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native: add Dlaqr1
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57
native/dlaqr1.go
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57
native/dlaqr1.go
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// Copyright ©2016 The gonum Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package native
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import "math"
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// Dlaqr1 sets v to a scalar multiple of the first column of the product
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// (H - (sr1 + i*si1)*I)*(H - (sr2 + i*si2)*I)
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// where H is a 2×2 or 3×3 matrix, I is the identity matrix of the same size,
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// and i is the imaginary unit. Scaling is done to avoid overflows and most
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// underflows.
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//
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// n is the order of H and must be either 2 or 3. It must hold that either sr1 =
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// sr2 and si1 = -si2, or si1 = si2 = 0. The length of v must be equal to n. If
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// any of these conditions is not met, Dlaqr1 will panic.
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//
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// Dlaqr1 is an internal routine. It is exported for testing purposes.
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func (impl Implementation) Dlaqr1(n int, h []float64, ldh int, sr1, si1, sr2, si2 float64, v []float64) {
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if n != 2 && n != 3 {
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panic(badDims)
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}
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checkMatrix(n, n, h, ldh)
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if len(v) != n {
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panic(badSlice)
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}
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if !((sr1 == sr2 && si1 == -si2) || (si1 == 0 && si2 == 0)) {
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panic(badShifts)
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}
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if n == 2 {
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s := math.Abs(h[0]-sr2) + math.Abs(si2) + math.Abs(h[ldh])
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if s == 0 {
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v[0] = 0
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v[1] = 0
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} else {
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h21s := h[ldh] / s
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v[0] = h21s*h[1] + (h[0]-sr1)*((h[0]-sr2)/s) - si1*(si2/s)
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v[1] = h21s * (h[0] + h[ldh+1] - sr1 - sr2)
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}
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return
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}
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s := math.Abs(h[0]-sr2) + math.Abs(si2) + math.Abs(h[ldh]) + math.Abs(h[2*ldh])
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if s == 0 {
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v[0] = 0
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v[1] = 0
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v[2] = 0
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} else {
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h21s := h[ldh] / s
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h31s := h[2*ldh] / s
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v[0] = (h[0]-sr1)*((h[0]-sr2)/s) - si1*(si2/s) + h[1]*h21s + h[2]*h31s
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v[1] = h21s*(h[0]+h[ldh+1]-sr1-sr2) + h[ldh+2]*h31s
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v[2] = h31s*(h[0]+h[2*ldh+2]-sr1-sr2) + h21s*h[2*ldh+1]
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}
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}
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@@ -32,6 +32,7 @@ const (
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badNorm = "lapack: bad norm"
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badPivot = "lapack: bad pivot"
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badS = "lapack: s has insufficient length"
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badShifts = "lapack: bad shifts"
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badSide = "lapack: bad side"
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badSlice = "lapack: bad input slice length"
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badStore = "lapack: bad store"
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