00001
00017 #ifndef BM_H
00018 #define BM_H
00019
00020 #include <itpp/itbase.h>
00021 #include "../itpp_ext.h"
00022
00023
00024 using namespace itpp;
00025
00027 class str {
00028 public:
00030 ivec ids;
00032 ivec times;
00034 str ( ivec ids0, ivec times0 ) :ids ( ids0 ),times ( times0 ) {
00035 it_assert_debug ( times0.length() ==ids0.length(),"Incompatible input" );
00036 };
00037 };
00038
00045 class RV {
00046 protected:
00048 int tsize;
00050 int len;
00052 ivec ids;
00054 ivec sizes;
00056 ivec times;
00058 Array<std::string> names;
00059
00060 private:
00062 void init ( ivec in_ids, Array<std::string> in_names, ivec in_sizes, ivec in_times );
00063 public:
00065 RV ( Array<std::string> in_names, ivec in_sizes, ivec in_times );
00067 RV ( Array<std::string> in_names, ivec in_sizes );
00069 RV ( Array<std::string> in_names );
00071 RV ();
00072
00074 friend std::ostream &operator<< ( std::ostream &os, const RV &rv );
00075
00077 int count() const {return tsize;} ;
00079 int length() const {return len;} ;
00080
00081
00082
00084 ivec findself ( const RV &rv2 ) const;
00086 bool equal ( const RV &rv2 ) const;
00088 bool add ( const RV &rv2 );
00090 RV subt ( const RV &rv2 ) const;
00092 RV subselect ( const ivec &ind ) const;
00094 RV operator() ( const ivec &ind ) const;
00096 void t ( int delta );
00098 str tostr() const;
00101 ivec dataind ( const RV &crv ) const;
00104 void dataind ( const RV &rv2, ivec &selfi, ivec &rv2i ) const;
00105
00107 Array<std::string>& _names() {return names;};
00108
00110 int id ( int at ) {return ids ( at );};
00112 int size ( int at ) {return sizes ( at );};
00114 int time ( int at ) {return times ( at );};
00116 std::string name ( int at ) {return names ( at );};
00117
00119 void set_id ( int at, int id0 ) {ids ( at ) =id0;};
00121 void set_size ( int at, int size0 ) {sizes ( at ) =size0; tsize=sum ( sizes );};
00123 void set_time ( int at, int time0 ) {times ( at ) =time0;};
00124
00126 void newids();
00127 };
00128
00130 RV concat ( const RV &rv1, const RV &rv2 );
00131
00133 extern RV RV0;
00134
00136
00137 class fnc {
00138 protected:
00140 int dimy;
00141 public:
00143 fnc ( int dy ) :dimy ( dy ) {};
00145 virtual vec eval ( const vec &cond ) {
00146 return vec ( 0 );
00147 };
00148
00150 int _dimy() const{return dimy;}
00151
00153 virtual ~fnc() {};
00154 };
00155
00156 class mpdf;
00157
00159
00160 class epdf {
00161 protected:
00163 RV rv;
00164 public:
00166 epdf() :rv ( ) {};
00167
00169 epdf ( const RV &rv0 ) :rv ( rv0 ) {};
00170
00171
00172
00173
00175 virtual vec sample () const =0;
00177 virtual mat sample_m ( int N ) const;
00178
00180 virtual double evallog ( const vec &val ) const =0;
00181
00183 virtual vec evallog_m ( const mat &Val ) const {
00184 vec x ( Val.cols() );
00185 for ( int i=0;i<Val.cols();i++ ) {x ( i ) =evallog ( Val.get_col ( i ) ) ;}
00186 return x;
00187 }
00189 virtual mpdf* condition ( const RV &rv ) const {it_warning ( "Not implemented" ); return NULL;}
00191 virtual epdf* marginal ( const RV &rv ) const {it_warning ( "Not implemented" ); return NULL;}
00192
00194 virtual vec mean() const =0;
00195
00197 virtual ~epdf() {};
00199 const RV& _rv() const {return rv;}
00201 void _renewrv ( const RV &in_rv ) {rv=in_rv;}
00203 };
00204
00205
00207
00208
00209 class mpdf {
00210 protected:
00212 RV rv;
00214 RV rvc;
00216 epdf* ep;
00217 public:
00218
00220
00222 virtual vec samplecond ( const vec &cond, double &ll ) {
00223 this->condition ( cond );
00224 vec temp= ep->sample();
00225 ll=ep->evallog ( temp );return temp;
00226 };
00228 virtual mat samplecond_m ( const vec &cond, vec &ll, int N ) {
00229 this->condition ( cond );
00230 mat temp ( rv.count(),N ); vec smp ( rv.count() );
00231 for ( int i=0;i<N;i++ ) {smp=ep->sample() ;temp.set_col ( i, smp );ll ( i ) =ep->evallog ( smp );}
00232 return temp;
00233 };
00235 virtual void condition ( const vec &cond ) {it_error ( "Not implemented" );};
00236
00238 virtual double evallogcond ( const vec &dt, const vec &cond ) {double tmp; this->condition ( cond );tmp = ep->evallog ( dt ); it_assert_debug(std::isfinite(tmp),"Infinite value"); return tmp;
00239 };
00240
00242 virtual vec evallogcond_m ( const mat &Dt, const vec &cond ) {this->condition ( cond );return ep->evallog_m ( Dt );};
00243
00245 virtual ~mpdf() {};
00246
00248 mpdf ( const RV &rv0, const RV &rvc0 ) :rv ( rv0 ),rvc ( rvc0 ) {};
00250 RV _rvc() const {return rvc;}
00252 RV _rv() const {return rv;}
00254 epdf& _epdf() {return *ep;}
00255 };
00256
00259 class datalink_e2e {
00260 protected:
00262 int valsize;
00264 int valupsize;
00266 ivec v2v_up;
00267 public:
00269 datalink_e2e ( const RV &rv, const RV &rv_up ) :
00270 valsize ( rv.count() ), valupsize ( rv_up.count() ), v2v_up ( rv.dataind ( rv_up ) ) {
00271 it_assert_debug ( v2v_up.length() ==valsize,"rv is not fully in rv_up" );
00272 }
00274 vec get_val ( const vec &val_up ) {it_assert_debug ( valupsize==val_up.length(),"Wrong val_up" ); return get_vec ( val_up,v2v_up );}
00276 void fill_val ( vec &val_up, const vec &val ) {
00277 it_assert_debug ( valsize==val.length(),"Wrong val" );
00278 it_assert_debug ( valupsize==val_up.length(),"Wrong val_up" );
00279 set_subvector ( val_up, v2v_up, val );
00280 }
00281 };
00282
00284 class datalink_m2e: public datalink_e2e {
00285 protected:
00287 int condsize;
00289 ivec v2c_up;
00291 ivec v2c_lo;
00292
00293 public:
00295 datalink_m2e ( const RV &rv, const RV &rvc, const RV &rv_up ) :
00296 datalink_e2e ( rv,rv_up ), condsize ( rvc.count() ) {
00297
00298 rvc.dataind ( rv_up, v2c_lo, v2c_up );
00299 }
00301 vec get_cond ( const vec &val_up ) {
00302 vec tmp ( condsize );
00303 set_subvector ( tmp,v2c_lo,val_up ( v2c_up ) );
00304 return tmp;
00305 }
00306 void fill_val_cond ( vec &val_up, const vec &val, const vec &cond ) {
00307 it_assert_debug ( valsize==val.length(),"Wrong val" );
00308 it_assert_debug ( valupsize==val_up.length(),"Wrong val_up" );
00309 set_subvector ( val_up, v2v_up, val );
00310 set_subvector ( val_up, v2c_up, cond );
00311 }
00312 };
00315 class datalink_m2m: public datalink_m2e {
00316 protected:
00318 ivec c2c_up;
00320 ivec c2c_lo;
00321 public:
00323 datalink_m2m ( const RV &rv, const RV &rvc, const RV &rv_up, const RV &rvc_up ) :
00324 datalink_m2e ( rv, rvc, rv_up) {
00325
00326 rvc.dataind ( rvc_up, c2c_lo, c2c_up );
00327 it_assert_debug(c2c_lo.length()+v2c_lo.length()==condsize, "cond is not fully given");
00328 }
00330 vec get_cond ( const vec &val_up, const vec &cond_up ) {
00331 vec tmp ( condsize );
00332 set_subvector ( tmp,v2c_lo,val_up ( v2c_up ) );
00333 set_subvector ( tmp,c2c_lo,cond_up ( c2c_up ) );
00334 return tmp;
00335 }
00337
00338 };
00339
00343 class mepdf : public mpdf {
00344 public:
00346 mepdf (const epdf* em ) :mpdf ( em->_rv(),RV() ) {ep=const_cast<epdf*>(em);};
00347 void condition ( const vec &cond ) {}
00348 };
00349
00352 class compositepdf {
00353 protected:
00355 int n;
00357 Array<mpdf*> mpdfs;
00358 public:
00359 compositepdf ( Array<mpdf*> A0 ) : n ( A0.length() ), mpdfs ( A0 ) {};
00361 RV getrv ( bool checkoverlap=false );
00363 void setrvc ( const RV &rv, RV &rvc );
00364 };
00365
00373 class DS {
00374 protected:
00376 RV Drv;
00378 RV Urv;
00379 public:
00381 void getdata ( vec &dt );
00383 void getdata ( vec &dt, ivec &indeces );
00385 void write ( vec &ut );
00387 void write ( vec &ut, ivec &indeces );
00393 void linkrvs ( RV &drv, RV &urv );
00394
00396 void step();
00397
00398 };
00399
00404 class BM {
00405 protected:
00407 RV rv;
00409 double ll;
00411 bool evalll;
00412 public:
00413
00415 BM ( const RV &rv0, double ll0=0,bool evalll0=true ) :rv ( rv0 ), ll ( ll0 ),evalll ( evalll0 ) {
00416 };
00418 BM ( const BM &B ) : rv ( B.rv ), ll ( B.ll ), evalll ( B.evalll ) {}
00419
00423 virtual void bayes ( const vec &dt ) = 0;
00425 virtual void bayesB ( const mat &Dt );
00427 virtual const epdf& _epdf() const =0;
00428
00430 virtual const epdf* _e() const =0;
00431
00434 virtual double logpred ( const vec &dt ) const{it_error ( "Not implemented" );return 0.0;}
00436 vec logpred_m ( const mat &dt ) const{vec tmp ( dt.cols() );for ( int i=0;i<dt.cols();i++ ) {tmp ( i ) =logpred ( dt.get_col ( i ) );}return tmp;}
00437
00439 virtual epdf* predictor ( const RV &rv ) const {it_error ( "Not implemented" );return NULL;};
00440
00442 virtual ~BM() {};
00444 const RV& _rv() const {return rv;}
00446 double _ll() const {return ll;}
00448 void set_evalll ( bool evl0 ) {evalll=evl0;}
00449
00452 virtual BM* _copy_ ( bool changerv=false ) {it_error ( "function _copy_ not implemented for this BM" ); return NULL;};
00453 };
00454
00464 class BMcond {
00465 protected:
00467 RV rvc;
00468 public:
00470 virtual void condition ( const vec &val ) =0;
00472 BMcond ( RV &rv0 ) :rvc ( rv0 ) {};
00474 virtual ~BMcond() {};
00476 const RV& _rvc() const {return rvc;}
00477 };
00478
00480 #endif // BM_H