alloy_consensus/transaction/
eip1559.rs

1use crate::{SignableTransaction, Transaction, TxType};
2use alloy_eips::{
3    eip2718::IsTyped2718, eip2930::AccessList, eip7702::SignedAuthorization, Typed2718,
4};
5use alloy_primitives::{Bytes, ChainId, Signature, TxKind, B256, U256};
6use alloy_rlp::{BufMut, Decodable, Encodable};
7use core::mem;
8
9use super::{RlpEcdsaDecodableTx, RlpEcdsaEncodableTx};
10
11/// A transaction with a priority fee ([EIP-1559](https://eips.ethereum.org/EIPS/eip-1559)).
12#[derive(Clone, Debug, Default, PartialEq, Eq, Hash)]
13#[cfg_attr(any(test, feature = "arbitrary"), derive(arbitrary::Arbitrary))]
14#[cfg_attr(feature = "serde", derive(serde::Serialize, serde::Deserialize))]
15#[cfg_attr(feature = "serde", serde(rename_all = "camelCase"))]
16#[doc(alias = "Eip1559Transaction", alias = "TransactionEip1559", alias = "Eip1559Tx")]
17pub struct TxEip1559 {
18    /// EIP-155: Simple replay attack protection
19    #[cfg_attr(feature = "serde", serde(with = "alloy_serde::quantity"))]
20    pub chain_id: ChainId,
21    /// A scalar value equal to the number of transactions sent by the sender; formally Tn.
22    #[cfg_attr(feature = "serde", serde(with = "alloy_serde::quantity"))]
23    pub nonce: u64,
24    /// A scalar value equal to the maximum
25    /// amount of gas that should be used in executing
26    /// this transaction. This is paid up-front, before any
27    /// computation is done and may not be increased
28    /// later; formally Tg.
29    #[cfg_attr(
30        feature = "serde",
31        serde(with = "alloy_serde::quantity", rename = "gas", alias = "gasLimit")
32    )]
33    pub gas_limit: u64,
34    /// A scalar value equal to the maximum
35    /// amount of gas that should be used in executing
36    /// this transaction. This is paid up-front, before any
37    /// computation is done and may not be increased
38    /// later; formally Tg.
39    ///
40    /// As ethereum circulation is around 120mil eth as of 2022 that is around
41    /// 120000000000000000000000000 wei we are safe to use u128 as its max number is:
42    /// 340282366920938463463374607431768211455
43    ///
44    /// This is also known as `GasFeeCap`
45    #[cfg_attr(feature = "serde", serde(with = "alloy_serde::quantity"))]
46    pub max_fee_per_gas: u128,
47    /// Max Priority fee that transaction is paying
48    ///
49    /// As ethereum circulation is around 120mil eth as of 2022 that is around
50    /// 120000000000000000000000000 wei we are safe to use u128 as its max number is:
51    /// 340282366920938463463374607431768211455
52    ///
53    /// This is also known as `GasTipCap`
54    #[cfg_attr(feature = "serde", serde(with = "alloy_serde::quantity"))]
55    pub max_priority_fee_per_gas: u128,
56    /// The 160-bit address of the message call’s recipient or, for a contract creation
57    /// transaction, ∅, used here to denote the only member of B0 ; formally Tt.
58    #[cfg_attr(feature = "serde", serde(default))]
59    pub to: TxKind,
60    /// A scalar value equal to the number of Wei to
61    /// be transferred to the message call’s recipient or,
62    /// in the case of contract creation, as an endowment
63    /// to the newly created account; formally Tv.
64    pub value: U256,
65    /// The accessList specifies a list of addresses and storage keys;
66    /// these addresses and storage keys are added into the `accessed_addresses`
67    /// and `accessed_storage_keys` global sets (introduced in EIP-2929).
68    /// A gas cost is charged, though at a discount relative to the cost of
69    /// accessing outside the list.
70    pub access_list: AccessList,
71    /// Input has two uses depending if `to` field is Create or Call.
72    /// pub init: An unlimited size byte array specifying the
73    /// EVM-code for the account initialisation procedure CREATE,
74    /// data: An unlimited size byte array specifying the
75    /// input data of the message call, formally Td.
76    pub input: Bytes,
77}
78
79impl TxEip1559 {
80    /// Get the transaction type
81    #[doc(alias = "transaction_type")]
82    pub const fn tx_type() -> TxType {
83        TxType::Eip1559
84    }
85
86    /// Calculates a heuristic for the in-memory size of the [TxEip1559]
87    /// transaction.
88    #[inline]
89    pub fn size(&self) -> usize {
90        mem::size_of::<ChainId>() + // chain_id
91        mem::size_of::<u64>() + // nonce
92        mem::size_of::<u64>() + // gas_limit
93        mem::size_of::<u128>() + // max_fee_per_gas
94        mem::size_of::<u128>() + // max_priority_fee_per_gas
95        self.to.size() + // to
96        mem::size_of::<U256>() + // value
97        self.access_list.size() + // access_list
98        self.input.len() // input
99    }
100}
101
102impl RlpEcdsaEncodableTx for TxEip1559 {
103    /// Outputs the length of the transaction's fields, without a RLP header.
104    fn rlp_encoded_fields_length(&self) -> usize {
105        self.chain_id.length()
106            + self.nonce.length()
107            + self.max_priority_fee_per_gas.length()
108            + self.max_fee_per_gas.length()
109            + self.gas_limit.length()
110            + self.to.length()
111            + self.value.length()
112            + self.input.0.length()
113            + self.access_list.length()
114    }
115
116    /// Encodes only the transaction's fields into the desired buffer, without
117    /// a RLP header.
118    fn rlp_encode_fields(&self, out: &mut dyn alloy_rlp::BufMut) {
119        self.chain_id.encode(out);
120        self.nonce.encode(out);
121        self.max_priority_fee_per_gas.encode(out);
122        self.max_fee_per_gas.encode(out);
123        self.gas_limit.encode(out);
124        self.to.encode(out);
125        self.value.encode(out);
126        self.input.0.encode(out);
127        self.access_list.encode(out);
128    }
129}
130
131impl RlpEcdsaDecodableTx for TxEip1559 {
132    const DEFAULT_TX_TYPE: u8 = { Self::tx_type() as u8 };
133
134    /// Decodes the inner [TxEip1559] fields from RLP bytes.
135    ///
136    /// NOTE: This assumes a RLP header has already been decoded, and _just_
137    /// decodes the following RLP fields in the following order:
138    ///
139    /// - `chain_id`
140    /// - `nonce`
141    /// - `max_priority_fee_per_gas`
142    /// - `max_fee_per_gas`
143    /// - `gas_limit`
144    /// - `to`
145    /// - `value`
146    /// - `data` (`input`)
147    /// - `access_list`
148    fn rlp_decode_fields(buf: &mut &[u8]) -> alloy_rlp::Result<Self> {
149        Ok(Self {
150            chain_id: Decodable::decode(buf)?,
151            nonce: Decodable::decode(buf)?,
152            max_priority_fee_per_gas: Decodable::decode(buf)?,
153            max_fee_per_gas: Decodable::decode(buf)?,
154            gas_limit: Decodable::decode(buf)?,
155            to: Decodable::decode(buf)?,
156            value: Decodable::decode(buf)?,
157            input: Decodable::decode(buf)?,
158            access_list: Decodable::decode(buf)?,
159        })
160    }
161}
162
163impl Transaction for TxEip1559 {
164    #[inline]
165    fn chain_id(&self) -> Option<ChainId> {
166        Some(self.chain_id)
167    }
168
169    #[inline]
170    fn nonce(&self) -> u64 {
171        self.nonce
172    }
173
174    #[inline]
175    fn gas_limit(&self) -> u64 {
176        self.gas_limit
177    }
178
179    #[inline]
180    fn gas_price(&self) -> Option<u128> {
181        None
182    }
183
184    #[inline]
185    fn max_fee_per_gas(&self) -> u128 {
186        self.max_fee_per_gas
187    }
188
189    #[inline]
190    fn max_priority_fee_per_gas(&self) -> Option<u128> {
191        Some(self.max_priority_fee_per_gas)
192    }
193
194    #[inline]
195    fn max_fee_per_blob_gas(&self) -> Option<u128> {
196        None
197    }
198
199    #[inline]
200    fn priority_fee_or_price(&self) -> u128 {
201        self.max_priority_fee_per_gas
202    }
203
204    fn effective_gas_price(&self, base_fee: Option<u64>) -> u128 {
205        base_fee.map_or(self.max_fee_per_gas, |base_fee| {
206            // if the tip is greater than the max priority fee per gas, set it to the max
207            // priority fee per gas + base fee
208            let tip = self.max_fee_per_gas.saturating_sub(base_fee as u128);
209            if tip > self.max_priority_fee_per_gas {
210                self.max_priority_fee_per_gas + base_fee as u128
211            } else {
212                // otherwise return the max fee per gas
213                self.max_fee_per_gas
214            }
215        })
216    }
217
218    #[inline]
219    fn is_dynamic_fee(&self) -> bool {
220        true
221    }
222
223    #[inline]
224    fn kind(&self) -> TxKind {
225        self.to
226    }
227
228    #[inline]
229    fn is_create(&self) -> bool {
230        self.to.is_create()
231    }
232
233    #[inline]
234    fn value(&self) -> U256 {
235        self.value
236    }
237
238    #[inline]
239    fn input(&self) -> &Bytes {
240        &self.input
241    }
242
243    #[inline]
244    fn access_list(&self) -> Option<&AccessList> {
245        Some(&self.access_list)
246    }
247
248    #[inline]
249    fn blob_versioned_hashes(&self) -> Option<&[B256]> {
250        None
251    }
252
253    #[inline]
254    fn authorization_list(&self) -> Option<&[SignedAuthorization]> {
255        None
256    }
257}
258
259impl Typed2718 for TxEip1559 {
260    fn ty(&self) -> u8 {
261        TxType::Eip1559 as u8
262    }
263}
264
265impl IsTyped2718 for TxEip1559 {
266    fn is_type(type_id: u8) -> bool {
267        matches!(type_id, 0x02)
268    }
269}
270
271impl SignableTransaction<Signature> for TxEip1559 {
272    fn set_chain_id(&mut self, chain_id: ChainId) {
273        self.chain_id = chain_id;
274    }
275
276    fn encode_for_signing(&self, out: &mut dyn alloy_rlp::BufMut) {
277        out.put_u8(Self::tx_type() as u8);
278        self.encode(out)
279    }
280
281    fn payload_len_for_signature(&self) -> usize {
282        self.length() + 1
283    }
284}
285
286impl Encodable for TxEip1559 {
287    fn encode(&self, out: &mut dyn BufMut) {
288        self.rlp_encode(out);
289    }
290
291    fn length(&self) -> usize {
292        self.rlp_encoded_length()
293    }
294}
295
296impl Decodable for TxEip1559 {
297    fn decode(buf: &mut &[u8]) -> alloy_rlp::Result<Self> {
298        Self::rlp_decode(buf)
299    }
300}
301
302/// Bincode-compatible [`TxEip1559`] serde implementation.
303#[cfg(all(feature = "serde", feature = "serde-bincode-compat"))]
304pub(super) mod serde_bincode_compat {
305    use alloc::borrow::Cow;
306    use alloy_eips::eip2930::AccessList;
307    use alloy_primitives::{Bytes, ChainId, TxKind, U256};
308    use serde::{Deserialize, Deserializer, Serialize, Serializer};
309    use serde_with::{DeserializeAs, SerializeAs};
310
311    /// Bincode-compatible [`super::TxEip1559`] serde implementation.
312    ///
313    /// Intended to use with the [`serde_with::serde_as`] macro in the following way:
314    /// ```rust
315    /// use alloy_consensus::{serde_bincode_compat, TxEip1559};
316    /// use serde::{Deserialize, Serialize};
317    /// use serde_with::serde_as;
318    ///
319    /// #[serde_as]
320    /// #[derive(Serialize, Deserialize)]
321    /// struct Data {
322    ///     #[serde_as(as = "serde_bincode_compat::transaction::TxEip1559")]
323    ///     transaction: TxEip1559,
324    /// }
325    /// ```
326    #[derive(Debug, Serialize, Deserialize)]
327    pub struct TxEip1559<'a> {
328        chain_id: ChainId,
329        nonce: u64,
330        gas_limit: u64,
331        max_fee_per_gas: u128,
332        max_priority_fee_per_gas: u128,
333        #[serde(default)]
334        to: TxKind,
335        value: U256,
336        access_list: Cow<'a, AccessList>,
337        input: Cow<'a, Bytes>,
338    }
339
340    impl<'a> From<&'a super::TxEip1559> for TxEip1559<'a> {
341        fn from(value: &'a super::TxEip1559) -> Self {
342            Self {
343                chain_id: value.chain_id,
344                nonce: value.nonce,
345                gas_limit: value.gas_limit,
346                max_fee_per_gas: value.max_fee_per_gas,
347                max_priority_fee_per_gas: value.max_priority_fee_per_gas,
348                to: value.to,
349                value: value.value,
350                access_list: Cow::Borrowed(&value.access_list),
351                input: Cow::Borrowed(&value.input),
352            }
353        }
354    }
355
356    impl<'a> From<TxEip1559<'a>> for super::TxEip1559 {
357        fn from(value: TxEip1559<'a>) -> Self {
358            Self {
359                chain_id: value.chain_id,
360                nonce: value.nonce,
361                gas_limit: value.gas_limit,
362                max_fee_per_gas: value.max_fee_per_gas,
363                max_priority_fee_per_gas: value.max_priority_fee_per_gas,
364                to: value.to,
365                value: value.value,
366                access_list: value.access_list.into_owned(),
367                input: value.input.into_owned(),
368            }
369        }
370    }
371
372    impl SerializeAs<super::TxEip1559> for TxEip1559<'_> {
373        fn serialize_as<S>(source: &super::TxEip1559, serializer: S) -> Result<S::Ok, S::Error>
374        where
375            S: Serializer,
376        {
377            TxEip1559::from(source).serialize(serializer)
378        }
379    }
380
381    impl<'de> DeserializeAs<'de, super::TxEip1559> for TxEip1559<'de> {
382        fn deserialize_as<D>(deserializer: D) -> Result<super::TxEip1559, D::Error>
383        where
384            D: Deserializer<'de>,
385        {
386            TxEip1559::deserialize(deserializer).map(Into::into)
387        }
388    }
389
390    #[cfg(test)]
391    mod tests {
392        use arbitrary::Arbitrary;
393        use bincode::config;
394        use rand::Rng;
395        use serde::{Deserialize, Serialize};
396        use serde_with::serde_as;
397
398        use super::super::{serde_bincode_compat, TxEip1559};
399
400        #[test]
401        fn test_tx_eip1559_bincode_roundtrip() {
402            #[serde_as]
403            #[derive(Debug, PartialEq, Eq, Serialize, Deserialize)]
404            struct Data {
405                #[serde_as(as = "serde_bincode_compat::TxEip1559")]
406                transaction: TxEip1559,
407            }
408
409            let mut bytes = [0u8; 1024];
410            rand::thread_rng().fill(bytes.as_mut_slice());
411            let data = Data {
412                transaction: TxEip1559::arbitrary(&mut arbitrary::Unstructured::new(&bytes))
413                    .unwrap(),
414            };
415
416            let encoded = bincode::serde::encode_to_vec(&data, config::legacy()).unwrap();
417            let (decoded, _) =
418                bincode::serde::decode_from_slice::<Data, _>(&encoded, config::legacy()).unwrap();
419            assert_eq!(decoded, data);
420        }
421    }
422}
423
424#[cfg(all(test, feature = "k256"))]
425mod tests {
426    use super::TxEip1559;
427    use crate::{
428        transaction::{RlpEcdsaDecodableTx, RlpEcdsaEncodableTx},
429        SignableTransaction,
430    };
431    use alloy_eips::eip2930::AccessList;
432    use alloy_primitives::{address, b256, hex, Address, Signature, B256, U256};
433
434    #[test]
435    fn recover_signer_eip1559() {
436        let signer: Address = address!("dd6b8b3dc6b7ad97db52f08a275ff4483e024cea");
437        let hash: B256 = b256!("0ec0b6a2df4d87424e5f6ad2a654e27aaeb7dac20ae9e8385cc09087ad532ee0");
438
439        let tx =  TxEip1559 {
440                chain_id: 1,
441                nonce: 0x42,
442                gas_limit: 44386,
443                to: address!("6069a6c32cf691f5982febae4faf8a6f3ab2f0f6").into(),
444                value: U256::from(0_u64),
445                input:  hex!("a22cb4650000000000000000000000005eee75727d804a2b13038928d36f8b188945a57a0000000000000000000000000000000000000000000000000000000000000000").into(),
446                max_fee_per_gas: 0x4a817c800,
447                max_priority_fee_per_gas: 0x3b9aca00,
448                access_list: AccessList::default(),
449            };
450
451        let sig = Signature::from_scalars_and_parity(
452            b256!("840cfc572845f5786e702984c2a582528cad4b49b2a10b9db1be7fca90058565"),
453            b256!("25e7109ceb98168d95b09b18bbf6b685130e0562f233877d492b94eee0c5b6d1"),
454            false,
455        );
456
457        assert_eq!(
458            tx.signature_hash(),
459            hex!("0d5688ac3897124635b6cf1bc0e29d6dfebceebdc10a54d74f2ef8b56535b682")
460        );
461
462        let signed_tx = tx.into_signed(sig);
463        assert_eq!(*signed_tx.hash(), hash, "Expected same hash");
464        assert_eq!(signed_tx.recover_signer().unwrap(), signer, "Recovering signer should pass.");
465    }
466
467    #[test]
468    fn encode_decode_eip1559() {
469        let hash: B256 = b256!("0ec0b6a2df4d87424e5f6ad2a654e27aaeb7dac20ae9e8385cc09087ad532ee0");
470
471        let tx =  TxEip1559 {
472                chain_id: 1,
473                nonce: 0x42,
474                gas_limit: 44386,
475                to: address!("6069a6c32cf691f5982febae4faf8a6f3ab2f0f6").into(),
476                value: U256::from(0_u64),
477                input:  hex!("a22cb4650000000000000000000000005eee75727d804a2b13038928d36f8b188945a57a0000000000000000000000000000000000000000000000000000000000000000").into(),
478                max_fee_per_gas: 0x4a817c800,
479                max_priority_fee_per_gas: 0x3b9aca00,
480                access_list: AccessList::default(),
481            };
482
483        let sig = Signature::from_scalars_and_parity(
484            b256!("840cfc572845f5786e702984c2a582528cad4b49b2a10b9db1be7fca90058565"),
485            b256!("25e7109ceb98168d95b09b18bbf6b685130e0562f233877d492b94eee0c5b6d1"),
486            false,
487        );
488
489        let mut buf = vec![];
490        tx.rlp_encode_signed(&sig, &mut buf);
491        let decoded = TxEip1559::rlp_decode_signed(&mut &buf[..]).unwrap();
492        assert_eq!(decoded, tx.into_signed(sig));
493        assert_eq!(*decoded.hash(), hash);
494    }
495}