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%ve_eegplot() - Scroll (horizontally and/or vertically) through multichannel data.
%             Allows vertical scrolling through channels and manual marking 
%             and unmarking of data stretches or epochs for rejection.
% Usage: 
%           >> ve_eegplot(data, 'key1', value1 ...); % use interface buttons, etc.
%      else
%           >> ve_eegplot('noui', data, 'key1', value1 ...); % no user interface;
%                                                         % use for plotting
% Menu items:
%    "Figure > print" - [menu] Print figure in portrait or landscape.
%    "Figure > Edit figure" - [menu] Remove menus and buttons and call up the standard
%                  Matlab figure menu. Select "Tools > Edit" to format the figure
%                  for publication. Command line equivalent: 'noui' 
%    "Figure > Accept and Close" - [menu] Same as the bottom-right "Reject" button. 
%    "Figure > Cancel and Close" - [menu] Cancel all editing, same as the "Cancel" button. 
%    "Display > Marking color" > [Hide|Show] marks" - [menu] Show or hide patches of 
%                  background color behind the data. Mark stretches of *continuous* 
%                  data (e.g., for rejection) by dragging the mouse horizontally 
%                  over the activity. With *epoched* data, click on the selected epochs.
%                  Clicked on a marked region to unmark it. Called from the
%                  command line, marked data stretches or epochs are returned in 
%                  the TMPREJ variable in the global workspace *if/when* the "Reject" 
%                  button is pressed (see Outputs); called from pop_eegplot() or 
%                  eeglab(), the marked data portions are removed from the current
%                  dataset, and the dataset is automatically updated.
%     "Display > Marking color > Choose color" - [menu] Change the background marking 
%                  color. The marking color(s) of previously marked trials are preserved. 
%                  Called from command line, subsequent functions eegplot2event() or 
%                  eegplot2trials() allow processing trials marked with different colors 
%                  in the TMPREJ output variable. Command line equivalent: 'wincolor'.
%     "Display > Grid > ..." - [menu] Toggle (on or off) time and/or channel axis grids 
%                  in the activity plot. Submenus allow modifications to grid aspects.
%                  Command line equivalents: 'xgrid' / 'ygrid' 
%     "Display > Show scale" - [menu] Show (or hide if shown) the scale on the bottom 
%                  right corner of the activity window. Command line equivalent: 'scale' 
%     "Display > Title" - [menu] Change the title of the figure. Command line equivalent: 
%                  'title'
%     "Settings > Time range to display"  - [menu] For continuous EEG data, this item 
%                  pops up a query window for entering the number of seconds to display
%                  in the activity window. For epoched data, the query window asks
%                  for the number of epochs to display (this can be fractional). 
%                  Command line equivalent: 'winlength'
%     "Settings > Number of channels to display" - [menu] Number of channels to display
%                  in the activity window.  If not all channels are displayed, the 
%                  user may scroll through channels using the slider on the left 
%                  of the activity plot. Command line equivalent: 'dispchans'
%     "Settings > Channel labels > ..."  - [menu] Use numbers as channel labels or load
%                  a channel location file from disk. If called from the eeglab() menu or
%                  pop_eegplot(), the channel labels of the dataset will be used. 
%                  Command line equivalent: 'eloc_file'
%     "Settings > Zoom on/off" - [menu] Toggle Matlab figure zoom on or off for time and
%                  electrode axes. left-click to zoom (x2); right-click to reverse-zoom. 
%                  Else, draw a rectange in the activity window to zoom the display into 
%                  that region. NOTE: When zoom is on, data cannot be marked for rejection.
%     "Settings > Events" - [menu] Toggle event on or off (assuming events have been 
%                  given as input). Press "legend" to pop up a legend window for events.
%
% Display window interface:
%    "Activity plot" - [main window] This axis displays the channel activities.  For 
%                  continuous data, the time axis shows time in seconds. For epoched
%                  data, the axis label indicate time within each epoch.
%    "Cancel" - [button] Closes the window and cancels any data rejection marks.
%    "Event types" - [button] pop up a legend window for events.
%    "<<" - [button] Scroll backwards though time or epochs by one window length.
%    "<"  - [button] Scroll backwards though time or epochs by 0.2 window length.
%    "Navigation edit box" - [edit box] Enter a starting time or epoch to jump to.
%    ">"  - [button] Scroll forward though time or epochs by 0.2 window length.
%    ">>" - [button] Scroll forward though time or epochs by one window length.
%    "Chan/Time/Value" - [text] If the mouse is within the activity window, indicates
%                  which channel, time, and activity value the cursor is closest to.
%    "Scale edit box" - [edit box] Scales the displayed amplitude in activity units.
%                  Command line equivalent: 'spacing' 
%    "+ / -" - [buttons] Use these buttons to +/- the amplitude scale by 10%. 
%    "Reject" - [button] When pressed, save rejection marks and close the figure. 
%                  Optional input parameter 'command' is evaluated at that time. 
%                  NOTE: This button's label can be redefined from the command line
%                  (see 'butlabel' below). If no processing command is specified
%                  for the 'command' parameter (below), this button does not appear.
%    "Stack/Spread" - [button] "Stack" collapses all channels/activations onto the
%                  middle axis of the plot. "Spread" undoes the operation.
%    "Norm/Denorm" - [button] "Norm" normalizes each channel separately such that all
%                  channels have the same standard deviation without changing original 
%                  data/activations under EEG structure. "Denorm" undoes the operation.  
%                 
% Required command line input:
%    data        - Input data matrix, either continuous 2-D (channels,timepoints) or 
%                  epoched 3-D (channels,timepoints,epochs). If the data is preceded 
%                  by keyword 'noui', GUI control elements are omitted (useful for 
%                  plotting data for presentation). A set of power spectra at
%                  each channel may also be plotted (see 'freqlimits' below).
% Optional command line keywords:
%    'srate'      - Sampling rate in Hz {default|0: 256 Hz}
%    'spacing'    - Display range per channel (default|0: max(whole_data)-min(whole_data))
%    'eloc_file'  - Electrode filename (as in  >> topoplot example) to read
%                    ascii channel labels. Else,
%                   [vector of integers] -> Show specified channel numbers. Else,
%                   [] -> Do not show channel labels {default|0 -> Show [1:nchans]}
%    'limits'     - [start end] Time limits for data epochs in ms (for labeling 
%                   purposes only).
%    'freqlimits' - [start end] If plotting epoch spectra instead of data, frequency 
%                   limits of the display. (Data should contain spectral values).
%    'winlength'  - [value] Seconds (or epochs) of data to display in window {default: 5}
%    'dispchans'  - [integer] Number of channels to display in the activity window 
%                   {default: from data}.  If < total number of channels, a vertical  
%                   slider on the left side of the figure allows vertical data scrolling. 
%    'title'      - Figure title {default: none}
%    'xgrid'      - ['on'|'off'] Toggle display of the x-axis grid {default: 'off'}
%    'ygrid'      - ['on'|'off'] Toggle display of the y-axis grid {default: 'off'}
%    'ploteventdur' - ['on'|'off'] Toggle display of event duration { default: 'off' }
%    'data2'      - [float array] identical size to the original data and
%                   plotted on top of it.
%
% Additional keywords:
%    'command'    - ['string'] Matlab command to evaluate when the 'REJECT' button is 
%                   clicked. The 'REJECT' button is visible only if this parameter is 
%                   not empty. As explained in the "Output" section below, the variable 
%                   'TMPREJ' contains the rejected windows (see the functions 
%                   eegplot2event() and eegplot2trial()).
%    'butlabel'   - Reject button label. {default: 'REJECT'}
%    'winrej'     - [start end R G B e1 e2 e3 ...] Matrix giving data periods to mark 
%                    for rejection, each row indicating a different period
%                      [start end] = period limits (in frames from beginning of data); 
%                      [R G B] = specifies the marking color; 
%                      [e1 e2 e3 ...] = a (1,nchans) logical [0|1] vector giving 
%                         channels (1) to mark and (0) not mark for rejection.
%    'color'      - ['on'|'off'|cell array] Plot channels with different colors.
%                   If an RGB cell array {'r' 'b' 'g'}, channels will be plotted 
%                   using the cell-array color elements in cyclic order {default:'off'}. 
%    'wincolor'   - [color] Color to use to mark data stretches or epochs {default: 
%                   [ 0.7 1 0.9] is the default marking color}
%    'events'     - [struct] EEGLAB event structure (EEG.event) to use to show events.
%    'submean'    - ['on'|'off'] Remove channel means in each window {default: 'on'}
%    'position'   - [lowleft_x lowleft_y width height] Position of the figure in pixels.
%    'tag'        - [string] Matlab object tag to identify this eegplot() window (allows 
%                    keeping track of several simultaneous eegplot() windows). 
%    'children'   - [integer] Figure handle of a *dependent* eegplot() window. Scrolling
%                    horizontally in the master window will produce the same scroll in 
%                    the dependent window. Allows comparison of two concurrent datasets,
%                    or of channel and component data from the same dataset.
%    'scale'      - ['on'|'off'] Display the amplitude scale {default: 'on'}.
%    'mocap'      - ['on'|'off'] Display motion capture data in a separate figure.
%                     To run, select an EEG data period in the scolling display using 
%                     the mouse. Motion capture (mocap) data should be
%                     under EEG.moredata.mocap.markerPosition in xs, ys and zs fields which are
%                     (number of markers, number of time points) arrays.                
%                    {default: 'off'}.
%    'selectcommand' - [cell array] list of 3 commands (strings) to run when the mouse 
%                      button is down, when it is moving and when the mouse button is up.
%    'ctrlselectcommand' - [cell array] same as above in conjunction with pressing the 
%                      CTRL key.
% Outputs:
%    TMPREJ       -  Matrix (same format as 'winrej' above) placed as a variable in
%                    the global workspace (only) when the REJECT button is clicked. 
%                    The command specified in the 'command' keyword argument can use 
%                    this variable. (See eegplot2trial() and eegplot2event()). 
%
% Author: Arnaud Delorme & Colin Humphries, CNL/Salk Institute, SCCN/INC/UCSD, 1998-2001
%
% See also: eeg_multieegplot(), eegplot2event(), eegplot2trial(), eeglab()


% deprecated 
%    'colmodif'   - nested cell array of window colors that may be marked/unmarked. Default
%                   is current color only.

% Copyright (C) 2001 Arnaud Delorme & Colin Humphries, Salk Institute, arno@salk.edu
%
% This program is free software; you can redistribute it and/or modify
% it under the terms of the GNU General Public License as published by
% the Free Software Foundation; either version 2 of the License, or
% (at your option) any later version.
%
% This program is distributed in the hope that it will be useful,
% but WITHOUT ANY WARRANTY; without even the implied warranty of
% MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
% GNU General Public License for more details.
%
% You should have received a copy of the GNU General Public License
% along with this program; if not, write to the Free Software
% Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA

% Note for programmers - Internal variable structure:
% All in g. except for Eposition and Eg.spacingwhich are inside the boxes
% gcf
%    1 - winlength
%    2 - srate 
%    3 - children
% 'backeeg' axis
%    1 - trialtag
%    2 - g.winrej
%    3 - nested call flag
% 'eegaxis'
%    1 - data
%    2 - colorlist
%    3 - submean    % on or off, subtract the mean
%    4 - maxfreq    % empty [] if no gfrequency content
% 'buttons hold other informations' Eposition for instance hold the current postition

function [outvar1] = ve_eegplot(data, varargin); % p1,p2,p3,p4,p5,p6,p7,p8,p9)

% Defaults (can be re-defined):

DEFAULT_PLOT_COLOR = { [0 0 1], [0.7 0.7 0.7]};         % EEG line color
try, icadefs;
	DEFAULT_FIG_COLOR = BACKCOLOR;
	BUTTON_COLOR = GUIBUTTONCOLOR;
catch
	DEFAULT_FIG_COLOR = [1 1 1];
	BUTTON_COLOR =[0.8 0.8 0.8];
end;
DEFAULT_AXIS_COLOR = 'k';         % X-axis, Y-axis Color, text Color
DEFAULT_GRID_SPACING = 1;         % Grid lines every n seconds
DEFAULT_GRID_STYLE = '-';         % Grid line style
YAXIS_NEG = 'off';                % 'off' = positive up 
DEFAULT_NOUI_PLOT_COLOR = 'k';    % EEG line color for noui option
                                  %   0 - 1st color in AxesColorOrder
SPACING_EYE = 'on';               % g.spacingI on/off
SPACING_UNITS_STRING = '';        % '\muV' for microvolt optional units for g.spacingI Ex. uV
MAXEVENTSTRING = 10;
DEFAULT_AXES_POSITION = [0.0964286 0.15 0.842 0.75-(MAXEVENTSTRING-5)/100];
                                  % dimensions of main EEG axes
ORIGINAL_POSITION = [50 50 800 500];
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%persistent ax0; 
%persistent ax1;
%persistent etime;
%persistent eelec;
%persistent evalue;
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if nargin < 1
   help ve_eegplot
   return
end
				  
% %%%%%%%%%%%%%%%%%%%%%%%%
% Setup inputs
% %%%%%%%%%%%%%%%%%%%%%%%%

if ~isstr(data) % If NOT a 'noui' call or a callback from uicontrols

   %try
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    options = varargin;
    for index = 1:length(options)
       if iscell(options{index}) && ~iscell(options{index}{1}) ...
           options{index} = { options{index} }; 
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       end;
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    end;
    g = [];
    if ~isempty( varargin )
       g = struct(options{:});
    end
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  % push button: create/remove window
  % ---------------------------------
  defdowncom   = 've_eegplot(''defdowncom'',   gcbf);'; % push button: create/remove window
  defmotioncom = 've_eegplot(''defmotioncom'', gcbf);'; % motion button: move windows or display current position
  defupcom     = 've_eegplot(''defupcom'',     gcbf);';
  defctrldowncom = 've_eegplot(''topoplot'',   gcbf);'; % CTRL press and motion -> do nothing by default
  defctrlmotioncom = ''; % CTRL press and motion -> do nothing by default
  defctrlupcom = ''; % CTRL press and up -> do nothing by default

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   try g.srate; 		    catch, g.srate		= 256; 	end;
   try g.spacing; 			catch, g.spacing	= 0; 	end;
   try g.eloc_file; 		catch, g.eloc_file	= 0; 	end; % 0 mean numbered
   try g.winlength; 		catch, g.winlength	= 5; 	end; % Number of seconds of EEG displayed
   try g.position; 	    catch, g.position	= ORIGINAL_POSITION; 	end;
   try g.title; 		    catch, g.title		= ['Scroll activity -- ve_eegplot()']; 	end;
   try g.trialstag; 		catch, g.trialstag	= -1; 	end;
   try g.winrej; 			catch, g.winrej		= []; 	end;
   try g.command; 			catch, g.command	= ''; 	end;
   try g.tag; 				catch, g.tag		= 've_eegplot'; end;
   try g.xgrid;		    catch, g.xgrid		= 'off'; end;
   try g.ygrid;		    catch, g.ygrid		= 'off'; end;
   try g.color;		    catch, g.color		= 'off'; end;
   try g.submean;			catch, g.submean	= 'on'; end;
   try g.children;			catch, g.children	= 0; end;
   try g.limits;		    catch, g.limits	    = [0 1000*(size(data,2)-1)/g.srate]; end;
   try g.freqlimits;	    catch, g.freqlimits	= []; end;
   try g.dispchans; 		catch, g.dispchans  = size(data,1); end;
   try g.wincolor; 		catch, g.wincolor   = [ 0.7 1 0.9]; end;
   try g.butlabel; 		catch, g.butlabel   = 'REJECT'; end;
   try g.colmodif; 		catch, g.colmodif   = { g.wincolor }; end;
   try g.scale; 		    catch, g.scale      = 'on'; end;
   try g.events; 		    catch, g.events      = []; end;
   try g.ploteventdur;     catch, g.ploteventdur = 'off'; end;
   try g.data2;            catch, g.data2      = []; end;
   if ischar(g.data2)
       g.data2 = evalin('base',g.data2);
   end
   try g.plotdata2;        catch, g.plotdata2 = 'off'; end;
   try g.mocap;		    catch, g.mocap		= 'off'; end; % nima
   try g.selectcommand;    catch, g.selectcommand     = { defdowncom defmotioncom defupcom }; end;
%   try g.ctrlselectcommand;catch, g.ctrlselectcommand = { defctrldowncom defctrlmotioncom defctrlupcom }; end;
   try g.altselectcommand; catch, g.altselectcommand = { }; end;
   try g.extselectcommand; catch, g.extselectcommand = { }; end;
   try g.keyselectcommand; catch, g.keyselectcommand = { }; end;
   try g.mouse_data_front; catch, g.mouse_data_front = 'on';end;
   try g.datastd;          catch, g.datastd = []; end; %ozgur
   try g.normed;           catch, g.normed = 0; end; %ozgur
   try g.envelope;          catch, g.envelope = 0; end;%ozgur
   try g.chaninfo;          catch, g.chaninfo = []; end;
   try g.data_type;         catch, g.data_type = []; end;
   try g.chan_marks_struct; catch, g.chan_marks_struct = []; end;
   try g.time_marks_struct; catch, g.time_marks_struct = []; end;
   try g.marks_y_loc;       catch, g.marks_y_loc = [.7]; end;
   try g.inter_mark_int;    catch, g.inter_mark_int = .01; end;
   try g.inter_tag_int;     catch, g.inter_tag_int = .002; end;
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   if strcmpi(g.ploteventdur, 'on'), g.ploteventdur = 1; else g.ploteventdur = 0; end;
   if ndims(data) > 2
   		g.trialstag = size(	data, 2);
   	end;	
      
   gfields = fieldnames(g);
   for index=1:length(gfields)
      switch gfields{index}
      case {'spacing', 'srate' 'eloc_file' 'winlength' 'position' 'title' ...
               'trialstag'  'winrej' 'command' 'tag' 'xgrid' 'ygrid' 'color' 'colmodif'...
               'freqlimits' 'submean' 'children' 'limits' 'dispchans' 'wincolor' ...
               'ploteventdur' 'butlabel' 'scale' 'events' 'data2' 'plotdata2' 'mocap' ...
               'selectcommand' 'altselectcommand' 'extselectcommand'  'keyselectcommand'...
               'mouse_data_front' 'datastd' 'normed' 'envelope' 'chaninfo' ...
               'data_type' 'chan_marks_struct' 'time_marks_struct' ...
               'marks_y_loc' 'inter_mark_int' 'inter_tag_int' ...
               'marks_col_int' 'marks_col_alpha'},;
      otherwise, error(['ve_eegplot: unrecognized option: ''' gfields{index} '''' ]);
      end;
   end;

   % g.data=data; % never used and slows down display dramatically - Ozgur 2010
   
   if length(g.srate) > 1
   		disp('Error: srate must be a single number'); return;
   end;	
   if length(g.spacing) > 1
   		disp('Error: ''spacing'' must be a single number'); return;
   end;	
   if length(g.winlength) > 1
   		disp('Error: winlength must be a single number'); return;
   end;	
   if isstr(g.title) > 1
   		disp('Error: title must be is a string'); return;
   end;	
   if isstr(g.command) > 1
   		disp('Error: command must be is a string'); return;
   end;	
   if isstr(g.tag) > 1
   		disp('Error: tag must be is a string'); return;
   end;	
   if length(g.position) ~= 4
   		disp('Error: position must be is a 4 elements array'); return;
   end;	
   switch lower(g.xgrid)
	   case { 'on', 'off' },; 
	   otherwise disp('Error: xgrid must be either ''on'' or ''off'''); return;
   end;	
   switch lower(g.ygrid)
	   case { 'on', 'off' },; 
	   otherwise disp('Error: ygrid must be either ''on'' or ''off'''); return;
   end;	
   switch lower(g.submean)
	   case { 'on' 'off' };
	   otherwise disp('Error: submean must be either ''on'' or ''off'''); return;
   end;	
   switch lower(g.scale)
	   case { 'on' 'off' };
	   otherwise disp('Error: scale must be either ''on'' or ''off'''); return;
   end;	
   
   if ~iscell(g.color)
	   switch lower(g.color)
		case 'on', g.color = { 'k', 'm', 'c', 'b', 'g' }; 
		case 'off', g.color = { [ 0 0 0.4] };  
		otherwise 
		 disp('Error: color must be either ''on'' or ''off'' or a cell array'); 
                return;
	   end;	
   end;
   if length(g.dispchans) > size(data,1)
	   g.dispchans = size(data,1);
   end;
   if ~iscell(g.colmodif)
   		g.colmodif = { g.colmodif };
   end;
   if strcmpi(g.submean, 'on')
       g.submean = 'nan';
   end;
   
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   %colmodif .. depricated
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   % convert color to modify into array of float
   % -------------------------------------------
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%   for index = 1:length(g.colmodif)
%        tmpcolmodif(index) = g.colmodif{index}(1) ...
%                              + g.colmodif{index}(2)*10 ...
%                              + g.colmodif{index}(3)*100;
%   end;
%   g.colmodif = tmpcolmodif;
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   [g.chans,g.frames, tmpnb] = size(data);
   g.frames = g.frames*tmpnb;
  
  if g.spacing == 0
    maxindex = min(1000, g.frames);  
	stds = std(data(:,1:maxindex),[],2);
    g.datastd = stds;
	stds = sort(stds);
	if length(stds) > 2
		stds = mean(stds(2:end-1)); 
	else
		stds = mean(stds);
	end;	
    g.spacing = stds*3;  
    if g.spacing > 10
      g.spacing = round(g.spacing);
    end
    if g.spacing  == 0 | isnan(g.spacing)
        g.spacing = 1; % default
    end;
  end

  % set defaults
  % ------------ 
  g.incallback = 0;
  g.winstatus = 1;
  g.setelectrode  = 0;
  [g.chans,g.frames,tmpnb] = size(data);   
  g.frames = g.frames*tmpnb;
  g.nbdat = 1; % deprecated
  g.time  = 0;
  g.elecoffset = 0;
  
  % %%%%%%%%%%%%%%%%%%%%%%%%
  % Prepare figure and axes
  % %%%%%%%%%%%%%%%%%%%%%%%%
  
  figh = figure('UserData', g,... % store the settings here
      'Color',DEFAULT_FIG_COLOR, 'name', g.title,...
      'MenuBar','none','tag', g.tag ,'Position',g.position, ...
      'numbertitle', 'off', 'visible', 'off');

  pos = get(figh,'position'); % plot relative to current axes
  q = [pos(1) pos(2) 0 0];
  s = [pos(3) pos(4) pos(3) pos(4)]./100;
  clf;
      
  % Background axis
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  % ---------------
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%  ax0 = axes('tag','backeeg','parent',figh,...
%      'Position',DEFAULT_AXES_POSITION,...
%      'Box','off','xgrid','off', 'xaxislocation', 'top'); 
  g.ax0 = axes('tag','backeeg','parent',figh,...
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      'Position',DEFAULT_AXES_POSITION,...
      'Box','off','xgrid','off', 'xaxislocation', 'top'); 
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  % Drawing axis
  % --------------- 
  YLabels = num2str((1:g.chans)');  % Use numbers as default
  YLabels = flipud(str2mat(YLabels,' '));
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  g.ax1 = axes('Position',DEFAULT_AXES_POSITION,...
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      'userdata', data, ...% store the data here
      'tag','eegaxis','parent',figh,...%(when in g, slow down display)
      'Box','on','xgrid', g.xgrid,'ygrid', g.ygrid,...
      'gridlinestyle',DEFAULT_GRID_STYLE,...
      'Xlim',[0 g.winlength*g.srate],...
      'xtick',[0:g.srate*DEFAULT_GRID_SPACING:g.winlength*g.srate],...
      'Ylim',[0 (g.chans+1)*g.spacing],...
      'YTick',[0:g.spacing:g.chans*g.spacing],...
      'YTickLabel', YLabels,...
      'XTickLabel',num2str((0:DEFAULT_GRID_SPACING:g.winlength)'),...
      'TickLength',[.005 .005],...
      'Color','none',...
      'XColor',DEFAULT_AXIS_COLOR,...
      'YColor',DEFAULT_AXIS_COLOR);
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  if isstr(g.eloc_file) | isstruct(g.eloc_file)  % Read in electrode names
      if isstruct(g.eloc_file) & length(g.eloc_file) > size(data,1)
          g.eloc_file(end) = []; % common reference channel location
      end;
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      ve_eegplot('setelect', g.eloc_file, g.ax1);
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  end;
  
  % %%%%%%%%%%%%%%%%%%%%%%%%%
  % Set up uicontrols
  % %%%%%%%%%%%%%%%%%%%%%%%%%

% positions of buttons
  posbut(1,:) = [ 0.0464    0.0254    0.0385    0.0339 ]; % <<
  posbut(2,:) = [ 0.0924    0.0254    0.0288    0.0339 ]; % <
  posbut(3,:) = [ 0.1924    0.0254    0.0299    0.0339 ]; % >
  posbut(4,:) = [ 0.2297    0.0254    0.0385    0.0339 ]; % >>
  posbut(5,:) = [ 0.1287    0.0203    0.0561    0.0390 ]; % Eposition
  posbut(6,:) = [ 0.4744    0.0236    0.0582    0.0390 ]; % Espacing
  posbut(7,:) = [ 0.2762    0.01    0.0582    0.0390 ]; % elec
  posbut(8,:) = [ 0.3256    0.01    0.0707    0.0390 ]; % g.time
  posbut(9,:) = [ 0.4006    0.01    0.0582    0.0390 ]; % value
  posbut(14,:) = [ 0.2762    0.05    0.0582    0.0390 ]; % elec tag
  posbut(15,:) = [ 0.3256    0.05    0.0707    0.0390 ]; % g.time tag
  posbut(16,:) = [ 0.4006    0.05    0.0582    0.0390 ]; % value tag
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  posbut(10,:) = [ 0.5437    0.0458    0.0275    0.0270 ]; %
  posbut(11,:) = [ 0.5437    0.0134    0.0275    0.0270 ]; %
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  posbut(12,:) = [ 0.6    0.02    0.14    0.05 ]; % cancel
  posbut(13,:) = [-0.15   0.02    0.07    0.05 ]; % cancel
  posbut(17,:) = [-0.06    0.02    0.09    0.05 ]; % events types
  posbut(20,:) = [-0.17   0.15     0.015    0.8 ]; % slider
  posbut(21,:) = [0.738    0.87    0.06      0.048];%normalize
  posbut(22,:) = [0.738    0.93    0.06      0.048];%stack channels(same offset)
  posbut(:,1) = posbut(:,1)+0.2;

% Five move buttons: << < text > >> 

  u(1) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'Position', posbut(1,:), ...
	'Tag','Pushbutton1',...
	'string','<<',...
        'Callback',['global in_callback;', ...
                'if isempty(in_callback);in_callback=1;', ...
                '    try ve_eegplot(''drawp'',1);', ...
                '        clear global in_callback;', ...
                '    catch error_struct;', ...
                '        clear global in_callback;', ...
                '        throw(error_struct);', ...
                '    end;', ...
                'else;return;end;']);
  u(2) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'Position', posbut(2,:), ...
	'Tag','Pushbutton2',...
	'string','<',...
        'Callback',['global in_callback;', ...
                'if isempty(in_callback);in_callback=1;', ...
                '    try ve_eegplot(''drawp'',2);', ...
                '        clear global in_callback;', ...
                '    catch error_struct;', ...
                '        clear global in_callback;', ...
                '        throw(error_struct);', ...
                '    end;', ...
                'else;return;end;']);
  u(5) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'BackgroundColor',[1 1 1], ...
	'Position', posbut(5,:), ...
	'Style','edit', ...
	'Tag','EPosition',...
	'string', fastif(g.trialstag(1) == -1, '0', '1'),...
	'Callback','set(gcbo,''enable'',''off'');drawnow;set(gcbo,''enable'',''on'');ve_eegplot(''drawp'',0);');
  u(3) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'Position',posbut(3,:), ...
	'Tag','Pushbutton3',...
	'string','>',...
        'Callback',['global in_callback;', ...
                'if isempty(in_callback);in_callback=1;', ...
                '    try ve_eegplot(''drawp'',3);', ...
                '        clear global in_callback;', ...
                '    catch error_struct;', ...
                '        clear global in_callback;', ...
                '        throw(error_struct);', ...
                '    end;', ...
                'else;return;end;']);
  u(4) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'Position',posbut(4,:), ...
	'Tag','Pushbutton4',...
	'string','>>',...
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    'Callback',['global in_callback;', ...
            'if isempty(in_callback);in_callback=1;', ...
            '    try ve_eegplot(''drawp'',4);', ...
            '        clear global in_callback;', ...
            '    catch error_struct;', ...
            '        clear global in_callback;', ...
            '        throw(error_struct);', ...
            '    end;', ...
            'else;return;end;']);
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% Text edit fields: ESpacing

  u(6) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'BackgroundColor',[1 1 1], ...
	'Position', posbut(6,:), ...
	'Style','edit', ...
	'Tag','ESpacing',...
	'string',num2str(g.spacing),...
	'Callback','set(gcbo,''enable'',''off'');drawnow;set(gcbo,''enable'',''on'');ve_eegplot(''draws'',0);');

% Slider for vertical motion
  u(20) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'Position', posbut(20,:), ...
   'Style','slider', ...
   'visible', 'off', ...
   'sliderstep', [0.9 1], ...
   'Tag','eegslider', ...
   'callback', [ 'tmpg = get(gcbf, ''userdata'');' ... 
   				'tmpg.elecoffset = get(gcbo, ''value'')*(tmpg.chans-tmpg.dispchans);' ...
               'set(gcbf, ''userdata'', tmpg);' ...
               've_eegplot(''drawp'',0);' ...
               'clear tmpg;' ], ...
   'value', 0);

% Channels, position, value and tag

  u(9) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'BackgroundColor',DEFAULT_FIG_COLOR, ...
	'Position', posbut(7,:), ...
	'Style','text', ...
	'Tag','Eelec',...
	'string',' ');
  u(10) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'BackgroundColor',DEFAULT_FIG_COLOR, ...
	'Position', posbut(8,:), ...
	'Style','text', ...
	'Tag','Etime',...
	'string','0.00');
  u(11) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'BackgroundColor',DEFAULT_FIG_COLOR, ...
	'Position',posbut(9,:), ...
	'Style','text', ...
	'Tag','Evalue',...
	'string','0.00');
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  u(14)= uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'BackgroundColor',DEFAULT_FIG_COLOR, ...
	'Position', posbut(14,:), ...
	'Style','text', ...
	'Tag','Eelecname',...
	'string','Chan.');
  u(15) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'BackgroundColor',DEFAULT_FIG_COLOR, ...
	'Position', posbut(15,:), ...
	'Style','text', ...
	'Tag','Etimename',...
	'string','Time');
  u(16) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'BackgroundColor',DEFAULT_FIG_COLOR, ...
	'Position',posbut(16,:), ...
	'Style','text', ...
	'Tag','Evaluename',...
	'string','Value');

% ESpacing buttons: + -
  u(7) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'Position',posbut(10,:), ...
	'Tag','Pushbutton5',...
	'string','+',...
	'FontSize',8,...
	'Callback','ve_eegplot(''draws'',1);');
  u(8) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'Position',posbut(11,:), ...
	'Tag','Pushbutton6',...
	'string','-',...
	'FontSize',8,...
	'Callback','ve_eegplot(''draws'',2)');

  cb_normalize = ['g = get(gcbf,''userdata'');if g.normed, disp(''Denormalizing...''); else, disp(''Normalizing...''); end;'...
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    'g.ax1 = findobj(''tag'',''eegaxis'',''parent'',gcbf);' ...
    'data = get(g.ax1,''UserData'');' ...
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    'if isempty(g.datastd), g.datastd = std(data(:,1:min(1000,g.frames),[],2));end;'...
    'if g.normed, for i = 1:size(data,1), data(i,:,:) = data(i,:,:)*g.datastd(i);set(gcbo,''string'', ''Norm'');set(findobj(''tag'',''ESpacing'',''parent'',gcbf),''string'',num2str(g.oldspacing));end;' ...
    'else, for i = 1:size(data,1), data(i,:,:) = data(i,:,:)/g.datastd(i);end;set(gcbo,''string'', ''Denorm'');g.oldspacing = g.spacing;set(findobj(''tag'',''ESpacing'',''parent'',gcbf),''string'',''5'');end;' ...
    'g.normed = 1 - g.normed;' ...
    've_eegplot(''draws'',0);'...
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    'set(gcbf,''userdata'',g);set(g.ax1,''UserData'',data);clear g.ax1 g data;' ...
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    've_eegplot(''drawp'',0);' ...
    'disp(''Done.'')'];
% Button for Normalizing data
u(21) = uicontrol('Parent',figh, ...
    'Units', 'normalized', ...
    'Position',posbut(21,:), ...
    'Tag','Norm',...
    'string','Norm', 'callback', cb_normalize);

cb_envelope = ['g = get(gcbf,''userdata'');'...
    'g.envelope = ~g.envelope;' ...
    'set(gcbf,''userdata'',g);'...
    'set(gcbo,''string'',fastif(g.envelope,''Spread'',''Stack''));' ...
    've_eegplot(''drawp'',0);clear g;'];

% Button to plot envelope of data
u(22) = uicontrol('Parent',figh, ...
    'Units', 'normalized', ...
    'Position',posbut(22,:), ...
    'Tag','Envelope',...
    'string','Stack', 'callback', cb_envelope);


  if isempty(g.command) tmpcom = 'fprintf(''Rejections saved in variable TMPREJ\n'');';   
  else tmpcom = g.command;
  end;
  acceptcommand = [ 'g = get(gcbf, ''userdata'');' ... 
				    'TMPREJ = g.winrej;' ...
		  				  tmpcom ...
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                    ... % 'if g.children, delete(g.children); end;' ...
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                    'delete(gcbf);' ...
                    '; clear g;']; % quitting expression
  if ~isempty(g.command)
	  u(12) = uicontrol('Parent',figh, ...
						'Units', 'normalized', ...
						'Position',posbut(12,:), ...
						'Tag','Accept',...
						'string',g.butlabel, 'callback', acceptcommand);
  end;
  u(13) = uicontrol('Parent',figh, ...
	'Units', 'normalized', ...
	'Position',posbut(13,:), ...
	'string',fastif(isempty(g.command),'CLOSE', 'CANCEL'), 'callback', ...
		[	'g = get(gcbf, ''userdata'');' ... 
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            ... %'if g.children, delete(g.children); end;' ... Removed by Brad for 2015a compat
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			'close(gcbf);'] );

  if ~isempty(g.events)
      u(17) = uicontrol('Parent',figh, ...
                        'Units', 'normalized', ...
                        'Position',posbut(17,:), ...
                        'string', 'Event types', 'callback', 've_eegplot(''drawlegend'', gcbf)');
  end;

  for i = 1: length(u) % Matlab 2014b OS X compatibility
      if isprop(eval(['u(' num2str(i) ')']),'Style')
          set(u(i),'Units','Normalized');
      end
  end
  
  % %%%%%%%%%%%%%%%%%%%%%%%%%%%
  % Set up uimenus
  % %%%%%%%%%%%%%%%%%%%%%%%%%%%
  
  % Figure Menu %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

  m(7) = uimenu('Parent',figh,'Label','Figure');
  m(8) = uimenu('Parent',m(7),'Label','Print');
  uimenu('Parent',m(7),'Label','Edit figure', 'Callback', 've_eegplot(''noui'');');
  uimenu('Parent',m(7),'Label','Accept and close', 'Callback', acceptcommand );
  uimenu('Parent',m(7),'Label','Cancel and close', 'Callback','delete(gcbf)')
  
  % Portrait %%%%%%%%

  timestring = ['[OBJ1,FIG1] = gcbo;',...
	        'PANT1 = get(OBJ1,''parent'');',...
	        'OBJ2 = findobj(''tag'',''orient'',''parent'',PANT1);',...
		'set(OBJ2,''checked'',''off'');',...
		'set(OBJ1,''checked'',''on'');',...
		'set(FIG1,''PaperOrientation'',''portrait'');',...
		'clear OBJ1 FIG1 OBJ2 PANT1;'];
		
  uimenu('Parent',m(8),'Label','Portrait','checked',...
      'on','tag','orient','callback',timestring)
  
  % Landscape %%%%%%%
  timestring = ['[OBJ1,FIG1] = gcbo;',...
	        'PANT1 = get(OBJ1,''parent'');',...
	        'OBJ2 = findobj(''tag'',''orient'',''parent'',PANT1);',...
		'set(OBJ2,''checked'',''off'');',...
		'set(OBJ1,''checked'',''on'');',...
		'set(FIG1,''PaperOrientation'',''landscape'');',...
		'clear OBJ1 FIG1 OBJ2 PANT1;'];
  
  uimenu('Parent',m(8),'Label','Landscape','checked',...
      'off','tag','orient','callback',timestring)

  % Print command %%%%%%%
  uimenu('Parent',m(8),'Label','Print','tag','printcommand','callback',...
  		['RESULT = inputdlg2( { ''Command:'' }, ''Print'', 1,  { ''print -r72'' });' ...
		 'if size( RESULT,1 ) ~= 0' ... 
		 '  eval ( RESULT{1} );' ...
		 'end;' ...
		 'clear RESULT;' ]);
  
  % Display Menu %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

  m(1) = uimenu('Parent',figh,...
      'Label','Display', 'tag', 'displaymenu');
  
  % window grid %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

  % userdata = 4 cells : display yes/no, color, electrode yes/no, 
  %                      trial boundary adapt yes/no (1/0)  
  m(11) = uimenu('Parent',m(1),'Label','Data select/mark', 'tag', 'displaywin', ...
            'userdata', { 1, [0.8 1 0.8], 0, fastif( g.trialstag(1) == -1, 0, 1)});

          uimenu('Parent',m(11),'Label','Hide marks','Callback', ...
  	        ['g = get(gcbf, ''userdata'');' ...
            'if ~g.winstatus' ... 
            '  set(gcbo, ''label'', ''Hide marks'');' ...
            'else' ...
            '  set(gcbo, ''label'', ''Show marks'');' ...
            'end;' ...
            'g.winstatus = ~g.winstatus;' ...
            'set(gcbf, ''userdata'', g);' ...
            've_eegplot(''drawb''); clear g;'] )

	% color %%%%%%%%%%%%%%%%%%%%%%%%%%
    if isunix % for some reasons, does not work under Windows
        uimenu('Parent',m(11),'Label','Choose color', 'Callback', ...
               [ 'g = get(gcbf, ''userdata'');' ...
                 'g.wincolor = uisetcolor(g.wincolor);' ...
                 'set(gcbf, ''userdata'', g ); ' ...
                 'clear g;'] )
    end;

	% set channels
	%uimenu('Parent',m(11),'Label','Mark channels', 'enable', 'off', ...
    %'checked', 'off', 'Callback', ...
  	%['g = get(gcbf, ''userdata'');' ...
  	% 'g.setelectrode = ~g.setelectrode;' ...
  	% 'set(gcbf, ''userdata'', g); ' ...
    % 'if ~g.setelectrode setgcbo, ''checked'', ''on''); ...
    % else set(gcbo, ''checked'', ''off''); end;'...
    % ' clear g;'] )

	% trials boundaries
	%uimenu('Parent',m(11),'Label','Trial boundaries', 'checked', fastif( g.trialstag(1) == -1, 'off', 'on'), 'Callback', ...
  	%['hh = findobj(''tag'',''displaywin'',''parent'', findobj(''tag'',''displaymenu'',''parent'', gcbf ));' ...
  	% 'hhdat = get(hh, ''userdata'');' ...
  	% 'set(hh, ''userdata'', { hhdat{1},  hhdat{2}, hhdat{3}, ~hhdat{4}} ); ' ...
    %'if ~hhdat{4} set(gcbo, ''checked'', ''on''); else set(gcbo, ''checked'', ''off''); end;' ... 
    %' clear hh hhdat;'] )

  % plot durations
  % --------------
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  if g.ploteventdur && isfield(g.events, 'duration')
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Allan Campopiano committed
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      disp(['Use menu "Display > Hide event duration" to hide colored regions ' ...
           'representing event duration']);
  end;
  if isfield(g.events, 'duration')
      uimenu('Parent',m(1),'Label',fastif(g.ploteventdur, 'Hide event duration', 'Plot event duration'),'Callback', ...
             ['g = get(gcbf, ''userdata'');' ...
              'if ~g.ploteventdur' ... 
              '  set(gcbo, ''label'', ''Hide event duration'');' ...
              'else' ...
              '  set(gcbo, ''label'', ''Show event duration'');' ...
              'end;' ...
              'g.ploteventdur = ~g.ploteventdur;' ...
              'set(gcbf, ''userdata'', g);' ...
              've_eegplot(''drawb''); clear g;'] )
  end;

  % X grid %%%%%%%%%%%%
  m(3) = uimenu('Parent',m(1),'Label','Grid');
  timestring = ['FIGH = gcbf;',...
	            'AXESH = findobj(''tag'',''eegaxis'',''parent'',FIGH);',...
	            'if size(get(AXESH,''xgrid''),2) == 2' ... %on
		        '  set(AXESH,''xgrid'',''off'');',...
		        '  set(gcbo,''label'',''X grid on'');',...
		        'else' ...
		        '  set(AXESH,''xgrid'',''on'');',...
		        '  set(gcbo,''label'',''X grid off'');',...
		        'end;' ...
		        'clear FIGH AXESH;' ];
  uimenu('Parent',m(3),'Label',fastif(strcmp(g.xgrid, 'off'), ...
         'X grid on','X grid off'), 'Callback',timestring)
  
  % Y grid %%%%%%%%%%%%%
  timestring = ['FIGH = gcbf;',...
	            'AXESH = findobj(''tag'',''eegaxis'',''parent'',FIGH);',...
	            'if size(get(AXESH,''ygrid''),2) == 2' ... %on
		        '  set(AXESH,''ygrid'',''off'');',...
		        '  set(gcbo,''label'',''Y grid on'');',...
		        'else' ...
		        '  set(AXESH,''ygrid'',''on'');',...
		        '  set(gcbo,''label'',''Y grid off'');',...
		        'end;' ...
		        'clear FIGH AXESH;' ];
  uimenu('Parent',m(3),'Label',fastif(strcmp(g.ygrid, 'off'), ...
         'Y grid on','Y grid off'), 'Callback',timestring)

  % Grid Style %%%%%%%%%
  m(5) = uimenu('Parent',m(3),'Label','Grid Style');
  timestring = ['FIGH = gcbf;',...
	        'AXESH = findobj(''tag'',''eegaxis'',''parent'',FIGH);',...
		'set(AXESH,''gridlinestyle'',''--'');',...
		'clear FIGH AXESH;'];
  uimenu('Parent',m(5),'Label','- -','Callback',timestring)
  timestring = ['FIGH = gcbf;',...
	        'AXESH = findobj(''tag'',''eegaxis'',''parent'',FIGH);',...
		'set(AXESH,''gridlinestyle'',''-.'');',...
		'clear FIGH AXESH;'];
  uimenu('Parent',m(5),'Label','_ .','Callback',timestring)
  timestring = ['FIGH = gcbf;',...
	        'AXESH = findobj(''tag'',''eegaxis'',''parent'',FIGH);',...
		'set(AXESH,''gridlinestyle'','':'');',...
		'clear FIGH AXESH;'];
  uimenu('Parent',m(5),'Label','. .','Callback',timestring)
  timestring = ['FIGH = gcbf;',...
	        'AXESH = findobj(''tag'',''eegaxis'',''parent'',FIGH);',...
		'set(AXESH,''gridlinestyle'',''-'');',...
		'clear FIGH AXESH;'];
  uimenu('Parent',m(5),'Label','__','Callback',timestring)
  
  % Submean menu %%%%%%%%%%%%%
  cb =       ['g = get(gcbf, ''userdata'');' ...
              'if strcmpi(g.submean, ''on''),' ... 
              '  set(gcbo, ''label'', ''Remove DC offset'');' ...
              '  g.submean =''off'';' ...
              'else' ...
              '  set(gcbo, ''label'', ''Do not remove DC offset'');' ...
              '  g.submean =''on'';' ...
              'end;' ...
              'set(gcbf, ''userdata'', g);' ...
              've_eegplot(''drawp'', 0); clear g;'];
  uimenu('Parent',m(1),'Label',fastif(strcmp(g.submean, 'on'), ...
         'Do not remove DC offset','Remove DC offset'), 'Callback',cb)

  % Scale Eye %%%%%%%%%
  timestring = ['[OBJ1,FIG1] = gcbo;',...
	        've_eegplot(''scaleeye'',OBJ1,FIG1);',...
		'clear OBJ1 FIG1;'];
  m(7) = uimenu('Parent',m(1),'Label','Show scale','Callback',timestring);
  
  % Title %%%%%%%%%%%%
  uimenu('Parent',m(1),'Label','Title','Callback','ve_eegplot(''title'')')
  
  % Settings Menu %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
  m(2) = uimenu('Parent',figh,...
      'Label','Settings'); 
  
  % Window %%%%%%%%%%%%
  uimenu('Parent',m(2),'Label','Time range to display',...
      'Callback','ve_eegplot(''window'')')
  
  % Electrode window %%%%%%%%
  uimenu('Parent',m(2),'Label','Number of channels to display',...
      'Callback','ve_eegplot(''winelec'')')
  
  % Electrodes %%%%%%%%
  m(6) = uimenu('Parent',m(2),'Label','Channel labels');
  
  timestring = ['FIGH = gcbf;',...
	        'AXESH = findobj(''tag'',''eegaxis'',''parent'',FIGH);',...
		'YTICK = get(AXESH,''YTick'');',...
		'YTICK = length(YTICK);',...
		'set(AXESH,''YTickLabel'',flipud(str2mat(num2str((1:YTICK-1)''),'' '')));',...
		'clear FIGH AXESH YTICK;'];
  uimenu('Parent',m(6),'Label','Show number','Callback',timestring)
  uimenu('Parent',m(6),'Label','Load .loc(s) file',...
      'Callback','ve_eegplot(''loadelect'');')
  
  % Zooms %%%%%%%%
  zm = uimenu('Parent',m(2),'Label','Zoom off/on');
  commandzoom = [ 'set(gcbf, ''windowbuttondownfcn'', [ ''zoom(gcbf,''''down''''); ve_eegplot(''''zoom'''', gcbf, 1);'' ]);' ...
                  'tmpg = get(gcbf, ''userdata'');' ...
                  'set(gcbf, ''windowbuttonmotionfcn'', tmpg.commandselect{2}); clear tmpg tmpstr;'];
    
  %uimenu('Parent',zm,'Label','Zoom time', 'callback', ...
  %             [ 'zoom(gcbf, ''xon'');' commandzoom ]);
  %uimenu('Parent',zm,'Label','Zoom channels', 'callback', ...
  %             [ 'zoom(gcbf, ''yon'');' commandzoom ]);
  uimenu('Parent',zm,'Label','Zoom on', 'callback', commandzoom);
  uimenu('Parent',zm,'Label','Zoom off', 'separator', 'on', 'callback', ...
     ['zoom(gcbf, ''off''); tmpg = get(gcbf, ''userdata'');' ...
     'set(gcbf, ''windowbuttondownfcn'', tmpg.commandselect{1});' ...
     'set(gcbf, ''windowbuttonmotionfcn'', tmpg.commandselect{2});' ...
     'set(gcbf, ''windowbuttonupfcn'', tmpg.commandselect{3});' ...
     'clear tmpg;' ]);
  uimenu('Parent',figh,'Label', 'Help', 'callback', 'pophelp(''ve_eegplot'');');

  % Events %%%%%%%%
  zm = uimenu('Parent',m(2),'Label','Events');
  complotevent = [ 'tmpg = get(gcbf, ''userdata'');' ...
                  'tmpg.plotevent = ''on'';' ...                  
                  'set(gcbf, ''userdata'', tmpg); clear tmpg; ve_eegplot(''drawp'', 0);'];
  comnoevent   = [ 'tmpg = get(gcbf, ''userdata'');' ...
                  'tmpg.plotevent = ''off'';' ...                  
                  'set(gcbf, ''userdata'', tmpg); clear tmpg; ve_eegplot(''drawp'', 0);'];
  comeventleg  = [ 've_eegplot(''drawlegend'', gcbf);'];
    
  uimenu('Parent',zm,'Label','Events on'    , 'callback', complotevent, 'enable', fastif(isempty(g.events), 'off', 'on'));
  uimenu('Parent',zm,'Label','Events off'   , 'callback', comnoevent  , 'enable', fastif(isempty(g.events), 'off', 'on'));
  uimenu('Parent',zm,'Label','Events'' legend', 'callback', comeventleg , 'enable', fastif(isempty(g.events), 'off', 'on'));
  

  % %%%%%%%%%%%%%%%%%
  % Set up autoselect
  % %%%%%%%%%%%%%%%%%
  g.commandselect{1} = [ 'if strcmp(get(gcbf, ''SelectionType''),''alt''),'         g.altselectcommand{1} ...
                         'elseif strcmp(get(gcbf, ''SelectionType''),''extend''),'  g.extselectcommand{1} ...
                         'else '                                                    g.selectcommand{1} 'end;' ];
  g.commandselect{2} = [ 'if strcmp(get(gcbf, ''SelectionType''),''alt''),'         g.altselectcommand{2} ...
                         'elseif strcmp(get(gcbf, ''SelectionType''),''extend''),'  g.extselectcommand{2} ...
                         'else '                                                    g.selectcommand{2} 'end;' ];
  g.commandselect{3} = [ 'if strcmp(get(gcbf, ''SelectionType''),''alt''),'         g.altselectcommand{3} ...
                         'elseif strcmp(get(gcbf, ''SelectionType''),''extend''),'  g.extselectcommand{3} ...
                         'else '                                                    g.selectcommand{3} 'end;' ];
       
  set(figh, 'windowbuttondownfcn',   g.commandselect{1});
  set(figh, 'windowbuttonmotionfcn', g.commandselect{2});
  set(figh, 'windowbuttonupfcn',     g.commandselect{3});
  set(figh, 'interruptible', 'off');
  set(figh, 'busyaction', 'cancel');
  
  g.keycommandselect='';
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Brad Kennedy committed
1000
  if ~isempty(g.keyselectcommand{1})
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