2023-12-07 02:47:48 -08:00
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use std::marker::PhantomData;
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use blake2b_simd::Params;
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const PRF_EXPAND_PERSONALIZATION: &[u8; 16] = b"Zcash_ExpandSeed";
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/// The set of domains in which $PRF^\mathsf{expand}$ is defined.
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///
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/// Defined in [Zcash Protocol Spec § 5.4.2: Pseudo Random Functions][concreteprfs].
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///
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/// [concreteprfs]: https://zips.z.cash/protocol/protocol.pdf#concreteprfs
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pub struct PrfExpand<T> {
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domain_separator: u8,
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_input: PhantomData<T>,
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}
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impl<T> PrfExpand<T> {
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/// Defines a new $PRF^\mathsf{expand}$ domain.
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///
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/// Private because we want to ensure that all domains are defined in the same place,
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/// to avoid bugs where a domain separator is accidentally reused.
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const fn new(domain_separator: u8) -> Self {
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Self {
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domain_separator,
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_input: PhantomData,
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}
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}
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/// Expands the given secret key in this domain, with additional data concatenated
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/// from the given slices.
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///
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/// $PRF^\mathsf{expand}(sk, dst, a, b, ...) := BLAKE2b-512("Zcash_ExpandSeed", sk || dst || a || b || ...)$
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///
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/// Defined in [Zcash Protocol Spec § 5.4.2: Pseudo Random Functions][concreteprfs].
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///
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/// [concreteprfs]: https://zips.z.cash/protocol/protocol.pdf#concreteprfs
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fn apply(self, sk: &[u8], ts: &[&[u8]]) -> [u8; 64] {
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let mut h = Params::new()
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.hash_length(64)
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.personal(PRF_EXPAND_PERSONALIZATION)
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.to_state();
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h.update(sk);
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h.update(&[self.domain_separator]);
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for t in ts {
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h.update(t);
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}
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*h.finalize().as_array()
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}
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}
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macro_rules! with_inputs {
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($($arr:ident, $arrlen:ident),*) => {
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#[allow(unused_parens)]
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impl<$(const $arrlen: usize),*> PrfExpand<($([u8; $arrlen]),*)> {
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/// Expands the given secret key in this domain.
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pub fn with(self, sk: &[u8], $($arr: &[u8; $arrlen]),*) -> [u8; 64] {
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self.apply(sk, &[$($arr),*])
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}
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}
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};
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}
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impl PrfExpand<()> {
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pub const SAPLING_ASK: Self = Self::new(0x00);
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pub const SAPLING_NSK: Self = Self::new(0x01);
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pub const SAPLING_OVK: Self = Self::new(0x02);
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pub const SAPLING_RCM: Self = Self::new(0x04);
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pub const SAPLING_ESK: Self = Self::new(0x05);
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pub const ORCHARD_ASK: Self = Self::new(0x06);
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pub const ORCHARD_NK: Self = Self::new(0x07);
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pub const ORCHARD_RIVK: Self = Self::new(0x08);
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pub const SAPLING_ZIP32_MASTER_DK: Self = Self::new(0x10);
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2023-12-07 07:33:59 -08:00
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pub const SAPLING_ZIP32_CHILD_I_ASK: Self = Self::new(0x13);
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pub const SAPLING_ZIP32_CHILD_I_NSK: Self = Self::new(0x14);
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2023-12-07 02:47:48 -08:00
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pub const SAPLING_ZIP32_INTERNAL_NSK: Self = Self::new(0x17);
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pub const SAPLING_ZIP32_INTERNAL_DK_OVK: Self = Self::new(0x18);
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}
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with_inputs!();
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impl PrfExpand<[u8; 1]> {
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pub const SAPLING_DEFAULT_DIVERSIFIER: Self = Self::new(0x03);
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}
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impl PrfExpand<[u8; 32]> {
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pub const ORCHARD_ESK: Self = Self::new(0x04);
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pub const ORCHARD_RCM: Self = Self::new(0x05);
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pub const PSI: Self = Self::new(0x09);
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pub const SAPLING_ZIP32_CHILD_OVK: Self = Self::new(0x15);
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pub const SAPLING_ZIP32_CHILD_DK: Self = Self::new(0x16);
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}
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impl PrfExpand<[u8; 33]> {
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2023-12-07 07:33:59 -08:00
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pub const TRANSPARENT_ZIP316_OVK: Self = Self::new(0xD0);
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2023-12-07 02:47:48 -08:00
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}
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with_inputs!(a, A);
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impl PrfExpand<([u8; 32], [u8; 4])> {
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pub const SPROUT_ZIP32_CHILD: Self = Self::new(0x80);
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pub const ORCHARD_ZIP32_CHILD: Self = Self::new(0x81);
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}
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impl PrfExpand<([u8; 32], [u8; 32])> {
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pub const ORCHARD_DK_OVK: Self = Self::new(0x82);
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pub const ORCHARD_RIVK_INTERNAL: Self = Self::new(0x83);
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}
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with_inputs!(a, A, b, B);
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impl PrfExpand<([u8; 96], [u8; 32], [u8; 4])> {
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pub const SAPLING_ZIP32_CHILD_HARDENED: Self = Self::new(0x11);
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pub const SAPLING_ZIP32_CHILD_NON_HARDENED: Self = Self::new(0x12);
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}
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with_inputs!(a, A, b, B, c, C);
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