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Monero: support for legacy transactions (#308)
* add mlsag * fix last commit * fix miner v1 txs * fix non-miner v1 txs * add borromean + fix mlsag * add block hash calculations * fix for the jokester that added unreduced scalars to the borromean signature of 2368d846e671bf79a1f84c6d3af9f0bfe296f043f50cf17ae5e485384a53707b * Add Borromean range proof verifying functionality * Add MLSAG verifying functionality * fmt & clippy :) * update MLSAG, ss2_elements will always be 2 * Add MgSig proving * Tidy block.rs * Tidy Borromean, fix bugs in last commit, replace todo! with unreachable! * Mark legacy EcdhInfo amount decryption as experimental * Correct comments * Write a new impl of the merkle algorithm This one tries to be understandable. * Only pull in things only needed for experimental when experimental * Stop caching the Monero block hash now in processor that we have Block::hash * Corrections for recent processor commit * Use a clearer algorithm for the merkle Should also be more efficient due to not shifting as often. * Tidy Mlsag * Remove verify_rct_* from Mlsag Both methods were ports from Monero, overtly specific without clear documentation. They need to be added back in, with documentation, or included in a node which provides the necessary further context for them to be naturally understandable. * Move mlsag/mod.rs to mlsag.rs This should only be a folder if it has multiple files. * Replace EcdhInfo terminology The ECDH encrypted the amount, yet this struct contained the encrypted amount, not some ECDH. Also corrects the types on the original EcdhInfo struct. * Correct handling of commitment masks when scanning * Route read_array through read_raw_vec * Misc lint * Make a proper RctType enum No longer caches RctType in the RctSignatures as well. * Replace Vec<Bulletproofs> with Bulletproofs Monero uses aggregated range proofs, so there's only ever one Bulletproof. This is enforced with a consensus rule as well, making this safe. As for why Monero uses a vec, it's probably due to the lack of variadic typing used. Its effectively an Option for them, yet we don't need an Option since we do have variadic typing (enums). * Add necessary checks to Eventuality re: supported protocols * Fix for block 202612 and fix merkel root calculations * MLSAG (de)serialisation fix ss_2_elements will not always be 2 as rct type 1 transactions are not enforced to have one input * Revert "MLSAG (de)serialisation fix" This reverts commit5e710e0c96. here it checks number of MGs == number of inputs:0a1eaf26f9/src/cryptonote_core/tx_verification_utils.cpp (L60-59)and here it checks for RctTypeFull number of MGs == 1:0a1eaf26f9/src/ringct/rctSigs.cpp (L1325)so number of inputs == 1 so ss_2_elements == 2 * update `MlsagAggregate` comment * cargo update Resolves a yanked crate * Move location of serai-client in Cargo.toml --------- Co-authored-by: Luke Parker <lukeparker5132@gmail.com>
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@@ -5,8 +5,7 @@
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#![cfg_attr(not(feature = "std"), no_std)]
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use core::cell::OnceCell;
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use std_shims::sync::Mutex;
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use std_shims::sync::OnceLock;
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use sha3::{Digest, Keccak256};
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@@ -25,11 +24,11 @@ fn hash(data: &[u8]) -> [u8; 32] {
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Keccak256::digest(data).into()
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}
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/// Monero alternate generator `H`, used for amounts in Pedersen commitments.
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static H_CELL: Mutex<OnceCell<DalekPoint>> = Mutex::new(OnceCell::new());
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static H_CELL: OnceLock<DalekPoint> = OnceLock::new();
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/// Monero's alternate generator `H`, used for amounts in Pedersen commitments.
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#[allow(non_snake_case)]
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pub fn H() -> DalekPoint {
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*H_CELL.lock().get_or_init(|| {
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*H_CELL.get_or_init(|| {
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CompressedEdwardsY(hash(&EdwardsPoint::generator().to_bytes()))
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.decompress()
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.unwrap()
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@@ -37,6 +36,19 @@ pub fn H() -> DalekPoint {
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})
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}
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static H_POW_2_CELL: OnceLock<[DalekPoint; 64]> = OnceLock::new();
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/// Monero's alternate generator `H`, multiplied by 2**i for i in 1 ..= 64.
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#[allow(non_snake_case)]
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pub fn H_pow_2() -> &'static [DalekPoint; 64] {
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H_POW_2_CELL.get_or_init(|| {
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let mut res = [H(); 64];
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for i in 1 .. 64 {
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res[i] = res[i - 1] + res[i - 1];
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}
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res
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})
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}
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const MAX_M: usize = 16;
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const N: usize = 64;
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const MAX_MN: usize = MAX_M * N;
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