VR-Link API Documentation for HLA Evolved
 All Classes Namespaces Files Functions Variables Typedefs Enumerations Enumerator Friends Macros Groups Pages
datatypeManager.h
Go to the documentation of this file.
1 /*******************************************************************************
2 ** Copyright (c) 1992-2010 VT MAK
3 ** All rights reserved.
4 *******************************************************************************/
7 #pragma once
8 
9 
10 
11 #pragma warning(disable : 4100)
12 
13 #include "datatypeRep.h"
14 
15 #define UNDEFINED_STR "---"
16 
17 #include <map>
18 #include <vlutil/vlString.h>
19 #include <vector>
20 #include <list>
21 #include <mtl/mtl.h>
22 #include <mtl/mtlEnvironment.h>
23 #ifdef DtUSE_UTILITIES_NAMESPACE
24 namespace DtUSE_UTILITIES_NAMESPACE
25 {
26 #endif
27 class DtOMTTree;
28 class DtOMTNode;
29 class DtOMTDatatypeNode;
35 class DtDatatypeFedNode;
36 class DtStringTree;
37 class DtObjectHistory;
38 
39 //shortcut
40 #define theOMTDatatypeManager DtDatatypeManager::defaultInstance()
41 
46 {
47 public:
48 
50  SIMPLE = 1,
57  DATATYPE_MAX
58  };
59 
61  static DtDatatypeManager* defaultInstance();
62 
65 
67  virtual ~DtDatatypeManager();
68 
71  virtual void initOMTData(DtOMTTree* omtTree);
72 
73  virtual DtOMTTree* omtTree() {return myOMTTree;};
74 
76  virtual void setImplicitPadding(bool enableImplicitPadding);
77  virtual bool isImplicitPaddingEnabled() const;
78 
79 //--- The following functions are used to setup the representation list ---
80 
82  virtual void fillDefaultDatatypeRepList();
83 
84  //Fill in more representations manually. Note that this datatype
85  //now gets owned by this function and takes care of deleting it.
86  virtual void addDatatypeRep(DtDatatypeRep*);
87 
88  //This is a special type of Mapping
89  virtual void addDefinedDatatypeRep(DtDatatypeRep*);
90 
91  //Returns the class representation of a datatype. This only works with simple
92  //Reps since more complicated datatypes build the string out of multiple representations.
93  virtual DtDatatypeRep* getSimpleDatatypeRep(const DtString& datatypeName);
94 
96  virtual std::map<DtString,DtDatatypeRep*>::iterator getNameRepMapList();
97  virtual std::map<DtString,DtDatatypeRep*>::iterator getNameRepMapListEnd();
98 
99 
100  //--- The following functions are used to setup the delimiter mappings ---
101 
103  // For example, if the delimiter is :. Then a location(x,y,z) would look
105  virtual void addDelimiterMap(const DtString& datatype, const DtString& delimiter);
106  virtual void removeDelimiterMap(const DtString& datatype);
107 
109  virtual void setDefaultDelimiter(const DtString& str);
110 
113  virtual void setArrayWrapper(const DtString& start, const DtString& end);
114 
116  virtual DtString getDelimiterMap(const DtString& datatypeName, bool* isAvailable = 0);
117  virtual std::map<DtString,DtString>::iterator getDelimiterList();
118  virtual std::map<DtString,DtString>::iterator getDelimiterListEnd();
119 
120  //--- The following functions are used to setup the array bracket mappings ---
121 
125  virtual void addArrayBracketMap(const DtString& datatype, bool valueIsBracketed);
126  virtual void removeArrayBracketMap(const DtString& datatype);
127 
129  virtual void setDefaultArrayBracket(bool valueIsBracketed);
130 
132  virtual bool getArrayBracketMap(const DtString& datatypeName, bool* isAvailable = 0);
133  virtual std::map<DtString,bool>::iterator getArrayBracketList();
134  virtual std::map<DtString,bool>::iterator getArrayBracketListEnd();
135 
136  //--- The following functions are used to setup the representation to datatype mappings ---
137 
138 
140  virtual void readFile(DtString str);
141 
143  virtual void writeFile(DtString str);
144 
145  //Add a mapping between a datatype and a representation
146  virtual void addRepMapping(const DtString& datatype, const DtString& rep);
147  virtual void removeRepMapping(const DtString& datatype);
148 
149  //Add a mapping between an attribute Name and a representation
150  virtual void addAttributeMapping(const DtString& datatype, const DtString& rep);
151  virtual void removeAttributeMapping(const DtString& datatype);
152  virtual const DtString& attributeMapping(const DtString& attributeName) const;
153 
156  virtual bool modifyRepMapping(const DtString& datatype, const DtString& rep);
157 
159  virtual std::map<DtString,DtString>::iterator getRepMapList();
160  virtual std::map<DtString,DtString>::iterator getRepMapListEnd();
161 
162  //--- The following functions are used to convert objects to their representation ---
163 
173  virtual DtString getFedNodeStringRep(const DtDatatypeFedNode* currFedNode,
174  const void* value, int size, int& returnSize);
175  virtual DtString getStringRep(const DtString& datatypeName,
176  const void* value, int size, int& returnSize);
177  virtual DtString getStringRep(const DtOMTDatatypeNode& datatypeNode,
178  const void* value, int size, int& returnSize);
179 
191  virtual DtStringTree* createStringTreeRep(const DtDatatypeFedNode* currFedNode,
192  const void* value, int size, int& returnSize, unsigned int currentOffset = 0,
193  DtObjectHistory* = 0);
194  virtual DtStringTree* createStringTreeRep(const DtString& datatypeName,
195  const void* value, int size, int& returnSize, const DtOMTNode* omtNode = 0,
196  unsigned int currentOffset = 0, DtStringTree* strParentTree = 0,
197  DtObjectHistory* = 0);
198  virtual DtStringTree* createStringTreeRep(const DtOMTDatatypeNode& datatypeNode,
199  const void* value, int size, int& returnSize,
200  unsigned int currentOffset = 0, DtStringTree* strParentTree = 0,
201  DtObjectHistory* = 0);
202 
207  virtual void getValueFromStringRep(const DtString& datatypeName, const DtString& stringRep,
208  std::vector<char>& result);
209 
213  virtual DtString convertStringTreeToString (DtStringTree*, const DtString& delimiter);
214 
215 
216  //--- The following functions are used to gather extra information about a datatype ---
217 
218  //Find what type of datatype an item is (Simple, Enum, Complex, etc)
219  virtual DtDatatypeEnum getDatatypeEnum(const DtString& datatypeName);
220 
222  // and FOM have been made to mappings
223  virtual bool isDirty();
224 
226  virtual void setIsDirty(bool makeDirty);
227 
228 protected:
229 
232 
234  DtDatatypeManager& operator=(const DtDatatypeManager& rhs);
235 
236  virtual void checkOrphanMappings();
237  virtual void checkObjOrphans(DtObjectClassFedNode* objClass);
238  virtual void checkIntOrphans(DtInteractionClassFedNode* intClass);
239 
241  virtual void getDefaultRep(const void* value, int size, int& returnSize, DtString& returnString);
242  virtual void getDatatypeRep(const DtString& datatypeName, const void* value, int size, int& returnSize, DtString& returnString);
243  virtual void getAttributeRep(const DtString& attributeName, const void* value, int size, int& returnSize, DtString& returnString);
244  virtual void getEnumRep(const DtString& datatypeName, const void* value, int size, int& returnSize, DtString& returnString);
245  virtual void getVariantRep(const DtString& datatypeName, const void* value, int size, int& returnSize, DtString& returnString);
246  virtual void getArrayRepBySize(const DtString& datatypeName, const void* value, int size, int& returnSize, DtString& returnString);
247  virtual void getArrayRepByCount(DtArrayDatatypeNode* arrayNode, const void* value, int size, int& returnSize, DtString& returnString);
248  virtual void getArrayRep(const DtString& datatypeName, const void* value, int size, int& returnSize, DtString& returnString);
249 
251  virtual void getValueFromDatatypeRep(const DtString& datatypeName, const DtString& stringRep, std::vector<char>& result);
252  virtual void getValueFromArrayRep(const DtString& datatypeName, const DtString& stringRep, std::vector<char>& result);
253  virtual void getValueFromComplexRep(const DtString& datatypeName, const DtString& stringRep, std::vector<char>& result);
254  virtual void getValueFromFixedRep(const DtString& datatypeName, const DtString& stringRep, std::vector<char>& result);
255  virtual void getValueFromEnumRep(const DtString& datatypeName, const DtString& stringRep, std::vector<char>& result);
256 
258  virtual void createComplexTreeRep(
259  const DtString& datatypeName, const void* value, int size,
260  int& returnSize, DtStringTree* strTree, DtStringTree* strParentTree = 0,
261  unsigned int currentOffset = 0,
262  DtObjectHistory* = 0);
263  virtual void createArrayTreeRep(
264  const DtString& datatypeName, const void* value, int size,
265  int& returnSize, DtStringTree* strTree, DtStringTree* strParentTree = 0,
266  unsigned int currentOffset = 0,
267  DtObjectHistory* = 0);
268  virtual void createDefinedTreeRep(
269  const DtString& datatypeName, const void* value, int size,
270  int& returnSize, DtStringTree* strTree, DtStringTree* strParentTree = 0,
271  unsigned int currentOffset = 0,
272  DtObjectHistory* = 0);
273  virtual void createVariantTreeRep(
274  const DtString& datatypeName, const void* value, int size,
275  int& returnSize, DtStringTree* strTree, DtStringTree* strParentTree = 0,
276  unsigned int currentOffset = 0,
277  DtObjectHistory* = 0);
278  virtual void createFixedTreeRep(
279  const DtString& datatypeName, const void* value, int size,
280  int& returnSize, DtStringTree* strTree, DtStringTree* strParentTree = 0,
281  unsigned int currentOffset = 0,
282  DtObjectHistory* = 0);
283 
285  virtual void processMappings(DtlObjPtr& ptr);
286 
290  virtual int getComplexDatatypeCount(DtComplexComponentNode* compNode, DtComplexDatatypeNode* parentNode,
291  const void* value, int valueSize, int alreadyRead,
292  const DtStringTree* strTree = 0, const DtStringTree* parentTree = 0);
293 
294  virtual int getArrayDatatypeCount(DtArrayDatatypeNode* arrayNode,
295  const void* value, int valueSize,
296  const DtStringTree* strTree = 0, const DtStringTree* parentTree = 0);
297 
299  virtual int byteAlignment(const DtString& datatype);
300  virtual int byteAlignmentFromRep(const DtString& datatype);
301  virtual int byteAlignmentFixed(const DtString& datatype);
302  virtual int byteAlignmentArray(const DtString& datatype);
303  virtual int byteAlignmentVariant(const DtString& datatype);
304  virtual int byteAlignmentComplex(const DtString& datatype);
305  virtual int implicitPadding(unsigned int currentOffset, const DtString& datatypeName);
306 
307 protected:
308 
310  std::map<DtString,DtDatatypeEnum> myDatatypeTypeMap;
311 
312  typedef std::map<DtString,DtString> DatatypeNameRepNameMap;
315  std::set<DtString> myRemappedDatatypes;
316 
317 
318  typedef std::map<DtString,DtDatatypeRep*> RepNamePtrMap;
320 
322  std::map<DtString,DtString> myDelimiterMap;
325 
327  std::map<DtString,bool> myArrayBracketMap;
328 
330 
331  bool myDirty;
332 
335 
336 
337 };
338 
339 
340 
341 #ifdef DtUSE_UTILITIES_NAMESPACE
342 } // end of namespace DtUSE_UTILITIES_NAMESPACE
343 #endif
DatatypeNameRepNameMap myAttributeToRepMap
Definition: datatypeManager.h:314
std::map< DtString, bool > myArrayBracketMap
Definition: datatypeManager.h:327
An Enumeration that maps an integer to a string value.
Definition: datatypeManager.h:52
std::map< DtString, DtDatatypeRep * > RepNamePtrMap
Definition: datatypeManager.h:318
A datatype that could be of a different type at runtime.
Definition: datatypeManager.h:55
A collection of different data types in one.
Definition: datatypeManager.h:53
Contains the DtString class declaration.
DtString myStartWrapper
Definition: datatypeManager.h:323
This class handles the conversion between a byte stream and an English readable view of the data in a...
Definition: datatypeManager.h:45
#define DT_DLL_OMTREADER
Definition: omtReader.h:27
A Datatype Representation is a class that can take a group of bytes and display them in a certain typ...
Definition: datatypeRep.h:24
std::set< DtString > myRemappedDatatypes
Definition: datatypeManager.h:315
Definition: mtl.h:70
A collection of the same datatype in one.
Definition: datatypeManager.h:54
std::map< DtString, DtString > DatatypeNameRepNameMap
Definition: datatypeManager.h:312
DtString myEndWrapper
Definition: datatypeManager.h:324
defines an object class inside our Fed Tree
Definition: interactionClassFedNode.h:31
represents a node in an OMT tree.
Definition: omtNode.h:20
Definition: objectHistory.h:40
DtOMTTree * myOMTTree
Definition: datatypeManager.h:309
DtString myDefaultArrayBracket
Definition: datatypeManager.h:326
bool myUseImplicitPadding
Definition: datatypeManager.h:329
std::map< DtString, DtDatatypeEnum > myDatatypeTypeMap
Definition: datatypeManager.h:310
bool myDirty
Definition: datatypeManager.h:331
Definition: complexComponentNode.h:21
static DtDatatypeManager * theDatatypeManager
Protected member data.
Definition: datatypeManager.h:334
defines an object class inside our Fed Tree
Definition: objectClassFedNode.h:36
A fixed set of a collection of different data types.
Definition: datatypeManager.h:56
virtual DtOMTTree * omtTree()
Definition: datatypeManager.h:73
Basically a struct with a destructor, a string tree is a collection of indexed strings used to hold m...
Definition: stringTree.h:20
represents a node in an OMT tree containing a datatype description.
Definition: omtDatatypeNode.h:18
Represents an attribute inside a object class.
Definition: datatypeFedNode.h:25
DtDatatypeEnum
Definition: datatypeManager.h:49
This file contains common methods for parsing mtl files.
Definition: arrayDatatypeNode.h:19
DtString myDefaultDelimiter
Definition: datatypeManager.h:321
Complex datatypes are a OMT 1.3 construct that merges arrays, variants, and fixed into one monstrous ...
Definition: complexDatatypeNode.h:27
A tree using the an OMT File information.
Definition: omtTree.h:64
DatatypeNameRepNameMap myDatatypeToRepMap
Definition: datatypeManager.h:313
Instances of DtString are used to represent strings.
Definition: vlString.h:29
RepNamePtrMap myNameToRepMap
Definition: datatypeManager.h:319
std::map< DtString, DtString > myDelimiterMap
Definition: datatypeManager.h:322
A basic datatype such as int or bool.
Definition: datatypeManager.h:51
This file declares DtMtlEnvironment.

Document ID: Generated on Tue Feb 2 21:02:17 EST 2021 from SVN revision 223668
Copyright © 2005-2021 MAK Technologies. All Rights Reserved (www.mak.com)