moved random offset less as sometimes you could, with rotation,
get an impossible to resolve mandelbrot.
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parent
e1190e0df6
commit
bf69ad54ac
41
hijfong.py
41
hijfong.py
@ -18,13 +18,13 @@ def redrawAll(canvas):
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def leftclick(event):
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print("player 1")
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print event.x, event.y
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#print event.x, event.y
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r = event.x/1000.0*3.0 -2.0 + rseed
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i = (1000-event.y)/1000.0*2.0 -1.0 + iseed
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print "as coords in mandel plane r=",r," i=",i
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#print "as coords in mandel plane r=",r," i=",i
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ro = event.x
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io = 1000-event.y
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print "as coords to plot x=",ro," y=",1000-io
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#print "as coords to plot x=",ro," y=",1000-io
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mm = mandelbrot(r,i,100)
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col = get_col(mm)
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io = 1000 - io
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@ -34,7 +34,7 @@ def leftclick(event):
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if mm < 21 and mm > 2:
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print "you are in the CHAOS zone "
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print "Stability factor=",mm," x=",ro,"y=",io
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if mm > 75 and mm < 80:
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if mm > 65 and mm < 80:
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print "you found the RAGGED EDGE OF CHAOS YOU WON PLAYER 2"
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draw_complete()
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def rightclick(event):
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@ -42,10 +42,10 @@ def rightclick(event):
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print event.x, event.y
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r = event.x/1000.0*3.0 -2.0 + rseed
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i = (1000-event.y)/1000.0*2.0 -1.0 + iseed
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print "as coords in mandel plane r=",r," i=",i
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#print "as coords in mandel plane r=",r," i=",i
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ro = event.x
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io = 1000-event.y
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print "as coords to plot x=",ro," y=",1000-io
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#print "as coords to plot x=",ro," y=",1000-io
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mm = mandelbrot(r,i,100)
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col = get_col(mm)
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io = 1000 - io
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@ -80,9 +80,9 @@ zz = complex(math.cos(rot), math.sin(rot))
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print " rotation ", rot, "degrees ", 90*rot/1.57, "zz ", zz
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def mandelbrot (re, Im, max_iter):
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c = complex (Re,Im)
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print " complex c ",c
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#print " complex c ",c
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c = c * zz
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print " complex c after rotaion with zz",zz, " c is now ", c
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#print " complex c after rotaion with zz",zz, " c is now ", c
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z = 0.0j
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for i in range (max_iter):
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c = complex(re,Im)
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@ -98,9 +98,9 @@ def get_col(mm):
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if ( mm > 90 ):
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return "blue"
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if ( mm > 80 ):
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return "cornflowerblue"
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if ( mm > 69 ):
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return "green"
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if ( mm > 80 ):
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return "lightgreen"
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if ( mm > 60 ):
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return "cyan"
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if ( mm > 30 ):
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@ -109,13 +109,17 @@ def get_col(mm):
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return "magenta"
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if ( mm > 12 ):
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return "red"
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if ( mm > 8 ):
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if ( mm > 9 ):
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return "yellow"
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if ( mm > 4 ):
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if ( mm > 7 ):
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return "gold"
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if ( mm > 5 ):
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return "orange"
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if ( mm >= 3 ):
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return "grey"
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if ( mm >= 0 ):
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if ( mm >= 2 ):
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return "lightgrey"
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if ( mm <= 1 ):
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return "white"
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columns = 10
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@ -134,6 +138,8 @@ mm = 40
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while mm < 90 and mm > 10:
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r = random.randint(-2000, 1000) / 1000.0
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i = random.randint(-1000, 1000) / 1000.0
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r = r/3.0
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i = i/2.0
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mm = mandelbrot(r,i,100)
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rseed = r
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@ -149,18 +155,13 @@ def draw_complete():
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#print "as coords in mandel plane r=",r," i=",i
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ro = rr
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io = 1000-ii
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print "as coords to plot x=",ro," y=",1000-io
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#print "as coords to plot x=",ro," y=",1000-io
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mm = mandelbrot(r,i,100)
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col = get_col(mm)
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#io = 1000 - io
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canvas.create_rectangle(ro, io, ro+10, io+10, fill=col)
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if mm > 98:
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print "you are in the STABLE zone "
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if mm < 21 and mm > 2:
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print "you are in the CHAOS zone "
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print "Stability factor=",mm," x=",ro,"y=",io
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if mm > 20 and mm < 80:
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print "you found the RAGGED EDGE OF CHAOS YOU WON PLAYER 2"
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print "you found the RAGGED EDGE OF CHAOS YOU WON"
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