libcm is a C development framework with an emphasis on audio signal processing applications.
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cmData.c 95KB

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  1. //| Copyright: (C) 2009-2020 Kevin Larke <contact AT larke DOT org>
  2. //| License: GNU GPL version 3.0 or above. See the accompanying LICENSE file.
  3. #include "cmGlobal.h"
  4. #include "cmRpt.h"
  5. #include "cmErr.h"
  6. #include "cmCtx.h"
  7. #include "cmMem.h"
  8. #include "cmMallocDebug.h"
  9. #include "cmLinkedHeap.h"
  10. #include "cmData.h"
  11. #include "cmLex.h"
  12. #include "cmText.h"
  13. #include "cmStack.h"
  14. typedef struct
  15. {
  16. cmDataTypeId_t typeId;
  17. unsigned byteWidth;
  18. const cmChar_t* label;
  19. } cmDtTypeInfo_t;
  20. typedef struct
  21. {
  22. cmDataContainerId_t id;
  23. const cmChar_t* label;
  24. } cmDtCntInfo_t;
  25. cmDtTypeInfo_t _cmDtTypeInfoArray[] =
  26. {
  27. { kNullDtId, 0, "null" },
  28. { kBoolDtId, sizeof(bool), "bool" },
  29. { kUCharDtId, sizeof(unsigned char), "uchar" },
  30. { kCharDtId, sizeof(char), "char" },
  31. { kUShortDtId, sizeof(unsigned short), "ushort" },
  32. { kShortDtId, sizeof(short), "short" },
  33. { kUIntDtId, sizeof(unsigned int), "uint" },
  34. { kIntDtId, sizeof(int), "int" },
  35. { kULongDtId, sizeof(unsigned long), "ulong" },
  36. { kLongDtId, sizeof(long), "long" },
  37. { kFloatDtId, sizeof(float), "float" },
  38. { kDoubleDtId, sizeof(double), "double" },
  39. { kStrDtId, sizeof(char*), "string" },
  40. { kBlobDtId, sizeof(void*), "blob" },
  41. { kInvalidTypeDtId, 0, "<invalid-type>" },
  42. };
  43. cmDtCntInfo_t _cmDtCntInfoArray[] =
  44. {
  45. { kScalarDtId, "scalar" },
  46. { kArrayDtId, "array" },
  47. { kListDtId, "list" },
  48. { kPairDtId, "pair" },
  49. { kRecordDtId, "record"},
  50. { kInvalidCntDtId,"<invalid-container>"}
  51. };
  52. cmData_t cmDataNull = { kInvalidTypeDtId,kInvalidCntDtId,0,NULL,NULL,0 };
  53. cmDtRC_t _cmDtErrMsgV( const cmData_t* d, cmDtRC_t rc, const cmChar_t* fmt, va_list vl )
  54. {
  55. // REPLACE this with a global cmRpt call.
  56. vprintf(fmt,vl);
  57. return rc;
  58. }
  59. cmDtRC_t _cmDtErrMsg( const cmData_t* d, cmDtRC_t rc, const cmChar_t* fmt, ... )
  60. {
  61. va_list vl;
  62. va_start(vl,fmt);
  63. rc = _cmDtErrMsgV(d,rc,fmt,vl);
  64. va_end(vl);
  65. return rc;
  66. }
  67. const cmChar_t* cmDataTypeToLabel( cmDataTypeId_t tid )
  68. {
  69. unsigned i;
  70. for(i=0; _cmDtTypeInfoArray[i].typeId!=kInvalidTypeDtId; ++i)
  71. if( _cmDtTypeInfoArray[i].typeId == tid )
  72. return _cmDtTypeInfoArray[i].label;
  73. return NULL;
  74. }
  75. cmDataTypeId_t cmDataLabelToType( const cmChar_t* typeLabelStr )
  76. {
  77. unsigned i;
  78. for(i=0; _cmDtTypeInfoArray[i].typeId!=kInvalidTypeDtId; ++i)
  79. if( strcmp(_cmDtTypeInfoArray[i].label,typeLabelStr) == 0 )
  80. return _cmDtTypeInfoArray[i].typeId;
  81. return kInvalidTypeDtId;
  82. }
  83. unsigned cmDataByteWidth( cmDataTypeId_t tid )
  84. {
  85. unsigned i;
  86. for(i=0; _cmDtTypeInfoArray[i].typeId!=kInvalidTypeDtId; ++i)
  87. if( _cmDtTypeInfoArray[i].typeId == tid )
  88. return _cmDtTypeInfoArray[i].byteWidth;
  89. return cmInvalidCnt;
  90. }
  91. const cmChar_t* cmDataContainerIdToLabel( cmDataContainerId_t tid )
  92. {
  93. unsigned i;
  94. for(i=0; _cmDtCntInfoArray[i].id!=kInvalidCntDtId; ++i)
  95. if( _cmDtCntInfoArray[i].id == tid )
  96. return _cmDtCntInfoArray[i].label;
  97. return NULL;
  98. }
  99. cmDataContainerId_t cmDataLabelToContainerId( const cmChar_t* contLabelStr )
  100. {
  101. unsigned i;
  102. for(i=0; _cmDtCntInfoArray[i].id!=kInvalidCntDtId; ++i)
  103. if( strcmp(_cmDtCntInfoArray[i].label,contLabelStr) == 0 )
  104. return _cmDtCntInfoArray[i].id;
  105. return kInvalidCntDtId;
  106. }
  107. bool _cmDataIsDataOwner( const cmData_t* d )
  108. { return cmIsFlag(d->flags,kFreeValueDtFl) && (d->cid==kArrayDtId || d->tid==kStrDtId || d->tid==kBlobDtId); }
  109. cmDtRC_t _cmDataFreeData( cmData_t* d )
  110. {
  111. if( _cmDataIsDataOwner(d) )
  112. {
  113. cmMemPtrFree(&d->u.vp);
  114. }
  115. d->flags = cmClrFlag(d->flags,kFreeValueDtFl | kConstValueDtFl );
  116. d->tid = kNullDtId; // objects without data are always of type 'null'.
  117. d->cnt = 0;
  118. memset(&d->u,0,sizeof(d->u));
  119. return kOkDtRC;
  120. }
  121. void _cmDataFree( cmData_t* p )
  122. {
  123. if( p == NULL )
  124. return;
  125. if( cmDataIsStruct(p) )
  126. {
  127. cmData_t* cp = p->u.child;
  128. for(; cp!=NULL; cp=cp->sibling)
  129. _cmDataFree(cp);
  130. }
  131. _cmDataFreeData(p);
  132. if( cmIsFlag(p->flags,kFreeObjDtFl) )
  133. {
  134. // if the object body is going to be freed then be sure it is unlinked
  135. cmDataUnlink(p);
  136. cmMemFree(p);
  137. }
  138. }
  139. // Dynamically allocate a new data object.
  140. cmData_t* _cmDataNew(cmData_t* parent, cmDataContainerId_t cid, cmDataTypeId_t tid)
  141. {
  142. cmData_t* d = cmMemAllocZ(cmData_t,1);
  143. d->tid = tid; // objects without data are of type 'null'.
  144. d->cid = cid;
  145. d->flags = kFreeObjDtFl;
  146. d->parent = parent;
  147. d->cnt = 0;
  148. if( parent != NULL )
  149. cmDataAppendChild(parent,d);
  150. return d;
  151. }
  152. bool cmDataIsConstObj( const cmData_t* d )
  153. { return cmIsFlag(d->flags,kConstObjDtFl); }
  154. void cmDataEnableConstObj( cmData_t* d, bool enaFl )
  155. { d->flags = cmEnaFlag(d->flags,kConstObjDtFl,enaFl); }
  156. bool cmDataIsConstValue( const cmData_t* d )
  157. { return cmIsFlag(d->flags,kConstValueDtFl); }
  158. void cmDataEnableConstValue( cmData_t* d, bool enaFl )
  159. { d->flags = cmEnaFlag(d->flags,kConstValueDtFl,enaFl); }
  160. bool cmDataIsFreeValue( const cmData_t* d )
  161. { return cmIsFlag(d->flags,kFreeValueDtFl); }
  162. void cmDataEnableFreeValue( cmData_t* d, bool enaFl )
  163. { d->flags = cmEnaFlag(d->flags,kFreeValueDtFl,enaFl); }
  164. bool cmDataIsLeaf( const cmData_t* d)
  165. { return d->cid == kScalarDtId || d->cid == kArrayDtId; }
  166. bool cmDataIsStruct( const cmData_t* d )
  167. { return !cmDataIsLeaf(d); }
  168. cmDtRC_t cmDataNewScalar( cmData_t* parent, cmDataTypeId_t tid, unsigned flags, void* vp, unsigned byteCnt, cmData_t** ref )
  169. {
  170. cmDtRC_t rc;
  171. if( ref != NULL )
  172. *ref = NULL;
  173. // create a scalar null object
  174. cmData_t* d = _cmDataNew(parent,kScalarDtId,kNullDtId);
  175. if( tid!=kStrDtId && tid!=kBlobDtId )
  176. {
  177. // When used with scalars kFreeValueDtFl and kNoCopyDtFl only
  178. // has meaning for strings and blobs - so clear these flags for other types.
  179. flags = cmClrFlag(flags,kFreeValueDtFl | kNoCopyDtFl);
  180. // if this is not a blob or string then the byteCnt is reset
  181. byteCnt = cmDataByteWidth(tid);
  182. }
  183. // assign the value
  184. if((rc = cmDataSetScalarValue(d,tid,vp,byteCnt,flags)) != kOkDtRC )
  185. return rc;
  186. // set the const flags for the new object
  187. d->flags = cmSetFlag(d->flags, flags & (kConstValueDtFl | kConstObjDtFl));
  188. if( ref != NULL )
  189. *ref = d;
  190. return rc;
  191. }
  192. cmDtRC_t cmDataNewNull( cmData_t* parent, unsigned flags, cmData_t** ref )
  193. { *ref = _cmDataNew(parent, kScalarDtId, kNullDtId); return kOkDtRC; }
  194. cmDtRC_t cmDataNewBool( cmData_t* parent, unsigned flags, bool v, cmData_t** ref )
  195. { return cmDataNewScalar(parent,kBoolDtId,flags,&v,0,ref); }
  196. cmDtRC_t cmDataNewChar( cmData_t* parent, unsigned flags, char v, cmData_t** ref )
  197. { return cmDataNewScalar(parent,kCharDtId,flags,&v,0,ref); }
  198. cmDtRC_t cmDataNewUChar( cmData_t* parent, unsigned flags, unsigned char v, cmData_t** ref )
  199. { return cmDataNewScalar(parent,kUCharDtId,flags,&v,0,ref); }
  200. cmDtRC_t cmDataNewShort( cmData_t* parent, unsigned flags, short v, cmData_t** ref )
  201. { return cmDataNewScalar(parent,kShortDtId,flags,&v,0,ref); }
  202. cmDtRC_t cmDataNewUShort( cmData_t* parent, unsigned flags, unsigned short v, cmData_t** ref )
  203. { return cmDataNewScalar(parent,kUShortDtId,flags,&v,0,ref); }
  204. cmDtRC_t cmDataNewInt( cmData_t* parent, unsigned flags, int v, cmData_t** ref )
  205. { return cmDataNewScalar(parent,kIntDtId,flags,&v,0,ref); }
  206. cmDtRC_t cmDataNewUInt( cmData_t* parent, unsigned flags, unsigned int v, cmData_t** ref )
  207. { return cmDataNewScalar(parent,kUIntDtId,flags,&v,0,ref); }
  208. cmDtRC_t cmDataNewLong( cmData_t* parent, unsigned flags, long v, cmData_t** ref )
  209. { return cmDataNewScalar(parent,kLongDtId,flags,&v,0,ref); }
  210. cmDtRC_t cmDataNewULong( cmData_t* parent, unsigned flags, unsigned long v, cmData_t** ref )
  211. { return cmDataNewScalar(parent,kULongDtId,flags,&v,0,ref); }
  212. cmDtRC_t cmDataNewFloat( cmData_t* parent, unsigned flags, float v, cmData_t** ref )
  213. { return cmDataNewScalar(parent,kFloatDtId,flags,&v,0,ref); }
  214. cmDtRC_t cmDataNewDouble( cmData_t* parent, unsigned flags, double v, cmData_t** ref )
  215. { return cmDataNewScalar(parent,kDoubleDtId,flags,&v,0,ref); }
  216. cmDtRC_t cmDataNewStr( cmData_t* parent, unsigned flags, cmChar_t* v, cmData_t** ref )
  217. { return cmDataNewScalar(parent,kStrDtId,flags,v,strlen(v)+1,ref); }
  218. cmDtRC_t cmDataNewConstStr( cmData_t* parent, unsigned flags, const cmChar_t* v, cmData_t** ref )
  219. { return cmDataNewScalar(parent,kStrDtId,flags | kConstValueDtFl, (void*)v,strlen(v)+1,ref); }
  220. cmDtRC_t cmDataNewStrN( cmData_t* parent, unsigned flags, cmChar_t* v, unsigned charCnt, cmData_t** ref )
  221. { return cmDataNewScalar(parent,kStrDtId,flags,v,charCnt+1,ref); }
  222. cmDtRC_t cmDataNewConstStrN( cmData_t* parent, unsigned flags, const cmChar_t* v, unsigned charCnt, cmData_t** ref )
  223. { return cmDataNewScalar(parent,kStrDtId,flags | kConstValueDtFl, (void*)v,charCnt+1,ref); }
  224. cmDtRC_t cmDataNewBlob( cmData_t* parent, unsigned flags, void* v, unsigned byteCnt, cmData_t** ref )
  225. { return cmDataNewScalar(parent,kBlobDtId,flags,v,byteCnt,ref); }
  226. cmDtRC_t cmDataNewConstBlob( cmData_t* parent, unsigned flags, const void* v, unsigned byteCnt, cmData_t** ref )
  227. { return cmDataNewScalar(parent,kBlobDtId,flags | kConstValueDtFl, (void*)v,byteCnt,ref); }
  228. cmDtRC_t cmDataSetScalarValue( cmData_t* d, cmDataTypeId_t tid, void* vp, unsigned byteCnt, unsigned flags )
  229. {
  230. cmDtRC_t rc;
  231. // if the type of the object is changing
  232. if( d->tid != tid || d->cid != kScalarDtId )
  233. {
  234. // verify that it is legal to change the type of the object
  235. if( cmIsFlag(d->flags,kConstObjDtFl) )
  236. return _cmDtErrMsg(d,kConstErrDtRC,"Const object violation.");
  237. // convert this to a scalar null object.
  238. if((rc = _cmDataFreeData(d)) != kOkDtRC )
  239. return rc;
  240. }
  241. // verify that it is legal to change the value of this object
  242. if( cmIsFlag(d->flags,kConstValueDtFl) )
  243. return _cmDtErrMsg(d,kConstErrDtRC,"Const value violation.");
  244. switch( tid )
  245. {
  246. case kInvalidTypeDtId:
  247. return _cmDtErrMsg(d,kAssertErrDtRC,"Invalid data type.");
  248. case kNullDtId: // 'd' is already NULL.
  249. break;
  250. case kBoolDtId: d->u.b = *(bool*)vp; break;
  251. case kUCharDtId: d->u.uc = *(unsigned char*)vp; break;
  252. case kCharDtId: d->u.c = *(char*)vp; break;
  253. case kUShortDtId: d->u.us = *(unsigned short*)vp; break;
  254. case kShortDtId: d->u.s = *(short*)vp; break;
  255. case kUIntDtId: d->u.ui = *(unsigned int*)vp; break;
  256. case kIntDtId: d->u.i = *(int*)vp; break;
  257. case kULongDtId: d->u.ul = *(unsigned long*)vp; break;
  258. case kLongDtId: d->u.l = *(long*)vp; break;
  259. case kFloatDtId: d->u.f = *(float*)vp; break;
  260. case kDoubleDtId: d->u.d = *(double*)vp; break;
  261. case kStrDtId:
  262. case kBlobDtId:
  263. {
  264. cmChar_t* blankStr = "";
  265. // strings must have a byteCnt of at least one
  266. assert( tid==kBlobDtId || (tid==kStrDtId && byteCnt>0) );
  267. // if a NULL source string is encountered then make it a 0 length string
  268. if( d->tid==kStrDtId && vp==NULL )
  269. vp = blankStr;
  270. // if an empty blob was passed in then be sure it's src ptr is NULL and byteCnt==0
  271. if( d->tid==kBlobDtId && (vp==NULL || byteCnt==0) )
  272. {
  273. if((rc = _cmDataFreeData(d)) != kOkDtRC )
  274. return rc;
  275. byteCnt = 0;
  276. d->u.z = NULL;
  277. break;
  278. }
  279. // if the incoming string/blob should be internally duplicated
  280. if( cmIsNotFlag(flags,kNoCopyDtFl) )
  281. {
  282. // allocate internal space to store the incoming data
  283. if( (d->tid==kBlobDtId || d->tid == kStrDtId) && cmIsFlag(d->flags,kFreeValueDtFl) )
  284. d->u.z = cmMemResize(char,d->u.z,byteCnt);
  285. else
  286. d->u.z = cmMemAlloc(char,byteCnt);
  287. // store the source string/blob into the internal memory buffer
  288. memcpy(d->u.z,vp,byteCnt);
  289. // be sure the string is zero terminated
  290. if( tid == kStrDtId )
  291. d->u.z[byteCnt-1] = 0;
  292. // by default the system now takes responsibility for freeing this buffer
  293. d->flags |= kFreeValueDtFl;
  294. }
  295. else // the incoming string/blob pointer is simply being assigned w/o duplication
  296. {
  297. // free the objects previous value ...
  298. if((rc = _cmDataFreeData(d)) != kOkDtRC )
  299. return rc;
  300. // and assign the new value (without reallocating the string)
  301. d->u.z = vp;
  302. d->flags = cmEnaFlag(d->flags,kFreeValueDtFl,cmIsFlag(flags,kFreeValueDtFl));
  303. d->flags |= kNoCopyDtFl;
  304. }
  305. }
  306. break;
  307. default:
  308. break;
  309. }
  310. // we can't set this above because the string type relies
  311. // on knowing the previous type of the object
  312. d->cid = kScalarDtId;
  313. d->tid = tid;
  314. d->cnt = byteCnt;
  315. return rc;
  316. }
  317. cmDtRC_t cmDataSetNull( cmData_t* d )
  318. { return cmDataSetScalarValue(d, kNullDtId, NULL, 0, kNoFlagsDtFl ); }
  319. cmDtRC_t cmDataSetBool( cmData_t* d, bool v )
  320. { return cmDataSetScalarValue(d, kBoolDtId, &v, 0, kNoFlagsDtFl ); }
  321. cmDtRC_t cmDataSetChar( cmData_t* d, char v )
  322. { return cmDataSetScalarValue(d, kCharDtId, &v, 0, kNoFlagsDtFl ); }
  323. cmDtRC_t cmDataSetUChar( cmData_t* d, unsigned char v )
  324. { return cmDataSetScalarValue(d, kUCharDtId, &v, 0, kNoFlagsDtFl ); }
  325. cmDtRC_t cmDataSetShort( cmData_t* d, short v )
  326. { return cmDataSetScalarValue(d, kShortDtId, &v, 0, kNoFlagsDtFl ); }
  327. cmDtRC_t cmDataSetUShort( cmData_t* d, unsigned short v )
  328. { return cmDataSetScalarValue(d, kUShortDtId, &v, 0, kNoFlagsDtFl ); }
  329. cmDtRC_t cmDataSetInt( cmData_t* d, int v )
  330. { return cmDataSetScalarValue(d, kIntDtId, &v, 0, kNoFlagsDtFl ); }
  331. cmDtRC_t cmDataSetUInt( cmData_t* d, unsigned int v )
  332. { return cmDataSetScalarValue(d, kUIntDtId, &v, 0, kNoFlagsDtFl ); }
  333. cmDtRC_t cmDataSetLong( cmData_t* d, long v )
  334. { return cmDataSetScalarValue(d, kLongDtId, &v, 0, kNoFlagsDtFl ); }
  335. cmDtRC_t cmDataSetULong( cmData_t* d, unsigned long v )
  336. { return cmDataSetScalarValue(d, kULongDtId, &v, 0, kNoFlagsDtFl ); }
  337. cmDtRC_t cmDataSetFloat( cmData_t* d, float v )
  338. { return cmDataSetScalarValue(d, kFloatDtId, &v, 0, kNoFlagsDtFl ); }
  339. cmDtRC_t cmDataSetDouble( cmData_t* d, double v )
  340. { return cmDataSetScalarValue(d, kDoubleDtId, &v, 0, kNoFlagsDtFl ); }
  341. cmDtRC_t cmDataSetStr( cmData_t* d, unsigned flags, cmChar_t* v )
  342. { return cmDataSetScalarValue(d, kStrDtId, v, v==NULL ? 1 : strlen(v)+1, flags ); }
  343. cmDtRC_t cmDataSetConstStr( cmData_t* d, unsigned flags, const cmChar_t* v )
  344. { return cmDataSetScalarValue(d, kStrDtId, (void*)v, v==NULL ? 1 : strlen(v)+1, flags |= kConstValueDtFl ); }
  345. cmDtRC_t cmDataSetStrN( cmData_t* d, unsigned flags, cmChar_t* v, unsigned charCnt )
  346. { return cmDataSetScalarValue(d, kStrDtId, (void*)v, v==NULL ? 1 : charCnt+1, flags); }
  347. cmDtRC_t cmDataSetConstStrN( cmData_t* d, unsigned flags, const cmChar_t* v, unsigned charCnt )
  348. { return cmDataSetScalarValue(d, kStrDtId, (void*)v, v==NULL ? 1 : charCnt+1, flags |= kConstValueDtFl); }
  349. cmDtRC_t cmDataSetBlob( cmData_t* d, unsigned flags, void* v, unsigned byteCnt )
  350. { return cmDataSetScalarValue(d, kBlobDtId, v, byteCnt, flags); }
  351. cmDtRC_t cmDataSetConstBlob( cmData_t* d, unsigned flags, const void* v, unsigned byteCnt )
  352. { return cmDataSetScalarValue(d, kBlobDtId, (void*)v, byteCnt, flags |= kConstValueDtFl); }
  353. cmDtRC_t cmDataBool( const cmData_t* d, bool* v )
  354. {
  355. if( d->tid != kBoolDtId )
  356. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:bool but encountered type:%s.",cmDataTypeToLabel(d->tid));
  357. *v = d->u.c;
  358. return kOkDtRC;
  359. }
  360. cmDtRC_t cmDataChar( const cmData_t* d, char* v )
  361. {
  362. if( d->tid != kCharDtId )
  363. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:char but encountered type:%s.",cmDataTypeToLabel(d->tid));
  364. *v = d->u.c;
  365. return kOkDtRC;
  366. }
  367. cmDtRC_t cmDataUChar( const cmData_t* d, unsigned char* v )
  368. {
  369. if( d->tid != kUCharDtId )
  370. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:uchar but encountered type:%s.",cmDataTypeToLabel(d->tid));
  371. *v = d->u.uc;
  372. return kOkDtRC;
  373. }
  374. cmDtRC_t cmDataShort( const cmData_t* d, short* v )
  375. {
  376. if( d->tid != kShortDtId )
  377. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:short but encountered type:%s.",cmDataTypeToLabel(d->tid));
  378. *v = d->u.s;
  379. return kOkDtRC;
  380. }
  381. cmDtRC_t cmDataUShort( const cmData_t* d, unsigned short* v )
  382. {
  383. if( d->tid != kUShortDtId )
  384. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:ushort but encountered type:%s.",cmDataTypeToLabel(d->tid));
  385. *v = d->u.us;
  386. return kOkDtRC;
  387. }
  388. cmDtRC_t cmDataInt( const cmData_t* d, int* v )
  389. {
  390. if( d->tid != kIntDtId )
  391. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:int but encountered type:%s.",cmDataTypeToLabel(d->tid));
  392. *v = d->u.i;
  393. return kOkDtRC;
  394. }
  395. cmDtRC_t cmDataUInt( const cmData_t* d, unsigned int* v )
  396. {
  397. if( d->tid != kUIntDtId )
  398. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:uint but encountered type:%s.",cmDataTypeToLabel(d->tid));
  399. *v = d->u.ui;
  400. return kOkDtRC;
  401. }
  402. cmDtRC_t cmDataLong( const cmData_t* d, long* v )
  403. {
  404. if( d->tid != kLongDtId )
  405. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:long but encountered type:%s.",cmDataTypeToLabel(d->tid));
  406. *v = d->u.l;
  407. return kOkDtRC;
  408. }
  409. cmDtRC_t cmDataULong( const cmData_t* d, unsigned long* v )
  410. {
  411. if( d->tid != kULongDtId )
  412. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:ulong but encountered type:%s.",cmDataTypeToLabel(d->tid));
  413. *v = d->u.ul;
  414. return kOkDtRC;
  415. }
  416. cmDtRC_t cmDataFloat( const cmData_t* d, float* v )
  417. {
  418. if( d->tid != kFloatDtId )
  419. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:float but encountered type:%s.",cmDataTypeToLabel(d->tid));
  420. *v = d->u.f;
  421. return kOkDtRC;
  422. }
  423. cmDtRC_t cmDataDouble( const cmData_t* d, double* v )
  424. {
  425. if( d->tid != kDoubleDtId )
  426. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:double but encountered type:%s.",cmDataTypeToLabel(d->tid));
  427. *v = d->u.d;
  428. return kOkDtRC;
  429. }
  430. cmDtRC_t cmDataStr( const cmData_t* d, cmChar_t** v )
  431. {
  432. if( d->tid != kStrDtId )
  433. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:string but encountered type:%s.",cmDataTypeToLabel(d->tid));
  434. if( cmIsFlag(d->flags,kConstValueDtFl) )
  435. return _cmDtErrMsg(d,kConstErrDtRC,"A const string cannot return as a non-const string.");
  436. *v = d->u.z;
  437. return kOkDtRC;
  438. }
  439. cmDtRC_t cmDataConstStr( const cmData_t* d, const cmChar_t** v )
  440. {
  441. if( d->tid != kStrDtId )
  442. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:string but encountered type:%s.",cmDataTypeToLabel(d->tid));
  443. *v = d->u.z;
  444. return kOkDtRC;
  445. }
  446. cmDtRC_t cmDataBlob( const cmData_t* d, void** v, unsigned* byteCntRef )
  447. {
  448. if( v != NULL )
  449. *v = NULL;
  450. if( byteCntRef != NULL )
  451. *byteCntRef = 0;
  452. if( d->tid != kBlobDtId )
  453. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:string but encountered type:%s.",cmDataTypeToLabel(d->tid));
  454. if( v != NULL )
  455. *v = d->u.z;
  456. if( byteCntRef != NULL )
  457. *byteCntRef = d->cnt;
  458. return kOkDtRC;
  459. }
  460. cmDtRC_t cmDataConstBlob( const cmData_t* d, const void** v, unsigned* byteCntRef )
  461. {
  462. if( v != NULL )
  463. *v = NULL;
  464. if( byteCntRef != NULL )
  465. *byteCntRef = 0;
  466. if( d->tid != kBlobDtId )
  467. return _cmDtErrMsg(d,kInvalidTypeDtRC,"Expected type:string but encountered type:%s.",cmDataTypeToLabel(d->tid));
  468. if( v != NULL )
  469. *v = d->u.z;
  470. if( byteCntRef != NULL )
  471. *byteCntRef = d->cnt;
  472. return kOkDtRC;
  473. }
  474. bool cmDtBool( const cmData_t* p )
  475. {
  476. bool v;
  477. if( cmDataBool(p,&v) != kOkDtRC )
  478. v = kInvalidDtBool;
  479. return v;
  480. }
  481. char cmDtChar( const cmData_t* p )
  482. {
  483. char v;
  484. if( cmDataChar(p,&v) != kOkDtRC )
  485. v = kInvalidDtChar;
  486. return v;
  487. }
  488. unsigned char cmDtUChar( const cmData_t* p )
  489. {
  490. unsigned char v;
  491. if( cmDataUChar(p,&v) != kOkDtRC )
  492. v = kInvalidDtChar;
  493. return v;
  494. }
  495. short cmDtShort( const cmData_t* p )
  496. {
  497. short v;
  498. if( cmDataShort(p,&v) != kOkDtRC )
  499. v = kInvalidDtShort;
  500. return v;
  501. }
  502. unsigned short cmDtUShort( const cmData_t* p )
  503. {
  504. unsigned short v;
  505. if( cmDataUShort(p,&v) != kOkDtRC )
  506. v = kInvalidDtShort;
  507. return v;
  508. }
  509. int cmDtInt( const cmData_t* p )
  510. {
  511. int v;
  512. if( cmDataInt(p,&v) != kOkDtRC )
  513. v = kInvalidDtInt;
  514. return v;
  515. }
  516. unsigned cmDtUInt( const cmData_t* p )
  517. {
  518. unsigned v;
  519. if( cmDataUInt(p,&v) != kOkDtRC )
  520. v = kInvalidDtInt;
  521. return v;
  522. }
  523. long cmDtLong( const cmData_t* p )
  524. {
  525. long v;
  526. if( cmDataLong(p,&v) != kOkDtRC )
  527. v = kInvalidDtLong;
  528. return v;
  529. }
  530. unsigned long cmDtULong( const cmData_t* p )
  531. {
  532. unsigned long v;
  533. if( cmDataULong(p,&v) != kOkDtRC )
  534. v = kInvalidDtLong;
  535. return v;
  536. }
  537. float cmDtFloat( const cmData_t* p )
  538. {
  539. float v;
  540. if( cmDataFloat(p,&v) != kOkDtRC )
  541. v = kInvalidDtFloat;
  542. return v;
  543. }
  544. double cmDtDouble( const cmData_t* p )
  545. {
  546. double v;
  547. if( cmDataDouble(p,&v) != kOkDtRC )
  548. v = kInvalidDtDouble;
  549. return v;
  550. }
  551. char* cmDtStr( const cmData_t* p )
  552. {
  553. char* v;
  554. if( cmDataStr(p,&v) != kOkDtRC )
  555. v = NULL;
  556. return v;
  557. }
  558. const char* cmDtConstStr( const cmData_t* p )
  559. {
  560. const char* v;
  561. if( cmDataConstStr(p,&v) != kOkDtRC )
  562. v = NULL;
  563. return v;
  564. }
  565. void* cmDtBlob( const cmData_t* p, unsigned* byteCntRef )
  566. {
  567. void* v;
  568. if( cmDataBlob(p,&v,byteCntRef) != kOkDtRC )
  569. v = NULL;
  570. return v;
  571. }
  572. const void* cmDtConstBlob( const cmData_t* p, unsigned* byteCntRef )
  573. {
  574. const void* v;
  575. if( cmDataConstBlob(p,&v,byteCntRef) != kOkDtRC )
  576. v = NULL;
  577. return v;
  578. }
  579. cmDtRC_t cmDataGetBool( const cmData_t* p, bool* vp )
  580. {
  581. if( p->cid != kScalarDtId )
  582. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  583. switch( p->tid )
  584. {
  585. case kBoolDtId: *vp = p->u.b; break;
  586. case kUCharDtId: *vp = (bool)p->u.uc; break;
  587. case kCharDtId: *vp = (bool)p->u.c; break;
  588. case kUShortDtId: *vp = (bool)p->u.us; break;
  589. case kShortDtId: *vp = (bool)p->u.s; break;
  590. case kUIntDtId: *vp = (bool)p->u.ui; break;
  591. case kIntDtId: *vp = (bool)p->u.i; break;
  592. case kULongDtId: *vp = (bool)p->u.ul; break;
  593. case kLongDtId: *vp = (bool)p->u.l; break;
  594. case kFloatDtId: *vp = (bool)p->u.f; break;
  595. case kDoubleDtId: *vp = (bool)p->u.d; break;
  596. default:
  597. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'bool'.",cmDataTypeToLabel(p->tid));
  598. }
  599. return kOkDtRC;
  600. }
  601. cmDtRC_t cmDataGetUChar( const cmData_t* p, unsigned char* vp )
  602. {
  603. if( p->cid != kScalarDtId )
  604. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  605. switch( p->tid )
  606. {
  607. case kUCharDtId: *vp = p->u.uc; break;
  608. case kBoolDtId: *vp = (unsigned char)p->u.b; break;
  609. case kCharDtId: *vp = (unsigned char)p->u.c; break;
  610. case kUShortDtId: *vp = (unsigned char)p->u.us; break;
  611. case kShortDtId: *vp = (unsigned char)p->u.s; break;
  612. case kUIntDtId: *vp = (unsigned char)p->u.ui; break;
  613. case kIntDtId: *vp = (unsigned char)p->u.i; break;
  614. case kULongDtId: *vp = (unsigned char)p->u.ul; break;
  615. case kLongDtId: *vp = (unsigned char)p->u.l; break;
  616. case kFloatDtId: *vp = (unsigned char)p->u.f; break;
  617. case kDoubleDtId: *vp = (unsigned char)p->u.d; break;
  618. default:
  619. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'uchar'.",cmDataTypeToLabel(p->tid));
  620. }
  621. return kOkDtRC;
  622. }
  623. cmDtRC_t cmDataGetChar( const cmData_t* p, char* vp )
  624. {
  625. if( p->cid != kScalarDtId )
  626. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  627. switch( p->tid )
  628. {
  629. case kBoolDtId: *vp = (char)p->u.b; break;
  630. case kUCharDtId: *vp = (char)p->u.uc; break;
  631. case kCharDtId: *vp = p->u.c; break;
  632. case kUShortDtId: *vp = (char)p->u.us; break;
  633. case kShortDtId: *vp = (char)p->u.s; break;
  634. case kUIntDtId: *vp = (char)p->u.ui; break;
  635. case kIntDtId: *vp = (char)p->u.i; break;
  636. case kULongDtId: *vp = (char)p->u.ul; break;
  637. case kLongDtId: *vp = (char)p->u.l; break;
  638. case kFloatDtId: *vp = (char)p->u.f; break;
  639. case kDoubleDtId: *vp = (char)p->u.d; break;
  640. default:
  641. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'char'.",cmDataTypeToLabel(p->tid));
  642. }
  643. return kOkDtRC;
  644. }
  645. cmDtRC_t cmDataGetShort( const cmData_t* p, short* vp )
  646. {
  647. if( p->cid != kScalarDtId )
  648. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  649. switch( p->tid )
  650. {
  651. case kBoolDtId: *vp = (short)p->u.b; break;
  652. case kUCharDtId: *vp = (short)p->u.uc; break;
  653. case kCharDtId: *vp = (short)p->u.c; break;
  654. case kUShortDtId: *vp = (short)p->u.us; break;
  655. case kShortDtId: *vp = p->u.s; break;
  656. case kUIntDtId: *vp = (short)p->u.ui; break;
  657. case kIntDtId: *vp = (short)p->u.i; break;
  658. case kULongDtId: *vp = (short)p->u.ul; break;
  659. case kLongDtId: *vp = (short)p->u.l; break;
  660. case kFloatDtId: *vp = (short)p->u.f; break;
  661. case kDoubleDtId: *vp = (short)p->u.d; break;
  662. default:
  663. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'short'.",cmDataTypeToLabel(p->tid));
  664. }
  665. return kOkDtRC;
  666. }
  667. cmDtRC_t cmDataGetUShort( const cmData_t* p, unsigned short* vp )
  668. {
  669. if( p->cid != kScalarDtId )
  670. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  671. switch( p->tid )
  672. {
  673. case kBoolDtId: *vp = (unsigned short)p->u.b; break;
  674. case kUCharDtId: *vp = (unsigned short)p->u.uc; break;
  675. case kCharDtId: *vp = (unsigned short)p->u.c; break;
  676. case kUShortDtId: *vp = p->u.us; break;
  677. case kShortDtId: *vp = (unsigned short)p->u.s; break;
  678. case kUIntDtId: *vp = (unsigned short)p->u.ui; break;
  679. case kIntDtId: *vp = (unsigned short)p->u.i; break;
  680. case kULongDtId: *vp = (unsigned short)p->u.ul; break;
  681. case kLongDtId: *vp = (unsigned short)p->u.l; break;
  682. case kFloatDtId: *vp = (unsigned short)p->u.f; break;
  683. case kDoubleDtId: *vp = (unsigned short)p->u.d; break;
  684. default:
  685. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'ushort'.",cmDataTypeToLabel(p->tid));
  686. }
  687. return kOkDtRC;
  688. }
  689. cmDtRC_t cmDataGetInt( const cmData_t* p, int* vp )
  690. {
  691. if( p->cid != kScalarDtId )
  692. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  693. switch( p->tid )
  694. {
  695. case kBoolDtId: *vp = (int)p->u.b; break;
  696. case kUCharDtId: *vp = (int)p->u.uc; break;
  697. case kCharDtId: *vp = (int)p->u.c; break;
  698. case kUShortDtId: *vp = (int)p->u.us; break;
  699. case kShortDtId: *vp = (int)p->u.s; break;
  700. case kUIntDtId: *vp = (int)p->u.ui; break;
  701. case kIntDtId: *vp = p->u.i; break;
  702. case kULongDtId: *vp = (int)p->u.ul; break;
  703. case kLongDtId: *vp = (int)p->u.l; break;
  704. case kFloatDtId: *vp = (int)p->u.f; break;
  705. case kDoubleDtId: *vp = (int)p->u.d; break;
  706. default:
  707. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'int'.",cmDataTypeToLabel(p->tid));
  708. }
  709. return kOkDtRC;
  710. }
  711. cmDtRC_t cmDataGetUInt( const cmData_t* p, unsigned int* vp )
  712. {
  713. if( p->cid != kScalarDtId )
  714. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  715. switch( p->tid )
  716. {
  717. case kBoolDtId: *vp = (unsigned int)p->u.b; break;
  718. case kUCharDtId: *vp = (unsigned int)p->u.uc; break;
  719. case kCharDtId: *vp = (unsigned int)p->u.c; break;
  720. case kUShortDtId: *vp = (unsigned int)p->u.us; break;
  721. case kShortDtId: *vp = (unsigned int)p->u.s; break;
  722. case kUIntDtId: *vp = p->u.ui; break;
  723. case kIntDtId: *vp = (unsigned int)p->u.i; break;
  724. case kULongDtId: *vp = (unsigned int)p->u.ul; break;
  725. case kLongDtId: *vp = (unsigned int)p->u.l; break;
  726. case kFloatDtId: *vp = (unsigned int)p->u.f; break;
  727. case kDoubleDtId: *vp = (unsigned int)p->u.d; break;
  728. default:
  729. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'uint'.",cmDataTypeToLabel(p->tid));
  730. }
  731. return kOkDtRC;
  732. }
  733. cmDtRC_t cmDataGetLong( const cmData_t* p, long* vp )
  734. {
  735. if( p->cid != kScalarDtId )
  736. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  737. switch( p->tid )
  738. {
  739. case kBoolDtId: *vp = (long)p->u.b; break;
  740. case kUCharDtId: *vp = (long)p->u.uc; break;
  741. case kCharDtId: *vp = (long)p->u.c; break;
  742. case kUShortDtId: *vp = (long)p->u.us; break;
  743. case kShortDtId: *vp = (long)p->u.s; break;
  744. case kUIntDtId: *vp = (long)p->u.ui; break;
  745. case kIntDtId: *vp = (long)p->u.i; break;
  746. case kULongDtId: *vp = (long)p->u.ul; break;
  747. case kLongDtId: *vp = p->u.l; break;
  748. case kFloatDtId: *vp = (long)p->u.f; break;
  749. case kDoubleDtId: *vp = (long)p->u.d; break;
  750. default:
  751. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'long'.",cmDataTypeToLabel(p->tid));
  752. }
  753. return kOkDtRC;
  754. }
  755. cmDtRC_t cmDataGetULong( const cmData_t* p, unsigned long* vp )
  756. {
  757. if( p->cid != kScalarDtId )
  758. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  759. switch( p->tid )
  760. {
  761. case kBoolDtId: *vp = (unsigned long)p->u.b; break;
  762. case kUCharDtId: *vp = (unsigned long)p->u.uc; break;
  763. case kCharDtId: *vp = (unsigned long)p->u.c; break;
  764. case kUShortDtId: *vp = (unsigned long)p->u.us; break;
  765. case kShortDtId: *vp = (unsigned long)p->u.s; break;
  766. case kUIntDtId: *vp = (unsigned long)p->u.ui; break;
  767. case kIntDtId: *vp = (unsigned long)p->u.i; break;
  768. case kULongDtId: *vp = p->u.ul; break;
  769. case kLongDtId: *vp = (unsigned long)p->u.l; break;
  770. case kFloatDtId: *vp = (unsigned long)p->u.f; break;
  771. case kDoubleDtId: *vp = (unsigned long)p->u.d; break;
  772. default:
  773. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'ulong'.",cmDataTypeToLabel(p->tid));
  774. }
  775. return kOkDtRC;
  776. }
  777. cmDtRC_t cmDataGetFloat( const cmData_t* p, float* vp )
  778. {
  779. if( p->cid != kScalarDtId )
  780. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  781. switch( p->tid )
  782. {
  783. case kBoolDtId: *vp = (float)p->u.b; break;
  784. case kUCharDtId: *vp = (float)p->u.uc; break;
  785. case kCharDtId: *vp = (float)p->u.c; break;
  786. case kUShortDtId: *vp = (float)p->u.us; break;
  787. case kShortDtId: *vp = (float)p->u.s; break;
  788. case kUIntDtId: *vp = (float)p->u.ui; break;
  789. case kIntDtId: *vp = (float)p->u.i; break;
  790. case kULongDtId: *vp = (float)p->u.ul; break;
  791. case kLongDtId: *vp = (float)p->u.l; break;
  792. case kFloatDtId: *vp = p->u.f; break;
  793. case kDoubleDtId: *vp = (float)p->u.d; break;
  794. default:
  795. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'float'.",cmDataTypeToLabel(p->tid));
  796. }
  797. return kOkDtRC;
  798. }
  799. cmDtRC_t cmDataGetDouble( const cmData_t* p, double* vp )
  800. {
  801. if( p->cid != kScalarDtId )
  802. return _cmDtErrMsg(p,kInvalidContDtRC,"Cannot convert a non-scalar value to a scalar value.");
  803. switch( p->tid )
  804. {
  805. case kBoolDtId: *vp = (double)p->u.b; break;
  806. case kUCharDtId: *vp = (double)p->u.uc; break;
  807. case kCharDtId: *vp = (double)p->u.c; break;
  808. case kUShortDtId: *vp = (double)p->u.us; break;
  809. case kShortDtId: *vp = (double)p->u.s; break;
  810. case kUIntDtId: *vp = (double)p->u.ui; break;
  811. case kIntDtId: *vp = (double)p->u.i; break;
  812. case kULongDtId: *vp = (double)p->u.ul; break;
  813. case kLongDtId: *vp = (double)p->u.l; break;
  814. case kFloatDtId: *vp = (double)p->u.f; break;
  815. case kDoubleDtId: *vp = p->u.d; break;
  816. default:
  817. return _cmDtErrMsg(p,kCvtErrDtRC,"Cannot convert '%s' to 'double'.",cmDataTypeToLabel(p->tid));
  818. }
  819. return kOkDtRC;
  820. }
  821. char cmDtGetChar( const cmData_t* p )
  822. {
  823. char v;
  824. if( cmDataGetChar(p,&v) != kOkDtRC )
  825. v = kInvalidDtChar;
  826. return v;
  827. }
  828. unsigned char cmDtGetUChar( const cmData_t* p )
  829. {
  830. unsigned char v;
  831. if( cmDataGetUChar(p,&v) != kOkDtRC )
  832. v = kInvalidDtChar;
  833. return v;
  834. }
  835. short cmDtGetShort( const cmData_t* p )
  836. {
  837. short v;
  838. if( cmDataGetShort(p,&v) != kOkDtRC )
  839. v = kInvalidDtShort;
  840. return v;
  841. }
  842. unsigned short cmDtGetUShort( const cmData_t* p )
  843. {
  844. unsigned short v;
  845. if( cmDataGetUShort(p,&v) != kOkDtRC )
  846. v = kInvalidDtShort;
  847. return v;
  848. }
  849. int cmDtGetInt( const cmData_t* p )
  850. {
  851. int v;
  852. if( cmDataGetInt(p,&v) != kOkDtRC )
  853. v = kInvalidDtInt;
  854. return v;
  855. }
  856. unsigned cmDtGetUInt( const cmData_t* p )
  857. {
  858. unsigned v;
  859. if( cmDataGetUInt(p,&v) != kOkDtRC )
  860. v = kInvalidDtInt;
  861. return v;
  862. }
  863. long cmDtGetLong( const cmData_t* p )
  864. {
  865. long v;
  866. if( cmDataGetLong(p,&v) != kOkDtRC )
  867. v = kInvalidDtLong;
  868. return v;
  869. }
  870. unsigned long cmDtGetULong( const cmData_t* p )
  871. {
  872. unsigned long v;
  873. if( cmDataGetULong(p,&v) != kOkDtRC )
  874. v = kInvalidDtLong;
  875. return v;
  876. }
  877. float cmDtGetFloat( const cmData_t* p )
  878. {
  879. float v;
  880. if( cmDataGetFloat(p,&v) != kOkDtRC )
  881. v = kInvalidDtFloat;
  882. return v;
  883. }
  884. double cmDtGetDouble( const cmData_t* p )
  885. {
  886. double v;
  887. if( cmDataGetDouble(p,&v) != kOkDtRC )
  888. v = kInvalidDtDouble;
  889. return v;
  890. }
  891. cmDtRC_t cmDataNewArray( cmData_t* parent, cmDataTypeId_t tid, void* vp, unsigned eleCnt, unsigned flags, cmData_t** ref )
  892. {
  893. cmDtRC_t rc;
  894. if( ref != NULL )
  895. *ref = NULL;
  896. // create a new 'null' object
  897. cmData_t* d = _cmDataNew(parent, kScalarDtId, kNullDtId );
  898. // assign the value
  899. if((rc = cmDataSetArrayValue(d,tid,vp,eleCnt,flags)) != kOkDtRC )
  900. return rc;
  901. // set the flags for the new object
  902. d->flags = cmSetFlag(d->flags, flags & (kConstValueDtFl | kConstObjDtFl | kNoCopyDtFl));
  903. if( ref != NULL )
  904. *ref = d;
  905. return rc;
  906. }
  907. cmDtRC_t cmDataNewBoolArray( cmData_t* parent, bool* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  908. { return cmDataNewArray(parent, kBoolDtId, v, eleCnt, flags, ref ); }
  909. cmDtRC_t cmDataNewCharArray( cmData_t* parent, char* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  910. { return cmDataNewArray(parent, kCharDtId, v, eleCnt, flags, ref ); }
  911. cmDtRC_t cmDataNewUCharArray( cmData_t* parent, unsigned char* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  912. { return cmDataNewArray(parent, kUCharDtId, v, eleCnt, flags, ref ); }
  913. cmDtRC_t cmDataNewShortArray( cmData_t* parent, short* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  914. { return cmDataNewArray(parent, kShortDtId, v, eleCnt, flags, ref ); }
  915. cmDtRC_t cmDataNewUShortArray( cmData_t* parent, unsigned short* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  916. { return cmDataNewArray(parent, kUShortDtId, v, eleCnt, flags, ref ); }
  917. cmDtRC_t cmDataNewIntArray( cmData_t* parent, int* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  918. { return cmDataNewArray(parent, kIntDtId, v, eleCnt, flags, ref ); }
  919. cmDtRC_t cmDataNewUIntArray( cmData_t* parent, unsigned int* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  920. { return cmDataNewArray(parent, kUIntDtId, v, eleCnt, flags, ref ); }
  921. cmDtRC_t cmDataNewLongArray( cmData_t* parent, long* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  922. { return cmDataNewArray(parent, kLongDtId, v, eleCnt, flags, ref ); }
  923. cmDtRC_t cmDataNewULongArray( cmData_t* parent, unsigned long* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  924. { return cmDataNewArray(parent, kULongDtId, v, eleCnt, flags, ref ); }
  925. cmDtRC_t cmDataNewFloatArray( cmData_t* parent, float* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  926. { return cmDataNewArray(parent, kFloatDtId, v, eleCnt, flags, ref ); }
  927. cmDtRC_t cmDataNewDoubleArray( cmData_t* parent, double* v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  928. { return cmDataNewArray(parent, kDoubleDtId, v, eleCnt, flags, ref ); }
  929. cmDtRC_t cmDataNewStrArray( cmData_t* parent, cmChar_t** v, unsigned eleCnt, unsigned flags, cmData_t** ref )
  930. { return cmDataNewArray(parent, kStrDtId, v, eleCnt, flags, ref ); }
  931. cmDtRC_t cmDataNewConstStrArray( cmData_t* parent, const cmChar_t** v,unsigned eleCnt, unsigned flags, cmData_t** ref )
  932. { return cmDataNewArray(parent, kStrDtId, (cmChar_t**)v, eleCnt, flags, ref ); }
  933. cmDtRC_t cmDataSetArrayValue( cmData_t* d, cmDataTypeId_t tid, void* vp, unsigned eleCnt, unsigned flags )
  934. {
  935. cmDtRC_t rc = kOkDtRC;
  936. // if the type of the object is changing
  937. if( d->tid != tid || d->cid != kScalarDtId )
  938. {
  939. // verify that it is legal to change the type of the object
  940. if( cmIsFlag(d->flags,kConstObjDtFl) )
  941. return _cmDtErrMsg(d,kConstErrDtRC,"Const object violation.");
  942. // convert this to a scalar null object.
  943. if((rc = _cmDataFreeData(d)) != kOkDtRC )
  944. return rc;
  945. }
  946. // verify that it is legal to change the value of this object
  947. if( cmIsFlag(d->flags,kConstValueDtFl) )
  948. return _cmDtErrMsg(d,kConstErrDtRC,"Const value violation.");
  949. // if the array should be reallocated
  950. if( cmIsNotFlag(flags,kNoCopyDtFl) )
  951. {
  952. unsigned byteCnt = cmDataByteWidth(tid) * eleCnt;
  953. // reallocate a new string
  954. if( d->cid == kArrayDtId && cmIsFlag(d->flags,kFreeValueDtFl) )
  955. d->u.vp = cmMemResize(char,d->u.z,byteCnt);
  956. else
  957. d->u.vp = cmMemAlloc(char,byteCnt);
  958. memcpy(d->u.z,vp,byteCnt);
  959. d->flags |= kFreeValueDtFl;
  960. }
  961. else
  962. {
  963. // free the previous value ...
  964. if((rc = _cmDataFreeData(d)) != kOkDtRC )
  965. return rc;
  966. // and assign the new value (without reallocating the array)
  967. d->u.vp = vp;
  968. d->flags = cmEnaFlag(d->flags,kFreeValueDtFl,cmIsFlag(flags,kFreeValueDtFl));
  969. }
  970. // we can't set this above because the string type relies
  971. // on knowing the previous type of the object
  972. d->cid = kArrayDtId;
  973. d->tid = tid;
  974. d->cnt = eleCnt;
  975. return rc;
  976. }
  977. cmDtRC_t cmDataSetBoolArray( cmData_t* d, bool* v, unsigned eleCnt, unsigned flags )
  978. { return cmDataSetArrayValue(d, kBoolDtId, v, eleCnt, flags ); }
  979. cmDtRC_t cmDataSetCharArray( cmData_t* d, char* v, unsigned eleCnt, unsigned flags )
  980. { return cmDataSetArrayValue(d, kCharDtId, v, eleCnt, flags ); }
  981. cmDtRC_t cmDataSetUCharArray( cmData_t* d, unsigned char* v, unsigned eleCnt, unsigned flags )
  982. { return cmDataSetArrayValue(d, kUCharDtId, v, eleCnt, flags ); }
  983. cmDtRC_t cmDataSetShortArray( cmData_t* d, short* v, unsigned eleCnt, unsigned flags )
  984. { return cmDataSetArrayValue(d, kShortDtId, v, eleCnt, flags ); }
  985. cmDtRC_t cmDataSetUShortArray( cmData_t* d, unsigned short* v, unsigned eleCnt, unsigned flags )
  986. { return cmDataSetArrayValue(d, kUShortDtId, v, eleCnt, flags ); }
  987. cmDtRC_t cmDataSetIntArray( cmData_t* d, int* v, unsigned eleCnt, unsigned flags )
  988. { return cmDataSetArrayValue(d, kIntDtId, v, eleCnt, flags ); }
  989. cmDtRC_t cmDataSetUIntArray( cmData_t* d, unsigned int* v, unsigned eleCnt, unsigned flags )
  990. { return cmDataSetArrayValue(d, kUIntDtId, v, eleCnt, flags ); }
  991. cmDtRC_t cmDataSetLongArray( cmData_t* d, long* v, unsigned eleCnt, unsigned flags )
  992. { return cmDataSetArrayValue(d, kLongDtId, v, eleCnt, flags ); }
  993. cmDtRC_t cmDataSetULongArray( cmData_t* d, unsigned long* v, unsigned eleCnt, unsigned flags )
  994. { return cmDataSetArrayValue(d, kULongDtId, v, eleCnt, flags ); }
  995. cmDtRC_t cmDataSetFloatArray( cmData_t* d, float* v, unsigned eleCnt, unsigned flags )
  996. { return cmDataSetArrayValue(d, kFloatDtId, v, eleCnt, flags ); }
  997. cmDtRC_t cmDataSetDoubleArray( cmData_t* d, double* v, unsigned eleCnt, unsigned flags )
  998. { return cmDataSetArrayValue(d, kDoubleDtId, v, eleCnt, flags ); }
  999. cmDtRC_t cmDataSetStrArray( cmData_t* d, cmChar_t** v, unsigned eleCnt, unsigned flags )
  1000. { return cmDataSetArrayValue(d, kStrDtId, v, eleCnt, flags ); }
  1001. cmDtRC_t cmDataSetConstStrArray(cmData_t* d,const cmChar_t** v,unsigned eleCnt, unsigned flags )
  1002. { return cmDataSetArrayValue(d, kStrDtId, (cmChar_t**)v, eleCnt, flags ); }
  1003. unsigned cmDataArrayEleCount( const cmData_t* d )
  1004. { return d->cid==kArrayDtId ? d->cnt : 0; }
  1005. cmDtRC_t cmDataBoolArray( const cmData_t* d, bool** v )
  1006. {
  1007. if( d->cid != kArrayDtId )
  1008. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1009. *v = (bool*)d->u.vp;
  1010. return kOkDtRC;
  1011. }
  1012. cmDtRC_t cmDataCharArray( const cmData_t* d, char** v )
  1013. {
  1014. if( d->cid != kArrayDtId )
  1015. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1016. *v = (char*)d->u.vp;
  1017. return kOkDtRC;
  1018. }
  1019. cmDtRC_t cmDataUCharArray( const cmData_t* d, unsigned char** v )
  1020. {
  1021. if( d->cid != kArrayDtId )
  1022. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1023. *v = (unsigned char*)d->u.vp;
  1024. return kOkDtRC;
  1025. }
  1026. cmDtRC_t cmDataShortArray( const cmData_t* d, short** v )
  1027. {
  1028. if( d->cid != kArrayDtId )
  1029. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1030. *v = (short*)d->u.vp;
  1031. return kOkDtRC;
  1032. }
  1033. cmDtRC_t cmDataUShortArray( const cmData_t* d, unsigned short** v )
  1034. {
  1035. if( d->cid != kArrayDtId )
  1036. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1037. *v = (unsigned short*)d->u.vp;
  1038. return kOkDtRC;
  1039. }
  1040. cmDtRC_t cmDataIntArray( const cmData_t* d, int** v )
  1041. {
  1042. if( d->cid != kArrayDtId )
  1043. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1044. *v = (int*)d->u.vp;
  1045. return kOkDtRC;
  1046. }
  1047. cmDtRC_t cmDataUIntArray( const cmData_t* d, unsigned int** v )
  1048. {
  1049. if( d->cid != kArrayDtId )
  1050. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1051. *v = (unsigned int*)d->u.vp;
  1052. return kOkDtRC;
  1053. }
  1054. cmDtRC_t cmDataLongArray( const cmData_t* d, long** v )
  1055. {
  1056. if( d->cid != kArrayDtId )
  1057. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1058. *v = (long*)d->u.vp;
  1059. return kOkDtRC;
  1060. }
  1061. cmDtRC_t cmDataULongArray( const cmData_t* d, unsigned long** v )
  1062. {
  1063. if( d->cid != kArrayDtId )
  1064. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1065. *v = (unsigned long*)d->u.vp;
  1066. return kOkDtRC;
  1067. }
  1068. cmDtRC_t cmDataFloatArray( const cmData_t* d, float** v )
  1069. {
  1070. if( d->cid != kArrayDtId )
  1071. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1072. *v = (float*)d->u.vp;
  1073. return kOkDtRC;
  1074. }
  1075. cmDtRC_t cmDataDoubleArray( const cmData_t* d, double** v )
  1076. {
  1077. if( d->cid != kArrayDtId )
  1078. return _cmDtErrMsg(d,kInvalidContDtRC,"Cannot return an array base for a %s container.",cmDataContainerIdToLabel(d->cid));
  1079. *v = (double*)d->u.vp;
  1080. return kOkDtRC;
  1081. }
  1082. bool* cmDtBoolArray( const cmData_t* d )
  1083. {
  1084. bool* v = NULL;
  1085. if( cmDataBoolArray(d,&v) != kOkDtRC )
  1086. return NULL;
  1087. return v;
  1088. }
  1089. char* cmDtCharArray( const cmData_t* d )
  1090. {
  1091. char* v = NULL;
  1092. if( cmDataCharArray(d,&v) != kOkDtRC )
  1093. return NULL;
  1094. return v;
  1095. }
  1096. unsigned char* cmDtUCharArray( const cmData_t* d )
  1097. {
  1098. unsigned char* v = NULL;
  1099. if( cmDataUCharArray(d,&v) != kOkDtRC )
  1100. return NULL;
  1101. return v;
  1102. }
  1103. short* cmDtShortArray( const cmData_t* d )
  1104. {
  1105. short* v = NULL;
  1106. if( cmDataShortArray(d,&v) != kOkDtRC )
  1107. return NULL;
  1108. return v;
  1109. }
  1110. unsigned short* cmDtUShortArray( const cmData_t* d )
  1111. {
  1112. unsigned short* v = NULL;
  1113. if( cmDataUShortArray(d,&v) != kOkDtRC )
  1114. return NULL;
  1115. return v;
  1116. }
  1117. int* cmDtIntArray( const cmData_t* d )
  1118. {
  1119. int* v = NULL;
  1120. if( cmDataIntArray(d,&v) != kOkDtRC )
  1121. return NULL;
  1122. return v;
  1123. }
  1124. unsigned* cmDtUIntArray( const cmData_t* d )
  1125. {
  1126. unsigned* v = NULL;
  1127. if( cmDataUIntArray(d,&v) != kOkDtRC )
  1128. return NULL;
  1129. return v;
  1130. }
  1131. long* cmDtLongArray( const cmData_t* d )
  1132. {
  1133. long* v = NULL;
  1134. if( cmDataLongArray(d,&v) != kOkDtRC )
  1135. return NULL;
  1136. return v;
  1137. }
  1138. unsigned long* cmDtULongArray( const cmData_t* d )
  1139. {
  1140. unsigned long* v = NULL;
  1141. if( cmDataULongArray(d,&v) != kOkDtRC )
  1142. return NULL;
  1143. return v;
  1144. }
  1145. float* cmDtFloatArray( const cmData_t* d )
  1146. {
  1147. float* v = NULL;
  1148. if( cmDataFloatArray(d,&v) != kOkDtRC )
  1149. return NULL;
  1150. return v;
  1151. }
  1152. double* cmDtDoubleArray( const cmData_t* d )
  1153. {
  1154. double* v = NULL;
  1155. if( cmDataDoubleArray(d,&v) != kOkDtRC )
  1156. return NULL;
  1157. return v;
  1158. }
  1159. //----------------------------------------------------------------------------
  1160. // Structure related functions
  1161. //
  1162. void cmDataFree( cmData_t* p )
  1163. {
  1164. _cmDataFree(p);
  1165. }
  1166. cmData_t* cmDataUnlink( cmData_t* p )
  1167. {
  1168. if( p->parent == NULL )
  1169. return p;
  1170. assert( cmDataIsStruct(p->parent) );
  1171. cmData_t* cp = p->u.child;
  1172. cmData_t* pp = NULL;
  1173. for(; cp!=NULL; cp=cp->sibling)
  1174. if( cp == p )
  1175. {
  1176. if( pp == NULL )
  1177. p->parent->u.child = p->sibling;
  1178. else
  1179. pp->sibling = cp->sibling;
  1180. }
  1181. return p;
  1182. }
  1183. void cmDataUnlinkAndFree( cmData_t* p )
  1184. {
  1185. cmDataUnlink(p);
  1186. cmDataFree(p);
  1187. }
  1188. cmDtRC_t _cmDataDupl( const cmData_t* d, cmData_t* parent, cmData_t** ref )
  1189. {
  1190. cmDtRC_t rc = kOkDtRC;
  1191. cmData_t* rp = NULL;
  1192. *ref = NULL;
  1193. switch( d->cid )
  1194. {
  1195. case kScalarDtId:
  1196. if( d->tid == kBlobDtId || d->tid == kStrDtId )
  1197. rc = cmDataNewScalar(parent, d->tid, d->flags, d->u.vp, d->cnt, &rp );
  1198. else
  1199. rc = cmDataNewScalar(parent, d->tid, d->flags, d->u.vp, 0, &rp );
  1200. break;
  1201. case kArrayDtId:
  1202. rc = cmDataNewArray(parent, d->tid, d->u.vp, d->cnt, d->flags, &rp );
  1203. break;
  1204. case kListDtId:
  1205. case kPairDtId:
  1206. case kRecordDtId:
  1207. {
  1208. rp = _cmDataNew(parent,d->cid,d->tid);
  1209. const cmData_t* cp = d->u.child;
  1210. for(; cp!=NULL; cp=cp->sibling)
  1211. {
  1212. cmData_t* ncp = NULL;
  1213. // duplicate the child (ncp) and append it to the parent (rp)
  1214. if((rc = _cmDataDupl(cp,rp,&ncp)) == kOkDtRC )
  1215. cmDataAppendChild(rp,ncp);
  1216. }
  1217. }
  1218. break;
  1219. default:
  1220. assert(0);
  1221. break;
  1222. }
  1223. if( rp != NULL )
  1224. *ref = rp;
  1225. return rc;
  1226. }
  1227. cmRC_t cmDataDupl( const cmData_t* p, cmData_t** ref )
  1228. { return _cmDataDupl(p,NULL,ref); }
  1229. cmData_t* cmDataReplace( cmData_t* dst, cmData_t* src )
  1230. {
  1231. if( dst->parent == NULL )
  1232. {
  1233. cmDataUnlinkAndFree(dst);
  1234. src->parent = NULL;
  1235. return src;
  1236. }
  1237. cmData_t* parent = dst->parent;
  1238. cmData_t* cp = parent->u.child;
  1239. cmData_t* pp = NULL;
  1240. unsigned i = 0;
  1241. unsigned n = cmDataChildCount(parent);
  1242. // locate dst's right sibling
  1243. for(i=0; i<n; ++i,cp=cp->sibling)
  1244. {
  1245. if( cp == dst )
  1246. {
  1247. // link in 'src' in place of 'dst'
  1248. src->sibling = dst->sibling;
  1249. // free dst
  1250. cmDataUnlinkAndFree(dst);
  1251. // update the sibling link to
  1252. if( pp == NULL )
  1253. parent->u.child = src;
  1254. else
  1255. pp->sibling = src;
  1256. src->parent = parent;
  1257. break;
  1258. }
  1259. pp = cp;
  1260. }
  1261. return src;
  1262. }
  1263. unsigned cmDataChildCount( const cmData_t* p )
  1264. {
  1265. if( !cmDataIsStruct(p) )
  1266. return 0;
  1267. unsigned n = 0;
  1268. const cmData_t* cp = p->u.child;
  1269. for(; cp!=NULL; cp=cp->sibling)
  1270. ++n;
  1271. return n;
  1272. }
  1273. cmData_t* cmDataChild( cmData_t* p, unsigned index )
  1274. {
  1275. if( !cmDataIsStruct(p) )
  1276. return NULL;
  1277. unsigned n = 0;
  1278. cmData_t* cp = p->u.child;
  1279. for(; cp!=NULL; cp=cp->sibling)
  1280. {
  1281. if( n == index )
  1282. break;
  1283. ++n;
  1284. }
  1285. return cp;
  1286. }
  1287. cmData_t* cmDataPrependChild(cmData_t* parent, cmData_t* p )
  1288. {
  1289. assert( cmDataIsStruct(p) );
  1290. cmDataUnlink(p);
  1291. p->u.child = parent->u.child;
  1292. parent->u.child = p;
  1293. p->parent = parent;
  1294. return p;
  1295. }
  1296. cmData_t* cmDataAppendChild( cmData_t* parent, cmData_t* p )
  1297. {
  1298. assert( cmDataIsStruct(parent) );
  1299. assert( parent->cid != kRecordDtId || (parent->cid == kRecordDtId && p->cid==kPairDtId));
  1300. cmDataUnlink(p);
  1301. cmData_t* cp = parent->u.child;
  1302. if( cp == NULL )
  1303. parent->u.child = p;
  1304. else
  1305. {
  1306. for(; cp!=NULL; cp=cp->sibling)
  1307. if( cp->sibling == NULL )
  1308. {
  1309. cp->sibling = p;
  1310. break;
  1311. }
  1312. }
  1313. p->parent = parent;
  1314. p->sibling = NULL;
  1315. return p;
  1316. }
  1317. cmData_t* cmDataInsertChild( cmData_t* parent, unsigned index, cmData_t* p )
  1318. {
  1319. if( !cmDataIsStruct(parent) )
  1320. return NULL;
  1321. cmDataUnlink(p);
  1322. unsigned n = 0;
  1323. cmData_t* cp = parent->u.child;
  1324. cmData_t* pp = NULL;
  1325. for(; cp!=NULL; cp=cp->sibling)
  1326. {
  1327. if( n == index )
  1328. {
  1329. if( pp == NULL )
  1330. {
  1331. parent->u.child = p;
  1332. p->sibling = NULL;
  1333. }
  1334. else
  1335. {
  1336. p->sibling = pp->sibling;
  1337. pp->sibling = p;
  1338. }
  1339. break;
  1340. }
  1341. ++n;
  1342. }
  1343. p->parent = parent;
  1344. return p;
  1345. }
  1346. //----------------------------------------------------------------------------
  1347. bool _cmDataPairIsValid( const cmData_t* p )
  1348. {
  1349. assert( p->cid == kPairDtId && p->tid==kStructDtId );
  1350. bool fl = p->u.child == NULL || p->u.child->sibling == NULL || p->u.child->sibling->sibling!=NULL;
  1351. return !fl;
  1352. }
  1353. // Get the key/value of a pair
  1354. cmData_t* cmDataPairKey( cmData_t* p )
  1355. {
  1356. assert( _cmDataPairIsValid(p) );
  1357. return p->u.child;
  1358. }
  1359. unsigned cmDataPairKeyId( cmData_t* p )
  1360. {
  1361. assert( _cmDataPairIsValid(p) );
  1362. unsigned id = cmInvalidId;
  1363. cmDataGetUInt(p->u.child,&id);
  1364. return id;
  1365. }
  1366. const cmChar_t* cmDataPairKeyLabel( cmData_t* p )
  1367. {
  1368. assert( _cmDataPairIsValid(p) );
  1369. const cmChar_t* label = NULL;
  1370. cmDataConstStr(p->u.child,&label);
  1371. return label;
  1372. }
  1373. cmData_t* cmDataPairValue( cmData_t* p )
  1374. {
  1375. assert( _cmDataPairIsValid(p) );
  1376. return p->u.child->sibling;
  1377. }
  1378. // Set the key or value of an existing pair node.
  1379. cmData_t* cmDataPairSetValue( cmData_t* p, cmData_t* value )
  1380. {
  1381. assert( _cmDataPairIsValid(p) );
  1382. cmDataReplace( cmDataPairValue(p), value );
  1383. return p;
  1384. }
  1385. cmData_t* cmDataPairSetKey( cmData_t* p, cmData_t* key )
  1386. {
  1387. assert( _cmDataPairIsValid(p) );
  1388. cmDataReplace( cmDataPairValue(p), key );
  1389. return p;
  1390. }
  1391. cmData_t* cmDataPairSetKeyId( cmData_t* p, unsigned id )
  1392. {
  1393. assert( _cmDataPairIsValid(p) );
  1394. cmDataSetUInt(p->u.child,id);
  1395. return p;
  1396. }
  1397. cmData_t* cmDataPairSetKeyLabel( cmData_t* p, const cmChar_t* label )
  1398. {
  1399. assert( _cmDataPairIsValid(p) );
  1400. cmDataSetConstStr(p->u.child,kNoFlagsDtFl,label);
  1401. return p;
  1402. }
  1403. cmData_t* cmDataPairMake( cmData_t* parent, cmData_t* p, cmData_t* key, cmData_t* value )
  1404. {
  1405. cmDataUnlink(p);
  1406. _cmDataFreeData(p);
  1407. p->tid = kStructDtId;
  1408. p->cid = kPairDtId;
  1409. p->parent = parent;
  1410. p->flags = cmIsFlag(p->flags,kFreeObjDtFl) ? kFreeObjDtFl : 0;
  1411. p->u.child = NULL;
  1412. cmDataAppendChild(p,key);
  1413. cmDataAppendChild(p,value);
  1414. return p;
  1415. }
  1416. // Dynamically allocate a pair node
  1417. cmRC_t cmDataPairAlloc( cmData_t* parent, const cmData_t* key, const cmData_t* value, cmData_t** ref )
  1418. {
  1419. cmRC_t rc = kOkDtRC;
  1420. cmData_t* p = _cmDataNew(parent,kPairDtId,kStructDtId);
  1421. cmData_t* kp = NULL;
  1422. cmData_t* vp = NULL;
  1423. if( ref != NULL )
  1424. *ref = NULL;
  1425. if((rc = cmDataDupl(key,&kp)) != kOkDtRC )
  1426. goto errLabel;
  1427. if((rc = cmDataDupl(value,&vp)) != kOkDtRC )
  1428. goto errLabel;
  1429. cmDataPrependChild(p,vp);
  1430. cmDataPrependChild(p,kp);
  1431. if( ref != NULL )
  1432. *ref = p;
  1433. errLabel:
  1434. if( rc != kOkDtRC )
  1435. {
  1436. cmDataFree(kp);
  1437. cmDataFree(vp);
  1438. cmDataFree(p);
  1439. }
  1440. return rc;
  1441. }
  1442. cmRC_t cmDataPairAllocId(cmData_t* parent, unsigned keyId, cmData_t* value, cmData_t** ref )
  1443. {
  1444. cmRC_t rc = kOkDtRC;
  1445. if( ref != NULL )
  1446. *ref = NULL;
  1447. cmData_t* p = _cmDataNew(parent,kPairDtId,kStructDtId);
  1448. if((rc = cmDataNewUInt(p,kNoFlagsDtFl,keyId,NULL)) != kOkDtRC )
  1449. goto errLabel;
  1450. cmDataAppendChild(p,value);
  1451. if( ref != NULL )
  1452. *ref = p;
  1453. errLabel:
  1454. if( rc != kOkDtRC )
  1455. cmDataFree(p);
  1456. return rc;
  1457. }
  1458. cmRC_t cmDataPairAllocLabel( cmData_t* parent, const cmChar_t *label, cmData_t* value, cmData_t** ref )
  1459. {
  1460. cmRC_t rc = kOkDtRC;
  1461. cmData_t* p = _cmDataNew(parent,kPairDtId,kStructDtId);
  1462. if( ref != NULL )
  1463. *ref = NULL;
  1464. if((rc = cmDataNewConstStr(p,kNoFlagsDtFl,label,NULL)) != kOkDtRC )
  1465. goto errLabel;
  1466. cmDataAppendChild(p,value);
  1467. if( ref != NULL )
  1468. *ref = p;
  1469. errLabel:
  1470. if( rc != kOkDtRC )
  1471. cmDataFree(p);
  1472. return rc;
  1473. }
  1474. cmRC_t cmDataPairAllocLabelN(cmData_t* parent, const cmChar_t* label, unsigned charCnt, cmData_t* value, cmData_t** ref)
  1475. {
  1476. cmRC_t rc = kOkDtRC;
  1477. if( ref != NULL )
  1478. *ref = NULL;
  1479. cmData_t* p = _cmDataNew(parent,kPairDtId,kStructDtId);
  1480. if((rc = cmDataNewConstStrN(p,kNoFlagsDtFl,label,charCnt,NULL)) != kOkDtRC )
  1481. goto errLabel;
  1482. cmDataAppendChild(p,value);
  1483. if( ref != NULL )
  1484. *ref = p;
  1485. errLabel:
  1486. if( rc != kOkDtRC )
  1487. cmMemFree(p);
  1488. return rc;
  1489. }
  1490. //----------------------------------------------------------------------------
  1491. unsigned cmDataListCount(const cmData_t* p )
  1492. { return cmDataChildCount(p); }
  1493. cmData_t* cmDataListEle( cmData_t* p, unsigned index )
  1494. { return cmDataChild(p,index); }
  1495. cmData_t* cmDataListMake( cmData_t* parent, cmData_t* p )
  1496. {
  1497. cmDataUnlink(p);
  1498. _cmDataFreeData(p);
  1499. p->parent = parent;
  1500. p->cid = kListDtId;
  1501. p->tid = kStructDtId;
  1502. p->flags = cmIsFlag(p->flags,kFreeObjDtFl) ? kFreeObjDtFl : 0;
  1503. p->u.child = NULL;
  1504. return p;
  1505. }
  1506. cmData_t* cmDataListAlloc( cmData_t* parent)
  1507. { return _cmDataNew(parent,kListDtId,kStructDtId); }
  1508. cmDtRC_t _cmDataParseArgV( cmData_t* parent, cmErr_t* err, cmRC_t errRC, va_list vl, cmData_t** vpp )
  1509. {
  1510. cmDtRC_t rc = kOkDtRC;
  1511. cmData_t* vp = NULL;
  1512. cmDataTypeId_t tid = va_arg(vl,unsigned);
  1513. cmDataContainerId_t cid = tid & kContainerDtMask;
  1514. unsigned flags = tid & kFlagsDtMask;
  1515. tid = cmClrFlag(tid,kContainerDtMask | kFlagsDtMask);
  1516. // if no container flag was given assume a scalar container
  1517. if( cid == 0 )
  1518. cid = kScalarDtId;
  1519. switch(cid)
  1520. {
  1521. case kScalarDtId:
  1522. switch(tid)
  1523. {
  1524. case kInvalidTypeDtId:
  1525. rc = kEolDtRC;
  1526. break;
  1527. case kNullDtId: rc = cmDataNewNull( parent,flags,&vp); break;
  1528. case kBoolDtId: rc = cmDataNewBool( parent,flags,va_arg(vl,int),&vp); break;
  1529. case kUCharDtId: rc = cmDataNewUChar( parent,flags,va_arg(vl,int),&vp); break;
  1530. case kCharDtId: rc = cmDataNewChar( parent,flags,va_arg(vl,int),&vp); break;
  1531. case kUShortDtId: rc = cmDataNewUShort( parent,flags,va_arg(vl,int),&vp); break;
  1532. case kShortDtId: rc = cmDataNewShort( parent,flags,va_arg(vl,int),&vp); break;
  1533. case kUIntDtId: rc = cmDataNewUInt( parent,flags,va_arg(vl,unsigned int),&vp); break;
  1534. case kIntDtId: rc = cmDataNewInt( parent,flags,va_arg(vl,int),&vp); break;
  1535. case kULongDtId: rc = cmDataNewULong( parent,flags,va_arg(vl,unsigned long),&vp); break;
  1536. case kLongDtId: rc = cmDataNewLong( parent,flags,va_arg(vl,long),&vp); break;
  1537. case kFloatDtId: rc = cmDataNewFloat( parent,flags,va_arg(vl,double),&vp); break;
  1538. case kDoubleDtId: rc = cmDataNewDouble( parent,flags,va_arg(vl,double),&vp); break;
  1539. case kStrDtId: rc = cmDataNewStr( parent,flags,va_arg(vl,cmChar_t*),&vp); break;
  1540. default:
  1541. if( err != NULL )
  1542. cmErrMsg(err,errRC,"Unknown scalar data type id (%i) when parsing new object var-args list.",tid);
  1543. else
  1544. rc = kInvalidTypeDtRC;
  1545. break;
  1546. }
  1547. break;
  1548. case kArrayDtId:
  1549. {
  1550. void* svp = va_arg(vl,void*);
  1551. unsigned cnt = va_arg(vl,unsigned);
  1552. switch(tid)
  1553. {
  1554. case kBoolDtId: rc = cmDataNewBoolArray( parent,(bool*)svp, cnt,flags,&vp); break;
  1555. case kUCharDtId: rc = cmDataNewUCharArray( parent,(unsigned char*)svp, cnt,flags,&vp); break;
  1556. case kCharDtId: rc = cmDataNewCharArray( parent,(char*)svp, cnt,flags,&vp); break;
  1557. case kUShortDtId: rc = cmDataNewUShortArray( parent,(unsigned short*)svp,cnt,flags,&vp); break;
  1558. case kShortDtId: rc = cmDataNewShortArray( parent,(short*)svp, cnt,flags,&vp); break;
  1559. case kUIntDtId: rc = cmDataNewUIntArray( parent,(unsigned int*)svp, cnt,flags,&vp); break;
  1560. case kIntDtId: rc = cmDataNewIntArray( parent,(int*)svp, cnt,flags,&vp); break;
  1561. case kULongDtId: rc = cmDataNewULongArray( parent,(unsigned long*)svp, cnt,flags,&vp); break;
  1562. case kLongDtId: rc = cmDataNewLongArray( parent,(long*)svp, cnt,flags,&vp); break;
  1563. case kFloatDtId: rc = cmDataNewFloatArray( parent,(float*)svp, cnt,flags,&vp); break;
  1564. case kDoubleDtId: rc = cmDataNewDoubleArray( parent,(double*)svp, cnt,flags,&vp); break;
  1565. case kStrDtId: rc = cmDataNewStrArray( parent,(cmChar_t**)svp, cnt,flags,&vp); break;
  1566. default:
  1567. if( err != NULL )
  1568. cmErrMsg(err,errRC,"Unknown array data type id (%i) when parsing new object var-args list.",tid);
  1569. else
  1570. rc = kInvalidTypeDtRC;
  1571. break;
  1572. }
  1573. }
  1574. break;
  1575. case kListDtId:
  1576. case kPairDtId:
  1577. case kRecordDtId:
  1578. cmDataAppendChild(parent,va_arg(vl,cmData_t*));
  1579. break;
  1580. default:
  1581. if( err != NULL )
  1582. cmErrMsg(err,errRC,"Unknown container type id (%i) when parsing new object var-args list.",cid);
  1583. else
  1584. rc = kInvalidContDtRC;
  1585. break;
  1586. }
  1587. *vpp = vp;
  1588. return rc;
  1589. }
  1590. cmDtRC_t _cmDataListParseV(cmData_t* parent, cmErr_t* err, cmRC_t errRC, va_list vl )
  1591. {
  1592. cmDtRC_t rc = kOkDtRC;
  1593. bool contFl = true;
  1594. while( contFl )
  1595. {
  1596. cmData_t* vp;
  1597. rc = _cmDataParseArgV(parent,err,errRC,vl,&vp);
  1598. if(rc != kOkDtRC )
  1599. {
  1600. contFl = false;
  1601. if( rc == kEolDtRC )
  1602. rc = kOkDtRC;
  1603. }
  1604. }
  1605. return rc;
  1606. }
  1607. cmRC_t cmDataListAllocV(cmData_t* parent, cmErr_t* err, cmRC_t errRC, cmData_t** ref, va_list vl )
  1608. {
  1609. cmData_t* p = cmDataListAlloc(parent);
  1610. cmRC_t rc;
  1611. if((rc = _cmDataListParseV(p,err,errRC,vl )) != kOkDtRC )
  1612. {
  1613. cmDataUnlinkAndFree(p);
  1614. return rc;
  1615. }
  1616. if( ref != NULL )
  1617. *ref = p;
  1618. return rc;
  1619. }
  1620. cmRC_t cmDataListAllocA(cmData_t* parent, cmErr_t* err, cmRC_t errRC, cmData_t** ref, ... )
  1621. {
  1622. va_list vl;
  1623. va_start(vl,ref);
  1624. cmRC_t rc = cmDataListAllocV(parent,err,errRC,ref,vl);
  1625. va_end(vl);
  1626. return rc;
  1627. }
  1628. cmData_t* cmDataListAppendEle( cmData_t* p, cmData_t* ele )
  1629. {
  1630. assert(p->cid == kListDtId && p->tid==kStructDtId);
  1631. return cmDataAppendChild(p,ele);
  1632. }
  1633. cmData_t* cmDataListAppendEleN(cmData_t* p, cmData_t* ele[], unsigned n )
  1634. {
  1635. assert(p->cid == kListDtId && p->tid==kStructDtId);
  1636. cmData_t* rp = NULL;
  1637. unsigned i;
  1638. for(i=0; i<n; ++i)
  1639. {
  1640. cmData_t* ep = cmDataAppendChild(p,ele[i]);
  1641. if( rp == NULL )
  1642. rp = ep;
  1643. }
  1644. return rp;
  1645. }
  1646. cmDtRC_t cmDataListAppendV( cmData_t* p, cmErr_t* err, cmRC_t errRC, va_list vl )
  1647. {
  1648. cmDtRC_t rc;
  1649. if((rc = _cmDataListParseV(p, err, errRC, vl )) != kOkDtRC )
  1650. return rc;
  1651. return kOkDtRC;
  1652. }
  1653. cmDtRC_t cmDataListAppend( cmData_t* p, cmErr_t* err, cmRC_t errRC, ... )
  1654. {
  1655. va_list vl;
  1656. va_start(vl,errRC);
  1657. cmDtRC_t rc = cmDataListAppendV(p,err,errRC,vl);
  1658. va_end(vl);
  1659. return rc;
  1660. }
  1661. cmData_t* cmDataListInsertEle( cmData_t* p, unsigned index, cmData_t* ele )
  1662. { return cmDataInsertChild(p,index,ele); }
  1663. cmData_t* cmDataListInsertEleN(cmData_t* p, unsigned index, cmData_t* ele[], unsigned n )
  1664. {
  1665. unsigned i;
  1666. for(i=0; i<n; ++i)
  1667. cmDataListInsertEle(p,index+i,ele[i]);
  1668. return p;
  1669. }
  1670. //----------------------------------------------------------------------------
  1671. unsigned cmDataRecdCount( const cmData_t* p )
  1672. {
  1673. assert( p->cid == kRecordDtId && p->tid==kStructDtId );
  1674. return cmDataChildCount(p);
  1675. }
  1676. cmData_t* cmDataRecdEle( cmData_t* p, unsigned index )
  1677. {
  1678. assert( p->cid == kRecordDtId && p->tid==kStructDtId );
  1679. cmData_t* cp = cmDataChild(p,index);
  1680. assert( p->cid == kPairDtId );
  1681. return cp;
  1682. }
  1683. cmData_t* cmDataRecdValueFromIndex( cmData_t* p, unsigned index )
  1684. {
  1685. assert( p->cid == kRecordDtId && p->tid==kStructDtId );
  1686. cmData_t* cp = cmDataChild(p,index);
  1687. assert( p->cid == kPairDtId && p->tid==kStructDtId );
  1688. return cmDataPairValue(cp);
  1689. }
  1690. cmData_t* cmDataRecdValueFromId( cmData_t* p, unsigned id )
  1691. {
  1692. assert( p->cid == kRecordDtId || p->tid==kStructDtId );
  1693. cmData_t* cp = p->u.child;
  1694. for(; cp!=NULL; cp=cp->sibling)
  1695. if( cmDataPairKeyId(cp) == id )
  1696. break;
  1697. assert( cp!=NULL && cp->cid==kPairDtId && cp->tid==kStructDtId);
  1698. return cmDataPairValue(cp);
  1699. }
  1700. cmData_t* cmDataRecdValueFromLabel( cmData_t* p, const cmChar_t* label )
  1701. {
  1702. assert( p->cid == kRecordDtId && p->tid==kStructDtId);
  1703. cmData_t* cp = p->u.child;
  1704. for(; cp!=NULL; cp=cp->sibling)
  1705. {
  1706. const cmChar_t* lp = cmDataPairKeyLabel(cp);
  1707. if( lp!=NULL && strcmp(lp,label)==0 )
  1708. break;
  1709. }
  1710. assert( cp!=NULL && cp->cid==kPairDtId && cp->tid==kStructDtId);
  1711. return cmDataPairValue(cp);
  1712. }
  1713. cmData_t* cmDataRecdKey( cmData_t* p, unsigned index )
  1714. {
  1715. assert( p->cid == kRecordDtId && p->tid==kStructDtId );
  1716. cmData_t* cp = cmDataChild(p,index);
  1717. assert( cp->cid == kPairDtId && cp->tid==kStructDtId);
  1718. return cmDataPairKey(cp);
  1719. }
  1720. unsigned cmDataRecdKeyId( cmData_t* p, unsigned index )
  1721. {
  1722. cmData_t* kp = cmDataRecdKey(p,index);
  1723. unsigned id = cmInvalidId;
  1724. cmDataGetUInt(kp,&id);
  1725. return id;
  1726. }
  1727. const cmChar_t* cmDataRecdKeyLabel( cmData_t* p, unsigned index )
  1728. {
  1729. cmData_t* kp = cmDataRecdKey(p,index);
  1730. const cmChar_t* label = NULL;
  1731. cmDataConstStr(kp,&label);
  1732. return label;
  1733. }
  1734. cmData_t* cmDataRecdMake( cmData_t* parent, cmData_t* p )
  1735. {
  1736. cmDataUnlink(p);
  1737. _cmDataFreeData(p);
  1738. p->parent = parent;
  1739. p->cid = kRecordDtId;
  1740. p->tid = kStructDtId;
  1741. p->flags = cmIsFlag(p->flags,kFreeObjDtFl) ? kFreeObjDtFl : 0;
  1742. p->u.child = NULL;
  1743. return p;
  1744. }
  1745. cmData_t* cmDataRecdAlloc(cmData_t* parent)
  1746. { return _cmDataNew(parent,kRecordDtId,kStructDtId); }
  1747. cmData_t* cmDataRecdAppendPair( cmData_t* p, cmData_t* pair )
  1748. {
  1749. assert( p!=NULL && p->cid==kRecordDtId && p->tid==kStructDtId);
  1750. cmDataAppendChild(p,pair);
  1751. return p;
  1752. }
  1753. cmDtRC_t _cmDataRecdParseInputV(cmData_t* parent, cmErr_t* err, cmRC_t errRC, unsigned idFl, va_list vl )
  1754. {
  1755. assert( parent != NULL && parent->cid == kRecordDtId && parent->tid == kStructDtId );
  1756. bool contFl = true;
  1757. cmDtRC_t rc = kOkDtRC;
  1758. // for each record field
  1759. while( contFl )
  1760. {
  1761. cmData_t* vp = NULL;
  1762. unsigned id = cmInvalidId;
  1763. const cmChar_t* label = NULL;
  1764. // parse the field idenfier
  1765. if( idFl )
  1766. id = va_arg(vl,unsigned); // numeric field identifier
  1767. else
  1768. label = va_arg(vl,const char*); // text field label identifier
  1769. // validate the field identifier
  1770. if( (idFl && id==cmInvalidId) || (!idFl && label==NULL) )
  1771. break;
  1772. // parse the field data
  1773. if((rc =_cmDataParseArgV( NULL, err, errRC, vl, &vp )) != kOkDtRC )
  1774. {
  1775. contFl = false;
  1776. }
  1777. else
  1778. {
  1779. // create the field pair
  1780. if( idFl )
  1781. rc = cmDataPairAllocId(parent,id,vp,NULL);
  1782. else
  1783. rc = cmDataPairAllocLabel(parent,label,vp,NULL);
  1784. }
  1785. }
  1786. return rc;
  1787. }
  1788. cmDtRC_t cmDataRecdAllocLabelV( cmData_t* parent, cmErr_t* err, cmRC_t errRC, cmData_t** ref, va_list vl )
  1789. {
  1790. cmData_t* p = cmDataRecdAlloc(parent);
  1791. if( ref != NULL )
  1792. *ref = NULL;
  1793. cmDtRC_t rc = _cmDataRecdParseInputV(p, err, errRC, false, vl );
  1794. if( rc != kOkDtRC )
  1795. {
  1796. cmDataFree(p);
  1797. p = NULL;
  1798. }
  1799. if( ref != NULL )
  1800. *ref = p;
  1801. return rc;
  1802. }
  1803. cmDtRC_t cmDataRecdAllocLabelA( cmData_t* parent, cmErr_t* err, cmRC_t errRC, cmData_t** ref, ... )
  1804. {
  1805. va_list vl;
  1806. va_start(vl,ref);
  1807. cmDtRC_t rc = cmDataRecdAllocLabelV(parent,err,errRC,ref,vl);
  1808. va_end(vl);
  1809. return rc;
  1810. }
  1811. cmDtRC_t cmDataRecdAllocIdV( cmData_t* parent, cmErr_t* err, cmRC_t errRC, cmData_t** ref, va_list vl )
  1812. {
  1813. cmData_t* p = cmDataRecdAlloc(parent);
  1814. if( ref != NULL )
  1815. *ref = NULL;
  1816. cmDtRC_t rc = _cmDataRecdParseInputV(p, err, errRC, true, vl );
  1817. if( rc != kOkDtRC )
  1818. {
  1819. cmDataFree(p);
  1820. p = NULL;
  1821. }
  1822. if( ref != NULL )
  1823. *ref = p;
  1824. return rc;
  1825. }
  1826. cmDtRC_t cmDataRecdAllocIdA( cmData_t* parent, cmErr_t* err, cmRC_t errRC, cmData_t** ref, ... )
  1827. {
  1828. va_list vl;
  1829. va_start(vl,ref);
  1830. cmRC_t rc = cmDataRecdAllocIdV(parent,err,errRC,ref,vl);
  1831. va_end(vl);
  1832. return rc;
  1833. }
  1834. cmDtRC_t _cmDataRecdParseErrV( cmErr_t* err, unsigned rc, unsigned id, const cmChar_t* label, const cmChar_t* fmt, va_list vl )
  1835. {
  1836. if( err != NULL )
  1837. {
  1838. cmChar_t* s0 = NULL;
  1839. cmChar_t* s1 = NULL;
  1840. if( label == NULL )
  1841. s0 = cmTsPrintfP(s0,"Error parsing field id=%i.",id);
  1842. else
  1843. s0 = cmTsPrintfP(s0,"Error parsing field '%s'.",label);
  1844. s1 = cmTsVPrintfP(s1,fmt,vl);
  1845. cmErrMsg(err,rc,"%s %s",s0,s1);
  1846. cmMemFree(s0);
  1847. cmMemFree(s1);
  1848. }
  1849. return rc;
  1850. }
  1851. cmDtRC_t _cmDataRecdParseErr( cmErr_t* err, unsigned rc, unsigned id, const cmChar_t* label, const cmChar_t* fmt, ... )
  1852. {
  1853. va_list vl;
  1854. va_start(vl,fmt);
  1855. rc = _cmDataRecdParseErrV(err,rc,id,label,fmt,vl);
  1856. va_end(vl);
  1857. return rc;
  1858. }
  1859. cmDtRC_t _cmDataRecdParseV(cmData_t* p, bool idFl, cmErr_t* err, unsigned errRC, va_list vl )
  1860. {
  1861. bool contFl = true;
  1862. cmDtRC_t rc = kOkDtRC;
  1863. while( contFl && rc==kOkDtRC)
  1864. {
  1865. unsigned id = cmInvalidId;
  1866. const char* label = NULL;
  1867. // parse the field idenfier
  1868. if( idFl )
  1869. id = va_arg(vl,unsigned); // numeric field identifier
  1870. else
  1871. label = va_arg(vl,const char*); // text field label identifier
  1872. // validate the field identifier
  1873. if( (idFl && id==cmInvalidId) || (!idFl && label==NULL) )
  1874. break;
  1875. cmDataContainerId_t cid = va_arg(vl,unsigned);
  1876. cmDataTypeId_t typeId = va_arg(vl,unsigned);
  1877. void* v = va_arg(vl,void*);
  1878. cmData_t* np = NULL;
  1879. bool optFl = cmIsFlag(typeId,kOptArgDtFl);
  1880. cmDtRC_t rc0 = kOkDtRC;
  1881. unsigned* cntPtr = NULL;
  1882. // arrays have an additional arg - the element count pointer
  1883. if( cid == kArrayDtId )
  1884. cntPtr = va_arg(vl,unsigned*);
  1885. // clear the optArgFl from the type id
  1886. typeId = cmClrFlag(typeId,kOptArgDtFl);
  1887. // attempt to locate the field
  1888. if( idFl )
  1889. np = cmDataRecdValueFromLabel( p, label );
  1890. else
  1891. np = cmDataRecdValueFromId( p, id );
  1892. // if the field was not found
  1893. if( np == NULL )
  1894. {
  1895. if(optFl)
  1896. continue;
  1897. _cmDataRecdParseErr(err, errRC, id, label, "The required field was missing." );
  1898. rc = kMissingFieldDtRC;
  1899. continue;
  1900. }
  1901. // validate the container type
  1902. if( cid != np->cid )
  1903. {
  1904. _cmDataRecdParseErr(err, errRC, id, label, "The container for the field is a '%s' but the arg. list indicated it should be a '%s'.",cmStringNullGuard(cmDataContainerIdToLabel(np->cid)),cmStringNullGuard(cmDataContainerIdToLabel(cid)));
  1905. rc = kInvalidContDtRC;
  1906. continue;
  1907. }
  1908. switch(cid)
  1909. {
  1910. case kScalarDtId:
  1911. switch(typeId)
  1912. {
  1913. case kNullDtId:
  1914. break;
  1915. case kBoolDtId:
  1916. rc0 = cmDataGetBool(np,(bool*)v);
  1917. break;
  1918. case kUCharDtId:
  1919. rc0 = cmDataGetUChar(np,(unsigned char*)v);
  1920. break;
  1921. case kCharDtId:
  1922. rc0 = cmDataGetChar(np,(char*)v);
  1923. break;
  1924. case kUShortDtId:
  1925. rc0 = cmDataGetUShort(np,(unsigned short*)v);
  1926. break;
  1927. case kShortDtId:
  1928. rc0 = cmDataGetShort(np,(short*)v);
  1929. break;
  1930. case kUIntDtId:
  1931. rc0 = cmDataGetUInt(np,(unsigned int*)v);
  1932. break;
  1933. case kIntDtId:
  1934. rc0 = cmDataGetInt(np,(int*)v);
  1935. break;
  1936. case kULongDtId:
  1937. rc0 = cmDataGetULong(np,(unsigned long*)v);
  1938. break;
  1939. case kLongDtId:
  1940. rc0 = cmDataGetLong(np,(long*)v);
  1941. break;
  1942. case kFloatDtId:
  1943. rc0 = cmDataGetFloat(np,(float*)v);
  1944. break;
  1945. case kDoubleDtId:
  1946. rc0 = cmDataGetDouble(np,(double*)v);
  1947. break;
  1948. case kStrDtId:
  1949. rc0 = cmDataStr(np,(char**)v);
  1950. break;
  1951. default:
  1952. _cmDataRecdParseErr(err, errRC, id, label, "An invalid data type id=%i was encountered.",typeId);
  1953. rc = kInvalidTypeDtRC;
  1954. }
  1955. if( rc0 != kOkDtRC)
  1956. {
  1957. _cmDataRecdParseErr(err, errRC, id, label,"Unable to convert the field value to the requested type:'%s'.",cmStringNullGuard(cmDataTypeToLabel(typeId)));
  1958. rc = kCvtErrDtRC;
  1959. }
  1960. break;
  1961. case kArrayDtId:
  1962. {
  1963. switch(typeId)
  1964. {
  1965. case kNullDtId:
  1966. break;
  1967. case kBoolDtId:
  1968. case kUCharDtId:
  1969. case kCharDtId:
  1970. case kUShortDtId:
  1971. case kShortDtId:
  1972. case kUIntDtId:
  1973. case kIntDtId:
  1974. case kULongDtId:
  1975. case kLongDtId:
  1976. case kFloatDtId:
  1977. case kDoubleDtId:
  1978. *(void**)v = np->u.vp;
  1979. *cntPtr = cmDataArrayEleCount(np);
  1980. break;
  1981. default:
  1982. _cmDataRecdParseErr(err, errRC, id, label,"Invalid array type identifier (%s).", cmStringNullGuard(cmDataTypeToLabel(typeId)));
  1983. rc = kInvalidTypeDtRC;
  1984. }
  1985. }
  1986. break;
  1987. case kListDtId:
  1988. case kPairDtId:
  1989. case kRecordDtId:
  1990. *(cmData_t**)v = np;
  1991. break;
  1992. default:
  1993. {
  1994. _cmDataRecdParseErr(err, errRC, id, label,"An invalid cotainer id=%i was encountered.",cid);
  1995. rc = kInvalidContDtRC;
  1996. }
  1997. }
  1998. }
  1999. return rc;
  2000. }
  2001. cmDtRC_t cmDataRecdParseLabelV(cmData_t* p, cmErr_t* err, unsigned errRC, va_list vl )
  2002. { return _cmDataRecdParseV(p,false,err,errRC,vl); }
  2003. cmDtRC_t cmDataRecdParseLabel(cmData_t* p, cmErr_t* err, unsigned errRC, ... )
  2004. {
  2005. va_list vl;
  2006. va_start(vl,errRC);
  2007. cmDtRC_t rc = cmDataRecdParseLabelV(p,err,errRC,vl);
  2008. va_end(vl);
  2009. return rc;
  2010. }
  2011. cmDtRC_t cmDataRecdParseIdV(cmData_t* p, cmErr_t* err, unsigned errRC, va_list vl )
  2012. { return _cmDataRecdParseV(p,true,err,errRC,vl); }
  2013. cmDtRC_t cmDataRecdParseId(cmData_t* p, cmErr_t* err, unsigned errRC, ... )
  2014. {
  2015. va_list vl;
  2016. va_start(vl,errRC);
  2017. cmDtRC_t rc = cmDataRecdParseIdV(p,err,errRC,vl);
  2018. va_end(vl);
  2019. return rc;
  2020. }
  2021. //============================================================================
  2022. //============================================================================
  2023. //============================================================================
  2024. #ifdef NOT_DEF
  2025. unsigned _cmDataSerializeNodeByteCount( const cmData_t* p )
  2026. {
  2027. unsigned n = 0;
  2028. // all serialized data ele's begin with a cmDataFmtId_t
  2029. n += sizeof(cmDataFmtId_t);
  2030. // arrays then have a count of bytes and structures have a child count
  2031. if( cmDataIsPtr(p) || cmDataIsStruct(p) )
  2032. n += sizeof(unsigned);
  2033. // then the data itself takes a variable number of bytes
  2034. n += _cmDataByteCount(p);
  2035. return n;
  2036. }
  2037. unsigned cmDataSerializeByteCount( const cmData_t* p )
  2038. {
  2039. unsigned bn = 0;
  2040. // if this data type has a child then calculate it's size
  2041. if( kMinStructDtId <= p->tid && p->tid <= kMaxStructDtId && p->u.child != NULL )
  2042. bn = cmDataSerializeByteCount(p->u.child);
  2043. // if this data type has siblings get their type
  2044. cmData_t* dp = p->u.child;
  2045. for(; dp != NULL; dp=dp->sibling )
  2046. bn += cmDataSerializeByteCount(dp->sibling);
  2047. //
  2048. return bn + _cmDataSerializeNodeByteCount(p);
  2049. }
  2050. char* _cmDataSerializeWriteArray( cmData_t* np, char* dp, const char* ep )
  2051. {
  2052. unsigned byteCnt = _cmDataByteCount(np);
  2053. *((unsigned*)dp) = byteCnt;
  2054. dp += sizeof(unsigned);
  2055. memcpy(dp,np->u.vp,byteCnt);
  2056. dp += byteCnt;
  2057. return dp;
  2058. }
  2059. char* _cmDataSerializeWriteStruct( cmData_t* np, char* dp, const char* ep )
  2060. {
  2061. *((unsigned*)dp) = cmDataChildCount(np);
  2062. dp += sizeof(unsigned);
  2063. return dp;
  2064. }
  2065. char* _cmDataSerializeWrite( cmData_t* np, char* dp, const char* ep )
  2066. {
  2067. assert( dp + _cmDataSerializeNodeByteCount(np) <= ep );
  2068. *((cmDataFmtId_t*)dp) = np->tid;
  2069. dp += sizeof(cmDataFmtId_t);
  2070. switch( np->tid )
  2071. {
  2072. case kNullDtId: break;
  2073. case kBoolDtId: *((bool*)dp) = cmDataBool(np); dp+=sizeof(bool); break;
  2074. case kUCharDtId: *((unsigned char*)dp) = cmDataUChar(np); dp+=sizeof(unsigned char); break;
  2075. case kCharDtId: *((char*)dp) = cmDataChar(np); dp+=sizeof(char); break;
  2076. case kUShortDtId: *((unsigned short*)dp) = cmDataUShort(np); dp+=sizeof(unsigned short); break;
  2077. case kShortDtId: *((short*)dp) = cmDataShort(np); dp+=sizeof(short); break;
  2078. case kUIntDtId: *((unsigned int*)dp) = cmDataUInt(np); dp+=sizeof(unsigned int); break;
  2079. case kIntDtId: *((int*)dp) = cmDataInt(np); dp+=sizeof(int); break;
  2080. case kULongDtId: *((unsigned long*)dp) = cmDataULong(np); dp+=sizeof(unsigned long); break;
  2081. case kLongDtId: *((long*)dp) = cmDataLong(np); dp+=sizeof(long); break;
  2082. case kFloatDtId: *((float*)dp) = cmDataFloat(np); dp+=sizeof(float); break;
  2083. case kDoubleDtId: *((double*)dp) = cmDataDouble(np); dp+=sizeof(double); break;
  2084. case kStrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2085. case kConstStrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2086. case kUCharPtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2087. case kCharPtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2088. case kUShortPtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2089. case kShortPtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2090. case kUIntPtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2091. case kIntPtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2092. case kULongPtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2093. case kLongPtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2094. case kFloatPtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2095. case kDoublePtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2096. case kVoidPtrDtId: dp = _cmDataSerializeWriteArray(np,dp,ep); break;
  2097. case kListDtId: dp = _cmDataSerializeWriteStruct(np,dp,ep); break;
  2098. case kPairDtId: dp = _cmDataSerializeWriteStruct(np,dp,ep); break;
  2099. case kRecordDtId: dp = _cmDataSerializeWriteStruct(np,dp,ep); break;
  2100. default:
  2101. { assert(0); }
  2102. }
  2103. return dp;
  2104. }
  2105. char* _cmDataSerialize( const cmData_t* p, char* buf, const char* ep )
  2106. {
  2107. /*
  2108. buf = _cmDataSerializeWrite(p,buf,ep);
  2109. // if this data type has a child then write the child
  2110. if( kMinStructDtId <= p->tid && p->tid <= kMaxStructDtId && p->u.child != NULL )
  2111. buf = _cmDataSerialize(p->u.child,buf,ep);
  2112. // if this data type has siblings then write sibings
  2113. cmData_t* dp = p->u.child;
  2114. for(; dp != NULL; dp=dp->sibling )
  2115. buf = cmDataSerialize(dp->sibling,buf,ep);
  2116. return buf;
  2117. */
  2118. return NULL;
  2119. }
  2120. cmDtRC_t cmDataSerialize( const cmData_t* p, void* buf, unsigned bufByteCnt )
  2121. {
  2122. /*
  2123. const char* ep = (char*)p + bufByteCnt;
  2124. buf = _cmDataSerialize(p,buf,bufByteCnt);
  2125. assert( buf <= ep );
  2126. */
  2127. return kOkDtRC;
  2128. }
  2129. cmDtRC_t cmDataDeserialize( const void* buf, unsigned bufByteCnt, cmData_t** pp )
  2130. {
  2131. return kOkDtRC;
  2132. }
  2133. #endif
  2134. //============================================================================
  2135. //============================================================================
  2136. //============================================================================
  2137. enum
  2138. {
  2139. kLCurlyLexTId = kUserLexTId + 1,
  2140. kRCurlyLexTId,
  2141. kLParenLexTId,
  2142. kRParenLexTId,
  2143. kLBrackLexTId,
  2144. kRBrackLexTId,
  2145. kColonLexTId,
  2146. kCommaLexTId,
  2147. };
  2148. typedef struct
  2149. {
  2150. unsigned id;
  2151. const cmChar_t* label;
  2152. } cmDtToken_t;
  2153. cmDtToken_t _cmDtTokenArray[] =
  2154. {
  2155. { kLCurlyLexTId, "{" },
  2156. { kRCurlyLexTId, "}" },
  2157. { kLBrackLexTId, "[" },
  2158. { kRBrackLexTId, "]" },
  2159. { kLParenLexTId, "(" },
  2160. { kRParenLexTId, ")" },
  2161. { kColonLexTId, ":" },
  2162. { kCommaLexTId, "," },
  2163. { kErrorLexTId,""}
  2164. };
  2165. typedef struct
  2166. {
  2167. cmErr_t err;
  2168. cmLexH lexH;
  2169. cmStackH_t stH;
  2170. } cmDataParser_t;
  2171. cmDataParserH_t cmDataParserNullHandle = cmSTATIC_NULL_HANDLE;
  2172. cmDataParser_t* _cmDataParserHandleToPtr( cmDataParserH_t h )
  2173. {
  2174. cmDataParser_t* p = (cmDataParser_t*)h.h;
  2175. assert( p!= NULL );
  2176. return p;
  2177. }
  2178. cmDtRC_t _cmDataParserDestroy( cmDataParser_t* p )
  2179. {
  2180. if( cmLexFinal(&p->lexH) != kOkLexRC )
  2181. cmErrMsg(&p->err,kLexFailDtRC,"Lexer release failed.");
  2182. if( cmStackFree(&p->stH) != kOkStRC )
  2183. cmErrMsg(&p->err,kParseStackFailDtRC,"The data object parser stack release failed.");
  2184. cmMemFree(p);
  2185. return kOkDtRC;
  2186. }
  2187. cmDtRC_t cmDataParserCreate( cmCtx_t* ctx, cmDataParserH_t* hp )
  2188. {
  2189. cmDtRC_t rc;
  2190. unsigned i;
  2191. if((rc = cmDataParserDestroy(hp)) != kOkDtRC )
  2192. return rc;
  2193. cmDataParser_t* p = cmMemAllocZ(cmDataParser_t,1);
  2194. cmErrSetup(&p->err,&ctx->rpt,"Data Parser");
  2195. if(cmLexIsValid(p->lexH = cmLexInit(NULL,0,0,&ctx->rpt))==false)
  2196. {
  2197. rc = cmErrMsg(&p->err, kLexFailDtRC, "The data object parser lexer create failed.");
  2198. goto errLabel;
  2199. }
  2200. for(i=0; _cmDtTokenArray[i].id != kErrorLexTId; ++i)
  2201. if( cmLexRegisterToken(p->lexH, _cmDtTokenArray[i].id, _cmDtTokenArray[i].label) != kOkLexRC )
  2202. {
  2203. rc = cmErrMsg(&p->err,kLexFailDtRC,"The data object parser lexer could not register the '%s' token.",_cmDtTokenArray[i].label);
  2204. goto errLabel;
  2205. }
  2206. if( cmStackAlloc(ctx, &p->stH, 1024, 1024, sizeof(cmData_t*)) != kOkStRC )
  2207. {
  2208. rc = cmErrMsg(&p->err,kParseStackFailDtRC,"The data object parser stack create failed.");
  2209. goto errLabel;
  2210. }
  2211. hp->h = p;
  2212. errLabel:
  2213. if( rc != kOkDtRC )
  2214. _cmDataParserDestroy(p);
  2215. return kOkDtRC;
  2216. }
  2217. cmDtRC_t cmDataParserDestroy( cmDataParserH_t* hp )
  2218. {
  2219. cmDtRC_t rc=kOkDtRC;
  2220. if( hp==NULL || cmDataParserIsValid(*hp)==false )
  2221. return rc;
  2222. cmDataParser_t* p = _cmDataParserHandleToPtr(*hp);
  2223. if((rc = _cmDataParserDestroy(p)) != kOkDtRC )
  2224. return rc;
  2225. hp->h = NULL;
  2226. return kOkDtRC;
  2227. }
  2228. bool cmDataParserIsValid( cmDataParserH_t h )
  2229. { return h.h != NULL; }
  2230. // {
  2231. // id0 : scalar_value
  2232. // id1 : ( heterogenous, array, value )
  2233. // id2 : [ homogeneous array values ]
  2234. // id3 :
  2235. // }
  2236. // flags describing the expected next token
  2237. enum
  2238. {
  2239. kValueExpFl = 0x01,
  2240. kIdExpFl = 0x02,
  2241. kColonExpFl = 0x04,
  2242. kCommaExpFl = 0x08
  2243. };
  2244. typedef struct
  2245. {
  2246. cmData_t* dp;
  2247. } cmDataStEle_t;
  2248. typedef struct
  2249. {
  2250. cmDataParser_t* p;
  2251. cmData_t* cnp;
  2252. unsigned flags;
  2253. cmChar_t* tmpStr;
  2254. unsigned arrayCnt;
  2255. void* arrayMem;
  2256. } cmDataParserCtx_t;
  2257. cmDtRC_t _cmDpSyntaxErrV( cmDataParserCtx_t* c, const cmChar_t* fmt, va_list vl )
  2258. {
  2259. cmChar_t* s0 = NULL;
  2260. cmChar_t* s1 = NULL;
  2261. s0 = cmTsVPrintfP(s0,fmt,vl);
  2262. s1 = cmMemAllocStrN(cmLexTokenText(c->p->lexH),cmLexTokenCharCount(c->p->lexH));
  2263. cmDtRC_t rc = cmErrMsg(&c->p->err,kSyntaxErrDtRC,"Syntax error on line %i column:%i token:'%s'. %s",cmLexCurrentLineNumber(c->p->lexH),cmLexCurrentColumnNumber(c->p->lexH),s1,cmStringNullGuard(s0));
  2264. cmMemFree(s0);
  2265. cmMemFree(s1);
  2266. return rc;
  2267. }
  2268. cmDtRC_t _cmDpSyntaxErr( cmDataParserCtx_t* c, const cmChar_t* fmt, ... )
  2269. {
  2270. va_list vl;
  2271. va_start(vl,fmt);
  2272. cmDtRC_t rc = _cmDpSyntaxErrV(c,fmt,vl);
  2273. va_end(vl);
  2274. return rc;
  2275. }
  2276. cmDtRC_t _cmDpPopStack( cmDataParserCtx_t* c, cmData_t** pp )
  2277. {
  2278. const void* vp;
  2279. if((vp = cmStackTop(c->p->stH)) == NULL )
  2280. return _cmDpSyntaxErr(c,"Stack underflow.");
  2281. if( cmStackPop(c->p->stH,1) != kOkStRC )
  2282. return _cmDpSyntaxErr(c,"Stack pop failed.");
  2283. *pp = *(cmData_t**)vp;
  2284. //printf("pop: %p\n",*pp);
  2285. return kOkDtRC;
  2286. }
  2287. cmDtRC_t _cmDpPushStack( cmDataParserCtx_t* c, cmData_t* np )
  2288. {
  2289. //printf("push:%p\n",np);
  2290. // store the current node
  2291. if( cmStackPush(c->p->stH, &np, 1 ) != kOkStRC )
  2292. return _cmDpSyntaxErr(c,"Parser stack push failed.");
  2293. return kOkDtRC;
  2294. }
  2295. cmDtRC_t _cmDpStoreArrayEle( cmDataParserCtx_t* c, void* dp, unsigned eleByteCnt, cmDataTypeId_t tid )
  2296. {
  2297. if( c->cnp->tid == kBlobDtId )
  2298. c->cnp->tid = tid;
  2299. else
  2300. if( c->cnp->tid != tid )
  2301. return _cmDpSyntaxErr(c,"Mixed types were detected in an array list.");
  2302. unsigned newByteCnt = (c->cnp->cnt+1)*eleByteCnt;
  2303. char* vp = cmMemResizeP(char, c->cnp->u.vp, newByteCnt);
  2304. memcpy(vp + c->cnp->cnt*eleByteCnt,dp,eleByteCnt);
  2305. c->cnp->u.vp = vp;
  2306. c->cnp->cnt += 1;
  2307. c->cnp->cid = kArrayDtId;
  2308. c->flags = kValueExpFl | kCommaExpFl;
  2309. return kOkDtRC;
  2310. }
  2311. cmDtRC_t _cmDataParserOpenPair( cmDataParserCtx_t* c )
  2312. {
  2313. cmDtRC_t rc = kOkDtRC;
  2314. assert( c->cnp->cid==kRecordDtId && c->cnp->tid == kStructDtId );
  2315. // create a pair with a 'null' value which will be replaced when the pair's value is parsed
  2316. cmData_t* nnp = NULL;
  2317. if( cmDataNewNull(NULL,0,&nnp) != kOkDtRC )
  2318. return rc;
  2319. cmData_t* pnp = NULL;
  2320. if((rc = cmDataPairAllocLabelN( c->cnp, cmLexTokenText(c->p->lexH), cmLexTokenCharCount(c->p->lexH), nnp, &pnp )) != kOkDtRC )
  2321. {
  2322. cmDataFree(nnp);
  2323. return rc;
  2324. }
  2325. // store the current node
  2326. if((rc = _cmDpPushStack(c,c->cnp)) != kOkDtRC )
  2327. return rc;
  2328. // make the new pair the current node
  2329. c->cnp = pnp;
  2330. // pair openings must be followed by a colon.
  2331. c->flags = kColonExpFl;
  2332. return rc;
  2333. }
  2334. cmDtRC_t _cmDataParserClosePair( cmDataParserCtx_t* c )
  2335. {
  2336. cmDtRC_t rc;
  2337. // make the pair's parent record the current node
  2338. if((rc = _cmDpPopStack(c, &c->cnp )) != kOkDtRC )
  2339. return rc;
  2340. // pairs only occur in records
  2341. if( c->cnp->cid != kRecordDtId )
  2342. return _cmDpSyntaxErr(c,"A 'pair' end was found outside of a 'record'.");
  2343. // pairs must be followed by id's or comma's
  2344. c->flags = kIdExpFl | kCommaExpFl;
  2345. return rc;
  2346. }
  2347. cmDtRC_t _cmDpStoreValue( cmDataParserCtx_t* c, cmData_t* np, const cmChar_t* typeLabel )
  2348. {
  2349. assert( np != NULL );
  2350. cmDtRC_t rc = kOkDtRC;
  2351. switch( c->cnp->cid )
  2352. {
  2353. case kPairDtId:
  2354. // assign the new node as the value of the pair
  2355. cmDataPairSetValue(c->cnp,np);
  2356. // close the values parent pair
  2357. rc = _cmDataParserClosePair(c);
  2358. break;
  2359. case kListDtId:
  2360. cmDataAppendChild(c->cnp,np);
  2361. c->flags = kValueExpFl;
  2362. break;
  2363. default:
  2364. rc = _cmDpSyntaxErr(c,"A '%s' value was found outside of a valid container.",typeLabel);
  2365. // Free the new data node because it was not attached and will
  2366. // otherwise be lost
  2367. cmDataFree(np);
  2368. }
  2369. c->flags |= kCommaExpFl;
  2370. return rc;
  2371. }
  2372. cmDtRC_t _cmDataParserReal( cmDataParserCtx_t* c )
  2373. {
  2374. cmDtRC_t rc = kOkDtRC;
  2375. bool floatFl = cmLexTokenIsSinglePrecision(c->p->lexH);
  2376. double dval;
  2377. float fval;
  2378. if( floatFl )
  2379. fval = cmLexTokenFloat(c->p->lexH);
  2380. else
  2381. dval = cmLexTokenDouble(c->p->lexH);
  2382. if( c->cnp->cid == kArrayDtId )
  2383. {
  2384. if( floatFl )
  2385. rc = _cmDpStoreArrayEle(c,&fval,sizeof(fval),kFloatDtId);
  2386. else
  2387. rc = _cmDpStoreArrayEle(c,&dval,sizeof(dval),kDoubleDtId);
  2388. }
  2389. else
  2390. {
  2391. cmData_t* np = NULL;
  2392. if( floatFl )
  2393. rc = cmDataNewFloat(NULL,0,fval,&np);
  2394. else
  2395. rc = cmDataNewDouble(NULL,0,dval,&np);
  2396. if( rc == kOkDtRC )
  2397. rc = _cmDpStoreValue(c,np,"real");
  2398. }
  2399. return rc;
  2400. }
  2401. cmDtRC_t _cmDataParserInt( cmDataParserCtx_t* c )
  2402. {
  2403. cmDtRC_t rc = kOkDtRC;
  2404. int val = cmLexTokenInt(c->p->lexH);
  2405. bool unsignedFl = cmLexTokenIsUnsigned(c->p->lexH);
  2406. if( c->cnp->cid == kArrayDtId )
  2407. rc = _cmDpStoreArrayEle(c,&val,sizeof(val),unsignedFl ? kUIntDtId : kIntDtId);
  2408. else
  2409. {
  2410. cmData_t* np = NULL;
  2411. if(unsignedFl)
  2412. rc = cmDataNewUInt(NULL,0,val,&np);
  2413. else
  2414. rc = cmDataNewInt(NULL,0,val,&np);
  2415. if( rc == kOkDtRC )
  2416. rc = _cmDpStoreValue(c,np,"int");
  2417. }
  2418. return rc;
  2419. }
  2420. cmDtRC_t _cmDataParserString( cmDataParserCtx_t* c )
  2421. {
  2422. cmDtRC_t rc = kOkDtRC;
  2423. // if we are expecting a pair label
  2424. if( cmIsFlag(c->flags,kIdExpFl) )
  2425. return _cmDataParserOpenPair(c);
  2426. // otherwise a 'value' must be expected
  2427. if( cmIsNotFlag(c->flags,kValueExpFl) )
  2428. return _cmDpSyntaxErr(c,"Unexpected string.");
  2429. cmData_t* np = NULL;
  2430. if((rc = cmDataNewConstStrN(NULL,0,cmLexTokenText(c->p->lexH), cmLexTokenCharCount(c->p->lexH),&np)) != kOkDtRC )
  2431. return rc;
  2432. return _cmDpStoreValue(c,np,"string");
  2433. }
  2434. cmDtRC_t _cmDataParserOpenRecd( cmDataParserCtx_t* c )
  2435. {
  2436. cmDtRC_t rc = kOkDtRC;
  2437. // records are values - so we must be expecting a value
  2438. if( cmIsFlag(c->flags,kValueExpFl) == false )
  2439. return _cmDpSyntaxErr(c,"Unexpected '{'.");
  2440. // store the current node
  2441. if((rc = _cmDpPushStack(c,c->cnp)) != kOkDtRC )
  2442. return rc;
  2443. // alloc a new record and make it the current node
  2444. if( (c->cnp = cmDataRecdAlloc(NULL)) == NULL )
  2445. return _cmDpSyntaxErr(c,"'recd' allocate failed.");
  2446. // new records must be followed by an id token.
  2447. c->flags = kIdExpFl;
  2448. return rc;
  2449. }
  2450. cmDtRC_t _cmDataParserCloseContainer( cmDataParserCtx_t* c, const cmChar_t* typeLabelStr )
  2451. {
  2452. cmDtRC_t rc;
  2453. cmData_t* np = c->cnp;
  2454. // make the parent node the new current node
  2455. if((rc = _cmDpPopStack(c,&c->cnp)) != kOkDtRC )
  2456. return rc;
  2457. return _cmDpStoreValue(c,np,typeLabelStr);
  2458. }
  2459. cmDtRC_t _cmDataParserCloseRecd( cmDataParserCtx_t* c )
  2460. {
  2461. assert( c->cnp->cid == kRecordDtId );
  2462. return _cmDataParserCloseContainer(c,"record");
  2463. }
  2464. cmDtRC_t _cmDataParserOpenList( cmDataParserCtx_t* c )
  2465. {
  2466. cmDtRC_t rc = kOkDtRC;
  2467. // lists are values - so we must be expecting a value
  2468. if( cmIsFlag(c->flags,kValueExpFl) == false )
  2469. return _cmDpSyntaxErr(c,"Unexpected '('.");
  2470. // store the current node
  2471. if((rc = _cmDpPushStack(c,c->cnp)) != kOkDtRC )
  2472. return rc;
  2473. // create a new list
  2474. if( (c->cnp = cmDataListAlloc(NULL)) == NULL )
  2475. return _cmDpSyntaxErr(c,"'list' allocate failed.");
  2476. // new lists must be followed by a value
  2477. c->flags = kValueExpFl;
  2478. return rc;
  2479. }
  2480. cmDtRC_t _cmDataParserCloseList( cmDataParserCtx_t* c )
  2481. {
  2482. assert( c->cnp->cid == kListDtId );
  2483. return _cmDataParserCloseContainer(c,"list");
  2484. }
  2485. cmDtRC_t _cmDataParserOpenArray( cmDataParserCtx_t* c )
  2486. {
  2487. cmDtRC_t rc = kOkDtRC;
  2488. // arrays are values - so we must be expecting a value
  2489. if( cmIsFlag(c->flags,kValueExpFl) == false )
  2490. return _cmDpSyntaxErr(c,"Unexpected '['.");
  2491. // store the current node
  2492. if((rc = _cmDpPushStack(c,c->cnp)) != kOkDtRC )
  2493. return rc;
  2494. // create a new array
  2495. c->cnp = NULL;
  2496. if( cmDataNewBlob(NULL, 0, NULL, 0,&c->cnp) != kOkDtRC )
  2497. return _cmDpSyntaxErr(c,"'array' allocate failed.");
  2498. // new arrays must be followed by a value
  2499. c->flags = kValueExpFl;
  2500. // Idicate that the object is an array by setting c->cnp->cid to kArrayDtId.
  2501. // (ALTHOUGH the c->cnp->tid==kBlobDtId which is only legal for scalar containers -
  2502. // but this will be fixed up when the first element is stored in
  2503. // _cmDpStoreArrayEle(). )
  2504. c->cnp->cid = kArrayDtId;
  2505. return rc;
  2506. }
  2507. cmDtRC_t _cmDataParserCloseArray( cmDataParserCtx_t* c )
  2508. {
  2509. assert( c->cnp->cid == kArrayDtId );
  2510. return _cmDataParserCloseContainer(c,"array");
  2511. }
  2512. cmDtRC_t _cmDataParserOnColon( cmDataParserCtx_t* c )
  2513. {
  2514. // colons only follow field identifiers and are always followed by values.
  2515. if( cmIsFlag(c->flags,kColonExpFl) == false )
  2516. return _cmDpSyntaxErr(c,"Unexpected colon.");
  2517. c->flags = kValueExpFl;
  2518. return kOkDtRC;
  2519. }
  2520. cmDtRC_t _cmDataParserOnComma( cmDataParserCtx_t* c )
  2521. {
  2522. // comma's may be found in three places:
  2523. // 1) following field values
  2524. // 2) between list values
  2525. // 3) between array values
  2526. // comma's are always followed by values
  2527. if( cmIsFlag(c->flags,kCommaExpFl) == false )
  2528. return _cmDpSyntaxErr(c, "Unexpected comma.");
  2529. c->flags = kValueExpFl;
  2530. return kOkDtRC;
  2531. }
  2532. cmDtRC_t cmDataParserExec( cmDataParserH_t h, const cmChar_t* text, cmData_t** pp )
  2533. {
  2534. cmDtRC_t rc = kOkDtRC;
  2535. cmDataParser_t* p = _cmDataParserHandleToPtr(h);
  2536. unsigned tokenId;
  2537. cmDataParserCtx_t ctx;
  2538. cmData_t* root = cmDataRecdAlloc(NULL);
  2539. ctx.cnp = root;
  2540. ctx.p = p;
  2541. ctx.flags = kIdExpFl;
  2542. if( cmLexSetTextBuffer(p->lexH,text,strlen(text)) != kOkLexRC )
  2543. return cmErrMsg(&p->err,kLexFailDtRC,"The data object lexer failed during reset.");
  2544. cmStackClear(p->stH,false);
  2545. while(rc==kOkDtRC && (tokenId = cmLexGetNextToken(p->lexH)) != kEofLexTId )
  2546. {
  2547. switch(tokenId)
  2548. {
  2549. case kRealLexTId: // real number (contains a decimal point or is in scientific notation)
  2550. rc = _cmDataParserReal(&ctx);
  2551. break;
  2552. case kIntLexTId: // decimal integer
  2553. case kHexLexTId: // hexidecimal integer
  2554. rc = _cmDataParserInt(&ctx);
  2555. break;
  2556. case kIdentLexTId: // identifiers are treated as strings
  2557. case kQStrLexTId: // quoted string
  2558. rc = _cmDataParserString(&ctx);
  2559. break;
  2560. case kLCurlyLexTId: // a new record is starting
  2561. rc = _cmDataParserOpenRecd(&ctx);
  2562. break;
  2563. case kRCurlyLexTId: // the current record is finished
  2564. rc = _cmDataParserCloseRecd(&ctx);
  2565. break;
  2566. case kLParenLexTId: // a list is starting
  2567. rc = _cmDataParserOpenList(&ctx);
  2568. break;
  2569. case kRParenLexTId: // a list is finished
  2570. rc = _cmDataParserCloseList(&ctx);
  2571. break;
  2572. case kLBrackLexTId: // an array is starting
  2573. rc = _cmDataParserOpenArray(&ctx);
  2574. break;
  2575. case kRBrackLexTId: // an array is ending
  2576. rc = _cmDataParserCloseArray(&ctx);
  2577. break;
  2578. case kColonLexTId: // the previous id was a field id
  2579. rc = _cmDataParserOnColon(&ctx);
  2580. break;
  2581. case kCommaLexTId: // comma sep. for array or fields
  2582. rc = _cmDataParserOnComma(&ctx);
  2583. break;
  2584. case kBlockCmtLexTId: // block comment
  2585. case kLineCmtLexTId: // line comment
  2586. case kErrorLexTId: // the lexer was unable to identify the current token
  2587. case kUnknownLexTId: // the token is of an unknown type (only used when kReturnUnknownLexFl is set)
  2588. case kEofLexTId: // the lexer reached the end of input
  2589. case kSpaceLexTId: // white space
  2590. {
  2591. rc = cmErrMsg(&p->err,kLexFailDtRC,"The data object lexer failed with an unexpected token '%s' on line '%i'.",cmLexIdToLabel(p->lexH,tokenId),cmLexCurrentLineNumber(p->lexH));
  2592. goto errLabel;
  2593. }
  2594. }
  2595. }
  2596. errLabel:
  2597. if( rc == kOkDtRC )
  2598. *pp = ctx.cnp;
  2599. else
  2600. {
  2601. if( ctx.cnp != root )
  2602. cmDataUnlinkAndFree(ctx.cnp);
  2603. cmDataUnlinkAndFree(root);
  2604. }
  2605. return rc;
  2606. }
  2607. //============================================================================
  2608. //============================================================================
  2609. //============================================================================
  2610. #define parr(rpt,fmt,arr,n) do{int i=0; cmRptPrintf(rpt,"[ "); for(;i<n;++i) cmRptPrintf(rpt,fmt,arr[i]); cmRptPrintf(rpt," ]"); }while(0)
  2611. void _cmDataPrintIndent( cmRpt_t* rpt, unsigned indent )
  2612. {
  2613. unsigned j=0;
  2614. for(; j<indent; ++j)
  2615. cmRptPrintf(rpt," ");
  2616. }
  2617. void _cmDataPrint( const cmData_t* p, cmRpt_t* rpt, unsigned indent )
  2618. {
  2619. cmData_t* cp;
  2620. //_cmDataPrintIndent(rpt,indent);
  2621. switch(p->cid)
  2622. {
  2623. case kScalarDtId:
  2624. switch(p->tid)
  2625. {
  2626. case kNullDtId: cmRptPrintf(rpt,"<null>"); break;
  2627. case kBoolDtId: cmRptPrintf(rpt,"%i", cmDtBool(p)); break;
  2628. case kUCharDtId: cmRptPrintf(rpt,"%c ",cmDtUChar(p)); break;
  2629. case kCharDtId: cmRptPrintf(rpt,"%c ",cmDtChar(p)); break;
  2630. case kUShortDtId: cmRptPrintf(rpt,"%i ",cmDtUShort(p)); break;
  2631. case kShortDtId: cmRptPrintf(rpt,"%i ",cmDtShort(p)); break;
  2632. case kUIntDtId: cmRptPrintf(rpt,"%i ",cmDtUInt(p)); break;
  2633. case kIntDtId: cmRptPrintf(rpt,"%i ",cmDtInt(p)); break;
  2634. case kULongDtId: cmRptPrintf(rpt,"%i ",cmDtULong(p)); break;
  2635. case kLongDtId: cmRptPrintf(rpt,"%i ",cmDtLong(p)); break;
  2636. case kFloatDtId: cmRptPrintf(rpt,"%f ",cmDtFloat(p)); break;
  2637. case kDoubleDtId: cmRptPrintf(rpt,"%f ",cmDtDouble(p)); break;
  2638. case kStrDtId: cmRptPrintf(rpt,"%s ",cmDtConstStr(p)); break;
  2639. default:
  2640. {assert(0); }
  2641. }
  2642. break;
  2643. case kArrayDtId:
  2644. {
  2645. switch(p->tid)
  2646. {
  2647. case kBoolDtId: parr(rpt,"%i ", cmDtBoolArray(p), p->cnt ); break;
  2648. case kUCharDtId: parr(rpt,"%c ", cmDtCharArray(p), p->cnt ); break;
  2649. case kCharDtId: parr(rpt,"%c ", cmDtCharArray(p), p->cnt ); break;
  2650. case kUShortDtId: parr(rpt,"%i ", cmDtUShortArray(p), p->cnt ); break;
  2651. case kShortDtId: parr(rpt,"%i ", cmDtShortArray(p), p->cnt ); break;
  2652. case kUIntDtId: parr(rpt,"%i ", cmDtUIntArray(p), p->cnt ); break;
  2653. case kIntDtId: parr(rpt,"%i ", cmDtIntArray(p), p->cnt ); break;
  2654. case kULongDtId: parr(rpt,"%i ", cmDtULongArray(p), p->cnt ); break;
  2655. case kLongDtId: parr(rpt,"%i ", cmDtLongArray(p), p->cnt ); break;
  2656. case kFloatDtId: parr(rpt,"%f ", cmDtFloatArray(p), p->cnt ); break;
  2657. case kDoubleDtId: parr(rpt,"%f ", cmDtDoubleArray(p), p->cnt ); break;
  2658. default:
  2659. {assert(0);}
  2660. }
  2661. }
  2662. break;
  2663. case kPairDtId:
  2664. _cmDataPrint(p->u.child,rpt,indent);
  2665. cmRptPrintf(rpt," : ");
  2666. _cmDataPrint(p->u.child->sibling,rpt,indent);
  2667. cmRptPrintf(rpt,"\n");
  2668. break;
  2669. case kListDtId:
  2670. cmRptPrintf(rpt,"(\n");
  2671. indent += 2;
  2672. cp = p->u.child;
  2673. for(; cp!=NULL; cp=cp->sibling)
  2674. {
  2675. _cmDataPrintIndent(rpt,indent);
  2676. _cmDataPrint(cp,rpt,indent);
  2677. cmRptPrintf(rpt,"\n");
  2678. }
  2679. indent -= 2;
  2680. _cmDataPrintIndent(rpt,indent);
  2681. cmRptPrintf(rpt,")\n");
  2682. break;
  2683. case kRecordDtId:
  2684. cmRptPrintf(rpt,"{\n");
  2685. indent += 2;
  2686. cp = p->u.child;
  2687. for(; cp!=NULL; cp=cp->sibling)
  2688. {
  2689. _cmDataPrintIndent(rpt,indent);
  2690. _cmDataPrint(cp,rpt, indent);
  2691. }
  2692. indent -= 2;
  2693. _cmDataPrintIndent(rpt,indent);
  2694. cmRptPrintf(rpt,"}\n");
  2695. break;
  2696. default:
  2697. break;
  2698. }
  2699. }
  2700. void cmDataPrint( const cmData_t* p, cmRpt_t* rpt )
  2701. { _cmDataPrint(p,rpt,0); }
  2702. cmDtRC_t cmDataParserTest( cmCtx_t* ctx )
  2703. {
  2704. cmDtRC_t rc = kOkDtRC;
  2705. cmDataParserH_t h = cmDataParserNullHandle;
  2706. cmErr_t err;
  2707. cmData_t* dp = NULL;
  2708. const cmChar_t text[] =
  2709. {
  2710. //0 1 2 3
  2711. //0123456789012345678901234567890123
  2712. "f0:1.23 f1:\"hey\" f2:( a b c ) f3:[ 0f 1f 2f ]"
  2713. //"f0:1.23 f1:\"hey\""
  2714. };
  2715. cmErrSetup(&err,&ctx->rpt,"Data Parser Tester");
  2716. if((rc = cmDataParserCreate(ctx, &h )) != kOkDtRC )
  2717. {
  2718. rc = cmErrMsg(&err,rc,"Data parser create failed.");
  2719. goto errLabel;
  2720. }
  2721. if( cmDataParserExec(h,text,&dp) != kOkDtRC )
  2722. rc = cmErrMsg(&err,rc,"Data parser exec failed.");
  2723. else
  2724. if( dp != NULL )
  2725. cmDataPrint(dp,&ctx->rpt);
  2726. errLabel:
  2727. if( cmDataParserDestroy( &h ) != kOkDtRC )
  2728. {
  2729. rc = cmErrMsg(&err,rc,"Data parser destroy failed.");
  2730. goto errLabel;
  2731. }
  2732. cmDataFree(dp);
  2733. return rc;
  2734. }
  2735. void cmDataTest( cmCtx_t* ctx )
  2736. {
  2737. float farr[] = { 1.23, 45.6, 7.89 };
  2738. if( cmDataParserTest(ctx) != kOkDtRC )
  2739. return;
  2740. cmData_t* d0 = NULL;
  2741. cmDataRecdAllocLabelA(NULL,&ctx->err,0,&d0,
  2742. "name", kStrDtId,"This is a string.",
  2743. "id", kUIntDtId, 21,
  2744. "real",kFloatDtId, 1.23,
  2745. "arr", kArrayDtId | kFloatDtId, farr, 3,
  2746. NULL);
  2747. //cmDataPrint(d0,&ctx->rpt);
  2748. cmData_t* d1 = NULL;
  2749. cmDataListAllocA(NULL,&ctx->err,0,&d1,
  2750. kUIntDtId, 53,
  2751. kStrDtId, "Blah blah",
  2752. kArrayDtId | kFloatDtId, farr, 3,
  2753. kRecordDtId, d0,
  2754. kInvalidCntDtId );
  2755. cmDataPrint(d1,&ctx->rpt);
  2756. cmDataFree(d1);
  2757. cmRptPrintf(&ctx->rpt,"Done!.\n");
  2758. }