revm_context_interface/transaction.rs
1//! Transaction trait [`Transaction`] and associated types.
2mod alloy_types;
3pub mod eip2930;
4pub mod eip7702;
5pub mod transaction_type;
6
7pub use alloy_types::{
8 AccessList, AccessListItem, Authorization, RecoveredAuthority, RecoveredAuthorization,
9 SignedAuthorization,
10};
11pub use eip2930::AccessListItemTr;
12pub use eip7702::AuthorizationTr;
13pub use transaction_type::TransactionType;
14
15use crate::result::InvalidTransaction;
16use auto_impl::auto_impl;
17use core::cmp::min;
18use core::fmt::Debug;
19use primitives::{eip4844::GAS_PER_BLOB, Address, Bytes, TxKind, B256, U256};
20
21/// Transaction validity error types.
22pub trait TransactionError: Debug + core::error::Error {}
23
24/// Main Transaction trait that abstracts and specifies all transaction currently supported by Ethereum
25///
26/// Access to any associated type is gaited behind [`tx_type`][Transaction::tx_type] function.
27///
28/// It can be extended to support new transaction types and only transaction types can be
29/// deprecated by not returning tx_type.
30#[auto_impl(&, Box, Arc, Rc)]
31pub trait Transaction {
32 /// EIP-2930 Access list item type.
33 type AccessListItem<'a>: AccessListItemTr
34 where
35 Self: 'a;
36
37 /// EIP-7702 Authorization type.
38 type Authorization<'a>: AuthorizationTr
39 where
40 Self: 'a;
41
42 /// Returns the transaction type.
43 ///
44 /// Depending on this field other functions should be called.
45 fn tx_type(&self) -> u8;
46
47 /// Caller aka Author aka transaction signer.
48 ///
49 /// Note : Common field for all transactions.
50 fn caller(&self) -> Address;
51
52 /// The maximum amount of gas the transaction can use.
53 ///
54 /// Note : Common field for all transactions.
55 fn gas_limit(&self) -> u64;
56
57 /// The value sent to the receiver of [`TxKind::Call`][primitives::TxKind::Call].
58 ///
59 /// Note : Common field for all transactions.
60 fn value(&self) -> U256;
61
62 /// Returns the input data of the transaction.
63 ///
64 /// Note : Common field for all transactions.
65 fn input(&self) -> &Bytes;
66
67 /// The nonce of the transaction.
68 ///
69 /// Note : Common field for all transactions.
70 fn nonce(&self) -> u64;
71
72 /// Transaction kind. It can be Call or Create.
73 ///
74 /// Kind is applicable for: Legacy, EIP-2930, EIP-1559
75 /// And is Call for EIP-4844 and EIP-7702 transactions.
76 fn kind(&self) -> TxKind;
77
78 /// Chain Id is optional for legacy transactions.
79 ///
80 /// As it was introduced in EIP-155.
81 fn chain_id(&self) -> Option<u64>;
82
83 /// Gas price for the transaction.
84 /// It is only applicable for Legacy and EIP-2930 transactions.
85 /// For Eip1559 it is max_fee_per_gas.
86 fn gas_price(&self) -> u128;
87
88 /// Access list for the transaction.
89 ///
90 /// Introduced in EIP-2930.
91 fn access_list(&self) -> Option<impl Iterator<Item = Self::AccessListItem<'_>>>;
92
93 /// Returns vector of fixed size hash(32 bytes)
94 ///
95 /// Note : EIP-4844 transaction field.
96 fn blob_versioned_hashes(&self) -> &[B256];
97
98 /// Max fee per data gas
99 ///
100 /// Note : EIP-4844 transaction field.
101 fn max_fee_per_blob_gas(&self) -> u128;
102
103 /// Total gas for all blobs. Max number of blocks is already checked
104 /// so we dont need to check for overflow.
105 fn total_blob_gas(&self) -> u64 {
106 GAS_PER_BLOB * self.blob_versioned_hashes().len() as u64
107 }
108
109 /// Calculates the maximum [EIP-4844] `data_fee` of the transaction.
110 ///
111 /// This is used for ensuring that the user has at least enough funds to pay the
112 /// `max_fee_per_blob_gas * total_blob_gas`, on top of regular gas costs.
113 ///
114 /// See EIP-4844:
115 /// <https://github.com/ethereum/EIPs/blob/master/EIPS/eip-4844.md#execution-layer-validation>
116 fn calc_max_data_fee(&self) -> U256 {
117 U256::from((self.total_blob_gas() as u128).saturating_mul(self.max_fee_per_blob_gas()))
118 }
119
120 /// Returns length of the authorization list.
121 ///
122 /// # Note
123 ///
124 /// Transaction is considered invalid if list is empty.
125 fn authorization_list_len(&self) -> usize;
126
127 /// List of authorizations, that contains the signature that authorizes this
128 /// caller to place the code to signer account.
129 ///
130 /// Set EOA account code for one transaction
131 ///
132 /// [EIP-Set EOA account code for one transaction](https://eips.ethereum.org/EIPS/eip-7702)
133 fn authorization_list(&self) -> impl Iterator<Item = Self::Authorization<'_>>;
134
135 // TODO(EOF)
136 // /// List of initcodes found in Initcode transaction. Initcodes can only be accessed
137 // /// by TXCREATE opcode to create a new EOF contract.
138 // ///
139 // /// Each transaction can contain up to [`primitives::eof::MAX_INITCODE_COUNT`] initcodes,
140 // /// with each initcode not exceeding [`primitives::MAX_INITCODE_SIZE`] bytes in size.
141 // ///
142 // /// EIP link: <https://eips.ethereum.org/EIPS/eip-7873>
143 // fn initcodes(&self) -> &[Bytes];
144
145 /// Returns maximum fee that can be paid for the transaction.
146 fn max_fee_per_gas(&self) -> u128 {
147 self.gas_price()
148 }
149
150 /// Maximum priority fee per gas.
151 fn max_priority_fee_per_gas(&self) -> Option<u128>;
152
153 /// Returns effective gas price is gas price field for Legacy and Eip2930 transaction.
154 ///
155 /// While for transactions after Eip1559 it is minimum of max_fee and `base + max_priority_fee`.
156 fn effective_gas_price(&self, base_fee: u128) -> u128 {
157 if self.tx_type() == TransactionType::Legacy as u8
158 || self.tx_type() == TransactionType::Eip2930 as u8
159 {
160 return self.gas_price();
161 }
162
163 // for EIP-1559 tx and onwards gas_price represents maximum price.
164 let max_price = self.gas_price();
165 let Some(max_priority_fee) = self.max_priority_fee_per_gas() else {
166 return max_price;
167 };
168 min(max_price, base_fee.saturating_add(max_priority_fee))
169 }
170
171 /// Returns the maximum balance that can be spent by the transaction.
172 ///
173 /// Return U256 or error if all values overflow U256 number.
174 fn max_balance_spending(&self) -> Result<U256, InvalidTransaction> {
175 // gas_limit * max_fee + value + additional_gas_cost
176 let mut max_balance_spending = (self.gas_limit() as u128)
177 .checked_mul(self.max_fee_per_gas())
178 .and_then(|gas_cost| U256::from(gas_cost).checked_add(self.value()))
179 .ok_or(InvalidTransaction::OverflowPaymentInTransaction)?;
180
181 // add blob fee
182 if self.tx_type() == TransactionType::Eip4844 {
183 let data_fee = self.calc_max_data_fee();
184 max_balance_spending = max_balance_spending
185 .checked_add(data_fee)
186 .ok_or(InvalidTransaction::OverflowPaymentInTransaction)?;
187 }
188 Ok(max_balance_spending)
189 }
190
191 /// Returns the effective balance that is going to be spent that depends on base_fee
192 /// Multiplication for gas are done in u128 type (saturated) and value is added as U256 type.
193 ///
194 /// # Reason
195 ///
196 /// This is done for performance reasons and it is known to be safe as there is no more that u128::MAX value of eth in existence.
197 ///
198 /// This is always strictly less than [`Self::max_balance_spending`].
199 ///
200 /// Return U256 or error if all values overflow U256 number.
201 fn effective_balance_spending(
202 &self,
203 base_fee: u128,
204 blob_price: u128,
205 ) -> Result<U256, InvalidTransaction> {
206 // gas_limit * max_fee + value + additional_gas_cost
207 let mut effective_balance_spending = (self.gas_limit() as u128)
208 .checked_mul(self.effective_gas_price(base_fee))
209 .and_then(|gas_cost| U256::from(gas_cost).checked_add(self.value()))
210 .ok_or(InvalidTransaction::OverflowPaymentInTransaction)?;
211
212 // add blob fee
213 if self.tx_type() == TransactionType::Eip4844 {
214 let blob_gas = self.total_blob_gas() as u128;
215 effective_balance_spending = effective_balance_spending
216 .checked_add(U256::from(blob_price.saturating_mul(blob_gas)))
217 .ok_or(InvalidTransaction::OverflowPaymentInTransaction)?;
218 }
219
220 Ok(effective_balance_spending)
221 }
222}