Several optimizations:
self.__chips now contains the list of rgbtuple values for the chips named i - 1 (Tkinter counts from 1, we count from zero). The chip number was just the index + 1. This means color lookup need not do an itemcget(), it can just index into __chips. instead of calling __canvas.itemconfigure(), we glom up a huge Tcl script and call tk.eval() directly. Actually we do many appends to a Python list, then string.join() them together into one huge string. This reduces the overhead of Tkinter but making one fast call to Tcl.
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parent
8d3e5ee552
commit
f67a50c2e1
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@ -1,7 +1,9 @@
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import string
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from Tkinter import *
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import Pmw
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import ColorDB
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class LeftArrow:
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_ARROWWIDTH = 30
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_ARROWHEIGHT = 15
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@ -73,14 +75,14 @@ class StripWidget(Pmw.MegaWidget):
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_NUMCHIPS = 40
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def __init__(self, parent=None, **kw):
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options = (('color', (128, 128, 128), self.__set_color),
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('delegate', None, None),
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('chipwidth', self._CHIPWIDTH, Pmw.INITOPT),
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options = (('color', (128, 128, 128), self.__set_color),
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('delegate', None, self.__set_delegate),
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('chipwidth', self._CHIPWIDTH, Pmw.INITOPT),
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('chipheight', self._CHIPHEIGHT, Pmw.INITOPT),
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('numchips', self._NUMCHIPS, Pmw.INITOPT),
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('generator', None, Pmw.INITOPT),
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('axis', None, Pmw.INITOPT),
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('label', '', Pmw.INITOPT),
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('numchips', self._NUMCHIPS, Pmw.INITOPT),
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('generator', None, Pmw.INITOPT),
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('axis', None, Pmw.INITOPT),
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('label', '', Pmw.INITOPT),
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)
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self.defineoptions(kw, options)
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@ -116,12 +118,13 @@ class StripWidget(Pmw.MegaWidget):
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x = 1
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y = 30
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for c in range(self.__numchips):
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color = 'grey'
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rect = self.__canvas.create_rectangle(
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x, y, x+chipwidth, y+chipheight,
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fill='grey', outline='grey')
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fill=color, outline=color)
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x = x + chipwidth + 1 # for outline
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chips.append(rect)
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chips.append(color)
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# create the string tag
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self.__label = self.__canvas.create_text(
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@ -140,24 +143,37 @@ class StripWidget(Pmw.MegaWidget):
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self.__axis = self['axis']
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assert self.__axis in (0, 1, 2)
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self.initialiseoptions(StripWidget)
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self.__delegate = self['delegate']
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def __set_color(self):
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rgbtuple = self['color']
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self.set_color(self, rgbtuple)
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def __arrow_x(self, chipnum):
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coords = self.__canvas.coords(self.__chips[chipnum])
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coords = self.__canvas.coords(chipnum+1)
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assert coords
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x0, y0, x1, y1 = coords
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return (x1 + x0) / 2.0
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def __select_chip(self, event=None):
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chip = self.__canvas.find_closest(event.x, event.y)
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delegate = self['delegate']
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if chip and delegate:
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color = self.__canvas.itemcget(chip, 'fill')
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chip = self.__canvas.find_closest(event.x, event.y)[0]
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if chip and self.__delegate:
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color = self.__chips[chip-1]
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rgbtuple = ColorDB.rrggbb_to_triplet(color)
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delegate.set_color(self, rgbtuple)
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self.__delegate.set_color(self, rgbtuple)
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## import profile
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## import pstats
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## import tempfile
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## statfile = tempfile.mktemp()
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## p = profile.Profile()
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## p.runcall(self.__delegate.set_color, self, rgbtuple)
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## p.dump_stats(statfile)
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## s = pstats.Stats(statfile)
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## s.strip_dirs().sort_stats('time').print_stats(10)
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def __set_delegate(self):
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self.__delegate = self['delegate']
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#
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@ -166,39 +182,53 @@ class StripWidget(Pmw.MegaWidget):
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def set_color(self, obj, rgbtuple):
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red, green, blue = rgbtuple
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if self.__generator:
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i = 0
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chip = 0
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for t in self.__generator(self.__numchips, rgbtuple):
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rrggbb = ColorDB.triplet_to_rrggbb(t)
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self.__canvas.itemconfigure(self.__chips[i],
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fill=rrggbb,
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outline=rrggbb)
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tred, tgreen, tblue = t
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if tred <= red and tgreen <= green and tblue <= blue:
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chip = i
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i = i + 1
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# get the arrow's text
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coloraxis = rgbtuple[self.__axis]
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text = repr(coloraxis)
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assert self.__generator
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i = 1
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chip = 0
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chips = self.__chips = []
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tclcmd = []
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for t in self.__generator(self.__numchips, rgbtuple):
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rrggbb = ColorDB.triplet_to_rrggbb(t)
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chips.append(rrggbb)
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## self.__canvas.itemconfigure(i,
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## fill=rrggbb,
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## outline=rrggbb)
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tclcmd.append(self.__canvas._w)
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tclcmd.append('itemconfigure')
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tclcmd.append(`i`)
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tclcmd.append('-fill')
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tclcmd.append(rrggbb)
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tclcmd.append('-outline')
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tclcmd.append(rrggbb)
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tclcmd.append('\n')
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tred, tgreen, tblue = t
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if tred <= red and tgreen <= green and tblue <= blue:
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chip = i
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i = i + 1
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# call the raw tcl script
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script = string.join(tclcmd, ' ')
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self.__canvas.tk.eval(script)
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# move the arrow, and set it's text
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if coloraxis <= 128:
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# use the left chip
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self.__leftarrow.set_text(text)
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self.__leftarrow.move_to(self.__arrow_x(chip))
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self.__rightarrow.move_to(-100)
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else:
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# use the right chip
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self.__rightarrow.set_text(text)
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self.__rightarrow.move_to(self.__arrow_x(chip))
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self.__leftarrow.move_to(-100)
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# and set the chip's outline
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pmwrgb = ColorDB.triplet_to_pmwrgb(rgbtuple)
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b = Pmw.Color.rgb2brightness(pmwrgb)
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if b <= 0.5:
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outline = 'white'
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else:
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outline = 'black'
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self.__canvas.itemconfigure(self.__chips[chip],
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outline=outline)
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# get the arrow's text
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coloraxis = rgbtuple[self.__axis]
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text = repr(coloraxis)
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# move the arrow, and set it's text
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if coloraxis <= 128:
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# use the left chip
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self.__leftarrow.set_text(text)
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self.__leftarrow.move_to(self.__arrow_x(chip-1))
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self.__rightarrow.move_to(-100)
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else:
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# use the right chip
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self.__rightarrow.set_text(text)
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self.__rightarrow.move_to(self.__arrow_x(chip-1))
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self.__leftarrow.move_to(-100)
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# and set the chip's outline
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pmwrgb = ColorDB.triplet_to_pmwrgb(rgbtuple)
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b = Pmw.Color.rgb2brightness(pmwrgb)
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if b <= 0.5:
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outline = 'white'
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else:
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outline = 'black'
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self.__canvas.itemconfigure(chip, outline=outline)
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