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crypto/elliptic: fix typo in p521Point type name
Change-Id: I6cab3624c875d9a70441a560e84f91c9b2df17b9 Reviewed-on: https://go-review.googlesource.com/c/go/+/320070 Trust: Filippo Valsorda <filippo@golang.org> Trust: Katie Hockman <katie@golang.org> Run-TryBot: Filippo Valsorda <filippo@golang.org> Run-TryBot: Katie Hockman <katie@golang.org> TryBot-Result: Go Bot <gobot@golang.org> Reviewed-by: Katie Hockman <katie@golang.org>
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1 changed files with 9 additions and 9 deletions
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@ -52,7 +52,7 @@ func (curve p521Curve) IsOnCurve(x, y *big.Int) bool {
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return x3.Equal(y2) == 1
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}
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type p512Point struct {
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type p521Point struct {
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x, y, z *fiat.P521Element
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}
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@ -67,7 +67,7 @@ func fiatP521ToBigInt(x *fiat.P521Element) *big.Int {
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// affineFromJacobian brings a point in Jacobian coordinates back to affine
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// coordinates, with (0, 0) representing infinity by convention. It also goes
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// back to big.Int values to match the exposed API.
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func (curve p521Curve) affineFromJacobian(p *p512Point) (x, y *big.Int) {
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func (curve p521Curve) affineFromJacobian(p *p521Point) (x, y *big.Int) {
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if p.z.IsZero() == 1 {
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return new(big.Int), new(big.Int)
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}
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@ -99,17 +99,17 @@ func bigIntToFiatP521(x *big.Int) *fiat.P521Element {
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// jacobianFromAffine converts (x, y) affine coordinates into (x, y, z) Jacobian
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// coordinates. It also converts from big.Int to fiat, which is necessarily a
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// messy and variable-time operation, which we can't avoid due to the exposed API.
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func (curve p521Curve) jacobianFromAffine(x, y *big.Int) *p512Point {
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func (curve p521Curve) jacobianFromAffine(x, y *big.Int) *p521Point {
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// (0, 0) is by convention the point at infinity, which can't be represented
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// in affine coordinates, but is (0, 0, 0) in Jacobian.
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if x.Sign() == 0 && y.Sign() == 0 {
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return &p512Point{
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return &p521Point{
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x: new(fiat.P521Element),
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y: new(fiat.P521Element),
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z: new(fiat.P521Element),
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}
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}
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return &p512Point{
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return &p521Point{
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x: bigIntToFiatP521(x),
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y: bigIntToFiatP521(y),
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z: new(fiat.P521Element).One(),
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@ -123,7 +123,7 @@ func (curve p521Curve) Add(x1, y1, x2, y2 *big.Int) (*big.Int, *big.Int) {
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}
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// addJacobian sets q = p1 + p2, and returns q. The points may overlap.
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func (q *p512Point) addJacobian(p1, p2 *p512Point) *p512Point {
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func (q *p521Point) addJacobian(p1, p2 *p521Point) *p521Point {
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// https://hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-3.html#addition-add-2007-bl
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z1IsZero := p1.z.IsZero()
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z2IsZero := p2.z.IsZero()
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@ -189,7 +189,7 @@ func (curve p521Curve) Double(x1, y1 *big.Int) (*big.Int, *big.Int) {
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}
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// doubleJacobian sets q = p + p, and returns q. The points may overlap.
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func (q *p512Point) doubleJacobian(p *p512Point) *p512Point {
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func (q *p521Point) doubleJacobian(p *p521Point) *p521Point {
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// https://hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-3.html#doubling-dbl-2001-b
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delta := new(fiat.P521Element).Square(p.z)
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gamma := new(fiat.P521Element).Square(p.y)
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@ -230,11 +230,11 @@ func (q *p512Point) doubleJacobian(p *p512Point) *p512Point {
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func (curve p521Curve) ScalarMult(Bx, By *big.Int, scalar []byte) (*big.Int, *big.Int) {
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B := curve.jacobianFromAffine(Bx, By)
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p, t := &p512Point{
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p, t := &p521Point{
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x: new(fiat.P521Element),
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y: new(fiat.P521Element),
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z: new(fiat.P521Element),
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}, &p512Point{
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}, &p521Point{
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x: new(fiat.P521Element),
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y: new(fiat.P521Element),
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z: new(fiat.P521Element),
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