408 lines
14 KiB
C++
408 lines
14 KiB
C++
#include <gtwrap/matlab.h>
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#include <map>
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#include <boost/archive/text_iarchive.hpp>
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#include <boost/archive/text_oarchive.hpp>
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#include <boost/serialization/export.hpp>
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#include <gtsam/geometry/Point2.h>
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#include <gtsam/geometry/Point3.h>
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BOOST_CLASS_EXPORT_GUID(gtsam::Point2, "gtsamPoint2");
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BOOST_CLASS_EXPORT_GUID(gtsam::Point3, "gtsamPoint3");
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typedef std::set<boost::shared_ptr<gtsam::Point2>*> Collector_gtsamPoint2;
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static Collector_gtsamPoint2 collector_gtsamPoint2;
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typedef std::set<boost::shared_ptr<gtsam::Point3>*> Collector_gtsamPoint3;
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static Collector_gtsamPoint3 collector_gtsamPoint3;
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void _deleteAllObjects()
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{
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mstream mout;
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std::streambuf *outbuf = std::cout.rdbuf(&mout);
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bool anyDeleted = false;
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{ for(Collector_gtsamPoint2::iterator iter = collector_gtsamPoint2.begin();
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iter != collector_gtsamPoint2.end(); ) {
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delete *iter;
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collector_gtsamPoint2.erase(iter++);
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anyDeleted = true;
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} }
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{ for(Collector_gtsamPoint3::iterator iter = collector_gtsamPoint3.begin();
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iter != collector_gtsamPoint3.end(); ) {
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delete *iter;
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collector_gtsamPoint3.erase(iter++);
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anyDeleted = true;
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} }
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if(anyDeleted)
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cout <<
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"WARNING: Wrap modules with variables in the workspace have been reloaded due to\n"
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"calling destructors, call 'clear all' again if you plan to now recompile a wrap\n"
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"module, so that your recompiled module is used instead of the old one." << endl;
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std::cout.rdbuf(outbuf);
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}
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void _geometry_RTTIRegister() {
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const mxArray *alreadyCreated = mexGetVariablePtr("global", "gtsam_geometry_rttiRegistry_created");
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if(!alreadyCreated) {
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std::map<std::string, std::string> types;
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mxArray *registry = mexGetVariable("global", "gtsamwrap_rttiRegistry");
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if(!registry)
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registry = mxCreateStructMatrix(1, 1, 0, NULL);
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typedef std::pair<std::string, std::string> StringPair;
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for(const StringPair& rtti_matlab: types) {
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int fieldId = mxAddField(registry, rtti_matlab.first.c_str());
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if(fieldId < 0) {
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mexErrMsgTxt("gtsam wrap: Error indexing RTTI types, inheritance will not work correctly");
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}
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mxArray *matlabName = mxCreateString(rtti_matlab.second.c_str());
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mxSetFieldByNumber(registry, 0, fieldId, matlabName);
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}
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if(mexPutVariable("global", "gtsamwrap_rttiRegistry", registry) != 0) {
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mexErrMsgTxt("gtsam wrap: Error indexing RTTI types, inheritance will not work correctly");
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}
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mxDestroyArray(registry);
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mxArray *newAlreadyCreated = mxCreateNumericMatrix(0, 0, mxINT8_CLASS, mxREAL);
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if(mexPutVariable("global", "gtsam_geometry_rttiRegistry_created", newAlreadyCreated) != 0) {
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mexErrMsgTxt("gtsam wrap: Error indexing RTTI types, inheritance will not work correctly");
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}
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mxDestroyArray(newAlreadyCreated);
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}
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}
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void gtsamPoint2_collectorInsertAndMakeBase_0(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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mexAtExit(&_deleteAllObjects);
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typedef boost::shared_ptr<gtsam::Point2> Shared;
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Shared *self = *reinterpret_cast<Shared**> (mxGetData(in[0]));
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collector_gtsamPoint2.insert(self);
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}
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void gtsamPoint2_constructor_1(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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mexAtExit(&_deleteAllObjects);
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typedef boost::shared_ptr<gtsam::Point2> Shared;
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Shared *self = new Shared(new gtsam::Point2());
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collector_gtsamPoint2.insert(self);
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out[0] = mxCreateNumericMatrix(1, 1, mxUINT32OR64_CLASS, mxREAL);
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*reinterpret_cast<Shared**> (mxGetData(out[0])) = self;
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}
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void gtsamPoint2_constructor_2(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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mexAtExit(&_deleteAllObjects);
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typedef boost::shared_ptr<gtsam::Point2> Shared;
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double x = unwrap< double >(in[0]);
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double y = unwrap< double >(in[1]);
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Shared *self = new Shared(new gtsam::Point2(x,y));
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collector_gtsamPoint2.insert(self);
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out[0] = mxCreateNumericMatrix(1, 1, mxUINT32OR64_CLASS, mxREAL);
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*reinterpret_cast<Shared**> (mxGetData(out[0])) = self;
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}
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void gtsamPoint2_deconstructor_3(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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typedef boost::shared_ptr<gtsam::Point2> Shared;
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checkArguments("delete_gtsamPoint2",nargout,nargin,1);
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Shared *self = *reinterpret_cast<Shared**>(mxGetData(in[0]));
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Collector_gtsamPoint2::iterator item;
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item = collector_gtsamPoint2.find(self);
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if(item != collector_gtsamPoint2.end()) {
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collector_gtsamPoint2.erase(item);
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}
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delete self;
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}
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void gtsamPoint2_argChar_4(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("argChar",nargout,nargin-1,1);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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char a = unwrap< char >(in[1]);
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obj->argChar(a);
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}
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void gtsamPoint2_argChar_5(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("argChar",nargout,nargin-1,1);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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boost::shared_ptr<char> a = unwrap_shared_ptr< char >(in[1], "ptr_char");
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obj->argChar(a);
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}
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void gtsamPoint2_argChar_6(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("argChar",nargout,nargin-1,1);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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char a = unwrap< char >(in[1]);
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obj->argChar(a);
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}
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void gtsamPoint2_argChar_7(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("argChar",nargout,nargin-1,1);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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boost::shared_ptr<char> a = unwrap_shared_ptr< char >(in[1], "ptr_char");
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obj->argChar(a);
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}
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void gtsamPoint2_argChar_8(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("argChar",nargout,nargin-1,1);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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boost::shared_ptr<char> a = unwrap_shared_ptr< char >(in[1], "ptr_char");
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obj->argChar(a);
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}
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void gtsamPoint2_argChar_9(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("argChar",nargout,nargin-1,1);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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char a = unwrap< char >(in[1]);
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obj->argChar(a);
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}
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void gtsamPoint2_argChar_10(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("argChar",nargout,nargin-1,1);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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boost::shared_ptr<char> a = unwrap_shared_ptr< char >(in[1], "ptr_char");
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obj->argChar(a);
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}
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void gtsamPoint2_argUChar_11(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("argUChar",nargout,nargin-1,1);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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unsigned char a = unwrap< unsigned char >(in[1]);
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obj->argUChar(a);
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}
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void gtsamPoint2_dim_12(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("dim",nargout,nargin-1,0);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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out[0] = wrap< int >(obj->dim());
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}
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void gtsamPoint2_eigenArguments_13(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("eigenArguments",nargout,nargin-1,2);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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Vector v = unwrap< Vector >(in[1]);
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Matrix m = unwrap< Matrix >(in[2]);
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obj->eigenArguments(v,m);
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}
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void gtsamPoint2_returnChar_14(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("returnChar",nargout,nargin-1,0);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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out[0] = wrap< char >(obj->returnChar());
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}
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void gtsamPoint2_vectorConfusion_15(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("vectorConfusion",nargout,nargin-1,0);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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out[0] = wrap_shared_ptr(boost::make_shared<VectorNotEigen>(obj->vectorConfusion()),"VectorNotEigen", false);
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}
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void gtsamPoint2_x_16(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("x",nargout,nargin-1,0);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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out[0] = wrap< double >(obj->x());
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}
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void gtsamPoint2_y_17(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("y",nargout,nargin-1,0);
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auto obj = unwrap_shared_ptr<gtsam::Point2>(in[0], "ptr_gtsamPoint2");
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out[0] = wrap< double >(obj->y());
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}
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void gtsamPoint3_collectorInsertAndMakeBase_18(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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mexAtExit(&_deleteAllObjects);
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typedef boost::shared_ptr<gtsam::Point3> Shared;
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Shared *self = *reinterpret_cast<Shared**> (mxGetData(in[0]));
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collector_gtsamPoint3.insert(self);
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}
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void gtsamPoint3_constructor_19(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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mexAtExit(&_deleteAllObjects);
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typedef boost::shared_ptr<gtsam::Point3> Shared;
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double x = unwrap< double >(in[0]);
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double y = unwrap< double >(in[1]);
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double z = unwrap< double >(in[2]);
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Shared *self = new Shared(new gtsam::Point3(x,y,z));
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collector_gtsamPoint3.insert(self);
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out[0] = mxCreateNumericMatrix(1, 1, mxUINT32OR64_CLASS, mxREAL);
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*reinterpret_cast<Shared**> (mxGetData(out[0])) = self;
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}
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void gtsamPoint3_deconstructor_20(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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typedef boost::shared_ptr<gtsam::Point3> Shared;
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checkArguments("delete_gtsamPoint3",nargout,nargin,1);
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Shared *self = *reinterpret_cast<Shared**>(mxGetData(in[0]));
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Collector_gtsamPoint3::iterator item;
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item = collector_gtsamPoint3.find(self);
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if(item != collector_gtsamPoint3.end()) {
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collector_gtsamPoint3.erase(item);
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}
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delete self;
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}
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void gtsamPoint3_norm_21(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("norm",nargout,nargin-1,0);
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auto obj = unwrap_shared_ptr<gtsam::Point3>(in[0], "ptr_gtsamPoint3");
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out[0] = wrap< double >(obj->norm());
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}
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void gtsamPoint3_string_serialize_22(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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typedef boost::shared_ptr<gtsam::Point3> Shared;
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checkArguments("string_serialize",nargout,nargin-1,0);
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Shared obj = unwrap_shared_ptr<gtsam::Point3>(in[0], "ptr_gtsamPoint3");
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ostringstream out_archive_stream;
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boost::archive::text_oarchive out_archive(out_archive_stream);
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out_archive << *obj;
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out[0] = wrap< string >(out_archive_stream.str());
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}
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void gtsamPoint3_StaticFunctionRet_23(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("gtsam::Point3.StaticFunctionRet",nargout,nargin,1);
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double z = unwrap< double >(in[0]);
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out[0] = wrap< Point3 >(gtsam::Point3::StaticFunctionRet(z));
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}
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void gtsamPoint3_staticFunction_24(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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checkArguments("gtsam::Point3.staticFunction",nargout,nargin,0);
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out[0] = wrap< double >(gtsam::Point3::staticFunction());
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}
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void gtsamPoint3_string_deserialize_25(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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typedef boost::shared_ptr<gtsam::Point3> Shared;
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checkArguments("gtsamPoint3.string_deserialize",nargout,nargin,1);
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string serialized = unwrap< string >(in[0]);
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istringstream in_archive_stream(serialized);
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boost::archive::text_iarchive in_archive(in_archive_stream);
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Shared output(new gtsam::Point3());
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in_archive >> *output;
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out[0] = wrap_shared_ptr(output,"gtsam.Point3", false);
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}
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void mexFunction(int nargout, mxArray *out[], int nargin, const mxArray *in[])
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{
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mstream mout;
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std::streambuf *outbuf = std::cout.rdbuf(&mout);
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_geometry_RTTIRegister();
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int id = unwrap<int>(in[0]);
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try {
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switch(id) {
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case 0:
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gtsamPoint2_collectorInsertAndMakeBase_0(nargout, out, nargin-1, in+1);
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break;
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case 1:
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gtsamPoint2_constructor_1(nargout, out, nargin-1, in+1);
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break;
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case 2:
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gtsamPoint2_constructor_2(nargout, out, nargin-1, in+1);
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break;
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case 3:
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gtsamPoint2_deconstructor_3(nargout, out, nargin-1, in+1);
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break;
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case 4:
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gtsamPoint2_argChar_4(nargout, out, nargin-1, in+1);
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break;
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case 5:
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gtsamPoint2_argChar_5(nargout, out, nargin-1, in+1);
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break;
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case 6:
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gtsamPoint2_argChar_6(nargout, out, nargin-1, in+1);
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break;
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case 7:
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gtsamPoint2_argChar_7(nargout, out, nargin-1, in+1);
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break;
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case 8:
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gtsamPoint2_argChar_8(nargout, out, nargin-1, in+1);
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break;
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case 9:
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gtsamPoint2_argChar_9(nargout, out, nargin-1, in+1);
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break;
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case 10:
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gtsamPoint2_argChar_10(nargout, out, nargin-1, in+1);
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break;
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case 11:
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gtsamPoint2_argUChar_11(nargout, out, nargin-1, in+1);
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break;
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case 12:
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gtsamPoint2_dim_12(nargout, out, nargin-1, in+1);
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break;
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case 13:
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gtsamPoint2_eigenArguments_13(nargout, out, nargin-1, in+1);
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break;
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case 14:
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gtsamPoint2_returnChar_14(nargout, out, nargin-1, in+1);
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break;
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case 15:
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gtsamPoint2_vectorConfusion_15(nargout, out, nargin-1, in+1);
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break;
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case 16:
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gtsamPoint2_x_16(nargout, out, nargin-1, in+1);
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break;
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case 17:
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gtsamPoint2_y_17(nargout, out, nargin-1, in+1);
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break;
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case 18:
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gtsamPoint3_collectorInsertAndMakeBase_18(nargout, out, nargin-1, in+1);
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break;
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case 19:
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gtsamPoint3_constructor_19(nargout, out, nargin-1, in+1);
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break;
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case 20:
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gtsamPoint3_deconstructor_20(nargout, out, nargin-1, in+1);
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break;
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case 21:
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gtsamPoint3_norm_21(nargout, out, nargin-1, in+1);
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break;
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case 22:
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gtsamPoint3_string_serialize_22(nargout, out, nargin-1, in+1);
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break;
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case 23:
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gtsamPoint3_StaticFunctionRet_23(nargout, out, nargin-1, in+1);
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break;
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case 24:
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gtsamPoint3_staticFunction_24(nargout, out, nargin-1, in+1);
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break;
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case 25:
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gtsamPoint3_string_deserialize_25(nargout, out, nargin-1, in+1);
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break;
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}
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} catch(const std::exception& e) {
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mexErrMsgTxt(("Exception from gtsam:\n" + std::string(e.what()) + "\n").c_str());
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}
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std::cout.rdbuf(outbuf);
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}
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