/usr/lib64/python2.6/site-packages/matplotlib
NameSizeModeActions
backends/-0755rm
delaunay/-0755rm
mpl-data/-0755rm
numerix/-0755rm
projections/-0755rm
sphinxext/-0755rm
afm.py150890644editdlrm
afm.pyc169590644editdlrm
afm.pyo169590644editdlrm
artist.py356230644editdlrm
artist.pyc403260644editdlrm
artist.pyo403260644editdlrm
axes.py2800890644editdlrm
axes.pyc2493960644editdlrm
axes.pyo2482840644editdlrm
axis.py573540644editdlrm
axis.pyc589730644editdlrm
axis.pyo586660644editdlrm
backend_bases.py723180644editdlrm
backend_bases.pyc779670644editdlrm
backend_bases.pyo778770644editdlrm
bezier.py149170644editdlrm
bezier.pyc135260644editdlrm
bezier.pyo135260644editdlrm
blocking_input.py136900644editdlrm
blocking_input.pyc143460644editdlrm
blocking_input.pyo140280644editdlrm
cbook.py427560644editdlrm
cbook.pyc567550644editdlrm
cbook.pyo565290644editdlrm
cm.py80980644editdlrm
cm.pyc97720644editdlrm
cm.pyo97720644editdlrm
collections.py407840644editdlrm
collections.pyc440060644editdlrm
collections.pyo440060644editdlrm
colorbar.py274560644editdlrm
colorbar.pyc254970644editdlrm
colorbar.pyo254970644editdlrm
colors.py391100644editdlrm
colors.pyc400790644editdlrm
colors.pyo400790644editdlrm
contour.py428950644editdlrm
contour.pyc360990644editdlrm
contour.pyo359370644editdlrm
dates.py360070755editdlrm
dates.pyc400170644editdlrm
dates.pyo399530644editdlrm
dviread.py320330644editdlrm
dviread.pyc346820644editdlrm
dviread.pyo345390644editdlrm
figure.py412640644editdlrm
figure.pyc429390644editdlrm
figure.pyo428080644editdlrm
finance.py205820644editdlrm
finance.pyc185190644editdlrm
finance.pyo183590644editdlrm
fontconfig_pattern.py64290644editdlrm
fontconfig_pattern.pyc65190644editdlrm
fontconfig_pattern.pyo65190644editdlrm
font_manager.py426530644editdlrm
font_manager.pyc404560644editdlrm
font_manager.pyo404560644editdlrm
ft2font.so3061680775editdlrm
hatch.py65640644editdlrm
hatch.pyc91200644editdlrm
hatch.pyo91200644editdlrm
image.py315400644editdlrm
image.pyc330420644editdlrm
image.pyo329960644editdlrm
legend.py323020644editdlrm
legend.pyc235510644editdlrm
legend.pyo233780644editdlrm
lines.py546850644editdlrm
lines.pyc564310644editdlrm
lines.pyo563260644editdlrm
mathtext.py1020090644editdlrm
mathtext.pyc1030670644editdlrm
mathtext.pyo1026790644editdlrm
mlab.py942940644editdlrm
mlab.pyc1000040644editdlrm
mlab.pyo998240644editdlrm
mpl.py7850644editdlrm
mpl.pyc11760644editdlrm
mpl.pyo11760644editdlrm
nxutils.so95120775editdlrm
offsetbox.py298070644editdlrm
offsetbox.pyc338890644editdlrm
offsetbox.pyo338340644editdlrm
patches.py1284850644editdlrm
patches.pyc1301480644editdlrm
patches.pyo1300100644editdlrm
path.py217650644editdlrm
path.pyc211740644editdlrm
path.pyo209540644editdlrm
pylab.py109810644editdlrm
pylab.pyc123990644editdlrm
pylab.pyo123990644editdlrm
pyparsing.py1439240644editdlrm
pyparsing.pyc1467370644editdlrm
pyparsing.pyo1467370644editdlrm
pyplot.py824680644editdlrm
pyplot.pyc802790644editdlrm
pyplot.pyo802790644editdlrm
quiver.py375400644editdlrm
quiver.pyc337880644editdlrm
quiver.pyo337880644editdlrm
rcsetup.py234340644editdlrm
rcsetup.pyc211190644editdlrm
rcsetup.pyo209490644editdlrm
scale.py142330644editdlrm
scale.pyc194740644editdlrm
scale.pyo194740644editdlrm
spines.py126840644editdlrm
spines.pyc116360644editdlrm
spines.pyo112090644editdlrm
table.py168280644editdlrm
table.pyc169310644editdlrm
table.pyo167800644editdlrm
texmanager.py224640644editdlrm
texmanager.pyc199620644editdlrm
texmanager.pyo199620644editdlrm
text.py598220644editdlrm
text.pyc592400644editdlrm
text.pyo592400644editdlrm
ticker.py404280644editdlrm
ticker.pyc504610644editdlrm
ticker.pyo503250644editdlrm
tight_bbox.py36550644editdlrm
tight_bbox.pyc40660644editdlrm
tight_bbox.pyo40660644editdlrm
transforms.py753870644editdlrm
transforms.pyc896110644editdlrm
transforms.pyo887020644editdlrm
ttconv.so653600775editdlrm
type1font.py115370644editdlrm
type1font.pyc112560644editdlrm
type1font.pyo112560644editdlrm
units.py49760644editdlrm
units.pyc57750644editdlrm
units.pyo57750644editdlrm
widgets.py408330644editdlrm
widgets.pyc425680644editdlrm
widgets.pyo423820644editdlrm
windowing.py4540644editdlrm
windowing.pyc12830644editdlrm
windowing.pyo12830644editdlrm
_cm.py3704140644editdlrm
_cm.pyc1030420644editdlrm
_cm.pyo1030420644editdlrm
_cntr.so211840775editdlrm
_delaunay.so611200775editdlrm
_image.so2822480775editdlrm
_mathtext_data.py579900644editdlrm
_mathtext_data.pyc637870644editdlrm
_mathtext_data.pyo637870644editdlrm
_path.so2799920775editdlrm
_png.so1564720775editdlrm
_pylab_helpers.py27150644editdlrm
_pylab_helpers.pyc37080644editdlrm
_pylab_helpers.pyo37080644editdlrm
__init__.py289720644editdlrm
__init__.pyc289800644editdlrm
__init__.pyo289260644editdlrm
Edit: /usr/lib64/python2.6/site-packages/matplotlib/blocking_input.py (13690B)
""" This provides several classes used for blocking interaction with figure windows: :class:`BlockingInput` creates a callable object to retrieve events in a blocking way for interactive sessions :class:`BlockingKeyMouseInput` creates a callable object to retrieve key or mouse clicks in a blocking way for interactive sessions. Note: Subclass of BlockingInput. Used by waitforbuttonpress :class:`BlockingMouseInput` creates a callable object to retrieve mouse clicks in a blocking way for interactive sessions. Note: Subclass of BlockingInput. Used by ginput :class:`BlockingContourLabeler` creates a callable object to retrieve mouse clicks in a blocking way that will then be used to place labels on a ContourSet Note: Subclass of BlockingMouseInput. Used by clabel """ from matplotlib import path, verbose from matplotlib.cbook import is_sequence_of_strings class BlockingInput(object): """ Class that creates a callable object to retrieve events in a blocking way. """ def __init__(self, fig, eventslist=()): self.fig = fig assert is_sequence_of_strings(eventslist), "Requires a sequence of event name strings" self.eventslist = eventslist def on_event(self, event): """ Event handler that will be passed to the current figure to retrieve events. """ # Add a new event to list - using a separate function is # overkill for the base class, but this is consistent with # subclasses self.add_event(event) verbose.report("Event %i" % len(self.events)) # This will extract info from events self.post_event() # Check if we have enough events already if len(self.events) >= self.n and self.n > 0: self.fig.canvas.stop_event_loop() def post_event(self): """For baseclass, do nothing but collect events""" pass def cleanup(self): """Disconnect all callbacks""" for cb in self.callbacks: self.fig.canvas.mpl_disconnect(cb) self.callbacks=[] def add_event(self,event): """For base class, this just appends an event to events.""" self.events.append(event) def pop_event(self,index=-1): """ This removes an event from the event list. Defaults to removing last event, but an index can be supplied. Note that this does not check that there are events, much like the normal pop method. If not events exist, this will throw an exception. """ self.events.pop(index) def pop(self,index=-1): self.pop_event(index) pop.__doc__=pop_event.__doc__ def __call__(self, n=1, timeout=30 ): """ Blocking call to retrieve n events """ assert isinstance(n, int), "Requires an integer argument" self.n = n self.events = [] self.callbacks = [] # Ensure that the figure is shown self.fig.show() # connect the events to the on_event function call for n in self.eventslist: self.callbacks.append( self.fig.canvas.mpl_connect(n, self.on_event) ) try: # Start event loop self.fig.canvas.start_event_loop(timeout=timeout) finally: # Run even on exception like ctrl-c # Disconnect the callbacks self.cleanup() # Return the events in this case return self.events class BlockingMouseInput(BlockingInput): """ Class that creates a callable object to retrieve mouse clicks in a blocking way. This class will also retrieve keyboard clicks and treat them like appropriate mouse clicks (delete and backspace are like mouse button 3, enter is like mouse button 2 and all others are like mouse button 1). """ button_add = 1 button_pop = 3 button_stop = 2 def __init__(self, fig, mouse_add=1, mouse_pop=3, mouse_stop=2): BlockingInput.__init__(self, fig=fig, eventslist=('button_press_event', 'key_press_event') ) self.button_add = mouse_add self.button_pop = mouse_pop self.button_stop= mouse_stop def post_event(self): """ This will be called to process events """ assert len(self.events)>0, "No events yet" if self.events[-1].name == 'key_press_event': self.key_event() else: self.mouse_event() def mouse_event(self): '''Process a mouse click event''' event = self.events[-1] button = event.button if button == self.button_pop: self.mouse_event_pop(event) elif button == self.button_stop: self.mouse_event_stop(event) else: self.mouse_event_add(event) def key_event(self): ''' Process a key click event. This maps certain keys to appropriate mouse click events. ''' event = self.events[-1] key = event.key.lower() if key in ['backspace', 'delete']: self.mouse_event_pop(event) elif key in ['escape', 'enter']: # on windows XP and wxAgg, the enter key doesn't seem to register self.mouse_event_stop(event) else: self.mouse_event_add(event) def mouse_event_add( self, event ): """ Will be called for any event involving a button other than button 2 or 3. This will add a click if it is inside axes. """ if event.inaxes: self.add_click(event) else: # If not a valid click, remove from event list BlockingInput.pop(self,-1) def mouse_event_stop( self, event ): """ Will be called for any event involving button 2. Button 2 ends blocking input. """ # Remove last event just for cleanliness BlockingInput.pop(self,-1) # This will exit even if not in infinite mode. This is # consistent with matlab and sometimes quite useful, but will # require the user to test how many points were actually # returned before using data. self.fig.canvas.stop_event_loop(event) def mouse_event_pop( self, event ): """ Will be called for any event involving button 3. Button 3 removes the last click. """ # Remove this last event BlockingInput.pop(self,-1) # Now remove any existing clicks if possible if len(self.events)>0: self.pop(event,-1) def add_click(self,event): """ This add the coordinates of an event to the list of clicks """ self.clicks.append((event.xdata,event.ydata)) verbose.report("input %i: %f,%f" % (len(self.clicks),event.xdata, event.ydata)) # If desired plot up click if self.show_clicks: # make sure we don't mess with the axes zoom xlim = event.inaxes.get_xlim() ylim = event.inaxes.get_ylim() # plot the clicks self.marks.extend( event.inaxes.plot([event.xdata,], [event.ydata,], 'r+') ) # before we draw, make sure to reset the limits event.inaxes.set_xlim(xlim) event.inaxes.set_ylim(ylim) self.fig.canvas.draw() def pop_click(self,event,index=-1): """ This removes a click from the list of clicks. Defaults to removing the last click. """ self.clicks.pop(index) if self.show_clicks: # make sure we don't mess with the axes zoom xlim = event.inaxes.get_xlim() ylim = event.inaxes.get_ylim() mark = self.marks.pop(index) mark.remove() # before we draw, make sure to reset the limits event.inaxes.set_xlim(xlim) event.inaxes.set_ylim(ylim) self.fig.canvas.draw() # NOTE: I do NOT understand why the above 3 lines does not work # for the keyboard backspace event on windows XP wxAgg. # maybe event.inaxes here is a COPY of the actual axes? def pop(self,event,index=-1): """ This removes a click and the associated event from the object. Defaults to removing the last click, but any index can be supplied. """ self.pop_click(event,index) BlockingInput.pop(self,index) def cleanup(self,event=None): # clean the figure if self.show_clicks: if event: # make sure we don't mess with the axes zoom xlim = event.inaxes.get_xlim() ylim = event.inaxes.get_ylim() for mark in self.marks: mark.remove() self.marks = [] if event: # before we draw, make sure to reset the limits event.inaxes.set_xlim(xlim) event.inaxes.set_ylim(ylim) self.fig.canvas.draw() # Call base class to remove callbacks BlockingInput.cleanup(self) def __call__(self, n=1, timeout=30, show_clicks=True): """ Blocking call to retrieve n coordinate pairs through mouse clicks. """ self.show_clicks = show_clicks self.clicks = [] self.marks = [] BlockingInput.__call__(self,n=n,timeout=timeout) return self.clicks class BlockingContourLabeler( BlockingMouseInput ): """ Class that creates a callable object that uses mouse clicks or key clicks on a figure window to place contour labels. """ def __init__(self,cs): self.cs = cs BlockingMouseInput.__init__(self, fig=cs.ax.figure ) def button1(self,event): """ This will be called if an event involving a button other than 2 or 3 occcurs. This will add a label to a contour. """ # Shorthand cs = self.cs if event.inaxes == cs.ax: conmin,segmin,imin,xmin,ymin = cs.find_nearest_contour( event.x, event.y, cs.labelIndiceList)[:5] # Get index of nearest level in subset of levels used for labeling lmin = cs.labelIndiceList.index(conmin) # Coordinates of contour paths = cs.collections[conmin].get_paths() lc = paths[segmin].vertices # In pixel/screen space slc = cs.ax.transData.transform(lc) # Get label width for rotating labels and breaking contours lw = cs.get_label_width(cs.labelLevelList[lmin], cs.labelFmt, cs.labelFontSizeList[lmin]) """ # requires python 2.5 # Figure out label rotation. rotation,nlc = cs.calc_label_rot_and_inline( slc, imin, lw, lc if self.inline else [], self.inline_spacing ) """ # Figure out label rotation. if self.inline: lcarg = lc else: lcarg = None rotation,nlc = cs.calc_label_rot_and_inline( slc, imin, lw, lcarg, self.inline_spacing ) cs.add_label(xmin,ymin,rotation,cs.labelLevelList[lmin], cs.labelCValueList[lmin]) if self.inline: # Remove old, not looping over paths so we can do this up front paths.pop(segmin) # Add paths if not empty or single point for n in nlc: if len(n)>1: paths.append( path.Path(n) ) self.fig.canvas.draw() else: # Remove event if not valid BlockingInput.pop(self) def button3(self,event): """ This will be called if button 3 is clicked. This will remove a label if not in inline mode. Unfortunately, if one is doing inline labels, then there is currently no way to fix the broken contour - once humpty-dumpty is broken, he can't be put back together. In inline mode, this does nothing. """ # Remove this last event - not too important for clabel use # since clabel normally doesn't have a maximum number of # events, but best for cleanliness sake. BlockingInput.pop(self) if self.inline: pass else: self.cs.pop_label() self.cs.ax.figure.canvas.draw() def __call__(self,inline,inline_spacing=5,n=-1,timeout=-1): self.inline=inline self.inline_spacing=inline_spacing BlockingMouseInput.__call__(self,n=n,timeout=timeout, show_clicks=False) class BlockingKeyMouseInput(BlockingInput): """ Class that creates a callable object to retrieve a single mouse or keyboard click """ def __init__(self, fig): BlockingInput.__init__(self, fig=fig, eventslist=('button_press_event','key_press_event') ) def post_event(self): """ Determines if it is a key event """ assert len(self.events)>0, "No events yet" self.keyormouse = self.events[-1].name == 'key_press_event' def __call__(self, timeout=30): """ Blocking call to retrieve a single mouse or key click Returns True if key click, False if mouse, or None if timeout """ self.keyormouse = None BlockingInput.__call__(self,n=1,timeout=timeout) return self.keyormouse