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Object common:Generic common:Formula common:DivergentFormula reb:REB_MandelGopalsamy3
class
Mandel Gopalsamy3 with Fractint style bailout options.
The default drawing method is multi-pass linear and periodicity checking
is off. The formula comes from the Fractint formulas of Ron Barnett
class REB_MandelGopalsamy3(common.ulb:DivergentFormula) { ; Mandel Gopalsamy3 with Fractint style bailout options. <br> ; <p> ; The default drawing method is multi-pass linear and periodicity checking ; is off. The formula comes from the Fractint formulas of Ron Barnett public: import "common.ulb" ; constructor func REB_MandelGopalsamy3(Generic pparent) DivergentFormula.DivergentFormula(pparent) endfunc ; initialize the formula complex func Init(complex pz) DivergentFormula.Init(pz) m_c = pz return pz endfunc ; call for every iterated point complex func Iterate(complex pz) DivergentFormula.Iterate(pz) float x = real(pz) float y = imag(pz) complex x1 = 3*x*y*y - x*x*x + m_c y = y*y*y - 3*x*x*y return x1 + flip(y) endfunc ; Override the default function for bailout bool func IsBailedOut(complex pz) bool bail = false if @test == 0 bail = (|pz| > @p_bailout) elseif @test == 1 bail = (sqr(real(pz)) > @p_bailout) elseif @test == 2 bail = (sqr(imag(pz)) > @p_bailout) elseif @test == 3 bail = (sqr(real(pz)) > @p_bailout || sqr(imag(pz)) > @p_bailout) elseif @test == 4 bail = (sqr(real(pz)) > @p_bailout && sqr(imag(pz)) > @p_bailout) elseif @test == 5 bail = (sqr(abs(real(pz)) + abs(imag(pz))) > @p_bailout) elseif @test == 6 bail = (sqr(real(pz) + imag(pz)) > @p_bailout) endif return bail endfunc protected: complex m_c default: title = "Mandel Gopalsamy3" int param v_mandelgopalsamy3 caption = "Version (Mandel Gopalsamy 3)" default = 101 hint = "This version parameter is used to detect when a change has been made to the formula that is incompatible with the previous version. When that happens, this field will reflect the old version number to alert you to the fact that an alternate rendering is being used." visible = @v_mandelgopalsamy3 < 101 endparam param test caption = "Bailout Test" default = 0 enum = "mod" "real" "imag" "or" "and" "manh" "manr" hint = "mod is the standard bailout. The remaining bailout methods are \ from Fractint." endparam float param p_bailout ; Overrides p_bailout from DivergentFormula caption = "Bailout value" default = 10000.0 min = 1.0 hint = "Use a value of 4 if the bailout test is other than mod." endparam complex param p_power ; Overrides p_power from Formula caption = "Power" default = (2,0) visible = false endparam }
Constructor Summary | |
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REB_MandelGopalsamy3()
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REB_MandelGopalsamy3(Generic pparent)
constructor |
Method Summary | |
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complex |
Init(complex pz)
initialize the formula |
boolean |
IsBailedOut(complex pz)
Override the default function for bailout |
complex |
Iterate(complex pz)
call for every iterated point |
Methods inherited from class common:DivergentFormula |
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GetUpperBailout |
Methods inherited from class common:Formula |
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GetLowerBailout, GetPrimaryExponent |
Methods inherited from class common:Generic |
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GetParent |
Methods inherited from class Object |
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Constructor Detail |
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public REB_MandelGopalsamy3(Generic pparent)
public REB_MandelGopalsamy3()
Method Detail |
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public complex Init(complex pz)
Init
in class DivergentFormula
pz
- seed value for the sequence; for a normal fractal formula, this will be #pixel
public complex Iterate(complex pz)
Iterate
in class Formula
pz
- previous value in the sequence; corresponds to #z in a fractal formula. Note that you should always use this value for computing the next iteration, rather than a saved value, as the calling code may modify the returned value before passing it back to the next Iterate() call.
public boolean IsBailedOut(complex pz)
IsBailedOut
in class DivergentFormula
pz
- last sequence value to test; this should be the value returned from the previous Iterate() call. Note that it is acceptable to ignore pz and use m_BailedOut, but any code calling IsBailedOut() should pass in the correct pz for Formula classes which do not use m_BailedOut.
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