Whitespace formatting fixes on the [rustfmt::skip] functions

This commit is contained in:
Michael Rosenberg 2022-10-28 16:32:45 -04:00
parent 6d906bb70c
commit 95b368a431
No known key found for this signature in database
5 changed files with 283 additions and 268 deletions

View file

@ -126,10 +126,13 @@ impl<'a, 'b> Mul<&'b FieldElement2625> for &'a FieldElement2625 {
/// Helper function to multiply two 32-bit integers with 64 bits
/// of output.
#[inline(always)]
fn m(x: u32, y: u32) -> u64 { (x as u64) * (y as u64) }
fn m(x: u32, y: u32) -> u64 {
(x as u64) * (y as u64)
}
// Alias self, _rhs for more readable formulas
let x: &[u32;10] = &self.0; let y: &[u32;10] = &_rhs.0;
let x: &[u32; 10] = &self.0;
let y: &[u32; 10] = &_rhs.0;
// We assume that the input limbs x[i], y[i] are bounded by:
//
@ -374,8 +377,16 @@ impl FieldElement2625 {
// and we're done.
FieldElement2625([
z[0] as u32, z[1] as u32, z[2] as u32, z[3] as u32, z[4] as u32,
z[5] as u32, z[6] as u32, z[7] as u32, z[8] as u32, z[9] as u32,
z[0] as u32,
z[1] as u32,
z[2] as u32,
z[3] as u32,
z[4] as u32,
z[5] as u32,
z[6] as u32,
z[7] as u32,
z[8] as u32,
z[9] as u32,
])
}
@ -390,7 +401,7 @@ impl FieldElement2625 {
/// encoding of every field element should decode, re-encode to
/// the canonical encoding, and check that the input was
/// canonical.
pub fn from_bytes(data: &[u8; 32]) -> FieldElement2625 { //FeFromBytes
pub fn from_bytes(data: &[u8; 32]) -> FieldElement2625 {
#[inline]
fn load3(b: &[u8]) -> u64 {
(b[0] as u64) | ((b[1] as u64) << 8) | ((b[2] as u64) << 16)
@ -546,7 +557,9 @@ impl FieldElement2625 {
/// Helper function to multiply two 32-bit integers with 64 bits
/// of output.
#[inline(always)]
fn m(x: u32, y: u32) -> u64 { (x as u64) * (y as u64) }
fn m(x: u32, y: u32) -> u64 {
(x as u64) * (y as u64)
}
// This block is rearranged so that instead of doing a 32-bit multiplication by 38, we do a
// 64-bit multiplication by 2 on the results. This is because lg(38) is too big: we would

View file

@ -453,7 +453,9 @@ impl FieldElement51 {
/// Multiply two 64-bit integers with 128 bits of output.
#[inline(always)]
fn m(x: u64, y: u64) -> u128 { (x as u128) * (y as u128) }
fn m(x: u64, y: u64) -> u128 {
(x as u128) * (y as u128)
}
let mut a: [u64; 5] = self.0;