alloy_eips/eip4844/
mod.rs

1//! [EIP-4844] constants and helpers.
2//!
3//! [EIP-4844]: https://eips.ethereum.org/EIPS/eip-4844
4
5/// Module houses the KZG settings, enabling Custom and Default
6#[cfg(feature = "kzg")]
7pub mod env_settings;
8/// This module contains functions and types used for parsing and utilizing the [Trusted Setup]( https://ceremony.ethereum.org/) for the `KzgSettings`.
9#[cfg(feature = "kzg")]
10pub mod trusted_setup_points;
11
12/// Builder and utils for the [EIP-4844 Blob Transaction](https://eips.ethereum.org/EIPS/eip-4844#blob-transaction)
13pub mod builder;
14pub mod utils;
15
16mod engine;
17pub use engine::*;
18
19/// Contains sidecar related types
20#[cfg(feature = "kzg-sidecar")]
21mod sidecar;
22#[cfg(feature = "kzg-sidecar")]
23pub use sidecar::*;
24
25use alloy_primitives::{b256, Bytes, FixedBytes, B256, U256};
26
27use crate::eip7840;
28
29/// The modulus of the BLS group used in the KZG commitment scheme. All field
30/// elements contained in a blob MUST be STRICTLY LESS than this value.
31pub const BLS_MODULUS_BYTES: B256 =
32    b256!("73eda753299d7d483339d80809a1d80553bda402fffe5bfeffffffff00000001");
33
34/// The modulus of the BLS group used in the KZG commitment scheme. All field
35/// elements contained in a blob MUST be STRICTLY LESS than this value.
36pub const BLS_MODULUS: U256 = U256::from_be_bytes(BLS_MODULUS_BYTES.0);
37
38/// Size a single field element in bytes.
39pub const FIELD_ELEMENT_BYTES: u64 = 32;
40
41/// Size a single field element in bytes.
42pub const FIELD_ELEMENT_BYTES_USIZE: usize = FIELD_ELEMENT_BYTES as usize;
43
44/// How many field elements are stored in a single data blob.
45pub const FIELD_ELEMENTS_PER_BLOB: u64 = 4096;
46
47/// Number of usable bits in a field element. The top two bits are always zero.
48pub const USABLE_BITS_PER_FIELD_ELEMENT: usize = 254;
49
50/// The number of usable bytes in a single data blob. This is the number of
51/// bytes you can encode in a blob without any field element being >=
52/// [`BLS_MODULUS`].
53pub const USABLE_BYTES_PER_BLOB: usize =
54    USABLE_BITS_PER_FIELD_ELEMENT * FIELD_ELEMENTS_PER_BLOB as usize / 8;
55
56/// Gas consumption of a single data blob.
57pub const DATA_GAS_PER_BLOB: u64 = 131_072u64; // 32*4096 = 131072 == 2^17 == 0x20000
58
59/// How many bytes are in a blob
60/// Same as [DATA_GAS_PER_BLOB], but as an usize
61pub const BYTES_PER_BLOB: usize = 131_072;
62
63/// Maximum data gas for data blobs in a single block.
64#[deprecated(
65    since = "0.15.3",
66    note = "use hardfork specific MAX_DATA_GAS_PER_BLOCK_DENCUN constant or `BlobParams::max_blob_gas_per_block`"
67)]
68pub const MAX_DATA_GAS_PER_BLOCK: u64 = MAX_DATA_GAS_PER_BLOCK_DENCUN;
69
70/// Maximum data gas for data blobs in a single block.
71pub const MAX_DATA_GAS_PER_BLOCK_DENCUN: u64 = 786_432u64; // 0xC0000 = 6 * 0x20000
72
73/// Target data gas for data blobs in a single block.
74#[deprecated(
75    since = "0.15.3",
76    note = "use hardfork specific TARGET_DATA_GAS_PER_BLOCK_DENCUN constant or `BlobParams::target_blob_gas_per_block`"
77)]
78pub const TARGET_DATA_GAS_PER_BLOCK: u64 = TARGET_DATA_GAS_PER_BLOCK_DENCUN;
79
80/// Target data gas for data blobs in a single block.
81pub const TARGET_DATA_GAS_PER_BLOCK_DENCUN: u64 = 393_216u64; // 0x60000 = 3 * 0x20000
82
83/// Maximum number of data blobs in a single block.
84#[deprecated(
85    since = "0.15.3",
86    note = "use hardfork specific MAX_BLOBS_PER_BLOCK_DENCUN constant or `BlobParams.max_blob_count`"
87)]
88pub const MAX_BLOBS_PER_BLOCK: usize = MAX_BLOBS_PER_BLOCK_DENCUN; // 786432 / 131072  = 6
89
90/// Maximum number of data blobs in a single block.
91pub const MAX_BLOBS_PER_BLOCK_DENCUN: usize =
92    (MAX_DATA_GAS_PER_BLOCK_DENCUN / DATA_GAS_PER_BLOB) as usize; // 786432 / 131072  = 6
93
94/// Target number of data blobs in a single block.
95#[deprecated(
96    since = "0.15.3",
97    note = "use hardfork specific TARGET_BLOBS_PER_BLOCK_DENCUN constant or `BlobParams.target_blob_count`"
98)]
99pub const TARGET_BLOBS_PER_BLOCK: u64 = TARGET_BLOBS_PER_BLOCK_DENCUN; // 393216 / 131072 = 3
100
101/// Target number of data blobs in a single block.
102pub const TARGET_BLOBS_PER_BLOCK_DENCUN: u64 = TARGET_DATA_GAS_PER_BLOCK_DENCUN / DATA_GAS_PER_BLOB; // 393216 / 131072 = 3
103
104/// Determines the maximum rate of change for blob fee
105pub const BLOB_GASPRICE_UPDATE_FRACTION: u128 = 3_338_477u128; // 3338477
106
107/// Minimum gas price for a data blob
108pub const BLOB_TX_MIN_BLOB_GASPRICE: u128 = 1u128;
109
110/// Commitment version of a KZG commitment
111pub const VERSIONED_HASH_VERSION_KZG: u8 = 0x01;
112
113/// How many bytes are in a commitment
114pub const BYTES_PER_COMMITMENT: usize = 48;
115
116/// How many bytes are in a proof
117pub const BYTES_PER_PROOF: usize = 48;
118
119/// A Blob serialized as 0x-prefixed hex string
120pub type Blob = FixedBytes<BYTES_PER_BLOB>;
121
122/// Helper function to deserialize boxed blobs.
123#[cfg(feature = "serde")]
124pub fn deserialize_blob<'de, D>(deserializer: D) -> Result<alloc::boxed::Box<Blob>, D::Error>
125where
126    D: serde::de::Deserializer<'de>,
127{
128    use serde::Deserialize;
129    let raw_blob = <alloy_primitives::Bytes>::deserialize(deserializer)?;
130    let blob = alloc::boxed::Box::new(
131        Blob::try_from(raw_blob.as_ref()).map_err(serde::de::Error::custom)?,
132    );
133    Ok(blob)
134}
135
136/// A heap allocated blob that serializes as 0x-prefixed hex string
137#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord, Hash, alloy_rlp::RlpEncodableWrapper)]
138pub struct HeapBlob(Bytes);
139
140impl HeapBlob {
141    /// Create a new heap blob from a byte slice.
142    pub fn new(blob: &[u8]) -> Result<Self, InvalidBlobLength> {
143        if blob.len() != BYTES_PER_BLOB {
144            return Err(InvalidBlobLength(blob.len()));
145        }
146
147        Ok(Self(Bytes::copy_from_slice(blob)))
148    }
149
150    /// Create a new heap blob from an array.
151    pub fn from_array(blob: [u8; BYTES_PER_BLOB]) -> Self {
152        Self(Bytes::from(blob))
153    }
154
155    /// Create a new heap blob from [`Bytes`].
156    pub fn from_bytes(bytes: Bytes) -> Result<Self, InvalidBlobLength> {
157        if bytes.len() != BYTES_PER_BLOB {
158            return Err(InvalidBlobLength(bytes.len()));
159        }
160
161        Ok(Self(bytes))
162    }
163
164    /// Generate a new heap blob with all bytes set to `byte`.
165    pub fn repeat_byte(byte: u8) -> Self {
166        Self(Bytes::from(vec![byte; BYTES_PER_BLOB]))
167    }
168
169    /// Get the inner
170    pub const fn inner(&self) -> &Bytes {
171        &self.0
172    }
173}
174
175impl Default for HeapBlob {
176    fn default() -> Self {
177        Self::repeat_byte(0)
178    }
179}
180
181/// Error indicating that the blob length is invalid.
182#[derive(Debug, Clone)]
183pub struct InvalidBlobLength(usize);
184impl core::fmt::Display for InvalidBlobLength {
185    fn fmt(&self, f: &mut core::fmt::Formatter<'_>) -> core::fmt::Result {
186        write!(f, "Invalid blob length: {}, expected: {BYTES_PER_BLOB}", self.0)
187    }
188}
189impl core::error::Error for InvalidBlobLength {}
190
191#[cfg(feature = "serde")]
192impl serde::Serialize for HeapBlob {
193    fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
194    where
195        S: serde::Serializer,
196    {
197        self.inner().serialize(serializer)
198    }
199}
200
201#[cfg(any(test, feature = "arbitrary"))]
202impl<'a> arbitrary::Arbitrary<'a> for HeapBlob {
203    fn arbitrary(u: &mut arbitrary::Unstructured<'a>) -> arbitrary::Result<Self> {
204        let mut blob = vec![0u8; BYTES_PER_BLOB];
205        u.fill_buffer(&mut blob)?;
206        Ok(Self(Bytes::from(blob)))
207    }
208}
209
210#[cfg(feature = "serde")]
211impl<'de> serde::Deserialize<'de> for HeapBlob {
212    fn deserialize<D>(deserializer: D) -> Result<Self, D::Error>
213    where
214        D: serde::de::Deserializer<'de>,
215    {
216        let inner = <Bytes>::deserialize(deserializer)?;
217
218        Self::from_bytes(inner).map_err(serde::de::Error::custom)
219    }
220}
221
222impl alloy_rlp::Decodable for HeapBlob {
223    fn decode(buf: &mut &[u8]) -> alloy_rlp::Result<Self> {
224        let bytes = <Bytes>::decode(buf)?;
225
226        Self::from_bytes(bytes).map_err(|_| alloy_rlp::Error::Custom("invalid blob length"))
227    }
228}
229
230/// A commitment/proof serialized as 0x-prefixed hex string
231pub type Bytes48 = FixedBytes<48>;
232
233/// Calculates the versioned hash for a KzgCommitment of 48 bytes.
234///
235/// Specified in [EIP-4844](https://eips.ethereum.org/EIPS/eip-4844#header-extension)
236///
237/// # Panics
238///
239/// If the given commitment is not 48 bytes long.
240#[cfg(feature = "sha2")]
241pub fn kzg_to_versioned_hash(commitment: &[u8]) -> B256 {
242    use sha2::Digest;
243
244    debug_assert_eq!(commitment.len(), 48, "commitment length is not 48");
245    let mut res = sha2::Sha256::digest(commitment);
246    res[0] = VERSIONED_HASH_VERSION_KZG;
247    B256::new(res.into())
248}
249
250/// Calculates the `excess_blob_gas` from the parent header's `blob_gas_used` and `excess_blob_gas`.
251///
252/// See also [the EIP-4844 helpers](https://eips.ethereum.org/EIPS/eip-4844#helpers)
253/// (`calc_excess_blob_gas`).
254#[inline]
255pub const fn calc_excess_blob_gas(parent_excess_blob_gas: u64, parent_blob_gas_used: u64) -> u64 {
256    eip7840::BlobParams::cancun().next_block_excess_blob_gas_osaka(
257        parent_excess_blob_gas,
258        parent_blob_gas_used,
259        // base fee is not used in EIP-4844 excess blob gas calculation
260        0,
261    )
262}
263
264/// Calculates the blob gas price from the header's excess blob gas field.
265///
266/// See also [the EIP-4844 helpers](https://eips.ethereum.org/EIPS/eip-4844#helpers)
267/// (`get_blob_gasprice`).
268#[inline]
269pub const fn calc_blob_gasprice(excess_blob_gas: u64) -> u128 {
270    eip7840::BlobParams::cancun().calc_blob_fee(excess_blob_gas)
271}
272
273/// Approximates `factor * e ** (numerator / denominator)` using Taylor expansion.
274///
275/// This is used to calculate the blob price.
276///
277/// See also [the EIP-4844 helpers](https://eips.ethereum.org/EIPS/eip-4844#helpers)
278/// (`fake_exponential`).
279///
280/// # Panics
281///
282/// This function panics if `denominator` is zero.
283#[inline]
284pub const fn fake_exponential(factor: u128, numerator: u128, denominator: u128) -> u128 {
285    assert!(denominator != 0, "attempt to divide by zero");
286
287    let mut i = 1;
288    let mut output = 0;
289    let mut numerator_accum = factor * denominator;
290    while numerator_accum > 0 {
291        output += numerator_accum;
292
293        // Use checked multiplication to prevent overflow
294        let Some(val) = numerator_accum.checked_mul(numerator) else {
295            break;
296        };
297
298        // Denominator is asserted as not zero at the start of the function.
299        numerator_accum = val / (denominator * i);
300        i += 1;
301    }
302    output / denominator
303}
304
305#[cfg(test)]
306mod tests {
307    use super::*;
308
309    // https://github.com/ethereum/go-ethereum/blob/28857080d732857030eda80c69b9ba2c8926f221/consensus/misc/eip4844/eip4844_test.go#L27
310    #[test]
311    fn test_calc_excess_blob_gas() {
312        for t @ &(excess, blobs, expected) in &[
313            // The excess blob gas should not increase from zero if the used blob
314            // slots are below - or equal - to the target.
315            (0, 0, 0),
316            (0, 1, 0),
317            (0, TARGET_DATA_GAS_PER_BLOCK_DENCUN / DATA_GAS_PER_BLOB, 0),
318            // If the target blob gas is exceeded, the excessBlobGas should increase
319            // by however much it was overshot
320            (0, (TARGET_DATA_GAS_PER_BLOCK_DENCUN / DATA_GAS_PER_BLOB) + 1, DATA_GAS_PER_BLOB),
321            (1, (TARGET_DATA_GAS_PER_BLOCK_DENCUN / DATA_GAS_PER_BLOB) + 1, DATA_GAS_PER_BLOB + 1),
322            (
323                1,
324                (TARGET_DATA_GAS_PER_BLOCK_DENCUN / DATA_GAS_PER_BLOB) + 2,
325                2 * DATA_GAS_PER_BLOB + 1,
326            ),
327            // The excess blob gas should decrease by however much the target was
328            // under-shot, capped at zero.
329            (
330                TARGET_DATA_GAS_PER_BLOCK_DENCUN,
331                TARGET_DATA_GAS_PER_BLOCK_DENCUN / DATA_GAS_PER_BLOB,
332                TARGET_DATA_GAS_PER_BLOCK_DENCUN,
333            ),
334            (
335                TARGET_DATA_GAS_PER_BLOCK_DENCUN,
336                (TARGET_DATA_GAS_PER_BLOCK_DENCUN / DATA_GAS_PER_BLOB) - 1,
337                TARGET_DATA_GAS_PER_BLOCK_DENCUN - DATA_GAS_PER_BLOB,
338            ),
339            (
340                TARGET_DATA_GAS_PER_BLOCK_DENCUN,
341                (TARGET_DATA_GAS_PER_BLOCK_DENCUN / DATA_GAS_PER_BLOB) - 2,
342                TARGET_DATA_GAS_PER_BLOCK_DENCUN - (2 * DATA_GAS_PER_BLOB),
343            ),
344            (DATA_GAS_PER_BLOB - 1, (TARGET_DATA_GAS_PER_BLOCK_DENCUN / DATA_GAS_PER_BLOB) - 1, 0),
345        ] {
346            let actual = calc_excess_blob_gas(excess, blobs * DATA_GAS_PER_BLOB);
347            assert_eq!(actual, expected, "test: {t:?}");
348        }
349    }
350
351    // https://github.com/ethereum/go-ethereum/blob/28857080d732857030eda80c69b9ba2c8926f221/consensus/misc/eip4844/eip4844_test.go#L60
352    #[test]
353    fn test_calc_blob_fee() {
354        let blob_fee_vectors = &[
355            (0, 1),
356            (2314057, 1),
357            (2314058, 2),
358            (10 * 1024 * 1024, 23),
359            // calc_blob_gasprice approximates `e ** (excess_blob_gas /
360            // BLOB_GASPRICE_UPDATE_FRACTION)` using Taylor expansion
361            //
362            // to roughly find where boundaries will be hit:
363            // 2 ** bits = e ** (excess_blob_gas / BLOB_GASPRICE_UPDATE_FRACTION)
364            // excess_blob_gas = ln(2 ** bits) * BLOB_GASPRICE_UPDATE_FRACTION
365            (148099578, 18446739238971471609), // output is just below the overflow
366            (148099579, 18446744762204311910), // output is just after the overflow
367            (161087488, 902580055246494526580),
368        ];
369
370        for &(excess, expected) in blob_fee_vectors {
371            let actual = calc_blob_gasprice(excess);
372            assert_eq!(actual, expected, "test: {excess}");
373        }
374    }
375
376    // https://github.com/ethereum/go-ethereum/blob/28857080d732857030eda80c69b9ba2c8926f221/consensus/misc/eip4844/eip4844_test.go#L78
377    #[test]
378    fn fake_exp() {
379        for t @ &(factor, numerator, denominator, expected) in &[
380            (1u64, 0u64, 1u64, 1u128),
381            (38493, 0, 1000, 38493),
382            (0, 1234, 2345, 0),
383            (1, 2, 1, 6), // approximate 7.389
384            (1, 4, 2, 6),
385            (1, 3, 1, 16), // approximate 20.09
386            (1, 6, 2, 18),
387            (1, 4, 1, 49), // approximate 54.60
388            (1, 8, 2, 50),
389            (10, 8, 2, 542), // approximate 540.598
390            (11, 8, 2, 596), // approximate 600.58
391            (1, 5, 1, 136),  // approximate 148.4
392            (1, 5, 2, 11),   // approximate 12.18
393            (2, 5, 2, 23),   // approximate 24.36
394            (1, 50000000, 2225652, 5709098764),
395            (1, 380928, BLOB_GASPRICE_UPDATE_FRACTION.try_into().unwrap(), 1),
396        ] {
397            let actual = fake_exponential(factor as u128, numerator as u128, denominator as u128);
398            assert_eq!(actual, expected, "test: {t:?}");
399        }
400    }
401
402    #[test]
403    #[cfg(feature = "serde")]
404    fn serde_heap_blob() {
405        let blob = HeapBlob::repeat_byte(0x42);
406        let serialized = serde_json::to_string(&blob).unwrap();
407
408        let deserialized: HeapBlob = serde_json::from_str(&serialized).unwrap();
409        assert_eq!(blob, deserialized);
410    }
411
412    #[test]
413    fn fake_exp_handles_overflow() {
414        // Test with very large excess blob gas values that would cause overflow
415        let factor = 1u128; // BLOB_TX_MIN_BLOB_GASPRICE
416        let numerator = u64::MAX as u128; // Very large excess blob gas
417        let denominator = 5007716u128; // BLOB_GASPRICE_UPDATE_FRACTION_PECTRA
418
419        // This should not panic even with very large inputs
420        let result = fake_exponential(factor, numerator, denominator);
421
422        // The result should be a valid value (not panic)
423        assert!(result > 0);
424
425        // Test with Prague parameters
426        let prague_params = crate::eip7840::BlobParams::prague();
427        // This should also not panic when excess_blob_gas is very large
428        let _blob_fee = prague_params.calc_blob_fee(u64::MAX);
429    }
430}