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MassGUI.m
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MassGUI.m
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function varargout = MassGUI(varargin)
% MASSGUI MATLAB code for MassGUI.fig
% MASSGUI, by itself, creates a new MASSGUI or raises the existing
% singleton*.
%
% H = MASSGUI returns the handle to a new MASSGUI or the handle to
% the existing singleton*.
%
% MASSGUI('CALLBACK',hObject,eventData,handles,...) calls the local
% function named CALLBACK in MASSGUI.M with the given input arguments.
%
% MASSGUI('Property','Value',...) creates a new MASSGUI or raises the
% existing singleton*. Starting from the left, property value pairs are
% applied to the GUI before MassGUI_OpeningFcn gets called. An
% unrecognized property name or invalid value makes property application
% stop. All inputs are passed to MassGUI_OpeningFcn via varargin.
%
% *See GUI Options on GUIDE's Tools menu. Choose "GUI allows only one
% instance to run (singleton)".
%
% See also: GUIDE, GUIDATA, GUIHANDLES
% Edit the above text to modify the response to help MassGUI
% Last Modified by GUIDE v2.5 09-Mar-2014 22:53:31
% Begin initialization code - DO NOT EDIT
gui_Singleton = 1;
gui_State = struct('gui_Name', mfilename, ...
'gui_Singleton', gui_Singleton, ...
'gui_OpeningFcn', @MassGUI_OpeningFcn, ...
'gui_OutputFcn', @MassGUI_OutputFcn, ...
'gui_LayoutFcn', [] , ...
'gui_Callback', []);
if nargin && ischar(varargin{1})
gui_State.gui_Callback = str2func(varargin{1});
end
if nargout
[varargout{1:nargout}] = gui_mainfcn(gui_State, varargin{:});
else
gui_mainfcn(gui_State, varargin{:});
end
% End initialization code - DO NOT EDIT
% --- Executes just before MassGUI is made visible.
function MassGUI_OpeningFcn(hObject, eventdata, handles, varargin)
% This function has no output args, see OutputFcn.
% hObject handle to figure
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% varargin command line arguments to MassGUI (see VARARGIN)
% Choose default command line output for MassGUI
handles.output = hObject;
% Update handles structure
guidata(hObject, handles);
% UIWAIT makes MassGUI wait for user response (see UIRESUME)
% uiwait(handles.MassGUI);
update(handles);
% --- Outputs from this function are returned to the command line.
function varargout = MassGUI_OutputFcn(hObject, eventdata, handles)
% varargout cell array for returning output args (see VARARGOUT);
% hObject handle to figure
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Get default command line output from handles structure
varargout{1} = handles.output;
function setEnable(boolIndMass, handles)
if boolIndMass
set(handles.radInd,'Value',1);
set(handles.radTotal,'Value',0);
set(handles.txtTotMass,'Enable','off');
set(handles.txtXCG,'Enable','off');
set(handles.txtYCG,'Enable','off');
set(handles.txtZCG,'Enable','off');
set(handles.tabMass,'Enable','on');
set(handles.cmdAddMass,'Enable','on');
set(handles.cmdRemoveMass,'Enable','on');
else
set(handles.radInd,'Value',0);
set(handles.radTotal,'Value',1);
set(handles.txtTotMass,'Enable','on');
set(handles.txtXCG,'Enable','on');
set(handles.txtYCG,'Enable','on');
set(handles.txtZCG,'Enable','on');
set(handles.tabMass,'Enable','off');
set(handles.cmdAddMass,'Enable','off');
set(handles.cmdRemoveMass,'Enable','off');
end
% --- Executes on button press in radTotal.
function radTotal_Callback(hObject, eventdata, handles)
% hObject handle to radTotal (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
global ANF_DATA;
ANF_DATA.Inertia.type = 2;
update(handles);
% --- Executes on button press in radInd.
function radInd_Callback(hObject, eventdata, handles)
% hObject handle to radInd (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
global ANF_DATA;
ANF_DATA.Inertia.type = 1;
update(handles);
function txtTotMass_Callback(hObject, eventdata, handles)
% hObject handle to txtTotMass (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of txtTotMass as text
% str2double(get(hObject,'String')) returns contents of txtTotMass as a double
updateLumpSumMass(handles)
% --- Executes during object creation, after setting all properties.
function txtTotMass_CreateFcn(hObject, eventdata, handles)
% hObject handle to txtTotMass (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function txtXCG_Callback(hObject, eventdata, handles)
% hObject handle to txtXCG (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of txtXCG as text
% str2double(get(hObject,'String')) returns contents of txtXCG as a double
updateLumpSumMass(handles)
% --- Executes during object creation, after setting all properties.
function txtXCG_CreateFcn(hObject, eventdata, handles)
% hObject handle to txtXCG (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function txtYCG_Callback(hObject, eventdata, handles)
% hObject handle to txtYCG (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of txtYCG as text
% str2double(get(hObject,'String')) returns contents of txtYCG as a double
updateLumpSumMass(handles)
% --- Executes during object creation, after setting all properties.
function txtYCG_CreateFcn(hObject, eventdata, handles)
% hObject handle to txtYCG (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
function txtZCG_Callback(hObject, eventdata, handles)
% hObject handle to txtZCG (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
% Hints: get(hObject,'String') returns contents of txtZCG as text
% str2double(get(hObject,'String')) returns contents of txtZCG as a double
updateLumpSumMass(handles)
% --- Executes during object creation, after setting all properties.
function txtZCG_CreateFcn(hObject, eventdata, handles)
% hObject handle to txtZCG (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles empty - handles not created until after all CreateFcns called
% Hint: edit controls usually have a white background on Windows.
% See ISPC and COMPUTER.
if ispc && isequal(get(hObject,'BackgroundColor'), get(0,'defaultUicontrolBackgroundColor'))
set(hObject,'BackgroundColor','white');
end
% --- Executes on button press in cmdAddMass.
function cmdAddMass_Callback(hObject, eventdata, handles)
% hObject handle to cmdAddMass (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
global ANF_DATA;
ANF_DATA.Inertia.new_mass = [0 0 0 0];
fields = fieldnames(ANF_DATA.Inertia);
update(handles, length(fields)-2);
% --- Executes on button press in cmdRemoveMass.
function cmdRemoveMass_Callback(hObject, eventdata, handles)
% hObject handle to cmdRemoveMass (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
global ANF_DATA;
selRow = get(handles.tabMass, 'UserData');
if ~isempty(selRow) && selRow > 0
data = get(handles.tabMass, 'Data');
key = data{selRow,1};
if ~strcmp(key, 'TOTAL')
inertia = rmfield(ANF_DATA.Inertia, key);
ANF_DATA.Inertia = inertia;
update(handles);
end
end
% --- Executes on button press in cmdRefresh.
function cmdRefresh_Callback(hObject, eventdata, handles)
% hObject handle to cmdRefresh (see GCBO)
% eventdata reserved - to be defined in a future version of MATLAB
% handles structure with handles and user data (see GUIDATA)
update(handles);
function update(handles, selRow)
global ANF_DATA;
% check for inertia type
if isfield(ANF_DATA, 'Inertia')
if isfield(ANF_DATA.Inertia, 'type')
inertia_type = ANF_DATA.Inertia.type;
else
inertia_type = 2;
ANF_DATA.Inertia.type = inertia_type;
end
else
inertia_type = 2; ANF_DATA.Inertia.type = inertia_type;
end
% reset figure
cla(handles.figMass, 'reset');
hold(handles.figMass, 'all');
% draw aircraft
if isfield(ANF_DATA, 'Geometry') && isfield(ANF_DATA, 'Propulsion')
fnDrawAircraft(handles.figMass, ANF_DATA.Geometry, ANF_DATA.Propulsion,...
ANF_DATA.Directory);
hold(handles.figMass, 'all');
end
if inertia_type == 2
% specify lump sum mass
if isfield(ANF_DATA.Inertia, 'O_TOTAL_MASS')
total_mass = ANF_DATA.Inertia.O_TOTAL_MASS;
else
total_mass = [clDefaults.Inertia_total_mass, clDefaults.Inertia_CGx, ...
clDefaults.Inertia_CGy, clDefaults.Inertia_CGz];
ANF_DATA.Inertia.O_TOTAL_MASS = total_mass;
end
plot3(handles.figMass, total_mass(2), total_mass(3), total_mass(4), 'o', ...
'MarkerEdgeColor', 'm', 'MarkerFaceColor', 'm');
% update textboxes
set(handles.txtTotMass, 'String', total_mass(1));
set(handles.txtXCG, 'String', total_mass(2));
set(handles.txtYCG, 'String', total_mass(3));
set(handles.txtZCG, 'String', total_mass(4));
else
% specify components.
data = cell(0,5);
total_mass = 0;
Mx = 0; My = 0; Mz = 0;
fields = fieldnames(ANF_DATA.Inertia);
counter = 0;
for i = 1:numel(fields)
fieldname = fields{i};
if strcmp(fieldname, 'O_TOTAL_MASS') || strcmp(fieldname, 'type')
% skip these special fields
continue;
else
% calculate zeroth and first moments
inertia = ANF_DATA.Inertia.(fieldname);
total_mass = total_mass + inertia(1);
Mx = Mx + inertia(1)*inertia(2);
My = My + inertia(1)*inertia(3);
Mz = Mz + inertia(1)*inertia(4);
counter = counter + 1;
data{counter,1} = fieldname;
data{counter,2} = inertia(1);
data{counter,3} = inertia(2);
data{counter,4} = inertia(3);
data{counter,5} = inertia(4);
% update figure
if nargin>1 && selRow == counter
plot3(handles.figMass, inertia(2), inertia(3), inertia(4), ...
'gs', 'MarkerEdgeColor', 'r', 'MarkerFaceColor', 'r');
else
plot3(handles.figMass, inertia(2), inertia(3), inertia(4), ...
'gs', 'MarkerEdgeColor', 'b', 'MarkerFaceColor', 'b');
end
end
end
% calculate total mass/CG
counter = counter + 1;
data{counter,1} = 'TOTAL';
data{counter,2} = total_mass;
data{counter,3} = Mx/total_mass;
data{counter,4} = My/total_mass;
data{counter,5} = Mz/total_mass;
% plot CG
plot3(handles.figMass, Mx/total_mass, My/total_mass, Mz/total_mass, 'o', ...
'MarkerEdgeColor', 'm', 'MarkerFaceColor', 'm');
% parse data to the table
set(handles.tabMass, 'Data', data);
end
% close figure for editing
hold(handles.figMass, 'off');
xlabel(handles.figMass, 'X (m)');
ylabel(handles.figMass, 'Y (m)');
zlabel(handles.figMass, 'Z (m)');
axis(handles.figMass, 'equal');
grid(handles.figMass, 'on');
setEnable(inertia_type==1, handles);
function updateLumpSumMass(handles)
global ANF_DATA;
total_mass = str2double(get(handles.txtTotMass,'String'));
XCG = str2double(get(handles.txtXCG,'String'));
YCG = str2double(get(handles.txtYCG,'String'));
ZCG = str2double(get(handles.txtZCG,'String'));
ANF_DATA.Inertia.O_TOTAL_MASS = [total_mass XCG YCG ZCG];
update(handles);
% --- Executes when entered data in editable cell(s) in tabMass.
function tabMass_CellEditCallback(hObject, eventdata, handles)
% hObject handle to tabMass (see GCBO)
% eventdata structure with the following fields (see UITABLE)
% Indices: row and column indices of the cell(s) edited
% PreviousData: previous data for the cell(s) edited
% EditData: string(s) entered by the user
% NewData: EditData or its converted form set on the Data property. Empty if Data was not changed
% Error: error string when failed to convert EditData to appropriate value for Data
% handles structure with handles and user data (see GUIDATA)
global ANF_DATA;
data = get(hObject, 'Data');
s = size(data);
len = s(1);
% clear existing global data
o_total_mass = ANF_DATA.Inertia.O_TOTAL_MASS;
inertia_type = ANF_DATA.Inertia.type;
ANF_DATA.Inertia = [];
ANF_DATA.Inertia.O_TOTAL_MASS = o_total_mass;
ANF_DATA.Inertia.type = inertia_type;
for i=1:len
if ~strcmp(data{i,1}, 'TOTAL')
%
ANF_DATA.Inertia.(genvarname(data{i,1})) = [data{i,2} data{i,3} data{i,4} data{i,5}];
end
end
update(handles, eventdata.Indices(1));
% --- Executes when selected cell(s) is changed in tabMass.
function tabMass_CellSelectionCallback(hObject, eventdata, handles)
% hObject handle to tabMass (see GCBO)
% eventdata structure with the following fields (see UITABLE)
% Indices: row and column indices of the cell(s) currently selecteds
% handles structure with handles and user data (see GUIDATA)
if ~isempty(eventdata.Indices)
set(hObject, 'UserData', eventdata.Indices(1));
update(handles, eventdata.Indices(1));
else
set(hObject, 'UserData', 0);
end