forked from cerc-io/plugeth
crypto/bn256: fix go vet false positive
Also add the package to the license tool ignore list.
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e1e87d8b1a
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069cb661c3
@ -47,11 +47,14 @@ var (
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// boring stuff
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"vendor/", "tests/files/", "build/",
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// don't relicense vendored sources
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"crypto/sha3/", "crypto/ecies/", "log/",
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"crypto/secp256k1/curve.go",
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"consensus/ethash/xor.go",
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"internal/jsre/deps",
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"cmd/internal/browser",
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"consensus/ethash/xor.go",
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"crypto/bn256/",
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"crypto/ecies/",
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"crypto/secp256k1/curve.go",
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"crypto/sha3/",
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"internal/jsre/deps",
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"log/",
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// don't license generated files
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"contracts/chequebook/contract/",
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"contracts/ens/contract/",
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@ -186,14 +186,14 @@ func (c *curvePoint) Double(a *curvePoint, pool *bnPool) {
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A.Mod(A, P)
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B := pool.Get().Mul(a.y, a.y)
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B.Mod(B, P)
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C := pool.Get().Mul(B, B)
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C.Mod(C, P)
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C_ := pool.Get().Mul(B, B)
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C_.Mod(C_, P)
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t := pool.Get().Add(a.x, B)
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t2 := pool.Get().Mul(t, t)
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t2.Mod(t2, P)
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t.Sub(t2, A)
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t2.Sub(t, C)
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t2.Sub(t, C_)
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d := pool.Get().Add(t2, t2)
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t.Add(A, A)
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e := pool.Get().Add(t, A)
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@ -203,7 +203,7 @@ func (c *curvePoint) Double(a *curvePoint, pool *bnPool) {
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t.Add(d, d)
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c.x.Sub(f, t)
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t.Add(C, C)
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t.Add(C_, C_)
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t2.Add(t, t)
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t.Add(t2, t2)
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c.y.Sub(d, c.x)
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@ -217,7 +217,7 @@ func (c *curvePoint) Double(a *curvePoint, pool *bnPool) {
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pool.Put(A)
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pool.Put(B)
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pool.Put(C)
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pool.Put(C_)
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pool.Put(t)
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pool.Put(t2)
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pool.Put(d)
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@ -266,13 +266,13 @@ func (e *gfP6) Invert(a *gfP6, pool *bnPool) *gfP6 {
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t1.Mul(a.y, a.z, pool)
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B.Sub(B, t1)
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C := newGFp2(pool)
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C.Square(a.y, pool)
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C_ := newGFp2(pool)
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C_.Square(a.y, pool)
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t1.Mul(a.x, a.z, pool)
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C.Sub(C, t1)
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C_.Sub(C_, t1)
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F := newGFp2(pool)
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F.Mul(C, a.y, pool)
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F.Mul(C_, a.y, pool)
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F.MulXi(F, pool)
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t1.Mul(A, a.z, pool)
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F.Add(F, t1)
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@ -282,14 +282,14 @@ func (e *gfP6) Invert(a *gfP6, pool *bnPool) *gfP6 {
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F.Invert(F, pool)
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e.x.Mul(C, F, pool)
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e.x.Mul(C_, F, pool)
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e.y.Mul(B, F, pool)
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e.z.Mul(A, F, pool)
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t1.Put(pool)
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A.Put(pool)
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B.Put(pool)
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C.Put(pool)
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C_.Put(pool)
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F.Put(pool)
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return e
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@ -88,12 +88,12 @@ func lineFunctionDouble(r *twistPoint, q *curvePoint, pool *bnPool) (a, b, c *gf
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A := newGFp2(pool).Square(r.x, pool)
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B := newGFp2(pool).Square(r.y, pool)
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C := newGFp2(pool).Square(B, pool)
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C_ := newGFp2(pool).Square(B, pool)
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D := newGFp2(pool).Add(r.x, B)
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D.Square(D, pool)
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D.Sub(D, A)
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D.Sub(D, C)
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D.Sub(D, C_)
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D.Add(D, D)
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E := newGFp2(pool).Add(A, A)
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@ -112,7 +112,7 @@ func lineFunctionDouble(r *twistPoint, q *curvePoint, pool *bnPool) (a, b, c *gf
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rOut.y.Sub(D, rOut.x)
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rOut.y.Mul(rOut.y, E, pool)
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t := newGFp2(pool).Add(C, C)
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t := newGFp2(pool).Add(C_, C_)
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t.Add(t, t)
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t.Add(t, t)
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rOut.y.Sub(rOut.y, t)
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@ -142,7 +142,7 @@ func lineFunctionDouble(r *twistPoint, q *curvePoint, pool *bnPool) (a, b, c *gf
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A.Put(pool)
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B.Put(pool)
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C.Put(pool)
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C_.Put(pool)
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D.Put(pool)
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E.Put(pool)
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G.Put(pool)
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@ -165,12 +165,12 @@ func (c *twistPoint) Double(a *twistPoint, pool *bnPool) {
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// See http://hyperelliptic.org/EFD/g1p/auto-code/shortw/jacobian-0/doubling/dbl-2009-l.op3
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A := newGFp2(pool).Square(a.x, pool)
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B := newGFp2(pool).Square(a.y, pool)
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C := newGFp2(pool).Square(B, pool)
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C_ := newGFp2(pool).Square(B, pool)
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t := newGFp2(pool).Add(a.x, B)
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t2 := newGFp2(pool).Square(t, pool)
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t.Sub(t2, A)
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t2.Sub(t, C)
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t2.Sub(t, C_)
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d := newGFp2(pool).Add(t2, t2)
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t.Add(A, A)
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e := newGFp2(pool).Add(t, A)
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@ -179,7 +179,7 @@ func (c *twistPoint) Double(a *twistPoint, pool *bnPool) {
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t.Add(d, d)
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c.x.Sub(f, t)
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t.Add(C, C)
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t.Add(C_, C_)
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t2.Add(t, t)
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t.Add(t2, t2)
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c.y.Sub(d, c.x)
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@ -191,7 +191,7 @@ func (c *twistPoint) Double(a *twistPoint, pool *bnPool) {
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A.Put(pool)
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B.Put(pool)
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C.Put(pool)
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C_.Put(pool)
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t.Put(pool)
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t2.Put(pool)
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d.Put(pool)
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