1 // Copyright (C) 2007-2016 CEA/DEN, EDF R&D
3 // This library is free software; you can redistribute it and/or
4 // modify it under the terms of the GNU Lesser General Public
5 // License as published by the Free Software Foundation; either
6 // version 2.1 of the License, or (at your option) any later version.
8 // This library is distributed in the hope that it will be useful,
9 // but WITHOUT ANY WARRANTY; without even the implied warranty of
10 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
11 // Lesser General Public License for more details.
13 // You should have received a copy of the GNU Lesser General Public
14 // License along with this library; if not, write to the Free Software
15 // Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
17 // See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
19 // Author : Anthony Geay (CEA/DEN)
21 #ifndef __MEDCOUPLING_MEDCOUPLINGMEMARRAY_HXX__
22 #define __MEDCOUPLING_MEDCOUPLINGMEMARRAY_HXX__
24 #include "MEDCoupling.hxx"
26 #include "MEDCouplingTimeLabel.hxx"
27 #include "MEDCouplingRefCountObject.hxx"
28 #include "InterpKernelException.hxx"
29 #include "MEDCouplingTraits.hxx"
30 #include "BBTreePts.txx"
43 } MEDCouplingAxisType;
44 // -- WARNING this enum must be synchronized with MEDCouplingCommon.i file ! --
49 class MEDCouplingPointer
52 MEDCouplingPointer():_internal(0),_external(0) { }
53 void null() { _internal=0; _external=0; }
54 bool isNull() const { return _internal==0 && _external==0; }
55 void setInternal(T *pointer);
56 void setExternal(const T *pointer);
57 const T *getConstPointer() const { if(_internal) return _internal; else return _external; }
58 const T *getConstPointerLoc(std::size_t offset) const { if(_internal) return _internal+offset; else return _external+offset; }
59 T *getPointer() { if(_internal) return _internal; if(_external) throw INTERP_KERNEL::Exception("Trying to write on an external pointer."); else return 0; }
69 typedef void (*Deallocator)(void *,void *);
71 MemArray():_nb_of_elem(0),_nb_of_elem_alloc(0),_ownership(false),_dealloc(0),_param_for_deallocator(0) { }
72 MemArray(const MemArray<T>& other);
73 bool isNull() const { return _pointer.isNull(); }
74 const T *getConstPointerLoc(std::size_t offset) const { return _pointer.getConstPointerLoc(offset); }
75 const T *getConstPointer() const { return _pointer.getConstPointer(); }
76 std::size_t getNbOfElem() const { return _nb_of_elem; }
77 std::size_t getNbOfElemAllocated() const { return _nb_of_elem_alloc; }
78 T *getPointer() { return _pointer.getPointer(); }
79 MemArray<T> &operator=(const MemArray<T>& other);
80 T operator[](std::size_t id) const { return _pointer.getConstPointer()[id]; }
81 T& operator[](std::size_t id) { return _pointer.getPointer()[id]; }
82 bool isEqual(const MemArray<T>& other, T prec, std::string& reason) const;
83 void repr(int sl, std::ostream& stream) const;
84 bool reprHeader(int sl, std::ostream& stream) const;
85 void reprZip(int sl, std::ostream& stream) const;
86 void reprNotTooLong(int sl, std::ostream& stream) const;
87 void fillWithValue(const T& val);
88 T *fromNoInterlace(int nbOfComp) const;
89 T *toNoInterlace(int nbOfComp) const;
91 void reverse(int nbOfComp);
92 void alloc(std::size_t nbOfElements);
93 void reserve(std::size_t newNbOfElements);
94 void reAlloc(std::size_t newNbOfElements);
95 void useArray(const T *array, bool ownership, DeallocType type, std::size_t nbOfElem);
96 void useExternalArrayWithRWAccess(const T *array, std::size_t nbOfElem);
97 void writeOnPlace(std::size_t id, T element0, const T *others, std::size_t sizeOfOthers);
98 template<class InputIterator>
99 void insertAtTheEnd(InputIterator first, InputIterator last);
100 void pushBack(T elem);
103 bool isDeallocatorCalled() const { return _ownership; }
104 Deallocator getDeallocator() const { return _dealloc; }
105 void setSpecificDeallocator(Deallocator dealloc) { _dealloc=dealloc; }
106 void setParameterForDeallocator(void *param) { _param_for_deallocator=param; }
107 void *getParameterForDeallocator() const { return _param_for_deallocator; }
109 ~MemArray() { destroy(); }
111 static void CPPDeallocator(void *pt, void *param);
112 static void CDeallocator(void *pt, void *param);
114 static void DestroyPointer(T *pt, Deallocator dealloc, void *param);
115 static Deallocator BuildFromType(DeallocType type);
117 std::size_t _nb_of_elem;
118 std::size_t _nb_of_elem_alloc;
120 MEDCouplingPointer<T> _pointer;
121 Deallocator _dealloc;
122 void *_param_for_deallocator;
128 class DataArray : public RefCountObject, public TimeLabel
131 MEDCOUPLING_EXPORT std::size_t getHeapMemorySizeWithoutChildren() const;
132 MEDCOUPLING_EXPORT std::vector<const BigMemoryObject *> getDirectChildrenWithNull() const;
133 MEDCOUPLING_EXPORT void setName(const std::string& name);
134 MEDCOUPLING_EXPORT void copyStringInfoFrom(const DataArray& other);
135 MEDCOUPLING_EXPORT void copyPartOfStringInfoFrom(const DataArray& other, const std::vector<int>& compoIds);
136 MEDCOUPLING_EXPORT void copyPartOfStringInfoFrom2(const std::vector<int>& compoIds, const DataArray& other);
137 MEDCOUPLING_EXPORT bool areInfoEqualsIfNotWhy(const DataArray& other, std::string& reason) const;
138 MEDCOUPLING_EXPORT bool areInfoEquals(const DataArray& other) const;
139 MEDCOUPLING_EXPORT std::string cppRepr(const std::string& varName) const;
140 MEDCOUPLING_EXPORT std::string getName() const { return _name; }
141 MEDCOUPLING_EXPORT const std::vector<std::string> &getInfoOnComponents() const { return _info_on_compo; }
142 MEDCOUPLING_EXPORT std::vector<std::string> &getInfoOnComponents() { return _info_on_compo; }
143 MEDCOUPLING_EXPORT void setInfoOnComponents(const std::vector<std::string>& info);
144 MEDCOUPLING_EXPORT void setInfoAndChangeNbOfCompo(const std::vector<std::string>& info);
145 MEDCOUPLING_EXPORT std::vector<std::string> getVarsOnComponent() const;
146 MEDCOUPLING_EXPORT std::vector<std::string> getUnitsOnComponent() const;
147 MEDCOUPLING_EXPORT std::string getInfoOnComponent(int i) const;
148 MEDCOUPLING_EXPORT std::string getVarOnComponent(int i) const;
149 MEDCOUPLING_EXPORT std::string getUnitOnComponent(int i) const;
150 MEDCOUPLING_EXPORT void setInfoOnComponent(int i, const std::string& info);
151 MEDCOUPLING_EXPORT std::size_t getNumberOfComponents() const { return _info_on_compo.size(); }
152 MEDCOUPLING_EXPORT void setPartOfValuesBase3(const DataArray *aBase, const int *bgTuples, const int *endTuples, int bgComp, int endComp, int stepComp, bool strictCompoCompare=true);
153 MEDCOUPLING_EXPORT virtual void *getVoidStarPointer() = 0;
154 MEDCOUPLING_EXPORT virtual DataArray *deepCopy() const = 0;
155 MEDCOUPLING_EXPORT virtual DataArray *buildNewEmptyInstance() const = 0;
156 MEDCOUPLING_EXPORT virtual bool isAllocated() const = 0;
157 MEDCOUPLING_EXPORT virtual void checkAllocated() const = 0;
158 MEDCOUPLING_EXPORT virtual void desallocate() = 0;
159 MEDCOUPLING_EXPORT virtual int getNumberOfTuples() const = 0;
160 MEDCOUPLING_EXPORT virtual std::size_t getNbOfElems() const = 0;
161 MEDCOUPLING_EXPORT virtual std::size_t getNbOfElemAllocated() const = 0;
162 MEDCOUPLING_EXPORT virtual void alloc(std::size_t nbOfTuple, std::size_t nbOfCompo=1) = 0;
163 MEDCOUPLING_EXPORT virtual void reAlloc(std::size_t newNbOfTuple) = 0;
164 MEDCOUPLING_EXPORT virtual void renumberInPlace(const int *old2New) = 0;
165 MEDCOUPLING_EXPORT virtual void renumberInPlaceR(const int *new2Old) = 0;
166 MEDCOUPLING_EXPORT virtual void setContigPartOfSelectedValues(int tupleIdStart, const DataArray *aBase, const DataArrayInt *tuplesSelec) = 0;
167 MEDCOUPLING_EXPORT virtual void setContigPartOfSelectedValuesSlice(int tupleIdStart, const DataArray *aBase, int bg, int end2, int step) = 0;
168 MEDCOUPLING_EXPORT virtual DataArray *selectByTupleRanges(const std::vector<std::pair<int,int> >& ranges) const = 0;
169 MEDCOUPLING_EXPORT virtual DataArray *keepSelectedComponents(const std::vector<int>& compoIds) const = 0;
170 MEDCOUPLING_EXPORT virtual DataArray *selectByTupleId(const int *new2OldBg, const int *new2OldEnd) const = 0;
171 MEDCOUPLING_EXPORT virtual DataArray *selectByTupleIdSafe(const int *new2OldBg, const int *new2OldEnd) const = 0;
172 MEDCOUPLING_EXPORT virtual DataArray *selectByTupleIdSafeSlice(int bg, int end2, int step) const = 0;
173 MEDCOUPLING_EXPORT virtual void rearrange(int newNbOfCompo) = 0;
174 MEDCOUPLING_EXPORT virtual void circularPermutation(int nbOfShift=1) = 0;
175 MEDCOUPLING_EXPORT virtual void circularPermutationPerTuple(int nbOfShift=1) = 0;
176 MEDCOUPLING_EXPORT virtual void reversePerTuple() = 0;
177 MEDCOUPLING_EXPORT void checkNbOfTuples(int nbOfTuples, const std::string& msg) const;
178 MEDCOUPLING_EXPORT void checkNbOfComps(int nbOfCompo, const std::string& msg) const;
179 MEDCOUPLING_EXPORT void checkNbOfTuplesAndComp(const DataArray& other, const std::string& msg) const;
180 MEDCOUPLING_EXPORT void checkNbOfTuplesAndComp(int nbOfTuples, int nbOfCompo, const std::string& msg) const;
181 MEDCOUPLING_EXPORT void checkNbOfElems(std::size_t nbOfElems, const std::string& msg) const;
182 MEDCOUPLING_EXPORT static void GetSlice(int start, int stop, int step, int sliceId, int nbOfSlices, int& startSlice, int& stopSlice);
183 MEDCOUPLING_EXPORT static int GetNumberOfItemGivenBES(int begin, int end, int step, const std::string& msg);
184 MEDCOUPLING_EXPORT static int GetNumberOfItemGivenBESRelative(int begin, int end, int step, const std::string& msg);
185 MEDCOUPLING_EXPORT static int GetPosOfItemGivenBESRelativeNoThrow(int value, int begin, int end, int step);
186 MEDCOUPLING_EXPORT static std::string GetVarNameFromInfo(const std::string& info);
187 MEDCOUPLING_EXPORT static std::string GetUnitFromInfo(const std::string& info);
188 MEDCOUPLING_EXPORT static std::string BuildInfoFromVarAndUnit(const std::string& var, const std::string& unit);
189 MEDCOUPLING_EXPORT static std::string GetAxisTypeRepr(MEDCouplingAxisType at);
190 MEDCOUPLING_EXPORT static DataArray *Aggregate(const std::vector<const DataArray *>& arrs);
191 MEDCOUPLING_EXPORT virtual void reprStream(std::ostream& stream) const = 0;
192 MEDCOUPLING_EXPORT virtual void reprZipStream(std::ostream& stream) const = 0;
193 MEDCOUPLING_EXPORT virtual void reprWithoutNameStream(std::ostream& stream) const;
194 MEDCOUPLING_EXPORT virtual void reprZipWithoutNameStream(std::ostream& stream) const = 0;
195 MEDCOUPLING_EXPORT virtual void reprCppStream(const std::string& varName, std::ostream& stream) const = 0;
196 MEDCOUPLING_EXPORT virtual void reprQuickOverview(std::ostream& stream) const = 0;
197 MEDCOUPLING_EXPORT virtual void reprQuickOverviewData(std::ostream& stream, std::size_t maxNbOfByteInRepr) const = 0;
202 MEDCOUPLING_EXPORT static void CheckValueInRange(int ref, int value, const std::string& msg);
203 MEDCOUPLING_EXPORT static void CheckValueInRangeEx(int value, int start, int end, const std::string& msg);
204 MEDCOUPLING_EXPORT static void CheckClosingParInRange(int ref, int value, const std::string& msg);
205 MEDCOUPLING_EXPORT static int EffectiveCircPerm(int nbOfShift, int nbOfTuples);
208 std::vector<std::string> _info_on_compo;
212 namespace MEDCoupling
217 class DataArrayTemplate : public DataArray
220 MEDCOUPLING_EXPORT static MCAuto< typename Traits<T>::ArrayTypeCh > NewFromStdVector(const typename std::vector<T>& v);
221 MEDCOUPLING_EXPORT std::vector< MCAuto< typename Traits<T>::ArrayTypeCh > > explodeComponents() const;
223 std::size_t getHeapMemorySizeWithoutChildren() const;
224 MEDCOUPLING_EXPORT void updateTime() const { }
226 MEDCOUPLING_EXPORT int getNumberOfTuples() const { return _info_on_compo.empty()?0:_mem.getNbOfElem()/getNumberOfComponents(); }
227 MEDCOUPLING_EXPORT std::size_t getNbOfElems() const { return _mem.getNbOfElem(); }
229 MEDCOUPLING_EXPORT void *getVoidStarPointer() { return getPointer(); }
230 MEDCOUPLING_EXPORT const T *getConstPointer() const { return _mem.getConstPointer(); }
231 MEDCOUPLING_EXPORT const T *begin() const { return getConstPointer(); }
232 MEDCOUPLING_EXPORT const T *end() const { return getConstPointer()+getNbOfElems(); }
233 void alloc(std::size_t nbOfTuple, std::size_t nbOfCompo=1);
234 void useArray(const T *array, bool ownership, DeallocType type, int nbOfTuple, int nbOfCompo);
235 void useExternalArrayWithRWAccess(const T *array, int nbOfTuple, int nbOfCompo);
236 T getIJSafe(int tupleId, int compoId) const;
237 MEDCOUPLING_EXPORT T getIJ(int tupleId, int compoId) const { return _mem[tupleId*_info_on_compo.size()+compoId]; }
238 MEDCOUPLING_EXPORT void setIJ(int tupleId, int compoId, T newVal) { _mem[tupleId*_info_on_compo.size()+compoId]=newVal; declareAsNew(); }
239 MEDCOUPLING_EXPORT void setIJSilent(int tupleId, int compoId, T newVal) { _mem[tupleId*_info_on_compo.size()+compoId]=newVal; }
240 MEDCOUPLING_EXPORT T *getPointer() { return _mem.getPointer(); declareAsNew(); }
242 bool isAllocated() const;
243 void checkAllocated() const;
245 void reserve(std::size_t nbOfElems);
246 void rearrange(int newNbOfCompo);
248 void pushBackSilent(T val);
249 void pushBackValsSilent(const T *valsBg, const T *valsEnd);
253 std::size_t getNbOfElemAllocated() const { return _mem.getNbOfElemAllocated(); }
254 void allocIfNecessary(int nbOfTuple, int nbOfCompo);
255 void deepCopyFrom(const DataArrayTemplate<T>& other);
257 void fillWithValue(T val);
258 void reAlloc(std::size_t newNbOfTuple);
259 void renumberInPlace(const int *old2New);
260 void renumberInPlaceR(const int *new2Old);
261 void sort(bool asc=true);
262 typename Traits<T>::ArrayType *renumber(const int *old2New) const;
263 typename Traits<T>::ArrayType *renumberR(const int *new2Old) const;
264 typename Traits<T>::ArrayType *renumberAndReduce(const int *old2New, int newNbOfTuple) const;
265 typename Traits<T>::ArrayType *changeNbOfComponents(int newNbOfComp, T dftValue) const;
266 typename Traits<T>::ArrayType *subArray(int tupleIdBg, int tupleIdEnd=-1) const;
267 MCAuto<typename Traits<T>::ArrayTypeCh> selectPartDef(const PartDefinition* pd) const;
268 void circularPermutation(int nbOfShift=1);
269 void circularPermutationPerTuple(int nbOfShift=1);
270 void reversePerTuple();
271 void setPartOfValues1(const typename Traits<T>::ArrayType *a, int bgTuples, int endTuples, int stepTuples, int bgComp, int endComp, int stepComp, bool strictCompoCompare=true);
272 void setPartOfValuesSimple1(T a, int bgTuples, int endTuples, int stepTuples, int bgComp, int endComp, int stepComp);
273 void setPartOfValues2(const typename Traits<T>::ArrayType *a, const int *bgTuples, const int *endTuples, const int *bgComp, const int *endComp, bool strictCompoCompare=true);
274 void setPartOfValuesSimple2(T a, const int *bgTuples, const int *endTuples, const int *bgComp, const int *endComp);
275 void setPartOfValues3(const typename Traits<T>::ArrayType *a, const int *bgTuples, const int *endTuples, int bgComp, int endComp, int stepComp, bool strictCompoCompare=true);
276 void setPartOfValuesSimple3(T a, const int *bgTuples, const int *endTuples, int bgComp, int endComp, int stepComp);
277 void setPartOfValues4(const typename Traits<T>::ArrayType *a, int bgTuples, int endTuples, int stepTuples, const int *bgComp, const int *endComp, bool strictCompoCompare=true);
278 void setPartOfValuesSimple4(T a, int bgTuples, int endTuples, int stepTuples, const int *bgComp, const int *endComp);
279 void setPartOfValuesAdv(const typename Traits<T>::ArrayType *a, const DataArrayInt *tuplesSelec);
280 void setContigPartOfSelectedValues(int tupleIdStart, const DataArray *aBase, const DataArrayInt *tuplesSelec);
281 void setContigPartOfSelectedValuesSlice(int tupleIdStart, const DataArray *aBase, int bg, int end2, int step);
282 T getMaxValue(int& tupleId) const;
283 T getMaxValueInArray() const;
284 T getMinValue(int& tupleId) const;
285 T getMinValueInArray() const;
287 MEDCOUPLING_EXPORT MemArray<T>& accessToMemArray() { return _mem; }
288 MEDCOUPLING_EXPORT const MemArray<T>& accessToMemArray() const { return _mem; }
290 typename Traits<T>::ArrayType *mySelectByTupleId(const int *new2OldBg, const int *new2OldEnd) const;
291 typename Traits<T>::ArrayType *mySelectByTupleId(const DataArrayInt& di) const;
292 typename Traits<T>::ArrayType *mySelectByTupleIdSafe(const int *new2OldBg, const int *new2OldEnd) const;
293 typename Traits<T>::ArrayType *myKeepSelectedComponents(const std::vector<int>& compoIds) const;
294 typename Traits<T>::ArrayType *mySelectByTupleIdSafeSlice(int bg, int end2, int step) const;
295 typename Traits<T>::ArrayType *mySelectByTupleRanges(const std::vector<std::pair<int,int> >& ranges) const;
301 class DataArrayTemplateClassic : public DataArrayTemplate<T>
304 MEDCOUPLING_EXPORT MCAuto<DataArrayDouble> convertToDblArr() const;
305 MEDCOUPLING_EXPORT MCAuto<DataArrayInt> convertToIntArr() const;
306 MEDCOUPLING_EXPORT MCAuto<DataArrayFloat> convertToFloatArr() const;
307 MEDCOUPLING_EXPORT void applyLin(T a, T b, int compoId);
308 MEDCOUPLING_EXPORT void applyLin(T a, T b);
309 MEDCOUPLING_EXPORT typename Traits<T>::ArrayType *negate() const;
310 MEDCOUPLING_EXPORT void addEqual(const typename Traits<T>::ArrayType *other);
311 MEDCOUPLING_EXPORT void substractEqual(const typename Traits<T>::ArrayType *other);
312 MEDCOUPLING_EXPORT void multiplyEqual(const typename Traits<T>::ArrayType *other);
313 MEDCOUPLING_EXPORT void divideEqual(const typename Traits<T>::ArrayType *other);
314 MEDCOUPLING_EXPORT static typename Traits<T>::ArrayType *Substract(const typename Traits<T>::ArrayType *a1, const typename Traits<T>::ArrayType *a2);
315 MEDCOUPLING_EXPORT static typename Traits<T>::ArrayType *Divide(const typename Traits<T>::ArrayType *a1, const typename Traits<T>::ArrayType *a2);
316 MEDCOUPLING_EXPORT static typename Traits<T>::ArrayType *Add(const typename Traits<T>::ArrayType *a1, const typename Traits<T>::ArrayType *a2);
317 MEDCOUPLING_EXPORT static typename Traits<T>::ArrayType *Multiply(const typename Traits<T>::ArrayType *a1, const typename Traits<T>::ArrayType *a2);
318 MEDCOUPLING_EXPORT static typename Traits<T>::ArrayType *Meld(const typename Traits<T>::ArrayType *a1, const typename Traits<T>::ArrayType *a2);
319 MEDCOUPLING_EXPORT static typename Traits<T>::ArrayType *Meld(const std::vector<const typename Traits<T>::ArrayType *>& arr);
320 MEDCOUPLING_EXPORT MCAuto<DataArrayInt> findIdsGreaterOrEqualTo(T val) const;
321 MEDCOUPLING_EXPORT MCAuto<DataArrayInt> findIdsGreaterThan(T val) const;
322 MEDCOUPLING_EXPORT MCAuto<DataArrayInt> findIdsLowerOrEqualTo(T val) const;
323 MEDCOUPLING_EXPORT MCAuto<DataArrayInt> findIdsLowerThan(T val) const;
324 MEDCOUPLING_EXPORT DataArrayInt *findIdsStrictlyNegative() const;
326 static typename Traits<T>::ArrayType *PerformCopyOrIncrRef(bool dCpy, const typename Traits<T>::ArrayType& self);
328 MCAuto<DataArrayInt> findIdsAdv(const OP& op) const;
331 MCAuto< typename Traits<U>::ArrayType > convertToOtherTypeOfArr() const;
333 void somethingEqual(const typename Traits<T>::ArrayType *other);
337 class DataArrayTemplateFP : public DataArrayTemplateClassic<T>
340 MEDCOUPLING_EXPORT bool isUniform(T val, T eps) const;
341 MEDCOUPLING_EXPORT void iota(T init=0.);
345 namespace MEDCoupling
347 class DataArrayFloatIterator;
348 class DataArrayFloat : public DataArrayTemplateFP<float>
351 MEDCOUPLING_EXPORT static DataArrayFloat *New();
352 public:// abstract method overload
353 MEDCOUPLING_EXPORT DataArrayFloat *deepCopy() const;
354 MEDCOUPLING_EXPORT DataArrayFloat *buildNewEmptyInstance() const { return DataArrayFloat::New(); }
355 MEDCOUPLING_EXPORT DataArrayFloat *selectByTupleRanges(const std::vector<std::pair<int,int> >& ranges) const { return DataArrayTemplateFP<float>::mySelectByTupleRanges(ranges); }
356 MEDCOUPLING_EXPORT DataArrayFloat *keepSelectedComponents(const std::vector<int>& compoIds) const { return DataArrayTemplateFP<float>::myKeepSelectedComponents(compoIds); }
357 MEDCOUPLING_EXPORT DataArrayFloat *selectByTupleId(const int *new2OldBg, const int *new2OldEnd) const { return DataArrayTemplateFP<float>::mySelectByTupleId(new2OldBg,new2OldEnd); }
358 MEDCOUPLING_EXPORT DataArrayFloat *selectByTupleIdSafe(const int *new2OldBg, const int *new2OldEnd) const { return DataArrayTemplateFP<float>::mySelectByTupleIdSafe(new2OldBg,new2OldEnd); }
359 MEDCOUPLING_EXPORT DataArrayFloat *selectByTupleIdSafeSlice(int bg, int end2, int step) const { return DataArrayTemplateFP<float>::mySelectByTupleIdSafeSlice(bg,end2,step); }
360 MEDCOUPLING_EXPORT void reprStream(std::ostream& stream) const;
361 MEDCOUPLING_EXPORT void reprZipStream(std::ostream& stream) const;
362 MEDCOUPLING_EXPORT void reprZipWithoutNameStream(std::ostream& stream) const;
363 MEDCOUPLING_EXPORT void reprCppStream(const std::string& varName, std::ostream& stream) const;
364 MEDCOUPLING_EXPORT void reprQuickOverview(std::ostream& stream) const;
365 MEDCOUPLING_EXPORT void reprQuickOverviewData(std::ostream& stream, std::size_t maxNbOfByteInRepr) const;
366 public:// non abstract but essential
367 MEDCOUPLING_EXPORT std::string reprNotTooLong() const;
368 MEDCOUPLING_EXPORT void reprNotTooLongStream(std::ostream& stream) const;
369 MEDCOUPLING_EXPORT void reprNotTooLongWithoutNameStream(std::ostream& stream) const;
370 MEDCOUPLING_EXPORT bool isEqual(const DataArrayFloat& other, float prec) const;
371 MEDCOUPLING_EXPORT bool isEqualIfNotWhy(const DataArrayFloat& other, float prec, std::string& reason) const;
372 MEDCOUPLING_EXPORT bool isEqualWithoutConsideringStr(const DataArrayFloat& other, float prec) const;
373 MEDCOUPLING_EXPORT DataArrayFloat *performCopyOrIncrRef(bool deepCopy) const;
375 MEDCOUPLING_EXPORT DataArrayFloatIterator *iterator();
377 ~DataArrayFloat() { }
382 namespace MEDCoupling
384 class DataArrayDoubleIterator;
385 class DataArrayDouble : public DataArrayTemplateFP<double>
388 MEDCOUPLING_EXPORT static DataArrayDouble *New();
389 MEDCOUPLING_EXPORT double doubleValue() const;
390 MEDCOUPLING_EXPORT DataArrayDouble *deepCopy() const;
391 MEDCOUPLING_EXPORT DataArrayDouble *buildNewEmptyInstance() const { return DataArrayDouble::New(); }
392 MEDCOUPLING_EXPORT DataArrayDouble *performCopyOrIncrRef(bool deepCopy) const;
393 MEDCOUPLING_EXPORT void fillWithZero();
394 MEDCOUPLING_EXPORT void checkMonotonic(bool increasing, double eps) const;
395 MEDCOUPLING_EXPORT bool isMonotonic(bool increasing, double eps) const;
396 MEDCOUPLING_EXPORT std::string repr() const;
397 MEDCOUPLING_EXPORT std::string reprZip() const;
398 MEDCOUPLING_EXPORT std::string reprNotTooLong() const;
399 MEDCOUPLING_EXPORT void writeVTK(std::ostream& ofs, int indent, const std::string& nameInFile, DataArrayByte *byteArr) const;
400 MEDCOUPLING_EXPORT void reprStream(std::ostream& stream) const;
401 MEDCOUPLING_EXPORT void reprZipStream(std::ostream& stream) const;
402 MEDCOUPLING_EXPORT void reprNotTooLongStream(std::ostream& stream) const;
403 MEDCOUPLING_EXPORT void reprWithoutNameStream(std::ostream& stream) const;
404 MEDCOUPLING_EXPORT void reprZipWithoutNameStream(std::ostream& stream) const;
405 MEDCOUPLING_EXPORT void reprNotTooLongWithoutNameStream(std::ostream& stream) const;
406 MEDCOUPLING_EXPORT void reprCppStream(const std::string& varName, std::ostream& stream) const;
407 MEDCOUPLING_EXPORT void reprQuickOverview(std::ostream& stream) const;
408 MEDCOUPLING_EXPORT void reprQuickOverviewData(std::ostream& stream, std::size_t maxNbOfByteInRepr) const;
409 MEDCOUPLING_EXPORT bool isEqual(const DataArrayDouble& other, double prec) const;
410 MEDCOUPLING_EXPORT bool isEqualIfNotWhy(const DataArrayDouble& other, double prec, std::string& reason) const;
411 MEDCOUPLING_EXPORT bool isEqualWithoutConsideringStr(const DataArrayDouble& other, double prec) const;
412 MEDCOUPLING_EXPORT DataArrayDouble *fromNoInterlace() const;
413 MEDCOUPLING_EXPORT DataArrayDouble *toNoInterlace() const;
414 MEDCOUPLING_EXPORT DataArrayDouble *selectByTupleId(const int *new2OldBg, const int *new2OldEnd) const { return DataArrayTemplateFP<double>::mySelectByTupleId(new2OldBg,new2OldEnd); }
415 MEDCOUPLING_EXPORT DataArrayDouble *selectByTupleId(const DataArrayInt& di) const { return DataArrayTemplateFP<double>::mySelectByTupleId(di); }
416 MEDCOUPLING_EXPORT DataArrayDouble *selectByTupleIdSafe(const int *new2OldBg, const int *new2OldEnd) const { return DataArrayTemplateFP<double>::mySelectByTupleIdSafe(new2OldBg,new2OldEnd); }
417 MEDCOUPLING_EXPORT DataArrayDouble *keepSelectedComponents(const std::vector<int>& compoIds) const { return DataArrayTemplateFP<double>::myKeepSelectedComponents(compoIds); }
418 MEDCOUPLING_EXPORT DataArrayDouble *selectByTupleIdSafeSlice(int bg, int end2, int step) const { return DataArrayTemplateFP<double>::mySelectByTupleIdSafeSlice(bg,end2,step); }
419 MEDCOUPLING_EXPORT DataArrayDouble *selectByTupleRanges(const std::vector<std::pair<int,int> >& ranges) const { return DataArrayTemplateFP<double>::mySelectByTupleRanges(ranges); }
420 MEDCOUPLING_EXPORT void meldWith(const DataArrayDouble *other);
421 MEDCOUPLING_EXPORT bool areIncludedInMe(const DataArrayDouble *other, double prec, DataArrayInt *&tupleIds) const;
422 MEDCOUPLING_EXPORT void findCommonTuples(double prec, int limitTupleId, DataArrayInt *&comm, DataArrayInt *&commIndex) const;
423 MEDCOUPLING_EXPORT double minimalDistanceTo(const DataArrayDouble *other, int& thisTupleId, int& otherTupleId) const;
424 MEDCOUPLING_EXPORT DataArrayDouble *duplicateEachTupleNTimes(int nbTimes) const;
425 MEDCOUPLING_EXPORT DataArrayDouble *getDifferentValues(double prec, int limitTupleId=-1) const;
426 MEDCOUPLING_EXPORT DataArrayInt *findClosestTupleId(const DataArrayDouble *other) const;
427 MEDCOUPLING_EXPORT DataArrayInt *computeNbOfInteractionsWith(const DataArrayDouble *otherBBoxFrmt, double eps) const;
428 MEDCOUPLING_EXPORT void setSelectedComponents(const DataArrayDouble *a, const std::vector<int>& compoIds);
429 MEDCOUPLING_EXPORT void getTuple(int tupleId, double *res) const { std::copy(_mem.getConstPointerLoc(tupleId*_info_on_compo.size()),_mem.getConstPointerLoc((tupleId+1)*_info_on_compo.size()),res); }
430 MEDCOUPLING_EXPORT static void SetArrayIn(DataArrayDouble *newArray, DataArrayDouble* &arrayToSet);
431 MEDCOUPLING_EXPORT DataArrayDoubleIterator *iterator();
432 template<class InputIterator>
433 void insertAtTheEnd(InputIterator first, InputIterator last);
434 MEDCOUPLING_EXPORT void aggregate(const DataArrayDouble *other);
435 MEDCOUPLING_EXPORT void writeOnPlace(std::size_t id, double element0, const double *others, int sizeOfOthers) { _mem.writeOnPlace(id,element0,others,sizeOfOthers); }
436 MEDCOUPLING_EXPORT void checkNoNullValues() const;
437 MEDCOUPLING_EXPORT void getMinMaxPerComponent(double *bounds) const;
438 MEDCOUPLING_EXPORT DataArrayDouble *computeBBoxPerTuple(double epsilon=0.0) const;
439 MEDCOUPLING_EXPORT void computeTupleIdsNearTuples(const DataArrayDouble *other, double eps, DataArrayInt *& c, DataArrayInt *& cI) const;
440 MEDCOUPLING_EXPORT void recenterForMaxPrecision(double eps);
441 MEDCOUPLING_EXPORT double getMaxValue2(DataArrayInt*& tupleIds) const;
442 MEDCOUPLING_EXPORT double getMinValue2(DataArrayInt*& tupleIds) const;
443 MEDCOUPLING_EXPORT int count(double value, double eps) const;
444 MEDCOUPLING_EXPORT double getAverageValue() const;
445 MEDCOUPLING_EXPORT double norm2() const;
446 MEDCOUPLING_EXPORT double normMax() const;
447 MEDCOUPLING_EXPORT double normMin() const;
448 MEDCOUPLING_EXPORT void accumulate(double *res) const;
449 MEDCOUPLING_EXPORT double accumulate(int compId) const;
450 MEDCOUPLING_EXPORT DataArrayDouble *accumulatePerChunck(const int *bgOfIndex, const int *endOfIndex) const;
451 MEDCOUPLING_EXPORT MCAuto<DataArrayDouble> cumSum() const;
452 MEDCOUPLING_EXPORT double distanceToTuple(const double *tupleBg, const double *tupleEnd, int& tupleId) const;
453 MEDCOUPLING_EXPORT DataArrayDouble *fromPolarToCart() const;
454 MEDCOUPLING_EXPORT DataArrayDouble *fromCylToCart() const;
455 MEDCOUPLING_EXPORT DataArrayDouble *fromSpherToCart() const;
456 MEDCOUPLING_EXPORT DataArrayDouble *cartesianize(MEDCouplingAxisType atOfThis) const;
457 MEDCOUPLING_EXPORT DataArrayDouble *fromCartToPolar() const;
458 MEDCOUPLING_EXPORT DataArrayDouble *fromCartToCyl() const;
459 MEDCOUPLING_EXPORT DataArrayDouble *fromCartToSpher() const;
460 MEDCOUPLING_EXPORT DataArrayDouble *fromCartToCylGiven(const DataArrayDouble *coords, const double center[3], const double vect[3]) const;
461 MEDCOUPLING_EXPORT DataArrayDouble *doublyContractedProduct() const;
462 MEDCOUPLING_EXPORT DataArrayDouble *determinant() const;
463 MEDCOUPLING_EXPORT DataArrayDouble *eigenValues() const;
464 MEDCOUPLING_EXPORT DataArrayDouble *eigenVectors() const;
465 MEDCOUPLING_EXPORT DataArrayDouble *inverse() const;
466 MEDCOUPLING_EXPORT DataArrayDouble *trace() const;
467 MEDCOUPLING_EXPORT DataArrayDouble *deviator() const;
468 MEDCOUPLING_EXPORT DataArrayDouble *magnitude() const;
469 MEDCOUPLING_EXPORT DataArrayDouble *sumPerTuple() const;
470 MEDCOUPLING_EXPORT DataArrayDouble *maxPerTuple() const;
471 MEDCOUPLING_EXPORT DataArrayDouble *maxPerTupleWithCompoId(DataArrayInt* &compoIdOfMaxPerTuple) const;
472 MEDCOUPLING_EXPORT DataArrayDouble *buildEuclidianDistanceDenseMatrix() const;
473 MEDCOUPLING_EXPORT DataArrayDouble *buildEuclidianDistanceDenseMatrixWith(const DataArrayDouble *other) const;
474 MEDCOUPLING_EXPORT void sortPerTuple(bool asc);
475 MEDCOUPLING_EXPORT void abs();
476 MEDCOUPLING_EXPORT DataArrayDouble *computeAbs() const;
477 MEDCOUPLING_EXPORT void applyInv(double numerator);
478 MEDCOUPLING_EXPORT void applyPow(double val);
479 MEDCOUPLING_EXPORT void applyRPow(double val);
480 MEDCOUPLING_EXPORT DataArrayDouble *applyFunc(int nbOfComp, FunctionToEvaluate func) const;
481 MEDCOUPLING_EXPORT DataArrayDouble *applyFunc(int nbOfComp, const std::string& func, bool isSafe=true) const;
482 MEDCOUPLING_EXPORT DataArrayDouble *applyFunc(const std::string& func, bool isSafe=true) const;
483 MEDCOUPLING_EXPORT void applyFuncOnThis(const std::string& func, bool isSafe=true);
484 MEDCOUPLING_EXPORT DataArrayDouble *applyFuncCompo(int nbOfComp, const std::string& func, bool isSafe=true) const;
485 MEDCOUPLING_EXPORT DataArrayDouble *applyFuncNamedCompo(int nbOfComp, const std::vector<std::string>& varsOrder, const std::string& func, bool isSafe=true) const;
486 MEDCOUPLING_EXPORT void applyFuncFast32(const std::string& func);
487 MEDCOUPLING_EXPORT void applyFuncFast64(const std::string& func);
488 MEDCOUPLING_EXPORT MCAuto<DataArrayDouble> symmetry3DPlane(const double point[3], const double normalVector[3]) const;
489 MEDCOUPLING_EXPORT DataArrayInt *findIdsInRange(double vmin, double vmax) const;
490 MEDCOUPLING_EXPORT DataArrayInt *findIdsNotInRange(double vmin, double vmax) const;
491 MEDCOUPLING_EXPORT static DataArrayDouble *Aggregate(const DataArrayDouble *a1, const DataArrayDouble *a2);
492 MEDCOUPLING_EXPORT static DataArrayDouble *Aggregate(const std::vector<const DataArrayDouble *>& arr);
493 MEDCOUPLING_EXPORT static DataArrayDouble *Dot(const DataArrayDouble *a1, const DataArrayDouble *a2);
494 MEDCOUPLING_EXPORT static DataArrayDouble *CrossProduct(const DataArrayDouble *a1, const DataArrayDouble *a2);
495 MEDCOUPLING_EXPORT static DataArrayDouble *Max(const DataArrayDouble *a1, const DataArrayDouble *a2);
496 MEDCOUPLING_EXPORT static DataArrayDouble *Min(const DataArrayDouble *a1, const DataArrayDouble *a2);
497 MEDCOUPLING_EXPORT static DataArrayDouble *Pow(const DataArrayDouble *a1, const DataArrayDouble *a2);
498 MEDCOUPLING_EXPORT void powEqual(const DataArrayDouble *other);
499 MEDCOUPLING_EXPORT std::vector<bool> toVectorOfBool(double eps) const;
500 MEDCOUPLING_EXPORT static void Rotate2DAlg(const double *center, double angle, int nbNodes, const double *coordsIn, double *coordsOut);
501 MEDCOUPLING_EXPORT static void Rotate3DAlg(const double *center, const double *vect, double angle, int nbNodes, const double *coordsIn, double *coordsOut);
502 MEDCOUPLING_EXPORT static void Symmetry3DPlane(const double point[3], const double normalVector[3], int nbNodes, const double *coordsIn, double *coordsOut);
503 MEDCOUPLING_EXPORT static void GiveBaseForPlane(const double normalVector[3], double baseOfPlane[9]);
505 MEDCOUPLING_EXPORT void getTinySerializationIntInformation(std::vector<int>& tinyInfo) const;
506 MEDCOUPLING_EXPORT void getTinySerializationStrInformation(std::vector<std::string>& tinyInfo) const;
507 MEDCOUPLING_EXPORT bool resizeForUnserialization(const std::vector<int>& tinyInfoI);
508 MEDCOUPLING_EXPORT void finishUnserialization(const std::vector<int>& tinyInfoI, const std::vector<std::string>& tinyInfoS);
510 template<int SPACEDIM>
511 void findCommonTuplesAlg(const double *bbox, int nbNodes, int limitNodeId, double prec, DataArrayInt *c, DataArrayInt *cI) const;
512 template<int SPACEDIM>
513 static void FindClosestTupleIdAlg(const BBTreePts<SPACEDIM,int>& myTree, double dist, const double *pos, int nbOfTuples, const double *thisPt, int thisNbOfTuples, int *res);
514 template<int SPACEDIM>
515 static void FindTupleIdsNearTuplesAlg(const BBTreePts<SPACEDIM,int>& myTree, const double *pos, int nbOfTuples, double eps,
516 DataArrayInt *c, DataArrayInt *cI);
518 ~DataArrayDouble() { }
519 DataArrayDouble() { }
522 class DataArrayIntIterator;
524 class DataArrayInt : public DataArrayTemplateClassic<int>
527 MEDCOUPLING_EXPORT static DataArrayInt *New();
528 MEDCOUPLING_EXPORT int intValue() const;
529 MEDCOUPLING_EXPORT int getHashCode() const;
530 MEDCOUPLING_EXPORT DataArrayInt *deepCopy() const;
531 MEDCOUPLING_EXPORT DataArrayInt *performCopyOrIncrRef(bool deepCopy) const;
532 MEDCOUPLING_EXPORT DataArrayInt *buildNewEmptyInstance() const { return DataArrayInt::New(); }
533 MEDCOUPLING_EXPORT bool isEqual(const DataArrayInt& other) const;
534 MEDCOUPLING_EXPORT bool isEqualIfNotWhy(const DataArrayInt& other, std::string& reason) const;
535 MEDCOUPLING_EXPORT bool isEqualWithoutConsideringStr(const DataArrayInt& other) const;
536 MEDCOUPLING_EXPORT bool isEqualWithoutConsideringStrAndOrder(const DataArrayInt& other) const;
537 MEDCOUPLING_EXPORT bool isFittingWith(const std::vector<bool>& v) const;
538 MEDCOUPLING_EXPORT void switchOnTupleEqualTo(int val, std::vector<bool>& vec) const;
539 MEDCOUPLING_EXPORT void switchOnTupleNotEqualTo(int val, std::vector<bool>& vec) const;
540 MEDCOUPLING_EXPORT DataArrayInt *buildPermutationArr(const DataArrayInt& other) const;
541 MEDCOUPLING_EXPORT DataArrayInt *indicesOfSubPart(const DataArrayInt& partOfThis) const;
542 MEDCOUPLING_EXPORT DataArrayInt *sumPerTuple() const;
543 MEDCOUPLING_EXPORT void checkMonotonic(bool increasing) const;
544 MEDCOUPLING_EXPORT bool isMonotonic(bool increasing) const;
545 MEDCOUPLING_EXPORT void checkStrictlyMonotonic(bool increasing) const;
546 MEDCOUPLING_EXPORT bool isStrictlyMonotonic(bool increasing) const;
547 MEDCOUPLING_EXPORT void fillWithZero();
548 MEDCOUPLING_EXPORT void iota(int init=0);
549 MEDCOUPLING_EXPORT std::string repr() const;
550 MEDCOUPLING_EXPORT std::string reprZip() const;
551 MEDCOUPLING_EXPORT std::string reprNotTooLong() const;
552 MEDCOUPLING_EXPORT void writeVTK(std::ostream& ofs, int indent, const std::string& type, const std::string& nameInFile, DataArrayByte *byteArr) const;
553 MEDCOUPLING_EXPORT void reprStream(std::ostream& stream) const;
554 MEDCOUPLING_EXPORT void reprZipStream(std::ostream& stream) const;
555 MEDCOUPLING_EXPORT void reprNotTooLongStream(std::ostream& stream) const;
556 MEDCOUPLING_EXPORT void reprWithoutNameStream(std::ostream& stream) const;
557 MEDCOUPLING_EXPORT void reprZipWithoutNameStream(std::ostream& stream) const;
558 MEDCOUPLING_EXPORT void reprNotTooLongWithoutNameStream(std::ostream& stream) const;
559 MEDCOUPLING_EXPORT void reprCppStream(const std::string& varName, std::ostream& stream) const;
560 MEDCOUPLING_EXPORT void reprQuickOverview(std::ostream& stream) const;
561 MEDCOUPLING_EXPORT void reprQuickOverviewData(std::ostream& stream, std::size_t maxNbOfByteInRepr) const;
562 MEDCOUPLING_EXPORT void transformWithIndArr(const int *indArrBg, const int *indArrEnd);
563 MEDCOUPLING_EXPORT DataArrayInt *transformWithIndArrR(const int *indArrBg, const int *indArrEnd) const;
564 MEDCOUPLING_EXPORT void splitByValueRange(const int *arrBg, const int *arrEnd,
565 DataArrayInt *& castArr, DataArrayInt *& rankInsideCast, DataArrayInt *& castsPresent) const;
566 MEDCOUPLING_EXPORT bool isRange(int& strt, int& sttoopp, int& stteepp) const;
567 MEDCOUPLING_EXPORT DataArrayInt *invertArrayO2N2N2O(int newNbOfElem) const;
568 MEDCOUPLING_EXPORT DataArrayInt *invertArrayN2O2O2N(int oldNbOfElem) const;
569 MEDCOUPLING_EXPORT DataArrayInt *invertArrayO2N2N2OBis(int newNbOfElem) const;
570 MEDCOUPLING_EXPORT DataArrayInt *fromNoInterlace() const;
571 MEDCOUPLING_EXPORT DataArrayInt *toNoInterlace() const;
572 MEDCOUPLING_EXPORT DataArrayInt *selectByTupleId(const int *new2OldBg, const int *new2OldEnd) const { return DataArrayTemplate<int>::mySelectByTupleId(new2OldBg,new2OldEnd); }
573 MEDCOUPLING_EXPORT DataArrayInt *selectByTupleId(const DataArrayInt& di) const { return DataArrayTemplate<int>::mySelectByTupleId(di); }
574 MEDCOUPLING_EXPORT DataArrayInt *selectByTupleIdSafe(const int *new2OldBg, const int *new2OldEnd) const { return DataArrayTemplate<int>::mySelectByTupleIdSafe(new2OldBg,new2OldEnd); }
575 MEDCOUPLING_EXPORT DataArrayInt *keepSelectedComponents(const std::vector<int>& compoIds) const { return DataArrayTemplate<int>::myKeepSelectedComponents(compoIds); }
576 MEDCOUPLING_EXPORT DataArrayInt *selectByTupleIdSafeSlice(int bg, int end2, int step) const { return DataArrayTemplate<int>::mySelectByTupleIdSafeSlice(bg,end2,step); }
577 MEDCOUPLING_EXPORT DataArrayInt *selectByTupleRanges(const std::vector<std::pair<int,int> >& ranges) const { return DataArrayTemplate<int>::mySelectByTupleRanges(ranges); }
578 MEDCOUPLING_EXPORT DataArrayInt *checkAndPreparePermutation() const;
579 MEDCOUPLING_EXPORT static DataArrayInt *FindPermutationFromFirstToSecond(const DataArrayInt *ids1, const DataArrayInt *ids2);
580 MEDCOUPLING_EXPORT void changeSurjectiveFormat(int targetNb, DataArrayInt *&arr, DataArrayInt *&arrI) const;
581 MEDCOUPLING_EXPORT static DataArrayInt *ConvertIndexArrayToO2N(int nbOfOldTuples, const int *arr, const int *arrIBg, const int *arrIEnd, int &newNbOfTuples);
582 MEDCOUPLING_EXPORT DataArrayInt *buildPermArrPerLevel() const;
583 MEDCOUPLING_EXPORT bool isIota(int sizeExpected) const;
584 MEDCOUPLING_EXPORT bool isUniform(int val) const;
585 MEDCOUPLING_EXPORT bool hasUniqueValues() const;
586 MEDCOUPLING_EXPORT void meldWith(const DataArrayInt *other);
587 MEDCOUPLING_EXPORT void setSelectedComponents(const DataArrayInt *a, const std::vector<int>& compoIds);
588 MEDCOUPLING_EXPORT void getTuple(int tupleId, int *res) const { std::copy(_mem.getConstPointerLoc(tupleId*_info_on_compo.size()),_mem.getConstPointerLoc((tupleId+1)*_info_on_compo.size()),res); }
589 MEDCOUPLING_EXPORT static void SetArrayIn(DataArrayInt *newArray, DataArrayInt* &arrayToSet);
590 MEDCOUPLING_EXPORT DataArrayIntIterator *iterator();
591 MEDCOUPLING_EXPORT DataArrayInt *findIdsEqual(int val) const;
592 MEDCOUPLING_EXPORT DataArrayInt *findIdsNotEqual(int val) const;
593 MEDCOUPLING_EXPORT DataArrayInt *findIdsEqualList(const int *valsBg, const int *valsEnd) const;
594 MEDCOUPLING_EXPORT DataArrayInt *findIdsNotEqualList(const int *valsBg, const int *valsEnd) const;
595 MEDCOUPLING_EXPORT DataArrayInt *findIdsEqualTuple(const int *tupleBg, const int *tupleEnd) const;
596 MEDCOUPLING_EXPORT int changeValue(int oldValue, int newValue);
597 MEDCOUPLING_EXPORT int findIdFirstEqualTuple(const std::vector<int>& tupl) const;
598 MEDCOUPLING_EXPORT int findIdFirstEqual(int value) const;
599 MEDCOUPLING_EXPORT int findIdFirstEqual(const std::vector<int>& vals) const;
600 MEDCOUPLING_EXPORT int findIdSequence(const std::vector<int>& vals) const;
601 MEDCOUPLING_EXPORT bool presenceOfTuple(const std::vector<int>& tupl) const;
602 MEDCOUPLING_EXPORT bool presenceOfValue(int value) const;
603 MEDCOUPLING_EXPORT bool presenceOfValue(const std::vector<int>& vals) const;
604 MEDCOUPLING_EXPORT int count(int value) const;
605 MEDCOUPLING_EXPORT void accumulate(int *res) const;
606 MEDCOUPLING_EXPORT int accumulate(int compId) const;
607 MEDCOUPLING_EXPORT DataArrayInt *accumulatePerChunck(const int *bgOfIndex, const int *endOfIndex) const;
608 MEDCOUPLING_EXPORT void getMinMaxValues(int& minValue, int& maxValue) const;
609 MEDCOUPLING_EXPORT void abs();
610 MEDCOUPLING_EXPORT DataArrayInt *computeAbs() const;
611 MEDCOUPLING_EXPORT void applyInv(int numerator);
612 MEDCOUPLING_EXPORT void applyDivideBy(int val);
613 MEDCOUPLING_EXPORT void applyModulus(int val);
614 MEDCOUPLING_EXPORT void applyRModulus(int val);
615 MEDCOUPLING_EXPORT void applyPow(int val);
616 MEDCOUPLING_EXPORT void applyRPow(int val);
617 MEDCOUPLING_EXPORT DataArrayInt *findIdsInRange(int vmin, int vmax) const;
618 MEDCOUPLING_EXPORT DataArrayInt *findIdsNotInRange(int vmin, int vmax) const;
619 MEDCOUPLING_EXPORT bool checkAllIdsInRange(int vmin, int vmax) const;
620 MEDCOUPLING_EXPORT static DataArrayInt *Aggregate(const DataArrayInt *a1, const DataArrayInt *a2, int offsetA2);
621 MEDCOUPLING_EXPORT static DataArrayInt *Aggregate(const std::vector<const DataArrayInt *>& arr);
622 MEDCOUPLING_EXPORT static DataArrayInt *AggregateIndexes(const std::vector<const DataArrayInt *>& arrs);
623 MEDCOUPLING_EXPORT static DataArrayInt *MakePartition(const std::vector<const DataArrayInt *>& groups, int newNb, std::vector< std::vector<int> >& fidsOfGroups);
624 MEDCOUPLING_EXPORT static DataArrayInt *BuildUnion(const std::vector<const DataArrayInt *>& arr);
625 MEDCOUPLING_EXPORT static DataArrayInt *BuildIntersection(const std::vector<const DataArrayInt *>& arr);
626 MEDCOUPLING_EXPORT static DataArrayInt *BuildListOfSwitchedOn(const std::vector<bool>& v);
627 MEDCOUPLING_EXPORT static DataArrayInt *BuildListOfSwitchedOff(const std::vector<bool>& v);
628 MEDCOUPLING_EXPORT static void PutIntoToSkylineFrmt(const std::vector< std::vector<int> >& v, DataArrayInt *& data, DataArrayInt *& dataIndex);
629 MEDCOUPLING_EXPORT DataArrayInt *buildComplement(int nbOfElement) const;
630 MEDCOUPLING_EXPORT DataArrayInt *buildSubstraction(const DataArrayInt *other) const;
631 MEDCOUPLING_EXPORT DataArrayInt *buildSubstractionOptimized(const DataArrayInt *other) const;
632 MEDCOUPLING_EXPORT DataArrayInt *buildUnion(const DataArrayInt *other) const;
633 MEDCOUPLING_EXPORT DataArrayInt *buildIntersection(const DataArrayInt *other) const;
634 MEDCOUPLING_EXPORT DataArrayInt *buildUnique() const;
635 MEDCOUPLING_EXPORT DataArrayInt *buildUniqueNotSorted() const;
636 MEDCOUPLING_EXPORT DataArrayInt *deltaShiftIndex() const;
637 MEDCOUPLING_EXPORT void computeOffsets();
638 MEDCOUPLING_EXPORT void computeOffsetsFull();
639 MEDCOUPLING_EXPORT void findIdsRangesInListOfIds(const DataArrayInt *listOfIds, DataArrayInt *& rangeIdsFetched, DataArrayInt *& idsInInputListThatFetch) const;
640 MEDCOUPLING_EXPORT DataArrayInt *buildExplicitArrByRanges(const DataArrayInt *offsets) const;
641 MEDCOUPLING_EXPORT DataArrayInt *buildExplicitArrOfSliceOnScaledArr(int begin, int stop, int step) const;
642 MEDCOUPLING_EXPORT DataArrayInt *findRangeIdForEachTuple(const DataArrayInt *ranges) const;
643 MEDCOUPLING_EXPORT DataArrayInt *findIdInRangeForEachTuple(const DataArrayInt *ranges) const;
644 MEDCOUPLING_EXPORT void sortEachPairToMakeALinkedList();
645 MEDCOUPLING_EXPORT MCAuto<DataArrayInt> fromLinkedListOfPairToList() const;
646 MEDCOUPLING_EXPORT DataArrayInt *duplicateEachTupleNTimes(int nbTimes) const;
647 MEDCOUPLING_EXPORT DataArrayInt *getDifferentValues() const;
648 MEDCOUPLING_EXPORT std::vector<DataArrayInt *> partitionByDifferentValues(std::vector<int>& differentIds) const;
649 MEDCOUPLING_EXPORT std::vector< std::pair<int,int> > splitInBalancedSlices(int nbOfSlices) const;
650 template<class InputIterator>
651 void insertAtTheEnd(InputIterator first, InputIterator last);
652 MEDCOUPLING_EXPORT void aggregate(const DataArrayInt *other);
653 MEDCOUPLING_EXPORT void writeOnPlace(std::size_t id, int element0, const int *others, int sizeOfOthers) { _mem.writeOnPlace(id,element0,others,sizeOfOthers); }
654 MEDCOUPLING_EXPORT static DataArrayInt *Modulus(const DataArrayInt *a1, const DataArrayInt *a2);
655 MEDCOUPLING_EXPORT void modulusEqual(const DataArrayInt *other);
656 MEDCOUPLING_EXPORT static DataArrayInt *Pow(const DataArrayInt *a1, const DataArrayInt *a2);
657 MEDCOUPLING_EXPORT void powEqual(const DataArrayInt *other);
658 MEDCOUPLING_EXPORT MemArray<int>& accessToMemArray() { return _mem; }
659 MEDCOUPLING_EXPORT const MemArray<int>& accessToMemArray() const { return _mem; }
661 MEDCOUPLING_EXPORT static int *CheckAndPreparePermutation(const int *start, const int *end);
662 MEDCOUPLING_EXPORT static DataArrayInt *Range(int begin, int end, int step);
664 MEDCOUPLING_EXPORT void getTinySerializationIntInformation(std::vector<int>& tinyInfo) const;
665 MEDCOUPLING_EXPORT void getTinySerializationStrInformation(std::vector<std::string>& tinyInfo) const;
666 MEDCOUPLING_EXPORT bool resizeForUnserialization(const std::vector<int>& tinyInfoI);
667 MEDCOUPLING_EXPORT void finishUnserialization(const std::vector<int>& tinyInfoI, const std::vector<std::string>& tinyInfoS);
675 MCAuto<DataArrayInt> DataArrayTemplateClassic<T>::findIdsAdv(const OP& op) const
677 this->checkAllocated();
678 if(this->getNumberOfComponents()!=1)
679 throw INTERP_KERNEL::Exception("DataArrayInt::findIdsAdv : this must have exactly one component !");
680 const T *cptr(this->begin());
681 MCAuto<DataArrayInt> ret(DataArrayInt::New()); ret->alloc(0,1);
682 int nbOfTuples(this->getNumberOfTuples());
683 for(int i=0;i<nbOfTuples;i++,cptr++)
685 ret->pushBackSilent(i);
689 class DataArrayChar : public DataArrayTemplate<char>
692 MEDCOUPLING_EXPORT virtual DataArrayChar *buildEmptySpecializedDAChar() const = 0;
693 MEDCOUPLING_EXPORT int getHashCode() const;
694 MEDCOUPLING_EXPORT bool isEqual(const DataArrayChar& other) const;
695 MEDCOUPLING_EXPORT virtual bool isEqualIfNotWhy(const DataArrayChar& other, std::string& reason) const;
696 MEDCOUPLING_EXPORT bool isEqualWithoutConsideringStr(const DataArrayChar& other) const;
697 MEDCOUPLING_EXPORT void fillWithZero();
698 MEDCOUPLING_EXPORT std::string repr() const;
699 MEDCOUPLING_EXPORT std::string reprZip() const;
700 MEDCOUPLING_EXPORT DataArrayInt *convertToIntArr() const;
701 MEDCOUPLING_EXPORT DataArrayChar *selectByTupleId(const int *new2OldBg, const int *new2OldEnd) const { return DataArrayTemplate<char>::mySelectByTupleId(new2OldBg,new2OldEnd); }
702 MEDCOUPLING_EXPORT DataArrayChar *selectByTupleId(const DataArrayInt& di) const { return DataArrayTemplate<char>::mySelectByTupleId(di); }
703 MEDCOUPLING_EXPORT DataArrayChar *selectByTupleIdSafe(const int *new2OldBg, const int *new2OldEnd) const { return DataArrayTemplate<char>::mySelectByTupleIdSafe(new2OldBg,new2OldEnd); }
704 MEDCOUPLING_EXPORT DataArrayChar *keepSelectedComponents(const std::vector<int>& compoIds) const { return DataArrayTemplate<char>::myKeepSelectedComponents(compoIds); }
705 MEDCOUPLING_EXPORT DataArrayChar *selectByTupleIdSafeSlice(int bg, int end2, int step) const { return DataArrayTemplate<char>::mySelectByTupleIdSafeSlice(bg,end2,step); }
706 MEDCOUPLING_EXPORT bool isUniform(char val) const;
707 MEDCOUPLING_EXPORT void meldWith(const DataArrayChar *other);
708 MEDCOUPLING_EXPORT DataArray *selectByTupleRanges(const std::vector<std::pair<int,int> >& ranges) const { return DataArrayTemplate<char>::mySelectByTupleRanges(ranges); }
709 MEDCOUPLING_EXPORT void getTuple(int tupleId, char *res) const { std::copy(_mem.getConstPointerLoc(tupleId*_info_on_compo.size()),_mem.getConstPointerLoc((tupleId+1)*_info_on_compo.size()),res); }
710 MEDCOUPLING_EXPORT DataArrayInt *findIdsEqual(char val) const;
711 MEDCOUPLING_EXPORT DataArrayInt *findIdsNotEqual(char val) const;
712 MEDCOUPLING_EXPORT int findIdSequence(const std::vector<char>& vals) const;
713 MEDCOUPLING_EXPORT int findIdFirstEqualTuple(const std::vector<char>& tupl) const;
714 MEDCOUPLING_EXPORT int findIdFirstEqual(char value) const;
715 MEDCOUPLING_EXPORT int findIdFirstEqual(const std::vector<char>& vals) const;
716 MEDCOUPLING_EXPORT bool presenceOfTuple(const std::vector<char>& tupl) const;
717 MEDCOUPLING_EXPORT bool presenceOfValue(char value) const;
718 MEDCOUPLING_EXPORT bool presenceOfValue(const std::vector<char>& vals) const;
719 MEDCOUPLING_EXPORT DataArrayInt *findIdsInRange(char vmin, char vmax) const;
720 MEDCOUPLING_EXPORT static DataArrayChar *Aggregate(const DataArrayChar *a1, const DataArrayChar *a2);
721 MEDCOUPLING_EXPORT static DataArrayChar *Aggregate(const std::vector<const DataArrayChar *>& arr);
722 MEDCOUPLING_EXPORT static DataArrayChar *Meld(const DataArrayChar *a1, const DataArrayChar *a2);
723 MEDCOUPLING_EXPORT static DataArrayChar *Meld(const std::vector<const DataArrayChar *>& arr);
724 template<class InputIterator>
725 void insertAtTheEnd(InputIterator first, InputIterator last);
726 MEDCOUPLING_EXPORT MemArray<char>& accessToMemArray() { return _mem; }
727 MEDCOUPLING_EXPORT const MemArray<char>& accessToMemArray() const { return _mem; }
729 //MEDCOUPLING_EXPORT void getTinySerializationIntInformation(std::vector<int>& tinyInfo) const;
730 //MEDCOUPLING_EXPORT void getTinySerializationStrInformation(std::vector<std::string>& tinyInfo) const;
731 //MEDCOUPLING_EXPORT bool resizeForUnserialization(const std::vector<int>& tinyInfoI);
732 //MEDCOUPLING_EXPORT void finishUnserialization(const std::vector<int>& tinyInfoI, const std::vector<std::string>& tinyInfoS);
737 class DataArrayByteIterator;
739 class DataArrayByte : public DataArrayChar
742 MEDCOUPLING_EXPORT static DataArrayByte *New();
743 MEDCOUPLING_EXPORT DataArrayChar *buildEmptySpecializedDAChar() const;
744 MEDCOUPLING_EXPORT DataArrayByteIterator *iterator();
745 MEDCOUPLING_EXPORT DataArrayByte *deepCopy() const;
746 MEDCOUPLING_EXPORT DataArrayByte *performCopyOrIncrRef(bool deepCopy) const;
747 MEDCOUPLING_EXPORT DataArrayByte *buildNewEmptyInstance() const { return DataArrayByte::New(); }
748 MEDCOUPLING_EXPORT char byteValue() const;
749 MEDCOUPLING_EXPORT void reprStream(std::ostream& stream) const;
750 MEDCOUPLING_EXPORT void reprZipStream(std::ostream& stream) const;
751 MEDCOUPLING_EXPORT void reprWithoutNameStream(std::ostream& stream) const;
752 MEDCOUPLING_EXPORT void reprZipWithoutNameStream(std::ostream& stream) const;
753 MEDCOUPLING_EXPORT void reprCppStream(const std::string& varName, std::ostream& stream) const;
754 MEDCOUPLING_EXPORT void reprQuickOverview(std::ostream& stream) const;
755 MEDCOUPLING_EXPORT void reprQuickOverviewData(std::ostream& stream, std::size_t maxNbOfByteInRepr) const;
756 MEDCOUPLING_EXPORT bool isEqualIfNotWhy(const DataArrayChar& other, std::string& reason) const;
757 MEDCOUPLING_EXPORT std::vector<bool> toVectorOfBool() const;
763 class DataArrayAsciiCharIterator;
765 class DataArrayAsciiChar : public DataArrayChar
768 MEDCOUPLING_EXPORT static DataArrayAsciiChar *New();
769 MEDCOUPLING_EXPORT static DataArrayAsciiChar *New(const std::string& st);
770 MEDCOUPLING_EXPORT static DataArrayAsciiChar *New(const std::vector<std::string>& vst, char defaultChar);
771 MEDCOUPLING_EXPORT DataArrayChar *buildEmptySpecializedDAChar() const;
772 MEDCOUPLING_EXPORT DataArrayAsciiCharIterator *iterator();
773 MEDCOUPLING_EXPORT DataArrayAsciiChar *deepCopy() const;
774 MEDCOUPLING_EXPORT DataArrayAsciiChar *performCopyOrIncrRef(bool deepCopy) const;
775 MEDCOUPLING_EXPORT DataArrayAsciiChar *buildNewEmptyInstance() const { return DataArrayAsciiChar::New(); }
776 MEDCOUPLING_EXPORT char asciiCharValue() const;
777 MEDCOUPLING_EXPORT void reprStream(std::ostream& stream) const;
778 MEDCOUPLING_EXPORT void reprZipStream(std::ostream& stream) const;
779 MEDCOUPLING_EXPORT void reprWithoutNameStream(std::ostream& stream) const;
780 MEDCOUPLING_EXPORT void reprZipWithoutNameStream(std::ostream& stream) const;
781 MEDCOUPLING_EXPORT void reprCppStream(const std::string& varName, std::ostream& stream) const;
782 MEDCOUPLING_EXPORT void reprQuickOverview(std::ostream& stream) const;
783 MEDCOUPLING_EXPORT void reprQuickOverviewData(std::ostream& stream, std::size_t maxNbOfByteInRepr) const;
784 MEDCOUPLING_EXPORT bool isEqualIfNotWhy(const DataArrayChar& other, std::string& reason) const;
786 ~DataArrayAsciiChar() { }
787 DataArrayAsciiChar() { }
788 DataArrayAsciiChar(const std::string& st);
789 DataArrayAsciiChar(const std::vector<std::string>& vst, char defaultChar);
793 class DataArrayIterator
796 DataArrayIterator(typename Traits<T>::ArrayType *da);
797 ~DataArrayIterator();
798 MEDCOUPLING_EXPORT typename Traits<T>::ArrayTuple *nextt();
800 typename Traits<T>::ArrayType *_da;
811 MEDCOUPLING_EXPORT DataArrayTuple(T *pt, int nbOfComp);
812 MEDCOUPLING_EXPORT std::string repr() const;
813 MEDCOUPLING_EXPORT int getNumberOfCompo() const { return _nb_of_compo; }
814 MEDCOUPLING_EXPORT const T *getConstPointer() const { return _pt; }
815 MEDCOUPLING_EXPORT T *getPointer() { return _pt; }
816 MEDCOUPLING_EXPORT typename Traits<T>::ArrayType *buildDA(int nbOfTuples, int nbOfCompo) const;
824 class DataArrayDoubleTuple;
826 class DataArrayDoubleIterator : public DataArrayIterator<double>
829 MEDCOUPLING_EXPORT DataArrayDoubleIterator(DataArrayDouble *da);
830 MEDCOUPLING_EXPORT ~DataArrayDoubleIterator() { }
833 class DataArrayDoubleTuple : public DataArrayTuple<double>
836 MEDCOUPLING_EXPORT DataArrayDoubleTuple(double *pt, int nbOfComp);
837 MEDCOUPLING_EXPORT std::string repr() const;
838 MEDCOUPLING_EXPORT double doubleValue() const;
839 MEDCOUPLING_EXPORT DataArrayDouble *buildDADouble(int nbOfTuples, int nbOfCompo) const;
842 class DataArrayFloatTuple;
844 class DataArrayFloatIterator : public DataArrayIterator<float>
847 MEDCOUPLING_EXPORT DataArrayFloatIterator(DataArrayFloat *da);
848 MEDCOUPLING_EXPORT ~DataArrayFloatIterator() { }
851 class DataArrayFloatTuple : public DataArrayTuple<float>
854 MEDCOUPLING_EXPORT DataArrayFloatTuple(float *pt, int nbOfComp);
855 MEDCOUPLING_EXPORT std::string repr() const;
856 MEDCOUPLING_EXPORT float floatValue() const;
857 MEDCOUPLING_EXPORT DataArrayFloat *buildDAFloat(int nbOfTuples, int nbOfCompo) const;
860 class DataArrayIntTuple;
862 class DataArrayIntIterator : public DataArrayIterator<int>
865 MEDCOUPLING_EXPORT DataArrayIntIterator(DataArrayInt *da);
866 MEDCOUPLING_EXPORT ~DataArrayIntIterator() { }
869 class DataArrayIntTuple : public DataArrayTuple<int>
872 MEDCOUPLING_EXPORT DataArrayIntTuple(int *pt, int nbOfComp);
873 MEDCOUPLING_EXPORT std::string repr() const;
874 MEDCOUPLING_EXPORT int intValue() const;
875 MEDCOUPLING_EXPORT DataArrayInt *buildDAInt(int nbOfTuples, int nbOfCompo) const;
878 class DataArrayAsciiCharTuple;
880 class DataArrayAsciiCharIterator
883 MEDCOUPLING_EXPORT DataArrayAsciiCharIterator(DataArrayAsciiChar *da);
884 MEDCOUPLING_EXPORT ~DataArrayAsciiCharIterator();
885 MEDCOUPLING_EXPORT DataArrayAsciiCharTuple *nextt();
887 DataArrayAsciiChar *_da;
894 class DataArrayAsciiCharTuple
897 MEDCOUPLING_EXPORT DataArrayAsciiCharTuple(char *pt, int nbOfComp);
898 MEDCOUPLING_EXPORT std::string repr() const;
899 MEDCOUPLING_EXPORT int getNumberOfCompo() const { return _nb_of_compo; }
900 MEDCOUPLING_EXPORT const char *getConstPointer() const { return _pt; }
901 MEDCOUPLING_EXPORT char *getPointer() { return _pt; }
902 MEDCOUPLING_EXPORT char asciiCharValue() const;
903 MEDCOUPLING_EXPORT DataArrayAsciiChar *buildDAAsciiChar(int nbOfTuples, int nbOfCompo) const;
909 class DataArrayByteTuple;
911 class DataArrayByteIterator
914 MEDCOUPLING_EXPORT DataArrayByteIterator(DataArrayByte *da);
915 MEDCOUPLING_EXPORT ~DataArrayByteIterator();
916 MEDCOUPLING_EXPORT DataArrayByteTuple *nextt();
925 class DataArrayByteTuple
928 MEDCOUPLING_EXPORT DataArrayByteTuple(char *pt, int nbOfComp);
929 MEDCOUPLING_EXPORT std::string repr() const;
930 MEDCOUPLING_EXPORT int getNumberOfCompo() const { return _nb_of_compo; }
931 MEDCOUPLING_EXPORT const char *getConstPointer() const { return _pt; }
932 MEDCOUPLING_EXPORT char *getPointer() { return _pt; }
933 MEDCOUPLING_EXPORT char byteValue() const;
934 MEDCOUPLING_EXPORT DataArrayByte *buildDAByte(int nbOfTuples, int nbOfCompo) const;
941 namespace MEDCoupling
944 template<class InputIterator>
945 void MemArray<T>::insertAtTheEnd(InputIterator first, InputIterator last)
947 T *pointer=_pointer.getPointer();
950 if(_nb_of_elem>=_nb_of_elem_alloc)
952 reserve(_nb_of_elem_alloc>0?2*_nb_of_elem_alloc:1);
953 pointer=_pointer.getPointer();
955 pointer[_nb_of_elem++]=*first++;
959 template<class InputIterator>
960 void DataArrayDouble::insertAtTheEnd(InputIterator first, InputIterator last)
962 int nbCompo(getNumberOfComponents());
964 _mem.insertAtTheEnd(first,last);
967 _info_on_compo.resize(1);
968 _mem.insertAtTheEnd(first,last);
971 throw INTERP_KERNEL::Exception("DataArrayDouble::insertAtTheEnd : not available for DataArrayDouble with number of components different than 1 !");
974 template<class InputIterator>
975 void DataArrayInt::insertAtTheEnd(InputIterator first, InputIterator last)
977 int nbCompo(getNumberOfComponents());
979 _mem.insertAtTheEnd(first,last);
982 _info_on_compo.resize(1);
983 _mem.insertAtTheEnd(first,last);
986 throw INTERP_KERNEL::Exception("DataArrayInt::insertAtTheEnd : not available for DataArrayInt with number of components different than 1 !");
989 template<class InputIterator>
990 void DataArrayChar::insertAtTheEnd(InputIterator first, InputIterator last)
992 int nbCompo(getNumberOfComponents());
994 _mem.insertAtTheEnd(first,last);
997 _info_on_compo.resize(1);
998 _mem.insertAtTheEnd(first,last);
1001 throw INTERP_KERNEL::Exception("DataArrayChar::insertAtTheEnd : not available for DataArrayChar with number of components different than 1 !");