Run clippy --fix
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1 changed files with 26 additions and 26 deletions
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@ -228,8 +228,8 @@ unsafe fn find_divisor_v(mut d: *mut TDivisor) -> i32 {
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f2[i as usize] = f[i as usize];
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i += 1;
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}
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let u0: u64 = (*d).u[0_i32 as usize] as u64;
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let u1: u64 = (*d).u[1_i32 as usize] as u64;
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let u0: u64 = (*d).u[0_i32 as usize];
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let u1: u64 = (*d).u[1_i32 as usize];
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let mut j: i32 = 4_i32;
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loop {
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let fresh0 = j;
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@ -492,18 +492,18 @@ unsafe fn polynomial_xgcd(
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}
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unsafe fn u2poly(src: *const TDivisor, polyu: *mut u64, polyv: *mut u64) -> i32 {
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if (*src).u[1_i32 as usize] as u64 != BAD {
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*polyu.offset(0_i32 as isize) = (*src).u[0_i32 as usize] as u64;
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*polyu.offset(1_i32 as isize) = (*src).u[1_i32 as usize] as u64;
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if (*src).u[1_i32 as usize] != BAD {
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*polyu.offset(0_i32 as isize) = (*src).u[0_i32 as usize];
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*polyu.offset(1_i32 as isize) = (*src).u[1_i32 as usize];
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*polyu.offset(2_i32 as isize) = 1_i32 as u64;
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*polyv.offset(0_i32 as isize) = (*src).v[0_i32 as usize] as u64;
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*polyv.offset(1_i32 as isize) = (*src).v[1_i32 as usize] as u64;
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*polyv.offset(0_i32 as isize) = (*src).v[0_i32 as usize];
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*polyv.offset(1_i32 as isize) = (*src).v[1_i32 as usize];
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return 2_i32;
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}
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if (*src).u[0_i32 as usize] as u64 != BAD {
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*polyu.offset(0_i32 as isize) = (*src).u[0_i32 as usize] as u64;
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if (*src).u[0_i32 as usize] != BAD {
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*polyu.offset(0_i32 as isize) = (*src).u[0_i32 as usize];
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*polyu.offset(1_i32 as isize) = 1_i32 as u64;
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*polyv.offset(0_i32 as isize) = (*src).v[0_i32 as usize] as u64;
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*polyv.offset(0_i32 as isize) = (*src).v[0_i32 as usize];
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*polyv.offset(1_i32 as isize) = 0_i32 as u64;
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return 1_i32;
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}
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@ -752,24 +752,24 @@ unsafe fn divisor_add(src1: *const TDivisor, src2: *const TDivisor, mut dst: *mu
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if udeg == 2_i32 {
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(*dst).u[0_i32 as usize] = u[0_i32 as usize];
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(*dst).u[1_i32 as usize] = u[1_i32 as usize];
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(*dst).v[0_i32 as usize] = (if vdeg >= 0_i32 {
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(*dst).v[0_i32 as usize] = if vdeg >= 0_i32 {
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v[0_i32 as usize]
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} else {
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0_i32 as u64
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});
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(*dst).v[1_i32 as usize] = (if vdeg >= 1_i32 {
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};
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(*dst).v[1_i32 as usize] = if vdeg >= 1_i32 {
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v[1_i32 as usize]
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} else {
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0_i32 as u64
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});
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};
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} else if udeg == 1_i32 {
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(*dst).u[0_i32 as usize] = u[0_i32 as usize];
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(*dst).u[1_i32 as usize] = BAD;
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(*dst).v[0_i32 as usize] = (if vdeg >= 0_i32 {
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(*dst).v[0_i32 as usize] = if vdeg >= 0_i32 {
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v[0_i32 as usize]
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} else {
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0_i32 as u64
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});
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};
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(*dst).v[1_i32 as usize] = BAD;
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} else {
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(*dst).u[0_i32 as usize] = BAD;
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@ -1201,17 +1201,17 @@ unsafe fn Generate(installation_id_str: *const i8, confirmation_id: *mut i8) ->
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encoded_hi: 0,
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},
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};
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if d_0.u[0_i32 as usize] as u64 == BAD {
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if d_0.u[0_i32 as usize] == BAD {
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// we can not get the zero divisor, actually...
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e.c2rust_unnamed.encoded_lo = umul128(
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MOD.wrapping_add(2_i32 as u64),
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MOD,
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&mut e.c2rust_unnamed.encoded_hi,
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);
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} else if d_0.u[1_i32 as usize] as u64 == BAD {
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} else if d_0.u[1_i32 as usize] == BAD {
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e.c2rust_unnamed.encoded_lo = umul128(
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MOD.wrapping_add(1_i32 as u64),
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d_0.u[0_i32 as usize] as u64,
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d_0.u[0_i32 as usize],
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&mut e.c2rust_unnamed.encoded_hi,
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);
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e.c2rust_unnamed.encoded_lo = e.c2rust_unnamed.encoded_lo.wrapping_add(MOD);
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@ -1221,12 +1221,12 @@ unsafe fn Generate(installation_id_str: *const i8, confirmation_id: *mut i8) ->
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.wrapping_add((e.c2rust_unnamed.encoded_lo < MOD) as i32 as u64);
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} else {
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let x1_0: u64 = (if d_0.u[1_i32 as usize] as i32 % 2_i32 != 0 {
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(d_0.u[1_i32 as usize] as u64).wrapping_add(MOD)
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d_0.u[1_i32 as usize].wrapping_add(MOD)
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} else {
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d_0.u[1_i32 as usize] as u64
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d_0.u[1_i32 as usize]
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})
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.wrapping_div(2_i32 as u64);
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let x2sqr: u64 = residue_sub(residue_mul(x1_0, x1_0), d_0.u[0_i32 as usize] as u64);
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let x2sqr: u64 = residue_sub(residue_mul(x1_0, x1_0), d_0.u[0_i32 as usize]);
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let mut x2_0: u64 = residue_sqrt(x2sqr);
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if x2_0 == BAD {
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x2_0 = residue_sqrt(residue_mul(x2sqr, residue_inv(43_i32 as u64)));
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@ -1244,13 +1244,13 @@ unsafe fn Generate(installation_id_str: *const i8, confirmation_id: *mut i8) ->
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// points (-x1+x2, v(-x1+x2)) and (-x1-x2, v(-x1-x2))
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let mut x1a: u64 = residue_sub(x1_0, x2_0);
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let y1: u64 = residue_sub(
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d_0.v[0_i32 as usize] as u64,
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residue_mul(d_0.v[1_i32 as usize] as u64, x1a),
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d_0.v[0_i32 as usize],
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residue_mul(d_0.v[1_i32 as usize], x1a),
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);
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let mut x2a: u64 = residue_add(x1_0, x2_0);
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let y2: u64 = residue_sub(
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d_0.v[0_i32 as usize] as u64,
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residue_mul(d_0.v[1_i32 as usize] as u64, x2a),
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d_0.v[0_i32 as usize],
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residue_mul(d_0.v[1_i32 as usize], x2a),
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);
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if x1a > x2a {
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std::mem::swap(&mut x1a, &mut x2a);
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