monero_bulletproofs_mirror/
lib.rs1#![cfg_attr(docsrs, feature(doc_auto_cfg))]
2#![doc = include_str!("../README.md")]
3#![deny(missing_docs)]
4#![cfg_attr(not(feature = "std"), no_std)]
5#![allow(non_snake_case)]
6
7use std_shims::{
8 vec,
9 vec::Vec,
10 io::{self, Read, Write},
11};
12
13use rand_core::{RngCore, CryptoRng};
14use zeroize::Zeroizing;
15
16use curve25519_dalek::edwards::EdwardsPoint;
17
18use monero_io::*;
19pub use monero_generators::MAX_COMMITMENTS;
20use monero_primitives::Commitment;
21
22pub(crate) mod scalar_vector;
23pub(crate) mod point_vector;
24
25pub(crate) mod core;
26use crate::core::LOG_COMMITMENT_BITS;
27
28pub(crate) mod batch_verifier;
29use batch_verifier::{BulletproofsBatchVerifier, BulletproofsPlusBatchVerifier};
30pub use batch_verifier::BatchVerifier;
31
32pub(crate) mod original;
33use crate::original::{
34 IpProof, AggregateRangeStatement as OriginalStatement, AggregateRangeWitness as OriginalWitness,
35 AggregateRangeProof as OriginalProof,
36};
37
38pub(crate) mod plus;
39use crate::plus::{
40 WipProof, AggregateRangeStatement as PlusStatement, AggregateRangeWitness as PlusWitness,
41 AggregateRangeProof as PlusProof,
42};
43
44#[cfg(test)]
45mod tests;
46
47#[derive(Clone, Copy, PartialEq, Eq, Debug)]
49#[cfg_attr(feature = "std", derive(thiserror::Error))]
50pub enum BulletproofError {
51 #[cfg_attr(feature = "std", error("no commitments to prove the range for"))]
53 NoCommitments,
54 #[cfg_attr(feature = "std", error("too many commitments to prove the range for"))]
56 TooManyCommitments,
57}
58
59#[allow(clippy::large_enum_variant)]
63#[derive(Clone, PartialEq, Eq, Debug)]
64pub enum Bulletproof {
65 Original(OriginalProof),
67 Plus(PlusProof),
69}
70
71impl Bulletproof {
72 fn bp_fields(plus: bool) -> usize {
73 if plus {
74 6
75 } else {
76 9
77 }
78 }
79
80 pub fn calculate_bp_clawback(plus: bool, n_outputs: usize) -> (usize, usize) {
88 #[allow(non_snake_case)]
89 let mut LR_len = 0;
90 let mut n_padded_outputs = 1;
91 while n_padded_outputs < n_outputs {
92 LR_len += 1;
93 n_padded_outputs = 1 << LR_len;
94 }
95 LR_len += LOG_COMMITMENT_BITS;
96
97 let mut bp_clawback = 0;
98 if n_padded_outputs > 2 {
99 let fields = Bulletproof::bp_fields(plus);
100 let base = ((fields + (2 * (LOG_COMMITMENT_BITS + 1))) * 32) / 2;
101 let size = (fields + (2 * LR_len)) * 32;
102 bp_clawback = ((base * n_padded_outputs) - size) * 4 / 5;
103 }
104
105 (bp_clawback, LR_len)
106 }
107
108 pub fn prove<R: RngCore + CryptoRng>(
110 rng: &mut R,
111 outputs: Vec<Commitment>,
112 ) -> Result<Bulletproof, BulletproofError> {
113 if outputs.is_empty() {
114 Err(BulletproofError::NoCommitments)?;
115 }
116 if outputs.len() > MAX_COMMITMENTS {
117 Err(BulletproofError::TooManyCommitments)?;
118 }
119 let commitments = outputs.iter().map(Commitment::calculate).collect::<Vec<_>>();
120 Ok(Bulletproof::Original(
121 OriginalStatement::new(&commitments)
122 .unwrap()
123 .prove(rng, OriginalWitness::new(outputs).unwrap())
124 .unwrap(),
125 ))
126 }
127
128 pub fn prove_plus<R: RngCore + CryptoRng>(
130 rng: &mut R,
131 outputs: Vec<Commitment>,
132 ) -> Result<Bulletproof, BulletproofError> {
133 if outputs.is_empty() {
134 Err(BulletproofError::NoCommitments)?;
135 }
136 if outputs.len() > MAX_COMMITMENTS {
137 Err(BulletproofError::TooManyCommitments)?;
138 }
139 let commitments = outputs.iter().map(Commitment::calculate).collect::<Vec<_>>();
140 Ok(Bulletproof::Plus(
141 PlusStatement::new(&commitments)
142 .unwrap()
143 .prove(rng, &Zeroizing::new(PlusWitness::new(outputs).unwrap()))
144 .unwrap(),
145 ))
146 }
147
148 #[must_use]
150 pub fn verify<R: RngCore + CryptoRng>(&self, rng: &mut R, commitments: &[EdwardsPoint]) -> bool {
151 match self {
152 Bulletproof::Original(bp) => {
153 let mut verifier = BulletproofsBatchVerifier::default();
154 let Some(statement) = OriginalStatement::new(commitments) else {
155 return false;
156 };
157 if !statement.verify(rng, &mut verifier, bp.clone()) {
158 return false;
159 }
160 verifier.verify()
161 }
162 Bulletproof::Plus(bp) => {
163 let mut verifier = BulletproofsPlusBatchVerifier::default();
164 let Some(statement) = PlusStatement::new(commitments) else {
165 return false;
166 };
167 if !statement.verify(rng, &mut verifier, bp.clone()) {
168 return false;
169 }
170 verifier.verify()
171 }
172 }
173 }
174
175 #[must_use]
184 pub fn batch_verify<R: RngCore + CryptoRng>(
185 &self,
186 rng: &mut R,
187 verifier: &mut BatchVerifier,
188 commitments: &[EdwardsPoint],
189 ) -> bool {
190 match self {
191 Bulletproof::Original(bp) => {
192 let Some(statement) = OriginalStatement::new(commitments) else {
193 return false;
194 };
195 statement.verify(rng, &mut verifier.original, bp.clone())
196 }
197 Bulletproof::Plus(bp) => {
198 let Some(statement) = PlusStatement::new(commitments) else {
199 return false;
200 };
201 statement.verify(rng, &mut verifier.plus, bp.clone())
202 }
203 }
204 }
205
206 fn write_core<W: Write, F: Fn(&[EdwardsPoint], &mut W) -> io::Result<()>>(
207 &self,
208 w: &mut W,
209 specific_write_vec: F,
210 ) -> io::Result<()> {
211 match self {
212 Bulletproof::Original(bp) => {
213 write_point(&bp.A, w)?;
214 write_point(&bp.S, w)?;
215 write_point(&bp.T1, w)?;
216 write_point(&bp.T2, w)?;
217 write_scalar(&bp.tau_x, w)?;
218 write_scalar(&bp.mu, w)?;
219 specific_write_vec(&bp.ip.L, w)?;
220 specific_write_vec(&bp.ip.R, w)?;
221 write_scalar(&bp.ip.a, w)?;
222 write_scalar(&bp.ip.b, w)?;
223 write_scalar(&bp.t_hat, w)
224 }
225
226 Bulletproof::Plus(bp) => {
227 write_point(&bp.A, w)?;
228 write_point(&bp.wip.A, w)?;
229 write_point(&bp.wip.B, w)?;
230 write_scalar(&bp.wip.r_answer, w)?;
231 write_scalar(&bp.wip.s_answer, w)?;
232 write_scalar(&bp.wip.delta_answer, w)?;
233 specific_write_vec(&bp.wip.L, w)?;
234 specific_write_vec(&bp.wip.R, w)
235 }
236 }
237 }
238
239 pub fn signature_write<W: Write>(&self, w: &mut W) -> io::Result<()> {
243 self.write_core(w, |points, w| write_raw_vec(write_point, points, w))
244 }
245
246 pub fn write<W: Write>(&self, w: &mut W) -> io::Result<()> {
248 self.write_core(w, |points, w| write_vec(write_point, points, w))
249 }
250
251 pub fn serialize(&self) -> Vec<u8> {
253 let mut serialized = vec![];
254 self.write(&mut serialized).unwrap();
255 serialized
256 }
257
258 pub fn read<R: Read>(r: &mut R) -> io::Result<Bulletproof> {
260 Ok(Bulletproof::Original(OriginalProof {
261 A: read_point(r)?,
262 S: read_point(r)?,
263 T1: read_point(r)?,
264 T2: read_point(r)?,
265 tau_x: read_scalar(r)?,
266 mu: read_scalar(r)?,
267 ip: IpProof {
268 L: read_vec(read_point, r)?,
269 R: read_vec(read_point, r)?,
270 a: read_scalar(r)?,
271 b: read_scalar(r)?,
272 },
273 t_hat: read_scalar(r)?,
274 }))
275 }
276
277 pub fn read_plus<R: Read>(r: &mut R) -> io::Result<Bulletproof> {
279 Ok(Bulletproof::Plus(PlusProof {
280 A: read_point(r)?,
281 wip: WipProof {
282 A: read_point(r)?,
283 B: read_point(r)?,
284 r_answer: read_scalar(r)?,
285 s_answer: read_scalar(r)?,
286 delta_answer: read_scalar(r)?,
287 L: read_vec(read_point, r)?.into_iter().collect(),
288 R: read_vec(read_point, r)?.into_iter().collect(),
289 },
290 }))
291 }
292}