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math: improved high-angle test for Cos, Sin and Tan
Maximum error for 386 is "close" (1e-14). For amd64, it's "veryclose" (4e-16). R=rsc, golang-dev CC=golang-dev https://golang.org/cl/5340042
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cd6c7375d4
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377ac335af
@ -159,6 +159,19 @@ var cos = []float64{
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-2.517729313893103197176091e-01,
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-7.39241351595676573201918e-01,
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}
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// Results for 100000 * Pi + vf[i]
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var cosLarge = []float64{
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2.634752141185559426744e-01,
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1.14855126055543100712e-01,
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9.61912973266488928113e-01,
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2.9381411499556122552e-01,
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-9.777138189880161924641e-01,
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-9.76930413445147608049e-01,
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4.940088097314976789841e-01,
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-9.15658690217517835002e-01,
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-2.51772931436786954751e-01,
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-7.3924135157173099849e-01,
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}
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var cosh = []float64{
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7.2668796942212842775517446e+01,
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1.1479413465659254502011135e+03,
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@ -501,6 +514,19 @@ var sin = []float64{
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9.6778633541687993721617774e-01,
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-6.734405869050344734943028e-01,
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}
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// Results for 100000 * Pi + vf[i]
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var sinLarge = []float64{
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-9.646661658548936063912e-01,
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9.933822527198506903752e-01,
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-2.7335587036246899796e-01,
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9.55862576853689321268e-01,
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-2.099421066862688873691e-01,
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2.13557878070308981163e-01,
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-8.694568970959221300497e-01,
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4.01956668098863248917e-01,
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9.67786335404528727927e-01,
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-6.7344058693131973066e-01,
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}
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var sinh = []float64{
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7.2661916084208532301448439e+01,
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1.1479409110035194500526446e+03,
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@ -537,6 +563,19 @@ var tan = []float64{
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-3.843885560201130679995041e+00,
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9.10988793377685105753416e-01,
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}
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// Results for 100000 * Pi + vf[i]
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var tanLarge = []float64{
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-3.66131656475596512705e+00,
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8.6490023287202547927e+00,
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-2.841794195104782406e-01,
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3.2532901861033120983e+00,
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2.14727564046880001365e-01,
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-2.18600910700688062874e-01,
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-1.760002817699722747043e+00,
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-4.38980891453536115952e-01,
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-3.84388555942723509071e+00,
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9.1098879344275101051e-01,
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}
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var tanh = []float64{
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9.9990531206936338549262119e-01,
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9.9999962057085294197613294e-01,
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@ -2333,13 +2372,15 @@ func TestYn(t *testing.T) {
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}
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// Check that math functions of high angle values
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// return similar results to low angle values
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// return accurate results. [Since (vf[i] + large) - large != vf[i],
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// testing for Trig(vf[i] + large) == Trig(vf[i]), where large is
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// a multiple of 2*Pi, is misleading.]
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func TestLargeCos(t *testing.T) {
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large := float64(100000 * Pi)
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for i := 0; i < len(vf); i++ {
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f1 := Cos(vf[i])
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f1 := cosLarge[i]
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f2 := Cos(vf[i] + large)
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if !kindaclose(f1, f2) {
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if !close(f1, f2) {
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t.Errorf("Cos(%g) = %g, want %g", vf[i]+large, f2, f1)
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}
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}
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@ -2348,9 +2389,9 @@ func TestLargeCos(t *testing.T) {
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func TestLargeSin(t *testing.T) {
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large := float64(100000 * Pi)
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for i := 0; i < len(vf); i++ {
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f1 := Sin(vf[i])
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f1 := sinLarge[i]
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f2 := Sin(vf[i] + large)
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if !kindaclose(f1, f2) {
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if !close(f1, f2) {
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t.Errorf("Sin(%g) = %g, want %g", vf[i]+large, f2, f1)
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}
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}
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@ -2359,9 +2400,9 @@ func TestLargeSin(t *testing.T) {
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func TestLargeSincos(t *testing.T) {
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large := float64(100000 * Pi)
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for i := 0; i < len(vf); i++ {
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f1, g1 := Sincos(vf[i])
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f1, g1 := sinLarge[i], cosLarge[i]
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f2, g2 := Sincos(vf[i] + large)
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if !kindaclose(f1, f2) || !kindaclose(g1, g2) {
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if !close(f1, f2) || !close(g1, g2) {
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t.Errorf("Sincos(%g) = %g, %g, want %g, %g", vf[i]+large, f2, g2, f1, g1)
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}
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}
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@ -2370,9 +2411,9 @@ func TestLargeSincos(t *testing.T) {
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func TestLargeTan(t *testing.T) {
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large := float64(100000 * Pi)
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for i := 0; i < len(vf); i++ {
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f1 := Tan(vf[i])
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f1 := tanLarge[i]
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f2 := Tan(vf[i] + large)
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if !kindaclose(f1, f2) {
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if !close(f1, f2) {
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t.Errorf("Tan(%g) = %g, want %g", vf[i]+large, f2, f1)
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}
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}
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