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* Rename the coins folder to networks Ethereum isn't a coin. It's a network. Resolves #357. * More renames of coins -> networks in orchestration * Correct paths in tests/ * cargo fmt
145 lines
4.7 KiB
Rust
145 lines
4.7 KiB
Rust
use core::ops::Deref;
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use zeroize::{Zeroize, ZeroizeOnDrop, Zeroizing};
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use curve25519_dalek::{constants::ED25519_BASEPOINT_TABLE, Scalar, EdwardsPoint};
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use crate::{
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primitives::keccak256_to_scalar,
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address::{Network, AddressType, SubaddressIndex, MoneroAddress},
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};
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/// An error while working with a ViewPair.
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#[derive(Clone, PartialEq, Eq, Debug)]
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#[cfg_attr(feature = "std", derive(thiserror::Error))]
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pub enum ViewPairError {
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/// The spend key was torsioned.
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///
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/// Torsioned spend keys are of questionable spendability. This library avoids that question by
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/// rejecting such ViewPairs.
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// CLSAG seems to support it if the challenge does a torsion clear, FCMP++ should ship with a
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// torsion clear, yet it's not worth it to modify CLSAG sign to generate challenges until the
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// torsion clears and ensure spendability (nor can we reasonably guarantee that in the future)
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#[cfg_attr(feature = "std", error("torsioned spend key"))]
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TorsionedSpendKey,
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}
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/// The pair of keys necessary to scan transactions.
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///
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/// This is composed of the public spend key and the private view key.
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#[derive(Clone, PartialEq, Eq, Zeroize, ZeroizeOnDrop)]
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pub struct ViewPair {
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spend: EdwardsPoint,
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pub(crate) view: Zeroizing<Scalar>,
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}
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impl ViewPair {
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/// Create a new ViewPair.
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pub fn new(spend: EdwardsPoint, view: Zeroizing<Scalar>) -> Result<Self, ViewPairError> {
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if !spend.is_torsion_free() {
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Err(ViewPairError::TorsionedSpendKey)?;
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}
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Ok(ViewPair { spend, view })
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}
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/// The public spend key for this ViewPair.
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pub fn spend(&self) -> EdwardsPoint {
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self.spend
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}
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/// The public view key for this ViewPair.
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pub fn view(&self) -> EdwardsPoint {
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self.view.deref() * ED25519_BASEPOINT_TABLE
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}
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pub(crate) fn subaddress_derivation(&self, index: SubaddressIndex) -> Scalar {
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keccak256_to_scalar(Zeroizing::new(
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[
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b"SubAddr\0".as_ref(),
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Zeroizing::new(self.view.to_bytes()).as_ref(),
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&index.account().to_le_bytes(),
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&index.address().to_le_bytes(),
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]
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.concat(),
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))
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}
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pub(crate) fn subaddress_keys(&self, index: SubaddressIndex) -> (EdwardsPoint, EdwardsPoint) {
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let scalar = self.subaddress_derivation(index);
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let spend = self.spend + (&scalar * ED25519_BASEPOINT_TABLE);
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let view = self.view.deref() * spend;
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(spend, view)
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}
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/// Derive a legacy address from this ViewPair.
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///
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/// Subaddresses SHOULD be used instead.
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pub fn legacy_address(&self, network: Network) -> MoneroAddress {
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MoneroAddress::new(network, AddressType::Legacy, self.spend, self.view())
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}
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/// Derive a legacy integrated address from this ViewPair.
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///
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/// Subaddresses SHOULD be used instead.
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pub fn legacy_integrated_address(&self, network: Network, payment_id: [u8; 8]) -> MoneroAddress {
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MoneroAddress::new(network, AddressType::LegacyIntegrated(payment_id), self.spend, self.view())
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}
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/// Derive a subaddress from this ViewPair.
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pub fn subaddress(&self, network: Network, subaddress: SubaddressIndex) -> MoneroAddress {
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let (spend, view) = self.subaddress_keys(subaddress);
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MoneroAddress::new(network, AddressType::Subaddress, spend, view)
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}
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}
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/// The pair of keys necessary to scan outputs immune to the burning bug.
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///
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/// This is composed of the public spend key and a non-zero private view key.
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///
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/// 'Guaranteed' outputs, or transactions outputs to the burning bug, are not officially specified
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/// by the Monero project. They should only be used if necessary. No support outside of
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/// monero-wallet is promised.
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#[derive(Clone, PartialEq, Eq, Zeroize)]
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pub struct GuaranteedViewPair(pub(crate) ViewPair);
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impl GuaranteedViewPair {
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/// Create a new GuaranteedViewPair.
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pub fn new(spend: EdwardsPoint, view: Zeroizing<Scalar>) -> Result<Self, ViewPairError> {
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ViewPair::new(spend, view).map(GuaranteedViewPair)
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}
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/// The public spend key for this GuaranteedViewPair.
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pub fn spend(&self) -> EdwardsPoint {
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self.0.spend()
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}
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/// The public view key for this GuaranteedViewPair.
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pub fn view(&self) -> EdwardsPoint {
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self.0.view()
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}
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/// Returns an address with the provided specification.
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///
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/// The returned address will be a featured address with the guaranteed flag set. These should
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/// not be presumed to be interoperable with any other software.
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pub fn address(
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&self,
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network: Network,
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subaddress: Option<SubaddressIndex>,
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payment_id: Option<[u8; 8]>,
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) -> MoneroAddress {
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let (spend, view) = if let Some(index) = subaddress {
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self.0.subaddress_keys(index)
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} else {
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(self.spend(), self.view())
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};
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MoneroAddress::new(
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network,
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AddressType::Featured { subaddress: subaddress.is_some(), payment_id, guaranteed: true },
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spend,
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view,
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)
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}
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}
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