&solution.checked_token)?,
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biguint_to_u256(&min_amount_out),
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wrap,
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unwrap,
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U256::from(tokens.len()),
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bytes_to_address(&solution.receiver)?,
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encoded_swaps,
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)
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.abi_encode()
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};
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let contract_interaction = encode_input(&self.selector, method_calldata);
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Ok((contract_interaction, solution.router_address, None))
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@@ -606,7 +629,8 @@ mod tests {
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};
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let swap_encoder_registry = get_swap_encoder_registry();
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let encoder =
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SplitSwapStrategyEncoder::new(private_key, eth_chain(), swap_encoder_registry).unwrap();
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SplitSwapStrategyEncoder::new(eth_chain(), swap_encoder_registry, Some(private_key))
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.unwrap();
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let solution = Solution {
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exact_out: false,
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given_token: weth,
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@@ -707,7 +731,8 @@ mod tests {
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};
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let swap_encoder_registry = get_swap_encoder_registry();
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let encoder =
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SplitSwapStrategyEncoder::new(private_key, eth_chain(), swap_encoder_registry).unwrap();
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SplitSwapStrategyEncoder::new(eth_chain(), swap_encoder_registry, Some(private_key))
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.unwrap();
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let solution = Solution {
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exact_out: false,
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given_token: eth(),
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@@ -755,7 +780,8 @@ mod tests {
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};
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let swap_encoder_registry = get_swap_encoder_registry();
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let encoder =
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SplitSwapStrategyEncoder::new(private_key, eth_chain(), swap_encoder_registry).unwrap();
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SplitSwapStrategyEncoder::new(eth_chain(), swap_encoder_registry, Some(private_key))
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.unwrap();
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let solution = Solution {
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exact_out: false,
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given_token: dai,
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@@ -844,7 +870,8 @@ mod tests {
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};
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let swap_encoder_registry = get_swap_encoder_registry();
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let encoder =
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SplitSwapStrategyEncoder::new(private_key, eth_chain(), swap_encoder_registry).unwrap();
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SplitSwapStrategyEncoder::new(eth_chain(), swap_encoder_registry, Some(private_key))
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.unwrap();
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let solution = Solution {
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exact_out: false,
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given_token: weth,
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@@ -924,7 +951,8 @@ mod tests {
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};
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let swap_encoder_registry = get_swap_encoder_registry();
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let encoder =
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SplitSwapStrategyEncoder::new(private_key, eth_chain(), swap_encoder_registry).unwrap();
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SplitSwapStrategyEncoder::new(eth_chain(), swap_encoder_registry, Some(private_key))
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.unwrap();
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let solution = Solution {
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exact_out: false,
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given_token: usdc,
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@@ -1010,6 +1038,86 @@ mod tests {
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assert_eq!(hex_calldata[1288..], expected_swaps);
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}
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#[test]
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fn test_split_swap_strategy_encoder_simple_route_no_permit2() {
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// Performs a single swap from WETH to DAI on a USV2 pool, without permit2 and no grouping
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// optimizations.
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let weth = Bytes::from_str("0xc02aaa39b223fe8d0a0e5c4f27ead9083c756cc2").unwrap();
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let dai = Bytes::from_str("0x6b175474e89094c44da98b954eedeac495271d0f").unwrap();
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let expected_amount = Some(BigUint::from_str("2_650_000000000000000000").unwrap());
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let slippage = Some(0.01f64);
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let checked_amount = Some(BigUint::from_str("2_640_000000000000000000").unwrap());
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let expected_min_amount = U256::from_str("2_640_000000000000000000").unwrap();
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let swap = Swap {
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component: ProtocolComponent {
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id: "0xA478c2975Ab1Ea89e8196811F51A7B7Ade33eB11".to_string(),
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protocol_system: "uniswap_v2".to_string(),
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..Default::default()
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},
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token_in: weth.clone(),
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token_out: dai.clone(),
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split: 0f64,
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};
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let swap_encoder_registry = get_swap_encoder_registry();
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let encoder =
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SplitSwapStrategyEncoder::new(eth_chain(), swap_encoder_registry, None).unwrap();
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let solution = Solution {
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exact_out: false,
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given_token: weth,
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given_amount: BigUint::from_str("1_000000000000000000").unwrap(),
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checked_token: dai,
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expected_amount,
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slippage,
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checked_amount,
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sender: Bytes::from_str("0xcd09f75E2BF2A4d11F3AB23f1389FcC1621c0cc2").unwrap(),
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receiver: Bytes::from_str("0xcd09f75E2BF2A4d11F3AB23f1389FcC1621c0cc2").unwrap(),
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router_address: Bytes::from_str("0x3Ede3eCa2a72B3aeCC820E955B36f38437D01395").unwrap(),
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swaps: vec![swap],
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..Default::default()
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};
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let (calldata, _, _) = encoder
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.encode_strategy(solution)
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.unwrap();
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let expected_min_amount_encoded = hex::encode(U256::abi_encode(&expected_min_amount));
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let expected_input = [
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"0a83cb08", // Function selector
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"0000000000000000000000000000000000000000000000000de0b6b3a7640000", // amount out
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"000000000000000000000000c02aaa39b223fe8d0a0e5c4f27ead9083c756cc2", // token in
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"0000000000000000000000006b175474e89094c44da98b954eedeac495271d0f", // token out
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&expected_min_amount_encoded, // min amount out
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"0000000000000000000000000000000000000000000000000000000000000000", // wrap
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"0000000000000000000000000000000000000000000000000000000000000000", // unwrap
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"0000000000000000000000000000000000000000000000000000000000000002", // tokens length
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"000000000000000000000000cd09f75e2bf2a4d11f3ab23f1389fcc1621c0cc2", // receiver
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"0000000000000000000000000000000000000000000000000000000000000120", // offset of ple encoded swaps
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"000000000000000000000000000000000000000000000000000000000000005c", // length of ple encoded swaps without padding
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"005a", // ple encoded swaps
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// Swap header
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"00", // token in index
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"01", // token out index
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"000000", // split
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// Swap data
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"5c2f5a71f67c01775180adc06909288b4c329308", // executor address
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"bd0625ab", // selector
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"c02aaa39b223fe8d0a0e5c4f27ead9083c756cc2", // token in
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"a478c2975ab1ea89e8196811f51a7b7ade33eb11", // component id
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"3ede3eca2a72b3aecc820e955b36f38437d01395", // receiver
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"00", // zero2one
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"00", // exact out
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"000000", // padding
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]
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.join("");
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let hex_calldata = encode(&calldata);
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assert_eq!(hex_calldata, expected_input);
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println!("{}", hex_calldata);
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}
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#[test]
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fn test_split_encoding_strategy_usv4_eth_in() {
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// Performs a single swap from ETH to PEPE using a USV4 pool
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@@ -1045,7 +1153,8 @@ mod tests {
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};
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let swap_encoder_registry = get_swap_encoder_registry();
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let encoder =
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SplitSwapStrategyEncoder::new(private_key, eth_chain(), swap_encoder_registry).unwrap();
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SplitSwapStrategyEncoder::new(eth_chain(), swap_encoder_registry, Some(private_key))
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.unwrap();
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let solution = Solution {
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exact_out: false,
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@@ -1108,7 +1217,9 @@ mod tests {
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let swap_encoder_registry = get_swap_encoder_registry();
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let encoder =
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SplitSwapStrategyEncoder::new(private_key, eth_chain(), swap_encoder_registry).unwrap();
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SplitSwapStrategyEncoder::new(eth_chain(), swap_encoder_registry, Some(private_key))
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.unwrap();
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let solution = Solution {
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exact_out: false,
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given_token: usdc,
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@@ -20,6 +20,16 @@ pub struct EVMTychoEncoder {
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wrapped_address: Bytes,
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}
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impl Clone for EVMTychoEncoder {
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fn clone(&self) -> Self {
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Self {
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strategy_encoder: self.strategy_encoder.clone_box(),
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native_address: self.native_address.clone(),
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wrapped_address: self.wrapped_address.clone(),
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}
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}
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}
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impl EVMTychoEncoder {
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pub fn new(
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chain: tycho_core::models::Chain,
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