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The origin of this question is from here How to use "global static" variable in matlab function called in c.

I'm trying to encapsulate the "global variable" into an object. However I don't know how to export the matlab class to c++ using MATLAB Compiler (mcc)

To do this I just tried the standard command

Matlab Command

mcc -W cpplib:Vowel4 -T link:lib Vowel4.m

Matlab Script

classdef Vowel4




The generated lib is actually stand-alone functions rather than c++ class.

How can I compile classes in Matlab into c++ classes?

I've been searching for an answer but didn't find one.

Obviously the matlab command is not suitable for this scenario. However I cannot find any information on building Matlab classes into c++ classes.

========================== Edit ========================

The actual cpp code is as follows: @Alan

mclInitializeApplication(NULL, 0);

mwArray F(4, 1, mxDOUBLE_CLASS);
float test[4];

for ( ;; ){
    const Frame frame = controller.frame();
    const FingerList fingers = frame.fingers();
    if ( !fingers.empty() ){
        for ( int i = 0; i < 4; i ++ ){
            double v = fingers.count() > i ? (fingers[i].tipPosition().y / 50) - 2 : 0;
            F(i+1,1) = v;
            test[i] = v;
            cout << v << ' ';
        cout << endl;

Here the matlabA() corresponds to the loadData(), which loads the data, and soundByCoef(F) corresponds to the matlabB(), which do the job in the main loop.

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2 Answers 2

up vote 5 down vote accepted

As noted by Alan, I was only suggesting using handle class as a container for your global variables (with the benefit that such an object would be passed by reference). The created object is not intended to be directly manipulated by your C++ code (it will be stored in the generic mxArray/mwArray C/C++ struct).

As far as I know, you cannot directly compile classdef-style MATLAB classes into proper C++ classes when building shared libraries using the MATLAB Compiler. It only supports building regular functions. You could create functional interfaces to MATLAB class member methods, but that's a different story...

Perhaps a complete example would help illustrate the idea I had in mind. First lets define the code on the MATLAB side:


This is the handle class used to store the global vars.

classdef GlobalData < handle
    %GLOBALDATA  Handle class to encapsulate all global state data.
    % Note that we are not taking advantage of any object-oriented programming
    % concept in this code. This class acts only as a container for publicly
    % accessible properties for the otherwise global variables.
    % To manipulate these globals from C++, you should create the class API
    % as normal MATLAB functions to be compiled and exposed as regular C
    % functions by the shared library.
    % For example: create(), get(), set(), ...
    % The reason we use a handle-class instead of regular variables/structs
    % is that handle-class objects get passed by reference.



A wrapper function that acts as a constructor to the above class

function globals = create_globals()
    %CREATE_GLOBALS  Instantiate and return global state

    globals = GlobalData();
    globals.val = 2;

fcn_add.m, fcn_times.m

MATLAB functions to be exposed as C++ functions

function out = fcn_add(globals, in)
    % receives array, and return "input+val" (where val is global)

    out = in + globals.val;

function out = fcn_times(globals, in)
    % receives array, and return "input*val" (where val is global)

    out = in .* globals.val;

With the above files stored in current directory, lets build the C++ shared library using the MATLAB Compiler:

>> mkdir out
>> mcc -W cpplib:libfoo -T link:lib -N -v -d ./out create_globals.m fcn_add.m fcn_times.m

You should expect the following generated files among others (I'm on a Windows machine):


Next, we could create a sample C++ program to test the library:


// Sample program that calls a C++ shared library created using
// the MATLAB Compiler.

#include <iostream>
using namespace std;

// include library header generated by MATLAB Compiler
#include "libfoo.h"

int run_main(int argc, char **argv)
    // initialize MCR
    if (!mclInitializeApplication(NULL,0)) {
        cerr << "Failed to init MCR" << endl;
        return -1;

    // initialize our library
    if( !libfooInitialize() ) {
        cerr << "Failed to init library" << endl;
        return -1;

    try {
        // create global variables
        mwArray globals;
        create_globals(1, globals);

        // create input array
        double data[] = {1,2,3,4,5,6,7,8,9};
        mwArray in(3, 3, mxDOUBLE_CLASS, mxREAL);
        in.SetData(data, 9);

        // create output array, and call library functions
        mwArray out;
        fcn_add(1, out, globals, in);
        cout << "Added matrix:\n" << out << endl;
        fcn_times(1, out, globals, in);
        cout << "Multiplied matrix:\n" << out << endl;
    } catch (const mwException& e) {
        cerr << e.what() << endl;
        return -1;
    } catch (...) {
        cerr << "Unexpected error thrown" << endl;
        return -1;

    // destruct our library

    // shutdown MCR

    return 0;

int main()
    return mclRunMain((mclMainFcnType)run_main, 0, NULL);

Lets build the standalone program:

>> mbuild -I./out main.cpp ./out/libfoo.lib -outdir ./out

And finally run the executable:

>> cd out
>> !main
Added matrix: 
     3     6     9 
     4     7    10 
     5     8    11 
Multiplied matrix: 
     2     8    14 
     4    10    16 
     6    12    18 


share|improve this answer
You are really helpful and warm hearted and I really appreciate your effort devoted in answering my question. And my apology for not understanding why you suggest using a handle class. I thought you were suggesting using a class to share variable between member functions. I think the misunderstanding comes from my improficiency in using classes in Matlab. –  SolessChong Apr 2 '13 at 5:45
@SolessCHong: no worries. Seeing your code, I think the above approach should work for you: replace create_globals() with the loadData() function which reads data from disk, stores it in the handle class instance and returns that object. Any other functions that needs to access this data (e.g soundByCoef()) should also be passed the previous object in addition to its usual input arguments. The data will be stored in MATLAB's managed memory, and no copying will be performed when passing the data around, so there shouldn't be too much overhead I think. –  Amro Apr 2 '13 at 21:50

Following on from the thread in the previous post, the suggestion wasn't to wrap your functions in a class, but rather to use a class to pass about the global variable which compiling leaves you unable to use.

classdef Foo < handle

    function obj = Foo(value)
      obj.value = value;

Note: the class Foo extends the handle class in order to make it pass by reference, rather than pass by value. See: the comparison between handle and value classes.

function foo = matlabA()
  foo = new Foo(1);

function matlabB(foo)

As far as I know, the matlab compiler doesn't compile the code as such, but rather packages it with a copy of the MATLAB Component Runtime and writes some wrapper functions to handle invoking said runtime on the code from c/c++.

I would recommend avoiding jumping back and forth between matlab and c/c++ too much; there is bound to be some overhead to converting the datatypes and invoking the MCR. All I really use it for is wrapping up a complex but self-contained matlab script (i.e.: doesn't need to interact with the c/c++ code mid way through said script) as a function, or packaging up code for deployment to environments which don't have a full copy of matlab.

As an interesting side note: if you are calling C++ from within Matlab, and that C++ code needs access to a global variable, things are much easier. You can simply do this by wrapping your C++ code into a mexFunction and compiling that. In the places you need to access a variable which is in the Matlab workspace, you can do so using the mexGetVariablePtr which will return a read-only pointer to the data. The variable you are accessing can be in either the global workspace, or that of the function which called your mexFunction.

With this approach I would suggest liberally comment the variable that you are getting in both the C++ and Matlab code, as the link between them may not be obvious from the Matlab side; you wouldn't want someone to come along later, edit the script and wonder why it had broken.

In this case it seems that the C++ side doesn't really need access to the data, so you could refactor it to have matlab do the calling by wrapping the "get current position of fingers" code into a mexFunction, then have matlab do the loop:

data = loadData();
while(~stop) {
  position = getFingerPositionMex();
  soundByCoef(position, data);

Assuming you don't modify the data within soundByCoef Matlab will use pass by reference, so there will be no copying of the large dataset.

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Actually in my application, I'm using Leapmotion c++ sdk in a matlab sound producing script. And I've to read huge data from disk. So matlabA() is to load the data and in the application I just call matlabB() in the main loop without loading data over and over again. This is why I'm trying to declare global variable. –  SolessChong Apr 2 '13 at 5:38
Wait, wait! You are saying that you are running this in Matlab? That is: matlab script calls C++ code, which in turn calls more matlab to get some data? goes to edit answer to account for this –  Alan Apr 2 '13 at 10:50
No. Calling matlab function in C++. Also it's a good idea to consider calling c++ sdk for Leap in Matlab. However it's not the case here. –  SolessChong Apr 2 '13 at 11:06
If you are still having problems with this, can you provide some more context about your project? –  Alan Apr 2 '13 at 11:14
I've updated the actual c++ code. –  SolessChong Apr 2 '13 at 11:33

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